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root/radiance/ray/src/rt/func.c
Revision: 2.16
Committed: Tue Mar 11 17:08:55 2003 UTC (21 years, 1 month ago) by greg
Content type: text/plain
Branch: MAIN
CVS Tags: rad3R5
Changes since 2.15: +6 -1 lines
Log Message:
First working version of new "mesh" primitive, obj2mesh converter

File Contents

# User Rev Content
1 greg 1.1 #ifndef lint
2 greg 2.14 static const char RCSid[] = "$Id$";
3 greg 1.1 #endif
4     /*
5     * func.c - interface to calcomp functions.
6 greg 2.14 */
7    
8 greg 2.15 #include "copyright.h"
9 greg 1.1
10     #include "ray.h"
11    
12     #include "otypes.h"
13    
14 greg 2.2 #include "func.h"
15 greg 1.1
16 greg 2.2
17 greg 1.21 #define INITFILE "rayinit.cal"
18 greg 2.2 #define CALSUF ".cal"
19     #define LCALSUF 4
20 greg 2.10 char REFVNAME[] = "`FILE_REFCNT";
21 greg 1.21
22 greg 1.13 XF unitxf = { /* identity transform */
23 greg 2.8 {{1.0, 0.0, 0.0, 0.0},
24     {0.0, 1.0, 0.0, 0.0},
25     {0.0, 0.0, 1.0, 0.0},
26     {0.0, 0.0, 0.0, 1.0}},
27 greg 1.13 1.0
28     };
29    
30 greg 1.12 XF funcxf; /* current transformation */
31     static OBJREC *fobj = NULL; /* current function object */
32     static RAY *fray = NULL; /* current function ray */
33 greg 1.1
34 greg 2.2 static double l_erf(), l_erfc(), l_arg();
35 greg 1.1
36 greg 2.2
37     MFUNC *
38     getfunc(m, ff, ef, dofwd) /* get function for this modifier */
39 greg 1.1 OBJREC *m;
40 greg 2.2 int ff;
41 greg 2.14 unsigned int ef;
42 greg 2.2 int dofwd;
43     {
44     static char initfile[] = INITFILE;
45     char sbuf[MAXSTR];
46     register char **arg;
47     register MFUNC *f;
48     int ne, na;
49     register int i;
50     /* check to see if done already */
51     if ((f = (MFUNC *)m->os) != NULL)
52     return(f);
53 greg 2.7 fobj = NULL; fray = NULL;
54 greg 2.2 if (initfile[0]) { /* initialize on first call */
55 greg 2.14 esupport |= E_VARIABLE|E_FUNCTION|E_INCHAN|E_RCONST|E_REDEFW;
56     esupport &= ~(E_OUTCHAN);
57 greg 2.2 setcontext("");
58     scompile("Dx=$1;Dy=$2;Dz=$3;", NULL, 0);
59     scompile("Nx=$4;Ny=$5;Nz=$6;", NULL, 0);
60     scompile("Px=$7;Py=$8;Pz=$9;", NULL, 0);
61 greg 2.6 scompile("T=$10;Ts=$25;Rdot=$11;", NULL, 0);
62 greg 2.2 scompile("S=$12;Tx=$13;Ty=$14;Tz=$15;", NULL, 0);
63     scompile("Ix=$16;Iy=$17;Iz=$18;", NULL, 0);
64     scompile("Jx=$19;Jy=$20;Jz=$21;", NULL, 0);
65     scompile("Kx=$22;Ky=$23;Kz=$24;", NULL, 0);
66 greg 2.16 scompile("Lu=$25;Lv=$26;", NULL, 0);
67 greg 2.2 funset("arg", 1, '=', l_arg);
68     funset("erf", 1, ':', l_erf);
69     funset("erfc", 1, ':', l_erfc);
70     setnoisefuncs();
71 greg 2.11 setprismfuncs();
72 greg 2.2 loadfunc(initfile);
73     initfile[0] = '\0';
74     }
75     if ((na = m->oargs.nsargs) <= ff)
76     goto toofew;
77     arg = m->oargs.sarg;
78     if ((f = (MFUNC *)calloc(1, sizeof(MFUNC))) == NULL)
79     goto memerr;
80     i = strlen(arg[ff]); /* set up context */
81     if (i == 1 && arg[ff][0] == '.')
82     setcontext(f->ctx = ""); /* "." means no file */
83     else {
84 greg 2.14 strcpy(sbuf,arg[ff]); /* file name is context */
85 greg 2.2 if (i > LCALSUF && !strcmp(sbuf+i-LCALSUF, CALSUF))
86     sbuf[i-LCALSUF] = '\0'; /* remove suffix */
87     setcontext(f->ctx = savestr(sbuf));
88     if (!vardefined(REFVNAME)) { /* file loaded? */
89 greg 2.5 loadfunc(arg[ff]);
90 greg 2.2 varset(REFVNAME, '=', 1.0);
91     } else /* reference_count++ */
92     varset(REFVNAME, '=', varvalue(REFVNAME)+1.0);
93     }
94     curfunc = NULL; /* parse expressions */
95     sprintf(sbuf, "%s \"%s\"", ofun[m->otype].funame, m->oname);
96     for (i=0, ne=0; ef && i < na; i++, ef>>=1)
97     if (ef & 1) { /* flagged as an expression? */
98     if (ne >= MAXEXPR)
99     objerror(m, INTERNAL, "too many expressions");
100     initstr(arg[i], sbuf, 0);
101     f->ep[ne++] = getE1();
102     if (nextc != EOF)
103     syntax("unexpected character");
104     }
105     if (ef)
106     goto toofew;
107     if (i <= ff) /* find transform args */
108     i = ff+1;
109     while (i < na && arg[i][0] != '-')
110     i++;
111     if (i == na) /* no transform */
112     f->f = f->b = &unitxf;
113     else { /* get transform */
114     if ((f->b = (XF *)malloc(sizeof(XF))) == NULL)
115 greg 2.3 goto memerr;
116 greg 2.2 if (invxf(f->b, na-i, arg+i) != na-i)
117     objerror(m, USER, "bad transform");
118     if (f->b->sca < 0.0)
119     f->b->sca = -f->b->sca;
120     if (dofwd) { /* do both transforms */
121     if ((f->f = (XF *)malloc(sizeof(XF))) == NULL)
122 greg 2.3 goto memerr;
123 greg 2.2 xf(f->f, na-i, arg+i);
124     if (f->f->sca < 0.0)
125     f->f->sca = -f->f->sca;
126     }
127     }
128     m->os = (char *)f;
129     return(f);
130     toofew:
131 greg 2.4 objerror(m, USER, "too few string arguments");
132 greg 2.2 memerr:
133     error(SYSTEM, "out of memory in getfunc");
134     }
135    
136    
137 greg 2.14 void
138 greg 2.2 freefunc(m) /* free memory associated with modifier */
139     OBJREC *m;
140     {
141     register MFUNC *f;
142     register int i;
143    
144     if ((f = (MFUNC *)m->os) == NULL)
145     return;
146     for (i = 0; f->ep[i] != NULL; i++)
147     epfree(f->ep[i]);
148     if (f->ctx[0]) { /* done with definitions */
149     setcontext(f->ctx);
150     i = varvalue(REFVNAME)-.5; /* reference_count-- */
151     if (i > 0)
152     varset(REFVNAME, '=', (double)i);
153     else
154     dcleanup(2); /* remove definitions */
155     freestr(f->ctx);
156     }
157     if (f->b != &unitxf)
158 greg 2.14 free((void *)f->b);
159 greg 2.2 if (f->f != NULL && f->f != &unitxf)
160 greg 2.14 free((void *)f->f);
161     free((void *)f);
162 greg 2.2 m->os = NULL;
163     }
164    
165    
166 greg 2.14 int
167 greg 2.2 setfunc(m, r) /* set channels for function call */
168     OBJREC *m;
169 greg 1.1 register RAY *r;
170     {
171 greg 2.9 static unsigned long lastrno = ~0;
172 greg 2.2 register MFUNC *f;
173     /* get function */
174     if ((f = (MFUNC *)m->os) == NULL)
175 greg 2.14 objerror(m, CONSISTENCY, "setfunc called before getfunc");
176 greg 2.2 /* set evaluator context */
177     setcontext(f->ctx);
178     /* check to see if matrix set */
179 greg 1.16 if (m == fobj && r->rno == lastrno)
180 greg 1.17 return(0);
181 greg 1.1 fobj = m;
182     fray = r;
183 greg 1.13 if (r->rox != NULL)
184 greg 2.2 if (f->b != &unitxf) {
185     funcxf.sca = r->rox->b.sca * f->b->sca;
186     multmat4(funcxf.xfm, r->rox->b.xfm, f->b->xfm);
187 greg 1.13 } else
188     copystruct(&funcxf, &r->rox->b);
189     else
190 greg 2.2 copystruct(&funcxf, f->b);
191 greg 1.16 lastrno = r->rno;
192 greg 1.1 eclock++; /* notify expression evaluator */
193 greg 1.17 return(1);
194 greg 1.1 }
195    
196    
197 greg 2.14 void
198 greg 1.1 loadfunc(fname) /* load definition file */
199     char *fname;
200     {
201     char *ffname;
202    
203 greg 2.12 if ((ffname = getpath(fname, getlibpath(), R_OK)) == NULL) {
204 greg 1.1 sprintf(errmsg, "cannot find function file \"%s\"", fname);
205     error(USER, errmsg);
206     }
207     fcompile(ffname);
208     }
209    
210    
211 greg 2.2 static double
212 greg 1.1 l_arg() /* return nth real argument */
213     {
214     register int n;
215    
216 greg 2.7 if (fobj == NULL)
217     syntax("arg(n) used in constant expression");
218    
219 greg 1.1 n = argument(1) + .5; /* round to integer */
220    
221     if (n < 1)
222     return(fobj->oargs.nfargs);
223    
224     if (n > fobj->oargs.nfargs) {
225     sprintf(errmsg, "missing real argument %d", n);
226     objerror(fobj, USER, errmsg);
227     }
228     return(fobj->oargs.farg[n-1]);
229 greg 1.19 }
230    
231    
232 greg 2.2 static double
233 greg 1.19 l_erf() /* error function */
234     {
235     extern double erf();
236    
237     return(erf(argument(1)));
238     }
239    
240    
241 greg 2.2 static double
242 greg 1.19 l_erfc() /* cumulative error function */
243     {
244     extern double erfc();
245    
246     return(erfc(argument(1)));
247 greg 1.1 }
248    
249    
250     double
251     chanvalue(n) /* return channel n to calcomp */
252     register int n;
253     {
254 greg 2.7 if (fray == NULL)
255     syntax("ray parameter used in constant expression");
256 greg 1.1
257 greg 1.10 if (--n < 0)
258     goto badchan;
259 greg 1.1
260 greg 1.8 if (n < 3) /* ray direction */
261 greg 1.1
262 greg 1.12 return( ( fray->rdir[0]*funcxf.xfm[0][n] +
263     fray->rdir[1]*funcxf.xfm[1][n] +
264     fray->rdir[2]*funcxf.xfm[2][n] )
265     / funcxf.sca );
266 greg 1.1
267 greg 1.8 if (n < 6) /* surface normal */
268    
269 greg 1.12 return( ( fray->ron[0]*funcxf.xfm[0][n-3] +
270     fray->ron[1]*funcxf.xfm[1][n-3] +
271     fray->ron[2]*funcxf.xfm[2][n-3] )
272     / funcxf.sca );
273 greg 1.8
274     if (n < 9) /* intersection */
275    
276 greg 1.12 return( fray->rop[0]*funcxf.xfm[0][n-6] +
277     fray->rop[1]*funcxf.xfm[1][n-6] +
278     fray->rop[2]*funcxf.xfm[2][n-6] +
279     funcxf.xfm[3][n-6] );
280 greg 1.8
281 greg 2.13 if (n == 9) /* total distance */
282     return(raydist(fray,PRIMARY) * funcxf.sca);
283 greg 1.10
284 greg 1.18 if (n == 10) /* dot product (range [-1,1]) */
285     return( fray->rod <= -1.0 ? -1.0 :
286     fray->rod >= 1.0 ? 1.0 :
287     fray->rod );
288 greg 1.10
289 greg 1.8 if (n == 11) /* scale */
290 greg 1.12 return(funcxf.sca);
291 greg 1.8
292     if (n < 15) /* origin */
293 greg 1.12 return(funcxf.xfm[3][n-12]);
294 greg 1.8
295     if (n < 18) /* i unit vector */
296 greg 1.12 return(funcxf.xfm[0][n-15] / funcxf.sca);
297 greg 1.8
298     if (n < 21) /* j unit vector */
299 greg 1.12 return(funcxf.xfm[1][n-15] / funcxf.sca);
300 greg 1.8
301     if (n < 24) /* k unit vector */
302 greg 1.12 return(funcxf.xfm[2][n-21] / funcxf.sca);
303 greg 2.6
304 greg 2.16 if (n < 25) /* single ray (shadow) distance */
305 greg 2.13 return((fray->rot+raydist(fray->parent,SHADOW)) * funcxf.sca);
306 greg 2.16
307     if (n < 27) /* local (u,v) coordinates */
308     return(fray->uv[n-26]);
309 greg 1.10 badchan:
310     error(USER, "illegal channel number");
311 greg 2.16 return(0.0);
312 greg 1.1 }