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https://github.com/espressif/esp-idf.git
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7c88240e38
The encoder memory location should respect the RMT_MEM_ALLOC_CAPS, which is affected by some Kconfig options, like ISR_IRAM_SAFE Closes https://github.com/espressif/esp-idf/issues/13032
166 lines
6.3 KiB
C
166 lines
6.3 KiB
C
/*
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* SPDX-FileCopyrightText: 2021-2022 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 "esp_check.h"
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#include "dshot_esc_encoder.h"
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static const char *TAG = "dshot_encoder";
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/**
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* @brief Type of Dshot ESC frame
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*/
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typedef union {
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struct {
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uint16_t crc: 4; /*!< CRC checksum */
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uint16_t telemetry: 1; /*!< Telemetry request */
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uint16_t throttle: 11; /*!< Throttle value */
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};
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uint16_t val;
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} dshot_esc_frame_t;
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#ifndef __cplusplus
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_Static_assert(sizeof(dshot_esc_frame_t) == 0x02, "Invalid size of dshot_esc_frame_t structure");
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#endif
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typedef struct {
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rmt_encoder_t base;
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rmt_encoder_t *bytes_encoder;
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rmt_encoder_t *copy_encoder;
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rmt_symbol_word_t dshot_delay_symbol;
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int state;
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} rmt_dshot_esc_encoder_t;
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static void make_dshot_frame(dshot_esc_frame_t *frame, uint16_t throttle, bool telemetry)
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{
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frame->throttle = throttle;
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frame->telemetry = telemetry;
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uint16_t val = frame->val;
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uint8_t crc = ((val ^ (val >> 4) ^ (val >> 8)) & 0xF0) >> 4;;
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frame->crc = crc;
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val = frame->val;
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// change the endian
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frame->val = ((val & 0xFF) << 8) | ((val & 0xFF00) >> 8);
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}
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static size_t rmt_encode_dshot_esc(rmt_encoder_t *encoder, rmt_channel_handle_t channel,
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const void *primary_data, size_t data_size, rmt_encode_state_t *ret_state)
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{
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rmt_dshot_esc_encoder_t *dshot_encoder = __containerof(encoder, rmt_dshot_esc_encoder_t, base);
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rmt_encoder_handle_t bytes_encoder = dshot_encoder->bytes_encoder;
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rmt_encoder_handle_t copy_encoder = dshot_encoder->copy_encoder;
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rmt_encode_state_t session_state = RMT_ENCODING_RESET;
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rmt_encode_state_t state = RMT_ENCODING_RESET;
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size_t encoded_symbols = 0;
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// convert user data into dshot frame
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dshot_esc_throttle_t *throttle = (dshot_esc_throttle_t *)primary_data;
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dshot_esc_frame_t frame = {};
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make_dshot_frame(&frame, throttle->throttle, throttle->telemetry_req);
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switch (dshot_encoder->state) {
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case 0: // send the dshot frame
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encoded_symbols += bytes_encoder->encode(bytes_encoder, channel, &frame, sizeof(frame), &session_state);
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if (session_state & RMT_ENCODING_COMPLETE) {
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dshot_encoder->state = 1; // switch to next state when current encoding session finished
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}
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if (session_state & RMT_ENCODING_MEM_FULL) {
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state |= RMT_ENCODING_MEM_FULL;
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goto out; // yield if there's no free space for encoding artifacts
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}
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// fall-through
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case 1:
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encoded_symbols += copy_encoder->encode(copy_encoder, channel, &dshot_encoder->dshot_delay_symbol,
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sizeof(rmt_symbol_word_t), &session_state);
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if (session_state & RMT_ENCODING_COMPLETE) {
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state |= RMT_ENCODING_COMPLETE;
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dshot_encoder->state = RMT_ENCODING_RESET; // switch to next state when current encoding session finished
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}
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if (session_state & RMT_ENCODING_MEM_FULL) {
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state |= RMT_ENCODING_MEM_FULL;
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goto out; // yield if there's no free space for encoding artifacts
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}
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}
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out:
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*ret_state = state;
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return encoded_symbols;
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}
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static esp_err_t rmt_del_dshot_encoder(rmt_encoder_t *encoder)
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{
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rmt_dshot_esc_encoder_t *dshot_encoder = __containerof(encoder, rmt_dshot_esc_encoder_t, base);
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rmt_del_encoder(dshot_encoder->bytes_encoder);
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rmt_del_encoder(dshot_encoder->copy_encoder);
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free(dshot_encoder);
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return ESP_OK;
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}
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static esp_err_t rmt_dshot_encoder_reset(rmt_encoder_t *encoder)
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{
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rmt_dshot_esc_encoder_t *dshot_encoder = __containerof(encoder, rmt_dshot_esc_encoder_t, base);
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rmt_encoder_reset(dshot_encoder->bytes_encoder);
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rmt_encoder_reset(dshot_encoder->copy_encoder);
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dshot_encoder->state = RMT_ENCODING_RESET;
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return ESP_OK;
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}
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esp_err_t rmt_new_dshot_esc_encoder(const dshot_esc_encoder_config_t *config, rmt_encoder_handle_t *ret_encoder)
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{
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esp_err_t ret = ESP_OK;
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rmt_dshot_esc_encoder_t *dshot_encoder = NULL;
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ESP_GOTO_ON_FALSE(config && ret_encoder, ESP_ERR_INVALID_ARG, err, TAG, "invalid argument");
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dshot_encoder = rmt_alloc_encoder_mem(sizeof(rmt_dshot_esc_encoder_t));
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ESP_GOTO_ON_FALSE(dshot_encoder, ESP_ERR_NO_MEM, err, TAG, "no mem for musical score encoder");
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dshot_encoder->base.encode = rmt_encode_dshot_esc;
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dshot_encoder->base.del = rmt_del_dshot_encoder;
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dshot_encoder->base.reset = rmt_dshot_encoder_reset;
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uint32_t delay_ticks = config->resolution / 1e6 * config->post_delay_us;
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rmt_symbol_word_t dshot_delay_symbol = {
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.level0 = 0,
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.duration0 = delay_ticks / 2,
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.level1 = 0,
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.duration1 = delay_ticks / 2,
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};
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dshot_encoder->dshot_delay_symbol = dshot_delay_symbol;
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// different dshot protocol have its own timing requirements,
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float period_ticks = (float)config->resolution / config->baud_rate;
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// 1 and 0 is represented by a 74.850% and 37.425% duty cycle respectively
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unsigned int t1h_ticks = (unsigned int)(period_ticks * 0.7485);
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unsigned int t1l_ticks = (unsigned int)(period_ticks - t1h_ticks);
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unsigned int t0h_ticks = (unsigned int)(period_ticks * 0.37425);
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unsigned int t0l_ticks = (unsigned int)(period_ticks - t0h_ticks);
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rmt_bytes_encoder_config_t bytes_encoder_config = {
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.bit0 = {
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.level0 = 1,
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.duration0 = t0h_ticks,
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.level1 = 0,
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.duration1 = t0l_ticks,
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},
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.bit1 = {
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.level0 = 1,
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.duration0 = t1h_ticks,
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.level1 = 0,
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.duration1 = t1l_ticks,
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},
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.flags.msb_first = 1,
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};
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ESP_GOTO_ON_ERROR(rmt_new_bytes_encoder(&bytes_encoder_config, &dshot_encoder->bytes_encoder), err, TAG, "create bytes encoder failed");
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rmt_copy_encoder_config_t copy_encoder_config = {};
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ESP_GOTO_ON_ERROR(rmt_new_copy_encoder(©_encoder_config, &dshot_encoder->copy_encoder), err, TAG, "create copy encoder failed");
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*ret_encoder = &dshot_encoder->base;
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return ESP_OK;
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err:
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if (dshot_encoder) {
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if (dshot_encoder->bytes_encoder) {
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rmt_del_encoder(dshot_encoder->bytes_encoder);
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}
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if (dshot_encoder->copy_encoder) {
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rmt_del_encoder(dshot_encoder->copy_encoder);
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}
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free(dshot_encoder);
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}
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return ret;
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}
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