throw datasource_exception on GDAL RasterIO failures
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3 changed files with 132 additions and 24 deletions
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@ -104,6 +104,7 @@ feature_ptr gdal_featureset::get_feature(mapnik::query const& q)
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GDALRasterBand * blue = 0;
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GDALRasterBand * alpha = 0;
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GDALRasterBand * grey = 0;
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CPLErr raster_io_error = CE_None;
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/*
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#ifdef MAPNIK_LOG
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@ -215,9 +216,12 @@ feature_ptr gdal_featureset::get_feature(mapnik::query const& q)
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float* imageData = (float*)image.getBytes();
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GDALRasterBand * band = dataset_.GetRasterBand(band_);
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raster_nodata = band->GetNoDataValue(&raster_has_nodata);
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band->RasterIO(GF_Read, x_off, y_off, width, height,
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imageData, image.width(), image.height(),
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GDT_Float32, 0, 0);
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raster_io_error = band->RasterIO(GF_Read, x_off, y_off, width, height,
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imageData, image.width(), image.height(),
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GDT_Float32, 0, 0);
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if (raster_io_error == CE_Failure) {
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throw datasource_exception(CPLGetLastErrorMsg());
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}
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}
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else // working with all bands
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{
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@ -307,9 +311,12 @@ feature_ptr gdal_featureset::get_feature(mapnik::query const& q)
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// TODO - we assume here the nodata value for the red band applies to all bands
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// more details about this at http://trac.osgeo.org/gdal/ticket/2734
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float* imageData = (float*)image.getBytes();
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red->RasterIO(GF_Read, x_off, y_off, width, height,
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imageData, image.width(), image.height(),
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GDT_Float32, 0, 0);
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raster_io_error = red->RasterIO(GF_Read, x_off, y_off, width, height,
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imageData, image.width(), image.height(),
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GDT_Float32, 0, 0);
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if (raster_io_error == CE_Failure) {
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throw datasource_exception(CPLGetLastErrorMsg());
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}
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int len = image.width() * image.height();
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for (int i = 0; i < len; ++i)
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{
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@ -323,12 +330,21 @@ feature_ptr gdal_featureset::get_feature(mapnik::query const& q)
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}
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}
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}
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red->RasterIO(GF_Read, x_off, y_off, width, height, image.getBytes() + 0,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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green->RasterIO(GF_Read, x_off, y_off, width, height, image.getBytes() + 1,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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blue->RasterIO(GF_Read, x_off, y_off, width, height, image.getBytes() + 2,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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raster_io_error = red->RasterIO(GF_Read, x_off, y_off, width, height, image.getBytes() + 0,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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if (raster_io_error == CE_Failure) {
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throw datasource_exception(CPLGetLastErrorMsg());
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}
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raster_io_error = green->RasterIO(GF_Read, x_off, y_off, width, height, image.getBytes() + 1,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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if (raster_io_error == CE_Failure) {
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throw datasource_exception(CPLGetLastErrorMsg());
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}
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raster_io_error = blue->RasterIO(GF_Read, x_off, y_off, width, height, image.getBytes() + 2,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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if (raster_io_error == CE_Failure) {
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throw datasource_exception(CPLGetLastErrorMsg());
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}
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}
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else if (grey)
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{
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@ -342,9 +358,12 @@ feature_ptr gdal_featureset::get_feature(mapnik::query const& q)
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MAPNIK_LOG_DEBUG(gdal) << "gdal_featureset: applying nodata value for layer=" << apply_nodata;
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// first read the data in and create an alpha channel from the nodata values
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float* imageData = (float*)image.getBytes();
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grey->RasterIO(GF_Read, x_off, y_off, width, height,
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imageData, image.width(), image.height(),
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GDT_Float32, 0, 0);
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raster_io_error = grey->RasterIO(GF_Read, x_off, y_off, width, height,
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imageData, image.width(), image.height(),
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GDT_Float32, 0, 0);
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if (raster_io_error == CE_Failure) {
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throw datasource_exception(CPLGetLastErrorMsg());
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}
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int len = image.width() * image.height();
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for (int i = 0; i < len; ++i)
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{
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@ -358,12 +377,21 @@ feature_ptr gdal_featureset::get_feature(mapnik::query const& q)
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}
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}
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}
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grey->RasterIO(GF_Read, x_off, y_off, width, height, image.getBytes() + 0,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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grey->RasterIO(GF_Read,x_off, y_off, width, height, image.getBytes() + 1,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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grey->RasterIO(GF_Read,x_off, y_off, width, height, image.getBytes() + 2,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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raster_io_error = grey->RasterIO(GF_Read, x_off, y_off, width, height, image.getBytes() + 0,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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if (raster_io_error == CE_Failure) {
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throw datasource_exception(CPLGetLastErrorMsg());
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}
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raster_io_error = grey->RasterIO(GF_Read,x_off, y_off, width, height, image.getBytes() + 1,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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if (raster_io_error == CE_Failure) {
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throw datasource_exception(CPLGetLastErrorMsg());
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}
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raster_io_error = grey->RasterIO(GF_Read,x_off, y_off, width, height, image.getBytes() + 2,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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if (raster_io_error == CE_Failure) {
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throw datasource_exception(CPLGetLastErrorMsg());
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}
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if (color_table)
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{
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@ -394,8 +422,11 @@ feature_ptr gdal_featureset::get_feature(mapnik::query const& q)
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MAPNIK_LOG_DEBUG(gdal) << "gdal_featureset: processing alpha band...";
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if (!raster_has_nodata)
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{
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alpha->RasterIO(GF_Read, x_off, y_off, width, height, image.getBytes() + 3,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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raster_io_error = alpha->RasterIO(GF_Read, x_off, y_off, width, height, image.getBytes() + 3,
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image.width(), image.height(), GDT_Byte, 4, 4 * image.width());
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if (raster_io_error == CE_Failure) {
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throw datasource_exception(CPLGetLastErrorMsg());
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}
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}
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else
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{
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@ -426,6 +457,8 @@ feature_ptr gdal_featureset::get_feature(mapnik::query const& q)
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feature_ptr gdal_featureset::get_feature_at_point(mapnik::coord2d const& pt)
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{
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CPLErr raster_io_error = CE_None;
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if (band_ > 0)
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{
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unsigned raster_xsize = dataset_.GetRasterXSize();
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@ -453,7 +486,10 @@ feature_ptr gdal_featureset::get_feature_at_point(mapnik::coord2d const& pt)
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int raster_has_nodata;
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double nodata = band->GetNoDataValue(&raster_has_nodata);
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double value;
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band->RasterIO(GF_Read, x, y, 1, 1, &value, 1, 1, GDT_Float64, 0, 0);
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raster_io_error = band->RasterIO(GF_Read, x, y, 1, 1, &value, 1, 1, GDT_Float64, 0, 0);
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if (raster_io_error == CE_Failure) {
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throw datasource_exception(CPLGetLastErrorMsg());
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}
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if (! raster_has_nodata || value != nodata)
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{
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// construct feature
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45
tests/data/raster/missing_raster.vrt
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45
tests/data/raster/missing_raster.vrt
Normal file
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@ -0,0 +1,45 @@
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<VRTDataset rasterXSize="2283" rasterYSize="1913">
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<SRS>PROJCS["WGS 84 / UTM zone 30N",GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]],PROJECTION["Transverse_Mercator"],PARAMETER["latitude_of_origin",0],PARAMETER["central_meridian",-3],PARAMETER["scale_factor",0.9996],PARAMETER["false_easting",500000],PARAMETER["false_northing",0],UNIT["metre",1,AUTHORITY["EPSG","9001"]],AUTHORITY["EPSG","32630"]]</SRS>
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<GeoTransform> -1.4637000000000000e+04, 5.0000000000000000e+02, 0.0000000000000000e+00, 4.8596780000000000e+06, 0.0000000000000000e+00, -5.0000000000000000e+02</GeoTransform>
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<VRTRasterBand dataType="Int16" band="1">
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<NoDataValue>-9.99000000000000E+02</NoDataValue>
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<HideNoDataValue>0</HideNoDataValue>
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<ColorInterp>Palette</ColorInterp>
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<ColorTable>
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<Entry c1="0" c2="0" c3="0" c4="0"/>
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<Entry c1="0" c2="0" c3="255"/>
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<Entry c1="0" c2="255" c3="0"/>
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<Entry c1="255" c2="0" c3="0"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="128" c2="128" c3="128"/>
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<Entry c1="0" c2="0" c3="255"/>
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<Entry c1="0" c2="255" c3="0"/>
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<Entry c1="255" c2="0" c3="0"/>
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</ColorTable>
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<ComplexSource>
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<SourceFilename relativeToVRT="1">this_file_should_not_exist.tif</SourceFilename>
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<SourceBand>1</SourceBand>
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<SourceProperties RasterXSize="2283" RasterYSize="1913" DataType="Int16" BlockXSize="256" BlockYSize="256" />
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<SrcRect xOff="0" yOff="0" xSize="2283" ySize="1913" />
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<DstRect xOff="0" yOff="0" xSize="2283" ySize="1913" />
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<NODATA>-999</NODATA>
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</ComplexSource>
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</VRTRasterBand>
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</VRTDataset>
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@ -13,6 +13,33 @@ def test_that_datasources_exist():
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if len(mapnik.DatasourceCache.plugin_names()) == 0:
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print '***NOTICE*** - no datasource plugins have been loaded'
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# adapted from raster_symboliser_test#test_dataraster_query_point
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def test_vrt_referring_to_missing_files():
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srs = '+init=epsg:32630'
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if 'gdal' in mapnik.DatasourceCache.plugin_names():
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lyr = mapnik.Layer('dataraster')
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lyr.datasource = mapnik.Gdal(
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file = '../data/raster/missing_raster.vrt',
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band = 1,
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)
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lyr.srs = srs
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_map = mapnik.Map(256, 256, srs)
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_map.layers.append(lyr)
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# center of extent of raster
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x, y = 556113.0,4381428.0 # center of extent of raster
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_map.zoom_all()
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# Should RuntimeError here
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try:
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_map.query_point(0, x, y).features
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except RuntimeError, e:
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eq_("this_file_should_not_exist.tif' does not exist in the file system" in str(e), True)
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else:
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assert False
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def test_field_listing():
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if 'shape' in mapnik.DatasourceCache.plugin_names():
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ds = mapnik.Shapefile(file='../data/shp/poly.shp')
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