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root/radiance/ray/src/rt/rcontrib.c
Revision: 2.40
Committed: Tue Feb 16 20:06:06 2021 UTC (3 years, 2 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.39: +20 -18 lines
Log Message:
feat: removed upper limit on number of modifiers in rcontrib

File Contents

# Content
1 #ifndef lint
2 static const char RCSid[] = "$Id: rcontrib.c,v 2.39 2020/09/10 01:01:18 greg Exp $";
3 #endif
4 /*
5 * Accumulate ray contributions for a set of materials
6 * Initialization and calculation routines
7 */
8
9 #include "copyright.h"
10
11 #include "rcontrib.h"
12 #include "otypes.h"
13 #include "source.h"
14
15 char *shm_boundary = NULL; /* boundary of shared memory */
16
17 CUBE thescene; /* our scene */
18 OBJECT nsceneobjs; /* number of objects in our scene */
19
20 int dimlist[MAXDIM]; /* sampling dimensions */
21 int ndims = 0; /* number of sampling dimensions */
22 int samplendx = 0; /* index for this sample */
23
24 void (*trace)() = NULL; /* trace call (NULL before rcinit) */
25
26 int do_irrad = 0; /* compute irradiance? */
27
28 int rand_samp = 1; /* pure Monte Carlo sampling? */
29
30 double dstrsrc = 0.9; /* square source distribution */
31 double shadthresh = 0.; /* shadow threshold */
32 double shadcert = .75; /* shadow certainty */
33 int directrelay = 3; /* number of source relays */
34 int vspretest = 512; /* virtual source pretest density */
35 int directvis = 1; /* sources visible? */
36 double srcsizerat = .2; /* maximum ratio source size/dist. */
37
38 COLOR cextinction = BLKCOLOR; /* global extinction coefficient */
39 COLOR salbedo = BLKCOLOR; /* global scattering albedo */
40 double seccg = 0.; /* global scattering eccentricity */
41 double ssampdist = 0.; /* scatter sampling distance */
42
43 double specthresh = .02; /* specular sampling threshold */
44 double specjitter = 1.; /* specular sampling jitter */
45
46 int backvis = 1; /* back face visibility */
47
48 int maxdepth = -10; /* maximum recursion depth */
49 double minweight = 2e-3; /* minimum ray weight */
50
51 char *ambfile = NULL; /* ambient file name */
52 COLOR ambval = BLKCOLOR; /* ambient value */
53 int ambvwt = 0; /* initial weight for ambient value */
54 double ambacc = 0.; /* ambient accuracy */
55 int ambres = 256; /* ambient resolution */
56 int ambdiv = 350; /* ambient divisions */
57 int ambssamp = 0; /* ambient super-samples */
58 int ambounce = 1; /* ambient bounces */
59 char *amblist[AMBLLEN+1]; /* ambient include/exclude list */
60 int ambincl = -1; /* include == 1, exclude == 0 */
61
62 int account; /* current accumulation count */
63 RNUMBER raysleft; /* number of rays left to trace */
64 long waitflush; /* how long until next flush */
65
66 RNUMBER lastray = 0; /* last ray number sent */
67 RNUMBER lastdone = 0; /* last ray output */
68
69 static void trace_contrib(RAY *r); /* our trace callback */
70
71 static void mcfree(void *p) { epfree((*(MODCONT *)p).binv); free(p); }
72
73 LUTAB modconttab = LU_SINIT(NULL,mcfree); /* modifier lookup table */
74
75 /************************** INITIALIZATION ROUTINES ***********************/
76
77 char *
78 formstr( /* return format identifier */
79 int f
80 )
81 {
82 switch (f) {
83 case 'a': return("ascii");
84 case 'f': return("float");
85 case 'd': return("double");
86 case 'c': return(COLRFMT);
87 }
88 return("unknown");
89 }
90
91
92 /* Add modifier to our list to track */
93 MODCONT *
94 addmodifier(char *modn, char *outf, char *prms, char *binv, int bincnt)
95 {
96 LUENT *lep = lu_find(&modconttab,modn);
97 MODCONT *mp;
98 EPNODE *ebinv;
99 int i;
100
101 if (lep->data != NULL) {
102 sprintf(errmsg, "duplicate modifier '%s'", modn);
103 error(USER, errmsg);
104 }
105 if (!strcmp(modn, VOIDID)) {
106 sprintf(errmsg, "cannot track '%s' modifier", VOIDID);
107 error(USER, errmsg);
108 }
109 if (nmods >= modasiz) { /* need bigger modifier array */
110 modasiz += modasiz/3 + 64;
111 if (modname == NULL)
112 modname = (char **)malloc(modasiz*sizeof(char *));
113 else
114 modname = (char **)realloc(modname, modasiz*sizeof(char *));
115 if (modname == NULL)
116 error(SYSTEM, "Out of memory in addmodifier()");
117 }
118 modname[nmods++] = modn; /* XXX assumes static string */
119 lep->key = modn; /* XXX assumes static string */
120 if (binv == NULL)
121 binv = "0"; /* use single bin if unspecified */
122 ebinv = eparse(binv);
123 if (ebinv->type == NUM) { /* check value if constant */
124 bincnt = (int)(evalue(ebinv) + 1.5);
125 if (bincnt != 1) {
126 sprintf(errmsg, "illegal non-zero constant for bin (%s)",
127 binv);
128 error(USER, errmsg);
129 }
130 } else if (bincnt <= 0) {
131 sprintf(errmsg,
132 "unspecified or illegal bin count for modifier '%s'",
133 modn);
134 error(USER, errmsg);
135 }
136 /* initialize results holder */
137 mp = (MODCONT *)malloc(sizeof(MODCONT)+sizeof(DCOLOR)*(bincnt-1));
138 if (mp == NULL)
139 error(SYSTEM, "out of memory in addmodifier");
140 mp->outspec = outf; /* XXX assumes static string */
141 mp->modname = modn; /* XXX assumes static string */
142 mp->params = prms; /* XXX assumes static string */
143 mp->binv = ebinv;
144 mp->bin0 = 0;
145 mp->nbins = bincnt;
146 memset(mp->cbin, 0, sizeof(DCOLOR)*bincnt);
147 /* figure out starting bin */
148 while (!getostream(mp->outspec, mp->modname, mp->bin0, 1))
149 mp->bin0++;
150 /* allocate other output streams */
151 for (i = 0; ++i < mp->nbins; )
152 getostream(mp->outspec, mp->modname, mp->bin0+i, 1);
153 lep->data = (char *)mp;
154 return(mp);
155 }
156
157
158 /* Add modifiers from a file list */
159 void
160 addmodfile(char *fname, char *outf, char *prms, char *binv, int bincnt)
161 {
162 char *path = getpath(fname, getrlibpath(), R_OK);
163 char mod[MAXSTR];
164 FILE *fp;
165
166 if (path == NULL || (fp = fopen(path, "r")) == NULL) {
167 sprintf(errmsg, "cannot load modifier file '%s'",
168 path != NULL ? path : fname);
169 error(SYSTEM, errmsg);
170 }
171 while (fgetword(mod, sizeof(mod), fp) != NULL)
172 addmodifier(mod, outf, prms, binv, bincnt);
173 fclose(fp);
174 }
175
176
177 /* Check if we have any more rays left (and report progress) */
178 int
179 morays(void)
180 {
181 static RNUMBER total_rays;
182 static time_t tstart, last_report;
183 time_t tnow;
184
185 if (!raysleft)
186 return(1); /* unknown total, so nothing to do or say */
187
188 if (report_intvl > 0 && (tnow = time(0)) >= last_report+report_intvl) {
189 if (!total_rays) {
190 total_rays = raysleft;
191 tstart = tnow;
192 } else {
193 sprintf(errmsg, "%.2f%% done after %.3f hours\n",
194 100.-100.*raysleft/total_rays,
195 (1./3600.)*(tnow - tstart));
196 eputs(errmsg);
197 }
198 last_report = tnow;
199 }
200 return(--raysleft);
201 }
202
203
204 /* Quit program */
205 void
206 quit(
207 int code
208 )
209 {
210 if (nchild > 0) /* close children if any */
211 end_children(code != 0);
212 else if (nchild < 0)
213 _exit(code); /* avoid flush() in child */
214 exit(code);
215 }
216
217
218 /* Initialize our process(es) */
219 static void
220 rcinit(void)
221 {
222 int i;
223
224 if (nproc > MAXPROCESS)
225 sprintf(errmsg, "too many processes requested -- reducing to %d",
226 nproc = MAXPROCESS);
227 if (nproc > 1) {
228 preload_objs(); /* preload auxiliary data */
229 /* set shared memory boundary */
230 shm_boundary = strcpy((char *)malloc(16), "SHM_BOUNDARY");
231 }
232 trace = trace_contrib; /* set up trace call-back */
233 for (i = 0; i < nsources; i++) /* tracing to sources as well */
234 source[i].sflags |= SFOLLOW;
235 if (yres > 0) { /* set up flushing & ray counts */
236 if (xres > 0)
237 raysleft = (RNUMBER)xres*yres;
238 else
239 raysleft = yres;
240 } else
241 raysleft = 0;
242 if ((account = accumulate) > 1)
243 raysleft *= accumulate;
244 waitflush = (yres > 0) & (xres > 1) ? 0 : xres;
245
246 if (nproc > 1 && in_rchild()) /* forked child? */
247 return; /* return to main processing loop */
248
249 if (recover) { /* recover previous output? */
250 if (accumulate <= 0)
251 reload_output();
252 else
253 recover_output();
254 }
255 if (nproc == 1) /* single process? */
256 return;
257 /* else run appropriate controller */
258 if (accumulate <= 0)
259 feeder_loop();
260 else
261 parental_loop();
262 quit(0); /* parent musn't return! */
263 }
264
265 /************************** MAIN CALCULATION PROCESS ***********************/
266
267 /* Our trace call to sum contributions */
268 static void
269 trace_contrib(RAY *r)
270 {
271 MODCONT *mp;
272 double bval;
273 int bn;
274 RREAL contr[3];
275
276 if (r->ro == NULL || r->ro->omod == OVOID)
277 return;
278 /* shadow ray not on source? */
279 if (r->rsrc >= 0 && source[r->rsrc].so != r->ro)
280 return;
281
282 mp = (MODCONT *)lu_find(&modconttab,objptr(r->ro->omod)->oname)->data;
283
284 if (mp == NULL) /* not in our list? */
285 return;
286
287 worldfunc(RCCONTEXT, r); /* else set context */
288 set_eparams((char *)mp->params);
289 if ((bval = evalue(mp->binv)) <= -.5) /* and get bin number */
290 return; /* silently ignore negatives */
291 if ((bn = (int)(bval + .5)) >= mp->nbins) {
292 sprintf(errmsg, "bad bin number (%d ignored)", bn);
293 error(WARNING, errmsg);
294 return;
295 }
296 raycontrib(contr, r, PRIMARY); /* compute coefficient */
297 if (contrib)
298 multcolor(contr, r->rcol); /* -> contribution */
299 addcolor(mp->cbin[bn], contr);
300 }
301
302
303 /* Evaluate irradiance contributions */
304 static void
305 eval_irrad(FVECT org, FVECT dir)
306 {
307 RAY thisray;
308
309 VSUM(thisray.rorg, org, dir, 1.1e-4);
310 thisray.rdir[0] = -dir[0];
311 thisray.rdir[1] = -dir[1];
312 thisray.rdir[2] = -dir[2];
313 thisray.rmax = 0.0;
314 rayorigin(&thisray, PRIMARY, NULL, NULL);
315 /* pretend we hit surface */
316 thisray.rxt = thisray.rot = 1e-5;
317 thisray.rod = 1.0;
318 VCOPY(thisray.ron, dir);
319 VSUM(thisray.rop, org, dir, 1e-4);
320 samplendx++; /* compute result */
321 (*ofun[Lamb.otype].funp)(&Lamb, &thisray);
322 }
323
324
325 /* Evaluate radiance contributions */
326 static void
327 eval_rad(FVECT org, FVECT dir, double dmax)
328 {
329 RAY thisray;
330 /* set up ray */
331 VCOPY(thisray.rorg, org);
332 VCOPY(thisray.rdir, dir);
333 thisray.rmax = dmax;
334 rayorigin(&thisray, PRIMARY, NULL, NULL);
335 samplendx++; /* call ray evaluation */
336 rayvalue(&thisray);
337 }
338
339
340 /* Accumulate and/or output ray contributions (child or only process) */
341 static void
342 done_contrib(void)
343 {
344 MODCONT *mp;
345 int i;
346
347 if (account <= 0 || --account)
348 return; /* not time yet */
349
350 for (i = 0; i < nmods; i++) { /* output records & clear */
351 mp = (MODCONT *)lu_find(&modconttab,modname[i])->data;
352 mod_output(mp);
353 memset(mp->cbin, 0, sizeof(DCOLOR)*mp->nbins);
354 }
355 end_record(); /* end lines & flush if time */
356
357 account = accumulate; /* reset accumulation counter */
358 }
359
360
361 /* Principal calculation loop (called by main) */
362 void
363 rcontrib(void)
364 {
365 static int ignore_warning_given = 0;
366 FVECT orig, direc;
367 double d;
368 /* initialize (& fork more of us) */
369 rcinit();
370 /* load rays from stdin & process */
371 #ifdef getc_unlocked
372 flockfile(stdin); /* avoid mutex overhead */
373 #endif
374 while (getvec(orig) == 0 && getvec(direc) == 0) {
375 d = normalize(direc);
376 if (nchild != -1 && (d == 0.0) & (accumulate == 0)) {
377 if (!ignore_warning_given++)
378 error(WARNING,
379 "dummy ray(s) ignored during accumulation\n");
380 continue;
381 }
382 if (lastray+1 < lastray)
383 lastray = lastdone = 0;
384 ++lastray;
385 if (d == 0.0) { /* zero ==> flush */
386 if ((yres <= 0) | (xres <= 1))
387 waitflush = 1; /* flush after */
388 if (nchild == -1)
389 account = 1;
390 } else if (imm_irrad) { /* else compute */
391 eval_irrad(orig, direc);
392 } else {
393 eval_rad(orig, direc, lim_dist ? d : 0.0);
394 }
395 done_contrib(); /* accumulate/output */
396 ++lastdone;
397 if (!morays())
398 break; /* preemptive EOI */
399 }
400 if (nchild != -1 && (accumulate <= 0) | (account < accumulate)) {
401 if (account < accumulate) {
402 error(WARNING, "partial accumulation in final record");
403 accumulate -= account;
404 }
405 account = 1; /* output accumulated totals */
406 done_contrib();
407 }
408 lu_done(&ofiletab); /* close output files */
409 if (raysleft)
410 error(USER, "unexpected EOF on input");
411 }