main.cpp 46 KB

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  1. /*
  2. * MULTI-CHANNEL SIGNED DISTANCE FIELD GENERATOR v1.9 (2021-05-28) - standalone console program
  3. * --------------------------------------------------------------------------------------------
  4. * A utility by Viktor Chlumsky, (c) 2014 - 2021
  5. *
  6. */
  7. #ifdef MSDFGEN_STANDALONE
  8. #define _USE_MATH_DEFINES
  9. #define _CRT_SECURE_NO_WARNINGS
  10. #include <cstdio>
  11. #include <cmath>
  12. #include <cstring>
  13. #include "msdfgen.h"
  14. #include "msdfgen-ext.h"
  15. #include "core/ShapeDistanceFinder.h"
  16. #define SDF_ERROR_ESTIMATE_PRECISION 19
  17. #define DEFAULT_ANGLE_THRESHOLD 3.
  18. using namespace msdfgen;
  19. enum Format {
  20. AUTO,
  21. PNG,
  22. BMP,
  23. TIFF,
  24. TEXT,
  25. TEXT_FLOAT,
  26. BINARY,
  27. BINARY_FLOAT,
  28. BINARY_FLOAT_BE
  29. };
  30. static bool is8bitFormat(Format format) {
  31. return format == PNG || format == BMP || format == TEXT || format == BINARY;
  32. }
  33. static char toupper(char c) {
  34. return c >= 'a' && c <= 'z' ? c-'a'+'A' : c;
  35. }
  36. static bool parseUnsigned(unsigned &value, const char *arg) {
  37. char c;
  38. return sscanf(arg, "%u%c", &value, &c) == 1;
  39. }
  40. static bool parseUnsignedDecOrHex(unsigned &value, const char *arg) {
  41. if (arg[0] == '0' && (arg[1] == 'x' || arg[1] == 'X')) {
  42. char c;
  43. return sscanf(arg+2, "%x%c", &value, &c) == 1;
  44. }
  45. return parseUnsigned(value, arg);
  46. }
  47. static bool parseUnsignedLL(unsigned long long &value, const char *arg) {
  48. char c;
  49. return sscanf(arg, "%llu%c", &value, &c) == 1;
  50. }
  51. static bool parseDouble(double &value, const char *arg) {
  52. char c;
  53. return sscanf(arg, "%lf%c", &value, &c) == 1;
  54. }
  55. static bool parseUnicode(unicode_t &unicode, const char *arg) {
  56. unsigned uuc;
  57. if (parseUnsignedDecOrHex(uuc, arg)) {
  58. unicode = uuc;
  59. return true;
  60. }
  61. if (arg[0] == '\'' && arg[1] && arg[2] == '\'' && !arg[3]) {
  62. unicode = (unicode_t) (unsigned char) arg[1];
  63. return true;
  64. }
  65. return false;
  66. }
  67. static bool parseAngle(double &value, const char *arg) {
  68. char c1, c2;
  69. int result = sscanf(arg, "%lf%c%c", &value, &c1, &c2);
  70. if (result == 1)
  71. return true;
  72. if (result == 2 && (c1 == 'd' || c1 == 'D')) {
  73. value *= M_PI/180;
  74. return true;
  75. }
  76. return false;
  77. }
  78. static void parseColoring(Shape &shape, const char *edgeAssignment) {
  79. unsigned c = 0, e = 0;
  80. if (shape.contours.size() < c) return;
  81. Contour *contour = &shape.contours[c];
  82. bool change = false;
  83. bool clear = true;
  84. for (const char *in = edgeAssignment; *in; ++in) {
  85. switch (*in) {
  86. case ',':
  87. if (change)
  88. ++e;
  89. if (clear)
  90. while (e < contour->edges.size()) {
  91. contour->edges[e]->color = WHITE;
  92. ++e;
  93. }
  94. ++c, e = 0;
  95. if (shape.contours.size() <= c) return;
  96. contour = &shape.contours[c];
  97. change = false;
  98. clear = true;
  99. break;
  100. case '?':
  101. clear = false;
  102. break;
  103. case 'C': case 'M': case 'W': case 'Y': case 'c': case 'm': case 'w': case 'y':
  104. if (change) {
  105. ++e;
  106. change = false;
  107. }
  108. if (e < contour->edges.size()) {
  109. contour->edges[e]->color = EdgeColor(
  110. (*in == 'C' || *in == 'c')*CYAN|
  111. (*in == 'M' || *in == 'm')*MAGENTA|
  112. (*in == 'Y' || *in == 'y')*YELLOW|
  113. (*in == 'W' || *in == 'w')*WHITE);
  114. change = true;
  115. }
  116. break;
  117. }
  118. }
  119. }
  120. template <int N>
  121. static void invertColor(const BitmapRef<float, N> &bitmap) {
  122. const float *end = bitmap.pixels+N*bitmap.width*bitmap.height;
  123. for (float *p = bitmap.pixels; p < end; ++p)
  124. *p = 1.f-*p;
  125. }
  126. static bool writeTextBitmap(FILE *file, const float *values, int cols, int rows) {
  127. for (int row = 0; row < rows; ++row) {
  128. for (int col = 0; col < cols; ++col) {
  129. int v = clamp(int((*values++)*0x100), 0xff);
  130. fprintf(file, col ? " %02X" : "%02X", v);
  131. }
  132. fprintf(file, "\n");
  133. }
  134. return true;
  135. }
  136. static bool writeTextBitmapFloat(FILE *file, const float *values, int cols, int rows) {
  137. for (int row = 0; row < rows; ++row) {
  138. for (int col = 0; col < cols; ++col) {
  139. fprintf(file, col ? " %.9g" : "%.9g", *values++);
  140. }
  141. fprintf(file, "\n");
  142. }
  143. return true;
  144. }
  145. static bool writeBinBitmap(FILE *file, const float *values, int count) {
  146. for (int pos = 0; pos < count; ++pos) {
  147. unsigned char v = clamp(int((*values++)*0x100), 0xff);
  148. fwrite(&v, 1, 1, file);
  149. }
  150. return true;
  151. }
  152. #ifdef __BIG_ENDIAN__
  153. static bool writeBinBitmapFloatBE(FILE *file, const float *values, int count)
  154. #else
  155. static bool writeBinBitmapFloat(FILE *file, const float *values, int count)
  156. #endif
  157. {
  158. return (int) fwrite(values, sizeof(float), count, file) == count;
  159. }
  160. #ifdef __BIG_ENDIAN__
  161. static bool writeBinBitmapFloat(FILE *file, const float *values, int count)
  162. #else
  163. static bool writeBinBitmapFloatBE(FILE *file, const float *values, int count)
  164. #endif
  165. {
  166. for (int pos = 0; pos < count; ++pos) {
  167. const unsigned char *b = reinterpret_cast<const unsigned char *>(values++);
  168. for (int i = sizeof(float)-1; i >= 0; --i)
  169. fwrite(b+i, 1, 1, file);
  170. }
  171. return true;
  172. }
  173. static bool cmpExtension(const char *path, const char *ext) {
  174. for (const char *a = path+strlen(path)-1, *b = ext+strlen(ext)-1; b >= ext; --a, --b)
  175. if (a < path || toupper(*a) != toupper(*b))
  176. return false;
  177. return true;
  178. }
  179. template <int N>
  180. static const char * writeOutput(const BitmapConstRef<float, N> &bitmap, const char *filename, Format &format) {
  181. if (filename) {
  182. if (format == AUTO) {
  183. if (cmpExtension(filename, ".png")) format = PNG;
  184. else if (cmpExtension(filename, ".bmp")) format = BMP;
  185. else if (cmpExtension(filename, ".tif") || cmpExtension(filename, ".tiff")) format = TIFF;
  186. else if (cmpExtension(filename, ".txt")) format = TEXT;
  187. else if (cmpExtension(filename, ".bin")) format = BINARY;
  188. else
  189. return "Could not deduce format from output file name.";
  190. }
  191. switch (format) {
  192. case PNG: return savePng(bitmap, filename) ? NULL : "Failed to write output PNG image.";
  193. case BMP: return saveBmp(bitmap, filename) ? NULL : "Failed to write output BMP image.";
  194. case TIFF: return saveTiff(bitmap, filename) ? NULL : "Failed to write output TIFF image.";
  195. case TEXT: case TEXT_FLOAT: {
  196. FILE *file = fopen(filename, "w");
  197. if (!file) return "Failed to write output text file.";
  198. if (format == TEXT)
  199. writeTextBitmap(file, bitmap.pixels, N*bitmap.width, bitmap.height);
  200. else if (format == TEXT_FLOAT)
  201. writeTextBitmapFloat(file, bitmap.pixels, N*bitmap.width, bitmap.height);
  202. fclose(file);
  203. return NULL;
  204. }
  205. case BINARY: case BINARY_FLOAT: case BINARY_FLOAT_BE: {
  206. FILE *file = fopen(filename, "wb");
  207. if (!file) return "Failed to write output binary file.";
  208. if (format == BINARY)
  209. writeBinBitmap(file, bitmap.pixels, N*bitmap.width*bitmap.height);
  210. else if (format == BINARY_FLOAT)
  211. writeBinBitmapFloat(file, bitmap.pixels, N*bitmap.width*bitmap.height);
  212. else if (format == BINARY_FLOAT_BE)
  213. writeBinBitmapFloatBE(file, bitmap.pixels, N*bitmap.width*bitmap.height);
  214. fclose(file);
  215. return NULL;
  216. }
  217. default:;
  218. }
  219. } else {
  220. if (format == AUTO || format == TEXT)
  221. writeTextBitmap(stdout, bitmap.pixels, N*bitmap.width, bitmap.height);
  222. else if (format == TEXT_FLOAT)
  223. writeTextBitmapFloat(stdout, bitmap.pixels, N*bitmap.width, bitmap.height);
  224. else
  225. return "Unsupported format for standard output.";
  226. }
  227. return NULL;
  228. }
  229. #if defined(MSDFGEN_USE_SKIA) && defined(MSDFGEN_USE_OPENMP)
  230. #define TITLE_SUFFIX " with Skia & OpenMP"
  231. #define EXTRA_UNDERLINE "-------------------"
  232. #elif defined(MSDFGEN_USE_SKIA)
  233. #define TITLE_SUFFIX " with Skia"
  234. #define EXTRA_UNDERLINE "----------"
  235. #elif defined(MSDFGEN_USE_OPENMP)
  236. #define TITLE_SUFFIX " with OpenMP"
  237. #define EXTRA_UNDERLINE "------------"
  238. #else
  239. #define TITLE_SUFFIX
  240. #define EXTRA_UNDERLINE
  241. #endif
  242. static const char *helpText =
  243. "\n"
  244. "Multi-channel signed distance field generator by Viktor Chlumsky v" MSDFGEN_VERSION TITLE_SUFFIX "\n"
  245. "---------------------------------------------------------------------" EXTRA_UNDERLINE "\n"
  246. " Usage: msdfgen"
  247. #ifdef _WIN32
  248. ".exe"
  249. #endif
  250. " <mode> <input specification> <options>\n"
  251. "\n"
  252. "MODES\n"
  253. " sdf - Generate conventional monochrome (true) signed distance field.\n"
  254. " psdf - Generate monochrome signed pseudo-distance field.\n"
  255. " msdf - Generate multi-channel signed distance field. This is used by default if no mode is specified.\n"
  256. " mtsdf - Generate combined multi-channel and true signed distance field in the alpha channel.\n"
  257. " metrics - Report shape metrics only.\n"
  258. "\n"
  259. "INPUT SPECIFICATION\n"
  260. " -defineshape <definition>\n"
  261. "\tDefines input shape using the ad-hoc text definition.\n"
  262. " -font <filename.ttf> <character code>\n"
  263. "\tLoads a single glyph from the specified font file.\n"
  264. "\tFormat of character code is '?', 63, 0x3F (Unicode value), or g34 (glyph index).\n"
  265. " -shapedesc <filename.txt>\n"
  266. "\tLoads text shape description from a file.\n"
  267. " -stdin\n"
  268. "\tReads text shape description from the standard input.\n"
  269. " -svg <filename.svg>\n"
  270. "\tLoads the last vector path found in the specified SVG file.\n"
  271. "\n"
  272. // Keep alphabetical order!
  273. "OPTIONS\n"
  274. " -angle <angle>\n"
  275. "\tSpecifies the minimum angle between adjacent edges to be considered a corner. Append D for degrees.\n"
  276. " -ascale <x scale> <y scale>\n"
  277. "\tSets the scale used to convert shape units to pixels asymmetrically.\n"
  278. " -autoframe\n"
  279. "\tAutomatically scales (unless specified) and translates the shape to fit.\n"
  280. " -coloringstrategy <simple / inktrap / distance>\n"
  281. "\tSelects the strategy of the edge coloring heuristic.\n"
  282. " -distanceshift <shift>\n"
  283. "\tShifts all normalized distances in the output distance field by this value.\n"
  284. " -edgecolors <sequence>\n"
  285. "\tOverrides automatic edge coloring with the specified color sequence.\n"
  286. " -errorcorrection <mode>\n"
  287. "\tChanges the MSDF/MTSDF error correction mode. Use -errorcorrection help for a list of valid modes.\n"
  288. " -errordeviationratio <ratio>\n"
  289. "\tSets the minimum ratio between the actual and maximum expected distance delta to be considered an error.\n"
  290. " -errorimproveratio <ratio>\n"
  291. "\tSets the minimum ratio between the pre-correction distance error and the post-correction distance error.\n"
  292. " -estimateerror\n"
  293. "\tComputes and prints the distance field's estimated fill error to the standard output.\n"
  294. " -exportshape <filename.txt>\n"
  295. "\tSaves the shape description into a text file that can be edited and loaded using -shapedesc.\n"
  296. " -fillrule <nonzero / evenodd / positive / negative>\n"
  297. "\tSets the fill rule for the scanline pass. Default is nonzero.\n"
  298. " -format <png / bmp / tiff / text / textfloat / bin / binfloat / binfloatbe>\n"
  299. "\tSpecifies the output format of the distance field. Otherwise it is chosen based on output file extension.\n"
  300. " -guessorder\n"
  301. "\tAttempts to detect if shape contours have the wrong winding and generates the SDF with the right one.\n"
  302. " -help\n"
  303. "\tDisplays this help.\n"
  304. " -legacy\n"
  305. "\tUses the original (legacy) distance field algorithms.\n"
  306. #ifdef MSDFGEN_USE_SKIA
  307. " -nopreprocess\n"
  308. "\tDisables path preprocessing which resolves self-intersections and overlapping contours.\n"
  309. #else
  310. " -nooverlap\n"
  311. "\tDisables resolution of overlapping contours.\n"
  312. " -noscanline\n"
  313. "\tDisables the scanline pass, which corrects the distance field's signs according to the selected fill rule.\n"
  314. #endif
  315. " -o <filename>\n"
  316. "\tSets the output file name. The default value is \"output.png\".\n"
  317. #ifdef MSDFGEN_USE_SKIA
  318. " -overlap\n"
  319. "\tSwitches to distance field generator with support for overlapping contours.\n"
  320. #endif
  321. " -printmetrics\n"
  322. "\tPrints relevant metrics of the shape to the standard output.\n"
  323. " -pxrange <range>\n"
  324. "\tSets the width of the range between the lowest and highest signed distance in pixels.\n"
  325. " -range <range>\n"
  326. "\tSets the width of the range between the lowest and highest signed distance in shape units.\n"
  327. " -reverseorder\n"
  328. "\tGenerates the distance field as if the shape's vertices were in reverse order.\n"
  329. " -scale <scale>\n"
  330. "\tSets the scale used to convert shape units to pixels.\n"
  331. #ifdef MSDFGEN_USE_SKIA
  332. " -scanline\n"
  333. "\tPerforms an additional scanline pass to fix the signs of the distances.\n"
  334. #endif
  335. " -seed <n>\n"
  336. "\tSets the random seed for edge coloring heuristic.\n"
  337. " -size <width> <height>\n"
  338. "\tSets the dimensions of the output image.\n"
  339. " -stdout\n"
  340. "\tPrints the output instead of storing it in a file. Only text formats are supported.\n"
  341. " -testrender <filename.png> <width> <height>\n"
  342. "\tRenders an image preview using the generated distance field and saves it as a PNG file.\n"
  343. " -testrendermulti <filename.png> <width> <height>\n"
  344. "\tRenders an image preview without flattening the color channels.\n"
  345. " -translate <x> <y>\n"
  346. "\tSets the translation of the shape in shape units.\n"
  347. " -windingpreprocess\n"
  348. "\tAttempts to fix only the contour windings assuming no self-intersections and even-odd fill rule.\n"
  349. " -yflip\n"
  350. "\tInverts the Y axis in the output distance field. The default order is bottom to top.\n"
  351. "\n";
  352. static const char *errorCorrectionHelpText =
  353. "\n"
  354. "ERROR CORRECTION MODES\n"
  355. " auto-fast\n"
  356. "\tDetects inversion artifacts and distance errors that do not affect edges by range testing.\n"
  357. " auto-full\n"
  358. "\tDetects inversion artifacts and distance errors that do not affect edges by exact distance evaluation.\n"
  359. " auto-mixed (default)\n"
  360. "\tDetects inversions by distance evaluation and distance errors that do not affect edges by range testing.\n"
  361. " disabled\n"
  362. "\tDisables error correction.\n"
  363. " distance-fast\n"
  364. "\tDetects distance errors by range testing. Does not care if edges and corners are affected.\n"
  365. " distance-full\n"
  366. "\tDetects distance errors by exact distance evaluation. Does not care if edges and corners are affected, slow.\n"
  367. " edge-fast\n"
  368. "\tDetects inversion artifacts only by range testing.\n"
  369. " edge-full\n"
  370. "\tDetects inversion artifacts only by exact distance evaluation.\n"
  371. " help\n"
  372. "\tDisplays this help.\n"
  373. "\n";
  374. int main(int argc, const char * const *argv) {
  375. #define ABORT(msg) { puts(msg); return 1; }
  376. // Parse command line arguments
  377. enum {
  378. NONE,
  379. SVG,
  380. FONT,
  381. DESCRIPTION_ARG,
  382. DESCRIPTION_STDIN,
  383. DESCRIPTION_FILE
  384. } inputType = NONE;
  385. enum {
  386. SINGLE,
  387. PSEUDO,
  388. MULTI,
  389. MULTI_AND_TRUE,
  390. METRICS
  391. } mode = MULTI;
  392. enum {
  393. NO_PREPROCESS,
  394. WINDING_PREPROCESS,
  395. FULL_PREPROCESS
  396. } geometryPreproc = (
  397. #ifdef MSDFGEN_USE_SKIA
  398. FULL_PREPROCESS
  399. #else
  400. NO_PREPROCESS
  401. #endif
  402. );
  403. bool legacyMode = false;
  404. MSDFGeneratorConfig generatorConfig;
  405. generatorConfig.overlapSupport = geometryPreproc == NO_PREPROCESS;
  406. bool scanlinePass = geometryPreproc == NO_PREPROCESS;
  407. FillRule fillRule = FILL_NONZERO;
  408. Format format = AUTO;
  409. const char *input = NULL;
  410. const char *output = "output.png";
  411. const char *shapeExport = NULL;
  412. const char *testRender = NULL;
  413. const char *testRenderMulti = NULL;
  414. bool outputSpecified = false;
  415. GlyphIndex glyphIndex;
  416. unicode_t unicode = 0;
  417. int svgPathIndex = 0;
  418. int width = 64, height = 64;
  419. int testWidth = 0, testHeight = 0;
  420. int testWidthM = 0, testHeightM = 0;
  421. bool autoFrame = false;
  422. enum {
  423. RANGE_UNIT,
  424. RANGE_PX
  425. } rangeMode = RANGE_PX;
  426. double range = 1;
  427. double pxRange = 2;
  428. Vector2 translate;
  429. Vector2 scale = 1;
  430. bool scaleSpecified = false;
  431. double angleThreshold = DEFAULT_ANGLE_THRESHOLD;
  432. float outputDistanceShift = 0.f;
  433. const char *edgeAssignment = NULL;
  434. bool yFlip = false;
  435. bool printMetrics = false;
  436. bool estimateError = false;
  437. bool skipColoring = false;
  438. enum {
  439. KEEP,
  440. REVERSE,
  441. GUESS
  442. } orientation = KEEP;
  443. unsigned long long coloringSeed = 0;
  444. void (*edgeColoring)(Shape &, double, unsigned long long) = edgeColoringSimple;
  445. bool explicitErrorCorrectionMode = false;
  446. int argPos = 1;
  447. bool suggestHelp = false;
  448. while (argPos < argc) {
  449. const char *arg = argv[argPos];
  450. #define ARG_CASE(s, p) if (!strcmp(arg, s) && argPos+(p) < argc)
  451. #define ARG_MODE(s, m) if (!strcmp(arg, s)) { mode = m; ++argPos; continue; }
  452. #define SET_FORMAT(fmt, ext) do { format = fmt; if (!outputSpecified) output = "output." ext; } while (false)
  453. ARG_MODE("sdf", SINGLE)
  454. ARG_MODE("psdf", PSEUDO)
  455. ARG_MODE("msdf", MULTI)
  456. ARG_MODE("mtsdf", MULTI_AND_TRUE)
  457. ARG_MODE("metrics", METRICS)
  458. ARG_CASE("-svg", 1) {
  459. inputType = SVG;
  460. input = argv[argPos+1];
  461. argPos += 2;
  462. continue;
  463. }
  464. ARG_CASE("-font", 2) {
  465. inputType = FONT;
  466. input = argv[argPos+1];
  467. const char *charArg = argv[argPos+2];
  468. unsigned gi;
  469. switch (charArg[0]) {
  470. case 'G': case 'g':
  471. if (parseUnsignedDecOrHex(gi, charArg+1))
  472. glyphIndex = GlyphIndex(gi);
  473. break;
  474. case 'U': case 'u':
  475. ++charArg;
  476. default:
  477. parseUnicode(unicode, charArg);
  478. }
  479. argPos += 3;
  480. continue;
  481. }
  482. ARG_CASE("-defineshape", 1) {
  483. inputType = DESCRIPTION_ARG;
  484. input = argv[argPos+1];
  485. argPos += 2;
  486. continue;
  487. }
  488. ARG_CASE("-stdin", 0) {
  489. inputType = DESCRIPTION_STDIN;
  490. input = "stdin";
  491. argPos += 1;
  492. continue;
  493. }
  494. ARG_CASE("-shapedesc", 1) {
  495. inputType = DESCRIPTION_FILE;
  496. input = argv[argPos+1];
  497. argPos += 2;
  498. continue;
  499. }
  500. ARG_CASE("-o", 1) {
  501. output = argv[argPos+1];
  502. outputSpecified = true;
  503. argPos += 2;
  504. continue;
  505. }
  506. ARG_CASE("-stdout", 0) {
  507. output = NULL;
  508. argPos += 1;
  509. continue;
  510. }
  511. ARG_CASE("-legacy", 0) {
  512. legacyMode = true;
  513. argPos += 1;
  514. continue;
  515. }
  516. ARG_CASE("-nopreprocess", 0) {
  517. geometryPreproc = NO_PREPROCESS;
  518. argPos += 1;
  519. continue;
  520. }
  521. ARG_CASE("-windingpreprocess", 0) {
  522. geometryPreproc = WINDING_PREPROCESS;
  523. argPos += 1;
  524. continue;
  525. }
  526. ARG_CASE("-preprocess", 0) {
  527. geometryPreproc = FULL_PREPROCESS;
  528. argPos += 1;
  529. continue;
  530. }
  531. ARG_CASE("-nooverlap", 0) {
  532. generatorConfig.overlapSupport = false;
  533. argPos += 1;
  534. continue;
  535. }
  536. ARG_CASE("-overlap", 0) {
  537. generatorConfig.overlapSupport = true;
  538. argPos += 1;
  539. continue;
  540. }
  541. ARG_CASE("-noscanline", 0) {
  542. scanlinePass = false;
  543. argPos += 1;
  544. continue;
  545. }
  546. ARG_CASE("-scanline", 0) {
  547. scanlinePass = true;
  548. argPos += 1;
  549. continue;
  550. }
  551. ARG_CASE("-fillrule", 1) {
  552. scanlinePass = true;
  553. if (!strcmp(argv[argPos+1], "nonzero")) fillRule = FILL_NONZERO;
  554. else if (!strcmp(argv[argPos+1], "evenodd") || !strcmp(argv[argPos+1], "odd")) fillRule = FILL_ODD;
  555. else if (!strcmp(argv[argPos+1], "positive")) fillRule = FILL_POSITIVE;
  556. else if (!strcmp(argv[argPos+1], "negative")) fillRule = FILL_NEGATIVE;
  557. else
  558. puts("Unknown fill rule specified.");
  559. argPos += 2;
  560. continue;
  561. }
  562. ARG_CASE("-format", 1) {
  563. if (!strcmp(argv[argPos+1], "auto")) format = AUTO;
  564. else if (!strcmp(argv[argPos+1], "png")) SET_FORMAT(PNG, "png");
  565. else if (!strcmp(argv[argPos+1], "bmp")) SET_FORMAT(BMP, "bmp");
  566. else if (!strcmp(argv[argPos+1], "tiff")) SET_FORMAT(TIFF, "tif");
  567. else if (!strcmp(argv[argPos+1], "text") || !strcmp(argv[argPos+1], "txt")) SET_FORMAT(TEXT, "txt");
  568. else if (!strcmp(argv[argPos+1], "textfloat") || !strcmp(argv[argPos+1], "txtfloat")) SET_FORMAT(TEXT_FLOAT, "txt");
  569. else if (!strcmp(argv[argPos+1], "bin") || !strcmp(argv[argPos+1], "binary")) SET_FORMAT(BINARY, "bin");
  570. else if (!strcmp(argv[argPos+1], "binfloat") || !strcmp(argv[argPos+1], "binfloatle")) SET_FORMAT(BINARY_FLOAT, "bin");
  571. else if (!strcmp(argv[argPos+1], "binfloatbe")) SET_FORMAT(BINARY_FLOAT_BE, "bin");
  572. else
  573. puts("Unknown format specified.");
  574. argPos += 2;
  575. continue;
  576. }
  577. ARG_CASE("-size", 2) {
  578. unsigned w, h;
  579. if (!(parseUnsigned(w, argv[argPos+1]) && parseUnsigned(h, argv[argPos+2]) && w && h))
  580. ABORT("Invalid size arguments. Use -size <width> <height> with two positive integers.");
  581. width = w, height = h;
  582. argPos += 3;
  583. continue;
  584. }
  585. ARG_CASE("-autoframe", 0) {
  586. autoFrame = true;
  587. argPos += 1;
  588. continue;
  589. }
  590. ARG_CASE("-range", 1) {
  591. double r;
  592. if (!(parseDouble(r, argv[argPos+1]) && r > 0))
  593. ABORT("Invalid range argument. Use -range <range> with a positive real number.");
  594. rangeMode = RANGE_UNIT;
  595. range = r;
  596. argPos += 2;
  597. continue;
  598. }
  599. ARG_CASE("-pxrange", 1) {
  600. double r;
  601. if (!(parseDouble(r, argv[argPos+1]) && r > 0))
  602. ABORT("Invalid range argument. Use -pxrange <range> with a positive real number.");
  603. rangeMode = RANGE_PX;
  604. pxRange = r;
  605. argPos += 2;
  606. continue;
  607. }
  608. ARG_CASE("-scale", 1) {
  609. double s;
  610. if (!(parseDouble(s, argv[argPos+1]) && s > 0))
  611. ABORT("Invalid scale argument. Use -scale <scale> with a positive real number.");
  612. scale = s;
  613. scaleSpecified = true;
  614. argPos += 2;
  615. continue;
  616. }
  617. ARG_CASE("-ascale", 2) {
  618. double sx, sy;
  619. if (!(parseDouble(sx, argv[argPos+1]) && parseDouble(sy, argv[argPos+2]) && sx > 0 && sy > 0))
  620. ABORT("Invalid scale arguments. Use -ascale <x> <y> with two positive real numbers.");
  621. scale.set(sx, sy);
  622. scaleSpecified = true;
  623. argPos += 3;
  624. continue;
  625. }
  626. ARG_CASE("-translate", 2) {
  627. double tx, ty;
  628. if (!(parseDouble(tx, argv[argPos+1]) && parseDouble(ty, argv[argPos+2])))
  629. ABORT("Invalid translate arguments. Use -translate <x> <y> with two real numbers.");
  630. translate.set(tx, ty);
  631. argPos += 3;
  632. continue;
  633. }
  634. ARG_CASE("-angle", 1) {
  635. double at;
  636. if (!parseAngle(at, argv[argPos+1]))
  637. ABORT("Invalid angle threshold. Use -angle <min angle> with a positive real number less than PI or a value in degrees followed by 'd' below 180d.");
  638. angleThreshold = at;
  639. argPos += 2;
  640. continue;
  641. }
  642. ARG_CASE("-errorcorrection", 1) {
  643. if (!strcmp(argv[argPos+1], "disabled") || !strcmp(argv[argPos+1], "0") || !strcmp(argv[argPos+1], "none")) {
  644. generatorConfig.errorCorrection.mode = ErrorCorrectionConfig::DISABLED;
  645. generatorConfig.errorCorrection.distanceCheckMode = ErrorCorrectionConfig::DO_NOT_CHECK_DISTANCE;
  646. } else if (!strcmp(argv[argPos+1], "default") || !strcmp(argv[argPos+1], "auto") || !strcmp(argv[argPos+1], "auto-mixed") || !strcmp(argv[argPos+1], "mixed")) {
  647. generatorConfig.errorCorrection.mode = ErrorCorrectionConfig::EDGE_PRIORITY;
  648. generatorConfig.errorCorrection.distanceCheckMode = ErrorCorrectionConfig::CHECK_DISTANCE_AT_EDGE;
  649. } else if (!strcmp(argv[argPos+1], "auto-fast") || !strcmp(argv[argPos+1], "fast")) {
  650. generatorConfig.errorCorrection.mode = ErrorCorrectionConfig::EDGE_PRIORITY;
  651. generatorConfig.errorCorrection.distanceCheckMode = ErrorCorrectionConfig::DO_NOT_CHECK_DISTANCE;
  652. } else if (!strcmp(argv[argPos+1], "auto-full") || !strcmp(argv[argPos+1], "full")) {
  653. generatorConfig.errorCorrection.mode = ErrorCorrectionConfig::EDGE_PRIORITY;
  654. generatorConfig.errorCorrection.distanceCheckMode = ErrorCorrectionConfig::ALWAYS_CHECK_DISTANCE;
  655. } else if (!strcmp(argv[argPos+1], "distance") || !strcmp(argv[argPos+1], "distance-fast") || !strcmp(argv[argPos+1], "indiscriminate") || !strcmp(argv[argPos+1], "indiscriminate-fast")) {
  656. generatorConfig.errorCorrection.mode = ErrorCorrectionConfig::INDISCRIMINATE;
  657. generatorConfig.errorCorrection.distanceCheckMode = ErrorCorrectionConfig::DO_NOT_CHECK_DISTANCE;
  658. } else if (!strcmp(argv[argPos+1], "distance-full") || !strcmp(argv[argPos+1], "indiscriminate-full")) {
  659. generatorConfig.errorCorrection.mode = ErrorCorrectionConfig::INDISCRIMINATE;
  660. generatorConfig.errorCorrection.distanceCheckMode = ErrorCorrectionConfig::ALWAYS_CHECK_DISTANCE;
  661. } else if (!strcmp(argv[argPos+1], "edge-fast")) {
  662. generatorConfig.errorCorrection.mode = ErrorCorrectionConfig::EDGE_ONLY;
  663. generatorConfig.errorCorrection.distanceCheckMode = ErrorCorrectionConfig::DO_NOT_CHECK_DISTANCE;
  664. } else if (!strcmp(argv[argPos+1], "edge") || !strcmp(argv[argPos+1], "edge-full")) {
  665. generatorConfig.errorCorrection.mode = ErrorCorrectionConfig::EDGE_ONLY;
  666. generatorConfig.errorCorrection.distanceCheckMode = ErrorCorrectionConfig::ALWAYS_CHECK_DISTANCE;
  667. } else if (!strcmp(argv[argPos+1], "help")) {
  668. puts(errorCorrectionHelpText);
  669. return 0;
  670. } else
  671. puts("Unknown error correction mode. Use -errorcorrection help for more information.");
  672. explicitErrorCorrectionMode = true;
  673. argPos += 2;
  674. continue;
  675. }
  676. ARG_CASE("-errordeviationratio", 1) {
  677. double edr;
  678. if (!(parseDouble(edr, argv[argPos+1]) && edr > 0))
  679. ABORT("Invalid error deviation ratio. Use -errordeviationratio <ratio> with a positive real number.");
  680. generatorConfig.errorCorrection.minDeviationRatio = edr;
  681. argPos += 2;
  682. continue;
  683. }
  684. ARG_CASE("-errorimproveratio", 1) {
  685. double eir;
  686. if (!(parseDouble(eir, argv[argPos+1]) && eir > 0))
  687. ABORT("Invalid error improvement ratio. Use -errorimproveratio <ratio> with a positive real number.");
  688. generatorConfig.errorCorrection.minImproveRatio = eir;
  689. argPos += 2;
  690. continue;
  691. }
  692. ARG_CASE("-coloringstrategy", 1) {
  693. if (!strcmp(argv[argPos+1], "simple")) edgeColoring = edgeColoringSimple;
  694. else if (!strcmp(argv[argPos+1], "inktrap")) edgeColoring = edgeColoringInkTrap;
  695. else if (!strcmp(argv[argPos+1], "distance")) edgeColoring = edgeColoringByDistance;
  696. else
  697. puts("Unknown coloring strategy specified.");
  698. argPos += 2;
  699. continue;
  700. }
  701. ARG_CASE("-edgecolors", 1) {
  702. static const char *allowed = " ?,cmwyCMWY";
  703. for (int i = 0; argv[argPos+1][i]; ++i) {
  704. for (int j = 0; allowed[j]; ++j)
  705. if (argv[argPos+1][i] == allowed[j])
  706. goto EDGE_COLOR_VERIFIED;
  707. ABORT("Invalid edge coloring sequence. Use -edgecolors <color sequence> with only the colors C, M, Y, and W. Separate contours by commas and use ? to keep the default assigment for a contour.");
  708. EDGE_COLOR_VERIFIED:;
  709. }
  710. edgeAssignment = argv[argPos+1];
  711. argPos += 2;
  712. continue;
  713. }
  714. ARG_CASE("-distanceshift", 1) {
  715. double ds;
  716. if (!parseDouble(ds, argv[argPos+1]))
  717. ABORT("Invalid distance shift. Use -distanceshift <shift> with a real value.");
  718. outputDistanceShift = (float) ds;
  719. argPos += 2;
  720. continue;
  721. }
  722. ARG_CASE("-exportshape", 1) {
  723. shapeExport = argv[argPos+1];
  724. argPos += 2;
  725. continue;
  726. }
  727. ARG_CASE("-testrender", 3) {
  728. unsigned w, h;
  729. if (!parseUnsigned(w, argv[argPos+2]) || !parseUnsigned(h, argv[argPos+3]) || !w || !h)
  730. ABORT("Invalid arguments for test render. Use -testrender <output.png> <width> <height>.");
  731. testRender = argv[argPos+1];
  732. testWidth = w, testHeight = h;
  733. argPos += 4;
  734. continue;
  735. }
  736. ARG_CASE("-testrendermulti", 3) {
  737. unsigned w, h;
  738. if (!parseUnsigned(w, argv[argPos+2]) || !parseUnsigned(h, argv[argPos+3]) || !w || !h)
  739. ABORT("Invalid arguments for test render. Use -testrendermulti <output.png> <width> <height>.");
  740. testRenderMulti = argv[argPos+1];
  741. testWidthM = w, testHeightM = h;
  742. argPos += 4;
  743. continue;
  744. }
  745. ARG_CASE("-yflip", 0) {
  746. yFlip = true;
  747. argPos += 1;
  748. continue;
  749. }
  750. ARG_CASE("-printmetrics", 0) {
  751. printMetrics = true;
  752. argPos += 1;
  753. continue;
  754. }
  755. ARG_CASE("-estimateerror", 0) {
  756. estimateError = true;
  757. argPos += 1;
  758. continue;
  759. }
  760. ARG_CASE("-keeporder", 0) {
  761. orientation = KEEP;
  762. argPos += 1;
  763. continue;
  764. }
  765. ARG_CASE("-reverseorder", 0) {
  766. orientation = REVERSE;
  767. argPos += 1;
  768. continue;
  769. }
  770. ARG_CASE("-guessorder", 0) {
  771. orientation = GUESS;
  772. argPos += 1;
  773. continue;
  774. }
  775. ARG_CASE("-seed", 1) {
  776. if (!parseUnsignedLL(coloringSeed, argv[argPos+1]))
  777. ABORT("Invalid seed. Use -seed <N> with N being a non-negative integer.");
  778. argPos += 2;
  779. continue;
  780. }
  781. ARG_CASE("-help", 0) {
  782. puts(helpText);
  783. return 0;
  784. }
  785. printf("Unknown setting or insufficient parameters: %s\n", arg);
  786. suggestHelp = true;
  787. ++argPos;
  788. }
  789. if (suggestHelp)
  790. printf("Use -help for more information.\n");
  791. // Load input
  792. Vector2 svgDims;
  793. double glyphAdvance = 0;
  794. if (!inputType || !input)
  795. ABORT("No input specified! Use either -svg <file.svg> or -font <file.ttf/otf> <character code>, or see -help.");
  796. if (mode == MULTI_AND_TRUE && (format == BMP || (format == AUTO && output && cmpExtension(output, ".bmp"))))
  797. ABORT("Incompatible image format. A BMP file cannot contain alpha channel, which is required in mtsdf mode.");
  798. Shape shape;
  799. switch (inputType) {
  800. case SVG: {
  801. if (!loadSvgShape(shape, input, svgPathIndex, &svgDims))
  802. ABORT("Failed to load shape from SVG file.");
  803. break;
  804. }
  805. case FONT: {
  806. if (!glyphIndex && !unicode)
  807. ABORT("No character specified! Use -font <file.ttf/otf> <character code>. Character code can be a Unicode index (65, 0x41), a character in apostrophes ('A'), or a glyph index prefixed by g (g36, g0x24).");
  808. FreetypeHandle *ft = initializeFreetype();
  809. if (!ft) return -1;
  810. FontHandle *font = loadFont(ft, input);
  811. if (!font) {
  812. deinitializeFreetype(ft);
  813. ABORT("Failed to load font file.");
  814. }
  815. if (unicode)
  816. getGlyphIndex(glyphIndex, font, unicode);
  817. if (!loadGlyph(shape, font, glyphIndex, &glyphAdvance)) {
  818. destroyFont(font);
  819. deinitializeFreetype(ft);
  820. ABORT("Failed to load glyph from font file.");
  821. }
  822. destroyFont(font);
  823. deinitializeFreetype(ft);
  824. break;
  825. }
  826. case DESCRIPTION_ARG: {
  827. if (!readShapeDescription(input, shape, &skipColoring))
  828. ABORT("Parse error in shape description.");
  829. break;
  830. }
  831. case DESCRIPTION_STDIN: {
  832. if (!readShapeDescription(stdin, shape, &skipColoring))
  833. ABORT("Parse error in shape description.");
  834. break;
  835. }
  836. case DESCRIPTION_FILE: {
  837. FILE *file = fopen(input, "r");
  838. if (!file)
  839. ABORT("Failed to load shape description file.");
  840. if (!readShapeDescription(file, shape, &skipColoring))
  841. ABORT("Parse error in shape description.");
  842. fclose(file);
  843. break;
  844. }
  845. default:;
  846. }
  847. // Validate and normalize shape
  848. if (!shape.validate())
  849. ABORT("The geometry of the loaded shape is invalid.");
  850. switch (geometryPreproc) {
  851. case NO_PREPROCESS:
  852. break;
  853. case WINDING_PREPROCESS:
  854. shape.orientContours();
  855. break;
  856. case FULL_PREPROCESS:
  857. #ifdef MSDFGEN_USE_SKIA
  858. if (!resolveShapeGeometry(shape))
  859. puts("Shape geometry preprocessing failed, skipping.");
  860. else if (skipColoring) {
  861. skipColoring = false;
  862. puts("Note: Input shape coloring won't be preserved due to geometry preprocessing");
  863. }
  864. #else
  865. ABORT("Shape geometry preprocessing (-preprocess) is not available in this version because the Skia library is not present.");
  866. #endif
  867. break;
  868. }
  869. shape.normalize();
  870. if (yFlip)
  871. shape.inverseYAxis = !shape.inverseYAxis;
  872. double avgScale = .5*(scale.x+scale.y);
  873. Shape::Bounds bounds = { };
  874. if (autoFrame || mode == METRICS || printMetrics || orientation == GUESS)
  875. bounds = shape.getBounds();
  876. // Auto-frame
  877. if (autoFrame) {
  878. double l = bounds.l, b = bounds.b, r = bounds.r, t = bounds.t;
  879. Vector2 frame(width, height);
  880. double m = .5+(double) outputDistanceShift;
  881. if (!scaleSpecified) {
  882. if (rangeMode == RANGE_UNIT)
  883. l -= m*range, b -= m*range, r += m*range, t += m*range;
  884. else
  885. frame -= 2*m*pxRange;
  886. }
  887. if (l >= r || b >= t)
  888. l = 0, b = 0, r = 1, t = 1;
  889. if (frame.x <= 0 || frame.y <= 0)
  890. ABORT("Cannot fit the specified pixel range.");
  891. Vector2 dims(r-l, t-b);
  892. if (scaleSpecified)
  893. translate = .5*(frame/scale-dims)-Vector2(l, b);
  894. else {
  895. if (dims.x*frame.y < dims.y*frame.x) {
  896. translate.set(.5*(frame.x/frame.y*dims.y-dims.x)-l, -b);
  897. scale = avgScale = frame.y/dims.y;
  898. } else {
  899. translate.set(-l, .5*(frame.y/frame.x*dims.x-dims.y)-b);
  900. scale = avgScale = frame.x/dims.x;
  901. }
  902. }
  903. if (rangeMode == RANGE_PX && !scaleSpecified)
  904. translate += m*pxRange/scale;
  905. }
  906. if (rangeMode == RANGE_PX)
  907. range = pxRange/min(scale.x, scale.y);
  908. // Print metrics
  909. if (mode == METRICS || printMetrics) {
  910. FILE *out = stdout;
  911. if (mode == METRICS && outputSpecified)
  912. out = fopen(output, "w");
  913. if (!out)
  914. ABORT("Failed to write output file.");
  915. if (shape.inverseYAxis)
  916. fprintf(out, "inverseY = true\n");
  917. if (bounds.r >= bounds.l && bounds.t >= bounds.b)
  918. fprintf(out, "bounds = %.12g, %.12g, %.12g, %.12g\n", bounds.l, bounds.b, bounds.r, bounds.t);
  919. if (svgDims.x != 0 && svgDims.y != 0)
  920. fprintf(out, "dimensions = %.12g, %.12g\n", svgDims.x, svgDims.y);
  921. if (glyphAdvance != 0)
  922. fprintf(out, "advance = %.12g\n", glyphAdvance);
  923. if (autoFrame) {
  924. if (!scaleSpecified)
  925. fprintf(out, "scale = %.12g\n", avgScale);
  926. fprintf(out, "translate = %.12g, %.12g\n", translate.x, translate.y);
  927. }
  928. if (rangeMode == RANGE_PX)
  929. fprintf(out, "range = %.12g\n", range);
  930. if (mode == METRICS && outputSpecified)
  931. fclose(out);
  932. }
  933. // Compute output
  934. Projection projection(scale, translate);
  935. Bitmap<float, 1> sdf;
  936. Bitmap<float, 3> msdf;
  937. Bitmap<float, 4> mtsdf;
  938. MSDFGeneratorConfig postErrorCorrectionConfig(generatorConfig);
  939. if (scanlinePass) {
  940. if (explicitErrorCorrectionMode && generatorConfig.errorCorrection.distanceCheckMode != ErrorCorrectionConfig::DO_NOT_CHECK_DISTANCE) {
  941. const char *fallbackModeName = "unknown";
  942. switch (generatorConfig.errorCorrection.mode) {
  943. case ErrorCorrectionConfig::DISABLED: fallbackModeName = "disabled"; break;
  944. case ErrorCorrectionConfig::INDISCRIMINATE: fallbackModeName = "distance-fast"; break;
  945. case ErrorCorrectionConfig::EDGE_PRIORITY: fallbackModeName = "auto-fast"; break;
  946. case ErrorCorrectionConfig::EDGE_ONLY: fallbackModeName = "edge-fast"; break;
  947. }
  948. printf("Selected error correction mode not compatible with scanline pass, falling back to %s.\n", fallbackModeName);
  949. }
  950. generatorConfig.errorCorrection.mode = ErrorCorrectionConfig::DISABLED;
  951. postErrorCorrectionConfig.errorCorrection.distanceCheckMode = ErrorCorrectionConfig::DO_NOT_CHECK_DISTANCE;
  952. }
  953. switch (mode) {
  954. case SINGLE: {
  955. sdf = Bitmap<float, 1>(width, height);
  956. if (legacyMode)
  957. generateSDF_legacy(sdf, shape, range, scale, translate);
  958. else
  959. generateSDF(sdf, shape, projection, range, generatorConfig);
  960. break;
  961. }
  962. case PSEUDO: {
  963. sdf = Bitmap<float, 1>(width, height);
  964. if (legacyMode)
  965. generatePseudoSDF_legacy(sdf, shape, range, scale, translate);
  966. else
  967. generatePseudoSDF(sdf, shape, projection, range, generatorConfig);
  968. break;
  969. }
  970. case MULTI: {
  971. if (!skipColoring)
  972. edgeColoring(shape, angleThreshold, coloringSeed);
  973. if (edgeAssignment)
  974. parseColoring(shape, edgeAssignment);
  975. msdf = Bitmap<float, 3>(width, height);
  976. if (legacyMode)
  977. generateMSDF_legacy(msdf, shape, range, scale, translate, generatorConfig.errorCorrection);
  978. else
  979. generateMSDF(msdf, shape, projection, range, generatorConfig);
  980. break;
  981. }
  982. case MULTI_AND_TRUE: {
  983. if (!skipColoring)
  984. edgeColoring(shape, angleThreshold, coloringSeed);
  985. if (edgeAssignment)
  986. parseColoring(shape, edgeAssignment);
  987. mtsdf = Bitmap<float, 4>(width, height);
  988. if (legacyMode)
  989. generateMTSDF_legacy(mtsdf, shape, range, scale, translate, generatorConfig.errorCorrection);
  990. else
  991. generateMTSDF(mtsdf, shape, projection, range, generatorConfig);
  992. break;
  993. }
  994. default:;
  995. }
  996. if (orientation == GUESS) {
  997. // Get sign of signed distance outside bounds
  998. Point2 p(bounds.l-(bounds.r-bounds.l)-1, bounds.b-(bounds.t-bounds.b)-1);
  999. double distance = SimpleTrueShapeDistanceFinder::oneShotDistance(shape, p);
  1000. orientation = distance <= 0 ? KEEP : REVERSE;
  1001. }
  1002. if (orientation == REVERSE) {
  1003. switch (mode) {
  1004. case SINGLE:
  1005. case PSEUDO:
  1006. invertColor<1>(sdf);
  1007. break;
  1008. case MULTI:
  1009. invertColor<3>(msdf);
  1010. break;
  1011. case MULTI_AND_TRUE:
  1012. invertColor<4>(mtsdf);
  1013. break;
  1014. default:;
  1015. }
  1016. }
  1017. if (scanlinePass) {
  1018. switch (mode) {
  1019. case SINGLE:
  1020. case PSEUDO:
  1021. distanceSignCorrection(sdf, shape, projection, fillRule);
  1022. break;
  1023. case MULTI:
  1024. distanceSignCorrection(msdf, shape, projection, fillRule);
  1025. msdfErrorCorrection(msdf, shape, projection, range, postErrorCorrectionConfig);
  1026. break;
  1027. case MULTI_AND_TRUE:
  1028. distanceSignCorrection(mtsdf, shape, projection, fillRule);
  1029. msdfErrorCorrection(msdf, shape, projection, range, postErrorCorrectionConfig);
  1030. break;
  1031. default:;
  1032. }
  1033. }
  1034. if (outputDistanceShift) {
  1035. float *pixel = NULL, *pixelsEnd = NULL;
  1036. switch (mode) {
  1037. case SINGLE:
  1038. case PSEUDO:
  1039. pixel = (float *) sdf;
  1040. pixelsEnd = pixel+1*sdf.width()*sdf.height();
  1041. break;
  1042. case MULTI:
  1043. pixel = (float *) msdf;
  1044. pixelsEnd = pixel+3*msdf.width()*msdf.height();
  1045. break;
  1046. case MULTI_AND_TRUE:
  1047. pixel = (float *) mtsdf;
  1048. pixelsEnd = pixel+4*mtsdf.width()*mtsdf.height();
  1049. break;
  1050. default:;
  1051. }
  1052. while (pixel < pixelsEnd)
  1053. *pixel++ += outputDistanceShift;
  1054. }
  1055. // Save output
  1056. if (shapeExport) {
  1057. FILE *file = fopen(shapeExport, "w");
  1058. if (file) {
  1059. writeShapeDescription(file, shape);
  1060. fclose(file);
  1061. } else
  1062. puts("Failed to write shape export file.");
  1063. }
  1064. const char *error = NULL;
  1065. switch (mode) {
  1066. case SINGLE:
  1067. case PSEUDO:
  1068. error = writeOutput<1>(sdf, output, format);
  1069. if (error)
  1070. ABORT(error);
  1071. if (is8bitFormat(format) && (testRenderMulti || testRender || estimateError))
  1072. simulate8bit(sdf);
  1073. if (estimateError) {
  1074. double sdfError = estimateSDFError(sdf, shape, projection, SDF_ERROR_ESTIMATE_PRECISION, fillRule);
  1075. printf("SDF error ~ %e\n", sdfError);
  1076. }
  1077. if (testRenderMulti) {
  1078. Bitmap<float, 3> render(testWidthM, testHeightM);
  1079. renderSDF(render, sdf, avgScale*range, .5f+outputDistanceShift);
  1080. if (!savePng(render, testRenderMulti))
  1081. puts("Failed to write test render file.");
  1082. }
  1083. if (testRender) {
  1084. Bitmap<float, 1> render(testWidth, testHeight);
  1085. renderSDF(render, sdf, avgScale*range, .5f+outputDistanceShift);
  1086. if (!savePng(render, testRender))
  1087. puts("Failed to write test render file.");
  1088. }
  1089. break;
  1090. case MULTI:
  1091. error = writeOutput<3>(msdf, output, format);
  1092. if (error)
  1093. ABORT(error);
  1094. if (is8bitFormat(format) && (testRenderMulti || testRender || estimateError))
  1095. simulate8bit(msdf);
  1096. if (estimateError) {
  1097. double sdfError = estimateSDFError(msdf, shape, projection, SDF_ERROR_ESTIMATE_PRECISION, fillRule);
  1098. printf("SDF error ~ %e\n", sdfError);
  1099. }
  1100. if (testRenderMulti) {
  1101. Bitmap<float, 3> render(testWidthM, testHeightM);
  1102. renderSDF(render, msdf, avgScale*range, .5f+outputDistanceShift);
  1103. if (!savePng(render, testRenderMulti))
  1104. puts("Failed to write test render file.");
  1105. }
  1106. if (testRender) {
  1107. Bitmap<float, 1> render(testWidth, testHeight);
  1108. renderSDF(render, msdf, avgScale*range, .5f+outputDistanceShift);
  1109. if (!savePng(render, testRender))
  1110. ABORT("Failed to write test render file.");
  1111. }
  1112. break;
  1113. case MULTI_AND_TRUE:
  1114. error = writeOutput<4>(mtsdf, output, format);
  1115. if (error)
  1116. ABORT(error);
  1117. if (is8bitFormat(format) && (testRenderMulti || testRender || estimateError))
  1118. simulate8bit(mtsdf);
  1119. if (estimateError) {
  1120. double sdfError = estimateSDFError(mtsdf, shape, projection, SDF_ERROR_ESTIMATE_PRECISION, fillRule);
  1121. printf("SDF error ~ %e\n", sdfError);
  1122. }
  1123. if (testRenderMulti) {
  1124. Bitmap<float, 4> render(testWidthM, testHeightM);
  1125. renderSDF(render, mtsdf, avgScale*range, .5f+outputDistanceShift);
  1126. if (!savePng(render, testRenderMulti))
  1127. puts("Failed to write test render file.");
  1128. }
  1129. if (testRender) {
  1130. Bitmap<float, 1> render(testWidth, testHeight);
  1131. renderSDF(render, mtsdf, avgScale*range, .5f+outputDistanceShift);
  1132. if (!savePng(render, testRender))
  1133. ABORT("Failed to write test render file.");
  1134. }
  1135. break;
  1136. default:;
  1137. }
  1138. return 0;
  1139. }
  1140. #endif