Fix formatting
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fa9142b7e4
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d4ac2f613d
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@ -572,176 +572,166 @@ void color_apply_conversion(opj_image_t *image)
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numcomps = image->numcomps;
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if(numcomps != 3)
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{
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fprintf(stderr,"%s:%d:\n\tnumcomps %d not handled. Quitting.\n",
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__FILE__,__LINE__,numcomps);
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return;
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}
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{
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fprintf(stderr,"%s:%d:\n\tnumcomps %d not handled. Quitting.\n",
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__FILE__,__LINE__,numcomps);
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return;
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}
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row = (int*)image->icc_profile_buf;
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enumcs = row[0];
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if(enumcs == 14)// CIELab
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{
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int *L, *a, *b, *red, *green, *blue;
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int *src0, *src1, *src2, *dst0, *dst1, *dst2;
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double rl, ol, ra, oa, rb, ob, prec0, prec1, prec2;
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double minL, maxL, mina, maxa, minb, maxb;
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unsigned int default_type;
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unsigned int i, max;
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cmsHPROFILE in, out;
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cmsHTRANSFORM transform;
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cmsUInt16Number RGB[3];
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cmsCIELab Lab;
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{
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int *L, *a, *b, *red, *green, *blue;
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int *src0, *src1, *src2, *dst0, *dst1, *dst2;
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double rl, ol, ra, oa, rb, ob, prec0, prec1, prec2;
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double minL, maxL, mina, maxa, minb, maxb;
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unsigned int default_type;
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unsigned int i, max;
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cmsHPROFILE in, out;
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cmsHTRANSFORM transform;
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cmsUInt16Number RGB[3];
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cmsCIELab Lab;
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in = cmsCreateLab4Profile(NULL);
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out = cmsCreate_sRGBProfile();
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in = cmsCreateLab4Profile(NULL);
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out = cmsCreate_sRGBProfile();
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transform =
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cmsCreateTransform(in, TYPE_Lab_DBL, out, TYPE_RGB_16,
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INTENT_PERCEPTUAL, 0);
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transform = cmsCreateTransform(in, TYPE_Lab_DBL, out, TYPE_RGB_16, INTENT_PERCEPTUAL, 0);
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#ifdef HAVE_LIBLCMS2
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cmsCloseProfile(in);
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cmsCloseProfile(out);
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cmsCloseProfile(in);
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cmsCloseProfile(out);
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#endif
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if(transform == NULL)
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{
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if(transform == NULL)
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{
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#ifdef HAVE_LIBLCMS1
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cmsCloseProfile(in);
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cmsCloseProfile(out);
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cmsCloseProfile(in);
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cmsCloseProfile(out);
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#endif
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return;
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}
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prec0 = (double)image->comps[0].prec;
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prec1 = (double)image->comps[1].prec;
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prec2 = (double)image->comps[2].prec;
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return;
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}
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prec0 = (double)image->comps[0].prec;
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prec1 = (double)image->comps[1].prec;
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prec2 = (double)image->comps[2].prec;
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default_type = row[1];
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default_type = row[1];
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if(default_type == 0x44454600)// DEF : default
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{
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rl = 100; ra = 170; rb = 200;
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ol = 0;
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oa = pow(2, prec1 - 1);
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ob = pow(2, prec2 - 2) + pow(2, prec2 - 3);
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}
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else
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{
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rl = row[2]; ra = row[4]; rb = row[6];
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ol = row[3]; oa = row[5]; ob = row[7];
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}
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L = src0 = image->comps[0].data;
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a = src1 = image->comps[1].data;
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b = src2 = image->comps[2].data;
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if(default_type == 0x44454600)// DEF : default
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{
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rl = 100; ra = 170; rb = 200;
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ol = 0;
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oa = pow(2, prec1 - 1);
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ob = pow(2, prec2 - 2) + pow(2, prec2 - 3);
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}
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else
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{
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rl = row[2]; ra = row[4]; rb = row[6];
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ol = row[3]; oa = row[5]; ob = row[7];
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}
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max = image->comps[0].w * image->comps[0].h;
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L = src0 = image->comps[0].data;
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a = src1 = image->comps[1].data;
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b = src2 = image->comps[2].data;
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red = dst0 = (int*)malloc(max * sizeof(int));
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green = dst1 = (int*)malloc(max * sizeof(int));
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blue = dst2 = (int*)malloc(max * sizeof(int));
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max = image->comps[0].w * image->comps[0].h;
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minL = -(rl * ol)/(pow(2, prec0)-1);
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maxL = minL + rl;
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red = dst0 = (int*)malloc(max * sizeof(int));
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green = dst1 = (int*)malloc(max * sizeof(int));
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blue = dst2 = (int*)malloc(max * sizeof(int));
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mina = -(ra * oa)/(pow(2, prec1)-1);
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maxa = mina + ra;
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minL = -(rl * ol)/(pow(2, prec0)-1);
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maxL = minL + rl;
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minb = -(rb * ob)/(pow(2, prec2)-1);
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maxb = minb + rb;
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mina = -(ra * oa)/(pow(2, prec1)-1);
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maxa = mina + ra;
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for(i = 0; i < max; ++i)
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{
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Lab.L = minL + (double)(*L) * (maxL - minL)/(pow(2, prec0)-1); ++L;
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Lab.a = mina + (double)(*a) * (maxa - mina)/(pow(2, prec1)-1); ++a;
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Lab.b = minb + (double)(*b) * (maxb - minb)/(pow(2, prec2)-1); ++b;
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minb = -(rb * ob)/(pow(2, prec2)-1);
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maxb = minb + rb;
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cmsDoTransform(transform, &Lab, RGB, 1);
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for(i = 0; i < max; ++i)
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{
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Lab.L = minL + (double)(*L) * (maxL - minL)/(pow(2, prec0)-1); ++L;
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Lab.a = mina + (double)(*a) * (maxa - mina)/(pow(2, prec1)-1); ++a;
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Lab.b = minb + (double)(*b) * (maxb - minb)/(pow(2, prec2)-1); ++b;
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*red++ = RGB[0];
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*green++ = RGB[1];
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*blue++ = RGB[2];
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}
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cmsDeleteTransform(transform);
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cmsDoTransform(transform, &Lab, RGB, 1);
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*red++ = RGB[0];
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*green++ = RGB[1];
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*blue++ = RGB[2];
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}
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cmsDeleteTransform(transform);
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#ifdef HAVE_LIBLCMS1
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cmsCloseProfile(in);
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cmsCloseProfile(out);
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cmsCloseProfile(in);
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cmsCloseProfile(out);
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#endif
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free(src0); image->comps[0].data = dst0;
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free(src1); image->comps[1].data = dst1;
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free(src2); image->comps[2].data = dst2;
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free(src0); image->comps[0].data = dst0;
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free(src1); image->comps[1].data = dst1;
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free(src2); image->comps[2].data = dst2;
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image->color_space = OPJ_CLRSPC_SRGB;
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image->comps[0].prec = 16;
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image->comps[1].prec = 16;
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image->comps[2].prec = 16;
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image->color_space = OPJ_CLRSPC_SRGB;
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image->comps[0].prec = 16;
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image->comps[1].prec = 16;
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image->comps[2].prec = 16;
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return;
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}
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fprintf(stderr,"%s:%d:\n\tenumCS %d not handled. Ignoring.\n",
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__FILE__,__LINE__, enumcs);
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return;
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}
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fprintf(stderr,"%s:%d:\n\tenumCS %d not handled. Ignoring.\n", __FILE__,__LINE__, enumcs);
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}// color_apply_conversion()
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#endif // HAVE_LIBLCMS2 || HAVE_LIBLCMS1
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void color_cmyk_to_rgb(opj_image_t *image)
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{
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int *R, *G, *B, *dst0, *dst1, *dst2;
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int *sc, *sm, *sy, *sk, *src0, *src1, *src2, *src3;
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float C, M, Y, K;
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unsigned int w, h, max, prec, len, i;
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float sC, sM, sY, sK;
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unsigned int w, h, max, i;
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w = image->comps[0].w;
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h = image->comps[0].h;
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prec = image->comps[0].prec;
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if(prec != 8) return;
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if(image->numcomps != 4) return;
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if(image->numcomps < 4) return;
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max = w * h;
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len = max * sizeof(int);
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R = dst0 = (int*)malloc(len);
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G = dst1 = (int*)malloc(len);
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B = dst2 = (int*)malloc(len);
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sc = src0 = image->comps[0].data;
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sm = src1 = image->comps[1].data;
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sy = src2 = image->comps[2].data;
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sk = src3 = image->comps[3].data;
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sC = 1.0F / (float)((1 << image->comps[0].prec) - 1);
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sM = 1.0F / (float)((1 << image->comps[1].prec) - 1);
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sY = 1.0F / (float)((1 << image->comps[2].prec) - 1);
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sK = 1.0F / (float)((1 << image->comps[3].prec) - 1);
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for(i = 0; i < max; ++i)
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{
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// CMYK and CMY values from 0 to 1
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//
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C = (float)(*sc++)/(float)255.;
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M = (float)(*sm++)/(float)255;
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Y = (float)(*sy++)/(float)255;
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K = (float)(*sk++)/(float)255;
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{
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/* CMYK values from 0 to 1 */
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C = (float)(image->comps[0].data[i]) * sC;
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M = (float)(image->comps[1].data[i]) * sM;
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Y = (float)(image->comps[2].data[i]) * sY;
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K = (float)(image->comps[3].data[i]) * sK;
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// CMYK -> CMY
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//
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C = ( C * ( (float)1. - K ) + K );
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M = ( M * ( (float)1. - K ) + K );
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Y = ( Y * ( (float)1. - K ) + K );
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/* Invert all CMYK values */
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C = 1.0F - C;
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M = 1.0F - M;
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Y = 1.0F - Y;
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K = 1.0F - K;
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// CMY -> RGB : RGB results from 0 to 255
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//
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*R++ = (int)(unsigned char)(( (float)1. - C ) * (float)255.);
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*G++ = (int)(unsigned char)(( (float)1. - M ) * (float)255.);
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*B++ = (int)(unsigned char)(( (float)1. - Y ) * (float)255.);
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}
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/* CMYK -> RGB : RGB results from 0 to 255 */
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image->comps[0].data[i] = (int)(255.0F * C * K); /* R */
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image->comps[1].data[i] = (int)(255.0F * M * K); /* G */
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image->comps[2].data[i] = (int)(255.0F * Y * K); /* B */
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}
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free(src0); image->comps[0].data = dst0;
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free(src1); image->comps[1].data = dst1;
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free(src2); image->comps[2].data = dst2;
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free(src3); image->comps[3].data = NULL;
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image->numcomps = 3;
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free(image->comps[3].data); image->comps[3].data = NULL;
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image->comps[0].prec = 8;
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image->comps[1].prec = 8;
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image->comps[2].prec = 8;
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image->numcomps -= 1;
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image->color_space = OPJ_CLRSPC_SRGB;
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for (i = 3; i < image->numcomps; ++i) {
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memcpy(&(image->comps[i]), &(image->comps[i+1]), sizeof(image->comps[i]));
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}
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}// color_cmyk_to_rgb()
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//
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@ -749,66 +739,50 @@ void color_cmyk_to_rgb(opj_image_t *image)
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//
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void color_esycc_to_rgb(opj_image_t *image)
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{
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int *s0, *s1, *s2, *src0, *src1, *src2;
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int *r, *g, *b, *dst0, *dst1, *dst2;
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int y, cb, cr, sign1, sign2, val;
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unsigned int w, h, max, i;
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int flip_value = (1 << (image->comps[0].prec-1));
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int y, cb, cr, sign1, sign2, val;
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unsigned int w, h, max, i;
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int flip_value = (1 << (image->comps[0].prec-1));
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int max_value = (~(-1 << image->comps[0].prec));
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if(image->numcomps != 3) return;
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if(image->numcomps < 3) return;
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w = image->comps[0].w;
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h = image->comps[0].h;
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w = image->comps[0].w;
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h = image->comps[0].h;
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s0 = src0 = image->comps[0].data;
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s1 = src1 = image->comps[1].data;
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s2 = src2 = image->comps[2].data;
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sign1 = image->comps[1].sgnd;
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sign2 = image->comps[2].sgnd;
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sign1 = image->comps[1].sgnd;
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sign2 = image->comps[2].sgnd;
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max = w * h;
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max = w * h;
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for(i = 0; i < max; ++i)
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{
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r = dst0 = (int*)malloc(max * sizeof(int));
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g = dst1 = (int*)malloc(max * sizeof(int));
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b = dst2 = (int*)malloc(max * sizeof(int));
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y = image->comps[0].data[i]; cb = image->comps[1].data[i]; cr = image->comps[2].data[i];
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for(i = 0; i < max; ++i)
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{
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if( !sign1) cb -= flip_value;
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if( !sign2) cr -= flip_value;
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y = *s0++; cb = *s1++; cr = *s2++;
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val = (int)
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((float)y - (float)0.0000368 * (float)cb
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+ (float)1.40199 * (float)cr + (float)0.5);
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if( !sign1) cb -= flip_value;
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if( !sign2) cr -= flip_value;
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if(val > max_value) val = max_value; else if(val < 0) val = 0;
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image->comps[0].data[i] = val;
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val = (int)
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((float)y - (float)0.0000368 * (float)cb
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+ (float)1.40199 * (float)cr + (float)0.5);
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val = (int)
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((float)1.0003 * (float)y - (float)0.344125 * (float)cb
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- (float)0.7141128 * (float)cr + (float)0.5);
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if(val > max_value) val = max_value; else if(val < 0) val = 0;
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*r++ = val;
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if(val > max_value) val = max_value; else if(val < 0) val = 0;
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image->comps[1].data[i] = val;
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val = (int)
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((float)1.0003 * (float)y - (float)0.344125 * (float)cb
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- (float)0.7141128 * (float)cr + (float)0.5);
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val = (int)
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((float)0.999823 * (float)y + (float)1.77204 * (float)cb
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- (float)0.000008 *(float)cr + (float)0.5);
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if(val > max_value) val = max_value; else if(val < 0) val = 0;
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*g++ = val;
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val = (int)
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((float)0.999823 * (float)y + (float)1.77204 * (float)cb
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- (float)0.000008 *(float)cr + (float)0.5);
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if(val > max_value) val = max_value; else if(val < 0) val = 0;
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*b++ = val;
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}
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free(src0); image->comps[0].data = dst0;
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free(src1); image->comps[1].data = dst1;
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free(src2); image->comps[2].data = dst2;
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image->numcomps = 3;
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if(val > max_value) val = max_value; else if(val < 0) val = 0;
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image->comps[2].data[i] = val;
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}
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image->color_space = OPJ_CLRSPC_SRGB;
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}// color_esycc_to_rgb()
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