1 |
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/* Copyright (c) 1986 Regents of the University of California */ |
2 |
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|
3 |
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#ifndef lint |
4 |
< |
static char SCCSid[] = "$SunId$ LBL"; |
5 |
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#endif |
6 |
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|
1 |
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static const char RCSid[] = "$Id$"; |
2 |
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/* |
3 |
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* ambient.c - routines dealing with ambient (inter-reflected) component. |
4 |
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* |
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* The macro AMBFLUSH (if defined) is the number of ambient values |
11 |
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* to wait before flushing to the ambient file. |
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* |
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* 5/9/86 |
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* Declarations of external symbols in ambient.h |
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*/ |
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8 |
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#include "ray.h" |
8 |
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#include "copyright.h" |
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|
10 |
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#include "octree.h" |
10 |
> |
#include <string.h> |
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|
12 |
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#include "platform.h" |
13 |
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#include "ray.h" |
14 |
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#include "otypes.h" |
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#include "otspecial.h" |
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#include "resolu.h" |
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#include "ambient.h" |
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#include "random.h" |
19 |
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#include "pmapamb.h" |
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|
21 |
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#define OCTSCALE 0.5 /* ceil((valid rad.)/(cube size)) */ |
21 |
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#ifndef OCTSCALE |
22 |
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#define OCTSCALE 1.0 /* ceil((valid rad.)/(cube size)) */ |
23 |
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#endif |
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|
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extern CUBE thescene; /* contains space boundaries */ |
25 |
> |
#ifndef MAXASET |
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#define MAXASET 4095 /* maximum number of elements in ambient set */ |
27 |
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#endif |
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OBJECT ambset[MAXASET+1]={0}; /* ambient include/exclude set */ |
29 |
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|
30 |
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extern COLOR ambval; /* global ambient component */ |
31 |
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extern double ambacc; /* ambient accuracy */ |
28 |
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extern int ambres; /* ambient resolution */ |
29 |
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extern int ambdiv; /* number of divisions for calculation */ |
30 |
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extern int ambssamp; /* number of super-samples */ |
31 |
< |
extern int ambounce; /* number of ambient bounces */ |
32 |
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extern char *amblist[]; /* ambient include/exclude list */ |
33 |
< |
extern int ambincl; /* include == 1, exclude == 0 */ |
30 |
> |
double maxarad; /* maximum ambient radius */ |
31 |
> |
double minarad; /* minimum ambient radius */ |
32 |
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|
33 |
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OBJECT ambset[128]; /* ambient include/exclude set */ |
33 |
> |
static AMBTREE atrunk; /* our ambient trunk node */ |
34 |
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|
35 |
< |
double maxarad; /* maximum ambient radius */ |
36 |
< |
double minarad; /* minimum ambient radius */ |
35 |
> |
static FILE *ambfp = NULL; /* ambient file pointer */ |
36 |
> |
static int nunflshed = 0; /* number of unflushed ambient values */ |
37 |
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|
38 |
< |
typedef struct ambval { |
39 |
< |
FVECT pos; /* position in space */ |
40 |
< |
FVECT dir; /* normal direction */ |
41 |
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int lvl; /* recursion level of parent ray */ |
42 |
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float weight; /* weight of parent ray */ |
43 |
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COLOR val; /* computed ambient value */ |
46 |
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float rad; /* validity radius */ |
47 |
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struct ambval *next; /* next in list */ |
48 |
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} AMBVAL; /* ambient value */ |
38 |
> |
static double avsum = 0.; /* computed ambient value sum (log) */ |
39 |
> |
static unsigned int navsum = 0; /* number of values in avsum */ |
40 |
> |
static unsigned int nambvals = 0; /* total number of indirect values */ |
41 |
> |
static unsigned int nambshare = 0; /* number of values from file */ |
42 |
> |
static FILE *ambinp = NULL; /* auxiliary file for input */ |
43 |
> |
static long lastpos = -1; /* last flush position */ |
44 |
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|
45 |
< |
typedef struct ambtree { |
51 |
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AMBVAL *alist; /* ambient value list */ |
52 |
< |
struct ambtree *kid; /* 8 child nodes */ |
53 |
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} AMBTREE; /* ambient octree */ |
45 |
> |
#define AMBFLUSH (BUFSIZ/AMBVALSIZ) |
46 |
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|
47 |
< |
typedef struct { |
48 |
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float k; /* error contribution per sample */ |
57 |
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COLOR v; /* ray sum */ |
58 |
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int n; /* number of samples */ |
59 |
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short t, p; /* theta, phi indices */ |
60 |
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} AMBSAMP; /* ambient sample */ |
47 |
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#define AVSIZE (sizeof(AMBVAL)-sizeof(SCOLOR)+sizeof(COLORV)*NCSAMP) |
48 |
> |
#define newambval() (AMBVAL *)malloc(AVSIZE) |
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|
50 |
< |
static AMBTREE atrunk; /* our ambient trunk node */ |
50 |
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#define tfunc(x0, x, x1) (((x)-(x0))/((x1)-(x0))) |
51 |
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|
52 |
< |
static FILE *ambfp = NULL; /* ambient file pointer */ |
52 |
> |
static void initambfile(int cre8); |
53 |
> |
static void avsave(AMBVAL *av); |
54 |
> |
static AMBVAL *avstore(AMBVAL *aval); |
55 |
> |
static AMBTREE *newambtree(void); |
56 |
> |
static void freeambtree(AMBTREE *atp); |
57 |
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|
58 |
< |
#define newambval() (AMBVAL *)bmalloc(sizeof(AMBVAL)) |
58 |
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typedef void unloadtf_t(AMBVAL *); |
59 |
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static unloadtf_t avinsert; |
60 |
> |
static unloadtf_t avfree; |
61 |
> |
static void unloadatree(AMBTREE *at, unloadtf_t *f); |
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|
63 |
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#define newambtree() (AMBTREE *)calloc(8, sizeof(AMBTREE)) |
63 |
> |
static void sortambvals(void); |
64 |
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|
65 |
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double sumambient(), doambient(), makeambient(); |
65 |
> |
static int plugaleak(RAY *r, AMBVAL *ap, FVECT anorm, double ang); |
66 |
> |
static double sumambient(SCOLOR acol, RAY *r, FVECT rn, int al, |
67 |
> |
AMBTREE *at, FVECT c0, double s); |
68 |
> |
static int makeambient(SCOLOR acol, RAY *r, FVECT rn, int al); |
69 |
> |
static int extambient(SCOLOR cr, AMBVAL *ap, FVECT pv, FVECT nv, |
70 |
> |
FVECT uvw[3]); |
71 |
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|
72 |
+ |
#ifdef F_SETLKW |
73 |
+ |
static void aflock(int typ); |
74 |
+ |
#endif |
75 |
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|
76 |
< |
setambient(afile) /* initialize calculation */ |
77 |
< |
char *afile; |
76 |
> |
|
77 |
> |
void |
78 |
> |
setambres( /* set ambient resolution */ |
79 |
> |
int ar |
80 |
> |
) |
81 |
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{ |
82 |
< |
long ftell(); |
83 |
< |
char **amblp; |
84 |
< |
OBJECT obj; |
85 |
< |
AMBVAL amb; |
86 |
< |
/* set up ambient set */ |
87 |
< |
ambset[0] = 0; |
88 |
< |
for (amblp = amblist; *amblp != NULL; amblp++) { |
89 |
< |
if ((obj = modifier(*amblp)) == OVOID) { |
90 |
< |
sprintf(errmsg, "unknown %s modifier \"%s\"", |
91 |
< |
ambincl ? "include" : "exclude", *amblp); |
82 |
> |
ambres = ar < 0 ? 0 : ar; /* may be done already */ |
83 |
> |
/* set min & max radii */ |
84 |
> |
if (ar <= 0) { |
85 |
> |
minarad = 0; |
86 |
> |
maxarad = thescene.cusize*0.2; |
87 |
> |
} else { |
88 |
> |
minarad = thescene.cusize / ar; |
89 |
> |
maxarad = 64.0 * minarad; /* heuristic */ |
90 |
> |
if (maxarad > thescene.cusize*0.2) |
91 |
> |
maxarad = thescene.cusize*0.2; |
92 |
> |
} |
93 |
> |
if (minarad <= FTINY) |
94 |
> |
minarad = 10.0*FTINY; |
95 |
> |
if (maxarad <= minarad) |
96 |
> |
maxarad = 64.0 * minarad; |
97 |
> |
} |
98 |
> |
|
99 |
> |
|
100 |
> |
void |
101 |
> |
setambacc( /* set ambient accuracy */ |
102 |
> |
double newa |
103 |
> |
) |
104 |
> |
{ |
105 |
> |
static double olda; /* remember previous setting here */ |
106 |
> |
|
107 |
> |
newa *= (newa > 0); |
108 |
> |
if (fabs(newa - olda) >= .05*(newa + olda)) { |
109 |
> |
ambacc = newa; |
110 |
> |
if (ambacc > FTINY && nambvals > 0) |
111 |
> |
sortambvals(); /* rebuild tree */ |
112 |
> |
} |
113 |
> |
} |
114 |
> |
|
115 |
> |
|
116 |
> |
void |
117 |
> |
setambient(void) /* initialize calculation */ |
118 |
> |
{ |
119 |
> |
int readonly = 0; |
120 |
> |
long flen; |
121 |
> |
AMBVAL amb; |
122 |
> |
/* make sure we're fresh */ |
123 |
> |
ambdone(); |
124 |
> |
/* init ambient limits */ |
125 |
> |
setambres(ambres); |
126 |
> |
setambacc(ambacc); |
127 |
> |
if (ambfile == NULL || !ambfile[0]) |
128 |
> |
return; |
129 |
> |
if (ambacc <= FTINY) { |
130 |
> |
sprintf(errmsg, "zero ambient accuracy so \"%s\" not opened", |
131 |
> |
ambfile); |
132 |
> |
error(WARNING, errmsg); |
133 |
> |
return; |
134 |
> |
} |
135 |
> |
/* open ambient file */ |
136 |
> |
if ((ambfp = fopen(ambfile, "r+")) == NULL) |
137 |
> |
readonly = (ambfp = fopen(ambfile, "r")) != NULL; |
138 |
> |
if (ambfp != NULL) { |
139 |
> |
initambfile(0); /* file exists */ |
140 |
> |
lastpos = ftell(ambfp); |
141 |
> |
while (readambval(&amb, ambfp)) |
142 |
> |
avstore(&amb); |
143 |
> |
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 |
< |
continue; |
149 |
> |
fclose(ambfp); /* close file so no writes */ |
150 |
> |
ambfp = NULL; |
151 |
> |
return; /* avoid ambsync() */ |
152 |
|
} |
153 |
< |
if (!inset(ambset, obj)) |
154 |
< |
insertelem(ambset, obj); |
153 |
> |
/* align file pointer */ |
154 |
> |
lastpos += (long)nambvals*AMBVALSIZ; |
155 |
> |
flen = lseek(fileno(ambfp), (off_t)0, SEEK_END); |
156 |
> |
if (flen != lastpos) { |
157 |
> |
sprintf(errmsg, |
158 |
> |
"ignoring last %ld values in ambient file (corrupted)", |
159 |
> |
(flen - lastpos)/AMBVALSIZ); |
160 |
> |
error(WARNING, errmsg); |
161 |
> |
fseek(ambfp, lastpos, SEEK_SET); |
162 |
> |
ftruncate(fileno(ambfp), (off_t)lastpos); |
163 |
> |
} |
164 |
> |
} else if ((ambfp = fopen(ambfile, "w+")) != NULL) { |
165 |
> |
initambfile(1); /* else create new file */ |
166 |
> |
fflush(ambfp); |
167 |
> |
lastpos = ftell(ambfp); |
168 |
> |
} else { |
169 |
> |
sprintf(errmsg, "cannot open ambient file \"%s\"", ambfile); |
170 |
> |
error(SYSTEM, errmsg); |
171 |
|
} |
172 |
< |
maxarad = thescene.cusize / 2.0; /* maximum radius */ |
173 |
< |
/* minimum radius */ |
174 |
< |
minarad = ambres > 0 ? thescene.cusize/ambres : 0.0; |
172 |
> |
#ifdef F_SETLKW |
173 |
> |
aflock(F_UNLCK); /* release file */ |
174 |
> |
#endif |
175 |
> |
} |
176 |
|
|
177 |
< |
/* open ambient file */ |
178 |
< |
if (afile != NULL) |
179 |
< |
if ((ambfp = fopen(afile, "r+")) != NULL) { |
180 |
< |
while (fread(&amb, sizeof(AMBVAL), 1, ambfp) == 1) |
181 |
< |
avinsert(&amb, &atrunk, thescene.cuorg, |
182 |
< |
thescene.cusize); |
183 |
< |
/* align */ |
184 |
< |
fseek(ambfp, -(ftell(ambfp)%sizeof(AMBVAL)), 1); |
185 |
< |
} else if ((ambfp = fopen(afile, "w")) == NULL) { |
186 |
< |
sprintf(errmsg, "cannot open ambient file \"%s\"", |
187 |
< |
afile); |
107 |
< |
error(SYSTEM, errmsg); |
177 |
> |
|
178 |
> |
void |
179 |
> |
ambdone(void) /* close ambient file and free memory */ |
180 |
> |
{ |
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 |
+ |
unloadatree(&atrunk, avfree); |
193 |
+ |
/* reset state variables */ |
194 |
+ |
avsum = 0.; |
195 |
+ |
navsum = 0; |
196 |
+ |
nambvals = 0; |
197 |
+ |
nambshare = 0; |
198 |
|
} |
199 |
|
|
200 |
|
|
201 |
< |
ambient(acol, r) /* compute ambient component for ray */ |
202 |
< |
COLOR acol; |
203 |
< |
register RAY *r; |
201 |
> |
void |
202 |
> |
ambnotify( /* record new modifier */ |
203 |
> |
OBJECT obj |
204 |
> |
) |
205 |
|
{ |
206 |
+ |
static int hitlimit = 0; |
207 |
+ |
OBJREC *o; |
208 |
+ |
char **amblp; |
209 |
+ |
|
210 |
+ |
if (obj == OVOID) { /* starting over */ |
211 |
+ |
ambset[0] = 0; |
212 |
+ |
hitlimit = 0; |
213 |
+ |
return; |
214 |
+ |
} |
215 |
+ |
o = objptr(obj); |
216 |
+ |
if (hitlimit || !ismodifier(o->otype)) |
217 |
+ |
return; |
218 |
+ |
for (amblp = amblist; *amblp != NULL; amblp++) |
219 |
+ |
if (!strcmp(o->oname, *amblp)) { |
220 |
+ |
if (ambset[0] >= MAXASET) { |
221 |
+ |
error(WARNING, "too many modifiers in ambient list"); |
222 |
+ |
hitlimit++; |
223 |
+ |
return; /* should this be fatal? */ |
224 |
+ |
} |
225 |
+ |
insertelem(ambset, obj); |
226 |
+ |
return; |
227 |
+ |
} |
228 |
+ |
} |
229 |
+ |
|
230 |
+ |
|
231 |
+ |
void |
232 |
+ |
multambient( /* compute ambient component & multiply by coef. */ |
233 |
+ |
SCOLOR aval, |
234 |
+ |
RAY *r, |
235 |
+ |
FVECT nrm |
236 |
+ |
) |
237 |
+ |
{ |
238 |
+ |
static double logAvgAbsorp = 1; |
239 |
|
static int rdepth = 0; /* ambient recursion */ |
240 |
< |
double wsum; |
240 |
> |
SCOLOR acol, caustic; |
241 |
> |
int i, ok; |
242 |
> |
double d, l; |
243 |
|
|
244 |
< |
rdepth++; /* increment level */ |
244 |
> |
/* 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 |
+ |
if (logAvgAbsorp > 0) /* exclude in -aw to avoid growth */ |
251 |
+ |
logAvgAbsorp = log(1.-AVGREFL); |
252 |
+ |
|
253 |
+ |
/* 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 |
+ |
{/* 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 |
|
if (ambdiv <= 0) /* no ambient calculation */ |
263 |
|
goto dumbamb; |
264 |
|
/* check number of bounces */ |
265 |
< |
if (rdepth > ambounce) |
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 |
< |
if (ambacc <= FTINY) { /* no ambient storage */ |
273 |
< |
if (doambient(acol, r) == 0.0) |
272 |
> |
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 |
> |
FVECT uvd[2]; |
277 |
> |
|
278 |
> |
if (sgn*rdot < 0.9999) |
279 |
> |
dgp = dgrad; /* compute rotational grad. */ |
280 |
> |
copyscolor(acol, aval); |
281 |
> |
rdepth++; |
282 |
> |
ok = doambient(acol, r, r->rweight*sgn, |
283 |
> |
uvd, NULL, NULL, dgp, NULL); |
284 |
> |
rdepth--; |
285 |
> |
if (!ok) |
286 |
|
goto dumbamb; |
287 |
< |
goto done; |
287 |
> |
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 |
> |
d += sgn*v1[i] * (dgp[0]*uvd[0][i] + dgp[1]*uvd[1][i]); |
293 |
> |
if (d >= 0.05) |
294 |
> |
scalescolor(acol, d); |
295 |
> |
} |
296 |
> |
copyscolor(aval, acol); |
297 |
> |
|
298 |
> |
/* PMAP: add in caustic */ |
299 |
> |
saddscolor(aval, caustic); |
300 |
> |
return; |
301 |
|
} |
302 |
< |
/* get ambient value */ |
303 |
< |
setcolor(acol, 0.0, 0.0, 0.0); |
304 |
< |
wsum = sumambient(acol, r, &atrunk, thescene.cuorg, thescene.cusize); |
305 |
< |
if (wsum > FTINY) |
306 |
< |
scalecolor(acol, 1.0/wsum); |
307 |
< |
else if (makeambient(acol, r) == 0.0) |
308 |
< |
goto dumbamb; |
309 |
< |
goto done; |
302 |
> |
/* interpolate ambient value */ |
303 |
> |
scolorblack(acol); |
304 |
> |
d = sumambient(acol, r, nrm, rdepth, |
305 |
> |
&atrunk, thescene.cuorg, thescene.cusize); |
306 |
> |
|
307 |
> |
if (d > FTINY) { |
308 |
> |
scalescolor(acol, 1.0/d); |
309 |
> |
smultscolor(aval, acol); |
310 |
|
|
311 |
< |
dumbamb: /* return global value */ |
312 |
< |
copycolor(acol, ambval); |
313 |
< |
done: /* must finish here! */ |
311 |
> |
/* PMAP: add in caustic */ |
312 |
> |
saddscolor(aval, caustic); |
313 |
> |
return; |
314 |
> |
} |
315 |
> |
|
316 |
> |
rdepth++; /* need to cache new value */ |
317 |
> |
ok = makeambient(acol, r, nrm, rdepth-1); |
318 |
|
rdepth--; |
319 |
+ |
|
320 |
+ |
if (ok) { |
321 |
+ |
smultscolor(aval, acol); /* computed new value */ |
322 |
+ |
|
323 |
+ |
/* PMAP: add in caustic */ |
324 |
+ |
saddscolor(aval, caustic); |
325 |
+ |
return; |
326 |
+ |
} |
327 |
+ |
|
328 |
+ |
dumbamb: /* return global value */ |
329 |
+ |
if ((ambvwt <= 0) | (navsum == 0)) { |
330 |
+ |
smultcolor(aval, ambval); |
331 |
+ |
|
332 |
+ |
/* PMAP: add in caustic */ |
333 |
+ |
saddscolor(aval, caustic); |
334 |
+ |
return; |
335 |
+ |
} |
336 |
+ |
|
337 |
+ |
l = bright(ambval); /* average in computations */ |
338 |
+ |
if (l > FTINY) { |
339 |
+ |
d = (log(l)*(double)ambvwt + avsum + logAvgAbsorp*navsum) / |
340 |
+ |
(double)(ambvwt + navsum); |
341 |
+ |
d = exp(d) / l; |
342 |
+ |
scalescolor(aval, d); |
343 |
+ |
smultcolor(aval, ambval); /* apply color of ambval */ |
344 |
+ |
} else { |
345 |
+ |
d = exp( avsum/(double)navsum + logAvgAbsorp ); |
346 |
+ |
scalescolor(aval, d); /* neutral color */ |
347 |
+ |
} |
348 |
|
} |
349 |
|
|
350 |
|
|
351 |
< |
double |
352 |
< |
sumambient(acol, r, at, c0, s) /* get interpolated ambient value */ |
353 |
< |
COLOR acol; |
155 |
< |
register RAY *r; |
156 |
< |
AMBTREE *at; |
157 |
< |
FVECT c0; |
158 |
< |
double s; |
351 |
> |
/* 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 |
< |
extern double sqrt(); |
356 |
< |
double d, e1, e2, wt, wsum; |
357 |
< |
COLOR ct; |
358 |
< |
FVECT ck0; |
359 |
< |
int i; |
360 |
< |
register int j; |
361 |
< |
register AMBVAL *av; |
362 |
< |
/* do this node */ |
363 |
< |
wsum = 0.0; |
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 |
> |
OBJREC *m = findmaterial(rtst.ro); |
385 |
> |
if (m != NULL && !istransp(m) && !isBSDFproxy(m) && |
386 |
> |
(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 |
> |
sumambient( /* get interpolated ambient value */ |
399 |
> |
SCOLOR acol, |
400 |
> |
RAY *r, |
401 |
> |
FVECT rn, |
402 |
> |
int al, |
403 |
> |
AMBTREE *at, |
404 |
> |
FVECT c0, |
405 |
> |
double s |
406 |
> |
) |
407 |
> |
{ /* initial limit is 10 degrees plus ambacc radians */ |
408 |
> |
const double minangle = 10.0 * PI/180.; |
409 |
> |
const int sgn = 1 - 2*(DOT(r->ron,rn) < 0); |
410 |
> |
double maxangle = minangle + ambacc; |
411 |
> |
double wsum = 0.0; |
412 |
> |
FVECT ck0; |
413 |
> |
int i, j; |
414 |
> |
AMBVAL *av; |
415 |
> |
|
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 |
> |
if ((wsum >= 0.05) & (s*ambacc > minarad)) |
434 |
> |
return(wsum); |
435 |
> |
} |
436 |
> |
/* 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 |
> |
/* sum this node */ |
440 |
|
for (av = at->alist; av != NULL; av = av->next) { |
441 |
+ |
double u, v, d, delta_r2, delta_t2; |
442 |
+ |
SCOLOR sct; |
443 |
+ |
FVECT uvw[3]; |
444 |
|
/* |
445 |
< |
* Ray strength test. |
445 |
> |
* Ambient level test |
446 |
|
*/ |
447 |
< |
if (av->lvl > r->rlvl || av->weight < r->rweight-FTINY) |
447 |
> |
if (av->lvl > al || /* list sorted, so this works */ |
448 |
> |
(av->lvl == al) & (av->weight < 0.9*r->rweight)) |
449 |
> |
break; |
450 |
> |
/* |
451 |
> |
* Direction test using unperturbed normal |
452 |
> |
*/ |
453 |
> |
decodedir(uvw[2], av->ndir); |
454 |
> |
d = sgn * DOT(uvw[2], r->ron); |
455 |
> |
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 |
< |
* Ambient radius test. |
461 |
> |
* Modified ray behind test |
462 |
|
*/ |
463 |
< |
e1 = 0.0; |
464 |
< |
for (j = 0; j < 3; j++) { |
465 |
< |
d = av->pos[j] - r->rop[j]; |
181 |
< |
e1 += d * d; |
182 |
< |
} |
183 |
< |
e1 /= av->rad * av->rad; |
184 |
< |
if (e1 > ambacc*ambacc*1.21) |
463 |
> |
VSUB(ck0, r->rop, av->pos); |
464 |
> |
d = DOT(ck0, uvw[2]); |
465 |
> |
if (d < -minarad*ambacc) |
466 |
|
continue; |
467 |
+ |
d /= av->rad[0]; |
468 |
+ |
delta_t2 = d*d; |
469 |
+ |
if (delta_t2 >= ambacc*ambacc) |
470 |
+ |
continue; |
471 |
|
/* |
472 |
< |
* Normal direction test. |
472 |
> |
* Elliptical radii test based on Hessian |
473 |
|
*/ |
474 |
< |
e2 = (1.0 - DOT(av->dir, r->ron)) * r->rweight; |
475 |
< |
if (e2 < 0.0) e2 = 0.0; |
476 |
< |
if (e1 + e2 > ambacc*ambacc*1.21) |
474 |
> |
decodedir(uvw[0], av->udir); |
475 |
> |
VCROSS(uvw[1], uvw[2], uvw[0]); |
476 |
> |
d = (u = DOT(ck0, uvw[0])) / av->rad[0]; |
477 |
> |
delta_t2 += d*d; |
478 |
> |
d = (v = DOT(ck0, uvw[1])) / av->rad[1]; |
479 |
> |
delta_t2 += d*d; |
480 |
> |
if (delta_t2 >= ambacc*ambacc) |
481 |
|
continue; |
482 |
|
/* |
483 |
< |
* Ray behind test. |
483 |
> |
* Test for potential light leak |
484 |
|
*/ |
485 |
< |
d = 0.0; |
197 |
< |
for (j = 0; j < 3; j++) |
198 |
< |
d += (r->rop[j] - av->pos[j]) * |
199 |
< |
(av->dir[j] + r->ron[j]); |
200 |
< |
if (d < -minarad) |
485 |
> |
if (av->corral && plugaleak(r, av, uvw[2], atan2a(v,u))) |
486 |
|
continue; |
487 |
|
/* |
488 |
< |
* Jittering final test reduces image artifacts. |
488 |
> |
* Extrapolate value and compute final weight (hat function) |
489 |
|
*/ |
490 |
< |
wt = sqrt(e1) + sqrt(e2); |
206 |
< |
if (wt > ambacc*(0.9 + 0.2*frandom())) |
490 |
> |
if (!extambient(sct, av, r->rop, rn, uvw)) |
491 |
|
continue; |
492 |
< |
if (wt <= 1e-3) |
493 |
< |
wt = 1e3; |
494 |
< |
else |
495 |
< |
wt = 1.0 / wt; |
496 |
< |
wsum += wt; |
213 |
< |
copycolor(ct, av->val); |
214 |
< |
scalecolor(ct, wt); |
215 |
< |
addcolor(acol, ct); |
492 |
> |
d = tfunc(maxangle, sqrt(delta_r2), 0.0) * |
493 |
> |
tfunc(ambacc, sqrt(delta_t2), 0.0); |
494 |
> |
scalescolor(sct, d); |
495 |
> |
saddscolor(acol, sct); |
496 |
> |
wsum += d; |
497 |
|
} |
217 |
– |
if (at->kid == NULL) |
218 |
– |
return(wsum); |
219 |
– |
/* do children */ |
220 |
– |
s *= 0.5; |
221 |
– |
for (i = 0; i < 8; i++) { |
222 |
– |
for (j = 0; j < 3; j++) { |
223 |
– |
ck0[j] = c0[j]; |
224 |
– |
if (1<<j & i) |
225 |
– |
ck0[j] += s; |
226 |
– |
if (r->rop[j] < ck0[j] - OCTSCALE*s) |
227 |
– |
break; |
228 |
– |
if (r->rop[j] > ck0[j] + (1.0+OCTSCALE)*s) |
229 |
– |
break; |
230 |
– |
} |
231 |
– |
if (j == 3) |
232 |
– |
wsum += sumambient(acol, r, at->kid+i, ck0, s); |
233 |
– |
} |
498 |
|
return(wsum); |
499 |
|
} |
500 |
|
|
501 |
|
|
502 |
< |
double |
503 |
< |
makeambient(acol, r) /* make a new ambient value */ |
504 |
< |
COLOR acol; |
505 |
< |
register RAY *r; |
502 |
> |
static int |
503 |
> |
makeambient( /* make a new ambient value for storage */ |
504 |
> |
SCOLOR acol, |
505 |
> |
RAY *r, |
506 |
> |
FVECT rn, |
507 |
> |
int al |
508 |
> |
) |
509 |
|
{ |
510 |
< |
AMBVAL amb; |
510 |
> |
int sgn = 1 - 2*(DOT(r->ron,rn) < 0); |
511 |
> |
AMBVAL amb; |
512 |
> |
FVECT uvw[3]; |
513 |
> |
int i; |
514 |
|
|
515 |
< |
amb.rad = doambient(acol, r); /* compute ambient */ |
516 |
< |
if (amb.rad == 0.0) |
517 |
< |
return(0.0); |
518 |
< |
/* store it */ |
515 |
> |
amb.weight = 1.0; /* compute weight */ |
516 |
> |
for (i = al; i-- > 0; ) |
517 |
> |
amb.weight *= AVGREFL; |
518 |
> |
if (r->rweight < 0.1*amb.weight) /* heuristic override */ |
519 |
> |
amb.weight = 1.25*r->rweight; |
520 |
> |
setscolor(acol, AVGREFL, AVGREFL, AVGREFL); |
521 |
> |
/* compute ambient */ |
522 |
> |
i = doambient(acol, r, amb.weight*sgn, |
523 |
> |
uvw, amb.rad, amb.gpos, amb.gdir, &amb.corral); |
524 |
> |
scalescolor(acol, 1./AVGREFL); /* undo assumed reflectance */ |
525 |
> |
if (i <= 0 || amb.rad[0] <= FTINY) /* no Hessian or zero radius */ |
526 |
> |
return(i); |
527 |
> |
uvw[2][0] = sgn*r->ron[0]; /* orient unperturbed normal */ |
528 |
> |
uvw[2][1] = sgn*r->ron[1]; |
529 |
> |
uvw[2][2] = sgn*r->ron[2]; |
530 |
> |
/* store value */ |
531 |
|
VCOPY(amb.pos, r->rop); |
532 |
< |
VCOPY(amb.dir, r->ron); |
533 |
< |
amb.lvl = r->rlvl; |
534 |
< |
amb.weight = r->rweight; |
535 |
< |
copycolor(amb.val, acol); |
536 |
< |
/* insert into tree */ |
537 |
< |
avinsert(&amb, &atrunk, thescene.cuorg, thescene.cusize); |
538 |
< |
avsave(&amb); /* write to file */ |
539 |
< |
return(amb.rad); |
532 |
> |
amb.ndir = encodedir(uvw[2]); |
533 |
> |
amb.udir = encodedir(uvw[0]); |
534 |
> |
amb.lvl = al; |
535 |
> |
copyscolor(amb.val, acol); |
536 |
> |
avsave(&amb); /* insert and save to file */ |
537 |
> |
if (DOT(uvw[2],rn) < 0.9999) /* texture? */ |
538 |
> |
extambient(acol, &amb, r->rop, rn, uvw); |
539 |
> |
return(1); |
540 |
|
} |
541 |
|
|
542 |
|
|
543 |
< |
double |
544 |
< |
doambient(acol, r) /* compute ambient component */ |
545 |
< |
COLOR acol; |
546 |
< |
register RAY *r; |
543 |
> |
static int |
544 |
> |
extambient( /* extrapolate value at pv, nv */ |
545 |
> |
SCOLOR scr, |
546 |
> |
AMBVAL *ap, |
547 |
> |
FVECT pv, |
548 |
> |
FVECT nv, |
549 |
> |
FVECT uvw[3] |
550 |
> |
) |
551 |
|
{ |
552 |
< |
extern int ambcmp(); |
553 |
< |
extern double sin(), cos(), sqrt(); |
554 |
< |
double phi, xd, yd, zd; |
555 |
< |
double b, b2; |
556 |
< |
register AMBSAMP *div; |
557 |
< |
AMBSAMP dnew; |
272 |
< |
RAY ar; |
273 |
< |
FVECT ux, uy; |
274 |
< |
double arad; |
275 |
< |
int ndivs, nt, np, ns, ne, i, j; |
276 |
< |
register int k; |
552 |
> |
const double min_d = 0.05; |
553 |
> |
const double max_d = 20.; |
554 |
> |
static FVECT my_uvw[3]; |
555 |
> |
FVECT v1; |
556 |
> |
int i; |
557 |
> |
double d = 1.0; /* zeroeth order */ |
558 |
|
|
559 |
< |
setcolor(acol, 0.0, 0.0, 0.0); |
560 |
< |
/* set number of divisions */ |
561 |
< |
nt = sqrt(ambdiv * r->rweight * 0.5) + 0.5; |
562 |
< |
np = 2 * nt; |
563 |
< |
ndivs = nt * np; |
283 |
< |
/* check first */ |
284 |
< |
if (ndivs == 0 || rayorigin(&ar, r, AMBIENT, 0.5) < 0) |
285 |
< |
return(0.0); |
286 |
< |
/* set number of super-samples */ |
287 |
< |
ns = ambssamp * r->rweight + 0.5; |
288 |
< |
if (ns > 0) { |
289 |
< |
div = (AMBSAMP *)malloc(ndivs*sizeof(AMBSAMP)); |
290 |
< |
if (div == NULL) |
291 |
< |
error(SYSTEM, "out of memory in doambient"); |
559 |
> |
if (uvw == NULL) { /* need local coordinates? */ |
560 |
> |
decodedir(my_uvw[2], ap->ndir); |
561 |
> |
decodedir(my_uvw[0], ap->udir); |
562 |
> |
VCROSS(my_uvw[1], my_uvw[2], my_uvw[0]); |
563 |
> |
uvw = my_uvw; |
564 |
|
} |
565 |
< |
/* make axes */ |
566 |
< |
uy[0] = uy[1] = uy[2] = 0.0; |
567 |
< |
for (k = 0; k < 3; k++) |
296 |
< |
if (r->ron[k] < 0.6 && r->ron[k] > -0.6) |
297 |
< |
break; |
298 |
< |
uy[k] = 1.0; |
299 |
< |
fcross(ux, r->ron, uy); |
300 |
< |
normalize(ux); |
301 |
< |
fcross(uy, ux, r->ron); |
302 |
< |
/* sample divisions */ |
303 |
< |
arad = 0.0; |
304 |
< |
ne = 0; |
305 |
< |
for (i = 0; i < nt; i++) |
306 |
< |
for (j = 0; j < np; j++) { |
307 |
< |
rayorigin(&ar, r, AMBIENT, 0.5); /* pretested */ |
308 |
< |
zd = sqrt((i+frandom())/nt); |
309 |
< |
phi = 2.0*PI * (j+frandom())/np; |
310 |
< |
xd = cos(phi) * zd; |
311 |
< |
yd = sin(phi) * zd; |
312 |
< |
zd = sqrt(1.0 - zd*zd); |
313 |
< |
for (k = 0; k < 3; k++) |
314 |
< |
ar.rdir[k] = xd*ux[k]+yd*uy[k]+zd*r->ron[k]; |
315 |
< |
rayvalue(&ar); |
316 |
< |
if (ar.rot < FHUGE) |
317 |
< |
arad += 1.0 / ar.rot; |
318 |
< |
if (ns > 0) { /* save division */ |
319 |
< |
div[ne].k = 0.0; |
320 |
< |
copycolor(div[ne].v, ar.rcol); |
321 |
< |
div[ne].n = 0; |
322 |
< |
div[ne].t = i; div[ne].p = j; |
323 |
< |
/* sum errors */ |
324 |
< |
b = bright(ar.rcol); |
325 |
< |
if (i > 0) { /* from above */ |
326 |
< |
b2 = bright(div[ne-np].v) - b; |
327 |
< |
b2 *= b2 * 0.25; |
328 |
< |
div[ne].k += b2; |
329 |
< |
div[ne].n++; |
330 |
< |
div[ne-np].k += b2; |
331 |
< |
div[ne-np].n++; |
332 |
< |
} |
333 |
< |
if (j > 0) { /* from behind */ |
334 |
< |
b2 = bright(div[ne-1].v) - b; |
335 |
< |
b2 *= b2 * 0.25; |
336 |
< |
div[ne].k += b2; |
337 |
< |
div[ne].n++; |
338 |
< |
div[ne-1].k += b2; |
339 |
< |
div[ne-1].n++; |
340 |
< |
} |
341 |
< |
if (j == np-1) { /* around */ |
342 |
< |
b2 = bright(div[ne-(np-1)].v) - b; |
343 |
< |
b2 *= b2 * 0.25; |
344 |
< |
div[ne].k += b2; |
345 |
< |
div[ne].n++; |
346 |
< |
div[ne-(np-1)].k += b2; |
347 |
< |
div[ne-(np-1)].n++; |
348 |
< |
} |
349 |
< |
ne++; |
350 |
< |
} else |
351 |
< |
addcolor(acol, ar.rcol); |
352 |
< |
} |
353 |
< |
for (k = 0; k < ne; k++) { /* compute errors */ |
354 |
< |
if (div[k].n > 1) |
355 |
< |
div[k].k /= div[k].n; |
356 |
< |
div[k].n = 1; |
357 |
< |
} |
358 |
< |
/* sort the divisions */ |
359 |
< |
qsort(div, ne, sizeof(AMBSAMP), ambcmp); |
360 |
< |
/* skim excess */ |
361 |
< |
while (ne > ns) { |
362 |
< |
ne--; |
363 |
< |
addcolor(acol, div[ne].v); |
364 |
< |
} |
365 |
< |
/* super-sample */ |
366 |
< |
for (i = ns; i > 0; i--) { |
367 |
< |
rayorigin(&ar, r, AMBIENT, 0.5); /* pretested */ |
368 |
< |
zd = sqrt((div[0].t+frandom())/nt); |
369 |
< |
phi = 2.0*PI * (div[0].p+frandom())/np; |
370 |
< |
xd = cos(phi) * zd; |
371 |
< |
yd = sin(phi) * zd; |
372 |
< |
zd = sqrt(1.0 - zd*zd); |
373 |
< |
for (k = 0; k < 3; k++) |
374 |
< |
ar.rdir[k] = xd*ux[k]+yd*uy[k]+zd*r->ron[k]; |
375 |
< |
rayvalue(&ar); |
376 |
< |
if (ar.rot < FHUGE) |
377 |
< |
arad += 1.0 / ar.rot; |
378 |
< |
/* recompute error */ |
379 |
< |
copycolor(dnew.v, div[0].v); |
380 |
< |
addcolor(dnew.v, ar.rcol); |
381 |
< |
dnew.n = div[0].n + 1; |
382 |
< |
dnew.t = div[0].t; dnew.p = div[0].p; |
383 |
< |
b2 = bright(dnew.v)/dnew.n - bright(ar.rcol); |
384 |
< |
b2 = b2*b2 + div[0].k*(div[0].n*div[0].n); |
385 |
< |
dnew.k = b2/(dnew.n*dnew.n); |
386 |
< |
/* reinsert */ |
387 |
< |
for (k = 0; k < ne-1 && dnew.k < div[k+1].k; k++) |
388 |
< |
bcopy(&div[k+1], &div[k], sizeof(AMBSAMP)); |
389 |
< |
bcopy(&dnew, &div[k], sizeof(AMBSAMP)); |
565 |
> |
for (i = 3; i--; ) /* gradient due to translation */ |
566 |
> |
d += (pv[i] - ap->pos[i]) * |
567 |
> |
(ap->gpos[0]*uvw[0][i] + ap->gpos[1]*uvw[1][i]); |
568 |
|
|
569 |
< |
if (ne >= i) { /* extract darkest division */ |
570 |
< |
ne--; |
571 |
< |
if (div[ne].n > 1) |
572 |
< |
scalecolor(div[ne].v, 1.0/div[ne].n); |
573 |
< |
addcolor(acol, div[ne].v); |
574 |
< |
} |
575 |
< |
} |
576 |
< |
scalecolor(acol, 1.0/ndivs); |
577 |
< |
if (arad <= FTINY) |
578 |
< |
arad = FHUGE; |
579 |
< |
else |
402 |
< |
arad = (ndivs+ns) / arad / sqrt(r->rweight); |
403 |
< |
if (arad > maxarad) |
404 |
< |
arad = maxarad; |
405 |
< |
else if (arad < minarad) |
406 |
< |
arad = minarad; |
407 |
< |
if (ns > 0) |
408 |
< |
free((char *)div); |
409 |
< |
return(arad); |
569 |
> |
VCROSS(v1, uvw[2], nv); /* gradient due to rotation */ |
570 |
> |
for (i = 3; i--; ) |
571 |
> |
d += v1[i] * (ap->gdir[0]*uvw[0][i] + ap->gdir[1]*uvw[1][i]); |
572 |
> |
|
573 |
> |
if (d < min_d) /* clamp min/max scaling */ |
574 |
> |
d = min_d; |
575 |
> |
else if (d > max_d) |
576 |
> |
d = max_d; |
577 |
> |
copyscolor(scr, ap->val); |
578 |
> |
scalescolor(scr, d); |
579 |
> |
return(d > min_d); |
580 |
|
} |
581 |
|
|
582 |
|
|
583 |
< |
static int |
584 |
< |
ambcmp(d1, d2) /* decreasing order */ |
585 |
< |
AMBSAMP *d1, *d2; |
583 |
> |
static void |
584 |
> |
avinsert( /* insert ambient value in our tree */ |
585 |
> |
AMBVAL *av |
586 |
> |
) |
587 |
|
{ |
588 |
< |
if (d1->k < d2->k) |
589 |
< |
return(1); |
590 |
< |
if (d1->k > d2->k) |
591 |
< |
return(-1); |
592 |
< |
return(0); |
588 |
> |
AMBTREE *at; |
589 |
> |
AMBVAL *ap; |
590 |
> |
AMBVAL avh; |
591 |
> |
FVECT ck0; |
592 |
> |
double s; |
593 |
> |
int branch; |
594 |
> |
int i; |
595 |
> |
|
596 |
> |
if (av->rad[0] <= FTINY) |
597 |
> |
error(CONSISTENCY, "zero ambient radius in avinsert"); |
598 |
> |
at = &atrunk; |
599 |
> |
VCOPY(ck0, thescene.cuorg); |
600 |
> |
s = thescene.cusize; |
601 |
> |
while (s*(OCTSCALE/2) > av->rad[1]*ambacc) { |
602 |
> |
if (at->kid == NULL) |
603 |
> |
if ((at->kid = newambtree()) == NULL) |
604 |
> |
error(SYSTEM, "out of memory in avinsert"); |
605 |
> |
s *= 0.5; |
606 |
> |
branch = 0; |
607 |
> |
for (i = 0; i < 3; i++) |
608 |
> |
if (av->pos[i] > ck0[i] + s) { |
609 |
> |
ck0[i] += s; |
610 |
> |
branch |= 1 << i; |
611 |
> |
} |
612 |
> |
at = at->kid + branch; |
613 |
> |
} |
614 |
> |
avh.next = at->alist; /* order by increasing level */ |
615 |
> |
for (ap = &avh; ap->next != NULL; ap = ap->next) |
616 |
> |
if ( ap->next->lvl > av->lvl || |
617 |
> |
(ap->next->lvl == av->lvl) & |
618 |
> |
(ap->next->weight <= av->weight) ) |
619 |
> |
break; |
620 |
> |
av->next = ap->next; |
621 |
> |
ap->next = (AMBVAL*)av; |
622 |
> |
at->alist = avh.next; |
623 |
|
} |
624 |
|
|
625 |
|
|
626 |
< |
static |
627 |
< |
avsave(av) /* save an ambient value */ |
628 |
< |
AMBVAL *av; |
626 |
> |
static void |
627 |
> |
initambfile( /* initialize ambient file */ |
628 |
> |
int cre8 |
629 |
> |
) |
630 |
|
{ |
631 |
< |
#ifdef AMBFLUSH |
632 |
< |
static int nunflshed = 0; |
631 |
> |
extern char *progname, *octname; |
632 |
> |
static char *mybuf = NULL; |
633 |
> |
int ntries = 3; |
634 |
> |
|
635 |
> |
#ifdef F_SETLKW |
636 |
> |
aflock(cre8 ? F_WRLCK : F_RDLCK); |
637 |
|
#endif |
638 |
+ |
SET_FILE_BINARY(ambfp); |
639 |
+ |
if (mybuf == NULL) |
640 |
+ |
mybuf = (char *)bmalloc(BUFSIZ+8); |
641 |
+ |
setbuf(ambfp, mybuf); |
642 |
+ |
retry: |
643 |
+ |
if (cre8) { /* new file */ |
644 |
+ |
newheader("RADIANCE", ambfp); |
645 |
+ |
fprintf(ambfp, "%s -av %g %g %g -aw %d -ab %d -aa %g ", |
646 |
+ |
progname, colval(ambval,RED), |
647 |
+ |
colval(ambval,GRN), colval(ambval,BLU), |
648 |
+ |
ambvwt, ambounce, ambacc); |
649 |
+ |
fprintf(ambfp, "-ad %d -as %d -ar %d ", |
650 |
+ |
ambdiv, ambssamp, ambres); |
651 |
+ |
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 |
+ |
fprintf(ambfp, "-cw %g %g -cs %d ", WLPART[3], WLPART[0], NCSAMP); |
656 |
+ |
if (octname != NULL) |
657 |
+ |
fputs(octname, ambfp); |
658 |
+ |
fputc('\n', ambfp); /* end of command line, not header! */ |
659 |
+ |
fprintf(ambfp, "SOFTWARE= %s\n", VersionID); |
660 |
+ |
fputnow(ambfp); |
661 |
+ |
AMB_CNDX = CNDX; /* use current spectral sampling */ |
662 |
+ |
AMB_WLPART = WLPART; |
663 |
+ |
fputwlsplit(WLPART, ambfp); |
664 |
+ |
fputncomp(NCSAMP, ambfp); |
665 |
+ |
fputformat(AMBFMT, ambfp); |
666 |
+ |
fputc('\n', ambfp); |
667 |
+ |
putambmagic(ambfp); |
668 |
+ |
} else if (getheader(ambfp, amb_headline, NULL) < 0 || !hasambmagic(ambfp)) { |
669 |
+ |
if (--ntries > 0 && ftell(ambfp) == 0) { |
670 |
+ |
#ifdef F_SETLKW |
671 |
+ |
aflock(F_UNLCK); |
672 |
+ |
clearerr(ambfp); |
673 |
+ |
sleep(2); |
674 |
+ |
aflock(F_RDLCK); |
675 |
+ |
#else |
676 |
+ |
clearerr(ambfp); |
677 |
+ |
sleep(2); |
678 |
+ |
#endif |
679 |
+ |
goto retry; |
680 |
+ |
} |
681 |
+ |
error(USER, "bad/incompatible ambient file"); |
682 |
+ |
} |
683 |
+ |
if ((AMB_CNDX != CNDX) | (AMB_WLPART != WLPART)) { |
684 |
+ |
if (setspectrsamp(AMB_CNDX, AMB_WLPART) < 0) |
685 |
+ |
error(USER, "bad wavelength sampling in ambient file"); |
686 |
+ |
if (AMB_CNDX[3] == CNDX[3] && FABSEQ(AMB_WLPART[0],WLPART[0]) && |
687 |
+ |
FABSEQ(AMB_WLPART[3],WLPART[3])) { |
688 |
+ |
AMB_CNDX = CNDX; |
689 |
+ |
AMB_WLPART = WLPART; /* just the same */ |
690 |
+ |
} else |
691 |
+ |
error(WARNING, "different ambient file wavelength sampling"); |
692 |
+ |
} |
693 |
+ |
} |
694 |
+ |
|
695 |
+ |
|
696 |
+ |
static void |
697 |
+ |
avsave( /* insert and save an ambient value */ |
698 |
+ |
AMBVAL *av |
699 |
+ |
) |
700 |
+ |
{ |
701 |
+ |
avstore(av); |
702 |
|
if (ambfp == NULL) |
703 |
|
return; |
704 |
< |
if (fwrite(av, sizeof(AMBVAL), 1, ambfp) != 1) |
704 |
> |
if (writambval(av, ambfp) < 0) |
705 |
|
goto writerr; |
706 |
< |
#ifdef AMBFLUSH |
707 |
< |
if (++nunflshed >= AMBFLUSH) { |
438 |
< |
if (fflush(ambfp) == EOF) |
706 |
> |
if (++nunflshed >= AMBFLUSH) |
707 |
> |
if (ambsync() == EOF) |
708 |
|
goto writerr; |
440 |
– |
nunflshed = 0; |
441 |
– |
} |
442 |
– |
#endif |
709 |
|
return; |
710 |
|
writerr: |
711 |
< |
error(SYSTEM, "error writing ambient file"); |
711 |
> |
error(SYSTEM, "error writing to ambient file"); |
712 |
|
} |
713 |
|
|
714 |
|
|
715 |
< |
static |
716 |
< |
avinsert(aval, at, c0, s) /* insert ambient value in a tree */ |
717 |
< |
AMBVAL *aval; |
718 |
< |
register AMBTREE *at; |
453 |
< |
FVECT c0; |
454 |
< |
double s; |
715 |
> |
static AMBVAL * |
716 |
> |
avstore( /* allocate memory and save aval */ |
717 |
> |
AMBVAL *aval |
718 |
> |
) |
719 |
|
{ |
720 |
< |
FVECT ck0; |
721 |
< |
int branch; |
458 |
< |
register AMBVAL *av; |
459 |
< |
register int i; |
720 |
> |
AMBVAL *av; |
721 |
> |
double d; |
722 |
|
|
723 |
|
if ((av = newambval()) == NULL) |
724 |
< |
goto memerr; |
725 |
< |
bcopy(aval, av, sizeof(AMBVAL)); |
726 |
< |
VCOPY(ck0, c0); |
727 |
< |
while (s*(OCTSCALE/2) > av->rad*ambacc) { |
728 |
< |
if (at->kid == NULL) |
729 |
< |
if ((at->kid = newambtree()) == NULL) |
730 |
< |
goto memerr; |
731 |
< |
s *= 0.5; |
732 |
< |
branch = 0; |
733 |
< |
for (i = 0; i < 3; i++) |
734 |
< |
if (av->pos[i] > ck0[i] + s) { |
735 |
< |
ck0[i] += s; |
736 |
< |
branch |= 1 << i; |
724 |
> |
error(SYSTEM, "out of memory in avstore"); |
725 |
> |
memcpy(av, aval, AVSIZE); /* AVSIZE <= sizeof(AMBVAL) */ |
726 |
> |
av->next = NULL; |
727 |
> |
nambvals++; |
728 |
> |
d = pbright(av->val); |
729 |
> |
if (d > FTINY) { /* add to log sum for averaging */ |
730 |
> |
avsum += log(d); |
731 |
> |
navsum++; |
732 |
> |
} |
733 |
> |
avinsert(av); /* insert in our cache tree */ |
734 |
> |
return(av); |
735 |
> |
} |
736 |
> |
|
737 |
> |
|
738 |
> |
#define ATALLOCSZ 512 /* #/8 trees to allocate at once */ |
739 |
> |
|
740 |
> |
static AMBTREE *atfreelist = NULL; /* free ambient tree structures */ |
741 |
> |
|
742 |
> |
|
743 |
> |
static AMBTREE * |
744 |
> |
newambtree(void) /* allocate 8 ambient tree structs */ |
745 |
> |
{ |
746 |
> |
AMBTREE *atp, *upperlim; |
747 |
> |
|
748 |
> |
if (atfreelist == NULL) { /* get more nodes */ |
749 |
> |
atfreelist = (AMBTREE *)malloc(ATALLOCSZ*8*sizeof(AMBTREE)); |
750 |
> |
if (atfreelist == NULL) |
751 |
> |
return(NULL); |
752 |
> |
/* link new free list */ |
753 |
> |
upperlim = atfreelist + 8*(ATALLOCSZ-1); |
754 |
> |
for (atp = atfreelist; atp < upperlim; atp += 8) |
755 |
> |
atp->kid = atp + 8; |
756 |
> |
atp->kid = NULL; |
757 |
> |
} |
758 |
> |
atp = atfreelist; |
759 |
> |
atfreelist = atp->kid; |
760 |
> |
memset(atp, 0, 8*sizeof(AMBTREE)); |
761 |
> |
return(atp); |
762 |
> |
} |
763 |
> |
|
764 |
> |
|
765 |
> |
static void |
766 |
> |
freeambtree( /* free 8 ambient tree structs */ |
767 |
> |
AMBTREE *atp |
768 |
> |
) |
769 |
> |
{ |
770 |
> |
atp->kid = atfreelist; |
771 |
> |
atfreelist = atp; |
772 |
> |
} |
773 |
> |
|
774 |
> |
|
775 |
> |
static void |
776 |
> |
unloadatree( /* unload an ambient value tree */ |
777 |
> |
AMBTREE *at, |
778 |
> |
unloadtf_t *f |
779 |
> |
) |
780 |
> |
{ |
781 |
> |
AMBVAL *av; |
782 |
> |
int i; |
783 |
> |
/* transfer values at this node */ |
784 |
> |
for (av = at->alist; av != NULL; av = at->alist) { |
785 |
> |
at->alist = av->next; |
786 |
> |
av->next = NULL; |
787 |
> |
(*f)(av); |
788 |
> |
} |
789 |
> |
if (at->kid == NULL) |
790 |
> |
return; |
791 |
> |
for (i = 0; i < 8; i++) /* transfer and free children */ |
792 |
> |
unloadatree(at->kid+i, f); |
793 |
> |
freeambtree(at->kid); |
794 |
> |
at->kid = NULL; |
795 |
> |
} |
796 |
> |
|
797 |
> |
|
798 |
> |
static void |
799 |
> |
avfree(AMBVAL *av) |
800 |
> |
{ |
801 |
> |
free(av); |
802 |
> |
} |
803 |
> |
|
804 |
> |
|
805 |
> |
static void |
806 |
> |
sortambvals(void) /* resort ambient values */ |
807 |
> |
{ |
808 |
> |
AMBTREE oldatrunk = atrunk; |
809 |
> |
|
810 |
> |
atrunk.alist = NULL; |
811 |
> |
atrunk.kid = NULL; |
812 |
> |
unloadatree(&oldatrunk, avinsert); |
813 |
> |
} |
814 |
> |
|
815 |
> |
|
816 |
> |
#ifdef F_SETLKW |
817 |
> |
|
818 |
> |
static void |
819 |
> |
aflock( /* lock/unlock ambient file */ |
820 |
> |
int typ |
821 |
> |
) |
822 |
> |
{ |
823 |
> |
static struct flock fls; /* static so initialized to zeroes */ |
824 |
> |
|
825 |
> |
if (typ == fls.l_type) /* already called? */ |
826 |
> |
return; |
827 |
> |
|
828 |
> |
fls.l_type = typ; |
829 |
> |
do |
830 |
> |
if (fcntl(fileno(ambfp), F_SETLKW, &fls) != -1) |
831 |
> |
return; |
832 |
> |
while (errno == EINTR); |
833 |
> |
|
834 |
> |
error(SYSTEM, "cannot (un)lock ambient file"); |
835 |
> |
} |
836 |
> |
|
837 |
> |
|
838 |
> |
int |
839 |
> |
ambsync(void) /* synchronize ambient file */ |
840 |
> |
{ |
841 |
> |
long flen; |
842 |
> |
AMBVAL avs; |
843 |
> |
int n; |
844 |
> |
|
845 |
> |
if (ambfp == NULL) /* no ambient file? */ |
846 |
> |
return(0); |
847 |
> |
/* gain appropriate access */ |
848 |
> |
aflock(nunflshed ? F_WRLCK : F_RDLCK); |
849 |
> |
/* see if file has grown */ |
850 |
> |
if ((flen = lseek(fileno(ambfp), (off_t)0, SEEK_END)) < 0) |
851 |
> |
goto seekerr; |
852 |
> |
if ((n = flen - lastpos) > 0) { /* file has grown */ |
853 |
> |
if (ambinp == NULL) { /* get new file pointer */ |
854 |
> |
ambinp = fopen(ambfile, "rb"); |
855 |
> |
if (ambinp == NULL) |
856 |
> |
error(SYSTEM, "fopen failed in ambsync"); |
857 |
> |
} |
858 |
> |
if (fseek(ambinp, lastpos, SEEK_SET) < 0) |
859 |
> |
goto seekerr; |
860 |
> |
while (n >= AMBVALSIZ) { /* load contributed values */ |
861 |
> |
if (!readambval(&avs, ambinp)) { |
862 |
> |
sprintf(errmsg, |
863 |
> |
"ambient file \"%s\" corrupted near character %ld", |
864 |
> |
ambfile, flen - n); |
865 |
> |
error(WARNING, errmsg); |
866 |
> |
break; |
867 |
|
} |
868 |
< |
at = at->kid + branch; |
868 |
> |
avstore(&avs); |
869 |
> |
n -= AMBVALSIZ; |
870 |
> |
} |
871 |
> |
lastpos = flen - n; /* check alignment */ |
872 |
> |
if (n && lseek(fileno(ambfp), (off_t)lastpos, SEEK_SET) < 0) |
873 |
> |
goto seekerr; |
874 |
|
} |
875 |
< |
av->next = at->alist; |
876 |
< |
at->alist = av; |
877 |
< |
return; |
878 |
< |
memerr: |
879 |
< |
error(SYSTEM, "out of memory in avinsert"); |
875 |
> |
n = fflush(ambfp); /* calls write() at last */ |
876 |
> |
lastpos += (long)nunflshed*AMBVALSIZ; |
877 |
> |
aflock(F_UNLCK); /* release file */ |
878 |
> |
nunflshed = 0; |
879 |
> |
return(n); |
880 |
> |
seekerr: |
881 |
> |
error(SYSTEM, "seek failed in ambsync"); |
882 |
> |
return(EOF); /* pro forma return */ |
883 |
|
} |
884 |
+ |
|
885 |
+ |
#else /* ! F_SETLKW */ |
886 |
+ |
|
887 |
+ |
int |
888 |
+ |
ambsync(void) /* flush ambient file */ |
889 |
+ |
{ |
890 |
+ |
if (ambfp == NULL) |
891 |
+ |
return(0); |
892 |
+ |
nunflshed = 0; |
893 |
+ |
return(fflush(ambfp)); |
894 |
+ |
} |
895 |
+ |
|
896 |
+ |
#endif /* ! F_SETLKW */ |