1#![allow(non_snake_case)]
4#![allow(clippy::too_many_arguments)]
5
6#[cfg(feature = "svg")]
7use std::sync::{Mutex, MutexGuard};
8use std::{
9 hash::{Hash, Hasher},
10 sync::Arc,
11};
12
13use cranpose_core::NodeId;
14use cranpose_ui_graphics::{ColorFilter, DrawScope, ImageBitmap, ImageSampling};
15use cranpose_ui_layout::{Constraints, MeasurePolicy, MeasureResult, MeasureScope, Placement};
16use thiserror::Error;
17
18use crate::{
19 composable,
20 layout::core::{Alignment, Measurable},
21 modifier::{Modifier, Rect, Size},
22 nine_patch::{NinePatchInsets, PatchFill, PatchQuad, nine_patch_quads, tile_quads},
23 widgets::Layout,
24};
25
26#[cfg(feature = "svg")]
27#[path = "image_svg.rs"]
28mod image_svg;
29
30pub const DEFAULT_ALPHA: f32 = 1.0;
31#[cfg(feature = "svg")]
32const SVG_RASTER_CACHE_LIMIT: usize = 8;
33
34#[derive(Clone, Copy, Debug, PartialEq)]
35pub enum ContentScale {
36 Fit,
37 Crop,
38 FillBounds,
39 FillWidth,
40 FillHeight,
41 Inside,
42 None,
43}
44
45impl ContentScale {
46 pub fn scaled_size(self, src_size: Size, dst_size: Size) -> Size {
47 if src_size.width <= 0.0
48 || src_size.height <= 0.0
49 || dst_size.width <= 0.0
50 || dst_size.height <= 0.0
51 {
52 return Size::ZERO;
53 }
54
55 let scale_x = dst_size.width / src_size.width;
56 let scale_y = dst_size.height / src_size.height;
57
58 let (factor_x, factor_y) = match self {
59 Self::Fit => {
60 let factor = scale_x.min(scale_y);
61 (factor, factor)
62 }
63 Self::Crop => {
64 let factor = scale_x.max(scale_y);
65 (factor, factor)
66 }
67 Self::FillBounds => (scale_x, scale_y),
68 Self::FillWidth => (scale_x, scale_x),
69 Self::FillHeight => (scale_y, scale_y),
70 Self::Inside => {
71 if src_size.width <= dst_size.width && src_size.height <= dst_size.height {
72 (1.0, 1.0)
73 } else {
74 let factor = scale_x.min(scale_y);
75 (factor, factor)
76 }
77 }
78 Self::None => (1.0, 1.0),
79 };
80
81 Size {
82 width: src_size.width * factor_x,
83 height: src_size.height * factor_y,
84 }
85 }
86}
87
88#[derive(Clone, Debug, PartialEq, Eq, Hash)]
89pub struct Painter {
90 kind: PainterKind,
91}
92
93#[derive(Clone, Debug, PartialEq, Eq, Hash)]
94enum PainterKind {
95 Bitmap(ImageBitmap),
96 BitmapRegion {
97 bitmap: ImageBitmap,
98 source: Quad,
99 sampling: ImageSampling,
100 },
101 BitmapTiled {
104 bitmap: ImageBitmap,
105 source: Quad,
106 sampling: ImageSampling,
107 },
108 NinePatch {
110 bitmap: ImageBitmap,
111 source: Quad,
112 insets: Quad,
113 center: PatchFill,
114 edges: PatchFill,
115 sampling: ImageSampling,
116 },
117 Svg(SvgPainter),
118}
119
120#[derive(Clone, Copy, Debug, PartialEq, Eq, Hash)]
127struct Quad {
128 a: u32,
129 b: u32,
130 c: u32,
131 d: u32,
132}
133
134impl Quad {
135 fn of(a: f32, b: f32, c: f32, d: f32) -> Self {
136 Self {
137 a: a.to_bits(),
138 b: b.to_bits(),
139 c: c.to_bits(),
140 d: d.to_bits(),
141 }
142 }
143
144 fn values(self) -> (f32, f32, f32, f32) {
145 (
146 f32::from_bits(self.a),
147 f32::from_bits(self.b),
148 f32::from_bits(self.c),
149 f32::from_bits(self.d),
150 )
151 }
152
153 fn from_rect(source: Rect) -> Self {
154 Self::of(source.x, source.y, source.width, source.height)
155 }
156
157 fn rect(self) -> Rect {
158 let (x, y, width, height) = self.values();
159 Rect {
160 x,
161 y,
162 width,
163 height,
164 }
165 }
166
167 fn from_insets(insets: NinePatchInsets) -> Self {
168 Self::of(insets.left, insets.top, insets.right, insets.bottom)
169 }
170
171 fn insets(self) -> NinePatchInsets {
172 let (left, top, right, bottom) = self.values();
173 NinePatchInsets::new(left, top, right, bottom)
174 }
175}
176
177impl Painter {
178 pub fn from_bitmap(bitmap: ImageBitmap) -> Self {
179 Self {
180 kind: PainterKind::Bitmap(bitmap),
181 }
182 }
183
184 pub fn from_bitmap_region(bitmap: ImageBitmap, source: Rect, sampling: ImageSampling) -> Self {
186 Self {
187 kind: PainterKind::BitmapRegion {
188 bitmap,
189 source: Quad::from_rect(source),
190 sampling,
191 },
192 }
193 }
194
195 pub fn from_bitmap_tiled(bitmap: ImageBitmap, source: Rect, sampling: ImageSampling) -> Self {
202 Self {
203 kind: PainterKind::BitmapTiled {
204 bitmap,
205 source: Quad::from_rect(source),
206 sampling,
207 },
208 }
209 }
210
211 pub fn from_nine_patch(
220 bitmap: ImageBitmap,
221 source: Rect,
222 insets: NinePatchInsets,
223 center: PatchFill,
224 edges: PatchFill,
225 sampling: ImageSampling,
226 ) -> Self {
227 Self {
228 kind: PainterKind::NinePatch {
229 bitmap,
230 source: Quad::from_rect(source),
231 insets: Quad::from_insets(insets),
232 center,
233 edges,
234 sampling,
235 },
236 }
237 }
238
239 pub fn from_svg(svg: SvgPainter) -> Self {
240 Self {
241 kind: PainterKind::Svg(svg),
242 }
243 }
244
245 pub fn intrinsic_size(&self) -> Size {
246 match &self.kind {
247 PainterKind::Bitmap(bitmap) => bitmap.intrinsic_size(),
248 PainterKind::BitmapRegion { source, .. }
249 | PainterKind::BitmapTiled { source, .. }
250 | PainterKind::NinePatch { source, .. } => {
251 let source = source.rect();
252 Size::new(source.width.max(0.0), source.height.max(0.0))
253 }
254 PainterKind::Svg(svg) => svg.intrinsic_size(),
255 }
256 }
257
258 pub fn as_bitmap(&self) -> Option<&ImageBitmap> {
259 match &self.kind {
260 PainterKind::Bitmap(bitmap) => Some(bitmap),
261 PainterKind::BitmapRegion { bitmap, .. }
262 | PainterKind::BitmapTiled { bitmap, .. }
263 | PainterKind::NinePatch { bitmap, .. } => Some(bitmap),
264 PainterKind::Svg(_) => None,
265 }
266 }
267
268 pub fn bitmap(&self) -> Option<&ImageBitmap> {
270 self.as_bitmap()
271 }
272}
273
274impl From<ImageBitmap> for Painter {
275 fn from(value: ImageBitmap) -> Self {
276 Self::from_bitmap(value)
277 }
278}
279
280impl From<SvgPainter> for Painter {
281 fn from(value: SvgPainter) -> Self {
282 Self::from_svg(value)
283 }
284}
285
286pub fn BitmapPainter(bitmap: ImageBitmap) -> Painter {
287 Painter::from_bitmap(bitmap)
288}
289
290pub fn BitmapRegionPainter(bitmap: ImageBitmap, source: Rect, sampling: ImageSampling) -> Painter {
292 Painter::from_bitmap_region(bitmap, source, sampling)
293}
294
295pub fn TiledPainter(bitmap: ImageBitmap, source: Rect, sampling: ImageSampling) -> Painter {
297 Painter::from_bitmap_tiled(bitmap, source, sampling)
298}
299
300pub fn NinePatchPainter(
302 bitmap: ImageBitmap,
303 source: Rect,
304 insets: NinePatchInsets,
305 center: PatchFill,
306 edges: PatchFill,
307 sampling: ImageSampling,
308) -> Painter {
309 Painter::from_nine_patch(bitmap, source, insets, center, edges, sampling)
310}
311
312#[derive(Debug, Clone, PartialEq, Eq, Error)]
314pub enum SvgPainterError {
315 #[error("SVG support is disabled; enable the cranpose-ui `svg` feature")]
316 SvgFeatureDisabled,
317 #[error("failed to parse SVG: {0}")]
318 Parse(String),
319 #[error("SVG raster dimensions must be greater than zero")]
320 InvalidRasterDimensions,
321 #[error("SVG raster dimensions are too large")]
322 RasterDimensionsTooLarge,
323 #[error("failed to allocate SVG raster {width}x{height}")]
324 RasterAllocationFailed { width: u32, height: u32 },
325 #[error("SVG raster cache is unavailable")]
326 RasterCacheUnavailable,
327 #[error(transparent)]
328 ImageBitmap(#[from] cranpose_ui_graphics::ImageBitmapError),
329}
330
331#[derive(Clone)]
333pub struct SvgPainter {
334 inner: Arc<SvgPainterInner>,
335}
336
337struct SvgPainterInner {
338 #[cfg(feature = "svg")]
339 document: image_svg::SvgDocument,
340 intrinsic_size: Size,
341 #[cfg(feature = "svg")]
342 cache: Mutex<SvgRasterCache>,
343}
344
345#[derive(Clone, Copy, Debug, PartialEq, Eq, Hash)]
346#[cfg(feature = "svg")]
347struct SvgRasterKey {
348 width: u32,
349 height: u32,
350}
351
352#[derive(Clone, Debug)]
353#[cfg(feature = "svg")]
354struct SvgRasterEntry {
355 key: SvgRasterKey,
356 bitmap: ImageBitmap,
357}
358
359#[derive(Default, Debug)]
360#[cfg(feature = "svg")]
361struct SvgRasterCache {
362 entries: Vec<SvgRasterEntry>,
363}
364
365impl SvgPainter {
366 pub fn from_bytes(bytes: &[u8]) -> Result<Self, SvgPainterError> {
367 #[cfg(not(feature = "svg"))]
368 {
369 let _ = bytes;
370 Err(SvgPainterError::SvgFeatureDisabled)
371 }
372 #[cfg(feature = "svg")]
373 {
374 let document = image_svg::parse_svg_document(bytes)?;
375 let intrinsic_size = document.intrinsic_size();
376
377 Ok(Self {
378 inner: Arc::new(SvgPainterInner {
379 document,
380 intrinsic_size,
381 cache: Mutex::new(SvgRasterCache::default()),
382 }),
383 })
384 }
385 }
386
387 pub fn id(&self) -> u64 {
388 Arc::as_ptr(&self.inner) as usize as u64
389 }
390
391 pub fn intrinsic_size(&self) -> Size {
392 self.inner.intrinsic_size
393 }
394
395 pub fn rasterize(&self, pixel_size: Size) -> Result<ImageBitmap, SvgPainterError> {
396 #[cfg(not(feature = "svg"))]
397 {
398 let _ = pixel_size;
399 Err(SvgPainterError::SvgFeatureDisabled)
400 }
401 #[cfg(feature = "svg")]
402 {
403 let key = svg_raster_key(pixel_size)?;
404 if let Some(bitmap) = self.cached_bitmap(key)? {
405 return Ok(bitmap);
406 }
407
408 let bitmap = self.rasterize_uncached(key)?;
409 self.cache_bitmap(key, bitmap.clone())?;
410 Ok(bitmap)
411 }
412 }
413
414 #[cfg(feature = "svg")]
415 fn cached_bitmap(&self, key: SvgRasterKey) -> Result<Option<ImageBitmap>, SvgPainterError> {
416 let mut cache = self.lock_cache();
417 Ok(cache.get(key))
418 }
419
420 #[cfg(feature = "svg")]
421 fn cache_bitmap(&self, key: SvgRasterKey, bitmap: ImageBitmap) -> Result<(), SvgPainterError> {
422 let mut cache = self.lock_cache();
423 cache.insert(key, bitmap);
424 Ok(())
425 }
426
427 #[cfg(feature = "svg")]
428 fn lock_cache(&self) -> MutexGuard<'_, SvgRasterCache> {
429 self.inner
430 .cache
431 .lock()
432 .unwrap_or_else(std::sync::PoisonError::into_inner)
433 }
434
435 #[cfg(feature = "svg")]
436 fn rasterize_uncached(&self, key: SvgRasterKey) -> Result<ImageBitmap, SvgPainterError> {
437 (key.width as usize)
438 .checked_mul(key.height as usize)
439 .and_then(|value| value.checked_mul(4))
440 .ok_or(SvgPainterError::RasterDimensionsTooLarge)?;
441
442 let mut pixmap = tiny_skia::Pixmap::new(key.width, key.height).ok_or(
443 SvgPainterError::RasterAllocationFailed {
444 width: key.width,
445 height: key.height,
446 },
447 )?;
448 image_svg::rasterize_svg_document(&self.inner.document, &mut pixmap);
449 let pixels = image_svg::demultiplied_rgba_pixels(&pixmap);
450 Ok(ImageBitmap::from_rgba8(key.width, key.height, pixels)?)
451 }
452}
453
454impl std::fmt::Debug for SvgPainter {
455 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
456 f.debug_struct("SvgPainter")
457 .field("id", &self.id())
458 .field("intrinsic_size", &self.intrinsic_size())
459 .finish_non_exhaustive()
460 }
461}
462
463impl PartialEq for SvgPainter {
464 fn eq(&self, other: &Self) -> bool {
465 self.id() == other.id()
466 }
467}
468
469impl Eq for SvgPainter {}
470
471impl Hash for SvgPainter {
472 fn hash<H: Hasher>(&self, state: &mut H) {
473 self.id().hash(state);
474 }
475}
476
477#[cfg(feature = "svg")]
478impl SvgRasterCache {
479 fn get(&mut self, key: SvgRasterKey) -> Option<ImageBitmap> {
480 let position = self.entries.iter().position(|entry| entry.key == key)?;
481 let entry = self.entries.remove(position);
482 let bitmap = entry.bitmap.clone();
483 self.entries.push(entry);
484 Some(bitmap)
485 }
486
487 fn insert(&mut self, key: SvgRasterKey, bitmap: ImageBitmap) {
488 if let Some(position) = self.entries.iter().position(|entry| entry.key == key) {
489 self.entries.remove(position);
490 } else if self.entries.len() >= SVG_RASTER_CACHE_LIMIT {
491 self.entries.remove(0);
492 }
493 self.entries.push(SvgRasterEntry { key, bitmap });
494 }
495}
496
497#[derive(Clone, Copy, Debug, PartialEq, Eq, Hash)]
498struct SvgBytesKey {
499 ptr: usize,
500 len: usize,
501}
502
503impl SvgBytesKey {
504 fn new(bytes: &'static [u8]) -> Self {
505 Self {
506 ptr: bytes.as_ptr() as usize,
507 len: bytes.len(),
508 }
509 }
510}
511
512pub fn rememberSvg(bytes: &'static [u8]) -> Result<SvgPainter, SvgPainterError> {
513 let key = SvgBytesKey::new(bytes);
514 cranpose_core::withCurrentComposer(|composer| {
515 composer.with_key(&key, |composer| {
516 composer
517 .remember(|| SvgPainter::from_bytes(bytes))
518 .with(Clone::clone)
519 })
520 })
521}
522
523#[derive(Clone, Debug, PartialEq)]
530struct ImageMeasurePolicy {
531 intrinsic_size: Size,
532}
533
534impl MeasurePolicy for ImageMeasurePolicy {
535 fn measure(
536 &self,
537 scope: &dyn MeasureScope,
538 _measurables: &[Box<dyn Measurable>],
539 constraints: Constraints,
540 ) -> MeasureResult {
541 let mut placements = Vec::new();
542 let size = self.measure_into(scope, &[], constraints, &mut placements);
543 MeasureResult::new(size, placements)
544 }
545
546 fn measure_into(
547 &self,
548 _scope: &dyn MeasureScope,
549 _measurables: &[Box<dyn Measurable>],
550 constraints: Constraints,
551 placements: &mut Vec<Placement>,
552 ) -> Size {
553 placements.clear();
554 let iw = self.intrinsic_size.width;
555 let ih = self.intrinsic_size.height;
556
557 if iw <= 0.0 || ih <= 0.0 {
558 let (w, h) = constraints.constrain(0.0, 0.0);
559 return Size {
560 width: w,
561 height: h,
562 };
563 }
564
565 let cw = iw.clamp(constraints.min_width, constraints.max_width);
566 let ch = ih.clamp(constraints.min_height, constraints.max_height);
567
568 let scale_x = cw / iw;
569 let scale_y = ch / ih;
570
571 let (width, height) = if scale_x < 1.0 || scale_y < 1.0 {
572 let factor = scale_x.min(scale_y);
573 let w = (iw * factor).clamp(constraints.min_width, constraints.max_width);
574 let h = (ih * factor).clamp(constraints.min_height, constraints.max_height);
575 (w, h)
576 } else {
577 (cw, ch)
578 };
579
580 Size { width, height }
581 }
582
583 fn min_intrinsic_width(&self, _measurables: &[Box<dyn Measurable>], _height: f32) -> f32 {
584 self.intrinsic_size.width
585 }
586
587 fn max_intrinsic_width(&self, _measurables: &[Box<dyn Measurable>], _height: f32) -> f32 {
588 self.intrinsic_size.width
589 }
590
591 fn min_intrinsic_height(&self, _measurables: &[Box<dyn Measurable>], _width: f32) -> f32 {
592 self.intrinsic_size.height
593 }
594
595 fn max_intrinsic_height(&self, _measurables: &[Box<dyn Measurable>], _width: f32) -> f32 {
596 self.intrinsic_size.height
597 }
598}
599
600fn destination_rect(
601 src_size: Size,
602 dst_size: Size,
603 alignment: Alignment,
604 content_scale: ContentScale,
605) -> Rect {
606 let draw_size = content_scale.scaled_size(src_size, dst_size);
607 let allows_overflow = content_scale == ContentScale::Crop;
608 let offset_x = aligned_x_offset(
609 alignment.horizontal,
610 dst_size.width,
611 draw_size.width,
612 allows_overflow,
613 );
614 let offset_y = aligned_y_offset(
615 alignment.vertical,
616 dst_size.height,
617 draw_size.height,
618 allows_overflow,
619 );
620 Rect {
621 x: offset_x,
622 y: offset_y,
623 width: draw_size.width,
624 height: draw_size.height,
625 }
626}
627
628fn aligned_x_offset(
629 alignment: cranpose_ui_layout::HorizontalAlignment,
630 available: f32,
631 child: f32,
632 allows_overflow: bool,
633) -> f32 {
634 if !allows_overflow {
635 return alignment.align(available, child);
636 }
637
638 match alignment {
639 cranpose_ui_layout::HorizontalAlignment::Start => 0.0,
640 cranpose_ui_layout::HorizontalAlignment::CenterHorizontally => (available - child) / 2.0,
641 cranpose_ui_layout::HorizontalAlignment::End => available - child,
642 }
643}
644
645fn aligned_y_offset(
646 alignment: cranpose_ui_layout::VerticalAlignment,
647 available: f32,
648 child: f32,
649 allows_overflow: bool,
650) -> f32 {
651 if !allows_overflow {
652 return alignment.align(available, child);
653 }
654
655 match alignment {
656 cranpose_ui_layout::VerticalAlignment::Top => 0.0,
657 cranpose_ui_layout::VerticalAlignment::CenterVertically => (available - child) / 2.0,
658 cranpose_ui_layout::VerticalAlignment::Bottom => available - child,
659 }
660}
661
662fn map_destination_clip_to_source(
663 src_rect: Rect,
664 dst_rect: Rect,
665 clipped_dst_rect: Rect,
666) -> Option<Rect> {
667 if src_rect.width <= 0.0
668 || src_rect.height <= 0.0
669 || dst_rect.width <= 0.0
670 || dst_rect.height <= 0.0
671 || clipped_dst_rect.width <= 0.0
672 || clipped_dst_rect.height <= 0.0
673 {
674 return None;
675 }
676
677 let scale_x = src_rect.width / dst_rect.width;
678 let scale_y = src_rect.height / dst_rect.height;
679
680 let src_min_x = src_rect.x;
681 let src_min_y = src_rect.y;
682 let src_max_x = src_rect.x + src_rect.width;
683 let src_max_y = src_rect.y + src_rect.height;
684
685 let raw_left = src_rect.x + (clipped_dst_rect.x - dst_rect.x) * scale_x;
686 let raw_top = src_rect.y + (clipped_dst_rect.y - dst_rect.y) * scale_y;
687 let raw_right =
688 src_rect.x + ((clipped_dst_rect.x + clipped_dst_rect.width) - dst_rect.x) * scale_x;
689 let raw_bottom =
690 src_rect.y + ((clipped_dst_rect.y + clipped_dst_rect.height) - dst_rect.y) * scale_y;
691
692 let left = raw_left.clamp(src_min_x, src_max_x);
693 let top = raw_top.clamp(src_min_y, src_max_y);
694 let right = raw_right.clamp(src_min_x, src_max_x);
695 let bottom = raw_bottom.clamp(src_min_y, src_max_y);
696 let width = right - left;
697 let height = bottom - top;
698
699 if width <= 0.0 || height <= 0.0 {
700 None
701 } else {
702 Some(Rect {
703 x: left,
704 y: top,
705 width,
706 height,
707 })
708 }
709}
710
711fn image_destination_clip(
712 src_size: Size,
713 container_size: Size,
714 alignment: Alignment,
715 content_scale: ContentScale,
716) -> Option<(Rect, Rect)> {
717 let dst_rect = destination_rect(src_size, container_size, alignment, content_scale);
718 if dst_rect.width <= 0.0 || dst_rect.height <= 0.0 {
719 return None;
720 }
721
722 let container_rect = Rect::from_size(container_size);
723 let clipped_dst_rect = dst_rect.intersect(container_rect)?;
724 Some((dst_rect, clipped_dst_rect))
725}
726
727fn draw_bitmap_painter(
728 scope: &mut dyn DrawScope,
729 bitmap: ImageBitmap,
730 intrinsic_size: Size,
731 alignment: Alignment,
732 content_scale: ContentScale,
733 alpha: f32,
734 color_filter: Option<ColorFilter>,
735) {
736 let container_size = scope.size();
737 let Some((dst_rect, clipped_dst_rect)) =
738 image_destination_clip(intrinsic_size, container_size, alignment, content_scale)
739 else {
740 return;
741 };
742 let full_src_rect = Rect::from_size(Size::new(bitmap.width() as f32, bitmap.height() as f32));
743 let Some(clipped_src_rect) =
744 map_destination_clip_to_source(full_src_rect, dst_rect, clipped_dst_rect)
745 else {
746 return;
747 };
748 scope.draw_image_src_sampled(
749 bitmap,
750 clipped_src_rect,
751 clipped_dst_rect,
752 alpha,
753 color_filter,
754 ImageSampling::Linear,
755 );
756}
757
758fn draw_bitmap_region_painter(
759 scope: &mut dyn DrawScope,
760 bitmap: ImageBitmap,
761 source: Rect,
762 alignment: Alignment,
763 content_scale: ContentScale,
764 alpha: f32,
765 color_filter: Option<ColorFilter>,
766 sampling: ImageSampling,
767) {
768 let source_size = Size::new(source.width.max(0.0), source.height.max(0.0));
769 let Some((dst_rect, clipped_dst_rect)) =
770 image_destination_clip(source_size, scope.size(), alignment, content_scale)
771 else {
772 return;
773 };
774 let Some(clipped_source) = map_destination_clip_to_source(source, dst_rect, clipped_dst_rect)
775 else {
776 return;
777 };
778 scope.draw_image_src_sampled(
779 bitmap,
780 clipped_source,
781 clipped_dst_rect,
782 alpha,
783 color_filter,
784 sampling,
785 );
786}
787
788fn draw_patch_quads(
793 scope: &mut dyn DrawScope,
794 bitmap: &ImageBitmap,
795 quads: &[PatchQuad],
796 container: Rect,
797 alpha: f32,
798 color_filter: Option<ColorFilter>,
799 sampling: ImageSampling,
800) {
801 for quad in quads {
802 let Some(clipped_destination) = intersect(quad.destination, container) else {
803 continue;
804 };
805 let Some(clipped_source) =
806 map_destination_clip_to_source(quad.source, quad.destination, clipped_destination)
807 else {
808 continue;
809 };
810 scope.draw_image_src_sampled(
811 bitmap.clone(),
812 clipped_source,
813 clipped_destination,
814 alpha,
815 color_filter,
816 sampling,
817 );
818 }
819}
820
821fn intersect(rect: Rect, bounds: Rect) -> Option<Rect> {
822 let left = rect.x.max(bounds.x);
823 let top = rect.y.max(bounds.y);
824 let right = (rect.x + rect.width).min(bounds.x + bounds.width);
825 let bottom = (rect.y + rect.height).min(bounds.y + bounds.height);
826 if right <= left || bottom <= top {
827 return None;
828 }
829 Some(Rect {
830 x: left,
831 y: top,
832 width: right - left,
833 height: bottom - top,
834 })
835}
836
837fn draw_bitmap_tiled_painter(
842 scope: &mut dyn DrawScope,
843 bitmap: ImageBitmap,
844 source: Rect,
845 alpha: f32,
846 color_filter: Option<ColorFilter>,
847 sampling: ImageSampling,
848) {
849 let container = Rect::from_size(scope.size());
850 let quads = tile_quads(source, container);
851 draw_patch_quads(
852 scope,
853 &bitmap,
854 &quads,
855 container,
856 alpha,
857 color_filter,
858 sampling,
859 );
860}
861
862#[allow(clippy::too_many_arguments)]
867fn draw_nine_patch_painter(
868 scope: &mut dyn DrawScope,
869 bitmap: ImageBitmap,
870 source: Rect,
871 insets: NinePatchInsets,
872 center: PatchFill,
873 edges: PatchFill,
874 alpha: f32,
875 color_filter: Option<ColorFilter>,
876 sampling: ImageSampling,
877) {
878 let container = Rect::from_size(scope.size());
879 let quads = nine_patch_quads(source, container, insets, center, edges);
880 draw_patch_quads(
881 scope,
882 &bitmap,
883 &quads,
884 container,
885 alpha,
886 color_filter,
887 sampling,
888 );
889}
890
891fn draw_svg_painter(
892 scope: &mut dyn DrawScope,
893 svg: SvgPainter,
894 intrinsic_size: Size,
895 alignment: Alignment,
896 content_scale: ContentScale,
897 alpha: f32,
898 color_filter: Option<ColorFilter>,
899) {
900 let container_size = scope.size();
901 let Some((dst_rect, clipped_dst_rect)) =
902 image_destination_clip(intrinsic_size, container_size, alignment, content_scale)
903 else {
904 return;
905 };
906 let density = crate::render_state::current_density();
907 let pixel_size = Size::new(dst_rect.width * density, dst_rect.height * density);
908 let bitmap = match svg.rasterize(pixel_size) {
909 Ok(bitmap) => bitmap,
910 Err(error) => {
911 log::warn!("failed to rasterize SVG painter: {error}");
912 return;
913 }
914 };
915 let full_src_rect = Rect::from_size(Size::new(bitmap.width() as f32, bitmap.height() as f32));
916 let Some(clipped_src_rect) =
917 map_destination_clip_to_source(full_src_rect, dst_rect, clipped_dst_rect)
918 else {
919 return;
920 };
921 scope.draw_image_src_sampled(
922 bitmap,
923 clipped_src_rect,
924 clipped_dst_rect,
925 alpha,
926 color_filter,
927 ImageSampling::Linear,
928 );
929}
930
931#[cfg(feature = "svg")]
932fn svg_raster_key(pixel_size: Size) -> Result<SvgRasterKey, SvgPainterError> {
933 let width = svg_raster_axis(pixel_size.width)?;
934 let height = svg_raster_axis(pixel_size.height)?;
935 width
936 .checked_mul(height)
937 .and_then(|value| value.checked_mul(4))
938 .ok_or(SvgPainterError::RasterDimensionsTooLarge)?;
939 Ok(SvgRasterKey { width, height })
940}
941
942#[cfg(feature = "svg")]
943fn svg_raster_axis(value: f32) -> Result<u32, SvgPainterError> {
944 if !value.is_finite() || value <= 0.0 {
945 return Err(SvgPainterError::InvalidRasterDimensions);
946 }
947
948 let rounded = value.ceil();
949 if rounded > u32::MAX as f32 {
950 return Err(SvgPainterError::RasterDimensionsTooLarge);
951 }
952 Ok(rounded as u32)
953}
954
955#[composable]
960pub fn Image<P>(
961 painter: P,
962 content_description: Option<String>,
963 modifier: Modifier,
964 alignment: Alignment,
965 content_scale: ContentScale,
966 alpha: f32,
967 color_filter: Option<ColorFilter>,
968) -> NodeId
969where
970 P: Into<Painter> + Clone + PartialEq + 'static,
971{
972 let painter = painter.into();
973 let intrinsic_dp = painter.intrinsic_size();
974 let draw_alpha = alpha.clamp(0.0, 1.0);
975
976 let semantics_modifier = Modifier::empty().semantics(move |config| {
977 config.content_description.clone_from(&content_description);
978 });
979
980 let image_modifier = semantics_modifier
981 .then(modifier)
982 .semantics(|config| {
983 if config.role.is_none()
984 && config
985 .content_description
986 .as_ref()
987 .is_some_and(|label| !label.trim().is_empty())
988 {
989 config.role = Some(crate::SemanticsWidgetRole::Image);
990 }
991 })
992 .draw_behind(move |scope: &mut dyn DrawScope| {
993 if draw_alpha <= 0.0 {
994 return;
995 }
996 let container_size = scope.size();
997 if container_size.width <= 0.0 || container_size.height <= 0.0 {
998 return;
999 }
1000 match &painter.kind {
1001 PainterKind::Bitmap(bitmap) => draw_bitmap_painter(
1002 scope,
1003 bitmap.clone(),
1004 intrinsic_dp,
1005 alignment,
1006 content_scale,
1007 draw_alpha,
1008 color_filter,
1009 ),
1010 PainterKind::BitmapRegion {
1011 bitmap,
1012 source,
1013 sampling,
1014 } => draw_bitmap_region_painter(
1015 scope,
1016 bitmap.clone(),
1017 source.rect(),
1018 alignment,
1019 content_scale,
1020 draw_alpha,
1021 color_filter,
1022 *sampling,
1023 ),
1024 PainterKind::BitmapTiled {
1025 bitmap,
1026 source,
1027 sampling,
1028 } => draw_bitmap_tiled_painter(
1029 scope,
1030 bitmap.clone(),
1031 source.rect(),
1032 draw_alpha,
1033 color_filter,
1034 *sampling,
1035 ),
1036 PainterKind::NinePatch {
1037 bitmap,
1038 source,
1039 insets,
1040 center,
1041 edges,
1042 sampling,
1043 } => draw_nine_patch_painter(
1044 scope,
1045 bitmap.clone(),
1046 source.rect(),
1047 insets.insets(),
1048 *center,
1049 *edges,
1050 draw_alpha,
1051 color_filter,
1052 *sampling,
1053 ),
1054 PainterKind::Svg(svg) => draw_svg_painter(
1055 scope,
1056 svg.clone(),
1057 intrinsic_dp,
1058 alignment,
1059 content_scale,
1060 draw_alpha,
1061 color_filter,
1062 ),
1063 }
1064 });
1065
1066 Layout(
1067 image_modifier,
1068 ImageMeasurePolicy {
1069 intrinsic_size: intrinsic_dp,
1070 },
1071 || {},
1072 )
1073}
1074
1075#[cfg(test)]
1076mod tests {
1077 use super::*;
1078 use crate::layout::core::Alignment;
1079
1080 #[cfg(feature = "svg")]
1081 const RED_RECT_SVG: &[u8] = br##"
1082 <svg xmlns="http://www.w3.org/2000/svg" width="10" height="20" viewBox="0 0 10 20">
1083 <rect x="0" y="0" width="10" height="20" fill="#ff0000"/>
1084 </svg>
1085 "##;
1086
1087 #[cfg(feature = "svg")]
1088 const TRANSPARENT_CENTER_SVG: &[u8] = br##"
1089 <svg xmlns="http://www.w3.org/2000/svg" width="4" height="4" viewBox="0 0 4 4">
1090 <rect x="1" y="1" width="2" height="2" fill="#00ff00"/>
1091 </svg>
1092 "##;
1093
1094 fn sample_bitmap() -> ImageBitmap {
1095 ImageBitmap::from_rgba8(4, 2, vec![255; 4 * 2 * 4]).expect("bitmap")
1096 }
1097
1098 #[test]
1099 fn svg_painter_ids_do_not_use_process_global_counter() {
1100 let source = include_str!("image.rs");
1101 let svg_counter = ["static ", "NEXT_SVG_PAINTER_ID"].concat();
1102
1103 assert!(
1104 !source.contains(&svg_counter),
1105 "SVG painter ids must come from retained painter identity"
1106 );
1107 }
1108
1109 #[cfg(feature = "svg")]
1110 fn cache_test_bitmap(width: u32) -> ImageBitmap {
1111 ImageBitmap::from_rgba8(width, 1, vec![255; width as usize * 4]).expect("bitmap")
1112 }
1113
1114 #[cfg(feature = "svg")]
1115 fn pixel_at(bitmap: &ImageBitmap, x: u32, y: u32) -> [u8; 4] {
1116 let offset = ((y * bitmap.width() + x) * 4) as usize;
1117 let pixels = bitmap.pixels();
1118 [
1119 pixels[offset],
1120 pixels[offset + 1],
1121 pixels[offset + 2],
1122 pixels[offset + 3],
1123 ]
1124 }
1125
1126 #[test]
1127 fn painter_reports_intrinsic_size_and_bitmap() {
1128 let bitmap = sample_bitmap();
1129 let painter = BitmapPainter(bitmap.clone());
1130 assert_eq!(painter.intrinsic_size(), Size::new(4.0, 2.0));
1131 assert_eq!(painter.bitmap(), Some(&bitmap));
1132 }
1133
1134 #[test]
1135 fn bitmap_region_painter_uses_region_as_intrinsic_size() {
1136 let bitmap = sample_bitmap();
1137 let source = Rect {
1138 x: 1.0,
1139 y: 0.0,
1140 width: 2.0,
1141 height: 1.0,
1142 };
1143 let painter = BitmapRegionPainter(bitmap.clone(), source, ImageSampling::Nearest);
1144 assert_eq!(painter.intrinsic_size(), Size::new(2.0, 1.0));
1145 assert_eq!(painter.bitmap(), Some(&bitmap));
1146 assert_eq!(
1147 painter,
1148 Painter::from_bitmap_region(bitmap, source, ImageSampling::Nearest)
1149 );
1150 }
1151
1152 fn atlas_bitmap() -> ImageBitmap {
1153 ImageBitmap::from_rgba8(64, 64, vec![255; 64 * 64 * 4]).expect("bitmap")
1154 }
1155
1156 fn source_rect(x: f32, y: f32, width: f32, height: f32) -> Rect {
1157 Rect {
1158 x,
1159 y,
1160 width,
1161 height,
1162 }
1163 }
1164
1165 fn drawn_images(
1166 size: Size,
1167 draw: impl FnOnce(&mut cranpose_ui_graphics::DrawScopeDefault),
1168 ) -> Vec<(Rect, Rect)> {
1169 let mut scope = cranpose_ui_graphics::DrawScopeDefault::new(size);
1170 draw(&mut scope);
1171 scope
1172 .into_primitives()
1173 .into_iter()
1174 .filter_map(|primitive| match primitive {
1175 cranpose_ui_graphics::DrawPrimitive::Image { src_rect, rect, .. } => {
1176 Some((src_rect?, rect))
1177 }
1178 _ => None,
1179 })
1180 .collect()
1181 }
1182
1183 #[test]
1184 fn a_tiled_painter_keeps_the_region_as_its_intrinsic_size() {
1185 let bitmap = atlas_bitmap();
1186 let source = source_rect(8.0, 8.0, 16.0, 4.0);
1187 let painter = TiledPainter(bitmap.clone(), source, ImageSampling::Nearest);
1188 assert_eq!(painter.intrinsic_size(), Size::new(16.0, 4.0));
1189 assert_eq!(painter.bitmap(), Some(&bitmap));
1190 assert_eq!(
1191 painter,
1192 Painter::from_bitmap_tiled(bitmap, source, ImageSampling::Nearest)
1193 );
1194 }
1195
1196 #[test]
1197 fn a_tiled_painter_repeats_its_region_at_its_own_size() {
1198 let bitmap = atlas_bitmap();
1199 let source = source_rect(8.0, 8.0, 16.0, 4.0);
1200 let drawn = drawn_images(Size::new(32.0, 8.0), |scope| {
1201 draw_bitmap_tiled_painter(
1202 scope,
1203 bitmap.clone(),
1204 source,
1205 1.0,
1206 None,
1207 ImageSampling::Nearest,
1208 );
1209 });
1210
1211 assert_eq!(drawn.len(), 4, "two columns by two rows");
1212 assert!(
1213 drawn
1214 .iter()
1215 .all(|(src, dst)| src.width == dst.width && src.height == dst.height),
1216 "a tile is drawn at 1:1, never scaled"
1217 );
1218 assert!(
1219 drawn.iter().all(|(src, _)| src.x >= 8.0
1220 && src.y >= 8.0
1221 && src.x + src.width <= 24.0
1222 && src.y + src.height <= 12.0),
1223 "a tile never reads outside the region it was given"
1224 );
1225 assert_eq!(drawn[0].1, source_rect(0.0, 0.0, 16.0, 4.0));
1226 assert_eq!(drawn[3].1, source_rect(16.0, 4.0, 16.0, 4.0));
1227 }
1228
1229 #[test]
1230 fn a_tiled_painter_clips_the_last_row_and_column() {
1231 let bitmap = atlas_bitmap();
1232 let source = source_rect(0.0, 0.0, 10.0, 10.0);
1233 let drawn = drawn_images(Size::new(25.0, 10.0), |scope| {
1234 draw_bitmap_tiled_painter(
1235 scope,
1236 bitmap.clone(),
1237 source,
1238 1.0,
1239 None,
1240 ImageSampling::Nearest,
1241 );
1242 });
1243 assert_eq!(drawn.len(), 3);
1244 let (src, dst) = drawn[2];
1245 assert_eq!(dst, source_rect(20.0, 0.0, 5.0, 10.0));
1246 assert_eq!(src, source_rect(0.0, 0.0, 5.0, 10.0));
1247 }
1248
1249 #[test]
1250 fn a_nine_patch_painter_keeps_the_region_as_its_intrinsic_size() {
1251 let bitmap = atlas_bitmap();
1252 let source = source_rect(0.0, 0.0, 30.0, 30.0);
1253 let painter = NinePatchPainter(
1254 bitmap.clone(),
1255 source,
1256 NinePatchInsets::uniform(10.0),
1257 PatchFill::Stretch,
1258 PatchFill::Stretch,
1259 ImageSampling::Nearest,
1260 );
1261 assert_eq!(painter.intrinsic_size(), Size::new(30.0, 30.0));
1262 assert_eq!(painter.bitmap(), Some(&bitmap));
1263 assert_eq!(
1264 painter,
1265 Painter::from_nine_patch(
1266 bitmap,
1267 source,
1268 NinePatchInsets::uniform(10.0),
1269 PatchFill::Stretch,
1270 PatchFill::Stretch,
1271 ImageSampling::Nearest,
1272 ),
1273 "two painters built from the same numbers are the same painter"
1274 );
1275 }
1276
1277 #[test]
1278 fn a_nine_patch_painter_draws_its_corners_at_their_own_size() {
1279 let bitmap = atlas_bitmap();
1280 let drawn = drawn_images(Size::new(100.0, 60.0), |scope| {
1281 draw_nine_patch_painter(
1282 scope,
1283 bitmap.clone(),
1284 source_rect(0.0, 0.0, 30.0, 30.0),
1285 NinePatchInsets::uniform(10.0),
1286 PatchFill::Stretch,
1287 PatchFill::Stretch,
1288 1.0,
1289 None,
1290 ImageSampling::Nearest,
1291 );
1292 });
1293
1294 assert_eq!(drawn.len(), 9);
1295 assert_eq!(
1296 drawn[0],
1297 (
1298 source_rect(0.0, 0.0, 10.0, 10.0),
1299 source_rect(0.0, 0.0, 10.0, 10.0),
1300 )
1301 );
1302 assert_eq!(
1303 drawn[8],
1304 (
1305 source_rect(20.0, 20.0, 10.0, 10.0),
1306 source_rect(90.0, 50.0, 10.0, 10.0),
1307 )
1308 );
1309 assert_eq!(
1310 drawn[4],
1311 (
1312 source_rect(10.0, 10.0, 10.0, 10.0),
1313 source_rect(10.0, 10.0, 80.0, 40.0),
1314 ),
1315 "the middle grows on both axes"
1316 );
1317 }
1318
1319 #[test]
1320 fn a_nine_patch_painter_reads_only_its_region_of_an_atlas() {
1321 let bitmap = atlas_bitmap();
1322 let drawn = drawn_images(Size::new(80.0, 40.0), |scope| {
1323 draw_nine_patch_painter(
1324 scope,
1325 bitmap.clone(),
1326 source_rect(32.0, 16.0, 24.0, 24.0),
1327 NinePatchInsets::uniform(8.0),
1328 PatchFill::Tile,
1329 PatchFill::Tile,
1330 1.0,
1331 None,
1332 ImageSampling::Nearest,
1333 );
1334 });
1335
1336 assert!(!drawn.is_empty());
1337 assert!(
1338 drawn.iter().all(|(src, _)| src.x >= 32.0
1339 && src.y >= 16.0
1340 && src.x + src.width <= 56.0
1341 && src.y + src.height <= 40.0),
1342 "no patch may read a neighbouring sprite out of the atlas"
1343 );
1344 }
1345
1346 #[test]
1347 #[cfg(feature = "svg")]
1348 fn svg_painter_reports_intrinsic_size() {
1349 let painter = SvgPainter::from_bytes(RED_RECT_SVG).expect("svg painter");
1350 let clone = painter.clone();
1351 assert_eq!(painter.intrinsic_size(), Size::new(10.0, 20.0));
1352 assert_eq!(painter.id(), clone.id());
1353 assert_eq!(Painter::from_svg(painter).bitmap(), None);
1354 }
1355
1356 #[test]
1357 #[cfg(feature = "svg")]
1358 fn svg_painter_rasterizes_requested_dimensions() {
1359 let painter = SvgPainter::from_bytes(RED_RECT_SVG).expect("svg painter");
1360 let bitmap = painter
1361 .rasterize(Size::new(5.0, 10.0))
1362 .expect("rasterized svg");
1363
1364 assert_eq!(bitmap.width(), 5);
1365 assert_eq!(bitmap.height(), 10);
1366 assert_eq!(pixel_at(&bitmap, 2, 5), [255, 0, 0, 255]);
1367 }
1368
1369 #[test]
1370 #[cfg(feature = "svg")]
1371 fn svg_painter_preserves_transparency() {
1372 let painter = SvgPainter::from_bytes(TRANSPARENT_CENTER_SVG).expect("svg painter");
1373 let bitmap = painter
1374 .rasterize(Size::new(4.0, 4.0))
1375 .expect("rasterized svg");
1376
1377 assert_eq!(pixel_at(&bitmap, 0, 0), [0, 0, 0, 0]);
1378 assert_eq!(pixel_at(&bitmap, 2, 2), [0, 255, 0, 255]);
1379 }
1380
1381 #[test]
1382 #[cfg(feature = "svg")]
1383 fn svg_painter_reuses_cached_raster_for_same_size() {
1384 let painter = SvgPainter::from_bytes(RED_RECT_SVG).expect("svg painter");
1385 let first = painter
1386 .rasterize(Size::new(8.0, 8.0))
1387 .expect("first raster");
1388 let second = painter
1389 .rasterize(Size::new(8.0, 8.0))
1390 .expect("second raster");
1391
1392 assert_eq!(first.id(), second.id());
1393 }
1394
1395 #[test]
1396 #[cfg(feature = "svg")]
1397 fn svg_raster_cache_evicts_least_recently_used_entry() {
1398 let mut cache = SvgRasterCache::default();
1399 let keys: Vec<SvgRasterKey> = (0..SVG_RASTER_CACHE_LIMIT)
1400 .map(|index| SvgRasterKey {
1401 width: index as u32 + 1,
1402 height: 1,
1403 })
1404 .collect();
1405
1406 for key in &keys {
1407 cache.insert(*key, cache_test_bitmap(key.width));
1408 }
1409
1410 let recent = cache.get(keys[0]).expect("cached raster");
1411 let new_key = SvgRasterKey {
1412 width: SVG_RASTER_CACHE_LIMIT as u32 + 1,
1413 height: 1,
1414 };
1415 cache.insert(new_key, cache_test_bitmap(new_key.width));
1416
1417 assert!(cache.get(keys[1]).is_none());
1418 assert_eq!(
1419 cache.get(keys[0]).expect("retained raster").id(),
1420 recent.id()
1421 );
1422 assert!(cache.get(new_key).is_some());
1423 }
1424
1425 #[test]
1426 #[cfg(feature = "svg")]
1427 fn svg_painter_rasterizes_distinct_sizes_separately() {
1428 let painter = SvgPainter::from_bytes(RED_RECT_SVG).expect("svg painter");
1429 let small = painter
1430 .rasterize(Size::new(8.0, 8.0))
1431 .expect("small raster");
1432 let large = painter
1433 .rasterize(Size::new(16.0, 16.0))
1434 .expect("large raster");
1435
1436 assert_ne!(small.id(), large.id());
1437 assert_eq!(large.width(), 16);
1438 assert_eq!(large.height(), 16);
1439 }
1440
1441 #[test]
1442 #[cfg(feature = "svg")]
1443 fn svg_painter_cache_recovers_after_poison() {
1444 let painter = SvgPainter::from_bytes(RED_RECT_SVG).expect("svg painter");
1445 let poison_result = std::panic::catch_unwind(std::panic::AssertUnwindSafe(|| {
1446 let _guard = painter
1447 .inner
1448 .cache
1449 .lock()
1450 .unwrap_or_else(std::sync::PoisonError::into_inner);
1451 panic!("poison svg raster cache for recovery test");
1452 }));
1453
1454 assert!(poison_result.is_err());
1455
1456 let bitmap = painter
1457 .rasterize(Size::new(8.0, 8.0))
1458 .expect("svg raster cache should recover after poisoning");
1459 assert_eq!(bitmap.width(), 8);
1460 assert_eq!(bitmap.height(), 8);
1461 }
1462
1463 #[test]
1464 fn svg_draw_density_has_no_outside_context_fallback() {
1465 let source = include_str!("image.rs");
1466 let fallback_call = ["try_current", "_density()", ".unwrap_or"].concat();
1467 assert!(
1468 !source.contains(&fallback_call),
1469 "SVG image drawing must use the active AppContext density"
1470 );
1471 }
1472
1473 #[test]
1474 #[cfg(feature = "svg")]
1475 fn svg_painter_rejects_invalid_bytes() {
1476 let err = SvgPainter::from_bytes(b"not svg").expect_err("invalid svg");
1477 assert!(matches!(err, SvgPainterError::Parse(_)));
1478 }
1479
1480 #[test]
1481 #[cfg(not(feature = "svg"))]
1482 fn svg_painter_reports_disabled_feature_without_resvg() {
1483 let err = SvgPainter::from_bytes(b"not svg").expect_err("svg feature disabled");
1484 assert!(matches!(err, SvgPainterError::SvgFeatureDisabled));
1485 }
1486
1487 #[test]
1488 fn fit_keeps_aspect_ratio() {
1489 let src = Size::new(200.0, 100.0);
1490 let dst = Size::new(300.0, 300.0);
1491 let result = ContentScale::Fit.scaled_size(src, dst);
1492 assert_eq!(result, Size::new(300.0, 150.0));
1493 }
1494
1495 #[test]
1496 fn crop_fills_bounds() {
1497 let src = Size::new(200.0, 100.0);
1498 let dst = Size::new(300.0, 300.0);
1499 let result = ContentScale::Crop.scaled_size(src, dst);
1500 assert_eq!(result, Size::new(600.0, 300.0));
1501 }
1502
1503 #[test]
1504 fn destination_rect_aligns_center() {
1505 let src = Size::new(200.0, 100.0);
1506 let dst = Size::new(300.0, 300.0);
1507 let rect = destination_rect(src, dst, Alignment::CENTER, ContentScale::Fit);
1508 assert_eq!(
1509 rect,
1510 Rect {
1511 x: 0.0,
1512 y: 75.0,
1513 width: 300.0,
1514 height: 150.0,
1515 }
1516 );
1517 }
1518
1519 #[test]
1520 fn crop_destination_clip_maps_centered_wide_source() {
1521 let src = Size::new(200.0, 100.0);
1522 let dst = Size::new(100.0, 100.0);
1523 let (dst_rect, clipped_dst_rect) =
1524 image_destination_clip(src, dst, Alignment::CENTER, ContentScale::Crop)
1525 .expect("destination clip");
1526 let rect = map_destination_clip_to_source(Rect::from_size(src), dst_rect, clipped_dst_rect)
1527 .expect("source clip");
1528 assert_eq!(
1529 rect,
1530 Rect {
1531 x: 50.0,
1532 y: 0.0,
1533 width: 100.0,
1534 height: 100.0,
1535 }
1536 );
1537 }
1538
1539 #[test]
1540 fn crop_destination_clip_honors_start_alignment() {
1541 let src = Size::new(200.0, 100.0);
1542 let dst = Size::new(100.0, 100.0);
1543 let (dst_rect, clipped_dst_rect) =
1544 image_destination_clip(src, dst, Alignment::TOP_START, ContentScale::Crop)
1545 .expect("destination clip");
1546 let rect = map_destination_clip_to_source(Rect::from_size(src), dst_rect, clipped_dst_rect)
1547 .expect("source clip");
1548 assert_eq!(
1549 rect,
1550 Rect {
1551 x: 0.0,
1552 y: 0.0,
1553 width: 100.0,
1554 height: 100.0,
1555 }
1556 );
1557 }
1558
1559 fn approx_eq(left: f32, right: f32) {
1560 assert!((left - right).abs() < 1e-4, "left={left}, right={right}");
1561 }
1562
1563 #[test]
1564 fn map_destination_clip_to_source_scales_proportionally() {
1565 let src = Rect {
1566 x: 0.0,
1567 y: 0.0,
1568 width: 100.0,
1569 height: 100.0,
1570 };
1571 let dst = Rect {
1572 x: -50.0,
1573 y: 0.0,
1574 width: 200.0,
1575 height: 100.0,
1576 };
1577 let clipped_dst = Rect {
1578 x: 0.0,
1579 y: 0.0,
1580 width: 100.0,
1581 height: 100.0,
1582 };
1583 let mapped = map_destination_clip_to_source(src, dst, clipped_dst).expect("mapped");
1584 approx_eq(mapped.x, 25.0);
1585 approx_eq(mapped.y, 0.0);
1586 approx_eq(mapped.width, 50.0);
1587 approx_eq(mapped.height, 100.0);
1588 }
1589
1590 #[test]
1591 fn map_destination_clip_to_source_returns_full_source_without_clipping() {
1592 let src = Rect {
1593 x: 0.0,
1594 y: 0.0,
1595 width: 120.0,
1596 height: 80.0,
1597 };
1598 let dst = Rect {
1599 x: 10.0,
1600 y: 5.0,
1601 width: 60.0,
1602 height: 40.0,
1603 };
1604 let mapped = map_destination_clip_to_source(src, dst, dst).expect("mapped");
1605 approx_eq(mapped.x, src.x);
1606 approx_eq(mapped.y, src.y);
1607 approx_eq(mapped.width, src.width);
1608 approx_eq(mapped.height, src.height);
1609 }
1610
1611 fn measure_image(intrinsic: Size, constraints: Constraints) -> Size {
1612 let policy = ImageMeasurePolicy {
1613 intrinsic_size: intrinsic,
1614 };
1615 let scope = crate::density::DensityMeasureScope::new(crate::density::Density::default());
1616 policy.measure(&scope, &[], constraints).size
1617 }
1618
1619 #[test]
1620 fn image_measure_unconstrained() {
1621 let size = measure_image(
1622 Size::new(800.0, 600.0),
1623 Constraints::loose(f32::INFINITY, f32::INFINITY),
1624 );
1625 assert_eq!(size, Size::new(800.0, 600.0));
1626 }
1627
1628 #[test]
1629 fn image_measure_width_constrained_preserves_aspect_ratio() {
1630 let size = measure_image(
1631 Size::new(800.0, 600.0),
1632 Constraints::loose(400.0, f32::INFINITY),
1633 );
1634 assert_eq!(size, Size::new(400.0, 300.0));
1635 }
1636
1637 #[test]
1638 fn image_measure_height_constrained_preserves_aspect_ratio() {
1639 let size = measure_image(
1640 Size::new(800.0, 600.0),
1641 Constraints::loose(f32::INFINITY, 300.0),
1642 );
1643 assert_eq!(size, Size::new(400.0, 300.0));
1644 }
1645
1646 #[test]
1647 fn image_measure_both_constrained_uses_smaller_factor() {
1648 let size = measure_image(Size::new(800.0, 600.0), Constraints::loose(200.0, 400.0));
1649 assert_eq!(size, Size::new(200.0, 150.0));
1650 }
1651
1652 #[test]
1653 fn image_measure_fits_within_constraints() {
1654 let size = measure_image(Size::new(200.0, 100.0), Constraints::loose(400.0, 400.0));
1655 assert_eq!(size, Size::new(200.0, 100.0));
1656 }
1657
1658 #[test]
1659 fn image_measure_zero_intrinsic() {
1660 let size = measure_image(Size::ZERO, Constraints::loose(400.0, 400.0));
1661 assert_eq!(size, Size::new(0.0, 0.0));
1662 }
1663}