mirror of
https://github.com/Team4388/2025RidgeScape.git
synced 2026-06-09 08:48:04 -06:00
186 lines
5.3 KiB
Java
186 lines
5.3 KiB
Java
package frc4388.robot.commands;
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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.geometry.Translation2d;
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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 frc4388.robot.Constants.SwerveDriveConstants.AutoConstants;
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import frc4388.robot.subsystems.SwerveDrive;
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import frc4388.robot.subsystems.Vision;
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import frc4388.utility.Gains;
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import frc4388.utility.ReefPositionHelper;
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import frc4388.utility.ReefPositionHelper.Side;
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import frc4388.utility.UtilityStructs.AutoRecordingControllerFrame;
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import frc4388.utility.UtilityStructs.AutoRecordingFrame;
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import frc4388.utility.controller.VirtualController;
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public class GotoLastApril extends Command {
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// private Translation2d translation2d= new Translation2d(14.579471999999997,0.24587199999999998);
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// private Translation2d translation2d= new Translation2d(16.579342-0.15,5.547867999999999);
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private PID xPID = new PID(AutoConstants.XY_GAINS, 0);
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private PID yPID = new PID(AutoConstants.XY_GAINS, 0);
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private PID rotPID = new PID(AutoConstants.ROT_GAINS, 0);
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private Pose2d targetpos;
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SwerveDrive swerveDrive;
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Vision vision;
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/**
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* Command to drive robot to position.
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* @param SwerveDrive m_robotSwerveDrive
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*/
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public GotoLastApril(SwerveDrive swerveDrive, Vision vision) {
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this.swerveDrive = swerveDrive;
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this.vision = vision;
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// addRequirements(swerveDrive);
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}
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public static double tagRelativeXError = -1;
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private static void setTagRelativeXError(double val){
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tagRelativeXError = val;
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}
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@Override
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public void initialize() {
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xPID.initialize();
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yPID.initialize();
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this.targetpos = ReefPositionHelper.getNearestPosition(this.vision.getPose2d(), Side.LEFT, AutoConstants.X_OFFSET_TRIM.get());
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}
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double xerr;
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double yerr;
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double roterr;
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@Override
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public void execute() {
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xerr = targetpos.getX() - vision.getPose2d().getX();
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yerr = targetpos.getY() - vision.getPose2d().getY();
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roterr = targetpos.getRotation().getDegrees() - vision.getPose2d().getRotation().getDegrees();
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// SmartDashboard.putNumber("PID X Error", xerr);
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// SmartDashboard.putNumber("PID Y Error", yerr);
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double xoutput = xPID.update(xerr);
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double youtput = yPID.update(yerr);
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double rotoutput = rotPID.update(roterr);
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Translation2d leftStick = new Translation2d(
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Math.max(Math.min(-youtput, 1), -1),
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Math.max(Math.min(-xoutput, 1), -1)
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// 0,0
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);
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Translation2d rightStick = new Translation2d(
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Math.max(Math.min(rotoutput, 1), -1),
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0
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);
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setTagRelativeXError(
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new Translation2d(xerr, yerr).getAngle()
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.rotateBy(targetpos.getRotation())
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.getCos());
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swerveDrive.driveWithInput(leftStick, rightStick, true);
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}
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@Override
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public final boolean isFinished() {
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boolean finished = (Math.abs(xerr) < AutoConstants.XY_TOLERANCE && Math.abs(yerr) < AutoConstants.XY_TOLERANCE && Math.abs(roterr) < AutoConstants.ROT_TOLERANCE);
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// System.out.println(finished);
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if(finished)
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swerveDrive.softStop();
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return finished;
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// this statement is a boolean in and of itself
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}
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// @Override
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// public void end(boolean interrupted) {
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// }
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// @Override
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// public double getError() {
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// return e;
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// }
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// @Override
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// public void runWithOutput(double output) {
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// // TODO Auto-generated method stub
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// Translation2d leftStick = new Translation2d(Math.max(Math.min(output, 1), -1),0);
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// Translation2d rightStick = new Translation2d();
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// // System.out.println("Output = " + -output);
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// SmartDashboard.putNumber("PID Output", output);
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// swerveDrive.driveWithInput(leftStick, rightStick, true);
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// }
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private class PID {
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protected Gains gains;
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private double output = 0;
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private double tolerance = 0;
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/** Creates a new PelvicInflammatoryDisease. */
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public PID(double kp, double ki, double kd, double kf, double tolerance) {
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gains = new Gains(kp, ki, kd, kf, 0);
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this.tolerance = tolerance;
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}
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public PID(Gains gains, double tolerance) {
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this.gains = gains;
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this.tolerance = tolerance;
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}
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// Called when the command is initially scheduled.
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public final void initialize() {
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output = 0;
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}
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private double prevError, cumError = 0;
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// Called every time the scheduler runs while the command is scheduled.
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public double update(double error) {
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cumError += error * .02; // 20 ms
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double delta = error - prevError;
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output = error * gains.kP;
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output += cumError * gains.kI;
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output += delta * gains.kD;
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output += gains.kF;
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return output;
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}
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// // Returns true when the command should end.
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// public final boolean isFinished() {
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// return Math.abs(getError()) < tolerance;
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// }
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}
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}
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