1 // Copyright (c) 2012 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
7 #include "base/memory/scoped_ptr.h"
8 #include "base/rand_util.h"
9 #include "base/strings/string_util.h"
10 #include "base/strings/stringprintf.h"
11 #include "base/strings/utf_string_conversions.h"
12 #include "ui/base/accelerators/accelerator.h"
13 #include "ui/base/clipboard/clipboard.h"
14 #include "ui/base/l10n/l10n_util.h"
15 #include "ui/compositor/compositor.h"
16 #include "ui/compositor/layer.h"
17 #include "ui/compositor/layer_animator.h"
18 #include "ui/compositor/test/draw_waiter_for_test.h"
19 #include "ui/events/event.h"
20 #include "ui/events/event_utils.h"
21 #include "ui/events/keycodes/keyboard_codes.h"
22 #include "ui/gfx/canvas.h"
23 #include "ui/gfx/path.h"
24 #include "ui/gfx/transform.h"
25 #include "ui/strings/grit/ui_strings.h"
26 #include "ui/views/background.h"
27 #include "ui/views/controls/native/native_view_host.h"
28 #include "ui/views/controls/scroll_view.h"
29 #include "ui/views/controls/textfield/textfield.h"
30 #include "ui/views/focus/view_storage.h"
31 #include "ui/views/test/views_test_base.h"
32 #include "ui/views/view.h"
33 #include "ui/views/views_delegate.h"
34 #include "ui/views/widget/native_widget.h"
35 #include "ui/views/widget/root_view.h"
36 #include "ui/views/window/dialog_client_view.h"
37 #include "ui/views/window/dialog_delegate.h"
39 using base::ASCIIToUTF16
;
43 // Returns true if |ancestor| is an ancestor of |layer|.
44 bool LayerIsAncestor(const ui::Layer
* ancestor
, const ui::Layer
* layer
) {
45 while (layer
&& layer
!= ancestor
)
46 layer
= layer
->parent();
47 return layer
== ancestor
;
50 // Convenience functions for walking a View tree.
51 const views::View
* FirstView(const views::View
* view
) {
52 const views::View
* v
= view
;
53 while (v
->has_children())
58 const views::View
* NextView(const views::View
* view
) {
59 const views::View
* v
= view
;
60 const views::View
* parent
= v
->parent();
63 int next
= parent
->GetIndexOf(v
) + 1;
64 if (next
!= parent
->child_count())
65 return FirstView(parent
->child_at(next
));
69 // Convenience functions for walking a Layer tree.
70 const ui::Layer
* FirstLayer(const ui::Layer
* layer
) {
71 const ui::Layer
* l
= layer
;
72 while (l
->children().size() > 0)
77 const ui::Layer
* NextLayer(const ui::Layer
* layer
) {
78 const ui::Layer
* parent
= layer
->parent();
81 const std::vector
<ui::Layer
*> children
= parent
->children();
83 for (index
= 0; index
< children
.size(); index
++) {
84 if (children
[index
] == layer
)
87 size_t next
= index
+ 1;
88 if (next
< children
.size())
89 return FirstLayer(children
[next
]);
93 // Given the root nodes of a View tree and a Layer tree, makes sure the two
95 bool ViewAndLayerTreeAreConsistent(const views::View
* view
,
96 const ui::Layer
* layer
) {
97 const views::View
* v
= FirstView(view
);
98 const ui::Layer
* l
= FirstLayer(layer
);
100 // Find the view with a layer.
101 while (v
&& !v
->layer())
107 // Check if the View tree and the Layer tree are in sync.
108 EXPECT_EQ(l
, v
->layer());
112 // Check if the visibility states of the View and the Layer are in sync.
113 EXPECT_EQ(l
->IsDrawn(), v
->IsDrawn());
114 if (v
->IsDrawn() != l
->IsDrawn()) {
115 for (const views::View
* vv
= v
; vv
; vv
= vv
->parent())
116 LOG(ERROR
) << "V: " << vv
<< " " << vv
->visible() << " "
117 << vv
->IsDrawn() << " " << vv
->layer();
118 for (const ui::Layer
* ll
= l
; ll
; ll
= ll
->parent())
119 LOG(ERROR
) << "L: " << ll
<< " " << ll
->IsDrawn();
123 // Check if the size of the View and the Layer are in sync.
124 EXPECT_EQ(l
->bounds(), v
->bounds());
125 if (v
->bounds() != l
->bounds())
128 if (v
== view
|| l
== layer
)
129 return v
== view
&& l
== layer
;
138 // Constructs a View tree with the specified depth.
139 void ConstructTree(views::View
* view
, int depth
) {
142 int count
= base::RandInt(1, 5);
143 for (int i
= 0; i
< count
; i
++) {
144 views::View
* v
= new views::View
;
145 view
->AddChildView(v
);
146 if (base::RandDouble() > 0.5)
147 v
->SetPaintToLayer(true);
148 if (base::RandDouble() < 0.2)
149 v
->SetVisible(false);
151 ConstructTree(v
, depth
- 1);
155 void ScrambleTree(views::View
* view
) {
156 int count
= view
->child_count();
159 for (int i
= 0; i
< count
; i
++) {
160 ScrambleTree(view
->child_at(i
));
164 int a
= base::RandInt(0, count
- 1);
165 int b
= base::RandInt(0, count
- 1);
167 views::View
* view_a
= view
->child_at(a
);
168 views::View
* view_b
= view
->child_at(b
);
169 view
->ReorderChildView(view_a
, b
);
170 view
->ReorderChildView(view_b
, a
);
173 if (!view
->layer() && base::RandDouble() < 0.1)
174 view
->SetPaintToLayer(true);
176 if (base::RandDouble() < 0.1)
177 view
->SetVisible(!view
->visible());
180 void PaintWidgetInRect(views::Widget
* widget
, const gfx::Rect
& rect
) {
181 const float image_scale
= 1.f
;
182 const bool is_opaque
= true;
183 gfx::Canvas
canvas(widget
->GetRootView()->bounds().size(), image_scale
,
185 canvas
.ClipRect(rect
);
186 widget
->GetRootView()->Paint(&canvas
, views::CullSet());
193 typedef ViewsTestBase ViewTest
;
195 // A derived class for testing purpose.
196 class TestView
: public View
{
200 delete_on_pressed_(false),
202 can_process_events_within_subtree_(true) {}
203 ~TestView() override
{}
205 // Reset all test state
207 did_change_bounds_
= false;
208 last_mouse_event_type_
= 0;
209 location_
.SetPoint(0, 0);
210 received_mouse_enter_
= false;
211 received_mouse_exit_
= false;
212 last_clip_
.setEmpty();
213 accelerator_count_map_
.clear();
214 can_process_events_within_subtree_
= true;
217 // Exposed as public for testing.
219 views::View::Focus();
226 bool focusable() const { return View::focusable(); }
228 void set_can_process_events_within_subtree(bool can_process
) {
229 can_process_events_within_subtree_
= can_process
;
232 bool CanProcessEventsWithinSubtree() const override
{
233 return can_process_events_within_subtree_
;
236 void OnBoundsChanged(const gfx::Rect
& previous_bounds
) override
;
237 bool OnMousePressed(const ui::MouseEvent
& event
) override
;
238 bool OnMouseDragged(const ui::MouseEvent
& event
) override
;
239 void OnMouseReleased(const ui::MouseEvent
& event
) override
;
240 void OnMouseEntered(const ui::MouseEvent
& event
) override
;
241 void OnMouseExited(const ui::MouseEvent
& event
) override
;
243 void Paint(gfx::Canvas
* canvas
, const CullSet
& cull_set
) override
;
244 void SchedulePaintInRect(const gfx::Rect
& rect
) override
;
245 bool AcceleratorPressed(const ui::Accelerator
& accelerator
) override
;
247 void OnNativeThemeChanged(const ui::NativeTheme
* native_theme
) override
;
250 bool did_change_bounds_
;
251 gfx::Rect new_bounds_
;
254 int last_mouse_event_type_
;
255 gfx::Point location_
;
256 bool received_mouse_enter_
;
257 bool received_mouse_exit_
;
258 bool delete_on_pressed_
;
261 std::vector
<gfx::Rect
> scheduled_paint_rects_
;
267 std::map
<ui::Accelerator
, int> accelerator_count_map_
;
270 const ui::NativeTheme
* native_theme_
;
272 // Value to return from CanProcessEventsWithinSubtree().
273 bool can_process_events_within_subtree_
;
276 ////////////////////////////////////////////////////////////////////////////////
278 ////////////////////////////////////////////////////////////////////////////////
280 void TestView::OnBoundsChanged(const gfx::Rect
& previous_bounds
) {
281 did_change_bounds_
= true;
282 new_bounds_
= bounds();
285 TEST_F(ViewTest
, OnBoundsChanged
) {
288 gfx::Rect
prev_rect(0, 0, 200, 200);
289 gfx::Rect
new_rect(100, 100, 250, 250);
291 v
.SetBoundsRect(prev_rect
);
293 v
.SetBoundsRect(new_rect
);
295 EXPECT_TRUE(v
.did_change_bounds_
);
296 EXPECT_EQ(v
.new_bounds_
, new_rect
);
297 EXPECT_EQ(v
.bounds(), new_rect
);
300 ////////////////////////////////////////////////////////////////////////////////
302 ////////////////////////////////////////////////////////////////////////////////
304 bool TestView::OnMousePressed(const ui::MouseEvent
& event
) {
305 last_mouse_event_type_
= event
.type();
306 location_
.SetPoint(event
.x(), event
.y());
307 if (delete_on_pressed_
)
312 bool TestView::OnMouseDragged(const ui::MouseEvent
& event
) {
313 last_mouse_event_type_
= event
.type();
314 location_
.SetPoint(event
.x(), event
.y());
318 void TestView::OnMouseReleased(const ui::MouseEvent
& event
) {
319 last_mouse_event_type_
= event
.type();
320 location_
.SetPoint(event
.x(), event
.y());
323 void TestView::OnMouseEntered(const ui::MouseEvent
& event
) {
324 received_mouse_enter_
= true;
327 void TestView::OnMouseExited(const ui::MouseEvent
& event
) {
328 received_mouse_exit_
= true;
331 TEST_F(ViewTest
, MouseEvent
) {
332 TestView
* v1
= new TestView();
333 v1
->SetBoundsRect(gfx::Rect(0, 0, 300, 300));
335 TestView
* v2
= new TestView();
336 v2
->SetBoundsRect(gfx::Rect(100, 100, 100, 100));
338 scoped_ptr
<Widget
> widget(new Widget
);
339 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
340 params
.ownership
= views::Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
341 params
.bounds
= gfx::Rect(50, 50, 650, 650);
342 widget
->Init(params
);
343 internal::RootView
* root
=
344 static_cast<internal::RootView
*>(widget
->GetRootView());
346 root
->AddChildView(v1
);
347 v1
->AddChildView(v2
);
352 gfx::Point
p1(110, 120);
353 ui::MouseEvent
pressed(ui::ET_MOUSE_PRESSED
, p1
, p1
, ui::EventTimeForNow(),
354 ui::EF_LEFT_MOUSE_BUTTON
, ui::EF_LEFT_MOUSE_BUTTON
);
355 root
->OnMousePressed(pressed
);
356 EXPECT_EQ(v2
->last_mouse_event_type_
, ui::ET_MOUSE_PRESSED
);
357 EXPECT_EQ(v2
->location_
.x(), 10);
358 EXPECT_EQ(v2
->location_
.y(), 20);
359 // Make sure v1 did not receive the event
360 EXPECT_EQ(v1
->last_mouse_event_type_
, 0);
362 // Drag event out of bounds. Should still go to v2
365 gfx::Point
p2(50, 40);
366 ui::MouseEvent
dragged(ui::ET_MOUSE_DRAGGED
, p2
, p2
, ui::EventTimeForNow(),
367 ui::EF_LEFT_MOUSE_BUTTON
, 0);
368 root
->OnMouseDragged(dragged
);
369 EXPECT_EQ(v2
->last_mouse_event_type_
, ui::ET_MOUSE_DRAGGED
);
370 EXPECT_EQ(v2
->location_
.x(), -50);
371 EXPECT_EQ(v2
->location_
.y(), -60);
372 // Make sure v1 did not receive the event
373 EXPECT_EQ(v1
->last_mouse_event_type_
, 0);
375 // Releasted event out of bounds. Should still go to v2
378 ui::MouseEvent
released(ui::ET_MOUSE_RELEASED
, gfx::Point(), gfx::Point(),
379 ui::EventTimeForNow(), 0, 0);
380 root
->OnMouseDragged(released
);
381 EXPECT_EQ(v2
->last_mouse_event_type_
, ui::ET_MOUSE_RELEASED
);
382 EXPECT_EQ(v2
->location_
.x(), -100);
383 EXPECT_EQ(v2
->location_
.y(), -100);
384 // Make sure v1 did not receive the event
385 EXPECT_EQ(v1
->last_mouse_event_type_
, 0);
390 // Confirm that a view can be deleted as part of processing a mouse press.
391 TEST_F(ViewTest
, DeleteOnPressed
) {
392 TestView
* v1
= new TestView();
393 v1
->SetBoundsRect(gfx::Rect(0, 0, 300, 300));
395 TestView
* v2
= new TestView();
396 v2
->SetBoundsRect(gfx::Rect(100, 100, 100, 100));
401 scoped_ptr
<Widget
> widget(new Widget
);
402 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
403 params
.ownership
= views::Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
404 params
.bounds
= gfx::Rect(50, 50, 650, 650);
405 widget
->Init(params
);
406 View
* root
= widget
->GetRootView();
408 root
->AddChildView(v1
);
409 v1
->AddChildView(v2
);
411 v2
->delete_on_pressed_
= true;
412 gfx::Point
point(110, 120);
413 ui::MouseEvent
pressed(ui::ET_MOUSE_PRESSED
, point
, point
,
414 ui::EventTimeForNow(), ui::EF_LEFT_MOUSE_BUTTON
,
415 ui::EF_LEFT_MOUSE_BUTTON
);
416 root
->OnMousePressed(pressed
);
417 EXPECT_EQ(0, v1
->child_count());
422 ////////////////////////////////////////////////////////////////////////////////
424 ////////////////////////////////////////////////////////////////////////////////
426 void TestView::Paint(gfx::Canvas
* canvas
, const CullSet
& cull_set
) {
427 canvas
->sk_canvas()->getClipBounds(&last_clip_
);
430 void TestView::SchedulePaintInRect(const gfx::Rect
& rect
) {
431 scheduled_paint_rects_
.push_back(rect
);
432 View::SchedulePaintInRect(rect
);
435 void CheckRect(const SkRect
& check_rect
, const SkRect
& target_rect
) {
436 EXPECT_EQ(target_rect
.fLeft
, check_rect
.fLeft
);
437 EXPECT_EQ(target_rect
.fRight
, check_rect
.fRight
);
438 EXPECT_EQ(target_rect
.fTop
, check_rect
.fTop
);
439 EXPECT_EQ(target_rect
.fBottom
, check_rect
.fBottom
);
442 TEST_F(ViewTest
, RemoveNotification
) {
443 ViewStorage
* vs
= ViewStorage::GetInstance();
444 Widget
* widget
= new Widget
;
445 widget
->Init(CreateParams(Widget::InitParams::TYPE_POPUP
));
446 View
* root_view
= widget
->GetRootView();
449 int s1
= vs
->CreateStorageID();
450 vs
->StoreView(s1
, v1
);
451 root_view
->AddChildView(v1
);
452 View
* v11
= new View
;
453 int s11
= vs
->CreateStorageID();
454 vs
->StoreView(s11
, v11
);
455 v1
->AddChildView(v11
);
456 View
* v111
= new View
;
457 int s111
= vs
->CreateStorageID();
458 vs
->StoreView(s111
, v111
);
459 v11
->AddChildView(v111
);
460 View
* v112
= new View
;
461 int s112
= vs
->CreateStorageID();
462 vs
->StoreView(s112
, v112
);
463 v11
->AddChildView(v112
);
464 View
* v113
= new View
;
465 int s113
= vs
->CreateStorageID();
466 vs
->StoreView(s113
, v113
);
467 v11
->AddChildView(v113
);
468 View
* v1131
= new View
;
469 int s1131
= vs
->CreateStorageID();
470 vs
->StoreView(s1131
, v1131
);
471 v113
->AddChildView(v1131
);
472 View
* v12
= new View
;
473 int s12
= vs
->CreateStorageID();
474 vs
->StoreView(s12
, v12
);
475 v1
->AddChildView(v12
);
478 int s2
= vs
->CreateStorageID();
479 vs
->StoreView(s2
, v2
);
480 root_view
->AddChildView(v2
);
481 View
* v21
= new View
;
482 int s21
= vs
->CreateStorageID();
483 vs
->StoreView(s21
, v21
);
484 v2
->AddChildView(v21
);
485 View
* v211
= new View
;
486 int s211
= vs
->CreateStorageID();
487 vs
->StoreView(s211
, v211
);
488 v21
->AddChildView(v211
);
490 size_t stored_views
= vs
->view_count();
492 // Try removing a leaf view.
493 v21
->RemoveChildView(v211
);
494 EXPECT_EQ(stored_views
- 1, vs
->view_count());
495 EXPECT_EQ(NULL
, vs
->RetrieveView(s211
));
496 delete v211
; // We won't use this one anymore.
498 // Now try removing a view with a hierarchy of depth 1.
499 v11
->RemoveChildView(v113
);
500 EXPECT_EQ(stored_views
- 3, vs
->view_count());
501 EXPECT_EQ(NULL
, vs
->RetrieveView(s113
));
502 EXPECT_EQ(NULL
, vs
->RetrieveView(s1131
));
503 delete v113
; // We won't use this one anymore.
505 // Now remove even more.
506 root_view
->RemoveChildView(v1
);
507 EXPECT_EQ(NULL
, vs
->RetrieveView(s1
));
508 EXPECT_EQ(NULL
, vs
->RetrieveView(s11
));
509 EXPECT_EQ(NULL
, vs
->RetrieveView(s12
));
510 EXPECT_EQ(NULL
, vs
->RetrieveView(s111
));
511 EXPECT_EQ(NULL
, vs
->RetrieveView(s112
));
513 // Put v1 back for more tests.
514 root_view
->AddChildView(v1
);
515 vs
->StoreView(s1
, v1
);
517 // Synchronously closing the window deletes the view hierarchy, which should
518 // remove all its views from ViewStorage.
520 EXPECT_EQ(stored_views
- 10, vs
->view_count());
521 EXPECT_EQ(NULL
, vs
->RetrieveView(s1
));
522 EXPECT_EQ(NULL
, vs
->RetrieveView(s12
));
523 EXPECT_EQ(NULL
, vs
->RetrieveView(s11
));
524 EXPECT_EQ(NULL
, vs
->RetrieveView(s12
));
525 EXPECT_EQ(NULL
, vs
->RetrieveView(s21
));
526 EXPECT_EQ(NULL
, vs
->RetrieveView(s111
));
527 EXPECT_EQ(NULL
, vs
->RetrieveView(s112
));
532 void RotateCounterclockwise(gfx::Transform
* transform
) {
533 transform
->matrix().set3x3(0, -1, 0,
538 void RotateClockwise(gfx::Transform
* transform
) {
539 transform
->matrix().set3x3( 0, 1, 0,
546 // Tests the correctness of the rect-based targeting algorithm implemented in
547 // View::GetEventHandlerForRect(). See http://goo.gl/3Jp2BD for a description
548 // of rect-based targeting.
549 TEST_F(ViewTest
, GetEventHandlerForRect
) {
550 Widget
* widget
= new Widget
;
551 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
552 widget
->Init(params
);
553 View
* root_view
= widget
->GetRootView();
554 root_view
->SetBoundsRect(gfx::Rect(0, 0, 500, 500));
556 // Have this hierarchy of views (the coordinates here are all in
557 // the root view's coordinate space):
558 // v1 (0, 0, 100, 100)
559 // v2 (150, 0, 250, 100)
560 // v3 (0, 200, 150, 100)
561 // v31 (10, 210, 80, 80)
562 // v32 (110, 210, 30, 80)
563 // v4 (300, 200, 100, 100)
564 // v41 (310, 210, 80, 80)
565 // v411 (370, 275, 10, 5)
566 // v5 (450, 197, 30, 36)
567 // v51 (450, 200, 30, 30)
569 // The coordinates used for SetBounds are in parent coordinates.
571 TestView
* v1
= new TestView
;
572 v1
->SetBounds(0, 0, 100, 100);
573 root_view
->AddChildView(v1
);
575 TestView
* v2
= new TestView
;
576 v2
->SetBounds(150, 0, 250, 100);
577 root_view
->AddChildView(v2
);
579 TestView
* v3
= new TestView
;
580 v3
->SetBounds(0, 200, 150, 100);
581 root_view
->AddChildView(v3
);
583 TestView
* v4
= new TestView
;
584 v4
->SetBounds(300, 200, 100, 100);
585 root_view
->AddChildView(v4
);
587 TestView
* v31
= new TestView
;
588 v31
->SetBounds(10, 10, 80, 80);
589 v3
->AddChildView(v31
);
591 TestView
* v32
= new TestView
;
592 v32
->SetBounds(110, 10, 30, 80);
593 v3
->AddChildView(v32
);
595 TestView
* v41
= new TestView
;
596 v41
->SetBounds(10, 10, 80, 80);
597 v4
->AddChildView(v41
);
599 TestView
* v411
= new TestView
;
600 v411
->SetBounds(60, 65, 10, 5);
601 v41
->AddChildView(v411
);
603 TestView
* v5
= new TestView
;
604 v5
->SetBounds(450, 197, 30, 36);
605 root_view
->AddChildView(v5
);
607 TestView
* v51
= new TestView
;
608 v51
->SetBounds(0, 3, 30, 30);
609 v5
->AddChildView(v51
);
611 // |touch_rect| does not intersect any descendant view of |root_view|.
612 gfx::Rect
touch_rect(105, 105, 30, 45);
613 View
* result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
614 EXPECT_EQ(root_view
, result_view
);
617 // Covers |v1| by at least 60%.
618 touch_rect
.SetRect(15, 15, 100, 100);
619 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
620 EXPECT_EQ(v1
, result_view
);
623 // Intersects |v1| but does not cover it by at least 60%. The center
624 // of |touch_rect| is within |v1|.
625 touch_rect
.SetRect(50, 50, 5, 10);
626 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
627 EXPECT_EQ(v1
, result_view
);
630 // Intersects |v1| but does not cover it by at least 60%. The center
631 // of |touch_rect| is not within |v1|.
632 touch_rect
.SetRect(95, 96, 21, 22);
633 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
634 EXPECT_EQ(root_view
, result_view
);
637 // Intersects |v1| and |v2|, but only covers |v2| by at least 60%.
638 touch_rect
.SetRect(95, 10, 300, 120);
639 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
640 EXPECT_EQ(v2
, result_view
);
643 // Covers both |v1| and |v2| by at least 60%, but the center point
644 // of |touch_rect| is closer to the center point of |v2|.
645 touch_rect
.SetRect(20, 20, 400, 100);
646 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
647 EXPECT_EQ(v2
, result_view
);
650 // Covers both |v1| and |v2| by at least 60%, but the center point
651 // of |touch_rect| is closer to the center point of |v1|.
652 touch_rect
.SetRect(-700, -15, 1050, 110);
653 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
654 EXPECT_EQ(v1
, result_view
);
657 // A mouse click within |v1| will target |v1|.
658 touch_rect
.SetRect(15, 15, 1, 1);
659 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
660 EXPECT_EQ(v1
, result_view
);
663 // Intersects |v3| and |v31| by at least 60% and the center point
664 // of |touch_rect| is closer to the center point of |v31|.
665 touch_rect
.SetRect(0, 200, 110, 100);
666 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
667 EXPECT_EQ(v31
, result_view
);
670 // Intersects |v3| and |v31|, but neither by at least 60%. The
671 // center point of |touch_rect| lies within |v31|.
672 touch_rect
.SetRect(80, 280, 15, 15);
673 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
674 EXPECT_EQ(v31
, result_view
);
677 // Covers |v3|, |v31|, and |v32| all by at least 60%, and the
678 // center point of |touch_rect| is closest to the center point
680 touch_rect
.SetRect(0, 200, 200, 100);
681 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
682 EXPECT_EQ(v32
, result_view
);
685 // Intersects all of |v3|, |v31|, and |v32|, but only covers
686 // |v31| and |v32| by at least 60%. The center point of
687 // |touch_rect| is closest to the center point of |v32|.
688 touch_rect
.SetRect(30, 225, 180, 115);
689 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
690 EXPECT_EQ(v32
, result_view
);
693 // A mouse click at the corner of |v3| will target |v3|.
694 touch_rect
.SetRect(0, 200, 1, 1);
695 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
696 EXPECT_EQ(v3
, result_view
);
699 // A mouse click within |v32| will target |v32|.
700 touch_rect
.SetRect(112, 211, 1, 1);
701 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
702 EXPECT_EQ(v32
, result_view
);
705 // Covers all of |v4|, |v41|, and |v411| by at least 60%.
706 // The center point of |touch_rect| is equally close to
707 // the center points of |v4| and |v41|.
708 touch_rect
.SetRect(310, 210, 80, 80);
709 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
710 EXPECT_EQ(v41
, result_view
);
713 // Intersects all of |v4|, |v41|, and |v411| but only covers
714 // |v411| by at least 60%.
715 touch_rect
.SetRect(370, 275, 7, 5);
716 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
717 EXPECT_EQ(v411
, result_view
);
720 // Intersects |v4| and |v41| but covers neither by at least 60%.
721 // The center point of |touch_rect| is equally close to the center
722 // points of |v4| and |v41|.
723 touch_rect
.SetRect(345, 245, 7, 7);
724 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
725 EXPECT_EQ(v41
, result_view
);
728 // Intersects all of |v4|, |v41|, and |v411| and covers none of
729 // them by at least 60%. The center point of |touch_rect| lies
731 touch_rect
.SetRect(368, 272, 4, 6);
732 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
733 EXPECT_EQ(v411
, result_view
);
736 // Intersects all of |v4|, |v41|, and |v411| and covers none of
737 // them by at least 60%. The center point of |touch_rect| lies
739 touch_rect
.SetRect(365, 270, 7, 7);
740 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
741 EXPECT_EQ(v41
, result_view
);
744 // Intersects all of |v4|, |v41|, and |v411| and covers none of
745 // them by at least 60%. The center point of |touch_rect| lies
747 touch_rect
.SetRect(205, 275, 200, 2);
748 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
749 EXPECT_EQ(v4
, result_view
);
752 // Intersects all of |v4|, |v41|, and |v411| but only covers
753 // |v41| by at least 60%.
754 touch_rect
.SetRect(310, 210, 61, 66);
755 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
756 EXPECT_EQ(v41
, result_view
);
759 // A mouse click within |v411| will target |v411|.
760 touch_rect
.SetRect(372, 275, 1, 1);
761 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
762 EXPECT_EQ(v411
, result_view
);
765 // A mouse click within |v41| will target |v41|.
766 touch_rect
.SetRect(350, 215, 1, 1);
767 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
768 EXPECT_EQ(v41
, result_view
);
771 // Covers |v3|, |v4|, and all of their descendants by at
772 // least 60%. The center point of |touch_rect| is closest
773 // to the center point of |v32|.
774 touch_rect
.SetRect(0, 200, 400, 100);
775 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
776 EXPECT_EQ(v32
, result_view
);
779 // Intersects all of |v2|, |v3|, |v32|, |v4|, |v41|, and |v411|.
780 // Covers |v2|, |v32|, |v4|, |v41|, and |v411| by at least 60%.
781 // The center point of |touch_rect| is closest to the center
782 // point of |root_view|.
783 touch_rect
.SetRect(110, 15, 375, 450);
784 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
785 EXPECT_EQ(root_view
, result_view
);
788 // Covers all views (except |v5| and |v51|) by at least 60%. The
789 // center point of |touch_rect| is equally close to the center
790 // points of |v2| and |v32|. One is not a descendant of the other,
791 // so in this case the view selected is arbitrary (i.e.,
792 // it depends only on the ordering of nodes in the views
794 touch_rect
.SetRect(0, 0, 400, 300);
795 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
796 EXPECT_EQ(v32
, result_view
);
799 // Covers |v5| and |v51| by at least 60%, and the center point of
800 // the touch is located within both views. Since both views share
801 // the same center point, the child view should be selected.
802 touch_rect
.SetRect(440, 190, 40, 40);
803 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
804 EXPECT_EQ(v51
, result_view
);
807 // Covers |v5| and |v51| by at least 60%, but the center point of
808 // the touch is not located within either view. Since both views
809 // share the same center point, the child view should be selected.
810 touch_rect
.SetRect(455, 187, 60, 60);
811 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
812 EXPECT_EQ(v51
, result_view
);
815 // Covers neither |v5| nor |v51| by at least 60%, but the center
816 // of the touch is located within |v51|.
817 touch_rect
.SetRect(450, 197, 10, 10);
818 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
819 EXPECT_EQ(v51
, result_view
);
822 // Covers neither |v5| nor |v51| by at least 60% but intersects both.
823 // The center point is located outside of both views.
824 touch_rect
.SetRect(433, 180, 24, 24);
825 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
826 EXPECT_EQ(root_view
, result_view
);
829 // Only intersects |v5| but does not cover it by at least 60%. The
830 // center point of the touch region is located within |v5|.
831 touch_rect
.SetRect(449, 196, 3, 3);
832 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
833 EXPECT_EQ(v5
, result_view
);
836 // A mouse click within |v5| (but not |v51|) should target |v5|.
837 touch_rect
.SetRect(462, 199, 1, 1);
838 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
839 EXPECT_EQ(v5
, result_view
);
842 // A mouse click |v5| and |v51| should target the child view.
843 touch_rect
.SetRect(452, 226, 1, 1);
844 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
845 EXPECT_EQ(v51
, result_view
);
848 // A mouse click on the center of |v5| and |v51| should target
850 touch_rect
.SetRect(465, 215, 1, 1);
851 result_view
= root_view
->GetEventHandlerForRect(touch_rect
);
852 EXPECT_EQ(v51
, result_view
);
858 // Tests that GetEventHandlerForRect() and GetTooltipHandlerForPoint() behave
859 // as expected when different views in the view hierarchy return false
860 // when CanProcessEventsWithinSubtree() is called.
861 TEST_F(ViewTest
, CanProcessEventsWithinSubtree
) {
862 Widget
* widget
= new Widget
;
863 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
864 widget
->Init(params
);
865 View
* root_view
= widget
->GetRootView();
866 root_view
->SetBoundsRect(gfx::Rect(0, 0, 500, 500));
868 // Have this hierarchy of views (the coords here are in the coordinate
869 // space of the root view):
870 // v (0, 0, 100, 100)
871 // - v_child (0, 0, 20, 30)
872 // - v_grandchild (5, 5, 5, 15)
874 TestView
* v
= new TestView
;
875 v
->SetBounds(0, 0, 100, 100);
876 root_view
->AddChildView(v
);
877 v
->set_notify_enter_exit_on_child(true);
879 TestView
* v_child
= new TestView
;
880 v_child
->SetBounds(0, 0, 20, 30);
881 v
->AddChildView(v_child
);
883 TestView
* v_grandchild
= new TestView
;
884 v_grandchild
->SetBounds(5, 5, 5, 15);
885 v_child
->AddChildView(v_grandchild
);
889 v_grandchild
->Reset();
891 // Define rects and points within the views in the hierarchy.
892 gfx::Rect
rect_in_v_grandchild(7, 7, 3, 3);
893 gfx::Point
point_in_v_grandchild(rect_in_v_grandchild
.origin());
894 gfx::Rect
rect_in_v_child(12, 3, 5, 5);
895 gfx::Point
point_in_v_child(rect_in_v_child
.origin());
896 gfx::Rect
rect_in_v(50, 50, 25, 30);
897 gfx::Point
point_in_v(rect_in_v
.origin());
899 // When all three views return true when CanProcessEventsWithinSubtree()
900 // is called, targeting should behave as expected.
902 View
* result_view
= root_view
->GetEventHandlerForRect(rect_in_v_grandchild
);
903 EXPECT_EQ(v_grandchild
, result_view
);
905 result_view
= root_view
->GetTooltipHandlerForPoint(point_in_v_grandchild
);
906 EXPECT_EQ(v_grandchild
, result_view
);
909 result_view
= root_view
->GetEventHandlerForRect(rect_in_v_child
);
910 EXPECT_EQ(v_child
, result_view
);
912 result_view
= root_view
->GetTooltipHandlerForPoint(point_in_v_child
);
913 EXPECT_EQ(v_child
, result_view
);
916 result_view
= root_view
->GetEventHandlerForRect(rect_in_v
);
917 EXPECT_EQ(v
, result_view
);
919 result_view
= root_view
->GetTooltipHandlerForPoint(point_in_v
);
920 EXPECT_EQ(v
, result_view
);
923 // When |v_grandchild| returns false when CanProcessEventsWithinSubtree()
924 // is called, then |v_grandchild| cannot be returned as a target.
926 v_grandchild
->set_can_process_events_within_subtree(false);
928 result_view
= root_view
->GetEventHandlerForRect(rect_in_v_grandchild
);
929 EXPECT_EQ(v_child
, result_view
);
931 result_view
= root_view
->GetTooltipHandlerForPoint(point_in_v_grandchild
);
932 EXPECT_EQ(v_child
, result_view
);
935 result_view
= root_view
->GetEventHandlerForRect(rect_in_v_child
);
936 EXPECT_EQ(v_child
, result_view
);
938 result_view
= root_view
->GetTooltipHandlerForPoint(point_in_v_child
);
939 EXPECT_EQ(v_child
, result_view
);
942 result_view
= root_view
->GetEventHandlerForRect(rect_in_v
);
943 EXPECT_EQ(v
, result_view
);
945 result_view
= root_view
->GetTooltipHandlerForPoint(point_in_v
);
946 EXPECT_EQ(v
, result_view
);
948 // When |v_grandchild| returns false when CanProcessEventsWithinSubtree()
949 // is called, then NULL should be returned as a target if we call
950 // GetTooltipHandlerForPoint() with |v_grandchild| as the root of the
951 // views tree. Note that the location must be in the coordinate space
952 // of the root view (|v_grandchild| in this case), so use (1, 1).
954 result_view
= v_grandchild
;
955 result_view
= v_grandchild
->GetTooltipHandlerForPoint(gfx::Point(1, 1));
956 EXPECT_EQ(NULL
, result_view
);
959 // When |v_child| returns false when CanProcessEventsWithinSubtree()
960 // is called, then neither |v_child| nor |v_grandchild| can be returned
961 // as a target (|v| should be returned as the target for each case).
963 v_grandchild
->Reset();
964 v_child
->set_can_process_events_within_subtree(false);
966 result_view
= root_view
->GetEventHandlerForRect(rect_in_v_grandchild
);
967 EXPECT_EQ(v
, result_view
);
969 result_view
= root_view
->GetTooltipHandlerForPoint(point_in_v_grandchild
);
970 EXPECT_EQ(v
, result_view
);
973 result_view
= root_view
->GetEventHandlerForRect(rect_in_v_child
);
974 EXPECT_EQ(v
, result_view
);
976 result_view
= root_view
->GetTooltipHandlerForPoint(point_in_v_child
);
977 EXPECT_EQ(v
, result_view
);
980 result_view
= root_view
->GetEventHandlerForRect(rect_in_v
);
981 EXPECT_EQ(v
, result_view
);
983 result_view
= root_view
->GetTooltipHandlerForPoint(point_in_v
);
984 EXPECT_EQ(v
, result_view
);
987 // When |v| returns false when CanProcessEventsWithinSubtree()
988 // is called, then none of |v|, |v_child|, and |v_grandchild| can be returned
989 // as a target (|root_view| should be returned as the target for each case).
992 v
->set_can_process_events_within_subtree(false);
994 result_view
= root_view
->GetEventHandlerForRect(rect_in_v_grandchild
);
995 EXPECT_EQ(root_view
, result_view
);
997 result_view
= root_view
->GetTooltipHandlerForPoint(point_in_v_grandchild
);
998 EXPECT_EQ(root_view
, result_view
);
1001 result_view
= root_view
->GetEventHandlerForRect(rect_in_v_child
);
1002 EXPECT_EQ(root_view
, result_view
);
1004 result_view
= root_view
->GetTooltipHandlerForPoint(point_in_v_child
);
1005 EXPECT_EQ(root_view
, result_view
);
1008 result_view
= root_view
->GetEventHandlerForRect(rect_in_v
);
1009 EXPECT_EQ(root_view
, result_view
);
1011 result_view
= root_view
->GetTooltipHandlerForPoint(point_in_v
);
1012 EXPECT_EQ(root_view
, result_view
);
1015 TEST_F(ViewTest
, NotifyEnterExitOnChild
) {
1016 Widget
* widget
= new Widget
;
1017 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
1018 widget
->Init(params
);
1019 View
* root_view
= widget
->GetRootView();
1020 root_view
->SetBoundsRect(gfx::Rect(0, 0, 500, 500));
1022 // Have this hierarchy of views (the coords here are in root coord):
1023 // v1 (0, 0, 100, 100)
1024 // - v11 (0, 0, 20, 30)
1025 // - v111 (5, 5, 5, 15)
1026 // - v12 (50, 10, 30, 90)
1027 // - v121 (60, 20, 10, 10)
1028 // v2 (105, 0, 100, 100)
1029 // - v21 (120, 10, 50, 20)
1031 TestView
* v1
= new TestView
;
1032 v1
->SetBounds(0, 0, 100, 100);
1033 root_view
->AddChildView(v1
);
1034 v1
->set_notify_enter_exit_on_child(true);
1036 TestView
* v11
= new TestView
;
1037 v11
->SetBounds(0, 0, 20, 30);
1038 v1
->AddChildView(v11
);
1040 TestView
* v111
= new TestView
;
1041 v111
->SetBounds(5, 5, 5, 15);
1042 v11
->AddChildView(v111
);
1044 TestView
* v12
= new TestView
;
1045 v12
->SetBounds(50, 10, 30, 90);
1046 v1
->AddChildView(v12
);
1048 TestView
* v121
= new TestView
;
1049 v121
->SetBounds(10, 10, 10, 10);
1050 v12
->AddChildView(v121
);
1052 TestView
* v2
= new TestView
;
1053 v2
->SetBounds(105, 0, 100, 100);
1054 root_view
->AddChildView(v2
);
1056 TestView
* v21
= new TestView
;
1057 v21
->SetBounds(15, 10, 50, 20);
1058 v2
->AddChildView(v21
);
1068 // Move the mouse in v111.
1069 gfx::Point
p1(6, 6);
1070 ui::MouseEvent
move1(ui::ET_MOUSE_MOVED
, p1
, p1
, ui::EventTimeForNow(), 0, 0);
1071 root_view
->OnMouseMoved(move1
);
1072 EXPECT_TRUE(v111
->received_mouse_enter_
);
1073 EXPECT_FALSE(v11
->last_mouse_event_type_
);
1074 EXPECT_TRUE(v1
->received_mouse_enter_
);
1079 // Now, move into v121.
1080 gfx::Point
p2(65, 21);
1081 ui::MouseEvent
move2(ui::ET_MOUSE_MOVED
, p2
, p2
, ui::EventTimeForNow(), 0, 0);
1082 root_view
->OnMouseMoved(move2
);
1083 EXPECT_TRUE(v111
->received_mouse_exit_
);
1084 EXPECT_TRUE(v121
->received_mouse_enter_
);
1085 EXPECT_FALSE(v1
->last_mouse_event_type_
);
1090 // Now, move into v11.
1091 gfx::Point
p3(1, 1);
1092 ui::MouseEvent
move3(ui::ET_MOUSE_MOVED
, p3
, p3
, ui::EventTimeForNow(), 0, 0);
1093 root_view
->OnMouseMoved(move3
);
1094 EXPECT_TRUE(v121
->received_mouse_exit_
);
1095 EXPECT_TRUE(v11
->received_mouse_enter_
);
1096 EXPECT_FALSE(v1
->last_mouse_event_type_
);
1102 gfx::Point
p4(121, 15);
1103 ui::MouseEvent
move4(ui::ET_MOUSE_MOVED
, p4
, p4
, ui::EventTimeForNow(), 0, 0);
1104 root_view
->OnMouseMoved(move4
);
1105 EXPECT_TRUE(v21
->received_mouse_enter_
);
1106 EXPECT_FALSE(v2
->last_mouse_event_type_
);
1107 EXPECT_TRUE(v11
->received_mouse_exit_
);
1108 EXPECT_TRUE(v1
->received_mouse_exit_
);
1115 gfx::Point
p5(21, 0);
1116 ui::MouseEvent
move5(ui::ET_MOUSE_MOVED
, p5
, p5
, ui::EventTimeForNow(), 0, 0);
1117 root_view
->OnMouseMoved(move5
);
1118 EXPECT_TRUE(v21
->received_mouse_exit_
);
1119 EXPECT_TRUE(v1
->received_mouse_enter_
);
1124 // Now, move into v11.
1125 gfx::Point
p6(15, 15);
1126 ui::MouseEvent
mouse6(ui::ET_MOUSE_MOVED
, p6
, p6
, ui::EventTimeForNow(), 0,
1128 root_view
->OnMouseMoved(mouse6
);
1129 EXPECT_TRUE(v11
->received_mouse_enter_
);
1130 EXPECT_FALSE(v1
->last_mouse_event_type_
);
1135 // Move back into v1. Although |v1| had already received an ENTER for mouse6,
1136 // and the mouse remains inside |v1| the whole time, it receives another ENTER
1137 // when the mouse leaves v11.
1138 gfx::Point
p7(21, 0);
1139 ui::MouseEvent
mouse7(ui::ET_MOUSE_MOVED
, p7
, p7
, ui::EventTimeForNow(), 0,
1141 root_view
->OnMouseMoved(mouse7
);
1142 EXPECT_TRUE(v11
->received_mouse_exit_
);
1143 EXPECT_FALSE(v1
->received_mouse_enter_
);
1148 TEST_F(ViewTest
, Textfield
) {
1149 const base::string16 kText
= ASCIIToUTF16(
1150 "Reality is that which, when you stop believing it, doesn't go away.");
1151 const base::string16 kExtraText
= ASCIIToUTF16("Pretty deep, Philip!");
1153 Widget
* widget
= new Widget
;
1154 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
1155 params
.bounds
= gfx::Rect(0, 0, 100, 100);
1156 widget
->Init(params
);
1157 View
* root_view
= widget
->GetRootView();
1159 Textfield
* textfield
= new Textfield();
1160 root_view
->AddChildView(textfield
);
1162 // Test setting, appending text.
1163 textfield
->SetText(kText
);
1164 EXPECT_EQ(kText
, textfield
->text());
1165 textfield
->AppendText(kExtraText
);
1166 EXPECT_EQ(kText
+ kExtraText
, textfield
->text());
1167 textfield
->SetText(base::string16());
1168 EXPECT_TRUE(textfield
->text().empty());
1170 // Test selection related methods.
1171 textfield
->SetText(kText
);
1172 EXPECT_TRUE(textfield
->GetSelectedText().empty());
1173 textfield
->SelectAll(false);
1174 EXPECT_EQ(kText
, textfield
->text());
1175 textfield
->ClearSelection();
1176 EXPECT_TRUE(textfield
->GetSelectedText().empty());
1181 // Tests that the Textfield view respond appropiately to cut/copy/paste.
1182 TEST_F(ViewTest
, TextfieldCutCopyPaste
) {
1183 const base::string16 kNormalText
= ASCIIToUTF16("Normal");
1184 const base::string16 kReadOnlyText
= ASCIIToUTF16("Read only");
1185 const base::string16 kPasswordText
=
1186 ASCIIToUTF16("Password! ** Secret stuff **");
1188 ui::Clipboard
* clipboard
= ui::Clipboard::GetForCurrentThread();
1190 Widget
* widget
= new Widget
;
1191 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
1192 params
.bounds
= gfx::Rect(0, 0, 100, 100);
1193 widget
->Init(params
);
1194 View
* root_view
= widget
->GetRootView();
1196 Textfield
* normal
= new Textfield();
1197 Textfield
* read_only
= new Textfield();
1198 read_only
->SetReadOnly(true);
1199 Textfield
* password
= new Textfield();
1200 password
->SetTextInputType(ui::TEXT_INPUT_TYPE_PASSWORD
);
1202 root_view
->AddChildView(normal
);
1203 root_view
->AddChildView(read_only
);
1204 root_view
->AddChildView(password
);
1206 normal
->SetText(kNormalText
);
1207 read_only
->SetText(kReadOnlyText
);
1208 password
->SetText(kPasswordText
);
1214 normal
->SelectAll(false);
1215 normal
->ExecuteCommand(IDS_APP_CUT
);
1216 base::string16 result
;
1217 clipboard
->ReadText(ui::CLIPBOARD_TYPE_COPY_PASTE
, &result
);
1218 EXPECT_EQ(kNormalText
, result
);
1219 normal
->SetText(kNormalText
); // Let's revert to the original content.
1221 read_only
->SelectAll(false);
1222 read_only
->ExecuteCommand(IDS_APP_CUT
);
1224 clipboard
->ReadText(ui::CLIPBOARD_TYPE_COPY_PASTE
, &result
);
1225 // Cut should have failed, so the clipboard content should not have changed.
1226 EXPECT_EQ(kNormalText
, result
);
1228 password
->SelectAll(false);
1229 password
->ExecuteCommand(IDS_APP_CUT
);
1231 clipboard
->ReadText(ui::CLIPBOARD_TYPE_COPY_PASTE
, &result
);
1232 // Cut should have failed, so the clipboard content should not have changed.
1233 EXPECT_EQ(kNormalText
, result
);
1239 // Start with |read_only| to observe a change in clipboard text.
1240 read_only
->SelectAll(false);
1241 read_only
->ExecuteCommand(IDS_APP_COPY
);
1243 clipboard
->ReadText(ui::CLIPBOARD_TYPE_COPY_PASTE
, &result
);
1244 EXPECT_EQ(kReadOnlyText
, result
);
1246 normal
->SelectAll(false);
1247 normal
->ExecuteCommand(IDS_APP_COPY
);
1249 clipboard
->ReadText(ui::CLIPBOARD_TYPE_COPY_PASTE
, &result
);
1250 EXPECT_EQ(kNormalText
, result
);
1252 password
->SelectAll(false);
1253 password
->ExecuteCommand(IDS_APP_COPY
);
1255 clipboard
->ReadText(ui::CLIPBOARD_TYPE_COPY_PASTE
, &result
);
1256 // Text cannot be copied from an obscured field; the clipboard won't change.
1257 EXPECT_EQ(kNormalText
, result
);
1263 // Attempting to paste kNormalText in a read-only text-field should fail.
1264 read_only
->SelectAll(false);
1265 read_only
->ExecuteCommand(IDS_APP_PASTE
);
1266 EXPECT_EQ(kReadOnlyText
, read_only
->text());
1268 password
->SelectAll(false);
1269 password
->ExecuteCommand(IDS_APP_PASTE
);
1270 EXPECT_EQ(kNormalText
, password
->text());
1272 // Copy from |read_only| to observe a change in the normal textfield text.
1273 read_only
->SelectAll(false);
1274 read_only
->ExecuteCommand(IDS_APP_COPY
);
1275 normal
->SelectAll(false);
1276 normal
->ExecuteCommand(IDS_APP_PASTE
);
1277 EXPECT_EQ(kReadOnlyText
, normal
->text());
1281 ////////////////////////////////////////////////////////////////////////////////
1283 ////////////////////////////////////////////////////////////////////////////////
1284 bool TestView::AcceleratorPressed(const ui::Accelerator
& accelerator
) {
1285 accelerator_count_map_
[accelerator
]++;
1289 // TODO: these tests were initially commented out when getting aura to
1290 // run. Figure out if still valuable and either nuke or fix.
1292 TEST_F(ViewTest
, ActivateAccelerator
) {
1293 // Register a keyboard accelerator before the view is added to a window.
1294 ui::Accelerator
return_accelerator(ui::VKEY_RETURN
, ui::EF_NONE
);
1295 TestView
* view
= new TestView();
1297 view
->AddAccelerator(return_accelerator
);
1298 EXPECT_EQ(view
->accelerator_count_map_
[return_accelerator
], 0);
1300 // Create a window and add the view as its child.
1301 scoped_ptr
<Widget
> widget(new Widget
);
1302 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
1303 params
.ownership
= views::Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
1304 params
.bounds
= gfx::Rect(0, 0, 100, 100);
1305 widget
->Init(params
);
1306 View
* root
= widget
->GetRootView();
1307 root
->AddChildView(view
);
1310 // Get the focus manager.
1311 FocusManager
* focus_manager
= widget
->GetFocusManager();
1312 ASSERT_TRUE(focus_manager
);
1314 // Hit the return key and see if it takes effect.
1315 EXPECT_TRUE(focus_manager
->ProcessAccelerator(return_accelerator
));
1316 EXPECT_EQ(view
->accelerator_count_map_
[return_accelerator
], 1);
1318 // Hit the escape key. Nothing should happen.
1319 ui::Accelerator
escape_accelerator(ui::VKEY_ESCAPE
, ui::EF_NONE
);
1320 EXPECT_FALSE(focus_manager
->ProcessAccelerator(escape_accelerator
));
1321 EXPECT_EQ(view
->accelerator_count_map_
[return_accelerator
], 1);
1322 EXPECT_EQ(view
->accelerator_count_map_
[escape_accelerator
], 0);
1324 // Now register the escape key and hit it again.
1325 view
->AddAccelerator(escape_accelerator
);
1326 EXPECT_TRUE(focus_manager
->ProcessAccelerator(escape_accelerator
));
1327 EXPECT_EQ(view
->accelerator_count_map_
[return_accelerator
], 1);
1328 EXPECT_EQ(view
->accelerator_count_map_
[escape_accelerator
], 1);
1330 // Remove the return key accelerator.
1331 view
->RemoveAccelerator(return_accelerator
);
1332 EXPECT_FALSE(focus_manager
->ProcessAccelerator(return_accelerator
));
1333 EXPECT_EQ(view
->accelerator_count_map_
[return_accelerator
], 1);
1334 EXPECT_EQ(view
->accelerator_count_map_
[escape_accelerator
], 1);
1336 // Add it again. Hit the return key and the escape key.
1337 view
->AddAccelerator(return_accelerator
);
1338 EXPECT_TRUE(focus_manager
->ProcessAccelerator(return_accelerator
));
1339 EXPECT_EQ(view
->accelerator_count_map_
[return_accelerator
], 2);
1340 EXPECT_EQ(view
->accelerator_count_map_
[escape_accelerator
], 1);
1341 EXPECT_TRUE(focus_manager
->ProcessAccelerator(escape_accelerator
));
1342 EXPECT_EQ(view
->accelerator_count_map_
[return_accelerator
], 2);
1343 EXPECT_EQ(view
->accelerator_count_map_
[escape_accelerator
], 2);
1345 // Remove all the accelerators.
1346 view
->ResetAccelerators();
1347 EXPECT_FALSE(focus_manager
->ProcessAccelerator(return_accelerator
));
1348 EXPECT_EQ(view
->accelerator_count_map_
[return_accelerator
], 2);
1349 EXPECT_EQ(view
->accelerator_count_map_
[escape_accelerator
], 2);
1350 EXPECT_FALSE(focus_manager
->ProcessAccelerator(escape_accelerator
));
1351 EXPECT_EQ(view
->accelerator_count_map_
[return_accelerator
], 2);
1352 EXPECT_EQ(view
->accelerator_count_map_
[escape_accelerator
], 2);
1357 TEST_F(ViewTest
, HiddenViewWithAccelerator
) {
1358 ui::Accelerator
return_accelerator(ui::VKEY_RETURN
, ui::EF_NONE
);
1359 TestView
* view
= new TestView();
1361 view
->AddAccelerator(return_accelerator
);
1362 EXPECT_EQ(view
->accelerator_count_map_
[return_accelerator
], 0);
1364 scoped_ptr
<Widget
> widget(new Widget
);
1365 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
1366 params
.ownership
= views::Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
1367 params
.bounds
= gfx::Rect(0, 0, 100, 100);
1368 widget
->Init(params
);
1369 View
* root
= widget
->GetRootView();
1370 root
->AddChildView(view
);
1373 FocusManager
* focus_manager
= widget
->GetFocusManager();
1374 ASSERT_TRUE(focus_manager
);
1376 view
->SetVisible(false);
1377 EXPECT_FALSE(focus_manager
->ProcessAccelerator(return_accelerator
));
1379 view
->SetVisible(true);
1380 EXPECT_TRUE(focus_manager
->ProcessAccelerator(return_accelerator
));
1385 TEST_F(ViewTest
, ViewInHiddenWidgetWithAccelerator
) {
1386 ui::Accelerator
return_accelerator(ui::VKEY_RETURN
, ui::EF_NONE
);
1387 TestView
* view
= new TestView();
1389 view
->AddAccelerator(return_accelerator
);
1390 EXPECT_EQ(view
->accelerator_count_map_
[return_accelerator
], 0);
1392 scoped_ptr
<Widget
> widget(new Widget
);
1393 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
1394 params
.ownership
= views::Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
1395 params
.bounds
= gfx::Rect(0, 0, 100, 100);
1396 widget
->Init(params
);
1397 View
* root
= widget
->GetRootView();
1398 root
->AddChildView(view
);
1400 FocusManager
* focus_manager
= widget
->GetFocusManager();
1401 ASSERT_TRUE(focus_manager
);
1403 EXPECT_FALSE(focus_manager
->ProcessAccelerator(return_accelerator
));
1404 EXPECT_EQ(0, view
->accelerator_count_map_
[return_accelerator
]);
1407 EXPECT_TRUE(focus_manager
->ProcessAccelerator(return_accelerator
));
1408 EXPECT_EQ(1, view
->accelerator_count_map_
[return_accelerator
]);
1411 EXPECT_FALSE(focus_manager
->ProcessAccelerator(return_accelerator
));
1412 EXPECT_EQ(1, view
->accelerator_count_map_
[return_accelerator
]);
1417 ////////////////////////////////////////////////////////////////////////////////
1418 // Mouse-wheel message rerouting
1419 ////////////////////////////////////////////////////////////////////////////////
1420 class ScrollableTestView
: public View
{
1422 ScrollableTestView() { }
1424 virtual gfx::Size
GetPreferredSize() {
1425 return gfx::Size(100, 10000);
1428 virtual void Layout() {
1429 SizeToPreferredSize();
1433 class TestViewWithControls
: public View
{
1435 TestViewWithControls() {
1436 text_field_
= new Textfield();
1437 AddChildView(text_field_
);
1440 Textfield
* text_field_
;
1443 class SimpleWidgetDelegate
: public WidgetDelegate
{
1445 explicit SimpleWidgetDelegate(View
* contents
) : contents_(contents
) { }
1447 virtual void DeleteDelegate() { delete this; }
1449 virtual View
* GetContentsView() { return contents_
; }
1451 virtual Widget
* GetWidget() { return contents_
->GetWidget(); }
1452 virtual const Widget
* GetWidget() const { return contents_
->GetWidget(); }
1458 // Tests that the mouse-wheel messages are correctly rerouted to the window
1460 // TODO(jcampan): http://crbug.com/10572 Disabled as it fails on the Vista build
1462 // Note that this fails for a variety of reasons:
1463 // - focused view is apparently reset across window activations and never
1464 // properly restored
1465 // - this test depends on you not having any other window visible open under the
1466 // area that it opens the test windows. --beng
1467 TEST_F(ViewTest
, DISABLED_RerouteMouseWheelTest
) {
1468 TestViewWithControls
* view_with_controls
= new TestViewWithControls();
1469 Widget
* window1
= Widget::CreateWindowWithBounds(
1470 new SimpleWidgetDelegate(view_with_controls
),
1471 gfx::Rect(0, 0, 100, 100));
1473 ScrollView
* scroll_view
= new ScrollView();
1474 scroll_view
->SetContents(new ScrollableTestView());
1475 Widget
* window2
= Widget::CreateWindowWithBounds(
1476 new SimpleWidgetDelegate(scroll_view
),
1477 gfx::Rect(200, 200, 100, 100));
1479 EXPECT_EQ(0, scroll_view
->GetVisibleRect().y());
1481 // Make the window1 active, as this is what it would be in real-world.
1482 window1
->Activate();
1484 // Let's send a mouse-wheel message to the different controls and check that
1485 // it is rerouted to the window under the mouse (effectively scrolling the
1488 // First to the Window's HWND.
1489 ::SendMessage(view_with_controls
->GetWidget()->GetNativeView(),
1490 WM_MOUSEWHEEL
, MAKEWPARAM(0, -20), MAKELPARAM(250, 250));
1491 EXPECT_EQ(20, scroll_view
->GetVisibleRect().y());
1493 window1
->CloseNow();
1494 window2
->CloseNow();
1498 ////////////////////////////////////////////////////////////////////////////////
1499 // Native view hierachy
1500 ////////////////////////////////////////////////////////////////////////////////
1501 class ToplevelWidgetObserverView
: public View
{
1503 ToplevelWidgetObserverView() : toplevel_(NULL
) {
1505 ~ToplevelWidgetObserverView() override
{}
1508 void ViewHierarchyChanged(
1509 const ViewHierarchyChangedDetails
& details
) override
{
1510 if (details
.is_add
) {
1511 toplevel_
= GetWidget() ? GetWidget()->GetTopLevelWidget() : NULL
;
1516 void NativeViewHierarchyChanged() override
{
1517 toplevel_
= GetWidget() ? GetWidget()->GetTopLevelWidget() : NULL
;
1520 Widget
* toplevel() { return toplevel_
; }
1525 DISALLOW_COPY_AND_ASSIGN(ToplevelWidgetObserverView
);
1528 // Test that a view can track the current top level widget by overriding
1529 // View::ViewHierarchyChanged() and View::NativeViewHierarchyChanged().
1530 TEST_F(ViewTest
, NativeViewHierarchyChanged
) {
1531 scoped_ptr
<Widget
> toplevel1(new Widget
);
1532 Widget::InitParams toplevel1_params
=
1533 CreateParams(Widget::InitParams::TYPE_POPUP
);
1534 toplevel1_params
.ownership
= Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
1535 toplevel1
->Init(toplevel1_params
);
1537 scoped_ptr
<Widget
> toplevel2(new Widget
);
1538 Widget::InitParams toplevel2_params
=
1539 CreateParams(Widget::InitParams::TYPE_POPUP
);
1540 toplevel2_params
.ownership
= Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
1541 toplevel2
->Init(toplevel2_params
);
1543 Widget
* child
= new Widget
;
1544 Widget::InitParams
child_params(Widget::InitParams::TYPE_CONTROL
);
1545 child_params
.parent
= toplevel1
->GetNativeView();
1546 child
->Init(child_params
);
1548 ToplevelWidgetObserverView
* observer_view
=
1549 new ToplevelWidgetObserverView();
1550 EXPECT_EQ(NULL
, observer_view
->toplevel());
1552 child
->SetContentsView(observer_view
);
1553 EXPECT_EQ(toplevel1
, observer_view
->toplevel());
1555 Widget::ReparentNativeView(child
->GetNativeView(),
1556 toplevel2
->GetNativeView());
1557 EXPECT_EQ(toplevel2
, observer_view
->toplevel());
1559 observer_view
->parent()->RemoveChildView(observer_view
);
1560 EXPECT_EQ(NULL
, observer_view
->toplevel());
1562 // Make |observer_view| |child|'s contents view again so that it gets deleted
1564 child
->SetContentsView(observer_view
);
1567 ////////////////////////////////////////////////////////////////////////////////
1569 ////////////////////////////////////////////////////////////////////////////////
1571 class TransformPaintView
: public TestView
{
1573 TransformPaintView() {}
1574 ~TransformPaintView() override
{}
1576 void ClearScheduledPaintRect() {
1577 scheduled_paint_rect_
= gfx::Rect();
1580 gfx::Rect
scheduled_paint_rect() const { return scheduled_paint_rect_
; }
1582 // Overridden from View:
1583 void SchedulePaintInRect(const gfx::Rect
& rect
) override
{
1584 gfx::Rect xrect
= ConvertRectToParent(rect
);
1585 scheduled_paint_rect_
.Union(xrect
);
1589 gfx::Rect scheduled_paint_rect_
;
1591 DISALLOW_COPY_AND_ASSIGN(TransformPaintView
);
1594 TEST_F(ViewTest
, TransformPaint
) {
1595 TransformPaintView
* v1
= new TransformPaintView();
1596 v1
->SetBoundsRect(gfx::Rect(0, 0, 500, 300));
1598 TestView
* v2
= new TestView();
1599 v2
->SetBoundsRect(gfx::Rect(100, 100, 200, 100));
1601 Widget
* widget
= new Widget
;
1602 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
1603 params
.bounds
= gfx::Rect(50, 50, 650, 650);
1604 widget
->Init(params
);
1606 View
* root
= widget
->GetRootView();
1608 root
->AddChildView(v1
);
1609 v1
->AddChildView(v2
);
1611 // At this moment, |v2| occupies (100, 100) to (300, 200) in |root|.
1612 v1
->ClearScheduledPaintRect();
1613 v2
->SchedulePaint();
1615 EXPECT_EQ(gfx::Rect(100, 100, 200, 100), v1
->scheduled_paint_rect());
1617 // Rotate |v1| counter-clockwise.
1618 gfx::Transform transform
;
1619 RotateCounterclockwise(&transform
);
1620 transform
.matrix().set(1, 3, 500.0);
1621 v1
->SetTransform(transform
);
1623 // |v2| now occupies (100, 200) to (200, 400) in |root|.
1625 v1
->ClearScheduledPaintRect();
1626 v2
->SchedulePaint();
1628 EXPECT_EQ(gfx::Rect(100, 200, 100, 200), v1
->scheduled_paint_rect());
1633 TEST_F(ViewTest
, TransformEvent
) {
1634 TestView
* v1
= new TestView();
1635 v1
->SetBoundsRect(gfx::Rect(0, 0, 500, 300));
1637 TestView
* v2
= new TestView();
1638 v2
->SetBoundsRect(gfx::Rect(100, 100, 200, 100));
1640 Widget
* widget
= new Widget
;
1641 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
1642 params
.bounds
= gfx::Rect(50, 50, 650, 650);
1643 widget
->Init(params
);
1644 View
* root
= widget
->GetRootView();
1646 root
->AddChildView(v1
);
1647 v1
->AddChildView(v2
);
1649 // At this moment, |v2| occupies (100, 100) to (300, 200) in |root|.
1651 // Rotate |v1| counter-clockwise.
1652 gfx::Transform
transform(v1
->GetTransform());
1653 RotateCounterclockwise(&transform
);
1654 transform
.matrix().set(1, 3, 500.0);
1655 v1
->SetTransform(transform
);
1657 // |v2| now occupies (100, 200) to (200, 400) in |root|.
1661 gfx::Point
p1(110, 210);
1662 ui::MouseEvent
pressed(ui::ET_MOUSE_PRESSED
, p1
, p1
, ui::EventTimeForNow(),
1663 ui::EF_LEFT_MOUSE_BUTTON
, ui::EF_LEFT_MOUSE_BUTTON
);
1664 root
->OnMousePressed(pressed
);
1665 EXPECT_EQ(0, v1
->last_mouse_event_type_
);
1666 EXPECT_EQ(ui::ET_MOUSE_PRESSED
, v2
->last_mouse_event_type_
);
1667 EXPECT_EQ(190, v2
->location_
.x());
1668 EXPECT_EQ(10, v2
->location_
.y());
1670 ui::MouseEvent
released(ui::ET_MOUSE_RELEASED
, gfx::Point(), gfx::Point(),
1671 ui::EventTimeForNow(), 0, 0);
1672 root
->OnMouseReleased(released
);
1674 // Now rotate |v2| inside |v1| clockwise.
1675 transform
= v2
->GetTransform();
1676 RotateClockwise(&transform
);
1677 transform
.matrix().set(0, 3, 100.f
);
1678 v2
->SetTransform(transform
);
1680 // Now, |v2| occupies (100, 100) to (200, 300) in |v1|, and (100, 300) to
1681 // (300, 400) in |root|.
1686 gfx::Point
point2(110, 320);
1687 ui::MouseEvent
p2(ui::ET_MOUSE_PRESSED
, point2
, point2
, ui::EventTimeForNow(),
1688 ui::EF_LEFT_MOUSE_BUTTON
, ui::EF_LEFT_MOUSE_BUTTON
);
1689 root
->OnMousePressed(p2
);
1690 EXPECT_EQ(0, v1
->last_mouse_event_type_
);
1691 EXPECT_EQ(ui::ET_MOUSE_PRESSED
, v2
->last_mouse_event_type_
);
1692 EXPECT_EQ(10, v2
->location_
.x());
1693 EXPECT_EQ(20, v2
->location_
.y());
1695 root
->OnMouseReleased(released
);
1697 v1
->SetTransform(gfx::Transform());
1698 v2
->SetTransform(gfx::Transform());
1700 TestView
* v3
= new TestView();
1701 v3
->SetBoundsRect(gfx::Rect(10, 10, 20, 30));
1702 v2
->AddChildView(v3
);
1704 // Rotate |v3| clockwise with respect to |v2|.
1705 transform
= v1
->GetTransform();
1706 RotateClockwise(&transform
);
1707 transform
.matrix().set(0, 3, 30.f
);
1708 v3
->SetTransform(transform
);
1710 // Scale |v2| with respect to |v1| along both axis.
1711 transform
= v2
->GetTransform();
1712 transform
.matrix().set(0, 0, 0.8f
);
1713 transform
.matrix().set(1, 1, 0.5f
);
1714 v2
->SetTransform(transform
);
1716 // |v3| occupies (108, 105) to (132, 115) in |root|.
1722 gfx::Point
point(112, 110);
1723 ui::MouseEvent
p3(ui::ET_MOUSE_PRESSED
, point
, point
, ui::EventTimeForNow(),
1724 ui::EF_LEFT_MOUSE_BUTTON
, ui::EF_LEFT_MOUSE_BUTTON
);
1725 root
->OnMousePressed(p3
);
1727 EXPECT_EQ(ui::ET_MOUSE_PRESSED
, v3
->last_mouse_event_type_
);
1728 EXPECT_EQ(10, v3
->location_
.x());
1729 EXPECT_EQ(25, v3
->location_
.y());
1731 root
->OnMouseReleased(released
);
1733 v1
->SetTransform(gfx::Transform());
1734 v2
->SetTransform(gfx::Transform());
1735 v3
->SetTransform(gfx::Transform());
1741 // Rotate |v3| clockwise with respect to |v2|, and scale it along both axis.
1742 transform
= v3
->GetTransform();
1743 RotateClockwise(&transform
);
1744 transform
.matrix().set(0, 3, 30.f
);
1745 // Rotation sets some scaling transformation. Using SetScale would overwrite
1746 // that and pollute the rotation. So combine the scaling with the existing
1748 gfx::Transform scale
;
1749 scale
.Scale(0.8f
, 0.5f
);
1750 transform
.ConcatTransform(scale
);
1751 v3
->SetTransform(transform
);
1753 // Translate |v2| with respect to |v1|.
1754 transform
= v2
->GetTransform();
1755 transform
.matrix().set(0, 3, 10.f
);
1756 transform
.matrix().set(1, 3, 10.f
);
1757 v2
->SetTransform(transform
);
1759 // |v3| now occupies (120, 120) to (144, 130) in |root|.
1761 gfx::Point
point3(124, 125);
1762 ui::MouseEvent
p4(ui::ET_MOUSE_PRESSED
, point3
, point3
, ui::EventTimeForNow(),
1763 ui::EF_LEFT_MOUSE_BUTTON
, ui::EF_LEFT_MOUSE_BUTTON
);
1764 root
->OnMousePressed(p4
);
1766 EXPECT_EQ(ui::ET_MOUSE_PRESSED
, v3
->last_mouse_event_type_
);
1767 EXPECT_EQ(10, v3
->location_
.x());
1768 EXPECT_EQ(25, v3
->location_
.y());
1770 root
->OnMouseReleased(released
);
1775 TEST_F(ViewTest
, TransformVisibleBound
) {
1776 gfx::Rect
viewport_bounds(0, 0, 100, 100);
1778 scoped_ptr
<Widget
> widget(new Widget
);
1779 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
1780 params
.ownership
= views::Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
1781 params
.bounds
= viewport_bounds
;
1782 widget
->Init(params
);
1783 widget
->GetRootView()->SetBoundsRect(viewport_bounds
);
1785 View
* viewport
= new View
;
1786 widget
->SetContentsView(viewport
);
1787 View
* contents
= new View
;
1788 viewport
->AddChildView(contents
);
1789 viewport
->SetBoundsRect(viewport_bounds
);
1790 contents
->SetBoundsRect(gfx::Rect(0, 0, 100, 200));
1792 View
* child
= new View
;
1793 contents
->AddChildView(child
);
1794 child
->SetBoundsRect(gfx::Rect(10, 90, 50, 50));
1795 EXPECT_EQ(gfx::Rect(0, 0, 50, 10), child
->GetVisibleBounds());
1797 // Rotate |child| counter-clockwise
1798 gfx::Transform transform
;
1799 RotateCounterclockwise(&transform
);
1800 transform
.matrix().set(1, 3, 50.f
);
1801 child
->SetTransform(transform
);
1802 EXPECT_EQ(gfx::Rect(40, 0, 10, 50), child
->GetVisibleBounds());
1807 ////////////////////////////////////////////////////////////////////////////////
1808 // OnVisibleBoundsChanged()
1810 class VisibleBoundsView
: public View
{
1812 VisibleBoundsView() : received_notification_(false) {}
1813 ~VisibleBoundsView() override
{}
1815 bool received_notification() const { return received_notification_
; }
1816 void set_received_notification(bool received
) {
1817 received_notification_
= received
;
1821 // Overridden from View:
1822 bool GetNeedsNotificationWhenVisibleBoundsChange() const override
{
1825 void OnVisibleBoundsChanged() override
{ received_notification_
= true; }
1827 bool received_notification_
;
1829 DISALLOW_COPY_AND_ASSIGN(VisibleBoundsView
);
1832 TEST_F(ViewTest
, OnVisibleBoundsChanged
) {
1833 gfx::Rect
viewport_bounds(0, 0, 100, 100);
1835 scoped_ptr
<Widget
> widget(new Widget
);
1836 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
1837 params
.ownership
= views::Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
1838 params
.bounds
= viewport_bounds
;
1839 widget
->Init(params
);
1840 widget
->GetRootView()->SetBoundsRect(viewport_bounds
);
1842 View
* viewport
= new View
;
1843 widget
->SetContentsView(viewport
);
1844 View
* contents
= new View
;
1845 viewport
->AddChildView(contents
);
1846 viewport
->SetBoundsRect(viewport_bounds
);
1847 contents
->SetBoundsRect(gfx::Rect(0, 0, 100, 200));
1849 // Create a view that cares about visible bounds notifications, and position
1850 // it just outside the visible bounds of the viewport.
1851 VisibleBoundsView
* child
= new VisibleBoundsView
;
1852 contents
->AddChildView(child
);
1853 child
->SetBoundsRect(gfx::Rect(10, 110, 50, 50));
1855 // The child bound should be fully clipped.
1856 EXPECT_TRUE(child
->GetVisibleBounds().IsEmpty());
1858 // Now scroll the contents, but not enough to make the child visible.
1859 contents
->SetY(contents
->y() - 1);
1861 // We should have received the notification since the visible bounds may have
1862 // changed (even though they didn't).
1863 EXPECT_TRUE(child
->received_notification());
1864 EXPECT_TRUE(child
->GetVisibleBounds().IsEmpty());
1865 child
->set_received_notification(false);
1867 // Now scroll the contents, this time by enough to make the child visible by
1869 contents
->SetY(contents
->y() - 10);
1870 EXPECT_TRUE(child
->received_notification());
1871 EXPECT_EQ(1, child
->GetVisibleBounds().height());
1872 child
->set_received_notification(false);
1877 TEST_F(ViewTest
, SetBoundsPaint
) {
1879 TestView
* child_view
= new TestView
;
1881 top_view
.SetBoundsRect(gfx::Rect(0, 0, 100, 100));
1882 top_view
.scheduled_paint_rects_
.clear();
1883 child_view
->SetBoundsRect(gfx::Rect(10, 10, 20, 20));
1884 top_view
.AddChildView(child_view
);
1886 top_view
.scheduled_paint_rects_
.clear();
1887 child_view
->SetBoundsRect(gfx::Rect(30, 30, 20, 20));
1888 EXPECT_EQ(2U, top_view
.scheduled_paint_rects_
.size());
1890 // There should be 2 rects, spanning from (10, 10) to (50, 50).
1891 gfx::Rect paint_rect
= top_view
.scheduled_paint_rects_
[0];
1892 paint_rect
.Union(top_view
.scheduled_paint_rects_
[1]);
1893 EXPECT_EQ(gfx::Rect(10, 10, 40, 40), paint_rect
);
1896 // Assertions around painting and focus gain/lost.
1897 TEST_F(ViewTest
, FocusBlurPaints
) {
1898 TestView parent_view
;
1899 TestView
* child_view1
= new TestView
; // Owned by |parent_view|.
1901 parent_view
.SetBoundsRect(gfx::Rect(0, 0, 100, 100));
1903 child_view1
->SetBoundsRect(gfx::Rect(0, 0, 20, 20));
1904 parent_view
.AddChildView(child_view1
);
1906 parent_view
.scheduled_paint_rects_
.clear();
1907 child_view1
->scheduled_paint_rects_
.clear();
1909 // Focus change shouldn't trigger paints.
1910 child_view1
->DoFocus();
1912 EXPECT_TRUE(parent_view
.scheduled_paint_rects_
.empty());
1913 EXPECT_TRUE(child_view1
->scheduled_paint_rects_
.empty());
1915 child_view1
->DoBlur();
1916 EXPECT_TRUE(parent_view
.scheduled_paint_rects_
.empty());
1917 EXPECT_TRUE(child_view1
->scheduled_paint_rects_
.empty());
1920 // Verifies SetBounds(same bounds) doesn't trigger a SchedulePaint().
1921 TEST_F(ViewTest
, SetBoundsSameBoundsDoesntSchedulePaint
) {
1924 view
.SetBoundsRect(gfx::Rect(0, 0, 100, 100));
1925 view
.InvalidateLayout();
1926 view
.scheduled_paint_rects_
.clear();
1927 view
.SetBoundsRect(gfx::Rect(0, 0, 100, 100));
1928 EXPECT_TRUE(view
.scheduled_paint_rects_
.empty());
1931 // Verifies AddChildView() and RemoveChildView() schedule appropriate paints.
1932 TEST_F(ViewTest
, AddAndRemoveSchedulePaints
) {
1933 gfx::Rect
viewport_bounds(0, 0, 100, 100);
1935 // We have to put the View hierarchy into a Widget or no paints will be
1937 scoped_ptr
<Widget
> widget(new Widget
);
1938 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
1939 params
.ownership
= views::Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
1940 params
.bounds
= viewport_bounds
;
1941 widget
->Init(params
);
1942 widget
->GetRootView()->SetBoundsRect(viewport_bounds
);
1944 TestView
* parent_view
= new TestView
;
1945 widget
->SetContentsView(parent_view
);
1946 parent_view
->SetBoundsRect(viewport_bounds
);
1947 parent_view
->scheduled_paint_rects_
.clear();
1949 View
* child_view
= new View
;
1950 child_view
->SetBoundsRect(gfx::Rect(0, 0, 20, 20));
1951 parent_view
->AddChildView(child_view
);
1952 ASSERT_EQ(1U, parent_view
->scheduled_paint_rects_
.size());
1953 EXPECT_EQ(child_view
->bounds(), parent_view
->scheduled_paint_rects_
.front());
1955 parent_view
->scheduled_paint_rects_
.clear();
1956 parent_view
->RemoveChildView(child_view
);
1957 scoped_ptr
<View
> child_deleter(child_view
);
1958 ASSERT_EQ(1U, parent_view
->scheduled_paint_rects_
.size());
1959 EXPECT_EQ(child_view
->bounds(), parent_view
->scheduled_paint_rects_
.front());
1964 // Tests conversion methods with a transform.
1965 TEST_F(ViewTest
, ConversionsWithTransform
) {
1968 // View hierarchy used to test scale transforms.
1969 TestView
* child
= new TestView
;
1970 TestView
* child_child
= new TestView
;
1972 // View used to test a rotation transform.
1973 TestView
* child_2
= new TestView
;
1975 top_view
.AddChildView(child
);
1976 child
->AddChildView(child_child
);
1978 top_view
.SetBoundsRect(gfx::Rect(0, 0, 1000, 1000));
1980 child
->SetBoundsRect(gfx::Rect(7, 19, 500, 500));
1981 gfx::Transform transform
;
1982 transform
.Scale(3.0, 4.0);
1983 child
->SetTransform(transform
);
1985 child_child
->SetBoundsRect(gfx::Rect(17, 13, 100, 100));
1986 transform
.MakeIdentity();
1987 transform
.Scale(5.0, 7.0);
1988 child_child
->SetTransform(transform
);
1990 top_view
.AddChildView(child_2
);
1991 child_2
->SetBoundsRect(gfx::Rect(700, 725, 100, 100));
1992 transform
.MakeIdentity();
1993 RotateClockwise(&transform
);
1994 child_2
->SetTransform(transform
);
1996 // Sanity check to make sure basic transforms act as expected.
1998 gfx::Transform transform
;
1999 transform
.Translate(110.0, -110.0);
2000 transform
.Scale(100.0, 55.0);
2001 transform
.Translate(1.0, 1.0);
2003 // convert to a 3x3 matrix.
2004 const SkMatrix
& matrix
= transform
.matrix();
2006 EXPECT_EQ(210, matrix
.getTranslateX());
2007 EXPECT_EQ(-55, matrix
.getTranslateY());
2008 EXPECT_EQ(100, matrix
.getScaleX());
2009 EXPECT_EQ(55, matrix
.getScaleY());
2010 EXPECT_EQ(0, matrix
.getSkewX());
2011 EXPECT_EQ(0, matrix
.getSkewY());
2015 gfx::Transform transform
;
2016 transform
.Translate(1.0, 1.0);
2018 t2
.Scale(100.0, 55.0);
2020 t3
.Translate(110.0, -110.0);
2021 transform
.ConcatTransform(t2
);
2022 transform
.ConcatTransform(t3
);
2024 // convert to a 3x3 matrix
2025 const SkMatrix
& matrix
= transform
.matrix();
2027 EXPECT_EQ(210, matrix
.getTranslateX());
2028 EXPECT_EQ(-55, matrix
.getTranslateY());
2029 EXPECT_EQ(100, matrix
.getScaleX());
2030 EXPECT_EQ(55, matrix
.getScaleY());
2031 EXPECT_EQ(0, matrix
.getSkewX());
2032 EXPECT_EQ(0, matrix
.getSkewY());
2035 // Conversions from child->top and top->child.
2037 gfx::Point
point(5, 5);
2038 View::ConvertPointToTarget(child
, &top_view
, &point
);
2039 EXPECT_EQ(22, point
.x());
2040 EXPECT_EQ(39, point
.y());
2042 gfx::RectF
rect(5.0f
, 5.0f
, 10.0f
, 20.0f
);
2043 View::ConvertRectToTarget(child
, &top_view
, &rect
);
2044 EXPECT_FLOAT_EQ(22.0f
, rect
.x());
2045 EXPECT_FLOAT_EQ(39.0f
, rect
.y());
2046 EXPECT_FLOAT_EQ(30.0f
, rect
.width());
2047 EXPECT_FLOAT_EQ(80.0f
, rect
.height());
2049 point
.SetPoint(22, 39);
2050 View::ConvertPointToTarget(&top_view
, child
, &point
);
2051 EXPECT_EQ(5, point
.x());
2052 EXPECT_EQ(5, point
.y());
2054 rect
.SetRect(22.0f
, 39.0f
, 30.0f
, 80.0f
);
2055 View::ConvertRectToTarget(&top_view
, child
, &rect
);
2056 EXPECT_FLOAT_EQ(5.0f
, rect
.x());
2057 EXPECT_FLOAT_EQ(5.0f
, rect
.y());
2058 EXPECT_FLOAT_EQ(10.0f
, rect
.width());
2059 EXPECT_FLOAT_EQ(20.0f
, rect
.height());
2062 // Conversions from child_child->top and top->child_child.
2064 gfx::Point
point(5, 5);
2065 View::ConvertPointToTarget(child_child
, &top_view
, &point
);
2066 EXPECT_EQ(133, point
.x());
2067 EXPECT_EQ(211, point
.y());
2069 gfx::RectF
rect(5.0f
, 5.0f
, 10.0f
, 20.0f
);
2070 View::ConvertRectToTarget(child_child
, &top_view
, &rect
);
2071 EXPECT_FLOAT_EQ(133.0f
, rect
.x());
2072 EXPECT_FLOAT_EQ(211.0f
, rect
.y());
2073 EXPECT_FLOAT_EQ(150.0f
, rect
.width());
2074 EXPECT_FLOAT_EQ(560.0f
, rect
.height());
2076 point
.SetPoint(133, 211);
2077 View::ConvertPointToTarget(&top_view
, child_child
, &point
);
2078 EXPECT_EQ(5, point
.x());
2079 EXPECT_EQ(5, point
.y());
2081 rect
.SetRect(133.0f
, 211.0f
, 150.0f
, 560.0f
);
2082 View::ConvertRectToTarget(&top_view
, child_child
, &rect
);
2083 EXPECT_FLOAT_EQ(5.0f
, rect
.x());
2084 EXPECT_FLOAT_EQ(5.0f
, rect
.y());
2085 EXPECT_FLOAT_EQ(10.0f
, rect
.width());
2086 EXPECT_FLOAT_EQ(20.0f
, rect
.height());
2089 // Conversions from child_child->child and child->child_child
2091 gfx::Point
point(5, 5);
2092 View::ConvertPointToTarget(child_child
, child
, &point
);
2093 EXPECT_EQ(42, point
.x());
2094 EXPECT_EQ(48, point
.y());
2096 gfx::RectF
rect(5.0f
, 5.0f
, 10.0f
, 20.0f
);
2097 View::ConvertRectToTarget(child_child
, child
, &rect
);
2098 EXPECT_FLOAT_EQ(42.0f
, rect
.x());
2099 EXPECT_FLOAT_EQ(48.0f
, rect
.y());
2100 EXPECT_FLOAT_EQ(50.0f
, rect
.width());
2101 EXPECT_FLOAT_EQ(140.0f
, rect
.height());
2103 point
.SetPoint(42, 48);
2104 View::ConvertPointToTarget(child
, child_child
, &point
);
2105 EXPECT_EQ(5, point
.x());
2106 EXPECT_EQ(5, point
.y());
2108 rect
.SetRect(42.0f
, 48.0f
, 50.0f
, 140.0f
);
2109 View::ConvertRectToTarget(child
, child_child
, &rect
);
2110 EXPECT_FLOAT_EQ(5.0f
, rect
.x());
2111 EXPECT_FLOAT_EQ(5.0f
, rect
.y());
2112 EXPECT_FLOAT_EQ(10.0f
, rect
.width());
2113 EXPECT_FLOAT_EQ(20.0f
, rect
.height());
2116 // Conversions from top_view to child with a value that should be negative.
2117 // This ensures we don't round up with negative numbers.
2119 gfx::Point
point(6, 18);
2120 View::ConvertPointToTarget(&top_view
, child
, &point
);
2121 EXPECT_EQ(-1, point
.x());
2122 EXPECT_EQ(-1, point
.y());
2124 float error
= 0.01f
;
2125 gfx::RectF
rect(6.0f
, 18.0f
, 10.0f
, 39.0f
);
2126 View::ConvertRectToTarget(&top_view
, child
, &rect
);
2127 EXPECT_NEAR(-0.33f
, rect
.x(), error
);
2128 EXPECT_NEAR(-0.25f
, rect
.y(), error
);
2129 EXPECT_NEAR(3.33f
, rect
.width(), error
);
2130 EXPECT_NEAR(9.75f
, rect
.height(), error
);
2133 // Rect conversions from top_view->child_2 and child_2->top_view.
2135 gfx::RectF
rect(50.0f
, 55.0f
, 20.0f
, 30.0f
);
2136 View::ConvertRectToTarget(child_2
, &top_view
, &rect
);
2137 EXPECT_FLOAT_EQ(615.0f
, rect
.x());
2138 EXPECT_FLOAT_EQ(775.0f
, rect
.y());
2139 EXPECT_FLOAT_EQ(30.0f
, rect
.width());
2140 EXPECT_FLOAT_EQ(20.0f
, rect
.height());
2142 rect
.SetRect(615.0f
, 775.0f
, 30.0f
, 20.0f
);
2143 View::ConvertRectToTarget(&top_view
, child_2
, &rect
);
2144 EXPECT_FLOAT_EQ(50.0f
, rect
.x());
2145 EXPECT_FLOAT_EQ(55.0f
, rect
.y());
2146 EXPECT_FLOAT_EQ(20.0f
, rect
.width());
2147 EXPECT_FLOAT_EQ(30.0f
, rect
.height());
2151 // Tests conversion methods to and from screen coordinates.
2152 TEST_F(ViewTest
, ConversionsToFromScreen
) {
2153 scoped_ptr
<Widget
> widget(new Widget
);
2154 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
2155 params
.ownership
= views::Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
2156 params
.bounds
= gfx::Rect(50, 50, 650, 650);
2157 widget
->Init(params
);
2159 View
* child
= new View
;
2160 widget
->GetRootView()->AddChildView(child
);
2161 child
->SetBounds(10, 10, 100, 200);
2164 child
->SetTransform(t
);
2166 gfx::Point
point_in_screen(100, 90);
2167 gfx::Point
point_in_child(80, 60);
2169 gfx::Point point
= point_in_screen
;
2170 View::ConvertPointFromScreen(child
, &point
);
2171 EXPECT_EQ(point_in_child
.ToString(), point
.ToString());
2173 View::ConvertPointToScreen(child
, &point
);
2174 EXPECT_EQ(point_in_screen
.ToString(), point
.ToString());
2177 // Tests conversion methods for rectangles.
2178 TEST_F(ViewTest
, ConvertRectWithTransform
) {
2179 scoped_ptr
<Widget
> widget(new Widget
);
2180 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
2181 params
.ownership
= views::Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
2182 params
.bounds
= gfx::Rect(50, 50, 650, 650);
2183 widget
->Init(params
);
2184 View
* root
= widget
->GetRootView();
2186 TestView
* v1
= new TestView
;
2187 TestView
* v2
= new TestView
;
2188 root
->AddChildView(v1
);
2189 v1
->AddChildView(v2
);
2191 v1
->SetBoundsRect(gfx::Rect(10, 10, 500, 500));
2192 v2
->SetBoundsRect(gfx::Rect(20, 20, 100, 200));
2194 // |v2| now occupies (30, 30) to (130, 230) in |widget|
2195 gfx::Rect
rect(5, 5, 15, 40);
2196 EXPECT_EQ(gfx::Rect(25, 25, 15, 40), v2
->ConvertRectToParent(rect
));
2197 EXPECT_EQ(gfx::Rect(35, 35, 15, 40), v2
->ConvertRectToWidget(rect
));
2201 RotateCounterclockwise(&t2
);
2202 t2
.matrix().set(1, 3, 100.f
);
2203 v2
->SetTransform(t2
);
2205 // |v2| now occupies (30, 30) to (230, 130) in |widget|
2206 EXPECT_EQ(gfx::Rect(25, 100, 40, 15), v2
->ConvertRectToParent(rect
));
2207 EXPECT_EQ(gfx::Rect(35, 110, 40, 15), v2
->ConvertRectToWidget(rect
));
2212 v1
->SetTransform(t1
);
2214 // The rectangle should remain the same for |v1|.
2215 EXPECT_EQ(gfx::Rect(25, 100, 40, 15), v2
->ConvertRectToParent(rect
));
2217 // |v2| now occupies (20, 20) to (120, 70) in |widget|
2218 EXPECT_EQ(gfx::Rect(22, 60, 21, 8).ToString(),
2219 v2
->ConvertRectToWidget(rect
).ToString());
2224 class ObserverView
: public View
{
2227 ~ObserverView() override
;
2229 void ResetTestState();
2231 bool has_add_details() const { return has_add_details_
; }
2232 bool has_remove_details() const { return has_remove_details_
; }
2234 const ViewHierarchyChangedDetails
& add_details() const {
2235 return add_details_
;
2238 const ViewHierarchyChangedDetails
& remove_details() const {
2239 return remove_details_
;
2244 void ViewHierarchyChanged(
2245 const ViewHierarchyChangedDetails
& details
) override
;
2247 bool has_add_details_
;
2248 bool has_remove_details_
;
2249 ViewHierarchyChangedDetails add_details_
;
2250 ViewHierarchyChangedDetails remove_details_
;
2252 DISALLOW_COPY_AND_ASSIGN(ObserverView
);
2255 ObserverView::ObserverView()
2256 : has_add_details_(false),
2257 has_remove_details_(false) {
2260 ObserverView::~ObserverView() {}
2262 void ObserverView::ResetTestState() {
2263 has_add_details_
= false;
2264 has_remove_details_
= false;
2265 add_details_
= ViewHierarchyChangedDetails();
2266 remove_details_
= ViewHierarchyChangedDetails();
2269 void ObserverView::ViewHierarchyChanged(
2270 const ViewHierarchyChangedDetails
& details
) {
2271 if (details
.is_add
) {
2272 has_add_details_
= true;
2273 add_details_
= details
;
2275 has_remove_details_
= true;
2276 remove_details_
= details
;
2280 // Verifies that the ViewHierarchyChanged() notification is sent correctly when
2281 // a child view is added or removed to all the views in the hierarchy (up and
2283 // The tree looks like this:
2287 // +-- v4 (starts here, then get reparented to v1)
2288 TEST_F(ViewTest
, ViewHierarchyChanged
) {
2291 ObserverView
* v3
= new ObserverView();
2293 // Add |v3| to |v2|.
2294 scoped_ptr
<ObserverView
> v2(new ObserverView());
2295 v2
->AddChildView(v3
);
2297 // Make sure both |v2| and |v3| receive the ViewHierarchyChanged()
2299 EXPECT_TRUE(v2
->has_add_details());
2300 EXPECT_FALSE(v2
->has_remove_details());
2301 EXPECT_EQ(v2
.get(), v2
->add_details().parent
);
2302 EXPECT_EQ(v3
, v2
->add_details().child
);
2303 EXPECT_EQ(NULL
, v2
->add_details().move_view
);
2305 EXPECT_TRUE(v3
->has_add_details());
2306 EXPECT_FALSE(v3
->has_remove_details());
2307 EXPECT_EQ(v2
.get(), v3
->add_details().parent
);
2308 EXPECT_EQ(v3
, v3
->add_details().child
);
2309 EXPECT_EQ(NULL
, v3
->add_details().move_view
);
2311 // Reset everything to the initial state.
2312 v2
->ResetTestState();
2313 v3
->ResetTestState();
2316 v1
.AddChildView(v2
.get());
2318 // Verifies that |v2| is the child view *added* and the parent view is |v1|.
2319 // Make sure all the views (v1, v2, v3) received _that_ information.
2320 EXPECT_TRUE(v1
.has_add_details());
2321 EXPECT_FALSE(v1
.has_remove_details());
2322 EXPECT_EQ(&v1
, v1
.add_details().parent
);
2323 EXPECT_EQ(v2
.get(), v1
.add_details().child
);
2324 EXPECT_EQ(NULL
, v1
.add_details().move_view
);
2326 EXPECT_TRUE(v2
->has_add_details());
2327 EXPECT_FALSE(v2
->has_remove_details());
2328 EXPECT_EQ(&v1
, v2
->add_details().parent
);
2329 EXPECT_EQ(v2
.get(), v2
->add_details().child
);
2330 EXPECT_EQ(NULL
, v2
->add_details().move_view
);
2332 EXPECT_TRUE(v3
->has_add_details());
2333 EXPECT_FALSE(v3
->has_remove_details());
2334 EXPECT_EQ(&v1
, v3
->add_details().parent
);
2335 EXPECT_EQ(v2
.get(), v3
->add_details().child
);
2336 EXPECT_EQ(NULL
, v3
->add_details().move_view
);
2338 // Reset everything to the initial state.
2339 v1
.ResetTestState();
2340 v2
->ResetTestState();
2341 v3
->ResetTestState();
2343 // Remove |v2| from |v1|.
2344 v1
.RemoveChildView(v2
.get());
2346 // Verifies that |v2| is the child view *removed* and the parent view is |v1|.
2347 // Make sure all the views (v1, v2, v3) received _that_ information.
2348 EXPECT_FALSE(v1
.has_add_details());
2349 EXPECT_TRUE(v1
.has_remove_details());
2350 EXPECT_EQ(&v1
, v1
.remove_details().parent
);
2351 EXPECT_EQ(v2
.get(), v1
.remove_details().child
);
2352 EXPECT_EQ(NULL
, v1
.remove_details().move_view
);
2354 EXPECT_FALSE(v2
->has_add_details());
2355 EXPECT_TRUE(v2
->has_remove_details());
2356 EXPECT_EQ(&v1
, v2
->remove_details().parent
);
2357 EXPECT_EQ(v2
.get(), v2
->remove_details().child
);
2358 EXPECT_EQ(NULL
, v2
->remove_details().move_view
);
2360 EXPECT_FALSE(v3
->has_add_details());
2361 EXPECT_TRUE(v3
->has_remove_details());
2362 EXPECT_EQ(&v1
, v3
->remove_details().parent
);
2363 EXPECT_EQ(v3
, v3
->remove_details().child
);
2364 EXPECT_EQ(NULL
, v3
->remove_details().move_view
);
2366 // Verifies notifications when reparenting a view.
2367 ObserverView
* v4
= new ObserverView();
2368 // Add |v4| to |v2|.
2369 v2
->AddChildView(v4
);
2371 // Reset everything to the initial state.
2372 v1
.ResetTestState();
2373 v2
->ResetTestState();
2374 v3
->ResetTestState();
2375 v4
->ResetTestState();
2377 // Reparent |v4| to |v1|.
2378 v1
.AddChildView(v4
);
2380 // Verifies that all views receive the correct information for all the child,
2381 // parent and move views.
2383 // |v1| is the new parent, |v4| is the child for add, |v2| is the old parent.
2384 EXPECT_TRUE(v1
.has_add_details());
2385 EXPECT_FALSE(v1
.has_remove_details());
2386 EXPECT_EQ(&v1
, v1
.add_details().parent
);
2387 EXPECT_EQ(v4
, v1
.add_details().child
);
2388 EXPECT_EQ(v2
.get(), v1
.add_details().move_view
);
2390 // |v2| is the old parent, |v4| is the child for remove, |v1| is the new
2392 EXPECT_FALSE(v2
->has_add_details());
2393 EXPECT_TRUE(v2
->has_remove_details());
2394 EXPECT_EQ(v2
.get(), v2
->remove_details().parent
);
2395 EXPECT_EQ(v4
, v2
->remove_details().child
);
2396 EXPECT_EQ(&v1
, v2
->remove_details().move_view
);
2398 // |v3| is not impacted by this operation, and hence receives no notification.
2399 EXPECT_FALSE(v3
->has_add_details());
2400 EXPECT_FALSE(v3
->has_remove_details());
2402 // |v4| is the reparented child, so it receives notifications for the remove
2403 // and then the add. |v2| is its old parent, |v1| is its new parent.
2404 EXPECT_TRUE(v4
->has_remove_details());
2405 EXPECT_TRUE(v4
->has_add_details());
2406 EXPECT_EQ(v2
.get(), v4
->remove_details().parent
);
2407 EXPECT_EQ(&v1
, v4
->add_details().parent
);
2408 EXPECT_EQ(v4
, v4
->add_details().child
);
2409 EXPECT_EQ(v4
, v4
->remove_details().child
);
2410 EXPECT_EQ(&v1
, v4
->remove_details().move_view
);
2411 EXPECT_EQ(v2
.get(), v4
->add_details().move_view
);
2414 // Verifies if the child views added under the root are all deleted when calling
2415 // RemoveAllChildViews.
2416 // The tree looks like this:
2425 TEST_F(ViewTest
, RemoveAllChildViews
) {
2428 View
* child1
= new View
;
2429 root
.AddChildView(child1
);
2431 for (int i
= 0; i
< 2; ++i
)
2432 root
.AddChildView(new View
);
2434 View
* foo
= new View
;
2435 child1
->AddChildView(foo
);
2437 // Add some nodes to |foo|.
2438 for (int i
= 0; i
< 3; ++i
)
2439 foo
->AddChildView(new View
);
2441 EXPECT_EQ(3, root
.child_count());
2442 EXPECT_EQ(1, child1
->child_count());
2443 EXPECT_EQ(3, foo
->child_count());
2445 // Now remove all child views from root.
2446 root
.RemoveAllChildViews(true);
2448 EXPECT_EQ(0, root
.child_count());
2449 EXPECT_FALSE(root
.has_children());
2452 TEST_F(ViewTest
, Contains
) {
2454 View
* v2
= new View
;
2455 View
* v3
= new View
;
2457 v1
.AddChildView(v2
);
2458 v2
->AddChildView(v3
);
2460 EXPECT_FALSE(v1
.Contains(NULL
));
2461 EXPECT_TRUE(v1
.Contains(&v1
));
2462 EXPECT_TRUE(v1
.Contains(v2
));
2463 EXPECT_TRUE(v1
.Contains(v3
));
2465 EXPECT_FALSE(v2
->Contains(NULL
));
2466 EXPECT_TRUE(v2
->Contains(v2
));
2467 EXPECT_FALSE(v2
->Contains(&v1
));
2468 EXPECT_TRUE(v2
->Contains(v3
));
2470 EXPECT_FALSE(v3
->Contains(NULL
));
2471 EXPECT_TRUE(v3
->Contains(v3
));
2472 EXPECT_FALSE(v3
->Contains(&v1
));
2473 EXPECT_FALSE(v3
->Contains(v2
));
2476 // Verifies if GetIndexOf() returns the correct index for the specified child
2478 // The tree looks like this:
2483 TEST_F(ViewTest
, GetIndexOf
) {
2486 View
* child1
= new View
;
2487 root
.AddChildView(child1
);
2489 View
* child2
= new View
;
2490 root
.AddChildView(child2
);
2492 View
* foo1
= new View
;
2493 child1
->AddChildView(foo1
);
2495 EXPECT_EQ(-1, root
.GetIndexOf(NULL
));
2496 EXPECT_EQ(-1, root
.GetIndexOf(&root
));
2497 EXPECT_EQ(0, root
.GetIndexOf(child1
));
2498 EXPECT_EQ(1, root
.GetIndexOf(child2
));
2499 EXPECT_EQ(-1, root
.GetIndexOf(foo1
));
2501 EXPECT_EQ(-1, child1
->GetIndexOf(NULL
));
2502 EXPECT_EQ(-1, child1
->GetIndexOf(&root
));
2503 EXPECT_EQ(-1, child1
->GetIndexOf(child1
));
2504 EXPECT_EQ(-1, child1
->GetIndexOf(child2
));
2505 EXPECT_EQ(0, child1
->GetIndexOf(foo1
));
2507 EXPECT_EQ(-1, child2
->GetIndexOf(NULL
));
2508 EXPECT_EQ(-1, child2
->GetIndexOf(&root
));
2509 EXPECT_EQ(-1, child2
->GetIndexOf(child2
));
2510 EXPECT_EQ(-1, child2
->GetIndexOf(child1
));
2511 EXPECT_EQ(-1, child2
->GetIndexOf(foo1
));
2514 // Verifies that the child views can be reordered correctly.
2515 TEST_F(ViewTest
, ReorderChildren
) {
2518 View
* child
= new View();
2519 root
.AddChildView(child
);
2521 View
* foo1
= new View();
2522 child
->AddChildView(foo1
);
2523 View
* foo2
= new View();
2524 child
->AddChildView(foo2
);
2525 View
* foo3
= new View();
2526 child
->AddChildView(foo3
);
2527 foo1
->SetFocusable(true);
2528 foo2
->SetFocusable(true);
2529 foo3
->SetFocusable(true);
2531 ASSERT_EQ(0, child
->GetIndexOf(foo1
));
2532 ASSERT_EQ(1, child
->GetIndexOf(foo2
));
2533 ASSERT_EQ(2, child
->GetIndexOf(foo3
));
2534 ASSERT_EQ(foo2
, foo1
->GetNextFocusableView());
2535 ASSERT_EQ(foo3
, foo2
->GetNextFocusableView());
2536 ASSERT_EQ(NULL
, foo3
->GetNextFocusableView());
2538 // Move |foo2| at the end.
2539 child
->ReorderChildView(foo2
, -1);
2540 ASSERT_EQ(0, child
->GetIndexOf(foo1
));
2541 ASSERT_EQ(1, child
->GetIndexOf(foo3
));
2542 ASSERT_EQ(2, child
->GetIndexOf(foo2
));
2543 ASSERT_EQ(foo3
, foo1
->GetNextFocusableView());
2544 ASSERT_EQ(foo2
, foo3
->GetNextFocusableView());
2545 ASSERT_EQ(NULL
, foo2
->GetNextFocusableView());
2547 // Move |foo1| at the end.
2548 child
->ReorderChildView(foo1
, -1);
2549 ASSERT_EQ(0, child
->GetIndexOf(foo3
));
2550 ASSERT_EQ(1, child
->GetIndexOf(foo2
));
2551 ASSERT_EQ(2, child
->GetIndexOf(foo1
));
2552 ASSERT_EQ(NULL
, foo1
->GetNextFocusableView());
2553 ASSERT_EQ(foo2
, foo1
->GetPreviousFocusableView());
2554 ASSERT_EQ(foo2
, foo3
->GetNextFocusableView());
2555 ASSERT_EQ(foo1
, foo2
->GetNextFocusableView());
2557 // Move |foo2| to the front.
2558 child
->ReorderChildView(foo2
, 0);
2559 ASSERT_EQ(0, child
->GetIndexOf(foo2
));
2560 ASSERT_EQ(1, child
->GetIndexOf(foo3
));
2561 ASSERT_EQ(2, child
->GetIndexOf(foo1
));
2562 ASSERT_EQ(NULL
, foo1
->GetNextFocusableView());
2563 ASSERT_EQ(foo3
, foo1
->GetPreviousFocusableView());
2564 ASSERT_EQ(foo3
, foo2
->GetNextFocusableView());
2565 ASSERT_EQ(foo1
, foo3
->GetNextFocusableView());
2568 // Verifies that GetViewByID returns the correctly child view from the specified
2570 // The tree looks like this:
2575 TEST_F(ViewTest
, GetViewByID
) {
2577 const int kV1ID
= 1;
2581 const int kV2ID
= 2;
2585 const int kV3ID
= 3;
2589 const int kV4ID
= 4;
2592 const int kV5ID
= 5;
2594 v1
.AddChildView(&v2
);
2595 v2
.AddChildView(&v3
);
2596 v2
.AddChildView(&v4
);
2598 EXPECT_EQ(&v1
, v1
.GetViewByID(kV1ID
));
2599 EXPECT_EQ(&v2
, v1
.GetViewByID(kV2ID
));
2600 EXPECT_EQ(&v4
, v1
.GetViewByID(kV4ID
));
2602 EXPECT_EQ(NULL
, v1
.GetViewByID(kV5ID
)); // No V5 exists.
2603 EXPECT_EQ(NULL
, v2
.GetViewByID(kV1ID
)); // It can get only from child views.
2605 const int kGroup
= 1;
2606 v3
.SetGroup(kGroup
);
2607 v4
.SetGroup(kGroup
);
2610 v1
.GetViewsInGroup(kGroup
, &views
);
2611 EXPECT_EQ(2U, views
.size());
2613 View::Views::const_iterator
i(std::find(views
.begin(), views
.end(), &v3
));
2614 EXPECT_NE(views
.end(), i
);
2616 i
= std::find(views
.begin(), views
.end(), &v4
);
2617 EXPECT_NE(views
.end(), i
);
2620 TEST_F(ViewTest
, AddExistingChild
) {
2623 v1
.AddChildView(&v2
);
2624 v1
.AddChildView(&v3
);
2625 EXPECT_EQ(0, v1
.GetIndexOf(&v2
));
2626 EXPECT_EQ(1, v1
.GetIndexOf(&v3
));
2628 // Check that there's no change in order when adding at same index.
2629 v1
.AddChildViewAt(&v2
, 0);
2630 EXPECT_EQ(0, v1
.GetIndexOf(&v2
));
2631 EXPECT_EQ(1, v1
.GetIndexOf(&v3
));
2632 v1
.AddChildViewAt(&v3
, 1);
2633 EXPECT_EQ(0, v1
.GetIndexOf(&v2
));
2634 EXPECT_EQ(1, v1
.GetIndexOf(&v3
));
2636 // Add it at a different index and check for change in order.
2637 v1
.AddChildViewAt(&v2
, 1);
2638 EXPECT_EQ(1, v1
.GetIndexOf(&v2
));
2639 EXPECT_EQ(0, v1
.GetIndexOf(&v3
));
2640 v1
.AddChildViewAt(&v2
, 0);
2641 EXPECT_EQ(0, v1
.GetIndexOf(&v2
));
2642 EXPECT_EQ(1, v1
.GetIndexOf(&v3
));
2644 // Check that calling |AddChildView()| does not change the order.
2645 v1
.AddChildView(&v2
);
2646 EXPECT_EQ(0, v1
.GetIndexOf(&v2
));
2647 EXPECT_EQ(1, v1
.GetIndexOf(&v3
));
2648 v1
.AddChildView(&v3
);
2649 EXPECT_EQ(0, v1
.GetIndexOf(&v2
));
2650 EXPECT_EQ(1, v1
.GetIndexOf(&v3
));
2653 ////////////////////////////////////////////////////////////////////////////////
2655 ////////////////////////////////////////////////////////////////////////////////
2657 // A widget that always claims to be active, regardless of its real activation
2659 class ActiveWidget
: public Widget
{
2662 ~ActiveWidget() override
{}
2664 bool IsActive() const override
{ return true; }
2667 DISALLOW_COPY_AND_ASSIGN(ActiveWidget
);
2670 TEST_F(ViewTest
, AdvanceFocusIfNecessaryForUnfocusableView
) {
2671 // Create a widget with two views and give the first one focus.
2672 ActiveWidget widget
;
2673 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
2674 params
.ownership
= Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
2675 widget
.Init(params
);
2677 View
* view1
= new View();
2678 view1
->SetFocusable(true);
2679 widget
.GetRootView()->AddChildView(view1
);
2680 View
* view2
= new View();
2681 view2
->SetFocusable(true);
2682 widget
.GetRootView()->AddChildView(view2
);
2684 FocusManager
* focus_manager
= widget
.GetFocusManager();
2685 ASSERT_TRUE(focus_manager
);
2687 focus_manager
->SetFocusedView(view1
);
2688 EXPECT_EQ(view1
, focus_manager
->GetFocusedView());
2690 // Disable the focused view and check if the next view gets focused.
2691 view1
->SetEnabled(false);
2692 EXPECT_EQ(view2
, focus_manager
->GetFocusedView());
2694 // Re-enable and re-focus.
2695 view1
->SetEnabled(true);
2696 focus_manager
->SetFocusedView(view1
);
2697 EXPECT_EQ(view1
, focus_manager
->GetFocusedView());
2699 // Hide the focused view and check it the next view gets focused.
2700 view1
->SetVisible(false);
2701 EXPECT_EQ(view2
, focus_manager
->GetFocusedView());
2703 // Re-show and re-focus.
2704 view1
->SetVisible(true);
2705 focus_manager
->SetFocusedView(view1
);
2706 EXPECT_EQ(view1
, focus_manager
->GetFocusedView());
2708 // Set the focused view as not focusable and check if the next view gets
2710 view1
->SetFocusable(false);
2711 EXPECT_EQ(view2
, focus_manager
->GetFocusedView());
2714 ////////////////////////////////////////////////////////////////////////////////
2716 ////////////////////////////////////////////////////////////////////////////////
2720 // Test implementation of LayerAnimator.
2721 class TestLayerAnimator
: public ui::LayerAnimator
{
2723 TestLayerAnimator();
2725 const gfx::Rect
& last_bounds() const { return last_bounds_
; }
2728 void SetBounds(const gfx::Rect
& bounds
) override
;
2731 ~TestLayerAnimator() override
{}
2734 gfx::Rect last_bounds_
;
2736 DISALLOW_COPY_AND_ASSIGN(TestLayerAnimator
);
2739 TestLayerAnimator::TestLayerAnimator()
2740 : ui::LayerAnimator(base::TimeDelta::FromMilliseconds(0)) {
2743 void TestLayerAnimator::SetBounds(const gfx::Rect
& bounds
) {
2744 last_bounds_
= bounds
;
2749 class ViewLayerTest
: public ViewsTestBase
{
2751 ViewLayerTest() : widget_(NULL
) {}
2753 ~ViewLayerTest() override
{}
2755 // Returns the Layer used by the RootView.
2756 ui::Layer
* GetRootLayer() {
2757 return widget()->GetLayer();
2760 void SetUp() override
{
2762 widget_
= new Widget
;
2763 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
2764 params
.bounds
= gfx::Rect(50, 50, 200, 200);
2765 widget_
->Init(params
);
2767 widget_
->GetRootView()->SetBounds(0, 0, 200, 200);
2770 void TearDown() override
{
2771 widget_
->CloseNow();
2772 ViewsTestBase::TearDown();
2775 Widget
* widget() { return widget_
; }
2782 TEST_F(ViewLayerTest
, LayerToggling
) {
2783 // Because we lazily create textures the calls to DrawTree are necessary to
2784 // ensure we trigger creation of textures.
2785 ui::Layer
* root_layer
= widget()->GetLayer();
2786 View
* content_view
= new View
;
2787 widget()->SetContentsView(content_view
);
2789 // Create v1, give it a bounds and verify everything is set up correctly.
2790 View
* v1
= new View
;
2791 v1
->SetPaintToLayer(true);
2792 EXPECT_TRUE(v1
->layer() != NULL
);
2793 v1
->SetBoundsRect(gfx::Rect(20, 30, 140, 150));
2794 content_view
->AddChildView(v1
);
2795 ASSERT_TRUE(v1
->layer() != NULL
);
2796 EXPECT_EQ(root_layer
, v1
->layer()->parent());
2797 EXPECT_EQ(gfx::Rect(20, 30, 140, 150), v1
->layer()->bounds());
2799 // Create v2 as a child of v1 and do basic assertion testing.
2800 View
* v2
= new View
;
2801 v1
->AddChildView(v2
);
2802 EXPECT_TRUE(v2
->layer() == NULL
);
2803 v2
->SetBoundsRect(gfx::Rect(10, 20, 30, 40));
2804 v2
->SetPaintToLayer(true);
2805 ASSERT_TRUE(v2
->layer() != NULL
);
2806 EXPECT_EQ(v1
->layer(), v2
->layer()->parent());
2807 EXPECT_EQ(gfx::Rect(10, 20, 30, 40), v2
->layer()->bounds());
2809 // Turn off v1s layer. v2 should still have a layer but its parent should have
2811 v1
->SetPaintToLayer(false);
2812 EXPECT_TRUE(v1
->layer() == NULL
);
2813 EXPECT_TRUE(v2
->layer() != NULL
);
2814 EXPECT_EQ(root_layer
, v2
->layer()->parent());
2815 ASSERT_EQ(1u, root_layer
->children().size());
2816 EXPECT_EQ(root_layer
->children()[0], v2
->layer());
2817 // The bounds of the layer should have changed to be relative to the root view
2819 EXPECT_EQ(gfx::Rect(30, 50, 30, 40), v2
->layer()->bounds());
2821 // Make v1 have a layer again and verify v2s layer is wired up correctly.
2822 gfx::Transform transform
;
2823 transform
.Scale(2.0, 2.0);
2824 v1
->SetTransform(transform
);
2825 EXPECT_TRUE(v1
->layer() != NULL
);
2826 EXPECT_TRUE(v2
->layer() != NULL
);
2827 EXPECT_EQ(root_layer
, v1
->layer()->parent());
2828 EXPECT_EQ(v1
->layer(), v2
->layer()->parent());
2829 ASSERT_EQ(1u, root_layer
->children().size());
2830 EXPECT_EQ(root_layer
->children()[0], v1
->layer());
2831 ASSERT_EQ(1u, v1
->layer()->children().size());
2832 EXPECT_EQ(v1
->layer()->children()[0], v2
->layer());
2833 EXPECT_EQ(gfx::Rect(10, 20, 30, 40), v2
->layer()->bounds());
2836 // Verifies turning on a layer wires up children correctly.
2837 TEST_F(ViewLayerTest
, NestedLayerToggling
) {
2838 View
* content_view
= new View
;
2839 widget()->SetContentsView(content_view
);
2841 // Create v1, give it a bounds and verify everything is set up correctly.
2842 View
* v1
= new View
;
2843 content_view
->AddChildView(v1
);
2844 v1
->SetBoundsRect(gfx::Rect(20, 30, 140, 150));
2846 View
* v2
= new View
;
2847 v1
->AddChildView(v2
);
2849 View
* v3
= new View
;
2850 v3
->SetPaintToLayer(true);
2851 v2
->AddChildView(v3
);
2852 ASSERT_TRUE(v3
->layer() != NULL
);
2854 // At this point we have v1-v2-v3. v3 has a layer, v1 and v2 don't.
2856 v1
->SetPaintToLayer(true);
2857 EXPECT_EQ(v1
->layer(), v3
->layer()->parent());
2860 TEST_F(ViewLayerTest
, LayerAnimator
) {
2861 View
* content_view
= new View
;
2862 widget()->SetContentsView(content_view
);
2864 View
* v1
= new View
;
2865 content_view
->AddChildView(v1
);
2866 v1
->SetPaintToLayer(true);
2867 EXPECT_TRUE(v1
->layer() != NULL
);
2869 TestLayerAnimator
* animator
= new TestLayerAnimator();
2870 v1
->layer()->SetAnimator(animator
);
2872 gfx::Rect
bounds(1, 2, 3, 4);
2873 v1
->SetBoundsRect(bounds
);
2874 EXPECT_EQ(bounds
, animator
->last_bounds());
2875 // TestLayerAnimator doesn't update the layer.
2876 EXPECT_NE(bounds
, v1
->layer()->bounds());
2879 // Verifies the bounds of a layer are updated if the bounds of ancestor that
2880 // doesn't have a layer change.
2881 TEST_F(ViewLayerTest
, BoundsChangeWithLayer
) {
2882 View
* content_view
= new View
;
2883 widget()->SetContentsView(content_view
);
2885 View
* v1
= new View
;
2886 content_view
->AddChildView(v1
);
2887 v1
->SetBoundsRect(gfx::Rect(20, 30, 140, 150));
2889 View
* v2
= new View
;
2890 v2
->SetBoundsRect(gfx::Rect(10, 11, 40, 50));
2891 v1
->AddChildView(v2
);
2892 v2
->SetPaintToLayer(true);
2893 ASSERT_TRUE(v2
->layer() != NULL
);
2894 EXPECT_EQ(gfx::Rect(30, 41, 40, 50), v2
->layer()->bounds());
2896 v1
->SetPosition(gfx::Point(25, 36));
2897 EXPECT_EQ(gfx::Rect(35, 47, 40, 50), v2
->layer()->bounds());
2899 v2
->SetPosition(gfx::Point(11, 12));
2900 EXPECT_EQ(gfx::Rect(36, 48, 40, 50), v2
->layer()->bounds());
2902 // Bounds of the layer should change even if the view is not invisible.
2903 v1
->SetVisible(false);
2904 v1
->SetPosition(gfx::Point(20, 30));
2905 EXPECT_EQ(gfx::Rect(31, 42, 40, 50), v2
->layer()->bounds());
2907 v2
->SetVisible(false);
2908 v2
->SetBoundsRect(gfx::Rect(10, 11, 20, 30));
2909 EXPECT_EQ(gfx::Rect(30, 41, 20, 30), v2
->layer()->bounds());
2912 // Make sure layers are positioned correctly in RTL.
2913 TEST_F(ViewLayerTest
, BoundInRTL
) {
2914 std::string locale
= l10n_util::GetApplicationLocale(std::string());
2915 base::i18n::SetICUDefaultLocale("he");
2917 View
* view
= new View
;
2918 widget()->SetContentsView(view
);
2920 int content_width
= view
->width();
2922 // |v1| is initially not attached to anything. So its layer will have the same
2923 // bounds as the view.
2924 View
* v1
= new View
;
2925 v1
->SetPaintToLayer(true);
2926 v1
->SetBounds(10, 10, 20, 10);
2927 EXPECT_EQ(gfx::Rect(10, 10, 20, 10),
2928 v1
->layer()->bounds());
2930 // Once |v1| is attached to the widget, its layer will get RTL-appropriate
2932 view
->AddChildView(v1
);
2933 EXPECT_EQ(gfx::Rect(content_width
- 30, 10, 20, 10),
2934 v1
->layer()->bounds());
2935 gfx::Rect l1bounds
= v1
->layer()->bounds();
2937 // Now attach a View to the widget first, then create a layer for it. Make
2938 // sure the bounds are correct.
2939 View
* v2
= new View
;
2940 v2
->SetBounds(50, 10, 30, 10);
2941 EXPECT_FALSE(v2
->layer());
2942 view
->AddChildView(v2
);
2943 v2
->SetPaintToLayer(true);
2944 EXPECT_EQ(gfx::Rect(content_width
- 80, 10, 30, 10),
2945 v2
->layer()->bounds());
2946 gfx::Rect l2bounds
= v2
->layer()->bounds();
2948 view
->SetPaintToLayer(true);
2949 EXPECT_EQ(l1bounds
, v1
->layer()->bounds());
2950 EXPECT_EQ(l2bounds
, v2
->layer()->bounds());
2952 // Move one of the views. Make sure the layer is positioned correctly
2954 v1
->SetBounds(v1
->x() - 5, v1
->y(), v1
->width(), v1
->height());
2955 l1bounds
.set_x(l1bounds
.x() + 5);
2956 EXPECT_EQ(l1bounds
, v1
->layer()->bounds());
2958 view
->SetPaintToLayer(false);
2959 EXPECT_EQ(l1bounds
, v1
->layer()->bounds());
2960 EXPECT_EQ(l2bounds
, v2
->layer()->bounds());
2962 // Move a view again.
2963 v2
->SetBounds(v2
->x() + 5, v2
->y(), v2
->width(), v2
->height());
2964 l2bounds
.set_x(l2bounds
.x() - 5);
2965 EXPECT_EQ(l2bounds
, v2
->layer()->bounds());
2968 base::i18n::SetICUDefaultLocale(locale
);
2971 // Make sure that resizing a parent in RTL correctly repositions its children.
2972 TEST_F(ViewLayerTest
, ResizeParentInRTL
) {
2973 std::string locale
= l10n_util::GetApplicationLocale(std::string());
2974 base::i18n::SetICUDefaultLocale("he");
2976 View
* view
= new View
;
2977 widget()->SetContentsView(view
);
2979 int content_width
= view
->width();
2981 // Create a paints-to-layer view |v1|.
2982 View
* v1
= new View
;
2983 v1
->SetPaintToLayer(true);
2984 v1
->SetBounds(10, 10, 20, 10);
2985 view
->AddChildView(v1
);
2986 EXPECT_EQ(gfx::Rect(content_width
- 30, 10, 20, 10),
2987 v1
->layer()->bounds());
2989 // Attach a paints-to-layer child view to |v1|.
2990 View
* v2
= new View
;
2991 v2
->SetPaintToLayer(true);
2992 v2
->SetBounds(3, 5, 6, 4);
2993 EXPECT_EQ(gfx::Rect(3, 5, 6, 4),
2994 v2
->layer()->bounds());
2995 v1
->AddChildView(v2
);
2996 // Check that |v2| now has RTL-appropriate bounds.
2997 EXPECT_EQ(gfx::Rect(11, 5, 6, 4),
2998 v2
->layer()->bounds());
3000 // Attach a non-layer child view to |v1|, and give it a paints-to-layer child.
3001 View
* v3
= new View
;
3002 v3
->SetBounds(1, 1, 18, 8);
3003 View
* v4
= new View
;
3004 v4
->SetPaintToLayer(true);
3005 v4
->SetBounds(2, 4, 6, 4);
3006 EXPECT_EQ(gfx::Rect(2, 4, 6, 4),
3007 v4
->layer()->bounds());
3008 v3
->AddChildView(v4
);
3009 EXPECT_EQ(gfx::Rect(10, 4, 6, 4),
3010 v4
->layer()->bounds());
3011 v1
->AddChildView(v3
);
3012 // Check that |v4| now has RTL-appropriate bounds.
3013 EXPECT_EQ(gfx::Rect(11, 5, 6, 4),
3014 v4
->layer()->bounds());
3016 // Resize |v1|. Make sure that |v2| and |v4|'s layers have been moved
3017 // correctly to RTL-appropriate bounds.
3018 v1
->SetSize(gfx::Size(30, 10));
3019 EXPECT_EQ(gfx::Rect(21, 5, 6, 4),
3020 v2
->layer()->bounds());
3021 EXPECT_EQ(gfx::Rect(21, 5, 6, 4),
3022 v4
->layer()->bounds());
3024 // Move and resize |v3|. Make sure that |v4|'s layer has been moved correctly
3025 // to RTL-appropriate bounds.
3026 v3
->SetBounds(2, 1, 12, 8);
3027 EXPECT_EQ(gfx::Rect(20, 5, 6, 4),
3028 v4
->layer()->bounds());
3031 base::i18n::SetICUDefaultLocale(locale
);
3034 // Makes sure a transform persists after toggling the visibility.
3035 TEST_F(ViewLayerTest
, ToggleVisibilityWithTransform
) {
3036 View
* view
= new View
;
3037 gfx::Transform transform
;
3038 transform
.Scale(2.0, 2.0);
3039 view
->SetTransform(transform
);
3040 widget()->SetContentsView(view
);
3041 EXPECT_EQ(2.0f
, view
->GetTransform().matrix().get(0, 0));
3043 view
->SetVisible(false);
3044 EXPECT_EQ(2.0f
, view
->GetTransform().matrix().get(0, 0));
3046 view
->SetVisible(true);
3047 EXPECT_EQ(2.0f
, view
->GetTransform().matrix().get(0, 0));
3050 // Verifies a transform persists after removing/adding a view with a transform.
3051 TEST_F(ViewLayerTest
, ResetTransformOnLayerAfterAdd
) {
3052 View
* view
= new View
;
3053 gfx::Transform transform
;
3054 transform
.Scale(2.0, 2.0);
3055 view
->SetTransform(transform
);
3056 widget()->SetContentsView(view
);
3057 EXPECT_EQ(2.0f
, view
->GetTransform().matrix().get(0, 0));
3058 ASSERT_TRUE(view
->layer() != NULL
);
3059 EXPECT_EQ(2.0f
, view
->layer()->transform().matrix().get(0, 0));
3061 View
* parent
= view
->parent();
3062 parent
->RemoveChildView(view
);
3063 parent
->AddChildView(view
);
3065 EXPECT_EQ(2.0f
, view
->GetTransform().matrix().get(0, 0));
3066 ASSERT_TRUE(view
->layer() != NULL
);
3067 EXPECT_EQ(2.0f
, view
->layer()->transform().matrix().get(0, 0));
3070 // Makes sure that layer visibility is correct after toggling View visibility.
3071 TEST_F(ViewLayerTest
, ToggleVisibilityWithLayer
) {
3072 View
* content_view
= new View
;
3073 widget()->SetContentsView(content_view
);
3075 // The view isn't attached to a widget or a parent view yet. But it should
3076 // still have a layer, but the layer should not be attached to the root
3078 View
* v1
= new View
;
3079 v1
->SetPaintToLayer(true);
3080 EXPECT_TRUE(v1
->layer());
3081 EXPECT_FALSE(LayerIsAncestor(widget()->GetCompositor()->root_layer(),
3084 // Once the view is attached to a widget, its layer should be attached to the
3085 // root layer and visible.
3086 content_view
->AddChildView(v1
);
3087 EXPECT_TRUE(LayerIsAncestor(widget()->GetCompositor()->root_layer(),
3089 EXPECT_TRUE(v1
->layer()->IsDrawn());
3091 v1
->SetVisible(false);
3092 EXPECT_FALSE(v1
->layer()->IsDrawn());
3094 v1
->SetVisible(true);
3095 EXPECT_TRUE(v1
->layer()->IsDrawn());
3098 EXPECT_FALSE(v1
->layer()->IsDrawn());
3101 EXPECT_TRUE(v1
->layer()->IsDrawn());
3104 // Tests that the layers in the subtree are orphaned after a View is removed
3106 TEST_F(ViewLayerTest
, OrphanLayerAfterViewRemove
) {
3107 View
* content_view
= new View
;
3108 widget()->SetContentsView(content_view
);
3110 View
* v1
= new View
;
3111 content_view
->AddChildView(v1
);
3113 View
* v2
= new View
;
3114 v1
->AddChildView(v2
);
3115 v2
->SetPaintToLayer(true);
3116 EXPECT_TRUE(LayerIsAncestor(widget()->GetCompositor()->root_layer(),
3118 EXPECT_TRUE(v2
->layer()->IsDrawn());
3120 content_view
->RemoveChildView(v1
);
3122 EXPECT_FALSE(LayerIsAncestor(widget()->GetCompositor()->root_layer(),
3126 content_view
->AddChildView(v2
);
3129 EXPECT_TRUE(LayerIsAncestor(widget()->GetCompositor()->root_layer(),
3131 EXPECT_TRUE(v2
->layer()->IsDrawn());
3134 class PaintTrackingView
: public View
{
3136 PaintTrackingView() : painted_(false) {
3139 bool painted() const { return painted_
; }
3140 void set_painted(bool value
) { painted_
= value
; }
3142 void OnPaint(gfx::Canvas
* canvas
) override
{ painted_
= true; }
3147 DISALLOW_COPY_AND_ASSIGN(PaintTrackingView
);
3150 // Makes sure child views with layers aren't painted when paint starts at an
3152 TEST_F(ViewLayerTest
, DontPaintChildrenWithLayers
) {
3153 PaintTrackingView
* content_view
= new PaintTrackingView
;
3154 widget()->SetContentsView(content_view
);
3155 content_view
->SetPaintToLayer(true);
3156 GetRootLayer()->GetCompositor()->ScheduleDraw();
3157 ui::DrawWaiterForTest::WaitForCompositingEnded(
3158 GetRootLayer()->GetCompositor());
3159 GetRootLayer()->SchedulePaint(gfx::Rect(0, 0, 10, 10));
3160 content_view
->set_painted(false);
3161 // content_view no longer has a dirty rect. Paint from the root and make sure
3162 // PaintTrackingView isn't painted.
3163 GetRootLayer()->GetCompositor()->ScheduleDraw();
3164 ui::DrawWaiterForTest::WaitForCompositingEnded(
3165 GetRootLayer()->GetCompositor());
3166 EXPECT_FALSE(content_view
->painted());
3168 // Make content_view have a dirty rect, paint the layers and make sure
3169 // PaintTrackingView is painted.
3170 content_view
->layer()->SchedulePaint(gfx::Rect(0, 0, 10, 10));
3171 GetRootLayer()->GetCompositor()->ScheduleDraw();
3172 ui::DrawWaiterForTest::WaitForCompositingEnded(
3173 GetRootLayer()->GetCompositor());
3174 EXPECT_TRUE(content_view
->painted());
3177 // Tests that the visibility of child layers are updated correctly when a View's
3178 // visibility changes.
3179 TEST_F(ViewLayerTest
, VisibilityChildLayers
) {
3180 View
* v1
= new View
;
3181 v1
->SetPaintToLayer(true);
3182 widget()->SetContentsView(v1
);
3184 View
* v2
= new View
;
3185 v1
->AddChildView(v2
);
3187 View
* v3
= new View
;
3188 v2
->AddChildView(v3
);
3189 v3
->SetVisible(false);
3191 View
* v4
= new View
;
3192 v4
->SetPaintToLayer(true);
3193 v3
->AddChildView(v4
);
3195 EXPECT_TRUE(v1
->layer()->IsDrawn());
3196 EXPECT_FALSE(v4
->layer()->IsDrawn());
3198 v2
->SetVisible(false);
3199 EXPECT_TRUE(v1
->layer()->IsDrawn());
3200 EXPECT_FALSE(v4
->layer()->IsDrawn());
3202 v2
->SetVisible(true);
3203 EXPECT_TRUE(v1
->layer()->IsDrawn());
3204 EXPECT_FALSE(v4
->layer()->IsDrawn());
3206 v2
->SetVisible(false);
3207 EXPECT_TRUE(v1
->layer()->IsDrawn());
3208 EXPECT_FALSE(v4
->layer()->IsDrawn());
3209 EXPECT_TRUE(ViewAndLayerTreeAreConsistent(v1
, v1
->layer()));
3211 v3
->SetVisible(true);
3212 EXPECT_TRUE(v1
->layer()->IsDrawn());
3213 EXPECT_FALSE(v4
->layer()->IsDrawn());
3214 EXPECT_TRUE(ViewAndLayerTreeAreConsistent(v1
, v1
->layer()));
3216 // Reparent |v3| to |v1|.
3217 v1
->AddChildView(v3
);
3218 EXPECT_TRUE(v1
->layer()->IsDrawn());
3219 EXPECT_TRUE(v4
->layer()->IsDrawn());
3220 EXPECT_TRUE(ViewAndLayerTreeAreConsistent(v1
, v1
->layer()));
3223 // This test creates a random View tree, and then randomly reorders child views,
3224 // reparents views etc. Unrelated changes can appear to break this test. So
3225 // marking this as FLAKY.
3226 TEST_F(ViewLayerTest
, DISABLED_ViewLayerTreesInSync
) {
3227 View
* content
= new View
;
3228 content
->SetPaintToLayer(true);
3229 widget()->SetContentsView(content
);
3232 ConstructTree(content
, 5);
3233 EXPECT_TRUE(ViewAndLayerTreeAreConsistent(content
, content
->layer()));
3235 ScrambleTree(content
);
3236 EXPECT_TRUE(ViewAndLayerTreeAreConsistent(content
, content
->layer()));
3238 ScrambleTree(content
);
3239 EXPECT_TRUE(ViewAndLayerTreeAreConsistent(content
, content
->layer()));
3241 ScrambleTree(content
);
3242 EXPECT_TRUE(ViewAndLayerTreeAreConsistent(content
, content
->layer()));
3245 // Verifies when views are reordered the layer is also reordered. The widget is
3246 // providing the parent layer.
3247 TEST_F(ViewLayerTest
, ReorderUnderWidget
) {
3248 View
* content
= new View
;
3249 widget()->SetContentsView(content
);
3250 View
* c1
= new View
;
3251 c1
->SetPaintToLayer(true);
3252 content
->AddChildView(c1
);
3253 View
* c2
= new View
;
3254 c2
->SetPaintToLayer(true);
3255 content
->AddChildView(c2
);
3257 ui::Layer
* parent_layer
= c1
->layer()->parent();
3258 ASSERT_TRUE(parent_layer
);
3259 ASSERT_EQ(2u, parent_layer
->children().size());
3260 EXPECT_EQ(c1
->layer(), parent_layer
->children()[0]);
3261 EXPECT_EQ(c2
->layer(), parent_layer
->children()[1]);
3263 // Move c1 to the front. The layers should have moved too.
3264 content
->ReorderChildView(c1
, -1);
3265 EXPECT_EQ(c1
->layer(), parent_layer
->children()[1]);
3266 EXPECT_EQ(c2
->layer(), parent_layer
->children()[0]);
3269 // Verifies that the layer of a view can be acquired properly.
3270 TEST_F(ViewLayerTest
, AcquireLayer
) {
3271 View
* content
= new View
;
3272 widget()->SetContentsView(content
);
3273 scoped_ptr
<View
> c1(new View
);
3274 c1
->SetPaintToLayer(true);
3275 EXPECT_TRUE(c1
->layer());
3276 content
->AddChildView(c1
.get());
3278 scoped_ptr
<ui::Layer
> layer(c1
->AcquireLayer());
3279 EXPECT_EQ(layer
.get(), c1
->layer());
3281 scoped_ptr
<ui::Layer
> layer2(c1
->RecreateLayer());
3282 EXPECT_NE(c1
->layer(), layer2
.get());
3284 // Destroy view before destroying layer.
3288 // Verify the z-order of the layers as a result of calling RecreateLayer().
3289 TEST_F(ViewLayerTest
, RecreateLayerZOrder
) {
3290 scoped_ptr
<View
> v(new View());
3291 v
->SetPaintToLayer(true);
3293 View
* v1
= new View();
3294 v1
->SetPaintToLayer(true);
3295 v
->AddChildView(v1
);
3296 View
* v2
= new View();
3297 v2
->SetPaintToLayer(true);
3298 v
->AddChildView(v2
);
3300 // Test the initial z-order.
3301 const std::vector
<ui::Layer
*>& child_layers_pre
= v
->layer()->children();
3302 ASSERT_EQ(2u, child_layers_pre
.size());
3303 EXPECT_EQ(v1
->layer(), child_layers_pre
[0]);
3304 EXPECT_EQ(v2
->layer(), child_layers_pre
[1]);
3306 scoped_ptr
<ui::Layer
> v1_old_layer(v1
->RecreateLayer());
3308 // Test the new layer order. We expect: |v1| |v1_old_layer| |v2|.
3309 // for |v1| and |v2|.
3310 const std::vector
<ui::Layer
*>& child_layers_post
= v
->layer()->children();
3311 ASSERT_EQ(3u, child_layers_post
.size());
3312 EXPECT_EQ(v1
->layer(), child_layers_post
[0]);
3313 EXPECT_EQ(v1_old_layer
, child_layers_post
[1]);
3314 EXPECT_EQ(v2
->layer(), child_layers_post
[2]);
3317 // Verify the z-order of the layers as a result of calling RecreateLayer when
3318 // the widget is the parent with the layer.
3319 TEST_F(ViewLayerTest
, RecreateLayerZOrderWidgetParent
) {
3320 View
* v
= new View();
3321 widget()->SetContentsView(v
);
3323 View
* v1
= new View();
3324 v1
->SetPaintToLayer(true);
3325 v
->AddChildView(v1
);
3326 View
* v2
= new View();
3327 v2
->SetPaintToLayer(true);
3328 v
->AddChildView(v2
);
3330 ui::Layer
* root_layer
= GetRootLayer();
3332 // Test the initial z-order.
3333 const std::vector
<ui::Layer
*>& child_layers_pre
= root_layer
->children();
3334 ASSERT_EQ(2u, child_layers_pre
.size());
3335 EXPECT_EQ(v1
->layer(), child_layers_pre
[0]);
3336 EXPECT_EQ(v2
->layer(), child_layers_pre
[1]);
3338 scoped_ptr
<ui::Layer
> v1_old_layer(v1
->RecreateLayer());
3340 // Test the new layer order. We expect: |v1| |v1_old_layer| |v2|.
3341 const std::vector
<ui::Layer
*>& child_layers_post
= root_layer
->children();
3342 ASSERT_EQ(3u, child_layers_post
.size());
3343 EXPECT_EQ(v1
->layer(), child_layers_post
[0]);
3344 EXPECT_EQ(v1_old_layer
, child_layers_post
[1]);
3345 EXPECT_EQ(v2
->layer(), child_layers_post
[2]);
3348 // Verifies RecreateLayer() moves all Layers over, even those that don't have
3350 TEST_F(ViewLayerTest
, RecreateLayerMovesNonViewChildren
) {
3352 v
.SetPaintToLayer(true);
3354 child
.SetPaintToLayer(true);
3355 v
.AddChildView(&child
);
3356 ASSERT_TRUE(v
.layer() != NULL
);
3357 ASSERT_EQ(1u, v
.layer()->children().size());
3358 EXPECT_EQ(v
.layer()->children()[0], child
.layer());
3360 ui::Layer
layer(ui::LAYER_NOT_DRAWN
);
3361 v
.layer()->Add(&layer
);
3362 v
.layer()->StackAtBottom(&layer
);
3364 scoped_ptr
<ui::Layer
> old_layer(v
.RecreateLayer());
3366 // All children should be moved from old layer to new layer.
3367 ASSERT_TRUE(old_layer
.get() != NULL
);
3368 EXPECT_TRUE(old_layer
->children().empty());
3370 // And new layer should have the two children.
3371 ASSERT_TRUE(v
.layer() != NULL
);
3372 ASSERT_EQ(2u, v
.layer()->children().size());
3373 EXPECT_EQ(v
.layer()->children()[0], &layer
);
3374 EXPECT_EQ(v
.layer()->children()[1], child
.layer());
3377 class BoundsTreeTestView
: public View
{
3379 BoundsTreeTestView() {}
3381 void PaintChildren(gfx::Canvas
* canvas
, const CullSet
& cull_set
) override
{
3382 // Save out a copy of the cull_set before calling the base implementation.
3383 last_cull_set_
.clear();
3384 if (cull_set
.cull_set_
) {
3385 for (base::hash_set
<intptr_t>::iterator it
= cull_set
.cull_set_
->begin();
3386 it
!= cull_set
.cull_set_
->end();
3388 last_cull_set_
.insert(reinterpret_cast<View
*>(*it
));
3391 View::PaintChildren(canvas
, cull_set
);
3394 std::set
<View
*> last_cull_set_
;
3397 TEST_F(ViewLayerTest
, BoundsTreePaintUpdatesCullSet
) {
3398 BoundsTreeTestView
* test_view
= new BoundsTreeTestView
;
3399 widget()->SetContentsView(test_view
);
3401 View
* v1
= new View();
3402 v1
->SetBoundsRect(gfx::Rect(10, 15, 150, 151));
3403 test_view
->AddChildView(v1
);
3405 View
* v2
= new View();
3406 v2
->SetBoundsRect(gfx::Rect(20, 33, 40, 50));
3407 v1
->AddChildView(v2
);
3409 // Schedule a full-view paint to get everyone's rectangles updated.
3410 PaintWidgetInRect(widget(), test_view
->bounds());
3412 // Now we have test_view - v1 - v2. Damage to only test_view should only
3413 // return root_view and test_view.
3414 PaintWidgetInRect(widget(), gfx::Rect(0, 0, 1, 1));
3415 EXPECT_EQ(2U, test_view
->last_cull_set_
.size());
3416 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(widget()->GetRootView()));
3417 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(test_view
));
3419 // Damage to v1 only should only return root_view, test_view, and v1.
3420 PaintWidgetInRect(widget(), gfx::Rect(11, 16, 1, 1));
3421 EXPECT_EQ(3U, test_view
->last_cull_set_
.size());
3422 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(widget()->GetRootView()));
3423 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(test_view
));
3424 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(v1
));
3426 // A Damage rect inside v2 should get all 3 views back in the |last_cull_set_|
3427 // on call to TestView::Paint(), along with the widget root view.
3428 PaintWidgetInRect(widget(), gfx::Rect(31, 49, 1, 1));
3429 EXPECT_EQ(4U, test_view
->last_cull_set_
.size());
3430 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(widget()->GetRootView()));
3431 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(test_view
));
3432 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(v1
));
3433 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(v2
));
3436 TEST_F(ViewLayerTest
, BoundsTreeWithRTL
) {
3437 std::string locale
= l10n_util::GetApplicationLocale(std::string());
3438 base::i18n::SetICUDefaultLocale("ar");
3440 BoundsTreeTestView
* test_view
= new BoundsTreeTestView
;
3441 widget()->SetContentsView(test_view
);
3443 // Add child views, which should be in RTL coordinate space of parent view.
3444 View
* v1
= new View
;
3445 v1
->SetBoundsRect(gfx::Rect(10, 12, 25, 26));
3446 test_view
->AddChildView(v1
);
3448 View
* v2
= new View
;
3449 v2
->SetBoundsRect(gfx::Rect(5, 6, 7, 8));
3450 v1
->AddChildView(v2
);
3452 // Schedule a full-view paint to get everyone's rectangles updated.
3453 PaintWidgetInRect(widget(), test_view
->bounds());
3455 // Damage to the right side of the parent view should touch both child views.
3456 gfx::Rect
rtl_damage(test_view
->bounds().width() - 16, 18, 1, 1);
3457 PaintWidgetInRect(widget(), rtl_damage
);
3458 EXPECT_EQ(4U, test_view
->last_cull_set_
.size());
3459 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(widget()->GetRootView()));
3460 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(test_view
));
3461 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(v1
));
3462 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(v2
));
3464 // Damage to the left side of the parent view should only touch the
3466 gfx::Rect
ltr_damage(16, 18, 1, 1);
3467 PaintWidgetInRect(widget(), ltr_damage
);
3468 EXPECT_EQ(2U, test_view
->last_cull_set_
.size());
3469 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(widget()->GetRootView()));
3470 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(test_view
));
3473 base::i18n::SetICUDefaultLocale(locale
);
3476 TEST_F(ViewLayerTest
, BoundsTreeSetBoundsChangesCullSet
) {
3477 BoundsTreeTestView
* test_view
= new BoundsTreeTestView
;
3478 widget()->SetContentsView(test_view
);
3480 View
* v1
= new View
;
3481 v1
->SetBoundsRect(gfx::Rect(5, 6, 100, 101));
3482 test_view
->AddChildView(v1
);
3484 View
* v2
= new View
;
3485 v2
->SetBoundsRect(gfx::Rect(20, 33, 40, 50));
3486 v1
->AddChildView(v2
);
3488 // Schedule a full-view paint to get everyone's rectangles updated.
3489 PaintWidgetInRect(widget(), test_view
->bounds());
3491 // Move v1 to a new origin out of the way of our next query.
3492 v1
->SetBoundsRect(gfx::Rect(50, 60, 100, 101));
3493 // The move will force a repaint.
3494 PaintWidgetInRect(widget(), test_view
->bounds());
3496 // Schedule a paint with damage rect where v1 used to be.
3497 PaintWidgetInRect(widget(), gfx::Rect(5, 6, 10, 11));
3499 // Should only have picked up root_view and test_view.
3500 EXPECT_EQ(2U, test_view
->last_cull_set_
.size());
3501 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(widget()->GetRootView()));
3502 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(test_view
));
3505 TEST_F(ViewLayerTest
, BoundsTreeLayerChangeMakesNewTree
) {
3506 BoundsTreeTestView
* test_view
= new BoundsTreeTestView
;
3507 widget()->SetContentsView(test_view
);
3509 View
* v1
= new View
;
3510 v1
->SetBoundsRect(gfx::Rect(5, 10, 15, 20));
3511 test_view
->AddChildView(v1
);
3513 View
* v2
= new View
;
3514 v2
->SetBoundsRect(gfx::Rect(1, 2, 3, 4));
3515 v1
->AddChildView(v2
);
3517 // Schedule a full-view paint to get everyone's rectangles updated.
3518 PaintWidgetInRect(widget(), test_view
->bounds());
3520 // Set v1 to paint to its own layer, it should remove itself from the
3521 // test_view heiarchy and no longer intersect with damage rects in that cull
3523 v1
->SetPaintToLayer(true);
3525 // Schedule another full-view paint.
3526 PaintWidgetInRect(widget(), test_view
->bounds());
3527 // v1 and v2 should no longer be present in the test_view cull_set.
3528 EXPECT_EQ(2U, test_view
->last_cull_set_
.size());
3529 EXPECT_EQ(0U, test_view
->last_cull_set_
.count(v1
));
3530 EXPECT_EQ(0U, test_view
->last_cull_set_
.count(v2
));
3532 // Now set v1 back to not painting to a layer.
3533 v1
->SetPaintToLayer(false);
3534 // Schedule another full-view paint.
3535 PaintWidgetInRect(widget(), test_view
->bounds());
3536 // We should be back to the full cull set including v1 and v2.
3537 EXPECT_EQ(4U, test_view
->last_cull_set_
.size());
3538 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(widget()->GetRootView()));
3539 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(test_view
));
3540 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(v1
));
3541 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(v2
));
3544 TEST_F(ViewLayerTest
, BoundsTreeRemoveChildRemovesBounds
) {
3545 BoundsTreeTestView
* test_view
= new BoundsTreeTestView
;
3546 widget()->SetContentsView(test_view
);
3548 View
* v1
= new View
;
3549 v1
->SetBoundsRect(gfx::Rect(5, 10, 15, 20));
3550 test_view
->AddChildView(v1
);
3552 View
* v2
= new View
;
3553 v2
->SetBoundsRect(gfx::Rect(1, 2, 3, 4));
3554 v1
->AddChildView(v2
);
3556 // Schedule a full-view paint to get everyone's rectangles updated.
3557 PaintWidgetInRect(widget(), test_view
->bounds());
3559 // Now remove v1 from the root view.
3560 test_view
->RemoveChildView(v1
);
3562 // Schedule another full-view paint.
3563 PaintWidgetInRect(widget(), test_view
->bounds());
3564 // v1 and v2 should no longer be present in the test_view cull_set.
3565 EXPECT_EQ(2U, test_view
->last_cull_set_
.size());
3566 EXPECT_EQ(0U, test_view
->last_cull_set_
.count(v1
));
3567 EXPECT_EQ(0U, test_view
->last_cull_set_
.count(v2
));
3569 // View v1 and v2 are no longer part of view hierarchy and therefore won't be
3570 // deleted with that hierarchy.
3574 TEST_F(ViewLayerTest
, BoundsTreeMoveViewMovesBounds
) {
3575 BoundsTreeTestView
* test_view
= new BoundsTreeTestView
;
3576 widget()->SetContentsView(test_view
);
3578 // Build hierarchy v1 - v2 - v3.
3579 View
* v1
= new View
;
3580 v1
->SetBoundsRect(gfx::Rect(20, 30, 150, 160));
3581 test_view
->AddChildView(v1
);
3583 View
* v2
= new View
;
3584 v2
->SetBoundsRect(gfx::Rect(5, 10, 40, 50));
3585 v1
->AddChildView(v2
);
3587 View
* v3
= new View
;
3588 v3
->SetBoundsRect(gfx::Rect(1, 2, 3, 4));
3589 v2
->AddChildView(v3
);
3591 // Schedule a full-view paint and ensure all views are present in the cull.
3592 PaintWidgetInRect(widget(), test_view
->bounds());
3593 EXPECT_EQ(5U, test_view
->last_cull_set_
.size());
3594 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(widget()->GetRootView()));
3595 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(test_view
));
3596 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(v1
));
3597 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(v2
));
3598 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(v3
));
3600 // Build an unrelated view hierarchy and move v2 in to it.
3601 scoped_ptr
<Widget
> test_widget(new Widget
);
3602 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_POPUP
);
3603 params
.bounds
= gfx::Rect(10, 10, 500, 500);
3604 params
.ownership
= Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
3605 test_widget
->Init(params
);
3606 test_widget
->Show();
3607 BoundsTreeTestView
* widget_view
= new BoundsTreeTestView
;
3608 test_widget
->SetContentsView(widget_view
);
3609 widget_view
->AddChildView(v2
);
3611 // Now schedule full-view paints in both widgets.
3612 PaintWidgetInRect(widget(), test_view
->bounds());
3613 PaintWidgetInRect(test_widget
.get(), widget_view
->bounds());
3615 // Only v1 should be present in the first cull set.
3616 EXPECT_EQ(3U, test_view
->last_cull_set_
.size());
3617 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(widget()->GetRootView()));
3618 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(test_view
));
3619 EXPECT_EQ(1U, test_view
->last_cull_set_
.count(v1
));
3621 // We should find v2 and v3 in the widget_view cull_set.
3622 EXPECT_EQ(4U, widget_view
->last_cull_set_
.size());
3623 EXPECT_EQ(1U, widget_view
->last_cull_set_
.count(test_widget
->GetRootView()));
3624 EXPECT_EQ(1U, widget_view
->last_cull_set_
.count(widget_view
));
3625 EXPECT_EQ(1U, widget_view
->last_cull_set_
.count(v2
));
3626 EXPECT_EQ(1U, widget_view
->last_cull_set_
.count(v3
));
3631 std::string
ToString(const gfx::Vector2dF
& vector
) {
3632 return base::StringPrintf("%.2f %0.2f", vector
.x(), vector
.y());
3637 TEST_F(ViewLayerTest
, SnapLayerToPixel
) {
3638 View
* v1
= new View
;
3640 View
* v11
= new View
;
3641 v1
->AddChildView(v11
);
3643 widget()->SetContentsView(v1
);
3645 const gfx::Size
& size
= GetRootLayer()->GetCompositor()->size();
3646 GetRootLayer()->GetCompositor()->SetScaleAndSize(1.25f
, size
);
3648 v11
->SetBoundsRect(gfx::Rect(1, 1, 10, 10));
3649 v1
->SetBoundsRect(gfx::Rect(1, 1, 10, 10));
3650 v11
->SetPaintToLayer(true);
3652 EXPECT_EQ("0.40 0.40", ToString(v11
->layer()->subpixel_position_offset()));
3654 // Creating a layer in parent should update the child view's layer offset.
3655 v1
->SetPaintToLayer(true);
3656 EXPECT_EQ("-0.20 -0.20", ToString(v1
->layer()->subpixel_position_offset()));
3657 EXPECT_EQ("-0.20 -0.20", ToString(v11
->layer()->subpixel_position_offset()));
3659 // DSF change should get propagated and update offsets.
3660 GetRootLayer()->GetCompositor()->SetScaleAndSize(1.5f
, size
);
3661 EXPECT_EQ("0.33 0.33", ToString(v1
->layer()->subpixel_position_offset()));
3662 EXPECT_EQ("0.33 0.33", ToString(v11
->layer()->subpixel_position_offset()));
3664 // Deleting parent's layer should update the child view's layer's offset.
3665 v1
->SetPaintToLayer(false);
3666 EXPECT_EQ("0.00 0.00", ToString(v11
->layer()->subpixel_position_offset()));
3668 // Setting parent view should update the child view's layer's offset.
3669 v1
->SetBoundsRect(gfx::Rect(2, 2, 10, 10));
3670 EXPECT_EQ("0.33 0.33", ToString(v11
->layer()->subpixel_position_offset()));
3672 // Setting integral DSF should reset the offset.
3673 GetRootLayer()->GetCompositor()->SetScaleAndSize(2.0f
, size
);
3674 EXPECT_EQ("0.00 0.00", ToString(v11
->layer()->subpixel_position_offset()));
3677 TEST_F(ViewTest
, FocusableAssertions
) {
3678 // View subclasses may change insets based on whether they are focusable,
3679 // which effects the preferred size. To avoid preferred size changing around
3680 // these Views need to key off the last value set to SetFocusable(), not
3681 // whether the View is focusable right now. For this reason it's important
3682 // that focusable() return the last value passed to SetFocusable and not
3683 // whether the View is focusable right now.
3685 view
.SetFocusable(true);
3686 EXPECT_TRUE(view
.focusable());
3687 view
.SetEnabled(false);
3688 EXPECT_TRUE(view
.focusable());
3689 view
.SetFocusable(false);
3690 EXPECT_FALSE(view
.focusable());
3693 // Verifies when a view is deleted it is removed from ViewStorage.
3694 TEST_F(ViewTest
, UpdateViewStorageOnDelete
) {
3695 ViewStorage
* view_storage
= ViewStorage::GetInstance();
3696 const int storage_id
= view_storage
->CreateStorageID();
3699 view_storage
->StoreView(storage_id
, &view
);
3701 EXPECT_TRUE(view_storage
->RetrieveView(storage_id
) == NULL
);
3704 ////////////////////////////////////////////////////////////////////////////////
3706 ////////////////////////////////////////////////////////////////////////////////
3708 void TestView::OnNativeThemeChanged(const ui::NativeTheme
* native_theme
) {
3709 native_theme_
= native_theme
;
3712 TEST_F(ViewTest
, OnNativeThemeChanged
) {
3713 TestView
* test_view
= new TestView();
3714 EXPECT_FALSE(test_view
->native_theme_
);
3715 TestView
* test_view_child
= new TestView();
3716 EXPECT_FALSE(test_view_child
->native_theme_
);
3718 // Child view added before the widget hierarchy exists should get the
3719 // new native theme notification.
3720 test_view
->AddChildView(test_view_child
);
3722 scoped_ptr
<Widget
> widget(new Widget
);
3723 Widget::InitParams params
= CreateParams(Widget::InitParams::TYPE_WINDOW
);
3724 params
.ownership
= views::Widget::InitParams::WIDGET_OWNS_NATIVE_WIDGET
;
3725 widget
->Init(params
);
3727 widget
->GetRootView()->AddChildView(test_view
);
3728 EXPECT_TRUE(test_view
->native_theme_
);
3729 EXPECT_EQ(widget
->GetNativeTheme(), test_view
->native_theme_
);
3730 EXPECT_TRUE(test_view_child
->native_theme_
);
3731 EXPECT_EQ(widget
->GetNativeTheme(), test_view_child
->native_theme_
);
3733 // Child view added after the widget hierarchy exists should also get the
3735 TestView
* test_view_child_2
= new TestView();
3736 test_view
->AddChildView(test_view_child_2
);
3737 EXPECT_TRUE(test_view_child_2
->native_theme_
);
3738 EXPECT_EQ(widget
->GetNativeTheme(), test_view_child_2
->native_theme_
);
3743 } // namespace views