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root/radiance/ray/src/rt/ambient.c
Revision: 2.124
Committed: Wed Nov 6 20:16:58 2024 UTC (6 months, 3 weeks ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.123: +8 -7 lines
Log Message:
perf: Reinstated original ray-behind test with averaged normal direction

File Contents

# User Rev Content
1 greg 2.124 static const char RCSid[] = "$Id: ambient.c,v 2.123 2024/04/05 01:10:26 greg Exp $";
2 greg 1.1 /*
3     * ambient.c - routines dealing with ambient (inter-reflected) component.
4 greg 2.47 *
5     * Declarations of external symbols in ambient.h
6     */
7    
8 greg 2.48 #include "copyright.h"
9 greg 1.1
10 schorsch 2.52 #include <string.h>
11    
12 schorsch 2.50 #include "platform.h"
13 greg 1.1 #include "ray.h"
14 greg 1.8 #include "otypes.h"
15 greg 2.105 #include "otspecial.h"
16 schorsch 2.56 #include "resolu.h"
17 greg 1.14 #include "ambient.h"
18 greg 1.1 #include "random.h"
19 greg 2.94 #include "pmapamb.h"
20 greg 1.1
21 greg 2.32 #ifndef OCTSCALE
22 greg 2.29 #define OCTSCALE 1.0 /* ceil((valid rad.)/(cube size)) */
23 greg 2.32 #endif
24 greg 1.1
25 greg 2.57 #ifndef MAXASET
26 greg 2.67 #define MAXASET 4095 /* maximum number of elements in ambient set */
27 greg 2.57 #endif
28 greg 2.12 OBJECT ambset[MAXASET+1]={0}; /* ambient include/exclude set */
29 greg 1.1
30 greg 2.12 double maxarad; /* maximum ambient radius */
31     double minarad; /* minimum ambient radius */
32 greg 1.1
33 greg 2.12 static AMBTREE atrunk; /* our ambient trunk node */
34 greg 1.1
35     static FILE *ambfp = NULL; /* ambient file pointer */
36 greg 2.16 static int nunflshed = 0; /* number of unflushed ambient values */
37 greg 1.1
38 gregl 2.43 static double avsum = 0.; /* computed ambient value sum (log) */
39     static unsigned int navsum = 0; /* number of values in avsum */
40 greg 2.35 static unsigned int nambvals = 0; /* total number of indirect values */
41     static unsigned int nambshare = 0; /* number of values from file */
42 greg 2.47 static FILE *ambinp = NULL; /* auxiliary file for input */
43     static long lastpos = -1; /* last flush position */
44 greg 2.26
45 greg 2.12 #define AMBFLUSH (BUFSIZ/AMBVALSIZ)
46 greg 2.6
47 greg 2.118 #define AVSIZE (sizeof(AMBVAL)-sizeof(SCOLOR)+sizeof(COLORV)*NCSAMP)
48     #define newambval() (AMBVAL *)malloc(AVSIZE)
49 greg 1.1
50 greg 2.117 #define tfunc(x0, x, x1) (((x)-(x0))/((x1)-(x0)))
51 greg 2.108
52 greg 2.118 static void initambfile(int cre8);
53 schorsch 2.56 static void avsave(AMBVAL *av);
54     static AMBVAL *avstore(AMBVAL *aval);
55     static AMBTREE *newambtree(void);
56     static void freeambtree(AMBTREE *atp);
57    
58 greg 2.71 typedef void unloadtf_t(AMBVAL *);
59 schorsch 2.56 static unloadtf_t avinsert;
60 greg 2.71 static unloadtf_t avfree;
61 schorsch 2.56 static void unloadatree(AMBTREE *at, unloadtf_t *f);
62    
63 greg 2.112 static void sortambvals(void);
64 schorsch 2.56
65 greg 2.108 static int plugaleak(RAY *r, AMBVAL *ap, FVECT anorm, double ang);
66 greg 2.118 static double sumambient(SCOLOR acol, RAY *r, FVECT rn, int al,
67 greg 2.108 AMBTREE *at, FVECT c0, double s);
68 greg 2.118 static int makeambient(SCOLOR acol, RAY *r, FVECT rn, int al);
69     static int extambient(SCOLOR cr, AMBVAL *ap, FVECT pv, FVECT nv,
70 greg 2.108 FVECT uvw[3]);
71    
72 greg 2.19 #ifdef F_SETLKW
73 schorsch 2.56 static void aflock(int typ);
74 greg 2.19 #endif
75 greg 1.1
76 greg 2.7
77 greg 2.71 void
78 schorsch 2.56 setambres( /* set ambient resolution */
79     int ar
80     )
81 greg 2.3 {
82 greg 2.21 ambres = ar < 0 ? 0 : ar; /* may be done already */
83 greg 2.3 /* set min & max radii */
84     if (ar <= 0) {
85 greg 2.25 minarad = 0;
86 greg 2.89 maxarad = thescene.cusize*0.2;
87 greg 2.3 } else {
88     minarad = thescene.cusize / ar;
89 greg 2.83 maxarad = 64.0 * minarad; /* heuristic */
90 greg 2.89 if (maxarad > thescene.cusize*0.2)
91     maxarad = thescene.cusize*0.2;
92 greg 2.3 }
93 greg 2.25 if (minarad <= FTINY)
94 greg 2.83 minarad = 10.0*FTINY;
95 greg 2.25 if (maxarad <= minarad)
96 greg 2.83 maxarad = 64.0 * minarad;
97 greg 2.3 }
98    
99    
100 greg 2.71 void
101 schorsch 2.56 setambacc( /* set ambient accuracy */
102     double newa
103     )
104 greg 2.20 {
105 greg 2.84 static double olda; /* remember previous setting here */
106 greg 2.82
107     newa *= (newa > 0);
108     if (fabs(newa - olda) >= .05*(newa + olda)) {
109 greg 2.84 ambacc = newa;
110 greg 2.107 if (ambacc > FTINY && nambvals > 0)
111 greg 2.112 sortambvals(); /* rebuild tree */
112 greg 2.74 }
113 greg 2.20 }
114    
115    
116 greg 2.71 void
117 schorsch 2.56 setambient(void) /* initialize calculation */
118 greg 1.1 {
119 gwlarson 2.46 int readonly = 0;
120 greg 2.66 long flen;
121 greg 2.12 AMBVAL amb;
122 greg 2.47 /* make sure we're fresh */
123     ambdone();
124 greg 2.3 /* init ambient limits */
125     setambres(ambres);
126 greg 2.82 setambacc(ambacc);
127 greg 2.47 if (ambfile == NULL || !ambfile[0])
128 greg 2.19 return;
129 greg 2.20 if (ambacc <= FTINY) {
130 greg 2.21 sprintf(errmsg, "zero ambient accuracy so \"%s\" not opened",
131 greg 2.47 ambfile);
132 greg 2.20 error(WARNING, errmsg);
133     return;
134     }
135 greg 2.3 /* open ambient file */
136 greg 2.47 if ((ambfp = fopen(ambfile, "r+")) == NULL)
137     readonly = (ambfp = fopen(ambfile, "r")) != NULL;
138 gwlarson 2.46 if (ambfp != NULL) {
139     initambfile(0); /* file exists */
140 greg 2.66 lastpos = ftell(ambfp);
141 greg 2.19 while (readambval(&amb, ambfp))
142 greg 2.88 avstore(&amb);
143 gwlarson 2.46 nambshare = nambvals; /* share loaded values */
144     if (readonly) {
145     sprintf(errmsg,
146     "loaded %u values from read-only ambient file",
147     nambvals);
148     error(WARNING, errmsg);
149     fclose(ambfp); /* close file so no writes */
150     ambfp = NULL;
151     return; /* avoid ambsync() */
152     }
153     /* align file pointer */
154 greg 2.66 lastpos += (long)nambvals*AMBVALSIZ;
155 greg 2.55 flen = lseek(fileno(ambfp), (off_t)0, SEEK_END);
156 greg 2.66 if (flen != lastpos) {
157 greg 2.42 sprintf(errmsg,
158 greg 2.37 "ignoring last %ld values in ambient file (corrupted)",
159 greg 2.66 (flen - lastpos)/AMBVALSIZ);
160 greg 2.42 error(WARNING, errmsg);
161 greg 2.66 fseek(ambfp, lastpos, SEEK_SET);
162     ftruncate(fileno(ambfp), (off_t)lastpos);
163 greg 2.37 }
164 greg 2.47 } else if ((ambfp = fopen(ambfile, "w+")) != NULL) {
165 gwlarson 2.46 initambfile(1); /* else create new file */
166 greg 2.68 fflush(ambfp);
167 greg 2.66 lastpos = ftell(ambfp);
168 gwlarson 2.46 } else {
169 greg 2.47 sprintf(errmsg, "cannot open ambient file \"%s\"", ambfile);
170 greg 2.19 error(SYSTEM, errmsg);
171 greg 2.16 }
172 greg 2.68 #ifdef F_SETLKW
173     aflock(F_UNLCK); /* release file */
174     #endif
175 greg 1.8 }
176    
177    
178 greg 2.71 void
179 schorsch 2.56 ambdone(void) /* close ambient file and free memory */
180 greg 2.47 {
181     if (ambfp != NULL) { /* close ambient file */
182     ambsync();
183     fclose(ambfp);
184     ambfp = NULL;
185     if (ambinp != NULL) {
186     fclose(ambinp);
187     ambinp = NULL;
188     }
189     lastpos = -1;
190     }
191     /* free ambient tree */
192 greg 2.99 unloadatree(&atrunk, avfree);
193 greg 2.47 /* reset state variables */
194     avsum = 0.;
195     navsum = 0;
196     nambvals = 0;
197     nambshare = 0;
198     }
199    
200    
201 greg 2.71 void
202 schorsch 2.56 ambnotify( /* record new modifier */
203     OBJECT obj
204     )
205 greg 1.8 {
206 greg 1.11 static int hitlimit = 0;
207 greg 2.70 OBJREC *o;
208     char **amblp;
209 greg 1.8
210 greg 2.47 if (obj == OVOID) { /* starting over */
211     ambset[0] = 0;
212     hitlimit = 0;
213     return;
214     }
215     o = objptr(obj);
216 greg 1.11 if (hitlimit || !ismodifier(o->otype))
217 greg 1.8 return;
218     for (amblp = amblist; *amblp != NULL; amblp++)
219     if (!strcmp(o->oname, *amblp)) {
220 greg 1.11 if (ambset[0] >= MAXASET) {
221     error(WARNING, "too many modifiers in ambient list");
222     hitlimit++;
223     return; /* should this be fatal? */
224     }
225 greg 1.8 insertelem(ambset, obj);
226     return;
227 greg 1.1 }
228     }
229    
230 greg 2.71
231     void
232     multambient( /* compute ambient component & multiply by coef. */
233 greg 2.118 SCOLOR aval,
234 greg 2.71 RAY *r,
235     FVECT nrm
236     )
237     {
238 greg 2.111 static double logAvgAbsorp = 1;
239 greg 2.71 static int rdepth = 0; /* ambient recursion */
240 greg 2.118 SCOLOR acol, caustic;
241 greg 2.103 int i, ok;
242 greg 2.71 double d, l;
243    
244 greg 2.94 /* PMAP: Factor in ambient from photon map, if enabled and ray is
245     * ambient. Return as all ambient components accounted for, else
246     * continue. */
247     if (ambPmap(aval, r, rdepth))
248     return;
249    
250 greg 2.111 if (logAvgAbsorp > 0) /* exclude in -aw to avoid growth */
251     logAvgAbsorp = log(1.-AVGREFL);
252    
253 greg 2.94 /* PMAP: Factor in specular-diffuse ambient (caustics) from photon
254     * map, if enabled and ray is primary, else caustic is zero. Continue
255     * with RADIANCE ambient calculation */
256 greg 2.118 {/* XXX TEMPORARY */
257     COLOR pmc;
258     scolor_color(pmc, aval);
259     ambPmapCaustic(pmc, r, rdepth);
260     setscolor(caustic, colval(pmc,RED), colval(pmc,GRN), colval(pmc,BLU));
261     }
262 greg 2.71 if (ambdiv <= 0) /* no ambient calculation */
263     goto dumbamb;
264     /* check number of bounces */
265     if (rdepth >= ambounce)
266     goto dumbamb;
267     /* check ambient list */
268     if (ambincl != -1 && r->ro != NULL &&
269     ambincl != inset(ambset, r->ro->omod))
270     goto dumbamb;
271    
272 greg 2.123 if (ambacc <= FTINY) { /* no ambient storage? */
273     double rdot = DOT(nrm,r->ron);
274     int sgn = 1 - 2*(rdot < 0);
275     float dgrad[2], *dgp = NULL;
276 greg 2.103 FVECT uvd[2];
277    
278 greg 2.123 if (sgn*rdot < 0.9999)
279 greg 2.103 dgp = dgrad; /* compute rotational grad. */
280 greg 2.118 copyscolor(acol, aval);
281 greg 2.71 rdepth++;
282 greg 2.123 ok = doambient(acol, r, r->rweight*sgn,
283 greg 2.103 uvd, NULL, NULL, dgp, NULL);
284 greg 2.71 rdepth--;
285     if (!ok)
286     goto dumbamb;
287 greg 2.103 if ((ok > 0) & (dgp != NULL)) { /* apply texture */
288     FVECT v1;
289     VCROSS(v1, r->ron, nrm);
290     d = 1.0;
291     for (i = 3; i--; )
292 greg 2.123 d += sgn*v1[i] * (dgp[0]*uvd[0][i] + dgp[1]*uvd[1][i]);
293 greg 2.103 if (d >= 0.05)
294 greg 2.118 scalescolor(acol, d);
295 greg 2.103 }
296 greg 2.118 copyscolor(aval, acol);
297 greg 2.94
298     /* PMAP: add in caustic */
299 greg 2.118 saddscolor(aval, caustic);
300 greg 2.71 return;
301     }
302     /* interpolate ambient value */
303 greg 2.118 scolorblack(acol);
304 greg 2.71 d = sumambient(acol, r, nrm, rdepth,
305     &atrunk, thescene.cuorg, thescene.cusize);
306 greg 2.94
307 greg 2.71 if (d > FTINY) {
308 greg 2.118 scalescolor(acol, 1.0/d);
309     smultscolor(aval, acol);
310 greg 2.94
311     /* PMAP: add in caustic */
312 greg 2.118 saddscolor(aval, caustic);
313 greg 2.71 return;
314     }
315 greg 2.94
316 greg 2.71 rdepth++; /* need to cache new value */
317     ok = makeambient(acol, r, nrm, rdepth-1);
318     rdepth--;
319 greg 2.94
320 greg 2.71 if (ok) {
321 greg 2.118 smultscolor(aval, acol); /* computed new value */
322 greg 2.94
323     /* PMAP: add in caustic */
324 greg 2.118 saddscolor(aval, caustic);
325 greg 2.71 return;
326     }
327 greg 2.94
328 greg 2.71 dumbamb: /* return global value */
329     if ((ambvwt <= 0) | (navsum == 0)) {
330 greg 2.118 smultcolor(aval, ambval);
331 greg 2.94
332     /* PMAP: add in caustic */
333 greg 2.118 saddscolor(aval, caustic);
334 greg 2.71 return;
335     }
336 greg 2.94
337     l = bright(ambval); /* average in computations */
338 greg 2.71 if (l > FTINY) {
339 greg 2.111 d = (log(l)*(double)ambvwt + avsum + logAvgAbsorp*navsum) /
340 greg 2.71 (double)(ambvwt + navsum);
341     d = exp(d) / l;
342 greg 2.118 scalescolor(aval, d);
343     smultcolor(aval, ambval); /* apply color of ambval */
344 greg 2.71 } else {
345 greg 2.111 d = exp( avsum/(double)navsum + logAvgAbsorp );
346 greg 2.118 scalescolor(aval, d); /* neutral color */
347 greg 2.71 }
348     }
349    
350    
351 greg 2.86 /* Plug a potential leak where ambient cache value is occluded */
352     static int
353     plugaleak(RAY *r, AMBVAL *ap, FVECT anorm, double ang)
354     {
355     const double cost70sq = 0.1169778; /* cos(70deg)^2 */
356     RAY rtst;
357     FVECT vdif;
358     double normdot, ndotd, nadotd;
359     double a, b, c, t[2];
360    
361     ang += 2.*PI*(ang < 0); /* check direction flags */
362     if ( !(ap->corral>>(int)(ang*(16./PI)) & 1) )
363     return(0);
364     /*
365     * Generate test ray, targeting 20 degrees above sample point plane
366     * along surface normal from cache position. This should be high
367     * enough to miss local geometry we don't really care about.
368     */
369     VSUB(vdif, ap->pos, r->rop);
370     normdot = DOT(anorm, r->ron);
371     ndotd = DOT(vdif, r->ron);
372     nadotd = DOT(vdif, anorm);
373     a = normdot*normdot - cost70sq;
374     b = 2.0*(normdot*ndotd - nadotd*cost70sq);
375     c = ndotd*ndotd - DOT(vdif,vdif)*cost70sq;
376     if (quadratic(t, a, b, c) != 2)
377     return(1); /* should rarely happen */
378     if (t[1] <= FTINY)
379     return(0); /* should fail behind test */
380     rayorigin(&rtst, SHADOW, r, NULL);
381     VSUM(rtst.rdir, vdif, anorm, t[1]); /* further dist. > plane */
382     rtst.rmax = normalize(rtst.rdir); /* short ray test */
383     while (localhit(&rtst, &thescene)) { /* check for occluder */
384 greg 2.105 OBJREC *m = findmaterial(rtst.ro);
385     if (m != NULL && !istransp(m->otype) && !isBSDFproxy(m) &&
386 greg 2.86 (rtst.clipset == NULL ||
387     !inset(rtst.clipset, rtst.ro->omod)))
388     return(1); /* plug light leak */
389     VCOPY(rtst.rorg, rtst.rop); /* skip invisible surface */
390     rtst.rmax -= rtst.rot;
391     rayclear(&rtst);
392     }
393     return(0); /* seems we're OK */
394     }
395    
396    
397     static double
398 greg 2.72 sumambient( /* get interpolated ambient value */
399 greg 2.118 SCOLOR acol,
400 greg 2.71 RAY *r,
401     FVECT rn,
402     int al,
403     AMBTREE *at,
404     FVECT c0,
405     double s
406     )
407 greg 2.80 { /* initial limit is 10 degrees plus ambacc radians */
408     const double minangle = 10.0 * PI/180.;
409 greg 2.123 const int sgn = 1 - 2*(DOT(r->ron,rn) < 0);
410 greg 2.84 double maxangle = minangle + ambacc;
411 greg 2.71 double wsum = 0.0;
412     FVECT ck0;
413     int i, j;
414     AMBVAL *av;
415 greg 2.83
416     if (at->kid != NULL) { /* sum children first */
417     s *= 0.5;
418     for (i = 0; i < 8; i++) {
419     for (j = 0; j < 3; j++) {
420     ck0[j] = c0[j];
421     if (1<<j & i)
422     ck0[j] += s;
423     if (r->rop[j] < ck0[j] - OCTSCALE*s)
424     break;
425     if (r->rop[j] > ck0[j] + (1.0+OCTSCALE)*s)
426     break;
427     }
428     if (j == 3)
429     wsum += sumambient(acol, r, rn, al,
430     at->kid+i, ck0, s);
431     }
432     /* good enough? */
433 greg 2.117 if ((wsum >= 0.05) & (s*ambacc > minarad))
434 greg 2.83 return(wsum);
435     }
436 greg 2.84 /* adjust maximum angle */
437     if (at->alist != NULL && (at->alist->lvl <= al) & (r->rweight < 0.6))
438     maxangle = (maxangle - PI/2.)*pow(r->rweight,0.13) + PI/2.;
439 greg 2.71 /* sum this node */
440     for (av = at->alist; av != NULL; av = av->next) {
441 greg 2.86 double u, v, d, delta_r2, delta_t2;
442 greg 2.118 SCOLOR sct;
443 greg 2.71 FVECT uvw[3];
444     /*
445 greg 2.72 * Ambient level test
446 greg 2.71 */
447 greg 2.87 if (av->lvl > al || /* list sorted, so this works */
448     (av->lvl == al) & (av->weight < 0.9*r->rweight))
449 greg 2.71 break;
450     /*
451 greg 2.72 * Direction test using unperturbed normal
452 greg 2.71 */
453     decodedir(uvw[2], av->ndir);
454 greg 2.123 d = sgn * DOT(uvw[2], r->ron);
455 greg 2.71 if (d <= 0.0) /* >= 90 degrees */
456     continue;
457     delta_r2 = 2.0 - 2.0*d; /* approx. radians^2 */
458     if (delta_r2 >= maxangle*maxangle)
459     continue;
460     /*
461 greg 2.124 * Original ray behind test
462 greg 2.81 */
463 greg 2.124 d = 0.0;
464     for (j = 0; j < 3; j++)
465     d += (r->rop[j] - av->pos[j])*(r->ron[j] + uvw[2][j]);
466     d *= 0.5;
467 greg 2.116 if (d < -minarad*ambacc)
468 greg 2.81 continue;
469 greg 2.124 /* Pre-empt following test if we can */
470     if (fabs(d) >= av->rad[0]*ambacc)
471 greg 2.81 continue;
472     /*
473 greg 2.72 * Elliptical radii test based on Hessian
474 greg 2.71 */
475     decodedir(uvw[0], av->udir);
476     VCROSS(uvw[1], uvw[2], uvw[0]);
477 greg 2.86 d = (u = DOT(ck0, uvw[0])) / av->rad[0];
478 greg 2.81 delta_t2 += d*d;
479 greg 2.86 d = (v = DOT(ck0, uvw[1])) / av->rad[1];
480 greg 2.71 delta_t2 += d*d;
481 greg 2.84 if (delta_t2 >= ambacc*ambacc)
482 greg 2.71 continue;
483     /*
484 greg 2.86 * Test for potential light leak
485     */
486     if (av->corral && plugaleak(r, av, uvw[2], atan2a(v,u)))
487     continue;
488     /*
489 greg 2.72 * Extrapolate value and compute final weight (hat function)
490 greg 2.71 */
491 greg 2.118 if (!extambient(sct, av, r->rop, rn, uvw))
492 greg 2.92 continue;
493 greg 2.71 d = tfunc(maxangle, sqrt(delta_r2), 0.0) *
494 greg 2.84 tfunc(ambacc, sqrt(delta_t2), 0.0);
495 greg 2.118 scalescolor(sct, d);
496     saddscolor(acol, sct);
497 greg 2.72 wsum += d;
498 greg 2.71 }
499     return(wsum);
500     }
501    
502    
503 greg 2.86 static int
504 greg 2.71 makeambient( /* make a new ambient value for storage */
505 greg 2.118 SCOLOR acol,
506 greg 2.71 RAY *r,
507     FVECT rn,
508     int al
509     )
510     {
511 greg 2.123 int sgn = 1 - 2*(DOT(r->ron,rn) < 0);
512 greg 2.71 AMBVAL amb;
513 greg 2.72 FVECT uvw[3];
514 greg 2.71 int i;
515    
516     amb.weight = 1.0; /* compute weight */
517     for (i = al; i-- > 0; )
518     amb.weight *= AVGREFL;
519     if (r->rweight < 0.1*amb.weight) /* heuristic override */
520     amb.weight = 1.25*r->rweight;
521 greg 2.118 setscolor(acol, AVGREFL, AVGREFL, AVGREFL);
522 greg 2.71 /* compute ambient */
523 greg 2.123 i = doambient(acol, r, amb.weight*sgn,
524 greg 2.86 uvw, amb.rad, amb.gpos, amb.gdir, &amb.corral);
525 greg 2.118 scalescolor(acol, 1./AVGREFL); /* undo assumed reflectance */
526 greg 2.76 if (i <= 0 || amb.rad[0] <= FTINY) /* no Hessian or zero radius */
527 greg 2.73 return(i);
528 greg 2.123 uvw[2][0] = sgn*r->ron[0]; /* orient unperturbed normal */
529     uvw[2][1] = sgn*r->ron[1];
530     uvw[2][2] = sgn*r->ron[2];
531 greg 2.71 /* store value */
532     VCOPY(amb.pos, r->rop);
533 greg 2.123 amb.ndir = encodedir(uvw[2]);
534 greg 2.72 amb.udir = encodedir(uvw[0]);
535 greg 2.71 amb.lvl = al;
536 greg 2.118 copyscolor(amb.val, acol);
537 greg 2.123 avsave(&amb); /* insert and save to file */
538     if (DOT(uvw[2],rn) < 0.9999) /* texture? */
539 greg 2.72 extambient(acol, &amb, r->rop, rn, uvw);
540 greg 2.71 return(1);
541     }
542    
543    
544 greg 2.92 static int
545 greg 2.71 extambient( /* extrapolate value at pv, nv */
546 greg 2.118 SCOLOR scr,
547 greg 2.71 AMBVAL *ap,
548     FVECT pv,
549 greg 2.72 FVECT nv,
550     FVECT uvw[3]
551 greg 2.71 )
552     {
553 greg 2.93 const double min_d = 0.05;
554 greg 2.110 const double max_d = 20.;
555 greg 2.72 static FVECT my_uvw[3];
556     FVECT v1;
557     int i;
558     double d = 1.0; /* zeroeth order */
559    
560     if (uvw == NULL) { /* need local coordinates? */
561     decodedir(my_uvw[2], ap->ndir);
562     decodedir(my_uvw[0], ap->udir);
563     VCROSS(my_uvw[1], my_uvw[2], my_uvw[0]);
564     uvw = my_uvw;
565     }
566 greg 2.71 for (i = 3; i--; ) /* gradient due to translation */
567     d += (pv[i] - ap->pos[i]) *
568     (ap->gpos[0]*uvw[0][i] + ap->gpos[1]*uvw[1][i]);
569    
570     VCROSS(v1, uvw[2], nv); /* gradient due to rotation */
571     for (i = 3; i--; )
572     d += v1[i] * (ap->gdir[0]*uvw[0][i] + ap->gdir[1]*uvw[1][i]);
573    
574 greg 2.110 if (d < min_d) /* clamp min/max scaling */
575 greg 2.93 d = min_d;
576 greg 2.110 else if (d > max_d)
577     d = max_d;
578 greg 2.118 copyscolor(scr, ap->val);
579     scalescolor(scr, d);
580 greg 2.93 return(d > min_d);
581 greg 2.71 }
582    
583    
584     static void
585     avinsert( /* insert ambient value in our tree */
586     AMBVAL *av
587     )
588     {
589     AMBTREE *at;
590     AMBVAL *ap;
591     AMBVAL avh;
592     FVECT ck0;
593     double s;
594     int branch;
595     int i;
596    
597     if (av->rad[0] <= FTINY)
598     error(CONSISTENCY, "zero ambient radius in avinsert");
599     at = &atrunk;
600     VCOPY(ck0, thescene.cuorg);
601     s = thescene.cusize;
602 greg 2.84 while (s*(OCTSCALE/2) > av->rad[1]*ambacc) {
603 greg 2.71 if (at->kid == NULL)
604     if ((at->kid = newambtree()) == NULL)
605     error(SYSTEM, "out of memory in avinsert");
606     s *= 0.5;
607     branch = 0;
608     for (i = 0; i < 3; i++)
609     if (av->pos[i] > ck0[i] + s) {
610     ck0[i] += s;
611     branch |= 1 << i;
612     }
613     at = at->kid + branch;
614     }
615     avh.next = at->alist; /* order by increasing level */
616     for (ap = &avh; ap->next != NULL; ap = ap->next)
617 greg 2.87 if ( ap->next->lvl > av->lvl ||
618     (ap->next->lvl == av->lvl) &
619     (ap->next->weight <= av->weight) )
620 greg 2.71 break;
621     av->next = ap->next;
622     ap->next = (AMBVAL*)av;
623     at->alist = avh.next;
624     }
625    
626    
627     static void
628 schorsch 2.56 initambfile( /* initialize ambient file */
629 greg 2.68 int cre8
630 schorsch 2.56 )
631 greg 2.9 {
632 greg 2.47 extern char *progname, *octname;
633     static char *mybuf = NULL;
634 greg 2.9
635 greg 2.19 #ifdef F_SETLKW
636 greg 2.69 aflock(cre8 ? F_WRLCK : F_RDLCK);
637 greg 2.19 #endif
638 schorsch 2.50 SET_FILE_BINARY(ambfp);
639 greg 2.47 if (mybuf == NULL)
640     mybuf = (char *)bmalloc(BUFSIZ+8);
641     setbuf(ambfp, mybuf);
642 greg 2.121 retry:
643 greg 2.68 if (cre8) { /* new file */
644 greg 2.24 newheader("RADIANCE", ambfp);
645 greg 2.41 fprintf(ambfp, "%s -av %g %g %g -aw %d -ab %d -aa %g ",
646 greg 2.9 progname, colval(ambval,RED),
647     colval(ambval,GRN), colval(ambval,BLU),
648 greg 2.41 ambvwt, ambounce, ambacc);
649 greg 2.47 fprintf(ambfp, "-ad %d -as %d -ar %d ",
650     ambdiv, ambssamp, ambres);
651 greg 2.115 fprintf(ambfp, "-dr %d -ds %g -dt %g -dc %g ", directrelay,
652     srcsizerat, shadthresh, shadcert);
653     fprintf(ambfp, "-ss %g -st %g -lr %d -lw %g ", specjitter,
654     specthresh, maxdepth, minweight);
655 greg 2.119 fprintf(ambfp, "-cw %g %g -cs %d ", WLPART[3], WLPART[0], NCSAMP);
656 greg 2.47 if (octname != NULL)
657 greg 2.68 fputs(octname, ambfp);
658 greg 2.120 fputc('\n', ambfp); /* end of command line, not header! */
659 greg 2.9 fprintf(ambfp, "SOFTWARE= %s\n", VersionID);
660 greg 2.47 fputnow(ambfp);
661 greg 2.120 AMB_CNDX = CNDX; /* use current spectral sampling */
662     AMB_WLPART = WLPART;
663 greg 2.118 fputwlsplit(WLPART, ambfp);
664     fputncomp(NCSAMP, ambfp);
665 greg 2.9 fputformat(AMBFMT, ambfp);
666 greg 2.68 fputc('\n', ambfp);
667 greg 2.9 putambmagic(ambfp);
668 greg 2.121 } else if (getheader(ambfp, amb_headline, NULL) < 0 || !hasambmagic(ambfp)) {
669     #ifndef F_SETLKW
670 greg 2.122 static int ntries = 3;
671     if (--ntries > 0 && ftell(ambfp) == 0) {
672     clearerr(ambfp);
673 greg 2.121 sleep(2);
674     goto retry;
675     }
676     #endif
677 greg 2.118 error(USER, "bad/incompatible ambient file");
678 greg 2.121 }
679 greg 2.118 if ((AMB_CNDX != CNDX) | (AMB_WLPART != WLPART)) {
680     if (setspectrsamp(AMB_CNDX, AMB_WLPART) < 0)
681     error(USER, "bad wavelength sampling in ambient file");
682     if (AMB_CNDX[3] == CNDX[3] && FABSEQ(AMB_WLPART[0],WLPART[0]) &&
683     FABSEQ(AMB_WLPART[3],WLPART[3])) {
684     AMB_CNDX = CNDX;
685     AMB_WLPART = WLPART; /* just the same */
686     } else
687     error(WARNING, "different ambient file wavelength sampling");
688     }
689 greg 2.9 }
690    
691    
692 greg 2.47 static void
693 schorsch 2.56 avsave( /* insert and save an ambient value */
694     AMBVAL *av
695     )
696 greg 1.1 {
697 greg 2.88 avstore(av);
698 greg 1.1 if (ambfp == NULL)
699     return;
700 greg 2.5 if (writambval(av, ambfp) < 0)
701 greg 1.1 goto writerr;
702 greg 2.16 if (++nunflshed >= AMBFLUSH)
703 greg 2.7 if (ambsync() == EOF)
704 greg 1.1 goto writerr;
705     return;
706     writerr:
707 greg 2.47 error(SYSTEM, "error writing to ambient file");
708 greg 1.1 }
709    
710    
711 greg 2.20 static AMBVAL *
712 greg 2.88 avstore( /* allocate memory and save aval */
713 greg 2.70 AMBVAL *aval
714 schorsch 2.56 )
715 greg 2.20 {
716 greg 2.70 AMBVAL *av;
717 gregl 2.43 double d;
718 greg 2.20
719     if ((av = newambval()) == NULL)
720     error(SYSTEM, "out of memory in avstore");
721 greg 2.118 memcpy(av, aval, AVSIZE); /* AVSIZE <= sizeof(AMBVAL) */
722 greg 2.26 av->next = NULL;
723     nambvals++;
724 greg 2.118 d = pbright(av->val);
725 gregl 2.43 if (d > FTINY) { /* add to log sum for averaging */
726     avsum += log(d);
727     navsum++;
728     }
729 greg 2.88 avinsert(av); /* insert in our cache tree */
730 greg 2.20 return(av);
731     }
732    
733    
734 greg 2.26 #define ATALLOCSZ 512 /* #/8 trees to allocate at once */
735    
736     static AMBTREE *atfreelist = NULL; /* free ambient tree structures */
737    
738    
739 greg 2.47 static AMBTREE *
740 schorsch 2.56 newambtree(void) /* allocate 8 ambient tree structs */
741 greg 2.26 {
742 greg 2.70 AMBTREE *atp, *upperlim;
743 greg 2.26
744     if (atfreelist == NULL) { /* get more nodes */
745 greg 2.47 atfreelist = (AMBTREE *)malloc(ATALLOCSZ*8*sizeof(AMBTREE));
746 greg 2.26 if (atfreelist == NULL)
747     return(NULL);
748     /* link new free list */
749     upperlim = atfreelist + 8*(ATALLOCSZ-1);
750     for (atp = atfreelist; atp < upperlim; atp += 8)
751     atp->kid = atp + 8;
752     atp->kid = NULL;
753     }
754     atp = atfreelist;
755     atfreelist = atp->kid;
756 greg 2.102 memset(atp, 0, 8*sizeof(AMBTREE));
757 greg 2.26 return(atp);
758     }
759    
760    
761 greg 2.47 static void
762 schorsch 2.56 freeambtree( /* free 8 ambient tree structs */
763     AMBTREE *atp
764     )
765 greg 2.26 {
766 greg 2.100 atp->kid = atfreelist;
767 greg 2.26 atfreelist = atp;
768     }
769    
770    
771 greg 2.47 static void
772 schorsch 2.56 unloadatree( /* unload an ambient value tree */
773 greg 2.70 AMBTREE *at,
774 schorsch 2.56 unloadtf_t *f
775     )
776 greg 2.20 {
777 greg 2.70 AMBVAL *av;
778     int i;
779 greg 2.20 /* transfer values at this node */
780     for (av = at->alist; av != NULL; av = at->alist) {
781     at->alist = av->next;
782 greg 2.102 av->next = NULL;
783 greg 2.26 (*f)(av);
784 greg 2.20 }
785 greg 2.21 if (at->kid == NULL)
786     return;
787 greg 2.20 for (i = 0; i < 8; i++) /* transfer and free children */
788 greg 2.26 unloadatree(at->kid+i, f);
789 greg 2.20 freeambtree(at->kid);
790 greg 2.26 at->kid = NULL;
791     }
792    
793    
794 schorsch 2.56 static void
795 greg 2.71 avfree(AMBVAL *av)
796     {
797     free(av);
798     }
799    
800 greg 2.112
801 greg 2.71 static void
802 greg 2.112 sortambvals(void) /* resort ambient values */
803 greg 2.27 {
804 greg 2.112 AMBTREE oldatrunk = atrunk;
805 greg 2.27
806 greg 2.112 atrunk.alist = NULL;
807     atrunk.kid = NULL;
808     unloadatree(&oldatrunk, avinsert);
809 greg 2.20 }
810    
811    
812 greg 2.18 #ifdef F_SETLKW
813 greg 2.10
814 greg 2.47 static void
815 schorsch 2.56 aflock( /* lock/unlock ambient file */
816     int typ
817     )
818 greg 2.19 {
819     static struct flock fls; /* static so initialized to zeroes */
820    
821 greg 2.66 if (typ == fls.l_type) /* already called? */
822     return;
823 greg 2.109
824 greg 2.19 fls.l_type = typ;
825 greg 2.109 do
826     if (fcntl(fileno(ambfp), F_SETLKW, &fls) != -1)
827     return;
828     while (errno == EINTR);
829    
830     error(SYSTEM, "cannot (un)lock ambient file");
831 greg 2.19 }
832    
833    
834 greg 2.71 int
835 schorsch 2.56 ambsync(void) /* synchronize ambient file */
836 greg 2.7 {
837 greg 2.15 long flen;
838 greg 2.12 AMBVAL avs;
839 greg 2.70 int n;
840 greg 2.16
841 greg 2.65 if (ambfp == NULL) /* no ambient file? */
842     return(0);
843 greg 2.63 /* gain appropriate access */
844     aflock(nunflshed ? F_WRLCK : F_RDLCK);
845 greg 2.7 /* see if file has grown */
846 greg 2.55 if ((flen = lseek(fileno(ambfp), (off_t)0, SEEK_END)) < 0)
847 greg 2.21 goto seekerr;
848 greg 2.68 if ((n = flen - lastpos) > 0) { /* file has grown */
849 greg 2.104 if (ambinp == NULL) { /* get new file pointer */
850     ambinp = fopen(ambfile, "rb");
851 greg 2.14 if (ambinp == NULL)
852 greg 2.104 error(SYSTEM, "fopen failed in ambsync");
853 greg 2.14 }
854 greg 2.66 if (fseek(ambinp, lastpos, SEEK_SET) < 0)
855 greg 2.21 goto seekerr;
856 greg 2.15 while (n >= AMBVALSIZ) { /* load contributed values */
857 greg 2.37 if (!readambval(&avs, ambinp)) {
858     sprintf(errmsg,
859 greg 2.47 "ambient file \"%s\" corrupted near character %ld",
860     ambfile, flen - n);
861 greg 2.37 error(WARNING, errmsg);
862     break;
863     }
864 greg 2.88 avstore(&avs);
865 greg 2.15 n -= AMBVALSIZ;
866     }
867 greg 2.104 lastpos = flen - n; /* check alignment */
868     if (n && lseek(fileno(ambfp), (off_t)lastpos, SEEK_SET) < 0)
869     goto seekerr;
870 greg 2.7 }
871     n = fflush(ambfp); /* calls write() at last */
872 greg 2.104 lastpos += (long)nunflshed*AMBVALSIZ;
873 greg 2.19 aflock(F_UNLCK); /* release file */
874 greg 2.16 nunflshed = 0;
875 greg 2.7 return(n);
876 greg 2.21 seekerr:
877     error(SYSTEM, "seek failed in ambsync");
878 greg 2.104 return(EOF); /* pro forma return */
879 greg 2.18 }
880    
881 greg 2.71 #else /* ! F_SETLKW */
882 greg 2.18
883 greg 2.71 int
884 schorsch 2.56 ambsync(void) /* flush ambient file */
885 greg 2.18 {
886 greg 2.65 if (ambfp == NULL)
887     return(0);
888 greg 2.18 nunflshed = 0;
889     return(fflush(ambfp));
890 greg 1.1 }
891 greg 2.10
892 greg 2.71 #endif /* ! F_SETLKW */