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oak-editor/app/node/output/track/track.cpp
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itsmattkc d7c5ac4b44 implement entire project in nodes
Project items are now represented directly in nodes opening up more versatility and possibilities. This is the first iteration of this and will be buggy. Need to test thoroughly.
2021-02-15 21:31:57 +11:00

671 lines
15 KiB
C++

/***
Olive - Non-Linear Video Editor
Copyright (C) 2020 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 {
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)
{
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;
}
Track::~Track()
{
DisconnectAll();
}
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
{
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);
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);
const rational& block_in = blocks_.at(cache_index)->in();
return input_time + block_in;
}
return Node::OutputTimeAdjustment(input, element, input_time);
}
rational Track::TransformTimeForBlock(Block *block, const rational &time)
{
return time - block->in();
}
TimeRange Track::TransformRangeForBlock(Block *block, const TimeRange &range)
{
return range - block->in();
}
const double &Track::GetTrackHeight() const
{
return track_height_;
}
void Track::SetTrackHeight(const double &height)
{
track_height_ = height;
emit TrackHeightChangedInPixels(GetTrackHeightInPixels());
}
void Track::LoadInternal(QXmlStreamReader *reader, XMLNodeData &, uint , const QAtomicInt* )
{
while (XMLReadNextStartElement(reader)) {
if (reader->name() == QStringLiteral("height")) {
SetTrackHeight(reader->readElementText().toDouble());
} else {
reader->skipCurrentElement();
}
}
}
void Track::SaveInternal(QXmlStreamWriter *writer) const
{
writer->writeTextElement(QStringLiteral("height"), QString::number(GetTrackHeight()));
}
void Track::InputConnectedEvent(const QString &input, int element, const NodeOutput &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.node());
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
InvalidateCache(TimeRange(block->in(), track_length()));
// Emit block added signal
emit BlockAdded(block);
}
}
void Track::InputDisconnectedEvent(const QString &input, int element, const NodeOutput &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.node());
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));
} else if (blocks_.isEmpty()) {
SetLengthInternal(rational());
} else {
SetLengthInternal(blocks_.last()->out());
}
disconnect(b, &Block::LengthChanged, this, &Track::BlockLengthChanged);
InvalidateCache(invalidate_range);
}
}
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)
{
index_ = index;
emit IndexChanged(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->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()) {
return nullptr;
}
for (int i=0; i<blocks_.size(); i++) {
Block* block = blocks_.at(i);
if (block
&& block->in() <= time
&& block->out() > time) {
if (block->is_enabled()) {
return block;
} else {
break;
}
}
}
return nullptr;
}
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)
{
TimeRange limited;
const Block* b;
if (from == kBlockInput
&& element >= 0
&& (b = dynamic_cast<const Block*>(GetConnectedOutput(from, element).node()))) {
// Limit the range signal to the corresponding block
if (range.out() <= b->in() || range.in() >= b->out()) {
return;
}
limited = TimeRange(qMax(range.in(), b->in()), qMin(range.out(), b->out()));
} else {
limited = TimeRange(qMax(range.in(), rational(0)), qMin(range.out(), last_invalidated_length_));
last_invalidated_length_ = track_length();
}
Node::InvalidateCache(limited, from);
}
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
InvalidateCache(TimeRange(0, track_length()));
}
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();
InvalidateCache(TimeRange(block->in(), track_length()));
}
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
InvalidateCache(TimeRange(block->in(), track_length()));
}
void Track::RippleRemoveBlock(Block *block)
{
BeginOperation();
rational remove_in = block->in();
rational remove_out = block->out();
InputArrayRemove(kBlockInput, GetArrayIndexFromBlock(block));
EndOperation();
InvalidateCache(TimeRange(remove_in, qMax(track_length(), remove_out)));
}
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()) {
InvalidateCache(TimeRange(replace->in(), replace->out()));
} else {
InvalidateCache(TimeRange(replace->in(), RATIONAL_MAX));
}
}
const rational &Track::track_length() const
{
return track_length_;
}
QString Track::GetDefaultTrackName(Track::Type type, int index)
{
// Starts tracks at 1 rather than 0
int user_friendly_index = index+1;
switch (type) {
case Track::kVideo: return tr("Video %1").arg(user_friendly_index);
case Track::kAudio: return tr("Audio %1").arg(user_friendly_index);
case Track::kSubtitle: return tr("Subtitle %1").arg(user_friendly_index);
case Track::kNone:
case Track::kCount:
break;
}
return tr("Track %1").arg(user_friendly_index);
}
bool Track::IsMuted() const
{
return GetStandardValue(kMutedInput).toBool();
}
bool Track::IsLocked() const
{
return locked_;
}
void Track::Hash(const QString &output, QCryptographicHash &hash, const rational &time) const
{
Block* b = BlockAtTime(time);
// Defer to block at this time, don't add any of our own information to the hash
if (b) {
b->Hash(output, hash, TransformTimeForBlock(b, time));
}
}
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
SetLengthInternal(last_out);
}
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::SetLengthInternal(const rational &r, bool invalidate)
{
if (r != track_length_) {
// TimeRange will automatically normalize so that the shorter number is the in and the longer
// is the out
TimeRange invalidate_range(track_length_, r);
track_length_ = r;
last_invalidated_length_ = qMax(last_invalidated_length_, track_length_);
emit TrackLengthChanged();
if (invalidate) {
InvalidateCache(invalidate_range);
}
}
}
void Track::BlockLengthChanged()
{
// Assumes sender is a Block
Block* b = static_cast<Block*>(sender());
rational old_out = b->out();
UpdateInOutFrom(blocks_.indexOf(b));
rational new_out = b->out();
TimeRange invalidate_region(qMin(old_out, new_out), track_length());
InvalidateCache(invalidate_region);
}
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);
}
}