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@ -23,24 +23,39 @@ bool ledState = false;
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void TC5_Handler(void);
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void timerConfigure(int sampleRate);
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// General UART configuration struct
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struct {
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// Whether or not the USB is used for serial communications (stand alone builds)
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bool Serial = true;
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// Whether or not the i2c is used for serial communication (_controller builds)
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bool uartI2C = false;
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// Use the generic uart setup with the rpi
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bool Serial1 = true;
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// Use uart0 on the rpi
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bool rpiUART0 = true;
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// Use uart5 on the rpi
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bool rpiUART5 = true;
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} uartConfig;
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// Additional serial ports for communication <> RPI
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// https://learn.adafruit.com/using-atsamd21-sercom-to-add-more-spi-i2c-serial-ports?view=all#creating-a-new-serial
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// D11 (RX) -- GPIO 8 (TX)
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// D10 (TX) -- GPIO 10 (RX)
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// MISO (RX) -- GPIO 32 (TX)
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// MOSI (TX) -- GPIO 33 (RX)
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Uart rpiUART0 (&sercom1, 10, 11, SERCOM_RX_PAD_0, UART_TX_PAD_2);
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Uart rpiUART5 (&sercom4, PIN_SPI_MISO, PIN_SPI_MOSI, SERCOM_RX_PAD_0, UART_TX_PAD_2);
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void SERCOM1_Handler() {
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rpiUART0.IrqHandler();
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}
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void SERCOM4_Handler() {
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rpiUART5.IrqHandler();
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}
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// Misc uart functions (defined after setup/loop)
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void setupUARTs();
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// Setup stuff needed for build
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void setup() {
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// Setup board LED
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@ -50,11 +65,8 @@ void setup() {
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timerConfigure(TIMER_MILLIS);
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timerStartCounter();
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// Setup serial ports
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Serial.begin(115200);
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Serial1.begin(115200);
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rpiUART0.begin(115200);
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rpiUART5.begin(115200);
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// Setup UARTS
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setupUARTs();
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// Assign SERCOM functionality
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pinPeripheral(10, PIO_SERCOM);
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@ -64,25 +76,60 @@ void setup() {
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// Main function
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int serialIncomingByte;
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void loop() {
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while (Serial.available()) {
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while (uartConfig.Serial && Serial.available()) {
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uartBufferOutbound.push(Serial.read());
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if (uartConfig.Serial1) {
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Serial1.write(uartBufferOutbound.last());
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}
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if (uartConfig.rpiUART0) {
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rpiUART0.write(uartBufferOutbound.last());
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}
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if (uartConfig.rpiUART5) {
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rpiUART5.write(uartBufferOutbound.last());
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}
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while (Serial1.available()) {
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}
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while (uartConfig.Serial1 && Serial1.available()) {
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uartBufferInbound.push(Serial1.read());
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if (uartConfig.Serial) {
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Serial.write(uartBufferInbound.last());
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}
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while (rpiUART0.available()) {
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}
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while (uartConfig.rpiUART0 && rpiUART0.available()) {
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uartBufferInbound.push(rpiUART0.read());
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if (uartConfig.Serial) {
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Serial.write(uartBufferInbound.last());
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}
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while (rpiUART5.available()) {
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}
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while (uartConfig.rpiUART5 && rpiUART5.available()) {
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uartBufferInbound.push(rpiUART5.read());
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if (uartConfig.Serial) {
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Serial.write(uartBufferInbound.last());
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}
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}
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}
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// Method to setup / reset the uarts
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void setupUARTs() {
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// Close ALL serial ports and re-enable per config (config can change during runtime)
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Serial.end();
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Serial1.end();
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rpiUART0.end();
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rpiUART5.end();
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// Setup serial ports
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if (uartConfig.Serial) {
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Serial.begin(115200);
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}
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if (uartConfig.Serial1) {
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Serial1.begin(115200);
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}
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if (uartConfig.rpiUART0) {
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rpiUART0.begin(115200);
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}
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if (uartConfig.rpiUART5) {
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rpiUART5.begin(115200);
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}
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}
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// Timer handler
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void TC5_Handler (void) {
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