1use std::{collections::HashSet, mem::size_of, rc::Rc};
2
3use cranpose_core::NodeId;
4use cranpose_foundation::PointerEvent;
5use cranpose_ui::{
6 GraphicsLayer, Point, Rect, RenderEffect, RoundedCornerShape, TextLayoutOptions, TextStyle,
7 text::AnnotatedString,
8};
9use cranpose_ui_graphics::{BlendMode, ColorFilter, DrawPrimitive, ShadowPrimitive};
10
11use crate::{raster_cache::LayerRasterCacheHashes, style_shared::DrawPlacement};
12
13#[derive(Clone, Copy, Debug, PartialEq)]
14pub struct ProjectiveTransform {
15 matrix: [[f32; 3]; 3],
16}
17
18impl ProjectiveTransform {
19 pub const fn identity() -> Self {
20 Self {
21 matrix: [[1.0, 0.0, 0.0], [0.0, 1.0, 0.0], [0.0, 0.0, 1.0]],
22 }
23 }
24
25 pub fn translation(tx: f32, ty: f32) -> Self {
26 Self {
27 matrix: [[1.0, 0.0, tx], [0.0, 1.0, ty], [0.0, 0.0, 1.0]],
28 }
29 }
30
31 pub fn uniform_scale(scale: f32) -> Self {
34 Self {
35 matrix: [[scale, 0.0, 0.0], [0.0, scale, 0.0], [0.0, 0.0, 1.0]],
36 }
37 }
38
39 pub fn from_rect_to_quad(rect: Rect, quad: [[f32; 2]; 4]) -> Self {
40 if rect.width.abs() <= f32::EPSILON || rect.height.abs() <= f32::EPSILON {
41 return Self::translation(quad[0][0], quad[0][1]);
42 }
43
44 if let Some(axis_aligned) = axis_aligned_rect_from_quad(quad) {
45 let scale_x = axis_aligned.width / rect.width;
46 let scale_y = axis_aligned.height / rect.height;
47 return Self {
48 matrix: [
49 [scale_x, 0.0, axis_aligned.x - rect.x * scale_x],
50 [0.0, scale_y, axis_aligned.y - rect.y * scale_y],
51 [0.0, 0.0, 1.0],
52 ],
53 };
54 }
55
56 let source = [
57 [rect.x, rect.y],
58 [rect.x + rect.width, rect.y],
59 [rect.x, rect.y + rect.height],
60 [rect.x + rect.width, rect.y + rect.height],
61 ];
62 let Some(coefficients) = solve_homography(source, quad) else {
63 return Self::identity();
64 };
65
66 Self {
67 matrix: [
68 [coefficients[0], coefficients[1], coefficients[2]],
69 [coefficients[3], coefficients[4], coefficients[5]],
70 [coefficients[6], coefficients[7], 1.0],
71 ],
72 }
73 }
74
75 pub fn then(self, next: Self) -> Self {
77 Self {
78 matrix: multiply_matrices(next.matrix, self.matrix),
79 }
80 }
81
82 pub fn inverse(self) -> Option<Self> {
83 let m = self.matrix;
84 let a = m[0][0];
85 let b = m[0][1];
86 let c = m[0][2];
87 let d = m[1][0];
88 let e = m[1][1];
89 let f = m[1][2];
90 let g = m[2][0];
91 let h = m[2][1];
92 let i = m[2][2];
93
94 let cofactor00 = e * i - f * h;
95 let cofactor01 = -(d * i - f * g);
96 let cofactor02 = d * h - e * g;
97 let cofactor10 = -(b * i - c * h);
98 let cofactor11 = a * i - c * g;
99 let cofactor12 = -(a * h - b * g);
100 let cofactor20 = b * f - c * e;
101 let cofactor21 = -(a * f - c * d);
102 let cofactor22 = a * e - b * d;
103
104 let determinant = a * cofactor00 + b * cofactor01 + c * cofactor02;
105 if determinant.abs() <= f32::EPSILON {
106 return None;
107 }
108 let inverse_determinant = 1.0 / determinant;
109
110 Some(Self {
111 matrix: [
112 [
113 cofactor00 * inverse_determinant,
114 cofactor10 * inverse_determinant,
115 cofactor20 * inverse_determinant,
116 ],
117 [
118 cofactor01 * inverse_determinant,
119 cofactor11 * inverse_determinant,
120 cofactor21 * inverse_determinant,
121 ],
122 [
123 cofactor02 * inverse_determinant,
124 cofactor12 * inverse_determinant,
125 cofactor22 * inverse_determinant,
126 ],
127 ],
128 })
129 }
130
131 pub fn matrix(self) -> [[f32; 3]; 3] {
132 self.matrix
133 }
134
135 pub fn map_point(self, point: Point) -> Point {
136 let x = point.x;
137 let y = point.y;
138 let w = self.matrix[2][0] * x + self.matrix[2][1] * y + self.matrix[2][2];
139 let safe_w = if w.abs() <= f32::EPSILON { 1.0 } else { w };
140
141 Point {
142 x: (self.matrix[0][0] * x + self.matrix[0][1] * y + self.matrix[0][2]) / safe_w,
143 y: (self.matrix[1][0] * x + self.matrix[1][1] * y + self.matrix[1][2]) / safe_w,
144 }
145 }
146
147 pub fn map_rect(self, rect: Rect) -> [[f32; 2]; 4] {
148 [
149 self.map_point(Point {
150 x: rect.x,
151 y: rect.y,
152 }),
153 self.map_point(Point {
154 x: rect.x + rect.width,
155 y: rect.y,
156 }),
157 self.map_point(Point {
158 x: rect.x,
159 y: rect.y + rect.height,
160 }),
161 self.map_point(Point {
162 x: rect.x + rect.width,
163 y: rect.y + rect.height,
164 }),
165 ]
166 .map(|point| [point.x, point.y])
167 }
168
169 pub fn bounds_for_rect(self, rect: Rect) -> Rect {
170 quad_bounds(self.map_rect(rect))
171 }
172}
173
174fn axis_aligned_rect_from_quad(quad: [[f32; 2]; 4]) -> Option<Rect> {
175 let top_left = quad[0];
176 let top_right = quad[1];
177 let bottom_left = quad[2];
178 let bottom_right = quad[3];
179 let x_epsilon = 1e-4;
180 let y_epsilon = 1e-4;
181
182 if (top_left[1] - top_right[1]).abs() > y_epsilon
183 || (bottom_left[1] - bottom_right[1]).abs() > y_epsilon
184 || (top_left[0] - bottom_left[0]).abs() > x_epsilon
185 || (top_right[0] - bottom_right[0]).abs() > x_epsilon
186 {
187 return None;
188 }
189
190 Some(Rect {
191 x: top_left[0],
192 y: top_left[1],
193 width: top_right[0] - top_left[0],
194 height: bottom_left[1] - top_left[1],
195 })
196}
197
198impl Default for ProjectiveTransform {
199 fn default() -> Self {
200 Self::identity()
201 }
202}
203
204#[derive(Clone, Copy, Debug, Default, PartialEq, Eq)]
205pub struct IsolationReasons {
206 pub explicit_offscreen: bool,
207 pub shape_clip: bool,
208 pub effect: bool,
209 pub backdrop: bool,
210 pub group_opacity: bool,
211 pub blend_mode: bool,
212}
213
214impl IsolationReasons {
215 pub fn has_any(self) -> bool {
216 self.explicit_offscreen
217 || self.shape_clip
218 || self.effect
219 || self.backdrop
220 || self.group_opacity
221 || self.blend_mode
222 }
223}
224
225#[derive(Clone, Copy, Debug, Default, PartialEq, Eq)]
226pub enum CachePolicy {
227 #[default]
228 None,
229 Auto,
230}
231
232#[derive(Clone)]
233pub struct HitTestNode {
234 pub shape: Option<RoundedCornerShape>,
235 pub click_actions: Vec<Rc<dyn Fn(Point)>>,
236 pub pointer_inputs: Vec<Rc<dyn Fn(PointerEvent)>>,
237 pub clip: Option<Rect>,
238}
239
240#[derive(Clone, Debug, PartialEq)]
241pub struct DrawPrimitiveNode {
242 pub primitive: DrawPrimitive,
243 pub clip: Option<Rect>,
244}
245
246#[derive(Clone, Debug, PartialEq)]
247pub struct TextPrimitiveNode {
248 pub node_id: NodeId,
249 pub rect: Rect,
250 pub text: Rc<AnnotatedString>,
253 pub text_style: TextStyle,
254 pub font_size: f32,
255 pub layout_options: TextLayoutOptions,
256 pub clip: Option<Rect>,
257}
258
259#[derive(Clone, Copy, Debug, PartialEq, Eq)]
260pub enum PrimitivePhase {
261 BeforeChildren,
262 AfterChildren,
263}
264
265#[derive(Clone, Debug, PartialEq)]
266pub enum PrimitiveNode {
267 Draw(DrawPrimitiveNode),
268 Text(Box<TextPrimitiveNode>),
269}
270
271#[derive(Clone, Debug, PartialEq)]
272pub struct PrimitiveEntry {
273 pub phase: PrimitivePhase,
274 pub node: PrimitiveNode,
275}
276
277#[derive(Clone)]
278pub struct LayerNode {
279 pub node_id: Option<NodeId>,
280 pub local_bounds: Rect,
281 pub transform_to_parent: ProjectiveTransform,
282 pub content_offset: Point,
283 pub motion_context_animated: bool,
284 pub translated_content_context: bool,
285 pub translated_content_offset: Point,
286 pub scene_children_origin: Point,
293 pub scene_children_layer_translation: Point,
294 pub graphics_layer: GraphicsLayer,
295 pub clip_to_bounds: bool,
296 pub shadow_clip: Option<Rect>,
297 pub hit_test: Option<HitTestNode>,
298 pub has_hit_targets: bool,
299 pub has_origin_sinks: bool,
304 pub isolation: IsolationReasons,
305 pub cache_policy: CachePolicy,
306 pub cache_hashes: LayerRasterCacheHashes,
307 pub cache_hashes_valid: bool,
308 pub children: Vec<RenderNode>,
309}
310
311impl Default for LayerNode {
312 fn default() -> Self {
313 Self {
314 node_id: None,
315 local_bounds: Rect {
316 x: 0.0,
317 y: 0.0,
318 width: 0.0,
319 height: 0.0,
320 },
321 transform_to_parent: ProjectiveTransform::identity(),
322 content_offset: Point::default(),
323 motion_context_animated: false,
324 translated_content_context: false,
325 translated_content_offset: Point::default(),
326 scene_children_origin: Point::default(),
327 scene_children_layer_translation: Point::default(),
328 graphics_layer: GraphicsLayer::default(),
329 clip_to_bounds: false,
330 shadow_clip: None,
331 hit_test: None,
332 has_hit_targets: false,
333 has_origin_sinks: false,
334 isolation: IsolationReasons::default(),
335 cache_policy: CachePolicy::None,
336 cache_hashes: LayerRasterCacheHashes::default(),
337 cache_hashes_valid: false,
338 children: Vec::new(),
339 }
340 }
341}
342
343impl LayerNode {
344 pub fn clip_rect(&self) -> Option<Rect> {
345 (self.clip_to_bounds || self.graphics_layer.clip).then_some(self.local_bounds)
346 }
347
348 pub fn effect(&self) -> Option<&RenderEffect> {
349 self.graphics_layer.render_effect.as_ref()
350 }
351
352 pub fn backdrop(&self) -> Option<&RenderEffect> {
353 self.graphics_layer.backdrop_effect.as_ref()
354 }
355
356 pub fn opacity(&self) -> f32 {
357 self.graphics_layer.alpha
358 }
359
360 pub fn blend_mode(&self) -> BlendMode {
361 self.graphics_layer.blend_mode
362 }
363
364 pub fn color_filter(&self) -> Option<ColorFilter> {
365 self.graphics_layer.color_filter
366 }
367
368 pub fn target_content_hash(&self) -> u64 {
369 if self.cache_hashes_valid {
370 self.cache_hashes.target_content
371 } else {
372 crate::graph_hash::layer_raster_cache_hashes(self).target_content
373 }
374 }
375
376 pub fn motion_source_content_hash(&self) -> u64 {
377 crate::graph_hash::layer_motion_source_content_hash(self)
378 }
379
380 pub fn effect_hash(&self) -> u64 {
381 if self.cache_hashes_valid {
382 self.cache_hashes.effect
383 } else {
384 crate::graph_hash::layer_raster_cache_hashes(self).effect
385 }
386 }
387
388 pub fn recompute_raster_cache_hashes(&mut self) {
389 crate::graph_hash::recompute_layer_raster_cache_hashes(self);
390 }
391}
392
393#[derive(Clone)]
394pub enum RenderNode {
395 Primitive(PrimitiveEntry),
396 DrawRun(DrawRunNode),
403 Layer(Box<LayerNode>),
404}
405
406#[derive(Clone, Copy, Debug, PartialEq, Eq, Hash)]
415pub struct DrawCommandId {
416 pub node_id: NodeId,
417 pub command_index: u32,
418 pub placement: DrawPlacement,
419}
420
421#[derive(Clone, Debug, PartialEq)]
422pub struct DrawRunNode {
423 pub phase: PrimitivePhase,
424 pub command: Option<DrawCommandId>,
427 pub primitives: std::rc::Rc<Vec<DrawPrimitive>>,
433 pub summary: DrawRunSummary,
439 pub replay: Option<Box<cranpose_ui_graphics::CommandReplayFrame>>,
446}
447
448impl DrawRunNode {
449 pub fn new(phase: PrimitivePhase, primitives: Vec<DrawPrimitive>) -> Self {
450 Self::for_command(phase, None, primitives)
451 }
452
453 pub fn for_command(
454 phase: PrimitivePhase,
455 command: Option<DrawCommandId>,
456 primitives: Vec<DrawPrimitive>,
457 ) -> Self {
458 Self::for_command_shared(phase, command, std::rc::Rc::new(primitives))
459 }
460
461 pub fn for_command_shared(
462 phase: PrimitivePhase,
463 command: Option<DrawCommandId>,
464 primitives: std::rc::Rc<Vec<DrawPrimitive>>,
465 ) -> Self {
466 Self::for_command_replayed(phase, command, primitives, None)
467 }
468
469 pub fn for_command_replayed(
470 phase: PrimitivePhase,
471 command: Option<DrawCommandId>,
472 primitives: std::rc::Rc<Vec<DrawPrimitive>>,
473 replay: Option<Box<cranpose_ui_graphics::CommandReplayFrame>>,
474 ) -> Self {
475 debug_assert!(
476 replay.as_ref().is_none_or(|frame| {
477 frame.fallback.is_some()
478 || !frame.spans.iter().any(|span| {
479 matches!(
480 span,
481 cranpose_ui_graphics::FrameSpan::Retained {
482 capture: false,
483 range,
484 ..
485 } if range.1 <= range.0
486 )
487 })
488 }),
489 "a replay frame with bypassed spans must own its fallback recording"
490 );
491 let mut summary = DrawRunSummary::scan(&primitives);
492 if replay.as_ref().is_some_and(|frame| {
493 frame
494 .spans
495 .iter()
496 .any(|span| matches!(span, cranpose_ui_graphics::FrameSpan::Retained { .. }))
497 }) {
498 summary.has_non_shadow = true;
499 }
500 Self {
501 phase,
502 command,
503 primitives,
504 summary,
505 replay,
506 }
507 }
508}
509
510#[derive(Clone, Copy, Debug, Default, PartialEq, Eq)]
513pub struct DrawRunSummary {
514 pub has_text: bool,
517 pub has_shadow: bool,
518 pub has_non_shadow: bool,
520 pub has_pixel_sensitive: bool,
523}
524
525impl DrawRunSummary {
526 pub fn scan(primitives: &[DrawPrimitive]) -> Self {
527 fn unwrap_blend(mut primitive: &DrawPrimitive) -> &DrawPrimitive {
528 while let DrawPrimitive::Blend {
529 primitive: inner, ..
530 } = primitive
531 {
532 primitive = inner;
533 }
534 primitive
535 }
536 let mut summary = Self::default();
537 for primitive in primitives {
538 if matches!(primitive, DrawPrimitive::Shadow(_)) {
539 summary.has_shadow = true;
540 continue;
541 }
542 summary.has_non_shadow = true;
543 match unwrap_blend(primitive) {
544 DrawPrimitive::Text(_) => {
545 summary.has_text = true;
546 summary.has_pixel_sensitive = true;
547 }
548 DrawPrimitive::Image { .. } => summary.has_pixel_sensitive = true,
549 _ => {}
550 }
551 }
552 summary
553 }
554}
555
556#[derive(Clone)]
557pub struct RenderGraph {
558 pub root: LayerNode,
559}
560
561impl RenderGraph {
562 pub fn new(mut root: LayerNode) -> Self {
563 root.recompute_raster_cache_hashes();
564 Self { root }
565 }
566
567 pub fn node_count(&self) -> usize {
568 fn count_layer(layer: &LayerNode) -> usize {
569 1 + layer
570 .children
571 .iter()
572 .map(|child| match child {
573 RenderNode::Primitive(_) => 1,
574 RenderNode::DrawRun(run) => run.primitives.len(),
575 RenderNode::Layer(child_layer) => count_layer(child_layer),
576 })
577 .sum::<usize>()
578 }
579
580 count_layer(&self.root)
581 }
582
583 pub fn heap_bytes(&self) -> usize {
584 layer_heap_bytes(&self.root)
585 }
586
587 pub fn retained_visual_observation_nodes(&self) -> HashSet<NodeId> {
588 fn collect(layer: &LayerNode, nodes: &mut HashSet<NodeId>) {
589 if let Some(node_id) = layer.node_id {
590 nodes.insert(node_id);
591 }
592 for child in &layer.children {
593 match child {
594 RenderNode::DrawRun(run) => {
595 if let Some(command) = run.command {
596 nodes.insert(command.node_id);
597 }
598 }
599 RenderNode::Layer(child) => collect(child, nodes),
600 RenderNode::Primitive(_) => {}
601 }
602 }
603 }
604
605 let mut nodes = HashSet::new();
606 collect(&self.root, &mut nodes);
607 nodes
608 }
609}
610
611fn layer_heap_bytes(layer: &LayerNode) -> usize {
612 layer.hit_test.as_ref().map_or(0, hit_test_heap_bytes)
613 + size_of::<RenderNode>() * layer.children.capacity()
614 + layer
615 .children
616 .iter()
617 .map(render_node_heap_bytes)
618 .sum::<usize>()
619}
620
621fn render_node_heap_bytes(node: &RenderNode) -> usize {
622 match node {
623 RenderNode::Primitive(entry) => primitive_entry_heap_bytes(entry),
624 RenderNode::DrawRun(run) => {
625 size_of::<DrawPrimitive>() * run.primitives.capacity()
626 + run
627 .primitives
628 .iter()
629 .map(draw_primitive_heap_bytes)
630 .sum::<usize>()
631 }
632 RenderNode::Layer(layer) => size_of::<LayerNode>() + layer_heap_bytes(layer),
633 }
634}
635
636fn primitive_entry_heap_bytes(entry: &PrimitiveEntry) -> usize {
637 match &entry.node {
638 PrimitiveNode::Draw(draw) => draw_primitive_heap_bytes(&draw.primitive),
639 PrimitiveNode::Text(text) => {
640 size_of::<TextPrimitiveNode>() + annotated_string_heap_bytes(&text.text)
641 }
642 }
643}
644
645fn draw_primitive_heap_bytes(primitive: &DrawPrimitive) -> usize {
646 match primitive {
647 DrawPrimitive::Content
648 | DrawPrimitive::Rect { .. }
649 | DrawPrimitive::RoundRect { .. }
650 | DrawPrimitive::Arc { .. } => 0,
651 DrawPrimitive::Blend { primitive, .. } => {
652 size_of::<DrawPrimitive>() + draw_primitive_heap_bytes(primitive)
653 }
654 DrawPrimitive::Image { .. } => 0,
655 DrawPrimitive::Text(text) => {
656 size_of::<cranpose_ui_graphics::TextPrimitive>()
657 + text.text.len()
658 + text
659 .style
660 .font_family
661 .as_ref()
662 .map_or(0, |family| family.capacity())
663 }
664 DrawPrimitive::Shadow(shadow) => shadow_primitive_heap_bytes(shadow),
665 }
666}
667
668fn shadow_primitive_heap_bytes(shadow: &ShadowPrimitive) -> usize {
669 match shadow {
670 ShadowPrimitive::Drop { shape, .. } => {
671 size_of::<DrawPrimitive>() + draw_primitive_heap_bytes(shape)
672 }
673 ShadowPrimitive::Inner { fill, cutout, .. } => {
674 size_of::<DrawPrimitive>() * 2
675 + draw_primitive_heap_bytes(fill)
676 + draw_primitive_heap_bytes(cutout)
677 }
678 }
679}
680
681fn annotated_string_heap_bytes(text: &AnnotatedString) -> usize {
682 text.text.capacity()
683 + text.span_styles.capacity() * size_of::<usize>() * 2
684 + text.paragraph_styles.capacity() * size_of::<usize>() * 2
685 + text.string_annotations.capacity() * size_of::<usize>() * 2
686 + text.link_annotations.capacity() * size_of::<usize>() * 2
687 + text
688 .string_annotations
689 .iter()
690 .map(|annotation| {
691 annotation.item.tag.capacity() + annotation.item.annotation.capacity()
692 })
693 .sum::<usize>()
694 + text
695 .link_annotations
696 .iter()
697 .map(|annotation| match &annotation.item {
698 cranpose_ui::text::LinkAnnotation::Url(url) => url.capacity(),
699 cranpose_ui::text::LinkAnnotation::Clickable { tag, .. } => tag.capacity(),
700 })
701 .sum::<usize>()
702}
703
704fn hit_test_heap_bytes(hit_test: &HitTestNode) -> usize {
705 hit_test.click_actions.capacity() * size_of::<Rc<dyn Fn(Point)>>()
706 + hit_test.pointer_inputs.capacity() * size_of::<Rc<dyn Fn(PointerEvent)>>()
707}
708
709pub fn quad_bounds(quad: [[f32; 2]; 4]) -> Rect {
710 let mut min_x = f32::INFINITY;
711 let mut min_y = f32::INFINITY;
712 let mut max_x = f32::NEG_INFINITY;
713 let mut max_y = f32::NEG_INFINITY;
714
715 for [x, y] in quad {
716 min_x = min_x.min(x);
717 min_y = min_y.min(y);
718 max_x = max_x.max(x);
719 max_y = max_y.max(y);
720 }
721
722 Rect {
723 x: min_x,
724 y: min_y,
725 width: (max_x - min_x).max(0.0),
726 height: (max_y - min_y).max(0.0),
727 }
728}
729
730fn multiply_matrices(lhs: [[f32; 3]; 3], rhs: [[f32; 3]; 3]) -> [[f32; 3]; 3] {
731 let mut out = [[0.0; 3]; 3];
732 for row in 0..3 {
733 for col in 0..3 {
734 out[row][col] =
735 lhs[row][0] * rhs[0][col] + lhs[row][1] * rhs[1][col] + lhs[row][2] * rhs[2][col];
736 }
737 }
738 out
739}
740
741fn solve_homography(source: [[f32; 2]; 4], target: [[f32; 2]; 4]) -> Option<[f32; 8]> {
742 let mut matrix = [[0.0f32; 9]; 8];
743 for (index, (src, dst)) in source.into_iter().zip(target).enumerate() {
744 let row = index * 2;
745 let x = src[0];
746 let y = src[1];
747 let u = dst[0];
748 let v = dst[1];
749
750 matrix[row] = [x, y, 1.0, 0.0, 0.0, 0.0, -u * x, -u * y, u];
751 matrix[row + 1] = [0.0, 0.0, 0.0, x, y, 1.0, -v * x, -v * y, v];
752 }
753
754 for pivot in 0..8 {
755 let mut pivot_row = pivot;
756 let mut pivot_value = matrix[pivot][pivot].abs();
757 let mut candidate = pivot + 1;
758 while candidate < 8 {
759 let candidate_value = matrix[candidate][pivot].abs();
760 if candidate_value > pivot_value {
761 pivot_row = candidate;
762 pivot_value = candidate_value;
763 }
764 candidate += 1;
765 }
766
767 if pivot_value <= f32::EPSILON {
768 return None;
769 }
770
771 if pivot_row != pivot {
772 matrix.swap(pivot, pivot_row);
773 }
774
775 let divisor = matrix[pivot][pivot];
776 let mut col = pivot;
777 while col < 9 {
778 matrix[pivot][col] /= divisor;
779 col += 1;
780 }
781
782 for row in 0..8 {
783 if row == pivot {
784 continue;
785 }
786 let factor = matrix[row][pivot];
787 if factor.abs() <= f32::EPSILON {
788 continue;
789 }
790 let mut col = pivot;
791 while col < 9 {
792 matrix[row][col] -= factor * matrix[pivot][col];
793 col += 1;
794 }
795 }
796 }
797
798 let mut solution = [0.0f32; 8];
799 for index in 0..8 {
800 solution[index] = matrix[index][8];
801 }
802 Some(solution)
803}
804
805#[cfg(test)]
806mod tests {
807 use cranpose_ui_graphics::{Brush, Color, DrawPrimitive};
808
809 use super::*;
810
811 fn test_layer(local_bounds: Rect, children: Vec<RenderNode>) -> LayerNode {
812 LayerNode {
813 local_bounds,
814 children,
815 ..Default::default()
816 }
817 }
818
819 #[test]
820 fn projective_transform_translation_maps_points() {
821 let transform = ProjectiveTransform::translation(7.0, -3.5);
822 let mapped = transform.map_point(Point { x: 2.0, y: 4.0 });
823 assert!((mapped.x - 9.0).abs() < 1e-6);
824 assert!((mapped.y - 0.5).abs() < 1e-6);
825 }
826
827 #[test]
828 fn projective_transform_then_composes_in_parent_order() {
829 let child = ProjectiveTransform::translation(4.0, 2.0);
830 let parent = ProjectiveTransform::translation(10.0, -1.0);
831 let composed = child.then(parent);
832 let mapped = composed.map_point(Point { x: 1.0, y: 1.0 });
833 assert!((mapped.x - 15.0).abs() < 1e-6);
834 assert!((mapped.y - 2.0).abs() < 1e-6);
835 }
836
837 #[test]
838 fn homography_maps_rect_corners_to_target_quad() {
839 let rect = Rect {
840 x: 0.0,
841 y: 0.0,
842 width: 20.0,
843 height: 10.0,
844 };
845 let quad = [[5.0, 7.0], [25.0, 6.0], [7.0, 20.0], [28.0, 21.0]];
846 let transform = ProjectiveTransform::from_rect_to_quad(rect, quad);
847 let mapped = transform.map_rect(rect);
848 for (expected, actual) in quad.into_iter().zip(mapped) {
849 assert!((expected[0] - actual[0]).abs() < 1e-4);
850 assert!((expected[1] - actual[1]).abs() < 1e-4);
851 }
852 }
853
854 #[test]
855 fn axis_aligned_rect_to_quad_keeps_exact_affine_matrix() {
856 let rect = Rect {
857 x: 2.0,
858 y: 3.0,
859 width: 20.0,
860 height: 10.0,
861 };
862 let quad = [[12.0, 9.0], [32.0, 9.0], [12.0, 19.0], [32.0, 19.0]];
863 let transform = ProjectiveTransform::from_rect_to_quad(rect, quad);
864
865 assert_eq!(
866 transform.matrix(),
867 [[1.0, 0.0, 10.0], [0.0, 1.0, 6.0], [0.0, 0.0, 1.0]]
868 );
869 }
870
871 #[test]
872 fn axis_aligned_rect_to_quad_keeps_exact_axis_aligned_scale() {
873 let rect = Rect {
874 x: 4.0,
875 y: 6.0,
876 width: 10.0,
877 height: 8.0,
878 };
879 let quad = [[20.0, 18.0], [50.0, 18.0], [20.0, 42.0], [50.0, 42.0]];
880 let transform = ProjectiveTransform::from_rect_to_quad(rect, quad);
881
882 assert_eq!(
883 transform.matrix(),
884 [[3.0, 0.0, 8.0], [0.0, 3.0, 0.0], [0.0, 0.0, 1.0]]
885 );
886 }
887
888 #[test]
889 fn retained_visual_observation_nodes_collect_layers_and_command_owners() {
890 let bounds = Rect {
891 x: 0.0,
892 y: 0.0,
893 width: 20.0,
894 height: 20.0,
895 };
896 let command = |node_id| DrawCommandId {
897 node_id,
898 command_index: 0,
899 placement: DrawPlacement::Behind,
900 };
901 let mut child = test_layer(
902 bounds,
903 vec![RenderNode::DrawRun(DrawRunNode::for_command(
904 PrimitivePhase::BeforeChildren,
905 Some(command(17)),
906 Vec::new(),
907 ))],
908 );
909 child.node_id = Some(13);
910 let mut root = test_layer(
911 bounds,
912 vec![
913 RenderNode::DrawRun(DrawRunNode::for_command(
914 PrimitivePhase::BeforeChildren,
915 Some(command(9)),
916 Vec::new(),
917 )),
918 RenderNode::DrawRun(DrawRunNode::new(PrimitivePhase::BeforeChildren, Vec::new())),
919 RenderNode::Layer(Box::new(child)),
920 ],
921 );
922
923 root.node_id = Some(5);
924
925 assert_eq!(
926 RenderGraph::new(root).retained_visual_observation_nodes(),
927 HashSet::from([5, 9, 13, 17])
928 );
929 }
930
931 #[test]
932 fn render_graph_new_recomputes_manual_layer_hashes() {
933 let primitive = PrimitiveEntry {
934 phase: PrimitivePhase::BeforeChildren,
935 node: PrimitiveNode::Draw(DrawPrimitiveNode {
936 primitive: DrawPrimitive::Rect {
937 rect: Rect {
938 x: 1.0,
939 y: 2.0,
940 width: 8.0,
941 height: 6.0,
942 },
943 brush: Brush::solid(Color::WHITE),
944 stroke: None,
945 },
946 clip: None,
947 }),
948 };
949 let mut root = test_layer(
950 Rect {
951 x: 0.0,
952 y: 0.0,
953 width: 20.0,
954 height: 20.0,
955 },
956 vec![RenderNode::Primitive(primitive)],
957 );
958 root.graphics_layer.render_effect = Some(RenderEffect::blur(3.0));
959 let mut expected = root.clone();
960 expected.recompute_raster_cache_hashes();
961
962 let graph = RenderGraph::new(root);
963 assert_eq!(
964 graph.root.target_content_hash(),
965 expected.target_content_hash()
966 );
967 assert_eq!(graph.root.effect_hash(), expected.effect_hash());
968 }
969
970 #[test]
971 fn motion_source_content_hash_ignores_translated_content_offset() {
972 let primitive = PrimitiveEntry {
973 phase: PrimitivePhase::BeforeChildren,
974 node: PrimitiveNode::Draw(DrawPrimitiveNode {
975 primitive: DrawPrimitive::Rect {
976 rect: Rect {
977 x: 1.0,
978 y: 2.0,
979 width: 8.0,
980 height: 6.0,
981 },
982 brush: Brush::solid(Color::WHITE),
983 stroke: None,
984 },
985 clip: None,
986 }),
987 };
988 let mut base = test_layer(
989 Rect {
990 x: 0.0,
991 y: 0.0,
992 width: 20.0,
993 height: 20.0,
994 },
995 vec![RenderNode::Primitive(primitive)],
996 );
997 base.translated_content_context = true;
998 base.translated_content_offset = Point::new(0.0, -24.0);
999 base.recompute_raster_cache_hashes();
1000
1001 let mut moved = base.clone();
1002 moved.translated_content_offset = Point::new(0.0, -72.0);
1003 moved.recompute_raster_cache_hashes();
1004
1005 assert_ne!(base.target_content_hash(), moved.target_content_hash());
1006 assert_eq!(
1007 base.motion_source_content_hash(),
1008 moved.motion_source_content_hash()
1009 );
1010 }
1011}