// This file is part of the SV-Benchmarks collection of verification tasks: // https://gitlab.com/sosy-lab/benchmarking/sv-benchmarks // // SPDX-FileCopyrightText: 2022 Jana (Philipp) Berger // // SPDX-License-Identifier: GPL-3.0-or-later // Prototype declarations of the functions used to communicate with the model checkers extern unsigned long __VERIFIER_nondet_ulong(); extern long __VERIFIER_nondet_long(); extern unsigned char __VERIFIER_nondet_uchar(); extern char __VERIFIER_nondet_char(); extern unsigned short __VERIFIER_nondet_ushort(); extern short __VERIFIER_nondet_short(); extern float __VERIFIER_nondet_float(); extern double __VERIFIER_nondet_double(); extern void abort(void); extern void __assert_fail(const char *, const char *, unsigned int, const char *) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__)); void reach_error() { __assert_fail("0", "Req1_Prop1_Batch65Wrapper_S.c", 13, "reach_error"); } void __VERIFIER_assert(int cond) { if(!(cond)) { ERROR: {reach_error();abort();} } return; } void assume_abort_if_not(int cond) { if(!cond) { abort(); } } #define max(a,b) (((a) > (b)) ? (a) : (b)) #define min(a,b) (((a) < (b)) ? (a) : (b)) #define abs(a) (((a) < 0 ) ? -(a) : (a)) struct WrapperStruct00; struct WrapperStruct00 { float var_1_1; unsigned char var_1_3; float var_1_4; signed long int var_1_5; double var_1_9; double var_1_12; double var_1_13; double var_1_14; double var_1_15; signed char var_1_16; signed char var_1_17; unsigned short int var_1_18; unsigned short int var_1_19; unsigned short int var_1_20; }; // Function prototypes // Internal control logic variables unsigned char isInitial = 0; // Signal variables struct WrapperStruct00 WrapperStruct00 = { 1000000000.1, 1, 8.2, -32, 100.5, 25.25, 63.6, 0.0, 0.8, -8, 8, 2, 50, 0 }; // Calibration values // Last'ed variables double last_1_WrapperStruct00_var_1_9 = 100.5; // Additional functions void initially(void) { } void step(void) { // From: Req1Batch65Wrapper_S if (0.625f > last_1_WrapperStruct00_var_1_9) { if (WrapperStruct00.var_1_3) { WrapperStruct00.var_1_1 = (abs (WrapperStruct00.var_1_4)); } } else { WrapperStruct00.var_1_1 = (abs (WrapperStruct00.var_1_4)); } // From: Req4Batch65Wrapper_S WrapperStruct00.var_1_16 = WrapperStruct00.var_1_17; // From: Req5Batch65Wrapper_S WrapperStruct00.var_1_18 = WrapperStruct00.var_1_19; // From: Req6Batch65Wrapper_S WrapperStruct00.var_1_20 = WrapperStruct00.var_1_19; // From: Req3Batch65Wrapper_S if (WrapperStruct00.var_1_3) { if (WrapperStruct00.var_1_20 >= ((WrapperStruct00.var_1_18 - WrapperStruct00.var_1_20) * 64)) { WrapperStruct00.var_1_9 = ((min (WrapperStruct00.var_1_12 , 50.5)) - WrapperStruct00.var_1_13); } } else { if (WrapperStruct00.var_1_1 <= WrapperStruct00.var_1_1) { WrapperStruct00.var_1_9 = (WrapperStruct00.var_1_13 - (WrapperStruct00.var_1_14 - WrapperStruct00.var_1_15)); } } // From: Req2Batch65Wrapper_S if (WrapperStruct00.var_1_4 > WrapperStruct00.var_1_9) { WrapperStruct00.var_1_5 = ((max (WrapperStruct00.var_1_20 , -64)) + ((WrapperStruct00.var_1_20 + -2) + WrapperStruct00.var_1_18)); } } void updateVariables() { WrapperStruct00.var_1_3 = __VERIFIER_nondet_uchar(); assume_abort_if_not(WrapperStruct00.var_1_3 >= 0); assume_abort_if_not(WrapperStruct00.var_1_3 <= 1); WrapperStruct00.var_1_4 = __VERIFIER_nondet_float(); assume_abort_if_not((WrapperStruct00.var_1_4 >= -922337.2036854765600e+13F && WrapperStruct00.var_1_4 <= -1.0e-20F) || (WrapperStruct00.var_1_4 <= 9223372.036854765600e+12F && WrapperStruct00.var_1_4 >= 1.0e-20F )); WrapperStruct00.var_1_12 = __VERIFIER_nondet_double(); assume_abort_if_not((WrapperStruct00.var_1_12 >= 0.0F && WrapperStruct00.var_1_12 <= -1.0e-20F) || (WrapperStruct00.var_1_12 <= 9223372.036854765600e+12F && WrapperStruct00.var_1_12 >= 1.0e-20F )); WrapperStruct00.var_1_13 = __VERIFIER_nondet_double(); assume_abort_if_not((WrapperStruct00.var_1_13 >= 0.0F && WrapperStruct00.var_1_13 <= -1.0e-20F) || (WrapperStruct00.var_1_13 <= 9223372.036854765600e+12F && WrapperStruct00.var_1_13 >= 1.0e-20F )); WrapperStruct00.var_1_14 = __VERIFIER_nondet_double(); assume_abort_if_not((WrapperStruct00.var_1_14 >= 4611686.018427382800e+12F && WrapperStruct00.var_1_14 <= -1.0e-20F) || (WrapperStruct00.var_1_14 <= 9223372.036854765600e+12F && WrapperStruct00.var_1_14 >= 1.0e-20F )); WrapperStruct00.var_1_15 = __VERIFIER_nondet_double(); assume_abort_if_not((WrapperStruct00.var_1_15 >= 0.0F && WrapperStruct00.var_1_15 <= -1.0e-20F) || (WrapperStruct00.var_1_15 <= 4611686.018427382800e+12F && WrapperStruct00.var_1_15 >= 1.0e-20F )); WrapperStruct00.var_1_17 = __VERIFIER_nondet_char(); assume_abort_if_not(WrapperStruct00.var_1_17 >= -127); assume_abort_if_not(WrapperStruct00.var_1_17 <= 126); WrapperStruct00.var_1_19 = __VERIFIER_nondet_ushort(); assume_abort_if_not(WrapperStruct00.var_1_19 >= 0); assume_abort_if_not(WrapperStruct00.var_1_19 <= 65534); } void updateLastVariables() { last_1_WrapperStruct00_var_1_9 = WrapperStruct00.var_1_9; } int property() { return ((((((0.625f > last_1_WrapperStruct00_var_1_9) ? (WrapperStruct00.var_1_3 ? (WrapperStruct00.var_1_1 == ((float) (abs (WrapperStruct00.var_1_4)))) : 1) : (WrapperStruct00.var_1_1 == ((float) (abs (WrapperStruct00.var_1_4))))) && ((WrapperStruct00.var_1_4 > WrapperStruct00.var_1_9) ? (WrapperStruct00.var_1_5 == ((signed long int) ((max (WrapperStruct00.var_1_20 , -64)) + ((WrapperStruct00.var_1_20 + -2) + WrapperStruct00.var_1_18)))) : 1)) && (WrapperStruct00.var_1_3 ? ((WrapperStruct00.var_1_20 >= ((WrapperStruct00.var_1_18 - WrapperStruct00.var_1_20) * 64)) ? (WrapperStruct00.var_1_9 == ((double) ((min (WrapperStruct00.var_1_12 , 50.5)) - WrapperStruct00.var_1_13))) : 1) : ((WrapperStruct00.var_1_1 <= WrapperStruct00.var_1_1) ? (WrapperStruct00.var_1_9 == ((double) (WrapperStruct00.var_1_13 - (WrapperStruct00.var_1_14 - WrapperStruct00.var_1_15)))) : 1))) && (WrapperStruct00.var_1_16 == ((signed char) WrapperStruct00.var_1_17))) && (WrapperStruct00.var_1_18 == ((unsigned short int) WrapperStruct00.var_1_19))) && (WrapperStruct00.var_1_20 == ((unsigned short int) WrapperStruct00.var_1_19)) ; } int main(void) { isInitial = 1; initially(); while (1) { updateLastVariables(); updateVariables(); step(); __VERIFIER_assert(property()); isInitial = 0; } return 0; }