2025-06-11 08:29:59 +01:00
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/**
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* @file DShotRMT.cpp
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2025-07-30 23:36:58 +01:00
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* @brief DShot signal generation using ESP32 RMT with bidirectional support
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2025-06-11 08:29:59 +01:00
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* @author Wastl Kraus
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* @date 2025-06-11
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* @license MIT
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*/
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2021-07-04 02:01:26 +01:00
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2025-07-30 23:36:58 +01:00
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#include "DShotRMT.h"
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// --- DShot Timings ---
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2025-08-03 21:21:30 +01:00
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// frame_length_us, ticks_per_bit, ticks_one_high, ticks_zero_high, ticks_zero_low, ticks_one_low
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constexpr dshot_timing_t DSHOT_TIMINGS[] = {
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2025-07-30 23:36:58 +01:00
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{0, 0, 0, 0, 0, 0}, // DSHOT_OFF
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{128, 64, 48, 24, 40, 16}, // DSHOT150
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{64, 32, 24, 12, 20, 8}, // DSHOT300
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{32, 16, 12, 6, 10, 4}, // DSHOT600
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{16, 8, 6, 3, 5, 2} // DSHOT1200
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};
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//
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2025-08-03 21:21:30 +01:00
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DShotRMT::DShotRMT(gpio_num_t gpio, dshot_mode_t mode, bool is_bidirectional):
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_gpio(gpio),
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_mode(mode),
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_is_bidirectional(is_bidirectional),
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_timing_config(DSHOT_TIMINGS[mode]),
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_rmt_tx_channel(nullptr),
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_rmt_rx_channel(nullptr),
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_dshot_encoder(nullptr),
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_last_erpm(0),
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_last_transmission_time(0)
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2025-07-25 16:41:38 +01:00
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{
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2025-07-30 23:36:58 +01:00
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// Calculate frame time including switch time
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_frame_time_us = _timing_config.frame_length_us + DSHOT_SWITCH_TIME;
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2025-07-25 16:41:38 +01:00
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2025-07-30 23:36:58 +01:00
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// Double up frame time for bidirectional mode
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if (_is_bidirectional)
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2025-07-25 16:41:38 +01:00
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{
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2025-07-30 23:36:58 +01:00
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_frame_time_us += _frame_time_us;
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2025-07-25 16:41:38 +01:00
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}
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}
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2025-06-11 08:29:59 +01:00
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2025-08-03 21:21:30 +01:00
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// Init DShotRMT
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2025-07-30 23:36:58 +01:00
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bool DShotRMT::begin()
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2022-11-25 15:08:58 +00:00
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{
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2025-08-03 21:21:30 +01:00
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// Init TX Channel
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2025-07-30 23:36:58 +01:00
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if (!_initTXChannel())
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2025-06-12 23:45:48 +01:00
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{
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2025-07-30 23:36:58 +01:00
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Serial.println("Failed to initialize TX channel");
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return DSHOT_ERROR;
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2025-06-12 23:45:48 +01:00
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}
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2025-08-03 21:21:30 +01:00
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// Init RX Channel
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2025-07-30 23:36:58 +01:00
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if (!_initRXChannel() && _is_bidirectional)
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2025-07-19 12:26:54 +01:00
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{
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2025-07-30 23:36:58 +01:00
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Serial.println("Failed to initialize RX channel");
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return DSHOT_ERROR;
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2025-07-19 12:26:54 +01:00
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}
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2025-07-29 23:40:09 +01:00
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2025-08-03 21:21:30 +01:00
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// Init DShot Decoder
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2025-07-30 23:36:58 +01:00
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if (!_initDShotEncoder())
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2025-07-19 12:26:54 +01:00
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{
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2025-07-30 23:36:58 +01:00
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Serial.println("Failed to initialize encoder");
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return DSHOT_ERROR;
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2025-07-19 12:26:54 +01:00
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}
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2025-07-30 23:36:58 +01:00
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return DSHOT_OK;
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2021-06-29 19:05:20 +01:00
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}
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2025-08-02 15:11:10 +01:00
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//
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2025-07-30 23:36:58 +01:00
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bool DShotRMT::setThrottle(uint16_t throttle)
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2022-11-25 15:08:58 +00:00
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{
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2025-07-31 12:16:58 +01:00
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// DShot Frame Container
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dshot_packet_t packet = {};
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// Create DShot packet
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2025-08-02 15:11:10 +01:00
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packet.throttle_value = constrain(throttle, DSHOT_THROTTLE_MIN, DSHOT_THROTTLE_MAX);
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2025-07-31 12:16:58 +01:00
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packet.telemetric_request = _is_bidirectional;
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packet.checksum = _calculateCRC(packet);
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if (!_sendDShotFrame(packet))
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{
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return DSHOT_ERROR;
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}
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2025-08-03 21:21:30 +01:00
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return DSHOT_OK;
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}
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//
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bool DShotRMT::sendDShotCommand(uint16_t command)
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{
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// DShot Frame Container
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dshot_packet_t packet = {};
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// Create DShot packet
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packet.throttle_value = constrain(command, DSHOT_CMD_MOTOR_STOP, DSHOT_CMD_MAX);
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packet.telemetric_request = _is_bidirectional;
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packet.checksum = _calculateCRC(packet);
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if (!_sendDShotFrame(packet))
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{
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return DSHOT_ERROR;
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}
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return DSHOT_OK;
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2021-06-29 19:05:20 +01:00
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}
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2025-07-30 23:36:58 +01:00
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//
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2025-06-13 20:50:00 +01:00
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uint32_t DShotRMT::getERPM()
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2023-03-27 18:47:23 +01:00
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{
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2025-07-30 23:36:58 +01:00
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if (!_is_bidirectional || !_rmt_rx_channel)
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2025-06-14 17:16:45 +01:00
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{
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2025-07-30 23:36:58 +01:00
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return _last_erpm;
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}
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2025-06-13 20:50:00 +01:00
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2025-07-30 23:36:58 +01:00
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// Try to receive telemetry data
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if (!rmt_receive(_rmt_rx_channel, _rx_symbols, DSHOT_SYMBOLS_SIZE, &_receive_config))
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{
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2025-07-17 22:24:28 +01:00
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return _last_erpm;
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2025-06-14 17:16:45 +01:00
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}
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2025-07-17 22:24:28 +01:00
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2025-07-30 23:36:58 +01:00
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// Decode the response
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uint16_t new_erpm = _decodeDShotFrame(_rx_symbols, DSHOT_BITS_PER_FRAME);
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if (new_erpm != 0)
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{
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_last_erpm = new_erpm;
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}
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2025-06-13 20:50:00 +01:00
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return _last_erpm;
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}
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2025-07-30 23:36:58 +01:00
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//
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2025-06-14 17:16:45 +01:00
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uint32_t DShotRMT::getMotorRPM(uint8_t magnet_count)
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{
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2025-07-30 23:36:58 +01:00
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uint8_t pole_pairs = max(1, magnet_count / 2);
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return getERPM() / pole_pairs;
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}
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//
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bool DShotRMT::_initTXChannel()
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{
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// --- RMT TX Config ---
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_tx_channel_config.gpio_num = _gpio;
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_tx_channel_config.clk_src = DSHOT_CLOCK_SRC_DEFAULT;
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_tx_channel_config.resolution_hz = DSHOT_RMT_RESOLUTION;
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_tx_channel_config.mem_block_symbols = DSHOT_SYMBOLS_SIZE;
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_tx_channel_config.trans_queue_depth = TX_BUFFER_SIZE;
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_transmit_config.loop_count = 0;
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// ...it's a trap
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_transmit_config.flags.eot_level = _is_bidirectional ? 1 : 0;
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2025-06-14 17:16:45 +01:00
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2025-07-30 23:36:58 +01:00
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// Creates and activate RMT TX Channel
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if (rmt_new_tx_channel(&_tx_channel_config, &_rmt_tx_channel) != DSHOT_OK)
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{
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return DSHOT_ERROR;
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}
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return rmt_enable(_rmt_tx_channel) == 0;
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2025-06-14 17:16:45 +01:00
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}
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2025-07-30 23:36:58 +01:00
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//
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bool DShotRMT::_initRXChannel()
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2025-06-17 19:56:50 +01:00
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{
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2025-07-30 23:36:58 +01:00
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// --- RMT RX Config ---
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_rx_channel_config.gpio_num = _gpio;
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_rx_channel_config.clk_src = DSHOT_CLOCK_SRC_DEFAULT;
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_rx_channel_config.resolution_hz = DSHOT_RMT_RESOLUTION;
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_rx_channel_config.mem_block_symbols = DSHOT_SYMBOLS_SIZE;
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2025-06-17 19:56:50 +01:00
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2025-07-30 23:36:58 +01:00
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_receive_config.signal_range_min_ns = 300;
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_receive_config.signal_range_max_ns = 5000;
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2025-07-17 22:24:28 +01:00
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2025-07-30 23:36:58 +01:00
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// Create and activate RMT TX Channel
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if (rmt_new_rx_channel(&_rx_channel_config, &_rmt_rx_channel) != DSHOT_OK)
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{
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return DSHOT_ERROR;
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}
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2025-07-29 23:40:09 +01:00
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2025-07-30 23:36:58 +01:00
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return rmt_enable(_rmt_rx_channel) == 0;
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2025-06-17 19:56:50 +01:00
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}
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2025-07-30 23:36:58 +01:00
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//
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bool DShotRMT::_initDShotEncoder()
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2025-06-17 19:56:50 +01:00
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{
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2025-07-30 23:36:58 +01:00
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// Creates a dummy encoder
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rmt_copy_encoder_config_t encoder_config = {};
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return rmt_new_copy_encoder(&encoder_config, &_dshot_encoder) == 0;
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2025-06-17 19:56:50 +01:00
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}
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2025-08-03 21:21:30 +01:00
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// Use RMT to transmit a prepared DShot packet and returns it
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uint16_t DShotRMT::_sendDShotFrame(const dshot_packet_t &packet)
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2025-06-13 20:50:00 +01:00
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{
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2025-08-03 21:21:30 +01:00
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// Encodes packet directly into RMT Buffer
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rmt_symbol_word_t tx_symbols[DSHOT_BITS_PER_FRAME];
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_encodeDShotFrame(packet, tx_symbols);
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2025-07-30 23:36:58 +01:00
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//
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if (!_timer_signal())
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{
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2025-08-03 21:21:30 +01:00
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return DSHOT_NULL_PACKET;
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2025-07-30 23:36:58 +01:00
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}
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2025-07-29 23:40:09 +01:00
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2025-07-30 23:36:58 +01:00
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// Trigger RMT Transmit
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if (rmt_transmit(_rmt_tx_channel, _dshot_encoder, tx_symbols, DSHOT_SYMBOLS_SIZE, &_transmit_config) != 0)
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2023-04-15 06:45:14 +01:00
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{
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2025-07-30 23:36:58 +01:00
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Serial.println("Failed to transmit DShot packet");
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2025-08-03 21:21:30 +01:00
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return DSHOT_NULL_PACKET;
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2025-07-30 23:36:58 +01:00
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}
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2025-08-03 21:21:30 +01:00
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// Time Stamp
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2025-07-30 23:36:58 +01:00
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_timer_reset();
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2025-08-03 21:21:30 +01:00
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return _assembleDShotFrame(packet);
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2025-07-30 23:36:58 +01:00
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}
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//
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uint16_t DShotRMT::_calculateCRC(const dshot_packet_t &packet)
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{
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uint16_t data = (packet.throttle_value << 1) | packet.telemetric_request;
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uint16_t crc = (data ^ (data >> 4) ^ (data >> 8)) & 0b0000000000001111;
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// Invert CRC for bidirectional DShot
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if (packet.telemetric_request)
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{
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crc = (~crc) & 0b0000000000001111;
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}
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return crc;
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}
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2025-08-02 15:11:10 +01:00
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//
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2025-07-30 23:36:58 +01:00
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uint16_t DShotRMT::_assembleDShotFrame(const dshot_packet_t &packet)
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{
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2025-08-02 15:11:10 +01:00
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// Parses DShot Frame
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2025-07-30 23:36:58 +01:00
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uint16_t data = (packet.throttle_value << 1) | packet.telemetric_request;
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return (data << 4) | packet.checksum;
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}
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2025-08-02 15:11:10 +01:00
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//
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2025-08-03 21:21:30 +01:00
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bool DShotRMT::_encodeDShotFrame(const dshot_packet_t& packet, rmt_symbol_word_t* symbols)
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2025-07-30 23:36:58 +01:00
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{
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2025-08-03 21:21:30 +01:00
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// Encoding to "raw" DShot Packet
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uint16_t frame_bits = _assembleDShotFrame(packet);
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2025-08-02 15:11:10 +01:00
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2025-08-03 21:21:30 +01:00
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// Convert the parsed dshot frame to rmt_tx data
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for (int i = 0; i < DSHOT_BITS_PER_FRAME; i++)
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{
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// Encode RMT symbols bitwise (MSB first) - tricky
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bool bit = (frame_bits >> (DSHOT_BITS_PER_FRAME - 1 - i)) & 0b0000000000000001;
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if (_is_bidirectional)
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2025-07-31 12:16:58 +01:00
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{
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2025-08-03 21:21:30 +01:00
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symbols[i].level0 = 0;
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symbols[i].duration0 = bit ? _timing_config.ticks_one_high : _timing_config.ticks_zero_high;
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symbols[i].level1 = 1;
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symbols[i].duration1 = bit ? _timing_config.ticks_one_low : _timing_config.ticks_zero_low;
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}
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else
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{
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symbols[i].level0 = 1;
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symbols[i].duration0 = bit ? _timing_config.ticks_one_high : _timing_config.ticks_zero_high;
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symbols[i].level1 = 0;
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symbols[i].duration1 = bit ? _timing_config.ticks_one_low : _timing_config.ticks_zero_low;
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2025-07-17 22:24:28 +01:00
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}
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2023-04-15 06:45:14 +01:00
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}
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2025-08-03 21:21:30 +01:00
|
|
|
return DSHOT_OK;
|
2021-06-29 19:05:20 +01:00
|
|
|
}
|
2025-07-17 22:24:28 +01:00
|
|
|
|
2025-07-30 23:36:58 +01:00
|
|
|
//
|
|
|
|
|
uint16_t DShotRMT::_decodeDShotFrame(const rmt_symbol_word_t *symbols, size_t symbol_count)
|
2025-07-17 22:24:28 +01:00
|
|
|
{
|
2025-07-30 23:36:58 +01:00
|
|
|
uint16_t received_frame = 0;
|
2025-07-17 22:24:28 +01:00
|
|
|
|
2025-07-30 23:36:58 +01:00
|
|
|
// Decode each symbol to reconstruct the frame
|
|
|
|
|
for (size_t i = 0; i < DSHOT_BITS_PER_FRAME; ++i)
|
2025-07-17 22:24:28 +01:00
|
|
|
{
|
2025-07-30 23:36:58 +01:00
|
|
|
bool bit = symbols[i].duration0 < symbols[i].duration1;
|
2025-07-19 15:41:04 +01:00
|
|
|
received_frame = (received_frame << 1) | bit;
|
2025-07-17 22:24:28 +01:00
|
|
|
}
|
|
|
|
|
|
2025-07-30 23:36:58 +01:00
|
|
|
// Extract payload and CRC
|
|
|
|
|
uint16_t data = received_frame >> 4;
|
|
|
|
|
uint8_t received_crc = received_frame & 0b0000000000001111;
|
2025-07-17 22:24:28 +01:00
|
|
|
|
2025-07-19 15:41:04 +01:00
|
|
|
// Calculate CRC for received frame
|
2025-07-30 23:36:58 +01:00
|
|
|
uint8_t calculated_crc = (data ^ (data >> 4) ^ (data >> 8)) & 0b0000000000001111;
|
|
|
|
|
if (_is_bidirectional)
|
|
|
|
|
{
|
|
|
|
|
calculated_crc = (~calculated_crc) & 0b0000000000001111;
|
|
|
|
|
}
|
2025-07-17 22:24:28 +01:00
|
|
|
|
2025-07-30 23:36:58 +01:00
|
|
|
// Compare CRC
|
|
|
|
|
if (received_crc != calculated_crc)
|
2025-07-19 15:41:04 +01:00
|
|
|
{
|
2025-07-30 23:36:58 +01:00
|
|
|
Serial.println("RX CRC Check failed");
|
|
|
|
|
return 0b0000000000000000;
|
2025-07-19 15:41:04 +01:00
|
|
|
}
|
2025-07-17 22:24:28 +01:00
|
|
|
|
2025-07-30 23:36:58 +01:00
|
|
|
// Remove telemetry bit and return eRPM
|
|
|
|
|
return data >> 1;
|
|
|
|
|
}
|
|
|
|
|
|
2025-08-02 15:11:10 +01:00
|
|
|
//
|
2025-07-30 23:36:58 +01:00
|
|
|
bool DShotRMT::_timer_signal()
|
|
|
|
|
{
|
2025-08-02 15:11:10 +01:00
|
|
|
return (micros() - _last_transmission_time) >= _frame_time_us;
|
2025-07-30 23:36:58 +01:00
|
|
|
}
|
|
|
|
|
|
2025-08-02 15:11:10 +01:00
|
|
|
//
|
2025-08-03 21:21:30 +01:00
|
|
|
bool DShotRMT::_timer_reset()
|
2025-07-30 23:36:58 +01:00
|
|
|
{
|
2025-08-03 21:21:30 +01:00
|
|
|
// Timestamp update
|
2025-07-30 23:36:58 +01:00
|
|
|
_last_transmission_time = micros();
|
2025-08-03 21:21:30 +01:00
|
|
|
return DSHOT_OK;
|
2025-07-18 10:13:43 +01:00
|
|
|
}
|