278 #define STB_TRUETYPE_IMPLEMENTATION
281 unsigned char ttf_buffer[1<<20];
282 unsigned char temp_bitmap[512*512];
287 void my_stbtt_initfont(
void)
289 fread(ttf_buffer, 1, 1<<20, fopen(
"c:/windows/fonts/times.ttf",
"rb"));
292 glGenTextures(1, &ftex);
293 glBindTexture(GL_TEXTURE_2D, ftex);
294 glTexImage2D(GL_TEXTURE_2D, 0, GL_ALPHA, 512,512, 0, GL_ALPHA, GL_UNSIGNED_BYTE, temp_bitmap);
296 glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
299 void my_stbtt_print(
float x,
float y,
char *text)
303 glBlendFunc(GL_SRC_ALPHA, GL_ONE_MINUS_SRC_ALPHA);
304 glEnable(GL_TEXTURE_2D);
305 glBindTexture(GL_TEXTURE_2D, ftex);
308 if (*text >= 32 && *text < 128) {
311 glTexCoord2f(q.
s0,q.
t0); glVertex2f(q.
x0,q.
y0);
312 glTexCoord2f(q.
s1,q.
t0); glVertex2f(q.
x1,q.
y0);
313 glTexCoord2f(q.
s1,q.
t1); glVertex2f(q.
x1,q.
y1);
314 glTexCoord2f(q.
s0,q.
t1); glVertex2f(q.
x0,q.
y1);
329 #define STB_TRUETYPE_IMPLEMENTATION
332 char ttf_buffer[1<<25];
334 int main(
int argc,
char **argv)
337 unsigned char *bitmap;
338 int w,h,i,j,c = (argc > 1 ? atoi(argv[1]) :
'a'), s = (argc > 2 ? atoi(argv[2]) : 20);
340 fread(ttf_buffer, 1, 1<<25, fopen(argc > 3 ? argv[3] :
"c:/windows/fonts/arialbd.ttf",
"rb"));
345 for (j=0; j < h; ++j) {
346 for (i=0; i < w; ++i)
347 putchar(
" .:ioVM@"[bitmap[j*w+i]>>5]);
373 unsigned char screen[20][79];
375 int main(
int arg,
char **argv)
378 int i,j,ascent,baseline,ch=0;
380 char *text =
"Heljo World!";
382 fread(buffer, 1, 1000000, fopen(
"c:/windows/fonts/arialbd.ttf",
"rb"));
387 baseline = (int) (ascent*scale);
390 int advance,lsb,x0,y0,x1,y1;
391 float x_shift = xpos - (float) floor(xpos);
399 xpos += (advance * scale);
405 for (j=0; j < 20; ++j) {
406 for (i=0; i < 78; ++i)
407 putchar(
" .:ioVM@"[screen[j][i]>>5]);
425 #ifdef STB_TRUETYPE_IMPLEMENTATION
428 typedef unsigned char stbtt_uint8;
429 typedef signed char stbtt_int8;
430 typedef unsigned short stbtt_uint16;
431 typedef signed short stbtt_int16;
432 typedef unsigned int stbtt_uint32;
433 typedef signed int stbtt_int32;
436 typedef char stbtt__check_size32[
sizeof(stbtt_int32)==4 ? 1 : -1];
437 typedef char stbtt__check_size16[
sizeof(stbtt_int16)==2 ? 1 : -1];
442 #define STBTT_ifloor(x) ((int) floor(x))
443 #define STBTT_iceil(x) ((int) ceil(x))
448 #define STBTT_sqrt(x) sqrt(x)
449 #define STBTT_pow(x,y) pow(x,y)
454 #define STBTT_fmod(x,y) fmod(x,y)
459 #define STBTT_cos(x) cos(x)
460 #define STBTT_acos(x) acos(x)
465 #define STBTT_fabs(x) fabs(x)
471 #define STBTT_malloc(x,u) ((void)(u),malloc(x))
472 #define STBTT_free(x,u) ((void)(u),free(x))
477 #define STBTT_assert(x) assert(x)
482 #define STBTT_strlen(x) strlen(x)
487 #define STBTT_memcpy memcpy
488 #define STBTT_memset memset
499 #ifndef __STB_INCLUDE_STB_TRUETYPE_H__
500 #define __STB_INCLUDE_STB_TRUETYPE_H__
503 #define STBTT_DEF static
505 #define STBTT_DEF extern
529 unsigned short x0,y0,x1,y1;
535 unsigned char *pixels,
int pw,
int ph,
536 int first_char,
int num_chars,
551 float *xpos,
float *ypos,
553 int opengl_fillrule);
577 unsigned short x0,y0,x1,y1;
584 #ifndef STB_RECT_PACK_VERSION
602 #define STBTT_POINT_SIZE(x) (-(x))
605 int first_unicode_char_in_range,
int num_chars_in_range,
stbtt_packedchar *chardata_for_range);
659 float *xpos,
float *ypos,
661 int align_to_integer);
834 #define stbtt_vertex_type short
897 STBTT_DEF void stbtt_MakeCodepointBitmapSubpixelPrefilter(
const stbtt_fontinfo *info,
unsigned char *output,
int out_w,
int out_h,
int out_stride,
float scale_x,
float scale_y,
float shift_x,
float shift_y,
int oversample_x,
int oversample_y,
float *sub_x,
float *sub_y,
int codepoint);
918 STBTT_DEF void stbtt_MakeGlyphBitmapSubpixelPrefilter(
const stbtt_fontinfo *info,
unsigned char *output,
int out_w,
int out_h,
int out_stride,
float scale_x,
float scale_y,
float shift_x,
float shift_y,
int oversample_x,
int oversample_y,
float *sub_x,
float *sub_y,
int glyph);
932 float flatness_in_pixels,
935 float scale_x,
float scale_y,
936 float shift_x,
float shift_y,
937 int x_off,
int y_off,
1026 #define STBTT_MACSTYLE_DONTCARE 0
1027 #define STBTT_MACSTYLE_BOLD 1
1028 #define STBTT_MACSTYLE_ITALIC 2
1029 #define STBTT_MACSTYLE_UNDERSCORE 4
1030 #define STBTT_MACSTYLE_NONE 8
1106 #ifdef STB_TRUETYPE_IMPLEMENTATION
1108 #ifndef STBTT_MAX_OVERSAMPLE
1109 #define STBTT_MAX_OVERSAMPLE 8
1112 #if STBTT_MAX_OVERSAMPLE > 255
1113 #error "STBTT_MAX_OVERSAMPLE cannot be > 255"
1116 typedef int stbtt__test_oversample_pow2[(STBTT_MAX_OVERSAMPLE & (STBTT_MAX_OVERSAMPLE-1)) == 0 ? 1 : -1];
1118 #ifndef STBTT_RASTERIZER_VERSION
1119 #define STBTT_RASTERIZER_VERSION 2
1123 #define STBTT__NOTUSED(v) (void)(v)
1125 #define STBTT__NOTUSED(v) (void)sizeof(v)
1133 static stbtt_uint8 stbtt__buf_get8(
stbtt__buf *b)
1140 static stbtt_uint8 stbtt__buf_peek8(
stbtt__buf *b)
1147 static void stbtt__buf_seek(
stbtt__buf *b,
int o)
1149 STBTT_assert(!(o > b->
size || o < 0));
1153 static void stbtt__buf_skip(
stbtt__buf *b,
int o)
1155 stbtt__buf_seek(b, b->
cursor + o);
1158 static stbtt_uint32 stbtt__buf_get(
stbtt__buf *b,
int n)
1162 STBTT_assert(n >= 1 && n <= 4);
1163 for (i = 0; i < n; i++)
1164 v = (v << 8) | stbtt__buf_get8(b);
1168 static stbtt__buf stbtt__new_buf(
const void *p,
size_t size)
1171 STBTT_assert(size < 0x40000000);
1172 r.
data = (stbtt_uint8*) p;
1173 r.
size = (int) size;
1178 #define stbtt__buf_get16(b) stbtt__buf_get((b), 2)
1179 #define stbtt__buf_get32(b) stbtt__buf_get((b), 4)
1184 if (o < 0 || s < 0 || o > b->
size || s > b->
size - o)
return r;
1192 int count, start, offsize;
1194 count = stbtt__buf_get16(b);
1196 offsize = stbtt__buf_get8(b);
1197 STBTT_assert(offsize >= 1 && offsize <= 4);
1198 stbtt__buf_skip(b, offsize * count);
1199 stbtt__buf_skip(b, stbtt__buf_get(b, offsize) - 1);
1201 return stbtt__buf_range(b, start, b->
cursor - start);
1204 static stbtt_uint32 stbtt__cff_int(
stbtt__buf *b)
1206 int b0 = stbtt__buf_get8(b);
1207 if (b0 >= 32 && b0 <= 246)
return b0 - 139;
1208 else if (b0 >= 247 && b0 <= 250)
return (b0 - 247)*256 + stbtt__buf_get8(b) + 108;
1209 else if (b0 >= 251 && b0 <= 254)
return -(b0 - 251)*256 - stbtt__buf_get8(b) - 108;
1210 else if (b0 == 28)
return stbtt__buf_get16(b);
1211 else if (b0 == 29)
return stbtt__buf_get32(b);
1216 static void stbtt__cff_skip_operand(
stbtt__buf *b) {
1217 int v, b0 = stbtt__buf_peek8(b);
1218 STBTT_assert(b0 >= 28);
1220 stbtt__buf_skip(b, 1);
1222 v = stbtt__buf_get8(b);
1223 if ((v & 0xF) == 0xF || (v >> 4) == 0xF)
1233 stbtt__buf_seek(b, 0);
1235 int start = b->
cursor, end, op;
1236 while (stbtt__buf_peek8(b) >= 28)
1237 stbtt__cff_skip_operand(b);
1239 op = stbtt__buf_get8(b);
1240 if (op == 12) op = stbtt__buf_get8(b) | 0x100;
1241 if (op == key)
return stbtt__buf_range(b, start, end-start);
1243 return stbtt__buf_range(b, 0, 0);
1246 static void stbtt__dict_get_ints(
stbtt__buf *b,
int key,
int outcount, stbtt_uint32 *out)
1249 stbtt__buf operands = stbtt__dict_get(b, key);
1250 for (i = 0; i < outcount && operands.
cursor < operands.
size; i++)
1251 out[i] = stbtt__cff_int(&operands);
1254 static int stbtt__cff_index_count(
stbtt__buf *b)
1256 stbtt__buf_seek(b, 0);
1257 return stbtt__buf_get16(b);
1262 int count, offsize, start, end;
1263 stbtt__buf_seek(&b, 0);
1264 count = stbtt__buf_get16(&b);
1265 offsize = stbtt__buf_get8(&b);
1266 STBTT_assert(i >= 0 && i < count);
1267 STBTT_assert(offsize >= 1 && offsize <= 4);
1268 stbtt__buf_skip(&b, i*offsize);
1269 start = stbtt__buf_get(&b, offsize);
1270 end = stbtt__buf_get(&b, offsize);
1271 return stbtt__buf_range(&b, 2+(count+1)*offsize+start, end - start);
1282 #define ttBYTE(p) (* (stbtt_uint8 *) (p))
1283 #define ttCHAR(p) (* (stbtt_int8 *) (p))
1284 #define ttFixed(p) ttLONG(p)
1286 static stbtt_uint16 ttUSHORT(stbtt_uint8 *p) {
return p[0]*256 + p[1]; }
1287 static stbtt_int16 ttSHORT(stbtt_uint8 *p) {
return p[0]*256 + p[1]; }
1288 static stbtt_uint32 ttULONG(stbtt_uint8 *p) {
return (p[0]<<24) + (p[1]<<16) + (p[2]<<8) + p[3]; }
1289 static stbtt_int32 ttLONG(stbtt_uint8 *p) {
return (p[0]<<24) + (p[1]<<16) + (p[2]<<8) + p[3]; }
1291 #define stbtt_tag4(p,c0,c1,c2,c3) ((p)[0] == (c0) && (p)[1] == (c1) && (p)[2] == (c2) && (p)[3] == (c3))
1292 #define stbtt_tag(p,str) stbtt_tag4(p,str[0],str[1],str[2],str[3])
1294 static int stbtt__isfont(stbtt_uint8 *font)
1297 if (stbtt_tag4(font,
'1',0,0,0))
return 1;
1298 if (stbtt_tag(font,
"typ1"))
return 1;
1299 if (stbtt_tag(font,
"OTTO"))
return 1;
1300 if (stbtt_tag4(font, 0,1,0,0))
return 1;
1301 if (stbtt_tag(font,
"true"))
return 1;
1306 static stbtt_uint32 stbtt__find_table(stbtt_uint8 *data, stbtt_uint32 fontstart,
const char *tag)
1308 stbtt_int32 num_tables = ttUSHORT(data+fontstart+4);
1309 stbtt_uint32 tabledir = fontstart + 12;
1311 for (i=0; i < num_tables; ++i) {
1312 stbtt_uint32 loc = tabledir + 16*i;
1313 if (stbtt_tag(data+loc+0, tag))
1314 return ttULONG(data+loc+8);
1319 static int stbtt_GetFontOffsetForIndex_internal(
unsigned char *font_collection,
int index)
1322 if (stbtt__isfont(font_collection))
1323 return index == 0 ? 0 : -1;
1326 if (stbtt_tag(font_collection,
"ttcf")) {
1328 if (ttULONG(font_collection+4) == 0x00010000 || ttULONG(font_collection+4) == 0x00020000) {
1329 stbtt_int32 n = ttLONG(font_collection+8);
1332 return ttULONG(font_collection+12+index*4);
1338 static int stbtt_GetNumberOfFonts_internal(
unsigned char *font_collection)
1341 if (stbtt__isfont(font_collection))
1345 if (stbtt_tag(font_collection,
"ttcf")) {
1347 if (ttULONG(font_collection+4) == 0x00010000 || ttULONG(font_collection+4) == 0x00020000) {
1348 return ttLONG(font_collection+8);
1356 stbtt_uint32 subrsoff = 0, private_loc[2] = { 0, 0 };
1358 stbtt__dict_get_ints(&fontdict, 18, 2, private_loc);
1359 if (!private_loc[1] || !private_loc[0])
return stbtt__new_buf(NULL, 0);
1360 pdict = stbtt__buf_range(&cff, private_loc[1], private_loc[0]);
1361 stbtt__dict_get_ints(&pdict, 19, 1, &subrsoff);
1362 if (!subrsoff)
return stbtt__new_buf(NULL, 0);
1363 stbtt__buf_seek(&cff, private_loc[1]+subrsoff);
1364 return stbtt__cff_get_index(&cff);
1371 if (info->
svg < 0) {
1374 stbtt_uint32 offset = ttULONG(info->
data + t + 2);
1375 info->
svg = t + offset;
1383 static int stbtt_InitFont_internal(
stbtt_fontinfo *info,
unsigned char *data,
int fontstart)
1385 stbtt_uint32 cmap, t;
1386 stbtt_int32 i,numTables;
1390 info->
cff = stbtt__new_buf(NULL, 0);
1392 cmap = stbtt__find_table(data, fontstart,
"cmap");
1393 info->
loca = stbtt__find_table(data, fontstart,
"loca");
1394 info->
head = stbtt__find_table(data, fontstart,
"head");
1395 info->
glyf = stbtt__find_table(data, fontstart,
"glyf");
1396 info->
hhea = stbtt__find_table(data, fontstart,
"hhea");
1397 info->
hmtx = stbtt__find_table(data, fontstart,
"hmtx");
1398 info->
kern = stbtt__find_table(data, fontstart,
"kern");
1399 info->
gpos = stbtt__find_table(data, fontstart,
"GPOS");
1401 if (!cmap || !info->
head || !info->
hhea || !info->
hmtx)
1405 if (!info->
loca)
return 0;
1409 stbtt_uint32 cstype = 2, charstrings = 0, fdarrayoff = 0, fdselectoff = 0;
1412 cff = stbtt__find_table(data, fontstart,
"CFF ");
1415 info->
fontdicts = stbtt__new_buf(NULL, 0);
1416 info->
fdselect = stbtt__new_buf(NULL, 0);
1419 info->
cff = stbtt__new_buf(data+cff, 512*1024*1024);
1423 stbtt__buf_skip(&b, 2);
1424 stbtt__buf_seek(&b, stbtt__buf_get8(&b));
1428 stbtt__cff_get_index(&b);
1429 topdictidx = stbtt__cff_get_index(&b);
1430 topdict = stbtt__cff_index_get(topdictidx, 0);
1431 stbtt__cff_get_index(&b);
1432 info->
gsubrs = stbtt__cff_get_index(&b);
1434 stbtt__dict_get_ints(&topdict, 17, 1, &charstrings);
1435 stbtt__dict_get_ints(&topdict, 0x100 | 6, 1, &cstype);
1436 stbtt__dict_get_ints(&topdict, 0x100 | 36, 1, &fdarrayoff);
1437 stbtt__dict_get_ints(&topdict, 0x100 | 37, 1, &fdselectoff);
1438 info->
subrs = stbtt__get_subrs(b, topdict);
1441 if (cstype != 2)
return 0;
1442 if (charstrings == 0)
return 0;
1446 if (!fdselectoff)
return 0;
1447 stbtt__buf_seek(&b, fdarrayoff);
1448 info->
fontdicts = stbtt__cff_get_index(&b);
1449 info->
fdselect = stbtt__buf_range(&b, fdselectoff, b.
size-fdselectoff);
1452 stbtt__buf_seek(&b, charstrings);
1456 t = stbtt__find_table(data, fontstart,
"maxp");
1467 numTables = ttUSHORT(data + cmap + 2);
1469 for (i=0; i < numTables; ++i) {
1470 stbtt_uint32 encoding_record = cmap + 4 + 8 * i;
1472 switch(ttUSHORT(data+encoding_record)) {
1474 switch (ttUSHORT(data+encoding_record+2)) {
1478 info->
index_map = cmap + ttULONG(data+encoding_record+4);
1485 info->
index_map = cmap + ttULONG(data+encoding_record+4);
1498 stbtt_uint8 *data = info->
data;
1499 stbtt_uint32 index_map = info->
index_map;
1501 stbtt_uint16 format = ttUSHORT(data + index_map + 0);
1503 stbtt_int32 bytes = ttUSHORT(data + index_map + 2);
1504 if (unicode_codepoint < bytes-6)
1505 return ttBYTE(data + index_map + 6 + unicode_codepoint);
1507 }
else if (format == 6) {
1508 stbtt_uint32 first = ttUSHORT(data + index_map + 6);
1509 stbtt_uint32 count = ttUSHORT(data + index_map + 8);
1510 if ((stbtt_uint32) unicode_codepoint >= first && (stbtt_uint32) unicode_codepoint < first+count)
1511 return ttUSHORT(data + index_map + 10 + (unicode_codepoint - first)*2);
1513 }
else if (format == 2) {
1516 }
else if (format == 4) {
1517 stbtt_uint16 segcount = ttUSHORT(data+index_map+6) >> 1;
1518 stbtt_uint16 searchRange = ttUSHORT(data+index_map+8) >> 1;
1519 stbtt_uint16 entrySelector = ttUSHORT(data+index_map+10);
1520 stbtt_uint16 rangeShift = ttUSHORT(data+index_map+12) >> 1;
1523 stbtt_uint32 endCount = index_map + 14;
1524 stbtt_uint32 search = endCount;
1526 if (unicode_codepoint > 0xffff)
1531 if (unicode_codepoint >= ttUSHORT(data + search + rangeShift*2))
1532 search += rangeShift*2;
1536 while (entrySelector) {
1539 end = ttUSHORT(data + search + searchRange*2);
1540 if (unicode_codepoint > end)
1541 search += searchRange*2;
1547 stbtt_uint16 offset, start, last;
1548 stbtt_uint16 item = (stbtt_uint16) ((search - endCount) >> 1);
1550 start = ttUSHORT(data + index_map + 14 + segcount*2 + 2 + 2*item);
1551 last = ttUSHORT(data + endCount + 2*item);
1552 if (unicode_codepoint < start || unicode_codepoint > last)
1555 offset = ttUSHORT(data + index_map + 14 + segcount*6 + 2 + 2*item);
1557 return (stbtt_uint16) (unicode_codepoint + ttSHORT(data + index_map + 14 + segcount*4 + 2 + 2*item));
1559 return ttUSHORT(data + offset + (unicode_codepoint-start)*2 + index_map + 14 + segcount*6 + 2 + 2*item);
1561 }
else if (format == 12 || format == 13) {
1562 stbtt_uint32 ngroups = ttULONG(data+index_map+12);
1563 stbtt_int32 low,high;
1564 low = 0; high = (stbtt_int32)ngroups;
1566 while (low < high) {
1567 stbtt_int32 mid = low + ((high-low) >> 1);
1568 stbtt_uint32 start_char = ttULONG(data+index_map+16+mid*12);
1569 stbtt_uint32 end_char = ttULONG(data+index_map+16+mid*12+4);
1570 if ((stbtt_uint32) unicode_codepoint < start_char)
1572 else if ((stbtt_uint32) unicode_codepoint > end_char)
1575 stbtt_uint32 start_glyph = ttULONG(data+index_map+16+mid*12+8);
1577 return start_glyph + unicode_codepoint-start_char;
1594 static void stbtt_setvertex(
stbtt_vertex *v, stbtt_uint8 type, stbtt_int32 x, stbtt_int32 y, stbtt_int32 cx, stbtt_int32 cy)
1597 v->
x = (stbtt_int16) x;
1598 v->
y = (stbtt_int16) y;
1599 v->
cx = (stbtt_int16) cx;
1600 v->
cy = (stbtt_int16) cy;
1603 static int stbtt__GetGlyfOffset(
const stbtt_fontinfo *info,
int glyph_index)
1607 STBTT_assert(!info->
cff.
size);
1609 if (glyph_index >= info->
numGlyphs)
return -1;
1613 g1 = info->
glyf + ttUSHORT(info->
data + info->
loca + glyph_index * 2) * 2;
1614 g2 = info->
glyf + ttUSHORT(info->
data + info->
loca + glyph_index * 2 + 2) * 2;
1616 g1 = info->
glyf + ttULONG (info->
data + info->
loca + glyph_index * 4);
1617 g2 = info->
glyf + ttULONG (info->
data + info->
loca + glyph_index * 4 + 4);
1620 return g1==g2 ? -1 : g1;
1623 static int stbtt__GetGlyphInfoT2(
const stbtt_fontinfo *info,
int glyph_index,
int *x0,
int *y0,
int *x1,
int *y1);
1628 stbtt__GetGlyphInfoT2(info, glyph_index, x0, y0, x1, y1);
1630 int g = stbtt__GetGlyfOffset(info, glyph_index);
1631 if (g < 0)
return 0;
1633 if (x0) *x0 = ttSHORT(info->
data + g + 2);
1634 if (y0) *y0 = ttSHORT(info->
data + g + 4);
1635 if (x1) *x1 = ttSHORT(info->
data + g + 6);
1636 if (y1) *y1 = ttSHORT(info->
data + g + 8);
1648 stbtt_int16 numberOfContours;
1651 return stbtt__GetGlyphInfoT2(info, glyph_index, NULL, NULL, NULL, NULL) == 0;
1652 g = stbtt__GetGlyfOffset(info, glyph_index);
1653 if (g < 0)
return 1;
1654 numberOfContours = ttSHORT(info->
data + g);
1655 return numberOfContours == 0;
1658 static int stbtt__close_shape(
stbtt_vertex *vertices,
int num_vertices,
int was_off,
int start_off,
1659 stbtt_int32 sx, stbtt_int32 sy, stbtt_int32 scx, stbtt_int32 scy, stbtt_int32 cx, stbtt_int32 cy)
1663 stbtt_setvertex(&vertices[num_vertices++],
STBTT_vcurve, (cx+scx)>>1, (cy+scy)>>1, cx,cy);
1664 stbtt_setvertex(&vertices[num_vertices++],
STBTT_vcurve, sx,sy,scx,scy);
1667 stbtt_setvertex(&vertices[num_vertices++],
STBTT_vcurve,sx,sy,cx,cy);
1669 stbtt_setvertex(&vertices[num_vertices++],
STBTT_vline,sx,sy,0,0);
1671 return num_vertices;
1676 stbtt_int16 numberOfContours;
1677 stbtt_uint8 *endPtsOfContours;
1678 stbtt_uint8 *data = info->
data;
1681 int g = stbtt__GetGlyfOffset(info, glyph_index);
1685 if (g < 0)
return 0;
1687 numberOfContours = ttSHORT(data + g);
1689 if (numberOfContours > 0) {
1690 stbtt_uint8 flags=0,flagcount;
1691 stbtt_int32 ins, i,j=0,m,n, next_move, was_off=0, off, start_off=0;
1692 stbtt_int32 x,y,cx,cy,sx,sy, scx,scy;
1693 stbtt_uint8 *points;
1694 endPtsOfContours = (data + g + 10);
1695 ins = ttUSHORT(data + g + 10 + numberOfContours * 2);
1696 points = data + g + 10 + numberOfContours * 2 + 2 + ins;
1698 n = 1+ttUSHORT(endPtsOfContours + numberOfContours*2-2);
1700 m = n + 2*numberOfContours;
1716 for (i=0; i < n; ++i) {
1717 if (flagcount == 0) {
1720 flagcount = *points++;
1723 vertices[off+i].
type = flags;
1728 for (i=0; i < n; ++i) {
1729 flags = vertices[off+i].
type;
1731 stbtt_int16 dx = *points++;
1732 x += (flags & 16) ? dx : -dx;
1734 if (!(flags & 16)) {
1735 x = x + (stbtt_int16) (points[0]*256 + points[1]);
1739 vertices[off+i].
x = (stbtt_int16) x;
1744 for (i=0; i < n; ++i) {
1745 flags = vertices[off+i].
type;
1747 stbtt_int16 dy = *points++;
1748 y += (flags & 32) ? dy : -dy;
1750 if (!(flags & 32)) {
1751 y = y + (stbtt_int16) (points[0]*256 + points[1]);
1755 vertices[off+i].
y = (stbtt_int16) y;
1760 sx = sy = cx = cy = scx = scy = 0;
1761 for (i=0; i < n; ++i) {
1762 flags = vertices[off+i].
type;
1763 x = (stbtt_int16) vertices[off+i].x;
1764 y = (stbtt_int16) vertices[off+i].y;
1766 if (next_move == i) {
1768 num_vertices = stbtt__close_shape(vertices, num_vertices, was_off, start_off, sx,sy,scx,scy,cx,cy);
1771 start_off = !(flags & 1);
1777 if (!(vertices[off+i+1].type & 1)) {
1779 sx = (x + (stbtt_int32) vertices[off+i+1].x) >> 1;
1780 sy = (y + (stbtt_int32) vertices[off+i+1].y) >> 1;
1783 sx = (stbtt_int32) vertices[off+i+1].x;
1784 sy = (stbtt_int32) vertices[off+i+1].y;
1791 stbtt_setvertex(&vertices[num_vertices++],
STBTT_vmove,sx,sy,0,0);
1793 next_move = 1 + ttUSHORT(endPtsOfContours+j*2);
1798 stbtt_setvertex(&vertices[num_vertices++],
STBTT_vcurve, (cx+x)>>1, (cy+y)>>1, cx, cy);
1804 stbtt_setvertex(&vertices[num_vertices++],
STBTT_vcurve, x,y, cx, cy);
1806 stbtt_setvertex(&vertices[num_vertices++],
STBTT_vline, x,y,0,0);
1811 num_vertices = stbtt__close_shape(vertices, num_vertices, was_off, start_off, sx,sy,scx,scy,cx,cy);
1812 }
else if (numberOfContours < 0) {
1815 stbtt_uint8 *comp = data + g + 10;
1819 stbtt_uint16 flags, gidx;
1820 int comp_num_verts = 0, i;
1822 float mtx[6] = {1,0,0,1,0,0}, m, n;
1824 flags = ttSHORT(comp); comp+=2;
1825 gidx = ttSHORT(comp); comp+=2;
1829 mtx[4] = ttSHORT(comp); comp+=2;
1830 mtx[5] = ttSHORT(comp); comp+=2;
1832 mtx[4] = ttCHAR(comp); comp+=1;
1833 mtx[5] = ttCHAR(comp); comp+=1;
1840 if (flags & (1<<3)) {
1841 mtx[0] = mtx[3] = ttSHORT(comp)/16384.0f; comp+=2;
1842 mtx[1] = mtx[2] = 0;
1843 }
else if (flags & (1<<6)) {
1844 mtx[0] = ttSHORT(comp)/16384.0f; comp+=2;
1845 mtx[1] = mtx[2] = 0;
1846 mtx[3] = ttSHORT(comp)/16384.0f; comp+=2;
1847 }
else if (flags & (1<<7)) {
1848 mtx[0] = ttSHORT(comp)/16384.0f; comp+=2;
1849 mtx[1] = ttSHORT(comp)/16384.0f; comp+=2;
1850 mtx[2] = ttSHORT(comp)/16384.0f; comp+=2;
1851 mtx[3] = ttSHORT(comp)/16384.0f; comp+=2;
1855 m = (float) STBTT_sqrt(mtx[0]*mtx[0] + mtx[1]*mtx[1]);
1856 n = (float) STBTT_sqrt(mtx[2]*mtx[2] + mtx[3]*mtx[3]);
1860 if (comp_num_verts > 0) {
1862 for (i = 0; i < comp_num_verts; ++i) {
1875 if (vertices) STBTT_free(vertices, info->
userdata);
1876 if (comp_verts) STBTT_free(comp_verts, info->
userdata);
1879 if (num_vertices > 0 && vertices) STBTT_memcpy(tmp, vertices, num_vertices*
sizeof(
stbtt_vertex));
1880 STBTT_memcpy(tmp+num_vertices, comp_verts, comp_num_verts*
sizeof(
stbtt_vertex));
1881 if (vertices) STBTT_free(vertices, info->
userdata);
1883 STBTT_free(comp_verts, info->
userdata);
1884 num_vertices += comp_num_verts;
1887 more = flags & (1<<5);
1893 *pvertices = vertices;
1894 return num_vertices;
1901 float first_x, first_y;
1903 stbtt_int32 min_x, max_x, min_y, max_y;
1909 #define STBTT__CSCTX_INIT(bounds) {bounds,0, 0,0, 0,0, 0,0,0,0, NULL, 0}
1911 static void stbtt__track_vertex(stbtt__csctx *c, stbtt_int32 x, stbtt_int32 y)
1913 if (x > c->max_x || !c->started) c->max_x = x;
1914 if (y > c->max_y || !c->started) c->max_y = y;
1915 if (x < c->min_x || !c->started) c->min_x = x;
1916 if (y < c->min_y || !c->started) c->min_y = y;
1920 static void stbtt__csctx_v(stbtt__csctx *c, stbtt_uint8 type, stbtt_int32 x, stbtt_int32 y, stbtt_int32 cx, stbtt_int32 cy, stbtt_int32 cx1, stbtt_int32 cy1)
1923 stbtt__track_vertex(c, x, y);
1925 stbtt__track_vertex(c, cx, cy);
1926 stbtt__track_vertex(c, cx1, cy1);
1929 stbtt_setvertex(&c->pvertices[c->num_vertices], type, x, y, cx, cy);
1930 c->pvertices[c->num_vertices].cx1 = (stbtt_int16) cx1;
1931 c->pvertices[c->num_vertices].cy1 = (stbtt_int16) cy1;
1936 static void stbtt__csctx_close_shape(stbtt__csctx *ctx)
1938 if (ctx->first_x != ctx->x || ctx->first_y != ctx->y)
1939 stbtt__csctx_v(ctx,
STBTT_vline, (
int)ctx->first_x, (
int)ctx->first_y, 0, 0, 0, 0);
1942 static void stbtt__csctx_rmove_to(stbtt__csctx *ctx,
float dx,
float dy)
1944 stbtt__csctx_close_shape(ctx);
1945 ctx->first_x = ctx->x = ctx->x + dx;
1946 ctx->first_y = ctx->y = ctx->y + dy;
1947 stbtt__csctx_v(ctx,
STBTT_vmove, (
int)ctx->x, (
int)ctx->y, 0, 0, 0, 0);
1950 static void stbtt__csctx_rline_to(stbtt__csctx *ctx,
float dx,
float dy)
1954 stbtt__csctx_v(ctx,
STBTT_vline, (
int)ctx->x, (
int)ctx->y, 0, 0, 0, 0);
1957 static void stbtt__csctx_rccurve_to(stbtt__csctx *ctx,
float dx1,
float dy1,
float dx2,
float dy2,
float dx3,
float dy3)
1959 float cx1 = ctx->x + dx1;
1960 float cy1 = ctx->y + dy1;
1961 float cx2 = cx1 + dx2;
1962 float cy2 = cy1 + dy2;
1965 stbtt__csctx_v(ctx,
STBTT_vcubic, (
int)ctx->x, (
int)ctx->y, (
int)cx1, (
int)cy1, (
int)cx2, (
int)cy2);
1970 int count = stbtt__cff_index_count(&idx);
1974 else if (count >= 1240)
1977 if (n < 0 || n >= count)
1978 return stbtt__new_buf(NULL, 0);
1979 return stbtt__cff_index_get(idx, n);
1985 int nranges, start, end, v, fmt, fdselector = -1, i;
1987 stbtt__buf_seek(&fdselect, 0);
1988 fmt = stbtt__buf_get8(&fdselect);
1991 stbtt__buf_skip(&fdselect, glyph_index);
1992 fdselector = stbtt__buf_get8(&fdselect);
1993 }
else if (fmt == 3) {
1994 nranges = stbtt__buf_get16(&fdselect);
1995 start = stbtt__buf_get16(&fdselect);
1996 for (i = 0; i < nranges; i++) {
1997 v = stbtt__buf_get8(&fdselect);
1998 end = stbtt__buf_get16(&fdselect);
1999 if (glyph_index >= start && glyph_index < end) {
2006 if (fdselector == -1) stbtt__new_buf(NULL, 0);
2007 return stbtt__get_subrs(info->
cff, stbtt__cff_index_get(info->
fontdicts, fdselector));
2010 static int stbtt__run_charstring(
const stbtt_fontinfo *info,
int glyph_index, stbtt__csctx *c)
2012 int in_header = 1, maskbits = 0, subr_stack_height = 0, sp = 0, v, i, b0;
2013 int has_subrs = 0, clear_stack;
2018 #define STBTT__CSERR(s) (0)
2021 b = stbtt__cff_index_get(info->
charstrings, glyph_index);
2025 b0 = stbtt__buf_get8(&b);
2031 maskbits += (sp / 2);
2033 stbtt__buf_skip(&b, (maskbits + 7) / 8);
2040 maskbits += (sp / 2);
2045 if (sp < 2)
return STBTT__CSERR(
"rmoveto stack");
2046 stbtt__csctx_rmove_to(c, s[sp-2], s[sp-1]);
2050 if (sp < 1)
return STBTT__CSERR(
"vmoveto stack");
2051 stbtt__csctx_rmove_to(c, 0, s[sp-1]);
2055 if (sp < 1)
return STBTT__CSERR(
"hmoveto stack");
2056 stbtt__csctx_rmove_to(c, s[sp-1], 0);
2060 if (sp < 2)
return STBTT__CSERR(
"rlineto stack");
2061 for (; i + 1 < sp; i += 2)
2062 stbtt__csctx_rline_to(c, s[i], s[i+1]);
2069 if (sp < 1)
return STBTT__CSERR(
"vlineto stack");
2072 if (sp < 1)
return STBTT__CSERR(
"hlineto stack");
2075 stbtt__csctx_rline_to(c, s[i], 0);
2079 stbtt__csctx_rline_to(c, 0, s[i]);
2085 if (sp < 4)
return STBTT__CSERR(
"hvcurveto stack");
2088 if (sp < 4)
return STBTT__CSERR(
"vhcurveto stack");
2090 if (i + 3 >= sp)
break;
2091 stbtt__csctx_rccurve_to(c, 0, s[i], s[i+1], s[i+2], s[i+3], (sp - i == 5) ? s[i + 4] : 0.0f);
2094 if (i + 3 >= sp)
break;
2095 stbtt__csctx_rccurve_to(c, s[i], 0, s[i+1], s[i+2], (sp - i == 5) ? s[i+4] : 0.0f, s[i+3]);
2101 if (sp < 6)
return STBTT__CSERR(
"rcurveline stack");
2102 for (; i + 5 < sp; i += 6)
2103 stbtt__csctx_rccurve_to(c, s[i], s[i+1], s[i+2], s[i+3], s[i+4], s[i+5]);
2107 if (sp < 8)
return STBTT__CSERR(
"rcurveline stack");
2108 for (; i + 5 < sp - 2; i += 6)
2109 stbtt__csctx_rccurve_to(c, s[i], s[i+1], s[i+2], s[i+3], s[i+4], s[i+5]);
2110 if (i + 1 >= sp)
return STBTT__CSERR(
"rcurveline stack");
2111 stbtt__csctx_rline_to(c, s[i], s[i+1]);
2115 if (sp < 8)
return STBTT__CSERR(
"rlinecurve stack");
2116 for (; i + 1 < sp - 6; i += 2)
2117 stbtt__csctx_rline_to(c, s[i], s[i+1]);
2118 if (i + 5 >= sp)
return STBTT__CSERR(
"rlinecurve stack");
2119 stbtt__csctx_rccurve_to(c, s[i], s[i+1], s[i+2], s[i+3], s[i+4], s[i+5]);
2124 if (sp < 4)
return STBTT__CSERR(
"(vv|hh)curveto stack");
2126 if (sp & 1) { f = s[i]; i++; }
2127 for (; i + 3 < sp; i += 4) {
2129 stbtt__csctx_rccurve_to(c, s[i], f, s[i+1], s[i+2], s[i+3], 0.0);
2131 stbtt__csctx_rccurve_to(c, f, s[i], s[i+1], s[i+2], 0.0, s[i+3]);
2139 subrs = stbtt__cid_get_glyph_subrs(info, glyph_index);
2144 if (sp < 1)
return STBTT__CSERR(
"call(g|)subr stack");
2146 if (subr_stack_height >= 10)
return STBTT__CSERR(
"recursion limit");
2147 subr_stack[subr_stack_height++] = b;
2148 b = stbtt__get_subr(b0 == 0x0A ? subrs : info->
gsubrs, v);
2149 if (b.
size == 0)
return STBTT__CSERR(
"subr not found");
2155 if (subr_stack_height <= 0)
return STBTT__CSERR(
"return outside subr");
2156 b = subr_stack[--subr_stack_height];
2161 stbtt__csctx_close_shape(c);
2165 float dx1, dx2, dx3, dx4, dx5, dx6, dy1, dy2, dy3, dy4, dy5, dy6;
2167 int b1 = stbtt__buf_get8(&b);
2172 if (sp < 7)
return STBTT__CSERR(
"hflex stack");
2180 stbtt__csctx_rccurve_to(c, dx1, 0, dx2, dy2, dx3, 0);
2181 stbtt__csctx_rccurve_to(c, dx4, 0, dx5, -dy2, dx6, 0);
2185 if (sp < 13)
return STBTT__CSERR(
"flex stack");
2199 stbtt__csctx_rccurve_to(c, dx1, dy1, dx2, dy2, dx3, dy3);
2200 stbtt__csctx_rccurve_to(c, dx4, dy4, dx5, dy5, dx6, dy6);
2204 if (sp < 9)
return STBTT__CSERR(
"hflex1 stack");
2214 stbtt__csctx_rccurve_to(c, dx1, dy1, dx2, dy2, dx3, 0);
2215 stbtt__csctx_rccurve_to(c, dx4, 0, dx5, dy5, dx6, -(dy1+dy2+dy5));
2219 if (sp < 11)
return STBTT__CSERR(
"flex1 stack");
2231 dx = dx1+dx2+dx3+dx4+dx5;
2232 dy = dy1+dy2+dy3+dy4+dy5;
2233 if (STBTT_fabs(dx) > STBTT_fabs(dy))
2237 stbtt__csctx_rccurve_to(c, dx1, dy1, dx2, dy2, dx3, dy3);
2238 stbtt__csctx_rccurve_to(c, dx4, dy4, dx5, dy5, dx6, dy6);
2242 return STBTT__CSERR(
"unimplemented");
2247 if (b0 != 255 && b0 != 28 && b0 < 32)
2248 return STBTT__CSERR(
"reserved operator");
2252 f = (float)(stbtt_int32)stbtt__buf_get32(&b) / 0x10000;
2254 stbtt__buf_skip(&b, -1);
2255 f = (float)(stbtt_int16)stbtt__cff_int(&b);
2257 if (sp >= 48)
return STBTT__CSERR(
"push stack overflow");
2262 if (clear_stack) sp = 0;
2264 return STBTT__CSERR(
"no endchar");
2272 stbtt__csctx count_ctx = STBTT__CSCTX_INIT(1);
2273 stbtt__csctx output_ctx = STBTT__CSCTX_INIT(0);
2274 if (stbtt__run_charstring(info, glyph_index, &count_ctx)) {
2276 output_ctx.pvertices = *pvertices;
2277 if (stbtt__run_charstring(info, glyph_index, &output_ctx)) {
2278 STBTT_assert(output_ctx.num_vertices == count_ctx.num_vertices);
2279 return output_ctx.num_vertices;
2286 static int stbtt__GetGlyphInfoT2(
const stbtt_fontinfo *info,
int glyph_index,
int *x0,
int *y0,
int *x1,
int *y1)
2288 stbtt__csctx c = STBTT__CSCTX_INIT(1);
2289 int r = stbtt__run_charstring(info, glyph_index, &c);
2290 if (x0) *x0 = r ? c.min_x : 0;
2291 if (y0) *y0 = r ? c.min_y : 0;
2292 if (x1) *x1 = r ? c.max_x : 0;
2293 if (y1) *y1 = r ? c.max_y : 0;
2294 return r ? c.num_vertices : 0;
2300 return stbtt__GetGlyphShapeTT(info, glyph_index, pvertices);
2302 return stbtt__GetGlyphShapeT2(info, glyph_index, pvertices);
2307 stbtt_uint16 numOfLongHorMetrics = ttUSHORT(info->
data+info->
hhea + 34);
2308 if (glyph_index < numOfLongHorMetrics) {
2309 if (advanceWidth) *advanceWidth = ttSHORT(info->
data + info->
hmtx + 4*glyph_index);
2310 if (leftSideBearing) *leftSideBearing = ttSHORT(info->
data + info->
hmtx + 4*glyph_index + 2);
2312 if (advanceWidth) *advanceWidth = ttSHORT(info->
data + info->
hmtx + 4*(numOfLongHorMetrics-1));
2313 if (leftSideBearing) *leftSideBearing = ttSHORT(info->
data + info->
hmtx + 4*numOfLongHorMetrics + 2*(glyph_index - numOfLongHorMetrics));
2319 stbtt_uint8 *data = info->
data + info->
kern;
2324 if (ttUSHORT(data+2) < 1)
2326 if (ttUSHORT(data+8) != 1)
2329 return ttUSHORT(data+10);
2334 stbtt_uint8 *data = info->
data + info->
kern;
2340 if (ttUSHORT(data+2) < 1)
2342 if (ttUSHORT(data+8) != 1)
2345 length = ttUSHORT(data+10);
2346 if (table_length < length)
2347 length = table_length;
2349 for (k = 0; k < length; k++)
2351 table[k].
glyph1 = ttUSHORT(data+18+(k*6));
2352 table[k].
glyph2 = ttUSHORT(data+20+(k*6));
2353 table[k].
advance = ttSHORT(data+22+(k*6));
2359 static int stbtt__GetGlyphKernInfoAdvance(
const stbtt_fontinfo *info,
int glyph1,
int glyph2)
2361 stbtt_uint8 *data = info->
data + info->
kern;
2362 stbtt_uint32 needle, straw;
2368 if (ttUSHORT(data+2) < 1)
2370 if (ttUSHORT(data+8) != 1)
2374 r = ttUSHORT(data+10) - 1;
2375 needle = glyph1 << 16 | glyph2;
2378 straw = ttULONG(data+18+(m*6));
2381 else if (needle > straw)
2384 return ttSHORT(data+22+(m*6));
2389 static stbtt_int32 stbtt__GetCoverageIndex(stbtt_uint8 *coverageTable,
int glyph)
2391 stbtt_uint16 coverageFormat = ttUSHORT(coverageTable);
2392 switch (coverageFormat) {
2394 stbtt_uint16 glyphCount = ttUSHORT(coverageTable + 2);
2397 stbtt_int32 l=0, r=glyphCount-1, m;
2398 int straw, needle=glyph;
2400 stbtt_uint8 *glyphArray = coverageTable + 4;
2401 stbtt_uint16 glyphID;
2403 glyphID = ttUSHORT(glyphArray + 2 * m);
2407 else if (needle > straw)
2417 stbtt_uint16 rangeCount = ttUSHORT(coverageTable + 2);
2418 stbtt_uint8 *rangeArray = coverageTable + 4;
2421 stbtt_int32 l=0, r=rangeCount-1, m;
2422 int strawStart, strawEnd, needle=glyph;
2424 stbtt_uint8 *rangeRecord;
2426 rangeRecord = rangeArray + 6 * m;
2427 strawStart = ttUSHORT(rangeRecord);
2428 strawEnd = ttUSHORT(rangeRecord + 2);
2429 if (needle < strawStart)
2431 else if (needle > strawEnd)
2434 stbtt_uint16 startCoverageIndex = ttUSHORT(rangeRecord + 4);
2435 return startCoverageIndex + glyph - strawStart;
2447 static stbtt_int32 stbtt__GetGlyphClass(stbtt_uint8 *classDefTable,
int glyph)
2449 stbtt_uint16 classDefFormat = ttUSHORT(classDefTable);
2450 switch (classDefFormat)
2453 stbtt_uint16 startGlyphID = ttUSHORT(classDefTable + 2);
2454 stbtt_uint16 glyphCount = ttUSHORT(classDefTable + 4);
2455 stbtt_uint8 *classDef1ValueArray = classDefTable + 6;
2457 if (glyph >= startGlyphID && glyph < startGlyphID + glyphCount)
2458 return (stbtt_int32)ttUSHORT(classDef1ValueArray + 2 * (glyph - startGlyphID));
2463 stbtt_uint16 classRangeCount = ttUSHORT(classDefTable + 2);
2464 stbtt_uint8 *classRangeRecords = classDefTable + 4;
2467 stbtt_int32 l=0, r=classRangeCount-1, m;
2468 int strawStart, strawEnd, needle=glyph;
2470 stbtt_uint8 *classRangeRecord;
2472 classRangeRecord = classRangeRecords + 6 * m;
2473 strawStart = ttUSHORT(classRangeRecord);
2474 strawEnd = ttUSHORT(classRangeRecord + 2);
2475 if (needle < strawStart)
2477 else if (needle > strawEnd)
2480 return (stbtt_int32)ttUSHORT(classRangeRecord + 4);
2494 #define STBTT_GPOS_TODO_assert(x)
2496 static stbtt_int32 stbtt__GetGlyphGPOSInfoAdvance(
const stbtt_fontinfo *info,
int glyph1,
int glyph2)
2498 stbtt_uint16 lookupListOffset;
2499 stbtt_uint8 *lookupList;
2500 stbtt_uint16 lookupCount;
2504 if (!info->
gpos)
return 0;
2508 if (ttUSHORT(data+0) != 1)
return 0;
2509 if (ttUSHORT(data+2) != 0)
return 0;
2511 lookupListOffset = ttUSHORT(data+8);
2512 lookupList = data + lookupListOffset;
2513 lookupCount = ttUSHORT(lookupList);
2515 for (i=0; i<lookupCount; ++i) {
2516 stbtt_uint16 lookupOffset = ttUSHORT(lookupList + 2 + 2 * i);
2517 stbtt_uint8 *lookupTable = lookupList + lookupOffset;
2519 stbtt_uint16 lookupType = ttUSHORT(lookupTable);
2520 stbtt_uint16 subTableCount = ttUSHORT(lookupTable + 4);
2521 stbtt_uint8 *subTableOffsets = lookupTable + 6;
2522 if (lookupType != 2)
2525 for (sti=0; sti<subTableCount; sti++) {
2526 stbtt_uint16 subtableOffset = ttUSHORT(subTableOffsets + 2 * sti);
2527 stbtt_uint8 *table = lookupTable + subtableOffset;
2528 stbtt_uint16 posFormat = ttUSHORT(table);
2529 stbtt_uint16 coverageOffset = ttUSHORT(table + 2);
2530 stbtt_int32 coverageIndex = stbtt__GetCoverageIndex(table + coverageOffset, glyph1);
2531 if (coverageIndex == -1)
continue;
2533 switch (posFormat) {
2535 stbtt_int32 l, r, m;
2537 stbtt_uint16 valueFormat1 = ttUSHORT(table + 4);
2538 stbtt_uint16 valueFormat2 = ttUSHORT(table + 6);
2539 if (valueFormat1 == 4 && valueFormat2 == 0) {
2540 stbtt_int32 valueRecordPairSizeInBytes = 2;
2541 stbtt_uint16 pairSetCount = ttUSHORT(table + 8);
2542 stbtt_uint16 pairPosOffset = ttUSHORT(table + 10 + 2 * coverageIndex);
2543 stbtt_uint8 *pairValueTable = table + pairPosOffset;
2544 stbtt_uint16 pairValueCount = ttUSHORT(pairValueTable);
2545 stbtt_uint8 *pairValueArray = pairValueTable + 2;
2547 if (coverageIndex >= pairSetCount)
return 0;
2555 stbtt_uint16 secondGlyph;
2556 stbtt_uint8 *pairValue;
2558 pairValue = pairValueArray + (2 + valueRecordPairSizeInBytes) * m;
2559 secondGlyph = ttUSHORT(pairValue);
2560 straw = secondGlyph;
2563 else if (needle > straw)
2566 stbtt_int16 xAdvance = ttSHORT(pairValue + 2);
2576 stbtt_uint16 valueFormat1 = ttUSHORT(table + 4);
2577 stbtt_uint16 valueFormat2 = ttUSHORT(table + 6);
2578 if (valueFormat1 == 4 && valueFormat2 == 0) {
2579 stbtt_uint16 classDef1Offset = ttUSHORT(table + 8);
2580 stbtt_uint16 classDef2Offset = ttUSHORT(table + 10);
2581 int glyph1class = stbtt__GetGlyphClass(table + classDef1Offset, glyph1);
2582 int glyph2class = stbtt__GetGlyphClass(table + classDef2Offset, glyph2);
2584 stbtt_uint16 class1Count = ttUSHORT(table + 12);
2585 stbtt_uint16 class2Count = ttUSHORT(table + 14);
2586 stbtt_uint8 *class1Records, *class2Records;
2587 stbtt_int16 xAdvance;
2589 if (glyph1class < 0 || glyph1class >= class1Count)
return 0;
2590 if (glyph2class < 0 || glyph2class >= class2Count)
return 0;
2592 class1Records = table + 16;
2593 class2Records = class1Records + 2 * (glyph1class * class2Count);
2594 xAdvance = ttSHORT(class2Records + 2 * glyph2class);
2615 xAdvance += stbtt__GetGlyphGPOSInfoAdvance(info, g1, g2);
2616 else if (info->
kern)
2617 xAdvance += stbtt__GetGlyphKernInfoAdvance(info, g1, g2);
2636 if (ascent ) *ascent = ttSHORT(info->
data+info->
hhea + 4);
2637 if (descent) *descent = ttSHORT(info->
data+info->
hhea + 6);
2638 if (lineGap) *lineGap = ttSHORT(info->
data+info->
hhea + 8);
2643 int tab = stbtt__find_table(info->
data, info->
fontstart,
"OS/2");
2646 if (typoAscent ) *typoAscent = ttSHORT(info->
data+tab + 68);
2647 if (typoDescent) *typoDescent = ttSHORT(info->
data+tab + 70);
2648 if (typoLineGap) *typoLineGap = ttSHORT(info->
data+tab + 72);
2654 *x0 = ttSHORT(info->
data + info->
head + 36);
2655 *y0 = ttSHORT(info->
data + info->
head + 38);
2656 *x1 = ttSHORT(info->
data + info->
head + 40);
2657 *y1 = ttSHORT(info->
data + info->
head + 42);
2662 int fheight = ttSHORT(info->
data + info->
hhea + 4) - ttSHORT(info->
data + info->
hhea + 6);
2663 return (
float) height / fheight;
2668 int unitsPerEm = ttUSHORT(info->
data + info->
head + 18);
2669 return pixels / unitsPerEm;
2680 stbtt_uint8 *data = info->
data;
2681 stbtt_uint8 *svg_doc_list = data + stbtt__get_svg((
stbtt_fontinfo *) info);
2683 int numEntries = ttUSHORT(svg_doc_list);
2684 stbtt_uint8 *svg_docs = svg_doc_list + 2;
2686 for(i=0; i<numEntries; i++) {
2687 stbtt_uint8 *svg_doc = svg_docs + (12 * i);
2688 if ((gl >= ttUSHORT(svg_doc)) && (gl <= ttUSHORT(svg_doc + 2)))
2696 stbtt_uint8 *data = info->
data;
2697 stbtt_uint8 *svg_doc;
2703 if (svg_doc != NULL) {
2704 *svg = (
char *) data + info->
svg + ttULONG(svg_doc + 4);
2705 return ttULONG(svg_doc + 8);
2723 int x0=0,y0=0,x1,y1;
2732 if (ix0) *ix0 = STBTT_ifloor( x0 * scale_x + shift_x);
2733 if (iy0) *iy0 = STBTT_ifloor(-y1 * scale_y + shift_y);
2734 if (ix1) *ix1 = STBTT_iceil ( x1 * scale_x + shift_x);
2735 if (iy1) *iy1 = STBTT_iceil (-y0 * scale_y + shift_y);
2746 stbtt_GetGlyphBitmapBoxSubpixel(font,
stbtt_FindGlyphIndex(font,codepoint), scale_x, scale_y,shift_x,shift_y, ix0,iy0,ix1,iy1);
2758 typedef struct stbtt__hheap_chunk
2760 struct stbtt__hheap_chunk *next;
2761 } stbtt__hheap_chunk;
2763 typedef struct stbtt__hheap
2765 struct stbtt__hheap_chunk *head;
2767 int num_remaining_in_head_chunk;
2770 static void *stbtt__hheap_alloc(stbtt__hheap *hh,
size_t size,
void *userdata)
2772 if (hh->first_free) {
2773 void *p = hh->first_free;
2774 hh->first_free = * (
void **) p;
2777 if (hh->num_remaining_in_head_chunk == 0) {
2778 int count = (size < 32 ? 2000 : size < 128 ? 800 : 100);
2779 stbtt__hheap_chunk *c = (stbtt__hheap_chunk *) STBTT_malloc(
sizeof(stbtt__hheap_chunk) + size * count, userdata);
2784 hh->num_remaining_in_head_chunk = count;
2786 --hh->num_remaining_in_head_chunk;
2787 return (
char *) (hh->head) +
sizeof(stbtt__hheap_chunk) + size * hh->num_remaining_in_head_chunk;
2791 static void stbtt__hheap_free(stbtt__hheap *hh,
void *p)
2793 *(
void **) p = hh->first_free;
2797 static void stbtt__hheap_cleanup(stbtt__hheap *hh,
void *userdata)
2799 stbtt__hheap_chunk *c = hh->head;
2801 stbtt__hheap_chunk *n = c->next;
2802 STBTT_free(c, userdata);
2807 typedef struct stbtt__edge {
2813 typedef struct stbtt__active_edge
2815 struct stbtt__active_edge *next;
2816 #if STBTT_RASTERIZER_VERSION==1
2820 #elif STBTT_RASTERIZER_VERSION==2
2826 #error "Unrecognized value of STBTT_RASTERIZER_VERSION"
2828 } stbtt__active_edge;
2830 #if STBTT_RASTERIZER_VERSION == 1
2831 #define STBTT_FIXSHIFT 10
2832 #define STBTT_FIX (1 << STBTT_FIXSHIFT)
2833 #define STBTT_FIXMASK (STBTT_FIX-1)
2835 static stbtt__active_edge *stbtt__new_active(stbtt__hheap *hh, stbtt__edge *e,
int off_x,
float start_point,
void *userdata)
2837 stbtt__active_edge *z = (stbtt__active_edge *) stbtt__hheap_alloc(hh,
sizeof(*z), userdata);
2838 float dxdy = (e->x1 - e->x0) / (e->y1 - e->y0);
2839 STBTT_assert(z != NULL);
2844 z->dx = -STBTT_ifloor(STBTT_FIX * -dxdy);
2846 z->dx = STBTT_ifloor(STBTT_FIX * dxdy);
2848 z->x = STBTT_ifloor(STBTT_FIX * e->x0 + z->dx * (start_point - e->y0));
2849 z->x -= off_x * STBTT_FIX;
2853 z->direction = e->invert ? 1 : -1;
2856 #elif STBTT_RASTERIZER_VERSION == 2
2857 static stbtt__active_edge *stbtt__new_active(stbtt__hheap *hh, stbtt__edge *e,
int off_x,
float start_point,
void *userdata)
2859 stbtt__active_edge *z = (stbtt__active_edge *) stbtt__hheap_alloc(hh,
sizeof(*z), userdata);
2860 float dxdy = (e->x1 - e->x0) / (e->y1 - e->y0);
2861 STBTT_assert(z != NULL);
2865 z->fdy = dxdy != 0.0f ? (1.0f/dxdy) : 0.0f;
2866 z->fx = e->x0 + dxdy * (start_point - e->y0);
2868 z->direction = e->invert ? 1.0f : -1.0f;
2875 #error "Unrecognized value of STBTT_RASTERIZER_VERSION"
2878 #if STBTT_RASTERIZER_VERSION == 1
2882 static void stbtt__fill_active_edges(
unsigned char *scanline,
int len, stbtt__active_edge *e,
int max_weight)
2890 x0 = e->x; w += e->direction;
2892 int x1 = e->x; w += e->direction;
2895 int i = x0 >> STBTT_FIXSHIFT;
2896 int j = x1 >> STBTT_FIXSHIFT;
2898 if (i < len && j >= 0) {
2901 scanline[i] = scanline[i] + (stbtt_uint8) ((x1 - x0) * max_weight >> STBTT_FIXSHIFT);
2904 scanline[i] = scanline[i] + (stbtt_uint8) (((STBTT_FIX - (x0 & STBTT_FIXMASK)) * max_weight) >> STBTT_FIXSHIFT);
2909 scanline[j] = scanline[j] + (stbtt_uint8) (((x1 & STBTT_FIXMASK) * max_weight) >> STBTT_FIXSHIFT);
2913 for (++i; i < j; ++i)
2914 scanline[i] = scanline[i] + (stbtt_uint8) max_weight;
2924 static void stbtt__rasterize_sorted_edges(
stbtt__bitmap *result, stbtt__edge *e,
int n,
int vsubsample,
int off_x,
int off_y,
void *userdata)
2926 stbtt__hheap hh = { 0, 0, 0 };
2927 stbtt__active_edge *active = NULL;
2929 int max_weight = (255 / vsubsample);
2931 unsigned char scanline_data[512], *scanline;
2933 if (result->
w > 512)
2934 scanline = (
unsigned char *) STBTT_malloc(result->
w, userdata);
2936 scanline = scanline_data;
2938 y = off_y * vsubsample;
2939 e[n].y0 = (off_y + result->
h) * (
float) vsubsample + 1;
2941 while (j < result->h) {
2942 STBTT_memset(scanline, 0, result->
w);
2943 for (s=0; s < vsubsample; ++s) {
2945 float scan_y = y + 0.5f;
2946 stbtt__active_edge **step = &active;
2951 stbtt__active_edge * z = *step;
2952 if (z->ey <= scan_y) {
2954 STBTT_assert(z->direction);
2956 stbtt__hheap_free(&hh, z);
2959 step = &((*step)->next);
2967 while (*step && (*step)->next) {
2968 if ((*step)->x > (*step)->next->x) {
2969 stbtt__active_edge *t = *step;
2970 stbtt__active_edge *q = t->next;
2977 step = &(*step)->next;
2979 if (!changed)
break;
2983 while (e->y0 <= scan_y) {
2984 if (e->y1 > scan_y) {
2985 stbtt__active_edge *z = stbtt__new_active(&hh, e, off_x, scan_y, userdata);
2990 else if (z->x < active->x) {
2996 stbtt__active_edge *p = active;
2997 while (p->next && p->next->x < z->x)
3010 stbtt__fill_active_edges(scanline, result->
w, active, max_weight);
3014 STBTT_memcpy(result->
pixels + j * result->
stride, scanline, result->
w);
3018 stbtt__hheap_cleanup(&hh, userdata);
3020 if (scanline != scanline_data)
3021 STBTT_free(scanline, userdata);
3024 #elif STBTT_RASTERIZER_VERSION == 2
3028 static void stbtt__handle_clipped_edge(
float *scanline,
int x, stbtt__active_edge *e,
float x0,
float y0,
float x1,
float y1)
3030 if (y0 == y1)
return;
3031 STBTT_assert(y0 < y1);
3032 STBTT_assert(e->sy <= e->ey);
3033 if (y0 > e->ey)
return;
3034 if (y1 < e->sy)
return;
3036 x0 += (x1-x0) * (e->sy - y0) / (y1-y0);
3040 x1 += (x1-x0) * (e->ey - y1) / (y1-y0);
3045 STBTT_assert(x1 <= x+1);
3047 STBTT_assert(x1 >= x);
3049 STBTT_assert(x1 <= x);
3051 STBTT_assert(x1 >= x+1);
3053 STBTT_assert(x1 >= x && x1 <= x+1);
3055 if (x0 <= x && x1 <= x)
3056 scanline[x] += e->direction * (y1-y0);
3057 else if (x0 >= x+1 && x1 >= x+1)
3060 STBTT_assert(x0 >= x && x0 <= x+1 && x1 >= x && x1 <= x+1);
3061 scanline[x] += e->direction * (y1-y0) * (1-((x0-x)+(x1-x))/2);
3065 static float stbtt__sized_trapezoid_area(
float height,
float top_width,
float bottom_width)
3067 STBTT_assert(top_width >= 0);
3068 STBTT_assert(bottom_width >= 0);
3069 return (top_width + bottom_width) / 2.0f * height;
3072 static float stbtt__position_trapezoid_area(
float height,
float tx0,
float tx1,
float bx0,
float bx1)
3074 return stbtt__sized_trapezoid_area(height, tx1 - tx0, bx1 - bx0);
3077 static float stbtt__sized_triangle_area(
float height,
float width)
3079 return height * width / 2;
3082 static void stbtt__fill_active_edges_new(
float *scanline,
float *scanline_fill,
int len, stbtt__active_edge *e,
float y_top)
3084 float y_bottom = y_top+1;
3090 STBTT_assert(e->ey >= y_top);
3096 stbtt__handle_clipped_edge(scanline,(
int) x0,e, x0,y_top, x0,y_bottom);
3097 stbtt__handle_clipped_edge(scanline_fill-1,(
int) x0+1,e, x0,y_top, x0,y_bottom);
3099 stbtt__handle_clipped_edge(scanline_fill-1,0,e, x0,y_top, x0,y_bottom);
3106 float x_top, x_bottom;
3109 STBTT_assert(e->sy <= y_bottom && e->ey >= y_top);
3114 if (e->sy > y_top) {
3115 x_top = x0 + dx * (e->sy - y_top);
3121 if (e->ey < y_bottom) {
3122 x_bottom = x0 + dx * (e->ey - y_top);
3129 if (x_top >= 0 && x_bottom >= 0 && x_top < len && x_bottom < len) {
3132 if ((
int) x_top == (int) x_bottom) {
3135 int x = (int) x_top;
3136 height = (sy1 - sy0) * e->direction;
3137 STBTT_assert(x >= 0 && x < len);
3138 scanline[x] += stbtt__position_trapezoid_area(height, x_top, x+1.0f, x_bottom, x+1.0f);
3139 scanline_fill[x] += height;
3142 float y_crossing, y_final, step, sign, area;
3144 if (x_top > x_bottom) {
3147 sy0 = y_bottom - (sy0 - y_top);
3148 sy1 = y_bottom - (sy1 - y_top);
3149 t = sy0, sy0 = sy1, sy1 = t;
3150 t = x_bottom, x_bottom = x_top, x_top = t;
3153 t = x0, x0 = xb, xb = t;
3155 STBTT_assert(dy >= 0);
3156 STBTT_assert(dx >= 0);
3159 x2 = (int) x_bottom;
3161 y_crossing = y_top + dy * (x1+1 - x0);
3164 y_final = y_top + dy * (x2 - x0);
3185 if (y_crossing > y_bottom)
3186 y_crossing = y_bottom;
3188 sign = e->direction;
3191 area = sign * (y_crossing-sy0);
3194 scanline[x1] += stbtt__sized_triangle_area(area, x1+1 - x_top);
3197 if (y_final > y_bottom) {
3199 dy = (y_final - y_crossing ) / (x2 - (x1+1));
3212 step = sign * dy * 1;
3216 for (x = x1+1; x < x2; ++x) {
3217 scanline[x] += area + step/2;
3220 STBTT_assert(STBTT_fabs(area) <= 1.01f);
3221 STBTT_assert(sy1 > y_final-0.01f);
3225 scanline[x2] += area + sign * stbtt__position_trapezoid_area(sy1-y_final, (
float) x2, x2+1.0f, x_bottom, x2+1.0f);
3228 scanline_fill[x2] += sign * (sy1-sy0);
3239 for (x=0; x < len; ++x) {
3255 float x1 = (float) (x);
3256 float x2 = (float) (x+1);
3258 float y3 = y_bottom;
3263 float y1 = (x - x0) / dx + y_top;
3264 float y2 = (x+1 - x0) / dx + y_top;
3266 if (x0 < x1 && x3 > x2) {
3267 stbtt__handle_clipped_edge(scanline,x,e, x0,y0, x1,y1);
3268 stbtt__handle_clipped_edge(scanline,x,e, x1,y1, x2,y2);
3269 stbtt__handle_clipped_edge(scanline,x,e, x2,y2, x3,y3);
3270 }
else if (x3 < x1 && x0 > x2) {
3271 stbtt__handle_clipped_edge(scanline,x,e, x0,y0, x2,y2);
3272 stbtt__handle_clipped_edge(scanline,x,e, x2,y2, x1,y1);
3273 stbtt__handle_clipped_edge(scanline,x,e, x1,y1, x3,y3);
3274 }
else if (x0 < x1 && x3 > x1) {
3275 stbtt__handle_clipped_edge(scanline,x,e, x0,y0, x1,y1);
3276 stbtt__handle_clipped_edge(scanline,x,e, x1,y1, x3,y3);
3277 }
else if (x3 < x1 && x0 > x1) {
3278 stbtt__handle_clipped_edge(scanline,x,e, x0,y0, x1,y1);
3279 stbtt__handle_clipped_edge(scanline,x,e, x1,y1, x3,y3);
3280 }
else if (x0 < x2 && x3 > x2) {
3281 stbtt__handle_clipped_edge(scanline,x,e, x0,y0, x2,y2);
3282 stbtt__handle_clipped_edge(scanline,x,e, x2,y2, x3,y3);
3283 }
else if (x3 < x2 && x0 > x2) {
3284 stbtt__handle_clipped_edge(scanline,x,e, x0,y0, x2,y2);
3285 stbtt__handle_clipped_edge(scanline,x,e, x2,y2, x3,y3);
3287 stbtt__handle_clipped_edge(scanline,x,e, x0,y0, x3,y3);
3297 static void stbtt__rasterize_sorted_edges(
stbtt__bitmap *result, stbtt__edge *e,
int n,
int vsubsample,
int off_x,
int off_y,
void *userdata)
3299 stbtt__hheap hh = { 0, 0, 0 };
3300 stbtt__active_edge *active = NULL;
3302 float scanline_data[129], *scanline, *scanline2;
3304 STBTT__NOTUSED(vsubsample);
3307 scanline = (
float *) STBTT_malloc((result->
w*2+1) *
sizeof(float), userdata);
3309 scanline = scanline_data;
3311 scanline2 = scanline + result->
w;
3314 e[n].y0 = (float) (off_y + result->
h) + 1;
3316 while (j < result->h) {
3318 float scan_y_top = y + 0.0f;
3319 float scan_y_bottom = y + 1.0f;
3320 stbtt__active_edge **step = &active;
3322 STBTT_memset(scanline , 0, result->
w*
sizeof(scanline[0]));
3323 STBTT_memset(scanline2, 0, (result->
w+1)*
sizeof(scanline[0]));
3328 stbtt__active_edge * z = *step;
3329 if (z->ey <= scan_y_top) {
3331 STBTT_assert(z->direction);
3333 stbtt__hheap_free(&hh, z);
3335 step = &((*step)->next);
3340 while (e->y0 <= scan_y_bottom) {
3341 if (e->y0 != e->y1) {
3342 stbtt__active_edge *z = stbtt__new_active(&hh, e, off_x, scan_y_top, userdata);
3344 if (j == 0 && off_y != 0) {
3345 if (z->ey < scan_y_top) {
3350 STBTT_assert(z->ey >= scan_y_top);
3361 stbtt__fill_active_edges_new(scanline, scanline2+1, result->
w, active, scan_y_top);
3365 for (i=0; i < result->
w; ++i) {
3368 sum += scanline2[i];
3369 k = scanline[i] + sum;
3370 k = (float) STBTT_fabs(k)*255 + 0.5f;
3372 if (m > 255) m = 255;
3373 result->
pixels[j*result->
stride + i] = (
unsigned char) m;
3379 stbtt__active_edge *z = *step;
3381 step = &((*step)->next);
3388 stbtt__hheap_cleanup(&hh, userdata);
3390 if (scanline != scanline_data)
3391 STBTT_free(scanline, userdata);
3394 #error "Unrecognized value of STBTT_RASTERIZER_VERSION"
3397 #define STBTT__COMPARE(a,b) ((a)->y0 < (b)->y0)
3399 static void stbtt__sort_edges_ins_sort(stbtt__edge *p,
int n)
3402 for (i=1; i < n; ++i) {
3403 stbtt__edge t = p[i], *a = &t;
3406 stbtt__edge *b = &p[j-1];
3407 int c = STBTT__COMPARE(a,b);
3417 static void stbtt__sort_edges_quicksort(stbtt__edge *p,
int n)
3422 int c01,c12,c,m,i,j;
3426 c01 = STBTT__COMPARE(&p[0],&p[m]);
3427 c12 = STBTT__COMPARE(&p[m],&p[n-1]);
3432 c = STBTT__COMPARE(&p[0],&p[n-1]);
3435 z = (c == c12) ? 0 : n-1;
3453 if (!STBTT__COMPARE(&p[i], &p[0]))
break;
3456 if (!STBTT__COMPARE(&p[0], &p[j]))
break;
3469 stbtt__sort_edges_quicksort(p,j);
3473 stbtt__sort_edges_quicksort(p+i, n-i);
3479 static void stbtt__sort_edges(stbtt__edge *p,
int n)
3481 stbtt__sort_edges_quicksort(p, n);
3482 stbtt__sort_edges_ins_sort(p, n);
3490 static void stbtt__rasterize(
stbtt__bitmap *result, stbtt__point *pts,
int *wcount,
int windings,
float scale_x,
float scale_y,
float shift_x,
float shift_y,
int off_x,
int off_y,
int invert,
void *userdata)
3492 float y_scale_inv = invert ? -scale_y : scale_y;
3495 #if STBTT_RASTERIZER_VERSION == 1
3496 int vsubsample = result->
h < 8 ? 15 : 5;
3497 #elif STBTT_RASTERIZER_VERSION == 2
3500 #error "Unrecognized value of STBTT_RASTERIZER_VERSION"
3506 for (i=0; i < windings; ++i)
3509 e = (stbtt__edge *) STBTT_malloc(
sizeof(*e) * (n+1), userdata);
3514 for (i=0; i < windings; ++i) {
3515 stbtt__point *p = pts + m;
3518 for (k=0; k < wcount[i]; j=k++) {
3521 if (p[j].y == p[k].y)
3525 if (invert ? p[j].y > p[k].y : p[j].y < p[k].y) {
3529 e[n].x0 = p[a].x * scale_x + shift_x;
3530 e[n].y0 = (p[a].y * y_scale_inv + shift_y) * vsubsample;
3531 e[n].x1 = p[b].x * scale_x + shift_x;
3532 e[n].y1 = (p[b].y * y_scale_inv + shift_y) * vsubsample;
3539 stbtt__sort_edges(e, n);
3542 stbtt__rasterize_sorted_edges(result, e, n, vsubsample, off_x, off_y, userdata);
3544 STBTT_free(e, userdata);
3547 static void stbtt__add_point(stbtt__point *points,
int n,
float x,
float y)
3549 if (!points)
return;
3555 static int stbtt__tesselate_curve(stbtt__point *points,
int *num_points,
float x0,
float y0,
float x1,
float y1,
float x2,
float y2,
float objspace_flatness_squared,
int n)
3558 float mx = (x0 + 2*x1 + x2)/4;
3559 float my = (y0 + 2*y1 + y2)/4;
3561 float dx = (x0+x2)/2 - mx;
3562 float dy = (y0+y2)/2 - my;
3565 if (dx*dx+dy*dy > objspace_flatness_squared) {
3566 stbtt__tesselate_curve(points, num_points, x0,y0, (x0+x1)/2.0f,(y0+y1)/2.0f, mx,my, objspace_flatness_squared,n+1);
3567 stbtt__tesselate_curve(points, num_points, mx,my, (x1+x2)/2.0f,(y1+y2)/2.0f, x2,y2, objspace_flatness_squared,n+1);
3569 stbtt__add_point(points, *num_points,x2,y2);
3570 *num_points = *num_points+1;
3575 static void stbtt__tesselate_cubic(stbtt__point *points,
int *num_points,
float x0,
float y0,
float x1,
float y1,
float x2,
float y2,
float x3,
float y3,
float objspace_flatness_squared,
int n)
3586 float longlen = (float) (STBTT_sqrt(dx0*dx0+dy0*dy0)+STBTT_sqrt(dx1*dx1+dy1*dy1)+STBTT_sqrt(dx2*dx2+dy2*dy2));
3587 float shortlen = (float) STBTT_sqrt(dx*dx+dy*dy);
3588 float flatness_squared = longlen*longlen-shortlen*shortlen;
3593 if (flatness_squared > objspace_flatness_squared) {
3594 float x01 = (x0+x1)/2;
3595 float y01 = (y0+y1)/2;
3596 float x12 = (x1+x2)/2;
3597 float y12 = (y1+y2)/2;
3598 float x23 = (x2+x3)/2;
3599 float y23 = (y2+y3)/2;
3601 float xa = (x01+x12)/2;
3602 float ya = (y01+y12)/2;
3603 float xb = (x12+x23)/2;
3604 float yb = (y12+y23)/2;
3606 float mx = (xa+xb)/2;
3607 float my = (ya+yb)/2;
3609 stbtt__tesselate_cubic(points, num_points, x0,y0, x01,y01, xa,ya, mx,my, objspace_flatness_squared,n+1);
3610 stbtt__tesselate_cubic(points, num_points, mx,my, xb,yb, x23,y23, x3,y3, objspace_flatness_squared,n+1);
3612 stbtt__add_point(points, *num_points,x3,y3);
3613 *num_points = *num_points+1;
3618 static stbtt__point *stbtt_FlattenCurves(
stbtt_vertex *vertices,
int num_verts,
float objspace_flatness,
int **contour_lengths,
int *num_contours,
void *userdata)
3620 stbtt__point *points=0;
3623 float objspace_flatness_squared = objspace_flatness * objspace_flatness;
3624 int i,n=0,start=0, pass;
3627 for (i=0; i < num_verts; ++i)
3632 if (n == 0)
return 0;
3634 *contour_lengths = (
int *) STBTT_malloc(
sizeof(**contour_lengths) * n, userdata);
3636 if (*contour_lengths == 0) {
3642 for (pass=0; pass < 2; ++pass) {
3645 points = (stbtt__point *) STBTT_malloc(num_points *
sizeof(points[0]), userdata);
3646 if (points == NULL)
goto error;
3650 for (i=0; i < num_verts; ++i) {
3651 switch (vertices[i].type) {
3655 (*contour_lengths)[n] = num_points - start;
3659 x = vertices[i].
x, y = vertices[i].
y;
3660 stbtt__add_point(points, num_points++, x,y);
3663 x = vertices[i].
x, y = vertices[i].
y;
3664 stbtt__add_point(points, num_points++, x, y);
3667 stbtt__tesselate_curve(points, &num_points, x,y,
3668 vertices[i].cx, vertices[i].cy,
3669 vertices[i].x, vertices[i].y,
3670 objspace_flatness_squared, 0);
3671 x = vertices[i].
x, y = vertices[i].
y;
3674 stbtt__tesselate_cubic(points, &num_points, x,y,
3675 vertices[i].cx, vertices[i].cy,
3676 vertices[i].cx1, vertices[i].cy1,
3677 vertices[i].x, vertices[i].y,
3678 objspace_flatness_squared, 0);
3679 x = vertices[i].
x, y = vertices[i].
y;
3683 (*contour_lengths)[n] = num_points - start;
3688 STBTT_free(points, userdata);
3689 STBTT_free(*contour_lengths, userdata);
3690 *contour_lengths = 0;
3695 STBTT_DEF void stbtt_Rasterize(
stbtt__bitmap *result,
float flatness_in_pixels,
stbtt_vertex *vertices,
int num_verts,
float scale_x,
float scale_y,
float shift_x,
float shift_y,
int x_off,
int y_off,
int invert,
void *userdata)
3697 float scale = scale_x > scale_y ? scale_y : scale_x;
3698 int winding_count = 0;
3699 int *winding_lengths = NULL;
3700 stbtt__point *windings = stbtt_FlattenCurves(vertices, num_verts, flatness_in_pixels / scale, &winding_lengths, &winding_count, userdata);
3702 stbtt__rasterize(result, windings, winding_lengths, winding_count, scale_x, scale_y, shift_x, shift_y, x_off, y_off, invert, userdata);
3703 STBTT_free(winding_lengths, userdata);
3704 STBTT_free(windings, userdata);
3710 STBTT_free(bitmap, userdata);
3715 int ix0,iy0,ix1,iy1;
3720 if (scale_x == 0) scale_x = scale_y;
3723 STBTT_free(vertices, info->
userdata);
3732 gbm.
w = (ix1 - ix0);
3733 gbm.
h = (iy1 - iy0);
3736 if (width ) *width = gbm.
w;
3737 if (height) *height = gbm.
h;
3738 if (xoff ) *xoff = ix0;
3739 if (yoff ) *yoff = iy0;
3741 if (gbm.
w && gbm.
h) {
3742 gbm.
pixels = (
unsigned char *) STBTT_malloc(gbm.
w * gbm.
h, info->
userdata);
3746 stbtt_Rasterize(&gbm, 0.35f, vertices, num_verts, scale_x, scale_y, shift_x, shift_y, ix0, iy0, 1, info->
userdata);
3749 STBTT_free(vertices, info->
userdata);
3772 stbtt_Rasterize(&gbm, 0.35f, vertices, num_verts, scale_x, scale_y, shift_x, shift_y, ix0,iy0, 1, info->
userdata);
3774 STBTT_free(vertices, info->
userdata);
3784 return stbtt_GetGlyphBitmapSubpixel(info, scale_x, scale_y,shift_x,shift_y,
stbtt_FindGlyphIndex(info,codepoint), width,height,xoff,yoff);
3787 STBTT_DEF void stbtt_MakeCodepointBitmapSubpixelPrefilter(
const stbtt_fontinfo *info,
unsigned char *output,
int out_w,
int out_h,
int out_stride,
float scale_x,
float scale_y,
float shift_x,
float shift_y,
int oversample_x,
int oversample_y,
float *sub_x,
float *sub_y,
int codepoint)
3789 stbtt_MakeGlyphBitmapSubpixelPrefilter(info, output, out_w, out_h, out_stride, scale_x, scale_y, shift_x, shift_y, oversample_x, oversample_y, sub_x, sub_y,
stbtt_FindGlyphIndex(info,codepoint));
3794 stbtt_MakeGlyphBitmapSubpixel(info, output, out_w, out_h, out_stride, scale_x, scale_y, shift_x, shift_y,
stbtt_FindGlyphIndex(info,codepoint));
3813 static int stbtt_BakeFontBitmap_internal(
unsigned char *data,
int offset,
3815 unsigned char *pixels,
int pw,
int ph,
3816 int first_char,
int num_chars,
3820 int x,y,bottom_y, i;
3825 STBTT_memset(pixels, 0, pw*ph);
3831 for (i=0; i < num_chars; ++i) {
3832 int advance, lsb, x0,y0,x1,y1,gw,gh;
3838 if (x + gw + 1 >= pw)
3839 y = bottom_y, x = 1;
3840 if (y + gh + 1 >= ph)
3842 STBTT_assert(x+gw < pw);
3843 STBTT_assert(y+gh < ph);
3845 chardata[i].
x0 = (stbtt_int16) x;
3846 chardata[i].
y0 = (stbtt_int16) y;
3847 chardata[i].
x1 = (stbtt_int16) (x + gw);
3848 chardata[i].
y1 = (stbtt_int16) (y + gh);
3849 chardata[i].
xadvance = scale * advance;
3850 chardata[i].
xoff = (float) x0;
3851 chardata[i].
yoff = (float) y0;
3853 if (y+gh+1 > bottom_y)
3861 float d3d_bias = opengl_fillrule ? 0 : -0.5f;
3862 float ipw = 1.0f / pw, iph = 1.0f / ph;
3864 int round_x = STBTT_ifloor((*xpos + b->
xoff) + 0.5f);
3865 int round_y = STBTT_ifloor((*ypos + b->
yoff) + 0.5f);
3867 q->
x0 = round_x + d3d_bias;
3868 q->
y0 = round_y + d3d_bias;
3869 q->
x1 = round_x + b->
x1 - b->
x0 + d3d_bias;
3870 q->
y1 = round_y + b->
y1 - b->
y0 + d3d_bias;
3872 q->
s0 = b->
x0 * ipw;
3873 q->
t0 = b->
y0 * iph;
3874 q->
s1 = b->
x1 * ipw;
3875 q->
t1 = b->
y1 * iph;
3885 #ifndef STB_RECT_PACK_VERSION
3887 typedef int stbrp_coord;
3914 int id,w,h,was_packed;
3917 static void stbrp_init_target(stbrp_context *con,
int pw,
int ph, stbrp_node *nodes,
int num_nodes)
3924 STBTT__NOTUSED(nodes);
3925 STBTT__NOTUSED(num_nodes);
3928 static void stbrp_pack_rects(stbrp_context *con,
stbrp_rect *rects,
int num_rects)
3931 for (i=0; i < num_rects; ++i) {
3932 if (con->x + rects[i].w > con->width) {
3934 con->y = con->bottom_y;
3936 if (con->y + rects[i].h > con->height)
3938 rects[i].x = con->x;
3939 rects[i].y = con->y;
3940 rects[i].was_packed = 1;
3941 con->x += rects[i].w;
3942 if (con->y + rects[i].h > con->bottom_y)
3943 con->bottom_y = con->y + rects[i].h;
3945 for ( ; i < num_rects; ++i)
3946 rects[i].was_packed = 0;
3959 stbrp_context *context = (stbrp_context *) STBTT_malloc(
sizeof(*context) ,alloc_context);
3960 int num_nodes = pw - padding;
3961 stbrp_node *nodes = (stbrp_node *) STBTT_malloc(
sizeof(*nodes ) * num_nodes,alloc_context);
3963 if (context == NULL || nodes == NULL) {
3964 if (context != NULL) STBTT_free(context, alloc_context);
3965 if (nodes != NULL) STBTT_free(nodes , alloc_context);
3981 stbrp_init_target(context, pw-padding, ph-padding, nodes, num_nodes);
3984 STBTT_memset(pixels, 0, pw*ph);
3997 STBTT_assert(h_oversample <= STBTT_MAX_OVERSAMPLE);
3998 STBTT_assert(v_oversample <= STBTT_MAX_OVERSAMPLE);
3999 if (h_oversample <= STBTT_MAX_OVERSAMPLE)
4001 if (v_oversample <= STBTT_MAX_OVERSAMPLE)
4010 #define STBTT__OVER_MASK (STBTT_MAX_OVERSAMPLE-1)
4012 static void stbtt__h_prefilter(
unsigned char *pixels,
int w,
int h,
int stride_in_bytes,
unsigned int kernel_width)
4014 unsigned char buffer[STBTT_MAX_OVERSAMPLE];
4015 int safe_w = w - kernel_width;
4017 STBTT_memset(buffer, 0, STBTT_MAX_OVERSAMPLE);
4018 for (j=0; j < h; ++j) {
4021 STBTT_memset(buffer, 0, kernel_width);
4026 switch (kernel_width) {
4028 for (i=0; i <= safe_w; ++i) {
4029 total += pixels[i] - buffer[i & STBTT__OVER_MASK];
4030 buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i];
4031 pixels[i] = (
unsigned char) (total / 2);
4035 for (i=0; i <= safe_w; ++i) {
4036 total += pixels[i] - buffer[i & STBTT__OVER_MASK];
4037 buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i];
4038 pixels[i] = (
unsigned char) (total / 3);
4042 for (i=0; i <= safe_w; ++i) {
4043 total += pixels[i] - buffer[i & STBTT__OVER_MASK];
4044 buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i];
4045 pixels[i] = (
unsigned char) (total / 4);
4049 for (i=0; i <= safe_w; ++i) {
4050 total += pixels[i] - buffer[i & STBTT__OVER_MASK];
4051 buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i];
4052 pixels[i] = (
unsigned char) (total / 5);
4056 for (i=0; i <= safe_w; ++i) {
4057 total += pixels[i] - buffer[i & STBTT__OVER_MASK];
4058 buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i];
4059 pixels[i] = (
unsigned char) (total / kernel_width);
4064 for (; i < w; ++i) {
4065 STBTT_assert(pixels[i] == 0);
4066 total -= buffer[i & STBTT__OVER_MASK];
4067 pixels[i] = (
unsigned char) (total / kernel_width);
4070 pixels += stride_in_bytes;
4074 static void stbtt__v_prefilter(
unsigned char *pixels,
int w,
int h,
int stride_in_bytes,
unsigned int kernel_width)
4076 unsigned char buffer[STBTT_MAX_OVERSAMPLE];
4077 int safe_h = h - kernel_width;
4079 STBTT_memset(buffer, 0, STBTT_MAX_OVERSAMPLE);
4080 for (j=0; j < w; ++j) {
4083 STBTT_memset(buffer, 0, kernel_width);
4088 switch (kernel_width) {
4090 for (i=0; i <= safe_h; ++i) {
4091 total += pixels[i*stride_in_bytes] - buffer[i & STBTT__OVER_MASK];
4092 buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i*stride_in_bytes];
4093 pixels[i*stride_in_bytes] = (
unsigned char) (total / 2);
4097 for (i=0; i <= safe_h; ++i) {
4098 total += pixels[i*stride_in_bytes] - buffer[i & STBTT__OVER_MASK];
4099 buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i*stride_in_bytes];
4100 pixels[i*stride_in_bytes] = (
unsigned char) (total / 3);
4104 for (i=0; i <= safe_h; ++i) {
4105 total += pixels[i*stride_in_bytes] - buffer[i & STBTT__OVER_MASK];
4106 buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i*stride_in_bytes];
4107 pixels[i*stride_in_bytes] = (
unsigned char) (total / 4);
4111 for (i=0; i <= safe_h; ++i) {
4112 total += pixels[i*stride_in_bytes] - buffer[i & STBTT__OVER_MASK];
4113 buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i*stride_in_bytes];
4114 pixels[i*stride_in_bytes] = (
unsigned char) (total / 5);
4118 for (i=0; i <= safe_h; ++i) {
4119 total += pixels[i*stride_in_bytes] - buffer[i & STBTT__OVER_MASK];
4120 buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i*stride_in_bytes];
4121 pixels[i*stride_in_bytes] = (
unsigned char) (total / kernel_width);
4126 for (; i < h; ++i) {
4127 STBTT_assert(pixels[i*stride_in_bytes] == 0);
4128 total -= buffer[i & STBTT__OVER_MASK];
4129 pixels[i*stride_in_bytes] = (
unsigned char) (total / kernel_width);
4136 static float stbtt__oversample_shift(
int oversample)
4145 return (
float)-(oversample - 1) / (2.0f * (
float)oversample);
4152 int missing_glyph_added = 0;
4155 for (i=0; i < num_ranges; ++i) {
4159 ranges[i].v_oversample = (
unsigned char) spc->
v_oversample;
4160 for (j=0; j < ranges[i].
num_chars; ++j) {
4164 if (glyph == 0 && (spc->
skip_missing || missing_glyph_added)) {
4165 rects[k].w = rects[k].h = 0;
4175 missing_glyph_added = 1;
4184 STBTT_DEF void stbtt_MakeGlyphBitmapSubpixelPrefilter(
const stbtt_fontinfo *info,
unsigned char *output,
int out_w,
int out_h,
int out_stride,
float scale_x,
float scale_y,
float shift_x,
float shift_y,
int prefilter_x,
int prefilter_y,
float *sub_x,
float *sub_y,
int glyph)
4188 out_w - (prefilter_x - 1),
4189 out_h - (prefilter_y - 1),
4197 if (prefilter_x > 1)
4198 stbtt__h_prefilter(output, out_w, out_h, out_stride, prefilter_x);
4200 if (prefilter_y > 1)
4201 stbtt__v_prefilter(output, out_w, out_h, out_stride, prefilter_y);
4203 *sub_x = stbtt__oversample_shift(prefilter_x);
4204 *sub_y = stbtt__oversample_shift(prefilter_y);
4210 int i,j,k, missing_glyph = -1, return_value = 1;
4217 for (i=0; i < num_ranges; ++i) {
4220 float recip_h,recip_v,sub_x,sub_y;
4227 for (j=0; j < ranges[i].
num_chars; ++j) {
4229 if (r->was_packed && r->w != 0 && r->h != 0) {
4231 int advance, lsb, x0,y0,x1,y1;
4234 stbrp_coord pad = (stbrp_coord) spc->
padding;
4266 bc->
x0 = (stbtt_int16) r->x;
4267 bc->
y0 = (stbtt_int16) r->y;
4268 bc->
x1 = (stbtt_int16) (r->x + r->w);
4269 bc->
y1 = (stbtt_int16) (r->y + r->h);
4271 bc->
xoff = (float) x0 * recip_h + sub_x;
4272 bc->
yoff = (float) y0 * recip_v + sub_y;
4273 bc->
xoff2 = (x0 + r->w) * recip_h + sub_x;
4274 bc->
yoff2 = (y0 + r->h) * recip_v + sub_y;
4280 }
else if (r->was_packed && r->w == 0 && r->h == 0 && missing_glyph >= 0) {
4294 return return_value;
4299 stbrp_pack_rects((stbrp_context *) spc->
pack_info, rects, num_rects);
4305 int i,j,n, return_value = 1;
4310 for (i=0; i < num_ranges; ++i)
4312 ranges[i].chardata_for_range[j].x0 =
4313 ranges[i].chardata_for_range[j].y0 =
4314 ranges[i].chardata_for_range[j].x1 =
4315 ranges[i].chardata_for_range[j].y1 = 0;
4318 for (i=0; i < num_ranges; ++i)
4319 n += ranges[i].num_chars;
4335 return return_value;
4339 int first_unicode_codepoint_in_range,
int num_chars_in_range,
stbtt_packedchar *chardata_for_range)
4342 range.first_unicode_codepoint_in_range = first_unicode_codepoint_in_range;
4343 range.array_of_unicode_codepoints = NULL;
4344 range.num_chars = num_chars_in_range;
4345 range.chardata_for_range = chardata_for_range;
4346 range.font_size = font_size;
4352 int i_ascent, i_descent, i_lineGap;
4358 *ascent = (float) i_ascent * scale;
4359 *descent = (float) i_descent * scale;
4360 *lineGap = (float) i_lineGap * scale;
4365 float ipw = 1.0f / pw, iph = 1.0f / ph;
4368 if (align_to_integer) {
4369 float x = (float) STBTT_ifloor((*xpos + b->
xoff) + 0.5f);
4370 float y = (float) STBTT_ifloor((*ypos + b->
yoff) + 0.5f);
4382 q->
s0 = b->
x0 * ipw;
4383 q->
t0 = b->
y0 * iph;
4384 q->
s1 = b->
x1 * ipw;
4385 q->
t1 = b->
y1 * iph;
4395 #define STBTT_min(a,b) ((a) < (b) ? (a) : (b))
4396 #define STBTT_max(a,b) ((a) < (b) ? (b) : (a))
4398 static int stbtt__ray_intersect_bezier(
float orig[2],
float ray[2],
float q0[2],
float q1[2],
float q2[2],
float hits[2][2])
4400 float q0perp = q0[1]*
ray[0] - q0[0]*
ray[1];
4401 float q1perp = q1[1]*
ray[0] - q1[0]*
ray[1];
4402 float q2perp = q2[1]*
ray[0] - q2[0]*
ray[1];
4403 float roperp = orig[1]*
ray[0] - orig[0]*
ray[1];
4405 float a = q0perp - 2*q1perp + q2perp;
4406 float b = q1perp - q0perp;
4407 float c = q0perp - roperp;
4409 float s0 = 0., s1 = 0.;
4413 float discr = b*b - a*c;
4415 float rcpna = -1 / a;
4416 float d = (float) STBTT_sqrt(discr);
4419 if (s0 >= 0.0 && s0 <= 1.0)
4421 if (d > 0.0 && s1 >= 0.0 && s1 <= 1.0) {
4422 if (num_s == 0) s0 = s1;
4430 if (s0 >= 0.0 && s0 <= 1.0)
4438 float rayn_x =
ray[0] * rcp_len2, rayn_y =
ray[1] * rcp_len2;
4440 float q0d = q0[0]*rayn_x + q0[1]*rayn_y;
4441 float q1d = q1[0]*rayn_x + q1[1]*rayn_y;
4442 float q2d = q2[0]*rayn_x + q2[1]*rayn_y;
4443 float rod = orig[0]*rayn_x + orig[1]*rayn_y;
4445 float q10d = q1d - q0d;
4446 float q20d = q2d - q0d;
4447 float q0rd = q0d - rod;
4449 hits[0][0] = q0rd + s0*(2.0f - 2.0f*s0)*q10d + s0*s0*q20d;
4450 hits[0][1] = a*s0+b;
4453 hits[1][0] = q0rd + s1*(2.0f - 2.0f*s1)*q10d + s1*s1*q20d;
4454 hits[1][1] = a*s1+b;
4462 static int equal(
float *a,
float *b)
4464 return (a[0] == b[0] && a[1] == b[1]);
4467 static int stbtt__compute_crossings_x(
float x,
float y,
int nverts,
stbtt_vertex *verts)
4470 float orig[2],
ray[2] = { 1, 0 };
4475 y_frac = (float) STBTT_fmod(y, 1.0f);
4478 else if (y_frac > 0.99f)
4485 for (i=0; i < nverts; ++i) {
4487 int x0 = (int) verts[i-1].x, y0 = (
int) verts[i-1].
y;
4488 int x1 = (int) verts[i ].x, y1 = (
int) verts[i ].
y;
4489 if (y > STBTT_min(y0,y1) && y < STBTT_max(y0,y1) && x > STBTT_min(x0,x1)) {
4490 float x_inter = (y - y0) / (y1 - y0) * (x1-x0) + x0;
4492 winding += (y0 < y1) ? 1 : -1;
4496 int x0 = (int) verts[i-1].x , y0 = (
int) verts[i-1].
y ;
4497 int x1 = (int) verts[i ].cx, y1 = (
int) verts[i ].
cy;
4498 int x2 = (int) verts[i ].x , y2 = (
int) verts[i ].
y ;
4499 int ax = STBTT_min(x0,STBTT_min(x1,x2)), ay = STBTT_min(y0,STBTT_min(y1,y2));
4500 int by = STBTT_max(y0,STBTT_max(y1,y2));
4501 if (y > ay && y < by && x > ax) {
4502 float q0[2],q1[2],q2[2];
4510 if (equal(q0,q1) || equal(q1,q2)) {
4511 x0 = (int)verts[i-1].x;
4512 y0 = (int)verts[i-1].y;
4513 x1 = (int)verts[i ].x;
4514 y1 = (int)verts[i ].y;
4515 if (y > STBTT_min(y0,y1) && y < STBTT_max(y0,y1) && x > STBTT_min(x0,x1)) {
4516 float x_inter = (y - y0) / (y1 - y0) * (x1-x0) + x0;
4518 winding += (y0 < y1) ? 1 : -1;
4521 int num_hits = stbtt__ray_intersect_bezier(orig,
ray, q0, q1, q2, hits);
4524 winding += (hits[0][1] < 0 ? -1 : 1);
4527 winding += (hits[1][1] < 0 ? -1 : 1);
4535 static float stbtt__cuberoot(
float x )
4538 return -(float) STBTT_pow(-x,1.0f/3.0f);
4540 return (
float) STBTT_pow( x,1.0f/3.0f);
4544 static int stbtt__solve_cubic(
float a,
float b,
float c,
float* r)
4547 float p = b - a*a / 3;
4548 float q = a * (2*a*a - 9*b) / 27 + c;
4550 float d = q*q + 4*p3 / 27;
4552 float z = (float) STBTT_sqrt(d);
4553 float u = (-q + z) / 2;
4554 float v = (-q - z) / 2;
4555 u = stbtt__cuberoot(u);
4556 v = stbtt__cuberoot(v);
4560 float u = (float) STBTT_sqrt(-p/3);
4561 float v = (float) STBTT_acos(-STBTT_sqrt(-27/p3) * q / 2) / 3;
4562 float m = (float) STBTT_cos(v);
4563 float n = (float) STBTT_cos(v-3.141592/2)*1.732050808f;
4564 r[0] = s + u * 2 * m;
4565 r[1] = s - u * (m + n);
4566 r[2] = s - u * (m - n);
4575 STBTT_DEF unsigned char *
stbtt_GetGlyphSDF(
const stbtt_fontinfo *info,
float scale,
int glyph,
int padding,
unsigned char onedge_value,
float pixel_dist_scale,
int *width,
int *height,
int *xoff,
int *yoff)
4577 float scale_x = scale, scale_y = scale;
4578 int ix0,iy0,ix1,iy1;
4580 unsigned char *data;
4582 if (scale == 0)
return NULL;
4587 if (ix0 == ix1 || iy0 == iy1)
4598 if (width ) *width = w;
4599 if (height) *height = h;
4600 if (xoff ) *xoff = ix0;
4601 if (yoff ) *yoff = iy0;
4611 data = (
unsigned char *) STBTT_malloc(w * h, info->
userdata);
4612 precompute = (
float *) STBTT_malloc(num_verts *
sizeof(
float), info->
userdata);
4614 for (i=0,j=num_verts-1; i < num_verts; j=i++) {
4616 float x0 = verts[i].
x*scale_x, y0 = verts[i].
y*scale_y;
4617 float x1 = verts[j].
x*scale_x, y1 = verts[j].
y*scale_y;
4618 float dist = (float) STBTT_sqrt((x1-x0)*(x1-x0) + (y1-y0)*(y1-y0));
4619 precompute[i] = (dist == 0) ? 0.0f : 1.0f / dist;
4621 float x2 = verts[j].
x *scale_x, y2 = verts[j].
y *scale_y;
4622 float x1 = verts[i].
cx*scale_x, y1 = verts[i].
cy*scale_y;
4623 float x0 = verts[i].
x *scale_x, y0 = verts[i].
y *scale_y;
4624 float bx = x0 - 2*x1 + x2, by = y0 - 2*y1 + y2;
4625 float len2 = bx*bx + by*by;
4627 precompute[i] = 1.0f / (bx*bx + by*by);
4629 precompute[i] = 0.0f;
4631 precompute[i] = 0.0f;
4634 for (y=iy0; y < iy1; ++y) {
4635 for (x=ix0; x < ix1; ++x) {
4637 float min_dist = 999999.0f;
4638 float sx = (float) x + 0.5f;
4639 float sy = (float) y + 0.5f;
4640 float x_gspace = (sx / scale_x);
4641 float y_gspace = (sy / scale_y);
4643 int winding = stbtt__compute_crossings_x(x_gspace, y_gspace, num_verts, verts);
4645 for (i=0; i < num_verts; ++i) {
4646 float x0 = verts[i].
x*scale_x, y0 = verts[i].
y*scale_y;
4648 if (verts[i].type ==
STBTT_vline && precompute[i] != 0.0f) {
4649 float x1 = verts[i-1].
x*scale_x, y1 = verts[i-1].
y*scale_y;
4651 float dist,dist2 = (x0-sx)*(x0-sx) + (y0-sy)*(y0-sy);
4652 if (dist2 < min_dist*min_dist)
4653 min_dist = (float) STBTT_sqrt(dist2);
4658 dist = (float) STBTT_fabs((x1-x0)*(y0-sy) - (y1-y0)*(x0-sx)) * precompute[i];
4659 STBTT_assert(i != 0);
4660 if (dist < min_dist) {
4664 float dx = x1-x0, dy = y1-y0;
4665 float px = x0-sx, py = y0-sy;
4668 float t = -(px*dx + py*dy) / (dx*dx + dy*dy);
4669 if (t >= 0.0f && t <= 1.0f)
4673 float x2 = verts[i-1].
x *scale_x, y2 = verts[i-1].
y *scale_y;
4674 float x1 = verts[i ].
cx*scale_x, y1 = verts[i ].
cy*scale_y;
4675 float box_x0 = STBTT_min(STBTT_min(x0,x1),x2);
4676 float box_y0 = STBTT_min(STBTT_min(y0,y1),y2);
4677 float box_x1 = STBTT_max(STBTT_max(x0,x1),x2);
4678 float box_y1 = STBTT_max(STBTT_max(y0,y1),y2);
4680 if (sx > box_x0-min_dist && sx < box_x1+min_dist && sy > box_y0-min_dist && sy < box_y1+min_dist) {
4682 float ax = x1-x0, ay = y1-y0;
4683 float bx = x0 - 2*x1 + x2, by = y0 - 2*y1 + y2;
4684 float mx = x0 - sx, my = y0 - sy;
4685 float res[3] = {0.f,0.f,0.f};
4686 float px,py,t,it,dist2;
4687 float a_inv = precompute[i];
4689 float a = 3*(ax*bx + ay*by);
4690 float b = 2*(ax*ax + ay*ay) + (mx*bx+my*by);
4691 float c = mx*ax+my*ay;
4697 float discriminant = b*b - 4*a*c;
4698 if (discriminant < 0)
4701 float root = (float) STBTT_sqrt(discriminant);
4702 res[0] = (-b - root)/(2*a);
4703 res[1] = (-b + root)/(2*a);
4708 float b = 3*(ax*bx + ay*by) * a_inv;
4709 float c = (2*(ax*ax + ay*ay) + (mx*bx+my*by)) * a_inv;
4710 float d = (mx*ax+my*ay) * a_inv;
4711 num = stbtt__solve_cubic(b, c, d, res);
4713 dist2 = (x0-sx)*(x0-sx) + (y0-sy)*(y0-sy);
4714 if (dist2 < min_dist*min_dist)
4715 min_dist = (float) STBTT_sqrt(dist2);
4717 if (num >= 1 && res[0] >= 0.0f && res[0] <= 1.0f) {
4718 t = res[0], it = 1.0f - t;
4719 px = it*it*x0 + 2*t*it*x1 + t*t*x2;
4720 py = it*it*y0 + 2*t*it*y1 + t*t*y2;
4721 dist2 = (px-sx)*(px-sx) + (py-sy)*(py-sy);
4722 if (dist2 < min_dist * min_dist)
4723 min_dist = (float) STBTT_sqrt(dist2);
4725 if (num >= 2 && res[1] >= 0.0f && res[1] <= 1.0f) {
4726 t = res[1], it = 1.0f - t;
4727 px = it*it*x0 + 2*t*it*x1 + t*t*x2;
4728 py = it*it*y0 + 2*t*it*y1 + t*t*y2;
4729 dist2 = (px-sx)*(px-sx) + (py-sy)*(py-sy);
4730 if (dist2 < min_dist * min_dist)
4731 min_dist = (float) STBTT_sqrt(dist2);
4733 if (num >= 3 && res[2] >= 0.0f && res[2] <= 1.0f) {
4734 t = res[2], it = 1.0f - t;
4735 px = it*it*x0 + 2*t*it*x1 + t*t*x2;
4736 py = it*it*y0 + 2*t*it*y1 + t*t*y2;
4737 dist2 = (px-sx)*(px-sx) + (py-sy)*(py-sy);
4738 if (dist2 < min_dist * min_dist)
4739 min_dist = (float) STBTT_sqrt(dist2);
4745 min_dist = -min_dist;
4746 val = onedge_value + pixel_dist_scale * min_dist;
4751 data[(y-iy0)*w+(x-ix0)] = (
unsigned char) val;
4754 STBTT_free(precompute, info->
userdata);
4760 STBTT_DEF unsigned char *
stbtt_GetCodepointSDF(
const stbtt_fontinfo *info,
float scale,
int codepoint,
int padding,
unsigned char onedge_value,
float pixel_dist_scale,
int *width,
int *height,
int *xoff,
int *yoff)
4762 return stbtt_GetGlyphSDF(info, scale,
stbtt_FindGlyphIndex(info, codepoint), padding, onedge_value, pixel_dist_scale, width, height, xoff, yoff);
4767 STBTT_free(bitmap, userdata);
4776 static stbtt_int32 stbtt__CompareUTF8toUTF16_bigendian_prefix(stbtt_uint8 *s1, stbtt_int32 len1, stbtt_uint8 *s2, stbtt_int32 len2)
4782 stbtt_uint16 ch = s2[0]*256 + s2[1];
4784 if (i >= len1)
return -1;
4785 if (s1[i++] != ch)
return -1;
4786 }
else if (ch < 0x800) {
4787 if (i+1 >= len1)
return -1;
4788 if (s1[i++] != 0xc0 + (ch >> 6))
return -1;
4789 if (s1[i++] != 0x80 + (ch & 0x3f))
return -1;
4790 }
else if (ch >= 0xd800 && ch < 0xdc00) {
4792 stbtt_uint16 ch2 = s2[2]*256 + s2[3];
4793 if (i+3 >= len1)
return -1;
4794 c = ((ch - 0xd800) << 10) + (ch2 - 0xdc00) + 0x10000;
4795 if (s1[i++] != 0xf0 + (c >> 18))
return -1;
4796 if (s1[i++] != 0x80 + ((c >> 12) & 0x3f))
return -1;
4797 if (s1[i++] != 0x80 + ((c >> 6) & 0x3f))
return -1;
4798 if (s1[i++] != 0x80 + ((c ) & 0x3f))
return -1;
4801 }
else if (ch >= 0xdc00 && ch < 0xe000) {
4804 if (i+2 >= len1)
return -1;
4805 if (s1[i++] != 0xe0 + (ch >> 12))
return -1;
4806 if (s1[i++] != 0x80 + ((ch >> 6) & 0x3f))
return -1;
4807 if (s1[i++] != 0x80 + ((ch ) & 0x3f))
return -1;
4815 static int stbtt_CompareUTF8toUTF16_bigendian_internal(
char *s1,
int len1,
char *s2,
int len2)
4817 return len1 == stbtt__CompareUTF8toUTF16_bigendian_prefix((stbtt_uint8*) s1, len1, (stbtt_uint8*) s2, len2);
4824 stbtt_int32 i,count,stringOffset;
4825 stbtt_uint8 *fc = font->
data;
4827 stbtt_uint32 nm = stbtt__find_table(fc, offset,
"name");
4828 if (!nm)
return NULL;
4830 count = ttUSHORT(fc+nm+2);
4831 stringOffset = nm + ttUSHORT(fc+nm+4);
4832 for (i=0; i < count; ++i) {
4833 stbtt_uint32 loc = nm + 6 + 12 * i;
4834 if (platformID == ttUSHORT(fc+loc+0) && encodingID == ttUSHORT(fc+loc+2)
4835 && languageID == ttUSHORT(fc+loc+4) && nameID == ttUSHORT(fc+loc+6)) {
4836 *length = ttUSHORT(fc+loc+8);
4837 return (
const char *) (fc+stringOffset+ttUSHORT(fc+loc+10));
4843 static int stbtt__matchpair(stbtt_uint8 *fc, stbtt_uint32 nm, stbtt_uint8 *name, stbtt_int32 nlen, stbtt_int32 target_id, stbtt_int32 next_id)
4846 stbtt_int32 count = ttUSHORT(fc+nm+2);
4847 stbtt_int32 stringOffset = nm + ttUSHORT(fc+nm+4);
4849 for (i=0; i < count; ++i) {
4850 stbtt_uint32 loc = nm + 6 + 12 * i;
4851 stbtt_int32
id = ttUSHORT(fc+loc+6);
4852 if (
id == target_id) {
4854 stbtt_int32 platform = ttUSHORT(fc+loc+0), encoding = ttUSHORT(fc+loc+2), language = ttUSHORT(fc+loc+4);
4857 if (platform == 0 || (platform == 3 && encoding == 1) || (platform == 3 && encoding == 10)) {
4858 stbtt_int32 slen = ttUSHORT(fc+loc+8);
4859 stbtt_int32 off = ttUSHORT(fc+loc+10);
4862 stbtt_int32 matchlen = stbtt__CompareUTF8toUTF16_bigendian_prefix(name, nlen, fc+stringOffset+off,slen);
4863 if (matchlen >= 0) {
4865 if (i+1 < count && ttUSHORT(fc+loc+12+6) == next_id && ttUSHORT(fc+loc+12) == platform && ttUSHORT(fc+loc+12+2) == encoding && ttUSHORT(fc+loc+12+4) == language) {
4866 slen = ttUSHORT(fc+loc+12+8);
4867 off = ttUSHORT(fc+loc+12+10);
4869 if (matchlen == nlen)
4871 }
else if (matchlen < nlen && name[matchlen] ==
' ') {
4873 if (stbtt_CompareUTF8toUTF16_bigendian_internal((
char*) (name+matchlen), nlen-matchlen, (
char*)(fc+stringOffset+off),slen))
4878 if (matchlen == nlen)
4890 static int stbtt__matches(stbtt_uint8 *fc, stbtt_uint32 offset, stbtt_uint8 *name, stbtt_int32 flags)
4892 stbtt_int32 nlen = (stbtt_int32) STBTT_strlen((
char *) name);
4894 if (!stbtt__isfont(fc+offset))
return 0;
4898 hd = stbtt__find_table(fc, offset,
"head");
4899 if ((ttUSHORT(fc+hd+44) & 7) != (flags & 7))
return 0;
4902 nm = stbtt__find_table(fc, offset,
"name");
4907 if (stbtt__matchpair(fc, nm, name, nlen, 16, -1))
return 1;
4908 if (stbtt__matchpair(fc, nm, name, nlen, 1, -1))
return 1;
4909 if (stbtt__matchpair(fc, nm, name, nlen, 3, -1))
return 1;
4911 if (stbtt__matchpair(fc, nm, name, nlen, 16, 17))
return 1;
4912 if (stbtt__matchpair(fc, nm, name, nlen, 1, 2))
return 1;
4913 if (stbtt__matchpair(fc, nm, name, nlen, 3, -1))
return 1;
4919 static int stbtt_FindMatchingFont_internal(
unsigned char *font_collection,
char *name_utf8, stbtt_int32 flags)
4924 if (off < 0)
return off;
4925 if (stbtt__matches((stbtt_uint8 *) font_collection, off, (stbtt_uint8*) name_utf8, flags))
4930 #if defined(__GNUC__) || defined(__clang__)
4931 #pragma GCC diagnostic push
4932 #pragma GCC diagnostic ignored "-Wcast-qual"
4936 float pixel_height,
unsigned char *pixels,
int pw,
int ph,
4939 return stbtt_BakeFontBitmap_internal((
unsigned char *) data, offset, pixel_height, pixels, pw, ph, first_char, num_chars, chardata);
4944 return stbtt_GetFontOffsetForIndex_internal((
unsigned char *) data, index);
4949 return stbtt_GetNumberOfFonts_internal((
unsigned char *) data);
4954 return stbtt_InitFont_internal(info, (
unsigned char *) data, offset);
4959 return stbtt_FindMatchingFont_internal((
unsigned char *) fontdata, (
char *) name, flags);
4964 return stbtt_CompareUTF8toUTF16_bigendian_internal((
char *) s1, len1, (
char *) s2, len2);
4967 #if defined(__GNUC__) || defined(__clang__)
4968 #pragma GCC diagnostic pop
struct range range
A range, typically of memory.
int main(void)
The main entry point of the application.
Definition: entry.h:36
STBTT_DEF void stbtt_MakeGlyphBitmapSubpixelPrefilter(const stbtt_fontinfo *info, unsigned char *output, int out_w, int out_h, int out_stride, float scale_x, float scale_y, float shift_x, float shift_y, int oversample_x, int oversample_y, float *sub_x, float *sub_y, int glyph)
STBTT_DEF void stbtt_GetCodepointHMetrics(const stbtt_fontinfo *info, int codepoint, int *advanceWidth, int *leftSideBearing)
STBTT_DEF int stbtt_PackFontRanges(stbtt_pack_context *spc, const unsigned char *fontdata, int font_index, stbtt_pack_range *ranges, int num_ranges)
STBTT_DEF void stbtt_PackSetSkipMissingCodepoints(stbtt_pack_context *spc, int skip)
STBTT_DEF int stbtt_GetCodepointShape(const stbtt_fontinfo *info, int unicode_codepoint, stbtt_vertex **vertices)
@ STBTT_MS_EID_UNICODE_FULL
Definition: stb_truetype.h:1063
@ STBTT_MS_EID_SYMBOL
Definition: stb_truetype.h:1060
@ STBTT_MS_EID_SHIFTJIS
Definition: stb_truetype.h:1062
@ STBTT_MS_EID_UNICODE_BMP
Definition: stb_truetype.h:1061
@ STBTT_UNICODE_EID_ISO_10646
Definition: stb_truetype.h:1054
@ STBTT_UNICODE_EID_UNICODE_2_0_BMP
Definition: stb_truetype.h:1055
@ STBTT_UNICODE_EID_UNICODE_2_0_FULL
Definition: stb_truetype.h:1056
@ STBTT_UNICODE_EID_UNICODE_1_1
Definition: stb_truetype.h:1053
@ STBTT_UNICODE_EID_UNICODE_1_0
Definition: stb_truetype.h:1052
STBTT_DEF int stbtt_GetFontVMetricsOS2(const stbtt_fontinfo *info, int *typoAscent, int *typoDescent, int *typoLineGap)
STBTT_DEF void stbtt_FreeSDF(unsigned char *bitmap, void *userdata)
STBTT_DEF void stbtt_GetCodepointBitmapBoxSubpixel(const stbtt_fontinfo *font, int codepoint, float scale_x, float scale_y, float shift_x, float shift_y, int *ix0, int *iy0, int *ix1, int *iy1)
STBTT_DEF int stbtt_GetKerningTable(const stbtt_fontinfo *info, stbtt_kerningentry *table, int table_length)
STBTT_DEF int stbtt_FindGlyphIndex(const stbtt_fontinfo *info, int unicode_codepoint)
STBTT_DEF void stbtt_GetFontVMetrics(const stbtt_fontinfo *info, int *ascent, int *descent, int *lineGap)
STBTT_DEF void stbtt_GetCodepointBitmapBox(const stbtt_fontinfo *font, int codepoint, float scale_x, float scale_y, int *ix0, int *iy0, int *ix1, int *iy1)
STBTT_DEF int stbtt_IsGlyphEmpty(const stbtt_fontinfo *info, int glyph_index)
STBTT_DEF int stbtt_PackFontRange(stbtt_pack_context *spc, const unsigned char *fontdata, int font_index, float font_size, int first_unicode_char_in_range, int num_chars_in_range, stbtt_packedchar *chardata_for_range)
STBTT_DEF unsigned char * stbtt_GetGlyphSDF(const stbtt_fontinfo *info, float scale, int glyph, int padding, unsigned char onedge_value, float pixel_dist_scale, int *width, int *height, int *xoff, int *yoff)
STBTT_DEF void stbtt_MakeCodepointBitmap(const stbtt_fontinfo *info, unsigned char *output, int out_w, int out_h, int out_stride, float scale_x, float scale_y, int codepoint)
@ STBTT_MAC_EID_KOREAN
Definition: stb_truetype.h:1070
@ STBTT_MAC_EID_ROMAN
Definition: stb_truetype.h:1067
@ STBTT_MAC_EID_HEBREW
Definition: stb_truetype.h:1068
@ STBTT_MAC_EID_CHINESE_TRAD
Definition: stb_truetype.h:1069
@ STBTT_MAC_EID_JAPANESE
Definition: stb_truetype.h:1068
@ STBTT_MAC_EID_RUSSIAN
Definition: stb_truetype.h:1070
@ STBTT_MAC_EID_GREEK
Definition: stb_truetype.h:1069
@ STBTT_MAC_EID_ARABIC
Definition: stb_truetype.h:1067
STBTT_DEF void stbtt_MakeCodepointBitmapSubpixelPrefilter(const stbtt_fontinfo *info, unsigned char *output, int out_w, int out_h, int out_stride, float scale_x, float scale_y, float shift_x, float shift_y, int oversample_x, int oversample_y, float *sub_x, float *sub_y, int codepoint)
STBTT_DEF void stbtt_PackSetOversampling(stbtt_pack_context *spc, unsigned int h_oversample, unsigned int v_oversample)
@ STBTT_MS_LANG_DUTCH
Definition: stb_truetype.h:1077
@ STBTT_MS_LANG_JAPANESE
Definition: stb_truetype.h:1076
@ STBTT_MS_LANG_SWEDISH
Definition: stb_truetype.h:1080
@ STBTT_MS_LANG_FRENCH
Definition: stb_truetype.h:1078
@ STBTT_MS_LANG_SPANISH
Definition: stb_truetype.h:1079
@ STBTT_MS_LANG_CHINESE
Definition: stb_truetype.h:1076
@ STBTT_MS_LANG_ENGLISH
Definition: stb_truetype.h:1075
@ STBTT_MS_LANG_RUSSIAN
Definition: stb_truetype.h:1078
@ STBTT_MS_LANG_ITALIAN
Definition: stb_truetype.h:1075
@ STBTT_MS_LANG_KOREAN
Definition: stb_truetype.h:1077
@ STBTT_MS_LANG_GERMAN
Definition: stb_truetype.h:1079
@ STBTT_MS_LANG_HEBREW
Definition: stb_truetype.h:1080
STBTT_DEF void stbtt_GetFontBoundingBox(const stbtt_fontinfo *info, int *x0, int *y0, int *x1, int *y1)
STBTT_DEF void stbtt_MakeCodepointBitmapSubpixel(const stbtt_fontinfo *info, unsigned char *output, int out_w, int out_h, int out_stride, float scale_x, float scale_y, float shift_x, float shift_y, int codepoint)
STBTT_DEF void stbtt_GetGlyphBitmapBoxSubpixel(const stbtt_fontinfo *font, int glyph, float scale_x, float scale_y, float shift_x, float shift_y, int *ix0, int *iy0, int *ix1, int *iy1)
STBTT_DEF void stbtt_Rasterize(stbtt__bitmap *result, float flatness_in_pixels, stbtt_vertex *vertices, int num_verts, float scale_x, float scale_y, float shift_x, float shift_y, int x_off, int y_off, int invert, void *userdata)
STBTT_DEF int stbtt_GetFontOffsetForIndex(const unsigned char *data, int index)
STBTT_DEF int stbtt_GetCodepointSVG(const stbtt_fontinfo *info, int unicode_codepoint, const char **svg)
@ STBTT_vmove
Definition: stb_truetype.h:825
@ STBTT_vcubic
Definition: stb_truetype.h:828
@ STBTT_vcurve
Definition: stb_truetype.h:827
@ STBTT_vline
Definition: stb_truetype.h:826
STBTT_DEF int stbtt_GetGlyphSVG(const stbtt_fontinfo *info, int gl, const char **svg)
STBTT_DEF unsigned char * stbtt_GetGlyphBitmap(const stbtt_fontinfo *info, float scale_x, float scale_y, int glyph, int *width, int *height, int *xoff, int *yoff)
STBTT_DEF int stbtt_GetGlyphShape(const stbtt_fontinfo *info, int glyph_index, stbtt_vertex **vertices)
STBTT_DEF float stbtt_ScaleForMappingEmToPixels(const stbtt_fontinfo *info, float pixels)
STBTT_DEF int stbtt_FindMatchingFont(const unsigned char *fontdata, const char *name, int flags)
STBTT_DEF void stbtt_GetGlyphBitmapBox(const stbtt_fontinfo *font, int glyph, float scale_x, float scale_y, int *ix0, int *iy0, int *ix1, int *iy1)
struct stbrp_rect stbrp_rect
Definition: stb_truetype.h:585
STBTT_DEF void stbtt_FreeBitmap(unsigned char *bitmap, void *userdata)
STBTT_DEF int stbtt_GetCodepointKernAdvance(const stbtt_fontinfo *info, int ch1, int ch2)
STBTT_DEF unsigned char * stbtt_GetCodepointBitmapSubpixel(const stbtt_fontinfo *info, float scale_x, float scale_y, float shift_x, float shift_y, int codepoint, int *width, int *height, int *xoff, int *yoff)
STBTT_DEF void stbtt_FreeShape(const stbtt_fontinfo *info, stbtt_vertex *vertices)
STBTT_DEF int stbtt_PackFontRangesGatherRects(stbtt_pack_context *spc, const stbtt_fontinfo *info, stbtt_pack_range *ranges, int num_ranges, stbrp_rect *rects)
STBTT_DEF void stbtt_MakeGlyphBitmap(const stbtt_fontinfo *info, unsigned char *output, int out_w, int out_h, int out_stride, float scale_x, float scale_y, int glyph)
STBTT_DEF unsigned char * stbtt_GetGlyphBitmapSubpixel(const stbtt_fontinfo *info, float scale_x, float scale_y, float shift_x, float shift_y, int glyph, int *width, int *height, int *xoff, int *yoff)
STBTT_DEF unsigned char * stbtt_FindSVGDoc(const stbtt_fontinfo *info, int gl)
@ STBTT_MAC_LANG_SWEDISH
Definition: stb_truetype.h:1088
@ STBTT_MAC_LANG_KOREAN
Definition: stb_truetype.h:1085
@ STBTT_MAC_LANG_ITALIAN
Definition: stb_truetype.h:1090
@ STBTT_MAC_LANG_SPANISH
Definition: stb_truetype.h:1087
@ STBTT_MAC_LANG_CHINESE_SIMPLIFIED
Definition: stb_truetype.h:1089
@ STBTT_MAC_LANG_ENGLISH
Definition: stb_truetype.h:1084
@ STBTT_MAC_LANG_JAPANESE
Definition: stb_truetype.h:1084
@ STBTT_MAC_LANG_FRENCH
Definition: stb_truetype.h:1087
@ STBTT_MAC_LANG_HEBREW
Definition: stb_truetype.h:1089
@ STBTT_MAC_LANG_GERMAN
Definition: stb_truetype.h:1088
@ STBTT_MAC_LANG_ARABIC
Definition: stb_truetype.h:1085
@ STBTT_MAC_LANG_DUTCH
Definition: stb_truetype.h:1086
@ STBTT_MAC_LANG_CHINESE_TRAD
Definition: stb_truetype.h:1090
@ STBTT_MAC_LANG_RUSSIAN
Definition: stb_truetype.h:1086
struct stbtt_kerningentry stbtt_kerningentry
STBTT_DEF int stbtt_BakeFontBitmap(const unsigned char *data, int offset, float pixel_height, unsigned char *pixels, int pw, int ph, int first_char, int num_chars, stbtt_bakedchar *chardata)
STBTT_DEF void stbtt_MakeGlyphBitmapSubpixel(const stbtt_fontinfo *info, unsigned char *output, int out_w, int out_h, int out_stride, float scale_x, float scale_y, float shift_x, float shift_y, int glyph)
@ STBTT_PLATFORM_ID_UNICODE
Definition: stb_truetype.h:1045
@ STBTT_PLATFORM_ID_MICROSOFT
Definition: stb_truetype.h:1048
@ STBTT_PLATFORM_ID_ISO
Definition: stb_truetype.h:1047
@ STBTT_PLATFORM_ID_MAC
Definition: stb_truetype.h:1046
STBTT_DEF float stbtt_ScaleForPixelHeight(const stbtt_fontinfo *info, float pixels)
STBTT_DEF int stbtt_CompareUTF8toUTF16_bigendian(const char *s1, int len1, const char *s2, int len2)
#define STBTT_DEF
Definition: stb_truetype.h:505
STBTT_DEF void stbtt_PackEnd(stbtt_pack_context *spc)
STBTT_DEF void stbtt_GetGlyphHMetrics(const stbtt_fontinfo *info, int glyph_index, int *advanceWidth, int *leftSideBearing)
STBTT_DEF int stbtt_GetKerningTableLength(const stbtt_fontinfo *info)
STBTT_DEF int stbtt_PackFontRangesRenderIntoRects(stbtt_pack_context *spc, const stbtt_fontinfo *info, stbtt_pack_range *ranges, int num_ranges, stbrp_rect *rects)
STBTT_DEF void stbtt_GetBakedQuad(const stbtt_bakedchar *chardata, int pw, int ph, int char_index, float *xpos, float *ypos, stbtt_aligned_quad *q, int opengl_fillrule)
#define stbtt_vertex_type
Definition: stb_truetype.h:834
STBTT_DEF void stbtt_GetPackedQuad(const stbtt_packedchar *chardata, int pw, int ph, int char_index, float *xpos, float *ypos, stbtt_aligned_quad *q, int align_to_integer)
STBTT_DEF int stbtt_GetCodepointBox(const stbtt_fontinfo *info, int codepoint, int *x0, int *y0, int *x1, int *y1)
STBTT_DEF int stbtt_InitFont(stbtt_fontinfo *info, const unsigned char *data, int offset)
STBTT_DEF int stbtt_GetGlyphBox(const stbtt_fontinfo *info, int glyph_index, int *x0, int *y0, int *x1, int *y1)
STBTT_DEF int stbtt_GetGlyphKernAdvance(const stbtt_fontinfo *info, int glyph1, int glyph2)
STBTT_DEF int stbtt_PackBegin(stbtt_pack_context *spc, unsigned char *pixels, int width, int height, int stride_in_bytes, int padding, void *alloc_context)
STBTT_DEF unsigned char * stbtt_GetCodepointBitmap(const stbtt_fontinfo *info, float scale_x, float scale_y, int codepoint, int *width, int *height, int *xoff, int *yoff)
STBTT_DEF const char * stbtt_GetFontNameString(const stbtt_fontinfo *font, int *length, int platformID, int encodingID, int languageID, int nameID)
STBTT_DEF void stbtt_GetScaledFontVMetrics(const unsigned char *fontdata, int index, float size, float *ascent, float *descent, float *lineGap)
STBTT_DEF void stbtt_PackFontRangesPackRects(stbtt_pack_context *spc, stbrp_rect *rects, int num_rects)
STBTT_DEF unsigned char * stbtt_GetCodepointSDF(const stbtt_fontinfo *info, float scale, int codepoint, int padding, unsigned char onedge_value, float pixel_dist_scale, int *width, int *height, int *xoff, int *yoff)
STBTT_DEF int stbtt_GetNumberOfFonts(const unsigned char *data)
A range, typically of memory.
Definition: defines.h:61
Represents a line which starts at an origin and proceed infinitely in the given direction....
Definition: geometry_3d.h:8
Definition: stb_truetype.h:925
int stride
Definition: stb_truetype.h:926
int h
Definition: stb_truetype.h:926
int w
Definition: stb_truetype.h:926
unsigned char * pixels
Definition: stb_truetype.h:927
Definition: stb_truetype.h:514
int size
Definition: stb_truetype.h:517
unsigned char * data
Definition: stb_truetype.h:515
int cursor
Definition: stb_truetype.h:516
Definition: stb_truetype.h:544
float s0
Definition: stb_truetype.h:545
float s1
Definition: stb_truetype.h:546
float x1
Definition: stb_truetype.h:546
float x0
Definition: stb_truetype.h:545
float t0
Definition: stb_truetype.h:545
float y1
Definition: stb_truetype.h:546
float t1
Definition: stb_truetype.h:546
float y0
Definition: stb_truetype.h:545
Definition: stb_truetype.h:528
unsigned short x1
Definition: stb_truetype.h:529
unsigned short x0
Definition: stb_truetype.h:529
float yoff
Definition: stb_truetype.h:530
unsigned short y0
Definition: stb_truetype.h:529
unsigned short y1
Definition: stb_truetype.h:529
float xoff
Definition: stb_truetype.h:530
float xadvance
Definition: stb_truetype.h:530
Definition: stb_truetype.h:714
int loca
Definition: stb_truetype.h:721
stbtt__buf charstrings
Definition: stb_truetype.h:726
int head
Definition: stb_truetype.h:721
stbtt__buf cff
Definition: stb_truetype.h:725
int svg
Definition: stb_truetype.h:721
stbtt__buf gsubrs
Definition: stb_truetype.h:727
int hhea
Definition: stb_truetype.h:721
int gpos
Definition: stb_truetype.h:721
stbtt__buf fdselect
Definition: stb_truetype.h:730
int hmtx
Definition: stb_truetype.h:721
stbtt__buf fontdicts
Definition: stb_truetype.h:729
int fontstart
Definition: stb_truetype.h:717
int indexToLocFormat
Definition: stb_truetype.h:723
int numGlyphs
Definition: stb_truetype.h:719
int index_map
Definition: stb_truetype.h:722
int glyf
Definition: stb_truetype.h:721
unsigned char * data
Definition: stb_truetype.h:716
stbtt__buf subrs
Definition: stb_truetype.h:728
void * userdata
Definition: stb_truetype.h:715
int kern
Definition: stb_truetype.h:721
Definition: stb_truetype.h:805
int glyph2
Definition: stb_truetype.h:807
int advance
Definition: stb_truetype.h:808
int glyph1
Definition: stb_truetype.h:806
Definition: stb_truetype.h:678
int width
Definition: stb_truetype.h:681
void * user_allocator_context
Definition: stb_truetype.h:679
unsigned int h_oversample
Definition: stb_truetype.h:686
void * nodes
Definition: stb_truetype.h:688
unsigned int v_oversample
Definition: stb_truetype.h:686
int stride_in_bytes
Definition: stb_truetype.h:683
int padding
Definition: stb_truetype.h:684
int skip_missing
Definition: stb_truetype.h:685
void * pack_info
Definition: stb_truetype.h:680
unsigned char * pixels
Definition: stb_truetype.h:687
int height
Definition: stb_truetype.h:682
Definition: stb_truetype.h:620
int num_chars
Definition: stb_truetype.h:624
stbtt_packedchar * chardata_for_range
Definition: stb_truetype.h:625
float font_size
Definition: stb_truetype.h:621
unsigned char v_oversample
Definition: stb_truetype.h:626
unsigned char h_oversample
Definition: stb_truetype.h:626
int first_unicode_codepoint_in_range
Definition: stb_truetype.h:622
int * array_of_unicode_codepoints
Definition: stb_truetype.h:623
Definition: stb_truetype.h:576
unsigned short x1
Definition: stb_truetype.h:577
unsigned short x0
Definition: stb_truetype.h:577
float yoff
Definition: stb_truetype.h:578
unsigned short y0
Definition: stb_truetype.h:577
unsigned short y1
Definition: stb_truetype.h:577
float xoff
Definition: stb_truetype.h:578
float xoff2
Definition: stb_truetype.h:579
float yoff2
Definition: stb_truetype.h:579
float xadvance
Definition: stb_truetype.h:578
Definition: stb_truetype.h:836
stbtt_vertex_type cx
Definition: stb_truetype.h:837
stbtt_vertex_type x
Definition: stb_truetype.h:837
unsigned char type
Definition: stb_truetype.h:838
stbtt_vertex_type y
Definition: stb_truetype.h:837
unsigned char padding
Definition: stb_truetype.h:838
stbtt_vertex_type cy
Definition: stb_truetype.h:837