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Digital elevation files are produced by the US Geological Survey. A complete description of the DEM file is located at the USGS site. The reader reads the entire dem file and create a vtkImageData that contains a single scalar component that is the elevation in meters. The spacing is also expressed in meters. A number of get methods provide access to fields on the header. V.IsTypeOf(string) -> int C++: static vtkTypeBool IsTypeOf(const char *type) Return 1 if this class type 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. V.IsA(string) -> int C++: vtkTypeBool IsA(const char *type) override; 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. V.SafeDownCast(vtkObjectBase) -> vtkDEMReader C++: static vtkDEMReader *SafeDownCast(vtkObjectBase *o) V.NewInstance() -> vtkDEMReader C++: vtkDEMReader *NewInstance() V.SetFileName(string) C++: virtual void SetFileName(const char *_arg) Specify file name of Digital Elevation Model (DEM) file V.GetFileName() -> string C++: virtual char *GetFileName() Specify file name of Digital Elevation Model (DEM) file V.SetElevationReference(int) C++: virtual void SetElevationReference(int _arg) Specify the elevation origin to use. By default, the elevation origin is equal to ElevationBounds[0]. A more convenient origin is to use sea level (i.e., a value of 0.0). V.GetElevationReferenceMinValue() -> int C++: virtual int GetElevationReferenceMinValue() Specify the elevation origin to use. By default, the elevation origin is equal to ElevationBounds[0]. A more convenient origin is to use sea level (i.e., a value of 0.0). V.GetElevationReferenceMaxValue() -> int C++: virtual int GetElevationReferenceMaxValue() Specify the elevation origin to use. By default, the elevation origin is equal to ElevationBounds[0]. A more convenient origin is to use sea level (i.e., a value of 0.0). V.GetElevationReference() -> int C++: virtual int GetElevationReference() Specify the elevation origin to use. By default, the elevation origin is equal to ElevationBounds[0]. A more convenient origin is to use sea level (i.e., a value of 0.0). V.SetElevationReferenceToSeaLevel() C++: void SetElevationReferenceToSeaLevel() Specify the elevation origin to use. By default, the elevation origin is equal to ElevationBounds[0]. A more convenient origin is to use sea level (i.e., a value of 0.0). V.SetElevationReferenceToElevationBounds() C++: void SetElevationReferenceToElevationBounds() Specify the elevation origin to use. By default, the elevation origin is equal to ElevationBounds[0]. A more convenient origin is to use sea level (i.e., a value of 0.0). V.GetElevationReferenceAsString() -> string C++: const char *GetElevationReferenceAsString(void) Specify the elevation origin to use. By default, the elevation origin is equal to ElevationBounds[0]. A more convenient origin is to use sea level (i.e., a value of 0.0). V.GetMapLabel() -> string C++: virtual char *GetMapLabel() An ASCII description of the map V.GetDEMLevel() -> int C++: virtual int GetDEMLevel() Code 1=DEM-1, 2=DEM_2, ... V.GetElevationPattern() -> int C++: virtual int GetElevationPattern() Code 1=regular, 2=random, reserved for future use V.GetGroundSystem() -> int C++: virtual int GetGroundSystem() Ground planimetric reference system V.GetGroundZone() -> int C++: virtual int GetGroundZone() Zone in ground planimetric reference system V.GetProjectionParameters() -> (float, float, float, float, float, float, float, float, float, float, float, float, float, float, float) C++: float *GetProjectionParameters() Map Projection parameters. All are zero. V.GetPlaneUnitOfMeasure() -> int C++: virtual int GetPlaneUnitOfMeasure() Defining unit of measure for ground planimetric coordinates throughout the file. 0 = radians, 1 = feet, 2 = meters, 3 = arc-seconds. V.GetElevationUnitOfMeasure() -> int C++: virtual int GetElevationUnitOfMeasure() Defining unit of measure for elevation coordinates throughout the file. 1 = feet, 2 = meters V.GetPolygonSize() -> int C++: virtual int GetPolygonSize() Number of sides in the polygon which defines the coverage of the DEM file. Set to 4. V.GetElevationBounds() -> (float, float) C++: float *GetElevationBounds() Minimum and maximum elevation for the DEM. The units in the file are in ElevationUnitOfMeasure. This class converts them to meters. V.GetLocalRotation() -> float C++: virtual float GetLocalRotation() Counterclockwise angle (in radians) from the primary axis of the planimetric reference to the primary axis of the DEM local reference system. IGNORED BY THIS IMPLEMENTATION. V.GetAccuracyCode() -> int C++: virtual int GetAccuracyCode() Accuracy code for elevations. 0=unknown accuracy V.GetSpatialResolution() -> (float, float, float) C++: float *GetSpatialResolution() DEM spatial resolution for x,y,z. Values are expressed in units of resolution. Since elevations are read as integers, this permits fractional elevations. V.GetProfileDimension() -> (int, int) C++: int *GetProfileDimension() The number of rows and columns in the DEM. HHHDGCC: (Ubuntu 11.4.0-1ubuntu1~22.04) 11.4.0GNUzRx  01DX l            4 H \ p    4FBD Y BBO ^BB EDPa AE bEY B }(<EAD`n AAF 0hFAA D`  AABH ED@ AG ED@ AG ED@ AG ED@ AG ,ED@ AG PED@ AG tED@ AG ED@ AG ED@ AG ED@ AG ED@ AG (ED@ AG LED@ AG pED@ AG ED@ AG ED@ AG (FADP ABC (=FADP ABG (45FADP ABG `H@ I |H@ I lEDP AG gFD@ EE 8^FBA A(Dp (A ABBD 8FPO U BBB r BBJ 0XOFDD n ABA DDB !"#$%&'()*+,- .02 4Mvp`IP}@0  L z   JpzP0=HP56tl1g]p^;=77;=22 22(33321 252S2q2"2(2.242:2@2F2L2 R26X2E^2Ud2ij2yp2v2|66(222226H" "1"+" ^" " "! "" "# "$ <"% i"& "' "( ")  "* 5 "+ Z ", "-  ". 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