2 * X11DRV device-independent bitmaps
4 * Copyright 1993,1994 Alexandre Julliard
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
25 #include <X11/extensions/XShm.h>
26 # ifdef HAVE_SYS_SHM_H
29 # ifdef HAVE_SYS_IPC_H
32 #endif /* defined(HAVE_LIBXXSHM) */
42 #include "wine/debug.h"
44 WINE_DEFAULT_DEBUG_CHANNEL(bitmap
);
46 static struct list dibs_list
= LIST_INIT(dibs_list
);
48 static CRITICAL_SECTION dibs_cs
;
49 static CRITICAL_SECTION_DEBUG dibs_cs_debug
=
52 { &dibs_cs_debug
.ProcessLocksList
, &dibs_cs_debug
.ProcessLocksList
},
53 0, 0, { (DWORD_PTR
)(__FILE__
": dibs_cs") }
55 static CRITICAL_SECTION dibs_cs
= { &dibs_cs_debug
, -1, 0, 0, 0, 0 };
57 static PVOID dibs_handler
;
59 static int ximageDepthTable
[32];
61 /* This structure holds the arguments for DIB_SetImageBits() */
64 X11DRV_PDEVICE
*physDev
;
67 PALETTEENTRY
*palentry
;
89 } X11DRV_DIB_IMAGEBITS_DESCR
;
94 RLE_EOL
= 0, /* End of line */
95 RLE_END
= 1, /* End of bitmap */
96 RLE_DELTA
= 2 /* Delta */
100 static INT
X11DRV_DIB_Coerce(X_PHYSBITMAP
*,INT
,BOOL
);
101 static INT
X11DRV_DIB_Lock(X_PHYSBITMAP
*,INT
,BOOL
);
102 static void X11DRV_DIB_Unlock(X_PHYSBITMAP
*,BOOL
);
105 Some of the following helper functions are duplicated in
109 /***********************************************************************
110 * X11DRV_DIB_GetXImageWidthBytes
112 * Return the width of an X image in bytes
114 inline static int X11DRV_DIB_GetXImageWidthBytes( int width
, int depth
)
116 if (!depth
|| depth
> 32) goto error
;
118 if (!ximageDepthTable
[depth
-1])
120 XImage
*testimage
= XCreateImage( gdi_display
, visual
, depth
,
121 ZPixmap
, 0, NULL
, 1, 1, 32, 20 );
124 ximageDepthTable
[depth
-1] = testimage
->bits_per_pixel
;
125 XDestroyImage( testimage
);
127 else ximageDepthTable
[depth
-1] = -1;
129 if (ximageDepthTable
[depth
-1] != -1)
130 return (4 * ((width
* ximageDepthTable
[depth
-1] + 31) / 32));
133 WARN( "(%d): Unsupported depth\n", depth
);
138 /***********************************************************************
139 * X11DRV_DIB_GetDIBWidthBytes
141 * Return the width of a DIB bitmap in bytes. DIB bitmap data is 32-bit aligned.
143 static int X11DRV_DIB_GetDIBWidthBytes( int width
, int depth
)
149 case 1: words
= (width
+ 31) / 32; break;
150 case 4: words
= (width
+ 7) / 8; break;
151 case 8: words
= (width
+ 3) / 4; break;
153 case 16: words
= (width
+ 1) / 2; break;
154 case 24: words
= (width
* 3 + 3) / 4; break;
156 WARN("(%d): Unsupported depth\n", depth
);
165 /***********************************************************************
166 * X11DRV_DIB_GetDIBImageBytes
168 * Return the number of bytes used to hold the image in a DIB bitmap.
170 static int X11DRV_DIB_GetDIBImageBytes( int width
, int height
, int depth
)
172 return X11DRV_DIB_GetDIBWidthBytes( width
, depth
) * abs( height
);
176 /***********************************************************************
177 * X11DRV_DIB_BitmapInfoSize
179 * Return the size of the bitmap info structure including color table.
181 int X11DRV_DIB_BitmapInfoSize( const BITMAPINFO
* info
, WORD coloruse
)
185 if (info
->bmiHeader
.biSize
== sizeof(BITMAPCOREHEADER
))
187 const BITMAPCOREHEADER
*core
= (const BITMAPCOREHEADER
*)info
;
188 colors
= (core
->bcBitCount
<= 8) ? 1 << core
->bcBitCount
: 0;
189 return sizeof(BITMAPCOREHEADER
) + colors
*
190 ((coloruse
== DIB_RGB_COLORS
) ? sizeof(RGBTRIPLE
) : sizeof(WORD
));
192 else /* assume BITMAPINFOHEADER */
194 colors
= info
->bmiHeader
.biClrUsed
;
195 if (!colors
&& (info
->bmiHeader
.biBitCount
<= 8))
196 colors
= 1 << info
->bmiHeader
.biBitCount
;
197 return sizeof(BITMAPINFOHEADER
) + colors
*
198 ((coloruse
== DIB_RGB_COLORS
) ? sizeof(RGBQUAD
) : sizeof(WORD
));
203 /***********************************************************************
204 * X11DRV_DIB_CreateXImage
208 XImage
*X11DRV_DIB_CreateXImage( int width
, int height
, int depth
)
214 width_bytes
= X11DRV_DIB_GetXImageWidthBytes( width
, depth
);
215 image
= XCreateImage( gdi_display
, visual
, depth
, ZPixmap
, 0,
216 calloc( height
, width_bytes
),
217 width
, height
, 32, width_bytes
);
223 /***********************************************************************
224 * DIB_GetBitmapInfoEx
226 * Get the info from a bitmap header.
227 * Return 1 for INFOHEADER, 0 for COREHEADER, -1 for error.
229 static int DIB_GetBitmapInfoEx( const BITMAPINFOHEADER
*header
, LONG
*width
,
230 LONG
*height
, WORD
*planes
, WORD
*bpp
,
231 WORD
*compr
, DWORD
*size
)
233 if (header
->biSize
== sizeof(BITMAPCOREHEADER
))
235 const BITMAPCOREHEADER
*core
= (const BITMAPCOREHEADER
*)header
;
236 *width
= core
->bcWidth
;
237 *height
= core
->bcHeight
;
238 *planes
= core
->bcPlanes
;
239 *bpp
= core
->bcBitCount
;
244 if (header
->biSize
>= sizeof(BITMAPINFOHEADER
))
246 *width
= header
->biWidth
;
247 *height
= header
->biHeight
;
248 *planes
= header
->biPlanes
;
249 *bpp
= header
->biBitCount
;
250 *compr
= header
->biCompression
;
251 *size
= header
->biSizeImage
;
254 ERR("(%ld): unknown/wrong size for header\n", header
->biSize
);
259 /***********************************************************************
262 * Get the info from a bitmap header.
263 * Return 1 for INFOHEADER, 0 for COREHEADER, -1 for error.
265 static int DIB_GetBitmapInfo( const BITMAPINFOHEADER
*header
, LONG
*width
,
266 LONG
*height
, WORD
*bpp
, WORD
*compr
)
271 return DIB_GetBitmapInfoEx( header
, width
, height
, &planes
, bpp
, compr
, &size
);
275 /***********************************************************************
276 * X11DRV_DIB_GenColorMap
278 * Fills the color map of a bitmap palette. Should not be called
279 * for a >8-bit deep bitmap.
281 static int *X11DRV_DIB_GenColorMap( X11DRV_PDEVICE
*physDev
, int *colorMapping
,
282 WORD coloruse
, WORD depth
, BOOL quads
,
283 const void *colorPtr
, int start
, int end
)
287 if (coloruse
== DIB_RGB_COLORS
)
291 const RGBQUAD
* rgb
= (const RGBQUAD
*)colorPtr
;
293 if (depth
== 1) /* Monochrome */
294 for (i
= start
; i
< end
; i
++, rgb
++)
295 colorMapping
[i
] = (rgb
->rgbRed
+ rgb
->rgbGreen
+
296 rgb
->rgbBlue
> 255*3/2);
298 for (i
= start
; i
< end
; i
++, rgb
++)
299 colorMapping
[i
] = X11DRV_PALETTE_ToPhysical( physDev
, RGB(rgb
->rgbRed
,
305 const RGBTRIPLE
* rgb
= (const RGBTRIPLE
*)colorPtr
;
307 if (depth
== 1) /* Monochrome */
308 for (i
= start
; i
< end
; i
++, rgb
++)
309 colorMapping
[i
] = (rgb
->rgbtRed
+ rgb
->rgbtGreen
+
310 rgb
->rgbtBlue
> 255*3/2);
312 for (i
= start
; i
< end
; i
++, rgb
++)
313 colorMapping
[i
] = X11DRV_PALETTE_ToPhysical( physDev
, RGB(rgb
->rgbtRed
,
318 else /* DIB_PAL_COLORS */
321 const WORD
* index
= (const WORD
*)colorPtr
;
323 for (i
= start
; i
< end
; i
++, index
++)
324 colorMapping
[i
] = X11DRV_PALETTE_ToPhysical( physDev
, PALETTEINDEX(*index
) );
326 for (i
= start
; i
< end
; i
++)
327 colorMapping
[i
] = X11DRV_PALETTE_ToPhysical( physDev
, PALETTEINDEX(i
) );
334 /***********************************************************************
335 * X11DRV_DIB_BuildColorMap
337 * Build the color map from the bitmap palette. Should not be called
338 * for a >8-bit deep bitmap.
340 int *X11DRV_DIB_BuildColorMap( X11DRV_PDEVICE
*physDev
, WORD coloruse
, WORD depth
,
341 const BITMAPINFO
*info
, int *nColors
)
345 const void *colorPtr
;
348 isInfo
= info
->bmiHeader
.biSize
!= sizeof(BITMAPCOREHEADER
);
352 colors
= info
->bmiHeader
.biClrUsed
;
353 if (!colors
) colors
= 1 << info
->bmiHeader
.biBitCount
;
357 colors
= 1 << ((const BITMAPCOREHEADER
*)info
)->bcBitCount
;
360 colorPtr
= (const BYTE
*) info
+ (WORD
) info
->bmiHeader
.biSize
;
364 ERR("called with >256 colors!\n");
368 /* just so CopyDIBSection doesn't have to create an identity palette */
369 if (coloruse
== (WORD
)-1) colorPtr
= NULL
;
371 if (!(colorMapping
= HeapAlloc(GetProcessHeap(), 0, colors
* sizeof(int) )))
375 return X11DRV_DIB_GenColorMap( physDev
, colorMapping
, coloruse
, depth
,
376 isInfo
, colorPtr
, 0, colors
);
379 /***********************************************************************
380 * X11DRV_DIB_BuildColorTable
382 * Build the dib color table. This either keeps a copy of the bmiColors array if
383 * usage is DIB_RGB_COLORS, or looks up the palette indicies if usage is
385 * Should not be called for a >8-bit deep bitmap.
387 static RGBQUAD
*X11DRV_DIB_BuildColorTable( X11DRV_PDEVICE
*physDev
, WORD coloruse
, WORD depth
,
388 const BITMAPINFO
*info
)
393 BOOL core_info
= info
->bmiHeader
.biSize
== sizeof(BITMAPCOREHEADER
);
397 colors
= 1 << ((const BITMAPCOREINFO
*) info
)->bmciHeader
.bcBitCount
;
401 colors
= info
->bmiHeader
.biClrUsed
;
402 if (!colors
) colors
= 1 << info
->bmiHeader
.biBitCount
;
406 ERR("called with >256 colors!\n");
410 if (!(colorTable
= HeapAlloc(GetProcessHeap(), 0, colors
* sizeof(RGBQUAD
) )))
413 if(coloruse
== DIB_RGB_COLORS
)
417 /* Convert RGBTRIPLEs to RGBQUADs */
418 for (i
=0; i
< colors
; i
++)
420 colorTable
[i
].rgbRed
= ((const BITMAPCOREINFO
*) info
)->bmciColors
[i
].rgbtRed
;
421 colorTable
[i
].rgbGreen
= ((const BITMAPCOREINFO
*) info
)->bmciColors
[i
].rgbtGreen
;
422 colorTable
[i
].rgbBlue
= ((const BITMAPCOREINFO
*) info
)->bmciColors
[i
].rgbtBlue
;
423 colorTable
[i
].rgbReserved
= 0;
428 memcpy(colorTable
, (const BYTE
*) info
+ (WORD
) info
->bmiHeader
.biSize
, colors
* sizeof(RGBQUAD
));
433 HPALETTE hpal
= GetCurrentObject(physDev
->hdc
, OBJ_PAL
);
434 PALETTEENTRY
* pal_ents
;
435 const WORD
*index
= (const WORD
*) ((const BYTE
*) info
+ (WORD
) info
->bmiHeader
.biSize
);
436 int logcolors
, entry
;
438 logcolors
= GetPaletteEntries( hpal
, 0, 0, NULL
);
439 pal_ents
= HeapAlloc(GetProcessHeap(), 0, logcolors
* sizeof(*pal_ents
));
440 logcolors
= GetPaletteEntries( hpal
, 0, logcolors
, pal_ents
);
442 for(i
= 0; i
< colors
; i
++, index
++)
444 entry
= *index
% logcolors
;
445 colorTable
[i
].rgbRed
= pal_ents
[entry
].peRed
;
446 colorTable
[i
].rgbGreen
= pal_ents
[entry
].peGreen
;
447 colorTable
[i
].rgbBlue
= pal_ents
[entry
].peBlue
;
448 colorTable
[i
].rgbReserved
= 0;
451 HeapFree(GetProcessHeap(), 0, pal_ents
);
457 /***********************************************************************
458 * X11DRV_DIB_MapColor
460 static int X11DRV_DIB_MapColor( int *physMap
, int nPhysMap
, int phys
, int oldcol
)
464 if ((oldcol
< nPhysMap
) && (physMap
[oldcol
] == phys
))
467 for (color
= 0; color
< nPhysMap
; color
++)
468 if (physMap
[color
] == phys
)
471 WARN("Strange color %08x\n", phys
);
476 /*********************************************************************
477 * X11DRV_DIB_GetNearestIndex
479 * Helper for X11DRV_DIB_GetDIBits.
480 * Returns the nearest colour table index for a given RGB.
481 * Nearest is defined by minimizing the sum of the squares.
483 static INT
X11DRV_DIB_GetNearestIndex(RGBQUAD
*colormap
, int numColors
, BYTE r
, BYTE g
, BYTE b
)
485 INT i
, best
= -1, diff
, bestdiff
= -1;
488 for(color
= colormap
, i
= 0; i
< numColors
; color
++, i
++) {
489 diff
= (r
- color
->rgbRed
) * (r
- color
->rgbRed
) +
490 (g
- color
->rgbGreen
) * (g
- color
->rgbGreen
) +
491 (b
- color
->rgbBlue
) * (b
- color
->rgbBlue
);
494 if(best
== -1 || diff
< bestdiff
) {
501 /*********************************************************************
502 * X11DRV_DIB_MaskToShift
504 * Helper for X11DRV_DIB_GetDIBits.
505 * Returns the by how many bits to shift a given color so that it is
506 * in the proper position.
508 INT
X11DRV_DIB_MaskToShift(DWORD mask
)
516 while ((mask
&1)==0) {
523 /***********************************************************************
524 * X11DRV_DIB_SetImageBits_1
526 * SetDIBits for a 1-bit deep DIB.
528 static void X11DRV_DIB_SetImageBits_1( int lines
, const BYTE
*srcbits
,
529 DWORD srcwidth
, DWORD dstwidth
, int left
,
530 int *colors
, XImage
*bmpImage
, DWORD linebytes
)
539 srcbits
= srcbits
+ linebytes
* (lines
- 1);
540 linebytes
= -linebytes
;
543 if ((extra
= (left
& 7)) != 0) {
547 srcbits
+= left
>> 3;
548 width
= min(srcwidth
, dstwidth
);
550 /* ==== pal 1 dib -> any bmp format ==== */
551 for (h
= lines
-1; h
>=0; h
--) {
553 /* FIXME: should avoid putting x<left pixels (minor speed issue) */
554 for (i
= width
/8, x
= left
; i
> 0; i
--) {
556 XPutPixel( bmpImage
, x
++, h
, colors
[ srcval
>> 7] );
557 XPutPixel( bmpImage
, x
++, h
, colors
[(srcval
>> 6) & 1] );
558 XPutPixel( bmpImage
, x
++, h
, colors
[(srcval
>> 5) & 1] );
559 XPutPixel( bmpImage
, x
++, h
, colors
[(srcval
>> 4) & 1] );
560 XPutPixel( bmpImage
, x
++, h
, colors
[(srcval
>> 3) & 1] );
561 XPutPixel( bmpImage
, x
++, h
, colors
[(srcval
>> 2) & 1] );
562 XPutPixel( bmpImage
, x
++, h
, colors
[(srcval
>> 1) & 1] );
563 XPutPixel( bmpImage
, x
++, h
, colors
[ srcval
& 1] );
569 case 7: XPutPixel(bmpImage
, x
++, h
, colors
[srcval
>> 7]); srcval
<<=1;
570 case 6: XPutPixel(bmpImage
, x
++, h
, colors
[srcval
>> 7]); srcval
<<=1;
571 case 5: XPutPixel(bmpImage
, x
++, h
, colors
[srcval
>> 7]); srcval
<<=1;
572 case 4: XPutPixel(bmpImage
, x
++, h
, colors
[srcval
>> 7]); srcval
<<=1;
573 case 3: XPutPixel(bmpImage
, x
++, h
, colors
[srcval
>> 7]); srcval
<<=1;
574 case 2: XPutPixel(bmpImage
, x
++, h
, colors
[srcval
>> 7]); srcval
<<=1;
575 case 1: XPutPixel(bmpImage
, x
++, h
, colors
[srcval
>> 7]);
578 srcbits
+= linebytes
;
582 /***********************************************************************
583 * X11DRV_DIB_GetImageBits_1
585 * GetDIBits for a 1-bit deep DIB.
587 static void X11DRV_DIB_GetImageBits_1( int lines
, BYTE
*dstbits
,
588 DWORD dstwidth
, DWORD srcwidth
,
589 RGBQUAD
*colors
, PALETTEENTRY
*srccolors
,
590 XImage
*bmpImage
, DWORD linebytes
)
593 int h
, width
= min(dstwidth
, srcwidth
);
597 dstbits
= dstbits
+ linebytes
* (lines
- 1);
598 linebytes
= -linebytes
;
601 switch (bmpImage
->depth
)
605 if (bmpImage
->red_mask
==0 && bmpImage
->green_mask
==0 && bmpImage
->blue_mask
==0 && srccolors
) {
606 /* ==== pal 1 or 4 bmp -> pal 1 dib ==== */
609 for (h
=lines
-1; h
>=0; h
--) {
613 for (x
=0; x
<width
; x
++) {
615 srcval
=srccolors
[XGetPixel(bmpImage
, x
, h
)];
616 dstval
|=(X11DRV_DIB_GetNearestIndex
620 srcval
.peBlue
) << (7 - (x
& 7)));
629 dstbits
+= linebytes
;
637 if (bmpImage
->red_mask
==0 && bmpImage
->green_mask
==0 && bmpImage
->blue_mask
==0 && srccolors
) {
638 /* ==== pal 8 bmp -> pal 1 dib ==== */
640 const BYTE
* srcpixel
;
643 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
645 for (h
=0; h
<lines
; h
++) {
650 for (x
=0; x
<width
; x
++) {
652 srcval
=srccolors
[(int)*srcpixel
++];
653 dstval
|=(X11DRV_DIB_GetNearestIndex
657 srcval
.peBlue
) << (7-(x
&7)) );
666 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
667 dstbits
+= linebytes
;
678 const WORD
* srcpixel
;
681 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
683 if (bmpImage
->green_mask
==0x03e0) {
684 if (bmpImage
->red_mask
==0x7c00) {
685 /* ==== rgb 555 bmp -> pal 1 dib ==== */
686 for (h
=0; h
<lines
; h
++) {
691 for (x
=0; x
<width
; x
++) {
694 dstval
|=(X11DRV_DIB_GetNearestIndex
696 ((srcval
>> 7) & 0xf8) | /* r */
697 ((srcval
>> 12) & 0x07),
698 ((srcval
>> 2) & 0xf8) | /* g */
699 ((srcval
>> 7) & 0x07),
700 ((srcval
<< 3) & 0xf8) | /* b */
701 ((srcval
>> 2) & 0x07) ) << (7-(x
&7)) );
710 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
711 dstbits
+= linebytes
;
713 } else if (bmpImage
->blue_mask
==0x7c00) {
714 /* ==== bgr 555 bmp -> pal 1 dib ==== */
715 for (h
=0; h
<lines
; h
++) {
720 for (x
=0; x
<width
; x
++) {
723 dstval
|=(X11DRV_DIB_GetNearestIndex
725 ((srcval
<< 3) & 0xf8) | /* r */
726 ((srcval
>> 2) & 0x07),
727 ((srcval
>> 2) & 0xf8) | /* g */
728 ((srcval
>> 7) & 0x07),
729 ((srcval
>> 7) & 0xf8) | /* b */
730 ((srcval
>> 12) & 0x07) ) << (7-(x
&7)) );
739 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
740 dstbits
+= linebytes
;
745 } else if (bmpImage
->green_mask
==0x07e0) {
746 if (bmpImage
->red_mask
==0xf800) {
747 /* ==== rgb 565 bmp -> pal 1 dib ==== */
748 for (h
=0; h
<lines
; h
++) {
753 for (x
=0; x
<width
; x
++) {
756 dstval
|=(X11DRV_DIB_GetNearestIndex
758 ((srcval
>> 8) & 0xf8) | /* r */
759 ((srcval
>> 13) & 0x07),
760 ((srcval
>> 3) & 0xfc) | /* g */
761 ((srcval
>> 9) & 0x03),
762 ((srcval
<< 3) & 0xf8) | /* b */
763 ((srcval
>> 2) & 0x07) ) << (7-(x
&7)) );
772 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
773 dstbits
+= linebytes
;
775 } else if (bmpImage
->blue_mask
==0xf800) {
776 /* ==== bgr 565 bmp -> pal 1 dib ==== */
777 for (h
=0; h
<lines
; h
++) {
782 for (x
=0; x
<width
; x
++) {
785 dstval
|=(X11DRV_DIB_GetNearestIndex
787 ((srcval
<< 3) & 0xf8) | /* r */
788 ((srcval
>> 2) & 0x07),
789 ((srcval
>> 3) & 0xfc) | /* g */
790 ((srcval
>> 9) & 0x03),
791 ((srcval
>> 8) & 0xf8) | /* b */
792 ((srcval
>> 13) & 0x07) ) << (7-(x
&7)) );
801 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
802 dstbits
+= linebytes
;
821 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
822 bytes_per_pixel
=(bmpImage
->bits_per_pixel
==24?3:4);
824 if (bmpImage
->green_mask
!=0x00ff00 ||
825 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
827 } else if (bmpImage
->blue_mask
==0xff) {
828 /* ==== rgb 888 or 0888 bmp -> pal 1 dib ==== */
829 for (h
=0; h
<lines
; h
++) {
834 for (x
=0; x
<width
; x
++) {
835 dstval
|=(X11DRV_DIB_GetNearestIndex
839 srcbyte
[0]) << (7-(x
&7)) );
840 srcbyte
+=bytes_per_pixel
;
849 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
850 dstbits
+= linebytes
;
853 /* ==== bgr 888 or 0888 bmp -> pal 1 dib ==== */
854 for (h
=0; h
<lines
; h
++) {
859 for (x
=0; x
<width
; x
++) {
860 dstval
|=(X11DRV_DIB_GetNearestIndex
864 srcbyte
[2]) << (7-(x
&7)) );
865 srcbyte
+=bytes_per_pixel
;
874 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
875 dstbits
+= linebytes
;
885 unsigned long white
= (1 << bmpImage
->bits_per_pixel
) - 1;
887 /* ==== any bmp format -> pal 1 dib ==== */
888 WARN("from unknown %d bit bitmap (%lx,%lx,%lx) to 1 bit DIB\n",
889 bmpImage
->bits_per_pixel
, bmpImage
->red_mask
,
890 bmpImage
->green_mask
, bmpImage
->blue_mask
);
892 for (h
=lines
-1; h
>=0; h
--) {
896 for (x
=0; x
<width
; x
++) {
897 dstval
|=(XGetPixel( bmpImage
, x
, h
) >= white
) << (7 - (x
&7));
906 dstbits
+= linebytes
;
913 /***********************************************************************
914 * X11DRV_DIB_SetImageBits_4
916 * SetDIBits for a 4-bit deep DIB.
918 static void X11DRV_DIB_SetImageBits_4( int lines
, const BYTE
*srcbits
,
919 DWORD srcwidth
, DWORD dstwidth
, int left
,
920 int *colors
, XImage
*bmpImage
, DWORD linebytes
)
928 srcbits
= srcbits
+ linebytes
* (lines
- 1);
929 linebytes
= -linebytes
;
936 srcbits
+= left
>> 1;
937 width
= min(srcwidth
, dstwidth
);
939 /* ==== pal 4 dib -> any bmp format ==== */
940 for (h
= lines
-1; h
>= 0; h
--) {
942 for (i
= width
/2, x
= left
; i
> 0; i
--) {
943 BYTE srcval
=*srcbyte
++;
944 XPutPixel( bmpImage
, x
++, h
, colors
[srcval
>> 4] );
945 XPutPixel( bmpImage
, x
++, h
, colors
[srcval
& 0x0f] );
948 XPutPixel( bmpImage
, x
, h
, colors
[*srcbyte
>> 4] );
949 srcbits
+= linebytes
;
955 /***********************************************************************
956 * X11DRV_DIB_GetImageBits_4
958 * GetDIBits for a 4-bit deep DIB.
960 static void X11DRV_DIB_GetImageBits_4( int lines
, BYTE
*dstbits
,
961 DWORD srcwidth
, DWORD dstwidth
,
962 RGBQUAD
*colors
, PALETTEENTRY
*srccolors
,
963 XImage
*bmpImage
, DWORD linebytes
)
966 int h
, width
= min(srcwidth
, dstwidth
);
972 dstbits
= dstbits
+ ( linebytes
* (lines
-1) );
973 linebytes
= -linebytes
;
978 switch (bmpImage
->depth
) {
981 if (bmpImage
->red_mask
==0 && bmpImage
->green_mask
==0 && bmpImage
->blue_mask
==0 && srccolors
) {
982 /* ==== pal 1 or 4 bmp -> pal 4 dib ==== */
985 for (h
= lines
-1; h
>= 0; h
--) {
989 for (x
= 0; x
< width
; x
++) {
991 srcval
=srccolors
[XGetPixel(bmpImage
, x
, h
)];
992 dstval
|=(X11DRV_DIB_GetNearestIndex
996 srcval
.peBlue
) << (4-((x
&1)<<2)));
1005 dstbits
+= linebytes
;
1013 if (bmpImage
->red_mask
==0 && bmpImage
->green_mask
==0 && bmpImage
->blue_mask
==0 && srccolors
) {
1014 /* ==== pal 8 bmp -> pal 4 dib ==== */
1015 const void* srcbits
;
1016 const BYTE
*srcpixel
;
1019 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
1020 for (h
=0; h
<lines
; h
++) {
1025 for (x
=0; x
<width
; x
++) {
1026 PALETTEENTRY srcval
;
1027 srcval
= srccolors
[(int)*srcpixel
++];
1028 dstval
|=(X11DRV_DIB_GetNearestIndex
1032 srcval
.peBlue
) << (4*(1-(x
&1))) );
1041 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1042 dstbits
+= linebytes
;
1052 const void* srcbits
;
1053 const WORD
* srcpixel
;
1056 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
1058 if (bmpImage
->green_mask
==0x03e0) {
1059 if (bmpImage
->red_mask
==0x7c00) {
1060 /* ==== rgb 555 bmp -> pal 4 dib ==== */
1061 for (h
=0; h
<lines
; h
++) {
1066 for (x
=0; x
<width
; x
++) {
1069 dstval
|=(X11DRV_DIB_GetNearestIndex
1071 ((srcval
>> 7) & 0xf8) | /* r */
1072 ((srcval
>> 12) & 0x07),
1073 ((srcval
>> 2) & 0xf8) | /* g */
1074 ((srcval
>> 7) & 0x07),
1075 ((srcval
<< 3) & 0xf8) | /* b */
1076 ((srcval
>> 2) & 0x07) ) << ((1-(x
&1))<<2) );
1085 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1086 dstbits
+= linebytes
;
1088 } else if (bmpImage
->blue_mask
==0x7c00) {
1089 /* ==== bgr 555 bmp -> pal 4 dib ==== */
1090 for (h
=0; h
<lines
; h
++) {
1095 for (x
=0; x
<width
; x
++) {
1098 dstval
|=(X11DRV_DIB_GetNearestIndex
1100 ((srcval
<< 3) & 0xf8) | /* r */
1101 ((srcval
>> 2) & 0x07),
1102 ((srcval
>> 2) & 0xf8) | /* g */
1103 ((srcval
>> 7) & 0x07),
1104 ((srcval
>> 7) & 0xf8) | /* b */
1105 ((srcval
>> 12) & 0x07) ) << ((1-(x
&1))<<2) );
1114 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1115 dstbits
+= linebytes
;
1120 } else if (bmpImage
->green_mask
==0x07e0) {
1121 if (bmpImage
->red_mask
==0xf800) {
1122 /* ==== rgb 565 bmp -> pal 4 dib ==== */
1123 for (h
=0; h
<lines
; h
++) {
1128 for (x
=0; x
<width
; x
++) {
1131 dstval
|=(X11DRV_DIB_GetNearestIndex
1133 ((srcval
>> 8) & 0xf8) | /* r */
1134 ((srcval
>> 13) & 0x07),
1135 ((srcval
>> 3) & 0xfc) | /* g */
1136 ((srcval
>> 9) & 0x03),
1137 ((srcval
<< 3) & 0xf8) | /* b */
1138 ((srcval
>> 2) & 0x07) ) << ((1-(x
&1))<<2) );
1147 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1148 dstbits
+= linebytes
;
1150 } else if (bmpImage
->blue_mask
==0xf800) {
1151 /* ==== bgr 565 bmp -> pal 4 dib ==== */
1152 for (h
=0; h
<lines
; h
++) {
1157 for (x
=0; x
<width
; x
++) {
1160 dstval
|=(X11DRV_DIB_GetNearestIndex
1162 ((srcval
<< 3) & 0xf8) | /* r */
1163 ((srcval
>> 2) & 0x07),
1164 ((srcval
>> 3) & 0xfc) | /* g */
1165 ((srcval
>> 9) & 0x03),
1166 ((srcval
>> 8) & 0xf8) | /* b */
1167 ((srcval
>> 13) & 0x07) ) << ((1-(x
&1))<<2) );
1176 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1177 dstbits
+= linebytes
;
1189 if (bmpImage
->bits_per_pixel
==24) {
1190 const void* srcbits
;
1191 const BYTE
*srcbyte
;
1194 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
1196 if (bmpImage
->green_mask
!=0x00ff00 ||
1197 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
1199 } else if (bmpImage
->blue_mask
==0xff) {
1200 /* ==== rgb 888 bmp -> pal 4 dib ==== */
1201 for (h
=0; h
<lines
; h
++) {
1204 for (x
=0; x
<width
/2; x
++) {
1205 /* Do 2 pixels at a time */
1206 *dstbyte
++=(X11DRV_DIB_GetNearestIndex
1211 X11DRV_DIB_GetNearestIndex
1219 /* And the the odd pixel */
1220 *dstbyte
++=(X11DRV_DIB_GetNearestIndex
1226 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1227 dstbits
+= linebytes
;
1230 /* ==== bgr 888 bmp -> pal 4 dib ==== */
1231 for (h
=0; h
<lines
; h
++) {
1234 for (x
=0; x
<width
/2; x
++) {
1235 /* Do 2 pixels at a time */
1236 *dstbyte
++=(X11DRV_DIB_GetNearestIndex
1241 X11DRV_DIB_GetNearestIndex
1249 /* And the the odd pixel */
1250 *dstbyte
++=(X11DRV_DIB_GetNearestIndex
1256 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1257 dstbits
+= linebytes
;
1266 const void* srcbits
;
1267 const BYTE
*srcbyte
;
1270 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
1272 if (bmpImage
->green_mask
!=0x00ff00 ||
1273 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
1275 } else if (bmpImage
->blue_mask
==0xff) {
1276 /* ==== rgb 0888 bmp -> pal 4 dib ==== */
1277 for (h
=0; h
<lines
; h
++) {
1280 for (x
=0; x
<width
/2; x
++) {
1281 /* Do 2 pixels at a time */
1282 *dstbyte
++=(X11DRV_DIB_GetNearestIndex
1287 X11DRV_DIB_GetNearestIndex
1295 /* And the the odd pixel */
1296 *dstbyte
++=(X11DRV_DIB_GetNearestIndex
1302 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1303 dstbits
+= linebytes
;
1306 /* ==== bgr 0888 bmp -> pal 4 dib ==== */
1307 for (h
=0; h
<lines
; h
++) {
1310 for (x
=0; x
<width
/2; x
++) {
1311 /* Do 2 pixels at a time */
1312 *dstbyte
++=(X11DRV_DIB_GetNearestIndex
1317 X11DRV_DIB_GetNearestIndex
1325 /* And the the odd pixel */
1326 *dstbyte
++=(X11DRV_DIB_GetNearestIndex
1332 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1333 dstbits
+= linebytes
;
1344 /* ==== any bmp format -> pal 4 dib ==== */
1345 WARN("from unknown %d bit bitmap (%lx,%lx,%lx) to 4 bit DIB\n",
1346 bmpImage
->bits_per_pixel
, bmpImage
->red_mask
,
1347 bmpImage
->green_mask
, bmpImage
->blue_mask
);
1348 for (h
=lines
-1; h
>=0; h
--) {
1350 for (x
=0; x
<(width
& ~1); x
+=2) {
1351 *dstbyte
++=(X11DRV_DIB_MapColor((int*)colors
, 16, XGetPixel(bmpImage
, x
, h
), 0) << 4) |
1352 X11DRV_DIB_MapColor((int*)colors
, 16, XGetPixel(bmpImage
, x
+1, h
), 0);
1355 *dstbyte
=(X11DRV_DIB_MapColor((int *)colors
, 16, XGetPixel(bmpImage
, x
, h
), 0) << 4);
1357 dstbits
+= linebytes
;
1364 /***********************************************************************
1365 * X11DRV_DIB_SetImageBits_RLE4
1367 * SetDIBits for a 4-bit deep compressed DIB.
1369 static void X11DRV_DIB_SetImageBits_RLE4( int lines
, const BYTE
*bits
,
1370 DWORD srcwidth
, DWORD dstwidth
,
1371 int left
, int *colors
,
1374 unsigned int x
= 0, width
= min(srcwidth
, dstwidth
);
1375 int y
= lines
- 1, c
, length
;
1376 const BYTE
*begin
= bits
;
1381 if (length
) { /* encoded */
1384 if (x
>= (left
+ width
)) break;
1385 if( x
>= left
) XPutPixel(bmpImage
, x
, y
, colors
[c
>> 4]);
1387 if (!length
--) break;
1388 if (x
>= (left
+ width
)) break;
1389 if( x
>= left
) XPutPixel(bmpImage
, x
, y
, colors
[c
& 0xf]);
1409 default: /* absolute */
1412 if (x
>= left
&& x
< (left
+ width
))
1413 XPutPixel(bmpImage
, x
, y
, colors
[c
>> 4]);
1415 if (!length
--) break;
1416 if (x
>= left
&& x
< (left
+ width
))
1417 XPutPixel(bmpImage
, x
, y
, colors
[c
& 0xf]);
1420 if ((bits
- begin
) & 1)
1429 /***********************************************************************
1430 * X11DRV_DIB_SetImageBits_8
1432 * SetDIBits for an 8-bit deep DIB.
1434 static void X11DRV_DIB_SetImageBits_8( int lines
, const BYTE
*srcbits
,
1435 DWORD srcwidth
, DWORD dstwidth
, int left
,
1436 const int *colors
, XImage
*bmpImage
,
1440 int h
, width
= min(srcwidth
, dstwidth
);
1441 const BYTE
* srcbyte
;
1447 srcbits
= srcbits
+ linebytes
* (lines
-1);
1448 linebytes
= -linebytes
;
1453 switch (bmpImage
->depth
) {
1456 #if defined(__i386__) && defined(__GNUC__)
1457 /* Some X servers might have 32 bit/ 16bit deep pixel */
1458 if (lines
&& width
&& (bmpImage
->bits_per_pixel
== 16) &&
1459 (ImageByteOrder(gdi_display
)==LSBFirst
) )
1461 dstbits
=(BYTE
*)bmpImage
->data
+left
*2+(lines
-1)*bmpImage
->bytes_per_line
;
1462 /* FIXME: Does this really handle all these cases correctly? */
1463 /* ==== pal 8 dib -> rgb or bgr 555 or 565 bmp ==== */
1464 for (h
= lines
; h
--; ) {
1465 int _cl1
,_cl2
; /* temp outputs for asm below */
1466 /* Borrowed from DirectDraw */
1467 __asm__
__volatile__(
1472 " movw (%%edx,%%eax,4),%%ax\n"
1474 " xor %%eax,%%eax\n"
1476 :"=S" (srcbyte
), "=D" (_cl1
), "=c" (_cl2
)
1481 :"eax", "cc", "memory"
1483 srcbyte
= (srcbits
+= linebytes
);
1484 dstbits
-= bmpImage
->bytes_per_line
;
1492 #if defined(__i386__) && defined(__GNUC__)
1493 if (lines
&& width
&& (bmpImage
->bits_per_pixel
== 32) &&
1494 (ImageByteOrder(gdi_display
)==LSBFirst
) )
1496 dstbits
=(BYTE
*)bmpImage
->data
+left
*4+(lines
-1)*bmpImage
->bytes_per_line
;
1497 /* FIXME: Does this really handle both cases correctly? */
1498 /* ==== pal 8 dib -> rgb or bgr 0888 bmp ==== */
1499 for (h
= lines
; h
--; ) {
1500 int _cl1
,_cl2
; /* temp outputs for asm below */
1501 /* Borrowed from DirectDraw */
1502 __asm__
__volatile__(
1507 " movl (%%edx,%%eax,4),%%eax\n"
1509 " xor %%eax,%%eax\n"
1511 :"=S" (srcbyte
), "=D" (_cl1
), "=c" (_cl2
)
1516 :"eax", "cc", "memory"
1518 srcbyte
= (srcbits
+= linebytes
);
1519 dstbits
-= bmpImage
->bytes_per_line
;
1526 break; /* use slow generic case below */
1529 /* ==== pal 8 dib -> any bmp format ==== */
1530 for (h
=lines
-1; h
>=0; h
--) {
1531 for (x
=left
; x
<width
+left
; x
++) {
1532 XPutPixel(bmpImage
, x
, h
, colors
[*srcbyte
++]);
1534 srcbyte
= (srcbits
+= linebytes
);
1538 /***********************************************************************
1539 * X11DRV_DIB_GetImageBits_8
1541 * GetDIBits for an 8-bit deep DIB.
1543 static void X11DRV_DIB_GetImageBits_8( int lines
, BYTE
*dstbits
,
1544 DWORD srcwidth
, DWORD dstwidth
,
1545 RGBQUAD
*colors
, PALETTEENTRY
*srccolors
,
1546 XImage
*bmpImage
, DWORD linebytes
)
1549 int h
, width
= min(srcwidth
, dstwidth
);
1555 dstbits
= dstbits
+ ( linebytes
* (lines
-1) );
1556 linebytes
= -linebytes
;
1561 * This condition is true when GetImageBits has been called by
1562 * UpdateDIBSection. For now, GetNearestIndex is too slow to support
1563 * 256 colormaps, so we'll just use for for GetDIBits calls.
1564 * (In somes cases, in a updateDIBSection, the returned colors are bad too)
1566 if (!srccolors
) goto updatesection
;
1568 switch (bmpImage
->depth
) {
1571 if (bmpImage
->red_mask
==0 && bmpImage
->green_mask
==0 && bmpImage
->blue_mask
==0 && srccolors
) {
1573 /* ==== pal 1 bmp -> pal 8 dib ==== */
1574 /* ==== pal 4 bmp -> pal 8 dib ==== */
1575 for (h
=lines
-1; h
>=0; h
--) {
1577 for (x
=0; x
<width
; x
++) {
1578 PALETTEENTRY srcval
;
1579 srcval
=srccolors
[XGetPixel(bmpImage
, x
, h
)];
1580 *dstbyte
++=X11DRV_DIB_GetNearestIndex(colors
, 256,
1585 dstbits
+= linebytes
;
1593 if (bmpImage
->red_mask
==0 && bmpImage
->green_mask
==0 && bmpImage
->blue_mask
==0 && srccolors
) {
1594 /* ==== pal 8 bmp -> pal 8 dib ==== */
1595 const void* srcbits
;
1596 const BYTE
* srcpixel
;
1598 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
1599 for (h
=0; h
<lines
; h
++) {
1602 for (x
= 0; x
< width
; x
++) {
1603 PALETTEENTRY srcval
;
1604 srcval
=srccolors
[(int)*srcpixel
++];
1605 *dstbyte
++=X11DRV_DIB_GetNearestIndex(colors
, 256,
1610 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1611 dstbits
+= linebytes
;
1621 const void* srcbits
;
1622 const WORD
* srcpixel
;
1625 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
1627 if (bmpImage
->green_mask
==0x03e0) {
1628 if (bmpImage
->red_mask
==0x7c00) {
1629 /* ==== rgb 555 bmp -> pal 8 dib ==== */
1630 for (h
=0; h
<lines
; h
++) {
1633 for (x
=0; x
<width
; x
++) {
1636 *dstbyte
++=X11DRV_DIB_GetNearestIndex
1638 ((srcval
>> 7) & 0xf8) | /* r */
1639 ((srcval
>> 12) & 0x07),
1640 ((srcval
>> 2) & 0xf8) | /* g */
1641 ((srcval
>> 7) & 0x07),
1642 ((srcval
<< 3) & 0xf8) | /* b */
1643 ((srcval
>> 2) & 0x07) );
1645 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1646 dstbits
+= linebytes
;
1648 } else if (bmpImage
->blue_mask
==0x7c00) {
1649 /* ==== bgr 555 bmp -> pal 8 dib ==== */
1650 for (h
=0; h
<lines
; h
++) {
1653 for (x
=0; x
<width
; x
++) {
1656 *dstbyte
++=X11DRV_DIB_GetNearestIndex
1658 ((srcval
<< 3) & 0xf8) | /* r */
1659 ((srcval
>> 2) & 0x07),
1660 ((srcval
>> 2) & 0xf8) | /* g */
1661 ((srcval
>> 7) & 0x07),
1662 ((srcval
>> 7) & 0xf8) | /* b */
1663 ((srcval
>> 12) & 0x07) );
1665 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1666 dstbits
+= linebytes
;
1671 } else if (bmpImage
->green_mask
==0x07e0) {
1672 if (bmpImage
->red_mask
==0xf800) {
1673 /* ==== rgb 565 bmp -> pal 8 dib ==== */
1674 for (h
=0; h
<lines
; h
++) {
1677 for (x
=0; x
<width
; x
++) {
1680 *dstbyte
++=X11DRV_DIB_GetNearestIndex
1682 ((srcval
>> 8) & 0xf8) | /* r */
1683 ((srcval
>> 13) & 0x07),
1684 ((srcval
>> 3) & 0xfc) | /* g */
1685 ((srcval
>> 9) & 0x03),
1686 ((srcval
<< 3) & 0xf8) | /* b */
1687 ((srcval
>> 2) & 0x07) );
1689 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1690 dstbits
+= linebytes
;
1692 } else if (bmpImage
->blue_mask
==0xf800) {
1693 /* ==== bgr 565 bmp -> pal 8 dib ==== */
1694 for (h
=0; h
<lines
; h
++) {
1697 for (x
=0; x
<width
; x
++) {
1700 *dstbyte
++=X11DRV_DIB_GetNearestIndex
1702 ((srcval
<< 3) & 0xf8) | /* r */
1703 ((srcval
>> 2) & 0x07),
1704 ((srcval
>> 3) & 0xfc) | /* g */
1705 ((srcval
>> 9) & 0x03),
1706 ((srcval
>> 8) & 0xf8) | /* b */
1707 ((srcval
>> 13) & 0x07) );
1709 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1710 dstbits
+= linebytes
;
1724 const void* srcbits
;
1725 const BYTE
*srcbyte
;
1727 int bytes_per_pixel
;
1729 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
1730 bytes_per_pixel
=(bmpImage
->bits_per_pixel
==24?3:4);
1732 if (bmpImage
->green_mask
!=0x00ff00 ||
1733 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
1735 } else if (bmpImage
->blue_mask
==0xff) {
1736 /* ==== rgb 888 or 0888 bmp -> pal 8 dib ==== */
1737 for (h
=0; h
<lines
; h
++) {
1740 for (x
=0; x
<width
; x
++) {
1741 *dstbyte
++=X11DRV_DIB_GetNearestIndex
1746 srcbyte
+=bytes_per_pixel
;
1748 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1749 dstbits
+= linebytes
;
1752 /* ==== bgr 888 or 0888 bmp -> pal 8 dib ==== */
1753 for (h
=0; h
<lines
; h
++) {
1756 for (x
=0; x
<width
; x
++) {
1757 *dstbyte
++=X11DRV_DIB_GetNearestIndex
1762 srcbyte
+=bytes_per_pixel
;
1764 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
1765 dstbits
+= linebytes
;
1773 WARN("from unknown %d bit bitmap (%lx,%lx,%lx) to 8 bit DIB\n",
1774 bmpImage
->depth
, bmpImage
->red_mask
,
1775 bmpImage
->green_mask
, bmpImage
->blue_mask
);
1777 /* ==== any bmp format -> pal 8 dib ==== */
1778 for (h
=lines
-1; h
>=0; h
--) {
1780 for (x
=0; x
<width
; x
++) {
1781 *dstbyte
=X11DRV_DIB_MapColor
1783 XGetPixel(bmpImage
, x
, h
), *dstbyte
);
1786 dstbits
+= linebytes
;
1792 /***********************************************************************
1793 * X11DRV_DIB_SetImageBits_RLE8
1795 * SetDIBits for an 8-bit deep compressed DIB.
1797 * This function rewritten 941113 by James Youngman. WINE blew out when I
1798 * first ran it because my desktop wallpaper is a (large) RLE8 bitmap.
1800 * This was because the algorithm assumed that all RLE8 bitmaps end with the
1801 * 'End of bitmap' escape code. This code is very much laxer in what it
1802 * allows to end the expansion. Possibly too lax. See the note by
1803 * case RleDelta. BTW, MS's documentation implies that a correct RLE8
1804 * bitmap should end with RleEnd, but on the other hand, software exists
1805 * that produces ones that don't and Windows 3.1 doesn't complain a bit
1808 * (No) apologies for my English spelling. [Emacs users: c-indent-level=4].
1809 * James A. Youngman <mbcstjy@afs.man.ac.uk>
1812 static void X11DRV_DIB_SetImageBits_RLE8( int lines
, const BYTE
*bits
,
1813 DWORD srcwidth
, DWORD dstwidth
,
1814 int left
, int *colors
,
1817 unsigned int x
; /* X-position on each line. Increases. */
1818 int y
; /* Line #. Starts at lines-1, decreases */
1819 const BYTE
*pIn
= bits
; /* Pointer to current position in bits */
1820 BYTE length
; /* The length pf a run */
1821 BYTE escape_code
; /* See enum Rle8_EscapeCodes.*/
1824 * Note that the bitmap data is stored by Windows starting at the
1825 * bottom line of the bitmap and going upwards. Within each line,
1826 * the data is stored left-to-right. That's the reason why line
1827 * goes from lines-1 to 0. [JAY]
1837 * If the length byte is not zero (which is the escape value),
1838 * We have a run of length pixels all the same colour. The colour
1839 * index is stored next.
1841 * If the length byte is zero, we need to read the next byte to
1842 * know what to do. [JAY]
1847 * [Run-Length] Encoded mode
1849 int color
= colors
[*pIn
++];
1850 while (length
-- && x
< (left
+ dstwidth
)) {
1851 if( x
>= left
) XPutPixel(bmpImage
, x
, y
, color
);
1858 * Escape codes (may be an absolute sequence though)
1860 escape_code
= (*pIn
++);
1869 /* Not all RLE8 bitmaps end with this code. For
1870 * example, Paint Shop Pro produces some that don't.
1871 * That's (I think) what caused the previous
1872 * implementation to fail. [JAY]
1881 default: /* switch to absolute mode */
1882 length
= escape_code
;
1885 int color
= colors
[*pIn
++];
1886 if (x
>= (left
+ dstwidth
))
1891 if( x
>= left
) XPutPixel(bmpImage
, x
, y
, color
);
1895 * If you think for a moment you'll realise that the
1896 * only time we could ever possibly read an odd
1897 * number of bytes is when there is a 0x00 (escape),
1898 * a value >0x02 (absolute mode) and then an odd-
1899 * length run. Therefore this is the only place we
1900 * need to worry about it. Everywhere else the
1901 * bytes are always read in pairs. [JAY]
1903 if (escape_code
& 1) pIn
++; /* Throw away the pad byte. */
1905 } /* switch (escape_code) : Escape sequence */
1911 /***********************************************************************
1912 * X11DRV_DIB_SetImageBits_16
1914 * SetDIBits for a 16-bit deep DIB.
1916 static void X11DRV_DIB_SetImageBits_16( int lines
, const BYTE
*srcbits
,
1917 DWORD srcwidth
, DWORD dstwidth
, int left
,
1918 X11DRV_PDEVICE
*physDev
, DWORD rSrc
, DWORD gSrc
, DWORD bSrc
,
1919 XImage
*bmpImage
, DWORD linebytes
)
1922 int h
, width
= min(srcwidth
, dstwidth
);
1923 const dib_conversions
*convs
= (bmpImage
->byte_order
== LSBFirst
) ? &dib_normal
: &dib_dst_byteswap
;
1928 srcbits
= srcbits
+ ( linebytes
* (lines
-1));
1929 linebytes
= -linebytes
;
1932 switch (bmpImage
->depth
)
1939 srcbits
=srcbits
+left
*2;
1940 dstbits
=bmpImage
->data
+left
*2+(lines
-1)*bmpImage
->bytes_per_line
;
1942 if (bmpImage
->green_mask
==0x03e0) {
1943 if (gSrc
==bmpImage
->green_mask
) {
1944 if (rSrc
==bmpImage
->red_mask
) {
1945 /* ==== rgb 555 dib -> rgb 555 bmp ==== */
1946 /* ==== bgr 555 dib -> bgr 555 bmp ==== */
1947 convs
->Convert_5x5_asis
1950 dstbits
,-bmpImage
->bytes_per_line
);
1951 } else if (rSrc
==bmpImage
->blue_mask
) {
1952 /* ==== rgb 555 dib -> bgr 555 bmp ==== */
1953 /* ==== bgr 555 dib -> rgb 555 bmp ==== */
1954 convs
->Convert_555_reverse
1957 dstbits
,-bmpImage
->bytes_per_line
);
1960 if (rSrc
==bmpImage
->red_mask
|| bSrc
==bmpImage
->blue_mask
) {
1961 /* ==== rgb 565 dib -> rgb 555 bmp ==== */
1962 /* ==== bgr 565 dib -> bgr 555 bmp ==== */
1963 convs
->Convert_565_to_555_asis
1966 dstbits
,-bmpImage
->bytes_per_line
);
1968 /* ==== rgb 565 dib -> bgr 555 bmp ==== */
1969 /* ==== bgr 565 dib -> rgb 555 bmp ==== */
1970 convs
->Convert_565_to_555_reverse
1973 dstbits
,-bmpImage
->bytes_per_line
);
1976 } else if (bmpImage
->green_mask
==0x07e0) {
1977 if (gSrc
==bmpImage
->green_mask
) {
1978 if (rSrc
==bmpImage
->red_mask
) {
1979 /* ==== rgb 565 dib -> rgb 565 bmp ==== */
1980 /* ==== bgr 565 dib -> bgr 565 bmp ==== */
1981 convs
->Convert_5x5_asis
1984 dstbits
,-bmpImage
->bytes_per_line
);
1986 /* ==== rgb 565 dib -> bgr 565 bmp ==== */
1987 /* ==== bgr 565 dib -> rgb 565 bmp ==== */
1988 convs
->Convert_565_reverse
1991 dstbits
,-bmpImage
->bytes_per_line
);
1994 if (rSrc
==bmpImage
->red_mask
|| bSrc
==bmpImage
->blue_mask
) {
1995 /* ==== rgb 555 dib -> rgb 565 bmp ==== */
1996 /* ==== bgr 555 dib -> bgr 565 bmp ==== */
1997 convs
->Convert_555_to_565_asis
2000 dstbits
,-bmpImage
->bytes_per_line
);
2002 /* ==== rgb 555 dib -> bgr 565 bmp ==== */
2003 /* ==== bgr 555 dib -> rgb 565 bmp ==== */
2004 convs
->Convert_555_to_565_reverse
2007 dstbits
,-bmpImage
->bytes_per_line
);
2017 if (bmpImage
->bits_per_pixel
==24) {
2020 srcbits
=srcbits
+left
*2;
2021 dstbits
=bmpImage
->data
+left
*3+(lines
-1)*bmpImage
->bytes_per_line
;
2023 if (bmpImage
->green_mask
!=0x00ff00 ||
2024 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
2026 } else if ((rSrc
==0x1f && bmpImage
->red_mask
==0xff) ||
2027 (bSrc
==0x1f && bmpImage
->blue_mask
==0xff)) {
2029 /* ==== rgb 555 dib -> rgb 888 bmp ==== */
2030 /* ==== bgr 555 dib -> bgr 888 bmp ==== */
2031 convs
->Convert_555_to_888_asis
2034 dstbits
,-bmpImage
->bytes_per_line
);
2036 /* ==== rgb 565 dib -> rgb 888 bmp ==== */
2037 /* ==== bgr 565 dib -> bgr 888 bmp ==== */
2038 convs
->Convert_565_to_888_asis
2041 dstbits
,-bmpImage
->bytes_per_line
);
2045 /* ==== rgb 555 dib -> bgr 888 bmp ==== */
2046 /* ==== bgr 555 dib -> rgb 888 bmp ==== */
2047 convs
->Convert_555_to_888_reverse
2050 dstbits
,-bmpImage
->bytes_per_line
);
2052 /* ==== rgb 565 dib -> bgr 888 bmp ==== */
2053 /* ==== bgr 565 dib -> rgb 888 bmp ==== */
2054 convs
->Convert_565_to_888_reverse
2057 dstbits
,-bmpImage
->bytes_per_line
);
2068 srcbits
=srcbits
+left
*2;
2069 dstbits
=bmpImage
->data
+left
*4+(lines
-1)*bmpImage
->bytes_per_line
;
2071 if (bmpImage
->green_mask
!=0x00ff00 ||
2072 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
2074 } else if ((rSrc
==0x1f && bmpImage
->red_mask
==0xff) ||
2075 (bSrc
==0x1f && bmpImage
->blue_mask
==0xff)) {
2077 /* ==== rgb 555 dib -> rgb 0888 bmp ==== */
2078 /* ==== bgr 555 dib -> bgr 0888 bmp ==== */
2079 convs
->Convert_555_to_0888_asis
2082 dstbits
,-bmpImage
->bytes_per_line
);
2084 /* ==== rgb 565 dib -> rgb 0888 bmp ==== */
2085 /* ==== bgr 565 dib -> bgr 0888 bmp ==== */
2086 convs
->Convert_565_to_0888_asis
2089 dstbits
,-bmpImage
->bytes_per_line
);
2093 /* ==== rgb 555 dib -> bgr 0888 bmp ==== */
2094 /* ==== bgr 555 dib -> rgb 0888 bmp ==== */
2095 convs
->Convert_555_to_0888_reverse
2098 dstbits
,-bmpImage
->bytes_per_line
);
2100 /* ==== rgb 565 dib -> bgr 0888 bmp ==== */
2101 /* ==== bgr 565 dib -> rgb 0888 bmp ==== */
2102 convs
->Convert_565_to_0888_reverse
2105 dstbits
,-bmpImage
->bytes_per_line
);
2113 WARN("from 16 bit DIB (%lx,%lx,%lx) to unknown %d bit bitmap (%lx,%lx,%lx)\n",
2114 rSrc
, gSrc
, bSrc
, bmpImage
->bits_per_pixel
, bmpImage
->red_mask
,
2115 bmpImage
->green_mask
, bmpImage
->blue_mask
);
2121 /* ==== rgb or bgr 555 or 565 dib -> pal 1, 4 or 8 ==== */
2122 const WORD
* srcpixel
;
2123 int rShift1
,gShift1
,bShift1
;
2124 int rShift2
,gShift2
,bShift2
;
2127 /* Set color scaling values */
2128 rShift1
=16+X11DRV_DIB_MaskToShift(rSrc
)-3;
2129 gShift1
=16+X11DRV_DIB_MaskToShift(gSrc
)-3;
2130 bShift1
=16+X11DRV_DIB_MaskToShift(bSrc
)-3;
2135 /* Green has 5 bits, like the others */
2139 /* Green has 6 bits, not 5. Compensate. */
2148 /* We could split it into four separate cases to optimize
2149 * but it is probably not worth it.
2151 for (h
=lines
-1; h
>=0; h
--) {
2152 srcpixel
=(const WORD
*)srcbits
;
2153 for (x
=left
; x
<width
+left
; x
++) {
2155 BYTE red
,green
,blue
;
2156 srcval
=*srcpixel
++ << 16;
2157 red
= ((srcval
>> rShift1
) & 0xf8) |
2158 ((srcval
>> rShift2
) & 0x07);
2159 green
=((srcval
>> gShift1
) & gMask1
) |
2160 ((srcval
>> gShift2
) & gMask2
);
2161 blue
= ((srcval
>> bShift1
) & 0xf8) |
2162 ((srcval
>> bShift2
) & 0x07);
2163 XPutPixel(bmpImage
, x
, h
,
2164 X11DRV_PALETTE_ToPhysical
2165 (physDev
, RGB(red
,green
,blue
)));
2167 srcbits
+= linebytes
;
2175 /***********************************************************************
2176 * X11DRV_DIB_GetImageBits_16
2178 * GetDIBits for an 16-bit deep DIB.
2180 static void X11DRV_DIB_GetImageBits_16( int lines
, BYTE
*dstbits
,
2181 DWORD dstwidth
, DWORD srcwidth
,
2182 PALETTEENTRY
*srccolors
,
2183 DWORD rDst
, DWORD gDst
, DWORD bDst
,
2184 XImage
*bmpImage
, DWORD dibpitch
)
2187 int h
, width
= min(srcwidth
, dstwidth
);
2188 const dib_conversions
*convs
= (bmpImage
->byte_order
== LSBFirst
) ? &dib_normal
: &dib_src_byteswap
;
2190 DWORD linebytes
= dibpitch
;
2195 dstbits
= dstbits
+ ( linebytes
* (lines
-1));
2196 linebytes
= -linebytes
;
2199 switch (bmpImage
->depth
)
2204 const char* srcbits
;
2206 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
2208 if (bmpImage
->green_mask
==0x03e0) {
2209 if (gDst
==bmpImage
->green_mask
) {
2210 if (rDst
==bmpImage
->red_mask
) {
2211 /* ==== rgb 555 bmp -> rgb 555 dib ==== */
2212 /* ==== bgr 555 bmp -> bgr 555 dib ==== */
2213 convs
->Convert_5x5_asis
2215 srcbits
,-bmpImage
->bytes_per_line
,
2218 /* ==== rgb 555 bmp -> bgr 555 dib ==== */
2219 /* ==== bgr 555 bmp -> rgb 555 dib ==== */
2220 convs
->Convert_555_reverse
2222 srcbits
,-bmpImage
->bytes_per_line
,
2226 if (rDst
==bmpImage
->red_mask
|| bDst
==bmpImage
->blue_mask
) {
2227 /* ==== rgb 555 bmp -> rgb 565 dib ==== */
2228 /* ==== bgr 555 bmp -> bgr 565 dib ==== */
2229 convs
->Convert_555_to_565_asis
2231 srcbits
,-bmpImage
->bytes_per_line
,
2234 /* ==== rgb 555 bmp -> bgr 565 dib ==== */
2235 /* ==== bgr 555 bmp -> rgb 565 dib ==== */
2236 convs
->Convert_555_to_565_reverse
2238 srcbits
,-bmpImage
->bytes_per_line
,
2242 } else if (bmpImage
->green_mask
==0x07e0) {
2243 if (gDst
==bmpImage
->green_mask
) {
2244 if (rDst
== bmpImage
->red_mask
) {
2245 /* ==== rgb 565 bmp -> rgb 565 dib ==== */
2246 /* ==== bgr 565 bmp -> bgr 565 dib ==== */
2247 convs
->Convert_5x5_asis
2249 srcbits
,-bmpImage
->bytes_per_line
,
2252 /* ==== rgb 565 bmp -> bgr 565 dib ==== */
2253 /* ==== bgr 565 bmp -> rgb 565 dib ==== */
2254 convs
->Convert_565_reverse
2256 srcbits
,-bmpImage
->bytes_per_line
,
2260 if (rDst
==bmpImage
->red_mask
|| bDst
==bmpImage
->blue_mask
) {
2261 /* ==== rgb 565 bmp -> rgb 555 dib ==== */
2262 /* ==== bgr 565 bmp -> bgr 555 dib ==== */
2263 convs
->Convert_565_to_555_asis
2265 srcbits
,-bmpImage
->bytes_per_line
,
2268 /* ==== rgb 565 bmp -> bgr 555 dib ==== */
2269 /* ==== bgr 565 bmp -> rgb 555 dib ==== */
2270 convs
->Convert_565_to_555_reverse
2272 srcbits
,-bmpImage
->bytes_per_line
,
2283 if (bmpImage
->bits_per_pixel
== 24) {
2284 const char* srcbits
;
2286 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
2288 if (bmpImage
->green_mask
!=0x00ff00 ||
2289 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
2291 } else if ((rDst
==0x1f && bmpImage
->red_mask
==0xff) ||
2292 (bDst
==0x1f && bmpImage
->blue_mask
==0xff)) {
2294 /* ==== rgb 888 bmp -> rgb 555 dib ==== */
2295 /* ==== bgr 888 bmp -> bgr 555 dib ==== */
2296 convs
->Convert_888_to_555_asis
2298 srcbits
,-bmpImage
->bytes_per_line
,
2301 /* ==== rgb 888 bmp -> rgb 565 dib ==== */
2302 /* ==== rgb 888 bmp -> rgb 565 dib ==== */
2303 convs
->Convert_888_to_565_asis
2305 srcbits
,-bmpImage
->bytes_per_line
,
2310 /* ==== rgb 888 bmp -> bgr 555 dib ==== */
2311 /* ==== bgr 888 bmp -> rgb 555 dib ==== */
2312 convs
->Convert_888_to_555_reverse
2314 srcbits
,-bmpImage
->bytes_per_line
,
2317 /* ==== rgb 888 bmp -> bgr 565 dib ==== */
2318 /* ==== bgr 888 bmp -> rgb 565 dib ==== */
2319 convs
->Convert_888_to_565_reverse
2321 srcbits
,-bmpImage
->bytes_per_line
,
2331 const char* srcbits
;
2333 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
2335 if (bmpImage
->green_mask
!=0x00ff00 ||
2336 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
2338 } else if ((rDst
==0x1f && bmpImage
->red_mask
==0xff) ||
2339 (bDst
==0x1f && bmpImage
->blue_mask
==0xff)) {
2341 /* ==== rgb 0888 bmp -> rgb 555 dib ==== */
2342 /* ==== bgr 0888 bmp -> bgr 555 dib ==== */
2343 convs
->Convert_0888_to_555_asis
2345 srcbits
,-bmpImage
->bytes_per_line
,
2348 /* ==== rgb 0888 bmp -> rgb 565 dib ==== */
2349 /* ==== bgr 0888 bmp -> bgr 565 dib ==== */
2350 convs
->Convert_0888_to_565_asis
2352 srcbits
,-bmpImage
->bytes_per_line
,
2357 /* ==== rgb 0888 bmp -> bgr 555 dib ==== */
2358 /* ==== bgr 0888 bmp -> rgb 555 dib ==== */
2359 convs
->Convert_0888_to_555_reverse
2361 srcbits
,-bmpImage
->bytes_per_line
,
2364 /* ==== rgb 0888 bmp -> bgr 565 dib ==== */
2365 /* ==== bgr 0888 bmp -> rgb 565 dib ==== */
2366 convs
->Convert_0888_to_565_reverse
2368 srcbits
,-bmpImage
->bytes_per_line
,
2377 if (bmpImage
->red_mask
==0 && bmpImage
->green_mask
==0 && bmpImage
->blue_mask
==0 && srccolors
) {
2378 /* ==== pal 1 or 4 bmp -> rgb or bgr 555 or 565 dib ==== */
2379 int rShift
,gShift
,bShift
;
2382 /* Shift everything 16 bits left so that all shifts are >0,
2383 * even for BGR DIBs. Then a single >> 16 will bring everything
2386 rShift
=16+X11DRV_DIB_MaskToShift(rDst
)-3;
2387 gShift
=16+X11DRV_DIB_MaskToShift(gDst
)-3;
2388 bShift
=16+X11DRV_DIB_MaskToShift(bDst
)-3;
2390 /* 6 bits for the green */
2396 for (h
= lines
- 1; h
>= 0; h
--) {
2397 dstpixel
=(LPWORD
)dstbits
;
2398 for (x
= 0; x
< width
; x
++) {
2399 PALETTEENTRY srcval
;
2401 srcval
=srccolors
[XGetPixel(bmpImage
, x
, h
)];
2402 dstval
=((srcval
.peRed
<< rShift
) & rDst
) |
2403 ((srcval
.peGreen
<< gShift
) & gDst
) |
2404 ((srcval
.peBlue
<< bShift
) & bDst
);
2405 *dstpixel
++=dstval
>> 16;
2407 dstbits
+= linebytes
;
2415 if (bmpImage
->red_mask
==0 && bmpImage
->green_mask
==0 && bmpImage
->blue_mask
==0 && srccolors
) {
2416 /* ==== pal 8 bmp -> rgb or bgr 555 or 565 dib ==== */
2417 int rShift
,gShift
,bShift
;
2418 const BYTE
* srcbits
;
2419 const BYTE
* srcpixel
;
2422 /* Shift everything 16 bits left so that all shifts are >0,
2423 * even for BGR DIBs. Then a single >> 16 will bring everything
2426 rShift
=16+X11DRV_DIB_MaskToShift(rDst
)-3;
2427 gShift
=16+X11DRV_DIB_MaskToShift(gDst
)-3;
2428 bShift
=16+X11DRV_DIB_MaskToShift(bDst
)-3;
2430 /* 6 bits for the green */
2436 srcbits
=(BYTE
*)bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
2437 for (h
=0; h
<lines
; h
++) {
2439 dstpixel
=(LPWORD
)dstbits
;
2440 for (x
= 0; x
< width
; x
++) {
2441 PALETTEENTRY srcval
;
2443 srcval
=srccolors
[(int)*srcpixel
++];
2444 dstval
=((srcval
.peRed
<< rShift
) & rDst
) |
2445 ((srcval
.peGreen
<< gShift
) & gDst
) |
2446 ((srcval
.peBlue
<< bShift
) & bDst
);
2447 *dstpixel
++=dstval
>> 16;
2449 srcbits
-= bmpImage
->bytes_per_line
;
2450 dstbits
+= linebytes
;
2460 /* ==== any bmp format -> rgb or bgr 555 or 565 dib ==== */
2461 int rShift
,gShift
,bShift
;
2464 WARN("from unknown %d bit bitmap (%lx,%lx,%lx) to 16 bit DIB (%lx,%lx,%lx)\n",
2465 bmpImage
->depth
, bmpImage
->red_mask
,
2466 bmpImage
->green_mask
, bmpImage
->blue_mask
,
2469 /* Shift everything 16 bits left so that all shifts are >0,
2470 * even for BGR DIBs. Then a single >> 16 will bring everything
2473 rShift
=16+X11DRV_DIB_MaskToShift(rDst
)-3;
2474 gShift
=16+X11DRV_DIB_MaskToShift(gDst
)-3;
2475 bShift
=16+X11DRV_DIB_MaskToShift(bDst
)-3;
2477 /* 6 bits for the green */
2483 for (h
= lines
- 1; h
>= 0; h
--) {
2484 dstpixel
=(LPWORD
)dstbits
;
2485 for (x
= 0; x
< width
; x
++) {
2488 srcval
=X11DRV_PALETTE_ToLogical(XGetPixel(bmpImage
, x
, h
));
2489 dstval
=((GetRValue(srcval
) << rShift
) & rDst
) |
2490 ((GetGValue(srcval
) << gShift
) & gDst
) |
2491 ((GetBValue(srcval
) << bShift
) & bDst
);
2492 *dstpixel
++=dstval
>> 16;
2494 dstbits
+= linebytes
;
2502 /***********************************************************************
2503 * X11DRV_DIB_SetImageBits_24
2505 * SetDIBits for a 24-bit deep DIB.
2507 static void X11DRV_DIB_SetImageBits_24( int lines
, const BYTE
*srcbits
,
2508 DWORD srcwidth
, DWORD dstwidth
, int left
,
2509 X11DRV_PDEVICE
*physDev
,
2510 DWORD rSrc
, DWORD gSrc
, DWORD bSrc
,
2511 XImage
*bmpImage
, DWORD linebytes
)
2514 int h
, width
= min(srcwidth
, dstwidth
);
2515 const dib_conversions
*convs
= (bmpImage
->byte_order
== LSBFirst
) ? &dib_normal
: &dib_dst_byteswap
;
2520 srcbits
= srcbits
+ linebytes
* (lines
- 1);
2521 linebytes
= -linebytes
;
2524 switch (bmpImage
->depth
)
2527 if (bmpImage
->bits_per_pixel
==24) {
2530 srcbits
=srcbits
+left
*3;
2531 dstbits
=bmpImage
->data
+left
*3+(lines
-1)*bmpImage
->bytes_per_line
;
2533 if (bmpImage
->green_mask
!=0x00ff00 ||
2534 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
2536 } else if (rSrc
==bmpImage
->red_mask
) {
2537 /* ==== rgb 888 dib -> rgb 888 bmp ==== */
2538 /* ==== bgr 888 dib -> bgr 888 bmp ==== */
2539 convs
->Convert_888_asis
2542 dstbits
,-bmpImage
->bytes_per_line
);
2544 /* ==== rgb 888 dib -> bgr 888 bmp ==== */
2545 /* ==== bgr 888 dib -> rgb 888 bmp ==== */
2546 convs
->Convert_888_reverse
2549 dstbits
,-bmpImage
->bytes_per_line
);
2559 srcbits
=srcbits
+left
*3;
2560 dstbits
=bmpImage
->data
+left
*4+(lines
-1)*bmpImage
->bytes_per_line
;
2562 if (bmpImage
->green_mask
!=0x00ff00 ||
2563 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
2565 } else if (rSrc
==bmpImage
->red_mask
) {
2566 /* ==== rgb 888 dib -> rgb 0888 bmp ==== */
2567 /* ==== bgr 888 dib -> bgr 0888 bmp ==== */
2568 convs
->Convert_888_to_0888_asis
2571 dstbits
,-bmpImage
->bytes_per_line
);
2573 /* ==== rgb 888 dib -> bgr 0888 bmp ==== */
2574 /* ==== bgr 888 dib -> rgb 0888 bmp ==== */
2575 convs
->Convert_888_to_0888_reverse
2578 dstbits
,-bmpImage
->bytes_per_line
);
2588 srcbits
=srcbits
+left
*3;
2589 dstbits
=bmpImage
->data
+left
*2+(lines
-1)*bmpImage
->bytes_per_line
;
2591 if (bmpImage
->green_mask
==0x03e0) {
2592 if ((rSrc
==0xff0000 && bmpImage
->red_mask
==0x7f00) ||
2593 (bSrc
==0xff0000 && bmpImage
->blue_mask
==0x7f00)) {
2594 /* ==== rgb 888 dib -> rgb 555 bmp ==== */
2595 /* ==== bgr 888 dib -> bgr 555 bmp ==== */
2596 convs
->Convert_888_to_555_asis
2599 dstbits
,-bmpImage
->bytes_per_line
);
2600 } else if ((rSrc
==0xff && bmpImage
->red_mask
==0x7f00) ||
2601 (bSrc
==0xff && bmpImage
->blue_mask
==0x7f00)) {
2602 /* ==== rgb 888 dib -> bgr 555 bmp ==== */
2603 /* ==== bgr 888 dib -> rgb 555 bmp ==== */
2604 convs
->Convert_888_to_555_reverse
2607 dstbits
,-bmpImage
->bytes_per_line
);
2611 } else if (bmpImage
->green_mask
==0x07e0) {
2612 if ((rSrc
==0xff0000 && bmpImage
->red_mask
==0xf800) ||
2613 (bSrc
==0xff0000 && bmpImage
->blue_mask
==0xf800)) {
2614 /* ==== rgb 888 dib -> rgb 565 bmp ==== */
2615 /* ==== bgr 888 dib -> bgr 565 bmp ==== */
2616 convs
->Convert_888_to_565_asis
2619 dstbits
,-bmpImage
->bytes_per_line
);
2620 } else if ((rSrc
==0xff && bmpImage
->red_mask
==0xf800) ||
2621 (bSrc
==0xff && bmpImage
->blue_mask
==0xf800)) {
2622 /* ==== rgb 888 dib -> bgr 565 bmp ==== */
2623 /* ==== bgr 888 dib -> rgb 565 bmp ==== */
2624 convs
->Convert_888_to_565_reverse
2627 dstbits
,-bmpImage
->bytes_per_line
);
2639 WARN("from 24 bit DIB (%lx,%lx,%lx) to unknown %d bit bitmap (%lx,%lx,%lx)\n",
2640 rSrc
, gSrc
, bSrc
, bmpImage
->bits_per_pixel
, bmpImage
->red_mask
,
2641 bmpImage
->green_mask
, bmpImage
->blue_mask
);
2647 /* ==== rgb 888 dib -> any bmp bormat ==== */
2648 const BYTE
* srcbyte
;
2650 /* Windows only supports one 24bpp DIB format: RGB888 */
2652 for (h
= lines
- 1; h
>= 0; h
--) {
2653 srcbyte
=(const BYTE
*)srcbits
;
2654 for (x
= left
; x
< width
+left
; x
++) {
2655 XPutPixel(bmpImage
, x
, h
,
2656 X11DRV_PALETTE_ToPhysical
2657 (physDev
, RGB(srcbyte
[2], srcbyte
[1], srcbyte
[0])));
2660 srcbits
+= linebytes
;
2668 /***********************************************************************
2669 * X11DRV_DIB_GetImageBits_24
2671 * GetDIBits for an 24-bit deep DIB.
2673 static void X11DRV_DIB_GetImageBits_24( int lines
, BYTE
*dstbits
,
2674 DWORD dstwidth
, DWORD srcwidth
,
2675 PALETTEENTRY
*srccolors
,
2676 DWORD rDst
, DWORD gDst
, DWORD bDst
,
2677 XImage
*bmpImage
, DWORD linebytes
)
2680 int h
, width
= min(srcwidth
, dstwidth
);
2681 const dib_conversions
*convs
= (bmpImage
->byte_order
== LSBFirst
) ? &dib_normal
: &dib_src_byteswap
;
2686 dstbits
= dstbits
+ ( linebytes
* (lines
-1) );
2687 linebytes
= -linebytes
;
2690 switch (bmpImage
->depth
)
2693 if (bmpImage
->bits_per_pixel
==24) {
2694 const char* srcbits
;
2696 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
2698 if (bmpImage
->green_mask
!=0x00ff00 ||
2699 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
2701 } else if (rDst
==bmpImage
->red_mask
) {
2702 /* ==== rgb 888 bmp -> rgb 888 dib ==== */
2703 /* ==== bgr 888 bmp -> bgr 888 dib ==== */
2704 convs
->Convert_888_asis
2706 srcbits
,-bmpImage
->bytes_per_line
,
2709 /* ==== rgb 888 bmp -> bgr 888 dib ==== */
2710 /* ==== bgr 888 bmp -> rgb 888 dib ==== */
2711 convs
->Convert_888_reverse
2713 srcbits
,-bmpImage
->bytes_per_line
,
2722 const char* srcbits
;
2724 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
2726 if (bmpImage
->green_mask
!=0x00ff00 ||
2727 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
2729 } else if (rDst
==bmpImage
->red_mask
) {
2730 /* ==== rgb 888 bmp -> rgb 0888 dib ==== */
2731 /* ==== bgr 888 bmp -> bgr 0888 dib ==== */
2732 convs
->Convert_0888_to_888_asis
2734 srcbits
,-bmpImage
->bytes_per_line
,
2737 /* ==== rgb 888 bmp -> bgr 0888 dib ==== */
2738 /* ==== bgr 888 bmp -> rgb 0888 dib ==== */
2739 convs
->Convert_0888_to_888_reverse
2741 srcbits
,-bmpImage
->bytes_per_line
,
2750 const char* srcbits
;
2752 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
2754 if (bmpImage
->green_mask
==0x03e0) {
2755 if ((rDst
==0xff0000 && bmpImage
->red_mask
==0x7f00) ||
2756 (bDst
==0xff0000 && bmpImage
->blue_mask
==0x7f00)) {
2757 /* ==== rgb 555 bmp -> rgb 888 dib ==== */
2758 /* ==== bgr 555 bmp -> bgr 888 dib ==== */
2759 convs
->Convert_555_to_888_asis
2761 srcbits
,-bmpImage
->bytes_per_line
,
2763 } else if ((rDst
==0xff && bmpImage
->red_mask
==0x7f00) ||
2764 (bDst
==0xff && bmpImage
->blue_mask
==0x7f00)) {
2765 /* ==== rgb 555 bmp -> bgr 888 dib ==== */
2766 /* ==== bgr 555 bmp -> rgb 888 dib ==== */
2767 convs
->Convert_555_to_888_reverse
2769 srcbits
,-bmpImage
->bytes_per_line
,
2774 } else if (bmpImage
->green_mask
==0x07e0) {
2775 if ((rDst
==0xff0000 && bmpImage
->red_mask
==0xf800) ||
2776 (bDst
==0xff0000 && bmpImage
->blue_mask
==0xf800)) {
2777 /* ==== rgb 565 bmp -> rgb 888 dib ==== */
2778 /* ==== bgr 565 bmp -> bgr 888 dib ==== */
2779 convs
->Convert_565_to_888_asis
2781 srcbits
,-bmpImage
->bytes_per_line
,
2783 } else if ((rDst
==0xff && bmpImage
->red_mask
==0xf800) ||
2784 (bDst
==0xff && bmpImage
->blue_mask
==0xf800)) {
2785 /* ==== rgb 565 bmp -> bgr 888 dib ==== */
2786 /* ==== bgr 565 bmp -> rgb 888 dib ==== */
2787 convs
->Convert_565_to_888_reverse
2789 srcbits
,-bmpImage
->bytes_per_line
,
2802 if (bmpImage
->red_mask
==0 && bmpImage
->green_mask
==0 && bmpImage
->blue_mask
==0 && srccolors
) {
2803 /* ==== pal 1 or 4 bmp -> rgb 888 dib ==== */
2806 /* Windows only supports one 24bpp DIB format: rgb 888 */
2807 for (h
= lines
- 1; h
>= 0; h
--) {
2809 for (x
= 0; x
< width
; x
++) {
2810 PALETTEENTRY srcval
;
2811 srcval
=srccolors
[XGetPixel(bmpImage
, x
, h
)];
2812 dstbyte
[0]=srcval
.peBlue
;
2813 dstbyte
[1]=srcval
.peGreen
;
2814 dstbyte
[2]=srcval
.peRed
;
2817 dstbits
+= linebytes
;
2825 if (bmpImage
->red_mask
==0 && bmpImage
->green_mask
==0 && bmpImage
->blue_mask
== 0 && srccolors
) {
2826 /* ==== pal 8 bmp -> rgb 888 dib ==== */
2827 const void* srcbits
;
2828 const BYTE
* srcpixel
;
2831 /* Windows only supports one 24bpp DIB format: rgb 888 */
2832 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
2833 for (h
= lines
- 1; h
>= 0; h
--) {
2836 for (x
= 0; x
< width
; x
++ ) {
2837 PALETTEENTRY srcval
;
2838 srcval
=srccolors
[(int)*srcpixel
++];
2839 dstbyte
[0]=srcval
.peBlue
;
2840 dstbyte
[1]=srcval
.peGreen
;
2841 dstbyte
[2]=srcval
.peRed
;
2844 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
2845 dstbits
+= linebytes
;
2855 /* ==== any bmp format -> 888 dib ==== */
2858 WARN("from unknown %d bit bitmap (%lx,%lx,%lx) to 24 bit DIB (%lx,%lx,%lx)\n",
2859 bmpImage
->depth
, bmpImage
->red_mask
,
2860 bmpImage
->green_mask
, bmpImage
->blue_mask
,
2863 /* Windows only supports one 24bpp DIB format: rgb 888 */
2864 for (h
= lines
- 1; h
>= 0; h
--) {
2866 for (x
= 0; x
< width
; x
++) {
2867 COLORREF srcval
=X11DRV_PALETTE_ToLogical
2868 (XGetPixel( bmpImage
, x
, h
));
2869 dstbyte
[0]=GetBValue(srcval
);
2870 dstbyte
[1]=GetGValue(srcval
);
2871 dstbyte
[2]=GetRValue(srcval
);
2874 dstbits
+= linebytes
;
2882 /***********************************************************************
2883 * X11DRV_DIB_SetImageBits_32
2885 * SetDIBits for a 32-bit deep DIB.
2887 static void X11DRV_DIB_SetImageBits_32(int lines
, const BYTE
*srcbits
,
2888 DWORD srcwidth
, DWORD dstwidth
, int left
,
2889 X11DRV_PDEVICE
*physDev
,
2890 DWORD rSrc
, DWORD gSrc
, DWORD bSrc
,
2896 int h
, width
= min(srcwidth
, dstwidth
);
2897 const dib_conversions
*convs
= (bmpImage
->byte_order
== LSBFirst
) ? &dib_normal
: &dib_dst_byteswap
;
2902 srcbits
= srcbits
+ ( linebytes
* (lines
-1) );
2903 linebytes
= -linebytes
;
2906 ptr
= (const DWORD
*) srcbits
+ left
;
2908 switch (bmpImage
->depth
)
2911 if (bmpImage
->bits_per_pixel
==24) {
2914 srcbits
=srcbits
+left
*4;
2915 dstbits
=bmpImage
->data
+left
*3+(lines
-1)*bmpImage
->bytes_per_line
;
2917 if (rSrc
==bmpImage
->red_mask
&& gSrc
==bmpImage
->green_mask
&& bSrc
==bmpImage
->blue_mask
) {
2918 /* ==== rgb 0888 dib -> rgb 888 bmp ==== */
2919 /* ==== bgr 0888 dib -> bgr 888 bmp ==== */
2920 convs
->Convert_0888_to_888_asis
2923 dstbits
,-bmpImage
->bytes_per_line
);
2924 } else if (bmpImage
->green_mask
!=0x00ff00 ||
2925 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
2927 /* the tests below assume sane bmpImage masks */
2928 } else if (rSrc
==bmpImage
->blue_mask
&& gSrc
==bmpImage
->green_mask
&& bSrc
==bmpImage
->red_mask
) {
2929 /* ==== rgb 0888 dib -> bgr 888 bmp ==== */
2930 /* ==== bgr 0888 dib -> rgb 888 bmp ==== */
2931 convs
->Convert_0888_to_888_reverse
2934 dstbits
,-bmpImage
->bytes_per_line
);
2935 } else if (bmpImage
->blue_mask
==0xff) {
2936 /* ==== any 0888 dib -> rgb 888 bmp ==== */
2937 convs
->Convert_any0888_to_rgb888
2941 dstbits
,-bmpImage
->bytes_per_line
);
2943 /* ==== any 0888 dib -> bgr 888 bmp ==== */
2944 convs
->Convert_any0888_to_bgr888
2948 dstbits
,-bmpImage
->bytes_per_line
);
2958 srcbits
=srcbits
+left
*4;
2959 dstbits
=bmpImage
->data
+left
*4+(lines
-1)*bmpImage
->bytes_per_line
;
2961 if (gSrc
==bmpImage
->green_mask
) {
2962 if (rSrc
==bmpImage
->red_mask
&& bSrc
==bmpImage
->blue_mask
) {
2963 /* ==== rgb 0888 dib -> rgb 0888 bmp ==== */
2964 /* ==== bgr 0888 dib -> bgr 0888 bmp ==== */
2965 convs
->Convert_0888_asis
2968 dstbits
,-bmpImage
->bytes_per_line
);
2969 } else if (bmpImage
->green_mask
!=0x00ff00 ||
2970 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
2972 /* the tests below assume sane bmpImage masks */
2973 } else if (rSrc
==bmpImage
->blue_mask
&& bSrc
==bmpImage
->red_mask
) {
2974 /* ==== rgb 0888 dib -> bgr 0888 bmp ==== */
2975 /* ==== bgr 0888 dib -> rgb 0888 bmp ==== */
2976 convs
->Convert_0888_reverse
2979 dstbits
,-bmpImage
->bytes_per_line
);
2981 /* ==== any 0888 dib -> any 0888 bmp ==== */
2982 convs
->Convert_0888_any
2986 dstbits
,-bmpImage
->bytes_per_line
,
2987 bmpImage
->red_mask
,bmpImage
->green_mask
,bmpImage
->blue_mask
);
2989 } else if (bmpImage
->green_mask
!=0x00ff00 ||
2990 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
2992 /* the tests below assume sane bmpImage masks */
2994 /* ==== any 0888 dib -> any 0888 bmp ==== */
2995 convs
->Convert_0888_any
2999 dstbits
,-bmpImage
->bytes_per_line
,
3000 bmpImage
->red_mask
,bmpImage
->green_mask
,bmpImage
->blue_mask
);
3010 srcbits
=srcbits
+left
*4;
3011 dstbits
=bmpImage
->data
+left
*2+(lines
-1)*bmpImage
->bytes_per_line
;
3013 if (rSrc
==0xff0000 && gSrc
==0x00ff00 && bSrc
==0x0000ff) {
3014 if (bmpImage
->green_mask
==0x03e0) {
3015 if (bmpImage
->red_mask
==0x7f00) {
3016 /* ==== rgb 0888 dib -> rgb 555 bmp ==== */
3017 convs
->Convert_0888_to_555_asis
3020 dstbits
,-bmpImage
->bytes_per_line
);
3021 } else if (bmpImage
->blue_mask
==0x7f00) {
3022 /* ==== rgb 0888 dib -> bgr 555 bmp ==== */
3023 convs
->Convert_0888_to_555_reverse
3026 dstbits
,-bmpImage
->bytes_per_line
);
3030 } else if (bmpImage
->green_mask
==0x07e0) {
3031 if (bmpImage
->red_mask
==0xf800) {
3032 /* ==== rgb 0888 dib -> rgb 565 bmp ==== */
3033 convs
->Convert_0888_to_565_asis
3036 dstbits
,-bmpImage
->bytes_per_line
);
3037 } else if (bmpImage
->blue_mask
==0xf800) {
3038 /* ==== rgb 0888 dib -> bgr 565 bmp ==== */
3039 convs
->Convert_0888_to_565_reverse
3042 dstbits
,-bmpImage
->bytes_per_line
);
3049 } else if (rSrc
==0x0000ff && gSrc
==0x00ff00 && bSrc
==0xff0000) {
3050 if (bmpImage
->green_mask
==0x03e0) {
3051 if (bmpImage
->blue_mask
==0x7f00) {
3052 /* ==== bgr 0888 dib -> bgr 555 bmp ==== */
3053 convs
->Convert_0888_to_555_asis
3056 dstbits
,-bmpImage
->bytes_per_line
);
3057 } else if (bmpImage
->red_mask
==0x7f00) {
3058 /* ==== bgr 0888 dib -> rgb 555 bmp ==== */
3059 convs
->Convert_0888_to_555_reverse
3062 dstbits
,-bmpImage
->bytes_per_line
);
3066 } else if (bmpImage
->green_mask
==0x07e0) {
3067 if (bmpImage
->blue_mask
==0xf800) {
3068 /* ==== bgr 0888 dib -> bgr 565 bmp ==== */
3069 convs
->Convert_0888_to_565_asis
3072 dstbits
,-bmpImage
->bytes_per_line
);
3073 } else if (bmpImage
->red_mask
==0xf800) {
3074 /* ==== bgr 0888 dib -> rgb 565 bmp ==== */
3075 convs
->Convert_0888_to_565_reverse
3078 dstbits
,-bmpImage
->bytes_per_line
);
3086 if (bmpImage
->green_mask
==0x03e0 &&
3087 (bmpImage
->red_mask
==0x7f00 ||
3088 bmpImage
->blue_mask
==0x7f00)) {
3089 /* ==== any 0888 dib -> rgb or bgr 555 bmp ==== */
3090 convs
->Convert_any0888_to_5x5
3094 dstbits
,-bmpImage
->bytes_per_line
,
3095 bmpImage
->red_mask
,bmpImage
->green_mask
,bmpImage
->blue_mask
);
3096 } else if (bmpImage
->green_mask
==0x07e0 &&
3097 (bmpImage
->red_mask
==0xf800 ||
3098 bmpImage
->blue_mask
==0xf800)) {
3099 /* ==== any 0888 dib -> rgb or bgr 565 bmp ==== */
3100 convs
->Convert_any0888_to_5x5
3104 dstbits
,-bmpImage
->bytes_per_line
,
3105 bmpImage
->red_mask
,bmpImage
->green_mask
,bmpImage
->blue_mask
);
3115 WARN("from 32 bit DIB (%lx,%lx,%lx) to unknown %d bit bitmap (%lx,%lx,%lx)\n",
3116 rSrc
, gSrc
, bSrc
, bmpImage
->bits_per_pixel
, bmpImage
->red_mask
,
3117 bmpImage
->green_mask
, bmpImage
->blue_mask
);
3123 /* ==== any 0888 dib -> pal 1, 4 or 8 bmp ==== */
3124 const DWORD
* srcpixel
;
3125 int rShift
,gShift
,bShift
;
3127 rShift
=X11DRV_DIB_MaskToShift(rSrc
);
3128 gShift
=X11DRV_DIB_MaskToShift(gSrc
);
3129 bShift
=X11DRV_DIB_MaskToShift(bSrc
);
3131 for (h
= lines
- 1; h
>= 0; h
--) {
3132 srcpixel
=(const DWORD
*)srcbits
;
3133 for (x
= left
; x
< width
+left
; x
++) {
3135 BYTE red
,green
,blue
;
3136 srcvalue
=*srcpixel
++;
3137 red
= (srcvalue
>> rShift
) & 0xff;
3138 green
=(srcvalue
>> gShift
) & 0xff;
3139 blue
= (srcvalue
>> bShift
) & 0xff;
3140 XPutPixel(bmpImage
, x
, h
, X11DRV_PALETTE_ToPhysical
3141 (physDev
, RGB(red
,green
,blue
)));
3143 srcbits
+= linebytes
;
3151 /***********************************************************************
3152 * X11DRV_DIB_GetImageBits_32
3154 * GetDIBits for an 32-bit deep DIB.
3156 static void X11DRV_DIB_GetImageBits_32( int lines
, BYTE
*dstbits
,
3157 DWORD dstwidth
, DWORD srcwidth
,
3158 PALETTEENTRY
*srccolors
,
3159 DWORD rDst
, DWORD gDst
, DWORD bDst
,
3160 XImage
*bmpImage
, DWORD linebytes
)
3163 int h
, width
= min(srcwidth
, dstwidth
);
3165 const dib_conversions
*convs
= (bmpImage
->byte_order
== LSBFirst
) ? &dib_normal
: &dib_src_byteswap
;
3170 dstbits
= dstbits
+ ( linebytes
* (lines
-1) );
3171 linebytes
= -linebytes
;
3176 switch (bmpImage
->depth
)
3179 if (bmpImage
->bits_per_pixel
==24) {
3180 const void* srcbits
;
3182 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
3184 if (rDst
==bmpImage
->red_mask
&& gDst
==bmpImage
->green_mask
&& bDst
==bmpImage
->blue_mask
) {
3185 /* ==== rgb 888 bmp -> rgb 0888 dib ==== */
3186 /* ==== bgr 888 bmp -> bgr 0888 dib ==== */
3187 convs
->Convert_888_to_0888_asis
3189 srcbits
,-bmpImage
->bytes_per_line
,
3191 } else if (bmpImage
->green_mask
!=0x00ff00 ||
3192 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
3194 /* the tests below assume sane bmpImage masks */
3195 } else if (rDst
==bmpImage
->blue_mask
&& gDst
==bmpImage
->green_mask
&& bDst
==bmpImage
->red_mask
) {
3196 /* ==== rgb 888 bmp -> bgr 0888 dib ==== */
3197 /* ==== bgr 888 bmp -> rgb 0888 dib ==== */
3198 convs
->Convert_888_to_0888_reverse
3200 srcbits
,-bmpImage
->bytes_per_line
,
3202 } else if (bmpImage
->blue_mask
==0xff) {
3203 /* ==== rgb 888 bmp -> any 0888 dib ==== */
3204 convs
->Convert_rgb888_to_any0888
3206 srcbits
,-bmpImage
->bytes_per_line
,
3210 /* ==== bgr 888 bmp -> any 0888 dib ==== */
3211 convs
->Convert_bgr888_to_any0888
3213 srcbits
,-bmpImage
->bytes_per_line
,
3223 const char* srcbits
;
3225 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
3227 if (gDst
==bmpImage
->green_mask
) {
3228 if (rDst
==bmpImage
->red_mask
&& bDst
==bmpImage
->blue_mask
) {
3229 /* ==== rgb 0888 bmp -> rgb 0888 dib ==== */
3230 /* ==== bgr 0888 bmp -> bgr 0888 dib ==== */
3231 convs
->Convert_0888_asis
3233 srcbits
,-bmpImage
->bytes_per_line
,
3235 } else if (bmpImage
->green_mask
!=0x00ff00 ||
3236 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
3238 /* the tests below assume sane bmpImage masks */
3239 } else if (rDst
==bmpImage
->blue_mask
&& bDst
==bmpImage
->red_mask
) {
3240 /* ==== rgb 0888 bmp -> bgr 0888 dib ==== */
3241 /* ==== bgr 0888 bmp -> rgb 0888 dib ==== */
3242 convs
->Convert_0888_reverse
3244 srcbits
,-bmpImage
->bytes_per_line
,
3247 /* ==== any 0888 bmp -> any 0888 dib ==== */
3248 convs
->Convert_0888_any
3250 srcbits
,-bmpImage
->bytes_per_line
,
3251 bmpImage
->red_mask
,bmpImage
->green_mask
,bmpImage
->blue_mask
,
3255 } else if (bmpImage
->green_mask
!=0x00ff00 ||
3256 (bmpImage
->red_mask
|bmpImage
->blue_mask
)!=0xff00ff) {
3258 /* the tests below assume sane bmpImage masks */
3260 /* ==== any 0888 bmp -> any 0888 dib ==== */
3261 convs
->Convert_0888_any
3263 srcbits
,-bmpImage
->bytes_per_line
,
3264 bmpImage
->red_mask
,bmpImage
->green_mask
,bmpImage
->blue_mask
,
3274 const char* srcbits
;
3276 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
3278 if (rDst
==0xff0000 && gDst
==0x00ff00 && bDst
==0x0000ff) {
3279 if (bmpImage
->green_mask
==0x03e0) {
3280 if (bmpImage
->red_mask
==0x7f00) {
3281 /* ==== rgb 555 bmp -> rgb 0888 dib ==== */
3282 convs
->Convert_555_to_0888_asis
3284 srcbits
,-bmpImage
->bytes_per_line
,
3286 } else if (bmpImage
->blue_mask
==0x7f00) {
3287 /* ==== bgr 555 bmp -> rgb 0888 dib ==== */
3288 convs
->Convert_555_to_0888_reverse
3290 srcbits
,-bmpImage
->bytes_per_line
,
3295 } else if (bmpImage
->green_mask
==0x07e0) {
3296 if (bmpImage
->red_mask
==0xf800) {
3297 /* ==== rgb 565 bmp -> rgb 0888 dib ==== */
3298 convs
->Convert_565_to_0888_asis
3300 srcbits
,-bmpImage
->bytes_per_line
,
3302 } else if (bmpImage
->blue_mask
==0xf800) {
3303 /* ==== bgr 565 bmp -> rgb 0888 dib ==== */
3304 convs
->Convert_565_to_0888_reverse
3306 srcbits
,-bmpImage
->bytes_per_line
,
3314 } else if (rDst
==0x0000ff && gDst
==0x00ff00 && bDst
==0xff0000) {
3315 if (bmpImage
->green_mask
==0x03e0) {
3316 if (bmpImage
->blue_mask
==0x7f00) {
3317 /* ==== bgr 555 bmp -> bgr 0888 dib ==== */
3318 convs
->Convert_555_to_0888_asis
3320 srcbits
,-bmpImage
->bytes_per_line
,
3322 } else if (bmpImage
->red_mask
==0x7f00) {
3323 /* ==== rgb 555 bmp -> bgr 0888 dib ==== */
3324 convs
->Convert_555_to_0888_reverse
3326 srcbits
,-bmpImage
->bytes_per_line
,
3331 } else if (bmpImage
->green_mask
==0x07e0) {
3332 if (bmpImage
->blue_mask
==0xf800) {
3333 /* ==== bgr 565 bmp -> bgr 0888 dib ==== */
3334 convs
->Convert_565_to_0888_asis
3336 srcbits
,-bmpImage
->bytes_per_line
,
3338 } else if (bmpImage
->red_mask
==0xf800) {
3339 /* ==== rgb 565 bmp -> bgr 0888 dib ==== */
3340 convs
->Convert_565_to_0888_reverse
3342 srcbits
,-bmpImage
->bytes_per_line
,
3351 if (bmpImage
->green_mask
==0x03e0 &&
3352 (bmpImage
->red_mask
==0x7f00 ||
3353 bmpImage
->blue_mask
==0x7f00)) {
3354 /* ==== rgb or bgr 555 bmp -> any 0888 dib ==== */
3355 convs
->Convert_5x5_to_any0888
3357 srcbits
,-bmpImage
->bytes_per_line
,
3358 bmpImage
->red_mask
,bmpImage
->green_mask
,bmpImage
->blue_mask
,
3361 } else if (bmpImage
->green_mask
==0x07e0 &&
3362 (bmpImage
->red_mask
==0xf800 ||
3363 bmpImage
->blue_mask
==0xf800)) {
3364 /* ==== rgb or bgr 565 bmp -> any 0888 dib ==== */
3365 convs
->Convert_5x5_to_any0888
3367 srcbits
,-bmpImage
->bytes_per_line
,
3368 bmpImage
->red_mask
,bmpImage
->green_mask
,bmpImage
->blue_mask
,
3380 if (bmpImage
->red_mask
==0 && bmpImage
->green_mask
==0 && bmpImage
->blue_mask
==0 && srccolors
) {
3381 /* ==== pal 1 or 4 bmp -> any 0888 dib ==== */
3382 int rShift
,gShift
,bShift
;
3385 rShift
=X11DRV_DIB_MaskToShift(rDst
);
3386 gShift
=X11DRV_DIB_MaskToShift(gDst
);
3387 bShift
=X11DRV_DIB_MaskToShift(bDst
);
3388 for (h
= lines
- 1; h
>= 0; h
--) {
3389 dstpixel
=(DWORD
*)dstbits
;
3390 for (x
= 0; x
< width
; x
++) {
3391 PALETTEENTRY srcval
;
3392 srcval
= srccolors
[XGetPixel(bmpImage
, x
, h
)];
3393 *dstpixel
++=(srcval
.peRed
<< rShift
) |
3394 (srcval
.peGreen
<< gShift
) |
3395 (srcval
.peBlue
<< bShift
);
3397 dstbits
+= linebytes
;
3405 if (bmpImage
->red_mask
==0 && bmpImage
->green_mask
==0 && bmpImage
->blue_mask
==0 && srccolors
) {
3406 /* ==== pal 8 bmp -> any 0888 dib ==== */
3407 int rShift
,gShift
,bShift
;
3408 const void* srcbits
;
3409 const BYTE
* srcpixel
;
3412 rShift
=X11DRV_DIB_MaskToShift(rDst
);
3413 gShift
=X11DRV_DIB_MaskToShift(gDst
);
3414 bShift
=X11DRV_DIB_MaskToShift(bDst
);
3415 srcbits
=bmpImage
->data
+(lines
-1)*bmpImage
->bytes_per_line
;
3416 for (h
= lines
- 1; h
>= 0; h
--) {
3418 dstpixel
=(DWORD
*)dstbits
;
3419 for (x
= 0; x
< width
; x
++) {
3420 PALETTEENTRY srcval
;
3421 srcval
=srccolors
[(int)*srcpixel
++];
3422 *dstpixel
++=(srcval
.peRed
<< rShift
) |
3423 (srcval
.peGreen
<< gShift
) |
3424 (srcval
.peBlue
<< bShift
);
3426 srcbits
= (const char*)srcbits
- bmpImage
->bytes_per_line
;
3427 dstbits
+= linebytes
;
3437 /* ==== any bmp format -> any 0888 dib ==== */
3438 int rShift
,gShift
,bShift
;
3441 WARN("from unknown %d bit bitmap (%lx,%lx,%lx) to 32 bit DIB (%lx,%lx,%lx)\n",
3442 bmpImage
->depth
, bmpImage
->red_mask
,
3443 bmpImage
->green_mask
, bmpImage
->blue_mask
,
3446 rShift
=X11DRV_DIB_MaskToShift(rDst
);
3447 gShift
=X11DRV_DIB_MaskToShift(gDst
);
3448 bShift
=X11DRV_DIB_MaskToShift(bDst
);
3449 for (h
= lines
- 1; h
>= 0; h
--) {
3450 dstpixel
=(DWORD
*)dstbits
;
3451 for (x
= 0; x
< width
; x
++) {
3453 srcval
=X11DRV_PALETTE_ToLogical(XGetPixel(bmpImage
, x
, h
));
3454 *dstpixel
++=(GetRValue(srcval
) << rShift
) |
3455 (GetGValue(srcval
) << gShift
) |
3456 (GetBValue(srcval
) << bShift
);
3458 dstbits
+= linebytes
;
3465 static int XGetSubImageErrorHandler(Display
*dpy
, XErrorEvent
*event
, void *arg
)
3467 return (event
->request_code
== X_GetImage
&& event
->error_code
== BadMatch
);
3470 /***********************************************************************
3471 * X11DRV_DIB_SetImageBits_GetSubImage
3473 * Helper for X11DRV_DIB_SetImageBits
3475 static void X11DRV_DIB_SetImageBits_GetSubImage(
3476 const X11DRV_DIB_IMAGEBITS_DESCR
*descr
, XImage
*bmpImage
)
3478 /* compressed bitmaps may contain gaps in them. So make a copy
3479 * of the existing pixels first */
3482 SetRect( &bmprc
, descr
->xDest
, descr
->yDest
,
3483 descr
->xDest
+ descr
->width
, descr
->yDest
+ descr
->height
);
3484 GetRgnBox( descr
->physDev
->region
, &rc
);
3485 /* convert from dc to drawable origin */
3486 OffsetRect( &rc
, descr
->physDev
->org
.x
, descr
->physDev
->org
.y
);
3487 /* clip visible rect with bitmap */
3488 if( IntersectRect( &rc
, &rc
, &bmprc
))
3490 X11DRV_expect_error( gdi_display
, XGetSubImageErrorHandler
, NULL
);
3491 XGetSubImage( gdi_display
, descr
->drawable
, rc
.left
, rc
.top
,
3492 rc
.right
- rc
.left
, rc
.bottom
- rc
.top
, AllPlanes
,
3494 descr
->xSrc
+ rc
.left
- bmprc
.left
,
3495 descr
->ySrc
+ rc
.top
- bmprc
.top
);
3496 X11DRV_check_error();
3500 /***********************************************************************
3501 * X11DRV_DIB_SetImageBits
3503 * Transfer the bits to an X image.
3504 * Helper function for SetDIBits() and SetDIBitsToDevice().
3506 static int X11DRV_DIB_SetImageBits( const X11DRV_DIB_IMAGEBITS_DESCR
*descr
)
3508 int lines
= descr
->lines
>= 0 ? descr
->lines
: -descr
->lines
;
3513 bmpImage
= descr
->image
;
3515 bmpImage
= XCreateImage( gdi_display
, visual
, descr
->depth
, ZPixmap
, 0, NULL
,
3516 descr
->infoWidth
, lines
, 32, 0 );
3517 bmpImage
->data
= calloc( lines
, bmpImage
->bytes_per_line
);
3518 if(bmpImage
->data
== NULL
) {
3519 ERR("Out of memory!\n");
3520 XDestroyImage( bmpImage
);
3521 wine_tsx11_unlock();
3526 TRACE("Dib: depth=%d r=%lx g=%lx b=%lx\n",
3527 descr
->infoBpp
,descr
->rMask
,descr
->gMask
,descr
->bMask
);
3528 TRACE("Bmp: depth=%d/%d r=%lx g=%lx b=%lx\n",
3529 bmpImage
->depth
,bmpImage
->bits_per_pixel
,
3530 bmpImage
->red_mask
,bmpImage
->green_mask
,bmpImage
->blue_mask
);
3532 /* Transfer the pixels */
3533 switch(descr
->infoBpp
)
3536 X11DRV_DIB_SetImageBits_1( descr
->lines
, descr
->bits
, descr
->infoWidth
,
3537 descr
->width
, descr
->xSrc
, (int *)(descr
->colorMap
),
3538 bmpImage
, descr
->dibpitch
);
3541 if (descr
->compression
) {
3542 X11DRV_DIB_SetImageBits_GetSubImage( descr
, bmpImage
);
3543 X11DRV_DIB_SetImageBits_RLE4( descr
->lines
, descr
->bits
,
3544 descr
->infoWidth
, descr
->width
,
3545 descr
->xSrc
, (int *)(descr
->colorMap
),
3548 X11DRV_DIB_SetImageBits_4( descr
->lines
, descr
->bits
,
3549 descr
->infoWidth
, descr
->width
,
3550 descr
->xSrc
, (int*)(descr
->colorMap
),
3551 bmpImage
, descr
->dibpitch
);
3554 if (descr
->compression
) {
3555 X11DRV_DIB_SetImageBits_GetSubImage( descr
, bmpImage
);
3556 X11DRV_DIB_SetImageBits_RLE8( descr
->lines
, descr
->bits
,
3557 descr
->infoWidth
, descr
->width
,
3558 descr
->xSrc
, (int *)(descr
->colorMap
),
3561 X11DRV_DIB_SetImageBits_8( descr
->lines
, descr
->bits
,
3562 descr
->infoWidth
, descr
->width
,
3563 descr
->xSrc
, (int *)(descr
->colorMap
),
3564 bmpImage
, descr
->dibpitch
);
3568 X11DRV_DIB_SetImageBits_16( descr
->lines
, descr
->bits
,
3569 descr
->infoWidth
, descr
->width
,
3570 descr
->xSrc
, descr
->physDev
,
3571 descr
->rMask
, descr
->gMask
, descr
->bMask
,
3572 bmpImage
, descr
->dibpitch
);
3575 X11DRV_DIB_SetImageBits_24( descr
->lines
, descr
->bits
,
3576 descr
->infoWidth
, descr
->width
,
3577 descr
->xSrc
, descr
->physDev
,
3578 descr
->rMask
, descr
->gMask
, descr
->bMask
,
3579 bmpImage
, descr
->dibpitch
);
3582 X11DRV_DIB_SetImageBits_32( descr
->lines
, descr
->bits
,
3583 descr
->infoWidth
, descr
->width
,
3584 descr
->xSrc
, descr
->physDev
,
3585 descr
->rMask
, descr
->gMask
, descr
->bMask
,
3586 bmpImage
, descr
->dibpitch
);
3589 WARN("(%d): Invalid depth\n", descr
->infoBpp
);
3593 TRACE("XPutImage(%ld,%p,%p,%d,%d,%d,%d,%d,%d)\n",
3594 descr
->drawable
, descr
->gc
, bmpImage
,
3595 descr
->xSrc
, descr
->ySrc
, descr
->xDest
, descr
->yDest
,
3596 descr
->width
, descr
->height
);
3597 #ifdef HAVE_LIBXXSHM
3600 XShmPutImage( gdi_display
, descr
->drawable
, descr
->gc
, bmpImage
,
3601 descr
->xSrc
, descr
->ySrc
, descr
->xDest
, descr
->yDest
,
3602 descr
->width
, descr
->height
, FALSE
);
3603 XSync( gdi_display
, 0 );
3607 XPutImage( gdi_display
, descr
->drawable
, descr
->gc
, bmpImage
,
3608 descr
->xSrc
, descr
->ySrc
, descr
->xDest
, descr
->yDest
,
3609 descr
->width
, descr
->height
);
3611 if (!descr
->image
) XDestroyImage( bmpImage
);
3612 wine_tsx11_unlock();
3616 /***********************************************************************
3617 * X11DRV_DIB_GetImageBits
3619 * Transfer the bits from an X image.
3621 static int X11DRV_DIB_GetImageBits( const X11DRV_DIB_IMAGEBITS_DESCR
*descr
)
3623 int lines
= descr
->lines
>= 0 ? descr
->lines
: -descr
->lines
;
3628 bmpImage
= descr
->image
;
3630 bmpImage
= XCreateImage( gdi_display
, visual
, descr
->depth
, ZPixmap
, 0, NULL
,
3631 descr
->infoWidth
, lines
, 32, 0 );
3632 bmpImage
->data
= calloc( lines
, bmpImage
->bytes_per_line
);
3633 if(bmpImage
->data
== NULL
) {
3634 ERR("Out of memory!\n");
3635 XDestroyImage( bmpImage
);
3636 wine_tsx11_unlock();
3641 #ifdef HAVE_LIBXXSHM
3644 int saveRed
, saveGreen
, saveBlue
;
3646 TRACE("XShmGetImage(%p, %ld, %p, %d, %d, %ld)\n",
3647 gdi_display
, descr
->drawable
, bmpImage
,
3648 descr
->xSrc
, descr
->ySrc
, AllPlanes
);
3650 /* We must save and restore the bmpImage's masks in order
3651 * to preserve them across the call to XShmGetImage, which
3652 * decides to eleminate them since it doesn't happen to know
3653 * what the format of the image is supposed to be, even though
3655 saveRed
= bmpImage
->red_mask
;
3656 saveBlue
= bmpImage
->blue_mask
;
3657 saveGreen
= bmpImage
->green_mask
;
3659 XShmGetImage( gdi_display
, descr
->drawable
, bmpImage
,
3660 descr
->xSrc
, descr
->ySrc
, AllPlanes
);
3662 bmpImage
->red_mask
= saveRed
;
3663 bmpImage
->blue_mask
= saveBlue
;
3664 bmpImage
->green_mask
= saveGreen
;
3667 #endif /* HAVE_LIBXXSHM */
3669 TRACE("XGetSubImage(%p,%ld,%d,%d,%d,%d,%ld,%d,%p,%d,%d)\n",
3670 gdi_display
, descr
->drawable
, descr
->xSrc
, descr
->ySrc
, descr
->width
,
3671 lines
, AllPlanes
, ZPixmap
, bmpImage
, descr
->xDest
, descr
->yDest
);
3672 XGetSubImage( gdi_display
, descr
->drawable
, descr
->xSrc
, descr
->ySrc
,
3673 descr
->width
, lines
, AllPlanes
, ZPixmap
,
3674 bmpImage
, descr
->xDest
, descr
->yDest
);
3677 TRACE("Dib: depth=%2d r=%lx g=%lx b=%lx\n",
3678 descr
->infoBpp
,descr
->rMask
,descr
->gMask
,descr
->bMask
);
3679 TRACE("Bmp: depth=%2d/%2d r=%lx g=%lx b=%lx\n",
3680 bmpImage
->depth
,bmpImage
->bits_per_pixel
,
3681 bmpImage
->red_mask
,bmpImage
->green_mask
,bmpImage
->blue_mask
);
3682 /* Transfer the pixels */
3683 switch(descr
->infoBpp
)
3686 X11DRV_DIB_GetImageBits_1( descr
->lines
,(LPVOID
)descr
->bits
,
3687 descr
->infoWidth
, descr
->width
,
3688 descr
->colorMap
, descr
->palentry
,
3689 bmpImage
, descr
->dibpitch
);
3693 if (descr
->compression
) {
3694 FIXME("Compression not yet supported!\n");
3695 if(descr
->sizeImage
< X11DRV_DIB_GetDIBWidthBytes( descr
->infoWidth
, 4 ) * abs(descr
->lines
))
3698 X11DRV_DIB_GetImageBits_4( descr
->lines
,(LPVOID
)descr
->bits
,
3699 descr
->infoWidth
, descr
->width
,
3700 descr
->colorMap
, descr
->palentry
,
3701 bmpImage
, descr
->dibpitch
);
3704 if (descr
->compression
) {
3705 FIXME("Compression not yet supported!\n");
3706 if(descr
->sizeImage
< X11DRV_DIB_GetDIBWidthBytes( descr
->infoWidth
, 8 ) * abs(descr
->lines
))
3709 X11DRV_DIB_GetImageBits_8( descr
->lines
, (LPVOID
)descr
->bits
,
3710 descr
->infoWidth
, descr
->width
,
3711 descr
->colorMap
, descr
->palentry
,
3712 bmpImage
, descr
->dibpitch
);
3716 X11DRV_DIB_GetImageBits_16( descr
->lines
, (LPVOID
)descr
->bits
,
3717 descr
->infoWidth
,descr
->width
,
3719 descr
->rMask
, descr
->gMask
, descr
->bMask
,
3720 bmpImage
, descr
->dibpitch
);
3724 X11DRV_DIB_GetImageBits_24( descr
->lines
, (LPVOID
)descr
->bits
,
3725 descr
->infoWidth
,descr
->width
,
3727 descr
->rMask
, descr
->gMask
, descr
->bMask
,
3728 bmpImage
, descr
->dibpitch
);
3732 X11DRV_DIB_GetImageBits_32( descr
->lines
, (LPVOID
)descr
->bits
,
3733 descr
->infoWidth
, descr
->width
,
3735 descr
->rMask
, descr
->gMask
, descr
->bMask
,
3736 bmpImage
, descr
->dibpitch
);
3740 WARN("(%d): Invalid depth\n", descr
->infoBpp
);
3744 if (!descr
->image
) XDestroyImage( bmpImage
);
3745 wine_tsx11_unlock();
3749 /*************************************************************************
3750 * X11DRV_SetDIBitsToDevice
3753 INT
X11DRV_SetDIBitsToDevice( X11DRV_PDEVICE
*physDev
, INT xDest
, INT yDest
, DWORD cx
,
3754 DWORD cy
, INT xSrc
, INT ySrc
,
3755 UINT startscan
, UINT lines
, LPCVOID bits
,
3756 const BITMAPINFO
*info
, UINT coloruse
)
3758 X11DRV_DIB_IMAGEBITS_DESCR descr
;
3764 if (DIB_GetBitmapInfo( &info
->bmiHeader
, &width
, &height
,
3765 &descr
.infoBpp
, &descr
.compression
) == -1)
3768 top_down
= (height
< 0);
3769 if (top_down
) height
= -height
;
3773 LPtoDP(physDev
->hdc
, &pt
, 1);
3775 if (!lines
|| (startscan
>= height
)) return 0;
3776 if (!top_down
&& startscan
+ lines
> height
) lines
= height
- startscan
;
3778 /* make xSrc,ySrc point to the upper-left corner, not the lower-left one,
3779 * and clamp all values to fit inside [startscan,startscan+lines]
3781 if (ySrc
+ cy
<= startscan
+ lines
)
3783 UINT y
= startscan
+ lines
- (ySrc
+ cy
);
3784 if (ySrc
< startscan
) cy
-= (startscan
- ySrc
);
3787 /* avoid getting unnecessary lines */
3789 if (y
>= lines
) return 0;
3794 if (y
>= lines
) return lines
;
3795 ySrc
= y
; /* need to get all lines in top down mode */
3800 if (ySrc
>= startscan
+ lines
) return lines
;
3801 pt
.y
+= ySrc
+ cy
- (startscan
+ lines
);
3802 cy
= startscan
+ lines
- ySrc
;
3804 if (cy
> lines
) cy
= lines
;
3806 if (xSrc
>= width
) return lines
;
3807 if (xSrc
+ cx
>= width
) cx
= width
- xSrc
;
3808 if (!cx
|| !cy
) return lines
;
3810 /* Update the pixmap from the DIB section */
3811 X11DRV_LockDIBSection(physDev
, DIB_Status_GdiMod
, FALSE
);
3813 X11DRV_SetupGCForText( physDev
); /* To have the correct colors */
3815 XSetFunction(gdi_display
, physDev
->gc
, X11DRV_XROPfunction
[GetROP2(physDev
->hdc
) - 1]);
3816 wine_tsx11_unlock();
3818 switch (descr
.infoBpp
)
3823 descr
.colorMap
= (RGBQUAD
*)X11DRV_DIB_BuildColorMap(
3824 coloruse
== DIB_PAL_COLORS
? physDev
: NULL
, coloruse
,
3825 physDev
->depth
, info
, &descr
.nColorMap
);
3826 if (!descr
.colorMap
) return 0;
3827 descr
.rMask
= descr
.gMask
= descr
.bMask
= 0;
3831 descr
.rMask
= (descr
.compression
== BI_BITFIELDS
) ? *(const DWORD
*)info
->bmiColors
: 0x7c00;
3832 descr
.gMask
= (descr
.compression
== BI_BITFIELDS
) ? *((const DWORD
*)info
->bmiColors
+ 1) : 0x03e0;
3833 descr
.bMask
= (descr
.compression
== BI_BITFIELDS
) ? *((const DWORD
*)info
->bmiColors
+ 2) : 0x001f;
3839 descr
.rMask
= (descr
.compression
== BI_BITFIELDS
) ? *(const DWORD
*)info
->bmiColors
: 0xff0000;
3840 descr
.gMask
= (descr
.compression
== BI_BITFIELDS
) ? *((const DWORD
*)info
->bmiColors
+ 1) : 0x00ff00;
3841 descr
.bMask
= (descr
.compression
== BI_BITFIELDS
) ? *((const DWORD
*)info
->bmiColors
+ 2) : 0x0000ff;
3846 descr
.physDev
= physDev
;
3849 descr
.palentry
= NULL
;
3850 descr
.lines
= top_down
? -lines
: lines
;
3851 descr
.infoWidth
= width
;
3852 descr
.depth
= physDev
->depth
;
3853 descr
.drawable
= physDev
->drawable
;
3854 descr
.gc
= physDev
->gc
;
3857 descr
.xDest
= physDev
->org
.x
+ pt
.x
;
3858 descr
.yDest
= physDev
->org
.y
+ pt
.y
;
3861 descr
.useShm
= FALSE
;
3862 descr
.dibpitch
= ((width
* descr
.infoBpp
+ 31) &~31) / 8;
3864 result
= X11DRV_DIB_SetImageBits( &descr
);
3866 if (descr
.infoBpp
<= 8)
3867 HeapFree(GetProcessHeap(), 0, descr
.colorMap
);
3869 /* Update the DIBSection of the pixmap */
3870 X11DRV_UnlockDIBSection(physDev
, TRUE
);
3875 /***********************************************************************
3876 * SetDIBits (X11DRV.@)
3878 INT
X11DRV_SetDIBits( X11DRV_PDEVICE
*physDev
, HBITMAP hbitmap
, UINT startscan
,
3879 UINT lines
, LPCVOID bits
, const BITMAPINFO
*info
, UINT coloruse
)
3881 X_PHYSBITMAP
*physBitmap
= X11DRV_get_phys_bitmap( hbitmap
);
3882 X11DRV_DIB_IMAGEBITS_DESCR descr
;
3884 LONG width
, height
, tmpheight
;
3887 descr
.physDev
= physDev
;
3889 if (!physBitmap
) return 0;
3891 if (DIB_GetBitmapInfo( &info
->bmiHeader
, &width
, &height
,
3892 &descr
.infoBpp
, &descr
.compression
) == -1)
3896 if (height
< 0) height
= -height
;
3897 if (!lines
|| (startscan
>= height
))
3900 if (!GetObjectW( hbitmap
, sizeof(bitmap
), &bitmap
)) return 0;
3902 if (startscan
+ lines
> height
) lines
= height
- startscan
;
3904 switch (descr
.infoBpp
)
3909 descr
.colorMap
= (RGBQUAD
*)X11DRV_DIB_BuildColorMap(
3910 coloruse
== DIB_PAL_COLORS
? descr
.physDev
: NULL
, coloruse
,
3911 physBitmap
->pixmap_depth
,
3912 info
, &descr
.nColorMap
);
3913 if (!descr
.colorMap
) return 0;
3914 descr
.rMask
= descr
.gMask
= descr
.bMask
= 0;
3918 descr
.rMask
= (descr
.compression
== BI_BITFIELDS
) ? *(const DWORD
*)info
->bmiColors
: 0x7c00;
3919 descr
.gMask
= (descr
.compression
== BI_BITFIELDS
) ? *((const DWORD
*)info
->bmiColors
+ 1) : 0x03e0;
3920 descr
.bMask
= (descr
.compression
== BI_BITFIELDS
) ? *((const DWORD
*)info
->bmiColors
+ 2) : 0x001f;
3926 descr
.rMask
= (descr
.compression
== BI_BITFIELDS
) ? *(const DWORD
*)info
->bmiColors
: 0xff0000;
3927 descr
.gMask
= (descr
.compression
== BI_BITFIELDS
) ? *((const DWORD
*)info
->bmiColors
+ 1) : 0x00ff00;
3928 descr
.bMask
= (descr
.compression
== BI_BITFIELDS
) ? *((const DWORD
*)info
->bmiColors
+ 2) : 0x0000ff;
3937 descr
.palentry
= NULL
;
3938 descr
.infoWidth
= width
;
3939 descr
.lines
= tmpheight
>= 0 ? lines
: -lines
;
3940 descr
.depth
= physBitmap
->pixmap_depth
;
3941 descr
.drawable
= physBitmap
->pixmap
;
3942 descr
.gc
= BITMAP_GC(physBitmap
);
3946 descr
.yDest
= height
- startscan
- lines
;
3947 descr
.width
= bitmap
.bmWidth
;
3948 descr
.height
= lines
;
3949 descr
.useShm
= FALSE
;
3950 descr
.dibpitch
= ((descr
.infoWidth
* descr
.infoBpp
+ 31) &~31) / 8;
3951 X11DRV_DIB_Lock( physBitmap
, DIB_Status_GdiMod
, FALSE
);
3952 result
= X11DRV_DIB_SetImageBits( &descr
);
3953 X11DRV_DIB_Unlock( physBitmap
, TRUE
);
3955 HeapFree(GetProcessHeap(), 0, descr
.colorMap
);
3960 /***********************************************************************
3961 * GetDIBits (X11DRV.@)
3963 INT
X11DRV_GetDIBits( X11DRV_PDEVICE
*physDev
, HBITMAP hbitmap
, UINT startscan
, UINT lines
,
3964 LPVOID bits
, BITMAPINFO
*info
, UINT coloruse
)
3966 X_PHYSBITMAP
*physBitmap
= X11DRV_get_phys_bitmap( hbitmap
);
3968 X11DRV_DIB_IMAGEBITS_DESCR descr
;
3969 PALETTEENTRY palette
[256];
3972 LONG width
, tempHeight
;
3977 GetPaletteEntries( GetCurrentObject( physDev
->hdc
, OBJ_PAL
), 0, 256, palette
);
3979 if (!physBitmap
) return 0;
3980 if (!(obj_size
= GetObjectW( hbitmap
, sizeof(dib
), &dib
))) return 0;
3982 bitmap_type
= DIB_GetBitmapInfo( (BITMAPINFOHEADER
*)info
, &width
, &tempHeight
, &descr
.infoBpp
, &descr
.compression
);
3983 descr
.lines
= tempHeight
;
3984 if (bitmap_type
== -1)
3986 ERR("Invalid bitmap\n");
3989 core_header
= (bitmap_type
== 0);
3990 colorPtr
= (LPBYTE
) info
+ (WORD
) info
->bmiHeader
.biSize
;
3992 TRACE("%u scanlines of (%i,%i) -> (%li,%i) starting from %u\n",
3993 lines
, dib
.dsBm
.bmWidth
, dib
.dsBm
.bmHeight
, width
, descr
.lines
, startscan
);
3995 if( lines
> dib
.dsBm
.bmHeight
) lines
= dib
.dsBm
.bmHeight
;
3997 height
= descr
.lines
;
3998 if (height
< 0) height
= -height
;
3999 if( lines
> height
) lines
= height
;
4000 /* Top-down images have a negative biHeight, the scanlines of theses images
4001 * were inverted in X11DRV_DIB_GetImageBits_xx
4002 * To prevent this we simply change the sign of lines
4003 * (the number of scan lines to copy).
4004 * Negative lines are correctly handled by X11DRV_DIB_GetImageBits_xx.
4006 if( descr
.lines
< 0 && lines
> 0) lines
= -lines
;
4008 if( startscan
>= dib
.dsBm
.bmHeight
) return 0;
4010 descr
.colorMap
= NULL
;
4012 switch (descr
.infoBpp
)
4017 descr
.rMask
= descr
.gMask
= descr
.bMask
= 0;
4018 if(coloruse
== DIB_RGB_COLORS
)
4019 descr
.colorMap
= colorPtr
;
4021 int num_colors
= 1 << descr
.infoBpp
, i
;
4024 WORD
*index
= (WORD
*)colorPtr
;
4025 descr
.colorMap
= rgb
= HeapAlloc(GetProcessHeap(), 0, num_colors
* sizeof(RGBQUAD
));
4026 for(i
= 0; i
< num_colors
; i
++, rgb
++, index
++) {
4027 colref
= X11DRV_PALETTE_ToLogical(X11DRV_PALETTE_ToPhysical(physDev
, PALETTEINDEX(*index
)));
4028 rgb
->rgbRed
= GetRValue(colref
);
4029 rgb
->rgbGreen
= GetGValue(colref
);
4030 rgb
->rgbBlue
= GetBValue(colref
);
4031 rgb
->rgbReserved
= 0;
4037 descr
.rMask
= (descr
.compression
== BI_BITFIELDS
) ? *(const DWORD
*)info
->bmiColors
: 0x7c00;
4038 descr
.gMask
= (descr
.compression
== BI_BITFIELDS
) ? *((const DWORD
*)info
->bmiColors
+ 1) : 0x03e0;
4039 descr
.bMask
= (descr
.compression
== BI_BITFIELDS
) ? *((const DWORD
*)info
->bmiColors
+ 2) : 0x001f;
4043 descr
.rMask
= (descr
.compression
== BI_BITFIELDS
) ? *(const DWORD
*)info
->bmiColors
: 0xff0000;
4044 descr
.gMask
= (descr
.compression
== BI_BITFIELDS
) ? *((const DWORD
*)info
->bmiColors
+ 1) : 0x00ff00;
4045 descr
.bMask
= (descr
.compression
== BI_BITFIELDS
) ? *((const DWORD
*)info
->bmiColors
+ 2) : 0x0000ff;
4049 descr
.physDev
= physDev
;
4050 descr
.palentry
= palette
;
4053 descr
.infoWidth
= width
;
4054 descr
.lines
= lines
;
4055 descr
.depth
= physBitmap
->pixmap_depth
;
4056 descr
.drawable
= physBitmap
->pixmap
;
4057 descr
.gc
= BITMAP_GC(physBitmap
);
4058 descr
.width
= dib
.dsBm
.bmWidth
;
4059 descr
.height
= dib
.dsBm
.bmHeight
;
4063 descr
.sizeImage
= core_header
? 0 : info
->bmiHeader
.biSizeImage
;
4065 if (descr
.lines
> 0)
4067 descr
.ySrc
= (descr
.height
-1) - (startscan
+ (lines
-1));
4071 descr
.ySrc
= startscan
;
4073 #ifdef HAVE_LIBXXSHM
4074 descr
.useShm
= (obj_size
== sizeof(DIBSECTION
)) && (physBitmap
->shminfo
.shmid
!= -1);
4076 descr
.useShm
= FALSE
;
4078 descr
.dibpitch
= (obj_size
== sizeof(DIBSECTION
)) ? dib
.dsBm
.bmWidthBytes
4079 : (((descr
.infoWidth
* descr
.infoBpp
+ 31) &~31) / 8);
4081 X11DRV_DIB_Lock( physBitmap
, DIB_Status_GdiMod
, FALSE
);
4082 X11DRV_DIB_GetImageBits( &descr
);
4083 X11DRV_DIB_Unlock( physBitmap
, TRUE
);
4085 if(!core_header
&& info
->bmiHeader
.biSizeImage
== 0) /* Fill in biSizeImage */
4086 info
->bmiHeader
.biSizeImage
= X11DRV_DIB_GetDIBImageBytes( descr
.infoWidth
,
4090 if (descr
.compression
== BI_BITFIELDS
)
4092 *(DWORD
*)info
->bmiColors
= descr
.rMask
;
4093 *((DWORD
*)info
->bmiColors
+ 1) = descr
.gMask
;
4094 *((DWORD
*)info
->bmiColors
+ 2) = descr
.bMask
;
4096 else if (!core_header
)
4098 /* if RLE or JPEG compression were supported,
4099 * this line would be invalid. */
4100 info
->bmiHeader
.biCompression
= 0;
4103 if(descr
.colorMap
&& descr
.colorMap
!= colorPtr
)
4104 HeapFree(GetProcessHeap(), 0, descr
.colorMap
);
4108 /***********************************************************************
4109 * DIB_DoProtectDIBSection
4111 static void X11DRV_DIB_DoProtectDIBSection( X_PHYSBITMAP
*physBitmap
, DWORD new_prot
)
4115 VirtualProtect(physBitmap
->base
, physBitmap
->size
, new_prot
, &old_prot
);
4116 TRACE("Changed protection from %ld to %ld\n", old_prot
, new_prot
);
4119 /***********************************************************************
4120 * X11DRV_DIB_DoCopyDIBSection
4122 static void X11DRV_DIB_DoCopyDIBSection(X_PHYSBITMAP
*physBitmap
, BOOL toDIB
,
4123 void *colorMap
, int nColorMap
,
4125 DWORD xSrc
, DWORD ySrc
,
4126 DWORD xDest
, DWORD yDest
,
4127 DWORD width
, DWORD height
)
4129 DIBSECTION dibSection
;
4130 X11DRV_DIB_IMAGEBITS_DESCR descr
;
4131 int identity
[2] = {0,1};
4133 if (!GetObjectW( physBitmap
->hbitmap
, sizeof(dibSection
), &dibSection
)) return;
4135 descr
.physDev
= NULL
;
4136 descr
.palentry
= NULL
;
4137 descr
.infoWidth
= dibSection
.dsBmih
.biWidth
;
4138 descr
.infoBpp
= dibSection
.dsBmih
.biBitCount
;
4139 descr
.lines
= dibSection
.dsBmih
.biHeight
;
4140 descr
.image
= physBitmap
->image
;
4141 descr
.colorMap
= colorMap
;
4142 descr
.nColorMap
= nColorMap
;
4143 descr
.bits
= dibSection
.dsBm
.bmBits
;
4144 descr
.depth
= physBitmap
->pixmap_depth
;
4145 descr
.compression
= dibSection
.dsBmih
.biCompression
;
4147 if(descr
.infoBpp
== 1)
4148 descr
.colorMap
= (void*)identity
;
4150 switch (descr
.infoBpp
)
4155 descr
.rMask
= descr
.gMask
= descr
.bMask
= 0;
4159 descr
.rMask
= (descr
.compression
== BI_BITFIELDS
) ? dibSection
.dsBitfields
[0] : 0x7c00;
4160 descr
.gMask
= (descr
.compression
== BI_BITFIELDS
) ? dibSection
.dsBitfields
[1] : 0x03e0;
4161 descr
.bMask
= (descr
.compression
== BI_BITFIELDS
) ? dibSection
.dsBitfields
[2] : 0x001f;
4166 descr
.rMask
= (descr
.compression
== BI_BITFIELDS
) ? dibSection
.dsBitfields
[0] : 0xff0000;
4167 descr
.gMask
= (descr
.compression
== BI_BITFIELDS
) ? dibSection
.dsBitfields
[1] : 0x00ff00;
4168 descr
.bMask
= (descr
.compression
== BI_BITFIELDS
) ? dibSection
.dsBitfields
[2] : 0x0000ff;
4173 descr
.drawable
= dest
;
4174 descr
.gc
= BITMAP_GC(physBitmap
);
4177 descr
.xDest
= xDest
;
4178 descr
.yDest
= yDest
;
4179 descr
.width
= width
;
4180 descr
.height
= height
;
4181 descr
.sizeImage
= 0;
4183 #ifdef HAVE_LIBXXSHM
4184 descr
.useShm
= (physBitmap
->shminfo
.shmid
!= -1);
4186 descr
.useShm
= FALSE
;
4188 descr
.dibpitch
= dibSection
.dsBm
.bmWidthBytes
;
4192 TRACE("Copying from Pixmap to DIB bits\n");
4193 X11DRV_DIB_GetImageBits( &descr
);
4197 TRACE("Copying from DIB bits to Pixmap\n");
4198 X11DRV_DIB_SetImageBits( &descr
);
4202 /***********************************************************************
4203 * X11DRV_DIB_CopyDIBSection
4205 void X11DRV_DIB_CopyDIBSection(X11DRV_PDEVICE
*physDevSrc
, X11DRV_PDEVICE
*physDevDst
,
4206 DWORD xSrc
, DWORD ySrc
, DWORD xDest
, DWORD yDest
,
4207 DWORD width
, DWORD height
)
4210 X_PHYSBITMAP
*physBitmap
;
4211 int nColorMap
= 0, *colorMap
= NULL
, aColorMap
= FALSE
;
4213 TRACE("(%p,%p,%ld,%ld,%ld,%ld,%ld,%ld)\n", physDevSrc
->hdc
, physDevDst
->hdc
,
4214 xSrc
, ySrc
, xDest
, yDest
, width
, height
);
4215 /* this function is meant as an optimization for BitBlt,
4216 * not to be called otherwise */
4217 physBitmap
= physDevSrc
->bitmap
;
4218 if (!physBitmap
|| GetObjectW( physBitmap
->hbitmap
, sizeof(dib
), &dib
) != sizeof(dib
))
4220 ERR("called for non-DIBSection!?\n");
4223 /* while BitBlt should already have made sure we only get
4224 * positive values, we should check for oversize values */
4225 if ((xSrc
< dib
.dsBm
.bmWidth
) &&
4226 (ySrc
< dib
.dsBm
.bmHeight
)) {
4227 if (xSrc
+ width
> dib
.dsBm
.bmWidth
)
4228 width
= dib
.dsBm
.bmWidth
- xSrc
;
4229 if (ySrc
+ height
> dib
.dsBm
.bmHeight
)
4230 height
= dib
.dsBm
.bmHeight
- ySrc
;
4231 /* if the source bitmap is 8bpp or less, we're supposed to use the
4232 * DC's palette for color conversion (not the DIB color table) */
4233 if (dib
.dsBm
.bmBitsPixel
<= 8) {
4234 HPALETTE hPalette
= GetCurrentObject( physDevSrc
->hdc
, OBJ_PAL
);
4235 if (!hPalette
|| (hPalette
== GetStockObject(DEFAULT_PALETTE
))) {
4236 /* HACK: no palette has been set in the source DC,
4237 * use the DIB colormap instead - this is necessary in some
4238 * cases since we need to do depth conversion in some places
4239 * where real Windows can just copy data straight over */
4240 colorMap
= physBitmap
->colorMap
;
4241 nColorMap
= physBitmap
->nColorMap
;
4243 colorMap
= X11DRV_DIB_BuildColorMap( physDevSrc
, (WORD
)-1,
4244 dib
.dsBm
.bmBitsPixel
,
4245 (BITMAPINFO
*)&dib
.dsBmih
,
4247 if (colorMap
) aColorMap
= TRUE
;
4250 /* perform the copy */
4251 X11DRV_DIB_DoCopyDIBSection(physBitmap
, FALSE
, colorMap
, nColorMap
,
4252 physDevDst
->drawable
, xSrc
, ySrc
,
4253 physDevDst
->org
.x
+ xDest
, physDevDst
->org
.y
+ yDest
,
4255 /* free color mapping */
4257 HeapFree(GetProcessHeap(), 0, colorMap
);
4261 /***********************************************************************
4262 * X11DRV_DIB_DoUpdateDIBSection
4264 static void X11DRV_DIB_DoUpdateDIBSection(X_PHYSBITMAP
*physBitmap
, BOOL toDIB
)
4268 GetObjectW( physBitmap
->hbitmap
, sizeof(bitmap
), &bitmap
);
4269 X11DRV_DIB_DoCopyDIBSection(physBitmap
, toDIB
,
4270 physBitmap
->colorMap
, physBitmap
->nColorMap
,
4271 physBitmap
->pixmap
, 0, 0, 0, 0,
4272 bitmap
.bmWidth
, bitmap
.bmHeight
);
4275 /***********************************************************************
4276 * X11DRV_DIB_FaultHandler
4278 static LONG CALLBACK
X11DRV_DIB_FaultHandler( PEXCEPTION_POINTERS ep
)
4280 X_PHYSBITMAP
*physBitmap
= NULL
;
4285 if (ep
->ExceptionRecord
->ExceptionCode
!= EXCEPTION_ACCESS_VIOLATION
)
4286 return EXCEPTION_CONTINUE_SEARCH
;
4288 addr
= (BYTE
*)ep
->ExceptionRecord
->ExceptionInformation
[1];
4290 EnterCriticalSection(&dibs_cs
);
4291 LIST_FOR_EACH( ptr
, &dibs_list
)
4293 physBitmap
= LIST_ENTRY( ptr
, X_PHYSBITMAP
, entry
);
4294 if ((physBitmap
->base
<= addr
) && (addr
< physBitmap
->base
+ physBitmap
->size
))
4300 LeaveCriticalSection(&dibs_cs
);
4302 if (!found
) return EXCEPTION_CONTINUE_SEARCH
;
4304 X11DRV_DIB_Lock( physBitmap
, DIB_Status_None
, FALSE
);
4305 if (ep
->ExceptionRecord
->ExceptionInformation
[0]) {
4306 /* the app tried to write the DIB bits */
4307 X11DRV_DIB_Coerce( physBitmap
, DIB_Status_AppMod
, FALSE
);
4309 /* the app tried to read the DIB bits */
4310 X11DRV_DIB_Coerce( physBitmap
, DIB_Status_InSync
, FALSE
);
4312 X11DRV_DIB_Unlock( physBitmap
, TRUE
);
4314 return EXCEPTION_CONTINUE_EXECUTION
;
4317 /***********************************************************************
4320 static INT
X11DRV_DIB_Coerce(X_PHYSBITMAP
*physBitmap
, INT req
, BOOL lossy
)
4322 INT ret
= DIB_Status_None
;
4324 if (!physBitmap
->image
) return ret
; /* not a DIB section */
4325 EnterCriticalSection(&physBitmap
->lock
);
4326 ret
= physBitmap
->status
;
4328 case DIB_Status_GdiMod
:
4329 /* GDI access - request to draw on pixmap */
4330 switch (physBitmap
->status
)
4333 case DIB_Status_None
:
4334 physBitmap
->p_status
= DIB_Status_GdiMod
;
4335 X11DRV_DIB_DoUpdateDIBSection( physBitmap
, FALSE
);
4338 case DIB_Status_GdiMod
:
4339 TRACE("GdiMod requested in status GdiMod\n" );
4340 physBitmap
->p_status
= DIB_Status_GdiMod
;
4343 case DIB_Status_InSync
:
4344 TRACE("GdiMod requested in status InSync\n" );
4345 X11DRV_DIB_DoProtectDIBSection( physBitmap
, PAGE_NOACCESS
);
4346 physBitmap
->status
= DIB_Status_GdiMod
;
4347 physBitmap
->p_status
= DIB_Status_InSync
;
4350 case DIB_Status_AppMod
:
4351 TRACE("GdiMod requested in status AppMod\n" );
4353 /* make it readonly to avoid app changing data while we copy */
4354 X11DRV_DIB_DoProtectDIBSection( physBitmap
, PAGE_READONLY
);
4355 X11DRV_DIB_DoUpdateDIBSection( physBitmap
, FALSE
);
4357 X11DRV_DIB_DoProtectDIBSection( physBitmap
, PAGE_NOACCESS
);
4358 physBitmap
->p_status
= DIB_Status_AppMod
;
4359 physBitmap
->status
= DIB_Status_GdiMod
;
4364 case DIB_Status_InSync
:
4365 /* App access - request access to read DIB surface */
4366 /* (typically called from signal handler) */
4367 switch (physBitmap
->status
)
4370 case DIB_Status_None
:
4371 /* shouldn't happen from signal handler */
4374 case DIB_Status_GdiMod
:
4375 TRACE("InSync requested in status GdiMod\n" );
4377 X11DRV_DIB_DoProtectDIBSection( physBitmap
, PAGE_READWRITE
);
4378 X11DRV_DIB_DoUpdateDIBSection( physBitmap
, TRUE
);
4380 X11DRV_DIB_DoProtectDIBSection( physBitmap
, PAGE_READONLY
);
4381 physBitmap
->status
= DIB_Status_InSync
;
4384 case DIB_Status_InSync
:
4385 TRACE("InSync requested in status InSync\n" );
4386 /* shouldn't happen from signal handler */
4389 case DIB_Status_AppMod
:
4390 TRACE("InSync requested in status AppMod\n" );
4391 /* no reason to do anything here, and this
4392 * shouldn't happen from signal handler */
4397 case DIB_Status_AppMod
:
4398 /* App access - request access to write DIB surface */
4399 /* (typically called from signal handler) */
4400 switch (physBitmap
->status
)
4403 case DIB_Status_None
:
4404 /* shouldn't happen from signal handler */
4407 case DIB_Status_GdiMod
:
4408 TRACE("AppMod requested in status GdiMod\n" );
4409 X11DRV_DIB_DoProtectDIBSection( physBitmap
, PAGE_READWRITE
);
4410 if (!lossy
) X11DRV_DIB_DoUpdateDIBSection( physBitmap
, TRUE
);
4411 physBitmap
->status
= DIB_Status_AppMod
;
4414 case DIB_Status_InSync
:
4415 TRACE("AppMod requested in status InSync\n" );
4416 X11DRV_DIB_DoProtectDIBSection( physBitmap
, PAGE_READWRITE
);
4417 physBitmap
->status
= DIB_Status_AppMod
;
4420 case DIB_Status_AppMod
:
4421 TRACE("AppMod requested in status AppMod\n" );
4422 /* shouldn't happen from signal handler */
4427 /* it is up to the caller to do the copy/conversion, probably
4428 * using the return value to decide where to copy from */
4430 LeaveCriticalSection(&physBitmap
->lock
);
4434 /***********************************************************************
4437 static INT
X11DRV_DIB_Lock(X_PHYSBITMAP
*physBitmap
, INT req
, BOOL lossy
)
4439 INT ret
= DIB_Status_None
;
4441 if (!physBitmap
->image
) return ret
; /* not a DIB section */
4442 TRACE("Locking %p from thread %04lx\n", physBitmap
->hbitmap
, GetCurrentThreadId());
4443 EnterCriticalSection(&physBitmap
->lock
);
4444 ret
= physBitmap
->status
;
4445 if (req
!= DIB_Status_None
)
4446 X11DRV_DIB_Coerce(physBitmap
, req
, lossy
);
4450 /***********************************************************************
4453 static void X11DRV_DIB_Unlock(X_PHYSBITMAP
*physBitmap
, BOOL commit
)
4455 if (!physBitmap
->image
) return; /* not a DIB section */
4456 switch (physBitmap
->status
)
4459 case DIB_Status_None
:
4460 /* in case anyone is wondering, this is the "signal handler doesn't
4461 * work" case, where we always have to be ready for app access */
4463 switch (physBitmap
->p_status
)
4465 case DIB_Status_GdiMod
:
4466 TRACE("Unlocking and syncing from GdiMod\n" );
4467 X11DRV_DIB_DoUpdateDIBSection( physBitmap
, TRUE
);
4471 TRACE("Unlocking without needing to sync\n" );
4475 else TRACE("Unlocking with no changes\n");
4476 physBitmap
->p_status
= DIB_Status_None
;
4479 case DIB_Status_GdiMod
:
4480 TRACE("Unlocking in status GdiMod\n" );
4481 /* DIB was protected in Coerce */
4483 /* no commit, revert to InSync if applicable */
4484 if ((physBitmap
->p_status
== DIB_Status_InSync
) ||
4485 (physBitmap
->p_status
== DIB_Status_AppMod
)) {
4486 X11DRV_DIB_DoProtectDIBSection( physBitmap
, PAGE_READONLY
);
4487 physBitmap
->status
= DIB_Status_InSync
;
4492 case DIB_Status_InSync
:
4493 TRACE("Unlocking in status InSync\n" );
4494 /* DIB was already protected in Coerce */
4497 case DIB_Status_AppMod
:
4498 TRACE("Unlocking in status AppMod\n" );
4499 /* DIB was already protected in Coerce */
4500 /* this case is ordinary only called from the signal handler,
4501 * so we don't bother to check for !commit */
4504 LeaveCriticalSection(&physBitmap
->lock
);
4505 TRACE("Unlocked %p\n", physBitmap
->hbitmap
);
4508 /***********************************************************************
4509 * X11DRV_CoerceDIBSection
4511 INT
X11DRV_CoerceDIBSection(X11DRV_PDEVICE
*physDev
, INT req
, BOOL lossy
)
4513 if (!physDev
|| !physDev
->bitmap
) return DIB_Status_None
;
4514 return X11DRV_DIB_Coerce(physDev
->bitmap
, req
, lossy
);
4517 /***********************************************************************
4518 * X11DRV_LockDIBSection
4520 INT
X11DRV_LockDIBSection(X11DRV_PDEVICE
*physDev
, INT req
, BOOL lossy
)
4522 if (!physDev
|| !physDev
->bitmap
) return DIB_Status_None
;
4523 return X11DRV_DIB_Lock(physDev
->bitmap
, req
, lossy
);
4526 /***********************************************************************
4527 * X11DRV_UnlockDIBSection
4529 void X11DRV_UnlockDIBSection(X11DRV_PDEVICE
*physDev
, BOOL commit
)
4531 if (!physDev
|| !physDev
->bitmap
) return;
4532 X11DRV_DIB_Unlock(physDev
->bitmap
, commit
);
4536 #ifdef HAVE_LIBXXSHM
4537 /***********************************************************************
4538 * X11DRV_XShmErrorHandler
4541 static int XShmErrorHandler( Display
*dpy
, XErrorEvent
*event
, void *arg
)
4543 return 1; /* FIXME: should check event contents */
4546 /***********************************************************************
4547 * X11DRV_XShmCreateImage
4550 static XImage
*X11DRV_XShmCreateImage( int width
, int height
, int bpp
,
4551 XShmSegmentInfo
* shminfo
)
4555 image
= XShmCreateImage(gdi_display
, visual
, bpp
, ZPixmap
, NULL
, shminfo
, width
, height
);
4558 shminfo
->shmid
= shmget(IPC_PRIVATE
, image
->bytes_per_line
* height
,
4560 if( shminfo
->shmid
!= -1 )
4562 shminfo
->shmaddr
= image
->data
= shmat(shminfo
->shmid
, 0, 0);
4563 if( shminfo
->shmaddr
!= (char*)-1 )
4567 shminfo
->readOnly
= FALSE
;
4568 X11DRV_expect_error( gdi_display
, XShmErrorHandler
, NULL
);
4569 ok
= (XShmAttach( gdi_display
, shminfo
) != 0);
4570 XSync( gdi_display
, False
);
4571 if (X11DRV_check_error()) ok
= FALSE
;
4574 shmctl(shminfo
->shmid
, IPC_RMID
, 0);
4575 return image
; /* Success! */
4577 /* An error occurred */
4578 shmdt(shminfo
->shmaddr
);
4580 shmctl(shminfo
->shmid
, IPC_RMID
, 0);
4581 shminfo
->shmid
= -1;
4583 XFlush(gdi_display
);
4584 XDestroyImage(image
);
4589 #endif /* HAVE_LIBXXSHM */
4592 /***********************************************************************
4593 * X11DRV_CreateDIBSection (X11DRV.@)
4595 HBITMAP
X11DRV_CreateDIBSection( X11DRV_PDEVICE
*physDev
, HBITMAP hbitmap
,
4596 const BITMAPINFO
*bmi
, UINT usage
)
4598 X_PHYSBITMAP
*physBitmap
;
4601 if (!(physBitmap
= X11DRV_init_phys_bitmap( hbitmap
))) return 0;
4602 physBitmap
->status
= DIB_Status_None
;
4604 GetObjectW( hbitmap
, sizeof(dib
), &dib
);
4606 /* create color map */
4607 if (dib
.dsBm
.bmBitsPixel
<= 8)
4609 physBitmap
->colorMap
= X11DRV_DIB_BuildColorMap( usage
== DIB_PAL_COLORS
? physDev
: NULL
,
4610 usage
, dib
.dsBm
.bmBitsPixel
, bmi
,
4611 &physBitmap
->nColorMap
);
4612 physBitmap
->colorTable
= X11DRV_DIB_BuildColorTable( physDev
, usage
, dib
.dsBm
.bmBitsPixel
, bmi
);
4615 /* create pixmap and X image */
4617 physBitmap
->pixmap_depth
= (dib
.dsBm
.bmBitsPixel
== 1) ? 1 : screen_depth
;
4618 physBitmap
->pixmap
= XCreatePixmap( gdi_display
, root_window
, dib
.dsBm
.bmWidth
,
4619 dib
.dsBm
.bmHeight
, physBitmap
->pixmap_depth
);
4620 #ifdef HAVE_LIBXXSHM
4621 physBitmap
->shminfo
.shmid
= -1;
4622 if (!XShmQueryExtension(gdi_display
) ||
4623 !(physBitmap
->image
= X11DRV_XShmCreateImage( dib
.dsBm
.bmWidth
, dib
.dsBm
.bmHeight
,
4624 physBitmap
->pixmap_depth
, &physBitmap
->shminfo
)) )
4626 physBitmap
->image
= X11DRV_DIB_CreateXImage( dib
.dsBm
.bmWidth
, dib
.dsBm
.bmHeight
,
4627 physBitmap
->pixmap_depth
);
4628 wine_tsx11_unlock();
4629 if (!physBitmap
->pixmap
|| !physBitmap
->image
) return 0;
4631 /* install fault handler */
4632 InitializeCriticalSection( &physBitmap
->lock
);
4634 physBitmap
->base
= dib
.dsBm
.bmBits
;
4635 physBitmap
->size
= dib
.dsBmih
.biSizeImage
;
4636 physBitmap
->status
= DIB_Status_AppMod
;
4639 dibs_handler
= AddVectoredExceptionHandler( TRUE
, X11DRV_DIB_FaultHandler
);
4640 EnterCriticalSection( &dibs_cs
);
4641 list_add_head( &dibs_list
, &physBitmap
->entry
);
4642 LeaveCriticalSection( &dibs_cs
);
4644 X11DRV_DIB_DoProtectDIBSection( physBitmap
, PAGE_READWRITE
);
4649 /***********************************************************************
4650 * X11DRV_DIB_DeleteDIBSection
4652 void X11DRV_DIB_DeleteDIBSection(X_PHYSBITMAP
*physBitmap
, DIBSECTION
*dib
)
4656 EnterCriticalSection( &dibs_cs
);
4657 list_remove( &physBitmap
->entry
);
4658 last
= list_empty( &dibs_list
);
4659 LeaveCriticalSection( &dibs_cs
);
4663 RemoveVectoredExceptionHandler( dibs_handler
);
4664 dibs_handler
= NULL
;
4667 if (dib
->dshSection
)
4668 X11DRV_DIB_Coerce(physBitmap
, DIB_Status_InSync
, FALSE
);
4670 if (physBitmap
->image
)
4673 #ifdef HAVE_LIBXXSHM
4674 if (physBitmap
->shminfo
.shmid
!= -1)
4676 XShmDetach( gdi_display
, &(physBitmap
->shminfo
) );
4677 XDestroyImage( physBitmap
->image
);
4678 shmdt( physBitmap
->shminfo
.shmaddr
);
4679 physBitmap
->shminfo
.shmid
= -1;
4683 XDestroyImage( physBitmap
->image
);
4684 wine_tsx11_unlock();
4687 HeapFree(GetProcessHeap(), 0, physBitmap
->colorMap
);
4688 HeapFree(GetProcessHeap(), 0, physBitmap
->colorTable
);
4689 DeleteCriticalSection(&physBitmap
->lock
);
4692 /***********************************************************************
4693 * SetDIBColorTable (X11DRV.@)
4695 UINT
X11DRV_SetDIBColorTable( X11DRV_PDEVICE
*physDev
, UINT start
, UINT count
, const RGBQUAD
*colors
)
4699 X_PHYSBITMAP
*physBitmap
= physDev
->bitmap
;
4701 if (!physBitmap
) return 0;
4702 GetObjectW( physBitmap
->hbitmap
, sizeof(dib
), &dib
);
4704 if (physBitmap
->colorMap
&& start
< physBitmap
->nColorMap
) {
4705 UINT end
= count
+ start
;
4706 if (end
> physBitmap
->nColorMap
) end
= physBitmap
->nColorMap
;
4708 * Changing color table might change the mapping between
4709 * DIB colors and X11 colors and thus alter the visible state
4710 * of the bitmap object.
4712 X11DRV_DIB_Lock( physBitmap
, DIB_Status_AppMod
, FALSE
);
4713 memcpy(physBitmap
->colorTable
+ start
, colors
, (end
- start
) * sizeof(RGBQUAD
));
4714 X11DRV_DIB_GenColorMap( physDev
, physBitmap
->colorMap
, DIB_RGB_COLORS
,
4715 dib
.dsBm
.bmBitsPixel
,
4716 TRUE
, colors
, start
, end
);
4717 X11DRV_DIB_Unlock( physBitmap
, TRUE
);
4723 /***********************************************************************
4724 * GetDIBColorTable (X11DRV.@)
4726 UINT
X11DRV_GetDIBColorTable( X11DRV_PDEVICE
*physDev
, UINT start
, UINT count
, RGBQUAD
*colors
)
4729 X_PHYSBITMAP
*physBitmap
= physDev
->bitmap
;
4731 if (physBitmap
&& physBitmap
->colorTable
&& start
< physBitmap
->nColorMap
) {
4732 if (start
+ count
> physBitmap
->nColorMap
) count
= physBitmap
->nColorMap
- start
;
4733 memcpy(colors
, physBitmap
->colorTable
+ start
, count
* sizeof(RGBQUAD
));
4741 /***********************************************************************
4742 * X11DRV_DIB_CreateDIBFromBitmap
4744 * Allocates a packed DIB and copies the bitmap data into it.
4746 HGLOBAL
X11DRV_DIB_CreateDIBFromBitmap(HDC hdc
, HBITMAP hBmp
)
4751 LPBITMAPINFOHEADER pbmiHeader
;
4752 unsigned int cDataSize
, cPackedSize
, OffsetBits
;
4755 if (!GetObjectW( hBmp
, sizeof(bmp
), &bmp
)) return 0;
4758 * A packed DIB contains a BITMAPINFO structure followed immediately by
4759 * an optional color palette and the pixel data.
4762 /* Calculate the size of the packed DIB */
4763 cDataSize
= X11DRV_DIB_GetDIBWidthBytes( bmp
.bmWidth
, bmp
.bmBitsPixel
) * abs( bmp
.bmHeight
);
4764 cPackedSize
= sizeof(BITMAPINFOHEADER
)
4765 + ( (bmp
.bmBitsPixel
<= 8) ? (sizeof(RGBQUAD
) * (1 << bmp
.bmBitsPixel
)) : 0 )
4767 /* Get the offset to the bits */
4768 OffsetBits
= cPackedSize
- cDataSize
;
4770 /* Allocate the packed DIB */
4771 TRACE("\tAllocating packed DIB of size %d\n", cPackedSize
);
4772 hPackedDIB
= GlobalAlloc(GMEM_MOVEABLE
| GMEM_DDESHARE
/*| GMEM_ZEROINIT*/,
4776 WARN("Could not allocate packed DIB!\n");
4780 /* A packed DIB starts with a BITMAPINFOHEADER */
4781 pPackedDIB
= GlobalLock(hPackedDIB
);
4782 pbmiHeader
= (LPBITMAPINFOHEADER
)pPackedDIB
;
4784 /* Init the BITMAPINFOHEADER */
4785 pbmiHeader
->biSize
= sizeof(BITMAPINFOHEADER
);
4786 pbmiHeader
->biWidth
= bmp
.bmWidth
;
4787 pbmiHeader
->biHeight
= bmp
.bmHeight
;
4788 pbmiHeader
->biPlanes
= 1;
4789 pbmiHeader
->biBitCount
= bmp
.bmBitsPixel
;
4790 pbmiHeader
->biCompression
= BI_RGB
;
4791 pbmiHeader
->biSizeImage
= 0;
4792 pbmiHeader
->biXPelsPerMeter
= pbmiHeader
->biYPelsPerMeter
= 0;
4793 pbmiHeader
->biClrUsed
= 0;
4794 pbmiHeader
->biClrImportant
= 0;
4796 /* Retrieve the DIB bits from the bitmap and fill in the
4797 * DIB color table if present */
4799 nLinesCopied
= GetDIBits(hdc
, /* Handle to device context */
4800 hBmp
, /* Handle to bitmap */
4801 0, /* First scan line to set in dest bitmap */
4802 bmp
.bmHeight
, /* Number of scan lines to copy */
4803 pPackedDIB
+ OffsetBits
, /* [out] Address of array for bitmap bits */
4804 (LPBITMAPINFO
) pbmiHeader
, /* [out] Address of BITMAPINFO structure */
4805 0); /* RGB or palette index */
4806 GlobalUnlock(hPackedDIB
);
4808 /* Cleanup if GetDIBits failed */
4809 if (nLinesCopied
!= bmp
.bmHeight
)
4811 TRACE("\tGetDIBits returned %d. Actual lines=%d\n", nLinesCopied
, bmp
.bmHeight
);
4812 GlobalFree(hPackedDIB
);
4819 /**************************************************************************
4820 * X11DRV_DIB_CreateDIBFromPixmap
4822 * Allocates a packed DIB and copies the Pixmap data into it.
4823 * The Pixmap passed in is deleted after the conversion.
4825 HGLOBAL
X11DRV_DIB_CreateDIBFromPixmap(Pixmap pixmap
, HDC hdc
)
4828 X_PHYSBITMAP
*physBitmap
;
4829 HBITMAP hBmp
= 0, old
;
4830 HGLOBAL hPackedDIB
= 0;
4832 int x
,y
; /* Unused */
4833 unsigned border_width
; /* Unused */
4834 unsigned int depth
, width
, height
;
4836 /* Get the Pixmap dimensions and bit depth */
4838 if (!XGetGeometry(gdi_display
, pixmap
, &root
, &x
, &y
, &width
, &height
,
4839 &border_width
, &depth
)) depth
= 0;
4840 wine_tsx11_unlock();
4841 if (!depth
) return 0;
4843 TRACE("\tPixmap properties: width=%d, height=%d, depth=%d\n",
4844 width
, height
, depth
);
4847 * Create an HBITMAP with the same dimensions and BPP as the pixmap,
4848 * and make it a container for the pixmap passed.
4850 hBmp
= CreateBitmap( width
, height
, 1, depth
, NULL
);
4852 /* force bitmap to be owned by a screen DC */
4853 hdcMem
= CreateCompatibleDC( hdc
);
4854 old
= SelectObject( hdcMem
, hBmp
);
4856 physBitmap
= X11DRV_get_phys_bitmap( hBmp
);
4859 if (physBitmap
->pixmap
) XFreePixmap( gdi_display
, physBitmap
->pixmap
);
4860 physBitmap
->pixmap
= pixmap
;
4861 wine_tsx11_unlock();
4863 SelectObject( hdcMem
, old
);
4867 * Create a packed DIB from the Pixmap wrapper bitmap created above.
4868 * A packed DIB contains a BITMAPINFO structure followed immediately by
4869 * an optional color palette and the pixel data.
4871 hPackedDIB
= X11DRV_DIB_CreateDIBFromBitmap(hdc
, hBmp
);
4873 /* We can now get rid of the HBITMAP wrapper we created earlier.
4874 * Note: Simply calling DeleteObject will free the embedded Pixmap as well.
4878 TRACE("\tReturning packed DIB %p\n", hPackedDIB
);
4883 /**************************************************************************
4884 * X11DRV_DIB_CreatePixmapFromDIB
4886 * Creates a Pixmap from a packed DIB
4888 Pixmap
X11DRV_DIB_CreatePixmapFromDIB( HGLOBAL hPackedDIB
, HDC hdc
)
4891 X_PHYSBITMAP
*physBitmap
;
4895 /* Create a DDB from the DIB */
4897 pbmi
= GlobalLock(hPackedDIB
);
4898 hBmp
= CreateDIBitmap(hdc
, &pbmi
->bmiHeader
, CBM_INIT
,
4899 (LPBYTE
)pbmi
+ X11DRV_DIB_BitmapInfoSize( pbmi
, DIB_RGB_COLORS
),
4900 pbmi
, DIB_RGB_COLORS
);
4901 GlobalUnlock(hPackedDIB
);
4903 /* clear the physBitmap so that we can steal its pixmap */
4904 physBitmap
= X11DRV_get_phys_bitmap( hBmp
);
4905 pixmap
= physBitmap
->pixmap
;
4906 physBitmap
->pixmap
= 0;
4908 /* Delete the DDB we created earlier now that we have stolen its pixmap */
4911 TRACE("Returning Pixmap %ld\n", pixmap
);