mirror of
https://github.com/pascallanger/DIY-Multiprotocol-TX-Module.git
synced 2025-02-04 21:48:12 +00:00
207 lines
6.3 KiB
C++
207 lines
6.3 KiB
C++
/*
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This project is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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Multiprotocol is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with Multiprotocol. If not, see <http://www.gnu.org/licenses/>.
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*/
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#if defined(BAYANG_RX_NRF24L01_INO)
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#include "iface_nrf24l01.h"
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#define BAYANG_RX_PACKET_SIZE 15
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#define BAYANG_RX_RF_NUM_CHANNELS 4
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#define BAYANG_RX_RF_BIND_CHANNEL 0
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#define BAYANG_RX_ADDRESS_LENGTH 5
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enum {
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BAYANG_RX_BIND = 0,
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BAYANG_RX_DATA
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};
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static void __attribute__((unused)) Bayang_Rx_init_nrf24l01()
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{
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const uint8_t bind_address[BAYANG_RX_ADDRESS_LENGTH] = { 0,0,0,0,0 };
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NRF24L01_Initialize();
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XN297_SetTXAddr(bind_address, BAYANG_RX_ADDRESS_LENGTH);
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XN297_SetRXAddr(bind_address, BAYANG_RX_ADDRESS_LENGTH);
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NRF24L01_FlushRx();
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NRF24L01_WriteReg(NRF24L01_07_STATUS, 0x70); // Clear data ready, data sent, and retransmit
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NRF24L01_WriteReg(NRF24L01_01_EN_AA, 0x00); // No Auto Acknowldgement on all data pipes
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NRF24L01_WriteReg(NRF24L01_02_EN_RXADDR, 0x01); // Enable data pipe 0 only
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NRF24L01_WriteReg(NRF24L01_11_RX_PW_P0, BAYANG_RX_PACKET_SIZE + 2); // 2 extra bytes for xn297 crc
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NRF24L01_WriteReg(NRF24L01_05_RF_CH, BAYANG_RX_RF_BIND_CHANNEL);
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NRF24L01_SetBitrate(NRF24L01_BR_1M); // 1Mbps
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NRF24L01_SetPower();
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NRF24L01_Activate(0x73); // Activate feature register
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NRF24L01_WriteReg(NRF24L01_1C_DYNPD, 0x00); // Disable dynamic payload length on all pipes
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NRF24L01_WriteReg(NRF24L01_1D_FEATURE, 0x01);
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NRF24L01_Activate(0x73);
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NRF24L01_SetTxRxMode(TXRX_OFF);
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NRF24L01_FlushRx();
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NRF24L01_SetTxRxMode(RX_EN);
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XN297_Configure(_BV(NRF24L01_00_EN_CRC) | _BV(NRF24L01_00_CRCO) | _BV(NRF24L01_00_PWR_UP) | _BV(NRF24L01_00_PRIM_RX));
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}
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static uint8_t __attribute__((unused)) Bayang_Rx_check_validity() {
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uint8_t sum = packet[0];
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for (uint8_t i = 1; i < BAYANG_RX_PACKET_SIZE - 1; i++)
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sum += packet[i];
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return sum == packet[14];
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}
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static void __attribute__((unused)) Bayang_Rx_build_telemetry_packet()
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{
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uint32_t bits = 0;
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uint8_t bitsavailable = 0;
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uint8_t idx = 0;
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packet_in[idx++] = RX_LQI;
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packet_in[idx++] = RX_LQI>>1; // no RSSI: 125..0
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packet_in[idx++] = 0; // start channel
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packet_in[idx++] = 10; // number of channels in packet
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// convert & pack channels
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for (uint8_t i = 0; i < packet_in[3]; i++) {
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uint32_t val = CHANNEL_MIN_100;
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if (i < 4) {
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// AETR
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//val = (((packet[4 + i * 2] & ~0x7C) << 8) | packet[5 + i * 2]) << 1;
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val=packet[4 + i * 2]&0x03;
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val=(val<<8)+packet[5 + i * 2];
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val=((val+128)<<3)/5;
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} else if (i == 4 || i == 5) {
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val=packet[i==4?1:13];
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val=((val+32)<<5)/5; // extra analog channel
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} else if (((i == 6) && (packet[2] & 0x08)) || // flip
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((i == 7) && (packet[2] & 0x01)) || // rth
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((i == 8) && (packet[2] & 0x20)) || // picture
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((i == 9) && (packet[2] & 0x10))) { // video
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// set channel to 100% if feature is enabled
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val = CHANNEL_MAX_100;
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}
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bits |= val << bitsavailable;
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bitsavailable += 11;
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while (bitsavailable >= 8) {
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packet_in[idx++] = bits & 0xff;
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bits >>= 8;
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bitsavailable -= 8;
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}
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}
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}
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uint16_t initBayang_Rx()
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{
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uint8_t i;
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Bayang_Rx_init_nrf24l01();
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hopping_frequency_no = 0;
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rx_data_started = false;
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rx_data_received = false;
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if (IS_BIND_IN_PROGRESS) {
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phase = BAYANG_RX_BIND;
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}
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else {
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uint16_t temp = BAYANG_RX_EEPROM_OFFSET;
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for (i = 0; i < 5; i++)
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rx_tx_addr[i] = eeprom_read_byte((EE_ADDR)temp++);
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for (i = 0; i < BAYANG_RX_RF_NUM_CHANNELS; i++)
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hopping_frequency[i] = eeprom_read_byte((EE_ADDR)temp++);
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XN297_SetTXAddr(rx_tx_addr, BAYANG_RX_ADDRESS_LENGTH);
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XN297_SetRXAddr(rx_tx_addr, BAYANG_RX_ADDRESS_LENGTH);
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phase = BAYANG_RX_DATA;
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}
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return 1000;
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}
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uint16_t Bayang_Rx_callback()
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{
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uint8_t i;
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static int8_t read_retry;
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switch (phase) {
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case BAYANG_RX_BIND:
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if(IS_BIND_DONE) return initBayang_Rx(); // Abort bind
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if (NRF24L01_ReadReg(NRF24L01_07_STATUS) & _BV(NRF24L01_07_RX_DR)) {
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// data received from TX
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if (XN297_ReadPayload(packet, BAYANG_RX_PACKET_SIZE) && ( packet[0] == 0xA4 || packet[0] == 0xA2 ) && Bayang_Rx_check_validity()) {
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// store tx info into eeprom
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uint16_t temp = BAYANG_RX_EEPROM_OFFSET;
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for (i = 0; i < 5; i++) {
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rx_tx_addr[i] = packet[i + 1];
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eeprom_write_byte((EE_ADDR)temp++, rx_tx_addr[i]);
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}
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for (i = 0; i < 4; i++) {
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hopping_frequency[i] = packet[i + 6];
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eeprom_write_byte((EE_ADDR)temp++, hopping_frequency[i]);
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}
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XN297_SetTXAddr(rx_tx_addr, BAYANG_RX_ADDRESS_LENGTH);
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XN297_SetRXAddr(rx_tx_addr, BAYANG_RX_ADDRESS_LENGTH);
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BIND_DONE;
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phase = BAYANG_RX_DATA;
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}
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NRF24L01_FlushRx();
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NRF24L01_WriteReg(NRF24L01_07_STATUS, 0x70);
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}
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break;
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case BAYANG_RX_DATA:
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if (NRF24L01_ReadReg(NRF24L01_07_STATUS) & _BV(NRF24L01_07_RX_DR)) {
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if (XN297_ReadPayload(packet, BAYANG_RX_PACKET_SIZE) && packet[0] == 0xA5 && Bayang_Rx_check_validity()) {
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if (telemetry_link == 0) {
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Bayang_Rx_build_telemetry_packet();
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telemetry_link = 1;
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}
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rx_data_started = true;
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rx_data_received = true;
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read_retry = 8;
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pps_counter++;
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}
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}
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// packets per second
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if (millis() - pps_timer >= 1000) {
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pps_timer = millis();
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debugln("%d pps", pps_counter);
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RX_LQI = pps_counter >> 1;
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pps_counter = 0;
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}
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// frequency hopping
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if (read_retry++ >= 8) {
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hopping_frequency_no++;
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if (hopping_frequency_no >= BAYANG_RX_RF_NUM_CHANNELS)
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hopping_frequency_no = 0;
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NRF24L01_WriteReg(NRF24L01_05_RF_CH, hopping_frequency[hopping_frequency_no]);
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NRF24L01_FlushRx();
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NRF24L01_WriteReg(NRF24L01_07_STATUS, 0x70);
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if (rx_data_started)
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{
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if(rx_data_received)
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{ // In sync
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rx_data_received = false;
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read_retry = 5;
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return 1500;
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}
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else
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{ // packet lost
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read_retry = 0;
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if(RX_LQI==0) // communication lost
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rx_data_started=false;
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}
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}
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else
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read_retry = -16; // retry longer until first packet is caught
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}
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return 250;
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}
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return 1000;
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}
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#endif
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