Archived
@Abhiram pls fix this
This commit is contained in:
@@ -3,6 +3,8 @@ package org.firstinspires.ftc.teamcode.teleop;
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import static org.firstinspires.ftc.teamcode.constants.Color.redAlliance;
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import static org.firstinspires.ftc.teamcode.constants.Poses.teleStart;
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import static org.firstinspires.ftc.teamcode.constants.ServoPositions.spindexer_intakePos1;
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import static org.firstinspires.ftc.teamcode.utils.Servos.*;
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import static org.firstinspires.ftc.teamcode.utils.Servos.spin_scalar;
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import com.acmerobotics.dashboard.FtcDashboard;
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import com.acmerobotics.dashboard.config.Config;
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@@ -13,10 +15,12 @@ import com.acmerobotics.roadrunner.TrajectoryActionBuilder;
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import com.acmerobotics.roadrunner.TranslationalVelConstraint;
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import com.acmerobotics.roadrunner.Vector2d;
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import com.acmerobotics.roadrunner.ftc.Actions;
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import com.arcrobotics.ftclib.controller.PIDFController;
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import com.qualcomm.hardware.lynx.LynxModule;
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import com.qualcomm.robotcore.eventloop.opmode.LinearOpMode;
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import com.qualcomm.robotcore.eventloop.opmode.TeleOp;
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import com.qualcomm.robotcore.hardware.DcMotor;
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import com.qualcomm.robotcore.hardware.PIDFCoefficients;
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import org.firstinspires.ftc.robotcore.external.navigation.DistanceUnit;
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import org.firstinspires.ftc.teamcode.libs.RR.MecanumDrive;
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@@ -47,6 +51,9 @@ public class TeleopV3 extends LinearOpMode {
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public boolean circle = false;
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public boolean square = false;
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public boolean triangle = false;
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PIDFController spinPID = new PIDFController(spinP, spinI, spinD, spinF);
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public TranslationalVelConstraint VEL_CONSTRAINT = new TranslationalVelConstraint(200);
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public ProfileAccelConstraint ACCEL_CONSTRAINT = new ProfileAccelConstraint(-Math.abs(60), 200);
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Robot robot;
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@@ -85,7 +92,7 @@ public class TeleopV3 extends LinearOpMode {
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double turretPID = 0.0;
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double turretPos = 0.5;
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double spindexPID = 0.0;
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double spindexPos = spindexer_intakePos1;
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public static double spindexPos = spindexer_intakePos1;
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double error = 0.0;
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double spinCurrentPos = 0.0, spinInitPos = 0.0, intakeStamp = 0.0;
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boolean reverse = false;
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@@ -97,6 +104,21 @@ public class TeleopV3 extends LinearOpMode {
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private int tickerA = 1;
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private boolean transferIn = false;
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public static double velPrediction(double distance) {
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if (distance < 30) {
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return 2750;
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} else if (distance > 100) {
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if (distance > 160) {
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return 4200;
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}
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return 3700;
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} else {
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// linear interpolation between 40->2650 and 120->3600
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double slope = (3700.0 - 2750.0) / (100.0 - 30);
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return (int) Math.round(2750 + slope * (distance - 30));
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}
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}
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@Override
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public void runOpMode() throws InterruptedException {
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List<LynxModule> allHubs = hardwareMap.getAll(LynxModule.class);
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@@ -180,11 +202,16 @@ public class TeleopV3 extends LinearOpMode {
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// robot.turr1.setPower(turretPID);
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// robot.turr2.setPower(-turretPID);
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// if (!servo.spinEqual(spindexPos) && !gamepad1.right_bumper) {
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// spindexPID = servo.setSpinPos(spindexPos);
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// robot.spin1.setPower(spindexPID);
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// robot.spin2.setPower(-spindexPID);
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// }
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if (!servo.spinEqual(spindexPos) && !gamepad1.right_bumper) {
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spinCurrentPos = servo.getSpinPos();
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double spindexPID = spinPID.calculate(spinCurrentPos, spindexPos);
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robot.spin1.setPower(spindexPID);
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robot.spin2.setPower(-spindexPID);
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}
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//TODO: Use color sensors to switch between positions...switch after ball detected in
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@@ -199,7 +226,7 @@ public class TeleopV3 extends LinearOpMode {
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}
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spinInitPos = spinCurrentPos;
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}
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if (reverse && intakeTicker % intakeJamSwap < (intakeJamSwap/2)) {
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if (reverse && intakeTicker % intakeJamSwap < (intakeJamSwap / 2)) {
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robot.spin1.setPower(1);
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robot.spin2.setPower(-1);
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} else if (reverse) {
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@@ -214,8 +241,19 @@ public class TeleopV3 extends LinearOpMode {
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TELE.addData("Reverse?", reverse);
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TELE.update();
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} else {
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robot.spin1.setPower(0);
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robot.spin2.setPower(0);
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if (!servo.spinEqual(spindexPos)) {
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spinCurrentPos = servo.getSpinPos();
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double spindexPID = spinPID.calculate(spinCurrentPos, spindexPos);
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robot.spin1.setPower(spindexPID);
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robot.spin2.setPower(-spindexPID);
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} else {
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robot.spin1.setPower(0);
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robot.spin2.setPower(0);
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}
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if (getRuntime() - intakeStamp < 1) {
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robot.intake.setPower(-(getRuntime() - intakeStamp) * 2);
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@@ -226,41 +264,6 @@ public class TeleopV3 extends LinearOpMode {
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intakeTicker = 0;
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}
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// // INTAKE
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// if (gamepad1.right_bumper) {
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// robot.transferServo.setPosition(transferServo_out);
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//// intakeTicker++;
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//// if (intakeTicker % 16 == 0) {
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//// spinCurrentPos = servo.getSpinPos();
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//// if (Math.abs(spinCurrentPos - spinInitPos) == 0.0) {
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//// reverse = !reverse;
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//// }
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//// spinInitPos = spinCurrentPos;
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//// }
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// if (reverse) {
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// robot.spin1.setPower(spinningPow);
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// robot.spin2.setPower(-spinningPow);
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// } else {
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// robot.spin1.setPower(-spinningPow);
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// robot.spin2.setPower(spinningPow);
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// }
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// robot.intake.setPower(1);
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// intakeStamp = getRuntime();
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// TELE.addData("Reverse?", reverse);
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//
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// } else if (gamepad1.left_bumper) {
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// robot.intake.setPower(-(getRuntime() - intakeStamp) * 2);
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// spindexPos = spindexer_intakePos2;
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// intakeTicker = 0;
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// } else {
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// if (getRuntime() - intakeStamp < 1) {
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// robot.intake.setPower(-(getRuntime() - intakeStamp) * 2);
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// } else {
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// robot.intake.setPower(0);
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// }
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// intakeTicker = 0;
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// }
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//COLOR:
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double s1D = robot.color1.getDistance(DistanceUnit.MM);
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@@ -276,8 +279,9 @@ public class TeleopV3 extends LinearOpMode {
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double gP = green / (green + red + blue);
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s1G.add(gP);
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TELE.addData("gp1", gP);
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if (gP >= 0.43) {
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if (gP >= 0.36) {
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s1.add(true);
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} else {
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s1.add(false);
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@@ -296,6 +300,7 @@ public class TeleopV3 extends LinearOpMode {
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double gP = green / (green + red + blue);
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s2G.add(gP);
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TELE.addData("gp2", gP);
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if (gP >= 0.43) {
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s2.add(true);
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@@ -314,6 +319,8 @@ public class TeleopV3 extends LinearOpMode {
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double gP = green / (green + red + blue);
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TELE.addData("gp3", gP);
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s3G.add(gP);
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if (gP >= 0.43) {
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@@ -336,42 +343,66 @@ public class TeleopV3 extends LinearOpMode {
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green3 = checkGreen(s3, s3T);
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}
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// //SHOOTER:
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//
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// double powPID = flywheel.manageFlywheel((int) vel, robot.shooter1.getCurrentPosition(), robot.shooter2.getCurrentPosition());
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//
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// robot.shooter1.setPower(powPID);
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// robot.shooter2.setPower(powPID);
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//
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// robot.transfer.setPower(1);
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//
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// double offset;
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//
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// double robX = drive.localizer.getPose().position.x;
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// double robY = drive.localizer.getPose().position.y;
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//
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// double robotX = robX - xOffset;
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// double robotY = robY - yOffset;
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// double robotHeading = drive.localizer.getPose().heading.toDouble();
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//
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// double goalX = -10;
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// double goalY = 0;
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//
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// double dx = goalX - robotX; // delta x from robot to goal
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// double dy = goalY - robotY; // delta y from robot to goal
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//
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// double distanceToGoal = Math.sqrt(dx * dx + dy * dy);
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//
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// desiredTurretAngle = (Math.toDegrees(Math.atan2(dy, dx)) + 360) % 360;
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//
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// desiredTurretAngle += manualOffset;
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//
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// offset = desiredTurretAngle - 180 - (Math.toDegrees(robotHeading - headingOffset));
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//
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// if (offset > 135) {
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// offset -= 360;
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// }
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//
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robot.transfer.setPower(1);
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double offset;
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double robX = drive.localizer.getPose().position.x;
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double robY = drive.localizer.getPose().position.y;
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double robotX = robX - xOffset;
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double robotY = robY - yOffset;
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double robotHeading = drive.localizer.getPose().heading.toDouble();
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double goalX = -10;
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double goalY = 0;
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double dx = goalX - robotX; // delta x from robot to goal
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double dy = goalY - robotY; // delta y from robot to goal
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double distanceToGoal = Math.sqrt(dx * dx + dy * dy);
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desiredTurretAngle = (Math.toDegrees(Math.atan2(dy, dx)) + 360) % 360;
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desiredTurretAngle += manualOffset;
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offset = desiredTurretAngle - 180 - (Math.toDegrees(robotHeading - headingOffset));
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if (offset > 135) {
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offset -= 360;
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}
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//SHOOTER:
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double powPID = flywheel.manageFlywheel((int) vel, robot.shooter1.getCurrentPosition(), robot.shooter2.getCurrentPosition());
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robot.shooter1.setPower(powPID);
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robot.shooter2.setPower(powPID);
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//VELOCITY AUTOMATIC
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if (autoVel) {
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vel = velPrediction(distanceToGoal);
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} else {
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vel = manualVel;
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}
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if (gamepad2.right_stick_button) {
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autoVel = true;
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} else if (gamepad2.right_stick_y < -0.5) {
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autoVel = false;
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manualVel = 4600;
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} else if (gamepad2.right_stick_y > 0.5) {
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autoVel = false;
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manualVel = 2700;
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} else if (gamepad2.right_stick_x > 0.5) {
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autoVel = false;
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manualVel = 3600;
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} else if (gamepad2.right_stick_x < -0.5) {
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autoVel = false;
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manualVel = 3100;
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}
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// //TODO: test the camera teleop code
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// double pos = turrDefault + (error / 8); // adds the overall error to the default
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//
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@@ -431,30 +462,7 @@ public class TeleopV3 extends LinearOpMode {
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// manualOffset += 2;
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// }
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//
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// //VELOCITY AUTOMATIC
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//
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// if (autoVel) {
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// vel = velPrediction(distanceToGoal);
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// } else {
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// vel = manualVel;
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// }
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//
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// if (gamepad2.right_stick_button) {
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// autoVel = true;
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// } else if (gamepad2.right_stick_y < -0.5) {
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// autoVel = false;
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// manualVel = 4100;
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// } else if (gamepad2.right_stick_y > 0.5) {
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// autoVel = false;
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// manualVel = 2700;
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// } else if (gamepad2.right_stick_x > 0.5) {
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// autoVel = false;
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// manualVel = 3600;
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// } else if (gamepad2.right_stick_x < -0.5) {
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// autoVel = false;
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// manualVel = 3100;
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// }
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//
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// //HOOD:
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//
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// if (autoHood) {
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@@ -682,9 +690,9 @@ public class TeleopV3 extends LinearOpMode {
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hub.clearBulkCache();
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}
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//
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// TELE.addData("Spin1Green", green1 + ": " + ballIn(1));
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// TELE.addData("Spin2Green", green2 + ": " + ballIn(2));
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// TELE.addData("Spin3Green", green3 + ": " + ballIn(3));
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TELE.addData("Spin1Green", green1 + ": " + ballIn(1));
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TELE.addData("Spin2Green", green2 + ": " + ballIn(2));
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TELE.addData("Spin3Green", green3 + ": " + ballIn(3));
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TELE.addData("pose", drive.localizer.getPose());
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TELE.addData("heading", drive.localizer.getPose().heading.toDouble());
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@@ -864,19 +872,4 @@ public class TeleopV3 extends LinearOpMode {
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return times.get(times.size() - 1) > getRuntime() - 2;
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}
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// public static double velPrediction(double distance) {
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// if (distance < 30) {
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// return 2750;
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// } else if (distance > 100) {
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// if (distance > 160) {
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// return 4200;
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// }
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// return 3700;
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// } else {
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// // linear interpolation between 40->2650 and 120->3600
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// double slope = (3700.0 - 2750.0) / (100.0 - 30);
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// return (int) Math.round(2750 + slope * (distance - 30));
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// }
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}
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@@ -6,8 +6,6 @@ import com.acmerobotics.dashboard.telemetry.MultipleTelemetry;
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import com.arcrobotics.ftclib.controller.PIDFController;
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import com.qualcomm.robotcore.eventloop.opmode.LinearOpMode;
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import com.qualcomm.robotcore.eventloop.opmode.TeleOp;
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import com.qualcomm.robotcore.hardware.CRServo;
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import com.qualcomm.robotcore.hardware.DcMotorSimple;
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import org.firstinspires.ftc.teamcode.utils.Robot;
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@@ -71,4 +69,5 @@ public class PIDServoTest extends LinearOpMode {
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}
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}
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}
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@@ -73,12 +73,18 @@ public class FlywheelV2 {
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targetVelocity = commandedVelocity;
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velo = getVelo(shooter1CurPos, shooter2CurPos);
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// Flywheel PID code here
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if (targetVelocity - velo > 500) {
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if (targetVelocity - velo > 4500) {
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powPID = 1.0;
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} else if (velo - targetVelocity > 500) {
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} else if (velo - targetVelocity > 4500) {
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powPID = 0.0;
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} else {
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double feed = Math.log((668.39 / (targetVelocity + 591.96)) - 0.116) / -4.18;
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double a = 2539.07863;
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double c = 1967.6498;
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double d = -0.289647;
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double h = -1.1569;
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double feed = Math.log((a / (targetVelocity + c)) + d) / h;
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// --- PROPORTIONAL CORRECTION ---
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double error = targetVelocity - velo;
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@@ -88,7 +94,7 @@ public class FlywheelV2 {
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correction = Math.max(-maxStep, Math.min(maxStep, correction));
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// --- FINAL MOTOR POWER ---
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powPID = feed + correction;
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powPID = feed;
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// clamp to allowed range
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powPID = Math.max(0, Math.min(1, powPID));
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@@ -14,7 +14,7 @@ public class Servos {
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//PID constants
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// TODO: get PIDF constants
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public static double spinP = 3.4, spinI = 0, spinD = 0.075, spinF = 0.02;
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public static double spinP = 3.3, spinI = 0, spinD = 0.1, spinF = 0.02;
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public static double turrP = 4.0, turrI = 0.0, turrD = 0.0, turrF = 0.0;
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public static double spin_scalar = 1.0086;
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