11ab64890Smrg 21ab64890Smrg/* 31ab64890Smrg * Code and supporting documentation (c) Copyright 1990 1991 Tektronix, Inc. 41ab64890Smrg * All Rights Reserved 561b2299dSmrg * 61ab64890Smrg * This file is a component of an X Window System-specific implementation 71ab64890Smrg * of Xcms based on the TekColor Color Management System. TekColor is a 81ab64890Smrg * trademark of Tektronix, Inc. The term "TekHVC" designates a particular 91ab64890Smrg * color space that is the subject of U.S. Patent No. 4,985,853 (equivalent 101ab64890Smrg * foreign patents pending). Permission is hereby granted to use, copy, 111ab64890Smrg * modify, sell, and otherwise distribute this software and its 121ab64890Smrg * documentation for any purpose and without fee, provided that: 1361b2299dSmrg * 141ab64890Smrg * 1. This copyright, permission, and disclaimer notice is reproduced in 151ab64890Smrg * all copies of this software and any modification thereof and in 1661b2299dSmrg * supporting documentation; 171ab64890Smrg * 2. Any color-handling application which displays TekHVC color 181ab64890Smrg * cooordinates identifies these as TekHVC color coordinates in any 191ab64890Smrg * interface that displays these coordinates and in any associated 201ab64890Smrg * documentation; 211ab64890Smrg * 3. The term "TekHVC" is always used, and is only used, in association 221ab64890Smrg * with the mathematical derivations of the TekHVC Color Space, 231ab64890Smrg * including those provided in this file and any equivalent pathways and 241ab64890Smrg * mathematical derivations, regardless of digital (e.g., floating point 251ab64890Smrg * or integer) representation. 2661b2299dSmrg * 271ab64890Smrg * Tektronix makes no representation about the suitability of this software 281ab64890Smrg * for any purpose. It is provided "as is" and with all faults. 2961b2299dSmrg * 301ab64890Smrg * TEKTRONIX DISCLAIMS ALL WARRANTIES APPLICABLE TO THIS SOFTWARE, 311ab64890Smrg * INCLUDING THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A 321ab64890Smrg * PARTICULAR PURPOSE. IN NO EVENT SHALL TEKTRONIX BE LIABLE FOR ANY 331ab64890Smrg * SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER 341ab64890Smrg * RESULTING FROM LOSS OF USE, DATA, OR PROFITS, WHETHER IN AN ACTION OF 351ab64890Smrg * CONTRACT, NEGLIGENCE, OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN 361ab64890Smrg * CONNECTION WITH THE USE OR THE PERFORMANCE OF THIS SOFTWARE. 371ab64890Smrg * 381ab64890Smrg * NAME 391ab64890Smrg * TekHVC.c 401ab64890Smrg * 411ab64890Smrg * DESCRIPTION 421ab64890Smrg * This file contains routines that support the TekHVC 431ab64890Smrg * color space to include conversions to and from the CIE 441ab64890Smrg * XYZ space. 451ab64890Smrg * 461ab64890Smrg * DOCUMENTATION 471ab64890Smrg * "TekColor Color Management System, System Implementor's Manual" 481ab64890Smrg */ 491ab64890Smrg 501ab64890Smrg#ifdef HAVE_CONFIG_H 511ab64890Smrg#include <config.h> 521ab64890Smrg#endif 531ab64890Smrg#include "Xlibint.h" 541ab64890Smrg#include "Xcmsint.h" 551ab64890Smrg#include <X11/Xos.h> 561ab64890Smrg#include <math.h> 571ab64890Smrg#include "Cv.h" 581ab64890Smrg 591ab64890Smrg#include <stdio.h> 601ab64890Smrg 611ab64890Smrg/* 621ab64890Smrg * DEFINES 631ab64890Smrg */ 641ab64890Smrg#define u_BR 0.7127 /* u' Best Red */ 651ab64890Smrg#define v_BR 0.4931 /* v' Best Red */ 661ab64890Smrg#define EPS 0.001 671ab64890Smrg#define CHROMA_SCALE_FACTOR 7.50725 681ab64890Smrg#ifndef PI 691ab64890Smrg# ifdef M_PI 701ab64890Smrg# define PI M_PI 711ab64890Smrg# else 721ab64890Smrg# define PI 3.14159265358979323846264338327950 731ab64890Smrg# endif 741ab64890Smrg#endif 751ab64890Smrg#ifndef degrees 761ab64890Smrg# define degrees(r) ((XcmsFloat)(r) * 180.0 / PI) 771ab64890Smrg#endif /* degrees */ 781ab64890Smrg#ifndef radians 791ab64890Smrg# define radians(d) ((XcmsFloat)(d) * PI / 180.0) 801ab64890Smrg#endif /* radians */ 811ab64890Smrg 821ab64890Smrg/************************************************************************* 831ab64890Smrg * Note: The DBL_EPSILON for ANSI is 1e-5 so my checks need to take 841ab64890Smrg * this into account. If your DBL_EPSILON is different then 8561b2299dSmrg * adjust this define. 861ab64890Smrg * 871ab64890Smrg * Also note that EPS is the error factor in the calculations 881ab64890Smrg * This may need to be the same as XMY_DBL_EPSILON in 891ab64890Smrg * some implementations. 901ab64890Smrg **************************************************************************/ 911ab64890Smrg#ifdef DBL_EPSILON 921ab64890Smrg# define XMY_DBL_EPSILON DBL_EPSILON 931ab64890Smrg#else 941ab64890Smrg# define XMY_DBL_EPSILON 0.00001 951ab64890Smrg#endif 961ab64890Smrg 971ab64890Smrg/* 981ab64890Smrg * FORWARD DECLARATIONS 991ab64890Smrg */ 1001ab64890Smrgstatic int TekHVC_ParseString(register char *spec, XcmsColor *pColor); 1011ab64890Smrgstatic Status XcmsTekHVC_ValidSpec(XcmsColor *pColor); 1021ab64890Smrg 1031ab64890Smrg/* 1041ab64890Smrg * LOCAL VARIABLES 1051ab64890Smrg */ 1061ab64890Smrg 1071ab64890Smrg /* 1081ab64890Smrg * NULL terminated list of functions applied to get from TekHVC to CIEXYZ 1091ab64890Smrg */ 1101ab64890Smrgstatic XcmsConversionProc Fl_TekHVC_to_CIEXYZ[] = { 1111ab64890Smrg XcmsTekHVCToCIEuvY, 1121ab64890Smrg XcmsCIEuvYToCIEXYZ, 1131ab64890Smrg NULL 1141ab64890Smrg}; 1151ab64890Smrg 1161ab64890Smrg /* 1171ab64890Smrg * NULL terminated list of functions applied to get from CIEXYZ to TekHVC 1181ab64890Smrg */ 1191ab64890Smrgstatic XcmsConversionProc Fl_CIEXYZ_to_TekHVC[] = { 1201ab64890Smrg XcmsCIEXYZToCIEuvY, 1211ab64890Smrg XcmsCIEuvYToTekHVC, 1221ab64890Smrg NULL 1231ab64890Smrg}; 1241ab64890Smrg 1251ab64890Smrg/* 1261ab64890Smrg * GLOBALS 1271ab64890Smrg */ 1281ab64890Smrg 1291ab64890Smrg /* 1301ab64890Smrg * TekHVC Color Space 1311ab64890Smrg */ 1321ab64890SmrgXcmsColorSpace XcmsTekHVCColorSpace = 1331ab64890Smrg { 1341ab64890Smrg _XcmsTekHVC_prefix, /* prefix */ 1351ab64890Smrg XcmsTekHVCFormat, /* id */ 1361ab64890Smrg TekHVC_ParseString, /* parseString */ 1371ab64890Smrg Fl_TekHVC_to_CIEXYZ, /* to_CIEXYZ */ 1381ab64890Smrg Fl_CIEXYZ_to_TekHVC, /* from_CIEXYZ */ 1391ab64890Smrg 1 1401ab64890Smrg }; 1411ab64890Smrg 1421ab64890Smrg 1431ab64890Smrg 1441ab64890Smrg 1451ab64890Smrg/************************************************************************ 1461ab64890Smrg * * 1471ab64890Smrg * PRIVATE ROUTINES * 1481ab64890Smrg * * 1491ab64890Smrg ************************************************************************/ 1501ab64890Smrg 1511ab64890Smrg/* 1521ab64890Smrg * NAME 1531ab64890Smrg * TekHVC_ParseString 1541ab64890Smrg * 1551ab64890Smrg * SYNOPSIS 1561ab64890Smrg */ 1571ab64890Smrgstatic int 1581ab64890SmrgTekHVC_ParseString( 1591ab64890Smrg register char *spec, 1601ab64890Smrg XcmsColor *pColor) 1611ab64890Smrg/* 1621ab64890Smrg * DESCRIPTION 1631ab64890Smrg * This routines takes a string and attempts to convert 1641ab64890Smrg * it into a XcmsColor structure with XcmsTekHVCFormat. 1651ab64890Smrg * The assumed TekHVC string syntax is: 1661ab64890Smrg * TekHVC:<H>/<V>/<C> 1671ab64890Smrg * Where H, V, and C are in string input format for floats 1681ab64890Smrg * consisting of: 1691ab64890Smrg * a. an optional sign 1701ab64890Smrg * b. a string of numbers possibly containing a decimal point, 1711ab64890Smrg * c. an optional exponent field containing an 'E' or 'e' 1721ab64890Smrg * followed by a possibly signed integer string. 1731ab64890Smrg * 1741ab64890Smrg * RETURNS 1751ab64890Smrg * XcmsFailure if invalid; 1761ab64890Smrg * XcmsSuccess if valid. 1771ab64890Smrg */ 1781ab64890Smrg{ 1792d67cb4fSmrg size_t n; 1801ab64890Smrg char *pchar; 1811ab64890Smrg 1821ab64890Smrg if ((pchar = strchr(spec, ':')) == NULL) { 1831ab64890Smrg return(XcmsFailure); 1841ab64890Smrg } 1852d67cb4fSmrg n = (size_t)(pchar - spec); 1861ab64890Smrg 1871ab64890Smrg /* 1881ab64890Smrg * Check for proper prefix. 1891ab64890Smrg */ 1901ab64890Smrg if (strncmp(spec, _XcmsTekHVC_prefix, n) != 0) { 1911ab64890Smrg return(XcmsFailure); 1921ab64890Smrg } 1931ab64890Smrg 1941ab64890Smrg /* 1951ab64890Smrg * Attempt to parse the value portion. 1961ab64890Smrg */ 1971ab64890Smrg if (sscanf(spec + n + 1, "%lf/%lf/%lf", 1981ab64890Smrg &pColor->spec.TekHVC.H, 1991ab64890Smrg &pColor->spec.TekHVC.V, 2001ab64890Smrg &pColor->spec.TekHVC.C) != 3) { 2011ab64890Smrg char *s; /* Maybe failed due to locale */ 2021ab64890Smrg int f; 2031ab64890Smrg if ((s = strdup(spec))) { 2041ab64890Smrg for (f = 0; s[f]; ++f) 2051ab64890Smrg if (s[f] == '.') 2061ab64890Smrg s[f] = ','; 2071ab64890Smrg else if (s[f] == ',') 2081ab64890Smrg s[f] = '.'; 2091ab64890Smrg if (sscanf(s + n + 1, "%lf/%lf/%lf", 2101ab64890Smrg &pColor->spec.TekHVC.H, 2111ab64890Smrg &pColor->spec.TekHVC.V, 2121ab64890Smrg &pColor->spec.TekHVC.C) != 3) { 2131ab64890Smrg free(s); 2141ab64890Smrg return(XcmsFailure); 2151ab64890Smrg } 2161ab64890Smrg free(s); 2171ab64890Smrg } else 2181ab64890Smrg return(XcmsFailure); 2191ab64890Smrg } 2201ab64890Smrg pColor->format = XcmsTekHVCFormat; 2211ab64890Smrg pColor->pixel = 0; 2221ab64890Smrg return(XcmsTekHVC_ValidSpec(pColor)); 2231ab64890Smrg} 2241ab64890Smrg 2251ab64890Smrg 2261ab64890Smrg/* 2271ab64890Smrg * NAME 2281ab64890Smrg * ThetaOffset -- compute thetaOffset 2291ab64890Smrg * 2301ab64890Smrg * SYNOPSIS 2311ab64890Smrg */ 2321ab64890Smrgstatic int 2331ab64890SmrgThetaOffset( 2341ab64890Smrg XcmsColor *pWhitePt, 2351ab64890Smrg XcmsFloat *pThetaOffset) 2361ab64890Smrg/* 2371ab64890Smrg * DESCRIPTION 2381ab64890Smrg * This routine computes the theta offset of a given 2391ab64890Smrg * white point, i.e. XcmsColor. It is used in both this 2401ab64890Smrg * conversion and the printer conversions. 2411ab64890Smrg * 2421ab64890Smrg * RETURNS 2431ab64890Smrg * 0 if failed. 2441ab64890Smrg * 1 if succeeded with no modifications. 2451ab64890Smrg * 2461ab64890Smrg * ASSUMPTIONS 2471ab64890Smrg * Assumes: 2481ab64890Smrg * pWhitePt != NULL 2491ab64890Smrg * pWhitePt->format == XcmsCIEuvYFormat 2501ab64890Smrg * 2511ab64890Smrg */ 2521ab64890Smrg{ 2531ab64890Smrg double div, slopeuv; 2541ab64890Smrg 2551ab64890Smrg if (pWhitePt == NULL || pWhitePt->format != XcmsCIEuvYFormat) { 2561ab64890Smrg return(0); 2571ab64890Smrg } 2581ab64890Smrg 2591ab64890Smrg if ((div = u_BR - pWhitePt->spec.CIEuvY.u_prime) == 0.0) { 2601ab64890Smrg return(0); 2611ab64890Smrg } 2621ab64890Smrg slopeuv = (v_BR - pWhitePt->spec.CIEuvY.v_prime) / div; 2631ab64890Smrg *pThetaOffset = degrees(XCMS_ATAN(slopeuv)); 2641ab64890Smrg return(1); 2651ab64890Smrg} 2661ab64890Smrg 2671ab64890Smrg 2681ab64890Smrg 2691ab64890Smrg/************************************************************************ 2701ab64890Smrg * * 2711ab64890Smrg * PUBLIC ROUTINES * 2721ab64890Smrg * * 2731ab64890Smrg ************************************************************************/ 2741ab64890Smrg 2751ab64890Smrg/* 2761ab64890Smrg * NAME 2771ab64890Smrg * XcmsTekHVC_ValidSpec() 2781ab64890Smrg * 2791ab64890Smrg * SYNOPSIS 2801ab64890Smrg */ 2811ab64890Smrgstatic int 2821ab64890SmrgXcmsTekHVC_ValidSpec( 2831ab64890Smrg XcmsColor *pColor) 2841ab64890Smrg/* 2851ab64890Smrg * DESCRIPTION 2861ab64890Smrg * Checks if values in the color specification are valid. 2871ab64890Smrg * Also brings hue into the range 0.0 <= Hue < 360.0 2881ab64890Smrg * 2891ab64890Smrg * RETURNS 2901ab64890Smrg * 0 if not valid. 2911ab64890Smrg * 1 if valid. 2921ab64890Smrg * 2931ab64890Smrg */ 2941ab64890Smrg{ 2951ab64890Smrg if (pColor->format != XcmsTekHVCFormat) { 2961ab64890Smrg return(XcmsFailure); 2971ab64890Smrg } 2981ab64890Smrg if (pColor->spec.TekHVC.V < (0.0 - XMY_DBL_EPSILON) 2991ab64890Smrg || pColor->spec.TekHVC.V > (100.0 + XMY_DBL_EPSILON) 3001ab64890Smrg || (pColor->spec.TekHVC.C < 0.0 - XMY_DBL_EPSILON)) { 3011ab64890Smrg return(XcmsFailure); 3021ab64890Smrg } 3031ab64890Smrg 3041ab64890Smrg if (pColor->spec.TekHVC.V < 0.0) { 3051ab64890Smrg pColor->spec.TekHVC.V = 0.0 + XMY_DBL_EPSILON; 3061ab64890Smrg } else if (pColor->spec.TekHVC.V > 100.0) { 3071ab64890Smrg pColor->spec.TekHVC.V = 100.0 - XMY_DBL_EPSILON; 3081ab64890Smrg } 3091ab64890Smrg 3101ab64890Smrg if (pColor->spec.TekHVC.C < 0.0) { 3111ab64890Smrg pColor->spec.TekHVC.C = 0.0 - XMY_DBL_EPSILON; 3121ab64890Smrg } 3131ab64890Smrg 3141ab64890Smrg while (pColor->spec.TekHVC.H < 0.0) { 3151ab64890Smrg pColor->spec.TekHVC.H += 360.0; 3161ab64890Smrg } 3171ab64890Smrg while (pColor->spec.TekHVC.H >= 360.0) { 3181ab64890Smrg pColor->spec.TekHVC.H -= 360.0; 31961b2299dSmrg } 3201ab64890Smrg return(XcmsSuccess); 3211ab64890Smrg} 3221ab64890Smrg 3231ab64890Smrg/* 3241ab64890Smrg * NAME 3251ab64890Smrg * XcmsTekHVCToCIEuvY - convert TekHVC to CIEuvY 3261ab64890Smrg * 3271ab64890Smrg * SYNOPSIS 3281ab64890Smrg */ 3291ab64890SmrgStatus 3301ab64890SmrgXcmsTekHVCToCIEuvY( 3311ab64890Smrg XcmsCCC ccc, 3321ab64890Smrg XcmsColor *pHVC_WhitePt, 3331ab64890Smrg XcmsColor *pColors_in_out, 3341ab64890Smrg unsigned int nColors) 3351ab64890Smrg/* 3361ab64890Smrg * DESCRIPTION 3371ab64890Smrg * Transforms an array of TekHVC color specifications, given 3381ab64890Smrg * their associated white point, to CIECIEuvY.color 3391ab64890Smrg * specifications. 3401ab64890Smrg * 3411ab64890Smrg * RETURNS 3421ab64890Smrg * XcmsFailure if failed, XcmsSuccess otherwise. 3431ab64890Smrg * 3441ab64890Smrg */ 3451ab64890Smrg{ 3461ab64890Smrg XcmsFloat thetaOffset; 3471ab64890Smrg XcmsColor *pColor = pColors_in_out; 3481ab64890Smrg XcmsColor whitePt; 3491ab64890Smrg XcmsCIEuvY uvY_return; 3501ab64890Smrg XcmsFloat tempHue, u, v; 3511ab64890Smrg XcmsFloat tmpVal; 3522d67cb4fSmrg unsigned int i; 3531ab64890Smrg 3541ab64890Smrg /* 3551ab64890Smrg * Check arguments 3561ab64890Smrg */ 3571ab64890Smrg if (pHVC_WhitePt == NULL || pColors_in_out == NULL) { 3581ab64890Smrg return(XcmsFailure); 3591ab64890Smrg } 3601ab64890Smrg 3611ab64890Smrg /* 3621ab64890Smrg * Make sure white point is in CIEuvY form 3631ab64890Smrg */ 3641ab64890Smrg if (pHVC_WhitePt->format != XcmsCIEuvYFormat) { 3651ab64890Smrg /* Make copy of the white point because we're going to modify it */ 3661ab64890Smrg memcpy((char *)&whitePt, (char *)pHVC_WhitePt, sizeof(XcmsColor)); 3671ab64890Smrg if (!_XcmsDIConvertColors(ccc, &whitePt, (XcmsColor *)NULL, 1, 3681ab64890Smrg XcmsCIEuvYFormat)) { 3691ab64890Smrg return(XcmsFailure); 3701ab64890Smrg } 3711ab64890Smrg pHVC_WhitePt = &whitePt; 3721ab64890Smrg } 3731ab64890Smrg /* Make sure it is a white point, i.e., Y == 1.0 */ 3741ab64890Smrg if (pHVC_WhitePt->spec.CIEuvY.Y != 1.0) { 3751ab64890Smrg return(XcmsFailure); 3761ab64890Smrg } 3771ab64890Smrg 3781ab64890Smrg /* Get the thetaOffset */ 3791ab64890Smrg if (!ThetaOffset(pHVC_WhitePt, &thetaOffset)) { 3801ab64890Smrg return(XcmsFailure); 3811ab64890Smrg } 3821ab64890Smrg 3831ab64890Smrg /* 3841ab64890Smrg * Now convert each XcmsColor structure to CIEXYZ form 3851ab64890Smrg */ 3861ab64890Smrg for (i = 0; i < nColors; i++, pColor++) { 3871ab64890Smrg 3881ab64890Smrg /* Make sure original format is TekHVC and is valid */ 3891ab64890Smrg if (!XcmsTekHVC_ValidSpec(pColor)) { 3901ab64890Smrg return(XcmsFailure); 3911ab64890Smrg } 3921ab64890Smrg 3931ab64890Smrg if (pColor->spec.TekHVC.V == 0.0 || pColor->spec.TekHVC.V == 100.0) { 3941ab64890Smrg if (pColor->spec.TekHVC.V == 100.0) { 3951ab64890Smrg uvY_return.Y = 1.0; 3961ab64890Smrg } else { /* pColor->spec.TekHVC.V == 0.0 */ 3971ab64890Smrg uvY_return.Y = 0.0; 3981ab64890Smrg } 3991ab64890Smrg uvY_return.u_prime = pHVC_WhitePt->spec.CIEuvY.u_prime; 4001ab64890Smrg uvY_return.v_prime = pHVC_WhitePt->spec.CIEuvY.v_prime; 4011ab64890Smrg } else { 4021ab64890Smrg 4031ab64890Smrg /* Find the hue based on the white point offset */ 4041ab64890Smrg tempHue = pColor->spec.TekHVC.H + thetaOffset; 4051ab64890Smrg 4061ab64890Smrg while (tempHue < 0.0) { 4071ab64890Smrg tempHue += 360.0; 4081ab64890Smrg } 4091ab64890Smrg while (tempHue >= 360.0) { 4101ab64890Smrg tempHue -= 360.0; 4111ab64890Smrg } 4121ab64890Smrg 4131ab64890Smrg tempHue = radians(tempHue); 4141ab64890Smrg 4151ab64890Smrg /* Calculate u'v' for the obtained hue */ 41661b2299dSmrg u = (XcmsFloat) ((XCMS_COS(tempHue) * pColor->spec.TekHVC.C) / 4171ab64890Smrg (pColor->spec.TekHVC.V * (double)CHROMA_SCALE_FACTOR)); 41861b2299dSmrg v = (XcmsFloat) ((XCMS_SIN(tempHue) * pColor->spec.TekHVC.C) / 4191ab64890Smrg (pColor->spec.TekHVC.V * (double)CHROMA_SCALE_FACTOR)); 4201ab64890Smrg 4211ab64890Smrg /* Based on the white point get the offset from best red */ 4221ab64890Smrg uvY_return.u_prime = u + pHVC_WhitePt->spec.CIEuvY.u_prime; 4231ab64890Smrg uvY_return.v_prime = v + pHVC_WhitePt->spec.CIEuvY.v_prime; 4241ab64890Smrg 4251ab64890Smrg /* Calculate the Y value based on the L* = V. */ 4261ab64890Smrg if (pColor->spec.TekHVC.V < 7.99953624) { 4271ab64890Smrg uvY_return.Y = pColor->spec.TekHVC.V / 903.29; 4281ab64890Smrg } else { 4291ab64890Smrg tmpVal = (pColor->spec.TekHVC.V + 16.0) / 116.0; 4301ab64890Smrg uvY_return.Y = tmpVal * tmpVal * tmpVal; /* tmpVal ** 3 */ 4311ab64890Smrg } 4321ab64890Smrg } 4331ab64890Smrg 4341ab64890Smrg /* Copy result to pColor */ 4351ab64890Smrg memcpy((char *)&pColor->spec, (char *)&uvY_return, sizeof(XcmsCIEuvY)); 4361ab64890Smrg 4371ab64890Smrg /* Identify that the format is now CIEuvY */ 4381ab64890Smrg pColor->format = XcmsCIEuvYFormat; 4391ab64890Smrg } 4401ab64890Smrg return(XcmsSuccess); 4411ab64890Smrg} 4421ab64890Smrg 4431ab64890Smrg 4441ab64890Smrg/* 4451ab64890Smrg * NAME 4461ab64890Smrg * XcmsCIEuvYToTekHVC - convert CIEuvY to TekHVC 4471ab64890Smrg * 4481ab64890Smrg * SYNOPSIS 4491ab64890Smrg */ 4501ab64890SmrgStatus 4511ab64890SmrgXcmsCIEuvYToTekHVC( 4521ab64890Smrg XcmsCCC ccc, 4531ab64890Smrg XcmsColor *pHVC_WhitePt, 4541ab64890Smrg XcmsColor *pColors_in_out, 4551ab64890Smrg unsigned int nColors) 4561ab64890Smrg/* 4571ab64890Smrg * DESCRIPTION 4581ab64890Smrg * Transforms an array of CIECIEuvY.color specifications, given 4591ab64890Smrg * their assiciated white point, to TekHVC specifications. 4601ab64890Smrg * 4611ab64890Smrg * RETURNS 4621ab64890Smrg * XcmsFailure if failed, XcmsSuccess otherwise. 4631ab64890Smrg * 4641ab64890Smrg */ 4651ab64890Smrg{ 4661ab64890Smrg XcmsFloat theta, L2, u, v, nThetaLow, nThetaHigh; 4671ab64890Smrg XcmsFloat thetaOffset; 4681ab64890Smrg XcmsColor *pColor = pColors_in_out; 4691ab64890Smrg XcmsColor whitePt; 4701ab64890Smrg XcmsTekHVC HVC_return; 4712d67cb4fSmrg unsigned int i; 4721ab64890Smrg 4731ab64890Smrg /* 4741ab64890Smrg * Check arguments 4751ab64890Smrg */ 4761ab64890Smrg if (pHVC_WhitePt == NULL || pColors_in_out == NULL) { 4771ab64890Smrg return(XcmsFailure); 4781ab64890Smrg } 4791ab64890Smrg 4801ab64890Smrg /* 4811ab64890Smrg * Make sure white point is in CIEuvY form 4821ab64890Smrg */ 4831ab64890Smrg if (pHVC_WhitePt->format != XcmsCIEuvYFormat) { 4841ab64890Smrg /* Make copy of the white point because we're going to modify it */ 4851ab64890Smrg memcpy((char *)&whitePt, (char *)pHVC_WhitePt, sizeof(XcmsColor)); 4861ab64890Smrg if (!_XcmsDIConvertColors(ccc, &whitePt, (XcmsColor *)NULL, 1, 4871ab64890Smrg XcmsCIEuvYFormat)) { 4881ab64890Smrg return(XcmsFailure); 4891ab64890Smrg } 4901ab64890Smrg pHVC_WhitePt = &whitePt; 4911ab64890Smrg } 4921ab64890Smrg /* Make sure it is a white point, i.e., Y == 1.0 */ 4931ab64890Smrg if (pHVC_WhitePt->spec.CIEuvY.Y != 1.0) { 4941ab64890Smrg return(XcmsFailure); 4951ab64890Smrg } 4961ab64890Smrg if (!ThetaOffset(pHVC_WhitePt, &thetaOffset)) { 4971ab64890Smrg return(XcmsFailure); 4981ab64890Smrg } 4991ab64890Smrg 5001ab64890Smrg /* 5011ab64890Smrg * Now convert each XcmsColor structure to CIEXYZ form 5021ab64890Smrg */ 5031ab64890Smrg for (i = 0; i < nColors; i++, pColor++) { 5041ab64890Smrg if (!_XcmsCIEuvY_ValidSpec(pColor)) { 5051ab64890Smrg return(XcmsFailure); 5061ab64890Smrg } 5071ab64890Smrg 5081ab64890Smrg /* Use the white point offset to determine HVC */ 5091ab64890Smrg u = pColor->spec.CIEuvY.u_prime - pHVC_WhitePt->spec.CIEuvY.u_prime; 5101ab64890Smrg v = pColor->spec.CIEuvY.v_prime - pHVC_WhitePt->spec.CIEuvY.v_prime; 5111ab64890Smrg 5121ab64890Smrg /* Calculate the offset */ 5131ab64890Smrg if (u == 0.0) { 5141ab64890Smrg theta = 0.0; 5151ab64890Smrg } else { 5161ab64890Smrg theta = v / u; 5171ab64890Smrg theta = (XcmsFloat) XCMS_ATAN((double)theta); 5181ab64890Smrg theta = degrees(theta); 5191ab64890Smrg } 5201ab64890Smrg 5211ab64890Smrg nThetaLow = 0.0; 5221ab64890Smrg nThetaHigh = 360.0; 5231ab64890Smrg if (u > 0.0 && v > 0.0) { 5241ab64890Smrg nThetaLow = 0.0; 5251ab64890Smrg nThetaHigh = 90.0; 5261ab64890Smrg } else if (u < 0.0 && v > 0.0) { 5271ab64890Smrg nThetaLow = 90.0; 5281ab64890Smrg nThetaHigh = 180.0; 5291ab64890Smrg } else if (u < 0.0 && v < 0.0) { 5301ab64890Smrg nThetaLow = 180.0; 5311ab64890Smrg nThetaHigh = 270.0; 5321ab64890Smrg } else if (u > 0.0 && v < 0.0) { 5331ab64890Smrg nThetaLow = 270.0; 5341ab64890Smrg nThetaHigh = 360.0; 5351ab64890Smrg } 5361ab64890Smrg while (theta < nThetaLow) { 5371ab64890Smrg theta += 90.0; 5381ab64890Smrg } 5391ab64890Smrg while (theta >= nThetaHigh) { 5401ab64890Smrg theta -= 90.0; 5411ab64890Smrg } 5421ab64890Smrg 5431ab64890Smrg /* calculate the L value from the given Y */ 5441ab64890Smrg L2 = (pColor->spec.CIEuvY.Y < 0.008856) 5451ab64890Smrg ? 5461ab64890Smrg (pColor->spec.CIEuvY.Y * 903.29) 5471ab64890Smrg : 5481ab64890Smrg ((XcmsFloat)(XCMS_CUBEROOT(pColor->spec.CIEuvY.Y) * 116.0) - 16.0); 5491ab64890Smrg HVC_return.C = L2 * CHROMA_SCALE_FACTOR * XCMS_SQRT((double) ((u * u) + (v * v))); 5501ab64890Smrg if (HVC_return.C < 0.0) { 5511ab64890Smrg theta = 0.0; 5521ab64890Smrg } 5531ab64890Smrg HVC_return.V = L2; 5541ab64890Smrg HVC_return.H = theta - thetaOffset; 5551ab64890Smrg 5561ab64890Smrg /* 5571ab64890Smrg * If this is within the error margin let some other routine later 5581ab64890Smrg * in the chain worry about the slop in the calculations. 5591ab64890Smrg */ 5601ab64890Smrg while (HVC_return.H < -EPS) { 5611ab64890Smrg HVC_return.H += 360.0; 5621ab64890Smrg } 5631ab64890Smrg while (HVC_return.H >= 360.0 + EPS) { 5641ab64890Smrg HVC_return.H -= 360.0; 5651ab64890Smrg } 5661ab64890Smrg 5671ab64890Smrg /* Copy result to pColor */ 5681ab64890Smrg memcpy((char *)&pColor->spec, (char *)&HVC_return, sizeof(XcmsTekHVC)); 5691ab64890Smrg 5701ab64890Smrg /* Identify that the format is now CIEuvY */ 5711ab64890Smrg pColor->format = XcmsTekHVCFormat; 5721ab64890Smrg } 5731ab64890Smrg return(XcmsSuccess); 5741ab64890Smrg} 5751ab64890Smrg 5761ab64890Smrg 5771ab64890Smrg/* 5781ab64890Smrg * NAME 5791ab64890Smrg * _XcmsTekHVC_CheckModify 5801ab64890Smrg * 5811ab64890Smrg * SYNOPSIS 5821ab64890Smrg */ 5831ab64890Smrgint 5841ab64890Smrg_XcmsTekHVC_CheckModify( 5851ab64890Smrg XcmsColor *pColor) 5861ab64890Smrg/* 5871ab64890Smrg * DESCRIPTION 5881ab64890Smrg * Checks if values in the color specification are valid. 5891ab64890Smrg * If they are not it modifies the values. 5901ab64890Smrg * Also brings hue into the range 0.0 <= Hue < 360.0 5911ab64890Smrg * 5921ab64890Smrg * RETURNS 5931ab64890Smrg * 0 if not valid. 5941ab64890Smrg * 1 if valid. 5951ab64890Smrg * 5961ab64890Smrg */ 5971ab64890Smrg{ 5981ab64890Smrg int n; 5991ab64890Smrg 6001ab64890Smrg /* For now only use the TekHVC numbers as inputs */ 6011ab64890Smrg if (pColor->format != XcmsTekHVCFormat) { 6021ab64890Smrg return(0); 6031ab64890Smrg } 6041ab64890Smrg 6051ab64890Smrg if (pColor->spec.TekHVC.V < 0.0) { 6061ab64890Smrg pColor->spec.TekHVC.V = 0.0 + XMY_DBL_EPSILON; 6071ab64890Smrg } else if (pColor->spec.TekHVC.V > 100.0) { 6081ab64890Smrg pColor->spec.TekHVC.V = 100.0 - XMY_DBL_EPSILON; 6091ab64890Smrg } 6101ab64890Smrg 6111ab64890Smrg if (pColor->spec.TekHVC.C < 0.0) { 6121ab64890Smrg pColor->spec.TekHVC.C = 0.0 - XMY_DBL_EPSILON; 6131ab64890Smrg } 6141ab64890Smrg 6151ab64890Smrg if (pColor->spec.TekHVC.H < 0.0) { 6161ab64890Smrg n = -pColor->spec.TekHVC.H / 360.0; 6171ab64890Smrg pColor->spec.TekHVC.H += (n + 1) * 360.0; 6181ab64890Smrg if (pColor->spec.TekHVC.H >= 360.0) 6191ab64890Smrg pColor->spec.TekHVC.H -= 360.0; 6201ab64890Smrg } else if (pColor->spec.TekHVC.H >= 360.0) { 6211ab64890Smrg n = pColor->spec.TekHVC.H / 360.0; 6221ab64890Smrg pColor->spec.TekHVC.H -= n * 360.0; 62361b2299dSmrg } 6241ab64890Smrg return(1); 6251ab64890Smrg} 626