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root/radiance/ray/src/rt/rpict.c
Revision: 1.5
Committed: Tue Jun 13 10:57:40 1989 UTC (34 years, 10 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 1.4: +1 -0 lines
Log Message:
Added direct certainty variable (compromise btwn. thresh. & tol.)

File Contents

# Content
1 /* Copyright (c) 1986 Regents of the University of California */
2
3 #ifndef lint
4 static char SCCSid[] = "$SunId$ LBL";
5 #endif
6
7 /*
8 * rpict.c - routines and variables for picture generation.
9 *
10 * 8/14/85
11 */
12
13 #include "ray.h"
14
15 #ifdef BSD
16 #include <sys/time.h>
17 #include <sys/resource.h>
18 #endif
19
20 #include "view.h"
21
22 #include "random.h"
23
24 VIEW ourview = STDVIEW(512); /* view parameters */
25
26 int psample = 4; /* pixel sample size */
27 double maxdiff = .05; /* max. difference for interpolation */
28 double dstrpix = 0.67; /* square pixel distribution */
29
30 double dstrsrc = 0.0; /* square source distribution */
31 double shadthresh = .05; /* shadow threshold */
32 double shadcert = .5; /* shadow certainty */
33
34 int maxdepth = 6; /* maximum recursion depth */
35 double minweight = 5e-3; /* minimum ray weight */
36
37 COLOR ambval = BLKCOLOR; /* ambient value */
38 double ambacc = 0.2; /* ambient accuracy */
39 int ambres = 128; /* ambient resolution */
40 int ambdiv = 128; /* ambient divisions */
41 int ambssamp = 0; /* ambient super-samples */
42 int ambounce = 0; /* ambient bounces */
43 char *amblist[128]; /* ambient include/exclude list */
44 int ambincl = -1; /* include == 1, exclude == 0 */
45
46 int ralrm = 0; /* seconds between reports */
47
48 double pctdone = 0.0; /* percentage done */
49
50 extern long nrays; /* number of rays traced */
51
52 #define MAXDIV 32 /* maximum sample size */
53
54 #define pixjitter() (.5+dstrpix*(.5-frandom()))
55
56
57 quit(code) /* quit program */
58 int code;
59 {
60 if (code || ralrm > 0) /* report status */
61 report();
62
63 exit(code);
64 }
65
66
67 report() /* report progress */
68 {
69 #ifdef BSD
70 struct rusage rubuf;
71 double t;
72
73 getrusage(RUSAGE_SELF, &rubuf);
74 t = (rubuf.ru_utime.tv_usec + rubuf.ru_stime.tv_usec) / 1e6;
75 t += rubuf.ru_utime.tv_sec + rubuf.ru_stime.tv_sec;
76 getrusage(RUSAGE_CHILDREN, &rubuf);
77 t += (rubuf.ru_utime.tv_usec + rubuf.ru_stime.tv_usec) / 1e6;
78 t += rubuf.ru_utime.tv_sec + rubuf.ru_stime.tv_sec;
79
80 sprintf(errmsg, "%ld rays, %4.2f%% done after %5.4f CPU hours\n",
81 nrays, pctdone, t/3600.0);
82 #else
83 sprintf(errmsg, "%ld rays, %4.2f%% done\n", nrays, pctdone);
84 #endif
85 eputs(errmsg);
86
87 if (ralrm > 0)
88 alarm(ralrm);
89 }
90
91
92 render(oldfile) /* render the scene */
93 char *oldfile;
94 {
95 COLOR *scanbar[MAXDIV+1]; /* scanline arrays of pixel values */
96 int ypos; /* current scanline */
97 COLOR *colptr;
98 register int i;
99
100 if (psample < 1)
101 psample = 1;
102 else if (psample > MAXDIV)
103 psample = MAXDIV;
104
105 ourview.hresolu -= ourview.hresolu % psample;
106 ourview.vresolu -= ourview.vresolu % psample;
107
108 for (i = 0; i <= psample; i++) {
109 scanbar[i] = (COLOR *)malloc((ourview.hresolu+1)*sizeof(COLOR));
110 if (scanbar[i] == NULL)
111 error(SYSTEM, "out of memory in render");
112 }
113
114 /* write out boundaries */
115 printf("-Y %d +X %d\n", ourview.vresolu, ourview.hresolu);
116
117 ypos = ourview.vresolu - salvage(oldfile); /* find top line */
118 fillscanline(scanbar[0], ypos, psample); /* top scan */
119
120 for (ypos -= psample; ypos > -psample; ypos -= psample) {
121
122 colptr = scanbar[psample]; /* get last scanline */
123 scanbar[psample] = scanbar[0];
124 scanbar[0] = colptr;
125
126 fillscanline(scanbar[0], ypos, psample); /* base scan */
127
128 fillscanbar(scanbar, ypos, psample);
129
130 for (i = psample-1; i >= 0; i--)
131 if (fwritescan(scanbar[i], ourview.hresolu, stdout) < 0)
132 goto writerr;
133 if (fflush(stdout) == EOF)
134 goto writerr;
135 pctdone = 100.0*(ourview.vresolu-ypos)/ourview.vresolu;
136 }
137
138 for (i = 0; i <= psample; i++)
139 free((char *)scanbar[i]);
140 return;
141 writerr:
142 error(SYSTEM, "write error in render");
143 }
144
145
146 fillscanline(scanline, y, xstep) /* fill scan line at y */
147 register COLOR *scanline;
148 int y, xstep;
149 {
150 int b = xstep;
151 register int i;
152
153 pixvalue(scanline[0], 0, y);
154
155 for (i = xstep; i <= ourview.hresolu; i += xstep) {
156
157 pixvalue(scanline[i], i, y);
158
159 b = fillsample(scanline+i-xstep, i-xstep, y, xstep, 0, b/2);
160 }
161 }
162
163
164 fillscanbar(scanbar, y, ysize) /* fill interior */
165 register COLOR *scanbar[];
166 int y, ysize;
167 {
168 COLOR vline[MAXDIV+1];
169 int b = ysize;
170 register int i, j;
171
172 for (i = 0; i < ourview.hresolu; i++) {
173
174 copycolor(vline[0], scanbar[0][i]);
175 copycolor(vline[ysize], scanbar[ysize][i]);
176
177 b = fillsample(vline, i, y, 0, ysize, b/2);
178
179 for (j = 1; j < ysize; j++)
180 copycolor(scanbar[j][i], vline[j]);
181 }
182 }
183
184
185 int
186 fillsample(colline, x, y, xlen, ylen, b) /* fill interior points */
187 register COLOR *colline;
188 int x, y;
189 int xlen, ylen;
190 int b;
191 {
192 double ratio;
193 COLOR ctmp;
194 int ncut;
195 register int len;
196
197 if (xlen > 0) /* x or y length is zero */
198 len = xlen;
199 else
200 len = ylen;
201
202 if (len <= 1) /* limit recursion */
203 return(0);
204
205 if (b > 0 || bigdiff(colline[0], colline[len], maxdiff)) {
206
207 pixvalue(colline[len>>1], x + (xlen>>1), y + (ylen>>1));
208 ncut = 1;
209
210 } else { /* interpolate */
211
212 copycolor(colline[len>>1], colline[len]);
213 ratio = (double)(len>>1) / len;
214 scalecolor(colline[len>>1], ratio);
215 copycolor(ctmp, colline[0]);
216 ratio = 1.0 - ratio;
217 scalecolor(ctmp, ratio);
218 addcolor(colline[len>>1], ctmp);
219 ncut = 0;
220 }
221 /* recurse */
222 ncut += fillsample(colline, x, y, xlen>>1, ylen>>1, (b-1)/2);
223
224 ncut += fillsample(colline + (len>>1), x + (xlen>>1), y + (ylen>>1),
225 xlen - (xlen>>1), ylen - (ylen>>1), b/2);
226
227 return(ncut);
228 }
229
230
231 pixvalue(col, x, y) /* compute pixel value */
232 COLOR col; /* returned color */
233 int x, y; /* pixel position */
234 {
235 static RAY thisray; /* our ray for this pixel */
236
237 rayview(thisray.rorg, thisray.rdir, &ourview,
238 x + pixjitter(), y + pixjitter());
239
240 rayorigin(&thisray, NULL, PRIMARY, 1.0);
241
242 rayvalue(&thisray); /* trace ray */
243
244 copycolor(col, thisray.rcol); /* return color */
245 }
246
247
248 int
249 salvage(oldfile) /* salvage scanlines from killed program */
250 char *oldfile;
251 {
252 COLR *scanline;
253 FILE *fp;
254 int x, y;
255
256 if (oldfile == NULL)
257 return(0);
258 else if ((fp = fopen(oldfile, "r")) == NULL) {
259 sprintf(errmsg, "cannot open recover file \"%s\"", oldfile);
260 error(WARNING, errmsg);
261 return(0);
262 }
263 /* discard header */
264 getheader(fp, NULL);
265 /* get picture size */
266 if (fscanf(fp, "-Y %d +X %d\n", &y, &x) != 2) {
267 sprintf(errmsg, "bad recover file \"%s\"", oldfile);
268 error(WARNING, errmsg);
269 fclose(fp);
270 return(0);
271 }
272
273 if (x != ourview.hresolu || y != ourview.vresolu) {
274 sprintf(errmsg, "resolution mismatch in recover file \"%s\"",
275 oldfile);
276 error(USER, errmsg);
277 return(0);
278 }
279
280 scanline = (COLR *)malloc(ourview.hresolu*sizeof(COLR));
281 if (scanline == NULL)
282 error(SYSTEM, "out of memory in salvage");
283 for (y = 0; y < ourview.vresolu; y++) {
284 if (freadcolrs(scanline, ourview.hresolu, fp) < 0)
285 break;
286 if (fwritecolrs(scanline, ourview.hresolu, stdout) < 0)
287 goto writerr;
288 }
289 if (fflush(stdout) == EOF)
290 goto writerr;
291 free((char *)scanline);
292 fclose(fp);
293 unlink(oldfile);
294 return(y);
295 writerr:
296 error(SYSTEM, "write error in salvage");
297 }