VTK  9.4.20241203
Public Types | Public Member Functions | Static Public Member Functions | Protected Member Functions | Protected Attributes | List of all members
vtkSegYReader Class Reference

Reads SegY data files. More...

#include <vtkSegYReader.h>

Inheritance diagram for vtkSegYReader:
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Collaboration diagram for vtkSegYReader:
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Public Types

enum  VTKSegYCoordinateModes { VTK_SEGY_SOURCE = 0 , VTK_SEGY_CDP = 1 , VTK_SEGY_CUSTOM = 2 }
 
enum  VTKSegYVerticalCRS { VTK_SEGY_VERTICAL_HEIGHTS = 0 , VTK_SEGY_VERTICAL_DEPTHS }
 
typedef vtkDataSetAlgorithm Superclass
 
- Public Types inherited from vtkDataSetAlgorithm
typedef vtkAlgorithm Superclass
 
- Public Types inherited from vtkAlgorithm
enum  DesiredOutputPrecision { SINGLE_PRECISION , DOUBLE_PRECISION , DEFAULT_PRECISION }
 Values used for setting the desired output precision for various algorithms. More...
 
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.
 
vtkSegYReaderNewInstance () const
 
void PrintSelf (ostream &os, vtkIndent indent) override
 Methods invoked by print to print information about the object including superclasses.
 
 vtkSegYReader ()
 
 ~vtkSegYReader () override
 
 vtkSetFilePathMacro (FileName)
 
 vtkGetFilePathMacro (FileName)
 
virtual void SetXYCoordMode (int)
 Specify whether to use source x/y coordinates or CDP coordinates or custom byte positions for data position in the SEG-Y trace header.
 
virtual int GetXYCoordMode ()
 Specify whether to use source x/y coordinates or CDP coordinates or custom byte positions for data position in the SEG-Y trace header.
 
void SetXYCoordModeToSource ()
 Specify whether to use source x/y coordinates or CDP coordinates or custom byte positions for data position in the SEG-Y trace header.
 
void SetXYCoordModeToCDP ()
 Specify whether to use source x/y coordinates or CDP coordinates or custom byte positions for data position in the SEG-Y trace header.
 
void SetXYCoordModeToCustom ()
 Specify whether to use source x/y coordinates or CDP coordinates or custom byte positions for data position in the SEG-Y trace header.
 
virtual void SetXCoordByte (int)
 Specify X and Y byte positions for custom XYCoordinateMode.
 
virtual int GetXCoordByte ()
 Specify X and Y byte positions for custom XYCoordinateMode.
 
virtual void SetYCoordByte (int)
 Specify X and Y byte positions for custom XYCoordinateMode.
 
virtual int GetYCoordByte ()
 Specify X and Y byte positions for custom XYCoordinateMode.
 
virtual void SetVerticalCRS (int)
 Specify whether the vertical coordinates in the SEG-Y file are heights (positive up) or depths (positive down).
 
virtual int GetVerticalCRS ()
 Specify whether the vertical coordinates in the SEG-Y file are heights (positive up) or depths (positive down).
 
virtual void SetStructuredGrid (int)
 Specify if we create a vtkStructuredGrid even when the data is 3D.
 
virtual int GetStructuredGrid ()
 Specify if we create a vtkStructuredGrid even when the data is 3D.
 
virtual void StructuredGridOn ()
 Specify if we create a vtkStructuredGrid even when the data is 3D.
 
virtual void StructuredGridOff ()
 Specify if we create a vtkStructuredGrid even when the data is 3D.
 
virtual void SetForce2D (bool)
 Should we force the data to be interpreted as a 2D dataset? It may be a 2D sheet through 3D space.
 
virtual bool GetForce2D ()
 Should we force the data to be interpreted as a 2D dataset? It may be a 2D sheet through 3D space.
 
virtual void Force2DOn ()
 Should we force the data to be interpreted as a 2D dataset? It may be a 2D sheet through 3D space.
 
virtual void Force2DOff ()
 Should we force the data to be interpreted as a 2D dataset? It may be a 2D sheet through 3D space.
 
- Public Member Functions inherited from vtkDataSetAlgorithm
virtual vtkTypeBool IsA (const char *type)
 Return 1 if this class is the same type of (or a subclass of) the named class.
 
vtkDataSetAlgorithmNewInstance () const
 
void PrintSelf (ostream &os, vtkIndent indent) override
 Methods invoked by print to print information about the object including superclasses.
 
vtkDataObjectGetInput ()
 Get the input data object.
 
vtkPolyDataGetPolyDataOutput ()
 Get the output as vtkPolyData.
 
vtkStructuredPointsGetStructuredPointsOutput ()
 Get the output as vtkStructuredPoints.
 
vtkImageDataGetImageDataOutput ()
 Get the output as vtkStructuredPoints.
 
vtkStructuredGridGetStructuredGridOutput ()
 Get the output as vtkStructuredGrid.
 
vtkUnstructuredGridGetUnstructuredGridOutput ()
 Get the output as vtkUnstructuredGrid.
 
vtkRectilinearGridGetRectilinearGridOutput ()
 Get the output as vtkRectilinearGrid.
 
vtkTypeBool ProcessRequest (vtkInformation *request, vtkInformationVector **inputVector, vtkInformationVector *outputVector) override
 see vtkAlgorithm for details
 
vtkDataSetGetOutput ()
 Get the output data object for a port on this algorithm.
 
vtkDataSetGetOutput (int)
 Get the output data object for a port on this algorithm.
 
void SetInputData (vtkDataObject *)
 Assign a data object as input.
 
void SetInputData (int, vtkDataObject *)
 Assign a data object as input.
 
void SetInputData (vtkDataSet *)
 Assign a data object as input.
 
void SetInputData (int, vtkDataSet *)
 Assign a data object as input.
 
void AddInputData (vtkDataObject *)
 Assign a data object as input.
 
void AddInputData (vtkDataSet *)
 Assign a data object as input.
 
void AddInputData (int, vtkDataSet *)
 Assign a data object as input.
 
void AddInputData (int, vtkDataObject *)
 Assign a data object as input.
 
- Public Member Functions inherited from vtkAlgorithm
virtual vtkTypeBool IsA (const char *type)
 Return 1 if this class is the same type of (or a subclass of) the named class.
 
vtkAlgorithmNewInstance () const
 
void PrintSelf (ostream &os, vtkIndent indent) override
 Methods invoked by print to print information about the object including superclasses.
 
vtkTypeBool HasExecutive ()
 Check whether this algorithm has an assigned executive.
 
vtkExecutiveGetExecutive ()
 Get this algorithm's executive.
 
virtual void SetExecutive (vtkExecutive *executive)
 Set this algorithm's executive.
 
virtual vtkTypeBool ProcessRequest (vtkInformation *request, vtkInformationVector **inInfo, vtkInformationVector *outInfo)
 Upstream/Downstream requests form the generalized interface through which executives invoke a algorithm's functionality.
 
vtkTypeBool ProcessRequest (vtkInformation *request, vtkCollection *inInfo, vtkInformationVector *outInfo)
 Version of ProcessRequest() that is wrapped.
 
virtual int ComputePipelineMTime (vtkInformation *request, vtkInformationVector **inInfoVec, vtkInformationVector *outInfoVec, int requestFromOutputPort, vtkMTimeType *mtime)
 A special version of ProcessRequest meant specifically for the pipeline modified time request.
 
virtual int ModifyRequest (vtkInformation *request, int when)
 This method gives the algorithm a chance to modify the contents of a request before or after (specified in the when argument) it is forwarded.
 
vtkInformationGetInputPortInformation (int port)
 Get the information object associated with an input port.
 
vtkInformationGetOutputPortInformation (int port)
 Get the information object associated with an output port.
 
int GetNumberOfInputPorts ()
 Get the number of input ports used by the algorithm.
 
int GetNumberOfOutputPorts ()
 Get the number of output ports provided by the algorithm.
 
void SetAbortExecuteAndUpdateTime ()
 Set AbortExecute Flag and update LastAbortTime.
 
void UpdateProgress (double amount)
 Update the progress of the process object.
 
bool CheckAbort ()
 Checks to see if this filter should abort.
 
virtual void SetInputArrayToProcess (int idx, int port, int connection, const char *fieldAssociation, const char *attributeTypeorName)
 String based versions of SetInputArrayToProcess().
 
vtkInformationGetInputArrayInformation (int idx)
 Get the info object for the specified input array to this algorithm.
 
void RemoveAllInputs ()
 Remove all the input data.
 
vtkDataObjectGetOutputDataObject (int port)
 Get the data object that will contain the algorithm output for the given port.
 
vtkDataObjectGetInputDataObject (int port, int connection)
 Get the data object that will contain the algorithm input for the given port and given connection.
 
virtual void RemoveInputConnection (int port, vtkAlgorithmOutput *input)
 Remove a connection from the given input port index.
 
virtual void RemoveInputConnection (int port, int idx)
 Remove a connection given by index idx.
 
virtual void RemoveAllInputConnections (int port)
 Removes all input connections.
 
virtual void SetInputDataObject (int port, vtkDataObject *data)
 Sets the data-object as an input on the given port index.
 
virtual void SetInputDataObject (vtkDataObject *data)
 
virtual void AddInputDataObject (int port, vtkDataObject *data)
 Add the data-object as an input to this given port.
 
virtual void AddInputDataObject (vtkDataObject *data)
 
vtkAlgorithmOutputGetOutputPort (int index)
 Get a proxy object corresponding to the given output port of this algorithm.
 
vtkAlgorithmOutputGetOutputPort ()
 
int GetNumberOfInputConnections (int port)
 Get the number of inputs currently connected to a port.
 
int GetTotalNumberOfInputConnections ()
 Get the total number of inputs for this algorithm.
 
vtkAlgorithmOutputGetInputConnection (int port, int index)
 Get the algorithm output port connected to an input port.
 
vtkAlgorithmGetInputAlgorithm (int port, int index, int &algPort)
 Returns the algorithm and the output port index of that algorithm connected to a port-index pair.
 
vtkAlgorithmGetInputAlgorithm (int port, int index)
 Returns the algorithm connected to a port-index pair.
 
vtkAlgorithmGetInputAlgorithm ()
 Equivalent to GetInputAlgorithm(0, 0).
 
vtkExecutiveGetInputExecutive (int port, int index)
 Returns the executive associated with a particular input connection.
 
vtkExecutiveGetInputExecutive ()
 Equivalent to GetInputExecutive(0, 0)
 
vtkInformationGetInputInformation (int port, int index)
 Return the information object that is associated with a particular input connection.
 
vtkInformationGetInputInformation ()
 Equivalent to GetInputInformation(0, 0)
 
vtkInformationGetOutputInformation (int port)
 Return the information object that is associated with a particular output port.
 
virtual vtkTypeBool Update (int port, vtkInformationVector *requests)
 This method enables the passing of data requests to the algorithm to be used during execution (in addition to bringing a particular port up-to-date).
 
virtual vtkTypeBool Update (vtkInformation *requests)
 Convenience method to update an algorithm after passing requests to its first output port.
 
virtual int UpdatePiece (int piece, int numPieces, int ghostLevels, const int extents[6]=nullptr)
 Convenience method to update an algorithm after passing requests to its first output port.
 
virtual VTK_UNBLOCKTHREADS int UpdateExtent (const int extents[6])
 Convenience method to update an algorithm after passing requests to its first output port.
 
virtual VTK_UNBLOCKTHREADS int UpdateTimeStep (double time, int piece=-1, int numPieces=1, int ghostLevels=0, const int extents[6]=nullptr)
 Convenience method to update an algorithm after passing requests to its first output port.
 
virtual VTK_UNBLOCKTHREADS void UpdateInformation ()
 Bring the algorithm's information up-to-date.
 
virtual void UpdateDataObject ()
 Create output object(s).
 
virtual void PropagateUpdateExtent ()
 Propagate meta-data upstream.
 
virtual VTK_UNBLOCKTHREADS void UpdateWholeExtent ()
 Bring this algorithm's outputs up-to-date.
 
void ConvertTotalInputToPortConnection (int ind, int &port, int &conn)
 Convenience routine to convert from a linear ordering of input connections to a port/connection pair.
 
void RemoveNoPriorTemporalAccessInformationKey ()
 Removes any information key vtkStreamingDemandDrivenPipeline::NO_PRIOR_TEMPORAL_ACCESS() to all output ports of this vtkAlgorithm.
 
virtual vtkInformationGetInformation ()
 Set/Get the information object associated with this algorithm.
 
virtual void SetInformation (vtkInformation *)
 Set/Get the information object associated with this algorithm.
 
bool UsesGarbageCollector () const override
 Participate in garbage collection.
 
virtual void SetAbortExecute (vtkTypeBool)
 Set/Get the AbortExecute flag for the process object.
 
virtual vtkTypeBool GetAbortExecute ()
 Set/Get the AbortExecute flag for the process object.
 
virtual void AbortExecuteOn ()
 Set/Get the AbortExecute flag for the process object.
 
virtual void AbortExecuteOff ()
 Set/Get the AbortExecute flag for the process object.
 
virtual double GetProgress ()
 Get the execution progress of a process object.
 
void SetContainerAlgorithm (vtkAlgorithm *containerAlg)
 Set/get a Container algorithm for this algorithm.
 
vtkAlgorithmGetContainerAlgorithm ()
 Set/get a Container algorithm for this algorithm.
 
virtual void SetAbortOutput (bool)
 Set/Get an internal variable used to communicate between the algorithm and executive.
 
virtual bool GetAbortOutput ()
 Set/Get an internal variable used to communicate between the algorithm and executive.
 
void SetProgressShiftScale (double shift, double scale)
 Specify the shift and scale values to use to apply to the progress amount when UpdateProgress is called.
 
virtual double GetProgressShift ()
 Specify the shift and scale values to use to apply to the progress amount when UpdateProgress is called.
 
virtual double GetProgressScale ()
 Specify the shift and scale values to use to apply to the progress amount when UpdateProgress is called.
 
void SetProgressText (const char *ptext)
 Set the current text message associated with the progress state.
 
virtual char * GetProgressText ()
 Set the current text message associated with the progress state.
 
virtual unsigned long GetErrorCode ()
 The error code contains a possible error that occurred while reading or writing the file.
 
virtual void SetInputArrayToProcess (int idx, int port, int connection, int fieldAssociation, const char *name)
 Set the input data arrays that this algorithm will process.
 
virtual void SetInputArrayToProcess (int idx, int port, int connection, int fieldAssociation, int fieldAttributeType)
 Set the input data arrays that this algorithm will process.
 
virtual void SetInputArrayToProcess (int idx, vtkInformation *info)
 Set the input data arrays that this algorithm will process.
 
virtual void SetInputConnection (int port, vtkAlgorithmOutput *input)
 Set the connection for the given input port index.
 
virtual void SetInputConnection (vtkAlgorithmOutput *input)
 Set the connection for the given input port index.
 
virtual void AddInputConnection (int port, vtkAlgorithmOutput *input)
 Add a connection to the given input port index.
 
virtual void AddInputConnection (vtkAlgorithmOutput *input)
 Add a connection to the given input port index.
 
virtual VTK_UNBLOCKTHREADS void Update (int port)
 Bring this algorithm's outputs up-to-date.
 
virtual VTK_UNBLOCKTHREADS void Update ()
 Bring this algorithm's outputs up-to-date.
 
virtual void SetReleaseDataFlag (vtkTypeBool)
 Turn release data flag on or off for all output ports.
 
virtual vtkTypeBool GetReleaseDataFlag ()
 Turn release data flag on or off for all output ports.
 
void ReleaseDataFlagOn ()
 Turn release data flag on or off for all output ports.
 
void ReleaseDataFlagOff ()
 Turn release data flag on or off for all output ports.
 
int UpdateExtentIsEmpty (vtkInformation *pinfo, vtkDataObject *output)
 This detects when the UpdateExtent will generate no data This condition is satisfied when the UpdateExtent has zero volume (0,-1,...) or the UpdateNumberOfPieces is 0.
 
int UpdateExtentIsEmpty (vtkInformation *pinfo, int extentType)
 This detects when the UpdateExtent will generate no data This condition is satisfied when the UpdateExtent has zero volume (0,-1,...) or the UpdateNumberOfPieces is 0.
 
int * GetUpdateExtent ()
 These functions return the update extent for output ports that use 3D extents.
 
int * GetUpdateExtent (int port)
 These functions return the update extent for output ports that use 3D extents.
 
void GetUpdateExtent (int &x0, int &x1, int &y0, int &y1, int &z0, int &z1)
 These functions return the update extent for output ports that use 3D extents.
 
void GetUpdateExtent (int port, int &x0, int &x1, int &y0, int &y1, int &z0, int &z1)
 These functions return the update extent for output ports that use 3D extents.
 
void GetUpdateExtent (int extent[6])
 These functions return the update extent for output ports that use 3D extents.
 
void GetUpdateExtent (int port, int extent[6])
 These functions return the update extent for output ports that use 3D extents.
 
int GetUpdatePiece ()
 These functions return the update extent for output ports that use piece extents.
 
int GetUpdatePiece (int port)
 These functions return the update extent for output ports that use piece extents.
 
int GetUpdateNumberOfPieces ()
 These functions return the update extent for output ports that use piece extents.
 
int GetUpdateNumberOfPieces (int port)
 These functions return the update extent for output ports that use piece extents.
 
int GetUpdateGhostLevel ()
 These functions return the update extent for output ports that use piece extents.
 
int GetUpdateGhostLevel (int port)
 These functions return the update extent for output ports that use piece extents.
 
void SetProgressObserver (vtkProgressObserver *)
 If an ProgressObserver is set, the algorithm will report progress through it rather than directly.
 
virtual vtkProgressObserverGetProgressObserver ()
 If an ProgressObserver is set, the algorithm will report progress through it rather than directly.
 
void SetNoPriorTemporalAccessInformationKey (int key)
 Set to all output ports of this algorithm the information key vtkStreamingDemandDrivenPipeline::NO_PRIOR_TEMPORAL_ACCESS().
 
void SetNoPriorTemporalAccessInformationKey ()
 Set to all output ports of this algorithm the information key vtkStreamingDemandDrivenPipeline::NO_PRIOR_TEMPORAL_ACCESS().
 
- 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)
 
vtkTypeBool InvokeEvent (unsigned long event)
 
vtkTypeBool InvokeEvent (const char *event)
 
std::string GetObjectDescription () const override
 The object description printed in messages and PrintSelf output.
 
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.
 
vtkTypeBool InvokeEvent (unsigned long event, void *callData)
 This method invokes an event and return whether the event was aborted or not.
 
vtkTypeBool InvokeEvent (const char *event, void *callData)
 This method invokes an event and return whether the event was aborted or not.
 
virtual void SetObjectName (const std::string &objectName)
 Set/get the name of this object for reporting purposes.
 
virtual std::string GetObjectName () const
 Set/get the name of this object for reporting purposes.
 
- Public Member Functions inherited from vtkObjectBase
const char * GetClassName () const
 Return the class name as a string.
 
virtual std::string GetObjectDescription () const
 The object description printed in messages and PrintSelf output.
 
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.
 
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 vtkSegYReaderNew ()
 
static vtkTypeBool IsTypeOf (const char *type)
 
static vtkSegYReaderSafeDownCast (vtkObjectBase *o)
 
- Static Public Member Functions inherited from vtkDataSetAlgorithm
static vtkDataSetAlgorithmNew ()
 
static vtkTypeBool IsTypeOf (const char *type)
 
static vtkDataSetAlgorithmSafeDownCast (vtkObjectBase *o)
 
- Static Public Member Functions inherited from vtkAlgorithm
static vtkAlgorithmNew ()
 
static vtkTypeBool IsTypeOf (const char *type)
 
static vtkAlgorithmSafeDownCast (vtkObjectBase *o)
 
static vtkInformationIntegerKeyINPUT_IS_OPTIONAL ()
 Keys used to specify input port requirements.
 
static vtkInformationIntegerKeyINPUT_IS_REPEATABLE ()
 
static vtkInformationInformationVectorKeyINPUT_REQUIRED_FIELDS ()
 
static vtkInformationStringVectorKeyINPUT_REQUIRED_DATA_TYPE ()
 
static vtkInformationInformationVectorKeyINPUT_ARRAYS_TO_PROCESS ()
 
static vtkInformationIntegerKeyINPUT_PORT ()
 
static vtkInformationIntegerKeyINPUT_CONNECTION ()
 
static vtkInformationIntegerKeyCAN_PRODUCE_SUB_EXTENT ()
 This key tells the executive that a particular output port is capable of producing an arbitrary subextent of the whole extent.
 
static vtkInformationIntegerKeyCAN_HANDLE_PIECE_REQUEST ()
 Key that tells the pipeline that a particular algorithm can or cannot handle piece request.
 
static vtkInformationIntegerKeyABORTED ()
 
static void SetDefaultExecutivePrototype (vtkExecutive *proto)
 If the DefaultExecutivePrototype is set, a copy of it is created in CreateDefaultExecutive() using NewInstance().
 
- 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 (vtkTypeBool 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 vtkTypeBool 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
 
int RequestData (vtkInformation *request, vtkInformationVector **inputVector, vtkInformationVector *outputVector) override
 This is called within ProcessRequest when a request asks the algorithm to do its work.
 
int RequestInformation (vtkInformation *request, vtkInformationVector **inputVector, vtkInformationVector *outputVector) override
 This is called within ProcessRequest when a request asks for Information.
 
int RequestDataObject (vtkInformation *request, vtkInformationVector **inputVector, vtkInformationVector *outputVector) override
 This is called within ProcessRequest when a request asks the algorithm to create empty output data objects.
 
- Protected Member Functions inherited from vtkDataSetAlgorithm
virtual vtkObjectBaseNewInstanceInternal () const
 
 vtkDataSetAlgorithm ()
 
 ~vtkDataSetAlgorithm () override=default
 
virtual int RequestDataObject (vtkInformation *request, vtkInformationVector **inputVector, vtkInformationVector *outputVector)
 This is called within ProcessRequest when a request asks the algorithm to create empty output data objects.
 
virtual int RequestInformation (vtkInformation *, vtkInformationVector **, vtkInformationVector *)
 This is called within ProcessRequest when a request asks for Information.
 
virtual int RequestUpdateExtent (vtkInformation *, vtkInformationVector **, vtkInformationVector *)
 This is called within ProcessRequest when each filter in the pipeline decides what portion of its input is needed to create the portion of its output that the downstream filter asks for.
 
virtual int RequestUpdateTime (vtkInformation *, vtkInformationVector **, vtkInformationVector *)
 
virtual int RequestData (vtkInformation *, vtkInformationVector **, vtkInformationVector *)
 This is called within ProcessRequest when a request asks the algorithm to do its work.
 
int FillOutputPortInformation (int port, vtkInformation *info) override
 Fill the output port information objects for this algorithm.
 
int FillInputPortInformation (int port, vtkInformation *info) override
 Fill the input port information objects for this algorithm.
 
vtkDataObjectGetInput (int port)
 
- Protected Member Functions inherited from vtkAlgorithm
virtual vtkObjectBaseNewInstanceInternal () const
 
 vtkAlgorithm ()
 
 ~vtkAlgorithm () override
 
bool CheckUpstreamAbort ()
 Checks to see if an upstream filter has been aborted.
 
virtual int FillInputPortInformation (int port, vtkInformation *info)
 Fill the input port information objects for this algorithm.
 
virtual int FillOutputPortInformation (int port, vtkInformation *info)
 Fill the output port information objects for this algorithm.
 
virtual void SetNumberOfInputPorts (int n)
 Set the number of input ports used by the algorithm.
 
virtual void SetNumberOfOutputPorts (int n)
 Set the number of output ports provided by the algorithm.
 
int InputPortIndexInRange (int index, const char *action)
 
int OutputPortIndexInRange (int index, const char *action)
 
int GetInputArrayAssociation (int idx, vtkInformationVector **inputVector)
 Get the association of the actual data array for the input array specified by idx, this is only reasonable during the REQUEST_DATA pass.
 
vtkInformationGetInputArrayFieldInformation (int idx, vtkInformationVector **inputVector)
 This method takes in an index (as specified in SetInputArrayToProcess) and a pipeline information vector.
 
virtual vtkExecutiveCreateDefaultExecutive ()
 Create a default executive.
 
void ReportReferences (vtkGarbageCollector *) override
 
virtual void SetNthInputConnection (int port, int index, vtkAlgorithmOutput *input)
 Replace the Nth connection on the given input port.
 
virtual void SetNumberOfInputConnections (int port, int n)
 Set the number of input connections on the given input port.
 
void SetInputDataInternal (int port, vtkDataObject *input)
 These methods are used by subclasses to implement methods to set data objects directly as input.
 
void AddInputDataInternal (int port, vtkDataObject *input)
 
int GetInputArrayAssociation (int idx, int connection, vtkInformationVector **inputVector)
 Filters that have multiple connections on one port can use this signature.
 
int GetInputArrayAssociation (int idx, vtkDataObject *input)
 Filters that have multiple connections on one port can use this signature.
 
vtkDataArrayGetInputArrayToProcess (int idx, vtkInformationVector **inputVector)
 Get the actual data array for the input array specified by idx, this is only reasonable during the REQUEST_DATA pass.
 
vtkDataArrayGetInputArrayToProcess (int idx, vtkInformationVector **inputVector, int &association)
 Get the actual data array for the input array specified by idx, this is only reasonable during the REQUEST_DATA pass.
 
vtkDataArrayGetInputArrayToProcess (int idx, int connection, vtkInformationVector **inputVector)
 Filters that have multiple connections on one port can use this signature.
 
vtkDataArrayGetInputArrayToProcess (int idx, int connection, vtkInformationVector **inputVector, int &association)
 Filters that have multiple connections on one port can use this signature.
 
vtkDataArrayGetInputArrayToProcess (int idx, vtkDataObject *input)
 Filters that have multiple connections on one port can use this signature.
 
vtkDataArrayGetInputArrayToProcess (int idx, vtkDataObject *input, int &association)
 Filters that have multiple connections on one port can use this signature.
 
vtkAbstractArrayGetInputAbstractArrayToProcess (int idx, vtkInformationVector **inputVector)
 Get the actual data array for the input array specified by idx, this is only reasonable during the REQUEST_DATA pass.
 
vtkAbstractArrayGetInputAbstractArrayToProcess (int idx, vtkInformationVector **inputVector, int &association)
 Get the actual data array for the input array specified by idx, this is only reasonable during the REQUEST_DATA pass.
 
vtkAbstractArrayGetInputAbstractArrayToProcess (int idx, int connection, vtkInformationVector **inputVector)
 Filters that have multiple connections on one port can use this signature.
 
vtkAbstractArrayGetInputAbstractArrayToProcess (int idx, int connection, vtkInformationVector **inputVector, int &association)
 Filters that have multiple connections on one port can use this signature.
 
vtkAbstractArrayGetInputAbstractArrayToProcess (int idx, vtkDataObject *input)
 Filters that have multiple connections on one port can use this signature.
 
vtkAbstractArrayGetInputAbstractArrayToProcess (int idx, vtkDataObject *input, int &association)
 Filters that have multiple connections on one port can use this signature.
 
virtual void SetErrorCode (unsigned long)
 The error code contains a possible error that occurred while reading or writing the file.
 
- 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 *)
 
virtual void ObjectFinalize ()
 
 vtkObjectBase (const vtkObjectBase &)
 
void operator= (const vtkObjectBase &)
 

Protected Attributes

vtkSegYReaderInternalReader
 
char * FileName
 
bool Is3D
 
double DataOrigin [3]
 
double DataSpacing [3][3]
 
int DataSpacingSign [3]
 
int DataExtent [6]
 
int XYCoordMode
 
int StructuredGrid
 
int XCoordByte
 
int YCoordByte
 
int VerticalCRS
 
bool Force2D
 
- Protected Attributes inherited from vtkAlgorithm
vtkTimeStamp LastAbortCheckTime
 
vtkInformationInformation
 
double Progress
 
char * ProgressText
 
vtkProgressObserverProgressObserver
 
unsigned long ErrorCode
 The error code contains a possible error that occurred while reading or writing the file.
 
- Protected Attributes inherited from vtkObject
bool Debug
 
vtkTimeStamp MTime
 
vtkSubjectHelper * SubjectHelper
 
std::string ObjectName
 
- Protected Attributes inherited from vtkObjectBase
std::atomic< int32_t > ReferenceCount
 
vtkWeakPointerBase ** WeakPointers
 

Additional Inherited Members

- Public Attributes inherited from vtkAlgorithm
std::atomic< vtkTypeBoolAbortExecute
 
- Static Protected Member Functions inherited from vtkAlgorithm
static vtkInformationIntegerKeyPORT_REQUIREMENTS_FILLED ()
 
- Static Protected Member Functions inherited from vtkObjectBase
static vtkMallocingFunction GetCurrentMallocFunction ()
 
static vtkReallocingFunction GetCurrentReallocFunction ()
 
static vtkFreeingFunction GetCurrentFreeFunction ()
 
static vtkFreeingFunction GetAlternateFreeFunction ()
 
- Static Protected Attributes inherited from vtkAlgorithm
static vtkTimeStamp LastAbortTime
 
static vtkExecutiveDefaultExecutivePrototype
 

Detailed Description

Reads SegY data files.

vtkSegYReader reads SegY data files. We create a vtkStructuredGrid for 2.5D SegY and 3D data. If we set the StructuredGrid option to 0 we create a vtkImageData for 3D data. This saves memory and may speed-up certain algorithms, but the position and the shape of the data may not be correct. The axes for the data are: crossline, inline, depth. For situations where traces are missing values of zero are used to fill in the dataset.

Tests:
vtkSegYReader (Tests)

Definition at line 31 of file vtkSegYReader.h.

Member Typedef Documentation

◆ Superclass

Definition at line 35 of file vtkSegYReader.h.

Member Enumeration Documentation

◆ VTKSegYCoordinateModes

Enumerator
VTK_SEGY_SOURCE 
VTK_SEGY_CDP 
VTK_SEGY_CUSTOM 

Definition at line 43 of file vtkSegYReader.h.

◆ VTKSegYVerticalCRS

Enumerator
VTK_SEGY_VERTICAL_HEIGHTS 
VTK_SEGY_VERTICAL_DEPTHS 

Definition at line 80 of file vtkSegYReader.h.

Constructor & Destructor Documentation

◆ vtkSegYReader()

vtkSegYReader::vtkSegYReader ( )

◆ ~vtkSegYReader()

vtkSegYReader::~vtkSegYReader ( )
override

Member Function Documentation

◆ New()

static vtkSegYReader * vtkSegYReader::New ( )
static

◆ IsTypeOf()

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

◆ IsA()

virtual vtkTypeBool vtkSegYReader::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 vtkDataSetAlgorithm.

◆ SafeDownCast()

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

◆ NewInstanceInternal()

virtual vtkObjectBase * vtkSegYReader::NewInstanceInternal ( ) const
protectedvirtual

Reimplemented from vtkDataSetAlgorithm.

◆ NewInstance()

vtkSegYReader * vtkSegYReader::NewInstance ( ) const

◆ PrintSelf()

void vtkSegYReader::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 vtkDataSetAlgorithm.

◆ vtkSetFilePathMacro()

vtkSegYReader::vtkSetFilePathMacro ( FileName  )

◆ vtkGetFilePathMacro()

vtkSegYReader::vtkGetFilePathMacro ( FileName  )

◆ SetXYCoordMode()

virtual void vtkSegYReader::SetXYCoordMode ( int  )
virtual

Specify whether to use source x/y coordinates or CDP coordinates or custom byte positions for data position in the SEG-Y trace header.

Defaults to source x/y coordinates.

As per SEG-Y rev 2.0 specification, Source XY coordinate bytes = (73, 77) CDP XY coordinate bytes = (181, 185)

◆ GetXYCoordMode()

virtual int vtkSegYReader::GetXYCoordMode ( )
virtual

Specify whether to use source x/y coordinates or CDP coordinates or custom byte positions for data position in the SEG-Y trace header.

Defaults to source x/y coordinates.

As per SEG-Y rev 2.0 specification, Source XY coordinate bytes = (73, 77) CDP XY coordinate bytes = (181, 185)

◆ SetXYCoordModeToSource()

void vtkSegYReader::SetXYCoordModeToSource ( )

Specify whether to use source x/y coordinates or CDP coordinates or custom byte positions for data position in the SEG-Y trace header.

Defaults to source x/y coordinates.

As per SEG-Y rev 2.0 specification, Source XY coordinate bytes = (73, 77) CDP XY coordinate bytes = (181, 185)

◆ SetXYCoordModeToCDP()

void vtkSegYReader::SetXYCoordModeToCDP ( )

Specify whether to use source x/y coordinates or CDP coordinates or custom byte positions for data position in the SEG-Y trace header.

Defaults to source x/y coordinates.

As per SEG-Y rev 2.0 specification, Source XY coordinate bytes = (73, 77) CDP XY coordinate bytes = (181, 185)

◆ SetXYCoordModeToCustom()

void vtkSegYReader::SetXYCoordModeToCustom ( )

Specify whether to use source x/y coordinates or CDP coordinates or custom byte positions for data position in the SEG-Y trace header.

Defaults to source x/y coordinates.

As per SEG-Y rev 2.0 specification, Source XY coordinate bytes = (73, 77) CDP XY coordinate bytes = (181, 185)

◆ SetXCoordByte()

virtual void vtkSegYReader::SetXCoordByte ( int  )
virtual

Specify X and Y byte positions for custom XYCoordinateMode.

By default, XCoordByte = 73, YCoordByte = 77 i.e. source xy.

See also
SetXYCoordinatesModeToCustom()

◆ GetXCoordByte()

virtual int vtkSegYReader::GetXCoordByte ( )
virtual

Specify X and Y byte positions for custom XYCoordinateMode.

By default, XCoordByte = 73, YCoordByte = 77 i.e. source xy.

See also
SetXYCoordinatesModeToCustom()

◆ SetYCoordByte()

virtual void vtkSegYReader::SetYCoordByte ( int  )
virtual

Specify X and Y byte positions for custom XYCoordinateMode.

By default, XCoordByte = 73, YCoordByte = 77 i.e. source xy.

See also
SetXYCoordinatesModeToCustom()

◆ GetYCoordByte()

virtual int vtkSegYReader::GetYCoordByte ( )
virtual

Specify X and Y byte positions for custom XYCoordinateMode.

By default, XCoordByte = 73, YCoordByte = 77 i.e. source xy.

See also
SetXYCoordinatesModeToCustom()

◆ SetVerticalCRS()

virtual void vtkSegYReader::SetVerticalCRS ( int  )
virtual

Specify whether the vertical coordinates in the SEG-Y file are heights (positive up) or depths (positive down).

By default, the vertical coordinates are treated as heights (i.e. positive up). This means that the Z-axis of the dataset goes from 0 (surface) to -ve depth (last sample).

Note
As per the SEG-Y rev 2.0 specification, this information is defined in the Location Data Stanza of the Extended Textual Header. However, as of this revision, vtkSegY2DReader does not support reading the extended textual header.

◆ GetVerticalCRS()

virtual int vtkSegYReader::GetVerticalCRS ( )
virtual

Specify whether the vertical coordinates in the SEG-Y file are heights (positive up) or depths (positive down).

By default, the vertical coordinates are treated as heights (i.e. positive up). This means that the Z-axis of the dataset goes from 0 (surface) to -ve depth (last sample).

Note
As per the SEG-Y rev 2.0 specification, this information is defined in the Location Data Stanza of the Extended Textual Header. However, as of this revision, vtkSegY2DReader does not support reading the extended textual header.

◆ SetStructuredGrid()

virtual void vtkSegYReader::SetStructuredGrid ( int  )
virtual

Specify if we create a vtkStructuredGrid even when the data is 3D.

Note this consumes more memory but it shows the precise location for each point and the correct shape of the data. The default value is true. If we set this option to false we create a vtkImageData for the SegY 3D dataset.

◆ GetStructuredGrid()

virtual int vtkSegYReader::GetStructuredGrid ( )
virtual

Specify if we create a vtkStructuredGrid even when the data is 3D.

Note this consumes more memory but it shows the precise location for each point and the correct shape of the data. The default value is true. If we set this option to false we create a vtkImageData for the SegY 3D dataset.

◆ StructuredGridOn()

virtual void vtkSegYReader::StructuredGridOn ( )
virtual

Specify if we create a vtkStructuredGrid even when the data is 3D.

Note this consumes more memory but it shows the precise location for each point and the correct shape of the data. The default value is true. If we set this option to false we create a vtkImageData for the SegY 3D dataset.

◆ StructuredGridOff()

virtual void vtkSegYReader::StructuredGridOff ( )
virtual

Specify if we create a vtkStructuredGrid even when the data is 3D.

Note this consumes more memory but it shows the precise location for each point and the correct shape of the data. The default value is true. If we set this option to false we create a vtkImageData for the SegY 3D dataset.

◆ SetForce2D()

virtual void vtkSegYReader::SetForce2D ( bool  )
virtual

Should we force the data to be interpreted as a 2D dataset? It may be a 2D sheet through 3D space.

When this is turned on we ignore the cross line and line values and instead build a 2D data by processing and connecting the traces in order from first to last. The output will be a Structrured Grid.

◆ GetForce2D()

virtual bool vtkSegYReader::GetForce2D ( )
virtual

Should we force the data to be interpreted as a 2D dataset? It may be a 2D sheet through 3D space.

When this is turned on we ignore the cross line and line values and instead build a 2D data by processing and connecting the traces in order from first to last. The output will be a Structrured Grid.

◆ Force2DOn()

virtual void vtkSegYReader::Force2DOn ( )
virtual

Should we force the data to be interpreted as a 2D dataset? It may be a 2D sheet through 3D space.

When this is turned on we ignore the cross line and line values and instead build a 2D data by processing and connecting the traces in order from first to last. The output will be a Structrured Grid.

◆ Force2DOff()

virtual void vtkSegYReader::Force2DOff ( )
virtual

Should we force the data to be interpreted as a 2D dataset? It may be a 2D sheet through 3D space.

When this is turned on we ignore the cross line and line values and instead build a 2D data by processing and connecting the traces in order from first to last. The output will be a Structrured Grid.

◆ RequestData()

int vtkSegYReader::RequestData ( vtkInformation ,
vtkInformationVector **  ,
vtkInformationVector  
)
overrideprotectedvirtual

This is called within ProcessRequest when a request asks the algorithm to do its work.

This is the method you should override to do whatever the algorithm is designed to do. This happens during the final pass in the pipeline execution process.

Reimplemented from vtkDataSetAlgorithm.

◆ RequestInformation()

int vtkSegYReader::RequestInformation ( vtkInformation ,
vtkInformationVector **  ,
vtkInformationVector  
)
overrideprotectedvirtual

This is called within ProcessRequest when a request asks for Information.

Typically an algorithm provides whatever lightweight information about its output that it can here without doing any lengthy computations. This happens after the RequestDataObject pass of the pipeline execution process.

Reimplemented from vtkDataSetAlgorithm.

◆ RequestDataObject()

int vtkSegYReader::RequestDataObject ( vtkInformation request,
vtkInformationVector **  inputVector,
vtkInformationVector outputVector 
)
overrideprotectedvirtual

This is called within ProcessRequest when a request asks the algorithm to create empty output data objects.

This typically happens early on in the execution of the pipeline. The default behavior is to create an output DataSet of the same type as the input for each output port. This method can be overridden to change the output data type of an algorithm. This happens in the first pass of the pipeline execution process.

Reimplemented from vtkDataSetAlgorithm.

Member Data Documentation

◆ Reader

vtkSegYReaderInternal* vtkSegYReader::Reader
protected

Definition at line 136 of file vtkSegYReader.h.

◆ FileName

char* vtkSegYReader::FileName
protected

Definition at line 137 of file vtkSegYReader.h.

◆ Is3D

bool vtkSegYReader::Is3D
protected

Definition at line 138 of file vtkSegYReader.h.

◆ DataOrigin

double vtkSegYReader::DataOrigin[3]
protected

Definition at line 139 of file vtkSegYReader.h.

◆ DataSpacing

double vtkSegYReader::DataSpacing[3][3]
protected

Definition at line 140 of file vtkSegYReader.h.

◆ DataSpacingSign

int vtkSegYReader::DataSpacingSign[3]
protected

Definition at line 141 of file vtkSegYReader.h.

◆ DataExtent

int vtkSegYReader::DataExtent[6]
protected

Definition at line 142 of file vtkSegYReader.h.

◆ XYCoordMode

int vtkSegYReader::XYCoordMode
protected

Definition at line 144 of file vtkSegYReader.h.

◆ StructuredGrid

int vtkSegYReader::StructuredGrid
protected

Definition at line 145 of file vtkSegYReader.h.

◆ XCoordByte

int vtkSegYReader::XCoordByte
protected

Definition at line 148 of file vtkSegYReader.h.

◆ YCoordByte

int vtkSegYReader::YCoordByte
protected

Definition at line 149 of file vtkSegYReader.h.

◆ VerticalCRS

int vtkSegYReader::VerticalCRS
protected

Definition at line 151 of file vtkSegYReader.h.

◆ Force2D

bool vtkSegYReader::Force2D
protected

Definition at line 153 of file vtkSegYReader.h.


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