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This was an extra level of attribute indirection (features point to metadata records which point to key and value strings) which was intended to reduce the size of temporary storage for features with large numbers of attributes that were also spread across large numbers of tiles at maxzoom. For other kinds of features, the extra indirection slowed things down instead, and, especially when maxzoom guessing was being used, many more features were having their metadata externalized than could actually benefit from it.
162 lines
4.7 KiB
C++
162 lines
4.7 KiB
C++
#ifndef SERIAL_HPP
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#define SERIAL_HPP
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#include <stddef.h>
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#include <stdio.h>
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#include <string.h>
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#include <vector>
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#include <atomic>
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#include <sys/stat.h>
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#include "geometry.hpp"
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#include "mbtiles.hpp"
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#include "jsonpull/jsonpull.h"
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size_t fwrite_check(const void *ptr, size_t size, size_t nitems, FILE *stream, const char *fname);
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void serialize_int(FILE *out, int n, std::atomic<long long> *fpos, const char *fname);
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void serialize_long_long(FILE *out, long long n, std::atomic<long long> *fpos, const char *fname);
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void serialize_ulong_long(FILE *out, unsigned long long n, std::atomic<long long> *fpos, const char *fname);
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void serialize_byte(FILE *out, signed char n, std::atomic<long long> *fpos, const char *fname);
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void serialize_uint(FILE *out, unsigned n, std::atomic<long long> *fpos, const char *fname);
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void serialize_string(FILE *out, const char *s, std::atomic<long long> *fpos, const char *fname);
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void deserialize_int(char **f, int *n);
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void deserialize_long_long(char **f, long long *n);
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void deserialize_ulong_long(char **f, unsigned long long *n);
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void deserialize_uint(char **f, unsigned *n);
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void deserialize_byte(char **f, signed char *n);
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int deserialize_int_io(FILE *f, int *n, std::atomic<long long> *geompos);
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int deserialize_long_long_io(FILE *f, long long *n, std::atomic<long long> *geompos);
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int deserialize_ulong_long_io(FILE *f, unsigned long long *n, std::atomic<long long> *geompos);
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int deserialize_uint_io(FILE *f, unsigned *n, std::atomic<long long> *geompos);
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int deserialize_byte_io(FILE *f, signed char *n, std::atomic<long long> *geompos);
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struct serial_val {
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int type = 0;
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std::string s = "";
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};
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struct serial_feature {
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long long layer = 0;
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int segment = 0;
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long long seq = 0;
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signed char t = 0;
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signed char feature_minzoom = 0;
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bool has_id = false;
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unsigned long long id = 0;
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bool has_tippecanoe_minzoom = false;
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int tippecanoe_minzoom = 0;
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bool has_tippecanoe_maxzoom = false;
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int tippecanoe_maxzoom = 0;
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drawvec geometry = drawvec();
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unsigned long long index = 0;
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unsigned long long label_point = 0;
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long long extent = 0;
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std::vector<long long> keys{};
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std::vector<long long> values{};
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// XXX This isn't serialized. Should it be here?
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long long bbox[4] = {0, 0, 0, 0};
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std::vector<std::string> full_keys{};
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std::vector<serial_val> full_values{};
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std::string layername = "";
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bool dropped = false;
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};
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void serialize_feature(FILE *geomfile, serial_feature *sf, std::atomic<long long> *geompos, const char *fname, long long wx, long long wy, bool include_minzoom);
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serial_feature deserialize_feature(FILE *geoms, std::atomic<long long> *geompos_in, unsigned z, unsigned tx, unsigned ty, unsigned *initial_x, unsigned *initial_y);
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struct reader {
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int poolfd = -1;
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int treefd = -1;
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int geomfd = -1;
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int indexfd = -1;
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struct memfile *poolfile = NULL;
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struct memfile *treefile = NULL;
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FILE *geomfile = NULL;
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FILE *indexfile = NULL;
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std::atomic<long long> geompos;
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std::atomic<long long> indexpos;
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long long file_bbox[4] = {0, 0, 0, 0};
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struct stat geomst {};
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char *geom_map = NULL;
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reader()
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: geompos(0), indexpos(0) {
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}
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reader(reader const &r) {
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poolfd = r.poolfd;
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treefd = r.treefd;
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geomfd = r.geomfd;
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indexfd = r.indexfd;
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poolfile = r.poolfile;
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treefile = r.treefile;
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geomfile = r.geomfile;
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indexfile = r.indexfile;
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long long p = r.geompos;
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geompos = p;
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p = r.indexpos;
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indexpos = p;
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memcpy(file_bbox, r.file_bbox, sizeof(file_bbox));
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geomst = r.geomst;
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geom_map = r.geom_map;
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}
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};
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struct serialization_state {
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const char *fname = NULL; // source file name
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int line = 0; // user-oriented location within source for error reports
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std::atomic<long long> *layer_seq = NULL; // sequence within current layer
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std::atomic<long long> *progress_seq = NULL; // overall sequence for progress indicator
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std::vector<struct reader> *readers = NULL; // array of data for each input thread
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int segment = 0; // the current input thread
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unsigned *initial_x = NULL; // relative offset of all geometries
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unsigned *initial_y = NULL;
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int *initialized = NULL;
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double *dist_sum = NULL; // running tally for calculation of resolution within features
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size_t *dist_count = NULL;
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double *area_sum = NULL;
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bool want_dist = false;
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int maxzoom = 0;
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int basezoom = 0;
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bool filters = false;
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bool uses_gamma = false;
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std::map<std::string, layermap_entry> *layermap = NULL;
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std::map<std::string, int> const *attribute_types = NULL;
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std::set<std::string> *exclude = NULL;
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std::set<std::string> *include = NULL;
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int exclude_all = 0;
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};
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int serialize_feature(struct serialization_state *sst, serial_feature &sf);
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void coerce_value(std::string const &key, int &vt, std::string &val, std::map<std::string, int> const *attribute_types);
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#endif
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