| 1 | greg | 2.1 | #ifndef lint | 
| 2 | greg | 2.17 | static const char RCSid[] = "$Id: rsensor.c,v 2.16 2015/04/23 23:54:08 greg Exp $"; | 
| 3 | greg | 2.1 | #endif | 
| 4 |  |  |  | 
| 5 |  |  | /* | 
| 6 |  |  | * Compute sensor signal based on spatial sensitivity. | 
| 7 |  |  | * | 
| 8 |  |  | *      Created Feb 2008 for Architectural Energy Corp. | 
| 9 |  |  | */ | 
| 10 |  |  |  | 
| 11 |  |  | #include "ray.h" | 
| 12 |  |  | #include "source.h" | 
| 13 |  |  | #include "view.h" | 
| 14 |  |  | #include "random.h" | 
| 15 |  |  |  | 
| 16 |  |  | #define DEGREE          (PI/180.) | 
| 17 |  |  |  | 
| 18 | greg | 2.15 | #define MAXNT           181     /* maximum number of theta divisions */ | 
| 19 | greg | 2.1 | #define MAXNP           360     /* maximum number of phi divisions */ | 
| 20 |  |  |  | 
| 21 |  |  | extern char     *progname;      /* global argv[0] */ | 
| 22 |  |  | extern int      nowarn;         /* don't report warnings? */ | 
| 23 |  |  |  | 
| 24 |  |  | /* current sensor's perspective */ | 
| 25 | greg | 2.5 | VIEW            ourview =  {VT_ANG,{0.,0.,0.},{0.,0.,1.},{1.,0.,0.}, | 
| 26 |  |  | 1.,180.,180.,0.,0.,0.,0., | 
| 27 |  |  | {0.,0.,0.},{0.,0.,0.},0.,0.}; | 
| 28 | greg | 2.1 |  | 
| 29 |  |  | unsigned long   nsamps = 10000; /* desired number of initial samples */ | 
| 30 |  |  | unsigned long   nssamps = 9000; /* number of super-samples */ | 
| 31 | greg | 2.2 | int             ndsamps = 32;   /* number of direct samples */ | 
| 32 | greg | 2.1 | int             nprocs = 1;     /* number of rendering processes */ | 
| 33 |  |  |  | 
| 34 |  |  | float           *sensor = NULL; /* current sensor data */ | 
| 35 |  |  | int             sntp[2];        /* number of sensor theta and phi angles */ | 
| 36 |  |  | float           maxtheta;       /* maximum theta value for this sensor */ | 
| 37 | greg | 2.9 | float           tvals[MAXNT+1]; /* theta prob. values (1-D table of 1-cos(t)) */ | 
| 38 |  |  | float           *pvals = NULL;  /* phi prob. values (2-D table in radians) */ | 
| 39 | greg | 2.1 | int             ntheta = 0;     /* polar angle divisions */ | 
| 40 |  |  | int             nphi = 0;       /* azimuthal angle divisions */ | 
| 41 |  |  | double          gscale = 1.;    /* global scaling value */ | 
| 42 |  |  |  | 
| 43 | greg | 2.2 | #define s_theta(t)      sensor[(t+1)*(sntp[1]+1)] | 
| 44 |  |  | #define s_phi(p)        sensor[(p)+1] | 
| 45 |  |  | #define s_val(t,p)      sensor[(p)+1+(t+1)*(sntp[1]+1)] | 
| 46 |  |  |  | 
| 47 | greg | 2.1 | static void     comp_sensor(char *sfile); | 
| 48 |  |  |  | 
| 49 |  |  | static void | 
| 50 | greg | 2.3 | over_options()                  /* overriding options */ | 
| 51 | greg | 2.1 | { | 
| 52 | greg | 2.3 | directvis = (ndsamps <= 0); | 
| 53 |  |  | do_irrad = 0; | 
| 54 |  |  | } | 
| 55 |  |  |  | 
| 56 |  |  | static void | 
| 57 |  |  | print_defaults()                /* print out default parameters */ | 
| 58 |  |  | { | 
| 59 |  |  | over_options(); | 
| 60 | greg | 2.1 | printf("-n %-9d\t\t\t# number of processes\n", nprocs); | 
| 61 |  |  | printf("-rd %-9ld\t\t\t# ray directions\n", nsamps); | 
| 62 |  |  | /* printf("-rs %-9ld\t\t\t# ray super-samples\n", nssamps); */ | 
| 63 |  |  | printf("-dn %-9d\t\t\t# direct number of samples\n", ndsamps); | 
| 64 |  |  | printf("-vp %f %f %f\t# view point\n", | 
| 65 |  |  | ourview.vp[0], ourview.vp[1], ourview.vp[2]); | 
| 66 |  |  | printf("-vd %f %f %f\t# view direction\n", | 
| 67 |  |  | ourview.vdir[0], ourview.vdir[1], ourview.vdir[2]); | 
| 68 |  |  | printf("-vu %f %f %f\t# view up\n", | 
| 69 |  |  | ourview.vup[0], ourview.vup[1], ourview.vup[2]); | 
| 70 |  |  | printf("-vo %f\t\t\t# view fore clipping distance\n", ourview.vfore); | 
| 71 |  |  | print_rdefaults(); | 
| 72 |  |  | } | 
| 73 |  |  |  | 
| 74 | greg | 2.7 |  | 
| 75 |  |  | void | 
| 76 |  |  | quit(ec)                        /* make sure exit is called */ | 
| 77 |  |  | int     ec; | 
| 78 |  |  | { | 
| 79 |  |  | if (ray_pnprocs > 0)    /* close children if any */ | 
| 80 |  |  | ray_pclose(0); | 
| 81 |  |  | exit(ec); | 
| 82 |  |  | } | 
| 83 |  |  |  | 
| 84 |  |  |  | 
| 85 | greg | 2.1 | int | 
| 86 |  |  | main( | 
| 87 |  |  | int     argc, | 
| 88 |  |  | char    *argv[] | 
| 89 |  |  | ) | 
| 90 |  |  | { | 
| 91 |  |  | int     doheader = 1; | 
| 92 | greg | 2.3 | int     optwarn = 0; | 
| 93 | greg | 2.1 | int     i, rval; | 
| 94 |  |  |  | 
| 95 |  |  | progname = argv[0]; | 
| 96 |  |  | /* set up rendering defaults */ | 
| 97 | greg | 2.2 | rand_samp = 1; | 
| 98 | greg | 2.6 | dstrsrc = 0.65; | 
| 99 | greg | 2.2 | srcsizerat = 0.1; | 
| 100 | greg | 2.1 | directrelay = 3; | 
| 101 |  |  | ambounce = 1; | 
| 102 | greg | 2.2 | maxdepth = -10; | 
| 103 | greg | 2.1 | /* get options from command line */ | 
| 104 | greg | 2.3 | for (i = 1; i < argc; i++) { | 
| 105 | greg | 2.1 | while ((rval = expandarg(&argc, &argv, i)) > 0) | 
| 106 |  |  | ; | 
| 107 |  |  | if (rval < 0) { | 
| 108 |  |  | sprintf(errmsg, "cannot expand '%s'", argv[i]); | 
| 109 |  |  | error(SYSTEM, errmsg); | 
| 110 |  |  | } | 
| 111 | greg | 2.3 | if (argv[i][0] != '-') { | 
| 112 |  |  | if (i >= argc-1) | 
| 113 |  |  | break;          /* final octree argument */ | 
| 114 | greg | 2.1 | if (!ray_pnprocs) { | 
| 115 | greg | 2.3 | over_options(); | 
| 116 | greg | 2.1 | if (doheader) { /* print header */ | 
| 117 | greg | 2.6 | newheader("RADIANCE", stdout); | 
| 118 | greg | 2.1 | printargs(argc, argv, stdout); | 
| 119 |  |  | fputformat("ascii", stdout); | 
| 120 |  |  | putchar('\n'); | 
| 121 |  |  | } | 
| 122 |  |  | /* start process(es) */ | 
| 123 | greg | 2.8 | if (strcmp(argv[argc-1], ".")) | 
| 124 |  |  | ray_pinit(argv[argc-1], nprocs); | 
| 125 | greg | 2.1 | } | 
| 126 | greg | 2.3 | comp_sensor(argv[i]);   /* process a sensor file */ | 
| 127 | greg | 2.1 | continue; | 
| 128 |  |  | } | 
| 129 |  |  | if (argv[i][1] == 'r') {        /* sampling options */ | 
| 130 |  |  | if (argv[i][2] == 'd') | 
| 131 |  |  | nsamps = atol(argv[++i]); | 
| 132 |  |  | else if (argv[i][2] == 's') | 
| 133 |  |  | nssamps = atol(argv[++i]); | 
| 134 |  |  | else { | 
| 135 |  |  | sprintf(errmsg, "bad option at '%s'", argv[i]); | 
| 136 |  |  | error(USER, errmsg); | 
| 137 |  |  | } | 
| 138 |  |  | continue; | 
| 139 |  |  | } | 
| 140 |  |  | /* direct component samples */ | 
| 141 |  |  | if (argv[i][1] == 'd' && argv[i][2] == 'n') { | 
| 142 |  |  | ndsamps = atoi(argv[++i]); | 
| 143 |  |  | continue; | 
| 144 |  |  | } | 
| 145 |  |  | if (argv[i][1] == 'v') {        /* next sensor view */ | 
| 146 |  |  | if (argv[i][2] == 'f') { | 
| 147 |  |  | rval = viewfile(argv[++i], &ourview, NULL); | 
| 148 |  |  | if (rval < 0) { | 
| 149 |  |  | sprintf(errmsg, | 
| 150 |  |  | "cannot open view file \"%s\"", | 
| 151 |  |  | argv[i]); | 
| 152 |  |  | error(SYSTEM, errmsg); | 
| 153 |  |  | } else if (rval == 0) { | 
| 154 |  |  | sprintf(errmsg, | 
| 155 |  |  | "bad view file \"%s\"", | 
| 156 |  |  | argv[i]); | 
| 157 |  |  | error(USER, errmsg); | 
| 158 |  |  | } | 
| 159 |  |  | continue; | 
| 160 |  |  | } | 
| 161 |  |  | rval = getviewopt(&ourview, argc-i, argv+i); | 
| 162 |  |  | if (rval >= 0) { | 
| 163 |  |  | i += rval; | 
| 164 |  |  | continue; | 
| 165 |  |  | } | 
| 166 |  |  | sprintf(errmsg, "bad view option at '%s'", argv[i]); | 
| 167 |  |  | error(USER, errmsg); | 
| 168 |  |  | } | 
| 169 | greg | 2.3 | if (!strcmp(argv[i], "-w")) {   /* toggle warnings */ | 
| 170 |  |  | nowarn = !nowarn; | 
| 171 | greg | 2.1 | continue; | 
| 172 |  |  | } | 
| 173 |  |  | if (ray_pnprocs) { | 
| 174 | greg | 2.3 | if (!optwarn++) | 
| 175 |  |  | error(WARNING, | 
| 176 | greg | 2.1 | "rendering options should appear before first sensor"); | 
| 177 |  |  | } else if (!strcmp(argv[i], "-defaults")) { | 
| 178 |  |  | print_defaults(); | 
| 179 |  |  | return(0); | 
| 180 |  |  | } | 
| 181 |  |  | if (argv[i][1] == 'h') {        /* header toggle */ | 
| 182 |  |  | doheader = !doheader; | 
| 183 |  |  | continue; | 
| 184 |  |  | } | 
| 185 |  |  | if (!strcmp(argv[i], "-n")) {   /* number of processes */ | 
| 186 |  |  | nprocs = atoi(argv[++i]); | 
| 187 |  |  | if (nprocs <= 0) | 
| 188 |  |  | error(USER, "illegal number of processes"); | 
| 189 |  |  | continue; | 
| 190 |  |  | } | 
| 191 |  |  | rval = getrenderopt(argc-i, argv+i); | 
| 192 |  |  | if (rval < 0) { | 
| 193 |  |  | sprintf(errmsg, "bad render option at '%s'", argv[i]); | 
| 194 |  |  | error(USER, errmsg); | 
| 195 |  |  | } | 
| 196 |  |  | i += rval; | 
| 197 |  |  | } | 
| 198 | greg | 2.8 | if (sensor == NULL) | 
| 199 | greg | 2.3 | error(USER, i<argc ? "missing sensor file" : "missing octree"); | 
| 200 | greg | 2.1 | quit(0); | 
| 201 |  |  | } | 
| 202 |  |  |  | 
| 203 |  |  | /* Load sensor sensitivities (first row and column are angles) */ | 
| 204 |  |  | static float * | 
| 205 |  |  | load_sensor( | 
| 206 |  |  | int     ntp[2], | 
| 207 |  |  | char    *sfile | 
| 208 |  |  | ) | 
| 209 |  |  | { | 
| 210 | greg | 2.10 | int     warnedneg; | 
| 211 | greg | 2.1 | char    linebuf[8192]; | 
| 212 | greg | 2.16 | int     last_pos_val = 0; | 
| 213 | greg | 2.1 | int     nelem = 1000; | 
| 214 |  |  | float   *sarr = (float *)malloc(sizeof(float)*nelem); | 
| 215 |  |  | FILE    *fp; | 
| 216 |  |  | char    *cp; | 
| 217 |  |  | int     i; | 
| 218 |  |  |  | 
| 219 |  |  | fp = frlibopen(sfile); | 
| 220 |  |  | if (fp == NULL) { | 
| 221 |  |  | sprintf(errmsg, "cannot open sensor file '%s'", sfile); | 
| 222 |  |  | error(SYSTEM, errmsg); | 
| 223 |  |  | } | 
| 224 |  |  | fgets(linebuf, sizeof(linebuf), fp); | 
| 225 |  |  | if (!strncmp(linebuf, "Elevation ", 10)) | 
| 226 |  |  | fgets(linebuf, sizeof(linebuf), fp); | 
| 227 |  |  | /* get phi values */ | 
| 228 |  |  | sarr[0] = .0f; | 
| 229 |  |  | if (strncmp(linebuf, "degrees", 7)) { | 
| 230 |  |  | sprintf(errmsg, "Missing 'degrees' in sensor file '%s'", sfile); | 
| 231 |  |  | error(USER, errmsg); | 
| 232 |  |  | } | 
| 233 |  |  | cp = sskip(linebuf); | 
| 234 |  |  | ntp[1] = 0; | 
| 235 |  |  | for ( ; ; ) { | 
| 236 |  |  | sarr[ntp[1]+1] = atof(cp); | 
| 237 |  |  | cp = fskip(cp); | 
| 238 |  |  | if (cp == NULL) | 
| 239 |  |  | break; | 
| 240 | greg | 2.9 | if (ntp[1] > 1 && sarr[ntp[1]+1] <= sarr[ntp[1]]) { | 
| 241 |  |  | sprintf(errmsg, | 
| 242 |  |  | "Phi values not monotinically increasing in sensor file '%s'", | 
| 243 |  |  | sfile); | 
| 244 |  |  | error(USER, errmsg); | 
| 245 |  |  | } | 
| 246 | greg | 2.1 | ++ntp[1]; | 
| 247 |  |  | } | 
| 248 | greg | 2.10 | warnedneg = 0; | 
| 249 | greg | 2.1 | ntp[0] = 0;                             /* get thetas + data */ | 
| 250 |  |  | while (fgets(linebuf, sizeof(linebuf), fp) != NULL) { | 
| 251 |  |  | ++ntp[0]; | 
| 252 |  |  | if ((ntp[0]+1)*(ntp[1]+1) > nelem) { | 
| 253 |  |  | nelem += (nelem>>2) + ntp[1]; | 
| 254 |  |  | sarr = (float *)realloc((void *)sarr, | 
| 255 |  |  | sizeof(float)*nelem); | 
| 256 |  |  | if (sarr == NULL) | 
| 257 |  |  | error(SYSTEM, "out of memory in load_sensor()"); | 
| 258 |  |  | } | 
| 259 |  |  | cp = linebuf; | 
| 260 |  |  | i = ntp[0]*(ntp[1]+1); | 
| 261 |  |  | for ( ; ; ) { | 
| 262 |  |  | sarr[i] = atof(cp); | 
| 263 |  |  | cp = fskip(cp); | 
| 264 |  |  | if (cp == NULL) | 
| 265 |  |  | break; | 
| 266 | greg | 2.17 | if (sarr[i] < .0) { | 
| 267 | greg | 2.10 | if (!warnedneg++) { | 
| 268 |  |  | sprintf(errmsg, | 
| 269 |  |  | "Negative value(s) in sensor file '%s' (ignored)\n", sfile); | 
| 270 |  |  | error(WARNING, errmsg); | 
| 271 |  |  | } | 
| 272 |  |  | sarr[i] = .0; | 
| 273 | greg | 2.17 | } else if (sarr[i] > FTINY && i > ntp[0]*(ntp[1]+1)) | 
| 274 | greg | 2.16 | last_pos_val = i; | 
| 275 | greg | 2.1 | ++i; | 
| 276 |  |  | } | 
| 277 | greg | 2.17 | if (i == ntp[0]*(ntp[1]+1))     /* empty line? */ | 
| 278 | greg | 2.1 | break; | 
| 279 | greg | 2.9 | if (ntp[0] > 1 && sarr[ntp[0]*(ntp[1]+1)] <= | 
| 280 |  |  | sarr[(ntp[0]-1)*(ntp[1]+1)]) { | 
| 281 |  |  | sprintf(errmsg, | 
| 282 |  |  | "Theta values not monotinically increasing in sensor file '%s'", | 
| 283 |  |  | sfile); | 
| 284 |  |  | error(USER, errmsg); | 
| 285 |  |  | } | 
| 286 | greg | 2.1 | if (i != (ntp[0]+1)*(ntp[1]+1)) { | 
| 287 |  |  | sprintf(errmsg, | 
| 288 |  |  | "bad column count near line %d in sensor file '%s'", | 
| 289 |  |  | ntp[0]+1, sfile); | 
| 290 |  |  | error(USER, errmsg); | 
| 291 |  |  | } | 
| 292 |  |  | } | 
| 293 | greg | 2.16 | /* truncate zero region */ | 
| 294 |  |  | ntp[0] = (last_pos_val + ntp[1])/(ntp[1]+1) - 1; | 
| 295 |  |  | nelem = (ntp[0]+1)*(ntp[1]+1); | 
| 296 | greg | 2.1 | fclose(fp); | 
| 297 |  |  | errmsg[0] = '\0';                       /* sanity checks */ | 
| 298 | greg | 2.16 | if (!last_pos_val) | 
| 299 |  |  | sprintf(errmsg, "no positive sensor values in file '%s'", sfile); | 
| 300 | greg | 2.1 | else if (fabs(sarr[ntp[1]+1]) > FTINY) | 
| 301 |  |  | sprintf(errmsg, "minimum theta must be 0 in sensor file '%s'", | 
| 302 |  |  | sfile); | 
| 303 |  |  | else if (fabs(sarr[1]) > FTINY) | 
| 304 |  |  | sprintf(errmsg, "minimum phi must be 0 in sensor file '%s'", | 
| 305 |  |  | sfile); | 
| 306 |  |  | else if (sarr[ntp[1]] <= FTINY) | 
| 307 |  |  | sprintf(errmsg, | 
| 308 |  |  | "maximum phi must be positive in sensor file '%s'", | 
| 309 |  |  | sfile); | 
| 310 |  |  | if (errmsg[0]) | 
| 311 |  |  | error(USER, errmsg); | 
| 312 |  |  | return((float *)realloc((void *)sarr, sizeof(float)*nelem)); | 
| 313 |  |  | } | 
| 314 |  |  |  | 
| 315 |  |  | /* Initialize probability table */ | 
| 316 |  |  | static void | 
| 317 |  |  | init_ptable( | 
| 318 |  |  | char    *sfile | 
| 319 |  |  | ) | 
| 320 |  |  | { | 
| 321 |  |  | int     samptot = nsamps; | 
| 322 |  |  | float   *rowp, *rowp1; | 
| 323 |  |  | double  rowsum[MAXNT], rowomega[MAXNT]; | 
| 324 |  |  | double  thdiv[MAXNT+1], phdiv[MAXNP+1]; | 
| 325 |  |  | double  tsize, psize; | 
| 326 |  |  | double  prob, frac, frac1; | 
| 327 |  |  | int     i, j, t, p; | 
| 328 |  |  | /* free old table */ | 
| 329 |  |  | if (sensor != NULL) | 
| 330 |  |  | free((void *)sensor); | 
| 331 |  |  | if (pvals != NULL) | 
| 332 |  |  | free((void *)pvals); | 
| 333 |  |  | if (sfile == NULL || !*sfile) { | 
| 334 | greg | 2.2 | sensor = NULL; | 
| 335 |  |  | sntp[0] = sntp[1] = 0; | 
| 336 | greg | 2.1 | pvals = NULL; | 
| 337 |  |  | ntheta = nphi = 0; | 
| 338 |  |  | return; | 
| 339 |  |  | } | 
| 340 |  |  | /* load sensor table */ | 
| 341 |  |  | sensor = load_sensor(sntp, sfile); | 
| 342 |  |  | if (sntp[0] > MAXNT) { | 
| 343 |  |  | sprintf(errmsg, "Too many theta rows in sensor file '%s'", | 
| 344 |  |  | sfile); | 
| 345 |  |  | error(INTERNAL, errmsg); | 
| 346 |  |  | } | 
| 347 |  |  | if (sntp[1] > MAXNP) { | 
| 348 |  |  | sprintf(errmsg, "Too many phi columns in sensor file '%s'", | 
| 349 |  |  | sfile); | 
| 350 |  |  | error(INTERNAL, errmsg); | 
| 351 |  |  | } | 
| 352 |  |  | /* compute boundary angles */ | 
| 353 | greg | 2.9 | maxtheta = DEGREE*(1.5f*s_theta(sntp[0]-1) - 0.5f*s_theta(sntp[0]-2)); | 
| 354 |  |  | if (maxtheta > PI) | 
| 355 |  |  | maxtheta = PI; | 
| 356 | greg | 2.1 | thdiv[0] = .0; | 
| 357 |  |  | for (t = 1; t < sntp[0]; t++) | 
| 358 | greg | 2.2 | thdiv[t] = DEGREE/2.*(s_theta(t-1) + s_theta(t)); | 
| 359 | greg | 2.9 | thdiv[sntp[0]] = maxtheta; | 
| 360 |  |  | phdiv[0] = DEGREE*(1.5f*s_phi(0) - 0.5f*s_phi(1)); | 
| 361 | greg | 2.1 | for (p = 1; p < sntp[1]; p++) | 
| 362 | greg | 2.2 | phdiv[p] = DEGREE/2.*(s_phi(p-1) + s_phi(p)); | 
| 363 | greg | 2.9 | phdiv[sntp[1]] = DEGREE*(1.5f*s_phi(sntp[1]-1) - 0.5f*s_phi(sntp[1]-2)); | 
| 364 | greg | 2.1 | /* size our table */ | 
| 365 | greg | 2.9 | tsize = 1. - cos(maxtheta); | 
| 366 |  |  | psize = PI*tsize/maxtheta; | 
| 367 | greg | 2.1 | if (sntp[0]*sntp[1] < samptot)  /* don't overdo resolution */ | 
| 368 |  |  | samptot = sntp[0]*sntp[1]; | 
| 369 | greg | 2.17 | ntheta = (int)(sqrt((double)samptot*tsize/psize)*sntp[0]/sntp[1]) + 1; | 
| 370 | greg | 2.1 | if (ntheta > MAXNT) | 
| 371 |  |  | ntheta = MAXNT; | 
| 372 |  |  | nphi = samptot/ntheta; | 
| 373 | greg | 2.9 | pvals = (float *)malloc(sizeof(float)*(ntheta+1)*(nphi+1)); | 
| 374 | greg | 2.1 | if (pvals == NULL) | 
| 375 |  |  | error(SYSTEM, "out of memory in init_ptable()"); | 
| 376 |  |  | gscale = .0;                    /* compute our inverse table */ | 
| 377 |  |  | for (i = 0; i < sntp[0]; i++) { | 
| 378 | greg | 2.2 | rowp = &s_val(i,0); | 
| 379 | greg | 2.9 | rowsum[i] = 1e-20; | 
| 380 | greg | 2.1 | for (j = 0; j < sntp[1]; j++) | 
| 381 |  |  | rowsum[i] += *rowp++; | 
| 382 |  |  | rowomega[i] = cos(thdiv[i]) - cos(thdiv[i+1]); | 
| 383 |  |  | rowomega[i] *= 2.*PI / (double)sntp[1]; | 
| 384 |  |  | gscale += rowsum[i] * rowomega[i]; | 
| 385 |  |  | } | 
| 386 | greg | 2.9 | if (gscale <= FTINY) { | 
| 387 |  |  | sprintf(errmsg, "Sensor values sum to zero in file '%s'", sfile); | 
| 388 |  |  | error(USER, errmsg); | 
| 389 |  |  | } | 
| 390 | greg | 2.2 | for (i = 0; i < ntheta; i++) { | 
| 391 | greg | 2.1 | prob = (double)i / (double)ntheta; | 
| 392 |  |  | for (t = 0; t < sntp[0]; t++) | 
| 393 |  |  | if ((prob -= rowsum[t]*rowomega[t]/gscale) <= .0) | 
| 394 |  |  | break; | 
| 395 |  |  | if (t >= sntp[0]) | 
| 396 |  |  | error(INTERNAL, "code error 1 in init_ptable()"); | 
| 397 |  |  | frac = 1. + prob/(rowsum[t]*rowomega[t]/gscale); | 
| 398 |  |  | tvals[i] = 1. - ( (1.-frac)*cos(thdiv[t]) + | 
| 399 |  |  | frac*cos(thdiv[t+1]) ); | 
| 400 | greg | 2.2 | /* offset b/c sensor values are centered */ | 
| 401 | greg | 2.14 | if ((t < sntp[0]-1) & (!t | (frac >= 0.5))) { | 
| 402 |  |  | frac -= 0.5; | 
| 403 | greg | 2.13 | } else { | 
| 404 | greg | 2.2 | frac += 0.5; | 
| 405 |  |  | --t; | 
| 406 |  |  | } | 
| 407 | greg | 2.9 | pvals[i*(nphi+1)] = phdiv[0]; | 
| 408 | greg | 2.1 | for (j = 1; j < nphi; j++) { | 
| 409 |  |  | prob = (double)j / (double)nphi; | 
| 410 | greg | 2.2 | rowp = &s_val(t,0); | 
| 411 |  |  | rowp1 = &s_val(t+1,0); | 
| 412 | greg | 2.9 | for (p = 0; p < sntp[1]; p++) | 
| 413 | greg | 2.2 | if ((prob -= (1.-frac)*rowp[p]/rowsum[t] + | 
| 414 |  |  | frac*rowp1[p]/rowsum[t+1]) <= .0) | 
| 415 | greg | 2.1 | break; | 
| 416 | greg | 2.10 | if (p >= sntp[1]) {     /* should never happen? */ | 
| 417 | greg | 2.9 | p = sntp[1] - 1; | 
| 418 |  |  | prob = .5; | 
| 419 | greg | 2.1 | } | 
| 420 | greg | 2.9 | frac1 = 1. + prob/((1.-frac)*rowp[p]/rowsum[t] | 
| 421 |  |  | + frac*rowp1[p]/rowsum[t+1]); | 
| 422 |  |  | pvals[i*(nphi+1) + j] = (1.-frac1)*phdiv[p] + | 
| 423 |  |  | frac1*phdiv[p+1]; | 
| 424 | greg | 2.1 | } | 
| 425 | greg | 2.9 | pvals[i*(nphi+1) + nphi] = phdiv[sntp[1]]; | 
| 426 | greg | 2.1 | } | 
| 427 | greg | 2.15 | /* duplicate final row */ | 
| 428 |  |  | memcpy(pvals+ntheta*(nphi+1), pvals+(ntheta-1)*(nphi+1), | 
| 429 |  |  | sizeof(*pvals)*(nphi+1)); | 
| 430 | greg | 2.2 | tvals[0] = .0f; | 
| 431 | greg | 2.1 | tvals[ntheta] = (float)tsize; | 
| 432 |  |  | } | 
| 433 |  |  |  | 
| 434 |  |  | /* Get normalized direction from random variables in [0,1) range */ | 
| 435 |  |  | static void | 
| 436 |  |  | get_direc( | 
| 437 |  |  | FVECT dvec, | 
| 438 |  |  | double  x, | 
| 439 |  |  | double  y | 
| 440 |  |  | ) | 
| 441 |  |  | { | 
| 442 |  |  | double  xfrac = x*ntheta; | 
| 443 |  |  | int     tndx = (int)xfrac; | 
| 444 |  |  | double  yfrac = y*nphi; | 
| 445 |  |  | int     pndx = (int)yfrac; | 
| 446 |  |  | double  rad, phi; | 
| 447 |  |  | FVECT   dv; | 
| 448 |  |  | int     i; | 
| 449 |  |  |  | 
| 450 |  |  | xfrac -= (double)tndx; | 
| 451 |  |  | yfrac -= (double)pndx; | 
| 452 |  |  | pndx += tndx*(nphi+1); | 
| 453 |  |  |  | 
| 454 |  |  | dv[2] = 1. - ((1.-xfrac)*tvals[tndx] + xfrac*tvals[tndx+1]); | 
| 455 |  |  | rad = sqrt(1. - dv[2]*dv[2]); | 
| 456 |  |  | phi = (1.-yfrac)*pvals[pndx] + yfrac*pvals[pndx+1]; | 
| 457 |  |  | dv[0] = -rad*sin(phi); | 
| 458 |  |  | dv[1] = rad*cos(phi); | 
| 459 |  |  | for (i = 3; i--; ) | 
| 460 |  |  | dvec[i] = dv[0]*ourview.hvec[i] + | 
| 461 |  |  | dv[1]*ourview.vvec[i] + | 
| 462 |  |  | dv[2]*ourview.vdir[i] ; | 
| 463 |  |  | } | 
| 464 |  |  |  | 
| 465 |  |  | /* Get sensor value in the specified direction (normalized) */ | 
| 466 |  |  | static float | 
| 467 |  |  | sens_val( | 
| 468 |  |  | FVECT   dvec | 
| 469 |  |  | ) | 
| 470 |  |  | { | 
| 471 |  |  | FVECT   dv; | 
| 472 |  |  | float   theta, phi; | 
| 473 |  |  | int     t, p; | 
| 474 |  |  |  | 
| 475 |  |  | dv[2] = DOT(dvec, ourview.vdir); | 
| 476 | greg | 2.11 | theta = acos(dv[2]); | 
| 477 | greg | 2.1 | if (theta >= maxtheta) | 
| 478 |  |  | return(.0f); | 
| 479 |  |  | dv[0] = DOT(dvec, ourview.hvec); | 
| 480 |  |  | dv[1] = DOT(dvec, ourview.vvec); | 
| 481 | greg | 2.11 | phi = atan2(-dv[0], dv[1]); | 
| 482 |  |  | while (phi < .0f) phi += (float)(2.*PI); | 
| 483 | greg | 2.1 | t = (int)(theta/maxtheta * sntp[0]); | 
| 484 | greg | 2.11 | p = (int)(phi*(1./(2.*PI)) * sntp[1]); | 
| 485 | greg | 2.1 | /* hack for non-uniform sensor grid */ | 
| 486 | greg | 2.11 | theta *= (float)(1./DEGREE); | 
| 487 |  |  | phi *= (float)(1./DEGREE); | 
| 488 | greg | 2.2 | while (t+1 < sntp[0] && theta >= s_theta(t+1)) | 
| 489 | greg | 2.1 | ++t; | 
| 490 | greg | 2.2 | while (t-1 >= 0 && theta <= s_theta(t-1)) | 
| 491 | greg | 2.1 | --t; | 
| 492 | greg | 2.2 | while (p+1 < sntp[1] && phi >= s_phi(p+1)) | 
| 493 | greg | 2.1 | ++p; | 
| 494 | greg | 2.2 | while (p-1 >= 0 && phi <= s_phi(p-1)) | 
| 495 | greg | 2.1 | --p; | 
| 496 | greg | 2.2 | return(s_val(t,p)); | 
| 497 | greg | 2.1 | } | 
| 498 |  |  |  | 
| 499 | greg | 2.8 | /* Print origin and direction */ | 
| 500 |  |  | static void | 
| 501 |  |  | print_ray( | 
| 502 |  |  | FVECT rorg, | 
| 503 |  |  | FVECT rdir | 
| 504 |  |  | ) | 
| 505 |  |  | { | 
| 506 |  |  | printf("%.6g %.6g %.6g %.8f %.8f %.8f\n", | 
| 507 |  |  | rorg[0], rorg[1], rorg[2], | 
| 508 |  |  | rdir[0], rdir[1], rdir[2]); | 
| 509 |  |  | } | 
| 510 |  |  |  | 
| 511 | greg | 2.1 | /* Compute sensor output */ | 
| 512 |  |  | static void | 
| 513 |  |  | comp_sensor( | 
| 514 |  |  | char *sfile | 
| 515 |  |  | ) | 
| 516 |  |  | { | 
| 517 |  |  | int     ndirs = dstrsrc > FTINY ? ndsamps : | 
| 518 |  |  | ndsamps > 0 ? 1 : 0; | 
| 519 |  |  | char    *err; | 
| 520 |  |  | int     nt, np; | 
| 521 |  |  | COLOR   vsum; | 
| 522 |  |  | RAY     rr; | 
| 523 | greg | 2.6 | double  sf; | 
| 524 | greg | 2.1 | int     i, j; | 
| 525 |  |  | /* set view */ | 
| 526 |  |  | ourview.type = VT_ANG; | 
| 527 |  |  | ourview.horiz = ourview.vert = 180.; | 
| 528 |  |  | ourview.hoff = ourview.voff = .0; | 
| 529 |  |  | err = setview(&ourview); | 
| 530 |  |  | if (err != NULL) | 
| 531 |  |  | error(USER, err); | 
| 532 |  |  | /* assign probability table */ | 
| 533 |  |  | init_ptable(sfile); | 
| 534 | greg | 2.6 | /* stratified MC sampling */ | 
| 535 | greg | 2.1 | setcolor(vsum, .0f, .0f, .0f); | 
| 536 |  |  | nt = (int)(sqrt((double)nsamps*ntheta/nphi) + .5); | 
| 537 |  |  | np = nsamps/nt; | 
| 538 | greg | 2.6 | sf = gscale/nsamps; | 
| 539 | greg | 2.1 | for (i = 0; i < nt; i++) | 
| 540 | greg | 2.2 | for (j = 0; j < np; j++) { | 
| 541 | greg | 2.5 | VCOPY(rr.rorg, ourview.vp); | 
| 542 | greg | 2.2 | get_direc(rr.rdir, (i+frandom())/nt, (j+frandom())/np); | 
| 543 | greg | 2.5 | if (ourview.vfore > FTINY) | 
| 544 |  |  | VSUM(rr.rorg, rr.rorg, rr.rdir, ourview.vfore); | 
| 545 | greg | 2.8 | if (!ray_pnprocs) { | 
| 546 |  |  | print_ray(rr.rorg, rr.rdir); | 
| 547 |  |  | continue; | 
| 548 |  |  | } | 
| 549 | greg | 2.5 | rr.rmax = .0; | 
| 550 | greg | 2.12 | rayorigin(&rr, PRIMARY|SPECULAR, NULL, NULL); | 
| 551 | greg | 2.6 | scalecolor(rr.rcoef, sf); | 
| 552 | greg | 2.1 | if (ray_pqueue(&rr) == 1) | 
| 553 |  |  | addcolor(vsum, rr.rcol); | 
| 554 |  |  | } | 
| 555 | greg | 2.6 | /* remaining rays pure MC */ | 
| 556 |  |  | for (i = nsamps - nt*np; i-- > 0; ) { | 
| 557 |  |  | VCOPY(rr.rorg, ourview.vp); | 
| 558 |  |  | get_direc(rr.rdir, frandom(), frandom()); | 
| 559 |  |  | if (ourview.vfore > FTINY) | 
| 560 |  |  | VSUM(rr.rorg, rr.rorg, rr.rdir, ourview.vfore); | 
| 561 | greg | 2.8 | if (!ray_pnprocs) { | 
| 562 |  |  | print_ray(rr.rorg, rr.rdir); | 
| 563 |  |  | continue; | 
| 564 |  |  | } | 
| 565 | greg | 2.6 | rr.rmax = .0; | 
| 566 | greg | 2.12 | rayorigin(&rr, PRIMARY|SPECULAR, NULL, NULL); | 
| 567 | greg | 2.6 | scalecolor(rr.rcoef, sf); | 
| 568 |  |  | if (ray_pqueue(&rr) == 1) | 
| 569 |  |  | addcolor(vsum, rr.rcol); | 
| 570 |  |  | } | 
| 571 | greg | 2.8 | if (!ray_pnprocs)                       /* just printing rays */ | 
| 572 |  |  | return; | 
| 573 | greg | 2.6 | /* scale partial result */ | 
| 574 |  |  | scalecolor(vsum, sf); | 
| 575 |  |  | /* add direct component */ | 
| 576 | greg | 2.1 | for (i = ndirs; i-- > 0; ) { | 
| 577 |  |  | SRCINDEX        si; | 
| 578 |  |  | initsrcindex(&si); | 
| 579 |  |  | while (srcray(&rr, NULL, &si)) { | 
| 580 | greg | 2.6 | sf = sens_val(rr.rdir); | 
| 581 |  |  | if (sf <= FTINY) | 
| 582 | greg | 2.1 | continue; | 
| 583 | greg | 2.6 | sf *= si.dom/ndirs; | 
| 584 |  |  | scalecolor(rr.rcoef, sf); | 
| 585 | greg | 2.1 | if (ray_pqueue(&rr) == 1) { | 
| 586 |  |  | multcolor(rr.rcol, rr.rcoef); | 
| 587 |  |  | addcolor(vsum, rr.rcol); | 
| 588 |  |  | } | 
| 589 |  |  | } | 
| 590 |  |  | } | 
| 591 | greg | 2.6 | /* finish our calculation */ | 
| 592 | greg | 2.1 | while (ray_presult(&rr, 0) > 0) { | 
| 593 |  |  | multcolor(rr.rcol, rr.rcoef); | 
| 594 |  |  | addcolor(vsum, rr.rcol); | 
| 595 |  |  | } | 
| 596 |  |  | /* print our result */ | 
| 597 |  |  | printf("%.4e %.4e %.4e\n", colval(vsum,RED), | 
| 598 |  |  | colval(vsum,GRN), colval(vsum,BLU)); | 
| 599 |  |  | } |