/* * Copyright 2015 The Android Open Source Project * * Use of this source code is governed by a BSD-style license that can be * found in the LICENSE file. */ #include "SkData.h" #include "SkImageDecoder.h" #include "SkImageGenerator.h" #include "SkStream.h" class BareMemoryAllocator : public SkBitmap::Allocator { const SkImageInfo fInfo; void* const fMemory; const size_t fRowBytes; public: BareMemoryAllocator(const SkImageInfo& info, void* memory, size_t rowBytes) : fInfo(info), fMemory(memory), fRowBytes(rowBytes) {} protected: bool allocPixelRef(SkBitmap* bm, SkColorTable* ctable) override { const SkImageInfo bmi = bm->info(); if (bmi.width() != fInfo.width() || bmi.height() != fInfo.height() || bmi.colorType() != fInfo.colorType()) { return false; } return bm->installPixels(bmi, fMemory, fRowBytes, ctable, NULL, NULL); } }; class SkImageDecoderGenerator : public SkImageGenerator { const SkImageInfo fInfo; SkAutoTDelete fDecoder; SkAutoTUnref fData; public: SkImageDecoderGenerator(const SkImageInfo& info, SkImageDecoder* decoder, SkData* data) : INHERITED(info), fInfo(info), fDecoder(decoder), fData(SkRef(data)) {} protected: SkData* onRefEncodedData() override { return SkRef(fData.get()); } virtual Result onGetPixels(const SkImageInfo& info, void* pixels, size_t rowBytes, const Options&, SkPMColor ctableEntries[], int* ctableCount) override { SkMemoryStream stream(fData->data(), fData->size(), false); SkAutoTUnref allocator(SkNEW_ARGS(BareMemoryAllocator, (info, pixels, rowBytes))); fDecoder->setAllocator(allocator); fDecoder->setRequireUnpremultipliedColors(kUnpremul_SkAlphaType == info.alphaType()); SkBitmap bm; const SkImageDecoder::Result result = fDecoder->decode(&stream, &bm, info.colorType(), SkImageDecoder::kDecodePixels_Mode); if (SkImageDecoder::kFailure == result) { return kInvalidInput; } SkASSERT(info.colorType() == bm.info().colorType()); if (kIndex_8_SkColorType == info.colorType()) { SkASSERT(ctableEntries); SkColorTable* ctable = bm.getColorTable(); if (NULL == ctable) { return kInvalidConversion; } const int count = ctable->count(); memcpy(ctableEntries, ctable->readColors(), count * sizeof(SkPMColor)); *ctableCount = count; } if (SkImageDecoder::kPartialSuccess == result) { return kIncompleteInput; } return kSuccess; } bool onGetYUV8Planes(SkISize sizes[3], void* planes[3], size_t rowBytes[3], SkYUVColorSpace* colorSpace) override { SkMemoryStream stream(fData->data(), fData->size(), false); return fDecoder->decodeYUV8Planes(&stream, sizes, planes, rowBytes, colorSpace); } private: typedef SkImageGenerator INHERITED; }; SkImageGenerator* SkImageGenerator::NewFromData(SkData* data) { if (NULL == data) { return NULL; } SkMemoryStream stream(data->data(), data->size(), false); SkImageDecoder* decoder = SkImageDecoder::Factory(&stream); if (NULL == decoder) { return NULL; } SkBitmap bm; stream.rewind(); if (!decoder->decode(&stream, &bm, kUnknown_SkColorType, SkImageDecoder::kDecodeBounds_Mode)) { SkDELETE(decoder); return NULL; } return SkNEW_ARGS(SkImageDecoderGenerator, (bm.info(), decoder, data)); }