| ►Nboost | |
| ►Npolygon | |
| Cgeometry_concept< InPoint > | |
| Cgeometry_concept< InSegment > | |
| Cpoint_traits< InPoint > | |
| Csegment_traits< InSegment > | |
| Nserialization | |
| ►NDriverGMF | |
| CMeshCloser | An object closing GMF mesh at destruction |
| NDriverMED | |
| NlibSMESH_Swig | Python API for SMESH GUI |
| ►NMED | |
| CMEDIDTHoder | |
| CPrefixPrinter | |
| CSharedPtr | To extend the boost::shared_ptr to support such features automatic dynamic cast |
| CSharedPtr< TWrapper > | Specialization of SharedPtr for TWrapper |
| CTBallInfo | Define a class representing MED_BALL structure element |
| CTBase | Define a parent class for all MEDWrapper classes |
| CTCellInfo | Define a base class which represents MED Cells entity |
| CTCoordHelper | |
| CTCSlice | This class intends to provide a uniform way to handle multidimensional data (const version) |
| CTElemInfo | Define a parent class for all MED entities that describes mesh entities such as nodes and cells |
| CTFamilyInfo | Define a base class which represents MED Family entity |
| CTFieldInfo | Define a base class which represents MED Field entity |
| CTFile | |
| CTFileDecorator | |
| CTFileInternal | |
| CTFileWrapper | |
| CTGaussCoord | Define a helper class to handle Gauss Points coordinates |
| CTGaussDef | Description of family of integration points |
| ►CTGaussInfo | The class represents MED Gauss entity |
| CTLess | |
| CTGrilleInfo | Define a base class which represents MED Grille (structured mesh) |
| CTHexa20a | |
| CTHexa20b | |
| CTHexa27a | |
| CTHexa8a | |
| CTHexa8b | |
| CTLockProxy | This class provides thread-safety for MEDWrapper interaction |
| CTMemFile | |
| CTMeshInfo | Define a base class which represents MED Mesh entity |
| CTMeshValueBase | The class is a helper one. It provide safe and flexible way to get access to values for a MED TimeStamp |
| CTModeSwitchInfo | Define a parent class for all MED entities that contains a sequence of numbers |
| CTNameInfo | Define a parent class for all named MED entities |
| CTNodeInfo | Define a base class which represents MED Nodes entity |
| CTPenta15a | |
| CTPenta15b | |
| CTPenta6a | |
| CTPenta6b | |
| CTPolyedreInfo | Define a base class which represents MED Polyedre entity |
| CTPolygoneInfo | Define a base class which represents MED Polygon entity |
| CTProfileInfo | The class represents MED Profile entity |
| CTPyra13a | |
| CTPyra13b | |
| CTPyra5a | |
| CTPyra5b | |
| CTQuad4a | |
| CTQuad4b | |
| CTQuad8a | |
| CTQuad8b | |
| CTQuad9a | |
| CTQuad9b | |
| CTSeg2a | |
| CTSeg3a | |
| ►CTShapeFun | Shape function definitions |
| CTFun | |
| CTSlice | This class extends TCSlice functionality for non-constant case |
| CTTBallInfo | |
| CTTCellInfo | |
| CTTElemInfo | |
| CTTetra10a | |
| CTTetra10b | |
| CTTetra4a | |
| CTTetra4b | |
| CTTFamilyInfo | |
| CTTFieldInfo | |
| CTTGaussInfo | |
| CTTGrilleInfo | |
| CTTimeStampInfo | Define a base class which represents MED TimeStamp |
| CTTimeStampValue | The class implements a container for MED TimeStamp values |
| CTTimeStampValueBase | The class is a base class for MED TimeStamp values holder |
| CTTMeshInfo | |
| CTTMeshValue | The class is a helper one. It provide safe and flexible way to get access to values for a MED TimeStamp |
| CTTNameInfo | |
| CTTNodeInfo | |
| CTTPolyedreInfo | |
| CTTPolygoneInfo | |
| CTTProfileInfo | |
| CTTria3a | |
| CTTria3b | |
| CTTria6a | |
| CTTria6b | |
| CTTTimeStampInfo | |
| CTTTimeStampValue | |
| CTValueHolder | To provide a common way to handle values of MEDWrapper types as native MED types |
| CTValueHolder< TVector< TVal >, TRepresentation > | To customize TValueHolder common template definition for TVector |
| CTVector | Main purpose to introduce the class was to customize operator [] |
| CTWrapper | Class that wraps the MED API |
| NMEDCoupling | |
| ►NMESHCUT | |
| CCarre | |
| CCube | |
| CMaillage | |
| ►NMeshEditor_I | |
| ►CExtrusionParams | Structure used to pass extrusion parameters to SMESH_MeshEditor |
| CTBasePoint | |
| CTPreviewMesh | Mesh to apply modifications for preview purposes |
| CTSearchersDeleter | Deleter of theNodeSearcher and theElementSearcher at any compute event occurred |
| ►NMESHJOB | |
| CConfigParameter | |
| CMeshJobFile | |
| CMeshJobManager | |
| CMeshJobParameter | |
| CMeshJobPaths | |
| CMeshJobResults | |
| ►NMG_ADAPT | |
| ►CMgAdapt | |
| Cfamily | |
| Cgroup | |
| CMgAdaptHypothesisData | |
| NPluginUtils | |
| ►NPrism_3D | |
| CTNode | Structure containing node relative data |
| CTPrismTopo | |
| ►NSMDS | |
| Cacnt | |
| Ccounters | |
| CKeyAccessor | |
| CNonNullFilter | |
| CPassAllValueFilter | Filters of value pointed by iterator |
| CPointerAccessor | |
| Csalome_chrono | |
| CSimpleAccessor | Accessors to value pointed by iterator |
| CValueAccessor | |
| ►NSMESH | |
| ►NControls | |
| CArea | |
| CAspectRatio | |
| CAspectRatio3D | |
| CBadOrientedVolume | |
| CBallDiameter | |
| CBareBorderFace | |
| CBareBorderVolume | |
| CBelongToGeom | |
| CBelongToMeshGroup | |
| CClassifier | |
| CCoincidentElements | |
| CCoincidentElements1D | |
| CCoincidentElements2D | |
| CCoincidentElements3D | |
| CCoincidentNodes | |
| CComparator | |
| CConnectedElements | |
| CCoplanarFaces | |
| CDeflection2D | |
| CElemEntityType | |
| ►CElementsOnShape | |
| COctreeClassifier | |
| CElementsOnSurface | |
| CElemGeomType | |
| CEqualTo | |
| CFilter | |
| CFreeBorders | |
| ►CFreeEdges | |
| CBorder | |
| CFreeFaces | |
| CFreeNodes | |
| CFunctor | |
| CGroupColor | |
| CLength | |
| ►CLength2D | |
| CValue | |
| CLength3D | |
| CLessThan | |
| CLinearOrQuadratic | |
| CLogicalAND | |
| CLogicalBinary | |
| CLogicalNOT | |
| CLogicalOR | |
| CLyingOnGeom | |
| ►CManifoldPart | |
| CLink | |
| CMaxElementLength2D | |
| CMaxElementLength3D | |
| CMinimumAngle | |
| CMoreThan | |
| CMultiConnection | |
| ►CMultiConnection2D | |
| CValue | |
| CNodeConnectivityNumber | |
| CNumericalFunctor | |
| COverConstrainedFace | |
| COverConstrainedVolume | |
| CPredicate | |
| CRangeOfIds | |
| CScaledJacobian | |
| CSkew | |
| CTaper | |
| CTMeshModifTracer | Class used to detect mesh modification: IsMeshModified() returns true if a mesh has changed since last calling IsMeshModified() |
| CTSequenceOfXYZ | |
| CVolume | |
| CWarping | |
| ►CWarping3D | |
| CValue | |
| CAlgoStateError | Hypothesis definition error |
| CApplicableToAny | |
| CArea | |
| CArea_i | |
| CAspectRatio | |
| CAspectRatio3D | |
| CAspectRatio3D_i | |
| CAspectRatio_i | |
| CAxisStruct | |
| CBadOrientedVolume | Logical functor (predicate) "Bad Oriented Volume" |
| CBadOrientedVolume_i | |
| CBallDiameter | |
| CBallDiameter_i | |
| CBareBorderFace | Logical functor (predicate) "Faces with bare border" |
| CBareBorderFace_i | |
| CBareBorderVolume | Logical functor (predicate) "Volumes with bare border" |
| CBareBorderVolume_i | |
| CBelongToCylinder | Logical functor (predicate) "Belong To Cylinder" |
| CBelongToCylinder_i | |
| CBelongToGenSurface | Logical functor (predicate) "Belong To Generic Surface" |
| CBelongToGenSurface_i | |
| CBelongToGeom | Logical functor (predicate) "Belong To Geometry" |
| CBelongToGeom_i | |
| CBelongToMeshGroup | Logical functor (predicate) "Belong To Mesh Group" |
| CBelongToMeshGroup_i | |
| CBelongToPlane | Logical functor (predicate) "Belong To Plane" |
| CBelongToPlane_i | |
| CBelongToSurface | Logical functor (predicate) "Belong To Surface" |
| CBelongToSurface_i | |
| CClippingPlaneInfo | |
| CCoincidentFreeBorders | |
| CComparator | Comparator |
| CComparator_i | |
| CComputeError | |
| CConnectedElements | Predicate "Connected Elements" Returns true if an element is connected via other elements to the element located at a given point |
| CConnectedElements_i | |
| CCoplanarFaces | Predicate "Coplanar faces" Returns true if a mesh face is a coplanar neighbour to a given one |
| CCoplanarFaces_i | |
| CDeflection2D | |
| CDeflection2D_i | |
| CDirStruct | |
| CElemEntityType | Predicate "Element entity type" Returns is element has indicated entity type |
| CElemEntityType_i | |
| CElementPosition | Element location on a shape |
| CElementSubType | Structure used in mesh edit preview data (MeshPreviewStruct) |
| CElemGeomType | Predicate "Element geometry type" Returns is element has indicated geometry type |
| CElemGeomType_i | |
| CEqualEdges | Logical functor (predicate) "Equal Edges" |
| CEqualEdges_i | |
| CEqualFaces | Logical functor (predicate) "Equal Faces" |
| CEqualFaces_i | |
| CEqualNodes | Logical functor (predicate) "Equal Nodes" |
| CEqualNodes_i | |
| CEqualTo | |
| CEqualTo_i | |
| CEqualVolumes | Logical functor (predicate) "Equal Volumes" |
| CEqualVolumes_i | |
| CFaceEdge | |
| ►CFilter | Filter |
| CCriterion | Structure containing information about one criterion Type - FT_Taper, FT_Skew ... Compare - FT_LessThan, FT_MoreThan, FT_EqualTo Threshold - threshold value UnaryOp - unary logical operation: FT_LogicalNOT or FT_Undefined BinaryOp - binary logical operation FT_LogicalAND, FT_LogicalOR or (FT_Undefined must be for the last criterion) ThresholdStr - Threshold value defined as string |
| CFilter_i | |
| CFilterLibrary | Interface for working with library of filters |
| CFilterLibrary_i | |
| CFilterManager | Interface of Filter manager |
| CFilterManager_i | |
| CFreeBorder | |
| CFreeBorderPart | |
| CFreeBorders | Logical functor (predicate) "Free borders" |
| CFreeBorders_i | |
| ►CFreeEdges | Logical functor (predicate) "Free edges" |
| CBorder | |
| CFreeEdges_i | |
| CFreeFaces | Logical functor (predicate) "Free faces" |
| CFreeFaces_i | |
| CFreeNodes | Logical functor (predicate) "Free nodes" |
| CFreeNodes_i | |
| CFunctor | Base interface for all functors ( i.e |
| CFunctor_i | |
| CGroupColor | Predicate "Group Color" Returns color of group to which mesh element belongs to |
| CGroupColor_i | |
| CHistogramRectangle | Parameters of a reclangle of histogram |
| CHypInitParams | Way to initialize hypothesis |
| CLength | |
| ►CLength2D | |
| CValue | |
| CLength2D_i | |
| CLength3D | |
| CLength3D_i | |
| CLength_i | |
| CLessThan | |
| CLessThan_i | |
| CLinearOrQuadratic | Logical functor (predicate) "Is element Linear or Quadratic" |
| CLinearOrQuadratic_i | |
| Clog_block | |
| CLogical | Logical predicates are intended for compose predicates using boolean operations |
| CLogicalAND | |
| CLogicalAND_i | |
| CLogicalBinary | |
| CLogicalBinary_i | |
| CLogicalNOT | |
| CLogicalNOT_i | |
| CLogicalOR | |
| CLogicalOR_i | |
| CLyingOnGeom | Logical functor (predicate) "Lying On Geometry" |
| CLyingOnGeom_i | |
| CMaxElementLength2D | |
| CMaxElementLength2D_i | |
| CMaxElementLength3D | |
| CMaxElementLength3D_i | |
| CMeasure | |
| CMeasurements | |
| CMeasurements_i | |
| CMedFileInfo | A structure containing information about MED file |
| CMedInfo | Provide operations over the selected object |
| CMemoryReserve | Allocate some memory at construction and release it at destruction |
| CMeshInfo | Store statistics on mesh object |
| CMeshPreviewStruct | Structure containing mesh edit preview data |
| CMG_ADAPT | |
| CMG_ADAPT_i | |
| CMG_ADAPT_OBJECT | |
| CMG_ADAPT_OBJECT_i | |
| CMgAdaptHypothesisData | |
| CMinimumAngle | |
| CMinimumAngle_i | |
| CMoreThan | |
| CMoreThan_i | |
| CMultiConnection | |
| ►CMultiConnection2D | |
| CValue | |
| CMultiConnection2D_i | |
| CMultiConnection_i | |
| CNodeConnectivityNumber | |
| CNodeConnectivityNumber_i | |
| CNodePosition | Node location on a shape |
| CNotifyerAndWaiter | Object notified on change of base objects and notifying dependent objects in its turn |
| CNumericalFunctor | Numerical functors are intended for calculating value by Id of mesh entity |
| CNumericalFunctor_i | |
| COrientedPlane | |
| COverConstrainedFace | Logical functor (predicate) "Over-constrained Face" |
| COverConstrainedFace_i | |
| COverConstrainedVolume | Logical functor (predicate) "Over-constrained Volume" Verify whether a mesh volume has only one facet shared with other volumes |
| COverConstrainedVolume_i | |
| CPointStruct | |
| CPolySegment | |
| CPosition | Describes position of mesh node or element on a reference shape |
| CPredicate | Predicates are intended for verification of criteria, they return bool value by mesh id |
| CPredicate_i | |
| CRangeOfIds | Abstract logical functor (predicate) "RangeOfIds" |
| CRangeOfIds_i | |
| CScaledJacobian | |
| CScaledJacobian_i | |
| CSelectionProxy | Provide operations over the selected object |
| CSkew | |
| CSkew_i | |
| CSMESH_0D_Algo | |
| CSMESH_1D_Algo | |
| CSMESH_2D_Algo | |
| CSMESH_3D_Algo | |
| CSMESH_Algo | |
| CSMESH_Gen | |
| CSMESH_Group | SMESH_Group: interface of a standalone group object |
| CSMESH_GroupBase | SMESH_Group: base interface of group object |
| CSMESH_GroupOnFilter | SMESH_GroupOnFilter: interface of a group object defined by filter |
| CSMESH_GroupOnGeom | SMESH_GroupOnGeom: interface of a group object linked to geometry |
| CSMESH_Hypothesis | |
| CSMESH_IDSource | |
| CSMESH_Mesh | |
| CSMESH_MeshEditor | This interface makes modifications on the Mesh - removing elements and nodes etc |
| CSMESH_ParallelMesh | |
| CSMESH_Pattern | SMESH_Pattern: interface of mesh pattern |
| CSMESH_SequentialMesh | |
| CSMESH_subMesh | |
| CTaper | |
| CTaper_i | |
| CTElementSimulation | |
| CTElementSimulationQuad | |
| CTNodeSimulation | |
| CtoQStr | |
| CtoStdStr | |
| CtoStrT | Class useful to convert a string returned from a CORBA call to other string types w/o memory leak |
| CtoUtf8 | |
| CTPlaneData | |
| CTPolySimulation | |
| CTPythonDump | Utility helping in storing SMESH engine calls as python commands |
| CTShapeDisplayer | Class showing shapes without publishing |
| CTVar | Object used to make TPythonDump know that its held value can be a variable |
| CVolume3D | |
| CVolume3D_i | |
| CWarping | |
| CWarping3D | |
| CWarping3D_i | |
| CWarping_i | |
| CXYZ | Simple structure to manage 3D coordinate |
| NSMESH_HOMARD_QT_COMMUN | |
| NSMESH_HOMARD_UTILS | |
| ►NSMESH_MAT2d | |
| CBndPoints | Data of a discretized EDGE allowing to get a point on MA by a parameter on EDGE |
| CBoundary | Face boundary is discretized so that each its segment to correspond to an edge of MA |
| CBoundaryPoint | Point on FACE boundary |
| CBranch | Branch is a set of MA edges enclosed between branch points and/or MA ends |
| CBranchEnd | End point of MA Branch |
| CBranchPoint | Point on MA Branch |
| CMedialAxis | Medial axis (MA) is defined as the loci of centres of locally maximal balls inside 2D representation of a face |
| ►NSMESH_MeshAlgos | |
| CCoincidentFreeBorders | |
| CEdge | |
| ►CIntersector | Cut faces of a triangular mesh |
| CAlgo | Intersect faces of a mesh |
| CPolySegment | |
| CTFreeBorderPart | |
| ►CTriangulate | Divide a mesh face into triangles |
| CData | |
| COptimizer | |
| CPolyVertex | Vertex of a polygon |
| ►NSMESHHOMARD | |
| CHOMARD_Boundary | |
| CHOMARD_Cas | |
| CHOMARD_Gen | |
| ►NSMESHHOMARD_I | |
| CHOMARD_Boundary_i | |
| CHOMARD_Cas_i | |
| CHOMARD_Gen_i | |
| CHOMARD_Iteration_i | |
| ►NSMESHHOMARDImpl | |
| CHOMARD_Boundary | |
| CHOMARD_Cas | |
| CHOMARD_Gen | |
| CHOMARD_Iteration | |
| CHomardDriver | |
| ►NSMESHIOConverter | |
| CExtensionInfo | |
| NSMESHOp | |
| ►NSMESHUtils | |
| CArrayDeleter | Auto pointer to array |
| CBoostTxtArchive | Load an object from a string created by boost::archive::text_oarchive |
| CControlPnt | Control point: coordinates and element size at these coordinates |
| CDeleter | Auto pointer |
| CSMESH_RegularGrid | Define a regular grid of nx,ny,nz dimension |
| NSMESHUtils_MGLicenseKeyGen | Manage loading libSalomeMeshGemsKeyGenerator |
| ►NSPADDERPluginTest | |
| CSPADDERPluginTester | |
| ►NStdMeshers | StdMeshers: interfaces to standard hypotheses and algorithms |
| ►NCartesian3D | |
| CB_IntersectPoint | Common data of any intersection between a Grid and a shape |
| CCellsAroundLink | Return cells sharing a link |
| CConcaveFace | Sub-entities of a FACE neighboring its concave VERTEX |
| CE_IntersectPoint | Data of intersection between GridPlanes and a TopoDS_EDGE |
| CF_IntersectPoint | Data of intersection between a GridLine and a TopoDS_Face |
| CFaceGridIntersector | Intersector of TopoDS_Face with all GridLine's |
| CFaceLineIntersector | Intersector of a surface with a GridLine |
| CGeometry | Geom data |
| CGeomIDVecHelder | Hold a vector of TGeomID and clear it at destruction |
| CGrid | |
| CGridLine | A line of the grid and its intersections with 2D geometry |
| CGridPlanes | Planes of the grid used to find intersections of an EDGE with a hexahedron |
| ►CHexahedron | Class representing topology of the hexahedron and creating a mesh volume basing on analysis of hexahedron intersection with geometry |
| C_Face | |
| C_Link | |
| C_Node | < node either at a hexahedron corner or at intersection |
| C_OrientedLink | |
| ►C_SplitIterator | Set to _hexLinks splits on one side of INTERNAL FACEs |
| C_Split | |
| ►C_volumeDef | |
| C_linkDef | |
| C_nodeDef | |
| CLineIndexer | Iterator on the parallel grid lines of one direction |
| COneOfSolids | |
| CSolid | Container of IDs of SOLID sub-shapes |
| CTools | |
| CBlockCS | Interface of "Renumber" hypothesis used by Hexahedron(ijk) algorithm to renumber mesh of a block to be structured-like |
| CFunction | |
| CFunctionExpr | |
| CFunctionIntegral | |
| CFunctionTable | |
| CReversible1D | Common interface of 1D hypotheses that can be reversed |
| CStdMeshers_Adaptive1D | StdMeshers_Adaptive1D: interface of "Adaptive" hypothesis |
| CStdMeshers_Arithmetic1D | StdMeshers_Arithmetic1D: interface of "Arithmetic 1D" hypothesis |
| CStdMeshers_AutomaticLength | StdMeshers_AutomaticLength: interface of "Automatic length" hypothesis |
| CStdMeshers_BlockRenumber | |
| CStdMeshers_Cartesian_3D | StdMeshers_Cartesian_3D: interface of "Body fitting" algorithm |
| CStdMeshers_CartesianParameters3D | Interface of "Body fitting Parameters" hypothesis |
| CStdMeshers_CompositeSegment_1D | StdMeshers_CompositeSegment_1D: interface of "Composite side discretisation" algorithm |
| CStdMeshers_Deflection1D | StdMeshers_Deflection1D: interface of "Deflection 1D" hypothesis |
| CStdMeshers_FixedPoints1D | StdMeshers_FixedPoints1D: interface of "Fixed points 1D" hypothesis |
| CStdMeshers_Geometric1D | StdMeshers_Arithmetic1D: interface of "Geometric 1D" hypothesis |
| CStdMeshers_Hexa_3D | StdMeshers_Hexa_3D: interface of "Hexahedron (i,j,k)" algorithm |
| CStdMeshers_Import_1D | StdMeshers_Import_1D: interface of "Use existing 1D elements" algorithm |
| CStdMeshers_Import_1D2D | StdMeshers_Import_1D2D: interface of "Use existing 2D elements" algorithm |
| CStdMeshers_ImportSource1D | Interface of "Source edges" hypothesis |
| CStdMeshers_ImportSource2D | Interface of "Source faces" hypothesis |
| CStdMeshers_LayerDistribution | StdMeshers_LayerDistribution: interface of "Distribution of Layers" hypothesis |
| CStdMeshers_LayerDistribution2D | StdMeshers_LayerDistribution2D: interface of "Distribution of Layers" hypothesis |
| CStdMeshers_LengthFromEdges | StdMeshers_LengthFromEdges: interface of "Length From Edges (2D Hyp. for Triangulator)" hypothesis |
| CStdMeshers_LocalLength | StdMeshers_LocalLength: interface of "Average length" hypothesis |
| CStdMeshers_MaxElementArea | StdMeshers_MaxElementArea: interface of "Max. Triangle Area" hypothesis |
| CStdMeshers_MaxElementVolume | StdMeshers_MaxElementVolume: interface of "Max. Hexahedron or Tetrahedron Volume" hypothesis |
| CStdMeshers_MaxLength | StdMeshers_MaxLength: interface of "Max length" hypothesis |
| CStdMeshers_NotConformAllowed | StdMeshers_NotConformAllowed: interface of "Not Conform Mesh Allowed" hypothesis |
| CStdMeshers_NumberOfLayers | StdMeshers_NumberOfLayers: interface of "Nb. Layers" hypothesis |
| CStdMeshers_NumberOfLayers2D | StdMeshers_NumberOfLayers2D: interface of "Nb. Layers" hypothesis |
| CStdMeshers_NumberOfSegments | StdMeshers_NumberOfSegments: interface of "Nb. Segments" hypothesis |
| CStdMeshers_PolygonPerFace_2D | StdMeshers_PolygonPerFace_2D: interface of "Polygon Per Face" 2D algorithm |
| CStdMeshers_PolyhedronPerSolid_3D | StdMeshers_PolyhedronPerSolid_3D: interface of "Polyhedron Per Solid" 3D algorithm |
| CStdMeshers_Prism_3D | StdMeshers_Prism_3D: interface of "3D extrusion" algorithm |
| CStdMeshers_Projection_1D | StdMeshers_Projection_1D: interface of "Projection 1D" algorithm |
| CStdMeshers_Projection_1D2D | StdMeshers_Projection_1D2D: interface of "Projection 1D-2D" algorithm |
| CStdMeshers_Projection_2D | StdMeshers_Projection_2D: interface of "Projection 2D" algorithm |
| CStdMeshers_Projection_3D | StdMeshers_Projection_3D: interface of "Projection 3D" algorithm |
| CStdMeshers_ProjectionSource1D | Interface of "ProjectionSource1D" hypothesis |
| CStdMeshers_ProjectionSource2D | Interface of "ProjectionSource2D" hypothesis |
| CStdMeshers_ProjectionSource3D | Interface of "ProjectionSource3D" hypothesis |
| CStdMeshers_Propagation | StdMeshers_Propagation: interface of "Propagation of 1D Hyp |
| CStdMeshers_PropagOfDistribution | StdMeshers_Propagation: interface of "Propagation of Node
Distribution on Opposite Edges" hypothesis |
| CStdMeshers_QuadFromMedialAxis_1D2D | StdMeshers_QuadFromMedialAxis_1D2D: interface of "Quadrangle (Medial Axis Projection)" algorithm |
| CStdMeshers_Quadrangle_2D | StdMeshers_Quadrangle_2D: interface of "Quadrangle (Mapping)" algorithm |
| CStdMeshers_QuadrangleParams | |
| CStdMeshers_QuadranglePreference | StdMeshers_QuadranglePreference: interface of "QuadranglePreference" hypothesis |
| CStdMeshers_QuadraticMesh | StdMeshers_QuadraticMesh: interface of "QuadraticMesh" hypothesis |
| CStdMeshers_RadialPrism_3D | StdMeshers_RadialPrism_3D: interface of "Radial Prism" algorithm |
| CStdMeshers_RadialQuadrangle_1D2D | StdMeshers_RadialQuadrangle_1D2D: interface of "Radial quadrangle" algorithm |
| CStdMeshers_Regular_1D | StdMeshers_Regular_1D: interface of "Wire discretisation" algorithm |
| CStdMeshers_SegmentAroundVertex_0D | StdMeshers_SegmentAroundVertex_0D: interface of "SegmentAroundVertex" algorithm |
| CStdMeshers_SegmentLengthAroundVertex | Interface of "SegmentLengthAroundVertex" hypothesis |
| CStdMeshers_StartEndLength | StdMeshers_StartEndLength: interface of "Start and End Length" hypothesis |
| CStdMeshers_UseExisting_1D | StdMeshers_UseExisting_1D: interface of "UseExisting 1D" algorithm doing nothing to allow mesh generation by mesh edition functions in TUI mode |
| CStdMeshers_UseExisting_2D | StdMeshers_UseExisting_2D: interface of "UseExisting 2D" algorithm doing nothing to allow mesh generation by mesh edition functions in TUI mode |
| CStdMeshers_ViscousLayerBuilder | StdMeshers_Cartesian_3D: interface of "ViscousLayerBuilder" algorithm |
| CStdMeshers_ViscousLayers | Interface of "Viscous Layers" hypothesis |
| CStdMeshers_ViscousLayers2D | Interface of "Viscous Layers 2D" hypothesis |
| ►NStdMeshers_Cartesian_VL | |
| CViscousBuilder | |
| ►NStdMeshers_ProjectionUtils | Methods common to Projection algorithms |
| CDelaunay | Create a Delaunay triangulation of nodes on a face boundary and provide exploration of nodes shared by elements lying on the face |
| CMorph | Morph mesh on the target FACE to lie within FACE boundary w/o distortion |
| CTrsfFinder2D | Finds transformation between two sets of 2D points using a least square approximation |
| CTrsfFinder3D | Finds transformation between two sets of 3D points using a least square approximation |
| ►NStdMeshersGUI | |
| CGridAxisTab | Widget defining the grid in one direction |
| CLineDelegate | |
| ►NUi | |
| CCreateListGroup | |
| ►NUNV | |
| CPrefixPrinter | |
| ►NUNV164 | |
| CTRecord | |
| ►NUNV2411 | |
| CTRecord | |
| ►NUNV2412 | |
| CTRecord | |
| ►NUNV2417 | |
| CTRecord | |
| ►NUNV2420 | |
| CTRecord | |
| ►NVISCOUS_2D | |
| C_LayerEdge | Edge normal to FACE boundary, connecting a point on EDGE (_uvOut) and a point of a layer internal boundary (_uvIn) |
| C_PolyLine | Poly line composed of _Segment's of one EDGE |
| ►C_ProxyMeshHolder | SMESH_subMeshEventListener used to store _ProxyMeshOfFace, computed by _ViscousBuilder2D, in a SMESH_subMesh of the FACE |
| C_Data | |
| ►C_ProxyMeshOfFace | Proxy Mesh of FACE with viscous layers |
| C_EdgeSubMesh | |
| C_Segment | Segment connecting inner ends of two _LayerEdge's |
| C_SegmentIntersection | Intersector of _Segment's |
| ►C_SegmentTree | Tree of _Segment's used for a faster search of _Segment's |
| C_SegBox | |
| C_ViscousBuilder2D | Builder of viscous layers |
| ►NVISCOUS_3D | |
| C_2NearEdges | Structure used to smooth a _LayerEdge based on an EDGE |
| C_CentralCurveOnEdge | Container of centers of curvature at nodes on an EDGE bounding _ConvexFace |
| C_CollisionEdges | Structure holding _LayerEdge's based on EDGEs that will collide at inflation up to the full thickness |
| C_ConvexFace | Convex FACE whose radius of curvature is less than the thickness of layers |
| C_Curvature | Structure used to take into account surface curvature while smoothing |
| C_EdgesOnShape | _LayerEdge's on a shape and other shape data |
| C_Factory | |
| C_halfPlane | A 2D half plane used by _LayerEdge::smoothNefPolygon() |
| C_LayerEdge | Edge normal to surface, connecting a node on solid surface (_nodes[0]) and a node of the most internal layer (_nodes.back()) |
| C_LayerEdgeCmp | |
| C_Mapper2D | Compute positions of nodes of 2D structured mesh using TFI |
| C_MeshOfSolid | SMESH_ProxyMesh computed by _ViscousBuilder for a SOLID |
| C_NodeCoordHelper | Retriever of node coordinates either directly or from a surface by node UV |
| C_OffsetPlane | Offset plane used in getNormalByOffset() |
| C_Shrinker1D | Shrinker of nodes on the EDGE |
| C_ShrinkShapeListener | Listener of events of 3D sub-meshes computed with viscous layers |
| C_Simplex | Simplex (triangle or tetrahedron) based on 1 (tria) or 2 (tet) nodes of _LayerEdge and 2 nodes of the mesh surface beening smoothed |
| ►C_Smoother1D | Smoother of _LayerEdge's on EDGE |
| COffPnt | |
| C_SmoothNode | Data of node on a shrinked FACE |
| C_SolidData | Data of a SOLID |
| C_TmpMeshFace | Class of temporary mesh face |
| C_TmpMeshFaceOnEdge | Class of temporary mesh quadrangle face storing _LayerEdge it's based on |
| C_ViscousBuilder | Builder of viscous layers |
| C_ViscousListener | Listener of events of 3D sub-meshes computed with viscous layers |
| CAverageHyp | Layers parameters got by averaging several hypotheses |
| CPeriodicFaces | Pair of periodic FACEs |
| CPeriodicity | Periodic FACEs |
| CPyDump | |
| ►CShrinkFace | Shrink FACE data used to find periodic FACEs |
| CBndPart | < part of FACE boundary, either shrink or no-shrink |