add current feedback
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bc6097f89b
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@ -46,6 +46,8 @@
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long last_send = 0;
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long last_validReceive=0;
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// Global variables
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uint8_t idx = 0; // Index for new data pointer
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@ -72,6 +74,8 @@ typedef struct{
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int16_t speedL_meas;
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int16_t batVoltage;
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int16_t boardTemp;
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int16_t curL_DC;
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int16_t curR_DC;
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int16_t checksum;
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} SerialFeedback;
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SerialFeedback Feedback;
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@ -138,13 +142,15 @@ void ReceiveSerial1()
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if (idx == sizeof(SerialFeedback)) {
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uint16_t checksum;
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checksum = (uint16_t)(NewFeedback.start ^ NewFeedback.cmd1 ^ NewFeedback.cmd2 ^ NewFeedback.speedR ^ NewFeedback.speedL
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^ NewFeedback.speedR_meas ^ NewFeedback.speedL_meas ^ NewFeedback.batVoltage ^ NewFeedback.boardTemp);
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^ NewFeedback.speedR_meas ^ NewFeedback.speedL_meas ^ NewFeedback.batVoltage ^ NewFeedback.boardTemp ^ NewFeedback.curL_DC ^ NewFeedback.curR_DC);
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// Check validity of the new data
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if (NewFeedback.start == START_FRAME && checksum == NewFeedback.checksum) {
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// Copy the new data
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memcpy(&Feedback, &NewFeedback, sizeof(SerialFeedback));
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Serial.print(millis()-last_validReceive); Serial.print("ms ");
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// Print data to built-in Serial
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Serial.print("1: "); Serial.print(Feedback.cmd1);
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Serial.print(" 2: "); Serial.print(Feedback.cmd2);
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@ -153,7 +159,11 @@ void ReceiveSerial1()
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Serial.print(" 5: "); Serial.print(Feedback.speedR_meas);
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Serial.print(" 6: "); Serial.print(Feedback.speedL_meas);
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Serial.print(" 7: "); Serial.print(Feedback.batVoltage);
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Serial.print(" 8: "); Serial.println(Feedback.boardTemp);
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Serial.print(" 8: "); Serial.print(Feedback.boardTemp);
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Serial.print(" 9: "); Serial.print(Feedback.curL_DC);
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Serial.print(" 10: "); Serial.println(Feedback.curR_DC);
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last_validReceive=millis();
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} else {
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Serial.println("Non-valid data skipped");
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}
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@ -175,7 +185,7 @@ void loop() {
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if (millis() - last_send > SENDPERIOD) {
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int16_t speedvalue=constrain(analogRead(PIN_POTI)*1.0/MAXADCVALUE*1500, 0, 1500);
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int16_t speedvalue=constrain(analogRead(PIN_POTI)*1.0/MAXADCVALUE*1000, 0, 1000);
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SendSerial1(speedvalue,speedvalue);
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Serial.print("millis="); Serial.print(millis()); Serial.print(", steer=0"); Serial.print(", speed="); Serial.println(speedvalue);
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@ -91,6 +91,8 @@ typedef struct{
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int16_t speedL_meas;
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int16_t batVoltage;
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int16_t boardTemp;
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int16_t curL_DC;
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int16_t curR_DC;
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uint16_t checksum;
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} SerialFeedback;
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static SerialFeedback Feedback;
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@ -129,6 +131,9 @@ extern uint8_t enable; // global variable for motor enable
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extern volatile uint32_t timeout; // global variable for timeout
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extern int16_t batVoltage; // global variable for battery voltage
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extern int16_t curL_DC; // global variable for left motor current. to get current in Ampere divide by A2BIT_CONV
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extern int16_t curR_DC; // global variable for right motor current
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static uint32_t inactivity_timeout_counter;
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extern uint8_t nunchuck_data[6];
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@ -463,8 +468,10 @@ int main(void) {
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Feedback.speedL_meas = (int16_t)rtY_Right.n_mot;
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Feedback.batVoltage = (int16_t)(batVoltage * BAT_CALIB_REAL_VOLTAGE / BAT_CALIB_ADC);
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Feedback.boardTemp = (int16_t)board_temp_deg_c;
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Feedback.curL_DC = (int16_t)curL_DC*10/A2BIT_CONV*100; //in milli Amperes, 100mA resolution
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Feedback.curR_DC = (int16_t)curR_DC*10/A2BIT_CONV*100;
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Feedback.checksum = (uint16_t)(Feedback.start ^ Feedback.cmd1 ^ Feedback.cmd2 ^ Feedback.speedR ^ Feedback.speedL
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^ Feedback.speedR_meas ^ Feedback.speedL_meas ^ Feedback.batVoltage ^ Feedback.boardTemp);
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^ Feedback.speedR_meas ^ Feedback.speedL_meas ^ Feedback.batVoltage ^ Feedback.boardTemp ^ Feedback.curL_DC ^Feedback.curR_DC);
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UART_DMA_CHANNEL->CCR &= ~DMA_CCR_EN;
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UART_DMA_CHANNEL->CNDTR = sizeof(Feedback);
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