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RiseOfRidgebotics2020/src/main/java/frc4388/robot/commands/drive/DriveWithJoystick.java
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/*----------------------------------------------------------------------------*/
/* Copyright (c) 2019 FIRST. All Rights Reserved. */
/* Open Source Software - may be modified and shared by FRC teams. The code */
/* must be accompanied by the FIRST BSD license file in the root directory of */
/* the project. */
/*----------------------------------------------------------------------------*/
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package frc4388.robot.commands.drive;
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import edu.wpi.first.wpilibj2.command.CommandBase;
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import frc4388.robot.Constants;
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import frc4388.robot.Robot;
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import frc4388.robot.Constants.DriveConstants;
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import frc4388.robot.Constants.MathConstants;
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import frc4388.robot.subsystems.Drive;
import frc4388.robot.subsystems.Pneumatics;
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import frc4388.utility.controller.IHandController;
public class DriveWithJoystick extends CommandBase {
private Drive m_drive;
private IHandController m_controller;
private Pneumatics m_pneumatics;
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/**
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* Creates a new DriveWithJoystick to control the drivetrain with an Xbox controller.
* Applies a curved ramp to the input from the controllers to make the robot less "touchy".
* @param subsystem pass the Drive subsystem from {@link frc4388.robot.RobotContainer#RobotContainer() RobotContainer}
* @param controller pass the Driver {@link frc4388.utility.controller.IHandController#getClass() IHandController} using the
* {@link frc4388.robot.RobotContainer#getDriverJoystick() getDriverJoystick()} method in
* {@link frc4388.robot.RobotContainer#RobotContainer() RobotContainer}
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*/
public DriveWithJoystick(Drive subsystem, Pneumatics subsystem2, IHandController controller) {
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// Use addRequirements() here to declare subsystem dependencies.
m_drive = subsystem;
m_pneumatics = subsystem2;
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m_controller = controller;
addRequirements(m_drive);
}
// Called when the command is initially scheduled.
@Override
public void initialize() {
}
// Called every time the scheduler runs while the command is scheduled.
@Override
public void execute() {
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double moveInput = m_controller.getLeftYAxis() * DriveConstants.DRIVE_WITH_JOYSTICK_FACTOR;
double steerInput = m_controller.getRightXAxis() * DriveConstants.DRIVE_WITH_JOYSTICK_FACTOR;
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double moveOutput = (moveInput >= 0 ? -1 : 1) * (Math.cos(MathConstants.PI_2 * moveInput) - 1);
double cosMultiplier = m_pneumatics.m_isSpeedShiftHigh ? DriveConstants.COS_MULTIPLIER_HIGH : DriveConstants.COS_MULTIPLIER_LOW;
double deadzone = 0.1;
double steerOutput = (steerInput == 0 ? 0 : (steerInput > 0 ? -1 : 1)) * (Math.cos(MathConstants.PI_2 * steerInput) * (cosMultiplier - deadzone) + cosMultiplier);
/*
double outputLimit = 0.8;
boolean isMoveOutputLimited = false;
boolean isSteerOutputLimited = false;
if (m_pneumatics.m_isSpeedShiftHigh) {
if (isMoveOutputLimited) {
if (moveOutput > outputLimit) {
moveOutput = outputLimit;
} else if(moveOutput < -outputLimit) {
moveOutput = -outputLimit;
}
}
if (isSteerOutputLimited) {
if (steerOutput > outputLimit) {
steerOutput = outputLimit;
} else if(steerOutput < -outputLimit) {
steerOutput = -outputLimit;
}
}
}
*/
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m_drive.driveWithInput(moveOutput, steerOutput * .8);
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}
// Called once the command ends or is interrupted.
@Override
public void end(boolean interrupted) {
}
// Returns true when the command should end.
@Override
public boolean isFinished() {
return false;
}
}