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2022NoWayHome/src/main/java/frc4388/robot/RobotContainer.java
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// Copyright (c) FIRST and other WPILib contributors.
// Open Source Software; you can modify and/or share it under the terms of
// the WPILib BSD license file in the root directory of this project.
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package frc4388.robot;
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import java.io.File;
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import java.io.IOException;
import java.io.StringWriter;
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import java.nio.file.FileSystems;
import java.nio.file.StandardWatchEventKinds;
import java.nio.file.WatchEvent;
import java.nio.file.WatchKey;
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import java.time.ZonedDateTime;
import java.util.ArrayList;
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import java.util.Arrays;
import java.util.Comparator;
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import java.util.List;
import java.util.Objects;
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import java.util.Optional;
import java.util.logging.Logger;
import java.util.stream.Collectors;
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import com.diffplug.common.base.Errors;
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import com.pathplanner.lib.PathPlanner;
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import com.pathplanner.lib.PathPlannerTrajectory;
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import com.pathplanner.lib.PathPlannerTrajectory.PathPlannerState;
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import com.pathplanner.lib.commands.PPSwerveControllerCommand;
import edu.wpi.first.math.Pair;
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import edu.wpi.first.math.controller.PIDController;
import edu.wpi.first.math.controller.ProfiledPIDController;
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.geometry.Translation2d;
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import edu.wpi.first.wpilibj.GenericHID;
import edu.wpi.first.wpilibj.RobotBase;
import edu.wpi.first.wpilibj.XboxController;
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import edu.wpi.first.wpilibj.smartdashboard.SmartDashboard;
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import edu.wpi.first.wpilibj2.command.Command;
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import edu.wpi.first.wpilibj2.command.InstantCommand;
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import edu.wpi.first.wpilibj2.command.NotifierCommand;
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import edu.wpi.first.wpilibj2.command.ParallelCommandGroup;
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import edu.wpi.first.wpilibj2.command.RunCommand;
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import edu.wpi.first.wpilibj2.command.SequentialCommandGroup;
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import edu.wpi.first.wpilibj2.command.button.JoystickButton;
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import frc4388.robot.Constants.OIConstants;
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import frc4388.robot.Constants.StorageConstants;
import frc4388.robot.Constants.SwerveDriveConstants;
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import frc4388.robot.commands.PathRecorder;
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import frc4388.robot.commands.RunCommandForTime;
import frc4388.robot.commands.DriveCommands.DriveWithInputForTime;
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import frc4388.robot.commands.ExtenderIntakeCommands.ExtenderIntakeGroup;
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import frc4388.robot.commands.ShooterCommands.Shoot;
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import frc4388.robot.commands.ShooterCommands.TrackTarget;
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import frc4388.robot.subsystems.BoomBoom;
import frc4388.robot.subsystems.Claws;
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import frc4388.robot.subsystems.Climber;
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import frc4388.robot.subsystems.Extender;
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import frc4388.robot.subsystems.Hood;
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import frc4388.robot.subsystems.Intake;
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import frc4388.robot.subsystems.Serializer;
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import frc4388.robot.subsystems.Storage;
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import frc4388.robot.subsystems.SwerveDrive;
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import frc4388.robot.subsystems.Turret;
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import frc4388.robot.subsystems.VisionOdometry;
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import frc4388.utility.PathPlannerUtil;
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import frc4388.utility.Vector2D;
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import frc4388.utility.controller.ButtonBox;
import frc4388.utility.controller.DeadbandedRawXboxController;
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import frc4388.utility.controller.DeadbandedXboxController;
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/**
* This class is where the bulk of the robot should be declared. Since
* Command-based is a "declarative" paradigm, very little robot logic should
* actually be handled in the {@link Robot} periodic methods (other than the
* scheduler calls). Instead, the structure of the robot (including subsystems,
* commands, and button mappings) should be declared here.
*/
public class RobotContainer {
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private static final Logger LOGGER = Logger.getLogger(RobotContainer.class.getSimpleName());
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// RobotMap
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public final RobotMap m_robotMap = new RobotMap();
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/* Subsystems */
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public final Climber m_robotClimber = new Climber(m_robotMap.elbow);
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public final Claws m_robotClaws = new Claws(m_robotMap.leftClaw, m_robotMap.rightClaw);
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public final SwerveDrive m_robotSwerveDrive = new SwerveDrive(m_robotMap.leftFront, m_robotMap.leftBack, m_robotMap.rightFront, m_robotMap.rightBack, m_robotMap.gyro);
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public final Serializer m_robotSerializer = new Serializer(m_robotMap.serializerBelt, /*m_robotMap.serializerShooterBelt,*/ m_robotMap.serializerBeam);
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public final Intake m_robotIntake = new Intake(m_robotMap.intakeMotor);
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public final Extender m_robotExtender = new Extender(m_robotMap.extenderMotor);
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public final Storage m_robotStorage = new Storage(m_robotMap.storageMotor);
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// private final LED m_robotLED = new LED(m_robotMap.LEDController);
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public final BoomBoom m_robotBoomBoom = new BoomBoom(m_robotMap.shooterFalconLeft, m_robotMap.shooterFalconRight);
public final Hood m_robotHood = new Hood(m_robotMap.angleAdjusterMotor);
public final Turret m_robotTurret = new Turret(m_robotMap.shooterTurret);
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public final VisionOdometry m_robotVisionOdometry = new VisionOdometry(m_robotSwerveDrive, m_robotTurret);
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/* Autonomous */
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private final PathRecorder m_pathChooser = new PathRecorder(m_robotSwerveDrive);
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// Controllers
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private final static XboxController m_driverXbox = new DeadbandedXboxController(OIConstants.XBOX_DRIVER_ID);
private final static XboxController m_operatorXbox = new DeadbandedXboxController(OIConstants.XBOX_OPERATOR_ID);
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private final ButtonBox m_buttonBox = new ButtonBox(OIConstants.BUTTON_BOX_ID);
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public static boolean softLimits = true;
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// control mode switching
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public static enum ControlMode { SHOOTER, CLIMBER };
public static ControlMode currentControlMode = ControlMode.SHOOTER;
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// turret mode switching
private enum TurretMode { MANUAL, AUTONOMOUS };
private TurretMode currentTurretMode = TurretMode.MANUAL;
// climber mode switching
private enum ClimberMode { MANUAL, AUTONOMOUS };
private ClimberMode currentClimberMode = ClimberMode.MANUAL;
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/**
* The container for the robot. Contains subsystems, OI devices, and commands.
*/
public RobotContainer() {
configureButtonBindings();
/* Default Commands */
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// Swerve Drive with Input
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m_robotSwerveDrive.setDefaultCommand(
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new RunCommand(() -> {
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if (RobotContainer.currentControlMode.equals(ControlMode.SHOOTER)) {
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m_robotSwerveDrive.driveWithInput( getDriverController().getLeftX(),
getDriverController().getLeftY(),
getDriverController().getRightX(),
getDriverController().getRightY(),
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true); }
if (RobotContainer.currentControlMode.equals(ControlMode.CLIMBER)) {
m_robotSwerveDrive.driveWithInput( 0,
0,
0,
0,
true);
}}
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, m_robotSwerveDrive).withName("Swerve driveWithInput defaultCommand"));
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// Intake with Triggers
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m_robotIntake.setDefaultCommand(
new RunCommand(() -> m_robotIntake.runWithTriggers(
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getOperatorController().getLeftTriggerAxis(),
getOperatorController().getRightTriggerAxis()),
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m_robotIntake).withName("Intake runWithTriggers defaultCommand"));
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m_robotBoomBoom.setDefaultCommand(new RunCommand(() -> m_robotBoomBoom.runDrumShooter(0.0), m_robotBoomBoom));
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// Serializer Manual
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m_robotSerializer.setDefaultCommand(
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new RunCommand(() -> m_robotSerializer.setSerializer(getOperatorController().getLeftTriggerAxis() * 0.8),//m_robotSerializer.setSerializerStateWithBeam(),
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m_robotSerializer).withName("Serializer setSerializerStateWithBeam defaultCommand"));
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// Turret Manual
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m_robotTurret.setDefaultCommand(
new RunCommand(() -> {
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if (RobotContainer.currentControlMode.equals(ControlMode.SHOOTER)) { m_robotTurret.runTurretWithInput(getOperatorController().getLeftX()); }
if (RobotContainer.currentControlMode.equals(ControlMode.CLIMBER)) { m_robotTurret.runTurretWithInput(0); }
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}, m_robotTurret));
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// Hood Manual
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m_robotHood.setDefaultCommand(
new RunCommand(() -> {
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if (RobotContainer.currentControlMode.equals(ControlMode.SHOOTER)) { m_robotHood.runHood(getOperatorController().getRightY()); }
if (RobotContainer.currentControlMode.equals(ControlMode.CLIMBER)) { m_robotHood.runHood(0); }
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}, m_robotHood));
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//Climber Manual
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m_robotClimber.setDefaultCommand(
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new RunCommand(() -> {
if (RobotContainer.currentControlMode.equals(ControlMode.SHOOTER)) { m_robotClimber.setMotors(0.0); }
if (RobotContainer.currentControlMode.equals(ControlMode.CLIMBER)) { m_robotClimber.setMotors(getOperatorController().getRightY()); }
}, m_robotClimber));
m_robotBoomBoom.setDefaultCommand(
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new RunCommand(() -> m_robotBoomBoom.runDrumShooter(0.45), m_robotBoomBoom)
);
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}
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/**
* Use this method to define your button->command mappings. Buttons can be
* created by instantiating a {@link GenericHID} or one of its subclasses
* ({@link edu.wpi.first.wpilibj.Joystick} or {@link XboxController}), and then
* passing it to a {@link edu.wpi.first.wpilibj2.command.button.JoystickButton}.
*/
private void configureButtonBindings() {
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//! Driver Buttons
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// Start > Calibrate Odometry
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new JoystickButton(getDriverController(), XboxController.Button.kBack.value)
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.whenPressed(() -> resetOdometry(new Pose2d(0, 0, new Rotation2d(0))));
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// Start > Calibrate Odometry
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new JoystickButton(getDriverController(), XboxController.Button.kStart.value)
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.whenPressed(m_robotSwerveDrive::resetGyro);
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// Left Bumper > Shift Down
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new JoystickButton(getDriverController(), XboxController.Button.kLeftBumper.value)
.whenPressed(() -> m_robotSwerveDrive.highSpeed(false));
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// Right Bumper > Shift Up
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new JoystickButton(getDriverController(), XboxController.Button.kRightBumper.value)
.whenPressed(() -> m_robotSwerveDrive.highSpeed(true));
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//! Operator Buttons
// Right Bumper > Storage Out
new JoystickButton(getOperatorController(), XboxController.Button.kRightBumper.value)
.whileHeld(new RunCommand(() -> m_robotStorage.runStorage(-StorageConstants.STORAGE_SPEED)))
.whenReleased(new RunCommand(() -> m_robotStorage.runStorage(0.0)));
// Left Bumper > Storage In
new JoystickButton(getOperatorController(), XboxController.Button.kLeftBumper.value)
.whileHeld(new RunCommand(() -> m_robotStorage.runStorage(StorageConstants.STORAGE_SPEED)))
.whenReleased(new RunCommand(() -> m_robotStorage.runStorage(0.0)));
// B > Toggle claws
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new JoystickButton(getOperatorController(), XboxController.Button.kB.value)
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.whenPressed(new InstantCommand(() -> m_robotClaws.toggleClaws(), m_robotClaws));
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// X > Toggles extender in and out
new JoystickButton(getOperatorController(), XboxController.Button.kX.value)
.whenPressed(new ExtenderIntakeGroup(m_robotIntake, m_robotExtender));
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// A > Spit Out Ball
new JoystickButton(getOperatorController(), XboxController.Button.kA.value)
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.whileHeld(new RunCommand(() -> m_robotTurret.gotoMidpoint(), m_robotTurret))
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.whileHeld(new RunCommand(() -> m_robotBoomBoom.runDrumShooter(0.25)));
// Y > Full aim command
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// new JoystickButton(getOperatorController(), XboxController.Button.kY.value)
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// .whileHeld(new Seek(m_robotSwerveDrive, m_robotBoomBoom, m_robotTurret, m_robotHood, m_robotVisionOdometry));
//! Test Buttons
// new JoystickButton(getOperatorController(), XboxController.Button.kY.value)
// .whenPressed(new Shoot(m_robotSwerveDrive, m_robotBoomBoom, m_robotTurret, m_robotHood, m_robotVisionOdometry, false, false));
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new JoystickButton(getOperatorController(), XboxController.Button.kY.value)
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.whileHeld(new TrackTarget(m_robotTurret, m_robotBoomBoom, m_robotHood, m_robotVisionOdometry, false));
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// new JoystickButton(getOperatorController(), XboxController.Button.kY.value)
// .whileHeld(new RunCommand(() -> m_robotClaws.setOpen(true)));
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// new JoystickButton(getOperatorController(), XboxController.Button.kB.value)
// .whileHeld(new RunCommand(() -> m_robotClaws.setOpen(false)));
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// new JoystickButton(getOperatorController(), XboxController.Button.kA.value)
// .whenPressed(new Shoot(m_robotSwerveDrive, m_robotBoomBoom, m_robotTurret, m_robotHood));
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// new JoystickButton(getOperatorController(), XboxController.Button.kA.value)
// .whenPressed(new RunCommand(() -> m_robotBoomBoom.runDrumShooter(0.25)))
// .whenReleased(new RunCommand(() -> m_robotBoomBoom.runDrumShooter(0.0)));
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//! Button Box Buttons
// Left Switch > Disables soft limits on press, release resets encoders (all for turret, hood, climber, and extender)
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new JoystickButton(getButtonBox(), ButtonBox.Button.kLeftSwitch.value)
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.whenPressed(new InstantCommand(() -> m_robotTurret.setTurretSoftLimits(false), m_robotTurret))
.whenPressed(new InstantCommand(() -> m_robotTurret.calibrationSpeed = 0.3, m_robotTurret))
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.whenPressed(new InstantCommand(() -> m_robotHood.setHoodSoftLimits(false), m_robotHood))
.whenPressed(new InstantCommand(() -> m_robotHood.calibrationSpeed = 0.3, m_robotHood))
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.whenPressed(new InstantCommand(() -> m_robotExtender.setExtenderSoftLimits(false), m_robotExtender))
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.whenReleased(new InstantCommand(() -> m_robotTurret.setTurretSoftLimits(true), m_robotTurret))
.whenReleased(new InstantCommand(() -> m_robotTurret.calibrationSpeed = 1.0, m_robotTurret))
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.whenReleased(new InstantCommand(() -> m_robotHood.setHoodSoftLimits(true), m_robotHood))
.whenReleased(new InstantCommand(() -> m_robotHood.calibrationSpeed = 1.0, m_robotHood))
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.whenReleased(new InstantCommand(() -> m_robotExtender.setExtenderSoftLimits(true), m_robotExtender))
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.whenReleased(new InstantCommand(() -> m_robotTurret.m_boomBoomRotateEncoder.setPosition(0), m_robotTurret))
.whenReleased(new InstantCommand(() -> m_robotHood.m_angleEncoder.setPosition(0), m_robotHood))
.whenReleased(new InstantCommand(() -> m_robotExtender.setEncoder(0), m_robotExtender))
.whenReleased(new InstantCommand(() -> ExtenderIntakeGroup.setDirectionToOut(), m_robotIntake, m_robotExtender))
.whenReleased(new InstantCommand(() -> m_robotClimber.setEncoders(0), m_robotClimber));
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// Middle Switch > Climber and Shooter mode switching
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new JoystickButton(getButtonBox(), ButtonBox.Button.kMiddleSwitch.value)
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.whenPressed(new InstantCommand(() -> this.currentControlMode = ControlMode.CLIMBER))
.whenReleased(new InstantCommand(() -> this.currentControlMode = ControlMode.SHOOTER));
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// Left Button > Extender In
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new JoystickButton(getButtonBox(), ButtonBox.Button.kLeftButton.value)
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.whileHeld(new RunCommand(() -> m_robotExtender.runExtender(-1.0), m_robotExtender))
.whenReleased(new RunCommand(() -> m_robotExtender.runExtender(0.0), m_robotExtender));
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// Left Button > Extender Out
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new JoystickButton(getButtonBox(), ButtonBox.Button.kRightButton.value)
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.whileHeld(new RunCommand(() -> m_robotExtender.runExtender(1.0), m_robotExtender))
.whenReleased(new RunCommand(() -> m_robotExtender.runExtender(0.0), m_robotExtender));
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}
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/**
* Generate autonomous
* @param maxVel max velocity for the path (null to override default value of 5.0)
* @param maxAccel max acceleration for the path (null to override default value of 5.0)
* @param inputs strings (paths) or commands you want to run (in order)
* @return array of commands
*/
public Command[] buildAuto(Double maxVel, Double maxAccel, Object... inputs) {
maxVel = Objects.requireNonNullElse(maxVel, SwerveDriveConstants.PATH_MAX_VELOCITY);
maxAccel = Objects.requireNonNullElse(maxAccel, SwerveDriveConstants.PATH_MAX_ACCELERATION);
ArrayList<Command> commands = new ArrayList<Command>();
PIDController xController = SwerveDriveConstants.X_CONTROLLER;
PIDController yController = SwerveDriveConstants.Y_CONTROLLER;
ProfiledPIDController thetaController = SwerveDriveConstants.THETA_CONTROLLER;
thetaController.enableContinuousInput(-Math.PI, Math.PI);
// parse input
for (int i=0; i<inputs.length; i++) {
if (inputs[i] instanceof String) {
PathPlannerTrajectory traj = PathPlanner.loadPath(inputs[i].toString(), maxVel, maxAccel);
PathPlannerState initState = traj.getInitialState();
Pose2d initPose = new Pose2d(initState.poseMeters.getTranslation(), initState.holonomicRotation);
commands.add(new InstantCommand(() -> m_robotSwerveDrive.resetOdometry(initPose), m_robotSwerveDrive));
commands.add(new PPSwerveControllerCommand(
traj,
m_robotSwerveDrive::getOdometry,
m_robotSwerveDrive.m_kinematics,
xController,
yController,
thetaController,
m_robotSwerveDrive::setModuleStates,
m_robotSwerveDrive));
}
if (inputs[i] instanceof Command) {
commands.add((Command) inputs[i]);
}
}
commands.add(new InstantCommand(() -> m_robotSwerveDrive.driveWithInput(0, 0, 0, 0, true), m_robotSwerveDrive));
Command[] ret = new Command[commands.size()];
ret = commands.toArray(ret);
return ret;
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}
/**
* Use this to pass the autonomous command to the main {@link Robot} class.
*
* @return the command to run in autonomous
*/
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public Command getAutonomousCommand() {
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// ! ways to not coast
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// // * 1. try zero joystick input: new InstantCommand(() -> m_robotSwerveDrive.driveWithInput(0.0, 0.0, 0.0, 0.0, false), m_robotSwerveDrive);
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// * 2. try opposite joystick input: new InstantCommand(() -> m_robotSwerveDrive.driveWithInput(0.0, -1.0, 0.0, 0.0, false), m_robotSwerveDrive);
// * 3a. try permanently setting drive motors to brake, not coast, in RobotMap.java, and ask the driver how it feels.
// * 3b. try to only set the drive motors to brake if in auto mode.
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// ! 1.0 input, 1 second: 134 inches
// ! 0.75 input, 1 second: 48 inches
// ? positive leftY went left, negative leftY went right?
// TODO: if line 372 is true, switch joystick inputs accordingly
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double turretDistanceFromFront = 10.0; // * distance of turret from the front of the robot in inches. might need to be somewhat accurate.
double distancePerSecond = 134.0; // * assuming emulated joystick input magnitude is 1.0
double offset = 10.0; // * distance (in inches) from ball that we actually want to stop
Vector2D firstBallPosition = new Vector2D(15.56 - (82.83 / 2.00), 11.21 - 162.00); // * position of first ball, relative to hub.
Vector2D secondBallPosition = new Vector2D(-(40.44 * (Math.sqrt(2.00) / 2.00)) - ((82.83 - 7.58) * (Math.sqrt(2.00) / 2.00)) - (82.83 / 2.00), -(40.44 * (Math.sqrt(2.00) / 2.00)) + ((82.83 - 7.58) * (Math.sqrt(2.00) / 2.00)) - (219.25 / 2.00)); // * position of second ball, relative to hub.
Vector2D firstToSecond = Vector2D.subtract(secondBallPosition, firstBallPosition); // * vector from first ball to second ball, used to calculate emulated joystick inputs.
SequentialCommandGroup weirdAutoShootingGroup = new SequentialCommandGroup(new TrackTarget(m_robotTurret, m_robotBoomBoom, m_robotHood, m_robotVisionOdometry, true),
new ParallelCommandGroup(
new TrackTarget(m_robotTurret, m_robotBoomBoom, m_robotHood, m_robotVisionOdometry, true),
new RunCommandForTime(new RunCommand(() -> m_robotStorage.runStorage(StorageConstants.STORAGE_SPEED), m_robotStorage), 1.0)
)); // * weird way of shooting, i think we should make a new TrackTarget with built-in Storage control instead.
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// ! THREE BALL AUTO (HOPEFULLY)
return new SequentialCommandGroup( new InstantCommand(() -> m_robotTurret.runShooterRotatePID(-Math.atan2((219.25 / 2.00) - turretDistanceFromFront, (82.83 / 2.00) - 15.56)), m_robotTurret), // * aim with turret to target
weirdAutoShootingGroup, // * shoot
new InstantCommand(() -> m_robotStorage.runStorage(0.0), m_robotStorage), // * stop running storage
new ExtenderIntakeGroup(m_robotIntake, m_robotExtender), // * extend out, in preparation of running intake
new ParallelCommandGroup( new RunCommand(() -> m_robotIntake.runAtOutput(1.0), m_robotIntake), // * run intake all throughout path
new SequentialCommandGroup( new InstantCommand(() -> m_robotSwerveDrive.resetGyro(), m_robotSwerveDrive), // * reset gyro before moving
new DriveWithInputForTime(m_robotSwerveDrive, new double[] {0.0, 1.0, 0.0, 0.0}, (40.44 - offset) / distancePerSecond), // * drive to first ball
new InstantCommand(() -> m_robotSwerveDrive.driveWithInput(0.0, -1.0, 0.0, 0.0, true)), // * brake (see line 363)
new InstantCommand(() -> m_robotTurret.runShooterRotatePID(-Math.atan2(firstBallPosition.y, firstBallPosition.x)), m_robotTurret), // * aim with turret to target
weirdAutoShootingGroup, // * shoot
new InstantCommand(() -> m_robotStorage.runStorage(0.0), m_robotStorage), // * stop running storage
new InstantCommand(() -> m_robotSwerveDrive.driveWithInput(0.0, 0.0, -firstToSecond.unit().x, -firstToSecond.unit().y, true), m_robotSwerveDrive), // * rotate so intake points towards second ball
new DriveWithInputForTime(m_robotSwerveDrive, new double[] {-firstToSecond.unit().x, -firstToSecond.unit().y, 0.0, 0.0}, (firstToSecond.magnitude() - offset) / distancePerSecond), // * drive to second ball
new InstantCommand(() -> m_robotSwerveDrive.driveWithInput(firstToSecond.unit().x, firstToSecond.unit().y, 0.0, 0.0, true)), // * brake (see line 363)
new Shoot(m_robotSwerveDrive, m_robotBoomBoom, m_robotTurret, m_robotHood, m_robotVisionOdometry, secondBallPosition.toDoubleArray()), // * aim to target
weirdAutoShootingGroup, // * shoot
new InstantCommand(() -> m_robotStorage.runStorage(0.0), m_robotStorage) // * stop running storage
)));
// return new SequentialCommandGroup( new InstantCommand(() -> m_robotSwerveDrive.resetGyro(), m_robotSwerveDrive),
// new DriveWithInputForTime(m_robotSwerveDrive, new double[] {0.0, 1.0, 0.0, 0.0}, 1.0),
// new InstantCommand(() -> m_robotSwerveDrive.driveWithInput(0.0, -1.0, 0.0, 0.0, false), m_robotSwerveDrive),
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// new TrackTarget(m_robotTurret, m_robotBoomBoom, m_robotHood, m_robotVisionOdometry, true),
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// new ParallelCommandGroup(
// new TrackTarget(m_robotTurret, m_robotBoomBoom, m_robotHood, m_robotVisionOdometry, true),
// new RunCommandForTime(new RunCommand(() -> m_robotStorage.runStorage(StorageConstants.STORAGE_SPEED), m_robotStorage), 1.0))
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// );
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}
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public static XboxController getDriverController() {
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return m_driverXbox;
}
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public XboxController getOperatorController() {
return m_operatorXbox;
}
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public ButtonBox getButtonBox() {
return m_buttonBox;
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}
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public static void setSoftLimits(boolean set) {
softLimits = set;
}
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/**
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* Get odometry.
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*
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* @return Odometry
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*/
public Pose2d getOdometry() {
return m_robotSwerveDrive.getOdometry();
}
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/**
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* Set odometry to given pose.
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*
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* @param pose Pose to set odometry to.
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*/
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public void resetOdometry(Pose2d pose) {
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m_robotSwerveDrive.resetOdometry(pose);
}
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}