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			309 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			309 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 * SPDX-FileCopyrightText: 2022-2023 Espressif Systems (Shanghai) CO LTD
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 *
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 * SPDX-License-Identifier: Apache-2.0
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 */
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#include <stdlib.h>
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#include <stdarg.h>
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#include <sys/cdefs.h>
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#include "sdkconfig.h"
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#if CONFIG_MCPWM_ENABLE_DEBUG_LOG
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// The local log level must be defined before including esp_log.h
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// Set the maximum log level for this source file
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#define LOG_LOCAL_LEVEL ESP_LOG_DEBUG
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#endif
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#include "freertos/FreeRTOS.h"
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#include "esp_attr.h"
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#include "esp_check.h"
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#include "esp_err.h"
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#include "esp_log.h"
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#include "soc/soc_caps.h"
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#include "soc/mcpwm_periph.h"
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#include "hal/mcpwm_ll.h"
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#include "driver/gpio.h"
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#include "driver/mcpwm_gen.h"
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#include "mcpwm_private.h"
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static const char *TAG = "mcpwm";
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static esp_err_t mcpwm_generator_register_to_operator(mcpwm_gen_t *gen, mcpwm_oper_t *oper)
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{
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    int gen_id = -1;
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    portENTER_CRITICAL(&oper->spinlock);
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    for (int i = 0; i < SOC_MCPWM_GENERATORS_PER_OPERATOR; i++) {
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        if (!oper->generators[i]) {
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            oper->generators[i] = gen;
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            gen_id = i;
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            break;
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        }
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    }
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    portEXIT_CRITICAL(&oper->spinlock);
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    ESP_RETURN_ON_FALSE(gen_id >= 0, ESP_ERR_NOT_FOUND, TAG, "no free generator in operator (%d,%d)", oper->group->group_id, oper->oper_id);
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    gen->gen_id = gen_id;
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    gen->oper = oper;
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    return ESP_OK;
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}
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static void mcpwm_generator_unregister_from_operator(mcpwm_gen_t *gen)
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{
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    mcpwm_oper_t *oper = gen->oper;
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    int gen_id = gen->gen_id;
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    portENTER_CRITICAL(&oper->spinlock);
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    oper->generators[gen_id] = NULL;
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    portEXIT_CRITICAL(&oper->spinlock);
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}
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static esp_err_t mcpwm_generator_destroy(mcpwm_gen_t *gen)
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{
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    if (gen->oper) {
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        mcpwm_generator_unregister_from_operator(gen);
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    }
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    free(gen);
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    return ESP_OK;
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}
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esp_err_t mcpwm_new_generator(mcpwm_oper_handle_t oper, const mcpwm_generator_config_t *config, mcpwm_gen_handle_t *ret_gen)
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{
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    esp_err_t ret = ESP_OK;
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    mcpwm_gen_t *gen = NULL;
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    ESP_GOTO_ON_FALSE(oper && config && ret_gen, ESP_ERR_INVALID_ARG, err, TAG, "invalid argument");
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    gen = heap_caps_calloc(1, sizeof(mcpwm_gen_t), MCPWM_MEM_ALLOC_CAPS);
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    ESP_GOTO_ON_FALSE(gen, ESP_ERR_NO_MEM, err, TAG, "no mem for generator");
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    ESP_GOTO_ON_ERROR(mcpwm_generator_register_to_operator(gen, oper), err, TAG, "register generator failed");
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    mcpwm_group_t *group = oper->group;
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    mcpwm_hal_context_t *hal = &group->hal;
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    int oper_id = oper->oper_id;
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    int gen_id = gen->gen_id;
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    // reset generator
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    mcpwm_hal_generator_reset(hal, oper_id, gen_id);
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    // GPIO configuration
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    gpio_config_t gpio_conf = {
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        .intr_type = GPIO_INTR_DISABLE,
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        .mode = GPIO_MODE_OUTPUT | (config->flags.io_loop_back ? GPIO_MODE_INPUT : 0), // also enable the input path if `io_loop_back` is enabled
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        .pin_bit_mask = (1ULL << config->gen_gpio_num),
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        .pull_down_en = false,
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        .pull_up_en = true,
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    };
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    ESP_GOTO_ON_ERROR(gpio_config(&gpio_conf), err, TAG, "config gen GPIO failed");
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    esp_rom_gpio_connect_out_signal(config->gen_gpio_num,
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                                    mcpwm_periph_signals.groups[group->group_id].operators[oper_id].generators[gen_id].pwm_sig,
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                                    config->flags.invert_pwm, 0);
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    // fill in other generator members
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    gen->gen_gpio_num = config->gen_gpio_num;
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    gen->spinlock = (portMUX_TYPE)portMUX_INITIALIZER_UNLOCKED;
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    *ret_gen = gen;
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    ESP_LOGD(TAG, "new generator (%d,%d,%d) at %p, GPIO %d", group->group_id, oper_id, gen_id, gen, gen->gen_gpio_num);
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    return ESP_OK;
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err:
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    if (gen) {
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        mcpwm_generator_destroy(gen);
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    }
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    return ret;
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}
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esp_err_t mcpwm_del_generator(mcpwm_gen_handle_t gen)
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{
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    ESP_RETURN_ON_FALSE(gen, ESP_ERR_INVALID_ARG, TAG, "invalid argument");
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    mcpwm_oper_t *oper = gen->oper;
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    mcpwm_group_t *group = oper->group;
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    ESP_LOGD(TAG, "del generator (%d,%d,%d)", group->group_id, oper->oper_id, gen->gen_id);
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    // recycle memory resource
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    ESP_RETURN_ON_ERROR(mcpwm_generator_destroy(gen), TAG, "destroy generator failed");
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    return ESP_OK;
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}
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esp_err_t mcpwm_generator_set_force_level(mcpwm_gen_handle_t gen, int level, bool hold_on)
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{
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    ESP_RETURN_ON_FALSE(gen && level <= 1, ESP_ERR_INVALID_ARG, TAG, "invalid argument");
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    mcpwm_oper_t *oper = gen->oper;
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    mcpwm_group_t *group = oper->group;
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    mcpwm_hal_context_t *hal = &group->hal;
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    int oper_id = oper->oper_id;
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    int gen_id = gen->gen_id;
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    if (level < 0) { // to remove the force level
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        if (hold_on) {
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            mcpwm_ll_gen_disable_continue_force_action(hal->dev, oper_id, gen_id);
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        } else {
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            mcpwm_ll_gen_disable_noncontinue_force_action(hal->dev, oper_id, gen_id);
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        }
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    } else { // to enable the force output level
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        if (hold_on) {
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            mcpwm_ll_gen_set_continue_force_level(hal->dev, oper_id, gen_id, level);
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        } else {
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            mcpwm_ll_gen_set_noncontinue_force_level(hal->dev, oper_id, gen_id, level);
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            mcpwm_ll_gen_trigger_noncontinue_force_action(hal->dev, oper_id, gen_id);
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        }
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    }
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    return ESP_OK;
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}
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esp_err_t mcpwm_generator_set_action_on_timer_event(mcpwm_gen_handle_t gen, mcpwm_gen_timer_event_action_t ev_act)
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{
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    ESP_RETURN_ON_FALSE(gen, ESP_ERR_INVALID_ARG, TAG, "invalid argument");
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    ESP_RETURN_ON_FALSE(ev_act.event != MCPWM_TIMER_EVENT_INVALID, ESP_ERR_INVALID_ARG, TAG, "invalid event");
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    mcpwm_oper_t *oper = gen->oper;
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    mcpwm_group_t *group = oper->group;
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    mcpwm_timer_t *timer = oper->timer;
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    ESP_RETURN_ON_FALSE(timer, ESP_ERR_INVALID_STATE, TAG, "no timer is connected to the operator");
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    bool invalid_utep = (timer->count_mode == MCPWM_TIMER_COUNT_MODE_UP_DOWN) &&
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                        (ev_act.direction == MCPWM_TIMER_DIRECTION_UP) &&
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                        (ev_act.event == MCPWM_TIMER_EVENT_FULL);
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    bool invalid_dtez = (timer->count_mode == MCPWM_TIMER_COUNT_MODE_UP_DOWN) &&
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                        (ev_act.direction == MCPWM_TIMER_DIRECTION_DOWN) &&
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                        (ev_act.event == MCPWM_TIMER_EVENT_EMPTY);
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    if (invalid_utep || invalid_dtez) {
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        ESP_RETURN_ON_FALSE(false, ESP_ERR_INVALID_ARG, TAG, "UTEP and DTEZ can't be reached under MCPWM_TIMER_COUNT_MODE_UP_DOWN mode");
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    }
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    mcpwm_ll_generator_set_action_on_timer_event(group->hal.dev, oper->oper_id, gen->gen_id,
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            ev_act.direction, ev_act.event, ev_act.action);
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    return ESP_OK;
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}
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esp_err_t mcpwm_generator_set_actions_on_timer_event(mcpwm_gen_handle_t gen, mcpwm_gen_timer_event_action_t ev_act, ...)
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{
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    ESP_RETURN_ON_FALSE(gen, ESP_ERR_INVALID_ARG, TAG, "invalid argument");
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    mcpwm_oper_t *oper = gen->oper;
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    mcpwm_group_t *group = oper->group;
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    mcpwm_timer_t *timer = oper->timer;
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    ESP_RETURN_ON_FALSE(timer, ESP_ERR_INVALID_STATE, TAG, "no timer is connected to the operator");
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    mcpwm_gen_timer_event_action_t ev_act_itor = ev_act;
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    bool invalid_utep = false;
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    bool invalid_dtez = false;
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    va_list it;
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    va_start(it, ev_act);
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    while (ev_act_itor.event != MCPWM_TIMER_EVENT_INVALID) {
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        invalid_utep = (timer->count_mode == MCPWM_TIMER_COUNT_MODE_UP_DOWN) &&
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                       (ev_act_itor.direction == MCPWM_TIMER_DIRECTION_UP) &&
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                       (ev_act_itor.event == MCPWM_TIMER_EVENT_FULL);
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        invalid_dtez = (timer->count_mode == MCPWM_TIMER_COUNT_MODE_UP_DOWN) &&
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                       (ev_act_itor.direction == MCPWM_TIMER_DIRECTION_DOWN) &&
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                       (ev_act_itor.event == MCPWM_TIMER_EVENT_EMPTY);
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        if (invalid_utep || invalid_dtez) {
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            va_end(it);
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            ESP_RETURN_ON_FALSE(false, ESP_ERR_INVALID_ARG, TAG, "UTEP and DTEZ can't be reached under MCPWM_TIMER_COUNT_MODE_UP_DOWN mode");
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        }
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        mcpwm_ll_generator_set_action_on_timer_event(group->hal.dev, oper->oper_id, gen->gen_id,
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                ev_act_itor.direction, ev_act_itor.event, ev_act_itor.action);
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        ev_act_itor = va_arg(it, mcpwm_gen_timer_event_action_t);
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    }
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    va_end(it);
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    return ESP_OK;
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}
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esp_err_t mcpwm_generator_set_action_on_compare_event(mcpwm_gen_handle_t gen, mcpwm_gen_compare_event_action_t ev_act)
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{
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    ESP_RETURN_ON_FALSE(gen, ESP_ERR_INVALID_ARG, TAG, "invalid argument");
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    ESP_RETURN_ON_FALSE(ev_act.comparator, ESP_ERR_INVALID_ARG, TAG, "invalid comparator");
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    mcpwm_oper_t *oper = gen->oper;
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    mcpwm_group_t *group = oper->group;
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    mcpwm_ll_generator_set_action_on_compare_event(group->hal.dev, oper->oper_id, gen->gen_id,
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            ev_act.direction, ev_act.comparator->cmpr_id, ev_act.action);
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    return ESP_OK;
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}
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esp_err_t mcpwm_generator_set_actions_on_compare_event(mcpwm_gen_handle_t gen, mcpwm_gen_compare_event_action_t ev_act, ...)
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{
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    ESP_RETURN_ON_FALSE(gen, ESP_ERR_INVALID_ARG, TAG, "invalid argument");
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    mcpwm_oper_t *oper = gen->oper;
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    mcpwm_group_t *group = oper->group;
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    mcpwm_gen_compare_event_action_t ev_act_itor = ev_act;
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    va_list it;
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    va_start(it, ev_act);
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    while (ev_act_itor.comparator) {
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        mcpwm_ll_generator_set_action_on_compare_event(group->hal.dev, oper->oper_id, gen->gen_id,
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                ev_act_itor.direction, ev_act_itor.comparator->cmpr_id, ev_act_itor.action);
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        ev_act_itor = va_arg(it, mcpwm_gen_compare_event_action_t);
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    }
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    va_end(it);
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    return ESP_OK;
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}
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esp_err_t mcpwm_generator_set_action_on_brake_event(mcpwm_gen_handle_t gen, mcpwm_gen_brake_event_action_t ev_act)
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{
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    ESP_RETURN_ON_FALSE(gen, ESP_ERR_INVALID_ARG, TAG, "invalid argument");
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    ESP_RETURN_ON_FALSE(ev_act.brake_mode != MCPWM_OPER_BRAKE_MODE_INVALID, ESP_ERR_INVALID_ARG, TAG, "invalid brake mode");
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    mcpwm_oper_t *oper = gen->oper;
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    mcpwm_group_t *group = oper->group;
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    mcpwm_ll_generator_set_action_on_brake_event(group->hal.dev, oper->oper_id, gen->gen_id,
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            ev_act.direction, ev_act.brake_mode, ev_act.action);
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    return ESP_OK;
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}
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esp_err_t mcpwm_generator_set_actions_on_brake_event(mcpwm_gen_handle_t gen, mcpwm_gen_brake_event_action_t ev_act, ...)
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{
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    ESP_RETURN_ON_FALSE(gen, ESP_ERR_INVALID_ARG, TAG, "invalid argument");
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    mcpwm_oper_t *oper = gen->oper;
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    mcpwm_group_t *group = oper->group;
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    mcpwm_gen_brake_event_action_t ev_act_itor = ev_act;
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    va_list it;
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    va_start(it, ev_act);
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    while (ev_act_itor.brake_mode != MCPWM_OPER_BRAKE_MODE_INVALID) {
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        mcpwm_ll_generator_set_action_on_brake_event(group->hal.dev, oper->oper_id, gen->gen_id,
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                ev_act_itor.direction, ev_act_itor.brake_mode, ev_act_itor.action);
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        ev_act_itor = va_arg(it, mcpwm_gen_brake_event_action_t);
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    }
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    va_end(it);
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    return ESP_OK;
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}
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esp_err_t mcpwm_generator_set_dead_time(mcpwm_gen_handle_t in_generator, mcpwm_gen_handle_t out_generator, const mcpwm_dead_time_config_t *config)
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{
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    ESP_RETURN_ON_FALSE(in_generator && out_generator && config, ESP_ERR_INVALID_ARG, TAG, "invalid argument");
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    ESP_RETURN_ON_FALSE(in_generator->oper == out_generator->oper, ESP_ERR_INVALID_ARG, TAG, "in/out generator are not derived from the same operator");
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    ESP_RETURN_ON_FALSE(config->negedge_delay_ticks < MCPWM_LL_MAX_DEAD_DELAY && config->posedge_delay_ticks < MCPWM_LL_MAX_DEAD_DELAY,
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                        ESP_ERR_INVALID_ARG, TAG, "delay time out of range");
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    mcpwm_oper_t *oper = in_generator->oper;
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    mcpwm_group_t *group = oper->group;
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    mcpwm_hal_context_t *hal = &group->hal;
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    int oper_id = oper->oper_id;
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    // Note: to better understand the following code, you should read the deadtime module topology diagram in the TRM
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    // check if we want to bypass the deadtime module
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    bool bypass = (config->negedge_delay_ticks == 0) && (config->posedge_delay_ticks == 0);
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    // check is we want to delay on the both edge
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    bool delay_on_both_edge = config->posedge_delay_ticks && config->negedge_delay_ticks;
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    int out_path_id = -1;
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    if (bypass) {
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        // out path is same to the input path of generator
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        out_path_id = in_generator->gen_id;
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    } else if (config->negedge_delay_ticks) {
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        out_path_id = 1; // FED path
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    } else {
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        out_path_id = 0; // RED path
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    }
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    bool swap_path = out_path_id != out_generator->gen_id;
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    mcpwm_ll_deadtime_bypass_path(hal->dev, oper_id, out_path_id, bypass); // S0/1
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    if (!bypass) {
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        if (config->posedge_delay_ticks) {
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            mcpwm_ll_deadtime_red_select_generator(hal->dev, oper_id, in_generator->gen_id); // S4
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        } else {
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            mcpwm_ll_deadtime_fed_select_generator(hal->dev, oper_id, in_generator->gen_id); // S5
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        }
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        mcpwm_ll_deadtime_enable_deb(hal->dev, oper_id, delay_on_both_edge); // S8
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        mcpwm_ll_deadtime_invert_outpath(hal->dev, oper_id, out_path_id, config->flags.invert_output); // S2/3
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        mcpwm_ll_deadtime_swap_out_path(hal->dev, oper_id, out_generator->gen_id, swap_path); // S6/S7
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    }
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    // set delay time
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    if (config->posedge_delay_ticks) {
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        mcpwm_ll_deadtime_set_rising_delay(hal->dev, oper_id, config->posedge_delay_ticks);
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    }
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    if (config->negedge_delay_ticks) {
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        mcpwm_ll_deadtime_set_falling_delay(hal->dev, oper_id, config->negedge_delay_ticks);
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    }
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    ESP_LOGD(TAG, "operator (%d,%d) dead time (R:%"PRIu32",F:%"PRIu32"), topology code:%"PRIx32, group->group_id, oper_id,
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             config->posedge_delay_ticks, config->negedge_delay_ticks, mcpwm_ll_deadtime_get_switch_topology(hal->dev, oper_id));
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    return ESP_OK;
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}
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