1 /*
2 * Copyright 2008 The Android Open Source Project
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 "SkBitmap.h"
9
10 #include "SkColorData.h"
11 #include "SkConvertPixels.h"
12 #include "SkData.h"
13 #include "SkFilterQuality.h"
14 #include "SkHalf.h"
15 #include "SkImageInfoPriv.h"
16 #include "SkMallocPixelRef.h"
17 #include "SkMask.h"
18 #include "SkMaskFilterBase.h"
19 #include "SkMath.h"
20 #include "SkPixelRef.h"
21 #include "SkPixmapPriv.h"
22 #include "SkReadBuffer.h"
23 #include "SkRect.h"
24 #include "SkScalar.h"
25 #include "SkTemplates.h"
26 #include "SkTo.h"
27 #include "SkUnPreMultiply.h"
28 #include "SkWriteBuffer.h"
29 #include "SkWritePixelsRec.h"
30
31 #include <cstring>
32 #include <utility>
33
reset_return_false(SkBitmap * bm)34 static bool reset_return_false(SkBitmap* bm) {
35 bm->reset();
36 return false;
37 }
38
SkBitmap()39 SkBitmap::SkBitmap() : fFlags(0) {}
40
SkBitmap(const SkBitmap & src)41 SkBitmap::SkBitmap(const SkBitmap& src)
42 : fPixelRef (src.fPixelRef)
43 , fPixmap (src.fPixmap)
44 , fFlags (src.fFlags)
45 {
46 SkDEBUGCODE(src.validate();)
47 SkDEBUGCODE(this->validate();)
48 }
49
SkBitmap(SkBitmap && other)50 SkBitmap::SkBitmap(SkBitmap&& other)
51 : fPixelRef (std::move(other.fPixelRef))
52 , fPixmap (std::move(other.fPixmap))
53 , fFlags (other.fFlags)
54 {
55 SkASSERT(!other.fPixelRef);
56 other.fPixmap.reset();
57 other.fFlags = 0;
58 }
59
~SkBitmap()60 SkBitmap::~SkBitmap() {}
61
operator =(const SkBitmap & src)62 SkBitmap& SkBitmap::operator=(const SkBitmap& src) {
63 if (this != &src) {
64 fPixelRef = src.fPixelRef;
65 fPixmap = src.fPixmap;
66 fFlags = src.fFlags;
67 }
68 SkDEBUGCODE(this->validate();)
69 return *this;
70 }
71
operator =(SkBitmap && other)72 SkBitmap& SkBitmap::operator=(SkBitmap&& other) {
73 if (this != &other) {
74 fPixelRef = std::move(other.fPixelRef);
75 fPixmap = std::move(other.fPixmap);
76 fFlags = other.fFlags;
77 SkASSERT(!other.fPixelRef);
78 other.fPixmap.reset();
79 other.fFlags = 0;
80 }
81 return *this;
82 }
83
swap(SkBitmap & other)84 void SkBitmap::swap(SkBitmap& other) {
85 using std::swap;
86 swap(*this, other);
87 SkDEBUGCODE(this->validate();)
88 }
89
reset()90 void SkBitmap::reset() {
91 fPixelRef = nullptr; // Free pixels.
92 fPixmap.reset();
93 fFlags = 0;
94 }
95
getBounds(SkRect * bounds) const96 void SkBitmap::getBounds(SkRect* bounds) const {
97 SkASSERT(bounds);
98 *bounds = SkRect::Make(this->dimensions());
99 }
100
getBounds(SkIRect * bounds) const101 void SkBitmap::getBounds(SkIRect* bounds) const {
102 SkASSERT(bounds);
103 *bounds = fPixmap.bounds();
104 }
105
106 ///////////////////////////////////////////////////////////////////////////////
107
setInfo(const SkImageInfo & info,size_t rowBytes)108 bool SkBitmap::setInfo(const SkImageInfo& info, size_t rowBytes) {
109 SkAlphaType newAT = info.alphaType();
110 if (!SkColorTypeValidateAlphaType(info.colorType(), info.alphaType(), &newAT)) {
111 return reset_return_false(this);
112 }
113 // don't look at info.alphaType(), since newAT is the real value...
114
115 // require that rowBytes fit in 31bits
116 int64_t mrb = info.minRowBytes64();
117 if (!SkTFitsIn<int32_t>(mrb)) {
118 return reset_return_false(this);
119 }
120 if (!SkTFitsIn<int32_t>(rowBytes)) {
121 return reset_return_false(this);
122 }
123
124 if (info.width() < 0 || info.height() < 0) {
125 return reset_return_false(this);
126 }
127
128 if (kUnknown_SkColorType == info.colorType()) {
129 rowBytes = 0;
130 } else if (0 == rowBytes) {
131 rowBytes = (size_t)mrb;
132 } else if (!info.validRowBytes(rowBytes)) {
133 return reset_return_false(this);
134 }
135
136 fPixelRef = nullptr; // Free pixels.
137 fPixmap.reset(info.makeAlphaType(newAT), nullptr, SkToU32(rowBytes));
138 SkDEBUGCODE(this->validate();)
139 return true;
140 }
141
142
143
setAlphaType(SkAlphaType newAlphaType)144 bool SkBitmap::setAlphaType(SkAlphaType newAlphaType) {
145 if (!SkColorTypeValidateAlphaType(this->colorType(), newAlphaType, &newAlphaType)) {
146 return false;
147 }
148 if (this->alphaType() != newAlphaType) {
149 auto newInfo = fPixmap.info().makeAlphaType(newAlphaType);
150 fPixmap.reset(std::move(newInfo), fPixmap.addr(), fPixmap.rowBytes());
151 }
152 SkDEBUGCODE(this->validate();)
153 return true;
154 }
155
pixelRefOrigin() const156 SkIPoint SkBitmap::pixelRefOrigin() const {
157 const char* addr = (const char*)fPixmap.addr();
158 const char* pix = (const char*)(fPixelRef ? fPixelRef->pixels() : nullptr);
159 size_t rb = this->rowBytes();
160 if (!pix || 0 == rb) {
161 return {0, 0};
162 }
163 SkASSERT(this->bytesPerPixel() > 0);
164 SkASSERT(this->bytesPerPixel() == (1 << this->shiftPerPixel()));
165 SkASSERT(addr >= pix);
166 size_t off = addr - pix;
167 return {SkToS32((off % rb) >> this->shiftPerPixel()), SkToS32(off / rb)};
168 }
169
setPixelRef(sk_sp<SkPixelRef> pr,int dx,int dy)170 void SkBitmap::setPixelRef(sk_sp<SkPixelRef> pr, int dx, int dy) {
171 #ifdef SK_DEBUG
172 if (pr) {
173 if (kUnknown_SkColorType != this->colorType()) {
174 SkASSERT(dx >= 0 && this->width() + dx <= pr->width());
175 SkASSERT(dy >= 0 && this->height() + dy <= pr->height());
176 }
177 }
178 #endif
179 fPixelRef = kUnknown_SkColorType != this->colorType() ? std::move(pr) : nullptr;
180 void* p = nullptr;
181 size_t rowBytes = this->rowBytes();
182 // ignore dx,dy if there is no pixelref
183 if (fPixelRef) {
184 rowBytes = fPixelRef->rowBytes();
185 // TODO(reed): Enforce that PixelRefs must have non-null pixels.
186 p = fPixelRef->pixels();
187 if (p) {
188 p = (char*)p + dy * rowBytes + dx * this->bytesPerPixel();
189 }
190 }
191 SkPixmapPriv::ResetPixmapKeepInfo(&fPixmap, p, rowBytes);
192 SkDEBUGCODE(this->validate();)
193 }
194
setPixels(void * p)195 void SkBitmap::setPixels(void* p) {
196 if (nullptr == p) {
197 this->setPixelRef(nullptr, 0, 0);
198 return;
199 }
200
201 if (kUnknown_SkColorType == this->colorType()) {
202 this->setPixelRef(nullptr, 0, 0);
203 return;
204 }
205
206 this->setPixelRef(SkMallocPixelRef::MakeDirect(this->info(), p, this->rowBytes()), 0, 0);
207 if (!fPixelRef) {
208 return;
209 }
210 SkDEBUGCODE(this->validate();)
211 }
212
tryAllocPixels(Allocator * allocator)213 bool SkBitmap::tryAllocPixels(Allocator* allocator) {
214 HeapAllocator stdalloc;
215
216 if (nullptr == allocator) {
217 allocator = &stdalloc;
218 }
219 return allocator->allocPixelRef(this);
220 }
221
tryAllocN32Pixels(int width,int height,bool isOpaque)222 bool SkBitmap::tryAllocN32Pixels(int width, int height, bool isOpaque) {
223 SkImageInfo info = SkImageInfo::MakeN32(width, height,
224 isOpaque ? kOpaque_SkAlphaType : kPremul_SkAlphaType);
225 return this->tryAllocPixels(info);
226 }
227
allocN32Pixels(int width,int height,bool isOpaque)228 void SkBitmap::allocN32Pixels(int width, int height, bool isOpaque) {
229 SkImageInfo info = SkImageInfo::MakeN32(width, height,
230 isOpaque ? kOpaque_SkAlphaType : kPremul_SkAlphaType);
231 this->allocPixels(info);
232 }
233
allocPixels()234 void SkBitmap::allocPixels() {
235 this->allocPixels((Allocator*)nullptr);
236 }
237
allocPixels(Allocator * allocator)238 void SkBitmap::allocPixels(Allocator* allocator) {
239 SkASSERT_RELEASE(this->tryAllocPixels(allocator));
240 }
241
allocPixelsFlags(const SkImageInfo & info,uint32_t flags)242 void SkBitmap::allocPixelsFlags(const SkImageInfo& info, uint32_t flags) {
243 SkASSERT_RELEASE(this->tryAllocPixelsFlags(info, flags));
244 }
245
allocPixels(const SkImageInfo & info,size_t rowBytes)246 void SkBitmap::allocPixels(const SkImageInfo& info, size_t rowBytes) {
247 SkASSERT_RELEASE(this->tryAllocPixels(info, rowBytes));
248 }
249
allocPixels(const SkImageInfo & info)250 void SkBitmap::allocPixels(const SkImageInfo& info) {
251 this->allocPixels(info, info.minRowBytes());
252 }
253
254 ///////////////////////////////////////////////////////////////////////////////
255
tryAllocPixels(const SkImageInfo & requestedInfo,size_t rowBytes)256 bool SkBitmap::tryAllocPixels(const SkImageInfo& requestedInfo, size_t rowBytes) {
257 if (!this->setInfo(requestedInfo, rowBytes)) {
258 return reset_return_false(this);
259 }
260
261 // setInfo may have corrected info (e.g. 565 is always opaque).
262 const SkImageInfo& correctedInfo = this->info();
263 if (kUnknown_SkColorType == correctedInfo.colorType()) {
264 return true;
265 }
266 // setInfo may have computed a valid rowbytes if 0 were passed in
267 rowBytes = this->rowBytes();
268
269 sk_sp<SkPixelRef> pr = SkMallocPixelRef::MakeAllocate(correctedInfo, rowBytes);
270 if (!pr) {
271 return reset_return_false(this);
272 }
273 this->setPixelRef(std::move(pr), 0, 0);
274 if (nullptr == this->getPixels()) {
275 return reset_return_false(this);
276 }
277 SkDEBUGCODE(this->validate();)
278 return true;
279 }
280
tryAllocPixelsFlags(const SkImageInfo & requestedInfo,uint32_t allocFlags)281 bool SkBitmap::tryAllocPixelsFlags(const SkImageInfo& requestedInfo, uint32_t allocFlags) {
282 if (!this->setInfo(requestedInfo)) {
283 return reset_return_false(this);
284 }
285
286 // setInfo may have corrected info (e.g. 565 is always opaque).
287 const SkImageInfo& correctedInfo = this->info();
288
289 sk_sp<SkPixelRef> pr = (allocFlags & kZeroPixels_AllocFlag) ?
290 SkMallocPixelRef::MakeZeroed(correctedInfo, correctedInfo.minRowBytes()) :
291 SkMallocPixelRef::MakeAllocate(correctedInfo, correctedInfo.minRowBytes());
292 if (!pr) {
293 return reset_return_false(this);
294 }
295 this->setPixelRef(std::move(pr), 0, 0);
296 if (nullptr == this->getPixels()) {
297 return reset_return_false(this);
298 }
299 SkDEBUGCODE(this->validate();)
300 return true;
301 }
302
invoke_release_proc(void (* proc)(void * pixels,void * ctx),void * pixels,void * ctx)303 static void invoke_release_proc(void (*proc)(void* pixels, void* ctx), void* pixels, void* ctx) {
304 if (proc) {
305 proc(pixels, ctx);
306 }
307 }
308
installPixels(const SkImageInfo & requestedInfo,void * pixels,size_t rb,void (* releaseProc)(void * addr,void * context),void * context)309 bool SkBitmap::installPixels(const SkImageInfo& requestedInfo, void* pixels, size_t rb,
310 void (*releaseProc)(void* addr, void* context), void* context) {
311 if (!this->setInfo(requestedInfo, rb)) {
312 invoke_release_proc(releaseProc, pixels, context);
313 this->reset();
314 return false;
315 }
316 if (nullptr == pixels) {
317 invoke_release_proc(releaseProc, pixels, context);
318 return true; // we behaved as if they called setInfo()
319 }
320
321 // setInfo may have corrected info (e.g. 565 is always opaque).
322 const SkImageInfo& correctedInfo = this->info();
323
324 sk_sp<SkPixelRef> pr = SkMallocPixelRef::MakeWithProc(correctedInfo, rb, pixels,
325 releaseProc, context);
326 if (!pr) {
327 this->reset();
328 return false;
329 }
330
331 this->setPixelRef(std::move(pr), 0, 0);
332 SkDEBUGCODE(this->validate();)
333 return true;
334 }
335
installPixels(const SkPixmap & pixmap)336 bool SkBitmap::installPixels(const SkPixmap& pixmap) {
337 return this->installPixels(pixmap.info(), pixmap.writable_addr(), pixmap.rowBytes(),
338 nullptr, nullptr);
339 }
340
installMaskPixels(const SkMask & mask)341 bool SkBitmap::installMaskPixels(const SkMask& mask) {
342 if (SkMask::kA8_Format != mask.fFormat) {
343 this->reset();
344 return false;
345 }
346 return this->installPixels(SkImageInfo::MakeA8(mask.fBounds.width(),
347 mask.fBounds.height()),
348 mask.fImage, mask.fRowBytes);
349 }
350
351 ///////////////////////////////////////////////////////////////////////////////
352
getGenerationID() const353 uint32_t SkBitmap::getGenerationID() const {
354 return fPixelRef ? fPixelRef->getGenerationID() : 0;
355 }
356
notifyPixelsChanged() const357 void SkBitmap::notifyPixelsChanged() const {
358 SkASSERT(!this->isImmutable());
359 if (fPixelRef) {
360 fPixelRef->notifyPixelsChanged();
361 }
362 }
363
364 ///////////////////////////////////////////////////////////////////////////////
365
366 /** We explicitly use the same allocator for our pixels that SkMask does,
367 so that we can freely assign memory allocated by one class to the other.
368 */
allocPixelRef(SkBitmap * dst)369 bool SkBitmap::HeapAllocator::allocPixelRef(SkBitmap* dst) {
370 const SkImageInfo info = dst->info();
371 if (kUnknown_SkColorType == info.colorType()) {
372 // SkDebugf("unsupported config for info %d\n", dst->config());
373 return false;
374 }
375
376 sk_sp<SkPixelRef> pr = SkMallocPixelRef::MakeAllocate(info, dst->rowBytes());
377 if (!pr) {
378 return false;
379 }
380
381 dst->setPixelRef(std::move(pr), 0, 0);
382 SkDEBUGCODE(dst->validate();)
383 return true;
384 }
385
386 ///////////////////////////////////////////////////////////////////////////////
387
isImmutable() const388 bool SkBitmap::isImmutable() const {
389 return fPixelRef ? fPixelRef->isImmutable() : false;
390 }
391
setImmutable()392 void SkBitmap::setImmutable() {
393 if (fPixelRef) {
394 fPixelRef->setImmutable();
395 }
396 }
397
isVolatile() const398 bool SkBitmap::isVolatile() const {
399 return (fFlags & kImageIsVolatile_Flag) != 0;
400 }
401
setIsVolatile(bool isVolatile)402 void SkBitmap::setIsVolatile(bool isVolatile) {
403 if (isVolatile) {
404 fFlags |= kImageIsVolatile_Flag;
405 } else {
406 fFlags &= ~kImageIsVolatile_Flag;
407 }
408 }
409
getAddr(int x,int y) const410 void* SkBitmap::getAddr(int x, int y) const {
411 SkASSERT((unsigned)x < (unsigned)this->width());
412 SkASSERT((unsigned)y < (unsigned)this->height());
413
414 char* base = (char*)this->getPixels();
415 if (base) {
416 base += (y * this->rowBytes()) + (x << this->shiftPerPixel());
417 }
418 return base;
419 }
420
421 ///////////////////////////////////////////////////////////////////////////////
422 ///////////////////////////////////////////////////////////////////////////////
423
erase(SkColor c,const SkIRect & area) const424 void SkBitmap::erase(SkColor c, const SkIRect& area) const {
425 SkDEBUGCODE(this->validate();)
426
427 if (kUnknown_SkColorType == this->colorType()) {
428 // TODO: can we ASSERT that we never get here?
429 return; // can't erase. Should we bzero so the memory is not uninitialized?
430 }
431
432 SkPixmap result;
433 if (!this->peekPixels(&result)) {
434 return;
435 }
436
437 if (result.erase(c, area)) {
438 this->notifyPixelsChanged();
439 }
440 }
441
eraseColor(SkColor c) const442 void SkBitmap::eraseColor(SkColor c) const {
443 this->erase(c, SkIRect::MakeWH(this->width(), this->height()));
444 }
445
446 //////////////////////////////////////////////////////////////////////////////////////
447 //////////////////////////////////////////////////////////////////////////////////////
448
extractSubset(SkBitmap * result,const SkIRect & subset) const449 bool SkBitmap::extractSubset(SkBitmap* result, const SkIRect& subset) const {
450 SkDEBUGCODE(this->validate();)
451
452 if (nullptr == result || !fPixelRef) {
453 return false; // no src pixels
454 }
455
456 SkIRect srcRect, r;
457 srcRect.set(0, 0, this->width(), this->height());
458 if (!r.intersect(srcRect, subset)) {
459 return false; // r is empty (i.e. no intersection)
460 }
461
462 // If the upper left of the rectangle was outside the bounds of this SkBitmap, we should have
463 // exited above.
464 SkASSERT(static_cast<unsigned>(r.fLeft) < static_cast<unsigned>(this->width()));
465 SkASSERT(static_cast<unsigned>(r.fTop) < static_cast<unsigned>(this->height()));
466
467 SkBitmap dst;
468 dst.setInfo(this->info().makeWH(r.width(), r.height()), this->rowBytes());
469 dst.setIsVolatile(this->isVolatile());
470
471 if (fPixelRef) {
472 SkIPoint origin = this->pixelRefOrigin();
473 // share the pixelref with a custom offset
474 dst.setPixelRef(fPixelRef, origin.x() + r.fLeft, origin.y() + r.fTop);
475 }
476 SkDEBUGCODE(dst.validate();)
477
478 // we know we're good, so commit to result
479 result->swap(dst);
480 return true;
481 }
482
483 ///////////////////////////////////////////////////////////////////////////////
484
readPixels(const SkImageInfo & requestedDstInfo,void * dstPixels,size_t dstRB,int x,int y) const485 bool SkBitmap::readPixels(const SkImageInfo& requestedDstInfo, void* dstPixels, size_t dstRB,
486 int x, int y) const {
487 SkPixmap src;
488 if (!this->peekPixels(&src)) {
489 return false;
490 }
491 return src.readPixels(requestedDstInfo, dstPixels, dstRB, x, y);
492 }
493
readPixels(const SkPixmap & dst,int srcX,int srcY) const494 bool SkBitmap::readPixels(const SkPixmap& dst, int srcX, int srcY) const {
495 return this->readPixels(dst.info(), dst.writable_addr(), dst.rowBytes(), srcX, srcY);
496 }
497
writePixels(const SkPixmap & src,int dstX,int dstY)498 bool SkBitmap::writePixels(const SkPixmap& src, int dstX, int dstY) {
499 if (!SkImageInfoValidConversion(this->info(), src.info())) {
500 return false;
501 }
502
503 SkWritePixelsRec rec(src.info(), src.addr(), src.rowBytes(), dstX, dstY);
504 if (!rec.trim(this->width(), this->height())) {
505 return false;
506 }
507
508 void* dstPixels = this->getAddr(rec.fX, rec.fY);
509 const SkImageInfo dstInfo = this->info().makeWH(rec.fInfo.width(), rec.fInfo.height());
510 SkConvertPixels(dstInfo, dstPixels, this->rowBytes(), rec.fInfo, rec.fPixels, rec.fRowBytes);
511 this->notifyPixelsChanged();
512 return true;
513 }
514
515 ///////////////////////////////////////////////////////////////////////////////
516
GetBitmapAlpha(const SkBitmap & src,uint8_t * SK_RESTRICT alpha,int alphaRowBytes)517 static bool GetBitmapAlpha(const SkBitmap& src, uint8_t* SK_RESTRICT alpha, int alphaRowBytes) {
518 SkASSERT(alpha != nullptr);
519 SkASSERT(alphaRowBytes >= src.width());
520
521 SkPixmap pmap;
522 if (!src.peekPixels(&pmap)) {
523 for (int y = 0; y < src.height(); ++y) {
524 memset(alpha, 0, src.width());
525 alpha += alphaRowBytes;
526 }
527 return false;
528 }
529 SkConvertPixels(SkImageInfo::MakeA8(pmap.width(), pmap.height()), alpha, alphaRowBytes,
530 pmap.info(), pmap.addr(), pmap.rowBytes());
531 return true;
532 }
533
534 #include "SkPaint.h"
535 #include "SkMaskFilter.h"
536 #include "SkMatrix.h"
537
extractAlpha(SkBitmap * dst,const SkPaint * paint,Allocator * allocator,SkIPoint * offset) const538 bool SkBitmap::extractAlpha(SkBitmap* dst, const SkPaint* paint,
539 Allocator *allocator, SkIPoint* offset) const {
540 SkDEBUGCODE(this->validate();)
541
542 SkBitmap tmpBitmap;
543 SkMatrix identity;
544 SkMask srcM, dstM;
545
546 if (this->width() == 0 || this->height() == 0) {
547 return false;
548 }
549 srcM.fBounds.set(0, 0, this->width(), this->height());
550 srcM.fRowBytes = SkAlign4(this->width());
551 srcM.fFormat = SkMask::kA8_Format;
552
553 SkMaskFilter* filter = paint ? paint->getMaskFilter() : nullptr;
554
555 // compute our (larger?) dst bounds if we have a filter
556 if (filter) {
557 identity.reset();
558 if (!as_MFB(filter)->filterMask(&dstM, srcM, identity, nullptr)) {
559 goto NO_FILTER_CASE;
560 }
561 dstM.fRowBytes = SkAlign4(dstM.fBounds.width());
562 } else {
563 NO_FILTER_CASE:
564 tmpBitmap.setInfo(SkImageInfo::MakeA8(this->width(), this->height()), srcM.fRowBytes);
565 if (!tmpBitmap.tryAllocPixels(allocator)) {
566 // Allocation of pixels for alpha bitmap failed.
567 SkDebugf("extractAlpha failed to allocate (%d,%d) alpha bitmap\n",
568 tmpBitmap.width(), tmpBitmap.height());
569 return false;
570 }
571 GetBitmapAlpha(*this, tmpBitmap.getAddr8(0, 0), srcM.fRowBytes);
572 if (offset) {
573 offset->set(0, 0);
574 }
575 tmpBitmap.swap(*dst);
576 return true;
577 }
578 srcM.fImage = SkMask::AllocImage(srcM.computeImageSize());
579 SkAutoMaskFreeImage srcCleanup(srcM.fImage);
580
581 GetBitmapAlpha(*this, srcM.fImage, srcM.fRowBytes);
582 if (!as_MFB(filter)->filterMask(&dstM, srcM, identity, nullptr)) {
583 goto NO_FILTER_CASE;
584 }
585 SkAutoMaskFreeImage dstCleanup(dstM.fImage);
586
587 tmpBitmap.setInfo(SkImageInfo::MakeA8(dstM.fBounds.width(), dstM.fBounds.height()),
588 dstM.fRowBytes);
589 if (!tmpBitmap.tryAllocPixels(allocator)) {
590 // Allocation of pixels for alpha bitmap failed.
591 SkDebugf("extractAlpha failed to allocate (%d,%d) alpha bitmap\n",
592 tmpBitmap.width(), tmpBitmap.height());
593 return false;
594 }
595 memcpy(tmpBitmap.getPixels(), dstM.fImage, dstM.computeImageSize());
596 if (offset) {
597 offset->set(dstM.fBounds.fLeft, dstM.fBounds.fTop);
598 }
599 SkDEBUGCODE(tmpBitmap.validate();)
600
601 tmpBitmap.swap(*dst);
602 return true;
603 }
604
605 ///////////////////////////////////////////////////////////////////////////////
606
607 #ifdef SK_DEBUG
validate() const608 void SkBitmap::validate() const {
609 this->info().validate();
610
611 SkASSERT(this->info().validRowBytes(this->rowBytes()));
612 uint8_t allFlags = kImageIsVolatile_Flag;
613 SkASSERT((~allFlags & fFlags) == 0);
614
615 if (fPixelRef && fPixelRef->pixels()) {
616 SkASSERT(this->getPixels());
617 } else {
618 SkASSERT(!this->getPixels());
619 }
620
621 if (this->getPixels()) {
622 SkASSERT(fPixelRef);
623 SkASSERT(fPixelRef->rowBytes() == this->rowBytes());
624 SkIPoint origin = this->pixelRefOrigin();
625 SkASSERT(origin.fX >= 0);
626 SkASSERT(origin.fY >= 0);
627 SkASSERT(fPixelRef->width() >= (int)this->width() + origin.fX);
628 SkASSERT(fPixelRef->height() >= (int)this->height() + origin.fY);
629 SkASSERT(fPixelRef->rowBytes() >= this->info().minRowBytes());
630 }
631 }
632 #endif
633
634 ///////////////////////////////////////////////////////////////////////////////
635
peekPixels(SkPixmap * pmap) const636 bool SkBitmap::peekPixels(SkPixmap* pmap) const {
637 if (this->getPixels()) {
638 if (pmap) {
639 *pmap = fPixmap;
640 }
641 return true;
642 }
643 return false;
644 }
645
646 ///////////////////////////////////////////////////////////////////////////////
647
648 #ifdef SK_DEBUG
validate() const649 void SkImageInfo::validate() const {
650 SkASSERT(fDimensions.width() >= 0);
651 SkASSERT(fDimensions.height() >= 0);
652 SkASSERT(SkColorTypeIsValid(fColorType));
653 SkASSERT(SkAlphaTypeIsValid(fAlphaType));
654 }
655 #endif
656