367 lines
13 KiB
C++
367 lines
13 KiB
C++
// Copyright Epic Games, Inc. All Rights Reserved.
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#include "LyraCameraMode_ThirdPerson.h"
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#include "Curves/CurveVector.h"
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#include "Engine/Canvas.h"
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#include "GameFramework/CameraBlockingVolume.h"
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#include "LyraCameraAssistInterface.h"
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#include "GameFramework/Controller.h"
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#include "GameFramework/Character.h"
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namespace LyraCameraMode_ThirdPerson_Statics
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{
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static const FName NAME_IgnoreCameraCollision = TEXT("IgnoreCameraCollision");
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}
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ULyraCameraMode_ThirdPerson::ULyraCameraMode_ThirdPerson()
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{
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TargetOffsetCurve = nullptr;
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PenetrationAvoidanceFeelers.Add(FLyraPenetrationAvoidanceFeeler(FRotator(+00.0f, +00.0f, 0.0f), 1.00f, 1.00f, 14.f, 0));
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PenetrationAvoidanceFeelers.Add(FLyraPenetrationAvoidanceFeeler(FRotator(+00.0f, +16.0f, 0.0f), 0.75f, 0.75f, 00.f, 3));
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PenetrationAvoidanceFeelers.Add(FLyraPenetrationAvoidanceFeeler(FRotator(+00.0f, -16.0f, 0.0f), 0.75f, 0.75f, 00.f, 3));
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PenetrationAvoidanceFeelers.Add(FLyraPenetrationAvoidanceFeeler(FRotator(+00.0f, +32.0f, 0.0f), 0.50f, 0.50f, 00.f, 5));
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PenetrationAvoidanceFeelers.Add(FLyraPenetrationAvoidanceFeeler(FRotator(+00.0f, -32.0f, 0.0f), 0.50f, 0.50f, 00.f, 5));
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PenetrationAvoidanceFeelers.Add(FLyraPenetrationAvoidanceFeeler(FRotator(+20.0f, +00.0f, 0.0f), 1.00f, 1.00f, 00.f, 4));
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PenetrationAvoidanceFeelers.Add(FLyraPenetrationAvoidanceFeeler(FRotator(-20.0f, +00.0f, 0.0f), 0.50f, 0.50f, 00.f, 4));
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}
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void ULyraCameraMode_ThirdPerson::UpdateView(float DeltaTime)
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{
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UpdateForTarget(DeltaTime);
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UpdateCrouchOffset(DeltaTime);
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FVector PivotLocation = GetPivotLocation() + CurrentCrouchOffset;
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FRotator PivotRotation = GetPivotRotation();
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PivotRotation.Pitch = FMath::ClampAngle(PivotRotation.Pitch, ViewPitchMin, ViewPitchMax);
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View.Location = PivotLocation;
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View.Rotation = PivotRotation;
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View.ControlRotation = View.Rotation;
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View.FieldOfView = FieldOfView;
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// Apply third person offset using pitch.
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if (!bUseRuntimeFloatCurves)
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{
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if (TargetOffsetCurve)
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{
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const FVector TargetOffset = TargetOffsetCurve->GetVectorValue(PivotRotation.Pitch);
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View.Location = PivotLocation + PivotRotation.RotateVector(TargetOffset);
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}
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}
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else
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{
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FVector TargetOffset(0.0f);
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TargetOffset.X = TargetOffsetX.GetRichCurveConst()->Eval(PivotRotation.Pitch);
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TargetOffset.Y = TargetOffsetY.GetRichCurveConst()->Eval(PivotRotation.Pitch);
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TargetOffset.Z = TargetOffsetZ.GetRichCurveConst()->Eval(PivotRotation.Pitch);
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View.Location = PivotLocation + PivotRotation.RotateVector(TargetOffset);
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}
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// Adjust final desired camera location to prevent any penetration
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UpdatePreventPenetration(DeltaTime);
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}
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void ULyraCameraMode_ThirdPerson::UpdateForTarget(float DeltaTime)
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{
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if (const ACharacter* TargetCharacter = Cast<ACharacter>(GetTargetActor()))
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{
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if (TargetCharacter->bIsCrouched)
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{
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const ACharacter* TargetCharacterCDO = TargetCharacter->GetClass()->GetDefaultObject<ACharacter>();
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const float CrouchedHeightAdjustment = TargetCharacterCDO->CrouchedEyeHeight - TargetCharacterCDO->BaseEyeHeight;
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SetTargetCrouchOffset(FVector(0.f, 0.f, CrouchedHeightAdjustment));
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return;
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}
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}
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SetTargetCrouchOffset(FVector::ZeroVector);
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}
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void ULyraCameraMode_ThirdPerson::DrawDebug(UCanvas* Canvas) const
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{
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Super::DrawDebug(Canvas);
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#if ENABLE_DRAW_DEBUG
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FDisplayDebugManager& DisplayDebugManager = Canvas->DisplayDebugManager;
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for (int i = 0; i < DebugActorsHitDuringCameraPenetration.Num(); i++)
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{
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DisplayDebugManager.DrawString(
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FString::Printf(TEXT("HitActorDuringPenetration[%d]: %s")
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, i
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, *DebugActorsHitDuringCameraPenetration[i]->GetName()));
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}
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LastDrawDebugTime = GetWorld()->GetTimeSeconds();
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#endif
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}
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void ULyraCameraMode_ThirdPerson::UpdatePreventPenetration(float DeltaTime)
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{
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if (!bPreventPenetration)
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{
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return;
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}
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AActor* TargetActor = GetTargetActor();
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APawn* TargetPawn = Cast<APawn>(TargetActor);
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AController* TargetController = TargetPawn ? TargetPawn->GetController() : nullptr;
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ILyraCameraAssistInterface* TargetControllerAssist = Cast<ILyraCameraAssistInterface>(TargetController);
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ILyraCameraAssistInterface* TargetActorAssist = Cast<ILyraCameraAssistInterface>(TargetActor);
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TOptional<AActor*> OptionalPPTarget = TargetActorAssist ? TargetActorAssist->GetCameraPreventPenetrationTarget() : TOptional<AActor*>();
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AActor* PPActor = OptionalPPTarget.IsSet() ? OptionalPPTarget.GetValue() : TargetActor;
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ILyraCameraAssistInterface* PPActorAssist = OptionalPPTarget.IsSet() ? Cast<ILyraCameraAssistInterface>(PPActor) : nullptr;
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const UPrimitiveComponent* PPActorRootComponent = Cast<UPrimitiveComponent>(PPActor->GetRootComponent());
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if (PPActorRootComponent)
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{
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// Attempt at picking SafeLocation automatically, so we reduce camera translation when aiming.
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// Our camera is our reticle, so we want to preserve our aim and keep that as steady and smooth as possible.
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// Pick closest point on capsule to our aim line.
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FVector ClosestPointOnLineToCapsuleCenter;
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FVector SafeLocation = PPActor->GetActorLocation();
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FMath::PointDistToLine(SafeLocation, View.Rotation.Vector(), View.Location, ClosestPointOnLineToCapsuleCenter);
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// Adjust Safe distance height to be same as aim line, but within capsule.
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float const PushInDistance = PenetrationAvoidanceFeelers[0].Extent + CollisionPushOutDistance;
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float const MaxHalfHeight = PPActor->GetSimpleCollisionHalfHeight() - PushInDistance;
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SafeLocation.Z = FMath::Clamp(ClosestPointOnLineToCapsuleCenter.Z, SafeLocation.Z - MaxHalfHeight, SafeLocation.Z + MaxHalfHeight);
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float DistanceSqr;
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PPActorRootComponent->GetSquaredDistanceToCollision(ClosestPointOnLineToCapsuleCenter, DistanceSqr, SafeLocation);
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// Push back inside capsule to avoid initial penetration when doing line checks.
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if (PenetrationAvoidanceFeelers.Num() > 0)
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{
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SafeLocation += (SafeLocation - ClosestPointOnLineToCapsuleCenter).GetSafeNormal() * PushInDistance;
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}
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// Then aim line to desired camera position
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bool const bSingleRayPenetrationCheck = !bDoPredictiveAvoidance;
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PreventCameraPenetration(*PPActor, SafeLocation, View.Location, DeltaTime, AimLineToDesiredPosBlockedPct, bSingleRayPenetrationCheck);
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ILyraCameraAssistInterface* AssistArray[] = { TargetControllerAssist, TargetActorAssist, PPActorAssist };
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if (AimLineToDesiredPosBlockedPct < ReportPenetrationPercent)
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{
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for (ILyraCameraAssistInterface* Assist : AssistArray)
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{
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if (Assist)
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{
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// camera is too close, tell the assists
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Assist->OnCameraPenetratingTarget();
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}
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}
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}
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}
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}
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void ULyraCameraMode_ThirdPerson::PreventCameraPenetration(class AActor const& ViewTarget, FVector const& SafeLoc, FVector& CameraLoc, float const& DeltaTime, float& DistBlockedPct, bool bSingleRayOnly)
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{
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#if ENABLE_DRAW_DEBUG
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DebugActorsHitDuringCameraPenetration.Reset();
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#endif
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float HardBlockedPct = DistBlockedPct;
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float SoftBlockedPct = DistBlockedPct;
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FVector BaseRay = CameraLoc - SafeLoc;
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FRotationMatrix BaseRayMatrix(BaseRay.Rotation());
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FVector BaseRayLocalUp, BaseRayLocalFwd, BaseRayLocalRight;
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BaseRayMatrix.GetScaledAxes(BaseRayLocalFwd, BaseRayLocalRight, BaseRayLocalUp);
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float DistBlockedPctThisFrame = 1.f;
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int32 const NumRaysToShoot = bSingleRayOnly ? FMath::Min(1, PenetrationAvoidanceFeelers.Num()) : PenetrationAvoidanceFeelers.Num();
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FCollisionQueryParams SphereParams(SCENE_QUERY_STAT(CameraPen), false, nullptr/*PlayerCamera*/);
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SphereParams.AddIgnoredActor(&ViewTarget);
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//TODO ILyraCameraTarget.GetIgnoredActorsForCameraPentration();
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//if (IgnoreActorForCameraPenetration)
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//{
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// SphereParams.AddIgnoredActor(IgnoreActorForCameraPenetration);
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//}
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FCollisionShape SphereShape = FCollisionShape::MakeSphere(0.f);
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UWorld* World = GetWorld();
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for (int32 RayIdx = 0; RayIdx < NumRaysToShoot; ++RayIdx)
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{
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FLyraPenetrationAvoidanceFeeler& Feeler = PenetrationAvoidanceFeelers[RayIdx];
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if (Feeler.FramesUntilNextTrace <= 0)
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{
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// calc ray target
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FVector RayTarget;
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{
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FVector RotatedRay = BaseRay.RotateAngleAxis(Feeler.AdjustmentRot.Yaw, BaseRayLocalUp);
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RotatedRay = RotatedRay.RotateAngleAxis(Feeler.AdjustmentRot.Pitch, BaseRayLocalRight);
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RayTarget = SafeLoc + RotatedRay;
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}
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// cast for world and pawn hits separately. this is so we can safely ignore the
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// camera's target pawn
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SphereShape.Sphere.Radius = Feeler.Extent;
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ECollisionChannel TraceChannel = ECC_Camera; //(Feeler.PawnWeight > 0.f) ? ECC_Pawn : ECC_Camera;
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// do multi-line check to make sure the hits we throw out aren't
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// masking real hits behind (these are important rays).
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// MT-> passing camera as actor so that camerablockingvolumes know when it's the camera doing traces
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FHitResult Hit;
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const bool bHit = World->SweepSingleByChannel(Hit, SafeLoc, RayTarget, FQuat::Identity, TraceChannel, SphereShape, SphereParams);
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#if ENABLE_DRAW_DEBUG
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if (World->TimeSince(LastDrawDebugTime) < 1.f)
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{
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DrawDebugSphere(World, SafeLoc, SphereShape.Sphere.Radius, 8, FColor::Red);
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DrawDebugSphere(World, bHit ? Hit.Location : RayTarget, SphereShape.Sphere.Radius, 8, FColor::Red);
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DrawDebugLine(World, SafeLoc, bHit ? Hit.Location : RayTarget, FColor::Red);
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}
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#endif // ENABLE_DRAW_DEBUG
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Feeler.FramesUntilNextTrace = Feeler.TraceInterval;
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const AActor* HitActor = Hit.GetActor();
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if (bHit && HitActor)
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{
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bool bIgnoreHit = false;
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if (HitActor->ActorHasTag(LyraCameraMode_ThirdPerson_Statics::NAME_IgnoreCameraCollision))
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{
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bIgnoreHit = true;
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SphereParams.AddIgnoredActor(HitActor);
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}
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// Ignore CameraBlockingVolume hits that occur in front of the ViewTarget.
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if (!bIgnoreHit && HitActor->IsA<ACameraBlockingVolume>())
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{
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const FVector ViewTargetForwardXY = ViewTarget.GetActorForwardVector().GetSafeNormal2D();
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const FVector ViewTargetLocation = ViewTarget.GetActorLocation();
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const FVector HitOffset = Hit.Location - ViewTargetLocation;
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const FVector HitDirectionXY = HitOffset.GetSafeNormal2D();
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const float DotHitDirection = FVector::DotProduct(ViewTargetForwardXY, HitDirectionXY);
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if (DotHitDirection > 0.0f)
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{
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bIgnoreHit = true;
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// Ignore this CameraBlockingVolume on the remaining sweeps.
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SphereParams.AddIgnoredActor(HitActor);
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}
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else
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{
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#if ENABLE_DRAW_DEBUG
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DebugActorsHitDuringCameraPenetration.AddUnique(TObjectPtr<const AActor>(HitActor));
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#endif
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}
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}
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if (!bIgnoreHit)
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{
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float const Weight = Cast<APawn>(Hit.GetActor()) ? Feeler.PawnWeight : Feeler.WorldWeight;
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float NewBlockPct = Hit.Time;
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NewBlockPct += (1.f - NewBlockPct) * (1.f - Weight);
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// Recompute blocked pct taking into account pushout distance.
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NewBlockPct = ((Hit.Location - SafeLoc).Size() - CollisionPushOutDistance) / (RayTarget - SafeLoc).Size();
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DistBlockedPctThisFrame = FMath::Min(NewBlockPct, DistBlockedPctThisFrame);
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// This feeler got a hit, so do another trace next frame
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Feeler.FramesUntilNextTrace = 0;
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#if ENABLE_DRAW_DEBUG
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DebugActorsHitDuringCameraPenetration.AddUnique(TObjectPtr<const AActor>(HitActor));
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#endif
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}
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}
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if (RayIdx == 0)
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{
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// don't interpolate toward this one, snap to it
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// assumes ray 0 is the center/main ray
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HardBlockedPct = DistBlockedPctThisFrame;
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}
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else
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{
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SoftBlockedPct = DistBlockedPctThisFrame;
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}
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}
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else
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{
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--Feeler.FramesUntilNextTrace;
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}
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}
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if (bResetInterpolation)
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{
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DistBlockedPct = DistBlockedPctThisFrame;
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}
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else if (DistBlockedPct < DistBlockedPctThisFrame)
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{
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// interpolate smoothly out
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if (PenetrationBlendOutTime > DeltaTime)
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{
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DistBlockedPct = DistBlockedPct + DeltaTime / PenetrationBlendOutTime * (DistBlockedPctThisFrame - DistBlockedPct);
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}
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else
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{
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DistBlockedPct = DistBlockedPctThisFrame;
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}
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}
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else
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{
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if (DistBlockedPct > HardBlockedPct)
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{
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DistBlockedPct = HardBlockedPct;
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}
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else if (DistBlockedPct > SoftBlockedPct)
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{
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// interpolate smoothly in
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if (PenetrationBlendInTime > DeltaTime)
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{
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DistBlockedPct = DistBlockedPct - DeltaTime / PenetrationBlendInTime * (DistBlockedPct - SoftBlockedPct);
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}
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else
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{
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DistBlockedPct = SoftBlockedPct;
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}
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}
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}
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DistBlockedPct = FMath::Clamp<float>(DistBlockedPct, 0.f, 1.f);
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if (DistBlockedPct < (1.f - ZERO_ANIMWEIGHT_THRESH))
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{
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CameraLoc = SafeLoc + (CameraLoc - SafeLoc) * DistBlockedPct;
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}
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}
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void ULyraCameraMode_ThirdPerson::SetTargetCrouchOffset(FVector NewTargetOffset)
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{
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CrouchOffsetBlendPct = 0.0f;
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InitialCrouchOffset = CurrentCrouchOffset;
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TargetCrouchOffset = NewTargetOffset;
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}
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void ULyraCameraMode_ThirdPerson::UpdateCrouchOffset(float DeltaTime)
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{
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if (CrouchOffsetBlendPct < 1.0f)
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{
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CrouchOffsetBlendPct = FMath::Min(CrouchOffsetBlendPct + DeltaTime * CrouchOffsetBlendMultiplier, 1.0f);
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CurrentCrouchOffset = FMath::InterpEaseInOut(InitialCrouchOffset, TargetCrouchOffset, CrouchOffsetBlendPct, 1.0f);
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}
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else
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{
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CurrentCrouchOffset = TargetCrouchOffset;
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CrouchOffsetBlendPct = 1.0f;
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}
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}
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