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https://github.com/pascallanger/DIY-Multiprotocol-TX-Module.git
synced 2025-02-04 16:28:10 +00:00
Remove Hisky/HK310 when MULTI_AIR
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@ -66,8 +66,10 @@ static void __attribute__((unused)) HISKY_RF_init()
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NRF24L01_WriteRegisterMulti(NRF24L01_0A_RX_ADDR_P0, rx_tx_addr, 5);
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NRF24L01_WriteRegisterMulti(NRF24L01_0A_RX_ADDR_P0, rx_tx_addr, 5);
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NRF24L01_WriteRegisterMulti(NRF24L01_10_TX_ADDR, rx_tx_addr, 5);
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NRF24L01_WriteRegisterMulti(NRF24L01_10_TX_ADDR, rx_tx_addr, 5);
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NRF24L01_WriteReg(NRF24L01_11_RX_PW_P0, 10); // payload size = 10
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NRF24L01_WriteReg(NRF24L01_11_RX_PW_P0, 10); // payload size = 10
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#ifndef MULTI_AIR
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if(sub_protocol==HK310)
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if(sub_protocol==HK310)
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NRF24L01_SetBitrate(NRF24L01_BR_250K); // 250Kbps
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NRF24L01_SetBitrate(NRF24L01_BR_250K); // 250Kbps
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#endif
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}
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}
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// HiSky channel sequence: AILE ELEV THRO RUDD GEAR PITCH, channel data value is from 0 to 1000
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// HiSky channel sequence: AILE ELEV THRO RUDD GEAR PITCH, channel data value is from 0 to 1000
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@ -92,6 +94,13 @@ static void __attribute__((unused)) HISKY_build_ch_data()
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uint16_t HISKY_callback()
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uint16_t HISKY_callback()
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{
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{
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phase++;
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phase++;
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#ifdef MULTI_AIR
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if(sub_protocol==HK310)
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{
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SUB_PROTO_INVALID;
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return 10000;
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}
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#else
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if(sub_protocol==HK310)
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if(sub_protocol==HK310)
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switch(phase)
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switch(phase)
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{
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{
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@ -132,6 +141,7 @@ uint16_t HISKY_callback()
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phase=8;
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phase=8;
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break;
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break;
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}
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}
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#endif
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switch(phase)
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switch(phase)
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{
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{
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case 1:
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case 1:
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@ -195,6 +205,7 @@ uint16_t HISKY_callback()
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static void __attribute__((unused)) HISKY_initialize_tx_id()
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static void __attribute__((unused)) HISKY_initialize_tx_id()
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{
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{
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//Generate frequency hopping table
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//Generate frequency hopping table
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#ifndef MULTI_AIR
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if(sub_protocol==HK310)
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if(sub_protocol==HK310)
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{
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{
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// for HiSky surface protocol, the transmitter always generates hop channels in sequential order.
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// for HiSky surface protocol, the transmitter always generates hop channels in sequential order.
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@ -204,10 +215,11 @@ static void __attribute__((unused)) HISKY_initialize_tx_id()
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hopping_frequency[i]=hopping_frequency_no++; // Sequential order hop channels...
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hopping_frequency[i]=hopping_frequency_no++; // Sequential order hop channels...
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}
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}
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else
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else
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calc_fh_channels(HISKY_FREQUENCE_NUM);
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#endif
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// HiSky air protocol uses TX id as an address for nRF24L01, and uses frequency hopping sequence
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// HiSky air protocol uses TX id as an address for nRF24L01, and uses frequency hopping sequence
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// which does not depend on this id and is passed explicitly in binding sequence. So we are free
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// which does not depend on this id and is passed explicitly in binding sequence. So we are free
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// to generate this sequence as we wish. It should be in the range [02..77]
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// to generate this sequence as we wish. It should be in the range [02..77]
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calc_fh_channels(HISKY_FREQUENCE_NUM);
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}
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}
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void HISKY_init()
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void HISKY_init()
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