Merge "Fix the calculating logic for input region" into devel/master
[platform/core/uifw/dali-adaptor.git] / dali / internal / window-system / tizen-wayland / ecore-wl2 / window-base-ecore-wl2.cpp
1 /*
2  * Copyright (c) 2023 Samsung Electronics Co., Ltd.
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  * http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  *
16  */
17
18 // Ecore is littered with C style cast
19 #pragma GCC diagnostic push
20 #pragma GCC diagnostic ignored "-Wold-style-cast"
21
22 // CLASS HEADER
23 #include <dali/internal/window-system/tizen-wayland/ecore-wl2/window-base-ecore-wl2.h>
24
25 // INTERNAL HEADERS
26 #include <dali/internal/input/common/key-impl.h>
27 #include <dali/internal/window-system/common/window-impl.h>
28 #include <dali/internal/window-system/common/window-render-surface.h>
29 #include <dali/internal/window-system/common/window-system.h>
30
31 // EXTERNAL_HEADERS
32 #include <Ecore_Input.h>
33 #include <dali/integration-api/debug.h>
34 #include <dali/integration-api/trace.h>
35 #include <dali/public-api/adaptor-framework/window-enumerations.h>
36 #include <dali/public-api/events/mouse-button.h>
37 #include <dali/public-api/object/any.h>
38
39 #if defined(VCONF_ENABLED)
40 #include <vconf-keys.h>
41 #include <vconf.h>
42 #endif
43
44 #include <wayland-egl-tizen.h>
45
46 namespace Dali
47 {
48 namespace Internal
49 {
50 namespace Adaptor
51 {
52 namespace
53 {
54 #if defined(DEBUG_ENABLED)
55 Debug::Filter* gWindowBaseLogFilter = Debug::Filter::New(Debug::NoLogging, false, "LOG_WINDOW_BASE");
56 #endif
57
58 DALI_INIT_TRACE_FILTER(gTraceFilter, DALI_TRACE_PERFORMANCE_MARKER, false);
59
60 /**
61  * @brief Enumeration of location for window resized by display server.
62  */
63 enum class ResizeLocation
64 {
65   INVALID      = 0,  ///< Invalid value
66   TOP_LEFT     = 5,  ///< Start resizing window to the top-left edge.
67   LEFT         = 4,  ///< Start resizing window to the left side.
68   BOTTOM_LEFT  = 6,  ///< Start resizing window to the bottom-left edge.
69   BOTTOM       = 2,  ///< Start resizing window to the bottom side.
70   BOTTOM_RIGHT = 10, ///< Start resizing window to the bottom-right edge.
71   RIGHT        = 8,  ///< Start resizing window to the right side.
72   TOP_RIGHT    = 9,  ///< Start resizing window to the top-right edge.
73   TOP          = 1   ///< Start resizing window to the top side.
74 };
75
76 const uint32_t       MAX_TIZEN_CLIENT_VERSION = 7;
77 const unsigned int   PRIMARY_TOUCH_BUTTON_ID  = 1;
78 const ResizeLocation RESIZE_LOCATIONS[]       = {ResizeLocation::TOP_LEFT, ResizeLocation::LEFT, ResizeLocation::BOTTOM_LEFT, ResizeLocation::BOTTOM, ResizeLocation::BOTTOM_RIGHT, ResizeLocation::RIGHT, ResizeLocation::TOP_RIGHT, ResizeLocation::TOP, ResizeLocation::INVALID};
79
80 #if defined(VCONF_ENABLED)
81 const char* DALI_VCONFKEY_SETAPPL_ACCESSIBILITY_FONT_NAME = "db/setting/accessibility/font_name"; // It will be update at vconf-key.h and replaced.
82 #endif
83
84 struct KeyCodeMap
85 {
86   xkb_keysym_t  keySym;
87   xkb_keycode_t keyCode;
88   bool          isKeyCode;
89 };
90
91 /**
92  * Get the device name from the provided ecore key event
93  */
94 void GetDeviceName(Ecore_Event_Key* keyEvent, std::string& result)
95 {
96   const char* ecoreDeviceName = ecore_device_name_get(keyEvent->dev);
97
98   if(ecoreDeviceName)
99   {
100     result = ecoreDeviceName;
101   }
102 }
103
104 /**
105  * Get the device class from the provided ecore event
106  */
107 void GetDeviceClass(Ecore_Device_Class ecoreDeviceClass, Device::Class::Type& deviceClass)
108 {
109   switch(ecoreDeviceClass)
110   {
111     case ECORE_DEVICE_CLASS_SEAT:
112     {
113       deviceClass = Device::Class::USER;
114       break;
115     }
116     case ECORE_DEVICE_CLASS_KEYBOARD:
117     {
118       deviceClass = Device::Class::KEYBOARD;
119       break;
120     }
121     case ECORE_DEVICE_CLASS_MOUSE:
122     {
123       deviceClass = Device::Class::MOUSE;
124       break;
125     }
126     case ECORE_DEVICE_CLASS_TOUCH:
127     {
128       deviceClass = Device::Class::TOUCH;
129       break;
130     }
131     case ECORE_DEVICE_CLASS_PEN:
132     {
133       deviceClass = Device::Class::PEN;
134       break;
135     }
136     case ECORE_DEVICE_CLASS_POINTER:
137     {
138       deviceClass = Device::Class::POINTER;
139       break;
140     }
141     case ECORE_DEVICE_CLASS_GAMEPAD:
142     {
143       deviceClass = Device::Class::GAMEPAD;
144       break;
145     }
146     default:
147     {
148       deviceClass = Device::Class::NONE;
149       break;
150     }
151   }
152 }
153
154 void GetDeviceSubclass(Ecore_Device_Subclass ecoreDeviceSubclass, Device::Subclass::Type& deviceSubclass)
155 {
156   switch(ecoreDeviceSubclass)
157   {
158     case ECORE_DEVICE_SUBCLASS_FINGER:
159     {
160       deviceSubclass = Device::Subclass::FINGER;
161       break;
162     }
163     case ECORE_DEVICE_SUBCLASS_FINGERNAIL:
164     {
165       deviceSubclass = Device::Subclass::FINGERNAIL;
166       break;
167     }
168     case ECORE_DEVICE_SUBCLASS_KNUCKLE:
169     {
170       deviceSubclass = Device::Subclass::KNUCKLE;
171       break;
172     }
173     case ECORE_DEVICE_SUBCLASS_PALM:
174     {
175       deviceSubclass = Device::Subclass::PALM;
176       break;
177     }
178     case ECORE_DEVICE_SUBCLASS_HAND_SIZE:
179     {
180       deviceSubclass = Device::Subclass::HAND_SIDE;
181       break;
182     }
183     case ECORE_DEVICE_SUBCLASS_HAND_FLAT:
184     {
185       deviceSubclass = Device::Subclass::HAND_FLAT;
186       break;
187     }
188     case ECORE_DEVICE_SUBCLASS_PEN_TIP:
189     {
190       deviceSubclass = Device::Subclass::PEN_TIP;
191       break;
192     }
193     case ECORE_DEVICE_SUBCLASS_TRACKPAD:
194     {
195       deviceSubclass = Device::Subclass::TRACKPAD;
196       break;
197     }
198     case ECORE_DEVICE_SUBCLASS_TRACKPOINT:
199     {
200       deviceSubclass = Device::Subclass::TRACKPOINT;
201       break;
202     }
203     case ECORE_DEVICE_SUBCLASS_TRACKBALL:
204     {
205       deviceSubclass = Device::Subclass::TRACKBALL;
206       break;
207     }
208     case ECORE_DEVICE_SUBCLASS_REMOCON:
209     {
210       deviceSubclass = Device::Subclass::REMOCON;
211       break;
212     }
213     case ECORE_DEVICE_SUBCLASS_VIRTUAL_KEYBOARD:
214     {
215       deviceSubclass = Device::Subclass::VIRTUAL_KEYBOARD;
216       break;
217     }
218     default:
219     {
220       deviceSubclass = Device::Subclass::NONE;
221       break;
222     }
223   }
224 }
225
226 void FindKeyCode(struct xkb_keymap* keyMap, xkb_keycode_t key, void* data)
227 {
228   KeyCodeMap* foundKeyCode = static_cast<KeyCodeMap*>(data);
229   if(foundKeyCode->isKeyCode)
230   {
231     return;
232   }
233
234   xkb_keysym_t        keySym  = foundKeyCode->keySym;
235   int                 nsyms   = 0;
236   const xkb_keysym_t* symsOut = NULL;
237
238   nsyms = xkb_keymap_key_get_syms_by_level(keyMap, key, 0, 0, &symsOut);
239
240   if(nsyms && symsOut)
241   {
242     if(*symsOut == keySym)
243     {
244       foundKeyCode->keyCode   = key;
245       foundKeyCode->isKeyCode = true;
246     }
247   }
248 }
249
250 /**
251  * Return the recalculated window resizing location according to the current orientation.
252  */
253 ResizeLocation RecalculateLocationToCurrentOrientation(WindowResizeDirection direction, int windowRotationAngle)
254 {
255   int index = 8;
256   switch(direction)
257   {
258     case WindowResizeDirection::TOP_LEFT:
259     {
260       index = 0;
261       break;
262     }
263     case WindowResizeDirection::LEFT:
264     {
265       index = 1;
266       break;
267     }
268     case WindowResizeDirection::BOTTOM_LEFT:
269     {
270       index = 2;
271       break;
272     }
273     case WindowResizeDirection::BOTTOM:
274     {
275       index = 3;
276       break;
277     }
278     case WindowResizeDirection::BOTTOM_RIGHT:
279     {
280       index = 4;
281       break;
282     }
283     case WindowResizeDirection::RIGHT:
284     {
285       index = 5;
286       break;
287     }
288     case WindowResizeDirection::TOP_RIGHT:
289     {
290       index = 6;
291       break;
292     }
293     case WindowResizeDirection::TOP:
294     {
295       index = 7;
296       break;
297     }
298     default:
299     {
300       index = 8;
301       break;
302     }
303   }
304
305   if(index != 8 && windowRotationAngle != 0)
306   {
307     index = (index + (windowRotationAngle / 90) * 2) % 8;
308   }
309
310   return RESIZE_LOCATIONS[index];
311 }
312
313 /////////////////////////////////////////////////////////////////////////////////////////////////
314 // Window Callbacks
315 /////////////////////////////////////////////////////////////////////////////////////////////////
316
317 /// Called when the window iconify state is changed.
318 static Eina_Bool EcoreEventWindowIconifyStateChanged(void* data, int type, void* event)
319 {
320   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
321   if(windowBase)
322   {
323     return windowBase->OnIconifyStateChanged(data, type, event);
324   }
325
326   return ECORE_CALLBACK_PASS_ON;
327 }
328
329 /// Called when the window gains focus
330 static Eina_Bool EcoreEventWindowFocusIn(void* data, int type, void* event)
331 {
332   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
333   if(windowBase)
334   {
335     return windowBase->OnFocusIn(data, type, event);
336   }
337
338   return ECORE_CALLBACK_PASS_ON;
339 }
340
341 /// Called when the window loses focus
342 static Eina_Bool EcoreEventWindowFocusOut(void* data, int type, void* event)
343 {
344   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
345   if(windowBase)
346   {
347     return windowBase->OnFocusOut(data, type, event);
348   }
349
350   return ECORE_CALLBACK_PASS_ON;
351 }
352
353 /// Called when the output is transformed
354 static Eina_Bool EcoreEventOutputTransform(void* data, int type, void* event)
355 {
356   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
357   if(windowBase)
358   {
359     return windowBase->OnOutputTransform(data, type, event);
360   }
361
362   return ECORE_CALLBACK_PASS_ON;
363 }
364
365 /// Called when the output transform should be ignored
366 static Eina_Bool EcoreEventIgnoreOutputTransform(void* data, int type, void* event)
367 {
368   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
369   if(windowBase)
370   {
371     return windowBase->OnIgnoreOutputTransform(data, type, event);
372   }
373
374   return ECORE_CALLBACK_PASS_ON;
375 }
376
377 /**
378  * Called when rotate event is recevied.
379  */
380 static Eina_Bool EcoreEventRotate(void* data, int type, void* event)
381 {
382   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
383   if(windowBase)
384   {
385     DALI_LOG_RELEASE_INFO("WindowBaseEcoreWl2::EcoreEventRotate\n");
386     windowBase->OnRotation(data, type, event);
387   }
388   return ECORE_CALLBACK_PASS_ON;
389 }
390
391 /**
392  * Called when configure event is recevied.
393  */
394 static Eina_Bool EcoreEventConfigure(void* data, int type, void* event)
395 {
396   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
397   if(windowBase)
398   {
399     windowBase->OnConfiguration(data, type, event);
400   }
401   return ECORE_CALLBACK_PASS_ON;
402 }
403
404 /////////////////////////////////////////////////////////////////////////////////////////////////
405 // Touch Callbacks
406 /////////////////////////////////////////////////////////////////////////////////////////////////
407
408 /**
409  * Called when a touch down is received.
410  */
411 static Eina_Bool EcoreEventMouseButtonDown(void* data, int type, void* event)
412 {
413   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
414   if(windowBase)
415   {
416     windowBase->OnMouseButtonDown(data, type, event);
417   }
418   return ECORE_CALLBACK_PASS_ON;
419 }
420
421 /**
422  * Called when a touch up is received.
423  */
424 static Eina_Bool EcoreEventMouseButtonUp(void* data, int type, void* event)
425 {
426   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
427   if(windowBase)
428   {
429     windowBase->OnMouseButtonUp(data, type, event);
430   }
431   return ECORE_CALLBACK_PASS_ON;
432 }
433
434 /**
435  * Called when a touch motion is received.
436  */
437 static Eina_Bool EcoreEventMouseButtonMove(void* data, int type, void* event)
438 {
439   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
440   if(windowBase)
441   {
442     windowBase->OnMouseButtonMove(data, type, event);
443   }
444   return ECORE_CALLBACK_PASS_ON;
445 }
446
447 /**
448  * Called when a touch is canceled.
449  */
450 static Eina_Bool EcoreEventMouseButtonCancel(void* data, int type, void* event)
451 {
452   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
453   if(windowBase)
454   {
455     windowBase->OnMouseButtonCancel(data, type, event);
456   }
457   return ECORE_CALLBACK_PASS_ON;
458 }
459
460 /**
461  * Called when a mouse wheel is received.
462  */
463 static Eina_Bool EcoreEventMouseWheel(void* data, int type, void* event)
464 {
465   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
466   if(windowBase)
467   {
468     windowBase->OnMouseWheel(data, type, event);
469   }
470   return ECORE_CALLBACK_PASS_ON;
471 }
472
473 /**
474  * Called when a detent rotation event is recevied.
475  */
476 static Eina_Bool EcoreEventDetentRotation(void* data, int type, void* event)
477 {
478   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
479   if(windowBase)
480   {
481     windowBase->OnDetentRotation(data, type, event);
482   }
483   return ECORE_CALLBACK_PASS_ON;
484 }
485
486 /////////////////////////////////////////////////////////////////////////////////////////////////
487 // Key Callbacks
488 /////////////////////////////////////////////////////////////////////////////////////////////////
489
490 /**
491  * Called when a key down is received.
492  */
493 static Eina_Bool EcoreEventKeyDown(void* data, int type, void* event)
494 {
495   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
496   if(windowBase)
497   {
498     windowBase->OnKeyDown(data, type, event);
499   }
500   return ECORE_CALLBACK_PASS_ON;
501 }
502
503 /**
504  * Called when a key up is received.
505  */
506 static Eina_Bool EcoreEventKeyUp(void* data, int type, void* event)
507 {
508   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
509   if(windowBase)
510   {
511     windowBase->OnKeyUp(data, type, event);
512   }
513   return ECORE_CALLBACK_PASS_ON;
514 }
515
516 /////////////////////////////////////////////////////////////////////////////////////////////////
517 // Selection Callbacks
518 /////////////////////////////////////////////////////////////////////////////////////////////////
519
520 /**
521  * Called when the source window notifies us the content in clipboard is selected.
522  */
523 static Eina_Bool EcoreEventDataSend(void* data, int type, void* event)
524 {
525   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
526   if(windowBase)
527   {
528     windowBase->OnDataSend(data, type, event);
529   }
530   return ECORE_CALLBACK_PASS_ON;
531 }
532
533 /**
534  * Called when the source window sends us about the selected content.
535  * For example, when item is selected in the clipboard.
536  */
537 static Eina_Bool EcoreEventDataReceive(void* data, int type, void* event)
538 {
539   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
540   if(windowBase)
541   {
542     windowBase->OnDataReceive(data, type, event);
543   }
544   return ECORE_CALLBACK_PASS_ON;
545 }
546
547 /////////////////////////////////////////////////////////////////////////////////////////////////
548 // Effect Start/End Callbacks
549 /////////////////////////////////////////////////////////////////////////////////////////////////
550
551 /**
552  * Called when transition animation of the window's shown/hidden is started by window manager.
553  */
554 static Eina_Bool EcoreEventEffectStart(void* data, int type, void* event)
555 {
556   WindowBaseEcoreWl2*           windowBase  = static_cast<WindowBaseEcoreWl2*>(data);
557   Ecore_Wl2_Event_Effect_Start* effectStart = static_cast<Ecore_Wl2_Event_Effect_Start*>(event);
558   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::EcoreEventEffectStart, effect type[ %d ]\n", effectStart->type);
559   if(windowBase)
560   {
561     if(effectStart->type < 3) // only under restack
562     {
563       windowBase->OnTransitionEffectEvent(WindowEffectState::START, static_cast<WindowEffectType>(effectStart->type));
564     }
565   }
566   return ECORE_CALLBACK_PASS_ON;
567 }
568
569 /**
570  * Called when transition animation of the window's shown/hidden is ended by window manager.
571  */
572 static Eina_Bool EcoreEventEffectEnd(void* data, int type, void* event)
573 {
574   Ecore_Wl2_Event_Effect_Start* effectEnd  = static_cast<Ecore_Wl2_Event_Effect_Start*>(event);
575   WindowBaseEcoreWl2*           windowBase = static_cast<WindowBaseEcoreWl2*>(data);
576   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::EcoreEventEffectEnd, effect type[ %d ]\n", effectEnd->type);
577   if(windowBase)
578   {
579     if(effectEnd->type < 3) // only under restack
580     {
581       windowBase->OnTransitionEffectEvent(WindowEffectState::END, static_cast<WindowEffectType>(effectEnd->type));
582     }
583   }
584   return ECORE_CALLBACK_PASS_ON;
585 }
586
587 /////////////////////////////////////////////////////////////////////////////////////////////////
588 // Keyboard Repeat Settings Changed Callbacks
589 /////////////////////////////////////////////////////////////////////////////////////////////////
590
591 static Eina_Bool EcoreEventSeatKeyboardRepeatChanged(void* data, int type, void* event)
592 {
593   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
594   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::EcoreEventSeatKeyboardRepeatChanged, id[ %d ]\n", static_cast<Ecore_Wl2_Event_Seat_Keyboard_Repeat_Changed*>(event)->id);
595   if(windowBase)
596   {
597     windowBase->OnKeyboardRepeatSettingsChanged();
598   }
599
600   return ECORE_CALLBACK_RENEW;
601 }
602
603 /////////////////////////////////////////////////////////////////////////////////////////////////
604 // Keymap Changed Callbacks
605 /////////////////////////////////////////////////////////////////////////////////////////////////
606
607 static Eina_Bool EcoreEventSeatKeymapChanged(void* data, int type, void* event)
608 {
609   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
610   if(windowBase)
611   {
612     windowBase->KeymapChanged(data, type, event);
613   }
614
615   return ECORE_CALLBACK_RENEW;
616 }
617
618 /////////////////////////////////////////////////////////////////////////////////////////////////
619 // Font Callbacks
620 /////////////////////////////////////////////////////////////////////////////////////////////////
621
622 #if defined(VCONF_ENABLED)
623 /**
624  * Called when a font name is changed.
625  */
626 static void VconfNotifyFontNameChanged(keynode_t* node, void* data)
627 {
628   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
629   if(windowBase)
630   {
631     windowBase->OnFontNameChanged();
632   }
633 }
634
635 /**
636  * Called when a font size is changed.
637  */
638 static void VconfNotifyFontSizeChanged(keynode_t* node, void* data)
639 {
640   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
641   if(windowBase)
642   {
643     windowBase->OnFontSizeChanged();
644   }
645 }
646 #endif
647
648 /////////////////////////////////////////////////////////////////////////////////////////////////
649 // Window Redraw Request Event Callbacks
650 /////////////////////////////////////////////////////////////////////////////////////////////////
651
652 static Eina_Bool EcoreEventWindowRedrawRequest(void* data, int type, void* event)
653 {
654   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
655   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::EcoreEventWindowRedrawRequest, window[ %d ]\n", static_cast<Ecore_Wl2_Event_Window_Redraw_Request*>(event)->win);
656   if(windowBase)
657   {
658     windowBase->OnEcoreEventWindowRedrawRequest();
659   }
660
661   return ECORE_CALLBACK_RENEW;
662 }
663
664 /////////////////////////////////////////////////////////////////////////////////////////////////
665 // Window Auxiliary Message Callbacks
666 /////////////////////////////////////////////////////////////////////////////////////////////////
667 static Eina_Bool EcoreEventWindowAuxiliaryMessage(void* data, int type, void* event)
668 {
669   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
670   if(windowBase)
671   {
672     windowBase->OnEcoreEventWindowAuxiliaryMessage(event);
673   }
674   return ECORE_CALLBACK_RENEW;
675 }
676
677 static void RegistryGlobalCallback(void* data, struct wl_registry* registry, uint32_t name, const char* interface, uint32_t version)
678 {
679   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
680   if(windowBase)
681   {
682     windowBase->RegistryGlobalCallback(data, registry, name, interface, version);
683   }
684 }
685
686 static void RegistryGlobalCallbackRemove(void* data, struct wl_registry* registry, uint32_t id)
687 {
688   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
689   if(windowBase)
690   {
691     windowBase->RegistryGlobalCallbackRemove(data, registry, id);
692   }
693 }
694
695 static void TizenPolicyConformant(void* data, struct tizen_policy* tizenPolicy, struct wl_surface* surface, uint32_t isConformant)
696 {
697 }
698
699 static void TizenPolicyConformantArea(void* data, struct tizen_policy* tizenPolicy, struct wl_surface* surface, uint32_t conformantPart, uint32_t state, int32_t x, int32_t y, int32_t w, int32_t h)
700 {
701 }
702
703 static void TizenPolicyNotificationChangeDone(void* data, struct tizen_policy* tizenPolicy, struct wl_surface* surface, int32_t level, uint32_t state)
704 {
705   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
706   if(windowBase)
707   {
708     windowBase->TizenPolicyNotificationChangeDone(data, tizenPolicy, surface, level, state);
709   }
710 }
711
712 static void TizenPolicyTransientForDone(void* data, struct tizen_policy* tizenPolicy, uint32_t childId)
713 {
714 }
715
716 static void TizenPolicyScreenModeChangeDone(void* data, struct tizen_policy* tizenPolicy, struct wl_surface* surface, uint32_t mode, uint32_t state)
717 {
718   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
719   if(windowBase)
720   {
721     windowBase->TizenPolicyScreenModeChangeDone(data, tizenPolicy, surface, mode, state);
722   }
723 }
724
725 static void TizenPolicyIconifyStateChanged(void* data, struct tizen_policy* tizenPolicy, struct wl_surface* surface, uint32_t iconified, uint32_t force)
726 {
727 }
728
729 static void TizenPolicySupportedAuxiliaryHints(void* data, struct tizen_policy* tizenPolicy, struct wl_surface* surface, struct wl_array* hints, uint32_t numNints)
730 {
731 }
732
733 static void TizenPolicyAllowedAuxiliaryHint(void* data, struct tizen_policy* tizenPolicy, struct wl_surface* surface, int id)
734 {
735 }
736
737 static void TizenPolicyAuxiliaryMessage(void* data, struct tizen_policy* tizenPolicy, struct wl_surface* surface, const char* key, const char* val, struct wl_array* options)
738 {
739 }
740
741 static void TizenPolicyConformantRegion(void* data, struct tizen_policy* tizenPolicy, struct wl_surface* surface, uint32_t conformantPart, uint32_t state, int32_t x, int32_t y, int32_t w, int32_t h, uint32_t serial)
742 {
743 }
744
745 static void DisplayPolicyBrightnessChangeDone(void* data, struct tizen_display_policy* displayPolicy, struct wl_surface* surface, int32_t brightness, uint32_t state)
746 {
747   WindowBaseEcoreWl2* windowBase = static_cast<WindowBaseEcoreWl2*>(data);
748   if(windowBase)
749   {
750     windowBase->DisplayPolicyBrightnessChangeDone(data, displayPolicy, surface, brightness, state);
751   }
752 }
753
754 const struct wl_registry_listener registryListener =
755   {
756     RegistryGlobalCallback,
757     RegistryGlobalCallbackRemove};
758
759 const struct tizen_policy_listener tizenPolicyListener =
760   {
761     TizenPolicyConformant,
762     TizenPolicyConformantArea,
763     TizenPolicyNotificationChangeDone,
764     TizenPolicyTransientForDone,
765     TizenPolicyScreenModeChangeDone,
766     TizenPolicyIconifyStateChanged,
767     TizenPolicySupportedAuxiliaryHints,
768     TizenPolicyAllowedAuxiliaryHint,
769     TizenPolicyAuxiliaryMessage,
770     TizenPolicyConformantRegion};
771
772 const struct tizen_display_policy_listener tizenDisplayPolicyListener =
773   {
774     DisplayPolicyBrightnessChangeDone};
775
776 } // unnamed namespace
777
778 WindowBaseEcoreWl2::WindowBaseEcoreWl2(Dali::PositionSize positionSize, Any surface, bool isTransparent)
779 : mEcoreEventHandler(),
780   mEcoreWindow(nullptr),
781   mWlSurface(nullptr),
782   mWlInputPanel(nullptr),
783   mWlOutput(nullptr),
784   mWlInputPanelSurface(nullptr),
785   mEglWindow(nullptr),
786   mDisplay(nullptr),
787   mEventQueue(nullptr),
788   mTizenPolicy(nullptr),
789   mTizenDisplayPolicy(nullptr),
790   mKeyMap(nullptr),
791   mSupportedAuxiliaryHints(),
792   mWindowPositionSize(positionSize),
793   mAuxiliaryHints(),
794   mType(WindowType::NORMAL),
795   mNotificationLevel(-1),
796   mScreenOffMode(0),
797   mBrightness(0),
798   mWindowRotationAngle(0),
799   mScreenRotationAngle(0),
800   mSupportedPreProtation(0),
801   mNotificationChangeState(0),
802   mScreenOffModeChangeState(0),
803   mBrightnessChangeState(0),
804   mLastSubmittedMoveResizeSerial(0),
805   mMoveResizeSerial(0),
806   mNotificationLevelChangeDone(true),
807   mScreenOffModeChangeDone(true),
808   mVisible(true),
809   mOwnSurface(false),
810   mBrightnessChangeDone(true)
811 {
812   Initialize(positionSize, surface, isTransparent);
813 }
814
815 WindowBaseEcoreWl2::~WindowBaseEcoreWl2()
816 {
817 #if defined(VCONF_ENABLED)
818   vconf_ignore_key_changed(VCONFKEY_SETAPPL_ACCESSIBILITY_FONT_SIZE, VconfNotifyFontSizeChanged);
819   vconf_ignore_key_changed(DALI_VCONFKEY_SETAPPL_ACCESSIBILITY_FONT_NAME, VconfNotifyFontNameChanged);
820 #endif
821
822   for(Dali::Vector<Ecore_Event_Handler*>::Iterator iter = mEcoreEventHandler.Begin(), endIter = mEcoreEventHandler.End(); iter != endIter; ++iter)
823   {
824     ecore_event_handler_del(*iter);
825   }
826   mEcoreEventHandler.Clear();
827
828   if(mEventQueue)
829   {
830     wl_event_queue_destroy(mEventQueue);
831   }
832
833   mSupportedAuxiliaryHints.clear();
834   mAuxiliaryHints.clear();
835
836   if(mEglWindow != NULL)
837   {
838     wl_egl_window_destroy(mEglWindow);
839     mEglWindow = NULL;
840   }
841
842   if(mOwnSurface)
843   {
844     ecore_wl2_window_free(mEcoreWindow);
845   }
846 }
847
848 void WindowBaseEcoreWl2::Initialize(PositionSize positionSize, Any surface, bool isTransparent)
849 {
850   if(surface.Empty() == false)
851   {
852     // check we have a valid type
853     DALI_ASSERT_ALWAYS((surface.GetType() == typeid(Ecore_Wl2_Window*)) && "Surface type is invalid");
854
855     mEcoreWindow = AnyCast<Ecore_Wl2_Window*>(surface);
856   }
857   else
858   {
859     // we own the surface about to created
860     mOwnSurface = true;
861     CreateWindow(positionSize);
862   }
863
864   mWlSurface = ecore_wl2_window_surface_get(mEcoreWindow);
865
866   SetTransparency(isTransparent);
867
868   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_WINDOW_ICONIFY_STATE_CHANGE, EcoreEventWindowIconifyStateChanged, this));
869   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_FOCUS_IN, EcoreEventWindowFocusIn, this));
870   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_FOCUS_OUT, EcoreEventWindowFocusOut, this));
871   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_OUTPUT_TRANSFORM, EcoreEventOutputTransform, this));
872   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_IGNORE_OUTPUT_TRANSFORM, EcoreEventIgnoreOutputTransform, this));
873
874   // Register Rotate event
875   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_WINDOW_ROTATE, EcoreEventRotate, this));
876
877   // Register Configure event
878   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_WINDOW_CONFIGURE, EcoreEventConfigure, this));
879
880   // Register Touch events
881   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_EVENT_MOUSE_BUTTON_DOWN, EcoreEventMouseButtonDown, this));
882   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_EVENT_MOUSE_BUTTON_UP, EcoreEventMouseButtonUp, this));
883   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_EVENT_MOUSE_MOVE, EcoreEventMouseButtonMove, this));
884   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_EVENT_MOUSE_BUTTON_CANCEL, EcoreEventMouseButtonCancel, this));
885
886   // Register Mouse wheel events
887   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_EVENT_MOUSE_WHEEL, EcoreEventMouseWheel, this));
888
889   // Register Detent event
890   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_EVENT_DETENT_ROTATE, EcoreEventDetentRotation, this));
891
892   // Register Key events
893   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_EVENT_KEY_DOWN, EcoreEventKeyDown, this));
894   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_EVENT_KEY_UP, EcoreEventKeyUp, this));
895
896   // Register Selection event - clipboard selection
897   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_DATA_SOURCE_SEND, EcoreEventDataSend, this));
898   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_SELECTION_DATA_READY, EcoreEventDataReceive, this));
899
900   // Register Effect Start/End event
901   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_EFFECT_START, EcoreEventEffectStart, this));
902   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_EFFECT_END, EcoreEventEffectEnd, this));
903
904   // Register Keyboard repeat event
905   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_SEAT_KEYBOARD_REPEAT_CHANGED, EcoreEventSeatKeyboardRepeatChanged, this));
906
907   // Register Window redraw request event
908   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_WINDOW_REDRAW_REQUEST, EcoreEventWindowRedrawRequest, this));
909
910   // Register Window auxiliary event
911   mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_AUX_MESSAGE, EcoreEventWindowAuxiliaryMessage, this));
912
913 #if defined(VCONF_ENABLED)
914   // Register Vconf notify - font name and size
915   vconf_notify_key_changed_for_ui_thread(DALI_VCONFKEY_SETAPPL_ACCESSIBILITY_FONT_NAME, VconfNotifyFontNameChanged, this);
916   vconf_notify_key_changed_for_ui_thread(VCONFKEY_SETAPPL_ACCESSIBILITY_FONT_SIZE, VconfNotifyFontSizeChanged, this);
917 #endif
918
919   Ecore_Wl2_Display* display = ecore_wl2_connected_display_get(NULL);
920   mDisplay                   = ecore_wl2_display_get(display);
921
922   if(mDisplay)
923   {
924     wl_display* displayWrapper = static_cast<wl_display*>(wl_proxy_create_wrapper(mDisplay));
925     if(displayWrapper)
926     {
927       mEventQueue = wl_display_create_queue(mDisplay);
928       if(mEventQueue)
929       {
930         wl_proxy_set_queue(reinterpret_cast<wl_proxy*>(displayWrapper), mEventQueue);
931
932         wl_registry* registry = wl_display_get_registry(displayWrapper);
933         wl_registry_add_listener(registry, &registryListener, this);
934       }
935
936       wl_proxy_wrapper_destroy(displayWrapper);
937     }
938   }
939
940   Ecore_Wl2_Input* ecoreWlInput = ecore_wl2_input_default_input_get(display);
941
942   if(ecoreWlInput)
943   {
944     mKeyMap = ecore_wl2_input_keymap_get(ecoreWlInput);
945
946     mEcoreEventHandler.PushBack(ecore_event_handler_add(ECORE_WL2_EVENT_SEAT_KEYMAP_CHANGED, EcoreEventSeatKeymapChanged, this));
947   }
948
949   // get auxiliary hint
950   Eina_List* hints = ecore_wl2_window_aux_hints_supported_get(mEcoreWindow);
951   if(hints)
952   {
953     Eina_List* l    = NULL;
954     char*      hint = NULL;
955
956     for(l = hints, (hint = static_cast<char*>(eina_list_data_get(l))); l; l = eina_list_next(l), (hint = static_cast<char*>(eina_list_data_get(l))))
957     {
958       mSupportedAuxiliaryHints.push_back(hint);
959
960       DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::Initialize: %s\n", hint);
961     }
962   }
963 }
964
965 Eina_Bool WindowBaseEcoreWl2::OnIconifyStateChanged(void* data, int type, void* event)
966 {
967   Ecore_Wl2_Event_Window_Iconify_State_Change* iconifyChangedEvent(static_cast<Ecore_Wl2_Event_Window_Iconify_State_Change*>(event));
968   Eina_Bool                                    handled(ECORE_CALLBACK_PASS_ON);
969
970   if(iconifyChangedEvent->win == static_cast<unsigned int>(ecore_wl2_window_id_get(mEcoreWindow)))
971   {
972     if(iconifyChangedEvent->iconified == EINA_TRUE)
973     {
974       mIconifyChangedSignal.Emit(true);
975     }
976     else
977     {
978       mIconifyChangedSignal.Emit(false);
979     }
980     handled = ECORE_CALLBACK_DONE;
981   }
982
983   return handled;
984 }
985
986 Eina_Bool WindowBaseEcoreWl2::OnFocusIn(void* data, int type, void* event)
987 {
988   Ecore_Wl2_Event_Focus_In* focusInEvent(static_cast<Ecore_Wl2_Event_Focus_In*>(event));
989
990   if(focusInEvent->window == static_cast<unsigned int>(ecore_wl2_window_id_get(mEcoreWindow)))
991   {
992     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "Window EcoreEventWindowFocusIn\n");
993
994     mFocusChangedSignal.Emit(true);
995   }
996
997   return ECORE_CALLBACK_PASS_ON;
998 }
999
1000 Eina_Bool WindowBaseEcoreWl2::OnFocusOut(void* data, int type, void* event)
1001 {
1002   Ecore_Wl2_Event_Focus_Out* focusOutEvent(static_cast<Ecore_Wl2_Event_Focus_Out*>(event));
1003
1004   if(focusOutEvent->window == static_cast<unsigned int>(ecore_wl2_window_id_get(mEcoreWindow)))
1005   {
1006     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "Window EcoreEventWindowFocusOut\n");
1007
1008     mFocusChangedSignal.Emit(false);
1009   }
1010
1011   return ECORE_CALLBACK_PASS_ON;
1012 }
1013
1014 Eina_Bool WindowBaseEcoreWl2::OnOutputTransform(void* data, int type, void* event)
1015 {
1016   Ecore_Wl2_Event_Output_Transform* transformEvent(static_cast<Ecore_Wl2_Event_Output_Transform*>(event));
1017
1018   if(transformEvent->output == ecore_wl2_window_output_find(mEcoreWindow))
1019   {
1020     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "Window (%p) EcoreEventOutputTransform\n", mEcoreWindow);
1021
1022     mScreenRotationAngle = GetScreenRotationAngle();
1023
1024     mOutputTransformedSignal.Emit();
1025   }
1026
1027   return ECORE_CALLBACK_PASS_ON;
1028 }
1029
1030 Eina_Bool WindowBaseEcoreWl2::OnIgnoreOutputTransform(void* data, int type, void* event)
1031 {
1032   Ecore_Wl2_Event_Ignore_Output_Transform* ignoreTransformEvent(static_cast<Ecore_Wl2_Event_Ignore_Output_Transform*>(event));
1033
1034   if(ignoreTransformEvent->win == mEcoreWindow)
1035   {
1036     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "Window (%p) EcoreEventIgnoreOutputTransform\n", mEcoreWindow);
1037
1038     mScreenRotationAngle = GetScreenRotationAngle();
1039
1040     mOutputTransformedSignal.Emit();
1041   }
1042
1043   return ECORE_CALLBACK_PASS_ON;
1044 }
1045
1046 void WindowBaseEcoreWl2::OnRotation(void* data, int type, void* event)
1047 {
1048   Ecore_Wl2_Event_Window_Rotation* ev(static_cast<Ecore_Wl2_Event_Window_Rotation*>(event));
1049
1050   if(ev->win == static_cast<unsigned int>(ecore_wl2_window_id_get(mEcoreWindow)))
1051   {
1052     DALI_LOG_RELEASE_INFO("WindowBaseEcoreWl2::OnRotation, angle: %d, width: %d, height: %d\n", ev->angle, ev->w, ev->h);
1053
1054     RotationEvent rotationEvent;
1055     rotationEvent.angle     = ev->angle;
1056     rotationEvent.winResize = 0;
1057
1058     if(ev->w == 0 || ev->h == 0)
1059     {
1060       // When rotation event does not have the window width or height,
1061       // previous DALi side window's size are used.
1062       ev->w = mWindowPositionSize.width;
1063       ev->h = mWindowPositionSize.height;
1064     }
1065
1066     mWindowRotationAngle = ev->angle;
1067
1068     mWindowPositionSize.width  = ev->w;
1069     mWindowPositionSize.height = ev->h;
1070
1071     PositionSize newPositionSize = RecalculatePositionSizeToCurrentOrientation(mWindowPositionSize);
1072
1073     rotationEvent.x      = newPositionSize.x;
1074     rotationEvent.y      = newPositionSize.y;
1075     rotationEvent.width  = newPositionSize.width;
1076     rotationEvent.height = newPositionSize.height;
1077
1078     mRotationSignal.Emit(rotationEvent);
1079   }
1080 }
1081
1082 void WindowBaseEcoreWl2::OnConfiguration(void* data, int type, void* event)
1083 {
1084   Ecore_Wl2_Event_Window_Configure* ev(static_cast<Ecore_Wl2_Event_Window_Configure*>(event));
1085
1086   if(ev && ev->win == static_cast<unsigned int>(ecore_wl2_window_id_get(mEcoreWindow)))
1087   {
1088     // Note: To comply with the wayland protocol, Dali should make an ack_configure
1089     // by calling ecore_wl2_window_commit
1090
1091     int tempWidth  = ev->w;
1092     int tempHeight = ev->h;
1093
1094     // Initialize with previous size for skip resize when new size is 0.
1095     // When window is just moved or window is resized by client application,
1096     // The configure notification event's size will be 0.
1097     // If new size is 0, the resized work should be skip.
1098     int  newWidth    = mWindowPositionSize.width;
1099     int  newHeight   = mWindowPositionSize.height;
1100     bool windowMoved = false, windowResized = false;
1101
1102     if(ev->x != mWindowPositionSize.x || ev->y != mWindowPositionSize.y)
1103     {
1104       windowMoved = true;
1105     }
1106
1107     if(tempWidth != 0 && tempHeight != 0 && (tempWidth != mWindowPositionSize.width || tempHeight != mWindowPositionSize.height))
1108     {
1109       windowResized = true;
1110       newWidth      = tempWidth;
1111       newHeight     = tempHeight;
1112     }
1113
1114     if(windowMoved || windowResized)
1115     {
1116       mWindowPositionSize.x      = ev->x;
1117       mWindowPositionSize.y      = ev->y;
1118       mWindowPositionSize.width  = newWidth;
1119       mWindowPositionSize.height = newHeight;
1120       DALI_LOG_RELEASE_INFO("Update position & resize signal by server, current angle [%d] x[%d] y[%d] w[%d] h[%d]\n", mWindowRotationAngle, mWindowPositionSize.x, mWindowPositionSize.y, mWindowPositionSize.width, mWindowPositionSize.height);
1121
1122       ecore_wl2_window_geometry_set(mEcoreWindow, mWindowPositionSize.x, mWindowPositionSize.y, mWindowPositionSize.width, mWindowPositionSize.height);
1123
1124       Dali::PositionSize newPositionSize = RecalculatePositionSizeToCurrentOrientation(mWindowPositionSize);
1125       mUpdatePositionSizeSignal.Emit(newPositionSize);
1126     }
1127
1128     mMaximizeChangedSignal.Emit(static_cast<bool>(ev->states & ECORE_WL2_WINDOW_STATE_MAXIMIZED));
1129
1130     ecore_wl2_window_commit(mEcoreWindow, EINA_FALSE);
1131   }
1132 }
1133
1134 void WindowBaseEcoreWl2::OnMouseButtonDown(void* data, int type, void* event)
1135 {
1136   Ecore_Event_Mouse_Button* touchEvent = static_cast<Ecore_Event_Mouse_Button*>(event);
1137
1138   if(touchEvent->window == static_cast<unsigned int>(ecore_wl2_window_id_get(mEcoreWindow)))
1139   {
1140     Device::Class::Type    deviceClass;
1141     Device::Subclass::Type deviceSubclass;
1142
1143     GetDeviceClass(ecore_device_class_get(touchEvent->dev), deviceClass);
1144     GetDeviceSubclass(ecore_device_subclass_get(touchEvent->dev), deviceSubclass);
1145
1146     PointState::Type state(PointState::DOWN);
1147
1148     if(deviceClass != Device::Class::Type::MOUSE)
1149     {
1150       // Check if the buttons field is set and ensure it's the primary touch button.
1151       // If this event was triggered by buttons other than the primary button (used for touch), then
1152       // just send an interrupted event to Core.
1153       if(touchEvent->buttons && (touchEvent->buttons != PRIMARY_TOUCH_BUTTON_ID))
1154       {
1155         state = PointState::INTERRUPTED;
1156       }
1157     }
1158
1159     Integration::Point point;
1160     point.SetDeviceId(touchEvent->multi.device);
1161     point.SetState(state);
1162     point.SetScreenPosition(Vector2(touchEvent->x, touchEvent->y));
1163     point.SetRadius(touchEvent->multi.radius, Vector2(touchEvent->multi.radius_x, touchEvent->multi.radius_y));
1164     point.SetPressure(touchEvent->multi.pressure);
1165     point.SetAngle(Degree(touchEvent->multi.angle));
1166     point.SetDeviceClass(deviceClass);
1167     point.SetDeviceSubclass(deviceSubclass);
1168     point.SetMouseButton(static_cast<MouseButton::Type>(touchEvent->buttons));
1169
1170     mTouchEventSignal.Emit(point, touchEvent->timestamp);
1171   }
1172 }
1173
1174 void WindowBaseEcoreWl2::OnMouseButtonUp(void* data, int type, void* event)
1175 {
1176   Ecore_Event_Mouse_Button* touchEvent = static_cast<Ecore_Event_Mouse_Button*>(event);
1177
1178   if(touchEvent->window == static_cast<unsigned int>(ecore_wl2_window_id_get(mEcoreWindow)))
1179   {
1180     Device::Class::Type    deviceClass;
1181     Device::Subclass::Type deviceSubclass;
1182
1183     GetDeviceClass(ecore_device_class_get(touchEvent->dev), deviceClass);
1184     GetDeviceSubclass(ecore_device_subclass_get(touchEvent->dev), deviceSubclass);
1185
1186     Integration::Point point;
1187     point.SetDeviceId(touchEvent->multi.device);
1188     point.SetState(PointState::UP);
1189     point.SetScreenPosition(Vector2(touchEvent->x, touchEvent->y));
1190     point.SetRadius(touchEvent->multi.radius, Vector2(touchEvent->multi.radius_x, touchEvent->multi.radius_y));
1191     point.SetPressure(touchEvent->multi.pressure);
1192     point.SetAngle(Degree(touchEvent->multi.angle));
1193     point.SetDeviceClass(deviceClass);
1194     point.SetDeviceSubclass(deviceSubclass);
1195     point.SetMouseButton(static_cast<MouseButton::Type>(touchEvent->buttons));
1196
1197     mTouchEventSignal.Emit(point, touchEvent->timestamp);
1198   }
1199 }
1200
1201 void WindowBaseEcoreWl2::OnMouseButtonMove(void* data, int type, void* event)
1202 {
1203   Ecore_Event_Mouse_Move* touchEvent = static_cast<Ecore_Event_Mouse_Move*>(event);
1204
1205   if(touchEvent->window == static_cast<unsigned int>(ecore_wl2_window_id_get(mEcoreWindow)))
1206   {
1207     Device::Class::Type    deviceClass;
1208     Device::Subclass::Type deviceSubclass;
1209
1210     GetDeviceClass(ecore_device_class_get(touchEvent->dev), deviceClass);
1211     GetDeviceSubclass(ecore_device_subclass_get(touchEvent->dev), deviceSubclass);
1212
1213     Integration::Point point;
1214     point.SetDeviceId(touchEvent->multi.device);
1215     point.SetState(PointState::MOTION);
1216     point.SetScreenPosition(Vector2(touchEvent->x, touchEvent->y));
1217     point.SetRadius(touchEvent->multi.radius, Vector2(touchEvent->multi.radius_x, touchEvent->multi.radius_y));
1218     point.SetPressure(touchEvent->multi.pressure);
1219     point.SetAngle(Degree(touchEvent->multi.angle));
1220     point.SetDeviceClass(deviceClass);
1221     point.SetDeviceSubclass(deviceSubclass);
1222
1223     mTouchEventSignal.Emit(point, touchEvent->timestamp);
1224   }
1225 }
1226
1227 void WindowBaseEcoreWl2::OnMouseButtonCancel(void* data, int type, void* event)
1228 {
1229   Ecore_Event_Mouse_Button* touchEvent = static_cast<Ecore_Event_Mouse_Button*>(event);
1230
1231   if(touchEvent->window == static_cast<unsigned int>(ecore_wl2_window_id_get(mEcoreWindow)))
1232   {
1233     Integration::Point point;
1234     point.SetDeviceId(touchEvent->multi.device);
1235     point.SetState(PointState::INTERRUPTED);
1236     point.SetScreenPosition(Vector2(0.0f, 0.0f));
1237
1238     mTouchEventSignal.Emit(point, touchEvent->timestamp);
1239
1240     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::OnMouseButtonCancel\n");
1241   }
1242 }
1243
1244 void WindowBaseEcoreWl2::OnMouseWheel(void* data, int type, void* event)
1245 {
1246   Ecore_Event_Mouse_Wheel* mouseWheelEvent = static_cast<Ecore_Event_Mouse_Wheel*>(event);
1247
1248   if(mouseWheelEvent->window == static_cast<unsigned int>(ecore_wl2_window_id_get(mEcoreWindow)))
1249   {
1250     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::OnMouseWheel: direction: %d, modifiers: %d, x: %d, y: %d, z: %d\n", mouseWheelEvent->direction, mouseWheelEvent->modifiers, mouseWheelEvent->x, mouseWheelEvent->y, mouseWheelEvent->z);
1251
1252     Integration::WheelEvent wheelEvent(Integration::WheelEvent::MOUSE_WHEEL, mouseWheelEvent->direction, mouseWheelEvent->modifiers, Vector2(mouseWheelEvent->x, mouseWheelEvent->y), mouseWheelEvent->z, mouseWheelEvent->timestamp);
1253
1254     mWheelEventSignal.Emit(wheelEvent);
1255   }
1256 }
1257
1258 void WindowBaseEcoreWl2::OnDetentRotation(void* data, int type, void* event)
1259 {
1260   Ecore_Event_Detent_Rotate* detentEvent = static_cast<Ecore_Event_Detent_Rotate*>(event);
1261
1262   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Concise, "WindowBaseEcoreWl2::OnDetentRotation\n");
1263
1264   int32_t clockwise = (detentEvent->direction == ECORE_DETENT_DIRECTION_CLOCKWISE) ? 1 : -1;
1265
1266   Integration::WheelEvent wheelEvent(Integration::WheelEvent::CUSTOM_WHEEL, detentEvent->direction, 0, Vector2(0.0f, 0.0f), clockwise, detentEvent->timestamp);
1267
1268   mWheelEventSignal.Emit(wheelEvent);
1269 }
1270
1271 void WindowBaseEcoreWl2::OnKeyDown(void* data, int type, void* event)
1272 {
1273   Ecore_Event_Key* keyEvent = static_cast<Ecore_Event_Key*>(event);
1274
1275   if(keyEvent->window == static_cast<unsigned int>(ecore_wl2_window_id_get(mEcoreWindow)))
1276   {
1277     std::string keyName(keyEvent->keyname);
1278     std::string logicalKey("");
1279     std::string keyString("");
1280     std::string compose("");
1281
1282     DALI_TRACE_SCOPE(gTraceFilter, "DALI_ON_KEY_DOWN");
1283
1284     // Ensure key compose string is not NULL as keys like SHIFT or arrow have a null string.
1285     if(keyEvent->compose)
1286     {
1287       compose = keyEvent->compose;
1288     }
1289
1290     // Ensure key symbol is not NULL as keys like SHIFT have a null string.
1291     if(keyEvent->key)
1292     {
1293       logicalKey = keyEvent->key;
1294     }
1295
1296     int keyCode = 0;
1297     GetKeyCode(keyName, keyCode); // Get key code dynamically.
1298
1299     if(keyCode == 0)
1300     {
1301       // Get a specific key code from dali key look up table.
1302       keyCode = KeyLookup::GetDaliKeyCode(keyEvent->keyname);
1303     }
1304
1305     keyCode = (keyCode == -1) ? 0 : keyCode;
1306     int           modifier(keyEvent->modifiers);
1307     unsigned long time = keyEvent->timestamp;
1308     if(!strncmp(keyEvent->keyname, "Keycode-", 8))
1309     {
1310       keyCode = atoi(keyEvent->keyname + 8);
1311     }
1312
1313     // Ensure key event string is not NULL as keys like SHIFT have a null string.
1314     if(keyEvent->string)
1315     {
1316       keyString = keyEvent->string;
1317     }
1318
1319     std::string            deviceName;
1320     Device::Class::Type    deviceClass;
1321     Device::Subclass::Type deviceSubclass;
1322
1323     GetDeviceName(keyEvent, deviceName);
1324     GetDeviceClass(ecore_device_class_get(keyEvent->dev), deviceClass);
1325     GetDeviceSubclass(ecore_device_subclass_get(keyEvent->dev), deviceSubclass);
1326
1327     Integration::KeyEvent keyEvent(keyName, logicalKey, keyString, keyCode, modifier, time, Integration::KeyEvent::DOWN, compose, deviceName, deviceClass, deviceSubclass);
1328
1329     mKeyEventSignal.Emit(keyEvent);
1330   }
1331 }
1332
1333 void WindowBaseEcoreWl2::OnKeyUp(void* data, int type, void* event)
1334 {
1335   Ecore_Event_Key* keyEvent = static_cast<Ecore_Event_Key*>(event);
1336
1337   if(keyEvent->window == static_cast<unsigned int>(ecore_wl2_window_id_get(mEcoreWindow)))
1338   {
1339 #if defined(ECORE_VERSION_MAJOR) && (ECORE_VERSION_MAJOR >= 1) && defined(ECORE_VERSION_MINOR) && (ECORE_VERSION_MINOR >= 23)
1340     // Cancel processing flag is sent because this key event will combine with the previous key. So, the event should not actually perform anything.
1341     if(keyEvent->event_flags & ECORE_EVENT_FLAG_CANCEL)
1342     {
1343       DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::OnKeyUp: This event flag indicates the event is canceled. \n");
1344       return;
1345     }
1346 #endif // Since ecore 1.23 version
1347
1348     std::string keyName(keyEvent->keyname);
1349     std::string logicalKey("");
1350     std::string keyString("");
1351     std::string compose("");
1352
1353     DALI_TRACE_SCOPE(gTraceFilter, "DALI_ON_KEY_UP");
1354
1355     // Ensure key compose string is not NULL as keys like SHIFT or arrow have a null string.
1356     if(keyEvent->compose)
1357     {
1358       compose = keyEvent->compose;
1359     }
1360
1361     // Ensure key symbol is not NULL as keys like SHIFT have a null string.
1362     if(keyEvent->key)
1363     {
1364       logicalKey = keyEvent->key;
1365     }
1366
1367     int keyCode = 0;
1368     GetKeyCode(keyName, keyCode); // Get key code dynamically.
1369
1370     if(keyCode == 0)
1371     {
1372       // Get a specific key code from dali key look up table.
1373       keyCode = KeyLookup::GetDaliKeyCode(keyEvent->keyname);
1374     }
1375
1376     keyCode = (keyCode == -1) ? 0 : keyCode;
1377     int           modifier(keyEvent->modifiers);
1378     unsigned long time = keyEvent->timestamp;
1379     if(!strncmp(keyEvent->keyname, "Keycode-", 8))
1380     {
1381       keyCode = atoi(keyEvent->keyname + 8);
1382     }
1383
1384     // Ensure key event string is not NULL as keys like SHIFT have a null string.
1385     if(keyEvent->string)
1386     {
1387       keyString = keyEvent->string;
1388     }
1389
1390     std::string            deviceName;
1391     Device::Class::Type    deviceClass;
1392     Device::Subclass::Type deviceSubclass;
1393
1394     GetDeviceName(keyEvent, deviceName);
1395     GetDeviceClass(ecore_device_class_get(keyEvent->dev), deviceClass);
1396     GetDeviceSubclass(ecore_device_subclass_get(keyEvent->dev), deviceSubclass);
1397
1398     Integration::KeyEvent keyEvent(keyName, logicalKey, keyString, keyCode, modifier, time, Integration::KeyEvent::UP, compose, deviceName, deviceClass, deviceSubclass);
1399
1400     mKeyEventSignal.Emit(keyEvent);
1401   }
1402 }
1403
1404 void WindowBaseEcoreWl2::OnDataSend(void* data, int type, void* event)
1405 {
1406   mSelectionDataSendSignal.Emit(event);
1407 }
1408
1409 void WindowBaseEcoreWl2::OnDataReceive(void* data, int type, void* event)
1410 {
1411   mSelectionDataReceivedSignal.Emit(event);
1412 }
1413
1414 void WindowBaseEcoreWl2::OnFontNameChanged()
1415 {
1416   mStyleChangedSignal.Emit(StyleChange::DEFAULT_FONT_CHANGE);
1417 }
1418
1419 void WindowBaseEcoreWl2::OnFontSizeChanged()
1420 {
1421   mStyleChangedSignal.Emit(StyleChange::DEFAULT_FONT_SIZE_CHANGE);
1422 }
1423
1424 void WindowBaseEcoreWl2::OnTransitionEffectEvent(WindowEffectState state, WindowEffectType type)
1425 {
1426   mTransitionEffectEventSignal.Emit(state, type);
1427 }
1428
1429 void WindowBaseEcoreWl2::OnKeyboardRepeatSettingsChanged()
1430 {
1431   mKeyboardRepeatSettingsChangedSignal.Emit();
1432 }
1433
1434 void WindowBaseEcoreWl2::OnEcoreEventWindowRedrawRequest()
1435 {
1436   mWindowRedrawRequestSignal.Emit();
1437 }
1438
1439 void WindowBaseEcoreWl2::OnEcoreEventWindowAuxiliaryMessage(void* event)
1440 {
1441   Ecore_Wl2_Event_Aux_Message* message = static_cast<Ecore_Wl2_Event_Aux_Message*>(event);
1442   if(message)
1443   {
1444     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::OnEcoreEventWindowAuxiliaryMessage, key:%s, value:%s \n", message->key, message->val);
1445     std::string           key(message->key);
1446     std::string           value(message->val);
1447     Dali::Property::Array options;
1448
1449     if(message->options)
1450     {
1451       Eina_List* l;
1452       void*      data;
1453       EINA_LIST_FOREACH(message->options, l, data)
1454       {
1455         DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::OnEcoreEventWindowAuxiliaryMessage, option: %s\n", (char*)data);
1456         std::string option(static_cast<char*>(data));
1457         options.Add(option);
1458       }
1459     }
1460
1461     mAuxiliaryMessageSignal.Emit(key, value, options);
1462   }
1463 }
1464
1465 void WindowBaseEcoreWl2::KeymapChanged(void* data, int type, void* event)
1466 {
1467   Ecore_Wl2_Event_Seat_Keymap_Changed* changed = static_cast<Ecore_Wl2_Event_Seat_Keymap_Changed*>(event);
1468   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::KeymapChanged, keymap id[ %d ]\n", changed->id);
1469   Ecore_Wl2_Input* ecoreWlInput = ecore_wl2_input_default_input_get(changed->display);
1470   if(ecoreWlInput)
1471   {
1472     mKeyMap = ecore_wl2_input_keymap_get(ecoreWlInput);
1473   }
1474 }
1475
1476 void WindowBaseEcoreWl2::RegistryGlobalCallback(void* data, struct wl_registry* registry, uint32_t name, const char* interface, uint32_t version)
1477 {
1478   if(strcmp(interface, tizen_policy_interface.name) == 0)
1479   {
1480     uint32_t clientVersion = std::min(version, MAX_TIZEN_CLIENT_VERSION);
1481
1482     mTizenPolicy = static_cast<tizen_policy*>(wl_registry_bind(registry, name, &tizen_policy_interface, clientVersion));
1483     if(!mTizenPolicy)
1484     {
1485       DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::RegistryGlobalCallback: wl_registry_bind(tizen_policy_interface) is failed.\n");
1486       return;
1487     }
1488
1489     tizen_policy_add_listener(mTizenPolicy, &tizenPolicyListener, data);
1490
1491     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::RegistryGlobalCallback: tizen_policy_add_listener is called.\n");
1492   }
1493   else if(strcmp(interface, tizen_display_policy_interface.name) == 0)
1494   {
1495     mTizenDisplayPolicy = static_cast<tizen_display_policy*>(wl_registry_bind(registry, name, &tizen_display_policy_interface, version));
1496     if(!mTizenDisplayPolicy)
1497     {
1498       DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::RegistryGlobalCallback: wl_registry_bind(tizen_display_policy_interface) is failed.\n");
1499       return;
1500     }
1501
1502     tizen_display_policy_add_listener(mTizenDisplayPolicy, &tizenDisplayPolicyListener, data);
1503
1504     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::RegistryGlobalCallback: tizen_display_policy_add_listener is called.\n");
1505   }
1506 }
1507
1508 void WindowBaseEcoreWl2::RegistryGlobalCallbackRemove(void* data, struct wl_registry* registry, uint32_t id)
1509 {
1510   mTizenPolicy        = NULL;
1511   mTizenDisplayPolicy = NULL;
1512 }
1513
1514 void WindowBaseEcoreWl2::TizenPolicyNotificationChangeDone(void* data, struct tizen_policy* tizenPolicy, struct wl_surface* surface, int32_t level, uint32_t state)
1515 {
1516   mNotificationLevel           = level;
1517   mNotificationChangeState     = state;
1518   mNotificationLevelChangeDone = true;
1519
1520   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::TizenPolicyNotificationChangeDone: level = %d, state = %d\n", level, state);
1521 }
1522
1523 void WindowBaseEcoreWl2::TizenPolicyScreenModeChangeDone(void* data, struct tizen_policy* tizenPolicy, struct wl_surface* surface, uint32_t mode, uint32_t state)
1524 {
1525   mScreenOffMode            = mode;
1526   mScreenOffModeChangeState = state;
1527   mScreenOffModeChangeDone  = true;
1528
1529   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::TizenPolicyScreenModeChangeDone: mode = %d, state = %d\n", mode, state);
1530 }
1531
1532 void WindowBaseEcoreWl2::DisplayPolicyBrightnessChangeDone(void* data, struct tizen_display_policy* displayPolicy, struct wl_surface* surface, int32_t brightness, uint32_t state)
1533 {
1534   mBrightness            = brightness;
1535   mBrightnessChangeState = state;
1536   mBrightnessChangeDone  = true;
1537
1538   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "WindowBaseEcoreWl2::DisplayPolicyBrightnessChangeDone: brightness = %d, state = %d\n", brightness, state);
1539 }
1540
1541 void WindowBaseEcoreWl2::GetKeyCode(std::string keyName, int32_t& keyCode)
1542 {
1543   xkb_keysym_t sym = XKB_KEY_NoSymbol;
1544   KeyCodeMap   foundKeyCode;
1545
1546   sym = xkb_keysym_from_name(keyName.c_str(), XKB_KEYSYM_NO_FLAGS);
1547   if(sym == XKB_KEY_NoSymbol)
1548   {
1549     DALI_LOG_ERROR("Failed to get keysym in WindowBaseEcoreWl2\n");
1550     return;
1551   }
1552
1553   foundKeyCode.keySym    = sym;
1554   foundKeyCode.isKeyCode = false;
1555   xkb_keymap_key_for_each(mKeyMap, FindKeyCode, &foundKeyCode);
1556   keyCode = static_cast<int32_t>(foundKeyCode.keyCode);
1557 }
1558
1559 Any WindowBaseEcoreWl2::GetNativeWindow()
1560 {
1561   return mEcoreWindow;
1562 }
1563
1564 int WindowBaseEcoreWl2::GetNativeWindowId()
1565 {
1566   return ecore_wl2_window_id_get(mEcoreWindow);
1567 }
1568
1569 std::string WindowBaseEcoreWl2::GetNativeWindowResourceId()
1570 {
1571 #ifdef OVER_TIZEN_VERSION_7
1572   return std::to_string(ecore_wl2_window_resource_id_get(mEcoreWindow));
1573 #else
1574   return std::string();
1575 #endif
1576 }
1577
1578 EGLNativeWindowType WindowBaseEcoreWl2::CreateEglWindow(int width, int height)
1579 {
1580   int totalAngle = (mWindowRotationAngle + mScreenRotationAngle) % 360;
1581   if(totalAngle == 90 || totalAngle == 270)
1582   {
1583     mEglWindow = wl_egl_window_create(mWlSurface, height, width);
1584   }
1585   else
1586   {
1587     mEglWindow = wl_egl_window_create(mWlSurface, width, height);
1588   }
1589
1590   return static_cast<EGLNativeWindowType>(mEglWindow);
1591 }
1592
1593 void WindowBaseEcoreWl2::DestroyEglWindow()
1594 {
1595   if(mEglWindow != NULL)
1596   {
1597     wl_egl_window_destroy(mEglWindow);
1598     mEglWindow = NULL;
1599   }
1600 }
1601
1602 void WindowBaseEcoreWl2::SetEglWindowRotation(int angle)
1603 {
1604   wl_egl_window_tizen_rotation rotation;
1605
1606   switch(angle)
1607   {
1608     case 0:
1609     {
1610       rotation = WL_EGL_WINDOW_TIZEN_ROTATION_0;
1611       break;
1612     }
1613     case 90:
1614     {
1615       rotation = WL_EGL_WINDOW_TIZEN_ROTATION_270;
1616       break;
1617     }
1618     case 180:
1619     {
1620       rotation = WL_EGL_WINDOW_TIZEN_ROTATION_180;
1621       break;
1622     }
1623     case 270:
1624     {
1625       rotation = WL_EGL_WINDOW_TIZEN_ROTATION_90;
1626       break;
1627     }
1628     default:
1629     {
1630       rotation = WL_EGL_WINDOW_TIZEN_ROTATION_0;
1631       break;
1632     }
1633   }
1634
1635   wl_egl_window_tizen_set_rotation(mEglWindow, rotation);
1636 }
1637
1638 void WindowBaseEcoreWl2::SetEglWindowBufferTransform(int angle)
1639 {
1640   wl_output_transform bufferTransform;
1641
1642   switch(angle)
1643   {
1644     case 0:
1645     {
1646       bufferTransform = WL_OUTPUT_TRANSFORM_NORMAL;
1647       break;
1648     }
1649     case 90:
1650     {
1651       bufferTransform = WL_OUTPUT_TRANSFORM_90;
1652       break;
1653     }
1654     case 180:
1655     {
1656       bufferTransform = WL_OUTPUT_TRANSFORM_180;
1657       break;
1658     }
1659     case 270:
1660     {
1661       bufferTransform = WL_OUTPUT_TRANSFORM_270;
1662       break;
1663     }
1664     default:
1665     {
1666       bufferTransform = WL_OUTPUT_TRANSFORM_NORMAL;
1667       break;
1668     }
1669   }
1670
1671   DALI_LOG_RELEASE_INFO("wl_egl_window_tizen_set_buffer_transform() with buffer Transform [%d]\n", bufferTransform);
1672   wl_egl_window_tizen_set_buffer_transform(mEglWindow, bufferTransform);
1673 }
1674
1675 void WindowBaseEcoreWl2::SetEglWindowTransform(int angle)
1676 {
1677   wl_output_transform windowTransform;
1678
1679   switch(angle)
1680   {
1681     case 0:
1682     {
1683       windowTransform = WL_OUTPUT_TRANSFORM_NORMAL;
1684       break;
1685     }
1686     case 90:
1687     {
1688       windowTransform = WL_OUTPUT_TRANSFORM_90;
1689       break;
1690     }
1691     case 180:
1692     {
1693       windowTransform = WL_OUTPUT_TRANSFORM_180;
1694       break;
1695     }
1696     case 270:
1697     {
1698       windowTransform = WL_OUTPUT_TRANSFORM_270;
1699       break;
1700     }
1701     default:
1702     {
1703       windowTransform = WL_OUTPUT_TRANSFORM_NORMAL;
1704       break;
1705     }
1706   }
1707
1708   DALI_LOG_RELEASE_INFO("wl_egl_window_tizen_set_window_transform() with window Transform [%d]\n", windowTransform);
1709   wl_egl_window_tizen_set_window_transform(mEglWindow, windowTransform);
1710 }
1711
1712 void WindowBaseEcoreWl2::ResizeEglWindow(PositionSize positionSize)
1713 {
1714   DALI_LOG_RELEASE_INFO("wl_egl_window_resize(), (%d, %d) [%d x %d]\n", positionSize.x, positionSize.y, positionSize.width, positionSize.height);
1715   wl_egl_window_resize(mEglWindow, positionSize.width, positionSize.height, positionSize.x, positionSize.y);
1716
1717   // Note: Both "Resize" and "MoveResize" cases can reach here, but only "MoveResize" needs to submit serial number
1718   if(mMoveResizeSerial != mLastSubmittedMoveResizeSerial)
1719   {
1720     wl_egl_window_tizen_set_window_serial(mEglWindow, mMoveResizeSerial);
1721     mLastSubmittedMoveResizeSerial = mMoveResizeSerial;
1722   }
1723 }
1724
1725 bool WindowBaseEcoreWl2::IsEglWindowRotationSupported()
1726 {
1727   // Check capability
1728   wl_egl_window_tizen_capability capability = static_cast<wl_egl_window_tizen_capability>(wl_egl_window_tizen_get_capabilities(mEglWindow));
1729   if(capability == WL_EGL_WINDOW_TIZEN_CAPABILITY_ROTATION_SUPPORTED)
1730   {
1731     mSupportedPreProtation = true;
1732     return true;
1733   }
1734   mSupportedPreProtation = false;
1735   return false;
1736 }
1737
1738 PositionSize WindowBaseEcoreWl2::RecalculatePositionSizeToSystem(PositionSize positionSize)
1739 {
1740   PositionSize newPositionSize;
1741   int32_t      screenWidth, screenHeight;
1742   WindowSystem::GetScreenSize(screenWidth, screenHeight);
1743
1744   if(mWindowRotationAngle == 90)
1745   {
1746     newPositionSize.x      = positionSize.y;
1747     newPositionSize.y      = screenHeight - (positionSize.x + positionSize.width);
1748     newPositionSize.width  = positionSize.height;
1749     newPositionSize.height = positionSize.width;
1750   }
1751   else if(mWindowRotationAngle == 180)
1752   {
1753     newPositionSize.x      = screenWidth - (positionSize.x + positionSize.width);
1754     newPositionSize.y      = screenHeight - (positionSize.y + positionSize.height);
1755     newPositionSize.width  = positionSize.width;
1756     newPositionSize.height = positionSize.height;
1757   }
1758   else if(mWindowRotationAngle == 270)
1759   {
1760     newPositionSize.x      = screenWidth - (positionSize.y + positionSize.height);
1761     newPositionSize.y      = positionSize.x;
1762     newPositionSize.width  = positionSize.height;
1763     newPositionSize.height = positionSize.width;
1764   }
1765   else
1766   {
1767     newPositionSize.x      = positionSize.x;
1768     newPositionSize.y      = positionSize.y;
1769     newPositionSize.width  = positionSize.width;
1770     newPositionSize.height = positionSize.height;
1771   }
1772
1773   return newPositionSize;
1774 }
1775
1776 PositionSize WindowBaseEcoreWl2::RecalculatePositionSizeToCurrentOrientation(PositionSize positionSize)
1777 {
1778   PositionSize newPositionSize;
1779   int32_t      screenWidth, screenHeight;
1780   WindowSystem::GetScreenSize(screenWidth, screenHeight);
1781
1782   if(mWindowRotationAngle == 90)
1783   {
1784     newPositionSize.x      = screenHeight - (positionSize.y + positionSize.height);
1785     newPositionSize.y      = positionSize.x;
1786     newPositionSize.width  = positionSize.height;
1787     newPositionSize.height = positionSize.width;
1788   }
1789   else if(mWindowRotationAngle == 180)
1790   {
1791     newPositionSize.x      = screenWidth - (positionSize.x + positionSize.width);
1792     newPositionSize.y      = screenHeight - (positionSize.y + positionSize.height);
1793     newPositionSize.width  = positionSize.width;
1794     newPositionSize.height = positionSize.height;
1795   }
1796   else if(mWindowRotationAngle == 270)
1797   {
1798     newPositionSize.x      = positionSize.y;
1799     newPositionSize.y      = screenWidth - (positionSize.x + positionSize.width);
1800     newPositionSize.width  = positionSize.height;
1801     newPositionSize.height = positionSize.width;
1802   }
1803   else
1804   {
1805     newPositionSize.x      = positionSize.x;
1806     newPositionSize.y      = positionSize.y;
1807     newPositionSize.width  = positionSize.width;
1808     newPositionSize.height = positionSize.height;
1809   }
1810
1811   return newPositionSize;
1812 }
1813
1814 void WindowBaseEcoreWl2::Move(PositionSize positionSize)
1815 {
1816   PositionSize newPositionSize = RecalculatePositionSizeToSystem(positionSize);
1817
1818   mWindowPositionSize = newPositionSize;
1819   DALI_LOG_RELEASE_INFO("ecore_wl2_window_position_set x[%d], y[%d]\n", newPositionSize.x, newPositionSize.y);
1820   ecore_wl2_window_position_set(mEcoreWindow, newPositionSize.x, newPositionSize.y);
1821 }
1822
1823 void WindowBaseEcoreWl2::Resize(PositionSize positionSize)
1824 {
1825   PositionSize newPositionSize = RecalculatePositionSizeToSystem(positionSize);
1826
1827   mWindowPositionSize = newPositionSize;
1828   DALI_LOG_RELEASE_INFO("ecore_wl2_window_sync_geometry_set, x[%d], y[%d], w{%d], h[%d]\n", newPositionSize.x, newPositionSize.y, newPositionSize.width, newPositionSize.height);
1829   ecore_wl2_window_sync_geometry_set(mEcoreWindow, ++mMoveResizeSerial, newPositionSize.x, newPositionSize.y, newPositionSize.width, newPositionSize.height);
1830 }
1831
1832 void WindowBaseEcoreWl2::MoveResize(PositionSize positionSize)
1833 {
1834   PositionSize newPositionSize = RecalculatePositionSizeToSystem(positionSize);
1835
1836   mWindowPositionSize = newPositionSize;
1837   DALI_LOG_RELEASE_INFO("ecore_wl2_window_sync_geometry_set, x[%d], y[%d], w{%d], h[%d]\n", newPositionSize.x, newPositionSize.y, newPositionSize.width, newPositionSize.height);
1838   ecore_wl2_window_sync_geometry_set(mEcoreWindow, ++mMoveResizeSerial, newPositionSize.x, newPositionSize.y, newPositionSize.width, newPositionSize.height);
1839 }
1840
1841 void WindowBaseEcoreWl2::SetLayout(unsigned int numCols, unsigned int numRows, unsigned int column, unsigned int row, unsigned int colSpan, unsigned int rowSpan)
1842 {
1843   DALI_LOG_RELEASE_INFO("ecore_wl2_window_layout_set, numCols[%d], numRows[%d], column[%d], row[%d], colSpan[%d], rowSpan[%d]\n", numCols, numRows, column, row, colSpan, rowSpan);
1844   ecore_wl2_window_layout_set(mEcoreWindow, numCols, numRows, column, row, colSpan, rowSpan);
1845 }
1846
1847 void WindowBaseEcoreWl2::SetClass(const std::string& name, const std::string& className)
1848 {
1849   ecore_wl2_window_title_set(mEcoreWindow, name.c_str());
1850   ecore_wl2_window_class_set(mEcoreWindow, className.c_str());
1851 }
1852
1853 void WindowBaseEcoreWl2::Raise()
1854 {
1855   // Use ecore_wl2_window_activate to prevent the window shown without rendering
1856   ecore_wl2_window_activate(mEcoreWindow);
1857 }
1858
1859 void WindowBaseEcoreWl2::Lower()
1860 {
1861   ecore_wl2_window_lower(mEcoreWindow);
1862 }
1863
1864 void WindowBaseEcoreWl2::Activate()
1865 {
1866   ecore_wl2_window_activate(mEcoreWindow);
1867 }
1868
1869 void WindowBaseEcoreWl2::Maximize(bool maximize)
1870 {
1871   ecore_wl2_window_maximized_set(mEcoreWindow, maximize);
1872 }
1873
1874 bool WindowBaseEcoreWl2::IsMaximized() const
1875 {
1876   return ecore_wl2_window_maximized_get(mEcoreWindow);
1877 }
1878
1879 void WindowBaseEcoreWl2::SetMaximumSize(Dali::Window::WindowSize size)
1880 {
1881   DALI_LOG_RELEASE_INFO("ecore_wl2_window_maximum_size_set, width: %d, height: %d\n", size.GetWidth(), size.GetHeight());
1882   ecore_wl2_window_maximum_size_set(mEcoreWindow, size.GetWidth(), size.GetHeight());
1883   ecore_wl2_window_commit(mEcoreWindow, EINA_TRUE);
1884 }
1885
1886 void WindowBaseEcoreWl2::Minimize(bool minimize)
1887 {
1888   ecore_wl2_window_iconified_set(mEcoreWindow, minimize);
1889 }
1890
1891 bool WindowBaseEcoreWl2::IsMinimized() const
1892 {
1893   return ecore_wl2_window_iconified_get(mEcoreWindow);
1894 }
1895
1896 void WindowBaseEcoreWl2::SetMimimumSize(Dali::Window::WindowSize size)
1897 {
1898   DALI_LOG_RELEASE_INFO("ecore_wl2_window_minimum_size_set, width: %d, height: %d\n", size.GetWidth(), size.GetHeight());
1899   ecore_wl2_window_minimum_size_set(mEcoreWindow, size.GetWidth(), size.GetHeight());
1900   ecore_wl2_window_commit(mEcoreWindow, EINA_TRUE);
1901 }
1902
1903 void WindowBaseEcoreWl2::SetAvailableAnlges(const std::vector<int>& angles)
1904 {
1905   int rotations[4] = {0};
1906   DALI_LOG_RELEASE_INFO("WindowBaseEcoreWl2::SetAvailableAnlges, angle's count: %d, angles\n", angles.size());
1907   for(std::size_t i = 0; i < angles.size(); ++i)
1908   {
1909     rotations[i] = static_cast<int>(angles[i]);
1910     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::General, "%d ", rotations[i]);
1911   }
1912   ecore_wl2_window_available_rotations_set(mEcoreWindow, rotations, angles.size());
1913 }
1914
1915 void WindowBaseEcoreWl2::SetPreferredAngle(int angle)
1916 {
1917   DALI_LOG_RELEASE_INFO("WindowBaseEcoreWl2::SetPreferredAngle, angle: %d\n", angle);
1918   ecore_wl2_window_preferred_rotation_set(mEcoreWindow, angle);
1919 }
1920
1921 void WindowBaseEcoreWl2::SetAcceptFocus(bool accept)
1922 {
1923   ecore_wl2_window_focus_skip_set(mEcoreWindow, !accept);
1924 }
1925
1926 void WindowBaseEcoreWl2::Show()
1927 {
1928   if(!mVisible)
1929   {
1930     ecore_wl2_window_geometry_set(mEcoreWindow, mWindowPositionSize.x, mWindowPositionSize.y, mWindowPositionSize.width, mWindowPositionSize.height);
1931   }
1932   mVisible = true;
1933
1934   ecore_wl2_window_show(mEcoreWindow);
1935 }
1936
1937 void WindowBaseEcoreWl2::Hide()
1938 {
1939   mVisible = false;
1940   ecore_wl2_window_hide(mEcoreWindow);
1941 }
1942
1943 unsigned int WindowBaseEcoreWl2::GetSupportedAuxiliaryHintCount() const
1944 {
1945   return mSupportedAuxiliaryHints.size();
1946 }
1947
1948 std::string WindowBaseEcoreWl2::GetSupportedAuxiliaryHint(unsigned int index) const
1949 {
1950   if(index >= GetSupportedAuxiliaryHintCount())
1951   {
1952     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::GetSupportedAuxiliaryHint: Invalid index! [%d]\n", index);
1953   }
1954
1955   return mSupportedAuxiliaryHints[index];
1956 }
1957
1958 unsigned int WindowBaseEcoreWl2::AddAuxiliaryHint(const std::string& hint, const std::string& value)
1959 {
1960   bool supported = false;
1961
1962   // Check if the hint is suppported
1963   for(std::vector<std::string>::iterator iter = mSupportedAuxiliaryHints.begin(); iter != mSupportedAuxiliaryHints.end(); ++iter)
1964   {
1965     if(*iter == hint)
1966     {
1967       supported = true;
1968       break;
1969     }
1970   }
1971
1972   if(!supported)
1973   {
1974     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Concise, "WindowBaseEcoreWl2::AddAuxiliaryHint: Not supported auxiliary hint [%s]\n", hint.c_str());
1975     return 0;
1976   }
1977
1978   // Check if the hint is already added
1979   for(unsigned int i = 0; i < mAuxiliaryHints.size(); i++)
1980   {
1981     if(mAuxiliaryHints[i].first == hint)
1982     {
1983       // Just change the value
1984       mAuxiliaryHints[i].second = value;
1985
1986       DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::AddAuxiliaryHint: Change! hint = %s, value = %s, id = %d\n", hint.c_str(), value.c_str(), i + 1);
1987
1988       return i + 1; // id is index + 1
1989     }
1990   }
1991
1992   // Add the hint
1993   mAuxiliaryHints.push_back(std::pair<std::string, std::string>(hint, value));
1994
1995   unsigned int id = mAuxiliaryHints.size();
1996
1997   ecore_wl2_window_aux_hint_add(mEcoreWindow, static_cast<int>(id), hint.c_str(), value.c_str());
1998
1999   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::AddAuxiliaryHint: hint = %s, value = %s, id = %d\n", hint.c_str(), value.c_str(), id);
2000
2001   return id;
2002 }
2003
2004 bool WindowBaseEcoreWl2::RemoveAuxiliaryHint(unsigned int id)
2005 {
2006   if(id == 0 || id > mAuxiliaryHints.size())
2007   {
2008     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Concise, "WindowBaseEcoreWl2::RemoveAuxiliaryHint: Invalid id [%d]\n", id);
2009     return false;
2010   }
2011
2012   mAuxiliaryHints[id - 1].second = std::string();
2013
2014   ecore_wl2_window_aux_hint_del(mEcoreWindow, static_cast<int>(id));
2015
2016   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::RemoveAuxiliaryHint: id = %d, hint = %s\n", id, mAuxiliaryHints[id - 1].first.c_str());
2017
2018   return true;
2019 }
2020
2021 bool WindowBaseEcoreWl2::SetAuxiliaryHintValue(unsigned int id, const std::string& value)
2022 {
2023   if(id == 0 || id > mAuxiliaryHints.size())
2024   {
2025     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Concise, "WindowBaseEcoreWl2::SetAuxiliaryHintValue: Invalid id [%d]\n", id);
2026     return false;
2027   }
2028
2029   mAuxiliaryHints[id - 1].second = value;
2030
2031   ecore_wl2_window_aux_hint_change(mEcoreWindow, static_cast<int>(id), value.c_str());
2032
2033   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::SetAuxiliaryHintValue: id = %d, hint = %s, value = %s\n", id, mAuxiliaryHints[id - 1].first.c_str(), mAuxiliaryHints[id - 1].second.c_str());
2034
2035   return true;
2036 }
2037
2038 std::string WindowBaseEcoreWl2::GetAuxiliaryHintValue(unsigned int id) const
2039 {
2040   if(id == 0 || id > mAuxiliaryHints.size())
2041   {
2042     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Concise, "WindowBaseEcoreWl2::GetAuxiliaryHintValue: Invalid id [%d]\n", id);
2043     return std::string();
2044   }
2045
2046   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::GetAuxiliaryHintValue: id = %d, hint = %s, value = %s\n", id, mAuxiliaryHints[id - 1].first.c_str(), mAuxiliaryHints[id - 1].second.c_str());
2047
2048   return mAuxiliaryHints[id - 1].second;
2049 }
2050
2051 unsigned int WindowBaseEcoreWl2::GetAuxiliaryHintId(const std::string& hint) const
2052 {
2053   for(unsigned int i = 0; i < mAuxiliaryHints.size(); i++)
2054   {
2055     if(mAuxiliaryHints[i].first == hint)
2056     {
2057       DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::GetAuxiliaryHintId: hint = %s, id = %d\n", hint.c_str(), i + 1);
2058       return i + 1;
2059     }
2060   }
2061
2062   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::GetAuxiliaryHintId: Invalid hint! [%s]\n", hint.c_str());
2063
2064   return 0;
2065 }
2066
2067
2068 Rect<int> WindowBaseEcoreWl2::RecalculateInputRect(const Rect<int>& rect)
2069 {
2070   Rect<int> newRect;
2071
2072   if(mWindowRotationAngle == 90)
2073   {
2074     newRect.x      = rect.y;
2075     newRect.y      = mWindowPositionSize.height - (rect.x + rect.width);
2076     newRect.width  = rect.height;
2077     newRect.height = rect.width;
2078   }
2079   else if(mWindowRotationAngle == 180)
2080   {
2081     newRect.x      = mWindowPositionSize.width - (rect.x + rect.width);
2082     newRect.y      = mWindowPositionSize.height - (rect.y + rect.height);
2083     newRect.width  = rect.width;
2084     newRect.height = rect.height;
2085   }
2086   else if(mWindowRotationAngle == 270)
2087   {
2088     newRect.x      = mWindowPositionSize.width - (rect.y + rect.height);
2089     newRect.y      = rect.x;
2090     newRect.width  = rect.height;
2091     newRect.height = rect.width;
2092   }
2093   else
2094   {
2095     newRect.x      = rect.x;
2096     newRect.y      = rect.y;
2097     newRect.width  = rect.width;
2098     newRect.height = rect.height;
2099   }
2100   return newRect;
2101 }
2102
2103 void WindowBaseEcoreWl2::SetInputRegion(const Rect<int>& inputRegion)
2104 {
2105   Rect<int> convertRegion = RecalculateInputRect(inputRegion);
2106
2107   Eina_Rectangle rect;
2108   rect.x = convertRegion.x;
2109   rect.y = convertRegion.y;
2110   rect.w = convertRegion.width;
2111   rect.h = convertRegion.height;
2112
2113   DALI_LOG_RELEASE_INFO("%p, Set input rect (%d, %d, %d x %d)\n", mEcoreWindow, rect.x, rect.y, rect.w, rect.h);
2114   ecore_wl2_window_input_rect_set(mEcoreWindow, &rect);
2115   ecore_wl2_window_commit(mEcoreWindow, EINA_TRUE);
2116 }
2117
2118 void WindowBaseEcoreWl2::SetType(Dali::WindowType type)
2119 {
2120   if(mType != type)
2121   {
2122     mType = type;
2123     Ecore_Wl2_Window_Type windowType;
2124
2125     switch(type)
2126     {
2127       case Dali::WindowType::NORMAL:
2128       {
2129         windowType = ECORE_WL2_WINDOW_TYPE_TOPLEVEL;
2130         break;
2131       }
2132       case Dali::WindowType::NOTIFICATION:
2133       {
2134         windowType = ECORE_WL2_WINDOW_TYPE_NOTIFICATION;
2135         break;
2136       }
2137       case Dali::WindowType::UTILITY:
2138       {
2139         windowType = ECORE_WL2_WINDOW_TYPE_UTILITY;
2140         break;
2141       }
2142       case Dali::WindowType::DIALOG:
2143       {
2144         windowType = ECORE_WL2_WINDOW_TYPE_DIALOG;
2145         break;
2146       }
2147       case Dali::WindowType::IME:
2148       {
2149         windowType = ECORE_WL2_WINDOW_TYPE_NONE;
2150         break;
2151       }
2152       case Dali::WindowType::DESKTOP:
2153       {
2154         windowType = ECORE_WL2_WINDOW_TYPE_DESKTOP;
2155         break;
2156       }
2157       default:
2158       {
2159         windowType = ECORE_WL2_WINDOW_TYPE_TOPLEVEL;
2160         break;
2161       }
2162     }
2163     ecore_wl2_window_type_set(mEcoreWindow, windowType);
2164   }
2165 }
2166
2167 Dali::WindowType WindowBaseEcoreWl2::GetType() const
2168 {
2169   return mType;
2170 }
2171
2172 Dali::WindowOperationResult WindowBaseEcoreWl2::SetNotificationLevel(Dali::WindowNotificationLevel level)
2173 {
2174   while(!mTizenPolicy)
2175   {
2176     wl_display_dispatch_queue(mDisplay, mEventQueue);
2177   }
2178
2179   int notificationLevel;
2180
2181   switch(level)
2182   {
2183     case Dali::WindowNotificationLevel::NONE:
2184     {
2185       notificationLevel = TIZEN_POLICY_LEVEL_NONE;
2186       break;
2187     }
2188     case Dali::WindowNotificationLevel::BASE:
2189     {
2190       notificationLevel = TIZEN_POLICY_LEVEL_DEFAULT;
2191       break;
2192     }
2193     case Dali::WindowNotificationLevel::MEDIUM:
2194     {
2195       notificationLevel = TIZEN_POLICY_LEVEL_MEDIUM;
2196       break;
2197     }
2198     case Dali::WindowNotificationLevel::HIGH:
2199     {
2200       notificationLevel = TIZEN_POLICY_LEVEL_HIGH;
2201       break;
2202     }
2203     case Dali::WindowNotificationLevel::TOP:
2204     {
2205       notificationLevel = TIZEN_POLICY_LEVEL_TOP;
2206       break;
2207     }
2208     default:
2209     {
2210       DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::SetNotificationLevel: invalid level [%d]\n", level);
2211       notificationLevel = TIZEN_POLICY_LEVEL_DEFAULT;
2212       break;
2213     }
2214   }
2215
2216   mNotificationLevelChangeDone = false;
2217   mNotificationChangeState     = TIZEN_POLICY_ERROR_STATE_NONE;
2218
2219   tizen_policy_set_notification_level(mTizenPolicy, ecore_wl2_window_surface_get(mEcoreWindow), notificationLevel);
2220
2221   int count = 0;
2222
2223   while(!mNotificationLevelChangeDone && count < 3)
2224   {
2225     ecore_wl2_display_flush(ecore_wl2_connected_display_get(NULL));
2226     wl_display_dispatch_queue(mDisplay, mEventQueue);
2227     count++;
2228   }
2229
2230   if(!mNotificationLevelChangeDone)
2231   {
2232     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::SetNotificationLevel: Level change is failed [%d, %d]\n", level, mNotificationChangeState);
2233     return Dali::WindowOperationResult::UNKNOWN_ERROR;
2234   }
2235   else if(mNotificationChangeState == TIZEN_POLICY_ERROR_STATE_PERMISSION_DENIED)
2236   {
2237     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::SetNotificationLevel: Permission denied! [%d]\n", level);
2238     return Dali::WindowOperationResult::PERMISSION_DENIED;
2239   }
2240
2241   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::SetNotificationLevel: Level is changed [%d]\n", mNotificationLevel);
2242
2243   return Dali::WindowOperationResult::SUCCEED;
2244 }
2245
2246 Dali::WindowNotificationLevel WindowBaseEcoreWl2::GetNotificationLevel() const
2247 {
2248   while(!mTizenPolicy)
2249   {
2250     wl_display_dispatch_queue(mDisplay, mEventQueue);
2251   }
2252
2253   int count = 0;
2254
2255   while(!mNotificationLevelChangeDone && count < 3)
2256   {
2257     ecore_wl2_display_flush(ecore_wl2_connected_display_get(NULL));
2258     wl_display_dispatch_queue(mDisplay, mEventQueue);
2259     count++;
2260   }
2261
2262   if(!mNotificationLevelChangeDone)
2263   {
2264     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::GetNotificationLevel: Error! [%d]\n", mNotificationChangeState);
2265     return Dali::WindowNotificationLevel::NONE;
2266   }
2267
2268   Dali::WindowNotificationLevel level;
2269
2270   switch(mNotificationLevel)
2271   {
2272     case TIZEN_POLICY_LEVEL_NONE:
2273     {
2274       level = Dali::WindowNotificationLevel::NONE;
2275       break;
2276     }
2277     case TIZEN_POLICY_LEVEL_DEFAULT:
2278     {
2279       level = Dali::WindowNotificationLevel::BASE;
2280       break;
2281     }
2282     case TIZEN_POLICY_LEVEL_MEDIUM:
2283     {
2284       level = Dali::WindowNotificationLevel::MEDIUM;
2285       break;
2286     }
2287     case TIZEN_POLICY_LEVEL_HIGH:
2288     {
2289       level = Dali::WindowNotificationLevel::HIGH;
2290       break;
2291     }
2292     case TIZEN_POLICY_LEVEL_TOP:
2293     {
2294       level = Dali::WindowNotificationLevel::TOP;
2295       break;
2296     }
2297     default:
2298     {
2299       DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::GetNotificationLevel: invalid level [%d]\n", mNotificationLevel);
2300       level = Dali::WindowNotificationLevel::NONE;
2301       break;
2302     }
2303   }
2304
2305   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::GetNotificationLevel: level [%d]\n", mNotificationLevel);
2306
2307   return level;
2308 }
2309
2310 void WindowBaseEcoreWl2::SetOpaqueState(bool opaque)
2311 {
2312   while(!mTizenPolicy)
2313   {
2314     wl_display_dispatch_queue(mDisplay, mEventQueue);
2315   }
2316
2317   tizen_policy_set_opaque_state(mTizenPolicy, ecore_wl2_window_surface_get(mEcoreWindow), (opaque ? 1 : 0));
2318 }
2319
2320 Dali::WindowOperationResult WindowBaseEcoreWl2::SetScreenOffMode(WindowScreenOffMode screenOffMode)
2321 {
2322   while(!mTizenPolicy)
2323   {
2324     wl_display_dispatch_queue(mDisplay, mEventQueue);
2325   }
2326
2327   mScreenOffModeChangeDone  = false;
2328   mScreenOffModeChangeState = TIZEN_POLICY_ERROR_STATE_NONE;
2329
2330   unsigned int mode = 0;
2331
2332   switch(screenOffMode)
2333   {
2334     case WindowScreenOffMode::TIMEOUT:
2335     {
2336       mode = 0;
2337       break;
2338     }
2339     case WindowScreenOffMode::NEVER:
2340     {
2341       mode = 1;
2342       break;
2343     }
2344   }
2345
2346   tizen_policy_set_window_screen_mode(mTizenPolicy, ecore_wl2_window_surface_get(mEcoreWindow), mode);
2347
2348   int count = 0;
2349
2350   while(!mScreenOffModeChangeDone && count < 3)
2351   {
2352     ecore_wl2_display_flush(ecore_wl2_connected_display_get(NULL));
2353     wl_display_dispatch_queue(mDisplay, mEventQueue);
2354     count++;
2355   }
2356
2357   if(!mScreenOffModeChangeDone)
2358   {
2359     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::SetScreenOffMode: Screen mode change is failed [%d, %d]\n", screenOffMode, mScreenOffModeChangeState);
2360     return Dali::WindowOperationResult::UNKNOWN_ERROR;
2361   }
2362   else if(mScreenOffModeChangeState == TIZEN_POLICY_ERROR_STATE_PERMISSION_DENIED)
2363   {
2364     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::SetScreenOffMode: Permission denied! [%d]\n", screenOffMode);
2365     return Dali::WindowOperationResult::PERMISSION_DENIED;
2366   }
2367
2368   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::SetScreenOffMode: Screen mode is changed [%d]\n", mScreenOffMode);
2369
2370   return Dali::WindowOperationResult::SUCCEED;
2371 }
2372
2373 WindowScreenOffMode WindowBaseEcoreWl2::GetScreenOffMode() const
2374 {
2375   while(!mTizenPolicy)
2376   {
2377     wl_display_dispatch_queue(mDisplay, mEventQueue);
2378   }
2379
2380   int count = 0;
2381
2382   while(!mScreenOffModeChangeDone && count < 3)
2383   {
2384     ecore_wl2_display_flush(ecore_wl2_connected_display_get(NULL));
2385     wl_display_dispatch_queue(mDisplay, mEventQueue);
2386     count++;
2387   }
2388
2389   if(!mScreenOffModeChangeDone)
2390   {
2391     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::GetScreenOffMode: Error! [%d]\n", mScreenOffModeChangeState);
2392     return WindowScreenOffMode::TIMEOUT;
2393   }
2394
2395   WindowScreenOffMode screenMode = WindowScreenOffMode::TIMEOUT;
2396
2397   switch(mScreenOffMode)
2398   {
2399     case 0:
2400     {
2401       screenMode = WindowScreenOffMode::TIMEOUT;
2402       break;
2403     }
2404     case 1:
2405     {
2406       screenMode = WindowScreenOffMode::NEVER;
2407       break;
2408     }
2409   }
2410
2411   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::GetScreenOffMode: screen mode [%d]\n", mScreenOffMode);
2412
2413   return screenMode;
2414 }
2415
2416 Dali::WindowOperationResult WindowBaseEcoreWl2::SetBrightness(int brightness)
2417 {
2418   while(!mTizenDisplayPolicy)
2419   {
2420     wl_display_dispatch_queue(mDisplay, mEventQueue);
2421   }
2422
2423   mBrightnessChangeDone  = false;
2424   mBrightnessChangeState = TIZEN_POLICY_ERROR_STATE_NONE;
2425
2426   tizen_display_policy_set_window_brightness(mTizenDisplayPolicy, ecore_wl2_window_surface_get(mEcoreWindow), brightness);
2427
2428   int count = 0;
2429
2430   while(!mBrightnessChangeDone && count < 3)
2431   {
2432     ecore_wl2_display_flush(ecore_wl2_connected_display_get(NULL));
2433     wl_display_dispatch_queue(mDisplay, mEventQueue);
2434     count++;
2435   }
2436
2437   if(!mBrightnessChangeDone)
2438   {
2439     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::SetBrightness: Brightness change is failed [%d, %d]\n", brightness, mBrightnessChangeState);
2440     return Dali::WindowOperationResult::UNKNOWN_ERROR;
2441   }
2442   else if(mBrightnessChangeState == TIZEN_POLICY_ERROR_STATE_PERMISSION_DENIED)
2443   {
2444     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::SetBrightness: Permission denied! [%d]\n", brightness);
2445     return Dali::WindowOperationResult::PERMISSION_DENIED;
2446   }
2447
2448   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::SetBrightness: Brightness is changed [%d]\n", mBrightness);
2449
2450   return Dali::WindowOperationResult::SUCCEED;
2451 }
2452
2453 int WindowBaseEcoreWl2::GetBrightness() const
2454 {
2455   while(!mTizenDisplayPolicy)
2456   {
2457     wl_display_dispatch_queue(mDisplay, mEventQueue);
2458   }
2459
2460   int count = 0;
2461
2462   while(!mBrightnessChangeDone && count < 3)
2463   {
2464     ecore_wl2_display_flush(ecore_wl2_connected_display_get(NULL));
2465     wl_display_dispatch_queue(mDisplay, mEventQueue);
2466     count++;
2467   }
2468
2469   if(!mBrightnessChangeDone)
2470   {
2471     DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::GetBrightness: Error! [%d]\n", mBrightnessChangeState);
2472     return 0;
2473   }
2474
2475   DALI_LOG_INFO(gWindowBaseLogFilter, Debug::Verbose, "WindowBaseEcoreWl2::GetBrightness: Brightness [%d]\n", mBrightness);
2476
2477   return mBrightness;
2478 }
2479
2480 bool WindowBaseEcoreWl2::GrabKey(Dali::KEY key, KeyGrab::KeyGrabMode grabMode)
2481 {
2482   Ecore_Wl2_Window_Keygrab_Mode mode;
2483
2484   switch(grabMode)
2485   {
2486     case KeyGrab::TOPMOST:
2487     {
2488       mode = ECORE_WL2_WINDOW_KEYGRAB_TOPMOST;
2489       break;
2490     }
2491     case KeyGrab::SHARED:
2492     {
2493       mode = ECORE_WL2_WINDOW_KEYGRAB_SHARED;
2494       break;
2495     }
2496     case KeyGrab::OVERRIDE_EXCLUSIVE:
2497     {
2498       mode = ECORE_WL2_WINDOW_KEYGRAB_OVERRIDE_EXCLUSIVE;
2499       break;
2500     }
2501     case KeyGrab::EXCLUSIVE:
2502     {
2503       mode = ECORE_WL2_WINDOW_KEYGRAB_EXCLUSIVE;
2504       break;
2505     }
2506     default:
2507     {
2508       return false;
2509     }
2510   }
2511
2512   return ecore_wl2_window_keygrab_set(mEcoreWindow, KeyLookup::GetKeyName(key), 0, 0, 0, mode);
2513 }
2514
2515 bool WindowBaseEcoreWl2::UngrabKey(Dali::KEY key)
2516 {
2517   return ecore_wl2_window_keygrab_unset(mEcoreWindow, KeyLookup::GetKeyName(key), 0, 0);
2518 }
2519
2520 bool WindowBaseEcoreWl2::GrabKeyList(const Dali::Vector<Dali::KEY>& key, const Dali::Vector<KeyGrab::KeyGrabMode>& grabMode, Dali::Vector<bool>& result)
2521 {
2522   int keyCount         = key.Count();
2523   int keyGrabModeCount = grabMode.Count();
2524
2525   if(keyCount != keyGrabModeCount || keyCount == 0)
2526   {
2527     return false;
2528   }
2529
2530   eina_init();
2531
2532   Eina_List*                     keyList = NULL;
2533   Ecore_Wl2_Window_Keygrab_Info* info    = new Ecore_Wl2_Window_Keygrab_Info[keyCount];
2534
2535   for(int index = 0; index < keyCount; ++index)
2536   {
2537     info[index].key = const_cast<char*>(KeyLookup::GetKeyName(key[index]));
2538
2539     switch(grabMode[index])
2540     {
2541       case KeyGrab::TOPMOST:
2542       {
2543         info[index].mode = ECORE_WL2_WINDOW_KEYGRAB_TOPMOST;
2544         break;
2545       }
2546       case KeyGrab::SHARED:
2547       {
2548         info[index].mode = ECORE_WL2_WINDOW_KEYGRAB_SHARED;
2549         break;
2550       }
2551       case KeyGrab::OVERRIDE_EXCLUSIVE:
2552       {
2553         info[index].mode = ECORE_WL2_WINDOW_KEYGRAB_OVERRIDE_EXCLUSIVE;
2554         break;
2555       }
2556       case KeyGrab::EXCLUSIVE:
2557       {
2558         info[index].mode = ECORE_WL2_WINDOW_KEYGRAB_EXCLUSIVE;
2559         break;
2560       }
2561       default:
2562       {
2563         info[index].mode = ECORE_WL2_WINDOW_KEYGRAB_UNKNOWN;
2564         break;
2565       }
2566     }
2567
2568     keyList = eina_list_append(keyList, &info);
2569   }
2570
2571   Eina_List* grabList = ecore_wl2_window_keygrab_list_set(mEcoreWindow, keyList);
2572
2573   result.Resize(keyCount, true);
2574
2575   Eina_List* l        = NULL;
2576   Eina_List* m        = NULL;
2577   void*      listData = NULL;
2578   void*      data     = NULL;
2579   if(grabList != NULL)
2580   {
2581     EINA_LIST_FOREACH(grabList, m, data)
2582     {
2583       int index = 0;
2584       EINA_LIST_FOREACH(keyList, l, listData)
2585       {
2586         if(static_cast<Ecore_Wl2_Window_Keygrab_Info*>(listData)->key == NULL)
2587         {
2588           DALI_LOG_ERROR("input key list has null data!");
2589           break;
2590         }
2591
2592         if(strcmp(static_cast<char*>(data), static_cast<Ecore_Wl2_Window_Keygrab_Info*>(listData)->key) == 0)
2593         {
2594           result[index] = false;
2595         }
2596         ++index;
2597       }
2598     }
2599   }
2600
2601   delete[] info;
2602
2603   eina_list_free(keyList);
2604   eina_list_free(grabList);
2605   eina_shutdown();
2606
2607   return true;
2608 }
2609
2610 bool WindowBaseEcoreWl2::UngrabKeyList(const Dali::Vector<Dali::KEY>& key, Dali::Vector<bool>& result)
2611 {
2612   int keyCount = key.Count();
2613   if(keyCount == 0)
2614   {
2615     return false;
2616   }
2617
2618   eina_init();
2619
2620   Eina_List*                     keyList = NULL;
2621   Ecore_Wl2_Window_Keygrab_Info* info    = new Ecore_Wl2_Window_Keygrab_Info[keyCount];
2622
2623   for(int index = 0; index < keyCount; ++index)
2624   {
2625     info[index].key = const_cast<char*>(KeyLookup::GetKeyName(key[index]));
2626     keyList         = eina_list_append(keyList, &info);
2627   }
2628
2629   Eina_List* ungrabList = ecore_wl2_window_keygrab_list_unset(mEcoreWindow, keyList);
2630
2631   result.Resize(keyCount, true);
2632
2633   Eina_List* l        = NULL;
2634   Eina_List* m        = NULL;
2635   void*      listData = NULL;
2636   void*      data     = NULL;
2637
2638   if(ungrabList != NULL)
2639   {
2640     EINA_LIST_FOREACH(ungrabList, m, data)
2641     {
2642       int index = 0;
2643       EINA_LIST_FOREACH(keyList, l, listData)
2644       {
2645         if(strcmp(static_cast<char*>(data), static_cast<Ecore_Wl2_Window_Keygrab_Info*>(listData)->key) == 0)
2646         {
2647           result[index] = false;
2648         }
2649         ++index;
2650       }
2651     }
2652   }
2653
2654   delete[] info;
2655
2656   eina_list_free(keyList);
2657   eina_list_free(ungrabList);
2658   eina_shutdown();
2659
2660   return true;
2661 }
2662
2663 void WindowBaseEcoreWl2::GetDpi(unsigned int& dpiHorizontal, unsigned int& dpiVertical)
2664 {
2665   // calculate DPI
2666   float xres, yres;
2667
2668   Ecore_Wl2_Output* output = ecore_wl2_window_output_find(mEcoreWindow);
2669
2670   // 1 inch = 25.4 millimeters
2671   xres = ecore_wl2_output_dpi_get(output);
2672   yres = ecore_wl2_output_dpi_get(output);
2673
2674   dpiHorizontal = int(xres + 0.5f); // rounding
2675   dpiVertical   = int(yres + 0.5f);
2676 }
2677
2678 int WindowBaseEcoreWl2::GetWindowRotationAngle() const
2679 {
2680   int orientation = mWindowRotationAngle;
2681   if(mSupportedPreProtation)
2682   {
2683     orientation = 0;
2684   }
2685   return orientation;
2686 }
2687
2688 int WindowBaseEcoreWl2::GetScreenRotationAngle()
2689 {
2690   if(mSupportedPreProtation)
2691   {
2692     DALI_LOG_RELEASE_INFO("Support PreRotation and return 0\n");
2693     return 0;
2694   }
2695   int transform;
2696   if(ecore_wl2_window_ignore_output_transform_get(mEcoreWindow))
2697   {
2698     transform = 0;
2699   }
2700   else
2701   {
2702     transform = ecore_wl2_output_transform_get(ecore_wl2_window_output_find(mEcoreWindow));
2703   }
2704   mScreenRotationAngle = transform * 90;
2705   return mScreenRotationAngle;
2706 }
2707
2708 void WindowBaseEcoreWl2::SetWindowRotationAngle(int degree)
2709 {
2710   mWindowRotationAngle = degree;
2711   ecore_wl2_window_rotation_set(mEcoreWindow, degree);
2712 }
2713
2714 void WindowBaseEcoreWl2::WindowRotationCompleted(int degree, int width, int height)
2715 {
2716   ecore_wl2_window_rotation_change_done_send(mEcoreWindow, degree, width, height);
2717 }
2718
2719 void WindowBaseEcoreWl2::SetTransparency(bool transparent)
2720 {
2721   ecore_wl2_window_alpha_set(mEcoreWindow, transparent);
2722 }
2723
2724 void WindowBaseEcoreWl2::CreateWindow(PositionSize positionSize)
2725 {
2726   Ecore_Wl2_Display* display = ecore_wl2_display_connect(NULL);
2727   if(!display)
2728   {
2729     DALI_ASSERT_ALWAYS(0 && "Failed to get display");
2730   }
2731
2732   ecore_wl2_display_sync(display);
2733
2734   mEcoreWindow = ecore_wl2_window_new(display, NULL, positionSize.x, positionSize.y, positionSize.width, positionSize.height);
2735
2736   if(mEcoreWindow == 0)
2737   {
2738     DALI_ASSERT_ALWAYS(0 && "Failed to create Wayland window");
2739   }
2740
2741   // Set default type
2742   ecore_wl2_window_type_set(mEcoreWindow, ECORE_WL2_WINDOW_TYPE_TOPLEVEL);
2743 }
2744
2745 void WindowBaseEcoreWl2::SetParent(WindowBase* parentWinBase, bool belowParent)
2746 {
2747   Ecore_Wl2_Window* ecoreParent = NULL;
2748   if(parentWinBase)
2749   {
2750     WindowBaseEcoreWl2* winBaseEcore2 = static_cast<WindowBaseEcoreWl2*>(parentWinBase);
2751     ecoreParent                       = winBaseEcore2->mEcoreWindow;
2752   }
2753   ecore_wl2_window_transient_parent_set(mEcoreWindow, ecoreParent, belowParent);
2754 }
2755
2756 int WindowBaseEcoreWl2::CreateFrameRenderedSyncFence()
2757 {
2758   return wl_egl_window_tizen_create_commit_sync_fd(mEglWindow);
2759 }
2760
2761 int WindowBaseEcoreWl2::CreateFramePresentedSyncFence()
2762 {
2763   return wl_egl_window_tizen_create_presentation_sync_fd(mEglWindow);
2764 }
2765
2766 void WindowBaseEcoreWl2::SetPositionSizeWithAngle(PositionSize positionSize, int angle)
2767 {
2768   DALI_LOG_RELEASE_INFO("WindowBaseEcoreWl2::SetPositionSizeWithAngle, angle: %d, x: %d, y: %d, w: %d, h: %d\n", angle, positionSize.x, positionSize.y, positionSize.width, positionSize.height);
2769   ecore_wl2_window_rotation_geometry_set(mEcoreWindow, angle, positionSize.x, positionSize.y, positionSize.width, positionSize.height);
2770 }
2771
2772 void WindowBaseEcoreWl2::InitializeIme()
2773 {
2774   Eina_Iterator*      globals;
2775   struct wl_registry* registry;
2776   Ecore_Wl2_Global*   global;
2777   Ecore_Wl2_Display*  ecoreWl2Display;
2778
2779   if(!(ecoreWl2Display = ecore_wl2_connected_display_get(NULL)))
2780   {
2781     DALI_LOG_ERROR("WindowBaseEcoreWl2::InitializeIme(), fail to get ecore_wl2 connected display\n");
2782     return;
2783   }
2784
2785   DALI_LOG_RELEASE_INFO("InitializeIme:  Ecore_Wl2_Display: %p, ecore wl window: %p\n", ecoreWl2Display, mEcoreWindow);
2786
2787   if(!(registry = ecore_wl2_display_registry_get(ecoreWl2Display)))
2788   {
2789     DALI_LOG_ERROR("WindowBaseEcoreWl2::InitializeIme(), fail to get ecore_wl2 display registry\n");
2790     return;
2791   }
2792
2793   if(!(globals = ecore_wl2_display_globals_get(ecoreWl2Display)))
2794   {
2795     DALI_LOG_ERROR("WindowBaseEcoreWl2::InitializeIme(), fail to get ecore_wl2 globals\n");
2796     return;
2797   }
2798
2799   EINA_ITERATOR_FOREACH(globals, global)
2800   {
2801 #ifdef OVER_TIZEN_VERSION_7
2802     if(strcmp(global->interface, "zwp_input_panel_v1") == 0)
2803     {
2804       mWlInputPanel = (zwp_input_panel_v1*)wl_registry_bind(registry, global->id, &zwp_input_panel_v1_interface, 1);
2805     }
2806 #else
2807     if(strcmp(global->interface, "wl_input_panel") == 0)
2808     {
2809       mWlInputPanel = (wl_input_panel*)wl_registry_bind(registry, global->id, &wl_input_panel_interface, 1);
2810     }
2811 #endif
2812     else if(strcmp(global->interface, "wl_output") == 0)
2813     {
2814       mWlOutput = (wl_output*)wl_registry_bind(registry, global->id, &wl_output_interface, 1);
2815     }
2816   }
2817
2818   if(!mWlInputPanel)
2819   {
2820     DALI_LOG_ERROR("WindowBaseEcoreWl2::InitializeIme(), fail to get wayland input panel interface\n");
2821     return;
2822   }
2823
2824   if(!mWlOutput)
2825   {
2826     DALI_LOG_ERROR("WindowBaseEcoreWl2::InitializeIme(), fail to get wayland output panel interface\n");
2827     return;
2828   }
2829 #ifdef OVER_TIZEN_VERSION_7
2830   mWlInputPanelSurface = zwp_input_panel_v1_get_input_panel_surface(mWlInputPanel, mWlSurface);
2831 #else
2832   mWlInputPanelSurface = wl_input_panel_get_input_panel_surface(mWlInputPanel, mWlSurface);
2833 #endif
2834   if(!mWlInputPanelSurface)
2835   {
2836     DALI_LOG_ERROR("WindowBaseEcoreWl2::InitializeIme(), fail to get wayland input panel surface\n");
2837     return;
2838   }
2839 #ifdef OVER_TIZEN_VERSION_7
2840   zwp_input_panel_surface_v1_set_toplevel(mWlInputPanelSurface, mWlOutput, ZWP_INPUT_PANEL_SURFACE_V1_POSITION_CENTER_BOTTOM);
2841 #else
2842   wl_input_panel_surface_set_toplevel(mWlInputPanelSurface, mWlOutput, WL_INPUT_PANEL_SURFACE_POSITION_CENTER_BOTTOM);
2843 #endif
2844 }
2845
2846 void WindowBaseEcoreWl2::ImeWindowReadyToRender()
2847 {
2848   if(!mWlInputPanelSurface)
2849   {
2850     DALI_LOG_ERROR("WindowBaseEcoreWl2::ImeWindowReadyToRender(), wayland input panel surface is null\n");
2851     return;
2852   }
2853 #ifdef OVER_TIZEN_VERSION_7
2854   zwp_input_panel_surface_v1_set_ready(mWlInputPanelSurface, 1);
2855 #else
2856   wl_input_panel_surface_set_ready(mWlInputPanelSurface, 1);
2857 #endif
2858 }
2859
2860 void WindowBaseEcoreWl2::RequestMoveToServer()
2861 {
2862   Ecore_Wl2_Display* display = ecore_wl2_connected_display_get(NULL);
2863   if(!display)
2864   {
2865     DALI_LOG_ERROR("WindowBaseEcoreWl2::RequestMoveToServer, Fail to get ecore_wl2_display\n");
2866     return;
2867   }
2868
2869   Ecore_Wl2_Input* input = ecore_wl2_input_default_input_get(display);
2870   if(!input)
2871   {
2872     DALI_LOG_ERROR("WindowBaseEcoreWl2::RequestMoveToServer, Fail to get default Ecore_Wl2_Input\n");
2873     return;
2874   }
2875
2876   ecore_wl2_window_move(mEcoreWindow, input);
2877   DALI_LOG_RELEASE_INFO("WindowBaseEcoreWl2::RequestMoveToServer, starts the window[%p] is moved by server\n", mEcoreWindow);
2878 }
2879
2880 void WindowBaseEcoreWl2::RequestResizeToServer(WindowResizeDirection direction)
2881 {
2882   Ecore_Wl2_Display* display = ecore_wl2_connected_display_get(NULL);
2883   if(!display)
2884   {
2885     DALI_LOG_ERROR("WindowBaseEcoreWl2::RequestResizeToServer, Fail to get ecore_wl2_display\n");
2886     return;
2887   }
2888
2889   Ecore_Wl2_Input* input = ecore_wl2_input_default_input_get(display);
2890   if(!input)
2891   {
2892     DALI_LOG_ERROR("WindowBaseEcoreWl2::RequestResizeToServer, Fail to get default Ecore_Wl2_Input\n");
2893     return;
2894   }
2895
2896   ResizeLocation location = RecalculateLocationToCurrentOrientation(direction, mWindowRotationAngle);
2897
2898   ecore_wl2_window_resize(mEcoreWindow, input, static_cast<int>(location));
2899   DALI_LOG_RELEASE_INFO("WindowBaseEcoreWl2::RequestResizeToServer, starts the window[%p] is resized by server, direction:%d oriention:%d mode:%d\n", mEcoreWindow, direction, mWindowRotationAngle, location);
2900 }
2901
2902 void WindowBaseEcoreWl2::EnableFloatingMode(bool enable)
2903 {
2904   DALI_LOG_RELEASE_INFO("WindowBaseEcoreWl2::EnableFloatingMode, floating mode flag: [%p], enable [%d]\n", mEcoreWindow, enable);
2905   if(enable == true)
2906   {
2907     ecore_wl2_window_floating_mode_set(mEcoreWindow, EINA_TRUE);
2908   }
2909   else
2910   {
2911     ecore_wl2_window_floating_mode_set(mEcoreWindow, EINA_FALSE);
2912   }
2913 }
2914
2915 bool WindowBaseEcoreWl2::IsFloatingModeEnabled() const
2916 {
2917   return ecore_wl2_window_floating_mode_get(mEcoreWindow);
2918 }
2919
2920 void WindowBaseEcoreWl2::IncludeInputRegion(const Rect<int>& inputRegion)
2921 {
2922   Rect<int> convertRegion = RecalculateInputRect(inputRegion);
2923   Eina_Rectangle rect;
2924
2925   rect.x = convertRegion.x;
2926   rect.y = convertRegion.y;
2927   rect.w = convertRegion.width;
2928   rect.h = convertRegion.height;
2929
2930   DALI_LOG_RELEASE_INFO("%p, Add input_rect(%d, %d, %d x %d)\n", mEcoreWindow, rect.x, rect.y, rect.w, rect.h);
2931   ecore_wl2_window_input_rect_add(mEcoreWindow, &rect);
2932   ecore_wl2_window_commit(mEcoreWindow, EINA_TRUE);
2933 }
2934
2935 void WindowBaseEcoreWl2::ExcludeInputRegion(const Rect<int>& inputRegion)
2936 {
2937   Rect<int> convertRegion = RecalculateInputRect(inputRegion);
2938   Eina_Rectangle rect;
2939
2940   rect.x = convertRegion.x;
2941   rect.y = convertRegion.y;
2942   rect.w = convertRegion.width;
2943   rect.h = convertRegion.height;
2944
2945   DALI_LOG_RELEASE_INFO("%p, Subtract input_rect(%d, %d, %d x %d)\n", mEcoreWindow, rect.x, rect.y, rect.w, rect.h);
2946   ecore_wl2_window_input_rect_subtract(mEcoreWindow, &rect);
2947   ecore_wl2_window_commit(mEcoreWindow, EINA_TRUE);
2948 }
2949
2950 } // namespace Adaptor
2951
2952 } // namespace Internal
2953
2954 } // namespace Dali
2955
2956 #pragma GCC diagnostic pop