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yujieqin916de9f2016-01-25 08:26:16 -08001/*
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 "SkCodec.h"
9#include "SkCodecPriv.h"
10#include "SkColorPriv.h"
11#include "SkData.h"
yujieqin916de9f2016-01-25 08:26:16 -080012#include "SkJpegCodec.h"
yujieqin916de9f2016-01-25 08:26:16 -080013#include "SkRawCodec.h"
14#include "SkRefCnt.h"
15#include "SkStream.h"
16#include "SkStreamPriv.h"
17#include "SkSwizzler.h"
ebrauerb84b5b42016-01-27 08:21:03 -080018#include "SkTaskGroup.h"
yujieqin916de9f2016-01-25 08:26:16 -080019#include "SkTemplates.h"
20#include "SkTypes.h"
21
ebrauerb84b5b42016-01-27 08:21:03 -080022#include "dng_area_task.h"
yujieqin916de9f2016-01-25 08:26:16 -080023#include "dng_color_space.h"
24#include "dng_exceptions.h"
25#include "dng_host.h"
26#include "dng_info.h"
27#include "dng_memory.h"
28#include "dng_render.h"
29#include "dng_stream.h"
30
31#include "src/piex.h"
32
33#include <cmath> // for std::round,floor,ceil
34#include <limits>
35
36namespace {
37
ebrauerb84b5b42016-01-27 08:21:03 -080038// Caluclates the number of tiles of tile_size that fit into the area in vertical and horizontal
39// directions.
40dng_point num_tiles_in_area(const dng_point &areaSize,
41 const dng_point_real64 &tileSize) {
42 // FIXME: Add a ceil_div() helper in SkCodecPriv.h
yujieqinfda27a92016-01-27 09:03:20 -080043 return dng_point(static_cast<int32>((areaSize.v + tileSize.v - 1) / tileSize.v),
44 static_cast<int32>((areaSize.h + tileSize.h - 1) / tileSize.h));
ebrauerb84b5b42016-01-27 08:21:03 -080045}
46
47int num_tasks_required(const dng_point& tilesInTask,
48 const dng_point& tilesInArea) {
49 return ((tilesInArea.v + tilesInTask.v - 1) / tilesInTask.v) *
50 ((tilesInArea.h + tilesInTask.h - 1) / tilesInTask.h);
51}
52
53// Calculate the number of tiles to process per task, taking into account the maximum number of
54// tasks. It prefers to increase horizontally for better locality of reference.
55dng_point num_tiles_per_task(const int maxTasks,
56 const dng_point &tilesInArea) {
57 dng_point tilesInTask = {1, 1};
58 while (num_tasks_required(tilesInTask, tilesInArea) > maxTasks) {
59 if (tilesInTask.h < tilesInArea.h) {
60 ++tilesInTask.h;
61 } else if (tilesInTask.v < tilesInArea.v) {
62 ++tilesInTask.v;
63 } else {
64 ThrowProgramError("num_tiles_per_task calculation is wrong.");
65 }
66 }
67 return tilesInTask;
68}
69
70std::vector<dng_rect> compute_task_areas(const int maxTasks, const dng_rect& area,
71 const dng_point& tileSize) {
72 std::vector<dng_rect> taskAreas;
73 const dng_point tilesInArea = num_tiles_in_area(area.Size(), tileSize);
74 const dng_point tilesPerTask = num_tiles_per_task(maxTasks, tilesInArea);
75 const dng_point taskAreaSize = {tilesPerTask.v * tileSize.v,
76 tilesPerTask.h * tileSize.h};
77 for (int v = 0; v < tilesInArea.v; v += tilesPerTask.v) {
78 for (int h = 0; h < tilesInArea.h; h += tilesPerTask.h) {
79 dng_rect taskArea;
80 taskArea.t = area.t + v * tileSize.v;
81 taskArea.l = area.l + h * tileSize.h;
82 taskArea.b = Min_int32(taskArea.t + taskAreaSize.v, area.b);
83 taskArea.r = Min_int32(taskArea.l + taskAreaSize.h, area.r);
84
85 taskAreas.push_back(taskArea);
86 }
87 }
88 return taskAreas;
89}
90
91class SkDngHost : public dng_host {
92public:
yujieqinfda27a92016-01-27 09:03:20 -080093 explicit SkDngHost(dng_memory_allocator* allocater) : dng_host(allocater) {}
ebrauerb84b5b42016-01-27 08:21:03 -080094
95 void PerformAreaTask(dng_area_task& task, const dng_rect& area) override {
96 // The area task gets split up into max_tasks sub-tasks. The max_tasks is defined by the
97 // dng-sdks default implementation of dng_area_task::MaxThreads() which returns 8 or 32
98 // sub-tasks depending on the architecture.
99 const int maxTasks = static_cast<int>(task.MaxThreads());
100
101 SkTaskGroup taskGroup;
102
103 // tileSize is typically 256x256
104 const dng_point tileSize(task.FindTileSize(area));
105 const std::vector<dng_rect> taskAreas = compute_task_areas(maxTasks, area, tileSize);
yujieqinfda27a92016-01-27 09:03:20 -0800106 const int numTasks = static_cast<int>(taskAreas.size());
ebrauerb84b5b42016-01-27 08:21:03 -0800107
108 task.Start(numTasks, tileSize, &Allocator(), Sniffer());
109 for (int taskIndex = 0; taskIndex < numTasks; ++taskIndex) {
mtkleincb3d4fc2016-02-26 16:57:33 -0800110 taskGroup.add([&task, this, taskIndex, taskAreas, tileSize] {
111 task.ProcessOnThread(taskIndex, taskAreas[taskIndex], tileSize, this->Sniffer());
ebrauerb84b5b42016-01-27 08:21:03 -0800112 });
113 }
114
115 taskGroup.wait();
116 task.Finish(numTasks);
117 }
118
119 uint32 PerformAreaTaskThreads() override {
120 // FIXME: Need to get the real amount of available threads used in the SkTaskGroup.
121 return kMaxMPThreads;
122 }
123
124private:
125 typedef dng_host INHERITED;
126};
127
yujieqin916de9f2016-01-25 08:26:16 -0800128// T must be unsigned type.
129template <class T>
130bool safe_add_to_size_t(T arg1, T arg2, size_t* result) {
131 SkASSERT(arg1 >= 0);
132 SkASSERT(arg2 >= 0);
133 if (arg1 >= 0 && arg2 <= std::numeric_limits<T>::max() - arg1) {
134 T sum = arg1 + arg2;
135 if (sum <= std::numeric_limits<size_t>::max()) {
136 *result = static_cast<size_t>(sum);
137 return true;
138 }
139 }
140 return false;
141}
142
143class SkDngMemoryAllocator : public dng_memory_allocator {
144public:
145 ~SkDngMemoryAllocator() override {}
146
147 dng_memory_block* Allocate(uint32 size) override {
148 // To avoid arbitary allocation requests which might lead to out-of-memory, limit the
149 // amount of memory that can be allocated at once. The memory limit is based on experiments
150 // and supposed to be sufficient for all valid DNG images.
151 if (size > 300 * 1024 * 1024) { // 300 MB
152 ThrowMemoryFull();
153 }
154 return dng_memory_allocator::Allocate(size);
155 }
156};
157
yujieqin9c7a8a42016-02-05 08:21:19 -0800158bool is_asset_stream(const SkStream& stream) {
159 return stream.hasLength() && stream.hasPosition();
160}
161
yujieqin916de9f2016-01-25 08:26:16 -0800162} // namespace
163
yujieqin9c7a8a42016-02-05 08:21:19 -0800164class SkRawStream {
yujieqin916de9f2016-01-25 08:26:16 -0800165public:
yujieqin9c7a8a42016-02-05 08:21:19 -0800166 virtual ~SkRawStream() {}
yujieqin916de9f2016-01-25 08:26:16 -0800167
yujieqin9c7a8a42016-02-05 08:21:19 -0800168 /*
169 * Gets the length of the stream. Depending on the type of stream, this may require reading to
170 * the end of the stream.
171 */
172 virtual uint64 getLength() = 0;
173
174 virtual bool read(void* data, size_t offset, size_t length) = 0;
yujieqin916de9f2016-01-25 08:26:16 -0800175
176 /*
177 * Creates an SkMemoryStream from the offset with size.
178 * Note: for performance reason, this function is destructive to the SkRawStream. One should
179 * abandon current object after the function call.
180 */
yujieqin9c7a8a42016-02-05 08:21:19 -0800181 virtual SkMemoryStream* transferBuffer(size_t offset, size_t size) = 0;
182};
183
184class SkRawBufferedStream : public SkRawStream {
185public:
186 // Will take the ownership of the stream.
187 explicit SkRawBufferedStream(SkStream* stream)
188 : fStream(stream)
189 , fWholeStreamRead(false)
190 {
191 // Only use SkRawBufferedStream when the stream is not an asset stream.
192 SkASSERT(!is_asset_stream(*stream));
193 }
194
195 ~SkRawBufferedStream() override {}
196
197 uint64 getLength() override {
198 if (!this->bufferMoreData(kReadToEnd)) { // read whole stream
199 ThrowReadFile();
200 }
201 return fStreamBuffer.bytesWritten();
202 }
203
204 bool read(void* data, size_t offset, size_t length) override {
205 if (length == 0) {
206 return true;
207 }
208
209 size_t sum;
210 if (!safe_add_to_size_t(offset, length, &sum)) {
211 return false;
212 }
213
214 return this->bufferMoreData(sum) && fStreamBuffer.read(data, offset, length);
215 }
216
217 SkMemoryStream* transferBuffer(size_t offset, size_t size) override {
yujieqin916de9f2016-01-25 08:26:16 -0800218 SkAutoTUnref<SkData> data(SkData::NewUninitialized(size));
219 if (offset > fStreamBuffer.bytesWritten()) {
220 // If the offset is not buffered, read from fStream directly and skip the buffering.
221 const size_t skipLength = offset - fStreamBuffer.bytesWritten();
222 if (fStream->skip(skipLength) != skipLength) {
223 return nullptr;
224 }
225 const size_t bytesRead = fStream->read(data->writable_data(), size);
226 if (bytesRead < size) {
227 data.reset(SkData::NewSubset(data.get(), 0, bytesRead));
228 }
229 } else {
230 const size_t alreadyBuffered = SkTMin(fStreamBuffer.bytesWritten() - offset, size);
231 if (alreadyBuffered > 0 &&
232 !fStreamBuffer.read(data->writable_data(), offset, alreadyBuffered)) {
233 return nullptr;
234 }
235
236 const size_t remaining = size - alreadyBuffered;
237 if (remaining) {
238 auto* dst = static_cast<uint8_t*>(data->writable_data()) + alreadyBuffered;
239 const size_t bytesRead = fStream->read(dst, remaining);
240 size_t newSize;
241 if (bytesRead < remaining) {
242 if (!safe_add_to_size_t(alreadyBuffered, bytesRead, &newSize)) {
243 return nullptr;
244 }
245 data.reset(SkData::NewSubset(data.get(), 0, newSize));
246 }
247 }
248 }
249 return new SkMemoryStream(data);
250 }
251
yujieqin916de9f2016-01-25 08:26:16 -0800252private:
253 // Note: if the newSize == kReadToEnd (0), this function will read to the end of stream.
254 bool bufferMoreData(size_t newSize) {
255 if (newSize == kReadToEnd) {
256 if (fWholeStreamRead) { // already read-to-end.
257 return true;
258 }
259
260 // TODO: optimize for the special case when the input is SkMemoryStream.
261 return SkStreamCopy(&fStreamBuffer, fStream.get());
262 }
263
264 if (newSize <= fStreamBuffer.bytesWritten()) { // already buffered to newSize
265 return true;
266 }
267 if (fWholeStreamRead) { // newSize is larger than the whole stream.
268 return false;
269 }
270
yujieqin22000d12016-02-02 08:09:07 -0800271 // Try to read at least 8192 bytes to avoid to many small reads.
272 const size_t kMinSizeToRead = 8192;
273 const size_t sizeRequested = newSize - fStreamBuffer.bytesWritten();
274 const size_t sizeToRead = SkTMax(kMinSizeToRead, sizeRequested);
275 SkAutoSTMalloc<kMinSizeToRead, uint8> tempBuffer(sizeToRead);
yujieqin916de9f2016-01-25 08:26:16 -0800276 const size_t bytesRead = fStream->read(tempBuffer.get(), sizeToRead);
yujieqin22000d12016-02-02 08:09:07 -0800277 if (bytesRead < sizeRequested) {
yujieqin916de9f2016-01-25 08:26:16 -0800278 return false;
279 }
280 return fStreamBuffer.write(tempBuffer.get(), bytesRead);
281 }
282
283 SkAutoTDelete<SkStream> fStream;
284 bool fWholeStreamRead;
285
286 SkDynamicMemoryWStream fStreamBuffer;
287
288 const size_t kReadToEnd = 0;
289};
290
yujieqin9c7a8a42016-02-05 08:21:19 -0800291class SkRawAssetStream : public SkRawStream {
yujieqin916de9f2016-01-25 08:26:16 -0800292public:
yujieqin9c7a8a42016-02-05 08:21:19 -0800293 // Will take the ownership of the stream.
294 explicit SkRawAssetStream(SkStream* stream)
295 : fStream(stream)
296 {
297 // Only use SkRawAssetStream when the stream is an asset stream.
298 SkASSERT(is_asset_stream(*stream));
299 }
yujieqin916de9f2016-01-25 08:26:16 -0800300
yujieqin9c7a8a42016-02-05 08:21:19 -0800301 ~SkRawAssetStream() override {}
yujieqin916de9f2016-01-25 08:26:16 -0800302
yujieqin9c7a8a42016-02-05 08:21:19 -0800303 uint64 getLength() override {
304 return fStream->getLength();
305 }
306
307
308 bool read(void* data, size_t offset, size_t length) override {
309 if (length == 0) {
310 return true;
311 }
312
313 size_t sum;
314 if (!safe_add_to_size_t(offset, length, &sum)) {
315 return false;
316 }
317
318 return fStream->seek(offset) && (fStream->read(data, length) == length);
319 }
320
321 SkMemoryStream* transferBuffer(size_t offset, size_t size) override {
322 if (fStream->getLength() < offset) {
323 return nullptr;
324 }
325
326 size_t sum;
327 if (!safe_add_to_size_t(offset, size, &sum)) {
328 return nullptr;
329 }
330
331 // This will allow read less than the requested "size", because the JPEG codec wants to
332 // handle also a partial JPEG file.
333 const size_t bytesToRead = SkTMin(sum, fStream->getLength()) - offset;
334 if (bytesToRead == 0) {
335 return nullptr;
336 }
337
338 if (fStream->getMemoryBase()) { // directly copy if getMemoryBase() is available.
339 SkAutoTUnref<SkData> data(SkData::NewWithCopy(
340 static_cast<const uint8_t*>(fStream->getMemoryBase()) + offset, bytesToRead));
341 fStream.free();
342 return new SkMemoryStream(data);
343 } else {
344 SkAutoTUnref<SkData> data(SkData::NewUninitialized(bytesToRead));
345 if (!fStream->seek(offset)) {
346 return nullptr;
347 }
348 const size_t bytesRead = fStream->read(data->writable_data(), bytesToRead);
349 if (bytesRead < bytesToRead) {
350 data.reset(SkData::NewSubset(data.get(), 0, bytesRead));
351 }
352 return new SkMemoryStream(data);
353 }
354 }
355private:
356 SkAutoTDelete<SkStream> fStream;
357};
358
359class SkPiexStream : public ::piex::StreamInterface {
360public:
361 // Will NOT take the ownership of the stream.
362 explicit SkPiexStream(SkRawStream* stream) : fStream(stream) {}
363
364 ~SkPiexStream() override {}
365
366 ::piex::Error GetData(const size_t offset, const size_t length,
367 uint8* data) override {
368 return fStream->read(static_cast<void*>(data), offset, length) ?
369 ::piex::Error::kOk : ::piex::Error::kFail;
yujieqin916de9f2016-01-25 08:26:16 -0800370 }
371
372private:
yujieqin9c7a8a42016-02-05 08:21:19 -0800373 SkRawStream* fStream;
374};
375
376class SkDngStream : public dng_stream {
377public:
378 // Will NOT take the ownership of the stream.
379 SkDngStream(SkRawStream* stream) : fStream(stream) {}
380
381 ~SkDngStream() override {}
382
383 uint64 DoGetLength() override { return fStream->getLength(); }
384
385 void DoRead(void* data, uint32 count, uint64 offset) override {
386 size_t sum;
387 if (!safe_add_to_size_t(static_cast<uint64>(count), offset, &sum) ||
388 !fStream->read(data, static_cast<size_t>(offset), static_cast<size_t>(count))) {
389 ThrowReadFile();
390 }
391 }
392
393private:
394 SkRawStream* fStream;
yujieqin916de9f2016-01-25 08:26:16 -0800395};
396
397class SkDngImage {
398public:
ebrauer46d2aa82016-02-17 08:04:00 -0800399 /*
400 * Initializes the object with the information from Piex in a first attempt. This way it can
401 * save time and storage to obtain the DNG dimensions and color filter array (CFA) pattern
402 * which is essential for the demosaicing of the sensor image.
403 * Note: this will take the ownership of the stream.
404 */
yujieqin916de9f2016-01-25 08:26:16 -0800405 static SkDngImage* NewFromStream(SkRawStream* stream) {
406 SkAutoTDelete<SkDngImage> dngImage(new SkDngImage(stream));
ebrauer46d2aa82016-02-17 08:04:00 -0800407 if (!dngImage->initFromPiex()) {
408 if (!dngImage->readDng()) {
409 return nullptr;
410 }
yujieqin916de9f2016-01-25 08:26:16 -0800411 }
412
yujieqin916de9f2016-01-25 08:26:16 -0800413 return dngImage.release();
414 }
415
416 /*
417 * Renders the DNG image to the size. The DNG SDK only allows scaling close to integer factors
418 * down to 80 pixels on the short edge. The rendered image will be close to the specified size,
419 * but there is no guarantee that any of the edges will match the requested size. E.g.
420 * 100% size: 4000 x 3000
421 * requested size: 1600 x 1200
422 * returned size could be: 2000 x 1500
423 */
424 dng_image* render(int width, int height) {
425 if (!fHost || !fInfo || !fNegative || !fDngStream) {
426 if (!this->readDng()) {
427 return nullptr;
428 }
429 }
430
mtkleincb3d4fc2016-02-26 16:57:33 -0800431 // render() takes ownership of fHost, fInfo, fNegative and fDngStream when available.
432 SkAutoTDelete<dng_host> host(fHost.release());
433 SkAutoTDelete<dng_info> info(fInfo.release());
434 SkAutoTDelete<dng_negative> negative(fNegative.release());
435 SkAutoTDelete<dng_stream> dngStream(fDngStream.release());
436
yujieqin916de9f2016-01-25 08:26:16 -0800437 // DNG SDK preserves the aspect ratio, so it only needs to know the longer dimension.
438 const int preferredSize = SkTMax(width, height);
439 try {
440 host->SetPreferredSize(preferredSize);
441 host->ValidateSizes();
442
443 negative->ReadStage1Image(*host, *dngStream, *info);
444
445 if (info->fMaskIndex != -1) {
446 negative->ReadTransparencyMask(*host, *dngStream, *info);
447 }
448
449 negative->ValidateRawImageDigest(*host);
450 if (negative->IsDamaged()) {
451 return nullptr;
452 }
453
454 const int32 kMosaicPlane = -1;
455 negative->BuildStage2Image(*host);
456 negative->BuildStage3Image(*host, kMosaicPlane);
457
458 dng_render render(*host, *negative);
459 render.SetFinalSpace(dng_space_sRGB::Get());
460 render.SetFinalPixelType(ttByte);
461
462 dng_point stage3_size = negative->Stage3Image()->Size();
463 render.SetMaximumSize(SkTMax(stage3_size.h, stage3_size.v));
464
465 return render.Render();
466 } catch (...) {
467 return nullptr;
468 }
469 }
470
471 const SkImageInfo& getImageInfo() const {
472 return fImageInfo;
473 }
474
475 bool isScalable() const {
476 return fIsScalable;
477 }
478
479 bool isXtransImage() const {
480 return fIsXtransImage;
481 }
482
483private:
ebrauer46d2aa82016-02-17 08:04:00 -0800484 void init(const int width, const int height, const dng_point& cfaPatternSize) {
485 fImageInfo = SkImageInfo::Make(width, height, kN32_SkColorType, kOpaque_SkAlphaType);
486
487 // The DNG SDK scales only during demosaicing, so scaling is only possible when
488 // a mosaic info is available.
489 fIsScalable = cfaPatternSize.v != 0 && cfaPatternSize.h != 0;
490 fIsXtransImage = fIsScalable ? (cfaPatternSize.v == 6 && cfaPatternSize.h == 6) : false;
491 }
492
493 bool initFromPiex() {
494 // Does not take the ownership of rawStream.
495 SkPiexStream piexStream(fStream.get());
496 ::piex::PreviewImageData imageData;
497 if (::piex::IsRaw(&piexStream)
498 && ::piex::GetPreviewImageData(&piexStream, &imageData) == ::piex::Error::kOk)
499 {
500 dng_point cfaPatternSize(imageData.cfa_pattern_dim[1], imageData.cfa_pattern_dim[0]);
501 this->init(static_cast<int>(imageData.full_width),
502 static_cast<int>(imageData.full_height), cfaPatternSize);
503 return true;
504 }
505 return false;
506 }
507
yujieqin916de9f2016-01-25 08:26:16 -0800508 bool readDng() {
mtkleincb3d4fc2016-02-26 16:57:33 -0800509 // Due to the limit of DNG SDK, we need to reset host and info.
510 fHost.reset(new SkDngHost(&fAllocator));
511 fInfo.reset(new dng_info);
512 fDngStream.reset(new SkDngStream(fStream));
yujieqin916de9f2016-01-25 08:26:16 -0800513 try {
514 fHost->ValidateSizes();
515 fInfo->Parse(*fHost, *fDngStream);
516 fInfo->PostParse(*fHost);
517 if (!fInfo->IsValidDNG()) {
518 return false;
519 }
520
521 fNegative.reset(fHost->Make_dng_negative());
522 fNegative->Parse(*fHost, *fDngStream, *fInfo);
523 fNegative->PostParse(*fHost, *fDngStream, *fInfo);
524 fNegative->SynchronizeMetadata();
525
ebrauer46d2aa82016-02-17 08:04:00 -0800526 dng_point cfaPatternSize(0, 0);
527 if (fNegative->GetMosaicInfo() != nullptr) {
528 cfaPatternSize = fNegative->GetMosaicInfo()->fCFAPatternSize;
529 }
530 this->init(static_cast<int>(fNegative->DefaultCropSizeH().As_real64()),
531 static_cast<int>(fNegative->DefaultCropSizeV().As_real64()),
532 cfaPatternSize);
yujieqin916de9f2016-01-25 08:26:16 -0800533 return true;
534 } catch (...) {
yujieqin916de9f2016-01-25 08:26:16 -0800535 return false;
536 }
537 }
538
539 SkDngImage(SkRawStream* stream)
540 : fStream(stream) {}
541
542 SkDngMemoryAllocator fAllocator;
543 SkAutoTDelete<SkRawStream> fStream;
544 SkAutoTDelete<dng_host> fHost;
545 SkAutoTDelete<dng_info> fInfo;
546 SkAutoTDelete<dng_negative> fNegative;
547 SkAutoTDelete<dng_stream> fDngStream;
548
549 SkImageInfo fImageInfo;
550 bool fIsScalable;
551 bool fIsXtransImage;
552};
553
554/*
555 * Tries to handle the image with PIEX. If PIEX returns kOk and finds the preview image, create a
556 * SkJpegCodec. If PIEX returns kFail, then the file is invalid, return nullptr. In other cases,
557 * fallback to create SkRawCodec for DNG images.
558 */
559SkCodec* SkRawCodec::NewFromStream(SkStream* stream) {
yujieqin9c7a8a42016-02-05 08:21:19 -0800560 SkAutoTDelete<SkRawStream> rawStream;
561 if (is_asset_stream(*stream)) {
562 rawStream.reset(new SkRawAssetStream(stream));
563 } else {
564 rawStream.reset(new SkRawBufferedStream(stream));
565 }
566
567 // Does not take the ownership of rawStream.
568 SkPiexStream piexStream(rawStream.get());
yujieqin916de9f2016-01-25 08:26:16 -0800569 ::piex::PreviewImageData imageData;
yujieqin9c7a8a42016-02-05 08:21:19 -0800570 if (::piex::IsRaw(&piexStream)) {
571 ::piex::Error error = ::piex::GetPreviewImageData(&piexStream, &imageData);
yujieqin916de9f2016-01-25 08:26:16 -0800572
yujieqin2d172eb2016-02-23 06:49:38 -0800573 if (error == ::piex::Error::kOk && imageData.preview.length > 0) {
yujieqin916de9f2016-01-25 08:26:16 -0800574 // transferBuffer() is destructive to the rawStream. Abandon the rawStream after this
575 // function call.
576 // FIXME: one may avoid the copy of memoryStream and use the buffered rawStream.
577 SkMemoryStream* memoryStream =
yujieqin2d172eb2016-02-23 06:49:38 -0800578 rawStream->transferBuffer(imageData.preview.offset, imageData.preview.length);
yujieqin916de9f2016-01-25 08:26:16 -0800579 return memoryStream ? SkJpegCodec::NewFromStream(memoryStream) : nullptr;
yujieqin916de9f2016-01-25 08:26:16 -0800580 } else if (error == ::piex::Error::kFail) {
581 return nullptr;
582 }
583 }
584
yujieqin9c7a8a42016-02-05 08:21:19 -0800585 // Takes the ownership of the rawStream.
yujieqin916de9f2016-01-25 08:26:16 -0800586 SkAutoTDelete<SkDngImage> dngImage(SkDngImage::NewFromStream(rawStream.release()));
587 if (!dngImage) {
588 return nullptr;
589 }
590
591 return new SkRawCodec(dngImage.release());
592}
593
594SkCodec::Result SkRawCodec::onGetPixels(const SkImageInfo& requestedInfo, void* dst,
595 size_t dstRowBytes, const Options& options,
596 SkPMColor ctable[], int* ctableCount,
597 int* rowsDecoded) {
598 if (!conversion_possible(requestedInfo, this->getInfo())) {
599 SkCodecPrintf("Error: cannot convert input type to output type.\n");
600 return kInvalidConversion;
601 }
602
603 SkAutoTDelete<SkSwizzler> swizzler(SkSwizzler::CreateSwizzler(
604 SkSwizzler::kRGB, nullptr, requestedInfo, options));
605 SkASSERT(swizzler);
606
607 const int width = requestedInfo.width();
608 const int height = requestedInfo.height();
609 SkAutoTDelete<dng_image> image(fDngImage->render(width, height));
610 if (!image) {
611 return kInvalidInput;
612 }
613
614 // Because the DNG SDK can not guarantee to render to requested size, we allow a small
615 // difference. Only the overlapping region will be converted.
616 const float maxDiffRatio = 1.03f;
617 const dng_point& imageSize = image->Size();
618 if (imageSize.h / width > maxDiffRatio || imageSize.h < width ||
619 imageSize.v / height > maxDiffRatio || imageSize.v < height) {
620 return SkCodec::kInvalidScale;
621 }
622
623 void* dstRow = dst;
yujieqin24716be2016-01-27 07:59:00 -0800624 SkAutoTMalloc<uint8_t> srcRow(width * 3);
yujieqin916de9f2016-01-25 08:26:16 -0800625
626 dng_pixel_buffer buffer;
627 buffer.fData = &srcRow[0];
628 buffer.fPlane = 0;
629 buffer.fPlanes = 3;
630 buffer.fColStep = buffer.fPlanes;
631 buffer.fPlaneStep = 1;
632 buffer.fPixelType = ttByte;
633 buffer.fPixelSize = sizeof(uint8_t);
scroggoe6459652016-01-30 10:06:11 -0800634 buffer.fRowStep = width * 3;
yujieqin916de9f2016-01-25 08:26:16 -0800635
636 for (int i = 0; i < height; ++i) {
637 buffer.fArea = dng_rect(i, 0, i + 1, width);
638
639 try {
640 image->Get(buffer, dng_image::edge_zero);
641 } catch (...) {
642 *rowsDecoded = i;
643 return kIncompleteInput;
644 }
645
646 swizzler->swizzle(dstRow, &srcRow[0]);
647 dstRow = SkTAddOffset<void>(dstRow, dstRowBytes);
648 }
649 return kSuccess;
650}
651
652SkISize SkRawCodec::onGetScaledDimensions(float desiredScale) const {
653 SkASSERT(desiredScale <= 1.f);
654 const SkISize dim = this->getInfo().dimensions();
655 if (!fDngImage->isScalable()) {
656 return dim;
657 }
658
659 // Limits the minimum size to be 80 on the short edge.
yujieqin076d83d2016-01-27 08:25:53 -0800660 const float shortEdge = static_cast<float>(SkTMin(dim.fWidth, dim.fHeight));
yujieqin916de9f2016-01-25 08:26:16 -0800661 if (desiredScale < 80.f / shortEdge) {
662 desiredScale = 80.f / shortEdge;
663 }
664
665 // For Xtrans images, the integer-factor scaling does not support the half-size scaling case
666 // (stronger downscalings are fine). In this case, returns the factor "3" scaling instead.
667 if (fDngImage->isXtransImage() && desiredScale > 1.f / 3.f && desiredScale < 1.f) {
668 desiredScale = 1.f / 3.f;
669 }
670
671 // Round to integer-factors.
672 const float finalScale = std::floor(1.f/ desiredScale);
yujieqin076d83d2016-01-27 08:25:53 -0800673 return SkISize::Make(static_cast<int32_t>(std::floor(dim.fWidth / finalScale)),
674 static_cast<int32_t>(std::floor(dim.fHeight / finalScale)));
yujieqin916de9f2016-01-25 08:26:16 -0800675}
676
677bool SkRawCodec::onDimensionsSupported(const SkISize& dim) {
678 const SkISize fullDim = this->getInfo().dimensions();
yujieqin076d83d2016-01-27 08:25:53 -0800679 const float fullShortEdge = static_cast<float>(SkTMin(fullDim.fWidth, fullDim.fHeight));
680 const float shortEdge = static_cast<float>(SkTMin(dim.fWidth, dim.fHeight));
yujieqin916de9f2016-01-25 08:26:16 -0800681
682 SkISize sizeFloor = this->onGetScaledDimensions(1.f / std::floor(fullShortEdge / shortEdge));
683 SkISize sizeCeil = this->onGetScaledDimensions(1.f / std::ceil(fullShortEdge / shortEdge));
684 return sizeFloor == dim || sizeCeil == dim;
685}
686
687SkRawCodec::~SkRawCodec() {}
688
689SkRawCodec::SkRawCodec(SkDngImage* dngImage)
690 : INHERITED(dngImage->getImageInfo(), nullptr)
691 , fDngImage(dngImage) {}