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1 // Copyright 2019 Google LLC.
2 #ifndef Run_DEFINED
3 #define Run_DEFINED
4 
5 #include "include/core/SkFont.h"
6 #include "include/core/SkFontMetrics.h"
7 #include "include/core/SkPoint.h"
8 #include "include/core/SkRect.h"
9 #include "include/core/SkScalar.h"
10 #include "include/core/SkSpan.h"
11 #include "include/core/SkTypes.h"
12 #include "include/private/base/SkTArray.h"
13 #include "modules/skparagraph/include/DartTypes.h"
14 #include "modules/skparagraph/include/TextStyle.h"
15 #include "modules/skshaper/include/SkShaper.h"
16 
17 #include <math.h>
18 #include <algorithm>
19 #include <functional>
20 #include <limits>
21 #include <tuple>
22 
23 class SkTextBlobBuilder;
24 
25 namespace skia {
26 namespace textlayout {
27 
28 class Cluster;
29 class InternalLineMetrics;
30 class ParagraphImpl;
31 
32 typedef size_t RunIndex;
33 const size_t EMPTY_RUN = EMPTY_INDEX;
34 
35 typedef size_t ClusterIndex;
36 typedef SkRange<size_t> ClusterRange;
37 const size_t EMPTY_CLUSTER = EMPTY_INDEX;
38 const SkRange<size_t> EMPTY_CLUSTERS = EMPTY_RANGE;
39 
40 typedef size_t GraphemeIndex;
41 typedef SkRange<GraphemeIndex> GraphemeRange;
42 
43 typedef size_t GlyphIndex;
44 typedef SkRange<GlyphIndex> GlyphRange;
45 
46 // LTR: [start: end) where start <= end
47 // RTL: [end: start) where start >= end
48 class DirText {
DirText(bool dir,size_t s,size_t e)49     DirText(bool dir, size_t s, size_t e) : start(s), end(e) { }
isLeftToRight()50     bool isLeftToRight() const { return start <= end; }
51     size_t start;
52     size_t end;
53 };
54 
55 class Run {
56 public:
57     Run(ParagraphImpl* owner,
58         const SkShaper::RunHandler::RunInfo& info,
59         size_t firstChar,
60         SkScalar heightMultiplier,
61         bool useHalfLeading,
62         SkScalar baselineShift,
63         size_t index,
64         SkScalar shiftX);
65     Run(const Run&) = default;
66     Run& operator=(const Run&) = delete;
67     Run(Run&&) = default;
68     Run& operator=(Run&&) = delete;
69     ~Run() = default;
70 
setOwner(ParagraphImpl * owner)71     void setOwner(ParagraphImpl* owner) { fOwner = owner; }
72 
73     SkShaper::RunHandler::Buffer newRunBuffer();
74 
posX(size_t index)75     SkScalar posX(size_t index) const { return fPositions[index].fX; }
addX(size_t index,SkScalar shift)76     void addX(size_t index, SkScalar shift) { fPositions[index].fX += shift; }
posY(size_t index)77     SkScalar posY(size_t index) const { return fPositions[index].fY; }
size()78     size_t size() const { return fGlyphs.size(); }
setWidth(SkScalar width)79     void setWidth(SkScalar width) { fAdvance.fX = width; }
setHeight(SkScalar height)80     void setHeight(SkScalar height) { fAdvance.fY = height; }
shift(SkScalar shiftX,SkScalar shiftY)81     void shift(SkScalar shiftX, SkScalar shiftY) {
82         fOffset.fX += shiftX;
83         fOffset.fY += shiftY;
84     }
advance()85     SkVector advance() const {
86         return SkVector::Make(fAdvance.fX, fFontMetrics.fDescent - fFontMetrics.fAscent + fFontMetrics.fLeading);
87     }
offset()88     SkVector offset() const { return fOffset; }
ascent()89     SkScalar ascent() const { return fFontMetrics.fAscent + fBaselineShift; }
descent()90     SkScalar descent() const { return fFontMetrics.fDescent + fBaselineShift; }
leading()91     SkScalar leading() const { return fFontMetrics.fLeading; }
correctAscent()92     SkScalar correctAscent() const { return fCorrectAscent + fBaselineShift; }
correctDescent()93     SkScalar correctDescent() const { return fCorrectDescent + fBaselineShift; }
correctLeading()94     SkScalar correctLeading() const { return fCorrectLeading; }
font()95     const SkFont& font() const { return fFont; }
leftToRight()96     bool leftToRight() const { return fBidiLevel % 2 == 0; }
getTextDirection()97     TextDirection getTextDirection() const { return leftToRight() ? TextDirection::kLtr : TextDirection::kRtl; }
index()98     size_t index() const { return fIndex; }
heightMultiplier()99     SkScalar heightMultiplier() const { return fHeightMultiplier; }
useHalfLeading()100     bool useHalfLeading() const { return fUseHalfLeading; }
baselineShift()101     SkScalar baselineShift() const { return fBaselineShift; }
102     PlaceholderStyle* placeholderStyle() const;
isPlaceholder()103     bool isPlaceholder() const { return fPlaceholderIndex != std::numeric_limits<size_t>::max(); }
clusterIndex(size_t pos)104     size_t clusterIndex(size_t pos) const { return fClusterIndexes[pos]; }
globalClusterIndex(size_t pos)105     size_t globalClusterIndex(size_t pos) const { return fClusterStart + fClusterIndexes[pos]; }
106     SkScalar positionX(size_t pos) const;
107 
textRange()108     TextRange textRange() const { return fTextRange; }
clusterRange()109     ClusterRange clusterRange() const { return fClusterRange; }
110 
owner()111     ParagraphImpl* owner() const { return fOwner; }
112 
isEllipsis()113     bool isEllipsis() const { return fEllipsis; }
114 
115     void calculateMetrics();
116     void updateMetrics(InternalLineMetrics* endlineMetrics);
117 
setClusterRange(size_t from,size_t to)118     void setClusterRange(size_t from, size_t to) { fClusterRange = ClusterRange(from, to); }
clip()119     SkRect clip() const {
120         return SkRect::MakeXYWH(fOffset.fX, fOffset.fY, fAdvance.fX, fAdvance.fY);
121     }
122 
123     void addSpacesAtTheEnd(SkScalar space, Cluster* cluster);
124     SkScalar addSpacesEvenly(SkScalar space, Cluster* cluster);
125     SkScalar addSpacesEvenly(SkScalar space);
126     void shift(const Cluster* cluster, SkScalar offset);
127 
calculateHeight(LineMetricStyle ascentStyle,LineMetricStyle descentStyle)128     SkScalar calculateHeight(LineMetricStyle ascentStyle, LineMetricStyle descentStyle) const {
129         auto ascent = ascentStyle == LineMetricStyle::Typographic ? this->ascent()
130                                     : this->correctAscent();
131         auto descent = descentStyle == LineMetricStyle::Typographic ? this->descent()
132                                       : this->correctDescent();
133         return descent - ascent;
134     }
135     SkScalar calculateWidth(size_t start, size_t end, bool clip) const;
136 
137     void copyTo(SkTextBlobBuilder& builder, size_t pos, size_t size) const;
138 
139     template<typename Visitor>
140     void iterateThroughClustersInTextOrder(Visitor visitor);
141 
142     using ClusterVisitor = std::function<void(Cluster* cluster)>;
143     void iterateThroughClusters(const ClusterVisitor& visitor);
144 
145     std::tuple<bool, ClusterIndex, ClusterIndex> findLimitingClusters(TextRange text) const;
146     std::tuple<bool, TextIndex, TextIndex> findLimitingGlyphClusters(TextRange text) const;
147     std::tuple<bool, TextIndex, TextIndex> findLimitingGraphemes(TextRange text) const;
glyphs()148     SkSpan<const SkGlyphID> glyphs() const {
149         return SkSpan<const SkGlyphID>(fGlyphs.begin(), fGlyphs.size());
150     }
positions()151     SkSpan<const SkPoint> positions() const {
152         return SkSpan<const SkPoint>(fPositions.begin(), fPositions.size());
153     }
offsets()154     SkSpan<const SkPoint> offsets() const {
155         return SkSpan<const SkPoint>(fOffsets.begin(), fOffsets.size());
156     }
clusterIndexes()157     SkSpan<const uint32_t> clusterIndexes() const {
158         return SkSpan<const uint32_t>(fClusterIndexes.begin(), fClusterIndexes.size());
159     }
160 
commit()161     void commit() { }
162 
resetJustificationShifts()163     void resetJustificationShifts() {
164         fJustificationShifts.clear();
165     }
166 
167     bool isResolved() const;
168 private:
169     friend class ParagraphImpl;
170     friend class TextLine;
171     friend class InternalLineMetrics;
172     friend class ParagraphCache;
173     friend class OneLineShaper;
174 
175     ParagraphImpl* fOwner;
176     TextRange fTextRange;
177     ClusterRange fClusterRange;
178 
179     SkFont fFont;
180     size_t fPlaceholderIndex;
181     size_t fIndex;
182     SkVector fAdvance;
183     SkVector fOffset;
184     TextIndex fClusterStart;
185     SkShaper::RunHandler::Range fUtf8Range;
186 
187     // These fields are not modified after shaping completes and can safely be
188     // shared among copies of the run that are held by different paragraphs.
189     struct GlyphData {
190         SkSTArray<64, SkGlyphID, true> glyphs;
191         SkSTArray<64, SkPoint, true> positions;
192         SkSTArray<64, SkPoint, true> offsets;
193         SkSTArray<64, uint32_t, true> clusterIndexes;
194     };
195     std::shared_ptr<GlyphData> fGlyphData;
196     SkSTArray<64, SkGlyphID, true>& fGlyphs;
197     SkSTArray<64, SkPoint, true>& fPositions;
198     SkSTArray<64, SkPoint, true>& fOffsets;
199     SkSTArray<64, uint32_t, true>& fClusterIndexes;
200 
201     SkSTArray<64, SkPoint, true> fJustificationShifts; // For justification (current and prev shifts)
202 
203     SkFontMetrics fFontMetrics;
204     const SkScalar fHeightMultiplier;
205     const bool fUseHalfLeading;
206     const SkScalar fBaselineShift;
207     SkScalar fCorrectAscent;
208     SkScalar fCorrectDescent;
209     SkScalar fCorrectLeading;
210 
211     bool fEllipsis;
212     uint8_t fBidiLevel;
213 };
214 
215 template<typename Visitor>
iterateThroughClustersInTextOrder(Visitor visitor)216 void Run::iterateThroughClustersInTextOrder(Visitor visitor) {
217     // Can't figure out how to do it with one code for both cases without 100 ifs
218     // Can't go through clusters because there are no cluster table yet
219     if (leftToRight()) {
220         size_t start = 0;
221         size_t cluster = this->clusterIndex(start);
222         for (size_t glyph = 1; glyph <= this->size(); ++glyph) {
223             auto nextCluster = this->clusterIndex(glyph);
224             if (nextCluster <= cluster) {
225                 continue;
226             }
227 
228             visitor(start,
229                     glyph,
230                     fClusterStart + cluster,
231                     fClusterStart + nextCluster,
232                     this->calculateWidth(start, glyph, glyph == size()),
233                     this->calculateHeight(LineMetricStyle::CSS, LineMetricStyle::CSS));
234 
235             start = glyph;
236             cluster = nextCluster;
237         }
238     } else {
239         size_t glyph = this->size();
240         size_t cluster = this->fUtf8Range.begin();
241         for (int32_t start = this->size() - 1; start >= 0; --start) {
242             size_t nextCluster =
243                     start == 0 ? this->fUtf8Range.end() : this->clusterIndex(start - 1);
244             if (nextCluster <= cluster) {
245                 continue;
246             }
247 
248             visitor(start,
249                     glyph,
250                     fClusterStart + cluster,
251                     fClusterStart + nextCluster,
252                     this->calculateWidth(start, glyph, glyph == 0),
253                     this->calculateHeight(LineMetricStyle::CSS, LineMetricStyle::CSS));
254 
255             glyph = start;
256             cluster = nextCluster;
257         }
258     }
259 }
260 
261 class Cluster {
262 public:
263     enum BreakType {
264         None,
265         GraphemeBreak,  // calculated for all clusters (UBRK_CHARACTER)
266         SoftLineBreak,  // calculated for all clusters (UBRK_LINE & UBRK_CHARACTER)
267         HardLineBreak,  // calculated for all clusters (UBRK_LINE)
268     };
269 
Cluster()270     Cluster()
271             : fOwner(nullptr)
272             , fRunIndex(EMPTY_RUN)
273             , fTextRange(EMPTY_TEXT)
274             , fGraphemeRange(EMPTY_RANGE)
275             , fStart(0)
276             , fEnd()
277             , fWidth()
278             , fHeight()
279             , fHalfLetterSpacing(0.0) {}
280 
281     Cluster(ParagraphImpl* owner,
282             RunIndex runIndex,
283             size_t start,
284             size_t end,
285             SkSpan<const char> text,
286             SkScalar width,
287             SkScalar height);
288 
Cluster(TextRange textRange)289     Cluster(TextRange textRange) : fTextRange(textRange), fGraphemeRange(EMPTY_RANGE) { }
290 
291     Cluster(const Cluster&) = default;
292     ~Cluster() = default;
293 
294     SkScalar sizeToChar(TextIndex ch) const;
295     SkScalar sizeFromChar(TextIndex ch) const;
296 
297     size_t roundPos(SkScalar s) const;
298 
space(SkScalar shift)299     void space(SkScalar shift) {
300         fWidth += shift;
301     }
302 
getOwner()303     ParagraphImpl* getOwner() const { return fOwner; }
setOwner(ParagraphImpl * owner)304     void setOwner(ParagraphImpl* owner) { fOwner = owner; }
305 
isWhitespaceBreak()306     bool isWhitespaceBreak() const { return fIsWhiteSpaceBreak; }
isIntraWordBreak()307     bool isIntraWordBreak() const { return fIsIntraWordBreak; }
isHardBreak()308     bool isHardBreak() const { return fIsHardBreak; }
309 
310     bool isSoftBreak() const;
311     bool isGraphemeBreak() const;
canBreakLineAfter()312     bool canBreakLineAfter() const { return isHardBreak() || isSoftBreak(); }
startPos()313     size_t startPos() const { return fStart; }
endPos()314     size_t endPos() const { return fEnd; }
width()315     SkScalar width() const { return fWidth; }
height()316     SkScalar height() const { return fHeight; }
size()317     size_t size() const { return fEnd - fStart; }
318 
setHalfLetterSpacing(SkScalar halfLetterSpacing)319     void setHalfLetterSpacing(SkScalar halfLetterSpacing) { fHalfLetterSpacing = halfLetterSpacing; }
getHalfLetterSpacing()320     SkScalar getHalfLetterSpacing() const { return fHalfLetterSpacing; }
321 
textRange()322     TextRange textRange() const { return fTextRange; }
323 
runIndex()324     RunIndex runIndex() const { return fRunIndex; }
owner()325     ParagraphImpl* owner() const { return fOwner; }
326 
327     Run* runOrNull() const;
328     Run& run() const;
329     SkFont font() const;
330 
331     SkScalar trimmedWidth(size_t pos) const;
332 
contains(TextIndex ch)333     bool contains(TextIndex ch) const { return ch >= fTextRange.start && ch < fTextRange.end; }
334 
belongs(TextRange text)335     bool belongs(TextRange text) const {
336         return fTextRange.start >= text.start && fTextRange.end <= text.end;
337     }
338 
startsIn(TextRange text)339     bool startsIn(TextRange text) const {
340         return fTextRange.start >= text.start && fTextRange.start < text.end;
341     }
342 
343 private:
344 
345     friend ParagraphImpl;
346 
347     ParagraphImpl* fOwner;
348     RunIndex fRunIndex;
349     TextRange fTextRange;
350     GraphemeRange fGraphemeRange;
351 
352     size_t fStart;
353     size_t fEnd;
354     SkScalar fWidth;
355     SkScalar fHeight;
356     SkScalar fHalfLetterSpacing;
357 
358     bool fIsWhiteSpaceBreak;
359     bool fIsIntraWordBreak;
360     bool fIsHardBreak;
361 };
362 
363 class InternalLineMetrics {
364 public:
365 
InternalLineMetrics()366     InternalLineMetrics() {
367         clean();
368         fForceStrut = false;
369     }
370 
InternalLineMetrics(bool forceStrut)371     InternalLineMetrics(bool forceStrut) {
372         clean();
373         fForceStrut = forceStrut;
374     }
375 
InternalLineMetrics(SkScalar a,SkScalar d,SkScalar l)376     InternalLineMetrics(SkScalar a, SkScalar d, SkScalar l) {
377         fAscent = a;
378         fDescent = d;
379         fLeading = l;
380         fRawAscent = a;
381         fRawDescent = d;
382         fRawLeading = l;
383         fForceStrut = false;
384     }
385 
InternalLineMetrics(SkScalar a,SkScalar d,SkScalar l,SkScalar ra,SkScalar rd,SkScalar rl)386     InternalLineMetrics(SkScalar a, SkScalar d, SkScalar l, SkScalar ra, SkScalar rd, SkScalar rl) {
387         fAscent = a;
388         fDescent = d;
389         fLeading = l;
390         fRawAscent = ra;
391         fRawDescent = rd;
392         fRawLeading = rl;
393         fForceStrut = false;
394     }
395 
InternalLineMetrics(const SkFont & font,bool forceStrut)396     InternalLineMetrics(const SkFont& font, bool forceStrut) {
397         SkFontMetrics metrics;
398         font.getMetrics(&metrics);
399         fAscent = metrics.fAscent;
400         fDescent = metrics.fDescent;
401         fLeading = metrics.fLeading;
402         fRawAscent = metrics.fAscent;
403         fRawDescent = metrics.fDescent;
404         fRawLeading = metrics.fLeading;
405         fForceStrut = forceStrut;
406     }
407 
add(Run * run)408     void add(Run* run) {
409         if (fForceStrut) {
410             return;
411         }
412         fAscent = std::min(fAscent, run->correctAscent());
413         fDescent = std::max(fDescent, run->correctDescent());
414         fLeading = std::max(fLeading, run->correctLeading());
415 
416         fRawAscent = std::min(fRawAscent, run->ascent());
417         fRawDescent = std::max(fRawDescent, run->descent());
418         fRawLeading = std::max(fRawLeading, run->leading());
419     }
420 
add(InternalLineMetrics other)421     void add(InternalLineMetrics other) {
422         fAscent = std::min(fAscent, other.fAscent);
423         fDescent = std::max(fDescent, other.fDescent);
424         fLeading = std::max(fLeading, other.fLeading);
425         fRawAscent = std::min(fRawAscent, other.fRawAscent);
426         fRawDescent = std::max(fRawDescent, other.fRawDescent);
427         fRawLeading = std::max(fRawLeading, other.fRawLeading);
428     }
429 
clean()430     void clean() {
431         fAscent = SK_ScalarMax;
432         fDescent = SK_ScalarMin;
433         fLeading = 0;
434         fRawAscent = SK_ScalarMax;
435         fRawDescent = SK_ScalarMin;
436         fRawLeading = 0;
437     }
438 
isClean()439     bool isClean() {
440         return (fAscent == SK_ScalarMax &&
441                 fDescent == SK_ScalarMin &&
442                 fLeading == 0 &&
443                 fRawAscent == SK_ScalarMax &&
444                 fRawDescent == SK_ScalarMin &&
445                 fRawLeading == 0);
446     }
447 
delta()448     SkScalar delta() const { return height() - ideographicBaseline(); }
449 
updateLineMetrics(InternalLineMetrics & metrics)450     void updateLineMetrics(InternalLineMetrics& metrics) {
451         if (metrics.fForceStrut) {
452             metrics.fAscent = fAscent;
453             metrics.fDescent = fDescent;
454             metrics.fLeading = fLeading;
455             metrics.fRawAscent = fRawAscent;
456             metrics.fRawDescent = fRawDescent;
457             metrics.fRawLeading = fRawLeading;
458         } else {
459             // This is another of those flutter changes. To be removed...
460             metrics.fAscent = std::min(metrics.fAscent, fAscent - fLeading / 2.0f);
461             metrics.fDescent = std::max(metrics.fDescent, fDescent + fLeading / 2.0f);
462             metrics.fRawAscent = std::min(metrics.fRawAscent, fRawAscent - fRawLeading / 2.0f);
463             metrics.fRawDescent = std::max(metrics.fRawDescent, fRawDescent + fRawLeading / 2.0f);
464         }
465     }
466 
runTop(const Run * run,LineMetricStyle ascentStyle)467     SkScalar runTop(const Run* run, LineMetricStyle ascentStyle) const {
468         return fLeading / 2 - fAscent +
469           (ascentStyle == LineMetricStyle::Typographic ? run->ascent() : run->correctAscent()) + delta();
470     }
471 
height()472     SkScalar height() const {
473         return ::round((double)fDescent - fAscent + fLeading);
474     }
475 
update(SkScalar a,SkScalar d,SkScalar l)476     void update(SkScalar a, SkScalar d, SkScalar l) {
477         fAscent = a;
478         fDescent = d;
479         fLeading = l;
480     }
481 
updateRawData(SkScalar ra,SkScalar rd)482     void updateRawData(SkScalar ra, SkScalar rd) {
483         fRawAscent = ra;
484         fRawDescent = rd;
485     }
486 
alphabeticBaseline()487     SkScalar alphabeticBaseline() const { return fLeading / 2 - fAscent; }
ideographicBaseline()488     SkScalar ideographicBaseline() const { return fDescent - fAscent + fLeading; }
deltaBaselines()489     SkScalar deltaBaselines() const { return fLeading / 2 + fDescent; }
baseline()490     SkScalar baseline() const { return fLeading / 2 - fAscent; }
ascent()491     SkScalar ascent() const { return fAscent; }
descent()492     SkScalar descent() const { return fDescent; }
leading()493     SkScalar leading() const { return fLeading; }
rawAscent()494     SkScalar rawAscent() const { return fRawAscent; }
rawDescent()495     SkScalar rawDescent() const { return fRawDescent; }
setForceStrut(bool value)496     void setForceStrut(bool value) { fForceStrut = value; }
getForceStrut()497     bool getForceStrut() const { return fForceStrut; }
498 
499 private:
500 
501     friend class ParagraphImpl;
502     friend class TextWrapper;
503     friend class TextLine;
504 
505     SkScalar fAscent;
506     SkScalar fDescent;
507     SkScalar fLeading;
508 
509     SkScalar fRawAscent;
510     SkScalar fRawDescent;
511     SkScalar fRawLeading;
512 
513     bool fForceStrut;
514 };
515 }  // namespace textlayout
516 }  // namespace skia
517 
518 #endif  // Run_DEFINED
519