262 lines
6.7 KiB
C++
262 lines
6.7 KiB
C++
// Copyright (C) 2002-2008 Nikolaus Gebhardt
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// This file is part of the "Irrlicht Engine".
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// For conditions of distribution and use, see copyright notice in irrlicht.h
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#ifndef __C_IRR_DEVICE_WINCE_H_INCLUDED__
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#define __C_IRR_DEVICE_WINCE_H_INCLUDED__
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#include "IrrCompileConfig.h"
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#ifdef _IRR_USE_WINDOWS_CE_DEVICE_
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#include "CIrrDeviceStub.h"
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#include "IrrlichtDevice.h"
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#include "IImagePresenter.h"
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#include <windows.h>
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#include <windowsx.h>
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#include <commctrl.h>
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#include <aygshell.h>
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#include <sipapi.h>
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#include <gx.h>
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namespace irr
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{
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class CIrrDeviceWinCE : public CIrrDeviceStub, video::IImagePresenter
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{
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public:
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//! constructor
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CIrrDeviceWinCE( const SIrrlichtCreationParameters& params);
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//! destructor
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virtual ~CIrrDeviceWinCE();
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//! runs the device. Returns false if device wants to be deleted
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virtual bool run();
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//! Cause the device to temporarily pause execution and let other processes to run
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// This should bring down processor usage without major performance loss for Irrlicht
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virtual void yield();
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//! Pause execution and let other processes to run for a specified amount of time.
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virtual void sleep(u32 timeMs, bool pauseTimer);
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//! sets the caption of the window
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virtual void setWindowCaption(const wchar_t* text);
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//! returns if window is active. if not, nothing need to be drawn
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virtual bool isWindowActive() const;
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//! returns if window has focus
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virtual bool isWindowFocused() const;
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//! returns if window is minimized
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virtual bool isWindowMinimized() const;
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//! presents a surface in the client area
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virtual void present(video::IImage* surface, void* windowId = 0, core::rect<s32>* src=0 );
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//! notifies the device that it should close itself
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virtual void closeDevice();
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//! \return Returns a pointer to a list with all video modes
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//! supported by the gfx adapter.
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video::IVideoModeList* getVideoModeList();
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//! Notifies the device, that it has been resized
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void OnResized();
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//! Sets if the window should be resizeable in windowed mode.
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virtual void setResizeAble(bool resize=false);
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//! Implementation of the win32 cursor control
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class CCursorControl : public gui::ICursorControl
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{
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public:
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CCursorControl(const core::dimension2d<s32>& wsize, HWND hwnd, bool fullscreen)
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: WindowSize(wsize), InvWindowSize(0.0f, 0.0f), IsVisible(true),
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HWnd(hwnd), BorderX(0), BorderY(0), UseReferenceRect(false)
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{
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if (WindowSize.Width!=0)
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InvWindowSize.Width = 1.0f / WindowSize.Width;
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if (WindowSize.Height!=0)
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InvWindowSize.Height = 1.0f / WindowSize.Height;
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if (!fullscreen)
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{
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BorderX = GetSystemMetrics(SM_CXDLGFRAME);
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BorderY = GetSystemMetrics(SM_CYCAPTION) + GetSystemMetrics(SM_CYDLGFRAME);
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}
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}
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//! Changes the visible state of the mouse cursor.
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virtual void setVisible(bool visible)
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{
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IsVisible = visible;
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}
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//! Returns if the cursor is currently visible.
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virtual bool isVisible() const
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{
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_IRR_IMPLEMENT_MANAGED_MARSHALLING_BUGFIX;
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return IsVisible;
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}
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//! Sets the new position of the cursor.
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virtual void setPosition(const core::position2d<f32> &pos)
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{
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setPosition(pos.X, pos.Y);
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}
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//! Sets the new position of the cursor.
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virtual void setPosition(f32 x, f32 y)
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{
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if (!UseReferenceRect)
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setPosition((s32)(x*WindowSize.Width), (s32)(y*WindowSize.Height));
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else
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setPosition((s32)(x*ReferenceRect.getWidth()), (s32)(y*ReferenceRect.getHeight()));
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}
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//! Sets the new position of the cursor.
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virtual void setPosition(const core::position2d<s32> &pos)
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{
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setPosition(pos.X, pos.Y);
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}
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//! Sets the new position of the cursor.
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virtual void setPosition(s32 x, s32 y)
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{
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RECT rect;
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if (UseReferenceRect)
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{
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SetCursorPos(ReferenceRect.UpperLeftCorner.X + x,
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ReferenceRect.UpperLeftCorner.Y + y);
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}
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else
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{
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if (GetWindowRect(HWnd, &rect))
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SetCursorPos(x + rect.left + BorderX, y + rect.top + BorderY);
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}
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CursorPos.X = x;
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CursorPos.Y = y;
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}
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//! Returns the current position of the mouse cursor.
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virtual core::position2d<s32> getPosition()
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{
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updateInternalCursorPosition();
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return CursorPos;
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}
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//! Returns the current position of the mouse cursor.
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virtual core::position2d<f32> getRelativePosition()
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{
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updateInternalCursorPosition();
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if (!UseReferenceRect)
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{
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return core::position2d<f32>(CursorPos.X * InvWindowSize.Width,
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CursorPos.Y * InvWindowSize.Height);
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}
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return core::position2d<f32>(CursorPos.X / (f32)ReferenceRect.getWidth(),
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CursorPos.Y / (f32)ReferenceRect.getHeight());
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}
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//! Sets an absolute reference rect for calculating the cursor position.
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virtual void setReferenceRect(core::rect<s32>* rect=0)
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{
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if (rect)
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{
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ReferenceRect = *rect;
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UseReferenceRect = true;
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// prevent division through zero and uneven sizes
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if (!ReferenceRect.getHeight() || ReferenceRect.getHeight()%2)
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ReferenceRect.LowerRightCorner.Y += 1;
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if (!ReferenceRect.getWidth() || ReferenceRect.getWidth()%2)
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ReferenceRect.LowerRightCorner.X += 1;
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}
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else
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UseReferenceRect = false;
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}
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private:
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//! Updates the internal cursor position
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void updateInternalCursorPosition()
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{
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POINT p;
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GetCursorPos(&p);
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RECT rect;
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if (UseReferenceRect)
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{
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CursorPos.X = p.x - ReferenceRect.UpperLeftCorner.X;
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CursorPos.Y = p.y - ReferenceRect.UpperLeftCorner.Y;
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}
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else
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{
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if (GetWindowRect(HWnd, &rect))
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{
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CursorPos.X = p.x-rect.left-BorderX;
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CursorPos.Y = p.y-rect.top-BorderY;
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}
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else
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{
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// window seems not to be existent, so set cursor to
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// a negative value
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CursorPos.X = -1;
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CursorPos.Y = -1;
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}
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}
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}
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core::position2d<s32> CursorPos;
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core::dimension2d<s32> WindowSize;
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core::dimension2d<f32> InvWindowSize;
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bool IsVisible;
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HWND HWnd;
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s32 BorderX, BorderY;
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bool UseReferenceRect;
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core::rect<s32> ReferenceRect;
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};
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//! returns the win32 cursor control
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CCursorControl* getWin32CursorControl();
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private:
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//! create the driver
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void createDriver();
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//! switchs to fullscreen
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bool switchToFullScreen();
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void getWindowsVersion(core::stringc& version);
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void resizeIfNecessary();
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HWND HWnd;
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CCursorControl* Win32CursorControl;
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bool ChangedToFullScreen;
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bool Resized;
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bool ExternalWindow;
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};
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} // end namespace irr
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#endif
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#endif
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