/*** Olive - Non-Linear Video Editor Copyright (C) 2022 Olive Team Modifications Copyright (C) 2025 mikesolar 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 . ***/ #ifndef CLIPBLOCK_H #define CLIPBLOCK_H #include "audio/audiovisualwaveform.h" #include "codec/decoder.h" #include "node/block/block.h" #include "node/input/multicam/multicamnode.h" #include "node/output/track/track.h" namespace olive { class ViewerOutput; /** * @brief Node that represents a block of Media */ class ClipBlock : public Block { Q_OBJECT public: ClipBlock(); NODE_DEFAULT_FUNCTIONS(ClipBlock) virtual QString Name() const override; virtual QString id() const override; virtual QString Description() const override; virtual void set_length_and_media_out(const rational &length) override; virtual void set_length_and_media_in(const rational &length) override; Track::Type GetTrackType() const { if (track()) { return track()->type(); } else { return Track::kNone; } } virtual Node::ValueHint GetValueHintForInput(const QString &input, int element = -1) const override; rational media_in() const; void set_media_in(const rational &media_in); bool IsAutocaching() const { return GetStandardValue(kAutoCacheInput).toBool(); } void SetAutocache(bool e); void DiscardCache(); virtual void InvalidateCache(const TimeRange &range, const QString &from, int element, InvalidateCacheOptions options) override; virtual TimeRange InputTimeAdjustment(const QString &input, int element, const TimeRange &input_time, bool clamp) const override; virtual TimeRange OutputTimeAdjustment(const QString &input, int element, const TimeRange &input_time) const override; virtual void Value(const NodeValueRow &value, const NodeGlobals &globals, NodeValueTable *table) const override; virtual void Retranslate() override; void RequestInvalidatedFromConnected(bool force_all = false, const TimeRange &intersect = TimeRange()); double speed() const { return GetStandardValue(kSpeedInput).toDouble(); } bool reverse() const { return GetStandardValue(kReverseInput).toBool(); } void set_reverse(bool e) { SetStandardValue(kReverseInput, e); } bool maintain_audio_pitch() const { return GetStandardValue(kMaintainAudioPitchInput).toBool(); } void set_maintain_audio_pitch(bool e) { SetStandardValue(kMaintainAudioPitchInput, e); } TransitionBlock *in_transition() { return in_transition_; } void set_in_transition(TransitionBlock *t) { in_transition_ = t; } TransitionBlock *out_transition() { return out_transition_; } void set_out_transition(TransitionBlock *t) { out_transition_ = t; } const QVector &block_links() const { return block_links_; } FrameHashCache *connected_video_cache() const { if (Node *n = GetConnectedOutput(kBufferIn)) { return n->video_frame_cache(); } else { return nullptr; } } AudioPlaybackCache *connected_audio_cache() const { if (Node *n = GetConnectedOutput(kBufferIn)) { return n->audio_playback_cache(); } else { return nullptr; } } FrameHashCache *thumbnails() { if (Node *n = GetConnectedOutput(kBufferIn)) { return n->thumbnail_cache(); } else { return nullptr; } } AudioWaveformCache *waveform() { if (Node *n = GetConnectedOutput(kBufferIn)) { return n->waveform_cache(); } else { return nullptr; } } void AddCachePassthroughFrom(ClipBlock *other); ViewerOutput *connected_viewer() const { return connected_viewer_; } virtual TimeRange GetVideoCacheRange() const override { return TimeRange(0, length()); } virtual TimeRange GetAudioCacheRange() const override { return TimeRange(0, length()); } virtual void ConnectedToPreviewEvent() override; TimeRange media_range() const; /** * @brief Get currently set loop mode */ LoopMode loop_mode() const { return static_cast(GetStandardValue(kLoopModeInput).toInt()); } void set_loop_mode(LoopMode l) { SetStandardValue(kLoopModeInput, int(l)); } MultiCamNode *FindMulticam(); static const QString kBufferIn; static const QString kMediaInInput; static const QString kSpeedInput; static const QString kReverseInput; static const QString kMaintainAudioPitchInput; static const QString kLoopModeInput; static const QString kAutoCacheInput; protected: virtual void LinkChangeEvent() override; virtual void InputConnectedEvent(const QString &input, int element, Node *output) override; virtual void InputDisconnectedEvent(const QString &input, int element, Node *output) override; virtual void InputValueChangedEvent(const QString &input, int element) override; private: enum SequenceToMediaTimeFlag { kSTMNone = 0x0, kSTMIgnoreReverse = 0x1, kSTMIgnoreSpeed = 0x2, kSTMIgnoreLoop = 0x4 }; rational SequenceToMediaTime(const rational &sequence_time, uint64_t flags = kSTMNone) const; rational MediaToSequenceTime(const rational &media_time) const; void RequestRangeFromConnected(const TimeRange &range); void RequestRangeForCache(PlaybackCache *cache, const TimeRange &max_range, const TimeRange &range, bool invalidate, bool request); void RequestInvalidatedForCache(PlaybackCache *cache, const TimeRange &max_range); bool GetAdjustedThumbnailRange(TimeRange *r) const; QVector block_links_; TransitionBlock *in_transition_; TransitionBlock *out_transition_; ViewerOutput *connected_viewer_; private: rational last_media_in_; }; } #endif // TIMELINEBLOCK_H