87 lines
2.7 KiB
Ucode
87 lines
2.7 KiB
Ucode
///=============================================================================
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// WallReachSpec
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//=============================================================================
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//
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//=============================================================================
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// Killing Floor 2
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// Copyright (C) 2015 Tripwire Interactive LLC
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//=============================================================================
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class WallReachSpec extends KFReachSpec
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native(Waypoint);
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var() editconst bool bMustJump;
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cpptext
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{
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/*
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supports() -
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returns true if it supports the requirements of aPawn. Distance is not considered.
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*/
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virtual UBOOL supports (INT iRadius, INT iHeight, INT moveFlags, INT iMaxFallVelocity)
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{
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#if 0
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UBOOL bSupports = CollisionRadius >= iRadius * 0.5 && CollisionHeight >= iHeight;
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if( !bSupports )
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{
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debugf( TEXT("%s SUPPORTS returning FALSE 1 [radii failure][ColRadius: %i ColHeight: %i] [iRadius: %i iHeight: %i moveFlags: %i iMaxFallVelocity: %i]"), *GetName(), CollisionRadius, CollisionHeight, iRadius, iHeight, moveFlags, iMaxFallVelocity );
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return FALSE;
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}
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INT Test = (reachFlags & moveFlags);
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bSupports = ((reachFlags & moveFlags) == reachFlags);
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if( !bSupports )
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{
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debugf( TEXT("%s SUPPORTS returning FALSE 2 [reachflags failure, test: %i] [iRadius: %i iHeight: %i moveFlags: %i iMaxFallVelocity: %i]"), *GetName(), Test, iRadius, iHeight, moveFlags, iMaxFallVelocity );
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return FALSE;
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}
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bSupports = (MaxLandingVelocity <= iMaxFallVelocity);
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if( !bSupports )
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{
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debugf( TEXT("%s SUPPORTS returning FALSE [MaxLandingVelocity failure (MaxLandingVelocity: %i)] [iRadius: %i iHeight: %i moveFlags: %i iMaxFallVelocity: %i]"), *GetName(), MaxLandingVelocity, iRadius, iHeight, moveFlags, iMaxFallVelocity );
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}
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else
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{
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debugf( TEXT("%s SUPPORTS returning TRUE"), *GetName() );
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}
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return bSupports;
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#else
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return ( (CollisionRadius >= iRadius * 0.5 )
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&& (CollisionHeight >= iHeight)
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&& ((reachFlags & moveFlags) == reachFlags)
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&& (MaxLandingVelocity <= iMaxFallVelocity) );
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#endif
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}
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virtual UBOOL IsForced() { return bManuallyForced; }
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virtual INT CostFor( APawn* P );
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virtual INT AdjustedCostFor( APawn* P, const FVector& StartToGoalDir, ANavigationPoint* Goal, INT Cost );
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virtual FPlane PathColor()
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{
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if( bMustJump )
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{
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return FPlane( 0.545f, 0.909f, 0.137f, 1.f );
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}
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else if( !bManuallyForced )
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{
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return FPlane( 0.89f, 0.565f, 0.294f, 1.f );
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}
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else
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{
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return FPlane( 0.909f, 0.709f, 0.137f, 1.f );
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}
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}
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virtual UBOOL CanBeSkipped(APawn* P)
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{
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return FALSE;
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}
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}
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DefaultProperties
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{
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bSkipPrune=false
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bCanCutCorners=false
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bCheckForObstructions=true
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}
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