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d046e18c43
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@ -35,4 +35,18 @@ class CellMap
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OGRSpatialReference reference_system;
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CellMap(int width, int height, uint8_t* cells, OGRSpatialReference reference_system, double* geotransform);
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int get_cell(int x,int y);
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};
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};
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class Point
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{
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public:
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int x;
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int y;
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int mscase;
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Point(int x, int y, int mscase){
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this -> x = x;
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this -> y = y;
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this -> mscase = mscase;
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};
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};
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18
src/main.cpp
18
src/main.cpp
@ -13,10 +13,11 @@
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#include <gdal/gdal_frmts.h>
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#include <omp.h>
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CellMap produce_cellmap(HeightMap* heightmap, float z)
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std::vector<Point> produce_cellmap(HeightMap* heightmap, float z)
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{
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int length = (heightmap->width-1)*(heightmap->height-1);
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uint8_t *cells = (uint8_t *) CPLMalloc(sizeof(uint8_t)*length);
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std::vector<Point> points;
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for (int i = 0; i<length; i++) {
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int y = i/(heightmap->width-1);
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int x = i%(heightmap->width-1);
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@ -24,23 +25,26 @@ CellMap produce_cellmap(HeightMap* heightmap, float z)
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(heightmap->get_pixel(x+1,y)>z)*2 +
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(heightmap->get_pixel(x+1,y+1)>z)*4 +
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(heightmap->get_pixel(x,y+1)>z)*8;
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*(cells + i) = result;
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if (result != 0 and result != 15 ) {
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points.push_back(Point(x, y, result));
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};
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}
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return CellMap(heightmap->width-1, heightmap->height-1, cells, heightmap->reference_system, heightmap->geotransform);
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return points;
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}
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std::vector<CellMap> vector_cellmap(HeightMap* heightmap, int interval)
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std::vector<std::vector<Point>> vector_cellmap(HeightMap* heightmap, int interval)
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{
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int num_contours = (heightmap->max - heightmap->min)/interval;
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std::vector<CellMap> vector_contours;
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std::vector<std::vector<Point>> vector_contours;
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omp_set_num_threads(12);
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#pragma omp parallel
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{
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std::vector<CellMap> vec_private;
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std::vector<std::vector<Point>> vec_private;
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#pragma omp for
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for (int i = 1; i <= num_contours; i++)
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{
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@ -180,5 +184,5 @@ int main(int argc, const char* argv[])
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auto cellmap = produce_cellmap(&map, 40);
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auto cellmaps = vector_cellmap(&map, 5);
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write_output_file(cellmaps, "out.geojson");
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//write_output_file(cellmaps, "out.geojson");
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}
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