inline void calculateVolume(TransformedTriangle& tri, const TriangleFaceKey& key);
inline void calculateSurface(TransformedTriangle& tri, const TriangleFaceKey& key);
- static inline bool isFacesCoplanar(const double *const planeNormal, const double planeConstant,
+ static inline bool IsFacesCoplanar(const double *const planeNormal, const double planeConstant,
const double *const *const coordsFace, const double precision);
- static inline double calculateIntersectionSurfaceOfCoplanarTriangles(const double *const planeNormal,
+ static inline double CalculateIntersectionSurfaceOfCoplanarTriangles(const double *const planeNormal,
const double planeConstant,
const double *const p1, const double *const p2, const double *const p3,
const double *const p4, const double *const p5, const double *const p6,
* @param precision precision for double float data used for comparison
*/
template<class MyMeshType>
- double SplitterTetra<MyMeshType>::calculateIntersectionSurfaceOfCoplanarTriangles(const double *const planeNormal,
+ double SplitterTetra<MyMeshType>::CalculateIntersectionSurfaceOfCoplanarTriangles(const double *const planeNormal,
const double planeConstant,
const double *const p1, const double *const p2, const double *const p3,
const double *const p4, const double *const p5, const double *const p6,
* @param precision precision for double float data used for comparison
*/
template<class MyMeshType>
- bool SplitterTetra<MyMeshType>::isFacesCoplanar(const double *const planeNormal,
+ bool SplitterTetra<MyMeshType>::IsFacesCoplanar(const double *const planeNormal,
const double planeConstant,
const double *const *const coordsFace,
const double precision)
}
}
double planeConstant = dot(planeNormal, coordsTetraTriNode1);
- if (isFacesCoplanar(planeNormal, planeConstant, polyCoords, precision))
+ if (IsFacesCoplanar(planeNormal, planeConstant, polyCoords, precision))
{
int nbrPolyTri = polyNodesNbr - 2; // split polygon into nbrPolyTri triangles
for (int iTri = 0; iTri < nbrPolyTri; ++iTri)
{
- double volume = calculateIntersectionSurfaceOfCoplanarTriangles(planeNormal,
+ double volume = CalculateIntersectionSurfaceOfCoplanarTriangles(planeNormal,
planeConstant,
polyCoords[0],
polyCoords[1 + iTri],