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azul_layout/managers/
undo_redo.rs

1//! Undo/Redo Manager for text editing operations
2//!
3//! This module implements a per-node undo/redo stack that records text changesets
4//! and the state before they were applied. This allows reverting changes with Ctrl+Z
5//! and re-applying them with Ctrl+Y/Ctrl+Shift+Z.
6//!
7//! ## Architecture
8//!
9//! - **Per-Node Tracking**: Each text node has its own undo/redo stack
10//! - **Changeset-Based**: Records TextChangesets from changeset.rs
11//! - **State Snapshots**: Saves node state BEFORE changeset application (for revert)
12//! - **Bounded History**: Keeps last 10 operations per node (configurable)
13//! - **Callback Integration**: User can intercept via preventDefault()
14//!
15//! ## Usage Flow
16//!
17//! 1. User types text → TextChangeset created
18//! 2. Pre-callback: Record current node state
19//! 3. User callback: Can query/modify via CallbackInfo
20//! 4. Apply changeset (if !preventDefault)
21//! 5. Post-callback: Push changeset + pre-state to undo stack
22//!
23//! 6. User presses Ctrl+Z → Undo event detected
24//! 7. Pre-callback: Pop undo stack, create revert changeset
25//! 8. User callback: Can preventDefault or inspect
26//! 9. Apply revert (if !preventDefault)
27//! 10. Post-callback: Push original changeset to redo stack
28
29use alloc::{collections::VecDeque, vec::Vec};
30
31use azul_core::{
32    dom::NodeId,
33    geom::LogicalPosition,
34    selection::{
35        CursorAffinity, GraphemeClusterId, OptionSelectionRange, OptionTextCursor, SelectionRange,
36        TextCursor,
37    },
38    task::Instant,
39    window::CursorPosition,
40};
41use azul_css::{impl_option, impl_option_inner, AzString};
42
43use super::changeset::{TextChangeset, TextOperation};
44
45/// Maximum number of undo operations to keep per node
46pub const MAX_UNDO_HISTORY: usize = 10;
47
48/// Maximum number of redo operations to keep per node
49pub const MAX_REDO_HISTORY: usize = 10;
50
51/// Snapshot of a text node's state before a changeset was applied.
52///
53/// This contains enough information to fully revert a text operation.
54#[derive(Debug, Clone)]
55#[repr(C)]
56pub struct NodeStateSnapshot {
57    /// The node this snapshot belongs to
58    pub node_id: NodeId,
59    /// Full text content before changeset
60    pub text_content: AzString,
61    /// Cursor position before changeset (if applicable)
62    /// For now, we store the logical position, not the TextCursor
63    pub cursor_position: OptionTextCursor,
64    /// Selection range before changeset (if applicable)
65    pub selection_range: OptionSelectionRange,
66    /// When this snapshot was taken
67    pub timestamp: Instant,
68}
69
70/// A recorded operation that can be undone/redone.
71///
72/// Combines the changeset that was applied with the state before application.
73#[derive(Debug, Clone)]
74#[repr(C)]
75pub struct UndoableOperation {
76    /// The changeset that was applied
77    pub changeset: TextChangeset,
78    /// Node state BEFORE the changeset was applied
79    pub pre_state: NodeStateSnapshot,
80}
81
82impl_option!(
83    UndoableOperation,
84    OptionUndoableOperation,
85    copy = false,
86    [Debug, Clone]
87);
88
89/// Per-node undo/redo stack
90#[derive(Debug, Clone)]
91pub struct NodeUndoRedoStack {
92    /// Node ID this stack belongs to
93    pub node_id: NodeId,
94    /// Undo stack (most recent at back)
95    pub undo_stack: VecDeque<UndoableOperation>,
96    /// Redo stack (most recent at back)
97    pub redo_stack: VecDeque<UndoableOperation>,
98}
99
100impl NodeUndoRedoStack {
101    pub fn new(node_id: NodeId) -> Self {
102        Self {
103            node_id,
104            undo_stack: VecDeque::with_capacity(MAX_UNDO_HISTORY),
105            redo_stack: VecDeque::with_capacity(MAX_REDO_HISTORY),
106        }
107    }
108
109    /// Push a new operation to the undo stack
110    pub fn push_undo(&mut self, operation: UndoableOperation) {
111        // Clear redo stack when new operation is performed
112        self.redo_stack.clear();
113
114        // Add to undo stack
115        self.undo_stack.push_back(operation);
116
117        // Limit stack size
118        if self.undo_stack.len() > MAX_UNDO_HISTORY {
119            self.undo_stack.pop_front();
120        }
121    }
122
123    /// Pop the most recent operation from undo stack
124    pub fn pop_undo(&mut self) -> Option<UndoableOperation> {
125        self.undo_stack.pop_back()
126    }
127
128    /// Push an operation to the redo stack (after undo)
129    pub fn push_redo(&mut self, operation: UndoableOperation) {
130        self.redo_stack.push_back(operation);
131
132        // Limit stack size
133        if self.redo_stack.len() > MAX_REDO_HISTORY {
134            self.redo_stack.pop_front();
135        }
136    }
137
138    /// Pop the most recent operation from redo stack
139    pub fn pop_redo(&mut self) -> Option<UndoableOperation> {
140        self.redo_stack.pop_back()
141    }
142
143    /// Check if undo is available
144    pub fn can_undo(&self) -> bool {
145        !self.undo_stack.is_empty()
146    }
147
148    /// Check if redo is available
149    pub fn can_redo(&self) -> bool {
150        !self.redo_stack.is_empty()
151    }
152
153    /// Peek at the most recent undo operation without removing it
154    pub fn peek_undo(&self) -> Option<&UndoableOperation> {
155        self.undo_stack.back()
156    }
157
158    /// Peek at the most recent redo operation without removing it
159    pub fn peek_redo(&self) -> Option<&UndoableOperation> {
160        self.redo_stack.back()
161    }
162}
163
164/// Manager for undo/redo operations across all text nodes
165#[derive(Debug, Clone, Default)]
166pub struct UndoRedoManager {
167    /// Per-node undo/redo stacks
168    /// Using Vec instead of HashMap for no_std compatibility
169    pub node_stacks: Vec<NodeUndoRedoStack>,
170}
171
172impl UndoRedoManager {
173    /// Create a new empty undo/redo manager
174    pub fn new() -> Self {
175        Self {
176            node_stacks: Vec::new(),
177        }
178    }
179
180    /// Get or create a stack for a specific node
181    pub fn get_or_create_stack_mut(&mut self, node_id: NodeId) -> &mut NodeUndoRedoStack {
182        if let Some(pos) = self.node_stacks.iter().position(|s| s.node_id == node_id) {
183            &mut self.node_stacks[pos]
184        } else {
185            self.node_stacks.push(NodeUndoRedoStack::new(node_id));
186            self.node_stacks.last_mut().unwrap()
187        }
188    }
189
190    /// Get a stack for a specific node (immutable)
191    pub fn get_stack(&self, node_id: NodeId) -> Option<&NodeUndoRedoStack> {
192        self.node_stacks.iter().find(|s| s.node_id == node_id)
193    }
194
195    /// Get a stack for a specific node (mutable)
196    fn get_stack_mut(&mut self, node_id: NodeId) -> Option<&mut NodeUndoRedoStack> {
197        self.node_stacks.iter_mut().find(|s| s.node_id == node_id)
198    }
199
200    /// Record a text operation (push to undo stack)
201    ///
202    /// This should be called AFTER a changeset has been successfully applied.
203    /// The pre_state should contain the node state BEFORE the changeset was applied.
204    ///
205    /// ## Arguments
206    /// * `changeset` - The changeset that was applied
207    /// * `pre_state` - Node state before the changeset
208    pub fn record_operation(&mut self, changeset: TextChangeset, pre_state: NodeStateSnapshot) {
209        // Convert DomNodeId to NodeId for indexing
210        // NodeHierarchyItemId.into_crate_internal() decodes the 1-based encoding to Option<NodeId>
211        let node_id = changeset
212            .target
213            .node
214            .into_crate_internal()
215            .expect("TextChangeset target node should not be None");
216        let stack = self.get_or_create_stack_mut(node_id);
217
218        let operation = UndoableOperation {
219            changeset,
220            pre_state,
221        };
222
223        stack.push_undo(operation);
224    }
225
226    /// Check if undo is available for a node
227    pub fn can_undo(&self, node_id: NodeId) -> bool {
228        self.get_stack(node_id)
229            .map(|s| s.can_undo())
230            .unwrap_or(false)
231    }
232
233    /// Check if redo is available for a node
234    pub fn can_redo(&self, node_id: NodeId) -> bool {
235        self.get_stack(node_id)
236            .map(|s| s.can_redo())
237            .unwrap_or(false)
238    }
239
240    /// Peek at the next undo operation for a node (without removing it)
241    ///
242    /// This allows user callbacks to inspect what would be undone.
243    pub fn peek_undo(&self, node_id: NodeId) -> Option<&UndoableOperation> {
244        self.get_stack(node_id).and_then(|s| s.peek_undo())
245    }
246
247    /// Peek at the next redo operation for a node (without removing it)
248    ///
249    /// This allows user callbacks to inspect what would be redone.
250    pub fn peek_redo(&self, node_id: NodeId) -> Option<&UndoableOperation> {
251        self.get_stack(node_id).and_then(|s| s.peek_redo())
252    }
253
254    /// Pop an operation from the undo stack
255    ///
256    /// This should be called during undo processing to get the operation to revert.
257    /// After reverting, the operation should be pushed to the redo stack.
258    ///
259    /// ## Returns
260    /// * `Some(operation)` - The operation to undo
261    /// * `None` - No undo history available
262    pub fn pop_undo(&mut self, node_id: NodeId) -> Option<UndoableOperation> {
263        self.get_stack_mut(node_id)?.pop_undo()
264    }
265
266    /// Pop an operation from the redo stack
267    ///
268    /// This should be called during redo processing to get the operation to re-apply.
269    /// After re-applying, the operation should be pushed to the undo stack.
270    ///
271    /// ## Returns
272    /// * `Some(operation)` - The operation to redo
273    /// * `None` - No redo history available
274    pub fn pop_redo(&mut self, node_id: NodeId) -> Option<UndoableOperation> {
275        self.get_stack_mut(node_id)?.pop_redo()
276    }
277
278    /// Push an operation to the redo stack (after successful undo)
279    ///
280    /// This should be called AFTER an undo operation has been successfully applied.
281    pub fn push_redo(&mut self, operation: UndoableOperation) {
282        let node_id = operation
283            .changeset
284            .target
285            .node
286            .into_crate_internal()
287            .expect("TextChangeset target node should not be None");
288        let stack = self.get_or_create_stack_mut(node_id);
289        stack.push_redo(operation);
290    }
291
292    /// Push an operation to the undo stack (after successful redo)
293    ///
294    /// This should be called AFTER a redo operation has been successfully applied.
295    pub fn push_undo(&mut self, operation: UndoableOperation) {
296        let node_id = operation
297            .changeset
298            .target
299            .node
300            .into_crate_internal()
301            .expect("TextChangeset target node should not be None");
302        let stack = self.get_or_create_stack_mut(node_id);
303        stack.push_undo(operation);
304    }
305
306    /// Clear all undo/redo history for a specific node
307    pub fn clear_node(&mut self, node_id: NodeId) {
308        if let Some(stack) = self.get_stack_mut(node_id) {
309            stack.undo_stack.clear();
310            stack.redo_stack.clear();
311        }
312    }
313
314    /// Clear all undo/redo history for all nodes
315    pub fn clear_all(&mut self) {
316        self.node_stacks.clear();
317    }
318
319    /// Get the total number of operations in undo stack for a node
320    pub fn undo_depth(&self, node_id: NodeId) -> usize {
321        self.get_stack(node_id)
322            .map(|s| s.undo_stack.len())
323            .unwrap_or(0)
324    }
325
326    /// Get the total number of operations in redo stack for a node
327    pub fn redo_depth(&self, node_id: NodeId) -> usize {
328        self.get_stack(node_id)
329            .map(|s| s.redo_stack.len())
330            .unwrap_or(0)
331    }
332}
333
334/// Helper function to create a revert changeset from an undoable operation.
335///
336/// This analyzes the changeset and creates the inverse operation that will
337/// restore the pre_state.
338///
339/// ## Arguments
340///
341/// * `operation` - The operation to create a revert for
342/// * `timestamp` - Current time for the revert changeset
343///
344/// Returns: `TextChangeset` - The changeset that reverts the operation
345pub fn create_revert_changeset(operation: &UndoableOperation, timestamp: Instant) -> TextChangeset {
346    use crate::managers::changeset::{
347        TextOpClearSelection, TextOpCopy, TextOpCut, TextOpDeleteText, TextOpExtendSelection,
348        TextOpInsertText, TextOpMoveCursor, TextOpPaste, TextOpReplaceText, TextOpSelectAll,
349        TextOpSetSelection,
350    };
351
352    // Create the inverse operation based on what was done
353    let revert_operation = match &operation.changeset.operation {
354        // InsertText → DeleteText (remove what was inserted)
355        TextOperation::InsertText(op) => {
356            // To revert an insert, we need to delete the inserted text
357            // The range is from old position to new position
358            // For now, we use a simplified approach - restore the old text completely
359            let dummy_cursor = TextCursor {
360                cluster_id: GraphemeClusterId {
361                    source_run: 0,
362                    start_byte_in_run: 0,
363                },
364                affinity: CursorAffinity::Leading,
365            };
366            let end_cursor = TextCursor {
367                cluster_id: GraphemeClusterId {
368                    source_run: 0,
369                    start_byte_in_run: operation.pre_state.text_content.len() as u32,
370                },
371                affinity: CursorAffinity::Leading,
372            };
373            TextOperation::ReplaceText(TextOpReplaceText {
374                range: SelectionRange {
375                    start: dummy_cursor,
376                    end: end_cursor,
377                },
378                old_text: op.text.clone(), // What's currently there (will be removed)
379                new_text: operation.pre_state.text_content.clone(), // What to restore
380                new_cursor: operation
381                    .pre_state
382                    .cursor_position
383                    .as_ref()
384                    .map(|_| {
385                        CursorPosition::InWindow(azul_core::geom::LogicalPosition::new(0.0, 0.0))
386                    })
387                    .unwrap_or(CursorPosition::Uninitialized),
388            })
389        }
390
391        // DeleteText → InsertText (re-insert what was deleted)
392        TextOperation::DeleteText(op) => {
393            let dummy_cursor = TextCursor {
394                cluster_id: GraphemeClusterId {
395                    source_run: 0,
396                    start_byte_in_run: 0,
397                },
398                affinity: CursorAffinity::Leading,
399            };
400            TextOperation::ReplaceText(TextOpReplaceText {
401                range: SelectionRange {
402                    start: dummy_cursor,
403                    // Empty current content
404                    end: dummy_cursor,
405                },
406                // What's currently there (nothing)
407                old_text: AzString::from(""),
408                // Restore full text
409                new_text: operation.pre_state.text_content.clone(),
410                new_cursor: operation
411                    .pre_state
412                    .cursor_position
413                    .as_ref()
414                    .map(|_| {
415                        CursorPosition::InWindow(azul_core::geom::LogicalPosition::new(0.0, 0.0))
416                    })
417                    .unwrap_or(CursorPosition::Uninitialized),
418            })
419        }
420
421        // ReplaceText → ReplaceText (swap old and new)
422        TextOperation::ReplaceText(op) => {
423            let end_cursor = TextCursor {
424                cluster_id: GraphemeClusterId {
425                    source_run: 0,
426                    start_byte_in_run: op.new_text.len() as u32,
427                },
428                affinity: CursorAffinity::Leading,
429            };
430            TextOperation::ReplaceText(TextOpReplaceText {
431                range: SelectionRange {
432                    start: TextCursor {
433                        cluster_id: GraphemeClusterId {
434                            source_run: 0,
435                            start_byte_in_run: 0,
436                        },
437                        affinity: CursorAffinity::Leading,
438                    },
439                    end: end_cursor,
440                },
441                // What's currently there
442                old_text: op.new_text.clone(),
443                // Restore to pre-state
444                new_text: operation.pre_state.text_content.clone(),
445                new_cursor: operation
446                    .pre_state
447                    .cursor_position
448                    .as_ref()
449                    .map(|_| CursorPosition::InWindow(LogicalPosition::new(0.0, 0.0)))
450                    .unwrap_or(CursorPosition::Uninitialized),
451            })
452        }
453
454        // For non-text-mutating operations, return the inverse
455        TextOperation::SetSelection(op) => TextOperation::SetSelection(TextOpSetSelection {
456            old_range: OptionSelectionRange::Some(op.new_range),
457            new_range: op.old_range.into_option().unwrap_or(op.new_range),
458        }),
459
460        TextOperation::ExtendSelection(op) => TextOperation::SetSelection(TextOpSetSelection {
461            old_range: OptionSelectionRange::Some(op.new_range),
462            new_range: op.old_range,
463        }),
464
465        TextOperation::ClearSelection(op) => TextOperation::SetSelection(TextOpSetSelection {
466            old_range: OptionSelectionRange::None,
467            new_range: op.old_range,
468        }),
469
470        TextOperation::MoveCursor(op) => {
471            TextOperation::MoveCursor(TextOpMoveCursor {
472                old_position: op.new_position,
473                new_position: op.old_position,
474                movement: op.movement, // Keep same movement type
475            })
476        }
477
478        // SelectAll → restore old selection
479        TextOperation::SelectAll(op) => {
480            if let OptionSelectionRange::Some(old_sel) = op.old_range {
481                TextOperation::SetSelection(TextOpSetSelection {
482                    old_range: OptionSelectionRange::Some(op.new_range),
483                    new_range: old_sel,
484                })
485            } else {
486                // If there was no selection, clear it
487                // We use a zero-width selection at start
488                let dummy_cursor = TextCursor {
489                    cluster_id: GraphemeClusterId {
490                        source_run: 0,
491                        start_byte_in_run: 0,
492                    },
493                    affinity: CursorAffinity::Leading,
494                };
495                TextOperation::SetSelection(TextOpSetSelection {
496                    old_range: OptionSelectionRange::Some(op.new_range),
497                    new_range: SelectionRange {
498                        start: dummy_cursor,
499                        end: dummy_cursor,
500                    },
501                })
502            }
503        }
504
505        // Clipboard operations - these don't change text, so no revert needed
506        TextOperation::Copy(_) | TextOperation::Cut(_) | TextOperation::Paste(_) => {
507            // For clipboard operations, we treat them as no-op for revert
508            // The actual text changes are tracked separately
509            operation.changeset.operation.clone()
510        }
511    };
512
513    TextChangeset::new(operation.changeset.target, revert_operation, timestamp)
514}