processor placement, advantagekit, and chirp
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parent
4d260809d8
commit
d934cdf35b
@ -10,6 +10,11 @@ java {
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def ROBOT_MAIN_CLASS = "frc.robot.Main"
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task(replayWatch, type: JavaExec) {
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mainClass = "org.littletonrobotics.junction.ReplayWatch"
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classpath = sourceSets.main.runtimeClasspath
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}
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// Define my targets (RoboRIO) and artifacts (deployable files)
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// This is added by GradleRIO's backing project DeployUtils.
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deploy {
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@ -72,6 +77,9 @@ dependencies {
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testImplementation 'org.junit.jupiter:junit-jupiter:5.10.1'
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testRuntimeOnly 'org.junit.platform:junit-platform-launcher'
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def akitJson = new groovy.json.JsonSlurper().parseText(new File(projectDir.getAbsolutePath() + "/vendordeps/AdvantageKit.json").text)
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annotationProcessor "org.littletonrobotics.akit:akit-autolog:$akitJson.version"
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}
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test {
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BIN
src/main/deploy/Orchestra/doomE1M1.chrp
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BIN
src/main/deploy/Orchestra/doomE1M1.chrp
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Binary file not shown.
File diff suppressed because one or more lines are too long
54
src/main/deploy/pathplanner/paths/New Path.path
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54
src/main/deploy/pathplanner/paths/New Path.path
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@ -0,0 +1,54 @@
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{
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"version": "2025.0",
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"waypoints": [
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{
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"anchor": {
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"x": 2.0,
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"y": 7.0
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},
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"prevControl": null,
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"nextControl": {
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"x": 3.0,
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"y": 7.0
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},
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"isLocked": false,
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"linkedName": null
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},
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{
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"anchor": {
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"x": 3.4559075342465753,
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"y": 3.123458904109589
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},
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"prevControl": {
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"x": 2.4559075342465753,
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"y": 3.123458904109589
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},
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"nextControl": null,
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"isLocked": false,
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"linkedName": null
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}
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],
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"rotationTargets": [],
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"constraintZones": [],
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"pointTowardsZones": [],
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"eventMarkers": [],
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"globalConstraints": {
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"maxVelocity": 4.0,
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"maxAcceleration": 4.0,
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"maxAngularVelocity": 540.0,
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"maxAngularAcceleration": 720.0,
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"nominalVoltage": 12.0,
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"unlimited": false
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},
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"goalEndState": {
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"velocity": 0,
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"rotation": 57.80426606528677
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},
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"reversed": false,
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"folder": null,
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"idealStartingState": {
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"velocity": 0,
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"rotation": 0.0
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},
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"useDefaultConstraints": true
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}
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@ -4,7 +4,15 @@
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package frc.robot;
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import edu.wpi.first.wpilibj.TimedRobot;
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import org.littletonrobotics.junction.LoggedRobot;
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import org.littletonrobotics.junction.LogFileUtil;
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import org.littletonrobotics.junction.Logger;
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import org.littletonrobotics.junction.networktables.NT4Publisher;
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import org.littletonrobotics.junction.wpilog.WPILOGReader;
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import org.littletonrobotics.junction.wpilog.WPILOGWriter;
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import edu.wpi.first.wpilibj.PowerDistribution;
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import edu.wpi.first.wpilibj.PowerDistribution.ModuleType;
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import edu.wpi.first.wpilibj2.command.Command;
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import edu.wpi.first.wpilibj2.command.CommandScheduler;
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@ -14,11 +22,31 @@ import edu.wpi.first.wpilibj2.command.CommandScheduler;
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* the package after creating this project, you must also update the build.gradle file in the
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* project.
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*/
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public class Robot extends TimedRobot {
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public class Robot extends LoggedRobot {
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private Command m_autonomousCommand;
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private RobotContainer m_robotContainer;
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@SuppressWarnings("resource")
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public Robot() {
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Logger.recordMetadata("ProjectName", "2025_Robot_Code"); // Set a metadata value
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if (isReal()) {
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Logger.addDataReceiver(new WPILOGWriter()); // Log to a USB stick ("/U/logs")
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Logger.addDataReceiver(new NT4Publisher()); // Publish data to NetworkTables
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new PowerDistribution(1, ModuleType.kRev); // Enables power distribution logging
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} else {
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setUseTiming(false); // Run as fast as possible
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String logPath = LogFileUtil.findReplayLog(); // Pull the replay log from AdvantageScope (or prompt the user)
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Logger.setReplaySource(new WPILOGReader(logPath)); // Read replay log
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Logger.addDataReceiver(new WPILOGWriter(LogFileUtil.addPathSuffix(logPath, "_sim"))); // Save outputs to a new log
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}
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Logger.start(); // Start logging! No more data receivers, replay sources, or metadata values may be added.
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}
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/**
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* This function is run when the robot is first started up and should be used for any
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* initialization code.
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@ -7,6 +7,7 @@ package frc.robot;
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import frc.robot.constants.ManipulatorPivotConstants;
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import frc.robot.constants.ClimberPivotConstants;
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import frc.robot.constants.ElevatorConstants;
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import frc.robot.constants.ManipulatorConstants;
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import frc.robot.constants.OIConstants;
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import frc.robot.subsystems.ManipulatorPivot;
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import frc.robot.subsystems.Vision;
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@ -64,6 +65,12 @@ public class RobotContainer {
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manipulatorPivot = new ManipulatorPivot();
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//commands for pathplanner
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NamedCommands.registerCommand("Shoot Coral L4", manipulator.runManipulator(() -> 0.4, true));
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NamedCommands.registerCommand("Collect Coral", manipulator.runUntilCollected(() -> 0.35));
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NamedCommands.registerCommand("Lift L4", safeMoveManipulator(ElevatorConstants.kL4Position, ManipulatorPivotConstants.kL4Position));
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NamedCommands.registerCommand("HP Pickup", safeMoveManipulator(ElevatorConstants.kCoralIntakePosition, ManipulatorPivotConstants.kCoralIntakePosition));
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driver = new CommandXboxController(OIConstants.kDriverControllerPort);
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operator = new CommandXboxController(OIConstants.kOperatorControllerPort);
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@ -143,14 +150,6 @@ public class RobotContainer {
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manipulator.runUntilCollected(() -> 0.35)
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);
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driver.leftBumper().whileTrue(
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manipulator.runUntilCollected(() -> 0.5)
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);
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driver.rightBumper().whileTrue(
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manipulator.runManipulator(() -> 1, false)
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);
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driver.start().and(driver.back()).onTrue(
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startingConfig()
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);
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@ -205,6 +204,8 @@ public class RobotContainer {
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safeMoveManipulator(ElevatorConstants.kL3AlgaePosition, ManipulatorPivotConstants.kL3AlgaePosition)
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);
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operator.y().onTrue(moveWithAlgae(ElevatorConstants.kProcessorPosition, ManipulatorPivotConstants.kProcessorPosition));
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}
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private void configureNamedCommands() {
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@ -418,6 +419,15 @@ public class RobotContainer {
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.raceWith(elevator.maintainPosition()));
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}
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private Command moveWithAlgae(double elevatorPosition, double armPosition) {
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/*return moveManipulatorUtil(elevatorPosition, ManipulatorPivotConstants.kPivotSafeStowPosition, false, true)
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.deadlineFor(manipulatorPivot.goToSetpoint(() -> armPosition),
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elevator.maintainPosition());*/
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return manipulatorPivot.goToSetpoint(() -> ManipulatorPivotConstants.kProcessorPosition)
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.andThen(elevator.goToSetpoint(() -> elevatorPosition), manipulatorPivot.goToSetpoint(() -> armPosition)
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.raceWith(elevator.maintainPosition()));
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}
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@SuppressWarnings("unused")
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private Command startingConfig() {
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return moveManipulatorUtil(0, 0, false, true)
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@ -43,7 +43,7 @@ public class ManipulatorPivotConstants {
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public static final double kL4Position = Units.degreesToRadians(45.0);
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public static final double kL2AlgaePosition = Units.degreesToRadians(175.0);
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public static final double kL3AlgaePosition = Units.degreesToRadians(175.0);
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public static final double kProcesserPosition = Units.degreesToRadians(175.0);
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public static final double kProcessorPosition = Units.degreesToRadians(175.0);
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public static final double kNetPosition = Units.degreesToRadians(175.0);
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/**The closest position to the elevator brace without hitting it */
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public static final double kPivotSafeStowPosition = Units.degreesToRadians(71.0);
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@ -4,10 +4,12 @@
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package frc.robot.subsystems;
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import java.io.File;
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import java.util.Optional;
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import java.util.function.BooleanSupplier;
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import java.util.function.DoubleSupplier;
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import com.ctre.phoenix6.Orchestra;
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import com.pathplanner.lib.auto.AutoBuilder;
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import com.studica.frc.AHRS;
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import com.studica.frc.AHRS.NavXComType;
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@ -22,6 +24,8 @@ import edu.wpi.first.math.kinematics.SwerveModulePosition;
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import edu.wpi.first.math.kinematics.SwerveModuleState;
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import edu.wpi.first.wpilibj.DriverStation;
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import edu.wpi.first.wpilibj.DriverStation.Alliance;
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import edu.wpi.first.wpilibj.Filesystem;
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import edu.wpi.first.wpilibj.Timer;
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import edu.wpi.first.wpilibj2.command.Command;
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import edu.wpi.first.wpilibj2.command.SubsystemBase;
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import frc.robot.constants.AutoConstants;
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@ -43,6 +47,9 @@ public class Drivetrain extends SubsystemBase {
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private Vision vision;
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public Orchestra m_orchestra = new Orchestra();
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private Timer musicTimer = new Timer();
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/** Creates a new DriveSubsystem. */
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public Drivetrain() {
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m_frontLeft = new MAXSwerveModule(
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@ -73,7 +80,7 @@ public class Drivetrain extends SubsystemBase {
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m_estimator = new SwerveDrivePoseEstimator(
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DrivetrainConstants.kDriveKinematics,
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Rotation2d.fromDegrees(gyro.getAngle()),
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Rotation2d.fromDegrees(getGyroValue()),
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new SwerveModulePosition[] {
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m_frontLeft.getPosition(),
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m_frontRight.getPosition(),
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@ -99,6 +106,21 @@ public class Drivetrain extends SubsystemBase {
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},
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this
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);
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m_orchestra.loadMusic(Filesystem.getDeployDirectory()
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.toPath()
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.resolve("Orchestra" + File.separator + "doomE1M1.chrp")
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.toString());
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// Add a single device to the orchestra
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m_orchestra.addInstrument(m_frontLeft.getDrivingMotor(), 0);
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m_orchestra.addInstrument(m_frontRight.getDrivingMotor(), 1);
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m_orchestra.addInstrument(m_rearLeft.getDrivingMotor(), 2);
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m_orchestra.addInstrument(m_rearRight.getDrivingMotor(), 3);
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m_orchestra.play();
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musicTimer.reset();
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musicTimer.start();
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}
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@Override
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@ -130,6 +152,13 @@ public class Drivetrain extends SubsystemBase {
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}
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*/
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if(musicTimer.get()>8){
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if (m_orchestra.isPlaying()) {
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m_orchestra.stop();
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}
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musicTimer.stop();
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musicTimer.reset();
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}
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}
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// Command driving and turning SPARKS towards their respective setpoints.
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m_drive.setControl(
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driveVelocityRequest.withVelocity(
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correctedDesiredState.speedMetersPerSecond
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correctedDesiredState.speedMetersPerSecond / ModuleConstants.kWheelCircumferenceMeters
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).withFeedForward(
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correctedDesiredState.speedMetersPerSecond
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correctedDesiredState.speedMetersPerSecond / ModuleConstants.kWheelCircumferenceMeters
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)
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);
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@ -134,6 +134,10 @@ public class MAXSwerveModule {
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return m_turningSpark.get() * RobotController.getBatteryVoltage();
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}
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public TalonFX getDrivingMotor(){
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return m_drive;
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}
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/** Zeroes all the SwerveModule encoders. */
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public void resetEncoders() {
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m_drive.setPosition(0);
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);
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pidController.setSetpoint(0);
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pidController.disableContinuousInput();
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pidController.enableContinuousInput(0, 180);
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feedForward = new ArmFeedforward(
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ManipulatorPivotConstants.kFeedForwardS,
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35
vendordeps/AdvantageKit.json
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35
vendordeps/AdvantageKit.json
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{
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"fileName": "AdvantageKit.json",
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"name": "AdvantageKit",
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"version": "4.1.1",
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"uuid": "d820cc26-74e3-11ec-90d6-0242ac120003",
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"frcYear": "2025",
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"mavenUrls": [
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"https://frcmaven.wpi.edu/artifactory/littletonrobotics-mvn-release/"
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],
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"jsonUrl": "https://github.com/Mechanical-Advantage/AdvantageKit/releases/latest/download/AdvantageKit.json",
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"javaDependencies": [
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{
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"groupId": "org.littletonrobotics.akit",
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"artifactId": "akit-java",
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"version": "4.1.1"
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}
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],
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"jniDependencies": [
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{
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"groupId": "org.littletonrobotics.akit",
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"artifactId": "akit-wpilibio",
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"version": "4.1.1",
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"skipInvalidPlatforms": false,
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"isJar": false,
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"validPlatforms": [
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"linuxathena",
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"linuxx86-64",
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"linuxarm64",
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"osxuniversal",
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"windowsx86-64"
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]
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}
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],
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"cppDependencies": []
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}
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