QGIS API Documentation 4.0.0-Norrköping (1ddcee3d0e4)
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qgsterraindownloader.cpp
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1/***************************************************************************
2 qgsterraindownloader.cpp
3 --------------------------------------
4 Date : March 2019
5 Copyright : (C) 2019 by Martin Dobias
6 Email : wonder dot sk at gmail dot com
7 ***************************************************************************
8 * *
9 * This program is free software; you can redistribute it and/or modify *
10 * it under the terms of the GNU General Public License as published by *
11 * the Free Software Foundation; either version 2 of the License, or *
12 * (at your option) any later version. *
13 * *
14 ***************************************************************************/
15
17
18#include <memory>
19
20#include "qgs3dutils.h"
22#include "qgsgdalutils.h"
23#include "qgslogger.h"
24#include "qgsrasterlayer.h"
25
26#include <QString>
27
28using namespace Qt::StringLiterals;
29
31{
33
34 // the whole world is projected to a square:
35 // X going from 180 W to 180 E
36 // Y going from ~85 N to ~85 S (=atan(sinh(pi)) ... to get a square)
37 QgsCoordinateTransform ct( QgsCoordinateReferenceSystem( u"EPSG:4326"_s ), QgsCoordinateReferenceSystem( u"EPSG:3857"_s ), transformContext );
39 const QgsPointXY topLeftLonLat( -180, 180.0 / M_PI * std::atan( std::sinh( M_PI ) ) );
40 const QgsPointXY bottomRightLonLat( 180, 180.0 / M_PI * std::atan( std::sinh( -M_PI ) ) );
41 const QgsPointXY topLeft = ct.transform( topLeftLonLat );
42 const QgsPointXY bottomRight = ct.transform( bottomRightLonLat );
43 mXSpan = ( bottomRight.x() - topLeft.x() );
44}
45
47
49{
50 // using terrain tiles stored on AWS and listed within Registry of Open Data on AWS
51 // see https://registry.opendata.aws/terrain-tiles/
52 //
53 // tiles are generated using a variety of sources (SRTM, ETOPO1 and more detailed data for some countries)
54 // for more details and attribution see https://github.com/tilezen/joerd/blob/master/docs/data-sources.md
55
56 DataSource ds;
57 ds.uri = "https://s3.amazonaws.com/elevation-tiles-prod/terrarium/{z}/{x}/{y}.png";
58 ds.zMin = 0;
59 ds.zMax = 15;
60 return ds;
61}
62
64{
65 mDataSource = ds;
66 const QString uri = QString( "type=xyz&url=%1&zmin=%2&zmax=%3" ).arg( mDataSource.uri ).arg( mDataSource.zMin ).arg( mDataSource.zMax );
67 mOnlineDtm = std::make_unique<QgsRasterLayer>( uri, "terrarium", "wms" );
68}
69
70
71void QgsTerrainDownloader::adjustExtentAndResolution( double mupp, const QgsRectangle &extentOrig, QgsRectangle &extent, int &res )
72{
73 const double xMin = floor( extentOrig.xMinimum() / mupp ) * mupp;
74 const double xMax = ceil( extentOrig.xMaximum() / mupp ) * mupp;
75
76 const double yMin = floor( extentOrig.yMinimum() / mupp ) * mupp;
77 const double yMax = ceil( extentOrig.yMaximum() / mupp ) * mupp;
78
79 extent = QgsRectangle( xMin, yMin, xMax, yMax );
80 res = round( ( xMax - xMin ) / mupp );
81}
82
83
84double QgsTerrainDownloader::findBestTileResolution( double requestedMupp ) const
85{
86 int zoom = 0;
87 for ( ; zoom <= 15; ++zoom )
88 {
89 const double tileMupp = mXSpan / ( 256 * ( 1 << zoom ) );
90 if ( tileMupp <= requestedMupp )
91 break;
92 }
93
94 if ( zoom > 15 )
95 zoom = 15;
96 const double finalMupp = mXSpan / ( 256 * ( 1 << zoom ) );
97 return finalMupp;
98}
99
100
101void QgsTerrainDownloader::tileImageToHeightMap( const QImage &img, QByteArray &heightMap )
102{
103 // for description of the "terrarium" format:
104 // https://github.com/tilezen/joerd/blob/master/docs/formats.md
105
106 // assuming ARGB premultiplied but with alpha 255
107 const QRgb *rgb = reinterpret_cast<const QRgb *>( img.constBits() );
108 const int count = img.width() * img.height();
109 heightMap.resize( sizeof( float ) * count );
110 float *hData = reinterpret_cast<float *>( heightMap.data() );
111 for ( int i = 0; i < count; ++i )
112 {
113 const QRgb c = rgb[i];
114 if ( qAlpha( c ) == 255 )
115 {
116 const float h = qRed( c ) * 256 + qGreen( c ) + qBlue( c ) / 256.f - 32768;
117 *hData++ = h;
118 }
119 else
120 {
121 *hData++ = std::numeric_limits<float>::quiet_NaN();
122 }
123 }
124}
125
126
128 const QgsRectangle &extentOrig, int res, const QgsCoordinateReferenceSystem &destCrs, const QgsCoordinateTransformContext &context, QString tmpFilenameImg, QString tmpFilenameTif
129)
130{
131 if ( !mOnlineDtm || !mOnlineDtm->isValid() )
132 {
133 QgsDebugError( "missing a valid data source" );
134 return QByteArray();
135 }
136
137 QgsRectangle extentTr = Qgs3DUtils::tryReprojectExtent2D( extentOrig, destCrs, mOnlineDtm->crs(), context );
138 const double requestedMupp = extentTr.width() / res;
139 const double finalMupp = findBestTileResolution( requestedMupp );
140
141 // adjust extent to match native resolution of terrain tiles
142
143 QgsRectangle extent;
144 const int resOrig = res;
145 adjustExtentAndResolution( finalMupp, extentTr, extent, res );
146
147 // request tile
148
149 QgsRasterBlock *b = mOnlineDtm->dataProvider()->block( 1, extent, res, res );
150 const QImage img = b->image();
151 delete b;
152 if ( !tmpFilenameImg.isEmpty() )
153 img.save( tmpFilenameImg );
154
155 // convert to height data
156
157 QByteArray heightMap;
158 tileImageToHeightMap( img, heightMap );
159
160 // prepare source/destination datasets for resampling
161
162 const gdal::dataset_unique_ptr hSrcDS( QgsGdalUtils::createSingleBandMemoryDataset( GDT_Float32, extent, res, res, mOnlineDtm->crs() ) );
164 if ( !tmpFilenameTif.isEmpty() )
165 hDstDS = QgsGdalUtils::createSingleBandTiffDataset( tmpFilenameTif, GDT_Float32, extentOrig, resOrig, resOrig, destCrs );
166 else
167 hDstDS = QgsGdalUtils::createSingleBandMemoryDataset( GDT_Float32, extentOrig, resOrig, resOrig, destCrs );
168
169 if ( !hSrcDS || !hDstDS )
170 {
171 QgsDebugError( "failed to create GDAL dataset for heightmap" );
172 return QByteArray();
173 }
174
175 const CPLErr err = GDALRasterIO( GDALGetRasterBand( hSrcDS.get(), 1 ), GF_Write, 0, 0, res, res, heightMap.data(), res, res, GDT_Float32, 0, 0 );
176 if ( err != CE_None )
177 {
178 QgsDebugError( "failed to write heightmap data to GDAL dataset" );
179 return QByteArray();
180 }
181
182 // resample to the desired extent + resolution
183 QgsGdalUtils::resampleSingleBandRaster( hSrcDS.get(), hDstDS.get(), GRA_Bilinear, context.calculateCoordinateOperation( mOnlineDtm->crs(), destCrs ).toUtf8().constData() );
184
185 QByteArray heightMapOut;
186 heightMapOut.resize( resOrig * resOrig * sizeof( float ) );
187 char *data = heightMapOut.data();
188
189 // read the data back
190
191 const CPLErr err2 = GDALRasterIO( GDALGetRasterBand( hDstDS.get(), 1 ), GF_Read, 0, 0, resOrig, resOrig, data, resOrig, resOrig, GDT_Float32, 0, 0 );
192 if ( err2 != CE_None )
193 {
194 QgsDebugError( "failed to read heightmap data from GDAL dataset" );
195 return QByteArray();
196 }
197
198 return heightMapOut;
199}
static QgsRectangle tryReprojectExtent2D(const QgsRectangle &extent, const QgsCoordinateReferenceSystem &crs1, const QgsCoordinateReferenceSystem &crs2, const QgsCoordinateTransformContext &context)
Reprojects extent from crs1 to crs2 coordinate reference system with context context.
Represents a coordinate reference system (CRS).
Contains information about the context in which a coordinate transform is executed.
QString calculateCoordinateOperation(const QgsCoordinateReferenceSystem &source, const QgsCoordinateReferenceSystem &destination) const
Returns the Proj coordinate operation string to use when transforming from the specified source CRS t...
Handles coordinate transforms between two coordinate systems.
void setBallparkTransformsAreAppropriate(bool appropriate)
Sets whether approximate "ballpark" results are appropriate for this coordinate transform.
QgsPointXY transform(const QgsPointXY &point, Qgis::TransformDirection direction=Qgis::TransformDirection::Forward) const
Transform the point from the source CRS to the destination CRS.
static bool resampleSingleBandRaster(GDALDatasetH hSrcDS, GDALDatasetH hDstDS, GDALResampleAlg resampleAlg, const char *pszCoordinateOperation)
Resamples a single band raster to the destination dataset with different resolution (and possibly wit...
static gdal::dataset_unique_ptr createSingleBandTiffDataset(const QString &filename, GDALDataType dataType, const QgsRectangle &extent, int width, int height, const QgsCoordinateReferenceSystem &crs)
Creates a new single band TIFF dataset with given parameters.
static gdal::dataset_unique_ptr createSingleBandMemoryDataset(GDALDataType dataType, const QgsRectangle &extent, int width, int height, const QgsCoordinateReferenceSystem &crs)
Creates a new single band memory dataset with given parameters.
Represents a 2D point.
Definition qgspointxy.h:62
double x
Definition qgspointxy.h:65
Raster data container.
QImage image() const
Returns an image containing the block data, if the block's data type is color.
A rectangle specified with double values.
double xMinimum
double yMinimum
double xMaximum
double yMaximum
QgsTerrainDownloader(const QgsCoordinateTransformContext &transformContext)
Constructs a QgsTerrainDownloader object.
static DataSource defaultDataSource()
Returns the data source used by default.
QByteArray getHeightMap(const QgsRectangle &extentOrig, int res, const QgsCoordinateReferenceSystem &destCrs, const QgsCoordinateTransformContext &context=QgsCoordinateTransformContext(), QString tmpFilenameImg=QString(), QString tmpFilenameTif=QString())
For given extent and resolution (number of pixels for width/height) in specified CRS,...
void setDataSource(const DataSource &ds)
Configures data source to be used for download of terrain tiles.
std::unique_ptr< std::remove_pointer< GDALDatasetH >::type, GDALDatasetCloser > dataset_unique_ptr
Scoped GDAL dataset.
As part of the API refactoring and improvements which landed in the Processing API was substantially reworked from the x version This was done in order to allow much of the underlying Processing framework to be ported into c
#define QgsDebugError(str)
Definition qgslogger.h:59
Definition of data source for terrain tiles (assuming "terrarium" data encoding with usual XYZ tiling...
QString uri
HTTP(S) template for XYZ tiles requests (e.g. http://example.com/{z}/{x}/{y}.png).
int zMin
Minimum zoom level (Z) with valid data.
int zMax
Maximum zoom level (Z) with valid data.