VTK
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Singleton class for topologically regular data. More...
#include <vtkStructuredData.h>
Public Types | |
typedef vtkObject | Superclass |
Public Types inherited from vtkObject | |
typedef vtkObjectBase | Superclass |
Public Member Functions | |
virtual int | IsA (const char *type) |
vtkStructuredData * | NewInstance () const |
Public Member Functions inherited from vtkObject | |
vtkObject * | NewInstance () const |
virtual void | DebugOn () |
virtual void | DebugOff () |
bool | GetDebug () |
void | SetDebug (bool debugFlag) |
virtual void | Modified () |
virtual unsigned long | GetMTime () |
virtual void | PrintSelf (ostream &os, vtkIndent indent) |
unsigned long | AddObserver (unsigned long event, vtkCommand *, float priority=0.0f) |
unsigned long | AddObserver (const char *event, vtkCommand *, float priority=0.0f) |
vtkCommand * | GetCommand (unsigned long tag) |
void | RemoveObserver (vtkCommand *) |
void | RemoveObservers (unsigned long event, vtkCommand *) |
void | RemoveObservers (const char *event, vtkCommand *) |
int | HasObserver (unsigned long event, vtkCommand *) |
int | HasObserver (const char *event, vtkCommand *) |
void | RemoveObserver (unsigned long tag) |
void | RemoveObservers (unsigned long event) |
void | RemoveObservers (const char *event) |
void | RemoveAllObservers () |
int | HasObserver (unsigned long event) |
int | HasObserver (const char *event) |
template<class U , class T > | |
unsigned long | AddObserver (unsigned long event, U observer, void(T::*callback)(), float priority=0.0f) |
template<class U , class T > | |
unsigned long | AddObserver (unsigned long event, U observer, void(T::*callback)(vtkObject *, unsigned long, void *), float priority=0.0f) |
template<class U , class T > | |
unsigned long | AddObserver (unsigned long event, U observer, bool(T::*callback)(vtkObject *, unsigned long, void *), float priority=0.0f) |
int | InvokeEvent (unsigned long event, void *callData) |
int | InvokeEvent (const char *event, void *callData) |
int | InvokeEvent (unsigned long event) |
int | InvokeEvent (const char *event) |
Public Member Functions inherited from vtkObjectBase | |
const char * | GetClassName () const |
virtual void | Delete () |
virtual void | FastDelete () |
void | Print (ostream &os) |
virtual void | Register (vtkObjectBase *o) |
virtual void | UnRegister (vtkObjectBase *o) |
void | SetReferenceCount (int) |
void | PrintRevisions (ostream &) |
virtual void | PrintHeader (ostream &os, vtkIndent indent) |
virtual void | PrintTrailer (ostream &os, vtkIndent indent) |
int | GetReferenceCount () |
Static Public Member Functions | |
static int | IsTypeOf (const char *type) |
static vtkStructuredData * | SafeDownCast (vtkObjectBase *o) |
static vtkIdType | GetNumberOfPoints (int ext[6], int dataDescription=VTK_EMPTY) |
static vtkIdType | GetNumberOfCells (int ext[6], int dataDescription=VTK_EMPTY) |
static void | GetPointCells (vtkIdType ptId, vtkIdList *cellIds, int dim[3]) |
static int | SetDimensions (int inDim[3], int dim[3]) |
static int | SetExtent (int inExt[6], int ext[6]) |
static int | GetDataDescription (int dims[3]) |
static int | GetDataDescriptionFromExtent (int ext[6]) |
static int | GetDataDimension (int dataDescription) |
static int | GetDataDimension (int ext[6]) |
static void | GetCellExtentFromPointExtent (int pntExtent[6], int cellExtent[6], int dataDescription=VTK_EMPTY) |
static void | GetDimensionsFromExtent (int ext[6], int dims[3], int dataDescription=VTK_EMPTY) |
static void | GetCellDimensionsFromExtent (int ext[6], int celldims[3], int dataDescription=VTK_EMPTY) |
static void | GetCellDimensionsFromPointDimensions (int pntdims[3], int cellDims[3]) |
static void | GetLocalStructuredCoordinates (int ijk[3], int ext[6], int lijk[3], int dataDescription=VTK_EMPTY) |
static void | GetGlobalStructuredCoordinates (int lijk[3], int ext[6], int ijk[3], int dataDescription=VTK_EMPTY) |
static void | GetCellPoints (vtkIdType cellId, vtkIdList *ptIds, int dataDescription, int dim[3]) |
static void | GetCellNeighbors (vtkIdType cellId, vtkIdList *ptIds, vtkIdList *cellIds, int dim[3]) |
static vtkIdType | ComputePointIdForExtent (int extent[6], int ijk[3], int dataDescription=VTK_EMPTY) |
static vtkIdType | ComputeCellIdForExtent (int extent[6], int ijk[3], int dataDescription=VTK_EMPTY) |
static vtkIdType | ComputePointId (int dim[3], int ijk[3], int dataDescription=VTK_EMPTY) |
static vtkIdType | ComputeCellId (int dim[3], int ijk[3], int dataDescription=VTK_EMPTY) |
static void | ComputeCellStructuredCoordsForExtent (const vtkIdType cellIdx, int ext[6], int ijk[3], int dataDescription=VTK_EMPTY) |
static void | ComputeCellStructuredCoords (const vtkIdType cellId, int dim[3], int ijk[3], int dataDescription=VTK_EMPTY) |
static void | ComputePointStructuredCoordsForExtent (const vtkIdType ptId, int ext[6], int ijk[3], int dataDescription=VTK_EMPTY) |
static void | ComputePointStructuredCoords (const vtkIdType ptId, int dim[3], int ijk[3], int dataDescription=VTK_EMPTY) |
Static Public Member Functions inherited from vtkObject | |
static int | IsTypeOf (const char *type) |
static vtkObject * | SafeDownCast (vtkObjectBase *o) |
static vtkObject * | New () |
static void | BreakOnError () |
static void | SetGlobalWarningDisplay (int val) |
static void | GlobalWarningDisplayOn () |
static void | GlobalWarningDisplayOff () |
static int | GetGlobalWarningDisplay () |
Static Public Member Functions inherited from vtkObjectBase | |
static int | IsTypeOf (const char *name) |
static vtkObjectBase * | New () |
Protected Member Functions | |
virtual vtkObjectBase * | NewInstanceInternal () const |
vtkStructuredData () | |
~vtkStructuredData () | |
Protected Member Functions inherited from vtkObject | |
vtkObject () | |
virtual | ~vtkObject () |
virtual void | RegisterInternal (vtkObjectBase *, int check) |
virtual void | UnRegisterInternal (vtkObjectBase *, int check) |
void | InternalGrabFocus (vtkCommand *mouseEvents, vtkCommand *keypressEvents=NULL) |
void | InternalReleaseFocus () |
Protected Member Functions inherited from vtkObjectBase | |
vtkObjectBase () | |
virtual | ~vtkObjectBase () |
virtual void | CollectRevisions (ostream &) |
virtual void | ReportReferences (vtkGarbageCollector *) |
vtkObjectBase (const vtkObjectBase &) | |
void | operator= (const vtkObjectBase &) |
Static Protected Member Functions | |
template<typename T > | |
static T | Max (const T &a, const T &b) |
static vtkIdType | GetLinearIndex (const int i, const int j, const int k, const int N1, const int N2) |
static void | GetStructuredCoordinates (const vtkIdType idx, const int N1, const int N2, int &i, int &j, int &k) |
Additional Inherited Members | |
Protected Attributes inherited from vtkObject | |
bool | Debug |
vtkTimeStamp | MTime |
vtkSubjectHelper * | SubjectHelper |
Protected Attributes inherited from vtkObjectBase | |
vtkAtomicInt32 | ReferenceCount |
vtkWeakPointerBase ** | WeakPointers |
Singleton class for topologically regular data.
vtkStructuredData is a singleton class that provides an interface for topologically regular data. Regular data is data that can be accessed in rectangular fashion using an i-j-k index. A finite difference grid, a volume, or a pixmap are all considered regular.
Definition at line 50 of file vtkStructuredData.h.
Definition at line 53 of file vtkStructuredData.h.
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inlineprotected |
Definition at line 222 of file vtkStructuredData.h.
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inlineprotected |
Definition at line 223 of file vtkStructuredData.h.
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virtual |
Return 1 if this class is the same type of (or a subclass of) the named class. Returns 0 otherwise. This method works in combination with vtkTypeMacro found in vtkSetGet.h.
Reimplemented from vtkObject.
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protectedvirtual |
Reimplemented from vtkObject.
vtkStructuredData* vtkStructuredData::NewInstance | ( | ) | const |
Specify the dimensions of a regular, rectangular dataset. The input is the new dimensions (inDim) and the current dimensions (dim). The function returns the dimension of the dataset (0-3D). If the dimensions are improperly specified a -1 is returned. If the dimensions are unchanged, a value of 100 is returned.
Specify the dimensions of a regular, rectangular dataset. The input is the new dimensions (inDim) and the current dimensions (dim). The function returns the dimension of the dataset (0-3D). If the dimensions are improperly specified a -1 is returned. If the dimensions are unchanged, a value of 100 is returned.
Returns the data description given the dimensions (eg. VTK_SINGLE_POINT, VTK_X_LINE, VTK_XY_PLANE etc.)
Returns the data description given the dimensions (eg. VTK_SINGLE_POINT, VTK_X_LINE, VTK_XY_PLANE etc.)
Return the topological dimension of the data (e.g., 0, 1, 2, or 3D).
Return the topological dimension of the data (e.g., 0, 1, 2, or 3D).
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inlinestatic |
Given the grid extent, this method returns the total number of points within the extent. The dataDescription field is not used.
Definition at line 291 of file vtkStructuredData.h.
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Given the grid extent, this method returns the total number of cells within the extent. The dataDescription field is not used.
Definition at line 299 of file vtkStructuredData.h.
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Given the point extent of a grid, this method computes the corresponding cell extent for the grid. The dataDescription field is not used.
Definition at line 317 of file vtkStructuredData.h.
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inlinestatic |
Computes the structured grid dimensions based on the given extent. The dataDescription field is not used.
Definition at line 330 of file vtkStructuredData.h.
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Returns the cell dimensions, i.e., the number of cells along the i,j,k for the grid with the given grid extent. Note, the grid extent is the number of points. The dataDescription field is not used.
Definition at line 266 of file vtkStructuredData.h.
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Given the dimensions of the grid, in pntdims, this method returns the corresponding cell dimensions for the given grid. The dataDescription field is not used.
Definition at line 339 of file vtkStructuredData.h.
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inlinestatic |
Given the global structured coordinates for a point or cell, ijk, w.r.t. as well as, the global sub-grid cell or point extent, this method computes the corresponding local structured coordinates, lijk, starting from 0. The dataDescription argument is not used.
Definition at line 348 of file vtkStructuredData.h.
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Given local structured coordinates, and the corresponding global sub-grid extent, this method computes the global ijk coordinates. The dataDescription parameter is not used.
Definition at line 357 of file vtkStructuredData.h.
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Get the points defining a cell. (See vtkDataSet for more info.)
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Get the cells using a point. (See vtkDataSet for more info.)
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Get the cells using the points ptIds, exclusive of the cell cellId. (See vtkDataSet for more info.)
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Given a location in structured coordinates (i-j-k), and the extent of the structured dataset, return the point id. The dataDescription argument is not used.
Definition at line 366 of file vtkStructuredData.h.
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Given a location in structured coordinates (i-j-k), and the extent of the structured dataset, return the point id. The dataDescription argument is not used.
Definition at line 379 of file vtkStructuredData.h.
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inlinestatic |
Given a location in structured coordinates (i-j-k), and the dimensions of the structured dataset, return the point id. This method does not adjust for the beginning of the extent. The dataDescription argument is not used.
Definition at line 275 of file vtkStructuredData.h.
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Given a location in structured coordinates (i-j-k), and the dimensions of the structured dataset, return the cell id. This method does not adjust for the beginning of the extent. The dataDescription argument is not used.
Definition at line 282 of file vtkStructuredData.h.
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inlinestatic |
Given the global grid extent and the linear index of a cell within the grid extent, this method computes the corresponding structured coordinates of the given cell. This method adjusts for the beginning of the extent. The dataDescription argument is not used.
Definition at line 401 of file vtkStructuredData.h.
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Given a cellId and grid dimensions 'dim', get the structured coordinates (i-j-k). This method does not adjust for the beginning of the extent. The dataDescription argument is not used.
Definition at line 392 of file vtkStructuredData.h.
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Given a pointId and the grid extent ext, get the structured coordinates (i-j-k). This method adjusts for the beginning of the extent. The dataDescription argument is not used.
Definition at line 422 of file vtkStructuredData.h.
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Given a pointId and grid dimensions 'dim', get the structured coordinates (i-j-k). This method does not adjust for the beginning of the extent. The dataDescription argument is not used.
Definition at line 414 of file vtkStructuredData.h.
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Computes the linear index for the given i-j-k structured of a grid with of N1 and N2 dimensions along its principal directions. For example, the principal directions of a 3-D grid are Ni and Nj and likewise for a 2-D grid along the XY plane. For a grid in the XZ plane however, the principal directions are Ni and Nk.
Definition at line 231 of file vtkStructuredData.h.
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inlinestaticprotected |
Returns the structured coordinates (i,j,k) for the given linear index of a grid with N1 and N2 dimensions along its principal directions. NOTE: i,j,k are relative to the frame of reference of the grid. For example, if the grid is on the XZ-Plane, then i=>i, j=>k, k=>j.
Definition at line 243 of file vtkStructuredData.h.
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inlinestaticprotected |
Definition at line 255 of file vtkStructuredData.h.