
communication master
main.cpp
- Committer:
- voltxd
- Date:
- 2020-12-11
- Revision:
- 4:50108ed2e507
- Parent:
- 3:d59225786982
- Child:
- 5:8279d323e992
File content as of revision 4:50108ed2e507:
#include "mbed.h" #include "nRF24L01P.h" #define SPI2_MOSI PD_4 #define SPI2_MISO PD_3 #define SPI2_SCLK PD_1 #define CSN D9 #define CE D8 #define IRQ D1 Serial pc(USBTX, USBRX); // tx, rx nRF24L01P my_nrf24l01p(SPI2_MOSI, SPI2_MISO, SPI2_SCLK, CSN, CE, IRQ); // mosi, miso, sck, csn, ce, irq DigitalOut myled1(LED1); DigitalOut myled2(LED2); int main() { // The nRF24L01+ supports transfers from 1 to 32 bytes, but Sparkfun's // "Nordic Serial Interface Board" (http://www.sparkfun.com/products/9019) // only handles 4 byte transfers in the ATMega code. #define TRANSFER_SIZE 4 char txData[TRANSFER_SIZE]; int txDataCnt = 0; my_nrf24l01p.powerUp(); // Display the (default) setup of the nRF24L01+ chip pc.printf("Default setup : \r\n"); pc.printf( "nRF24L01+ Frequency : %d MHz\r\n", my_nrf24l01p.getRfFrequency() ); pc.printf( "nRF24L01+ Output power : %d dBm\r\n", my_nrf24l01p.getRfOutputPower() ); pc.printf( "nRF24L01+ Data Rate : %d kbps\r\n", my_nrf24l01p.getAirDataRate() ); pc.printf( "nRF24L01+ TX Address : 0x%010llX\r\n", my_nrf24l01p.getTxAddress() ); pc.printf( "nRF24L01+ RX Address : 0x%010llX\r\n", my_nrf24l01p.getRxAddress() ); pc.printf("\r\n\r\n"); my_nrf24l01p.setRfFrequency(NRF24L01P_MIN_RF_FREQUENCY); my_nrf24l01p.setAirDataRate(NRF24L01P_DATARATE_2_MBPS); my_nrf24l01p.setTxAddress(0xFFA); my_nrf24l01p.setRxAddress(0xFFE); pc.printf("Custom setup : \r\n"); pc.printf( "nRF24L01+ Frequency : %d MHz\r\n", my_nrf24l01p.getRfFrequency() ); pc.printf( "nRF24L01+ Output power : %d dBm\r\n", my_nrf24l01p.getRfOutputPower() ); pc.printf( "nRF24L01+ Data Rate : %d kbps\r\n", my_nrf24l01p.getAirDataRate() ); pc.printf( "nRF24L01+ TX Address : 0x%010llX\r\n", my_nrf24l01p.getTxAddress() ); pc.printf( "nRF24L01+ RX Address : 0x%010llX\r\n", my_nrf24l01p.getRxAddress() ); pc.printf("\r\n\r\n"); pc.printf( "Spamming routine enabled !\r\n"); my_nrf24l01p.setTransferSize( TRANSFER_SIZE ); my_nrf24l01p.setTransmitMode(); my_nrf24l01p.enable(); while (1) { //Send "Hello PC" to the PC board int i = 0; char* data = "Hello PC !\r\n"; int dataSize = sizeof(data); // add datas to the transmit buffer txData[txDataCnt++] = data[i++]; if (i >= dataSize) { i = 0; } // If the transmit buffer is full if ( txDataCnt >= sizeof( txData ) ) { // Send the transmitbuffer via the nRF24L01+ my_nrf24l01p.write( NRF24L01P_PIPE_P0, txData, txDataCnt ); txDataCnt = 0; } // Toggle LED1 (to help debug Host -> nRF24L01+ communication) myled1 = !myled1; } }