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1 /* | 1 /* |
2 * Copyright 2012 Google Inc. | 2 * Copyright 2012 Google Inc. |
3 * | 3 * |
4 * Use of this source code is governed by a BSD-style license that can be | 4 * Use of this source code is governed by a BSD-style license that can be |
5 * found in the LICENSE file. | 5 * found in the LICENSE file. |
6 */ | 6 */ |
7 | 7 |
8 #include "SkAutoPixmapStorage.h" | 8 #include "SkAutoPixmapStorage.h" |
9 #include "GrCaps.h" | 9 #include "GrCaps.h" |
10 #include "GrContext.h" | 10 #include "GrContext.h" |
11 #include "GrDrawContext.h" | 11 #include "GrDrawContext.h" |
12 #include "GrImageIDTextureAdjuster.h" | 12 #include "GrImageIDTextureAdjuster.h" |
13 #include "effects/GrYUVEffect.h" | 13 #include "effects/GrYUVEffect.h" |
14 #include "SkCanvas.h" | 14 #include "SkCanvas.h" |
15 #include "SkBitmapCache.h" | 15 #include "SkBitmapCache.h" |
16 #include "SkGrPixelRef.h" | 16 #include "SkGrPixelRef.h" |
17 #include "SkGrPriv.h" | 17 #include "SkGrPriv.h" |
18 #include "SkImage_Gpu.h" | 18 #include "SkImage_Gpu.h" |
19 #include "SkMipMap.h" | |
19 #include "SkPixelRef.h" | 20 #include "SkPixelRef.h" |
20 | 21 |
21 SkImage_Gpu::SkImage_Gpu(int w, int h, uint32_t uniqueID, SkAlphaType at, GrText ure* tex, | 22 SkImage_Gpu::SkImage_Gpu(int w, int h, uint32_t uniqueID, SkAlphaType at, GrText ure* tex, |
22 SkBudgeted budgeted) | 23 SkBudgeted budgeted) |
23 : INHERITED(w, h, uniqueID) | 24 : INHERITED(w, h, uniqueID) |
24 , fTexture(SkRef(tex)) | 25 , fTexture(SkRef(tex)) |
25 , fAlphaType(at) | 26 , fAlphaType(at) |
26 , fBudgeted(budgeted) | 27 , fBudgeted(budgeted) |
27 , fAddedRasterVersionToCache(false) | 28 , fAddedRasterVersionToCache(false) |
28 { | 29 { |
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355 // It contains fMipMapLevelCount elements. | 356 // It contains fMipMapLevelCount elements. |
356 // That means this struct's size is not known at compile-time. | 357 // That means this struct's size is not known at compile-time. |
357 MipMapLevelData fMipMapLevelData[1]; | 358 MipMapLevelData fMipMapLevelData[1]; |
358 }; | 359 }; |
359 Data fData; | 360 Data fData; |
360 | 361 |
361 friend class SkImage; | 362 friend class SkImage; |
362 }; | 363 }; |
363 | 364 |
364 size_t SkImage::getDeferredTextureImageData(const GrContextThreadSafeProxy& prox y, | 365 size_t SkImage::getDeferredTextureImageData(const GrContextThreadSafeProxy& prox y, |
365 const DeferredTextureImageUsageParam s[], | 366 const DeferredTextureImageUsageParam s params[], |
366 int paramCnt, void* buffer) const { | 367 int paramCnt, void* buffer) const { |
367 const bool fillMode = SkToBool(buffer); | 368 const bool fillMode = SkToBool(buffer); |
368 if (fillMode && !SkIsAlign8(reinterpret_cast<intptr_t>(buffer))) { | 369 if (fillMode && !SkIsAlign8(reinterpret_cast<intptr_t>(buffer))) { |
369 return 0; | 370 return 0; |
370 } | 371 } |
371 | 372 |
372 const int maxTextureSize = proxy.fCaps->maxTextureSize(); | 373 const int maxTextureSize = proxy.fCaps->maxTextureSize(); |
373 if (width() > maxTextureSize || height() > maxTextureSize) { | 374 if (width() > maxTextureSize || height() > maxTextureSize) { |
374 return 0; | 375 return 0; |
375 } | 376 } |
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398 info = SkImageInfo::MakeN32(this->width(), this->height(), at); | 399 info = SkImageInfo::MakeN32(this->width(), this->height(), at); |
399 pixelSize = SkAlign8(SkAutoPixmapStorage::AllocSize(info, nullptr)); | 400 pixelSize = SkAlign8(SkAutoPixmapStorage::AllocSize(info, nullptr)); |
400 if (fillMode) { | 401 if (fillMode) { |
401 pixmap.alloc(info); | 402 pixmap.alloc(info); |
402 if (!this->readPixels(pixmap, 0, 0, SkImage::kDisallow_CachingHint)) { | 403 if (!this->readPixels(pixmap, 0, 0, SkImage::kDisallow_CachingHint)) { |
403 return 0; | 404 return 0; |
404 } | 405 } |
405 SkASSERT(!pixmap.ctable()); | 406 SkASSERT(!pixmap.ctable()); |
406 } | 407 } |
407 } | 408 } |
409 bool shouldUseMipMaps = false; | |
408 int mipMapLevelCount = 1; | 410 int mipMapLevelCount = 1; |
411 for (int currentParamIndex = paramCnt; currentParamIndex > 0; currentParamIn dex--) { | |
412 SkScalar minScaleFactor = params[currentParamIndex].fMatrix.getMinScale( ); | |
413 if ((params[currentParamIndex].fQuality == kMedium_SkFilterQuality || | |
414 params[currentParamIndex].fQuality == kHigh_SkFilterQuality) && | |
415 minScaleFactor != -1.f && minScaleFactor < 1.f) { | |
bsalomon
2016/06/03 14:43:33
Do we not use mip maps when the matrix has perspec
cblume
2016/06/03 17:03:40
Hrmmm I think any time perspective is involved it
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416 shouldUseMipMaps = true; | |
417 mipMapLevelCount = SkMipMap::ComputeLevelCount(width(), height()); | |
418 break; | |
419 } | |
420 } | |
421 SkAlphaType at = this->isOpaque() ? kOpaque_SkAlphaType : kPremul_SkAlphaTyp e; | |
422 if (shouldUseMipMaps) { | |
423 for (int currentMipMapLevelIndex = mipMapLevelCount; currentMipMapLevelI ndex > 0; | |
424 currentMipMapLevelIndex--) { | |
425 SkSize mipSize = SkMipMap::ComputeLevelSize(width(), height(), curre ntMipMapLevelIndex); | |
426 SkImageInfo mipInfo = SkImageInfo::MakeN32(mipSize.fWidth, mipSize.f Height, at); | |
427 pixelSize += SkAlign8(SkAutoPixmapStorage::AllocSize(mipInfo, nullpt r)); | |
428 } | |
429 } | |
409 size_t size = 0; | 430 size_t size = 0; |
410 size_t dtiSize = SkAlign8(sizeof(DeferredTextureImage)); | 431 size_t dtiSize = SkAlign8(sizeof(DeferredTextureImage)); |
411 size += dtiSize; | 432 size += dtiSize; |
412 size += mipMapLevelCount * sizeof(DeferredTextureImage::MipMapLevelData); | 433 size += mipMapLevelCount * sizeof(DeferredTextureImage::MipMapLevelData); |
413 size_t pixelOffset = size; | 434 size_t pixelOffset = size; |
414 size += pixelSize; | 435 size += pixelSize; |
415 size_t ctOffset = size; | 436 size_t ctOffset = size; |
416 size += ctSize; | 437 size += ctSize; |
417 if (!fillMode) { | 438 if (!fillMode) { |
418 return size; | 439 return size; |
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432 SkASSERT(info == pixmap.info()); | 453 SkASSERT(info == pixmap.info()); |
433 size_t rowBytes = pixmap.rowBytes(); | 454 size_t rowBytes = pixmap.rowBytes(); |
434 DeferredTextureImage* dti = new (buffer) DeferredTextureImage(); | 455 DeferredTextureImage* dti = new (buffer) DeferredTextureImage(); |
435 dti->fContextUniqueID = proxy.fContextUniqueID; | 456 dti->fContextUniqueID = proxy.fContextUniqueID; |
436 dti->fData.fInfo = info; | 457 dti->fData.fInfo = info; |
437 dti->fData.fColorTableCnt = ctCount; | 458 dti->fData.fColorTableCnt = ctCount; |
438 dti->fData.fColorTableData = ct; | 459 dti->fData.fColorTableData = ct; |
439 dti->fData.fMipMapLevelCount = mipMapLevelCount; | 460 dti->fData.fMipMapLevelCount = mipMapLevelCount; |
440 dti->fData.fMipMapLevelData[0].fPixelData = pixels; | 461 dti->fData.fMipMapLevelData[0].fPixelData = pixels; |
441 dti->fData.fMipMapLevelData[0].fRowBytes = rowBytes; | 462 dti->fData.fMipMapLevelData[0].fRowBytes = rowBytes; |
463 | |
464 // Fill in the mipmap levels if they exist | |
465 intptr_t mipLevelPtr = bufferAsInt + pixelOffset; | |
466 if (shouldUseMipMaps) { | |
467 SkAutoTDelete<SkMipMap> mipmaps(SkMipMap::Build(pixmap, nullptr)); | |
468 for (int currentMipMapLevelIndex = 1; currentMipMapLevelIndex < mipMapLe velCount; | |
469 currentMipMapLevelIndex++) { | |
470 SkSize prevMipSize = SkMipMap::ComputeLevelSize(width(), height(), c urrentMipMapLevelIndex); | |
471 SkImageInfo prevMipInfo = SkImageInfo::MakeN32(prevMipSize.fWidth, p revMipSize.fHeight, at); | |
472 mipLevelPtr += SkAlign8(SkAutoPixmapStorage::AllocSize(prevMipInfo, nullptr)); | |
473 | |
474 SkMipMap::Level currentMipMapLevel; | |
475 mipmaps->getLevel(currentMipMapLevelIndex, ¤tMipMapLevel); | |
476 memcpy(reinterpret_cast<void*>(mipLevelPtr), currentMipMapLevel.fPix map.addr(), | |
bsalomon
2016/06/03 14:43:33
It's too bad we have to memcpy here. Should we ext
cblume
2016/06/03 17:03:40
I agree @ memcpy. I would love to add a CL that mo
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477 currentMipMapLevel.fPixmap.getSafeSize()); | |
478 dti->fData.fMipMapLevelData[currentMipMapLevelIndex].fPixelData = | |
479 reinterpret_cast<void*>(mipLevelPtr); | |
480 dti->fData.fMipMapLevelData[currentMipMapLevelIndex].fRowBytes = | |
481 currentMipMapLevel.fPixmap.rowBytes(); | |
482 } | |
483 } | |
442 return size; | 484 return size; |
443 } | 485 } |
444 | 486 |
445 sk_sp<SkImage> SkImage::MakeFromDeferredTextureImageData(GrContext* context, con st void* data, | 487 sk_sp<SkImage> SkImage::MakeFromDeferredTextureImageData(GrContext* context, con st void* data, |
446 SkBudgeted budgeted) { | 488 SkBudgeted budgeted) { |
447 if (!data) { | 489 if (!data) { |
448 return nullptr; | 490 return nullptr; |
449 } | 491 } |
450 const DeferredTextureImage* dti = reinterpret_cast<const DeferredTextureImag e*>(data); | 492 const DeferredTextureImage* dti = reinterpret_cast<const DeferredTextureImag e*>(data); |
451 | 493 |
452 if (!context || context->uniqueID() != dti->fContextUniqueID) { | 494 if (!context || context->uniqueID() != dti->fContextUniqueID) { |
453 return nullptr; | 495 return nullptr; |
454 } | 496 } |
455 SkAutoTUnref<SkColorTable> colorTable; | 497 SkAutoTUnref<SkColorTable> colorTable; |
456 if (dti->fData.fColorTableCnt) { | 498 if (dti->fData.fColorTableCnt) { |
457 SkASSERT(dti->fData.fColorTableData); | 499 SkASSERT(dti->fData.fColorTableData); |
458 colorTable.reset(new SkColorTable(dti->fData.fColorTableData, dti->fData .fColorTableCnt)); | 500 colorTable.reset(new SkColorTable(dti->fData.fColorTableData, dti->fData .fColorTableCnt)); |
459 } | 501 } |
460 SkASSERT(dti->fData.fMipMapLevelCount == 1); | 502 int mipLevelCount = dti->fData.fMipMapLevelCount; |
461 SkPixmap pixmap; | 503 SkASSERT(mipLevelCount >= 1); |
462 pixmap.reset(dti->fData.fInfo, dti->fData.fMipMapLevelData[0].fPixelData, | 504 if (mipLevelCount == 1) { |
463 dti->fData.fMipMapLevelData[0].fRowBytes, colorTable.get()); | 505 SkPixmap pixmap; |
464 return SkImage::MakeTextureFromPixmap(context, pixmap, budgeted); | 506 pixmap.reset(dti->fData.fInfo, dti->fData.fMipMapLevelData[0].fPixelData , |
507 dti->fData.fMipMapLevelData[0].fRowBytes, colorTable.get()) ; | |
508 return SkImage::MakeTextureFromPixmap(context, pixmap, budgeted); | |
509 } else { | |
510 SkAutoTDeleteArray<GrMipLevel> texels(new GrMipLevel[mipLevelCount]); | |
511 for (int i = 0; i < mipLevelCount; i++) { | |
512 texels[i].fPixels = dti->fData.fMipMapLevelData[i].fPixelData; | |
513 texels[i].fRowBytes = dti->fData.fMipMapLevelData[i].fRowBytes; | |
514 } | |
515 | |
516 return SkImage::MakeTextureFromMipMap(context, dti->fData.fInfo, texels. get(), | |
517 mipLevelCount, SkBudgeted::kYes); | |
518 } | |
465 } | 519 } |
466 | 520 |
467 //////////////////////////////////////////////////////////////////////////////// /////////////////// | 521 //////////////////////////////////////////////////////////////////////////////// /////////////////// |
468 | 522 |
469 GrTexture* GrDeepCopyTexture(GrTexture* src, SkBudgeted budgeted) { | 523 GrTexture* GrDeepCopyTexture(GrTexture* src, SkBudgeted budgeted) { |
470 GrContext* ctx = src->getContext(); | 524 GrContext* ctx = src->getContext(); |
471 | 525 |
472 GrSurfaceDesc desc = src->desc(); | 526 GrSurfaceDesc desc = src->desc(); |
473 GrTexture* dst = ctx->textureProvider()->createTexture(desc, budgeted, nullp tr, 0); | 527 GrTexture* dst = ctx->textureProvider()->createTexture(desc, budgeted, nullp tr, 0); |
474 if (!dst) { | 528 if (!dst) { |
475 return nullptr; | 529 return nullptr; |
476 } | 530 } |
477 | 531 |
478 const SkIRect srcR = SkIRect::MakeWH(desc.fWidth, desc.fHeight); | 532 const SkIRect srcR = SkIRect::MakeWH(desc.fWidth, desc.fHeight); |
479 const SkIPoint dstP = SkIPoint::Make(0, 0); | 533 const SkIPoint dstP = SkIPoint::Make(0, 0); |
480 ctx->copySurface(dst, src, srcR, dstP); | 534 ctx->copySurface(dst, src, srcR, dstP); |
481 ctx->flushSurfaceWrites(dst); | 535 ctx->flushSurfaceWrites(dst); |
482 return dst; | 536 return dst; |
483 } | 537 } |
484 | 538 |
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