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509 lines
13 KiB
C
509 lines
13 KiB
C
/* gradient.c - renders gradients
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*
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* Raster graphics library
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*
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* Copyright (c) 1997 Alfredo K. Kojima
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Library General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library General Public
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* License along with this library; if not, write to the Free
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* Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include <config.h>
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <assert.h>
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#include "wraster.h"
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static RImage *renderHGradient(unsigned width, unsigned height,
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int r0, int g0, int b0,
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int rf, int gf, int bf);
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static RImage *renderVGradient(unsigned width, unsigned height,
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int r0, int g0, int b0,
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int rf, int gf, int bf);
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static RImage *renderDGradient(unsigned width, unsigned height,
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int r0, int g0, int b0,
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int rf, int gf, int bf);
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static RImage *renderMHGradient(unsigned width, unsigned height,
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RColor **colors, int count);
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static RImage *renderMVGradient(unsigned width, unsigned height,
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RColor **colors, int count);
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static RImage *renderMDGradient(unsigned width, unsigned height,
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RColor **colors, int count);
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RImage*
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RRenderMultiGradient(unsigned width, unsigned height, RColor **colors, int style)
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{
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int count;
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count = 0;
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while (colors[count]!=NULL) count++;
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if (count > 2) {
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switch (style) {
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case RHorizontalGradient:
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return renderMHGradient(width, height, colors, count);
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case RVerticalGradient:
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return renderMVGradient(width, height, colors, count);
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case RDiagonalGradient:
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return renderMDGradient(width, height, colors, count);
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}
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} else if (count > 1) {
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return RRenderGradient(width, height, colors[0], colors[1], style);
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} else if (count > 0) {
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return RRenderGradient(width, height, colors[0], colors[0], style);
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}
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assert(0);
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return NULL;
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}
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RImage*
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RRenderGradient(unsigned width, unsigned height, RColor *from, RColor *to,
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int style)
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{
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switch (style) {
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case RHorizontalGradient:
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return renderHGradient(width, height, from->red, from->green,
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from->blue, to->red, to->green, to->blue);
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case RVerticalGradient:
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return renderVGradient(width, height, from->red, from->green,
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from->blue, to->red, to->green, to->blue);
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case RDiagonalGradient:
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return renderDGradient(width, height, from->red, from->green,
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from->blue, to->red, to->green, to->blue);
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}
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assert(0);
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return NULL;
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}
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/*
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*----------------------------------------------------------------------
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* renderHGradient--
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* Renders a horizontal linear gradient of the specified size in the
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* RImage format with a border of the specified type.
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*
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* Returns:
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* A 24bit RImage with the gradient (no alpha channel).
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*
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* Side effects:
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* None
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*----------------------------------------------------------------------
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*/
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static RImage*
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renderHGradient(unsigned width, unsigned height, int r0, int g0, int b0,
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int rf, int gf, int bf)
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{
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int i;
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unsigned long r, g, b, dr, dg, db;
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RImage *image;
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unsigned char *rp, *gp, *bp;
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image = RCreateImage(width, height, False);
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if (!image) {
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return NULL;
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}
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rp = image->data[0];
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gp = image->data[1];
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bp = image->data[2];
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r = r0 << 16;
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g = g0 << 16;
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b = b0 << 16;
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dr = ((rf-r0)<<16)/(int)width;
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dg = ((gf-g0)<<16)/(int)width;
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db = ((bf-b0)<<16)/(int)width;
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/* render the first line */
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for (i=0; i<width; i++) {
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*(rp++) = (unsigned char)(r>>16);
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*(gp++) = (unsigned char)(g>>16);
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*(bp++) = (unsigned char)(b>>16);
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r += dr;
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g += dg;
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b += db;
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}
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/* copy the first line to the other lines */
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for (i=1; i<height; i++) {
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memcpy(&(image->data[0][i*width]), image->data[0], width);
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memcpy(&(image->data[1][i*width]), image->data[1], width);
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memcpy(&(image->data[2][i*width]), image->data[2], width);
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}
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return image;
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}
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/*
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*----------------------------------------------------------------------
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* renderVGradient--
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* Renders a vertical linear gradient of the specified size in the
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* RImage format with a border of the specified type.
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*
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* Returns:
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* A 24bit RImage with the gradient (no alpha channel).
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*
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* Side effects:
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* None
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*----------------------------------------------------------------------
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*/
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static RImage*
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renderVGradient(unsigned width, unsigned height, int r0, int g0, int b0,
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int rf, int gf, int bf)
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{
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int i;
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unsigned long r, g, b, dr, dg, db;
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RImage *image;
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unsigned char *rp, *gp, *bp;
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image = RCreateImage(width, height, False);
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if (!image) {
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return NULL;
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}
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rp = image->data[0];
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gp = image->data[1];
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bp = image->data[2];
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r = r0<<16;
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g = g0<<16;
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b = b0<<16;
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dr = ((rf-r0)<<16)/(int)height;
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dg = ((gf-g0)<<16)/(int)height;
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db = ((bf-b0)<<16)/(int)height;
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for (i=0; i<height; i++) {
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memset(rp, (unsigned char)(r>>16), width);
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memset(gp, (unsigned char)(g>>16), width);
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memset(bp, (unsigned char)(b>>16), width);
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rp+=width;
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gp+=width;
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bp+=width;
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r+=dr;
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g+=dg;
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b+=db;
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}
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return image;
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}
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/*
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*----------------------------------------------------------------------
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* renderDGradient--
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* Renders a diagonal linear gradient of the specified size in the
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* RImage format with a border of the specified type.
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*
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* Returns:
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* A 24bit RImage with the gradient (no alpha channel).
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*
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* Side effects:
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* None
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*----------------------------------------------------------------------
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*/
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#if 0
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/* This version is slower then the second below. It uses more operations,
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* most of them multiplication of floats. -Dan
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*/
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static RImage*
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renderDGradient(unsigned width, unsigned height, int r0, int g0, int b0,
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int rf, int gf, int bf)
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{
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int x, y;
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float from_red,from_green,from_blue;
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float to_red,to_green,to_blue;
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float dr,dg,db,dx,dy,w,h,xred,yred,xgreen,ygreen,xblue,yblue;
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RImage *image;
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unsigned char *rp, *gp, *bp;
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image = RCreateImage(width, height, False);
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if (!image) {
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return NULL;
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}
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rp = image->data[0];
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gp = image->data[1];
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bp = image->data[2];
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from_red = (float)r0;
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from_green = (float)g0;
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from_blue = (float)b0;
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to_red = (float)rf;
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to_green = (float)gf;
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to_blue = (float)bf;
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w = (float) width;
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h = (float) height;
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dr = (to_red - from_red);
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dg = (to_green - from_green);
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db = (to_blue - from_blue);
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for (y=0; y<height; y++) {
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dy = y / h;
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yred = dr * dy + from_red;
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ygreen = dg * dy + from_green;
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yblue = db * dy + from_blue;
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for (x=0; x<width; x++) {
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dx = x / w;
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xred = dr * dx + from_red;
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xgreen = dg * dx + from_green;
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xblue = db * dx + from_blue;
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*(rp++) = (unsigned char)((xred + yred)/2);
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*(gp++) = (unsigned char)((xgreen + ygreen)/2);
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*(bp++) = (unsigned char)((xblue + yblue)/2);
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}
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}
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return image;
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}
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#endif
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static RImage*
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renderDGradient(unsigned width, unsigned height, int r0, int g0, int b0,
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int rf, int gf, int bf)
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{
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RImage *image, *tmp;
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float a;
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int i, offset;
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if (width == 1)
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return renderVGradient(width, height, r0, g0, b0, rf, gf, bf);
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else if (height == 1)
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return renderHGradient(width, height, r0, g0, b0, rf, gf, bf);
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image = RCreateImage(width, height, False);
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if (!image) {
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return NULL;
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}
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tmp = renderHGradient(2*width-1, 1, r0, g0, b0, rf, gf, bf);
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if (!tmp) {
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RDestroyImage(image);
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return NULL;
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}
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a = ((float)(width - 1))/((float)(height - 1));
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/* copy the first line to the other lines with corresponding offset */
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for (i=0; i<height; i++) {
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offset = (int)(a*i+0.5);
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memcpy(&(image->data[0][i*width]), &(tmp->data[0][offset]), width);
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memcpy(&(image->data[1][i*width]), &(tmp->data[1][offset]), width);
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memcpy(&(image->data[2][i*width]), &(tmp->data[2][offset]), width);
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}
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RDestroyImage(tmp);
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return image;
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}
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static RImage*
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renderMHGradient(unsigned width, unsigned height, RColor **colors, int count)
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{
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int i, j, k;
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unsigned long r, g, b, dr, dg, db;
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RImage *image;
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unsigned char *rp, *gp, *bp;
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unsigned width2;
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assert(count > 2);
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image = RCreateImage(width, height, False);
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if (!image) {
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return NULL;
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}
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rp = image->data[0];
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gp = image->data[1];
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bp = image->data[2];
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if (count > width)
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count = width;
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if (count > 1)
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width2 = width/(count-1);
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else
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width2 = width;
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k = 0;
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r = colors[0]->red << 16;
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g = colors[0]->green << 16;
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b = colors[0]->blue << 16;
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/* render the first line */
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for (i=1; i<count; i++) {
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dr = ((int)(colors[i]->red - colors[i-1]->red) <<16)/(int)width2;
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dg = ((int)(colors[i]->green - colors[i-1]->green)<<16)/(int)width2;
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db = ((int)(colors[i]->blue - colors[i-1]->blue) <<16)/(int)width2;
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for (j=0; j<width2; j++) {
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*(rp++) = (unsigned char)(r>>16);
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*(gp++) = (unsigned char)(g>>16);
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*(bp++) = (unsigned char)(b>>16);
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r += dr;
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g += dg;
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b += db;
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k++;
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}
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r = colors[i]->red << 16;
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g = colors[i]->green << 16;
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b = colors[i]->blue << 16;
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}
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for (j=k; j<width; j++) {
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*(rp++) = (unsigned char)(r>>16);
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*(gp++) = (unsigned char)(g>>16);
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*(bp++) = (unsigned char)(b>>16);
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}
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/* copy the first line to the other lines */
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for (i=1; i<height; i++) {
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memcpy(&(image->data[0][i*width]), image->data[0], width);
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memcpy(&(image->data[1][i*width]), image->data[1], width);
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memcpy(&(image->data[2][i*width]), image->data[2], width);
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}
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return image;
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}
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static RImage*
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renderMVGradient(unsigned width, unsigned height, RColor **colors, int count)
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{
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int i, j, k;
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unsigned long r, g, b, dr, dg, db;
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RImage *image;
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unsigned char *rp, *gp, *bp;
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unsigned height2;
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assert(count > 2);
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image = RCreateImage(width, height, False);
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if (!image) {
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return NULL;
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}
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rp = image->data[0];
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gp = image->data[1];
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bp = image->data[2];
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if (count > height)
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count = height;
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if (count > 1)
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height2 = height/(count-1);
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else
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height2 = height;
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k = 0;
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r = colors[0]->red << 16;
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g = colors[0]->green << 16;
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b = colors[0]->blue << 16;
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for (i=1; i<count; i++) {
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dr = ((int)(colors[i]->red - colors[i-1]->red) <<16)/(int)height2;
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dg = ((int)(colors[i]->green - colors[i-1]->green)<<16)/(int)height2;
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db = ((int)(colors[i]->blue - colors[i-1]->blue) <<16)/(int)height2;
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for (j=0; j<height2; j++) {
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memset(rp, (unsigned char)(r>>16), width);
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memset(gp, (unsigned char)(g>>16), width);
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memset(bp, (unsigned char)(b>>16), width);
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rp+=width;
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gp+=width;
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bp+=width;
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r += dr;
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g += dg;
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b += db;
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k++;
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}
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r = colors[i]->red << 16;
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g = colors[i]->green << 16;
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b = colors[i]->blue << 16;
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}
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for (j=k; j<height; j++) {
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memset(rp, (unsigned char)(r>>16), width);
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memset(gp, (unsigned char)(g>>16), width);
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memset(bp, (unsigned char)(b>>16), width);
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rp+=width;
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gp+=width;
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bp+=width;
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}
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return image;
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}
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static RImage*
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renderMDGradient(unsigned width, unsigned height, RColor **colors, int count)
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{
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RImage *image, *tmp;
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float a;
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int i, offset;
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assert(count > 2);
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if (width == 1)
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return renderMVGradient(width, height, colors, count);
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else if (height == 1)
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return renderMHGradient(width, height, colors, count);
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image = RCreateImage(width, height, False);
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if (!image) {
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return NULL;
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}
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if (count > width)
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count = width;
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if (count > height)
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count = height;
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if (count > 2)
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tmp = renderMHGradient(2*width-1, 1, colors, count);
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else
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tmp = renderHGradient(2*width-1, 1, colors[0]->red<<8,
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colors[0]->green<<8, colors[0]->blue<<8,
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colors[1]->red<<8, colors[1]->green<<8,
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colors[1]->blue<<8);
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if (!tmp) {
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RDestroyImage(image);
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return NULL;
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}
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a = ((float)(width - 1))/((float)(height - 1));
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/* copy the first line to the other lines with corresponding offset */
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for (i=0; i<height; i++) {
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offset = (int)(a*i+0.5);
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memcpy(&(image->data[0][i*width]), &(tmp->data[0][offset]), width);
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memcpy(&(image->data[1][i*width]), &(tmp->data[1][offset]), width);
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memcpy(&(image->data[2][i*width]), &(tmp->data[2][offset]), width);
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}
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RDestroyImage(tmp);
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return image;
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}
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