261 lines
6.6 KiB
C++
261 lines
6.6 KiB
C++
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/**************************************************************************\
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*
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* Copyright (c) 1998-2000 Microsoft Corporation
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*
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* Module Name:
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*
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* DpBitmap
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*
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* Notes:
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*
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* Abstract:
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*
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* This is a DDI-level surface. Its name should really be 'surface'.
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* Unlike many other DDI objects, there isn't a one-to-one mapping between
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* a DpBitmap and a GpBitmap. Rather, this is like a GDI surface - it
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* represents any rectangular area to which one can draw.
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*
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* Created:
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*
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* 12/01/1998 andrewgo
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* Created it.
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* 03/24/1999 agodfrey
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* Moved into separate file.
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*
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\**************************************************************************/
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#ifndef _DPBITMAP_HPP
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#define _DPBITMAP_HPP
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// DpTransparency:
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// Characterizes the alpha values in a surface. Perf optimizations can
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// take advantage of this knowledge.
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enum DpTransparency
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{
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TransparencyUnknown, // We know nothing about the alpha values
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TransparencyComplex, // We have alpha values between 0 and 1
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TransparencySimple, // All alpha values are either 0 or 1
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TransparencyOpaque, // All alpha values are 1
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TransparencyNearConstant, // we have near constant alpha
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TransparencyNoAlpha // All pixels are opaque because the surface doesn't
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// support alpha.
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};
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// Define PixelFormatID in terms of the PixelFormat enum
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typedef PixelFormat PixelFormatID;
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// Passthrough compressed bitmaps to driver
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class DpCompressedData
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{
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public:
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DpCompressedData()
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{
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format = 0;
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bufferSize = 0;
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buffer = NULL;
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}
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~DpCompressedData()
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{
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ASSERT(buffer == NULL);
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}
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public:
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INT format;
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UINT bufferSize;
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VOID* buffer;
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};
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//--------------------------------------------------------------------------
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// Represent surface information
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//--------------------------------------------------------------------------
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class EpScanBitmap;
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struct ImageInfo;
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class DpBitmap
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{
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private:
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// We now use an ObjectTag to determine if the object is valid
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// instead of using a BOOL. This is much more robust and helps
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// with debugging. It also enables us to version our objects
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// more easily with a version number in the ObjectTag.
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ObjectTag Tag; // Keep this as the 1st value in the object!
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protected:
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VOID SetValid(BOOL valid)
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{
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Tag = valid ? ObjectTagDpBitmap : ObjectTagInvalid;
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}
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public:
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enum CreationType
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{
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GDI,
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GDIDIBSECTION,
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GPBITMAP,
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D3D
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};
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INT Width;
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INT Height;
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PixelFormatID PixelFormat; // bits per pixel, pre/post multiplied alpha, etc.
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INT NumBytes; // Number of bytes
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REAL DpiX; // actual horizontal resolution in dots per inch
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REAL DpiY; // actual vertical resolution in dots per inch
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UINT Uniqueness; // Incremented every time it's drawn on
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DpTransparency SurfaceTransparency;
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BYTE MinAlpha;
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BYTE MaxAlpha;
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// The following is true only for RGB format bitmaps:
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ColorPalette* PaletteTable;
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// These masks are no longer used for determining the pixel format
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// Use the PixelFormat member above instead.
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// In fact, there's never been any garantee that these fields were
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// set up correctly anyway. They should be removed soon.
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INT RedMask;
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INT GreenMask;
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INT BlueMask;
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INT AlphaMask;
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LPDIRECTDRAWSURFACE DdrawSurface;
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IDirectDrawSurface7 * DdrawSurface7;
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BOOL IsDisplay; // Is this bitmap associated with a display?
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CreationType Type;
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// short lived, so don't include statically
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DpCompressedData *CompressedData;
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public:
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BOOL IsDesktopSurface() const
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{
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return (this == Globals::DesktopSurface);
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}
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BOOL IsValid() const
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{
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ASSERT((Tag == ObjectTagDpBitmap) || (Tag == ObjectTagInvalid));
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#if DBG
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if (Tag == ObjectTagInvalid)
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{
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WARNING1("Invalid DpBitmap");
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}
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#endif
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return (Tag == ObjectTagDpBitmap);
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}
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public: // GDI+ INTERNAL
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VOID *Bits; // Points to surface bits
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VOID *CompBits;
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INT Delta; // Stride in bytes
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// Private data for the software rasterizer.
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EpScan *Scan;
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public: // GDI+ INTERNAL
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DpBitmap(HDC hdc = NULL)
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{
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SetValid(TRUE); // set to valid state
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if ((hdc == NULL) ||
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((DpiX = (REAL)GetDeviceCaps(hdc, LOGPIXELSX)) <= 0.0f) ||
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((DpiY = (REAL)GetDeviceCaps(hdc, LOGPIXELSY)) <= 0.0f))
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{
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// Assume this is a display surface with the display DPI for now
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IsDisplay = TRUE;
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DpiX = Globals::DesktopDpiX;
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DpiY = Globals::DesktopDpiY;
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}
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else
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{
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IsDisplay = (GetDeviceCaps(hdc, TECHNOLOGY) == DT_RASDISPLAY);
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}
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Scan = NULL;
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DdrawSurface = NULL;
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DdrawSurface7 = NULL;
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PaletteTable = NULL;
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CompressedData = NULL;
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SurfaceTransparency = TransparencyUnknown;
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}
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~DpBitmap();
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VOID InitializeForMetafile(GpDevice *device)
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{
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InitializeForGdiBitmap(device, 0, 0);
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}
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VOID InitializeForGdiBitmap(
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GpDevice *device,
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INT width,
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INT height
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);
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VOID InitializeForGdiScreen(
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GpDevice *device,
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INT width,
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INT height
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);
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BOOL InitializeForD3D(
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HDC hdc,
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INT *width,
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INT *height,
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DpDriver** driver
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);
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BOOL InitializeForD3D(
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IDirectDrawSurface7* surface,
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INT *width,
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INT *height,
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DpDriver** driver
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);
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BOOL InitializeForDibsection(
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HDC hdc,
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HBITMAP hbitmap,
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GpDevice *device,
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DIBSECTION *dib,
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INT *width,
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INT *height,
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DpDriver **driver
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);
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VOID InitializeForGdipBitmap(
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INT width,
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INT height,
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ImageInfo * imageInfo,
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EpScanBitmap * scanBitmap,
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BOOL isDisplay
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);
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BOOL InitializeForPrinter(GpPrinterDevice *device, INT width, INT height);
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BOOL StandardFormat();
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PixelFormatID GetPixelFormatFromBitDepth(INT bits);
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// Flush any pending rendering to this surface:
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VOID Flush(GpFlushIntention intention);
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REAL GetDpiX() const { return DpiX; }
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REAL GetDpiY() const { return DpiY; }
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};
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#endif
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