allow for float data, and prepare for 'quad edge flip', either re-use the first triangle vertex, or second (re-use index 00 or 01)
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@@ -237,7 +237,10 @@ const float TRIANGLE_SIZE=20.f;
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btScalar maxHeight = 20000.f;
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groundShape = new btHeightfieldTerrainShape(width,length,heightfieldData,maxHeight,upIndex);
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bool useFloatDatam=false;
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bool flipQuadEdges=false;
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groundShape = new btHeightfieldTerrainShape(width,length,heightfieldData,maxHeight,upIndex,useFloatDatam,flipQuadEdges);
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btVector3 localScaling(20,20,20);
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localScaling[upIndex]=1.f;
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groundShape->setLocalScaling(localScaling);
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@@ -18,13 +18,15 @@ subject to the following restrictions:
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#include "LinearMath/btTransformUtil.h"
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btHeightfieldTerrainShape::btHeightfieldTerrainShape(int width,int length,unsigned char* heightfieldData,btScalar maxHeight,int upAxis)
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btHeightfieldTerrainShape::btHeightfieldTerrainShape(int width,int length,void* heightfieldData,btScalar maxHeight,int upAxis,bool useFloatData,bool flipQuadEdges)
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:m_localScaling(btScalar(1.),btScalar(1.),btScalar(1.)),
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m_width(width),
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m_length(length),
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m_heightfieldData(heightfieldData),
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m_heightfieldDataUnknown(heightfieldData),
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m_maxHeight(maxHeight),
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m_upAxis(upAxis)
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m_upAxis(upAxis),
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m_useFloatData(useFloatData),
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m_flipQuadEdges(flipQuadEdges)
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{
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@@ -108,6 +110,21 @@ void btHeightfieldTerrainShape::getAabb(const btTransform& t,btVector3& aabbMin,
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}
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btScalar btHeightfieldTerrainShape::getHeightFieldValue(int x,int y) const
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{
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btScalar val = 0.f;
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if (m_useFloatData)
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{
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btScalar val = m_heightfieldDataFloat[(y*m_width)+x];
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} else
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{
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unsigned char heightFieldValue = m_heightfieldDataUnsignedChar[(y*m_width)+x];
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btScalar val = heightFieldValue* (m_maxHeight/btScalar(65535));
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}
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return val;
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}
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@@ -119,14 +136,15 @@ void btHeightfieldTerrainShape::getVertex(int x,int y,btVector3& vertex) const
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btAssert(x<m_width);
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btAssert(y<m_length);
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unsigned char heightFieldValue = m_heightfieldData[(y*m_width)+x];
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btScalar height = getHeightFieldValue(x,y);
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switch (m_upAxis)
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{
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case 0:
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{
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vertex.setValue(
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heightFieldValue* (m_maxHeight/btScalar(65535)),
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height,
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(-m_width/2 ) + x,
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(-m_length/2 ) + y
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);
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@@ -136,7 +154,7 @@ void btHeightfieldTerrainShape::getVertex(int x,int y,btVector3& vertex) const
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{
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vertex.setValue(
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(-m_width/2 ) + x,
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heightFieldValue* (m_maxHeight/btScalar(65535)),
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height,
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(-m_length/2 ) + y
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);
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break;
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@@ -146,7 +164,7 @@ void btHeightfieldTerrainShape::getVertex(int x,int y,btVector3& vertex) const
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vertex.setValue(
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(-m_width/2 ) + x,
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(-m_length/2 ) + y,
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heightFieldValue* (m_maxHeight/btScalar(65535))
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height
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);
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break;
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}
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@@ -29,15 +29,25 @@ protected:
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int m_width;
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int m_length;
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btScalar m_maxHeight;
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unsigned char* m_heightfieldData;
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union
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{
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unsigned char* m_heightfieldDataUnsignedChar;
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float* m_heightfieldDataFloat;
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void* m_heightfieldDataUnknown;
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};
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bool m_useFloatData;
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bool m_flipQuadEdges;
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int m_upAxis;
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btVector3 m_quantization;
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btVector3 m_localScaling;
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void quantizeWithClamp(short* out, const btVector3& point) const;
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void getVertex(int x,int y,btVector3& vertex) const;
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btScalar getHeightFieldValue(int x,int y) const;
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void quantizeWithClamp(short* out, const btVector3& point) const;
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void getVertex(int x,int y,btVector3& vertex) const;
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inline bool testQuantizedAabbAgainstQuantizedAabb(short int* aabbMin1,short int* aabbMax1,const short int* aabbMin2,const short int* aabbMax2) const
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{
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@@ -49,7 +59,7 @@ protected:
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}
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public:
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btHeightfieldTerrainShape(int width,int height,unsigned char* heightfieldData, btScalar maxHeight,int upAxis);
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btHeightfieldTerrainShape(int width,int height,void* heightfieldData, btScalar maxHeight,int upAxis,bool useFloatData,bool flipQuadEdges);
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virtual ~btHeightfieldTerrainShape();
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