1use std::{
37 borrow::Cow,
38 cell::RefCell,
39 collections::HashMap,
40 fs::File,
41 io::Write,
42 path::PathBuf,
43 rc::Rc,
44 time::{
45 Duration,
46 Instant,
47 },
48};
49
50use freya_clipboard::copypasta::{
51 ClipboardContext,
52 ClipboardProvider,
53};
54use freya_components::{
55 cache::AssetCacher,
56 integration::integration,
57};
58use freya_core::{
59 integration::*,
60 prelude::*,
61};
62use freya_engine::prelude::{
63 EncodedImageFormat,
64 FontCollection,
65 FontMgr,
66 SkData,
67 TypefaceFontProvider,
68 raster_n32_premul,
69};
70use ragnarok::{
71 CursorPoint,
72 EventsExecutorRunner,
73 EventsMeasurerRunner,
74 NodesState,
75};
76use torin::prelude::{
77 LayoutNode,
78 Size2D,
79};
80
81pub mod prelude {
82 pub use freya_core::{
83 events::platform::*,
84 prelude::*,
85 };
86
87 pub use crate::{
88 DocRunner,
89 TestingRunner,
90 launch_doc,
91 launch_test,
92 };
93}
94
95type DocRunnerHook = Box<dyn FnOnce(&mut TestingRunner)>;
96
97pub struct DocRunner {
98 app: AppComponent,
99 size: Size2D,
100 scale_factor: f64,
101 hook: Option<DocRunnerHook>,
102 image_path: PathBuf,
103}
104
105impl DocRunner {
106 pub fn render(self) {
107 let (mut test, _) = TestingRunner::new(self.app, self.size, |_| {}, self.scale_factor);
108 if let Some(hook) = self.hook {
109 (hook)(&mut test);
110 }
111 test.render_to_file(self.image_path);
112 }
113
114 pub fn with_hook(mut self, hook: impl FnOnce(&mut TestingRunner) + 'static) -> Self {
115 self.hook = Some(Box::new(hook));
116 self
117 }
118
119 pub fn with_image_path(mut self, image_path: PathBuf) -> Self {
120 self.image_path = image_path;
121 self
122 }
123
124 pub fn with_scale_factor(mut self, scale_factor: f64) -> Self {
125 self.scale_factor = scale_factor;
126 self
127 }
128
129 pub fn with_size(mut self, size: Size2D) -> Self {
130 self.size = size;
131 self
132 }
133}
134
135pub fn launch_doc(app: impl Into<AppComponent>, path: impl Into<PathBuf>) -> DocRunner {
136 DocRunner {
137 app: app.into(),
138 size: Size2D::new(250., 250.),
139 scale_factor: 1.0,
140 hook: None,
141 image_path: path.into(),
142 }
143}
144
145pub fn launch_test(app: impl Into<AppComponent>) -> TestingRunner {
146 TestingRunner::new(app, Size2D::new(500., 500.), |_| {}, 1.0).0
147}
148
149pub struct TestingRunner {
150 nodes_state: NodesState<NodeId>,
151 runner: Runner,
152 tree: Rc<RefCell<Tree>>,
153 size: Size2D,
154
155 accessibility: AccessibilityTree,
156
157 events_receiver: futures_channel::mpsc::UnboundedReceiver<EventsChunk>,
158 events_sender: futures_channel::mpsc::UnboundedSender<EventsChunk>,
159
160 requested_focus_strategy: Rc<RefCell<Option<AccessibilityFocusStrategy>>>,
161
162 font_manager: FontMgr,
163 font_collection: FontCollection,
164
165 platform: Platform,
166
167 animation_clock: AnimationClock,
168 ticker_sender: RenderingTickerSender,
169
170 default_fonts: Vec<Cow<'static, str>>,
171 scale_factor: f64,
172}
173
174impl TestingRunner {
175 pub fn new<T>(
176 app: impl Into<AppComponent>,
177 size: Size2D,
178 hook: impl FnOnce(&mut Runner) -> T,
179 scale_factor: f64,
180 ) -> (Self, T) {
181 let (events_sender, events_receiver) = futures_channel::mpsc::unbounded();
182 let app = app.into();
183 let mut runner = Runner::new(move || integration(app.clone()).into_element());
184
185 runner.provide_root_context(ScreenReader::new);
186
187 let (ticker_sender, ticker) = RenderingTicker::new();
188 runner.provide_root_context(|| ticker);
189
190 let animation_clock = runner.provide_root_context(AnimationClock::new);
191
192 runner.provide_root_context(AssetCacher::create);
193
194 let tree = Tree::default();
195 let tree = Rc::new(RefCell::new(tree));
196
197 let requested_focus_strategy: Rc<RefCell<Option<AccessibilityFocusStrategy>>> =
198 Rc::new(RefCell::new(None));
199
200 let platform = runner.provide_root_context({
201 let requested_focus_strategy = requested_focus_strategy.clone();
202 || Platform {
203 focused_accessibility_id: State::create(ACCESSIBILITY_ROOT_ID),
204 focused_accessibility_node: State::create(accesskit::Node::new(
205 accesskit::Role::Window,
206 )),
207 root_size: State::create(size),
208 scale_factor: State::create(scale_factor),
209 navigation_mode: State::create(NavigationMode::NotKeyboard),
210 preferred_theme: State::create(PreferredTheme::Light),
211 is_app_focused: State::create(true),
212 accent_color: State::create(AccentColor::default()),
213 sender: Rc::new(move |user_event| {
214 match user_event {
215 UserEvent::RequestRedraw => {
216 }
218 UserEvent::FocusAccessibilityNode(strategy) => {
219 requested_focus_strategy.borrow_mut().replace(strategy);
220 }
221 UserEvent::SetCursorIcon(_) => {
222 }
224 UserEvent::Erased(_) => {
225 }
227 }
228 }),
229 }
230 });
231
232 runner.provide_root_context(|| {
233 let clipboard: Option<Box<dyn ClipboardProvider>> = ClipboardContext::new()
234 .ok()
235 .map(|c| Box::new(c) as Box<dyn ClipboardProvider>);
236
237 State::create(clipboard)
238 });
239
240 runner.provide_root_context(|| tree.borrow().accessibility_generator.clone());
241
242 let hook_result = hook(&mut runner);
243
244 let mut font_collection = FontCollection::new();
245 let def_mgr = FontMgr::default();
246 let provider = TypefaceFontProvider::new();
247 let font_manager: FontMgr = provider.into();
248 font_collection.set_default_font_manager(def_mgr, None);
249 font_collection.set_dynamic_font_manager(font_manager.clone());
250 font_collection.paragraph_cache_mut().turn_on(false);
251
252 runner.provide_root_context(|| font_collection.clone());
253
254 let nodes_state = NodesState::default();
255 let accessibility = AccessibilityTree::default();
256
257 let mut runner = Self {
258 runner,
259 tree,
260 size,
261
262 accessibility,
263 platform,
264
265 nodes_state,
266 events_receiver,
267 events_sender,
268
269 requested_focus_strategy,
270
271 font_manager,
272 font_collection,
273
274 animation_clock,
275 ticker_sender,
276
277 default_fonts: default_fonts(),
278 scale_factor,
279 };
280
281 runner.sync_and_update();
282
283 (runner, hook_result)
284 }
285
286 pub fn set_fonts(&mut self, fonts: HashMap<&str, &[u8]>) {
287 let mut provider = TypefaceFontProvider::new();
288 for (font_name, font_data) in fonts {
289 let ft_type = self
290 .font_collection
291 .fallback_manager()
292 .unwrap()
293 .new_from_data(font_data, None)
294 .unwrap_or_else(|| panic!("Failed to load font {font_name}."));
295 provider.register_typeface(ft_type, Some(font_name));
296 }
297 let font_manager: FontMgr = provider.into();
298 self.font_manager = font_manager.clone();
299 self.font_collection.set_dynamic_font_manager(font_manager);
300 }
301
302 pub fn set_default_fonts(&mut self, fonts: &[Cow<'static, str>]) {
303 self.default_fonts.clear();
304 self.default_fonts.extend_from_slice(fonts);
305 self.tree.borrow_mut().layout.reset();
306 self.tree.borrow_mut().text_cache.reset();
307 self.tree.borrow_mut().measure_layout(
308 self.size,
309 &mut self.font_collection,
310 &self.font_manager,
311 &self.events_sender,
312 self.scale_factor,
313 &self.default_fonts,
314 );
315 self.tree.borrow_mut().accessibility_diff.clear();
316 self.accessibility.focused_id = ACCESSIBILITY_ROOT_ID;
317 self.accessibility.init(&mut self.tree.borrow_mut());
318 self.sync_and_update();
319 }
320
321 pub async fn handle_events(&mut self) {
322 self.runner.handle_events().await
323 }
324
325 pub fn handle_events_immediately(&mut self) {
326 self.runner.handle_events_immediately()
327 }
328
329 pub fn sync_and_update(&mut self) {
330 if let Some(strategy) = self.requested_focus_strategy.borrow_mut().take() {
331 self.tree
332 .borrow_mut()
333 .accessibility_diff
334 .request_focus(strategy);
335 }
336
337 while let Ok(events_chunk) = self.events_receiver.try_recv() {
338 match events_chunk {
339 EventsChunk::Processed(processed_events) => {
340 let events_executor_adapter = EventsExecutorAdapter {
341 runner: &mut self.runner,
342 };
343 events_executor_adapter.run(&mut self.nodes_state, processed_events);
344 }
345 EventsChunk::Batch(events) => {
346 for event in events {
347 self.runner.handle_event(
348 event.node_id,
349 event.name,
350 event.data,
351 event.bubbles,
352 );
353 }
354 }
355 }
356 }
357
358 let mutations = self.runner.sync_and_update();
359 self.runner.run_in(|| {
360 self.tree.borrow_mut().apply_mutations(mutations);
361 });
362 self.tree.borrow_mut().measure_layout(
363 self.size,
364 &mut self.font_collection,
365 &self.font_manager,
366 &self.events_sender,
367 self.scale_factor,
368 &self.default_fonts,
369 );
370
371 let accessibility_update = self
372 .accessibility
373 .process_updates(&mut self.tree.borrow_mut(), &self.events_sender);
374
375 self.platform
376 .focused_accessibility_id
377 .set_if_modified(accessibility_update.focus);
378 let node_id = self.accessibility.focused_node_id().unwrap();
379 let tree = self.tree.borrow();
380 let layout_node = tree.layout.get(&node_id).unwrap();
381 self.platform
382 .focused_accessibility_node
383 .set_if_modified(AccessibilityTree::create_node(node_id, layout_node, &tree));
384 }
385
386 pub fn poll(&mut self, step: Duration, duration: Duration) {
389 let started = Instant::now();
390 while started.elapsed() < duration {
391 self.handle_events_immediately();
392 self.sync_and_update();
393 std::thread::sleep(step);
394 self.ticker_sender.send(()).ok();
395 }
396 }
397
398 pub fn poll_n(&mut self, step: Duration, times: u32) {
401 for _ in 0..times {
402 self.handle_events_immediately();
403 self.sync_and_update();
404 std::thread::sleep(step);
405 self.ticker_sender.send(()).ok();
406 }
407 }
408
409 pub fn send_event(&mut self, platform_event: PlatformEvent) {
410 let mut events_measurer_adapter = EventsMeasurerAdapter {
411 tree: &mut self.tree.borrow_mut(),
412 scale_factor: self.scale_factor,
413 };
414 let processed_events = events_measurer_adapter.run(
415 &mut vec![platform_event],
416 &mut self.nodes_state,
417 self.accessibility.focused_node_id(),
418 );
419 self.events_sender
420 .unbounded_send(EventsChunk::Processed(processed_events))
421 .unwrap();
422 }
423
424 pub fn move_cursor(&mut self, cursor: impl Into<CursorPoint>) {
425 self.send_event(PlatformEvent::Mouse {
426 name: MouseEventName::MouseMove,
427 cursor: cursor.into(),
428 button: Some(MouseButton::Left),
429 })
430 }
431
432 pub fn write_text(&mut self, text: impl ToString) {
433 let text = text.to_string();
434 self.send_event(PlatformEvent::Keyboard {
435 name: KeyboardEventName::KeyDown,
436 key: Key::Character(text),
437 code: Code::Unidentified,
438 modifiers: Modifiers::default(),
439 });
440 self.sync_and_update();
441 }
442
443 pub fn press_key(&mut self, key: Key) {
444 self.send_event(PlatformEvent::Keyboard {
445 name: KeyboardEventName::KeyDown,
446 key,
447 code: Code::Unidentified,
448 modifiers: Modifiers::default(),
449 });
450 self.sync_and_update();
451 }
452
453 pub fn press_cursor(&mut self, cursor: impl Into<CursorPoint>) {
454 let cursor = cursor.into();
455 self.send_event(PlatformEvent::Mouse {
456 name: MouseEventName::MouseDown,
457 cursor,
458 button: Some(MouseButton::Left),
459 });
460 self.sync_and_update();
461 }
462
463 pub fn release_cursor(&mut self, cursor: impl Into<CursorPoint>) {
464 let cursor = cursor.into();
465 self.send_event(PlatformEvent::Mouse {
466 name: MouseEventName::MouseUp,
467 cursor,
468 button: Some(MouseButton::Left),
469 });
470 self.sync_and_update();
471 }
472
473 pub fn click_cursor(&mut self, cursor: impl Into<CursorPoint>) {
474 let cursor = cursor.into();
475 self.send_event(PlatformEvent::Mouse {
476 name: MouseEventName::MouseDown,
477 cursor,
478 button: Some(MouseButton::Left),
479 });
480 self.sync_and_update();
481 self.send_event(PlatformEvent::Mouse {
482 name: MouseEventName::MouseUp,
483 cursor,
484 button: Some(MouseButton::Left),
485 });
486 self.sync_and_update();
487 }
488
489 pub fn press_touch(&mut self, location: impl Into<CursorPoint>) {
490 self.send_event(PlatformEvent::Touch {
491 name: TouchEventName::TouchStart,
492 location: location.into(),
493 finger_id: 0,
494 phase: TouchPhase::Started,
495 force: None,
496 });
497 self.sync_and_update();
498 }
499
500 pub fn move_touch(&mut self, location: impl Into<CursorPoint>) {
501 self.send_event(PlatformEvent::Touch {
502 name: TouchEventName::TouchMove,
503 location: location.into(),
504 finger_id: 0,
505 phase: TouchPhase::Moved,
506 force: None,
507 });
508 self.sync_and_update();
509 }
510
511 pub fn release_touch(&mut self, location: impl Into<CursorPoint>) {
512 self.send_event(PlatformEvent::Touch {
513 name: TouchEventName::TouchEnd,
514 location: location.into(),
515 finger_id: 0,
516 phase: TouchPhase::Ended,
517 force: None,
518 });
519 self.sync_and_update();
520 }
521
522 pub fn scroll(&mut self, cursor: impl Into<CursorPoint>, scroll: impl Into<CursorPoint>) {
523 let cursor = cursor.into();
524 let scroll = scroll.into();
525 self.send_event(PlatformEvent::Wheel {
526 name: WheelEventName::Wheel,
527 scroll,
528 cursor,
529 source: WheelSource::Device,
530 });
531 self.sync_and_update();
532 }
533
534 pub fn animation_clock(&mut self) -> &mut AnimationClock {
535 &mut self.animation_clock
536 }
537
538 pub fn render(&mut self) -> SkData {
539 let mut surface = raster_n32_premul((self.size.width as i32, self.size.height as i32))
540 .expect("Failed to create the surface.");
541
542 let render_pipeline = RenderPipeline {
543 font_collection: &mut self.font_collection,
544 font_manager: &self.font_manager,
545 tree: &self.tree.borrow(),
546 canvas: surface.canvas(),
547 scale_factor: self.scale_factor,
548 background: Color::WHITE,
549 };
550 render_pipeline.render();
551
552 let image = surface.image_snapshot();
553 let mut context = surface.direct_context();
554 image
555 .encode(context.as_mut(), EncodedImageFormat::PNG, None)
556 .expect("Failed to encode the snapshot.")
557 }
558
559 pub fn render_to_file(&mut self, path: impl Into<PathBuf>) {
560 let path = path.into();
561
562 let image = self.render();
563
564 let mut snapshot_file = File::create(path).expect("Failed to create the snapshot file.");
565
566 snapshot_file
567 .write_all(&image)
568 .expect("Failed to save the snapshot file.");
569 }
570
571 pub fn find<T>(
572 &self,
573 matcher: impl Fn(TestingNode, &dyn ElementExt) -> Option<T>,
574 ) -> Option<T> {
575 let mut matched = None;
576 {
577 let tree = self.tree.borrow();
578 tree.traverse_depth(|id| {
579 if matched.is_some() {
580 return;
581 }
582 let element = tree.elements.get(&id).unwrap();
583 let node = TestingNode {
584 tree: self.tree.clone(),
585 id,
586 };
587 matched = matcher(node, element.as_ref());
588 });
589 }
590
591 matched
592 }
593
594 pub fn find_many<T>(
595 &self,
596 matcher: impl Fn(TestingNode, &dyn ElementExt) -> Option<T>,
597 ) -> Vec<T> {
598 let mut matched = Vec::new();
599 {
600 let tree = self.tree.borrow();
601 tree.traverse_depth(|id| {
602 let element = tree.elements.get(&id).unwrap();
603 let node = TestingNode {
604 tree: self.tree.clone(),
605 id,
606 };
607 if let Some(result) = matcher(node, element.as_ref()) {
608 matched.push(result);
609 }
610 });
611 }
612
613 matched
614 }
615}
616
617pub struct TestingNode {
618 tree: Rc<RefCell<Tree>>,
619 id: NodeId,
620}
621
622impl TestingNode {
623 pub fn layout(&self) -> LayoutNode {
624 self.tree.borrow().layout.get(&self.id).cloned().unwrap()
625 }
626
627 pub fn children(&self) -> Vec<Self> {
628 let children = self
629 .tree
630 .borrow()
631 .children
632 .get(&self.id)
633 .cloned()
634 .unwrap_or_default();
635
636 children
637 .into_iter()
638 .map(|child_id| Self {
639 id: child_id,
640 tree: self.tree.clone(),
641 })
642 .collect()
643 }
644
645 pub fn is_visible(&self) -> bool {
646 let layout = self.layout();
647 let effect_state = self
648 .tree
649 .borrow()
650 .effect_state
651 .get(&self.id)
652 .cloned()
653 .unwrap();
654
655 effect_state.is_visible(&self.tree.borrow().layout, &layout.area)
656 }
657
658 pub fn element(&self) -> Rc<dyn ElementExt> {
659 self.tree
660 .borrow()
661 .elements
662 .get(&self.id)
663 .cloned()
664 .expect("Element does not exist.")
665 }
666}