79#ifndef vtkStructuredData_h
80#define vtkStructuredData_h
82#include "vtkCommonDataModelModule.h"
86VTK_ABI_NAMESPACE_BEGIN
95template <
typename Type>
97template <
typename Type>
100#define VTK_UNCHANGED 0
101#define VTK_SINGLE_POINT 1
105#define VTK_XY_PLANE 5
106#define VTK_YZ_PLANE 6
107#define VTK_XZ_PLANE 7
108#define VTK_XYZ_GRID 8
126 static int SetExtent(VTK_FUTURE_CONST
int inExt[6],
int ext[6]);
151 static vtkIdType GetNumberOfPoints(
const int ext[6],
int dataDescription =
VTK_EMPTY);
165 static void GetCellExtentFromPointExtent(
166 const int pntExtent[6],
int cellExtent[6],
int dataDescription =
VTK_EMPTY);
172 static void GetDimensionsFromExtent(
173 const int ext[6],
int dims[3],
int dataDescription =
VTK_EMPTY);
193 static void GetCellDimensionsFromExtent(
194 const int ext[6],
int celldims[3],
int dataDescription =
VTK_EMPTY);
201 static void GetCellDimensionsFromPointDimensions(
const int pntdims[3],
int cellDims[3]);
209 static void GetLocalStructuredCoordinates(
210 const int ijk[3],
const int ext[6],
int lijk[3],
int dataDescription =
VTK_EMPTY);
217 static void GetGlobalStructuredCoordinates(
218 const int lijk[3],
const int ext[6],
int ijk[3],
int dataDescription =
VTK_EMPTY);
243 static vtkIdType ComputePointIdForExtent(
244 const int extent[6],
const int ijk[3],
int dataDescription =
VTK_EMPTY);
252 const int extent[6],
const int ijk[3],
int dataDescription =
VTK_EMPTY);
261 const int dim[3],
const int ijk[3],
int dataDescription =
VTK_EMPTY);
270 const int dim[3],
const int ijk[3],
int dataDescription =
VTK_EMPTY);
278 static void ComputeCellStructuredCoordsForExtent(
286 static void ComputeCellStructuredCoords(
294 int ijkMax[3],
int dataDescription =
VTK_EMPTY);
301 static void ComputePointStructuredCoordsForExtent(
309 static void ComputePointStructuredCoords(
316 int extent[6],
bool usePixelVoxelOrientation);
323 vtkDataArray* zCoords,
int extent[6],
double dirMatrix[9]);
329 int extent[6],
bool usePixelVoxelOrientation);
344 return ((
static_cast<vtkIdType>(k) * N2 + j) * N1 + i);
355 const vtkIdType idx,
const int N1,
const int N2,
int& i,
int& j,
int& k)
358 k =
static_cast<int>(idx / N12);
359 j =
static_cast<int>((idx - k * N12) / N1);
360 i =
static_cast<int>(idx - k * N12 - j * N1);
365 template <
typename T>
366 static T
Max(
const T& a,
const T& b)
368 return (a > b) ? a : b;
400 return static_cast<vtkIdType>(ext[1] - ext[0] + 1) *
static_cast<vtkIdType>(ext[3] - ext[2] + 1) *
401 static_cast<vtkIdType>(ext[5] - ext[4] + 1);
423 const int nodeExtent[6],
int cellExtent[6],
int)
425 cellExtent[0] = nodeExtent[0];
426 cellExtent[2] = nodeExtent[2];
427 cellExtent[4] = nodeExtent[4];
437 dims[0] = ext[1] - ext[0] + 1;
438 dims[1] = ext[3] - ext[2] + 1;
439 dims[2] = ext[5] - ext[4] + 1;
444 const int nodeDims[3],
int cellDims[3])
453 const int ijk[3],
const int ext[6],
int lijk[3],
int)
455 lijk[0] = ijk[0] - ext[0];
456 lijk[1] = ijk[1] - ext[2];
457 lijk[2] = ijk[2] - ext[4];
462 const int lijk[3],
const int ext[6],
int ijk[3],
int)
464 ijk[0] = ext[0] + lijk[0];
465 ijk[1] = ext[2] + lijk[1];
466 ijk[2] = ext[4] + lijk[2];
471 const int extent[6],
const int ijk[3],
int)
484 const int extent[6],
const int ijk[3],
int)
497 vtkIdType cellId,
const int dims[3],
int ijk[3],
int)
500 cellId, dims[0] - 1, dims[1] - 1, ijk[0], ijk[1], ijk[2]);
505 vtkIdType cellIdx,
const int ext[6],
int ijk[3],
int)
518 vtkIdType ptId,
const int dim[3],
int ijk[3],
int)
525 vtkIdType ptId,
const int ext[6],
int ijk[3],
int)
abstract superclass for arrays of numeric data
list of point or cell ids
A read only array class that wraps an implicit function from integers to any value type supported by ...
a simple class to control print indentation
abstract base class for most VTK objects
represent and manipulate 3D points
Hold a reference to a vtkObjectBase instance.
implicit object to represent cell connectivity
Singleton class for topologically regular data.
static void ComputePointStructuredCoordsForExtent(vtkIdType ptId, const int ext[6], int ijk[3], int dataDescription=VTK_EMPTY)
Given a pointId and the grid extent ext, get the structured coordinates (i-j-k).
static void GetCellDimensionsFromExtent(const int ext[6], int celldims[3], int dataDescription=VTK_EMPTY)
Returns the cell dimensions, i.e., the number of cells along the i,j,k for the grid with the given gr...
static int GetDataDescription(int dims[3])
Returns the data description given the dimensions (eg.
static int GetDataDimension(int ext[6])
Return the topological dimension of the data (e.g., 0, 1, 2, or 3D).
static void GetStructuredCoordinates(const vtkIdType idx, const int N1, const int N2, int &i, int &j, int &k)
Returns the structured coordinates (i,j,k) for the given linear index of a grid with N1 and N2 dimens...
static vtkIdType ComputePointIdForExtent(const int extent[6], const int ijk[3], int dataDescription=VTK_EMPTY)
Given a location in structured coordinates (i-j-k), and the extent of the structured dataset,...
static int GetDataDescriptionFromExtent(int ext[6])
Returns the data description given the dimensions (eg.
static vtkSmartPointer< vtkStructuredCellArray > GetCellArray(int extent[6], bool usePixelVoxelOrientation)
Get the implicit cell array for structured data.
static void GetLocalStructuredCoordinates(const int ijk[3], const int ext[6], int lijk[3], int dataDescription=VTK_EMPTY)
Given the global structured coordinates for a point or cell, ijk, w.r.t.
static void GetDimensionsFromExtent(const int ext[6], int dims[3], int dataDescription=VTK_EMPTY)
Computes the structured grid dimensions based on the given extent.
static void GetCellNeighbors(vtkIdType cellId, vtkIdList *ptIds, vtkIdList *cellIds, int dim[3], int seedLoc[3])
static void GetCellPoints(vtkIdType cellId, vtkIdList *ptIds, int dataDescription, int dim[3])
Get the points defining a cell.
static bool IsPointVisible(vtkIdType cellId, vtkUnsignedCharArray *ghosts)
Return non-zero value if specified point is visible.
static void GetCellExtentFromPointExtent(const int pntExtent[6], int cellExtent[6], int dataDescription=VTK_EMPTY)
Given the point extent of a grid, this method computes the corresponding cell extent for the grid.
static void ComputeCellStructuredMinMaxCoords(vtkIdType cellId, const int dim[3], int ijkMin[3], int ijkMax[3], int dataDescription=VTK_EMPTY)
Given a cellId and grid dimensions 'dim', get the min and max structured coordinates (i-j-k).
static vtkIdType GetNumberOfCells(const int ext[6], int dataDescription=VTK_EMPTY)
Given the grid extent, this method returns the total number of cells within the extent.
vtkStructuredData()=default
static int SetExtent(VTK_FUTURE_CONST int inExt[6], int ext[6])
Specify the dimensions of a regular, rectangular dataset.
static void ComputeCellStructuredCoords(vtkIdType cellId, const int dim[3], int ijk[3], int dataDescription=VTK_EMPTY)
Given a cellId and grid dimensions 'dim', get the structured coordinates (i-j-k).
static void ComputeCellStructuredCoordsForExtent(vtkIdType cellIdx, const int ext[6], int ijk[3], int dataDescription=VTK_EMPTY)
Given the global grid extent and the linear index of a cell within the grid extent,...
static int GetDataDimension(int dataDescription)
Return the topological dimension of the data (e.g., 0, 1, 2, or 3D).
static VTK_WRAPEXCLUDE vtkSmartPointer< vtkConstantArray< int > > GetCellTypesArray(int extent[6], bool usePixelVoxelOrientation)
Get the implicit cell array types for structured data.
static vtkSmartPointer< vtkPoints > GetPoints(vtkDataArray *xCoords, vtkDataArray *yCoords, vtkDataArray *zCoords, int extent[6], double dirMatrix[9])
Given 3 arrays describing the xCoords, yCoords, and zCoords, the extent, and the direction matrix,...
void PrintSelf(ostream &os, vtkIndent indent) override
Methods invoked by print to print information about the object including superclasses.
~vtkStructuredData() override=default
static void GetCellDimensionsFromPointDimensions(const int pntdims[3], int cellDims[3])
Given the dimensions of the grid, in pntdims, this method returns the corresponding cell dimensions f...
static void GetCellNeighbors(vtkIdType cellId, vtkIdList *ptIds, vtkIdList *cellIds, int dim[3])
Get the cells using the points ptIds, exclusive of the cell cellId.
static int SetDimensions(VTK_FUTURE_CONST int inDim[3], int dim[3])
Specify the dimensions of a regular, rectangular dataset.
static vtkIdType ComputeCellIdForExtent(const int extent[6], const int ijk[3], int dataDescription=VTK_EMPTY)
Given a location in structured coordinates (i-j-k), and the extent of the structured dataset,...
static vtkIdType GetLinearIndex(const int i, const int j, const int k, const int N1, const int N2)
Computes the linear index for the given i-j-k structured of a grid with of N1 and N2 dimensions along...
static void ComputePointStructuredCoords(vtkIdType ptId, const int dim[3], int ijk[3], int dataDescription=VTK_EMPTY)
Given a pointId and grid dimensions 'dim', get the structured coordinates (i-j-k).
static vtkIdType ComputePointId(const int dim[3], const int ijk[3], int dataDescription=VTK_EMPTY)
Given a location in structured coordinates (i-j-k), and the dimensions of the structured dataset,...
static bool IsCellVisible(vtkIdType cellId, VTK_FUTURE_CONST int dimensions[3], int dataDescription, vtkUnsignedCharArray *cellGhostArray, vtkUnsignedCharArray *pointGhostArray=nullptr)
Return non-zero value if specified cell is visible.
static void GetPointCells(vtkIdType ptId, vtkIdList *cellIds, VTK_FUTURE_CONST int dim[3])
Get the cells using a point.
static void GetGlobalStructuredCoordinates(const int lijk[3], const int ext[6], int ijk[3], int dataDescription=VTK_EMPTY)
Given local structured coordinates, and the corresponding global sub-grid extent, this method compute...
static T Max(const T &a, const T &b)
static vtkIdType GetNumberOfPoints(const int ext[6], int dataDescription=VTK_EMPTY)
Given the grid extent, this method returns the total number of points within the extent.
static vtkIdType ComputeCellId(const int dim[3], const int ijk[3], int dataDescription=VTK_EMPTY)
Given a location in structured coordinates (i-j-k), and the dimensions of the structured dataset,...
dynamic, self-adjusting array of unsigned char
A utility structure serving as a backend for constant implicit arrays.