Open Source Tomb Raider Engine
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stb_truetype.h 100KB

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  1. // stb_truetype.h - v1.02 - public domain
  2. // authored from 2009-2014 by Sean Barrett / RAD Game Tools
  3. //
  4. // This library processes TrueType files:
  5. // parse files
  6. // extract glyph metrics
  7. // extract glyph shapes
  8. // render glyphs to one-channel bitmaps with antialiasing (box filter)
  9. //
  10. // Todo:
  11. // non-MS cmaps
  12. // crashproof on bad data
  13. // hinting? (no longer patented)
  14. // cleartype-style AA?
  15. // optimize: use simple memory allocator for intermediates
  16. // optimize: build edge-list directly from curves
  17. // optimize: rasterize directly from curves?
  18. //
  19. // ADDITIONAL CONTRIBUTORS
  20. //
  21. // Mikko Mononen: compound shape support, more cmap formats
  22. // Tor Andersson: kerning, subpixel rendering
  23. //
  24. // Bug/warning reports/fixes:
  25. // "Zer" on mollyrocket (with fix)
  26. // Cass Everitt
  27. // stoiko (Haemimont Games)
  28. // Brian Hook
  29. // Walter van Niftrik
  30. // David Gow
  31. // David Given
  32. // Ivan-Assen Ivanov
  33. // Anthony Pesch
  34. // Johan Duparc
  35. // Hou Qiming
  36. // Fabian "ryg" Giesen
  37. //
  38. // Misc other:
  39. // Ryan Gordon
  40. //
  41. // VERSION HISTORY
  42. //
  43. // 1.02 (2014-12-10) fix various warnings & compile issues w/ stb_rect_pack, C++
  44. // 1.01 (2014-12-08) fix subpixel position when oversampling to exactly match
  45. // non-oversampled; STBTT_POINT_SIZE for packed case only
  46. // 1.00 (2014-12-06) add new PackBegin etc. API, w/ support for oversampling
  47. // 0.99 (2014-09-18) fix multiple bugs with subpixel rendering (ryg)
  48. // 0.9 (2014-08-07) support certain mac/iOS fonts without an MS platformID
  49. // 0.8b (2014-07-07) fix a warning
  50. // 0.8 (2014-05-25) fix a few more warnings
  51. // 0.7 (2013-09-25) bugfix: subpixel glyph bug fixed in 0.5 had come back
  52. // 0.6c (2012-07-24) improve documentation
  53. // 0.6b (2012-07-20) fix a few more warnings
  54. // 0.6 (2012-07-17) fix warnings; added stbtt_ScaleForMappingEmToPixels,
  55. // stbtt_GetFontBoundingBox, stbtt_IsGlyphEmpty
  56. // 0.5 (2011-12-09) bugfixes:
  57. // subpixel glyph renderer computed wrong bounding box
  58. // first vertex of shape can be off-curve (FreeSans)
  59. // 0.4b (2011-12-03) fixed an error in the font baking example
  60. // 0.4 (2011-12-01) kerning, subpixel rendering (tor)
  61. // bugfixes for:
  62. // codepoint-to-glyph conversion using table fmt=12
  63. // codepoint-to-glyph conversion using table fmt=4
  64. // stbtt_GetBakedQuad with non-square texture (Zer)
  65. // updated Hello World! sample to use kerning and subpixel
  66. // fixed some warnings
  67. // 0.3 (2009-06-24) cmap fmt=12, compound shapes (MM)
  68. // userdata, malloc-from-userdata, non-zero fill (stb)
  69. // 0.2 (2009-03-11) Fix unsigned/signed char warnings
  70. // 0.1 (2009-03-09) First public release
  71. //
  72. // LICENSE
  73. //
  74. // This software is in the public domain. Where that dedication is not
  75. // recognized, you are granted a perpetual, irrevokable license to copy
  76. // and modify this file as you see fit.
  77. //
  78. // USAGE
  79. //
  80. // Include this file in whatever places neeed to refer to it. In ONE C/C++
  81. // file, write:
  82. // #define STB_TRUETYPE_IMPLEMENTATION
  83. // before the #include of this file. This expands out the actual
  84. // implementation into that C/C++ file.
  85. //
  86. // Simple 3D API (don't ship this, but it's fine for tools and quick start)
  87. // stbtt_BakeFontBitmap() -- bake a font to a bitmap for use as texture
  88. // stbtt_GetBakedQuad() -- compute quad to draw for a given char
  89. //
  90. // Improved 3D API (more shippable):
  91. // #include "stb_rect_pack.h" -- optional, but you really want it
  92. // stbtt_PackBegin()
  93. // stbtt_PackSetOversample() -- for improved quality on small fonts
  94. // stbtt_PackFontRanges()
  95. // stbtt_PackEnd()
  96. // stbtt_GetPackedQuad()
  97. //
  98. // "Load" a font file from a memory buffer (you have to keep the buffer loaded)
  99. // stbtt_InitFont()
  100. // stbtt_GetFontOffsetForIndex() -- use for TTC font collections
  101. //
  102. // Render a unicode codepoint to a bitmap
  103. // stbtt_GetCodepointBitmap() -- allocates and returns a bitmap
  104. // stbtt_MakeCodepointBitmap() -- renders into bitmap you provide
  105. // stbtt_GetCodepointBitmapBox() -- how big the bitmap must be
  106. //
  107. // Character advance/positioning
  108. // stbtt_GetCodepointHMetrics()
  109. // stbtt_GetFontVMetrics()
  110. // stbtt_GetCodepointKernAdvance()
  111. //
  112. // ADDITIONAL DOCUMENTATION
  113. //
  114. // Immediately after this block comment are a series of sample programs.
  115. //
  116. // After the sample programs is the "header file" section. This section
  117. // includes documentation for each API function.
  118. //
  119. // Some important concepts to understand to use this library:
  120. //
  121. // Codepoint
  122. // Characters are defined by unicode codepoints, e.g. 65 is
  123. // uppercase A, 231 is lowercase c with a cedilla, 0x7e30 is
  124. // the hiragana for "ma".
  125. //
  126. // Glyph
  127. // A visual character shape (every codepoint is rendered as
  128. // some glyph)
  129. //
  130. // Glyph index
  131. // A font-specific integer ID representing a glyph
  132. //
  133. // Baseline
  134. // Glyph shapes are defined relative to a baseline, which is the
  135. // bottom of uppercase characters. Characters extend both above
  136. // and below the baseline.
  137. //
  138. // Current Point
  139. // As you draw text to the screen, you keep track of a "current point"
  140. // which is the origin of each character. The current point's vertical
  141. // position is the baseline. Even "baked fonts" use this model.
  142. //
  143. // Vertical Font Metrics
  144. // The vertical qualities of the font, used to vertically position
  145. // and space the characters. See docs for stbtt_GetFontVMetrics.
  146. //
  147. // Font Size in Pixels or Points
  148. // The preferred interface for specifying font sizes in stb_truetype
  149. // is to specify how tall the font's vertical extent should be in pixels.
  150. // If that sounds good enough, skip the next paragraph.
  151. //
  152. // Most font APIs instead use "points", which are a common typographic
  153. // measurement for describing font size, defined as 72 points per inch.
  154. // stb_truetype provides a point API for compatibility. However, true
  155. // "per inch" conventions don't make much sense on computer displays
  156. // since they different monitors have different number of pixels per
  157. // inch. For example, Windows traditionally uses a convention that
  158. // there are 96 pixels per inch, thus making 'inch' measurements have
  159. // nothing to do with inches, and thus effectively defining a point to
  160. // be 1.333 pixels. Additionally, the TrueType font data provides
  161. // an explicit scale factor to scale a given font's glyphs to points,
  162. // but the author has observed that this scale factor is often wrong
  163. // for non-commercial fonts, thus making fonts scaled in points
  164. // according to the TrueType spec incoherently sized in practice.
  165. //
  166. // ADVANCED USAGE
  167. //
  168. // Quality:
  169. //
  170. // - Use the functions with Subpixel at the end to allow your characters
  171. // to have subpixel positioning. Since the font is anti-aliased, not
  172. // hinted, this is very import for quality. (This is not possible with
  173. // baked fonts.)
  174. //
  175. // - Kerning is now supported, and if you're supporting subpixel rendering
  176. // then kerning is worth using to give your text a polished look.
  177. //
  178. // Performance:
  179. //
  180. // - Convert Unicode codepoints to glyph indexes and operate on the glyphs;
  181. // if you don't do this, stb_truetype is forced to do the conversion on
  182. // every call.
  183. //
  184. // - There are a lot of memory allocations. We should modify it to take
  185. // a temp buffer and allocate from the temp buffer (without freeing),
  186. // should help performance a lot.
  187. //
  188. // NOTES
  189. //
  190. // The system uses the raw data found in the .ttf file without changing it
  191. // and without building auxiliary data structures. This is a bit inefficient
  192. // on little-endian systems (the data is big-endian), but assuming you're
  193. // caching the bitmaps or glyph shapes this shouldn't be a big deal.
  194. //
  195. // It appears to be very hard to programmatically determine what font a
  196. // given file is in a general way. I provide an API for this, but I don't
  197. // recommend it.
  198. //
  199. //
  200. // SOURCE STATISTICS (based on v0.6c, 2050 LOC)
  201. //
  202. // Documentation & header file 520 LOC \___ 660 LOC documentation
  203. // Sample code 140 LOC /
  204. // Truetype parsing 620 LOC ---- 620 LOC TrueType
  205. // Software rasterization 240 LOC \ .
  206. // Curve tesselation 120 LOC \__ 550 LOC Bitmap creation
  207. // Bitmap management 100 LOC /
  208. // Baked bitmap interface 70 LOC /
  209. // Font name matching & access 150 LOC ---- 150
  210. // C runtime library abstraction 60 LOC ---- 60
  211. //////////////////////////////////////////////////////////////////////////////
  212. //////////////////////////////////////////////////////////////////////////////
  213. ////
  214. //// SAMPLE PROGRAMS
  215. ////
  216. //
  217. // Incomplete text-in-3d-api example, which draws quads properly aligned to be lossless
  218. //
  219. #if 0
  220. #define STB_TRUETYPE_IMPLEMENTATION // force following include to generate implementation
  221. #include "stb_truetype.h"
  222. char ttf_buffer[1<<20];
  223. unsigned char temp_bitmap[512*512];
  224. stbtt_bakedchar cdata[96]; // ASCII 32..126 is 95 glyphs
  225. GLstbtt_uint ftex;
  226. void my_stbtt_initfont(void)
  227. {
  228. fread(ttf_buffer, 1, 1<<20, fopen("c:/windows/fonts/times.ttf", "rb"));
  229. stbtt_BakeFontBitmap(data,0, 32.0, temp_bitmap,512,512, 32,96, cdata); // no guarantee this fits!
  230. // can free ttf_buffer at this point
  231. glGenTextures(1, &ftex);
  232. glBindTexture(GL_TEXTURE_2D, ftex);
  233. glTexImage2D(GL_TEXTURE_2D, 0, GL_ALPHA, 512,512, 0, GL_ALPHA, GL_UNSIGNED_BYTE, temp_bitmap);
  234. // can free temp_bitmap at this point
  235. glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
  236. }
  237. void my_stbtt_print(float x, float y, char *text)
  238. {
  239. // assume orthographic projection with units = screen pixels, origin at top left
  240. glBindTexture(GL_TEXTURE_2D, ftex);
  241. glBegin(GL_QUADS);
  242. while (*text) {
  243. if (*text >= 32 && *text < 128) {
  244. stbtt_aligned_quad q;
  245. stbtt_GetBakedQuad(cdata, 512,512, *text-32, &x,&y,&q,1);//1=opengl & d3d10+,0=d3d9
  246. glTexCoord2f(q.s0,q.t1); glVertex2f(q.x0,q.y0);
  247. glTexCoord2f(q.s1,q.t1); glVertex2f(q.x1,q.y0);
  248. glTexCoord2f(q.s1,q.t0); glVertex2f(q.x1,q.y1);
  249. glTexCoord2f(q.s0,q.t0); glVertex2f(q.x0,q.y1);
  250. }
  251. ++text;
  252. }
  253. glEnd();
  254. }
  255. #endif
  256. //
  257. //
  258. //////////////////////////////////////////////////////////////////////////////
  259. //
  260. // Complete program (this compiles): get a single bitmap, print as ASCII art
  261. //
  262. #if 0
  263. #include <stdio.h>
  264. #define STB_TRUETYPE_IMPLEMENTATION // force following include to generate implementation
  265. #include "stb_truetype.h"
  266. char ttf_buffer[1<<25];
  267. int main(int argc, char **argv)
  268. {
  269. stbtt_fontinfo font;
  270. unsigned char *bitmap;
  271. int w,h,i,j,c = (argc > 1 ? atoi(argv[1]) : 'a'), s = (argc > 2 ? atoi(argv[2]) : 20);
  272. fread(ttf_buffer, 1, 1<<25, fopen(argc > 3 ? argv[3] : "c:/windows/fonts/arialbd.ttf", "rb"));
  273. stbtt_InitFont(&font, ttf_buffer, stbtt_GetFontOffsetForIndex(ttf_buffer,0));
  274. bitmap = stbtt_GetCodepointBitmap(&font, 0,stbtt_ScaleForPixelHeight(&font, s), c, &w, &h, 0,0);
  275. for (j=0; j < h; ++j) {
  276. for (i=0; i < w; ++i)
  277. putchar(" .:ioVM@"[bitmap[j*w+i]>>5]);
  278. putchar('\n');
  279. }
  280. return 0;
  281. }
  282. #endif
  283. //
  284. // Output:
  285. //
  286. // .ii.
  287. // @@@@@@.
  288. // V@Mio@@o
  289. // :i. V@V
  290. // :oM@@M
  291. // :@@@MM@M
  292. // @@o o@M
  293. // :@@. M@M
  294. // @@@o@@@@
  295. // :M@@V:@@.
  296. //
  297. //////////////////////////////////////////////////////////////////////////////
  298. //
  299. // Complete program: print "Hello World!" banner, with bugs
  300. //
  301. #if 0
  302. char buffer[24<<20];
  303. unsigned char screen[20][79];
  304. int main(int arg, char **argv)
  305. {
  306. stbtt_fontinfo font;
  307. int i,j,ascent,baseline,ch=0;
  308. float scale, xpos=2; // leave a little padding in case the character extends left
  309. char *text = "Heljo World!";
  310. fread(buffer, 1, 1000000, fopen("c:/windows/fonts/arialbd.ttf", "rb"));
  311. stbtt_InitFont(&font, buffer, 0);
  312. scale = stbtt_ScaleForPixelHeight(&font, 15);
  313. stbtt_GetFontVMetrics(&font, &ascent,0,0);
  314. baseline = (int) (ascent*scale);
  315. while (text[ch]) {
  316. int advance,lsb,x0,y0,x1,y1;
  317. float x_shift = xpos - (float) floor(xpos);
  318. stbtt_GetCodepointHMetrics(&font, text[ch], &advance, &lsb);
  319. stbtt_GetCodepointBitmapBoxSubpixel(&font, text[ch], scale,scale,x_shift,0, &x0,&y0,&x1,&y1);
  320. stbtt_MakeCodepointBitmapSubpixel(&font, &screen[baseline + y0][(int) xpos + x0], x1-x0,y1-y0, 79, scale,scale,x_shift,0, text[ch]);
  321. // note that this stomps the old data, so where character boxes overlap (e.g. 'lj') it's wrong
  322. // because this API is really for baking character bitmaps into textures. if you want to render
  323. // a sequence of characters, you really need to render each bitmap to a temp buffer, then
  324. // "alpha blend" that into the working buffer
  325. xpos += (advance * scale);
  326. if (text[ch+1])
  327. xpos += scale*stbtt_GetCodepointKernAdvance(&font, text[ch],text[ch+1]);
  328. ++ch;
  329. }
  330. for (j=0; j < 20; ++j) {
  331. for (i=0; i < 78; ++i)
  332. putchar(" .:ioVM@"[screen[j][i]>>5]);
  333. putchar('\n');
  334. }
  335. return 0;
  336. }
  337. #endif
  338. //////////////////////////////////////////////////////////////////////////////
  339. //////////////////////////////////////////////////////////////////////////////
  340. ////
  341. //// INTEGRATION WITH YOUR CODEBASE
  342. ////
  343. //// The following sections allow you to supply alternate definitions
  344. //// of C library functions used by stb_truetype.
  345. #ifdef STB_TRUETYPE_IMPLEMENTATION
  346. // #define your own (u)stbtt_int8/16/32 before including to override this
  347. #ifndef stbtt_uint8
  348. typedef unsigned char stbtt_uint8;
  349. typedef signed char stbtt_int8;
  350. typedef unsigned short stbtt_uint16;
  351. typedef signed short stbtt_int16;
  352. typedef unsigned int stbtt_uint32;
  353. typedef signed int stbtt_int32;
  354. #endif
  355. typedef char stbtt__check_size32[sizeof(stbtt_int32)==4 ? 1 : -1];
  356. typedef char stbtt__check_size16[sizeof(stbtt_int16)==2 ? 1 : -1];
  357. // #define your own STBTT_sort() to override this to avoid qsort
  358. #ifndef STBTT_sort
  359. #include <stdlib.h>
  360. #define STBTT_sort(data,num_items,item_size,compare_func) qsort(data,num_items,item_size,compare_func)
  361. #endif
  362. // #define your own STBTT_ifloor/STBTT_iceil() to avoid math.h
  363. #ifndef STBTT_ifloor
  364. #include <math.h>
  365. #define STBTT_ifloor(x) ((int) floor(x))
  366. #define STBTT_iceil(x) ((int) ceil(x))
  367. #endif
  368. #ifndef STBTT_sqrt
  369. #include <math.h>
  370. #define STBTT_sqrt(x) sqrt(x)
  371. #endif
  372. // #define your own functions "STBTT_malloc" / "STBTT_free" to avoid malloc.h
  373. #ifndef STBTT_malloc
  374. #include <stdlib.h>
  375. #define STBTT_malloc(x,u) ((void)(u),malloc(x))
  376. #define STBTT_free(x,u) ((void)(u),free(x))
  377. #endif
  378. #ifndef STBTT_assert
  379. #include <assert.h>
  380. #define STBTT_assert(x) assert(x)
  381. #endif
  382. #ifndef STBTT_strlen
  383. #include <string.h>
  384. #define STBTT_strlen(x) strlen(x)
  385. #endif
  386. #ifndef STBTT_memcpy
  387. #include <memory.h>
  388. #define STBTT_memcpy memcpy
  389. #define STBTT_memset memset
  390. #endif
  391. #endif
  392. ///////////////////////////////////////////////////////////////////////////////
  393. ///////////////////////////////////////////////////////////////////////////////
  394. ////
  395. //// INTERFACE
  396. ////
  397. ////
  398. #ifndef __STB_INCLUDE_STB_TRUETYPE_H__
  399. #define __STB_INCLUDE_STB_TRUETYPE_H__
  400. #ifdef __cplusplus
  401. extern "C" {
  402. #endif
  403. //////////////////////////////////////////////////////////////////////////////
  404. //
  405. // TEXTURE BAKING API
  406. //
  407. // If you use this API, you only have to call two functions ever.
  408. //
  409. typedef struct
  410. {
  411. unsigned short x0,y0,x1,y1; // coordinates of bbox in bitmap
  412. float xoff,yoff,xadvance;
  413. } stbtt_bakedchar;
  414. extern int stbtt_BakeFontBitmap(const unsigned char *data, int offset, // font location (use offset=0 for plain .ttf)
  415. float pixel_height, // height of font in pixels
  416. unsigned char *pixels, int pw, int ph, // bitmap to be filled in
  417. int first_char, int num_chars, // characters to bake
  418. stbtt_bakedchar *chardata); // you allocate this, it's num_chars long
  419. // if return is positive, the first unused row of the bitmap
  420. // if return is negative, returns the negative of the number of characters that fit
  421. // if return is 0, no characters fit and no rows were used
  422. // This uses a very crappy packing.
  423. typedef struct
  424. {
  425. float x0,y0,s0,t0; // top-left
  426. float x1,y1,s1,t1; // bottom-right
  427. } stbtt_aligned_quad;
  428. extern void stbtt_GetBakedQuad(stbtt_bakedchar *chardata, int pw, int ph, // same data as above
  429. int char_index, // character to display
  430. float *xpos, float *ypos, // pointers to current position in screen pixel space
  431. stbtt_aligned_quad *q, // output: quad to draw
  432. int opengl_fillrule); // true if opengl fill rule; false if DX9 or earlier
  433. // Call GetBakedQuad with char_index = 'character - first_char', and it
  434. // creates the quad you need to draw and advances the current position.
  435. //
  436. // The coordinate system used assumes y increases downwards.
  437. //
  438. // Characters will extend both above and below the current position;
  439. // see discussion of "BASELINE" above.
  440. //
  441. // It's inefficient; you might want to c&p it and optimize it.
  442. //////////////////////////////////////////////////////////////////////////////
  443. //
  444. // NEW TEXTURE BAKING API
  445. //
  446. // This provides options for packing multiple fonts into one atlas, not
  447. // perfectly but better than nothing.
  448. typedef struct
  449. {
  450. unsigned short x0,y0,x1,y1; // coordinates of bbox in bitmap
  451. float xoff,yoff,xadvance;
  452. float xoff2,yoff2;
  453. } stbtt_packedchar;
  454. typedef struct stbtt_pack_context stbtt_pack_context;
  455. extern int stbtt_PackBegin(stbtt_pack_context *spc, unsigned char *pixels, int width, int height, int stride_in_bytes, int padding, void *alloc_context);
  456. // Initializes a packing context stored in the passed-in stbtt_pack_context.
  457. // Future calls using this context will pack characters into the bitmap passed
  458. // in here: a 1-channel bitmap that is weight x height. stride_in_bytes is
  459. // the distance from one row to the next (or 0 to mean they are packed tightly
  460. // together). "padding" is // the amount of padding to leave between each
  461. // character (normally you want '1' for bitmaps you'll use as textures with
  462. // bilinear filtering).
  463. //
  464. // Returns 0 on failure, 1 on success.
  465. extern void stbtt_PackEnd (stbtt_pack_context *spc);
  466. // Cleans up the packing context and frees all memory.
  467. #define STBTT_POINT_SIZE(x) (-(x))
  468. extern int stbtt_PackFontRange(stbtt_pack_context *spc, unsigned char *fontdata, int font_index, float font_size,
  469. int first_unicode_char_in_range, int num_chars_in_range, stbtt_packedchar *chardata_for_range);
  470. // Creates character bitmaps from the font_index'th font found in fontdata (use
  471. // font_index=0 if you don't know what that is). It creates num_chars_in_range
  472. // bitmaps for characters with unicode values starting at first_unicode_char_in_range
  473. // and increasing. Data for how to render them is stored in chardata_for_range;
  474. // pass these to stbtt_GetPackedQuad to get back renderable quads.
  475. //
  476. // font_size is the full height of the character from ascender to descender,
  477. // as computed by stbtt_ScaleForPixelHeight. To use a point size as computed
  478. // by stbtt_ScaleForMappingEmToPixels, wrap the point size in STBTT_POINT_SIZE()
  479. // and pass that result as 'font_size':
  480. // ..., 20 , ... // font max minus min y is 20 pixels tall
  481. // ..., STBTT_POINT_SIZE(20), ... // 'M' is 20 pixels tall
  482. typedef struct
  483. {
  484. float font_size;
  485. int first_unicode_char_in_range;
  486. int num_chars_in_range;
  487. stbtt_packedchar *chardata_for_range; // output
  488. } stbtt_pack_range;
  489. extern int stbtt_PackFontRanges(stbtt_pack_context *spc, unsigned char *fontdata, int font_index, stbtt_pack_range *ranges, int num_ranges);
  490. // Creates character bitmaps from multiple ranges of characters stored in
  491. // ranges. This will usually create a better-packed bitmap than multiple
  492. // calls to stbtt_PackFontRange.
  493. extern void stbtt_PackSetOversampling(stbtt_pack_context *spc, unsigned int h_oversample, unsigned int v_oversample);
  494. // Oversampling a font increases the quality by allowing higher-quality subpixel
  495. // positioning, and is especially valuable at smaller text sizes.
  496. //
  497. // This function sets the amount of oversampling for all following calls to
  498. // stbtt_PackFontRange(s). The default (no oversampling) is achieved by
  499. // h_oversample=1, v_oversample=1. The total number of pixels required is
  500. // h_oversample*v_oversample larger than the default; for example, 2x2
  501. // oversampling requires 4x the storage of 1x1. For best results, render
  502. // oversampled textures with bilinear filtering. Look at the readme in
  503. // stb/tests/oversample for information about oversampled fonts
  504. extern void stbtt_GetPackedQuad(stbtt_packedchar *chardata, int pw, int ph, // same data as above
  505. int char_index, // character to display
  506. float *xpos, float *ypos, // pointers to current position in screen pixel space
  507. stbtt_aligned_quad *q, // output: quad to draw
  508. int align_to_integer);
  509. // this is an opaque structure that you shouldn't mess with which holds
  510. // all the context needed from PackBegin to PackEnd.
  511. struct stbtt_pack_context {
  512. void *user_allocator_context;
  513. void *pack_info;
  514. int width;
  515. int height;
  516. int stride_in_bytes;
  517. int padding;
  518. unsigned int h_oversample, v_oversample;
  519. unsigned char *pixels;
  520. void *nodes;
  521. };
  522. //////////////////////////////////////////////////////////////////////////////
  523. //
  524. // FONT LOADING
  525. //
  526. //
  527. extern int stbtt_GetFontOffsetForIndex(const unsigned char *data, int index);
  528. // Each .ttf/.ttc file may have more than one font. Each font has a sequential
  529. // index number starting from 0. Call this function to get the font offset for
  530. // a given index; it returns -1 if the index is out of range. A regular .ttf
  531. // file will only define one font and it always be at offset 0, so it will
  532. // return '0' for index 0, and -1 for all other indices. You can just skip
  533. // this step if you know it's that kind of font.
  534. // The following structure is defined publically so you can declare one on
  535. // the stack or as a global or etc, but you should treat it as opaque.
  536. typedef struct stbtt_fontinfo
  537. {
  538. void * userdata;
  539. unsigned char * data; // pointer to .ttf file
  540. int fontstart; // offset of start of font
  541. int numGlyphs; // number of glyphs, needed for range checking
  542. int loca,head,glyf,hhea,hmtx,kern; // table locations as offset from start of .ttf
  543. int index_map; // a cmap mapping for our chosen character encoding
  544. int indexToLocFormat; // format needed to map from glyph index to glyph
  545. } stbtt_fontinfo;
  546. extern int stbtt_InitFont(stbtt_fontinfo *info, const unsigned char *data, int offset);
  547. // Given an offset into the file that defines a font, this function builds
  548. // the necessary cached info for the rest of the system. You must allocate
  549. // the stbtt_fontinfo yourself, and stbtt_InitFont will fill it out. You don't
  550. // need to do anything special to free it, because the contents are pure
  551. // value data with no additional data structures. Returns 0 on failure.
  552. //////////////////////////////////////////////////////////////////////////////
  553. //
  554. // CHARACTER TO GLYPH-INDEX CONVERSIOn
  555. int stbtt_FindGlyphIndex(const stbtt_fontinfo *info, int unicode_codepoint);
  556. // If you're going to perform multiple operations on the same character
  557. // and you want a speed-up, call this function with the character you're
  558. // going to process, then use glyph-based functions instead of the
  559. // codepoint-based functions.
  560. //////////////////////////////////////////////////////////////////////////////
  561. //
  562. // CHARACTER PROPERTIES
  563. //
  564. extern float stbtt_ScaleForPixelHeight(const stbtt_fontinfo *info, float pixels);
  565. // computes a scale factor to produce a font whose "height" is 'pixels' tall.
  566. // Height is measured as the distance from the highest ascender to the lowest
  567. // descender; in other words, it's equivalent to calling stbtt_GetFontVMetrics
  568. // and computing:
  569. // scale = pixels / (ascent - descent)
  570. // so if you prefer to measure height by the ascent only, use a similar calculation.
  571. extern float stbtt_ScaleForMappingEmToPixels(const stbtt_fontinfo *info, float pixels);
  572. // computes a scale factor to produce a font whose EM size is mapped to
  573. // 'pixels' tall. This is probably what traditional APIs compute, but
  574. // I'm not positive.
  575. extern void stbtt_GetFontVMetrics(const stbtt_fontinfo *info, int *ascent, int *descent, int *lineGap);
  576. // ascent is the coordinate above the baseline the font extends; descent
  577. // is the coordinate below the baseline the font extends (i.e. it is typically negative)
  578. // lineGap is the spacing between one row's descent and the next row's ascent...
  579. // so you should advance the vertical position by "*ascent - *descent + *lineGap"
  580. // these are expressed in unscaled coordinates, so you must multiply by
  581. // the scale factor for a given size
  582. extern void stbtt_GetFontBoundingBox(const stbtt_fontinfo *info, int *x0, int *y0, int *x1, int *y1);
  583. // the bounding box around all possible characters
  584. extern void stbtt_GetCodepointHMetrics(const stbtt_fontinfo *info, int codepoint, int *advanceWidth, int *leftSideBearing);
  585. // leftSideBearing is the offset from the current horizontal position to the left edge of the character
  586. // advanceWidth is the offset from the current horizontal position to the next horizontal position
  587. // these are expressed in unscaled coordinates
  588. extern int stbtt_GetCodepointKernAdvance(const stbtt_fontinfo *info, int ch1, int ch2);
  589. // an additional amount to add to the 'advance' value between ch1 and ch2
  590. extern int stbtt_GetCodepointBox(const stbtt_fontinfo *info, int codepoint, int *x0, int *y0, int *x1, int *y1);
  591. // Gets the bounding box of the visible part of the glyph, in unscaled coordinates
  592. extern void stbtt_GetGlyphHMetrics(const stbtt_fontinfo *info, int glyph_index, int *advanceWidth, int *leftSideBearing);
  593. extern int stbtt_GetGlyphKernAdvance(const stbtt_fontinfo *info, int glyph1, int glyph2);
  594. extern int stbtt_GetGlyphBox(const stbtt_fontinfo *info, int glyph_index, int *x0, int *y0, int *x1, int *y1);
  595. // as above, but takes one or more glyph indices for greater efficiency
  596. //////////////////////////////////////////////////////////////////////////////
  597. //
  598. // GLYPH SHAPES (you probably don't need these, but they have to go before
  599. // the bitmaps for C declaration-order reasons)
  600. //
  601. #ifndef STBTT_vmove // you can predefine these to use different values (but why?)
  602. enum {
  603. STBTT_vmove=1,
  604. STBTT_vline,
  605. STBTT_vcurve
  606. };
  607. #endif
  608. #ifndef stbtt_vertex // you can predefine this to use different values
  609. // (we share this with other code at RAD)
  610. #define stbtt_vertex_type short // can't use stbtt_int16 because that's not visible in the header file
  611. typedef struct
  612. {
  613. stbtt_vertex_type x,y,cx,cy;
  614. unsigned char type,padding;
  615. } stbtt_vertex;
  616. #endif
  617. extern int stbtt_IsGlyphEmpty(const stbtt_fontinfo *info, int glyph_index);
  618. // returns non-zero if nothing is drawn for this glyph
  619. extern int stbtt_GetCodepointShape(const stbtt_fontinfo *info, int unicode_codepoint, stbtt_vertex **vertices);
  620. extern int stbtt_GetGlyphShape(const stbtt_fontinfo *info, int glyph_index, stbtt_vertex **vertices);
  621. // returns # of vertices and fills *vertices with the pointer to them
  622. // these are expressed in "unscaled" coordinates
  623. //
  624. // The shape is a series of countours. Each one starts with
  625. // a STBTT_moveto, then consists of a series of mixed
  626. // STBTT_lineto and STBTT_curveto segments. A lineto
  627. // draws a line from previous endpoint to its x,y; a curveto
  628. // draws a quadratic bezier from previous endpoint to
  629. // its x,y, using cx,cy as the bezier control point.
  630. extern void stbtt_FreeShape(const stbtt_fontinfo *info, stbtt_vertex *vertices);
  631. // frees the data allocated above
  632. //////////////////////////////////////////////////////////////////////////////
  633. //
  634. // BITMAP RENDERING
  635. //
  636. extern void stbtt_FreeBitmap(unsigned char *bitmap, void *userdata);
  637. // frees the bitmap allocated below
  638. extern unsigned char *stbtt_GetCodepointBitmap(const stbtt_fontinfo *info, float scale_x, float scale_y, int codepoint, int *width, int *height, int *xoff, int *yoff);
  639. // allocates a large-enough single-channel 8bpp bitmap and renders the
  640. // specified character/glyph at the specified scale into it, with
  641. // antialiasing. 0 is no coverage (transparent), 255 is fully covered (opaque).
  642. // *width & *height are filled out with the width & height of the bitmap,
  643. // which is stored left-to-right, top-to-bottom.
  644. //
  645. // xoff/yoff are the offset it pixel space from the glyph origin to the top-left of the bitmap
  646. extern 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);
  647. // the same as stbtt_GetCodepoitnBitmap, but you can specify a subpixel
  648. // shift for the character
  649. extern 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);
  650. // the same as stbtt_GetCodepointBitmap, but you pass in storage for the bitmap
  651. // in the form of 'output', with row spacing of 'out_stride' bytes. the bitmap
  652. // is clipped to out_w/out_h bytes. Call stbtt_GetCodepointBitmapBox to get the
  653. // width and height and positioning info for it first.
  654. extern 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);
  655. // same as stbtt_MakeCodepointBitmap, but you can specify a subpixel
  656. // shift for the character
  657. extern void stbtt_GetCodepointBitmapBox(const stbtt_fontinfo *font, int codepoint, float scale_x, float scale_y, int *ix0, int *iy0, int *ix1, int *iy1);
  658. // get the bbox of the bitmap centered around the glyph origin; so the
  659. // bitmap width is ix1-ix0, height is iy1-iy0, and location to place
  660. // the bitmap top left is (leftSideBearing*scale,iy0).
  661. // (Note that the bitmap uses y-increases-down, but the shape uses
  662. // y-increases-up, so CodepointBitmapBox and CodepointBox are inverted.)
  663. extern 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);
  664. // same as stbtt_GetCodepointBitmapBox, but you can specify a subpixel
  665. // shift for the character
  666. // the following functions are equivalent to the above functions, but operate
  667. // on glyph indices instead of Unicode codepoints (for efficiency)
  668. extern unsigned char *stbtt_GetGlyphBitmap(const stbtt_fontinfo *info, float scale_x, float scale_y, int glyph, int *width, int *height, int *xoff, int *yoff);
  669. extern 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);
  670. extern 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);
  671. extern 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);
  672. extern void stbtt_GetGlyphBitmapBox(const stbtt_fontinfo *font, int glyph, float scale_x, float scale_y, int *ix0, int *iy0, int *ix1, int *iy1);
  673. extern 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);
  674. // @TODO: don't expose this structure
  675. typedef struct
  676. {
  677. int w,h,stride;
  678. unsigned char *pixels;
  679. } stbtt__bitmap;
  680. extern 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);
  681. //////////////////////////////////////////////////////////////////////////////
  682. //
  683. // Finding the right font...
  684. //
  685. // You should really just solve this offline, keep your own tables
  686. // of what font is what, and don't try to get it out of the .ttf file.
  687. // That's because getting it out of the .ttf file is really hard, because
  688. // the names in the file can appear in many possible encodings, in many
  689. // possible languages, and e.g. if you need a case-insensitive comparison,
  690. // the details of that depend on the encoding & language in a complex way
  691. // (actually underspecified in truetype, but also gigantic).
  692. //
  693. // But you can use the provided functions in two possible ways:
  694. // stbtt_FindMatchingFont() will use *case-sensitive* comparisons on
  695. // unicode-encoded names to try to find the font you want;
  696. // you can run this before calling stbtt_InitFont()
  697. //
  698. // stbtt_GetFontNameString() lets you get any of the various strings
  699. // from the file yourself and do your own comparisons on them.
  700. // You have to have called stbtt_InitFont() first.
  701. extern int stbtt_FindMatchingFont(const unsigned char *fontdata, const char *name, int flags);
  702. // returns the offset (not index) of the font that matches, or -1 if none
  703. // if you use STBTT_MACSTYLE_DONTCARE, use a font name like "Arial Bold".
  704. // if you use any other flag, use a font name like "Arial"; this checks
  705. // the 'macStyle' header field; i don't know if fonts set this consistently
  706. #define STBTT_MACSTYLE_DONTCARE 0
  707. #define STBTT_MACSTYLE_BOLD 1
  708. #define STBTT_MACSTYLE_ITALIC 2
  709. #define STBTT_MACSTYLE_UNDERSCORE 4
  710. #define STBTT_MACSTYLE_NONE 8 // <= not same as 0, this makes us check the bitfield is 0
  711. extern int stbtt_CompareUTF8toUTF16_bigendian(const char *s1, int len1, const char *s2, int len2);
  712. // returns 1/0 whether the first string interpreted as utf8 is identical to
  713. // the second string interpreted as big-endian utf16... useful for strings from next func
  714. extern const char *stbtt_GetFontNameString(const stbtt_fontinfo *font, int *length, int platformID, int encodingID, int languageID, int nameID);
  715. // returns the string (which may be big-endian double byte, e.g. for unicode)
  716. // and puts the length in bytes in *length.
  717. //
  718. // some of the values for the IDs are below; for more see the truetype spec:
  719. // http://developer.apple.com/textfonts/TTRefMan/RM06/Chap6name.html
  720. // http://www.microsoft.com/typography/otspec/name.htm
  721. enum { // platformID
  722. STBTT_PLATFORM_ID_UNICODE =0,
  723. STBTT_PLATFORM_ID_MAC =1,
  724. STBTT_PLATFORM_ID_ISO =2,
  725. STBTT_PLATFORM_ID_MICROSOFT =3
  726. };
  727. enum { // encodingID for STBTT_PLATFORM_ID_UNICODE
  728. STBTT_UNICODE_EID_UNICODE_1_0 =0,
  729. STBTT_UNICODE_EID_UNICODE_1_1 =1,
  730. STBTT_UNICODE_EID_ISO_10646 =2,
  731. STBTT_UNICODE_EID_UNICODE_2_0_BMP=3,
  732. STBTT_UNICODE_EID_UNICODE_2_0_FULL=4
  733. };
  734. enum { // encodingID for STBTT_PLATFORM_ID_MICROSOFT
  735. STBTT_MS_EID_SYMBOL =0,
  736. STBTT_MS_EID_UNICODE_BMP =1,
  737. STBTT_MS_EID_SHIFTJIS =2,
  738. STBTT_MS_EID_UNICODE_FULL =10
  739. };
  740. enum { // encodingID for STBTT_PLATFORM_ID_MAC; same as Script Manager codes
  741. STBTT_MAC_EID_ROMAN =0, STBTT_MAC_EID_ARABIC =4,
  742. STBTT_MAC_EID_JAPANESE =1, STBTT_MAC_EID_HEBREW =5,
  743. STBTT_MAC_EID_CHINESE_TRAD =2, STBTT_MAC_EID_GREEK =6,
  744. STBTT_MAC_EID_KOREAN =3, STBTT_MAC_EID_RUSSIAN =7
  745. };
  746. enum { // languageID for STBTT_PLATFORM_ID_MICROSOFT; same as LCID...
  747. // problematic because there are e.g. 16 english LCIDs and 16 arabic LCIDs
  748. STBTT_MS_LANG_ENGLISH =0x0409, STBTT_MS_LANG_ITALIAN =0x0410,
  749. STBTT_MS_LANG_CHINESE =0x0804, STBTT_MS_LANG_JAPANESE =0x0411,
  750. STBTT_MS_LANG_DUTCH =0x0413, STBTT_MS_LANG_KOREAN =0x0412,
  751. STBTT_MS_LANG_FRENCH =0x040c, STBTT_MS_LANG_RUSSIAN =0x0419,
  752. STBTT_MS_LANG_GERMAN =0x0407, STBTT_MS_LANG_SPANISH =0x0409,
  753. STBTT_MS_LANG_HEBREW =0x040d, STBTT_MS_LANG_SWEDISH =0x041D
  754. };
  755. enum { // languageID for STBTT_PLATFORM_ID_MAC
  756. STBTT_MAC_LANG_ENGLISH =0 , STBTT_MAC_LANG_JAPANESE =11,
  757. STBTT_MAC_LANG_ARABIC =12, STBTT_MAC_LANG_KOREAN =23,
  758. STBTT_MAC_LANG_DUTCH =4 , STBTT_MAC_LANG_RUSSIAN =32,
  759. STBTT_MAC_LANG_FRENCH =1 , STBTT_MAC_LANG_SPANISH =6 ,
  760. STBTT_MAC_LANG_GERMAN =2 , STBTT_MAC_LANG_SWEDISH =5 ,
  761. STBTT_MAC_LANG_HEBREW =10, STBTT_MAC_LANG_CHINESE_SIMPLIFIED =33,
  762. STBTT_MAC_LANG_ITALIAN =3 , STBTT_MAC_LANG_CHINESE_TRAD =19
  763. };
  764. #ifdef __cplusplus
  765. }
  766. #endif
  767. #endif // __STB_INCLUDE_STB_TRUETYPE_H__
  768. ///////////////////////////////////////////////////////////////////////////////
  769. ///////////////////////////////////////////////////////////////////////////////
  770. ////
  771. //// IMPLEMENTATION
  772. ////
  773. ////
  774. #ifdef STB_TRUETYPE_IMPLEMENTATION
  775. #ifndef STBTT_MAX_OVERSAMPLE
  776. #define STBTT_MAX_OVERSAMPLE 8
  777. #endif
  778. typedef int stbtt__test_oversample_pow2[(STBTT_MAX_OVERSAMPLE & (STBTT_MAX_OVERSAMPLE-1)) == 0 ? 1 : -1];
  779. //////////////////////////////////////////////////////////////////////////
  780. //
  781. // accessors to parse data from file
  782. //
  783. // on platforms that don't allow misaligned reads, if we want to allow
  784. // truetype fonts that aren't padded to alignment, define ALLOW_UNALIGNED_TRUETYPE
  785. #define ttBYTE(p) (* (stbtt_uint8 *) (p))
  786. #define ttCHAR(p) (* (stbtt_int8 *) (p))
  787. #define ttFixed(p) ttLONG(p)
  788. #if defined(STB_TRUETYPE_BIGENDIAN) && !defined(ALLOW_UNALIGNED_TRUETYPE)
  789. #define ttUSHORT(p) (* (stbtt_uint16 *) (p))
  790. #define ttSHORT(p) (* (stbtt_int16 *) (p))
  791. #define ttULONG(p) (* (stbtt_uint32 *) (p))
  792. #define ttLONG(p) (* (stbtt_int32 *) (p))
  793. #else
  794. stbtt_uint16 ttUSHORT(const stbtt_uint8 *p) { return p[0]*256 + p[1]; }
  795. stbtt_int16 ttSHORT(const stbtt_uint8 *p) { return p[0]*256 + p[1]; }
  796. stbtt_uint32 ttULONG(const stbtt_uint8 *p) { return (p[0]<<24) + (p[1]<<16) + (p[2]<<8) + p[3]; }
  797. stbtt_int32 ttLONG(const stbtt_uint8 *p) { return (p[0]<<24) + (p[1]<<16) + (p[2]<<8) + p[3]; }
  798. #endif
  799. #define stbtt_tag4(p,c0,c1,c2,c3) ((p)[0] == (c0) && (p)[1] == (c1) && (p)[2] == (c2) && (p)[3] == (c3))
  800. #define stbtt_tag(p,str) stbtt_tag4(p,str[0],str[1],str[2],str[3])
  801. static int stbtt__isfont(const stbtt_uint8 *font)
  802. {
  803. // check the version number
  804. if (stbtt_tag4(font, '1',0,0,0)) return 1; // TrueType 1
  805. if (stbtt_tag(font, "typ1")) return 1; // TrueType with type 1 font -- we don't support this!
  806. if (stbtt_tag(font, "OTTO")) return 1; // OpenType with CFF
  807. if (stbtt_tag4(font, 0,1,0,0)) return 1; // OpenType 1.0
  808. return 0;
  809. }
  810. // @OPTIMIZE: binary search
  811. static stbtt_uint32 stbtt__find_table(stbtt_uint8 *data, stbtt_uint32 fontstart, const char *tag)
  812. {
  813. stbtt_int32 num_tables = ttUSHORT(data+fontstart+4);
  814. stbtt_uint32 tabledir = fontstart + 12;
  815. stbtt_int32 i;
  816. for (i=0; i < num_tables; ++i) {
  817. stbtt_uint32 loc = tabledir + 16*i;
  818. if (stbtt_tag(data+loc+0, tag))
  819. return ttULONG(data+loc+8);
  820. }
  821. return 0;
  822. }
  823. int stbtt_GetFontOffsetForIndex(const unsigned char *font_collection, int index)
  824. {
  825. // if it's just a font, there's only one valid index
  826. if (stbtt__isfont(font_collection))
  827. return index == 0 ? 0 : -1;
  828. // check if it's a TTC
  829. if (stbtt_tag(font_collection, "ttcf")) {
  830. // version 1?
  831. if (ttULONG(font_collection+4) == 0x00010000 || ttULONG(font_collection+4) == 0x00020000) {
  832. stbtt_int32 n = ttLONG(font_collection+8);
  833. if (index >= n)
  834. return -1;
  835. return ttULONG(font_collection+12+index*14);
  836. }
  837. }
  838. return -1;
  839. }
  840. int stbtt_InitFont(stbtt_fontinfo *info, const unsigned char *data2, int fontstart)
  841. {
  842. stbtt_uint8 *data = (stbtt_uint8 *) data2;
  843. stbtt_uint32 cmap, t;
  844. stbtt_int32 i,numTables;
  845. info->data = data;
  846. info->fontstart = fontstart;
  847. cmap = stbtt__find_table(data, fontstart, "cmap"); // required
  848. info->loca = stbtt__find_table(data, fontstart, "loca"); // required
  849. info->head = stbtt__find_table(data, fontstart, "head"); // required
  850. info->glyf = stbtt__find_table(data, fontstart, "glyf"); // required
  851. info->hhea = stbtt__find_table(data, fontstart, "hhea"); // required
  852. info->hmtx = stbtt__find_table(data, fontstart, "hmtx"); // required
  853. info->kern = stbtt__find_table(data, fontstart, "kern"); // not required
  854. if (!cmap || !info->loca || !info->head || !info->glyf || !info->hhea || !info->hmtx)
  855. return 0;
  856. t = stbtt__find_table(data, fontstart, "maxp");
  857. if (t)
  858. info->numGlyphs = ttUSHORT(data+t+4);
  859. else
  860. info->numGlyphs = 0xffff;
  861. // find a cmap encoding table we understand *now* to avoid searching
  862. // later. (todo: could make this installable)
  863. // the same regardless of glyph.
  864. numTables = ttUSHORT(data + cmap + 2);
  865. info->index_map = 0;
  866. for (i=0; i < numTables; ++i) {
  867. stbtt_uint32 encoding_record = cmap + 4 + 8 * i;
  868. // find an encoding we understand:
  869. switch(ttUSHORT(data+encoding_record)) {
  870. case STBTT_PLATFORM_ID_MICROSOFT:
  871. switch (ttUSHORT(data+encoding_record+2)) {
  872. case STBTT_MS_EID_UNICODE_BMP:
  873. case STBTT_MS_EID_UNICODE_FULL:
  874. // MS/Unicode
  875. info->index_map = cmap + ttULONG(data+encoding_record+4);
  876. break;
  877. }
  878. break;
  879. case STBTT_PLATFORM_ID_UNICODE:
  880. // Mac/iOS has these
  881. // all the encodingIDs are unicode, so we don't bother to check it
  882. info->index_map = cmap + ttULONG(data+encoding_record+4);
  883. break;
  884. }
  885. }
  886. if (info->index_map == 0)
  887. return 0;
  888. info->indexToLocFormat = ttUSHORT(data+info->head + 50);
  889. return 1;
  890. }
  891. int stbtt_FindGlyphIndex(const stbtt_fontinfo *info, int unicode_codepoint)
  892. {
  893. stbtt_uint8 *data = info->data;
  894. stbtt_uint32 index_map = info->index_map;
  895. stbtt_uint16 format = ttUSHORT(data + index_map + 0);
  896. if (format == 0) { // apple byte encoding
  897. stbtt_int32 bytes = ttUSHORT(data + index_map + 2);
  898. if (unicode_codepoint < bytes-6)
  899. return ttBYTE(data + index_map + 6 + unicode_codepoint);
  900. return 0;
  901. } else if (format == 6) {
  902. stbtt_uint32 first = ttUSHORT(data + index_map + 6);
  903. stbtt_uint32 count = ttUSHORT(data + index_map + 8);
  904. if ((stbtt_uint32) unicode_codepoint >= first && (stbtt_uint32) unicode_codepoint < first+count)
  905. return ttUSHORT(data + index_map + 10 + (unicode_codepoint - first)*2);
  906. return 0;
  907. } else if (format == 2) {
  908. STBTT_assert(0); // @TODO: high-byte mapping for japanese/chinese/korean
  909. return 0;
  910. } else if (format == 4) { // standard mapping for windows fonts: binary search collection of ranges
  911. stbtt_uint16 segcount = ttUSHORT(data+index_map+6) >> 1;
  912. stbtt_uint16 searchRange = ttUSHORT(data+index_map+8) >> 1;
  913. stbtt_uint16 entrySelector = ttUSHORT(data+index_map+10);
  914. stbtt_uint16 rangeShift = ttUSHORT(data+index_map+12) >> 1;
  915. stbtt_uint16 item, offset, start, end;
  916. // do a binary search of the segments
  917. stbtt_uint32 endCount = index_map + 14;
  918. stbtt_uint32 search = endCount;
  919. if (unicode_codepoint > 0xffff)
  920. return 0;
  921. // they lie from endCount .. endCount + segCount
  922. // but searchRange is the nearest power of two, so...
  923. if (unicode_codepoint >= ttUSHORT(data + search + rangeShift*2))
  924. search += rangeShift*2;
  925. // now decrement to bias correctly to find smallest
  926. search -= 2;
  927. while (entrySelector) {
  928. searchRange >>= 1;
  929. start = ttUSHORT(data + search + searchRange*2 + segcount*2 + 2);
  930. end = ttUSHORT(data + search + searchRange*2);
  931. if (unicode_codepoint > end)
  932. search += searchRange*2;
  933. --entrySelector;
  934. }
  935. search += 2;
  936. item = (stbtt_uint16) ((search - endCount) >> 1);
  937. STBTT_assert(unicode_codepoint <= ttUSHORT(data + endCount + 2*item));
  938. start = ttUSHORT(data + index_map + 14 + segcount*2 + 2 + 2*item);
  939. end = ttUSHORT(data + index_map + 14 + 2 + 2*item);
  940. if (unicode_codepoint < start)
  941. return 0;
  942. offset = ttUSHORT(data + index_map + 14 + segcount*6 + 2 + 2*item);
  943. if (offset == 0)
  944. return (stbtt_uint16) (unicode_codepoint + ttSHORT(data + index_map + 14 + segcount*4 + 2 + 2*item));
  945. return ttUSHORT(data + offset + (unicode_codepoint-start)*2 + index_map + 14 + segcount*6 + 2 + 2*item);
  946. } else if (format == 12 || format == 13) {
  947. stbtt_uint32 ngroups = ttULONG(data+index_map+12);
  948. stbtt_int32 low,high;
  949. low = 0; high = (stbtt_int32)ngroups;
  950. // Binary search the right group.
  951. while (low < high) {
  952. stbtt_int32 mid = low + ((high-low) >> 1); // rounds down, so low <= mid < high
  953. stbtt_uint32 start_char = ttULONG(data+index_map+16+mid*12);
  954. stbtt_uint32 end_char = ttULONG(data+index_map+16+mid*12+4);
  955. if ((stbtt_uint32) unicode_codepoint < start_char)
  956. high = mid;
  957. else if ((stbtt_uint32) unicode_codepoint > end_char)
  958. low = mid+1;
  959. else {
  960. stbtt_uint32 start_glyph = ttULONG(data+index_map+16+mid*12+8);
  961. if (format == 12)
  962. return start_glyph + unicode_codepoint-start_char;
  963. else // format == 13
  964. return start_glyph;
  965. }
  966. }
  967. return 0; // not found
  968. }
  969. // @TODO
  970. STBTT_assert(0);
  971. return 0;
  972. }
  973. int stbtt_GetCodepointShape(const stbtt_fontinfo *info, int unicode_codepoint, stbtt_vertex **vertices)
  974. {
  975. return stbtt_GetGlyphShape(info, stbtt_FindGlyphIndex(info, unicode_codepoint), vertices);
  976. }
  977. static void stbtt_setvertex(stbtt_vertex *v, stbtt_uint8 type, stbtt_int32 x, stbtt_int32 y, stbtt_int32 cx, stbtt_int32 cy)
  978. {
  979. v->type = type;
  980. v->x = (stbtt_int16) x;
  981. v->y = (stbtt_int16) y;
  982. v->cx = (stbtt_int16) cx;
  983. v->cy = (stbtt_int16) cy;
  984. }
  985. static int stbtt__GetGlyfOffset(const stbtt_fontinfo *info, int glyph_index)
  986. {
  987. int g1,g2;
  988. if (glyph_index >= info->numGlyphs) return -1; // glyph index out of range
  989. if (info->indexToLocFormat >= 2) return -1; // unknown index->glyph map format
  990. if (info->indexToLocFormat == 0) {
  991. g1 = info->glyf + ttUSHORT(info->data + info->loca + glyph_index * 2) * 2;
  992. g2 = info->glyf + ttUSHORT(info->data + info->loca + glyph_index * 2 + 2) * 2;
  993. } else {
  994. g1 = info->glyf + ttULONG (info->data + info->loca + glyph_index * 4);
  995. g2 = info->glyf + ttULONG (info->data + info->loca + glyph_index * 4 + 4);
  996. }
  997. return g1==g2 ? -1 : g1; // if length is 0, return -1
  998. }
  999. int stbtt_GetGlyphBox(const stbtt_fontinfo *info, int glyph_index, int *x0, int *y0, int *x1, int *y1)
  1000. {
  1001. int g = stbtt__GetGlyfOffset(info, glyph_index);
  1002. if (g < 0) return 0;
  1003. if (x0) *x0 = ttSHORT(info->data + g + 2);
  1004. if (y0) *y0 = ttSHORT(info->data + g + 4);
  1005. if (x1) *x1 = ttSHORT(info->data + g + 6);
  1006. if (y1) *y1 = ttSHORT(info->data + g + 8);
  1007. return 1;
  1008. }
  1009. int stbtt_GetCodepointBox(const stbtt_fontinfo *info, int codepoint, int *x0, int *y0, int *x1, int *y1)
  1010. {
  1011. return stbtt_GetGlyphBox(info, stbtt_FindGlyphIndex(info,codepoint), x0,y0,x1,y1);
  1012. }
  1013. int stbtt_IsGlyphEmpty(const stbtt_fontinfo *info, int glyph_index)
  1014. {
  1015. stbtt_int16 numberOfContours;
  1016. int g = stbtt__GetGlyfOffset(info, glyph_index);
  1017. if (g < 0) return 1;
  1018. numberOfContours = ttSHORT(info->data + g);
  1019. return numberOfContours == 0;
  1020. }
  1021. static int stbtt__close_shape(stbtt_vertex *vertices, int num_vertices, int was_off, int start_off,
  1022. stbtt_int32 sx, stbtt_int32 sy, stbtt_int32 scx, stbtt_int32 scy, stbtt_int32 cx, stbtt_int32 cy)
  1023. {
  1024. if (start_off) {
  1025. if (was_off)
  1026. stbtt_setvertex(&vertices[num_vertices++], STBTT_vcurve, (cx+scx)>>1, (cy+scy)>>1, cx,cy);
  1027. stbtt_setvertex(&vertices[num_vertices++], STBTT_vcurve, sx,sy,scx,scy);
  1028. } else {
  1029. if (was_off)
  1030. stbtt_setvertex(&vertices[num_vertices++], STBTT_vcurve,sx,sy,cx,cy);
  1031. else
  1032. stbtt_setvertex(&vertices[num_vertices++], STBTT_vline,sx,sy,0,0);
  1033. }
  1034. return num_vertices;
  1035. }
  1036. int stbtt_GetGlyphShape(const stbtt_fontinfo *info, int glyph_index, stbtt_vertex **pvertices)
  1037. {
  1038. stbtt_int16 numberOfContours;
  1039. stbtt_uint8 *endPtsOfContours;
  1040. stbtt_uint8 *data = info->data;
  1041. stbtt_vertex *vertices=0;
  1042. int num_vertices=0;
  1043. int g = stbtt__GetGlyfOffset(info, glyph_index);
  1044. *pvertices = NULL;
  1045. if (g < 0) return 0;
  1046. numberOfContours = ttSHORT(data + g);
  1047. if (numberOfContours > 0) {
  1048. stbtt_uint8 flags=0,flagcount;
  1049. stbtt_int32 ins, i,j=0,m,n, next_move, was_off=0, off, start_off=0;
  1050. stbtt_int32 x,y,cx,cy,sx,sy, scx,scy;
  1051. stbtt_uint8 *points;
  1052. endPtsOfContours = (data + g + 10);
  1053. ins = ttUSHORT(data + g + 10 + numberOfContours * 2);
  1054. points = data + g + 10 + numberOfContours * 2 + 2 + ins;
  1055. n = 1+ttUSHORT(endPtsOfContours + numberOfContours*2-2);
  1056. m = n + 2*numberOfContours; // a loose bound on how many vertices we might need
  1057. vertices = (stbtt_vertex *) STBTT_malloc(m * sizeof(vertices[0]), info->userdata);
  1058. if (vertices == 0)
  1059. return 0;
  1060. next_move = 0;
  1061. flagcount=0;
  1062. // in first pass, we load uninterpreted data into the allocated array
  1063. // above, shifted to the end of the array so we won't overwrite it when
  1064. // we create our final data starting from the front
  1065. off = m - n; // starting offset for uninterpreted data, regardless of how m ends up being calculated
  1066. // first load flags
  1067. for (i=0; i < n; ++i) {
  1068. if (flagcount == 0) {
  1069. flags = *points++;
  1070. if (flags & 8)
  1071. flagcount = *points++;
  1072. } else
  1073. --flagcount;
  1074. vertices[off+i].type = flags;
  1075. }
  1076. // now load x coordinates
  1077. x=0;
  1078. for (i=0; i < n; ++i) {
  1079. flags = vertices[off+i].type;
  1080. if (flags & 2) {
  1081. stbtt_int16 dx = *points++;
  1082. x += (flags & 16) ? dx : -dx; // ???
  1083. } else {
  1084. if (!(flags & 16)) {
  1085. x = x + (stbtt_int16) (points[0]*256 + points[1]);
  1086. points += 2;
  1087. }
  1088. }
  1089. vertices[off+i].x = (stbtt_int16) x;
  1090. }
  1091. // now load y coordinates
  1092. y=0;
  1093. for (i=0; i < n; ++i) {
  1094. flags = vertices[off+i].type;
  1095. if (flags & 4) {
  1096. stbtt_int16 dy = *points++;
  1097. y += (flags & 32) ? dy : -dy; // ???
  1098. } else {
  1099. if (!(flags & 32)) {
  1100. y = y + (stbtt_int16) (points[0]*256 + points[1]);
  1101. points += 2;
  1102. }
  1103. }
  1104. vertices[off+i].y = (stbtt_int16) y;
  1105. }
  1106. // now convert them to our format
  1107. num_vertices=0;
  1108. sx = sy = cx = cy = scx = scy = 0;
  1109. for (i=0; i < n; ++i) {
  1110. flags = vertices[off+i].type;
  1111. x = (stbtt_int16) vertices[off+i].x;
  1112. y = (stbtt_int16) vertices[off+i].y;
  1113. if (next_move == i) {
  1114. if (i != 0)
  1115. num_vertices = stbtt__close_shape(vertices, num_vertices, was_off, start_off, sx,sy,scx,scy,cx,cy);
  1116. // now start the new one
  1117. start_off = !(flags & 1);
  1118. if (start_off) {
  1119. // if we start off with an off-curve point, then when we need to find a point on the curve
  1120. // where we can start, and we need to save some state for when we wraparound.
  1121. scx = x;
  1122. scy = y;
  1123. if (!(vertices[off+i+1].type & 1)) {
  1124. // next point is also a curve point, so interpolate an on-point curve
  1125. sx = (x + (stbtt_int32) vertices[off+i+1].x) >> 1;
  1126. sy = (y + (stbtt_int32) vertices[off+i+1].y) >> 1;
  1127. } else {
  1128. // otherwise just use the next point as our start point
  1129. sx = (stbtt_int32) vertices[off+i+1].x;
  1130. sy = (stbtt_int32) vertices[off+i+1].y;
  1131. ++i; // we're using point i+1 as the starting point, so skip it
  1132. }
  1133. } else {
  1134. sx = x;
  1135. sy = y;
  1136. }
  1137. stbtt_setvertex(&vertices[num_vertices++], STBTT_vmove,sx,sy,0,0);
  1138. was_off = 0;
  1139. next_move = 1 + ttUSHORT(endPtsOfContours+j*2);
  1140. ++j;
  1141. } else {
  1142. if (!(flags & 1)) { // if it's a curve
  1143. if (was_off) // two off-curve control points in a row means interpolate an on-curve midpoint
  1144. stbtt_setvertex(&vertices[num_vertices++], STBTT_vcurve, (cx+x)>>1, (cy+y)>>1, cx, cy);
  1145. cx = x;
  1146. cy = y;
  1147. was_off = 1;
  1148. } else {
  1149. if (was_off)
  1150. stbtt_setvertex(&vertices[num_vertices++], STBTT_vcurve, x,y, cx, cy);
  1151. else
  1152. stbtt_setvertex(&vertices[num_vertices++], STBTT_vline, x,y,0,0);
  1153. was_off = 0;
  1154. }
  1155. }
  1156. }
  1157. num_vertices = stbtt__close_shape(vertices, num_vertices, was_off, start_off, sx,sy,scx,scy,cx,cy);
  1158. } else if (numberOfContours == -1) {
  1159. // Compound shapes.
  1160. int more = 1;
  1161. stbtt_uint8 *comp = data + g + 10;
  1162. num_vertices = 0;
  1163. vertices = 0;
  1164. while (more) {
  1165. stbtt_uint16 flags, gidx;
  1166. int comp_num_verts = 0, i;
  1167. stbtt_vertex *comp_verts = 0, *tmp = 0;
  1168. float mtx[6] = {1,0,0,1,0,0}, m, n;
  1169. flags = ttSHORT(comp); comp+=2;
  1170. gidx = ttSHORT(comp); comp+=2;
  1171. if (flags & 2) { // XY values
  1172. if (flags & 1) { // shorts
  1173. mtx[4] = ttSHORT(comp); comp+=2;
  1174. mtx[5] = ttSHORT(comp); comp+=2;
  1175. } else {
  1176. mtx[4] = ttCHAR(comp); comp+=1;
  1177. mtx[5] = ttCHAR(comp); comp+=1;
  1178. }
  1179. }
  1180. else {
  1181. // @TODO handle matching point
  1182. STBTT_assert(0);
  1183. }
  1184. if (flags & (1<<3)) { // WE_HAVE_A_SCALE
  1185. mtx[0] = mtx[3] = ttSHORT(comp)/16384.0f; comp+=2;
  1186. mtx[1] = mtx[2] = 0;
  1187. } else if (flags & (1<<6)) { // WE_HAVE_AN_X_AND_YSCALE
  1188. mtx[0] = ttSHORT(comp)/16384.0f; comp+=2;
  1189. mtx[1] = mtx[2] = 0;
  1190. mtx[3] = ttSHORT(comp)/16384.0f; comp+=2;
  1191. } else if (flags & (1<<7)) { // WE_HAVE_A_TWO_BY_TWO
  1192. mtx[0] = ttSHORT(comp)/16384.0f; comp+=2;
  1193. mtx[1] = ttSHORT(comp)/16384.0f; comp+=2;
  1194. mtx[2] = ttSHORT(comp)/16384.0f; comp+=2;
  1195. mtx[3] = ttSHORT(comp)/16384.0f; comp+=2;
  1196. }
  1197. // Find transformation scales.
  1198. m = (float) STBTT_sqrt(mtx[0]*mtx[0] + mtx[1]*mtx[1]);
  1199. n = (float) STBTT_sqrt(mtx[2]*mtx[2] + mtx[3]*mtx[3]);
  1200. // Get indexed glyph.
  1201. comp_num_verts = stbtt_GetGlyphShape(info, gidx, &comp_verts);
  1202. if (comp_num_verts > 0) {
  1203. // Transform vertices.
  1204. for (i = 0; i < comp_num_verts; ++i) {
  1205. stbtt_vertex* v = &comp_verts[i];
  1206. stbtt_vertex_type x,y;
  1207. x=v->x; y=v->y;
  1208. v->x = (stbtt_vertex_type)(m * (mtx[0]*x + mtx[2]*y + mtx[4]));
  1209. v->y = (stbtt_vertex_type)(n * (mtx[1]*x + mtx[3]*y + mtx[5]));
  1210. x=v->cx; y=v->cy;
  1211. v->cx = (stbtt_vertex_type)(m * (mtx[0]*x + mtx[2]*y + mtx[4]));
  1212. v->cy = (stbtt_vertex_type)(n * (mtx[1]*x + mtx[3]*y + mtx[5]));
  1213. }
  1214. // Append vertices.
  1215. tmp = (stbtt_vertex*)STBTT_malloc((num_vertices+comp_num_verts)*sizeof(stbtt_vertex), info->userdata);
  1216. if (!tmp) {
  1217. if (vertices) STBTT_free(vertices, info->userdata);
  1218. if (comp_verts) STBTT_free(comp_verts, info->userdata);
  1219. return 0;
  1220. }
  1221. if (num_vertices > 0) STBTT_memcpy(tmp, vertices, num_vertices*sizeof(stbtt_vertex));
  1222. STBTT_memcpy(tmp+num_vertices, comp_verts, comp_num_verts*sizeof(stbtt_vertex));
  1223. if (vertices) STBTT_free(vertices, info->userdata);
  1224. vertices = tmp;
  1225. STBTT_free(comp_verts, info->userdata);
  1226. num_vertices += comp_num_verts;
  1227. }
  1228. // More components ?
  1229. more = flags & (1<<5);
  1230. }
  1231. } else if (numberOfContours < 0) {
  1232. // @TODO other compound variations?
  1233. STBTT_assert(0);
  1234. } else {
  1235. // numberOfCounters == 0, do nothing
  1236. }
  1237. *pvertices = vertices;
  1238. return num_vertices;
  1239. }
  1240. void stbtt_GetGlyphHMetrics(const stbtt_fontinfo *info, int glyph_index, int *advanceWidth, int *leftSideBearing)
  1241. {
  1242. stbtt_uint16 numOfLongHorMetrics = ttUSHORT(info->data+info->hhea + 34);
  1243. if (glyph_index < numOfLongHorMetrics) {
  1244. if (advanceWidth) *advanceWidth = ttSHORT(info->data + info->hmtx + 4*glyph_index);
  1245. if (leftSideBearing) *leftSideBearing = ttSHORT(info->data + info->hmtx + 4*glyph_index + 2);
  1246. } else {
  1247. if (advanceWidth) *advanceWidth = ttSHORT(info->data + info->hmtx + 4*(numOfLongHorMetrics-1));
  1248. if (leftSideBearing) *leftSideBearing = ttSHORT(info->data + info->hmtx + 4*numOfLongHorMetrics + 2*(glyph_index - numOfLongHorMetrics));
  1249. }
  1250. }
  1251. int stbtt_GetGlyphKernAdvance(const stbtt_fontinfo *info, int glyph1, int glyph2)
  1252. {
  1253. stbtt_uint8 *data = info->data + info->kern;
  1254. stbtt_uint32 needle, straw;
  1255. int l, r, m;
  1256. // we only look at the first table. it must be 'horizontal' and format 0.
  1257. if (!info->kern)
  1258. return 0;
  1259. if (ttUSHORT(data+2) < 1) // number of tables, need at least 1
  1260. return 0;
  1261. if (ttUSHORT(data+8) != 1) // horizontal flag must be set in format
  1262. return 0;
  1263. l = 0;
  1264. r = ttUSHORT(data+10) - 1;
  1265. needle = glyph1 << 16 | glyph2;
  1266. while (l <= r) {
  1267. m = (l + r) >> 1;
  1268. straw = ttULONG(data+18+(m*6)); // note: unaligned read
  1269. if (needle < straw)
  1270. r = m - 1;
  1271. else if (needle > straw)
  1272. l = m + 1;
  1273. else
  1274. return ttSHORT(data+22+(m*6));
  1275. }
  1276. return 0;
  1277. }
  1278. int stbtt_GetCodepointKernAdvance(const stbtt_fontinfo *info, int ch1, int ch2)
  1279. {
  1280. if (!info->kern) // if no kerning table, don't waste time looking up both codepoint->glyphs
  1281. return 0;
  1282. return stbtt_GetGlyphKernAdvance(info, stbtt_FindGlyphIndex(info,ch1), stbtt_FindGlyphIndex(info,ch2));
  1283. }
  1284. void stbtt_GetCodepointHMetrics(const stbtt_fontinfo *info, int codepoint, int *advanceWidth, int *leftSideBearing)
  1285. {
  1286. stbtt_GetGlyphHMetrics(info, stbtt_FindGlyphIndex(info,codepoint), advanceWidth, leftSideBearing);
  1287. }
  1288. void stbtt_GetFontVMetrics(const stbtt_fontinfo *info, int *ascent, int *descent, int *lineGap)
  1289. {
  1290. if (ascent ) *ascent = ttSHORT(info->data+info->hhea + 4);
  1291. if (descent) *descent = ttSHORT(info->data+info->hhea + 6);
  1292. if (lineGap) *lineGap = ttSHORT(info->data+info->hhea + 8);
  1293. }
  1294. void stbtt_GetFontBoundingBox(const stbtt_fontinfo *info, int *x0, int *y0, int *x1, int *y1)
  1295. {
  1296. *x0 = ttSHORT(info->data + info->head + 36);
  1297. *y0 = ttSHORT(info->data + info->head + 38);
  1298. *x1 = ttSHORT(info->data + info->head + 40);
  1299. *y1 = ttSHORT(info->data + info->head + 42);
  1300. }
  1301. float stbtt_ScaleForPixelHeight(const stbtt_fontinfo *info, float height)
  1302. {
  1303. int fheight = ttSHORT(info->data + info->hhea + 4) - ttSHORT(info->data + info->hhea + 6);
  1304. return (float) height / fheight;
  1305. }
  1306. float stbtt_ScaleForMappingEmToPixels(const stbtt_fontinfo *info, float pixels)
  1307. {
  1308. int unitsPerEm = ttUSHORT(info->data + info->head + 18);
  1309. return pixels / unitsPerEm;
  1310. }
  1311. void stbtt_FreeShape(const stbtt_fontinfo *info, stbtt_vertex *v)
  1312. {
  1313. STBTT_free(v, info->userdata);
  1314. }
  1315. //////////////////////////////////////////////////////////////////////////////
  1316. //
  1317. // antialiasing software rasterizer
  1318. //
  1319. 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)
  1320. {
  1321. int x0,y0,x1,y1;
  1322. if (!stbtt_GetGlyphBox(font, glyph, &x0,&y0,&x1,&y1)) {
  1323. // e.g. space character
  1324. if (ix0) *ix0 = 0;
  1325. if (iy0) *iy0 = 0;
  1326. if (ix1) *ix1 = 0;
  1327. if (iy1) *iy1 = 0;
  1328. } else {
  1329. // move to integral bboxes (treating pixels as little squares, what pixels get touched)?
  1330. if (ix0) *ix0 = STBTT_ifloor( x0 * scale_x + shift_x);
  1331. if (iy0) *iy0 = STBTT_ifloor(-y1 * scale_y + shift_y);
  1332. if (ix1) *ix1 = STBTT_iceil ( x1 * scale_x + shift_x);
  1333. if (iy1) *iy1 = STBTT_iceil (-y0 * scale_y + shift_y);
  1334. }
  1335. }
  1336. void stbtt_GetGlyphBitmapBox(const stbtt_fontinfo *font, int glyph, float scale_x, float scale_y, int *ix0, int *iy0, int *ix1, int *iy1)
  1337. {
  1338. stbtt_GetGlyphBitmapBoxSubpixel(font, glyph, scale_x, scale_y,0.0f,0.0f, ix0, iy0, ix1, iy1);
  1339. }
  1340. 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)
  1341. {
  1342. stbtt_GetGlyphBitmapBoxSubpixel(font, stbtt_FindGlyphIndex(font,codepoint), scale_x, scale_y,shift_x,shift_y, ix0,iy0,ix1,iy1);
  1343. }
  1344. void stbtt_GetCodepointBitmapBox(const stbtt_fontinfo *font, int codepoint, float scale_x, float scale_y, int *ix0, int *iy0, int *ix1, int *iy1)
  1345. {
  1346. stbtt_GetCodepointBitmapBoxSubpixel(font, codepoint, scale_x, scale_y,0.0f,0.0f, ix0,iy0,ix1,iy1);
  1347. }
  1348. typedef struct stbtt__edge {
  1349. float x0,y0, x1,y1;
  1350. int invert;
  1351. } stbtt__edge;
  1352. typedef struct stbtt__active_edge
  1353. {
  1354. int x,dx;
  1355. float ey;
  1356. struct stbtt__active_edge *next;
  1357. int valid;
  1358. } stbtt__active_edge;
  1359. #define FIXSHIFT 10
  1360. #define FIX (1 << FIXSHIFT)
  1361. #define FIXMASK (FIX-1)
  1362. static stbtt__active_edge *new_active(stbtt__edge *e, int off_x, float start_point, void *userdata)
  1363. {
  1364. stbtt__active_edge *z = (stbtt__active_edge *) STBTT_malloc(sizeof(*z), userdata); // @TODO: make a pool of these!!!
  1365. float dxdy = (e->x1 - e->x0) / (e->y1 - e->y0);
  1366. STBTT_assert(e->y0 <= start_point);
  1367. if (!z) return z;
  1368. // round dx down to avoid going too far
  1369. if (dxdy < 0)
  1370. z->dx = -STBTT_ifloor(FIX * -dxdy);
  1371. else
  1372. z->dx = STBTT_ifloor(FIX * dxdy);
  1373. z->x = STBTT_ifloor(FIX * (e->x0 + dxdy * (start_point - e->y0)));
  1374. z->x -= off_x * FIX;
  1375. z->ey = e->y1;
  1376. z->next = 0;
  1377. z->valid = e->invert ? 1 : -1;
  1378. return z;
  1379. }
  1380. // note: this routine clips fills that extend off the edges... ideally this
  1381. // wouldn't happen, but it could happen if the truetype glyph bounding boxes
  1382. // are wrong, or if the user supplies a too-small bitmap
  1383. static void stbtt__fill_active_edges(unsigned char *scanline, int len, stbtt__active_edge *e, int max_weight)
  1384. {
  1385. // non-zero winding fill
  1386. int x0=0, w=0;
  1387. while (e) {
  1388. if (w == 0) {
  1389. // if we're currently at zero, we need to record the edge start point
  1390. x0 = e->x; w += e->valid;
  1391. } else {
  1392. int x1 = e->x; w += e->valid;
  1393. // if we went to zero, we need to draw
  1394. if (w == 0) {
  1395. int i = x0 >> FIXSHIFT;
  1396. int j = x1 >> FIXSHIFT;
  1397. if (i < len && j >= 0) {
  1398. if (i == j) {
  1399. // x0,x1 are the same pixel, so compute combined coverage
  1400. scanline[i] = scanline[i] + (stbtt_uint8) ((x1 - x0) * max_weight >> FIXSHIFT);
  1401. } else {
  1402. if (i >= 0) // add antialiasing for x0
  1403. scanline[i] = scanline[i] + (stbtt_uint8) (((FIX - (x0 & FIXMASK)) * max_weight) >> FIXSHIFT);
  1404. else
  1405. i = -1; // clip
  1406. if (j < len) // add antialiasing for x1
  1407. scanline[j] = scanline[j] + (stbtt_uint8) (((x1 & FIXMASK) * max_weight) >> FIXSHIFT);
  1408. else
  1409. j = len; // clip
  1410. for (++i; i < j; ++i) // fill pixels between x0 and x1
  1411. scanline[i] = scanline[i] + (stbtt_uint8) max_weight;
  1412. }
  1413. }
  1414. }
  1415. }
  1416. e = e->next;
  1417. }
  1418. }
  1419. static void stbtt__rasterize_sorted_edges(stbtt__bitmap *result, stbtt__edge *e, int n, int vsubsample, int off_x, int off_y, void *userdata)
  1420. {
  1421. stbtt__active_edge *active = NULL;
  1422. int y,j=0;
  1423. int max_weight = (255 / vsubsample); // weight per vertical scanline
  1424. int s; // vertical subsample index
  1425. unsigned char scanline_data[512], *scanline;
  1426. if (result->w > 512)
  1427. scanline = (unsigned char *) STBTT_malloc(result->w, userdata);
  1428. else
  1429. scanline = scanline_data;
  1430. y = off_y * vsubsample;
  1431. e[n].y0 = (off_y + result->h) * (float) vsubsample + 1;
  1432. while (j < result->h) {
  1433. STBTT_memset(scanline, 0, result->w);
  1434. for (s=0; s < vsubsample; ++s) {
  1435. // find center of pixel for this scanline
  1436. float scan_y = y + 0.5f;
  1437. stbtt__active_edge **step = &active;
  1438. // update all active edges;
  1439. // remove all active edges that terminate before the center of this scanline
  1440. while (*step) {
  1441. stbtt__active_edge * z = *step;
  1442. if (z->ey <= scan_y) {
  1443. *step = z->next; // delete from list
  1444. STBTT_assert(z->valid);
  1445. z->valid = 0;
  1446. STBTT_free(z, userdata);
  1447. } else {
  1448. z->x += z->dx; // advance to position for current scanline
  1449. step = &((*step)->next); // advance through list
  1450. }
  1451. }
  1452. // resort the list if needed
  1453. for(;;) {
  1454. int changed=0;
  1455. step = &active;
  1456. while (*step && (*step)->next) {
  1457. if ((*step)->x > (*step)->next->x) {
  1458. stbtt__active_edge *t = *step;
  1459. stbtt__active_edge *q = t->next;
  1460. t->next = q->next;
  1461. q->next = t;
  1462. *step = q;
  1463. changed = 1;
  1464. }
  1465. step = &(*step)->next;
  1466. }
  1467. if (!changed) break;
  1468. }
  1469. // insert all edges that start before the center of this scanline -- omit ones that also end on this scanline
  1470. while (e->y0 <= scan_y) {
  1471. if (e->y1 > scan_y) {
  1472. stbtt__active_edge *z = new_active(e, off_x, scan_y, userdata);
  1473. // find insertion point
  1474. if (active == NULL)
  1475. active = z;
  1476. else if (z->x < active->x) {
  1477. // insert at front
  1478. z->next = active;
  1479. active = z;
  1480. } else {
  1481. // find thing to insert AFTER
  1482. stbtt__active_edge *p = active;
  1483. while (p->next && p->next->x < z->x)
  1484. p = p->next;
  1485. // at this point, p->next->x is NOT < z->x
  1486. z->next = p->next;
  1487. p->next = z;
  1488. }
  1489. }
  1490. ++e;
  1491. }
  1492. // now process all active edges in XOR fashion
  1493. if (active)
  1494. stbtt__fill_active_edges(scanline, result->w, active, max_weight);
  1495. ++y;
  1496. }
  1497. STBTT_memcpy(result->pixels + j * result->stride, scanline, result->w);
  1498. ++j;
  1499. }
  1500. while (active) {
  1501. stbtt__active_edge *z = active;
  1502. active = active->next;
  1503. STBTT_free(z, userdata);
  1504. }
  1505. if (scanline != scanline_data)
  1506. STBTT_free(scanline, userdata);
  1507. }
  1508. static int stbtt__edge_compare(const void *p, const void *q)
  1509. {
  1510. stbtt__edge *a = (stbtt__edge *) p;
  1511. stbtt__edge *b = (stbtt__edge *) q;
  1512. if (a->y0 < b->y0) return -1;
  1513. if (a->y0 > b->y0) return 1;
  1514. return 0;
  1515. }
  1516. typedef struct
  1517. {
  1518. float x,y;
  1519. } stbtt__point;
  1520. 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)
  1521. {
  1522. float y_scale_inv = invert ? -scale_y : scale_y;
  1523. stbtt__edge *e;
  1524. int n,i,j,k,m;
  1525. int vsubsample = result->h < 8 ? 15 : 5;
  1526. // vsubsample should divide 255 evenly; otherwise we won't reach full opacity
  1527. // now we have to blow out the windings into explicit edge lists
  1528. n = 0;
  1529. for (i=0; i < windings; ++i)
  1530. n += wcount[i];
  1531. e = (stbtt__edge *) STBTT_malloc(sizeof(*e) * (n+1), userdata); // add an extra one as a sentinel
  1532. if (e == 0) return;
  1533. n = 0;
  1534. m=0;
  1535. for (i=0; i < windings; ++i) {
  1536. stbtt__point *p = pts + m;
  1537. m += wcount[i];
  1538. j = wcount[i]-1;
  1539. for (k=0; k < wcount[i]; j=k++) {
  1540. int a=k,b=j;
  1541. // skip the edge if horizontal
  1542. if (p[j].y == p[k].y)
  1543. continue;
  1544. // add edge from j to k to the list
  1545. e[n].invert = 0;
  1546. if (invert ? p[j].y > p[k].y : p[j].y < p[k].y) {
  1547. e[n].invert = 1;
  1548. a=j,b=k;
  1549. }
  1550. e[n].x0 = p[a].x * scale_x + shift_x;
  1551. e[n].y0 = (p[a].y * y_scale_inv + shift_y) * vsubsample;
  1552. e[n].x1 = p[b].x * scale_x + shift_x;
  1553. e[n].y1 = (p[b].y * y_scale_inv + shift_y) * vsubsample;
  1554. ++n;
  1555. }
  1556. }
  1557. // now sort the edges by their highest point (should snap to integer, and then by x)
  1558. STBTT_sort(e, n, sizeof(e[0]), stbtt__edge_compare);
  1559. // now, traverse the scanlines and find the intersections on each scanline, use xor winding rule
  1560. stbtt__rasterize_sorted_edges(result, e, n, vsubsample, off_x, off_y, userdata);
  1561. STBTT_free(e, userdata);
  1562. }
  1563. static void stbtt__add_point(stbtt__point *points, int n, float x, float y)
  1564. {
  1565. if (!points) return; // during first pass, it's unallocated
  1566. points[n].x = x;
  1567. points[n].y = y;
  1568. }
  1569. // tesselate until threshhold p is happy... @TODO warped to compensate for non-linear stretching
  1570. 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)
  1571. {
  1572. // midpoint
  1573. float mx = (x0 + 2*x1 + x2)/4;
  1574. float my = (y0 + 2*y1 + y2)/4;
  1575. // versus directly drawn line
  1576. float dx = (x0+x2)/2 - mx;
  1577. float dy = (y0+y2)/2 - my;
  1578. if (n > 16) // 65536 segments on one curve better be enough!
  1579. return 1;
  1580. if (dx*dx+dy*dy > objspace_flatness_squared) { // half-pixel error allowed... need to be smaller if AA
  1581. stbtt__tesselate_curve(points, num_points, x0,y0, (x0+x1)/2.0f,(y0+y1)/2.0f, mx,my, objspace_flatness_squared,n+1);
  1582. stbtt__tesselate_curve(points, num_points, mx,my, (x1+x2)/2.0f,(y1+y2)/2.0f, x2,y2, objspace_flatness_squared,n+1);
  1583. } else {
  1584. stbtt__add_point(points, *num_points,x2,y2);
  1585. *num_points = *num_points+1;
  1586. }
  1587. return 1;
  1588. }
  1589. // returns number of contours
  1590. stbtt__point *stbtt_FlattenCurves(stbtt_vertex *vertices, int num_verts, float objspace_flatness, int **contour_lengths, int *num_contours, void *userdata)
  1591. {
  1592. stbtt__point *points=0;
  1593. int num_points=0;
  1594. float objspace_flatness_squared = objspace_flatness * objspace_flatness;
  1595. int i,n=0,start=0, pass;
  1596. // count how many "moves" there are to get the contour count
  1597. for (i=0; i < num_verts; ++i)
  1598. if (vertices[i].type == STBTT_vmove)
  1599. ++n;
  1600. *num_contours = n;
  1601. if (n == 0) return 0;
  1602. *contour_lengths = (int *) STBTT_malloc(sizeof(**contour_lengths) * n, userdata);
  1603. if (*contour_lengths == 0) {
  1604. *num_contours = 0;
  1605. return 0;
  1606. }
  1607. // make two passes through the points so we don't need to realloc
  1608. for (pass=0; pass < 2; ++pass) {
  1609. float x=0,y=0;
  1610. if (pass == 1) {
  1611. points = (stbtt__point *) STBTT_malloc(num_points * sizeof(points[0]), userdata);
  1612. if (points == NULL) goto error;
  1613. }
  1614. num_points = 0;
  1615. n= -1;
  1616. for (i=0; i < num_verts; ++i) {
  1617. switch (vertices[i].type) {
  1618. case STBTT_vmove:
  1619. // start the next contour
  1620. if (n >= 0)
  1621. (*contour_lengths)[n] = num_points - start;
  1622. ++n;
  1623. start = num_points;
  1624. x = vertices[i].x, y = vertices[i].y;
  1625. stbtt__add_point(points, num_points++, x,y);
  1626. break;
  1627. case STBTT_vline:
  1628. x = vertices[i].x, y = vertices[i].y;
  1629. stbtt__add_point(points, num_points++, x, y);
  1630. break;
  1631. case STBTT_vcurve:
  1632. stbtt__tesselate_curve(points, &num_points, x,y,
  1633. vertices[i].cx, vertices[i].cy,
  1634. vertices[i].x, vertices[i].y,
  1635. objspace_flatness_squared, 0);
  1636. x = vertices[i].x, y = vertices[i].y;
  1637. break;
  1638. }
  1639. }
  1640. (*contour_lengths)[n] = num_points - start;
  1641. }
  1642. return points;
  1643. error:
  1644. STBTT_free(points, userdata);
  1645. STBTT_free(*contour_lengths, userdata);
  1646. *contour_lengths = 0;
  1647. *num_contours = 0;
  1648. return NULL;
  1649. }
  1650. 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)
  1651. {
  1652. float scale = scale_x > scale_y ? scale_y : scale_x;
  1653. int winding_count, *winding_lengths;
  1654. stbtt__point *windings = stbtt_FlattenCurves(vertices, num_verts, flatness_in_pixels / scale, &winding_lengths, &winding_count, userdata);
  1655. if (windings) {
  1656. stbtt__rasterize(result, windings, winding_lengths, winding_count, scale_x, scale_y, shift_x, shift_y, x_off, y_off, invert, userdata);
  1657. STBTT_free(winding_lengths, userdata);
  1658. STBTT_free(windings, userdata);
  1659. }
  1660. }
  1661. void stbtt_FreeBitmap(unsigned char *bitmap, void *userdata)
  1662. {
  1663. STBTT_free(bitmap, userdata);
  1664. }
  1665. 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)
  1666. {
  1667. int ix0,iy0,ix1,iy1;
  1668. stbtt__bitmap gbm;
  1669. stbtt_vertex *vertices;
  1670. int num_verts = stbtt_GetGlyphShape(info, glyph, &vertices);
  1671. if (scale_x == 0) scale_x = scale_y;
  1672. if (scale_y == 0) {
  1673. if (scale_x == 0) return NULL;
  1674. scale_y = scale_x;
  1675. }
  1676. stbtt_GetGlyphBitmapBoxSubpixel(info, glyph, scale_x, scale_y, shift_x, shift_y, &ix0,&iy0,&ix1,&iy1);
  1677. // now we get the size
  1678. gbm.w = (ix1 - ix0);
  1679. gbm.h = (iy1 - iy0);
  1680. gbm.pixels = NULL; // in case we error
  1681. if (width ) *width = gbm.w;
  1682. if (height) *height = gbm.h;
  1683. if (xoff ) *xoff = ix0;
  1684. if (yoff ) *yoff = iy0;
  1685. if (gbm.w && gbm.h) {
  1686. gbm.pixels = (unsigned char *) STBTT_malloc(gbm.w * gbm.h, info->userdata);
  1687. if (gbm.pixels) {
  1688. gbm.stride = gbm.w;
  1689. stbtt_Rasterize(&gbm, 0.35f, vertices, num_verts, scale_x, scale_y, shift_x, shift_y, ix0, iy0, 1, info->userdata);
  1690. }
  1691. }
  1692. STBTT_free(vertices, info->userdata);
  1693. return gbm.pixels;
  1694. }
  1695. unsigned char *stbtt_GetGlyphBitmap(const stbtt_fontinfo *info, float scale_x, float scale_y, int glyph, int *width, int *height, int *xoff, int *yoff)
  1696. {
  1697. return stbtt_GetGlyphBitmapSubpixel(info, scale_x, scale_y, 0.0f, 0.0f, glyph, width, height, xoff, yoff);
  1698. }
  1699. 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)
  1700. {
  1701. int ix0,iy0;
  1702. stbtt_vertex *vertices;
  1703. int num_verts = stbtt_GetGlyphShape(info, glyph, &vertices);
  1704. stbtt__bitmap gbm;
  1705. stbtt_GetGlyphBitmapBoxSubpixel(info, glyph, scale_x, scale_y, shift_x, shift_y, &ix0,&iy0,0,0);
  1706. gbm.pixels = output;
  1707. gbm.w = out_w;
  1708. gbm.h = out_h;
  1709. gbm.stride = out_stride;
  1710. if (gbm.w && gbm.h)
  1711. stbtt_Rasterize(&gbm, 0.35f, vertices, num_verts, scale_x, scale_y, shift_x, shift_y, ix0,iy0, 1, info->userdata);
  1712. STBTT_free(vertices, info->userdata);
  1713. }
  1714. 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)
  1715. {
  1716. stbtt_MakeGlyphBitmapSubpixel(info, output, out_w, out_h, out_stride, scale_x, scale_y, 0.0f,0.0f, glyph);
  1717. }
  1718. 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)
  1719. {
  1720. return stbtt_GetGlyphBitmapSubpixel(info, scale_x, scale_y,shift_x,shift_y, stbtt_FindGlyphIndex(info,codepoint), width,height,xoff,yoff);
  1721. }
  1722. 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)
  1723. {
  1724. stbtt_MakeGlyphBitmapSubpixel(info, output, out_w, out_h, out_stride, scale_x, scale_y, shift_x, shift_y, stbtt_FindGlyphIndex(info,codepoint));
  1725. }
  1726. unsigned char *stbtt_GetCodepointBitmap(const stbtt_fontinfo *info, float scale_x, float scale_y, int codepoint, int *width, int *height, int *xoff, int *yoff)
  1727. {
  1728. return stbtt_GetCodepointBitmapSubpixel(info, scale_x, scale_y, 0.0f,0.0f, codepoint, width,height,xoff,yoff);
  1729. }
  1730. 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)
  1731. {
  1732. stbtt_MakeCodepointBitmapSubpixel(info, output, out_w, out_h, out_stride, scale_x, scale_y, 0.0f,0.0f, codepoint);
  1733. }
  1734. //////////////////////////////////////////////////////////////////////////////
  1735. //
  1736. // bitmap baking
  1737. //
  1738. // This is SUPER-CRAPPY packing to keep source code small
  1739. extern int stbtt_BakeFontBitmap(const unsigned char *data, int offset, // font location (use offset=0 for plain .ttf)
  1740. float pixel_height, // height of font in pixels
  1741. unsigned char *pixels, int pw, int ph, // bitmap to be filled in
  1742. int first_char, int num_chars, // characters to bake
  1743. stbtt_bakedchar *chardata)
  1744. {
  1745. float scale;
  1746. int x,y,bottom_y, i;
  1747. stbtt_fontinfo f;
  1748. if (!stbtt_InitFont(&f, data, offset))
  1749. return -1;
  1750. STBTT_memset(pixels, 0, pw*ph); // background of 0 around pixels
  1751. x=y=1;
  1752. bottom_y = 1;
  1753. scale = stbtt_ScaleForPixelHeight(&f, pixel_height);
  1754. for (i=0; i < num_chars; ++i) {
  1755. int advance, lsb, x0,y0,x1,y1,gw,gh;
  1756. int g = stbtt_FindGlyphIndex(&f, first_char + i);
  1757. stbtt_GetGlyphHMetrics(&f, g, &advance, &lsb);
  1758. stbtt_GetGlyphBitmapBox(&f, g, scale,scale, &x0,&y0,&x1,&y1);
  1759. gw = x1-x0;
  1760. gh = y1-y0;
  1761. if (x + gw + 1 >= pw)
  1762. y = bottom_y, x = 1; // advance to next row
  1763. if (y + gh + 1 >= ph) // check if it fits vertically AFTER potentially moving to next row
  1764. return -i;
  1765. STBTT_assert(x+gw < pw);
  1766. STBTT_assert(y+gh < ph);
  1767. stbtt_MakeGlyphBitmap(&f, pixels+x+y*pw, gw,gh,pw, scale,scale, g);
  1768. chardata[i].x0 = (stbtt_int16) x;
  1769. chardata[i].y0 = (stbtt_int16) y;
  1770. chardata[i].x1 = (stbtt_int16) (x + gw);
  1771. chardata[i].y1 = (stbtt_int16) (y + gh);
  1772. chardata[i].xadvance = scale * advance;
  1773. chardata[i].xoff = (float) x0;
  1774. chardata[i].yoff = (float) y0;
  1775. x = x + gw + 1;
  1776. if (y+gh+1 > bottom_y)
  1777. bottom_y = y+gh+1;
  1778. }
  1779. return bottom_y;
  1780. }
  1781. void stbtt_GetBakedQuad(stbtt_bakedchar *chardata, int pw, int ph, int char_index, float *xpos, float *ypos, stbtt_aligned_quad *q, int opengl_fillrule)
  1782. {
  1783. float d3d_bias = opengl_fillrule ? 0 : -0.5f;
  1784. float ipw = 1.0f / pw, iph = 1.0f / ph;
  1785. stbtt_bakedchar *b = chardata + char_index;
  1786. int round_x = STBTT_ifloor((*xpos + b->xoff) + 0.5);
  1787. int round_y = STBTT_ifloor((*ypos + b->yoff) + 0.5);
  1788. q->x0 = round_x + d3d_bias;
  1789. q->y0 = round_y + d3d_bias;
  1790. q->x1 = round_x + b->x1 - b->x0 + d3d_bias;
  1791. q->y1 = round_y + b->y1 - b->y0 + d3d_bias;
  1792. q->s0 = b->x0 * ipw;
  1793. q->t0 = b->y0 * iph;
  1794. q->s1 = b->x1 * ipw;
  1795. q->t1 = b->y1 * iph;
  1796. *xpos += b->xadvance;
  1797. }
  1798. //////////////////////////////////////////////////////////////////////////////
  1799. //
  1800. // rectangle packing replacement routines if you don't have stb_rect_pack.h
  1801. //
  1802. #ifndef STB_RECT_PACK_VERSION
  1803. #ifdef _MSC_VER
  1804. #define STBTT__NOTUSED(v) (void)(v)
  1805. #else
  1806. #define STBTT__NOTUSED(v) (void)sizeof(v)
  1807. #endif
  1808. typedef int stbrp_coord;
  1809. ////////////////////////////////////////////////////////////////////////////////////
  1810. // //
  1811. // //
  1812. // COMPILER WARNING ?!?!? //
  1813. // //
  1814. // //
  1815. // if you get a compile warning due to these symbols being defined more than //
  1816. // once, move #include "stb_rect_pack.h" before #include "stb_truetype.h" //
  1817. // //
  1818. ////////////////////////////////////////////////////////////////////////////////////
  1819. typedef struct
  1820. {
  1821. int width,height;
  1822. int x,y,bottom_y;
  1823. } stbrp_context;
  1824. typedef struct
  1825. {
  1826. unsigned char x;
  1827. } stbrp_node;
  1828. typedef struct
  1829. {
  1830. stbrp_coord x,y;
  1831. int id,w,h,was_packed;
  1832. } stbrp_rect;
  1833. static void stbrp_init_target(stbrp_context *con, int pw, int ph, stbrp_node *nodes, int num_nodes)
  1834. {
  1835. con->width = pw;
  1836. con->height = ph;
  1837. con->x = 0;
  1838. con->y = 0;
  1839. con->bottom_y = 0;
  1840. STBTT__NOTUSED(nodes);
  1841. STBTT__NOTUSED(num_nodes);
  1842. }
  1843. static void stbrp_pack_rects(stbrp_context *con, stbrp_rect *rects, int num_rects)
  1844. {
  1845. int i;
  1846. for (i=0; i < num_rects; ++i) {
  1847. if (con->x + rects[i].w > con->width) {
  1848. con->x = 0;
  1849. con->y = con->bottom_y;
  1850. }
  1851. if (con->y + rects[i].h > con->height)
  1852. break;
  1853. rects[i].x = con->x;
  1854. rects[i].y = con->y;
  1855. rects[i].was_packed = 1;
  1856. con->x += rects[i].w;
  1857. if (con->y + rects[i].h > con->bottom_y)
  1858. con->bottom_y = con->y + rects[i].h;
  1859. }
  1860. for ( ; i < num_rects; ++i)
  1861. rects[i].was_packed = 0;
  1862. }
  1863. #endif
  1864. //////////////////////////////////////////////////////////////////////////////
  1865. //
  1866. // bitmap baking
  1867. //
  1868. // This is SUPER-AWESOME (tm Ryan Gordon) packing using stb_rect_pack.h. If
  1869. // stb_rect_pack.h isn't available, it uses the BakeFontBitmap strategy.
  1870. int stbtt_PackBegin(stbtt_pack_context *spc, unsigned char *pixels, int pw, int ph, int stride_in_bytes, int padding, void *alloc_context)
  1871. {
  1872. stbrp_context *context = (stbrp_context *) STBTT_malloc(sizeof(*context) ,alloc_context);
  1873. int num_nodes = pw - padding;
  1874. stbrp_node *nodes = (stbrp_node *) STBTT_malloc(sizeof(*nodes ) * num_nodes,alloc_context);
  1875. if (context == NULL || nodes == NULL) {
  1876. if (context != NULL) STBTT_free(context, alloc_context);
  1877. if (nodes != NULL) STBTT_free(nodes , alloc_context);
  1878. return 0;
  1879. }
  1880. spc->user_allocator_context = alloc_context;
  1881. spc->width = pw;
  1882. spc->height = ph;
  1883. spc->pixels = pixels;
  1884. spc->pack_info = context;
  1885. spc->nodes = nodes;
  1886. spc->padding = padding;
  1887. spc->stride_in_bytes = stride_in_bytes != 0 ? stride_in_bytes : pw;
  1888. spc->h_oversample = 1;
  1889. spc->v_oversample = 1;
  1890. stbrp_init_target(context, pw-padding, ph-padding, nodes, num_nodes);
  1891. STBTT_memset(pixels, 0, pw*ph); // background of 0 around pixels
  1892. return 1;
  1893. }
  1894. void stbtt_PackEnd (stbtt_pack_context *spc)
  1895. {
  1896. STBTT_free(spc->nodes , spc->user_allocator_context);
  1897. STBTT_free(spc->pack_info, spc->user_allocator_context);
  1898. }
  1899. void stbtt_PackSetOversampling(stbtt_pack_context *spc, unsigned int h_oversample, unsigned int v_oversample)
  1900. {
  1901. STBTT_assert(h_oversample <= STBTT_MAX_OVERSAMPLE);
  1902. STBTT_assert(v_oversample <= STBTT_MAX_OVERSAMPLE);
  1903. if (h_oversample <= STBTT_MAX_OVERSAMPLE)
  1904. spc->h_oversample = h_oversample;
  1905. if (v_oversample <= STBTT_MAX_OVERSAMPLE)
  1906. spc->v_oversample = v_oversample;
  1907. }
  1908. #define STBTT__OVER_MASK (STBTT_MAX_OVERSAMPLE-1)
  1909. static void stbtt__h_prefilter(unsigned char *pixels, int w, int h, int stride_in_bytes, unsigned int kernel_width)
  1910. {
  1911. unsigned char buffer[STBTT_MAX_OVERSAMPLE];
  1912. int safe_w = w - kernel_width;
  1913. int j;
  1914. for (j=0; j < h; ++j) {
  1915. int i;
  1916. unsigned int total;
  1917. memset(buffer, 0, kernel_width);
  1918. total = 0;
  1919. // make kernel_width a constant in common cases so compiler can optimize out the divide
  1920. switch (kernel_width) {
  1921. case 2:
  1922. for (i=0; i <= safe_w; ++i) {
  1923. total += pixels[i] - buffer[i & STBTT__OVER_MASK];
  1924. buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i];
  1925. pixels[i] = (unsigned char) (total / 2);
  1926. }
  1927. break;
  1928. case 3:
  1929. for (i=0; i <= safe_w; ++i) {
  1930. total += pixels[i] - buffer[i & STBTT__OVER_MASK];
  1931. buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i];
  1932. pixels[i] = (unsigned char) (total / 3);
  1933. }
  1934. break;
  1935. case 4:
  1936. for (i=0; i <= safe_w; ++i) {
  1937. total += pixels[i] - buffer[i & STBTT__OVER_MASK];
  1938. buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i];
  1939. pixels[i] = (unsigned char) (total / 4);
  1940. }
  1941. break;
  1942. default:
  1943. for (i=0; i <= safe_w; ++i) {
  1944. total += pixels[i] - buffer[i & STBTT__OVER_MASK];
  1945. buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i];
  1946. pixels[i] = (unsigned char) (total / kernel_width);
  1947. }
  1948. break;
  1949. }
  1950. for (; i < w; ++i) {
  1951. STBTT_assert(pixels[i] == 0);
  1952. total -= buffer[i & STBTT__OVER_MASK];
  1953. pixels[i] = (unsigned char) (total / kernel_width);
  1954. }
  1955. pixels += stride_in_bytes;
  1956. }
  1957. }
  1958. static void stbtt__v_prefilter(unsigned char *pixels, int w, int h, int stride_in_bytes, unsigned int kernel_width)
  1959. {
  1960. unsigned char buffer[STBTT_MAX_OVERSAMPLE];
  1961. int safe_h = h - kernel_width;
  1962. int j;
  1963. for (j=0; j < w; ++j) {
  1964. int i;
  1965. unsigned int total;
  1966. memset(buffer, 0, kernel_width);
  1967. total = 0;
  1968. // make kernel_width a constant in common cases so compiler can optimize out the divide
  1969. switch (kernel_width) {
  1970. case 2:
  1971. for (i=0; i <= safe_h; ++i) {
  1972. total += pixels[i*stride_in_bytes] - buffer[i & STBTT__OVER_MASK];
  1973. buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i*stride_in_bytes];
  1974. pixels[i*stride_in_bytes] = (unsigned char) (total / 2);
  1975. }
  1976. break;
  1977. case 3:
  1978. for (i=0; i <= safe_h; ++i) {
  1979. total += pixels[i*stride_in_bytes] - buffer[i & STBTT__OVER_MASK];
  1980. buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i*stride_in_bytes];
  1981. pixels[i*stride_in_bytes] = (unsigned char) (total / 3);
  1982. }
  1983. break;
  1984. case 4:
  1985. for (i=0; i <= safe_h; ++i) {
  1986. total += pixels[i*stride_in_bytes] - buffer[i & STBTT__OVER_MASK];
  1987. buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i*stride_in_bytes];
  1988. pixels[i*stride_in_bytes] = (unsigned char) (total / 4);
  1989. }
  1990. break;
  1991. default:
  1992. for (i=0; i <= safe_h; ++i) {
  1993. total += pixels[i*stride_in_bytes] - buffer[i & STBTT__OVER_MASK];
  1994. buffer[(i+kernel_width) & STBTT__OVER_MASK] = pixels[i*stride_in_bytes];
  1995. pixels[i*stride_in_bytes] = (unsigned char) (total / kernel_width);
  1996. }
  1997. break;
  1998. }
  1999. for (; i < h; ++i) {
  2000. STBTT_assert(pixels[i*stride_in_bytes] == 0);
  2001. total -= buffer[i & STBTT__OVER_MASK];
  2002. pixels[i*stride_in_bytes] = (unsigned char) (total / kernel_width);
  2003. }
  2004. pixels += 1;
  2005. }
  2006. }
  2007. static float stbtt__oversample_shift(int oversample)
  2008. {
  2009. if (!oversample)
  2010. return 0.0f;
  2011. // The prefilter is a box filter of width "oversample",
  2012. // which shifts phase by (oversample - 1)/2 pixels in
  2013. // oversampled space. We want to shift in the opposite
  2014. // direction to counter this.
  2015. return (float)-(oversample - 1) / (2.0f * (float)oversample);
  2016. }
  2017. int stbtt_PackFontRanges(stbtt_pack_context *spc, unsigned char *fontdata, int font_index, stbtt_pack_range *ranges, int num_ranges)
  2018. {
  2019. stbtt_fontinfo info;
  2020. float recip_h = 1.0f / spc->h_oversample;
  2021. float recip_v = 1.0f / spc->v_oversample;
  2022. float sub_x = stbtt__oversample_shift(spc->h_oversample);
  2023. float sub_y = stbtt__oversample_shift(spc->v_oversample);
  2024. int i,j,k,n, return_value = 1;
  2025. stbrp_context *context = (stbrp_context *) spc->pack_info;
  2026. stbrp_rect *rects;
  2027. // flag all characters as NOT packed
  2028. for (i=0; i < num_ranges; ++i)
  2029. for (j=0; j < ranges[i].num_chars_in_range; ++j)
  2030. ranges[i].chardata_for_range[j].x0 =
  2031. ranges[i].chardata_for_range[j].y0 =
  2032. ranges[i].chardata_for_range[j].x1 =
  2033. ranges[i].chardata_for_range[j].y1 = 0;
  2034. n = 0;
  2035. for (i=0; i < num_ranges; ++i)
  2036. n += ranges[i].num_chars_in_range;
  2037. rects = (stbrp_rect *) STBTT_malloc(sizeof(*rects) * n, spc->user_allocator_context);
  2038. if (rects == NULL)
  2039. return 0;
  2040. stbtt_InitFont(&info, fontdata, stbtt_GetFontOffsetForIndex(fontdata,font_index));
  2041. k=0;
  2042. for (i=0; i < num_ranges; ++i) {
  2043. float fh = ranges[i].font_size;
  2044. float scale = fh > 0 ? stbtt_ScaleForPixelHeight(&info, fh) : stbtt_ScaleForMappingEmToPixels(&info, -fh);
  2045. for (j=0; j < ranges[i].num_chars_in_range; ++j) {
  2046. int x0,y0,x1,y1;
  2047. stbtt_GetCodepointBitmapBoxSubpixel(&info, ranges[i].first_unicode_char_in_range + j,
  2048. scale * spc->h_oversample,
  2049. scale * spc->v_oversample,
  2050. 0,0,
  2051. &x0,&y0,&x1,&y1);
  2052. rects[k].w = (stbrp_coord) (x1-x0 + spc->padding + spc->h_oversample-1);
  2053. rects[k].h = (stbrp_coord) (y1-y0 + spc->padding + spc->v_oversample-1);
  2054. ++k;
  2055. }
  2056. }
  2057. stbrp_pack_rects(context, rects, k);
  2058. k = 0;
  2059. for (i=0; i < num_ranges; ++i) {
  2060. float fh = ranges[i].font_size;
  2061. float scale = fh > 0 ? stbtt_ScaleForPixelHeight(&info, fh) : stbtt_ScaleForMappingEmToPixels(&info, -fh);
  2062. for (j=0; j < ranges[i].num_chars_in_range; ++j) {
  2063. stbrp_rect *r = &rects[k];
  2064. if (r->was_packed) {
  2065. stbtt_packedchar *bc = &ranges[i].chardata_for_range[j];
  2066. int advance, lsb, x0,y0,x1,y1;
  2067. int glyph = stbtt_FindGlyphIndex(&info, ranges[i].first_unicode_char_in_range + j);
  2068. stbrp_coord pad = (stbrp_coord) spc->padding;
  2069. // pad on left and top
  2070. r->x += pad;
  2071. r->y += pad;
  2072. r->w -= pad;
  2073. r->h -= pad;
  2074. stbtt_GetGlyphHMetrics(&info, glyph, &advance, &lsb);
  2075. stbtt_GetGlyphBitmapBox(&info, glyph,
  2076. scale * spc->h_oversample,
  2077. scale * spc->v_oversample,
  2078. &x0,&y0,&x1,&y1);
  2079. stbtt_MakeGlyphBitmapSubpixel(&info,
  2080. spc->pixels + r->x + r->y*spc->stride_in_bytes,
  2081. r->w - spc->h_oversample+1,
  2082. r->h - spc->v_oversample+1,
  2083. spc->stride_in_bytes,
  2084. scale * spc->h_oversample,
  2085. scale * spc->v_oversample,
  2086. 0,0,
  2087. glyph);
  2088. if (spc->h_oversample > 1)
  2089. stbtt__h_prefilter(spc->pixels + r->x + r->y*spc->stride_in_bytes,
  2090. r->w, r->h, spc->stride_in_bytes,
  2091. spc->h_oversample);
  2092. if (spc->v_oversample > 1)
  2093. stbtt__v_prefilter(spc->pixels + r->x + r->y*spc->stride_in_bytes,
  2094. r->w, r->h, spc->stride_in_bytes,
  2095. spc->v_oversample);
  2096. bc->x0 = (stbtt_int16) r->x;
  2097. bc->y0 = (stbtt_int16) r->y;
  2098. bc->x1 = (stbtt_int16) (r->x + r->w);
  2099. bc->y1 = (stbtt_int16) (r->y + r->h);
  2100. bc->xadvance = scale * advance;
  2101. bc->xoff = (float) x0 * recip_h + sub_x;
  2102. bc->yoff = (float) y0 * recip_v + sub_y;
  2103. bc->xoff2 = (x0 + r->w) * recip_h + sub_x;
  2104. bc->yoff2 = (y0 + r->h) * recip_v + sub_y;
  2105. } else {
  2106. return_value = 0; // if any fail, report failure
  2107. }
  2108. ++k;
  2109. }
  2110. }
  2111. return return_value;
  2112. }
  2113. int stbtt_PackFontRange(stbtt_pack_context *spc, unsigned char *fontdata, int font_index, float font_size,
  2114. int first_unicode_char_in_range, int num_chars_in_range, stbtt_packedchar *chardata_for_range)
  2115. {
  2116. stbtt_pack_range range;
  2117. range.first_unicode_char_in_range = first_unicode_char_in_range;
  2118. range.num_chars_in_range = num_chars_in_range;
  2119. range.chardata_for_range = chardata_for_range;
  2120. range.font_size = font_size;
  2121. return stbtt_PackFontRanges(spc, fontdata, font_index, &range, 1);
  2122. }
  2123. void stbtt_GetPackedQuad(stbtt_packedchar *chardata, int pw, int ph, int char_index, float *xpos, float *ypos, stbtt_aligned_quad *q, int align_to_integer)
  2124. {
  2125. float ipw = 1.0f / pw, iph = 1.0f / ph;
  2126. stbtt_packedchar *b = chardata + char_index;
  2127. if (align_to_integer) {
  2128. float x = (float) STBTT_ifloor((*xpos + b->xoff) + 0.5);
  2129. float y = (float) STBTT_ifloor((*ypos + b->yoff) + 0.5);
  2130. q->x0 = x;
  2131. q->y0 = y;
  2132. q->x1 = x + b->xoff2 - b->xoff;
  2133. q->y1 = y + b->yoff2 - b->yoff;
  2134. } else {
  2135. q->x0 = *xpos + b->xoff;
  2136. q->y0 = *ypos + b->yoff;
  2137. q->x1 = *xpos + b->xoff2;
  2138. q->y1 = *ypos + b->yoff2;
  2139. }
  2140. q->s0 = b->x0 * ipw;
  2141. q->t0 = b->y0 * iph;
  2142. q->s1 = b->x1 * ipw;
  2143. q->t1 = b->y1 * iph;
  2144. *xpos += b->xadvance;
  2145. }
  2146. //////////////////////////////////////////////////////////////////////////////
  2147. //
  2148. // font name matching -- recommended not to use this
  2149. //
  2150. // check if a utf8 string contains a prefix which is the utf16 string; if so return length of matching utf8 string
  2151. static stbtt_int32 stbtt__CompareUTF8toUTF16_bigendian_prefix(const stbtt_uint8 *s1, stbtt_int32 len1, const stbtt_uint8 *s2, stbtt_int32 len2)
  2152. {
  2153. stbtt_int32 i=0;
  2154. // convert utf16 to utf8 and compare the results while converting
  2155. while (len2) {
  2156. stbtt_uint16 ch = s2[0]*256 + s2[1];
  2157. if (ch < 0x80) {
  2158. if (i >= len1) return -1;
  2159. if (s1[i++] != ch) return -1;
  2160. } else if (ch < 0x800) {
  2161. if (i+1 >= len1) return -1;
  2162. if (s1[i++] != 0xc0 + (ch >> 6)) return -1;
  2163. if (s1[i++] != 0x80 + (ch & 0x3f)) return -1;
  2164. } else if (ch >= 0xd800 && ch < 0xdc00) {
  2165. stbtt_uint32 c;
  2166. stbtt_uint16 ch2 = s2[2]*256 + s2[3];
  2167. if (i+3 >= len1) return -1;
  2168. c = ((ch - 0xd800) << 10) + (ch2 - 0xdc00) + 0x10000;
  2169. if (s1[i++] != 0xf0 + (c >> 18)) return -1;
  2170. if (s1[i++] != 0x80 + ((c >> 12) & 0x3f)) return -1;
  2171. if (s1[i++] != 0x80 + ((c >> 6) & 0x3f)) return -1;
  2172. if (s1[i++] != 0x80 + ((c ) & 0x3f)) return -1;
  2173. s2 += 2; // plus another 2 below
  2174. len2 -= 2;
  2175. } else if (ch >= 0xdc00 && ch < 0xe000) {
  2176. return -1;
  2177. } else {
  2178. if (i+2 >= len1) return -1;
  2179. if (s1[i++] != 0xe0 + (ch >> 12)) return -1;
  2180. if (s1[i++] != 0x80 + ((ch >> 6) & 0x3f)) return -1;
  2181. if (s1[i++] != 0x80 + ((ch ) & 0x3f)) return -1;
  2182. }
  2183. s2 += 2;
  2184. len2 -= 2;
  2185. }
  2186. return i;
  2187. }
  2188. int stbtt_CompareUTF8toUTF16_bigendian(const char *s1, int len1, const char *s2, int len2)
  2189. {
  2190. return len1 == stbtt__CompareUTF8toUTF16_bigendian_prefix((const stbtt_uint8*) s1, len1, (const stbtt_uint8*) s2, len2);
  2191. }
  2192. // returns results in whatever encoding you request... but note that 2-byte encodings
  2193. // will be BIG-ENDIAN... use stbtt_CompareUTF8toUTF16_bigendian() to compare
  2194. const char *stbtt_GetFontNameString(const stbtt_fontinfo *font, int *length, int platformID, int encodingID, int languageID, int nameID)
  2195. {
  2196. stbtt_int32 i,count,stringOffset;
  2197. stbtt_uint8 *fc = font->data;
  2198. stbtt_uint32 offset = font->fontstart;
  2199. stbtt_uint32 nm = stbtt__find_table(fc, offset, "name");
  2200. if (!nm) return NULL;
  2201. count = ttUSHORT(fc+nm+2);
  2202. stringOffset = nm + ttUSHORT(fc+nm+4);
  2203. for (i=0; i < count; ++i) {
  2204. stbtt_uint32 loc = nm + 6 + 12 * i;
  2205. if (platformID == ttUSHORT(fc+loc+0) && encodingID == ttUSHORT(fc+loc+2)
  2206. && languageID == ttUSHORT(fc+loc+4) && nameID == ttUSHORT(fc+loc+6)) {
  2207. *length = ttUSHORT(fc+loc+8);
  2208. return (const char *) (fc+stringOffset+ttUSHORT(fc+loc+10));
  2209. }
  2210. }
  2211. return NULL;
  2212. }
  2213. static int stbtt__matchpair(stbtt_uint8 *fc, stbtt_uint32 nm, stbtt_uint8 *name, stbtt_int32 nlen, stbtt_int32 target_id, stbtt_int32 next_id)
  2214. {
  2215. stbtt_int32 i;
  2216. stbtt_int32 count = ttUSHORT(fc+nm+2);
  2217. stbtt_int32 stringOffset = nm + ttUSHORT(fc+nm+4);
  2218. for (i=0; i < count; ++i) {
  2219. stbtt_uint32 loc = nm + 6 + 12 * i;
  2220. stbtt_int32 id = ttUSHORT(fc+loc+6);
  2221. if (id == target_id) {
  2222. // find the encoding
  2223. stbtt_int32 platform = ttUSHORT(fc+loc+0), encoding = ttUSHORT(fc+loc+2), language = ttUSHORT(fc+loc+4);
  2224. // is this a Unicode encoding?
  2225. if (platform == 0 || (platform == 3 && encoding == 1) || (platform == 3 && encoding == 10)) {
  2226. stbtt_int32 slen = ttUSHORT(fc+loc+8);
  2227. stbtt_int32 off = ttUSHORT(fc+loc+10);
  2228. // check if there's a prefix match
  2229. stbtt_int32 matchlen = stbtt__CompareUTF8toUTF16_bigendian_prefix(name, nlen, fc+stringOffset+off,slen);
  2230. if (matchlen >= 0) {
  2231. // check for target_id+1 immediately following, with same encoding & language
  2232. 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) {
  2233. slen = ttUSHORT(fc+loc+12+8);
  2234. off = ttUSHORT(fc+loc+12+10);
  2235. if (slen == 0) {
  2236. if (matchlen == nlen)
  2237. return 1;
  2238. } else if (matchlen < nlen && name[matchlen] == ' ') {
  2239. ++matchlen;
  2240. if (stbtt_CompareUTF8toUTF16_bigendian((char*) (name+matchlen), nlen-matchlen, (char*)(fc+stringOffset+off),slen))
  2241. return 1;
  2242. }
  2243. } else {
  2244. // if nothing immediately following
  2245. if (matchlen == nlen)
  2246. return 1;
  2247. }
  2248. }
  2249. }
  2250. // @TODO handle other encodings
  2251. }
  2252. }
  2253. return 0;
  2254. }
  2255. static int stbtt__matches(stbtt_uint8 *fc, stbtt_uint32 offset, stbtt_uint8 *name, stbtt_int32 flags)
  2256. {
  2257. stbtt_int32 nlen = (stbtt_int32) STBTT_strlen((char *) name);
  2258. stbtt_uint32 nm,hd;
  2259. if (!stbtt__isfont(fc+offset)) return 0;
  2260. // check italics/bold/underline flags in macStyle...
  2261. if (flags) {
  2262. hd = stbtt__find_table(fc, offset, "head");
  2263. if ((ttUSHORT(fc+hd+44) & 7) != (flags & 7)) return 0;
  2264. }
  2265. nm = stbtt__find_table(fc, offset, "name");
  2266. if (!nm) return 0;
  2267. if (flags) {
  2268. // if we checked the macStyle flags, then just check the family and ignore the subfamily
  2269. if (stbtt__matchpair(fc, nm, name, nlen, 16, -1)) return 1;
  2270. if (stbtt__matchpair(fc, nm, name, nlen, 1, -1)) return 1;
  2271. if (stbtt__matchpair(fc, nm, name, nlen, 3, -1)) return 1;
  2272. } else {
  2273. if (stbtt__matchpair(fc, nm, name, nlen, 16, 17)) return 1;
  2274. if (stbtt__matchpair(fc, nm, name, nlen, 1, 2)) return 1;
  2275. if (stbtt__matchpair(fc, nm, name, nlen, 3, -1)) return 1;
  2276. }
  2277. return 0;
  2278. }
  2279. int stbtt_FindMatchingFont(const unsigned char *font_collection, const char *name_utf8, stbtt_int32 flags)
  2280. {
  2281. stbtt_int32 i;
  2282. for (i=0;;++i) {
  2283. stbtt_int32 off = stbtt_GetFontOffsetForIndex(font_collection, i);
  2284. if (off < 0) return off;
  2285. if (stbtt__matches((stbtt_uint8 *) font_collection, off, (stbtt_uint8*) name_utf8, flags))
  2286. return off;
  2287. }
  2288. }
  2289. #endif // STB_TRUETYPE_IMPLEMENTATION