1 |
greg |
2.11 |
#ifndef lint |
2 |
rschregle |
2.21 |
static const char RCSid[] = "$Id: pmapdata.c,v 2.20 2019/03/08 17:25:17 rschregle Exp $"; |
3 |
greg |
2.11 |
#endif |
4 |
rschregle |
2.15 |
|
5 |
greg |
2.1 |
/* |
6 |
rschregle |
2.15 |
========================================================================= |
7 |
|
|
Photon map types and interface to nearest neighbour lookups in underlying |
8 |
|
|
point cloud data structure. |
9 |
|
|
|
10 |
|
|
The default data structure is an in-core kd-tree (see pmapkdt.{h,c}). |
11 |
|
|
This can be overriden with the PMAP_OOC compiletime switch, which enables |
12 |
|
|
an out-of-core octree (see oococt.{h,c}). |
13 |
greg |
2.1 |
|
14 |
|
|
Roland Schregle (roland.schregle@{hslu.ch, gmail.com}) |
15 |
|
|
(c) Fraunhofer Institute for Solar Energy Systems, |
16 |
rschregle |
2.3 |
(c) Lucerne University of Applied Sciences and Arts, |
17 |
rschregle |
2.15 |
supported by the Swiss National Science Foundation (SNSF, #147053) |
18 |
|
|
========================================================================== |
19 |
greg |
2.1 |
|
20 |
rschregle |
2.21 |
$Id: pmapdata.c,v 2.20 2019/03/08 17:25:17 rschregle Exp $ |
21 |
greg |
2.1 |
*/ |
22 |
|
|
|
23 |
|
|
|
24 |
|
|
|
25 |
rschregle |
2.18 |
#include "pmapdata.h" |
26 |
greg |
2.1 |
#include "pmaprand.h" |
27 |
|
|
#include "pmapmat.h" |
28 |
|
|
#include "otypes.h" |
29 |
|
|
#include "source.h" |
30 |
|
|
#include "rcontrib.h" |
31 |
rschregle |
2.7 |
#include "random.h" |
32 |
greg |
2.1 |
|
33 |
|
|
|
34 |
|
|
|
35 |
|
|
PhotonMap *photonMaps [NUM_PMAP_TYPES] = { |
36 |
|
|
NULL, NULL, NULL, NULL, NULL, NULL |
37 |
|
|
}; |
38 |
|
|
|
39 |
|
|
|
40 |
|
|
|
41 |
rschregle |
2.15 |
/* Include routines to handle underlying point cloud data structure */ |
42 |
|
|
#ifdef PMAP_OOC |
43 |
|
|
#include "pmapooc.c" |
44 |
|
|
#else |
45 |
|
|
#include "pmapkdt.c" |
46 |
|
|
#endif |
47 |
|
|
|
48 |
rschregle |
2.19 |
/* Ambient include/exclude set (from ambient.c) */ |
49 |
|
|
#ifndef MAXASET |
50 |
|
|
#define MAXASET 4095 |
51 |
|
|
#endif |
52 |
|
|
extern OBJECT ambset [MAXASET+1]; |
53 |
|
|
|
54 |
rschregle |
2.21 |
/* Callback to print photon attributes acc. to user defined format */ |
55 |
|
|
int (*printPhoton)(RAY *r, Photon *p, PhotonMap *pm); |
56 |
|
|
|
57 |
rschregle |
2.15 |
|
58 |
|
|
|
59 |
greg |
2.1 |
void initPhotonMap (PhotonMap *pmap, PhotonMapType t) |
60 |
|
|
/* Init photon map 'n' stuff... */ |
61 |
|
|
{ |
62 |
|
|
if (!pmap) |
63 |
|
|
return; |
64 |
|
|
|
65 |
rschregle |
2.15 |
pmap -> numPhotons = 0; |
66 |
greg |
2.1 |
pmap -> biasCompHist = NULL; |
67 |
|
|
pmap -> maxPos [0] = pmap -> maxPos [1] = pmap -> maxPos [2] = -FHUGE; |
68 |
|
|
pmap -> minPos [0] = pmap -> minPos [1] = pmap -> minPos [2] = FHUGE; |
69 |
|
|
pmap -> minGathered = pmap -> maxGathered = pmap -> totalGathered = 0; |
70 |
|
|
pmap -> gatherTolerance = gatherTolerance; |
71 |
|
|
pmap -> minError = pmap -> maxError = pmap -> rmsError = 0; |
72 |
|
|
pmap -> numDensity = 0; |
73 |
|
|
pmap -> distribRatio = 1; |
74 |
|
|
pmap -> type = t; |
75 |
rschregle |
2.15 |
pmap -> squeue.node = NULL; |
76 |
|
|
pmap -> squeue.len = 0; |
77 |
greg |
2.1 |
|
78 |
|
|
/* Init local RNG state */ |
79 |
|
|
pmap -> randState [0] = 10243; |
80 |
|
|
pmap -> randState [1] = 39829; |
81 |
|
|
pmap -> randState [2] = 9433; |
82 |
|
|
pmapSeed(randSeed, pmap -> randState); |
83 |
|
|
|
84 |
|
|
/* Set up type-specific photon lookup callback */ |
85 |
|
|
pmap -> lookup = pmapLookup [t]; |
86 |
|
|
|
87 |
rschregle |
2.15 |
/* Mark primary photon ray as unused */ |
88 |
|
|
pmap -> lastPrimary.srcIdx = -1; |
89 |
|
|
pmap -> numPrimary = 0; |
90 |
|
|
pmap -> primaries = NULL; |
91 |
|
|
|
92 |
|
|
/* Init storage */ |
93 |
|
|
pmap -> heap = NULL; |
94 |
|
|
pmap -> heapBuf = NULL; |
95 |
|
|
pmap -> heapBufLen = 0; |
96 |
|
|
#ifdef PMAP_OOC |
97 |
|
|
OOC_Null(&pmap -> store); |
98 |
|
|
#else |
99 |
|
|
kdT_Null(&pmap -> store); |
100 |
|
|
#endif |
101 |
greg |
2.1 |
} |
102 |
|
|
|
103 |
|
|
|
104 |
|
|
|
105 |
rschregle |
2.15 |
void initPhotonHeap (PhotonMap *pmap) |
106 |
greg |
2.1 |
{ |
107 |
rschregle |
2.15 |
int fdFlags; |
108 |
greg |
2.1 |
|
109 |
rschregle |
2.15 |
if (!pmap) |
110 |
|
|
error(INTERNAL, "undefined photon map in initPhotonHeap"); |
111 |
greg |
2.1 |
|
112 |
rschregle |
2.15 |
if (!pmap -> heap) { |
113 |
|
|
/* Open heap file */ |
114 |
rschregle |
2.18 |
mktemp(strcpy(pmap -> heapFname, PMAP_TMPFNAME)); |
115 |
|
|
if (!(pmap -> heap = fopen(pmap -> heapFname, "w+b"))) |
116 |
rschregle |
2.15 |
error(SYSTEM, "failed opening heap file in initPhotonHeap"); |
117 |
rschregle |
2.18 |
|
118 |
greg |
2.16 |
#ifdef F_SETFL /* XXX is there an alternate needed for Windows? */ |
119 |
rschregle |
2.15 |
fdFlags = fcntl(fileno(pmap -> heap), F_GETFL); |
120 |
|
|
fcntl(fileno(pmap -> heap), F_SETFL, fdFlags | O_APPEND); |
121 |
rschregle |
2.18 |
#endif/* ftruncate(fileno(pmap -> heap), 0); */ |
122 |
greg |
2.1 |
} |
123 |
rschregle |
2.15 |
} |
124 |
|
|
|
125 |
|
|
|
126 |
|
|
|
127 |
|
|
void flushPhotonHeap (PhotonMap *pmap) |
128 |
|
|
{ |
129 |
|
|
int fd; |
130 |
|
|
const unsigned long len = pmap -> heapBufLen * sizeof(Photon); |
131 |
|
|
|
132 |
|
|
if (!pmap) |
133 |
|
|
error(INTERNAL, "undefined photon map in flushPhotonHeap"); |
134 |
|
|
|
135 |
rschregle |
2.18 |
if (!pmap -> heap || !pmap -> heapBuf) { |
136 |
|
|
/* Silently ignore undefined heap |
137 |
|
|
error(INTERNAL, "undefined heap in flushPhotonHeap"); */ |
138 |
|
|
return; |
139 |
|
|
} |
140 |
rschregle |
2.15 |
|
141 |
|
|
/* Atomically seek and write block to heap */ |
142 |
|
|
/* !!! Unbuffered I/O via pwrite() avoids potential race conditions |
143 |
|
|
* !!! and buffer corruption which can occur with lseek()/fseek() |
144 |
|
|
* !!! followed by write()/fwrite(). */ |
145 |
|
|
fd = fileno(pmap -> heap); |
146 |
greg |
2.1 |
|
147 |
rschregle |
2.15 |
#ifdef DEBUG_PMAP |
148 |
|
|
sprintf(errmsg, "Proc %d: flushing %ld photons from pos %ld\n", getpid(), |
149 |
|
|
pmap -> heapBufLen, lseek(fd, 0, SEEK_END) / sizeof(Photon)); |
150 |
|
|
eputs(errmsg); |
151 |
|
|
#endif |
152 |
|
|
|
153 |
|
|
/*if (pwrite(fd, pmap -> heapBuf, len, lseek(fd, 0, SEEK_END)) != len) */ |
154 |
|
|
if (write(fd, pmap -> heapBuf, len) != len) |
155 |
|
|
error(SYSTEM, "failed append to heap file in flushPhotonHeap"); |
156 |
greg |
2.17 |
|
157 |
rschregle |
2.18 |
#if NIX |
158 |
rschregle |
2.15 |
if (fsync(fd)) |
159 |
|
|
error(SYSTEM, "failed fsync in flushPhotonHeap"); |
160 |
greg |
2.17 |
#endif |
161 |
rschregle |
2.18 |
|
162 |
rschregle |
2.15 |
pmap -> heapBufLen = 0; |
163 |
|
|
} |
164 |
greg |
2.1 |
|
165 |
rschregle |
2.15 |
|
166 |
|
|
|
167 |
rschregle |
2.18 |
#ifdef DEBUG_PMAP |
168 |
rschregle |
2.15 |
static int checkPhotonHeap (FILE *file) |
169 |
|
|
/* Check heap for nonsensical or duplicate photons */ |
170 |
|
|
{ |
171 |
|
|
Photon p, lastp; |
172 |
|
|
int i, dup; |
173 |
|
|
|
174 |
|
|
rewind(file); |
175 |
|
|
memset(&lastp, 0, sizeof(lastp)); |
176 |
greg |
2.1 |
|
177 |
rschregle |
2.15 |
while (fread(&p, sizeof(p), 1, file)) { |
178 |
|
|
dup = 1; |
179 |
|
|
|
180 |
|
|
for (i = 0; i <= 2; i++) { |
181 |
|
|
if (p.pos [i] < thescene.cuorg [i] || |
182 |
|
|
p.pos [i] > thescene.cuorg [i] + thescene.cusize) { |
183 |
|
|
|
184 |
|
|
sprintf(errmsg, "corrupt photon in heap at [%f, %f, %f]\n", |
185 |
|
|
p.pos [0], p.pos [1], p.pos [2]); |
186 |
|
|
error(WARNING, errmsg); |
187 |
|
|
} |
188 |
|
|
|
189 |
|
|
dup &= p.pos [i] == lastp.pos [i]; |
190 |
|
|
} |
191 |
|
|
|
192 |
|
|
if (dup) { |
193 |
|
|
sprintf(errmsg, |
194 |
|
|
"consecutive duplicate photon in heap at [%f, %f, %f]\n", |
195 |
|
|
p.pos [0], p.pos [1], p.pos [2]); |
196 |
|
|
error(WARNING, errmsg); |
197 |
|
|
} |
198 |
|
|
} |
199 |
|
|
|
200 |
|
|
return 0; |
201 |
greg |
2.1 |
} |
202 |
rschregle |
2.15 |
#endif |
203 |
greg |
2.1 |
|
204 |
|
|
|
205 |
|
|
|
206 |
rschregle |
2.15 |
int newPhoton (PhotonMap* pmap, const RAY* ray) |
207 |
greg |
2.1 |
{ |
208 |
rschregle |
2.19 |
unsigned i; |
209 |
rschregle |
2.15 |
Photon photon; |
210 |
greg |
2.1 |
COLOR photonFlux; |
211 |
|
|
|
212 |
|
|
/* Account for distribution ratio */ |
213 |
|
|
if (!pmap || pmapRandom(pmap -> randState) > pmap -> distribRatio) |
214 |
rschregle |
2.15 |
return -1; |
215 |
greg |
2.1 |
|
216 |
|
|
/* Don't store on sources */ |
217 |
|
|
if (ray -> robj > -1 && islight(objptr(ray -> ro -> omod) -> otype)) |
218 |
rschregle |
2.15 |
return -1; |
219 |
greg |
2.1 |
|
220 |
rschregle |
2.20 |
/* Ignore photon if modifier in/outside exclude/include set */ |
221 |
rschregle |
2.19 |
if (ambincl != -1 && ray -> ro && |
222 |
|
|
ambincl != inset(ambset, ray -> ro -> omod)) |
223 |
|
|
return -1; |
224 |
|
|
|
225 |
|
|
if (pmapNumROI && pmapROI) { |
226 |
|
|
unsigned inROI = 0; |
227 |
|
|
|
228 |
|
|
/* Store photon if within a region of interest (for ze Ecksperts!) */ |
229 |
rschregle |
2.18 |
for (i = 0; !inROI && i < pmapNumROI; i++) |
230 |
|
|
inROI = (ray -> rop [0] >= pmapROI [i].min [0] && |
231 |
|
|
ray -> rop [0] <= pmapROI [i].max [0] && |
232 |
|
|
ray -> rop [1] >= pmapROI [i].min [1] && |
233 |
|
|
ray -> rop [1] <= pmapROI [i].max [1] && |
234 |
|
|
ray -> rop [2] >= pmapROI [i].min [2] && |
235 |
|
|
ray -> rop [2] <= pmapROI [i].max [2]); |
236 |
rschregle |
2.19 |
if (!inROI) |
237 |
|
|
return -1; |
238 |
rschregle |
2.18 |
} |
239 |
rschregle |
2.20 |
|
240 |
rschregle |
2.19 |
/* Adjust flux according to distribution ratio and ray weight */ |
241 |
rschregle |
2.21 |
copycolor(photonFlux, ray -> rcol); |
242 |
|
|
#if 0 |
243 |
|
|
/* Factored out ray -> rweight as deprecated (?) for pmap, and infact |
244 |
|
|
erroneously attenuates volume photon flux based on extinction, |
245 |
|
|
which is already factored in by photonParticipate() */ |
246 |
rschregle |
2.19 |
scalecolor(photonFlux, |
247 |
|
|
ray -> rweight / (pmap -> distribRatio ? pmap -> distribRatio |
248 |
|
|
: 1)); |
249 |
rschregle |
2.21 |
#else |
250 |
|
|
scalecolor(photonFlux, |
251 |
|
|
1.0 / (pmap -> distribRatio ? pmap -> distribRatio : 1)); |
252 |
|
|
#endif |
253 |
rschregle |
2.19 |
setPhotonFlux(&photon, photonFlux); |
254 |
rschregle |
2.20 |
|
255 |
rschregle |
2.19 |
/* Set photon position and flags */ |
256 |
|
|
VCOPY(photon.pos, ray -> rop); |
257 |
|
|
photon.flags = 0; |
258 |
|
|
photon.caustic = PMAP_CAUSTICRAY(ray); |
259 |
|
|
|
260 |
|
|
/* Set contrib photon's primary ray and subprocess index (the latter |
261 |
|
|
* to linearise the primary ray indices after photon distribution is |
262 |
|
|
* complete). Also set primary ray's source index, thereby marking it |
263 |
|
|
* as used. */ |
264 |
|
|
if (isContribPmap(pmap)) { |
265 |
|
|
photon.primary = pmap -> numPrimary; |
266 |
|
|
photon.proc = PMAP_GETRAYPROC(ray); |
267 |
|
|
pmap -> lastPrimary.srcIdx = ray -> rsrc; |
268 |
|
|
} |
269 |
|
|
else photon.primary = 0; |
270 |
|
|
|
271 |
|
|
/* Set normal */ |
272 |
|
|
for (i = 0; i <= 2; i++) |
273 |
|
|
photon.norm [i] = 127.0 * (isVolumePmap(pmap) ? ray -> rdir [i] |
274 |
|
|
: ray -> ron [i]); |
275 |
rschregle |
2.15 |
|
276 |
rschregle |
2.19 |
if (!pmap -> heapBuf) { |
277 |
|
|
/* Lazily allocate heap buffa */ |
278 |
rschregle |
2.18 |
#if NIX |
279 |
rschregle |
2.19 |
/* Randomise buffa size to temporally decorellate flushes in |
280 |
|
|
* multiprocessing mode */ |
281 |
|
|
srandom(randSeed + getpid()); |
282 |
|
|
pmap -> heapBufSize = PMAP_HEAPBUFSIZE * (0.5 + frandom()); |
283 |
|
|
#else |
284 |
|
|
/* Randomisation disabled for single processes on WIN; also useful |
285 |
|
|
* for reproducability during debugging */ |
286 |
|
|
pmap -> heapBufSize = PMAP_HEAPBUFSIZE; |
287 |
rschregle |
2.15 |
#endif |
288 |
rschregle |
2.19 |
if (!(pmap -> heapBuf = calloc(pmap -> heapBufSize, sizeof(Photon)))) |
289 |
|
|
error(SYSTEM, "failed heap buffer allocation in newPhoton"); |
290 |
|
|
pmap -> heapBufLen = 0; |
291 |
|
|
} |
292 |
rschregle |
2.15 |
|
293 |
rschregle |
2.19 |
/* Photon initialised; now append to heap buffa */ |
294 |
|
|
memcpy(pmap -> heapBuf + pmap -> heapBufLen, &photon, sizeof(Photon)); |
295 |
|
|
|
296 |
|
|
if (++pmap -> heapBufLen >= pmap -> heapBufSize) |
297 |
|
|
/* Heap buffa full, flush to heap file */ |
298 |
|
|
flushPhotonHeap(pmap); |
299 |
greg |
2.1 |
|
300 |
rschregle |
2.19 |
pmap -> numPhotons++; |
301 |
rschregle |
2.21 |
|
302 |
|
|
/* Print photon attributes */ |
303 |
|
|
if (printPhoton) |
304 |
|
|
/* Non-const kludge */ |
305 |
|
|
printPhoton((RAY*)ray, &photon, pmap); |
306 |
greg |
2.1 |
|
307 |
rschregle |
2.15 |
return 0; |
308 |
greg |
2.1 |
} |
309 |
|
|
|
310 |
|
|
|
311 |
|
|
|
312 |
rschregle |
2.15 |
void buildPhotonMap (PhotonMap *pmap, double *photonFlux, |
313 |
|
|
PhotonPrimaryIdx *primaryOfs, unsigned nproc) |
314 |
|
|
{ |
315 |
|
|
unsigned long n, nCheck = 0; |
316 |
|
|
unsigned i; |
317 |
|
|
Photon *p; |
318 |
|
|
COLOR flux; |
319 |
rschregle |
2.18 |
char nuHeapFname [sizeof(PMAP_TMPFNAME)]; |
320 |
rschregle |
2.15 |
FILE *nuHeap; |
321 |
|
|
/* Need double here to reduce summation errors */ |
322 |
|
|
double avgFlux [3] = {0, 0, 0}, CoG [3] = {0, 0, 0}, CoGdist = 0; |
323 |
|
|
FVECT d; |
324 |
|
|
|
325 |
|
|
if (!pmap) |
326 |
|
|
error(INTERNAL, "undefined photon map in buildPhotonMap"); |
327 |
|
|
|
328 |
|
|
/* Get number of photons from heapfile size */ |
329 |
rschregle |
2.18 |
if (fseek(pmap -> heap, 0, SEEK_END) < 0) |
330 |
|
|
error(SYSTEM, "failed seek to end of photon heap in buildPhotonMap"); |
331 |
rschregle |
2.15 |
pmap -> numPhotons = ftell(pmap -> heap) / sizeof(Photon); |
332 |
|
|
|
333 |
|
|
if (!pmap -> numPhotons) |
334 |
|
|
error(INTERNAL, "empty photon map in buildPhotonMap"); |
335 |
|
|
|
336 |
|
|
if (!pmap -> heap) |
337 |
|
|
error(INTERNAL, "no heap in buildPhotonMap"); |
338 |
|
|
|
339 |
|
|
#ifdef DEBUG_PMAP |
340 |
|
|
eputs("Checking photon heap consistency...\n"); |
341 |
|
|
checkPhotonHeap(pmap -> heap); |
342 |
|
|
|
343 |
|
|
sprintf(errmsg, "Heap contains %ld photons\n", pmap -> numPhotons); |
344 |
|
|
eputs(errmsg); |
345 |
|
|
#endif |
346 |
rschregle |
2.18 |
|
347 |
rschregle |
2.15 |
/* Allocate heap buffa */ |
348 |
|
|
if (!pmap -> heapBuf) { |
349 |
|
|
pmap -> heapBufSize = PMAP_HEAPBUFSIZE; |
350 |
|
|
pmap -> heapBuf = calloc(pmap -> heapBufSize, sizeof(Photon)); |
351 |
|
|
if (!pmap -> heapBuf) |
352 |
|
|
error(SYSTEM, "failed to allocate postprocessed photon heap in" |
353 |
|
|
"buildPhotonMap"); |
354 |
greg |
2.1 |
} |
355 |
|
|
|
356 |
rschregle |
2.15 |
/* We REALLY don't need yet another @%&*! heap just to hold the scaled |
357 |
|
|
* photons, but can't think of a quicker fix... */ |
358 |
rschregle |
2.18 |
mktemp(strcpy(nuHeapFname, PMAP_TMPFNAME)); |
359 |
|
|
if (!(nuHeap = fopen(nuHeapFname, "w+b"))) |
360 |
rschregle |
2.15 |
error(SYSTEM, "failed to open postprocessed photon heap in " |
361 |
|
|
"buildPhotonMap"); |
362 |
|
|
|
363 |
|
|
rewind(pmap -> heap); |
364 |
|
|
|
365 |
|
|
#ifdef DEBUG_PMAP |
366 |
|
|
eputs("Postprocessing photons...\n"); |
367 |
|
|
#endif |
368 |
greg |
2.1 |
|
369 |
rschregle |
2.18 |
while (!feof(pmap -> heap)) { |
370 |
|
|
#ifdef DEBUG_PMAP |
371 |
|
|
printf("Reading %lu at %lu... ", pmap -> heapBufSize, ftell(pmap->heap)); |
372 |
|
|
#endif |
373 |
rschregle |
2.15 |
pmap -> heapBufLen = fread(pmap -> heapBuf, sizeof(Photon), |
374 |
rschregle |
2.18 |
pmap -> heapBufSize, pmap -> heap); |
375 |
|
|
#ifdef DEBUG_PMAP |
376 |
|
|
printf("Got %lu\n", pmap -> heapBufLen); |
377 |
|
|
#endif |
378 |
|
|
|
379 |
|
|
if (ferror(pmap -> heap)) |
380 |
|
|
error(SYSTEM, "failed to read photon heap in buildPhotonMap"); |
381 |
rschregle |
2.15 |
|
382 |
rschregle |
2.18 |
for (n = pmap -> heapBufLen, p = pmap -> heapBuf; n; n--, p++) { |
383 |
|
|
/* Update min and max pos and set photon flux */ |
384 |
|
|
for (i = 0; i <= 2; i++) { |
385 |
|
|
if (p -> pos [i] < pmap -> minPos [i]) |
386 |
|
|
pmap -> minPos [i] = p -> pos [i]; |
387 |
|
|
else if (p -> pos [i] > pmap -> maxPos [i]) |
388 |
|
|
pmap -> maxPos [i] = p -> pos [i]; |
389 |
|
|
|
390 |
|
|
/* Update centre of gravity with photon position */ |
391 |
|
|
CoG [i] += p -> pos [i]; |
392 |
|
|
} |
393 |
|
|
|
394 |
|
|
if (primaryOfs) |
395 |
|
|
/* Linearise photon primary index from subprocess index using the |
396 |
|
|
* per-subprocess offsets in primaryOfs */ |
397 |
|
|
p -> primary += primaryOfs [p -> proc]; |
398 |
|
|
|
399 |
|
|
/* Scale photon's flux (hitherto normalised to 1 over RGB); in |
400 |
|
|
* case of a contrib photon map, this is done per light source, |
401 |
|
|
* and photonFlux is assumed to be an array */ |
402 |
rschregle |
2.20 |
getPhotonFlux(p, flux); |
403 |
rschregle |
2.18 |
|
404 |
|
|
if (photonFlux) { |
405 |
|
|
scalecolor(flux, photonFlux [isContribPmap(pmap) ? |
406 |
|
|
photonSrcIdx(pmap, p) : 0]); |
407 |
|
|
setPhotonFlux(p, flux); |
408 |
greg |
2.1 |
} |
409 |
rschregle |
2.18 |
|
410 |
|
|
/* Update average photon flux; need a double here */ |
411 |
|
|
addcolor(avgFlux, flux); |
412 |
|
|
} |
413 |
greg |
2.1 |
|
414 |
rschregle |
2.18 |
/* Write modified photons to new heap */ |
415 |
|
|
fwrite(pmap -> heapBuf, sizeof(Photon), pmap -> heapBufLen, nuHeap); |
416 |
rschregle |
2.15 |
|
417 |
rschregle |
2.18 |
if (ferror(nuHeap)) |
418 |
|
|
error(SYSTEM, "failed postprocessing photon flux in " |
419 |
|
|
"buildPhotonMap"); |
420 |
rschregle |
2.15 |
|
421 |
|
|
nCheck += pmap -> heapBufLen; |
422 |
|
|
} |
423 |
|
|
|
424 |
|
|
#ifdef DEBUG_PMAP |
425 |
|
|
if (nCheck < pmap -> numPhotons) |
426 |
|
|
error(INTERNAL, "truncated photon heap in buildPhotonMap"); |
427 |
|
|
#endif |
428 |
|
|
|
429 |
|
|
/* Finalise average photon flux */ |
430 |
|
|
scalecolor(avgFlux, 1.0 / pmap -> numPhotons); |
431 |
|
|
copycolor(pmap -> photonFlux, avgFlux); |
432 |
|
|
|
433 |
|
|
/* Average photon positions to get centre of gravity */ |
434 |
|
|
for (i = 0; i < 3; i++) |
435 |
|
|
pmap -> CoG [i] = CoG [i] /= pmap -> numPhotons; |
436 |
|
|
|
437 |
|
|
rewind(pmap -> heap); |
438 |
|
|
|
439 |
|
|
/* Compute average photon distance to centre of gravity */ |
440 |
|
|
while (!feof(pmap -> heap)) { |
441 |
|
|
pmap -> heapBufLen = fread(pmap -> heapBuf, sizeof(Photon), |
442 |
rschregle |
2.18 |
pmap -> heapBufSize, pmap -> heap); |
443 |
rschregle |
2.15 |
|
444 |
rschregle |
2.18 |
for (n = pmap -> heapBufLen, p = pmap -> heapBuf; n; n--, p++) { |
445 |
|
|
VSUB(d, p -> pos, CoG); |
446 |
|
|
CoGdist += DOT(d, d); |
447 |
|
|
} |
448 |
rschregle |
2.15 |
} |
449 |
|
|
|
450 |
|
|
pmap -> CoGdist = CoGdist /= pmap -> numPhotons; |
451 |
|
|
|
452 |
rschregle |
2.18 |
/* Swap heaps, discarding unscaled photons */ |
453 |
rschregle |
2.15 |
fclose(pmap -> heap); |
454 |
rschregle |
2.18 |
unlink(pmap -> heapFname); |
455 |
rschregle |
2.15 |
pmap -> heap = nuHeap; |
456 |
rschregle |
2.18 |
strcpy(pmap -> heapFname, nuHeapFname); |
457 |
rschregle |
2.15 |
|
458 |
|
|
#ifdef PMAP_OOC |
459 |
|
|
OOC_BuildPhotonMap(pmap, nproc); |
460 |
|
|
#else |
461 |
|
|
kdT_BuildPhotonMap(pmap); |
462 |
|
|
#endif |
463 |
|
|
|
464 |
|
|
/* Trash heap and its buffa */ |
465 |
|
|
free(pmap -> heapBuf); |
466 |
|
|
fclose(pmap -> heap); |
467 |
rschregle |
2.18 |
unlink(pmap -> heapFname); |
468 |
rschregle |
2.15 |
pmap -> heap = NULL; |
469 |
|
|
pmap -> heapBuf = NULL; |
470 |
greg |
2.1 |
} |
471 |
|
|
|
472 |
|
|
|
473 |
|
|
|
474 |
|
|
/* Dynamic max photon search radius increase and reduction factors */ |
475 |
|
|
#define PMAP_MAXDIST_INC 4 |
476 |
|
|
#define PMAP_MAXDIST_DEC 0.9 |
477 |
|
|
|
478 |
|
|
/* Num successful lookups before reducing in max search radius */ |
479 |
|
|
#define PMAP_MAXDIST_CNT 1000 |
480 |
|
|
|
481 |
|
|
/* Threshold below which we assume increasing max radius won't help */ |
482 |
|
|
#define PMAP_SHORT_LOOKUP_THRESH 1 |
483 |
|
|
|
484 |
rschregle |
2.8 |
/* Coefficient for adaptive maximum search radius */ |
485 |
|
|
#define PMAP_MAXDIST_COEFF 100 |
486 |
|
|
|
487 |
greg |
2.1 |
void findPhotons (PhotonMap* pmap, const RAY* ray) |
488 |
|
|
{ |
489 |
|
|
int redo = 0; |
490 |
|
|
|
491 |
rschregle |
2.15 |
if (!pmap -> squeue.len) { |
492 |
greg |
2.1 |
/* Lazy init priority queue */ |
493 |
rschregle |
2.15 |
#ifdef PMAP_OOC |
494 |
|
|
OOC_InitFindPhotons(pmap); |
495 |
|
|
#else |
496 |
|
|
kdT_InitFindPhotons(pmap); |
497 |
|
|
#endif |
498 |
greg |
2.1 |
pmap -> minGathered = pmap -> maxGather; |
499 |
|
|
pmap -> maxGathered = pmap -> minGather; |
500 |
|
|
pmap -> totalGathered = 0; |
501 |
|
|
pmap -> numLookups = pmap -> numShortLookups = 0; |
502 |
|
|
pmap -> shortLookupPct = 0; |
503 |
|
|
pmap -> minError = FHUGE; |
504 |
|
|
pmap -> maxError = -FHUGE; |
505 |
|
|
pmap -> rmsError = 0; |
506 |
rschregle |
2.9 |
/* SQUARED max search radius limit is based on avg photon distance to |
507 |
rschregle |
2.8 |
* centre of gravity, unless fixed by user (maxDistFix > 0) */ |
508 |
rschregle |
2.15 |
pmap -> maxDist0 = pmap -> maxDist2Limit = |
509 |
rschregle |
2.9 |
maxDistFix > 0 ? maxDistFix * maxDistFix |
510 |
rschregle |
2.15 |
: PMAP_MAXDIST_COEFF * pmap -> squeue.len * |
511 |
|
|
pmap -> CoGdist / pmap -> numPhotons; |
512 |
greg |
2.1 |
} |
513 |
|
|
|
514 |
|
|
do { |
515 |
rschregle |
2.15 |
pmap -> squeue.tail = 0; |
516 |
|
|
pmap -> maxDist2 = pmap -> maxDist0; |
517 |
greg |
2.1 |
|
518 |
|
|
/* Search position is ray -> rorg for volume photons, since we have no |
519 |
|
|
intersection point. Normals are ignored -- these are incident |
520 |
|
|
directions). */ |
521 |
|
|
if (isVolumePmap(pmap)) { |
522 |
rschregle |
2.15 |
#ifdef PMAP_OOC |
523 |
|
|
OOC_FindPhotons(pmap, ray -> rorg, NULL); |
524 |
|
|
#else |
525 |
|
|
kdT_FindPhotons(pmap, ray -> rorg, NULL); |
526 |
|
|
#endif |
527 |
greg |
2.1 |
} |
528 |
|
|
else { |
529 |
rschregle |
2.15 |
#ifdef PMAP_OOC |
530 |
|
|
OOC_FindPhotons(pmap, ray -> rop, ray -> ron); |
531 |
|
|
#else |
532 |
|
|
kdT_FindPhotons(pmap, ray -> rop, ray -> ron); |
533 |
|
|
#endif |
534 |
greg |
2.1 |
} |
535 |
rschregle |
2.3 |
|
536 |
rschregle |
2.15 |
#ifdef PMAP_LOOKUP_INFO |
537 |
|
|
fprintf(stderr, "%d/%d %s photons found within radius %.3f " |
538 |
|
|
"at (%.2f,%.2f,%.2f) on %s\n", pmap -> squeue.tail, |
539 |
|
|
pmap -> squeue.len, pmapName [pmap -> type], sqrt(pmap -> maxDist2), |
540 |
|
|
ray -> rop [0], ray -> rop [1], ray -> rop [2], |
541 |
|
|
ray -> ro ? ray -> ro -> oname : "<null>"); |
542 |
|
|
#endif |
543 |
|
|
|
544 |
|
|
if (pmap -> squeue.tail < pmap -> squeue.len * pmap -> gatherTolerance) { |
545 |
greg |
2.1 |
/* Short lookup; too few photons found */ |
546 |
rschregle |
2.15 |
if (pmap -> squeue.tail > PMAP_SHORT_LOOKUP_THRESH) { |
547 |
greg |
2.1 |
/* Ignore short lookups which return fewer than |
548 |
|
|
* PMAP_SHORT_LOOKUP_THRESH photons under the assumption there |
549 |
|
|
* really are no photons in the vicinity, and increasing the max |
550 |
|
|
* search radius therefore won't help */ |
551 |
rschregle |
2.8 |
#ifdef PMAP_LOOKUP_WARN |
552 |
greg |
2.1 |
sprintf(errmsg, |
553 |
|
|
"%d/%d %s photons found at (%.2f,%.2f,%.2f) on %s", |
554 |
rschregle |
2.15 |
pmap -> squeue.tail, pmap -> squeue.len, |
555 |
|
|
pmapName [pmap -> type], |
556 |
|
|
ray -> rop [0], ray -> rop [1], ray -> rop [2], |
557 |
greg |
2.1 |
ray -> ro ? ray -> ro -> oname : "<null>"); |
558 |
|
|
error(WARNING, errmsg); |
559 |
rschregle |
2.8 |
#endif |
560 |
rschregle |
2.3 |
|
561 |
rschregle |
2.8 |
/* Bail out after warning if maxDist is fixed */ |
562 |
|
|
if (maxDistFix > 0) |
563 |
|
|
return; |
564 |
|
|
|
565 |
rschregle |
2.15 |
if (pmap -> maxDist0 < pmap -> maxDist2Limit) { |
566 |
greg |
2.1 |
/* Increase max search radius if below limit & redo search */ |
567 |
|
|
pmap -> maxDist0 *= PMAP_MAXDIST_INC; |
568 |
rschregle |
2.8 |
#ifdef PMAP_LOOKUP_REDO |
569 |
greg |
2.1 |
redo = 1; |
570 |
rschregle |
2.8 |
#endif |
571 |
|
|
#ifdef PMAP_LOOKUP_WARN |
572 |
greg |
2.1 |
sprintf(errmsg, |
573 |
|
|
redo ? "restarting photon lookup with max radius %.1e" |
574 |
|
|
: "max photon lookup radius adjusted to %.1e", |
575 |
rschregle |
2.15 |
pmap -> maxDist0); |
576 |
greg |
2.1 |
error(WARNING, errmsg); |
577 |
rschregle |
2.8 |
#endif |
578 |
greg |
2.1 |
} |
579 |
rschregle |
2.8 |
#ifdef PMAP_LOOKUP_REDO |
580 |
greg |
2.1 |
else { |
581 |
|
|
sprintf(errmsg, "max photon lookup radius clamped to %.1e", |
582 |
rschregle |
2.15 |
pmap -> maxDist0); |
583 |
greg |
2.1 |
error(WARNING, errmsg); |
584 |
|
|
} |
585 |
rschregle |
2.8 |
#endif |
586 |
greg |
2.1 |
} |
587 |
|
|
|
588 |
|
|
/* Reset successful lookup counter */ |
589 |
|
|
pmap -> numLookups = 0; |
590 |
rschregle |
2.3 |
} |
591 |
greg |
2.1 |
else { |
592 |
rschregle |
2.8 |
/* Bail out after warning if maxDist is fixed */ |
593 |
|
|
if (maxDistFix > 0) |
594 |
|
|
return; |
595 |
|
|
|
596 |
greg |
2.1 |
/* Increment successful lookup counter and reduce max search radius if |
597 |
|
|
* wraparound */ |
598 |
|
|
pmap -> numLookups = (pmap -> numLookups + 1) % PMAP_MAXDIST_CNT; |
599 |
|
|
if (!pmap -> numLookups) |
600 |
|
|
pmap -> maxDist0 *= PMAP_MAXDIST_DEC; |
601 |
|
|
|
602 |
|
|
redo = 0; |
603 |
|
|
} |
604 |
rschregle |
2.8 |
|
605 |
greg |
2.1 |
} while (redo); |
606 |
|
|
} |
607 |
|
|
|
608 |
|
|
|
609 |
|
|
|
610 |
rschregle |
2.15 |
void find1Photon (PhotonMap *pmap, const RAY* ray, Photon *photon) |
611 |
|
|
{ |
612 |
|
|
pmap -> maxDist2 = thescene.cusize; /* ? */ |
613 |
greg |
2.1 |
|
614 |
rschregle |
2.15 |
#ifdef PMAP_OOC |
615 |
|
|
OOC_Find1Photon(pmap, ray -> rop, ray -> ron, photon); |
616 |
|
|
#else |
617 |
|
|
kdT_Find1Photon(pmap, ray -> rop, ray -> ron, photon); |
618 |
|
|
#endif |
619 |
greg |
2.1 |
} |
620 |
|
|
|
621 |
|
|
|
622 |
|
|
|
623 |
rschregle |
2.15 |
void getPhoton (PhotonMap *pmap, PhotonIdx idx, Photon *photon) |
624 |
greg |
2.1 |
{ |
625 |
rschregle |
2.15 |
#ifdef PMAP_OOC |
626 |
rschregle |
2.18 |
if (OOC_GetPhoton(pmap, idx, photon)) |
627 |
rschregle |
2.15 |
#else |
628 |
|
|
if (kdT_GetPhoton(pmap, idx, photon)) |
629 |
|
|
#endif |
630 |
|
|
error(INTERNAL, "failed photon lookup"); |
631 |
greg |
2.1 |
} |
632 |
|
|
|
633 |
|
|
|
634 |
|
|
|
635 |
rschregle |
2.15 |
Photon *getNearestPhoton (const PhotonSearchQueue *squeue, PhotonIdx idx) |
636 |
|
|
{ |
637 |
|
|
#ifdef PMAP_OOC |
638 |
|
|
return OOC_GetNearestPhoton(squeue, idx); |
639 |
|
|
#else |
640 |
|
|
return kdT_GetNearestPhoton(squeue, idx); |
641 |
|
|
#endif |
642 |
greg |
2.1 |
} |
643 |
|
|
|
644 |
|
|
|
645 |
|
|
|
646 |
rschregle |
2.15 |
PhotonIdx firstPhoton (const PhotonMap *pmap) |
647 |
|
|
{ |
648 |
|
|
#ifdef PMAP_OOC |
649 |
|
|
return OOC_FirstPhoton(pmap); |
650 |
|
|
#else |
651 |
|
|
return kdT_FirstPhoton(pmap); |
652 |
|
|
#endif |
653 |
greg |
2.1 |
} |
654 |
|
|
|
655 |
|
|
|
656 |
|
|
|
657 |
|
|
void deletePhotons (PhotonMap* pmap) |
658 |
|
|
{ |
659 |
rschregle |
2.15 |
#ifdef PMAP_OOC |
660 |
|
|
OOC_Delete(&pmap -> store); |
661 |
|
|
#else |
662 |
|
|
kdT_Delete(&pmap -> store); |
663 |
|
|
#endif |
664 |
|
|
|
665 |
|
|
free(pmap -> squeue.node); |
666 |
greg |
2.1 |
free(pmap -> biasCompHist); |
667 |
|
|
|
668 |
rschregle |
2.15 |
pmap -> numPhotons = pmap -> minGather = pmap -> maxGather = |
669 |
|
|
pmap -> squeue.len = pmap -> squeue.tail = 0; |
670 |
greg |
2.1 |
} |