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152 lines
5.7 KiB
152 lines
5.7 KiB
/*
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* Copyright 2015 Google Inc.
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*
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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#include "client_utils/android/BitmapRegionDecoder.h"
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#include "client_utils/android/BitmapRegionDecoderPriv.h"
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#include "include/codec/SkAndroidCodec.h"
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#include "src/codec/SkCodecPriv.h"
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namespace android {
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namespace skia {
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std::unique_ptr<BitmapRegionDecoder> BitmapRegionDecoder::Make(sk_sp<SkData> data) {
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auto codec = SkAndroidCodec::MakeFromData(std::move(data));
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if (nullptr == codec) {
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SkCodecPrintf("Error: Failed to create codec.\n");
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return nullptr;
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}
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switch (codec->getEncodedFormat()) {
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case SkEncodedImageFormat::kJPEG:
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case SkEncodedImageFormat::kPNG:
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case SkEncodedImageFormat::kWEBP:
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case SkEncodedImageFormat::kHEIF:
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break;
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default:
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return nullptr;
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}
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return std::unique_ptr<BitmapRegionDecoder>(new BitmapRegionDecoder(std::move(codec)));
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}
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BitmapRegionDecoder::BitmapRegionDecoder(std::unique_ptr<SkAndroidCodec> codec)
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: fCodec(std::move(codec))
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{}
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int BitmapRegionDecoder::width() const {
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return fCodec->getInfo().width();
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}
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int BitmapRegionDecoder::height() const {
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return fCodec->getInfo().height();
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}
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bool BitmapRegionDecoder::decodeRegion(SkBitmap* bitmap, BRDAllocator* allocator,
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const SkIRect& desiredSubset, int sampleSize, SkColorType dstColorType,
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bool requireUnpremul, sk_sp<SkColorSpace> dstColorSpace) {
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// Fix the input sampleSize if necessary.
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if (sampleSize < 1) {
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sampleSize = 1;
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}
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// The size of the output bitmap is determined by the size of the
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// requested subset, not by the size of the intersection of the subset
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// and the image dimensions.
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// If inputX is negative, we will need to place decoded pixels into the
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// output bitmap starting at a left offset. Call this outX.
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// If outX is non-zero, subsetX must be zero.
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// If inputY is negative, we will need to place decoded pixels into the
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// output bitmap starting at a top offset. Call this outY.
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// If outY is non-zero, subsetY must be zero.
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int outX;
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int outY;
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SkIRect subset = desiredSubset;
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SubsetType type = adjust_subset_rect(fCodec->getInfo().dimensions(), &subset, &outX, &outY);
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if (SubsetType::kOutside_SubsetType == type) {
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return false;
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}
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// Ask the codec for a scaled subset
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if (!fCodec->getSupportedSubset(&subset)) {
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SkCodecPrintf("Error: Could not get subset.\n");
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return false;
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}
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SkISize scaledSize = fCodec->getSampledSubsetDimensions(sampleSize, subset);
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// Create the image info for the decode
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SkAlphaType dstAlphaType = fCodec->computeOutputAlphaType(requireUnpremul);
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SkImageInfo decodeInfo =
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SkImageInfo::Make(scaledSize, dstColorType, dstAlphaType, dstColorSpace);
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// Initialize the destination bitmap
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int scaledOutX = 0;
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int scaledOutY = 0;
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int scaledOutWidth = scaledSize.width();
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int scaledOutHeight = scaledSize.height();
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if (SubsetType::kPartiallyInside_SubsetType == type) {
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scaledOutX = outX / sampleSize;
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scaledOutY = outY / sampleSize;
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// We need to be safe here because getSupportedSubset() may have modified the subset.
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const int extraX = std::max(0, desiredSubset.width() - outX - subset.width());
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const int extraY = std::max(0, desiredSubset.height() - outY - subset.height());
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const int scaledExtraX = extraX / sampleSize;
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const int scaledExtraY = extraY / sampleSize;
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scaledOutWidth += scaledOutX + scaledExtraX;
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scaledOutHeight += scaledOutY + scaledExtraY;
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}
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SkImageInfo outInfo = decodeInfo.makeWH(scaledOutWidth, scaledOutHeight);
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if (kGray_8_SkColorType == dstColorType) {
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// The legacy implementations of BitmapFactory and BitmapRegionDecoder
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// used kAlpha8 for grayscale images (before kGray8 existed). While
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// the codec recognizes kGray8, we need to decode into a kAlpha8
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// bitmap in order to avoid a behavior change.
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outInfo = outInfo.makeColorType(kAlpha_8_SkColorType).makeAlphaType(kPremul_SkAlphaType);
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}
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bitmap->setInfo(outInfo);
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if (!bitmap->tryAllocPixels(allocator)) {
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SkCodecPrintf("Error: Could not allocate pixels.\n");
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return false;
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}
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// Zero the bitmap if the region is not completely within the image.
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// TODO (msarett): Can we make this faster by implementing it to only
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// zero parts of the image that we won't overwrite with
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// pixels?
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SkCodec::ZeroInitialized zeroInit = allocator ? allocator->zeroInit() :
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SkCodec::kNo_ZeroInitialized;
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if (SubsetType::kPartiallyInside_SubsetType == type &&
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SkCodec::kNo_ZeroInitialized == zeroInit) {
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void* pixels = bitmap->getPixels();
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size_t bytes = outInfo.computeByteSize(bitmap->rowBytes());
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memset(pixels, 0, bytes);
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}
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// Decode into the destination bitmap
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SkAndroidCodec::AndroidOptions options;
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options.fSampleSize = sampleSize;
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options.fSubset = ⊂
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options.fZeroInitialized = zeroInit;
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void* dst = bitmap->getAddr(scaledOutX, scaledOutY);
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SkCodec::Result result = fCodec->getAndroidPixels(decodeInfo, dst, bitmap->rowBytes(),
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&options);
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switch (result) {
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case SkCodec::kSuccess:
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case SkCodec::kIncompleteInput:
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case SkCodec::kErrorInInput:
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return true;
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default:
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SkCodecPrintf("Error: Could not get pixels with message \"%s\".\n",
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SkCodec::ResultToString(result));
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return false;
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}
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}
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} // namespace skia
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} // namespace android
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