VTK  9.1.0
vtkColorTransferFunction.h
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1 /*=========================================================================
2 
3  Program: Visualization Toolkit
4  Module: vtkColorTransferFunction.h
5 
6  Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen
7  All rights reserved.
8  See Copyright.txt or http://www.kitware.com/Copyright.htm for details.
9 
10  This software is distributed WITHOUT ANY WARRANTY; without even
11  the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
12  PURPOSE. See the above copyright notice for more information.
13 
14 =========================================================================*/
145 #ifndef vtkColorTransferFunction_h
146 #define vtkColorTransferFunction_h
147 
148 #include "vtkRenderingCoreModule.h" // For export macro
149 #include "vtkScalarsToColors.h"
150 
151 class vtkColorTransferFunctionInternals;
152 
153 #define VTK_CTF_RGB 0
154 #define VTK_CTF_HSV 1
155 #define VTK_CTF_LAB 2
156 #define VTK_CTF_DIVERGING 3
157 #define VTK_CTF_LAB_CIEDE2000 4
158 #define VTK_CTF_STEP 5
159 
160 #define VTK_CTF_LINEAR 0
161 #define VTK_CTF_LOG10 1
162 
163 class VTKRENDERINGCORE_EXPORT vtkColorTransferFunction : public vtkScalarsToColors
164 {
165 public:
168  void DeepCopy(vtkScalarsToColors* f) override;
170 
174  void PrintSelf(ostream& os, vtkIndent indent) override;
175 
179  int GetSize();
180 
182 
188  int AddRGBPoint(double x, double r, double g, double b);
189  int AddRGBPoint(double x, double r, double g, double b, double midpoint, double sharpness);
190  int AddHSVPoint(double x, double h, double s, double v);
191  int AddHSVPoint(double x, double h, double s, double v, double midpoint, double sharpness);
192  int RemovePoint(double x);
194 
196 
201  double x1, double r1, double g1, double b1, double x2, double r2, double g2, double b2);
203  double x1, double h1, double s1, double v1, double x2, double h2, double s2, double v2);
205 
210 
214  double* GetColor(double x) VTK_SIZEHINT(3) { return vtkScalarsToColors::GetColor(x); }
215  void GetColor(double x, double rgb[3]) override;
216 
218 
221  double GetRedValue(double x);
222  double GetGreenValue(double x);
223  double GetBlueValue(double x);
225 
227 
232  int GetNodeValue(int index, double val[6]);
233  int SetNodeValue(int index, double val[6]);
235 
239  const unsigned char* MapValue(double v) override;
240 
242 
245  double* GetRange() VTK_SIZEHINT(2) override { return this->Range; }
246  virtual void GetRange(double& arg1, double& arg2)
247  {
248  arg1 = this->Range[0];
249  arg2 = this->Range[1];
250  }
251  virtual void GetRange(double _arg[2]) { this->GetRange(_arg[0], _arg[1]); }
253 
259  int AdjustRange(double range[2]);
260 
262 
268  void GetTable(double x1, double x2, int n, double* table);
269  void GetTable(double x1, double x2, int n, float* table);
270  const unsigned char* GetTable(double x1, double x2, int n);
272 
282  void BuildFunctionFromTable(double x1, double x2, int size, double* table);
283 
285 
293  vtkSetClampMacro(Clamping, vtkTypeBool, 0, 1);
294  vtkGetMacro(Clamping, vtkTypeBool);
295  vtkBooleanMacro(Clamping, vtkTypeBool);
297 
299 
311  vtkSetClampMacro(ColorSpace, int, VTK_CTF_RGB, VTK_CTF_STEP);
312  void SetColorSpaceToRGB() { this->SetColorSpace(VTK_CTF_RGB); }
313  void SetColorSpaceToHSV() { this->SetColorSpace(VTK_CTF_HSV); }
314  void SetColorSpaceToLab() { this->SetColorSpace(VTK_CTF_LAB); }
315  void SetColorSpaceToLabCIEDE2000() { this->SetColorSpace(VTK_CTF_LAB_CIEDE2000); }
316  void SetColorSpaceToDiverging() { this->SetColorSpace(VTK_CTF_DIVERGING); }
317  void SetColorSpaceToStep() { this->SetColorSpace(VTK_CTF_STEP); }
318  vtkGetMacro(ColorSpace, int);
319  vtkSetMacro(HSVWrap, vtkTypeBool);
320  vtkGetMacro(HSVWrap, vtkTypeBool);
321  vtkBooleanMacro(HSVWrap, vtkTypeBool);
323 
325 
330  vtkSetMacro(Scale, int);
331  void SetScaleToLinear() { this->SetScale(VTK_CTF_LINEAR); }
332  void SetScaleToLog10() { this->SetScale(VTK_CTF_LOG10); }
333  vtkGetMacro(Scale, int);
335 
337 
342  vtkSetVector3Macro(NanColor, double);
343  vtkGetVector3Macro(NanColor, double);
345 
347 
351  vtkSetMacro(NanOpacity, double);
352  vtkGetMacro(NanOpacity, double);
354 
356 
361  virtual void SetNanColorRGBA(double r, double g, double b, double a)
362  {
363  this->SetNanColor(r, g, b);
364  this->SetNanOpacity(a);
365  }
366 
367  void SetNanColorRGBA(double rgba[4])
368  {
369  this->SetNanColorRGBA(rgba[0], rgba[1], rgba[2], rgba[3]);
370  }
372 
374 
378  vtkSetVector3Macro(BelowRangeColor, double);
379  vtkGetVector3Macro(BelowRangeColor, double);
381 
383 
386  vtkSetMacro(UseBelowRangeColor, vtkTypeBool);
387  vtkGetMacro(UseBelowRangeColor, vtkTypeBool);
388  vtkBooleanMacro(UseBelowRangeColor, vtkTypeBool);
390 
392 
396  vtkSetVector3Macro(AboveRangeColor, double);
397  vtkGetVector3Macro(AboveRangeColor, double);
399 
401 
404  vtkSetMacro(UseAboveRangeColor, vtkTypeBool);
405  vtkGetMacro(UseAboveRangeColor, vtkTypeBool);
406  vtkBooleanMacro(UseAboveRangeColor, vtkTypeBool);
408 
416  double* GetDataPointer();
417 
423  void FillFromDataPointer(int n, double* ptr);
424 
428  void MapScalarsThroughTable2(void* input, unsigned char* output, int inputDataType,
429  int numberOfValues, int inputIncrement, int outputIncrement) override;
430 
432 
436  vtkSetMacro(AllowDuplicateScalars, vtkTypeBool);
437  vtkGetMacro(AllowDuplicateScalars, vtkTypeBool);
438  vtkBooleanMacro(AllowDuplicateScalars, vtkTypeBool);
440 
445 
452  void GetIndexedColor(vtkIdType idx, double rgba[4]) override;
453 
458  int EstimateMinNumberOfSamples(double const& x1, double const& x2);
459 
460 protected:
463 
464  vtkColorTransferFunctionInternals* Internal;
465 
473 
478 
483 
487  int Scale;
488 
492  double NanColor[3];
493 
497  double NanOpacity;
498 
502  double BelowRangeColor[3];
503 
508 
512  double AboveRangeColor[3];
513 
518 
522  double* Function;
523 
527  double Range[2];
528 
532  unsigned char UnsignedCharRGBAValue[4];
533 
538 
540  unsigned char* Table;
541 
547 
552  void SetRange(double, double) override {}
553  void SetRange(const double rng[2]) override { this->SetRange(rng[0], rng[1]); }
554 
561 
566  bool UpdateRange();
567 
572  void MovePoint(double oldX, double newX);
573 
578 
579 private:
581  void operator=(const vtkColorTransferFunction&) = delete;
582 };
583 
584 #endif
Defines a transfer function for mapping a property to an RGB color value.
virtual void SetNanColorRGBA(double r, double g, double b, double a)
Set the RGBA color to use when a NaN (not a number) is encountered.
const unsigned char * MapValue(double v) override
Map one value through the lookup table.
void GetTable(double x1, double x2, int n, double *table)
Fills in a table of n colors mapped from values mapped with even spacing between x1 and x2,...
int Scale
The color interpolation scale (linear or logarithmic).
void BuildFunctionFromTable(double x1, double x2, int size, double *table)
Construct a color transfer function from a table.
void DeepCopy(vtkScalarsToColors *f) override
Copy the contents from another object.
void RemoveAllPoints()
Remove all points.
void AddHSVSegment(double x1, double h1, double s1, double v1, double x2, double h2, double s2, double v2)
Add two points to the function and remove all the points between them.
void SetNanColorRGBA(double rgba[4])
Set the RGBA color to use when a NaN (not a number) is encountered.
int AdjustRange(double range[2])
Remove all points out of the new range, and make sure there is a point at each end of that range.
int AddHSVPoint(double x, double h, double s, double v)
Add/Remove a point to/from the function defined in RGB or HSV Return the index of the point (0 based)...
void GetTable(double x1, double x2, int n, float *table)
Fills in a table of n colors mapped from values mapped with even spacing between x1 and x2,...
int RemovePoint(double x)
Add/Remove a point to/from the function defined in RGB or HSV Return the index of the point (0 based)...
int TableSize
Temporary storage for the size of the table.
void PrintSelf(ostream &os, vtkIndent indent) override
Print method for vtkColorTransferFunction.
~vtkColorTransferFunction() override
int EstimateMinNumberOfSamples(double const &x1, double const &x2)
Estimates the minimum size of a table such that it would correctly sample this function.
void SetScaleToLog10()
Set the type of scale to use, linear or logarithmic.
double NanOpacity
The opacity to use for not-a-number.
const unsigned char * GetTable(double x1, double x2, int n)
Fills in a table of n colors mapped from values mapped with even spacing between x1 and x2,...
double GetRedValue(double x)
Get the color components individually.
vtkIdType GetNumberOfAvailableColors() override
Get the number of available colors for mapping to.
int ColorSpace
The color space in which interpolation is performed.
void MapScalarsThroughTable2(void *input, unsigned char *output, int inputDataType, int numberOfValues, int inputIncrement, int outputIncrement) override
Map a set of scalars through the lookup table.
void SetColorSpaceToHSV()
Set/Get the color space used for interpolation: RGB, HSV, CIELAB, Diverging or Step.
int AddRGBPoint(double x, double r, double g, double b, double midpoint, double sharpness)
Add/Remove a point to/from the function defined in RGB or HSV Return the index of the point (0 based)...
int GetSize()
How many nodes define this function?
void SetColorSpaceToDiverging()
Set/Get the color space used for interpolation: RGB, HSV, CIELAB, Diverging or Step.
vtkColorTransferFunctionInternals * Internal
int AddHSVPoint(double x, double h, double s, double v, double midpoint, double sharpness)
Add/Remove a point to/from the function defined in RGB or HSV Return the index of the point (0 based)...
void MovePoint(double oldX, double newX)
Moves point from oldX to newX.
int GetNodeValue(int index, double val[6])
For the node specified by index, set/get the location (X), R, G, and B values, midpoint,...
double FindMinimumXDistance()
Traverses the nodes to find the minimum distance.
double * GetColor(double x)
Returns an RGB color for the specified scalar value.
void SetRange(const double rng[2]) override
Sets/Gets the range of scalars that will be mapped.
virtual void GetRange(double &arg1, double &arg2)
Returns min and max position of all function points.
void SetScaleToLinear()
Set the type of scale to use, linear or logarithmic.
int AddRGBPoint(double x, double r, double g, double b)
Add/Remove a point to/from the function defined in RGB or HSV Return the index of the point (0 based)...
void SetColorSpaceToLab()
Set/Get the color space used for interpolation: RGB, HSV, CIELAB, Diverging or Step.
vtkTypeBool HSVWrap
Specify if HSV is wrap or not.
double * Function
Temporary array to store data from the nodes.
void SetColorSpaceToStep()
Set/Get the color space used for interpolation: RGB, HSV, CIELAB, Diverging or Step.
void AddRGBSegment(double x1, double r1, double g1, double b1, double x2, double r2, double g2, double b2)
Add two points to the function and remove all the points between them.
int SetNodeValue(int index, double val[6])
For the node specified by index, set/get the location (X), R, G, and B values, midpoint,...
double GetBlueValue(double x)
Get the color components individually.
static vtkColorTransferFunction * New()
void ShallowCopy(vtkColorTransferFunction *f)
void SetColorSpaceToLabCIEDE2000()
Set/Get the color space used for interpolation: RGB, HSV, CIELAB, Diverging or Step.
void FillFromDataPointer(int n, double *ptr)
Defines the nodes from an array ptr with the layout [X1, R1, G1, B1, X2, R2, G2, B2,...
vtkTypeBool UseAboveRangeColor
Flag indicating whether below-range color should be used.
vtkTypeBool UseBelowRangeColor
Flag indicating whether below-range color should be used.
double * GetDataPointer()
Returns a pointer to an array of all node values in an interleaved array with the layout [X1,...
vtkTypeBool Clamping
Determines the function value outside of defined points Zero = always return 0.0 outside of defined p...
void GetColor(double x, double rgb[3]) override
Map one value through the lookup table and store the color as an RGB array of doubles between 0 and 1...
vtkTypeBool AllowDuplicateScalars
If on, the same scalar value may have more than one node assigned to it.
void SetColorSpaceToRGB()
Set/Get the color space used for interpolation: RGB, HSV, CIELAB, Diverging or Step.
void SetRange(double, double) override
Set the range of scalars being mapped.
void SortAndUpdateRange()
Internal method to sort the vector and update the Range whenever a node is added, edited or removed I...
void GetIndexedColor(vtkIdType idx, double rgba[4]) override
Return a color given an integer index.
virtual void GetRange(double _arg[2])
Returns min and max position of all function points.
bool UpdateRange()
Returns true if the range has been changed.
double GetGreenValue(double x)
Get the color components individually.
double * GetRange() override
Returns min and max position of all function points.
vtkFrustumSelector is a vtkSelector that selects elements based on whether they are inside or interse...
a simple class to control print indentation
Definition: vtkIndent.h:113
Superclass for mapping scalar values to colors.
virtual void GetColor(double v, double rgb[3])
Map one value through the lookup table and store the color as an RGB array of doubles between 0 and 1...
record modification and/or execution time
Definition: vtkTimeStamp.h:52
@ range
Definition: vtkX3D.h:244
@ size
Definition: vtkX3D.h:259
@ index
Definition: vtkX3D.h:252
auto Range(IterablePtr iterable, Options &&... opts) -> typename detail::IterableTraits< typename detail::StripPointers< IterablePtr >::type >::RangeType
Generate an iterable STL proxy object for a VTK container.
Definition: vtkRange.h:85
int vtkTypeBool
Definition: vtkABI.h:69
#define VTK_CTF_DIVERGING
#define VTK_CTF_LAB_CIEDE2000
#define VTK_CTF_RGB
#define VTK_CTF_LAB
#define VTK_CTF_LINEAR
#define VTK_CTF_HSV
#define VTK_CTF_STEP
#define VTK_CTF_LOG10
int vtkIdType
Definition: vtkType.h:332
#define VTK_SIZEHINT(...)