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Remove 8bit mode
Obsolete and doesn't work * Remove gbPixelDepth * Remove 8-bit to 8-bit blitters * FileNameForBPP now only calls strcopy
This commit is contained in:
-260
@@ -30,11 +30,6 @@ void DrawHorizontalRun(UINT8 **ScreenPtr, int XAdvance, int RunLength,
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void DrawVerticalRun(UINT8 **ScreenPtr, int XAdvance, int RunLength,
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int Color, int ScreenWidth);
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void DrawHorizontalRun8(UINT8 **ScreenPtr, int XAdvance,
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int RunLength, int Color, int ScreenWidth);
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void DrawVerticalRun8(UINT8 **ScreenPtr, int XAdvance,
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int RunLength, int Color, int ScreenWidth);
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void SetClippingRegionAndImageWidth(
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int iImageWidth,
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@@ -426,258 +421,3 @@ void RectangleDraw( BOOL fClip, int XStart, int YStart, int XEnd, int YEnd, shor
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LineDraw( fClip, XStart, YStart, XStart, YEnd, Color, ScreenPtr);
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LineDraw( fClip, XEnd, YStart, XEnd, YEnd, Color, ScreenPtr);
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}
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/***********************************************************************************
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* 8-Bit Versions
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*
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*
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*
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* Added by Derek Beland
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***********************************************************************************/
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/* Draws a rectangle between the specified endpoints in color Color. */
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void RectangleDraw8( BOOL fClip, int XStart, int YStart, int XEnd, int YEnd, short Color, UINT8 *ScreenPtr)
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{
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LineDraw8( fClip, XStart, YStart, XEnd, YStart, Color, ScreenPtr);
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LineDraw8( fClip, XStart, YEnd, XEnd, YEnd, Color, ScreenPtr);
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LineDraw8( fClip, XStart, YStart, XStart, YEnd, Color, ScreenPtr);
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LineDraw8( fClip, XEnd, YStart, XEnd, YEnd, Color, ScreenPtr);
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}
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/* Draws a line between the specified endpoints in color Color. */
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void LineDraw8( BOOL fClip, int XStart, int YStart, int XEnd, int YEnd, short Color, UINT8 *ScreenPtr)
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{
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int Temp, AdjUp, AdjDown, ErrorTerm, XAdvance, XDelta, YDelta;
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int WholeStep, InitialPixelCount, FinalPixelCount, i, RunLength;
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int ScreenWidth = giImageWidth;
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UINT8 col1 = Color & 0x00FF;
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if ( fClip )
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{
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if ( !Clip2D( &XStart, &YStart, &XEnd, &YEnd ) )
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return;
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}
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/* We'll always draw top to bottom, to reduce the number of cases we have to
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handle, and to make lines between the same endpoints draw the same pixels */
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if (YStart > YEnd) {
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Temp = YStart;
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YStart = YEnd;
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YEnd = Temp;
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Temp = XStart;
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XStart = XEnd;
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XEnd = Temp;
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}
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// point to the bitmap address first pixel to draw
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ScreenPtr = ScreenPtr + YStart*giImageWidth + XStart;
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/* Figure out whether we're going left or right, and how far we're
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going horizontally */
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if ((XDelta = XEnd - XStart) < 0)
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{
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XAdvance = -1;
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XDelta = -XDelta;
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}
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else
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{
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XAdvance = 1;
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}
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/* Figure out how far we're going vertically */
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YDelta = YEnd - YStart;
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/* Special-case horizontal, vertical, and diagonal lines, for speed
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and to avoid nasty boundary conditions and division by 0 */
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if (XDelta == 0)
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{
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/* Vertical line */
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for (i=0; i<=YDelta; i++)
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{
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*ScreenPtr = col1;
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ScreenPtr += giImageWidth;
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}
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return;
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}
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if (YDelta == 0)
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{
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/* Horizontal line */
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for (i=0; i<=XDelta; i++)
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{
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*ScreenPtr = col1;
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ScreenPtr += XAdvance;
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}
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return;
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}
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if (XDelta == YDelta)
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{
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/* Diagonal line */
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for (i=0; i<=XDelta; i++)
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{
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*ScreenPtr = col1;
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ScreenPtr += (XAdvance + giImageWidth);
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}
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return;
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}
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/* Determine whether the line is X or Y major, and handle accordingly */
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if (XDelta >= YDelta)
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{
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/* X major line */
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/* Minimum # of pixels in a run in this line */
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WholeStep = XDelta / YDelta;
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/* Error term adjust each time Y steps by 1; used to tell when one
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extra pixel should be drawn as part of a run, to account for
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fractional steps along the X axis per 1-pixel steps along Y */
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AdjUp = (XDelta % YDelta) * 2;
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/* Error term adjust when the error term turns over, used to factor
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out the X step made at that time */
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AdjDown = YDelta * 2;
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/* Initial error term; reflects an initial step of 0.5 along the Y
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axis */
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ErrorTerm = (XDelta % YDelta) - (YDelta * 2);
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/* The initial and last runs are partial, because Y advances only 0.5
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for these runs, rather than 1. Divide one full run, plus the
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initial pixel, between the initial and last runs */
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InitialPixelCount = (WholeStep / 2) + 1;
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FinalPixelCount = InitialPixelCount;
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/* If the basic run length is even and there's no fractional
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advance, we have one pixel that could go to either the initial
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or last partial run, which we'll arbitrarily allocate to the
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last run */
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if ((AdjUp == 0) && ((WholeStep & 0x01) == 0))
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{
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InitialPixelCount--;
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}
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/* If there're an odd number of pixels per run, we have 1 pixel that can't
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be allocated to either the initial or last partial run, so we'll add 0.5
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to error term so this pixel will be handled by the normal full-run loop */
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if ((WholeStep & 0x01) != 0)
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{
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ErrorTerm += YDelta;
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}
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/* Draw the first, partial run of pixels */
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DrawHorizontalRun8(&ScreenPtr, XAdvance, InitialPixelCount, Color, ScreenWidth);
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/* Draw all full runs */
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for (i=0; i<(YDelta-1); i++)
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{
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RunLength = WholeStep; /* run is at least this long */
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/* Advance the error term and add an extra pixel if the error
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term so indicates */
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if ((ErrorTerm += AdjUp) > 0)
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{
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RunLength++;
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ErrorTerm -= AdjDown; /* reset the error term */
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}
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/* Draw this scan line's run */
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DrawHorizontalRun8(&ScreenPtr, XAdvance, RunLength, Color, ScreenWidth);
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}
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/* Draw the final run of pixels */
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DrawHorizontalRun8(&ScreenPtr, XAdvance, FinalPixelCount, Color, ScreenWidth);
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return;
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}
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else
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{
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/* Y major line */
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/* Minimum # of pixels in a run in this line */
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WholeStep = YDelta / XDelta;
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/* Error term adjust each time X steps by 1; used to tell when 1 extra
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pixel should be drawn as part of a run, to account for
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fractional steps along the Y axis per 1-pixel steps along X */
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AdjUp = (YDelta % XDelta) * 2;
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/* Error term adjust when the error term turns over, used to factor
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out the Y step made at that time */
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AdjDown = XDelta * 2;
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/* Initial error term; reflects initial step of 0.5 along the X axis */
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ErrorTerm = (YDelta % XDelta) - (XDelta * 2);
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/* The initial and last runs are partial, because X advances only 0.5
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for these runs, rather than 1. Divide one full run, plus the
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initial pixel, between the initial and last runs */
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InitialPixelCount = (WholeStep / 2) + 1;
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FinalPixelCount = InitialPixelCount;
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/* If the basic run length is even and there's no fractional advance, we
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have 1 pixel that could go to either the initial or last partial run,
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which we'll arbitrarily allocate to the last run */
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if ((AdjUp == 0) && ((WholeStep & 0x01) == 0))
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{
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InitialPixelCount--;
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}
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/* If there are an odd number of pixels per run, we have one pixel
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that can't be allocated to either the initial or last partial
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run, so we'll add 0.5 to the error term so this pixel will be
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handled by the normal full-run loop */
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if ((WholeStep & 0x01) != 0)
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{
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ErrorTerm += XDelta;
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}
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/* Draw the first, partial run of pixels */
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DrawVerticalRun8(&ScreenPtr, XAdvance, InitialPixelCount, Color, ScreenWidth);
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/* Draw all full runs */
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for (i=0; i<(XDelta-1); i++)
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{
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RunLength = WholeStep; /* run is at least this long */
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/* Advance the error term and add an extra pixel if the error
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term so indicates */
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if ((ErrorTerm += AdjUp) > 0)
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{
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RunLength++;
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ErrorTerm -= AdjDown; /* reset the error term */
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}
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/* Draw this scan line's run */
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DrawVerticalRun8(&ScreenPtr, XAdvance, RunLength, Color, ScreenWidth);
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}
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/* Draw the final run of pixels */
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DrawVerticalRun8(&ScreenPtr, XAdvance, FinalPixelCount, Color, ScreenWidth);
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return;
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}
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}
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/* Draws a horizontal run of pixels, then advances the bitmap pointer to
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the first pixel of the next run. */
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void DrawHorizontalRun8(UINT8 **ScreenPtr, int XAdvance,
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int RunLength, int Color, int ScreenWidth)
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{
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int i;
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UINT8 *WorkingScreenPtr = *ScreenPtr;
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UINT8 col1 = Color & 0x00FF;
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for (i=0; i<RunLength; i++)
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{
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*WorkingScreenPtr = col1;
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WorkingScreenPtr += XAdvance;
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}
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/* Advance to the next scan line */
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WorkingScreenPtr += giImageWidth;
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*ScreenPtr = WorkingScreenPtr;
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}
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/* Draws a vertical run of pixels, then advances the bitmap pointer to
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the first pixel of the next run. */
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void DrawVerticalRun8(UINT8 **ScreenPtr, int XAdvance,
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int RunLength, int Color, int ScreenWidth)
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{
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int i;
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UINT8 *WorkingScreenPtr = *ScreenPtr;
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UINT8 col1 = Color & 0x00FF;
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for (i=0; i<RunLength; i++)
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{
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*WorkingScreenPtr = col1;
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WorkingScreenPtr += giImageWidth;
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}
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/* Advance to the next column */
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WorkingScreenPtr += XAdvance;
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*ScreenPtr = WorkingScreenPtr;
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}
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