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https://github.com/felt/tippecanoe.git
synced 2026-10-07 02:45:41 +02:00
Reviving multi-source-tile overzoom: the clip.cpp side
This commit is contained in:
@@ -755,24 +755,36 @@ static std::vector<std::pair<double, double>> clip_poly1(std::vector<std::pair<d
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return out;
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}
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std::string overzoom(const std::string &s, int oz, int ox, int oy, int nz, int nx, int ny,
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std::string overzoom(std::vector<input_tile> const &tiles, int nz, int nx, int ny,
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int detail, int buffer, std::set<std::string> const &keep, bool do_compress,
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std::vector<std::pair<unsigned, unsigned>> *next_overzoomed_tiles,
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bool demultiply, json_object *filter, bool preserve_input_order, std::unordered_map<std::string, attribute_op> const &attribute_accum, std::vector<std::string> const &unidecode_data) {
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std::vector<source_tile> decoded;
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for (auto const &t : tiles) {
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mvt_tile tile;
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try {
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bool was_compressed;
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if (!tile.decode(s, was_compressed)) {
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fprintf(stderr, "Couldn't parse tile %d/%u/%u\n", oz, ox, oy);
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if (!tile.decode(t.tile, was_compressed)) {
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fprintf(stderr, "Couldn't parse tile %d/%u/%u\n", t.z, t.x, t.y);
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exit(EXIT_MVT);
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}
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} catch (std::exception const &e) {
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fprintf(stderr, "PBF decoding error in tile %d/%u/%u\n", oz, ox, oy);
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fprintf(stderr, "PBF decoding error in tile %d/%u/%u\n", t.z, t.x, t.y);
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exit(EXIT_PROTOBUF);
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}
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return overzoom(tile, oz, ox, oy, nz, nx, ny, detail, buffer, keep, do_compress, next_overzoomed_tiles, demultiply, filter, preserve_input_order, attribute_accum, unidecode_data);
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source_tile out;
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out.tile = tile;
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out.z = t.z;
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out.x = t.x;
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out.y = t.y;
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decoded.push_back(out);
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}
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return overzoom(decoded, nz, nx, ny, detail, buffer, keep, do_compress, next_overzoomed_tiles, demultiply, filter, preserve_input_order, attribute_accum, unidecode_data);
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}
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struct tile_feature {
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@@ -870,24 +882,38 @@ static struct preservecmp {
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}
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} preservecmp;
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std::string overzoom(const mvt_tile &tile, int oz, int ox, int oy, int nz, int nx, int ny,
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std::string overzoom(std::vector<source_tile> const &tiles, int nz, int nx, int ny,
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int detail, int buffer, std::set<std::string> const &keep, bool do_compress,
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std::vector<std::pair<unsigned, unsigned>> *next_overzoomed_tiles,
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bool demultiply, json_object *filter, bool preserve_input_order, std::unordered_map<std::string, attribute_op> const &attribute_accum, std::vector<std::string> const &unidecode_data) {
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mvt_tile outtile;
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std::shared_ptr<std::string> tile_stringpool = std::make_shared<std::string>();
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for (auto const &layer : tile.layers) {
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mvt_layer outlayer = mvt_layer();
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for (auto const &tile : tiles) {
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for (auto const &layer : tile.tile.layers) {
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mvt_layer *outlayer = NULL;
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int det = detail;
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if (det <= 0) {
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det = std::round(log(layer.extent) / log(2));
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}
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outlayer.name = layer.name;
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outlayer.version = layer.version;
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outlayer.extent = 1LL << det;
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for (size_t i = 0; i < outtile.layers.size(); i++) {
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if (outtile.layers[i].name == layer.name) {
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outlayer = &outtile.layers[i];
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}
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}
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if (outlayer == NULL) {
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mvt_layer newlayer = mvt_layer();
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newlayer.name = layer.name;
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newlayer.version = layer.version;
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newlayer.extent = 1LL << det;
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outtile.layers.push_back(newlayer);
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outlayer = &outtile.layers.back();
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}
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std::vector<tile_feature> pending_tile_features;
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@@ -916,7 +942,7 @@ std::string overzoom(const mvt_tile &tile, int oz, int ox, int oy, int nz, int n
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if (flush_multiplier_cluster) {
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if (pending_tile_features.size() > 0) {
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feature_out(pending_tile_features, outlayer, keep, attribute_accum, tile_stringpool);
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feature_out(pending_tile_features, *outlayer, keep, attribute_accum, tile_stringpool);
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pending_tile_features.clear();
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}
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}
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@@ -931,18 +957,17 @@ std::string overzoom(const mvt_tile &tile, int oz, int ox, int oy, int nz, int n
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// Convert feature geometry to world coordinates
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long long tilesize = 1LL << (32 - oz); // source tile size in world coordinates
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long long tilesize = 1LL << (32 - tile.z); // source tile size in world coordinates
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draw ring_closure(0, 0, 0);
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bool sametile = (nz == oz && nx == ox && ny == oy && outlayer.extent >= layer.extent);
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bool sametile = (nz == tile.z && nx == tile.x && ny == tile.y && outlayer->extent >= layer.extent);
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for (auto const &g : feature.geometry) {
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if (g.op == mvt_closepath) {
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geom.push_back(ring_closure);
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} else {
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geom.emplace_back(g.op,
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g.x * tilesize / layer.extent + ox * tilesize,
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g.y * tilesize / layer.extent + oy * tilesize);
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g.x * tilesize / layer.extent + tile.x * tilesize,
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g.y * tilesize / layer.extent + tile.y * tilesize);
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if (g.op == mvt_moveto) {
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ring_closure = geom.back();
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ring_closure.op = mvt_lineto;
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@@ -1019,16 +1044,13 @@ std::string overzoom(const mvt_tile &tile, int oz, int ox, int oy, int nz, int n
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}
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if (pending_tile_features.size() > 0) {
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feature_out(pending_tile_features, outlayer, keep, attribute_accum, tile_stringpool);
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feature_out(pending_tile_features, *outlayer, keep, attribute_accum, tile_stringpool);
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pending_tile_features.clear();
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}
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if (preserve_input_order) {
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std::stable_sort(outlayer.features.begin(), outlayer.features.end(), preservecmp);
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std::stable_sort(outlayer->features.begin(), outlayer->features.end(), preservecmp);
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}
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if (outlayer.features.size() > 0) {
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outtile.layers.push_back(std::move(outlayer));
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}
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}
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@@ -1043,7 +1065,16 @@ std::string overzoom(const mvt_tile &tile, int oz, int ox, int oy, int nz, int n
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if (outtile.layers.size() > 0) {
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for (size_t x = 0; x < 2; x++) {
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for (size_t y = 0; y < 2; y++) {
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std::string child = overzoom(outtile, nz, nx, ny,
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source_tile st;
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st.tile = outtile;
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st.z = nz;
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st.x = nx;
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st.y = ny;
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std::vector<source_tile> sts;
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sts.push_back(st);
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std::string child = overzoom(sts,
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nz + 1, nx * 2 + x, ny * 2 + y,
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detail, buffer, keep, false, NULL,
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demultiply, filter, preserve_input_order, attribute_accum, unidecode_data);
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@@ -1055,6 +1086,12 @@ std::string overzoom(const mvt_tile &tile, int oz, int ox, int oy, int nz, int n
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}
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}
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for (ssize_t i = outtile.layers.size() - 1; i >= 0; i--) {
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if (outtile.layers[i].features.size() == 0) {
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outtile.layers.erase(outtile.layers.begin() + i);
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}
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}
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if (outtile.layers.size() > 0) {
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std::string pbf = outtile.encode();
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+16
-2
@@ -100,14 +100,28 @@ void visvalingam(drawvec &ls, size_t start, size_t end, double threshold, size_t
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int pnpoly(const drawvec &vert, size_t start, size_t nvert, long long testx, long long testy);
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double distance_from_line(long long point_x, long long point_y, long long segA_x, long long segA_y, long long segB_x, long long segB_y);
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std::string overzoom(const mvt_tile &tile, int oz, int ox, int oy, int nz, int nx, int ny,
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struct input_tile {
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std::string tile;
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int z;
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int x;
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int y;
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};
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struct source_tile {
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mvt_tile tile;
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int z;
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int x;
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int y;
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};
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std::string overzoom(std::vector<source_tile> const &tiles, int nz, int nx, int ny,
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int detail, int buffer, std::set<std::string> const &keep, bool do_compress,
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std::vector<std::pair<unsigned, unsigned>> *next_overzoomed_tiles,
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bool demultiply, json_object *filter, bool preserve_input_order,
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std::unordered_map<std::string, attribute_op> const &attribute_accum,
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std::vector<std::string> const &unidecode_data);
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std::string overzoom(const std::string &s, int oz, int ox, int oy, int nz, int nx, int ny,
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std::string overzoom(std::vector<input_tile> const &tiles, int nz, int nx, int ny,
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int detail, int buffer, std::set<std::string> const &keep, bool do_compress,
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std::vector<std::pair<unsigned, unsigned>> *next_overzoomed_tiles,
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bool demultiply, json_object *filter, bool preserve_input_order,
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+34
-22
@@ -125,33 +125,45 @@ int main(int argc, char **argv) {
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usage(argv);
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}
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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(infile, "rb");
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if (f == NULL) {
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perror(infile);
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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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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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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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std::string out = overzoom(tile, oz, ox, oy, nz, nx, ny, detail, buffer, keep, true, NULL, demultiply, json_filter, preserve_input_order, attribute_accum, unidecode_data);
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std::string out;
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{
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FILE *fi = fopen(infile, "rb");
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if (fi == NULL) {
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perror(infile);
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exit(EXIT_FAILURE);
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}
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std::string tile;
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char buf[1000];
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int len;
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while ((len = fread(buf, sizeof(char), 1000, fi)) > 0) {
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tile.append(std::string(buf, len));
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}
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fclose(fi);
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std::vector<input_tile> tv;
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input_tile t;
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t.tile = std::move(tile);
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t.z = oz;
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t.x = ox;
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t.y = oy;
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tv.push_back(std::move(t));
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out = overzoom(tv, nz, nx, ny, detail, buffer, keep, true, NULL, demultiply, json_filter, preserve_input_order, attribute_accum, unidecode_data);
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}
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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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+9
-1
@@ -704,7 +704,15 @@ struct tileset_reader {
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}
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if (source.layers.size() != 0) {
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std::string ret = overzoom(source, parent_tile.z, parent_tile.x, parent_tile.y, tile.z, tile.x, tile.y, -1, buffer, std::set<std::string>(), false, &next_overzoomed_tiles, false, NULL, false, std::unordered_map<std::string, attribute_op>(), unidecode_data);
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std::vector<source_tile> tv;
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source_tile t;
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t.tile = std::move(source);
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t.z = parent_tile.z;
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t.x = parent_tile.x;
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t.y = parent_tile.y;
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tv.push_back(std::move(t));
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std::string ret = overzoom(tv, tile.z, tile.x, tile.y, -1, buffer, std::set<std::string>(), false, &next_overzoomed_tiles, false, NULL, false, std::unordered_map<std::string, attribute_op>(), unidecode_data);
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return ret;
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}
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