mirror of
https://github.com/pascallanger/DIY-Multiprotocol-TX-Module.git
synced 2025-02-04 22:28:12 +00:00
203 lines
5.0 KiB
C++
203 lines
5.0 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(FRSKYD_CC2500_INO)
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#include "iface_cc2500.h"
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static void __attribute__((unused)) frsky2way_init(uint8_t bind)
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{
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FRSKY_init_cc2500(FRSKYD_cc2500_conf);
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CC2500_WriteReg(CC2500_09_ADDR, bind ? 0x03 : rx_tx_addr[3]);
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CC2500_WriteReg(CC2500_07_PKTCTRL1, 0x05);
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CC2500_Strobe(CC2500_SIDLE); // Go to idle...
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//
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CC2500_WriteReg(CC2500_0A_CHANNR, 0x00);
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CC2500_WriteReg(CC2500_23_FSCAL3, 0x89);
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CC2500_Strobe(CC2500_SFRX);
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//#######END INIT########
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}
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static void __attribute__((unused)) frsky2way_build_bind_packet()
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{
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//11 03 01 d7 2d 00 00 1e 3c 5b 78 00 00 00 00 00 00 01
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//11 03 01 19 3e 00 02 8e 2f bb 5c 00 00 00 00 00 00 01
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packet[0] = 0x11;
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packet[1] = 0x03;
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packet[2] = 0x01;
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packet[3] = rx_tx_addr[3];
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packet[4] = rx_tx_addr[2];
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uint16_t idx = ((state -FRSKY_BIND) % 10) * 5;
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packet[5] = idx;
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packet[6] = hopping_frequency[idx++];
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packet[7] = hopping_frequency[idx++];
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packet[8] = hopping_frequency[idx++];
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packet[9] = hopping_frequency[idx++];
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packet[10] = hopping_frequency[idx++];
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packet[11] = 0x00;
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packet[12] = 0x00;
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packet[13] = 0x00;
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packet[14] = 0x00;
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packet[15] = 0x00;
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packet[16] = 0x00;
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packet[17] = 0x01;
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}
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static void __attribute__((unused)) frsky2way_data_frame()
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{//pachet[4] is telemetry user frame counter(hub)
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//11 d7 2d 22 00 01 c9 c9 ca ca 88 88 ca ca c9 ca 88 88
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//11 57 12 00 00 01 f2 f2 f2 f2 06 06 ca ca ca ca 18 18
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packet[0] = 0x11; //Length
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packet[1] = rx_tx_addr[3];
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packet[2] = rx_tx_addr[2];
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packet[3] = counter;//
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#if defined TELEMETRY
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packet[4] = telemetry_counter;
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#else
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packet[4] = 0x00;
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#endif
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packet[5] = 0x01;
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//
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packet[10] = 0;
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packet[11] = 0;
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packet[16] = 0;
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packet[17] = 0;
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for(uint8_t i = 0; i < 8; i++)
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{
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uint16_t value;
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value = convert_channel_frsky(i);
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if(i < 4)
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{
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packet[6+i] = value & 0xff;
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packet[10+(i>>1)] |= ((value >> 8) & 0x0f) << (4 *(i & 0x01));
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}
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else
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{
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packet[8+i] = value & 0xff;
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packet[16+((i-4)>>1)] |= ((value >> 8) & 0x0f) << (4 * ((i-4) & 0x01));
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}
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}
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}
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uint16_t initFrSky_2way()
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{
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Frsky_init_hop();
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packet_count=0;
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#if defined TELEMETRY
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init_frskyd_link_telemetry();
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#endif
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if(IS_BIND_IN_PROGRESS)
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{
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frsky2way_init(1);
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state = FRSKY_BIND;
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}
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else
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{
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state = FRSKY_BIND_DONE;
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}
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return 10000;
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}
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uint16_t ReadFrSky_2way()
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{
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if (state < FRSKY_BIND_DONE)
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{
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frsky2way_build_bind_packet();
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CC2500_Strobe(CC2500_SIDLE);
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CC2500_WriteReg(CC2500_0A_CHANNR, 0x00);
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CC2500_WriteReg(CC2500_23_FSCAL3, 0x89);
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CC2500_Strobe(CC2500_SFRX);//0x3A
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CC2500_WriteData(packet, packet[0]+1);
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if(IS_BIND_DONE)
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state = FRSKY_BIND_DONE;
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else
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state++;
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return 9000;
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}
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if (state == FRSKY_BIND_DONE)
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{
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state = FRSKY_DATA2;
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frsky2way_init(0);
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counter = 0;
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BIND_DONE;
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}
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else
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if (state == FRSKY_DATA5)
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{
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CC2500_Strobe(CC2500_SRX);//0x34 RX enable
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state = FRSKY_DATA1;
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return 9200;
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}
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counter = (counter + 1) % 188;
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if (state == FRSKY_DATA4)
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{ //telemetry receive
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CC2500_SetTxRxMode(RX_EN);
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CC2500_Strobe(CC2500_SIDLE);
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CC2500_WriteReg(CC2500_0A_CHANNR, hopping_frequency[counter % 47]);
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CC2500_WriteReg(CC2500_23_FSCAL3, 0x89);
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state++;
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return 1300;
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}
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else
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{
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if (state == FRSKY_DATA1)
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{
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len = CC2500_ReadReg(CC2500_3B_RXBYTES | CC2500_READ_BURST) & 0x7F;
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if (len && len<=(0x11+3))// 20bytes
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{
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CC2500_ReadData(pkt, len); //received telemetry packets
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#if defined(TELEMETRY)
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if(pkt[len-1] & 0x80)
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{//with valid crc
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packet_count=0;
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frsky_check_telemetry(pkt,len); //check if valid telemetry packets and buffer them.
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}
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#endif
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}
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else
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{
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packet_count++;
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// restart sequence on missed packet - might need count or timeout instead of one missed
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if(packet_count>100)
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{//~1sec
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packet_count=0;
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#if defined TELEMETRY
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telemetry_link=0;//no link frames
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pkt[6]=0;//no user frames.
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#endif
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}
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}
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CC2500_SetTxRxMode(TX_EN);
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CC2500_SetPower(); // Set tx_power
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}
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CC2500_Strobe(CC2500_SIDLE);
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CC2500_WriteReg(CC2500_0A_CHANNR, hopping_frequency[counter % 47]);
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if ( prev_option != option )
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{
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CC2500_WriteReg(CC2500_0C_FSCTRL0,option); // Frequency offset hack
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prev_option = option ;
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}
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CC2500_WriteReg(CC2500_23_FSCAL3, 0x89);
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CC2500_Strobe(CC2500_SFRX);
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frsky2way_data_frame();
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CC2500_WriteData(packet, packet[0]+1);
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state++;
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}
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return state == FRSKY_DATA4 ? 7500 : 9000;
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}
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#endif
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