1use std::{
4 any::Any,
5 borrow::Cow,
6 collections::HashMap,
7 rc::Rc,
8};
9
10use bytes::Bytes;
11use freya_engine::prelude::{
12 AlphaType,
13 ClipOp,
14 ColorType,
15 CubicResampler,
16 Data,
17 FilterMode,
18 ISize,
19 ImageInfo,
20 MipmapMode,
21 Paint,
22 SamplingOptions,
23 SkImage,
24 SkRect,
25 raster_from_data,
26};
27use torin::prelude::Size2D;
28
29use crate::{
30 data::{
31 AccessibilityData,
32 EffectData,
33 LayoutData,
34 StyleState,
35 TextStyleData,
36 },
37 diff_key::DiffKey,
38 element::{
39 ClipContext,
40 Element,
41 ElementExt,
42 EventHandlers,
43 LayoutContext,
44 RenderContext,
45 },
46 layers::Layer,
47 prelude::{
48 AccessibilityExt,
49 ChildrenExt,
50 ContainerExt,
51 ContainerWithContentExt,
52 EffectExt,
53 EventHandlersExt,
54 ImageExt,
55 KeyExt,
56 LayerExt,
57 LayoutExt,
58 MaybeExt,
59 },
60 style::corner_radius::CornerRadius,
61 tree::DiffModifies,
62};
63
64pub fn image(image_handle: ImageHandle) -> Image {
69 let mut accessibility = AccessibilityData::default();
70 accessibility.builder.set_role(accesskit::Role::Image);
71 Image {
72 key: DiffKey::None,
73 element: ImageElement {
74 image_handle,
75 accessibility,
76 layout: LayoutData::default(),
77 event_handlers: HashMap::default(),
78 image_data: ImageData::default(),
79 relative_layer: Layer::default(),
80 effect: None,
81 corner_radius: None,
82 },
83 elements: Vec::new(),
84 }
85}
86
87#[derive(Default, Clone, Debug, PartialEq)]
89pub enum ImageCover {
90 #[default]
92 Fill,
93 Center,
95}
96
97#[derive(Default, Clone, Debug, PartialEq)]
99pub enum AspectRatio {
100 #[default]
102 Min,
103 Max,
105 Fit,
107 None,
109}
110
111#[derive(Clone, Debug, PartialEq, Eq, Hash, Default)]
113pub enum SamplingMode {
114 Nearest,
116 Bilinear,
118 #[default]
120 Trilinear,
121 Mitchell,
123 CatmullRom,
125}
126
127impl SamplingMode {
128 pub fn sampling_options(&self) -> SamplingOptions {
130 match self {
131 Self::Nearest => SamplingOptions::new(FilterMode::Nearest, MipmapMode::None),
132 Self::Bilinear => SamplingOptions::new(FilterMode::Linear, MipmapMode::None),
133 Self::Trilinear => SamplingOptions::new(FilterMode::Linear, MipmapMode::Linear),
134 Self::Mitchell => SamplingOptions::from(CubicResampler::mitchell()),
135 Self::CatmullRom => SamplingOptions::from(CubicResampler::catmull_rom()),
136 }
137 }
138}
139
140#[derive(Clone)]
142pub struct ImageHandle {
143 pub image: SkImage,
144 pub bytes: Bytes,
146}
147
148impl ImageHandle {
149 pub fn new(image: SkImage, bytes: Bytes) -> Self {
150 Self { image, bytes }
151 }
152
153 pub fn from_rgba(width: u32, height: u32, bytes: Bytes, alpha_type: AlphaType) -> Option<Self> {
155 let row_bytes = (width as usize).checked_mul(4)?;
156 if bytes.len() < row_bytes.checked_mul(height as usize)? {
157 return None;
158 }
159 let info = ImageInfo::new(
160 ISize::new(width as i32, height as i32),
161 ColorType::RGBA8888,
162 alpha_type,
163 None,
164 );
165 let data = unsafe { Data::new_bytes(&bytes) };
167 let image = raster_from_data(&info, data, row_bytes)?;
168 Some(Self::new(image, bytes))
169 }
170}
171
172impl PartialEq for ImageHandle {
173 fn eq(&self, other: &Self) -> bool {
174 self.image.unique_id() == other.image.unique_id()
175 }
176}
177
178#[derive(Debug, Default, Clone, PartialEq)]
180pub struct ImageData {
181 pub sampling_mode: SamplingMode,
182 pub aspect_ratio: AspectRatio,
183 pub image_cover: ImageCover,
184}
185
186#[derive(PartialEq, Clone)]
187pub struct ImageElement {
188 pub accessibility: AccessibilityData,
189 pub layout: LayoutData,
190 pub event_handlers: EventHandlers,
191 pub image_handle: ImageHandle,
192 pub image_data: ImageData,
193 pub relative_layer: Layer,
194 pub effect: Option<EffectData>,
195 pub corner_radius: Option<CornerRadius>,
196}
197
198impl ElementExt for ImageElement {
199 fn changed(&self, other: &Rc<dyn ElementExt>) -> bool {
200 let Some(image) = (other.as_ref() as &dyn Any).downcast_ref::<ImageElement>() else {
201 return false;
202 };
203 self != image
204 }
205
206 fn diff(&self, other: &Rc<dyn ElementExt>) -> DiffModifies {
207 let Some(image) = (other.as_ref() as &dyn Any).downcast_ref::<ImageElement>() else {
208 return DiffModifies::all();
209 };
210
211 let mut diff = DiffModifies::empty();
212
213 if self.accessibility != image.accessibility {
214 diff.insert(DiffModifies::ACCESSIBILITY);
215 }
216
217 if self.relative_layer != image.relative_layer {
218 diff.insert(DiffModifies::LAYER);
219 }
220
221 if self.layout != image.layout {
222 diff.insert(DiffModifies::LAYOUT);
223 }
224
225 if self.image_handle != image.image_handle {
226 diff.insert(DiffModifies::STYLE);
227
228 if self.image_handle.image.dimensions() != image.image_handle.image.dimensions() {
229 diff.insert(DiffModifies::LAYOUT);
230 }
231 }
232
233 if self.effect != image.effect {
234 diff.insert(DiffModifies::EFFECT);
235 }
236
237 if self.corner_radius != image.corner_radius {
238 diff.insert(DiffModifies::STYLE);
239 }
240
241 if self.event_handlers != image.event_handlers {
242 diff.insert(DiffModifies::EVENT_HANDLERS);
243 }
244
245 diff
246 }
247
248 fn layout(&'_ self) -> Cow<'_, LayoutData> {
249 Cow::Borrowed(&self.layout)
250 }
251
252 fn effect(&'_ self) -> Option<Cow<'_, EffectData>> {
253 self.effect.as_ref().map(Cow::Borrowed)
254 }
255
256 fn style(&'_ self) -> Cow<'_, StyleState> {
257 Cow::Owned(StyleState {
258 corner_radius: self.corner_radius.unwrap_or_default(),
259 ..StyleState::default()
260 })
261 }
262
263 fn text_style(&'_ self) -> Cow<'_, TextStyleData> {
264 Cow::Owned(TextStyleData::default())
265 }
266
267 fn accessibility(&'_ self) -> Cow<'_, AccessibilityData> {
268 Cow::Borrowed(&self.accessibility)
269 }
270
271 fn layer(&self) -> Layer {
272 self.relative_layer
273 }
274
275 fn events_handlers(&'_ self) -> Option<Cow<'_, EventHandlers>> {
276 Some(Cow::Borrowed(&self.event_handlers))
277 }
278
279 fn should_measure_inner_children(&self) -> bool {
280 true
281 }
282
283 fn should_hook_measurement(&self) -> bool {
284 true
285 }
286
287 fn measure(&self, context: LayoutContext) -> Option<(Size2D, Rc<dyn Any>)> {
288 let image = &self.image_handle.image;
289
290 let image_width = image.width() as f32;
291 let image_height = image.height() as f32;
292
293 let area_size = (*context.area_size - context.torin_node.margin.into()).max(Size2D::zero());
294
295 let width_ratio = area_size.width / image_width;
296 let height_ratio = area_size.height / image_height;
297
298 let size = match self.image_data.aspect_ratio {
299 AspectRatio::Max => {
300 let ratio = width_ratio.max(height_ratio);
301
302 Size2D::new(image_width * ratio, image_height * ratio)
303 }
304 AspectRatio::Min => {
305 let ratio = width_ratio.min(height_ratio);
306
307 Size2D::new(image_width * ratio, image_height * ratio)
308 }
309 AspectRatio::Fit => Size2D::new(image_width, image_height),
310 AspectRatio::None => area_size,
311 };
312
313 Some((size, Rc::new(size)))
314 }
315
316 fn clip(&self, context: ClipContext) {
317 let rrect = self.render_rect(context.visible_area, context.scale_factor as f32);
318 context.canvas.clip_rrect(rrect, ClipOp::Intersect, true);
319 }
320
321 fn render(&self, context: RenderContext) {
322 let size = context
323 .layout_node
324 .data
325 .as_ref()
326 .unwrap()
327 .downcast_ref::<Size2D>()
328 .unwrap();
329
330 let area = context.layout_node.visible_area();
331
332 let mut rect = SkRect::new(
333 area.min_x(),
334 area.min_y(),
335 area.min_x() + size.width,
336 area.min_y() + size.height,
337 );
338 if self.image_data.image_cover == ImageCover::Center {
339 let width_offset = (size.width - area.width()) / 2.;
340 let height_offset = (size.height - area.height()) / 2.;
341
342 rect.left -= width_offset;
343 rect.right -= width_offset;
344 rect.top -= height_offset;
345 rect.bottom -= height_offset;
346 }
347
348 context.canvas.save();
349 let clip_rrect = self.render_rect(&area, context.scale_factor as f32);
350 context
351 .canvas
352 .clip_rrect(clip_rrect, ClipOp::Intersect, true);
353
354 let sampling = self.image_data.sampling_mode.sampling_options();
355
356 let mut paint = Paint::default();
357 paint.set_anti_alias(true);
358
359 context.canvas.draw_image_rect_with_sampling_options(
360 &self.image_handle.image,
361 None,
362 rect,
363 sampling,
364 &paint,
365 );
366
367 context.canvas.restore();
368 }
369}
370
371impl From<Image> for Element {
372 fn from(value: Image) -> Self {
373 Element::Element {
374 key: value.key,
375 element: Rc::new(value.element),
376 elements: value.elements,
377 }
378 }
379}
380
381impl KeyExt for Image {
382 fn write_key(&mut self) -> &mut DiffKey {
383 &mut self.key
384 }
385}
386
387impl EventHandlersExt for Image {
388 fn get_event_handlers(&mut self) -> &mut EventHandlers {
389 &mut self.element.event_handlers
390 }
391}
392
393impl AccessibilityExt for Image {
394 fn get_accessibility_data(&mut self) -> &mut AccessibilityData {
395 &mut self.element.accessibility
396 }
397}
398impl MaybeExt for Image {}
399
400impl LayoutExt for Image {
401 fn get_layout(&mut self) -> &mut LayoutData {
402 &mut self.element.layout
403 }
404}
405
406impl ContainerExt for Image {}
407impl ContainerWithContentExt for Image {}
408
409impl ImageExt for Image {
410 fn get_image_data(&mut self) -> &mut ImageData {
411 &mut self.element.image_data
412 }
413}
414
415impl ChildrenExt for Image {
416 fn get_children(&mut self) -> &mut Vec<Element> {
417 &mut self.elements
418 }
419}
420
421impl LayerExt for Image {
422 fn get_layer(&mut self) -> &mut Layer {
423 &mut self.element.relative_layer
424 }
425}
426
427impl EffectExt for Image {
428 fn get_effect(&mut self) -> &mut EffectData {
429 self.element.effect.get_or_insert_with(EffectData::default)
430 }
431}
432
433pub struct Image {
434 key: DiffKey,
435 element: ImageElement,
436 elements: Vec<Element>,
437}
438
439impl Image {
440 pub fn try_downcast(element: &dyn ElementExt) -> Option<ImageElement> {
441 (element as &dyn Any)
442 .downcast_ref::<ImageElement>()
443 .cloned()
444 }
445
446 pub fn corner_radius(mut self, corner_radius: impl Into<CornerRadius>) -> Self {
448 self.element.corner_radius = Some(corner_radius.into());
449 self
450 }
451}