driver for ST7735/89 & LED PWM

This commit is contained in:
Philippe G
2020-07-28 18:35:10 -07:00
parent c41d30f883
commit 3c76f6fcb5
14 changed files with 483 additions and 75 deletions

View File

@@ -10,13 +10,16 @@
#include <stdlib.h>
#include <unistd.h>
#include <string.h>
#include <math.h>
#include "freertos/FreeRTOS.h"
#include "freertos/task.h"
#include "freertos/timers.h"
#include "esp_system.h"
#include "esp_log.h"
#include "driver/gpio.h"
#include "driver/ledc.h"
#include "led.h"
#include "globdefs.h"
#include "accessors.h"
#define MAX_LED 8
@@ -29,6 +32,8 @@ static struct led_s {
bool on;
int onstate;
int ontime, offtime;
int pwm;
int channel;
int pushedon, pushedoff;
bool pushed;
TimerHandle_t timer;
@@ -37,8 +42,22 @@ static struct led_s {
static struct {
int gpio;
int active;
} green = { CONFIG_LED_GREEN_GPIO, 0 },
red = { CONFIG_LED_RED_GPIO, 0 };
int pwm;
} green = { .gpio = CONFIG_LED_GREEN_GPIO, .active = 0, .pwm = -1 },
red = { .gpio = CONFIG_LED_RED_GPIO, .active = 0, .pwm = -1 };
static int led_max = 2;
/****************************************************************************************
*
*/
static void set_level(struct led_s *led, bool on) {
if (led->pwm < 0) gpio_set_level(led->gpio, on ? led->onstate : !led->onstate);
else {
ledc_set_duty(LEDC_HIGH_SPEED_MODE, led->channel, on ? led->pwm : (led->onstate ? 0 : pwm_system.max));
ledc_update_duty(LEDC_HIGH_SPEED_MODE, led->channel);
}
}
/****************************************************************************************
*
@@ -49,9 +68,9 @@ static void vCallbackFunction( TimerHandle_t xTimer ) {
if (!led->timer) return;
led->on = !led->on;
ESP_LOGD(TAG,"led vCallbackFunction setting gpio %d level", led->gpio);
gpio_set_level(led->gpio, led->on ? led->onstate : !led->onstate);
ESP_EARLY_LOGD(TAG,"led vCallbackFunction setting gpio %d level %d (pwm:%d)", led->gpio, led->on, led->pwm);
set_level(led, led->on);
// was just on for a while
if (!led->on && led->offtime == -1) return;
@@ -63,7 +82,7 @@ static void vCallbackFunction( TimerHandle_t xTimer ) {
*
*/
bool led_blink_core(int idx, int ontime, int offtime, bool pushed) {
if (!leds[idx].gpio || leds[idx].gpio<0 ) return false;
if (!leds[idx].gpio || leds[idx].gpio < 0 ) return false;
ESP_LOGD(TAG,"led_blink_core");
if (leds[idx].timer) {
@@ -89,25 +108,40 @@ bool led_blink_core(int idx, int ontime, int offtime, bool pushed) {
if (ontime == 0) {
ESP_LOGD(TAG,"led %d, setting reverse level", idx);
gpio_set_level(leds[idx].gpio, !leds[idx].onstate);
set_level(leds + idx, false);
} else if (offtime == 0) {
ESP_LOGD(TAG,"led %d, setting level", idx);
gpio_set_level(leds[idx].gpio, leds[idx].onstate);
set_level(leds + idx, true);
} else {
if (!leds[idx].timer) {
ESP_LOGD(TAG,"led %d, Creating timer", idx);
leds[idx].timer = xTimerCreate("ledTimer", ontime / portTICK_RATE_MS, pdFALSE, (void *)&leds[idx], vCallbackFunction);
}
leds[idx].on = true;
ESP_LOGD(TAG,"led %d, Setting gpio %d", idx, leds[idx].gpio);
gpio_set_level(leds[idx].gpio, leds[idx].onstate);
ESP_LOGD(TAG,"led %d, Starting timer.", idx);
set_level(leds + idx, true);
ESP_LOGD(TAG,"led %d, Setting gpio %d and starting timer", idx, leds[idx].gpio);
if (xTimerStart(leds[idx].timer, BLOCKTIME) == pdFAIL) return false;
}
ESP_LOGD(TAG,"led %d, led_blink_core_done", idx);
return true;
}
/****************************************************************************************
*
*/
bool led_brightness(int idx, int pwm) {
if (pwm > 100) pwm = 100;
leds[idx].pwm = pwm_system.max * powf(pwm / 100.0, 3);
if (!leds[idx].onstate) leds[idx].pwm = pwm_system.max - leds[idx].pwm;
ledc_set_duty(LEDC_HIGH_SPEED_MODE, leds[idx].channel, leds[idx].pwm);
ledc_update_duty(LEDC_HIGH_SPEED_MODE, leds[idx].channel);
return true;
}
/****************************************************************************************
*
*/
@@ -123,34 +157,50 @@ bool led_unpush(int idx) {
/****************************************************************************************
*
*/
bool led_config(int idx, gpio_num_t gpio, int onstate) {
if(gpio<0){
ESP_LOGW(TAG,"LED GPIO not configured");
return false;
}
ESP_LOGD(TAG,"Index %d, GPIO %d, on state %s", idx, gpio, onstate>0?"On":"Off");
if (idx >= MAX_LED) return false;
leds[idx].gpio = gpio;
leds[idx].onstate = onstate;
ESP_LOGD(TAG,"Index %d, GPIO %d, on state %s. Selecting GPIO pad", idx, gpio, onstate>0?"On":"Off");
gpio_pad_select_gpio(gpio);
ESP_LOGD(TAG,"Index %d, GPIO %d, on state %s. Setting direction to OUTPUT", idx, gpio, onstate>0?"On":"Off");
gpio_set_direction(gpio, GPIO_MODE_OUTPUT);
ESP_LOGD(TAG,"Index %d, GPIO %d, on state %s. Setting State to %d", idx, gpio, onstate>0?"On":"Off", onstate);
gpio_set_level(gpio, !onstate);
ESP_LOGD(TAG,"Done configuring the led");
return true;
int led_allocate(void) {
if (led_max < MAX_LED) return led_max++;
return -1;
}
/****************************************************************************************
*
*/
bool led_unconfig(int idx) {
if (idx >= MAX_LED) return false;
bool led_config(int idx, gpio_num_t gpio, int onstate, int pwm) {
if (gpio < 0) {
ESP_LOGW(TAG,"LED GPIO not configured");
return false;
}
if (leds[idx].timer) xTimerDelete(leds[idx].timer, BLOCKTIME);
leds[idx].timer = NULL;
ESP_LOGD(TAG,"Index %d, GPIO %d, on state %s", idx, gpio, onstate>0?"On":"Off");
if (idx >= MAX_LED) return false;
leds[idx].gpio = gpio;
leds[idx].onstate = onstate;
leds[idx].pwm = -1;
if (pwm < 0) {
gpio_pad_select_gpio(gpio);
gpio_set_direction(gpio, GPIO_MODE_OUTPUT);
} else {
leds[idx].channel = pwm_system.base_channel++;
leds[idx].pwm = pwm_system.max * powf(pwm / 100.0, 3);
if (!onstate) leds[idx].pwm = pwm_system.max - leds[idx].pwm;
ledc_channel_config_t ledc_channel = {
.channel = leds[idx].channel,
.duty = leds[idx].pwm,
.gpio_num = gpio,
.speed_mode = LEDC_HIGH_SPEED_MODE,
.hpoint = 0,
.timer_sel = pwm_system.timer,
};
ledc_channel_config(&ledc_channel);
}
set_level(leds + idx, false);
ESP_LOGD(TAG,"PWM Index %d, GPIO %d, on state %s, pwm %d%%", idx, gpio, onstate > 0 ? "On" : "Off", pwm);
return true;
}
@@ -170,7 +220,6 @@ void set_led_gpio(int gpio, char *value) {
}
void led_svc_init(void) {
#ifdef CONFIG_LED_GREEN_GPIO_LEVEL
green.active = CONFIG_LED_GREEN_GPIO_LEVEL;
#endif
@@ -181,8 +230,15 @@ void led_svc_init(void) {
#ifndef CONFIG_LED_LOCKED
parse_set_GPIO(set_led_gpio);
#endif
ESP_LOGI(TAG,"Configuring LEDs green:%d (active:%d), red:%d (active:%d)", green.gpio, green.active, red.gpio, red.active);
ESP_LOGI(TAG,"Configuring LEDs green:%d (active:%d %d%%), red:%d (active:%d %d%%)", green.gpio, green.active, green.pwm, red.gpio, red.active, red.pwm);
char *nvs_item = config_alloc_get(NVS_TYPE_STR, "led_brightness"), *p;
if (nvs_item) {
if ((p = strcasestr(nvs_item, "green")) != NULL) green.pwm = atoi(strchr(p, '=') + 1);
if ((p = strcasestr(nvs_item, "red")) != NULL) red.pwm = atoi(strchr(p, '=') + 1);
free(nvs_item);
}
led_config(LED_GREEN, green.gpio, green.active);
led_config(LED_RED, red.gpio, red.active);
led_config(LED_GREEN, green.gpio, green.active, green.pwm);
led_config(LED_RED, red.gpio, red.active, red.pwm);
}