Files
tippecanoe/mvt.hpp
T
Claude 13f1c3b6e4 Let tile-join and tippecanoe-overzoom write MLT tiles too
Both tools could read MapLibre Tiles but only ever wrote Mapbox Vector
Tiles, so there was no way to convert a tileset into MLT, or to keep a
tileset in MLT once it had been through either of them.

Give them the same --output-format, --pretessellate, and
--no-mlt-feature-sort options that tippecanoe has. tile-join writes the
chosen format to mbtiles files, PMTiles archives, and tile directories,
naming directory tiles and the tileset metadata format accordingly, and
tippecanoe-overzoom writes it to its output tile. Either tool will read
whichever format its sources are in regardless of what it is writing.

The output format selection and the MLT encoder options now live in
mlt.cpp, shared by all three tools rather than defined in main.cpp for
tippecanoe alone, along with encode_tile() for encoding a tile in the
selected format. overzoom() takes the format as a parameter, since
tile-join uses it internally to rescale tiles that will be re-encoded
afterward, and those intermediate tiles should stay MVT.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01LxhELiLtpUFwrPSWwTYdHG
2026-08-06 17:34:02 +00:00

253 lines
5.6 KiB
C++

#ifndef MVT_HPP
#define MVT_HPP
#include <sqlite3.h>
#include <string>
#include <string_view>
#include <unordered_map>
#include <set>
#include <vector>
#include <optional>
#include <memory>
#include <cmath>
#include "errors.hpp"
#include "text.hpp"
struct mvt_value;
struct mvt_layer;
// Which of the two vector tile encodings a tile is written in
#define OUTPUT_MVT 0
#define OUTPUT_MLT 1
enum mvt_operation {
mvt_moveto = 1,
mvt_lineto = 2,
mvt_closepath = 7
};
struct mvt_geometry {
long long x = 0;
long long y = 0;
int /* mvt_operation */ op = 0;
mvt_geometry(int op, long long x, long long y);
bool operator<(mvt_geometry const &s) const {
if (y < s.y || (y == s.y && x < s.x)) {
return true;
} else {
return false;
}
}
bool operator==(mvt_geometry const &s) const {
return y == s.y && x == s.x;
}
};
enum mvt_geometry_type {
mvt_point = 1,
mvt_linestring = 2,
mvt_polygon = 3
};
struct mvt_feature {
std::vector<unsigned> tags{};
std::vector<mvt_geometry> geometry{};
int /* mvt_geometry_type */ type = 0;
unsigned long long id = 0;
bool has_id = false;
int dropped = 0;
size_t seq = 0; // used for ordering in overzoom
mvt_feature() {
has_id = false;
id = 0;
}
};
enum mvt_value_type {
mvt_string,
mvt_float,
mvt_double,
mvt_int,
mvt_uint,
mvt_sint,
mvt_bool,
mvt_null,
mvt_no_such_key,
};
struct mvt_value;
double mvt_value_to_double(mvt_value const &v);
struct mvt_value {
long /* mvt_value_type */ type : 5;
long count : 64 - 5;
std::shared_ptr<std::string> s;
union {
float float_value;
double double_value;
long long int_value;
unsigned long long uint_value;
long long sint_value;
bool bool_value;
int null_value;
struct {
size_t off;
size_t len;
} string_value;
} numeric_value;
std::string get_string_value() const {
if (type == mvt_string) {
return std::string(*s, numeric_value.string_value.off, numeric_value.string_value.len);
} else {
return toString();
}
}
std::string_view get_string_view() const {
return std::string_view(s->c_str() + numeric_value.string_value.off, numeric_value.string_value.len);
}
const char *c_str() const {
return s->c_str() + numeric_value.string_value.off;
}
void set_string_value(const std::string_view &val) {
if (s == nullptr) {
s = std::make_shared<std::string>();
}
type = mvt_string;
numeric_value.string_value.off = s->size();
numeric_value.string_value.len = val.size();
s->append(val);
s->push_back('\0');
}
bool is_numeric() const {
return type == mvt_float ||
type == mvt_double ||
type == mvt_int ||
type == mvt_uint ||
type == mvt_sint;
}
double to_double() const {
return mvt_value_to_double(*this);
}
size_t get_count() const {
return count;
}
bool operator<(const mvt_value &o) const;
bool operator==(const mvt_value &o) const;
std::string toString() const;
mvt_value() {
this->type = mvt_double;
this->numeric_value.double_value = 0;
this->count = 0;
}
mvt_value(double v) {
this->type = mvt_double;
this->numeric_value.double_value = v;
this->count = 0;
}
void set_double_count(double v, size_t c) {
this->type = mvt_double;
this->numeric_value.double_value = v;
this->count = c;
}
};
template <>
struct std::hash<mvt_value> {
std::size_t operator()(const mvt_value &k) const {
switch (k.type) {
case mvt_string:
return fnv1a(k.c_str(), 0);
case mvt_float:
return fnv1a(sizeof(float), (void *) &k.numeric_value.float_value);
case mvt_double:
return fnv1a(sizeof(double), (void *) &k.numeric_value.double_value);
case mvt_int:
return fnv1a(sizeof(long long), (void *) &k.numeric_value.int_value);
case mvt_uint:
return fnv1a(sizeof(unsigned long long), (void *) &k.numeric_value.uint_value);
case mvt_sint:
return fnv1a(sizeof(long long), (void *) &k.numeric_value.sint_value);
case mvt_bool:
return fnv1a(sizeof(bool), (void *) &k.numeric_value.bool_value);
case mvt_null:
return fnv1a(sizeof(int), (void *) &k.numeric_value.null_value);
default:
fprintf(stderr, "mvt_value hash can't happen\n");
exit(EXIT_IMPOSSIBLE);
}
}
};
struct mvt_layer {
int version = 0;
std::string name = "";
std::vector<mvt_feature> features{};
std::vector<std::string> keys{};
std::vector<mvt_value> values{};
long long extent = 0;
// Add a key-value pair to a feature, using this layer's constant pool
void tag(mvt_feature &feature, std::string const &key, mvt_value const &value);
// For tracking the key-value constants already used in this layer
std::vector<ssize_t> key_dedup = std::vector<ssize_t>(65536, -1);
std::vector<ssize_t> value_dedup = std::vector<ssize_t>(65536, -1);
int detail() const {
return std::round(std::log(extent) / std::log(2));
}
};
struct mvt_tile {
std::vector<mvt_layer> layers{};
std::string encode();
bool decode(const std::string &message, bool &was_compressed);
};
bool is_compressed(std::string const &data);
int decompress(std::string const &input, std::string &output);
int compress(std::string const &input, std::string &output, bool gz);
int dezig(unsigned n);
mvt_value stringified_to_mvt_value(int type, const char *s, std::shared_ptr<std::string> const &tile_stringpool);
long long mvt_value_to_long_long(mvt_value const &v);
bool is_integer(const char *s, long long *v);
bool is_unsigned_integer(const char *s, unsigned long long *v);
struct serial_val;
serial_val mvt_value_to_serial_val(mvt_value const &v);
void get_bbox(std::vector<mvt_geometry> const &geom,
long long *xmin, long long *ymin, long long *xmax, long long *ymax,
int z, int tx, int ty, int detail);
#endif