VTK  9.1.0
Public Types | Public Member Functions | Static Public Member Functions | Protected Member Functions | List of all members
vtkCylindricalTransform Class Reference

cylindrical to rectangular coords and back More...

#include <vtkCylindricalTransform.h>

Inheritance diagram for vtkCylindricalTransform:
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Collaboration diagram for vtkCylindricalTransform:
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Public Types

typedef vtkWarpTransform Superclass
 
- Public Types inherited from vtkWarpTransform
typedef vtkAbstractTransform Superclass
 
- Public Types inherited from vtkAbstractTransform
typedef vtkObject Superclass
 

Public Member Functions

virtual vtkTypeBool IsA (const char *type)
 Return 1 if this class is the same type of (or a subclass of) the named class.
 
vtkCylindricalTransformNewInstance () const
 
void PrintSelf (ostream &os, vtkIndent indent) override
 Methods invoked by print to print information about the object including superclasses.
 
vtkAbstractTransformMakeTransform () override
 Make another transform of the same type.
 
- Public Member Functions inherited from vtkWarpTransform
virtual vtkTypeBool IsA (const char *type)
 Return 1 if this class is the same type of (or a subclass of) the named class.
 
vtkWarpTransformNewInstance () const
 
void PrintSelf (ostream &os, vtkIndent indent) override
 Methods invoked by print to print information about the object including superclasses.
 
void Inverse () override
 Invert the transformation.
 
virtual int GetInverseFlag ()
 Get the inverse flag of the transformation.
 
virtual void SetInverseTolerance (double)
 Set the tolerance for inverse transformation.
 
virtual double GetInverseTolerance ()
 Set the tolerance for inverse transformation.
 
virtual void SetInverseIterations (int)
 Set the maximum number of iterations for the inverse transformation.
 
virtual int GetInverseIterations ()
 Set the maximum number of iterations for the inverse transformation.
 
void InternalTransformPoint (const float in[3], float out[3]) override
 This will calculate the transformation without calling Update.
 
void InternalTransformPoint (const double in[3], double out[3]) override
 This will calculate the transformation without calling Update.
 
void InternalTransformDerivative (const float in[3], float out[3], float derivative[3][3]) override
 This will calculate the transformation, as well as its derivative without calling Update.
 
void InternalTransformDerivative (const double in[3], double out[3], double derivative[3][3]) override
 This will calculate the transformation, as well as its derivative without calling Update.
 
void TemplateTransformPoint (const float in[3], float out[3])
 Do not use these methods.
 
void TemplateTransformPoint (const double in[3], double out[3])
 Do not use these methods.
 
void TemplateTransformPoint (const float in[3], float out[3], float derivative[3][3])
 Do not use these methods.
 
void TemplateTransformPoint (const double in[3], double out[3], double derivative[3][3])
 Do not use these methods.
 
void TemplateTransformInverse (const float in[3], float out[3])
 Do not use these methods.
 
void TemplateTransformInverse (const double in[3], double out[3])
 Do not use these methods.
 
void TemplateTransformInverse (const float in[3], float out[3], float derivative[3][3])
 Do not use these methods.
 
void TemplateTransformInverse (const double in[3], double out[3], double derivative[3][3])
 Do not use these methods.
 
- Public Member Functions inherited from vtkAbstractTransform
virtual vtkTypeBool IsA (const char *type)
 Return 1 if this class is the same type of (or a subclass of) the named class.
 
vtkAbstractTransformNewInstance () const
 
void PrintSelf (ostream &os, vtkIndent indent) override
 Methods invoked by print to print information about the object including superclasses.
 
void TransformPoint (const float in[3], float out[3])
 Apply the transformation to a coordinate.
 
void TransformPoint (const double in[3], double out[3])
 Apply the transformation to a double-precision coordinate.
 
double * TransformPoint (double x, double y, double z)
 Apply the transformation to a double-precision coordinate.
 
double * TransformPoint (const double point[3])
 
double * TransformNormalAtPoint (const double point[3], const double normal[3])
 
double * TransformVectorAtPoint (const double point[3], const double vector[3])
 
virtual void TransformPoints (vtkPoints *inPts, vtkPoints *outPts)
 Apply the transformation to a series of points, and append the results to outPts.
 
virtual void TransformPointsNormalsVectors (vtkPoints *inPts, vtkPoints *outPts, vtkDataArray *inNms, vtkDataArray *outNms, vtkDataArray *inVrs, vtkDataArray *outVrs, int nOptionalVectors=0, vtkDataArray **inVrsArr=nullptr, vtkDataArray **outVrsArr=nullptr)
 Apply the transformation to a combination of points, normals and vectors.
 
vtkAbstractTransformGetInverse ()
 Get the inverse of this transform.
 
void SetInverse (vtkAbstractTransform *transform)
 Set a transformation that this transform will be the inverse of.
 
virtual void Inverse ()=0
 Invert the transformation.
 
void DeepCopy (vtkAbstractTransform *)
 Copy this transform from another of the same type.
 
void Update ()
 Update the transform to account for any changes which have been made.
 
virtual vtkAbstractTransformMakeTransform ()=0
 Make another transform of the same type.
 
virtual int CircuitCheck (vtkAbstractTransform *transform)
 Check for self-reference.
 
vtkMTimeType GetMTime () override
 Override GetMTime necessary because of inverse transforms.
 
void UnRegister (vtkObjectBase *O) override
 Needs a special UnRegister() implementation to avoid circular references.
 
float * TransformFloatPoint (float x, float y, float z)
 Apply the transformation to an (x,y,z) coordinate.
 
float * TransformFloatPoint (const float point[3])
 Apply the transformation to an (x,y,z) coordinate.
 
double * TransformDoublePoint (double x, double y, double z)
 Apply the transformation to a double-precision (x,y,z) coordinate.
 
double * TransformDoublePoint (const double point[3])
 Apply the transformation to a double-precision (x,y,z) coordinate.
 
void TransformNormalAtPoint (const float point[3], const float in[3], float out[3])
 Apply the transformation to a normal at the specified vertex.
 
void TransformNormalAtPoint (const double point[3], const double in[3], double out[3])
 Apply the transformation to a normal at the specified vertex.
 
double * TransformDoubleNormalAtPoint (const double point[3], const double normal[3])
 Apply the transformation to a double-precision normal at the specified vertex.
 
float * TransformFloatNormalAtPoint (const float point[3], const float normal[3])
 Apply the transformation to a single-precision normal at the specified vertex.
 
void TransformVectorAtPoint (const float point[3], const float in[3], float out[3])
 Apply the transformation to a vector at the specified vertex.
 
void TransformVectorAtPoint (const double point[3], const double in[3], double out[3])
 Apply the transformation to a vector at the specified vertex.
 
double * TransformDoubleVectorAtPoint (const double point[3], const double vector[3])
 Apply the transformation to a double-precision vector at the specified vertex.
 
float * TransformFloatVectorAtPoint (const float point[3], const float vector[3])
 Apply the transformation to a single-precision vector at the specified vertex.
 
- Public Member Functions inherited from vtkObject
 vtkBaseTypeMacro (vtkObject, vtkObjectBase)
 
virtual void DebugOn ()
 Turn debugging output on.
 
virtual void DebugOff ()
 Turn debugging output off.
 
bool GetDebug ()
 Get the value of the debug flag.
 
void SetDebug (bool debugFlag)
 Set the value of the debug flag.
 
virtual void Modified ()
 Update the modification time for this object.
 
virtual vtkMTimeType GetMTime ()
 Return this object's modified time.
 
void PrintSelf (ostream &os, vtkIndent indent) override
 Methods invoked by print to print information about the object including superclasses.
 
void RemoveObserver (unsigned long tag)
 
void RemoveObservers (unsigned long event)
 
void RemoveObservers (const char *event)
 
void RemoveAllObservers ()
 
vtkTypeBool HasObserver (unsigned long event)
 
vtkTypeBool HasObserver (const char *event)
 
int InvokeEvent (unsigned long event)
 
int InvokeEvent (const char *event)
 
unsigned long AddObserver (unsigned long event, vtkCommand *, float priority=0.0f)
 Allow people to add/remove/invoke observers (callbacks) to any VTK object.
 
unsigned long AddObserver (const char *event, vtkCommand *, float priority=0.0f)
 Allow people to add/remove/invoke observers (callbacks) to any VTK object.
 
vtkCommandGetCommand (unsigned long tag)
 Allow people to add/remove/invoke observers (callbacks) to any VTK object.
 
void RemoveObserver (vtkCommand *)
 Allow people to add/remove/invoke observers (callbacks) to any VTK object.
 
void RemoveObservers (unsigned long event, vtkCommand *)
 Allow people to add/remove/invoke observers (callbacks) to any VTK object.
 
void RemoveObservers (const char *event, vtkCommand *)
 Allow people to add/remove/invoke observers (callbacks) to any VTK object.
 
vtkTypeBool HasObserver (unsigned long event, vtkCommand *)
 Allow people to add/remove/invoke observers (callbacks) to any VTK object.
 
vtkTypeBool HasObserver (const char *event, vtkCommand *)
 Allow people to add/remove/invoke observers (callbacks) to any VTK object.
 
template<class U , class T >
unsigned long AddObserver (unsigned long event, U observer, void(T::*callback)(), float priority=0.0f)
 Overloads to AddObserver that allow developers to add class member functions as callbacks for events.
 
template<class U , class T >
unsigned long AddObserver (unsigned long event, U observer, void(T::*callback)(vtkObject *, unsigned long, void *), float priority=0.0f)
 Overloads to AddObserver that allow developers to add class member functions as callbacks for events.
 
template<class U , class T >
unsigned long AddObserver (unsigned long event, U observer, bool(T::*callback)(vtkObject *, unsigned long, void *), float priority=0.0f)
 Allow user to set the AbortFlagOn() with the return value of the callback method.
 
int InvokeEvent (unsigned long event, void *callData)
 This method invokes an event and return whether the event was aborted or not.
 
int InvokeEvent (const char *event, void *callData)
 This method invokes an event and return whether the event was aborted or not.
 
- Public Member Functions inherited from vtkObjectBase
const char * GetClassName () const
 Return the class name as a string.
 
virtual vtkTypeBool IsA (const char *name)
 Return 1 if this class is the same type of (or a subclass of) the named class.
 
virtual vtkIdType GetNumberOfGenerationsFromBase (const char *name)
 Given the name of a base class of this class type, return the distance of inheritance between this class type and the named class (how many generations of inheritance are there between this class and the named class).
 
virtual void Delete ()
 Delete a VTK object.
 
virtual void FastDelete ()
 Delete a reference to this object.
 
void InitializeObjectBase ()
 
void Print (ostream &os)
 Print an object to an ostream.
 
virtual void Register (vtkObjectBase *o)
 Increase the reference count (mark as used by another object).
 
virtual void UnRegister (vtkObjectBase *o)
 Decrease the reference count (release by another object).
 
int GetReferenceCount ()
 Return the current reference count of this object.
 
void SetReferenceCount (int)
 Sets the reference count.
 
bool GetIsInMemkind () const
 A local state flag that remembers whether this object lives in the normal or extended memory space.
 
virtual void PrintHeader (ostream &os, vtkIndent indent)
 Methods invoked by print to print information about the object including superclasses.
 
virtual void PrintTrailer (ostream &os, vtkIndent indent)
 Methods invoked by print to print information about the object including superclasses.
 

Static Public Member Functions

static vtkCylindricalTransformNew ()
 
static vtkTypeBool IsTypeOf (const char *type)
 
static vtkCylindricalTransformSafeDownCast (vtkObjectBase *o)
 
- Static Public Member Functions inherited from vtkWarpTransform
static vtkTypeBool IsTypeOf (const char *type)
 
static vtkWarpTransformSafeDownCast (vtkObjectBase *o)
 
- Static Public Member Functions inherited from vtkAbstractTransform
static vtkTypeBool IsTypeOf (const char *type)
 
static vtkAbstractTransformSafeDownCast (vtkObjectBase *o)
 
- Static Public Member Functions inherited from vtkObject
static vtkObjectNew ()
 Create an object with Debug turned off, modified time initialized to zero, and reference counting on.
 
static void BreakOnError ()
 This method is called when vtkErrorMacro executes.
 
static void SetGlobalWarningDisplay (int val)
 This is a global flag that controls whether any debug, warning or error messages are displayed.
 
static void GlobalWarningDisplayOn ()
 This is a global flag that controls whether any debug, warning or error messages are displayed.
 
static void GlobalWarningDisplayOff ()
 This is a global flag that controls whether any debug, warning or error messages are displayed.
 
static int GetGlobalWarningDisplay ()
 This is a global flag that controls whether any debug, warning or error messages are displayed.
 
- Static Public Member Functions inherited from vtkObjectBase
static vtkTypeBool IsTypeOf (const char *name)
 Return 1 if this class type is the same type of (or a subclass of) the named class.
 
static vtkIdType GetNumberOfGenerationsFromBaseType (const char *name)
 Given a the name of a base class of this class type, return the distance of inheritance between this class type and the named class (how many generations of inheritance are there between this class and the named class).
 
static vtkObjectBaseNew ()
 Create an object with Debug turned off, modified time initialized to zero, and reference counting on.
 
static void SetMemkindDirectory (const char *directoryname)
 The name of a directory, ideally mounted -o dax, to memory map an extended memory space within.
 
static bool GetUsingMemkind ()
 A global state flag that controls whether vtkObjects are constructed in the usual way (the default) or within the extended memory space.
 

Protected Member Functions

virtual vtkObjectBaseNewInstanceInternal () const
 
 vtkCylindricalTransform ()
 
 ~vtkCylindricalTransform () override
 
void InternalDeepCopy (vtkAbstractTransform *transform) override
 Copy this transform from another of the same type.
 
void ForwardTransformDerivative (const float in[3], float out[3], float derivative[3][3]) override
 Calculate the forward transform as well as the derivative.
 
void ForwardTransformDerivative (const double in[3], double out[3], double derivative[3][3]) override
 Calculate the forward transform as well as the derivative.
 
void InverseTransformPoint (const float in[3], float out[3]) override
 If the InverseFlag is set to 1, then a call to InternalTransformPoint results in a call to InverseTransformPoint.
 
void InverseTransformPoint (const double in[3], double out[3]) override
 If the InverseFlag is set to 1, then a call to InternalTransformPoint results in a call to InverseTransformPoint.
 
void InverseTransformDerivative (const float in[3], float out[3], float derivative[3][3]) override
 Calculate the inverse transform as well as the derivative of the forward transform (that's correct: the derivative of the forward transform, not of the inverse transform)
 
void InverseTransformDerivative (const double in[3], double out[3], double derivative[3][3]) override
 Calculate the inverse transform as well as the derivative of the forward transform (that's correct: the derivative of the forward transform, not of the inverse transform)
 
void ForwardTransformPoint (const float in[3], float out[3]) override
 Internal functions for calculating the transformation.
 
void ForwardTransformPoint (const double in[3], double out[3]) override
 Internal functions for calculating the transformation.
 
- Protected Member Functions inherited from vtkWarpTransform
virtual vtkObjectBaseNewInstanceInternal () const
 
 vtkWarpTransform ()
 
 ~vtkWarpTransform () override
 
- Protected Member Functions inherited from vtkAbstractTransform
virtual vtkObjectBaseNewInstanceInternal () const
 
 vtkAbstractTransform ()
 
 ~vtkAbstractTransform () override
 
virtual void InternalUpdate ()
 Perform any subclass-specific Update.
 
virtual void InternalDeepCopy (vtkAbstractTransform *)
 Perform any subclass-specific DeepCopy.
 
- Protected Member Functions inherited from vtkObject
 vtkObject ()
 
 ~vtkObject () override
 
void RegisterInternal (vtkObjectBase *, vtkTypeBool check) override
 
void UnRegisterInternal (vtkObjectBase *, vtkTypeBool check) override
 
void InternalGrabFocus (vtkCommand *mouseEvents, vtkCommand *keypressEvents=nullptr)
 These methods allow a command to exclusively grab all events.
 
void InternalReleaseFocus ()
 These methods allow a command to exclusively grab all events.
 
- Protected Member Functions inherited from vtkObjectBase
 vtkObjectBase ()
 
virtual ~vtkObjectBase ()
 
virtual void RegisterInternal (vtkObjectBase *, vtkTypeBool check)
 
virtual void UnRegisterInternal (vtkObjectBase *, vtkTypeBool check)
 
virtual void ReportReferences (vtkGarbageCollector *)
 
 vtkObjectBase (const vtkObjectBase &)
 
void operator= (const vtkObjectBase &)
 

Additional Inherited Members

- Static Protected Member Functions inherited from vtkObjectBase
static vtkMallocingFunction GetCurrentMallocFunction ()
 
static vtkReallocingFunction GetCurrentReallocFunction ()
 
static vtkFreeingFunction GetCurrentFreeFunction ()
 
static vtkFreeingFunction GetAlternateFreeFunction ()
 
- Protected Attributes inherited from vtkWarpTransform
int InverseFlag
 
int InverseIterations
 
double InverseTolerance
 
- Protected Attributes inherited from vtkAbstractTransform
float InternalFloatPoint [3]
 
double InternalDoublePoint [3]
 
- Protected Attributes inherited from vtkObject
bool Debug
 
vtkTimeStamp MTime
 
vtkSubjectHelper * SubjectHelper
 
- Protected Attributes inherited from vtkObjectBase
std::atomic< int32_t > ReferenceCount
 
vtkWeakPointerBase ** WeakPointers
 

Detailed Description

cylindrical to rectangular coords and back

vtkCylindricalTransform will convert (r,theta,z) coordinates to (x,y,z) coordinates and back again. The angles are given in radians. By default, it converts cylindrical coordinates to rectangular, but GetInverse() returns a transform that will do the opposite. The equation that is used is x = r*cos(theta), y = r*sin(theta), z = z.

Warning
This transform is not well behaved along the line x=y=0 (i.e. along the z-axis)
See also
vtkSphericalTransform vtkGeneralTransform

Definition at line 37 of file vtkCylindricalTransform.h.

Member Typedef Documentation

◆ Superclass

Definition at line 41 of file vtkCylindricalTransform.h.

Constructor & Destructor Documentation

◆ vtkCylindricalTransform()

vtkCylindricalTransform::vtkCylindricalTransform ( )
protected

◆ ~vtkCylindricalTransform()

vtkCylindricalTransform::~vtkCylindricalTransform ( )
overrideprotected

Member Function Documentation

◆ New()

static vtkCylindricalTransform * vtkCylindricalTransform::New ( )
static

◆ IsTypeOf()

static vtkTypeBool vtkCylindricalTransform::IsTypeOf ( const char *  type)
static

◆ IsA()

virtual vtkTypeBool vtkCylindricalTransform::IsA ( const char *  name)
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 vtkWarpTransform.

◆ SafeDownCast()

static vtkCylindricalTransform * vtkCylindricalTransform::SafeDownCast ( vtkObjectBase o)
static

◆ NewInstanceInternal()

virtual vtkObjectBase * vtkCylindricalTransform::NewInstanceInternal ( ) const
protectedvirtual

Reimplemented from vtkWarpTransform.

◆ NewInstance()

vtkCylindricalTransform * vtkCylindricalTransform::NewInstance ( ) const

◆ PrintSelf()

void vtkCylindricalTransform::PrintSelf ( ostream &  os,
vtkIndent  indent 
)
overridevirtual

Methods invoked by print to print information about the object including superclasses.

Typically not called by the user (use Print() instead) but used in the hierarchical print process to combine the output of several classes.

Reimplemented from vtkAbstractTransform.

◆ MakeTransform()

vtkAbstractTransform * vtkCylindricalTransform::MakeTransform ( )
overridevirtual

Make another transform of the same type.

Implements vtkAbstractTransform.

◆ InternalDeepCopy()

void vtkCylindricalTransform::InternalDeepCopy ( vtkAbstractTransform transform)
overrideprotectedvirtual

Copy this transform from another of the same type.

Reimplemented from vtkAbstractTransform.

◆ ForwardTransformPoint() [1/2]

void vtkCylindricalTransform::ForwardTransformPoint ( const float  in[3],
float  out[3] 
)
overrideprotectedvirtual

Internal functions for calculating the transformation.

Implements vtkWarpTransform.

◆ ForwardTransformPoint() [2/2]

void vtkCylindricalTransform::ForwardTransformPoint ( const double  in[3],
double  out[3] 
)
overrideprotectedvirtual

Internal functions for calculating the transformation.

Implements vtkWarpTransform.

◆ ForwardTransformDerivative() [1/2]

void vtkCylindricalTransform::ForwardTransformDerivative ( const float  in[3],
float  out[3],
float  derivative[3][3] 
)
overrideprotectedvirtual

Calculate the forward transform as well as the derivative.

Implements vtkWarpTransform.

◆ ForwardTransformDerivative() [2/2]

void vtkCylindricalTransform::ForwardTransformDerivative ( const double  in[3],
double  out[3],
double  derivative[3][3] 
)
overrideprotectedvirtual

Calculate the forward transform as well as the derivative.

Implements vtkWarpTransform.

◆ InverseTransformPoint() [1/2]

void vtkCylindricalTransform::InverseTransformPoint ( const float  in[3],
float  out[3] 
)
overrideprotectedvirtual

If the InverseFlag is set to 1, then a call to InternalTransformPoint results in a call to InverseTransformPoint.

The inverse transformation is calculated from using Newton's method.

Reimplemented from vtkWarpTransform.

◆ InverseTransformPoint() [2/2]

void vtkCylindricalTransform::InverseTransformPoint ( const double  in[3],
double  out[3] 
)
overrideprotectedvirtual

If the InverseFlag is set to 1, then a call to InternalTransformPoint results in a call to InverseTransformPoint.

The inverse transformation is calculated from using Newton's method.

Reimplemented from vtkWarpTransform.

◆ InverseTransformDerivative() [1/2]

void vtkCylindricalTransform::InverseTransformDerivative ( const float  in[3],
float  out[3],
float  derivative[3][3] 
)
overrideprotectedvirtual

Calculate the inverse transform as well as the derivative of the forward transform (that's correct: the derivative of the forward transform, not of the inverse transform)

Reimplemented from vtkWarpTransform.

◆ InverseTransformDerivative() [2/2]

void vtkCylindricalTransform::InverseTransformDerivative ( const double  in[3],
double  out[3],
double  derivative[3][3] 
)
overrideprotectedvirtual

Calculate the inverse transform as well as the derivative of the forward transform (that's correct: the derivative of the forward transform, not of the inverse transform)

Reimplemented from vtkWarpTransform.


The documentation for this class was generated from the following file: