Refactor panel layouts to generalize recursive panel group subdivision splits (#4014)

* Generalize recursive panel group splits

* Code review
This commit is contained in:
Keavon Chambers
2026-04-08 00:44:58 -07:00
committed by GitHub
parent 0eb440db14
commit 39656d4c73
10 changed files with 663 additions and 448 deletions

View File

@@ -1,6 +1,6 @@
use super::document::utility_types::document_metadata::LayerNodeIdentifier;
use super::document::utility_types::network_interface;
use super::utility_types::{PanelGroupId, PanelType, PersistentData, WorkspacePanelLayout};
use super::utility_types::{PanelType, PersistentData, WorkspacePanelLayout};
use crate::application::{Editor, generate_uuid};
use crate::consts::{DEFAULT_DOCUMENT_NAME, DEFAULT_STROKE_WIDTH, FILE_EXTENSION};
use crate::messages::animation::TimingInformation;
@@ -469,26 +469,37 @@ impl MessageHandler<PortfolioMessage, PortfolioMessageContext<'_>> for Portfolio
return;
}
let source_state = self.workspace_panel_layout.panel_group(source_group);
let Some(source_state) = self.workspace_panel_layout.panel_group(source_group) else { return };
let Some(panel_type) = source_state.active_panel_type() else { return };
// Validate that the target group exists before modifying the source
if self.workspace_panel_layout.panel_group(target_group).is_none() {
log::error!("Target panel group {target_group:?} not found");
return;
}
// Destroy layouts for the moved panel (so backend and frontend start in sync when it remounts)
// and for the panel that was previously active in the target panel group (it will be displaced by the incoming tab)
Self::destroy_panel_layouts(panel_type, responses);
if let Some(old_target_panel) = self.workspace_panel_layout.panel_group(target_group).active_panel_type() {
if let Some(old_target_panel) = self.workspace_panel_layout.panel_group(target_group).and_then(|g| g.active_panel_type()) {
Self::destroy_panel_layouts(old_target_panel, responses);
}
// Remove from source panel group
let source = self.workspace_panel_layout.panel_group_mut(source_group);
source.tabs.retain(|&t| t != panel_type);
source.active_tab_index = source.active_tab_index.min(source.tabs.len().saturating_sub(1));
if let Some(source) = self.workspace_panel_layout.panel_group_mut(source_group) {
source.tabs.retain(|&t| t != panel_type);
source.active_tab_index = source.active_tab_index.min(source.tabs.len().saturating_sub(1));
}
// Insert into target panel group
let target = self.workspace_panel_layout.panel_group_mut(target_group);
let index = insert_index.min(target.tabs.len());
target.tabs.insert(index, panel_type);
target.active_tab_index = index;
if let Some(target) = self.workspace_panel_layout.panel_group_mut(target_group) {
let index = insert_index.min(target.tabs.len());
target.tabs.insert(index, panel_type);
target.active_tab_index = index;
}
// Remove empty panel groups from the tree
self.workspace_panel_layout.prune();
responses.add(MenuBarMessage::SendLayout);
responses.add(PortfolioMessage::UpdateWorkspacePanelLayout);
@@ -497,7 +508,7 @@ impl MessageHandler<PortfolioMessage, PortfolioMessageContext<'_>> for Portfolio
self.refresh_panel_content(panel_type, responses);
// Refresh the source panel group's newly active tab (if any remain) so it's not left stale
if let Some(new_source_active) = self.workspace_panel_layout.panel_group(source_group).active_panel_type() {
if let Some(new_source_active) = self.workspace_panel_layout.panel_group(source_group).and_then(|g| g.active_panel_type()) {
Self::destroy_panel_layouts(new_source_active, responses);
self.refresh_panel_content(new_source_active, responses);
}
@@ -1110,7 +1121,7 @@ impl MessageHandler<PortfolioMessage, PortfolioMessageContext<'_>> for Portfolio
}
}
PortfolioMessage::ReorderPanelGroupTab { group, old_index, new_index } => {
let group_state = self.workspace_panel_layout.panel_group_mut(group);
let Some(group_state) = self.workspace_panel_layout.panel_group_mut(group) else { return };
if old_index < group_state.tabs.len() && new_index < group_state.tabs.len() && old_index != new_index {
let tab = group_state.tabs.remove(old_index);
@@ -1189,7 +1200,7 @@ impl MessageHandler<PortfolioMessage, PortfolioMessageContext<'_>> for Portfolio
});
}
PortfolioMessage::SetPanelGroupActiveTab { group, tab_index } => {
let group_state = self.workspace_panel_layout.panel_group(group);
let Some(group_state) = self.workspace_panel_layout.panel_group(group) else { return };
if tab_index < group_state.tabs.len() && tab_index != group_state.active_tab_index {
// Destroy layouts for the old and new panels so the backend's diffing state is in sync with the frontend's fresh mount
if let Some(old_panel_type) = group_state.active_panel_type() {
@@ -1199,12 +1210,14 @@ impl MessageHandler<PortfolioMessage, PortfolioMessageContext<'_>> for Portfolio
Self::destroy_panel_layouts(new_panel_type, responses);
// Update the active tab index for the panel
self.workspace_panel_layout.panel_group_mut(group).active_tab_index = tab_index;
if let Some(group_state) = self.workspace_panel_layout.panel_group_mut(group) {
group_state.active_tab_index = tab_index;
}
// Send the layout update first so the frontend mounts the new panel component before it receives content
responses.add(PortfolioMessage::UpdateWorkspacePanelLayout);
if let Some(panel_type) = self.workspace_panel_layout.panel_group(group).active_panel_type() {
if let Some(panel_type) = self.workspace_panel_layout.panel_group(group).and_then(|g| g.active_panel_type()) {
self.refresh_panel_content(panel_type, responses);
}
}
@@ -1433,6 +1446,8 @@ impl MessageHandler<PortfolioMessage, PortfolioMessageContext<'_>> for Portfolio
}
}
PortfolioMessage::UpdateWorkspacePanelLayout => {
self.workspace_panel_layout.recalculate_default_sizes();
responses.add(FrontendMessage::UpdateWorkspacePanelLayout {
panel_layout: self.workspace_panel_layout.clone(),
});
@@ -1652,34 +1667,37 @@ impl PortfolioMessageHandler {
selected_nodes.first().copied()
}
/// Remove a dockable panel type from whichever panel group currently contains it.
/// Remove a dockable panel type from whichever panel group currently contains it, then prune empty groups.
fn remove_panel_from_layout(&mut self, panel_type: PanelType) {
for group_id in [PanelGroupId::PropertiesGroup, PanelGroupId::LayersGroup, PanelGroupId::DataGroup] {
let group = self.workspace_panel_layout.panel_group_mut(group_id);
if let Some(index) = group.tabs.iter().position(|&t| t == panel_type) {
group.tabs.remove(index);
group.active_tab_index = group.active_tab_index.min(group.tabs.len().saturating_sub(1));
break;
}
// Save the panel's current position so it can be restored there later
self.workspace_panel_layout.save_panel_position(panel_type);
if let Some(group_id) = self.workspace_panel_layout.find_panel(panel_type)
&& let Some(group) = self.workspace_panel_layout.panel_group_mut(group_id)
{
group.tabs.retain(|&t| t != panel_type);
group.active_tab_index = group.active_tab_index.min(group.tabs.len().saturating_sub(1));
}
self.workspace_panel_layout.prune();
}
/// Toggle a dockable panel on or off. When toggling off, refresh the newly active tab in its panel group (if any).
fn toggle_dockable_panel(&mut self, panel_type: PanelType, responses: &mut VecDeque<Message>) {
if let Some(group_id) = self.workspace_panel_layout.find_panel(panel_type) {
// Panel is present, remove it
let was_visible = self.workspace_panel_layout.panel_group(group_id).is_visible(panel_type);
let was_visible = self.workspace_panel_layout.panel_group(group_id).is_some_and(|g| g.is_visible(panel_type));
Self::destroy_panel_layouts(panel_type, responses);
self.remove_panel_from_layout(panel_type);
// If the removed panel was the active tab, refresh whichever panel is now active in that panel group
if was_visible && let Some(new_active) = self.workspace_panel_layout.panel_group(group_id).active_panel_type() {
if was_visible && let Some(new_active) = self.workspace_panel_layout.panel_group(group_id).and_then(|g| g.active_panel_type()) {
Self::destroy_panel_layouts(new_active, responses);
self.refresh_panel_content(new_active, responses);
}
} else {
// Panel is not present, add it to its default panel group
self.add_panel_to_its_default_group(panel_type);
// Panel is not present, restore it to its default position in the layout tree
self.workspace_panel_layout.restore_panel(panel_type);
self.refresh_panel_content(panel_type, responses);
}
@@ -1687,15 +1705,6 @@ impl PortfolioMessageHandler {
responses.add(PortfolioMessage::UpdateWorkspacePanelLayout);
}
/// Add a dockable panel type to its default panel group.
fn add_panel_to_its_default_group(&mut self, panel_type: PanelType) {
let group = self.workspace_panel_layout.panel_group_mut(panel_type.default_panel_group());
if !group.tabs.contains(&panel_type) {
group.tabs.push(panel_type);
group.active_tab_index = group.tabs.len() - 1;
}
}
/// Destroy the stored layout for a panel that is no longer the active tab.
/// This resets the backend's diffing state so it won't try to send updates to a frontend component that has been unmounted.
fn destroy_panel_layouts(panel_type: PanelType, responses: &mut VecDeque<Message>) {

View File

@@ -84,7 +84,7 @@ impl FontCatalogStyle {
}
#[cfg_attr(feature = "wasm", derive(tsify::Tsify))]
#[derive(PartialEq, Eq, Clone, Copy, Debug, serde::Serialize, serde::Deserialize)]
#[derive(PartialEq, Eq, Hash, Clone, Copy, Debug, serde::Serialize, serde::Deserialize)]
pub enum PanelType {
Welcome,
Document,
@@ -93,19 +93,6 @@ pub enum PanelType {
Data,
}
impl PanelType {
/// Returns the default panel group for this panel type.
pub fn default_panel_group(self) -> PanelGroupId {
match self {
PanelType::Document => PanelGroupId::DocumentGroup,
PanelType::Properties => PanelGroupId::PropertiesGroup,
PanelType::Layers => PanelGroupId::LayersGroup,
PanelType::Data => PanelGroupId::DataGroup,
PanelType::Welcome => panic!("PanelType::{self:?} has no default panel group (not a dockable panel)"),
}
}
}
impl From<String> for PanelType {
fn from(value: String) -> Self {
match value.as_str() {
@@ -119,29 +106,14 @@ impl From<String> for PanelType {
}
}
/// Identifies a panel group in the workspace that can hold tabbed panels.
#[cfg_attr(feature = "wasm", derive(tsify::Tsify))]
#[derive(Clone, Copy, Debug, PartialEq, Eq, Hash, serde::Serialize, serde::Deserialize)]
pub enum PanelGroupId {
DocumentGroup,
PropertiesGroup,
LayersGroup,
DataGroup,
}
/// Unique identifier for a panel group (a leaf subdivision in the layout tree that holds tabs).
#[repr(transparent)]
#[cfg_attr(feature = "wasm", derive(tsify::Tsify), tsify(large_number_types_as_bigints))]
#[derive(Clone, Copy, Debug, Default, PartialEq, Eq, Hash, serde::Serialize, serde::Deserialize)]
pub struct PanelGroupId(pub u64);
impl From<String> for PanelGroupId {
fn from(value: String) -> Self {
match value.as_str() {
"DocumentGroup" => PanelGroupId::DocumentGroup,
"PropertiesGroup" => PanelGroupId::PropertiesGroup,
"LayersGroup" => PanelGroupId::LayersGroup,
"DataGroup" => PanelGroupId::DataGroup,
_ => panic!("Unknown panel group: {value}"),
}
}
}
/// State of a single panel group in the workspace.
/// State of a single panel group (leaf subdivision) in the workspace layout tree.
#[cfg_attr(feature = "wasm", derive(tsify::Tsify), tsify(large_number_types_as_bigints))]
#[derive(Clone, Debug, Default, PartialEq, serde::Serialize, serde::Deserialize)]
pub struct PanelGroupState {
pub tabs: Vec<PanelType>,
@@ -163,68 +135,352 @@ impl PanelGroupState {
}
}
/// The complete workspace panel layout describing which dockable panels are in which panel groups.
/// A subdivision in the workspace layout tree. The root is always a row (horizontal).
/// Direction alternates at each depth: row, column, row, column, etc.
#[cfg_attr(feature = "wasm", derive(tsify::Tsify))]
#[derive(Clone, Debug, PartialEq, serde::Serialize, serde::Deserialize)]
pub struct WorkspacePanelLayout {
#[serde(rename = "propertiesGroup")]
pub properties_group: PanelGroupState,
#[serde(rename = "layersGroup")]
pub layers_group: PanelGroupState,
#[serde(rename = "dataGroup")]
pub data_group: PanelGroupState,
pub enum PanelLayoutSubdivision {
/// A leaf subdivision: a panel group with tabbed panels.
PanelGroup { id: PanelGroupId, state: PanelGroupState },
/// A container subdivision that splits its space among children. Direction is implicit from depth (even = row, odd = column).
Split { children: Vec<SplitChild> },
}
impl Default for WorkspacePanelLayout {
fn default() -> Self {
Self {
properties_group: PanelGroupState {
tabs: vec![PanelType::Properties],
active_tab_index: 0,
},
layers_group: PanelGroupState {
tabs: vec![PanelType::Layers],
active_tab_index: 0,
},
data_group: PanelGroupState { tabs: vec![], active_tab_index: 0 },
}
}
/// A child within a split container, with a proportional size weight.
#[cfg_attr(feature = "wasm", derive(tsify::Tsify))]
#[derive(Clone, Debug, PartialEq, serde::Serialize, serde::Deserialize)]
pub struct SplitChild {
pub subdivision: PanelLayoutSubdivision,
/// Flex-grow weight for proportional sizing.
pub size: f64,
}
/// The complete workspace panel layout as a tree of nested rows and columns.
/// The root subdivision is always a row (horizontal split). Direction alternates at each depth.
#[cfg_attr(feature = "wasm", derive(tsify::Tsify))]
#[derive(Clone, Debug, PartialEq, serde::Serialize, serde::Deserialize)]
pub struct WorkspacePanelLayout {
pub root: PanelLayoutSubdivision,
/// Counter for generating unique panel group IDs.
#[serde(rename = "nextGroupId")]
next_group_id: PanelGroupId,
/// Remembers where a panel was before being removed (panel type, group ID, and tab index), so it can be restored there.
#[serde(default, rename = "savedPositions")]
saved_positions: Vec<(PanelType, PanelGroupId, usize)>,
}
impl WorkspacePanelLayout {
pub fn panel_group(&self, panel_group_id: PanelGroupId) -> &PanelGroupState {
match panel_group_id {
PanelGroupId::DocumentGroup => panic!("PanelGroupId::{panel_group_id:?} is not a dockable panel group"),
PanelGroupId::PropertiesGroup => &self.properties_group,
PanelGroupId::LayersGroup => &self.layers_group,
PanelGroupId::DataGroup => &self.data_group,
}
/// Generate a new unique panel group ID.
pub fn next_id(&mut self) -> PanelGroupId {
let id = self.next_group_id;
self.next_group_id.0 += 1;
id
}
pub fn panel_group_mut(&mut self, panel_group_id: PanelGroupId) -> &mut PanelGroupState {
match panel_group_id {
PanelGroupId::DocumentGroup => panic!("PanelGroupId::{panel_group_id:?} is not a dockable panel group"),
PanelGroupId::PropertiesGroup => &mut self.properties_group,
PanelGroupId::LayersGroup => &mut self.layers_group,
PanelGroupId::DataGroup => &mut self.data_group,
}
/// Find the panel group state for a given ID.
pub fn panel_group(&self, id: PanelGroupId) -> Option<&PanelGroupState> {
self.root.find_group(id)
}
/// Find which panel group contains a given panel type.
/// Find the panel group state for a given ID (mutable).
pub fn panel_group_mut(&mut self, id: PanelGroupId) -> Option<&mut PanelGroupState> {
self.root.find_group_mut(id)
}
/// Find which panel group contains a given panel type, returning its ID.
pub fn find_panel(&self, panel_type: PanelType) -> Option<PanelGroupId> {
[PanelGroupId::PropertiesGroup, PanelGroupId::LayersGroup, PanelGroupId::DataGroup]
.into_iter()
.find(|&group_id| self.panel_group(group_id).contains(panel_type))
self.root.find_panel(panel_type)
}
/// Check if a panel type is the active (visible) tab in any panel group.
pub fn is_panel_visible(&self, panel_type: PanelType) -> bool {
self.find_panel(panel_type).is_some_and(|group_id| self.panel_group(group_id).is_visible(panel_type))
self.find_panel(panel_type).and_then(|id| self.panel_group(id)).is_some_and(|group| group.is_visible(panel_type))
}
/// Check if a panel type is present (as any tab) in any panel group, whether or not it's the active tab.
pub fn is_panel_present(&self, panel_type: PanelType) -> bool {
self.find_panel(panel_type).is_some()
}
/// Remove empty panel groups and collapse unnecessary single-child splits.
pub fn prune(&mut self) {
self.root.prune();
}
/// Recalculate the default sizes for all splits in the tree based on document panel proximity.
pub fn recalculate_default_sizes(&mut self) {
self.root.recalculate_default_sizes();
}
/// Remember which panel group and tab index a panel was in before removal, so it can be restored there later.
pub fn save_panel_position(&mut self, panel_type: PanelType) {
if let Some(group_id) = self.find_panel(panel_type) {
let tab_index = self.panel_group(group_id).and_then(|g| g.tabs.iter().position(|&t| t == panel_type)).unwrap_or(0);
// Replace any existing saved position for this panel type
self.saved_positions.retain(|(pt, _, _)| *pt != panel_type);
self.saved_positions.push((panel_type, group_id, tab_index));
}
}
/// Restore a panel to its previous position if available, otherwise to its default position.
/// If the panel was previously in a group that still exists, it's added back as a tab at its original index.
/// Otherwise, it's placed at its default structural position in the tree.
pub fn restore_panel(&mut self, panel_type: PanelType) {
// Try to restore to the previously saved group and tab position
let saved = self.saved_positions.iter().find(|(pt, _, _)| *pt == panel_type).copied();
if let Some((_, saved_group_id, saved_tab_index)) = saved
&& let Some(group) = self.panel_group_mut(saved_group_id)
{
let insert_index = saved_tab_index.min(group.tabs.len());
group.tabs.insert(insert_index, panel_type);
group.active_tab_index = insert_index;
self.saved_positions.retain(|(pt, _, _)| *pt != panel_type);
return;
}
self.saved_positions.retain(|(pt, _, _)| *pt != panel_type);
self.restore_panel_to_default_position(panel_type);
}
/// Place a panel at its default structural position in the layout tree.
/// - Data: below the document in the left column (root child 0)
/// - Properties: top of the right column (root child 1)
/// - Layers: bottom of the right column (root child 1)
fn restore_panel_to_default_position(&mut self, panel_type: PanelType) {
let new_id = self.next_id();
let new_group = SplitChild {
subdivision: PanelLayoutSubdivision::PanelGroup {
id: new_id,
state: PanelGroupState {
tabs: vec![panel_type],
active_tab_index: 0,
},
},
size: match panel_type {
PanelType::Data => 30.,
PanelType::Properties => 45.,
PanelType::Layers => 55.,
_ => 50.,
},
};
// Determine which root child column to insert into and at which position
let (root_child_index, insert_at_end) = match panel_type {
PanelType::Data => (0, true), // Left column, after document
PanelType::Properties => (1, false), // Right column, at top
PanelType::Layers => (1, true), // Right column, at bottom
_ => (1, true),
};
// Ensure the root is a split
if !matches!(&self.root, PanelLayoutSubdivision::Split { .. }) {
let old_root = std::mem::replace(&mut self.root, PanelLayoutSubdivision::Split { children: vec![] });
if let PanelLayoutSubdivision::Split { children } = &mut self.root {
children.push(SplitChild { subdivision: old_root, size: 80. });
}
}
let PanelLayoutSubdivision::Split { children: root_children } = &mut self.root else { return };
// Ensure the target root child exists
while root_children.len() <= root_child_index {
root_children.push(SplitChild {
subdivision: PanelLayoutSubdivision::Split { children: vec![] },
size: 20.,
});
}
// The target should be a split (column at depth 1) so we can add children to it
let target = &mut root_children[root_child_index].subdivision;
if !matches!(target, PanelLayoutSubdivision::Split { .. }) {
let old_subdivision = std::mem::replace(target, PanelLayoutSubdivision::Split { children: vec![] });
if let PanelLayoutSubdivision::Split { children } = target {
children.push(SplitChild {
subdivision: old_subdivision,
size: 50.,
});
}
}
if let PanelLayoutSubdivision::Split { children } = target {
if insert_at_end {
children.push(new_group);
} else {
children.insert(0, new_group);
}
}
}
}
impl Default for WorkspacePanelLayout {
fn default() -> Self {
// Default layout (sizes are recalculated by `recalculate_default_sizes` before being sent to the frontend):
// Row [
// Column [Document]
// Column [Properties, Layers]
// ]
Self {
root: PanelLayoutSubdivision::Split {
children: vec![
SplitChild {
subdivision: PanelLayoutSubdivision::Split {
children: vec![SplitChild {
subdivision: PanelLayoutSubdivision::PanelGroup {
id: PanelGroupId(0),
state: PanelGroupState {
tabs: vec![PanelType::Document],
active_tab_index: 0,
},
},
size: 100.,
}],
},
size: 80.,
},
SplitChild {
subdivision: PanelLayoutSubdivision::Split {
children: vec![
SplitChild {
subdivision: PanelLayoutSubdivision::PanelGroup {
id: PanelGroupId(1),
state: PanelGroupState {
tabs: vec![PanelType::Properties],
active_tab_index: 0,
},
},
size: 50.,
},
SplitChild {
subdivision: PanelLayoutSubdivision::PanelGroup {
id: PanelGroupId(2),
state: PanelGroupState {
tabs: vec![PanelType::Layers],
active_tab_index: 0,
},
},
size: 50.,
},
],
},
size: 20.,
},
],
},
next_group_id: PanelGroupId(3),
saved_positions: Vec::new(),
}
}
}
impl PanelLayoutSubdivision {
/// Find the panel group state for a given ID.
pub fn find_group(&self, target_id: PanelGroupId) -> Option<&PanelGroupState> {
match self {
PanelLayoutSubdivision::PanelGroup { id, state } if *id == target_id => Some(state),
PanelLayoutSubdivision::PanelGroup { .. } => None,
PanelLayoutSubdivision::Split { children } => children.iter().find_map(|child| child.subdivision.find_group(target_id)),
}
}
/// Find the panel group state for a given ID (mutable).
pub fn find_group_mut(&mut self, target_id: PanelGroupId) -> Option<&mut PanelGroupState> {
match self {
PanelLayoutSubdivision::PanelGroup { id, state } if *id == target_id => Some(state),
PanelLayoutSubdivision::PanelGroup { .. } => None,
PanelLayoutSubdivision::Split { children } => children.iter_mut().find_map(|child| child.subdivision.find_group_mut(target_id)),
}
}
/// Find the panel group ID that contains a given panel type.
pub fn find_panel(&self, panel_type: PanelType) -> Option<PanelGroupId> {
match self {
PanelLayoutSubdivision::PanelGroup { id, state } if state.contains(panel_type) => Some(*id),
PanelLayoutSubdivision::PanelGroup { .. } => None,
PanelLayoutSubdivision::Split { children } => children.iter().find_map(|child| child.subdivision.find_panel(panel_type)),
}
}
/// Collect all panel group IDs in the tree.
pub fn all_group_ids(&self) -> Vec<PanelGroupId> {
match self {
PanelLayoutSubdivision::PanelGroup { id, .. } => vec![*id],
PanelLayoutSubdivision::Split { children } => children.iter().flat_map(|child| child.subdivision.all_group_ids()).collect(),
}
}
/// Remove empty panel groups and collapse single-child splits.
pub fn prune(&mut self) {
if let PanelLayoutSubdivision::Split { children } = self {
// Recursively prune children first
children.iter_mut().for_each(|child| child.subdivision.prune());
// Remove empty panel groups
children.retain(|child| !matches!(&child.subdivision, PanelLayoutSubdivision::PanelGroup { state, .. } if state.tabs.is_empty()));
// Remove empty splits (splits that lost all their children after pruning)
children.retain(|child| !matches!(&child.subdivision, PanelLayoutSubdivision::Split { children } if children.is_empty()));
// If a split has exactly one child, replace this subdivision with that child's subdivision
if children.len() == 1 {
*self = children.remove(0).subdivision;
}
}
}
/// Check if this subtree contains the document panel.
pub fn contains_document(&self) -> bool {
match self {
PanelLayoutSubdivision::PanelGroup { state, .. } => state.contains(PanelType::Document) || state.contains(PanelType::Welcome),
PanelLayoutSubdivision::Split { children } => children.iter().any(|child| child.subdivision.contains_document()),
}
}
/// Recalculate the default sizes for this subdivision's children based on proximity to the document panel.
/// Splits directly surrounding the document panel use 80-20 weighting.
/// All other splits use equal division.
pub fn recalculate_default_sizes(&mut self) {
if let PanelLayoutSubdivision::Split { children } = self {
let child_count = children.len();
if child_count == 0 {
return;
}
// Check if any child directly contains (or is) the document panel
let document_child_index = children.iter().position(|child| child.subdivision.contains_document());
if let Some(document_index) = document_child_index {
// This split directly surrounds the document panel, so use 80-20 weighting
let non_document_count = child_count - 1;
let document_share = if non_document_count > 0 { 80. } else { 100. };
let other_share = if non_document_count > 0 { 20. / non_document_count as f64 } else { 0. };
for (i, child) in children.iter_mut().enumerate() {
child.size = if i == document_index { document_share } else { other_share };
}
} else {
// This split doesn't directly contain the document, use equal division
let equal_share = 100. / child_count as f64;
for child in children.iter_mut() {
child.size = equal_share;
}
}
// Recurse into children
for child in children.iter_mut() {
child.subdivision.recalculate_default_sizes();
}
}
}
/// Remove a panel group by ID from the tree. Does not prune.
pub fn remove_group(&mut self, target_id: PanelGroupId) {
if let PanelLayoutSubdivision::Split { children } = self {
children.retain(|child| !matches!(&child.subdivision, PanelLayoutSubdivision::PanelGroup { id, .. } if *id == target_id));
children.iter_mut().for_each(|child| child.subdivision.remove_group(target_id));
}
}
}
pub enum FileContent {