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2026KPopRobotHunters/src/main/java/frc4388/robot/subsystems/intake/IntakeReal.java
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package frc4388.robot.subsystems.intake;
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import static edu.wpi.first.units.Units.Degrees;
import static edu.wpi.first.units.Units.Rotation;
import com.ctre.phoenix6.controls.DutyCycleOut;
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import com.ctre.phoenix6.controls.PositionDutyCycle;
import com.ctre.phoenix6.controls.VelocityDutyCycle;
import com.ctre.phoenix6.hardware.TalonFX;
import edu.wpi.first.units.measure.*;
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import edu.wpi.first.wpilibj.DigitalInput;
import edu.wpi.first.wpilibj.DigitalOutput;
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public class IntakeReal implements IntakeIO {
TalonFX m_armMotor;
TalonFX m_rollerMotor;
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DigitalInput m_armLimitSwitch;
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PositionDutyCycle armPosition = new PositionDutyCycle(0);
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// VelocityDutyCycle rollerVelocity = new VelocityDutyCycle(0);
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public IntakeReal(
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DigitalInput armLimitSwitch,
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TalonFX armMotor,
TalonFX rollerMotor
) {
// m_angleMotor = angleMotor;
// m_pitchMotor = pitchMotor;
m_armMotor = armMotor;
m_rollerMotor = rollerMotor;
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m_armLimitSwitch = armLimitSwitch;
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// Apply the configs
m_armMotor.getConfigurator().apply(IntakeConstants.ARM_PID);
m_armMotor.getConfigurator().apply(IntakeConstants.ARM_MOTOR_CONFIG);
m_rollerMotor.getConfigurator().apply(IntakeConstants.ROLLER_MOTOR_CONFIG);
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armPosition.Slot = 0;
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// rollerVelocity.Slot = 0;
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}
private Angle clampAng(Angle x, Angle min, Angle max){
if(x.gt(max)) {
return max;
}else if(x.lt(min)) {
return min;
}else{
return x;
}
}
@Override
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public void setRollerOutput(IntakeState state, double rollerOutput) {
state.rollerTargetOutput = rollerOutput;
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if(rollerOutput == 0) {
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m_rollerMotor.set(0);
return;
}
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m_rollerMotor.set(rollerOutput);
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}
@Override
public void setArmAngle(IntakeState state, Angle angle) {
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state.armTargetAngle = angle;
// Assume that the angle is always accurate, because I think we will use a shaft encoder
// Assume that 0 degrees = forwards. Might need an offset here
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// angle = clampAng(angle, IntakeConstants.ARM_LIMIT_RETRACTED, IntakeConstants.ARM_LIMIT_EXTENDED);
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// (REAL_ROT) * (MOTOR_ROT / REAL_ROT) = MOTOR_ROT
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Angle motorAngle = angle.times(IntakeConstants.ARM_MOTOR_GEAR_RATIO);
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// PositionDutyCycle posRequest = new PositionDutyCycle(motorTargetAngle);
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m_armMotor.setControl(
armPosition
.withPosition(motorAngle)
.withLimitReverseMotion(!m_armLimitSwitch.get())
);
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}
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@Override
public void stopArm(){
m_armMotor.set(0);
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// m_rollerMotor.set(0);
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}
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@Override
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public void armOutput(double percentOutput){
var d = new DutyCycleOut(0);
m_armMotor.setControl(
d.withOutput(percentOutput)
.withLimitReverseMotion(!m_armLimitSwitch.get())
);
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}
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@Override
public void updateInputs(IntakeState state) {
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state.armAngle = m_armMotor.getPosition().getValue().div(IntakeConstants.ARM_MOTOR_GEAR_RATIO);
state.armMotorCurrent = m_armMotor.getStatorCurrent().getValue();
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state.rollerOutput = m_rollerMotor.get();
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state.rollerMotorCurrent = m_rollerMotor.getStatorCurrent().getValue();
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state.retractedLimit = !m_armLimitSwitch.get();
if(state.retractedLimit) {
// Set the arm motor to be zero if the limit switch is pressed
m_armMotor.setPosition(0., 0);
}
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}
@Override
public void updateGains() {
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IntakeConstants.ARM_PID.kP = IntakeConstants.arm_kP.get();
IntakeConstants.ARM_PID.kI = IntakeConstants.arm_kI.get();
IntakeConstants.ARM_PID.kD = IntakeConstants.arm_kD.get();
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m_armMotor.getConfigurator().apply(IntakeConstants.ARM_PID);
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}
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}