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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 "ui/views/win/hwnd_message_handler.h"
6 
7 #include <dwmapi.h>
8 #include <oleacc.h>
9 #include <shellapi.h>
10 #include <wtsapi32.h>
11 #pragma comment(lib, "wtsapi32.lib")
12 
13 #include "base/bind.h"
14 #include "base/debug/trace_event.h"
15 #include "base/win/win_util.h"
16 #include "base/win/windows_version.h"
17 #include "ui/base/touch/touch_enabled.h"
18 #include "ui/base/view_prop.h"
19 #include "ui/base/win/internal_constants.h"
20 #include "ui/base/win/lock_state.h"
21 #include "ui/base/win/mouse_wheel_util.h"
22 #include "ui/base/win/shell.h"
23 #include "ui/base/win/touch_input.h"
24 #include "ui/events/event.h"
25 #include "ui/events/event_utils.h"
26 #include "ui/events/gestures/gesture_sequence.h"
27 #include "ui/events/keycodes/keyboard_code_conversion_win.h"
28 #include "ui/gfx/canvas.h"
29 #include "ui/gfx/canvas_skia_paint.h"
30 #include "ui/gfx/icon_util.h"
31 #include "ui/gfx/insets.h"
32 #include "ui/gfx/path.h"
33 #include "ui/gfx/path_win.h"
34 #include "ui/gfx/screen.h"
35 #include "ui/gfx/win/dpi.h"
36 #include "ui/gfx/win/hwnd_util.h"
37 #include "ui/native_theme/native_theme_win.h"
38 #include "ui/views/views_delegate.h"
39 #include "ui/views/widget/monitor_win.h"
40 #include "ui/views/widget/widget_hwnd_utils.h"
41 #include "ui/views/win/fullscreen_handler.h"
42 #include "ui/views/win/hwnd_message_handler_delegate.h"
43 #include "ui/views/win/scoped_fullscreen_visibility.h"
44 
45 namespace views {
46 namespace {
47 
48 // MoveLoopMouseWatcher is used to determine if the user canceled or completed a
49 // move. win32 doesn't appear to offer a way to determine the result of a move,
50 // so we install hooks to determine if we got a mouse up and assume the move
51 // completed.
52 class MoveLoopMouseWatcher {
53  public:
54   MoveLoopMouseWatcher(HWNDMessageHandler* host, bool hide_on_escape);
55   ~MoveLoopMouseWatcher();
56 
57   // Returns true if the mouse is up, or if we couldn't install the hook.
got_mouse_up() const58   bool got_mouse_up() const { return got_mouse_up_; }
59 
60  private:
61   // Instance that owns the hook. We only allow one instance to hook the mouse
62   // at a time.
63   static MoveLoopMouseWatcher* instance_;
64 
65   // Key and mouse callbacks from the hook.
66   static LRESULT CALLBACK MouseHook(int n_code, WPARAM w_param, LPARAM l_param);
67   static LRESULT CALLBACK KeyHook(int n_code, WPARAM w_param, LPARAM l_param);
68 
69   void Unhook();
70 
71   // HWNDMessageHandler that created us.
72   HWNDMessageHandler* host_;
73 
74   // Should the window be hidden when escape is pressed?
75   const bool hide_on_escape_;
76 
77   // Did we get a mouse up?
78   bool got_mouse_up_;
79 
80   // Hook identifiers.
81   HHOOK mouse_hook_;
82   HHOOK key_hook_;
83 
84   DISALLOW_COPY_AND_ASSIGN(MoveLoopMouseWatcher);
85 };
86 
87 // static
88 MoveLoopMouseWatcher* MoveLoopMouseWatcher::instance_ = NULL;
89 
MoveLoopMouseWatcher(HWNDMessageHandler * host,bool hide_on_escape)90 MoveLoopMouseWatcher::MoveLoopMouseWatcher(HWNDMessageHandler* host,
91                                            bool hide_on_escape)
92     : host_(host),
93       hide_on_escape_(hide_on_escape),
94       got_mouse_up_(false),
95       mouse_hook_(NULL),
96       key_hook_(NULL) {
97   // Only one instance can be active at a time.
98   if (instance_)
99     instance_->Unhook();
100 
101   mouse_hook_ = SetWindowsHookEx(
102       WH_MOUSE, &MouseHook, NULL, GetCurrentThreadId());
103   if (mouse_hook_) {
104     instance_ = this;
105     // We don't care if setting the key hook succeeded.
106     key_hook_ = SetWindowsHookEx(
107         WH_KEYBOARD, &KeyHook, NULL, GetCurrentThreadId());
108   }
109   if (instance_ != this) {
110     // Failed installation. Assume we got a mouse up in this case, otherwise
111     // we'll think all drags were canceled.
112     got_mouse_up_ = true;
113   }
114 }
115 
~MoveLoopMouseWatcher()116 MoveLoopMouseWatcher::~MoveLoopMouseWatcher() {
117   Unhook();
118 }
119 
Unhook()120 void MoveLoopMouseWatcher::Unhook() {
121   if (instance_ != this)
122     return;
123 
124   DCHECK(mouse_hook_);
125   UnhookWindowsHookEx(mouse_hook_);
126   if (key_hook_)
127     UnhookWindowsHookEx(key_hook_);
128   key_hook_ = NULL;
129   mouse_hook_ = NULL;
130   instance_ = NULL;
131 }
132 
133 // static
MouseHook(int n_code,WPARAM w_param,LPARAM l_param)134 LRESULT CALLBACK MoveLoopMouseWatcher::MouseHook(int n_code,
135                                                  WPARAM w_param,
136                                                  LPARAM l_param) {
137   DCHECK(instance_);
138   if (n_code == HC_ACTION && w_param == WM_LBUTTONUP)
139     instance_->got_mouse_up_ = true;
140   return CallNextHookEx(instance_->mouse_hook_, n_code, w_param, l_param);
141 }
142 
143 // static
KeyHook(int n_code,WPARAM w_param,LPARAM l_param)144 LRESULT CALLBACK MoveLoopMouseWatcher::KeyHook(int n_code,
145                                                WPARAM w_param,
146                                                LPARAM l_param) {
147   if (n_code == HC_ACTION && w_param == VK_ESCAPE) {
148     if (base::win::GetVersion() >= base::win::VERSION_VISTA) {
149       int value = TRUE;
150       HRESULT result = DwmSetWindowAttribute(
151           instance_->host_->hwnd(),
152           DWMWA_TRANSITIONS_FORCEDISABLED,
153           &value,
154           sizeof(value));
155     }
156     if (instance_->hide_on_escape_)
157       instance_->host_->Hide();
158   }
159   return CallNextHookEx(instance_->key_hook_, n_code, w_param, l_param);
160 }
161 
162 // Called from OnNCActivate.
EnumChildWindowsForRedraw(HWND hwnd,LPARAM lparam)163 BOOL CALLBACK EnumChildWindowsForRedraw(HWND hwnd, LPARAM lparam) {
164   DWORD process_id;
165   GetWindowThreadProcessId(hwnd, &process_id);
166   int flags = RDW_INVALIDATE | RDW_NOCHILDREN | RDW_FRAME;
167   if (process_id == GetCurrentProcessId())
168     flags |= RDW_UPDATENOW;
169   RedrawWindow(hwnd, NULL, NULL, flags);
170   return TRUE;
171 }
172 
GetMonitorAndRects(const RECT & rect,HMONITOR * monitor,gfx::Rect * monitor_rect,gfx::Rect * work_area)173 bool GetMonitorAndRects(const RECT& rect,
174                         HMONITOR* monitor,
175                         gfx::Rect* monitor_rect,
176                         gfx::Rect* work_area) {
177   DCHECK(monitor);
178   DCHECK(monitor_rect);
179   DCHECK(work_area);
180   *monitor = MonitorFromRect(&rect, MONITOR_DEFAULTTONULL);
181   if (!*monitor)
182     return false;
183   MONITORINFO monitor_info = { 0 };
184   monitor_info.cbSize = sizeof(monitor_info);
185   GetMonitorInfo(*monitor, &monitor_info);
186   *monitor_rect = gfx::Rect(monitor_info.rcMonitor);
187   *work_area = gfx::Rect(monitor_info.rcWork);
188   return true;
189 }
190 
191 struct FindOwnedWindowsData {
192   HWND window;
193   std::vector<Widget*> owned_widgets;
194 };
195 
196 // Enables or disables the menu item for the specified command and menu.
EnableMenuItemByCommand(HMENU menu,UINT command,bool enabled)197 void EnableMenuItemByCommand(HMENU menu, UINT command, bool enabled) {
198   UINT flags = MF_BYCOMMAND | (enabled ? MF_ENABLED : MF_DISABLED | MF_GRAYED);
199   EnableMenuItem(menu, command, flags);
200 }
201 
202 // Callback used to notify child windows that the top level window received a
203 // DWMCompositionChanged message.
SendDwmCompositionChanged(HWND window,LPARAM param)204 BOOL CALLBACK SendDwmCompositionChanged(HWND window, LPARAM param) {
205   SendMessage(window, WM_DWMCOMPOSITIONCHANGED, 0, 0);
206   return TRUE;
207 }
208 
209 // See comments in OnNCPaint() for details of this struct.
210 struct ClipState {
211   // The window being painted.
212   HWND parent;
213 
214   // DC painting to.
215   HDC dc;
216 
217   // Origin of the window in terms of the screen.
218   int x;
219   int y;
220 };
221 
222 // See comments in OnNCPaint() for details of this function.
ClipDCToChild(HWND window,LPARAM param)223 static BOOL CALLBACK ClipDCToChild(HWND window, LPARAM param) {
224   ClipState* clip_state = reinterpret_cast<ClipState*>(param);
225   if (GetParent(window) == clip_state->parent && IsWindowVisible(window)) {
226     RECT bounds;
227     GetWindowRect(window, &bounds);
228     ExcludeClipRect(clip_state->dc,
229       bounds.left - clip_state->x,
230       bounds.top - clip_state->y,
231       bounds.right - clip_state->x,
232       bounds.bottom - clip_state->y);
233   }
234   return TRUE;
235 }
236 
237 // The thickness of an auto-hide taskbar in pixels.
238 const int kAutoHideTaskbarThicknessPx = 2;
239 
IsTopLevelWindow(HWND window)240 bool IsTopLevelWindow(HWND window) {
241   long style = ::GetWindowLong(window, GWL_STYLE);
242   if (!(style & WS_CHILD))
243     return true;
244   HWND parent = ::GetParent(window);
245   return !parent || (parent == ::GetDesktopWindow());
246 }
247 
AddScrollStylesToWindow(HWND window)248 void AddScrollStylesToWindow(HWND window) {
249   if (::IsWindow(window)) {
250     long current_style = ::GetWindowLong(window, GWL_STYLE);
251     ::SetWindowLong(window, GWL_STYLE,
252                     current_style | WS_VSCROLL | WS_HSCROLL);
253   }
254 }
255 
256 const int kTouchDownContextResetTimeout = 500;
257 
258 // Windows does not flag synthesized mouse messages from touch in all cases.
259 // This causes us grief as we don't want to process touch and mouse messages
260 // concurrently. Hack as per msdn is to check if the time difference between
261 // the touch message and the mouse move is within 500 ms and at the same
262 // location as the cursor.
263 const int kSynthesizedMouseTouchMessagesTimeDifference = 500;
264 
265 }  // namespace
266 
267 // A scoping class that prevents a window from being able to redraw in response
268 // to invalidations that may occur within it for the lifetime of the object.
269 //
270 // Why would we want such a thing? Well, it turns out Windows has some
271 // "unorthodox" behavior when it comes to painting its non-client areas.
272 // Occasionally, Windows will paint portions of the default non-client area
273 // right over the top of the custom frame. This is not simply fixed by handling
274 // WM_NCPAINT/WM_PAINT, with some investigation it turns out that this
275 // rendering is being done *inside* the default implementation of some message
276 // handlers and functions:
277 //  . WM_SETTEXT
278 //  . WM_SETICON
279 //  . WM_NCLBUTTONDOWN
280 //  . EnableMenuItem, called from our WM_INITMENU handler
281 // The solution is to handle these messages and call DefWindowProc ourselves,
282 // but prevent the window from being able to update itself for the duration of
283 // the call. We do this with this class, which automatically calls its
284 // associated Window's lock and unlock functions as it is created and destroyed.
285 // See documentation in those methods for the technique used.
286 //
287 // The lock only has an effect if the window was visible upon lock creation, as
288 // it doesn't guard against direct visiblility changes, and multiple locks may
289 // exist simultaneously to handle certain nested Windows messages.
290 //
291 // IMPORTANT: Do not use this scoping object for large scopes or periods of
292 //            time! IT WILL PREVENT THE WINDOW FROM BEING REDRAWN! (duh).
293 //
294 // I would love to hear Raymond Chen's explanation for all this. And maybe a
295 // list of other messages that this applies to ;-)
296 class HWNDMessageHandler::ScopedRedrawLock {
297  public:
ScopedRedrawLock(HWNDMessageHandler * owner)298   explicit ScopedRedrawLock(HWNDMessageHandler* owner)
299     : owner_(owner),
300       hwnd_(owner_->hwnd()),
301       was_visible_(owner_->IsVisible()),
302       cancel_unlock_(false),
303       force_(!(GetWindowLong(hwnd_, GWL_STYLE) & WS_CAPTION)) {
304     if (was_visible_ && ::IsWindow(hwnd_))
305       owner_->LockUpdates(force_);
306   }
307 
~ScopedRedrawLock()308   ~ScopedRedrawLock() {
309     if (!cancel_unlock_ && was_visible_ && ::IsWindow(hwnd_))
310       owner_->UnlockUpdates(force_);
311   }
312 
313   // Cancel the unlock operation, call this if the Widget is being destroyed.
CancelUnlockOperation()314   void CancelUnlockOperation() { cancel_unlock_ = true; }
315 
316  private:
317   // The owner having its style changed.
318   HWNDMessageHandler* owner_;
319   // The owner's HWND, cached to avoid action after window destruction.
320   HWND hwnd_;
321   // Records the HWND visibility at the time of creation.
322   bool was_visible_;
323   // A flag indicating that the unlock operation was canceled.
324   bool cancel_unlock_;
325   // If true, perform the redraw lock regardless of Aero state.
326   bool force_;
327 
328   DISALLOW_COPY_AND_ASSIGN(ScopedRedrawLock);
329 };
330 
331 ////////////////////////////////////////////////////////////////////////////////
332 // HWNDMessageHandler, public:
333 
334 long HWNDMessageHandler::last_touch_message_time_ = 0;
335 
HWNDMessageHandler(HWNDMessageHandlerDelegate * delegate)336 HWNDMessageHandler::HWNDMessageHandler(HWNDMessageHandlerDelegate* delegate)
337     : delegate_(delegate),
338       fullscreen_handler_(new FullscreenHandler),
339       weak_factory_(this),
340       waiting_for_close_now_(false),
341       remove_standard_frame_(false),
342       use_system_default_icon_(false),
343       restored_enabled_(false),
344       current_cursor_(NULL),
345       previous_cursor_(NULL),
346       active_mouse_tracking_flags_(0),
347       is_right_mouse_pressed_on_caption_(false),
348       lock_updates_count_(0),
349       ignore_window_pos_changes_(false),
350       last_monitor_(NULL),
351       use_layered_buffer_(false),
352       layered_alpha_(255),
353       waiting_for_redraw_layered_window_contents_(false),
354       is_first_nccalc_(true),
355       menu_depth_(0),
356       autohide_factory_(this),
357       id_generator_(0),
358       needs_scroll_styles_(false),
359       in_size_loop_(false),
360       touch_down_contexts_(0),
361       last_mouse_hwheel_time_(0),
362       msg_handled_(FALSE) {
363 }
364 
~HWNDMessageHandler()365 HWNDMessageHandler::~HWNDMessageHandler() {
366   delegate_ = NULL;
367   // Prevent calls back into this class via WNDPROC now that we've been
368   // destroyed.
369   ClearUserData();
370 }
371 
Init(HWND parent,const gfx::Rect & bounds)372 void HWNDMessageHandler::Init(HWND parent, const gfx::Rect& bounds) {
373   TRACE_EVENT0("views", "HWNDMessageHandler::Init");
374   GetMonitorAndRects(bounds.ToRECT(), &last_monitor_, &last_monitor_rect_,
375                      &last_work_area_);
376 
377   // Create the window.
378   WindowImpl::Init(parent, bounds);
379   // TODO(ananta)
380   // Remove the scrolling hack code once we have scrolling working well.
381 #if defined(ENABLE_SCROLL_HACK)
382   // Certain trackpad drivers on Windows have bugs where in they don't generate
383   // WM_MOUSEWHEEL messages for the trackpoint and trackpad scrolling gestures
384   // unless there is an entry for Chrome with the class name of the Window.
385   // These drivers check if the window under the trackpoint has the WS_VSCROLL/
386   // WS_HSCROLL style and if yes they generate the legacy WM_VSCROLL/WM_HSCROLL
387   // messages. We add these styles to ensure that trackpad/trackpoint scrolling
388   // work.
389   // TODO(ananta)
390   // Look into moving the WS_VSCROLL and WS_HSCROLL style setting logic to the
391   // CalculateWindowStylesFromInitParams function. Doing it there seems to
392   // cause some interactive tests to fail. Investigation needed.
393   if (IsTopLevelWindow(hwnd())) {
394     long current_style = ::GetWindowLong(hwnd(), GWL_STYLE);
395     if (!(current_style & WS_POPUP)) {
396       AddScrollStylesToWindow(hwnd());
397       needs_scroll_styles_ = true;
398     }
399   }
400 #endif
401 
402   prop_window_target_.reset(new ui::ViewProp(hwnd(),
403                             ui::WindowEventTarget::kWin32InputEventTarget,
404                             static_cast<ui::WindowEventTarget*>(this)));
405 }
406 
InitModalType(ui::ModalType modal_type)407 void HWNDMessageHandler::InitModalType(ui::ModalType modal_type) {
408   if (modal_type == ui::MODAL_TYPE_NONE)
409     return;
410   // We implement modality by crawling up the hierarchy of windows starting
411   // at the owner, disabling all of them so that they don't receive input
412   // messages.
413   HWND start = ::GetWindow(hwnd(), GW_OWNER);
414   while (start) {
415     ::EnableWindow(start, FALSE);
416     start = ::GetParent(start);
417   }
418 }
419 
Close()420 void HWNDMessageHandler::Close() {
421   if (!IsWindow(hwnd()))
422     return;  // No need to do anything.
423 
424   // Let's hide ourselves right away.
425   Hide();
426 
427   // Modal dialog windows disable their owner windows; re-enable them now so
428   // they can activate as foreground windows upon this window's destruction.
429   RestoreEnabledIfNecessary();
430 
431   if (!waiting_for_close_now_) {
432     // And we delay the close so that if we are called from an ATL callback,
433     // we don't destroy the window before the callback returned (as the caller
434     // may delete ourselves on destroy and the ATL callback would still
435     // dereference us when the callback returns).
436     waiting_for_close_now_ = true;
437     base::MessageLoop::current()->PostTask(
438         FROM_HERE,
439         base::Bind(&HWNDMessageHandler::CloseNow, weak_factory_.GetWeakPtr()));
440   }
441 }
442 
CloseNow()443 void HWNDMessageHandler::CloseNow() {
444   // We may already have been destroyed if the selection resulted in a tab
445   // switch which will have reactivated the browser window and closed us, so
446   // we need to check to see if we're still a window before trying to destroy
447   // ourself.
448   waiting_for_close_now_ = false;
449   if (IsWindow(hwnd()))
450     DestroyWindow(hwnd());
451 }
452 
GetWindowBoundsInScreen() const453 gfx::Rect HWNDMessageHandler::GetWindowBoundsInScreen() const {
454   RECT r;
455   GetWindowRect(hwnd(), &r);
456   return gfx::Rect(r);
457 }
458 
GetClientAreaBoundsInScreen() const459 gfx::Rect HWNDMessageHandler::GetClientAreaBoundsInScreen() const {
460   RECT r;
461   GetClientRect(hwnd(), &r);
462   POINT point = { r.left, r.top };
463   ClientToScreen(hwnd(), &point);
464   return gfx::Rect(point.x, point.y, r.right - r.left, r.bottom - r.top);
465 }
466 
GetRestoredBounds() const467 gfx::Rect HWNDMessageHandler::GetRestoredBounds() const {
468   // If we're in fullscreen mode, we've changed the normal bounds to the monitor
469   // rect, so return the saved bounds instead.
470   if (fullscreen_handler_->fullscreen())
471     return fullscreen_handler_->GetRestoreBounds();
472 
473   gfx::Rect bounds;
474   GetWindowPlacement(&bounds, NULL);
475   return bounds;
476 }
477 
GetClientAreaBounds() const478 gfx::Rect HWNDMessageHandler::GetClientAreaBounds() const {
479   if (IsMinimized())
480     return gfx::Rect();
481   if (delegate_->WidgetSizeIsClientSize())
482     return GetClientAreaBoundsInScreen();
483   return GetWindowBoundsInScreen();
484 }
485 
GetWindowPlacement(gfx::Rect * bounds,ui::WindowShowState * show_state) const486 void HWNDMessageHandler::GetWindowPlacement(
487     gfx::Rect* bounds,
488     ui::WindowShowState* show_state) const {
489   WINDOWPLACEMENT wp;
490   wp.length = sizeof(wp);
491   const bool succeeded = !!::GetWindowPlacement(hwnd(), &wp);
492   DCHECK(succeeded);
493 
494   if (bounds != NULL) {
495     if (wp.showCmd == SW_SHOWNORMAL) {
496       // GetWindowPlacement can return misleading position if a normalized
497       // window was resized using Aero Snap feature (see comment 9 in bug
498       // 36421). As a workaround, using GetWindowRect for normalized windows.
499       const bool succeeded = GetWindowRect(hwnd(), &wp.rcNormalPosition) != 0;
500       DCHECK(succeeded);
501 
502       *bounds = gfx::Rect(wp.rcNormalPosition);
503     } else {
504       MONITORINFO mi;
505       mi.cbSize = sizeof(mi);
506       const bool succeeded = GetMonitorInfo(
507           MonitorFromWindow(hwnd(), MONITOR_DEFAULTTONEAREST), &mi) != 0;
508       DCHECK(succeeded);
509 
510       *bounds = gfx::Rect(wp.rcNormalPosition);
511       // Convert normal position from workarea coordinates to screen
512       // coordinates.
513       bounds->Offset(mi.rcWork.left - mi.rcMonitor.left,
514                      mi.rcWork.top - mi.rcMonitor.top);
515     }
516   }
517 
518   if (show_state) {
519     if (wp.showCmd == SW_SHOWMAXIMIZED)
520       *show_state = ui::SHOW_STATE_MAXIMIZED;
521     else if (wp.showCmd == SW_SHOWMINIMIZED)
522       *show_state = ui::SHOW_STATE_MINIMIZED;
523     else
524       *show_state = ui::SHOW_STATE_NORMAL;
525   }
526 }
527 
SetBounds(const gfx::Rect & bounds_in_pixels,bool force_size_changed)528 void HWNDMessageHandler::SetBounds(const gfx::Rect& bounds_in_pixels,
529                                    bool force_size_changed) {
530   LONG style = GetWindowLong(hwnd(), GWL_STYLE);
531   if (style & WS_MAXIMIZE)
532     SetWindowLong(hwnd(), GWL_STYLE, style & ~WS_MAXIMIZE);
533 
534   gfx::Size old_size = GetClientAreaBounds().size();
535   SetWindowPos(hwnd(), NULL, bounds_in_pixels.x(), bounds_in_pixels.y(),
536                bounds_in_pixels.width(), bounds_in_pixels.height(),
537                SWP_NOACTIVATE | SWP_NOZORDER);
538 
539   // If HWND size is not changed, we will not receive standard size change
540   // notifications. If |force_size_changed| is |true|, we should pretend size is
541   // changed.
542   if (old_size == bounds_in_pixels.size() && force_size_changed) {
543     delegate_->HandleClientSizeChanged(GetClientAreaBounds().size());
544     ResetWindowRegion(false, true);
545   }
546 }
547 
SetSize(const gfx::Size & size)548 void HWNDMessageHandler::SetSize(const gfx::Size& size) {
549   SetWindowPos(hwnd(), NULL, 0, 0, size.width(), size.height(),
550                SWP_NOACTIVATE | SWP_NOZORDER | SWP_NOMOVE);
551 }
552 
CenterWindow(const gfx::Size & size)553 void HWNDMessageHandler::CenterWindow(const gfx::Size& size) {
554   HWND parent = GetParent(hwnd());
555   if (!IsWindow(hwnd()))
556     parent = ::GetWindow(hwnd(), GW_OWNER);
557   gfx::CenterAndSizeWindow(parent, hwnd(), size);
558 }
559 
SetRegion(HRGN region)560 void HWNDMessageHandler::SetRegion(HRGN region) {
561   custom_window_region_.Set(region);
562   ResetWindowRegion(false, true);
563   UpdateDwmNcRenderingPolicy();
564 }
565 
StackAbove(HWND other_hwnd)566 void HWNDMessageHandler::StackAbove(HWND other_hwnd) {
567   SetWindowPos(hwnd(), other_hwnd, 0, 0, 0, 0,
568                SWP_NOSIZE | SWP_NOMOVE | SWP_NOACTIVATE);
569 }
570 
StackAtTop()571 void HWNDMessageHandler::StackAtTop() {
572   SetWindowPos(hwnd(), HWND_TOP, 0, 0, 0, 0,
573                SWP_NOSIZE | SWP_NOMOVE | SWP_NOACTIVATE);
574 }
575 
Show()576 void HWNDMessageHandler::Show() {
577   if (IsWindow(hwnd())) {
578     if (!(GetWindowLong(hwnd(), GWL_EXSTYLE) & WS_EX_TRANSPARENT) &&
579         !(GetWindowLong(hwnd(), GWL_EXSTYLE) & WS_EX_NOACTIVATE)) {
580       ShowWindowWithState(ui::SHOW_STATE_NORMAL);
581     } else {
582       ShowWindowWithState(ui::SHOW_STATE_INACTIVE);
583     }
584   }
585 }
586 
ShowWindowWithState(ui::WindowShowState show_state)587 void HWNDMessageHandler::ShowWindowWithState(ui::WindowShowState show_state) {
588   TRACE_EVENT0("views", "HWNDMessageHandler::ShowWindowWithState");
589   DWORD native_show_state;
590   switch (show_state) {
591     case ui::SHOW_STATE_INACTIVE:
592       native_show_state = SW_SHOWNOACTIVATE;
593       break;
594     case ui::SHOW_STATE_MAXIMIZED:
595       native_show_state = SW_SHOWMAXIMIZED;
596       break;
597     case ui::SHOW_STATE_MINIMIZED:
598       native_show_state = SW_SHOWMINIMIZED;
599       break;
600     default:
601       native_show_state = delegate_->GetInitialShowState();
602       break;
603   }
604 
605   ShowWindow(hwnd(), native_show_state);
606   // When launched from certain programs like bash and Windows Live Messenger,
607   // show_state is set to SW_HIDE, so we need to correct that condition. We
608   // don't just change show_state to SW_SHOWNORMAL because MSDN says we must
609   // always first call ShowWindow with the specified value from STARTUPINFO,
610   // otherwise all future ShowWindow calls will be ignored (!!#@@#!). Instead,
611   // we call ShowWindow again in this case.
612   if (native_show_state == SW_HIDE) {
613     native_show_state = SW_SHOWNORMAL;
614     ShowWindow(hwnd(), native_show_state);
615   }
616 
617   // We need to explicitly activate the window if we've been shown with a state
618   // that should activate, because if we're opened from a desktop shortcut while
619   // an existing window is already running it doesn't seem to be enough to use
620   // one of these flags to activate the window.
621   if (native_show_state == SW_SHOWNORMAL ||
622       native_show_state == SW_SHOWMAXIMIZED)
623     Activate();
624 
625   if (!delegate_->HandleInitialFocus(show_state))
626     SetInitialFocus();
627 }
628 
ShowMaximizedWithBounds(const gfx::Rect & bounds)629 void HWNDMessageHandler::ShowMaximizedWithBounds(const gfx::Rect& bounds) {
630   WINDOWPLACEMENT placement = { 0 };
631   placement.length = sizeof(WINDOWPLACEMENT);
632   placement.showCmd = SW_SHOWMAXIMIZED;
633   placement.rcNormalPosition = bounds.ToRECT();
634   SetWindowPlacement(hwnd(), &placement);
635 }
636 
Hide()637 void HWNDMessageHandler::Hide() {
638   if (IsWindow(hwnd())) {
639     // NOTE: Be careful not to activate any windows here (for example, calling
640     // ShowWindow(SW_HIDE) will automatically activate another window).  This
641     // code can be called while a window is being deactivated, and activating
642     // another window will screw up the activation that is already in progress.
643     SetWindowPos(hwnd(), NULL, 0, 0, 0, 0,
644                  SWP_HIDEWINDOW | SWP_NOACTIVATE | SWP_NOMOVE |
645                  SWP_NOREPOSITION | SWP_NOSIZE | SWP_NOZORDER);
646   }
647 }
648 
Maximize()649 void HWNDMessageHandler::Maximize() {
650   ExecuteSystemMenuCommand(SC_MAXIMIZE);
651 }
652 
Minimize()653 void HWNDMessageHandler::Minimize() {
654   ExecuteSystemMenuCommand(SC_MINIMIZE);
655   delegate_->HandleNativeBlur(NULL);
656 }
657 
Restore()658 void HWNDMessageHandler::Restore() {
659   ExecuteSystemMenuCommand(SC_RESTORE);
660 }
661 
Activate()662 void HWNDMessageHandler::Activate() {
663   if (IsMinimized())
664     ::ShowWindow(hwnd(), SW_RESTORE);
665   ::SetWindowPos(hwnd(), HWND_TOP, 0, 0, 0, 0, SWP_NOSIZE | SWP_NOMOVE);
666   SetForegroundWindow(hwnd());
667 }
668 
Deactivate()669 void HWNDMessageHandler::Deactivate() {
670   HWND next_hwnd = ::GetNextWindow(hwnd(), GW_HWNDNEXT);
671   while (next_hwnd) {
672     if (::IsWindowVisible(next_hwnd)) {
673       ::SetForegroundWindow(next_hwnd);
674       return;
675     }
676     next_hwnd = ::GetNextWindow(next_hwnd, GW_HWNDNEXT);
677   }
678 }
679 
SetAlwaysOnTop(bool on_top)680 void HWNDMessageHandler::SetAlwaysOnTop(bool on_top) {
681   ::SetWindowPos(hwnd(), on_top ? HWND_TOPMOST : HWND_NOTOPMOST,
682                  0, 0, 0, 0, SWP_NOMOVE | SWP_NOSIZE | SWP_NOACTIVATE);
683 }
684 
IsVisible() const685 bool HWNDMessageHandler::IsVisible() const {
686   return !!::IsWindowVisible(hwnd());
687 }
688 
IsActive() const689 bool HWNDMessageHandler::IsActive() const {
690   return GetActiveWindow() == hwnd();
691 }
692 
IsMinimized() const693 bool HWNDMessageHandler::IsMinimized() const {
694   return !!::IsIconic(hwnd());
695 }
696 
IsMaximized() const697 bool HWNDMessageHandler::IsMaximized() const {
698   return !!::IsZoomed(hwnd());
699 }
700 
IsAlwaysOnTop() const701 bool HWNDMessageHandler::IsAlwaysOnTop() const {
702   return (GetWindowLong(hwnd(), GWL_EXSTYLE) & WS_EX_TOPMOST) != 0;
703 }
704 
RunMoveLoop(const gfx::Vector2d & drag_offset,bool hide_on_escape)705 bool HWNDMessageHandler::RunMoveLoop(const gfx::Vector2d& drag_offset,
706                                      bool hide_on_escape) {
707   ReleaseCapture();
708   MoveLoopMouseWatcher watcher(this, hide_on_escape);
709   // In Aura, we handle touch events asynchronously. So we need to allow nested
710   // tasks while in windows move loop.
711   base::MessageLoop::ScopedNestableTaskAllower allow_nested(
712       base::MessageLoop::current());
713 
714   SendMessage(hwnd(), WM_SYSCOMMAND, SC_MOVE | 0x0002, GetMessagePos());
715   // Windows doesn't appear to offer a way to determine whether the user
716   // canceled the move or not. We assume if the user released the mouse it was
717   // successful.
718   return watcher.got_mouse_up();
719 }
720 
EndMoveLoop()721 void HWNDMessageHandler::EndMoveLoop() {
722   SendMessage(hwnd(), WM_CANCELMODE, 0, 0);
723 }
724 
SendFrameChanged()725 void HWNDMessageHandler::SendFrameChanged() {
726   SetWindowPos(hwnd(), NULL, 0, 0, 0, 0,
727       SWP_FRAMECHANGED | SWP_NOACTIVATE | SWP_NOCOPYBITS |
728       SWP_NOMOVE | SWP_NOOWNERZORDER | SWP_NOREPOSITION |
729       SWP_NOSENDCHANGING | SWP_NOSIZE | SWP_NOZORDER);
730 }
731 
FlashFrame(bool flash)732 void HWNDMessageHandler::FlashFrame(bool flash) {
733   FLASHWINFO fwi;
734   fwi.cbSize = sizeof(fwi);
735   fwi.hwnd = hwnd();
736   if (flash) {
737     fwi.dwFlags = FLASHW_ALL;
738     fwi.uCount = 4;
739     fwi.dwTimeout = 0;
740   } else {
741     fwi.dwFlags = FLASHW_STOP;
742   }
743   FlashWindowEx(&fwi);
744 }
745 
ClearNativeFocus()746 void HWNDMessageHandler::ClearNativeFocus() {
747   ::SetFocus(hwnd());
748 }
749 
SetCapture()750 void HWNDMessageHandler::SetCapture() {
751   DCHECK(!HasCapture());
752   ::SetCapture(hwnd());
753 }
754 
ReleaseCapture()755 void HWNDMessageHandler::ReleaseCapture() {
756   if (HasCapture())
757     ::ReleaseCapture();
758 }
759 
HasCapture() const760 bool HWNDMessageHandler::HasCapture() const {
761   return ::GetCapture() == hwnd();
762 }
763 
SetVisibilityChangedAnimationsEnabled(bool enabled)764 void HWNDMessageHandler::SetVisibilityChangedAnimationsEnabled(bool enabled) {
765   if (base::win::GetVersion() >= base::win::VERSION_VISTA) {
766     int dwm_value = enabled ? FALSE : TRUE;
767     DwmSetWindowAttribute(
768         hwnd(), DWMWA_TRANSITIONS_FORCEDISABLED, &dwm_value, sizeof(dwm_value));
769   }
770 }
771 
SetTitle(const base::string16 & title)772 bool HWNDMessageHandler::SetTitle(const base::string16& title) {
773   base::string16 current_title;
774   size_t len_with_null = GetWindowTextLength(hwnd()) + 1;
775   if (len_with_null == 1 && title.length() == 0)
776     return false;
777   if (len_with_null - 1 == title.length() &&
778       GetWindowText(
779           hwnd(), WriteInto(&current_title, len_with_null), len_with_null) &&
780       current_title == title)
781     return false;
782   SetWindowText(hwnd(), title.c_str());
783   return true;
784 }
785 
SetCursor(HCURSOR cursor)786 void HWNDMessageHandler::SetCursor(HCURSOR cursor) {
787   if (cursor) {
788     previous_cursor_ = ::SetCursor(cursor);
789     current_cursor_ = cursor;
790   } else if (previous_cursor_) {
791     ::SetCursor(previous_cursor_);
792     previous_cursor_ = NULL;
793   }
794 }
795 
FrameTypeChanged()796 void HWNDMessageHandler::FrameTypeChanged() {
797   // Called when the frame type could possibly be changing (theme change or
798   // DWM composition change).
799   UpdateDwmNcRenderingPolicy();
800 
801   // Don't redraw the window here, because we need to hide and show the window
802   // which will also trigger a redraw.
803   ResetWindowRegion(true, false);
804 
805   // The non-client view needs to update too.
806   delegate_->HandleFrameChanged();
807 
808   if (IsVisible() && !delegate_->IsUsingCustomFrame()) {
809     // For some reason, we need to hide the window after we change from a custom
810     // frame to a native frame.  If we don't, the client area will be filled
811     // with black.  This seems to be related to an interaction between DWM and
812     // SetWindowRgn, but the details aren't clear. Additionally, we need to
813     // specify SWP_NOZORDER here, otherwise if you have multiple chrome windows
814     // open they will re-appear with a non-deterministic Z-order.
815     UINT flags = SWP_NOMOVE | SWP_NOSIZE | SWP_NOZORDER;
816     SetWindowPos(hwnd(), NULL, 0, 0, 0, 0, flags | SWP_HIDEWINDOW);
817     SetWindowPos(hwnd(), NULL, 0, 0, 0, 0, flags | SWP_SHOWWINDOW);
818     // Invalidate the window to force a paint. There may be child windows which
819     // could resize in this context. Don't paint right away.
820     ::InvalidateRect(hwnd(), NULL, FALSE);
821   }
822 
823   // WM_DWMCOMPOSITIONCHANGED is only sent to top level windows, however we want
824   // to notify our children too, since we can have MDI child windows who need to
825   // update their appearance.
826   EnumChildWindows(hwnd(), &SendDwmCompositionChanged, NULL);
827 }
828 
SchedulePaintInRect(const gfx::Rect & rect)829 void HWNDMessageHandler::SchedulePaintInRect(const gfx::Rect& rect) {
830   if (use_layered_buffer_) {
831     // We must update the back-buffer immediately, since Windows' handling of
832     // invalid rects is somewhat mysterious.
833     invalid_rect_.Union(rect);
834 
835     // In some situations, such as drag and drop, when Windows itself runs a
836     // nested message loop our message loop appears to be starved and we don't
837     // receive calls to DidProcessMessage(). This only seems to affect layered
838     // windows, so we schedule a redraw manually using a task, since those never
839     // seem to be starved. Also, wtf.
840     if (!waiting_for_redraw_layered_window_contents_) {
841       waiting_for_redraw_layered_window_contents_ = true;
842       base::MessageLoop::current()->PostTask(
843           FROM_HERE,
844           base::Bind(&HWNDMessageHandler::RedrawLayeredWindowContents,
845                      weak_factory_.GetWeakPtr()));
846     }
847   } else {
848     // InvalidateRect() expects client coordinates.
849     RECT r = rect.ToRECT();
850     InvalidateRect(hwnd(), &r, FALSE);
851   }
852 }
853 
SetOpacity(BYTE opacity)854 void HWNDMessageHandler::SetOpacity(BYTE opacity) {
855   layered_alpha_ = opacity;
856 }
857 
SetWindowIcons(const gfx::ImageSkia & window_icon,const gfx::ImageSkia & app_icon)858 void HWNDMessageHandler::SetWindowIcons(const gfx::ImageSkia& window_icon,
859                                         const gfx::ImageSkia& app_icon) {
860   if (!window_icon.isNull()) {
861     HICON windows_icon = IconUtil::CreateHICONFromSkBitmap(
862         *window_icon.bitmap());
863     // We need to make sure to destroy the previous icon, otherwise we'll leak
864     // these GDI objects until we crash!
865     HICON old_icon = reinterpret_cast<HICON>(
866         SendMessage(hwnd(), WM_SETICON, ICON_SMALL,
867                     reinterpret_cast<LPARAM>(windows_icon)));
868     if (old_icon)
869       DestroyIcon(old_icon);
870   }
871   if (!app_icon.isNull()) {
872     HICON windows_icon = IconUtil::CreateHICONFromSkBitmap(*app_icon.bitmap());
873     HICON old_icon = reinterpret_cast<HICON>(
874         SendMessage(hwnd(), WM_SETICON, ICON_BIG,
875                     reinterpret_cast<LPARAM>(windows_icon)));
876     if (old_icon)
877       DestroyIcon(old_icon);
878   }
879 }
880 
881 ////////////////////////////////////////////////////////////////////////////////
882 // HWNDMessageHandler, InputMethodDelegate implementation:
883 
DispatchKeyEventPostIME(const ui::KeyEvent & key)884 void HWNDMessageHandler::DispatchKeyEventPostIME(const ui::KeyEvent& key) {
885   SetMsgHandled(delegate_->HandleKeyEvent(key));
886 }
887 
888 ////////////////////////////////////////////////////////////////////////////////
889 // HWNDMessageHandler, gfx::WindowImpl overrides:
890 
GetDefaultWindowIcon() const891 HICON HWNDMessageHandler::GetDefaultWindowIcon() const {
892   if (use_system_default_icon_)
893     return NULL;
894   return ViewsDelegate::views_delegate ?
895       ViewsDelegate::views_delegate->GetDefaultWindowIcon() : NULL;
896 }
897 
OnWndProc(UINT message,WPARAM w_param,LPARAM l_param)898 LRESULT HWNDMessageHandler::OnWndProc(UINT message,
899                                       WPARAM w_param,
900                                       LPARAM l_param) {
901   HWND window = hwnd();
902   LRESULT result = 0;
903 
904   if (delegate_ && delegate_->PreHandleMSG(message, w_param, l_param, &result))
905     return result;
906 
907   // Otherwise we handle everything else.
908   // NOTE: We inline ProcessWindowMessage() as 'this' may be destroyed during
909   // dispatch and ProcessWindowMessage() doesn't deal with that well.
910   const BOOL old_msg_handled = msg_handled_;
911   base::WeakPtr<HWNDMessageHandler> ref(weak_factory_.GetWeakPtr());
912   const BOOL processed =
913       _ProcessWindowMessage(window, message, w_param, l_param, result, 0);
914   if (!ref)
915     return 0;
916   msg_handled_ = old_msg_handled;
917 
918   if (!processed)
919     result = DefWindowProc(window, message, w_param, l_param);
920 
921   // DefWindowProc() may have destroyed the window in a nested message loop.
922   if (!::IsWindow(window))
923     return result;
924 
925   if (delegate_) {
926     delegate_->PostHandleMSG(message, w_param, l_param);
927     if (message == WM_NCDESTROY)
928       delegate_->HandleDestroyed();
929   }
930 
931   if (message == WM_ACTIVATE && IsTopLevelWindow(window))
932     PostProcessActivateMessage(LOWORD(w_param), !!HIWORD(w_param));
933   return result;
934 }
935 
HandleMouseMessage(unsigned int message,WPARAM w_param,LPARAM l_param)936 LRESULT HWNDMessageHandler::HandleMouseMessage(unsigned int message,
937                                                WPARAM w_param,
938                                                LPARAM l_param) {
939   // Don't track forwarded mouse messages. We expect the caller to track the
940   // mouse.
941   return HandleMouseEventInternal(message, w_param, l_param, false);
942 }
943 
HandleTouchMessage(unsigned int message,WPARAM w_param,LPARAM l_param)944 LRESULT HWNDMessageHandler::HandleTouchMessage(unsigned int message,
945                                                WPARAM w_param,
946                                                LPARAM l_param) {
947   return OnTouchEvent(message, w_param, l_param);
948 }
949 
HandleKeyboardMessage(unsigned int message,WPARAM w_param,LPARAM l_param)950 LRESULT HWNDMessageHandler::HandleKeyboardMessage(unsigned int message,
951                                                   WPARAM w_param,
952                                                   LPARAM l_param) {
953   return OnKeyEvent(message, w_param, l_param);
954 }
955 
HandleScrollMessage(unsigned int message,WPARAM w_param,LPARAM l_param)956 LRESULT HWNDMessageHandler::HandleScrollMessage(unsigned int message,
957                                                 WPARAM w_param,
958                                                 LPARAM l_param) {
959   return OnScrollMessage(message, w_param, l_param);
960 }
961 
HandleNcHitTestMessage(unsigned int message,WPARAM w_param,LPARAM l_param)962 LRESULT HWNDMessageHandler::HandleNcHitTestMessage(unsigned int message,
963                                                    WPARAM w_param,
964                                                    LPARAM l_param) {
965   return OnNCHitTest(
966       gfx::Point(CR_GET_X_LPARAM(l_param), CR_GET_Y_LPARAM(l_param)));
967 }
968 
969 ////////////////////////////////////////////////////////////////////////////////
970 // HWNDMessageHandler, private:
971 
GetAppbarAutohideEdges(HMONITOR monitor)972 int HWNDMessageHandler::GetAppbarAutohideEdges(HMONITOR monitor) {
973   autohide_factory_.InvalidateWeakPtrs();
974   return ViewsDelegate::views_delegate ?
975       ViewsDelegate::views_delegate->GetAppbarAutohideEdges(
976           monitor,
977           base::Bind(&HWNDMessageHandler::OnAppbarAutohideEdgesChanged,
978                      autohide_factory_.GetWeakPtr())) :
979       ViewsDelegate::EDGE_BOTTOM;
980 }
981 
OnAppbarAutohideEdgesChanged()982 void HWNDMessageHandler::OnAppbarAutohideEdgesChanged() {
983   // This triggers querying WM_NCCALCSIZE again.
984   RECT client;
985   GetWindowRect(hwnd(), &client);
986   SetWindowPos(hwnd(), NULL, client.left, client.top,
987                client.right - client.left, client.bottom - client.top,
988                SWP_FRAMECHANGED);
989 }
990 
SetInitialFocus()991 void HWNDMessageHandler::SetInitialFocus() {
992   if (!(GetWindowLong(hwnd(), GWL_EXSTYLE) & WS_EX_TRANSPARENT) &&
993       !(GetWindowLong(hwnd(), GWL_EXSTYLE) & WS_EX_NOACTIVATE)) {
994     // The window does not get keyboard messages unless we focus it.
995     SetFocus(hwnd());
996   }
997 }
998 
PostProcessActivateMessage(int activation_state,bool minimized)999 void HWNDMessageHandler::PostProcessActivateMessage(int activation_state,
1000                                                     bool minimized) {
1001   DCHECK(IsTopLevelWindow(hwnd()));
1002   const bool active = activation_state != WA_INACTIVE && !minimized;
1003   if (delegate_->CanActivate())
1004     delegate_->HandleActivationChanged(active);
1005 }
1006 
RestoreEnabledIfNecessary()1007 void HWNDMessageHandler::RestoreEnabledIfNecessary() {
1008   if (delegate_->IsModal() && !restored_enabled_) {
1009     restored_enabled_ = true;
1010     // If we were run modally, we need to undo the disabled-ness we inflicted on
1011     // the owner's parent hierarchy.
1012     HWND start = ::GetWindow(hwnd(), GW_OWNER);
1013     while (start) {
1014       ::EnableWindow(start, TRUE);
1015       start = ::GetParent(start);
1016     }
1017   }
1018 }
1019 
ExecuteSystemMenuCommand(int command)1020 void HWNDMessageHandler::ExecuteSystemMenuCommand(int command) {
1021   if (command)
1022     SendMessage(hwnd(), WM_SYSCOMMAND, command, 0);
1023 }
1024 
TrackMouseEvents(DWORD mouse_tracking_flags)1025 void HWNDMessageHandler::TrackMouseEvents(DWORD mouse_tracking_flags) {
1026   // Begin tracking mouse events for this HWND so that we get WM_MOUSELEAVE
1027   // when the user moves the mouse outside this HWND's bounds.
1028   if (active_mouse_tracking_flags_ == 0 || mouse_tracking_flags & TME_CANCEL) {
1029     if (mouse_tracking_flags & TME_CANCEL) {
1030       // We're about to cancel active mouse tracking, so empty out the stored
1031       // state.
1032       active_mouse_tracking_flags_ = 0;
1033     } else {
1034       active_mouse_tracking_flags_ = mouse_tracking_flags;
1035     }
1036 
1037     TRACKMOUSEEVENT tme;
1038     tme.cbSize = sizeof(tme);
1039     tme.dwFlags = mouse_tracking_flags;
1040     tme.hwndTrack = hwnd();
1041     tme.dwHoverTime = 0;
1042     TrackMouseEvent(&tme);
1043   } else if (mouse_tracking_flags != active_mouse_tracking_flags_) {
1044     TrackMouseEvents(active_mouse_tracking_flags_ | TME_CANCEL);
1045     TrackMouseEvents(mouse_tracking_flags);
1046   }
1047 }
1048 
ClientAreaSizeChanged()1049 void HWNDMessageHandler::ClientAreaSizeChanged() {
1050   gfx::Size s = GetClientAreaBounds().size();
1051   delegate_->HandleClientSizeChanged(s);
1052   if (use_layered_buffer_)
1053     layered_window_contents_.reset(new gfx::Canvas(s, 1.0f, false));
1054 }
1055 
GetClientAreaInsets(gfx::Insets * insets) const1056 bool HWNDMessageHandler::GetClientAreaInsets(gfx::Insets* insets) const {
1057   if (delegate_->GetClientAreaInsets(insets))
1058     return true;
1059   DCHECK(insets->empty());
1060 
1061   // Returning false causes the default handling in OnNCCalcSize() to
1062   // be invoked.
1063   if (!delegate_->IsWidgetWindow() ||
1064       (!delegate_->IsUsingCustomFrame() && !remove_standard_frame_)) {
1065     return false;
1066   }
1067 
1068   if (IsMaximized()) {
1069     // Windows automatically adds a standard width border to all sides when a
1070     // window is maximized.
1071     int border_thickness = GetSystemMetrics(SM_CXSIZEFRAME);
1072     if (remove_standard_frame_)
1073       border_thickness -= 1;
1074     *insets = gfx::Insets(
1075         border_thickness, border_thickness, border_thickness, border_thickness);
1076     return true;
1077   }
1078 
1079   *insets = gfx::Insets();
1080   return true;
1081 }
1082 
ResetWindowRegion(bool force,bool redraw)1083 void HWNDMessageHandler::ResetWindowRegion(bool force, bool redraw) {
1084   // A native frame uses the native window region, and we don't want to mess
1085   // with it.
1086   // WS_EX_COMPOSITED is used instead of WS_EX_LAYERED under aura. WS_EX_LAYERED
1087   // automatically makes clicks on transparent pixels fall through, that isn't
1088   // the case with WS_EX_COMPOSITED. So, we route WS_EX_COMPOSITED through to
1089   // the delegate to allow for a custom hit mask.
1090   if ((window_ex_style() & WS_EX_COMPOSITED) == 0 && !custom_window_region_ &&
1091       (!delegate_->IsUsingCustomFrame() || !delegate_->IsWidgetWindow())) {
1092     if (force)
1093       SetWindowRgn(hwnd(), NULL, redraw);
1094     return;
1095   }
1096 
1097   // Changing the window region is going to force a paint. Only change the
1098   // window region if the region really differs.
1099   HRGN current_rgn = CreateRectRgn(0, 0, 0, 0);
1100   int current_rgn_result = GetWindowRgn(hwnd(), current_rgn);
1101 
1102   RECT window_rect;
1103   GetWindowRect(hwnd(), &window_rect);
1104   HRGN new_region;
1105   if (custom_window_region_) {
1106     new_region = ::CreateRectRgn(0, 0, 0, 0);
1107     ::CombineRgn(new_region, custom_window_region_.Get(), NULL, RGN_COPY);
1108   } else if (IsMaximized()) {
1109     HMONITOR monitor = MonitorFromWindow(hwnd(), MONITOR_DEFAULTTONEAREST);
1110     MONITORINFO mi;
1111     mi.cbSize = sizeof mi;
1112     GetMonitorInfo(monitor, &mi);
1113     RECT work_rect = mi.rcWork;
1114     OffsetRect(&work_rect, -window_rect.left, -window_rect.top);
1115     new_region = CreateRectRgnIndirect(&work_rect);
1116   } else {
1117     gfx::Path window_mask;
1118     delegate_->GetWindowMask(gfx::Size(window_rect.right - window_rect.left,
1119                                        window_rect.bottom - window_rect.top),
1120                              &window_mask);
1121     new_region = gfx::CreateHRGNFromSkPath(window_mask);
1122   }
1123 
1124   if (current_rgn_result == ERROR || !EqualRgn(current_rgn, new_region)) {
1125     // SetWindowRgn takes ownership of the HRGN created by CreateNativeRegion.
1126     SetWindowRgn(hwnd(), new_region, redraw);
1127   } else {
1128     DeleteObject(new_region);
1129   }
1130 
1131   DeleteObject(current_rgn);
1132 }
1133 
UpdateDwmNcRenderingPolicy()1134 void HWNDMessageHandler::UpdateDwmNcRenderingPolicy() {
1135   if (base::win::GetVersion() < base::win::VERSION_VISTA)
1136     return;
1137 
1138   DWMNCRENDERINGPOLICY policy =
1139       custom_window_region_ || delegate_->IsUsingCustomFrame() ?
1140           DWMNCRP_DISABLED : DWMNCRP_ENABLED;
1141 
1142   DwmSetWindowAttribute(hwnd(), DWMWA_NCRENDERING_POLICY,
1143                         &policy, sizeof(DWMNCRENDERINGPOLICY));
1144 }
1145 
DefWindowProcWithRedrawLock(UINT message,WPARAM w_param,LPARAM l_param)1146 LRESULT HWNDMessageHandler::DefWindowProcWithRedrawLock(UINT message,
1147                                                         WPARAM w_param,
1148                                                         LPARAM l_param) {
1149   ScopedRedrawLock lock(this);
1150   // The Widget and HWND can be destroyed in the call to DefWindowProc, so use
1151   // the WeakPtrFactory to avoid unlocking (and crashing) after destruction.
1152   base::WeakPtr<HWNDMessageHandler> ref(weak_factory_.GetWeakPtr());
1153   LRESULT result = DefWindowProc(hwnd(), message, w_param, l_param);
1154   if (!ref)
1155     lock.CancelUnlockOperation();
1156   return result;
1157 }
1158 
LockUpdates(bool force)1159 void HWNDMessageHandler::LockUpdates(bool force) {
1160   // We skip locked updates when Aero is on for two reasons:
1161   // 1. Because it isn't necessary
1162   // 2. Because toggling the WS_VISIBLE flag may occur while the GPU process is
1163   //    attempting to present a child window's backbuffer onscreen. When these
1164   //    two actions race with one another, the child window will either flicker
1165   //    or will simply stop updating entirely.
1166   if ((force || !ui::win::IsAeroGlassEnabled()) && ++lock_updates_count_ == 1) {
1167     SetWindowLong(hwnd(), GWL_STYLE,
1168                   GetWindowLong(hwnd(), GWL_STYLE) & ~WS_VISIBLE);
1169   }
1170 }
1171 
UnlockUpdates(bool force)1172 void HWNDMessageHandler::UnlockUpdates(bool force) {
1173   if ((force || !ui::win::IsAeroGlassEnabled()) && --lock_updates_count_ <= 0) {
1174     SetWindowLong(hwnd(), GWL_STYLE,
1175                   GetWindowLong(hwnd(), GWL_STYLE) | WS_VISIBLE);
1176     lock_updates_count_ = 0;
1177   }
1178 }
1179 
RedrawLayeredWindowContents()1180 void HWNDMessageHandler::RedrawLayeredWindowContents() {
1181   waiting_for_redraw_layered_window_contents_ = false;
1182   if (invalid_rect_.IsEmpty())
1183     return;
1184 
1185   // We need to clip to the dirty rect ourselves.
1186   layered_window_contents_->sk_canvas()->save();
1187   double scale = gfx::win::GetDeviceScaleFactor();
1188   layered_window_contents_->sk_canvas()->scale(
1189       SkScalar(scale),SkScalar(scale));
1190   layered_window_contents_->ClipRect(invalid_rect_);
1191   delegate_->PaintLayeredWindow(layered_window_contents_.get());
1192   layered_window_contents_->sk_canvas()->scale(
1193       SkScalar(1.0/scale),SkScalar(1.0/scale));
1194   layered_window_contents_->sk_canvas()->restore();
1195 
1196   RECT wr;
1197   GetWindowRect(hwnd(), &wr);
1198   SIZE size = {wr.right - wr.left, wr.bottom - wr.top};
1199   POINT position = {wr.left, wr.top};
1200   HDC dib_dc = skia::BeginPlatformPaint(layered_window_contents_->sk_canvas());
1201   POINT zero = {0, 0};
1202   BLENDFUNCTION blend = {AC_SRC_OVER, 0, layered_alpha_, AC_SRC_ALPHA};
1203   UpdateLayeredWindow(hwnd(), NULL, &position, &size, dib_dc, &zero,
1204                       RGB(0xFF, 0xFF, 0xFF), &blend, ULW_ALPHA);
1205   invalid_rect_.SetRect(0, 0, 0, 0);
1206   skia::EndPlatformPaint(layered_window_contents_->sk_canvas());
1207 }
1208 
ForceRedrawWindow(int attempts)1209 void HWNDMessageHandler::ForceRedrawWindow(int attempts) {
1210   if (ui::IsWorkstationLocked()) {
1211     // Presents will continue to fail as long as the input desktop is
1212     // unavailable.
1213     if (--attempts <= 0)
1214       return;
1215     base::MessageLoop::current()->PostDelayedTask(
1216         FROM_HERE,
1217         base::Bind(&HWNDMessageHandler::ForceRedrawWindow,
1218                    weak_factory_.GetWeakPtr(),
1219                    attempts),
1220         base::TimeDelta::FromMilliseconds(500));
1221     return;
1222   }
1223   InvalidateRect(hwnd(), NULL, FALSE);
1224 }
1225 
1226 // Message handlers ------------------------------------------------------------
1227 
OnActivateApp(BOOL active,DWORD thread_id)1228 void HWNDMessageHandler::OnActivateApp(BOOL active, DWORD thread_id) {
1229   if (delegate_->IsWidgetWindow() && !active &&
1230       thread_id != GetCurrentThreadId()) {
1231     delegate_->HandleAppDeactivated();
1232     // Also update the native frame if it is rendering the non-client area.
1233     if (!remove_standard_frame_ && !delegate_->IsUsingCustomFrame())
1234       DefWindowProcWithRedrawLock(WM_NCACTIVATE, FALSE, 0);
1235   }
1236 }
1237 
OnAppCommand(HWND window,short command,WORD device,int keystate)1238 BOOL HWNDMessageHandler::OnAppCommand(HWND window,
1239                                       short command,
1240                                       WORD device,
1241                                       int keystate) {
1242   BOOL handled = !!delegate_->HandleAppCommand(command);
1243   SetMsgHandled(handled);
1244   // Make sure to return TRUE if the event was handled or in some cases the
1245   // system will execute the default handler which can cause bugs like going
1246   // forward or back two pages instead of one.
1247   return handled;
1248 }
1249 
OnCancelMode()1250 void HWNDMessageHandler::OnCancelMode() {
1251   delegate_->HandleCancelMode();
1252   // Need default handling, otherwise capture and other things aren't canceled.
1253   SetMsgHandled(FALSE);
1254 }
1255 
OnCaptureChanged(HWND window)1256 void HWNDMessageHandler::OnCaptureChanged(HWND window) {
1257   delegate_->HandleCaptureLost();
1258 }
1259 
OnClose()1260 void HWNDMessageHandler::OnClose() {
1261   delegate_->HandleClose();
1262 }
1263 
OnCommand(UINT notification_code,int command,HWND window)1264 void HWNDMessageHandler::OnCommand(UINT notification_code,
1265                                    int command,
1266                                    HWND window) {
1267   // If the notification code is > 1 it means it is control specific and we
1268   // should ignore it.
1269   if (notification_code > 1 || delegate_->HandleAppCommand(command))
1270     SetMsgHandled(FALSE);
1271 }
1272 
OnCreate(CREATESTRUCT * create_struct)1273 LRESULT HWNDMessageHandler::OnCreate(CREATESTRUCT* create_struct) {
1274   use_layered_buffer_ = !!(window_ex_style() & WS_EX_LAYERED);
1275 
1276   if (window_ex_style() &  WS_EX_COMPOSITED) {
1277     if (base::win::GetVersion() >= base::win::VERSION_VISTA) {
1278       // This is part of the magic to emulate layered windows with Aura
1279       // see the explanation elsewere when we set WS_EX_COMPOSITED style.
1280       MARGINS margins = {-1,-1,-1,-1};
1281       DwmExtendFrameIntoClientArea(hwnd(), &margins);
1282     }
1283   }
1284 
1285   fullscreen_handler_->set_hwnd(hwnd());
1286 
1287   // This message initializes the window so that focus border are shown for
1288   // windows.
1289   SendMessage(hwnd(),
1290               WM_CHANGEUISTATE,
1291               MAKELPARAM(UIS_CLEAR, UISF_HIDEFOCUS),
1292               0);
1293 
1294   if (remove_standard_frame_) {
1295     SetWindowLong(hwnd(), GWL_STYLE,
1296                   GetWindowLong(hwnd(), GWL_STYLE) & ~WS_CAPTION);
1297     SendFrameChanged();
1298   }
1299 
1300   // Get access to a modifiable copy of the system menu.
1301   GetSystemMenu(hwnd(), false);
1302 
1303   if (base::win::GetVersion() >= base::win::VERSION_WIN7 &&
1304       ui::AreTouchEventsEnabled())
1305     RegisterTouchWindow(hwnd(), TWF_WANTPALM);
1306 
1307   // We need to allow the delegate to size its contents since the window may not
1308   // receive a size notification when its initial bounds are specified at window
1309   // creation time.
1310   ClientAreaSizeChanged();
1311 
1312   delegate_->HandleCreate();
1313 
1314   WTSRegisterSessionNotification(hwnd(), NOTIFY_FOR_THIS_SESSION);
1315 
1316   // TODO(beng): move more of NWW::OnCreate here.
1317   return 0;
1318 }
1319 
OnDestroy()1320 void HWNDMessageHandler::OnDestroy() {
1321   WTSUnRegisterSessionNotification(hwnd());
1322   delegate_->HandleDestroying();
1323 }
1324 
OnDisplayChange(UINT bits_per_pixel,const gfx::Size & screen_size)1325 void HWNDMessageHandler::OnDisplayChange(UINT bits_per_pixel,
1326                                          const gfx::Size& screen_size) {
1327   delegate_->HandleDisplayChange();
1328 }
1329 
OnDwmCompositionChanged(UINT msg,WPARAM w_param,LPARAM l_param)1330 LRESULT HWNDMessageHandler::OnDwmCompositionChanged(UINT msg,
1331                                                     WPARAM w_param,
1332                                                     LPARAM l_param) {
1333   if (!delegate_->IsWidgetWindow()) {
1334     SetMsgHandled(FALSE);
1335     return 0;
1336   }
1337 
1338   FrameTypeChanged();
1339   return 0;
1340 }
1341 
OnEnterMenuLoop(BOOL from_track_popup_menu)1342 void HWNDMessageHandler::OnEnterMenuLoop(BOOL from_track_popup_menu) {
1343   if (menu_depth_++ == 0)
1344     delegate_->HandleMenuLoop(true);
1345 }
1346 
OnEnterSizeMove()1347 void HWNDMessageHandler::OnEnterSizeMove() {
1348   // Please refer to the comments in the OnSize function about the scrollbar
1349   // hack.
1350   // Hide the Windows scrollbar if the scroll styles are present to ensure
1351   // that a paint flicker does not occur while sizing.
1352   if (in_size_loop_ && needs_scroll_styles_)
1353     ShowScrollBar(hwnd(), SB_BOTH, FALSE);
1354 
1355   delegate_->HandleBeginWMSizeMove();
1356   SetMsgHandled(FALSE);
1357 }
1358 
OnEraseBkgnd(HDC dc)1359 LRESULT HWNDMessageHandler::OnEraseBkgnd(HDC dc) {
1360   // Needed to prevent resize flicker.
1361   return 1;
1362 }
1363 
OnExitMenuLoop(BOOL is_shortcut_menu)1364 void HWNDMessageHandler::OnExitMenuLoop(BOOL is_shortcut_menu) {
1365   if (--menu_depth_ == 0)
1366     delegate_->HandleMenuLoop(false);
1367   DCHECK_GE(0, menu_depth_);
1368 }
1369 
OnExitSizeMove()1370 void HWNDMessageHandler::OnExitSizeMove() {
1371   delegate_->HandleEndWMSizeMove();
1372   SetMsgHandled(FALSE);
1373   // Please refer to the notes in the OnSize function for information about
1374   // the scrolling hack.
1375   // We hide the Windows scrollbar in the OnEnterSizeMove function. We need
1376   // to add the scroll styles back to ensure that scrolling works in legacy
1377   // trackpoint drivers.
1378   if (in_size_loop_ && needs_scroll_styles_)
1379     AddScrollStylesToWindow(hwnd());
1380 }
1381 
OnGetMinMaxInfo(MINMAXINFO * minmax_info)1382 void HWNDMessageHandler::OnGetMinMaxInfo(MINMAXINFO* minmax_info) {
1383   gfx::Size min_window_size;
1384   gfx::Size max_window_size;
1385   delegate_->GetMinMaxSize(&min_window_size, &max_window_size);
1386 
1387   // Add the native frame border size to the minimum and maximum size if the
1388   // view reports its size as the client size.
1389   if (delegate_->WidgetSizeIsClientSize()) {
1390     RECT client_rect, window_rect;
1391     GetClientRect(hwnd(), &client_rect);
1392     GetWindowRect(hwnd(), &window_rect);
1393     CR_DEFLATE_RECT(&window_rect, &client_rect);
1394     min_window_size.Enlarge(window_rect.right - window_rect.left,
1395                             window_rect.bottom - window_rect.top);
1396     if (!max_window_size.IsEmpty()) {
1397       max_window_size.Enlarge(window_rect.right - window_rect.left,
1398                               window_rect.bottom - window_rect.top);
1399     }
1400   }
1401   minmax_info->ptMinTrackSize.x = min_window_size.width();
1402   minmax_info->ptMinTrackSize.y = min_window_size.height();
1403   if (max_window_size.width() || max_window_size.height()) {
1404     if (!max_window_size.width())
1405       max_window_size.set_width(GetSystemMetrics(SM_CXMAXTRACK));
1406     if (!max_window_size.height())
1407       max_window_size.set_height(GetSystemMetrics(SM_CYMAXTRACK));
1408     minmax_info->ptMaxTrackSize.x = max_window_size.width();
1409     minmax_info->ptMaxTrackSize.y = max_window_size.height();
1410   }
1411   SetMsgHandled(FALSE);
1412 }
1413 
OnGetObject(UINT message,WPARAM w_param,LPARAM l_param)1414 LRESULT HWNDMessageHandler::OnGetObject(UINT message,
1415                                         WPARAM w_param,
1416                                         LPARAM l_param) {
1417   LRESULT reference_result = static_cast<LRESULT>(0L);
1418 
1419   // Only the lower 32 bits of l_param are valid when checking the object id
1420   // because it sometimes gets sign-extended incorrectly (but not always).
1421   DWORD obj_id = static_cast<DWORD>(static_cast<DWORD_PTR>(l_param));
1422 
1423   // Accessibility readers will send an OBJID_CLIENT message
1424   if (OBJID_CLIENT == obj_id) {
1425     // Retrieve MSAA dispatch object for the root view.
1426     base::win::ScopedComPtr<IAccessible> root(
1427         delegate_->GetNativeViewAccessible());
1428 
1429     // Create a reference that MSAA will marshall to the client.
1430     reference_result = LresultFromObject(IID_IAccessible, w_param,
1431         static_cast<IAccessible*>(root.Detach()));
1432   }
1433 
1434   return reference_result;
1435 }
1436 
OnImeMessages(UINT message,WPARAM w_param,LPARAM l_param)1437 LRESULT HWNDMessageHandler::OnImeMessages(UINT message,
1438                                           WPARAM w_param,
1439                                           LPARAM l_param) {
1440   LRESULT result = 0;
1441   SetMsgHandled(delegate_->HandleIMEMessage(
1442       message, w_param, l_param, &result));
1443   return result;
1444 }
1445 
OnInitMenu(HMENU menu)1446 void HWNDMessageHandler::OnInitMenu(HMENU menu) {
1447   bool is_fullscreen = fullscreen_handler_->fullscreen();
1448   bool is_minimized = IsMinimized();
1449   bool is_maximized = IsMaximized();
1450   bool is_restored = !is_fullscreen && !is_minimized && !is_maximized;
1451 
1452   ScopedRedrawLock lock(this);
1453   EnableMenuItemByCommand(menu, SC_RESTORE, delegate_->CanResize() &&
1454                           (is_minimized || is_maximized));
1455   EnableMenuItemByCommand(menu, SC_MOVE, is_restored);
1456   EnableMenuItemByCommand(menu, SC_SIZE, delegate_->CanResize() && is_restored);
1457   EnableMenuItemByCommand(menu, SC_MAXIMIZE, delegate_->CanMaximize() &&
1458                           !is_fullscreen && !is_maximized);
1459   // TODO: unfortunately, WidgetDelegate does not declare CanMinimize() and some
1460   // code depends on this check, see http://crbug.com/341010.
1461   EnableMenuItemByCommand(menu, SC_MINIMIZE, delegate_->CanMaximize() &&
1462                           !is_minimized);
1463 
1464   if (is_maximized && delegate_->CanResize())
1465     ::SetMenuDefaultItem(menu, SC_RESTORE, FALSE);
1466   else if (!is_maximized && delegate_->CanMaximize())
1467     ::SetMenuDefaultItem(menu, SC_MAXIMIZE, FALSE);
1468 }
1469 
OnInputLangChange(DWORD character_set,HKL input_language_id)1470 void HWNDMessageHandler::OnInputLangChange(DWORD character_set,
1471                                            HKL input_language_id) {
1472   delegate_->HandleInputLanguageChange(character_set, input_language_id);
1473 }
1474 
OnKeyEvent(UINT message,WPARAM w_param,LPARAM l_param)1475 LRESULT HWNDMessageHandler::OnKeyEvent(UINT message,
1476                                        WPARAM w_param,
1477                                        LPARAM l_param) {
1478   MSG msg = { hwnd(), message, w_param, l_param, GetMessageTime() };
1479   ui::KeyEvent key(msg, message == WM_CHAR);
1480   if (!delegate_->HandleUntranslatedKeyEvent(key))
1481     DispatchKeyEventPostIME(key);
1482   return 0;
1483 }
1484 
OnKillFocus(HWND focused_window)1485 void HWNDMessageHandler::OnKillFocus(HWND focused_window) {
1486   delegate_->HandleNativeBlur(focused_window);
1487   SetMsgHandled(FALSE);
1488 }
1489 
OnMouseActivate(UINT message,WPARAM w_param,LPARAM l_param)1490 LRESULT HWNDMessageHandler::OnMouseActivate(UINT message,
1491                                             WPARAM w_param,
1492                                             LPARAM l_param) {
1493   // Please refer to the comments in the header for the touch_down_contexts_
1494   // member for the if statement below.
1495   if (touch_down_contexts_)
1496     return MA_NOACTIVATE;
1497 
1498   // On Windows, if we select the menu item by touch and if the window at the
1499   // location is another window on the same thread, that window gets a
1500   // WM_MOUSEACTIVATE message and ends up activating itself, which is not
1501   // correct. We workaround this by setting a property on the window at the
1502   // current cursor location. We check for this property in our
1503   // WM_MOUSEACTIVATE handler and don't activate the window if the property is
1504   // set.
1505   if (::GetProp(hwnd(), ui::kIgnoreTouchMouseActivateForWindow)) {
1506     ::RemoveProp(hwnd(), ui::kIgnoreTouchMouseActivateForWindow);
1507     return MA_NOACTIVATE;
1508   }
1509   // A child window activation should be treated as if we lost activation.
1510   POINT cursor_pos = {0};
1511   ::GetCursorPos(&cursor_pos);
1512   ::ScreenToClient(hwnd(), &cursor_pos);
1513   HWND child = ::RealChildWindowFromPoint(hwnd(), cursor_pos);
1514   if (::IsWindow(child) && child != hwnd() && ::IsWindowVisible(child))
1515     PostProcessActivateMessage(WA_INACTIVE, false);
1516 
1517   // TODO(beng): resolve this with the GetWindowLong() check on the subsequent
1518   //             line.
1519   if (delegate_->IsWidgetWindow())
1520     return delegate_->CanActivate() ? MA_ACTIVATE : MA_NOACTIVATEANDEAT;
1521   if (GetWindowLong(hwnd(), GWL_EXSTYLE) & WS_EX_NOACTIVATE)
1522     return MA_NOACTIVATE;
1523   SetMsgHandled(FALSE);
1524   return MA_ACTIVATE;
1525 }
1526 
OnMouseRange(UINT message,WPARAM w_param,LPARAM l_param)1527 LRESULT HWNDMessageHandler::OnMouseRange(UINT message,
1528                                          WPARAM w_param,
1529                                          LPARAM l_param) {
1530   return HandleMouseEventInternal(message, w_param, l_param, true);
1531 }
1532 
OnMove(const gfx::Point & point)1533 void HWNDMessageHandler::OnMove(const gfx::Point& point) {
1534   delegate_->HandleMove();
1535   SetMsgHandled(FALSE);
1536 }
1537 
OnMoving(UINT param,const RECT * new_bounds)1538 void HWNDMessageHandler::OnMoving(UINT param, const RECT* new_bounds) {
1539   delegate_->HandleMove();
1540 }
1541 
OnNCActivate(UINT message,WPARAM w_param,LPARAM l_param)1542 LRESULT HWNDMessageHandler::OnNCActivate(UINT message,
1543                                          WPARAM w_param,
1544                                          LPARAM l_param) {
1545   // Per MSDN, w_param is either TRUE or FALSE. However, MSDN also hints that:
1546   // "If the window is minimized when this message is received, the application
1547   // should pass the message to the DefWindowProc function."
1548   // It is found out that the high word of w_param might be set when the window
1549   // is minimized or restored. To handle this, w_param's high word should be
1550   // cleared before it is converted to BOOL.
1551   BOOL active = static_cast<BOOL>(LOWORD(w_param));
1552 
1553   bool inactive_rendering_disabled = delegate_->IsInactiveRenderingDisabled();
1554 
1555   if (!delegate_->IsWidgetWindow()) {
1556     SetMsgHandled(FALSE);
1557     return 0;
1558   }
1559 
1560   if (!delegate_->CanActivate())
1561     return TRUE;
1562 
1563   // On activation, lift any prior restriction against rendering as inactive.
1564   if (active && inactive_rendering_disabled)
1565     delegate_->EnableInactiveRendering();
1566 
1567   if (delegate_->IsUsingCustomFrame()) {
1568     // TODO(beng, et al): Hack to redraw this window and child windows
1569     //     synchronously upon activation. Not all child windows are redrawing
1570     //     themselves leading to issues like http://crbug.com/74604
1571     //     We redraw out-of-process HWNDs asynchronously to avoid hanging the
1572     //     whole app if a child HWND belonging to a hung plugin is encountered.
1573     RedrawWindow(hwnd(), NULL, NULL,
1574                  RDW_NOCHILDREN | RDW_INVALIDATE | RDW_UPDATENOW);
1575     EnumChildWindows(hwnd(), EnumChildWindowsForRedraw, NULL);
1576   }
1577 
1578   // The frame may need to redraw as a result of the activation change.
1579   // We can get WM_NCACTIVATE before we're actually visible. If we're not
1580   // visible, no need to paint.
1581   if (IsVisible())
1582     delegate_->SchedulePaint();
1583 
1584   // Avoid DefWindowProc non-client rendering over our custom frame on newer
1585   // Windows versions only (breaks taskbar activation indication on XP/Vista).
1586   if (delegate_->IsUsingCustomFrame() &&
1587       base::win::GetVersion() > base::win::VERSION_VISTA) {
1588     SetMsgHandled(TRUE);
1589     return TRUE;
1590   }
1591 
1592   return DefWindowProcWithRedrawLock(
1593       WM_NCACTIVATE, inactive_rendering_disabled || active, 0);
1594 }
1595 
OnNCCalcSize(BOOL mode,LPARAM l_param)1596 LRESULT HWNDMessageHandler::OnNCCalcSize(BOOL mode, LPARAM l_param) {
1597   // We only override the default handling if we need to specify a custom
1598   // non-client edge width. Note that in most cases "no insets" means no
1599   // custom width, but in fullscreen mode or when the NonClientFrameView
1600   // requests it, we want a custom width of 0.
1601 
1602   // Let User32 handle the first nccalcsize for captioned windows
1603   // so it updates its internal structures (specifically caption-present)
1604   // Without this Tile & Cascade windows won't work.
1605   // See http://code.google.com/p/chromium/issues/detail?id=900
1606   if (is_first_nccalc_) {
1607     is_first_nccalc_ = false;
1608     if (GetWindowLong(hwnd(), GWL_STYLE) & WS_CAPTION) {
1609       SetMsgHandled(FALSE);
1610       return 0;
1611     }
1612   }
1613 
1614   gfx::Insets insets;
1615   bool got_insets = GetClientAreaInsets(&insets);
1616   if (!got_insets && !fullscreen_handler_->fullscreen() &&
1617       !(mode && remove_standard_frame_)) {
1618     SetMsgHandled(FALSE);
1619     return 0;
1620   }
1621 
1622   RECT* client_rect = mode ?
1623       &(reinterpret_cast<NCCALCSIZE_PARAMS*>(l_param)->rgrc[0]) :
1624       reinterpret_cast<RECT*>(l_param);
1625   client_rect->left += insets.left();
1626   client_rect->top += insets.top();
1627   client_rect->bottom -= insets.bottom();
1628   client_rect->right -= insets.right();
1629   if (IsMaximized()) {
1630     // Find all auto-hide taskbars along the screen edges and adjust in by the
1631     // thickness of the auto-hide taskbar on each such edge, so the window isn't
1632     // treated as a "fullscreen app", which would cause the taskbars to
1633     // disappear.
1634     HMONITOR monitor = MonitorFromWindow(hwnd(), MONITOR_DEFAULTTONULL);
1635     if (!monitor) {
1636       // We might end up here if the window was previously minimized and the
1637       // user clicks on the taskbar button to restore it in the previously
1638       // maximized position. In that case WM_NCCALCSIZE is sent before the
1639       // window coordinates are restored to their previous values, so our
1640       // (left,top) would probably be (-32000,-32000) like all minimized
1641       // windows. So the above MonitorFromWindow call fails, but if we check
1642       // the window rect given with WM_NCCALCSIZE (which is our previous
1643       // restored window position) we will get the correct monitor handle.
1644       monitor = MonitorFromRect(client_rect, MONITOR_DEFAULTTONULL);
1645       if (!monitor) {
1646         // This is probably an extreme case that we won't hit, but if we don't
1647         // intersect any monitor, let us not adjust the client rect since our
1648         // window will not be visible anyway.
1649         return 0;
1650       }
1651     }
1652     const int autohide_edges = GetAppbarAutohideEdges(monitor);
1653     if (autohide_edges & ViewsDelegate::EDGE_LEFT)
1654       client_rect->left += kAutoHideTaskbarThicknessPx;
1655     if (autohide_edges & ViewsDelegate::EDGE_TOP) {
1656       if (!delegate_->IsUsingCustomFrame()) {
1657         // Tricky bit.  Due to a bug in DwmDefWindowProc()'s handling of
1658         // WM_NCHITTEST, having any nonclient area atop the window causes the
1659         // caption buttons to draw onscreen but not respond to mouse
1660         // hover/clicks.
1661         // So for a taskbar at the screen top, we can't push the
1662         // client_rect->top down; instead, we move the bottom up by one pixel,
1663         // which is the smallest change we can make and still get a client area
1664         // less than the screen size. This is visibly ugly, but there seems to
1665         // be no better solution.
1666         --client_rect->bottom;
1667       } else {
1668         client_rect->top += kAutoHideTaskbarThicknessPx;
1669       }
1670     }
1671     if (autohide_edges & ViewsDelegate::EDGE_RIGHT)
1672       client_rect->right -= kAutoHideTaskbarThicknessPx;
1673     if (autohide_edges & ViewsDelegate::EDGE_BOTTOM)
1674       client_rect->bottom -= kAutoHideTaskbarThicknessPx;
1675 
1676     // We cannot return WVR_REDRAW when there is nonclient area, or Windows
1677     // exhibits bugs where client pixels and child HWNDs are mispositioned by
1678     // the width/height of the upper-left nonclient area.
1679     return 0;
1680   }
1681 
1682   // If the window bounds change, we're going to relayout and repaint anyway.
1683   // Returning WVR_REDRAW avoids an extra paint before that of the old client
1684   // pixels in the (now wrong) location, and thus makes actions like resizing a
1685   // window from the left edge look slightly less broken.
1686   // We special case when left or top insets are 0, since these conditions
1687   // actually require another repaint to correct the layout after glass gets
1688   // turned on and off.
1689   if (insets.left() == 0 || insets.top() == 0)
1690     return 0;
1691   return mode ? WVR_REDRAW : 0;
1692 }
1693 
OnNCHitTest(const gfx::Point & point)1694 LRESULT HWNDMessageHandler::OnNCHitTest(const gfx::Point& point) {
1695   if (!delegate_->IsWidgetWindow()) {
1696     SetMsgHandled(FALSE);
1697     return 0;
1698   }
1699 
1700   // If the DWM is rendering the window controls, we need to give the DWM's
1701   // default window procedure first chance to handle hit testing.
1702   if (!remove_standard_frame_ && !delegate_->IsUsingCustomFrame()) {
1703     LRESULT result;
1704     if (DwmDefWindowProc(hwnd(), WM_NCHITTEST, 0,
1705                          MAKELPARAM(point.x(), point.y()), &result)) {
1706       return result;
1707     }
1708   }
1709 
1710   // First, give the NonClientView a chance to test the point to see if it
1711   // provides any of the non-client area.
1712   POINT temp = { point.x(), point.y() };
1713   MapWindowPoints(HWND_DESKTOP, hwnd(), &temp, 1);
1714   int component = delegate_->GetNonClientComponent(gfx::Point(temp));
1715   if (component != HTNOWHERE)
1716     return component;
1717 
1718   // Otherwise, we let Windows do all the native frame non-client handling for
1719   // us.
1720   LRESULT hit_test_code = DefWindowProc(hwnd(), WM_NCHITTEST, 0,
1721                                         MAKELPARAM(point.x(), point.y()));
1722   if (needs_scroll_styles_) {
1723     switch (hit_test_code) {
1724       // If we faked the WS_VSCROLL and WS_HSCROLL styles for this window, then
1725       // Windows returns the HTVSCROLL or HTHSCROLL hit test codes if we hover
1726       // or click on the non client portions of the window where the OS
1727       // scrollbars would be drawn. These hittest codes are returned even when
1728       // the scrollbars are hidden, which is the case in Aura. We fake the
1729       // hittest code as HTCLIENT in this case to ensure that we receive client
1730       // mouse messages as opposed to non client mouse messages.
1731       case HTVSCROLL:
1732       case HTHSCROLL:
1733         hit_test_code = HTCLIENT;
1734         break;
1735 
1736       case HTBOTTOMRIGHT: {
1737         // Normally the HTBOTTOMRIGHT hittest code is received when we hover
1738         // near the bottom right of the window. However due to our fake scroll
1739         // styles, we get this code even when we hover around the area where
1740         // the vertical scrollar down arrow would be drawn.
1741         // We check if the hittest coordinates lie in this region and if yes
1742         // we return HTCLIENT.
1743         int border_width = ::GetSystemMetrics(SM_CXSIZEFRAME);
1744         int border_height = ::GetSystemMetrics(SM_CYSIZEFRAME);
1745         int scroll_width = ::GetSystemMetrics(SM_CXVSCROLL);
1746         int scroll_height = ::GetSystemMetrics(SM_CYVSCROLL);
1747         RECT window_rect;
1748         ::GetWindowRect(hwnd(), &window_rect);
1749         window_rect.bottom -= border_height;
1750         window_rect.right -= border_width;
1751         window_rect.left = window_rect.right - scroll_width;
1752         window_rect.top = window_rect.bottom - scroll_height;
1753         POINT pt;
1754         pt.x = point.x();
1755         pt.y = point.y();
1756         if (::PtInRect(&window_rect, pt))
1757           hit_test_code = HTCLIENT;
1758         break;
1759       }
1760 
1761       default:
1762         break;
1763     }
1764   }
1765   return hit_test_code;
1766 }
1767 
OnNCPaint(HRGN rgn)1768 void HWNDMessageHandler::OnNCPaint(HRGN rgn) {
1769   // We only do non-client painting if we're not using the native frame.
1770   // It's required to avoid some native painting artifacts from appearing when
1771   // the window is resized.
1772   if (!delegate_->IsWidgetWindow() || !delegate_->IsUsingCustomFrame()) {
1773     SetMsgHandled(FALSE);
1774     return;
1775   }
1776 
1777   // We have an NC region and need to paint it. We expand the NC region to
1778   // include the dirty region of the root view. This is done to minimize
1779   // paints.
1780   RECT window_rect;
1781   GetWindowRect(hwnd(), &window_rect);
1782 
1783   gfx::Size root_view_size = delegate_->GetRootViewSize();
1784   if (gfx::Size(window_rect.right - window_rect.left,
1785                 window_rect.bottom - window_rect.top) != root_view_size) {
1786     // If the size of the window differs from the size of the root view it
1787     // means we're being asked to paint before we've gotten a WM_SIZE. This can
1788     // happen when the user is interactively resizing the window. To avoid
1789     // mass flickering we don't do anything here. Once we get the WM_SIZE we'll
1790     // reset the region of the window which triggers another WM_NCPAINT and
1791     // all is well.
1792     return;
1793   }
1794 
1795   RECT dirty_region;
1796   // A value of 1 indicates paint all.
1797   if (!rgn || rgn == reinterpret_cast<HRGN>(1)) {
1798     dirty_region.left = 0;
1799     dirty_region.top = 0;
1800     dirty_region.right = window_rect.right - window_rect.left;
1801     dirty_region.bottom = window_rect.bottom - window_rect.top;
1802   } else {
1803     RECT rgn_bounding_box;
1804     GetRgnBox(rgn, &rgn_bounding_box);
1805     if (!IntersectRect(&dirty_region, &rgn_bounding_box, &window_rect))
1806       return;  // Dirty region doesn't intersect window bounds, bale.
1807 
1808     // rgn_bounding_box is in screen coordinates. Map it to window coordinates.
1809     OffsetRect(&dirty_region, -window_rect.left, -window_rect.top);
1810   }
1811 
1812   // In theory GetDCEx should do what we want, but I couldn't get it to work.
1813   // In particular the docs mentiond DCX_CLIPCHILDREN, but as far as I can tell
1814   // it doesn't work at all. So, instead we get the DC for the window then
1815   // manually clip out the children.
1816   HDC dc = GetWindowDC(hwnd());
1817   ClipState clip_state;
1818   clip_state.x = window_rect.left;
1819   clip_state.y = window_rect.top;
1820   clip_state.parent = hwnd();
1821   clip_state.dc = dc;
1822   EnumChildWindows(hwnd(), &ClipDCToChild,
1823                    reinterpret_cast<LPARAM>(&clip_state));
1824 
1825   gfx::Rect old_paint_region = invalid_rect_;
1826   if (!old_paint_region.IsEmpty()) {
1827     // The root view has a region that needs to be painted. Include it in the
1828     // region we're going to paint.
1829 
1830     RECT old_paint_region_crect = old_paint_region.ToRECT();
1831     RECT tmp = dirty_region;
1832     UnionRect(&dirty_region, &tmp, &old_paint_region_crect);
1833   }
1834 
1835   SchedulePaintInRect(gfx::Rect(dirty_region));
1836 
1837   // gfx::CanvasSkiaPaint's destructor does the actual painting. As such, wrap
1838   // the following in a block to force paint to occur so that we can release
1839   // the dc.
1840   if (!delegate_->HandlePaintAccelerated(gfx::Rect(dirty_region))) {
1841     gfx::CanvasSkiaPaint canvas(dc,
1842                                 true,
1843                                 dirty_region.left,
1844                                 dirty_region.top,
1845                                 dirty_region.right - dirty_region.left,
1846                                 dirty_region.bottom - dirty_region.top);
1847     delegate_->HandlePaint(&canvas);
1848   }
1849 
1850   ReleaseDC(hwnd(), dc);
1851   // When using a custom frame, we want to avoid calling DefWindowProc() since
1852   // that may render artifacts.
1853   SetMsgHandled(delegate_->IsUsingCustomFrame());
1854 }
1855 
OnNCUAHDrawCaption(UINT message,WPARAM w_param,LPARAM l_param)1856 LRESULT HWNDMessageHandler::OnNCUAHDrawCaption(UINT message,
1857                                                WPARAM w_param,
1858                                                LPARAM l_param) {
1859   // See comment in widget_win.h at the definition of WM_NCUAHDRAWCAPTION for
1860   // an explanation about why we need to handle this message.
1861   SetMsgHandled(delegate_->IsUsingCustomFrame());
1862   return 0;
1863 }
1864 
OnNCUAHDrawFrame(UINT message,WPARAM w_param,LPARAM l_param)1865 LRESULT HWNDMessageHandler::OnNCUAHDrawFrame(UINT message,
1866                                              WPARAM w_param,
1867                                              LPARAM l_param) {
1868   // See comment in widget_win.h at the definition of WM_NCUAHDRAWCAPTION for
1869   // an explanation about why we need to handle this message.
1870   SetMsgHandled(delegate_->IsUsingCustomFrame());
1871   return 0;
1872 }
1873 
OnNotify(int w_param,NMHDR * l_param)1874 LRESULT HWNDMessageHandler::OnNotify(int w_param, NMHDR* l_param) {
1875   LRESULT l_result = 0;
1876   SetMsgHandled(delegate_->HandleTooltipNotify(w_param, l_param, &l_result));
1877   return l_result;
1878 }
1879 
OnPaint(HDC dc)1880 void HWNDMessageHandler::OnPaint(HDC dc) {
1881   // Call BeginPaint()/EndPaint() around the paint handling, as that seems
1882   // to do more to actually validate the window's drawing region. This only
1883   // appears to matter for Windows that have the WS_EX_COMPOSITED style set
1884   // but will be valid in general too.
1885   PAINTSTRUCT ps;
1886   HDC display_dc = BeginPaint(hwnd(), &ps);
1887   CHECK(display_dc);
1888 
1889   // Try to paint accelerated first.
1890   if (!IsRectEmpty(&ps.rcPaint) &&
1891       !delegate_->HandlePaintAccelerated(gfx::Rect(ps.rcPaint))) {
1892     delegate_->HandlePaint(NULL);
1893   }
1894 
1895   EndPaint(hwnd(), &ps);
1896 }
1897 
OnReflectedMessage(UINT message,WPARAM w_param,LPARAM l_param)1898 LRESULT HWNDMessageHandler::OnReflectedMessage(UINT message,
1899                                                WPARAM w_param,
1900                                                LPARAM l_param) {
1901   SetMsgHandled(FALSE);
1902   return 0;
1903 }
1904 
OnScrollMessage(UINT message,WPARAM w_param,LPARAM l_param)1905 LRESULT HWNDMessageHandler::OnScrollMessage(UINT message,
1906                                             WPARAM w_param,
1907                                             LPARAM l_param) {
1908   MSG msg = { hwnd(), message, w_param, l_param, GetMessageTime() };
1909   ui::ScrollEvent event(msg);
1910   delegate_->HandleScrollEvent(event);
1911   return 0;
1912 }
1913 
OnSessionChange(WPARAM status_code,PWTSSESSION_NOTIFICATION session_id)1914 void HWNDMessageHandler::OnSessionChange(WPARAM status_code,
1915                                          PWTSSESSION_NOTIFICATION session_id) {
1916   // Direct3D presents are ignored while the screen is locked, so force the
1917   // window to be redrawn on unlock.
1918   if (status_code == WTS_SESSION_UNLOCK)
1919     ForceRedrawWindow(10);
1920 
1921   SetMsgHandled(FALSE);
1922 }
1923 
OnSetCursor(UINT message,WPARAM w_param,LPARAM l_param)1924 LRESULT HWNDMessageHandler::OnSetCursor(UINT message,
1925                                         WPARAM w_param,
1926                                         LPARAM l_param) {
1927   // Reimplement the necessary default behavior here. Calling DefWindowProc can
1928   // trigger weird non-client painting for non-glass windows with custom frames.
1929   // Using a ScopedRedrawLock to prevent caption rendering artifacts may allow
1930   // content behind this window to incorrectly paint in front of this window.
1931   // Invalidating the window to paint over either set of artifacts is not ideal.
1932   wchar_t* cursor = IDC_ARROW;
1933   switch (LOWORD(l_param)) {
1934     case HTSIZE:
1935       cursor = IDC_SIZENWSE;
1936       break;
1937     case HTLEFT:
1938     case HTRIGHT:
1939       cursor = IDC_SIZEWE;
1940       break;
1941     case HTTOP:
1942     case HTBOTTOM:
1943       cursor = IDC_SIZENS;
1944       break;
1945     case HTTOPLEFT:
1946     case HTBOTTOMRIGHT:
1947       cursor = IDC_SIZENWSE;
1948       break;
1949     case HTTOPRIGHT:
1950     case HTBOTTOMLEFT:
1951       cursor = IDC_SIZENESW;
1952       break;
1953     case HTCLIENT:
1954       SetCursor(current_cursor_);
1955       return 1;
1956     case LOWORD(HTERROR):  // Use HTERROR's LOWORD value for valid comparison.
1957       SetMsgHandled(FALSE);
1958       break;
1959     default:
1960       // Use the default value, IDC_ARROW.
1961       break;
1962   }
1963   ::SetCursor(LoadCursor(NULL, cursor));
1964   return 1;
1965 }
1966 
OnSetFocus(HWND last_focused_window)1967 void HWNDMessageHandler::OnSetFocus(HWND last_focused_window) {
1968   delegate_->HandleNativeFocus(last_focused_window);
1969   SetMsgHandled(FALSE);
1970 }
1971 
OnSetIcon(UINT size_type,HICON new_icon)1972 LRESULT HWNDMessageHandler::OnSetIcon(UINT size_type, HICON new_icon) {
1973   // Use a ScopedRedrawLock to avoid weird non-client painting.
1974   return DefWindowProcWithRedrawLock(WM_SETICON, size_type,
1975                                      reinterpret_cast<LPARAM>(new_icon));
1976 }
1977 
OnSetText(const wchar_t * text)1978 LRESULT HWNDMessageHandler::OnSetText(const wchar_t* text) {
1979   // Use a ScopedRedrawLock to avoid weird non-client painting.
1980   return DefWindowProcWithRedrawLock(WM_SETTEXT, NULL,
1981                                      reinterpret_cast<LPARAM>(text));
1982 }
1983 
OnSettingChange(UINT flags,const wchar_t * section)1984 void HWNDMessageHandler::OnSettingChange(UINT flags, const wchar_t* section) {
1985   if (!GetParent(hwnd()) && (flags == SPI_SETWORKAREA) &&
1986       !delegate_->WillProcessWorkAreaChange()) {
1987     // Fire a dummy SetWindowPos() call, so we'll trip the code in
1988     // OnWindowPosChanging() below that notices work area changes.
1989     ::SetWindowPos(hwnd(), 0, 0, 0, 0, 0, SWP_NOSIZE | SWP_NOMOVE |
1990         SWP_NOZORDER | SWP_NOREDRAW | SWP_NOACTIVATE | SWP_NOOWNERZORDER);
1991     SetMsgHandled(TRUE);
1992   } else {
1993     if (flags == SPI_SETWORKAREA)
1994       delegate_->HandleWorkAreaChanged();
1995     SetMsgHandled(FALSE);
1996   }
1997 }
1998 
OnSize(UINT param,const gfx::Size & size)1999 void HWNDMessageHandler::OnSize(UINT param, const gfx::Size& size) {
2000   RedrawWindow(hwnd(), NULL, NULL, RDW_INVALIDATE | RDW_ALLCHILDREN);
2001   // ResetWindowRegion is going to trigger WM_NCPAINT. By doing it after we've
2002   // invoked OnSize we ensure the RootView has been laid out.
2003   ResetWindowRegion(false, true);
2004 
2005   // We add the WS_VSCROLL and WS_HSCROLL styles to top level windows to ensure
2006   // that legacy trackpad/trackpoint drivers generate the WM_VSCROLL and
2007   // WM_HSCROLL messages and scrolling works.
2008   // We want the scroll styles to be present on the window. However we don't
2009   // want Windows to draw the scrollbars. To achieve this we hide the scroll
2010   // bars and readd them to the window style in a posted task to ensure that we
2011   // don't get nested WM_SIZE messages.
2012   if (needs_scroll_styles_ && !in_size_loop_) {
2013     ShowScrollBar(hwnd(), SB_BOTH, FALSE);
2014     base::MessageLoop::current()->PostTask(
2015         FROM_HERE, base::Bind(&AddScrollStylesToWindow, hwnd()));
2016   }
2017 }
2018 
OnSysCommand(UINT notification_code,const gfx::Point & point)2019 void HWNDMessageHandler::OnSysCommand(UINT notification_code,
2020                                       const gfx::Point& point) {
2021   if (!delegate_->ShouldHandleSystemCommands())
2022     return;
2023 
2024   // Windows uses the 4 lower order bits of |notification_code| for type-
2025   // specific information so we must exclude this when comparing.
2026   static const int sc_mask = 0xFFF0;
2027   // Ignore size/move/maximize in fullscreen mode.
2028   if (fullscreen_handler_->fullscreen() &&
2029       (((notification_code & sc_mask) == SC_SIZE) ||
2030        ((notification_code & sc_mask) == SC_MOVE) ||
2031        ((notification_code & sc_mask) == SC_MAXIMIZE)))
2032     return;
2033   if (delegate_->IsUsingCustomFrame()) {
2034     if ((notification_code & sc_mask) == SC_MINIMIZE ||
2035         (notification_code & sc_mask) == SC_MAXIMIZE ||
2036         (notification_code & sc_mask) == SC_RESTORE) {
2037       delegate_->ResetWindowControls();
2038     } else if ((notification_code & sc_mask) == SC_MOVE ||
2039                (notification_code & sc_mask) == SC_SIZE) {
2040       if (!IsVisible()) {
2041         // Circumvent ScopedRedrawLocks and force visibility before entering a
2042         // resize or move modal loop to get continuous sizing/moving feedback.
2043         SetWindowLong(hwnd(), GWL_STYLE,
2044                       GetWindowLong(hwnd(), GWL_STYLE) | WS_VISIBLE);
2045       }
2046     }
2047   }
2048 
2049   // Handle SC_KEYMENU, which means that the user has pressed the ALT
2050   // key and released it, so we should focus the menu bar.
2051   if ((notification_code & sc_mask) == SC_KEYMENU && point.x() == 0) {
2052     int modifiers = ui::EF_NONE;
2053     if (base::win::IsShiftPressed())
2054       modifiers |= ui::EF_SHIFT_DOWN;
2055     if (base::win::IsCtrlPressed())
2056       modifiers |= ui::EF_CONTROL_DOWN;
2057     // Retrieve the status of shift and control keys to prevent consuming
2058     // shift+alt keys, which are used by Windows to change input languages.
2059     ui::Accelerator accelerator(ui::KeyboardCodeForWindowsKeyCode(VK_MENU),
2060                                 modifiers);
2061     delegate_->HandleAccelerator(accelerator);
2062     return;
2063   }
2064 
2065   // If the delegate can't handle it, the system implementation will be called.
2066   if (!delegate_->HandleCommand(notification_code)) {
2067     // If the window is being resized by dragging the borders of the window
2068     // with the mouse/touch/keyboard, we flag as being in a size loop.
2069     if ((notification_code & sc_mask) == SC_SIZE)
2070       in_size_loop_ = true;
2071     base::WeakPtr<HWNDMessageHandler> ref(weak_factory_.GetWeakPtr());
2072     DefWindowProc(hwnd(), WM_SYSCOMMAND, notification_code,
2073                   MAKELPARAM(point.x(), point.y()));
2074     if (!ref.get())
2075       return;
2076     in_size_loop_ = false;
2077   }
2078 }
2079 
OnThemeChanged()2080 void HWNDMessageHandler::OnThemeChanged() {
2081   ui::NativeThemeWin::instance()->CloseHandles();
2082 }
2083 
OnTouchEvent(UINT message,WPARAM w_param,LPARAM l_param)2084 LRESULT HWNDMessageHandler::OnTouchEvent(UINT message,
2085                                          WPARAM w_param,
2086                                          LPARAM l_param) {
2087   // Handle touch events only on Aura for now.
2088   int num_points = LOWORD(w_param);
2089   scoped_ptr<TOUCHINPUT[]> input(new TOUCHINPUT[num_points]);
2090   if (ui::GetTouchInputInfoWrapper(reinterpret_cast<HTOUCHINPUT>(l_param),
2091                                    num_points, input.get(),
2092                                    sizeof(TOUCHINPUT))) {
2093     int flags = ui::GetModifiersFromKeyState();
2094     TouchEvents touch_events;
2095     for (int i = 0; i < num_points; ++i) {
2096       POINT point;
2097       point.x = TOUCH_COORD_TO_PIXEL(input[i].x);
2098       point.y = TOUCH_COORD_TO_PIXEL(input[i].y);
2099 
2100       if (base::win::GetVersion() == base::win::VERSION_WIN7) {
2101         // Windows 7 sends touch events for touches in the non-client area,
2102         // whereas Windows 8 does not. In order to unify the behaviour, always
2103         // ignore touch events in the non-client area.
2104         LPARAM l_param_ht = MAKELPARAM(point.x, point.y);
2105         LRESULT hittest = SendMessage(hwnd(), WM_NCHITTEST, 0, l_param_ht);
2106 
2107         if (hittest != HTCLIENT)
2108           return 0;
2109       }
2110 
2111       ScreenToClient(hwnd(), &point);
2112 
2113       last_touch_message_time_ = ::GetMessageTime();
2114 
2115       ui::EventType touch_event_type = ui::ET_UNKNOWN;
2116 
2117       if (input[i].dwFlags & TOUCHEVENTF_DOWN) {
2118         touch_ids_.insert(input[i].dwID);
2119         touch_event_type = ui::ET_TOUCH_PRESSED;
2120         touch_down_contexts_++;
2121         base::MessageLoop::current()->PostDelayedTask(
2122             FROM_HERE,
2123             base::Bind(&HWNDMessageHandler::ResetTouchDownContext,
2124                        weak_factory_.GetWeakPtr()),
2125             base::TimeDelta::FromMilliseconds(kTouchDownContextResetTimeout));
2126       } else if (input[i].dwFlags & TOUCHEVENTF_UP) {
2127         touch_ids_.erase(input[i].dwID);
2128         touch_event_type = ui::ET_TOUCH_RELEASED;
2129       } else if (input[i].dwFlags & TOUCHEVENTF_MOVE) {
2130         touch_event_type = ui::ET_TOUCH_MOVED;
2131       }
2132       if (touch_event_type != ui::ET_UNKNOWN) {
2133         base::TimeTicks now;
2134         // input[i].dwTime doesn't necessarily relate to the system time at all,
2135         // so use base::TimeTicks::HighResNow() if possible, or
2136         // base::TimeTicks::Now() otherwise.
2137         if (base::TimeTicks::IsHighResNowFastAndReliable())
2138           now = base::TimeTicks::HighResNow();
2139         else
2140           now = base::TimeTicks::Now();
2141         ui::TouchEvent event(touch_event_type,
2142                              gfx::Point(point.x, point.y),
2143                              id_generator_.GetGeneratedID(input[i].dwID),
2144                              now - base::TimeTicks());
2145         event.set_flags(flags);
2146         event.latency()->AddLatencyNumberWithTimestamp(
2147             ui::INPUT_EVENT_LATENCY_ORIGINAL_COMPONENT,
2148             0,
2149             0,
2150             base::TimeTicks::FromInternalValue(
2151                 event.time_stamp().ToInternalValue()),
2152             1);
2153 
2154         touch_events.push_back(event);
2155         if (touch_event_type == ui::ET_TOUCH_RELEASED)
2156           id_generator_.ReleaseNumber(input[i].dwID);
2157       }
2158     }
2159     // Handle the touch events asynchronously. We need this because touch
2160     // events on windows don't fire if we enter a modal loop in the context of
2161     // a touch event.
2162     base::MessageLoop::current()->PostTask(
2163         FROM_HERE,
2164         base::Bind(&HWNDMessageHandler::HandleTouchEvents,
2165                    weak_factory_.GetWeakPtr(), touch_events));
2166   }
2167   CloseTouchInputHandle(reinterpret_cast<HTOUCHINPUT>(l_param));
2168   SetMsgHandled(FALSE);
2169   return 0;
2170 }
2171 
OnWindowPosChanging(WINDOWPOS * window_pos)2172 void HWNDMessageHandler::OnWindowPosChanging(WINDOWPOS* window_pos) {
2173   if (ignore_window_pos_changes_) {
2174     // If somebody's trying to toggle our visibility, change the nonclient area,
2175     // change our Z-order, or activate us, we should probably let it go through.
2176     if (!(window_pos->flags & ((IsVisible() ? SWP_HIDEWINDOW : SWP_SHOWWINDOW) |
2177         SWP_FRAMECHANGED)) &&
2178         (window_pos->flags & (SWP_NOZORDER | SWP_NOACTIVATE))) {
2179       // Just sizing/moving the window; ignore.
2180       window_pos->flags |= SWP_NOSIZE | SWP_NOMOVE | SWP_NOREDRAW;
2181       window_pos->flags &= ~(SWP_SHOWWINDOW | SWP_HIDEWINDOW);
2182     }
2183   } else if (!GetParent(hwnd())) {
2184     RECT window_rect;
2185     HMONITOR monitor;
2186     gfx::Rect monitor_rect, work_area;
2187     if (GetWindowRect(hwnd(), &window_rect) &&
2188         GetMonitorAndRects(window_rect, &monitor, &monitor_rect, &work_area)) {
2189       bool work_area_changed = (monitor_rect == last_monitor_rect_) &&
2190                                (work_area != last_work_area_);
2191       if (monitor && (monitor == last_monitor_) &&
2192           ((fullscreen_handler_->fullscreen() &&
2193             !fullscreen_handler_->metro_snap()) ||
2194             work_area_changed)) {
2195         // A rect for the monitor we're on changed.  Normally Windows notifies
2196         // us about this (and thus we're reaching here due to the SetWindowPos()
2197         // call in OnSettingChange() above), but with some software (e.g.
2198         // nVidia's nView desktop manager) the work area can change asynchronous
2199         // to any notification, and we're just sent a SetWindowPos() call with a
2200         // new (frequently incorrect) position/size.  In either case, the best
2201         // response is to throw away the existing position/size information in
2202         // |window_pos| and recalculate it based on the new work rect.
2203         gfx::Rect new_window_rect;
2204         if (fullscreen_handler_->fullscreen()) {
2205           new_window_rect = monitor_rect;
2206         } else if (IsMaximized()) {
2207           new_window_rect = work_area;
2208           int border_thickness = GetSystemMetrics(SM_CXSIZEFRAME);
2209           new_window_rect.Inset(-border_thickness, -border_thickness);
2210         } else {
2211           new_window_rect = gfx::Rect(window_rect);
2212           new_window_rect.AdjustToFit(work_area);
2213         }
2214         window_pos->x = new_window_rect.x();
2215         window_pos->y = new_window_rect.y();
2216         window_pos->cx = new_window_rect.width();
2217         window_pos->cy = new_window_rect.height();
2218         // WARNING!  Don't set SWP_FRAMECHANGED here, it breaks moving the child
2219         // HWNDs for some reason.
2220         window_pos->flags &= ~(SWP_NOSIZE | SWP_NOMOVE | SWP_NOREDRAW);
2221         window_pos->flags |= SWP_NOCOPYBITS;
2222 
2223         // Now ignore all immediately-following SetWindowPos() changes.  Windows
2224         // likes to (incorrectly) recalculate what our position/size should be
2225         // and send us further updates.
2226         ignore_window_pos_changes_ = true;
2227         base::MessageLoop::current()->PostTask(
2228             FROM_HERE,
2229             base::Bind(&HWNDMessageHandler::StopIgnoringPosChanges,
2230                        weak_factory_.GetWeakPtr()));
2231       }
2232       last_monitor_ = monitor;
2233       last_monitor_rect_ = monitor_rect;
2234       last_work_area_ = work_area;
2235     }
2236   }
2237 
2238   if (DidClientAreaSizeChange(window_pos))
2239     delegate_->HandleWindowSizeChanging();
2240 
2241   if (ScopedFullscreenVisibility::IsHiddenForFullscreen(hwnd())) {
2242     // Prevent the window from being made visible if we've been asked to do so.
2243     // See comment in header as to why we might want this.
2244     window_pos->flags &= ~SWP_SHOWWINDOW;
2245   }
2246 
2247   if (window_pos->flags & SWP_SHOWWINDOW)
2248     delegate_->HandleVisibilityChanging(true);
2249   else if (window_pos->flags & SWP_HIDEWINDOW)
2250     delegate_->HandleVisibilityChanging(false);
2251 
2252   SetMsgHandled(FALSE);
2253 }
2254 
OnWindowPosChanged(WINDOWPOS * window_pos)2255 void HWNDMessageHandler::OnWindowPosChanged(WINDOWPOS* window_pos) {
2256   if (DidClientAreaSizeChange(window_pos))
2257     ClientAreaSizeChanged();
2258   if (remove_standard_frame_ && window_pos->flags & SWP_FRAMECHANGED &&
2259       ui::win::IsAeroGlassEnabled() &&
2260       (window_ex_style() & WS_EX_COMPOSITED) == 0) {
2261     MARGINS m = {10, 10, 10, 10};
2262     DwmExtendFrameIntoClientArea(hwnd(), &m);
2263   }
2264   if (window_pos->flags & SWP_SHOWWINDOW)
2265     delegate_->HandleVisibilityChanged(true);
2266   else if (window_pos->flags & SWP_HIDEWINDOW)
2267     delegate_->HandleVisibilityChanged(false);
2268   SetMsgHandled(FALSE);
2269 }
2270 
HandleTouchEvents(const TouchEvents & touch_events)2271 void HWNDMessageHandler::HandleTouchEvents(const TouchEvents& touch_events) {
2272   base::WeakPtr<HWNDMessageHandler> ref(weak_factory_.GetWeakPtr());
2273   for (size_t i = 0; i < touch_events.size() && ref; ++i)
2274     delegate_->HandleTouchEvent(touch_events[i]);
2275 }
2276 
ResetTouchDownContext()2277 void HWNDMessageHandler::ResetTouchDownContext() {
2278   touch_down_contexts_--;
2279 }
2280 
HandleMouseEventInternal(UINT message,WPARAM w_param,LPARAM l_param,bool track_mouse)2281 LRESULT HWNDMessageHandler::HandleMouseEventInternal(UINT message,
2282                                                      WPARAM w_param,
2283                                                      LPARAM l_param,
2284                                                      bool track_mouse) {
2285   if (!touch_ids_.empty())
2286     return 0;
2287   // We handle touch events on Windows Aura. Windows generates synthesized
2288   // mouse messages in response to touch which we should ignore. However touch
2289   // messages are only received for the client area. We need to ignore the
2290   // synthesized mouse messages for all points in the client area and places
2291   // which return HTNOWHERE.
2292   if (ui::IsMouseEventFromTouch(message)) {
2293     LPARAM l_param_ht = l_param;
2294     // For mouse events (except wheel events), location is in window coordinates
2295     // and should be converted to screen coordinates for WM_NCHITTEST.
2296     if (message != WM_MOUSEWHEEL && message != WM_MOUSEHWHEEL) {
2297       POINT screen_point = CR_POINT_INITIALIZER_FROM_LPARAM(l_param_ht);
2298       MapWindowPoints(hwnd(), HWND_DESKTOP, &screen_point, 1);
2299       l_param_ht = MAKELPARAM(screen_point.x, screen_point.y);
2300     }
2301     LRESULT hittest = SendMessage(hwnd(), WM_NCHITTEST, 0, l_param_ht);
2302     if (hittest == HTCLIENT || hittest == HTNOWHERE)
2303       return 0;
2304   }
2305 
2306   // Certain logitech drivers send the WM_MOUSEHWHEEL message to the parent
2307   // followed by WM_MOUSEWHEEL messages to the child window causing a vertical
2308   // scroll. We treat these WM_MOUSEWHEEL messages as WM_MOUSEHWHEEL
2309   // messages.
2310   if (message == WM_MOUSEHWHEEL)
2311     last_mouse_hwheel_time_ = ::GetMessageTime();
2312 
2313   if (message == WM_MOUSEWHEEL &&
2314       ::GetMessageTime() == last_mouse_hwheel_time_) {
2315     message = WM_MOUSEHWHEEL;
2316   }
2317 
2318   if (message == WM_RBUTTONUP && is_right_mouse_pressed_on_caption_) {
2319     is_right_mouse_pressed_on_caption_ = false;
2320     ReleaseCapture();
2321     // |point| is in window coordinates, but WM_NCHITTEST and TrackPopupMenu()
2322     // expect screen coordinates.
2323     POINT screen_point = CR_POINT_INITIALIZER_FROM_LPARAM(l_param);
2324     MapWindowPoints(hwnd(), HWND_DESKTOP, &screen_point, 1);
2325     w_param = SendMessage(hwnd(), WM_NCHITTEST, 0,
2326                           MAKELPARAM(screen_point.x, screen_point.y));
2327     if (w_param == HTCAPTION || w_param == HTSYSMENU) {
2328       gfx::ShowSystemMenuAtPoint(hwnd(), gfx::Point(screen_point));
2329       return 0;
2330     }
2331   } else if (message == WM_NCLBUTTONDOWN && delegate_->IsUsingCustomFrame()) {
2332     switch (w_param) {
2333       case HTCLOSE:
2334       case HTMINBUTTON:
2335       case HTMAXBUTTON: {
2336         // When the mouse is pressed down in these specific non-client areas,
2337         // we need to tell the RootView to send the mouse pressed event (which
2338         // sets capture, allowing subsequent WM_LBUTTONUP (note, _not_
2339         // WM_NCLBUTTONUP) to fire so that the appropriate WM_SYSCOMMAND can be
2340         // sent by the applicable button's ButtonListener. We _have_ to do this
2341         // way rather than letting Windows just send the syscommand itself (as
2342         // would happen if we never did this dance) because for some insane
2343         // reason DefWindowProc for WM_NCLBUTTONDOWN also renders the pressed
2344         // window control button appearance, in the Windows classic style, over
2345         // our view! Ick! By handling this message we prevent Windows from
2346         // doing this undesirable thing, but that means we need to roll the
2347         // sys-command handling ourselves.
2348         // Combine |w_param| with common key state message flags.
2349         w_param |= base::win::IsCtrlPressed() ? MK_CONTROL : 0;
2350         w_param |= base::win::IsShiftPressed() ? MK_SHIFT : 0;
2351       }
2352     }
2353   } else if (message == WM_NCRBUTTONDOWN &&
2354       (w_param == HTCAPTION || w_param == HTSYSMENU)) {
2355     is_right_mouse_pressed_on_caption_ = true;
2356     // We SetCapture() to ensure we only show the menu when the button
2357     // down and up are both on the caption. Note: this causes the button up to
2358     // be WM_RBUTTONUP instead of WM_NCRBUTTONUP.
2359     SetCapture();
2360   }
2361   long message_time = GetMessageTime();
2362   MSG msg = { hwnd(), message, w_param, l_param, message_time,
2363               { CR_GET_X_LPARAM(l_param), CR_GET_Y_LPARAM(l_param) } };
2364   ui::MouseEvent event(msg);
2365   if (IsSynthesizedMouseMessage(message, message_time, l_param))
2366     event.set_flags(event.flags() | ui::EF_FROM_TOUCH);
2367 
2368   if (!(event.flags() & ui::EF_IS_NON_CLIENT))
2369     delegate_->HandleTooltipMouseMove(message, w_param, l_param);
2370 
2371   if (event.type() == ui::ET_MOUSE_MOVED && !HasCapture() && track_mouse) {
2372     // Windows only fires WM_MOUSELEAVE events if the application begins
2373     // "tracking" mouse events for a given HWND during WM_MOUSEMOVE events.
2374     // We need to call |TrackMouseEvents| to listen for WM_MOUSELEAVE.
2375     TrackMouseEvents((message == WM_NCMOUSEMOVE) ?
2376         TME_NONCLIENT | TME_LEAVE : TME_LEAVE);
2377   } else if (event.type() == ui::ET_MOUSE_EXITED) {
2378     // Reset our tracking flags so future mouse movement over this
2379     // NativeWidget results in a new tracking session. Fall through for
2380     // OnMouseEvent.
2381     active_mouse_tracking_flags_ = 0;
2382   } else if (event.type() == ui::ET_MOUSEWHEEL) {
2383     // Reroute the mouse wheel to the window under the pointer if applicable.
2384     return (ui::RerouteMouseWheel(hwnd(), w_param, l_param) ||
2385             delegate_->HandleMouseEvent(ui::MouseWheelEvent(msg))) ? 0 : 1;
2386   }
2387 
2388   // There are cases where the code handling the message destroys the window,
2389   // so use the weak ptr to check if destruction occured or not.
2390   base::WeakPtr<HWNDMessageHandler> ref(weak_factory_.GetWeakPtr());
2391   bool handled = delegate_->HandleMouseEvent(event);
2392   if (!ref.get())
2393     return 0;
2394   if (!handled && message == WM_NCLBUTTONDOWN && w_param != HTSYSMENU &&
2395       delegate_->IsUsingCustomFrame()) {
2396     // TODO(msw): Eliminate undesired painting, or re-evaluate this workaround.
2397     // DefWindowProc for WM_NCLBUTTONDOWN does weird non-client painting, so we
2398     // need to call it inside a ScopedRedrawLock. This may cause other negative
2399     // side-effects (ex/ stifling non-client mouse releases).
2400     DefWindowProcWithRedrawLock(message, w_param, l_param);
2401     handled = true;
2402   }
2403 
2404   if (ref.get())
2405     SetMsgHandled(handled);
2406   return 0;
2407 }
2408 
IsSynthesizedMouseMessage(unsigned int message,int message_time,LPARAM l_param)2409 bool HWNDMessageHandler::IsSynthesizedMouseMessage(unsigned int message,
2410                                                    int message_time,
2411                                                    LPARAM l_param) {
2412   if (ui::IsMouseEventFromTouch(message))
2413     return true;
2414   // Ignore mouse messages which occur at the same location as the current
2415   // cursor position and within a time difference of 500 ms from the last
2416   // touch message.
2417   if (last_touch_message_time_ && message_time >= last_touch_message_time_ &&
2418       ((message_time - last_touch_message_time_) <=
2419           kSynthesizedMouseTouchMessagesTimeDifference)) {
2420     POINT mouse_location = CR_POINT_INITIALIZER_FROM_LPARAM(l_param);
2421     ::ClientToScreen(hwnd(), &mouse_location);
2422     POINT cursor_pos = {0};
2423     ::GetCursorPos(&cursor_pos);
2424     if (memcmp(&cursor_pos, &mouse_location, sizeof(POINT)))
2425       return false;
2426     return true;
2427   }
2428   return false;
2429 }
2430 
2431 }  // namespace views
2432