MiMo 2.5 feat: enhance vector shape handling with angle snapping and color state management

This commit is contained in:
2026-07-21 05:08:08 +03:00
parent b49106dc1d
commit cbe03f74a3
7 changed files with 194 additions and 20 deletions
@@ -0,0 +1,120 @@
# Plan: Fix Vector Tool Angle Persistence and Color State Leaking
## Problem Analysis
Both issues stem from `sync_tool_from_shape()` in `hcie-iced-app/crates/hcie-iced-gui/src/shape_sync.rs`.
### Issue 1: Angle Persistence
**Root cause:** Two mechanisms conspire to leak angle state:
1. `sync_tool_from_shape()` (line 150) copies the selected shape's angle into `tool_settings.vector_angle`:
```rust
ts.vector_angle = shape.angle().to_degrees();
```
2. Canvas drag-rotation (line 6397 in `app.rs`) also writes the rotated angle back:
```rust
self.settings.tool_settings.vector_angle = angle.to_degrees();
```
3. New SVG shape creation (line 5768 in `app.rs`) reads from the same field:
```rust
let svg_angle = self.settings.tool_settings.vector_angle.to_radians();
```
Then applies it to every new SVG shape at line 6203-6204:
```rust
if matches!(shape, hcie_engine_api::VectorShape::SvgShape { .. }) {
shape.set_angle(svg_angle);
}
```
**Flow that reproduces the bug:**
1. Draw a shape (angle=0, correct)
2. Select the shape → `sync_tool_from_shape` copies its angle to `tool_settings.vector_angle`
3. Rotate via drag → `tool_settings.vector_angle` updated to rotated value (e.g., 45°)
4. Draw a NEW shape → `svg_angle = 45°` → new shape created with 45° rotation
**Desired behavior:** Every new drawing starts at angle 0, while the properties panel angle slider continues to work for editing selected shapes.
### Issue 2: Color State Leaking
**Root cause:** `sync_tool_from_shape()` (lines 182-186) copies the selected shape's colors into the app's active palette:
```rust
app.fg_color = shape.color();
if let Some(fc) = shape.fill_color() {
app.bg_color = fc;
}
app.colors_dirty = true;
```
This is called from `VectorShapeSelect` handler (line 6527 in `app.rs`).
**Desired behavior:** Selecting a shape should NOT change the active color palette. The palette should only change when the user explicitly picks a new color.
---
## Implementation Plan
### File 1: `hcie-iced-app/crates/hcie-iced-gui/src/shape_sync.rs`
**Change A — Remove angle sync from `sync_tool_from_shape` (line 150):**
Delete the line:
```rust
ts.vector_angle = shape.angle().to_degrees();
```
The Properties panel (`properties.rs`) already receives `vector_angle` from `tool_settings` and passes it to the slider. When the user changes the slider, `VectorAngleChanged` writes directly to `tool_settings.vector_angle` and calls `sync_shape_from_tool`. The selected shape's own angle will no longer contaminate the "default for new shapes" value.
**Change B — Remove color sync from `sync_tool_from_shape` (lines 182-186):**
Delete these lines:
```rust
// Colors
app.fg_color = shape.color();
if let Some(fc) = shape.fill_color() {
app.bg_color = fc;
}
app.colors_dirty = true;
```
The Geometry and Properties panels already display the selected shape's stroke/fill colors directly from the engine (`shapes[idx].color()`, `shapes[idx].fill_color()`), so the UI remains correct. Color changes in those panels go directly to the engine via `set_vector_shape_color` / `set_vector_shape_fill_color`, independent of `fg_color`/`bg_color`.
### File 2: `hcie-iced-app/crates/hcie-iced-gui/src/app.rs`
**Change C — Reset angle after new shape creation (after line 6206):**
After `engine.add_vector_shape(shape)` at line 6206, add:
```rust
self.settings.tool_settings.vector_angle = 0.0;
```
This provides a safety net: even if something else writes to `vector_angle` between the last `sync_tool_from_shape` and the next draw, the angle resets after each new shape is committed. The reset also applies for non-SVG shapes (Rect, Circle, Line), ensuring complete consistency.
---
## Files Modified
| File | Change |
|------|--------|
| `hcie-iced-app/crates/hcie-iced-gui/src/shape_sync.rs` | Remove angle copy (line 150) and color copy (lines 182-186) from `sync_tool_from_shape` |
| `hcie-iced-app/crates/hcie-iced-gui/src/app.rs` | Reset `vector_angle` to 0.0 after `add_vector_shape` in `VectorDrawEnd` |
## What Is Preserved
- **Properties panel angle slider:** Still works. It reads from `tool_settings.vector_angle` and writes via `VectorAngleChanged`. The slider just won't auto-populate from the selected shape anymore — it retains its value until explicitly changed.
- **Geometry panel stroke/fill colors:** Still read directly from the engine shape, unaffected by this change.
- **Other tool properties (stroke, opacity, fill, radius, points, sides):** Unaffected — `sync_tool_from_shape` still syncs all non-angle, non-color properties.
- **Color palette when picking colors:** Still works. `sync_shape_from_tool` is still called when the user changes colors while a shape is selected, pushing the new palette color to the shape.
## Validation
1. Build: `cargo check -p hcie-iced-gui`
2. Manual test sequence:
- Draw a Rect → select → rotate to 30° → deselect → draw a new Rect → verify new Rect has angle 0°
- Draw a Star → select → change angle slider to 45° → deselect → draw a new Star → verify new Star has angle 0°
- Select a shape → verify active palette color is NOT changed
- Change palette color while shape is selected → verify shape color updates
- Use Properties panel angle slider on selected shape → verify the shape's angle changes correctly
@@ -1019,6 +1019,11 @@ impl<'a> egui::Widget for CanvasWidget<'a> {
.engine .engine
.vector_shape_angle(layer_id, shape_idx); .vector_shape_angle(layer_id, shape_idx);
angle += da; angle += da;
let shift = ui.input(|i| i.modifiers.shift);
if shift {
let step = std::f32::consts::PI / 12.0;
angle = (angle / step).round() * step;
}
self.doc self.doc
.engine .engine
.set_vector_shape_angle(layer_id, shape_idx, angle); .set_vector_shape_angle(layer_id, shape_idx, angle);
@@ -2230,10 +2235,15 @@ fn create_shape_from_drag(
let mut p = std::collections::HashMap::new(); let mut p = std::collections::HashMap::new();
p.insert("thick".to_string(), 0.0); p.insert("thick".to_string(), 0.0);
match hcie_engine_api::create_vector_shape("arrow", x1, y1, x2, y2, &p) { match hcie_engine_api::create_vector_shape("arrow", x1, y1, x2, y2, &p) {
VectorShape::SvgShape { kind, svg, .. } => VectorShape::SvgShape { VectorShape::SvgShape { kind, svg, .. } => {
name: String::new(), kind, svg, x1, y1, x2, y2, stroke, color, fill_color, fill, // Derive the arrow's rotation from the drag direction so
angle: 0.0, opacity, hardness, // it points along the line drawn by the user.
}, let arrow_angle = (y2 - y1).atan2(x2 - x1);
VectorShape::SvgShape {
name: String::new(), kind, svg, x1, y1, x2, y2, stroke, color, fill_color, fill,
angle: arrow_angle, opacity, hardness,
}
}
_ => unreachable!(), _ => unreachable!(),
} }
}, },
+17 -1
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@@ -6200,11 +6200,26 @@ impl HcieIcedApp {
}; };
if let Some(mut shape) = shape { if let Some(mut shape) = shape {
if matches!(shape, hcie_engine_api::VectorShape::SvgShape { .. }) { // For arrow shapes, derive the angle from the drag
// direction so the arrow points along the drawn line.
if matches!(
self.tool_state.active_tool,
hcie_engine_api::Tool::VectorArrow
) {
let drag_angle = (y1 - y0).atan2(x1 - x0);
let drag_angle = if self.modifiers.shift() {
crate::vector_edit::snap_to_15deg(drag_angle)
} else {
drag_angle
};
shape.set_angle(drag_angle);
} else if matches!(shape, hcie_engine_api::VectorShape::SvgShape { .. }) {
shape.set_angle(svg_angle); shape.set_angle(svg_angle);
} }
engine.add_vector_shape(shape); engine.add_vector_shape(shape);
self.documents[self.active_doc].modified = true; self.documents[self.active_doc].modified = true;
// Reset angle so every new drawing starts at 0°.
self.settings.tool_settings.vector_angle = 0.0;
} }
self.refresh_composite_if_needed(); self.refresh_composite_if_needed();
} }
@@ -6380,6 +6395,7 @@ impl HcieIcedApp {
(x, y), (x, y),
self.modifiers.shift(), self.modifiers.shift(),
self.modifiers.alt(), self.modifiers.alt(),
self.modifiers.shift(),
); );
let (x1, y1, x2, y2) = shape.normalized_bounds(); let (x1, y1, x2, y2) = shape.normalized_bounds();
let angle = shape.angle(); let angle = shape.angle();
@@ -220,6 +220,13 @@ pub fn panel_body<'a>(
let layer_height = layer_info.map(|l| l.height).unwrap_or(0); let layer_height = layer_info.map(|l| l.height).unwrap_or(0);
let vector_shapes = doc.engine.active_vector_shapes().unwrap_or_default(); let vector_shapes = doc.engine.active_vector_shapes().unwrap_or_default();
let ts2 = app.settings.tool_settings.clone(); let ts2 = app.settings.tool_settings.clone();
// Read the selected shape's angle directly from the engine so
// the slider updates instantly when the selection changes.
let effective_vector_angle = doc
.selected_vector_shape
.and_then(|idx| vector_shapes.get(idx))
.map(|s| s.angle().to_degrees())
.unwrap_or(ts2.vector_angle);
crate::panels::properties::view( crate::panels::properties::view(
&app.tool_state.active_tool, &app.tool_state.active_tool,
app.tool_state.brush_size, app.tool_state.brush_size,
@@ -243,7 +250,7 @@ pub fn panel_body<'a>(
ts2.vector_radius, ts2.vector_radius,
ts2.vector_points, ts2.vector_points,
ts2.vector_sides, ts2.vector_sides,
ts2.vector_angle, effective_vector_angle,
active_id, active_id,
app.fg_color, app.fg_color,
app.bg_color, app.bg_color,
@@ -142,12 +142,16 @@ pub fn sync_tool_from_shape(app: &mut HcieIcedApp) {
if let Some(shape) = shapes.get(shape_idx) { if let Some(shape) = shapes.get(shape_idx) {
let ts = &mut app.settings.tool_settings; let ts = &mut app.settings.tool_settings;
// Common properties // Common properties — note: angle is intentionally NOT synced here
// so that the "default angle for new shapes" stays independent from
// the selected shape's rotation. The angle slider in the Properties
// panel writes directly to `tool_settings.vector_angle` via
// VectorAngleChanged and is pushed to the shape via
// sync_shape_from_tool.
ts.vector_stroke_width = shape.stroke(); ts.vector_stroke_width = shape.stroke();
ts.vector_opacity = shape.shape_opacity(); ts.vector_opacity = shape.shape_opacity();
app.tool_state.brush_hardness = shape.hardness(); app.tool_state.brush_hardness = shape.hardness();
ts.vector_fill = shape.is_filled(); ts.vector_fill = shape.is_filled();
ts.vector_angle = shape.angle().to_degrees();
// Shape-specific properties // Shape-specific properties
match shape { match shape {
@@ -178,12 +182,10 @@ pub fn sync_tool_from_shape(app: &mut HcieIcedApp) {
_ => {} _ => {}
} }
// Colors // Colors are intentionally NOT synced from the shape into the
app.fg_color = shape.color(); // active palette. The geometry / properties panels read the
if let Some(fc) = shape.fill_color() { // shape's colors directly from the engine for display, and the
app.bg_color = fc; // user picks new colors via the color palette or panel pickers.
}
app.colors_dirty = true;
} }
} }
} }
@@ -114,15 +114,18 @@ pub fn hit_test_handle(
/// Derives a safe shape for the current pointer position in a drag. /// Derives a safe shape for the current pointer position in a drag.
/// ///
/// Arguments: `session` is the immutable drag basis, `pointer` is canvas-space, `lock_aspect` /// Arguments: `session` is the immutable drag basis, `pointer` is canvas-space,
/// corresponds to Shift, and `from_center` corresponds to Alt. Returns: A finite shape with /// `lock_aspect` corresponds to Shift (aspect-lock on resize), `from_center`
/// dimensions at least `MIN_VECTOR_SIZE`; invalid pointer input returns the original shape. /// corresponds to Alt, and `snap_angle` corresponds to Shift on rotation.
/// Returns: A finite shape with dimensions at least `MIN_VECTOR_SIZE`; invalid
/// pointer input returns the original shape.
/// Side Effects: None. /// Side Effects: None.
pub fn transform_shape( pub fn transform_shape(
session: &VectorDragSession, session: &VectorDragSession,
pointer: (f32, f32), pointer: (f32, f32),
lock_aspect: bool, lock_aspect: bool,
from_center: bool, from_center: bool,
snap_angle: bool,
) -> VectorShape { ) -> VectorShape {
use VectorEditHandle as H; use VectorEditHandle as H;
@@ -152,8 +155,13 @@ pub fn transform_shape(
(session.pointer_start.1 - center.1).atan2(session.pointer_start.0 - center.0); (session.pointer_start.1 - center.1).atan2(session.pointer_start.0 - center.0);
let current_angle = (pointer.1 - center.1).atan2(pointer.0 - center.0); let current_angle = (pointer.1 - center.1).atan2(pointer.0 - center.0);
let angle = session.original.angle() + normalize_angle(current_angle - start_angle); let angle = session.original.angle() + normalize_angle(current_angle - start_angle);
let angle = if snap_angle {
snap_to_15deg(angle)
} else {
normalize_angle(angle)
};
if angle.is_finite() { if angle.is_finite() {
result.set_angle(normalize_angle(angle)); result.set_angle(angle);
} }
return result; return result;
} }
@@ -302,6 +310,16 @@ pub fn normalize_angle(angle: f32) -> f32 {
(angle + std::f32::consts::PI).rem_euclid(two_pi) - std::f32::consts::PI (angle + std::f32::consts::PI).rem_euclid(two_pi) - std::f32::consts::PI
} }
/// Snaps an angle (radians) to the nearest 15° increment.
///
/// Used for Shift-constrained drawing and rotation. 15° = PI/12.
/// Returns the nearest snapped angle within [-PI, PI].
pub fn snap_to_15deg(angle: f32) -> f32 {
let step = std::f32::consts::PI / 12.0; // 15°
let snapped = (angle / step).round() * step;
normalize_angle(snapped)
}
/// Inverse-rotates a point around a center. Arguments and return are canvas-space coordinates. /// Inverse-rotates a point around a center. Arguments and return are canvas-space coordinates.
/// Side Effects: None. /// Side Effects: None.
fn inverse_rotate(point: (f32, f32), center: (f32, f32), angle: f32) -> (f32, f32) { fn inverse_rotate(point: (f32, f32), center: (f32, f32), angle: f32) -> (f32, f32) {
@@ -467,10 +485,10 @@ mod tests {
pointer_start: (5.0, 5.0), pointer_start: (5.0, 5.0),
original: rect(), original: rect(),
}; };
let moved = transform_shape(&session, (15.0, 25.0), false, false); let moved = transform_shape(&session, (15.0, 25.0), false, false, false);
assert_eq!(moved.normalized_bounds(), (20.0, 40.0, 120.0, 90.0)); assert_eq!(moved.normalized_bounds(), (20.0, 40.0, 120.0, 90.0));
assert_eq!( assert_eq!(
transform_shape(&session, (f32::NAN, 0.0), false, false), transform_shape(&session, (f32::NAN, 0.0), false, false, false),
rect() rect()
); );
} }
+1
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@@ -1,6 +1,7 @@
cargo run -p hcie-wx-app --bin hcie-wx-app cargo run -p hcie-wx-app --bin hcie-wx-app
cargo run --bin hcie-gui cargo run --bin hcie-gui
cargo run --example gui cargo run --example gui
cargo run -p
##TAURI ##TAURI
npm komutunu proje kökünden değil, hcie-tauri-app/ altından çalıştırmalısın: npm komutunu proje kökünden değil, hcie-tauri-app/ altından çalıştırmalısın: