787 lines
32 KiB
C++
787 lines
32 KiB
C++
/////////////////////////////////////////////////////////////////////////////
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// Name: wx/msw/window.h
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// Purpose: wxWindowMSW class
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// Author: Julian Smart
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// Modified by: Vadim Zeitlin on 13.05.99: complete refont of message handling,
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// elimination of Default(), ...
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// Created: 01/02/97
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// Copyright: (c) Julian Smart
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// Licence: wxWindows licence
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/////////////////////////////////////////////////////////////////////////////
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#ifndef _WX_WINDOW_H_
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#define _WX_WINDOW_H_
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#include "wx/settings.h" // solely for wxSystemColour
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class WXDLLIMPEXP_FWD_CORE wxButton;
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// if this is set to 1, we use deferred window sizing to reduce flicker when
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// resizing complicated window hierarchies, but this can in theory result in
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// different behaviour than the old code so we keep the possibility to use it
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// by setting this to 0 (in the future this should be removed completely)
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#define wxUSE_DEFERRED_SIZING 1
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// ---------------------------------------------------------------------------
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// wxWindow declaration for MSW
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// ---------------------------------------------------------------------------
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class WXDLLIMPEXP_CORE wxWindowMSW : public wxWindowBase
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{
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friend class wxSpinCtrl;
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friend class wxSlider;
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friend class wxRadioBox;
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public:
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wxWindowMSW() { Init(); }
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wxWindowMSW(wxWindow *parent,
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wxWindowID id,
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const wxPoint& pos = wxDefaultPosition,
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const wxSize& size = wxDefaultSize,
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long style = 0,
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const wxString& name = wxPanelNameStr)
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{
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Init();
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Create(parent, id, pos, size, style, name);
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}
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virtual ~wxWindowMSW();
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bool Create(wxWindow *parent,
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wxWindowID id,
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const wxPoint& pos = wxDefaultPosition,
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const wxSize& size = wxDefaultSize,
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long style = 0,
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const wxString& name = wxPanelNameStr)
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{
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return CreateUsingMSWClass(GetMSWClassName(style),
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parent, id, pos, size, style, name);
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}
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// Non-portable, MSW-specific Create() variant allowing to create the
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// window with a custom Windows class name. This can be useful to assign a
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// custom Windows class, that can be recognized from the outside of the
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// application, for windows of specific type.
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bool CreateUsingMSWClass(const wxChar* classname,
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wxWindow *parent,
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wxWindowID id,
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const wxPoint& pos = wxDefaultPosition,
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const wxSize& size = wxDefaultSize,
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long style = 0,
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const wxString& name = wxPanelNameStr);
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// implement base class pure virtuals
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virtual void SetLabel(const wxString& label) wxOVERRIDE;
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virtual wxString GetLabel() const wxOVERRIDE;
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virtual void Raise() wxOVERRIDE;
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virtual void Lower() wxOVERRIDE;
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#if wxUSE_DEFERRED_SIZING
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virtual bool BeginRepositioningChildren() wxOVERRIDE;
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virtual void EndRepositioningChildren() wxOVERRIDE;
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#endif // wxUSE_DEFERRED_SIZING
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virtual bool Show(bool show = true) wxOVERRIDE;
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virtual bool ShowWithEffect(wxShowEffect effect,
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unsigned timeout = 0) wxOVERRIDE
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{
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return MSWShowWithEffect(true, effect, timeout);
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}
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virtual bool HideWithEffect(wxShowEffect effect,
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unsigned timeout = 0) wxOVERRIDE
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{
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return MSWShowWithEffect(false, effect, timeout);
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}
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virtual void SetFocus() wxOVERRIDE;
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virtual void SetFocusFromKbd() wxOVERRIDE;
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virtual bool Reparent(wxWindowBase *newParent) wxOVERRIDE;
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virtual void WarpPointer(int x, int y) wxOVERRIDE;
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virtual bool EnableTouchEvents(int eventsMask) wxOVERRIDE;
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virtual void Refresh( bool eraseBackground = true,
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const wxRect *rect = (const wxRect *) NULL ) wxOVERRIDE;
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virtual void Update() wxOVERRIDE;
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virtual void SetWindowStyleFlag(long style) wxOVERRIDE;
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virtual void SetExtraStyle(long exStyle) wxOVERRIDE;
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virtual bool SetCursor( const wxCursor &cursor ) wxOVERRIDE;
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virtual bool SetFont( const wxFont &font ) wxOVERRIDE;
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virtual int GetCharHeight() const wxOVERRIDE;
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virtual int GetCharWidth() const wxOVERRIDE;
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virtual void SetScrollbar( int orient, int pos, int thumbVisible,
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int range, bool refresh = true ) wxOVERRIDE;
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virtual void SetScrollPos( int orient, int pos, bool refresh = true ) wxOVERRIDE;
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virtual int GetScrollPos( int orient ) const wxOVERRIDE;
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virtual int GetScrollThumb( int orient ) const wxOVERRIDE;
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virtual int GetScrollRange( int orient ) const wxOVERRIDE;
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virtual void ScrollWindow( int dx, int dy,
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const wxRect* rect = NULL ) wxOVERRIDE;
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virtual bool ScrollLines(int lines) wxOVERRIDE;
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virtual bool ScrollPages(int pages) wxOVERRIDE;
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virtual void SetLayoutDirection(wxLayoutDirection dir) wxOVERRIDE;
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virtual wxLayoutDirection GetLayoutDirection() const wxOVERRIDE;
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virtual wxCoord AdjustForLayoutDirection(wxCoord x,
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wxCoord width,
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wxCoord widthTotal) const wxOVERRIDE;
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virtual void SetId(wxWindowID winid) wxOVERRIDE;
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#if wxUSE_DRAG_AND_DROP
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virtual void SetDropTarget( wxDropTarget *dropTarget ) wxOVERRIDE;
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// Accept files for dragging
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virtual void DragAcceptFiles(bool accept) wxOVERRIDE;
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#endif // wxUSE_DRAG_AND_DROP
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#ifndef __WXUNIVERSAL__
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// Native resource loading (implemented in src/msw/nativdlg.cpp)
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// FIXME: should they really be all virtual?
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virtual bool LoadNativeDialog(wxWindow* parent, wxWindowID id);
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virtual bool LoadNativeDialog(wxWindow* parent, const wxString& name);
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wxWindow* GetWindowChild1(wxWindowID id);
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wxWindow* GetWindowChild(wxWindowID id);
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#endif // __WXUNIVERSAL__
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#if wxUSE_HOTKEY
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// install and deinstall a system wide hotkey
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virtual bool RegisterHotKey(int hotkeyId, int modifiers, int keycode) wxOVERRIDE;
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virtual bool UnregisterHotKey(int hotkeyId) wxOVERRIDE;
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#endif // wxUSE_HOTKEY
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// window handle stuff
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// -------------------
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WXHWND GetHWND() const { return m_hWnd; }
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void SetHWND(WXHWND hWnd) { m_hWnd = hWnd; }
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virtual WXWidget GetHandle() const wxOVERRIDE { return GetHWND(); }
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void AssociateHandle(WXWidget handle) wxOVERRIDE;
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void DissociateHandle() wxOVERRIDE;
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// does this window have deferred position and/or size?
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bool IsSizeDeferred() const;
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// these functions allow to register a global handler for the given Windows
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// message: it will be called from MSWWindowProc() of any window which gets
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// this event if it's not processed before (i.e. unlike a hook procedure it
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// does not override the normal processing)
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//
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// notice that if you want to process a message for a given window only you
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// should override its MSWWindowProc() instead
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// type of the handler: it is called with the message parameters (except
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// that the window object is passed instead of window handle) and should
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// return true if it handled the message or false if it should be passed to
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// DefWindowProc()
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typedef bool (*MSWMessageHandler)(wxWindowMSW *win,
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WXUINT nMsg,
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WXWPARAM wParam,
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WXLPARAM lParam);
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// install a handler, shouldn't be called more than one for the same message
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static bool MSWRegisterMessageHandler(int msg, MSWMessageHandler handler);
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// unregister a previously registered handler
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static void MSWUnregisterMessageHandler(int msg, MSWMessageHandler handler);
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// implementation from now on
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// ==========================
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// event handlers
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// --------------
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void OnPaint(wxPaintEvent& event);
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public:
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// Windows subclassing
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void SubclassWin(WXHWND hWnd);
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void UnsubclassWin();
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WXFARPROC MSWGetOldWndProc() const { return m_oldWndProc; }
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void MSWSetOldWndProc(WXFARPROC proc) { m_oldWndProc = proc; }
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// return true if the window is of a standard (i.e. not wxWidgets') class
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//
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// to understand why does it work, look at SubclassWin() code and comments
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bool IsOfStandardClass() const { return m_oldWndProc != NULL; }
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wxWindow *FindItem(long id, WXHWND hWnd = NULL) const;
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wxWindow *FindItemByHWND(WXHWND hWnd, bool controlOnly = false) const;
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// MSW only: true if this control is part of the main control
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virtual bool ContainsHWND(WXHWND WXUNUSED(hWnd)) const { return false; }
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#if wxUSE_TOOLTIPS
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// MSW only: true if this window or any of its children have a tooltip
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virtual bool HasToolTips() const { return GetToolTip() != NULL; }
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#endif // wxUSE_TOOLTIPS
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// translate wxWidgets style flags for this control into the Windows style
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// and optional extended style for the corresponding native control
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//
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// this is the function that should be overridden in the derived classes,
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// but you will mostly use MSWGetCreateWindowFlags() below
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virtual WXDWORD MSWGetStyle(long flags, WXDWORD *exstyle = NULL) const ;
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// get the MSW window flags corresponding to wxWidgets ones
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//
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// the functions returns the flags (WS_XXX) directly and puts the ext
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// (WS_EX_XXX) flags into the provided pointer if not NULL
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WXDWORD MSWGetCreateWindowFlags(WXDWORD *exflags = NULL) const
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{ return MSWGetStyle(GetWindowStyle(), exflags); }
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// update the real underlying window style flags to correspond to the
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// current wxWindow object style (safe to call even if window isn't fully
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// created yet)
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void MSWUpdateStyle(long flagsOld, long exflagsOld);
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// get the HWND to be used as parent of this window with CreateWindow()
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virtual WXHWND MSWGetParent() const;
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// Return the name of the Win32 class that should be used by this wxWindow
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// object, taking into account wxFULL_REPAINT_ON_RESIZE style (if it's not
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// specified, the wxApp::GetNoRedrawClassSuffix()-suffixed version of the
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// class is used).
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static const wxChar *GetMSWClassName(long style);
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// creates the window of specified Windows class with given style, extended
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// style, title and geometry (default values
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//
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// returns true if the window has been created, false if creation failed
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bool MSWCreate(const wxChar *wclass,
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const wxChar *title = NULL,
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const wxPoint& pos = wxDefaultPosition,
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const wxSize& size = wxDefaultSize,
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WXDWORD style = 0,
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WXDWORD exendedStyle = 0);
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virtual bool MSWCommand(WXUINT param, WXWORD id);
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#ifndef __WXUNIVERSAL__
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// Create an appropriate wxWindow from a HWND
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virtual wxWindow* CreateWindowFromHWND(wxWindow* parent, WXHWND hWnd);
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// Make sure the window style reflects the HWND style (roughly)
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virtual void AdoptAttributesFromHWND();
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#endif // __WXUNIVERSAL__
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// Setup background and foreground colours correctly
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virtual void SetupColours();
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// ------------------------------------------------------------------------
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// helpers for message handlers: these perform the same function as the
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// message crackers from <windowsx.h> - they unpack WPARAM and LPARAM into
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// the correct parameters
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// ------------------------------------------------------------------------
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void UnpackCommand(WXWPARAM wParam, WXLPARAM lParam,
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WXWORD *id, WXHWND *hwnd, WXWORD *cmd);
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void UnpackActivate(WXWPARAM wParam, WXLPARAM lParam,
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WXWORD *state, WXWORD *minimized, WXHWND *hwnd);
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void UnpackScroll(WXWPARAM wParam, WXLPARAM lParam,
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WXWORD *code, WXWORD *pos, WXHWND *hwnd);
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void UnpackCtlColor(WXWPARAM wParam, WXLPARAM lParam,
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WXHDC *hdc, WXHWND *hwnd);
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void UnpackMenuSelect(WXWPARAM wParam, WXLPARAM lParam,
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WXWORD *item, WXWORD *flags, WXHMENU *hmenu);
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// ------------------------------------------------------------------------
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// internal handlers for MSW messages: all handlers return a boolean value:
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// true means that the handler processed the event and false that it didn't
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// ------------------------------------------------------------------------
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// there are several cases where we have virtual functions for Windows
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// message processing: this is because these messages often require to be
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// processed in a different manner in the derived classes. For all other
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// messages, however, we do *not* have corresponding MSWOnXXX() function
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// and if the derived class wants to process them, it should override
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// MSWWindowProc() directly.
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// scroll event (both horizontal and vertical)
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virtual bool MSWOnScroll(int orientation, WXWORD nSBCode,
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WXWORD pos, WXHWND control);
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// child control notifications
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virtual bool MSWOnNotify(int idCtrl, WXLPARAM lParam, WXLPARAM *result);
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// owner-drawn controls need to process these messages
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virtual bool MSWOnDrawItem(int id, WXDRAWITEMSTRUCT *item);
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virtual bool MSWOnMeasureItem(int id, WXMEASUREITEMSTRUCT *item);
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// the rest are not virtual
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bool HandleCreate(WXLPCREATESTRUCT cs, bool *mayCreate);
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bool HandleInitDialog(WXHWND hWndFocus);
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bool HandleDestroy();
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bool HandlePaint();
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bool HandlePrintClient(WXHDC hDC);
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bool HandleEraseBkgnd(WXHDC hDC);
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bool HandleMinimize();
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bool HandleMaximize();
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bool HandleSize(int x, int y, WXUINT flag);
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bool HandleSizing(wxRect& rect);
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bool HandleGetMinMaxInfo(void *mmInfo);
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bool HandleEnterSizeMove();
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bool HandleExitSizeMove();
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bool HandleShow(bool show, int status);
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bool HandleActivate(int flag, bool minimized, WXHWND activate);
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bool HandleCommand(WXWORD id, WXWORD cmd, WXHWND control);
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bool HandleCtlColor(WXHBRUSH *hBrush, WXHDC hdc, WXHWND hWnd);
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bool HandlePaletteChanged(WXHWND hWndPalChange);
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bool HandleQueryNewPalette();
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bool HandleSysColorChange();
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bool HandleDisplayChange();
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bool HandleCaptureChanged(WXHWND gainedCapture);
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virtual bool HandleSettingChange(WXWPARAM wParam, WXLPARAM lParam);
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bool HandleQueryEndSession(long logOff, bool *mayEnd);
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bool HandleEndSession(bool endSession, long logOff);
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bool HandleSetFocus(WXHWND wnd);
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bool HandleKillFocus(WXHWND wnd);
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bool HandleDropFiles(WXWPARAM wParam);
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bool HandleMouseEvent(WXUINT msg, int x, int y, WXUINT flags);
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bool HandleMouseMove(int x, int y, WXUINT flags);
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bool HandleMouseWheel(wxMouseWheelAxis axis,
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WXWPARAM wParam, WXLPARAM lParam);
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// Common gesture event initialization, returns true if it is the initial
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// event (GF_BEGIN set in flags), false otherwise.
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bool InitGestureEvent(wxGestureEvent& event, const wxPoint& pt, WXDWORD flags);
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bool HandlePanGesture(const wxPoint& pt, WXDWORD flags);
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bool HandleZoomGesture(const wxPoint& pt, WXDWORD fingerDistance, WXDWORD flags);
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bool HandleRotateGesture(const wxPoint& pt, WXDWORD angleArgument, WXDWORD flags);
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bool HandleTwoFingerTap(const wxPoint& pt, WXDWORD flags);
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bool HandlePressAndTap(const wxPoint& pt, WXDWORD flags);
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bool HandleChar(WXWPARAM wParam, WXLPARAM lParam);
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bool HandleKeyDown(WXWPARAM wParam, WXLPARAM lParam);
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bool HandleKeyUp(WXWPARAM wParam, WXLPARAM lParam);
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#if wxUSE_HOTKEY
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bool HandleHotKey(WXWPARAM wParam, WXLPARAM lParam);
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#endif
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int HandleMenuChar(int chAccel, WXLPARAM lParam);
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// Create and process a clipboard event specified by type.
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bool HandleClipboardEvent( WXUINT nMsg );
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bool HandleQueryDragIcon(WXHICON *hIcon);
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bool HandleSetCursor(WXHWND hWnd, short nHitTest, int mouseMsg);
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bool HandlePower(WXWPARAM wParam, WXLPARAM lParam, bool *vetoed);
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// The main body of common window proc for all wxWindow objects. It tries
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// to handle the given message and returns true if it was handled (the
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// appropriate return value is then put in result, which must be non-NULL)
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// or false if it wasn't.
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//
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// This function should be overridden in any new code instead of
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// MSWWindowProc() even if currently most of the code overrides
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// MSWWindowProc() as it had been written before this function was added.
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virtual bool MSWHandleMessage(WXLRESULT *result,
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WXUINT message,
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WXWPARAM wParam,
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WXLPARAM lParam);
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// Common Window procedure for all wxWindow objects: forwards to
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// MSWHandleMessage() and MSWDefWindowProc() if the message wasn't handled.
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virtual WXLRESULT MSWWindowProc(WXUINT nMsg, WXWPARAM wParam, WXLPARAM lParam);
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// Calls an appropriate default window procedure
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virtual WXLRESULT MSWDefWindowProc(WXUINT nMsg, WXWPARAM wParam, WXLPARAM lParam);
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// message processing helpers
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// return false if the message shouldn't be translated/preprocessed but
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// dispatched normally
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virtual bool MSWShouldPreProcessMessage(WXMSG* pMsg);
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// return true if the message was preprocessed and shouldn't be dispatched
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virtual bool MSWProcessMessage(WXMSG* pMsg);
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// return true if the message was translated and shouldn't be dispatched
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virtual bool MSWTranslateMessage(WXMSG* pMsg);
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// called when the window is about to be destroyed
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virtual void MSWDestroyWindow();
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// Functions dealing with painting the window background. The derived
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// classes should normally only need to reimplement MSWGetBgBrush() if they
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// need to use a non-solid brush for erasing their background. This
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// function is called by MSWGetBgBrushForChild() which only exists for the
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// weird wxToolBar case and MSWGetBgBrushForChild() itself is used by
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// MSWGetBgBrush() to actually find the right brush to use.
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// Adjust the origin for the brush returned by MSWGetBgBrushForChild().
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//
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// This needs to be overridden for scrolled windows to ensure that the
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// scrolling of their associated DC is taken into account.
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//
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// Both parameters must be non-NULL.
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virtual void MSWAdjustBrushOrg(int* WXUNUSED(xOrg),
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int* WXUNUSED(yOrg)) const
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{
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}
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// The brush returned from here must remain valid at least until the next
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// event loop iteration. Returning 0, as is done by default, indicates
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// there is no custom background brush.
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virtual WXHBRUSH MSWGetCustomBgBrush() { return 0; }
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// this function should return the brush to paint the children controls
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// background or 0 if this window doesn't impose any particular background
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// on its children
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//
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// the hDC parameter is the DC background will be drawn on, it can be used
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// to call SetBrushOrgEx() on it if the returned brush is a bitmap one
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//
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// child parameter is never NULL, it can be this window itself or one of
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// its (grand)children
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//
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// the base class version returns a solid brush if we have a non default
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// background colour or 0 otherwise
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virtual WXHBRUSH MSWGetBgBrushForChild(WXHDC hDC, wxWindowMSW *child);
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// return the background brush to use for painting the given window by
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// querying the parent windows via MSWGetBgBrushForChild() recursively
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WXHBRUSH MSWGetBgBrush(WXHDC hDC);
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enum MSWThemeColour
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{
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ThemeColourText = 0,
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ThemeColourBackground,
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ThemeColourBorder
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};
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// returns a specific theme colour, or if that is not possible then
|
|
// wxSystemSettings::GetColour(fallback)
|
|
wxColour MSWGetThemeColour(const wchar_t *themeName,
|
|
int themePart,
|
|
int themeState,
|
|
MSWThemeColour themeColour,
|
|
wxSystemColour fallback) const;
|
|
|
|
// gives the parent the possibility to draw its children background, e.g.
|
|
// this is used by wxNotebook to do it using DrawThemeBackground()
|
|
//
|
|
// return true if background was drawn, false otherwise
|
|
virtual bool MSWPrintChild(WXHDC WXUNUSED(hDC), wxWindow * WXUNUSED(child))
|
|
{
|
|
return false;
|
|
}
|
|
|
|
// some controls (e.g. wxListBox) need to set the return value themselves
|
|
//
|
|
// return true to let parent handle it if we don't, false otherwise
|
|
virtual bool MSWShouldPropagatePrintChild()
|
|
{
|
|
return true;
|
|
}
|
|
|
|
// This should be overridden to return true for the controls which have
|
|
// themed background that should through their children. Currently only
|
|
// wxNotebook uses this.
|
|
//
|
|
// The base class version already returns true if we have a solid
|
|
// background colour that should be propagated to our children.
|
|
virtual bool MSWHasInheritableBackground() const
|
|
{
|
|
return InheritsBackgroundColour();
|
|
}
|
|
|
|
#if !defined(__WXUNIVERSAL__)
|
|
#define wxHAS_MSW_BACKGROUND_ERASE_HOOK
|
|
#endif
|
|
|
|
#ifdef wxHAS_MSW_BACKGROUND_ERASE_HOOK
|
|
// allows the child to hook into its parent WM_ERASEBKGND processing: call
|
|
// MSWSetEraseBgHook() with a non-NULL window to make parent call
|
|
// MSWEraseBgHook() on this window (don't forget to reset it to NULL
|
|
// afterwards)
|
|
//
|
|
// this hack is used by wxToolBar, see comments there
|
|
void MSWSetEraseBgHook(wxWindow *child);
|
|
|
|
// return true if WM_ERASEBKGND is currently hooked
|
|
bool MSWHasEraseBgHook() const;
|
|
|
|
// called when the window on which MSWSetEraseBgHook() had been called
|
|
// receives WM_ERASEBKGND
|
|
virtual bool MSWEraseBgHook(WXHDC WXUNUSED(hDC)) { return false; }
|
|
#endif // wxHAS_MSW_BACKGROUND_ERASE_HOOK
|
|
|
|
// common part of Show/HideWithEffect()
|
|
bool MSWShowWithEffect(bool show,
|
|
wxShowEffect effect,
|
|
unsigned timeout);
|
|
|
|
// Responds to colour changes: passes event on to children.
|
|
void OnSysColourChanged(wxSysColourChangedEvent& event);
|
|
|
|
// initialize various fields of wxMouseEvent (common part of MSWOnMouseXXX)
|
|
void InitMouseEvent(wxMouseEvent& event, int x, int y, WXUINT flags);
|
|
|
|
// check if mouse is in the window
|
|
bool IsMouseInWindow() const;
|
|
|
|
virtual void SetDoubleBuffered(bool on) wxOVERRIDE;
|
|
virtual bool IsDoubleBuffered() const wxOVERRIDE;
|
|
|
|
// synthesize a wxEVT_LEAVE_WINDOW event and set m_mouseInWindow to false
|
|
void GenerateMouseLeave();
|
|
|
|
// virtual function for implementing internal idle
|
|
// behaviour
|
|
virtual void OnInternalIdle() wxOVERRIDE;
|
|
|
|
#if wxUSE_MENUS && !defined(__WXUNIVERSAL__)
|
|
virtual bool HandleMenuSelect(WXWORD nItem, WXWORD nFlags, WXHMENU hMenu);
|
|
|
|
// handle WM_(UN)INITMENUPOPUP message to generate wxEVT_MENU_OPEN/CLOSE
|
|
bool HandleMenuPopup(wxEventType evtType, WXHMENU hMenu);
|
|
|
|
// Command part of HandleMenuPopup() and HandleExitMenuLoop().
|
|
virtual bool DoSendMenuOpenCloseEvent(wxEventType evtType, wxMenu* menu);
|
|
|
|
// Find the menu corresponding to the given handle.
|
|
virtual wxMenu* MSWFindMenuFromHMENU(WXHMENU hMenu);
|
|
#endif // wxUSE_MENUS && !__WXUNIVERSAL__
|
|
|
|
// Return the default button for the TLW containing this window or NULL if
|
|
// none.
|
|
static wxButton* MSWGetDefaultButtonFor(wxWindow* win);
|
|
|
|
// Simulate a click on the given button if it is non-null, enabled and
|
|
// shown.
|
|
//
|
|
// Return true if the button was clicked, false otherwise.
|
|
static bool MSWClickButtonIfPossible(wxButton* btn);
|
|
|
|
protected:
|
|
// this allows you to implement standard control borders without
|
|
// repeating the code in different classes that are not derived from
|
|
// wxControl
|
|
virtual wxBorder GetDefaultBorderForControl() const wxOVERRIDE;
|
|
|
|
// choose the default border for this window
|
|
virtual wxBorder GetDefaultBorder() const wxOVERRIDE;
|
|
|
|
// Translate wxBORDER_THEME (and other border styles if necessary to the value
|
|
// that makes most sense for this Windows environment
|
|
virtual wxBorder TranslateBorder(wxBorder border) const;
|
|
|
|
#if wxUSE_MENUS_NATIVE
|
|
virtual bool DoPopupMenu( wxMenu *menu, int x, int y ) wxOVERRIDE;
|
|
#endif // wxUSE_MENUS_NATIVE
|
|
|
|
// the window handle
|
|
WXHWND m_hWnd;
|
|
|
|
// the old window proc (we subclass all windows)
|
|
WXFARPROC m_oldWndProc;
|
|
|
|
// additional (MSW specific) flags
|
|
bool m_mouseInWindow:1;
|
|
bool m_lastKeydownProcessed:1;
|
|
|
|
// the size of one page for scrolling
|
|
int m_xThumbSize;
|
|
int m_yThumbSize;
|
|
|
|
// implement the base class pure virtuals
|
|
virtual void DoGetTextExtent(const wxString& string,
|
|
int *x, int *y,
|
|
int *descent = NULL,
|
|
int *externalLeading = NULL,
|
|
const wxFont *font = NULL) const wxOVERRIDE;
|
|
virtual void DoClientToScreen( int *x, int *y ) const wxOVERRIDE;
|
|
virtual void DoScreenToClient( int *x, int *y ) const wxOVERRIDE;
|
|
virtual void DoGetPosition( int *x, int *y ) const wxOVERRIDE;
|
|
virtual void DoGetSize( int *width, int *height ) const wxOVERRIDE;
|
|
virtual void DoGetClientSize( int *width, int *height ) const wxOVERRIDE;
|
|
virtual void DoSetSize(int x, int y,
|
|
int width, int height,
|
|
int sizeFlags = wxSIZE_AUTO) wxOVERRIDE;
|
|
virtual void DoSetClientSize(int width, int height) wxOVERRIDE;
|
|
|
|
virtual wxSize DoGetBorderSize() const wxOVERRIDE;
|
|
|
|
virtual void DoCaptureMouse() wxOVERRIDE;
|
|
virtual void DoReleaseMouse() wxOVERRIDE;
|
|
|
|
virtual void DoEnable(bool enable) wxOVERRIDE;
|
|
|
|
virtual void DoFreeze() wxOVERRIDE;
|
|
virtual void DoThaw() wxOVERRIDE;
|
|
|
|
// this simply moves/resizes the given HWND which is supposed to be our
|
|
// sibling (this is useful for controls which are composite at MSW level
|
|
// and for which DoMoveWindow() is not enough)
|
|
//
|
|
// returns true if the window move was deferred, false if it was moved
|
|
// immediately (no error return)
|
|
bool DoMoveSibling(WXHWND hwnd, int x, int y, int width, int height);
|
|
|
|
// move the window to the specified location and resize it: this is called
|
|
// from both DoSetSize() and DoSetClientSize() and would usually just call
|
|
// ::MoveWindow() except for composite controls which will want to arrange
|
|
// themselves inside the given rectangle
|
|
virtual void DoMoveWindow(int x, int y, int width, int height) wxOVERRIDE;
|
|
|
|
#if wxUSE_TOOLTIPS
|
|
virtual void DoSetToolTip( wxToolTip *tip ) wxOVERRIDE;
|
|
|
|
// process TTN_NEEDTEXT message properly (i.e. fixing the bugs in
|
|
// comctl32.dll in our code -- see the function body for more info)
|
|
bool HandleTooltipNotify(WXUINT code,
|
|
WXLPARAM lParam,
|
|
const wxString& ttip);
|
|
#endif // wxUSE_TOOLTIPS
|
|
|
|
// This is used by CreateKeyEvent() and also for wxEVT_CHAR[_HOOK] event
|
|
// creation. Notice that this method doesn't initialize wxKeyEvent
|
|
// m_keyCode and m_uniChar fields.
|
|
void InitAnyKeyEvent(wxKeyEvent& event,
|
|
WXWPARAM wParam,
|
|
WXLPARAM lParam) const;
|
|
|
|
// Helper functions used by HandleKeyXXX() methods and some derived
|
|
// classes, wParam and lParam have the same meaning as in WM_KEY{DOWN,UP}.
|
|
//
|
|
// NB: evType here must be wxEVT_KEY_{DOWN,UP} as wParam here contains the
|
|
// virtual key code, not character!
|
|
wxKeyEvent CreateKeyEvent(wxEventType evType,
|
|
WXWPARAM wParam,
|
|
WXLPARAM lParam = 0) const;
|
|
|
|
// Another helper for creating wxKeyEvent for wxEVT_CHAR and related types.
|
|
//
|
|
// The wParam and lParam here must come from WM_CHAR event parameters, i.e.
|
|
// wParam must be a character and not a virtual code.
|
|
wxKeyEvent CreateCharEvent(wxEventType evType,
|
|
WXWPARAM wParam,
|
|
WXLPARAM lParam) const;
|
|
|
|
|
|
// default OnEraseBackground() implementation, return true if we did erase
|
|
// the background, false otherwise (i.e. the system should erase it)
|
|
bool DoEraseBackground(WXHDC hDC);
|
|
|
|
// generate WM_CHANGEUISTATE if it's needed for the OS we're running under
|
|
//
|
|
// action should be one of the UIS_XXX constants
|
|
// state should be one or more of the UISF_XXX constants
|
|
// if action == UIS_INITIALIZE then it doesn't seem to matter what we use
|
|
// for state as the system will decide for us what needs to be set
|
|
void MSWUpdateUIState(int action, int state = 0);
|
|
|
|
// translate wxWidgets coords into Windows ones suitable to be passed to
|
|
// ::CreateWindow(), called from MSWCreate()
|
|
virtual void MSWGetCreateWindowCoords(const wxPoint& pos,
|
|
const wxSize& size,
|
|
int& x, int& y,
|
|
int& w, int& h) const;
|
|
|
|
bool MSWEnableHWND(WXHWND hWnd, bool enable);
|
|
|
|
// Return the pointer to this window or one of its sub-controls if this ID
|
|
// and HWND combination belongs to one of them.
|
|
//
|
|
// This is used by FindItem() and is overridden in wxControl, see there.
|
|
virtual wxWindow* MSWFindItem(long WXUNUSED(id), WXHWND WXUNUSED(hWnd)) const
|
|
{
|
|
return NULL;
|
|
}
|
|
|
|
private:
|
|
// common part of all ctors
|
|
void Init();
|
|
|
|
// the (non-virtual) handlers for the events
|
|
bool HandleMove(int x, int y);
|
|
bool HandleMoving(wxRect& rect);
|
|
bool HandleJoystickEvent(WXUINT msg, int x, int y, WXUINT flags);
|
|
bool HandleNotify(int idCtrl, WXLPARAM lParam, WXLPARAM *result);
|
|
|
|
#ifndef __WXUNIVERSAL__
|
|
// Call ::IsDialogMessage() if it is safe to do it (i.e. if it's not going
|
|
// to hang or do something else stupid) with the given message, return true
|
|
// if the message was handled by it.
|
|
bool MSWSafeIsDialogMessage(WXMSG* msg);
|
|
#endif // __WXUNIVERSAL__
|
|
|
|
static inline bool MSWIsPositionDirectlySupported(int x, int y)
|
|
{
|
|
// The supported coordinate intervals for various functions are:
|
|
// - MoveWindow, DeferWindowPos: [-32768, 32767] a.k.a. [SHRT_MIN, SHRT_MAX];
|
|
// - CreateWindow, CreateWindowEx: [-32768, 32554].
|
|
// CreateXXX will _sometimes_ manage to create the window at higher coordinates
|
|
// like 32580, 32684, 32710, but that was not consistent and the lowest common
|
|
// limit was 32554 (so far at least).
|
|
return (x >= SHRT_MIN && x <= 32554 && y >= SHRT_MIN && y <= 32554);
|
|
}
|
|
|
|
protected:
|
|
WXHWND MSWCreateWindowAtAnyPosition(WXDWORD exStyle, const wxChar* clName,
|
|
const wxChar* title, WXDWORD style,
|
|
int x, int y, int width, int height,
|
|
WXHWND parent, wxWindowID id);
|
|
|
|
void MSWMoveWindowToAnyPosition(WXHWND hwnd, int x, int y,
|
|
int width, int height, bool bRepaint);
|
|
|
|
#if wxUSE_DEFERRED_SIZING
|
|
// this function is called after the window was resized to its new size
|
|
virtual void MSWEndDeferWindowPos()
|
|
{
|
|
m_pendingPosition = wxDefaultPosition;
|
|
m_pendingSize = wxDefaultSize;
|
|
}
|
|
|
|
// current defer window position operation handle (may be NULL)
|
|
WXHANDLE m_hDWP;
|
|
|
|
// When deferred positioning is done these hold the pending changes, and
|
|
// are used for the default values if another size/pos changes is done on
|
|
// this window before the group of deferred changes is completed.
|
|
wxPoint m_pendingPosition;
|
|
wxSize m_pendingSize;
|
|
#endif // wxUSE_DEFERRED_SIZING
|
|
|
|
private:
|
|
wxDECLARE_DYNAMIC_CLASS(wxWindowMSW);
|
|
wxDECLARE_NO_COPY_CLASS(wxWindowMSW);
|
|
wxDECLARE_EVENT_TABLE();
|
|
};
|
|
|
|
// window creation helper class: before creating a new HWND, instantiate an
|
|
// object of this class on stack - this allows to process the messages sent to
|
|
// the window even before CreateWindow() returns
|
|
class wxWindowCreationHook
|
|
{
|
|
public:
|
|
wxWindowCreationHook(wxWindowMSW *winBeingCreated);
|
|
~wxWindowCreationHook();
|
|
};
|
|
|
|
#endif // _WX_WINDOW_H_
|