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https://gitlab.com/Trygve/contour-creator.git
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040e011a66
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040e011a66 | |||
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cf72fbfefa | ||
40d41fc065 | |||
2ee2936cf1 |
@ -1,13 +1,15 @@
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project(
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contour-creator
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LANGUAGES CXX)
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cmake_minimum_required(VERSION 3.0)
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LANGUAGES CXX)
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find_package(GDAL CONFIG REQUIRED)
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add_executable(${PROJECT_NAME}
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src/HeightMap.cpp src/CaseMap.cpp src/main.cpp
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)
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find_package(OpenMP)
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if(OpenMP_CXX_FOUND)
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target_link_libraries(${PROJECT_NAME} PUBLIC OpenMP::OpenMP_CXX)
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endif()
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target_link_libraries(${PROJECT_NAME} GDAL::GDAL)
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@ -40,6 +40,6 @@ float HeightMap::get_pixel(int x, int y)
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{
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// all the pixels are in an array of floats from left to right, top to bottom
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int offset = ((this->width * y) + x);
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std::cout << " " << x << ","<< y;
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//std::cout << " offset: " << offset << " " << x << ","<< y;
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return *(this->data + offset);
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}
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318
src/main.cpp
318
src/main.cpp
@ -1,146 +1,174 @@
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#include "HeightMap.hh"
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#include "CaseMap.hh"
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#include <gdal/ogr_api.h>
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#include "ogrsf_frmts.h"
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#include <iostream>
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#include <ostream>
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#include <vector>
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#include <cstdint>
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#include <gdal/gdal.h>
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#include "gdal/gdal_priv.h"
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#include <gdal/gdal_frmts.h>
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CaseMap produce_casemap(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 *cases = (uint8_t *) CPLMalloc(sizeof(uint8_t)*length);
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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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uint8_t result = (heightmap->get_pixel(x,y)>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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*(cases + i) = result;
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}
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return CaseMap(heightmap->width-1, heightmap->height-1, cases, heightmap->reference_system);
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}
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void write_output_file(CaseMap* casemap, const char *filepath)
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{
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const char *pszDriverName = "ESRI Shapefile";
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GDALDriver *poDriver;
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GDALAllRegister();
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poDriver = GetGDALDriverManager()->GetDriverByName(pszDriverName );
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if( poDriver == NULL )
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{
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printf( "%s driver not available.\n", pszDriverName );
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exit( 1 );
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}
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GDALDataset *poDS;
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poDS = poDriver->Create( filepath, 0, 0, 0, GDT_Unknown, NULL );
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if( poDS == NULL )
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{
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printf( "Creation of output file failed.\n" );
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exit( 1 );
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}
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OGRLayer *poLayer;
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poLayer = poDS->CreateLayer( "contours", &casemap->reference_system, wkbPoint, NULL );
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if( poLayer == NULL )
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{
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printf( "Layer creation failed.\n" );
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exit( 1 );
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}
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OGRFieldDefn oField( "Name", OFTString );
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oField.SetWidth(32);
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if( poLayer->CreateField( &oField ) != OGRERR_NONE )
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{
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printf( "Creating Name field failed.\n" );
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exit( 1 );
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}
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for (int i = 0; i<casemap->height*casemap->width; i++) {
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if (*(casemap->cases + i) != 0 && *(casemap->cases + i) != 15)
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{
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int x_int = i%casemap->width;
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int y_int = casemap->height*casemap->width - i/casemap->width;
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double x = double(x_int);
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double y = double(y_int);
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OGRFeature *poFeature;
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poFeature = OGRFeature::CreateFeature( poLayer->GetLayerDefn() );
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poFeature->SetField( "Name", *(casemap->cases + i) );
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//OGRSpatialReference local;
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//auto poCT = OGRCreateCoordinateTransformation( &local, &casemap->reference_system );
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/*
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if( poCT == NULL || !poCT->Transform( 1, &x, &y ) )
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printf( "Transformation failed.\n" );
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*/
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OGRPoint pt;
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pt.setX( x );
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pt.setY( y );
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poFeature->SetGeometry( &pt );
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if( poLayer->CreateFeature( poFeature ) != OGRERR_NONE )
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{
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printf( "Failed to create feature in shapefile.\n" );
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exit( 1 );
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}
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OGRFeature::DestroyFeature( poFeature );
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}
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}
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GDALClose( poDS );
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/*
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OGRDataSourceH datasource = OGR_Dr_CreateDataSource(OGRGetDriverByName("GeoJSON"), "contour.geojson", new char*);
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OGRSpatialReference reference_system = casemap->reference_system;
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OGRLayerH layer = OGR_DS_CreateLayer(datasource, "contour", &reference_system, wkbLineString25D, new char*);
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auto feature = OGR_F_Create(OGR_L_GetLayerDefn(static_cast<OGRLayerH>(layer)));
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OGRGeometryH geometry = OGR_G_CreateGeometry(wkbLineString25D);
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*/
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}
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int main(int argc, const char* argv[])
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{
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const char* filepath = argv[1];
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HeightMap map(filepath);
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std::cout << "x: " << map.width << " y: " << map.height << "\n";
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std::cout << "max: " << map.max << " min: " << map.min << "\n";
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auto casemap = produce_casemap(&map, 40);
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/*
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for (int y = 0; y < casemap.height; y++)
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{
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for (int x = 0; x < casemap.width; x++)
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{
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if (casemap.get_case(x, y) && casemap.get_case(x, y)!=15) {
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std::cout << x << ","<< y << "=" << casemap.get_case(x, y) << " ";
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}
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}
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//std::cout << "\n";
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}
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*/
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write_output_file(&casemap, "out.shp");
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#include "HeightMap.hh"
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#include "CaseMap.hh"
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#include <gdal/ogr_api.h>
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#include "ogrsf_frmts.h"
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#include <iostream>
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#include <ostream>
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#include <vector>
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#include <cstdint>
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#include <gdal/gdal.h>
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#include "gdal/gdal_priv.h"
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#include <gdal/gdal_frmts.h>
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#include <omp.h>
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CaseMap produce_casemap(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 *cases = (uint8_t *) CPLMalloc(sizeof(uint8_t)*length);
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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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uint8_t result = (heightmap->get_pixel(x,y)>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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*(cases + i) = result;
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}
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return CaseMap(heightmap->width-1, heightmap->height-1, cases, heightmap->reference_system);
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}
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std::vector<CaseMap> vector_casemap(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<CaseMap> 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<CaseMap> 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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vec_private.push_back(produce_casemap(heightmap, heightmap->min + interval*i));
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std::cout << "Execute thread " << omp_get_num_threads() << " ";
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}
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#pragma omp critical
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vector_contours.insert(vector_contours.end(), vec_private.begin(), vec_private.end());
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}
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return vector_contours;
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}
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void write_output_file(std::vector<CaseMap> casemaps, const char *filepath)
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{
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const char *pszDriverName = "ESRI Shapefile";
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GDALDriver *poDriver;
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GDALAllRegister();
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poDriver = GetGDALDriverManager()->GetDriverByName(pszDriverName );
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if( poDriver == NULL )
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{
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printf( "%s driver not available.\n", pszDriverName );
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exit( 1 );
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}
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GDALDataset *poDS;
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poDS = poDriver->Create( filepath, 0, 0, 0, GDT_Unknown, NULL );
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if( poDS == NULL )
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{
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printf( "Creation of output file failed.\n" );
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exit( 1 );
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}
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OGRLayer *poLayer;
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poLayer = poDS->CreateLayer( "contours", &(casemaps[0]).reference_system, wkbPoint, NULL );
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if( poLayer == NULL )
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{
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printf( "Layer creation failed.\n" );
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exit( 1 );
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}
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OGRFieldDefn oField( "Name", OFTString );
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oField.SetWidth(32);
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if( poLayer->CreateField( &oField ) != OGRERR_NONE )
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{
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printf( "Creating Name field failed.\n" );
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exit( 1 );
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}
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for (int j = 0; j < casemaps.size(); j++)
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{
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CaseMap* casemap = &casemaps[j];
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for (int i = 0; i<casemap->height*casemap->width; i++) {
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if (*(casemap->cases + i) != 0 && *(casemap->cases + i) != 15)
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{
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int x_int = i%casemap->width;
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int y_int = casemap->height*casemap->width - i/casemap->width;
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double x = double(x_int);
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double y = double(y_int);
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OGRFeature *poFeature;
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poFeature = OGRFeature::CreateFeature( poLayer->GetLayerDefn() );
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poFeature->SetField( "Name", *(casemap->cases + i) );
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//OGRSpatialReference local;
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//auto poCT = OGRCreateCoordinateTransformation( &local, &casemap->reference_system );
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/*
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if( poCT == NULL || !poCT->Transform( 1, &x, &y ) )
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printf( "Transformation failed.\n" );
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*/
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OGRPoint pt;
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pt.setX( x );
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pt.setY( y );
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poFeature->SetGeometry( &pt );
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if( poLayer->CreateFeature( poFeature ) != OGRERR_NONE )
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{
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printf( "Failed to create feature in shapefile.\n" );
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exit( 1 );
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}
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OGRFeature::DestroyFeature( poFeature );
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}
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}
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}
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GDALClose( poDS );
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/*
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OGRDataSourceH datasource = OGR_Dr_CreateDataSource(OGRGetDriverByName("GeoJSON"), "contour.geojson", new char*);
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OGRSpatialReference reference_system = casemap->reference_system;
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OGRLayerH layer = OGR_DS_CreateLayer(datasource, "contour", &reference_system, wkbLineString25D, new char*);
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auto feature = OGR_F_Create(OGR_L_GetLayerDefn(static_cast<OGRLayerH>(layer)));
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OGRGeometryH geometry = OGR_G_CreateGeometry(wkbLineString25D);
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*/
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}
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int main(int argc, const char* argv[])
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{
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const char* filepath = argv[1];
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HeightMap map(filepath);
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std::cout << "x: " << map.width << " y: " << map.height << "\n";
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std::cout << "max: " << map.max << " min: " << map.min << "\n";
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auto casemap = produce_casemap(&map, 40);
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/*
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for (int y = 0; y < casemap.height; y++)
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{
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for (int x = 0; x < casemap.width; x++)
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{
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if (casemap.get_case(x, y) && casemap.get_case(x, y)!=15) {
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std::cout << x << ","<< y << "=" << casemap.get_case(x, y) << " ";
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}
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}
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//std::cout << "\n";
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}
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*/
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auto casemaps = vector_casemap(&map, 5);
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write_output_file(casemaps, "out.shp");
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}
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