1 /* 2 * Copyright (C) 2013 The Android Open Source Project 3 * 4 * Licensed under the Apache License, Version 2.0 (the "License"); 5 * you may not use this file except in compliance with the License. 6 * You may obtain a copy of the License at 7 * 8 * http://www.apache.org/licenses/LICENSE-2.0 9 * 10 * Unless required by applicable law or agreed to in writing, software 11 * distributed under the License is distributed on an "AS IS" BASIS, 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. 13 * See the License for the specific language governing permissions and 14 * limitations under the License. 15 */ 16 17 #define LOG_TAG "Minikin" 18 #include <cutils/log.h> 19 20 #include <string> 21 #include <vector> 22 #include <algorithm> 23 #include <fstream> 24 #include <iostream> // for debugging 25 #include <stdio.h> // ditto 26 27 #include <utils/JenkinsHash.h> 28 #include <utils/LruCache.h> 29 #include <utils/Singleton.h> 30 #include <utils/String16.h> 31 32 #include <unicode/ubidi.h> 33 #include <hb-icu.h> 34 35 #include "MinikinInternal.h" 36 #include <minikin/MinikinFontFreeType.h> 37 #include <minikin/Layout.h> 38 39 using std::string; 40 using std::vector; 41 42 namespace android { 43 44 // TODO: these should move into the header file, but for now we don't want 45 // to cause namespace collisions with TextLayout.h 46 enum { 47 kBidi_LTR = 0, 48 kBidi_RTL = 1, 49 kBidi_Default_LTR = 2, 50 kBidi_Default_RTL = 3, 51 kBidi_Force_LTR = 4, 52 kBidi_Force_RTL = 5, 53 54 kBidi_Mask = 0x7 55 }; 56 57 const int kDirection_Mask = 0x1; 58 59 struct LayoutContext { 60 MinikinPaint paint; 61 FontStyle style; 62 std::vector<hb_font_t*> hbFonts; // parallel to mFaces 63 64 void clearHbFonts() { 65 for (size_t i = 0; i < hbFonts.size(); i++) { 66 hb_font_destroy(hbFonts[i]); 67 } 68 hbFonts.clear(); 69 } 70 }; 71 72 // Layout cache datatypes 73 74 class LayoutCacheKey { 75 public: 76 LayoutCacheKey(const FontCollection* collection, const MinikinPaint& paint, FontStyle style, 77 const uint16_t* chars, size_t start, size_t count, size_t nchars, bool dir) 78 : mStart(start), mCount(count), mId(collection->getId()), mStyle(style), 79 mSize(paint.size), mScaleX(paint.scaleX), mSkewX(paint.skewX), 80 mLetterSpacing(paint.letterSpacing), 81 mPaintFlags(paint.paintFlags), mIsRtl(dir), 82 mChars(chars), mNchars(nchars) { 83 } 84 bool operator==(const LayoutCacheKey &other) const; 85 hash_t hash() const; 86 87 void copyText() { 88 uint16_t* charsCopy = new uint16_t[mNchars]; 89 memcpy(charsCopy, mChars, mNchars * sizeof(uint16_t)); 90 mChars = charsCopy; 91 } 92 void freeText() { 93 delete[] mChars; 94 mChars = NULL; 95 } 96 97 void doLayout(Layout* layout, LayoutContext* ctx, const FontCollection* collection) const { 98 layout->setFontCollection(collection); 99 layout->mAdvances.resize(mCount, 0); 100 ctx->clearHbFonts(); 101 layout->doLayoutRun(mChars, mStart, mCount, mNchars, mIsRtl, ctx); 102 } 103 104 private: 105 const uint16_t* mChars; 106 size_t mNchars; 107 size_t mStart; 108 size_t mCount; 109 uint32_t mId; // for the font collection 110 FontStyle mStyle; 111 float mSize; 112 float mScaleX; 113 float mSkewX; 114 float mLetterSpacing; 115 int32_t mPaintFlags; 116 bool mIsRtl; 117 // Note: any fields added to MinikinPaint must also be reflected here. 118 // TODO: language matching (possibly integrate into style) 119 }; 120 121 class LayoutCache : private OnEntryRemoved<LayoutCacheKey, Layout*> { 122 public: 123 LayoutCache() : mCache(kMaxEntries) { 124 mCache.setOnEntryRemovedListener(this); 125 } 126 127 void clear() { 128 mCache.clear(); 129 } 130 131 Layout* get(LayoutCacheKey& key, LayoutContext* ctx, const FontCollection* collection) { 132 Layout* layout = mCache.get(key); 133 if (layout == NULL) { 134 key.copyText(); 135 layout = new Layout(); 136 key.doLayout(layout, ctx, collection); 137 mCache.put(key, layout); 138 } 139 return layout; 140 } 141 142 private: 143 // callback for OnEntryRemoved 144 void operator()(LayoutCacheKey& key, Layout*& value) { 145 key.freeText(); 146 delete value; 147 } 148 149 LruCache<LayoutCacheKey, Layout*> mCache; 150 151 //static const size_t kMaxEntries = LruCache<LayoutCacheKey, Layout*>::kUnlimitedCapacity; 152 153 // TODO: eviction based on memory footprint; for now, we just use a constant 154 // number of strings 155 static const size_t kMaxEntries = 5000; 156 }; 157 158 class HbFaceCache : private OnEntryRemoved<int32_t, hb_face_t*> { 159 public: 160 HbFaceCache() : mCache(kMaxEntries) { 161 mCache.setOnEntryRemovedListener(this); 162 } 163 164 // callback for OnEntryRemoved 165 void operator()(int32_t& key, hb_face_t*& value) { 166 hb_face_destroy(value); 167 } 168 169 LruCache<int32_t, hb_face_t*> mCache; 170 private: 171 static const size_t kMaxEntries = 100; 172 }; 173 174 class LayoutEngine : public Singleton<LayoutEngine> { 175 public: 176 LayoutEngine() { 177 hbBuffer = hb_buffer_create(); 178 } 179 180 hb_buffer_t* hbBuffer; 181 LayoutCache layoutCache; 182 HbFaceCache hbFaceCache; 183 }; 184 185 ANDROID_SINGLETON_STATIC_INSTANCE(LayoutEngine); 186 187 bool LayoutCacheKey::operator==(const LayoutCacheKey& other) const { 188 return mId == other.mId 189 && mStart == other.mStart 190 && mCount == other.mCount 191 && mStyle == other.mStyle 192 && mSize == other.mSize 193 && mScaleX == other.mScaleX 194 && mSkewX == other.mSkewX 195 && mLetterSpacing == other.mLetterSpacing 196 && mPaintFlags == other.mPaintFlags 197 && mIsRtl == other.mIsRtl 198 && mNchars == other.mNchars 199 && !memcmp(mChars, other.mChars, mNchars * sizeof(uint16_t)); 200 } 201 202 hash_t LayoutCacheKey::hash() const { 203 uint32_t hash = JenkinsHashMix(0, mId); 204 hash = JenkinsHashMix(hash, mStart); 205 hash = JenkinsHashMix(hash, mCount); 206 hash = JenkinsHashMix(hash, hash_type(mStyle)); 207 hash = JenkinsHashMix(hash, hash_type(mSize)); 208 hash = JenkinsHashMix(hash, hash_type(mScaleX)); 209 hash = JenkinsHashMix(hash, hash_type(mSkewX)); 210 hash = JenkinsHashMix(hash, hash_type(mLetterSpacing)); 211 hash = JenkinsHashMix(hash, hash_type(mPaintFlags)); 212 hash = JenkinsHashMix(hash, hash_type(mIsRtl)); 213 hash = JenkinsHashMixShorts(hash, mChars, mNchars); 214 return JenkinsHashWhiten(hash); 215 } 216 217 hash_t hash_type(const LayoutCacheKey& key) { 218 return key.hash(); 219 } 220 221 Bitmap::Bitmap(int width, int height) : width(width), height(height) { 222 buf = new uint8_t[width * height](); 223 } 224 225 Bitmap::~Bitmap() { 226 delete[] buf; 227 } 228 229 void Bitmap::writePnm(std::ofstream &o) const { 230 o << "P5" << std::endl; 231 o << width << " " << height << std::endl; 232 o << "255" << std::endl; 233 o.write((const char *)buf, width * height); 234 o.close(); 235 } 236 237 void Bitmap::drawGlyph(const GlyphBitmap& bitmap, int x, int y) { 238 int bmw = bitmap.width; 239 int bmh = bitmap.height; 240 x += bitmap.left; 241 y -= bitmap.top; 242 int x0 = std::max(0, x); 243 int x1 = std::min(width, x + bmw); 244 int y0 = std::max(0, y); 245 int y1 = std::min(height, y + bmh); 246 const unsigned char* src = bitmap.buffer + (y0 - y) * bmw + (x0 - x); 247 uint8_t* dst = buf + y0 * width; 248 for (int yy = y0; yy < y1; yy++) { 249 for (int xx = x0; xx < x1; xx++) { 250 int pixel = (int)dst[xx] + (int)src[xx - x]; 251 pixel = pixel > 0xff ? 0xff : pixel; 252 dst[xx] = pixel; 253 } 254 src += bmw; 255 dst += width; 256 } 257 } 258 259 void MinikinRect::join(const MinikinRect& r) { 260 if (isEmpty()) { 261 set(r); 262 } else if (!r.isEmpty()) { 263 mLeft = std::min(mLeft, r.mLeft); 264 mTop = std::min(mTop, r.mTop); 265 mRight = std::max(mRight, r.mRight); 266 mBottom = std::max(mBottom, r.mBottom); 267 } 268 } 269 270 // Deprecated. Remove when callers are removed. 271 void Layout::init() { 272 } 273 274 void Layout::reset() { 275 mGlyphs.clear(); 276 mFaces.clear(); 277 mBounds.setEmpty(); 278 mAdvances.clear(); 279 mAdvance = 0; 280 } 281 282 void Layout::setFontCollection(const FontCollection* collection) { 283 mCollection = collection; 284 } 285 286 hb_blob_t* referenceTable(hb_face_t* face, hb_tag_t tag, void* userData) { 287 MinikinFont* font = reinterpret_cast<MinikinFont*>(userData); 288 size_t length = 0; 289 bool ok = font->GetTable(tag, NULL, &length); 290 if (!ok) { 291 return 0; 292 } 293 char* buffer = reinterpret_cast<char*>(malloc(length)); 294 if (!buffer) { 295 return 0; 296 } 297 ok = font->GetTable(tag, reinterpret_cast<uint8_t*>(buffer), &length); 298 printf("referenceTable %c%c%c%c length=%d %d\n", 299 (tag >>24) & 0xff, (tag>>16)&0xff, (tag>>8)&0xff, tag&0xff, length, ok); 300 if (!ok) { 301 free(buffer); 302 return 0; 303 } 304 return hb_blob_create(const_cast<char*>(buffer), length, 305 HB_MEMORY_MODE_WRITABLE, buffer, free); 306 } 307 308 static hb_bool_t harfbuzzGetGlyph(hb_font_t* hbFont, void* fontData, hb_codepoint_t unicode, hb_codepoint_t variationSelector, hb_codepoint_t* glyph, void* userData) 309 { 310 MinikinPaint* paint = reinterpret_cast<MinikinPaint*>(fontData); 311 MinikinFont* font = paint->font; 312 uint32_t glyph_id; 313 /* HarfBuzz replaces broken input codepoints with (unsigned int) -1. 314 * Skia expects valid Unicode. 315 * Replace invalid codepoints with U+FFFD REPLACEMENT CHARACTER. 316 */ 317 if (unicode > 0x10FFFF) 318 unicode = 0xFFFD; 319 bool ok = font->GetGlyph(unicode, &glyph_id); 320 if (ok) { 321 *glyph = glyph_id; 322 } 323 return ok; 324 } 325 326 static hb_position_t harfbuzzGetGlyphHorizontalAdvance(hb_font_t* hbFont, void* fontData, hb_codepoint_t glyph, void* userData) 327 { 328 MinikinPaint* paint = reinterpret_cast<MinikinPaint*>(fontData); 329 MinikinFont* font = paint->font; 330 float advance = font->GetHorizontalAdvance(glyph, *paint); 331 return 256 * advance + 0.5; 332 } 333 334 static hb_bool_t harfbuzzGetGlyphHorizontalOrigin(hb_font_t* hbFont, void* fontData, hb_codepoint_t glyph, hb_position_t* x, hb_position_t* y, void* userData) 335 { 336 // Just return true, following the way that Harfbuzz-FreeType 337 // implementation does. 338 return true; 339 } 340 341 hb_font_funcs_t* getHbFontFuncs() { 342 static hb_font_funcs_t* hbFontFuncs = 0; 343 344 if (hbFontFuncs == 0) { 345 hbFontFuncs = hb_font_funcs_create(); 346 hb_font_funcs_set_glyph_func(hbFontFuncs, harfbuzzGetGlyph, 0, 0); 347 hb_font_funcs_set_glyph_h_advance_func(hbFontFuncs, harfbuzzGetGlyphHorizontalAdvance, 0, 0); 348 hb_font_funcs_set_glyph_h_origin_func(hbFontFuncs, harfbuzzGetGlyphHorizontalOrigin, 0, 0); 349 hb_font_funcs_make_immutable(hbFontFuncs); 350 } 351 return hbFontFuncs; 352 } 353 354 static hb_face_t* getHbFace(MinikinFont* minikinFont) { 355 HbFaceCache& cache = LayoutEngine::getInstance().hbFaceCache; 356 int32_t fontId = minikinFont->GetUniqueId(); 357 hb_face_t* face = cache.mCache.get(fontId); 358 if (face == NULL) { 359 face = hb_face_create_for_tables(referenceTable, minikinFont, NULL); 360 cache.mCache.put(fontId, face); 361 } 362 return face; 363 } 364 365 static hb_font_t* create_hb_font(MinikinFont* minikinFont, MinikinPaint* minikinPaint) { 366 hb_face_t* face = getHbFace(minikinFont); 367 hb_font_t* font = hb_font_create(face); 368 hb_font_set_funcs(font, getHbFontFuncs(), minikinPaint, 0); 369 return font; 370 } 371 372 static float HBFixedToFloat(hb_position_t v) 373 { 374 return scalbnf (v, -8); 375 } 376 377 static hb_position_t HBFloatToFixed(float v) 378 { 379 return scalbnf (v, +8); 380 } 381 382 void Layout::dump() const { 383 for (size_t i = 0; i < mGlyphs.size(); i++) { 384 const LayoutGlyph& glyph = mGlyphs[i]; 385 std::cout << glyph.glyph_id << ": " << glyph.x << ", " << glyph.y << std::endl; 386 } 387 } 388 389 int Layout::findFace(FakedFont face, LayoutContext* ctx) { 390 unsigned int ix; 391 for (ix = 0; ix < mFaces.size(); ix++) { 392 if (mFaces[ix].font == face.font) { 393 return ix; 394 } 395 } 396 mFaces.push_back(face); 397 // Note: ctx == NULL means we're copying from the cache, no need to create 398 // corresponding hb_font object. 399 if (ctx != NULL) { 400 hb_font_t* font = create_hb_font(face.font, &ctx->paint); 401 ctx->hbFonts.push_back(font); 402 } 403 return ix; 404 } 405 406 static hb_script_t codePointToScript(hb_codepoint_t codepoint) { 407 static hb_unicode_funcs_t* u = 0; 408 if (!u) { 409 u = hb_icu_get_unicode_funcs(); 410 } 411 return hb_unicode_script(u, codepoint); 412 } 413 414 static hb_codepoint_t decodeUtf16(const uint16_t* chars, size_t len, ssize_t* iter) { 415 const uint16_t v = chars[(*iter)++]; 416 // test whether v in (0xd800..0xdfff), lead or trail surrogate 417 if ((v & 0xf800) == 0xd800) { 418 // test whether v in (0xd800..0xdbff), lead surrogate 419 if (size_t(*iter) < len && (v & 0xfc00) == 0xd800) { 420 const uint16_t v2 = chars[(*iter)++]; 421 // test whether v2 in (0xdc00..0xdfff), trail surrogate 422 if ((v2 & 0xfc00) == 0xdc00) { 423 // (0xd800 0xdc00) in utf-16 maps to 0x10000 in ucs-32 424 const hb_codepoint_t delta = (0xd800 << 10) + 0xdc00 - 0x10000; 425 return (((hb_codepoint_t)v) << 10) + v2 - delta; 426 } 427 (*iter) -= 1; 428 return 0xFFFDu; 429 } else { 430 return 0xFFFDu; 431 } 432 } else { 433 return v; 434 } 435 } 436 437 static hb_script_t getScriptRun(const uint16_t* chars, size_t len, ssize_t* iter) { 438 if (size_t(*iter) == len) { 439 return HB_SCRIPT_UNKNOWN; 440 } 441 uint32_t cp = decodeUtf16(chars, len, iter); 442 hb_script_t current_script = codePointToScript(cp); 443 for (;;) { 444 if (size_t(*iter) == len) 445 break; 446 const ssize_t prev_iter = *iter; 447 cp = decodeUtf16(chars, len, iter); 448 const hb_script_t script = codePointToScript(cp); 449 if (script != current_script) { 450 if (current_script == HB_SCRIPT_INHERITED || 451 current_script == HB_SCRIPT_COMMON) { 452 current_script = script; 453 } else if (script == HB_SCRIPT_INHERITED || 454 script == HB_SCRIPT_COMMON) { 455 continue; 456 } else { 457 *iter = prev_iter; 458 break; 459 } 460 } 461 } 462 if (current_script == HB_SCRIPT_INHERITED) { 463 current_script = HB_SCRIPT_COMMON; 464 } 465 466 return current_script; 467 } 468 469 /** 470 * For the purpose of layout, a word break is a boundary with no 471 * kerning or complex script processing. This is necessarily a 472 * heuristic, but should be accurate most of the time. 473 */ 474 static bool isWordBreak(int c) { 475 if (c == ' ' || (c >= 0x2000 && c <= 0x200a) || c == 0x3000) { 476 // spaces 477 return true; 478 } 479 if ((c >= 0x3400 && c <= 0x9fff)) { 480 // CJK ideographs (and yijing hexagram symbols) 481 return true; 482 } 483 // Note: kana is not included, as sophisticated fonts may kern kana 484 return false; 485 } 486 487 /** 488 * Return offset of previous word break. It is either < offset or == 0. 489 */ 490 static size_t getPrevWordBreak(const uint16_t* chars, size_t offset) { 491 if (offset == 0) return 0; 492 if (isWordBreak(chars[offset - 1])) { 493 return offset - 1; 494 } 495 for (size_t i = offset - 1; i > 0; i--) { 496 if (isWordBreak(chars[i - 1])) { 497 return i; 498 } 499 } 500 return 0; 501 } 502 503 /** 504 * Return offset of next word break. It is either > offset or == len. 505 */ 506 static size_t getNextWordBreak(const uint16_t* chars, size_t offset, size_t len) { 507 if (offset >= len) return len; 508 if (isWordBreak(chars[offset])) { 509 return offset + 1; 510 } 511 for (size_t i = offset + 1; i < len; i++) { 512 if (isWordBreak(chars[i])) { 513 return i; 514 } 515 } 516 return len; 517 } 518 519 void Layout::doLayout(const uint16_t* buf, size_t start, size_t count, size_t bufSize, 520 int bidiFlags, const FontStyle &style, const MinikinPaint &paint) { 521 AutoMutex _l(gMinikinLock); 522 523 LayoutContext ctx; 524 ctx.style = style; 525 ctx.paint = paint; 526 527 bool isRtl = (bidiFlags & kDirection_Mask) != 0; 528 bool doSingleRun = true; 529 530 reset(); 531 mAdvances.resize(count, 0); 532 533 if (!(bidiFlags == kBidi_Force_LTR || bidiFlags == kBidi_Force_RTL)) { 534 UBiDi* bidi = ubidi_open(); 535 if (bidi) { 536 UErrorCode status = U_ZERO_ERROR; 537 UBiDiLevel bidiReq = bidiFlags; 538 if (bidiFlags == kBidi_Default_LTR) { 539 bidiReq = UBIDI_DEFAULT_LTR; 540 } else if (bidiFlags == kBidi_Default_RTL) { 541 bidiReq = UBIDI_DEFAULT_RTL; 542 } 543 ubidi_setPara(bidi, buf, bufSize, bidiReq, NULL, &status); 544 if (U_SUCCESS(status)) { 545 int paraDir = ubidi_getParaLevel(bidi) & kDirection_Mask; 546 ssize_t rc = ubidi_countRuns(bidi, &status); 547 if (!U_SUCCESS(status) || rc < 0) { 548 ALOGW("error counting bidi runs, status = %d", status); 549 } 550 if (!U_SUCCESS(status) || rc <= 1) { 551 isRtl = (paraDir == kBidi_RTL); 552 } else { 553 doSingleRun = false; 554 // iterate through runs 555 for (ssize_t i = 0; i < (ssize_t)rc; i++) { 556 int32_t startRun = -1; 557 int32_t lengthRun = -1; 558 UBiDiDirection runDir = ubidi_getVisualRun(bidi, i, &startRun, &lengthRun); 559 if (startRun == -1 || lengthRun == -1) { 560 ALOGE("invalid visual run"); 561 // skip the invalid run 562 continue; 563 } 564 int32_t endRun = std::min(startRun + lengthRun, int32_t(start + count)); 565 startRun = std::max(startRun, int32_t(start)); 566 lengthRun = endRun - startRun; 567 if (lengthRun > 0) { 568 isRtl = (runDir == UBIDI_RTL); 569 doLayoutRunCached(buf, startRun, lengthRun, bufSize, isRtl, &ctx, 570 start); 571 } 572 } 573 } 574 } else { 575 ALOGE("error calling ubidi_setPara, status = %d", status); 576 } 577 ubidi_close(bidi); 578 } else { 579 ALOGE("error creating bidi object"); 580 } 581 } 582 if (doSingleRun) { 583 doLayoutRunCached(buf, start, count, bufSize, isRtl, &ctx, start); 584 } 585 ctx.clearHbFonts(); 586 } 587 588 void Layout::doLayoutRunCached(const uint16_t* buf, size_t start, size_t count, size_t bufSize, 589 bool isRtl, LayoutContext* ctx, size_t dstStart) { 590 if (!isRtl) { 591 // left to right 592 size_t wordstart = start == bufSize ? start : getPrevWordBreak(buf, start + 1); 593 size_t wordend; 594 for (size_t iter = start; iter < start + count; iter = wordend) { 595 wordend = getNextWordBreak(buf, iter, bufSize); 596 size_t wordcount = std::min(start + count, wordend) - iter; 597 doLayoutWord(buf + wordstart, iter - wordstart, wordcount, wordend - wordstart, 598 isRtl, ctx, iter - dstStart); 599 wordstart = wordend; 600 } 601 } else { 602 // right to left 603 size_t wordstart; 604 size_t end = start + count; 605 size_t wordend = end == 0 ? 0 : getNextWordBreak(buf, end - 1, bufSize); 606 for (size_t iter = end; iter > start; iter = wordstart) { 607 wordstart = getPrevWordBreak(buf, iter); 608 size_t bufStart = std::max(start, wordstart); 609 doLayoutWord(buf + wordstart, bufStart - wordstart, iter - bufStart, 610 wordend - wordstart, isRtl, ctx, bufStart - dstStart); 611 wordend = wordstart; 612 } 613 } 614 } 615 616 void Layout::doLayoutWord(const uint16_t* buf, size_t start, size_t count, size_t bufSize, 617 bool isRtl, LayoutContext* ctx, size_t bufStart) { 618 LayoutCache& cache = LayoutEngine::getInstance().layoutCache; 619 LayoutCacheKey key(mCollection, ctx->paint, ctx->style, buf, start, count, bufSize, isRtl); 620 bool skipCache = ctx->paint.skipCache(); 621 if (skipCache) { 622 Layout layout; 623 key.doLayout(&layout, ctx, mCollection); 624 appendLayout(&layout, bufStart); 625 } else { 626 Layout* layout = cache.get(key, ctx, mCollection); 627 appendLayout(layout, bufStart); 628 } 629 } 630 631 static void addFeatures(const string &str, vector<hb_feature_t>* features) { 632 if (!str.size()) 633 return; 634 635 const char* start = str.c_str(); 636 const char* end = start + str.size(); 637 638 while (start < end) { 639 static hb_feature_t feature; 640 const char* p = strchr(start, ','); 641 if (!p) 642 p = end; 643 /* We do not allow setting features on ranges. As such, reject any 644 * setting that has non-universal range. */ 645 if (hb_feature_from_string (start, p - start, &feature) 646 && feature.start == 0 && feature.end == (unsigned int) -1) 647 features->push_back(feature); 648 start = p + 1; 649 } 650 } 651 652 void Layout::doLayoutRun(const uint16_t* buf, size_t start, size_t count, size_t bufSize, 653 bool isRtl, LayoutContext* ctx) { 654 hb_buffer_t* buffer = LayoutEngine::getInstance().hbBuffer; 655 vector<FontCollection::Run> items; 656 mCollection->itemize(buf + start, count, ctx->style, &items); 657 if (isRtl) { 658 std::reverse(items.begin(), items.end()); 659 } 660 661 vector<hb_feature_t> features; 662 // Disable default-on non-required ligature features if letter-spacing 663 // See http://dev.w3.org/csswg/css-text-3/#letter-spacing-property 664 // "When the effective spacing between two characters is not zero (due to 665 // either justification or a non-zero value of letter-spacing), user agents 666 // should not apply optional ligatures." 667 if (fabs(ctx->paint.letterSpacing) > 0.03) 668 { 669 static const hb_feature_t no_liga = { HB_TAG('l', 'i', 'g', 'a'), 0, 0, ~0u }; 670 static const hb_feature_t no_clig = { HB_TAG('c', 'l', 'i', 'g'), 0, 0, ~0u }; 671 features.push_back(no_liga); 672 features.push_back(no_clig); 673 } 674 addFeatures(ctx->paint.fontFeatureSettings, &features); 675 676 double size = ctx->paint.size; 677 double scaleX = ctx->paint.scaleX; 678 double letterSpace = ctx->paint.letterSpacing * size * scaleX; 679 double letterSpaceHalfLeft; 680 if ((ctx->paint.paintFlags & LinearTextFlag) == 0) { 681 letterSpace = round(letterSpace); 682 letterSpaceHalfLeft = floor(letterSpace * 0.5); 683 } else { 684 letterSpaceHalfLeft = letterSpace * 0.5; 685 } 686 double letterSpaceHalfRight = letterSpace - letterSpaceHalfLeft; 687 688 float x = mAdvance; 689 float y = 0; 690 for (size_t run_ix = 0; run_ix < items.size(); run_ix++) { 691 FontCollection::Run &run = items[run_ix]; 692 if (run.fakedFont.font == NULL) { 693 ALOGE("no font for run starting u+%04x length %d", buf[run.start], run.end - run.start); 694 continue; 695 } 696 int font_ix = findFace(run.fakedFont, ctx); 697 ctx->paint.font = mFaces[font_ix].font; 698 ctx->paint.fakery = mFaces[font_ix].fakery; 699 hb_font_t* hbFont = ctx->hbFonts[font_ix]; 700 #ifdef VERBOSE 701 std::cout << "Run " << run_ix << ", font " << font_ix << 702 " [" << run.start << ":" << run.end << "]" << std::endl; 703 #endif 704 705 hb_font_set_ppem(hbFont, size * scaleX, size); 706 hb_font_set_scale(hbFont, HBFloatToFixed(size * scaleX), HBFloatToFixed(size)); 707 708 // TODO: if there are multiple scripts within a font in an RTL run, 709 // we need to reorder those runs. This is unlikely with our current 710 // font stack, but should be done for correctness. 711 ssize_t srunend; 712 for (ssize_t srunstart = run.start; srunstart < run.end; srunstart = srunend) { 713 srunend = srunstart; 714 hb_script_t script = getScriptRun(buf + start, run.end, &srunend); 715 716 hb_buffer_reset(buffer); 717 hb_buffer_set_script(buffer, script); 718 hb_buffer_set_direction(buffer, isRtl? HB_DIRECTION_RTL : HB_DIRECTION_LTR); 719 FontLanguage language = ctx->style.getLanguage(); 720 if (language) { 721 string lang = language.getString(); 722 hb_buffer_set_language(buffer, hb_language_from_string(lang.c_str(), -1)); 723 } 724 hb_buffer_add_utf16(buffer, buf, bufSize, srunstart + start, srunend - srunstart); 725 hb_shape(hbFont, buffer, features.empty() ? NULL : &features[0], features.size()); 726 unsigned int numGlyphs; 727 hb_glyph_info_t* info = hb_buffer_get_glyph_infos(buffer, &numGlyphs); 728 hb_glyph_position_t* positions = hb_buffer_get_glyph_positions(buffer, NULL); 729 if (numGlyphs) 730 { 731 mAdvances[info[0].cluster - start] += letterSpaceHalfLeft; 732 x += letterSpaceHalfLeft; 733 } 734 for (unsigned int i = 0; i < numGlyphs; i++) { 735 #ifdef VERBOSE 736 std::cout << positions[i].x_advance << " " << positions[i].y_advance << " " << positions[i].x_offset << " " << positions[i].y_offset << std::endl; std::cout << "DoLayout " << info[i].codepoint << 737 ": " << HBFixedToFloat(positions[i].x_advance) << "; " << positions[i].x_offset << ", " << positions[i].y_offset << std::endl; 738 #endif 739 if (i > 0 && info[i - 1].cluster != info[i].cluster) { 740 mAdvances[info[i - 1].cluster - start] += letterSpaceHalfRight; 741 mAdvances[info[i].cluster - start] += letterSpaceHalfLeft; 742 x += letterSpace; 743 } 744 745 hb_codepoint_t glyph_ix = info[i].codepoint; 746 float xoff = HBFixedToFloat(positions[i].x_offset); 747 float yoff = -HBFixedToFloat(positions[i].y_offset); 748 xoff += yoff * ctx->paint.skewX; 749 LayoutGlyph glyph = {font_ix, glyph_ix, x + xoff, y + yoff}; 750 mGlyphs.push_back(glyph); 751 float xAdvance = HBFixedToFloat(positions[i].x_advance); 752 if ((ctx->paint.paintFlags & LinearTextFlag) == 0) { 753 xAdvance = roundf(xAdvance); 754 } 755 MinikinRect glyphBounds; 756 ctx->paint.font->GetBounds(&glyphBounds, glyph_ix, ctx->paint); 757 glyphBounds.offset(x + xoff, y + yoff); 758 mBounds.join(glyphBounds); 759 mAdvances[info[i].cluster - start] += xAdvance; 760 x += xAdvance; 761 } 762 if (numGlyphs) 763 { 764 mAdvances[info[numGlyphs - 1].cluster - start] += letterSpaceHalfRight; 765 x += letterSpaceHalfRight; 766 } 767 } 768 } 769 mAdvance = x; 770 } 771 772 void Layout::appendLayout(Layout* src, size_t start) { 773 int fontMapStack[16]; 774 int* fontMap; 775 if (src->mFaces.size() < sizeof(fontMapStack) / sizeof(fontMapStack[0])) { 776 fontMap = fontMapStack; 777 } else { 778 fontMap = new int[src->mFaces.size()]; 779 } 780 for (size_t i = 0; i < src->mFaces.size(); i++) { 781 int font_ix = findFace(src->mFaces[i], NULL); 782 fontMap[i] = font_ix; 783 } 784 int x0 = mAdvance; 785 for (size_t i = 0; i < src->mGlyphs.size(); i++) { 786 LayoutGlyph& srcGlyph = src->mGlyphs[i]; 787 int font_ix = fontMap[srcGlyph.font_ix]; 788 unsigned int glyph_id = srcGlyph.glyph_id; 789 float x = x0 + srcGlyph.x; 790 float y = srcGlyph.y; 791 LayoutGlyph glyph = {font_ix, glyph_id, x, y}; 792 mGlyphs.push_back(glyph); 793 } 794 for (size_t i = 0; i < src->mAdvances.size(); i++) { 795 mAdvances[i + start] = src->mAdvances[i]; 796 } 797 MinikinRect srcBounds(src->mBounds); 798 srcBounds.offset(x0, 0); 799 mBounds.join(srcBounds); 800 mAdvance += src->mAdvance; 801 802 if (fontMap != fontMapStack) { 803 delete[] fontMap; 804 } 805 } 806 807 void Layout::draw(Bitmap* surface, int x0, int y0, float size) const { 808 /* 809 TODO: redo as MinikinPaint settings 810 if (mProps.hasTag(minikinHinting)) { 811 int hintflags = mProps.value(minikinHinting).getIntValue(); 812 if (hintflags & 1) load_flags |= FT_LOAD_NO_HINTING; 813 if (hintflags & 2) load_flags |= FT_LOAD_NO_AUTOHINT; 814 } 815 */ 816 for (size_t i = 0; i < mGlyphs.size(); i++) { 817 const LayoutGlyph& glyph = mGlyphs[i]; 818 MinikinFont* mf = mFaces[glyph.font_ix].font; 819 MinikinFontFreeType* face = static_cast<MinikinFontFreeType*>(mf); 820 GlyphBitmap glyphBitmap; 821 MinikinPaint paint; 822 paint.size = size; 823 bool ok = face->Render(glyph.glyph_id, paint, &glyphBitmap); 824 printf("glyphBitmap.width=%d, glyphBitmap.height=%d (%d, %d) x=%f, y=%f, ok=%d\n", 825 glyphBitmap.width, glyphBitmap.height, glyphBitmap.left, glyphBitmap.top, glyph.x, glyph.y, ok); 826 if (ok) { 827 surface->drawGlyph(glyphBitmap, 828 x0 + int(floor(glyph.x + 0.5)), y0 + int(floor(glyph.y + 0.5))); 829 } 830 } 831 } 832 833 size_t Layout::nGlyphs() const { 834 return mGlyphs.size(); 835 } 836 837 MinikinFont* Layout::getFont(int i) const { 838 const LayoutGlyph& glyph = mGlyphs[i]; 839 return mFaces[glyph.font_ix].font; 840 } 841 842 FontFakery Layout::getFakery(int i) const { 843 const LayoutGlyph& glyph = mGlyphs[i]; 844 return mFaces[glyph.font_ix].fakery; 845 } 846 847 unsigned int Layout::getGlyphId(int i) const { 848 const LayoutGlyph& glyph = mGlyphs[i]; 849 return glyph.glyph_id; 850 } 851 852 float Layout::getX(int i) const { 853 const LayoutGlyph& glyph = mGlyphs[i]; 854 return glyph.x; 855 } 856 857 float Layout::getY(int i) const { 858 const LayoutGlyph& glyph = mGlyphs[i]; 859 return glyph.y; 860 } 861 862 float Layout::getAdvance() const { 863 return mAdvance; 864 } 865 866 void Layout::getAdvances(float* advances) { 867 memcpy(advances, &mAdvances[0], mAdvances.size() * sizeof(float)); 868 } 869 870 void Layout::getBounds(MinikinRect* bounds) { 871 bounds->set(mBounds); 872 } 873 874 void Layout::purgeCaches() { 875 AutoMutex _l(gMinikinLock); 876 LayoutCache& layoutCache = LayoutEngine::getInstance().layoutCache; 877 layoutCache.clear(); 878 HbFaceCache& hbCache = LayoutEngine::getInstance().hbFaceCache; 879 hbCache.mCache.clear(); 880 } 881 882 } // namespace android 883