mirror of
https://github.com/felt/tippecanoe.git
synced 2026-10-02 16:35:40 +02:00
Factoring out geometry parsing from feature parsing
This commit is contained in:
+131
-121
@@ -53,7 +53,7 @@ void json_context(json_object *j) {
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free(s); // stringify
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}
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void parse_geometry(int t, json_object *j, drawvec &out, int op, const char *fname, int line, json_object *feature) {
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void parse_coordinates(int t, json_object *j, drawvec &out, int op, const char *fname, int line, json_object *feature) {
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if (j == NULL || j->type != JSON_ARRAY) {
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fprintf(stderr, "%s:%d: expected array for geometry type %d: ", fname, line, t);
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json_context(feature);
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@@ -72,7 +72,7 @@ void parse_geometry(int t, json_object *j, drawvec &out, int op, const char *fna
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}
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}
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parse_geometry(within, j->value.array.array[i], out, op, fname, line, feature);
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parse_coordinates(within, j->value.array.array[i], out, op, fname, line, feature);
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}
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} else {
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if (j->value.array.length >= 2 && j->value.array.array[0]->type == JSON_NUMBER && j->value.array.array[1]->type == JSON_NUMBER) {
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@@ -178,6 +178,126 @@ static std::vector<mvt_geometry> to_feature(drawvec &geom) {
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return out;
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}
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std::pair<int, drawvec> parse_geometry(json_object *geometry, json_pull *jp, json_object *j,
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int z, int x, int y, int extent, bool fix_longitudes) {
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json_object *geometry_type = json_hash_get(geometry, "type");
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if (geometry_type == NULL) {
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fprintf(stderr, "Filter output:%d: null geometry (additional not reported): ", jp->line);
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json_context(j);
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exit(EXIT_JSON);
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}
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if (geometry_type->type != JSON_STRING) {
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fprintf(stderr, "Filter output:%d: geometry type is not a string: ", jp->line);
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json_context(j);
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exit(EXIT_JSON);
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}
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json_object *coordinates = json_hash_get(geometry, "coordinates");
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if (coordinates == NULL || coordinates->type != JSON_ARRAY) {
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fprintf(stderr, "Filter output:%d: geometry without coordinates array: ", jp->line);
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json_context(j);
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exit(EXIT_JSON);
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}
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int t;
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for (t = 0; t < GEOM_TYPES; t++) {
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if (strcmp(geometry_type->value.string.string, geometry_names[t]) == 0) {
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break;
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}
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}
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if (t >= GEOM_TYPES) {
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fprintf(stderr, "Filter output:%d: Can't handle geometry type %s: ", jp->line, geometry_type->value.string.string);
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json_context(j);
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exit(EXIT_JSON);
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}
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drawvec dv;
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parse_coordinates(t, coordinates, dv, VT_MOVETO, "Filter output", jp->line, j);
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// handle longitude wraparound
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//
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// this is supposed to be data for a single tile,
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// so any jump from the left hand side edge of the world
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// to the right edge, or vice versa, is unexpected,
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// so move it to the other side.
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if (fix_longitudes && mb_geometry[t] == VT_POLYGON) {
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const long long quarter_world = 1LL << 30;
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const long long world = 1LL << 32;
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bool copy_to_left = false;
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bool copy_to_right = false;
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for (size_t i = 0; i < dv.size(); i++) {
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// is this vertex on a different side of the world
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// than the first vertex? then shift this one to match
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if (i > 0) {
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if ((dv[0].x < quarter_world) && (dv[i].x > 3 * quarter_world)) {
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dv[i].x -= world;
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}
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if ((dv[0].x > 3 * quarter_world) && (dv[i].x < quarter_world)) {
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dv[i].x += world;
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}
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}
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// does it stick off the edge of the world?
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// then we need another copy on the other side of the world
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if (dv[i].x < 0) {
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copy_to_right = true;
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}
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if (dv[i].x > world) {
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copy_to_left = true;
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}
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}
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if (copy_to_left) {
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size_t n = dv.size();
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for (size_t i = 0; i < n; i++) {
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dv.emplace_back(dv[i].op, dv[i].x - world, (long long) dv[i].y);
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}
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}
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if (copy_to_right) {
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size_t n = dv.size();
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for (size_t i = 0; i < n; i++) {
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dv.emplace_back(dv[i].op, dv[i].x + world, (long long) dv[i].y);
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}
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}
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}
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if (mb_geometry[t] == VT_POLYGON) {
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dv = fix_polygon(dv, false, false);
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}
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// Offset and scale geometry from global to tile
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for (size_t i = 0; i < dv.size(); i++) {
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long long scale = 1LL << (32 - z);
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// offset to tile
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dv[i].x -= scale * x;
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dv[i].y -= scale * y;
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// scale to tile
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dv[i].x = std::round(dv[i].x * extent / (double) scale);
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dv[i].y = std::round(dv[i].y * extent / (double) scale);
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}
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if (mb_geometry[t] == VT_POLYGON) {
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// don't try scaling up because we may have coordinates
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// on the other side of the world
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dv = clean_or_clip_poly(dv, z, 256, true, false);
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if (dv.size() < 3) {
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dv.clear();
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}
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}
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dv = remove_noop(dv, mb_geometry[t], 0);
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if (mb_geometry[t] == VT_POLYGON) {
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dv = close_poly(dv);
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}
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return std::pair<int, drawvec>(t, dv);
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}
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std::vector<mvt_layer> parse_layers(FILE *fp, int z, unsigned x, unsigned y, int extent, bool fix_longitudes) {
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std::map<std::string, mvt_layer> ret;
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std::shared_ptr<std::string> tile_stringpool = std::make_shared<std::string>();
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@@ -208,14 +328,6 @@ std::vector<mvt_layer> parse_layers(FILE *fp, int z, unsigned x, unsigned y, int
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continue;
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}
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json_object *geometry = json_hash_get(j, "geometry");
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if (geometry == NULL) {
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fprintf(stderr, "Filter output:%d: filtered feature with no geometry: ", jp->line);
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json_context(j);
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json_free(j);
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exit(EXIT_JSON);
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}
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json_object *properties = json_hash_get(j, "properties");
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if (properties == NULL || (properties->type != JSON_HASH && properties->type != JSON_NULL)) {
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fprintf(stderr, "Filter output:%d: feature without properties hash: ", jp->line);
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@@ -224,38 +336,6 @@ std::vector<mvt_layer> parse_layers(FILE *fp, int z, unsigned x, unsigned y, int
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exit(EXIT_JSON);
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}
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json_object *geometry_type = json_hash_get(geometry, "type");
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if (geometry_type == NULL) {
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fprintf(stderr, "Filter output:%d: null geometry (additional not reported): ", jp->line);
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json_context(j);
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exit(EXIT_JSON);
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}
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if (geometry_type->type != JSON_STRING) {
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fprintf(stderr, "Filter output:%d: geometry type is not a string: ", jp->line);
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json_context(j);
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exit(EXIT_JSON);
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}
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json_object *coordinates = json_hash_get(geometry, "coordinates");
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if (coordinates == NULL || coordinates->type != JSON_ARRAY) {
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fprintf(stderr, "Filter output:%d: feature without coordinates array: ", jp->line);
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json_context(j);
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exit(EXIT_JSON);
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}
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int t;
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for (t = 0; t < GEOM_TYPES; t++) {
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if (strcmp(geometry_type->value.string.string, geometry_names[t]) == 0) {
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break;
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}
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}
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if (t >= GEOM_TYPES) {
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fprintf(stderr, "Filter output:%d: Can't handle geometry type %s: ", jp->line, geometry_type->value.string.string);
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json_context(j);
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exit(EXIT_JSON);
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}
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std::string layername = "unknown";
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json_object *tippecanoe = json_hash_get(j, "tippecanoe");
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json_object *layer = NULL;
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@@ -276,88 +356,18 @@ std::vector<mvt_layer> parse_layers(FILE *fp, int z, unsigned x, unsigned y, int
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}
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auto l = ret.find(layername);
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drawvec dv;
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parse_geometry(t, coordinates, dv, VT_MOVETO, "Filter output", jp->line, j);
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// handle longitude wraparound
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//
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// this is supposed to be data for a single tile,
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// so any jump from the left hand side edge of the world
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// to the right edge, or vice versa, is unexpected,
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// so move it to the other side.
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if (fix_longitudes && mb_geometry[t] == VT_POLYGON) {
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const long long quarter_world = 1LL << 30;
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const long long world = 1LL << 32;
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bool copy_to_left = false;
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bool copy_to_right = false;
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for (size_t i = 0; i < dv.size(); i++) {
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// is this vertex on a different side of the world
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// than the first vertex? then shift this one to match
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if (i > 0) {
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if ((dv[0].x < quarter_world) && (dv[i].x > 3 * quarter_world)) {
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dv[i].x -= world;
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}
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if ((dv[0].x > 3 * quarter_world) && (dv[i].x < quarter_world)) {
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dv[i].x += world;
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}
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}
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// does it stick off the edge of the world?
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// then we need another copy on the other side of the world
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if (dv[i].x < 0) {
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copy_to_right = true;
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}
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if (dv[i].x > world) {
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copy_to_left = true;
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}
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}
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if (copy_to_left) {
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size_t n = dv.size();
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for (size_t i = 0; i < n; i++) {
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dv.emplace_back(dv[i].op, dv[i].x - world, (long long) dv[i].y);
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}
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}
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if (copy_to_right) {
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size_t n = dv.size();
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for (size_t i = 0; i < n; i++) {
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dv.emplace_back(dv[i].op, dv[i].x + world, (long long) dv[i].y);
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}
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}
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json_object *geometry = json_hash_get(j, "geometry");
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if (geometry == NULL) {
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fprintf(stderr, "Filter output:%d: filtered feature with no geometry: ", jp->line);
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json_context(j);
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json_free(j);
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exit(EXIT_JSON);
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}
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if (mb_geometry[t] == VT_POLYGON) {
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dv = fix_polygon(dv, false, false);
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}
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std::pair<int, drawvec> parsed_geometry = parse_geometry(geometry, jp, j, z, x, y, extent, fix_longitudes);
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// Offset and scale geometry from global to tile
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for (size_t i = 0; i < dv.size(); i++) {
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long long scale = 1LL << (32 - z);
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// offset to tile
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dv[i].x -= scale * x;
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dv[i].y -= scale * y;
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// scale to tile
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dv[i].x = std::round(dv[i].x * extent / (double) scale);
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dv[i].y = std::round(dv[i].y * extent / (double) scale);
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}
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if (mb_geometry[t] == VT_POLYGON) {
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// don't try scaling up because we may have coordinates
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// on the other side of the world
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dv = clean_or_clip_poly(dv, z, 256, true, false);
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if (dv.size() < 3) {
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dv.clear();
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}
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}
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dv = remove_noop(dv, mb_geometry[t], 0);
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if (mb_geometry[t] == VT_POLYGON) {
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dv = close_poly(dv);
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}
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int t = parsed_geometry.first;
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drawvec &dv = parsed_geometry.second;
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if (dv.size() > 0) {
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mvt_feature feature;
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