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Leon Scroggins IIIe93ec682018-10-26 09:25:51 -04001/*
2 * Copyright 2018 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 "SkWuffsCodec.h"
9
10#include "../private/SkMalloc.h"
11#include "SkFrameHolder.h"
12#include "SkSampler.h"
Nigel Tao0185b952018-11-08 10:47:24 +110013#include "SkSwizzler.h"
14#include "SkUtils.h"
Nigel Taoa6766482019-01-07 13:41:53 +110015
16// Wuffs ships as a "single file C library" or "header file library" as per
17// https://github.com/nothings/stb/blob/master/docs/stb_howto.txt
18//
19// As we have not #define'd WUFFS_IMPLEMENTATION, the #include here is
20// including a header file, even though that file name ends in ".c".
21#include "wuffs-v0.2.c"
Nigel Tao6af1edc2019-01-19 15:12:39 +110022#if WUFFS_VERSION_BUILD_METADATA_COMMIT_COUNT < 1556
Nigel Taoa6766482019-01-07 13:41:53 +110023#error "Wuffs version is too old. Upgrade to the latest version."
24#endif
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -040025
26#define SK_WUFFS_CODEC_BUFFER_SIZE 4096
27
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -040028static bool fill_buffer(wuffs_base__io_buffer* b, SkStream* s) {
29 b->compact();
30 size_t num_read = s->read(b->data.ptr + b->meta.wi, b->data.len - b->meta.wi);
31 b->meta.wi += num_read;
32 b->meta.closed = s->isAtEnd();
33 return num_read > 0;
34}
35
36static bool seek_buffer(wuffs_base__io_buffer* b, SkStream* s, uint64_t pos) {
37 // Try to re-position the io_buffer's meta.ri read-index first, which is
38 // cheaper than seeking in the backing SkStream.
39 if ((pos >= b->meta.pos) && (pos - b->meta.pos <= b->meta.wi)) {
40 b->meta.ri = pos - b->meta.pos;
41 return true;
42 }
43 // Seek in the backing SkStream.
44 if ((pos > SIZE_MAX) || (!s->seek(pos))) {
45 return false;
46 }
47 b->meta.wi = 0;
48 b->meta.ri = 0;
49 b->meta.pos = pos;
50 b->meta.closed = false;
51 return true;
52}
53
54static SkEncodedInfo::Alpha wuffs_blend_to_skia_alpha(wuffs_base__animation_blend w) {
55 return (w == WUFFS_BASE__ANIMATION_BLEND__OPAQUE) ? SkEncodedInfo::kOpaque_Alpha
56 : SkEncodedInfo::kUnpremul_Alpha;
57}
58
59static SkCodecAnimation::Blend wuffs_blend_to_skia_blend(wuffs_base__animation_blend w) {
60 return (w == WUFFS_BASE__ANIMATION_BLEND__SRC) ? SkCodecAnimation::Blend::kBG
61 : SkCodecAnimation::Blend::kPriorFrame;
62}
63
64static SkCodecAnimation::DisposalMethod wuffs_disposal_to_skia_disposal(
65 wuffs_base__animation_disposal w) {
66 switch (w) {
67 case WUFFS_BASE__ANIMATION_DISPOSAL__RESTORE_BACKGROUND:
68 return SkCodecAnimation::DisposalMethod::kRestoreBGColor;
69 case WUFFS_BASE__ANIMATION_DISPOSAL__RESTORE_PREVIOUS:
70 return SkCodecAnimation::DisposalMethod::kRestorePrevious;
71 default:
72 return SkCodecAnimation::DisposalMethod::kKeep;
73 }
74}
75
76// -------------------------------- Class definitions
77
78class SkWuffsCodec;
79
80class SkWuffsFrame final : public SkFrame {
81public:
82 SkWuffsFrame(wuffs_base__frame_config* fc);
83
84 SkCodec::FrameInfo frameInfo(bool fullyReceived) const;
85 uint64_t ioPosition() const;
86
87 // SkFrame overrides.
88 SkEncodedInfo::Alpha onReportedAlpha() const override;
89
90private:
91 uint64_t fIOPosition;
92 SkEncodedInfo::Alpha fReportedAlpha;
93
94 typedef SkFrame INHERITED;
95};
96
97// SkWuffsFrameHolder is a trivial indirector that forwards its calls onto a
98// SkWuffsCodec. It is a separate class as SkWuffsCodec would otherwise
99// inherit from both SkCodec and SkFrameHolder, and Skia style discourages
100// multiple inheritance (e.g. with its "typedef Foo INHERITED" convention).
101class SkWuffsFrameHolder final : public SkFrameHolder {
102public:
103 SkWuffsFrameHolder() : INHERITED() {}
104
105 void init(SkWuffsCodec* codec, int width, int height);
106
107 // SkFrameHolder overrides.
108 const SkFrame* onGetFrame(int i) const override;
109
110private:
111 const SkWuffsCodec* fCodec;
112
113 typedef SkFrameHolder INHERITED;
114};
115
Nigel Tao0185b952018-11-08 10:47:24 +1100116// SkWuffsSpySampler is a placeholder SkSampler implementation. The Skia API
117// expects to manipulate the codec's sampler (i.e. call setSampleX and
118// setSampleY) in between the startIncrementalDecode (SID) and
119// incrementalDecode (ID) calls. But creating the SkSwizzler (the real sampler)
120// requires knowing the destination buffer's dimensions, i.e. the animation
121// frame's width and height. That width and height are decoded in ID, not SID.
122//
123// To break that circle, the SkWuffsSpySampler always exists, so its methods
124// can be called between SID and ID. It doesn't actually do any sampling, it
125// merely records the arguments given to setSampleX (explicitly) and setSampleY
126// (implicitly, via the superclass' implementation). Inside ID, those recorded
127// arguments are forwarded on to the SkSwizzler (the real sampler) when that
128// SkSwizzler is created, after the frame width and height are known.
129//
130// Roughly speaking, the SkWuffsSpySampler is an eager proxy for the lazily
131// constructed real sampler. But that laziness is out of necessity.
132//
133// The "Spy" name is because it records its arguments. See
134// https://martinfowler.com/articles/mocksArentStubs.html#TheDifferenceBetweenMocksAndStubs
135class SkWuffsSpySampler final : public SkSampler {
136public:
137 SkWuffsSpySampler(int imageWidth)
138 : INHERITED(), fFillWidth(0), fImageWidth(imageWidth), fSampleX(1) {}
139
140 void reset();
141 int sampleX() const;
142
143 int fFillWidth;
144
145private:
146 // SkSampler overrides.
147 int fillWidth() const override;
148 int onSetSampleX(int sampleX) override;
149
150 const int fImageWidth;
151
152 int fSampleX;
153
154 typedef SkSampler INHERITED;
155};
156
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400157class SkWuffsCodec final : public SkCodec {
158public:
159 SkWuffsCodec(SkEncodedInfo&& encodedInfo,
160 std::unique_ptr<SkStream> stream,
161 std::unique_ptr<wuffs_gif__decoder, decltype(&sk_free)> dec,
162 std::unique_ptr<uint8_t, decltype(&sk_free)> pixbuf_ptr,
163 std::unique_ptr<uint8_t, decltype(&sk_free)> workbuf_ptr,
164 size_t workbuf_len,
165 wuffs_base__image_config imgcfg,
166 wuffs_base__pixel_buffer pixbuf,
167 wuffs_base__io_buffer iobuf);
168
169 const SkWuffsFrame* frame(int i) const;
170
171private:
172 // SkCodec overrides.
173 SkEncodedImageFormat onGetEncodedFormat() const override;
174 Result onGetPixels(const SkImageInfo&, void*, size_t, const Options&, int*) override;
175 const SkFrameHolder* getFrameHolder() const override;
176 Result onStartIncrementalDecode(const SkImageInfo& dstInfo,
177 void* dst,
178 size_t rowBytes,
179 const SkCodec::Options& options) override;
180 Result onIncrementalDecode(int* rowsDecoded) override;
181 int onGetFrameCount() override;
182 bool onGetFrameInfo(int, FrameInfo*) const override;
183 int onGetRepetitionCount() override;
Nigel Tao0185b952018-11-08 10:47:24 +1100184 SkSampler* getSampler(bool createIfNecessary) override;
Leon Scroggins III9b0ba2c2018-11-19 14:52:37 -0500185 bool conversionSupported(const SkImageInfo& dst, bool, bool) override;
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400186
187 void readFrames();
188 Result seekFrame(int frameIndex);
189
190 Result resetDecoder();
191 const char* decodeFrameConfig();
192 const char* decodeFrame();
193 void updateNumFullyReceivedFrames();
194
Nigel Tao0185b952018-11-08 10:47:24 +1100195 SkWuffsSpySampler fSpySampler;
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400196 SkWuffsFrameHolder fFrameHolder;
197 std::unique_ptr<SkStream> fStream;
198 std::unique_ptr<wuffs_gif__decoder, decltype(&sk_free)> fDecoder;
199 std::unique_ptr<uint8_t, decltype(&sk_free)> fPixbufPtr;
200 std::unique_ptr<uint8_t, decltype(&sk_free)> fWorkbufPtr;
201 size_t fWorkbufLen;
202
203 const uint64_t fFirstFrameIOPosition;
204 wuffs_base__frame_config fFrameConfig;
205 wuffs_base__pixel_buffer fPixelBuffer;
206 wuffs_base__io_buffer fIOBuffer;
207
208 // Incremental decoding state.
Nigel Tao0185b952018-11-08 10:47:24 +1100209 uint8_t* fIncrDecDst;
Nigel Tao0185b952018-11-08 10:47:24 +1100210 size_t fIncrDecRowBytes;
211
212 std::unique_ptr<SkSwizzler> fSwizzler;
213 SkPMColor fColorTable[256];
Leon Scroggins IIIdad4bfc2018-12-10 12:37:10 -0500214 bool fColorTableFilled;
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400215
216 uint64_t fNumFullyReceivedFrames;
217 std::vector<SkWuffsFrame> fFrames;
218 bool fFramesComplete;
219
220 // If calling an fDecoder method returns an incomplete status, then
221 // fDecoder is suspended in a coroutine (i.e. waiting on I/O or halted on a
222 // non-recoverable error). To keep its internal proof-of-safety invariants
223 // consistent, there's only two things you can safely do with a suspended
224 // Wuffs object: resume the coroutine, or reset all state (memset to zero
225 // and start again).
226 //
227 // If fDecoderIsSuspended, and we aren't sure that we're going to resume
228 // the coroutine, then we will need to call this->resetDecoder before
229 // calling other fDecoder methods.
230 bool fDecoderIsSuspended;
231
232 uint8_t fBuffer[SK_WUFFS_CODEC_BUFFER_SIZE];
233
234 typedef SkCodec INHERITED;
235};
236
237// -------------------------------- SkWuffsFrame implementation
238
239SkWuffsFrame::SkWuffsFrame(wuffs_base__frame_config* fc)
240 : INHERITED(fc->index()),
241 fIOPosition(fc->io_position()),
242 fReportedAlpha(wuffs_blend_to_skia_alpha(fc->blend())) {
243 wuffs_base__rect_ie_u32 r = fc->bounds();
244 this->setXYWH(r.min_incl_x, r.min_incl_y, r.width(), r.height());
245 this->setDisposalMethod(wuffs_disposal_to_skia_disposal(fc->disposal()));
246 this->setDuration(fc->duration() / WUFFS_BASE__FLICKS_PER_MILLISECOND);
247 this->setBlend(wuffs_blend_to_skia_blend(fc->blend()));
248}
249
250SkCodec::FrameInfo SkWuffsFrame::frameInfo(bool fullyReceived) const {
251 return ((SkCodec::FrameInfo){
252 .fRequiredFrame = getRequiredFrame(),
253 .fDuration = getDuration(),
254 .fFullyReceived = fullyReceived,
255 .fAlphaType = hasAlpha() ? kUnpremul_SkAlphaType : kOpaque_SkAlphaType,
256 .fDisposalMethod = getDisposalMethod(),
257 });
258}
259
260uint64_t SkWuffsFrame::ioPosition() const {
261 return fIOPosition;
262}
263
264SkEncodedInfo::Alpha SkWuffsFrame::onReportedAlpha() const {
265 return fReportedAlpha;
266}
267
268// -------------------------------- SkWuffsFrameHolder implementation
269
270void SkWuffsFrameHolder::init(SkWuffsCodec* codec, int width, int height) {
271 fCodec = codec;
272 // Initialize SkFrameHolder's (the superclass) fields.
273 fScreenWidth = width;
274 fScreenHeight = height;
275}
276
277const SkFrame* SkWuffsFrameHolder::onGetFrame(int i) const {
278 return fCodec->frame(i);
279};
280
Nigel Tao0185b952018-11-08 10:47:24 +1100281// -------------------------------- SkWuffsSpySampler implementation
282
283void SkWuffsSpySampler::reset() {
284 fFillWidth = 0;
285 fSampleX = 1;
286 this->setSampleY(1);
287}
288
289int SkWuffsSpySampler::sampleX() const {
290 return fSampleX;
291}
292
293int SkWuffsSpySampler::fillWidth() const {
294 return fFillWidth;
295}
296
297int SkWuffsSpySampler::onSetSampleX(int sampleX) {
298 fSampleX = sampleX;
299 return get_scaled_dimension(fImageWidth, sampleX);
300}
301
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400302// -------------------------------- SkWuffsCodec implementation
303
304SkWuffsCodec::SkWuffsCodec(SkEncodedInfo&& encodedInfo,
305 std::unique_ptr<SkStream> stream,
306 std::unique_ptr<wuffs_gif__decoder, decltype(&sk_free)> dec,
307 std::unique_ptr<uint8_t, decltype(&sk_free)> pixbuf_ptr,
308 std::unique_ptr<uint8_t, decltype(&sk_free)> workbuf_ptr,
309 size_t workbuf_len,
310 wuffs_base__image_config imgcfg,
311 wuffs_base__pixel_buffer pixbuf,
312 wuffs_base__io_buffer iobuf)
313 : INHERITED(std::move(encodedInfo),
314 skcms_PixelFormat_RGBA_8888,
315 // Pass a nullptr SkStream to the SkCodec constructor. We
316 // manage the stream ourselves, as the default SkCodec behavior
317 // is too trigger-happy on rewinding the stream.
318 nullptr),
Nigel Tao0185b952018-11-08 10:47:24 +1100319 fSpySampler(imgcfg.pixcfg.width()),
320 fFrameHolder(),
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400321 fStream(std::move(stream)),
322 fDecoder(std::move(dec)),
323 fPixbufPtr(std::move(pixbuf_ptr)),
324 fWorkbufPtr(std::move(workbuf_ptr)),
325 fWorkbufLen(workbuf_len),
326 fFirstFrameIOPosition(imgcfg.first_frame_io_position()),
327 fFrameConfig((wuffs_base__frame_config){}),
328 fPixelBuffer(pixbuf),
329 fIOBuffer((wuffs_base__io_buffer){}),
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400330 fIncrDecDst(nullptr),
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400331 fIncrDecRowBytes(0),
Nigel Tao0185b952018-11-08 10:47:24 +1100332 fSwizzler(nullptr),
Leon Scroggins IIIdad4bfc2018-12-10 12:37:10 -0500333 fColorTableFilled(false),
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400334 fNumFullyReceivedFrames(0),
335 fFramesComplete(false),
336 fDecoderIsSuspended(false) {
337 fFrameHolder.init(this, imgcfg.pixcfg.width(), imgcfg.pixcfg.height());
Nigel Tao0185b952018-11-08 10:47:24 +1100338 sk_memset32(fColorTable, 0, SK_ARRAY_COUNT(fColorTable));
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400339
340 // Initialize fIOBuffer's fields, copying any outstanding data from iobuf to
341 // fIOBuffer, as iobuf's backing array may not be valid for the lifetime of
342 // this SkWuffsCodec object, but fIOBuffer's backing array (fBuffer) is.
343 SkASSERT(iobuf.data.len == SK_WUFFS_CODEC_BUFFER_SIZE);
344 memmove(fBuffer, iobuf.data.ptr, iobuf.meta.wi);
345 fIOBuffer = ((wuffs_base__io_buffer){
346 .data = ((wuffs_base__slice_u8){
347 .ptr = fBuffer,
348 .len = SK_WUFFS_CODEC_BUFFER_SIZE,
349 }),
350 .meta = iobuf.meta,
351 });
352}
353
354const SkWuffsFrame* SkWuffsCodec::frame(int i) const {
355 if ((0 <= i) && (static_cast<size_t>(i) < fFrames.size())) {
356 return &fFrames[i];
357 }
358 return nullptr;
359}
360
361SkEncodedImageFormat SkWuffsCodec::onGetEncodedFormat() const {
362 return SkEncodedImageFormat::kGIF;
363}
364
365SkCodec::Result SkWuffsCodec::onGetPixels(const SkImageInfo& dstInfo,
366 void* dst,
367 size_t rowBytes,
368 const Options& options,
369 int* rowsDecoded) {
370 SkCodec::Result result = this->onStartIncrementalDecode(dstInfo, dst, rowBytes, options);
371 if (result != kSuccess) {
372 return result;
373 }
374 return this->onIncrementalDecode(rowsDecoded);
375}
376
377const SkFrameHolder* SkWuffsCodec::getFrameHolder() const {
378 return &fFrameHolder;
379}
380
381SkCodec::Result SkWuffsCodec::onStartIncrementalDecode(const SkImageInfo& dstInfo,
382 void* dst,
383 size_t rowBytes,
384 const SkCodec::Options& options) {
385 if (options.fSubset) {
386 return SkCodec::kUnimplemented;
387 }
388 SkCodec::Result result = this->seekFrame(options.fFrameIndex);
389 if (result != SkCodec::kSuccess) {
390 return result;
391 }
392
Nigel Tao0185b952018-11-08 10:47:24 +1100393 fSpySampler.reset();
Nigel Tao0185b952018-11-08 10:47:24 +1100394 fSwizzler = nullptr;
Leon Scroggins IIIdad4bfc2018-12-10 12:37:10 -0500395 fColorTableFilled = false;
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400396
Leon Scroggins IIIcb6b8842018-12-04 13:55:13 -0500397 const char* status = this->decodeFrameConfig();
398 if (status == nullptr) {
399 fIncrDecDst = static_cast<uint8_t*>(dst);
400 fIncrDecRowBytes = rowBytes;
401 return SkCodec::kSuccess;
402 } else if (status == wuffs_base__suspension__short_read) {
403 return SkCodec::kIncompleteInput;
404 } else {
405 SkCodecPrintf("decodeFrameConfig: %s", status);
406 return SkCodec::kErrorInInput;
407 }
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400408}
409
Leon Scroggins III9b0ba2c2018-11-19 14:52:37 -0500410static bool independent_frame(SkCodec* codec, int frameIndex) {
411 if (frameIndex == 0) {
412 return true;
413 }
414
415 SkCodec::FrameInfo frameInfo;
416 SkAssertResult(codec->getFrameInfo(frameIndex, &frameInfo));
417 return frameInfo.fRequiredFrame == SkCodec::kNoFrame;
418}
419
420static void blend(uint32_t* dst, const uint32_t* src, int width) {
421 while (width --> 0) {
422 if (*src != 0) {
423 *dst = *src;
424 }
425 src++;
426 dst++;
427 }
428}
429
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400430SkCodec::Result SkWuffsCodec::onIncrementalDecode(int* rowsDecoded) {
431 if (!fIncrDecDst) {
432 return SkCodec::kInternalError;
433 }
434
Leon Scroggins III699d41e2019-02-07 09:25:51 -0500435 SkCodec::Result result = SkCodec::kSuccess;
436 const char* status = this->decodeFrame();
437 const bool independent = independent_frame(this, options().fFrameIndex);
438 if (status != nullptr) {
439 if (status == wuffs_base__suspension__short_read) {
440 result = SkCodec::kIncompleteInput;
441 } else {
442 SkCodecPrintf("decodeFrame: %s", status);
443 result = SkCodec::kErrorInInput;
444 }
445
446 if (!independent) {
447 // For a dependent frame, we cannot blend the partial result, since
448 // that will overwrite the contribution from prior frames.
449 return result;
450 }
451 }
452
Leon Scroggins IIIcb6b8842018-12-04 13:55:13 -0500453 // In Wuffs, a paletted image is always 1 byte per pixel.
454 static constexpr size_t src_bpp = 1;
455 wuffs_base__table_u8 pixels = fPixelBuffer.plane(0);
Leon Scroggins III7a3805c2018-12-07 09:21:30 -0500456 int scaledHeight = dstInfo().height();
Leon Scroggins IIIdad4bfc2018-12-10 12:37:10 -0500457 wuffs_base__rect_ie_u32 frame_rect = fFrameConfig.bounds();
Leon Scroggins III699d41e2019-02-07 09:25:51 -0500458 wuffs_base__rect_ie_u32 dirty_rect = fDecoder->frame_dirty_rect();
Nigel Tao0185b952018-11-08 10:47:24 +1100459 if (!fSwizzler) {
Leon Scroggins IIIdad4bfc2018-12-10 12:37:10 -0500460 auto bounds = SkIRect::MakeLTRB(frame_rect.min_incl_x, frame_rect.min_incl_y,
461 frame_rect.max_excl_x, frame_rect.max_excl_y);
Leon Scroggins IIIcb6b8842018-12-04 13:55:13 -0500462 fSwizzler = SkSwizzler::Make(this->getEncodedInfo(), fColorTable, dstInfo(),
463 this->options(), &bounds);
Nigel Tao0185b952018-11-08 10:47:24 +1100464 fSwizzler->setSampleX(fSpySampler.sampleX());
465 fSwizzler->setSampleY(fSpySampler.sampleY());
Leon Scroggins III7a3805c2018-12-07 09:21:30 -0500466 scaledHeight = get_scaled_dimension(dstInfo().height(), fSpySampler.sampleY());
Nigel Tao0185b952018-11-08 10:47:24 +1100467
Leon Scroggins IIIcb6b8842018-12-04 13:55:13 -0500468 // Zero-initialize wuffs' buffer covering the frame rect. This will later be used to
469 // determine how we write to the output, even if the image was incomplete. This ensures
470 // that we do not swizzle uninitialized memory.
Leon Scroggins IIIdad4bfc2018-12-10 12:37:10 -0500471 for (uint32_t y = frame_rect.min_incl_y; y < frame_rect.max_excl_y; y++) {
472 uint8_t* s = pixels.ptr + (y * pixels.stride) + (frame_rect.min_incl_x * src_bpp);
473 sk_bzero(s, frame_rect.width() * src_bpp);
Leon Scroggins IIIcb6b8842018-12-04 13:55:13 -0500474 }
475
476 // If the frame rect does not fill the output, ensure that those pixels are not
477 // left uninitialized either.
Leon Scroggins III699d41e2019-02-07 09:25:51 -0500478 if (independent && (bounds != this->bounds() || dirty_rect.is_empty())) {
Leon Scroggins III7a3805c2018-12-07 09:21:30 -0500479 auto fillInfo = dstInfo().makeWH(fSwizzler->fillWidth(), scaledHeight);
Leon Scroggins III9b0ba2c2018-11-19 14:52:37 -0500480 SkSampler::Fill(fillInfo, fIncrDecDst, fIncrDecRowBytes, options().fZeroInitialized);
481 }
Nigel Tao0185b952018-11-08 10:47:24 +1100482 }
483
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400484 // The semantics of *rowsDecoded is: say you have a 10 pixel high image
485 // (both the frame and the image). If you only decoded the first 3 rows,
486 // set this to 3, and then SkCodec (or the caller of incrementalDecode)
487 // would zero-initialize the remaining 7 (unless the memory was already
488 // zero-initialized).
489 //
490 // Now let's say that the image is still 10 pixels high, but the frame is
491 // from row 5 to 9. If you only decoded 3 rows, but you initialized the
492 // first 5, you could return 8, and the caller would zero-initialize the
493 // final 2. For GIF (where a frame can be smaller than the image and can be
494 // interlaced), we just zero-initialize all 10 rows ahead of time and
495 // return the height of the image, so the caller knows it doesn't need to
496 // do anything.
Leon Scroggins III9b0ba2c2018-11-19 14:52:37 -0500497 //
498 // Similarly, if the output is scaled, we zero-initialized all
499 // |scaledHeight| rows (the scaled image height), so we inform the caller
500 // that it doesn't need to do anything.
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400501 if (rowsDecoded) {
Leon Scroggins III9b0ba2c2018-11-19 14:52:37 -0500502 *rowsDecoded = scaledHeight;
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400503 }
504
Leon Scroggins IIIdad4bfc2018-12-10 12:37:10 -0500505 // If the frame's dirty rect is empty, no need to swizzle.
Leon Scroggins IIIdad4bfc2018-12-10 12:37:10 -0500506 if (!dirty_rect.is_empty()) {
507 if (!fColorTableFilled) {
508 fColorTableFilled = true;
509 wuffs_base__slice_u8 palette = fPixelBuffer.palette();
510 SkASSERT(palette.len == 4 * 256);
511 auto proc = choose_pack_color_proc(false, dstInfo().colorType());
512 for (int i = 0; i < 256; i++) {
513 uint8_t* p = palette.ptr + 4 * i;
514 fColorTable[i] = proc(p[3], p[2], p[1], p[0]);
515 }
Leon Scroggins III7a3805c2018-12-07 09:21:30 -0500516 }
517
518 std::unique_ptr<uint8_t[]> tmpBuffer;
519 if (!independent) {
520 tmpBuffer.reset(new uint8_t[dstInfo().minRowBytes()]);
521 }
522 const int sampleY = fSwizzler->sampleY();
Leon Scroggins IIIdad4bfc2018-12-10 12:37:10 -0500523 for (uint32_t y = dirty_rect.min_incl_y; y < dirty_rect.max_excl_y; y++) {
Leon Scroggins III7a3805c2018-12-07 09:21:30 -0500524 int dstY = y;
525 if (sampleY != 1) {
526 if (!fSwizzler->rowNeeded(y)) {
527 continue;
528 }
529 dstY /= sampleY;
530 if (dstY >= scaledHeight) {
531 break;
532 }
533 }
534
Leon Scroggins IIIdad4bfc2018-12-10 12:37:10 -0500535 // We don't adjust d by (frame_rect.min_incl_x * dst_bpp) as we
536 // have already accounted for that in swizzleRect, above.
Leon Scroggins III7a3805c2018-12-07 09:21:30 -0500537 uint8_t* d = fIncrDecDst + (dstY * fIncrDecRowBytes);
538
539 // The Wuffs model is that the dst buffer is the image, not the frame.
540 // The expectation is that you allocate the buffer once, but re-use it
541 // for the N frames, regardless of each frame's top-left co-ordinate.
542 //
543 // To get from the start (in the X-direction) of the image to the start
Leon Scroggins IIIdad4bfc2018-12-10 12:37:10 -0500544 // of the frame, we adjust s by (frame_rect.min_incl_x * src_bpp).
545 //
546 // We adjust (in the X-direction) by the frame rect, not the dirty
547 // rect, because the swizzler (which operates on rows) was
548 // configured with the frame rect's X range.
549 uint8_t* s = pixels.ptr + (y * pixels.stride) + (frame_rect.min_incl_x * src_bpp);
Leon Scroggins III7a3805c2018-12-07 09:21:30 -0500550 if (independent) {
551 fSwizzler->swizzle(d, s);
552 } else {
553 SkASSERT(tmpBuffer.get());
554 fSwizzler->swizzle(tmpBuffer.get(), s);
555 d = SkTAddOffset<uint8_t>(d, fSwizzler->swizzleOffsetBytes());
556 const auto* swizzled = SkTAddOffset<uint32_t>(tmpBuffer.get(),
557 fSwizzler->swizzleOffsetBytes());
558 blend(reinterpret_cast<uint32_t*>(d), swizzled, fSwizzler->swizzleWidth());
559 }
560 }
561 }
562
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400563 if (result == SkCodec::kSuccess) {
Nigel Tao0185b952018-11-08 10:47:24 +1100564 fSpySampler.reset();
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400565 fIncrDecDst = nullptr;
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400566 fIncrDecRowBytes = 0;
Nigel Tao0185b952018-11-08 10:47:24 +1100567 fSwizzler = nullptr;
Leon Scroggins IIIdad4bfc2018-12-10 12:37:10 -0500568 fColorTableFilled = false;
Nigel Tao0185b952018-11-08 10:47:24 +1100569 } else {
570 // Make fSpySampler return whatever fSwizzler would have for fillWidth.
571 fSpySampler.fFillWidth = fSwizzler->fillWidth();
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400572 }
573 return result;
574}
575
576int SkWuffsCodec::onGetFrameCount() {
577 if (!fFramesComplete) {
578 this->readFrames();
579 this->updateNumFullyReceivedFrames();
580 }
581 return fFrames.size();
582}
583
584bool SkWuffsCodec::onGetFrameInfo(int i, SkCodec::FrameInfo* frameInfo) const {
585 const SkWuffsFrame* f = this->frame(i);
586 if (!f) {
587 return false;
588 }
589 if (frameInfo) {
590 *frameInfo = f->frameInfo(static_cast<uint64_t>(i) < this->fNumFullyReceivedFrames);
591 }
592 return true;
593}
594
595int SkWuffsCodec::onGetRepetitionCount() {
596 // Convert from Wuffs's loop count to Skia's repeat count. Wuffs' uint32_t
597 // number is how many times to play the loop. Skia's int number is how many
598 // times to play the loop *after the first play*. Wuffs and Skia use 0 and
599 // kRepetitionCountInfinite respectively to mean loop forever.
Nigel Tao6af1edc2019-01-19 15:12:39 +1100600 uint32_t n = fDecoder->num_animation_loops();
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400601 if (n == 0) {
602 return SkCodec::kRepetitionCountInfinite;
603 }
604 n--;
605 return n < INT_MAX ? n : INT_MAX;
606}
607
Nigel Tao0185b952018-11-08 10:47:24 +1100608SkSampler* SkWuffsCodec::getSampler(bool createIfNecessary) {
609 // fIncrDst being non-nullptr means that we are between an
610 // onStartIncrementalDecode call and the matching final (successful)
611 // onIncrementalDecode call.
612 if (createIfNecessary || fIncrDecDst) {
613 return &fSpySampler;
614 }
615 return nullptr;
616}
617
Leon Scroggins III9b0ba2c2018-11-19 14:52:37 -0500618bool SkWuffsCodec::conversionSupported(const SkImageInfo& dst, bool srcIsOpaque, bool needsColorXform) {
619 if (!this->INHERITED::conversionSupported(dst, srcIsOpaque, needsColorXform)) {
620 return false;
621 }
622
623 switch (dst.colorType()) {
624 case kRGBA_8888_SkColorType:
625 case kBGRA_8888_SkColorType:
626 return true;
627 default:
628 // FIXME: Add skcms to support F16
629 // FIXME: Add support for 565 on the first frame
630 return false;
631 }
632}
633
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400634void SkWuffsCodec::readFrames() {
635 size_t n = fFrames.size();
636 int i = n ? n - 1 : 0;
637 if (this->seekFrame(i) != SkCodec::kSuccess) {
638 return;
639 }
640
641 // Iterate through the frames, converting from Wuffs'
642 // wuffs_base__frame_config type to Skia's SkWuffsFrame type.
643 for (; i < INT_MAX; i++) {
644 const char* status = this->decodeFrameConfig();
645 if (status == nullptr) {
646 // No-op.
647 } else if (status == wuffs_base__warning__end_of_data) {
648 break;
649 } else {
650 return;
651 }
652
653 if (static_cast<size_t>(i) < fFrames.size()) {
654 continue;
655 }
656 fFrames.emplace_back(&fFrameConfig);
657 SkWuffsFrame* f = &fFrames[fFrames.size() - 1];
658 fFrameHolder.setAlphaAndRequiredFrame(f);
659 }
660
661 fFramesComplete = true;
662}
663
664SkCodec::Result SkWuffsCodec::seekFrame(int frameIndex) {
665 if (fDecoderIsSuspended) {
666 SkCodec::Result res = this->resetDecoder();
667 if (res != SkCodec::kSuccess) {
668 return res;
669 }
670 }
671
672 uint64_t pos = 0;
673 if (frameIndex < 0) {
674 return SkCodec::kInternalError;
675 } else if (frameIndex == 0) {
676 pos = fFirstFrameIOPosition;
677 } else if (static_cast<size_t>(frameIndex) < fFrames.size()) {
678 pos = fFrames[frameIndex].ioPosition();
679 } else {
680 return SkCodec::kInternalError;
681 }
682
683 if (!seek_buffer(&fIOBuffer, fStream.get(), pos)) {
684 return SkCodec::kInternalError;
685 }
Nigel Tao6af1edc2019-01-19 15:12:39 +1100686 const char* status = fDecoder->restart_frame(frameIndex, fIOBuffer.reader_io_position());
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400687 if (status != nullptr) {
688 return SkCodec::kInternalError;
689 }
690 return SkCodec::kSuccess;
691}
692
693// An overview of the Wuffs decoding API:
694//
695// An animated image (such as GIF) has an image header and then N frames. The
696// image header gives e.g. the overall image's width and height. Each frame
697// consists of a frame header (e.g. frame rectangle bounds, display duration)
698// and a payload (the pixels).
699//
700// In Wuffs terminology, there is one image config and then N pairs of
701// (frame_config, frame). To decode everything (without knowing N in advance)
702// sequentially:
703// - call wuffs_gif__decoder::decode_image_config
704// - while (true) {
705// - call wuffs_gif__decoder::decode_frame_config
706// - if that returned wuffs_base__warning__end_of_data, break
707// - call wuffs_gif__decoder::decode_frame
708// - }
709//
710// The first argument to each decode_foo method is the destination struct to
711// store the decoded information.
712//
713// For random (instead of sequential) access to an image's frames, call
714// wuffs_gif__decoder::restart_frame to prepare to decode the i'th frame.
715// Essentially, it restores the state to be at the top of the while loop above.
716// The wuffs_base__io_buffer's reader position will also need to be set at the
717// right point in the source data stream. The position for the i'th frame is
718// calculated by the i'th decode_frame_config call. You can only call
719// restart_frame after decode_image_config is called, explicitly or implicitly
720// (see below), as decoding a single frame might require for-all-frames
721// information like the overall image dimensions and the global palette.
722//
723// All of those decode_xxx calls are optional. For example, if
724// decode_image_config is not called, then the first decode_frame_config call
725// will implicitly parse and verify the image header, before parsing the first
726// frame's header. Similarly, you can call only decode_frame N times, without
727// calling decode_image_config or decode_frame_config, if you already know
728// metadata like N and each frame's rectangle bounds by some other means (e.g.
729// this is a first party, statically known image).
730//
731// Specifically, starting with an unknown (but re-windable) GIF image, if you
732// want to just find N (i.e. count the number of frames), you can loop calling
733// only the decode_frame_config method and avoid calling the more expensive
734// decode_frame method. In terms of the underlying GIF image format, this will
735// skip over the LZW-encoded pixel data, avoiding the costly LZW decompression.
736//
737// Those decode_xxx methods are also suspendible. They will return early (with
738// a status code that is_suspendible and therefore isn't is_complete) if there
739// isn't enough source data to complete the operation: an incremental decode.
740// Calling decode_xxx again with additional source data will resume the
741// previous operation, instead of starting a new operation. Calling decode_yyy
742// whilst decode_xxx is suspended will result in an error.
743//
744// Once an error is encountered, whether from invalid source data or from a
745// programming error such as calling decode_yyy while suspended in decode_xxx,
746// all subsequent calls will be no-ops that return an error. To reset the
747// decoder into something that does productive work, memset the entire struct
748// to zero, check the Wuffs version and then, in order to be able to call
749// restart_frame, call decode_image_config. The io_buffer and its associated
750// stream will also need to be rewound.
751
752static SkCodec::Result reset_and_decode_image_config(wuffs_gif__decoder* decoder,
753 wuffs_base__image_config* imgcfg,
754 wuffs_base__io_buffer* b,
755 SkStream* s) {
756 memset(decoder, 0, sizeof__wuffs_gif__decoder());
Nigel Tao6af1edc2019-01-19 15:12:39 +1100757 const char* status = decoder->check_wuffs_version(sizeof__wuffs_gif__decoder(), WUFFS_VERSION);
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400758 if (status != nullptr) {
759 SkCodecPrintf("check_wuffs_version: %s", status);
760 return SkCodec::kInternalError;
761 }
762 while (true) {
Nigel Tao6af1edc2019-01-19 15:12:39 +1100763 status = decoder->decode_image_config(imgcfg, b->reader());
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400764 if (status == nullptr) {
765 return SkCodec::kSuccess;
766 } else if (status != wuffs_base__suspension__short_read) {
767 SkCodecPrintf("decode_image_config: %s", status);
768 return SkCodec::kErrorInInput;
769 } else if (!fill_buffer(b, s)) {
770 return SkCodec::kIncompleteInput;
771 }
772 }
773}
774
775SkCodec::Result SkWuffsCodec::resetDecoder() {
776 if (!fStream->rewind()) {
777 return SkCodec::kInternalError;
778 }
779 fIOBuffer.meta = ((wuffs_base__io_buffer_meta){});
780
781 SkCodec::Result result =
782 reset_and_decode_image_config(fDecoder.get(), nullptr, &fIOBuffer, fStream.get());
783 if (result == SkCodec::kIncompleteInput) {
784 return SkCodec::kInternalError;
785 } else if (result != SkCodec::kSuccess) {
786 return result;
787 }
788
789 fDecoderIsSuspended = false;
790 return SkCodec::kSuccess;
791}
792
793const char* SkWuffsCodec::decodeFrameConfig() {
794 while (true) {
Nigel Tao6af1edc2019-01-19 15:12:39 +1100795 const char* status = fDecoder->decode_frame_config(&fFrameConfig, fIOBuffer.reader());
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400796 if ((status == wuffs_base__suspension__short_read) &&
797 fill_buffer(&fIOBuffer, fStream.get())) {
798 continue;
799 }
800 fDecoderIsSuspended = !wuffs_base__status__is_complete(status);
801 this->updateNumFullyReceivedFrames();
802 return status;
803 }
804}
805
806const char* SkWuffsCodec::decodeFrame() {
807 while (true) {
Nigel Tao6af1edc2019-01-19 15:12:39 +1100808 const char* status = fDecoder->decode_frame(&fPixelBuffer, fIOBuffer.reader(),
809 ((wuffs_base__slice_u8){
810 .ptr = fWorkbufPtr.get(),
811 .len = fWorkbufLen,
812 }),
813 NULL);
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400814 if ((status == wuffs_base__suspension__short_read) &&
815 fill_buffer(&fIOBuffer, fStream.get())) {
816 continue;
817 }
818 fDecoderIsSuspended = !wuffs_base__status__is_complete(status);
819 this->updateNumFullyReceivedFrames();
820 return status;
821 }
822}
823
824void SkWuffsCodec::updateNumFullyReceivedFrames() {
Nigel Tao6af1edc2019-01-19 15:12:39 +1100825 // num_decoded_frames's return value, n, can change over time, both up and
826 // down, as we seek back and forth in the underlying stream.
827 // fNumFullyReceivedFrames is the highest n we've seen.
828 uint64_t n = fDecoder->num_decoded_frames();
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400829 if (fNumFullyReceivedFrames < n) {
830 fNumFullyReceivedFrames = n;
831 }
832}
833
834// -------------------------------- SkWuffsCodec.h functions
835
836bool SkWuffsCodec_IsFormat(const void* buf, size_t bytesRead) {
837 constexpr const char* gif_ptr = "GIF8";
838 constexpr size_t gif_len = 4;
839 return (bytesRead >= gif_len) && (memcmp(buf, gif_ptr, gif_len) == 0);
840}
841
842std::unique_ptr<SkCodec> SkWuffsCodec_MakeFromStream(std::unique_ptr<SkStream> stream,
843 SkCodec::Result* result) {
844 uint8_t buffer[SK_WUFFS_CODEC_BUFFER_SIZE];
845 wuffs_base__io_buffer iobuf = ((wuffs_base__io_buffer){
846 .data = ((wuffs_base__slice_u8){
847 .ptr = buffer,
848 .len = SK_WUFFS_CODEC_BUFFER_SIZE,
849 }),
850 .meta = ((wuffs_base__io_buffer_meta){}),
851 });
852 wuffs_base__image_config imgcfg = ((wuffs_base__image_config){});
853
854 // Wuffs is primarily a C library, not a C++ one. Furthermore, outside of
855 // the wuffs_base__etc types, the sizeof a file format specific type like
856 // GIF's wuffs_gif__decoder can vary between Wuffs versions. If p is of
857 // type wuffs_gif__decoder*, then the supported API treats p as a pointer
858 // to an opaque type: a private implementation detail. The API is always
859 // "set_foo(p, etc)" and not "p->foo = etc".
860 //
861 // See https://en.wikipedia.org/wiki/Opaque_pointer#C
862 //
863 // Thus, we don't use C++'s new operator (which requires knowing the sizeof
864 // the struct at compile time). Instead, we use sk_malloc_canfail, with
865 // sizeof__wuffs_gif__decoder returning the appropriate value for the
866 // (statically or dynamically) linked version of the Wuffs library.
867 //
868 // As a C (not C++) library, none of the Wuffs types have constructors or
869 // destructors.
870 //
871 // In RAII style, we can still use std::unique_ptr with these pointers, but
872 // we pair the pointer with sk_free instead of C++'s delete.
873 void* decoder_raw = sk_malloc_canfail(sizeof__wuffs_gif__decoder());
874 if (!decoder_raw) {
875 *result = SkCodec::kInternalError;
876 return nullptr;
877 }
878 std::unique_ptr<wuffs_gif__decoder, decltype(&sk_free)> decoder(
879 reinterpret_cast<wuffs_gif__decoder*>(decoder_raw), &sk_free);
880
881 SkCodec::Result reset_result =
882 reset_and_decode_image_config(decoder.get(), &imgcfg, &iobuf, stream.get());
883 if (reset_result != SkCodec::kSuccess) {
884 *result = reset_result;
885 return nullptr;
886 }
887
888 uint32_t width = imgcfg.pixcfg.width();
889 uint32_t height = imgcfg.pixcfg.height();
890 if ((width == 0) || (width > INT_MAX) || (height == 0) || (height > INT_MAX)) {
891 *result = SkCodec::kInvalidInput;
892 return nullptr;
893 }
894
Nigel Tao6af1edc2019-01-19 15:12:39 +1100895 uint64_t workbuf_len = decoder->workbuf_len().max_incl;
Nigel Tao22e86242019-01-26 16:04:01 +1100896 void* workbuf_ptr_raw = nullptr;
897 if (workbuf_len) {
898 workbuf_ptr_raw = workbuf_len <= SIZE_MAX ? sk_malloc_canfail(workbuf_len) : nullptr;
899 if (!workbuf_ptr_raw) {
900 *result = SkCodec::kInternalError;
901 return nullptr;
902 }
Leon Scroggins IIIe93ec682018-10-26 09:25:51 -0400903 }
904 std::unique_ptr<uint8_t, decltype(&sk_free)> workbuf_ptr(
905 reinterpret_cast<uint8_t*>(workbuf_ptr_raw), &sk_free);
906
907 uint64_t pixbuf_len = imgcfg.pixcfg.pixbuf_len();
908 void* pixbuf_ptr_raw = pixbuf_len <= SIZE_MAX ? sk_malloc_canfail(pixbuf_len) : nullptr;
909 if (!pixbuf_ptr_raw) {
910 *result = SkCodec::kInternalError;
911 return nullptr;
912 }
913 std::unique_ptr<uint8_t, decltype(&sk_free)> pixbuf_ptr(
914 reinterpret_cast<uint8_t*>(pixbuf_ptr_raw), &sk_free);
915 wuffs_base__pixel_buffer pixbuf = ((wuffs_base__pixel_buffer){});
916
917 const char* status = pixbuf.set_from_slice(&imgcfg.pixcfg, ((wuffs_base__slice_u8){
918 .ptr = pixbuf_ptr.get(),
919 .len = pixbuf_len,
920 }));
921 if (status != nullptr) {
922 SkCodecPrintf("set_from_slice: %s", status);
923 *result = SkCodec::kInternalError;
924 return nullptr;
925 }
926
927 // In Skia's API, the alpha we calculate here and return is only for the
928 // first frame.
929 SkEncodedInfo::Alpha alpha = imgcfg.first_frame_is_opaque() ? SkEncodedInfo::kOpaque_Alpha
930 : SkEncodedInfo::kBinary_Alpha;
931
932 SkEncodedInfo encodedInfo =
933 SkEncodedInfo::Make(width, height, SkEncodedInfo::kPalette_Color, alpha, 8);
934
935 *result = SkCodec::kSuccess;
936 return std::unique_ptr<SkCodec>(new SkWuffsCodec(
937 std::move(encodedInfo), std::move(stream), std::move(decoder), std::move(pixbuf_ptr),
938 std::move(workbuf_ptr), workbuf_len, imgcfg, pixbuf, iobuf));
939}