mirror of
https://github.com/mapbox/tippecanoe.git
synced 2025-01-22 04:18:01 +00:00
270 lines
6.4 KiB
C++
270 lines
6.4 KiB
C++
#include <stdio.h>
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#include <stdlib.h>
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#include <vector>
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#include <map>
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#include <string>
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#include "projection.hpp"
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#include "geometry.hpp"
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#include "mvt.hpp"
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#include "write_json.hpp"
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struct lonlat {
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int op;
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double lon;
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double lat;
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int x;
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int y;
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lonlat(int nop, double nlon, double nlat, int nx, int ny) {
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this->op = nop;
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this->lon = nlon;
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this->lat = nlat;
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this->x = nx;
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this->y = ny;
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}
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};
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void layer_to_geojson(FILE *fp, mvt_layer &layer, unsigned z, unsigned x, unsigned y) {
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for (size_t f = 0; f < layer.features.size(); f++) {
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mvt_feature &feat = layer.features[f];
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if (f != 0) {
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fprintf(fp, ",\n");
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}
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fprintf(fp, "{ \"type\": \"Feature\"");
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if (feat.has_id) {
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fprintf(fp, ", \"id\": %llu", feat.id);
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}
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fprintf(fp, ", \"properties\": { ");
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for (size_t t = 0; t + 1 < feat.tags.size(); t += 2) {
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if (t != 0) {
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fprintf(fp, ", ");
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}
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if (feat.tags[t] >= layer.keys.size()) {
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fprintf(stderr, "Error: out of bounds feature key\n");
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exit(EXIT_FAILURE);
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}
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if (feat.tags[t + 1] >= layer.values.size()) {
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fprintf(stderr, "Error: out of bounds feature value\n");
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exit(EXIT_FAILURE);
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}
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const char *key = layer.keys[feat.tags[t]].c_str();
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mvt_value const &val = layer.values[feat.tags[t + 1]];
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if (val.type == mvt_string) {
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fprintq(fp, key);
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fprintf(fp, ": ");
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fprintq(fp, val.string_value.c_str());
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} else if (val.type == mvt_int) {
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fprintq(fp, key);
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fprintf(fp, ": %lld", (long long) val.numeric_value.int_value);
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} else if (val.type == mvt_double) {
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fprintq(fp, key);
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double v = val.numeric_value.double_value;
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if (v == (long long) v) {
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fprintf(fp, ": %lld", (long long) v);
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} else {
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fprintf(fp, ": %g", v);
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}
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} else if (val.type == mvt_float) {
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fprintq(fp, key);
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double v = val.numeric_value.float_value;
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if (v == (long long) v) {
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fprintf(fp, ": %lld", (long long) v);
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} else {
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fprintf(fp, ": %g", v);
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}
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} else if (val.type == mvt_sint) {
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fprintq(fp, key);
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fprintf(fp, ": %lld", (long long) val.numeric_value.sint_value);
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} else if (val.type == mvt_uint) {
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fprintq(fp, key);
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fprintf(fp, ": %lld", (long long) val.numeric_value.uint_value);
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} else if (val.type == mvt_bool) {
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fprintq(fp, key);
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fprintf(fp, ": %s", val.numeric_value.bool_value ? "true" : "false");
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}
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}
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fprintf(fp, " }, \"geometry\": { ");
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std::vector<lonlat> ops;
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for (size_t g = 0; g < feat.geometry.size(); g++) {
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int op = feat.geometry[g].op;
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long long px = feat.geometry[g].x;
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long long py = feat.geometry[g].y;
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if (op == VT_MOVETO || op == VT_LINETO) {
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long long scale = 1LL << (32 - z);
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long long wx = scale * x + (scale / layer.extent) * px;
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long long wy = scale * y + (scale / layer.extent) * py;
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double lat, lon;
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projection->unproject(wx, wy, 32, &lon, &lat);
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ops.push_back(lonlat(op, lon, lat, px, py));
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} else {
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ops.push_back(lonlat(op, 0, 0, 0, 0));
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}
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}
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if (feat.type == VT_POINT) {
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if (ops.size() == 1) {
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fprintf(fp, "\"type\": \"Point\", \"coordinates\": [ %f, %f ]", ops[0].lon, ops[0].lat);
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} else {
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fprintf(fp, "\"type\": \"MultiPoint\", \"coordinates\": [ ");
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for (size_t i = 0; i < ops.size(); i++) {
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if (i != 0) {
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fprintf(fp, ", ");
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}
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fprintf(fp, "[ %f, %f ]", ops[i].lon, ops[i].lat);
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}
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fprintf(fp, " ]");
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}
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} else if (feat.type == VT_LINE) {
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int movetos = 0;
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for (size_t i = 0; i < ops.size(); i++) {
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if (ops[i].op == VT_MOVETO) {
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movetos++;
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}
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}
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if (movetos < 2) {
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fprintf(fp, "\"type\": \"LineString\", \"coordinates\": [ ");
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for (size_t i = 0; i < ops.size(); i++) {
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if (i != 0) {
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fprintf(fp, ", ");
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}
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fprintf(fp, "[ %f, %f ]", ops[i].lon, ops[i].lat);
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}
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fprintf(fp, " ]");
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} else {
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fprintf(fp, "\"type\": \"MultiLineString\", \"coordinates\": [ [ ");
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int state = 0;
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for (size_t i = 0; i < ops.size(); i++) {
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if (ops[i].op == VT_MOVETO) {
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if (state == 0) {
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fprintf(fp, "[ %f, %f ]", ops[i].lon, ops[i].lat);
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state = 1;
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} else {
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fprintf(fp, " ], [ ");
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fprintf(fp, "[ %f, %f ]", ops[i].lon, ops[i].lat);
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state = 1;
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}
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} else {
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fprintf(fp, ", [ %f, %f ]", ops[i].lon, ops[i].lat);
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}
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}
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fprintf(fp, " ] ]");
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}
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} else if (feat.type == VT_POLYGON) {
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std::vector<std::vector<lonlat> > rings;
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std::vector<double> areas;
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for (size_t i = 0; i < ops.size(); i++) {
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if (ops[i].op == VT_MOVETO) {
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rings.push_back(std::vector<lonlat>());
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areas.push_back(0);
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}
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int n = rings.size() - 1;
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if (n >= 0) {
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if (ops[i].op == VT_CLOSEPATH) {
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rings[n].push_back(rings[n][0]);
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} else {
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rings[n].push_back(ops[i]);
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}
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}
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}
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int outer = 0;
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for (size_t i = 0; i < rings.size(); i++) {
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long double area = 0;
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for (size_t k = 0; k < rings[i].size(); k++) {
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if (rings[i][k].op != VT_CLOSEPATH) {
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area += rings[i][k].x * rings[i][(k + 1) % rings[i].size()].y;
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area -= rings[i][k].y * rings[i][(k + 1) % rings[i].size()].x;
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}
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}
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areas[i] = area;
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if (areas[i] >= 0 || i == 0) {
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outer++;
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}
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// fprintf(fp, "area %f\n", area / .00000274 / .00000274);
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}
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if (outer > 1) {
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fprintf(fp, "\"type\": \"MultiPolygon\", \"coordinates\": [ [ [ ");
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} else {
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fprintf(fp, "\"type\": \"Polygon\", \"coordinates\": [ [ ");
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}
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int state = 0;
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for (size_t i = 0; i < rings.size(); i++) {
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if (areas[i] >= 0) {
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if (state != 0) {
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// new multipolygon
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fprintf(fp, " ] ], [ [ ");
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}
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state = 1;
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}
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if (state == 2) {
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// new ring in the same polygon
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fprintf(fp, " ], [ ");
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}
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for (size_t j = 0; j < rings[i].size(); j++) {
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if (rings[i][j].op != VT_CLOSEPATH) {
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if (j != 0) {
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fprintf(fp, ", ");
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}
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fprintf(fp, "[ %f, %f ]", rings[i][j].lon, rings[i][j].lat);
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} else {
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if (j != 0) {
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fprintf(fp, ", ");
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}
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fprintf(fp, "[ %f, %f ]", rings[i][0].lon, rings[i][0].lat);
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}
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}
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state = 2;
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}
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if (outer > 1) {
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fprintf(fp, " ] ] ]");
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} else {
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fprintf(fp, " ] ]");
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}
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}
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fprintf(fp, " } }\n");
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}
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}
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void fprintq(FILE *fp, const char *s) {
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fputc('"', fp);
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for (; *s; s++) {
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if (*s == '\\' || *s == '"') {
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fprintf(fp, "\\%c", *s);
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} else if (*s >= 0 && *s < ' ') {
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fprintf(fp, "\\u%04x", *s);
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} else {
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fputc(*s, fp);
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}
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}
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fputc('"', fp);
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}
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