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https://github.com/pascallanger/DIY-Multiprotocol-TX-Module.git
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MT99XX Dragon telem prep
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108
Multiprotocol/Fake_nrf24l01.ino
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108
Multiprotocol/Fake_nrf24l01.ino
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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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#if defined(FAKE_NRF24L01_INO)
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#include "iface_nrf250k.h"
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static void __attribute__((unused)) FAKE_send_packet()
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{
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for(uint8_t i=0;i<5;i++)
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packet[i]=i;
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NRF24L01_WriteReg(NRF24L01_07_STATUS, (_BV(NRF24L01_07_RX_DR) | _BV(NRF24L01_07_TX_DS) | _BV(NRF24L01_07_MAX_RT)));
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NRF24L01_FlushTx();
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NRF24L01_WritePayload(packet, 5);
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}
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static void __attribute__((unused)) FAKE_init()
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{
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// BIND_IN_PROGRESS;
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//CC2500
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option=1;
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XN297L_Init();
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CC2500_WriteReg(CC2500_07_PKTCTRL1, 0x01); // Packet Automation Control
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CC2500_WriteReg(CC2500_08_PKTCTRL0, 0x00); // Packet Automation Control
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CC2500_WriteReg(CC2500_12_MDMCFG2, 0x12); // Modem Configuration
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CC2500_WriteReg(CC2500_13_MDMCFG1, 0x13); // Modem Configuration
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CC2500_WriteReg(CC2500_04_SYNC1, 0x11);
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CC2500_WriteReg(CC2500_05_SYNC0, 0x33);
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CC2500_WriteReg(CC2500_09_ADDR, 0x99);
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CC2500_WriteReg(CC2500_06_PKTLEN, 10);
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CC2500_SetTxRxMode(RX_EN);
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CC2500_Strobe(CC2500_SIDLE);
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CC2500_Strobe(CC2500_SRX);
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//CC2500_SetTxRxMode(TX_EN);
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XN297L_RFChannel(0);
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//NRF
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/* option=0;
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PE1_on; //NRF24L01 antenna RF3 by default
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PE2_off; //NRF24L01 antenna RF3 by default
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NRF24L01_Initialize();
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NRF24L01_WriteReg(NRF24L01_00_CONFIG, 0x7f);
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NRF24L01_WriteReg(NRF24L01_01_EN_AA, 0x00);//0x3f); // AA on all pipes
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NRF24L01_WriteReg(NRF24L01_02_EN_RXADDR, 0x3f); // Enable all pipes
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NRF24L01_WriteReg(NRF24L01_03_SETUP_AW, 0x03); // 5-byte address
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NRF24L01_WriteReg(NRF24L01_04_SETUP_RETR, 0x36); // retransmit 1ms, 6 times
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NRF24L01_SetBitrate(NRF24L01_BR_250K); // 1Mbps
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NRF24L01_SetPower();
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NRF24L01_WriteRegisterMulti(NRF24L01_0A_RX_ADDR_P0, (uint8_t *)"\x99\x33\x11\xAA\xAA", 5); //Bind address
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NRF24L01_WriteRegisterMulti(NRF24L01_10_TX_ADDR, (uint8_t *)"\x99\x33\x11\xAA\xAA", 5); //Bind address
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NRF24L01_WriteReg(NRF24L01_05_RF_CH, 0);
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NRF24L01_Activate(0x73); // Activate feature register
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NRF24L01_WriteReg(NRF24L01_1C_DYNPD, 0x3f); // Enable dynamic payload length
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NRF24L01_WriteReg(NRF24L01_1D_FEATURE, 0x07); // Enable all features
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*/
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/*NRF24L01_FlushTx();
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NRF24L01_SetTxRxMode(TX_EN);*/
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}
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uint16_t FAKE_callback()
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{
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len = CC2500_ReadReg(CC2500_3B_RXBYTES | CC2500_READ_BURST) & 0x7F;
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if(len) debug("L=%d, ",len);
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if(len && len < sizeof(packet_in))
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{
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CC2500_ReadData(packet_in, len);
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debug("P:");
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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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}
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if(len) debugln("");
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CC2500_Strobe(CC2500_SFRX);
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CC2500_Strobe(CC2500_SIDLE);
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CC2500_Strobe(CC2500_SRX);
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option=0;
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//FAKE_send_packet();
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PE1_off; //antenna RF2
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PE2_on;
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/*packet[0]=0x99;
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for(uint8_t i=1;i<5;i++)
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packet[i]=i;
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CC2500_WriteData(packet, 5);*/
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return 10000;
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}
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uint16_t initFAKE()
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{
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FAKE_init();
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return 5000;
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}
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#endif
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