./Ultimate.py --spec ../sv-benchmarks/c/properties/termination.prp --file ../sv-benchmarks/c/array-examples/sanfoundry_24-1.i --full-output --architecture 32bit -------------------------------------------------------------------------------- Checking for termination Using default analysis Version c3fed411 Calling Ultimate with: /usr/bin/java -Dosgi.configuration.area=/storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/data/config -Xmx15G -Xms4m -jar /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/plugins/org.eclipse.equinox.launcher_1.5.800.v20200727-1323.jar -data @noDefault -ultimatedata /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/data -tc /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/config/AutomizerTermination.xml -i ../sv-benchmarks/c/array-examples/sanfoundry_24-1.i -s /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/config/svcomp-Termination-32bit-Automizer_Default.epf --cacsl2boogietranslator.entry.function main --witnessprinter.witness.directory /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux --witnessprinter.witness.filename witness.graphml --witnessprinter.write.witness.besides.input.file false --witnessprinter.graph.data.specification CHECK( init(main()), LTL(F end) ) --witnessprinter.graph.data.producer Automizer --witnessprinter.graph.data.architecture 32bit --witnessprinter.graph.data.programhash e0a16588b251f5de7b3febde43795c7086835cc989637b8bd82aa8d6af355c6b --- Real Ultimate output --- This is Ultimate 0.2.2-tmp.no-commuhash-c3fed41 [2021-12-19 17:49:52,988 INFO L177 SettingsManager]: Resetting all preferences to default values... [2021-12-19 17:49:52,989 INFO L181 SettingsManager]: Resetting UltimateCore preferences to default values [2021-12-19 17:49:53,034 INFO L184 SettingsManager]: Ultimate Commandline Interface provides no preferences, ignoring... [2021-12-19 17:49:53,035 INFO L181 SettingsManager]: Resetting Boogie Preprocessor preferences to default values [2021-12-19 17:49:53,036 INFO L181 SettingsManager]: Resetting Boogie Procedure Inliner preferences to default values [2021-12-19 17:49:53,037 INFO L181 SettingsManager]: Resetting Abstract Interpretation preferences to default values [2021-12-19 17:49:53,038 INFO L181 SettingsManager]: Resetting LassoRanker preferences to default values [2021-12-19 17:49:53,038 INFO L181 SettingsManager]: Resetting Reaching Definitions preferences to default values [2021-12-19 17:49:53,039 INFO L181 SettingsManager]: Resetting SyntaxChecker preferences to default values [2021-12-19 17:49:53,040 INFO L181 SettingsManager]: Resetting Sifa preferences to default values [2021-12-19 17:49:53,040 INFO L184 SettingsManager]: Büchi Program Product provides no preferences, ignoring... [2021-12-19 17:49:53,041 INFO L181 SettingsManager]: Resetting LTL2Aut preferences to default values [2021-12-19 17:49:53,041 INFO L181 SettingsManager]: Resetting PEA to Boogie preferences to default values [2021-12-19 17:49:53,042 INFO L181 SettingsManager]: Resetting BlockEncodingV2 preferences to default values [2021-12-19 17:49:53,043 INFO L181 SettingsManager]: Resetting ChcToBoogie preferences to default values [2021-12-19 17:49:53,043 INFO L181 SettingsManager]: Resetting AutomataScriptInterpreter preferences to default values [2021-12-19 17:49:53,044 INFO L181 SettingsManager]: Resetting BuchiAutomizer preferences to default values [2021-12-19 17:49:53,052 INFO L181 SettingsManager]: Resetting CACSL2BoogieTranslator preferences to default values [2021-12-19 17:49:53,053 INFO L181 SettingsManager]: Resetting CodeCheck preferences to default values [2021-12-19 17:49:53,054 INFO L181 SettingsManager]: Resetting InvariantSynthesis preferences to default values [2021-12-19 17:49:53,055 INFO L181 SettingsManager]: Resetting RCFGBuilder preferences to default values [2021-12-19 17:49:53,060 INFO L181 SettingsManager]: Resetting Referee preferences to default values [2021-12-19 17:49:53,061 INFO L181 SettingsManager]: Resetting TraceAbstraction preferences to default values [2021-12-19 17:49:53,066 INFO L184 SettingsManager]: TraceAbstractionConcurrent provides no preferences, ignoring... [2021-12-19 17:49:53,071 INFO L184 SettingsManager]: TraceAbstractionWithAFAs provides no preferences, ignoring... [2021-12-19 17:49:53,071 INFO L181 SettingsManager]: Resetting TreeAutomizer preferences to default values [2021-12-19 17:49:53,072 INFO L181 SettingsManager]: Resetting IcfgToChc preferences to default values [2021-12-19 17:49:53,072 INFO L181 SettingsManager]: Resetting IcfgTransformer preferences to default values [2021-12-19 17:49:53,072 INFO L184 SettingsManager]: ReqToTest provides no preferences, ignoring... [2021-12-19 17:49:53,072 INFO L181 SettingsManager]: Resetting Boogie Printer preferences to default values [2021-12-19 17:49:53,073 INFO L181 SettingsManager]: Resetting ChcSmtPrinter preferences to default values [2021-12-19 17:49:53,073 INFO L181 SettingsManager]: Resetting ReqPrinter preferences to default values [2021-12-19 17:49:53,074 INFO L181 SettingsManager]: Resetting Witness Printer preferences to default values [2021-12-19 17:49:53,074 INFO L184 SettingsManager]: Boogie PL CUP Parser provides no preferences, ignoring... [2021-12-19 17:49:53,074 INFO L181 SettingsManager]: Resetting CDTParser preferences to default values [2021-12-19 17:49:53,075 INFO L184 SettingsManager]: AutomataScriptParser provides no preferences, ignoring... [2021-12-19 17:49:53,075 INFO L184 SettingsManager]: ReqParser provides no preferences, ignoring... [2021-12-19 17:49:53,075 INFO L181 SettingsManager]: Resetting SmtParser preferences to default values [2021-12-19 17:49:53,075 INFO L181 SettingsManager]: Resetting Witness Parser preferences to default values [2021-12-19 17:49:53,076 INFO L188 SettingsManager]: Finished resetting all preferences to default values... [2021-12-19 17:49:53,076 INFO L101 SettingsManager]: Beginning loading settings from /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/config/svcomp-Termination-32bit-Automizer_Default.epf [2021-12-19 17:49:53,101 INFO L113 SettingsManager]: Loading preferences was successful [2021-12-19 17:49:53,101 INFO L115 SettingsManager]: Preferences different from defaults after loading the file: [2021-12-19 17:49:53,101 INFO L136 SettingsManager]: Preferences of UltimateCore differ from their defaults: [2021-12-19 17:49:53,101 INFO L138 SettingsManager]: * Log level for class=de.uni_freiburg.informatik.ultimate.lib.smtlibutils.quantifier.QuantifierPusher=ERROR; [2021-12-19 17:49:53,102 INFO L136 SettingsManager]: Preferences of BlockEncodingV2 differ from their defaults: [2021-12-19 17:49:53,102 INFO L138 SettingsManager]: * Create parallel compositions if possible=false [2021-12-19 17:49:53,102 INFO L138 SettingsManager]: * Use SBE=true [2021-12-19 17:49:53,102 INFO L136 SettingsManager]: Preferences of BuchiAutomizer differ from their defaults: [2021-12-19 17:49:53,102 INFO L138 SettingsManager]: * NCSB implementation=INTSET_LAZY3 [2021-12-19 17:49:53,102 INFO L138 SettingsManager]: * Use old map elimination=false [2021-12-19 17:49:53,102 INFO L138 SettingsManager]: * Use external solver (rank synthesis)=false [2021-12-19 17:49:53,102 INFO L138 SettingsManager]: * Use only trivial implications for array writes=true [2021-12-19 17:49:53,102 INFO L138 SettingsManager]: * Rank analysis=LINEAR_WITH_GUESSES [2021-12-19 17:49:53,103 INFO L136 SettingsManager]: Preferences of CACSL2BoogieTranslator differ from their defaults: [2021-12-19 17:49:53,103 INFO L138 SettingsManager]: * sizeof long=4 [2021-12-19 17:49:53,103 INFO L138 SettingsManager]: * Check unreachability of error function in SV-COMP mode=false [2021-12-19 17:49:53,103 INFO L138 SettingsManager]: * Overapproximate operations on floating types=true [2021-12-19 17:49:53,103 INFO L138 SettingsManager]: * sizeof POINTER=4 [2021-12-19 17:49:53,103 INFO L138 SettingsManager]: * Check division by zero=IGNORE [2021-12-19 17:49:53,103 INFO L138 SettingsManager]: * Pointer to allocated memory at dereference=ASSUME [2021-12-19 17:49:53,103 INFO L138 SettingsManager]: * If two pointers are subtracted or compared they have the same base address=ASSUME [2021-12-19 17:49:53,103 INFO L138 SettingsManager]: * Check array bounds for arrays that are off heap=ASSUME [2021-12-19 17:49:53,103 INFO L138 SettingsManager]: * sizeof long double=12 [2021-12-19 17:49:53,103 INFO L138 SettingsManager]: * Check if freed pointer was valid=false [2021-12-19 17:49:53,103 INFO L138 SettingsManager]: * Assume nondeterminstic values are in range=false [2021-12-19 17:49:53,104 INFO L138 SettingsManager]: * Use constant arrays=true [2021-12-19 17:49:53,104 INFO L138 SettingsManager]: * Pointer base address is valid at dereference=ASSUME [2021-12-19 17:49:53,104 INFO L136 SettingsManager]: Preferences of RCFGBuilder differ from their defaults: [2021-12-19 17:49:53,104 INFO L138 SettingsManager]: * Size of a code block=SequenceOfStatements [2021-12-19 17:49:53,104 INFO L136 SettingsManager]: Preferences of TraceAbstraction differ from their defaults: [2021-12-19 17:49:53,104 INFO L138 SettingsManager]: * Trace refinement strategy=CAMEL [2021-12-19 17:49:53,104 INFO L138 SettingsManager]: * Trace refinement exception blacklist=NONE [2021-12-19 17:49:53,105 INFO L136 SettingsManager]: Preferences of IcfgTransformer differ from their defaults: [2021-12-19 17:49:53,105 INFO L138 SettingsManager]: * TransformationType=MODULO_NEIGHBOR WARNING: An illegal reflective access operation has occurred WARNING: Illegal reflective access by com.sun.xml.bind.v2.runtime.reflect.opt.Injector$1 (file:/storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/plugins/com.sun.xml.bind_2.2.0.v201505121915.jar) to method java.lang.ClassLoader.defineClass(java.lang.String,byte[],int,int) WARNING: Please consider reporting this to the maintainers of com.sun.xml.bind.v2.runtime.reflect.opt.Injector$1 WARNING: Use --illegal-access=warn to enable warnings of further illegal reflective access operations WARNING: All illegal access operations will be denied in a future release Applying setting for plugin de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator: Entry function -> main Applying setting for plugin de.uni_freiburg.informatik.ultimate.witnessprinter: Witness directory -> /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux Applying setting for plugin de.uni_freiburg.informatik.ultimate.witnessprinter: Witness filename -> witness.graphml Applying setting for plugin de.uni_freiburg.informatik.ultimate.witnessprinter: Write witness besides input file -> false Applying setting for plugin de.uni_freiburg.informatik.ultimate.witnessprinter: Graph data specification -> CHECK( init(main()), LTL(F end) ) Applying setting for plugin de.uni_freiburg.informatik.ultimate.witnessprinter: Graph data producer -> Automizer Applying setting for plugin de.uni_freiburg.informatik.ultimate.witnessprinter: Graph data architecture -> 32bit Applying setting for plugin de.uni_freiburg.informatik.ultimate.witnessprinter: Graph data programhash -> e0a16588b251f5de7b3febde43795c7086835cc989637b8bd82aa8d6af355c6b [2021-12-19 17:49:53,258 INFO L75 nceAwareModelManager]: Repository-Root is: /tmp [2021-12-19 17:49:53,284 INFO L261 ainManager$Toolchain]: [Toolchain 1]: Applicable parser(s) successfully (re)initialized [2021-12-19 17:49:53,286 INFO L217 ainManager$Toolchain]: [Toolchain 1]: Toolchain selected. [2021-12-19 17:49:53,287 INFO L271 PluginConnector]: Initializing CDTParser... [2021-12-19 17:49:53,287 INFO L275 PluginConnector]: CDTParser initialized [2021-12-19 17:49:53,288 INFO L432 ainManager$Toolchain]: [Toolchain 1]: Parsing single file: /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/../sv-benchmarks/c/array-examples/sanfoundry_24-1.i [2021-12-19 17:49:53,336 INFO L220 CDTParser]: Created temporary CDT project at /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/data/e56d20f4d/bbdb44253a2d42eca23b49cb6f69ae74/FLAG6b3b3a0ae [2021-12-19 17:49:53,673 INFO L306 CDTParser]: Found 1 translation units. [2021-12-19 17:49:53,673 INFO L160 CDTParser]: Scanning /storage/repos/ultimate/releaseScripts/default/sv-benchmarks/c/array-examples/sanfoundry_24-1.i [2021-12-19 17:49:53,677 INFO L349 CDTParser]: About to delete temporary CDT project at /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/data/e56d20f4d/bbdb44253a2d42eca23b49cb6f69ae74/FLAG6b3b3a0ae [2021-12-19 17:49:53,684 INFO L357 CDTParser]: Successfully deleted /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/data/e56d20f4d/bbdb44253a2d42eca23b49cb6f69ae74 [2021-12-19 17:49:53,686 INFO L299 ainManager$Toolchain]: ####################### [Toolchain 1] ####################### [2021-12-19 17:49:53,687 INFO L131 ToolchainWalker]: Walking toolchain with 6 elements. [2021-12-19 17:49:53,688 INFO L113 PluginConnector]: ------------------------CACSL2BoogieTranslator---------------------------- [2021-12-19 17:49:53,688 INFO L271 PluginConnector]: Initializing CACSL2BoogieTranslator... [2021-12-19 17:49:53,704 INFO L275 PluginConnector]: CACSL2BoogieTranslator initialized [2021-12-19 17:49:53,704 INFO L185 PluginConnector]: Executing the observer ACSLObjectContainerObserver from plugin CACSL2BoogieTranslator for "CDTParser AST 19.12 05:49:53" (1/1) ... [2021-12-19 17:49:53,705 INFO L205 PluginConnector]: Invalid model from CACSL2BoogieTranslator for observer de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator.ACSLObjectContainerObserver@4a153261 and model type de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator AST 19.12 05:49:53, skipping insertion in model container [2021-12-19 17:49:53,705 INFO L185 PluginConnector]: Executing the observer CACSL2BoogieTranslatorObserver from plugin CACSL2BoogieTranslator for "CDTParser AST 19.12 05:49:53" (1/1) ... [2021-12-19 17:49:53,709 INFO L145 MainTranslator]: Starting translation in SV-COMP mode [2021-12-19 17:49:53,720 INFO L178 MainTranslator]: Built tables and reachable declarations [2021-12-19 17:49:53,829 WARN L230 ndardFunctionHandler]: Function reach_error is already implemented but we override the implementation for the call at /storage/repos/ultimate/releaseScripts/default/sv-benchmarks/c/array-examples/sanfoundry_24-1.i[848,861] [2021-12-19 17:49:53,841 INFO L209 PostProcessor]: Analyzing one entry point: main [2021-12-19 17:49:53,845 INFO L203 MainTranslator]: Completed pre-run [2021-12-19 17:49:53,852 WARN L230 ndardFunctionHandler]: Function reach_error is already implemented but we override the implementation for the call at /storage/repos/ultimate/releaseScripts/default/sv-benchmarks/c/array-examples/sanfoundry_24-1.i[848,861] [2021-12-19 17:49:53,855 INFO L209 PostProcessor]: Analyzing one entry point: main [2021-12-19 17:49:53,863 INFO L208 MainTranslator]: Completed translation [2021-12-19 17:49:53,864 INFO L202 PluginConnector]: Adding new model de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator AST 19.12 05:49:53 WrapperNode [2021-12-19 17:49:53,864 INFO L132 PluginConnector]: ------------------------ END CACSL2BoogieTranslator---------------------------- [2021-12-19 17:49:53,864 INFO L113 PluginConnector]: ------------------------Boogie Procedure Inliner---------------------------- [2021-12-19 17:49:53,865 INFO L271 PluginConnector]: Initializing Boogie Procedure Inliner... [2021-12-19 17:49:53,865 INFO L275 PluginConnector]: Boogie Procedure Inliner initialized [2021-12-19 17:49:53,869 INFO L185 PluginConnector]: Executing the observer TypeChecker from plugin Boogie Procedure Inliner for "de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator AST 19.12 05:49:53" (1/1) ... [2021-12-19 17:49:53,873 INFO L185 PluginConnector]: Executing the observer Inliner from plugin Boogie Procedure Inliner for "de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator AST 19.12 05:49:53" (1/1) ... [2021-12-19 17:49:53,884 INFO L137 Inliner]: procedures = 18, calls = 18, calls flagged for inlining = 6, calls inlined = 6, statements flattened = 73 [2021-12-19 17:49:53,885 INFO L132 PluginConnector]: ------------------------ END Boogie Procedure Inliner---------------------------- [2021-12-19 17:49:53,885 INFO L113 PluginConnector]: ------------------------Boogie Preprocessor---------------------------- [2021-12-19 17:49:53,885 INFO L271 PluginConnector]: Initializing Boogie Preprocessor... [2021-12-19 17:49:53,885 INFO L275 PluginConnector]: Boogie Preprocessor initialized [2021-12-19 17:49:53,890 INFO L185 PluginConnector]: Executing the observer EnsureBoogieModelObserver from plugin Boogie Preprocessor for "de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator AST 19.12 05:49:53" (1/1) ... [2021-12-19 17:49:53,890 INFO L185 PluginConnector]: Executing the observer TypeChecker from plugin Boogie Preprocessor for "de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator AST 19.12 05:49:53" (1/1) ... [2021-12-19 17:49:53,891 INFO L185 PluginConnector]: Executing the observer ConstExpander from plugin Boogie Preprocessor for "de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator AST 19.12 05:49:53" (1/1) ... [2021-12-19 17:49:53,891 INFO L185 PluginConnector]: Executing the observer StructExpander from plugin Boogie Preprocessor for "de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator AST 19.12 05:49:53" (1/1) ... [2021-12-19 17:49:53,894 INFO L185 PluginConnector]: Executing the observer UnstructureCode from plugin Boogie Preprocessor for "de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator AST 19.12 05:49:53" (1/1) ... [2021-12-19 17:49:53,897 INFO L185 PluginConnector]: Executing the observer FunctionInliner from plugin Boogie Preprocessor for "de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator AST 19.12 05:49:53" (1/1) ... [2021-12-19 17:49:53,897 INFO L185 PluginConnector]: Executing the observer BoogieSymbolTableConstructor from plugin Boogie Preprocessor for "de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator AST 19.12 05:49:53" (1/1) ... [2021-12-19 17:49:53,898 INFO L132 PluginConnector]: ------------------------ END Boogie Preprocessor---------------------------- [2021-12-19 17:49:53,899 INFO L113 PluginConnector]: ------------------------RCFGBuilder---------------------------- [2021-12-19 17:49:53,899 INFO L271 PluginConnector]: Initializing RCFGBuilder... [2021-12-19 17:49:53,899 INFO L275 PluginConnector]: RCFGBuilder initialized [2021-12-19 17:49:53,900 INFO L185 PluginConnector]: Executing the observer RCFGBuilderObserver from plugin RCFGBuilder for "de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator AST 19.12 05:49:53" (1/1) ... [2021-12-19 17:49:53,906 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:53,912 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:53,920 INFO L229 MonitoredProcess]: Starting monitored process 1 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:53,931 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (1)] Waiting until timeout for monitored process [2021-12-19 17:49:53,946 INFO L130 BoogieDeclarations]: Found specification of procedure #Ultimate.allocInit [2021-12-19 17:49:53,948 INFO L130 BoogieDeclarations]: Found specification of procedure write~init~int [2021-12-19 17:49:53,948 INFO L130 BoogieDeclarations]: Found specification of procedure #Ultimate.allocOnStack [2021-12-19 17:49:53,948 INFO L130 BoogieDeclarations]: Found specification of procedure write~int [2021-12-19 17:49:53,948 INFO L130 BoogieDeclarations]: Found specification of procedure ULTIMATE.start [2021-12-19 17:49:53,948 INFO L138 BoogieDeclarations]: Found implementation of procedure ULTIMATE.start [2021-12-19 17:49:53,948 INFO L130 BoogieDeclarations]: Found specification of procedure read~int [2021-12-19 17:49:53,948 INFO L130 BoogieDeclarations]: Found specification of procedure ULTIMATE.dealloc [2021-12-19 17:49:53,986 INFO L236 CfgBuilder]: Building ICFG [2021-12-19 17:49:53,987 INFO L262 CfgBuilder]: Building CFG for each procedure with an implementation [2021-12-19 17:49:54,094 INFO L277 CfgBuilder]: Performing block encoding [2021-12-19 17:49:54,098 INFO L296 CfgBuilder]: Using the 1 location(s) as analysis (start of procedure ULTIMATE.start) [2021-12-19 17:49:54,098 INFO L301 CfgBuilder]: Removed 3 assume(true) statements. [2021-12-19 17:49:54,099 INFO L202 PluginConnector]: Adding new model de.uni_freiburg.informatik.ultimate.plugins.generator.rcfgbuilder CFG 19.12 05:49:54 BoogieIcfgContainer [2021-12-19 17:49:54,099 INFO L132 PluginConnector]: ------------------------ END RCFGBuilder---------------------------- [2021-12-19 17:49:54,100 INFO L113 PluginConnector]: ------------------------BuchiAutomizer---------------------------- [2021-12-19 17:49:54,105 INFO L271 PluginConnector]: Initializing BuchiAutomizer... [2021-12-19 17:49:54,107 INFO L275 PluginConnector]: BuchiAutomizer initialized [2021-12-19 17:49:54,107 INFO L99 BuchiAutomizer]: Safety of program was proven or not checked, starting termination analysis [2021-12-19 17:49:54,107 INFO L185 PluginConnector]: Executing the observer BuchiAutomizerObserver from plugin BuchiAutomizer for "CDTParser AST 19.12 05:49:53" (1/3) ... [2021-12-19 17:49:54,108 INFO L205 PluginConnector]: Invalid model from BuchiAutomizer for observer de.uni_freiburg.informatik.ultimate.plugins.generator.buchiautomizer.BuchiAutomizerObserver@52a99b01 and model type de.uni_freiburg.informatik.ultimate.plugins.generator.buchiautomizer AST 19.12 05:49:54, skipping insertion in model container [2021-12-19 17:49:54,108 INFO L99 BuchiAutomizer]: Safety of program was proven or not checked, starting termination analysis [2021-12-19 17:49:54,108 INFO L185 PluginConnector]: Executing the observer BuchiAutomizerObserver from plugin BuchiAutomizer for "de.uni_freiburg.informatik.ultimate.plugins.generator.cacsl2boogietranslator AST 19.12 05:49:53" (2/3) ... [2021-12-19 17:49:54,109 INFO L205 PluginConnector]: Invalid model from BuchiAutomizer for observer de.uni_freiburg.informatik.ultimate.plugins.generator.buchiautomizer.BuchiAutomizerObserver@52a99b01 and model type de.uni_freiburg.informatik.ultimate.plugins.generator.buchiautomizer AST 19.12 05:49:54, skipping insertion in model container [2021-12-19 17:49:54,109 INFO L99 BuchiAutomizer]: Safety of program was proven or not checked, starting termination analysis [2021-12-19 17:49:54,109 INFO L185 PluginConnector]: Executing the observer BuchiAutomizerObserver from plugin BuchiAutomizer for "de.uni_freiburg.informatik.ultimate.plugins.generator.rcfgbuilder CFG 19.12 05:49:54" (3/3) ... [2021-12-19 17:49:54,110 INFO L388 chiAutomizerObserver]: Analyzing ICFG sanfoundry_24-1.i [2021-12-19 17:49:54,140 INFO L359 BuchiCegarLoop]: Interprodecural is true [2021-12-19 17:49:54,140 INFO L360 BuchiCegarLoop]: Hoare is false [2021-12-19 17:49:54,140 INFO L361 BuchiCegarLoop]: Compute interpolants for ForwardPredicates [2021-12-19 17:49:54,140 INFO L362 BuchiCegarLoop]: Backedges is STRAIGHT_LINE [2021-12-19 17:49:54,140 INFO L363 BuchiCegarLoop]: Determinization is PREDICATE_ABSTRACTION [2021-12-19 17:49:54,141 INFO L364 BuchiCegarLoop]: Difference is false [2021-12-19 17:49:54,141 INFO L365 BuchiCegarLoop]: Minimize is MINIMIZE_SEVPA [2021-12-19 17:49:54,141 INFO L368 BuchiCegarLoop]: ======== Iteration 0==of CEGAR loop == BuchiCegarLoop======== [2021-12-19 17:49:54,150 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand has 24 states, 23 states have (on average 1.434782608695652) internal successors, (33), 23 states have internal predecessors, (33), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:54,161 INFO L131 ngComponentsAnalysis]: Automaton has 3 accepting balls. 16 [2021-12-19 17:49:54,161 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:49:54,161 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:49:54,164 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [1, 1] [2021-12-19 17:49:54,164 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1] [2021-12-19 17:49:54,164 INFO L425 BuchiCegarLoop]: ======== Iteration 1============ [2021-12-19 17:49:54,164 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand has 24 states, 23 states have (on average 1.434782608695652) internal successors, (33), 23 states have internal predecessors, (33), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:54,165 INFO L131 ngComponentsAnalysis]: Automaton has 3 accepting balls. 16 [2021-12-19 17:49:54,165 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:49:54,165 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:49:54,166 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [1, 1] [2021-12-19 17:49:54,166 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1] [2021-12-19 17:49:54,169 INFO L791 eck$LassoCheckResult]: Stem: 5#ULTIMATE.startENTRYtrue assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 8#L-1true assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 20#L27-3true [2021-12-19 17:49:54,170 INFO L793 eck$LassoCheckResult]: Loop: 20#L27-3true assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11#L27-2true main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 20#L27-3true [2021-12-19 17:49:54,173 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:54,173 INFO L85 PathProgramCache]: Analyzing trace with hash 963, now seen corresponding path program 1 times [2021-12-19 17:49:54,178 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:54,178 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [219459777] [2021-12-19 17:49:54,178 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:54,179 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:54,232 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:54,232 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:54,238 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:54,248 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:54,252 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:54,252 INFO L85 PathProgramCache]: Analyzing trace with hash 1283, now seen corresponding path program 1 times [2021-12-19 17:49:54,252 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:54,253 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1027444982] [2021-12-19 17:49:54,253 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:54,254 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:54,265 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:54,270 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:54,274 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:54,276 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:54,279 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:54,280 INFO L85 PathProgramCache]: Analyzing trace with hash 925765, now seen corresponding path program 1 times [2021-12-19 17:49:54,280 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:54,280 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [498533779] [2021-12-19 17:49:54,280 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:54,280 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:54,295 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:54,296 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:54,307 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:54,310 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:54,584 INFO L210 LassoAnalysis]: Preferences: [2021-12-19 17:49:54,584 INFO L126 ssoRankerPreferences]: Compute integeral hull: false [2021-12-19 17:49:54,585 INFO L127 ssoRankerPreferences]: Enable LassoPartitioneer: true [2021-12-19 17:49:54,585 INFO L128 ssoRankerPreferences]: Term annotations enabled: false [2021-12-19 17:49:54,585 INFO L129 ssoRankerPreferences]: Use exernal solver: false [2021-12-19 17:49:54,585 INFO L130 ssoRankerPreferences]: SMT solver command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:54,585 INFO L131 ssoRankerPreferences]: Dump SMT script to file: false [2021-12-19 17:49:54,585 INFO L132 ssoRankerPreferences]: Path of dumped script: [2021-12-19 17:49:54,585 INFO L133 ssoRankerPreferences]: Filename of dumped script: sanfoundry_24-1.i_Iteration1_Lasso [2021-12-19 17:49:54,585 INFO L134 ssoRankerPreferences]: MapElimAlgo: Frank [2021-12-19 17:49:54,586 INFO L276 LassoAnalysis]: Starting lasso preprocessing... [2021-12-19 17:49:54,596 INFO L141 MapEliminator]: Using MapEliminator with SimplificationTechnique=SIMPLIFY_DDA XnfConversionTechnique=BOTTOM_UP_WITH_LOCAL_SIMPLIFICATION AddInequalities=false OnlyTrivialImplicationsArrayWrite=true OnlyTrivialImplicationsForModifiedArguments=true OnlyArgumentsInFormula=true [2021-12-19 17:49:54,600 INFO L141 MapEliminator]: Using MapEliminator with SimplificationTechnique=SIMPLIFY_DDA XnfConversionTechnique=BOTTOM_UP_WITH_LOCAL_SIMPLIFICATION AddInequalities=false OnlyTrivialImplicationsArrayWrite=true OnlyTrivialImplicationsForModifiedArguments=true OnlyArgumentsInFormula=true [2021-12-19 17:49:54,602 INFO L141 MapEliminator]: Using MapEliminator with SimplificationTechnique=SIMPLIFY_DDA XnfConversionTechnique=BOTTOM_UP_WITH_LOCAL_SIMPLIFICATION AddInequalities=false OnlyTrivialImplicationsArrayWrite=true OnlyTrivialImplicationsForModifiedArguments=true OnlyArgumentsInFormula=true [2021-12-19 17:49:54,603 INFO L141 MapEliminator]: Using MapEliminator with SimplificationTechnique=SIMPLIFY_DDA XnfConversionTechnique=BOTTOM_UP_WITH_LOCAL_SIMPLIFICATION AddInequalities=false OnlyTrivialImplicationsArrayWrite=true OnlyTrivialImplicationsForModifiedArguments=true OnlyArgumentsInFormula=true [2021-12-19 17:49:54,605 INFO L141 MapEliminator]: Using MapEliminator with SimplificationTechnique=SIMPLIFY_DDA XnfConversionTechnique=BOTTOM_UP_WITH_LOCAL_SIMPLIFICATION AddInequalities=false OnlyTrivialImplicationsArrayWrite=true OnlyTrivialImplicationsForModifiedArguments=true OnlyArgumentsInFormula=true [2021-12-19 17:49:54,608 INFO L141 MapEliminator]: Using MapEliminator with SimplificationTechnique=SIMPLIFY_DDA XnfConversionTechnique=BOTTOM_UP_WITH_LOCAL_SIMPLIFICATION AddInequalities=false OnlyTrivialImplicationsArrayWrite=true OnlyTrivialImplicationsForModifiedArguments=true OnlyArgumentsInFormula=true [2021-12-19 17:49:54,708 INFO L141 MapEliminator]: Using MapEliminator with SimplificationTechnique=SIMPLIFY_DDA XnfConversionTechnique=BOTTOM_UP_WITH_LOCAL_SIMPLIFICATION AddInequalities=false OnlyTrivialImplicationsArrayWrite=true OnlyTrivialImplicationsForModifiedArguments=true OnlyArgumentsInFormula=true [2021-12-19 17:49:54,711 INFO L141 MapEliminator]: Using MapEliminator with SimplificationTechnique=SIMPLIFY_DDA XnfConversionTechnique=BOTTOM_UP_WITH_LOCAL_SIMPLIFICATION AddInequalities=false OnlyTrivialImplicationsArrayWrite=true OnlyTrivialImplicationsForModifiedArguments=true OnlyArgumentsInFormula=true [2021-12-19 17:49:54,713 INFO L141 MapEliminator]: Using MapEliminator with SimplificationTechnique=SIMPLIFY_DDA XnfConversionTechnique=BOTTOM_UP_WITH_LOCAL_SIMPLIFICATION AddInequalities=false OnlyTrivialImplicationsArrayWrite=true OnlyTrivialImplicationsForModifiedArguments=true OnlyArgumentsInFormula=true [2021-12-19 17:49:54,717 INFO L141 MapEliminator]: Using MapEliminator with SimplificationTechnique=SIMPLIFY_DDA XnfConversionTechnique=BOTTOM_UP_WITH_LOCAL_SIMPLIFICATION AddInequalities=false OnlyTrivialImplicationsArrayWrite=true OnlyTrivialImplicationsForModifiedArguments=true OnlyArgumentsInFormula=true [2021-12-19 17:49:54,718 INFO L141 MapEliminator]: Using MapEliminator with SimplificationTechnique=SIMPLIFY_DDA XnfConversionTechnique=BOTTOM_UP_WITH_LOCAL_SIMPLIFICATION AddInequalities=false OnlyTrivialImplicationsArrayWrite=true OnlyTrivialImplicationsForModifiedArguments=true OnlyArgumentsInFormula=true [2021-12-19 17:49:54,720 INFO L141 MapEliminator]: Using MapEliminator with SimplificationTechnique=SIMPLIFY_DDA XnfConversionTechnique=BOTTOM_UP_WITH_LOCAL_SIMPLIFICATION AddInequalities=false OnlyTrivialImplicationsArrayWrite=true OnlyTrivialImplicationsForModifiedArguments=true OnlyArgumentsInFormula=true [2021-12-19 17:49:54,889 INFO L294 LassoAnalysis]: Preprocessing complete. [2021-12-19 17:49:54,892 INFO L490 LassoAnalysis]: Using template 'affine'. [2021-12-19 17:49:54,893 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:54,893 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:54,899 INFO L229 MonitoredProcess]: Starting monitored process 2 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:54,900 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (2)] Waiting until timeout for monitored process [2021-12-19 17:49:54,901 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:54,908 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:54,908 INFO L351 nArgumentSynthesizer]: There is no stem transition; disabling supporting invariant generation. [2021-12-19 17:49:54,909 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:54,909 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:54,909 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:54,910 INFO L401 nArgumentSynthesizer]: We have 2 Motzkin's Theorem applications. [2021-12-19 17:49:54,910 INFO L402 nArgumentSynthesizer]: A total of 0 supporting invariants were added. [2021-12-19 17:49:54,943 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:54,959 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (2)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:54,959 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:54,959 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:54,960 INFO L229 MonitoredProcess]: Starting monitored process 3 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:54,962 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (3)] Waiting until timeout for monitored process [2021-12-19 17:49:54,964 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:54,971 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:54,971 INFO L351 nArgumentSynthesizer]: There is no stem transition; disabling supporting invariant generation. [2021-12-19 17:49:54,972 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:54,972 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:54,972 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:54,972 INFO L401 nArgumentSynthesizer]: We have 2 Motzkin's Theorem applications. [2021-12-19 17:49:54,972 INFO L402 nArgumentSynthesizer]: A total of 0 supporting invariants were added. [2021-12-19 17:49:54,984 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:54,999 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (3)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:54,999 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,000 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,000 INFO L229 MonitoredProcess]: Starting monitored process 4 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,001 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (4)] Waiting until timeout for monitored process [2021-12-19 17:49:55,004 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,010 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,010 INFO L351 nArgumentSynthesizer]: There is no stem transition; disabling supporting invariant generation. [2021-12-19 17:49:55,010 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,010 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,010 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,011 INFO L401 nArgumentSynthesizer]: We have 2 Motzkin's Theorem applications. [2021-12-19 17:49:55,011 INFO L402 nArgumentSynthesizer]: A total of 0 supporting invariants were added. [2021-12-19 17:49:55,026 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:55,042 INFO L552 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (4)] Ended with exit code 0 [2021-12-19 17:49:55,042 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,042 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,043 INFO L229 MonitoredProcess]: Starting monitored process 5 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,043 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (5)] Waiting until timeout for monitored process [2021-12-19 17:49:55,045 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,050 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,050 INFO L351 nArgumentSynthesizer]: There is no stem transition; disabling supporting invariant generation. [2021-12-19 17:49:55,051 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,051 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,051 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,051 INFO L401 nArgumentSynthesizer]: We have 2 Motzkin's Theorem applications. [2021-12-19 17:49:55,051 INFO L402 nArgumentSynthesizer]: A total of 0 supporting invariants were added. [2021-12-19 17:49:55,052 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:55,067 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (5)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:55,067 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,067 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,068 INFO L229 MonitoredProcess]: Starting monitored process 6 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,069 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (6)] Waiting until timeout for monitored process [2021-12-19 17:49:55,070 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,075 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,075 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,075 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,075 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,078 INFO L401 nArgumentSynthesizer]: We have 6 Motzkin's Theorem applications. [2021-12-19 17:49:55,078 INFO L402 nArgumentSynthesizer]: A total of 2 supporting invariants were added. [2021-12-19 17:49:55,088 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:55,103 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (6)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:55,103 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,103 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,104 INFO L229 MonitoredProcess]: Starting monitored process 7 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,109 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (7)] Waiting until timeout for monitored process [2021-12-19 17:49:55,110 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,116 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,117 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,117 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,117 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,119 INFO L401 nArgumentSynthesizer]: We have 6 Motzkin's Theorem applications. [2021-12-19 17:49:55,119 INFO L402 nArgumentSynthesizer]: A total of 2 supporting invariants were added. [2021-12-19 17:49:55,134 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:55,149 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (7)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:55,149 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,149 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,151 INFO L229 MonitoredProcess]: Starting monitored process 8 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,153 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (8)] Waiting until timeout for monitored process [2021-12-19 17:49:55,154 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,161 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,161 INFO L351 nArgumentSynthesizer]: There is no stem transition; disabling supporting invariant generation. [2021-12-19 17:49:55,161 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,161 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,161 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,162 INFO L401 nArgumentSynthesizer]: We have 2 Motzkin's Theorem applications. [2021-12-19 17:49:55,162 INFO L402 nArgumentSynthesizer]: A total of 0 supporting invariants were added. [2021-12-19 17:49:55,164 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:55,182 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (8)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:55,182 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,182 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,183 INFO L229 MonitoredProcess]: Starting monitored process 9 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,187 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (9)] Waiting until timeout for monitored process [2021-12-19 17:49:55,188 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,194 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,194 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,194 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,194 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,196 INFO L401 nArgumentSynthesizer]: We have 6 Motzkin's Theorem applications. [2021-12-19 17:49:55,196 INFO L402 nArgumentSynthesizer]: A total of 2 supporting invariants were added. [2021-12-19 17:49:55,219 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:55,234 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (9)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:55,234 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,235 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,235 INFO L229 MonitoredProcess]: Starting monitored process 10 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,236 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (10)] Waiting until timeout for monitored process [2021-12-19 17:49:55,237 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,242 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,243 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,243 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,243 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,245 INFO L401 nArgumentSynthesizer]: We have 6 Motzkin's Theorem applications. [2021-12-19 17:49:55,245 INFO L402 nArgumentSynthesizer]: A total of 2 supporting invariants were added. [2021-12-19 17:49:55,258 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:55,272 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (10)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:55,273 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,273 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,273 INFO L229 MonitoredProcess]: Starting monitored process 11 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,274 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (11)] Waiting until timeout for monitored process [2021-12-19 17:49:55,276 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,281 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,281 INFO L351 nArgumentSynthesizer]: There is no stem transition; disabling supporting invariant generation. [2021-12-19 17:49:55,281 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,281 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,281 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,282 INFO L401 nArgumentSynthesizer]: We have 2 Motzkin's Theorem applications. [2021-12-19 17:49:55,282 INFO L402 nArgumentSynthesizer]: A total of 0 supporting invariants were added. [2021-12-19 17:49:55,283 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:55,298 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (11)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:55,298 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,299 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,299 INFO L229 MonitoredProcess]: Starting monitored process 12 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,300 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (12)] Waiting until timeout for monitored process [2021-12-19 17:49:55,303 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,308 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,308 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,308 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,308 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,310 INFO L401 nArgumentSynthesizer]: We have 6 Motzkin's Theorem applications. [2021-12-19 17:49:55,310 INFO L402 nArgumentSynthesizer]: A total of 2 supporting invariants were added. [2021-12-19 17:49:55,312 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:55,329 INFO L552 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (12)] Ended with exit code 0 [2021-12-19 17:49:55,332 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,332 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,333 INFO L229 MonitoredProcess]: Starting monitored process 13 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,333 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (13)] Waiting until timeout for monitored process [2021-12-19 17:49:55,336 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,341 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,341 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,341 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,341 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,343 INFO L401 nArgumentSynthesizer]: We have 6 Motzkin's Theorem applications. [2021-12-19 17:49:55,343 INFO L402 nArgumentSynthesizer]: A total of 2 supporting invariants were added. [2021-12-19 17:49:55,346 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:55,360 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (13)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:55,360 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,360 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,361 INFO L229 MonitoredProcess]: Starting monitored process 14 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,362 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (14)] Waiting until timeout for monitored process [2021-12-19 17:49:55,363 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,368 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,368 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,369 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,369 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,371 INFO L401 nArgumentSynthesizer]: We have 6 Motzkin's Theorem applications. [2021-12-19 17:49:55,371 INFO L402 nArgumentSynthesizer]: A total of 2 supporting invariants were added. [2021-12-19 17:49:55,387 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:55,402 INFO L552 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (14)] Ended with exit code 0 [2021-12-19 17:49:55,402 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,402 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,403 INFO L229 MonitoredProcess]: Starting monitored process 15 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,404 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (15)] Waiting until timeout for monitored process [2021-12-19 17:49:55,405 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,410 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,410 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,411 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,411 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,413 INFO L401 nArgumentSynthesizer]: We have 6 Motzkin's Theorem applications. [2021-12-19 17:49:55,413 INFO L402 nArgumentSynthesizer]: A total of 2 supporting invariants were added. [2021-12-19 17:49:55,427 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:55,454 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (15)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:55,454 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,454 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,455 INFO L229 MonitoredProcess]: Starting monitored process 16 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,456 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (16)] Waiting until timeout for monitored process [2021-12-19 17:49:55,458 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,463 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,463 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,463 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,463 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,465 INFO L401 nArgumentSynthesizer]: We have 6 Motzkin's Theorem applications. [2021-12-19 17:49:55,465 INFO L402 nArgumentSynthesizer]: A total of 2 supporting invariants were added. [2021-12-19 17:49:55,491 INFO L527 LassoAnalysis]: Proving termination failed for this template and these settings. [2021-12-19 17:49:55,507 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (16)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:55,507 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,508 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,508 INFO L229 MonitoredProcess]: Starting monitored process 17 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,509 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (17)] Waiting until timeout for monitored process [2021-12-19 17:49:55,511 INFO L120 nArgumentSynthesizer]: Termination Analysis Settings: Termination analysis: LINEAR_WITH_GUESSESNumber of strict supporting invariants: 0Number of non-strict supporting invariants: 1Consider only non-deceasing supporting invariants: trueSimplify termination arguments: trueSimplify supporting invariants: trueOverapproximate stem: false [2021-12-19 17:49:55,517 INFO L338 nArgumentSynthesizer]: Template has degree 0. [2021-12-19 17:49:55,517 INFO L203 nArgumentSynthesizer]: 1 stem disjuncts [2021-12-19 17:49:55,517 INFO L204 nArgumentSynthesizer]: 1 loop disjuncts [2021-12-19 17:49:55,517 INFO L205 nArgumentSynthesizer]: 2 template conjuncts. [2021-12-19 17:49:55,520 INFO L401 nArgumentSynthesizer]: We have 6 Motzkin's Theorem applications. [2021-12-19 17:49:55,521 INFO L402 nArgumentSynthesizer]: A total of 2 supporting invariants were added. [2021-12-19 17:49:55,529 INFO L420 nArgumentSynthesizer]: Found a termination argument, trying to simplify. [2021-12-19 17:49:55,579 INFO L443 ModelExtractionUtils]: Simplification made 12 calls to the SMT solver. [2021-12-19 17:49:55,580 INFO L444 ModelExtractionUtils]: 5 out of 16 variables were initially zero. Simplification set additionally 8 variables to zero. [2021-12-19 17:49:55,581 INFO L168 SolverBuilder]: Constructing external solver with command: z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 [2021-12-19 17:49:55,581 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:55,596 INFO L229 MonitoredProcess]: Starting monitored process 18 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (exit command is (exit), workingDir is null) [2021-12-19 17:49:55,597 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (18)] Waiting until timeout for monitored process [2021-12-19 17:49:55,611 INFO L435 nArgumentSynthesizer]: Simplifying supporting invariants... [2021-12-19 17:49:55,628 INFO L438 nArgumentSynthesizer]: Removed 2 redundant supporting invariants from a total of 2. [2021-12-19 17:49:55,629 INFO L513 LassoAnalysis]: Proved termination. [2021-12-19 17:49:55,629 INFO L515 LassoAnalysis]: Termination argument consisting of: Ranking function f(ULTIMATE.start_main_~num~0#1, ULTIMATE.start_main_~i~0#1) = 1*ULTIMATE.start_main_~num~0#1 - 1*ULTIMATE.start_main_~i~0#1 Supporting invariants [] [2021-12-19 17:49:55,646 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (17)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:55,656 INFO L297 tatePredicateManager]: 5 out of 5 supporting invariants were superfluous and have been removed [2021-12-19 17:49:55,671 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:55,690 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:49:55,691 INFO L263 TraceCheckSpWp]: Trace formula consists of 35 conjuncts, 2 conjunts are in the unsatisfiable core [2021-12-19 17:49:55,692 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:49:55,701 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:49:55,701 INFO L263 TraceCheckSpWp]: Trace formula consists of 13 conjuncts, 4 conjunts are in the unsatisfiable core [2021-12-19 17:49:55,702 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:49:55,711 INFO L134 CoverageAnalysis]: Checked inductivity of 0 backedges. 0 proven. 0 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:55,735 INFO L152 lantAutomatonBouncer]: Defining deterministic Buchi interpolant automaton with honda bouncer for stem and without honda bouncer for loop.1 stem predicates 2 loop predicates [2021-12-19 17:49:55,736 INFO L71 iDifferenceNCSBLazy3]: Start buchiDifferenceNCSBLazy3. First operand has 24 states, 23 states have (on average 1.434782608695652) internal successors, (33), 23 states have internal predecessors, (33), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) Second operand has 3 states, 3 states have (on average 1.3333333333333333) internal successors, (4), 3 states have internal predecessors, (4), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:55,763 INFO L75 iDifferenceNCSBLazy3]: Finished buchiDifferenceNCSBLazy3. First operand has 24 states, 23 states have (on average 1.434782608695652) internal successors, (33), 23 states have internal predecessors, (33), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0). Second operand has 3 states, 3 states have (on average 1.3333333333333333) internal successors, (4), 3 states have internal predecessors, (4), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) Result 47 states and 67 transitions. Complement of second has 8 states. [2021-12-19 17:49:55,764 INFO L141 InterpolantAutomaton]: Switched to read-only mode: Buchi interpolant automaton has 5 states 1 stem states 2 non-accepting loop states 1 accepting loop states [2021-12-19 17:49:55,767 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 3 states, 3 states have (on average 1.3333333333333333) internal successors, (4), 3 states have internal predecessors, (4), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:55,768 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 5 states to 5 states and 33 transitions. [2021-12-19 17:49:55,769 INFO L84 BuchiAccepts]: Start buchiAccepts Operand 5 states and 33 transitions. Stem has 2 letters. Loop has 2 letters. [2021-12-19 17:49:55,769 INFO L116 BuchiAccepts]: Finished buchiAccepts. [2021-12-19 17:49:55,769 INFO L84 BuchiAccepts]: Start buchiAccepts Operand 5 states and 33 transitions. Stem has 4 letters. Loop has 2 letters. [2021-12-19 17:49:55,769 INFO L116 BuchiAccepts]: Finished buchiAccepts. [2021-12-19 17:49:55,770 INFO L84 BuchiAccepts]: Start buchiAccepts Operand 5 states and 33 transitions. Stem has 2 letters. Loop has 4 letters. [2021-12-19 17:49:55,770 INFO L116 BuchiAccepts]: Finished buchiAccepts. [2021-12-19 17:49:55,770 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 47 states and 67 transitions. [2021-12-19 17:49:55,772 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 14 [2021-12-19 17:49:55,774 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 47 states to 21 states and 29 transitions. [2021-12-19 17:49:55,775 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 18 [2021-12-19 17:49:55,775 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 19 [2021-12-19 17:49:55,775 INFO L73 IsDeterministic]: Start isDeterministic. Operand 21 states and 29 transitions. [2021-12-19 17:49:55,776 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:49:55,776 INFO L681 BuchiCegarLoop]: Abstraction has 21 states and 29 transitions. [2021-12-19 17:49:55,785 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 21 states and 29 transitions. [2021-12-19 17:49:55,790 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 21 to 21. [2021-12-19 17:49:55,790 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 21 states, 21 states have (on average 1.380952380952381) internal successors, (29), 20 states have internal predecessors, (29), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:55,791 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 21 states to 21 states and 29 transitions. [2021-12-19 17:49:55,791 INFO L704 BuchiCegarLoop]: Abstraction has 21 states and 29 transitions. [2021-12-19 17:49:55,791 INFO L587 BuchiCegarLoop]: Abstraction has 21 states and 29 transitions. [2021-12-19 17:49:55,791 INFO L425 BuchiCegarLoop]: ======== Iteration 2============ [2021-12-19 17:49:55,791 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 21 states and 29 transitions. [2021-12-19 17:49:55,792 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 14 [2021-12-19 17:49:55,792 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:49:55,792 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:49:55,792 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [1, 1, 1, 1] [2021-12-19 17:49:55,792 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:49:55,793 INFO L791 eck$LassoCheckResult]: Stem: 133#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 134#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 140#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 144#L27-4 main_~i~0#1 := 0; 145#L32-3 [2021-12-19 17:49:55,793 INFO L793 eck$LassoCheckResult]: Loop: 145#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 150#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 139#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 145#L32-3 [2021-12-19 17:49:55,793 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:55,793 INFO L85 PathProgramCache]: Analyzing trace with hash 925707, now seen corresponding path program 1 times [2021-12-19 17:49:55,793 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:55,794 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1145232330] [2021-12-19 17:49:55,794 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:55,794 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:55,801 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:55,801 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:55,805 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:55,807 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:55,807 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:55,807 INFO L85 PathProgramCache]: Analyzing trace with hash 54137, now seen corresponding path program 1 times [2021-12-19 17:49:55,808 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:55,808 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1222006052] [2021-12-19 17:49:55,808 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:55,808 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:55,815 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:55,815 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:55,822 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:55,828 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:55,828 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:55,828 INFO L85 PathProgramCache]: Analyzing trace with hash 1807957807, now seen corresponding path program 1 times [2021-12-19 17:49:55,831 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:55,831 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1540264203] [2021-12-19 17:49:55,832 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:55,832 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:55,841 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:49:55,885 INFO L134 CoverageAnalysis]: Checked inductivity of 0 backedges. 0 proven. 0 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:55,885 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:49:55,885 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1540264203] [2021-12-19 17:49:55,886 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1540264203] provided 1 perfect and 0 imperfect interpolant sequences [2021-12-19 17:49:55,886 INFO L186 FreeRefinementEngine]: Found 1 perfect and 0 imperfect interpolant sequences. [2021-12-19 17:49:55,886 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [5] imperfect sequences [] total 5 [2021-12-19 17:49:55,886 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1734973734] [2021-12-19 17:49:55,887 INFO L85 oduleStraightlineAll]: Using 1 perfect interpolants to construct interpolant automaton [2021-12-19 17:49:55,948 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:49:55,951 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 5 interpolants. [2021-12-19 17:49:55,953 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=9, Invalid=11, Unknown=0, NotChecked=0, Total=20 [2021-12-19 17:49:55,954 INFO L87 Difference]: Start difference. First operand 21 states and 29 transitions. cyclomatic complexity: 11 Second operand has 5 states, 5 states have (on average 1.4) internal successors, (7), 5 states have internal predecessors, (7), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:56,027 INFO L540 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 SMTLIB2_COMPLIANT=true -memory:1024 -smt2 -in -t:12000 (18)] Forceful destruction successful, exit code 0 [2021-12-19 17:49:56,029 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:49:56,029 INFO L93 Difference]: Finished difference Result 40 states and 47 transitions. [2021-12-19 17:49:56,029 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 4 states. [2021-12-19 17:49:56,030 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 40 states and 47 transitions. [2021-12-19 17:49:56,031 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:56,031 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 40 states to 32 states and 38 transitions. [2021-12-19 17:49:56,032 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 29 [2021-12-19 17:49:56,032 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 29 [2021-12-19 17:49:56,032 INFO L73 IsDeterministic]: Start isDeterministic. Operand 32 states and 38 transitions. [2021-12-19 17:49:56,032 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:49:56,032 INFO L681 BuchiCegarLoop]: Abstraction has 32 states and 38 transitions. [2021-12-19 17:49:56,032 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 32 states and 38 transitions. [2021-12-19 17:49:56,033 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 32 to 20. [2021-12-19 17:49:56,034 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 20 states, 20 states have (on average 1.2) internal successors, (24), 19 states have internal predecessors, (24), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:56,034 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 20 states to 20 states and 24 transitions. [2021-12-19 17:49:56,034 INFO L704 BuchiCegarLoop]: Abstraction has 20 states and 24 transitions. [2021-12-19 17:49:56,034 INFO L587 BuchiCegarLoop]: Abstraction has 20 states and 24 transitions. [2021-12-19 17:49:56,034 INFO L425 BuchiCegarLoop]: ======== Iteration 3============ [2021-12-19 17:49:56,034 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 20 states and 24 transitions. [2021-12-19 17:49:56,035 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:56,035 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:49:56,035 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:49:56,036 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [1, 1, 1, 1, 1, 1, 1] [2021-12-19 17:49:56,036 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:49:56,036 INFO L791 eck$LassoCheckResult]: Stem: 204#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 205#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 210#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 213#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 214#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 215#L27-4 main_~i~0#1 := 0; 216#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 220#L34 [2021-12-19 17:49:56,036 INFO L793 eck$LassoCheckResult]: Loop: 220#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 209#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 217#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 220#L34 [2021-12-19 17:49:56,036 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:56,036 INFO L85 PathProgramCache]: Analyzing trace with hash 1809669547, now seen corresponding path program 1 times [2021-12-19 17:49:56,037 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:56,037 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [266948096] [2021-12-19 17:49:56,037 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:56,037 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:56,046 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:56,046 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:56,052 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:56,055 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:56,055 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:56,057 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 2 times [2021-12-19 17:49:56,058 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:56,058 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1446706114] [2021-12-19 17:49:56,058 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:56,058 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:56,069 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:56,074 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:56,078 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:56,082 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:56,083 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:56,083 INFO L85 PathProgramCache]: Analyzing trace with hash 1436015051, now seen corresponding path program 1 times [2021-12-19 17:49:56,083 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:56,084 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1477226424] [2021-12-19 17:49:56,084 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:56,084 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:56,093 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:49:56,123 INFO L134 CoverageAnalysis]: Checked inductivity of 2 backedges. 0 proven. 2 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:56,124 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:49:56,124 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1477226424] [2021-12-19 17:49:56,124 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1477226424] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:49:56,124 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [916924409] [2021-12-19 17:49:56,124 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:56,125 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:49:56,125 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:56,126 INFO L229 MonitoredProcess]: Starting monitored process 19 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:49:56,127 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (19)] Waiting until timeout for monitored process [2021-12-19 17:49:56,154 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:49:56,155 INFO L263 TraceCheckSpWp]: Trace formula consists of 66 conjuncts, 6 conjunts are in the unsatisfiable core [2021-12-19 17:49:56,156 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:49:56,203 INFO L134 CoverageAnalysis]: Checked inductivity of 2 backedges. 1 proven. 1 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:56,203 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:49:56,228 INFO L134 CoverageAnalysis]: Checked inductivity of 2 backedges. 1 proven. 1 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:56,228 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [916924409] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:49:56,228 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:49:56,228 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [6, 6, 6] total 10 [2021-12-19 17:49:56,228 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1778471259] [2021-12-19 17:49:56,229 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:49:56,261 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:49:56,261 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 11 interpolants. [2021-12-19 17:49:56,261 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=35, Invalid=75, Unknown=0, NotChecked=0, Total=110 [2021-12-19 17:49:56,261 INFO L87 Difference]: Start difference. First operand 20 states and 24 transitions. cyclomatic complexity: 7 Second operand has 11 states, 10 states have (on average 2.2) internal successors, (22), 11 states have internal predecessors, (22), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:56,346 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:49:56,346 INFO L93 Difference]: Finished difference Result 63 states and 74 transitions. [2021-12-19 17:49:56,346 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 8 states. [2021-12-19 17:49:56,347 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 63 states and 74 transitions. [2021-12-19 17:49:56,348 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:56,349 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 63 states to 46 states and 54 transitions. [2021-12-19 17:49:56,349 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 41 [2021-12-19 17:49:56,349 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 41 [2021-12-19 17:49:56,349 INFO L73 IsDeterministic]: Start isDeterministic. Operand 46 states and 54 transitions. [2021-12-19 17:49:56,349 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:49:56,349 INFO L681 BuchiCegarLoop]: Abstraction has 46 states and 54 transitions. [2021-12-19 17:49:56,349 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 46 states and 54 transitions. [2021-12-19 17:49:56,350 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 46 to 28. [2021-12-19 17:49:56,351 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 28 states, 28 states have (on average 1.1785714285714286) internal successors, (33), 27 states have internal predecessors, (33), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:56,351 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 28 states to 28 states and 33 transitions. [2021-12-19 17:49:56,351 INFO L704 BuchiCegarLoop]: Abstraction has 28 states and 33 transitions. [2021-12-19 17:49:56,351 INFO L587 BuchiCegarLoop]: Abstraction has 28 states and 33 transitions. [2021-12-19 17:49:56,351 INFO L425 BuchiCegarLoop]: ======== Iteration 4============ [2021-12-19 17:49:56,351 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 28 states and 33 transitions. [2021-12-19 17:49:56,352 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:56,352 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:49:56,352 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:49:56,352 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [2, 2, 2, 1, 1, 1, 1, 1, 1] [2021-12-19 17:49:56,352 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:49:56,352 INFO L791 eck$LassoCheckResult]: Stem: 361#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 362#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 367#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 381#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 382#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 370#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 371#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 372#L27-4 main_~i~0#1 := 0; 373#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 378#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 366#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 375#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 380#L34 [2021-12-19 17:49:56,352 INFO L793 eck$LassoCheckResult]: Loop: 380#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 385#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 384#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 380#L34 [2021-12-19 17:49:56,352 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:56,353 INFO L85 PathProgramCache]: Analyzing trace with hash 780817485, now seen corresponding path program 2 times [2021-12-19 17:49:56,353 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:56,353 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1780072365] [2021-12-19 17:49:56,353 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:56,353 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:56,365 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:56,365 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:56,377 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:56,380 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:56,380 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:56,380 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 3 times [2021-12-19 17:49:56,380 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:56,380 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [143936701] [2021-12-19 17:49:56,380 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:56,380 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:56,384 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:56,384 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:56,386 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:56,387 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:56,387 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:56,387 INFO L85 PathProgramCache]: Analyzing trace with hash -209139735, now seen corresponding path program 3 times [2021-12-19 17:49:56,387 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:56,387 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [2130240502] [2021-12-19 17:49:56,387 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:56,387 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:56,400 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:49:56,448 INFO L134 CoverageAnalysis]: Checked inductivity of 9 backedges. 1 proven. 8 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:56,448 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:49:56,448 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [2130240502] [2021-12-19 17:49:56,448 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [2130240502] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:49:56,449 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1671271321] [2021-12-19 17:49:56,449 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:49:56,449 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:49:56,449 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:56,450 INFO L229 MonitoredProcess]: Starting monitored process 20 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:49:56,478 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (20)] Waiting until timeout for monitored process [2021-12-19 17:49:56,494 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 3 check-sat command(s) [2021-12-19 17:49:56,495 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:49:56,495 INFO L263 TraceCheckSpWp]: Trace formula consists of 87 conjuncts, 8 conjunts are in the unsatisfiable core [2021-12-19 17:49:56,496 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:49:56,572 INFO L134 CoverageAnalysis]: Checked inductivity of 9 backedges. 5 proven. 4 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:56,572 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:49:56,604 INFO L134 CoverageAnalysis]: Checked inductivity of 9 backedges. 5 proven. 4 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:56,605 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1671271321] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:49:56,605 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:49:56,605 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [8, 8, 8] total 13 [2021-12-19 17:49:56,605 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [412795280] [2021-12-19 17:49:56,605 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:49:56,636 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:49:56,638 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 14 interpolants. [2021-12-19 17:49:56,638 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=53, Invalid=129, Unknown=0, NotChecked=0, Total=182 [2021-12-19 17:49:56,639 INFO L87 Difference]: Start difference. First operand 28 states and 33 transitions. cyclomatic complexity: 8 Second operand has 14 states, 13 states have (on average 2.3076923076923075) internal successors, (30), 14 states have internal predecessors, (30), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:56,745 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:49:56,745 INFO L93 Difference]: Finished difference Result 89 states and 104 transitions. [2021-12-19 17:49:56,745 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 10 states. [2021-12-19 17:49:56,746 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 89 states and 104 transitions. [2021-12-19 17:49:56,750 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:56,751 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 89 states to 60 states and 70 transitions. [2021-12-19 17:49:56,751 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 53 [2021-12-19 17:49:56,752 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 53 [2021-12-19 17:49:56,752 INFO L73 IsDeterministic]: Start isDeterministic. Operand 60 states and 70 transitions. [2021-12-19 17:49:56,752 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:49:56,752 INFO L681 BuchiCegarLoop]: Abstraction has 60 states and 70 transitions. [2021-12-19 17:49:56,752 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 60 states and 70 transitions. [2021-12-19 17:49:56,756 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 60 to 36. [2021-12-19 17:49:56,756 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 36 states, 36 states have (on average 1.1666666666666667) internal successors, (42), 35 states have internal predecessors, (42), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:56,757 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 36 states to 36 states and 42 transitions. [2021-12-19 17:49:56,757 INFO L704 BuchiCegarLoop]: Abstraction has 36 states and 42 transitions. [2021-12-19 17:49:56,757 INFO L587 BuchiCegarLoop]: Abstraction has 36 states and 42 transitions. [2021-12-19 17:49:56,757 INFO L425 BuchiCegarLoop]: ======== Iteration 5============ [2021-12-19 17:49:56,757 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 36 states and 42 transitions. [2021-12-19 17:49:56,761 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:56,761 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:49:56,761 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:49:56,762 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [3, 3, 3, 2, 2, 1, 1, 1, 1] [2021-12-19 17:49:56,762 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:49:56,762 INFO L791 eck$LassoCheckResult]: Stem: 587#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 588#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 593#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 604#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 605#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 596#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 597#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 608#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 607#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 598#L27-4 main_~i~0#1 := 0; 599#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 603#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 592#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 600#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 618#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 616#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 615#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 610#L34 [2021-12-19 17:49:56,762 INFO L793 eck$LassoCheckResult]: Loop: 610#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 611#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 609#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 610#L34 [2021-12-19 17:49:56,762 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:56,762 INFO L85 PathProgramCache]: Analyzing trace with hash -286749017, now seen corresponding path program 4 times [2021-12-19 17:49:56,763 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:56,763 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [607845467] [2021-12-19 17:49:56,763 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:56,763 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:56,790 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:56,794 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:56,802 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:56,808 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:56,810 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:56,810 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 4 times [2021-12-19 17:49:56,810 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:56,811 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [223930476] [2021-12-19 17:49:56,811 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:56,811 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:56,815 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:56,815 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:56,818 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:56,819 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:56,820 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:56,820 INFO L85 PathProgramCache]: Analyzing trace with hash 150026063, now seen corresponding path program 5 times [2021-12-19 17:49:56,820 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:56,820 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [569885777] [2021-12-19 17:49:56,820 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:56,820 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:56,828 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:49:56,882 INFO L134 CoverageAnalysis]: Checked inductivity of 21 backedges. 5 proven. 16 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:56,883 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:49:56,883 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [569885777] [2021-12-19 17:49:56,883 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [569885777] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:49:56,883 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [894874613] [2021-12-19 17:49:56,883 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:49:56,884 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:49:56,884 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:56,885 INFO L229 MonitoredProcess]: Starting monitored process 21 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:49:56,886 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (21)] Waiting until timeout for monitored process [2021-12-19 17:49:56,922 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 4 check-sat command(s) [2021-12-19 17:49:56,923 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:49:56,923 INFO L263 TraceCheckSpWp]: Trace formula consists of 108 conjuncts, 10 conjunts are in the unsatisfiable core [2021-12-19 17:49:56,924 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:49:57,022 INFO L134 CoverageAnalysis]: Checked inductivity of 21 backedges. 12 proven. 9 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:57,022 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:49:57,056 INFO L134 CoverageAnalysis]: Checked inductivity of 21 backedges. 12 proven. 9 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:57,056 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [894874613] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:49:57,056 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:49:57,056 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [10, 10, 10] total 16 [2021-12-19 17:49:57,056 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1486683564] [2021-12-19 17:49:57,056 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:49:57,083 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:49:57,083 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 17 interpolants. [2021-12-19 17:49:57,084 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=75, Invalid=197, Unknown=0, NotChecked=0, Total=272 [2021-12-19 17:49:57,084 INFO L87 Difference]: Start difference. First operand 36 states and 42 transitions. cyclomatic complexity: 9 Second operand has 17 states, 16 states have (on average 2.375) internal successors, (38), 17 states have internal predecessors, (38), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:57,210 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:49:57,210 INFO L93 Difference]: Finished difference Result 115 states and 134 transitions. [2021-12-19 17:49:57,211 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 12 states. [2021-12-19 17:49:57,211 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 115 states and 134 transitions. [2021-12-19 17:49:57,212 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:57,212 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 115 states to 74 states and 86 transitions. [2021-12-19 17:49:57,213 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 65 [2021-12-19 17:49:57,213 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 65 [2021-12-19 17:49:57,213 INFO L73 IsDeterministic]: Start isDeterministic. Operand 74 states and 86 transitions. [2021-12-19 17:49:57,213 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:49:57,213 INFO L681 BuchiCegarLoop]: Abstraction has 74 states and 86 transitions. [2021-12-19 17:49:57,213 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 74 states and 86 transitions. [2021-12-19 17:49:57,214 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 74 to 44. [2021-12-19 17:49:57,215 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 44 states, 44 states have (on average 1.1590909090909092) internal successors, (51), 43 states have internal predecessors, (51), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:57,215 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 44 states to 44 states and 51 transitions. [2021-12-19 17:49:57,215 INFO L704 BuchiCegarLoop]: Abstraction has 44 states and 51 transitions. [2021-12-19 17:49:57,215 INFO L587 BuchiCegarLoop]: Abstraction has 44 states and 51 transitions. [2021-12-19 17:49:57,215 INFO L425 BuchiCegarLoop]: ======== Iteration 6============ [2021-12-19 17:49:57,215 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 44 states and 51 transitions. [2021-12-19 17:49:57,215 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:57,215 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:49:57,215 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:49:57,216 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [4, 4, 4, 3, 3, 1, 1, 1, 1] [2021-12-19 17:49:57,216 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:49:57,216 INFO L791 eck$LassoCheckResult]: Stem: 882#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 883#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 888#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 902#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 903#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 891#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 892#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 911#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 910#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 906#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 905#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 893#L27-4 main_~i~0#1 := 0; 894#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 922#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 920#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 919#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 899#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 887#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 896#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 901#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 916#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 915#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 908#L34 [2021-12-19 17:49:57,216 INFO L793 eck$LassoCheckResult]: Loop: 908#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 909#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 907#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 908#L34 [2021-12-19 17:49:57,217 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:57,217 INFO L85 PathProgramCache]: Analyzing trace with hash 1958082385, now seen corresponding path program 6 times [2021-12-19 17:49:57,217 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:57,217 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1451968855] [2021-12-19 17:49:57,217 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:57,217 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:57,229 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:57,229 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:57,248 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:57,256 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:57,256 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:57,257 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 5 times [2021-12-19 17:49:57,257 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:57,257 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1018533682] [2021-12-19 17:49:57,257 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:57,257 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:57,262 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:57,262 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:57,264 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:57,265 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:57,266 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:57,266 INFO L85 PathProgramCache]: Analyzing trace with hash -1013442971, now seen corresponding path program 7 times [2021-12-19 17:49:57,266 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:57,267 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [809605504] [2021-12-19 17:49:57,267 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:57,267 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:57,282 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:49:57,353 INFO L134 CoverageAnalysis]: Checked inductivity of 38 backedges. 12 proven. 26 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:57,353 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:49:57,353 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [809605504] [2021-12-19 17:49:57,353 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [809605504] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:49:57,354 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [226232228] [2021-12-19 17:49:57,354 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:49:57,354 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:49:57,354 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:57,355 INFO L229 MonitoredProcess]: Starting monitored process 22 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:49:57,364 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (22)] Waiting until timeout for monitored process [2021-12-19 17:49:57,407 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:49:57,408 INFO L263 TraceCheckSpWp]: Trace formula consists of 129 conjuncts, 12 conjunts are in the unsatisfiable core [2021-12-19 17:49:57,408 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:49:57,512 INFO L134 CoverageAnalysis]: Checked inductivity of 38 backedges. 22 proven. 16 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:57,512 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:49:57,561 INFO L134 CoverageAnalysis]: Checked inductivity of 38 backedges. 22 proven. 16 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:57,562 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [226232228] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:49:57,562 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:49:57,562 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [12, 12, 12] total 19 [2021-12-19 17:49:57,562 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [77647845] [2021-12-19 17:49:57,562 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:49:57,590 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:49:57,591 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 20 interpolants. [2021-12-19 17:49:57,591 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=101, Invalid=279, Unknown=0, NotChecked=0, Total=380 [2021-12-19 17:49:57,592 INFO L87 Difference]: Start difference. First operand 44 states and 51 transitions. cyclomatic complexity: 10 Second operand has 20 states, 19 states have (on average 2.4210526315789473) internal successors, (46), 20 states have internal predecessors, (46), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:57,757 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:49:57,757 INFO L93 Difference]: Finished difference Result 141 states and 164 transitions. [2021-12-19 17:49:57,757 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 14 states. [2021-12-19 17:49:57,758 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 141 states and 164 transitions. [2021-12-19 17:49:57,759 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:57,759 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 141 states to 88 states and 102 transitions. [2021-12-19 17:49:57,759 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 77 [2021-12-19 17:49:57,759 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 77 [2021-12-19 17:49:57,759 INFO L73 IsDeterministic]: Start isDeterministic. Operand 88 states and 102 transitions. [2021-12-19 17:49:57,760 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:49:57,760 INFO L681 BuchiCegarLoop]: Abstraction has 88 states and 102 transitions. [2021-12-19 17:49:57,760 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 88 states and 102 transitions. [2021-12-19 17:49:57,761 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 88 to 52. [2021-12-19 17:49:57,762 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 52 states, 52 states have (on average 1.1538461538461537) internal successors, (60), 51 states have internal predecessors, (60), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:57,762 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 52 states to 52 states and 60 transitions. [2021-12-19 17:49:57,762 INFO L704 BuchiCegarLoop]: Abstraction has 52 states and 60 transitions. [2021-12-19 17:49:57,762 INFO L587 BuchiCegarLoop]: Abstraction has 52 states and 60 transitions. [2021-12-19 17:49:57,762 INFO L425 BuchiCegarLoop]: ======== Iteration 7============ [2021-12-19 17:49:57,762 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 52 states and 60 transitions. [2021-12-19 17:49:57,762 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:57,762 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:49:57,762 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:49:57,763 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [5, 5, 5, 4, 4, 1, 1, 1, 1] [2021-12-19 17:49:57,763 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:49:57,763 INFO L791 eck$LassoCheckResult]: Stem: 1246#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 1247#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 1252#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 1266#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 1267#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 1255#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 1256#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 1277#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 1276#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 1275#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 1274#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 1270#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 1269#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 1257#L27-4 main_~i~0#1 := 0; 1258#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 1290#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 1287#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 1285#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 1286#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 1294#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 1293#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 1263#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 1251#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 1260#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 1265#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 1282#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 1281#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 1272#L34 [2021-12-19 17:49:57,764 INFO L793 eck$LassoCheckResult]: Loop: 1272#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 1273#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 1271#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 1272#L34 [2021-12-19 17:49:57,764 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:57,764 INFO L85 PathProgramCache]: Analyzing trace with hash -1204484189, now seen corresponding path program 8 times [2021-12-19 17:49:57,764 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:57,764 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [2008617592] [2021-12-19 17:49:57,764 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:57,765 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:57,779 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:57,779 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:57,793 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:57,797 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:57,797 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:57,797 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 6 times [2021-12-19 17:49:57,798 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:57,798 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [693825370] [2021-12-19 17:49:57,798 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:57,798 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:57,800 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:57,800 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:57,801 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:57,802 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:57,802 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:57,802 INFO L85 PathProgramCache]: Analyzing trace with hash 1663323347, now seen corresponding path program 9 times [2021-12-19 17:49:57,802 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:57,802 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1140576684] [2021-12-19 17:49:57,802 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:57,802 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:57,809 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:49:57,897 INFO L134 CoverageAnalysis]: Checked inductivity of 60 backedges. 22 proven. 38 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:57,898 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:49:57,898 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1140576684] [2021-12-19 17:49:57,898 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1140576684] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:49:57,898 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [820299202] [2021-12-19 17:49:57,898 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:49:57,898 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:49:57,898 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:57,899 INFO L229 MonitoredProcess]: Starting monitored process 23 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:49:57,900 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (23)] Waiting until timeout for monitored process [2021-12-19 17:49:57,947 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 6 check-sat command(s) [2021-12-19 17:49:57,947 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:49:57,947 INFO L263 TraceCheckSpWp]: Trace formula consists of 150 conjuncts, 14 conjunts are in the unsatisfiable core [2021-12-19 17:49:57,948 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:49:58,092 INFO L134 CoverageAnalysis]: Checked inductivity of 60 backedges. 35 proven. 25 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:58,093 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:49:58,161 INFO L134 CoverageAnalysis]: Checked inductivity of 60 backedges. 35 proven. 25 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:58,161 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [820299202] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:49:58,161 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:49:58,161 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [14, 14, 14] total 22 [2021-12-19 17:49:58,162 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [805325018] [2021-12-19 17:49:58,162 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:49:58,197 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:49:58,197 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 23 interpolants. [2021-12-19 17:49:58,197 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=131, Invalid=375, Unknown=0, NotChecked=0, Total=506 [2021-12-19 17:49:58,199 INFO L87 Difference]: Start difference. First operand 52 states and 60 transitions. cyclomatic complexity: 11 Second operand has 23 states, 22 states have (on average 2.4545454545454546) internal successors, (54), 23 states have internal predecessors, (54), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:58,379 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:49:58,379 INFO L93 Difference]: Finished difference Result 167 states and 194 transitions. [2021-12-19 17:49:58,383 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 16 states. [2021-12-19 17:49:58,383 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 167 states and 194 transitions. [2021-12-19 17:49:58,384 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:58,385 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 167 states to 102 states and 118 transitions. [2021-12-19 17:49:58,385 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 89 [2021-12-19 17:49:58,385 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 89 [2021-12-19 17:49:58,385 INFO L73 IsDeterministic]: Start isDeterministic. Operand 102 states and 118 transitions. [2021-12-19 17:49:58,386 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:49:58,386 INFO L681 BuchiCegarLoop]: Abstraction has 102 states and 118 transitions. [2021-12-19 17:49:58,386 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 102 states and 118 transitions. [2021-12-19 17:49:58,387 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 102 to 60. [2021-12-19 17:49:58,388 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 60 states, 60 states have (on average 1.15) internal successors, (69), 59 states have internal predecessors, (69), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:58,388 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 60 states to 60 states and 69 transitions. [2021-12-19 17:49:58,388 INFO L704 BuchiCegarLoop]: Abstraction has 60 states and 69 transitions. [2021-12-19 17:49:58,388 INFO L587 BuchiCegarLoop]: Abstraction has 60 states and 69 transitions. [2021-12-19 17:49:58,388 INFO L425 BuchiCegarLoop]: ======== Iteration 8============ [2021-12-19 17:49:58,388 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 60 states and 69 transitions. [2021-12-19 17:49:58,388 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:58,388 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:49:58,388 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:49:58,389 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [6, 6, 6, 5, 5, 1, 1, 1, 1] [2021-12-19 17:49:58,389 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:49:58,389 INFO L791 eck$LassoCheckResult]: Stem: 1679#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 1680#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 1685#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 1699#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 1700#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 1688#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 1689#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 1712#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 1711#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 1710#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 1709#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 1708#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 1707#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 1703#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 1702#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 1690#L27-4 main_~i~0#1 := 0; 1691#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 1733#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 1722#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 1720#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 1721#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 1725#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 1731#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 1730#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 1729#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 1728#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 1696#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 1684#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 1693#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 1698#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 1717#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 1716#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 1705#L34 [2021-12-19 17:49:58,389 INFO L793 eck$LassoCheckResult]: Loop: 1705#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 1706#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 1704#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 1705#L34 [2021-12-19 17:49:58,389 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:58,389 INFO L85 PathProgramCache]: Analyzing trace with hash -1715309995, now seen corresponding path program 10 times [2021-12-19 17:49:58,390 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:58,390 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [2042254529] [2021-12-19 17:49:58,390 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:58,390 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:58,404 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:58,404 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:58,417 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:58,419 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:58,420 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:58,420 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 7 times [2021-12-19 17:49:58,420 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:58,420 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [247098842] [2021-12-19 17:49:58,420 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:58,420 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:58,422 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:58,422 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:58,423 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:58,424 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:58,424 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:58,424 INFO L85 PathProgramCache]: Analyzing trace with hash 720866529, now seen corresponding path program 11 times [2021-12-19 17:49:58,424 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:58,424 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1042718869] [2021-12-19 17:49:58,425 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:58,425 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:58,431 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:49:58,524 INFO L134 CoverageAnalysis]: Checked inductivity of 87 backedges. 35 proven. 52 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:58,524 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:49:58,524 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1042718869] [2021-12-19 17:49:58,525 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1042718869] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:49:58,525 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1473974467] [2021-12-19 17:49:58,525 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:49:58,525 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:49:58,525 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:58,526 INFO L229 MonitoredProcess]: Starting monitored process 24 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:49:58,527 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (24)] Waiting until timeout for monitored process [2021-12-19 17:49:58,609 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 7 check-sat command(s) [2021-12-19 17:49:58,609 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:49:58,610 INFO L263 TraceCheckSpWp]: Trace formula consists of 171 conjuncts, 16 conjunts are in the unsatisfiable core [2021-12-19 17:49:58,611 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:49:58,788 INFO L134 CoverageAnalysis]: Checked inductivity of 87 backedges. 51 proven. 36 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:58,788 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:49:58,858 INFO L134 CoverageAnalysis]: Checked inductivity of 87 backedges. 51 proven. 36 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:58,858 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1473974467] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:49:58,859 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:49:58,859 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [16, 16, 16] total 25 [2021-12-19 17:49:58,859 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1683687191] [2021-12-19 17:49:58,859 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:49:58,889 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:49:58,889 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 26 interpolants. [2021-12-19 17:49:58,890 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=165, Invalid=485, Unknown=0, NotChecked=0, Total=650 [2021-12-19 17:49:58,890 INFO L87 Difference]: Start difference. First operand 60 states and 69 transitions. cyclomatic complexity: 12 Second operand has 26 states, 25 states have (on average 2.48) internal successors, (62), 26 states have internal predecessors, (62), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:59,106 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:49:59,107 INFO L93 Difference]: Finished difference Result 193 states and 224 transitions. [2021-12-19 17:49:59,107 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 18 states. [2021-12-19 17:49:59,107 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 193 states and 224 transitions. [2021-12-19 17:49:59,108 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:59,109 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 193 states to 116 states and 134 transitions. [2021-12-19 17:49:59,109 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 101 [2021-12-19 17:49:59,109 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 101 [2021-12-19 17:49:59,109 INFO L73 IsDeterministic]: Start isDeterministic. Operand 116 states and 134 transitions. [2021-12-19 17:49:59,109 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:49:59,110 INFO L681 BuchiCegarLoop]: Abstraction has 116 states and 134 transitions. [2021-12-19 17:49:59,110 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 116 states and 134 transitions. [2021-12-19 17:49:59,111 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 116 to 68. [2021-12-19 17:49:59,112 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 68 states, 68 states have (on average 1.1470588235294117) internal successors, (78), 67 states have internal predecessors, (78), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:59,112 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 68 states to 68 states and 78 transitions. [2021-12-19 17:49:59,112 INFO L704 BuchiCegarLoop]: Abstraction has 68 states and 78 transitions. [2021-12-19 17:49:59,112 INFO L587 BuchiCegarLoop]: Abstraction has 68 states and 78 transitions. [2021-12-19 17:49:59,112 INFO L425 BuchiCegarLoop]: ======== Iteration 9============ [2021-12-19 17:49:59,112 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 68 states and 78 transitions. [2021-12-19 17:49:59,112 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:59,112 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:49:59,112 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:49:59,113 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [7, 7, 7, 6, 6, 1, 1, 1, 1] [2021-12-19 17:49:59,113 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:49:59,113 INFO L791 eck$LassoCheckResult]: Stem: 2181#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 2182#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 2187#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2202#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2203#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2190#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2191#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2217#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2216#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2215#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2214#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2213#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2212#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2211#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2210#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2206#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2205#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 2192#L27-4 main_~i~0#1 := 0; 2193#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2225#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2226#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2227#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2231#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2230#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2243#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2240#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2238#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2237#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2235#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2234#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2233#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2199#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2186#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2196#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2201#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2222#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2221#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2208#L34 [2021-12-19 17:49:59,113 INFO L793 eck$LassoCheckResult]: Loop: 2208#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2209#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2207#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2208#L34 [2021-12-19 17:49:59,114 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:59,114 INFO L85 PathProgramCache]: Analyzing trace with hash 1748928671, now seen corresponding path program 12 times [2021-12-19 17:49:59,114 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:59,114 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1508258316] [2021-12-19 17:49:59,114 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:59,114 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:59,132 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:59,132 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:59,145 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:59,150 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:59,151 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:59,151 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 8 times [2021-12-19 17:49:59,151 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:59,151 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [639537185] [2021-12-19 17:49:59,151 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:59,152 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:59,156 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:59,156 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:59,158 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:59,160 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:59,161 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:59,161 INFO L85 PathProgramCache]: Analyzing trace with hash 85809751, now seen corresponding path program 13 times [2021-12-19 17:49:59,161 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:59,161 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1424162410] [2021-12-19 17:49:59,161 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:59,161 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:59,170 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:49:59,308 INFO L134 CoverageAnalysis]: Checked inductivity of 119 backedges. 51 proven. 68 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:59,308 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:49:59,308 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1424162410] [2021-12-19 17:49:59,308 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1424162410] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:49:59,308 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1412667757] [2021-12-19 17:49:59,308 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:49:59,309 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:49:59,309 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:49:59,310 INFO L229 MonitoredProcess]: Starting monitored process 25 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:49:59,311 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (25)] Waiting until timeout for monitored process [2021-12-19 17:49:59,359 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:49:59,360 INFO L263 TraceCheckSpWp]: Trace formula consists of 192 conjuncts, 18 conjunts are in the unsatisfiable core [2021-12-19 17:49:59,361 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:49:59,568 INFO L134 CoverageAnalysis]: Checked inductivity of 119 backedges. 70 proven. 49 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:59,568 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:49:59,641 INFO L134 CoverageAnalysis]: Checked inductivity of 119 backedges. 70 proven. 49 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:49:59,641 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1412667757] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:49:59,641 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:49:59,641 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [18, 18, 18] total 28 [2021-12-19 17:49:59,641 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [254363291] [2021-12-19 17:49:59,641 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:49:59,671 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:49:59,671 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 29 interpolants. [2021-12-19 17:49:59,671 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=203, Invalid=609, Unknown=0, NotChecked=0, Total=812 [2021-12-19 17:49:59,672 INFO L87 Difference]: Start difference. First operand 68 states and 78 transitions. cyclomatic complexity: 13 Second operand has 29 states, 28 states have (on average 2.5) internal successors, (70), 29 states have internal predecessors, (70), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:59,916 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:49:59,916 INFO L93 Difference]: Finished difference Result 219 states and 254 transitions. [2021-12-19 17:49:59,917 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 20 states. [2021-12-19 17:49:59,917 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 219 states and 254 transitions. [2021-12-19 17:49:59,918 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:59,919 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 219 states to 130 states and 150 transitions. [2021-12-19 17:49:59,919 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 113 [2021-12-19 17:49:59,919 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 113 [2021-12-19 17:49:59,919 INFO L73 IsDeterministic]: Start isDeterministic. Operand 130 states and 150 transitions. [2021-12-19 17:49:59,919 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:49:59,919 INFO L681 BuchiCegarLoop]: Abstraction has 130 states and 150 transitions. [2021-12-19 17:49:59,919 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 130 states and 150 transitions. [2021-12-19 17:49:59,921 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 130 to 76. [2021-12-19 17:49:59,921 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 76 states, 76 states have (on average 1.144736842105263) internal successors, (87), 75 states have internal predecessors, (87), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:49:59,922 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 76 states to 76 states and 87 transitions. [2021-12-19 17:49:59,922 INFO L704 BuchiCegarLoop]: Abstraction has 76 states and 87 transitions. [2021-12-19 17:49:59,922 INFO L587 BuchiCegarLoop]: Abstraction has 76 states and 87 transitions. [2021-12-19 17:49:59,922 INFO L425 BuchiCegarLoop]: ======== Iteration 10============ [2021-12-19 17:49:59,922 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 76 states and 87 transitions. [2021-12-19 17:49:59,922 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:49:59,922 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:49:59,922 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:49:59,923 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [8, 8, 8, 7, 7, 1, 1, 1, 1] [2021-12-19 17:49:59,923 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:49:59,923 INFO L791 eck$LassoCheckResult]: Stem: 2752#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 2753#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 2758#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2772#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2773#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2761#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2762#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2789#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2788#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2787#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2786#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2785#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2784#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2783#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2782#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2781#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2780#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 2776#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 2775#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 2763#L27-4 main_~i~0#1 := 0; 2764#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2823#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2799#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2797#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2798#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2802#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2822#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2819#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2817#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2816#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2813#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2811#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2810#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2808#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2806#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2805#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2769#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2757#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2766#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2771#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2794#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2793#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2778#L34 [2021-12-19 17:49:59,923 INFO L793 eck$LassoCheckResult]: Loop: 2778#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 2779#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 2777#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 2778#L34 [2021-12-19 17:49:59,923 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:59,923 INFO L85 PathProgramCache]: Analyzing trace with hash -1204550311, now seen corresponding path program 14 times [2021-12-19 17:49:59,924 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:59,924 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1508735815] [2021-12-19 17:49:59,924 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:59,924 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:59,958 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:59,958 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:59,973 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:59,976 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:59,976 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:59,976 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 9 times [2021-12-19 17:49:59,976 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:59,976 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [641865697] [2021-12-19 17:49:59,976 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:59,976 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:59,978 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:59,978 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:49:59,979 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:49:59,980 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:49:59,980 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:49:59,980 INFO L85 PathProgramCache]: Analyzing trace with hash -306517155, now seen corresponding path program 15 times [2021-12-19 17:49:59,980 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:49:59,980 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1416932019] [2021-12-19 17:49:59,980 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:49:59,980 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:49:59,989 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:00,127 INFO L134 CoverageAnalysis]: Checked inductivity of 156 backedges. 70 proven. 86 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:00,128 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:00,128 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1416932019] [2021-12-19 17:50:00,128 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1416932019] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:00,128 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1726595790] [2021-12-19 17:50:00,128 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:50:00,128 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:00,128 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:00,129 INFO L229 MonitoredProcess]: Starting monitored process 26 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:00,153 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (26)] Waiting until timeout for monitored process [2021-12-19 17:50:00,221 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 9 check-sat command(s) [2021-12-19 17:50:00,221 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:00,222 INFO L263 TraceCheckSpWp]: Trace formula consists of 213 conjuncts, 20 conjunts are in the unsatisfiable core [2021-12-19 17:50:00,223 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:00,466 INFO L134 CoverageAnalysis]: Checked inductivity of 156 backedges. 92 proven. 64 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:00,466 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:00,564 INFO L134 CoverageAnalysis]: Checked inductivity of 156 backedges. 92 proven. 64 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:00,565 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1726595790] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:00,565 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:00,565 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [20, 20, 20] total 31 [2021-12-19 17:50:00,565 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1660298339] [2021-12-19 17:50:00,565 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:00,612 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:00,612 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 32 interpolants. [2021-12-19 17:50:00,612 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=245, Invalid=747, Unknown=0, NotChecked=0, Total=992 [2021-12-19 17:50:00,612 INFO L87 Difference]: Start difference. First operand 76 states and 87 transitions. cyclomatic complexity: 14 Second operand has 32 states, 31 states have (on average 2.5161290322580645) internal successors, (78), 32 states have internal predecessors, (78), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:00,912 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:00,912 INFO L93 Difference]: Finished difference Result 245 states and 284 transitions. [2021-12-19 17:50:00,912 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 22 states. [2021-12-19 17:50:00,913 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 245 states and 284 transitions. [2021-12-19 17:50:00,914 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:00,914 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 245 states to 144 states and 166 transitions. [2021-12-19 17:50:00,914 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 125 [2021-12-19 17:50:00,914 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 125 [2021-12-19 17:50:00,914 INFO L73 IsDeterministic]: Start isDeterministic. Operand 144 states and 166 transitions. [2021-12-19 17:50:00,915 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:00,915 INFO L681 BuchiCegarLoop]: Abstraction has 144 states and 166 transitions. [2021-12-19 17:50:00,915 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 144 states and 166 transitions. [2021-12-19 17:50:00,916 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 144 to 84. [2021-12-19 17:50:00,917 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 84 states, 84 states have (on average 1.1428571428571428) internal successors, (96), 83 states have internal predecessors, (96), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:00,917 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 84 states to 84 states and 96 transitions. [2021-12-19 17:50:00,917 INFO L704 BuchiCegarLoop]: Abstraction has 84 states and 96 transitions. [2021-12-19 17:50:00,917 INFO L587 BuchiCegarLoop]: Abstraction has 84 states and 96 transitions. [2021-12-19 17:50:00,917 INFO L425 BuchiCegarLoop]: ======== Iteration 11============ [2021-12-19 17:50:00,917 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 84 states and 96 transitions. [2021-12-19 17:50:00,917 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:00,918 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:00,918 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:00,918 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [9, 9, 9, 8, 8, 1, 1, 1, 1] [2021-12-19 17:50:00,918 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:00,918 INFO L791 eck$LassoCheckResult]: Stem: 3392#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 3393#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 3398#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 3413#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 3414#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 3401#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 3402#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 3432#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 3431#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 3430#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 3429#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 3428#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 3427#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 3426#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 3425#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 3424#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 3423#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 3422#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 3421#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 3417#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 3416#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 3403#L27-4 main_~i~0#1 := 0; 3404#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 3440#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 3441#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 3442#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 3446#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 3445#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 3470#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 3467#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 3465#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 3464#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 3461#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 3459#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 3458#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 3455#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 3453#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 3452#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 3450#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 3449#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 3448#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 3410#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 3397#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 3407#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 3412#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 3437#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 3436#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 3419#L34 [2021-12-19 17:50:00,919 INFO L793 eck$LassoCheckResult]: Loop: 3419#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 3420#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 3418#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 3419#L34 [2021-12-19 17:50:00,919 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:00,919 INFO L85 PathProgramCache]: Analyzing trace with hash -2004823653, now seen corresponding path program 16 times [2021-12-19 17:50:00,919 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:00,919 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [460115648] [2021-12-19 17:50:00,920 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:00,920 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:00,944 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:00,946 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:00,977 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:00,983 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:00,984 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:00,984 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 10 times [2021-12-19 17:50:00,984 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:00,984 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1160908912] [2021-12-19 17:50:00,984 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:00,984 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:00,987 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:00,987 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:00,988 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:00,989 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:00,989 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:00,989 INFO L85 PathProgramCache]: Analyzing trace with hash 113811419, now seen corresponding path program 17 times [2021-12-19 17:50:00,990 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:00,990 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [204674512] [2021-12-19 17:50:00,990 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:00,990 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:01,001 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:01,173 INFO L134 CoverageAnalysis]: Checked inductivity of 198 backedges. 92 proven. 106 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:01,173 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:01,174 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [204674512] [2021-12-19 17:50:01,174 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [204674512] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:01,174 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1393855287] [2021-12-19 17:50:01,174 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:50:01,174 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:01,174 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:01,175 INFO L229 MonitoredProcess]: Starting monitored process 27 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:01,176 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (27)] Waiting until timeout for monitored process [2021-12-19 17:50:01,315 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 10 check-sat command(s) [2021-12-19 17:50:01,315 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:01,317 INFO L263 TraceCheckSpWp]: Trace formula consists of 234 conjuncts, 22 conjunts are in the unsatisfiable core [2021-12-19 17:50:01,318 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:01,623 INFO L134 CoverageAnalysis]: Checked inductivity of 198 backedges. 117 proven. 81 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:01,623 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:01,726 INFO L134 CoverageAnalysis]: Checked inductivity of 198 backedges. 117 proven. 81 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:01,726 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1393855287] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:01,726 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:01,727 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [22, 22, 22] total 34 [2021-12-19 17:50:01,727 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [681968372] [2021-12-19 17:50:01,727 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:01,756 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:01,756 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 35 interpolants. [2021-12-19 17:50:01,756 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=291, Invalid=899, Unknown=0, NotChecked=0, Total=1190 [2021-12-19 17:50:01,757 INFO L87 Difference]: Start difference. First operand 84 states and 96 transitions. cyclomatic complexity: 15 Second operand has 35 states, 34 states have (on average 2.5294117647058822) internal successors, (86), 35 states have internal predecessors, (86), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:02,090 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:02,090 INFO L93 Difference]: Finished difference Result 271 states and 314 transitions. [2021-12-19 17:50:02,090 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 24 states. [2021-12-19 17:50:02,091 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 271 states and 314 transitions. [2021-12-19 17:50:02,093 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:02,094 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 271 states to 158 states and 182 transitions. [2021-12-19 17:50:02,094 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 137 [2021-12-19 17:50:02,094 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 137 [2021-12-19 17:50:02,094 INFO L73 IsDeterministic]: Start isDeterministic. Operand 158 states and 182 transitions. [2021-12-19 17:50:02,094 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:02,094 INFO L681 BuchiCegarLoop]: Abstraction has 158 states and 182 transitions. [2021-12-19 17:50:02,094 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 158 states and 182 transitions. [2021-12-19 17:50:02,101 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 158 to 92. [2021-12-19 17:50:02,102 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 92 states, 92 states have (on average 1.141304347826087) internal successors, (105), 91 states have internal predecessors, (105), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:02,104 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 92 states to 92 states and 105 transitions. [2021-12-19 17:50:02,104 INFO L704 BuchiCegarLoop]: Abstraction has 92 states and 105 transitions. [2021-12-19 17:50:02,104 INFO L587 BuchiCegarLoop]: Abstraction has 92 states and 105 transitions. [2021-12-19 17:50:02,104 INFO L425 BuchiCegarLoop]: ======== Iteration 12============ [2021-12-19 17:50:02,104 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 92 states and 105 transitions. [2021-12-19 17:50:02,104 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:02,104 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:02,105 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:02,107 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [10, 10, 10, 9, 9, 1, 1, 1, 1] [2021-12-19 17:50:02,107 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:02,107 INFO L791 eck$LassoCheckResult]: Stem: 4101#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 4102#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 4107#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4121#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4122#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4110#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4111#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4142#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4141#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4140#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4139#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4138#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4137#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4136#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4135#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4134#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4133#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4132#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4131#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4130#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4129#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4125#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4124#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 4112#L27-4 main_~i~0#1 := 0; 4113#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4187#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4152#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4150#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4151#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4155#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4185#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4182#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4180#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4179#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4176#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4174#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4173#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4170#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4168#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4167#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4164#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4162#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4161#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4160#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4159#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4158#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4118#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4106#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4115#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4120#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4147#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4146#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4127#L34 [2021-12-19 17:50:02,108 INFO L793 eck$LassoCheckResult]: Loop: 4127#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4128#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4126#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4127#L34 [2021-12-19 17:50:02,108 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:02,108 INFO L85 PathProgramCache]: Analyzing trace with hash 1133441117, now seen corresponding path program 18 times [2021-12-19 17:50:02,108 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:02,108 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [144023306] [2021-12-19 17:50:02,108 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:02,109 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:02,139 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:02,139 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:02,163 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:02,169 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:02,170 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:02,170 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 11 times [2021-12-19 17:50:02,170 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:02,170 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [424626645] [2021-12-19 17:50:02,170 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:02,170 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:02,174 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:02,174 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:02,180 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:02,181 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:02,181 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:02,181 INFO L85 PathProgramCache]: Analyzing trace with hash -688524839, now seen corresponding path program 19 times [2021-12-19 17:50:02,181 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:02,181 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [602814203] [2021-12-19 17:50:02,181 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:02,182 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:02,192 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:02,356 INFO L134 CoverageAnalysis]: Checked inductivity of 245 backedges. 117 proven. 128 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:02,356 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:02,356 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [602814203] [2021-12-19 17:50:02,356 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [602814203] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:02,356 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1852403702] [2021-12-19 17:50:02,357 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:50:02,357 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:02,357 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:02,358 INFO L229 MonitoredProcess]: Starting monitored process 28 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:02,359 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (28)] Waiting until timeout for monitored process [2021-12-19 17:50:02,418 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:02,419 INFO L263 TraceCheckSpWp]: Trace formula consists of 255 conjuncts, 24 conjunts are in the unsatisfiable core [2021-12-19 17:50:02,420 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:02,753 INFO L134 CoverageAnalysis]: Checked inductivity of 245 backedges. 145 proven. 100 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:02,754 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:02,857 INFO L134 CoverageAnalysis]: Checked inductivity of 245 backedges. 145 proven. 100 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:02,858 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1852403702] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:02,858 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:02,858 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [24, 24, 24] total 37 [2021-12-19 17:50:02,858 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1261655214] [2021-12-19 17:50:02,858 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:02,889 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:02,890 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 38 interpolants. [2021-12-19 17:50:02,890 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=341, Invalid=1065, Unknown=0, NotChecked=0, Total=1406 [2021-12-19 17:50:02,890 INFO L87 Difference]: Start difference. First operand 92 states and 105 transitions. cyclomatic complexity: 16 Second operand has 38 states, 37 states have (on average 2.5405405405405403) internal successors, (94), 38 states have internal predecessors, (94), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:03,223 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:03,223 INFO L93 Difference]: Finished difference Result 297 states and 344 transitions. [2021-12-19 17:50:03,223 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 26 states. [2021-12-19 17:50:03,224 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 297 states and 344 transitions. [2021-12-19 17:50:03,225 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:03,226 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 297 states to 172 states and 198 transitions. [2021-12-19 17:50:03,226 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 149 [2021-12-19 17:50:03,226 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 149 [2021-12-19 17:50:03,226 INFO L73 IsDeterministic]: Start isDeterministic. Operand 172 states and 198 transitions. [2021-12-19 17:50:03,227 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:03,227 INFO L681 BuchiCegarLoop]: Abstraction has 172 states and 198 transitions. [2021-12-19 17:50:03,227 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 172 states and 198 transitions. [2021-12-19 17:50:03,228 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 172 to 100. [2021-12-19 17:50:03,228 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 100 states, 100 states have (on average 1.14) internal successors, (114), 99 states have internal predecessors, (114), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:03,229 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 100 states to 100 states and 114 transitions. [2021-12-19 17:50:03,229 INFO L704 BuchiCegarLoop]: Abstraction has 100 states and 114 transitions. [2021-12-19 17:50:03,229 INFO L587 BuchiCegarLoop]: Abstraction has 100 states and 114 transitions. [2021-12-19 17:50:03,229 INFO L425 BuchiCegarLoop]: ======== Iteration 13============ [2021-12-19 17:50:03,229 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 100 states and 114 transitions. [2021-12-19 17:50:03,229 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:03,230 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:03,230 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:03,230 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [11, 11, 11, 10, 10, 1, 1, 1, 1] [2021-12-19 17:50:03,230 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:03,230 INFO L791 eck$LassoCheckResult]: Stem: 4879#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 4880#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 4885#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4900#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4901#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4888#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4889#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4923#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4922#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4921#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4920#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4919#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4918#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4917#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4916#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4915#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4914#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4913#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4912#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4911#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4910#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4909#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4908#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 4904#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 4903#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 4890#L27-4 main_~i~0#1 := 0; 4891#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4931#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4932#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4933#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4937#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4936#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4973#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4970#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4968#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4967#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4964#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4962#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4961#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4958#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4956#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4955#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4952#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4950#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4949#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4946#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4944#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4943#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4941#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4940#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4939#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4897#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4884#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4894#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4899#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4928#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4927#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4906#L34 [2021-12-19 17:50:03,231 INFO L793 eck$LassoCheckResult]: Loop: 4906#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 4907#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 4905#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 4906#L34 [2021-12-19 17:50:03,231 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:03,231 INFO L85 PathProgramCache]: Analyzing trace with hash 125280919, now seen corresponding path program 20 times [2021-12-19 17:50:03,231 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:03,231 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [778735916] [2021-12-19 17:50:03,231 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:03,232 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:03,257 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:03,257 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:03,279 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:03,302 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:03,303 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:03,303 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 12 times [2021-12-19 17:50:03,303 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:03,303 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1868851102] [2021-12-19 17:50:03,303 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:03,303 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:03,306 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:03,306 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:03,307 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:03,309 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:03,310 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:03,310 INFO L85 PathProgramCache]: Analyzing trace with hash -82682529, now seen corresponding path program 21 times [2021-12-19 17:50:03,310 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:03,310 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1757713963] [2021-12-19 17:50:03,310 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:03,310 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:03,337 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:03,551 INFO L134 CoverageAnalysis]: Checked inductivity of 297 backedges. 145 proven. 152 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:03,551 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:03,551 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1757713963] [2021-12-19 17:50:03,551 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1757713963] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:03,551 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [792674006] [2021-12-19 17:50:03,551 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:50:03,551 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:03,552 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:03,556 INFO L229 MonitoredProcess]: Starting monitored process 29 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:03,579 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (29)] Waiting until timeout for monitored process [2021-12-19 17:50:03,695 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 12 check-sat command(s) [2021-12-19 17:50:03,695 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:03,696 INFO L263 TraceCheckSpWp]: Trace formula consists of 276 conjuncts, 26 conjunts are in the unsatisfiable core [2021-12-19 17:50:03,697 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:04,064 INFO L134 CoverageAnalysis]: Checked inductivity of 297 backedges. 176 proven. 121 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:04,064 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:04,155 INFO L134 CoverageAnalysis]: Checked inductivity of 297 backedges. 176 proven. 121 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:04,155 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [792674006] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:04,155 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:04,155 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [26, 26, 26] total 40 [2021-12-19 17:50:04,155 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1993570829] [2021-12-19 17:50:04,155 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:04,185 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:04,186 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 41 interpolants. [2021-12-19 17:50:04,186 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=395, Invalid=1245, Unknown=0, NotChecked=0, Total=1640 [2021-12-19 17:50:04,186 INFO L87 Difference]: Start difference. First operand 100 states and 114 transitions. cyclomatic complexity: 17 Second operand has 41 states, 40 states have (on average 2.55) internal successors, (102), 41 states have internal predecessors, (102), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:04,622 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:04,622 INFO L93 Difference]: Finished difference Result 323 states and 374 transitions. [2021-12-19 17:50:04,631 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 28 states. [2021-12-19 17:50:04,632 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 323 states and 374 transitions. [2021-12-19 17:50:04,634 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:04,634 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 323 states to 186 states and 214 transitions. [2021-12-19 17:50:04,635 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 161 [2021-12-19 17:50:04,635 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 161 [2021-12-19 17:50:04,635 INFO L73 IsDeterministic]: Start isDeterministic. Operand 186 states and 214 transitions. [2021-12-19 17:50:04,635 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:04,635 INFO L681 BuchiCegarLoop]: Abstraction has 186 states and 214 transitions. [2021-12-19 17:50:04,635 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 186 states and 214 transitions. [2021-12-19 17:50:04,646 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 186 to 108. [2021-12-19 17:50:04,646 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 108 states, 108 states have (on average 1.1388888888888888) internal successors, (123), 107 states have internal predecessors, (123), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:04,646 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 108 states to 108 states and 123 transitions. [2021-12-19 17:50:04,647 INFO L704 BuchiCegarLoop]: Abstraction has 108 states and 123 transitions. [2021-12-19 17:50:04,647 INFO L587 BuchiCegarLoop]: Abstraction has 108 states and 123 transitions. [2021-12-19 17:50:04,647 INFO L425 BuchiCegarLoop]: ======== Iteration 14============ [2021-12-19 17:50:04,647 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 108 states and 123 transitions. [2021-12-19 17:50:04,647 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:04,647 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:04,647 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:04,648 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [12, 12, 12, 11, 11, 1, 1, 1, 1] [2021-12-19 17:50:04,648 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:04,648 INFO L791 eck$LassoCheckResult]: Stem: 5726#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 5727#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 5732#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 5746#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 5747#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 5735#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 5736#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 5771#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 5770#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 5769#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 5768#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 5767#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 5766#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 5765#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 5764#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 5763#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 5762#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 5761#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 5760#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 5759#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 5758#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 5757#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 5756#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 5755#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 5754#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 5750#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 5749#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 5737#L27-4 main_~i~0#1 := 0; 5738#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 5829#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 5781#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 5779#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 5780#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 5784#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 5828#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 5825#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 5823#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 5822#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 5819#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 5817#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 5816#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 5813#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 5811#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 5810#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 5807#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 5805#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 5804#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 5801#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 5799#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 5798#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 5795#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 5793#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 5792#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 5790#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 5788#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 5787#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 5743#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 5731#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 5740#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 5745#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 5776#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 5775#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 5752#L34 [2021-12-19 17:50:04,649 INFO L793 eck$LassoCheckResult]: Loop: 5752#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 5753#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 5751#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 5752#L34 [2021-12-19 17:50:04,649 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:04,649 INFO L85 PathProgramCache]: Analyzing trace with hash -1940425887, now seen corresponding path program 22 times [2021-12-19 17:50:04,649 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:04,649 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [31966103] [2021-12-19 17:50:04,649 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:04,650 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:04,675 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:04,675 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:04,711 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:04,718 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:04,718 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:04,718 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 13 times [2021-12-19 17:50:04,719 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:04,719 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1803938607] [2021-12-19 17:50:04,719 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:04,719 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:04,721 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:04,721 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:04,722 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:04,723 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:04,723 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:04,723 INFO L85 PathProgramCache]: Analyzing trace with hash -1262722987, now seen corresponding path program 23 times [2021-12-19 17:50:04,723 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:04,723 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [64677282] [2021-12-19 17:50:04,723 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:04,724 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:04,737 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:04,980 INFO L134 CoverageAnalysis]: Checked inductivity of 354 backedges. 176 proven. 178 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:04,981 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:04,981 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [64677282] [2021-12-19 17:50:04,981 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [64677282] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:04,981 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [335093411] [2021-12-19 17:50:04,981 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:50:04,981 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:04,981 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:04,982 INFO L229 MonitoredProcess]: Starting monitored process 30 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:04,983 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (30)] Waiting until timeout for monitored process [2021-12-19 17:50:05,176 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 13 check-sat command(s) [2021-12-19 17:50:05,176 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:05,177 INFO L263 TraceCheckSpWp]: Trace formula consists of 297 conjuncts, 28 conjunts are in the unsatisfiable core [2021-12-19 17:50:05,178 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:05,549 INFO L134 CoverageAnalysis]: Checked inductivity of 354 backedges. 210 proven. 144 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:05,549 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:05,655 INFO L134 CoverageAnalysis]: Checked inductivity of 354 backedges. 210 proven. 144 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:05,655 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [335093411] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:05,655 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:05,655 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [28, 28, 28] total 43 [2021-12-19 17:50:05,655 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1888235645] [2021-12-19 17:50:05,655 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:05,687 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:05,687 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 44 interpolants. [2021-12-19 17:50:05,688 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=453, Invalid=1439, Unknown=0, NotChecked=0, Total=1892 [2021-12-19 17:50:05,688 INFO L87 Difference]: Start difference. First operand 108 states and 123 transitions. cyclomatic complexity: 18 Second operand has 44 states, 43 states have (on average 2.558139534883721) internal successors, (110), 44 states have internal predecessors, (110), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:06,115 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:06,115 INFO L93 Difference]: Finished difference Result 349 states and 404 transitions. [2021-12-19 17:50:06,116 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 30 states. [2021-12-19 17:50:06,116 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 349 states and 404 transitions. [2021-12-19 17:50:06,117 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:06,118 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 349 states to 200 states and 230 transitions. [2021-12-19 17:50:06,118 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 173 [2021-12-19 17:50:06,118 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 173 [2021-12-19 17:50:06,118 INFO L73 IsDeterministic]: Start isDeterministic. Operand 200 states and 230 transitions. [2021-12-19 17:50:06,118 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:06,119 INFO L681 BuchiCegarLoop]: Abstraction has 200 states and 230 transitions. [2021-12-19 17:50:06,119 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 200 states and 230 transitions. [2021-12-19 17:50:06,120 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 200 to 116. [2021-12-19 17:50:06,120 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 116 states, 116 states have (on average 1.1379310344827587) internal successors, (132), 115 states have internal predecessors, (132), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:06,120 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 116 states to 116 states and 132 transitions. [2021-12-19 17:50:06,120 INFO L704 BuchiCegarLoop]: Abstraction has 116 states and 132 transitions. [2021-12-19 17:50:06,120 INFO L587 BuchiCegarLoop]: Abstraction has 116 states and 132 transitions. [2021-12-19 17:50:06,120 INFO L425 BuchiCegarLoop]: ======== Iteration 15============ [2021-12-19 17:50:06,121 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 116 states and 132 transitions. [2021-12-19 17:50:06,121 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:06,121 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:06,121 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:06,122 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [13, 13, 13, 12, 12, 1, 1, 1, 1] [2021-12-19 17:50:06,122 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:06,122 INFO L791 eck$LassoCheckResult]: Stem: 6642#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 6643#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 6648#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 6663#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 6664#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 6651#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 6652#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 6690#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 6689#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 6688#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 6687#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 6686#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 6685#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 6684#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 6683#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 6682#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 6681#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 6680#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 6679#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 6678#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 6677#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 6676#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 6675#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 6674#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 6673#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 6672#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 6671#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 6667#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 6666#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 6653#L27-4 main_~i~0#1 := 0; 6654#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6698#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 6699#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 6700#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6704#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 6703#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 6752#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6749#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 6747#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 6746#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6743#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 6741#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 6740#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6737#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 6735#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 6734#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6731#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 6729#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 6728#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6725#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 6723#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 6722#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6719#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 6717#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 6716#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6713#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 6711#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 6710#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6708#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 6707#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 6706#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6660#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 6647#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 6657#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6662#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 6695#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 6694#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6669#L34 [2021-12-19 17:50:06,122 INFO L793 eck$LassoCheckResult]: Loop: 6669#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 6670#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 6668#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 6669#L34 [2021-12-19 17:50:06,123 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:06,123 INFO L85 PathProgramCache]: Analyzing trace with hash -1264665709, now seen corresponding path program 24 times [2021-12-19 17:50:06,123 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:06,123 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [2093348396] [2021-12-19 17:50:06,123 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:06,123 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:06,156 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:06,156 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:06,180 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:06,184 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:06,185 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:06,185 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 14 times [2021-12-19 17:50:06,185 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:06,185 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1941970740] [2021-12-19 17:50:06,185 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:06,185 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:06,187 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:06,187 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:06,188 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:06,189 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:06,189 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:06,189 INFO L85 PathProgramCache]: Analyzing trace with hash -202976541, now seen corresponding path program 25 times [2021-12-19 17:50:06,189 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:06,189 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [998485777] [2021-12-19 17:50:06,190 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:06,190 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:06,201 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:06,435 INFO L134 CoverageAnalysis]: Checked inductivity of 416 backedges. 210 proven. 206 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:06,435 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:06,435 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [998485777] [2021-12-19 17:50:06,435 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [998485777] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:06,435 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1400638889] [2021-12-19 17:50:06,435 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:50:06,436 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:06,436 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:06,437 INFO L229 MonitoredProcess]: Starting monitored process 31 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:06,437 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (31)] Waiting until timeout for monitored process [2021-12-19 17:50:06,527 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:06,529 INFO L263 TraceCheckSpWp]: Trace formula consists of 318 conjuncts, 30 conjunts are in the unsatisfiable core [2021-12-19 17:50:06,530 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:06,938 INFO L134 CoverageAnalysis]: Checked inductivity of 416 backedges. 247 proven. 169 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:06,938 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:07,077 INFO L134 CoverageAnalysis]: Checked inductivity of 416 backedges. 247 proven. 169 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:07,078 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1400638889] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:07,078 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:07,078 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [30, 30, 30] total 46 [2021-12-19 17:50:07,078 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [231664062] [2021-12-19 17:50:07,078 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:07,109 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:07,110 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 47 interpolants. [2021-12-19 17:50:07,110 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=515, Invalid=1647, Unknown=0, NotChecked=0, Total=2162 [2021-12-19 17:50:07,111 INFO L87 Difference]: Start difference. First operand 116 states and 132 transitions. cyclomatic complexity: 19 Second operand has 47 states, 46 states have (on average 2.5652173913043477) internal successors, (118), 47 states have internal predecessors, (118), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:07,556 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:07,556 INFO L93 Difference]: Finished difference Result 375 states and 434 transitions. [2021-12-19 17:50:07,556 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 32 states. [2021-12-19 17:50:07,556 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 375 states and 434 transitions. [2021-12-19 17:50:07,558 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:07,559 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 375 states to 214 states and 246 transitions. [2021-12-19 17:50:07,559 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 185 [2021-12-19 17:50:07,559 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 185 [2021-12-19 17:50:07,559 INFO L73 IsDeterministic]: Start isDeterministic. Operand 214 states and 246 transitions. [2021-12-19 17:50:07,559 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:07,559 INFO L681 BuchiCegarLoop]: Abstraction has 214 states and 246 transitions. [2021-12-19 17:50:07,559 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 214 states and 246 transitions. [2021-12-19 17:50:07,560 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 214 to 124. [2021-12-19 17:50:07,561 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 124 states, 124 states have (on average 1.1370967741935485) internal successors, (141), 123 states have internal predecessors, (141), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:07,561 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 124 states to 124 states and 141 transitions. [2021-12-19 17:50:07,561 INFO L704 BuchiCegarLoop]: Abstraction has 124 states and 141 transitions. [2021-12-19 17:50:07,561 INFO L587 BuchiCegarLoop]: Abstraction has 124 states and 141 transitions. [2021-12-19 17:50:07,561 INFO L425 BuchiCegarLoop]: ======== Iteration 16============ [2021-12-19 17:50:07,561 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 124 states and 141 transitions. [2021-12-19 17:50:07,562 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:07,562 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:07,562 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:07,562 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [14, 14, 14, 13, 13, 1, 1, 1, 1] [2021-12-19 17:50:07,562 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:07,563 INFO L791 eck$LassoCheckResult]: Stem: 7627#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 7628#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 7633#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7647#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7648#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7636#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7637#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7676#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7675#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7674#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7673#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7672#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7671#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7670#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7669#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7668#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7667#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7666#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7665#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7664#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7663#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7662#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7661#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7660#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7659#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7658#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7657#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7656#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7655#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 7651#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 7650#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 7638#L27-4 main_~i~0#1 := 0; 7639#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7745#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7686#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7684#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7685#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7689#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7743#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7740#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7738#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7737#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7734#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7732#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7731#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7728#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7726#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7725#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7722#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7720#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7719#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7716#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7714#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7713#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7710#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7708#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7707#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7704#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7702#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7701#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7698#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7696#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7695#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7694#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7693#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7692#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7644#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7632#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7641#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7646#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7681#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7680#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7653#L34 [2021-12-19 17:50:07,563 INFO L793 eck$LassoCheckResult]: Loop: 7653#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 7654#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 7652#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 7653#L34 [2021-12-19 17:50:07,565 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:07,566 INFO L85 PathProgramCache]: Analyzing trace with hash 1142017637, now seen corresponding path program 26 times [2021-12-19 17:50:07,566 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:07,566 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1646755525] [2021-12-19 17:50:07,566 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:07,566 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:07,613 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:07,613 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:07,645 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:07,650 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:07,651 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:07,651 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 15 times [2021-12-19 17:50:07,651 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:07,651 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1768548589] [2021-12-19 17:50:07,651 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:07,651 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:07,654 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:07,654 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:07,655 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:07,656 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:07,656 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:07,656 INFO L85 PathProgramCache]: Analyzing trace with hash 1411512017, now seen corresponding path program 27 times [2021-12-19 17:50:07,656 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:07,656 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1118924472] [2021-12-19 17:50:07,656 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:07,656 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:07,670 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:07,948 INFO L134 CoverageAnalysis]: Checked inductivity of 483 backedges. 247 proven. 236 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:07,949 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:07,949 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1118924472] [2021-12-19 17:50:07,949 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1118924472] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:07,949 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1288012084] [2021-12-19 17:50:07,949 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:50:07,949 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:07,949 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:07,951 INFO L229 MonitoredProcess]: Starting monitored process 32 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:07,952 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (32)] Waiting until timeout for monitored process [2021-12-19 17:50:08,207 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 15 check-sat command(s) [2021-12-19 17:50:08,208 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:08,211 INFO L263 TraceCheckSpWp]: Trace formula consists of 339 conjuncts, 32 conjunts are in the unsatisfiable core [2021-12-19 17:50:08,212 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:08,681 INFO L134 CoverageAnalysis]: Checked inductivity of 483 backedges. 287 proven. 196 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:08,681 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:08,826 INFO L134 CoverageAnalysis]: Checked inductivity of 483 backedges. 287 proven. 196 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:08,826 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1288012084] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:08,826 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:08,826 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [32, 32, 32] total 49 [2021-12-19 17:50:08,826 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1103640680] [2021-12-19 17:50:08,826 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:08,857 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:08,857 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 50 interpolants. [2021-12-19 17:50:08,858 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=581, Invalid=1869, Unknown=0, NotChecked=0, Total=2450 [2021-12-19 17:50:08,858 INFO L87 Difference]: Start difference. First operand 124 states and 141 transitions. cyclomatic complexity: 20 Second operand has 50 states, 49 states have (on average 2.5714285714285716) internal successors, (126), 50 states have internal predecessors, (126), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:09,300 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:09,300 INFO L93 Difference]: Finished difference Result 401 states and 464 transitions. [2021-12-19 17:50:09,300 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 34 states. [2021-12-19 17:50:09,301 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 401 states and 464 transitions. [2021-12-19 17:50:09,302 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:09,303 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 401 states to 228 states and 262 transitions. [2021-12-19 17:50:09,303 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 197 [2021-12-19 17:50:09,303 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 197 [2021-12-19 17:50:09,303 INFO L73 IsDeterministic]: Start isDeterministic. Operand 228 states and 262 transitions. [2021-12-19 17:50:09,304 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:09,304 INFO L681 BuchiCegarLoop]: Abstraction has 228 states and 262 transitions. [2021-12-19 17:50:09,304 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 228 states and 262 transitions. [2021-12-19 17:50:09,305 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 228 to 132. [2021-12-19 17:50:09,305 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 132 states, 132 states have (on average 1.1363636363636365) internal successors, (150), 131 states have internal predecessors, (150), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:09,306 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 132 states to 132 states and 150 transitions. [2021-12-19 17:50:09,306 INFO L704 BuchiCegarLoop]: Abstraction has 132 states and 150 transitions. [2021-12-19 17:50:09,306 INFO L587 BuchiCegarLoop]: Abstraction has 132 states and 150 transitions. [2021-12-19 17:50:09,306 INFO L425 BuchiCegarLoop]: ======== Iteration 17============ [2021-12-19 17:50:09,306 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 132 states and 150 transitions. [2021-12-19 17:50:09,306 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:09,307 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:09,307 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:09,307 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [15, 15, 15, 14, 14, 1, 1, 1, 1] [2021-12-19 17:50:09,307 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:09,307 INFO L791 eck$LassoCheckResult]: Stem: 8681#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 8682#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 8687#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8702#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8703#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8690#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8691#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8733#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8732#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8731#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8730#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8729#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8728#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8727#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8726#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8725#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8724#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8723#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8722#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8721#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8720#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8719#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8718#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8717#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8716#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8715#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8714#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8713#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8712#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8711#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8710#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 8706#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 8705#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 8692#L27-4 main_~i~0#1 := 0; 8693#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8741#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8742#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8743#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8747#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8746#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8807#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8804#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8802#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8801#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8798#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8796#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8795#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8792#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8790#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8789#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8786#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8784#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8783#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8780#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8778#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8777#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8774#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8772#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8771#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8768#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8766#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8765#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8762#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8760#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8759#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8756#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8754#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8753#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8751#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8750#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8749#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8699#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8686#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8696#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8701#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8738#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8737#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8708#L34 [2021-12-19 17:50:09,308 INFO L793 eck$LassoCheckResult]: Loop: 8708#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 8709#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 8707#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 8708#L34 [2021-12-19 17:50:09,308 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:09,308 INFO L85 PathProgramCache]: Analyzing trace with hash -1133388657, now seen corresponding path program 28 times [2021-12-19 17:50:09,308 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:09,308 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [2129067504] [2021-12-19 17:50:09,308 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:09,308 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:09,354 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:09,354 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:09,413 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:09,418 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:09,419 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:09,419 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 16 times [2021-12-19 17:50:09,419 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:09,419 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1741751379] [2021-12-19 17:50:09,419 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:09,420 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:09,423 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:09,423 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:09,424 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:09,425 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:09,425 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:09,425 INFO L85 PathProgramCache]: Analyzing trace with hash -2043527065, now seen corresponding path program 29 times [2021-12-19 17:50:09,425 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:09,425 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [2132576473] [2021-12-19 17:50:09,426 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:09,426 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:09,440 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:09,779 INFO L134 CoverageAnalysis]: Checked inductivity of 555 backedges. 287 proven. 268 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:09,779 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:09,779 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [2132576473] [2021-12-19 17:50:09,779 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [2132576473] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:09,779 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1576252428] [2021-12-19 17:50:09,779 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:50:09,779 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:09,779 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:09,781 INFO L229 MonitoredProcess]: Starting monitored process 33 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:09,781 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (33)] Waiting until timeout for monitored process [2021-12-19 17:50:10,169 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 16 check-sat command(s) [2021-12-19 17:50:10,169 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:10,173 INFO L263 TraceCheckSpWp]: Trace formula consists of 360 conjuncts, 34 conjunts are in the unsatisfiable core [2021-12-19 17:50:10,174 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:10,661 INFO L134 CoverageAnalysis]: Checked inductivity of 555 backedges. 330 proven. 225 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:10,661 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:10,787 INFO L134 CoverageAnalysis]: Checked inductivity of 555 backedges. 330 proven. 225 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:10,787 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1576252428] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:10,787 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:10,788 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [34, 34, 34] total 52 [2021-12-19 17:50:10,788 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [809361818] [2021-12-19 17:50:10,788 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:10,826 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:10,826 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 53 interpolants. [2021-12-19 17:50:10,827 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=651, Invalid=2105, Unknown=0, NotChecked=0, Total=2756 [2021-12-19 17:50:10,827 INFO L87 Difference]: Start difference. First operand 132 states and 150 transitions. cyclomatic complexity: 21 Second operand has 53 states, 52 states have (on average 2.576923076923077) internal successors, (134), 53 states have internal predecessors, (134), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:11,379 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:11,380 INFO L93 Difference]: Finished difference Result 427 states and 494 transitions. [2021-12-19 17:50:11,380 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 36 states. [2021-12-19 17:50:11,380 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 427 states and 494 transitions. [2021-12-19 17:50:11,382 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:11,383 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 427 states to 242 states and 278 transitions. [2021-12-19 17:50:11,383 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 209 [2021-12-19 17:50:11,383 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 209 [2021-12-19 17:50:11,383 INFO L73 IsDeterministic]: Start isDeterministic. Operand 242 states and 278 transitions. [2021-12-19 17:50:11,383 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:11,383 INFO L681 BuchiCegarLoop]: Abstraction has 242 states and 278 transitions. [2021-12-19 17:50:11,384 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 242 states and 278 transitions. [2021-12-19 17:50:11,385 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 242 to 140. [2021-12-19 17:50:11,385 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 140 states, 140 states have (on average 1.1357142857142857) internal successors, (159), 139 states have internal predecessors, (159), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:11,385 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 140 states to 140 states and 159 transitions. [2021-12-19 17:50:11,385 INFO L704 BuchiCegarLoop]: Abstraction has 140 states and 159 transitions. [2021-12-19 17:50:11,385 INFO L587 BuchiCegarLoop]: Abstraction has 140 states and 159 transitions. [2021-12-19 17:50:11,386 INFO L425 BuchiCegarLoop]: ======== Iteration 18============ [2021-12-19 17:50:11,386 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 140 states and 159 transitions. [2021-12-19 17:50:11,386 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:11,386 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:11,386 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:11,387 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [16, 16, 16, 15, 15, 1, 1, 1, 1] [2021-12-19 17:50:11,387 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:11,387 INFO L791 eck$LassoCheckResult]: Stem: 9804#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 9805#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 9810#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9824#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9825#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9813#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9814#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9857#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9856#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9855#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9854#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9853#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9852#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9851#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9850#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9849#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9848#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9847#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9846#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9845#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9844#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9843#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9842#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9841#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9840#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9839#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9838#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9837#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9836#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9835#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9834#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9833#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9832#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 9828#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 9827#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 9815#L27-4 main_~i~0#1 := 0; 9816#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9939#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9867#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9865#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9866#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9870#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9938#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9935#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9933#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9932#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9929#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9927#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9926#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9923#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9921#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9920#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9917#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9915#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9914#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9911#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9909#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9908#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9905#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9903#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9902#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9899#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9897#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9896#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9893#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9891#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9890#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9887#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9885#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9884#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9881#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9879#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9878#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9876#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9874#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9873#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9821#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9809#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9818#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9823#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9862#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9861#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9830#L34 [2021-12-19 17:50:11,387 INFO L793 eck$LassoCheckResult]: Loop: 9830#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 9831#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 9829#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 9830#L34 [2021-12-19 17:50:11,387 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:11,388 INFO L85 PathProgramCache]: Analyzing trace with hash 21119337, now seen corresponding path program 30 times [2021-12-19 17:50:11,388 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:11,388 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [689947888] [2021-12-19 17:50:11,388 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:11,388 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:11,429 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:11,429 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:11,465 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:11,470 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:11,470 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:11,470 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 17 times [2021-12-19 17:50:11,470 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:11,470 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [83044561] [2021-12-19 17:50:11,470 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:11,471 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:11,482 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:11,483 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:11,483 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:11,485 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:11,485 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:11,485 INFO L85 PathProgramCache]: Analyzing trace with hash 2100983117, now seen corresponding path program 31 times [2021-12-19 17:50:11,485 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:11,485 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1684280392] [2021-12-19 17:50:11,486 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:11,486 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:11,501 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:11,831 INFO L134 CoverageAnalysis]: Checked inductivity of 632 backedges. 330 proven. 302 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:11,831 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:11,831 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1684280392] [2021-12-19 17:50:11,832 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1684280392] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:11,832 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1814667351] [2021-12-19 17:50:11,832 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:50:11,832 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:11,832 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:11,833 INFO L229 MonitoredProcess]: Starting monitored process 34 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:11,833 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (34)] Waiting until timeout for monitored process [2021-12-19 17:50:11,922 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:11,924 INFO L263 TraceCheckSpWp]: Trace formula consists of 381 conjuncts, 36 conjunts are in the unsatisfiable core [2021-12-19 17:50:11,925 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:12,477 INFO L134 CoverageAnalysis]: Checked inductivity of 632 backedges. 376 proven. 256 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:12,477 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:12,638 INFO L134 CoverageAnalysis]: Checked inductivity of 632 backedges. 376 proven. 256 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:12,639 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1814667351] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:12,639 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:12,639 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [36, 36, 36] total 55 [2021-12-19 17:50:12,639 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1676569042] [2021-12-19 17:50:12,639 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:12,667 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:12,667 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 56 interpolants. [2021-12-19 17:50:12,668 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=725, Invalid=2355, Unknown=0, NotChecked=0, Total=3080 [2021-12-19 17:50:12,668 INFO L87 Difference]: Start difference. First operand 140 states and 159 transitions. cyclomatic complexity: 22 Second operand has 56 states, 55 states have (on average 2.581818181818182) internal successors, (142), 56 states have internal predecessors, (142), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:13,206 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:13,207 INFO L93 Difference]: Finished difference Result 453 states and 524 transitions. [2021-12-19 17:50:13,207 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 38 states. [2021-12-19 17:50:13,207 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 453 states and 524 transitions. [2021-12-19 17:50:13,209 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:13,210 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 453 states to 256 states and 294 transitions. [2021-12-19 17:50:13,210 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 221 [2021-12-19 17:50:13,210 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 221 [2021-12-19 17:50:13,210 INFO L73 IsDeterministic]: Start isDeterministic. Operand 256 states and 294 transitions. [2021-12-19 17:50:13,211 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:13,211 INFO L681 BuchiCegarLoop]: Abstraction has 256 states and 294 transitions. [2021-12-19 17:50:13,211 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 256 states and 294 transitions. [2021-12-19 17:50:13,213 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 256 to 148. [2021-12-19 17:50:13,213 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 148 states, 148 states have (on average 1.135135135135135) internal successors, (168), 147 states have internal predecessors, (168), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:13,213 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 148 states to 148 states and 168 transitions. [2021-12-19 17:50:13,213 INFO L704 BuchiCegarLoop]: Abstraction has 148 states and 168 transitions. [2021-12-19 17:50:13,214 INFO L587 BuchiCegarLoop]: Abstraction has 148 states and 168 transitions. [2021-12-19 17:50:13,214 INFO L425 BuchiCegarLoop]: ======== Iteration 19============ [2021-12-19 17:50:13,214 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 148 states and 168 transitions. [2021-12-19 17:50:13,214 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:13,214 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:13,214 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:13,215 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [17, 17, 17, 16, 16, 1, 1, 1, 1] [2021-12-19 17:50:13,215 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:13,216 INFO L791 eck$LassoCheckResult]: Stem: 10996#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 10997#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 11002#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11017#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11018#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11005#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11006#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11052#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11051#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11050#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11049#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11048#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11047#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11046#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11045#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11044#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11043#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11042#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11041#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11040#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11039#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11038#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11037#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11036#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11035#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11034#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11033#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11032#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11031#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11030#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11029#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11028#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11027#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11026#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11025#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 11021#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 11020#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 11007#L27-4 main_~i~0#1 := 0; 11008#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11060#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11061#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11062#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11066#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11065#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11138#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11135#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11133#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11132#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11129#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11127#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11126#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11123#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11121#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11120#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11117#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11115#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11114#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11111#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11109#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11108#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11105#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11103#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11102#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11099#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11097#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11096#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11093#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11091#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11090#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11087#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11085#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11084#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11081#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11079#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11078#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11075#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11073#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11072#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11070#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11069#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11068#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11014#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11001#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11011#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11016#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11057#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11056#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11023#L34 [2021-12-19 17:50:13,216 INFO L793 eck$LassoCheckResult]: Loop: 11023#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 11024#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 11022#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 11023#L34 [2021-12-19 17:50:13,216 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:13,216 INFO L85 PathProgramCache]: Analyzing trace with hash 611108235, now seen corresponding path program 32 times [2021-12-19 17:50:13,216 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:13,216 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [876052070] [2021-12-19 17:50:13,216 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:13,217 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:13,264 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:13,264 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:13,325 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:13,332 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:13,333 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:13,334 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 18 times [2021-12-19 17:50:13,334 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:13,334 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [768929185] [2021-12-19 17:50:13,334 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:13,334 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:13,337 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:13,337 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:13,338 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:13,339 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:13,339 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:13,339 INFO L85 PathProgramCache]: Analyzing trace with hash -840899093, now seen corresponding path program 33 times [2021-12-19 17:50:13,340 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:13,340 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1252812694] [2021-12-19 17:50:13,340 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:13,340 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:13,357 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:13,736 INFO L134 CoverageAnalysis]: Checked inductivity of 714 backedges. 376 proven. 338 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:13,736 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:13,736 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1252812694] [2021-12-19 17:50:13,740 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1252812694] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:13,740 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [166343899] [2021-12-19 17:50:13,740 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:50:13,740 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:13,741 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:13,741 INFO L229 MonitoredProcess]: Starting monitored process 35 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:13,742 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (35)] Waiting until timeout for monitored process [2021-12-19 17:50:14,225 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 18 check-sat command(s) [2021-12-19 17:50:14,225 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:14,229 INFO L263 TraceCheckSpWp]: Trace formula consists of 402 conjuncts, 38 conjunts are in the unsatisfiable core [2021-12-19 17:50:14,230 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:14,839 INFO L134 CoverageAnalysis]: Checked inductivity of 714 backedges. 425 proven. 289 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:14,839 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:15,009 INFO L134 CoverageAnalysis]: Checked inductivity of 714 backedges. 425 proven. 289 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:15,010 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [166343899] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:15,010 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:15,010 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [38, 38, 38] total 58 [2021-12-19 17:50:15,010 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1296342254] [2021-12-19 17:50:15,010 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:15,052 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:15,053 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 59 interpolants. [2021-12-19 17:50:15,053 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=803, Invalid=2619, Unknown=0, NotChecked=0, Total=3422 [2021-12-19 17:50:15,054 INFO L87 Difference]: Start difference. First operand 148 states and 168 transitions. cyclomatic complexity: 23 Second operand has 59 states, 58 states have (on average 2.586206896551724) internal successors, (150), 59 states have internal predecessors, (150), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:15,637 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:15,637 INFO L93 Difference]: Finished difference Result 479 states and 554 transitions. [2021-12-19 17:50:15,637 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 40 states. [2021-12-19 17:50:15,638 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 479 states and 554 transitions. [2021-12-19 17:50:15,640 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:15,640 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 479 states to 270 states and 310 transitions. [2021-12-19 17:50:15,640 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 233 [2021-12-19 17:50:15,641 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 233 [2021-12-19 17:50:15,641 INFO L73 IsDeterministic]: Start isDeterministic. Operand 270 states and 310 transitions. [2021-12-19 17:50:15,641 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:15,641 INFO L681 BuchiCegarLoop]: Abstraction has 270 states and 310 transitions. [2021-12-19 17:50:15,641 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 270 states and 310 transitions. [2021-12-19 17:50:15,642 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 270 to 156. [2021-12-19 17:50:15,643 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 156 states, 156 states have (on average 1.1346153846153846) internal successors, (177), 155 states have internal predecessors, (177), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:15,643 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 156 states to 156 states and 177 transitions. [2021-12-19 17:50:15,643 INFO L704 BuchiCegarLoop]: Abstraction has 156 states and 177 transitions. [2021-12-19 17:50:15,643 INFO L587 BuchiCegarLoop]: Abstraction has 156 states and 177 transitions. [2021-12-19 17:50:15,643 INFO L425 BuchiCegarLoop]: ======== Iteration 20============ [2021-12-19 17:50:15,643 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 156 states and 177 transitions. [2021-12-19 17:50:15,644 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:15,644 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:15,644 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:15,645 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [18, 18, 18, 17, 17, 1, 1, 1, 1] [2021-12-19 17:50:15,645 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:15,645 INFO L791 eck$LassoCheckResult]: Stem: 12257#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 12258#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 12263#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12277#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12278#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12266#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12267#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12314#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12313#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12312#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12311#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12310#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12309#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12308#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12307#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12306#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12305#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12304#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12303#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12302#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12301#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12300#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12299#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12298#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12297#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12296#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12295#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12294#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12293#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12292#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12291#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12290#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12289#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12288#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12287#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12286#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12285#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 12281#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 12280#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 12268#L27-4 main_~i~0#1 := 0; 12269#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12407#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12324#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12322#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12323#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12327#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12405#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12402#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12400#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12399#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12396#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12394#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12393#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12390#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12388#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12387#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12384#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12382#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12381#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12378#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12376#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12375#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12372#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12370#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12369#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12366#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12364#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12363#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12360#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12358#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12357#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12354#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12352#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12351#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12348#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12346#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12345#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12342#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12340#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12339#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12336#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12334#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12333#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12332#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12331#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12330#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12274#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12262#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12271#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12276#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12319#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12318#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12283#L34 [2021-12-19 17:50:15,645 INFO L793 eck$LassoCheckResult]: Loop: 12283#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 12284#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 12282#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 12283#L34 [2021-12-19 17:50:15,645 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:15,645 INFO L85 PathProgramCache]: Analyzing trace with hash -1016263571, now seen corresponding path program 34 times [2021-12-19 17:50:15,646 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:15,646 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [486939342] [2021-12-19 17:50:15,646 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:15,646 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:15,686 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:15,687 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:15,731 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:15,747 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:15,747 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:15,748 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 19 times [2021-12-19 17:50:15,748 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:15,748 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1254497534] [2021-12-19 17:50:15,748 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:15,748 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:15,751 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:15,751 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:15,752 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:15,753 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:15,753 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:15,753 INFO L85 PathProgramCache]: Analyzing trace with hash -283534391, now seen corresponding path program 35 times [2021-12-19 17:50:15,753 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:15,753 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [327920231] [2021-12-19 17:50:15,753 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:15,754 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:15,772 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:16,186 INFO L134 CoverageAnalysis]: Checked inductivity of 801 backedges. 425 proven. 376 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:16,187 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:16,187 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [327920231] [2021-12-19 17:50:16,187 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [327920231] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:16,187 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [415223852] [2021-12-19 17:50:16,187 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:50:16,187 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:16,187 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:16,188 INFO L229 MonitoredProcess]: Starting monitored process 36 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:16,189 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (36)] Waiting until timeout for monitored process [2021-12-19 17:50:16,717 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 19 check-sat command(s) [2021-12-19 17:50:16,717 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:16,722 INFO L263 TraceCheckSpWp]: Trace formula consists of 423 conjuncts, 40 conjunts are in the unsatisfiable core [2021-12-19 17:50:16,723 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:17,384 INFO L134 CoverageAnalysis]: Checked inductivity of 801 backedges. 477 proven. 324 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:17,384 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:17,527 INFO L134 CoverageAnalysis]: Checked inductivity of 801 backedges. 477 proven. 324 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:17,527 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [415223852] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:17,527 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:17,527 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [40, 40, 40] total 61 [2021-12-19 17:50:17,527 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1185216570] [2021-12-19 17:50:17,527 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:17,561 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:17,562 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 62 interpolants. [2021-12-19 17:50:17,563 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=885, Invalid=2897, Unknown=0, NotChecked=0, Total=3782 [2021-12-19 17:50:17,563 INFO L87 Difference]: Start difference. First operand 156 states and 177 transitions. cyclomatic complexity: 24 Second operand has 62 states, 61 states have (on average 2.5901639344262297) internal successors, (158), 62 states have internal predecessors, (158), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:18,227 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:18,227 INFO L93 Difference]: Finished difference Result 505 states and 584 transitions. [2021-12-19 17:50:18,227 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 42 states. [2021-12-19 17:50:18,228 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 505 states and 584 transitions. [2021-12-19 17:50:18,230 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:18,230 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 505 states to 284 states and 326 transitions. [2021-12-19 17:50:18,231 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 245 [2021-12-19 17:50:18,231 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 245 [2021-12-19 17:50:18,231 INFO L73 IsDeterministic]: Start isDeterministic. Operand 284 states and 326 transitions. [2021-12-19 17:50:18,231 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:18,231 INFO L681 BuchiCegarLoop]: Abstraction has 284 states and 326 transitions. [2021-12-19 17:50:18,231 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 284 states and 326 transitions. [2021-12-19 17:50:18,233 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 284 to 164. [2021-12-19 17:50:18,233 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 164 states, 164 states have (on average 1.1341463414634145) internal successors, (186), 163 states have internal predecessors, (186), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:18,233 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 164 states to 164 states and 186 transitions. [2021-12-19 17:50:18,233 INFO L704 BuchiCegarLoop]: Abstraction has 164 states and 186 transitions. [2021-12-19 17:50:18,233 INFO L587 BuchiCegarLoop]: Abstraction has 164 states and 186 transitions. [2021-12-19 17:50:18,234 INFO L425 BuchiCegarLoop]: ======== Iteration 21============ [2021-12-19 17:50:18,234 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 164 states and 186 transitions. [2021-12-19 17:50:18,234 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:18,234 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:18,234 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:18,235 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [19, 19, 19, 18, 18, 1, 1, 1, 1] [2021-12-19 17:50:18,235 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:18,235 INFO L791 eck$LassoCheckResult]: Stem: 13587#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 13588#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 13593#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13608#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13609#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13596#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13597#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13647#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13646#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13645#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13644#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13643#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13642#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13641#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13640#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13639#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13638#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13637#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13636#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13635#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13634#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13633#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13632#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13631#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13630#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13629#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13628#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13627#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13626#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13625#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13624#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13623#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13622#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13621#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13620#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13619#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13618#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13617#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13616#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 13612#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 13611#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 13598#L27-4 main_~i~0#1 := 0; 13599#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13655#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13656#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13657#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13661#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13660#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13745#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13742#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13740#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13739#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13736#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13734#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13733#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13730#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13728#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13727#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13724#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13722#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13721#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13718#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13716#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13715#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13712#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13710#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13709#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13706#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13704#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13703#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13700#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13698#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13697#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13694#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13692#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13691#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13688#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13686#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13685#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13682#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13680#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13679#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13676#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13674#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13673#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13670#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13668#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13667#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13665#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13664#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13663#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13605#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13592#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13602#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13607#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13652#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13651#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13614#L34 [2021-12-19 17:50:18,235 INFO L793 eck$LassoCheckResult]: Loop: 13614#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 13615#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 13613#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 13614#L34 [2021-12-19 17:50:18,236 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:18,236 INFO L85 PathProgramCache]: Analyzing trace with hash 1191917191, now seen corresponding path program 36 times [2021-12-19 17:50:18,236 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:18,236 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1461497536] [2021-12-19 17:50:18,236 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:18,236 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:18,290 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:18,290 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:18,358 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:18,364 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:18,365 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:18,365 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 20 times [2021-12-19 17:50:18,365 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:18,365 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [131966403] [2021-12-19 17:50:18,365 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:18,365 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:18,368 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:18,369 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:18,371 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:18,372 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:18,372 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:18,373 INFO L85 PathProgramCache]: Analyzing trace with hash 1910440815, now seen corresponding path program 37 times [2021-12-19 17:50:18,373 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:18,373 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [2092570432] [2021-12-19 17:50:18,373 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:18,373 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:18,390 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:18,833 INFO L134 CoverageAnalysis]: Checked inductivity of 893 backedges. 477 proven. 416 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:18,833 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:18,833 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [2092570432] [2021-12-19 17:50:18,834 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [2092570432] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:18,834 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1550515277] [2021-12-19 17:50:18,834 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:50:18,834 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:18,834 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:18,835 INFO L229 MonitoredProcess]: Starting monitored process 37 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:18,836 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (37)] Waiting until timeout for monitored process [2021-12-19 17:50:18,950 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:18,952 INFO L263 TraceCheckSpWp]: Trace formula consists of 444 conjuncts, 42 conjunts are in the unsatisfiable core [2021-12-19 17:50:18,954 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:19,666 INFO L134 CoverageAnalysis]: Checked inductivity of 893 backedges. 532 proven. 361 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:19,666 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:19,835 INFO L134 CoverageAnalysis]: Checked inductivity of 893 backedges. 532 proven. 361 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:19,835 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1550515277] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:19,835 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:19,835 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [42, 42, 42] total 64 [2021-12-19 17:50:19,835 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [657306016] [2021-12-19 17:50:19,835 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:19,877 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:19,877 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 65 interpolants. [2021-12-19 17:50:19,878 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=971, Invalid=3189, Unknown=0, NotChecked=0, Total=4160 [2021-12-19 17:50:19,878 INFO L87 Difference]: Start difference. First operand 164 states and 186 transitions. cyclomatic complexity: 25 Second operand has 65 states, 64 states have (on average 2.59375) internal successors, (166), 65 states have internal predecessors, (166), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:20,568 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:20,569 INFO L93 Difference]: Finished difference Result 531 states and 614 transitions. [2021-12-19 17:50:20,569 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 44 states. [2021-12-19 17:50:20,569 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 531 states and 614 transitions. [2021-12-19 17:50:20,571 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:20,572 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 531 states to 298 states and 342 transitions. [2021-12-19 17:50:20,572 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 257 [2021-12-19 17:50:20,572 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 257 [2021-12-19 17:50:20,572 INFO L73 IsDeterministic]: Start isDeterministic. Operand 298 states and 342 transitions. [2021-12-19 17:50:20,573 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:20,573 INFO L681 BuchiCegarLoop]: Abstraction has 298 states and 342 transitions. [2021-12-19 17:50:20,573 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 298 states and 342 transitions. [2021-12-19 17:50:20,574 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 298 to 172. [2021-12-19 17:50:20,575 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 172 states, 172 states have (on average 1.1337209302325582) internal successors, (195), 171 states have internal predecessors, (195), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:20,575 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 172 states to 172 states and 195 transitions. [2021-12-19 17:50:20,575 INFO L704 BuchiCegarLoop]: Abstraction has 172 states and 195 transitions. [2021-12-19 17:50:20,575 INFO L587 BuchiCegarLoop]: Abstraction has 172 states and 195 transitions. [2021-12-19 17:50:20,575 INFO L425 BuchiCegarLoop]: ======== Iteration 22============ [2021-12-19 17:50:20,575 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 172 states and 195 transitions. [2021-12-19 17:50:20,576 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:20,576 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:20,576 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:20,577 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [20, 20, 20, 19, 19, 1, 1, 1, 1] [2021-12-19 17:50:20,577 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:20,577 INFO L791 eck$LassoCheckResult]: Stem: 14986#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 14987#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 14992#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15006#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15007#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 14995#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 14996#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15047#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15046#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15045#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15044#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15043#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15042#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15041#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15040#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15039#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15038#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15037#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15036#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15035#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15034#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15033#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15032#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15031#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15030#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15029#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15028#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15027#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15026#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15025#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15024#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15023#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15022#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15021#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15020#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15019#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15018#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15017#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15016#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15015#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15014#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 15010#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 15009#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 14997#L27-4 main_~i~0#1 := 0; 14998#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15153#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15057#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15055#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15056#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15060#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15152#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15149#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15147#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15146#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15143#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15141#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15140#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15137#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15135#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15134#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15131#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15129#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15128#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15125#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15123#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15122#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15119#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15117#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15116#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15113#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15111#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15110#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15107#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15105#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15104#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15101#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15099#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15098#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15095#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15093#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15092#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15089#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15087#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15086#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15083#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15081#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15080#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15077#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15075#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15074#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15071#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15069#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15068#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15066#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15064#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15063#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15003#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 14991#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15000#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15005#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15052#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15051#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15012#L34 [2021-12-19 17:50:20,577 INFO L793 eck$LassoCheckResult]: Loop: 15012#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 15013#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 15011#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 15012#L34 [2021-12-19 17:50:20,577 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:20,577 INFO L85 PathProgramCache]: Analyzing trace with hash 1997959025, now seen corresponding path program 38 times [2021-12-19 17:50:20,577 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:20,578 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [800504453] [2021-12-19 17:50:20,578 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:20,578 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:20,673 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:20,673 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:20,730 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:20,737 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:20,737 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:20,737 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 21 times [2021-12-19 17:50:20,738 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:20,738 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1235422189] [2021-12-19 17:50:20,738 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:20,738 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:20,740 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:20,740 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:20,741 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:20,742 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:20,742 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:20,743 INFO L85 PathProgramCache]: Analyzing trace with hash 1540565573, now seen corresponding path program 39 times [2021-12-19 17:50:20,743 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:20,743 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1591185132] [2021-12-19 17:50:20,743 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:20,743 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:20,760 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:21,288 INFO L134 CoverageAnalysis]: Checked inductivity of 990 backedges. 532 proven. 458 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:21,288 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:21,288 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1591185132] [2021-12-19 17:50:21,288 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1591185132] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:21,288 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [2064423255] [2021-12-19 17:50:21,288 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:50:21,288 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:21,288 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:21,290 INFO L229 MonitoredProcess]: Starting monitored process 38 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:21,316 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (38)] Waiting until timeout for monitored process [2021-12-19 17:50:22,003 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 21 check-sat command(s) [2021-12-19 17:50:22,003 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:22,008 INFO L263 TraceCheckSpWp]: Trace formula consists of 465 conjuncts, 44 conjunts are in the unsatisfiable core [2021-12-19 17:50:22,018 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:22,812 INFO L134 CoverageAnalysis]: Checked inductivity of 990 backedges. 590 proven. 400 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:22,812 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:22,976 INFO L134 CoverageAnalysis]: Checked inductivity of 990 backedges. 590 proven. 400 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:22,976 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [2064423255] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:22,976 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:22,977 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [44, 44, 44] total 67 [2021-12-19 17:50:22,977 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1481548259] [2021-12-19 17:50:22,977 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:23,011 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:23,011 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 68 interpolants. [2021-12-19 17:50:23,012 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=1061, Invalid=3495, Unknown=0, NotChecked=0, Total=4556 [2021-12-19 17:50:23,012 INFO L87 Difference]: Start difference. First operand 172 states and 195 transitions. cyclomatic complexity: 26 Second operand has 68 states, 67 states have (on average 2.5970149253731343) internal successors, (174), 68 states have internal predecessors, (174), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:23,767 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:23,768 INFO L93 Difference]: Finished difference Result 557 states and 644 transitions. [2021-12-19 17:50:23,768 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 46 states. [2021-12-19 17:50:23,768 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 557 states and 644 transitions. [2021-12-19 17:50:23,770 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:23,771 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 557 states to 312 states and 358 transitions. [2021-12-19 17:50:23,771 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 269 [2021-12-19 17:50:23,771 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 269 [2021-12-19 17:50:23,771 INFO L73 IsDeterministic]: Start isDeterministic. Operand 312 states and 358 transitions. [2021-12-19 17:50:23,772 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:23,772 INFO L681 BuchiCegarLoop]: Abstraction has 312 states and 358 transitions. [2021-12-19 17:50:23,772 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 312 states and 358 transitions. [2021-12-19 17:50:23,774 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 312 to 180. [2021-12-19 17:50:23,774 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 180 states, 180 states have (on average 1.1333333333333333) internal successors, (204), 179 states have internal predecessors, (204), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:23,774 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 180 states to 180 states and 204 transitions. [2021-12-19 17:50:23,774 INFO L704 BuchiCegarLoop]: Abstraction has 180 states and 204 transitions. [2021-12-19 17:50:23,774 INFO L587 BuchiCegarLoop]: Abstraction has 180 states and 204 transitions. [2021-12-19 17:50:23,774 INFO L425 BuchiCegarLoop]: ======== Iteration 23============ [2021-12-19 17:50:23,774 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 180 states and 204 transitions. [2021-12-19 17:50:23,775 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:23,775 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:23,775 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:23,776 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [21, 21, 21, 20, 20, 1, 1, 1, 1] [2021-12-19 17:50:23,776 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:23,776 INFO L791 eck$LassoCheckResult]: Stem: 16454#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 16455#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 16460#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16475#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16476#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16463#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16464#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16518#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16517#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16516#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16515#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16514#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16513#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16512#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16511#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16510#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16509#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16508#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16507#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16506#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16505#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16504#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16503#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16502#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16501#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16500#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16499#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16498#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16497#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16496#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16495#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16494#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16493#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16492#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16491#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16490#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16489#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16488#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16487#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16486#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16485#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16484#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16483#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 16479#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 16478#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 16465#L27-4 main_~i~0#1 := 0; 16466#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16526#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16527#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16528#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16532#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16531#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16628#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16625#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16623#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16622#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16619#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16617#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16616#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16613#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16611#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16610#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16607#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16605#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16604#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16601#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16599#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16598#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16595#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16593#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16592#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16589#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16587#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16586#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16583#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16581#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16580#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16577#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16575#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16574#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16571#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16569#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16568#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16565#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16563#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16562#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16559#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16557#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16556#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16553#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16551#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16550#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16547#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16545#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16544#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16541#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16539#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16538#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16536#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16535#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16534#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16472#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16459#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16469#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16474#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16523#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16522#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16481#L34 [2021-12-19 17:50:23,776 INFO L793 eck$LassoCheckResult]: Loop: 16481#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 16482#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 16480#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 16481#L34 [2021-12-19 17:50:23,776 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:23,777 INFO L85 PathProgramCache]: Analyzing trace with hash 1338568579, now seen corresponding path program 40 times [2021-12-19 17:50:23,777 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:23,777 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1820179776] [2021-12-19 17:50:23,777 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:23,777 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:23,854 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:23,854 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:23,912 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:23,920 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:23,920 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:23,920 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 22 times [2021-12-19 17:50:23,920 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:23,921 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1969820757] [2021-12-19 17:50:23,921 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:23,921 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:23,923 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:23,923 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:23,924 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:23,925 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:23,925 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:23,925 INFO L85 PathProgramCache]: Analyzing trace with hash -1474766605, now seen corresponding path program 41 times [2021-12-19 17:50:23,926 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:23,926 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1017984296] [2021-12-19 17:50:23,926 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:23,926 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:23,943 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:24,449 INFO L134 CoverageAnalysis]: Checked inductivity of 1092 backedges. 590 proven. 502 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:24,449 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:24,449 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1017984296] [2021-12-19 17:50:24,449 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1017984296] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:24,449 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [631461010] [2021-12-19 17:50:24,449 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:50:24,449 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:24,450 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:24,451 INFO L229 MonitoredProcess]: Starting monitored process 39 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:24,451 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (39)] Waiting until timeout for monitored process [2021-12-19 17:50:25,064 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 22 check-sat command(s) [2021-12-19 17:50:25,064 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:25,069 INFO L263 TraceCheckSpWp]: Trace formula consists of 486 conjuncts, 46 conjunts are in the unsatisfiable core [2021-12-19 17:50:25,070 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:25,886 INFO L134 CoverageAnalysis]: Checked inductivity of 1092 backedges. 651 proven. 441 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:25,887 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:26,065 INFO L134 CoverageAnalysis]: Checked inductivity of 1092 backedges. 651 proven. 441 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:26,065 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [631461010] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:26,065 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:26,065 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [46, 46, 46] total 70 [2021-12-19 17:50:26,066 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1641744840] [2021-12-19 17:50:26,066 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:26,094 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:26,094 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 71 interpolants. [2021-12-19 17:50:26,095 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=1155, Invalid=3815, Unknown=0, NotChecked=0, Total=4970 [2021-12-19 17:50:26,096 INFO L87 Difference]: Start difference. First operand 180 states and 204 transitions. cyclomatic complexity: 27 Second operand has 71 states, 70 states have (on average 2.6) internal successors, (182), 71 states have internal predecessors, (182), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:26,937 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:26,937 INFO L93 Difference]: Finished difference Result 583 states and 674 transitions. [2021-12-19 17:50:26,937 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 48 states. [2021-12-19 17:50:26,937 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 583 states and 674 transitions. [2021-12-19 17:50:26,940 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:26,940 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 583 states to 326 states and 374 transitions. [2021-12-19 17:50:26,940 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 281 [2021-12-19 17:50:26,941 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 281 [2021-12-19 17:50:26,941 INFO L73 IsDeterministic]: Start isDeterministic. Operand 326 states and 374 transitions. [2021-12-19 17:50:26,941 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:26,941 INFO L681 BuchiCegarLoop]: Abstraction has 326 states and 374 transitions. [2021-12-19 17:50:26,941 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 326 states and 374 transitions. [2021-12-19 17:50:26,942 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 326 to 188. [2021-12-19 17:50:26,943 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 188 states, 188 states have (on average 1.1329787234042554) internal successors, (213), 187 states have internal predecessors, (213), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:26,943 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 188 states to 188 states and 213 transitions. [2021-12-19 17:50:26,943 INFO L704 BuchiCegarLoop]: Abstraction has 188 states and 213 transitions. [2021-12-19 17:50:26,943 INFO L587 BuchiCegarLoop]: Abstraction has 188 states and 213 transitions. [2021-12-19 17:50:26,943 INFO L425 BuchiCegarLoop]: ======== Iteration 24============ [2021-12-19 17:50:26,943 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 188 states and 213 transitions. [2021-12-19 17:50:26,944 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:26,944 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:26,944 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:26,944 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [22, 22, 22, 21, 21, 1, 1, 1, 1] [2021-12-19 17:50:26,944 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:26,944 INFO L791 eck$LassoCheckResult]: Stem: 17991#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 17992#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 17997#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18011#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18012#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18000#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18001#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18056#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18055#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18054#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18053#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18052#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18051#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18050#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18049#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18048#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18047#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18046#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18045#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18044#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18043#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18042#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18041#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18040#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18039#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18038#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18037#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18036#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18035#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18034#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18033#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18032#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18031#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18030#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18029#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18028#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18027#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18026#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18025#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18024#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18023#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18022#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18021#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18020#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18019#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 18015#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 18014#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 18002#L27-4 main_~i~0#1 := 0; 18003#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18173#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18066#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18064#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18065#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18069#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18171#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18168#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18166#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18165#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18162#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18160#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18159#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18156#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18154#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18153#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18150#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18148#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18147#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18144#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18142#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18141#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18138#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18136#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18135#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18132#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18130#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18129#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18126#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18124#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18123#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18120#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18118#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18117#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18114#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18112#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18111#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18108#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18106#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18105#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18102#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18100#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18099#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18096#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18094#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18093#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18090#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18088#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18087#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18084#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18082#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18081#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18078#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18076#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18075#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18074#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18073#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18072#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18008#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 17996#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18005#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18010#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18061#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18060#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18017#L34 [2021-12-19 17:50:26,948 INFO L793 eck$LassoCheckResult]: Loop: 18017#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 18018#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 18016#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 18017#L34 [2021-12-19 17:50:26,948 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:26,948 INFO L85 PathProgramCache]: Analyzing trace with hash 2042800757, now seen corresponding path program 42 times [2021-12-19 17:50:26,948 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:26,949 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [49237546] [2021-12-19 17:50:26,949 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:26,949 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:27,026 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:27,026 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:27,095 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:27,103 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:27,104 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:27,104 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 23 times [2021-12-19 17:50:27,104 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:27,104 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [979491200] [2021-12-19 17:50:27,104 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:27,105 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:27,108 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:27,108 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:27,109 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:27,110 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:27,111 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:27,111 INFO L85 PathProgramCache]: Analyzing trace with hash 1685774529, now seen corresponding path program 43 times [2021-12-19 17:50:27,111 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:27,111 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [558017115] [2021-12-19 17:50:27,111 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:27,111 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:27,129 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:27,749 INFO L134 CoverageAnalysis]: Checked inductivity of 1199 backedges. 651 proven. 548 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:27,749 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:27,749 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [558017115] [2021-12-19 17:50:27,749 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [558017115] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:27,749 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [106375970] [2021-12-19 17:50:27,749 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:50:27,749 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:27,749 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:27,751 INFO L229 MonitoredProcess]: Starting monitored process 40 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:27,763 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (40)] Waiting until timeout for monitored process [2021-12-19 17:50:27,877 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:27,880 INFO L263 TraceCheckSpWp]: Trace formula consists of 507 conjuncts, 48 conjunts are in the unsatisfiable core [2021-12-19 17:50:27,903 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:28,777 INFO L134 CoverageAnalysis]: Checked inductivity of 1199 backedges. 715 proven. 484 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:28,777 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:28,960 INFO L134 CoverageAnalysis]: Checked inductivity of 1199 backedges. 715 proven. 484 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:28,961 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [106375970] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:28,961 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:28,961 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [48, 48, 48] total 73 [2021-12-19 17:50:28,961 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [740706297] [2021-12-19 17:50:28,961 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:28,990 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:28,990 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 74 interpolants. [2021-12-19 17:50:28,991 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=1253, Invalid=4149, Unknown=0, NotChecked=0, Total=5402 [2021-12-19 17:50:28,991 INFO L87 Difference]: Start difference. First operand 188 states and 213 transitions. cyclomatic complexity: 28 Second operand has 74 states, 73 states have (on average 2.6027397260273974) internal successors, (190), 74 states have internal predecessors, (190), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:29,807 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:29,807 INFO L93 Difference]: Finished difference Result 609 states and 704 transitions. [2021-12-19 17:50:29,808 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 50 states. [2021-12-19 17:50:29,808 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 609 states and 704 transitions. [2021-12-19 17:50:29,810 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:29,811 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 609 states to 340 states and 390 transitions. [2021-12-19 17:50:29,811 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 293 [2021-12-19 17:50:29,811 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 293 [2021-12-19 17:50:29,812 INFO L73 IsDeterministic]: Start isDeterministic. Operand 340 states and 390 transitions. [2021-12-19 17:50:29,812 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:29,812 INFO L681 BuchiCegarLoop]: Abstraction has 340 states and 390 transitions. [2021-12-19 17:50:29,812 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 340 states and 390 transitions. [2021-12-19 17:50:29,814 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 340 to 196. [2021-12-19 17:50:29,814 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 196 states, 196 states have (on average 1.1326530612244898) internal successors, (222), 195 states have internal predecessors, (222), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:29,814 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 196 states to 196 states and 222 transitions. [2021-12-19 17:50:29,815 INFO L704 BuchiCegarLoop]: Abstraction has 196 states and 222 transitions. [2021-12-19 17:50:29,815 INFO L587 BuchiCegarLoop]: Abstraction has 196 states and 222 transitions. [2021-12-19 17:50:29,815 INFO L425 BuchiCegarLoop]: ======== Iteration 25============ [2021-12-19 17:50:29,815 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 196 states and 222 transitions. [2021-12-19 17:50:29,815 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:29,815 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:29,815 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:29,816 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [23, 23, 23, 22, 22, 1, 1, 1, 1] [2021-12-19 17:50:29,816 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:29,816 INFO L791 eck$LassoCheckResult]: Stem: 19597#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 19598#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 19603#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19618#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19619#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19606#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19607#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19665#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19664#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19663#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19662#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19661#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19660#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19659#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19658#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19657#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19656#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19655#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19654#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19653#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19652#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19651#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19650#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19649#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19648#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19647#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19646#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19645#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19644#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19643#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19642#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19641#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19640#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19639#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19638#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19637#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19636#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19635#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19634#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19633#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19632#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19631#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19630#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19629#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19628#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19627#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19626#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 19622#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 19621#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 19608#L27-4 main_~i~0#1 := 0; 19609#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19673#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19674#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19675#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19679#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19678#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19787#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19784#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19782#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19781#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19778#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19776#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19775#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19772#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19770#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19769#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19766#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19764#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19763#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19760#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19758#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19757#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19754#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19752#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19751#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19748#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19746#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19745#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19742#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19740#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19739#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19736#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19734#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19733#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19730#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19728#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19727#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19724#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19722#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19721#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19718#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19716#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19715#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19712#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19710#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19709#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19706#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19704#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19703#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19700#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19698#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19697#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19694#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19692#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19691#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19688#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19686#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19685#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19683#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19682#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19681#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19615#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19602#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19612#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19617#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19670#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19669#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19624#L34 [2021-12-19 17:50:29,817 INFO L793 eck$LassoCheckResult]: Loop: 19624#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 19625#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 19623#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 19624#L34 [2021-12-19 17:50:29,817 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:29,817 INFO L85 PathProgramCache]: Analyzing trace with hash -1222528897, now seen corresponding path program 44 times [2021-12-19 17:50:29,817 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:29,817 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [223846324] [2021-12-19 17:50:29,817 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:29,817 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:29,912 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:29,913 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:29,977 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:29,985 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:29,985 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:29,985 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 24 times [2021-12-19 17:50:29,985 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:29,985 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [273153690] [2021-12-19 17:50:29,986 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:29,986 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:29,988 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:29,988 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:29,989 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:29,990 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:29,991 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:29,991 INFO L85 PathProgramCache]: Analyzing trace with hash 964339319, now seen corresponding path program 45 times [2021-12-19 17:50:29,991 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:29,991 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1543885065] [2021-12-19 17:50:29,991 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:29,991 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:30,012 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:30,662 INFO L134 CoverageAnalysis]: Checked inductivity of 1311 backedges. 715 proven. 596 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:30,662 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:30,662 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1543885065] [2021-12-19 17:50:30,662 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1543885065] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:30,662 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1496945077] [2021-12-19 17:50:30,663 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:50:30,663 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:30,663 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:30,664 INFO L229 MonitoredProcess]: Starting monitored process 41 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:30,665 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (41)] Waiting until timeout for monitored process [2021-12-19 17:50:31,465 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 24 check-sat command(s) [2021-12-19 17:50:31,465 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:31,471 INFO L263 TraceCheckSpWp]: Trace formula consists of 528 conjuncts, 50 conjunts are in the unsatisfiable core [2021-12-19 17:50:31,472 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:32,398 INFO L134 CoverageAnalysis]: Checked inductivity of 1311 backedges. 782 proven. 529 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:32,398 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:32,583 INFO L134 CoverageAnalysis]: Checked inductivity of 1311 backedges. 782 proven. 529 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:32,583 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1496945077] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:32,583 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:32,583 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [50, 50, 50] total 76 [2021-12-19 17:50:32,583 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [435325037] [2021-12-19 17:50:32,583 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:32,615 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:32,616 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 77 interpolants. [2021-12-19 17:50:32,617 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=1355, Invalid=4497, Unknown=0, NotChecked=0, Total=5852 [2021-12-19 17:50:32,617 INFO L87 Difference]: Start difference. First operand 196 states and 222 transitions. cyclomatic complexity: 29 Second operand has 77 states, 76 states have (on average 2.6052631578947367) internal successors, (198), 77 states have internal predecessors, (198), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:33,474 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:33,474 INFO L93 Difference]: Finished difference Result 635 states and 734 transitions. [2021-12-19 17:50:33,474 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 52 states. [2021-12-19 17:50:33,474 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 635 states and 734 transitions. [2021-12-19 17:50:33,478 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:33,478 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 635 states to 354 states and 406 transitions. [2021-12-19 17:50:33,479 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 305 [2021-12-19 17:50:33,479 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 305 [2021-12-19 17:50:33,479 INFO L73 IsDeterministic]: Start isDeterministic. Operand 354 states and 406 transitions. [2021-12-19 17:50:33,479 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:33,479 INFO L681 BuchiCegarLoop]: Abstraction has 354 states and 406 transitions. [2021-12-19 17:50:33,480 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 354 states and 406 transitions. [2021-12-19 17:50:33,483 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 354 to 204. [2021-12-19 17:50:33,483 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 204 states, 204 states have (on average 1.1323529411764706) internal successors, (231), 203 states have internal predecessors, (231), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:33,484 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 204 states to 204 states and 231 transitions. [2021-12-19 17:50:33,484 INFO L704 BuchiCegarLoop]: Abstraction has 204 states and 231 transitions. [2021-12-19 17:50:33,484 INFO L587 BuchiCegarLoop]: Abstraction has 204 states and 231 transitions. [2021-12-19 17:50:33,484 INFO L425 BuchiCegarLoop]: ======== Iteration 26============ [2021-12-19 17:50:33,484 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 204 states and 231 transitions. [2021-12-19 17:50:33,485 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:33,485 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:33,485 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:33,485 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [24, 24, 24, 23, 23, 1, 1, 1, 1] [2021-12-19 17:50:33,485 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:33,486 INFO L791 eck$LassoCheckResult]: Stem: 21272#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 21273#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 21278#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21292#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21293#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21281#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21282#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21341#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21340#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21339#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21338#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21337#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21336#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21335#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21334#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21333#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21332#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21331#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21330#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21329#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21328#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21327#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21326#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21325#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21324#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21323#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21322#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21321#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21320#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21319#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21318#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21317#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21316#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21315#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21314#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21313#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21312#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21311#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21310#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21309#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21308#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21307#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21306#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21305#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21304#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21303#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21302#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21301#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21300#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 21296#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 21295#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 21283#L27-4 main_~i~0#1 := 0; 21284#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21471#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21351#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21349#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21350#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21354#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21470#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21467#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21465#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21464#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21461#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21459#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21458#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21455#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21453#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21452#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21449#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21447#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21446#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21443#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21441#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21440#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21437#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21435#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21434#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21431#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21429#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21428#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21425#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21423#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21422#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21419#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21417#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21416#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21413#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21411#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21410#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21407#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21405#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21404#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21401#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21399#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21398#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21395#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21393#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21392#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21389#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21387#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21386#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21383#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21381#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21380#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21377#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21375#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21374#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21371#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21369#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21368#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21365#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21363#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21362#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21360#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21358#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21357#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21289#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21277#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21286#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21291#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21346#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21345#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21298#L34 [2021-12-19 17:50:33,486 INFO L793 eck$LassoCheckResult]: Loop: 21298#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 21299#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 21297#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 21298#L34 [2021-12-19 17:50:33,486 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:33,486 INFO L85 PathProgramCache]: Analyzing trace with hash 502660473, now seen corresponding path program 46 times [2021-12-19 17:50:33,486 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:33,486 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [126471834] [2021-12-19 17:50:33,486 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:33,487 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:33,583 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:33,583 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:33,677 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:33,686 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:33,687 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:33,687 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 25 times [2021-12-19 17:50:33,687 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:33,687 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [153783200] [2021-12-19 17:50:33,687 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:33,687 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:33,690 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:33,690 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:33,691 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:33,693 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:33,693 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:33,693 INFO L85 PathProgramCache]: Analyzing trace with hash -1792770243, now seen corresponding path program 47 times [2021-12-19 17:50:33,693 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:33,693 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [617498596] [2021-12-19 17:50:33,693 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:33,693 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:33,713 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:34,395 INFO L134 CoverageAnalysis]: Checked inductivity of 1428 backedges. 782 proven. 646 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:34,396 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:34,396 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [617498596] [2021-12-19 17:50:34,396 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [617498596] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:34,396 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1854489058] [2021-12-19 17:50:34,396 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:50:34,396 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:34,396 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:34,397 INFO L229 MonitoredProcess]: Starting monitored process 42 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:34,398 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (42)] Waiting until timeout for monitored process [2021-12-19 17:50:35,290 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 25 check-sat command(s) [2021-12-19 17:50:35,290 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:35,297 INFO L263 TraceCheckSpWp]: Trace formula consists of 549 conjuncts, 52 conjunts are in the unsatisfiable core [2021-12-19 17:50:35,298 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:36,322 INFO L134 CoverageAnalysis]: Checked inductivity of 1428 backedges. 852 proven. 576 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:36,322 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:36,508 INFO L134 CoverageAnalysis]: Checked inductivity of 1428 backedges. 852 proven. 576 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:36,509 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1854489058] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:36,509 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:36,509 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [52, 52, 52] total 79 [2021-12-19 17:50:36,509 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [594015555] [2021-12-19 17:50:36,509 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:36,537 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:36,538 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 80 interpolants. [2021-12-19 17:50:36,539 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=1461, Invalid=4859, Unknown=0, NotChecked=0, Total=6320 [2021-12-19 17:50:36,539 INFO L87 Difference]: Start difference. First operand 204 states and 231 transitions. cyclomatic complexity: 30 Second operand has 80 states, 79 states have (on average 2.607594936708861) internal successors, (206), 80 states have internal predecessors, (206), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:37,490 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:37,491 INFO L93 Difference]: Finished difference Result 661 states and 764 transitions. [2021-12-19 17:50:37,491 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 54 states. [2021-12-19 17:50:37,492 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 661 states and 764 transitions. [2021-12-19 17:50:37,494 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:37,495 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 661 states to 368 states and 422 transitions. [2021-12-19 17:50:37,495 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 317 [2021-12-19 17:50:37,495 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 317 [2021-12-19 17:50:37,495 INFO L73 IsDeterministic]: Start isDeterministic. Operand 368 states and 422 transitions. [2021-12-19 17:50:37,495 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:37,495 INFO L681 BuchiCegarLoop]: Abstraction has 368 states and 422 transitions. [2021-12-19 17:50:37,496 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 368 states and 422 transitions. [2021-12-19 17:50:37,497 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 368 to 212. [2021-12-19 17:50:37,497 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 212 states, 212 states have (on average 1.1320754716981132) internal successors, (240), 211 states have internal predecessors, (240), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:37,498 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 212 states to 212 states and 240 transitions. [2021-12-19 17:50:37,498 INFO L704 BuchiCegarLoop]: Abstraction has 212 states and 240 transitions. [2021-12-19 17:50:37,498 INFO L587 BuchiCegarLoop]: Abstraction has 212 states and 240 transitions. [2021-12-19 17:50:37,498 INFO L425 BuchiCegarLoop]: ======== Iteration 27============ [2021-12-19 17:50:37,498 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 212 states and 240 transitions. [2021-12-19 17:50:37,499 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:37,499 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:37,499 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:37,499 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [25, 25, 25, 24, 24, 1, 1, 1, 1] [2021-12-19 17:50:37,499 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:37,500 INFO L791 eck$LassoCheckResult]: Stem: 23016#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 23017#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 23022#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23037#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23038#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23025#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23026#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23088#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23087#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23086#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23085#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23084#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23083#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23082#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23081#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23080#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23079#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23078#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23077#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23076#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23075#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23074#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23073#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23072#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23071#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23070#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23069#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23068#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23067#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23066#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23065#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23064#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23063#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23062#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23061#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23060#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23059#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23058#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23057#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23056#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23055#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23054#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23053#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23052#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23051#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23050#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23049#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23048#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23047#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23046#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23045#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 23041#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 23040#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 23027#L27-4 main_~i~0#1 := 0; 23028#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23096#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23097#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23098#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23102#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23101#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23222#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23219#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23217#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23216#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23213#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23211#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23210#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23207#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23205#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23204#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23201#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23199#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23198#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23195#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23193#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23192#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23189#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23187#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23186#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23183#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23181#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23180#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23177#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23175#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23174#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23171#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23169#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23168#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23165#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23163#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23162#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23159#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23157#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23156#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23153#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23151#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23150#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23147#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23145#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23144#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23141#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23139#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23138#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23135#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23133#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23132#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23129#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23127#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23126#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23123#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23121#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23120#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23117#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23115#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23114#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23111#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23109#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23108#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23106#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23105#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23104#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23034#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23021#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23031#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23036#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23093#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23092#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23043#L34 [2021-12-19 17:50:37,500 INFO L793 eck$LassoCheckResult]: Loop: 23043#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 23044#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 23042#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 23043#L34 [2021-12-19 17:50:37,500 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:37,500 INFO L85 PathProgramCache]: Analyzing trace with hash -1097778821, now seen corresponding path program 48 times [2021-12-19 17:50:37,500 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:37,500 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [254638157] [2021-12-19 17:50:37,501 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:37,501 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:37,598 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:37,599 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:37,683 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:37,697 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:37,697 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:37,698 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 26 times [2021-12-19 17:50:37,698 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:37,698 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1042495937] [2021-12-19 17:50:37,698 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:37,698 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:37,701 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:37,701 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:37,701 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:37,703 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:37,703 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:37,703 INFO L85 PathProgramCache]: Analyzing trace with hash -2047824901, now seen corresponding path program 49 times [2021-12-19 17:50:37,703 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:37,703 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1133261366] [2021-12-19 17:50:37,703 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:37,703 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:37,724 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:38,496 INFO L134 CoverageAnalysis]: Checked inductivity of 1550 backedges. 852 proven. 698 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:38,497 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:38,497 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1133261366] [2021-12-19 17:50:38,497 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1133261366] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:38,497 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1876047932] [2021-12-19 17:50:38,497 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:50:38,497 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:38,497 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:38,499 INFO L229 MonitoredProcess]: Starting monitored process 43 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:38,500 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (43)] Waiting until timeout for monitored process [2021-12-19 17:50:38,666 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:38,668 INFO L263 TraceCheckSpWp]: Trace formula consists of 570 conjuncts, 54 conjunts are in the unsatisfiable core [2021-12-19 17:50:38,669 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:39,742 INFO L134 CoverageAnalysis]: Checked inductivity of 1550 backedges. 925 proven. 625 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:39,742 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:39,925 INFO L134 CoverageAnalysis]: Checked inductivity of 1550 backedges. 925 proven. 625 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:39,925 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1876047932] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:39,925 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:39,925 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [54, 54, 54] total 82 [2021-12-19 17:50:39,925 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [474466074] [2021-12-19 17:50:39,925 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:39,952 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:39,953 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 83 interpolants. [2021-12-19 17:50:39,954 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=1571, Invalid=5235, Unknown=0, NotChecked=0, Total=6806 [2021-12-19 17:50:39,954 INFO L87 Difference]: Start difference. First operand 212 states and 240 transitions. cyclomatic complexity: 31 Second operand has 83 states, 82 states have (on average 2.6097560975609757) internal successors, (214), 83 states have internal predecessors, (214), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:40,931 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:40,931 INFO L93 Difference]: Finished difference Result 687 states and 794 transitions. [2021-12-19 17:50:40,931 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 56 states. [2021-12-19 17:50:40,932 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 687 states and 794 transitions. [2021-12-19 17:50:40,934 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:40,936 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 687 states to 382 states and 438 transitions. [2021-12-19 17:50:40,936 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 329 [2021-12-19 17:50:40,936 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 329 [2021-12-19 17:50:40,936 INFO L73 IsDeterministic]: Start isDeterministic. Operand 382 states and 438 transitions. [2021-12-19 17:50:40,936 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:40,936 INFO L681 BuchiCegarLoop]: Abstraction has 382 states and 438 transitions. [2021-12-19 17:50:40,937 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 382 states and 438 transitions. [2021-12-19 17:50:40,938 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 382 to 220. [2021-12-19 17:50:40,939 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 220 states, 220 states have (on average 1.1318181818181818) internal successors, (249), 219 states have internal predecessors, (249), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:40,939 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 220 states to 220 states and 249 transitions. [2021-12-19 17:50:40,939 INFO L704 BuchiCegarLoop]: Abstraction has 220 states and 249 transitions. [2021-12-19 17:50:40,939 INFO L587 BuchiCegarLoop]: Abstraction has 220 states and 249 transitions. [2021-12-19 17:50:40,939 INFO L425 BuchiCegarLoop]: ======== Iteration 28============ [2021-12-19 17:50:40,939 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 220 states and 249 transitions. [2021-12-19 17:50:40,940 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:40,940 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:40,940 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:40,940 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [26, 26, 26, 25, 25, 1, 1, 1, 1] [2021-12-19 17:50:40,940 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:40,940 INFO L791 eck$LassoCheckResult]: Stem: 24829#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 24830#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 24835#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24849#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24850#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24838#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24839#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24902#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24901#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24900#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24899#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24898#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24897#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24896#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24895#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24894#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24893#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24892#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24891#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24890#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24889#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24888#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24887#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24886#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24885#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24884#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24883#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24882#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24881#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24880#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24879#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24878#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24877#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24876#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24875#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24874#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24873#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24872#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24871#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24870#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24869#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24868#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24867#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24866#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24865#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24864#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24863#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24862#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24861#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24860#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24859#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24858#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24857#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 24853#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 24852#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 24840#L27-4 main_~i~0#1 := 0; 24841#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 25043#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24912#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24910#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24911#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24915#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 25041#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 25038#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 25036#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 25035#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 25032#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 25030#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 25029#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 25026#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 25024#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 25023#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 25020#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 25018#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 25017#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 25014#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 25012#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 25011#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 25008#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 25006#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 25005#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 25002#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 25000#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24999#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24996#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24994#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24993#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24990#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24988#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24987#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24984#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24982#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24981#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24978#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24976#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24975#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24972#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24970#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24969#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24966#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24964#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24963#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24960#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24958#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24957#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24954#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24952#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24951#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24948#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24946#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24945#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24942#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24940#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24939#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24936#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24934#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24933#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24930#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24928#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24927#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24924#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24922#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24921#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24920#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24919#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24918#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24846#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24834#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24843#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24848#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24907#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24906#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24855#L34 [2021-12-19 17:50:40,948 INFO L793 eck$LassoCheckResult]: Loop: 24855#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 24856#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 24854#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 24855#L34 [2021-12-19 17:50:40,948 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:40,948 INFO L85 PathProgramCache]: Analyzing trace with hash 791980157, now seen corresponding path program 50 times [2021-12-19 17:50:40,949 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:40,949 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [118312464] [2021-12-19 17:50:40,949 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:40,949 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:41,031 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:41,032 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:41,124 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:41,134 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:41,134 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:41,134 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 27 times [2021-12-19 17:50:41,134 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:41,134 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [12524332] [2021-12-19 17:50:41,135 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:41,135 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:41,137 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:41,137 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:41,138 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:41,140 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:41,140 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:41,140 INFO L85 PathProgramCache]: Analyzing trace with hash 1625540025, now seen corresponding path program 51 times [2021-12-19 17:50:41,141 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:41,141 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [882848984] [2021-12-19 17:50:41,141 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:41,141 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:41,161 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:41,917 INFO L134 CoverageAnalysis]: Checked inductivity of 1677 backedges. 925 proven. 752 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:41,917 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:41,917 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [882848984] [2021-12-19 17:50:41,918 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [882848984] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:41,918 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1477422199] [2021-12-19 17:50:41,918 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:50:41,918 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:41,918 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:41,919 INFO L229 MonitoredProcess]: Starting monitored process 44 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:41,920 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (44)] Waiting until timeout for monitored process [2021-12-19 17:50:43,335 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 27 check-sat command(s) [2021-12-19 17:50:43,336 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:43,343 INFO L263 TraceCheckSpWp]: Trace formula consists of 591 conjuncts, 56 conjunts are in the unsatisfiable core [2021-12-19 17:50:43,344 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:44,456 INFO L134 CoverageAnalysis]: Checked inductivity of 1677 backedges. 1001 proven. 676 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:44,456 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:44,650 INFO L134 CoverageAnalysis]: Checked inductivity of 1677 backedges. 1001 proven. 676 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:44,650 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1477422199] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:44,650 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:44,650 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [56, 56, 56] total 85 [2021-12-19 17:50:44,650 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [877103852] [2021-12-19 17:50:44,650 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:44,689 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:44,690 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 86 interpolants. [2021-12-19 17:50:44,690 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=1685, Invalid=5625, Unknown=0, NotChecked=0, Total=7310 [2021-12-19 17:50:44,691 INFO L87 Difference]: Start difference. First operand 220 states and 249 transitions. cyclomatic complexity: 32 Second operand has 86 states, 85 states have (on average 2.611764705882353) internal successors, (222), 86 states have internal predecessors, (222), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:45,718 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:45,718 INFO L93 Difference]: Finished difference Result 713 states and 824 transitions. [2021-12-19 17:50:45,719 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 58 states. [2021-12-19 17:50:45,719 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 713 states and 824 transitions. [2021-12-19 17:50:45,721 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:45,722 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 713 states to 396 states and 454 transitions. [2021-12-19 17:50:45,722 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 341 [2021-12-19 17:50:45,722 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 341 [2021-12-19 17:50:45,722 INFO L73 IsDeterministic]: Start isDeterministic. Operand 396 states and 454 transitions. [2021-12-19 17:50:45,723 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:45,723 INFO L681 BuchiCegarLoop]: Abstraction has 396 states and 454 transitions. [2021-12-19 17:50:45,723 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 396 states and 454 transitions. [2021-12-19 17:50:45,725 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 396 to 228. [2021-12-19 17:50:45,725 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 228 states, 228 states have (on average 1.131578947368421) internal successors, (258), 227 states have internal predecessors, (258), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:45,725 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 228 states to 228 states and 258 transitions. [2021-12-19 17:50:45,726 INFO L704 BuchiCegarLoop]: Abstraction has 228 states and 258 transitions. [2021-12-19 17:50:45,726 INFO L587 BuchiCegarLoop]: Abstraction has 228 states and 258 transitions. [2021-12-19 17:50:45,726 INFO L425 BuchiCegarLoop]: ======== Iteration 29============ [2021-12-19 17:50:45,726 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 228 states and 258 transitions. [2021-12-19 17:50:45,726 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:45,726 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:45,727 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:45,727 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [27, 27, 27, 26, 26, 1, 1, 1, 1] [2021-12-19 17:50:45,727 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:45,727 INFO L791 eck$LassoCheckResult]: Stem: 26711#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 26712#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 26717#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26732#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26733#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26720#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26721#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26787#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26786#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26785#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26784#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26783#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26782#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26781#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26780#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26779#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26778#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26777#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26776#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26775#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26774#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26773#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26772#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26771#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26770#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26769#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26768#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26767#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26766#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26765#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26764#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26763#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26762#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26761#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26760#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26759#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26758#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26757#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26756#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26755#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26754#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26753#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26752#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26751#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26750#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26749#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26748#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26747#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26746#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26745#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26744#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26743#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26742#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26741#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26740#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 26736#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 26735#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 26722#L27-4 main_~i~0#1 := 0; 26723#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26795#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26796#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26797#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26801#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26800#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26933#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26930#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26928#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26927#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26924#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26922#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26921#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26918#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26916#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26915#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26912#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26910#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26909#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26906#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26904#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26903#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26900#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26898#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26897#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26894#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26892#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26891#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26888#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26886#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26885#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26882#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26880#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26879#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26876#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26874#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26873#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26870#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26868#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26867#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26864#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26862#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26861#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26858#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26856#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26855#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26852#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26850#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26849#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26846#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26844#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26843#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26840#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26838#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26837#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26834#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26832#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26831#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26828#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26826#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26825#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26822#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26820#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26819#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26816#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26814#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26813#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26810#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26808#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26807#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26805#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26804#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26803#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26729#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26716#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26726#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26731#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26792#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26791#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26738#L34 [2021-12-19 17:50:45,728 INFO L793 eck$LassoCheckResult]: Loop: 26738#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 26739#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 26737#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 26738#L34 [2021-12-19 17:50:45,728 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:45,728 INFO L85 PathProgramCache]: Analyzing trace with hash -325891465, now seen corresponding path program 52 times [2021-12-19 17:50:45,728 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:45,728 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [91105196] [2021-12-19 17:50:45,728 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:45,728 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:45,825 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:45,826 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:45,903 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:45,913 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:45,914 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:45,914 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 28 times [2021-12-19 17:50:45,914 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:45,914 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [55540699] [2021-12-19 17:50:45,914 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:45,914 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:45,917 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:45,917 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:45,918 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:45,920 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:45,920 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:45,920 INFO L85 PathProgramCache]: Analyzing trace with hash -2006505089, now seen corresponding path program 53 times [2021-12-19 17:50:45,920 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:45,920 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1177001259] [2021-12-19 17:50:45,920 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:45,921 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:45,943 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:46,745 INFO L134 CoverageAnalysis]: Checked inductivity of 1809 backedges. 1001 proven. 808 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:46,745 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:46,745 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1177001259] [2021-12-19 17:50:46,745 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1177001259] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:46,745 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [238050262] [2021-12-19 17:50:46,745 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:50:46,746 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:46,746 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:46,747 INFO L229 MonitoredProcess]: Starting monitored process 45 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:46,747 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (45)] Waiting until timeout for monitored process [2021-12-19 17:50:49,247 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 28 check-sat command(s) [2021-12-19 17:50:49,247 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:50:49,260 INFO L263 TraceCheckSpWp]: Trace formula consists of 612 conjuncts, 58 conjunts are in the unsatisfiable core [2021-12-19 17:50:49,262 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:50,418 INFO L134 CoverageAnalysis]: Checked inductivity of 1809 backedges. 1080 proven. 729 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:50,419 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:50,614 INFO L134 CoverageAnalysis]: Checked inductivity of 1809 backedges. 1080 proven. 729 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:50,614 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [238050262] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:50,614 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:50,614 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [58, 58, 58] total 88 [2021-12-19 17:50:50,615 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [204573715] [2021-12-19 17:50:50,615 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:50,658 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:50,659 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 89 interpolants. [2021-12-19 17:50:50,660 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=1803, Invalid=6029, Unknown=0, NotChecked=0, Total=7832 [2021-12-19 17:50:50,660 INFO L87 Difference]: Start difference. First operand 228 states and 258 transitions. cyclomatic complexity: 33 Second operand has 89 states, 88 states have (on average 2.6136363636363638) internal successors, (230), 89 states have internal predecessors, (230), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:51,656 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:51,656 INFO L93 Difference]: Finished difference Result 739 states and 854 transitions. [2021-12-19 17:50:51,657 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 60 states. [2021-12-19 17:50:51,657 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 739 states and 854 transitions. [2021-12-19 17:50:51,659 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:51,660 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 739 states to 410 states and 470 transitions. [2021-12-19 17:50:51,660 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 353 [2021-12-19 17:50:51,661 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 353 [2021-12-19 17:50:51,661 INFO L73 IsDeterministic]: Start isDeterministic. Operand 410 states and 470 transitions. [2021-12-19 17:50:51,661 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:51,661 INFO L681 BuchiCegarLoop]: Abstraction has 410 states and 470 transitions. [2021-12-19 17:50:51,661 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 410 states and 470 transitions. [2021-12-19 17:50:51,663 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 410 to 236. [2021-12-19 17:50:51,664 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 236 states, 236 states have (on average 1.13135593220339) internal successors, (267), 235 states have internal predecessors, (267), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:51,664 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 236 states to 236 states and 267 transitions. [2021-12-19 17:50:51,664 INFO L704 BuchiCegarLoop]: Abstraction has 236 states and 267 transitions. [2021-12-19 17:50:51,664 INFO L587 BuchiCegarLoop]: Abstraction has 236 states and 267 transitions. [2021-12-19 17:50:51,664 INFO L425 BuchiCegarLoop]: ======== Iteration 30============ [2021-12-19 17:50:51,664 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 236 states and 267 transitions. [2021-12-19 17:50:51,665 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:51,665 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:51,665 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:51,665 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [28, 28, 28, 27, 27, 1, 1, 1, 1] [2021-12-19 17:50:51,665 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:51,666 INFO L791 eck$LassoCheckResult]: Stem: 28662#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 28663#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 28668#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28682#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28683#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28671#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28672#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28739#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28738#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28737#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28736#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28735#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28734#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28733#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28732#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28731#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28730#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28729#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28728#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28727#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28726#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28725#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28724#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28723#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28722#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28721#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28720#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28719#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28718#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28717#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28716#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28715#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28714#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28713#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28712#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28711#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28710#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28709#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28708#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28707#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28706#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28705#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28704#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28703#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28702#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28701#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28700#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28699#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28698#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28697#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28696#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28695#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28694#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28693#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28692#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28691#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28690#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 28686#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 28685#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 28673#L27-4 main_~i~0#1 := 0; 28674#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28893#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28749#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28747#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28748#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28752#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28892#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28889#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28887#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28886#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28883#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28881#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28880#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28877#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28875#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28874#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28871#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28869#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28868#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28865#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28863#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28862#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28859#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28857#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28856#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28853#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28851#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28850#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28847#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28845#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28844#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28841#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28839#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28838#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28835#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28833#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28832#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28829#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28827#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28826#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28823#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28821#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28820#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28817#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28815#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28814#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28811#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28809#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28808#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28805#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28803#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28802#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28799#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28797#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28796#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28793#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28791#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28790#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28787#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28785#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28784#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28781#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28779#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28778#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28775#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28773#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28772#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28769#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28767#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28766#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28763#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28761#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28760#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28758#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28756#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28755#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28679#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28667#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28676#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28681#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28744#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28743#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28688#L34 [2021-12-19 17:50:51,666 INFO L793 eck$LassoCheckResult]: Loop: 28688#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 28689#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 28687#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 28688#L34 [2021-12-19 17:50:51,666 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:51,666 INFO L85 PathProgramCache]: Analyzing trace with hash 1979902849, now seen corresponding path program 54 times [2021-12-19 17:50:51,666 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:51,667 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1817779865] [2021-12-19 17:50:51,667 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:51,667 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:51,749 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:51,750 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:51,870 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:51,878 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:51,878 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:51,878 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 29 times [2021-12-19 17:50:51,879 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:51,879 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1066824465] [2021-12-19 17:50:51,879 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:51,879 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:51,882 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:51,882 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:51,882 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:51,884 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:51,884 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:51,884 INFO L85 PathProgramCache]: Analyzing trace with hash 499938357, now seen corresponding path program 55 times [2021-12-19 17:50:51,884 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:51,884 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [522686146] [2021-12-19 17:50:51,884 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:51,885 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:51,905 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:52,733 INFO L134 CoverageAnalysis]: Checked inductivity of 1946 backedges. 1080 proven. 866 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:52,734 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:52,734 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [522686146] [2021-12-19 17:50:52,734 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [522686146] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:52,734 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1966509372] [2021-12-19 17:50:52,734 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:50:52,734 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:52,734 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:52,735 INFO L229 MonitoredProcess]: Starting monitored process 46 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:52,737 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (46)] Waiting until timeout for monitored process [2021-12-19 17:50:52,905 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:52,907 INFO L263 TraceCheckSpWp]: Trace formula consists of 633 conjuncts, 60 conjunts are in the unsatisfiable core [2021-12-19 17:50:52,909 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:50:54,177 INFO L134 CoverageAnalysis]: Checked inductivity of 1946 backedges. 1162 proven. 784 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:54,178 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:50:54,398 INFO L134 CoverageAnalysis]: Checked inductivity of 1946 backedges. 1162 proven. 784 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:54,399 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1966509372] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:50:54,399 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:50:54,399 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [60, 60, 60] total 91 [2021-12-19 17:50:54,399 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1794558285] [2021-12-19 17:50:54,399 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:50:54,427 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:50:54,428 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 92 interpolants. [2021-12-19 17:50:54,428 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=1925, Invalid=6447, Unknown=0, NotChecked=0, Total=8372 [2021-12-19 17:50:54,428 INFO L87 Difference]: Start difference. First operand 236 states and 267 transitions. cyclomatic complexity: 34 Second operand has 92 states, 91 states have (on average 2.6153846153846154) internal successors, (238), 92 states have internal predecessors, (238), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:55,604 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:50:55,604 INFO L93 Difference]: Finished difference Result 765 states and 884 transitions. [2021-12-19 17:50:55,604 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 62 states. [2021-12-19 17:50:55,604 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 765 states and 884 transitions. [2021-12-19 17:50:55,606 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:55,607 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 765 states to 424 states and 486 transitions. [2021-12-19 17:50:55,608 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 365 [2021-12-19 17:50:55,608 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 365 [2021-12-19 17:50:55,608 INFO L73 IsDeterministic]: Start isDeterministic. Operand 424 states and 486 transitions. [2021-12-19 17:50:55,608 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:50:55,608 INFO L681 BuchiCegarLoop]: Abstraction has 424 states and 486 transitions. [2021-12-19 17:50:55,609 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 424 states and 486 transitions. [2021-12-19 17:50:55,610 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 424 to 244. [2021-12-19 17:50:55,611 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 244 states, 244 states have (on average 1.1311475409836065) internal successors, (276), 243 states have internal predecessors, (276), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:50:55,611 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 244 states to 244 states and 276 transitions. [2021-12-19 17:50:55,611 INFO L704 BuchiCegarLoop]: Abstraction has 244 states and 276 transitions. [2021-12-19 17:50:55,611 INFO L587 BuchiCegarLoop]: Abstraction has 244 states and 276 transitions. [2021-12-19 17:50:55,611 INFO L425 BuchiCegarLoop]: ======== Iteration 31============ [2021-12-19 17:50:55,611 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 244 states and 276 transitions. [2021-12-19 17:50:55,612 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:50:55,612 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:50:55,612 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:50:55,613 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [29, 29, 29, 28, 28, 1, 1, 1, 1] [2021-12-19 17:50:55,613 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:50:55,613 INFO L791 eck$LassoCheckResult]: Stem: 30682#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 30683#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 30688#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30703#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30704#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30691#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30692#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30762#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30761#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30760#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30759#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30758#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30757#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30756#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30755#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30754#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30753#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30752#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30751#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30750#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30749#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30748#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30747#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30746#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30745#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30744#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30743#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30742#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30741#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30740#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30739#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30738#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30737#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30736#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30735#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30734#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30733#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30732#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30731#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30730#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30729#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30728#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30727#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30726#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30725#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30724#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30723#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30722#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30721#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30720#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30719#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30718#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30717#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30716#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30715#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30714#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30713#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30712#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30711#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 30707#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 30706#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 30693#L27-4 main_~i~0#1 := 0; 30694#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30770#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30771#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30772#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30776#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30775#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30920#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30917#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30915#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30914#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30911#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30909#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30908#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30905#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30903#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30902#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30899#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30897#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30896#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30893#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30891#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30890#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30887#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30885#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30884#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30881#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30879#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30878#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30875#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30873#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30872#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30869#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30867#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30866#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30863#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30861#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30860#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30857#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30855#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30854#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30851#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30849#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30848#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30845#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30843#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30842#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30839#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30837#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30836#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30833#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30831#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30830#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30827#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30825#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30824#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30821#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30819#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30818#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30815#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30813#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30812#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30809#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30807#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30806#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30803#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30801#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30800#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30797#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30795#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30794#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30791#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30789#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30788#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30785#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30783#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30782#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30780#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30779#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30778#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30700#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30687#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30697#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30702#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30767#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30766#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30709#L34 [2021-12-19 17:50:55,613 INFO L793 eck$LassoCheckResult]: Loop: 30709#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 30710#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 30708#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 30709#L34 [2021-12-19 17:50:55,613 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:55,614 INFO L85 PathProgramCache]: Analyzing trace with hash -2002541709, now seen corresponding path program 56 times [2021-12-19 17:50:55,614 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:55,614 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [269497034] [2021-12-19 17:50:55,614 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:55,614 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:55,733 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:55,733 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:55,828 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:55,841 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:55,841 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:55,841 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 30 times [2021-12-19 17:50:55,841 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:55,841 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1141531106] [2021-12-19 17:50:55,841 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:55,842 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:55,845 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:55,845 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:50:55,846 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:50:55,847 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:50:55,847 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:50:55,847 INFO L85 PathProgramCache]: Analyzing trace with hash -624271613, now seen corresponding path program 57 times [2021-12-19 17:50:55,848 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:50:55,848 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [825138949] [2021-12-19 17:50:55,848 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:50:55,848 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:50:55,871 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:50:56,741 INFO L134 CoverageAnalysis]: Checked inductivity of 2088 backedges. 1162 proven. 926 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:50:56,742 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:50:56,742 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [825138949] [2021-12-19 17:50:56,742 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [825138949] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:50:56,742 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1285364199] [2021-12-19 17:50:56,742 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:50:56,742 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:50:56,742 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:50:56,743 INFO L229 MonitoredProcess]: Starting monitored process 47 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:50:56,744 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (47)] Waiting until timeout for monitored process [2021-12-19 17:51:03,395 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 30 check-sat command(s) [2021-12-19 17:51:03,395 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:51:03,412 INFO L263 TraceCheckSpWp]: Trace formula consists of 654 conjuncts, 62 conjunts are in the unsatisfiable core [2021-12-19 17:51:03,414 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:51:04,732 INFO L134 CoverageAnalysis]: Checked inductivity of 2088 backedges. 1247 proven. 841 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:04,733 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:51:04,961 INFO L134 CoverageAnalysis]: Checked inductivity of 2088 backedges. 1247 proven. 841 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:04,962 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1285364199] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:51:04,962 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:51:04,962 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [62, 62, 62] total 94 [2021-12-19 17:51:04,962 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [2090842247] [2021-12-19 17:51:04,962 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:51:04,991 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:51:04,992 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 95 interpolants. [2021-12-19 17:51:04,993 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=2051, Invalid=6879, Unknown=0, NotChecked=0, Total=8930 [2021-12-19 17:51:04,993 INFO L87 Difference]: Start difference. First operand 244 states and 276 transitions. cyclomatic complexity: 35 Second operand has 95 states, 94 states have (on average 2.617021276595745) internal successors, (246), 95 states have internal predecessors, (246), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:51:06,236 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:51:06,236 INFO L93 Difference]: Finished difference Result 791 states and 914 transitions. [2021-12-19 17:51:06,237 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 64 states. [2021-12-19 17:51:06,237 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 791 states and 914 transitions. [2021-12-19 17:51:06,239 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:51:06,240 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 791 states to 438 states and 502 transitions. [2021-12-19 17:51:06,240 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 377 [2021-12-19 17:51:06,241 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 377 [2021-12-19 17:51:06,241 INFO L73 IsDeterministic]: Start isDeterministic. Operand 438 states and 502 transitions. [2021-12-19 17:51:06,249 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:51:06,249 INFO L681 BuchiCegarLoop]: Abstraction has 438 states and 502 transitions. [2021-12-19 17:51:06,249 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 438 states and 502 transitions. [2021-12-19 17:51:06,252 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 438 to 252. [2021-12-19 17:51:06,252 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 252 states, 252 states have (on average 1.130952380952381) internal successors, (285), 251 states have internal predecessors, (285), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:51:06,253 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 252 states to 252 states and 285 transitions. [2021-12-19 17:51:06,253 INFO L704 BuchiCegarLoop]: Abstraction has 252 states and 285 transitions. [2021-12-19 17:51:06,253 INFO L587 BuchiCegarLoop]: Abstraction has 252 states and 285 transitions. [2021-12-19 17:51:06,253 INFO L425 BuchiCegarLoop]: ======== Iteration 32============ [2021-12-19 17:51:06,253 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 252 states and 285 transitions. [2021-12-19 17:51:06,254 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:51:06,254 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:51:06,254 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:51:06,255 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [30, 30, 30, 29, 29, 1, 1, 1, 1] [2021-12-19 17:51:06,255 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:51:06,255 INFO L791 eck$LassoCheckResult]: Stem: 32771#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 32772#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 32777#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32791#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32792#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32780#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32781#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32852#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32851#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32850#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32849#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32848#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32847#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32846#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32845#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32844#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32843#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32842#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32841#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32840#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32839#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32838#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32837#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32836#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32835#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32834#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32833#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32832#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32831#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32830#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32829#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32828#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32827#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32826#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32825#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32824#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32823#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32822#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32821#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32820#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32819#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32818#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32817#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32816#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32815#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32814#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32813#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32812#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32811#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32810#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32809#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32808#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32807#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32806#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32805#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32804#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32803#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32802#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32801#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32800#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32799#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 32795#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 32794#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 32782#L27-4 main_~i~0#1 := 0; 32783#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 33017#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32862#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32860#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32861#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32865#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 33015#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 33012#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 33010#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 33009#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 33006#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 33004#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 33003#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 33000#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32998#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32997#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32994#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32992#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32991#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32988#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32986#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32985#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32982#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32980#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32979#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32976#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32974#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32973#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32970#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32968#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32967#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32964#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32962#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32961#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32958#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32956#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32955#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32952#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32950#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32949#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32946#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32944#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32943#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32940#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32938#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32937#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32934#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32932#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32931#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32928#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32926#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32925#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32922#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32920#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32919#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32916#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32914#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32913#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32910#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32908#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32907#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32904#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32902#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32901#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32898#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32896#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32895#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32892#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32890#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32889#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32886#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32884#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32883#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32880#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32878#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32877#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32874#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32872#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32871#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32870#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32869#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32868#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32788#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32776#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32785#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32790#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32857#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32856#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32797#L34 [2021-12-19 17:51:06,256 INFO L793 eck$LassoCheckResult]: Loop: 32797#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 32798#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 32796#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 32797#L34 [2021-12-19 17:51:06,256 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:06,256 INFO L85 PathProgramCache]: Analyzing trace with hash 1004865157, now seen corresponding path program 58 times [2021-12-19 17:51:06,256 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:06,256 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [198443405] [2021-12-19 17:51:06,257 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:06,257 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:06,379 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:06,380 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:51:06,490 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:06,501 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:51:06,502 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:06,502 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 31 times [2021-12-19 17:51:06,502 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:06,502 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1439092168] [2021-12-19 17:51:06,502 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:06,503 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:06,506 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:06,506 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:51:06,506 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:06,508 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:51:06,508 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:06,508 INFO L85 PathProgramCache]: Analyzing trace with hash 15878833, now seen corresponding path program 59 times [2021-12-19 17:51:06,508 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:06,509 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [2055076780] [2021-12-19 17:51:06,509 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:06,509 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:06,533 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:51:07,507 INFO L134 CoverageAnalysis]: Checked inductivity of 2235 backedges. 1247 proven. 988 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:07,507 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:51:07,507 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [2055076780] [2021-12-19 17:51:07,508 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [2055076780] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:51:07,508 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [703856899] [2021-12-19 17:51:07,508 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:51:07,508 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:51:07,508 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:51:07,511 INFO L229 MonitoredProcess]: Starting monitored process 48 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:51:07,512 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (48)] Waiting until timeout for monitored process [2021-12-19 17:51:09,149 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 31 check-sat command(s) [2021-12-19 17:51:09,149 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:51:09,158 INFO L263 TraceCheckSpWp]: Trace formula consists of 675 conjuncts, 65 conjunts are in the unsatisfiable core [2021-12-19 17:51:09,160 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:51:11,327 INFO L134 CoverageAnalysis]: Checked inductivity of 2235 backedges. 1305 proven. 930 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:11,327 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:51:13,074 INFO L134 CoverageAnalysis]: Checked inductivity of 2235 backedges. 1305 proven. 930 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:13,075 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [703856899] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:51:13,075 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:51:13,075 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [64, 64, 64] total 160 [2021-12-19 17:51:13,075 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [232743551] [2021-12-19 17:51:13,075 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:51:13,100 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:51:13,101 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 161 interpolants. [2021-12-19 17:51:13,104 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=4198, Invalid=21562, Unknown=0, NotChecked=0, Total=25760 [2021-12-19 17:51:13,105 INFO L87 Difference]: Start difference. First operand 252 states and 285 transitions. cyclomatic complexity: 36 Second operand has 161 states, 160 states have (on average 2.34375) internal successors, (375), 161 states have internal predecessors, (375), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:51:15,795 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:51:15,796 INFO L93 Difference]: Finished difference Result 998 states and 1154 transitions. [2021-12-19 17:51:15,796 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 129 states. [2021-12-19 17:51:15,796 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 998 states and 1154 transitions. [2021-12-19 17:51:15,799 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:51:15,800 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 998 states to 452 states and 518 transitions. [2021-12-19 17:51:15,800 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 389 [2021-12-19 17:51:15,800 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 389 [2021-12-19 17:51:15,800 INFO L73 IsDeterministic]: Start isDeterministic. Operand 452 states and 518 transitions. [2021-12-19 17:51:15,801 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:51:15,801 INFO L681 BuchiCegarLoop]: Abstraction has 452 states and 518 transitions. [2021-12-19 17:51:15,801 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 452 states and 518 transitions. [2021-12-19 17:51:15,803 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 452 to 260. [2021-12-19 17:51:15,803 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 260 states, 260 states have (on average 1.1307692307692307) internal successors, (294), 259 states have internal predecessors, (294), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:51:15,804 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 260 states to 260 states and 294 transitions. [2021-12-19 17:51:15,804 INFO L704 BuchiCegarLoop]: Abstraction has 260 states and 294 transitions. [2021-12-19 17:51:15,804 INFO L587 BuchiCegarLoop]: Abstraction has 260 states and 294 transitions. [2021-12-19 17:51:15,804 INFO L425 BuchiCegarLoop]: ======== Iteration 33============ [2021-12-19 17:51:15,804 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 260 states and 294 transitions. [2021-12-19 17:51:15,805 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:51:15,805 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:51:15,805 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:51:15,805 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [31, 31, 31, 30, 30, 1, 1, 1, 1] [2021-12-19 17:51:15,805 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:51:15,806 INFO L791 eck$LassoCheckResult]: Stem: 35239#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 35240#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 35245#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35260#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35261#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35248#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35249#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35323#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35322#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35321#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35320#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35319#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35318#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35317#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35316#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35315#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35314#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35313#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35312#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35311#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35310#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35309#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35308#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35307#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35306#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35305#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35304#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35303#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35302#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35301#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35300#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35299#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35298#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35297#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35296#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35295#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35294#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35293#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35292#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35291#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35290#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35289#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35288#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35287#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35286#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35285#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35284#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35283#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35282#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35281#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35280#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35279#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35278#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35277#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35276#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35275#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35274#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35273#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35272#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35271#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35270#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35269#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35268#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 35264#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 35263#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 35250#L27-4 main_~i~0#1 := 0; 35251#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35331#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35332#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35333#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35337#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35336#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35493#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35490#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35488#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35487#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35484#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35482#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35481#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35478#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35476#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35475#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35472#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35470#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35469#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35466#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35464#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35463#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35460#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35458#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35457#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35454#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35452#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35451#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35448#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35446#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35445#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35442#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35440#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35439#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35436#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35434#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35433#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35430#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35428#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35427#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35424#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35422#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35421#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35418#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35416#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35415#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35412#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35410#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35409#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35406#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35404#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35403#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35400#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35398#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35397#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35394#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35392#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35391#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35388#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35386#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35385#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35382#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35380#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35379#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35376#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35374#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35373#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35370#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35368#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35367#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35364#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35362#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35361#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35358#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35356#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35355#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35352#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35350#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35349#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35346#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35344#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35343#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35341#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35340#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35339#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35257#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35244#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35254#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35259#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35328#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35327#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35266#L34 [2021-12-19 17:51:15,806 INFO L793 eck$LassoCheckResult]: Loop: 35266#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 35267#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 35265#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 35266#L34 [2021-12-19 17:51:15,806 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:15,806 INFO L85 PathProgramCache]: Analyzing trace with hash 389940335, now seen corresponding path program 60 times [2021-12-19 17:51:15,806 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:15,806 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1002139607] [2021-12-19 17:51:15,806 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:15,807 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:15,930 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:15,930 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:51:16,057 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:16,070 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:51:16,071 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:16,071 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 32 times [2021-12-19 17:51:16,071 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:16,071 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1780666051] [2021-12-19 17:51:16,072 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:16,074 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:16,077 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:16,077 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:51:16,078 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:16,080 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:51:16,080 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:16,080 INFO L85 PathProgramCache]: Analyzing trace with hash -1173975929, now seen corresponding path program 61 times [2021-12-19 17:51:16,080 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:16,080 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [544883243] [2021-12-19 17:51:16,081 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:16,081 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:16,105 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:51:17,093 INFO L134 CoverageAnalysis]: Checked inductivity of 2387 backedges. 1335 proven. 1052 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:17,093 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:51:17,093 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [544883243] [2021-12-19 17:51:17,094 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [544883243] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:51:17,094 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1394276603] [2021-12-19 17:51:17,094 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:51:17,094 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:51:17,094 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:51:17,095 INFO L229 MonitoredProcess]: Starting monitored process 49 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:51:17,096 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (49)] Waiting until timeout for monitored process [2021-12-19 17:51:17,306 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:51:17,309 INFO L263 TraceCheckSpWp]: Trace formula consists of 696 conjuncts, 66 conjunts are in the unsatisfiable core [2021-12-19 17:51:17,311 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:51:18,820 INFO L134 CoverageAnalysis]: Checked inductivity of 2387 backedges. 1426 proven. 961 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:18,820 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:51:19,070 INFO L134 CoverageAnalysis]: Checked inductivity of 2387 backedges. 1426 proven. 961 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:19,071 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1394276603] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:51:19,071 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:51:19,071 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [66, 66, 66] total 100 [2021-12-19 17:51:19,071 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [2042852792] [2021-12-19 17:51:19,071 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:51:19,100 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:51:19,101 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 101 interpolants. [2021-12-19 17:51:19,102 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=2315, Invalid=7785, Unknown=0, NotChecked=0, Total=10100 [2021-12-19 17:51:19,102 INFO L87 Difference]: Start difference. First operand 260 states and 294 transitions. cyclomatic complexity: 37 Second operand has 101 states, 100 states have (on average 2.62) internal successors, (262), 101 states have internal predecessors, (262), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:51:20,376 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:51:20,376 INFO L93 Difference]: Finished difference Result 843 states and 974 transitions. [2021-12-19 17:51:20,376 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 68 states. [2021-12-19 17:51:20,376 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 843 states and 974 transitions. [2021-12-19 17:51:20,379 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:51:20,381 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 843 states to 466 states and 534 transitions. [2021-12-19 17:51:20,381 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 401 [2021-12-19 17:51:20,381 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 401 [2021-12-19 17:51:20,381 INFO L73 IsDeterministic]: Start isDeterministic. Operand 466 states and 534 transitions. [2021-12-19 17:51:20,382 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:51:20,382 INFO L681 BuchiCegarLoop]: Abstraction has 466 states and 534 transitions. [2021-12-19 17:51:20,382 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 466 states and 534 transitions. [2021-12-19 17:51:20,384 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 466 to 268. [2021-12-19 17:51:20,384 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 268 states, 268 states have (on average 1.1305970149253732) internal successors, (303), 267 states have internal predecessors, (303), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:51:20,385 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 268 states to 268 states and 303 transitions. [2021-12-19 17:51:20,385 INFO L704 BuchiCegarLoop]: Abstraction has 268 states and 303 transitions. [2021-12-19 17:51:20,385 INFO L587 BuchiCegarLoop]: Abstraction has 268 states and 303 transitions. [2021-12-19 17:51:20,385 INFO L425 BuchiCegarLoop]: ======== Iteration 34============ [2021-12-19 17:51:20,385 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 268 states and 303 transitions. [2021-12-19 17:51:20,386 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:51:20,386 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:51:20,386 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:51:20,386 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [32, 32, 32, 31, 31, 1, 1, 1, 1] [2021-12-19 17:51:20,387 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:51:20,387 INFO L791 eck$LassoCheckResult]: Stem: 37466#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 37467#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 37472#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37486#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37487#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37475#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37476#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37551#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37550#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37549#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37548#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37547#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37546#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37545#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37544#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37543#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37542#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37541#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37540#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37539#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37538#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37537#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37536#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37535#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37534#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37533#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37532#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37531#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37530#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37529#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37528#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37527#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37526#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37525#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37524#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37523#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37522#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37521#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37520#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37519#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37518#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37517#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37516#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37515#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37514#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37513#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37512#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37511#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37510#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37509#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37508#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37507#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37506#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37505#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37504#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37503#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37502#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37501#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37500#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37499#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37498#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37497#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37496#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37495#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37494#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 37490#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 37489#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 37477#L27-4 main_~i~0#1 := 0; 37478#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37729#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37561#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37559#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37560#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37564#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37728#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37725#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37723#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37722#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37719#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37717#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37716#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37713#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37711#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37710#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37707#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37705#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37704#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37701#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37699#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37698#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37695#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37693#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37692#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37689#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37687#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37686#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37683#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37681#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37680#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37677#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37675#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37674#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37671#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37669#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37668#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37665#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37663#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37662#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37659#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37657#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37656#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37653#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37651#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37650#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37647#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37645#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37644#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37641#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37639#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37638#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37635#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37633#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37632#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37629#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37627#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37626#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37623#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37621#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37620#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37617#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37615#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37614#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37611#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37609#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37608#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37605#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37603#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37602#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37599#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37597#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37596#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37593#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37591#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37590#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37587#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37585#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37584#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37581#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37579#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37578#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37575#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37573#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37572#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37570#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37568#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37567#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37483#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37471#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37480#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37485#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37556#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37555#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37492#L34 [2021-12-19 17:51:20,387 INFO L793 eck$LassoCheckResult]: Loop: 37492#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 37493#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 37491#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 37492#L34 [2021-12-19 17:51:20,387 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:20,387 INFO L85 PathProgramCache]: Analyzing trace with hash -815842935, now seen corresponding path program 62 times [2021-12-19 17:51:20,388 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:20,388 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1946687904] [2021-12-19 17:51:20,388 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:20,388 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:20,513 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:20,513 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:51:20,633 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:20,643 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:51:20,643 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:20,644 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 33 times [2021-12-19 17:51:20,644 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:20,644 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [419009272] [2021-12-19 17:51:20,644 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:20,644 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:20,648 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:20,648 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:51:20,648 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:20,650 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:51:20,650 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:20,650 INFO L85 PathProgramCache]: Analyzing trace with hash 443091245, now seen corresponding path program 63 times [2021-12-19 17:51:20,650 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:20,651 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1361602090] [2021-12-19 17:51:20,651 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:20,651 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:20,676 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:51:21,735 INFO L134 CoverageAnalysis]: Checked inductivity of 2544 backedges. 1426 proven. 1118 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:21,736 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:51:21,736 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1361602090] [2021-12-19 17:51:21,736 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1361602090] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:51:21,736 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [2006812442] [2021-12-19 17:51:21,736 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:51:21,736 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:51:21,736 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:51:21,737 INFO L229 MonitoredProcess]: Starting monitored process 50 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:51:21,738 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (50)] Waiting until timeout for monitored process [2021-12-19 17:51:32,409 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 33 check-sat command(s) [2021-12-19 17:51:32,410 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:51:32,431 INFO L263 TraceCheckSpWp]: Trace formula consists of 717 conjuncts, 68 conjunts are in the unsatisfiable core [2021-12-19 17:51:32,433 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:51:34,027 INFO L134 CoverageAnalysis]: Checked inductivity of 2544 backedges. 1520 proven. 1024 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:34,028 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:51:34,279 INFO L134 CoverageAnalysis]: Checked inductivity of 2544 backedges. 1520 proven. 1024 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:34,279 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [2006812442] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:51:34,279 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:51:34,279 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [68, 68, 68] total 103 [2021-12-19 17:51:34,279 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [603074058] [2021-12-19 17:51:34,279 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:51:34,307 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:51:34,308 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 104 interpolants. [2021-12-19 17:51:34,315 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=2453, Invalid=8259, Unknown=0, NotChecked=0, Total=10712 [2021-12-19 17:51:34,315 INFO L87 Difference]: Start difference. First operand 268 states and 303 transitions. cyclomatic complexity: 38 Second operand has 104 states, 103 states have (on average 2.621359223300971) internal successors, (270), 104 states have internal predecessors, (270), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:51:35,621 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:51:35,621 INFO L93 Difference]: Finished difference Result 869 states and 1004 transitions. [2021-12-19 17:51:35,621 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 70 states. [2021-12-19 17:51:35,621 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 869 states and 1004 transitions. [2021-12-19 17:51:35,647 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:51:35,648 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 869 states to 480 states and 550 transitions. [2021-12-19 17:51:35,648 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 413 [2021-12-19 17:51:35,648 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 413 [2021-12-19 17:51:35,648 INFO L73 IsDeterministic]: Start isDeterministic. Operand 480 states and 550 transitions. [2021-12-19 17:51:35,649 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:51:35,649 INFO L681 BuchiCegarLoop]: Abstraction has 480 states and 550 transitions. [2021-12-19 17:51:35,649 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 480 states and 550 transitions. [2021-12-19 17:51:35,651 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 480 to 276. [2021-12-19 17:51:35,651 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 276 states, 276 states have (on average 1.1304347826086956) internal successors, (312), 275 states have internal predecessors, (312), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:51:35,652 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 276 states to 276 states and 312 transitions. [2021-12-19 17:51:35,652 INFO L704 BuchiCegarLoop]: Abstraction has 276 states and 312 transitions. [2021-12-19 17:51:35,652 INFO L587 BuchiCegarLoop]: Abstraction has 276 states and 312 transitions. [2021-12-19 17:51:35,652 INFO L425 BuchiCegarLoop]: ======== Iteration 35============ [2021-12-19 17:51:35,652 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 276 states and 312 transitions. [2021-12-19 17:51:35,652 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:51:35,653 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:51:35,653 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:51:35,653 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [33, 33, 33, 32, 32, 1, 1, 1, 1] [2021-12-19 17:51:35,653 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:51:35,653 INFO L791 eck$LassoCheckResult]: Stem: 39762#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 39763#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 39768#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39783#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39784#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39771#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39772#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39850#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39849#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39848#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39847#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39846#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39845#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39844#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39843#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39842#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39841#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39840#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39839#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39838#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39837#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39836#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39835#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39834#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39833#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39832#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39831#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39830#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39829#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39828#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39827#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39826#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39825#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39824#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39823#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39822#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39821#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39820#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39819#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39818#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39817#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39816#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39815#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39814#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39813#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39812#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39811#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39810#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39809#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39808#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39807#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39806#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39805#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39804#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39803#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39802#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39801#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39800#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39799#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39798#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39797#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39796#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39795#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39794#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39793#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39792#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39791#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 39787#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 39786#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 39773#L27-4 main_~i~0#1 := 0; 39774#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39858#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39859#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39860#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39864#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39863#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 40032#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 40029#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 40027#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 40026#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 40023#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 40021#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 40020#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 40017#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 40015#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 40014#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 40011#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 40009#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 40008#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 40005#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 40003#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 40002#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39999#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39997#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39996#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39993#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39991#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39990#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39987#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39985#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39984#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39981#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39979#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39978#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39975#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39973#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39972#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39969#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39967#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39966#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39963#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39961#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39960#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39957#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39955#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39954#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39951#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39949#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39948#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39945#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39943#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39942#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39939#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39937#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39936#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39933#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39931#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39930#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39927#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39925#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39924#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39921#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39919#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39918#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39915#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39913#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39912#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39909#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39907#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39906#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39903#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39901#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39900#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39897#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39895#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39894#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39891#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39889#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39888#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39885#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39883#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39882#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39879#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39877#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39876#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39873#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39871#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39870#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39868#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39867#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39866#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39780#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39767#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39777#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39782#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39855#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39854#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39789#L34 [2021-12-19 17:51:35,654 INFO L793 eck$LassoCheckResult]: Loop: 39789#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 39790#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 39788#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 39789#L34 [2021-12-19 17:51:35,654 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:35,654 INFO L85 PathProgramCache]: Analyzing trace with hash -706859669, now seen corresponding path program 64 times [2021-12-19 17:51:35,654 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:35,654 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [147037557] [2021-12-19 17:51:35,655 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:35,655 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:35,758 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:35,758 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:51:35,898 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:35,912 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:51:35,913 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:35,913 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 34 times [2021-12-19 17:51:35,913 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:35,913 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [847888079] [2021-12-19 17:51:35,913 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:35,914 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:35,917 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:35,917 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:51:35,917 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:35,919 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:51:35,919 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:35,919 INFO L85 PathProgramCache]: Analyzing trace with hash 168292875, now seen corresponding path program 65 times [2021-12-19 17:51:35,920 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:35,920 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [378600409] [2021-12-19 17:51:35,920 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:35,920 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:35,952 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:51:37,095 INFO L134 CoverageAnalysis]: Checked inductivity of 2706 backedges. 1520 proven. 1186 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:37,096 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:51:37,096 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [378600409] [2021-12-19 17:51:37,096 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [378600409] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:51:37,096 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [2146692328] [2021-12-19 17:51:37,096 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:51:37,096 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:51:37,096 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:51:37,097 INFO L229 MonitoredProcess]: Starting monitored process 51 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:51:37,098 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (51)] Waiting until timeout for monitored process [2021-12-19 17:51:45,435 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 34 check-sat command(s) [2021-12-19 17:51:45,436 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:51:45,457 INFO L263 TraceCheckSpWp]: Trace formula consists of 738 conjuncts, 71 conjunts are in the unsatisfiable core [2021-12-19 17:51:45,459 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:51:48,010 INFO L134 CoverageAnalysis]: Checked inductivity of 2706 backedges. 1584 proven. 1122 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:48,010 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:51:50,029 INFO L134 CoverageAnalysis]: Checked inductivity of 2706 backedges. 1584 proven. 1122 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:50,029 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [2146692328] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:51:50,029 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:51:50,029 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [70, 70, 70] total 175 [2021-12-19 17:51:50,029 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1905301681] [2021-12-19 17:51:50,030 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:51:50,063 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:51:50,064 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 176 interpolants. [2021-12-19 17:51:50,066 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=5011, Invalid=25789, Unknown=0, NotChecked=0, Total=30800 [2021-12-19 17:51:50,067 INFO L87 Difference]: Start difference. First operand 276 states and 312 transitions. cyclomatic complexity: 39 Second operand has 176 states, 175 states have (on average 2.3485714285714288) internal successors, (411), 176 states have internal predecessors, (411), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:51:53,124 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:51:53,124 INFO L93 Difference]: Finished difference Result 1094 states and 1265 transitions. [2021-12-19 17:51:53,124 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 141 states. [2021-12-19 17:51:53,124 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 1094 states and 1265 transitions. [2021-12-19 17:51:53,126 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:51:53,128 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 1094 states to 494 states and 566 transitions. [2021-12-19 17:51:53,128 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 425 [2021-12-19 17:51:53,128 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 425 [2021-12-19 17:51:53,128 INFO L73 IsDeterministic]: Start isDeterministic. Operand 494 states and 566 transitions. [2021-12-19 17:51:53,128 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:51:53,128 INFO L681 BuchiCegarLoop]: Abstraction has 494 states and 566 transitions. [2021-12-19 17:51:53,128 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 494 states and 566 transitions. [2021-12-19 17:51:53,130 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 494 to 284. [2021-12-19 17:51:53,131 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 284 states, 284 states have (on average 1.130281690140845) internal successors, (321), 283 states have internal predecessors, (321), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:51:53,131 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 284 states to 284 states and 321 transitions. [2021-12-19 17:51:53,131 INFO L704 BuchiCegarLoop]: Abstraction has 284 states and 321 transitions. [2021-12-19 17:51:53,131 INFO L587 BuchiCegarLoop]: Abstraction has 284 states and 321 transitions. [2021-12-19 17:51:53,131 INFO L425 BuchiCegarLoop]: ======== Iteration 36============ [2021-12-19 17:51:53,131 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 284 states and 321 transitions. [2021-12-19 17:51:53,132 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:51:53,132 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:51:53,132 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:51:53,133 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [34, 34, 34, 33, 33, 1, 1, 1, 1] [2021-12-19 17:51:53,133 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:51:53,133 INFO L791 eck$LassoCheckResult]: Stem: 42467#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 42468#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 42473#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42487#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42488#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42476#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42477#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42556#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42555#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42554#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42553#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42552#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42551#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42550#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42549#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42548#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42547#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42546#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42545#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42544#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42543#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42542#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42541#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42540#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42539#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42538#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42537#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42536#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42535#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42534#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42533#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42532#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42531#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42530#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42529#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42528#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42527#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42526#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42525#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42524#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42523#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42522#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42521#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42520#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42519#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42518#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42517#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42516#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42515#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42514#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42513#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42512#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42511#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42510#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42509#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42508#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42507#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42506#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42505#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42504#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42503#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42502#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42501#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42500#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42499#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42498#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42497#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42496#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42495#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 42491#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 42490#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 42478#L27-4 main_~i~0#1 := 0; 42479#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42745#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42566#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42564#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42565#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42569#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42743#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42740#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42738#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42737#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42734#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42732#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42731#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42728#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42726#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42725#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42722#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42720#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42719#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42716#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42714#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42713#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42710#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42708#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42707#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42704#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42702#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42701#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42698#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42696#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42695#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42692#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42690#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42689#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42686#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42684#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42683#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42680#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42678#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42677#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42674#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42672#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42671#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42668#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42666#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42665#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42662#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42660#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42659#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42656#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42654#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42653#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42650#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42648#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42647#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42644#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42642#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42641#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42638#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42636#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42635#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42632#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42630#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42629#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42626#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42624#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42623#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42620#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42618#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42617#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42614#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42612#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42611#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42608#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42606#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42605#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42602#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42600#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42599#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42596#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42594#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42593#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42590#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42588#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42587#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42584#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42582#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42581#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42578#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42576#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42575#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42574#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42573#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42572#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42484#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42472#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42481#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42486#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42561#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42560#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42493#L34 [2021-12-19 17:51:53,133 INFO L793 eck$LassoCheckResult]: Loop: 42493#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 42494#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 42492#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 42493#L34 [2021-12-19 17:51:53,133 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:53,133 INFO L85 PathProgramCache]: Analyzing trace with hash 133547149, now seen corresponding path program 66 times [2021-12-19 17:51:53,134 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:53,134 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [524085133] [2021-12-19 17:51:53,134 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:53,134 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:53,238 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:53,239 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:51:53,386 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:53,398 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:51:53,398 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:53,398 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 35 times [2021-12-19 17:51:53,398 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:53,398 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [2028740045] [2021-12-19 17:51:53,398 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:53,399 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:53,402 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:53,402 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:51:53,403 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:53,404 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:51:53,405 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:53,405 INFO L85 PathProgramCache]: Analyzing trace with hash 1363439529, now seen corresponding path program 67 times [2021-12-19 17:51:53,405 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:53,405 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [508902871] [2021-12-19 17:51:53,405 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:53,405 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:53,432 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:51:54,586 INFO L134 CoverageAnalysis]: Checked inductivity of 2873 backedges. 1617 proven. 1256 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:54,586 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:51:54,586 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [508902871] [2021-12-19 17:51:54,586 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [508902871] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:51:54,586 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [333921933] [2021-12-19 17:51:54,586 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:51:54,586 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:51:54,587 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:51:54,588 INFO L229 MonitoredProcess]: Starting monitored process 52 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:51:54,588 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (52)] Waiting until timeout for monitored process [2021-12-19 17:51:54,810 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:51:54,814 INFO L263 TraceCheckSpWp]: Trace formula consists of 759 conjuncts, 72 conjunts are in the unsatisfiable core [2021-12-19 17:51:54,816 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:51:56,521 INFO L134 CoverageAnalysis]: Checked inductivity of 2873 backedges. 1717 proven. 1156 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:56,521 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:51:56,759 INFO L134 CoverageAnalysis]: Checked inductivity of 2873 backedges. 1717 proven. 1156 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:56,759 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [333921933] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:51:56,759 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:51:56,759 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [72, 72, 72] total 109 [2021-12-19 17:51:56,759 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [628432916] [2021-12-19 17:51:56,759 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:51:56,792 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:51:56,793 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 110 interpolants. [2021-12-19 17:51:56,794 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=2741, Invalid=9249, Unknown=0, NotChecked=0, Total=11990 [2021-12-19 17:51:56,794 INFO L87 Difference]: Start difference. First operand 284 states and 321 transitions. cyclomatic complexity: 40 Second operand has 110 states, 109 states have (on average 2.623853211009174) internal successors, (286), 110 states have internal predecessors, (286), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:51:58,361 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:51:58,362 INFO L93 Difference]: Finished difference Result 921 states and 1064 transitions. [2021-12-19 17:51:58,362 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 74 states. [2021-12-19 17:51:58,362 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 921 states and 1064 transitions. [2021-12-19 17:51:58,364 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:51:58,365 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 921 states to 508 states and 582 transitions. [2021-12-19 17:51:58,365 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 437 [2021-12-19 17:51:58,366 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 437 [2021-12-19 17:51:58,366 INFO L73 IsDeterministic]: Start isDeterministic. Operand 508 states and 582 transitions. [2021-12-19 17:51:58,366 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:51:58,366 INFO L681 BuchiCegarLoop]: Abstraction has 508 states and 582 transitions. [2021-12-19 17:51:58,366 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 508 states and 582 transitions. [2021-12-19 17:51:58,368 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 508 to 292. [2021-12-19 17:51:58,369 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 292 states, 292 states have (on average 1.13013698630137) internal successors, (330), 291 states have internal predecessors, (330), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:51:58,369 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 292 states to 292 states and 330 transitions. [2021-12-19 17:51:58,369 INFO L704 BuchiCegarLoop]: Abstraction has 292 states and 330 transitions. [2021-12-19 17:51:58,369 INFO L587 BuchiCegarLoop]: Abstraction has 292 states and 330 transitions. [2021-12-19 17:51:58,369 INFO L425 BuchiCegarLoop]: ======== Iteration 37============ [2021-12-19 17:51:58,369 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 292 states and 330 transitions. [2021-12-19 17:51:58,370 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:51:58,370 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:51:58,370 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:51:58,371 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [35, 35, 35, 34, 34, 1, 1, 1, 1] [2021-12-19 17:51:58,371 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:51:58,371 INFO L791 eck$LassoCheckResult]: Stem: 44901#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 44902#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 44907#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44922#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44923#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44910#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44911#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44993#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44992#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44991#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44990#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44989#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44988#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44987#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44986#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44985#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44984#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44983#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44982#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44981#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44980#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44979#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44978#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44977#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44976#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44975#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44974#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44973#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44972#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44971#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44970#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44969#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44968#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44967#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44966#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44965#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44964#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44963#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44962#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44961#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44960#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44959#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44958#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44957#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44956#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44955#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44954#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44953#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44952#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44951#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44950#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44949#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44948#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44947#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44946#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44945#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44944#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44943#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44942#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44941#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44940#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44939#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44938#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44937#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44936#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44935#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44934#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44933#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44932#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44931#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44930#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 44926#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 44925#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 44912#L27-4 main_~i~0#1 := 0; 44913#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45001#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45002#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45003#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45007#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45006#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45187#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45184#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45182#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45181#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45178#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45176#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45175#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45172#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45170#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45169#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45166#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45164#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45163#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45160#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45158#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45157#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45154#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45152#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45151#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45148#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45146#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45145#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45142#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45140#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45139#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45136#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45134#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45133#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45130#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45128#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45127#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45124#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45122#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45121#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45118#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45116#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45115#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45112#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45110#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45109#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45106#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45104#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45103#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45100#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45098#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45097#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45094#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45092#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45091#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45088#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45086#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45085#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45082#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45080#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45079#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45076#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45074#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45073#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45070#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45068#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45067#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45064#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45062#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45061#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45058#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45056#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45055#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45052#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45050#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45049#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45046#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45044#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45043#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45040#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45038#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45037#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45034#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45032#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45031#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45028#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45026#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45025#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45022#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45020#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45019#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45016#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45014#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45013#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 45011#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 45010#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 45009#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 44919#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 44906#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 44916#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 44921#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 44998#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 44997#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 44928#L34 [2021-12-19 17:51:58,371 INFO L793 eck$LassoCheckResult]: Loop: 44928#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 44929#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 44927#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 44928#L34 [2021-12-19 17:51:58,372 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:58,372 INFO L85 PathProgramCache]: Analyzing trace with hash 922738279, now seen corresponding path program 68 times [2021-12-19 17:51:58,372 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:58,372 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1467435693] [2021-12-19 17:51:58,372 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:58,372 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:58,514 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:58,514 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:51:58,662 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:58,677 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:51:58,677 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:58,677 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 36 times [2021-12-19 17:51:58,677 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:58,677 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [38490140] [2021-12-19 17:51:58,678 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:58,678 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:58,694 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:58,695 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:51:58,695 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:51:58,697 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:51:58,697 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:51:58,697 INFO L85 PathProgramCache]: Analyzing trace with hash 1505415055, now seen corresponding path program 69 times [2021-12-19 17:51:58,697 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:51:58,698 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [588946326] [2021-12-19 17:51:58,698 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:51:58,698 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:51:58,726 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:51:59,994 INFO L134 CoverageAnalysis]: Checked inductivity of 3045 backedges. 1717 proven. 1328 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:51:59,995 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:51:59,995 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [588946326] [2021-12-19 17:51:59,995 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [588946326] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:51:59,995 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [50617820] [2021-12-19 17:51:59,995 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:51:59,995 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:51:59,995 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:51:59,996 INFO L229 MonitoredProcess]: Starting monitored process 53 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:51:59,997 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (53)] Waiting until timeout for monitored process [2021-12-19 17:52:15,930 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 36 check-sat command(s) [2021-12-19 17:52:15,930 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:52:15,960 INFO L263 TraceCheckSpWp]: Trace formula consists of 780 conjuncts, 74 conjunts are in the unsatisfiable core [2021-12-19 17:52:15,962 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:52:17,820 INFO L134 CoverageAnalysis]: Checked inductivity of 3045 backedges. 1820 proven. 1225 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:52:17,820 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:52:18,073 INFO L134 CoverageAnalysis]: Checked inductivity of 3045 backedges. 1820 proven. 1225 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:52:18,073 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [50617820] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:52:18,073 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:52:18,073 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [74, 74, 74] total 112 [2021-12-19 17:52:18,074 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1549655328] [2021-12-19 17:52:18,074 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:52:18,101 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:52:18,102 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 113 interpolants. [2021-12-19 17:52:18,103 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=2891, Invalid=9765, Unknown=0, NotChecked=0, Total=12656 [2021-12-19 17:52:18,103 INFO L87 Difference]: Start difference. First operand 292 states and 330 transitions. cyclomatic complexity: 41 Second operand has 113 states, 112 states have (on average 2.625) internal successors, (294), 113 states have internal predecessors, (294), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:52:19,649 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:52:19,649 INFO L93 Difference]: Finished difference Result 947 states and 1094 transitions. [2021-12-19 17:52:19,650 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 76 states. [2021-12-19 17:52:19,650 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 947 states and 1094 transitions. [2021-12-19 17:52:19,652 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:52:19,653 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 947 states to 522 states and 598 transitions. [2021-12-19 17:52:19,653 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 449 [2021-12-19 17:52:19,653 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 449 [2021-12-19 17:52:19,653 INFO L73 IsDeterministic]: Start isDeterministic. Operand 522 states and 598 transitions. [2021-12-19 17:52:19,653 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:52:19,653 INFO L681 BuchiCegarLoop]: Abstraction has 522 states and 598 transitions. [2021-12-19 17:52:19,654 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 522 states and 598 transitions. [2021-12-19 17:52:19,655 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 522 to 300. [2021-12-19 17:52:19,656 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 300 states, 300 states have (on average 1.13) internal successors, (339), 299 states have internal predecessors, (339), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:52:19,656 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 300 states to 300 states and 339 transitions. [2021-12-19 17:52:19,656 INFO L704 BuchiCegarLoop]: Abstraction has 300 states and 339 transitions. [2021-12-19 17:52:19,656 INFO L587 BuchiCegarLoop]: Abstraction has 300 states and 339 transitions. [2021-12-19 17:52:19,656 INFO L425 BuchiCegarLoop]: ======== Iteration 38============ [2021-12-19 17:52:19,656 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 300 states and 339 transitions. [2021-12-19 17:52:19,657 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:52:19,657 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:52:19,657 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:52:19,658 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [36, 36, 36, 35, 35, 1, 1, 1, 1] [2021-12-19 17:52:19,658 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:52:19,658 INFO L791 eck$LassoCheckResult]: Stem: 47404#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 47405#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 47410#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47424#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47425#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47413#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47414#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47497#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47496#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47495#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47494#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47493#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47492#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47491#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47490#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47489#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47488#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47487#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47486#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47485#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47484#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47483#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47482#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47481#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47480#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47479#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47478#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47477#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47476#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47475#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47474#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47473#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47472#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47471#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47470#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47469#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47468#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47467#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47466#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47465#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47464#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47463#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47462#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47461#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47460#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47459#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47458#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47457#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47456#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47455#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47454#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47453#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47452#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47451#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47450#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47449#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47448#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47447#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47446#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47445#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47444#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47443#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47442#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47441#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47440#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47439#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47438#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47437#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47436#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47435#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47434#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47433#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47432#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 47428#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 47427#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 47415#L27-4 main_~i~0#1 := 0; 47416#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47699#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47507#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47505#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47506#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47510#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47698#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47695#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47693#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47692#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47689#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47687#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47686#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47683#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47681#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47680#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47677#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47675#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47674#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47671#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47669#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47668#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47665#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47663#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47662#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47659#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47657#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47656#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47653#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47651#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47650#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47647#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47645#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47644#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47641#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47639#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47638#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47635#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47633#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47632#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47629#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47627#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47626#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47623#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47621#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47620#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47617#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47615#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47614#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47611#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47609#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47608#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47605#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47603#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47602#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47599#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47597#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47596#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47593#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47591#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47590#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47587#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47585#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47584#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47581#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47579#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47578#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47575#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47573#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47572#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47569#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47567#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47566#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47563#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47561#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47560#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47557#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47555#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47554#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47551#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47549#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47548#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47545#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47543#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47542#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47539#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47537#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47536#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47533#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47531#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47530#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47527#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47525#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47524#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47521#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47519#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47518#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47516#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47514#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47513#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47421#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47409#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47418#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47423#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47502#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47501#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47430#L34 [2021-12-19 17:52:19,658 INFO L793 eck$LassoCheckResult]: Loop: 47430#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 47431#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 47429#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 47430#L34 [2021-12-19 17:52:19,658 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:52:19,659 INFO L85 PathProgramCache]: Analyzing trace with hash -903026799, now seen corresponding path program 70 times [2021-12-19 17:52:19,659 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:52:19,659 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1415458477] [2021-12-19 17:52:19,659 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:52:19,659 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:52:19,821 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:52:19,821 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:52:20,014 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:52:20,024 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:52:20,025 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:52:20,025 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 37 times [2021-12-19 17:52:20,025 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:52:20,025 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [23706226] [2021-12-19 17:52:20,025 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:52:20,025 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:52:20,029 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:52:20,029 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:52:20,030 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:52:20,031 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:52:20,032 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:52:20,032 INFO L85 PathProgramCache]: Analyzing trace with hash 1603812901, now seen corresponding path program 71 times [2021-12-19 17:52:20,032 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:52:20,032 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [670103230] [2021-12-19 17:52:20,032 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:52:20,032 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:52:20,062 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:52:21,383 INFO L134 CoverageAnalysis]: Checked inductivity of 3222 backedges. 1820 proven. 1402 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:52:21,383 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:52:21,384 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [670103230] [2021-12-19 17:52:21,384 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [670103230] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:52:21,384 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [699161556] [2021-12-19 17:52:21,384 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:52:21,384 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:52:21,384 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:52:21,385 INFO L229 MonitoredProcess]: Starting monitored process 54 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:52:21,386 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (54)] Waiting until timeout for monitored process [2021-12-19 17:53:28,396 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 37 check-sat command(s) [2021-12-19 17:53:28,396 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:53:28,474 INFO L263 TraceCheckSpWp]: Trace formula consists of 801 conjuncts, 76 conjunts are in the unsatisfiable core [2021-12-19 17:53:28,476 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:53:30,428 INFO L134 CoverageAnalysis]: Checked inductivity of 3222 backedges. 1926 proven. 1296 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:53:30,429 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:53:30,701 INFO L134 CoverageAnalysis]: Checked inductivity of 3222 backedges. 1926 proven. 1296 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:53:30,701 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [699161556] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:53:30,702 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:53:30,702 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [76, 76, 76] total 115 [2021-12-19 17:53:30,702 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [963335941] [2021-12-19 17:53:30,702 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:53:30,729 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:53:30,730 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 116 interpolants. [2021-12-19 17:53:30,731 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=3045, Invalid=10295, Unknown=0, NotChecked=0, Total=13340 [2021-12-19 17:53:30,731 INFO L87 Difference]: Start difference. First operand 300 states and 339 transitions. cyclomatic complexity: 42 Second operand has 116 states, 115 states have (on average 2.626086956521739) internal successors, (302), 116 states have internal predecessors, (302), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:53:32,478 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:53:32,478 INFO L93 Difference]: Finished difference Result 973 states and 1124 transitions. [2021-12-19 17:53:32,478 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 78 states. [2021-12-19 17:53:32,479 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 973 states and 1124 transitions. [2021-12-19 17:53:32,481 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:53:32,483 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 973 states to 536 states and 614 transitions. [2021-12-19 17:53:32,483 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 461 [2021-12-19 17:53:32,483 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 461 [2021-12-19 17:53:32,483 INFO L73 IsDeterministic]: Start isDeterministic. Operand 536 states and 614 transitions. [2021-12-19 17:53:32,484 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:53:32,484 INFO L681 BuchiCegarLoop]: Abstraction has 536 states and 614 transitions. [2021-12-19 17:53:32,484 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 536 states and 614 transitions. [2021-12-19 17:53:32,486 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 536 to 308. [2021-12-19 17:53:32,487 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 308 states, 308 states have (on average 1.12987012987013) internal successors, (348), 307 states have internal predecessors, (348), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:53:32,488 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 308 states to 308 states and 348 transitions. [2021-12-19 17:53:32,488 INFO L704 BuchiCegarLoop]: Abstraction has 308 states and 348 transitions. [2021-12-19 17:53:32,488 INFO L587 BuchiCegarLoop]: Abstraction has 308 states and 348 transitions. [2021-12-19 17:53:32,488 INFO L425 BuchiCegarLoop]: ======== Iteration 39============ [2021-12-19 17:53:32,488 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 308 states and 348 transitions. [2021-12-19 17:53:32,489 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:53:32,489 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:53:32,489 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:53:32,490 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [37, 37, 37, 36, 36, 1, 1, 1, 1] [2021-12-19 17:53:32,490 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:53:32,490 INFO L791 eck$LassoCheckResult]: Stem: 49976#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 49977#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 49982#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 49997#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 49998#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 49985#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 49986#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50072#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50071#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50070#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50069#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50068#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50067#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50066#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50065#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50064#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50063#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50062#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50061#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50060#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50059#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50058#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50057#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50056#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50055#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50054#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50053#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50052#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50051#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50050#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50049#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50048#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50047#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50046#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50045#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50044#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50043#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50042#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50041#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50040#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50039#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50038#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50037#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50036#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50035#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50034#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50033#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50032#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50031#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50030#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50029#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50028#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50027#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50026#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50025#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50024#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50023#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50022#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50021#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50020#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50019#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50018#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50017#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50016#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50015#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50014#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50013#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50012#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50011#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50010#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50009#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50008#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50007#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50006#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50005#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 50001#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 50000#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 49987#L27-4 main_~i~0#1 := 0; 49988#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50080#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50081#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50082#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50086#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50085#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50278#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50275#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50273#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50272#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50269#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50267#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50266#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50263#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50261#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50260#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50257#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50255#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50254#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50251#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50249#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50248#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50245#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50243#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50242#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50239#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50237#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50236#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50233#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50231#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50230#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50227#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50225#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50224#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50221#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50219#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50218#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50215#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50213#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50212#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50209#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50207#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50206#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50203#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50201#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50200#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50197#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50195#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50194#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50191#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50189#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50188#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50185#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50183#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50182#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50179#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50177#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50176#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50173#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50171#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50170#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50167#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50165#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50164#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50161#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50159#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50158#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50155#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50153#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50152#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50149#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50147#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50146#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50143#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50141#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50140#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50137#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50135#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50134#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50131#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50129#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50128#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50125#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50123#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50122#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50119#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50117#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50116#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50113#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50111#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50110#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50107#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50105#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50104#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50101#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50099#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50098#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50095#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50093#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50092#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50090#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50089#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50088#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 49994#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 49981#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 49991#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 49996#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50077#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50076#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50003#L34 [2021-12-19 17:53:32,490 INFO L793 eck$LassoCheckResult]: Loop: 50003#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 50004#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 50002#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 50003#L34 [2021-12-19 17:53:32,491 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:53:32,491 INFO L85 PathProgramCache]: Analyzing trace with hash 1579079523, now seen corresponding path program 72 times [2021-12-19 17:53:32,491 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:53:32,491 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [2145744120] [2021-12-19 17:53:32,491 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:53:32,491 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:53:32,694 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:53:32,694 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:53:32,880 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:53:32,893 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:53:32,894 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:53:32,894 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 38 times [2021-12-19 17:53:32,894 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:53:32,894 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [217767038] [2021-12-19 17:53:32,894 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:53:32,894 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:53:32,897 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:53:32,898 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:53:32,898 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:53:32,900 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:53:32,900 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:53:32,900 INFO L85 PathProgramCache]: Analyzing trace with hash -418683629, now seen corresponding path program 73 times [2021-12-19 17:53:32,900 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:53:32,900 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1038241095] [2021-12-19 17:53:32,900 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:53:32,901 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:53:32,931 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:53:34,335 INFO L134 CoverageAnalysis]: Checked inductivity of 3404 backedges. 1926 proven. 1478 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:53:34,335 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:53:34,335 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1038241095] [2021-12-19 17:53:34,335 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1038241095] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:53:34,335 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1344545962] [2021-12-19 17:53:34,335 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:53:34,335 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:53:34,335 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:53:34,336 INFO L229 MonitoredProcess]: Starting monitored process 55 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:53:34,337 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (55)] Waiting until timeout for monitored process [2021-12-19 17:53:34,590 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:53:34,594 INFO L263 TraceCheckSpWp]: Trace formula consists of 822 conjuncts, 78 conjunts are in the unsatisfiable core [2021-12-19 17:53:34,596 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:53:36,627 INFO L134 CoverageAnalysis]: Checked inductivity of 3404 backedges. 2035 proven. 1369 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:53:36,628 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:53:36,894 INFO L134 CoverageAnalysis]: Checked inductivity of 3404 backedges. 2035 proven. 1369 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:53:36,895 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1344545962] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:53:36,895 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:53:36,895 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [78, 78, 78] total 118 [2021-12-19 17:53:36,895 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [276114262] [2021-12-19 17:53:36,895 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:53:36,922 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:53:36,923 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 119 interpolants. [2021-12-19 17:53:36,924 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=3203, Invalid=10839, Unknown=0, NotChecked=0, Total=14042 [2021-12-19 17:53:36,924 INFO L87 Difference]: Start difference. First operand 308 states and 348 transitions. cyclomatic complexity: 43 Second operand has 119 states, 118 states have (on average 2.6271186440677967) internal successors, (310), 119 states have internal predecessors, (310), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:53:38,685 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:53:38,685 INFO L93 Difference]: Finished difference Result 999 states and 1154 transitions. [2021-12-19 17:53:38,685 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 80 states. [2021-12-19 17:53:38,687 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 999 states and 1154 transitions. [2021-12-19 17:53:38,689 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:53:38,690 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 999 states to 550 states and 630 transitions. [2021-12-19 17:53:38,690 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 473 [2021-12-19 17:53:38,690 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 473 [2021-12-19 17:53:38,690 INFO L73 IsDeterministic]: Start isDeterministic. Operand 550 states and 630 transitions. [2021-12-19 17:53:38,690 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:53:38,690 INFO L681 BuchiCegarLoop]: Abstraction has 550 states and 630 transitions. [2021-12-19 17:53:38,690 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 550 states and 630 transitions. [2021-12-19 17:53:38,692 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 550 to 316. [2021-12-19 17:53:38,693 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 316 states, 316 states have (on average 1.129746835443038) internal successors, (357), 315 states have internal predecessors, (357), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:53:38,693 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 316 states to 316 states and 357 transitions. [2021-12-19 17:53:38,693 INFO L704 BuchiCegarLoop]: Abstraction has 316 states and 357 transitions. [2021-12-19 17:53:38,693 INFO L587 BuchiCegarLoop]: Abstraction has 316 states and 357 transitions. [2021-12-19 17:53:38,693 INFO L425 BuchiCegarLoop]: ======== Iteration 40============ [2021-12-19 17:53:38,693 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 316 states and 357 transitions. [2021-12-19 17:53:38,694 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:53:38,694 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:53:38,694 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:53:38,695 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [38, 38, 38, 37, 37, 1, 1, 1, 1] [2021-12-19 17:53:38,695 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:53:38,695 INFO L791 eck$LassoCheckResult]: Stem: 52617#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 52618#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 52623#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52637#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52638#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52626#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52627#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52714#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52713#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52712#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52711#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52710#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52709#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52708#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52707#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52706#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52705#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52704#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52703#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52702#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52701#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52700#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52699#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52698#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52697#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52696#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52695#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52694#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52693#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52692#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52691#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52690#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52689#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52688#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52687#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52686#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52685#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52684#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52683#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52682#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52681#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52680#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52679#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52678#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52677#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52676#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52675#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52674#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52673#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52672#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52671#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52670#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52669#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52668#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52667#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52666#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52665#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52664#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52663#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52662#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52661#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52660#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52659#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52658#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52657#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52656#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52655#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52654#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52653#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52652#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52651#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52650#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52649#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52648#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52647#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52646#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52645#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 52641#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 52640#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 52628#L27-4 main_~i~0#1 := 0; 52629#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52927#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52724#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52722#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52723#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52727#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52925#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52922#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52920#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52919#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52916#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52914#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52913#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52910#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52908#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52907#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52904#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52902#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52901#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52898#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52896#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52895#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52892#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52890#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52889#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52886#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52884#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52883#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52880#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52878#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52877#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52874#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52872#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52871#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52868#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52866#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52865#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52862#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52860#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52859#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52856#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52854#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52853#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52850#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52848#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52847#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52844#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52842#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52841#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52838#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52836#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52835#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52832#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52830#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52829#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52826#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52824#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52823#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52820#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52818#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52817#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52814#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52812#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52811#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52808#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52806#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52805#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52802#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52800#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52799#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52796#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52794#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52793#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52790#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52788#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52787#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52784#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52782#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52781#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52778#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52776#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52775#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52772#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52770#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52769#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52766#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52764#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52763#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52760#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52758#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52757#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52754#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52752#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52751#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52748#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52746#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52745#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52742#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52740#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52739#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52736#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52734#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52733#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52732#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52731#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52730#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52634#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52622#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52631#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52636#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52719#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52718#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52643#L34 [2021-12-19 17:53:38,695 INFO L793 eck$LassoCheckResult]: Loop: 52643#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 52644#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 52642#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 52643#L34 [2021-12-19 17:53:38,696 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:53:38,696 INFO L85 PathProgramCache]: Analyzing trace with hash -1953963371, now seen corresponding path program 74 times [2021-12-19 17:53:38,696 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:53:38,696 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [774007197] [2021-12-19 17:53:38,696 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:53:38,696 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:53:38,882 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:53:38,882 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:53:39,072 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:53:39,084 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:53:39,084 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:53:39,084 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 39 times [2021-12-19 17:53:39,084 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:53:39,084 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [547797314] [2021-12-19 17:53:39,084 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:53:39,085 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:53:39,089 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:53:39,089 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:53:39,090 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:53:39,091 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:53:39,092 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:53:39,092 INFO L85 PathProgramCache]: Analyzing trace with hash -830983007, now seen corresponding path program 75 times [2021-12-19 17:53:39,092 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:53:39,092 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [995562235] [2021-12-19 17:53:39,092 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:53:39,092 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:53:39,124 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:53:40,594 INFO L134 CoverageAnalysis]: Checked inductivity of 3591 backedges. 2035 proven. 1556 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:53:40,594 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:53:40,595 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [995562235] [2021-12-19 17:53:40,595 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [995562235] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:53:40,595 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [779958429] [2021-12-19 17:53:40,595 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:53:40,595 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:53:40,595 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:53:40,596 INFO L229 MonitoredProcess]: Starting monitored process 56 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:53:40,597 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (56)] Waiting until timeout for monitored process [2021-12-19 17:53:59,934 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 39 check-sat command(s) [2021-12-19 17:53:59,934 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:53:59,970 INFO L263 TraceCheckSpWp]: Trace formula consists of 843 conjuncts, 80 conjunts are in the unsatisfiable core [2021-12-19 17:53:59,975 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:54:02,061 INFO L134 CoverageAnalysis]: Checked inductivity of 3591 backedges. 2147 proven. 1444 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:54:02,061 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:54:02,331 INFO L134 CoverageAnalysis]: Checked inductivity of 3591 backedges. 2147 proven. 1444 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:54:02,331 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [779958429] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:54:02,331 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:54:02,332 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [80, 80, 80] total 121 [2021-12-19 17:54:02,332 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [491133442] [2021-12-19 17:54:02,332 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:54:02,359 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:54:02,360 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 122 interpolants. [2021-12-19 17:54:02,361 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=3365, Invalid=11397, Unknown=0, NotChecked=0, Total=14762 [2021-12-19 17:54:02,361 INFO L87 Difference]: Start difference. First operand 316 states and 357 transitions. cyclomatic complexity: 44 Second operand has 122 states, 121 states have (on average 2.628099173553719) internal successors, (318), 122 states have internal predecessors, (318), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:54:04,156 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:54:04,156 INFO L93 Difference]: Finished difference Result 1025 states and 1184 transitions. [2021-12-19 17:54:04,161 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 82 states. [2021-12-19 17:54:04,161 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 1025 states and 1184 transitions. [2021-12-19 17:54:04,163 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:54:04,164 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 1025 states to 564 states and 646 transitions. [2021-12-19 17:54:04,164 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 485 [2021-12-19 17:54:04,164 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 485 [2021-12-19 17:54:04,164 INFO L73 IsDeterministic]: Start isDeterministic. Operand 564 states and 646 transitions. [2021-12-19 17:54:04,165 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:54:04,165 INFO L681 BuchiCegarLoop]: Abstraction has 564 states and 646 transitions. [2021-12-19 17:54:04,165 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 564 states and 646 transitions. [2021-12-19 17:54:04,167 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 564 to 324. [2021-12-19 17:54:04,168 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 324 states, 324 states have (on average 1.1296296296296295) internal successors, (366), 323 states have internal predecessors, (366), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:54:04,168 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 324 states to 324 states and 366 transitions. [2021-12-19 17:54:04,168 INFO L704 BuchiCegarLoop]: Abstraction has 324 states and 366 transitions. [2021-12-19 17:54:04,168 INFO L587 BuchiCegarLoop]: Abstraction has 324 states and 366 transitions. [2021-12-19 17:54:04,169 INFO L425 BuchiCegarLoop]: ======== Iteration 41============ [2021-12-19 17:54:04,169 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 324 states and 366 transitions. [2021-12-19 17:54:04,169 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:54:04,169 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:54:04,170 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:54:04,170 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [39, 39, 39, 38, 38, 1, 1, 1, 1] [2021-12-19 17:54:04,171 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:54:04,171 INFO L791 eck$LassoCheckResult]: Stem: 55327#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 55328#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 55333#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55348#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55349#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55336#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55337#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55427#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55426#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55425#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55424#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55423#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55422#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55421#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55420#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55419#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55418#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55417#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55416#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55415#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55414#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55413#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55412#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55411#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55410#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55409#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55408#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55407#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55406#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55405#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55404#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55403#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55402#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55401#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55400#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55399#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55398#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55397#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55396#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55395#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55394#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55393#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55392#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55391#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55390#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55389#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55388#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55387#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55386#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55385#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55384#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55383#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55382#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55381#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55380#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55379#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55378#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55377#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55376#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55375#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55374#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55373#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55372#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55371#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55370#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55369#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55368#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55367#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55366#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55365#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55364#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55363#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55362#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55361#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55360#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55359#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55358#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55357#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55356#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 55352#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 55351#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 55338#L27-4 main_~i~0#1 := 0; 55339#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55435#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55436#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55437#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55441#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55440#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55645#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55642#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55640#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55639#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55636#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55634#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55633#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55630#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55628#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55627#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55624#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55622#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55621#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55618#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55616#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55615#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55612#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55610#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55609#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55606#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55604#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55603#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55600#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55598#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55597#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55594#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55592#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55591#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55588#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55586#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55585#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55582#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55580#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55579#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55576#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55574#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55573#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55570#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55568#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55567#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55564#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55562#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55561#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55558#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55556#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55555#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55552#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55550#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55549#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55546#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55544#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55543#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55540#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55538#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55537#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55534#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55532#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55531#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55528#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55526#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55525#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55522#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55520#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55519#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55516#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55514#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55513#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55510#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55508#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55507#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55504#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55502#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55501#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55498#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55496#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55495#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55492#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55490#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55489#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55486#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55484#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55483#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55480#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55478#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55477#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55474#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55472#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55471#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55468#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55466#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55465#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55462#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55460#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55459#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55456#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55454#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55453#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55450#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55448#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55447#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55445#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55444#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55443#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55345#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55332#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55342#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55347#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55432#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55431#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55354#L34 [2021-12-19 17:54:04,171 INFO L793 eck$LassoCheckResult]: Loop: 55354#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 55355#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 55353#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 55354#L34 [2021-12-19 17:54:04,171 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:54:04,172 INFO L85 PathProgramCache]: Analyzing trace with hash -1682515873, now seen corresponding path program 76 times [2021-12-19 17:54:04,172 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:54:04,172 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1383705958] [2021-12-19 17:54:04,172 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:54:04,172 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:54:04,375 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:54:04,375 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:54:04,589 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:54:04,601 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:54:04,601 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:54:04,601 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 40 times [2021-12-19 17:54:04,601 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:54:04,601 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1014997515] [2021-12-19 17:54:04,601 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:54:04,602 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:54:04,606 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:54:04,606 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:54:04,607 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:54:04,609 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:54:04,609 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:54:04,609 INFO L85 PathProgramCache]: Analyzing trace with hash -1561988457, now seen corresponding path program 77 times [2021-12-19 17:54:04,609 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:54:04,609 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [993555936] [2021-12-19 17:54:04,609 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:54:04,609 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:54:04,643 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:54:06,139 INFO L134 CoverageAnalysis]: Checked inductivity of 3783 backedges. 2147 proven. 1636 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:54:06,139 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:54:06,140 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [993555936] [2021-12-19 17:54:06,140 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [993555936] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:54:06,140 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [291184828] [2021-12-19 17:54:06,140 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:54:06,140 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:54:06,140 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:54:06,141 INFO L229 MonitoredProcess]: Starting monitored process 57 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:54:06,142 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (57)] Waiting until timeout for monitored process [2021-12-19 17:54:19,850 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 40 check-sat command(s) [2021-12-19 17:54:19,851 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:54:19,878 INFO L263 TraceCheckSpWp]: Trace formula consists of 864 conjuncts, 82 conjunts are in the unsatisfiable core [2021-12-19 17:54:19,880 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:54:22,117 INFO L134 CoverageAnalysis]: Checked inductivity of 3783 backedges. 2262 proven. 1521 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:54:22,118 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:54:22,400 INFO L134 CoverageAnalysis]: Checked inductivity of 3783 backedges. 2262 proven. 1521 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:54:22,400 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [291184828] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:54:22,400 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:54:22,400 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [82, 82, 82] total 124 [2021-12-19 17:54:22,400 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [974737395] [2021-12-19 17:54:22,400 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:54:22,428 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:54:22,429 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 125 interpolants. [2021-12-19 17:54:22,431 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=3531, Invalid=11969, Unknown=0, NotChecked=0, Total=15500 [2021-12-19 17:54:22,431 INFO L87 Difference]: Start difference. First operand 324 states and 366 transitions. cyclomatic complexity: 45 Second operand has 125 states, 124 states have (on average 2.629032258064516) internal successors, (326), 125 states have internal predecessors, (326), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:54:24,413 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:54:24,413 INFO L93 Difference]: Finished difference Result 1051 states and 1214 transitions. [2021-12-19 17:54:24,414 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 84 states. [2021-12-19 17:54:24,414 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 1051 states and 1214 transitions. [2021-12-19 17:54:24,416 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:54:24,417 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 1051 states to 578 states and 662 transitions. [2021-12-19 17:54:24,417 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 497 [2021-12-19 17:54:24,418 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 497 [2021-12-19 17:54:24,418 INFO L73 IsDeterministic]: Start isDeterministic. Operand 578 states and 662 transitions. [2021-12-19 17:54:24,418 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:54:24,418 INFO L681 BuchiCegarLoop]: Abstraction has 578 states and 662 transitions. [2021-12-19 17:54:24,418 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 578 states and 662 transitions. [2021-12-19 17:54:24,420 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 578 to 332. [2021-12-19 17:54:24,420 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 332 states, 332 states have (on average 1.1295180722891567) internal successors, (375), 331 states have internal predecessors, (375), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:54:24,421 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 332 states to 332 states and 375 transitions. [2021-12-19 17:54:24,421 INFO L704 BuchiCegarLoop]: Abstraction has 332 states and 375 transitions. [2021-12-19 17:54:24,421 INFO L587 BuchiCegarLoop]: Abstraction has 332 states and 375 transitions. [2021-12-19 17:54:24,421 INFO L425 BuchiCegarLoop]: ======== Iteration 42============ [2021-12-19 17:54:24,421 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 332 states and 375 transitions. [2021-12-19 17:54:24,422 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:54:24,422 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:54:24,422 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:54:24,423 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [40, 40, 40, 39, 39, 1, 1, 1, 1] [2021-12-19 17:54:24,423 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:54:24,423 INFO L791 eck$LassoCheckResult]: Stem: 58106#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 58107#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 58112#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58126#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58127#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58115#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58116#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58207#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58206#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58205#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58204#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58203#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58202#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58201#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58200#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58199#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58198#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58197#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58196#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58195#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58194#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58193#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58192#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58191#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58190#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58189#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58188#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58187#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58186#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58185#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58184#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58183#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58182#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58181#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58180#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58179#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58178#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58177#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58176#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58175#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58174#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58173#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58172#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58171#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58170#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58169#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58168#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58167#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58166#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58165#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58164#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58163#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58162#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58161#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58160#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58159#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58158#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58157#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58156#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58155#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58154#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58153#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58152#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58151#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58150#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58149#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58148#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58147#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58146#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58145#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58144#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58143#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58142#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58141#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58140#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58139#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58138#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58137#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58136#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58135#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58134#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 58130#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 58129#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 58117#L27-4 main_~i~0#1 := 0; 58118#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58433#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58217#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58215#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58216#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58220#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58432#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58429#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58427#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58426#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58423#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58421#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58420#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58417#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58415#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58414#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58411#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58409#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58408#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58405#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58403#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58402#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58399#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58397#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58396#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58393#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58391#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58390#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58387#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58385#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58384#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58381#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58379#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58378#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58375#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58373#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58372#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58369#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58367#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58366#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58363#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58361#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58360#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58357#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58355#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58354#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58351#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58349#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58348#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58345#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58343#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58342#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58339#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58337#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58336#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58333#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58331#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58330#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58327#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58325#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58324#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58321#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58319#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58318#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58315#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58313#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58312#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58309#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58307#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58306#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58303#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58301#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58300#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58297#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58295#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58294#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58291#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58289#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58288#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58285#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58283#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58282#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58279#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58277#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58276#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58273#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58271#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58270#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58267#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58265#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58264#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58261#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58259#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58258#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58255#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58253#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58252#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58249#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58247#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58246#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58243#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58241#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58240#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58237#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58235#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58234#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58231#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58229#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58228#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58226#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58224#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58223#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58123#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58111#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58120#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58125#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58212#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58211#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58132#L34 [2021-12-19 17:54:24,423 INFO L793 eck$LassoCheckResult]: Loop: 58132#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 58133#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 58131#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 58132#L34 [2021-12-19 17:54:24,423 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:54:24,424 INFO L85 PathProgramCache]: Analyzing trace with hash -695339623, now seen corresponding path program 78 times [2021-12-19 17:54:24,424 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:54:24,424 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1658356041] [2021-12-19 17:54:24,424 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:54:24,424 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:54:24,650 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:54:24,651 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:54:24,839 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:54:24,850 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:54:24,851 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:54:24,851 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 41 times [2021-12-19 17:54:24,851 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:54:24,851 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1597945394] [2021-12-19 17:54:24,851 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:54:24,851 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:54:24,855 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:54:24,855 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:54:24,856 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:54:24,858 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:54:24,858 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:54:24,858 INFO L85 PathProgramCache]: Analyzing trace with hash -235400419, now seen corresponding path program 79 times [2021-12-19 17:54:24,858 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:54:24,858 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1774972642] [2021-12-19 17:54:24,858 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:54:24,858 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:54:24,894 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:54:26,463 INFO L134 CoverageAnalysis]: Checked inductivity of 3980 backedges. 2262 proven. 1718 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:54:26,463 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:54:26,464 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1774972642] [2021-12-19 17:54:26,464 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1774972642] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:54:26,464 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [735273054] [2021-12-19 17:54:26,464 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:54:26,464 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:54:26,464 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:54:26,465 INFO L229 MonitoredProcess]: Starting monitored process 58 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:54:26,468 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (58)] Waiting until timeout for monitored process [2021-12-19 17:54:26,770 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:54:26,775 INFO L263 TraceCheckSpWp]: Trace formula consists of 885 conjuncts, 84 conjunts are in the unsatisfiable core [2021-12-19 17:54:26,776 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:54:29,013 INFO L134 CoverageAnalysis]: Checked inductivity of 3980 backedges. 2380 proven. 1600 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:54:29,013 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:54:29,316 INFO L134 CoverageAnalysis]: Checked inductivity of 3980 backedges. 2380 proven. 1600 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:54:29,316 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [735273054] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:54:29,317 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:54:29,317 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [84, 84, 84] total 127 [2021-12-19 17:54:29,317 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1413468747] [2021-12-19 17:54:29,317 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:54:29,344 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:54:29,345 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 128 interpolants. [2021-12-19 17:54:29,346 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=3701, Invalid=12555, Unknown=0, NotChecked=0, Total=16256 [2021-12-19 17:54:29,346 INFO L87 Difference]: Start difference. First operand 332 states and 375 transitions. cyclomatic complexity: 46 Second operand has 128 states, 127 states have (on average 2.62992125984252) internal successors, (334), 128 states have internal predecessors, (334), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:54:31,388 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:54:31,388 INFO L93 Difference]: Finished difference Result 1077 states and 1244 transitions. [2021-12-19 17:54:31,389 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 86 states. [2021-12-19 17:54:31,389 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 1077 states and 1244 transitions. [2021-12-19 17:54:31,391 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:54:31,392 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 1077 states to 592 states and 678 transitions. [2021-12-19 17:54:31,392 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 509 [2021-12-19 17:54:31,393 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 509 [2021-12-19 17:54:31,393 INFO L73 IsDeterministic]: Start isDeterministic. Operand 592 states and 678 transitions. [2021-12-19 17:54:31,393 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:54:31,393 INFO L681 BuchiCegarLoop]: Abstraction has 592 states and 678 transitions. [2021-12-19 17:54:31,393 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 592 states and 678 transitions. [2021-12-19 17:54:31,395 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 592 to 340. [2021-12-19 17:54:31,396 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 340 states, 340 states have (on average 1.1294117647058823) internal successors, (384), 339 states have internal predecessors, (384), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:54:31,396 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 340 states to 340 states and 384 transitions. [2021-12-19 17:54:31,396 INFO L704 BuchiCegarLoop]: Abstraction has 340 states and 384 transitions. [2021-12-19 17:54:31,396 INFO L587 BuchiCegarLoop]: Abstraction has 340 states and 384 transitions. [2021-12-19 17:54:31,396 INFO L425 BuchiCegarLoop]: ======== Iteration 43============ [2021-12-19 17:54:31,396 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 340 states and 384 transitions. [2021-12-19 17:54:31,397 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:54:31,397 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:54:31,397 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:54:31,398 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [41, 41, 41, 40, 40, 1, 1, 1, 1] [2021-12-19 17:54:31,398 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:54:31,398 INFO L791 eck$LassoCheckResult]: Stem: 60954#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 60955#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 60960#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 60975#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 60976#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 60963#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 60964#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61058#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61057#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61056#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61055#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61054#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61053#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61052#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61051#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61050#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61049#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61048#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61047#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61046#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61045#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61044#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61043#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61042#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61041#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61040#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61039#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61038#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61037#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61036#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61035#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61034#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61033#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61032#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61031#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61030#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61029#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61028#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61027#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61026#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61025#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61024#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61023#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61022#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61021#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61020#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61019#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61018#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61017#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61016#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61015#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61014#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61013#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61012#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61011#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61010#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61009#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61008#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61007#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61006#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61005#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61004#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61003#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61002#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 61001#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 61000#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 60999#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 60998#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 60997#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 60996#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 60995#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 60994#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 60993#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 60992#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 60991#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 60990#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 60989#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 60988#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 60987#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 60986#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 60985#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 60984#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 60983#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 60979#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 60978#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 60965#L27-4 main_~i~0#1 := 0; 60966#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61066#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61067#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61068#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61072#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61071#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61288#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61285#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61283#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61282#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61279#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61277#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61276#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61273#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61271#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61270#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61267#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61265#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61264#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61261#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61259#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61258#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61255#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61253#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61252#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61249#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61247#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61246#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61243#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61241#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61240#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61237#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61235#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61234#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61231#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61229#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61228#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61225#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61223#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61222#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61219#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61217#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61216#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61213#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61211#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61210#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61207#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61205#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61204#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61201#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61199#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61198#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61195#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61193#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61192#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61189#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61187#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61186#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61183#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61181#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61180#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61177#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61175#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61174#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61171#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61169#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61168#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61165#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61163#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61162#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61159#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61157#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61156#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61153#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61151#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61150#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61147#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61145#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61144#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61141#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61139#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61138#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61135#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61133#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61132#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61129#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61127#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61126#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61123#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61121#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61120#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61117#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61115#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61114#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61111#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61109#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61108#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61105#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61103#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61102#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61099#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61097#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61096#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61093#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61091#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61090#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61087#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61085#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61084#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61081#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61079#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61078#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 61076#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61075#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61074#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 60972#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 60959#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 60969#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 60974#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 61063#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 61062#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 60981#L34 [2021-12-19 17:54:31,398 INFO L793 eck$LassoCheckResult]: Loop: 60981#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 60982#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 60980#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 60981#L34 [2021-12-19 17:54:31,399 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:54:31,399 INFO L85 PathProgramCache]: Analyzing trace with hash -381443749, now seen corresponding path program 80 times [2021-12-19 17:54:31,399 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:54:31,399 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [260709458] [2021-12-19 17:54:31,399 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:54:31,399 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:54:31,610 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:54:31,610 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:54:31,877 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:54:31,890 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:54:31,890 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:54:31,890 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 42 times [2021-12-19 17:54:31,890 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:54:31,890 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1467563503] [2021-12-19 17:54:31,891 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:54:31,891 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:54:31,895 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:54:31,895 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:54:31,896 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:54:31,898 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:54:31,898 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:54:31,898 INFO L85 PathProgramCache]: Analyzing trace with hash 892778523, now seen corresponding path program 81 times [2021-12-19 17:54:31,898 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:54:31,898 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [942067823] [2021-12-19 17:54:31,898 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:54:31,898 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:54:31,934 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:54:33,565 INFO L134 CoverageAnalysis]: Checked inductivity of 4182 backedges. 2380 proven. 1802 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:54:33,565 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:54:33,565 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [942067823] [2021-12-19 17:54:33,565 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [942067823] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:54:33,565 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [589598504] [2021-12-19 17:54:33,565 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:54:33,566 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:54:33,566 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:54:33,567 INFO L229 MonitoredProcess]: Starting monitored process 59 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:54:33,567 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (59)] Waiting until timeout for monitored process [2021-12-19 17:55:21,234 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 42 check-sat command(s) [2021-12-19 17:55:21,235 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:55:21,283 INFO L263 TraceCheckSpWp]: Trace formula consists of 906 conjuncts, 86 conjunts are in the unsatisfiable core [2021-12-19 17:55:21,285 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:55:23,635 INFO L134 CoverageAnalysis]: Checked inductivity of 4182 backedges. 2501 proven. 1681 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:55:23,636 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:55:23,949 INFO L134 CoverageAnalysis]: Checked inductivity of 4182 backedges. 2501 proven. 1681 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:55:23,949 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [589598504] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:55:23,949 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:55:23,950 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [86, 86, 86] total 130 [2021-12-19 17:55:23,950 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1540574514] [2021-12-19 17:55:23,950 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:55:23,981 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:55:23,982 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 131 interpolants. [2021-12-19 17:55:23,983 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=3875, Invalid=13155, Unknown=0, NotChecked=0, Total=17030 [2021-12-19 17:55:23,983 INFO L87 Difference]: Start difference. First operand 340 states and 384 transitions. cyclomatic complexity: 47 Second operand has 131 states, 130 states have (on average 2.6307692307692307) internal successors, (342), 131 states have internal predecessors, (342), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:55:26,170 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:55:26,171 INFO L93 Difference]: Finished difference Result 1103 states and 1274 transitions. [2021-12-19 17:55:26,171 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 88 states. [2021-12-19 17:55:26,171 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 1103 states and 1274 transitions. [2021-12-19 17:55:26,173 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:55:26,175 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 1103 states to 606 states and 694 transitions. [2021-12-19 17:55:26,175 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 521 [2021-12-19 17:55:26,175 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 521 [2021-12-19 17:55:26,175 INFO L73 IsDeterministic]: Start isDeterministic. Operand 606 states and 694 transitions. [2021-12-19 17:55:26,175 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:55:26,175 INFO L681 BuchiCegarLoop]: Abstraction has 606 states and 694 transitions. [2021-12-19 17:55:26,176 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 606 states and 694 transitions. [2021-12-19 17:55:26,180 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 606 to 348. [2021-12-19 17:55:26,180 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 348 states, 348 states have (on average 1.1293103448275863) internal successors, (393), 347 states have internal predecessors, (393), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:55:26,180 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 348 states to 348 states and 393 transitions. [2021-12-19 17:55:26,181 INFO L704 BuchiCegarLoop]: Abstraction has 348 states and 393 transitions. [2021-12-19 17:55:26,181 INFO L587 BuchiCegarLoop]: Abstraction has 348 states and 393 transitions. [2021-12-19 17:55:26,181 INFO L425 BuchiCegarLoop]: ======== Iteration 44============ [2021-12-19 17:55:26,181 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 348 states and 393 transitions. [2021-12-19 17:55:26,182 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:55:26,182 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:55:26,182 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:55:26,182 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [42, 42, 42, 41, 41, 1, 1, 1, 1] [2021-12-19 17:55:26,183 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:55:26,183 INFO L791 eck$LassoCheckResult]: Stem: 63871#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 63872#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 63877#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63891#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63892#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63880#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63881#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63976#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63975#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63974#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63973#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63972#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63971#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63970#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63969#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63968#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63967#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63966#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63965#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63964#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63963#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63962#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63961#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63960#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63959#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63958#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63957#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63956#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63955#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63954#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63953#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63952#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63951#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63950#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63949#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63948#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63947#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63946#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63945#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63944#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63943#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63942#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63941#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63940#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63939#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63938#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63937#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63936#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63935#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63934#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63933#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63932#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63931#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63930#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63929#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63928#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63927#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63926#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63925#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63924#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63923#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63922#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63921#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63920#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63919#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63918#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63917#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63916#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63915#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63914#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63913#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63912#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63911#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63910#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63909#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63908#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63907#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63906#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63905#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63904#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63903#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63902#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63901#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63900#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63899#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 63895#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 63894#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 63882#L27-4 main_~i~0#1 := 0; 63883#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64213#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 63986#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 63984#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 63985#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 63989#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64211#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64208#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64206#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64205#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64202#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64200#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64199#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64196#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64194#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64193#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64190#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64188#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64187#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64184#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64182#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64181#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64178#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64176#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64175#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64172#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64170#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64169#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64166#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64164#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64163#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64160#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64158#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64157#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64154#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64152#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64151#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64148#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64146#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64145#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64142#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64140#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64139#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64136#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64134#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64133#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64130#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64128#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64127#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64124#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64122#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64121#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64118#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64116#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64115#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64112#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64110#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64109#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64106#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64104#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64103#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64100#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64098#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64097#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64094#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64092#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64091#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64088#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64086#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64085#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64082#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64080#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64079#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64076#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64074#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64073#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64070#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64068#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64067#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64064#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64062#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64061#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64058#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64056#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64055#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64052#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64050#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64049#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64046#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64044#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64043#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64040#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64038#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64037#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64034#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64032#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64031#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64028#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64026#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64025#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64022#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64020#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64019#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64016#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64014#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64013#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64010#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64008#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64007#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 64004#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 64002#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 64001#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 63998#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 63996#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 63995#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 63994#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 63993#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 63992#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 63888#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 63876#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 63885#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 63890#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 63981#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 63980#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 63897#L34 [2021-12-19 17:55:26,183 INFO L793 eck$LassoCheckResult]: Loop: 63897#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 63898#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 63896#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 63897#L34 [2021-12-19 17:55:26,183 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:55:26,183 INFO L85 PathProgramCache]: Analyzing trace with hash -826253155, now seen corresponding path program 82 times [2021-12-19 17:55:26,184 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:55:26,184 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1357285818] [2021-12-19 17:55:26,184 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:55:26,184 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:55:26,451 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:55:26,452 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:55:26,716 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:55:26,728 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:55:26,728 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:55:26,728 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 43 times [2021-12-19 17:55:26,728 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:55:26,728 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1727043131] [2021-12-19 17:55:26,729 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:55:26,729 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:55:26,733 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:55:26,733 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:55:26,734 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:55:26,736 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:55:26,736 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:55:26,736 INFO L85 PathProgramCache]: Analyzing trace with hash -450127463, now seen corresponding path program 83 times [2021-12-19 17:55:26,736 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:55:26,736 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [611044868] [2021-12-19 17:55:26,736 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:55:26,736 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:55:26,773 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:55:28,455 INFO L134 CoverageAnalysis]: Checked inductivity of 4389 backedges. 2501 proven. 1888 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:55:28,456 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:55:28,456 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [611044868] [2021-12-19 17:55:28,456 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [611044868] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:55:28,456 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1360821140] [2021-12-19 17:55:28,456 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:55:28,456 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:55:28,456 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:55:28,457 INFO L229 MonitoredProcess]: Starting monitored process 60 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:55:28,458 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (60)] Waiting until timeout for monitored process [2021-12-19 17:57:44,467 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 43 check-sat command(s) [2021-12-19 17:57:44,467 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:57:44,573 INFO L263 TraceCheckSpWp]: Trace formula consists of 927 conjuncts, 88 conjunts are in the unsatisfiable core [2021-12-19 17:57:44,575 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:57:47,042 INFO L134 CoverageAnalysis]: Checked inductivity of 4389 backedges. 2625 proven. 1764 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:57:47,043 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:57:47,346 INFO L134 CoverageAnalysis]: Checked inductivity of 4389 backedges. 2625 proven. 1764 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:57:47,346 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1360821140] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:57:47,346 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:57:47,346 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [88, 88, 88] total 133 [2021-12-19 17:57:47,346 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [46930516] [2021-12-19 17:57:47,346 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:57:47,374 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:57:47,375 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 134 interpolants. [2021-12-19 17:57:47,377 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=4053, Invalid=13769, Unknown=0, NotChecked=0, Total=17822 [2021-12-19 17:57:47,377 INFO L87 Difference]: Start difference. First operand 348 states and 393 transitions. cyclomatic complexity: 48 Second operand has 134 states, 133 states have (on average 2.6315789473684212) internal successors, (350), 134 states have internal predecessors, (350), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:57:49,516 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:57:49,517 INFO L93 Difference]: Finished difference Result 1129 states and 1304 transitions. [2021-12-19 17:57:49,517 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 90 states. [2021-12-19 17:57:49,517 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 1129 states and 1304 transitions. [2021-12-19 17:57:49,520 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:57:49,521 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 1129 states to 620 states and 710 transitions. [2021-12-19 17:57:49,521 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 533 [2021-12-19 17:57:49,521 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 533 [2021-12-19 17:57:49,521 INFO L73 IsDeterministic]: Start isDeterministic. Operand 620 states and 710 transitions. [2021-12-19 17:57:49,522 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:57:49,522 INFO L681 BuchiCegarLoop]: Abstraction has 620 states and 710 transitions. [2021-12-19 17:57:49,522 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 620 states and 710 transitions. [2021-12-19 17:57:49,524 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 620 to 356. [2021-12-19 17:57:49,525 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 356 states, 356 states have (on average 1.1292134831460674) internal successors, (402), 355 states have internal predecessors, (402), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:57:49,525 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 356 states to 356 states and 402 transitions. [2021-12-19 17:57:49,525 INFO L704 BuchiCegarLoop]: Abstraction has 356 states and 402 transitions. [2021-12-19 17:57:49,525 INFO L587 BuchiCegarLoop]: Abstraction has 356 states and 402 transitions. [2021-12-19 17:57:49,525 INFO L425 BuchiCegarLoop]: ======== Iteration 45============ [2021-12-19 17:57:49,525 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 356 states and 402 transitions. [2021-12-19 17:57:49,526 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:57:49,526 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:57:49,526 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:57:49,527 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [43, 43, 43, 42, 42, 1, 1, 1, 1] [2021-12-19 17:57:49,527 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:57:49,527 INFO L791 eck$LassoCheckResult]: Stem: 66857#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 66858#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 66863#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66878#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66879#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66866#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66867#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66965#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66964#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66963#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66962#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66961#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66960#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66959#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66958#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66957#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66956#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66955#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66954#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66953#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66952#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66951#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66950#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66949#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66948#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66947#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66946#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66945#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66944#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66943#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66942#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66941#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66940#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66939#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66938#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66937#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66936#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66935#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66934#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66933#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66932#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66931#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66930#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66929#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66928#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66927#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66926#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66925#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66924#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66923#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66922#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66921#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66920#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66919#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66918#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66917#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66916#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66915#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66914#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66913#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66912#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66911#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66910#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66909#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66908#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66907#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66906#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66905#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66904#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66903#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66902#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66901#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66900#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66899#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66898#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66897#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66896#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66895#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66894#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66893#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66892#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66891#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66890#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66889#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66888#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66887#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66886#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 66882#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 66881#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 66868#L27-4 main_~i~0#1 := 0; 66869#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 66973#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 66974#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 66975#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 66979#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 66978#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67207#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67204#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67202#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67201#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67198#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67196#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67195#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67192#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67190#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67189#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67186#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67184#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67183#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67180#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67178#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67177#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67174#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67172#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67171#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67168#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67166#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67165#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67162#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67160#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67159#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67156#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67154#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67153#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67150#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67148#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67147#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67144#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67142#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67141#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67138#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67136#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67135#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67132#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67130#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67129#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67126#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67124#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67123#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67120#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67118#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67117#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67114#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67112#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67111#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67108#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67106#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67105#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67102#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67100#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67099#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67096#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67094#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67093#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67090#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67088#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67087#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67084#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67082#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67081#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67078#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67076#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67075#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67072#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67070#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67069#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67066#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67064#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67063#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67060#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67058#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67057#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67054#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67052#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67051#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67048#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67046#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67045#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67042#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67040#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67039#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67036#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67034#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67033#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67030#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67028#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67027#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67024#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67022#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67021#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67018#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67016#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67015#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67012#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67010#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67009#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67006#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 67004#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 67003#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 67000#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 66998#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 66997#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 66994#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 66992#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 66991#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 66988#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 66986#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 66985#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 66983#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 66982#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 66981#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 66875#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 66862#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 66872#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 66877#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 66970#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 66969#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 66884#L34 [2021-12-19 17:57:49,528 INFO L793 eck$LassoCheckResult]: Loop: 66884#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 66885#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 66883#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 66884#L34 [2021-12-19 17:57:49,528 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:57:49,528 INFO L85 PathProgramCache]: Analyzing trace with hash 1698755159, now seen corresponding path program 84 times [2021-12-19 17:57:49,528 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:57:49,528 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1538048738] [2021-12-19 17:57:49,528 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:57:49,528 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:57:49,794 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:57:49,795 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:57:50,074 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:57:50,086 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:57:50,087 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:57:50,087 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 44 times [2021-12-19 17:57:50,087 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:57:50,087 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [155042066] [2021-12-19 17:57:50,087 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:57:50,087 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:57:50,092 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:57:50,092 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:57:50,093 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:57:50,095 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:57:50,095 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:57:50,095 INFO L85 PathProgramCache]: Analyzing trace with hash 15332767, now seen corresponding path program 85 times [2021-12-19 17:57:50,095 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:57:50,095 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1413424464] [2021-12-19 17:57:50,095 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:57:50,095 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:57:50,135 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:57:51,958 INFO L134 CoverageAnalysis]: Checked inductivity of 4601 backedges. 2625 proven. 1976 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:57:51,958 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:57:51,959 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1413424464] [2021-12-19 17:57:51,959 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1413424464] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:57:51,959 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [553721274] [2021-12-19 17:57:51,959 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 17:57:51,959 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:57:51,959 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:57:51,960 INFO L229 MonitoredProcess]: Starting monitored process 61 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:57:51,961 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (61)] Waiting until timeout for monitored process [2021-12-19 17:57:52,289 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:57:52,295 INFO L263 TraceCheckSpWp]: Trace formula consists of 948 conjuncts, 90 conjunts are in the unsatisfiable core [2021-12-19 17:57:52,297 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:57:54,855 INFO L134 CoverageAnalysis]: Checked inductivity of 4601 backedges. 2752 proven. 1849 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:57:54,855 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:57:55,169 INFO L134 CoverageAnalysis]: Checked inductivity of 4601 backedges. 2752 proven. 1849 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:57:55,169 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [553721274] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:57:55,169 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:57:55,169 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [90, 90, 90] total 136 [2021-12-19 17:57:55,169 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [2143655444] [2021-12-19 17:57:55,169 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:57:55,197 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:57:55,199 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 137 interpolants. [2021-12-19 17:57:55,200 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=4235, Invalid=14397, Unknown=0, NotChecked=0, Total=18632 [2021-12-19 17:57:55,200 INFO L87 Difference]: Start difference. First operand 356 states and 402 transitions. cyclomatic complexity: 49 Second operand has 137 states, 136 states have (on average 2.6323529411764706) internal successors, (358), 137 states have internal predecessors, (358), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:57:57,567 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:57:57,567 INFO L93 Difference]: Finished difference Result 1155 states and 1334 transitions. [2021-12-19 17:57:57,567 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 92 states. [2021-12-19 17:57:57,568 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 1155 states and 1334 transitions. [2021-12-19 17:57:57,570 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:57:57,572 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 1155 states to 634 states and 726 transitions. [2021-12-19 17:57:57,572 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 545 [2021-12-19 17:57:57,572 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 545 [2021-12-19 17:57:57,572 INFO L73 IsDeterministic]: Start isDeterministic. Operand 634 states and 726 transitions. [2021-12-19 17:57:57,572 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:57:57,572 INFO L681 BuchiCegarLoop]: Abstraction has 634 states and 726 transitions. [2021-12-19 17:57:57,572 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 634 states and 726 transitions. [2021-12-19 17:57:57,574 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 634 to 364. [2021-12-19 17:57:57,575 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 364 states, 364 states have (on average 1.129120879120879) internal successors, (411), 363 states have internal predecessors, (411), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:57:57,575 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 364 states to 364 states and 411 transitions. [2021-12-19 17:57:57,575 INFO L704 BuchiCegarLoop]: Abstraction has 364 states and 411 transitions. [2021-12-19 17:57:57,575 INFO L587 BuchiCegarLoop]: Abstraction has 364 states and 411 transitions. [2021-12-19 17:57:57,575 INFO L425 BuchiCegarLoop]: ======== Iteration 46============ [2021-12-19 17:57:57,576 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 364 states and 411 transitions. [2021-12-19 17:57:57,576 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:57:57,576 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:57:57,576 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:57:57,577 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [44, 44, 44, 43, 43, 1, 1, 1, 1] [2021-12-19 17:57:57,577 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:57:57,578 INFO L791 eck$LassoCheckResult]: Stem: 69912#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 69913#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 69918#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69932#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69933#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69921#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69922#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 70021#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 70020#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 70019#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 70018#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 70017#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 70016#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 70015#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 70014#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 70013#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 70012#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 70011#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 70010#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 70009#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 70008#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 70007#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 70006#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 70005#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 70004#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 70003#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 70002#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 70001#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 70000#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69999#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69998#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69997#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69996#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69995#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69994#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69993#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69992#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69991#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69990#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69989#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69988#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69987#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69986#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69985#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69984#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69983#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69982#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69981#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69980#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69979#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69978#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69977#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69976#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69975#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69974#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69973#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69972#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69971#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69970#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69969#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69968#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69967#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69966#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69965#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69964#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69963#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69962#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69961#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69960#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69959#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69958#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69957#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69956#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69955#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69954#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69953#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69952#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69951#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69950#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69949#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69948#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69947#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69946#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69945#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69944#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69943#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69942#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69941#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69940#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 69936#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 69935#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 69923#L27-4 main_~i~0#1 := 0; 69924#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70271#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70031#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70029#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70030#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70034#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70270#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70267#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70265#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70264#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70261#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70259#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70258#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70255#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70253#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70252#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70249#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70247#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70246#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70243#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70241#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70240#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70237#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70235#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70234#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70231#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70229#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70228#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70225#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70223#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70222#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70219#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70217#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70216#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70213#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70211#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70210#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70207#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70205#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70204#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70201#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70199#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70198#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70195#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70193#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70192#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70189#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70187#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70186#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70183#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70181#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70180#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70177#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70175#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70174#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70171#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70169#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70168#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70165#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70163#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70162#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70159#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70157#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70156#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70153#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70151#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70150#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70147#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70145#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70144#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70141#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70139#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70138#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70135#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70133#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70132#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70129#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70127#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70126#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70123#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70121#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70120#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70117#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70115#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70114#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70111#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70109#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70108#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70105#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70103#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70102#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70099#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70097#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70096#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70093#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70091#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70090#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70087#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70085#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70084#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70081#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70079#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70078#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70075#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70073#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70072#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70069#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70067#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70066#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70063#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70061#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70060#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70057#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70055#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70054#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70051#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70049#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70048#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70045#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70043#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70042#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 70040#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70038#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70037#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 69929#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 69917#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 69926#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 69931#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 70026#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 70025#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 69938#L34 [2021-12-19 17:57:57,578 INFO L793 eck$LassoCheckResult]: Loop: 69938#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 69939#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 69937#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 69938#L34 [2021-12-19 17:57:57,578 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:57:57,578 INFO L85 PathProgramCache]: Analyzing trace with hash -1264295007, now seen corresponding path program 86 times [2021-12-19 17:57:57,578 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:57:57,578 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [34828307] [2021-12-19 17:57:57,578 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:57:57,579 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:57:57,847 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:57:57,847 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:57:58,103 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:57:58,116 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:57:58,116 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:57:58,116 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 45 times [2021-12-19 17:57:58,116 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:57:58,116 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [961288095] [2021-12-19 17:57:58,117 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:57:58,117 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:57:58,121 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:57:58,121 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:57:58,122 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:57:58,125 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:57:58,125 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:57:58,125 INFO L85 PathProgramCache]: Analyzing trace with hash -2044295147, now seen corresponding path program 87 times [2021-12-19 17:57:58,125 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:57:58,125 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [316579277] [2021-12-19 17:57:58,125 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:57:58,125 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:57:58,164 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:58:00,019 INFO L134 CoverageAnalysis]: Checked inductivity of 4818 backedges. 2752 proven. 2066 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:58:00,019 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:58:00,019 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [316579277] [2021-12-19 17:58:00,019 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [316579277] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:58:00,019 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [669066471] [2021-12-19 17:58:00,019 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 17:58:00,019 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:58:00,019 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:58:00,021 INFO L229 MonitoredProcess]: Starting monitored process 62 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:58:00,021 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (62)] Waiting until timeout for monitored process [2021-12-19 17:58:48,717 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 45 check-sat command(s) [2021-12-19 17:58:48,717 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 17:58:48,778 INFO L263 TraceCheckSpWp]: Trace formula consists of 969 conjuncts, 92 conjunts are in the unsatisfiable core [2021-12-19 17:58:48,780 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 17:58:51,464 INFO L134 CoverageAnalysis]: Checked inductivity of 4818 backedges. 2882 proven. 1936 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:58:51,464 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 17:58:51,783 INFO L134 CoverageAnalysis]: Checked inductivity of 4818 backedges. 2882 proven. 1936 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:58:51,783 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [669066471] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 17:58:51,783 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 17:58:51,783 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [92, 92, 92] total 139 [2021-12-19 17:58:51,783 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [1911472096] [2021-12-19 17:58:51,783 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 17:58:51,812 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 17:58:51,813 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 140 interpolants. [2021-12-19 17:58:51,815 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=4421, Invalid=15039, Unknown=0, NotChecked=0, Total=19460 [2021-12-19 17:58:51,815 INFO L87 Difference]: Start difference. First operand 364 states and 411 transitions. cyclomatic complexity: 50 Second operand has 140 states, 139 states have (on average 2.633093525179856) internal successors, (366), 140 states have internal predecessors, (366), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:58:54,032 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 17:58:54,032 INFO L93 Difference]: Finished difference Result 1181 states and 1364 transitions. [2021-12-19 17:58:54,032 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 94 states. [2021-12-19 17:58:54,032 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 1181 states and 1364 transitions. [2021-12-19 17:58:54,035 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:58:54,036 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 1181 states to 648 states and 742 transitions. [2021-12-19 17:58:54,036 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 557 [2021-12-19 17:58:54,037 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 557 [2021-12-19 17:58:54,037 INFO L73 IsDeterministic]: Start isDeterministic. Operand 648 states and 742 transitions. [2021-12-19 17:58:54,037 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 17:58:54,037 INFO L681 BuchiCegarLoop]: Abstraction has 648 states and 742 transitions. [2021-12-19 17:58:54,037 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 648 states and 742 transitions. [2021-12-19 17:58:54,039 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 648 to 372. [2021-12-19 17:58:54,040 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 372 states, 372 states have (on average 1.1290322580645162) internal successors, (420), 371 states have internal predecessors, (420), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 17:58:54,040 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 372 states to 372 states and 420 transitions. [2021-12-19 17:58:54,040 INFO L704 BuchiCegarLoop]: Abstraction has 372 states and 420 transitions. [2021-12-19 17:58:54,040 INFO L587 BuchiCegarLoop]: Abstraction has 372 states and 420 transitions. [2021-12-19 17:58:54,040 INFO L425 BuchiCegarLoop]: ======== Iteration 47============ [2021-12-19 17:58:54,040 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 372 states and 420 transitions. [2021-12-19 17:58:54,041 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 17:58:54,041 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 17:58:54,041 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 17:58:54,042 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [45, 45, 45, 44, 44, 1, 1, 1, 1] [2021-12-19 17:58:54,042 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 17:58:54,042 INFO L791 eck$LassoCheckResult]: Stem: 73036#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 73037#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 73042#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73057#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73058#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73045#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73046#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73148#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73147#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73146#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73145#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73144#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73143#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73142#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73141#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73140#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73139#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73138#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73137#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73136#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73135#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73134#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73133#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73132#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73131#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73130#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73129#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73128#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73127#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73126#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73125#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73124#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73123#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73122#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73121#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73120#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73119#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73118#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73117#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73116#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73115#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73114#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73113#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73112#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73111#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73110#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73109#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73108#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73107#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73106#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73105#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73104#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73103#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73102#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73101#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73100#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73099#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73098#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73097#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73096#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73095#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73094#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73093#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73092#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73091#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73090#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73089#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73088#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73087#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73086#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73085#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73084#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73083#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73082#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73081#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73080#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73079#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73078#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73077#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73076#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73075#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73074#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73073#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73072#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73071#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73070#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73069#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73068#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73067#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73066#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73065#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 73061#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 73060#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 73047#L27-4 main_~i~0#1 := 0; 73048#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73156#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73157#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73158#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73162#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73161#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73402#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73399#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73397#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73396#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73393#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73391#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73390#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73387#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73385#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73384#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73381#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73379#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73378#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73375#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73373#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73372#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73369#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73367#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73366#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73363#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73361#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73360#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73357#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73355#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73354#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73351#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73349#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73348#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73345#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73343#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73342#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73339#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73337#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73336#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73333#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73331#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73330#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73327#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73325#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73324#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73321#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73319#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73318#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73315#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73313#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73312#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73309#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73307#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73306#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73303#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73301#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73300#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73297#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73295#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73294#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73291#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73289#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73288#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73285#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73283#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73282#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73279#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73277#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73276#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73273#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73271#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73270#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73267#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73265#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73264#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73261#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73259#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73258#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73255#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73253#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73252#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73249#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73247#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73246#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73243#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73241#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73240#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73237#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73235#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73234#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73231#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73229#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73228#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73225#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73223#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73222#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73219#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73217#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73216#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73213#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73211#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73210#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73207#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73205#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73204#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73201#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73199#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73198#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73195#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73193#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73192#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73189#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73187#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73186#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73183#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73181#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73180#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73177#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73175#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73174#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73171#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73169#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73168#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73166#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73165#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73164#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73054#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73041#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73051#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73056#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73153#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73152#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73063#L34 [2021-12-19 17:58:54,043 INFO L793 eck$LassoCheckResult]: Loop: 73063#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 73064#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 73062#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 73063#L34 [2021-12-19 17:58:54,043 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:58:54,043 INFO L85 PathProgramCache]: Analyzing trace with hash -819295405, now seen corresponding path program 88 times [2021-12-19 17:58:54,043 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:58:54,043 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [669372697] [2021-12-19 17:58:54,043 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:58:54,043 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:58:54,361 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:58:54,361 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:58:54,616 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:58:54,631 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:58:54,632 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:58:54,632 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 46 times [2021-12-19 17:58:54,632 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:58:54,632 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1393163103] [2021-12-19 17:58:54,632 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:58:54,633 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:58:54,637 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:58:54,638 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 17:58:54,638 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 17:58:54,641 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 17:58:54,641 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 17:58:54,641 INFO L85 PathProgramCache]: Analyzing trace with hash 669772579, now seen corresponding path program 89 times [2021-12-19 17:58:54,641 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 17:58:54,641 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [869526051] [2021-12-19 17:58:54,641 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 17:58:54,641 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 17:58:54,680 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 17:58:56,651 INFO L134 CoverageAnalysis]: Checked inductivity of 5040 backedges. 2882 proven. 2158 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 17:58:56,652 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 17:58:56,652 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [869526051] [2021-12-19 17:58:56,652 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [869526051] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 17:58:56,652 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [1046791943] [2021-12-19 17:58:56,652 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 17:58:56,652 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 17:58:56,652 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 17:58:56,688 INFO L229 MonitoredProcess]: Starting monitored process 63 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 17:58:56,689 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (63)] Waiting until timeout for monitored process [2021-12-19 18:00:19,560 INFO L228 tOrderPrioritization]: Assert order INSIDE_LOOP_FIRST1 issued 46 check-sat command(s) [2021-12-19 18:00:19,560 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 18:00:19,677 INFO L263 TraceCheckSpWp]: Trace formula consists of 990 conjuncts, 94 conjunts are in the unsatisfiable core [2021-12-19 18:00:19,679 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 18:00:22,806 INFO L134 CoverageAnalysis]: Checked inductivity of 5040 backedges. 3015 proven. 2025 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 18:00:22,806 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 18:00:23,187 INFO L134 CoverageAnalysis]: Checked inductivity of 5040 backedges. 3015 proven. 2025 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 18:00:23,187 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [1046791943] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 18:00:23,187 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 18:00:23,187 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [94, 94, 94] total 142 [2021-12-19 18:00:23,188 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [523622156] [2021-12-19 18:00:23,188 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 18:00:23,218 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 18:00:23,220 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 143 interpolants. [2021-12-19 18:00:23,221 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=4611, Invalid=15695, Unknown=0, NotChecked=0, Total=20306 [2021-12-19 18:00:23,222 INFO L87 Difference]: Start difference. First operand 372 states and 420 transitions. cyclomatic complexity: 51 Second operand has 143 states, 142 states have (on average 2.6338028169014085) internal successors, (374), 143 states have internal predecessors, (374), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 18:00:26,006 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 18:00:26,006 INFO L93 Difference]: Finished difference Result 1207 states and 1394 transitions. [2021-12-19 18:00:26,006 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 96 states. [2021-12-19 18:00:26,007 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 1207 states and 1394 transitions. [2021-12-19 18:00:26,012 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 18:00:26,014 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 1207 states to 662 states and 758 transitions. [2021-12-19 18:00:26,014 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 569 [2021-12-19 18:00:26,014 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 569 [2021-12-19 18:00:26,014 INFO L73 IsDeterministic]: Start isDeterministic. Operand 662 states and 758 transitions. [2021-12-19 18:00:26,014 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 18:00:26,014 INFO L681 BuchiCegarLoop]: Abstraction has 662 states and 758 transitions. [2021-12-19 18:00:26,015 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 662 states and 758 transitions. [2021-12-19 18:00:26,017 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 662 to 380. [2021-12-19 18:00:26,022 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 380 states, 380 states have (on average 1.1289473684210527) internal successors, (429), 379 states have internal predecessors, (429), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 18:00:26,022 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 380 states to 380 states and 429 transitions. [2021-12-19 18:00:26,022 INFO L704 BuchiCegarLoop]: Abstraction has 380 states and 429 transitions. [2021-12-19 18:00:26,023 INFO L587 BuchiCegarLoop]: Abstraction has 380 states and 429 transitions. [2021-12-19 18:00:26,023 INFO L425 BuchiCegarLoop]: ======== Iteration 48============ [2021-12-19 18:00:26,023 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 380 states and 429 transitions. [2021-12-19 18:00:26,023 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 18:00:26,024 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 18:00:26,024 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 18:00:26,024 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [46, 46, 46, 45, 45, 1, 1, 1, 1] [2021-12-19 18:00:26,024 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 18:00:26,025 INFO L791 eck$LassoCheckResult]: Stem: 76229#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 76230#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 76235#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76249#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76250#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76238#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76239#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76342#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76341#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76340#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76339#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76338#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76337#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76336#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76335#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76334#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76333#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76332#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76331#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76330#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76329#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76328#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76327#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76326#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76325#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76324#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76323#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76322#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76321#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76320#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76319#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76318#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76317#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76316#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76315#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76314#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76313#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76312#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76311#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76310#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76309#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76308#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76307#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76306#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76305#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76304#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76303#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76302#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76301#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76300#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76299#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76298#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76297#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76296#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76295#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76294#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76293#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76292#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76291#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76290#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76289#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76288#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76287#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76286#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76285#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76284#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76283#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76282#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76281#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76280#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76279#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76278#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76277#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76276#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76275#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76274#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76273#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76272#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76271#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76270#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76269#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76268#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76267#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76266#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76265#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76264#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76263#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76262#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76261#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76260#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76259#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76258#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76257#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 76253#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 76252#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 76240#L27-4 main_~i~0#1 := 0; 76241#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76603#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76352#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76350#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76351#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76355#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76601#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76598#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76596#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76595#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76592#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76590#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76589#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76586#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76584#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76583#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76580#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76578#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76577#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76574#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76572#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76571#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76568#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76566#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76565#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76562#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76560#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76559#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76556#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76554#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76553#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76550#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76548#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76547#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76544#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76542#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76541#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76538#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76536#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76535#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76532#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76530#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76529#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76526#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76524#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76523#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76520#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76518#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76517#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76514#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76512#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76511#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76508#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76506#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76505#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76502#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76500#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76499#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76496#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76494#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76493#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76490#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76488#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76487#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76484#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76482#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76481#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76478#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76476#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76475#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76472#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76470#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76469#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76466#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76464#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76463#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76460#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76458#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76457#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76454#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76452#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76451#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76448#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76446#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76445#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76442#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76440#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76439#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76436#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76434#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76433#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76430#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76428#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76427#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76424#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76422#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76421#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76418#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76416#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76415#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76412#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76410#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76409#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76406#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76404#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76403#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76400#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76398#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76397#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76394#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76392#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76391#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76388#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76386#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76385#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76382#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76380#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76379#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76376#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76374#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76373#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76370#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76368#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76367#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76364#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76362#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76361#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76360#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76359#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76358#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76246#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76234#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76243#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76248#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76347#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76346#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76255#L34 [2021-12-19 18:00:26,025 INFO L793 eck$LassoCheckResult]: Loop: 76255#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 76256#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 76254#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 76255#L34 [2021-12-19 18:00:26,025 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 18:00:26,025 INFO L85 PathProgramCache]: Analyzing trace with hash 1774075557, now seen corresponding path program 90 times [2021-12-19 18:00:26,026 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 18:00:26,026 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1387218491] [2021-12-19 18:00:26,026 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 18:00:26,026 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 18:00:26,371 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 18:00:26,371 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 18:00:26,701 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 18:00:26,715 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 18:00:26,716 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 18:00:26,716 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 47 times [2021-12-19 18:00:26,716 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 18:00:26,716 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [177368018] [2021-12-19 18:00:26,716 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 18:00:26,716 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 18:00:26,721 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 18:00:26,721 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 18:00:26,722 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 18:00:26,724 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 18:00:26,724 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 18:00:26,724 INFO L85 PathProgramCache]: Analyzing trace with hash 1912381073, now seen corresponding path program 91 times [2021-12-19 18:00:26,725 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 18:00:26,725 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [2072253744] [2021-12-19 18:00:26,725 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 18:00:26,725 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 18:00:26,794 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 18:00:28,876 INFO L134 CoverageAnalysis]: Checked inductivity of 5267 backedges. 3015 proven. 2252 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 18:00:28,876 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 18:00:28,877 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [2072253744] [2021-12-19 18:00:28,877 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [2072253744] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 18:00:28,877 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [61060987] [2021-12-19 18:00:28,877 INFO L93 rtionOrderModulation]: Changing assertion order to NOT_INCREMENTALLY [2021-12-19 18:00:28,877 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 18:00:28,877 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 18:00:28,878 INFO L229 MonitoredProcess]: Starting monitored process 64 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 18:00:28,879 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (64)] Waiting until timeout for monitored process [2021-12-19 18:00:29,241 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 18:00:29,248 INFO L263 TraceCheckSpWp]: Trace formula consists of 1011 conjuncts, 96 conjunts are in the unsatisfiable core [2021-12-19 18:00:29,250 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 18:00:32,303 INFO L134 CoverageAnalysis]: Checked inductivity of 5267 backedges. 3151 proven. 2116 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 18:00:32,303 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 18:00:32,670 INFO L134 CoverageAnalysis]: Checked inductivity of 5267 backedges. 3151 proven. 2116 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 18:00:32,671 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [61060987] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 18:00:32,671 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 18:00:32,671 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [96, 96, 96] total 145 [2021-12-19 18:00:32,671 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [2021907364] [2021-12-19 18:00:32,671 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 18:00:32,702 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 18:00:32,703 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 146 interpolants. [2021-12-19 18:00:32,705 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=4805, Invalid=16365, Unknown=0, NotChecked=0, Total=21170 [2021-12-19 18:00:32,706 INFO L87 Difference]: Start difference. First operand 380 states and 429 transitions. cyclomatic complexity: 52 Second operand has 146 states, 145 states have (on average 2.6344827586206896) internal successors, (382), 146 states have internal predecessors, (382), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 18:00:35,644 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 18:00:35,644 INFO L93 Difference]: Finished difference Result 1233 states and 1424 transitions. [2021-12-19 18:00:35,645 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 98 states. [2021-12-19 18:00:35,645 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 1233 states and 1424 transitions. [2021-12-19 18:00:35,669 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 18:00:35,671 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 1233 states to 676 states and 774 transitions. [2021-12-19 18:00:35,671 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 581 [2021-12-19 18:00:35,672 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 581 [2021-12-19 18:00:35,672 INFO L73 IsDeterministic]: Start isDeterministic. Operand 676 states and 774 transitions. [2021-12-19 18:00:35,672 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 18:00:35,672 INFO L681 BuchiCegarLoop]: Abstraction has 676 states and 774 transitions. [2021-12-19 18:00:35,672 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 676 states and 774 transitions. [2021-12-19 18:00:35,674 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 676 to 388. [2021-12-19 18:00:35,675 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 388 states, 388 states have (on average 1.1288659793814433) internal successors, (438), 387 states have internal predecessors, (438), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 18:00:35,675 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 388 states to 388 states and 438 transitions. [2021-12-19 18:00:35,675 INFO L704 BuchiCegarLoop]: Abstraction has 388 states and 438 transitions. [2021-12-19 18:00:35,675 INFO L587 BuchiCegarLoop]: Abstraction has 388 states and 438 transitions. [2021-12-19 18:00:35,675 INFO L425 BuchiCegarLoop]: ======== Iteration 49============ [2021-12-19 18:00:35,675 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 388 states and 438 transitions. [2021-12-19 18:00:35,676 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 18:00:35,676 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 18:00:35,676 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 18:00:35,677 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [47, 47, 47, 46, 46, 1, 1, 1, 1] [2021-12-19 18:00:35,677 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 18:00:35,677 INFO L791 eck$LassoCheckResult]: Stem: 79491#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 79492#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 79497#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79512#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79513#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79500#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79501#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79607#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79606#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79605#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79604#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79603#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79602#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79601#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79600#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79599#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79598#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79597#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79596#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79595#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79594#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79593#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79592#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79591#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79590#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79589#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79588#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79587#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79586#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79585#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79584#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79583#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79582#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79581#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79580#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79579#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79578#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79577#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79576#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79575#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79574#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79573#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79572#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79571#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79570#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79569#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79568#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79567#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79566#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79565#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79564#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79563#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79562#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79561#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79560#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79559#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79558#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79557#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79556#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79555#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79554#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79553#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79552#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79551#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79550#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79549#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79548#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79547#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79546#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79545#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79544#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79543#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79542#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79541#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79540#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79539#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79538#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79537#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79536#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79535#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79534#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79533#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79532#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79531#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79530#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79529#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79528#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79527#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79526#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79525#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79524#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79523#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79522#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79521#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79520#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 79516#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 79515#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 79502#L27-4 main_~i~0#1 := 0; 79503#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79615#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79616#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79617#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79621#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79620#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79873#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79870#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79868#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79867#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79864#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79862#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79861#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79858#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79856#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79855#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79852#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79850#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79849#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79846#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79844#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79843#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79840#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79838#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79837#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79834#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79832#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79831#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79828#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79826#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79825#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79822#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79820#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79819#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79816#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79814#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79813#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79810#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79808#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79807#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79804#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79802#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79801#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79798#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79796#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79795#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79792#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79790#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79789#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79786#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79784#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79783#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79780#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79778#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79777#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79774#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79772#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79771#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79768#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79766#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79765#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79762#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79760#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79759#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79756#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79754#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79753#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79750#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79748#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79747#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79744#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79742#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79741#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79738#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79736#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79735#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79732#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79730#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79729#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79726#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79724#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79723#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79720#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79718#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79717#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79714#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79712#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79711#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79708#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79706#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79705#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79702#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79700#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79699#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79696#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79694#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79693#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79690#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79688#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79687#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79684#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79682#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79681#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79678#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79676#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79675#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79672#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79670#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79669#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79666#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79664#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79663#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79660#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79658#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79657#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79654#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79652#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79651#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79648#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79646#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79645#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79642#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79640#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79639#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79636#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79634#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79633#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79630#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79628#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79627#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79625#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79624#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79623#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79509#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79496#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79506#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79511#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79612#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79611#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79518#L34 [2021-12-19 18:00:35,677 INFO L793 eck$LassoCheckResult]: Loop: 79518#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 79519#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 79517#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 79518#L34 [2021-12-19 18:00:35,677 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 18:00:35,677 INFO L85 PathProgramCache]: Analyzing trace with hash 58469455, now seen corresponding path program 92 times [2021-12-19 18:00:35,678 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 18:00:35,678 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [12771206] [2021-12-19 18:00:35,678 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 18:00:35,678 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 18:00:35,971 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 18:00:35,971 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 18:00:36,417 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 18:00:36,432 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 18:00:36,433 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 18:00:36,433 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 48 times [2021-12-19 18:00:36,433 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 18:00:36,433 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1744470881] [2021-12-19 18:00:36,434 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 18:00:36,434 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 18:00:36,439 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 18:00:36,440 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 18:00:36,440 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 18:00:36,443 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 18:00:36,443 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 18:00:36,443 INFO L85 PathProgramCache]: Analyzing trace with hash -1893148505, now seen corresponding path program 93 times [2021-12-19 18:00:36,444 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 18:00:36,444 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [721500111] [2021-12-19 18:00:36,444 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 18:00:36,444 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 18:00:36,493 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 18:00:38,876 INFO L134 CoverageAnalysis]: Checked inductivity of 5499 backedges. 3151 proven. 2348 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 18:00:38,876 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 18:00:38,877 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [721500111] [2021-12-19 18:00:38,877 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [721500111] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 18:00:38,877 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [498154831] [2021-12-19 18:00:38,877 INFO L93 rtionOrderModulation]: Changing assertion order to OUTSIDE_LOOP_FIRST2 [2021-12-19 18:00:38,877 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 18:00:38,877 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 18:00:38,878 INFO L229 MonitoredProcess]: Starting monitored process 65 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 18:00:38,879 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (65)] Waiting until timeout for monitored process [2021-12-19 18:02:26,224 INFO L228 tOrderPrioritization]: Assert order OUTSIDE_LOOP_FIRST2 issued 48 check-sat command(s) [2021-12-19 18:02:26,225 INFO L229 tOrderPrioritization]: Conjunction of SSA is unsat [2021-12-19 18:02:26,315 INFO L263 TraceCheckSpWp]: Trace formula consists of 1032 conjuncts, 98 conjunts are in the unsatisfiable core [2021-12-19 18:02:26,317 INFO L286 TraceCheckSpWp]: Computing forward predicates... [2021-12-19 18:02:29,346 INFO L134 CoverageAnalysis]: Checked inductivity of 5499 backedges. 3290 proven. 2209 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 18:02:29,346 INFO L328 TraceCheckSpWp]: Computing backward predicates... [2021-12-19 18:02:29,695 INFO L134 CoverageAnalysis]: Checked inductivity of 5499 backedges. 3290 proven. 2209 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 18:02:29,695 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleZ3 [498154831] provided 0 perfect and 2 imperfect interpolant sequences [2021-12-19 18:02:29,695 INFO L186 FreeRefinementEngine]: Found 0 perfect and 3 imperfect interpolant sequences. [2021-12-19 18:02:29,695 INFO L199 FreeRefinementEngine]: Number of different interpolants: perfect sequences [] imperfect sequences [98, 98, 98] total 148 [2021-12-19 18:02:29,695 INFO L115 tionRefinementEngine]: Using interpolant automaton builder IpAbStrategyModuleStraightlineAll [598989257] [2021-12-19 18:02:29,695 INFO L85 oduleStraightlineAll]: Using 3 imperfect interpolants to construct interpolant automaton [2021-12-19 18:02:29,723 INFO L103 FreeRefinementEngine]: Using predicate unifier PredicateUnifier provided by strategy CAMEL [2021-12-19 18:02:29,724 INFO L143 InterpolantAutomaton]: Constructing interpolant automaton starting with 149 interpolants. [2021-12-19 18:02:29,725 INFO L145 InterpolantAutomaton]: CoverageRelationStatistics Valid=5003, Invalid=17049, Unknown=0, NotChecked=0, Total=22052 [2021-12-19 18:02:29,725 INFO L87 Difference]: Start difference. First operand 388 states and 438 transitions. cyclomatic complexity: 53 Second operand has 149 states, 148 states have (on average 2.635135135135135) internal successors, (390), 149 states have internal predecessors, (390), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 18:02:32,365 INFO L144 Difference]: Subtrahend was deterministic. Have not used determinization. [2021-12-19 18:02:32,365 INFO L93 Difference]: Finished difference Result 1259 states and 1454 transitions. [2021-12-19 18:02:32,365 INFO L141 InterpolantAutomaton]: Switched to read-only mode: deterministic interpolant automaton has 100 states. [2021-12-19 18:02:32,365 INFO L82 GeneralOperation]: Start removeNonLiveStates. Operand 1259 states and 1454 transitions. [2021-12-19 18:02:32,368 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 18:02:32,370 INFO L88 GeneralOperation]: Finished removeNonLiveStates. Reduced from 1259 states to 690 states and 790 transitions. [2021-12-19 18:02:32,370 INFO L87 BuchiClosureNwa]: Accepting states before buchiClosure: 593 [2021-12-19 18:02:32,370 INFO L106 BuchiClosureNwa]: Accepting states after buchiClosure: 593 [2021-12-19 18:02:32,370 INFO L73 IsDeterministic]: Start isDeterministic. Operand 690 states and 790 transitions. [2021-12-19 18:02:32,370 INFO L80 IsDeterministic]: Finished isDeterministic. Operand is deterministic. [2021-12-19 18:02:32,370 INFO L681 BuchiCegarLoop]: Abstraction has 690 states and 790 transitions. [2021-12-19 18:02:32,371 INFO L82 GeneralOperation]: Start minimizeSevpa. Operand 690 states and 790 transitions. [2021-12-19 18:02:32,373 INFO L88 GeneralOperation]: Finished minimizeSevpa. Reduced states from 690 to 396. [2021-12-19 18:02:32,373 INFO L82 GeneralOperation]: Start removeUnreachable. Operand has 396 states, 396 states have (on average 1.128787878787879) internal successors, (447), 395 states have internal predecessors, (447), 0 states have call successors, (0), 0 states have call predecessors, (0), 0 states have return successors, (0), 0 states have call predecessors, (0), 0 states have call successors, (0) [2021-12-19 18:02:32,373 INFO L88 GeneralOperation]: Finished removeUnreachable. Reduced from 396 states to 396 states and 447 transitions. [2021-12-19 18:02:32,374 INFO L704 BuchiCegarLoop]: Abstraction has 396 states and 447 transitions. [2021-12-19 18:02:32,374 INFO L587 BuchiCegarLoop]: Abstraction has 396 states and 447 transitions. [2021-12-19 18:02:32,374 INFO L425 BuchiCegarLoop]: ======== Iteration 50============ [2021-12-19 18:02:32,374 INFO L72 BuchiIsEmpty]: Start buchiIsEmpty. Operand 396 states and 447 transitions. [2021-12-19 18:02:32,374 INFO L131 ngComponentsAnalysis]: Automaton has 2 accepting balls. 12 [2021-12-19 18:02:32,374 INFO L87 BuchiIsEmpty]: Finished buchiIsEmpty Result is false [2021-12-19 18:02:32,374 INFO L119 BuchiIsEmpty]: Starting construction of run [2021-12-19 18:02:32,375 INFO L842 BuchiCegarLoop]: Counterexample stem histogram [48, 48, 48, 47, 47, 1, 1, 1, 1] [2021-12-19 18:02:32,375 INFO L843 BuchiCegarLoop]: Counterexample loop histogram [1, 1, 1] [2021-12-19 18:02:32,375 INFO L791 eck$LassoCheckResult]: Stem: 82822#ULTIMATE.startENTRY assume { :begin_inline_ULTIMATE.init } true;#NULL.base, #NULL.offset := 0, 0;assume 0 == #valid[0];assume 0 < #StackHeapBarrier;call #Ultimate.allocInit(2, 1);call write~init~int(48, 1, 0, 1);call write~init~int(0, 1, 1, 1);call #Ultimate.allocInit(18, 2); 82823#L-1 assume { :end_inline_ULTIMATE.init } true;assume { :begin_inline_main } true;havoc main_#res#1;havoc main_#t~nondet1#1, main_#t~nondet3#1, main_#t~post2#1, main_#t~mem5#1, main_#t~mem6#1, main_#t~post4#1, main_#t~mem8#1, main_#t~mem9#1, main_#t~post7#1, main_~#array~0#1.base, main_~#array~0#1.offset, main_~i~0#1, main_~num~0#1;call main_~#array~0#1.base, main_~#array~0#1.offset := #Ultimate.allocOnStack(400000);havoc main_~i~0#1;main_~num~0#1 := main_#t~nondet1#1;havoc main_#t~nondet1#1;main_~i~0#1 := 0; 82828#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82842#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82843#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82831#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82832#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82939#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82938#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82937#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82936#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82935#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82934#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82933#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82932#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82931#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82930#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82929#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82928#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82927#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82926#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82925#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82924#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82923#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82922#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82921#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82920#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82919#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82918#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82917#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82916#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82915#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82914#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82913#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82912#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82911#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82910#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82909#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82908#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82907#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82906#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82905#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82904#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82903#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82902#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82901#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82900#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82899#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82898#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82897#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82896#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82895#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82894#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82893#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82892#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82891#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82890#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82889#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82888#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82887#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82886#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82885#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82884#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82883#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82882#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82881#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82880#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82879#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82878#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82877#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82876#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82875#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82874#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82873#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82872#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82871#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82870#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82869#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82868#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82867#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82866#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82865#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82864#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82863#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82862#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82861#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82860#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82859#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82858#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82857#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82856#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82855#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82854#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82853#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82852#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82851#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82850#L27-3 assume !!(main_~i~0#1 < main_~num~0#1);call write~int(main_#t~nondet3#1, main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4);havoc main_#t~nondet3#1; 82846#L27-2 main_#t~post2#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post2#1;havoc main_#t~post2#1; 82845#L27-3 assume !(main_~i~0#1 < main_~num~0#1); 82833#L27-4 main_~i~0#1 := 0; 82834#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83213#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 82949#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 82947#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 82948#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 82952#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83212#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83209#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83207#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83206#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83203#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83201#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83200#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83197#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83195#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83194#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83191#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83189#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83188#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83185#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83183#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83182#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83179#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83177#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83176#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83173#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83171#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83170#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83167#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83165#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83164#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83161#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83159#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83158#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83155#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83153#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83152#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83149#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83147#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83146#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83143#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83141#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83140#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83137#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83135#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83134#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83131#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83129#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83128#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83125#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83123#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83122#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83119#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83117#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83116#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83113#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83111#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83110#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83107#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83105#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83104#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83101#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83099#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83098#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83095#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83093#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83092#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83089#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83087#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83086#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83083#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83081#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83080#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83077#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83075#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83074#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83071#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83069#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83068#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83065#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83063#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83062#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83059#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83057#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83056#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83053#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83051#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83050#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83047#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83045#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83044#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83041#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83039#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83038#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83035#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83033#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83032#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83029#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83027#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83026#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83023#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83021#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83020#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83017#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83015#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83014#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83011#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83009#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83008#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 83005#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 83003#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 83002#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 82999#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 82997#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 82996#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 82993#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 82991#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 82990#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 82987#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 82985#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 82984#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 82981#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 82979#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 82978#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 82975#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 82973#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 82972#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 82969#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 82967#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 82966#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 82963#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 82961#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 82960#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 82958#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 82956#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 82955#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 82839#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 82827#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 82836#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 82841#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 82944#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 82943#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 82848#L34 [2021-12-19 18:02:32,379 INFO L793 eck$LassoCheckResult]: Loop: 82848#L34 assume !(0 == (if main_#t~mem5#1 < 0 && 0 != main_#t~mem5#1 % 2 then main_#t~mem5#1 % 2 - 2 else main_#t~mem5#1 % 2));havoc main_#t~mem5#1; 82849#L32-2 main_#t~post4#1 := main_~i~0#1;main_~i~0#1 := 1 + main_#t~post4#1;havoc main_#t~post4#1; 82847#L32-3 assume !!(main_~i~0#1 < main_~num~0#1);call main_#t~mem5#1 := read~int(main_~#array~0#1.base, main_~#array~0#1.offset + 4 * main_~i~0#1, 4); 82848#L34 [2021-12-19 18:02:32,379 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 18:02:32,380 INFO L85 PathProgramCache]: Analyzing trace with hash -191745623, now seen corresponding path program 94 times [2021-12-19 18:02:32,380 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 18:02:32,380 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [191332149] [2021-12-19 18:02:32,380 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 18:02:32,380 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 18:02:32,750 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 18:02:32,750 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 18:02:33,171 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 18:02:33,186 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 18:02:33,186 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 18:02:33,186 INFO L85 PathProgramCache]: Analyzing trace with hash 69557, now seen corresponding path program 49 times [2021-12-19 18:02:33,186 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 18:02:33,187 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1004826040] [2021-12-19 18:02:33,187 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 18:02:33,187 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 18:02:33,192 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 18:02:33,192 INFO L352 TraceCheck]: Trace is feasible, we will do another trace check, this time with branch encoders. [2021-12-19 18:02:33,192 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is sat [2021-12-19 18:02:33,196 INFO L133 FreeRefinementEngine]: Strategy CAMEL found a feasible trace [2021-12-19 18:02:33,196 INFO L144 PredicateUnifier]: Initialized classic predicate unifier [2021-12-19 18:02:33,196 INFO L85 PathProgramCache]: Analyzing trace with hash 12688653, now seen corresponding path program 95 times [2021-12-19 18:02:33,196 INFO L121 FreeRefinementEngine]: Executing refinement strategy CAMEL [2021-12-19 18:02:33,196 INFO L333 FreeRefinementEngine]: Using trace check IpTcStrategyModuleSmtInterpolCraig [1973461681] [2021-12-19 18:02:33,196 INFO L95 rtionOrderModulation]: Keeping assertion order NOT_INCREMENTALLY [2021-12-19 18:02:33,196 INFO L126 SolverBuilder]: Constructing new instance of SMTInterpol with explicit timeout -1 ms and remaining time -1 ms [2021-12-19 18:02:33,240 INFO L136 AnnotateAndAsserter]: Conjunction of SSA is unsat [2021-12-19 18:02:35,462 INFO L134 CoverageAnalysis]: Checked inductivity of 5736 backedges. 3290 proven. 2446 refuted. 0 times theorem prover too weak. 0 trivial. 0 not checked. [2021-12-19 18:02:35,462 INFO L139 FreeRefinementEngine]: Strategy CAMEL found an infeasible trace [2021-12-19 18:02:35,462 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleSmtInterpolCraig [1973461681] [2021-12-19 18:02:35,462 INFO L160 FreeRefinementEngine]: IpTcStrategyModuleSmtInterpolCraig [1973461681] provided 0 perfect and 1 imperfect interpolant sequences [2021-12-19 18:02:35,462 INFO L333 FreeRefinementEngine]: Using interpolant generator IpTcStrategyModuleZ3 [458415049] [2021-12-19 18:02:35,462 INFO L93 rtionOrderModulation]: Changing assertion order to INSIDE_LOOP_FIRST1 [2021-12-19 18:02:35,463 INFO L168 SolverBuilder]: Constructing external solver with command: z3 -smt2 -in SMTLIB2_COMPLIANT=true [2021-12-19 18:02:35,463 INFO L189 MonitoredProcess]: No working directory specified, using /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 [2021-12-19 18:02:35,464 INFO L229 MonitoredProcess]: Starting monitored process 66 with /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (exit command is (exit), workingDir is null) [2021-12-19 18:02:35,464 INFO L327 MonitoredProcess]: [MP /storage/repos/ultimate/releaseScripts/default/UAutomizer-linux/z3 -smt2 -in SMTLIB2_COMPLIANT=true (66)] Waiting until timeout for monitored process Killed by 15