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889 lines
26 KiB
889 lines
26 KiB
/*
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** Copyright 1991, Silicon Graphics, Inc.
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** All Rights Reserved.
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**
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** This is UNPUBLISHED PROPRIETARY SOURCE CODE of Silicon Graphics, Inc.;
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** the contents of this file may not be disclosed to third parties, copied or
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** duplicated in any form, in whole or in part, without the prior written
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** permission of Silicon Graphics, Inc.
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**
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** RESTRICTED RIGHTS LEGEND:
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** Use, duplication or disclosure by the Government is subject to restrictions
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** as set forth in subdivision (c)(1)(ii) of the Rights in Technical Data
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** and Computer Software clause at DFARS 252.227-7013, and/or in similar or
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** successor clauses in the FAR, DOD or NASA FAR Supplement. Unpublished -
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** rights reserved under the Copyright Laws of the United States.
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**
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*/
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#include "precomp.h"
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#pragma hdrstop
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#include "phong.h"
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#define __TWO_31 ((__GLfloat) 2147483648.0)
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/*
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** Most line functions will start off by computing the information
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** computed by this routine.
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**
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** The excessive number of labels in this routine is partly due
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** to the fact that it is used as a model for writing an assembly
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** equivalent.
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*/
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#ifndef NT
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void FASTCALL __glInitLineData(__GLcontext *gc, __GLvertex *v0, __GLvertex *v1)
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{
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GLint start, end;
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__GLfloat x0,y0,x1,y1;
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__GLfloat minorStart;
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GLint intMinorStart;
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__GLfloat dx, dy;
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__GLfloat offset;
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__GLfloat slope;
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__GLlineState *ls = &gc->state.line;
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__GLfloat halfWidth;
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__GLfloat x0frac, x1frac, y0frac, y1frac, half, totDist;
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gc->line.options.v0 = v0;
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gc->line.options.v1 = v1;
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gc->line.options.width = gc->state.line.aliasedWidth;
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x0=v0->window.x;
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y0=v0->window.y;
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x1=v1->window.x;
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y1=v1->window.y;
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dx=x1-x0;
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dy=y1-y0;
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halfWidth = (ls->aliasedWidth - 1) * __glHalf;
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/* Ugh. This is slow. Bummer. */
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x0frac = x0 - ((GLint) x0);
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x1frac = x1 - ((GLint) x1);
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y0frac = y0 - ((GLint) y0);
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y1frac = y1 - ((GLint) y1);
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half = __glHalf;
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if (dx > __glZero) {
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if (dy > __glZero) {
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if (dx > dy) { /* dx > dy > 0 */
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gc->line.options.yBig = 1;
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posxmajor: /* dx > |dy| >= 0 */
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gc->line.options.yLittle = 0;
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gc->line.options.xBig = 1;
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gc->line.options.xLittle = 1;
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slope = dy/dx;
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start = (GLint) (x0);
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end = (GLint) (x1);
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y0frac -= half;
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if (y0frac < 0) y0frac = -y0frac;
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totDist = y0frac + x0frac - half;
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if (totDist > half) start++;
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y1frac -= half;
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if (y1frac < 0) y1frac = -y1frac;
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totDist = y1frac + x1frac - half;
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if (totDist > half) end++;
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offset = start + half - x0;
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gc->line.options.length = dx;
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gc->line.options.numPixels = end - start;
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xmajorfinish:
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gc->line.options.axis = __GL_X_MAJOR;
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gc->line.options.xStart = start;
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gc->line.options.offset = offset;
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minorStart = y0 + offset*slope - halfWidth;
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intMinorStart = (GLint) minorStart;
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minorStart -= intMinorStart;
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gc->line.options.yStart = intMinorStart;
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gc->line.options.dfraction = (GLint)(slope * __TWO_31);
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gc->line.options.fraction = (GLint)(minorStart * __TWO_31);
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} else { /* dy >= dx > 0 */
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gc->line.options.xBig = 1;
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posymajor: /* dy >= |dx| >= 0, dy != 0 */
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gc->line.options.xLittle = 0;
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gc->line.options.yBig = 1;
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gc->line.options.yLittle = 1;
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slope = dx/dy;
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start = (GLint) (y0);
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end = (GLint) (y1);
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x0frac -= half;
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if (x0frac < 0) x0frac = -x0frac;
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totDist = y0frac + x0frac - half;
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if (totDist > half) start++;
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x1frac -= half;
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if (x1frac < 0) x1frac = -x1frac;
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totDist = y1frac + x1frac - half;
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if (totDist > half) end++;
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offset = start + half - y0;
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gc->line.options.length = dy;
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gc->line.options.numPixels = end - start;
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ymajorfinish:
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gc->line.options.axis = __GL_Y_MAJOR;
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gc->line.options.yStart = start;
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gc->line.options.offset = offset;
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minorStart = x0 + offset*slope - halfWidth;
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intMinorStart = (GLint) minorStart;
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minorStart -= intMinorStart;
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gc->line.options.xStart = intMinorStart;
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gc->line.options.dfraction = (GLint)(slope * __TWO_31);
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gc->line.options.fraction = (GLint)(minorStart * __TWO_31);
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}
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} else {
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if (dx > -dy) { /* dx > -dy >= 0 */
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gc->line.options.yBig = -1;
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goto posxmajor;
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} else { /* -dy >= dx >= 0, dy != 0 */
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gc->line.options.xBig = 1;
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negymajor: /* -dy >= |dx| >= 0, dy != 0 */
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gc->line.options.xLittle = 0;
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gc->line.options.yBig = -1;
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gc->line.options.yLittle = -1;
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slope = dx/-dy;
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start = (GLint) (y0);
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end = (GLint) (y1);
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x0frac -= half;
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if (x0frac < 0) x0frac = -x0frac;
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totDist = x0frac + half - y0frac;
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if (totDist > half) start--;
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x1frac -= half;
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if (x1frac < 0) x1frac = -x1frac;
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totDist = x1frac + half - y1frac;
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if (totDist > half) end--;
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offset = y0 - (start + half);
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gc->line.options.length = -dy;
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gc->line.options.numPixels = start - end;
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goto ymajorfinish;
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}
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}
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} else {
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if (dy > __glZero) {
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if (-dx > dy) { /* -dx > dy > 0 */
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gc->line.options.yBig = 1;
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negxmajor: /* -dx > |dy| >= 0 */
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gc->line.options.yLittle = 0;
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gc->line.options.xBig = -1;
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gc->line.options.xLittle = -1;
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slope = dy/-dx;
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start = (GLint) (x0);
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end = (GLint) (x1);
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y0frac -= half;
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if (y0frac < 0) y0frac = -y0frac;
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totDist = y0frac + half - x0frac;
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if (totDist > half) start--;
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y1frac -= half;
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if (y1frac < 0) y1frac = -y1frac;
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totDist = y1frac + half - x1frac;
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if (totDist > half) end--;
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offset = x0 - (start + half);
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gc->line.options.length = -dx;
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gc->line.options.numPixels = start - end;
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goto xmajorfinish;
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} else { /* dy >= -dx >= 0, dy != 0 */
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gc->line.options.xBig = -1;
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goto posymajor;
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}
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} else {
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if (dx < dy) { /* -dx > -dy >= 0 */
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gc->line.options.yBig = -1;
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goto negxmajor;
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} else { /* -dy >= -dx >= 0 */
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#ifdef NT
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if (dx == dy && dy == 0) {
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gc->line.options.numPixels = 0;
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return;
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}
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#else
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if (dx == dy && dy == 0) return;
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#endif
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gc->line.options.xBig = -1;
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goto negymajor;
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}
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}
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}
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}
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#endif
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#ifdef NT
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void FASTCALL __glRenderAliasLine(__GLcontext *gc, __GLvertex *v0, __GLvertex *v1, GLuint flags)
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#else
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void FASTCALL __glRenderAliasLine(__GLcontext *gc, __GLvertex *v0, __GLvertex *v1)
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#endif
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{
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__GLlineState *ls = &gc->state.line;
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__GLfloat invDelta;
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__GLfloat winv, r;
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__GLcolor *cp;
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__GLfloat offset;
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GLuint modeFlags = gc->polygon.shader.modeFlags;
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#ifndef NT
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__glInitLineData(gc, v0, v1);
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if (gc->line.options.numPixels == 0) return;
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#else
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GLboolean init;
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CHOP_ROUND_ON();
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init = (GLboolean)__glInitLineData(gc, v0, v1);
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CHOP_ROUND_OFF();
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if (!init)
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{
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return;
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}
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invDelta = gc->line.options.oneOverLength;
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#endif
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offset = gc->line.options.offset;
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/*
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** Set up increments for any enabled line options.
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*/
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#ifndef NT
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invDelta = __glOne / gc->line.options.length;
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#endif
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if (modeFlags & __GL_SHADE_DEPTH_ITER) {
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__GLfloat dzdx;
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/*
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** Calculate window z coordinate increment and starting position.
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*/
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dzdx = (v1->window.z - v0->window.z) * invDelta;
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#ifdef NT
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if(( gc->modes.depthBits == 16 ) &&
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( gc->depthBuffer.scale <= (GLuint)0xffff )) {
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gc->polygon.shader.frag.z =
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(__GLzValue)(Z16_SCALE *(v0->window.z + dzdx * offset));
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gc->polygon.shader.dzdx = (GLint)(Z16_SCALE * dzdx);
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}
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else {
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gc->polygon.shader.frag.z =
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(__GLzValue)(v0->window.z + dzdx * offset);
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gc->polygon.shader.dzdx = (GLint)dzdx;
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}
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#else
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gc->polygon.shader.frag.z = (__GLzValue)(v0->window.z + dzdx * offset);
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gc->polygon.shader.dzdx = (GLint)dzdx;
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#endif
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}
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if (modeFlags & __GL_SHADE_LINE_STIPPLE) {
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if (!gc->line.notResetStipple) {
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gc->line.stipplePosition = 0;
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gc->line.repeat = 0;
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gc->line.notResetStipple = GL_TRUE;
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}
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}
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if (modeFlags & __GL_SHADE_COMPUTE_FOG)
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{
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__GLfloat f1, f0;
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__GLfloat dfdx;
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gc->line.options.f0 = f0 = v0->eyeZ;
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gc->polygon.shader.dfdx = dfdx =
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(v1->eyeZ - v0->eyeZ) * invDelta;
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gc->polygon.shader.frag.f = f0 + dfdx * offset;
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}
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else if (modeFlags & __GL_SHADE_INTERP_FOG)
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{
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__GLfloat f1, f0;
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__GLfloat dfdx;
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f0 = v0->fog;
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f1 = v1->fog;
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gc->line.options.f0 = f0;
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gc->polygon.shader.dfdx = dfdx = (f1 - f0) * invDelta;
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gc->polygon.shader.frag.f = f0 + dfdx * offset;
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}
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if (modeFlags & __GL_SHADE_TEXTURE) {
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__GLfloat v0QW, v1QW;
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__GLfloat dS, dT, dQWdX;
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winv = v0->window.w;
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/*
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** Calculate texture s and t value increments.
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*/
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v0QW = v0->texture.w * winv;
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v1QW = v1->texture.w * v1->window.w;
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dS = (v1->texture.x * v1QW - v0->texture.x * v0QW) * invDelta;
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dT = (v1->texture.y * v1QW - v0->texture.y * v0QW) * invDelta;
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gc->polygon.shader.dsdx = dS;
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gc->polygon.shader.dtdx = dT;
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gc->polygon.shader.dqwdx = dQWdX = (v1QW - v0QW) * invDelta;
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gc->polygon.shader.frag.s = v0->texture.x * winv + dS * offset;
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gc->polygon.shader.frag.t = v0->texture.y * winv + dT * offset;
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gc->polygon.shader.frag.qw = v0->texture.w * winv + dQWdX * offset;
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}
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#ifdef GL_WIN_phong_shading
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if (modeFlags & __GL_SHADE_PHONG)
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(*gc->procs.phong.InitLineParams) (gc, v0, v1, invDelta);
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#endif //GL_WIN_phong_shading
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if ((modeFlags & __GL_SHADE_SMOOTH)
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#ifdef GL_WIN_phong_shading
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|| ((modeFlags & __GL_SHADE_PHONG) &&
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(gc->polygon.shader.phong.flags & __GL_PHONG_NEED_COLOR_XPOLATE))
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#endif //GL_WIN_phong_shading
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) {
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__GLcolor *c0 = v0->color;
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__GLcolor *c1 = v1->color;
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__GLfloat drdx, dgdx, dbdx, dadx;
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/*
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** Calculate red, green, blue and alpha value increments.
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*/
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drdx = (c1->r - c0->r) * invDelta;
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if (gc->modes.rgbMode) {
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dgdx = (c1->g - c0->g) * invDelta;
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dbdx = (c1->b - c0->b) * invDelta;
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dadx = (c1->a - c0->a) * invDelta;
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gc->polygon.shader.dgdx = dgdx;
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gc->polygon.shader.dbdx = dbdx;
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gc->polygon.shader.dadx = dadx;
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}
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gc->polygon.shader.drdx = drdx;
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cp = v0->color;
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} else {
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cp = v1->color;
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// Initialize these values to zero even for the flat case
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// because there is an optimization in so_prim which will
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// turn off smooth shading without repicking, so these need
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// to be valid
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gc->polygon.shader.drdx = __glZero;
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gc->polygon.shader.dgdx = __glZero;
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gc->polygon.shader.dbdx = __glZero;
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gc->polygon.shader.dadx = __glZero;
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}
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r = cp->r;
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if (modeFlags & __GL_SHADE_RGB) {
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__GLfloat g,b,a;
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g = cp->g;
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b = cp->b;
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a = cp->a;
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gc->polygon.shader.frag.color.g = g;
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gc->polygon.shader.frag.color.b = b;
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gc->polygon.shader.frag.color.a = a;
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}
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gc->polygon.shader.frag.color.r = r;
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gc->polygon.shader.length = gc->line.options.numPixels;
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(*gc->procs.line.processLine)(gc);
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}
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#ifdef NT
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void FASTCALL __glRenderFlatFogLine(__GLcontext *gc, __GLvertex *v0,
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__GLvertex *v1, GLuint flags)
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#else
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void FASTCALL __glRenderFlatFogLine(__GLcontext *gc, __GLvertex *v0,
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__GLvertex *v1)
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#endif
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{
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__GLcolor v0col, v1col;
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__GLcolor *v0ocp, *v1ocp;
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(*gc->procs.fogColor)(gc, &v0col, v1->color, v0->fog);
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(*gc->procs.fogColor)(gc, &v1col, v1->color, v1->fog);
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v0ocp = v0->color;
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v1ocp = v1->color;
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v0->color = &v0col;
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v1->color = &v1col;
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#ifdef NT
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(*gc->procs.renderLine2)(gc, v0, v1, flags);
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#else
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(*gc->procs.renderLine2)(gc, v0, v1);
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#endif
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v0->color = v0ocp;
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v1->color = v1ocp;
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}
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/************************************************************************/
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/*
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** Most line functions will start off by computing the information
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** computed by this routine.
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**
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** The excessive number of labels in this routine is partly due
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** to the fact that it is used as a model for writing an assembly
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** equivalent.
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*/
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void FASTCALL __glInitAALineData(__GLcontext *gc, __GLvertex *v0, __GLvertex *v1)
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{
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GLint start;
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__GLfloat width;
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__GLfloat x0,y0,x1,y1;
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__GLfloat minorStart;
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GLint intMinorStart;
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__GLfloat dx, dy;
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__GLfloat offset;
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__GLfloat slope;
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__GLlineState *ls = &gc->state.line;
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__GLfloat halfWidth;
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__GLfloat realLength, oneOverRealLength;
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__GLfloat dldx, dldy;
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__GLfloat dddx, dddy;
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gc->line.options.v0 = v0;
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gc->line.options.v1 = v1;
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x0=v0->window.x;
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y0=v0->window.y;
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x1=v1->window.x;
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y1=v1->window.y;
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dx=x1-x0;
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dy=y1-y0;
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realLength = __GL_SQRTF(dx*dx+dy*dy);
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oneOverRealLength = realLength == __glZero ? __glZero : __glOne/realLength;
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gc->line.options.realLength = realLength;
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gc->line.options.dldx = dldx = dx * oneOverRealLength;
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gc->line.options.dldy = dldy = dy * oneOverRealLength;
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gc->line.options.dddx = dddx = -dldy;
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gc->line.options.dddy = dddy = dldx;
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if (dx > __glZero) {
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if (dy > __glZero) { /* dx > 0, dy > 0 */
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gc->line.options.dlBig = dldx + dldy;
|
|
gc->line.options.ddBig = dddx + dddy;
|
|
if (dx > dy) { /* dx > dy > 0 */
|
|
gc->line.options.yBig = 1;
|
|
posxmajor: /* dx > |dy| >= 0 */
|
|
gc->line.options.yLittle = 0;
|
|
gc->line.options.xBig = 1;
|
|
gc->line.options.xLittle = 1;
|
|
gc->line.options.dlLittle = dldx;
|
|
gc->line.options.ddLittle = dddx;
|
|
slope = dy/dx;
|
|
start = (GLint) x0;
|
|
offset = start + __glHalf - x0;
|
|
|
|
gc->line.options.length = dx;
|
|
gc->line.options.numPixels = (GLint)__GL_FAST_CEILF(x1 - x0) + 1;
|
|
|
|
width = __GL_FAST_CEILF(gc->state.line.smoothWidth *
|
|
realLength / dx);
|
|
xmajorfinish:
|
|
gc->line.options.width = (GLint)width + 1;
|
|
halfWidth = width * __glHalf;
|
|
|
|
gc->line.options.axis = __GL_X_MAJOR;
|
|
gc->line.options.xStart = start;
|
|
gc->line.options.offset = offset;
|
|
minorStart = y0 + offset*slope - halfWidth;
|
|
intMinorStart = (GLint) minorStart;
|
|
minorStart -= intMinorStart;
|
|
gc->line.options.yStart = intMinorStart;
|
|
gc->line.options.dfraction = (GLint)(slope * __TWO_31);
|
|
gc->line.options.fraction = (GLint)(minorStart * __TWO_31);
|
|
} else { /* dy >= dx > 0 */
|
|
gc->line.options.xBig = 1;
|
|
posymajor: /* dy >= |dx| >= 0, dy != 0 */
|
|
gc->line.options.xLittle = 0;
|
|
gc->line.options.yBig = 1;
|
|
gc->line.options.yLittle = 1;
|
|
gc->line.options.dlLittle = dldy;
|
|
gc->line.options.ddLittle = dddy;
|
|
slope = dx/dy;
|
|
start = (GLint) y0;
|
|
offset = start + __glHalf - y0;
|
|
|
|
gc->line.options.length = dy;
|
|
gc->line.options.numPixels = (GLint)__GL_FAST_CEILF(y1 - y0) + 1;
|
|
|
|
width = __GL_FAST_CEILF(gc->state.line.smoothWidth *
|
|
realLength / dy);
|
|
ymajorfinish:
|
|
gc->line.options.width = (GLint)width + 1;
|
|
halfWidth = width * __glHalf;
|
|
|
|
gc->line.options.axis = __GL_Y_MAJOR;
|
|
gc->line.options.yStart = start;
|
|
gc->line.options.offset = offset;
|
|
minorStart = x0 + offset*slope - halfWidth;
|
|
intMinorStart = (GLint) minorStart;
|
|
minorStart -= intMinorStart;
|
|
gc->line.options.xStart = intMinorStart;
|
|
gc->line.options.dfraction = (GLint)(slope * __TWO_31);
|
|
gc->line.options.fraction = (GLint)(minorStart * __TWO_31);
|
|
}
|
|
} else { /* dx > 0, dy <= 0 */
|
|
gc->line.options.dlBig = dldx - dldy;
|
|
gc->line.options.ddBig = dddx - dddy;
|
|
if (dx > -dy) { /* dx > -dy >= 0 */
|
|
gc->line.options.yBig = -1;
|
|
goto posxmajor;
|
|
} else { /* -dy >= dx >= 0, dy != 0 */
|
|
gc->line.options.xBig = 1;
|
|
negymajor: /* -dy >= |dx| >= 0, dy != 0 */
|
|
gc->line.options.xLittle = 0;
|
|
gc->line.options.yBig = -1;
|
|
gc->line.options.yLittle = -1;
|
|
gc->line.options.dlLittle = -dldy;
|
|
gc->line.options.ddLittle = -dddy;
|
|
slope = dx/-dy;
|
|
start = (GLint) y0;
|
|
offset = y0 - (start + __glHalf);
|
|
|
|
gc->line.options.length = -dy;
|
|
gc->line.options.numPixels = (GLint)__GL_FAST_CEILF(y0 - y1) + 1;
|
|
|
|
width = __GL_FAST_CEILF(-gc->state.line.smoothWidth *
|
|
realLength / dy);
|
|
|
|
goto ymajorfinish;
|
|
}
|
|
}
|
|
} else {
|
|
if (dy > __glZero) { /* dx <= 0, dy > 0 */
|
|
gc->line.options.dlBig = dldy - dldx;
|
|
gc->line.options.ddBig = dddy - dddx;
|
|
if (-dx > dy) { /* -dx > dy > 0 */
|
|
gc->line.options.yBig = 1;
|
|
negxmajor: /* -dx > |dy| >= 0 */
|
|
gc->line.options.yLittle = 0;
|
|
gc->line.options.xBig = -1;
|
|
gc->line.options.xLittle = -1;
|
|
gc->line.options.dlLittle = -dldx;
|
|
gc->line.options.ddLittle = -dddx;
|
|
slope = dy/-dx;
|
|
start = (GLint) x0;
|
|
offset = x0 - (start + __glHalf);
|
|
|
|
gc->line.options.length = -dx;
|
|
gc->line.options.numPixels = (GLint)__GL_FAST_CEILF(x0 - x1) + 1;
|
|
|
|
width = __GL_FAST_CEILF(-gc->state.line.smoothWidth *
|
|
realLength / dx);
|
|
|
|
goto xmajorfinish;
|
|
} else { /* dy >= -dx >= 0, dy != 0 */
|
|
gc->line.options.xBig = -1;
|
|
goto posymajor;
|
|
}
|
|
} else { /* dx <= 0, dy <= 0 */
|
|
gc->line.options.dlBig = -dldx - dldy;
|
|
gc->line.options.ddBig = -dddx - dddy;
|
|
if (dx < dy) { /* -dx > -dy >= 0 */
|
|
gc->line.options.yBig = -1;
|
|
goto negxmajor;
|
|
} else { /* -dy >= -dx >= 0 */
|
|
if (dx == dy && dy == 0) {
|
|
gc->line.options.length = 0;
|
|
return;
|
|
}
|
|
gc->line.options.xBig = -1;
|
|
goto negymajor;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
#ifdef NT
|
|
void FASTCALL __glRenderAntiAliasLine(__GLcontext *gc, __GLvertex *v0, __GLvertex *v1, GLuint flags)
|
|
#else
|
|
void FASTCALL __glRenderAntiAliasLine(__GLcontext *gc, __GLvertex *v0, __GLvertex *v1)
|
|
#endif
|
|
{
|
|
__GLlineState *ls = &gc->state.line;
|
|
__GLfloat invDelta;
|
|
__GLfloat winv;
|
|
__GLcolor *cp;
|
|
__GLfloat offset;
|
|
GLint lineRep;
|
|
GLint x, y, xBig, xLittle, yBig, yLittle;
|
|
GLint fraction, dfraction;
|
|
__GLfloat dlLittle, dlBig;
|
|
__GLfloat ddLittle, ddBig;
|
|
__GLfloat length, width;
|
|
__GLfloat lineLength;
|
|
__GLfloat dx, dy;
|
|
GLuint modeFlags = gc->polygon.shader.modeFlags;
|
|
|
|
__glInitAALineData(gc, v0, v1);
|
|
if (gc->line.options.length == 0) return;
|
|
|
|
offset = gc->line.options.offset;
|
|
|
|
/*
|
|
** Set up increments for any enabled line options.
|
|
*/
|
|
invDelta = __glOne / gc->line.options.length;
|
|
if (modeFlags & __GL_SHADE_DEPTH_ITER) {
|
|
/*
|
|
** Calculate window z coordinate increment and starting position.
|
|
*/
|
|
#ifdef NT
|
|
if(( gc->modes.depthBits == 16 ) &&
|
|
( gc->depthBuffer.scale <= (GLuint)0xffff )) {
|
|
gc->polygon.shader.dzdx = (GLint)((v1->window.z - v0->window.z) *
|
|
invDelta * Z16_SCALE);
|
|
gc->polygon.shader.frag.z = (GLint)(Z16_SCALE*v0->window.z +
|
|
gc->polygon.shader.dzdx * offset);
|
|
}
|
|
else {
|
|
gc->polygon.shader.dzdx = (GLint)((v1->window.z - v0->window.z) *
|
|
invDelta);
|
|
gc->polygon.shader.frag.z = (GLint)(v0->window.z +
|
|
gc->polygon.shader.dzdx * offset);
|
|
}
|
|
#else
|
|
gc->polygon.shader.dzdx = (GLint)((v1->window.z - v0->window.z) *
|
|
invDelta);
|
|
gc->polygon.shader.frag.z = (GLint)(v0->window.z +
|
|
gc->polygon.shader.dzdx * offset);
|
|
#endif
|
|
}
|
|
|
|
if (modeFlags & __GL_SHADE_LINE_STIPPLE) {
|
|
if (!gc->line.notResetStipple) {
|
|
gc->line.stipplePosition = 0;
|
|
gc->line.repeat = 0;
|
|
gc->line.notResetStipple = GL_TRUE;
|
|
}
|
|
}
|
|
|
|
if (modeFlags & __GL_SHADE_COMPUTE_FOG)
|
|
{
|
|
__GLfloat f1, f0;
|
|
__GLfloat dfdx;
|
|
|
|
f0 = v0->eyeZ;
|
|
f1 = v1->eyeZ;
|
|
gc->line.options.f0 = f0;
|
|
gc->polygon.shader.dfdx = dfdx = (f1 - f0) * invDelta;
|
|
gc->polygon.shader.frag.f = f0 + dfdx * offset;
|
|
}
|
|
else if (modeFlags & __GL_SHADE_INTERP_FOG)
|
|
{
|
|
__GLfloat f1, f0;
|
|
__GLfloat dfdx;
|
|
|
|
f0 = v0->fog;
|
|
f1 = v1->fog;
|
|
gc->line.options.f0 = f0;
|
|
gc->polygon.shader.dfdx = dfdx = (f1 - f0) * invDelta;
|
|
gc->polygon.shader.frag.f = f0 + dfdx * offset;
|
|
}
|
|
|
|
if ((modeFlags & __GL_SHADE_SMOOTH)
|
|
#ifdef GL_WIN_phong_shading
|
|
|| ((modeFlags & __GL_SHADE_PHONG) &&
|
|
(gc->polygon.shader.phong.flags & __GL_PHONG_NEED_COLOR_XPOLATE))
|
|
#endif //GL_WIN_phong_shading
|
|
)
|
|
{
|
|
__GLcolor *c0 = v0->color;
|
|
__GLcolor *c1 = v1->color;
|
|
|
|
/*
|
|
** Calculate red, green, blue and alpha value increments.
|
|
*/
|
|
gc->polygon.shader.drdx = (c1->r - c0->r) * invDelta;
|
|
if (gc->modes.rgbMode) {
|
|
gc->polygon.shader.dgdx = (c1->g - c0->g) * invDelta;
|
|
gc->polygon.shader.dbdx = (c1->b - c0->b) * invDelta;
|
|
gc->polygon.shader.dadx = (c1->a - c0->a) * invDelta;
|
|
}
|
|
cp = v0->color;
|
|
} else {
|
|
cp = v1->color;
|
|
|
|
// Initialize these values to zero even for the flat case
|
|
// because there is an optimization in so_prim which will
|
|
// turn off smooth shading without repicking, so these need
|
|
// to be valid
|
|
gc->polygon.shader.drdx = __glZero;
|
|
gc->polygon.shader.dgdx = __glZero;
|
|
gc->polygon.shader.dbdx = __glZero;
|
|
gc->polygon.shader.dadx = __glZero;
|
|
}
|
|
|
|
gc->polygon.shader.frag.color.r = cp->r;
|
|
if (gc->modes.rgbMode) {
|
|
gc->polygon.shader.frag.color.g = cp->g;
|
|
gc->polygon.shader.frag.color.b = cp->b;
|
|
gc->polygon.shader.frag.color.a = cp->a;
|
|
}
|
|
|
|
if (gc->texture.textureEnabled) {
|
|
__GLfloat v0QW, v1QW;
|
|
__GLfloat dS, dT;
|
|
|
|
/*
|
|
** Calculate texture s and t value increments.
|
|
*/
|
|
v0QW = v0->texture.w * v0->window.w;
|
|
v1QW = v1->texture.w * v1->window.w;
|
|
dS = (v1->texture.x * v1QW - v0->texture.x * v0QW) * invDelta;
|
|
dT = (v1->texture.y * v1QW - v0->texture.y * v0QW) * invDelta;
|
|
gc->polygon.shader.dsdx = dS;
|
|
gc->polygon.shader.dtdx = dT;
|
|
gc->polygon.shader.dqwdx = (v1QW - v0QW) * invDelta;
|
|
|
|
winv = v0->window.w;
|
|
gc->polygon.shader.frag.s = v0->texture.x * winv +
|
|
gc->polygon.shader.dsdx * offset;
|
|
gc->polygon.shader.frag.t = v0->texture.y * winv +
|
|
gc->polygon.shader.dtdx * offset;
|
|
gc->polygon.shader.frag.qw = v0->texture.w * winv +
|
|
gc->polygon.shader.dqwdx * offset;
|
|
}
|
|
|
|
lineRep = gc->line.options.width;
|
|
|
|
fraction = gc->line.options.fraction;
|
|
dfraction = gc->line.options.dfraction;
|
|
|
|
x = gc->line.options.xStart;
|
|
y = gc->line.options.yStart;
|
|
xBig = gc->line.options.xBig;
|
|
yBig = gc->line.options.yBig;
|
|
xLittle = gc->line.options.xLittle;
|
|
yLittle = gc->line.options.yLittle;
|
|
|
|
dlLittle = gc->line.options.dlLittle;
|
|
dlBig = gc->line.options.dlBig;
|
|
ddLittle = gc->line.options.ddLittle;
|
|
ddBig = gc->line.options.ddBig;
|
|
|
|
dx = x + __glHalf - v0->window.x;
|
|
dy = y + __glHalf - v0->window.y;
|
|
length = dx * gc->line.options.dldx +
|
|
dy * gc->line.options.dldy;
|
|
width = dx * gc->line.options.dddx +
|
|
dy * gc->line.options.dddy;
|
|
lineLength = gc->line.options.realLength + __glHalf;
|
|
|
|
if (modeFlags & __GL_SHADE_LINE_STIPPLE) {
|
|
gc->line.options.stippleOffset =
|
|
gc->line.stipplePosition * gc->state.line.stippleRepeat +
|
|
gc->line.repeat - __glHalf;
|
|
|
|
/* XXX Move to a validation routine? */
|
|
gc->line.options.oneOverStippleRepeat =
|
|
__glOne / gc->state.line.stippleRepeat;
|
|
}
|
|
|
|
while (--lineRep >= 0) {
|
|
/* Trace the line backwards as needed */
|
|
while (length > -__glHalf) {
|
|
fraction -= dfraction;
|
|
if (fraction < 0) {
|
|
fraction &= ~0x80000000;
|
|
length -= dlBig;
|
|
width -= ddBig;
|
|
x -= xBig;
|
|
y -= yBig;
|
|
} else {
|
|
length -= dlLittle;
|
|
width -= ddLittle;
|
|
x -= xLittle;
|
|
y -= yLittle;
|
|
}
|
|
}
|
|
|
|
/* Trace line forwards to correct */
|
|
while (length <= -__glHalf) {
|
|
fraction += dfraction;
|
|
if (fraction < 0) {
|
|
fraction &= ~0x80000000;
|
|
length += dlBig;
|
|
width += ddBig;
|
|
x += xBig;
|
|
y += yBig;
|
|
} else {
|
|
length += dlLittle;
|
|
width += ddLittle;
|
|
x += xLittle;
|
|
y += yLittle;
|
|
}
|
|
}
|
|
|
|
#ifdef GL_WIN_phong_shading
|
|
if (modeFlags & __GL_SHADE_PHONG)
|
|
(*gc->procs.phong.InitLineParams) (gc, v0, v1, invDelta);
|
|
#endif //GL_WIN_phong_shading
|
|
|
|
/* Save new fraction/dfraction */
|
|
gc->line.options.plength = length;
|
|
gc->line.options.pwidth = width;
|
|
gc->line.options.fraction = fraction;
|
|
gc->line.options.dfraction = dfraction;
|
|
gc->line.options.xStart = x;
|
|
gc->line.options.yStart = y;
|
|
|
|
gc->polygon.shader.length = gc->line.options.numPixels;
|
|
(*gc->procs.line.processLine)(gc);
|
|
|
|
if (gc->line.options.axis == __GL_X_MAJOR) {
|
|
y++;
|
|
length += gc->line.options.dldy;
|
|
width += gc->line.options.dddy;
|
|
} else {
|
|
x++;
|
|
length += gc->line.options.dldx;
|
|
width += gc->line.options.dddx;
|
|
}
|
|
}
|
|
|
|
if (modeFlags & __GL_SHADE_LINE_STIPPLE) {
|
|
/* Update stipple. Ugh. */
|
|
int increase;
|
|
int posInc;
|
|
|
|
/* Shift stipple by 'increase' bits */
|
|
increase = (GLint)__GL_FAST_CEILF(gc->line.options.realLength);
|
|
|
|
posInc = increase / gc->state.line.stippleRepeat;
|
|
|
|
gc->line.stipplePosition = (gc->line.stipplePosition + posInc) & 0xf;
|
|
gc->line.repeat = (gc->line.repeat + increase) % gc->state.line.stippleRepeat;
|
|
}
|
|
}
|
|
|
|
#ifdef NT
|
|
void FASTCALL __glNopLineBegin(__GLcontext *gc)
|
|
{
|
|
}
|
|
|
|
void FASTCALL __glNopLineEnd(__GLcontext *gc)
|
|
{
|
|
}
|
|
#endif // NT
|