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1 // Copyright 2019 Google LLC.
2 
3 #include "modules/skparagraph/src/Iterators.h"
4 #include "modules/skparagraph/src/OneLineShaper.h"
5 #include "src/utils/SkUTF.h"
6 #include <algorithm>
7 #include <unordered_set>
8 
nextUtf8Unit(const char ** ptr,const char * end)9 static inline SkUnichar nextUtf8Unit(const char** ptr, const char* end) {
10     SkUnichar val = SkUTF::NextUTF8(ptr, end);
11     return val < 0 ? 0xFFFD : val;
12 }
13 
14 namespace skia {
15 namespace textlayout {
16 
commitRunBuffer(const RunInfo &)17 void OneLineShaper::commitRunBuffer(const RunInfo&) {
18 
19     fCurrentRun->commit();
20 
21     auto oldUnresolvedCount = fUnresolvedBlocks.size();
22 /*
23     SkDebugf("Run [%zu:%zu)\n", fCurrentRun->fTextRange.start, fCurrentRun->fTextRange.end);
24     for (size_t i = 0; i < fCurrentRun->size(); ++i) {
25         SkDebugf("[%zu] %hu %u %f\n", i, fCurrentRun->fGlyphs[i], fCurrentRun->fClusterIndexes[i], fCurrentRun->fPositions[i].fX);
26     }
27 */
28     // Find all unresolved blocks
29     sortOutGlyphs([&](GlyphRange block){
30         if (block.width() == 0) {
31             return;
32         }
33         addUnresolvedWithRun(block);
34     });
35 
36     // Fill all the gaps between unresolved blocks with resolved ones
37     if (oldUnresolvedCount == fUnresolvedBlocks.size()) {
38         // No unresolved blocks added - we resolved the block with one run entirely
39         addFullyResolved();
40         return;
41     } else if (oldUnresolvedCount == fUnresolvedBlocks.size() - 1) {
42         auto& unresolved = fUnresolvedBlocks.back();
43         if (fCurrentRun->textRange() == unresolved.fText) {
44             // Nothing was resolved; preserve the initial run if it makes sense
45             auto& front = fUnresolvedBlocks.front();
46             if (front.fRun != nullptr) {
47                unresolved.fRun = front.fRun;
48                unresolved.fGlyphs = front.fGlyphs;
49             }
50             return;
51         }
52     }
53 
54     fillGaps(oldUnresolvedCount);
55 }
56 
57 #ifdef SK_DEBUG
printState()58 void OneLineShaper::printState() {
59     SkDebugf("Resolved: %zu\n", fResolvedBlocks.size());
60     for (auto& resolved : fResolvedBlocks) {
61         if (resolved.fRun ==  nullptr) {
62             SkDebugf("[%zu:%zu) unresolved\n",
63                     resolved.fText.start, resolved.fText.end);
64             continue;
65         }
66         SkString name("???");
67         if (resolved.fRun->fFont.getTypeface() != nullptr) {
68             resolved.fRun->fFont.getTypeface()->getFamilyName(&name);
69         }
70         SkDebugf("[%zu:%zu) ", resolved.fGlyphs.start, resolved.fGlyphs.end);
71         SkDebugf("[%zu:%zu) with %s\n",
72                 resolved.fText.start, resolved.fText.end,
73                 name.c_str());
74     }
75 
76     auto size = fUnresolvedBlocks.size();
77     SkDebugf("Unresolved: %zu\n", size);
78     for (const auto& unresolved : fUnresolvedBlocks) {
79         SkDebugf("[%zu:%zu)\n", unresolved.fText.start, unresolved.fText.end);
80     }
81 }
82 #endif
83 
fillGaps(size_t startingCount)84 void OneLineShaper::fillGaps(size_t startingCount) {
85     // Fill out gaps between all unresolved blocks
86     TextRange resolvedTextLimits = fCurrentRun->fTextRange;
87     if (!fCurrentRun->leftToRight()) {
88         std::swap(resolvedTextLimits.start, resolvedTextLimits.end);
89     }
90     TextIndex resolvedTextStart = resolvedTextLimits.start;
91     GlyphIndex resolvedGlyphsStart = 0;
92 
93     auto begin = fUnresolvedBlocks.begin();
94     auto end = fUnresolvedBlocks.end();
95     begin += startingCount; // Skip the old ones, do the new ones
96     TextRange prevText = EMPTY_TEXT;
97     for (; begin != end; ++begin) {
98         auto& unresolved = *begin;
99 
100         if (unresolved.fText == prevText) {
101             // Clean up repetitive blocks that appear inside the same grapheme block
102             unresolved.fText = EMPTY_TEXT;
103             continue;
104         } else {
105             prevText = unresolved.fText;
106         }
107 
108         TextRange resolvedText(resolvedTextStart, fCurrentRun->leftToRight() ? unresolved.fText.start : unresolved.fText.end);
109         if (resolvedText.width() > 0) {
110             if (!fCurrentRun->leftToRight()) {
111                 std::swap(resolvedText.start, resolvedText.end);
112             }
113 
114             GlyphRange resolvedGlyphs(resolvedGlyphsStart, unresolved.fGlyphs.start);
115             RunBlock resolved(fCurrentRun, resolvedText, resolvedGlyphs, resolvedGlyphs.width());
116 
117             if (resolvedGlyphs.width() == 0) {
118                 // Extend the unresolved block with an empty resolved
119                 if (unresolved.fText.end <= resolved.fText.start) {
120                     unresolved.fText.end = resolved.fText.end;
121                 }
122                 if (unresolved.fText.start >= resolved.fText.end) {
123                     unresolved.fText.start = resolved.fText.start;
124                 }
125             } else {
126                 fResolvedBlocks.emplace_back(resolved);
127             }
128         }
129         resolvedGlyphsStart = unresolved.fGlyphs.end;
130         resolvedTextStart =  fCurrentRun->leftToRight()
131                                 ? unresolved.fText.end
132                                 : unresolved.fText.start;
133     }
134 
135     TextRange resolvedText(resolvedTextStart,resolvedTextLimits.end);
136     if (resolvedText.width() > 0) {
137         if (!fCurrentRun->leftToRight()) {
138             std::swap(resolvedText.start, resolvedText.end);
139         }
140 
141         GlyphRange resolvedGlyphs(resolvedGlyphsStart, fCurrentRun->size());
142         RunBlock resolved(fCurrentRun, resolvedText, resolvedGlyphs, resolvedGlyphs.width());
143         fResolvedBlocks.emplace_back(resolved);
144     }
145 }
146 
finish(const Block & block,SkScalar height,SkScalar & advanceX)147 void OneLineShaper::finish(const Block& block, SkScalar height, SkScalar& advanceX) {
148     auto blockText = block.fRange;
149 
150     // Add all unresolved blocks to resolved blocks
151     while (!fUnresolvedBlocks.empty()) {
152         auto unresolved = fUnresolvedBlocks.front();
153         fUnresolvedBlocks.pop_front();
154         if (unresolved.fText.width() == 0) {
155             continue;
156         }
157         fResolvedBlocks.emplace_back(unresolved);
158         fUnresolvedGlyphs += unresolved.fGlyphs.width();
159     }
160 
161     // Sort all pieces by text
162     std::sort(fResolvedBlocks.begin(), fResolvedBlocks.end(),
163               [](const RunBlock& a, const RunBlock& b) {
164                 return a.fText.start < b.fText.start;
165               });
166 
167     // Go through all of them
168     size_t lastTextEnd = blockText.start;
169     for (auto& resolvedBlock : fResolvedBlocks) {
170 
171         if (resolvedBlock.fText.end <= blockText.start) {
172             continue;
173         }
174 
175         if (resolvedBlock.fRun != nullptr) {
176             fParagraph->fFontSwitches.emplace_back(resolvedBlock.fText.start, resolvedBlock.fRun->fFont);
177         }
178 
179         auto run = resolvedBlock.fRun;
180         auto glyphs = resolvedBlock.fGlyphs;
181         auto text = resolvedBlock.fText;
182         if (lastTextEnd != text.start) {
183             SkDEBUGF("Text ranges mismatch: ...:%zu] - [%zu:%zu] (%zu-%zu)\n",
184                      lastTextEnd, text.start, text.end,  glyphs.start, glyphs.end);
185             SkASSERT(false);
186         }
187         lastTextEnd = text.end;
188 
189         if (resolvedBlock.isFullyResolved()) {
190             // Just move the entire run
191             resolvedBlock.fRun->fIndex = this->fParagraph->fRuns.size();
192             this->fParagraph->fRuns.emplace_back(*resolvedBlock.fRun);
193             resolvedBlock.fRun.reset();
194             continue;
195         } else if (run == nullptr) {
196             continue;
197         }
198 
199         auto runAdvance = SkVector::Make(run->posX(glyphs.end) - run->posX(glyphs.start), run->fAdvance.fY);
200         const SkShaper::RunHandler::RunInfo info = {
201                 run->fFont,
202                 run->fBidiLevel,
203                 runAdvance,
204                 glyphs.width(),
205                 SkShaper::RunHandler::Range(text.start - run->fClusterStart, text.width())
206         };
207         this->fParagraph->fRuns.emplace_back(
208                     this->fParagraph,
209                     info,
210                     run->fClusterStart,
211                     height,
212                     block.fStyle.getHalfLeading(),
213                     block.fStyle.getBaselineShift(),
214                     this->fParagraph->fRuns.count(),
215                     advanceX
216                 );
217         auto piece = &this->fParagraph->fRuns.back();
218 
219         // TODO: Optimize copying
220         auto zero = run->fPositions[glyphs.start];
221         for (size_t i = glyphs.start; i <= glyphs.end; ++i) {
222 
223             auto index = i - glyphs.start;
224             if (i < glyphs.end) {
225                 piece->fGlyphs[index] = run->fGlyphs[i];
226                 piece->fBounds[index] = run->fBounds[i];
227             }
228             piece->fClusterIndexes[index] = run->fClusterIndexes[i];
229             piece->fPositions[index] = run->fPositions[i] - zero;
230             piece->addX(index, advanceX);
231         }
232 
233         // Carve out the line text out of the entire run text
234         fAdvance.fX += runAdvance.fX;
235         fAdvance.fY = std::max(fAdvance.fY, runAdvance.fY);
236     }
237 
238     advanceX = fAdvance.fX;
239     if (lastTextEnd != blockText.end) {
240         SkDEBUGF("Last range mismatch: %zu - %zu\n", lastTextEnd, blockText.end);
241         SkASSERT(false);
242     }
243 }
244 
245 // Make it [left:right) regardless of a text direction
normalizeTextRange(GlyphRange glyphRange)246 TextRange OneLineShaper::normalizeTextRange(GlyphRange glyphRange) {
247 
248     if (fCurrentRun->leftToRight()) {
249         return TextRange(clusterIndex(glyphRange.start), clusterIndex(glyphRange.end));
250     } else {
251         return TextRange(clusterIndex(glyphRange.end - 1),
252                 glyphRange.start > 0
253                 ? clusterIndex(glyphRange.start - 1)
254                 : fCurrentRun->fTextRange.end);
255     }
256 }
257 
addFullyResolved()258 void OneLineShaper::addFullyResolved() {
259     if (this->fCurrentRun->size() == 0) {
260         return;
261     }
262     RunBlock resolved(fCurrentRun,
263                       this->fCurrentRun->fTextRange,
264                       GlyphRange(0, this->fCurrentRun->size()),
265                       this->fCurrentRun->size());
266     fResolvedBlocks.emplace_back(resolved);
267 }
268 
addUnresolvedWithRun(GlyphRange glyphRange)269 void OneLineShaper::addUnresolvedWithRun(GlyphRange glyphRange) {
270     RunBlock unresolved(fCurrentRun, clusteredText(glyphRange), glyphRange, 0);
271     if (unresolved.fGlyphs.width() == fCurrentRun->size()) {
272         SkASSERT(unresolved.fText.width() == fCurrentRun->fTextRange.width());
273     } else if (fUnresolvedBlocks.size() > 0) {
274         auto& lastUnresolved = fUnresolvedBlocks.back();
275         if (lastUnresolved.fRun != nullptr &&
276             lastUnresolved.fRun->fIndex == fCurrentRun->fIndex) {
277 
278             if (lastUnresolved.fText.end == unresolved.fText.start) {
279               // Two pieces next to each other - can join them
280               lastUnresolved.fText.end = unresolved.fText.end;
281               lastUnresolved.fGlyphs.end = glyphRange.end;
282               return;
283             } else if(lastUnresolved.fText == unresolved.fText) {
284                 // Nothing was resolved; ignore it
285                 return;
286             } else if (lastUnresolved.fText.contains(unresolved.fText)) {
287                 // We get here for the very first unresolved piece
288                 return;
289             } else if (lastUnresolved.fText.intersects(unresolved.fText)) {
290                 // Few pieces of the same unresolved text block can ignore the second one
291                 lastUnresolved.fGlyphs.start = std::min(lastUnresolved.fGlyphs.start, glyphRange.start);
292                 lastUnresolved.fGlyphs.end = std::max(lastUnresolved.fGlyphs.end, glyphRange.end);
293                 lastUnresolved.fText = clusteredText(lastUnresolved.fGlyphs);
294                 return;
295             }
296         }
297     }
298     fUnresolvedBlocks.emplace_back(unresolved);
299 }
300 
301 // Glue whitespaces to the next/prev unresolved blocks
302 // (so we don't have chinese text with english whitespaces broken into millions of tiny runs)
303 #ifndef SK_PARAGRAPH_GRAPHEME_EDGES
sortOutGlyphs(std::function<void (GlyphRange)> && sortOutUnresolvedBLock)304 void OneLineShaper::sortOutGlyphs(std::function<void(GlyphRange)>&& sortOutUnresolvedBLock) {
305 
306     auto text = fCurrentRun->fOwner->text();
307     size_t unresolvedGlyphs = 0;
308 
309     GlyphRange block = EMPTY_RANGE;
310     bool graphemeResolved = false;
311     TextIndex graphemeStart = EMPTY_INDEX;
312     for (size_t i = 0; i < fCurrentRun->size(); ++i) {
313 
314         ClusterIndex ci = clusterIndex(i);
315         // Removing all pretty optimizations for whitespaces
316         // because they get in a way of grapheme rounding
317         // Inspect the glyph
318         auto glyph = fCurrentRun->fGlyphs[i];
319 
320         GraphemeIndex gi = fParagraph->findPreviousGraphemeBoundary(ci);
321         if ((fCurrentRun->leftToRight() ? gi > graphemeStart : gi < graphemeStart) || graphemeStart == EMPTY_INDEX) {
322             // This is the Flutter change
323             // Do not count control codepoints as unresolved
324             const char* cluster = text.begin() + ci;
325             SkUnichar codepoint = nextUtf8Unit(&cluster, text.end());
326             bool isControl8 = fParagraph->getUnicode()->isControl(codepoint);
327             // We only count glyph resolved if all the glyphs in its grapheme are resolved
328             graphemeResolved = glyph != 0 || isControl8;
329             graphemeStart = gi;
330         } else if (glyph == 0) {
331             // Found unresolved glyph - the entire grapheme is unresolved now
332             graphemeResolved = false;
333         }
334 
335         if (!graphemeResolved) { // Unresolved glyph and not control codepoint
336             ++unresolvedGlyphs;
337             if (block.start == EMPTY_INDEX) {
338                 // Start new unresolved block
339                 block.start = i;
340                 block.end = EMPTY_INDEX;
341             } else {
342                 // Keep skipping unresolved block
343             }
344         } else { // Resolved glyph or control codepoint
345             if (block.start == EMPTY_INDEX) {
346                 // Keep skipping resolved code points
347             } else {
348                 // This is the end of unresolved block
349                 block.end = i;
350                 sortOutUnresolvedBLock(block);
351                 block = EMPTY_RANGE;
352             }
353         }
354     }
355 
356     // One last block could have been left
357     if (block.start != EMPTY_INDEX) {
358         block.end = fCurrentRun->size();
359         sortOutUnresolvedBLock(block);
360     }
361 }
362 #else
sortOutGlyphs(std::function<void (GlyphRange)> && sortOutUnresolvedBLock)363 void OneLineShaper::sortOutGlyphs(std::function<void(GlyphRange)>&& sortOutUnresolvedBLock) {
364 
365     auto text = fCurrentRun->fOwner->text();
366     size_t unresolvedGlyphs = 0;
367 
368     TextIndex whitespacesStart = EMPTY_INDEX;
369     GlyphRange block = EMPTY_RANGE;
370     for (size_t i = 0; i < fCurrentRun->size(); ++i) {
371 
372         const char* cluster = text.begin() + clusterIndex(i);
373         SkUnichar codepoint = nextUtf8Unit(&cluster, text.end());
374         bool isControl8 = fParagraph->getUnicode()->isControl(codepoint);
375         // TODO: This is a temp change to match space handiling in LibTxt
376         // (all spaces are resolved with the main font)
377 #ifdef SK_PARAGRAPH_LIBTXT_SPACES_RESOLUTION
378         bool isWhitespace8 = false; // fParagraph->getUnicode()->isWhitespace(codepoint);
379 #else
380         bool isWhitespace8 = fParagraph->getUnicode()->isWhitespace(codepoint);
381 #endif
382         // Inspect the glyph
383         auto glyph = fCurrentRun->fGlyphs[i];
384         if (glyph == 0 && !isControl8) { // Unresolved glyph and not control codepoint
385             ++unresolvedGlyphs;
386             if (block.start == EMPTY_INDEX) {
387                 // Start new unresolved block
388                 // (all leading whitespaces glued to the resolved part if it's not empty)
389                 block.start = whitespacesStart == 0 ? 0 : i;
390                 block.end = EMPTY_INDEX;
391             } else {
392                 // Keep skipping unresolved block
393             }
394         } else { // Resolved glyph or control codepoint
395             if (block.start == EMPTY_INDEX) {
396                 // Keep skipping resolved code points
397             } else if (isWhitespace8) {
398                 // Glue whitespaces after to the unresolved block
399                 ++unresolvedGlyphs;
400             } else {
401                 // This is the end of unresolved block (all trailing whitespaces glued to the resolved part)
402                 block.end = whitespacesStart == EMPTY_INDEX ? i : whitespacesStart;
403                 sortOutUnresolvedBLock(block);
404                 block = EMPTY_RANGE;
405                 whitespacesStart = EMPTY_INDEX;
406             }
407         }
408 
409         // Keep updated the start of the latest whitespaces patch
410         if (isWhitespace8) {
411             if (whitespacesStart == EMPTY_INDEX) {
412                 whitespacesStart = i;
413             }
414         } else {
415             whitespacesStart = EMPTY_INDEX;
416         }
417     }
418 
419     // One last block could have been left
420     if (block.start != EMPTY_INDEX) {
421         block.end = fCurrentRun->size();
422         sortOutUnresolvedBLock(block);
423     }
424 }
425 #endif
426 
iterateThroughFontStyles(TextRange textRange,SkSpan<Block> styleSpan,const ShapeSingleFontVisitor & visitor)427 void OneLineShaper::iterateThroughFontStyles(TextRange textRange,
428                                              SkSpan<Block> styleSpan,
429                                              const ShapeSingleFontVisitor& visitor) {
430     Block combinedBlock;
431     SkTArray<SkShaper::Feature> features;
432 
433     auto addFeatures = [&features](const Block& block) {
434         for (auto& ff : block.fStyle.getFontFeatures()) {
435             if (ff.fName.size() != 4) {
436                 SkDEBUGF("Incorrect font feature: %s=%d\n", ff.fName.c_str(), ff.fValue);
437                 continue;
438             }
439             SkShaper::Feature feature = {
440                 SkSetFourByteTag(ff.fName[0], ff.fName[1], ff.fName[2], ff.fName[3]),
441                 SkToU32(ff.fValue),
442                 block.fRange.start,
443                 block.fRange.end
444             };
445             features.emplace_back(feature);
446         }
447     };
448 
449     for (auto& block : styleSpan) {
450         BlockRange blockRange(std::max(block.fRange.start, textRange.start), std::min(block.fRange.end, textRange.end));
451         if (blockRange.empty()) {
452             continue;
453         }
454         SkASSERT(combinedBlock.fRange.width() == 0 || combinedBlock.fRange.end == block.fRange.start);
455 
456         if (!combinedBlock.fRange.empty()) {
457             if (block.fStyle.matchOneAttribute(StyleType::kFont, combinedBlock.fStyle)) {
458                 combinedBlock.add(blockRange);
459                 addFeatures(block);
460                 continue;
461             }
462             // Resolve all characters in the block for this style
463             visitor(combinedBlock, features);
464         }
465 
466         combinedBlock.fRange = blockRange;
467         combinedBlock.fStyle = block.fStyle;
468         features.reset();
469         addFeatures(block);
470     }
471 
472     visitor(combinedBlock, features);
473 #ifdef SK_DEBUG
474     //printState();
475 #endif
476 }
477 
matchResolvedFonts(const TextStyle & textStyle,const TypefaceVisitor & visitor)478 void OneLineShaper::matchResolvedFonts(const TextStyle& textStyle,
479                                        const TypefaceVisitor& visitor) {
480     std::vector<sk_sp<SkTypeface>> typefaces = fParagraph->fFontCollection->findTypefaces(textStyle.getFontFamilies(), textStyle.getFontStyle());
481 
482     for (const auto& typeface : typefaces) {
483         if (visitor(typeface) == Resolved::Everything) {
484             // Resolved everything
485             return;
486         }
487     }
488 
489     if (fParagraph->fFontCollection->fontFallbackEnabled()) {
490         // Give fallback a clue
491         // Some unresolved subblocks might be resolved with different fallback fonts
492         std::vector<RunBlock> hopelessBlocks;
493         while (!fUnresolvedBlocks.empty()) {
494             auto unresolvedRange = fUnresolvedBlocks.front().fText;
495             auto unresolvedText = fParagraph->text(unresolvedRange);
496             const char* ch = unresolvedText.begin();
497             // We have the global cache for all already found typefaces for SkUnichar
498             // but we still need to keep track of all SkUnichars used in this unresolved block
499             SkTHashSet<SkUnichar> alreadyTried;
500             SkUnichar unicode = nextUtf8Unit(&ch, unresolvedText.end());
501             while (true) {
502 
503                 sk_sp<SkTypeface> typeface;
504 
505                 // First try to find in in a cache
506                 FontKey fontKey(unicode, textStyle.getFontStyle(), textStyle.getLocale());
507                 auto found = fFallbackFonts.find(fontKey);
508                 if (found != nullptr) {
509                     typeface = *found;
510                 } else {
511                     typeface = fParagraph->fFontCollection->defaultFallback(
512                             unicode, textStyle.getFontStyle(), textStyle.getLocale());
513 
514                     if (typeface == nullptr) {
515                         return;
516                     }
517                     fFallbackFonts.set(fontKey, typeface);
518                 }
519 
520                 auto resolved = visitor(typeface);
521                 if (resolved == Resolved::Everything) {
522                     // Resolved everything, no need to try another font
523                     return;
524                 }
525 
526                 if (resolved == Resolved::Something) {
527                     // Resolved something, no need to try another codepoint
528                     break;
529                 }
530 
531                 if (ch == unresolvedText.end()) {
532                     // Not a single codepoint could be resolved but we finished the block
533                     hopelessBlocks.push_back(fUnresolvedBlocks.front());
534                     fUnresolvedBlocks.pop_front();
535                     break;
536                 }
537 
538                 // We can stop here or we can switch to another DIFFERENT codepoint
539                 while (ch != unresolvedText.end()) {
540                     unicode = nextUtf8Unit(&ch, unresolvedText.end());
541                     if (alreadyTried.find(unicode) == nullptr) {
542                         alreadyTried.add(unicode);
543                         break;
544                     }
545                 }
546             }
547         }
548 
549         for (auto& block : hopelessBlocks) {
550             fUnresolvedBlocks.emplace_front(block);
551         }
552     }
553 }
554 
iterateThroughShapingRegions(const ShapeVisitor & shape)555 bool OneLineShaper::iterateThroughShapingRegions(const ShapeVisitor& shape) {
556 
557     size_t bidiIndex = 0;
558 
559     SkScalar advanceX = 0;
560     for (auto& placeholder : fParagraph->fPlaceholders) {
561 
562         if (placeholder.fTextBefore.width() > 0) {
563             // Shape the text by bidi regions
564             while (bidiIndex < fParagraph->fBidiRegions.size()) {
565                 SkUnicode::BidiRegion& bidiRegion = fParagraph->fBidiRegions[bidiIndex];
566                 auto start = std::max(bidiRegion.start, placeholder.fTextBefore.start);
567                 auto end = std::min(bidiRegion.end, placeholder.fTextBefore.end);
568 
569                 // Set up the iterators (the style iterator points to a bigger region that it could
570                 TextRange textRange(start, end);
571                 auto blockRange = fParagraph->findAllBlocks(textRange);
572                 SkSpan<Block> styleSpan(fParagraph->blocks(blockRange));
573 
574                 // Shape the text between placeholders
575                 if (!shape(textRange, styleSpan, advanceX, start, bidiRegion.level)) {
576                     return false;
577                 }
578 
579                 if (end == bidiRegion.end) {
580                     ++bidiIndex;
581                 } else /*if (end == placeholder.fTextBefore.end)*/ {
582                     break;
583                 }
584             }
585         }
586 
587         if (placeholder.fRange.width() == 0) {
588             continue;
589         }
590 
591         // Get the placeholder font
592         std::vector<sk_sp<SkTypeface>> typefaces = fParagraph->fFontCollection->findTypefaces(
593             placeholder.fTextStyle.getFontFamilies(),
594             placeholder.fTextStyle.getFontStyle());
595         sk_sp<SkTypeface> typeface = typefaces.size() ? typefaces.front() : nullptr;
596         SkFont font(typeface, placeholder.fTextStyle.getFontSize());
597 
598         // "Shape" the placeholder
599         const SkShaper::RunHandler::RunInfo runInfo = {
600             font,
601             (uint8_t)2,
602             SkPoint::Make(placeholder.fStyle.fWidth, placeholder.fStyle.fHeight),
603             1,
604             SkShaper::RunHandler::Range(0, placeholder.fRange.width())
605         };
606         auto& run = fParagraph->fRuns.emplace_back(this->fParagraph,
607                                        runInfo,
608                                        placeholder.fRange.start,
609                                        0.0f,
610                                        0.0f,
611                                        false,
612                                        fParagraph->fRuns.count(),
613                                        advanceX);
614 
615         run.fPositions[0] = { advanceX, 0 };
616         run.fClusterIndexes[0] = 0;
617         run.fPlaceholderIndex = &placeholder - fParagraph->fPlaceholders.begin();
618         advanceX += placeholder.fStyle.fWidth;
619     }
620     return true;
621 }
622 
shape()623 bool OneLineShaper::shape() {
624 
625     // The text can be broken into many shaping sequences
626     // (by place holders, possibly, by hard line breaks or tabs, too)
627     auto limitlessWidth = std::numeric_limits<SkScalar>::max();
628 
629     auto result = iterateThroughShapingRegions(
630             [this, limitlessWidth]
631             (TextRange textRange, SkSpan<Block> styleSpan, SkScalar& advanceX, TextIndex textStart, uint8_t defaultBidiLevel) {
632 
633         // Set up the shaper and shape the next
634         auto shaper = SkShaper::MakeShapeDontWrapOrReorder();
635         if (shaper == nullptr) {
636             // For instance, loadICU does not work. We have to stop the process
637             return false;
638         }
639 
640         iterateThroughFontStyles(textRange, styleSpan,
641                 [this, &shaper, defaultBidiLevel, limitlessWidth, &advanceX]
642                 (Block block, SkTArray<SkShaper::Feature> features) {
643             auto blockSpan = SkSpan<Block>(&block, 1);
644 
645             // Start from the beginning (hoping that it's a simple case one block - one run)
646             fHeight = block.fStyle.getHeightOverride() ? block.fStyle.getHeight() : 0;
647             fUseHalfLeading = block.fStyle.getHalfLeading();
648             fBaselineShift = block.fStyle.getBaselineShift();
649             fAdvance = SkVector::Make(advanceX, 0);
650             fCurrentText = block.fRange;
651             fUnresolvedBlocks.emplace_back(RunBlock(block.fRange));
652 
653             matchResolvedFonts(block.fStyle, [&](sk_sp<SkTypeface> typeface) {
654 
655                 // Create one more font to try
656                 SkFont font(std::move(typeface), block.fStyle.getFontSize());
657                 font.setEdging(SkFont::Edging::kAntiAlias);
658                 font.setHinting(SkFontHinting::kSlight);
659                 font.setSubpixel(true);
660 
661                 // Apply fake bold and/or italic settings to the font if the
662                 // typeface's attributes do not match the intended font style.
663                 int wantedWeight = block.fStyle.getFontStyle().weight();
664                 bool fakeBold =
665                     wantedWeight >= SkFontStyle::kSemiBold_Weight &&
666                     wantedWeight - font.getTypeface()->fontStyle().weight() >= 200;
667                 bool fakeItalic =
668                     block.fStyle.getFontStyle().slant() == SkFontStyle::kItalic_Slant &&
669                     font.getTypeface()->fontStyle().slant() != SkFontStyle::kItalic_Slant;
670                 font.setEmbolden(fakeBold);
671                 font.setSkewX(fakeItalic ? -SK_Scalar1 / 4 : 0);
672 
673                 // Walk through all the currently unresolved blocks
674                 // (ignoring those that appear later)
675                 auto resolvedCount = fResolvedBlocks.size();
676                 auto unresolvedCount = fUnresolvedBlocks.size();
677                 while (unresolvedCount-- > 0) {
678                     auto unresolvedRange = fUnresolvedBlocks.front().fText;
679                     if (unresolvedRange == EMPTY_TEXT) {
680                         // Duplicate blocks should be ignored
681                         fUnresolvedBlocks.pop_front();
682                         continue;
683                     }
684                     auto unresolvedText = fParagraph->text(unresolvedRange);
685 
686                     SkShaper::TrivialFontRunIterator fontIter(font, unresolvedText.size());
687                     LangIterator langIter(unresolvedText, blockSpan,
688                                       fParagraph->paragraphStyle().getTextStyle());
689                     SkShaper::TrivialBiDiRunIterator bidiIter(defaultBidiLevel, unresolvedText.size());
690                     auto scriptIter = SkShaper::MakeSkUnicodeHbScriptRunIterator
691                                      (fParagraph->getUnicode(), unresolvedText.begin(), unresolvedText.size());
692                     fCurrentText = unresolvedRange;
693                     shaper->shape(unresolvedText.begin(), unresolvedText.size(),
694                             fontIter, bidiIter,*scriptIter, langIter,
695                             features.data(), features.size(),
696                             limitlessWidth, this);
697 
698                     // Take off the queue the block we tried to resolved -
699                     // whatever happened, we have now smaller pieces of it to deal with
700                     fUnresolvedBlocks.pop_front();
701                 }
702 
703                 if (fUnresolvedBlocks.empty()) {
704                     return Resolved::Everything;
705                 } else if (resolvedCount < fResolvedBlocks.size()) {
706                     return Resolved::Something;
707                 } else {
708                     return Resolved::Nothing;
709                 }
710             });
711 
712             this->finish(block, fHeight, advanceX);
713         });
714 
715         return true;
716     });
717 
718     return result;
719 }
720 
721 // When we extend TextRange to the grapheme edges, we also extend glyphs range
clusteredText(GlyphRange & glyphs)722 TextRange OneLineShaper::clusteredText(GlyphRange& glyphs) {
723 
724     enum class Dir { left, right };
725     enum class Pos { inclusive, exclusive };
726 
727     // [left: right)
728     auto findBaseChar = [&](TextIndex index, Dir dir) -> TextIndex {
729 
730         if (dir == Dir::right) {
731             while (index < fCurrentRun->fTextRange.end) {
732                 if (this->fParagraph->codeUnitHasProperty(index,
733                                                           CodeUnitFlags::kGraphemeStart)) {
734                     return index;
735                 }
736                 ++index;
737             }
738             return fCurrentRun->fTextRange.end;
739         } else {
740             while (index > fCurrentRun->fTextRange.start) {
741                 if (this->fParagraph->codeUnitHasProperty(index,
742                                                           CodeUnitFlags::kGraphemeStart)) {
743                     return index;
744                 }
745                 --index;
746             }
747             return fCurrentRun->fTextRange.start;
748         }
749     };
750 
751     TextRange textRange(normalizeTextRange(glyphs));
752     textRange.start = findBaseChar(textRange.start, Dir::left);
753     textRange.end = findBaseChar(textRange.end, Dir::right);
754 
755     // Correct the glyphRange in case we extended the text to the grapheme edges
756     // TODO: code it without if (as a part of LTR/RTL refactoring)
757     if (fCurrentRun->leftToRight()) {
758         while (glyphs.start > 0 && clusterIndex(glyphs.start) > textRange.start) {
759           glyphs.start--;
760         }
761         while (glyphs.end < fCurrentRun->size() && clusterIndex(glyphs.end) < textRange.end) {
762           glyphs.end++;
763         }
764     } else {
765         while (glyphs.start > 0 && clusterIndex(glyphs.start - 1) < textRange.end) {
766           glyphs.start--;
767         }
768         while (glyphs.end < fCurrentRun->size() && clusterIndex(glyphs.end) > textRange.start) {
769           glyphs.end++;
770         }
771     }
772 
773     return { textRange.start, textRange.end };
774 }
775 
operator ==(const OneLineShaper::FontKey & other) const776 bool OneLineShaper::FontKey::operator==(const OneLineShaper::FontKey& other) const {
777     return fUnicode == other.fUnicode && fFontStyle == other.fFontStyle && fLocale == other.fLocale;
778 }
779 
operator ()(const OneLineShaper::FontKey & key) const780 size_t OneLineShaper::FontKey::Hasher::operator()(const OneLineShaper::FontKey& key) const {
781 
782     return SkGoodHash()(key.fUnicode) ^
783            SkGoodHash()(key.fFontStyle) ^
784            SkGoodHash()(key.fLocale.c_str());
785 }
786 
787 }  // namespace textlayout
788 }  // namespace skia
789