2020-07-22 15:37:47 +02:00
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/*
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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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// Radiolink surface protocol. TXs: RC4GS,RC6GS. Compatible RXs:R7FG(Std),R6FG,R6F,R8EF,R8FM,R8F,R4FGM
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#if defined(RLINK_CC2500_INO)
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#include "iface_cc2500.h"
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2020-07-23 15:08:23 +02:00
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#define RLINK_FORCE_ID
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2020-07-22 15:37:47 +02:00
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#define RLINK_TX_PACKET_LEN 33
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#define RLINK_RX_PACKET_LEN 15
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#define RLINK_TX_ID_LEN 4
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2020-07-28 00:55:47 +02:00
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#define RLINK_HOP 16
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2020-07-22 15:37:47 +02:00
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enum {
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RLINK_DATA = 0x00,
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RLINK_RX1 = 0x01,
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RLINK_RX2 = 0x02,
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};
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const PROGMEM uint8_t RLINK_init_values[] = {
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/* 00 */ 0x5B, 0x06, 0x5C, 0x07, 0xAB, 0xCD, 0x40, 0x04,
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/* 08 */ 0x45, 0x00, 0x00, 0x06, 0x00, 0x5C, 0x62, 0x76,
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/* 10 */ 0x7A, 0x7F, 0x13, 0x23, 0xF8, 0x44, 0x07, 0x30,
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/* 18 */ 0x18, 0x16, 0x6C, 0x43, 0x40, 0x91, 0x87, 0x6B,
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/* 20 */ 0xF8, 0x56, 0x10, 0xA9, 0x0A, 0x00, 0x11
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};
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static void __attribute__((unused)) RLINK_init()
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{
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2020-07-28 00:55:47 +02:00
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hopping_frequency[RLINK_HOP]=16;
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// channels order depend on ID and currently unknown...
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2020-07-22 15:37:47 +02:00
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#ifdef RLINK_FORCE_ID
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2020-07-28 00:55:47 +02:00
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//surface
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2020-07-22 15:37:47 +02:00
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memcpy(rx_tx_addr,"\x3A\x99\x22\x3A",RLINK_TX_ID_LEN);
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2020-07-28 00:55:47 +02:00
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memcpy(hopping_frequency,"\x1\xF\x8\x9\x2\x5\x0\x6\x4\xE\xB\xD\x3\xA\xC\x7",RLINK_HOP); //end value is value*12+6
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//air
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memcpy(rx_tx_addr,"\xFC\x11\x0D\x20",RLINK_TX_ID_LEN);
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memcpy(hopping_frequency,"\xB\xC\xF\xE\x5\x9\x8\x4\x3\x7\xA\x1\xD\x0\x6\x2",RLINK_HOP); //end value is value*12
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2020-07-22 15:37:47 +02:00
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#endif
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2020-07-23 15:08:23 +02:00
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2020-07-28 00:55:47 +02:00
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// set channels value based on ID
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for(uint8_t i=0;i<=RLINK_HOP;i++)
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hopping_frequency[i]=3*(4*hopping_frequency[i]+(rx_tx_addr[0]&3));
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// replace one of the channel randomely
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rf_ch_num=random(0xfefefefe)&0x0F; // 0x00..0x0F
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if(hopping_frequency[RLINK_HOP]==0xC9)
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hopping_frequency[rf_ch_num]=0xC6;
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else
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hopping_frequency[rf_ch_num]=hopping_frequency[RLINK_HOP];
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debug("Hop(%d):", rf_ch_num);
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for(uint8_t i=0;i<RLINK_HOP;i++)
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debug(" 0x%02X",hopping_frequency[i]);
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debugln("");
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2020-07-22 15:37:47 +02:00
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}
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static void __attribute__((unused)) RLINK_rf_init()
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{
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CC2500_Strobe(CC2500_SIDLE);
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for (uint8_t i = 0; i < 39; ++i)
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CC2500_WriteReg(i, pgm_read_byte_near(&RLINK_init_values[i]));
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prev_option = option;
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CC2500_WriteReg(CC2500_0C_FSCTRL0, option);
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CC2500_SetTxRxMode(TX_EN);
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CC2500_SetPower();
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}
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static void __attribute__((unused)) RLINK_tune_freq()
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{
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if ( prev_option != option )
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{
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CC2500_WriteReg(CC2500_0C_FSCTRL0, option);
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prev_option = option ;
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}
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}
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static void __attribute__((unused)) RLINK_TIMING_RFSEND_packet()
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{
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2020-07-22 20:05:56 +02:00
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static uint32_t pseudo=0;
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uint32_t bits = 0;
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2020-07-22 15:37:47 +02:00
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uint8_t bitsavailable = 0;
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uint8_t idx = 6;
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CC2500_Strobe(CC2500_SIDLE);
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// packet length
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packet[0] = RLINK_TX_PACKET_LEN;
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// header
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2020-07-28 00:55:47 +02:00
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if(sub_protocol)
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packet[1] = 0x21; //air 0x21 on dump but it looks to support telemetry
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else
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{//surface
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packet[1] = 0x00;
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//radiolink additionnal ID which is working only on a small set of RXs
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//if(RX_num) packet[1] |= ((RX_num+2)<<4)+4; // RX number limited to 10 values, 0 is a wildcard
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}
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packet[1] |= packet_count>3?0x03:0x01; // packet type: 0x01 normal, 0x03 request telemetry
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2020-07-22 15:37:47 +02:00
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// ID
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memcpy(&packet[2],rx_tx_addr,RLINK_TX_ID_LEN);
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// pack 16 channels on 11 bits values between 170 and 1876, 1023 middle. The last 8 channels are failsafe values associated to the first 8 values.
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for (uint8_t i = 0; i < 16; i++)
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{
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uint32_t val = convert_channel_16b_nolimit(i,170,1876); // allow extended limits
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if (val & 0x8000)
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val = 0;
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else if (val > 2047)
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val=2047;
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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[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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// hop
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2020-07-23 15:08:23 +02:00
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pseudo=((pseudo * 0xAA) + 0x03) % 0x7673; // calc next pseudo random value
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CC2500_WriteReg(CC2500_0A_CHANNR, hopping_frequency[pseudo & 0x0F]);
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2020-07-22 15:37:47 +02:00
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packet[28]= pseudo;
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packet[29]= pseudo >> 8;
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packet[30]= 0x00; // unknown
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packet[31]= 0x00; // unknown
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packet[32]= rf_ch_num; // value equal to 0xC6 in the RF table
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// check
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uint8_t sum=0;
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2020-07-22 20:05:56 +02:00
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for(uint8_t i=1;i<33;i++)
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sum+=packet[i];
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packet[33]=sum;
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// send packet
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CC2500_WriteData(packet, RLINK_TX_PACKET_LEN+1);
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// packets type
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packet_count++;
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2020-07-22 20:05:56 +02:00
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if(packet_count>5) packet_count=0;
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2020-07-28 00:55:47 +02:00
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//debug("P(%02X):",hopping_frequency[pseudo & 0x0F]);
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2020-07-22 20:05:56 +02:00
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//for(uint8_t i=0;i<RLINK_TX_PACKET_LEN+1;i++)
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// debug(" 0x%02X",packet[i]);
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//debugln("");
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2020-07-22 15:37:47 +02:00
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}
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#define RLINK_TIMING_PROTO 20000
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2020-07-23 10:03:04 +02:00
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#define RLINK_TIMING_RFSEND 10500
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2020-07-22 15:37:47 +02:00
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#define RLINK_TIMING_CHECK 2000
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uint16_t RLINK_callback()
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{
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switch(phase)
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{
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case RLINK_DATA:
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#ifdef MULTI_SYNC
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telemetry_set_input_sync(RLINK_TIMING_PROTO);
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#endif
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RLINK_tune_freq();
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RLINK_TIMING_RFSEND_packet();
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#if not defined RLINK_HUB_TELEMETRY
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return RLINK_TIMING_PROTO;
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#else
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2020-07-28 00:55:47 +02:00
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if(!(packet[1]&0x02))
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return RLINK_TIMING_PROTO; //Normal packet
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phase++; // RX1
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2020-07-28 00:55:47 +02:00
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return RLINK_TIMING_RFSEND; //Telemetry packet
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2020-07-22 15:37:47 +02:00
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case RLINK_RX1:
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CC2500_Strobe(CC2500_SIDLE);
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CC2500_Strobe(CC2500_SFRX);
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CC2500_SetTxRxMode(RX_EN);
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CC2500_Strobe(CC2500_SRX);
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phase++; // RX2
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return RLINK_TIMING_PROTO-RLINK_TIMING_RFSEND-RLINK_TIMING_CHECK;
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case RLINK_RX2:
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len = CC2500_ReadReg(CC2500_3B_RXBYTES | CC2500_READ_BURST) & 0x7F;
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if (len == RLINK_RX_PACKET_LEN + 1 + 2) //Telemetry frame is 15 bytes + 1 byte for length + 2 bytes for RSSI&LQI&CRC
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{
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//debug("Telem:");
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CC2500_ReadData(packet_in, len);
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2020-07-23 15:08:23 +02:00
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if(packet_in[0]==RLINK_RX_PACKET_LEN && (packet_in[len-1] & 0x80) && memcmp(&packet[2],rx_tx_addr,RLINK_TX_ID_LEN)==0 && packet_in[6]==packet[1])
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2020-07-22 15:37:47 +02:00
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{//Correct telemetry received: length, CRC, ID and type
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//Debug
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//for(uint8_t i=0;i<len;i++)
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// debug(" %02X",packet_in[i]);
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TX_RSSI = packet_in[len-2];
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if(TX_RSSI >=128)
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TX_RSSI -= 128;
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else
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TX_RSSI += 128;
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RX_RSSI=packet_in[7]; //Should be packet_in[7]-256 but since it's an uint8_t...
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2020-07-23 10:10:08 +02:00
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v_lipo1=packet_in[8]<<1; //RX Batt
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v_lipo2=packet_in[9]<<1; //Batt
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2020-07-22 15:37:47 +02:00
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telemetry_link=1; //Send telemetry out
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pps_counter++;
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packet_count=0;
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}
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//debugln("");
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}
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if (millis() - pps_timer >= 2000)
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2020-07-28 00:55:47 +02:00
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{//1 telemetry packet every 100ms
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2020-07-22 15:37:47 +02:00
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pps_timer = millis();
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2020-07-28 00:55:47 +02:00
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pps_counter*=5;
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2020-07-22 15:37:47 +02:00
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debugln("%d pps", pps_counter);
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TX_LQI = pps_counter; //Max=100%
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pps_counter = 0;
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}
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CC2500_SetTxRxMode(TX_EN);
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phase=RLINK_DATA; // DATA
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return RLINK_TIMING_CHECK;
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#endif
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}
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return 0;
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}
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uint16_t initRLINK()
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{
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BIND_DONE; // Not a TX bind protocol
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RLINK_init();
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RLINK_rf_init();
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packet_count = 0;
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phase = RLINK_DATA;
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return 10000;
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}
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#endif
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