405 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C
		
	
	
	
			
		
		
	
	
			405 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C
		
	
	
	
/***********************************************************
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Copyright 1987, 1998  The Open Group
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Permission to use, copy, modify, distribute, and sell this software and its
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documentation for any purpose is hereby granted without fee, provided that
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the above copyright notice appear in all copies and that both that
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copyright notice and this permission notice appear in supporting
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documentation.
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL THE
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OPEN GROUP BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
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AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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Except as contained in this notice, the name of The Open Group shall not be
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used in advertising or otherwise to promote the sale, use or other dealings
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in this Software without prior written authorization from The Open Group.
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Copyright 1987 by Digital Equipment Corporation, Maynard, Massachusetts.
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                        All Rights Reserved
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Permission to use, copy, modify, and distribute this software and its 
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documentation for any purpose and without fee is hereby granted, 
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provided that the above copyright notice appear in all copies and that
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both that copyright notice and this permission notice appear in 
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supporting documentation, and that the name of Digital not be
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used in advertising or publicity pertaining to distribution of the
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software without specific, written prior permission.  
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DIGITAL DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE, INCLUDING
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ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO EVENT SHALL
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DIGITAL BE LIABLE FOR ANY SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR
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ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS,
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WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION,
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ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS
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SOFTWARE.
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******************************************************************/
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#ifdef HAVE_DIX_CONFIG_H
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#include <dix-config.h>
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#endif
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#include <X11/X.h>
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#include "misc.h"
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#include "cfb.h"
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#include "cfbmskbits.h"
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#include "miline.h"
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/* Dashed bresenham line */
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void
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cfbBresD(rrops,
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	 pdashIndex, pDash, numInDashList, pdashOffset, isDoubleDash,
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	 addrl, nlwidth,
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	 signdx, signdy, axis, x1, y1, e, e1, e2, len)
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    cfbRRopPtr	    rrops;
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    int		    *pdashIndex;	/* current dash */
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    unsigned char   *pDash;		/* dash list */
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    int		    numInDashList;	/* total length of dash list */
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    int		    *pdashOffset;	/* offset into current dash */
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    int		    isDoubleDash;
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    CfbBits   *addrl;		/* pointer to base of bitmap */
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    int		    nlwidth;		/* width in longwords of bitmap */
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    int		    signdx, signdy;	/* signs of directions */
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    int		    axis;		/* major axis (Y_AXIS or X_AXIS) */
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    int		    x1, y1;		/* initial point */
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    register int    e;			/* error accumulator */
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    register int    e1;			/* bresenham increments */
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    int		    e2;
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    int		    len;		/* length of line */
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{
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#ifdef PIXEL_ADDR
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    register PixelType	*addrp;
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#endif
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    register		int e3 = e2-e1;
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    int			dashIndex;
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    int			dashOffset;
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    int			dashRemaining;
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    CfbBits	xorFg, andFg, xorBg, andBg;
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    Bool		isCopy;
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    int			thisDash;
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#if PSZ == 24
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    CfbBits xorPiQxlFg[3], andPiQxlFg[3], xorPiQxlBg[3], andPiQxlBg[3]; 
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    char *addrb;
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    int signdx3, signdy3;
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#endif
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    dashOffset = *pdashOffset;
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    dashIndex = *pdashIndex;
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    isCopy = (rrops[0].rop == GXcopy && rrops[1].rop == GXcopy);
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#if PSZ == 24
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    xorFg = rrops[0].xor & 0xffffff;
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    andFg = rrops[0].and & 0xffffff;
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    xorBg = rrops[1].xor & 0xffffff;
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    andBg = rrops[1].and & 0xffffff;
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    xorPiQxlFg[0] = xorFg | (xorFg << 24);
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    xorPiQxlFg[1] = (xorFg >> 8) | (xorFg << 16);
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    xorPiQxlFg[2] = (xorFg >> 16) | (xorFg << 8);
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    andPiQxlFg[0] = andFg | (andFg << 24);
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    andPiQxlFg[1] = (andFg >> 8) | (andFg << 16);
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    andPiQxlFg[2] = (andFg >> 16) | (andFg << 8);
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    xorPiQxlBg[0] = xorBg | (xorBg << 24);
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    xorPiQxlBg[1] = (xorBg >> 8) | (xorBg << 16);
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    xorPiQxlBg[2] = (xorBg >> 16) | (xorBg << 8);
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    andPiQxlBg[0] = andBg | (andBg << 24);
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    andPiQxlBg[1] = (andBg >> 8) | (andBg << 16);
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    andPiQxlBg[2] = (andFg >> 16) | (andBg << 8);
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#else
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    xorFg = rrops[0].xor;
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    andFg = rrops[0].and;
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    xorBg = rrops[1].xor;
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    andBg = rrops[1].and;
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#endif
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    dashRemaining = pDash[dashIndex] - dashOffset;
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    if ((thisDash = dashRemaining) >= len)
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    {
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	thisDash = len;
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	dashRemaining -= len;
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    }
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    e = e-e1;			/* to make looping easier */
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#define BresStep(minor,major) {if ((e += e1) >= 0) { e += e3; minor; } major;}
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#define NextDash {\
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    dashIndex++; \
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    if (dashIndex == numInDashList) \
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	dashIndex = 0; \
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    dashRemaining = pDash[dashIndex]; \
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    if ((thisDash = dashRemaining) >= len) \
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    { \
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	dashRemaining -= len; \
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	thisDash = len; \
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    } \
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}
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#ifdef PIXEL_ADDR
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#if PSZ == 24
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#define Loop(store) while (thisDash--) {\
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			store; \
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 			BresStep(addrb+=signdy3,addrb+=signdx3) \
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		    }
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    /* point to first point */
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    nlwidth <<= PWSH;
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    addrp = (PixelType *)(addrl) + (y1 * nlwidth);
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    addrb = (char *)addrp + x1 * 3;
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#else
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#define Loop(store) while (thisDash--) {\
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			store; \
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 			BresStep(addrp+=signdy,addrp+=signdx) \
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		    }
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    /* point to first point */
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    nlwidth <<= PWSH;
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    addrp = (PixelType *)(addrl) + (y1 * nlwidth) + x1;
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#endif
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    signdy *= nlwidth;
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#if PSZ == 24
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    signdx3 = signdx * 3;
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    signdy3 = signdy * sizeof (CfbBits);
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#endif
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    if (axis == Y_AXIS)
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    {
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	int t;
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	t = signdx;
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	signdx = signdy;
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	signdy = t;
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#if PSZ == 24
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	t = signdx3;
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	signdx3 = signdy3;
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	signdy3 = t;
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#endif
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    }
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    if (isCopy)
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    {
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#if PSZ == 24
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#define body_copy(pix) { \
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	addrp = (PixelType *)((unsigned long)addrb & ~0x03); \
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	switch((unsigned long)addrb & 3){ \
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	case 0: \
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	  *addrp = (*addrp & 0xFF000000)|((pix)[0] & 0xFFFFFF); \
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	  break; \
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	case 1: \
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	  *addrp = (*addrp & 0xFF)|((pix)[2] & 0xFFFFFF00); \
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	  break; \
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	case 3: \
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	  *addrp = (*addrp & 0xFFFFFF)|((pix)[0] & 0xFF000000); \
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	  *(addrp+1) = (*(addrp+1) & 0xFFFF0000)|((pix)[1] & 0xFFFF); \
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	  break; \
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	case 2: \
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	  *addrp = (*addrp & 0xFFFF)|((pix)[1] & 0xFFFF0000); \
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	  *(addrp+1) = (*(addrp+1) & 0xFFFFFF00)|((pix)[2] & 0xFF); \
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	  break; \
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	} \
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}
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#endif /* PSZ == 24 */
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	for (;;)
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	{ 
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	    len -= thisDash;
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	    if (dashIndex & 1) {
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		if (isDoubleDash) {
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#if PSZ == 24
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		    Loop(body_copy(xorPiQxlBg))
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#else
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		    Loop(*addrp = xorBg)
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#endif
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		} else {
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		    Loop(;)
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		}
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	    } else {
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#if PSZ == 24
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		Loop(body_copy(xorPiQxlFg))
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#else
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		Loop(*addrp = xorFg)
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#endif
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	    }
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	    if (!len)
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		break;
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	    NextDash
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	}
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#undef body_copy
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    }
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    else
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    {
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#define body_set(and, xor) { \
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	addrp = (PixelType *)((unsigned long)addrb & ~0x03); \
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	switch((unsigned long)addrb & 3){ \
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	case 0: \
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	  *addrp = (*addrp & ((and)[0]|0xFF000000)) ^ ((xor)[0] & 0xFFFFFF); \
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	  break; \
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	case 1: \
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	  *addrp = (*addrp & ((and)[2]|0xFF)) ^ ((xor)[2] & 0xFFFFFF00); \
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	  break; \
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	case 3: \
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	  *addrp = (*addrp & ((and)[0]|0xFFFFFF)) ^ ((xor)[0] & 0xFF000000); \
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	  *(addrp+1)=(*(addrp+1)&((and)[1]|0xFFFF0000)) ^ ((xor)[1]&0xFFFF); \
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	  break; \
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	case 2: \
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	  *addrp = (*addrp & ((and)[1]|0xFFFF)) ^ ((xor)[1] & 0xFFFF0000); \
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	  *(addrp+1)=(*(addrp+1)&((and)[2]|0xFFFFFF00)) ^ ((xor)[2] & 0xFF); \
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	  break; \
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	} \
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}
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	for (;;)
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	{ 
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	    len -= thisDash;
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	    if (dashIndex & 1) {
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		if (isDoubleDash) {
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#if PSZ == 24
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		    Loop(body_set(andPiQxlBg, xorPiQxlBg))
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#else
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		    Loop(*addrp = DoRRop(*addrp,andBg, xorBg))
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#endif
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		} else {
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		    Loop(;)
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		}
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	    } else {
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#if PSZ == 24
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		Loop(body_set(andPiQxlFg, xorPiQxlFg))
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#else
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		Loop(*addrp = DoRRop(*addrp,andFg, xorFg))
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#endif
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	    }
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	    if (!len)
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		break;
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	    NextDash
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	}
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#undef body_set
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    }
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#else /* !PIXEL_ADDR */
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    {
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    	register CfbBits	tmp;
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	CfbBits		startbit, bit;
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    	/* point to longword containing first point */
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#if PSZ == 24
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    	addrl = (addrl + (y1 * nlwidth) + ((x1*3) >> 2);
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#else
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    	addrl = (addrl + (y1 * nlwidth) + (x1 >> PWSH));
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#endif
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    	signdy = signdy * nlwidth;
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	if (signdx > 0)
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	    startbit = cfbmask[0];
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	else
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#if PSZ == 24
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	    startbit = cfbmask[(PPW-1)<<1];
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    	bit = cfbmask[(x1 & 3)<<1];
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#else
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	    startbit = cfbmask[PPW-1];
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    	bit = cfbmask[x1 & PIM];
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#endif
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#if PSZ == 24
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#define X_Loop(store)	while(thisDash--) {\
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			    store; \
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		    	    BresStep(addrl += signdy, \
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		    	     	     if (signdx > 0) \
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		    	     	     	 bit = SCRRIGHT(bit,1); \
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		    	     	     else \
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		    	     	     	 bit = SCRLEFT(bit,1); \
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		    	     	     if (!bit) \
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		    	     	     { \
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		    	     	     	 bit = startbit; \
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		    	     	     	 addrl += signdx; \
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		    	     	     }) \
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			}
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#define Y_Loop(store)	while(thisDash--) {\
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			    store; \
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		    	    BresStep(if (signdx > 0) \
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		    	     	     	 bit = SCRRIGHT(bit,1); \
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		    	     	     else \
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		    	     	     	 bit = SCRLEFT(bit,1); \
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		    	     	     if (!bit) \
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		    	     	     { \
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		    	     	     	 bit = startbit; \
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		    	     	     	 addrl += signdx; \
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		    	     	     }, \
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				     addrl += signdy) \
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			}
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#else
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#define X_Loop(store)	while(thisDash--) {\
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			    store; \
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		    	    BresStep(addrl += signdy, \
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		    	     	     if (signdx > 0) \
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		    	     	     	 bit = SCRRIGHT(bit,1); \
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		    	     	     else \
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		    	     	     	 bit = SCRLEFT(bit,1); \
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		    	     	     if (!bit) \
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		    	     	     { \
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		    	     	     	 bit = startbit; \
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		    	     	     	 addrl += signdx; \
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		    	     	     }) \
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			}
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#define Y_Loop(store)	while(thisDash--) {\
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			    store; \
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		    	    BresStep(if (signdx > 0) \
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		    	     	     	 bit = SCRRIGHT(bit,1); \
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		    	     	     else \
 | 
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		    	     	     	 bit = SCRLEFT(bit,1); \
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		    	     	     if (!bit) \
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		    	     	     { \
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		    	     	     	 bit = startbit; \
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		    	     	     	 addrl += signdx; \
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		    	     	     }, \
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				     addrl += signdy) \
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			}
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#endif
 | 
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    	if (axis == X_AXIS)
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    	{
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	    for (;;)
 | 
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	    {
 | 
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	    	len -= thisDash;
 | 
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	    	if (dashIndex & 1) {
 | 
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		    if (isDoubleDash) {
 | 
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		    	X_Loop(*addrl = DoMaskRRop(*addrl, andBg, xorBg, bit));
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		    } else {
 | 
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		    	X_Loop(;)
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		    }
 | 
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	    	} else {
 | 
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		    X_Loop(*addrl = DoMaskRRop(*addrl, andFg, xorFg, bit));
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	    	}
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	    	if (!len)
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		    break;
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	    	NextDash
 | 
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	    }
 | 
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    	} /* if X_AXIS */
 | 
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    	else
 | 
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    	{
 | 
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	    for (;;)
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	    {
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	    	len -= thisDash;
 | 
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	    	if (dashIndex & 1) {
 | 
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		    if (isDoubleDash) {
 | 
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		    	Y_Loop(*addrl = DoMaskRRop(*addrl, andBg, xorBg, bit));
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		    } else {
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		    	Y_Loop(;)
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		    }
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	    	} else {
 | 
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		    Y_Loop(*addrl = DoMaskRRop(*addrl, andFg, xorFg, bit));
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	    	}
 | 
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	    	if (!len)
 | 
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		    break;
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	    	NextDash
 | 
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	    }
 | 
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    	} /* else Y_AXIS */
 | 
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    }
 | 
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#endif
 | 
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    *pdashIndex = dashIndex;
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    *pdashOffset = pDash[dashIndex] - dashRemaining;
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}
 |