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root/radiance/ray/src/rt/m_mist.c
Revision: 2.7
Committed: Wed Jun 5 11:27:33 1996 UTC (27 years, 10 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.6: +4 -0 lines
Log Message:
moved MAXSLIST macro to m_mist.c routine

File Contents

# User Rev Content
1 greg 2.1 /* Copyright (c) 1995 Regents of the University of California */
2    
3     #ifndef lint
4     static char SCCSid[] = "$SunId$ LBL";
5     #endif
6    
7     /*
8     * Mist volumetric material.
9     */
10    
11     #include "ray.h"
12    
13     #include "source.h"
14    
15     /*
16     * A mist volume is used to specify a region in the scene where a certain
17     * light source (or sources) is going to contribute to scattering. The
18     * material can add to the existing global medium, and override any ray
19     * settings for scattering albedo and eccentricity. Overlapping mist
20     * regions should agree w.r.t. albedo and eccentricity, and
21     * should have disjoint source lists.
22     *
23     * A pattern, if used, should compute the line integral of extinction,
24     * and will modify the first three arguments directly. This will tend
25     * to invalidate results when there are other objects intersected within
26     * the mist region.
27     *
28     * The string arguments for MAT_MIST are the identifiers for the important
29     * light sources, which will be looked up in the source array. The last
30     * source found matching a name is the one used. A relayed light source
31     * may be indicated by the relay surface name, followed by a '>' character,
32     * followed by the relayed source name (which may be another relay).
33     *
34     * Up to five real arguments may be given for MAT_MIST:
35     *
36 greg 2.6 * [ext_r ext_g ext_b [albedo_r albedo_g albedo_b [gecc]]]
37 greg 2.1 *
38     * The primaries indicate medium extinction per unit length (absorption
39 greg 2.5 * plus scattering), which is added to the global extinction coefficient, set
40     * by the -me option. The albedo is the ratio of scattering to extinction,
41 greg 2.1 * and is set globally by the -ma option (salbedo) and overridden here.
42     * The Heyney-Greenstein eccentricity parameter (-mg seccg) indicates how much
43     * scattering favors the forward direction. A value of 0 means isotropic
44     * scattering. A value approaching 1 indicates strong forward scattering.
45     */
46    
47 greg 2.7 #ifndef MAXSLIST
48     #define MAXSLIST 32 /* maximum sources to check */
49     #endif
50    
51 greg 2.1 #define RELAYDELIM '>' /* relay delimiter character */
52    
53     extern COLOR cextinction; /* global coefficient of extinction */
54 greg 2.6 extern COLOR salbedo; /* global scattering albedo */
55 greg 2.1 extern double seccg; /* global scattering eccentricity */
56    
57    
58     static int
59     inslist(sl, n) /* return index of source n if it's in list sl */
60     register int *sl;
61     register int n;
62     {
63     register int i;
64    
65     for (i = sl[0]; i > 0; i--)
66     if (sl[i] == n)
67     return(i);
68     return(0);
69     }
70    
71    
72     static int
73 greg 2.2 srcmatch(sp, id) /* check for an id match on a light source */
74     register SRCREC *sp;
75     register char *id;
76 greg 2.1 {
77     extern char *index();
78     register char *cp;
79 greg 2.2 /* check for relay sources */
80     while ((cp = index(id, RELAYDELIM)) != NULL) {
81     if (!(sp->sflags & SVIRTUAL) || sp->so == NULL)
82 greg 2.1 return(0);
83 greg 2.2 if (strncmp(id, sp->so->oname, cp-id) || sp->so->oname[cp-id])
84 greg 2.1 return(0);
85 greg 2.2 id = cp + 1; /* relay to next */
86     sp = source + sp->sa.sv.sn;
87 greg 2.1 }
88 greg 2.2 if (sp->sflags & SVIRTUAL || sp->so == NULL)
89 greg 2.1 return(0);
90 greg 2.2 return(!strcmp(id, sp->so->oname));
91 greg 2.1 }
92    
93    
94 greg 2.2 static
95     add2slist(r, sl) /* add source list to ray's */
96     register RAY *r;
97     register int *sl;
98     {
99     static int slspare[MAXSLIST+1]; /* in case of emergence */
100     register int i;
101    
102     if (sl == NULL || sl[0] == 0) /* nothing to add */
103     return;
104     if (r->slights == NULL)
105     (r->slights = slspare)[0] = 0; /* just once per ray path */
106     for (i = sl[0]; i > 0; i--)
107     if (!inslist(r->slights, sl[i])) {
108     if (r->slights[0] >= MAXSLIST)
109     error(USER, "scattering source list overflow");
110     r->slights[++r->slights[0]] = sl[i];
111     }
112     }
113    
114    
115 greg 2.1 m_mist(m, r) /* process a ray entering or leaving some mist */
116     OBJREC *m;
117     register RAY *r;
118     {
119     RAY p;
120     int *myslist = NULL;
121     int newslist[MAXSLIST+1];
122     COLOR mext;
123     double re, ge, be;
124     register int i, j;
125     /* check arguments */
126     if (m->oargs.nfargs > 5)
127     objerror(m, USER, "bad arguments");
128     /* get source indices */
129 greg 2.4 if (m->oargs.nsargs > 0 && (myslist = (int *)m->os) == NULL) {
130 greg 2.2 if (m->oargs.nsargs > MAXSLIST)
131     objerror(m, USER, "too many sources in list");
132 greg 2.1 myslist = (int *)malloc((m->oargs.nsargs+1)*sizeof(int));
133     if (myslist == NULL)
134     goto memerr;
135 greg 2.2 myslist[0] = 0; /* size is first in list */
136     for (j = 0; j < m->oargs.nsargs; j++) {
137 greg 2.1 i = nsources; /* look up each source id */
138     while (i--)
139 greg 2.2 if (srcmatch(source+i, m->oargs.sarg[j]))
140 greg 2.1 break;
141     if (i < 0) {
142     sprintf(errmsg, "unknown source \"%s\"",
143 greg 2.2 m->oargs.sarg[j]);
144 greg 2.1 objerror(m, WARNING, errmsg);
145 greg 2.2 } else if (inslist(myslist, i)) {
146     sprintf(errmsg, "duplicate source \"%s\"",
147     m->oargs.sarg[j]);
148     objerror(m, WARNING, errmsg);
149 greg 2.1 } else
150 greg 2.2 myslist[++myslist[0]] = i;
151 greg 2.1 }
152     m->os = (char *)myslist;
153     }
154     if (m->oargs.nfargs > 2) { /* compute extinction */
155     setcolor(mext, m->oargs.farg[0], m->oargs.farg[1],
156     m->oargs.farg[2]);
157     raytexture(r, m->omod); /* get modifiers */
158     multcolor(mext, r->pcol);
159     } else
160     setcolor(mext, 0., 0., 0.);
161     /* start transmitted ray */
162     if (rayorigin(&p, r, TRANS, 1.) < 0)
163     return(1);
164     VCOPY(p.rdir, r->rdir);
165     p.slights = newslist;
166 greg 2.2 if (r->slights != NULL) /* copy old list if one */
167 greg 2.1 for (j = r->slights[0]; j >= 0; j--)
168     p.slights[j] = r->slights[j];
169     else
170     p.slights[0] = 0;
171     if (r->rod > 0.) { /* entering ray */
172     addcolor(p.cext, mext);
173 greg 2.6 if (m->oargs.nfargs > 5)
174     setcolor(p.albedo, m->oargs.farg[3],
175     m->oargs.farg[4], m->oargs.farg[5]);
176     if (m->oargs.nfargs > 6)
177     p.gecc = m->oargs.farg[6];
178 greg 2.2 add2slist(&p, myslist); /* add to list */
179     } else { /* leaving ray */
180     if (myslist != NULL) { /* delete from list */
181 greg 2.1 for (j = myslist[0]; j > 0; j--)
182 greg 2.2 if (i = inslist(p.slights, myslist[j]))
183     p.slights[i] = -1;
184     for (i = 0, j = 1; j <= p.slights[0]; j++)
185     if (p.slights[j] != -1)
186     p.slights[++i] = p.slights[j];
187     if (p.slights[0] - i < myslist[0]) { /* fix old */
188     addcolor(r->cext, mext);
189 greg 2.6 if (m->oargs.nfargs > 5)
190     setcolor(r->albedo, m->oargs.farg[3],
191     m->oargs.farg[4], m->oargs.farg[5]);
192     if (m->oargs.nfargs > 6)
193     r->gecc = m->oargs.farg[6];
194 greg 2.2 add2slist(r, myslist);
195     }
196     p.slights[0] = i;
197     }
198 greg 2.5 if ((re = colval(r->cext,RED) - colval(mext,RED)) <
199     colval(cextinction,RED))
200     re = colval(cextinction,RED);
201     if ((ge = colval(r->cext,GRN) - colval(mext,GRN)) <
202     colval(cextinction,GRN))
203     ge = colval(cextinction,GRN);
204     if ((be = colval(r->cext,BLU) - colval(mext,BLU)) <
205     colval(cextinction,BLU))
206     be = colval(cextinction,BLU);
207     setcolor(p.cext, re, ge, be);
208 greg 2.6 if (m->oargs.nfargs > 5)
209     copycolor(p.albedo, salbedo);
210     if (m->oargs.nfargs > 6)
211 greg 2.1 p.gecc = seccg;
212     }
213     rayvalue(&p); /* calls rayparticipate() */
214     copycolor(r->rcol, p.rcol); /* return value */
215     r->rt = r->rot + p.rt;
216     return(1);
217     memerr:
218     error(SYSTEM, "out of memory in m_mist");
219     }