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/*
* Copyright (C) 2016 Apple Inc. All rights reserved.
* Copyright (C) 2008-2009 Torch Mobile, Inc.
* Copyright (C) Research In Motion Limited 2009-2010. All rights reserved.
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Library General Public
* License as published by the Free Software Foundation; either
* version 2 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Library General Public License for more details.
*
* You should have received a copy of the GNU Library General Public License
* along with this library; see the file COPYING.LIB. If not, write to
* the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
* Boston, MA 02110-1301, USA.
*
*/
#include "config.h"
#include "ScalableImageDecoder.h"
#include "BMPImageDecoder.h"
#include "GIFImageDecoder.h"
#include "ICOImageDecoder.h"
#include "JPEGImageDecoder.h"
#include "NotImplemented.h"
#include "PNGImageDecoder.h"
#include "SharedBuffer.h"
#if USE(AVIF)
#include "AVIFImageDecoder.h"
#endif
#if USE(OPENJPEG)
#include "JPEG2000ImageDecoder.h"
#endif
#if USE(WEBP)
#include "WEBPImageDecoder.h"
#endif
#if USE(JPEGXL)
#include "JPEGXLImageDecoder.h"
#endif
#include <algorithm>
#include <cmath>
namespace WebCore {
namespace {
static unsigned copyFromSharedBuffer(char* buffer, unsigned bufferLength, const FragmentedSharedBuffer& sharedBuffer)
{
unsigned bytesExtracted = 0;
for (const auto& element : sharedBuffer) {
if (bytesExtracted + element.segment->size() <= bufferLength) {
memcpy(buffer + bytesExtracted, element.segment->data(), element.segment->size());
bytesExtracted += element.segment->size();
} else {
ASSERT(bufferLength - bytesExtracted < element.segment->size());
memcpy(buffer + bytesExtracted, element.segment->data(), bufferLength - bytesExtracted);
bytesExtracted = bufferLength;
break;
}
}
return bytesExtracted;
}
bool matchesGIFSignature(char* contents)
{
return !memcmp(contents, "GIF87a", 6) || !memcmp(contents, "GIF89a", 6);
}
bool matchesPNGSignature(char* contents)
{
return !memcmp(contents, "\x89\x50\x4E\x47\x0D\x0A\x1A\x0A", 8);
}
bool matchesJPEGSignature(char* contents)
{
return !memcmp(contents, "\xFF\xD8\xFF", 3);
}
#if USE(AVIF)
bool matchesAVIFSignature(char* contents)
{
return !memcmp(contents + 4, "\x66\x74\x79\x70", 4);
}
#endif
#if USE(OPENJPEG)
bool matchesJP2Signature(char* contents)
{
return !memcmp(contents, "\x00\x00\x00\x0C\x6A\x50\x20\x20\x0D\x0A\x87\x0A", 12)
|| !memcmp(contents, "\x0D\x0A\x87\x0A", 4);
}
bool matchesJ2KSignature(char* contents)
{
return !memcmp(contents, "\xFF\x4F\xFF\x51", 4);
}
#endif
#if USE(WEBP)
bool matchesWebPSignature(char* contents)
{
return !memcmp(contents, "RIFF", 4) && !memcmp(contents + 8, "WEBPVP", 6);
}
#endif
#if USE(JPEGXL)
bool matchesJPEGXLSignature(const uint8_t* contents, size_t length)
{
JxlSignature signature = JxlSignatureCheck(contents, length);
return signature != JXL_SIG_NOT_ENOUGH_BYTES && signature != JXL_SIG_INVALID;
}
#endif
bool matchesBMPSignature(char* contents)
{
return !memcmp(contents, "BM", 2);
}
bool matchesICOSignature(char* contents)
{
return !memcmp(contents, "\x00\x00\x01\x00", 4);
}
bool matchesCURSignature(char* contents)
{
return !memcmp(contents, "\x00\x00\x02\x00", 4);
}
}
RefPtr<ScalableImageDecoder> ScalableImageDecoder::create(FragmentedSharedBuffer& data, AlphaOption alphaOption, GammaAndColorProfileOption gammaAndColorProfileOption)
{
static const unsigned lengthOfLongestSignature = 14; // To wit: "RIFF????WEBPVP"
char contents[lengthOfLongestSignature];
unsigned length = copyFromSharedBuffer(contents, lengthOfLongestSignature, data);
if (length < lengthOfLongestSignature)
return nullptr;
if (matchesGIFSignature(contents))
return GIFImageDecoder::create(alphaOption, gammaAndColorProfileOption);
if (matchesPNGSignature(contents))
return PNGImageDecoder::create(alphaOption, gammaAndColorProfileOption);
if (matchesICOSignature(contents) || matchesCURSignature(contents))
return ICOImageDecoder::create(alphaOption, gammaAndColorProfileOption);
if (matchesJPEGSignature(contents))
return JPEGImageDecoder::create(alphaOption, gammaAndColorProfileOption);
#if USE(AVIF)
if (matchesAVIFSignature(contents))
return AVIFImageDecoder::create(alphaOption, gammaAndColorProfileOption);
#endif
#if USE(OPENJPEG)
if (matchesJP2Signature(contents))
return JPEG2000ImageDecoder::create(JPEG2000ImageDecoder::Format::JP2, alphaOption, gammaAndColorProfileOption);
if (matchesJ2KSignature(contents))
return JPEG2000ImageDecoder::create(JPEG2000ImageDecoder::Format::J2K, alphaOption, gammaAndColorProfileOption);
#endif
#if USE(WEBP)
if (matchesWebPSignature(contents))
return WEBPImageDecoder::create(alphaOption, gammaAndColorProfileOption);
#endif
#if USE(JPEGXL)
if (matchesJPEGXLSignature(reinterpret_cast<const uint8_t*>(contents), length))
return JPEGXLImageDecoder::create(alphaOption, gammaAndColorProfileOption);
#endif
if (matchesBMPSignature(contents))
return BMPImageDecoder::create(alphaOption, gammaAndColorProfileOption);
return nullptr;
}
bool ScalableImageDecoder::frameIsCompleteAtIndex(size_t index) const
{
Locker locker { m_lock };
if (index >= m_frameBufferCache.size())
return false;
auto& frame = m_frameBufferCache[index];
return frame.isComplete();
}
bool ScalableImageDecoder::frameHasAlphaAtIndex(size_t index) const
{
Locker locker { m_lock };
if (m_frameBufferCache.size() <= index)
return true;
auto& frame = m_frameBufferCache[index];
if (!frame.isComplete())
return true;
return frame.hasAlpha();
}
unsigned ScalableImageDecoder::frameBytesAtIndex(size_t index, SubsamplingLevel) const
{
Locker locker { m_lock };
if (m_frameBufferCache.size() <= index)
return 0;
// FIXME: Use the dimension of the requested frame.
return m_size.area() * sizeof(uint32_t);
}
Seconds ScalableImageDecoder::frameDurationAtIndex(size_t index) const
{
Locker locker { m_lock };
if (index >= m_frameBufferCache.size())
return 0_s;
auto& frame = m_frameBufferCache[index];
if (!frame.isComplete())
return 0_s;
// Many annoying ads specify a 0 duration to make an image flash as quickly as possible.
// We follow Firefox's behavior and use a duration of 100 ms for any frames that specify
// a duration of <= 10 ms. See <rdar://problem/7689300> and <http://webkit.org/b/36082>
// for more information.
Seconds duration = frame.duration();
if (duration < 11_ms)
return 100_ms;
return duration;
}
PlatformImagePtr ScalableImageDecoder::createFrameImageAtIndex(size_t index, SubsamplingLevel, const DecodingOptions&)
{
Locker locker { m_lock };
// Zero-height images can cause problems for some ports. If we have an empty image dimension, just bail.
if (size().isEmpty())
return nullptr;
auto* buffer = frameBufferAtIndex(index);
if (!buffer || buffer->isInvalid() || !buffer->hasBackingStore())
return nullptr;
// Return the buffer contents as a native image. For some ports, the data
// is already in a native container, and this just increments its refcount.
return buffer->backingStore()->image();
}
}
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