/* Use project configuration menu (idf.py menuconfig) to choose the GPIO to blink, or you can edit the following line and set a number here. */ #define BLINK_GPIO CONFIG_BLINK_GPIO
#ifdef CONFIG_BLINK_LED_RMT
led_strip_handle_t led_strip;
voidblink_led(void) { /* If the addressable LED is enabled */ if (s_led_state) { /* Set the LED pixel using RGB from 0 (0%) to 255 (100%) for each color */ led_strip_set_pixel(led_strip, 0, 16, 16, 16); /* Refresh the strip to send data */ led_strip_refresh(led_strip); } else { /* Set all LED off to clear all pixels */ led_strip_clear(led_strip); } }
voidconfigure_led(void) { ESP_LOGI(TAG, "Example configured to blink addressable LED!"); /* LED strip initialization with the GPIO and pixels number*/ led_strip_config_t strip_config = { .strip_gpio_num = BLINK_GPIO, .max_leds = 1, // at least one LED on board }; led_strip_rmt_config_t rmt_config = { .resolution_hz = 10 * 1000 * 1000, // 10MHz }; ESP_ERROR_CHECK(led_strip_new_rmt_device(&strip_config, &rmt_config, &led_strip)); /* Set all LED off to clear all pixels */ led_strip_clear(led_strip); }
#elif CONFIG_BLINK_LED_GPIO
voidblink_led(int s_led_state) { /* Set the GPIO level according to the state (LOW or HIGH)*/ gpio_set_level(BLINK_GPIO, s_led_state); }
voidconfigure_led(void) { ESP_LOGI(TAG, "Example configured to blink GPIO LED!"); gpio_reset_pin(BLINK_GPIO); /* Set the GPIO as a push/pull output */ gpio_set_direction(BLINK_GPIO, GPIO_MODE_OUTPUT); }
#endif
在头文件声明函数:
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#ifndef LED_BLINK_H #define LED_BLINK_H
#ifdef __cplusplus extern"C" { #endif
#include<stdint.h>
// Function declarations voidblink_led(int s_led_state); voidconfigure_led(void);
voidapp_main(void) { /* Configure the peripheral according to the LED type */ configure_led();
while (1) { ESP_LOGI(TAG, "Turning the LED %s!", s_led_state == true ? "ON" : "OFF"); blink_led(s_led_state); /* Toggle the LED state */ s_led_state = !s_led_state; vTaskDelay(CONFIG_BLINK_PERIOD / portTICK_PERIOD_MS); } }