mirror of
https://github.com/felt/tippecanoe.git
synced 2026-10-02 08:25:40 +02:00
* Another try at fixing longitude wraparound for bins * Gonna get it right this time * Forgot to update the comment * The filter case was not supposed to reinterpret geometry * Copy antimeridian-crossing geometries to the other side too * Getting closer to getting antimeridian-crossing polygons right * Update changelog and version
243 lines
5.4 KiB
C++
243 lines
5.4 KiB
C++
#include <stdio.h>
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#include <stdlib.h>
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#include <getopt.h>
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#include <string>
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#include <set>
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#include "errors.hpp"
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#include "mvt.hpp"
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#include "geometry.hpp"
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#include "evaluator.hpp"
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#include "attribute.hpp"
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#include "text.hpp"
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#include "read_json.hpp"
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extern char *optarg;
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extern int optind;
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int detail = 12; // tippecanoe-style: mvt extent == 1 << detail
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int buffer = 5; // tippecanoe-style: mvt buffer == extent * buffer / 256;
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bool demultiply = false;
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std::string filter;
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bool preserve_input_order = false;
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std::unordered_map<std::string, attribute_op> attribute_accum;
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std::vector<std::string> unidecode_data;
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std::vector<mvt_layer> bins;
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std::set<std::string> keep;
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void usage(char **argv) {
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fprintf(stderr, "Usage: %s -o newtile.pbf.gz tile.pbf.gz oz/ox/oy nz/nx/ny\n", argv[0]);
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fprintf(stderr, "to create tile nz/nx/ny from tile oz/ox/oy\n");
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fprintf(stderr, "Usage: %s -o newtile.pbf.gz -t nz/nx/ny tile.pbf.gz oz/ox/oy tile2.pbf.gz oz2/ox2/oy2\n", argv[0]);
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fprintf(stderr, "to create tile nz/nx/ny from tiles oz/ox/oy and oz2/ox2/oy2\n");
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exit(EXIT_FAILURE);
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}
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int main(int argc, char **argv) {
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int i;
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const char *outtile = NULL;
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const char *outfile = NULL;
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double simplification = 0;
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double tiny_polygon_size = 0;
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std::string assign_to_bins;
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std::vector<input_tile> sources;
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struct option long_options[] = {
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{"include", required_argument, 0, 'y'},
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{"full-detail", required_argument, 0, 'd'},
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{"buffer", required_argument, 0, 'b'},
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{"output", required_argument, 0, 'o'},
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{"filter-points-multiplier", no_argument, 0, 'm'},
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{"feature-filter", required_argument, 0, 'j'},
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{"preserve-input-order", no_argument, 0, 'o' & 0x1F},
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{"accumulate-attribute", required_argument, 0, 'E'},
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{"unidecode-data", required_argument, 0, 'u' & 0x1F},
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{"line-simplification", required_argument, 0, 'S'},
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{"tiny-polygon-size", required_argument, 0, 's' & 0x1F},
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{"source-tile", required_argument, 0, 't'},
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{"assign-to-bins", required_argument, 0, 'b' & 0x1F},
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{0, 0, 0, 0},
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};
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std::string getopt_str;
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for (size_t lo = 0; long_options[lo].name != NULL; lo++) {
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if (long_options[lo].val > ' ') {
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getopt_str.push_back(long_options[lo].val);
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if (long_options[lo].has_arg == required_argument) {
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getopt_str.push_back(':');
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}
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}
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}
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int option_index = 0;
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while ((i = getopt_long(argc, argv, getopt_str.c_str(), long_options, &option_index)) != -1) {
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switch (i) {
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case 'y':
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keep.insert(optarg);
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break;
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case 'o':
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outfile = optarg;
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break;
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case 'd':
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detail = atoi(optarg);
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break;
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case 'b':
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buffer = atoi(optarg);
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break;
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case 'm':
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demultiply = true;
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break;
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case 'j':
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filter = optarg;
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break;
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case 'o' & 0x1F:
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preserve_input_order = true;
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break;
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case 'E':
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set_attribute_accum(attribute_accum, optarg, argv);
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break;
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case 'u' & 0x1F:
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unidecode_data = read_unidecode(optarg);
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break;
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case 't':
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outtile = optarg;
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break;
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case 's' & 0x1F:
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tiny_polygon_size = atof(optarg);
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break;
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case 'S':
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simplification = atof(optarg);
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break;
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case 'b' & 0x1F:
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assign_to_bins = optarg;
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break;
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default:
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fprintf(stderr, "Unrecognized flag -%c\n", i);
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usage(argv);
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}
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}
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std::vector<input_tile> its;
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int nz, nx, ny;
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if (outtile == NULL) { // single input
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if (argc - optind != 3) {
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fprintf(stderr, "Wrong number of arguments\n");
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usage(argv);
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}
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const char *infile = argv[optind + 0];
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int oz, ox, oy;
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if (sscanf(argv[optind + 1], "%d/%d/%d", &oz, &ox, &oy) != 3) {
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fprintf(stderr, "%s: not in z/x/y form\n", argv[optind + 1]);
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usage(argv);
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}
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if (sscanf(argv[optind + 2], "%d/%d/%d", &nz, &nx, &ny) != 3) {
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fprintf(stderr, "%s: not in z/x/y form\n", argv[optind + 2]);
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usage(argv);
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}
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input_tile s;
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s.tile = infile;
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s.z = oz;
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s.x = ox;
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s.y = oy;
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sources.push_back(s);
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} else { // multiple inputs
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if ((argc - optind) % 2 != 0) {
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fprintf(stderr, "Unpaired arguments\n");
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usage(argv);
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}
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if (sscanf(outtile, "%d/%d/%d", &nz, &nx, &ny) != 3) {
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fprintf(stderr, "%s: not in z/x/y form\n", outtile);
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usage(argv);
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}
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for (i = optind; i + 1 < argc; i += 2) {
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int oz, ox, oy;
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if (sscanf(argv[i + 1], "%d/%d/%d", &oz, &ox, &oy) != 3) {
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fprintf(stderr, "%s: not in z/x/y form\n", argv[i + 1]);
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usage(argv);
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}
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input_tile s;
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s.tile = argv[i];
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s.z = oz;
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s.x = ox;
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s.y = oy;
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sources.push_back(s);
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}
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}
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if (assign_to_bins.size() != 0) {
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FILE *f = fopen(assign_to_bins.c_str(), "r");
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if (f == NULL) {
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perror(assign_to_bins.c_str());
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exit(EXIT_OPEN);
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}
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bins = parse_layers(f, nz, nx, ny, 1LL << detail, true);
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fclose(f);
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}
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json_object *json_filter = NULL;
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if (filter.size() > 0) {
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json_filter = parse_filter(filter.c_str());
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}
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for (auto const &s : sources) {
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std::string tile;
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char buf[1000];
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int len;
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FILE *f = fopen(s.tile.c_str(), "rb");
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if (f == NULL) {
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perror(s.tile.c_str());
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exit(EXIT_FAILURE);
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}
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while ((len = fread(buf, sizeof(char), 1000, f)) > 0) {
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tile.append(std::string(buf, len));
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}
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fclose(f);
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input_tile t = s;
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t.tile = std::move(tile);
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its.push_back(std::move(t));
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}
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std::string out = overzoom(its, nz, nx, ny, detail, buffer, keep, true, NULL, demultiply, json_filter, preserve_input_order, attribute_accum, unidecode_data, simplification, tiny_polygon_size, bins);
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FILE *f = fopen(outfile, "wb");
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if (f == NULL) {
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perror(outfile);
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exit(EXIT_FAILURE);
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}
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fwrite(out.c_str(), sizeof(char), out.size(), f);
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fclose(f);
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return 0;
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}
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