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4 Commits

Author SHA1 Message Date
Skyler Lehmkuhl cfb8e4462b All events now have three time references for seconds, measures/beats, frames 2026-03-30 10:15:55 -04:00
Skyler Lehmkuhl 65a550d8f4 Add piano roll note snapping 2026-03-24 19:24:24 -04:00
Skyler Lehmkuhl 123fe3f21a Tweak automation lane appearance 2026-03-23 23:37:15 -04:00
Skyler Lehmkuhl fa40173562 Add automatable volume and pan control to default instruments 2026-03-23 23:27:05 -04:00
56 changed files with 6468 additions and 313 deletions

367
daw-backend/Cargo.lock generated
View File

@ -2,6 +2,23 @@
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@ -222,6 +292,12 @@ dependencies = [
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@ -302,6 +378,24 @@ dependencies = [
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@ -352,6 +446,16 @@ dependencies = [
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@ -1323,6 +1559,28 @@ dependencies = [
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View File

@ -15,6 +15,7 @@ pub type ClipId = AudioClipInstanceId;
/// ## Timing Model
/// - `internal_start` / `internal_end`: Define the region of the source audio to play (trimming)
/// - `external_start` / `external_duration`: Define where the clip appears on the timeline and how long
/// - `*_beats` / `*_frames`: Derived representations for Measures/Frames mode display
///
/// ## Looping
/// If `external_duration` is greater than `internal_end - internal_start`,
@ -26,13 +27,21 @@ pub struct AudioClipInstance {
/// Start position within the audio content (seconds)
pub internal_start: f64,
#[serde(default)] pub internal_start_beats: f64,
#[serde(default)] pub internal_start_frames: f64,
/// End position within the audio content (seconds)
pub internal_end: f64,
#[serde(default)] pub internal_end_beats: f64,
#[serde(default)] pub internal_end_frames: f64,
/// Start position on the timeline (seconds)
pub external_start: f64,
#[serde(default)] pub external_start_beats: f64,
#[serde(default)] pub external_start_frames: f64,
/// Duration on the timeline (seconds) - can be longer than internal duration for looping
pub external_duration: f64,
#[serde(default)] pub external_duration_beats: f64,
#[serde(default)] pub external_duration_frames: f64,
/// Clip-level gain
pub gain: f32,
@ -62,9 +71,17 @@ impl AudioClipInstance {
id,
audio_pool_index,
internal_start,
internal_start_beats: 0.0,
internal_start_frames: 0.0,
internal_end,
internal_end_beats: 0.0,
internal_end_frames: 0.0,
external_start,
external_start_beats: 0.0,
external_start_frames: 0.0,
external_duration,
external_duration_beats: 0.0,
external_duration_frames: 0.0,
gain: 1.0,
read_ahead: None,
}
@ -83,9 +100,17 @@ impl AudioClipInstance {
id,
audio_pool_index,
internal_start: offset,
internal_start_beats: 0.0,
internal_start_frames: 0.0,
internal_end: offset + duration,
internal_end_beats: 0.0,
internal_end_frames: 0.0,
external_start: start_time,
external_start_beats: 0.0,
external_start_frames: 0.0,
external_duration: duration,
external_duration_beats: 0.0,
external_duration_frames: 0.0,
gain: 1.0,
read_ahead: None,
}
@ -147,4 +172,40 @@ impl AudioClipInstance {
pub fn set_gain(&mut self, gain: f32) {
self.gain = gain.max(0.0);
}
/// Populate beats/frames from the current seconds values.
pub fn sync_from_seconds(&mut self, bpm: f64, fps: f64) {
self.external_start_beats = self.external_start * bpm / 60.0;
self.external_start_frames = self.external_start * fps;
self.external_duration_beats = self.external_duration * bpm / 60.0;
self.external_duration_frames = self.external_duration * fps;
self.internal_start_beats = self.internal_start * bpm / 60.0;
self.internal_start_frames = self.internal_start * fps;
self.internal_end_beats = self.internal_end * bpm / 60.0;
self.internal_end_frames = self.internal_end * fps;
}
/// BPM changed; recompute seconds/frames from the stored beats values.
pub fn apply_beats(&mut self, bpm: f64, fps: f64) {
self.external_start = self.external_start_beats * 60.0 / bpm;
self.external_start_frames = self.external_start * fps;
self.external_duration = self.external_duration_beats * 60.0 / bpm;
self.external_duration_frames = self.external_duration * fps;
self.internal_start = self.internal_start_beats * 60.0 / bpm;
self.internal_start_frames = self.internal_start * fps;
self.internal_end = self.internal_end_beats * 60.0 / bpm;
self.internal_end_frames = self.internal_end * fps;
}
/// FPS changed; recompute seconds/beats from the stored frames values.
pub fn apply_frames(&mut self, fps: f64, bpm: f64) {
self.external_start = self.external_start_frames / fps;
self.external_start_beats = self.external_start * bpm / 60.0;
self.external_duration = self.external_duration_frames / fps;
self.external_duration_beats = self.external_duration * bpm / 60.0;
self.internal_start = self.internal_start_frames / fps;
self.internal_start_beats = self.internal_start * bpm / 60.0;
self.internal_end = self.internal_end_frames / fps;
self.internal_end_beats = self.internal_end * bpm / 60.0;
}
}

View File

@ -108,6 +108,11 @@ pub struct Engine {
timing_worst_render_us: u64,
timing_sum_total_us: u64,
timing_overrun_count: u64,
// Current tempo/framerate — kept in sync with SetTempo/ApplyBpmChange so that
// newly-created clip instances can be immediately synced via sync_from_seconds.
current_bpm: f64,
current_fps: f64,
}
impl Engine {
@ -184,6 +189,8 @@ impl Engine {
timing_worst_render_us: 0,
timing_sum_total_us: 0,
timing_overrun_count: 0,
current_bpm: 120.0,
current_fps: 30.0,
}
}
@ -728,16 +735,19 @@ impl Engine {
}
Command::MoveClip(track_id, clip_id, new_start_time) => {
// Moving just changes external_start, external_duration stays the same
let bpm = self.current_bpm;
let fps = self.current_fps;
match self.project.get_track_mut(track_id) {
Some(crate::audio::track::TrackNode::Audio(track)) => {
if let Some(clip) = track.clips.iter_mut().find(|c| c.id == clip_id) {
clip.external_start = new_start_time;
clip.sync_from_seconds(bpm, fps);
}
}
Some(crate::audio::track::TrackNode::Midi(track)) => {
// Note: clip_id here is the pool clip ID, not instance ID
if let Some(instance) = track.clip_instances.iter_mut().find(|c| c.clip_id == clip_id) {
if let Some(instance) = track.clip_instances.iter_mut().find(|c| c.id == clip_id) {
instance.external_start = new_start_time;
instance.sync_from_seconds(bpm, fps);
}
}
_ => {}
@ -747,13 +757,15 @@ impl Engine {
Command::TrimClip(track_id, clip_id, new_internal_start, new_internal_end) => {
// Trim changes which portion of the source content is used
// Also updates external_duration to match internal duration (no looping after trim)
let bpm = self.current_bpm;
let fps = self.current_fps;
match self.project.get_track_mut(track_id) {
Some(crate::audio::track::TrackNode::Audio(track)) => {
if let Some(clip) = track.clips.iter_mut().find(|c| c.id == clip_id) {
clip.internal_start = new_internal_start;
clip.internal_end = new_internal_end;
// By default, trimming sets external_duration to match internal duration
clip.external_duration = new_internal_end - new_internal_start;
clip.sync_from_seconds(bpm, fps);
}
}
Some(crate::audio::track::TrackNode::Midi(track)) => {
@ -761,8 +773,8 @@ impl Engine {
if let Some(instance) = track.clip_instances.iter_mut().find(|c| c.clip_id == clip_id) {
instance.internal_start = new_internal_start;
instance.internal_end = new_internal_end;
// By default, trimming sets external_duration to match internal duration
instance.external_duration = new_internal_end - new_internal_start;
instance.sync_from_seconds(bpm, fps);
}
}
_ => {}
@ -771,16 +783,20 @@ impl Engine {
}
Command::ExtendClip(track_id, clip_id, new_external_duration) => {
// Extend changes the external duration (enables looping if > internal duration)
let bpm = self.current_bpm;
let fps = self.current_fps;
match self.project.get_track_mut(track_id) {
Some(crate::audio::track::TrackNode::Audio(track)) => {
if let Some(clip) = track.clips.iter_mut().find(|c| c.id == clip_id) {
clip.external_duration = new_external_duration;
clip.sync_from_seconds(bpm, fps);
}
}
Some(crate::audio::track::TrackNode::Midi(track)) => {
// Note: clip_id here is the pool clip ID, not instance ID
if let Some(instance) = track.clip_instances.iter_mut().find(|c| c.clip_id == clip_id) {
instance.external_duration = new_external_duration;
instance.sync_from_seconds(bpm, fps);
}
}
_ => {}
@ -899,13 +915,14 @@ impl Engine {
}
Command::AddAudioClip(track_id, clip_id, pool_index, start_time, duration, offset) => {
// Create a new clip instance with the pre-assigned clip_id
let clip = AudioClipInstance::from_legacy(
let mut clip = AudioClipInstance::from_legacy(
clip_id,
pool_index,
start_time,
duration,
offset,
);
clip.sync_from_seconds(self.current_bpm, self.current_fps);
// Add clip to track
if let Some(crate::audio::track::TrackNode::Audio(track)) = self.project.get_track_mut(track_id) {
@ -933,7 +950,8 @@ impl Engine {
// Create an instance for this clip on the track
let instance_id = self.project.next_midi_clip_instance_id();
let instance = MidiClipInstance::from_full_clip(instance_id, clip_id, duration, start_time);
let mut instance = MidiClipInstance::from_full_clip(instance_id, clip_id, duration, start_time);
instance.sync_from_seconds(self.current_bpm, self.current_fps);
if let Some(crate::audio::track::TrackNode::Midi(track)) = self.project.get_track_mut(track_id) {
track.clip_instances.push(instance);
@ -973,7 +991,15 @@ impl Engine {
}
Command::AddLoadedMidiClip(track_id, clip, start_time) => {
// Add a pre-loaded MIDI clip to the track with the given start time
let _ = self.project.add_midi_clip_at(track_id, clip, start_time);
let bpm = self.current_bpm;
let fps = self.current_fps;
if let Ok(instance_id) = self.project.add_midi_clip_at(track_id, clip, start_time) {
if let Some(crate::audio::track::TrackNode::Midi(track)) = self.project.get_track_mut(track_id) {
if let Some(inst) = track.clip_instances.iter_mut().find(|i| i.id == instance_id) {
inst.sync_from_seconds(bpm, fps);
}
}
}
self.refresh_clip_snapshot();
}
Command::UpdateMidiClipNotes(_track_id, clip_id, notes) => {
@ -1277,6 +1303,14 @@ impl Engine {
Command::SetTempo(bpm, time_sig) => {
self.metronome.update_timing(bpm, time_sig);
self.project.set_tempo(bpm, time_sig.0);
self.current_bpm = bpm as f64;
}
Command::ApplyBpmChange(bpm, fps, midi_durations) => {
self.current_bpm = bpm;
self.current_fps = fps;
self.project.apply_bpm_change(bpm, fps, &midi_durations);
self.refresh_clip_snapshot();
}
// Node graph commands
@ -1673,6 +1707,7 @@ impl Engine {
Ok(json) => {
match crate::audio::node_graph::preset::GraphPreset::from_json(&json) {
Ok(preset) => {
let preset_name = preset.metadata.name.clone();
// Extract the directory path from the preset path for resolving relative sample paths
let preset_base_path = std::path::Path::new(&preset_path).parent();
@ -1684,19 +1719,19 @@ impl Engine {
track.instrument_graph = graph;
track.graph_is_default = true;
let _ = self.event_tx.push(AudioEvent::GraphStateChanged(track_id));
let _ = self.event_tx.push(AudioEvent::GraphPresetLoaded(track_id));
let _ = self.event_tx.push(AudioEvent::GraphPresetLoaded(track_id, preset_name));
}
Some(TrackNode::Audio(track)) => {
track.effects_graph = graph;
track.graph_is_default = true;
let _ = self.event_tx.push(AudioEvent::GraphStateChanged(track_id));
let _ = self.event_tx.push(AudioEvent::GraphPresetLoaded(track_id));
let _ = self.event_tx.push(AudioEvent::GraphPresetLoaded(track_id, preset_name));
}
Some(TrackNode::Group(track)) => {
track.audio_graph = graph;
track.graph_is_default = true;
let _ = self.event_tx.push(AudioEvent::GraphStateChanged(track_id));
let _ = self.event_tx.push(AudioEvent::GraphPresetLoaded(track_id));
let _ = self.event_tx.push(AudioEvent::GraphPresetLoaded(track_id, preset_name));
}
_ => {}
}
@ -1729,6 +1764,7 @@ impl Engine {
Command::GraphLoadLbins(track_id, path) => {
match crate::audio::node_graph::lbins::load_lbins(&path) {
Ok((preset, assets)) => {
let preset_name = preset.metadata.name.clone();
match AudioGraph::from_preset(&preset, self.sample_rate, 8192, None, Some(&assets)) {
Ok(graph) => {
match self.project.get_track_mut(track_id) {
@ -1736,19 +1772,19 @@ impl Engine {
track.instrument_graph = graph;
track.graph_is_default = true;
let _ = self.event_tx.push(AudioEvent::GraphStateChanged(track_id));
let _ = self.event_tx.push(AudioEvent::GraphPresetLoaded(track_id));
let _ = self.event_tx.push(AudioEvent::GraphPresetLoaded(track_id, preset_name));
}
Some(TrackNode::Audio(track)) => {
track.effects_graph = graph;
track.graph_is_default = true;
let _ = self.event_tx.push(AudioEvent::GraphStateChanged(track_id));
let _ = self.event_tx.push(AudioEvent::GraphPresetLoaded(track_id));
let _ = self.event_tx.push(AudioEvent::GraphPresetLoaded(track_id, preset_name));
}
Some(TrackNode::Group(track)) => {
track.audio_graph = graph;
track.graph_is_default = true;
let _ = self.event_tx.push(AudioEvent::GraphStateChanged(track_id));
let _ = self.event_tx.push(AudioEvent::GraphPresetLoaded(track_id));
let _ = self.event_tx.push(AudioEvent::GraphPresetLoaded(track_id, preset_name));
}
_ => {}
}
@ -2714,8 +2750,18 @@ impl Engine {
}
Query::AddMidiClipSync(track_id, clip, start_time) => {
// Add MIDI clip to track and return the instance ID
let bpm = self.current_bpm;
let fps = self.current_fps;
let result = match self.project.add_midi_clip_at(track_id, clip, start_time) {
Ok(instance_id) => QueryResponse::MidiClipInstanceAdded(Ok(instance_id)),
Ok(instance_id) => {
// Sync beats/frames on the newly created instance
if let Some(crate::audio::track::TrackNode::Midi(track)) = self.project.get_track_mut(track_id) {
if let Some(inst) = track.clip_instances.iter_mut().find(|i| i.id == instance_id) {
inst.sync_from_seconds(bpm, fps);
}
}
QueryResponse::MidiClipInstanceAdded(Ok(instance_id))
}
Err(e) => QueryResponse::MidiClipInstanceAdded(Err(e.to_string())),
};
self.refresh_clip_snapshot();
@ -2726,6 +2772,7 @@ impl Engine {
// Assign instance ID
let instance_id = self.project.next_midi_clip_instance_id();
instance.id = instance_id;
instance.sync_from_seconds(self.current_bpm, self.current_fps);
let result = match self.project.add_midi_clip_instance(track_id, instance) {
Ok(_) => QueryResponse::MidiClipInstanceAdded(Ok(instance_id)),
@ -3640,6 +3687,12 @@ impl EngineController {
let _ = self.command_tx.push(Command::SetTempo(bpm, time_signature));
}
/// After a BPM change: update MIDI clip durations and sync all clip beats/frames.
/// Call this after move_clip() has been called for all affected clips.
pub fn apply_bpm_change(&mut self, bpm: f64, fps: f64, midi_durations: Vec<(crate::audio::MidiClipId, f64)>) {
let _ = self.command_tx.push(Command::ApplyBpmChange(bpm, fps, midi_durations));
}
// Node graph operations
/// Add a node to a track's instrument graph

View File

@ -3,6 +3,12 @@
pub struct MidiEvent {
/// Time position within the clip in seconds (sample-rate independent)
pub timestamp: f64,
/// Time position in beats (quarter-note beats from clip start); derived from timestamp
#[serde(default)]
pub timestamp_beats: f64,
/// Time position in frames; derived from timestamp
#[serde(default)]
pub timestamp_frames: f64,
/// MIDI status byte (includes channel)
pub status: u8,
/// First data byte (note number, CC number, etc.)
@ -16,6 +22,8 @@ impl MidiEvent {
pub fn new(timestamp: f64, status: u8, data1: u8, data2: u8) -> Self {
Self {
timestamp,
timestamp_beats: 0.0,
timestamp_frames: 0.0,
status,
data1,
data2,
@ -26,6 +34,8 @@ impl MidiEvent {
pub fn note_on(timestamp: f64, channel: u8, note: u8, velocity: u8) -> Self {
Self {
timestamp,
timestamp_beats: 0.0,
timestamp_frames: 0.0,
status: 0x90 | (channel & 0x0F),
data1: note,
data2: velocity,
@ -36,12 +46,32 @@ impl MidiEvent {
pub fn note_off(timestamp: f64, channel: u8, note: u8, velocity: u8) -> Self {
Self {
timestamp,
timestamp_beats: 0.0,
timestamp_frames: 0.0,
status: 0x80 | (channel & 0x0F),
data1: note,
data2: velocity,
}
}
/// Sync beats and frames from seconds (call after constructing or when seconds is canonical)
pub fn sync_from_seconds(&mut self, bpm: f64, fps: f64) {
self.timestamp_beats = self.timestamp * bpm / 60.0;
self.timestamp_frames = self.timestamp * fps;
}
/// Recompute seconds and frames from beats (call when BPM changes in Measures mode)
pub fn apply_beats(&mut self, bpm: f64, fps: f64) {
self.timestamp = self.timestamp_beats * 60.0 / bpm;
self.timestamp_frames = self.timestamp * fps;
}
/// Recompute seconds and beats from frames (call when FPS changes in Frames mode)
pub fn apply_frames(&mut self, fps: f64, bpm: f64) {
self.timestamp = self.timestamp_frames / fps;
self.timestamp_beats = self.timestamp * bpm / 60.0;
}
/// Check if this is a note on event (with non-zero velocity)
pub fn is_note_on(&self) -> bool {
(self.status & 0xF0) == 0x90 && self.data2 > 0
@ -128,6 +158,7 @@ impl MidiClip {
/// ## Timing Model
/// - `internal_start` / `internal_end`: Define the region of the source clip to play (trimming)
/// - `external_start` / `external_duration`: Define where the instance appears on the timeline and how long
/// - `*_beats` / `*_frames`: Derived representations for Measures/Frames mode display
///
/// ## Looping
/// If `external_duration` is greater than `internal_end - internal_start`,
@ -139,13 +170,21 @@ pub struct MidiClipInstance {
/// Start position within the clip content (seconds)
pub internal_start: f64,
#[serde(default)] pub internal_start_beats: f64,
#[serde(default)] pub internal_start_frames: f64,
/// End position within the clip content (seconds)
pub internal_end: f64,
#[serde(default)] pub internal_end_beats: f64,
#[serde(default)] pub internal_end_frames: f64,
/// Start position on the timeline (seconds)
pub external_start: f64,
#[serde(default)] pub external_start_beats: f64,
#[serde(default)] pub external_start_frames: f64,
/// Duration on the timeline (seconds) - can be longer than internal duration for looping
pub external_duration: f64,
#[serde(default)] pub external_duration_beats: f64,
#[serde(default)] pub external_duration_frames: f64,
}
impl MidiClipInstance {
@ -162,9 +201,17 @@ impl MidiClipInstance {
id,
clip_id,
internal_start,
internal_start_beats: 0.0,
internal_start_frames: 0.0,
internal_end,
internal_end_beats: 0.0,
internal_end_frames: 0.0,
external_start,
external_start_beats: 0.0,
external_start_frames: 0.0,
external_duration,
external_duration_beats: 0.0,
external_duration_frames: 0.0,
}
}
@ -179,9 +226,17 @@ impl MidiClipInstance {
id,
clip_id,
internal_start: 0.0,
internal_start_beats: 0.0,
internal_start_frames: 0.0,
internal_end: clip_duration,
internal_end_beats: 0.0,
internal_end_frames: 0.0,
external_start,
external_start_beats: 0.0,
external_start_frames: 0.0,
external_duration: clip_duration,
external_duration_beats: 0.0,
external_duration_frames: 0.0,
}
}
@ -215,6 +270,42 @@ impl MidiClipInstance {
self.external_start < range_end && self.external_end() > range_start
}
/// Populate beats/frames from the current seconds values.
pub fn sync_from_seconds(&mut self, bpm: f64, fps: f64) {
self.external_start_beats = self.external_start * bpm / 60.0;
self.external_start_frames = self.external_start * fps;
self.external_duration_beats = self.external_duration * bpm / 60.0;
self.external_duration_frames = self.external_duration * fps;
self.internal_start_beats = self.internal_start * bpm / 60.0;
self.internal_start_frames = self.internal_start * fps;
self.internal_end_beats = self.internal_end * bpm / 60.0;
self.internal_end_frames = self.internal_end * fps;
}
/// BPM changed; recompute seconds/frames from the stored beats values.
pub fn apply_beats(&mut self, bpm: f64, fps: f64) {
self.external_start = self.external_start_beats * 60.0 / bpm;
self.external_start_frames = self.external_start * fps;
self.external_duration = self.external_duration_beats * 60.0 / bpm;
self.external_duration_frames = self.external_duration * fps;
self.internal_start = self.internal_start_beats * 60.0 / bpm;
self.internal_start_frames = self.internal_start * fps;
self.internal_end = self.internal_end_beats * 60.0 / bpm;
self.internal_end_frames = self.internal_end * fps;
}
/// FPS changed; recompute seconds/beats from the stored frames values.
pub fn apply_frames(&mut self, fps: f64, bpm: f64) {
self.external_start = self.external_start_frames / fps;
self.external_start_beats = self.external_start * bpm / 60.0;
self.external_duration = self.external_duration_frames / fps;
self.external_duration_beats = self.external_duration * bpm / 60.0;
self.internal_start = self.internal_start_frames / fps;
self.internal_start_beats = self.internal_start * bpm / 60.0;
self.internal_end = self.internal_end_frames / fps;
self.internal_end_beats = self.internal_end * bpm / 60.0;
}
/// Get events that should be triggered in a given timeline range
///
/// This handles:

View File

@ -1009,6 +1009,29 @@ impl AudioGraph {
}
}
// For AutomationInput nodes, serialize display name and keyframes
if node.node_type() == "AutomationInput" {
use crate::audio::node_graph::nodes::{AutomationInputNode, InterpolationType};
use crate::audio::node_graph::preset::SerializedKeyframe;
if let Some(auto_node) = node.as_any().downcast_ref::<AutomationInputNode>() {
serialized.automation_display_name = Some(auto_node.display_name().to_string());
serialized.automation_keyframes = auto_node.keyframes().iter().map(|kf| {
SerializedKeyframe {
time: kf.time,
value: kf.value,
interpolation: match kf.interpolation {
InterpolationType::Linear => "linear",
InterpolationType::Bezier => "bezier",
InterpolationType::Step => "step",
InterpolationType::Hold => "hold",
}.to_string(),
ease_out: kf.ease_out,
ease_in: kf.ease_in,
}
}).collect();
}
}
// For AmpSim nodes, serialize the model path
if node.node_type() == "AmpSim" {
use crate::audio::node_graph::nodes::AmpSimNode;
@ -1322,6 +1345,35 @@ impl AudioGraph {
}
}
// Restore AutomationInput display name and keyframes
if serialized_node.node_type == "AutomationInput" {
use crate::audio::node_graph::nodes::{AutomationInputNode, AutomationKeyframe, InterpolationType};
if let Some(graph_node) = graph.graph.node_weight_mut(node_idx) {
if let Some(auto_node) = graph_node.node.as_any_mut().downcast_mut::<AutomationInputNode>() {
if let Some(ref name) = serialized_node.automation_display_name {
auto_node.set_display_name(name.clone());
}
if !serialized_node.automation_keyframes.is_empty() {
auto_node.clear_keyframes();
for kf in &serialized_node.automation_keyframes {
auto_node.add_keyframe(AutomationKeyframe {
time: kf.time,
value: kf.value,
interpolation: match kf.interpolation.as_str() {
"bezier" => InterpolationType::Bezier,
"step" => InterpolationType::Step,
"hold" => InterpolationType::Hold,
_ => InterpolationType::Linear,
},
ease_out: kf.ease_out,
ease_in: kf.ease_in,
});
}
}
}
}
}
// Restore position
graph.set_node_position(node_idx, serialized_node.position.0, serialized_node.position.1);
}

View File

@ -1,4 +1,4 @@
use crate::audio::node_graph::{AudioNode, NodeCategory, NodePort, Parameter, SignalType};
use crate::audio::node_graph::{AudioNode, NodeCategory, NodePort, Parameter, ParameterUnit, SignalType};
use crate::audio::midi::MidiEvent;
use serde::{Deserialize, Serialize};
use std::sync::{Arc, RwLock};
@ -63,12 +63,17 @@ impl AutomationInputNode {
NodePort::new("CV Out", SignalType::CV, 0),
];
let parameters = vec![
Parameter::new(0, "Min", f32::NEG_INFINITY, f32::INFINITY, -1.0, ParameterUnit::Generic),
Parameter::new(1, "Max", f32::NEG_INFINITY, f32::INFINITY, 1.0, ParameterUnit::Generic),
];
Self {
name: name.clone(),
display_name: "Automation".to_string(),
keyframes: vec![AutomationKeyframe::new(0.0, 0.0)],
outputs,
parameters: Vec::new(),
parameters,
playback_time: Arc::new(RwLock::new(0.0)),
value_min: -1.0,
value_max: 1.0,
@ -221,12 +226,20 @@ impl AudioNode for AutomationInputNode {
&self.parameters
}
fn set_parameter(&mut self, _id: u32, _value: f32) {
// No parameters
fn set_parameter(&mut self, id: u32, value: f32) {
match id {
0 => self.value_min = value,
1 => self.value_max = value,
_ => {}
}
}
fn get_parameter(&self, _id: u32) -> f32 {
0.0
fn get_parameter(&self, id: u32) -> f32 {
match id {
0 => self.value_min,
1 => self.value_max,
_ => 0.0,
}
}
fn process(

View File

@ -113,10 +113,8 @@ impl AudioNode for PanNode {
let frames_to_process = frames.min(output_frames);
for frame in 0..frames_to_process {
// Pan CV input: when connected, replaces parameter; when unconnected, uses parameter
// CV is in 0-1 range, mapped to -1 to +1 pan range
let cv_raw = cv_input_or_default(inputs, 1, frame, (self.pan + 1.0) * 0.5);
let pan = (cv_raw * 2.0 - 1.0).clamp(-1.0, 1.0);
// Pan CV input: -1..+1 directly (0 = center), defaults to parameter value when unconnected
let pan = cv_input_or_default(inputs, 1, frame, self.pan).clamp(-1.0, 1.0);
// Calculate gains using constant-power panning law
let angle = (pan + 1.0) * 0.5 * PI / 2.0;

View File

@ -100,6 +100,16 @@ fn default_version() -> u32 {
1
}
/// Serialized keyframe for AutomationInput nodes
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct SerializedKeyframe {
pub time: f64,
pub value: f32,
pub interpolation: String,
pub ease_out: (f32, f32),
pub ease_in: (f32, f32),
}
/// Serialized node representation
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct SerializedNode {
@ -141,6 +151,14 @@ pub struct SerializedNode {
/// Allows the UI to display actual track names on the node's output ports.
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub port_names: Vec<String>,
/// For AutomationInput nodes: user-visible display name
#[serde(skip_serializing_if = "Option::is_none")]
pub automation_display_name: Option<String>,
/// For AutomationInput nodes: saved keyframes
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub automation_keyframes: Vec<SerializedKeyframe>,
}
/// Serialized group definition (frontend-only visual grouping, stored opaquely by backend)
@ -239,6 +257,8 @@ impl SerializedNode {
nam_model_path: None,
num_ports: None,
port_names: Vec::new(),
automation_display_name: None,
automation_keyframes: Vec::new(),
}
}

View File

@ -216,6 +216,46 @@ impl Project {
self.tracks.iter().map(|(&id, node)| (id, node))
}
/// After a BPM change, update MIDI clip durations then sync all clip beats/frames from seconds.
///
/// `midi_durations` maps each MidiClipId to its new content duration in seconds.
/// Call this after the seconds positions have already been updated (e.g. via MoveClip).
pub fn apply_bpm_change(&mut self, bpm: f64, fps: f64, midi_durations: &[(crate::audio::midi::MidiClipId, f64)]) {
for (_, track) in self.tracks.iter_mut() {
match track {
crate::audio::track::TrackNode::Audio(t) => {
for clip in &mut t.clips {
clip.sync_from_seconds(bpm, fps);
}
}
crate::audio::track::TrackNode::Midi(t) => {
// Update content durations first so internal_end is correct before sync
for instance in &mut t.clip_instances {
if let Some(&new_dur) = midi_durations.iter()
.find(|(id, _)| *id == instance.clip_id)
.map(|(_, d)| d)
{
let old_internal_dur = instance.internal_duration();
instance.internal_end = instance.internal_start + new_dur;
// Scale external_duration by the same ratio (works for both looping and non-looping)
if old_internal_dur > 1e-12 {
instance.external_duration = instance.external_duration * new_dur / old_internal_dur;
}
}
instance.sync_from_seconds(bpm, fps);
}
// Update pool clip durations
for &(clip_id, new_dur) in midi_durations {
if let Some(clip) = self.midi_clip_pool.get_clip_mut(clip_id) {
clip.duration = new_dur;
}
}
}
_ => {}
}
}
}
/// Get oscilloscope data from a node in a track's graph
pub fn get_oscilloscope_data(&self, track_id: TrackId, node_id: u32, sample_count: usize) -> Option<(Vec<f32>, Vec<f32>)> {
if let Some(TrackNode::Midi(track)) = self.tracks.get(&track_id) {

View File

@ -144,6 +144,9 @@ pub enum Command {
SetMetronomeEnabled(bool),
/// Set project tempo and time signature (bpm, (numerator, denominator))
SetTempo(f32, (u32, u32)),
/// After a BPM change: update MIDI clip durations and sync all clip beats/frames from seconds.
/// (bpm, fps, midi_durations: Vec<(clip_id, new_duration_seconds)>)
ApplyBpmChange(f64, f64, Vec<(MidiClipId, f64)>),
// Node graph commands
/// Add a node to a track's instrument graph (track_id, node_type, position_x, position_y)
@ -310,8 +313,8 @@ pub enum AudioEvent {
GraphConnectionError(TrackId, String),
/// Graph state changed (for full UI sync)
GraphStateChanged(TrackId),
/// Preset fully loaded (track_id) - emitted after all nodes and samples are loaded
GraphPresetLoaded(TrackId),
/// Preset fully loaded (track_id, preset_name) - emitted after all nodes and samples are loaded
GraphPresetLoaded(TrackId, String),
/// Preset has been saved to file (track_id, preset_path)
GraphPresetSaved(TrackId, String),
/// Script compilation result (track_id, node_id, success, error, ui_declaration, source)

View File

@ -1697,6 +1697,7 @@ dependencies = [
"serde",
"serde_json",
"symphonia",
"zip",
]
[[package]]

View File

@ -120,6 +120,17 @@ pub trait Action: Send {
fn midi_events_after_rollback(&self) -> Option<(u32, &[daw_backend::audio::midi::MidiEvent])> {
None
}
/// Return MIDI event data for multiple clips after execute/redo (e.g. BPM change).
/// Each element is (midi_clip_id, events). Default: empty.
fn all_midi_events_after_execute(&self) -> Vec<(u32, Vec<daw_backend::audio::midi::MidiEvent>)> {
Vec::new()
}
/// Return MIDI event data for multiple clips after rollback/undo.
fn all_midi_events_after_rollback(&self) -> Vec<(u32, Vec<daw_backend::audio::midi::MidiEvent>)> {
Vec::new()
}
}
/// Action executor that wraps the document and manages undo/redo
@ -301,6 +312,16 @@ impl ActionExecutor {
self.redo_stack.last().and_then(|a| a.midi_events_after_rollback())
}
/// Get multi-clip MIDI event data from the last undo stack action (after redo).
pub fn last_undo_all_midi_events(&self) -> Vec<(u32, Vec<daw_backend::audio::midi::MidiEvent>)> {
self.undo_stack.last().map(|a| a.all_midi_events_after_execute()).unwrap_or_default()
}
/// Get multi-clip MIDI event data from the last redo stack action (after undo).
pub fn last_redo_all_midi_events(&self) -> Vec<(u32, Vec<daw_backend::audio::midi::MidiEvent>)> {
self.redo_stack.last().map(|a| a.all_midi_events_after_rollback()).unwrap_or_default()
}
/// Get the description of the next action to redo
pub fn redo_description(&self) -> Option<String> {
self.redo_stack.last().map(|a| a.description())

View File

@ -79,6 +79,8 @@ impl Action for AddClipInstanceAction {
if let Some(valid_start) = adjusted_start {
// Update instance to use the valid position
self.clip_instance.timeline_start = valid_start;
let (bpm, fps) = (document.bpm, document.framerate);
self.clip_instance.sync_from_seconds(bpm, fps);
} else {
// No valid position found - reject the operation
return Err("Cannot add clip: no valid position found on layer (layer is full)".to_string());

View File

@ -0,0 +1,361 @@
//! Change BPM action
//!
//! Atomically changes the document BPM and rescales all clip instance positions and
//! MIDI event timestamps so that beat positions are preserved (Measures mode behaviour).
use crate::action::{Action, BackendContext};
use crate::clip::ClipInstance;
use crate::document::Document;
use crate::layer::AnyLayer;
use std::collections::HashMap;
use uuid::Uuid;
/// Snapshot of all timing fields on a `ClipInstance`
#[derive(Clone)]
struct TimingFields {
timeline_start: f64,
timeline_start_beats: f64,
timeline_start_frames: f64,
trim_start: f64,
trim_start_beats: f64,
trim_start_frames: f64,
trim_end: Option<f64>,
trim_end_beats: Option<f64>,
trim_end_frames: Option<f64>,
timeline_duration: Option<f64>,
timeline_duration_beats: Option<f64>,
timeline_duration_frames: Option<f64>,
}
impl TimingFields {
fn from_instance(ci: &ClipInstance) -> Self {
Self {
timeline_start: ci.timeline_start,
timeline_start_beats: ci.timeline_start_beats,
timeline_start_frames: ci.timeline_start_frames,
trim_start: ci.trim_start,
trim_start_beats: ci.trim_start_beats,
trim_start_frames: ci.trim_start_frames,
trim_end: ci.trim_end,
trim_end_beats: ci.trim_end_beats,
trim_end_frames: ci.trim_end_frames,
timeline_duration: ci.timeline_duration,
timeline_duration_beats: ci.timeline_duration_beats,
timeline_duration_frames: ci.timeline_duration_frames,
}
}
fn apply_to(&self, ci: &mut ClipInstance) {
ci.timeline_start = self.timeline_start;
ci.timeline_start_beats = self.timeline_start_beats;
ci.timeline_start_frames = self.timeline_start_frames;
ci.trim_start = self.trim_start;
ci.trim_start_beats = self.trim_start_beats;
ci.trim_start_frames = self.trim_start_frames;
ci.trim_end = self.trim_end;
ci.trim_end_beats = self.trim_end_beats;
ci.trim_end_frames = self.trim_end_frames;
ci.timeline_duration = self.timeline_duration;
ci.timeline_duration_beats = self.timeline_duration_beats;
ci.timeline_duration_frames = self.timeline_duration_frames;
}
}
#[derive(Clone)]
struct ClipTimingSnapshot {
layer_id: Uuid,
instance_id: Uuid,
old_fields: TimingFields,
new_fields: TimingFields,
}
#[derive(Clone)]
struct MidiClipSnapshot {
layer_id: Uuid,
midi_clip_id: u32,
clip_id: Uuid,
old_clip_duration: f64,
new_clip_duration: f64,
old_events: Vec<daw_backend::audio::midi::MidiEvent>,
new_events: Vec<daw_backend::audio::midi::MidiEvent>,
}
/// Action that atomically changes BPM and rescales all clip/note positions to preserve beats
pub struct ChangeBpmAction {
old_bpm: f64,
new_bpm: f64,
time_sig: (u32, u32),
clip_snapshots: Vec<ClipTimingSnapshot>,
midi_snapshots: Vec<MidiClipSnapshot>,
}
impl ChangeBpmAction {
/// Build the action, computing new positions for all clip instances and MIDI events.
///
/// `midi_event_cache` maps backend MIDI clip ID → current event list.
pub fn new(
old_bpm: f64,
new_bpm: f64,
document: &Document,
midi_event_cache: &HashMap<u32, Vec<daw_backend::audio::midi::MidiEvent>>,
) -> Self {
let fps = document.framerate;
let time_sig = (
document.time_signature.numerator,
document.time_signature.denominator,
);
let mut clip_snapshots: Vec<ClipTimingSnapshot> = Vec::new();
let mut midi_snapshots: Vec<MidiClipSnapshot> = Vec::new();
// Collect MIDI clip IDs we've already snapshotted (avoid duplicates)
let mut seen_midi_clips: std::collections::HashSet<u32> = std::collections::HashSet::new();
for layer in document.all_layers() {
let layer_id = layer.id();
let clip_instances: &[ClipInstance] = match layer {
AnyLayer::Vector(vl) => &vl.clip_instances,
AnyLayer::Audio(al) => &al.clip_instances,
AnyLayer::Video(vl) => &vl.clip_instances,
AnyLayer::Effect(el) => &el.clip_instances,
AnyLayer::Group(_) | AnyLayer::Raster(_) => continue,
};
for ci in clip_instances {
let old_fields = TimingFields::from_instance(ci);
// Compute new fields: beats are canonical, recompute seconds + frames.
// Guard: if timeline_start_beats was never populated (clips added without
// sync_from_seconds), derive beats from seconds before applying.
let mut new_ci = ci.clone();
if new_ci.timeline_start_beats == 0.0 && new_ci.timeline_start.abs() > 1e-9 {
new_ci.sync_from_seconds(old_bpm, fps);
}
new_ci.apply_beats(new_bpm, fps);
let new_fields = TimingFields::from_instance(&new_ci);
clip_snapshots.push(ClipTimingSnapshot {
layer_id,
instance_id: ci.id,
old_fields,
new_fields,
});
// If this is a MIDI clip on an audio layer, collect MIDI events + rescale duration.
// Always snapshot the clip (even if empty) so clip.duration is rescaled.
if let AnyLayer::Audio(_) = layer {
if let Some(audio_clip) = document.get_audio_clip(&ci.clip_id) {
use crate::clip::AudioClipType;
if let AudioClipType::Midi { midi_clip_id } = &audio_clip.clip_type {
let midi_id = *midi_clip_id;
if !seen_midi_clips.contains(&midi_id) {
seen_midi_clips.insert(midi_id);
let old_clip_duration = audio_clip.duration;
let new_clip_duration = old_clip_duration * old_bpm / new_bpm;
// Use cached events if present; empty vec for clips with no events yet.
let old_events = midi_event_cache.get(&midi_id).cloned().unwrap_or_default();
let new_events: Vec<_> = old_events.iter().map(|ev| {
let mut e = ev.clone();
// Ensure beats are populated before using them as canonical.
// Events created before triple-rep (e.g. from recording)
// have timestamp_beats == 0.0 — sync from seconds first.
if e.timestamp_beats == 0.0 && e.timestamp.abs() > 1e-9 {
e.sync_from_seconds(old_bpm, fps);
}
e.apply_beats(new_bpm, fps);
e
}).collect();
midi_snapshots.push(MidiClipSnapshot {
layer_id,
midi_clip_id: midi_id,
clip_id: ci.clip_id,
old_clip_duration,
new_clip_duration,
old_events,
new_events,
});
}
}
}
}
}
}
Self {
old_bpm,
new_bpm,
time_sig,
clip_snapshots,
midi_snapshots,
}
}
/// Return the new MIDI event lists for each affected clip (for immediate cache update).
pub fn new_midi_events(&self) -> impl Iterator<Item = (u32, &Vec<daw_backend::audio::midi::MidiEvent>)> {
self.midi_snapshots.iter().map(|s| (s.midi_clip_id, &s.new_events))
}
fn apply_clips(document: &mut Document, snapshots: &[ClipTimingSnapshot], use_new: bool) {
for snap in snapshots {
let fields = if use_new { &snap.new_fields } else { &snap.old_fields };
let layer = match document.get_layer_mut(&snap.layer_id) {
Some(l) => l,
None => continue,
};
let clip_instances = match layer {
AnyLayer::Vector(vl) => &mut vl.clip_instances,
AnyLayer::Audio(al) => &mut al.clip_instances,
AnyLayer::Video(vl) => &mut vl.clip_instances,
AnyLayer::Effect(el) => &mut el.clip_instances,
AnyLayer::Group(_) | AnyLayer::Raster(_) => continue,
};
if let Some(ci) = clip_instances.iter_mut().find(|ci| ci.id == snap.instance_id) {
fields.apply_to(ci);
}
}
}
fn apply_midi_durations(document: &mut Document, snapshots: &[MidiClipSnapshot], use_new: bool) {
for snap in snapshots {
if let Some(clip) = document.get_audio_clip_mut(&snap.clip_id) {
clip.duration = if use_new { snap.new_clip_duration } else { snap.old_clip_duration };
}
}
}
}
impl Action for ChangeBpmAction {
fn execute(&mut self, document: &mut Document) -> Result<(), String> {
document.bpm = self.new_bpm;
Self::apply_clips(document, &self.clip_snapshots, true);
Self::apply_midi_durations(document, &self.midi_snapshots, true);
Ok(())
}
fn rollback(&mut self, document: &mut Document) -> Result<(), String> {
document.bpm = self.old_bpm;
Self::apply_clips(document, &self.clip_snapshots, false);
Self::apply_midi_durations(document, &self.midi_snapshots, false);
Ok(())
}
fn description(&self) -> String {
"Change BPM".to_string()
}
fn execute_backend(
&mut self,
backend: &mut BackendContext,
document: &Document,
) -> Result<(), String> {
let controller = match backend.audio_controller.as_mut() {
Some(c) => c,
None => return Ok(()),
};
// Update tempo
controller.set_tempo(self.new_bpm as f32, self.time_sig);
// Update MIDI clip events and positions
for snap in &self.midi_snapshots {
let track_id = match backend.layer_to_track_map.get(&snap.layer_id) {
Some(&id) => id,
None => continue,
};
controller.update_midi_clip_events(track_id, snap.midi_clip_id, snap.new_events.clone());
}
// Move clip instances in the backend
for snap in &self.clip_snapshots {
let track_id = match backend.layer_to_track_map.get(&snap.layer_id) {
Some(&id) => id,
None => continue,
};
let backend_id = backend.clip_instance_to_backend_map.get(&snap.instance_id);
match backend_id {
Some(crate::action::BackendClipInstanceId::Audio(audio_id)) => {
controller.move_clip(track_id, *audio_id, snap.new_fields.timeline_start);
}
Some(crate::action::BackendClipInstanceId::Midi(midi_id)) => {
controller.move_clip(track_id, *midi_id, snap.new_fields.timeline_start);
}
None => {} // Vector/video clips — no backend move needed
}
}
// Sync beat/frame representations and rescale MIDI clip durations in the backend
let fps = document.framerate;
let midi_durations: Vec<(u32, f64)> = self.midi_snapshots.iter()
.map(|s| (s.midi_clip_id, s.new_clip_duration))
.collect();
controller.apply_bpm_change(self.new_bpm, fps, midi_durations);
Ok(())
}
fn rollback_backend(
&mut self,
backend: &mut BackendContext,
document: &Document,
) -> Result<(), String> {
let controller = match backend.audio_controller.as_mut() {
Some(c) => c,
None => return Ok(()),
};
controller.set_tempo(self.old_bpm as f32, self.time_sig);
for snap in &self.midi_snapshots {
let track_id = match backend.layer_to_track_map.get(&snap.layer_id) {
Some(&id) => id,
None => continue,
};
controller.update_midi_clip_events(track_id, snap.midi_clip_id, snap.old_events.clone());
}
for snap in &self.clip_snapshots {
let track_id = match backend.layer_to_track_map.get(&snap.layer_id) {
Some(&id) => id,
None => continue,
};
let backend_id = backend.clip_instance_to_backend_map.get(&snap.instance_id);
match backend_id {
Some(crate::action::BackendClipInstanceId::Audio(audio_id)) => {
controller.move_clip(track_id, *audio_id, snap.old_fields.timeline_start);
}
Some(crate::action::BackendClipInstanceId::Midi(midi_id)) => {
controller.move_clip(track_id, *midi_id, snap.old_fields.timeline_start);
}
None => {}
}
}
// Sync beat/frame representations and restore MIDI clip durations in the backend
let fps = document.framerate;
let midi_durations: Vec<(u32, f64)> = self.midi_snapshots.iter()
.map(|s| (s.midi_clip_id, s.old_clip_duration))
.collect();
controller.apply_bpm_change(self.old_bpm, fps, midi_durations);
Ok(())
}
fn all_midi_events_after_execute(&self) -> Vec<(u32, Vec<daw_backend::audio::midi::MidiEvent>)> {
self.midi_snapshots.iter()
.map(|s| (s.midi_clip_id, s.new_events.clone()))
.collect()
}
fn all_midi_events_after_rollback(&self) -> Vec<(u32, Vec<daw_backend::audio::midi::MidiEvent>)> {
self.midi_snapshots.iter()
.map(|s| (s.midi_clip_id, s.old_events.clone()))
.collect()
}
}

View File

@ -0,0 +1,227 @@
//! Change FPS action
//!
//! Atomically changes the document framerate and rescales all clip instance positions
//! so that frame positions are preserved (Frames mode behaviour).
use crate::action::{Action, BackendContext};
use crate::clip::ClipInstance;
use crate::document::Document;
use crate::layer::AnyLayer;
use uuid::Uuid;
/// Snapshot of all timing fields on a `ClipInstance`
#[derive(Clone)]
struct TimingFields {
timeline_start: f64,
timeline_start_beats: f64,
timeline_start_frames: f64,
trim_start: f64,
trim_start_beats: f64,
trim_start_frames: f64,
trim_end: Option<f64>,
trim_end_beats: Option<f64>,
trim_end_frames: Option<f64>,
timeline_duration: Option<f64>,
timeline_duration_beats: Option<f64>,
timeline_duration_frames: Option<f64>,
}
impl TimingFields {
fn from_instance(ci: &ClipInstance) -> Self {
Self {
timeline_start: ci.timeline_start,
timeline_start_beats: ci.timeline_start_beats,
timeline_start_frames: ci.timeline_start_frames,
trim_start: ci.trim_start,
trim_start_beats: ci.trim_start_beats,
trim_start_frames: ci.trim_start_frames,
trim_end: ci.trim_end,
trim_end_beats: ci.trim_end_beats,
trim_end_frames: ci.trim_end_frames,
timeline_duration: ci.timeline_duration,
timeline_duration_beats: ci.timeline_duration_beats,
timeline_duration_frames: ci.timeline_duration_frames,
}
}
fn apply_to(&self, ci: &mut ClipInstance) {
ci.timeline_start = self.timeline_start;
ci.timeline_start_beats = self.timeline_start_beats;
ci.timeline_start_frames = self.timeline_start_frames;
ci.trim_start = self.trim_start;
ci.trim_start_beats = self.trim_start_beats;
ci.trim_start_frames = self.trim_start_frames;
ci.trim_end = self.trim_end;
ci.trim_end_beats = self.trim_end_beats;
ci.trim_end_frames = self.trim_end_frames;
ci.timeline_duration = self.timeline_duration;
ci.timeline_duration_beats = self.timeline_duration_beats;
ci.timeline_duration_frames = self.timeline_duration_frames;
}
}
#[derive(Clone)]
struct ClipTimingSnapshot {
layer_id: Uuid,
instance_id: Uuid,
old_fields: TimingFields,
new_fields: TimingFields,
}
/// Action that atomically changes framerate and rescales all clip positions to preserve frames
pub struct ChangeFpsAction {
old_fps: f64,
new_fps: f64,
clip_snapshots: Vec<ClipTimingSnapshot>,
}
impl ChangeFpsAction {
/// Build the action, computing new positions for all clip instances.
pub fn new(old_fps: f64, new_fps: f64, document: &Document) -> Self {
let bpm = document.bpm;
let mut clip_snapshots: Vec<ClipTimingSnapshot> = Vec::new();
for layer in document.all_layers() {
let layer_id = layer.id();
let clip_instances: &[ClipInstance] = match layer {
AnyLayer::Vector(vl) => &vl.clip_instances,
AnyLayer::Audio(al) => &al.clip_instances,
AnyLayer::Video(vl) => &vl.clip_instances,
AnyLayer::Effect(el) => &el.clip_instances,
AnyLayer::Group(_) | AnyLayer::Raster(_) => continue,
};
for ci in clip_instances {
let old_fields = TimingFields::from_instance(ci);
// Compute new fields: frames are canonical, recompute seconds + beats
let mut new_ci = ci.clone();
new_ci.apply_frames(new_fps, bpm);
let new_fields = TimingFields::from_instance(&new_ci);
clip_snapshots.push(ClipTimingSnapshot {
layer_id,
instance_id: ci.id,
old_fields,
new_fields,
});
}
}
Self {
old_fps,
new_fps,
clip_snapshots,
}
}
fn apply_clips(document: &mut Document, snapshots: &[ClipTimingSnapshot], use_new: bool) {
for snap in snapshots {
let fields = if use_new { &snap.new_fields } else { &snap.old_fields };
let layer = match document.get_layer_mut(&snap.layer_id) {
Some(l) => l,
None => continue,
};
let clip_instances = match layer {
AnyLayer::Vector(vl) => &mut vl.clip_instances,
AnyLayer::Audio(al) => &mut al.clip_instances,
AnyLayer::Video(vl) => &mut vl.clip_instances,
AnyLayer::Effect(el) => &mut el.clip_instances,
AnyLayer::Group(_) | AnyLayer::Raster(_) => continue,
};
if let Some(ci) = clip_instances.iter_mut().find(|ci| ci.id == snap.instance_id) {
fields.apply_to(ci);
}
}
}
}
impl Action for ChangeFpsAction {
fn execute(&mut self, document: &mut Document) -> Result<(), String> {
document.framerate = self.new_fps;
Self::apply_clips(document, &self.clip_snapshots, true);
Ok(())
}
fn rollback(&mut self, document: &mut Document) -> Result<(), String> {
document.framerate = self.old_fps;
Self::apply_clips(document, &self.clip_snapshots, false);
Ok(())
}
fn description(&self) -> String {
"Change FPS".to_string()
}
fn execute_backend(
&mut self,
backend: &mut BackendContext,
_document: &Document,
) -> Result<(), String> {
// FPS change does not affect audio timing — only move clips that changed position
let controller = match backend.audio_controller.as_mut() {
Some(c) => c,
None => return Ok(()),
};
for snap in &self.clip_snapshots {
if (snap.new_fields.timeline_start - snap.old_fields.timeline_start).abs() < 1e-9 {
continue; // No movement, skip
}
let track_id = match backend.layer_to_track_map.get(&snap.layer_id) {
Some(&id) => id,
None => continue,
};
let backend_id = backend.clip_instance_to_backend_map.get(&snap.instance_id);
match backend_id {
Some(crate::action::BackendClipInstanceId::Audio(audio_id)) => {
controller.move_clip(track_id, *audio_id, snap.new_fields.timeline_start);
}
Some(crate::action::BackendClipInstanceId::Midi(midi_id)) => {
controller.move_clip(track_id, *midi_id, snap.new_fields.timeline_start);
}
None => {}
}
}
Ok(())
}
fn rollback_backend(
&mut self,
backend: &mut BackendContext,
_document: &Document,
) -> Result<(), String> {
let controller = match backend.audio_controller.as_mut() {
Some(c) => c,
None => return Ok(()),
};
for snap in &self.clip_snapshots {
if (snap.new_fields.timeline_start - snap.old_fields.timeline_start).abs() < 1e-9 {
continue;
}
let track_id = match backend.layer_to_track_map.get(&snap.layer_id) {
Some(&id) => id,
None => continue,
};
let backend_id = backend.clip_instance_to_backend_map.get(&snap.instance_id);
match backend_id {
Some(crate::action::BackendClipInstanceId::Audio(audio_id)) => {
controller.move_clip(track_id, *audio_id, snap.old_fields.timeline_start);
}
Some(crate::action::BackendClipInstanceId::Midi(midi_id)) => {
controller.move_clip(track_id, *midi_id, snap.old_fields.timeline_start);
}
None => {}
}
}
Ok(())
}
}

View File

@ -4,6 +4,8 @@
//! through the action system.
pub mod add_clip_instance;
pub mod change_bpm;
pub mod change_fps;
pub mod add_effect;
pub mod add_layer;
pub mod add_shape;
@ -70,3 +72,5 @@ pub use raster_stroke::RasterStrokeAction;
pub use raster_fill::RasterFillAction;
pub use move_layer::MoveLayerAction;
pub use set_fill_paint::SetFillPaintAction;
pub use change_bpm::ChangeBpmAction;
pub use change_fps::ChangeFpsAction;

View File

@ -119,6 +119,9 @@ impl Action for MoveClipInstancesAction {
// Store adjusted moves for rollback
self.layer_moves = adjusted_moves.clone();
let bpm = document.bpm;
let fps = document.framerate;
// Apply all adjusted moves
for (layer_id, moves) in &adjusted_moves {
let layer = document.get_layer_mut(layer_id)
@ -139,6 +142,7 @@ impl Action for MoveClipInstancesAction {
if let Some(clip_instance) = clip_instances.iter_mut().find(|ci| ci.id == *clip_id)
{
clip_instance.timeline_start = *new;
clip_instance.sync_from_seconds(bpm, fps);
}
}
}
@ -147,6 +151,8 @@ impl Action for MoveClipInstancesAction {
}
fn rollback(&mut self, document: &mut Document) -> Result<(), String> {
let bpm = document.bpm;
let fps = document.framerate;
for (layer_id, moves) in &self.layer_moves {
let layer = document.get_layer_mut(layer_id)
.ok_or_else(|| format!("Layer {} not found", layer_id))?;
@ -166,6 +172,7 @@ impl Action for MoveClipInstancesAction {
if let Some(clip_instance) = clip_instances.iter_mut().find(|ci| ci.id == *clip_id)
{
clip_instance.timeline_start = *old;
clip_instance.sync_from_seconds(bpm, fps);
}
}
}

View File

@ -20,6 +20,8 @@ pub enum LayerProperty {
Visible(bool),
/// Video layer only: toggle live webcam preview
CameraEnabled(bool),
/// Rename the layer; sets has_custom_name = true
Name(String),
}
/// Stored old value for rollback
@ -33,6 +35,7 @@ enum OldValue {
Opacity(f64),
Visible(bool),
CameraEnabled(bool),
Name(String),
}
/// Action that sets a property on one or more layers
@ -101,6 +104,7 @@ impl Action for SetLayerPropertiesAction {
};
OldValue::CameraEnabled(val)
}
LayerProperty::Name(_) => OldValue::Name(layer.name().to_string()),
});
}
@ -118,6 +122,10 @@ impl Action for SetLayerPropertiesAction {
v.camera_enabled = *c;
}
}
LayerProperty::Name(n) => {
layer.set_name(n.clone());
layer.set_has_custom_name(true);
}
}
}
}
@ -143,6 +151,10 @@ impl Action for SetLayerPropertiesAction {
v.camera_enabled = *c;
}
}
OldValue::Name(n) => {
layer.set_name(n.clone());
layer.set_has_custom_name(false);
}
}
}
}
@ -206,6 +218,7 @@ impl Action for SetLayerPropertiesAction {
LayerProperty::InputGain(_) => "input gain",
LayerProperty::Muted(_) => "mute",
LayerProperty::Soloed(_) => "solo",
LayerProperty::Name(_) => "name",
LayerProperty::Locked(_) => "lock",
LayerProperty::Opacity(_) => "opacity",
LayerProperty::Visible(_) => "visibility",

View File

@ -179,6 +179,7 @@ impl Action for SplitClipInstanceAction {
}
self.new_instance_id = Some(right_instance.id);
right_instance.sync_from_seconds(document.bpm, document.framerate);
// Now modify the original (left) instance and add the new (right) instance
let layer_mut = document
@ -238,6 +239,21 @@ impl Action for SplitClipInstanceAction {
}
}
// Sync derived fields on the left (original) instance
let (bpm, fps) = (document.bpm, document.framerate);
if let Some(layer) = document.get_layer_mut(&self.layer_id) {
let cis: &mut Vec<crate::clip::ClipInstance> = match layer {
AnyLayer::Vector(vl) => &mut vl.clip_instances,
AnyLayer::Audio(al) => &mut al.clip_instances,
AnyLayer::Video(vl) => &mut vl.clip_instances,
AnyLayer::Effect(el) => &mut el.clip_instances,
_ => return { self.executed = true; Ok(()) },
};
if let Some(inst) = cis.iter_mut().find(|ci| ci.id == self.instance_id) {
inst.sync_from_seconds(bpm, fps);
}
}
self.executed = true;
Ok(())
}

View File

@ -260,6 +260,9 @@ impl Action for TrimClipInstancesAction {
// Store clamped trims for rollback
self.layer_trims = clamped_trims.clone();
let bpm = document.bpm;
let fps = document.framerate;
// Apply all clamped trims
for (layer_id, trims) in &clamped_trims {
let layer = match document.get_layer_mut(layer_id) {
@ -294,6 +297,7 @@ impl Action for TrimClipInstancesAction {
clip_instance.trim_end = new.trim_value;
}
}
clip_instance.sync_from_seconds(bpm, fps);
}
}
}
@ -301,6 +305,8 @@ impl Action for TrimClipInstancesAction {
}
fn rollback(&mut self, document: &mut Document) -> Result<(), String> {
let bpm = document.bpm;
let fps = document.framerate;
for (layer_id, trims) in &self.layer_trims {
let layer = match document.get_layer_mut(layer_id) {
Some(l) => l,
@ -334,6 +340,7 @@ impl Action for TrimClipInstancesAction {
clip_instance.trim_end = old.trim_value;
}
}
clip_instance.sync_from_seconds(bpm, fps);
}
}
}

View File

@ -610,11 +610,23 @@ pub struct ClipInstance {
/// This is the external positioning - where the instance appears on the timeline
/// Default: 0.0 (start at beginning of layer)
pub timeline_start: f64,
/// timeline_start in beats (quarter-note beats); derived from timeline_start
#[serde(default)]
pub timeline_start_beats: f64,
/// timeline_start in frames; derived from timeline_start
#[serde(default)]
pub timeline_start_frames: f64,
/// How long this instance appears on the timeline (in seconds)
/// If timeline_duration > (trim_end - trim_start), the trimmed content will loop
/// Default: None (use trimmed clip duration, no looping)
pub timeline_duration: Option<f64>,
/// timeline_duration in beats; derived from timeline_duration
#[serde(default)]
pub timeline_duration_beats: Option<f64>,
/// timeline_duration in frames; derived from timeline_duration
#[serde(default)]
pub timeline_duration_frames: Option<f64>,
/// Trim start: offset into the clip's internal content (in seconds)
/// Allows trimming the beginning of the clip
@ -623,11 +635,23 @@ pub struct ClipInstance {
/// - For vector: offset into the animation timeline
/// Default: 0.0 (start at beginning of clip)
pub trim_start: f64,
/// trim_start in beats; derived from trim_start
#[serde(default)]
pub trim_start_beats: f64,
/// trim_start in frames; derived from trim_start
#[serde(default)]
pub trim_start_frames: f64,
/// Trim end: offset into the clip's internal content (in seconds)
/// Allows trimming the end of the clip
/// Default: None (use full clip duration)
pub trim_end: Option<f64>,
/// trim_end in beats; derived from trim_end
#[serde(default)]
pub trim_end_beats: Option<f64>,
/// trim_end in frames; derived from trim_end
#[serde(default)]
pub trim_end_frames: Option<f64>,
/// Playback speed multiplier
/// 1.0 = normal speed, 0.5 = half speed, 2.0 = double speed
@ -696,9 +720,17 @@ impl ClipInstance {
opacity: 1.0,
name: None,
timeline_start: 0.0,
timeline_start_beats: 0.0,
timeline_start_frames: 0.0,
timeline_duration: None,
timeline_duration_beats: None,
timeline_duration_frames: None,
trim_start: 0.0,
trim_start_beats: 0.0,
trim_start_frames: 0.0,
trim_end: None,
trim_end_beats: None,
trim_end_frames: None,
playback_speed: 1.0,
gain: 1.0,
loop_before: None,
@ -714,15 +746,71 @@ impl ClipInstance {
opacity: 1.0,
name: None,
timeline_start: 0.0,
timeline_start_beats: 0.0,
timeline_start_frames: 0.0,
timeline_duration: None,
timeline_duration_beats: None,
timeline_duration_frames: None,
trim_start: 0.0,
trim_start_beats: 0.0,
trim_start_frames: 0.0,
trim_end: None,
trim_end_beats: None,
trim_end_frames: None,
playback_speed: 1.0,
gain: 1.0,
loop_before: None,
}
}
/// Sync beats and frames from the seconds fields (call after any seconds-based write).
pub fn sync_from_seconds(&mut self, bpm: f64, fps: f64) {
self.timeline_start_beats = self.timeline_start * bpm / 60.0;
self.timeline_start_frames = self.timeline_start * fps;
self.trim_start_beats = self.trim_start * bpm / 60.0;
self.trim_start_frames = self.trim_start * fps;
self.trim_end_beats = self.trim_end.map(|v| v * bpm / 60.0);
self.trim_end_frames = self.trim_end.map(|v| v * fps);
self.timeline_duration_beats = self.timeline_duration.map(|v| v * bpm / 60.0);
self.timeline_duration_frames = self.timeline_duration.map(|v| v * fps);
}
/// Recompute seconds and frames from beats (call when BPM changes in Measures mode).
pub fn apply_beats(&mut self, bpm: f64, fps: f64) {
self.timeline_start = self.timeline_start_beats * 60.0 / bpm;
self.timeline_start_frames = self.timeline_start * fps;
self.trim_start = self.trim_start_beats * 60.0 / bpm;
self.trim_start_frames = self.trim_start * fps;
if let Some(b) = self.trim_end_beats {
let s = b * 60.0 / bpm;
self.trim_end = Some(s);
self.trim_end_frames = Some(s * fps);
}
if let Some(b) = self.timeline_duration_beats {
let s = b * 60.0 / bpm;
self.timeline_duration = Some(s);
self.timeline_duration_frames = Some(s * fps);
}
}
/// Recompute seconds and beats from frames (call when FPS changes in Frames mode).
pub fn apply_frames(&mut self, fps: f64, bpm: f64) {
self.timeline_start = self.timeline_start_frames / fps;
self.timeline_start_beats = self.timeline_start * bpm / 60.0;
self.trim_start = self.trim_start_frames / fps;
self.trim_start_beats = self.trim_start * bpm / 60.0;
if let Some(f) = self.trim_end_frames {
let s = f / fps;
self.trim_end = Some(s);
self.trim_end_beats = Some(s * bpm / 60.0);
}
if let Some(f) = self.timeline_duration_frames {
let s = f / fps;
self.timeline_duration = Some(s);
self.timeline_duration_beats = Some(s * bpm / 60.0);
}
}
/// Set the transform
pub fn with_transform(mut self, transform: Transform) -> Self {
self.transform = transform;

View File

@ -619,6 +619,56 @@ impl Document {
layers
}
/// Migrate old documents: compute beats/frames from seconds for any ClipInstance whose
/// derived fields are still zero (i.e., documents saved before triple-representation).
/// Call once after loading a document.
pub fn sync_all_clip_positions(&mut self) {
let bpm = self.bpm;
let fps = self.framerate;
fn sync_list(list: &mut [crate::layer::AnyLayer], bpm: f64, fps: f64) {
for layer in list.iter_mut() {
match layer {
crate::layer::AnyLayer::Vector(vl) => {
for ci in &mut vl.clip_instances {
if ci.timeline_start_beats == 0.0 { ci.sync_from_seconds(bpm, fps); }
}
}
crate::layer::AnyLayer::Audio(al) => {
for ci in &mut al.clip_instances {
if ci.timeline_start_beats == 0.0 { ci.sync_from_seconds(bpm, fps); }
}
}
crate::layer::AnyLayer::Video(vl) => {
for ci in &mut vl.clip_instances {
if ci.timeline_start_beats == 0.0 { ci.sync_from_seconds(bpm, fps); }
}
}
crate::layer::AnyLayer::Effect(el) => {
for ci in &mut el.clip_instances {
if ci.timeline_start_beats == 0.0 { ci.sync_from_seconds(bpm, fps); }
}
}
crate::layer::AnyLayer::Group(g) => {
sync_list(&mut g.children, bpm, fps);
}
crate::layer::AnyLayer::Raster(_) => {}
}
}
}
sync_list(&mut self.root.children, bpm, fps);
for clip in self.vector_clips.values_mut() {
for node in &mut clip.layers.roots {
if let crate::layer::AnyLayer::Vector(vl) = &mut node.data {
for ci in &mut vl.clip_instances {
if ci.timeline_start_beats == 0.0 { ci.sync_from_seconds(bpm, fps); }
}
}
}
}
}
// === CLIP LIBRARY METHODS ===
/// Add a vector clip to the library

View File

@ -1449,7 +1449,7 @@ fn render_vector_graph_cpu(
}
// Image fill — decode to Pixmap and use as a Pattern shader
if let Some(image_asset_id) = face.image_fill {
if let Some(image_asset_id) = fill.image_fill {
if let Some(asset) = document.get_image_asset(&image_asset_id) {
if let Some(img_pixmap) = image_cache.get_or_decode_cpu(asset) {
let pattern = tiny_skia::Pattern::new(

View File

@ -139,6 +139,17 @@ pub fn render_curve_lane(
// ── Background ──────────────────────────────────────────────────────────
painter.rect_filled(rect, 0.0, Color32::from_rgba_premultiplied(20, 20, 25, 230));
// Inset shadow: dark line at top, light line at bottom
painter.line_segment(
[rect.left_top(), rect.right_top()],
Stroke::new(1.0, Color32::from_black_alpha(60)),
);
let bottom_y = rect.max.y - 1.0;
painter.line_segment(
[Pos2::new(rect.min.x, bottom_y), Pos2::new(rect.max.x, bottom_y)],
Stroke::new(1.0, Color32::from_white_alpha(18)),
);
// Zero-line (value = 0, or mid-line if range doesn't include 0)
let zero_norm = normalize(0.0).clamp(0.0, 1.0);
let zero_y = value_to_y(zero_norm, rect);

View File

@ -3114,7 +3114,12 @@ impl EditorApp {
};
// Rebuild MIDI cache after undo (backend_context dropped, borrows released)
if undo_succeeded {
if let Some((clip_id, events)) = self.action_executor.last_redo_midi_events()
let multi = self.action_executor.last_redo_all_midi_events();
if !multi.is_empty() {
for (clip_id, events) in multi {
self.midi_event_cache.insert(clip_id, events);
}
} else if let Some((clip_id, events)) = self.action_executor.last_redo_midi_events()
.map(|(id, ev)| (id, ev.to_vec()))
{
self.midi_event_cache.insert(clip_id, events);
@ -3158,7 +3163,12 @@ impl EditorApp {
};
// Rebuild MIDI cache after redo (backend_context dropped, borrows released)
if redo_succeeded {
if let Some((clip_id, events)) = self.action_executor.last_undo_midi_events()
let multi = self.action_executor.last_undo_all_midi_events();
if !multi.is_empty() {
for (clip_id, events) in multi {
self.midi_event_cache.insert(clip_id, events);
}
} else if let Some((clip_id, events)) = self.action_executor.last_undo_midi_events()
.map(|(id, ev)| (id, ev.to_vec()))
{
self.midi_event_cache.insert(clip_id, events);
@ -3824,6 +3834,9 @@ impl EditorApp {
// Rebuild MIDI event cache for all MIDI clips (needed for timeline/piano roll rendering)
let step8_start = std::time::Instant::now();
// Migrate old documents: compute beats/frames derived fields
self.action_executor.document_mut().sync_all_clip_positions();
self.midi_event_cache.clear();
let midi_clip_ids: Vec<u32> = self.action_executor.document()
.audio_clips.values()
@ -3846,6 +3859,19 @@ impl EditorApp {
}
eprintln!("📊 [APPLY] Step 8: Rebuilt MIDI event cache for {} clips in {:.2}ms", midi_fetched, step8_start.elapsed().as_secs_f64() * 1000.0);
// Sync beats/frames derived fields on MIDI events (migration for old documents)
{
let bpm = self.action_executor.document().bpm;
let fps = self.action_executor.document().framerate;
for events in self.midi_event_cache.values_mut() {
for ev in events.iter_mut() {
if ev.timestamp_beats == 0.0 && ev.timestamp.abs() > 1e-9 {
ev.sync_from_seconds(bpm, fps);
}
}
}
}
// Reset playback state
self.playback_time = 0.0;
self.is_playing = false;
@ -3976,10 +4002,16 @@ impl EditorApp {
/// Rebuild a MIDI event cache entry from backend note format.
/// Called after undo/redo to keep the cache consistent with the backend.
fn rebuild_midi_cache_entry(&mut self, clip_id: u32, notes: &[(f64, u8, u8, f64)]) {
let bpm = self.action_executor.document().bpm;
let fps = self.action_executor.document().framerate;
let mut events: Vec<daw_backend::audio::midi::MidiEvent> = Vec::with_capacity(notes.len() * 2);
for &(start_time, note, velocity, duration) in notes {
events.push(daw_backend::audio::midi::MidiEvent::note_on(start_time, 0, note, velocity));
events.push(daw_backend::audio::midi::MidiEvent::note_off(start_time + duration, 0, note, 0));
let mut on = daw_backend::audio::midi::MidiEvent::note_on(start_time, 0, note, velocity);
on.sync_from_seconds(bpm, fps);
events.push(on);
let mut off = daw_backend::audio::midi::MidiEvent::note_off(start_time + duration, 0, note, 0);
off.sync_from_seconds(bpm, fps);
events.push(off);
}
events.sort_by(|a, b| a.timestamp.partial_cmp(&b.timestamp).unwrap());
self.midi_event_cache.insert(clip_id, events);
@ -5178,10 +5210,16 @@ impl eframe::App for EditorApp {
// Update midi_event_cache with notes captured so far
// (inlined to avoid conflicting &mut self borrow)
{
let bpm = self.action_executor.document().bpm;
let fps = self.action_executor.document().framerate;
let mut events: Vec<daw_backend::audio::midi::MidiEvent> = Vec::with_capacity(notes.len() * 2);
for &(start_time, note, velocity, dur) in &notes {
events.push(daw_backend::audio::midi::MidiEvent::note_on(start_time, 0, note, velocity));
events.push(daw_backend::audio::midi::MidiEvent::note_off(start_time + dur, 0, note, 0));
let mut on = daw_backend::audio::midi::MidiEvent::note_on(start_time, 0, note, velocity);
on.sync_from_seconds(bpm, fps);
events.push(on);
let mut off = daw_backend::audio::midi::MidiEvent::note_off(start_time + dur, 0, note, 0);
off.sync_from_seconds(bpm, fps);
events.push(off);
}
events.sort_by(|a, b| a.timestamp.partial_cmp(&b.timestamp).unwrap());
self.midi_event_cache.insert(clip_id, events);
@ -5198,7 +5236,13 @@ impl eframe::App for EditorApp {
match controller.query_midi_clip(track_id, clip_id) {
Ok(midi_clip_data) => {
drop(controller);
self.midi_event_cache.insert(clip_id, midi_clip_data.events.clone());
let bpm = self.action_executor.document().bpm;
let fps = self.action_executor.document().framerate;
let mut final_events = midi_clip_data.events.clone();
for ev in &mut final_events {
ev.sync_from_seconds(bpm, fps);
}
self.midi_event_cache.insert(clip_id, final_events);
// Update document clip with final duration and name
let doc_clip_id = self.action_executor.document()
@ -5267,7 +5311,7 @@ impl eframe::App for EditorApp {
self.waveform_gpu_dirty.insert(pool_index);
ctx.request_repaint();
}
AudioEvent::GraphPresetLoaded(_track_id) => {
AudioEvent::GraphPresetLoaded(track_id, preset_name) => {
// Preset was loaded on the audio thread — bump generation
// so the node graph pane reloads from backend
self.project_generation += 1;
@ -5278,6 +5322,17 @@ impl eframe::App for EditorApp {
std::sync::atomic::Ordering::Relaxed,
|v| if v > 0 { Some(v - 1) } else { Some(0) },
);
// Auto-rename the MIDI layer to match the preset name, unless
// the user has already given it a custom name
if let Some(&layer_uuid) = self.track_to_layer_map.get(&track_id) {
let doc = self.action_executor.document_mut();
if let Some(layer) = doc.get_layer_mut(&layer_uuid) {
use lightningbeam_core::layer::LayerTrait;
if !layer.has_custom_name() {
layer.set_name(preset_name);
}
}
}
ctx.request_repaint();
}
AudioEvent::InputLevel(peak) => {

View File

@ -42,6 +42,8 @@ pub struct InfopanelPane {
selected_shape_gradient_stop: Option<usize>,
/// Selected stop index for gradient editor in tool section (gradient tool).
selected_tool_gradient_stop: Option<usize>,
/// FPS value captured when a drag/focus-in starts (for single-undo-action on commit)
fps_drag_start: Option<f64>,
}
impl InfopanelPane {
@ -58,6 +60,7 @@ impl InfopanelPane {
brush_preview_textures: Vec::new(),
selected_shape_gradient_stop: None,
selected_tool_gradient_stop: None,
fps_drag_start: None,
}
}
}
@ -906,21 +909,20 @@ impl InfopanelPane {
}
/// Render document settings section (shown when nothing is focused)
fn render_document_section(&self, ui: &mut Ui, path: &NodePath, shared: &mut SharedPaneState) {
fn render_document_section(&mut self, ui: &mut Ui, path: &NodePath, shared: &mut SharedPaneState) {
egui::CollapsingHeader::new("Document")
.id_salt(("document", path))
.default_open(true)
.show(ui, |ui| {
ui.add_space(4.0);
let document = shared.action_executor.document();
// Get current values for editing
let mut width = document.width;
let mut height = document.height;
let mut duration = document.duration;
let mut framerate = document.framerate;
let layer_count = document.root.children.len();
// Extract all needed values up front, then drop the borrow before closures
// that need mutable access to shared or self.
let (mut width, mut height, mut duration, mut framerate, layer_count, background_color) = {
let document = shared.action_executor.document();
(document.width, document.height, document.duration, document.framerate,
document.root.children.len(), document.background_color)
};
// Canvas width
ui.horizontal(|ui| {
@ -966,24 +968,54 @@ impl InfopanelPane {
// Framerate
ui.horizontal(|ui| {
ui.label("Framerate:");
if ui
.add(
DragValue::new(&mut framerate)
.speed(1.0)
.range(1.0..=120.0)
.suffix(" fps"),
)
.changed()
{
let action = SetDocumentPropertiesAction::set_framerate(framerate);
shared.pending_actions.push(Box::new(action));
let fps_response = ui.add(
DragValue::new(&mut framerate)
.speed(1.0)
.range(1.0..=120.0)
.suffix(" fps"),
);
if fps_response.gained_focus() || fps_response.drag_started() {
if self.fps_drag_start.is_none() {
self.fps_drag_start = Some(framerate);
}
}
if fps_response.changed() {
// Live preview: update document directly
shared.action_executor.document_mut().framerate = framerate;
}
if fps_response.drag_stopped() || fps_response.lost_focus() {
if let Some(start_fps) = self.fps_drag_start.take() {
let new_fps = shared.action_executor.document().framerate;
let timeline_mode = shared.action_executor.document().timeline_mode;
if (start_fps - new_fps).abs() > 1e-9
&& timeline_mode == lightningbeam_core::document::TimelineMode::Frames
{
use lightningbeam_core::actions::ChangeFpsAction;
// Revert live-preview so the action owns it
shared.action_executor.document_mut().framerate = start_fps;
let action = ChangeFpsAction::new(
start_fps,
new_fps,
shared.action_executor.document(),
);
shared.pending_actions.push(Box::new(action));
} else if (start_fps - new_fps).abs() > 1e-9 {
// Not in Frames mode — use simple property action (no stretching)
shared.action_executor.document_mut().framerate = start_fps;
let action = SetDocumentPropertiesAction::set_framerate(new_fps);
shared.pending_actions.push(Box::new(action));
}
}
}
});
// Background color (with alpha)
ui.horizontal(|ui| {
ui.label("Background:");
let bg = document.background_color;
let bg = background_color;
let mut color = [bg.r, bg.g, bg.b, bg.a];
if ui.color_edit_button_srgba_unmultiplied(&mut color).changed() {
let action = SetDocumentPropertiesAction::set_background_color(

View File

@ -777,7 +777,7 @@ impl NodeTemplateTrait for NodeTemplate {
NodeTemplate::Pan => {
graph.add_input_param(node_id, "Audio In".into(), DataType::Audio, ValueType::float(0.0), InputParamKind::ConnectionOnly, true);
graph.add_input_param(node_id, "Pan".into(), DataType::CV,
ValueType::float_param(0.0, -1.0, 1.0, "", 0, None), InputParamKind::ConstantOnly, true);
ValueType::float_param(0.0, -1.0, 1.0, "", 0, None), InputParamKind::ConnectionOrConstant, true);
graph.add_output_param(node_id, "Audio Out".into(), DataType::Audio);
}
NodeTemplate::RingModulator => {

View File

@ -34,6 +34,48 @@ enum PitchBendZone {
End, // Last 30%: ramp from 0 → bend
}
#[derive(Clone, Copy, Debug, PartialEq, Default)]
enum SnapValue {
#[default] None,
Whole, Half, Quarter, Eighth, Sixteenth, ThirtySecond,
QuarterTriplet, EighthTriplet, SixteenthTriplet, ThirtySecondTriplet,
EighthSwingLight, SixteenthSwingLight,
EighthSwingHeavy, SixteenthSwingHeavy,
}
impl SnapValue {
fn label(self) -> &'static str {
match self {
Self::None => "None",
Self::Whole => "1/1",
Self::Half => "1/2",
Self::Quarter => "1/4",
Self::Eighth => "1/8",
Self::Sixteenth => "1/16",
Self::ThirtySecond => "1/32",
Self::QuarterTriplet => "1/4T",
Self::EighthTriplet => "1/8T",
Self::SixteenthTriplet => "1/16T",
Self::ThirtySecondTriplet => "1/32T",
Self::EighthSwingLight => "1/8 swing light",
Self::SixteenthSwingLight => "1/16 swing light",
Self::EighthSwingHeavy => "1/8 swing heavy",
Self::SixteenthSwingHeavy => "1/16 swing heavy",
}
}
fn all() -> &'static [SnapValue] {
&[
Self::None, Self::Whole, Self::Half, Self::Quarter,
Self::Eighth, Self::Sixteenth, Self::ThirtySecond,
Self::QuarterTriplet, Self::EighthTriplet,
Self::SixteenthTriplet, Self::ThirtySecondTriplet,
Self::EighthSwingLight, Self::SixteenthSwingLight,
Self::EighthSwingHeavy, Self::SixteenthSwingHeavy,
]
}
}
#[derive(Debug, Clone, Copy, PartialEq)]
enum DragMode {
MoveNotes { start_time_offset: f64, start_note_offset: i32 },
@ -122,6 +164,11 @@ pub struct PianoRollPane {
pitch_bend_range: f32,
// Layer ID for which pitch_bend_range was last queried
pitch_bend_range_layer: Option<uuid::Uuid>,
// Snap / quantize
snap_value: SnapValue,
last_snap_selection: HashSet<usize>,
snap_user_changed: bool, // set in render_header, consumed before handle_input
}
impl PianoRollPane {
@ -155,6 +202,9 @@ impl PianoRollPane {
header_mod: 0.0,
pitch_bend_range: 2.0,
pitch_bend_range_layer: None,
snap_value: SnapValue::None,
last_snap_selection: HashSet::new(),
snap_user_changed: false,
}
}
@ -263,6 +313,61 @@ impl PianoRollPane {
// ── MIDI mode rendering ──────────────────────────────────────────────
} // end impl PianoRollPane (snap helpers follow as free functions)
fn snap_to_value(t: f64, snap: SnapValue, bpm: f64) -> f64 {
let beat = 60.0 / bpm;
match snap {
SnapValue::None => t,
SnapValue::Whole => round_to_grid(t, beat * 4.0),
SnapValue::Half => round_to_grid(t, beat * 2.0),
SnapValue::Quarter => round_to_grid(t, beat),
SnapValue::Eighth => round_to_grid(t, beat * 0.5),
SnapValue::Sixteenth => round_to_grid(t, beat * 0.25),
SnapValue::ThirtySecond => round_to_grid(t, beat * 0.125),
SnapValue::QuarterTriplet => round_to_grid(t, beat * 2.0 / 3.0),
SnapValue::EighthTriplet => round_to_grid(t, beat / 3.0),
SnapValue::SixteenthTriplet => round_to_grid(t, beat / 6.0),
SnapValue::ThirtySecondTriplet => round_to_grid(t, beat / 12.0),
SnapValue::EighthSwingLight => snap_swing(t, beat, 2.0 / 3.0),
SnapValue::SixteenthSwingLight => snap_swing(t, beat * 0.5, 2.0 / 3.0),
SnapValue::EighthSwingHeavy => snap_swing(t, beat, 3.0 / 4.0),
SnapValue::SixteenthSwingHeavy => snap_swing(t, beat * 0.5, 3.0 / 4.0),
}
}
fn round_to_grid(t: f64, interval: f64) -> f64 {
(t / interval).round() * interval
}
fn snap_swing(t: f64, cell: f64, ratio: f64) -> f64 {
let cell_n = (t / cell).floor() as i64;
let cell_start = cell_n as f64 * cell;
let cands = [cell_start, cell_start + ratio * cell, cell_start + cell];
*cands.iter().min_by(|&&a, &&b| (a - t).abs().partial_cmp(&(b - t).abs()).unwrap()).unwrap()
}
fn detect_snap(notes: &[&ResolvedNote], bpm: f64) -> SnapValue {
const EPS: f64 = 0.002;
if notes.is_empty() { return SnapValue::None; }
let order = [
SnapValue::Whole, SnapValue::Half, SnapValue::Quarter,
SnapValue::EighthSwingHeavy, SnapValue::EighthSwingLight, SnapValue::Eighth,
SnapValue::SixteenthSwingHeavy, SnapValue::SixteenthSwingLight,
SnapValue::QuarterTriplet, SnapValue::Sixteenth,
SnapValue::EighthTriplet, SnapValue::ThirtySecond,
SnapValue::SixteenthTriplet, SnapValue::ThirtySecondTriplet,
];
for &sv in &order {
if notes.iter().all(|n| (snap_to_value(n.start_time, sv, bpm) - n.start_time).abs() < EPS) {
return sv;
}
}
SnapValue::None
}
impl PianoRollPane {
fn render_midi_mode(
&mut self,
ui: &mut egui::Ui,
@ -345,6 +450,18 @@ impl PianoRollPane {
}
}
// Apply quantize if the user changed the snap dropdown (must happen before handle_input
// which may clear the selection when the ComboBox click propagates to the grid).
if self.snap_user_changed {
self.snap_user_changed = false;
if self.snap_value != SnapValue::None && !self.selected_note_indices.is_empty() {
if let Some(clip_id) = self.selected_clip_id {
let bpm = shared.action_executor.document().bpm;
self.quantize_selected_notes(clip_id, bpm, shared);
}
}
}
// Handle input before rendering
self.handle_input(ui, grid_rect, keyboard_rect, shared, &clip_data);
@ -653,7 +770,7 @@ impl PianoRollPane {
};
let timestamp = note_start + t * note_duration;
let (lsb, msb) = encode_bend(normalized);
events.push(MidiEvent { timestamp, status: 0xE0 | channel, data1: lsb, data2: msb });
events.push(MidiEvent::new(timestamp, 0xE0 | channel, lsb, msb));
}
events
}
@ -1095,7 +1212,9 @@ impl PianoRollPane {
// Immediate press detection (fires on the actual press frame, before egui's drag threshold).
// This ensures note preview and hit testing use the real press position.
let pointer_just_pressed = ui.input(|i| i.pointer.button_pressed(egui::PointerButton::Primary));
// Skip when any popup (e.g. ComboBox dropdown) is open so clicks there don't pass through.
let pointer_just_pressed = ui.input(|i| i.pointer.button_pressed(egui::PointerButton::Primary))
&& !ui.ctx().is_popup_open();
if pointer_just_pressed {
if let Some(pos) = ui.input(|i| i.pointer.interact_pos()) {
if full_rect.contains(pos) {
@ -1255,7 +1374,11 @@ impl PianoRollPane {
if let Some(selected_clip) = clip_data.iter().find(|c| Some(c.0) == self.selected_clip_id) {
let clip_start = selected_clip.1;
let trim_start = selected_clip.2;
let clip_local_time = (time - clip_start).max(0.0) + trim_start;
let bpm = shared.action_executor.document().bpm;
let clip_local_time = snap_to_value(
(time - clip_start).max(0.0) + trim_start,
self.snap_value, bpm,
);
self.creating_note = Some(TempNote {
note,
start_time: clip_local_time,
@ -1266,11 +1389,18 @@ impl PianoRollPane {
self.preview_note_on(note, DEFAULT_VELOCITY, None, now, shared);
}
} else {
// Start selection rectangle
// Start selection rectangle and seek playhead to clicked time
self.selected_note_indices.clear();
self.update_focus(shared);
self.selection_rect = Some((pos, pos));
self.drag_mode = Some(DragMode::SelectRect);
let bpm = shared.action_executor.document().bpm;
let seek_time = snap_to_value(time.max(0.0), self.snap_value, bpm);
*shared.playback_time = seek_time;
if let Some(ctrl) = shared.audio_controller.as_ref() {
if let Ok(mut c) = ctrl.lock() { c.seek(seek_time); }
}
}
}
@ -1438,15 +1568,20 @@ impl PianoRollPane {
let combined = (existing_norm[i] + zone_norm).clamp(-1.0, 1.0);
let (lsb, msb) = encode_bend(combined);
let ts = note_start + i as f64 / num_steps as f64 * note_duration;
new_events.push(daw_backend::audio::midi::MidiEvent { timestamp: ts, status: 0xE0 | target_channel, data1: lsb, data2: msb });
new_events.push(daw_backend::audio::midi::MidiEvent::new(ts, 0xE0 | target_channel, lsb, msb));
}
// For End zone: reset just after note ends so it doesn't bleed into next note
if zone == PitchBendZone::End {
let (lsb, msb) = encode_bend(0.0);
new_events.push(daw_backend::audio::midi::MidiEvent { timestamp: note_start + note_duration + 0.005, status: 0xE0 | target_channel, data1: lsb, data2: msb });
new_events.push(daw_backend::audio::midi::MidiEvent::new(note_start + note_duration + 0.005, 0xE0 | target_channel, lsb, msb));
}
new_events.sort_by(|a, b| a.timestamp.partial_cmp(&b.timestamp).unwrap_or(std::cmp::Ordering::Equal));
{
let doc = shared.action_executor.document();
let bpm = doc.bpm; let fps = doc.framerate;
for ev in &mut new_events { ev.sync_from_seconds(bpm, fps); }
}
self.push_events_action("Set pitch bend", clip_id, old_events, new_events.clone(), shared);
shared.midi_event_cache.insert(clip_id, new_events);
}
@ -1652,10 +1787,12 @@ impl PianoRollPane {
let resolved = Self::resolve_notes(events);
let old_notes = Self::notes_to_backend_format(&resolved);
let bpm = shared.action_executor.document().bpm;
let mut new_resolved = resolved.clone();
for &idx in &self.selected_note_indices {
if idx < new_resolved.len() {
new_resolved[idx].start_time = (new_resolved[idx].start_time + dt).max(0.0);
let raw_time = (new_resolved[idx].start_time + dt).max(0.0);
new_resolved[idx].start_time = snap_to_value(raw_time, self.snap_value, bpm);
new_resolved[idx].note = (new_resolved[idx].note as i32 + dn).clamp(0, 127) as u8;
}
}
@ -1831,6 +1968,23 @@ impl PianoRollPane {
shared.pending_actions.push(Box::new(action));
}
fn quantize_selected_notes(&mut self, clip_id: u32, bpm: f64, shared: &mut SharedPaneState) {
let events = match shared.midi_event_cache.get(&clip_id) { Some(e) => e, None => return };
let resolved = Self::resolve_notes(events);
let old_notes = Self::notes_to_backend_format(&resolved);
let mut new_resolved = resolved.clone();
for &idx in &self.selected_note_indices {
if idx < new_resolved.len() {
new_resolved[idx].start_time =
snap_to_value(new_resolved[idx].start_time, self.snap_value, bpm).max(0.0);
}
}
let new_notes = Self::notes_to_backend_format(&new_resolved);
Self::update_cache_from_resolved(clip_id, &new_resolved, shared);
self.push_update_action("Quantize notes", clip_id, old_notes, new_notes, shared, &[]);
self.cached_clip_id = None;
}
fn push_events_action(
&self,
description: &str,
@ -2210,15 +2364,17 @@ impl PaneRenderer for PianoRollPane {
!(is_cc1 && at_start)
});
if new_cc1 > 0 {
new_events.push(daw_backend::audio::midi::MidiEvent {
timestamp: sn.start_time,
status: 0xB0 | sn.channel,
data1: 1,
data2: new_cc1,
});
new_events.push(daw_backend::audio::midi::MidiEvent::new(
sn.start_time, 0xB0 | sn.channel, 1, new_cc1,
));
}
}
new_events.sort_by(|a, b| a.timestamp.partial_cmp(&b.timestamp).unwrap_or(std::cmp::Ordering::Equal));
{
let doc = shared.action_executor.document();
let bpm = doc.bpm; let fps = doc.framerate;
for ev in &mut new_events { ev.sync_from_seconds(bpm, fps); }
}
self.push_events_action("Set modulation", clip_id, old_events, new_events.clone(), shared);
shared.midi_event_cache.insert(clip_id, new_events);
}
@ -2256,6 +2412,46 @@ impl PaneRenderer for PianoRollPane {
.max_decimals(1),
);
}
// Snap-to dropdown — only in Measures mode
let doc = shared.action_executor.document();
let is_measures = doc.timeline_mode == lightningbeam_core::document::TimelineMode::Measures;
let bpm = doc.bpm;
drop(doc);
if is_measures {
// Auto-detect grid when selection changes
if self.selected_note_indices != self.last_snap_selection {
if !self.selected_note_indices.is_empty() {
if let Some(clip_id) = self.selected_clip_id {
if let Some(events) = shared.midi_event_cache.get(&clip_id) {
let resolved = Self::resolve_notes(events);
let sel: Vec<&ResolvedNote> = self.selected_note_indices.iter()
.filter_map(|&i| resolved.get(i))
.collect();
self.snap_value = detect_snap(&sel, bpm);
}
}
}
self.last_snap_selection = self.selected_note_indices.clone();
}
ui.separator();
ui.label(egui::RichText::new("Snap to:").color(header_secondary).size(10.0));
let old_snap = self.snap_value;
egui::ComboBox::from_id_salt("piano_roll_snap")
.selected_text(self.snap_value.label())
.width(110.0)
.show_ui(ui, |ui| {
for &sv in SnapValue::all() {
ui.selectable_value(&mut self.snap_value, sv, sv.label());
}
});
if self.snap_value != old_snap {
self.snap_user_changed = true;
}
}
});
true
}

View File

@ -219,6 +219,12 @@ pub struct TimelinePane {
metronome_icon: Option<egui::TextureHandle>,
/// Count-in pre-roll state: set when count-in is active, cleared when recording fires
pending_recording_start: Option<PendingRecordingStart>,
/// Layer currently being renamed via inline text edit (layer_id, buffer)
renaming_layer: Option<(uuid::Uuid, String)>,
/// BPM value captured when a drag/focus-in starts (for single-undo-action on commit)
bpm_drag_start: Option<f64>,
}
/// Deferred recording start created during count-in pre-roll
@ -502,11 +508,19 @@ fn build_audio_clip_cache(
let mut ci = ClipInstance::new(clip_id);
ci.id = instance_id;
ci.timeline_start = ac.external_start;
ci.timeline_start_beats = ac.external_start_beats;
ci.timeline_start_frames = ac.external_start_frames;
ci.trim_start = ac.internal_start;
ci.trim_start_beats = ac.internal_start_beats;
ci.trim_start_frames = ac.internal_start_frames;
ci.trim_end = Some(ac.internal_end);
ci.trim_end_beats = Some(ac.internal_end_beats);
ci.trim_end_frames = Some(ac.internal_end_frames);
let internal_dur = ac.internal_end - ac.internal_start;
if (ac.external_duration - internal_dur).abs() > 1e-9 {
ci.timeline_duration = Some(ac.external_duration);
ci.timeline_duration_beats = Some(ac.external_duration_beats);
ci.timeline_duration_frames = Some(ac.external_duration_frames);
}
ci.gain = ac.gain;
instances.push(ci);
@ -524,11 +538,19 @@ fn build_audio_clip_cache(
let mut ci = ClipInstance::new(clip_id);
ci.id = instance_id;
ci.timeline_start = mc.external_start;
ci.timeline_start_beats = mc.external_start_beats;
ci.timeline_start_frames = mc.external_start_frames;
ci.trim_start = mc.internal_start;
ci.trim_start_beats = mc.internal_start_beats;
ci.trim_start_frames = mc.internal_start_frames;
ci.trim_end = Some(mc.internal_end);
ci.trim_end_beats = Some(mc.internal_end_beats);
ci.trim_end_frames = Some(mc.internal_end_frames);
let internal_dur = mc.internal_end - mc.internal_start;
if (mc.external_duration - internal_dur).abs() > 1e-9 {
ci.timeline_duration = Some(mc.external_duration);
ci.timeline_duration_beats = Some(mc.external_duration_beats);
ci.timeline_duration_frames = Some(mc.external_duration_frames);
}
instances.push(ci);
}
@ -680,6 +702,8 @@ impl TimelinePane {
automation_topology_generation: u64::MAX,
metronome_icon: None,
pending_recording_start: None,
renaming_layer: None,
bpm_drag_start: None,
}
}
@ -1000,8 +1024,11 @@ impl TimelinePane {
*shared.recording_clips.get(&layer_id).unwrap_or(&0), 0.0);
let doc_clip_id = shared.action_executor.document_mut().add_audio_clip(doc_clip);
let clip_instance = ClipInstance::new(doc_clip_id)
let bpm = shared.action_executor.document().bpm;
let fps = shared.action_executor.document().framerate;
let mut clip_instance = ClipInstance::new(doc_clip_id)
.with_timeline_start(start_time);
clip_instance.sync_from_seconds(bpm, fps);
if let Some(layer) = shared.action_executor.document_mut().get_layer_mut(&layer_id) {
if let lightningbeam_core::layer::AnyLayer::Audio(audio_layer) = layer {
@ -1336,6 +1363,61 @@ impl TimelinePane {
((time - self.viewport_start_time) * self.pixels_per_second as f64) as f32
}
/// Effective display start for a clip instance.
///
/// In Measures mode, uses `timeline_start_beats` as the canonical position so clips stay
/// anchored to their beat position during live BPM drag preview. Falls back to seconds
/// in other modes or when beat data is unavailable.
fn instance_display_start(&self, ci: &lightningbeam_core::clip::ClipInstance, bpm: f64) -> f64 {
if self.time_display_format == lightningbeam_core::document::TimelineMode::Measures
&& (ci.timeline_start_beats.abs() > 1e-12 || ci.timeline_start == 0.0)
{
ci.timeline_start_beats * 60.0 / bpm - ci.loop_before.unwrap_or(0.0)
} else {
ci.effective_start()
}
}
/// In Measures mode, uses beats fields for the clip's on-timeline duration so the width
/// stays correct during live BPM drag preview. Falls back to seconds in other modes.
fn instance_display_duration(&self, ci: &lightningbeam_core::clip::ClipInstance, clip_dur_secs: f64, bpm: f64) -> f64 {
use lightningbeam_core::document::TimelineMode;
if self.time_display_format == TimelineMode::Measures {
// Looping/extended clip: explicit timeline_duration_beats
if let Some(dur_beats) = ci.timeline_duration_beats {
if dur_beats.abs() > 1e-12 {
return dur_beats * 60.0 / bpm;
}
}
// Non-looping: derive from trim range in beats
let ts_beats = ci.trim_start_beats;
if let Some(te_beats) = ci.trim_end_beats {
if te_beats.abs() > 1e-12 || ts_beats.abs() > 1e-12 {
return (te_beats - ts_beats).max(0.0) * 60.0 / bpm;
}
}
}
ci.total_duration(clip_dur_secs)
}
/// In Measures mode, returns the clip content start (trim_start) and duration in
/// beat-derived display seconds, for use when rendering note overlays.
fn content_display_range(&self, ci: &lightningbeam_core::clip::ClipInstance, clip_dur_secs: f64, bpm: f64) -> (f64, f64) {
use lightningbeam_core::document::TimelineMode;
if self.time_display_format == TimelineMode::Measures {
let ts_beats = ci.trim_start_beats;
if let Some(te_beats) = ci.trim_end_beats {
if te_beats.abs() > 1e-12 || ts_beats.abs() > 1e-12 {
let start = ts_beats * 60.0 / bpm;
let dur = (te_beats - ts_beats).max(0.0) * 60.0 / bpm;
return (start, dur);
}
}
}
let trim_end = ci.trim_end.unwrap_or(clip_dur_secs);
(ci.trim_start, (trim_end - ci.trim_start).max(0.0))
}
/// Convert pixel x-coordinate to time (seconds)
fn x_to_time(&self, x: f32) -> f64 {
self.viewport_start_time + (x / self.pixels_per_second) as f64
@ -1612,6 +1694,9 @@ impl TimelinePane {
/// Render mini piano roll visualization for MIDI clips on timeline
/// Shows notes modulo 12 (one octave) matching the JavaScript reference implementation
///
/// `display_bpm`: when `Some(bpm)`, note timestamps are derived from `timestamp_beats`
/// so positions stay beat-anchored during live BPM drag preview.
#[allow(clippy::too_many_arguments)]
fn render_midi_piano_roll(
painter: &egui::Painter,
@ -1626,6 +1711,7 @@ impl TimelinePane {
theme: &crate::theme::Theme,
ctx: &egui::Context,
faded: bool,
display_bpm: Option<f64>,
) {
let clip_height = clip_rect.height();
let note_height = clip_height / 12.0; // 12 semitones per octave
@ -1634,6 +1720,17 @@ impl TimelinePane {
let note_style = theme.style(".timeline-midi-note", ctx);
let note_color = note_style.background_color().unwrap_or(egui::Color32::BLACK);
// In Measures mode during BPM drag, derive display time from beats so notes
// stay anchored to their beat positions.
let event_display_time = |ev: &daw_backend::audio::midi::MidiEvent| -> f64 {
if let Some(bpm) = display_bpm {
if ev.timestamp_beats.abs() > 1e-12 || ev.timestamp == 0.0 {
return ev.timestamp_beats * 60.0 / bpm;
}
}
ev.timestamp
};
// Build a map of active notes (note_number -> note_on_timestamp)
// to calculate durations when we encounter note-offs
let mut active_notes: std::collections::HashMap<u8, f64> = std::collections::HashMap::new();
@ -1642,10 +1739,10 @@ impl TimelinePane {
// First pass: pair note-ons with note-offs to calculate durations
for event in events {
if event.is_note_on() {
let (note_number, timestamp) = (event.data1, event.timestamp);
let (note_number, timestamp) = (event.data1, event_display_time(event));
active_notes.insert(note_number, timestamp);
} else if event.is_note_off() {
let (note_number, timestamp) = (event.data1, event.timestamp);
let (note_number, timestamp) = (event.data1, event_display_time(event));
if let Some(&note_on_time) = active_notes.get(&note_number) {
let duration = timestamp - note_on_time;
@ -1924,14 +2021,51 @@ impl TimelinePane {
name_x_offset = 10.0 + indent + 18.0;
}
// Layer name
ui.painter().text(
header_rect.min + egui::vec2(name_x_offset, 10.0),
egui::Align2::LEFT_TOP,
&layer_name,
egui::FontId::proportional(14.0),
text_color,
// Layer name — double-click to rename inline
let name_pos = header_rect.min + egui::vec2(name_x_offset, 4.0);
let name_rect = egui::Rect::from_min_size(
name_pos,
egui::vec2(header_rect.max.x - name_pos.x - 8.0, 22.0),
);
let is_renaming = self.renaming_layer.as_ref().map_or(false, |(id, _)| *id == layer_id);
if is_renaming {
let buf = &mut self.renaming_layer.as_mut().unwrap().1;
let te = egui::TextEdit::singleline(buf)
.font(egui::FontId::proportional(14.0))
.text_color(text_color)
.frame(false)
.desired_width(name_rect.width());
let te_resp = ui.put(name_rect, te);
te_resp.request_focus();
let done = te_resp.lost_focus()
|| ui.input(|i| i.key_pressed(egui::Key::Enter) || i.key_pressed(egui::Key::Escape));
if done {
let new_name = self.renaming_layer.take().unwrap().1;
let new_name = new_name.trim().to_string();
if !new_name.is_empty() && new_name != layer_name {
pending_actions.push(Box::new(
lightningbeam_core::actions::SetLayerPropertiesAction::new(
layer_id,
lightningbeam_core::actions::LayerProperty::Name(new_name),
)
));
}
self.layer_control_clicked = true;
}
} else {
let name_resp = ui.allocate_rect(name_rect, egui::Sense::click());
ui.painter().text(
name_pos + egui::vec2(0.0, 6.0),
egui::Align2::LEFT_TOP,
&layer_name,
egui::FontId::proportional(14.0),
text_color,
);
if name_resp.double_clicked() {
self.renaming_layer = Some((layer_id, layer_name.clone()));
self.layer_control_clicked = true;
}
}
// Layer type (smaller text below name with colored background)
let type_text_pos = header_rect.min + egui::vec2(name_x_offset, 28.0);
@ -1972,35 +2106,50 @@ impl TimelinePane {
let Some(layer_for_controls) = any_layer_for_controls else { continue; };
// Layer controls (mute, solo, lock, volume)
let controls_top = header_rect.min.y + 4.0;
// Layer controls: volume slider top-right, buttons below it
let controls_right = header_rect.max.x - 8.0;
let button_size = egui::vec2(20.0, 20.0);
let slider_width = 60.0;
// Position controls from right to left
let volume_slider_rect = egui::Rect::from_min_size(
egui::pos2(controls_right - slider_width, controls_top),
egui::pos2(controls_right - slider_width, header_rect.min.y + 4.0),
egui::vec2(slider_width, 20.0),
);
// Buttons sit below the slider, right-aligned to match it
let buttons_top = volume_slider_rect.max.y + 4.0;
let lock_button_rect = egui::Rect::from_min_size(
egui::pos2(volume_slider_rect.min.x - button_size.x - 4.0, controls_top),
egui::pos2(controls_right - button_size.x, buttons_top),
button_size,
);
let solo_button_rect = egui::Rect::from_min_size(
egui::pos2(lock_button_rect.min.x - button_size.x - 4.0, controls_top),
egui::pos2(lock_button_rect.min.x - button_size.x - 4.0, buttons_top),
button_size,
);
let mute_button_rect = egui::Rect::from_min_size(
egui::pos2(solo_button_rect.min.x - button_size.x - 4.0, controls_top),
egui::pos2(solo_button_rect.min.x - button_size.x - 4.0, buttons_top),
button_size,
);
// Get layer ID and current property values from the layer we already have
let current_volume = layer_for_controls.volume();
// Check if there's a Volume automation lane; use it to drive the slider
let volume_auto_info = self.automation_cache.get(&layer_id)
.and_then(|lanes| lanes.iter().find(|l| l.name == "Volume"))
.map(|l| (l.node_id, l.keyframes.clone()));
// Classify the volume automation state
let (volume_auto_node_id, volume_auto_value, volume_is_automated) =
match &volume_auto_info {
None => (None, None, false),
Some((nid, kfs)) if kfs.len() == 1 && (kfs[0].time - 0.0).abs() < 0.001 => {
(Some(*nid), Some(kfs[0].value as f64), false)
}
Some((nid, _)) => (Some(*nid), None, true),
};
let current_volume = volume_auto_value.unwrap_or_else(|| layer_for_controls.volume());
let is_muted = layer_for_controls.muted();
let is_soloed = layer_for_controls.soloed();
let is_locked = layer_for_controls.locked();
@ -2106,7 +2255,9 @@ impl TimelinePane {
}
// Volume slider (nonlinear: 0-70% slider = 0-100% volume, 70-100% slider = 100-200% volume)
// Disabled when the user has edited the Volume automation curve beyond the default single keyframe
let volume_response = ui.scope_builder(egui::UiBuilder::new().max_rect(volume_slider_rect), |ui| {
ui.spacing_mut().slider_width = slider_width;
// Map volume (0.0-2.0) to slider position (0.0-1.0)
let slider_value = if current_volume <= 1.0 {
// 0.0-1.0 volume maps to 0.0-0.7 slider (70%)
@ -2116,11 +2267,11 @@ impl TimelinePane {
0.7 + (current_volume - 1.0) * 0.3
};
let mut temp_slider_value = slider_value;
let mut temp_slider_value = slider_value as f32;
let slider = egui::Slider::new(&mut temp_slider_value, 0.0..=1.0)
.show_value(false);
let response = ui.add(slider);
let response = ui.add_enabled(!volume_is_automated, slider);
(response, temp_slider_value)
}).inner;
@ -2128,7 +2279,7 @@ impl TimelinePane {
if volume_response.0.dragged() || volume_response.0.has_focus() {
self.layer_control_clicked = true;
}
if volume_response.0.changed() {
if volume_response.0.changed() && !volume_is_automated {
self.layer_control_clicked = true;
// Map slider position (0.0-1.0) back to volume (0.0-2.0)
let new_volume = if volume_response.1 <= 0.7 {
@ -2139,19 +2290,37 @@ impl TimelinePane {
1.0 + (volume_response.1 - 0.7) / 0.3
};
pending_actions.push(Box::new(
lightningbeam_core::actions::SetLayerPropertiesAction::new(
if let Some(node_id) = volume_auto_node_id {
// Route through automation: update the t=0 keyframe
self.pending_automation_actions.push(AutomationLaneAction::AddKeyframe {
layer_id,
lightningbeam_core::actions::LayerProperty::Volume(new_volume),
)
));
node_id,
time: 0.0,
value: new_volume,
});
// Optimistic cache update so slider feels immediate
if let Some(lanes) = self.automation_cache.get_mut(&layer_id) {
if let Some(lane) = lanes.iter_mut().find(|l| l.node_id == node_id) {
if let Some(kf) = lane.keyframes.iter_mut().find(|k| k.time < 0.001) {
kf.value = new_volume;
}
}
}
} else {
pending_actions.push(Box::new(
lightningbeam_core::actions::SetLayerPropertiesAction::new(
layer_id,
lightningbeam_core::actions::LayerProperty::Volume(new_volume as f64),
)
));
}
}
// Input gain slider for sampled audio layers (below volume slider)
if let lightningbeam_core::layer::AnyLayer::Audio(audio_layer) = layer_for_controls {
if audio_layer.audio_layer_type == lightningbeam_core::layer::AudioLayerType::Sampled {
let gain_slider_rect = egui::Rect::from_min_size(
egui::pos2(controls_right - slider_width, controls_top + 22.0),
egui::pos2(controls_right - slider_width, volume_slider_rect.max.y + 4.0),
egui::vec2(slider_width, 16.0),
);
let current_gain = audio_layer.layer.input_gain;
@ -2181,7 +2350,7 @@ impl TimelinePane {
// Label
let label_rect = egui::Rect::from_min_size(
egui::pos2(gain_slider_rect.min.x - 26.0, controls_top + 22.0),
egui::pos2(gain_slider_rect.min.x - 26.0, volume_slider_rect.max.y + 4.0),
egui::vec2(24.0, 16.0),
);
ui.painter().text(
@ -3044,14 +3213,15 @@ impl TimelinePane {
let clip_duration = effective_clip_duration(document, layer, clip_instance);
if let Some(clip_duration) = clip_duration {
// Calculate effective duration accounting for trimming
let mut instance_duration = clip_instance.total_duration(clip_duration);
// Calculate effective duration accounting for trimming.
// In Measures mode, uses beats fields so width tracks BPM during live drag.
let mut instance_duration = self.instance_display_duration(clip_instance, clip_duration, document.bpm);
// Instance positioned on the layer's timeline using timeline_start
// The layer itself has start_time, so the absolute timeline position is:
// layer.start_time + instance.timeline_start
// Instance positioned on the layer's timeline using timeline_start.
// In Measures mode, uses timeline_start_beats so clips stay at their beat
// position during live BPM drag preview.
let _layer_data = layer.layer();
let mut instance_start = clip_instance.effective_start();
let mut instance_start = self.instance_display_start(clip_instance, document.bpm);
// Apply drag offset preview for selected clips with snapping
let is_selected = selection.contains_clip_instance(&clip_instance.id);
@ -3072,12 +3242,13 @@ impl TimelinePane {
// Content origin: where the first "real" content iteration starts
// Loop iterations tile outward from this point
let mut content_origin = clip_instance.timeline_start;
let mut content_origin = instance_start + clip_instance.loop_before.unwrap_or(0.0);
// Track preview trim values for waveform rendering
let mut preview_trim_start = clip_instance.trim_start;
let preview_trim_end_default = clip_instance.trim_end.unwrap_or(clip_duration);
let mut preview_clip_duration = (preview_trim_end_default - preview_trim_start).max(0.0);
// Track preview trim values for note/waveform rendering.
// In Measures mode, derive from beats so they track BPM during live drag.
let (base_trim_start, base_clip_duration) = self.content_display_range(clip_instance, clip_duration, document.bpm);
let mut preview_trim_start = base_trim_start;
let mut preview_clip_duration = base_clip_duration;
if let Some(drag_type) = self.clip_drag_state {
if is_selected || is_linked_to_dragged {
@ -3332,6 +3503,11 @@ impl TimelinePane {
let iter_duration = iter_end - iter_start;
if iter_duration <= 0.0 { continue; }
let note_bpm = if self.time_display_format == lightningbeam_core::document::TimelineMode::Measures {
Some(document.bpm)
} else {
None
};
Self::render_midi_piano_roll(
&painter,
clip_rect,
@ -3345,9 +3521,15 @@ impl TimelinePane {
theme,
ui.ctx(),
si != 0, // fade non-content iterations
note_bpm,
);
}
} else {
let note_bpm = if self.time_display_format == lightningbeam_core::document::TimelineMode::Measures {
Some(document.bpm)
} else {
None
};
Self::render_midi_piano_roll(
&painter,
clip_rect,
@ -3361,6 +3543,7 @@ impl TimelinePane {
theme,
ui.ctx(),
false,
note_bpm,
);
}
}
@ -4985,7 +5168,21 @@ impl PaneRenderer for TimelinePane {
.range(20.0..=300.0)
.speed(0.5)
.fixed_decimals(1));
// Capture start BPM on drag/focus start
if bpm_response.gained_focus() || bpm_response.drag_started() {
if self.bpm_drag_start.is_none() {
self.bpm_drag_start = Some(bpm);
}
}
if bpm_response.changed() {
// Fallback capture: if gained_focus/drag_started didn't fire (e.g. rapid input),
// capture start BPM on the first change before updating the document.
if self.bpm_drag_start.is_none() {
self.bpm_drag_start = Some(bpm);
}
// Live preview: update document directly so grid reflows immediately
shared.action_executor.document_mut().bpm = bpm_val;
if let Some(controller_arc) = shared.audio_controller {
let mut controller = controller_arc.lock().unwrap();
@ -4993,6 +5190,31 @@ impl PaneRenderer for TimelinePane {
}
}
// On commit, dispatch a single ChangeBpmAction (single undo entry)
if bpm_response.drag_stopped() || bpm_response.lost_focus() {
if let Some(start_bpm) = self.bpm_drag_start.take() {
let new_bpm = shared.action_executor.document().bpm;
if (start_bpm - new_bpm).abs() > 1e-6
&& self.time_display_format == lightningbeam_core::document::TimelineMode::Measures
{
use lightningbeam_core::actions::ChangeBpmAction;
// Revert the live-preview mutation so the action owns it
shared.action_executor.document_mut().bpm = start_bpm;
let action = ChangeBpmAction::new(
start_bpm,
new_bpm,
shared.action_executor.document(),
shared.midi_event_cache,
);
// Immediately update midi_event_cache for rendering
for (clip_id, events) in action.new_midi_events() {
shared.midi_event_cache.insert(clip_id, events.clone());
}
shared.pending_actions.push(Box::new(action));
}
}
}
ui.separator();
// Time signature selector
@ -5161,15 +5383,19 @@ impl PaneRenderer for TimelinePane {
// Optimistic cache update
if let Some(lanes) = self.automation_cache.get_mut(&layer_id) {
if let Some(lane) = lanes.iter_mut().find(|l| l.node_id == node_id) {
let new_kf = crate::curve_editor::CurvePoint {
time,
value,
interpolation: crate::curve_editor::CurveInterpolation::Linear,
ease_out: (0.0, 0.0),
ease_in: (0.0, 0.0),
};
lane.keyframes.push(new_kf);
lane.keyframes.sort_by(|a, b| a.time.partial_cmp(&b.time).unwrap_or(std::cmp::Ordering::Equal));
// Replace existing keyframe at same time, or insert new one
if let Some(existing) = lane.keyframes.iter_mut().find(|k| (k.time - time).abs() < 0.001) {
existing.value = value;
} else {
lane.keyframes.push(crate::curve_editor::CurvePoint {
time,
value,
interpolation: crate::curve_editor::CurveInterpolation::Linear,
ease_out: (0.0, 0.0),
ease_in: (0.0, 0.0),
});
lane.keyframes.sort_by(|a, b| a.time.partial_cmp(&b.time).unwrap_or(std::cmp::Ordering::Equal));
}
}
}
}

165
scripts/add_output_chain.py Normal file
View File

@ -0,0 +1,165 @@
#!/usr/bin/env python3
"""
Transform all instrument preset JSON files to add a Compressor Pan Gain
output chain, plus Volume and Pan AutomationInput nodes wired via CV.
Only modifies presets that have a MidiInput node (i.e., MIDI instrument presets).
"""
import json
import sys
from pathlib import Path
def transform_preset(data: dict) -> dict | None:
"""Transform a preset. Returns modified dict or None if no change needed."""
nodes = data.get("nodes", [])
connections = data.get("connections", [])
# Only modify presets with a MidiInput node
if not any(n["node_type"] == "MidiInput" for n in nodes):
return None
# Skip if already transformed (has a Compressor node)
if any(n["node_type"] == "Compressor" for n in nodes):
print(" Already transformed, skipping.")
return None
output_node_id = data.get("output_node")
if output_node_id is None:
print(" No output_node, skipping.")
return None
# Find the connection going into the output node
incoming = [c for c in connections if c["to_node"] == output_node_id]
if len(incoming) != 1:
print(f" Expected 1 incoming connection to output_node, found {len(incoming)}, skipping.")
return None
conn = incoming[0]
source_node = conn["from_node"]
source_port = conn["from_port"]
# Get AudioOutput node position — new chain starts where it was
output_node_data = next((n for n in nodes if n["id"] == output_node_id), None)
out_pos = output_node_data.get("position", [700.0, 150.0]) if output_node_data else [700.0, 150.0]
if isinstance(out_pos, list):
ox, oy = float(out_pos[0]), float(out_pos[1])
else:
ox, oy = 700.0, 150.0
step = 230.0 # horizontal spacing between nodes
# Compute new node IDs
max_id = max(n["id"] for n in nodes)
comp_id = max_id + 1 # Compressor
pan_id = max_id + 2 # Pan
gain_id = max_id + 3 # Gain (volume)
vol_id = max_id + 4 # Volume AutomationInput
pan_auto_id = max_id + 5 # Pan AutomationInput
# Move the AudioOutput node to the right of the new chain
if output_node_data is not None:
output_node_data["position"] = [ox + step * 3, oy]
# Remove the existing connection to output
connections = [c for c in connections if not (c["to_node"] == output_node_id and c["from_node"] == source_node)]
# New nodes — Compressor starts where AudioOutput was
new_nodes = [
{
"id": comp_id,
"node_type": "Compressor",
"parameters": {"0": -18.0, "1": 4.0, "2": 5.0, "3": 50.0, "4": 3.0, "5": 3.0},
"position": [ox, oy]
},
{
"id": pan_id,
"node_type": "Pan",
"parameters": {"0": 0.0},
"position": [ox + step, oy]
},
{
"id": gain_id,
"node_type": "Gain",
"parameters": {"0": 1.0},
"position": [ox + step * 2, oy]
},
{
"id": vol_id,
"node_type": "AutomationInput",
"parameters": {"0": 0.0, "1": 2.0},
"automation_display_name": "Volume",
"automation_keyframes": [
{
"time": 0.0,
"value": 1.0,
"interpolation": "linear",
"ease_out": [0.58, 1.0],
"ease_in": [0.42, 0.0]
}
],
"position": [ox + step, oy + 230.0]
},
{
"id": pan_auto_id,
"node_type": "AutomationInput",
"parameters": {"0": -1.0, "1": 1.0},
"automation_display_name": "Pan",
"automation_keyframes": [
{
"time": 0.0,
"value": 0.0,
"interpolation": "linear",
"ease_out": [0.58, 1.0],
"ease_in": [0.42, 0.0]
}
],
"position": [ox, oy + 230.0]
},
]
# New connections
new_connections = [
{"from_node": source_node, "from_port": source_port, "to_node": comp_id, "to_port": 0},
{"from_node": comp_id, "from_port": 0, "to_node": pan_id, "to_port": 0},
{"from_node": pan_id, "from_port": 0, "to_node": gain_id, "to_port": 0},
{"from_node": gain_id, "from_port": 0, "to_node": output_node_id, "to_port": 0},
{"from_node": vol_id, "from_port": 0, "to_node": gain_id, "to_port": 1},
{"from_node": pan_auto_id, "from_port": 0, "to_node": pan_id, "to_port": 1},
]
data["nodes"] = nodes + new_nodes
data["connections"] = connections + new_connections
return data
def main():
instruments_dir = Path(__file__).parent.parent / "src" / "assets" / "instruments"
if not instruments_dir.exists():
print(f"Instruments directory not found: {instruments_dir}", file=sys.stderr)
sys.exit(1)
json_files = sorted(instruments_dir.rglob("*.json"))
print(f"Found {len(json_files)} preset files")
modified = 0
for path in json_files:
print(f"Processing: {path.relative_to(instruments_dir)}")
with open(path) as f:
data = json.load(f)
result = transform_preset(data)
if result is not None:
with open(path, "w") as f:
json.dump(result, f, indent=2)
print(f" -> Modified")
modified += 1
else:
print(f" -> Skipped")
print(f"\nDone. Modified {modified}/{len(json_files)} presets.")
if __name__ == "__main__":
main()

View File

@ -735,10 +735,104 @@
"node_type": "AudioOutput",
"name": "Out",
"parameters": {},
"position": [
1390.0,
100.0
]
},
{
"id": 3,
"node_type": "Compressor",
"parameters": {
"0": -18.0,
"1": 4.0,
"2": 5.0,
"3": 50.0,
"4": 3.0,
"5": 3.0
},
"position": [
700.0,
100.0
]
},
{
"id": 4,
"node_type": "Pan",
"parameters": {
"0": 0.0
},
"position": [
930.0,
100.0
]
},
{
"id": 5,
"node_type": "Gain",
"parameters": {
"0": 1.0
},
"position": [
1160.0,
100.0
]
},
{
"id": 6,
"node_type": "AutomationInput",
"parameters": {
"0": 0.0,
"1": 2.0
},
"automation_display_name": "Volume",
"automation_keyframes": [
{
"time": 0.0,
"value": 1.0,
"interpolation": "linear",
"ease_out": [
0.58,
1.0
],
"ease_in": [
0.42,
0.0
]
}
],
"position": [
930.0,
330.0
]
},
{
"id": 7,
"node_type": "AutomationInput",
"parameters": {
"0": -1.0,
"1": 1.0
},
"automation_display_name": "Pan",
"automation_keyframes": [
{
"time": 0.0,
"value": 0.0,
"interpolation": "linear",
"ease_out": [
0.58,
1.0
],
"ease_in": [
0.42,
0.0
]
}
],
"position": [
700.0,
330.0
]
}
],
"connections": [
@ -751,8 +845,38 @@
{
"from_node": 1,
"from_port": 0,
"to_node": 3,
"to_port": 0
},
{
"from_node": 3,
"from_port": 0,
"to_node": 4,
"to_port": 0
},
{
"from_node": 4,
"from_port": 0,
"to_node": 5,
"to_port": 0
},
{
"from_node": 5,
"from_port": 0,
"to_node": 2,
"to_port": 0
},
{
"from_node": 6,
"from_port": 0,
"to_node": 5,
"to_port": 1
},
{
"from_node": 7,
"from_port": 0,
"to_node": 4,
"to_port": 1
}
]
}

View File

@ -286,10 +286,104 @@
"node_type": "AudioOutput",
"name": "Out",
"parameters": {},
"position": [
1390.0,
100.0
]
},
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View File

@ -4,9 +4,15 @@
"description": "Classic drawbar organ with vibrato and reverb (polyphonic)",
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View File

@ -4,9 +4,15 @@
"description": "Acoustic grand piano with multi-octave sampling",
"author": "Lightningbeam",
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View File

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