blob: 94c899d01e4ac53498272d7927e4a5cd7a4ef40d [file] [log] [blame]
Ben Wagnera25fbef2017-08-30 13:56:19 -04001/*
2 * Copyright 2016 Google Inc.
3 *
4 * Use of this source code is governed by a BSD-style license that can be
5 * found in the LICENSE file.
6 */
7
8#include <hb-ot.h>
Ben Wagner8d45a382017-11-16 10:08:28 -05009#include <unicode/brkiter.h>
10#include <unicode/locid.h>
Ben Wagnera25fbef2017-08-30 13:56:19 -040011#include <unicode/stringpiece.h>
12#include <unicode/ubidi.h>
Ben Wagner8d45a382017-11-16 10:08:28 -050013#include <unicode/uchriter.h>
Ben Wagnera25fbef2017-08-30 13:56:19 -040014#include <unicode/unistr.h>
Ben Wagner8d45a382017-11-16 10:08:28 -050015#include <unicode/uscript.h>
Ben Wagnera25fbef2017-08-30 13:56:19 -040016
Ben Wagner67e3a302017-09-05 14:46:19 -040017#include "SkFontMgr.h"
Hal Canary0e07ad72018-02-08 13:06:56 -050018#include "SkLoadICU.h"
19#include "SkOnce.h"
Ben Wagnera25fbef2017-08-30 13:56:19 -040020#include "SkShaper.h"
21#include "SkStream.h"
Ben Wagner8d45a382017-11-16 10:08:28 -050022#include "SkTDPQueue.h"
23#include "SkTLazy.h"
Ben Wagnere0001732017-08-31 16:26:26 -040024#include "SkTemplates.h"
Ben Wagnera25fbef2017-08-30 13:56:19 -040025#include "SkTextBlob.h"
Hal Canaryc640d0d2018-06-13 09:59:02 -040026#include "SkTo.h"
Ben Wagnera25fbef2017-08-30 13:56:19 -040027#include "SkTypeface.h"
28#include "SkUtils.h"
29
Ben Wagnera25fbef2017-08-30 13:56:19 -040030namespace {
31template <class T, void(*P)(T*)> using resource = std::unique_ptr<T, SkFunctionWrapper<void, T, P>>;
32using HBBlob = resource<hb_blob_t , hb_blob_destroy >;
33using HBFace = resource<hb_face_t , hb_face_destroy >;
34using HBFont = resource<hb_font_t , hb_font_destroy >;
35using HBBuffer = resource<hb_buffer_t, hb_buffer_destroy>;
36using ICUBiDi = resource<UBiDi , ubidi_close >;
37
38HBBlob stream_to_blob(std::unique_ptr<SkStreamAsset> asset) {
39 size_t size = asset->getLength();
40 HBBlob blob;
41 if (const void* base = asset->getMemoryBase()) {
42 blob.reset(hb_blob_create((char*)base, SkToUInt(size),
43 HB_MEMORY_MODE_READONLY, asset.release(),
44 [](void* p) { delete (SkStreamAsset*)p; }));
45 } else {
46 // SkDebugf("Extra SkStreamAsset copy\n");
47 void* ptr = size ? sk_malloc_throw(size) : nullptr;
48 asset->read(ptr, size);
49 blob.reset(hb_blob_create((char*)ptr, SkToUInt(size),
50 HB_MEMORY_MODE_READONLY, ptr, sk_free));
51 }
52 SkASSERT(blob);
53 hb_blob_make_immutable(blob.get());
54 return blob;
55}
Ben Wagnera25fbef2017-08-30 13:56:19 -040056
Ben Wagner8d45a382017-11-16 10:08:28 -050057HBFont create_hb_font(SkTypeface* tf) {
Ben Wagnera25fbef2017-08-30 13:56:19 -040058 int index;
Ben Wagnere0001732017-08-31 16:26:26 -040059 HBBlob blob(stream_to_blob(std::unique_ptr<SkStreamAsset>(tf->openStream(&index))));
Ben Wagnera25fbef2017-08-30 13:56:19 -040060 HBFace face(hb_face_create(blob.get(), (unsigned)index));
61 SkASSERT(face);
62 if (!face) {
Ben Wagnere0001732017-08-31 16:26:26 -040063 return nullptr;
Ben Wagnera25fbef2017-08-30 13:56:19 -040064 }
65 hb_face_set_index(face.get(), (unsigned)index);
Ben Wagnere0001732017-08-31 16:26:26 -040066 hb_face_set_upem(face.get(), tf->getUnitsPerEm());
Ben Wagnera25fbef2017-08-30 13:56:19 -040067
Ben Wagnere0001732017-08-31 16:26:26 -040068 HBFont font(hb_font_create(face.get()));
69 SkASSERT(font);
70 if (!font) {
71 return nullptr;
72 }
Ben Wagnere0001732017-08-31 16:26:26 -040073 hb_ot_font_set_funcs(font.get());
74 int axis_count = tf->getVariationDesignPosition(nullptr, 0);
75 if (axis_count > 0) {
76 SkAutoSTMalloc<4, SkFontArguments::VariationPosition::Coordinate> axis_values(axis_count);
77 if (tf->getVariationDesignPosition(axis_values, axis_count) == axis_count) {
78 hb_font_set_variations(font.get(),
79 reinterpret_cast<hb_variation_t*>(axis_values.get()),
80 axis_count);
81 }
82 }
83 return font;
84}
85
Ben Wagner8d45a382017-11-16 10:08:28 -050086class RunIterator {
87public:
88 virtual ~RunIterator() {}
89 virtual void consume() = 0;
90 // Pointer one past the last (utf8) element in the current run.
91 virtual const char* endOfCurrentRun() const = 0;
92 virtual bool atEnd() const = 0;
93 bool operator<(const RunIterator& that) const {
94 return this->endOfCurrentRun() < that.endOfCurrentRun();
95 }
96};
97
98class BiDiRunIterator : public RunIterator {
99public:
100 static SkTLazy<BiDiRunIterator> Make(const char* utf8, size_t utf8Bytes, UBiDiLevel level) {
101 SkTLazy<BiDiRunIterator> ret;
102
103 // ubidi only accepts utf16 (though internally it basically works on utf32 chars).
104 // We want an ubidi_setPara(UBiDi*, UText*, UBiDiLevel, UBiDiLevel*, UErrorCode*);
105 if (!SkTFitsIn<int32_t>(utf8Bytes)) {
106 SkDebugf("Bidi error: text too long");
107 return ret;
108 }
109 icu::UnicodeString utf16 = icu::UnicodeString::fromUTF8(icu::StringPiece(utf8, utf8Bytes));
110
111 UErrorCode status = U_ZERO_ERROR;
112 ICUBiDi bidi(ubidi_openSized(utf16.length(), 0, &status));
113 if (U_FAILURE(status)) {
114 SkDebugf("Bidi error: %s", u_errorName(status));
115 return ret;
116 }
117 SkASSERT(bidi);
118
119 // The required lifetime of utf16 isn't well documented.
120 // It appears it isn't used after ubidi_setPara except through ubidi_getText.
121 ubidi_setPara(bidi.get(), utf16.getBuffer(), utf16.length(), level, nullptr, &status);
122 if (U_FAILURE(status)) {
123 SkDebugf("Bidi error: %s", u_errorName(status));
124 return ret;
125 }
126
127 ret.init(utf8, std::move(bidi));
128 return ret;
129 }
130 BiDiRunIterator(const char* utf8, ICUBiDi bidi)
131 : fBidi(std::move(bidi))
132 , fEndOfCurrentRun(utf8)
133 , fUTF16LogicalPosition(0)
134 , fLevel(UBIDI_DEFAULT_LTR)
135 {}
136 void consume() override {
137 SkASSERT(fUTF16LogicalPosition < ubidi_getLength(fBidi.get()));
138 int32_t endPosition = ubidi_getLength(fBidi.get());
139 fLevel = ubidi_getLevelAt(fBidi.get(), fUTF16LogicalPosition);
Ben Wagner5a907a72018-01-25 16:03:22 -0500140 SkUnichar u = SkUTF8_NextUnichar(&fEndOfCurrentRun);
141 fUTF16LogicalPosition += SkUTF16_FromUnichar(u);
Ben Wagner8d45a382017-11-16 10:08:28 -0500142 UBiDiLevel level;
143 while (fUTF16LogicalPosition < endPosition) {
144 level = ubidi_getLevelAt(fBidi.get(), fUTF16LogicalPosition);
145 if (level != fLevel) {
146 break;
147 }
Ben Wagner5a907a72018-01-25 16:03:22 -0500148 u = SkUTF8_NextUnichar(&fEndOfCurrentRun);
149 fUTF16LogicalPosition += SkUTF16_FromUnichar(u);
Ben Wagner8d45a382017-11-16 10:08:28 -0500150 }
151 }
152 const char* endOfCurrentRun() const override {
153 return fEndOfCurrentRun;
154 }
155 bool atEnd() const override {
156 return fUTF16LogicalPosition == ubidi_getLength(fBidi.get());
157 }
158
159 UBiDiLevel currentLevel() const {
160 return fLevel;
161 }
162private:
163 ICUBiDi fBidi;
164 const char* fEndOfCurrentRun;
165 int32_t fUTF16LogicalPosition;
166 UBiDiLevel fLevel;
167};
168
169class ScriptRunIterator : public RunIterator {
170public:
171 static SkTLazy<ScriptRunIterator> Make(const char* utf8, size_t utf8Bytes,
172 hb_unicode_funcs_t* hbUnicode)
173 {
174 SkTLazy<ScriptRunIterator> ret;
175 ret.init(utf8, utf8Bytes, hbUnicode);
176 return ret;
177 }
178 ScriptRunIterator(const char* utf8, size_t utf8Bytes, hb_unicode_funcs_t* hbUnicode)
179 : fCurrent(utf8), fEnd(fCurrent + utf8Bytes)
180 , fHBUnicode(hbUnicode)
181 , fCurrentScript(HB_SCRIPT_UNKNOWN)
182 {}
183 void consume() override {
184 SkASSERT(fCurrent < fEnd);
185 SkUnichar u = SkUTF8_NextUnichar(&fCurrent);
186 fCurrentScript = hb_unicode_script(fHBUnicode, u);
187 while (fCurrent < fEnd) {
188 const char* prev = fCurrent;
189 u = SkUTF8_NextUnichar(&fCurrent);
190 const hb_script_t script = hb_unicode_script(fHBUnicode, u);
191 if (script != fCurrentScript) {
192 if (fCurrentScript == HB_SCRIPT_INHERITED || fCurrentScript == HB_SCRIPT_COMMON) {
193 fCurrentScript = script;
194 } else if (script == HB_SCRIPT_INHERITED || script == HB_SCRIPT_COMMON) {
195 continue;
196 } else {
197 fCurrent = prev;
198 break;
199 }
200 }
201 }
202 if (fCurrentScript == HB_SCRIPT_INHERITED) {
203 fCurrentScript = HB_SCRIPT_COMMON;
204 }
205 }
206 const char* endOfCurrentRun() const override {
207 return fCurrent;
208 }
209 bool atEnd() const override {
210 return fCurrent == fEnd;
211 }
212
213 hb_script_t currentScript() const {
214 return fCurrentScript;
215 }
216private:
217 const char* fCurrent;
218 const char* fEnd;
219 hb_unicode_funcs_t* fHBUnicode;
220 hb_script_t fCurrentScript;
221};
222
223class FontRunIterator : public RunIterator {
224public:
225 static SkTLazy<FontRunIterator> Make(const char* utf8, size_t utf8Bytes,
226 sk_sp<SkTypeface> typeface,
227 hb_font_t* hbFace,
228 sk_sp<SkFontMgr> fallbackMgr)
229 {
230 SkTLazy<FontRunIterator> ret;
231 ret.init(utf8, utf8Bytes, std::move(typeface), hbFace, std::move(fallbackMgr));
232 return ret;
233 }
234 FontRunIterator(const char* utf8, size_t utf8Bytes, sk_sp<SkTypeface> typeface,
235 hb_font_t* hbFace, sk_sp<SkFontMgr> fallbackMgr)
236 : fCurrent(utf8), fEnd(fCurrent + utf8Bytes)
237 , fFallbackMgr(std::move(fallbackMgr))
238 , fHBFont(hbFace), fTypeface(std::move(typeface))
239 , fFallbackHBFont(nullptr), fFallbackTypeface(nullptr)
240 , fCurrentHBFont(fHBFont), fCurrentTypeface(fTypeface.get())
241 {}
242 void consume() override {
243 SkASSERT(fCurrent < fEnd);
244 SkUnichar u = SkUTF8_NextUnichar(&fCurrent);
245 // If the starting typeface can handle this character, use it.
246 if (fTypeface->charsToGlyphs(&u, SkTypeface::kUTF32_Encoding, nullptr, 1)) {
247 fFallbackTypeface.reset();
248 // If not, try to find a fallback typeface
249 } else {
250 fFallbackTypeface.reset(fFallbackMgr->matchFamilyStyleCharacter(
251 nullptr, fTypeface->fontStyle(), nullptr, 0, u));
252 }
253
254 if (fFallbackTypeface) {
255 fFallbackHBFont = create_hb_font(fFallbackTypeface.get());
256 fCurrentTypeface = fFallbackTypeface.get();
257 fCurrentHBFont = fFallbackHBFont.get();
258 } else {
259 fFallbackHBFont.reset();
260 fCurrentTypeface = fTypeface.get();
261 fCurrentHBFont = fHBFont;
262 }
263
264 while (fCurrent < fEnd) {
265 const char* prev = fCurrent;
266 u = SkUTF8_NextUnichar(&fCurrent);
267
268 // If using a fallback and the initial typeface has this character, stop fallback.
269 if (fFallbackTypeface &&
270 fTypeface->charsToGlyphs(&u, SkTypeface::kUTF32_Encoding, nullptr, 1))
271 {
272 fCurrent = prev;
273 return;
274 }
275 // If the current typeface cannot handle this character, stop using it.
276 if (!fCurrentTypeface->charsToGlyphs(&u, SkTypeface::kUTF32_Encoding, nullptr, 1)) {
277 fCurrent = prev;
278 return;
279 }
280 }
281 }
282 const char* endOfCurrentRun() const override {
283 return fCurrent;
284 }
285 bool atEnd() const override {
286 return fCurrent == fEnd;
287 }
288
289 SkTypeface* currentTypeface() const {
290 return fCurrentTypeface;
291 }
292 hb_font_t* currentHBFont() const {
293 return fCurrentHBFont;
294 }
295private:
296 const char* fCurrent;
297 const char* fEnd;
298 sk_sp<SkFontMgr> fFallbackMgr;
299 hb_font_t* fHBFont;
300 sk_sp<SkTypeface> fTypeface;
301 HBFont fFallbackHBFont;
302 sk_sp<SkTypeface> fFallbackTypeface;
303 hb_font_t* fCurrentHBFont;
304 SkTypeface* fCurrentTypeface;
305};
306
307class RunIteratorQueue {
308public:
309 void insert(RunIterator* runIterator) {
310 fRunIterators.insert(runIterator);
311 }
312
313 bool advanceRuns() {
314 const RunIterator* leastRun = fRunIterators.peek();
315 if (leastRun->atEnd()) {
316 SkASSERT(this->allRunsAreAtEnd());
317 return false;
318 }
319 const char* leastEnd = leastRun->endOfCurrentRun();
320 RunIterator* currentRun = nullptr;
321 SkDEBUGCODE(const char* previousEndOfCurrentRun);
322 while ((currentRun = fRunIterators.peek())->endOfCurrentRun() <= leastEnd) {
323 fRunIterators.pop();
324 SkDEBUGCODE(previousEndOfCurrentRun = currentRun->endOfCurrentRun());
325 currentRun->consume();
326 SkASSERT(previousEndOfCurrentRun < currentRun->endOfCurrentRun());
327 fRunIterators.insert(currentRun);
328 }
329 return true;
330 }
331
332 const char* endOfCurrentRun() const {
333 return fRunIterators.peek()->endOfCurrentRun();
334 }
335
336private:
337 bool allRunsAreAtEnd() const {
338 for (int i = 0; i < fRunIterators.count(); ++i) {
339 if (!fRunIterators.at(i)->atEnd()) {
340 return false;
341 }
342 }
343 return true;
344 }
345
346 static bool CompareRunIterator(RunIterator* const& a, RunIterator* const& b) {
347 return *a < *b;
348 }
349 SkTDPQueue<RunIterator*, CompareRunIterator> fRunIterators;
350};
351
352struct ShapedGlyph {
353 SkGlyphID fID;
354 uint32_t fCluster;
355 SkPoint fOffset;
356 SkVector fAdvance;
357 bool fMayLineBreakBefore;
358 bool fMustLineBreakBefore;
359 bool fHasVisual;
360};
361struct ShapedRun {
362 ShapedRun(const char* utf8Start, const char* utf8End, int numGlyphs, const SkPaint& paint,
363 UBiDiLevel level, std::unique_ptr<ShapedGlyph[]> glyphs)
364 : fUtf8Start(utf8Start), fUtf8End(utf8End), fNumGlyphs(numGlyphs), fPaint(paint)
365 , fLevel(level), fGlyphs(std::move(glyphs))
366 {}
367
368 const char* fUtf8Start;
369 const char* fUtf8End;
370 int fNumGlyphs;
371 SkPaint fPaint;
372 UBiDiLevel fLevel;
373 std::unique_ptr<ShapedGlyph[]> fGlyphs;
374};
375
376static constexpr bool is_LTR(UBiDiLevel level) {
377 return (level & 1) == 0;
378}
379
380static void append(SkTextBlobBuilder* b, const ShapedRun& run, int start, int end, SkPoint* p) {
381 unsigned len = end - start;
382 auto runBuffer = b->allocRunTextPos(run.fPaint, len, run.fUtf8End - run.fUtf8Start, SkString());
383 memcpy(runBuffer.utf8text, run.fUtf8Start, run.fUtf8End - run.fUtf8Start);
384
385 for (unsigned i = 0; i < len; i++) {
386 // Glyphs are in logical order, but output ltr since PDF readers seem to expect that.
387 const ShapedGlyph& glyph = run.fGlyphs[is_LTR(run.fLevel) ? start + i : end - 1 - i];
388 runBuffer.glyphs[i] = glyph.fID;
389 runBuffer.clusters[i] = glyph.fCluster;
390 reinterpret_cast<SkPoint*>(runBuffer.pos)[i] =
391 SkPoint::Make(p->fX + glyph.fOffset.fX, p->fY - glyph.fOffset.fY);
392 p->fX += glyph.fAdvance.fX;
393 p->fY += glyph.fAdvance.fY;
394 }
395}
396
397struct ShapedRunGlyphIterator {
398 ShapedRunGlyphIterator(const SkTArray<ShapedRun>& origRuns)
399 : fRuns(&origRuns), fRunIndex(0), fGlyphIndex(0)
400 { }
401
402 ShapedRunGlyphIterator(const ShapedRunGlyphIterator& that) = default;
403 ShapedRunGlyphIterator& operator=(const ShapedRunGlyphIterator& that) = default;
404 bool operator==(const ShapedRunGlyphIterator& that) const {
405 return fRuns == that.fRuns &&
406 fRunIndex == that.fRunIndex &&
407 fGlyphIndex == that.fGlyphIndex;
408 }
409 bool operator!=(const ShapedRunGlyphIterator& that) const {
410 return fRuns != that.fRuns ||
411 fRunIndex != that.fRunIndex ||
412 fGlyphIndex != that.fGlyphIndex;
413 }
414
415 ShapedGlyph* next() {
416 const SkTArray<ShapedRun>& runs = *fRuns;
417 SkASSERT(fRunIndex < runs.count());
418 SkASSERT(fGlyphIndex < runs[fRunIndex].fNumGlyphs);
419
420 ++fGlyphIndex;
421 if (fGlyphIndex == runs[fRunIndex].fNumGlyphs) {
422 fGlyphIndex = 0;
423 ++fRunIndex;
424 if (fRunIndex >= runs.count()) {
425 return nullptr;
426 }
427 }
428 return &runs[fRunIndex].fGlyphs[fGlyphIndex];
429 }
430
431 ShapedGlyph* current() {
432 const SkTArray<ShapedRun>& runs = *fRuns;
433 if (fRunIndex >= runs.count()) {
434 return nullptr;
435 }
436 return &runs[fRunIndex].fGlyphs[fGlyphIndex];
437 }
438
439 const SkTArray<ShapedRun>* fRuns;
440 int fRunIndex;
441 int fGlyphIndex;
442};
443
444} // namespace
445
446struct SkShaper::Impl {
447 HBFont fHarfBuzzFont;
448 HBBuffer fBuffer;
449 sk_sp<SkTypeface> fTypeface;
450 std::unique_ptr<icu::BreakIterator> fBreakIterator;
451};
452
Ben Wagnere0001732017-08-31 16:26:26 -0400453SkShaper::SkShaper(sk_sp<SkTypeface> tf) : fImpl(new Impl) {
Hal Canary0e07ad72018-02-08 13:06:56 -0500454 SkOnce once;
455 once([] { SkLoadICU(); });
456
Ben Wagnere0001732017-08-31 16:26:26 -0400457 fImpl->fTypeface = tf ? std::move(tf) : SkTypeface::MakeDefault();
458 fImpl->fHarfBuzzFont = create_hb_font(fImpl->fTypeface.get());
Ben Wagnera25fbef2017-08-30 13:56:19 -0400459 SkASSERT(fImpl->fHarfBuzzFont);
Ben Wagnera25fbef2017-08-30 13:56:19 -0400460 fImpl->fBuffer.reset(hb_buffer_create());
Ben Wagner8d45a382017-11-16 10:08:28 -0500461 SkASSERT(fImpl->fBuffer);
462
463 icu::Locale thai("th");
464 UErrorCode status = U_ZERO_ERROR;
465 fImpl->fBreakIterator.reset(icu::BreakIterator::createLineInstance(thai, status));
466 if (U_FAILURE(status)) {
467 SkDebugf("Could not create break iterator: %s", u_errorName(status));
468 SK_ABORT("");
469 }
Ben Wagnera25fbef2017-08-30 13:56:19 -0400470}
471
472SkShaper::~SkShaper() {}
473
Ben Wagner8d45a382017-11-16 10:08:28 -0500474bool SkShaper::good() const {
475 return fImpl->fHarfBuzzFont &&
476 fImpl->fBuffer &&
477 fImpl->fTypeface &&
478 fImpl->fBreakIterator;
479}
Ben Wagnera25fbef2017-08-30 13:56:19 -0400480
Ben Wagner5d4dd8b2018-01-25 14:37:17 -0500481SkPoint SkShaper::shape(SkTextBlobBuilder* builder,
482 const SkPaint& srcPaint,
483 const char* utf8,
484 size_t utf8Bytes,
485 bool leftToRight,
486 SkPoint point,
487 SkScalar width) const {
Ben Wagner67e3a302017-09-05 14:46:19 -0400488 sk_sp<SkFontMgr> fontMgr = SkFontMgr::RefDefault();
Ben Wagnera25fbef2017-08-30 13:56:19 -0400489 SkASSERT(builder);
Ben Wagner8d45a382017-11-16 10:08:28 -0500490 UBiDiLevel defaultLevel = leftToRight ? UBIDI_DEFAULT_LTR : UBIDI_DEFAULT_RTL;
Ben Wagnera25fbef2017-08-30 13:56:19 -0400491 //hb_script_t script = ...
Ben Wagnera25fbef2017-08-30 13:56:19 -0400492
Ben Wagner8d45a382017-11-16 10:08:28 -0500493 SkTArray<ShapedRun> runs;
494{
495 RunIteratorQueue runSegmenter;
Ben Wagnera25fbef2017-08-30 13:56:19 -0400496
Ben Wagner8d45a382017-11-16 10:08:28 -0500497 SkTLazy<BiDiRunIterator> maybeBidi(BiDiRunIterator::Make(utf8, utf8Bytes, defaultLevel));
498 BiDiRunIterator* bidi = maybeBidi.getMaybeNull();
499 if (!bidi) {
Ben Wagner5d4dd8b2018-01-25 14:37:17 -0500500 return point;
Ben Wagnera25fbef2017-08-30 13:56:19 -0400501 }
Ben Wagner8d45a382017-11-16 10:08:28 -0500502 runSegmenter.insert(bidi);
Ben Wagnera25fbef2017-08-30 13:56:19 -0400503
Ben Wagner8d45a382017-11-16 10:08:28 -0500504 hb_unicode_funcs_t* hbUnicode = hb_buffer_get_unicode_funcs(fImpl->fBuffer.get());
505 SkTLazy<ScriptRunIterator> maybeScript(ScriptRunIterator::Make(utf8, utf8Bytes, hbUnicode));
506 ScriptRunIterator* script = maybeScript.getMaybeNull();
507 if (!script) {
Ben Wagner5d4dd8b2018-01-25 14:37:17 -0500508 return point;
Ben Wagnera25fbef2017-08-30 13:56:19 -0400509 }
Ben Wagner8d45a382017-11-16 10:08:28 -0500510 runSegmenter.insert(script);
Ben Wagnera25fbef2017-08-30 13:56:19 -0400511
Ben Wagner8d45a382017-11-16 10:08:28 -0500512 SkTLazy<FontRunIterator> maybeFont(FontRunIterator::Make(utf8, utf8Bytes,
513 fImpl->fTypeface,
514 fImpl->fHarfBuzzFont.get(),
515 std::move(fontMgr)));
516 FontRunIterator* font = maybeFont.getMaybeNull();
517 if (!font) {
Ben Wagner5d4dd8b2018-01-25 14:37:17 -0500518 return point;
Ben Wagnera25fbef2017-08-30 13:56:19 -0400519 }
Ben Wagner8d45a382017-11-16 10:08:28 -0500520 runSegmenter.insert(font);
Ben Wagnera25fbef2017-08-30 13:56:19 -0400521
Ben Wagner8d45a382017-11-16 10:08:28 -0500522 icu::BreakIterator& breakIterator = *fImpl->fBreakIterator;
523 {
524 UErrorCode status = U_ZERO_ERROR;
525 UText utf8UText = UTEXT_INITIALIZER;
526 utext_openUTF8(&utf8UText, utf8, utf8Bytes, &status);
527 std::unique_ptr<UText, SkFunctionWrapper<UText*, UText, utext_close>> autoClose(&utf8UText);
528 if (U_FAILURE(status)) {
529 SkDebugf("Could not create utf8UText: %s", u_errorName(status));
Ben Wagner5d4dd8b2018-01-25 14:37:17 -0500530 return point;
Ben Wagner8d45a382017-11-16 10:08:28 -0500531 }
532 breakIterator.setText(&utf8UText, status);
533 //utext_close(&utf8UText);
534 if (U_FAILURE(status)) {
535 SkDebugf("Could not setText on break iterator: %s", u_errorName(status));
Ben Wagner5d4dd8b2018-01-25 14:37:17 -0500536 return point;
Ben Wagner8d45a382017-11-16 10:08:28 -0500537 }
Ben Wagnera25fbef2017-08-30 13:56:19 -0400538 }
539
Ben Wagner8d45a382017-11-16 10:08:28 -0500540 const char* utf8Start = nullptr;
541 const char* utf8End = utf8;
542 while (runSegmenter.advanceRuns()) {
543 utf8Start = utf8End;
544 utf8End = runSegmenter.endOfCurrentRun();
545
546 hb_buffer_t* buffer = fImpl->fBuffer.get();
547 SkAutoTCallVProc<hb_buffer_t, hb_buffer_clear_contents> autoClearBuffer(buffer);
548 hb_buffer_set_content_type(buffer, HB_BUFFER_CONTENT_TYPE_UNICODE);
549 hb_buffer_set_cluster_level(buffer, HB_BUFFER_CLUSTER_LEVEL_MONOTONE_CHARACTERS);
550
551 // Populate the hb_buffer directly with utf8 cluster indexes.
552 const char* utf8Current = utf8Start;
553 while (utf8Current < utf8End) {
554 unsigned int cluster = utf8Current - utf8Start;
555 hb_codepoint_t u = SkUTF8_NextUnichar(&utf8Current);
556 hb_buffer_add(buffer, u, cluster);
557 }
558
559 size_t utf8runLength = utf8End - utf8Start;
560 if (!SkTFitsIn<int>(utf8runLength)) {
561 SkDebugf("Shaping error: utf8 too long");
Ben Wagner5d4dd8b2018-01-25 14:37:17 -0500562 return point;
Ben Wagner8d45a382017-11-16 10:08:28 -0500563 }
564 hb_buffer_set_script(buffer, script->currentScript());
565 hb_direction_t direction = is_LTR(bidi->currentLevel()) ? HB_DIRECTION_LTR:HB_DIRECTION_RTL;
566 hb_buffer_set_direction(buffer, direction);
567 // TODO: language
568 hb_buffer_guess_segment_properties(buffer);
569 // TODO: features
570 hb_shape(font->currentHBFont(), buffer, nullptr, 0);
571 unsigned len = hb_buffer_get_length(buffer);
572 if (len == 0) {
573 continue;
574 }
575
576 if (direction == HB_DIRECTION_RTL) {
577 // Put the clusters back in logical order.
578 // Note that the advances remain ltr.
579 hb_buffer_reverse(buffer);
580 }
581 hb_glyph_info_t* info = hb_buffer_get_glyph_infos(buffer, nullptr);
582 hb_glyph_position_t* pos = hb_buffer_get_glyph_positions(buffer, nullptr);
583
584 if (!SkTFitsIn<int>(len)) {
585 SkDebugf("Shaping error: too many glyphs");
Ben Wagner5d4dd8b2018-01-25 14:37:17 -0500586 return point;
Ben Wagner8d45a382017-11-16 10:08:28 -0500587 }
Ben Wagnera25fbef2017-08-30 13:56:19 -0400588
589 SkPaint paint(srcPaint);
590 paint.setTextEncoding(SkPaint::kGlyphID_TextEncoding);
Ben Wagner8d45a382017-11-16 10:08:28 -0500591 paint.setTypeface(sk_ref_sp(font->currentTypeface()));
592 ShapedRun& run = runs.emplace_back(utf8Start, utf8End, len, paint, bidi->currentLevel(),
593 std::unique_ptr<ShapedGlyph[]>(new ShapedGlyph[len]));
594 int scaleX, scaleY;
595 hb_font_get_scale(font->currentHBFont(), &scaleX, &scaleY);
596 double textSizeY = run.fPaint.getTextSize() / scaleY;
597 double textSizeX = run.fPaint.getTextSize() / scaleX * run.fPaint.getTextScaleX();
598 for (unsigned i = 0; i < len; i++) {
599 ShapedGlyph& glyph = run.fGlyphs[i];
600 glyph.fID = info[i].codepoint;
601 glyph.fCluster = info[i].cluster;
602 glyph.fOffset.fX = pos[i].x_offset * textSizeX;
603 glyph.fOffset.fY = pos[i].y_offset * textSizeY;
604 glyph.fAdvance.fX = pos[i].x_advance * textSizeX;
605 glyph.fAdvance.fY = pos[i].y_advance * textSizeY;
606 glyph.fHasVisual = true; //!font->currentTypeface()->glyphBoundsAreZero(glyph.fID);
607 //info->mask safe_to_break;
608 glyph.fMustLineBreakBefore = false;
609 }
Ben Wagnera25fbef2017-08-30 13:56:19 -0400610
Ben Wagner8d45a382017-11-16 10:08:28 -0500611 int32_t clusterOffset = utf8Start - utf8;
612 uint32_t previousCluster = 0xFFFFFFFF;
613 for (unsigned i = 0; i < len; ++i) {
614 ShapedGlyph& glyph = run.fGlyphs[i];
615 int32_t glyphCluster = glyph.fCluster + clusterOffset;
616 int32_t breakIteratorCurrent = breakIterator.current();
617 while (breakIteratorCurrent != icu::BreakIterator::DONE &&
618 breakIteratorCurrent < glyphCluster)
619 {
620 breakIteratorCurrent = breakIterator.next();
Ben Wagner2868b782017-08-31 14:12:27 -0400621 }
Ben Wagner8d45a382017-11-16 10:08:28 -0500622 glyph.fMayLineBreakBefore = glyph.fCluster != previousCluster &&
623 breakIteratorCurrent == glyphCluster;
624 previousCluster = glyph.fCluster;
Ben Wagnera25fbef2017-08-30 13:56:19 -0400625 }
626 }
Ben Wagner8d45a382017-11-16 10:08:28 -0500627}
628
629// Iterate over the glyphs in logical order to mark line endings.
630{
631 SkScalar widthSoFar = 0;
632 bool previousBreakValid = false; // Set when previousBreak is set to a valid candidate break.
633 bool canAddBreakNow = false; // Disallow line breaks before the first glyph of a run.
634 ShapedRunGlyphIterator previousBreak(runs);
635 ShapedRunGlyphIterator glyphIterator(runs);
636 while (ShapedGlyph* glyph = glyphIterator.current()) {
637 if (canAddBreakNow && glyph->fMayLineBreakBefore) {
638 previousBreakValid = true;
639 previousBreak = glyphIterator;
640 }
641 SkScalar glyphWidth = glyph->fAdvance.fX;
642 if (widthSoFar + glyphWidth < width) {
643 widthSoFar += glyphWidth;
644 glyphIterator.next();
645 canAddBreakNow = true;
646 continue;
647 }
648
649 if (widthSoFar == 0) {
650 // Adding just this glyph is too much, just break with this glyph
651 glyphIterator.next();
652 previousBreak = glyphIterator;
653 } else if (!previousBreakValid) {
654 // No break opprotunity found yet, just break without this glyph
655 previousBreak = glyphIterator;
656 }
657 glyphIterator = previousBreak;
658 glyph = glyphIterator.current();
659 if (glyph) {
660 glyph->fMustLineBreakBefore = true;
661 }
662 widthSoFar = 0;
663 previousBreakValid = false;
664 canAddBreakNow = false;
665 }
666}
667
668// Reorder the runs and glyphs per line and write them out.
Ben Wagner5d4dd8b2018-01-25 14:37:17 -0500669 SkPoint currentPoint = point;
Ben Wagner8d45a382017-11-16 10:08:28 -0500670{
671 ShapedRunGlyphIterator previousBreak(runs);
672 ShapedRunGlyphIterator glyphIterator(runs);
673 SkScalar maxAscent = 0;
674 SkScalar maxDescent = 0;
675 SkScalar maxLeading = 0;
676 int previousRunIndex = -1;
677 while (glyphIterator.current()) {
678 int runIndex = glyphIterator.fRunIndex;
679 int glyphIndex = glyphIterator.fGlyphIndex;
680 ShapedGlyph* nextGlyph = glyphIterator.next();
681
682 if (previousRunIndex != runIndex) {
683 SkPaint::FontMetrics metrics;
684 runs[runIndex].fPaint.getFontMetrics(&metrics);
685 maxAscent = SkTMin(maxAscent, metrics.fAscent);
686 maxDescent = SkTMax(maxDescent, metrics.fDescent);
687 maxLeading = SkTMax(maxLeading, metrics.fLeading);
688 previousRunIndex = runIndex;
689 }
690
691 // Nothing can be written until the baseline is known.
692 if (!(nextGlyph == nullptr || nextGlyph->fMustLineBreakBefore)) {
693 continue;
694 }
695
696 currentPoint.fY -= maxAscent;
697
698 int numRuns = runIndex - previousBreak.fRunIndex + 1;
699 SkAutoSTMalloc<4, UBiDiLevel> runLevels(numRuns);
700 for (int i = 0; i < numRuns; ++i) {
701 runLevels[i] = runs[previousBreak.fRunIndex + i].fLevel;
702 }
703 SkAutoSTMalloc<4, int32_t> logicalFromVisual(numRuns);
704 ubidi_reorderVisual(runLevels, numRuns, logicalFromVisual);
705
706 for (int i = 0; i < numRuns; ++i) {
707 int logicalIndex = previousBreak.fRunIndex + logicalFromVisual[i];
708
709 int startGlyphIndex = (logicalIndex == previousBreak.fRunIndex)
710 ? previousBreak.fGlyphIndex
711 : 0;
712 int endGlyphIndex = (logicalIndex == runIndex)
713 ? glyphIndex + 1
714 : runs[logicalIndex].fNumGlyphs;
715 append(builder, runs[logicalIndex], startGlyphIndex, endGlyphIndex, &currentPoint);
716 }
717
718 currentPoint.fY += maxDescent + maxLeading;
719 currentPoint.fX = point.fX;
720 maxAscent = 0;
721 maxDescent = 0;
722 maxLeading = 0;
723 previousRunIndex = -1;
724 previousBreak = glyphIterator;
725 }
726}
727
Ben Wagner5d4dd8b2018-01-25 14:37:17 -0500728 return currentPoint;
Ben Wagnera25fbef2017-08-30 13:56:19 -0400729}