/* auto-generated by gen_syscalls.py, don't edit */ #ifndef Z_INCLUDE_SYSCALLS_ESPI_SAF_H #define Z_INCLUDE_SYSCALLS_ESPI_SAF_H #include #ifndef _ASMLANGUAGE #include #include #include #include #ifdef __cplusplus extern "C" { #endif extern int z_impl_espi_saf_config(const struct device * dev, const struct espi_saf_cfg * cfg); __pinned_func static inline int espi_saf_config(const struct device * dev, const struct espi_saf_cfg * cfg) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; const struct espi_saf_cfg * val; } parm1 = { .val = cfg }; return (int) arch_syscall_invoke2(parm0.x, parm1.x, K_SYSCALL_ESPI_SAF_CONFIG); } #endif compiler_barrier(); return z_impl_espi_saf_config(dev, cfg); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define espi_saf_config(dev, cfg) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_ESPI_SAF_CONFIG, espi_saf_config, dev, cfg); syscall__retval = espi_saf_config(dev, cfg); sys_port_trace_syscall_exit(K_SYSCALL_ESPI_SAF_CONFIG, espi_saf_config, dev, cfg, syscall__retval); syscall__retval; }) #endif #endif extern int z_impl_espi_saf_set_protection_regions(const struct device * dev, const struct espi_saf_protection * pr); __pinned_func static inline int espi_saf_set_protection_regions(const struct device * dev, const struct espi_saf_protection * pr) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; const struct espi_saf_protection * val; } parm1 = { .val = pr }; return (int) arch_syscall_invoke2(parm0.x, parm1.x, K_SYSCALL_ESPI_SAF_SET_PROTECTION_REGIONS); } #endif compiler_barrier(); return z_impl_espi_saf_set_protection_regions(dev, pr); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define espi_saf_set_protection_regions(dev, pr) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_ESPI_SAF_SET_PROTECTION_REGIONS, espi_saf_set_protection_regions, dev, pr); syscall__retval = espi_saf_set_protection_regions(dev, pr); sys_port_trace_syscall_exit(K_SYSCALL_ESPI_SAF_SET_PROTECTION_REGIONS, espi_saf_set_protection_regions, dev, pr, syscall__retval); syscall__retval; }) #endif #endif extern int z_impl_espi_saf_activate(const struct device * dev); __pinned_func static inline int espi_saf_activate(const struct device * dev) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; return (int) arch_syscall_invoke1(parm0.x, K_SYSCALL_ESPI_SAF_ACTIVATE); } #endif compiler_barrier(); return z_impl_espi_saf_activate(dev); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define espi_saf_activate(dev) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_ESPI_SAF_ACTIVATE, espi_saf_activate, dev); syscall__retval = espi_saf_activate(dev); sys_port_trace_syscall_exit(K_SYSCALL_ESPI_SAF_ACTIVATE, espi_saf_activate, dev, syscall__retval); syscall__retval; }) #endif #endif extern bool z_impl_espi_saf_get_channel_status(const struct device * dev); __pinned_func static inline bool espi_saf_get_channel_status(const struct device * dev) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; return (bool) arch_syscall_invoke1(parm0.x, K_SYSCALL_ESPI_SAF_GET_CHANNEL_STATUS); } #endif compiler_barrier(); return z_impl_espi_saf_get_channel_status(dev); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define espi_saf_get_channel_status(dev) ({ bool syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_ESPI_SAF_GET_CHANNEL_STATUS, espi_saf_get_channel_status, dev); syscall__retval = espi_saf_get_channel_status(dev); sys_port_trace_syscall_exit(K_SYSCALL_ESPI_SAF_GET_CHANNEL_STATUS, espi_saf_get_channel_status, dev, syscall__retval); syscall__retval; }) #endif #endif extern int z_impl_espi_saf_flash_read(const struct device * dev, struct espi_saf_packet * pckt); __pinned_func static inline int espi_saf_flash_read(const struct device * dev, struct espi_saf_packet * pckt) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; struct espi_saf_packet * val; } parm1 = { .val = pckt }; return (int) arch_syscall_invoke2(parm0.x, parm1.x, K_SYSCALL_ESPI_SAF_FLASH_READ); } #endif compiler_barrier(); return z_impl_espi_saf_flash_read(dev, pckt); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define espi_saf_flash_read(dev, pckt) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_ESPI_SAF_FLASH_READ, espi_saf_flash_read, dev, pckt); syscall__retval = espi_saf_flash_read(dev, pckt); sys_port_trace_syscall_exit(K_SYSCALL_ESPI_SAF_FLASH_READ, espi_saf_flash_read, dev, pckt, syscall__retval); syscall__retval; }) #endif #endif extern int z_impl_espi_saf_flash_write(const struct device * dev, struct espi_saf_packet * pckt); __pinned_func static inline int espi_saf_flash_write(const struct device * dev, struct espi_saf_packet * pckt) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; struct espi_saf_packet * val; } parm1 = { .val = pckt }; return (int) arch_syscall_invoke2(parm0.x, parm1.x, K_SYSCALL_ESPI_SAF_FLASH_WRITE); } #endif compiler_barrier(); return z_impl_espi_saf_flash_write(dev, pckt); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define espi_saf_flash_write(dev, pckt) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_ESPI_SAF_FLASH_WRITE, espi_saf_flash_write, dev, pckt); syscall__retval = espi_saf_flash_write(dev, pckt); sys_port_trace_syscall_exit(K_SYSCALL_ESPI_SAF_FLASH_WRITE, espi_saf_flash_write, dev, pckt, syscall__retval); syscall__retval; }) #endif #endif extern int z_impl_espi_saf_flash_erase(const struct device * dev, struct espi_saf_packet * pckt); __pinned_func static inline int espi_saf_flash_erase(const struct device * dev, struct espi_saf_packet * pckt) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; struct espi_saf_packet * val; } parm1 = { .val = pckt }; return (int) arch_syscall_invoke2(parm0.x, parm1.x, K_SYSCALL_ESPI_SAF_FLASH_ERASE); } #endif compiler_barrier(); return z_impl_espi_saf_flash_erase(dev, pckt); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define espi_saf_flash_erase(dev, pckt) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_ESPI_SAF_FLASH_ERASE, espi_saf_flash_erase, dev, pckt); syscall__retval = espi_saf_flash_erase(dev, pckt); sys_port_trace_syscall_exit(K_SYSCALL_ESPI_SAF_FLASH_ERASE, espi_saf_flash_erase, dev, pckt, syscall__retval); syscall__retval; }) #endif #endif extern int z_impl_espi_saf_flash_unsuccess(const struct device * dev, struct espi_saf_packet * pckt); __pinned_func static inline int espi_saf_flash_unsuccess(const struct device * dev, struct espi_saf_packet * pckt) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; struct espi_saf_packet * val; } parm1 = { .val = pckt }; return (int) arch_syscall_invoke2(parm0.x, parm1.x, K_SYSCALL_ESPI_SAF_FLASH_UNSUCCESS); } #endif compiler_barrier(); return z_impl_espi_saf_flash_unsuccess(dev, pckt); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define espi_saf_flash_unsuccess(dev, pckt) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_ESPI_SAF_FLASH_UNSUCCESS, espi_saf_flash_unsuccess, dev, pckt); syscall__retval = espi_saf_flash_unsuccess(dev, pckt); sys_port_trace_syscall_exit(K_SYSCALL_ESPI_SAF_FLASH_UNSUCCESS, espi_saf_flash_unsuccess, dev, pckt, syscall__retval); syscall__retval; }) #endif #endif #ifdef __cplusplus } #endif #endif #endif /* include guard */