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5399574d8b
`profiler_thread_is_being_profiled` is used a lot for markers, so it makes sense to have a specialized version, which is a bit shorter, and lives in ProfilerMarkers.h. Differential Revision: https://phabricator.services.mozilla.com/D130009
282 lines
8.0 KiB
C++
282 lines
8.0 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*-
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "ImageFactory.h"
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#include <algorithm>
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#include "mozilla/Likely.h"
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#include "nsIChannel.h"
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#include "nsIFileChannel.h"
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#include "nsIObserverService.h"
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#include "nsIFile.h"
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#include "nsMimeTypes.h"
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#include "nsIRequest.h"
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#include "MultipartImage.h"
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#include "RasterImage.h"
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#include "VectorImage.h"
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#include "Image.h"
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#include "nsMediaFragmentURIParser.h"
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#include "nsContentUtils.h"
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#include "mozilla/SchedulerGroup.h"
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#include "mozilla/StaticPrefs_image.h"
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#include "mozilla/ProfilerMarkers.h"
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namespace mozilla {
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namespace image {
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/*static*/
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void ImageFactory::Initialize() {}
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static uint32_t ComputeImageFlags(nsIURI* uri, const nsCString& aMimeType,
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bool isMultiPart) {
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// We default to the static globals.
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bool isDiscardable = StaticPrefs::image_mem_discardable();
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bool doDecodeImmediately = StaticPrefs::image_decode_immediately_enabled();
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// We want UI to be as snappy as possible and not to flicker. Disable
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// discarding for chrome URLS.
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if (uri->SchemeIs("chrome")) {
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isDiscardable = false;
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}
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// We don't want resources like the "loading" icon to be discardable either.
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if (uri->SchemeIs("resource")) {
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isDiscardable = false;
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}
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// For multipart/x-mixed-replace, we basically want a direct channel to the
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// decoder. Disable everything for this case.
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if (isMultiPart) {
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isDiscardable = false;
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}
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// We have all the information we need.
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uint32_t imageFlags = Image::INIT_FLAG_NONE;
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if (isDiscardable) {
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imageFlags |= Image::INIT_FLAG_DISCARDABLE;
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}
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if (doDecodeImmediately) {
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imageFlags |= Image::INIT_FLAG_DECODE_IMMEDIATELY;
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}
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if (isMultiPart) {
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imageFlags |= Image::INIT_FLAG_TRANSIENT;
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}
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// Synchronously decode metadata (including size) if we have a data URI since
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// the data is immediately available.
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if (uri->SchemeIs("data")) {
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imageFlags |= Image::INIT_FLAG_SYNC_LOAD;
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}
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return imageFlags;
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}
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#ifdef DEBUG
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static void NotifyImageLoading(nsIURI* aURI) {
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if (!NS_IsMainThread()) {
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nsCOMPtr<nsIURI> uri(aURI);
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nsCOMPtr<nsIRunnable> ev = NS_NewRunnableFunction(
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"NotifyImageLoading", [uri]() -> void { NotifyImageLoading(uri); });
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SchedulerGroup::Dispatch(TaskCategory::Other, ev.forget());
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return;
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}
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nsCOMPtr<nsIObserverService> obs = services::GetObserverService();
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NS_WARNING_ASSERTION(obs, "Can't get an observer service handle");
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if (obs) {
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nsAutoCString spec;
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aURI->GetSpec(spec);
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obs->NotifyObservers(nullptr, "image-loading",
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NS_ConvertUTF8toUTF16(spec).get());
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}
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}
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#endif
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/* static */
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already_AddRefed<Image> ImageFactory::CreateImage(
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nsIRequest* aRequest, ProgressTracker* aProgressTracker,
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const nsCString& aMimeType, nsIURI* aURI, bool aIsMultiPart,
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uint32_t aInnerWindowId) {
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// Compute the image's initialization flags.
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uint32_t imageFlags = ComputeImageFlags(aURI, aMimeType, aIsMultiPart);
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#ifdef DEBUG
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// Record the image load for startup performance testing.
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if (aURI->SchemeIs("resource") || aURI->SchemeIs("chrome")) {
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NotifyImageLoading(aURI);
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}
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#endif
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if (profiler_thread_is_being_profiled_for_markers()) {
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static const size_t sMaxTruncatedLength = 1024;
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nsAutoCString spec;
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aURI->GetSpec(spec);
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if (spec.Length() >= sMaxTruncatedLength) {
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spec.Truncate(sMaxTruncatedLength);
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}
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PROFILER_MARKER_TEXT("Image Load", GRAPHICS,
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MarkerInnerWindowId(aInnerWindowId), spec);
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}
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// Select the type of image to create based on MIME type.
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if (aMimeType.EqualsLiteral(IMAGE_SVG_XML)) {
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return CreateVectorImage(aRequest, aProgressTracker, aMimeType, aURI,
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imageFlags, aInnerWindowId);
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} else {
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return CreateRasterImage(aRequest, aProgressTracker, aMimeType, aURI,
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imageFlags, aInnerWindowId);
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}
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}
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// Marks an image as having an error before returning it.
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template <typename T>
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static already_AddRefed<Image> BadImage(const char* aMessage,
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RefPtr<T>& aImage) {
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aImage->SetHasError();
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return aImage.forget();
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}
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/* static */
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already_AddRefed<Image> ImageFactory::CreateAnonymousImage(
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const nsCString& aMimeType, uint32_t aSizeHint /* = 0 */) {
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nsresult rv;
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RefPtr<RasterImage> newImage = new RasterImage();
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RefPtr<ProgressTracker> newTracker = new ProgressTracker();
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newTracker->SetImage(newImage);
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newImage->SetProgressTracker(newTracker);
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rv = newImage->Init(aMimeType.get(), Image::INIT_FLAG_SYNC_LOAD);
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if (NS_FAILED(rv)) {
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return BadImage("RasterImage::Init failed", newImage);
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}
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rv = newImage->SetSourceSizeHint(aSizeHint);
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if (NS_FAILED(rv)) {
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return BadImage("RasterImage::SetSourceSizeHint failed", newImage);
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}
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return newImage.forget();
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}
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/* static */
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already_AddRefed<MultipartImage> ImageFactory::CreateMultipartImage(
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Image* aFirstPart, ProgressTracker* aProgressTracker) {
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MOZ_ASSERT(aFirstPart);
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MOZ_ASSERT(aProgressTracker);
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RefPtr<MultipartImage> newImage = new MultipartImage(aFirstPart);
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aProgressTracker->SetImage(newImage);
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newImage->SetProgressTracker(aProgressTracker);
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newImage->Init();
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return newImage.forget();
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}
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int32_t SaturateToInt32(int64_t val) {
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if (val > INT_MAX) {
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return INT_MAX;
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}
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if (val < INT_MIN) {
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return INT_MIN;
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}
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return static_cast<int32_t>(val);
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}
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uint32_t GetContentSize(nsIRequest* aRequest) {
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nsCOMPtr<nsIChannel> channel(do_QueryInterface(aRequest));
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if (channel) {
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int64_t size;
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nsresult rv = channel->GetContentLength(&size);
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if (NS_SUCCEEDED(rv)) {
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return std::max(SaturateToInt32(size), 0);
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}
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}
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// Use the file size as a size hint for file channels.
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nsCOMPtr<nsIFileChannel> fileChannel(do_QueryInterface(aRequest));
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if (fileChannel) {
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nsCOMPtr<nsIFile> file;
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nsresult rv = fileChannel->GetFile(getter_AddRefs(file));
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if (NS_SUCCEEDED(rv)) {
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int64_t filesize;
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rv = file->GetFileSize(&filesize);
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if (NS_SUCCEEDED(rv)) {
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return std::max(SaturateToInt32(filesize), 0);
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}
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}
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}
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// Fallback - neither http nor file. We'll use dynamic allocation.
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return 0;
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}
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/* static */
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already_AddRefed<Image> ImageFactory::CreateRasterImage(
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nsIRequest* aRequest, ProgressTracker* aProgressTracker,
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const nsCString& aMimeType, nsIURI* aURI, uint32_t aImageFlags,
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uint32_t aInnerWindowId) {
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MOZ_ASSERT(aProgressTracker);
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nsresult rv;
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RefPtr<RasterImage> newImage = new RasterImage(aURI);
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aProgressTracker->SetImage(newImage);
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newImage->SetProgressTracker(aProgressTracker);
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rv = newImage->Init(aMimeType.get(), aImageFlags);
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if (NS_FAILED(rv)) {
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return BadImage("RasterImage::Init failed", newImage);
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}
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newImage->SetInnerWindowID(aInnerWindowId);
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rv = newImage->SetSourceSizeHint(GetContentSize(aRequest));
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if (NS_FAILED(rv)) {
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return BadImage("RasterImage::SetSourceSizeHint failed", newImage);
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}
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return newImage.forget();
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}
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/* static */
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already_AddRefed<Image> ImageFactory::CreateVectorImage(
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nsIRequest* aRequest, ProgressTracker* aProgressTracker,
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const nsCString& aMimeType, nsIURI* aURI, uint32_t aImageFlags,
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uint32_t aInnerWindowId) {
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MOZ_ASSERT(aProgressTracker);
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nsresult rv;
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RefPtr<VectorImage> newImage = new VectorImage(aURI);
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aProgressTracker->SetImage(newImage);
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newImage->SetProgressTracker(aProgressTracker);
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rv = newImage->Init(aMimeType.get(), aImageFlags);
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if (NS_FAILED(rv)) {
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return BadImage("VectorImage::Init failed", newImage);
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}
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newImage->SetInnerWindowID(aInnerWindowId);
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rv = newImage->OnStartRequest(aRequest);
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if (NS_FAILED(rv)) {
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return BadImage("VectorImage::OnStartRequest failed", newImage);
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}
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return newImage.forget();
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}
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} // namespace image
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} // namespace mozilla
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