Consistent indent style with clang-format

This commit is contained in:
Eric Fischer
2015-06-03 11:22:13 -07:00
parent d9ff3f78fc
commit 8a1f0d83e1
14 changed files with 127 additions and 134 deletions
+4
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@@ -17,6 +17,7 @@ vector_tile.pb.cc vector_tile.pb.h: vector_tile.proto
PG= PG=
H = $(shell find . '(' -name '*.h' -o -name '*.hh' ')') H = $(shell find . '(' -name '*.h' -o -name '*.hh' ')')
C = $(shell find . '(' -name '*.c' -o -name '*.cc' ')')
INCLUDES = -I/usr/local/include INCLUDES = -I/usr/local/include
LIBS = -L/usr/local/lib LIBS = -L/usr/local/lib
@@ -42,3 +43,6 @@ libjsonpull.a: jsonpull.o
clean: clean:
rm tippecanoe *.o rm tippecanoe *.o
indent:
for i in $(C) $(H); do clang-format -i -style="{BasedOnStyle: Google, IndentWidth: 8, UseTab: Always, AllowShortIfStatementsOnASingleLine: false, ColumnLimit: 0, ContinuationIndentWidth: 8, SpaceAfterCStyleCast: true, IndentCaseLabels: false, AllowShortBlocksOnASingleLine: false, AllowShortFunctionsOnASingleLine: false}" $$i; done
+7 -9
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@@ -8,18 +8,16 @@
#include "vector_tile.pb.h" #include "vector_tile.pb.h"
extern "C" { extern "C" {
#include "projection.h" #include "projection.h"
} }
// https://github.com/mapbox/mapnik-vector-tile/blob/master/src/vector_tile_compression.hpp // https://github.com/mapbox/mapnik-vector-tile/blob/master/src/vector_tile_compression.hpp
inline bool is_compressed(std::string const& data) { inline bool is_compressed(std::string const &data) {
return data.size() > 2 && return data.size() > 2 && (((uint8_t) data[0] == 0x78 && (uint8_t) data[1] == 0x9C) || ((uint8_t) data[0] == 0x1F && (uint8_t) data[1] == 0x8B));
(((uint8_t)data[0] == 0x78 && (uint8_t)data[1] == 0x9C) ||
((uint8_t)data[0] == 0x1F && (uint8_t)data[1] == 0x8B));
} }
// https://github.com/mapbox/mapnik-vector-tile/blob/master/src/vector_tile_compression.hpp // https://github.com/mapbox/mapnik-vector-tile/blob/master/src/vector_tile_compression.hpp
inline int decompress(std::string const& input, std::string & output) { inline int decompress(std::string const &input, std::string &output) {
z_stream inflate_s; z_stream inflate_s;
inflate_s.zalloc = Z_NULL; inflate_s.zalloc = Z_NULL;
inflate_s.zfree = Z_NULL; inflate_s.zfree = Z_NULL;
@@ -29,13 +27,13 @@ inline int decompress(std::string const& input, std::string & output) {
if (inflateInit2(&inflate_s, 32 + 15) != Z_OK) { if (inflateInit2(&inflate_s, 32 + 15) != Z_OK) {
fprintf(stderr, "error: %s\n", inflate_s.msg); fprintf(stderr, "error: %s\n", inflate_s.msg);
} }
inflate_s.next_in = (Bytef *)input.data(); inflate_s.next_in = (Bytef *) input.data();
inflate_s.avail_in = input.size(); inflate_s.avail_in = input.size();
size_t length = 0; size_t length = 0;
do { do {
output.resize(length + 2 * input.size()); output.resize(length + 2 * input.size());
inflate_s.avail_out = 2 * input.size(); inflate_s.avail_out = 2 * input.size();
inflate_s.next_out = (Bytef *)(output.data() + length); inflate_s.next_out = (Bytef *) (output.data() + length);
int ret = inflate(&inflate_s, Z_FINISH); int ret = inflate(&inflate_s, Z_FINISH);
if (ret != Z_STREAM_END && ret != Z_OK && ret != Z_BUF_ERROR) { if (ret != Z_STREAM_END && ret != Z_OK && ret != Z_BUF_ERROR) {
fprintf(stderr, "error: %s\n", inflate_s.msg); fprintf(stderr, "error: %s\n", inflate_s.msg);
@@ -61,7 +59,7 @@ void handle(std::string message, int z, unsigned x, unsigned y) {
if (is_compressed(message)) { if (is_compressed(message)) {
std::string uncompressed; std::string uncompressed;
decompress(message,uncompressed); decompress(message, uncompressed);
if (!tile.ParseFromString(uncompressed)) { if (!tile.ParseFromString(uncompressed)) {
fprintf(stderr, "Couldn't decompress tile %d/%u/%u\n", z, x, y); fprintf(stderr, "Couldn't decompress tile %d/%u/%u\n", z, x, y);
exit(EXIT_FAILURE); exit(EXIT_FAILURE);
+1 -1
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@@ -43,7 +43,7 @@ void usage(char **argv) {
int main(int argc, char **argv) { int main(int argc, char **argv) {
extern int optind; extern int optind;
//extern char *optarg; // extern char *optarg;
int i; int i;
while ((i = getopt(argc, argv, "")) != -1) { while ((i = getopt(argc, argv, "")) != -1) {
+9 -22
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@@ -34,12 +34,7 @@ int min_detail = 7;
#define GEOM_TYPES 6 #define GEOM_TYPES 6
const char *geometry_names[GEOM_TYPES] = { const char *geometry_names[GEOM_TYPES] = {
"Point", "Point", "MultiPoint", "LineString", "MultiLineString", "Polygon", "MultiPolygon",
"MultiPoint",
"LineString",
"MultiLineString",
"Polygon",
"MultiPolygon",
}; };
int geometry_within[GEOM_TYPES] = { int geometry_within[GEOM_TYPES] = {
@@ -52,12 +47,7 @@ int geometry_within[GEOM_TYPES] = {
}; };
int mb_geometry[GEOM_TYPES] = { int mb_geometry[GEOM_TYPES] = {
VT_POINT, VT_POINT, VT_POINT, VT_LINE, VT_LINE, VT_POLYGON, VT_POLYGON,
VT_POINT,
VT_LINE,
VT_LINE,
VT_POLYGON,
VT_POLYGON,
}; };
size_t fwrite_check(const void *ptr, size_t size, size_t nitems, FILE *stream, const char *fname) { size_t fwrite_check(const void *ptr, size_t size, size_t nitems, FILE *stream, const char *fname) {
@@ -208,7 +198,7 @@ int traverse_zooms(int geomfd[4], off_t geom_size[4], char *metabase, unsigned *
char geomname[strlen(tmpdir) + strlen("/geom2.XXXXXXXX") + 1]; char geomname[strlen(tmpdir) + strlen("/geom2.XXXXXXXX") + 1];
sprintf(geomname, "%s/geom%d.XXXXXXXX", tmpdir, j); sprintf(geomname, "%s/geom%d.XXXXXXXX", tmpdir, j);
subfd[j] = mkstemp(geomname); subfd[j] = mkstemp(geomname);
//printf("%s\n", geomname); // printf("%s\n", geomname);
if (subfd[j] < 0) { if (subfd[j] < 0) {
perror(geomname); perror(geomname);
exit(EXIT_FAILURE); exit(EXIT_FAILURE);
@@ -413,7 +403,7 @@ int read_json(int argc, char **argv, char *fname, const char *layername, int max
unlink(geomname); unlink(geomname);
unlink(indexname); unlink(indexname);
unsigned file_bbox[] = { UINT_MAX, UINT_MAX, 0, 0 }; unsigned file_bbox[] = {UINT_MAX, UINT_MAX, 0, 0};
unsigned midx = 0, midy = 0; unsigned midx = 0, midy = 0;
long long seq = 0; long long seq = 0;
@@ -523,7 +513,7 @@ int read_json(int argc, char **argv, char *fname, const char *layername, int max
} }
{ {
unsigned bbox[] = { UINT_MAX, UINT_MAX, 0, 0 }; unsigned bbox[] = {UINT_MAX, UINT_MAX, 0, 0};
int nprop = 0; int nprop = 0;
if (properties->type == JSON_HASH) { if (properties->type == JSON_HASH) {
@@ -601,8 +591,7 @@ int read_json(int argc, char **argv, char *fname, const char *layername, int max
for (minzoom = 0; minzoom < 31; minzoom++) { for (minzoom = 0; minzoom < 31; minzoom++) {
unsigned mask = 1 << (32 - (minzoom + 1)); unsigned mask = 1 << (32 - (minzoom + 1));
if (((bbox[0] & mask) != (bbox[2] & mask)) || if (((bbox[0] & mask) != (bbox[2] & mask)) || ((bbox[1] & mask) != (bbox[3] & mask))) {
((bbox[1] & mask) != (bbox[3] & mask))) {
break; break;
} }
} }
@@ -611,7 +600,7 @@ int read_json(int argc, char **argv, char *fname, const char *layername, int max
if (r == 0) { if (r == 0) {
r = .00000001; r = .00000001;
} }
minzoom = maxzoom - floor(log(r) / - log(droprate)); minzoom = maxzoom - floor(log(r) / -log(droprate));
} }
serialize_byte(geomfile, minzoom, &geompos, fname); serialize_byte(geomfile, minzoom, &geompos, fname);
@@ -1042,14 +1031,12 @@ int main(int argc, char **argv) {
gamma = atof(optarg); gamma = atof(optarg);
break; break;
case 'p': case 'p': {
{
char *cp; char *cp;
for (cp = optarg; *cp != '\0'; cp++) { for (cp = optarg; *cp != '\0'; cp++) {
prevent[*cp & 0xFF] = 1; prevent[*cp & 0xFF] = 1;
} }
} } break;
break;
case 'v': case 'v':
fprintf(stderr, VERSION); fprintf(stderr, VERSION);
+8 -10
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@@ -12,9 +12,9 @@
#include "geometry.hh" #include "geometry.hh"
extern "C" { extern "C" {
#include "tile.h" #include "tile.h"
#include "clip.h" #include "clip.h"
#include "projection.h" #include "projection.h"
} }
drawvec decode_geometry(char **meta, int z, unsigned tx, unsigned ty, int detail, long long *bbox) { drawvec decode_geometry(char **meta, int z, unsigned tx, unsigned ty, int detail, long long *bbox) {
@@ -227,8 +227,8 @@ static draw get_line_intersection(draw p0, draw p1, draw p2, draw p3) {
double s2_y = p3.y - p2.y; double s2_y = p3.y - p2.y;
double t; double t;
//s = (-s1_y * (p0.x - p2.x) + s1_x * (p0.y - p2.y)) / (-s2_x * s1_y + s1_x * s2_y); // s = (-s1_y * (p0.x - p2.x) + s1_x * (p0.y - p2.y)) / (-s2_x * s1_y + s1_x * s2_y);
t = ( s2_x * (p0.y - p2.y) - s2_y * (p0.x - p2.x)) / (-s2_x * s1_y + s1_x * s2_y); t = (s2_x * (p0.y - p2.y) - s2_y * (p0.x - p2.x)) / (-s2_x * s1_y + s1_x * s2_y);
return draw(VT_LINETO, p0.x + (t * s1_x), p0.y + (t * s1_y)); return draw(VT_LINETO, p0.x + (t * s1_x), p0.y + (t * s1_y));
} }
@@ -369,7 +369,7 @@ drawvec reduce_tiny_poly(drawvec &geom, int z, int detail, bool *reduced, double
area = fabs(area / 2); area = fabs(area / 2);
if (area <= pixel * pixel) { if (area <= pixel * pixel) {
//printf("area is only %f vs %lld so using square\n", area, pixel * pixel); // printf("area is only %f vs %lld so using square\n", area, pixel * pixel);
*accum_area += area; *accum_area += area;
if (*accum_area > pixel * pixel) { if (*accum_area > pixel * pixel) {
@@ -384,7 +384,7 @@ drawvec reduce_tiny_poly(drawvec &geom, int z, int detail, bool *reduced, double
*accum_area -= pixel * pixel; *accum_area -= pixel * pixel;
} }
} else { } else {
//printf("area is %f so keeping instead of %lld\n", area, pixel * pixel); // printf("area is %f so keeping instead of %lld\n", area, pixel * pixel);
for (unsigned k = i; k <= j && k < geom.size(); k++) { for (unsigned k = i; k <= j && k < geom.size(); k++) {
out.push_back(geom[k]); out.push_back(geom[k]);
@@ -551,9 +551,7 @@ static void douglas_peucker(drawvec &geom, int start, int n, double e) {
// find index idx of element with max_distance // find index idx of element with max_distance
int i; int i;
for (i = first + 1; i < second; i++) { for (i = first + 1; i < second; i++) {
double temp_dist = square_distance_from_line(geom[start + i].x, geom[start + i].y, double temp_dist = square_distance_from_line(geom[start + i].x, geom[start + i].y, geom[start + first].x, geom[start + first].y, geom[start + second].x, geom[start + second].y);
geom[start + first].x, geom[start + first].y,
geom[start + second].x, geom[start + second].y);
double distance = fabs(temp_dist); double distance = fabs(temp_dist);
+2 -1
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@@ -10,7 +10,8 @@ struct draw {
this->y = y; this->y = y;
} }
draw() { } draw() {
}
}; };
typedef std::vector<draw> drawvec; typedef std::vector<draw> drawvec;
+2 -2
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@@ -254,7 +254,7 @@ again:
} }
if (j->container->expect != JSON_COMMA) { if (j->container->expect != JSON_COMMA) {
if (! (j->container->expect == JSON_ITEM && j->container->length == 0)) { if (!(j->container->expect == JSON_ITEM && j->container->length == 0)) {
j->error = "Found ] without final element"; j->error = "Found ] without final element";
return NULL; return NULL;
} }
@@ -292,7 +292,7 @@ again:
} }
if (j->container->expect != JSON_COMMA) { if (j->container->expect != JSON_COMMA) {
if (! (j->container->expect == JSON_KEY && j->container->length == 0)) { if (!(j->container->expect == JSON_KEY && j->container->length == 0)) {
j->error = "Found } without final element"; j->error = "Found } without final element";
return NULL; return NULL;
} }
+12 -3
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@@ -1,12 +1,21 @@
typedef enum json_type { typedef enum json_type {
// These types can be returned by json_read() // These types can be returned by json_read()
JSON_HASH, JSON_ARRAY, JSON_NUMBER, JSON_STRING, JSON_TRUE, JSON_FALSE, JSON_NULL, JSON_HASH,
JSON_ARRAY,
JSON_NUMBER,
JSON_STRING,
JSON_TRUE,
JSON_FALSE,
JSON_NULL,
// These and JSON_HASH and JSON_ARRAY can be called back by json_read_with_separators() // These and JSON_HASH and JSON_ARRAY can be called back by json_read_with_separators()
JSON_COMMA, JSON_COLON, JSON_COMMA,
JSON_COLON,
// These are only used internally as expectations of what comes next // These are only used internally as expectations of what comes next
JSON_ITEM, JSON_KEY, JSON_VALUE, JSON_ITEM,
JSON_KEY,
JSON_VALUE,
} json_type; } json_type;
typedef struct json_object { typedef struct json_object {
-1
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@@ -62,7 +62,6 @@ int is_pooled(struct pool *p, char *s, int type) {
return 0; return 0;
} }
struct pool_val *pool(struct pool *p, char *s, int type) { struct pool_val *pool(struct pool *p, char *s, int type) {
return pool1(p, s, type, strcmp); return pool1(p, s, type, strcmp);
} }
-1
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@@ -17,7 +17,6 @@ struct pool {
int n; int n;
}; };
struct pool_val *pool(struct pool *p, char *s, int type); struct pool_val *pool(struct pool *p, char *s, int type);
void pool_free(struct pool *p); void pool_free(struct pool *p);
void pool_free_strings(struct pool *p); void pool_free_strings(struct pool *p);
+1 -2
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@@ -7,7 +7,7 @@ void latlon2tile(double lat, double lon, int zoom, unsigned int *x, unsigned int
unsigned long long n = 1LL << zoom; unsigned long long n = 1LL << zoom;
long long llx = n * ((lon + 180) / 360); long long llx = n * ((lon + 180) / 360);
long long lly = n * (1 - (log(tan(lat_rad) + 1/cos(lat_rad)) / M_PI)) / 2; long long lly = n * (1 - (log(tan(lat_rad) + 1 / cos(lat_rad)) / M_PI)) / 2;
if (lat >= 85.0511) { if (lat >= 85.0511) {
lly = 0; lly = 0;
@@ -53,7 +53,6 @@ unsigned long long encode(unsigned int wx, unsigned int wy) {
out |= v; out |= v;
} }
return out; return out;
} }
+14 -15
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@@ -17,17 +17,17 @@
#include "geometry.hh" #include "geometry.hh"
extern "C" { extern "C" {
#include "tile.h" #include "tile.h"
#include "pool.h" #include "pool.h"
#include "clip.h" #include "clip.h"
#include "mbtiles.h" #include "mbtiles.h"
#include "projection.h" #include "projection.h"
} }
#define CMD_BITS 3 #define CMD_BITS 3
// https://github.com/mapbox/mapnik-vector-tile/blob/master/src/vector_tile_compression.hpp // https://github.com/mapbox/mapnik-vector-tile/blob/master/src/vector_tile_compression.hpp
static inline int compress(std::string const& input, std::string& output) { static inline int compress(std::string const &input, std::string &output) {
z_stream deflate_s; z_stream deflate_s;
deflate_s.zalloc = Z_NULL; deflate_s.zalloc = Z_NULL;
deflate_s.zfree = Z_NULL; deflate_s.zfree = Z_NULL;
@@ -35,14 +35,14 @@ static inline int compress(std::string const& input, std::string& output) {
deflate_s.avail_in = 0; deflate_s.avail_in = 0;
deflate_s.next_in = Z_NULL; deflate_s.next_in = Z_NULL;
deflateInit2(&deflate_s, Z_BEST_COMPRESSION, Z_DEFLATED, 31, 8, Z_DEFAULT_STRATEGY); deflateInit2(&deflate_s, Z_BEST_COMPRESSION, Z_DEFLATED, 31, 8, Z_DEFAULT_STRATEGY);
deflate_s.next_in = (Bytef *)input.data(); deflate_s.next_in = (Bytef *) input.data();
deflate_s.avail_in = input.size(); deflate_s.avail_in = input.size();
size_t length = 0; size_t length = 0;
do { do {
size_t increase = input.size() / 2 + 1024; size_t increase = input.size() / 2 + 1024;
output.resize(length + increase); output.resize(length + increase);
deflate_s.avail_out = increase; deflate_s.avail_out = increase;
deflate_s.next_out = (Bytef *)(output.data() + length); deflate_s.next_out = (Bytef *) (output.data() + length);
int ret = deflate(&deflate_s, Z_FINISH); int ret = deflate(&deflate_s, Z_FINISH);
if (ret != Z_STREAM_END && ret != Z_OK && ret != Z_BUF_ERROR) { if (ret != Z_STREAM_END && ret != Z_OK && ret != Z_BUF_ERROR) {
return -1; return -1;
@@ -129,7 +129,7 @@ struct coalesce {
char *metasrc; char *metasrc;
bool coalesced; bool coalesced;
bool operator< (const coalesce &o) const { bool operator<(const coalesce &o) const {
int cmp = coalindexcmp(this, &o); int cmp = coalindexcmp(this, &o);
if (cmp < 0) { if (cmp < 0) {
return true; return true;
@@ -275,7 +275,7 @@ struct sll {
char *name; char *name;
long long val; long long val;
bool operator< (const sll &o) const { bool operator<(const sll &o) const {
if (this->val < o.val) { if (this->val < o.val) {
return true; return true;
} else { } else {
@@ -372,7 +372,7 @@ long long write_tile(char **geoms, char *metabase, unsigned *file_bbox, int z, u
} }
long long count = 0; long long count = 0;
//long long along = 0; // long long along = 0;
double accum_area = 0; double accum_area = 0;
double interval = 0; double interval = 0;
@@ -392,8 +392,8 @@ long long write_tile(char **geoms, char *metabase, unsigned *file_bbox, int z, u
features.push_back(std::vector<coalesce>()); features.push_back(std::vector<coalesce>());
} }
int within[4] = { 0 }; int within[4] = {0};
long long geompos[4] = { 0 }; long long geompos[4] = {0};
*geoms = og; *geoms = og;
@@ -483,7 +483,7 @@ long long write_tile(char **geoms, char *metabase, unsigned *file_bbox, int z, u
sy = ty << (32 - z); sy = ty << (32 - z);
} }
//printf("type %d, meta %lld\n", t, metastart); // printf("type %d, meta %lld\n", t, metastart);
serialize_byte(geomfile[j], t, &geompos[j], fname); serialize_byte(geomfile[j], t, &geompos[j], fname);
serialize_byte(geomfile[j], layer, &geompos[j], fname); serialize_byte(geomfile[j], layer, &geompos[j], fname);
serialize_long_long(geomfile[j], metastart, &geompos[j], fname); serialize_long_long(geomfile[j], metastart, &geompos[j], fname);
@@ -710,4 +710,3 @@ long long write_tile(char **geoms, char *metabase, unsigned *file_bbox, int z, u
fprintf(stderr, "could not make tile %d/%u/%u small enough\n", z, tx, ty); fprintf(stderr, "could not make tile %d/%u/%u small enough\n", z, tx, ty);
return -1; return -1;
} }