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// Copyright (c) FIRST and other WPILib contributors.
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// Open Source Software; you can modify and/or share it under the terms of
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// the WPILib BSD license file in the root directory of this project.
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2021-11-15 16:26:16 -07:00
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package frc4388.robot;
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import com.pathplanner.lib.PathPlanner;
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import edu.wpi.first.math.controller.PIDController;
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import edu.wpi.first.math.controller.ProfiledPIDController;
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import edu.wpi.first.math.geometry.Pose2d;
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import edu.wpi.first.math.geometry.Rotation2d;
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import edu.wpi.first.math.trajectory.Trajectory;
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import edu.wpi.first.math.trajectory.TrapezoidProfile;
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import edu.wpi.first.wpilibj.XboxController;
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import edu.wpi.first.wpilibj2.command.Command;
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import edu.wpi.first.wpilibj2.command.RunCommand;
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import edu.wpi.first.wpilibj2.command.SwerveControllerCommand;
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import edu.wpi.first.wpilibj2.command.button.JoystickButton;
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import frc4388.robot.Constants.*;
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import frc4388.robot.subsystems.LED;
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import frc4388.robot.subsystems.SwerveDrive;
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import frc4388.utility.LEDPatterns;
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import frc4388.utility.controller.DeadbandedXboxController;
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/**
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* This class is where the bulk of the robot should be declared. Since
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* Command-based is a "declarative" paradigm, very little robot logic should
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* actually be handled in the {@link Robot} periodic methods (other than the
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* scheduler calls). Instead, the structure of the robot (including subsystems,
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* commands, and button mappings) should be declared here.
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*/
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public class RobotContainer {
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/* RobotMap */
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private final RobotMap m_robotMap = new RobotMap();
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/* Subsystems */
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private final SwerveDrive m_robotSwerveDrive = new SwerveDrive(
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m_robotMap.leftFront, m_robotMap.leftBack, m_robotMap.rightFront, m_robotMap.rightBack, m_robotMap.gyro);
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private final LED m_robotLED = new LED(m_robotMap.LEDController);
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/* Controllers */
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private final XboxController m_driverXbox = new DeadbandedXboxController(OIConstants.XBOX_DRIVER_ID);
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private final XboxController m_operatorXbox = new DeadbandedXboxController(OIConstants.XBOX_OPERATOR_ID);
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/**
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* The container for the robot. Contains subsystems, OI devices, and commands.
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*/
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public RobotContainer() {
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configureButtonBindings();
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/* Default Commands */
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// drives the swerve drive with a two-axis input from the driver controller
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m_robotSwerveDrive.setDefaultCommand(
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new RunCommand(() -> m_robotSwerveDrive.driveWithInput(
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getDriverController().getLeftX(),
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getDriverController().getLeftY(),
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getDriverController().getRightX(),
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getDriverController().getRightY(),
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true),
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m_robotSwerveDrive));
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// continually sends updates to the Blinkin LED controller to keep the lights on
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m_robotLED.setDefaultCommand(new RunCommand(m_robotLED::updateLED, m_robotLED));
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}
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/**
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* Use this method to define your button->command mappings. Buttons can be
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* created by instantiating a {@link GenericHID} or one of its subclasses
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* ({@link edu.wpi.first.wpilibj.Joystick} or {@link XboxController}), and then
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* passing it to a {@link edu.wpi.first.wpilibj2.command.button.JoystickButton}.
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*/
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private void configureButtonBindings() {
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/* Driver Buttons */
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new JoystickButton(getDriverController(), XboxController.Button.kY.value)
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// new XboxControllerRawButton(m_driverXbox, XboxControllerRaw.Y_BUTTON)
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.whenPressed(m_robotSwerveDrive.m_gyro::reset);
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new JoystickButton(getDriverController(), XboxController.Button.kLeftBumper.value)
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// new XboxControllerRawButton(m_driverXbox, XboxControllerRaw.LEFT_BUMPER_BUTTON)
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.whenPressed(() -> m_robotSwerveDrive.highSpeed(false));
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new JoystickButton(getDriverController(), XboxController.Button.kRightBumper.value)
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// new XboxControllerRawButton(m_driverXbox, XboxControllerRaw.RIGHT_BUMPER_BUTTON)
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.whenPressed(() -> m_robotSwerveDrive.highSpeed(true));
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new JoystickButton(getDriverController(), XboxController.Button.kA.value)
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.whenPressed(() -> zeroOdometry(new Pose2d(0, 0, new Rotation2d(0))));
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//.whenPressed(this::resetOdometry);
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/* Operator Buttons */
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// activates "Lit Mode"
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new JoystickButton(getOperatorController(), XboxController.Button.kA.value)
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// new XboxControllerRawButton(m_driverXbox, XboxControllerRaw.A_BUTTON)
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.whenPressed(() -> m_robotLED.setPattern(LEDPatterns.LAVA_RAINBOW))
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.whenReleased(() -> m_robotLED.setPattern(LEDConstants.DEFAULT_PATTERN));
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}
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/**
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* Use this to pass the autonomous command to the main {@link Robot} class.
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*
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* @return the command to run in autonomous
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*/
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public Command getAutonomousCommand() {
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// https://github.com/mjansen4857/pathplanner/wiki <-- Pathplanner Wiki
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// PATH PLANNER TRAJECTORY IMPLEMENTATION
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// PathPlannerTrajectory testFirstPath = PathPlanner.loadPath("First Test Path", 1.0, 1.0);
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// PPSwerveControllerCommand command = new PPSwerveControllerCommand(
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// testFirstPath,
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// pose,
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// SwerveDrive.m_kinematics,
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// new PIDController(0.5, 0, 0),
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// new PIDController(0.5, 0, 0),
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// new ProfiledPIDController(0.5, 0, 0, new TrapezoidProfile.Constraints(1.0, 1.0)),
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// outputModuleStates,
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// m_robotSwerveDrive
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// );
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// WPILIB TRAJECTORY IMPLEMENTATION
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Trajectory testFirstPath = PathPlanner.loadPath("Move Forward", 1.0, 1.0);
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SwerveControllerCommand swerveControllerCommand = new SwerveControllerCommand(
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testFirstPath,
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m_robotSwerveDrive::getOdometry,
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m_robotSwerveDrive.m_kinematics,
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new PIDController(0.0, 0.0, 0.0),
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new PIDController(0.0, 0.0, 0.0),
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new ProfiledPIDController(0.0, 0.0, 0.0, new TrapezoidProfile.Constraints(Math.PI, Math.PI)),
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m_robotSwerveDrive::setModuleStates,
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m_robotSwerveDrive
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);
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m_robotSwerveDrive.resetOdometry(testFirstPath.getInitialPose());
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return swerveControllerCommand.andThen(() -> m_robotSwerveDrive.driveWithInput(0.0, 0.0, 0.0, true));
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//return new InstantCommand();
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}
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/**
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* Add your docs here.
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*/
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public XboxController getDriverController() {
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return m_driverXbox;
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}
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public Pose2d getOdometry() {
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return m_robotSwerveDrive.getOdometry();
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}
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public void zeroOdometry(Pose2d pose) {
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m_robotSwerveDrive.resetOdometry(pose);
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}
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/**
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* Add your docs here.
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*/
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public XboxController getOperatorController() {
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return m_operatorXbox;
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}
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}
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