Automated with clang-tidy readability-identifier-naming (config added to .clang-tidy) plus scripted passes, per the updated rules now documented in CONTRIBUTING.md: - types (class/struct/enum/alias/template params): PascalCase - functions, variables, members: snake_case (incl. rational -> Rational) - private/protected members: trailing underscore; static member variables likewise (instance_, available_themes_) - constants and enum values: snake_case (kLinear -> k_linear, F32P -> f32p); ALL_CAPS reserved for macros - macros: OAK_ prefix (OLIVE_ADD_TEST/OLIVE_ASSERT/OLIVE_CONFIG -> OAK_ADD_TEST/OAK_ASSERT/OAK_CONFIG, GL_PREAMBLE -> OAK_GL_PREAMBLE, include guards -> OAK_*) - file names: all lowercase (Current/Plugin/OliveHost/OliveClip/ OlivePluginInstance -> current/plugin/olivehost/oliveclip/ oliveplugininstance) - getters share the member name sans underscore, setters set_foo() - Qt and third-party (OpenFX) virtual overrides and framework callbacks keep their original names (exempt in .clang-tidy) Manual follow-ups required where automation could not reach: - string-based QMetaObject/SIGNAL/SLOT references updated to renamed methods (AddTask, CreatedFile, DeleteSpecificFile, moveSelectionUp, ...) - macro bodies referencing renamed methods (OLIVE_CONFIG, NODE_DEFAULT_DESTRUCTOR, MANAGEDDISPLAYWIDGET_*) - self-shadowing locals renamed where signals/methods became same-named (size_changed, worker_count, selected_items, import param, filters) - third_party OFX member/namespace usages restored (OFX::Host::*, _created, _clipPrefsDirty, createInstance, clearPersistentMessage) - STL protocol aliases restored (const_iterator) with .clang-tidy ignore rules; qHash overloads restored Full build and test suite pass: ctest 4/4, ~1960 gtest cases green.
463 lines
12 KiB
C++
463 lines
12 KiB
C++
/*** Olive - Non-Linear Video Editor Copyright (C) 2022 Olive Team
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Modifications Copyright (C) 2025 mikesolar
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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***/
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#include "framehashcache.h"
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#include <OpenEXR/ImfFloatAttribute.h>
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#include <OpenEXR/ImfFrameBuffer.h>
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#include <OpenEXR/ImfHeader.h>
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#include <OpenEXR/ImfInputFile.h>
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#include <OpenEXR/ImfIntAttribute.h>
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#include <OpenEXR/ImfOutputFile.h>
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#include <OpenEXR/ImfChannelList.h>
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#include <QDir>
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#include <QFileInfo>
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#include "codec/frame.h"
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#include "common/filefunctions.h"
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#include "common/oiioutils.h"
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#include "render/diskmanager.h"
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namespace olive
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{
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#define super PlaybackCache
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FrameHashCache::FrameHashCache(QObject *parent)
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: super(parent)
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{
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if (DiskManager::instance()) {
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connect(DiskManager::instance(), &DiskManager::deleted_frame, this,
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&FrameHashCache::hash_deleted);
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connect(DiskManager::instance(), &DiskManager::invalidate_project, this,
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&FrameHashCache::project_invalidated);
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}
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}
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void FrameHashCache::set_timebase(const Rational &tb)
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{
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timebase_ = tb;
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}
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void FrameHashCache::validate_timestamp(const int64_t &ts)
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{
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TimeRange frame_range(to_time(ts), to_time(ts + 1));
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validate(frame_range);
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}
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void FrameHashCache::validate_time(const Rational &time)
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{
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validate(TimeRange(time, time + timebase_));
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}
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QString FrameHashCache::get_valid_cache_filename(const Rational &time) const
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{
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if (is_frame_cached(time)) {
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return cache_path_name(time);
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} else if (!get_passthroughs().empty()) {
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for (const Passthrough &p : get_passthroughs()) {
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if (p.contains(time)) {
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return cache_path_name(get_cache_directory(), p.cache, time,
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timebase_);
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}
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}
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}
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return QString();
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}
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bool FrameHashCache::save_cache_frame(const int64_t &time, FramePtr frame) const
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{
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return save_cache_frame(get_cache_directory(), get_uuid(), time, frame);
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}
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bool FrameHashCache::save_cache_frame(const QString &cache_path,
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const QUuid &uuid, const int64_t &time,
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FramePtr frame)
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{
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if (cache_path.isEmpty()) {
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qWarning() << "Failed to save cache frame with empty path";
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return false;
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}
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QString fn = cache_path_name(cache_path, uuid, time);
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bool ret = save_cache_frame(fn, frame);
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// Register frame with the disk manager
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if (ret) {
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QMetaObject::invokeMethod(DiskManager::instance(), "created_file",
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Q_ARG(QString, cache_path),
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Q_ARG(QString, fn));
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}
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return ret;
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}
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bool FrameHashCache::save_cache_frame(const QString &cache_path,
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const QUuid &uuid, const Rational &time,
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const Rational &tb, FramePtr frame)
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{
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if (cache_path.isEmpty()) {
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qWarning() << "Failed to save cache frame with empty path";
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return false;
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}
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QString fn = cache_path_name(cache_path, uuid, time, tb);
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bool ret = save_cache_frame(fn, frame);
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// Register frame with the disk manager
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if (ret) {
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QMetaObject::invokeMethod(DiskManager::instance(), "created_file",
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Q_ARG(QString, cache_path),
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Q_ARG(QString, fn));
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}
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return ret;
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}
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FramePtr FrameHashCache::load_cache_frame(const QString &cache_path,
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const QUuid &uuid, const int64_t &time)
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{
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// Minor optimization, we store frames currently being saved just in case something tries to load
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// while we're saving. This should *occasionally* optimize and also prevent scenarios where
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// we try to load a frame that's half way through being saved.
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QString filename = cache_path_name(cache_path, uuid, time);
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if (cache_path.isEmpty()) {
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qWarning() << "Failed to load cache frame with empty path";
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return nullptr;
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}
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return load_cache_frame(filename);
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}
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FramePtr FrameHashCache::load_cache_frame(const int64_t &hash) const
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{
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return load_cache_frame(get_cache_directory(), get_uuid(), hash);
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}
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FramePtr FrameHashCache::load_cache_frame(const QString &fn)
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{
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FramePtr frame = nullptr;
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if (!fn.isEmpty() && QFileInfo::exists(fn)) {
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try {
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Imf::InputFile file(fn.toUtf8(), 0);
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Imath::Box2i dw = file.header().dataWindow();
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Imf::PixelType pix_type =
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file.header().channels().begin().channel().type;
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int width = dw.max.x - dw.min.x + 1;
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int height = dw.max.y - dw.min.y + 1;
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bool has_alpha = file.header().channels().findChannel("A");
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int div = qMax(1, static_cast<const Imf::IntAttribute &>(
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file.header()["oliveDivider"])
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.value());
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PixelFormat image_format;
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if (pix_type == Imf::HALF) {
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image_format = PixelFormat::f16;
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} else {
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image_format = PixelFormat::f32;
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}
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int channel_count = has_alpha ? VideoParams::k_rgba_channel_count :
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VideoParams::k_rgb_channel_count;
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frame = Frame::create();
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frame->set_video_params(VideoParams(
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width * div, height * div, image_format, channel_count,
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Rational::from_double(file.header().pixelAspectRatio()),
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VideoParams::k_interlace_none, div));
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frame->allocate();
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int bpc = VideoParams::get_bytes_per_channel(image_format);
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size_t xs = channel_count * bpc;
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size_t ys = frame->linesize_bytes();
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Imf::FrameBuffer framebuffer;
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framebuffer.insert("R",
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Imf::Slice(pix_type, frame->data(), xs, ys));
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framebuffer.insert("G", Imf::Slice(pix_type, frame->data() + bpc,
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xs, ys));
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framebuffer.insert(
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"B", Imf::Slice(pix_type, frame->data() + 2 * bpc, xs, ys));
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if (has_alpha) {
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framebuffer.insert(
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"A", Imf::Slice(pix_type, frame->data() + 3 * bpc, xs, ys));
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}
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file.setFrameBuffer(framebuffer);
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file.readPixels(dw.min.y, dw.max.y);
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} catch (const std::exception &e) {
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// Not an EXR, maybe it's a JPEG?
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QImage img;
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if (img.load(fn, "jpg")) {
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// FIXME: Hardcoded
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const int div = 1;
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const PixelFormat image_format = PixelFormat::u8;
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const int channel_count = 4;
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const Rational par(1, 1);
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// Convert to frame (FIXME: might be slow? may be a better way to do this on the GPU)
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img.convertTo(QImage::Format_RGBA8888_Premultiplied);
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frame = Frame::create();
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frame->set_video_params(VideoParams(
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img.width() * div, img.height() * div, image_format,
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channel_count, par, VideoParams::k_interlace_none, div));
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frame->allocate();
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for (int i = 0; i < img.height(); i++) {
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memcpy(frame->data() + frame->linesize_bytes() * i,
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img.bits() + img.bytesPerLine() * i,
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frame->width() *
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frame->video_params().get_bytes_per_pixel());
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}
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} else {
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qCritical() << "Failed to read cache frame:" << e.what();
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// Clear frame to signal that nothing was loaded
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frame = nullptr;
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// Assume this frame is corrupt in some way and delete it
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QMetaObject::invokeMethod(DiskManager::instance(),
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"delete_specific_file",
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Q_ARG(QString, fn));
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}
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}
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}
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return frame;
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}
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void FrameHashCache::set_passthrough(PlaybackCache *cache)
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{
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super::set_passthrough(cache);
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set_timebase(static_cast<FrameHashCache *>(cache)->get_timebase());
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}
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void FrameHashCache::LoadStateEvent(QDataStream &stream)
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{
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uint32_t version;
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int num, den;
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stream >> version;
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switch (version) {
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case 1:
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stream >> num;
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stream >> den;
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timebase_ = Rational(num, den);
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break;
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}
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}
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void FrameHashCache::SaveStateEvent(QDataStream &stream)
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{
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uint32_t version = 1;
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stream << version;
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stream << timebase_.numerator();
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stream << timebase_.denominator();
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}
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Rational FrameHashCache::to_time(const int64_t &ts) const
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{
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return Timecode::timestamp_to_time(ts, timebase_);
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}
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int64_t FrameHashCache::to_timestamp(const Rational &ts,
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Timecode::Rounding rounding) const
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{
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return Timecode::time_to_timestamp(ts, timebase_, rounding);
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}
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void FrameHashCache::hash_deleted(const QString &path, const QString &filename)
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{
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QString cache_dir = get_cache_directory();
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if (cache_dir.isEmpty() || path != cache_dir) {
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return;
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}
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QFileInfo info(filename);
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if (get_uuid().toString() != info.dir().dirName()) {
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return;
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}
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int64_t timestamp = info.fileName().toLongLong();
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invalidate(TimeRange(to_time(timestamp), to_time(timestamp + 1)));
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}
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void FrameHashCache::project_invalidated(Project *p)
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{
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if (get_project() == p) {
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invalidate_all();
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}
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}
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QString FrameHashCache::cache_path_name(const int64_t &time) const
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{
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return cache_path_name(get_cache_directory(), get_uuid(), time);
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}
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QString FrameHashCache::cache_path_name(const Rational &time) const
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{
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return cache_path_name(get_cache_directory(), get_uuid(), time, timebase_);
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}
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QString FrameHashCache::cache_path_name(const QString &cache_path,
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const QUuid &cache_id,
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const int64_t &time)
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{
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QString filename = get_this_cache_directory(cache_path, cache_id)
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.filePath(QString::number(time));
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// Register that in some way this hash has been accessed
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if (DiskManager::instance()) {
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QMetaObject::invokeMethod(DiskManager::instance(), "accessed",
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Q_ARG(QString, cache_path),
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Q_ARG(QString, filename));
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}
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return filename;
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}
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QString FrameHashCache::cache_path_name(const QString &cache_path,
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const QUuid &cache_id,
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const Rational &time, const Rational &tb)
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{
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return cache_path_name(cache_path, cache_id,
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Timecode::time_to_timestamp(time, tb,
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Timecode::k_round));
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}
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bool FrameHashCache::save_cache_frame(const QString &filename,
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const FramePtr frame)
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{
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// Ensure directory is created
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QDir cache_dir = QFileInfo(filename).dir();
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if (!FileFunctions::directory_is_valid(cache_dir)) {
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return false;
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}
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if (VideoParams::format_is_float(frame->format())) {
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// Floating point types are stored in EXR
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Imf::PixelType pix_type;
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if (frame->format() == PixelFormat::f16) {
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pix_type = Imf::HALF;
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} else {
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pix_type = Imf::FLOAT;
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}
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Imf::Header header(frame->width(), frame->height());
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header.channels().insert("R", Imf::Channel(pix_type));
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header.channels().insert("G", Imf::Channel(pix_type));
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header.channels().insert("B", Imf::Channel(pix_type));
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if (frame->channel_count() == VideoParams::k_rgba_channel_count) {
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header.channels().insert("A", Imf::Channel(pix_type));
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}
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header.compression() = Imf::DWAA_COMPRESSION;
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header.insert("dwaCompressionLevel", Imf::FloatAttribute(200.0f));
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header.pixelAspectRatio() =
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frame->video_params().pixel_aspect_ratio().to_double();
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header.insert("oliveDivider",
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Imf::IntAttribute(frame->video_params().divider()));
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try {
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Imf::OutputFile out(filename.toUtf8(), header, 0);
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int bpc = VideoParams::get_bytes_per_channel(frame->format());
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size_t xs = frame->channel_count() * bpc;
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size_t ys = frame->linesize_bytes();
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Imf::FrameBuffer framebuffer;
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framebuffer.insert("R",
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Imf::Slice(pix_type, frame->data(), xs, ys));
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framebuffer.insert("G", Imf::Slice(pix_type, frame->data() + bpc,
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xs, ys));
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framebuffer.insert(
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"B", Imf::Slice(pix_type, frame->data() + 2 * bpc, xs, ys));
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if (frame->channel_count() == VideoParams::k_rgba_channel_count) {
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framebuffer.insert(
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"A", Imf::Slice(pix_type, frame->data() + 3 * bpc, xs, ys));
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}
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out.setFrameBuffer(framebuffer);
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out.writePixels(frame->height());
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return true;
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} catch (const std::exception &e) {
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qCritical() << "Failed to write cache frame:" << e.what();
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return false;
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}
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} else {
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QImage::Format fmt = QImage::Format_Invalid;
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switch (frame->format()) {
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case PixelFormat::u8:
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if (frame->channel_count() == VideoParams::k_rgba_channel_count) {
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fmt = QImage::Format_RGBA8888_Premultiplied;
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} else if (frame->channel_count() ==
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VideoParams::k_rgb_channel_count) {
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fmt = QImage::Format_RGB888;
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}
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break;
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case PixelFormat::u10:
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break;
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case PixelFormat::u16:
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if (frame->channel_count() == VideoParams::k_rgba_channel_count) {
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fmt = QImage::Format_RGBA64_Premultiplied;
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}
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break;
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case PixelFormat::f16:
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case PixelFormat::f32:
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case PixelFormat::count:
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case PixelFormat::invalid:
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break;
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}
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if (fmt == QImage::Format_Invalid) {
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return false;
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}
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QImage img(reinterpret_cast<const uchar *>(frame->data()),
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frame->width(), frame->height(), frame->linesize_bytes(),
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fmt);
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return img.save(filename, "jpg");
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}
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}
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}
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