Files
palemoon27/image/Downscaler.cpp
T
roytam1 cbd579ebc8 import changes from wicknix/Arctic-Fox:
- backport of Bug 1188696 - Remove the XPCOM dependencies in nsRefPtr.h (6c2860799)
- backport of Bug 1188696 - Hoist nsRefPtr.h into MFBT (e892acb58)
- Backport of Bug 1138967 - Part 3: Add D3D11 YCbCr texture clients and upload on the client side (2e4218167)
- Bug 1038536 - Flatten image/src/ directory (3adb2d635)
- Bug 1038536 - Flatten image/public/ directory (22329f3b4)
- Bug 1038536 - Flatten image/decoders/icon/qt/public/ directory. (7b5b8b2af)
- Bug 1038536 - Update header guard after flatten image/build (20e1614ac)
- Bug 1116905 - part 2 - add MakeAndAddRef helper function to facilitate constructing TemporaryRef (9c85f45a0)
- update (ab2c6eccf)
- Bug 1139781 - Implement VideoPlaybackQuality for MediaCodecReader. (1a7c6c0a7)
- Bug 1138825 - Fix the crash at mAudioPromise: call decode audio data when the audio queue is empty and check the mAudioPromise is empty or not. (3f5d3a1c5)
- Bug 875247 - Add support for DXVA2 via D3D11 (2ca491206)
- Bug 1145513 - Upload YCbCr image data on the client side when using d3d9 layers. (50f7a69fa)
- Bug 1053563 - Use a static create function to replace InitWith for TextureClient. (dd1c8fc89)
- Bug 1145764 - Add some default-disabled logging to TextureClientPool (1cfc0d1b9)
- Bug 1120780 - Fallback on lock_ycbcr when ColorConvertor fails (3a9b893f0)
- Bug 1161815: Use a single ID2D1SolidColorBrush per DrawTarget. (a70b72ef6)
- Bug 1160485 - remove implicit conversion from RefPtr<T> to TemporaryR…ef<T>; (e6e6224c5)
- Bug 1116905 - part 3 - remove dependence on implicit conversion from T* to TemporaryRef<T>, gfx changes; (f71d3ffa8)
- Bug 1116905 - part 1 - remove dependence on implicit conversion from T* to TemporaryRef<T>, non-gfx changes; (f66714955)
- implement Event.srcElement as alias (6c1ee1c6d)
- 1116905 - part 4 - remove implicit conversion from non-nullptr T* to TemporaryRef<T> (f94c680f9)
- Bug 1031152 - Define a JS public API for working with SavedFrame instances (2aa41721a)
- Update TLD's from ESR 60 (b9dbe0ca3)
with some changes to fix building, reported to upstream:
- https://github.com/wicknix/Arctic-Fox/commit/2e421816773b6a57502907ab22c285d994d8b024#r31893045
- https://github.com/wicknix/Arctic-Fox/commit/50f7a69fa9a36634aef1ae5a221415ca98284435#r31892913
- https://github.com/wicknix/Arctic-Fox/commit/f667149556ae0e64c9dbce08836bb5d957db2464#r31892928
2019-01-10 15:30:35 +08:00

251 lines
7.3 KiB
C++

/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*-
*
* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
#include "Downscaler.h"
#include <algorithm>
#include <ctime>
#include "gfxPrefs.h"
#include "image_operations.h"
#include "convolver.h"
#include "skia/SkTypes.h"
using std::max;
using std::swap;
namespace mozilla {
namespace image {
Downscaler::Downscaler(const nsIntSize& aTargetSize)
: mTargetSize(aTargetSize)
, mOutputBuffer(nullptr)
, mXFilter(MakeUnique<skia::ConvolutionFilter1D>())
, mYFilter(MakeUnique<skia::ConvolutionFilter1D>())
, mWindowCapacity(0)
, mHasAlpha(true)
{
MOZ_ASSERT(gfxPrefs::ImageDownscaleDuringDecodeEnabled(),
"Downscaling even though downscale-during-decode is disabled?");
MOZ_ASSERT(mTargetSize.width > 0 && mTargetSize.height > 0,
"Invalid target size");
}
Downscaler::~Downscaler()
{
ReleaseWindow();
}
void
Downscaler::ReleaseWindow()
{
if (!mWindow) {
return;
}
for (int32_t i = 0; i < mWindowCapacity; ++i) {
delete[] mWindow[i];
}
mWindow = nullptr;
mWindowCapacity = 0;
}
nsresult
Downscaler::BeginFrame(const nsIntSize& aOriginalSize,
uint8_t* aOutputBuffer,
bool aHasAlpha)
{
MOZ_ASSERT(aOutputBuffer);
MOZ_ASSERT(mTargetSize != aOriginalSize,
"Created a downscaler, but not downscaling?");
MOZ_ASSERT(mTargetSize.width <= aOriginalSize.width,
"Created a downscaler, but width is larger");
MOZ_ASSERT(mTargetSize.height <= aOriginalSize.height,
"Created a downscaler, but height is larger");
MOZ_ASSERT(aOriginalSize.width > 0 && aOriginalSize.height > 0,
"Invalid original size");
mOriginalSize = aOriginalSize;
mOutputBuffer = aOutputBuffer;
mHasAlpha = aHasAlpha;
ResetForNextProgressivePass();
ReleaseWindow();
auto resizeMethod = skia::ImageOperations::RESIZE_LANCZOS3;
skia::resize::ComputeFilters(resizeMethod,
mOriginalSize.width, mTargetSize.width,
0, mTargetSize.width,
mXFilter.get());
skia::resize::ComputeFilters(resizeMethod,
mOriginalSize.height, mTargetSize.height,
0, mTargetSize.height,
mYFilter.get());
// Allocate the buffer, which contains scanlines of the original image.
size_t bufferLen = mOriginalSize.width * sizeof(uint32_t);
mRowBuffer = MakeUnique<uint8_t[]>(bufferLen);
if (MOZ_UNLIKELY(!mRowBuffer)) {
return NS_ERROR_OUT_OF_MEMORY;
}
// Zero buffer to keep valgrind happy.
memset(mRowBuffer.get(), 0, bufferLen);
// Allocate the window, which contains horizontally downscaled scanlines. (We
// can store scanlines which are already downscale because our downscaling
// filter is separable.)
mWindowCapacity = mYFilter->max_filter();
mWindow = MakeUnique<uint8_t*[]>(mWindowCapacity);
if (MOZ_UNLIKELY(!mWindow)) {
return NS_ERROR_OUT_OF_MEMORY;
}
bool anyAllocationFailed = false;
const int rowSize = mTargetSize.width * sizeof(uint32_t);
for (int32_t i = 0; i < mWindowCapacity; ++i) {
mWindow[i] = new uint8_t[rowSize];
anyAllocationFailed = anyAllocationFailed || mWindow[i] == nullptr;
}
if (MOZ_UNLIKELY(anyAllocationFailed)) {
// We intentionally iterate through the entire array even if an allocation
// fails, to ensure that all the pointers in it are either valid or nullptr.
// That in turn ensures that ReleaseWindow() can clean up correctly.
return NS_ERROR_OUT_OF_MEMORY;
}
return NS_OK;
}
void
Downscaler::ResetForNextProgressivePass()
{
mPrevInvalidatedLine = 0;
mCurrentOutLine = 0;
mCurrentInLine = 0;
mLinesInBuffer = 0;
}
static void
GetFilterOffsetAndLength(UniquePtr<skia::ConvolutionFilter1D>& aFilter,
int32_t aOutputImagePosition,
int32_t* aFilterOffsetOut,
int32_t* aFilterLengthOut)
{
MOZ_ASSERT(aOutputImagePosition < aFilter->num_values());
aFilter->FilterForValue(aOutputImagePosition,
aFilterOffsetOut,
aFilterLengthOut);
}
void
Downscaler::CommitRow()
{
MOZ_ASSERT(mOutputBuffer, "Should have a current frame");
MOZ_ASSERT(mCurrentInLine < mOriginalSize.height, "Past end of input");
if (mCurrentOutLine < mTargetSize.height) {
int32_t filterOffset = 0;
int32_t filterLength = 0;
GetFilterOffsetAndLength(mYFilter, mCurrentOutLine,
&filterOffset, &filterLength);
int32_t inLineToRead = filterOffset + mLinesInBuffer;
MOZ_ASSERT(mCurrentInLine <= inLineToRead, "Reading past end of input");
if (mCurrentInLine == inLineToRead) {
skia::ConvolveHorizontally(mRowBuffer.get(), *mXFilter,
mWindow[mLinesInBuffer++], mHasAlpha,
/* use_sse2 = */ true);
}
MOZ_ASSERT(mCurrentOutLine < mTargetSize.height,
"Writing past end of output");
while (mLinesInBuffer == filterLength) {
DownscaleInputLine();
if (mCurrentOutLine == mTargetSize.height) {
break; // We're done.
}
GetFilterOffsetAndLength(mYFilter, mCurrentOutLine,
&filterOffset, &filterLength);
}
}
mCurrentInLine += 1;
}
bool
Downscaler::HasInvalidation() const
{
return mCurrentOutLine > mPrevInvalidatedLine;
}
nsIntRect
Downscaler::TakeInvalidRect()
{
if (MOZ_UNLIKELY(!HasInvalidation())) {
return nsIntRect();
}
nsIntRect invalidRect(0, mPrevInvalidatedLine,
mTargetSize.width,
mCurrentOutLine - mPrevInvalidatedLine);
mPrevInvalidatedLine = mCurrentOutLine;
return invalidRect;
}
void
Downscaler::DownscaleInputLine()
{
typedef skia::ConvolutionFilter1D::Fixed FilterValue;
MOZ_ASSERT(mOutputBuffer);
MOZ_ASSERT(mCurrentOutLine < mTargetSize.height, "Writing past end of output");
int32_t filterOffset = 0;
int32_t filterLength = 0;
MOZ_ASSERT(mCurrentOutLine < mYFilter->num_values());
auto filterValues =
mYFilter->FilterForValue(mCurrentOutLine, &filterOffset, &filterLength);
uint8_t* outputLine =
&mOutputBuffer[mCurrentOutLine * mTargetSize.width * sizeof(uint32_t)];
skia::ConvolveVertically(static_cast<const FilterValue*>(filterValues),
filterLength, mWindow.get(), mXFilter->num_values(),
outputLine, mHasAlpha, /* use_sse2 = */ true);
mCurrentOutLine += 1;
if (mCurrentOutLine == mTargetSize.height) {
// We're done.
return;
}
int32_t newFilterOffset = 0;
int32_t newFilterLength = 0;
GetFilterOffsetAndLength(mYFilter, mCurrentOutLine,
&newFilterOffset, &newFilterLength);
int diff = newFilterOffset - filterOffset;
MOZ_ASSERT(diff >= 0, "Moving backwards in the filter?");
// Shift the buffer. We're just moving pointers here, so this is cheap.
mLinesInBuffer -= diff;
mLinesInBuffer = max(mLinesInBuffer, 0);
for (int32_t i = 0; i < mLinesInBuffer; ++i) {
swap(mWindow[i], mWindow[filterLength - mLinesInBuffer + i]);
}
}
} // namespace image
} // namespace mozilla