// Skip function: __VERIFIER_error // Skip function: __VERIFIER_nondet_int // Skip function: __VERIFIER_nondet_ulong // Function: __const_udelay // with type: void __const_udelay(unsigned long) // with return type: void void __const_udelay(unsigned long arg0) { // Void type return; } // Function: __dev_kfree_skb_irq // with type: void __dev_kfree_skb_irq(struct sk_buff *, enum skb_free_reason ) // with return type: void void __dev_kfree_skb_irq(struct sk_buff *arg0, enum skb_free_reason arg1) { // Void type return; } // Function: __ldv_spin_lock // with type: void __ldv_spin_lock(spinlock_t *) // with return type: void void __ldv_spin_lock(spinlock_t *arg0) { // Void type return; } // Function: __might_sleep // with type: void __might_sleep(const char *, int, int) // with return type: void void __might_sleep(const char *arg0, int arg1, int arg2) { // Void type return; } // Function: __napi_schedule // with type: void __napi_schedule(struct napi_struct *) // with return type: void void __napi_schedule(struct napi_struct *arg0) { // Void type return; } // Function: __netdev_alloc_skb // with type: struct sk_buff *__netdev_alloc_skb(struct net_device *, unsigned int, gfp_t ) // with return type: (struct sk_buff)* struct sk_buff *__netdev_alloc_skb(struct net_device *arg0, unsigned int arg1, gfp_t arg2) { // Pointer type struct sk_buff *skb = ldv_malloc(sizeof(struct sk_buff)); if(skb) { skb->dev = arg0; skb->head = ldv_malloc(arg1); skb->data = skb->head; skb->tail = 0; } return skb; } // Function: __netif_schedule // with type: void __netif_schedule(struct Qdisc *) // with return type: void void __netif_schedule(struct Qdisc *arg0) { // Void type return; } // Function: __pci_enable_wake // with type: int __pci_enable_wake(struct pci_dev *, pci_power_t , bool , bool ) // with return type: int int __VERIFIER_nondet_int(void); int __pci_enable_wake(struct pci_dev *arg0, pci_power_t arg1, bool arg2, bool arg3) { // Simple type return __VERIFIER_nondet_int(); } // Function: __pci_register_driver // with type: int __pci_register_driver(struct pci_driver *, struct module *, const char *) // with return type: int int __VERIFIER_nondet_int(void); int __pci_register_driver(struct pci_driver *arg0, struct module *arg1, const char *arg2) { // Simple type return __VERIFIER_nondet_int(); } // Function: __phys_addr // with type: unsigned long int __phys_addr(unsigned long) // with return type: unsigned long int unsigned long __VERIFIER_nondet_ulong(void); unsigned long int __phys_addr(unsigned long arg0) { // Simple type return __VERIFIER_nondet_ulong(); } // Function: __platform_driver_register // with type: int __platform_driver_register(struct platform_driver *, struct module *) // with return type: int int __VERIFIER_nondet_int(void); int __platform_driver_register(struct platform_driver *arg0, struct module *arg1) { // Simple type return __VERIFIER_nondet_int(); } // Function: __pskb_pull_tail // with type: unsigned char *__pskb_pull_tail(struct sk_buff *, int) // with return type: (unsigned char)* unsigned char *__pskb_pull_tail(struct sk_buff *arg0, int arg1) { // Pointer type return ldv_malloc(sizeof(unsigned char)); } // Function: __raw_spin_lock_init // with type: void __raw_spin_lock_init(raw_spinlock_t *, const char *, struct lock_class_key *) // with return type: void void __raw_spin_lock_init(raw_spinlock_t *arg0, const char *arg1, struct lock_class_key *arg2) { // Void type return; } // Function: _raw_spin_lock // with type: void _raw_spin_lock(raw_spinlock_t *) // with return type: void void _raw_spin_lock(raw_spinlock_t *arg0) { // Void type return; } // Function: _raw_spin_lock_irq // with type: void _raw_spin_lock_irq(raw_spinlock_t *) // with return type: void void _raw_spin_lock_irq(raw_spinlock_t *arg0) { // Void type return; } // Function: _raw_spin_unlock // with type: void _raw_spin_unlock(raw_spinlock_t *) // with return type: void void _raw_spin_unlock(raw_spinlock_t *arg0) { // Void type return; } // Function: _raw_spin_unlock_irq // with type: void _raw_spin_unlock_irq(raw_spinlock_t *) // with return type: void void _raw_spin_unlock_irq(raw_spinlock_t *arg0) { // Void type return; } // Function: _raw_spin_unlock_irqrestore // with type: void _raw_spin_unlock_irqrestore(raw_spinlock_t *, unsigned long) // with return type: void void _raw_spin_unlock_irqrestore(raw_spinlock_t *arg0, unsigned long arg1) { // Void type return; } // Function: alloc_etherdev_mqs // with type: struct net_device *alloc_etherdev_mqs(int, unsigned int, unsigned int) // with return type: (struct net_device)* struct net_device *alloc_etherdev_mqs(int arg0, unsigned int arg1, unsigned int arg2) { // Pointer type return ldv_malloc(sizeof(struct net_device)); } // Function: bitrev32 // with type: u32 bitrev32(u32 ) // with return type: u32 unsigned int __VERIFIER_nondet_uint(void); u32 bitrev32(u32 arg0) { // Typedef type // Real type: unsigned int // Simple type return __VERIFIER_nondet_uint(); } // Skip function: calloc // Function: consume_skb // with type: void consume_skb(struct sk_buff *) // with return type: void void consume_skb(struct sk_buff *arg0) { // Void type return; } // Function: crc_ccitt // with type: u16 crc_ccitt(u16 , const u8 *, size_t ) // with return type: u16 unsigned short __VERIFIER_nondet_ushort(void); u16 crc_ccitt(u16 arg0, const u8 *arg1, size_t arg2) { // Typedef type // Real type: unsigned short // Simple type return __VERIFIER_nondet_ushort(); } // Function: debug_dma_alloc_coherent // with type: void debug_dma_alloc_coherent(struct device *, size_t , dma_addr_t , void *) // with return type: void void debug_dma_alloc_coherent(struct device *arg0, size_t arg1, dma_addr_t arg2, void *arg3) { // Void type return; } // Function: debug_dma_free_coherent // with type: void debug_dma_free_coherent(struct device *, size_t , void *, dma_addr_t ) // with return type: void void debug_dma_free_coherent(struct device *arg0, size_t arg1, void *arg2, dma_addr_t arg3) { // Void type return; } // Function: debug_dma_map_page // with type: void debug_dma_map_page(struct device *, struct page *, size_t , size_t , int, dma_addr_t , bool ) // with return type: void void debug_dma_map_page(struct device *arg0, struct page *arg1, size_t arg2, size_t arg3, int arg4, dma_addr_t arg5, bool arg6) { // Void type return; } // Function: debug_dma_sync_single_for_cpu // with type: void debug_dma_sync_single_for_cpu(struct device *, dma_addr_t , size_t , int) // with return type: void void debug_dma_sync_single_for_cpu(struct device *arg0, dma_addr_t arg1, size_t arg2, int arg3) { // Void type return; } // Function: debug_dma_sync_single_for_device // with type: void debug_dma_sync_single_for_device(struct device *, dma_addr_t , size_t , int) // with return type: void void debug_dma_sync_single_for_device(struct device *arg0, dma_addr_t arg1, size_t arg2, int arg3) { // Void type return; } // Function: debug_dma_unmap_page // with type: void debug_dma_unmap_page(struct device *, dma_addr_t , size_t , int, bool ) // with return type: void void debug_dma_unmap_page(struct device *arg0, dma_addr_t arg1, size_t arg2, int arg3, bool arg4) { // Void type return; } // Function: debug_lockdep_rcu_enabled // with type: int debug_lockdep_rcu_enabled() // with return type: int int __VERIFIER_nondet_int(void); int debug_lockdep_rcu_enabled() { // Simple type return __VERIFIER_nondet_int(); } // Function: dev_driver_string // with type: const char *dev_driver_string(const struct device *) // with return type: (const char)* const char *dev_driver_string(const struct device *arg0) { // Pointer type return ldv_malloc(sizeof(char)); } // Function: dev_err // with type: int dev_err(const struct device *, const char *, ...) // with return type: int int __VERIFIER_nondet_int(void); int dev_err(const struct device *arg0, const char *arg1, ...) { // Simple type return __VERIFIER_nondet_int(); } // Function: dev_notice // with type: int dev_notice(const struct device *, const char *, ...) // with return type: int int __VERIFIER_nondet_int(void); int dev_notice(const struct device *arg0, const char *arg1, ...) { // Simple type return __VERIFIER_nondet_int(); } // Function: disable_irq // with type: void disable_irq(unsigned int) // with return type: void void disable_irq(unsigned int arg0) { // Void type return; } // Function: enable_irq // with type: void enable_irq(unsigned int) // with return type: void void enable_irq(unsigned int arg0) { // Void type return; } // Function: eth_mac_addr // with type: int eth_mac_addr(struct net_device *, void *) // with return type: int int __VERIFIER_nondet_int(void); int eth_mac_addr(struct net_device *arg0, void *arg1) { // Simple type return __VERIFIER_nondet_int(); } // Function: eth_type_trans // with type: __be16 eth_type_trans(struct sk_buff *, struct net_device *) // with return type: __be16 unsigned short __VERIFIER_nondet_ushort(void); __be16 eth_type_trans(struct sk_buff *arg0, struct net_device *arg1) { // Typedef type // Real type: __u16 // Typedef type // Real type: unsigned short // Simple type return __VERIFIER_nondet_ushort(); } // Function: eth_validate_addr // with type: int eth_validate_addr(struct net_device *) // with return type: int int __VERIFIER_nondet_int(void); int eth_validate_addr(struct net_device *arg0) { // Simple type return __VERIFIER_nondet_int(); } // Function: find_first_bit // with type: unsigned long int find_first_bit(const unsigned long *, unsigned long) // with return type: unsigned long int unsigned long __VERIFIER_nondet_ulong(void); unsigned long int find_first_bit(const unsigned long *arg0, unsigned long arg1) { // Simple type return __VERIFIER_nondet_ulong(); } // Function: find_next_bit // with type: unsigned long int find_next_bit(const unsigned long *, unsigned long, unsigned long) // with return type: unsigned long int unsigned long __VERIFIER_nondet_ulong(void); unsigned long int find_next_bit(const unsigned long *arg0, unsigned long arg1, unsigned long arg2) { // Simple type return __VERIFIER_nondet_ulong(); } // Skip function: free // Function: free_irq // with type: void free_irq(unsigned int, void *) // with return type: void void free_irq(unsigned int arg0, void *arg1) { // Void type return; } // Function: free_netdev // with type: void free_netdev(struct net_device *) // with return type: void void free_netdev(struct net_device *arg0) { // Void type return; } // Function: ioremap_nocache // with type: void *ioremap_nocache(resource_size_t , unsigned long) // with return type: (void)* void *ioremap_nocache(resource_size_t arg0, unsigned long arg1) { // Pointer type return ldv_malloc(0UL); } // Function: iounmap // with type: void iounmap(volatile void *) // with return type: void void iounmap(volatile void *arg0) { // Void type return; } // Skip function: kfree // Function: kfree_skb // with type: void kfree_skb(struct sk_buff *) // with return type: void void kfree_skb(struct sk_buff *arg0) { // Void type return; } // Function: ldv_after_alloc // with type: void ldv_after_alloc(void *) // with return type: void void ldv_after_alloc(void *arg0) { // Void type return; } // Function: ldv_assert // with type: void ldv_assert(const char *, int) // with return type: void void ldv_assert(const char *arg0, int arg1) { // Void type return; } // Function: ldv_check_alloc_flags // with type: void ldv_check_alloc_flags(gfp_t ) // with return type: void void ldv_check_alloc_flags(gfp_t arg0) { // Void type return; } // Function: ldv_initialize // with type: void ldv_initialize() // with return type: void void ldv_initialize() { // Void type return; } // Function: ldv_pre_probe // with type: void ldv_pre_probe() // with return type: void void ldv_pre_probe() { // Void type return; } // Function: ldv_pre_register_netdev // with type: int ldv_pre_register_netdev() // with return type: int int __VERIFIER_nondet_int(void); int ldv_pre_register_netdev() { // Simple type return __VERIFIER_nondet_int(); } // Function: ldv_switch_to_interrupt_context // with type: void ldv_switch_to_interrupt_context() // with return type: void void ldv_switch_to_interrupt_context() { // Void type return; } // Function: ldv_switch_to_process_context // with type: void ldv_switch_to_process_context() // with return type: void void ldv_switch_to_process_context() { // Void type return; } // Function: lock_acquire // with type: void lock_acquire(struct lockdep_map *, unsigned int, int, int, int, struct lockdep_map *, unsigned long) // with return type: void void lock_acquire(struct lockdep_map *arg0, unsigned int arg1, int arg2, int arg3, int arg4, struct lockdep_map *arg5, unsigned long arg6) { // Void type return; } // Function: lock_is_held // with type: int lock_is_held(struct lockdep_map *) // with return type: int int __VERIFIER_nondet_int(void); int lock_is_held(struct lockdep_map *arg0) { // Simple type return __VERIFIER_nondet_int(); } // Function: lock_release // with type: void lock_release(struct lockdep_map *, int, unsigned long) // with return type: void void lock_release(struct lockdep_map *arg0, int arg1, unsigned long arg2) { // Void type return; } // Function: lockdep_rcu_suspicious // with type: void lockdep_rcu_suspicious(const char *, const int, const char *) // with return type: void void lockdep_rcu_suspicious(const char *arg0, const int arg1, const char *arg2) { // Void type return; } // Skip function: malloc // Skip function: memcpy // Skip function: memmove // Skip function: memset // Function: msleep // with type: void msleep(unsigned int) // with return type: void void msleep(unsigned int arg0) { // Void type return; } // Function: napi_complete // with type: void napi_complete(struct napi_struct *) // with return type: void void napi_complete(struct napi_struct *arg0) { // Void type return; } // Function: netif_carrier_off // with type: void netif_carrier_off(struct net_device *) // with return type: void void netif_carrier_off(struct net_device *arg0) { // Void type return; } // Function: netif_carrier_on // with type: void netif_carrier_on(struct net_device *) // with return type: void void netif_carrier_on(struct net_device *arg0) { // Void type return; } // Function: netif_device_attach // with type: void netif_device_attach(struct net_device *) // with return type: void void netif_device_attach(struct net_device *arg0) { // Void type return; } // Function: netif_device_detach // with type: void netif_device_detach(struct net_device *) // with return type: void void netif_device_detach(struct net_device *arg0) { // Void type return; } // Function: netif_napi_add // with type: void netif_napi_add(struct net_device *, struct napi_struct *, int (*)(struct napi_struct *, int), int) // with return type: void void netif_napi_add(struct net_device *arg0, struct napi_struct *arg1, int (*arg2)(struct napi_struct *, int), int arg3) { // Void type return; } // Function: netif_napi_del // with type: void netif_napi_del(struct napi_struct *) // with return type: void void netif_napi_del(struct napi_struct *arg0) { // Void type return; } // Function: netif_receive_skb // with type: int netif_receive_skb(struct sk_buff *) // with return type: int int __VERIFIER_nondet_int(void); int netif_receive_skb(struct sk_buff *arg0) { // Simple type return __VERIFIER_nondet_int(); } // Function: netpoll_trap // with type: int netpoll_trap() // with return type: int int __VERIFIER_nondet_int(void); int netpoll_trap() { // Simple type return __VERIFIER_nondet_int(); } // Function: pci_disable_device // with type: void pci_disable_device(struct pci_dev *) // with return type: void void pci_disable_device(struct pci_dev *arg0) { // Void type return; } // Function: pci_enable_device // with type: int pci_enable_device(struct pci_dev *) // with return type: int int __VERIFIER_nondet_int(void); int pci_enable_device(struct pci_dev *arg0) { // Simple type return __VERIFIER_nondet_int(); } // Function: pci_release_regions // with type: void pci_release_regions(struct pci_dev *) // with return type: void void pci_release_regions(struct pci_dev *arg0) { // Void type return; } // Function: pci_request_regions // with type: int pci_request_regions(struct pci_dev *, const char *) // with return type: int int __VERIFIER_nondet_int(void); int pci_request_regions(struct pci_dev *arg0, const char *arg1) { // Simple type return __VERIFIER_nondet_int(); } // Function: pci_restore_state // with type: void pci_restore_state(struct pci_dev *) // with return type: void void pci_restore_state(struct pci_dev *arg0) { // Void type return; } // Function: pci_save_state // with type: int pci_save_state(struct pci_dev *) // with return type: int int __VERIFIER_nondet_int(void); int pci_save_state(struct pci_dev *arg0) { // Simple type return __VERIFIER_nondet_int(); } // Function: pci_set_master // with type: void pci_set_master(struct pci_dev *) // with return type: void void pci_set_master(struct pci_dev *arg0) { // Void type return; } // Function: pci_set_power_state // with type: int pci_set_power_state(struct pci_dev *, pci_power_t ) // with return type: int int __VERIFIER_nondet_int(void); int pci_set_power_state(struct pci_dev *arg0, pci_power_t arg1) { // Simple type return __VERIFIER_nondet_int(); } // Function: pci_unregister_driver // with type: void pci_unregister_driver(struct pci_driver *) // with return type: void void pci_unregister_driver(struct pci_driver *arg0) { // Void type return; } // Function: platform_driver_unregister // with type: void platform_driver_unregister(struct platform_driver *) // with return type: void void platform_driver_unregister(struct platform_driver *arg0) { // Void type return; } // Function: printk // with type: int printk(const char *, ...) // with return type: int int __VERIFIER_nondet_int(void); int printk(const char *arg0, ...) { // Simple type return __VERIFIER_nondet_int(); } // Function: rcu_is_watching // with type: bool rcu_is_watching() // with return type: bool bool __VERIFIER_nondet_bool(void); bool rcu_is_watching() { // Typedef type // Real type: _Bool // Simple type return __VERIFIER_nondet_bool(); } // Function: rcu_lockdep_current_cpu_online // with type: bool rcu_lockdep_current_cpu_online() // with return type: bool bool __VERIFIER_nondet_bool(void); bool rcu_lockdep_current_cpu_online() { // Typedef type // Real type: _Bool // Simple type return __VERIFIER_nondet_bool(); } // Function: register_inetaddr_notifier // with type: int register_inetaddr_notifier(struct notifier_block *) // with return type: int int __VERIFIER_nondet_int(void); int register_inetaddr_notifier(struct notifier_block *arg0) { // Simple type return __VERIFIER_nondet_int(); } // Function: register_netdev // with type: int register_netdev(struct net_device *) // with return type: int int __VERIFIER_nondet_int(void); int register_netdev(struct net_device *arg0) { // Simple type return __VERIFIER_nondet_int(); } // Function: request_threaded_irq // with type: int request_threaded_irq(unsigned int, irqreturn_t (*)(int, void *), irqreturn_t (*)(int, void *), unsigned long, const char *, void *) // with return type: int int __VERIFIER_nondet_int(void); int request_threaded_irq(unsigned int arg0, irqreturn_t (*arg1)(int, void *), irqreturn_t (*arg2)(int, void *), unsigned long arg3, const char *arg4, void *arg5) { // Simple type return __VERIFIER_nondet_int(); } // Function: skb_pad // with type: int skb_pad(struct sk_buff *, int) // with return type: int int __VERIFIER_nondet_int(void); int skb_pad(struct sk_buff *arg0, int arg1) { // Simple type return __VERIFIER_nondet_int(); } // Function: skb_put // with type: unsigned char *skb_put(struct sk_buff *, unsigned int) // with return type: (unsigned char)* unsigned char *skb_put(struct sk_buff *arg0, unsigned int arg1) { unsigned char *ret_val = arg0->data + arg0->tail; // a more precise implementation of skb_put would actually re-allocate memory // here arg0->tail += arg1; // Pointer type return ret_val; } // Function: strlcpy // with type: size_t strlcpy(char *, const char *, size_t ) // with return type: size_t unsigned long __VERIFIER_nondet_ulong(void); size_t strlcpy(char *arg0, const char *arg1, size_t arg2) { // Typedef type // Real type: __kernel_size_t // Typedef type // Real type: __kernel_ulong_t // Typedef type // Real type: unsigned long // Simple type return __VERIFIER_nondet_ulong(); } // Function: unregister_inetaddr_notifier // with type: int unregister_inetaddr_notifier(struct notifier_block *) // with return type: int int __VERIFIER_nondet_int(void); int unregister_inetaddr_notifier(struct notifier_block *arg0) { // Simple type return __VERIFIER_nondet_int(); } // Function: unregister_netdev // with type: void unregister_netdev(struct net_device *) // with return type: void void unregister_netdev(struct net_device *arg0) { // Void type return; } // Function: warn_slowpath_null // with type: void warn_slowpath_null(const char *, const int) // with return type: void void warn_slowpath_null(const char *arg0, const int arg1) { // Void type return; }