/* auto-generated by gen_syscalls.py, don't edit */ #ifndef Z_INCLUDE_SYSCALLS_LED_H #define Z_INCLUDE_SYSCALLS_LED_H #include #ifndef _ASMLANGUAGE #include #include #include #include #ifdef __cplusplus extern "C" { #endif extern int z_impl_led_blink(const struct device * dev, uint32_t led, uint32_t delay_on, uint32_t delay_off); __pinned_func static inline int led_blink(const struct device * dev, uint32_t led, uint32_t delay_on, uint32_t delay_off) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; uint32_t val; } parm1 = { .val = led }; union { uintptr_t x; uint32_t val; } parm2 = { .val = delay_on }; union { uintptr_t x; uint32_t val; } parm3 = { .val = delay_off }; return (int) arch_syscall_invoke4(parm0.x, parm1.x, parm2.x, parm3.x, K_SYSCALL_LED_BLINK); } #endif compiler_barrier(); return z_impl_led_blink(dev, led, delay_on, delay_off); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define led_blink(dev, led, delay_on, delay_off) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_LED_BLINK, led_blink, dev, led, delay_on, delay_off); syscall__retval = led_blink(dev, led, delay_on, delay_off); sys_port_trace_syscall_exit(K_SYSCALL_LED_BLINK, led_blink, dev, led, delay_on, delay_off, syscall__retval); syscall__retval; }) #endif #endif extern int z_impl_led_get_info(const struct device * dev, uint32_t led, const struct led_info ** info); __pinned_func static inline int led_get_info(const struct device * dev, uint32_t led, const struct led_info ** info) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; uint32_t val; } parm1 = { .val = led }; union { uintptr_t x; const struct led_info ** val; } parm2 = { .val = info }; return (int) arch_syscall_invoke3(parm0.x, parm1.x, parm2.x, K_SYSCALL_LED_GET_INFO); } #endif compiler_barrier(); return z_impl_led_get_info(dev, led, info); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define led_get_info(dev, led, info) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_LED_GET_INFO, led_get_info, dev, led, info); syscall__retval = led_get_info(dev, led, info); sys_port_trace_syscall_exit(K_SYSCALL_LED_GET_INFO, led_get_info, dev, led, info, syscall__retval); syscall__retval; }) #endif #endif extern int z_impl_led_set_brightness(const struct device * dev, uint32_t led, uint8_t value); __pinned_func static inline int led_set_brightness(const struct device * dev, uint32_t led, uint8_t value) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; uint32_t val; } parm1 = { .val = led }; union { uintptr_t x; uint8_t val; } parm2 = { .val = value }; return (int) arch_syscall_invoke3(parm0.x, parm1.x, parm2.x, K_SYSCALL_LED_SET_BRIGHTNESS); } #endif compiler_barrier(); return z_impl_led_set_brightness(dev, led, value); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define led_set_brightness(dev, led, value) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_LED_SET_BRIGHTNESS, led_set_brightness, dev, led, value); syscall__retval = led_set_brightness(dev, led, value); sys_port_trace_syscall_exit(K_SYSCALL_LED_SET_BRIGHTNESS, led_set_brightness, dev, led, value, syscall__retval); syscall__retval; }) #endif #endif extern int z_impl_led_write_channels(const struct device * dev, uint32_t start_channel, uint32_t num_channels, const uint8_t * buf); __pinned_func static inline int led_write_channels(const struct device * dev, uint32_t start_channel, uint32_t num_channels, const uint8_t * buf) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; uint32_t val; } parm1 = { .val = start_channel }; union { uintptr_t x; uint32_t val; } parm2 = { .val = num_channels }; union { uintptr_t x; const uint8_t * val; } parm3 = { .val = buf }; return (int) arch_syscall_invoke4(parm0.x, parm1.x, parm2.x, parm3.x, K_SYSCALL_LED_WRITE_CHANNELS); } #endif compiler_barrier(); return z_impl_led_write_channels(dev, start_channel, num_channels, buf); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define led_write_channels(dev, start_channel, num_channels, buf) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_LED_WRITE_CHANNELS, led_write_channels, dev, start_channel, num_channels, buf); syscall__retval = led_write_channels(dev, start_channel, num_channels, buf); sys_port_trace_syscall_exit(K_SYSCALL_LED_WRITE_CHANNELS, led_write_channels, dev, start_channel, num_channels, buf, syscall__retval); syscall__retval; }) #endif #endif extern int z_impl_led_set_channel(const struct device * dev, uint32_t channel, uint8_t value); __pinned_func static inline int led_set_channel(const struct device * dev, uint32_t channel, uint8_t value) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; uint32_t val; } parm1 = { .val = channel }; union { uintptr_t x; uint8_t val; } parm2 = { .val = value }; return (int) arch_syscall_invoke3(parm0.x, parm1.x, parm2.x, K_SYSCALL_LED_SET_CHANNEL); } #endif compiler_barrier(); return z_impl_led_set_channel(dev, channel, value); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define led_set_channel(dev, channel, value) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_LED_SET_CHANNEL, led_set_channel, dev, channel, value); syscall__retval = led_set_channel(dev, channel, value); sys_port_trace_syscall_exit(K_SYSCALL_LED_SET_CHANNEL, led_set_channel, dev, channel, value, syscall__retval); syscall__retval; }) #endif #endif extern int z_impl_led_set_color(const struct device * dev, uint32_t led, uint8_t num_colors, const uint8_t * color); __pinned_func static inline int led_set_color(const struct device * dev, uint32_t led, uint8_t num_colors, const uint8_t * color) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; uint32_t val; } parm1 = { .val = led }; union { uintptr_t x; uint8_t val; } parm2 = { .val = num_colors }; union { uintptr_t x; const uint8_t * val; } parm3 = { .val = color }; return (int) arch_syscall_invoke4(parm0.x, parm1.x, parm2.x, parm3.x, K_SYSCALL_LED_SET_COLOR); } #endif compiler_barrier(); return z_impl_led_set_color(dev, led, num_colors, color); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define led_set_color(dev, led, num_colors, color) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_LED_SET_COLOR, led_set_color, dev, led, num_colors, color); syscall__retval = led_set_color(dev, led, num_colors, color); sys_port_trace_syscall_exit(K_SYSCALL_LED_SET_COLOR, led_set_color, dev, led, num_colors, color, syscall__retval); syscall__retval; }) #endif #endif extern int z_impl_led_on(const struct device * dev, uint32_t led); __pinned_func static inline int led_on(const struct device * dev, uint32_t led) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; uint32_t val; } parm1 = { .val = led }; return (int) arch_syscall_invoke2(parm0.x, parm1.x, K_SYSCALL_LED_ON); } #endif compiler_barrier(); return z_impl_led_on(dev, led); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define led_on(dev, led) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_LED_ON, led_on, dev, led); syscall__retval = led_on(dev, led); sys_port_trace_syscall_exit(K_SYSCALL_LED_ON, led_on, dev, led, syscall__retval); syscall__retval; }) #endif #endif extern int z_impl_led_off(const struct device * dev, uint32_t led); __pinned_func static inline int led_off(const struct device * dev, uint32_t led) { #ifdef CONFIG_USERSPACE if (z_syscall_trap()) { union { uintptr_t x; const struct device * val; } parm0 = { .val = dev }; union { uintptr_t x; uint32_t val; } parm1 = { .val = led }; return (int) arch_syscall_invoke2(parm0.x, parm1.x, K_SYSCALL_LED_OFF); } #endif compiler_barrier(); return z_impl_led_off(dev, led); } #if defined(CONFIG_TRACING_SYSCALL) #ifndef DISABLE_SYSCALL_TRACING #define led_off(dev, led) ({ int syscall__retval; sys_port_trace_syscall_enter(K_SYSCALL_LED_OFF, led_off, dev, led); syscall__retval = led_off(dev, led); sys_port_trace_syscall_exit(K_SYSCALL_LED_OFF, led_off, dev, led, syscall__retval); syscall__retval; }) #endif #endif #ifdef __cplusplus } #endif #endif #endif /* include guard */