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/* Copyright (c) 1986 Regents of the University of California */ |
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#ifndef lint |
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static char SCCSid[] = "$SunId$ LBL"; |
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static const char RCSid[] = "$Id$"; |
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#endif |
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|
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/* |
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* rtrace.c - program and variables for individual ray tracing. |
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* |
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* 6/11/86 |
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*/ |
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#include "copyright.h" |
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|
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/* |
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* Input is in the form: |
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* |
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* irradiance values are desired. |
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*/ |
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|
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#include "ray.h" |
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#include <time.h> |
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|
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#include "octree.h" |
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|
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#include "platform.h" |
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#include "ray.h" |
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#include "ambient.h" |
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#include "source.h" |
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#include "otypes.h" |
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#include "resolu.h" |
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#include "random.h" |
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|
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int dimlist[MAXDIM]; /* sampling dimensions */ |
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int ndims = 0; /* number of sampling dimensions */ |
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int samplendx = 0; /* index for this sample */ |
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extern int inform; /* input format */ |
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extern int outform; /* output format */ |
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extern char *outvals; /* output values */ |
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|
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int imm_irrad = 0; /* compute immediate irradiance? */ |
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extern int imm_irrad; /* compute immediate irradiance? */ |
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extern int lim_dist; /* limit distance? */ |
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|
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int inform = 'a'; /* input format */ |
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int outform = 'a'; /* output format */ |
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char *outvals = "v"; /* output specification */ |
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extern char *tralist[]; /* list of modifers to trace (or no) */ |
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extern int traincl; /* include == 1, exclude == 0 */ |
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|
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int hresolu = 0; /* horizontal (scan) size */ |
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int vresolu = 0; /* vertical resolution */ |
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extern int hresolu; /* horizontal resolution */ |
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extern int vresolu; /* vertical resolution */ |
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|
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double dstrsrc = 0.0; /* square source distribution */ |
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double shadthresh = .05; /* shadow threshold */ |
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double shadcert = .5; /* shadow certainty */ |
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int directrelay = 1; /* number of source relays */ |
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int vspretest = 512; /* virtual source pretest density */ |
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int directinvis = 0; /* sources invisible? */ |
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double srcsizerat = .25; /* maximum ratio source size/dist. */ |
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static int castonly = 0; |
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|
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int maxdepth = 6; /* maximum recursion depth */ |
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double minweight = 4e-3; /* minimum ray weight */ |
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#ifndef MAXTSET |
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#define MAXTSET 8191 /* maximum number in trace set */ |
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#endif |
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OBJECT traset[MAXTSET+1]={0}; /* trace include/exclude set */ |
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|
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COLOR ambval = BLKCOLOR; /* ambient value */ |
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double ambacc = 0.2; /* ambient accuracy */ |
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int ambres = 32; /* ambient resolution */ |
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int ambdiv = 128; /* ambient divisions */ |
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int ambssamp = 0; /* ambient super-samples */ |
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int ambounce = 0; /* ambient bounces */ |
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char *amblist[128]; /* ambient include/exclude list */ |
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int ambincl = -1; /* include == 1, exclude == 0 */ |
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|
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extern OBJREC Lamb; /* a Lambertian surface */ |
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|
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static RAY thisray; /* for our convenience */ |
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|
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static int oputo(), oputd(), oputv(), oputl(), |
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oputp(), oputn(), oputs(), oputw(), oputm(); |
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typedef void putf_t(double v); |
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static putf_t puta, putd, putf; |
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|
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static int (*ray_out[10])(), (*every_out[10])(); |
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static int castonly; |
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typedef void oputf_t(RAY *r); |
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static oputf_t oputo, oputd, oputv, oputV, oputl, oputL, oputc, oputp, |
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oputn, oputN, oputs, oputw, oputW, oputm, oputM, oputtilde; |
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|
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static int puta(), putf(), putd(); |
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static void setoutput(char *vs); |
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extern void tranotify(OBJECT obj); |
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static void bogusray(void); |
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static void raycast(RAY *r); |
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static void rayirrad(RAY *r); |
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static void rtcompute(FVECT org, FVECT dir, double dmax); |
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static int printvals(RAY *r); |
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static int getvec(FVECT vec, int fmt, FILE *fp); |
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static void tabin(RAY *r); |
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static void ourtrace(RAY *r); |
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|
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static int (*putreal)(); |
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static oputf_t *ray_out[16], *every_out[16]; |
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static putf_t *putreal; |
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|
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quit(code) /* quit program */ |
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int code; |
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void |
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quit( /* quit program */ |
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int code |
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) |
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{ |
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if (ray_pnprocs > 0) /* close children if any */ |
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ray_pclose(0); |
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#ifndef NON_POSIX |
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else if (!ray_pnprocs) { |
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headclean(); /* delete header file */ |
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pfclean(); /* clean up persist files */ |
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} |
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#endif |
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exit(code); |
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} |
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|
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rtrace(fname) /* trace rays from file */ |
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char *fname; |
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char * |
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formstr( /* return format identifier */ |
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int f |
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) |
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{ |
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long vcount = hresolu>1 ? hresolu*vresolu : vresolu; |
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switch (f) { |
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case 'a': return("ascii"); |
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case 'f': return("float"); |
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case 'd': return("double"); |
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case 'c': return(COLRFMT); |
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} |
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return("unknown"); |
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} |
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|
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|
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extern void |
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rtrace( /* trace rays from file */ |
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char *fname, |
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int nproc |
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) |
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{ |
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unsigned long vcount = (hresolu > 1) ? (unsigned long)hresolu*vresolu |
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: vresolu; |
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long nextflush = hresolu; |
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FILE *fp; |
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double d; |
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FVECT orig, direc; |
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/* set up input */ |
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if (fname == NULL) |
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sprintf(errmsg, "cannot open input file \"%s\"", fname); |
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error(SYSTEM, errmsg); |
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} |
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if (inform != 'a') |
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SET_FILE_BINARY(fp); |
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/* set up output */ |
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setoutput(outvals); |
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if (imm_irrad) |
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castonly = 0; |
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else if (castonly) |
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nproc = 1; /* don't bother multiprocessing */ |
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switch (outform) { |
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case 'a': putreal = puta; break; |
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case 'f': putreal = putf; break; |
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case 'd': putreal = putd; break; |
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case 'c': |
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if (strcmp(outvals, "v")) |
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error(USER, "color format with value output only"); |
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break; |
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default: |
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error(CONSISTENCY, "botched output format"); |
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} |
148 |
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if (nproc > 1) { /* start multiprocessing */ |
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ray_popen(nproc); |
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ray_fifo_out = printvals; |
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} |
152 |
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if (hresolu > 0) { |
153 |
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if (vresolu > 0) |
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fprtresolu(hresolu, vresolu, stdout); |
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fflush(stdout); |
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} |
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/* process file */ |
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while (getvec(orig, inform, fp) == 0 && |
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getvec(direc, inform, fp) == 0) { |
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|
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if (normalize(direc) == 0.0) { /* zero ==> flush */ |
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fflush(stdout); |
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continue; |
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} |
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samplendx++; |
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/* compute and print */ |
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if (imm_irrad) |
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irrad(orig, direc); |
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else |
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traceray(orig, direc); |
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d = normalize(direc); |
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if (d == 0.0) { /* zero ==> flush */ |
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if (nproc > 1 && ray_fifo_flush() < 0) |
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error(USER, "lost children"); |
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bogusray(); |
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if (--nextflush <= 0 || !vcount) { |
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fflush(stdout); |
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nextflush = hresolu; |
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} |
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} else { /* compute and print */ |
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rtcompute(orig, direc, lim_dist ? d : 0.0); |
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/* flush if time */ |
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if (--nextflush == 0) { |
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fflush(stdout); |
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nextflush = hresolu; |
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if (!--nextflush) { |
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if (nproc > 1 && ray_fifo_flush() < 0) |
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error(USER, "lost children"); |
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fflush(stdout); |
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nextflush = hresolu; |
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} |
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} |
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if (ferror(stdout)) |
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error(SYSTEM, "write error"); |
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if (--vcount == 0) /* check for end */ |
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if (vcount && !--vcount) /* check for end */ |
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break; |
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} |
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if (vcount > 0) |
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error(USER, "read error"); |
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fclose(fp); |
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if (nproc > 1) { /* clean up children */ |
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if (ray_fifo_flush() < 0) |
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error(USER, "unable to complete processing"); |
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ray_pclose(0); |
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} |
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if (fflush(stdout) < 0) |
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error(SYSTEM, "write error"); |
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if (vcount) |
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error(USER, "unexpected EOF on input"); |
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if (fname != NULL) |
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fclose(fp); |
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} |
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|
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setoutput(vs) /* set up output tables */ |
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register char *vs; |
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static void |
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trace_sources(void) /* trace rays to light sources, also */ |
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{ |
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< |
extern int ourtrace(), (*trace)(); |
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register int (**table)() = ray_out; |
202 |
> |
int sn; |
203 |
> |
|
204 |
> |
for (sn = 0; sn < nsources; sn++) |
205 |
> |
source[sn].sflags |= SFOLLOW; |
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} |
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|
208 |
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|
209 |
+ |
static void |
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+ |
setoutput( /* set up output tables */ |
211 |
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char *vs |
212 |
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) |
213 |
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{ |
214 |
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oputf_t **table = ray_out; |
215 |
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|
216 |
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castonly = 1; |
217 |
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while (*vs) |
218 |
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switch (*vs++) { |
219 |
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case 'T': /* trace sources */ |
220 |
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if (!*vs) break; |
221 |
+ |
trace_sources(); |
222 |
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/* fall through */ |
223 |
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case 't': /* trace */ |
224 |
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if (!*vs) break; |
225 |
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*table = NULL; |
226 |
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table = every_out; |
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trace = ourtrace; |
237 |
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*table++ = oputv; |
238 |
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castonly = 0; |
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break; |
240 |
< |
case 'l': /* length */ |
240 |
> |
case 'V': /* contribution */ |
241 |
> |
*table++ = oputV; |
242 |
> |
if (ambounce > 0 && (ambacc > FTINY || ambssamp > 0)) |
243 |
> |
error(WARNING, |
244 |
> |
"-otV accuracy depends on -aa 0 -as 0"); |
245 |
> |
break; |
246 |
> |
case 'l': /* effective distance */ |
247 |
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*table++ = oputl; |
248 |
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castonly = 0; |
249 |
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break; |
250 |
+ |
case 'c': /* local coordinates */ |
251 |
+ |
*table++ = oputc; |
252 |
+ |
break; |
253 |
+ |
case 'L': /* single ray length */ |
254 |
+ |
*table++ = oputL; |
255 |
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break; |
256 |
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case 'p': /* point */ |
257 |
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*table++ = oputp; |
258 |
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break; |
259 |
< |
case 'n': /* normal */ |
259 |
> |
case 'n': /* perturbed normal */ |
260 |
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*table++ = oputn; |
261 |
+ |
castonly = 0; |
262 |
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break; |
263 |
+ |
case 'N': /* unperturbed normal */ |
264 |
+ |
*table++ = oputN; |
265 |
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break; |
266 |
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case 's': /* surface */ |
267 |
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*table++ = oputs; |
268 |
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break; |
269 |
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case 'w': /* weight */ |
270 |
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*table++ = oputw; |
271 |
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break; |
272 |
+ |
case 'W': /* coefficient */ |
273 |
+ |
*table++ = oputW; |
274 |
+ |
if (ambounce > 0 && (ambacc > FTINY || ambssamp > 0)) |
275 |
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error(WARNING, |
276 |
+ |
"-otW accuracy depends on -aa 0 -as 0"); |
277 |
+ |
break; |
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case 'm': /* modifier */ |
279 |
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*table++ = oputm; |
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break; |
281 |
+ |
case 'M': /* material */ |
282 |
+ |
*table++ = oputM; |
283 |
+ |
break; |
284 |
+ |
case '~': /* tilde */ |
285 |
+ |
*table++ = oputtilde; |
286 |
+ |
break; |
287 |
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} |
288 |
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*table = NULL; |
289 |
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} |
290 |
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|
291 |
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|
292 |
< |
traceray(org, dir) /* compute and print ray value(s) */ |
293 |
< |
FVECT org, dir; |
292 |
> |
static void |
293 |
> |
bogusray(void) /* print out empty record */ |
294 |
|
{ |
295 |
< |
register int (**tp)(); |
295 |
> |
thisray.rorg[0] = thisray.rorg[1] = thisray.rorg[2] = |
296 |
> |
thisray.rdir[0] = thisray.rdir[1] = thisray.rdir[2] = 0.0; |
297 |
> |
thisray.rmax = 0.0; |
298 |
> |
rayorigin(&thisray, PRIMARY, NULL, NULL); |
299 |
> |
printvals(&thisray); |
300 |
> |
} |
301 |
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|
193 |
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VCOPY(thisray.rorg, org); |
194 |
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VCOPY(thisray.rdir, dir); |
195 |
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rayorigin(&thisray, NULL, PRIMARY, 1.0); |
196 |
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if (castonly) |
197 |
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localhit(&thisray, &thescene) || sourcehit(&thisray); |
198 |
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else |
199 |
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rayvalue(&thisray); |
302 |
|
|
303 |
< |
if (ray_out[0] == NULL) |
304 |
< |
return; |
305 |
< |
for (tp = ray_out; *tp != NULL; tp++) |
306 |
< |
(**tp)(&thisray); |
307 |
< |
if (outform == 'a') |
308 |
< |
putchar('\n'); |
303 |
> |
static void |
304 |
> |
raycast( /* compute first ray intersection only */ |
305 |
> |
RAY *r |
306 |
> |
) |
307 |
> |
{ |
308 |
> |
if (!localhit(r, &thescene)) { |
309 |
> |
if (r->ro == &Aftplane) { /* clipped */ |
310 |
> |
r->ro = NULL; |
311 |
> |
r->rot = FHUGE; |
312 |
> |
} else |
313 |
> |
sourcehit(r); |
314 |
> |
} |
315 |
|
} |
316 |
|
|
317 |
|
|
318 |
< |
irrad(org, dir) /* compute immediate irradiance value */ |
319 |
< |
FVECT org, dir; |
318 |
> |
static void |
319 |
> |
rayirrad( /* compute irradiance rather than radiance */ |
320 |
> |
RAY *r |
321 |
> |
) |
322 |
|
{ |
323 |
< |
register int i; |
323 |
> |
r->rot = 1e-5; /* pretend we hit surface */ |
324 |
> |
VSUM(r->rop, r->rorg, r->rdir, r->rot); |
325 |
> |
r->ron[0] = -r->rdir[0]; |
326 |
> |
r->ron[1] = -r->rdir[1]; |
327 |
> |
r->ron[2] = -r->rdir[2]; |
328 |
> |
r->rod = 1.0; |
329 |
> |
r->revf = raytrace; |
330 |
> |
/* compute result */ |
331 |
> |
(*ofun[Lamb.otype].funp)(&Lamb, r); |
332 |
> |
} |
333 |
|
|
334 |
< |
for (i = 0; i < 3; i++) { |
335 |
< |
thisray.rorg[i] = org[i] + dir[i]; |
336 |
< |
thisray.rdir[i] = -dir[i]; |
334 |
> |
|
335 |
> |
static void |
336 |
> |
rtcompute( /* compute and print ray value(s) */ |
337 |
> |
FVECT org, |
338 |
> |
FVECT dir, |
339 |
> |
double dmax |
340 |
> |
) |
341 |
> |
{ |
342 |
> |
/* set up ray */ |
343 |
> |
rayorigin(&thisray, PRIMARY, NULL, NULL); |
344 |
> |
if (imm_irrad) { |
345 |
> |
VSUM(thisray.rorg, org, dir, 1.1e-4); |
346 |
> |
thisray.rdir[0] = -dir[0]; |
347 |
> |
thisray.rdir[1] = -dir[1]; |
348 |
> |
thisray.rdir[2] = -dir[2]; |
349 |
> |
thisray.rmax = 0.0; |
350 |
> |
thisray.revf = rayirrad; |
351 |
> |
} else { |
352 |
> |
VCOPY(thisray.rorg, org); |
353 |
> |
VCOPY(thisray.rdir, dir); |
354 |
> |
thisray.rmax = dmax; |
355 |
> |
if (castonly) |
356 |
> |
thisray.revf = raycast; |
357 |
|
} |
358 |
< |
rayorigin(&thisray, NULL, PRIMARY, 1.0); |
359 |
< |
/* pretend we hit surface */ |
360 |
< |
thisray.rot = 1.0; |
361 |
< |
thisray.rod = 1.0; |
362 |
< |
VCOPY(thisray.ron, dir); |
363 |
< |
for (i = 0; i < 3; i++) /* fudge factor */ |
364 |
< |
thisray.rop[i] = org[i] + 1e-4*dir[i]; |
365 |
< |
/* compute and print */ |
366 |
< |
(*ofun[Lamb.otype].funp)(&Lamb, &thisray); |
367 |
< |
oputv(&thisray); |
358 |
> |
if (ray_pnprocs > 1) { /* multiprocessing FIFO? */ |
359 |
> |
if (ray_fifo_in(&thisray) < 0) |
360 |
> |
error(USER, "lost children"); |
361 |
> |
return; |
362 |
> |
} |
363 |
> |
samplendx++; /* else do it ourselves */ |
364 |
> |
rayvalue(&thisray); |
365 |
> |
printvals(&thisray); |
366 |
> |
} |
367 |
> |
|
368 |
> |
|
369 |
> |
static int |
370 |
> |
printvals( /* print requested ray values */ |
371 |
> |
RAY *r |
372 |
> |
) |
373 |
> |
{ |
374 |
> |
oputf_t **tp; |
375 |
> |
|
376 |
> |
if (ray_out[0] == NULL) |
377 |
> |
return(0); |
378 |
> |
for (tp = ray_out; *tp != NULL; tp++) |
379 |
> |
(**tp)(r); |
380 |
|
if (outform == 'a') |
381 |
|
putchar('\n'); |
382 |
+ |
return(1); |
383 |
|
} |
384 |
|
|
385 |
|
|
386 |
< |
getvec(vec, fmt, fp) /* get a vector from fp */ |
387 |
< |
register FVECT vec; |
388 |
< |
int fmt; |
389 |
< |
FILE *fp; |
386 |
> |
static int |
387 |
> |
getvec( /* get a vector from fp */ |
388 |
> |
FVECT vec, |
389 |
> |
int fmt, |
390 |
> |
FILE *fp |
391 |
> |
) |
392 |
|
{ |
239 |
– |
extern char *fgetword(); |
393 |
|
static float vf[3]; |
394 |
+ |
static double vd[3]; |
395 |
|
char buf[32]; |
396 |
< |
register int i; |
396 |
> |
int i; |
397 |
|
|
398 |
|
switch (fmt) { |
399 |
|
case 'a': /* ascii */ |
407 |
|
case 'f': /* binary float */ |
408 |
|
if (fread((char *)vf, sizeof(float), 3, fp) != 3) |
409 |
|
return(-1); |
410 |
< |
vec[0] = vf[0]; vec[1] = vf[1]; vec[2] = vf[2]; |
410 |
> |
VCOPY(vec, vf); |
411 |
|
break; |
412 |
|
case 'd': /* binary double */ |
413 |
< |
if (fread((char *)vec, sizeof(double), 3, fp) != 3) |
413 |
> |
if (fread((char *)vd, sizeof(double), 3, fp) != 3) |
414 |
|
return(-1); |
415 |
+ |
VCOPY(vec, vd); |
416 |
|
break; |
417 |
+ |
default: |
418 |
+ |
error(CONSISTENCY, "botched input format"); |
419 |
|
} |
420 |
|
return(0); |
421 |
|
} |
422 |
|
|
423 |
|
|
424 |
< |
static |
425 |
< |
ourtrace(r) /* print ray values */ |
426 |
< |
RAY *r; |
424 |
> |
void |
425 |
> |
tranotify( /* record new modifier */ |
426 |
> |
OBJECT obj |
427 |
> |
) |
428 |
|
{ |
429 |
< |
register int (**tp)(); |
429 |
> |
static int hitlimit = 0; |
430 |
> |
OBJREC *o = objptr(obj); |
431 |
> |
char **tralp; |
432 |
|
|
433 |
+ |
if (obj == OVOID) { /* starting over */ |
434 |
+ |
traset[0] = 0; |
435 |
+ |
hitlimit = 0; |
436 |
+ |
return; |
437 |
+ |
} |
438 |
+ |
if (hitlimit || !ismodifier(o->otype)) |
439 |
+ |
return; |
440 |
+ |
for (tralp = tralist; *tralp != NULL; tralp++) |
441 |
+ |
if (!strcmp(o->oname, *tralp)) { |
442 |
+ |
if (traset[0] >= MAXTSET) { |
443 |
+ |
error(WARNING, "too many modifiers in trace list"); |
444 |
+ |
hitlimit++; |
445 |
+ |
return; /* should this be fatal? */ |
446 |
+ |
} |
447 |
+ |
insertelem(traset, obj); |
448 |
+ |
return; |
449 |
+ |
} |
450 |
+ |
} |
451 |
+ |
|
452 |
+ |
|
453 |
+ |
static void |
454 |
+ |
ourtrace( /* print ray values */ |
455 |
+ |
RAY *r |
456 |
+ |
) |
457 |
+ |
{ |
458 |
+ |
oputf_t **tp; |
459 |
+ |
|
460 |
|
if (every_out[0] == NULL) |
461 |
|
return; |
462 |
+ |
if (r->ro == NULL) { |
463 |
+ |
if (traincl == 1) |
464 |
+ |
return; |
465 |
+ |
} else if (traincl != -1 && traincl != inset(traset, r->ro->omod)) |
466 |
+ |
return; |
467 |
|
tabin(r); |
468 |
|
for (tp = every_out; *tp != NULL; tp++) |
469 |
|
(**tp)(r); |
470 |
< |
putchar('\n'); |
470 |
> |
if (outform == 'a') |
471 |
> |
putchar('\n'); |
472 |
|
} |
473 |
|
|
474 |
|
|
475 |
< |
static |
476 |
< |
tabin(r) /* tab in appropriate amount */ |
477 |
< |
RAY *r; |
475 |
> |
static void |
476 |
> |
tabin( /* tab in appropriate amount */ |
477 |
> |
RAY *r |
478 |
> |
) |
479 |
|
{ |
480 |
< |
register RAY *rp; |
480 |
> |
const RAY *rp; |
481 |
|
|
482 |
|
for (rp = r->parent; rp != NULL; rp = rp->parent) |
483 |
|
putchar('\t'); |
484 |
|
} |
485 |
|
|
486 |
|
|
487 |
< |
static |
488 |
< |
oputo(r) /* print origin */ |
489 |
< |
register RAY *r; |
487 |
> |
static void |
488 |
> |
oputo( /* print origin */ |
489 |
> |
RAY *r |
490 |
> |
) |
491 |
|
{ |
492 |
|
(*putreal)(r->rorg[0]); |
493 |
|
(*putreal)(r->rorg[1]); |
495 |
|
} |
496 |
|
|
497 |
|
|
498 |
< |
static |
499 |
< |
oputd(r) /* print direction */ |
500 |
< |
register RAY *r; |
498 |
> |
static void |
499 |
> |
oputd( /* print direction */ |
500 |
> |
RAY *r |
501 |
> |
) |
502 |
|
{ |
503 |
|
(*putreal)(r->rdir[0]); |
504 |
|
(*putreal)(r->rdir[1]); |
506 |
|
} |
507 |
|
|
508 |
|
|
509 |
< |
static |
510 |
< |
oputv(r) /* print value */ |
511 |
< |
register RAY *r; |
509 |
> |
static void |
510 |
> |
oputv( /* print value */ |
511 |
> |
RAY *r |
512 |
> |
) |
513 |
|
{ |
514 |
+ |
if (outform == 'c') { |
515 |
+ |
COLR cout; |
516 |
+ |
setcolr(cout, colval(r->rcol,RED), |
517 |
+ |
colval(r->rcol,GRN), |
518 |
+ |
colval(r->rcol,BLU)); |
519 |
+ |
fwrite((char *)cout, sizeof(cout), 1, stdout); |
520 |
+ |
return; |
521 |
+ |
} |
522 |
|
(*putreal)(colval(r->rcol,RED)); |
523 |
|
(*putreal)(colval(r->rcol,GRN)); |
524 |
|
(*putreal)(colval(r->rcol,BLU)); |
525 |
|
} |
526 |
|
|
527 |
|
|
528 |
< |
static |
529 |
< |
oputl(r) /* print length */ |
530 |
< |
register RAY *r; |
528 |
> |
static void |
529 |
> |
oputV( /* print value contribution */ |
530 |
> |
RAY *r |
531 |
> |
) |
532 |
|
{ |
533 |
+ |
double contr[3]; |
534 |
+ |
|
535 |
+ |
raycontrib(contr, r, PRIMARY); |
536 |
+ |
multcolor(contr, r->rcol); |
537 |
+ |
(*putreal)(contr[RED]); |
538 |
+ |
(*putreal)(contr[GRN]); |
539 |
+ |
(*putreal)(contr[BLU]); |
540 |
+ |
} |
541 |
+ |
|
542 |
+ |
|
543 |
+ |
static void |
544 |
+ |
oputl( /* print effective distance */ |
545 |
+ |
RAY *r |
546 |
+ |
) |
547 |
+ |
{ |
548 |
|
(*putreal)(r->rt); |
549 |
|
} |
550 |
|
|
551 |
|
|
552 |
< |
static |
553 |
< |
oputp(r) /* print point */ |
554 |
< |
register RAY *r; |
552 |
> |
static void |
553 |
> |
oputL( /* print single ray length */ |
554 |
> |
RAY *r |
555 |
> |
) |
556 |
|
{ |
557 |
+ |
(*putreal)(r->rot); |
558 |
+ |
} |
559 |
+ |
|
560 |
+ |
|
561 |
+ |
static void |
562 |
+ |
oputc( /* print local coordinates */ |
563 |
+ |
RAY *r |
564 |
+ |
) |
565 |
+ |
{ |
566 |
+ |
(*putreal)(r->uv[0]); |
567 |
+ |
(*putreal)(r->uv[1]); |
568 |
+ |
} |
569 |
+ |
|
570 |
+ |
|
571 |
+ |
static void |
572 |
+ |
oputp( /* print point */ |
573 |
+ |
RAY *r |
574 |
+ |
) |
575 |
+ |
{ |
576 |
|
if (r->rot < FHUGE) { |
577 |
|
(*putreal)(r->rop[0]); |
578 |
|
(*putreal)(r->rop[1]); |
585 |
|
} |
586 |
|
|
587 |
|
|
588 |
< |
static |
589 |
< |
oputn(r) /* print normal */ |
590 |
< |
register RAY *r; |
588 |
> |
static void |
589 |
> |
oputN( /* print unperturbed normal */ |
590 |
> |
RAY *r |
591 |
> |
) |
592 |
|
{ |
593 |
|
if (r->rot < FHUGE) { |
594 |
|
(*putreal)(r->ron[0]); |
602 |
|
} |
603 |
|
|
604 |
|
|
605 |
< |
static |
606 |
< |
oputs(r) /* print name */ |
607 |
< |
register RAY *r; |
605 |
> |
static void |
606 |
> |
oputn( /* print perturbed normal */ |
607 |
> |
RAY *r |
608 |
> |
) |
609 |
|
{ |
610 |
+ |
FVECT pnorm; |
611 |
+ |
|
612 |
+ |
if (r->rot >= FHUGE) { |
613 |
+ |
(*putreal)(0.0); |
614 |
+ |
(*putreal)(0.0); |
615 |
+ |
(*putreal)(0.0); |
616 |
+ |
return; |
617 |
+ |
} |
618 |
+ |
raynormal(pnorm, r); |
619 |
+ |
(*putreal)(pnorm[0]); |
620 |
+ |
(*putreal)(pnorm[1]); |
621 |
+ |
(*putreal)(pnorm[2]); |
622 |
+ |
} |
623 |
+ |
|
624 |
+ |
|
625 |
+ |
static void |
626 |
+ |
oputs( /* print name */ |
627 |
+ |
RAY *r |
628 |
+ |
) |
629 |
+ |
{ |
630 |
|
if (r->ro != NULL) |
631 |
|
fputs(r->ro->oname, stdout); |
632 |
|
else |
635 |
|
} |
636 |
|
|
637 |
|
|
638 |
< |
static |
639 |
< |
oputw(r) /* print weight */ |
640 |
< |
register RAY *r; |
638 |
> |
static void |
639 |
> |
oputw( /* print weight */ |
640 |
> |
RAY *r |
641 |
> |
) |
642 |
|
{ |
643 |
|
(*putreal)(r->rweight); |
644 |
|
} |
645 |
|
|
646 |
|
|
647 |
< |
static |
648 |
< |
oputm(r) /* print modifier */ |
649 |
< |
register RAY *r; |
647 |
> |
static void |
648 |
> |
oputW( /* print coefficient */ |
649 |
> |
RAY *r |
650 |
> |
) |
651 |
|
{ |
652 |
+ |
double contr[3]; |
653 |
+ |
|
654 |
+ |
raycontrib(contr, r, PRIMARY); |
655 |
+ |
(*putreal)(contr[RED]); |
656 |
+ |
(*putreal)(contr[GRN]); |
657 |
+ |
(*putreal)(contr[BLU]); |
658 |
+ |
} |
659 |
+ |
|
660 |
+ |
|
661 |
+ |
static void |
662 |
+ |
oputm( /* print modifier */ |
663 |
+ |
RAY *r |
664 |
+ |
) |
665 |
+ |
{ |
666 |
|
if (r->ro != NULL) |
667 |
< |
fputs(objptr(r->ro->omod)->oname, stdout); |
667 |
> |
if (r->ro->omod != OVOID) |
668 |
> |
fputs(objptr(r->ro->omod)->oname, stdout); |
669 |
> |
else |
670 |
> |
fputs(VOIDID, stdout); |
671 |
|
else |
672 |
|
putchar('*'); |
673 |
|
putchar('\t'); |
674 |
|
} |
675 |
|
|
676 |
|
|
677 |
< |
static |
678 |
< |
puta(v) /* print ascii value */ |
679 |
< |
double v; |
677 |
> |
static void |
678 |
> |
oputM( /* print material */ |
679 |
> |
RAY *r |
680 |
> |
) |
681 |
|
{ |
682 |
+ |
OBJREC *mat; |
683 |
+ |
|
684 |
+ |
if (r->ro != NULL) { |
685 |
+ |
if ((mat = findmaterial(r->ro)) != NULL) |
686 |
+ |
fputs(mat->oname, stdout); |
687 |
+ |
else |
688 |
+ |
fputs(VOIDID, stdout); |
689 |
+ |
} else |
690 |
+ |
putchar('*'); |
691 |
+ |
putchar('\t'); |
692 |
+ |
} |
693 |
+ |
|
694 |
+ |
|
695 |
+ |
static void |
696 |
+ |
oputtilde( /* output tilde (spacer) */ |
697 |
+ |
RAY *r |
698 |
+ |
) |
699 |
+ |
{ |
700 |
+ |
fputs("~\t", stdout); |
701 |
+ |
} |
702 |
+ |
|
703 |
+ |
|
704 |
+ |
static void |
705 |
+ |
puta( /* print ascii value */ |
706 |
+ |
double v |
707 |
+ |
) |
708 |
+ |
{ |
709 |
|
printf("%e\t", v); |
710 |
|
} |
711 |
|
|
712 |
|
|
713 |
< |
static |
713 |
> |
static void |
714 |
|
putd(v) /* print binary double */ |
715 |
|
double v; |
716 |
|
{ |
718 |
|
} |
719 |
|
|
720 |
|
|
721 |
< |
static |
721 |
> |
static void |
722 |
|
putf(v) /* print binary float */ |
723 |
|
double v; |
724 |
|
{ |