X-Git-Url: http://challenge-bot.com/repos/?a=blobdiff_plain;f=src%2Forg%2Fusfirst%2Ffrc%2Fteam3501%2Frobot%2Fsubsystems%2FShooter.java;h=60452a0c9080bfe4bf61beb2c129ce0be2b37717;hb=4d4bcc688036e2dfeb20824d91b8a9972c20ecf4;hp=64efa1588b0e31b3d70075848628b3c2763581da;hpb=92d4c21a86e03328bd4e9e28b667911a874aa13c;p=3501%2Fstronghold-2016 diff --git a/src/org/usfirst/frc/team3501/robot/subsystems/Shooter.java b/src/org/usfirst/frc/team3501/robot/subsystems/Shooter.java index 64efa158..60452a0c 100755 --- a/src/org/usfirst/frc/team3501/robot/subsystems/Shooter.java +++ b/src/org/usfirst/frc/team3501/robot/subsystems/Shooter.java @@ -1,6 +1,8 @@ package org.usfirst.frc.team3501.robot.subsystems; import org.usfirst.frc.team3501.robot.Constants; +import org.usfirst.frc.team3501.robot.sensors.Lidar; +import org.usfirst.frc.team3501.robot.sensors.Photogate; import edu.wpi.first.wpilibj.CANTalon; import edu.wpi.first.wpilibj.CounterBase.EncodingType; @@ -9,11 +11,10 @@ import edu.wpi.first.wpilibj.Encoder; import edu.wpi.first.wpilibj.command.Subsystem; /*** - * The Shooter consists of a platform and wheel, each controlled by - * separate motors. The piston controlling the platform pushes the ball onto the - * wheel. The wheel is controlled by a motor, which is running before the ball - * is pushed - * onto the wheel. The spinning wheel propels the ball. + * The Shooter consists of a platform and wheel, each controlled by separate + * motors. The piston controlling the platform pushes the ball onto the wheel. + * The wheel is controlled by a motor, which is running before the ball is + * pushed onto the wheel. The spinning wheel propels the ball. * * @author superuser * @@ -22,14 +23,16 @@ import edu.wpi.first.wpilibj.command.Subsystem; public class Shooter extends Subsystem { private CANTalon shooter; private CANTalon angleAdjuster; - private DoubleSolenoid punch; + private DoubleSolenoid hood, punch; private Encoder encoder; + private Lidar lidar; + private Photogate photogate; public Shooter() { shooter = new CANTalon(Constants.Shooter.PORT); angleAdjuster = new CANTalon(Constants.Shooter.ANGLE_ADJUSTER_PORT); - punch = new DoubleSolenoid(Constants.Shooter.PUNCH_FORWARD_PORT, - Constants.Shooter.PUNCH_REVERSE_PORT); + punch = new DoubleSolenoid(Constants.Shooter.PUNCH_FORWARD, + Constants.Shooter.PUNCH_REVERSE); encoder = new Encoder(Constants.Shooter.ENCODER_PORT_A, Constants.Shooter.ENCODER_PORT_B, false, EncodingType.k4X); @@ -44,7 +47,7 @@ public class Shooter extends Subsystem { */ public boolean isBallInside() { - return true; + return photogate.isBallPresent(); } public void setSpeed(double speed) { @@ -64,6 +67,17 @@ public class Shooter extends Subsystem { return encoder.getRate(); } + /* + * We are going to map a lidar distance to a shooter speed that will be set to + * the shooter. This function does not yet exist so we will just use y=x but + * when testing commences we shall create the function + */ + public double getShooterSpeed() { + double distanceToGoal = lidar.getDistance(); + double shooterSpeed = distanceToGoal; // Function to be determined + return shooterSpeed; + } + // Use negative # for decrement. Positive for increment. public void changeSpeed(double change) {