feat: execute EM gear-switch boundaries
This commit is contained in:
@@ -0,0 +1,11 @@
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namespace MultiWheelC.TrajectoryPlanning.EMPlanner;
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public enum GearSwitchState
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{
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Following,
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ApproachingGearSwitch,
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HoldingZero,
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RequestingDirectionChange,
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AwaitingDirectionConfirmation,
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Completed,
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}
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@@ -0,0 +1,144 @@
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using System;
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using MultiWheelC.TrajectoryPlanning.CoarsePath;
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namespace MultiWheelC.TrajectoryPlanning.EMPlanner;
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/// <summary>Pure caller-clocked state machine for a zero-speed direction change.</summary>
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public sealed class GearSwitchStateMachine
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{
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private readonly double stopSpeedToleranceMetersPerSecond;
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private readonly TimeSpan zeroSpeedHoldDuration;
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private DateTimeOffset? zeroSpeedSince;
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public GearSwitchStateMachine(double stopSpeedToleranceMetersPerSecond, double zeroSpeedHoldSeconds)
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{
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if (!IsNonNegativeFinite(stopSpeedToleranceMetersPerSecond))
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throw new ArgumentOutOfRangeException(nameof(stopSpeedToleranceMetersPerSecond));
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if (!IsNonNegativeFinite(zeroSpeedHoldSeconds))
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throw new ArgumentOutOfRangeException(nameof(zeroSpeedHoldSeconds));
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this.stopSpeedToleranceMetersPerSecond = stopSpeedToleranceMetersPerSecond;
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zeroSpeedHoldDuration = TimeSpan.FromSeconds(zeroSpeedHoldSeconds);
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}
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public GearSwitchState State { get; private set; } = GearSwitchState.Following;
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public GearSwitchStateUpdate Update(DateTimeOffset now, double measuredSignedSpeed, TravelDirection desiredDirection,
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TravelDirection currentDirection, bool directionConfirmed, bool atGearSwitchBoundary, bool atTerminal)
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{
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if (double.IsNaN(measuredSignedSpeed) || double.IsInfinity(measuredSignedSpeed))
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throw new ArgumentOutOfRangeException(nameof(measuredSignedSpeed));
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if (!Enum.IsDefined(typeof(TravelDirection), desiredDirection) ||
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!Enum.IsDefined(typeof(TravelDirection), currentDirection))
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{
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throw new ArgumentOutOfRangeException(nameof(desiredDirection));
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}
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if (atTerminal)
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{
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State = GearSwitchState.Completed;
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zeroSpeedSince = null;
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return Held("terminal boundary reached", false, true);
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}
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switch (State)
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{
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case GearSwitchState.Following:
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if (desiredDirection != currentDirection)
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{
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State = GearSwitchState.ApproachingGearSwitch;
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return Moving("approaching gear-switch boundary");
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}
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return Moving("following current direction segment");
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case GearSwitchState.ApproachingGearSwitch:
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if (!atGearSwitchBoundary)
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return Moving("approaching gear-switch boundary");
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State = GearSwitchState.HoldingZero;
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zeroSpeedSince = IsStopped(measuredSignedSpeed) ? now : null;
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return Held("holding at gear-switch boundary", false, false);
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case GearSwitchState.HoldingZero:
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if (!IsStopped(measuredSignedSpeed))
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{
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zeroSpeedSince = null;
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return Held("measured speed remains above stop tolerance", false, false);
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}
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if (!zeroSpeedSince.HasValue)
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{
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zeroSpeedSince = now;
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return Held("zero-speed dwell started", false, false);
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}
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if (now - zeroSpeedSince.Value < zeroSpeedHoldDuration)
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return Held("zero-speed dwell in progress", false, false);
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State = GearSwitchState.RequestingDirectionChange;
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return Held("requesting direction change", true, false);
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case GearSwitchState.RequestingDirectionChange:
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State = GearSwitchState.AwaitingDirectionConfirmation;
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return Held("awaiting direction confirmation", false, false);
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case GearSwitchState.AwaitingDirectionConfirmation:
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if (directionConfirmed && desiredDirection == currentDirection)
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{
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State = GearSwitchState.Following;
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zeroSpeedSince = null;
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return Moving("direction change confirmed");
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}
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return Held("awaiting direction confirmation", false, false);
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case GearSwitchState.Completed:
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return Held("trajectory already completed", false, true);
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default:
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throw new InvalidOperationException("Unsupported gear-switch state.");
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}
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}
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private GearSwitchStateUpdate Moving(string reason)
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{
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return new GearSwitchStateUpdate(State, false, false, true, false, reason);
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}
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private GearSwitchStateUpdate Held(string reason, bool requestDirectionChange, bool isTrajectoryComplete)
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{
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return new GearSwitchStateUpdate(State, true, requestDirectionChange, false, isTrajectoryComplete, reason);
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}
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private bool IsStopped(double measuredSignedSpeed)
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{
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return Math.Abs(measuredSignedSpeed) < stopSpeedToleranceMetersPerSecond;
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}
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private static bool IsNonNegativeFinite(double value)
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{
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return !double.IsNaN(value) && !double.IsInfinity(value) && value >= 0d;
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}
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}
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public sealed class GearSwitchStateUpdate
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{
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internal GearSwitchStateUpdate(GearSwitchState state, bool holdZero, bool requestDirectionChange,
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bool allowsTrajectoryMotion, bool isTrajectoryComplete, string reason)
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{
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State = state;
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HoldZero = holdZero;
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RequestDirectionChange = requestDirectionChange;
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AllowsTrajectoryMotion = allowsTrajectoryMotion;
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IsTrajectoryComplete = isTrajectoryComplete;
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Reason = reason ?? string.Empty;
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}
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public GearSwitchState State { get; }
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public bool HoldZero { get; }
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public bool RequestDirectionChange { get; }
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public bool AllowsTrajectoryMotion { get; }
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public bool IsTrajectoryComplete { get; }
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public string Reason { get; }
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}
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@@ -0,0 +1,35 @@
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using System;
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namespace MultiWheelC.TrajectoryPlanning.EMPlanner;
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/// <summary>Immutable trajectory-execution outcome without controller or hardware coupling.</summary>
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public sealed class TrajectoryExecutionState
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{
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internal TrajectoryExecutionState(EmTrajectoryPoint selectedPoint, GearSwitchStateUpdate gearSwitchUpdate)
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{
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SelectedPoint = selectedPoint ?? throw new ArgumentNullException(nameof(selectedPoint));
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if (gearSwitchUpdate == null)
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throw new ArgumentNullException(nameof(gearSwitchUpdate));
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GearSwitchState = gearSwitchUpdate.State;
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HoldZero = gearSwitchUpdate.HoldZero;
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RequestDirectionChange = gearSwitchUpdate.RequestDirectionChange;
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AllowsTrajectoryMotion = gearSwitchUpdate.AllowsTrajectoryMotion;
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IsTrajectoryComplete = gearSwitchUpdate.IsTrajectoryComplete;
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Reason = gearSwitchUpdate.Reason;
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}
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public EmTrajectoryPoint SelectedPoint { get; }
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public GearSwitchState GearSwitchState { get; }
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public bool HoldZero { get; }
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public bool RequestDirectionChange { get; }
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public bool AllowsTrajectoryMotion { get; }
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public bool IsTrajectoryComplete { get; }
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public string Reason { get; }
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}
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@@ -0,0 +1,66 @@
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using System;
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using MultiWheelC.TrajectoryPlanning.CoarsePath;
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namespace MultiWheelC.TrajectoryPlanning.EMPlanner;
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/// <summary>Samples immutable EM trajectories and applies the pure zero-speed gear-switch state machine.</summary>
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public sealed class TrajectoryExecutor
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{
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private readonly TrajectorySampler sampler = new TrajectorySampler();
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private readonly GearSwitchStateMachine gearSwitchStateMachine;
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public TrajectoryExecutor()
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: this(EmPlannerConfiguration.CreateDefault())
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{
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}
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public TrajectoryExecutor(EmPlannerConfiguration configuration)
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{
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if (configuration?.Longitudinal == null)
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throw new ArgumentNullException(nameof(configuration));
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gearSwitchStateMachine = new GearSwitchStateMachine(
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configuration.Longitudinal.StopSpeedToleranceMetersPerSecond,
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configuration.Longitudinal.ZeroSpeedHoldSeconds);
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}
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public TrajectoryExecutionState State { get; private set; }
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public TrajectoryExecutionState Update(DateTimeOffset now, VehicleMotionState measuredState, EmTrajectory trajectory,
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TravelDirection desiredDirection, TravelDirection currentDirection, bool directionConfirmed)
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{
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if (measuredState == null)
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throw new ArgumentNullException(nameof(measuredState));
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if (trajectory == null)
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throw new ArgumentNullException(nameof(trajectory));
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EmTrajectoryPoint selectedPoint = SelectPoint(trajectory, now);
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bool atGearSwitchBoundary = selectedPoint.BoundaryType == EmBoundaryType.GearSwitchApproach;
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bool atTerminal = selectedPoint.BoundaryType == EmBoundaryType.Goal ||
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selectedPoint.BoundaryType == EmBoundaryType.RollingSafetyStop;
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GearSwitchStateUpdate update = gearSwitchStateMachine.Update(now,
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measuredState.SignedLongitudinalSpeedMetersPerSecond, desiredDirection, currentDirection,
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directionConfirmed, atGearSwitchBoundary, atTerminal);
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State = new TrajectoryExecutionState(selectedPoint, update);
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return State;
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}
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private EmTrajectoryPoint SelectPoint(EmTrajectory trajectory, DateTimeOffset now)
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{
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double timeFromStart = (now - trajectory.Metadata.EffectiveAtUtc).TotalSeconds;
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EmTrajectoryPoint first = trajectory.Points[0];
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EmTrajectoryPoint last = trajectory.Points[trajectory.Points.Count - 1];
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if (timeFromStart <= first.TimeFromStart)
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return first;
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if (timeFromStart >= last.TimeFromStart)
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return last;
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if (sampler.TrySample(trajectory, timeFromStart, out EmTrajectoryPoint sampled))
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return sampled;
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for (int index = trajectory.Points.Count - 1; index >= 0; index--)
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{
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if (trajectory.Points[index].TimeFromStart <= timeFromStart)
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return trajectory.Points[index];
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}
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return first;
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}
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}
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@@ -0,0 +1,131 @@
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using System;
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using MultiWheelC.TrajectoryPlanning.CoarsePath;
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using MultiWheelC.TrajectoryPlanning.EMPlanner;
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namespace EMPlannerVerificationHost;
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internal static class ExecutorChecks
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{
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public static void Run()
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{
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VerifiesGearSwitchSequence(TravelDirection.Forward, TravelDirection.Reverse, "forward-to-reverse");
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VerifiesGearSwitchSequence(TravelDirection.Reverse, TravelDirection.Forward, "reverse-to-forward");
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VerifiesExecutorSamplesBoundariesAndCompletesAtSafeTerminals();
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}
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private static void VerifiesGearSwitchSequence(TravelDirection currentDirection, TravelDirection desiredDirection,
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string name)
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{
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var machine = new GearSwitchStateMachine(0.01d, 0.20d);
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DateTimeOffset start = DateTimeOffset.UnixEpoch.AddSeconds(500d);
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GearSwitchStateUpdate approaching = machine.Update(start, 0.10d, desiredDirection, currentDirection, false, false,
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false);
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Verification.Equal(GearSwitchState.ApproachingGearSwitch, approaching.State, name + " approaches switch");
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Verification.True(approaching.AllowsTrajectoryMotion, name + " approach permits trajectory motion");
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GearSwitchStateUpdate holding = machine.Update(start.AddMilliseconds(100), 0.005d, desiredDirection,
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currentDirection, false, true, false);
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AssertHeld(holding, GearSwitchState.HoldingZero, name + " holds at boundary");
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GearSwitchStateUpdate movingAgain = machine.Update(start.AddMilliseconds(110), 0.01d, desiredDirection,
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currentDirection, false, true, false);
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AssertHeld(movingAgain, GearSwitchState.HoldingZero, name + " holds while measured speed is at tolerance");
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GearSwitchStateUpdate dwellRestart = machine.Update(start.AddMilliseconds(120), 0d, desiredDirection,
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currentDirection, false, true, false);
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AssertHeld(dwellRestart, GearSwitchState.HoldingZero, name + " starts zero-speed dwell");
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GearSwitchStateUpdate dwellShort = machine.Update(start.AddMilliseconds(319), 0d, desiredDirection,
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currentDirection, false, true, false);
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AssertHeld(dwellShort, GearSwitchState.HoldingZero, name + " does not request before full dwell");
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GearSwitchStateUpdate requesting = machine.Update(start.AddMilliseconds(320), 0d, desiredDirection,
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currentDirection, false, true, false);
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AssertHeld(requesting, GearSwitchState.RequestingDirectionChange, name + " requests after continuous dwell");
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Verification.True(requesting.RequestDirectionChange, name + " emits exactly one direction request");
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GearSwitchStateUpdate awaiting = machine.Update(start.AddMilliseconds(321), 0d, desiredDirection,
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currentDirection, false, true, false);
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AssertHeld(awaiting, GearSwitchState.AwaitingDirectionConfirmation, name + " awaits confirmation");
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Verification.True(!awaiting.RequestDirectionChange, name + " does not repeat direction request");
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GearSwitchStateUpdate following = machine.Update(start.AddMilliseconds(322), 0d, desiredDirection,
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desiredDirection, true, false, false);
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Verification.Equal(GearSwitchState.Following, following.State, name + " follows confirmed next segment");
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Verification.True(!following.HoldZero && following.AllowsTrajectoryMotion,
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name + " resumes only after confirmation");
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GearSwitchStateUpdate completed = machine.Update(start.AddMilliseconds(323), 0d, desiredDirection,
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desiredDirection, false, false, true);
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AssertHeld(completed, GearSwitchState.Completed, name + " completes at terminal while holding zero");
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Verification.True(completed.IsTrajectoryComplete, name + " marks terminal completion");
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}
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private static void VerifiesExecutorSamplesBoundariesAndCompletesAtSafeTerminals()
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{
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DateTimeOffset effectiveAt = DateTimeOffset.UnixEpoch.AddSeconds(600d);
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var executor = new TrajectoryExecutor();
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EmTrajectory gearTrajectory = CreateTrajectory(effectiveAt, TravelDirection.Forward,
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EmBoundaryType.GearSwitchApproach, EmTerminalType.GearSwitch);
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TrajectoryExecutionState approaching = executor.Update(effectiveAt.AddSeconds(0.10d),
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CreateMeasuredState(0.10d, effectiveAt.AddSeconds(0.10d), 60L), gearTrajectory, TravelDirection.Reverse,
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TravelDirection.Forward, false);
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Verification.Equal(GearSwitchState.ApproachingGearSwitch, approaching.GearSwitchState,
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"executor enters approach before exact gear boundary");
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Verification.NearlyEqual(0.10d, approaching.SelectedPoint.SignedLongitudinalVelocity,
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"executor samples moving approach point");
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TrajectoryExecutionState holding = executor.Update(effectiveAt.AddSeconds(0.30d),
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CreateMeasuredState(0.005d, effectiveAt.AddSeconds(0.30d), 61L), gearTrajectory, TravelDirection.Reverse,
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TravelDirection.Forward, false);
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AssertHeld(holding, GearSwitchState.HoldingZero, "executor holds at exact gear boundary");
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Verification.Equal(EmBoundaryType.GearSwitchApproach, holding.SelectedPoint.BoundaryType,
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"executor preserves exact gear boundary point");
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Verification.NearlyEqual(0d, holding.SelectedPoint.SignedLongitudinalVelocity,
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"executor does not release nonzero speed while holding");
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foreach (EmBoundaryType terminalBoundary in new[] { EmBoundaryType.Goal, EmBoundaryType.RollingSafetyStop })
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{
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var terminalExecutor = new TrajectoryExecutor();
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EmTrajectory terminal = CreateTrajectory(effectiveAt, TravelDirection.Forward, terminalBoundary,
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terminalBoundary == EmBoundaryType.Goal ? EmTerminalType.Goal : EmTerminalType.RollingSafetyStop);
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TrajectoryExecutionState completed = terminalExecutor.Update(effectiveAt.AddSeconds(0.30d),
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CreateMeasuredState(0d, effectiveAt.AddSeconds(0.30d), 62L), terminal, TravelDirection.Forward,
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TravelDirection.Forward, false);
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AssertHeld(completed, GearSwitchState.Completed, "executor completes " + terminalBoundary);
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Verification.True(completed.IsTrajectoryComplete, "executor marks " + terminalBoundary + " completion");
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}
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}
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private static void AssertHeld(GearSwitchStateUpdate update, GearSwitchState expectedState, string name)
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{
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Verification.Equal(expectedState, update.State, name + " state");
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Verification.True(update.HoldZero && !update.AllowsTrajectoryMotion, name + " forbids nonzero motion output");
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}
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private static void AssertHeld(TrajectoryExecutionState state, GearSwitchState expectedState, string name)
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{
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Verification.Equal(expectedState, state.GearSwitchState, name + " state");
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Verification.True(state.HoldZero && !state.AllowsTrajectoryMotion, name + " forbids nonzero motion output");
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}
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private static VehicleMotionState CreateMeasuredState(double speed, DateTimeOffset capturedAt, long sequenceId)
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{
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return new VehicleMotionState(new Pose2D(0d, 0d, 0d), speed, 0d, capturedAt, sequenceId);
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}
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private static EmTrajectory CreateTrajectory(DateTimeOffset effectiveAt, TravelDirection direction,
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EmBoundaryType terminalBoundary, EmTerminalType terminalType)
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{
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double signedSpeed = direction == TravelDirection.Forward ? 0.10d : -0.10d;
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var metadata = new EmTrajectoryMetadata("executor-" + terminalBoundary, effectiveAt, effectiveAt, 70L,
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"executor-reference", 60L, string.Empty, 4, direction, terminalType);
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return new EmTrajectory(metadata, new[]
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{
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new EmTrajectoryPoint(0d, 0d, 0d, signedSpeed, 0d, 0d, 4, 0d, 0d, direction, EmBoundaryType.None, 0d, 0d),
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new EmTrajectoryPoint(signedSpeed * 3d, 0d, 0d, 0d, 0.30d, 0d, 4, 0.03d, 0.03d, direction,
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terminalBoundary, 0d, 0d),
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});
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}
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}
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@@ -12,7 +12,8 @@ internal static class Program
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args[0] != "lateral-real-osqp" && args[0] != "lateral-real-osqp-probe" && args[0] != "lateral-all" &&
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args[0] != "longitudinal-model" && args[0] != "longitudinal-integration" &&
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args[0] != "longitudinal-real-osqp-probe" && args[0] != "trajectory" &&
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args[0] != "em-planning-service" && args[0] != "em-core-all" && args[0] != "coordinator"))
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args[0] != "em-planning-service" && args[0] != "em-core-all" && args[0] != "coordinator" &&
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args[0] != "executor"))
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{
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Console.Error.WriteLine("Usage: EMPlannerVerificationHost foundation|segmentation|frenet|corridor|optimization|osqp|osqp-loader|all-foundation|lateral-model|lateral-integration|lateral-real-osqp|lateral-all|longitudinal-model|longitudinal-integration");
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return 2;
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@@ -113,6 +114,11 @@ internal static class Program
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CoordinatorChecks.Run();
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Console.WriteLine("PASS coordinator");
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}
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if (args[0] == "executor")
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{
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ExecutorChecks.Run();
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Console.WriteLine("PASS executor");
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}
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return 0;
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}
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catch (Exception exception)
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Reference in New Issue
Block a user