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oak-editor/app/node/output/track/track.cpp
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/***
Olive - Non-Linear Video Editor
Copyright (C) 2021 Olive Team
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program 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 General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
***/
#include "track.h"
#include <QApplication>
#include <QDebug>
#include <QFontMetrics>
#include "node/block/gap/gap.h"
#include "node/graph.h"
namespace olive {
#define super Node
const double Track::kTrackHeightDefault = 3.0;
const double Track::kTrackHeightMinimum = 1.5;
const double Track::kTrackHeightInterval = 0.5;
const QString Track::kBlockInput = QStringLiteral("block_in");
const QString Track::kMutedInput = QStringLiteral("muted_in");
Track::Track() :
track_type_(Track::kNone),
index_(-1),
locked_(false),
sequence_(nullptr)
{
AddInput(kBlockInput, NodeValue::kNone, InputFlags(kInputFlagArray | kInputFlagNotKeyframable));
// Since blocks are time based, we can handle the invalidate timing a little more intelligently
// on our end
IgnoreInvalidationsFrom(kBlockInput);
AddInput(kMutedInput, NodeValue::kBoolean, false, InputFlags(kInputFlagNotConnectable | kInputFlagNotKeyframable));
// Set default height
track_height_ = kTrackHeightDefault;
}
void Track::set_type(const Type &track_type)
{
track_type_ = track_type;
}
const Track::Type& Track::type() const
{
return track_type_;
}
Node *Track::copy() const
{
return new Track();
}
QString Track::Name() const
{
if (track_type_ == Track::kVideo) {
return tr("Video Track %1").arg(index_);
} else if (track_type_ == Track::kAudio) {
return tr("Audio Track %1").arg(index_);
} else if (track_type_ == Track::kSubtitle) {
return tr("Subtitle Track %1").arg(index_);
}
return tr("Track");
}
QString Track::id() const
{
return QStringLiteral("org.olivevideoeditor.Olive.track");
}
QVector<Node::CategoryID> Track::Category() const
{
return {kCategoryTimeline};
}
QString Track::Description() const
{
return tr("Node for representing and processing a single array of Blocks sorted by time. Also represents the end of "
"a Sequence.");
}
TimeRange Track::InputTimeAdjustment(const QString& input, int element, const TimeRange& input_time) const
{
if (input == kBlockInput && element >= 0) {
int cache_index = GetCacheIndexFromArrayIndex(element);
if (cache_index > -1) {
return TransformRangeForBlock(blocks_.at(cache_index), input_time);
}
}
return Node::InputTimeAdjustment(input, element, input_time);
}
TimeRange Track::OutputTimeAdjustment(const QString& input, int element, const TimeRange& input_time) const
{
if (input == kBlockInput && element >= 0) {
int cache_index = GetCacheIndexFromArrayIndex(element);
if (cache_index > -1) {
return TransformRangeFromBlock(blocks_.at(cache_index), input_time);
}
}
return Node::OutputTimeAdjustment(input, element, input_time);
}
const double &Track::GetTrackHeight() const
{
return track_height_;
}
void Track::SetTrackHeight(const double &height)
{
track_height_ = height;
emit TrackHeightChangedInPixels(GetTrackHeightInPixels());
}
bool Track::LoadCustom(QXmlStreamReader *reader, XMLNodeData &xml_node_data, uint version, const QAtomicInt* cancelled)
{
if (reader->name() == QStringLiteral("height")) {
SetTrackHeight(reader->readElementText().toDouble());
return true;
} else {
return super::LoadCustom(reader, xml_node_data, version, cancelled);
}
}
void Track::SaveCustom(QXmlStreamWriter *writer) const
{
super::SaveCustom(writer);
writer->writeTextElement(QStringLiteral("height"), QString::number(GetTrackHeight()));
}
void Track::InputConnectedEvent(const QString &input, int element, Node *output)
{
if (input == kBlockInput) {
if (element == -1) {
// User has replaced the entire array, we will invalidate everything
InvalidateAll(kBlockInput, element);
return;
}
// Check if a block was connected, if not, ignore
Block* block = dynamic_cast<Block*>(output);
if (!block) {
return;
}
// Determine where in the cache this block will be
int cache_index = -1;
Block *previous = nullptr, *next = nullptr;
int arr_sz = InputArraySize(kBlockInput);
for (int i=element+1; i<arr_sz; i++) {
// Find next block because this will be the index that we want to insert at
cache_index = GetCacheIndexFromArrayIndex(i);
if (cache_index >= 0) {
next = blocks_.at(cache_index);
break;
}
}
// If there was no next, this will be inserted at the end
if (cache_index == -1) {
cache_index = blocks_.size();
}
// Determine previous block, either by using next's previous or the last block if there was no
// next. If there are neither, they'll both remain null
if (next) {
previous = next->previous();
} else if (!blocks_.isEmpty()) {
previous = blocks_.last();
}
// Insert at index
blocks_.insert(cache_index, block);
block_array_indexes_.insert(cache_index, element);
// Update previous/next
if (previous) {
previous->set_next(block);
block->set_previous(previous);
}
if (next) {
block->set_next(next);
next->set_previous(block);
}
block->set_track(this);
// Update ins/outs
UpdateInOutFrom(cache_index);
// Connect to the block
connect(block, &Block::LengthChanged, this, &Track::BlockLengthChanged);
// Invalidate cache now that block should have an in point
Node::InvalidateCache(TimeRange(block->in(), track_length()), kBlockInput);
// Emit block added signal
emit BlockAdded(block);
}
}
void Track::InputDisconnectedEvent(const QString &input, int element, Node *output)
{
if (input == kBlockInput) {
if (element == -1) {
// User has replaced the entire array, we will invalidate everything
InvalidateAll(kBlockInput, element);
return;
}
Block* b = dynamic_cast<Block*>(output);
if (!b) {
return;
}
emit BlockRemoved(b);
TimeRange invalidate_range(b->in(), track_length());
// Get cache index
int cache_index = GetCacheIndexFromArrayIndex(element);
// Remove block here
blocks_.removeAt(cache_index);
block_array_indexes_.removeAt(cache_index);
// Update previous/nexts
Block* previous = b->previous();
Block* next = b->next();
if (previous) {
previous->set_next(next);
}
if (next) {
next->set_previous(previous);
}
b->set_previous(nullptr);
b->set_next(nullptr);
b->set_track(nullptr);
// Update lengths
if (next) {
UpdateInOutFrom(blocks_.indexOf(next));
}
emit TrackLengthChanged();
disconnect(b, &Block::LengthChanged, this, &Track::BlockLengthChanged);
Node::InvalidateCache(invalidate_range, kBlockInput);
}
}
void Track::InputValueChangedEvent(const QString &input, int element)
{
Q_UNUSED(element)
if (input == kMutedInput) {
emit MutedChanged(IsMuted());
}
}
void Track::Retranslate()
{
Node::Retranslate();
SetInputName(kBlockInput, tr("Blocks"));
SetInputName(kMutedInput, tr("Muted"));
}
void Track::SetIndex(const int &index)
{
int old = index_;
index_ = index;
emit IndexChanged(old, index_);
}
Block *Track::BlockContainingTime(const rational &time) const
{
foreach (Block* block, blocks_) {
if (block->in() < time && block->out() > time) {
return block;
} else if (block->out() == time) {
break;
}
}
return nullptr;
}
Block *Track::NearestBlockBefore(const rational &time) const
{
foreach (Block* block, blocks_) {
// Blocks are sorted by time, so the first Block who's out point is at/after this time is the correct Block
if (block->in() == time) {
break;
}
if (block->out() >= time) {
return block;
}
}
return nullptr;
}
Block *Track::NearestBlockBeforeOrAt(const rational &time) const
{
foreach (Block* block, blocks_) {
// Blocks are sorted by time, so the first Block who's out point is at/after this time is the correct Block
if (block->out() > time) {
return block;
}
}
return nullptr;
}
Block *Track::NearestBlockAfterOrAt(const rational &time) const
{
foreach (Block* block, blocks_) {
// Blocks are sorted by time, so the first Block after this time is the correct Block
if (block->in() >= time) {
return block;
}
}
return nullptr;
}
Block *Track::NearestBlockAfter(const rational &time) const
{
foreach (Block* block, blocks_) {
// Blocks are sorted by time, so the first Block after this time is the correct Block
if (block->in() > time) {
return block;
}
}
return nullptr;
}
Block *Track::BlockAtTime(const rational &time) const
{
if (IsMuted() || time > track_length() || blocks_.isEmpty()) {
return nullptr;
}
// Use binary search to find block at time
Block* using_block = nullptr;
int low = 0;
int high = blocks_.size() - 1;
while (low <= high) {
int mid = low + (high - low) / 2;
Block* block = blocks_.at(mid);
if (block->in() <= time && block->out() > time) {
using_block = block;
break;
} else if (block->out() <= time) {
low = mid + 1;
} else {
high = mid - 1;
}
}
if (using_block && !using_block->is_enabled()) {
using_block = nullptr;
}
return using_block;
}
QVector<Block *> Track::BlocksAtTimeRange(const TimeRange &range) const
{
QVector<Block*> list;
if (IsMuted()) {
return list;
}
foreach (Block* block, blocks_) {
if (block
&& block->is_enabled()
&& block->out() > range.in()
&& block->in() < range.out()) {
list.append(block);
}
}
return list;
}
void Track::InvalidateCache(const TimeRange& range, const QString& from, int element, InvalidateCacheOptions options)
{
if (GetOperationStack() != 0) {
return;
}
TimeRange limited;
const Block* b;
if (from == kBlockInput
&& element >= 0
&& (b = dynamic_cast<const Block*>(GetConnectedOutput(from, element)))
&& !options.value(QStringLiteral("lengthevent")).toBool()) {
// Limit the range signal to the corresponding block
TimeRange transformed = TransformRangeFromBlock(b, range);
if (transformed.out() <= b->in() || transformed.in() >= b->out()) {
return;
}
limited = TimeRange(qMax(transformed.in(), b->in()), qMin(transformed.out(), b->out()));
} else {
limited = range;
}
// NOTE: For now, I figure we drop this key, but we may find in the future that it's advantageous
// to keep it
options.remove(QStringLiteral("lengthevent"));
Node::InvalidateCache(limited, from, element, options);
}
void Track::InsertBlockBefore(Block* block, Block* after)
{
if (!after) {
AppendBlock(block);
} else {
InsertBlockAtIndex(block, blocks_.indexOf(after));
}
}
void Track::InsertBlockAfter(Block *block, Block *before)
{
if (!before) {
PrependBlock(block);
} else {
int before_index = blocks_.indexOf(before);
Q_ASSERT(before_index >= 0);
if (before_index == blocks_.size() - 1) {
AppendBlock(block);
} else {
InsertBlockAtIndex(block, before_index + 1);
}
}
}
void Track::PrependBlock(Block *block)
{
BeginOperation();
InputArrayPrepend(kBlockInput);
Node::ConnectEdge(block, NodeInput(this, kBlockInput, 0));
EndOperation();
// Everything has shifted at this point
Node::InvalidateCache(TimeRange(0, track_length()), kBlockInput);
}
void Track::InsertBlockAtIndex(Block *block, int index)
{
BeginOperation();
int insert_index = GetArrayIndexFromCacheIndex(index);
InputArrayInsert(kBlockInput, insert_index);
Node::ConnectEdge(block, NodeInput(this, kBlockInput, insert_index));
EndOperation();
Node::InvalidateCache(TimeRange(block->in(), track_length()), kBlockInput);
}
void Track::AppendBlock(Block *block)
{
BeginOperation();
InputArrayAppend(kBlockInput);
Node::ConnectEdge(block, NodeInput(this, kBlockInput, InputArraySize(kBlockInput) - 1));
EndOperation();
// Invalidate area that block was added to
Node::InvalidateCache(TimeRange(block->in(), block->out()), kBlockInput);
}
void Track::RippleRemoveBlock(Block *block)
{
BeginOperation();
rational remove_in = block->in();
rational remove_out = block->out();
InputArrayRemove(kBlockInput, GetArrayIndexFromBlock(block));
EndOperation();
Node::InvalidateCache(TimeRange(remove_in, qMax(track_length(), remove_out)), kBlockInput);
}
void Track::ReplaceBlock(Block *old, Block *replace)
{
BeginOperation();
int index_of_old_block = GetArrayIndexFromBlock(old);
DisconnectEdge(old, NodeInput(this, kBlockInput, index_of_old_block));
ConnectEdge(replace, NodeInput(this, kBlockInput, index_of_old_block));
EndOperation();
if (old->length() == replace->length()) {
Node::InvalidateCache(TimeRange(replace->in(), replace->out()), kBlockInput);
} else {
Node::InvalidateCache(TimeRange(replace->in(), track_length()), kBlockInput);
}
}
rational Track::track_length() const
{
if (blocks_.isEmpty()) {
return 0;
} else {
return blocks_.last()->out();
}
}
bool Track::IsMuted() const
{
return GetStandardValue(kMutedInput).toBool();
}
bool Track::IsLocked() const
{
return locked_;
}
void Track::Hash(QCryptographicHash &hash, const NodeGlobals &globals, const VideoParams &video_params) const
{
Block* b = BlockAtTime(globals.time().in());
// Defer to block at this time, don't add any of our own information to the hash
if (b) {
NodeGlobals new_globals = globals;
new_globals.set_time(TransformRangeForBlock(b, globals.time()));
Node::Hash(b, GetValueHintForInput(kBlockInput, GetArrayIndexFromBlock(b)), hash, new_globals, video_params);
}
}
void Track::SetMuted(bool e)
{
SetStandardValue(kMutedInput, e);
}
void Track::SetLocked(bool e)
{
locked_ = e;
}
void Track::UpdateInOutFrom(int index)
{
// Find block just before this one to find the last out point
rational last_out = (index == 0) ? 0 : blocks_.at(index - 1)->out();
// Iterate through all blocks updating their in/outs
for (int i=index; i<blocks_.size(); i++) {
Block* b = blocks_.at(i);
b->set_in(last_out);
last_out += b->length();
b->set_out(last_out);
b->set_index(i);
}
emit BlocksRefreshed();
// Update track length
emit TrackLengthChanged();
}
int Track::GetArrayIndexFromBlock(Block *block) const
{
return block_array_indexes_.at(blocks_.indexOf(block));
}
int Track::GetArrayIndexFromCacheIndex(int index) const
{
return block_array_indexes_.at(index);
}
int Track::GetCacheIndexFromArrayIndex(int index) const
{
return block_array_indexes_.indexOf(index);
}
void Track::BlockLengthChanged()
{
// Assumes sender is a Block
Block* b = static_cast<Block*>(sender());
UpdateInOutFrom(blocks_.indexOf(b));
}
uint qHash(const Track::Reference &r, uint seed)
{
// Not super efficient, but couldn't think of any better way to ensure a different hash each time
return ::qHash(QStringLiteral("%1:%2").arg(QString::number(r.type()),
QString::number(r.index())),
seed);
}
QDataStream &operator<<(QDataStream &out, const Track::Reference &ref)
{
out << static_cast<int>(ref.type()) << ref.index();
return out;
}
QDataStream &operator>>(QDataStream &in, Track::Reference &ref)
{
int type;
int index;
in >> type >> index;
ref = Track::Reference(static_cast<Track::Type>(type), index);
return in;
}
}