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Initial commit
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/*----------------------------------------------------------------------------*/
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/* Copyright (c) 2018-2019 FIRST. All Rights Reserved. */
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/* Open Source Software - may be modified and shared by FRC teams. The code */
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/* must be accompanied by the FIRST BSD license file in the root directory of */
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/* the project. */
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/*----------------------------------------------------------------------------*/
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package frc4388.robot;
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import com.ctre.phoenix.motorcontrol.InvertType;
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import com.ctre.phoenix.motorcontrol.NeutralMode;
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import com.ctre.phoenix.motorcontrol.can.WPI_TalonFX;
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import com.ctre.phoenix.sensors.PigeonIMU;
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import edu.wpi.first.wpilibj.Spark;
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import edu.wpi.first.wpilibj.drive.DifferentialDrive;
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import frc4388.robot.Constants.DriveConstants;
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import frc4388.robot.Constants.LEDConstants;
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import frc4388.utility.RobotGyro;
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/**
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* Defines and holds all I/O objects on the Roborio. This is useful for unit
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* testing and modularization.
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*/
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public class RobotMap {
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public RobotMap() {
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configureLEDMotorControllers();
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configureDriveMotorControllers();
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}
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/* LED Subsystem */
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public final Spark LEDController = new Spark(LEDConstants.LED_SPARK_ID);
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void configureLEDMotorControllers() {
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}
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/* Drive Subsystem */
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public final WPI_TalonFX leftFrontMotor = new WPI_TalonFX(DriveConstants.DRIVE_LEFT_FRONT_CAN_ID);
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public final WPI_TalonFX rightFrontMotor = new WPI_TalonFX(DriveConstants.DRIVE_RIGHT_FRONT_CAN_ID);
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public final WPI_TalonFX leftBackMotor = new WPI_TalonFX(DriveConstants.DRIVE_LEFT_BACK_CAN_ID);
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public final WPI_TalonFX rightBackMotor = new WPI_TalonFX(DriveConstants.DRIVE_RIGHT_BACK_CAN_ID);
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public final DifferentialDrive driveTrain = new DifferentialDrive(leftFrontMotor, rightFrontMotor);
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public final RobotGyro gyroDrive = new RobotGyro(new PigeonIMU(DriveConstants.DRIVE_PIGEON_ID));
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void configureDriveMotorControllers() {
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/* factory default values */
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leftFrontMotor.configFactoryDefault();
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rightFrontMotor.configFactoryDefault();
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leftBackMotor.configFactoryDefault();
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rightBackMotor.configFactoryDefault();
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/* set back motors as followers */
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leftBackMotor.follow(leftFrontMotor);
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rightBackMotor.follow(rightFrontMotor);
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/* set neutral mode */
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leftFrontMotor.setNeutralMode(NeutralMode.Brake);
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rightFrontMotor.setNeutralMode(NeutralMode.Brake);
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leftFrontMotor.setNeutralMode(NeutralMode.Brake);
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rightFrontMotor.setNeutralMode(NeutralMode.Brake);
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/* flip input so forward becomes back, etc */
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leftFrontMotor.setInverted(false);
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rightFrontMotor.setInverted(false);
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leftBackMotor.setInverted(InvertType.FollowMaster);
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rightBackMotor.setInverted(InvertType.FollowMaster);
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}
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}
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