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", "drivers--scsi--dmx3191d.ko_005.6070d81.08_1a.cil_true-unreach-call.i", 3, "reach_error"); } /* Generated by CIL v. 1.5.1 */ /* print_CIL_Input is false */ typedef signed char __s8; typedef short __s16; typedef unsigned short __u16; typedef int __s32; typedef unsigned int __u32; typedef long long __s64; typedef unsigned long long __u64; typedef unsigned char u8; typedef unsigned short u16; typedef int s32; typedef unsigned int u32; typedef long long s64; typedef unsigned long long u64; typedef unsigned short umode_t; typedef u64 dma_addr_t; typedef unsigned int __kernel_mode_t; typedef long __kernel_off_t; typedef int __kernel_pid_t; typedef unsigned int __kernel_uid_t; typedef unsigned int __kernel_gid_t; typedef unsigned long __kernel_size_t; typedef long __kernel_ssize_t; typedef long __kernel_time_t; typedef long __kernel_clock_t; typedef int __kernel_timer_t; typedef int __kernel_clockid_t; typedef long long __kernel_loff_t; typedef __kernel_uid_t __kernel_uid32_t; typedef __kernel_gid_t __kernel_gid32_t; typedef __u32 __kernel_dev_t; typedef __kernel_dev_t dev_t; typedef __kernel_mode_t mode_t; typedef __kernel_off_t off_t; typedef __kernel_pid_t pid_t; typedef __kernel_clockid_t clockid_t; typedef _Bool bool; typedef __kernel_uid32_t uid_t; typedef __kernel_gid32_t gid_t; typedef __kernel_loff_t loff_t; typedef __kernel_size_t size_t; typedef __kernel_ssize_t ssize_t; typedef __kernel_time_t time_t; typedef __s32 int32_t; typedef __u32 uint32_t; typedef unsigned long sector_t; typedef unsigned long blkcnt_t; typedef unsigned int gfp_t; typedef unsigned int fmode_t; typedef u64 phys_addr_t; typedef phys_addr_t resource_size_t; struct __anonstruct_atomic_t_6 { int volatile counter ; }; typedef struct __anonstruct_atomic_t_6 atomic_t; struct __anonstruct_atomic64_t_7 { long volatile counter ; }; typedef struct __anonstruct_atomic64_t_7 atomic64_t; struct task_struct; struct mm_struct; struct pt_regs { unsigned long r15 ; unsigned long r14 ; unsigned long r13 ; unsigned long r12 ; unsigned long bp ; unsigned long bx ; unsigned long r11 ; unsigned long r10 ; unsigned long r9 ; unsigned long r8 ; unsigned long ax ; unsigned long cx ; unsigned long dx ; unsigned long si ; unsigned long di ; unsigned long orig_ax ; unsigned long ip ; unsigned long cs ; unsigned long flags ; unsigned long sp ; unsigned long ss ; }; typedef void (*ctor_fn_t)(void); struct kernel_vm86_regs { struct pt_regs pt ; unsigned short es ; unsigned short __esh ; unsigned short ds ; unsigned short __dsh ; unsigned short fs ; unsigned short __fsh ; unsigned short gs ; unsigned short __gsh ; }; union __anonunion_ldv_1161_8 { struct pt_regs *regs ; struct kernel_vm86_regs *vm86 ; }; struct math_emu_info { long ___orig_eip ; union __anonunion_ldv_1161_8 ldv_1161 ; }; struct module; struct bug_entry { int bug_addr_disp ; int file_disp ; unsigned short line ; unsigned short flags ; }; struct completion; struct pid; typedef unsigned long pgdval_t; typedef unsigned long pgprotval_t; struct pgprot { pgprotval_t pgprot ; }; typedef struct pgprot pgprot_t; struct __anonstruct_pgd_t_11 { pgdval_t pgd ; }; typedef struct __anonstruct_pgd_t_11 pgd_t; struct page; struct file; struct seq_file; struct __anonstruct_ldv_2078_15 { unsigned int a ; unsigned int b ; }; struct __anonstruct_ldv_2093_16 { u16 limit0 ; u16 base0 ; unsigned char base1 ; unsigned char type : 4 ; unsigned char s : 1 ; unsigned char dpl : 2 ; unsigned char p : 1 ; unsigned char limit : 4 ; unsigned char avl : 1 ; unsigned char l : 1 ; unsigned char d : 1 ; unsigned char g : 1 ; unsigned char base2 ; }; union __anonunion_ldv_2094_14 { struct __anonstruct_ldv_2078_15 ldv_2078 ; struct __anonstruct_ldv_2093_16 ldv_2093 ; }; struct desc_struct { union __anonunion_ldv_2094_14 ldv_2094 ; }; struct thread_struct; struct cpumask; struct raw_spinlock; struct cpumask { unsigned long bits[64U] ; }; typedef struct cpumask cpumask_t; struct exec_domain; struct map_segment; struct exec_domain { char const *name ; void (*handler)(int , struct pt_regs * ) ; unsigned char pers_low ; unsigned char pers_high ; unsigned long *signal_map ; unsigned long *signal_invmap ; struct map_segment *err_map ; struct map_segment *socktype_map ; struct map_segment *sockopt_map ; struct map_segment *af_map ; struct module *module ; struct exec_domain *next ; }; struct i387_fsave_struct { u32 cwd ; u32 swd ; u32 twd ; u32 fip ; u32 fcs ; u32 foo ; u32 fos ; u32 st_space[20U] ; u32 status ; }; struct __anonstruct_ldv_4648_20 { u64 rip ; u64 rdp ; }; struct __anonstruct_ldv_4654_21 { u32 fip ; u32 fcs ; u32 foo ; u32 fos ; }; union __anonunion_ldv_4655_19 { struct __anonstruct_ldv_4648_20 ldv_4648 ; struct __anonstruct_ldv_4654_21 ldv_4654 ; }; union __anonunion_ldv_4664_22 { u32 padding1[12U] ; u32 sw_reserved[12U] ; }; struct i387_fxsave_struct { u16 cwd ; u16 swd ; u16 twd ; u16 fop ; union __anonunion_ldv_4655_19 ldv_4655 ; u32 mxcsr ; u32 mxcsr_mask ; u32 st_space[32U] ; u32 xmm_space[64U] ; u32 padding[12U] ; union __anonunion_ldv_4664_22 ldv_4664 ; }; struct i387_soft_struct { u32 cwd ; u32 swd ; u32 twd ; u32 fip ; u32 fcs ; u32 foo ; u32 fos ; u32 st_space[20U] ; u8 ftop ; u8 changed ; u8 lookahead ; u8 no_update ; u8 rm ; u8 alimit ; struct math_emu_info *info ; u32 entry_eip ; }; struct ymmh_struct { u32 ymmh_space[64U] ; }; struct xsave_hdr_struct { u64 xstate_bv ; u64 reserved1[2U] ; u64 reserved2[5U] ; }; struct xsave_struct { struct i387_fxsave_struct i387 ; struct xsave_hdr_struct xsave_hdr ; struct ymmh_struct ymmh ; }; union thread_xstate { struct i387_fsave_struct fsave ; struct i387_fxsave_struct fxsave ; struct i387_soft_struct soft ; struct xsave_struct xsave ; }; struct kmem_cache; struct ds_context; struct thread_struct { struct desc_struct tls_array[3U] ; unsigned long sp0 ; unsigned long sp ; unsigned long usersp ; unsigned short es ; unsigned short ds ; unsigned short fsindex ; unsigned short gsindex ; unsigned long fs ; unsigned long gs ; unsigned long debugreg0 ; unsigned long debugreg1 ; unsigned long debugreg2 ; unsigned long debugreg3 ; unsigned long debugreg6 ; unsigned long debugreg7 ; unsigned long cr2 ; unsigned long trap_no ; unsigned long error_code ; union thread_xstate *xstate ; unsigned long *io_bitmap_ptr ; unsigned long iopl ; unsigned int io_bitmap_max ; unsigned long debugctlmsr ; struct ds_context *ds_ctx ; }; struct __anonstruct_mm_segment_t_24 { unsigned long seg ; }; typedef struct __anonstruct_mm_segment_t_24 mm_segment_t; struct list_head { struct list_head *next ; struct list_head *prev ; }; struct hlist_node; struct hlist_head { struct hlist_node *first ; }; struct hlist_node { struct hlist_node *next ; struct hlist_node **pprev ; }; struct timespec; struct compat_timespec; struct __anonstruct_ldv_5142_26 { unsigned long arg0 ; unsigned long arg1 ; unsigned long arg2 ; unsigned long arg3 ; }; struct __anonstruct_futex_27 { u32 *uaddr ; u32 val ; u32 flags ; u32 bitset ; u64 time ; u32 *uaddr2 ; }; struct __anonstruct_nanosleep_28 { clockid_t index ; struct timespec *rmtp ; struct compat_timespec *compat_rmtp ; u64 expires ; }; struct pollfd; struct __anonstruct_poll_29 { struct pollfd *ufds ; int nfds ; int has_timeout ; unsigned long tv_sec ; unsigned long tv_nsec ; }; union __anonunion_ldv_5165_25 { struct __anonstruct_ldv_5142_26 ldv_5142 ; struct __anonstruct_futex_27 futex ; struct __anonstruct_nanosleep_28 nanosleep ; struct __anonstruct_poll_29 poll ; }; struct restart_block { long (*fn)(struct restart_block * ) ; union __anonunion_ldv_5165_25 ldv_5165 ; }; typedef atomic64_t atomic_long_t; struct thread_info { struct task_struct *task ; struct exec_domain *exec_domain ; __u32 flags ; __u32 status ; __u32 cpu ; int preempt_count ; mm_segment_t addr_limit ; struct restart_block restart_block ; void *sysenter_return ; int uaccess_err ; }; struct raw_spinlock { unsigned int slock ; }; typedef struct raw_spinlock raw_spinlock_t; struct __anonstruct_raw_rwlock_t_30 { unsigned int lock ; }; typedef struct __anonstruct_raw_rwlock_t_30 raw_rwlock_t; struct lockdep_map; struct stack_trace { unsigned int nr_entries ; unsigned int max_entries ; unsigned long *entries ; int skip ; }; struct lockdep_subclass_key { char __one_byte ; }; struct lock_class_key { struct lockdep_subclass_key subkeys[8U] ; }; struct lock_class { struct list_head hash_entry ; struct list_head lock_entry ; struct lockdep_subclass_key *key ; unsigned int subclass ; unsigned int dep_gen_id ; unsigned long usage_mask ; struct stack_trace usage_traces[13U] ; struct list_head locks_after ; struct list_head locks_before ; unsigned int version ; unsigned long ops ; char const *name ; int name_version ; unsigned long contention_point[4U] ; unsigned long contending_point[4U] ; }; struct lockdep_map { struct lock_class_key *key ; struct lock_class *class_cache ; char const *name ; int cpu ; unsigned long ip ; }; struct held_lock { u64 prev_chain_key ; unsigned long acquire_ip ; struct lockdep_map *instance ; struct lockdep_map *nest_lock ; u64 waittime_stamp ; u64 holdtime_stamp ; unsigned short class_idx : 13 ; unsigned char irq_context : 2 ; unsigned char trylock : 1 ; unsigned char read : 2 ; unsigned char check : 2 ; unsigned char hardirqs_off : 1 ; unsigned short references : 11 ; }; struct __anonstruct_spinlock_t_31 { raw_spinlock_t raw_lock ; unsigned int magic ; unsigned int owner_cpu ; void *owner ; struct lockdep_map dep_map ; }; typedef struct __anonstruct_spinlock_t_31 spinlock_t; struct __anonstruct_rwlock_t_32 { raw_rwlock_t raw_lock ; unsigned int magic ; unsigned int owner_cpu ; void *owner ; struct lockdep_map dep_map ; }; typedef struct __anonstruct_rwlock_t_32 rwlock_t; struct timespec { __kernel_time_t tv_sec ; long tv_nsec ; }; struct kstat { u64 ino ; dev_t dev ; umode_t mode ; unsigned int nlink ; uid_t uid ; gid_t gid ; dev_t rdev ; loff_t size ; struct timespec atime ; struct timespec mtime ; struct timespec ctime ; unsigned long blksize ; unsigned long long blocks ; }; struct __wait_queue; typedef struct __wait_queue wait_queue_t; struct __wait_queue { unsigned int flags ; void *private ; int (*func)(wait_queue_t * , unsigned int , int , void * ) ; struct list_head task_list ; }; struct __wait_queue_head { spinlock_t lock ; struct list_head task_list ; }; typedef struct __wait_queue_head wait_queue_head_t; struct __anonstruct_nodemask_t_34 { unsigned long bits[8U] ; }; typedef struct __anonstruct_nodemask_t_34 nodemask_t; struct mutex { atomic_t count ; spinlock_t wait_lock ; struct list_head wait_list ; struct thread_info *owner ; char const *name ; void *magic ; struct lockdep_map dep_map ; }; struct mutex_waiter { struct list_head list ; struct task_struct *task ; void *magic ; }; struct rw_semaphore; struct rw_semaphore { __s32 activity ; spinlock_t wait_lock ; struct list_head wait_list ; struct lockdep_map dep_map ; }; struct resource { resource_size_t start ; resource_size_t end ; char const *name ; unsigned long flags ; struct resource *parent ; struct resource *sibling ; struct resource *child ; }; struct pci_dev; struct device; union ktime { s64 tv64 ; }; typedef union ktime ktime_t; struct tvec_base; struct timer_list { struct list_head entry ; unsigned long expires ; void (*function)(unsigned long ) ; unsigned long data ; struct tvec_base *base ; void *start_site ; char start_comm[16U] ; int start_pid ; struct lockdep_map lockdep_map ; }; struct hrtimer; enum hrtimer_restart; struct workqueue_struct; struct work_struct; struct work_struct { atomic_long_t data ; struct list_head entry ; void (*func)(struct work_struct * ) ; struct lockdep_map lockdep_map ; }; struct delayed_work { struct work_struct work ; struct timer_list timer ; }; struct execute_work { struct work_struct work ; }; struct pm_message { int event ; }; typedef struct pm_message pm_message_t; struct dev_pm_ops { int (*prepare)(struct device * ) ; void (*complete)(struct device * ) ; int (*suspend)(struct device * ) ; int (*resume)(struct device * ) ; int (*freeze)(struct device * ) ; int (*thaw)(struct device * ) ; int (*poweroff)(struct device * ) ; int (*restore)(struct device * ) ; int (*suspend_noirq)(struct device * ) ; int (*resume_noirq)(struct device * ) ; int (*freeze_noirq)(struct device * ) ; int (*thaw_noirq)(struct device * ) ; int (*poweroff_noirq)(struct device * ) ; int (*restore_noirq)(struct device * ) ; int (*runtime_suspend)(struct device * ) ; int (*runtime_resume)(struct device * ) ; int (*runtime_idle)(struct device * ) ; }; enum dpm_state { DPM_INVALID = 0, DPM_ON = 1, DPM_PREPARING = 2, DPM_RESUMING = 3, DPM_SUSPENDING = 4, DPM_OFF = 5, DPM_OFF_IRQ = 6 } ; enum rpm_status { RPM_ACTIVE = 0, RPM_RESUMING = 1, RPM_SUSPENDED = 2, RPM_SUSPENDING = 3 } ; enum rpm_request { RPM_REQ_NONE = 0, RPM_REQ_IDLE = 1, RPM_REQ_SUSPEND = 2, RPM_REQ_RESUME = 3 } ; struct dev_pm_info { pm_message_t power_state ; unsigned char can_wakeup : 1 ; unsigned char should_wakeup : 1 ; enum dpm_state status ; struct list_head entry ; struct timer_list suspend_timer ; unsigned long timer_expires ; struct work_struct work ; wait_queue_head_t wait_queue ; spinlock_t lock ; atomic_t usage_count ; atomic_t child_count ; unsigned char disable_depth : 3 ; unsigned char ignore_children : 1 ; unsigned char idle_notification : 1 ; unsigned char request_pending : 1 ; unsigned char deferred_resume : 1 ; enum rpm_request request ; enum rpm_status runtime_status ; int runtime_error ; }; struct __anonstruct_mm_context_t_99 { void *ldt ; int size ; struct mutex lock ; void *vdso ; }; typedef struct __anonstruct_mm_context_t_99 mm_context_t; struct call_single_data { struct list_head list ; void (*func)(void * ) ; void *info ; u16 flags ; u16 priv ; }; struct pci_bus; struct vm_area_struct; struct key; typedef __u64 Elf64_Addr; typedef __u16 Elf64_Half; typedef __u32 Elf64_Word; typedef __u64 Elf64_Xword; struct elf64_sym { Elf64_Word st_name ; unsigned char st_info ; unsigned char st_other ; Elf64_Half st_shndx ; Elf64_Addr st_value ; Elf64_Xword st_size ; }; typedef struct elf64_sym Elf64_Sym; struct kobject; struct attribute { char const *name ; struct module *owner ; mode_t mode ; }; struct attribute_group { char const *name ; mode_t (*is_visible)(struct kobject * , struct attribute * , int ) ; struct attribute **attrs ; }; struct bin_attribute { struct attribute attr ; size_t size ; void *private ; ssize_t (*read)(struct kobject * , struct bin_attribute * , char * , loff_t , size_t ) ; ssize_t (*write)(struct kobject * , struct bin_attribute * , char * , loff_t , size_t ) ; int (*mmap)(struct kobject * , struct bin_attribute * , struct vm_area_struct * ) ; }; struct sysfs_ops { ssize_t (*show)(struct kobject * , struct attribute * , char * ) ; ssize_t (*store)(struct kobject * , struct attribute * , char const * , size_t ) ; }; struct sysfs_dirent; struct kref { atomic_t refcount ; }; struct kset; struct kobj_type; struct kobject { char const *name ; struct list_head entry ; struct kobject *parent ; struct kset *kset ; struct kobj_type *ktype ; struct sysfs_dirent *sd ; struct kref kref ; unsigned char state_initialized : 1 ; unsigned char state_in_sysfs : 1 ; unsigned char state_add_uevent_sent : 1 ; unsigned char state_remove_uevent_sent : 1 ; unsigned char uevent_suppress : 1 ; }; struct kobj_type { void (*release)(struct kobject * ) ; struct sysfs_ops *sysfs_ops ; struct attribute **default_attrs ; }; struct kobj_uevent_env { char *envp[32U] ; int envp_idx ; char buf[2048U] ; int buflen ; }; struct kset_uevent_ops { int (*filter)(struct kset * , struct kobject * ) ; char const *(*name)(struct kset * , struct kobject * ) ; int (*uevent)(struct kset * , struct kobject * , struct kobj_uevent_env * ) ; }; struct kset { struct list_head list ; spinlock_t list_lock ; struct kobject kobj ; struct kset_uevent_ops *uevent_ops ; }; struct kernel_param; struct kparam_string; struct kparam_array; union __anonunion_ldv_10172_109 { void *arg ; struct kparam_string const *str ; struct kparam_array const *arr ; }; struct kernel_param { char const *name ; u16 perm ; u16 flags ; int (*set)(char const * , struct kernel_param * ) ; int (*get)(char * , struct kernel_param * ) ; union __anonunion_ldv_10172_109 ldv_10172 ; }; struct kparam_string { unsigned int maxlen ; char *string ; }; struct kparam_array { unsigned int max ; unsigned int *num ; int (*set)(char const * , struct kernel_param * ) ; int (*get)(char * , struct kernel_param * ) ; unsigned int elemsize ; void *elem ; }; struct completion { unsigned int done ; wait_queue_head_t wait ; }; struct rcu_head { struct rcu_head *next ; void (*func)(struct rcu_head * ) ; }; struct tracepoint; struct tracepoint { char const *name ; int state ; void (*regfunc)(void) ; void (*unregfunc)(void) ; void **funcs ; }; struct kmem_cache_cpu { void **freelist ; struct page *page ; int node ; unsigned int offset ; unsigned int objsize ; unsigned int stat[18U] ; }; struct kmem_cache_node { spinlock_t list_lock ; unsigned long nr_partial ; struct list_head partial ; atomic_long_t nr_slabs ; atomic_long_t total_objects ; struct list_head full ; }; struct kmem_cache_order_objects { unsigned long x ; }; struct kmem_cache { unsigned long flags ; int size ; int objsize ; int offset ; struct kmem_cache_order_objects oo ; struct kmem_cache_node local_node ; struct kmem_cache_order_objects max ; struct kmem_cache_order_objects min ; gfp_t allocflags ; int refcount ; void (*ctor)(void * ) ; int inuse ; int align ; unsigned long min_partial ; char const *name ; struct list_head list ; struct kobject kobj ; int remote_node_defrag_ratio ; struct kmem_cache_node *node[512U] ; struct kmem_cache_cpu *cpu_slab[4096U] ; }; struct mod_arch_specific { }; struct kernel_symbol { unsigned long value ; char const *name ; }; struct module_attribute { struct attribute attr ; ssize_t (*show)(struct module_attribute * , struct module * , char * ) ; ssize_t (*store)(struct module_attribute * , struct module * , char const * , size_t ) ; void (*setup)(struct module * , char const * ) ; int (*test)(struct module * ) ; void (*free)(struct module * ) ; }; struct module_param_attrs; struct module_kobject { struct kobject kobj ; struct module *mod ; struct kobject *drivers_dir ; struct module_param_attrs *mp ; }; struct exception_table_entry; enum module_state { MODULE_STATE_LIVE = 0, MODULE_STATE_COMING = 1, MODULE_STATE_GOING = 2 } ; struct module_sect_attrs; struct module_notes_attrs; struct ftrace_event_call; struct module { enum module_state state ; struct list_head list ; char name[56U] ; struct module_kobject mkobj ; struct module_attribute *modinfo_attrs ; char const *version ; char const *srcversion ; struct kobject *holders_dir ; struct kernel_symbol const *syms ; unsigned long const *crcs ; unsigned int num_syms ; struct kernel_param *kp ; unsigned int num_kp ; unsigned int num_gpl_syms ; struct kernel_symbol const *gpl_syms ; unsigned long const *gpl_crcs ; struct kernel_symbol const *unused_syms ; unsigned long const *unused_crcs ; unsigned int num_unused_syms ; unsigned int num_unused_gpl_syms ; struct kernel_symbol const *unused_gpl_syms ; unsigned long const *unused_gpl_crcs ; struct kernel_symbol const *gpl_future_syms ; unsigned long const *gpl_future_crcs ; unsigned int num_gpl_future_syms ; unsigned int num_exentries ; struct exception_table_entry *extable ; int (*init)(void) ; void *module_init ; void *module_core ; unsigned int init_size ; unsigned int core_size ; unsigned int init_text_size ; unsigned int core_text_size ; struct mod_arch_specific arch ; unsigned int taints ; unsigned int num_bugs ; struct list_head bug_list ; struct bug_entry *bug_table ; Elf64_Sym *symtab ; Elf64_Sym *core_symtab ; unsigned int num_symtab ; unsigned int core_num_syms ; char *strtab ; char *core_strtab ; struct module_sect_attrs *sect_attrs ; struct module_notes_attrs *notes_attrs ; void *percpu ; char *args ; struct tracepoint *tracepoints ; unsigned int num_tracepoints ; char const **trace_bprintk_fmt_start ; unsigned int num_trace_bprintk_fmt ; struct ftrace_event_call *trace_events ; unsigned int num_trace_events ; unsigned long *ftrace_callsites ; unsigned int num_ftrace_callsites ; struct list_head modules_which_use_me ; struct task_struct *waiter ; void (*exit)(void) ; char *refptr ; ctor_fn_t (**ctors)(void) ; unsigned int num_ctors ; }; struct device_driver; typedef unsigned long kernel_ulong_t; struct pci_device_id { __u32 vendor ; __u32 device ; __u32 subvendor ; __u32 subdevice ; __u32 class ; __u32 class_mask ; kernel_ulong_t driver_data ; }; struct klist_node; struct klist_node { void *n_klist ; struct list_head n_node ; struct kref n_ref ; }; struct semaphore { spinlock_t lock ; unsigned int count ; struct list_head wait_list ; }; struct dma_map_ops; struct dev_archdata { void *acpi_handle ; struct dma_map_ops *dma_ops ; void *iommu ; }; struct device_private; struct driver_private; struct class; struct class_private; struct bus_type; struct bus_type_private; struct bus_attribute { struct attribute attr ; ssize_t (*show)(struct bus_type * , char * ) ; ssize_t (*store)(struct bus_type * , char const * , size_t ) ; }; struct device_attribute; struct driver_attribute; struct bus_type { char const *name ; struct bus_attribute *bus_attrs ; struct device_attribute *dev_attrs ; struct driver_attribute *drv_attrs ; int (*match)(struct device * , struct device_driver * ) ; int (*uevent)(struct device * , struct kobj_uevent_env * ) ; int (*probe)(struct device * ) ; int (*remove)(struct device * ) ; void (*shutdown)(struct device * ) ; int (*suspend)(struct device * , pm_message_t ) ; int (*resume)(struct device * ) ; struct dev_pm_ops const *pm ; struct bus_type_private *p ; }; struct device_driver { char const *name ; struct bus_type *bus ; struct module *owner ; char const *mod_name ; bool suppress_bind_attrs ; int (*probe)(struct device * ) ; int (*remove)(struct device * ) ; void (*shutdown)(struct device * ) ; int (*suspend)(struct device * , pm_message_t ) ; int (*resume)(struct device * ) ; struct attribute_group const **groups ; struct dev_pm_ops const *pm ; struct driver_private *p ; }; struct driver_attribute { struct attribute attr ; ssize_t (*show)(struct device_driver * , char * ) ; ssize_t (*store)(struct device_driver * , char const * , size_t ) ; }; struct class_attribute; struct class { char const *name ; struct module *owner ; struct class_attribute *class_attrs ; struct device_attribute *dev_attrs ; struct kobject *dev_kobj ; int (*dev_uevent)(struct device * , struct kobj_uevent_env * ) ; char *(*devnode)(struct device * , mode_t * ) ; void (*class_release)(struct class * ) ; void (*dev_release)(struct device * ) ; int (*suspend)(struct device * , pm_message_t ) ; int (*resume)(struct device * ) ; struct dev_pm_ops const *pm ; struct class_private *p ; }; struct device_type; struct class_attribute { struct attribute attr ; ssize_t (*show)(struct class * , char * ) ; ssize_t (*store)(struct class * , char const * , size_t ) ; }; struct device_type { char const *name ; struct attribute_group const **groups ; int (*uevent)(struct device * , struct kobj_uevent_env * ) ; char *(*devnode)(struct device * , mode_t * ) ; void (*release)(struct device * ) ; struct dev_pm_ops const *pm ; }; struct device_attribute { struct attribute attr ; ssize_t (*show)(struct device * , struct device_attribute * , char * ) ; ssize_t (*store)(struct device * , struct device_attribute * , char const * , size_t ) ; }; struct device_dma_parameters { unsigned int max_segment_size ; unsigned long segment_boundary_mask ; }; struct dma_coherent_mem; struct device { struct device *parent ; struct device_private *p ; struct kobject kobj ; char const *init_name ; struct device_type *type ; struct semaphore sem ; struct bus_type *bus ; struct device_driver *driver ; void *platform_data ; struct dev_pm_info power ; int numa_node ; u64 *dma_mask ; u64 coherent_dma_mask ; struct device_dma_parameters *dma_parms ; struct list_head dma_pools ; struct dma_coherent_mem *dma_mem ; struct dev_archdata archdata ; dev_t devt ; spinlock_t devres_lock ; struct list_head devres_head ; struct klist_node knode_class ; struct class *class ; struct attribute_group const **groups ; void (*release)(struct device * ) ; }; enum irqreturn { IRQ_NONE = 0, IRQ_HANDLED = 1, IRQ_WAKE_THREAD = 2 } ; typedef enum irqreturn irqreturn_t; struct hotplug_slot; struct pci_slot { struct pci_bus *bus ; struct list_head list ; struct hotplug_slot *hotplug ; unsigned char number ; struct kobject kobj ; }; typedef int pci_power_t; typedef unsigned int pci_channel_state_t; enum pci_channel_state { pci_channel_io_normal = 1, pci_channel_io_frozen = 2, pci_channel_io_perm_failure = 3 } ; typedef unsigned short pci_dev_flags_t; typedef unsigned short pci_bus_flags_t; struct pcie_link_state; struct pci_vpd; struct pci_sriov; struct pci_ats; struct proc_dir_entry; struct pci_driver; union __anonunion_ldv_12890_112 { struct pci_sriov *sriov ; struct pci_dev *physfn ; }; struct pci_dev { struct list_head bus_list ; struct pci_bus *bus ; struct pci_bus *subordinate ; void *sysdata ; struct proc_dir_entry *procent ; struct pci_slot *slot ; unsigned int devfn ; unsigned short vendor ; unsigned short device ; unsigned short subsystem_vendor ; unsigned short subsystem_device ; unsigned int class ; u8 revision ; u8 hdr_type ; u8 pcie_type ; u8 rom_base_reg ; u8 pin ; struct pci_driver *driver ; u64 dma_mask ; struct device_dma_parameters dma_parms ; pci_power_t current_state ; int pm_cap ; unsigned char pme_support : 5 ; unsigned char d1_support : 1 ; unsigned char d2_support : 1 ; unsigned char no_d1d2 : 1 ; unsigned char wakeup_prepared : 1 ; struct pcie_link_state *link_state ; pci_channel_state_t error_state ; struct device dev ; int cfg_size ; unsigned int irq ; struct resource resource[18U] ; unsigned char transparent : 1 ; unsigned char multifunction : 1 ; unsigned char is_added : 1 ; unsigned char is_busmaster : 1 ; unsigned char no_msi : 1 ; unsigned char block_ucfg_access : 1 ; unsigned char broken_parity_status : 1 ; unsigned char irq_reroute_variant : 2 ; unsigned char msi_enabled : 1 ; unsigned char msix_enabled : 1 ; unsigned char ari_enabled : 1 ; unsigned char is_managed : 1 ; unsigned char is_pcie : 1 ; unsigned char needs_freset : 1 ; unsigned char state_saved : 1 ; unsigned char is_physfn : 1 ; unsigned char is_virtfn : 1 ; unsigned char reset_fn : 1 ; unsigned char is_hotplug_bridge : 1 ; pci_dev_flags_t dev_flags ; atomic_t enable_cnt ; u32 saved_config_space[16U] ; struct hlist_head saved_cap_space ; struct bin_attribute *rom_attr ; int rom_attr_enabled ; struct bin_attribute *res_attr[18U] ; struct bin_attribute *res_attr_wc[18U] ; struct list_head msi_list ; struct pci_vpd *vpd ; union __anonunion_ldv_12890_112 ldv_12890 ; struct pci_ats *ats ; }; struct pci_ops; struct pci_bus { struct list_head node ; struct pci_bus *parent ; struct list_head children ; struct list_head devices ; struct pci_dev *self ; struct list_head slots ; struct resource *resource[16U] ; struct pci_ops *ops ; void *sysdata ; struct proc_dir_entry *procdir ; unsigned char number ; unsigned char primary ; unsigned char secondary ; unsigned char subordinate ; char name[48U] ; unsigned short bridge_ctl ; pci_bus_flags_t bus_flags ; struct device *bridge ; struct device dev ; struct bin_attribute *legacy_io ; struct bin_attribute *legacy_mem ; unsigned char is_added : 1 ; }; struct pci_ops { int (*read)(struct pci_bus * , unsigned int , int , int , u32 * ) ; int (*write)(struct pci_bus * , unsigned int , int , int , u32 ) ; }; struct pci_dynids { spinlock_t lock ; struct list_head list ; }; typedef unsigned int pci_ers_result_t; struct pci_error_handlers { pci_ers_result_t (*error_detected)(struct pci_dev * , enum pci_channel_state ) ; pci_ers_result_t (*mmio_enabled)(struct pci_dev * ) ; pci_ers_result_t (*link_reset)(struct pci_dev * ) ; pci_ers_result_t (*slot_reset)(struct pci_dev * ) ; void (*resume)(struct pci_dev * ) ; }; struct pci_driver { struct list_head node ; char *name ; struct pci_device_id const *id_table ; int (*probe)(struct pci_dev * , struct pci_device_id const * ) ; void (*remove)(struct pci_dev * ) ; int (*suspend)(struct pci_dev * , pm_message_t ) ; int (*suspend_late)(struct pci_dev * , pm_message_t ) ; int (*resume_early)(struct pci_dev * ) ; int (*resume)(struct pci_dev * ) ; void (*shutdown)(struct pci_dev * ) ; struct pci_error_handlers *err_handler ; struct device_driver driver ; struct pci_dynids dynids ; }; struct scatterlist { unsigned long sg_magic ; unsigned long page_link ; unsigned int offset ; unsigned int length ; dma_addr_t dma_address ; unsigned int dma_length ; }; struct rb_node { unsigned long rb_parent_color ; struct rb_node *rb_right ; struct rb_node *rb_left ; }; struct rb_root { struct rb_node *rb_node ; }; struct prio_tree_node; struct raw_prio_tree_node { struct prio_tree_node *left ; struct prio_tree_node *right ; struct prio_tree_node *parent ; }; struct prio_tree_node { struct prio_tree_node *left ; struct prio_tree_node *right ; struct prio_tree_node *parent ; unsigned long start ; unsigned long last ; }; struct prio_tree_root { struct prio_tree_node *prio_tree_node ; unsigned short index_bits ; unsigned short raw ; }; struct address_space; typedef atomic_long_t mm_counter_t; struct __anonstruct_ldv_13658_114 { u16 inuse ; u16 objects ; }; union __anonunion_ldv_13659_113 { atomic_t _mapcount ; struct __anonstruct_ldv_13658_114 ldv_13658 ; }; struct __anonstruct_ldv_13664_116 { unsigned long private ; struct address_space *mapping ; }; union __anonunion_ldv_13668_115 { struct __anonstruct_ldv_13664_116 ldv_13664 ; spinlock_t ptl ; struct kmem_cache *slab ; struct page *first_page ; }; union __anonunion_ldv_13672_117 { unsigned long index ; void *freelist ; }; struct page { unsigned long flags ; atomic_t _count ; union __anonunion_ldv_13659_113 ldv_13659 ; union __anonunion_ldv_13668_115 ldv_13668 ; union __anonunion_ldv_13672_117 ldv_13672 ; struct list_head lru ; }; struct __anonstruct_vm_set_119 { struct list_head list ; void *parent ; struct vm_area_struct *head ; }; union __anonunion_shared_118 { struct __anonstruct_vm_set_119 vm_set ; struct raw_prio_tree_node prio_tree_node ; }; struct anon_vma; struct vm_operations_struct; struct mempolicy; struct vm_area_struct { struct mm_struct *vm_mm ; unsigned long vm_start ; unsigned long vm_end ; struct vm_area_struct *vm_next ; pgprot_t vm_page_prot ; unsigned long vm_flags ; struct rb_node vm_rb ; union __anonunion_shared_118 shared ; struct list_head anon_vma_node ; struct anon_vma *anon_vma ; struct vm_operations_struct const *vm_ops ; unsigned long vm_pgoff ; struct file *vm_file ; void *vm_private_data ; unsigned long vm_truncate_count ; struct mempolicy *vm_policy ; }; struct core_thread { struct task_struct *task ; struct core_thread *next ; }; struct core_state { atomic_t nr_threads ; struct core_thread dumper ; struct completion startup ; }; struct linux_binfmt; struct mmu_notifier_mm; struct mm_struct { struct vm_area_struct *mmap ; struct rb_root mm_rb ; struct vm_area_struct *mmap_cache ; unsigned long (*get_unmapped_area)(struct file * , unsigned long , unsigned long , unsigned long , unsigned long ) ; void (*unmap_area)(struct mm_struct * , unsigned long ) ; unsigned long mmap_base ; unsigned long task_size ; unsigned long cached_hole_size ; unsigned long free_area_cache ; pgd_t *pgd ; atomic_t mm_users ; atomic_t mm_count ; int map_count ; struct rw_semaphore mmap_sem ; spinlock_t page_table_lock ; struct list_head mmlist ; mm_counter_t _file_rss ; mm_counter_t _anon_rss ; unsigned long hiwater_rss ; unsigned long hiwater_vm ; unsigned long total_vm ; unsigned long locked_vm ; unsigned long shared_vm ; unsigned long exec_vm ; unsigned long stack_vm ; unsigned long reserved_vm ; unsigned long def_flags ; unsigned long nr_ptes ; unsigned long start_code ; unsigned long end_code ; unsigned long start_data ; unsigned long end_data ; unsigned long start_brk ; unsigned long brk ; unsigned long start_stack ; unsigned long arg_start ; unsigned long arg_end ; unsigned long env_start ; unsigned long env_end ; unsigned long saved_auxv[44U] ; struct linux_binfmt *binfmt ; cpumask_t cpu_vm_mask ; mm_context_t context ; unsigned int faultstamp ; unsigned int token_priority ; unsigned int last_interval ; unsigned long flags ; struct core_state *core_state ; spinlock_t ioctx_lock ; struct hlist_head ioctx_list ; struct task_struct *owner ; struct file *exe_file ; unsigned long num_exe_file_vmas ; struct mmu_notifier_mm *mmu_notifier_mm ; }; struct file_ra_state; struct user_struct; struct writeback_control; struct rlimit; struct vm_fault { unsigned int flags ; unsigned long pgoff ; void *virtual_address ; struct page *page ; }; struct vm_operations_struct { void (*open)(struct vm_area_struct * ) ; void (*close)(struct vm_area_struct * ) ; int (*fault)(struct vm_area_struct * , struct vm_fault * ) ; int (*page_mkwrite)(struct vm_area_struct * , struct vm_fault * ) ; int (*access)(struct vm_area_struct * , unsigned long , void * , int , int ) ; int (*set_policy)(struct vm_area_struct * , struct mempolicy * ) ; struct mempolicy *(*get_policy)(struct vm_area_struct * , unsigned long ) ; int (*migrate)(struct vm_area_struct * , nodemask_t const * , nodemask_t const * , unsigned long ) ; }; struct inode; struct dma_attrs { unsigned long flags[1U] ; }; struct sg_table { struct scatterlist *sgl ; unsigned int nents ; unsigned int orig_nents ; }; enum dma_data_direction { DMA_BIDIRECTIONAL = 0, DMA_TO_DEVICE = 1, DMA_FROM_DEVICE = 2, DMA_NONE = 3 } ; struct dma_map_ops { void *(*alloc_coherent)(struct device * , size_t , dma_addr_t * , gfp_t ) ; void (*free_coherent)(struct device * , size_t , void * , dma_addr_t ) ; dma_addr_t (*map_page)(struct device * , struct page * , unsigned long , size_t , enum dma_data_direction , struct dma_attrs * ) ; void (*unmap_page)(struct device * , dma_addr_t , size_t , enum dma_data_direction , struct dma_attrs * ) ; int (*map_sg)(struct device * , struct scatterlist * , int , enum dma_data_direction , struct dma_attrs * ) ; void (*unmap_sg)(struct device * , struct scatterlist * , int , enum dma_data_direction , struct dma_attrs * ) ; void (*sync_single_for_cpu)(struct device * , dma_addr_t , size_t , enum dma_data_direction ) ; void (*sync_single_for_device)(struct device * , dma_addr_t , size_t , enum dma_data_direction ) ; void (*sync_single_range_for_cpu)(struct device * , dma_addr_t , unsigned long , size_t , enum dma_data_direction ) ; void (*sync_single_range_for_device)(struct device * , dma_addr_t , unsigned long , size_t , enum dma_data_direction ) ; void (*sync_sg_for_cpu)(struct device * , struct scatterlist * , int , enum dma_data_direction ) ; void (*sync_sg_for_device)(struct device * , struct scatterlist * , int , enum dma_data_direction ) ; int (*mapping_error)(struct device * , dma_addr_t ) ; int (*dma_supported)(struct device * , u64 ) ; int (*set_dma_mask)(struct device * , u64 ) ; int is_phys ; }; struct timer_rand_state; struct irqaction; struct hrtimer_clock_base; struct hrtimer_cpu_base; enum hrtimer_restart { HRTIMER_NORESTART = 0, HRTIMER_RESTART = 1 } ; struct hrtimer { struct rb_node node ; ktime_t _expires ; ktime_t _softexpires ; enum hrtimer_restart (*function)(struct hrtimer * ) ; struct hrtimer_clock_base *base ; unsigned long state ; int start_pid ; void *start_site ; char start_comm[16U] ; }; struct hrtimer_clock_base { struct hrtimer_cpu_base *cpu_base ; clockid_t index ; struct rb_root active ; struct rb_node *first ; ktime_t resolution ; ktime_t (*get_time)(void) ; ktime_t softirq_time ; ktime_t offset ; }; struct hrtimer_cpu_base { spinlock_t lock ; struct hrtimer_clock_base clock_base[2U] ; ktime_t expires_next ; int hres_active ; unsigned long nr_events ; }; struct irqaction { irqreturn_t (*handler)(int , void * ) ; unsigned long flags ; char const *name ; void *dev_id ; struct irqaction *next ; int irq ; struct proc_dir_entry *dir ; irqreturn_t (*thread_fn)(int , void * ) ; struct task_struct *thread ; unsigned long thread_flags ; }; struct scsi_cmnd; struct request_queue; struct block_device; struct scsi_device; struct scsi_target; struct Scsi_Host; struct scsi_host_cmd_pool; struct scsi_transport_template; enum blk_eh_timer_return; struct scsi_host_template { struct module *module ; char const *name ; int (*detect)(struct scsi_host_template * ) ; int (*release)(struct Scsi_Host * ) ; char const *(*info)(struct Scsi_Host * ) ; int (*ioctl)(struct scsi_device * , int , void * ) ; int (*compat_ioctl)(struct scsi_device * , int , void * ) ; int (*queuecommand)(struct scsi_cmnd * , void (*)(struct scsi_cmnd * ) ) ; int (*transfer_response)(struct scsi_cmnd * , void (*)(struct scsi_cmnd * ) ) ; int (*eh_abort_handler)(struct scsi_cmnd * ) ; int (*eh_device_reset_handler)(struct scsi_cmnd * ) ; int (*eh_target_reset_handler)(struct scsi_cmnd * ) ; int (*eh_bus_reset_handler)(struct scsi_cmnd * ) ; int (*eh_host_reset_handler)(struct scsi_cmnd * ) ; int (*slave_alloc)(struct scsi_device * ) ; int (*slave_configure)(struct scsi_device * ) ; void (*slave_destroy)(struct scsi_device * ) ; int (*target_alloc)(struct scsi_target * ) ; void (*target_destroy)(struct scsi_target * ) ; int (*scan_finished)(struct Scsi_Host * , unsigned long ) ; void (*scan_start)(struct Scsi_Host * ) ; int (*change_queue_depth)(struct scsi_device * , int ) ; int (*change_queue_type)(struct scsi_device * , int ) ; int (*bios_param)(struct scsi_device * , struct block_device * , sector_t , int * ) ; int (*proc_info)(struct Scsi_Host * , char * , char ** , off_t , int , int ) ; enum blk_eh_timer_return (*eh_timed_out)(struct scsi_cmnd * ) ; char const *proc_name ; struct proc_dir_entry *proc_dir ; int can_queue ; int this_id ; unsigned short sg_tablesize ; unsigned short max_sectors ; unsigned long dma_boundary ; short cmd_per_lun ; unsigned char present ; unsigned char supported_mode : 2 ; unsigned char unchecked_isa_dma : 1 ; unsigned char use_clustering : 1 ; unsigned char emulated : 1 ; unsigned char skip_settle_delay : 1 ; unsigned char ordered_tag : 1 ; unsigned int max_host_blocked ; struct device_attribute **shost_attrs ; struct device_attribute **sdev_attrs ; struct list_head legacy_hosts ; u64 vendor_id ; }; enum scsi_host_state { SHOST_CREATED = 1, SHOST_RUNNING = 2, SHOST_CANCEL = 3, SHOST_DEL = 4, SHOST_RECOVERY = 5, SHOST_CANCEL_RECOVERY = 6, SHOST_DEL_RECOVERY = 7 } ; struct blk_queue_tag; struct Scsi_Host { struct list_head __devices ; struct list_head __targets ; struct scsi_host_cmd_pool *cmd_pool ; spinlock_t free_list_lock ; struct list_head free_list ; struct list_head starved_list ; spinlock_t default_lock ; spinlock_t *host_lock ; struct mutex scan_mutex ; struct list_head eh_cmd_q ; struct task_struct *ehandler ; struct completion *eh_action ; wait_queue_head_t host_wait ; struct scsi_host_template *hostt ; struct scsi_transport_template *transportt ; struct blk_queue_tag *bqt ; unsigned int host_busy ; unsigned int host_failed ; unsigned int host_eh_scheduled ; unsigned int host_no ; int resetting ; unsigned long last_reset ; unsigned int max_id ; unsigned int max_lun ; unsigned int max_channel ; unsigned int unique_id ; unsigned short max_cmd_len ; int this_id ; int can_queue ; short cmd_per_lun ; unsigned short sg_tablesize ; unsigned short max_sectors ; unsigned long dma_boundary ; unsigned long cmd_serial_number ; unsigned char active_mode : 2 ; unsigned char unchecked_isa_dma : 1 ; unsigned char use_clustering : 1 ; unsigned char use_blk_tcq : 1 ; unsigned char host_self_blocked : 1 ; unsigned char reverse_ordering : 1 ; unsigned char ordered_tag : 1 ; unsigned char tmf_in_progress : 1 ; unsigned char async_scan : 1 ; char work_q_name[20U] ; struct workqueue_struct *work_q ; unsigned int host_blocked ; unsigned int max_host_blocked ; unsigned int prot_capabilities ; unsigned char prot_guard_type ; struct request_queue *uspace_req_q ; unsigned long base ; unsigned long io_port ; unsigned char n_io_port ; unsigned char dma_channel ; unsigned int irq ; enum scsi_host_state shost_state ; struct device shost_gendev ; struct device shost_dev ; struct list_head sht_legacy_list ; void *shost_data ; unsigned long hostdata[0U] ; }; struct kernel_cap_struct { __u32 cap[2U] ; }; typedef struct kernel_cap_struct kernel_cap_t; struct dentry; typedef unsigned long cputime_t; struct sem_undo_list; struct sem_undo_list { atomic_t refcnt ; spinlock_t lock ; struct list_head list_proc ; }; struct sysv_sem { struct sem_undo_list *undo_list ; }; struct siginfo; struct __anonstruct_sigset_t_122 { unsigned long sig[1U] ; }; typedef struct __anonstruct_sigset_t_122 sigset_t; typedef void __signalfn_t(int ); typedef __signalfn_t *__sighandler_t; typedef void __restorefn_t(void); typedef __restorefn_t *__sigrestore_t; struct sigaction { __sighandler_t sa_handler ; unsigned long sa_flags ; __sigrestore_t sa_restorer ; sigset_t sa_mask ; }; struct k_sigaction { struct sigaction sa ; }; union sigval { int sival_int ; void *sival_ptr ; }; typedef union sigval sigval_t; struct __anonstruct__kill_124 { __kernel_pid_t _pid ; __kernel_uid32_t _uid ; }; struct __anonstruct__timer_125 { __kernel_timer_t _tid ; int _overrun ; char _pad[0U] ; sigval_t _sigval ; int _sys_private ; }; struct __anonstruct__rt_126 { __kernel_pid_t _pid ; __kernel_uid32_t _uid ; sigval_t _sigval ; }; struct __anonstruct__sigchld_127 { __kernel_pid_t _pid ; __kernel_uid32_t _uid ; int _status ; __kernel_clock_t _utime ; __kernel_clock_t _stime ; }; struct __anonstruct__sigfault_128 { void *_addr ; short _addr_lsb ; }; struct __anonstruct__sigpoll_129 { long _band ; int _fd ; }; union __anonunion__sifields_123 { int _pad[28U] ; struct __anonstruct__kill_124 _kill ; struct __anonstruct__timer_125 _timer ; struct __anonstruct__rt_126 _rt ; struct __anonstruct__sigchld_127 _sigchld ; struct __anonstruct__sigfault_128 _sigfault ; struct __anonstruct__sigpoll_129 _sigpoll ; }; struct siginfo { int si_signo ; int si_errno ; int si_code ; union __anonunion__sifields_123 _sifields ; }; typedef struct siginfo siginfo_t; struct sigpending { struct list_head list ; sigset_t signal ; }; struct vfsmount; struct path { struct vfsmount *mnt ; struct dentry *dentry ; }; enum pid_type { PIDTYPE_PID = 0, PIDTYPE_PGID = 1, PIDTYPE_SID = 2, PIDTYPE_MAX = 3 } ; struct pid_namespace; struct upid { int nr ; struct pid_namespace *ns ; struct hlist_node pid_chain ; }; struct pid { atomic_t count ; unsigned int level ; struct hlist_head tasks[3U] ; struct rcu_head rcu ; struct upid numbers[1U] ; }; struct pid_link { struct hlist_node node ; struct pid *pid ; }; struct percpu_counter { spinlock_t lock ; s64 count ; struct list_head list ; s32 *counters ; }; struct prop_local_percpu { struct percpu_counter events ; int shift ; unsigned long period ; spinlock_t lock ; }; struct prop_local_single { unsigned long events ; unsigned long period ; int shift ; spinlock_t lock ; }; struct __anonstruct_seccomp_t_132 { int mode ; }; typedef struct __anonstruct_seccomp_t_132 seccomp_t; struct plist_head { struct list_head prio_list ; struct list_head node_list ; spinlock_t *lock ; }; struct plist_node { int prio ; struct plist_head plist ; }; struct rt_mutex_waiter; struct rlimit { unsigned long rlim_cur ; unsigned long rlim_max ; }; struct task_io_accounting { u64 rchar ; u64 wchar ; u64 syscr ; u64 syscw ; u64 read_bytes ; u64 write_bytes ; u64 cancelled_write_bytes ; }; struct latency_record { unsigned long backtrace[12U] ; unsigned int count ; unsigned long time ; unsigned long max ; }; struct nsproxy; typedef int32_t key_serial_t; typedef uint32_t key_perm_t; struct signal_struct; struct cred; struct key_type; struct keyring_list; struct key_user; union __anonunion_ldv_19606_133 { time_t expiry ; time_t revoked_at ; }; union __anonunion_type_data_134 { struct list_head link ; unsigned long x[2U] ; void *p[2U] ; }; union __anonunion_payload_135 { unsigned long value ; void *data ; struct keyring_list *subscriptions ; }; struct key { atomic_t usage ; key_serial_t serial ; struct rb_node serial_node ; struct key_type *type ; struct rw_semaphore sem ; struct key_user *user ; void *security ; union __anonunion_ldv_19606_133 ldv_19606 ; uid_t uid ; gid_t gid ; key_perm_t perm ; unsigned short quotalen ; unsigned short datalen ; unsigned long flags ; char *description ; union __anonunion_type_data_134 type_data ; union __anonunion_payload_135 payload ; }; struct audit_context; struct group_info { atomic_t usage ; int ngroups ; int nblocks ; gid_t small_block[32U] ; gid_t *blocks[0U] ; }; struct thread_group_cred { atomic_t usage ; pid_t tgid ; spinlock_t lock ; struct key *session_keyring ; struct key *process_keyring ; struct rcu_head rcu ; }; struct cred { atomic_t usage ; atomic_t subscribers ; void *put_addr ; unsigned int magic ; uid_t uid ; gid_t gid ; uid_t suid ; gid_t sgid ; uid_t euid ; gid_t egid ; uid_t fsuid ; gid_t fsgid ; unsigned int securebits ; kernel_cap_t cap_inheritable ; kernel_cap_t cap_permitted ; kernel_cap_t cap_effective ; kernel_cap_t cap_bset ; unsigned char jit_keyring ; struct key *thread_keyring ; struct key *request_key_auth ; struct thread_group_cred *tgcred ; void *security ; struct user_struct *user ; struct group_info *group_info ; struct rcu_head rcu ; }; struct futex_pi_state; struct robust_list_head; struct bio; struct fs_struct; struct bts_context; struct perf_event_context; struct cfs_rq; struct task_group; struct user_namespace; struct io_event { __u64 data ; __u64 obj ; __s64 res ; __s64 res2 ; }; struct iovec { void *iov_base ; __kernel_size_t iov_len ; }; struct kioctx; union __anonunion_ki_obj_136 { void *user ; struct task_struct *tsk ; }; struct eventfd_ctx; struct kiocb { struct list_head ki_run_list ; unsigned long ki_flags ; int ki_users ; unsigned int ki_key ; struct file *ki_filp ; struct kioctx *ki_ctx ; int (*ki_cancel)(struct kiocb * , struct io_event * ) ; ssize_t (*ki_retry)(struct kiocb * ) ; void (*ki_dtor)(struct kiocb * ) ; union __anonunion_ki_obj_136 ki_obj ; __u64 ki_user_data ; wait_queue_t ki_wait ; loff_t ki_pos ; void *private ; unsigned short ki_opcode ; size_t ki_nbytes ; char *ki_buf ; size_t ki_left ; struct iovec ki_inline_vec ; struct iovec *ki_iovec ; unsigned long ki_nr_segs ; unsigned long ki_cur_seg ; struct list_head ki_list ; struct eventfd_ctx *ki_eventfd ; }; struct aio_ring_info { unsigned long mmap_base ; unsigned long mmap_size ; struct page **ring_pages ; spinlock_t ring_lock ; long nr_pages ; unsigned int nr ; unsigned int tail ; struct page *internal_pages[8U] ; }; struct kioctx { atomic_t users ; int dead ; struct mm_struct *mm ; unsigned long user_id ; struct hlist_node list ; wait_queue_head_t wait ; spinlock_t ctx_lock ; int reqs_active ; struct list_head active_reqs ; struct list_head run_list ; unsigned int max_reqs ; struct aio_ring_info ring_info ; struct delayed_work wq ; struct rcu_head rcu_head ; }; struct sighand_struct { atomic_t count ; struct k_sigaction action[64U] ; spinlock_t siglock ; wait_queue_head_t signalfd_wqh ; }; struct pacct_struct { int ac_flag ; long ac_exitcode ; unsigned long ac_mem ; cputime_t ac_utime ; cputime_t ac_stime ; unsigned long ac_minflt ; unsigned long ac_majflt ; }; struct cpu_itimer { cputime_t expires ; cputime_t incr ; u32 error ; u32 incr_error ; }; struct task_cputime { cputime_t utime ; cputime_t stime ; unsigned long long sum_exec_runtime ; }; struct thread_group_cputimer { struct task_cputime cputime ; int running ; spinlock_t lock ; }; struct tty_struct; struct taskstats; struct tty_audit_buf; struct signal_struct { atomic_t count ; atomic_t live ; wait_queue_head_t wait_chldexit ; struct task_struct *curr_target ; struct sigpending shared_pending ; int group_exit_code ; int notify_count ; struct task_struct *group_exit_task ; int group_stop_count ; unsigned int flags ; struct list_head posix_timers ; struct hrtimer real_timer ; struct pid *leader_pid ; ktime_t it_real_incr ; struct cpu_itimer it[2U] ; struct thread_group_cputimer cputimer ; struct task_cputime cputime_expires ; struct list_head cpu_timers[3U] ; struct pid *tty_old_pgrp ; int leader ; struct tty_struct *tty ; cputime_t utime ; cputime_t stime ; cputime_t cutime ; cputime_t cstime ; cputime_t gtime ; cputime_t cgtime ; unsigned long nvcsw ; unsigned long nivcsw ; unsigned long cnvcsw ; unsigned long cnivcsw ; unsigned long min_flt ; unsigned long maj_flt ; unsigned long cmin_flt ; unsigned long cmaj_flt ; unsigned long inblock ; unsigned long oublock ; unsigned long cinblock ; unsigned long coublock ; unsigned long maxrss ; unsigned long cmaxrss ; struct task_io_accounting ioac ; unsigned long long sum_sched_runtime ; struct rlimit rlim[16U] ; struct pacct_struct pacct ; struct taskstats *stats ; unsigned int audit_tty ; struct tty_audit_buf *tty_audit_buf ; int oom_adj ; }; struct user_struct { atomic_t __count ; atomic_t processes ; atomic_t files ; atomic_t sigpending ; atomic_t inotify_watches ; atomic_t inotify_devs ; atomic_t epoll_watches ; unsigned long mq_bytes ; unsigned long locked_shm ; struct key *uid_keyring ; struct key *session_keyring ; struct hlist_node uidhash_node ; uid_t uid ; struct user_namespace *user_ns ; struct task_group *tg ; struct kobject kobj ; struct delayed_work work ; atomic_long_t locked_vm ; }; struct backing_dev_info; struct reclaim_state; struct sched_info { unsigned long pcount ; unsigned long long run_delay ; unsigned long long last_arrival ; unsigned long long last_queued ; unsigned int bkl_count ; }; struct task_delay_info { spinlock_t lock ; unsigned int flags ; struct timespec blkio_start ; struct timespec blkio_end ; u64 blkio_delay ; u64 swapin_delay ; u32 blkio_count ; u32 swapin_count ; struct timespec freepages_start ; struct timespec freepages_end ; u64 freepages_delay ; u32 freepages_count ; }; enum cpu_idle_type { CPU_IDLE = 0, CPU_NOT_IDLE = 1, CPU_NEWLY_IDLE = 2, CPU_MAX_IDLE_TYPES = 3 } ; struct sched_group { struct sched_group *next ; unsigned int cpu_power ; unsigned long cpumask[0U] ; }; enum sched_domain_level { SD_LV_NONE = 0, SD_LV_SIBLING = 1, SD_LV_MC = 2, SD_LV_CPU = 3, SD_LV_NODE = 4, SD_LV_ALLNODES = 5, SD_LV_MAX = 6 } ; struct sched_domain { struct sched_domain *parent ; struct sched_domain *child ; struct sched_group *groups ; unsigned long min_interval ; unsigned long max_interval ; unsigned int busy_factor ; unsigned int imbalance_pct ; unsigned int cache_nice_tries ; unsigned int busy_idx ; unsigned int idle_idx ; unsigned int newidle_idx ; unsigned int wake_idx ; unsigned int forkexec_idx ; unsigned int smt_gain ; int flags ; enum sched_domain_level level ; unsigned long last_balance ; unsigned int balance_interval ; unsigned int nr_balance_failed ; u64 last_update ; unsigned int lb_count[3U] ; unsigned int lb_failed[3U] ; unsigned int lb_balanced[3U] ; unsigned int lb_imbalance[3U] ; unsigned int lb_gained[3U] ; unsigned int lb_hot_gained[3U] ; unsigned int lb_nobusyg[3U] ; unsigned int lb_nobusyq[3U] ; unsigned int alb_count ; unsigned int alb_failed ; unsigned int alb_pushed ; unsigned int sbe_count ; unsigned int sbe_balanced ; unsigned int sbe_pushed ; unsigned int sbf_count ; unsigned int sbf_balanced ; unsigned int sbf_pushed ; unsigned int ttwu_wake_remote ; unsigned int ttwu_move_affine ; unsigned int ttwu_move_balance ; char *name ; unsigned long span[0U] ; }; struct io_context; struct pipe_inode_info; struct rq; struct sched_class { struct sched_class const *next ; void (*enqueue_task)(struct rq * , struct task_struct * , int ) ; void (*dequeue_task)(struct rq * , struct task_struct * , int ) ; void (*yield_task)(struct rq * ) ; void (*check_preempt_curr)(struct rq * , struct task_struct * , int ) ; struct task_struct *(*pick_next_task)(struct rq * ) ; void (*put_prev_task)(struct rq * , struct task_struct * ) ; int (*select_task_rq)(struct task_struct * , int , int ) ; unsigned long (*load_balance)(struct rq * , int , struct rq * , unsigned long , struct sched_domain * , enum cpu_idle_type , int * , int * ) ; int (*move_one_task)(struct rq * , int , struct rq * , struct sched_domain * , enum cpu_idle_type ) ; void (*pre_schedule)(struct rq * , struct task_struct * ) ; void (*post_schedule)(struct rq * ) ; void (*task_wake_up)(struct rq * , struct task_struct * ) ; void (*set_cpus_allowed)(struct task_struct * , struct cpumask const * ) ; void (*rq_online)(struct rq * ) ; void (*rq_offline)(struct rq * ) ; void (*set_curr_task)(struct rq * ) ; void (*task_tick)(struct rq * , struct task_struct * , int ) ; void (*task_new)(struct rq * , struct task_struct * ) ; void (*switched_from)(struct rq * , struct task_struct * , int ) ; void (*switched_to)(struct rq * , struct task_struct * , int ) ; void (*prio_changed)(struct rq * , struct task_struct * , int , int ) ; unsigned int (*get_rr_interval)(struct task_struct * ) ; void (*moved_group)(struct task_struct * ) ; }; struct load_weight { unsigned long weight ; unsigned long inv_weight ; }; struct sched_entity { struct load_weight load ; struct rb_node run_node ; struct list_head group_node ; unsigned int on_rq ; u64 exec_start ; u64 sum_exec_runtime ; u64 vruntime ; u64 prev_sum_exec_runtime ; u64 last_wakeup ; u64 avg_overlap ; u64 nr_migrations ; u64 start_runtime ; u64 avg_wakeup ; u64 avg_running ; u64 wait_start ; u64 wait_max ; u64 wait_count ; u64 wait_sum ; u64 iowait_count ; u64 iowait_sum ; u64 sleep_start ; u64 sleep_max ; s64 sum_sleep_runtime ; u64 block_start ; u64 block_max ; u64 exec_max ; u64 slice_max ; u64 nr_migrations_cold ; u64 nr_failed_migrations_affine ; u64 nr_failed_migrations_running ; u64 nr_failed_migrations_hot ; u64 nr_forced_migrations ; u64 nr_forced2_migrations ; u64 nr_wakeups ; u64 nr_wakeups_sync ; u64 nr_wakeups_migrate ; u64 nr_wakeups_local ; u64 nr_wakeups_remote ; u64 nr_wakeups_affine ; u64 nr_wakeups_affine_attempts ; u64 nr_wakeups_passive ; u64 nr_wakeups_idle ; struct sched_entity *parent ; struct cfs_rq *cfs_rq ; struct cfs_rq *my_q ; }; struct rt_rq; struct sched_rt_entity { struct list_head run_list ; unsigned long timeout ; unsigned int time_slice ; int nr_cpus_allowed ; struct sched_rt_entity *back ; struct sched_rt_entity *parent ; struct rt_rq *rt_rq ; struct rt_rq *my_q ; }; struct files_struct; struct css_set; struct compat_robust_list_head; struct ftrace_ret_stack; struct task_struct { long volatile state ; void *stack ; atomic_t usage ; unsigned int flags ; unsigned int ptrace ; int lock_depth ; int prio ; int static_prio ; int normal_prio ; unsigned int rt_priority ; struct sched_class const *sched_class ; struct sched_entity se ; struct sched_rt_entity rt ; struct hlist_head preempt_notifiers ; unsigned char fpu_counter ; unsigned int btrace_seq ; unsigned int policy ; cpumask_t cpus_allowed ; struct sched_info sched_info ; struct list_head tasks ; struct plist_node pushable_tasks ; struct mm_struct *mm ; struct mm_struct *active_mm ; int exit_state ; int exit_code ; int exit_signal ; int pdeath_signal ; unsigned int personality ; unsigned char did_exec : 1 ; unsigned char in_execve : 1 ; unsigned char in_iowait : 1 ; unsigned char sched_reset_on_fork : 1 ; pid_t pid ; pid_t tgid ; unsigned long stack_canary ; struct task_struct *real_parent ; struct task_struct *parent ; struct list_head children ; struct list_head sibling ; struct task_struct *group_leader ; struct list_head ptraced ; struct list_head ptrace_entry ; struct bts_context *bts ; struct pid_link pids[3U] ; struct list_head thread_group ; struct completion *vfork_done ; int *set_child_tid ; int *clear_child_tid ; cputime_t utime ; cputime_t stime ; cputime_t utimescaled ; cputime_t stimescaled ; cputime_t gtime ; cputime_t prev_utime ; cputime_t prev_stime ; unsigned long nvcsw ; unsigned long nivcsw ; struct timespec start_time ; struct timespec real_start_time ; unsigned long min_flt ; unsigned long maj_flt ; struct task_cputime cputime_expires ; struct list_head cpu_timers[3U] ; struct cred const *real_cred ; struct cred const *cred ; struct mutex cred_guard_mutex ; struct cred *replacement_session_keyring ; char comm[16U] ; int link_count ; int total_link_count ; struct sysv_sem sysvsem ; unsigned long last_switch_count ; struct thread_struct thread ; struct fs_struct *fs ; struct files_struct *files ; struct nsproxy *nsproxy ; struct signal_struct *signal ; struct sighand_struct *sighand ; sigset_t blocked ; sigset_t real_blocked ; sigset_t saved_sigmask ; struct sigpending pending ; unsigned long sas_ss_sp ; size_t sas_ss_size ; int (*notifier)(void * ) ; void *notifier_data ; sigset_t *notifier_mask ; struct audit_context *audit_context ; uid_t loginuid ; unsigned int sessionid ; seccomp_t seccomp ; u32 parent_exec_id ; u32 self_exec_id ; spinlock_t alloc_lock ; struct irqaction *irqaction ; spinlock_t pi_lock ; struct plist_head pi_waiters ; struct rt_mutex_waiter *pi_blocked_on ; struct mutex_waiter *blocked_on ; unsigned int irq_events ; int hardirqs_enabled ; unsigned long hardirq_enable_ip ; unsigned int hardirq_enable_event ; unsigned long hardirq_disable_ip ; unsigned int hardirq_disable_event ; int softirqs_enabled ; unsigned long softirq_disable_ip ; unsigned int softirq_disable_event ; unsigned long softirq_enable_ip ; unsigned int softirq_enable_event ; int hardirq_context ; int softirq_context ; u64 curr_chain_key ; int lockdep_depth ; unsigned int lockdep_recursion ; struct held_lock held_locks[48U] ; gfp_t lockdep_reclaim_gfp ; void *journal_info ; struct bio *bio_list ; struct bio **bio_tail ; struct reclaim_state *reclaim_state ; struct backing_dev_info *backing_dev_info ; struct io_context *io_context ; unsigned long ptrace_message ; siginfo_t *last_siginfo ; struct task_io_accounting ioac ; u64 acct_rss_mem1 ; u64 acct_vm_mem1 ; cputime_t acct_timexpd ; nodemask_t mems_allowed ; int cpuset_mem_spread_rotor ; struct css_set *cgroups ; struct list_head cg_list ; struct robust_list_head *robust_list ; struct compat_robust_list_head *compat_robust_list ; struct list_head pi_state_list ; struct futex_pi_state *pi_state_cache ; struct perf_event_context *perf_event_ctxp ; struct mutex perf_event_mutex ; struct list_head perf_event_list ; struct mempolicy *mempolicy ; short il_next ; atomic_t fs_excl ; struct rcu_head rcu ; struct pipe_inode_info *splice_pipe ; struct task_delay_info *delays ; int make_it_fail ; struct prop_local_single dirties ; int latency_record_count ; struct latency_record latency_record[32U] ; unsigned long timer_slack_ns ; unsigned long default_timer_slack_ns ; struct list_head *scm_work_list ; int curr_ret_stack ; struct ftrace_ret_stack *ret_stack ; unsigned long long ftrace_timestamp ; atomic_t trace_overrun ; atomic_t tracing_graph_pause ; unsigned long trace ; unsigned long trace_recursion ; unsigned long stack_start ; }; struct nameidata; struct qstr { unsigned int hash ; unsigned int len ; unsigned char const *name ; }; union __anonunion_d_u_137 { struct list_head d_child ; struct rcu_head d_rcu ; }; struct dentry_operations; struct super_block; struct dentry { atomic_t d_count ; unsigned int d_flags ; spinlock_t d_lock ; int d_mounted ; struct inode *d_inode ; struct hlist_node d_hash ; struct dentry *d_parent ; struct qstr d_name ; struct list_head d_lru ; union __anonunion_d_u_137 d_u ; struct list_head d_subdirs ; struct list_head d_alias ; unsigned long d_time ; struct dentry_operations const *d_op ; struct super_block *d_sb ; void *d_fsdata ; unsigned char d_iname[32U] ; }; struct dentry_operations { int (*d_revalidate)(struct dentry * , struct nameidata * ) ; int (*d_hash)(struct dentry * , struct qstr * ) ; int (*d_compare)(struct dentry * , struct qstr * , struct qstr * ) ; int (*d_delete)(struct dentry * ) ; void (*d_release)(struct dentry * ) ; void (*d_iput)(struct dentry * , struct inode * ) ; char *(*d_dname)(struct dentry * , char * , int ) ; }; struct radix_tree_node; struct radix_tree_root { unsigned int height ; gfp_t gfp_mask ; struct radix_tree_node *rnode ; }; struct fiemap_extent { __u64 fe_logical ; __u64 fe_physical ; __u64 fe_length ; __u64 fe_reserved64[2U] ; __u32 fe_flags ; __u32 fe_reserved[3U] ; }; struct export_operations; struct hd_geometry; struct poll_table_struct; struct kstatfs; struct iattr { unsigned int ia_valid ; umode_t ia_mode ; uid_t ia_uid ; gid_t ia_gid ; loff_t ia_size ; struct timespec ia_atime ; struct timespec ia_mtime ; struct timespec ia_ctime ; struct file *ia_file ; }; struct if_dqblk { __u64 dqb_bhardlimit ; __u64 dqb_bsoftlimit ; __u64 dqb_curspace ; __u64 dqb_ihardlimit ; __u64 dqb_isoftlimit ; __u64 dqb_curinodes ; __u64 dqb_btime ; __u64 dqb_itime ; __u32 dqb_valid ; }; struct if_dqinfo { __u64 dqi_bgrace ; __u64 dqi_igrace ; __u32 dqi_flags ; __u32 dqi_valid ; }; struct fs_disk_quota { __s8 d_version ; __s8 d_flags ; __u16 d_fieldmask ; __u32 d_id ; __u64 d_blk_hardlimit ; __u64 d_blk_softlimit ; __u64 d_ino_hardlimit ; __u64 d_ino_softlimit ; __u64 d_bcount ; __u64 d_icount ; __s32 d_itimer ; __s32 d_btimer ; __u16 d_iwarns ; __u16 d_bwarns ; __s32 d_padding2 ; __u64 d_rtb_hardlimit ; __u64 d_rtb_softlimit ; __u64 d_rtbcount ; __s32 d_rtbtimer ; __u16 d_rtbwarns ; __s16 d_padding3 ; char d_padding4[8U] ; }; struct fs_qfilestat { __u64 qfs_ino ; __u64 qfs_nblks ; __u32 qfs_nextents ; }; typedef struct fs_qfilestat fs_qfilestat_t; struct fs_quota_stat { __s8 qs_version ; __u16 qs_flags ; __s8 qs_pad ; fs_qfilestat_t qs_uquota ; fs_qfilestat_t qs_gquota ; __u32 qs_incoredqs ; __s32 qs_btimelimit ; __s32 qs_itimelimit ; __s32 qs_rtbtimelimit ; __u16 qs_bwarnlimit ; __u16 qs_iwarnlimit ; }; struct dquot; typedef __kernel_uid32_t qid_t; typedef long long qsize_t; struct mem_dqblk { qsize_t dqb_bhardlimit ; qsize_t dqb_bsoftlimit ; qsize_t dqb_curspace ; qsize_t dqb_rsvspace ; qsize_t dqb_ihardlimit ; qsize_t dqb_isoftlimit ; qsize_t dqb_curinodes ; time_t dqb_btime ; time_t dqb_itime ; }; struct quota_format_type; struct mem_dqinfo { struct quota_format_type *dqi_format ; int dqi_fmt_id ; struct list_head dqi_dirty_list ; unsigned long dqi_flags ; unsigned int dqi_bgrace ; unsigned int dqi_igrace ; qsize_t dqi_maxblimit ; qsize_t dqi_maxilimit ; void *dqi_priv ; }; struct dquot { struct hlist_node dq_hash ; struct list_head dq_inuse ; struct list_head dq_free ; struct list_head dq_dirty ; struct mutex dq_lock ; atomic_t dq_count ; wait_queue_head_t dq_wait_unused ; struct super_block *dq_sb ; unsigned int dq_id ; loff_t dq_off ; unsigned long dq_flags ; short dq_type ; struct mem_dqblk dq_dqb ; }; struct quota_format_ops { int (*check_quota_file)(struct super_block * , int ) ; int (*read_file_info)(struct super_block * , int ) ; int (*write_file_info)(struct super_block * , int ) ; int (*free_file_info)(struct super_block * , int ) ; int (*read_dqblk)(struct dquot * ) ; int (*commit_dqblk)(struct dquot * ) ; int (*release_dqblk)(struct dquot * ) ; }; struct dquot_operations { int (*initialize)(struct inode * , int ) ; int (*drop)(struct inode * ) ; int (*alloc_space)(struct inode * , qsize_t , int ) ; int (*alloc_inode)(struct inode const * , qsize_t ) ; int (*free_space)(struct inode * , qsize_t ) ; int (*free_inode)(struct inode const * , qsize_t ) ; int (*transfer)(struct inode * , struct iattr * ) ; int (*write_dquot)(struct dquot * ) ; struct dquot *(*alloc_dquot)(struct super_block * , int ) ; void (*destroy_dquot)(struct dquot * ) ; int (*acquire_dquot)(struct dquot * ) ; int (*release_dquot)(struct dquot * ) ; int (*mark_dirty)(struct dquot * ) ; int (*write_info)(struct super_block * , int ) ; int (*reserve_space)(struct inode * , qsize_t , int ) ; int (*claim_space)(struct inode * , qsize_t ) ; void (*release_rsv)(struct inode * , qsize_t ) ; qsize_t (*get_reserved_space)(struct inode * ) ; }; struct quotactl_ops { int (*quota_on)(struct super_block * , int , int , char * , int ) ; int (*quota_off)(struct super_block * , int , int ) ; int (*quota_sync)(struct super_block * , int ) ; int (*get_info)(struct super_block * , int , struct if_dqinfo * ) ; int (*set_info)(struct super_block * , int , struct if_dqinfo * ) ; int (*get_dqblk)(struct super_block * , int , qid_t , struct if_dqblk * ) ; int (*set_dqblk)(struct super_block * , int , qid_t , struct if_dqblk * ) ; int (*get_xstate)(struct super_block * , struct fs_quota_stat * ) ; int (*set_xstate)(struct super_block * , unsigned int , int ) ; int (*get_xquota)(struct super_block * , int , qid_t , struct fs_disk_quota * ) ; int (*set_xquota)(struct super_block * , int , qid_t , struct fs_disk_quota * ) ; }; struct quota_format_type { int qf_fmt_id ; struct quota_format_ops *qf_ops ; struct module *qf_owner ; struct quota_format_type *qf_next ; }; struct quota_info { unsigned int flags ; struct mutex dqio_mutex ; struct mutex dqonoff_mutex ; struct rw_semaphore dqptr_sem ; struct inode *files[2U] ; struct mem_dqinfo info[2U] ; struct quota_format_ops *ops[2U] ; }; union __anonunion_arg_139 { char *buf ; void *data ; }; struct __anonstruct_read_descriptor_t_138 { size_t written ; size_t count ; union __anonunion_arg_139 arg ; int error ; }; typedef struct __anonstruct_read_descriptor_t_138 read_descriptor_t; struct address_space_operations { int (*writepage)(struct page * , struct writeback_control * ) ; int (*readpage)(struct file * , struct page * ) ; void (*sync_page)(struct page * ) ; int (*writepages)(struct address_space * , struct writeback_control * ) ; int (*set_page_dirty)(struct page * ) ; int (*readpages)(struct file * , struct address_space * , struct list_head * , unsigned int ) ; int (*write_begin)(struct file * , struct address_space * , loff_t , unsigned int , unsigned int , struct page ** , void ** ) ; int (*write_end)(struct file * , struct address_space * , loff_t , unsigned int , unsigned int , struct page * , void * ) ; sector_t (*bmap)(struct address_space * , sector_t ) ; void (*invalidatepage)(struct page * , unsigned long ) ; int (*releasepage)(struct page * , gfp_t ) ; ssize_t (*direct_IO)(int , struct kiocb * , struct iovec const * , loff_t , unsigned long ) ; int (*get_xip_mem)(struct address_space * , unsigned long , int , void ** , unsigned long * ) ; int (*migratepage)(struct address_space * , struct page * , struct page * ) ; int (*launder_page)(struct page * ) ; int (*is_partially_uptodate)(struct page * , read_descriptor_t * , unsigned long ) ; int (*error_remove_page)(struct address_space * , struct page * ) ; }; struct address_space { struct inode *host ; struct radix_tree_root page_tree ; spinlock_t tree_lock ; unsigned int i_mmap_writable ; struct prio_tree_root i_mmap ; struct list_head i_mmap_nonlinear ; spinlock_t i_mmap_lock ; unsigned int truncate_count ; unsigned long nrpages ; unsigned long writeback_index ; struct address_space_operations const *a_ops ; unsigned long flags ; struct backing_dev_info *backing_dev_info ; spinlock_t private_lock ; struct list_head private_list ; struct address_space *assoc_mapping ; }; struct hd_struct; struct gendisk; struct block_device { dev_t bd_dev ; struct inode *bd_inode ; struct super_block *bd_super ; int bd_openers ; struct mutex bd_mutex ; struct list_head bd_inodes ; void *bd_holder ; int bd_holders ; struct list_head bd_holder_list ; struct block_device *bd_contains ; unsigned int bd_block_size ; struct hd_struct *bd_part ; unsigned int bd_part_count ; int bd_invalidated ; struct gendisk *bd_disk ; struct list_head bd_list ; unsigned long bd_private ; int bd_fsfreeze_count ; struct mutex bd_fsfreeze_mutex ; }; struct posix_acl; struct inode_operations; struct file_operations; struct file_lock; struct cdev; union __anonunion_ldv_22302_140 { struct pipe_inode_info *i_pipe ; struct block_device *i_bdev ; struct cdev *i_cdev ; }; struct inode { struct hlist_node i_hash ; struct list_head i_list ; struct list_head i_sb_list ; struct list_head i_dentry ; unsigned long i_ino ; atomic_t i_count ; unsigned int i_nlink ; uid_t i_uid ; gid_t i_gid ; dev_t i_rdev ; u64 i_version ; loff_t i_size ; struct timespec i_atime ; struct timespec i_mtime ; struct timespec i_ctime ; blkcnt_t i_blocks ; unsigned int i_blkbits ; unsigned short i_bytes ; umode_t i_mode ; spinlock_t i_lock ; struct mutex i_mutex ; struct rw_semaphore i_alloc_sem ; struct inode_operations const *i_op ; struct file_operations const *i_fop ; struct super_block *i_sb ; struct file_lock *i_flock ; struct address_space *i_mapping ; struct address_space i_data ; struct dquot *i_dquot[2U] ; struct list_head i_devices ; union __anonunion_ldv_22302_140 ldv_22302 ; __u32 i_generation ; __u32 i_fsnotify_mask ; struct hlist_head i_fsnotify_mark_entries ; struct list_head inotify_watches ; struct mutex inotify_mutex ; unsigned long i_state ; unsigned long dirtied_when ; unsigned int i_flags ; atomic_t i_writecount ; void *i_security ; struct posix_acl *i_acl ; struct posix_acl *i_default_acl ; void *i_private ; }; struct fown_struct { rwlock_t lock ; struct pid *pid ; enum pid_type pid_type ; uid_t uid ; uid_t euid ; int signum ; }; struct file_ra_state { unsigned long start ; unsigned int size ; unsigned int async_size ; unsigned int ra_pages ; unsigned int mmap_miss ; loff_t prev_pos ; }; union __anonunion_f_u_141 { struct list_head fu_list ; struct rcu_head fu_rcuhead ; }; struct file { union __anonunion_f_u_141 f_u ; struct path f_path ; struct file_operations const *f_op ; spinlock_t f_lock ; atomic_long_t f_count ; unsigned int f_flags ; fmode_t f_mode ; loff_t f_pos ; struct fown_struct f_owner ; struct cred const *f_cred ; struct file_ra_state f_ra ; u64 f_version ; void *f_security ; void *private_data ; struct list_head f_ep_links ; struct address_space *f_mapping ; unsigned long f_mnt_write_state ; }; typedef struct files_struct *fl_owner_t; struct file_lock_operations { void (*fl_copy_lock)(struct file_lock * , struct file_lock * ) ; void (*fl_release_private)(struct file_lock * ) ; }; struct lock_manager_operations { int (*fl_compare_owner)(struct file_lock * , struct file_lock * ) ; void (*fl_notify)(struct file_lock * ) ; int (*fl_grant)(struct file_lock * , struct file_lock * , int ) ; void (*fl_copy_lock)(struct file_lock * , struct file_lock * ) ; void (*fl_release_private)(struct file_lock * ) ; void (*fl_break)(struct file_lock * ) ; int (*fl_mylease)(struct file_lock * , struct file_lock * ) ; int (*fl_change)(struct file_lock ** , int ) ; }; struct nlm_lockowner; struct nfs_lock_info { u32 state ; struct nlm_lockowner *owner ; struct list_head list ; }; struct nfs4_lock_state; struct nfs4_lock_info { struct nfs4_lock_state *owner ; }; struct fasync_struct; struct __anonstruct_afs_143 { struct list_head link ; int state ; }; union __anonunion_fl_u_142 { struct nfs_lock_info nfs_fl ; struct nfs4_lock_info nfs4_fl ; struct __anonstruct_afs_143 afs ; }; struct file_lock { struct file_lock *fl_next ; struct list_head fl_link ; struct list_head fl_block ; fl_owner_t fl_owner ; unsigned char fl_flags ; unsigned char fl_type ; unsigned int fl_pid ; struct pid *fl_nspid ; wait_queue_head_t fl_wait ; struct file *fl_file ; loff_t fl_start ; loff_t fl_end ; struct fasync_struct *fl_fasync ; unsigned long fl_break_time ; struct file_lock_operations const *fl_ops ; struct lock_manager_operations const *fl_lmops ; union __anonunion_fl_u_142 fl_u ; }; struct fasync_struct { int magic ; int fa_fd ; struct fasync_struct *fa_next ; struct file *fa_file ; }; struct file_system_type; struct super_operations; struct xattr_handler; struct mtd_info; struct super_block { struct list_head s_list ; dev_t s_dev ; unsigned long s_blocksize ; unsigned char s_blocksize_bits ; unsigned char s_dirt ; loff_t s_maxbytes ; struct file_system_type *s_type ; struct super_operations const *s_op ; struct dquot_operations const *dq_op ; struct quotactl_ops const *s_qcop ; struct export_operations const *s_export_op ; unsigned long s_flags ; unsigned long s_magic ; struct dentry *s_root ; struct rw_semaphore s_umount ; struct mutex s_lock ; int s_count ; int s_need_sync ; atomic_t s_active ; void *s_security ; struct xattr_handler **s_xattr ; struct list_head s_inodes ; struct hlist_head s_anon ; struct list_head s_files ; struct list_head s_dentry_lru ; int s_nr_dentry_unused ; struct block_device *s_bdev ; struct backing_dev_info *s_bdi ; struct mtd_info *s_mtd ; struct list_head s_instances ; struct quota_info s_dquot ; int s_frozen ; wait_queue_head_t s_wait_unfrozen ; char s_id[32U] ; void *s_fs_info ; fmode_t s_mode ; struct mutex s_vfs_rename_mutex ; u32 s_time_gran ; char *s_subtype ; char *s_options ; }; struct fiemap_extent_info { unsigned int fi_flags ; unsigned int fi_extents_mapped ; unsigned int fi_extents_max ; struct fiemap_extent *fi_extents_start ; }; struct block_device_operations; struct file_operations { struct module *owner ; loff_t (*llseek)(struct file * , loff_t , int ) ; ssize_t (*read)(struct file * , char * , size_t , loff_t * ) ; ssize_t (*write)(struct file * , char const * , size_t , loff_t * ) ; ssize_t (*aio_read)(struct kiocb * , struct iovec const * , unsigned long , loff_t ) ; ssize_t (*aio_write)(struct kiocb * , struct iovec const * , unsigned long , loff_t ) ; int (*readdir)(struct file * , void * , int (*)(void * , char const * , int , loff_t , u64 , unsigned int ) ) ; unsigned int (*poll)(struct file * , struct poll_table_struct * ) ; int (*ioctl)(struct inode * , struct file * , unsigned int , unsigned long ) ; long (*unlocked_ioctl)(struct file * , unsigned int , unsigned long ) ; long (*compat_ioctl)(struct file * , unsigned int , unsigned long ) ; int (*mmap)(struct file * , struct vm_area_struct * ) ; int (*open)(struct inode * , struct file * ) ; int (*flush)(struct file * , fl_owner_t ) ; int (*release)(struct inode * , struct file * ) ; int (*fsync)(struct file * , struct dentry * , int ) ; int (*aio_fsync)(struct kiocb * , int ) ; int (*fasync)(int , struct file * , int ) ; int (*lock)(struct file * , int , struct file_lock * ) ; ssize_t (*sendpage)(struct file * , struct page * , int , size_t , loff_t * , int ) ; unsigned long (*get_unmapped_area)(struct file * , unsigned long , unsigned long , unsigned long , unsigned long ) ; int (*check_flags)(int ) ; int (*flock)(struct file * , int , struct file_lock * ) ; ssize_t (*splice_write)(struct pipe_inode_info * , struct file * , loff_t * , size_t , unsigned int ) ; ssize_t (*splice_read)(struct file * , loff_t * , struct pipe_inode_info * , size_t , unsigned int ) ; int (*setlease)(struct file * , long , struct file_lock ** ) ; }; struct inode_operations { int (*create)(struct inode * , struct dentry * , int , struct nameidata * ) ; struct dentry *(*lookup)(struct inode * , struct dentry * , struct nameidata * ) ; int (*link)(struct dentry * , struct inode * , struct dentry * ) ; int (*unlink)(struct inode * , struct dentry * ) ; int (*symlink)(struct inode * , struct dentry * , char const * ) ; int (*mkdir)(struct inode * , struct dentry * , int ) ; int (*rmdir)(struct inode * , struct dentry * ) ; int (*mknod)(struct inode * , struct dentry * , int , dev_t ) ; int (*rename)(struct inode * , struct dentry * , struct inode * , struct dentry * ) ; int (*readlink)(struct dentry * , char * , int ) ; void *(*follow_link)(struct dentry * , struct nameidata * ) ; void (*put_link)(struct dentry * , struct nameidata * , void * ) ; void (*truncate)(struct inode * ) ; int (*permission)(struct inode * , int ) ; int (*check_acl)(struct inode * , int ) ; int (*setattr)(struct dentry * , struct iattr * ) ; int (*getattr)(struct vfsmount * , struct dentry * , struct kstat * ) ; int (*setxattr)(struct dentry * , char const * , void const * , size_t , int ) ; ssize_t (*getxattr)(struct dentry * , char const * , void * , size_t ) ; ssize_t (*listxattr)(struct dentry * , char * , size_t ) ; int (*removexattr)(struct dentry * , char const * ) ; void (*truncate_range)(struct inode * , loff_t , loff_t ) ; long (*fallocate)(struct inode * , int , loff_t , loff_t ) ; int (*fiemap)(struct inode * , struct fiemap_extent_info * , u64 , u64 ) ; }; struct super_operations { struct inode *(*alloc_inode)(struct super_block * ) ; void (*destroy_inode)(struct inode * ) ; void (*dirty_inode)(struct inode * ) ; int (*write_inode)(struct inode * , int ) ; void (*drop_inode)(struct inode * ) ; void (*delete_inode)(struct inode * ) ; void (*put_super)(struct super_block * ) ; void (*write_super)(struct super_block * ) ; int (*sync_fs)(struct super_block * , int ) ; int (*freeze_fs)(struct super_block * ) ; int (*unfreeze_fs)(struct super_block * ) ; int (*statfs)(struct dentry * , struct kstatfs * ) ; int (*remount_fs)(struct super_block * , int * , char * ) ; void (*clear_inode)(struct inode * ) ; void (*umount_begin)(struct super_block * ) ; int (*show_options)(struct seq_file * , struct vfsmount * ) ; int (*show_stats)(struct seq_file * , struct vfsmount * ) ; ssize_t (*quota_read)(struct super_block * , int , char * , size_t , loff_t ) ; ssize_t (*quota_write)(struct super_block * , int , char const * , size_t , loff_t ) ; int (*bdev_try_to_free_page)(struct super_block * , struct page * , gfp_t ) ; }; struct file_system_type { char const *name ; int fs_flags ; int (*get_sb)(struct file_system_type * , int , char const * , void * , struct vfsmount * ) ; void (*kill_sb)(struct super_block * ) ; struct module *owner ; struct file_system_type *next ; struct list_head fs_supers ; struct lock_class_key s_lock_key ; struct lock_class_key s_umount_key ; struct lock_class_key i_lock_key ; struct lock_class_key i_mutex_key ; struct lock_class_key i_mutex_dir_key ; struct lock_class_key i_alloc_sem_key ; }; struct disk_stats { unsigned long sectors[2U] ; unsigned long ios[2U] ; unsigned long merges[2U] ; unsigned long ticks[2U] ; unsigned long io_ticks ; unsigned long time_in_queue ; }; struct hd_struct { sector_t start_sect ; sector_t nr_sects ; sector_t alignment_offset ; struct device __dev ; struct kobject *holder_dir ; int policy ; int partno ; int make_it_fail ; unsigned long stamp ; int in_flight[2U] ; struct disk_stats *dkstats ; struct rcu_head rcu_head ; }; struct disk_part_tbl { struct rcu_head rcu_head ; int len ; struct hd_struct *last_lookup ; struct hd_struct *part[] ; }; struct blk_integrity; struct gendisk { int major ; int first_minor ; int minors ; char disk_name[32U] ; char *(*devnode)(struct gendisk * , mode_t * ) ; struct disk_part_tbl *part_tbl ; struct hd_struct part0 ; struct block_device_operations const *fops ; struct request_queue *queue ; void *private_data ; int flags ; struct device *driverfs_dev ; struct kobject *slave_dir ; struct timer_rand_state *random ; atomic_t sync_io ; struct work_struct async_notify ; struct blk_integrity *integrity ; int node_id ; }; struct exception_table_entry { unsigned long insn ; unsigned long fixup ; }; enum writeback_sync_modes { WB_SYNC_NONE = 0, WB_SYNC_ALL = 1 } ; struct writeback_control { struct backing_dev_info *bdi ; struct super_block *sb ; enum writeback_sync_modes sync_mode ; unsigned long *older_than_this ; long nr_to_write ; long pages_skipped ; loff_t range_start ; loff_t range_end ; unsigned char nonblocking : 1 ; unsigned char encountered_congestion : 1 ; unsigned char for_kupdate : 1 ; unsigned char for_reclaim : 1 ; unsigned char range_cyclic : 1 ; unsigned char more_io : 1 ; unsigned char no_nrwrite_index_update : 1 ; }; struct bdi_writeback; typedef int congested_fn(void * , int ); struct bdi_writeback { struct list_head list ; struct backing_dev_info *bdi ; unsigned int nr ; unsigned long last_old_flush ; struct task_struct *task ; struct list_head b_dirty ; struct list_head b_io ; struct list_head b_more_io ; }; struct backing_dev_info { struct list_head bdi_list ; struct rcu_head rcu_head ; unsigned long ra_pages ; unsigned long state ; unsigned int capabilities ; congested_fn *congested_fn ; void *congested_data ; void (*unplug_io_fn)(struct backing_dev_info * , struct page * ) ; void *unplug_io_data ; char *name ; struct percpu_counter bdi_stat[2U] ; struct prop_local_percpu completions ; int dirty_exceeded ; unsigned int min_ratio ; unsigned int max_ratio ; unsigned int max_prop_frac ; struct bdi_writeback wb ; spinlock_t wb_lock ; struct list_head wb_list ; unsigned long wb_mask ; unsigned int wb_cnt ; struct list_head work_list ; struct device *dev ; struct dentry *debug_dir ; struct dentry *debug_stats ; }; typedef void *mempool_alloc_t(gfp_t , void * ); typedef void mempool_free_t(void * , void * ); struct mempool_s { spinlock_t lock ; int min_nr ; int curr_nr ; void **elements ; void *pool_data ; mempool_alloc_t *alloc ; mempool_free_t *free ; wait_queue_head_t wait ; }; typedef struct mempool_s mempool_t; struct as_io_context { spinlock_t lock ; void (*dtor)(struct as_io_context * ) ; void (*exit)(struct as_io_context * ) ; unsigned long state ; atomic_t nr_queued ; atomic_t nr_dispatched ; unsigned long last_end_request ; unsigned long ttime_total ; unsigned long ttime_samples ; unsigned long ttime_mean ; unsigned int seek_samples ; sector_t last_request_pos ; u64 seek_total ; sector_t seek_mean ; }; struct io_context { atomic_long_t refcount ; atomic_t nr_tasks ; spinlock_t lock ; unsigned short ioprio ; unsigned short ioprio_changed ; unsigned long last_waited ; int nr_batch_requests ; struct as_io_context *aic ; struct radix_tree_root radix_root ; struct hlist_head cic_list ; void *ioc_data ; }; struct bio_vec { struct page *bv_page ; unsigned int bv_len ; unsigned int bv_offset ; }; struct bio_integrity_payload; typedef void bio_end_io_t(struct bio * , int ); typedef void bio_destructor_t(struct bio * ); struct bio { sector_t bi_sector ; struct bio *bi_next ; struct block_device *bi_bdev ; unsigned long bi_flags ; unsigned long bi_rw ; unsigned short bi_vcnt ; unsigned short bi_idx ; unsigned int bi_phys_segments ; unsigned int bi_size ; unsigned int bi_seg_front_size ; unsigned int bi_seg_back_size ; unsigned int bi_max_vecs ; unsigned int bi_comp_cpu ; atomic_t bi_cnt ; struct bio_vec *bi_io_vec ; bio_end_io_t *bi_end_io ; void *bi_private ; struct bio_integrity_payload *bi_integrity ; bio_destructor_t *bi_destructor ; struct bio_vec bi_inline_vecs[0U] ; }; struct bio_integrity_payload { struct bio *bip_bio ; sector_t bip_sector ; void *bip_buf ; bio_end_io_t *bip_end_io ; unsigned int bip_size ; unsigned short bip_slab ; unsigned short bip_vcnt ; unsigned short bip_idx ; struct work_struct bip_work ; struct bio_vec bip_vec[0U] ; }; struct bsg_class_device { struct device *class_dev ; struct device *parent ; int minor ; struct request_queue *queue ; struct kref ref ; void (*release)(struct device * ) ; }; struct elevator_queue; struct blk_trace; struct request; typedef void rq_end_io_fn(struct request * , int ); struct request_list { int count[2U] ; int starved[2U] ; int elvpriv ; mempool_t *rq_pool ; wait_queue_head_t wait[2U] ; }; enum rq_cmd_type_bits { REQ_TYPE_FS = 1, REQ_TYPE_BLOCK_PC = 2, REQ_TYPE_SENSE = 3, REQ_TYPE_PM_SUSPEND = 4, REQ_TYPE_PM_RESUME = 5, REQ_TYPE_PM_SHUTDOWN = 6, REQ_TYPE_SPECIAL = 7, REQ_TYPE_LINUX_BLOCK = 8, REQ_TYPE_ATA_TASKFILE = 9, REQ_TYPE_ATA_PC = 10 } ; union __anonunion_ldv_26136_144 { struct rb_node rb_node ; void *completion_data ; }; struct request { struct list_head queuelist ; struct call_single_data csd ; int cpu ; struct request_queue *q ; unsigned int cmd_flags ; enum rq_cmd_type_bits cmd_type ; unsigned long atomic_flags ; sector_t __sector ; unsigned int __data_len ; struct bio *bio ; struct bio *biotail ; struct hlist_node hash ; union __anonunion_ldv_26136_144 ldv_26136 ; void *elevator_private ; void *elevator_private2 ; struct gendisk *rq_disk ; unsigned long start_time ; unsigned short nr_phys_segments ; unsigned short ioprio ; void *special ; char *buffer ; int tag ; int errors ; int ref_count ; unsigned short cmd_len ; unsigned char __cmd[16U] ; unsigned char *cmd ; unsigned int extra_len ; unsigned int sense_len ; unsigned int resid_len ; void *sense ; unsigned long deadline ; struct list_head timeout_list ; unsigned int timeout ; int retries ; rq_end_io_fn *end_io ; void *end_io_data ; struct request *next_rq ; }; typedef int elevator_merge_fn(struct request_queue * , struct request ** , struct bio * ); typedef void elevator_merge_req_fn(struct request_queue * , struct request * , struct request * ); typedef void elevator_merged_fn(struct request_queue * , struct request * , int ); typedef int elevator_allow_merge_fn(struct request_queue * , struct request * , struct bio * ); typedef int elevator_dispatch_fn(struct request_queue * , int ); typedef void elevator_add_req_fn(struct request_queue * , struct request * ); typedef int elevator_queue_empty_fn(struct request_queue * ); typedef struct request *elevator_request_list_fn(struct request_queue * , struct request * ); typedef void elevator_completed_req_fn(struct request_queue * , struct request * ); typedef int elevator_may_queue_fn(struct request_queue * , int ); typedef int elevator_set_req_fn(struct request_queue * , struct request * , gfp_t ); typedef void elevator_put_req_fn(struct request * ); typedef void elevator_activate_req_fn(struct request_queue * , struct request * ); typedef void elevator_deactivate_req_fn(struct request_queue * , struct request * ); typedef void *elevator_init_fn(struct request_queue * ); typedef void elevator_exit_fn(struct elevator_queue * ); struct elevator_ops { elevator_merge_fn *elevator_merge_fn ; elevator_merged_fn *elevator_merged_fn ; elevator_merge_req_fn *elevator_merge_req_fn ; elevator_allow_merge_fn *elevator_allow_merge_fn ; elevator_dispatch_fn *elevator_dispatch_fn ; elevator_add_req_fn *elevator_add_req_fn ; elevator_activate_req_fn *elevator_activate_req_fn ; elevator_deactivate_req_fn *elevator_deactivate_req_fn ; elevator_queue_empty_fn *elevator_queue_empty_fn ; elevator_completed_req_fn *elevator_completed_req_fn ; elevator_request_list_fn *elevator_former_req_fn ; elevator_request_list_fn *elevator_latter_req_fn ; elevator_set_req_fn *elevator_set_req_fn ; elevator_put_req_fn *elevator_put_req_fn ; elevator_may_queue_fn *elevator_may_queue_fn ; elevator_init_fn *elevator_init_fn ; elevator_exit_fn *elevator_exit_fn ; void (*trim)(struct io_context * ) ; }; struct elv_fs_entry { struct attribute attr ; ssize_t (*show)(struct elevator_queue * , char * ) ; ssize_t (*store)(struct elevator_queue * , char const * , size_t ) ; }; struct elevator_type { struct list_head list ; struct elevator_ops ops ; struct elv_fs_entry *elevator_attrs ; char elevator_name[16U] ; struct module *elevator_owner ; }; struct elevator_queue { struct elevator_ops *ops ; void *elevator_data ; struct kobject kobj ; struct elevator_type *elevator_type ; struct mutex sysfs_lock ; struct hlist_head *hash ; }; typedef void request_fn_proc(struct request_queue * ); typedef int make_request_fn(struct request_queue * , struct bio * ); typedef int prep_rq_fn(struct request_queue * , struct request * ); typedef void unplug_fn(struct request_queue * ); struct bvec_merge_data { struct block_device *bi_bdev ; sector_t bi_sector ; unsigned int bi_size ; unsigned long bi_rw ; }; typedef int merge_bvec_fn(struct request_queue * , struct bvec_merge_data * , struct bio_vec * ); typedef void prepare_flush_fn(struct request_queue * , struct request * ); typedef void softirq_done_fn(struct request * ); typedef int dma_drain_needed_fn(struct request * ); typedef int lld_busy_fn(struct request_queue * ); enum blk_eh_timer_return { BLK_EH_NOT_HANDLED = 0, BLK_EH_HANDLED = 1, BLK_EH_RESET_TIMER = 2 } ; typedef enum blk_eh_timer_return rq_timed_out_fn(struct request * ); struct blk_queue_tag { struct request **tag_index ; unsigned long *tag_map ; int busy ; int max_depth ; int real_max_depth ; atomic_t refcnt ; }; struct queue_limits { unsigned long bounce_pfn ; unsigned long seg_boundary_mask ; unsigned int max_hw_sectors ; unsigned int max_sectors ; unsigned int max_segment_size ; unsigned int physical_block_size ; unsigned int alignment_offset ; unsigned int io_min ; unsigned int io_opt ; unsigned int max_discard_sectors ; unsigned short logical_block_size ; unsigned short max_hw_segments ; unsigned short max_phys_segments ; unsigned char misaligned ; unsigned char no_cluster ; }; struct request_queue { struct list_head queue_head ; struct request *last_merge ; struct elevator_queue *elevator ; struct request_list rq ; request_fn_proc *request_fn ; make_request_fn *make_request_fn ; prep_rq_fn *prep_rq_fn ; unplug_fn *unplug_fn ; merge_bvec_fn *merge_bvec_fn ; prepare_flush_fn *prepare_flush_fn ; softirq_done_fn *softirq_done_fn ; rq_timed_out_fn *rq_timed_out_fn ; dma_drain_needed_fn *dma_drain_needed ; lld_busy_fn *lld_busy_fn ; sector_t end_sector ; struct request *boundary_rq ; struct timer_list unplug_timer ; int unplug_thresh ; unsigned long unplug_delay ; struct work_struct unplug_work ; struct backing_dev_info backing_dev_info ; void *queuedata ; gfp_t bounce_gfp ; unsigned long queue_flags ; spinlock_t __queue_lock ; spinlock_t *queue_lock ; struct kobject kobj ; unsigned long nr_requests ; unsigned int nr_congestion_on ; unsigned int nr_congestion_off ; unsigned int nr_batching ; void *dma_drain_buffer ; unsigned int dma_drain_size ; unsigned int dma_pad_mask ; unsigned int dma_alignment ; struct blk_queue_tag *queue_tags ; struct list_head tag_busy_list ; unsigned int nr_sorted ; unsigned int in_flight[2U] ; unsigned int rq_timeout ; struct timer_list timeout ; struct list_head timeout_list ; struct queue_limits limits ; unsigned int sg_timeout ; unsigned int sg_reserved_size ; int node ; struct blk_trace *blk_trace ; unsigned int ordered ; unsigned int next_ordered ; unsigned int ordseq ; int orderr ; int ordcolor ; struct request pre_flush_rq ; struct request bar_rq ; struct request post_flush_rq ; struct request *orig_bar_rq ; struct mutex sysfs_lock ; struct bsg_class_device bsg_dev ; }; struct blk_integrity_exchg { void *prot_buf ; void *data_buf ; sector_t sector ; unsigned int data_size ; unsigned short sector_size ; char const *disk_name ; }; typedef void integrity_gen_fn(struct blk_integrity_exchg * ); typedef int integrity_vrfy_fn(struct blk_integrity_exchg * ); typedef void integrity_set_tag_fn(void * , void * , unsigned int ); typedef void integrity_get_tag_fn(void * , void * , unsigned int ); struct blk_integrity { integrity_gen_fn *generate_fn ; integrity_vrfy_fn *verify_fn ; integrity_set_tag_fn *set_tag_fn ; integrity_get_tag_fn *get_tag_fn ; unsigned short flags ; unsigned short tuple_size ; unsigned short sector_size ; unsigned short tag_size ; char const *name ; struct kobject kobj ; }; struct block_device_operations { int (*open)(struct block_device * , fmode_t ) ; int (*release)(struct gendisk * , fmode_t ) ; int (*locked_ioctl)(struct block_device * , fmode_t , unsigned int , unsigned long ) ; int (*ioctl)(struct block_device * , fmode_t , unsigned int , unsigned long ) ; int (*compat_ioctl)(struct block_device * , fmode_t , unsigned int , unsigned long ) ; int (*direct_access)(struct block_device * , sector_t , void ** , unsigned long * ) ; int (*media_changed)(struct gendisk * ) ; unsigned long long (*set_capacity)(struct gendisk * , unsigned long long ) ; int (*revalidate_disk)(struct gendisk * ) ; int (*getgeo)(struct block_device * , struct hd_geometry * ) ; struct module *owner ; }; struct scsi_data_buffer { struct sg_table table ; unsigned int length ; int resid ; }; struct scsi_pointer { char *ptr ; int this_residual ; struct scatterlist *buffer ; int buffers_residual ; dma_addr_t dma_handle ; int volatile Status ; int volatile Message ; int volatile have_data_in ; int volatile sent_command ; int volatile phase ; }; struct scsi_cmnd { struct scsi_device *device ; struct list_head list ; struct list_head eh_entry ; int eh_eflags ; unsigned long serial_number ; unsigned long jiffies_at_alloc ; int retries ; int allowed ; unsigned char prot_op ; unsigned char prot_type ; unsigned short cmd_len ; enum dma_data_direction sc_data_direction ; unsigned char *cmnd ; struct scsi_data_buffer sdb ; struct scsi_data_buffer *prot_sdb ; unsigned int underflow ; unsigned int transfersize ; struct request *request ; unsigned char *sense_buffer ; void (*scsi_done)(struct scsi_cmnd * ) ; struct scsi_pointer SCp ; unsigned char *host_scribble ; int result ; unsigned char tag ; }; struct scsi_sense_hdr; enum scsi_device_state { SDEV_CREATED = 1, SDEV_RUNNING = 2, SDEV_CANCEL = 3, SDEV_DEL = 4, SDEV_QUIESCE = 5, SDEV_OFFLINE = 6, SDEV_BLOCK = 7, SDEV_CREATED_BLOCK = 8 } ; struct scsi_dh_data; struct scsi_device { struct Scsi_Host *host ; struct request_queue *request_queue ; struct list_head siblings ; struct list_head same_target_siblings ; unsigned int device_busy ; spinlock_t list_lock ; struct list_head cmd_list ; struct list_head starved_entry ; struct scsi_cmnd *current_cmnd ; unsigned short queue_depth ; unsigned short last_queue_full_depth ; unsigned short last_queue_full_count ; unsigned long last_queue_full_time ; unsigned int id ; unsigned int lun ; unsigned int channel ; unsigned int manufacturer ; unsigned int sector_size ; void *hostdata ; char type ; char scsi_level ; char inq_periph_qual ; unsigned char inquiry_len ; unsigned char *inquiry ; char const *vendor ; char const *model ; char const *rev ; unsigned char current_tag ; struct scsi_target *sdev_target ; unsigned int sdev_bflags ; unsigned char writeable : 1 ; unsigned char removable : 1 ; unsigned char changed : 1 ; unsigned char busy : 1 ; unsigned char lockable : 1 ; unsigned char locked : 1 ; unsigned char borken : 1 ; unsigned char disconnect : 1 ; unsigned char soft_reset : 1 ; unsigned char sdtr : 1 ; unsigned char wdtr : 1 ; unsigned char ppr : 1 ; unsigned char tagged_supported : 1 ; unsigned char simple_tags : 1 ; unsigned char ordered_tags : 1 ; unsigned char was_reset : 1 ; unsigned char expecting_cc_ua : 1 ; unsigned char use_10_for_rw : 1 ; unsigned char use_10_for_ms : 1 ; unsigned char skip_ms_page_8 : 1 ; unsigned char skip_ms_page_3f : 1 ; unsigned char use_192_bytes_for_3f : 1 ; unsigned char no_start_on_add : 1 ; unsigned char allow_restart : 1 ; unsigned char manage_start_stop : 1 ; unsigned char start_stop_pwr_cond : 1 ; unsigned char no_uld_attach : 1 ; unsigned char select_no_atn : 1 ; unsigned char fix_capacity : 1 ; unsigned char guess_capacity : 1 ; unsigned char retry_hwerror : 1 ; unsigned char last_sector_bug : 1 ; unsigned long supported_events[1U] ; struct list_head event_list ; struct work_struct event_work ; unsigned int device_blocked ; unsigned int max_device_blocked ; atomic_t iorequest_cnt ; atomic_t iodone_cnt ; atomic_t ioerr_cnt ; struct device sdev_gendev ; struct device sdev_dev ; struct execute_work ew ; struct scsi_dh_data *scsi_dh_data ; enum scsi_device_state sdev_state ; unsigned long sdev_data[0U] ; }; struct scsi_dh_devlist { char *vendor ; char *model ; }; struct scsi_device_handler { struct list_head list ; struct module *module ; char const *name ; struct scsi_dh_devlist const *devlist ; int (*check_sense)(struct scsi_device * , struct scsi_sense_hdr * ) ; int (*attach)(struct scsi_device * ) ; void (*detach)(struct scsi_device * ) ; int (*activate)(struct scsi_device * ) ; int (*prep_fn)(struct scsi_device * , struct request * ) ; int (*set_params)(struct scsi_device * , char const * ) ; }; struct scsi_dh_data { struct scsi_device_handler *scsi_dh ; struct scsi_device *sdev ; struct kref kref ; char buf[0U] ; }; enum scsi_target_state { STARGET_CREATED = 1, STARGET_RUNNING = 2, STARGET_DEL = 3 } ; struct scsi_target { struct scsi_device *starget_sdev_user ; struct list_head siblings ; struct list_head devices ; struct device dev ; unsigned int reap_ref ; unsigned int channel ; unsigned int id ; unsigned char create : 1 ; unsigned char single_lun : 1 ; unsigned int pdt_1f_for_no_lun ; unsigned int target_busy ; unsigned int can_queue ; unsigned int target_blocked ; unsigned int max_target_blocked ; char scsi_level ; struct execute_work ew ; enum scsi_target_state state ; void *hostdata ; unsigned long starget_data[0U] ; }; struct scsi_sense_hdr { u8 response_code ; u8 sense_key ; u8 asc ; u8 ascq ; u8 byte4 ; u8 byte5 ; u8 byte6 ; u8 additional_length ; }; struct scsi_eh_save { int result ; enum dma_data_direction data_direction ; unsigned int underflow ; unsigned char cmd_len ; unsigned char prot_op ; unsigned char *cmnd ; struct scsi_data_buffer sdb ; struct request *next_rq ; unsigned char eh_cmnd[16U] ; struct scatterlist sense_sgl ; }; typedef struct scsi_cmnd Scsi_Cmnd; struct NCR5380_hostdata { unsigned int port ; struct Scsi_Host *host ; unsigned char id_mask ; unsigned char id_higher_mask ; unsigned char targets_present ; unsigned char volatile busy[8U] ; unsigned char volatile last_message ; Scsi_Cmnd volatile *connected ; Scsi_Cmnd volatile *issue_queue ; Scsi_Cmnd volatile *disconnected_queue ; int volatile restart_select ; unsigned char aborted : 1 ; int flags ; unsigned long time_expires ; int select_time ; Scsi_Cmnd volatile *selecting ; struct delayed_work coroutine ; struct scsi_eh_save ses ; }; long ldv__builtin_expect(long exp , long c ) ; __inline static void clear_bit(int nr , unsigned long volatile *addr ) { { __asm__ volatile (".section .smp_locks,\"a\"\n .balign 8 \n .quad 661f\n.previous\n661:\n\tlock; btr %1,%0": "+m" (*((long volatile *)addr)): "Ir" (nr)); return; } } extern void __might_sleep(char * , int , int ) ; extern int printk(char const * , ...) ; extern void __bad_percpu_size(void) ; __inline static void rep_nop(void) { { __asm__ volatile ("rep; nop": : : "memory"); return; } } __inline static void cpu_relax(void) { { rep_nop(); return; } } __inline static void INIT_LIST_HEAD(struct list_head *list ) { { list->next = list; list->prev = list; return; } } extern unsigned long per_cpu__kernel_stack ; __inline static struct thread_info *current_thread_info(void) { struct thread_info *ti ; unsigned long ret__ ; { switch (8UL) { case 1UL: __asm__ ("movb %%gs:%P1,%0": "=q" (ret__): "p" (& per_cpu__kernel_stack)); goto ldv_5402; case 2UL: __asm__ ("movw %%gs:%P1,%0": "=r" (ret__): "p" (& per_cpu__kernel_stack)); goto ldv_5402; case 4UL: __asm__ ("movl %%gs:%P1,%0": "=r" (ret__): "p" (& per_cpu__kernel_stack)); goto ldv_5402; case 8UL: __asm__ ("movq %%gs:%P1,%0": "=r" (ret__): "p" (& per_cpu__kernel_stack)); goto ldv_5402; default: __bad_percpu_size(); } ldv_5402: ti = (struct thread_info *)(ret__ - 8152UL); return (ti); } } extern void lockdep_init_map(struct lockdep_map * , char const * , struct lock_class_key * , int ) ; extern void _spin_lock_irq(spinlock_t * ) ; extern unsigned long _spin_lock_irqsave(spinlock_t * ) ; extern void _spin_unlock_irq(spinlock_t * ) ; extern void _spin_unlock_irqrestore(spinlock_t * , unsigned long ) ; extern struct resource ioport_resource ; extern struct resource *__request_region(struct resource * , resource_size_t , resource_size_t , char const * , int ) ; extern void __release_region(struct resource * , resource_size_t , resource_size_t ) ; extern void __const_udelay(unsigned long ) ; extern unsigned long volatile jiffies ; extern void init_timer_key(struct timer_list * , char const * , struct lock_class_key * ) ; extern int del_timer_sync(struct timer_list * ) ; extern void flush_scheduled_work(void) ; extern int schedule_delayed_work(struct delayed_work * , unsigned long ) ; __inline static int cancel_delayed_work(struct delayed_work *work ) { int ret ; { ret = del_timer_sync(& work->timer); if (ret != 0) { clear_bit(0, (unsigned long volatile *)(& work->work.data)); } else { } return (ret); } } __inline static char const *kobject_name(struct kobject const *kobj ) { { return ((char const *)kobj->name); } } extern struct module __this_module ; __inline static char const *dev_name(struct device const *dev ) { char const *tmp ; { tmp = kobject_name(& dev->kobj); return (tmp); } } extern void *dev_get_drvdata(struct device const * ) ; extern void dev_set_drvdata(struct device * , void * ) ; extern char const *dev_driver_string(struct device const * ) ; __inline static unsigned char inb(unsigned short port ) { unsigned char _v ; { __asm__ volatile ("inb %w1,%0": "=a" (_v): "Nd" (port)); return (_v); } } __inline static void outb(unsigned char value , unsigned short port ) { { __asm__ volatile ("outb %b0,%w1": : "a" (value), "Nd" (port)); return; } } extern int pci_enable_device(struct pci_dev * ) ; extern void pci_disable_device(struct pci_dev * ) ; extern int __pci_register_driver(struct pci_driver * , struct module * , char const * ) ; extern void pci_unregister_driver(struct pci_driver * ) ; __inline static void *lowmem_page_address(struct page *page ) { { return ((void *)(((unsigned long )(((long )page + 24189255811072L) / 104L) << 12) + 0xffff880000000000UL)); } } __inline static struct page *sg_page(struct scatterlist *sg ) { long tmp ; long tmp___0 ; { tmp = ldv__builtin_expect(sg->sg_magic != 2271560481UL, 0L); if (tmp != 0L) { __asm__ volatile ("1:\tud2\n.pushsection __bug_table,\"a\"\n2:\t.long 1b - 2b, %c0 - 2b\n\t.word %c1, 0\n\t.org 2b+%c2\n.popsection": : "i" ((char *)"include/linux/scatterlist.h"), "i" (96), "i" (12UL)); ldv_15646: ; goto ldv_15646; } else { } tmp___0 = ldv__builtin_expect((long )((int )sg->page_link) & 1L, 0L); if (tmp___0 != 0L) { __asm__ volatile ("1:\tud2\n.pushsection __bug_table,\"a\"\n2:\t.long 1b - 2b, %c0 - 2b\n\t.word %c1, 0\n\t.org 2b+%c2\n.popsection": : "i" ((char *)"include/linux/scatterlist.h"), "i" (97), "i" (12UL)); ldv_15647: ; goto ldv_15647; } else { } return ((struct page *)(sg->page_link & 0xfffffffffffffffcUL)); } } __inline static void *sg_virt(struct scatterlist *sg ) { struct page *tmp ; void *tmp___0 ; { tmp = sg_page(sg); tmp___0 = lowmem_page_address(tmp); return (tmp___0 + (unsigned long )sg->offset); } } __inline static void *pci_get_drvdata(struct pci_dev *pdev ) { void *tmp ; { tmp = dev_get_drvdata((struct device const *)(& pdev->dev)); return (tmp); } } __inline static void pci_set_drvdata(struct pci_dev *pdev , void *data ) { { dev_set_drvdata(& pdev->dev, data); return; } } extern int request_threaded_irq(unsigned int , irqreturn_t (*)(int , void * ) , irqreturn_t (*)(int , void * ) , unsigned long , char const * , void * ) ; __inline static int request_irq(unsigned int irq , irqreturn_t (*handler)(int , void * ) , unsigned long flags , char const *name , void *dev ) { int tmp ; { tmp = request_threaded_irq(irq, handler, 0, flags, name, dev); return (tmp); } } extern void free_irq(unsigned int , void * ) ; extern struct Scsi_Host *scsi_host_alloc(struct scsi_host_template * , int ) ; extern int scsi_add_host(struct Scsi_Host * , struct device * ) ; extern void scsi_scan_host(struct Scsi_Host * ) ; extern void scsi_remove_host(struct Scsi_Host * ) ; extern void scsi_host_put(struct Scsi_Host * ) ; extern int _cond_resched(void) ; __inline static unsigned int scsi_sg_count(struct scsi_cmnd *cmd ) { { return (cmd->sdb.table.nents); } } __inline static struct scatterlist *scsi_sglist(struct scsi_cmnd *cmd ) { { return (cmd->sdb.table.sgl); } } __inline static unsigned int scsi_bufflen(struct scsi_cmnd *cmd ) { { return (cmd->sdb.length); } } __inline static unsigned int sdev_id(struct scsi_device *sdev ) { { return (sdev->id); } } extern void scsi_eh_prep_cmnd(struct scsi_cmnd * , struct scsi_eh_save * , unsigned char * , int , unsigned int ) ; extern void scsi_eh_restore_cmnd(struct scsi_cmnd * , struct scsi_eh_save * ) ; static int NCR5380_init(struct Scsi_Host *instance , int flags ) ; static void NCR5380_exit(struct Scsi_Host *instance ) ; static void NCR5380_information_transfer(struct Scsi_Host *instance ) ; static irqreturn_t NCR5380_intr(int dummy , void *dev_id ) ; static void NCR5380_main(struct work_struct *work ) ; static int NCR5380_abort(Scsi_Cmnd *cmd ) ; static int NCR5380_bus_reset(Scsi_Cmnd *cmd ) ; static int NCR5380_queue_command(Scsi_Cmnd *cmd , void (*done)(Scsi_Cmnd * ) ) ; static void NCR5380_reselect(struct Scsi_Host *instance ) ; static int NCR5380_select(struct Scsi_Host *instance , Scsi_Cmnd *cmd , int tag ) ; static int NCR5380_transfer_pio(struct Scsi_Host *instance , unsigned char *phase , int *count , unsigned char **data ) ; extern void scsi_print_command(struct scsi_cmnd * ) ; extern int spi_print_msg(unsigned char const * ) ; static int do_abort(struct Scsi_Host *host ) ; static void do_reset(struct Scsi_Host *host ) ; __inline static void initialize_SCp(Scsi_Cmnd *cmd ) { unsigned int tmp ; void *tmp___0 ; unsigned int tmp___1 ; { tmp___1 = scsi_bufflen(cmd); if (tmp___1 != 0U) { cmd->SCp.buffer = scsi_sglist(cmd); tmp = scsi_sg_count(cmd); cmd->SCp.buffers_residual = (int )(tmp - 1U); tmp___0 = sg_virt(cmd->SCp.buffer); cmd->SCp.ptr = (char *)tmp___0; cmd->SCp.this_residual = (int )(cmd->SCp.buffer)->length; } else { cmd->SCp.buffer = 0; cmd->SCp.buffers_residual = 0; cmd->SCp.ptr = 0; cmd->SCp.this_residual = 0; } return; } } static int NCR5380_poll_politely(struct Scsi_Host *instance , int reg , int bit , int val , int t ) { unsigned int port ; int n ; unsigned long end ; int r ; unsigned char tmp ; int tmp___0 ; unsigned char tmp___1 ; struct thread_info *tmp___2 ; { n = 500; end = (unsigned long )t + (unsigned long )jiffies; port = (unsigned int )instance->io_port; goto ldv_28146; ldv_28145: tmp = inb((int )((unsigned short )port) + (int )((unsigned short )reg)); r = (int )tmp; if ((r & bit) == val) { return (0); } else { } cpu_relax(); ldv_28146: tmp___0 = n; n = n - 1; if (tmp___0 > 0) { goto ldv_28145; } else { } goto ldv_28156; ldv_28155: tmp___1 = inb((int )((unsigned short )port) + (int )((unsigned short )reg)); r = (int )tmp___1; if ((r & bit) == val) { return (0); } else { } tmp___2 = current_thread_info(); if (((unsigned long )tmp___2->preempt_count & 134217472UL) == 0UL) { __might_sleep((char *)"/work/ldvuser/novikov/inst/current/envs/linux/linux/drivers/scsi/NCR5380.c", 349, 0); _cond_resched(); } else { cpu_relax(); } ldv_28156: ; if ((1 != 0 && 1 != 0) && (long )jiffies - (long )end < 0L) { goto ldv_28155; } else { } return (-110); } } static int should_disconnect(unsigned char cmd ) { { switch ((int )cmd) { case 8: ; case 10: ; case 11: ; case 40: ; case 42: ; case 43: ; return (1); case 4: ; case 48: ; case 50: ; case 49: ; return (2); default: ; return (0); } } } static void NCR5380_set_timer(struct NCR5380_hostdata *hostdata , unsigned long timeout ) { { hostdata->time_expires = (unsigned long )jiffies + timeout; schedule_delayed_work(& hostdata->coroutine, timeout); return; } } static void NCR5380_print_status(struct Scsi_Host *instance ) { { return; } } static int NCR5380_init(struct Scsi_Host *instance , int flags ) { unsigned int port ; int i ; int pass ; unsigned long timeout ; struct NCR5380_hostdata *hostdata ; struct thread_info *tmp ; struct lock_class_key __key ; atomic_long_t __constr_expr_0 ; struct lock_class_key __key___0 ; unsigned char tmp___0 ; { hostdata = (struct NCR5380_hostdata *)(& instance->hostdata); tmp = current_thread_info(); if (((unsigned long )tmp->preempt_count & 134217472UL) != 0UL) { printk("<3>NCR5380_init called with interrupts off!\n"); } else { } port = (unsigned int )instance->io_port; hostdata->aborted = 0U; hostdata->id_mask = (unsigned char )(1 << instance->this_id); i = (int )hostdata->id_mask; goto ldv_28281; ldv_28280: ; if ((int )hostdata->id_mask < i) { hostdata->id_higher_mask = (unsigned char )((int )((signed char )hostdata->id_higher_mask) | (int )((signed char )i)); } else { } i = i << 1; ldv_28281: ; if (i <= 128) { goto ldv_28280; } else { } i = 0; goto ldv_28284; ldv_28283: hostdata->busy[i] = 0U; i = i + 1; ldv_28284: ; if (i <= 7) { goto ldv_28283; } else { } hostdata->targets_present = 0U; hostdata->connected = 0; hostdata->issue_queue = 0; hostdata->disconnected_queue = 0; __constr_expr_0.counter = 0L; hostdata->coroutine.work.data = __constr_expr_0; lockdep_init_map(& hostdata->coroutine.work.lockdep_map, "&(&hostdata->coroutine)->work", & __key, 0); INIT_LIST_HEAD(& hostdata->coroutine.work.entry); hostdata->coroutine.work.func = & NCR5380_main; init_timer_key(& hostdata->coroutine.timer, "&(&hostdata->coroutine)->timer", & __key___0); if ((flags & 4) != 0) { hostdata->flags = flags | 1; } else { hostdata->flags = flags | 2; } hostdata->host = instance; hostdata->time_expires = 0UL; outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); outb(0, (int )((unsigned int )((unsigned short )port) + 2U)); outb(0, (int )((unsigned int )((unsigned short )port) + 3U)); outb(0, (int )((unsigned int )((unsigned short )port) + 4U)); pass = 1; goto ldv_28297; ldv_28296: ; switch (pass) { case 1: ; case 3: ; case 5: printk("<6>scsi%d: SCSI bus busy, waiting up to five seconds\n", instance->host_no); timeout = (unsigned long )jiffies + 1250UL; NCR5380_poll_politely(instance, 4, 64, 0, 1250); goto ldv_28292; case 2: printk("<4>scsi%d: bus busy, attempting abort\n", instance->host_no); do_abort(instance); goto ldv_28292; case 4: printk("<4>scsi%d: bus busy, attempting reset\n", instance->host_no); do_reset(instance); goto ldv_28292; case 6: printk("<3>scsi%d: bus locked solid or invalid override\n", instance->host_no); return (-6); } ldv_28292: pass = pass + 1; ldv_28297: tmp___0 = inb((int )((unsigned int )((unsigned short )port) + 4U)); if (((int )tmp___0 & 64) != 0 && pass <= 6) { goto ldv_28296; } else { } return (0); } } static void NCR5380_exit(struct Scsi_Host *instance ) { struct NCR5380_hostdata *hostdata ; { hostdata = (struct NCR5380_hostdata *)(& instance->hostdata); cancel_delayed_work(& hostdata->coroutine); flush_scheduled_work(); return; } } static int NCR5380_queue_command(Scsi_Cmnd *cmd , void (*done)(Scsi_Cmnd * ) ) { struct Scsi_Host *instance ; struct NCR5380_hostdata *hostdata ; Scsi_Cmnd *tmp ; { instance = (cmd->device)->host; hostdata = (struct NCR5380_hostdata *)(& instance->hostdata); cmd->host_scribble = 0; cmd->scsi_done = done; cmd->result = 0; if ((unsigned long )hostdata->issue_queue == (unsigned long )((Scsi_Cmnd volatile *)0) || (unsigned int )*(cmd->cmnd) == 3U) { cmd->host_scribble = (unsigned char *)hostdata->issue_queue; hostdata->issue_queue = (Scsi_Cmnd volatile *)cmd; } else { tmp = (Scsi_Cmnd *)hostdata->issue_queue; goto ldv_28312; ldv_28311: tmp = (Scsi_Cmnd *)tmp->host_scribble; ldv_28312: ; if ((unsigned long )tmp->host_scribble != (unsigned long )((unsigned char *)0)) { goto ldv_28311; } else { } tmp->host_scribble = (unsigned char *)cmd; } schedule_delayed_work(& hostdata->coroutine, 0UL); return (0); } } static void NCR5380_main(struct work_struct *work ) { struct NCR5380_hostdata *hostdata ; struct work_struct const *__mptr ; struct Scsi_Host *instance ; Scsi_Cmnd *tmp ; Scsi_Cmnd *prev ; int done ; int tmp___0 ; int tmp___1 ; { __mptr = (struct work_struct const *)work; hostdata = (struct NCR5380_hostdata *)__mptr + 0xffffffffffffffa0UL; instance = hostdata->host; _spin_lock_irq(instance->host_lock); ldv_28334: done = 1; if ((unsigned long )hostdata->connected == (unsigned long )((Scsi_Cmnd volatile *)0) && (unsigned long )hostdata->selecting == (unsigned long )((Scsi_Cmnd volatile *)0)) { tmp = (Scsi_Cmnd *)hostdata->issue_queue; prev = 0; goto ldv_28326; ldv_28325: ; if ((((int )hostdata->busy[(tmp->device)->id] >> (int )(tmp->device)->lun) & 1) == 0) { if ((unsigned long )prev != (unsigned long )((Scsi_Cmnd *)0)) { prev->host_scribble = tmp->host_scribble; } else { hostdata->issue_queue = (Scsi_Cmnd volatile *)tmp->host_scribble; } tmp->host_scribble = 0; hostdata->selecting = 0; tmp___0 = NCR5380_select(instance, tmp, (unsigned int )*(tmp->cmnd) == 3U ? -2 : -1); if (tmp___0 == 0) { goto ldv_28324; } else { tmp->host_scribble = (unsigned char *)hostdata->issue_queue; hostdata->issue_queue = (Scsi_Cmnd volatile *)tmp; done = 0; } } else { } prev = tmp; tmp = (Scsi_Cmnd *)tmp->host_scribble; ldv_28326: ; if ((unsigned long )tmp != (unsigned long )((Scsi_Cmnd *)0)) { goto ldv_28325; } else { } ldv_28324: ; } else { } if ((unsigned long )hostdata->selecting != (unsigned long )((Scsi_Cmnd volatile *)0)) { tmp = (Scsi_Cmnd *)hostdata->selecting; tmp___1 = NCR5380_select(instance, tmp, (unsigned int )*(tmp->cmnd) == 3U ? -2 : -1); if (tmp___1 == 0) { } else { printk("<7>scsi%d: device %d did not respond in time\n", instance->host_no, (tmp->device)->id); tmp->host_scribble = (unsigned char *)hostdata->issue_queue; hostdata->issue_queue = (Scsi_Cmnd volatile *)tmp; NCR5380_set_timer(hostdata, 5UL); } } else { } if ((unsigned long )hostdata->connected != (unsigned long )((Scsi_Cmnd volatile *)0) && (hostdata->time_expires == 0UL || ((1 != 0 && 1 != 0) && (long )jiffies - (long )hostdata->time_expires >= 0L))) { NCR5380_information_transfer(instance); done = 0; } else { goto ldv_28333; } if (done == 0) { goto ldv_28334; } else { } ldv_28333: _spin_unlock_irq(instance->host_lock); return; } } static irqreturn_t NCR5380_intr(int dummy , void *dev_id ) { unsigned int port ; struct Scsi_Host *instance ; struct NCR5380_hostdata *hostdata ; int done ; unsigned char basr ; unsigned long flags ; unsigned char tmp ; unsigned char tmp___0 ; { instance = (struct Scsi_Host *)dev_id; hostdata = (struct NCR5380_hostdata *)(& instance->hostdata); ldv_28351: done = 1; flags = _spin_lock_irqsave(instance->host_lock); port = (unsigned int )instance->io_port; basr = inb((int )((unsigned int )((unsigned short )port) + 5U)); if (((int )basr & 16) != 0) { tmp___0 = inb((int )((unsigned int )((unsigned short )port) + 4U)); if (((int )tmp___0 & 6) == 6) { done = 0; NCR5380_reselect(instance); inb((int )((unsigned int )((unsigned short )port) + 7U)); } else if (((int )basr & 32) != 0) { inb((int )((unsigned int )((unsigned short )port) + 7U)); } else { tmp = inb((int )((unsigned int )((unsigned short )port) + 4U)); if ((int )((signed char )tmp) < 0) { inb((int )((unsigned int )((unsigned short )port) + 7U)); } else { inb((int )((unsigned int )((unsigned short )port) + 7U)); } } } else { } _spin_unlock_irqrestore(instance->host_lock, flags); if (done == 0) { schedule_delayed_work(& hostdata->coroutine, 0UL); } else { } if (done == 0) { goto ldv_28351; } else { } return (IRQ_HANDLED); } } static void collect_stats(struct NCR5380_hostdata *hostdata , Scsi_Cmnd *cmd ) { { return; } } static int NCR5380_select(struct Scsi_Host *instance , Scsi_Cmnd *cmd , int tag ) { unsigned int port ; struct NCR5380_hostdata *hostdata ; unsigned char tmp[3U] ; unsigned char phase ; unsigned char *data ; int len ; unsigned long timeout ; unsigned char value ; int err ; unsigned char tmp___0 ; unsigned char tmp___1 ; unsigned char tmp___2 ; unsigned char tmp___3 ; unsigned int tmp___4 ; unsigned char tmp___5 ; unsigned char tmp___6 ; unsigned int tmp___7 ; unsigned char tmp___8 ; unsigned int tmp___9 ; { hostdata = (struct NCR5380_hostdata *)(& instance->hostdata); port = (unsigned int )instance->io_port; if ((unsigned long )hostdata->selecting != (unsigned long )((Scsi_Cmnd volatile *)0)) { goto part2; } else { } hostdata->restart_select = 0; outb(0, (int )((unsigned int )((unsigned short )port) + 3U)); outb((int )hostdata->id_mask, (int )((unsigned short )port)); outb(1, (int )((unsigned int )((unsigned short )port) + 2U)); _spin_unlock_irq(instance->host_lock); err = NCR5380_poll_politely(instance, 1, 64, 64, 1250); _spin_lock_irq(instance->host_lock); if (err < 0) { printk("<7>scsi: arbitration timeout at %d\n", 1337); outb(0, (int )((unsigned int )((unsigned short )port) + 2U)); outb((int )hostdata->id_mask, (int )((unsigned int )((unsigned short )port) + 4U)); goto failed; } else { } __const_udelay(12885UL); tmp___0 = inb((int )((unsigned int )((unsigned short )port) + 1U)); if (((int )tmp___0 & 32) != 0) { outb(0, (int )((unsigned int )((unsigned short )port) + 2U)); goto failed; } else { tmp___1 = inb((int )((unsigned short )port)); if ((unsigned int )((int )tmp___1 & (int )hostdata->id_higher_mask) != 0U) { outb(0, (int )((unsigned int )((unsigned short )port) + 2U)); goto failed; } else { tmp___2 = inb((int )((unsigned int )((unsigned short )port) + 1U)); if (((int )tmp___2 & 32) != 0) { outb(0, (int )((unsigned int )((unsigned short )port) + 2U)); goto failed; } else { } } } outb(4, (int )((unsigned int )((unsigned short )port) + 1U)); if ((hostdata->flags & 16) == 0) { tmp___3 = inb((int )((unsigned int )((unsigned short )port) + 1U)); if (((int )tmp___3 & 32) != 0) { outb(0, (int )((unsigned int )((unsigned short )port) + 2U)); outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); goto failed; } else { } } else { } __const_udelay(8590UL); tmp___4 = sdev_id(cmd->device); outb((int )((unsigned char )((int )((signed char )hostdata->id_mask) | (int )((signed char )(1 << (int )tmp___4)))), (int )((unsigned short )port)); outb(15, (int )((unsigned int )((unsigned short )port) + 1U)); outb(0, (int )((unsigned int )((unsigned short )port) + 2U)); outb(0, (int )((unsigned int )((unsigned short )port) + 4U)); __const_udelay(4295UL); outb(7, (int )((unsigned int )((unsigned short )port) + 1U)); __const_udelay(4295UL); timeout = (unsigned long )jiffies + 62UL; hostdata->select_time = 0; hostdata->selecting = (Scsi_Cmnd volatile *)cmd; part2: tmp___5 = inb((int )((unsigned int )((unsigned short )port) + 4U)); value = (unsigned int )tmp___5 & 68U; if ((unsigned int )value == 0U && hostdata->select_time <= 61) { hostdata->select_time = hostdata->select_time + 1; NCR5380_set_timer(hostdata, 1UL); return (0); } else { } hostdata->selecting = 0; tmp___6 = inb((int )((unsigned int )((unsigned short )port) + 4U)); if (((int )tmp___6 & 6) == 6) { outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); NCR5380_reselect(instance); printk("scsi%d : reselection after won arbitration?\n", instance->host_no); outb((int )hostdata->id_mask, (int )((unsigned int )((unsigned short )port) + 4U)); return (-1); } else { } __const_udelay(4295UL); outb(2, (int )((unsigned int )((unsigned short )port) + 1U)); tmp___8 = inb((int )((unsigned int )((unsigned short )port) + 4U)); if (((int )tmp___8 & 64) == 0) { outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); tmp___7 = sdev_id(cmd->device); if (((int )hostdata->targets_present >> (int )tmp___7) & 1) { printk("<7>scsi%d : weirdness\n", instance->host_no); if ((int )hostdata->restart_select != 0) { printk("<7>\trestart select\n"); } else { } outb((int )hostdata->id_mask, (int )((unsigned int )((unsigned short )port) + 4U)); return (-1); } else { } cmd->result = 262144; collect_stats(hostdata, cmd); (*(cmd->scsi_done))(cmd); outb((int )hostdata->id_mask, (int )((unsigned int )((unsigned short )port) + 4U)); outb((int )hostdata->id_mask, (int )((unsigned int )((unsigned short )port) + 4U)); return (0); } else { } tmp___9 = sdev_id(cmd->device); hostdata->targets_present = (unsigned char )((int )((signed char )hostdata->targets_present) | (int )((signed char )(1 << (int )tmp___9))); _spin_unlock_irq(instance->host_lock); err = NCR5380_poll_politely(instance, 4, 32, 32, 250); _spin_lock_irq(instance->host_lock); if (err != 0) { printk("<3>scsi%d: timeout at NCR5380.c:%d\n", instance->host_no, 1525); outb((int )hostdata->id_mask, (int )((unsigned int )((unsigned short )port) + 4U)); goto failed; } else { } tmp[0] = (instance->irq != 255U ? 192U : 128U) | ((unsigned int )((unsigned char )(cmd->device)->lun) & 7U); len = 1; cmd->tag = 0U; data = (unsigned char *)(& tmp); phase = 24U; NCR5380_transfer_pio(instance, & phase, & len, & data); hostdata->connected = (Scsi_Cmnd volatile *)cmd; hostdata->busy[(cmd->device)->id] = (unsigned char volatile )((int )((signed char )hostdata->busy[(cmd->device)->id]) | (int )((signed char )(1 << (int )(cmd->device)->lun))); initialize_SCp(cmd); return (0); failed: ; return (-1); } } static int NCR5380_transfer_pio(struct Scsi_Host *instance , unsigned char *phase , int *count , unsigned char **data ) { unsigned int port ; unsigned char p ; unsigned char tmp ; int c ; unsigned char *d ; int break_allowed ; struct NCR5380_hostdata *hostdata ; { p = *phase; c = *count; d = *data; break_allowed = 0; hostdata = (struct NCR5380_hostdata *)(& instance->hostdata); port = (unsigned int )instance->io_port; outb((int )p >> 2, (int )((unsigned int )((unsigned short )port) + 3U)); if ((unsigned int )p == 4U || (unsigned int )p == 0U) { break_allowed = 1; } else { } ldv_28390: ; goto ldv_28387; ldv_28386: ; ldv_28387: tmp = inb((int )((unsigned int )((unsigned short )port) + 4U)); if (((int )tmp & 32) == 0 && break_allowed == 0) { goto ldv_28386; } else { } if (((int )tmp & 32) == 0) { NCR5380_set_timer(hostdata, 5UL); goto ldv_28389; } else { } if (((int )tmp & 28) != (int )p) { goto ldv_28389; } else { } if (((int )p & 4) == 0) { outb((int )*d, (int )((unsigned short )port)); } else { *d = inb((int )((unsigned short )port)); } d = d + 1; if (((int )p & 4) == 0) { if (((int )p & 16) == 0 || c <= 1) { outb(1, (int )((unsigned int )((unsigned short )port) + 1U)); outb(17, (int )((unsigned int )((unsigned short )port) + 1U)); } else { outb(3, (int )((unsigned int )((unsigned short )port) + 1U)); outb(19, (int )((unsigned int )((unsigned short )port) + 1U)); } } else { outb(16, (int )((unsigned int )((unsigned short )port) + 1U)); } NCR5380_poll_politely(instance, 4, 32, 0, 1250); if ((unsigned int )p != 28U || c != 1) { if ((unsigned int )p == 24U && c > 1) { outb(2, (int )((unsigned int )((unsigned short )port) + 1U)); } else { outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); } } else { } c = c - 1; if (c != 0) { goto ldv_28390; } else { } ldv_28389: *count = c; *data = d; tmp = inb((int )((unsigned int )((unsigned short )port) + 4U)); if (((int )tmp & 32) != 0) { *phase = (unsigned int )tmp & 28U; } else { *phase = 255U; } if (c == 0 || (int )*phase == (int )p) { return (0); } else { return (-1); } } } static void do_reset(struct Scsi_Host *host ) { unsigned int port ; unsigned char tmp ; { port = (unsigned int )host->io_port; tmp = inb((int )((unsigned int )((unsigned short )port) + 4U)); outb((int )((unsigned char )(((int )tmp & 28) >> 2)), (int )((unsigned int )((unsigned short )port) + 3U)); outb(128, (int )((unsigned int )((unsigned short )port) + 1U)); __const_udelay(107375UL); outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); return; } } static int do_abort(struct Scsi_Host *host ) { unsigned int port ; unsigned char *msgptr ; unsigned char phase ; unsigned char tmp ; int len ; int rc ; { port = (unsigned int )host->io_port; outb(2, (int )((unsigned int )((unsigned short )port) + 1U)); rc = NCR5380_poll_politely(host, 4, 32, 32, 15000); if (rc < 0) { return (-1); } else { } tmp = (unsigned char )rc; outb((int )tmp >> 2, (int )((unsigned int )((unsigned short )port) + 3U)); if (((int )tmp & 28) != 24) { outb(18, (int )((unsigned int )((unsigned short )port) + 1U)); rc = NCR5380_poll_politely(host, 4, 32, 0, 750); outb(2, (int )((unsigned int )((unsigned short )port) + 1U)); if (rc == -1) { return (-1); } else { } } else { } tmp = 6U; msgptr = & tmp; len = 1; phase = 24U; NCR5380_transfer_pio(host, & phase, & len, & msgptr); return (len != 0 ? -1 : 0); } } static void NCR5380_information_transfer(struct Scsi_Host *instance ) { unsigned int port ; struct NCR5380_hostdata *hostdata ; unsigned char msgout ; int sink ; int len ; unsigned char *data ; unsigned char phase ; unsigned char tmp ; unsigned char extended_msg[10U] ; unsigned char old_phase ; Scsi_Cmnd *cmd ; unsigned long poll_time ; unsigned char tmp___0 ; void *tmp___1 ; unsigned char tmp___2 ; unsigned char tmp___3 ; char const *tmp___4 ; char const *tmp___5 ; char const *tmp___6 ; char const *tmp___7 ; char const *tmp___8 ; char const *tmp___9 ; char const *tmp___10 ; char const *tmp___11 ; int tmp___12 ; { hostdata = (struct NCR5380_hostdata *)(& instance->hostdata); msgout = 8U; sink = 0; old_phase = 255U; cmd = (Scsi_Cmnd *)hostdata->connected; poll_time = (unsigned long )jiffies + 50UL; port = (unsigned int )instance->io_port; ldv_28461: tmp = inb((int )((unsigned int )((unsigned short )port) + 4U)); if (((int )tmp & 32) != 0) { phase = (unsigned int )tmp & 28U; if ((int )phase != (int )old_phase) { old_phase = phase; } else { } if (sink != 0 && (unsigned int )phase != 24U) { outb((int )tmp >> 2, (int )((unsigned int )((unsigned short )port) + 3U)); outb(18, (int )((unsigned int )((unsigned short )port) + 1U)); goto ldv_28420; ldv_28419: ; ldv_28420: tmp___0 = inb((int )((unsigned int )((unsigned short )port) + 4U)); if (((int )tmp___0 & 32) != 0) { goto ldv_28419; } else { } outb(2, (int )((unsigned int )((unsigned short )port) + 1U)); sink = 0; goto ldv_28422; } else { } switch ((int )phase) { case 4: ; case 0: ; if (cmd->SCp.this_residual == 0 && cmd->SCp.buffers_residual != 0) { cmd->SCp.buffer = cmd->SCp.buffer + 1; cmd->SCp.buffers_residual = cmd->SCp.buffers_residual - 1; cmd->SCp.this_residual = (int )(cmd->SCp.buffer)->length; tmp___1 = sg_virt(cmd->SCp.buffer); cmd->SCp.ptr = (char *)tmp___1; } else { } NCR5380_transfer_pio(instance, & phase, & cmd->SCp.this_residual, (unsigned char **)(& cmd->SCp.ptr)); goto ldv_28425; case 28: len = 1; data = & tmp; NCR5380_transfer_pio(instance, & phase, & len, & data); cmd->SCp.Message = (int volatile )tmp; switch ((int )tmp) { case 6: ; case 0: sink = 1; outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); hostdata->connected = 0; hostdata->busy[(cmd->device)->id] = (unsigned char volatile )((int )((signed char )hostdata->busy[(cmd->device)->id]) & ~ ((int )((signed char )(1 << (int )(cmd->device)->lun)))); if ((unsigned int )*(cmd->cmnd) != 3U) { cmd->result = (int )cmd->SCp.Status | (int )(cmd->SCp.Message << 8); } else if (((int )(cmd->SCp.Status >> 1) & 127) != 0) { cmd->result = (cmd->result & 65535) | 458752; } else { } if ((unsigned int )*(cmd->cmnd) == 3U && (unsigned int )hostdata->ses.cmd_len != 0U) { scsi_eh_restore_cmnd(cmd, & hostdata->ses); hostdata->ses.cmd_len = 0U; } else { } if ((unsigned int )*(cmd->cmnd) != 3U && ((int )(cmd->SCp.Status >> 1) & 127) == 1) { scsi_eh_prep_cmnd(cmd, & hostdata->ses, 0, 0, 4294967295U); cmd->host_scribble = (unsigned char *)hostdata->issue_queue; hostdata->issue_queue = (Scsi_Cmnd volatile *)cmd; } else { collect_stats(hostdata, cmd); (*(cmd->scsi_done))(cmd); } outb((int )hostdata->id_mask, (int )((unsigned int )((unsigned short )port) + 4U)); outb(0, (int )((unsigned int )((unsigned short )port) + 3U)); goto ldv_28430; ldv_28429: __asm__ volatile ("": : : "memory"); ldv_28430: tmp___2 = inb((int )((unsigned int )((unsigned short )port) + 4U)); if (((int )tmp___2 & 64) != 0 && (unsigned long )hostdata->connected == (unsigned long )((Scsi_Cmnd volatile *)0)) { goto ldv_28429; } else { } return; case 7: outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); switch ((int )hostdata->last_message) { case 33: ; case 34: ; case 32: (cmd->device)->simple_tags = 0U; hostdata->busy[(cmd->device)->id] = (unsigned char volatile )((int )((signed char )hostdata->busy[(cmd->device)->id]) | (int )((signed char )(1 << (int )(cmd->device)->lun))); goto ldv_28436; default: ; goto ldv_28436; } ldv_28436: ; case 4: outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); (cmd->device)->disconnect = 1U; cmd->host_scribble = (unsigned char *)hostdata->disconnected_queue; hostdata->connected = 0; hostdata->disconnected_queue = (Scsi_Cmnd volatile *)cmd; outb(0, (int )((unsigned int )((unsigned short )port) + 3U)); outb((int )hostdata->id_mask, (int )((unsigned int )((unsigned short )port) + 4U)); goto ldv_28440; ldv_28439: __asm__ volatile ("": : : "memory"); ldv_28440: tmp___3 = inb((int )((unsigned int )((unsigned short )port) + 4U)); if (((int )tmp___3 & 64) != 0 && (unsigned long )hostdata->connected == (unsigned long )((Scsi_Cmnd volatile *)0)) { goto ldv_28439; } else { } return; case 2: ; case 3: outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); goto ldv_28444; case 1: extended_msg[0] = 1U; outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); len = 2; data = (unsigned char *)(& extended_msg) + 1UL; phase = 28U; NCR5380_transfer_pio(instance, & phase, & len, & data); if (len == 0 && (unsigned int )extended_msg[1] <= 9U) { outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); len = (int )extended_msg[1] + -1; data = (unsigned char *)(& extended_msg) + 3UL; phase = 28U; NCR5380_transfer_pio(instance, & phase, & len, & data); switch ((int )extended_msg[2]) { case 1: ; case 3: ; case 0: ; case 2: tmp = 0U; } } else if (len != 0) { printk("scsi%d: error receiving extended message\n", instance->host_no); tmp = 0U; } else { printk("scsi%d: extended message code %02x length %d is too long\n", instance->host_no, (int )extended_msg[2], (int )extended_msg[1]); tmp = 0U; } default: ; if ((unsigned int )tmp == 0U) { printk("scsi%d: rejecting message ", instance->host_no); spi_print_msg((unsigned char const *)(& extended_msg)); printk("\n"); } else if ((unsigned int )tmp != 1U) { if ((unsigned long )(cmd->request)->rq_disk != (unsigned long )((struct gendisk *)0)) { tmp___6 = dev_name((struct device const *)(& (cmd->device)->sdev_gendev)); tmp___7 = dev_driver_string((struct device const *)(& (cmd->device)->sdev_gendev)); printk("<6>%s %s: [%s] rejecting unknown message %02x\n", tmp___7, tmp___6, (char *)(& ((cmd->request)->rq_disk)->disk_name), (int )tmp); } else { tmp___4 = dev_name((struct device const *)(& (cmd->device)->sdev_gendev)); tmp___5 = dev_driver_string((struct device const *)(& (cmd->device)->sdev_gendev)); printk("<6>%s %s: rejecting unknown message %02x\n", tmp___5, tmp___4, (int )tmp); } } else if ((unsigned long )(cmd->request)->rq_disk != (unsigned long )((struct gendisk *)0)) { tmp___10 = dev_name((struct device const *)(& (cmd->device)->sdev_gendev)); tmp___11 = dev_driver_string((struct device const *)(& (cmd->device)->sdev_gendev)); printk("<6>%s %s: [%s] rejecting unknown extended message code %02x, length %d\n", tmp___11, tmp___10, (char *)(& ((cmd->request)->rq_disk)->disk_name), (int )extended_msg[1], (int )extended_msg[0]); } else { tmp___8 = dev_name((struct device const *)(& (cmd->device)->sdev_gendev)); tmp___9 = dev_driver_string((struct device const *)(& (cmd->device)->sdev_gendev)); printk("<6>%s %s: rejecting unknown extended message code %02x, length %d\n", tmp___9, tmp___8, (int )extended_msg[1], (int )extended_msg[0]); } msgout = 7U; outb(2, (int )((unsigned int )((unsigned short )port) + 1U)); goto ldv_28444; } ldv_28444: ; goto ldv_28425; case 24: len = 1; data = & msgout; hostdata->last_message = msgout; NCR5380_transfer_pio(instance, & phase, & len, & data); if ((unsigned int )msgout == 6U) { hostdata->busy[(cmd->device)->id] = (unsigned char volatile )((int )((signed char )hostdata->busy[(cmd->device)->id]) & ~ ((int )((signed char )(1 << (int )(cmd->device)->lun)))); hostdata->connected = 0; cmd->result = 458752; collect_stats(hostdata, cmd); (*(cmd->scsi_done))(cmd); outb((int )hostdata->id_mask, (int )((unsigned int )((unsigned short )port) + 4U)); return; } else { } msgout = 8U; goto ldv_28425; case 8: len = (int )cmd->cmd_len; data = cmd->cmnd; NCR5380_transfer_pio(instance, & phase, & len, & data); if ((unsigned int )*((unsigned char *)cmd->device + 268UL) == 0U) { tmp___12 = should_disconnect((int )*(cmd->cmnd)); if (tmp___12 != 0) { NCR5380_set_timer(hostdata, 5UL); return; } else { } } else { } goto ldv_28425; case 12: len = 1; data = & tmp; NCR5380_transfer_pio(instance, & phase, & len, & data); cmd->SCp.Status = (int volatile )tmp; goto ldv_28425; default: printk("scsi%d : unknown phase\n", instance->host_no); } ldv_28425: ; } else if ((unsigned int )*((unsigned char *)cmd->device + 268UL) == 0U && ((1 != 0 && 1 != 0) && (long )jiffies - (long )poll_time >= 0L)) { NCR5380_set_timer(hostdata, 5UL); return; } else { } ldv_28422: ; goto ldv_28461; } } static void NCR5380_reselect(struct Scsi_Host *instance ) { unsigned int port ; struct NCR5380_hostdata *hostdata ; unsigned char target_mask ; unsigned char lun ; unsigned char phase ; int len ; unsigned char msg[3U] ; unsigned char *data ; Scsi_Cmnd *tmp ; Scsi_Cmnd *prev ; int abort ; unsigned char tmp___0 ; int tmp___1 ; int tmp___2 ; { hostdata = (struct NCR5380_hostdata *)(& instance->hostdata); tmp = 0; abort = 0; port = (unsigned int )instance->io_port; outb(0, (int )((unsigned int )((unsigned short )port) + 2U)); hostdata->restart_select = 1; tmp___0 = inb((int )((unsigned short )port)); target_mask = (unsigned char )((int )((signed char )tmp___0) & (int )((signed char )(~ ((int )hostdata->id_mask)))); outb(8, (int )((unsigned int )((unsigned short )port) + 1U)); tmp___1 = NCR5380_poll_politely(instance, 4, 2, 0, 500); if (tmp___1 < 0) { abort = 1; } else { } outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); tmp___2 = NCR5380_poll_politely(instance, 4, 32, 32, 500); if (tmp___2 != 0) { abort = 1; } else { } len = 1; data = (unsigned char *)(& msg); phase = 28U; NCR5380_transfer_pio(instance, & phase, & len, & data); if ((int )((signed char )msg[0]) >= 0) { printk("<3>scsi%d : expecting IDENTIFY message, got ", instance->host_no); spi_print_msg((unsigned char const *)(& msg)); abort = 1; } else { outb(0, (int )((unsigned int )((unsigned short )port) + 1U)); lun = (unsigned int )msg[0] & 7U; tmp = (Scsi_Cmnd *)hostdata->disconnected_queue; prev = 0; goto ldv_28478; ldv_28477: ; if ((int )target_mask == 1 << (int )(tmp->device)->id && (unsigned int )lun == (tmp->device)->lun) { if ((unsigned long )prev != (unsigned long )((Scsi_Cmnd *)0)) { prev->host_scribble = tmp->host_scribble; } else { hostdata->disconnected_queue = (Scsi_Cmnd volatile *)tmp->host_scribble; } tmp->host_scribble = 0; goto ldv_28476; } else { } prev = tmp; tmp = (Scsi_Cmnd *)tmp->host_scribble; ldv_28478: ; if ((unsigned long )tmp != (unsigned long )((Scsi_Cmnd *)0)) { goto ldv_28477; } else { } ldv_28476: ; if ((unsigned long )tmp == (unsigned long )((Scsi_Cmnd *)0)) { printk("<3>scsi%d : warning : target bitmask %02x lun %d not in disconnect_queue.\n", instance->host_no, (int )target_mask, (int )lun); abort = 1; } else { } } if (abort != 0) { do_abort(instance); } else { hostdata->connected = (Scsi_Cmnd volatile *)tmp; } return; } } static int NCR5380_abort(Scsi_Cmnd *cmd ) { unsigned int port ; struct Scsi_Host *instance ; struct NCR5380_hostdata *hostdata ; Scsi_Cmnd *tmp ; Scsi_Cmnd **prev ; int tmp___0 ; { instance = (cmd->device)->host; hostdata = (struct NCR5380_hostdata *)(& instance->hostdata); printk("<4>scsi%d : aborting command\n", instance->host_no); scsi_print_command(cmd); NCR5380_print_status(instance); port = (unsigned int )instance->io_port; prev = (Scsi_Cmnd **)(& hostdata->issue_queue); tmp = (Scsi_Cmnd *)hostdata->issue_queue; goto ldv_28488; ldv_28487: ; if ((unsigned long )cmd == (unsigned long )tmp) { *prev = (Scsi_Cmnd *)tmp->host_scribble; tmp->host_scribble = 0; tmp->result = 327680; (*(tmp->scsi_done))(tmp); return (8194); } else { } prev = (Scsi_Cmnd **)(& tmp->host_scribble); tmp = (Scsi_Cmnd *)tmp->host_scribble; ldv_28488: ; if ((unsigned long )tmp != (unsigned long )((Scsi_Cmnd *)0)) { goto ldv_28487; } else { } if ((unsigned long )hostdata->connected != (unsigned long )((Scsi_Cmnd volatile *)0)) { return (8195); } else { } tmp = (Scsi_Cmnd *)hostdata->disconnected_queue; goto ldv_28494; ldv_28493: ; if ((unsigned long )cmd == (unsigned long )tmp) { tmp___0 = NCR5380_select(instance, cmd, (int )cmd->tag); if (tmp___0 != 0) { return (8195); } else { } do_abort(instance); prev = (Scsi_Cmnd **)(& hostdata->disconnected_queue); tmp = (Scsi_Cmnd *)hostdata->disconnected_queue; goto ldv_28491; ldv_28490: ; if ((unsigned long )cmd == (unsigned long )tmp) { *prev = (Scsi_Cmnd *)tmp->host_scribble; tmp->host_scribble = 0; tmp->result = 327680; (*(tmp->scsi_done))(tmp); return (8194); } else { } prev = (Scsi_Cmnd **)(& tmp->host_scribble); tmp = (Scsi_Cmnd *)tmp->host_scribble; ldv_28491: ; if ((unsigned long )tmp != (unsigned long )((Scsi_Cmnd *)0)) { goto ldv_28490; } else { } } else { } tmp = (Scsi_Cmnd *)tmp->host_scribble; ldv_28494: ; if ((unsigned long )tmp != (unsigned long )((Scsi_Cmnd *)0)) { goto ldv_28493; } else { } printk("<4>scsi%d : warning : SCSI command probably completed successfully\n before abortion\n", instance->host_no); return (8195); } } static int NCR5380_bus_reset(Scsi_Cmnd *cmd ) { struct Scsi_Host *instance ; unsigned int port ; { instance = (cmd->device)->host; port = (unsigned int )instance->io_port; NCR5380_print_status(instance); _spin_lock_irq(instance->host_lock); do_reset(instance); _spin_unlock_irq(instance->host_lock); return (8194); } } static struct scsi_host_template dmx3191d_driver_template = {0, "Domex DMX3191D", 0, 0, 0, 0, 0, & NCR5380_queue_command, 0, & NCR5380_abort, 0, 0, & NCR5380_bus_reset, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, "dmx3191d", 0, 32, 7, 128U, (unsigned short)0, 0UL, 2, (unsigned char)0, (unsigned char)0, (unsigned char)0, 0U, (unsigned char)0, (unsigned char)0, (unsigned char)0, 0U, 0, 0, {0, 0}, 0ULL}; static int dmx3191d_probe_one(struct pci_dev *pdev , struct pci_device_id const *id ) { struct Scsi_Host *shost ; unsigned long io ; int error ; int tmp ; struct resource *tmp___0 ; int tmp___1 ; { error = -19; tmp = pci_enable_device(pdev); if (tmp != 0) { goto out; } else { } io = (unsigned long )pdev->resource[0].start; tmp___0 = __request_region(& ioport_resource, (resource_size_t )io, 8ULL, "dmx3191d", 0); if ((unsigned long )tmp___0 == (unsigned long )((struct resource *)0)) { printk("<3>dmx3191: region 0x%lx-0x%lx already reserved\n", io, io + 8UL); goto out_disable_device; } else { } shost = scsi_host_alloc(& dmx3191d_driver_template, 400); if ((unsigned long )shost == (unsigned long )((struct Scsi_Host *)0)) { goto out_release_region; } else { } shost->io_port = io; shost->irq = pdev->irq; NCR5380_init(shost, 24); tmp___1 = request_irq(pdev->irq, & NCR5380_intr, 128UL, "dmx3191d", (void *)shost); if (tmp___1 != 0) { printk("<4>dmx3191: IRQ %d not available - switching to polled mode.\n", pdev->irq); shost->irq = 255U; } else { } pci_set_drvdata(pdev, (void *)shost); error = scsi_add_host(shost, & pdev->dev); if (error != 0) { goto out_free_irq; } else { } scsi_scan_host(shost); return (0); out_free_irq: free_irq(shost->irq, (void *)shost); out_release_region: __release_region(& ioport_resource, (resource_size_t )io, 8ULL); out_disable_device: pci_disable_device(pdev); out: ; return (error); } } static void dmx3191d_remove_one(struct pci_dev *pdev ) { struct Scsi_Host *shost ; void *tmp ; { tmp = pci_get_drvdata(pdev); shost = (struct Scsi_Host *)tmp; scsi_remove_host(shost); NCR5380_exit(shost); if (shost->irq != 255U) { free_irq(shost->irq, (void *)shost); } else { } __release_region(& ioport_resource, (resource_size_t )shost->io_port, 8ULL); pci_disable_device(pdev); scsi_host_put(shost); return; } } static struct pci_device_id dmx3191d_pci_tbl[2U] = { {4938U, 1U, 4294967295U, 4294967295U, 0U, 0U, 4UL}}; struct pci_device_id const __mod_pci_device_table ; static struct pci_driver dmx3191d_pci_driver = {{0, 0}, (char *)"dmx3191d", (struct pci_device_id const *)(& dmx3191d_pci_tbl), & dmx3191d_probe_one, & dmx3191d_remove_one, 0, 0, 0, 0, 0, 0, {0, 0, 0, 0, (_Bool)0, 0, 0, 0, 0, 0, 0, 0, 0}, {{{0U}, 0U, 0U, 0, {0, 0, 0, 0, 0UL}}, {0, 0}}}; static int dmx3191d_init(void) { int tmp ; { tmp = __pci_register_driver(& dmx3191d_pci_driver, & __this_module, "dmx3191d"); return (tmp); } } static void dmx3191d_exit(void) { { pci_unregister_driver(& dmx3191d_pci_driver); return; } } void ldv_check_final_state(void) ; extern void ldv_check_return_value(int ) ; extern void ldv_check_return_value_probe(int ) ; extern void ldv_initialize(void) ; extern void ldv_handler_precall(void) ; extern int nondet_int(void) ; int LDV_IN_INTERRUPT ; int main(void) { struct pci_dev *var_group1 ; struct pci_device_id const *var_dmx3191d_probe_one_0_p1 ; int res_dmx3191d_probe_one_0 ; int ldv_s_dmx3191d_pci_driver_pci_driver ; int tmp ; int tmp___0 ; int tmp___1 ; { ldv_s_dmx3191d_pci_driver_pci_driver = 0; LDV_IN_INTERRUPT = 1; ldv_initialize(); ldv_handler_precall(); tmp = dmx3191d_init(); if (tmp != 0) { goto ldv_final; } else { } goto ldv_28566; ldv_28565: tmp___0 = nondet_int(); switch (tmp___0) { case 0: ; if (ldv_s_dmx3191d_pci_driver_pci_driver == 0) { res_dmx3191d_probe_one_0 = dmx3191d_probe_one(var_group1, var_dmx3191d_probe_one_0_p1); ldv_check_return_value(res_dmx3191d_probe_one_0); ldv_check_return_value_probe(res_dmx3191d_probe_one_0); if (res_dmx3191d_probe_one_0 != 0) { goto ldv_module_exit; } else { } ldv_s_dmx3191d_pci_driver_pci_driver = ldv_s_dmx3191d_pci_driver_pci_driver + 1; } else { } goto ldv_28562; case 1: ; if (ldv_s_dmx3191d_pci_driver_pci_driver == 1) { ldv_handler_precall(); dmx3191d_remove_one(var_group1); ldv_s_dmx3191d_pci_driver_pci_driver = 0; } else { } goto ldv_28562; default: ; goto ldv_28562; } ldv_28562: ; ldv_28566: tmp___1 = nondet_int(); if (tmp___1 != 0 || ldv_s_dmx3191d_pci_driver_pci_driver != 0) { goto ldv_28565; } else { } ldv_module_exit: ldv_handler_precall(); dmx3191d_exit(); ldv_final: ldv_check_final_state(); return 0; } } __inline static void ldv_error(void) { { LDV_ERROR: {reach_error();abort();} } } extern int ldv_undef_int(void) ; long ldv__builtin_expect(long exp , long c ) { { return (exp); } } int ldv_module_refcounter = 1; void ldv_module_get(struct module *module ) { { if (module) { ldv_module_refcounter = ldv_module_refcounter + 1; } else { } return; } } int ldv_try_module_get(struct module *module ) { int module_get_succeeded ; { if (module) { module_get_succeeded = ldv_undef_int(); if (module_get_succeeded == 1) { ldv_module_refcounter = ldv_module_refcounter + 1; return (1); } else { return (0); } } else { } return (0); } } void ldv_module_put(struct module *module ) { { if (module) { if (ldv_module_refcounter > 1) { } else { ldv_error(); } ldv_module_refcounter = ldv_module_refcounter - 1; } else { } return; } } void ldv_module_put_and_exit(void) { { ldv_module_put((struct module *)1); LDV_STOP: goto LDV_STOP; } } unsigned int ldv_module_refcount(void) { { return (ldv_module_refcounter - 1); } } void ldv_check_final_state(void) { { if (ldv_module_refcounter == 1) { } else { ldv_error(); } return; } }