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. 4 5 #include "ash/display/display_controller.h" 6 7 #include <algorithm> 8 #include <cmath> 9 #include <map> 10 11 #include "ash/ash_switches.h" 12 #include "ash/display/cursor_window_controller.h" 13 #include "ash/display/display_layout_store.h" 14 #include "ash/display/display_manager.h" 15 #include "ash/display/mirror_window_controller.h" 16 #include "ash/display/root_window_transformers.h" 17 #include "ash/host/ash_window_tree_host.h" 18 #include "ash/host/ash_window_tree_host_init_params.h" 19 #include "ash/host/root_window_transformer.h" 20 #include "ash/root_window_controller.h" 21 #include "ash/root_window_settings.h" 22 #include "ash/screen_util.h" 23 #include "ash/shell.h" 24 #include "ash/shell_delegate.h" 25 #include "ash/wm/coordinate_conversion.h" 26 #include "base/command_line.h" 27 #include "base/stl_util.h" 28 #include "base/strings/stringprintf.h" 29 #include "base/strings/utf_string_conversions.h" 30 #include "ui/aura/client/capture_client.h" 31 #include "ui/aura/client/focus_client.h" 32 #include "ui/aura/client/screen_position_client.h" 33 #include "ui/aura/window.h" 34 #include "ui/aura/window_event_dispatcher.h" 35 #include "ui/aura/window_property.h" 36 #include "ui/aura/window_tracker.h" 37 #include "ui/aura/window_tree_host.h" 38 #include "ui/compositor/compositor.h" 39 #include "ui/compositor/compositor_vsync_manager.h" 40 #include "ui/gfx/display.h" 41 #include "ui/gfx/screen.h" 42 #include "ui/wm/public/activation_client.h" 43 44 #if defined(OS_CHROMEOS) 45 #include "ash/display/display_configurator_animation.h" 46 #include "base/sys_info.h" 47 #include "base/time/time.h" 48 #endif // defined(OS_CHROMEOS) 49 50 #if defined(USE_X11) 51 #include "ui/base/x/x11_util.h" 52 #include "ui/gfx/x/x11_types.h" 53 54 // Including this at the bottom to avoid other 55 // potential conflict with chrome headers. 56 #include <X11/extensions/Xrandr.h> 57 #undef RootWindow 58 #endif // defined(USE_X11) 59 60 61 namespace ash { 62 namespace { 63 64 // Primary display stored in global object as it can be 65 // accessed after Shell is deleted. A separate display instance is created 66 // during the shutdown instead of always keeping two display instances 67 // (one here and another one in display_manager) in sync, which is error prone. 68 // This is initialized in the constructor, and then in CreatePrimaryHost(). 69 int64 primary_display_id = -1; 70 71 // Specifies how long the display change should have been disabled 72 // after each display change operations. 73 // |kCycleDisplayThrottleTimeoutMs| is set to be longer to avoid 74 // changing the settings while the system is still configurating 75 // displays. It will be overriden by |kAfterDisplayChangeThrottleTimeoutMs| 76 // when the display change happens, so the actual timeout is much shorter. 77 const int64 kAfterDisplayChangeThrottleTimeoutMs = 500; 78 const int64 kCycleDisplayThrottleTimeoutMs = 4000; 79 const int64 kSwapDisplayThrottleTimeoutMs = 500; 80 81 DisplayManager* GetDisplayManager() { 82 return Shell::GetInstance()->display_manager(); 83 } 84 85 void SetDisplayPropertiesOnHost(AshWindowTreeHost* ash_host, 86 const gfx::Display& display) { 87 DisplayInfo info = GetDisplayManager()->GetDisplayInfo(display.id()); 88 aura::WindowTreeHost* host = ash_host->AsWindowTreeHost(); 89 #if defined(OS_CHROMEOS) && defined(USE_X11) 90 // Native window property (Atom in X11) that specifies the display's 91 // rotation, scale factor and if it's internal display. They are 92 // read and used by touchpad/mouse driver directly on X (contact 93 // adlr@ for more details on touchpad/mouse driver side). The value 94 // of the rotation is one of 0 (normal), 1 (90 degrees clockwise), 2 95 // (180 degree) or 3 (270 degrees clockwise). The value of the 96 // scale factor is in percent (100, 140, 200 etc). 97 const char kRotationProp[] = "_CHROME_DISPLAY_ROTATION"; 98 const char kScaleFactorProp[] = "_CHROME_DISPLAY_SCALE_FACTOR"; 99 const char kInternalProp[] = "_CHROME_DISPLAY_INTERNAL"; 100 const char kCARDINAL[] = "CARDINAL"; 101 int xrandr_rotation = RR_Rotate_0; 102 switch (info.rotation()) { 103 case gfx::Display::ROTATE_0: 104 xrandr_rotation = RR_Rotate_0; 105 break; 106 case gfx::Display::ROTATE_90: 107 xrandr_rotation = RR_Rotate_90; 108 break; 109 case gfx::Display::ROTATE_180: 110 xrandr_rotation = RR_Rotate_180; 111 break; 112 case gfx::Display::ROTATE_270: 113 xrandr_rotation = RR_Rotate_270; 114 break; 115 } 116 117 int internal = display.IsInternal() ? 1 : 0; 118 gfx::AcceleratedWidget xwindow = host->GetAcceleratedWidget(); 119 ui::SetIntProperty(xwindow, kInternalProp, kCARDINAL, internal); 120 ui::SetIntProperty(xwindow, kRotationProp, kCARDINAL, xrandr_rotation); 121 ui::SetIntProperty(xwindow, 122 kScaleFactorProp, 123 kCARDINAL, 124 100 * display.device_scale_factor()); 125 #endif 126 scoped_ptr<RootWindowTransformer> transformer( 127 CreateRootWindowTransformerForDisplay(host->window(), display)); 128 ash_host->SetRootWindowTransformer(transformer.Pass()); 129 130 DisplayMode mode = 131 GetDisplayManager()->GetActiveModeForDisplayId(display.id()); 132 if (mode.refresh_rate > 0.0f) { 133 host->compositor()->vsync_manager()->SetAuthoritativeVSyncInterval( 134 base::TimeDelta::FromMicroseconds( 135 base::Time::kMicrosecondsPerSecond / mode.refresh_rate)); 136 } 137 } 138 139 aura::Window* GetWindow(AshWindowTreeHost* ash_host) { 140 CHECK(ash_host->AsWindowTreeHost()); 141 return ash_host->AsWindowTreeHost()->window(); 142 } 143 144 } // namespace 145 146 // A utility class to store/restore focused/active window 147 // when the display configuration has changed. 148 class FocusActivationStore { 149 public: 150 FocusActivationStore() 151 : activation_client_(NULL), 152 capture_client_(NULL), 153 focus_client_(NULL), 154 focused_(NULL), 155 active_(NULL) { 156 } 157 158 void Store(bool clear_focus) { 159 if (!activation_client_) { 160 aura::Window* root = Shell::GetPrimaryRootWindow(); 161 activation_client_ = aura::client::GetActivationClient(root); 162 capture_client_ = aura::client::GetCaptureClient(root); 163 focus_client_ = aura::client::GetFocusClient(root); 164 } 165 focused_ = focus_client_->GetFocusedWindow(); 166 if (focused_) 167 tracker_.Add(focused_); 168 active_ = activation_client_->GetActiveWindow(); 169 if (active_ && focused_ != active_) 170 tracker_.Add(active_); 171 172 // Deactivate the window to close menu / bubble windows. 173 if (clear_focus) 174 activation_client_->DeactivateWindow(active_); 175 176 // Release capture if any. 177 capture_client_->SetCapture(NULL); 178 // Clear the focused window if any. This is necessary because a 179 // window may be deleted when losing focus (fullscreen flash for 180 // example). If the focused window is still alive after move, it'll 181 // be re-focused below. 182 if (clear_focus) 183 focus_client_->FocusWindow(NULL); 184 } 185 186 void Restore() { 187 // Restore focused or active window if it's still alive. 188 if (focused_ && tracker_.Contains(focused_)) { 189 focus_client_->FocusWindow(focused_); 190 } else if (active_ && tracker_.Contains(active_)) { 191 activation_client_->ActivateWindow(active_); 192 } 193 if (focused_) 194 tracker_.Remove(focused_); 195 if (active_) 196 tracker_.Remove(active_); 197 focused_ = NULL; 198 active_ = NULL; 199 } 200 201 private: 202 aura::client::ActivationClient* activation_client_; 203 aura::client::CaptureClient* capture_client_; 204 aura::client::FocusClient* focus_client_; 205 aura::WindowTracker tracker_; 206 aura::Window* focused_; 207 aura::Window* active_; 208 209 DISALLOW_COPY_AND_ASSIGN(FocusActivationStore); 210 }; 211 212 //////////////////////////////////////////////////////////////////////////////// 213 // DisplayChangeLimiter 214 215 DisplayController::DisplayChangeLimiter::DisplayChangeLimiter() 216 : throttle_timeout_(base::Time::Now()) { 217 } 218 219 void DisplayController::DisplayChangeLimiter::SetThrottleTimeout( 220 int64 throttle_ms) { 221 throttle_timeout_ = 222 base::Time::Now() + base::TimeDelta::FromMilliseconds(throttle_ms); 223 } 224 225 bool DisplayController::DisplayChangeLimiter::IsThrottled() const { 226 return base::Time::Now() < throttle_timeout_; 227 } 228 229 //////////////////////////////////////////////////////////////////////////////// 230 // DisplayController 231 232 DisplayController::DisplayController() 233 : primary_tree_host_for_replace_(NULL), 234 focus_activation_store_(new FocusActivationStore()), 235 cursor_window_controller_(new CursorWindowController()), 236 mirror_window_controller_(new MirrorWindowController()), 237 weak_ptr_factory_(this) { 238 #if defined(OS_CHROMEOS) 239 if (base::SysInfo::IsRunningOnChromeOS()) 240 limiter_.reset(new DisplayChangeLimiter); 241 #endif 242 // Reset primary display to make sure that tests don't use 243 // stale display info from previous tests. 244 primary_display_id = gfx::Display::kInvalidDisplayID; 245 } 246 247 DisplayController::~DisplayController() { 248 } 249 250 void DisplayController::Start() { 251 Shell::GetScreen()->AddObserver(this); 252 Shell::GetInstance()->display_manager()->set_delegate(this); 253 } 254 255 void DisplayController::Shutdown() { 256 // Unset the display manager's delegate here because 257 // DisplayManager outlives DisplayController. 258 Shell::GetInstance()->display_manager()->set_delegate(NULL); 259 260 cursor_window_controller_.reset(); 261 mirror_window_controller_.reset(); 262 263 Shell::GetScreen()->RemoveObserver(this); 264 265 int64 primary_id = Shell::GetScreen()->GetPrimaryDisplay().id(); 266 267 // Delete non primary root window controllers first, then 268 // delete the primary root window controller. 269 aura::Window::Windows root_windows = DisplayController::GetAllRootWindows(); 270 std::vector<RootWindowController*> to_delete; 271 RootWindowController* primary_rwc = NULL; 272 for (aura::Window::Windows::iterator iter = root_windows.begin(); 273 iter != root_windows.end(); 274 ++iter) { 275 RootWindowController* rwc = GetRootWindowController(*iter); 276 if (GetRootWindowSettings(*iter)->display_id == primary_id) 277 primary_rwc = rwc; 278 else 279 to_delete.push_back(rwc); 280 } 281 CHECK(primary_rwc); 282 283 STLDeleteElements(&to_delete); 284 delete primary_rwc; 285 } 286 287 void DisplayController::CreatePrimaryHost( 288 const AshWindowTreeHostInitParams& init_params) { 289 const gfx::Display& primary_candidate = 290 GetDisplayManager()->GetPrimaryDisplayCandidate(); 291 primary_display_id = primary_candidate.id(); 292 CHECK_NE(gfx::Display::kInvalidDisplayID, primary_display_id); 293 AddWindowTreeHostForDisplay(primary_candidate, init_params); 294 } 295 296 void DisplayController::InitDisplays() { 297 RootWindowController::CreateForPrimaryDisplay( 298 window_tree_hosts_[primary_display_id]); 299 300 DisplayManager* display_manager = GetDisplayManager(); 301 for (size_t i = 0; i < display_manager->GetNumDisplays(); ++i) { 302 const gfx::Display& display = display_manager->GetDisplayAt(i); 303 if (primary_display_id != display.id()) { 304 AshWindowTreeHost* ash_host = AddWindowTreeHostForDisplay( 305 display, AshWindowTreeHostInitParams()); 306 RootWindowController::CreateForSecondaryDisplay(ash_host); 307 } 308 } 309 UpdateHostWindowNames(); 310 311 FOR_EACH_OBSERVER(Observer, observers_, OnDisplaysInitialized()); 312 } 313 314 void DisplayController::AddObserver(Observer* observer) { 315 observers_.AddObserver(observer); 316 } 317 318 void DisplayController::RemoveObserver(Observer* observer) { 319 observers_.RemoveObserver(observer); 320 } 321 322 // static 323 int64 DisplayController::GetPrimaryDisplayId() { 324 CHECK_NE(gfx::Display::kInvalidDisplayID, primary_display_id); 325 return primary_display_id; 326 } 327 328 aura::Window* DisplayController::GetPrimaryRootWindow() { 329 return GetRootWindowForDisplayId(primary_display_id); 330 } 331 332 aura::Window* DisplayController::GetRootWindowForDisplayId(int64 id) { 333 CHECK_EQ(1u, window_tree_hosts_.count(id)); 334 AshWindowTreeHost* host = window_tree_hosts_[id]; 335 CHECK(host); 336 return GetWindow(host); 337 } 338 339 void DisplayController::CloseChildWindows() { 340 for (WindowTreeHostMap::const_iterator it = window_tree_hosts_.begin(); 341 it != window_tree_hosts_.end(); 342 ++it) { 343 aura::Window* root_window = GetWindow(it->second); 344 RootWindowController* controller = GetRootWindowController(root_window); 345 if (controller) { 346 controller->CloseChildWindows(); 347 } else { 348 while (!root_window->children().empty()) { 349 aura::Window* child = root_window->children()[0]; 350 delete child; 351 } 352 } 353 } 354 } 355 356 aura::Window::Windows DisplayController::GetAllRootWindows() { 357 aura::Window::Windows windows; 358 for (WindowTreeHostMap::const_iterator it = window_tree_hosts_.begin(); 359 it != window_tree_hosts_.end(); 360 ++it) { 361 DCHECK(it->second); 362 if (GetRootWindowController(GetWindow(it->second))) 363 windows.push_back(GetWindow(it->second)); 364 } 365 return windows; 366 } 367 368 gfx::Insets DisplayController::GetOverscanInsets(int64 display_id) const { 369 return GetDisplayManager()->GetOverscanInsets(display_id); 370 } 371 372 void DisplayController::SetOverscanInsets(int64 display_id, 373 const gfx::Insets& insets_in_dip) { 374 GetDisplayManager()->SetOverscanInsets(display_id, insets_in_dip); 375 } 376 377 std::vector<RootWindowController*> 378 DisplayController::GetAllRootWindowControllers() { 379 std::vector<RootWindowController*> controllers; 380 for (WindowTreeHostMap::const_iterator it = window_tree_hosts_.begin(); 381 it != window_tree_hosts_.end(); 382 ++it) { 383 RootWindowController* controller = 384 GetRootWindowController(GetWindow(it->second)); 385 if (controller) 386 controllers.push_back(controller); 387 } 388 return controllers; 389 } 390 391 void DisplayController::ToggleMirrorMode() { 392 DisplayManager* display_manager = GetDisplayManager(); 393 if (display_manager->num_connected_displays() <= 1) 394 return; 395 396 if (limiter_) { 397 if (limiter_->IsThrottled()) 398 return; 399 limiter_->SetThrottleTimeout(kCycleDisplayThrottleTimeoutMs); 400 } 401 #if defined(OS_CHROMEOS) 402 Shell* shell = Shell::GetInstance(); 403 DisplayConfiguratorAnimation* animation = 404 shell->display_configurator_animation(); 405 animation->StartFadeOutAnimation( 406 base::Bind(&DisplayController::SetMirrorModeAfterAnimation, 407 weak_ptr_factory_.GetWeakPtr(), 408 !display_manager->IsMirrored())); 409 #endif 410 } 411 412 void DisplayController::SwapPrimaryDisplay() { 413 if (limiter_) { 414 if (limiter_->IsThrottled()) 415 return; 416 limiter_->SetThrottleTimeout(kSwapDisplayThrottleTimeoutMs); 417 } 418 419 if (Shell::GetScreen()->GetNumDisplays() > 1) { 420 #if defined(OS_CHROMEOS) 421 DisplayConfiguratorAnimation* animation = 422 Shell::GetInstance()->display_configurator_animation(); 423 if (animation) { 424 animation->StartFadeOutAnimation(base::Bind( 425 &DisplayController::OnFadeOutForSwapDisplayFinished, 426 weak_ptr_factory_.GetWeakPtr())); 427 } else { 428 SetPrimaryDisplay(ScreenUtil::GetSecondaryDisplay()); 429 } 430 #else 431 SetPrimaryDisplay(ScreenUtil::GetSecondaryDisplay()); 432 #endif 433 } 434 } 435 436 void DisplayController::SetPrimaryDisplayId(int64 id) { 437 DCHECK_NE(gfx::Display::kInvalidDisplayID, id); 438 if (id == gfx::Display::kInvalidDisplayID || primary_display_id == id) 439 return; 440 441 const gfx::Display& display = GetDisplayManager()->GetDisplayForId(id); 442 if (display.is_valid()) 443 SetPrimaryDisplay(display); 444 } 445 446 void DisplayController::SetPrimaryDisplay( 447 const gfx::Display& new_primary_display) { 448 DisplayManager* display_manager = GetDisplayManager(); 449 DCHECK(new_primary_display.is_valid()); 450 DCHECK(display_manager->IsActiveDisplay(new_primary_display)); 451 452 if (!new_primary_display.is_valid() || 453 !display_manager->IsActiveDisplay(new_primary_display)) { 454 LOG(ERROR) << "Invalid or non-existent display is requested:" 455 << new_primary_display.ToString(); 456 return; 457 } 458 459 if (primary_display_id == new_primary_display.id() || 460 window_tree_hosts_.size() < 2) { 461 return; 462 } 463 464 AshWindowTreeHost* non_primary_host = 465 window_tree_hosts_[new_primary_display.id()]; 466 LOG_IF(ERROR, !non_primary_host) 467 << "Unknown display is requested in SetPrimaryDisplay: id=" 468 << new_primary_display.id(); 469 if (!non_primary_host) 470 return; 471 472 gfx::Display old_primary_display = Shell::GetScreen()->GetPrimaryDisplay(); 473 474 // Swap root windows between current and new primary display. 475 AshWindowTreeHost* primary_host = window_tree_hosts_[primary_display_id]; 476 CHECK(primary_host); 477 CHECK_NE(primary_host, non_primary_host); 478 479 window_tree_hosts_[new_primary_display.id()] = primary_host; 480 GetRootWindowSettings(GetWindow(primary_host))->display_id = 481 new_primary_display.id(); 482 483 window_tree_hosts_[old_primary_display.id()] = non_primary_host; 484 GetRootWindowSettings(GetWindow(non_primary_host))->display_id = 485 old_primary_display.id(); 486 487 primary_display_id = new_primary_display.id(); 488 GetDisplayManager()->layout_store()->UpdatePrimaryDisplayId( 489 display_manager->GetCurrentDisplayIdPair(), primary_display_id); 490 491 UpdateWorkAreaOfDisplayNearestWindow(GetWindow(primary_host), 492 old_primary_display.GetWorkAreaInsets()); 493 UpdateWorkAreaOfDisplayNearestWindow(GetWindow(non_primary_host), 494 new_primary_display.GetWorkAreaInsets()); 495 496 // Update the dispay manager with new display info. 497 std::vector<DisplayInfo> display_info_list; 498 display_info_list.push_back(display_manager->GetDisplayInfo( 499 primary_display_id)); 500 display_info_list.push_back(display_manager->GetDisplayInfo( 501 ScreenUtil::GetSecondaryDisplay().id())); 502 GetDisplayManager()->set_force_bounds_changed(true); 503 GetDisplayManager()->UpdateDisplays(display_info_list); 504 GetDisplayManager()->set_force_bounds_changed(false); 505 } 506 507 void DisplayController::EnsurePointerInDisplays() { 508 // If the mouse is currently on a display in native location, 509 // use the same native location. Otherwise find the display closest 510 // to the current cursor location in screen coordinates. 511 512 gfx::Point point_in_screen = Shell::GetScreen()->GetCursorScreenPoint(); 513 gfx::Point target_location_in_native; 514 int64 closest_distance_squared = -1; 515 DisplayManager* display_manager = GetDisplayManager(); 516 517 aura::Window* dst_root_window = NULL; 518 for (size_t i = 0; i < display_manager->GetNumDisplays(); ++i) { 519 const gfx::Display& display = display_manager->GetDisplayAt(i); 520 const DisplayInfo display_info = 521 display_manager->GetDisplayInfo(display.id()); 522 aura::Window* root_window = GetRootWindowForDisplayId(display.id()); 523 if (display_info.bounds_in_native().Contains( 524 cursor_location_in_native_coords_for_restore_)) { 525 dst_root_window = root_window; 526 target_location_in_native = cursor_location_in_native_coords_for_restore_; 527 break; 528 } 529 gfx::Point center = display.bounds().CenterPoint(); 530 // Use the distance squared from the center of the dislay. This is not 531 // exactly "closest" display, but good enough to pick one 532 // appropriate (and there are at most two displays). 533 // We don't care about actual distance, only relative to other displays, so 534 // using the LengthSquared() is cheaper than Length(). 535 536 int64 distance_squared = (center - point_in_screen).LengthSquared(); 537 if (closest_distance_squared < 0 || 538 closest_distance_squared > distance_squared) { 539 aura::Window* root_window = GetRootWindowForDisplayId(display.id()); 540 aura::client::ScreenPositionClient* client = 541 aura::client::GetScreenPositionClient(root_window); 542 client->ConvertPointFromScreen(root_window, ¢er); 543 root_window->GetHost()->ConvertPointToNativeScreen(¢er); 544 dst_root_window = root_window; 545 target_location_in_native = center; 546 closest_distance_squared = distance_squared; 547 } 548 } 549 dst_root_window->GetHost()->ConvertPointFromNativeScreen( 550 &target_location_in_native); 551 dst_root_window->MoveCursorTo(target_location_in_native); 552 } 553 554 bool DisplayController::UpdateWorkAreaOfDisplayNearestWindow( 555 const aura::Window* window, 556 const gfx::Insets& insets) { 557 const aura::Window* root_window = window->GetRootWindow(); 558 int64 id = GetRootWindowSettings(root_window)->display_id; 559 // if id is |kInvaildDisplayID|, it's being deleted. 560 DCHECK(id != gfx::Display::kInvalidDisplayID); 561 return GetDisplayManager()->UpdateWorkAreaOfDisplay(id, insets); 562 } 563 564 void DisplayController::OnDisplayAdded(const gfx::Display& display) { 565 if (primary_tree_host_for_replace_) { 566 DCHECK(window_tree_hosts_.empty()); 567 primary_display_id = display.id(); 568 window_tree_hosts_[display.id()] = primary_tree_host_for_replace_; 569 GetRootWindowSettings(GetWindow(primary_tree_host_for_replace_)) 570 ->display_id = display.id(); 571 primary_tree_host_for_replace_ = NULL; 572 const DisplayInfo& display_info = 573 GetDisplayManager()->GetDisplayInfo(display.id()); 574 AshWindowTreeHost* ash_host = window_tree_hosts_[display.id()]; 575 ash_host->AsWindowTreeHost()->SetBounds(display_info.bounds_in_native()); 576 SetDisplayPropertiesOnHost(ash_host, display); 577 } else { 578 if (primary_display_id == gfx::Display::kInvalidDisplayID) 579 primary_display_id = display.id(); 580 DCHECK(!window_tree_hosts_.empty()); 581 AshWindowTreeHost* ash_host = AddWindowTreeHostForDisplay( 582 display, AshWindowTreeHostInitParams()); 583 RootWindowController::CreateForSecondaryDisplay(ash_host); 584 } 585 } 586 587 void DisplayController::OnDisplayRemoved(const gfx::Display& display) { 588 AshWindowTreeHost* host_to_delete = window_tree_hosts_[display.id()]; 589 CHECK(host_to_delete) << display.ToString(); 590 591 // Display for root window will be deleted when the Primary RootWindow 592 // is deleted by the Shell. 593 window_tree_hosts_.erase(display.id()); 594 595 // When the primary root window's display is removed, move the primary 596 // root to the other display. 597 if (primary_display_id == display.id()) { 598 // Temporarily store the primary root window in 599 // |primary_root_window_for_replace_| when replacing the display. 600 if (window_tree_hosts_.size() == 0) { 601 primary_display_id = gfx::Display::kInvalidDisplayID; 602 primary_tree_host_for_replace_ = host_to_delete; 603 return; 604 } 605 DCHECK_EQ(1U, window_tree_hosts_.size()); 606 primary_display_id = ScreenUtil::GetSecondaryDisplay().id(); 607 AshWindowTreeHost* primary_host = host_to_delete; 608 609 // Delete the other host instead. 610 host_to_delete = window_tree_hosts_[primary_display_id]; 611 GetRootWindowSettings(GetWindow(host_to_delete))->display_id = display.id(); 612 613 // Setup primary root. 614 window_tree_hosts_[primary_display_id] = primary_host; 615 GetRootWindowSettings(GetWindow(primary_host))->display_id = 616 primary_display_id; 617 618 OnDisplayMetricsChanged( 619 GetDisplayManager()->GetDisplayForId(primary_display_id), 620 DISPLAY_METRIC_BOUNDS); 621 } 622 RootWindowController* controller = 623 GetRootWindowController(GetWindow(host_to_delete)); 624 DCHECK(controller); 625 controller->MoveWindowsTo(GetPrimaryRootWindow()); 626 // Delete most of root window related objects, but don't delete 627 // root window itself yet because the stack may be using it. 628 controller->Shutdown(); 629 base::MessageLoop::current()->DeleteSoon(FROM_HERE, controller); 630 } 631 632 void DisplayController::OnDisplayMetricsChanged(const gfx::Display& display, 633 uint32_t metrics) { 634 if (!(metrics & (DISPLAY_METRIC_BOUNDS | DISPLAY_METRIC_ROTATION | 635 DISPLAY_METRIC_DEVICE_SCALE_FACTOR))) 636 return; 637 const DisplayInfo& display_info = 638 GetDisplayManager()->GetDisplayInfo(display.id()); 639 DCHECK(!display_info.bounds_in_native().IsEmpty()); 640 AshWindowTreeHost* ash_host = window_tree_hosts_[display.id()]; 641 ash_host->AsWindowTreeHost()->SetBounds(display_info.bounds_in_native()); 642 SetDisplayPropertiesOnHost(ash_host, display); 643 } 644 645 void DisplayController::OnHostResized(const aura::WindowTreeHost* host) { 646 gfx::Display display = Shell::GetScreen()->GetDisplayNearestWindow( 647 const_cast<aura::Window*>(host->window())); 648 649 DisplayManager* display_manager = GetDisplayManager(); 650 if (display_manager->UpdateDisplayBounds(display.id(), host->GetBounds())) { 651 mirror_window_controller_->UpdateWindow(); 652 cursor_window_controller_->UpdateContainer(); 653 } 654 } 655 656 void DisplayController::CreateOrUpdateNonDesktopDisplay( 657 const DisplayInfo& info) { 658 switch (GetDisplayManager()->second_display_mode()) { 659 case DisplayManager::MIRRORING: 660 mirror_window_controller_->UpdateWindow(info); 661 cursor_window_controller_->UpdateContainer(); 662 break; 663 case DisplayManager::EXTENDED: 664 NOTREACHED(); 665 } 666 } 667 668 void DisplayController::CloseNonDesktopDisplay() { 669 mirror_window_controller_->Close(); 670 // If cursor_compositing is enabled for large cursor, the cursor window is 671 // always on the desktop display (the visible cursor on the non-desktop 672 // display is drawn through compositor mirroring). Therefore, it's unnecessary 673 // to handle the cursor_window at all. See: http://crbug.com/412910 674 if (!cursor_window_controller_->is_cursor_compositing_enabled()) 675 cursor_window_controller_->UpdateContainer(); 676 } 677 678 void DisplayController::PreDisplayConfigurationChange(bool clear_focus) { 679 FOR_EACH_OBSERVER(Observer, observers_, OnDisplayConfigurationChanging()); 680 focus_activation_store_->Store(clear_focus); 681 gfx::Screen* screen = Shell::GetScreen(); 682 gfx::Point point_in_screen = screen->GetCursorScreenPoint(); 683 gfx::Display display = screen->GetDisplayNearestPoint(point_in_screen); 684 aura::Window* root_window = GetRootWindowForDisplayId(display.id()); 685 686 aura::client::ScreenPositionClient* client = 687 aura::client::GetScreenPositionClient(root_window); 688 client->ConvertPointFromScreen(root_window, &point_in_screen); 689 root_window->GetHost()->ConvertPointToNativeScreen(&point_in_screen); 690 cursor_location_in_native_coords_for_restore_ = point_in_screen; 691 } 692 693 void DisplayController::PostDisplayConfigurationChange() { 694 if (limiter_) 695 limiter_->SetThrottleTimeout(kAfterDisplayChangeThrottleTimeoutMs); 696 697 focus_activation_store_->Restore(); 698 699 DisplayManager* display_manager = GetDisplayManager(); 700 DisplayLayoutStore* layout_store = display_manager->layout_store(); 701 if (display_manager->num_connected_displays() > 1) { 702 DisplayIdPair pair = display_manager->GetCurrentDisplayIdPair(); 703 layout_store->UpdateMirrorStatus(pair, display_manager->IsMirrored()); 704 DisplayLayout layout = layout_store->GetRegisteredDisplayLayout(pair); 705 706 if (Shell::GetScreen()->GetNumDisplays() > 1 ) { 707 int64 primary_id = layout.primary_id; 708 SetPrimaryDisplayId( 709 primary_id == gfx::Display::kInvalidDisplayID ? 710 pair.first : primary_id); 711 // Update the primary_id in case the above call is 712 // ignored. Happens when a) default layout's primary id 713 // doesn't exist, or b) the primary_id has already been 714 // set to the same and didn't update it. 715 layout_store->UpdatePrimaryDisplayId( 716 pair, Shell::GetScreen()->GetPrimaryDisplay().id()); 717 } 718 } 719 FOR_EACH_OBSERVER(Observer, observers_, OnDisplayConfigurationChanged()); 720 UpdateHostWindowNames(); 721 EnsurePointerInDisplays(); 722 } 723 724 AshWindowTreeHost* DisplayController::AddWindowTreeHostForDisplay( 725 const gfx::Display& display, 726 const AshWindowTreeHostInitParams& init_params) { 727 static int host_count = 0; 728 const DisplayInfo& display_info = 729 GetDisplayManager()->GetDisplayInfo(display.id()); 730 AshWindowTreeHostInitParams params_with_bounds(init_params); 731 params_with_bounds.initial_bounds = display_info.bounds_in_native(); 732 AshWindowTreeHost* ash_host = AshWindowTreeHost::Create(params_with_bounds); 733 aura::WindowTreeHost* host = ash_host->AsWindowTreeHost(); 734 735 host->window()->SetName(base::StringPrintf("RootWindow-%d", host_count++)); 736 host->window()->SetTitle(base::UTF8ToUTF16(display_info.name())); 737 host->compositor()->SetBackgroundColor(SK_ColorBLACK); 738 // No need to remove our observer observer because the DisplayController 739 // outlives the host. 740 host->AddObserver(this); 741 InitRootWindowSettings(host->window())->display_id = display.id(); 742 host->InitHost(); 743 744 window_tree_hosts_[display.id()] = ash_host; 745 SetDisplayPropertiesOnHost(ash_host, display); 746 747 #if defined(OS_CHROMEOS) 748 static bool force_constrain_pointer_to_root = 749 CommandLine::ForCurrentProcess()->HasSwitch( 750 switches::kAshConstrainPointerToRoot); 751 if (base::SysInfo::IsRunningOnChromeOS() || force_constrain_pointer_to_root) 752 ash_host->ConfineCursorToRootWindow(); 753 #endif 754 return ash_host; 755 } 756 757 void DisplayController::OnFadeOutForSwapDisplayFinished() { 758 #if defined(OS_CHROMEOS) 759 SetPrimaryDisplay(ScreenUtil::GetSecondaryDisplay()); 760 Shell::GetInstance()->display_configurator_animation() 761 ->StartFadeInAnimation(); 762 #endif 763 } 764 765 void DisplayController::SetMirrorModeAfterAnimation(bool mirror) { 766 GetDisplayManager()->SetMirrorMode(mirror); 767 } 768 769 void DisplayController::UpdateHostWindowNames() { 770 #if defined(USE_X11) 771 // crbug.com/120229 - set the window title for the primary dislpay 772 // to "aura_root_0" so gtalk can find the primary root window to broadcast. 773 // TODO(jhorwich) Remove this once Chrome supports window-based broadcasting. 774 aura::Window* primary = Shell::GetPrimaryRootWindow(); 775 aura::Window::Windows root_windows = Shell::GetAllRootWindows(); 776 for (size_t i = 0; i < root_windows.size(); ++i) { 777 std::string name = 778 root_windows[i] == primary ? "aura_root_0" : "aura_root_x"; 779 gfx::AcceleratedWidget xwindow = 780 root_windows[i]->GetHost()->GetAcceleratedWidget(); 781 XStoreName(gfx::GetXDisplay(), xwindow, name.c_str()); 782 } 783 #endif 784 } 785 786 } // namespace ash 787