removed data_source_us.h/.cpp, no US present on the 2021 robot, if needed, the files can be found in branch master
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e341214905
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@ -1,21 +0,0 @@
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#pragma once
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#include "behaviour_control/data_source.h"
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#define US_WAIT_TIME 70
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class DataSourceUS : public DataSource{
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public:
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DataSourceUS(TwoWire* i2c_, int addr);
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void test() override;
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void readSensor() override;
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void usMode();
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void usTrigger();
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void usReceive();
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int reading;
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long us_t0;
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long us_t1;
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bool us_flag;
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};
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@ -21,8 +21,6 @@
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#include "sensors/data_source_bno055.h"
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#include "sensors/data_source_bno055.h"
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#include "sensors/data_source_camera_conicmirror.h"
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#include "sensors/data_source_camera_conicmirror.h"
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#include "sensors/data_source_camera_vshapedmirror.h"
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#include "sensors/data_source_camera_vshapedmirror.h"
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#include "sensors/currently_unused/data_source_us.h"
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void initSensors();
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void initSensors();
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#include "behaviour_control/status_vector.h"
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#include "sensors/currently_unused/data_source_us.h"
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#include "vars.h"
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DataSourceUS::DataSourceUS(TwoWire* i2c_, int addr) : DataSource(i2c_, addr){
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us_flag = false;
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value = 0;
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}
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void DataSourceUS::test(){
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// test from srf02_example
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// step 1: instruct sensor to read echoes
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// transmit to device #112 (0x70)
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Wire1.beginTransmission(i2CAddr);
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// sets register pointer to the command register (0x00)
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Wire1.write(byte(0x00));
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// command sensor to measure in "centimeters" (0x51). 0x50 inches and 0x52
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// microseconds
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Wire1.write(byte(0x51));
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// stop transmitting
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Wire1.endTransmission();
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// step 2: wait for readings to happen
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// datasheet suggests at least 65 milliseconds
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delay(70);
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// step 3: instruct sensor to return a particular echo reading
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// transmit to device #112
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Wire1.beginTransmission(i2CAddr);
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// sets register pointer to echo #1 register (0x02)
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Wire1.write(byte(0x02));
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Wire1.endTransmission();
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// step 4: request reading from sensor
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// request 2 bytes from slave device #112
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Wire1.requestFrom(i2CAddr, 2);
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// step 5: receive reading from sensor
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if (2 <= Wire1.available()) {
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// if two bytes were received
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// receive high byte (overwrites previous reading)
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reading = Wire1.read();
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// shift high byte to be high 8 bits
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reading = reading << 8;
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// receive low byte as lower 8 bit
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reading |= Wire1.read();
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value = reading;
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}
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DEBUG.println(value);
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}
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void DataSourceUS::readSensor(){
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if (us_flag == false) {
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usTrigger();
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us_flag = true;
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us_t0 = millis();
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} else {
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us_t1 = millis();
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if ((us_t1 - us_t0) > US_WAIT_TIME) {
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usReceive();
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us_flag = false;
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}
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}
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}
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void DataSourceUS::usTrigger() {
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// step 1: instruct sensor to read echoes
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// transmit to device #112 (0x70)
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i2c->beginTransmission(i2CAddr);
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// sets register pointer to the command register (0x00)
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i2c->write(byte(0x00));
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// command sensor to measure in "centimeters" (0x51). 0x50 inches and 0x52
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// microseconds
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i2c->write(byte(0x51));
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i2c->endTransmission();
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}
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void DataSourceUS::usReceive() {
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// transmit to device #112s
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i2c->beginTransmission(i2CAddr);
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// sets register pointer to echo 1 register(0x02)
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i2c->write(byte(0x02));
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i2c->endTransmission();
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// step 4: request reading from sensor
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// request 2 bytes from slave device #112
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i2c->requestFrom(i2CAddr, 2);
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// step 5: receive reading from sensor
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// receive high byte (overwrites previous reading)
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reading = i2c->read();
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// shift high byte to be high 8 bits
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reading = reading << 8;
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// receive low byte as lower 8 bit
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reading |= i2c->read();
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value = reading;
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switch(i2CAddr){
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case 112:
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CURRENT_INPUT_WRITE.USfr = value;
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CURRENT_DATA_WRITE.USfr = value;
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break;
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case 113:
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CURRENT_INPUT_WRITE.USdx = value;
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CURRENT_DATA_WRITE.USdx = value;
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break;
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case 114:
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CURRENT_INPUT_WRITE.USrr = value;
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CURRENT_DATA_WRITE.USrr = value;
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break;
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case 115:
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CURRENT_INPUT_WRITE.USsx = value;
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CURRENT_DATA_WRITE.USsx = value;
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break;
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}
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}
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@ -9,8 +9,6 @@ void initSensors(){
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pinMode(LED_Y, OUTPUT);
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pinMode(LED_Y, OUTPUT);
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pinMode(LED_G, OUTPUT);
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pinMode(LED_G, OUTPUT);
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dUs = { new DataSourceUS(&Wire1, int(112)), new DataSourceUS(&Wire1, int(113)),
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new DataSourceUS(&Wire1, int(114)), new DataSourceUS(&Wire1, int(115)) };
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drive = new DriveController(new Motor(11, 12, 4, 45),new Motor(24, 25, 5, 135), new Motor(26, 27, 2, 225), new Motor(28, 29, 3, 315));
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drive = new DriveController(new Motor(11, 12, 4, 45),new Motor(24, 25, 5, 135), new Motor(26, 27, 2, 225), new Motor(28, 29, 3, 315));
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//drive = new DriveController(new Motor(12, 11, 2, 45),new Motor(25, 24, 5, 135), new Motor(27, 26, 6, 225), new Motor(21, 22, 23, 315));
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//drive = new DriveController(new Motor(12, 11, 2, 45),new Motor(25, 24, 5, 135), new Motor(27, 26, 6, 225), new Motor(21, 22, 23, 315));
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compass = new DataSourceBNO055();
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compass = new DataSourceBNO055();
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//ball = new DataSourceBall(&Serial4, 57600);
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//ball = new DataSourceBall(&Serial4, 57600);
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camera = new DataSourceCameraConic(&Serial3, 19200);
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camera = new DataSourceCameraConic(&Serial3, 19200);
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//camera = new DataSourceCameraConic(&Serial2, 19200);
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//camera = new DataSourceCameraConic(&Serial2, 19200);
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usCtrl = new DataSourceCtrl(dUs);
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bt = new DataSourceBT(&Serial1, 115200);
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bt = new DataSourceBT(&Serial1, 115200);
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//bt = new DataSourceBT(&Serial3, 115200);
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//bt = new DataSourceBT(&Serial3, 115200);
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}
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}
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