6 |
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* Controlling process for multiple children |
7 |
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*/ |
8 |
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|
9 |
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#include <signal.h> |
10 |
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#include "rcontrib.h" |
10 |
– |
#include "platform.h" |
11 |
– |
#include "rtprocess.h" |
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#include "selcall.h" |
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|
13 |
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#define MAXIQ (int)(PIPE_BUF/(sizeof(FVECT)*2)) |
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|
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/* Modifier contribution queue (results waiting to be output) */ |
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typedef struct s_binq { |
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RNUMBER ndx; /* index for this entry */ |
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RNUMBER r1; /* assigned ray starting index */ |
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SUBPROC pr; /* PID, i/o descriptors */ |
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FILE *infp; /* file pointer to read from process */ |
30 |
< |
int nr; /* number rays to sum (0 if free) */ |
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> |
int nr; /* number of rays to sum (0 if free) */ |
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} kida[MAXPROCESS]; /* our child processes */ |
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|
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|
95 |
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|
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|
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/* Add modifier values to accumulation record in queue and clear */ |
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void |
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> |
static void |
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queue_modifiers() |
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{ |
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MODCONT *mpin, *mpout; |
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} |
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return; |
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} |
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< |
b_last = NULL; /* else insert in output queue */ |
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> |
b_last = NULL; /* insert in output queue */ |
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for (b_cur = out_bq; b_cur != NULL && b_cur->ndx < bp->ndx; |
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b_cur = b_cur->next) |
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b_last = b_cur; |
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int nready = 0; |
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BINQ *bp; |
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|
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– |
if (accumulate <= 0) /* just accumulating? */ |
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return(0); |
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|
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for (bp = out_bq; bp != NULL && bp->nadded >= accumulate && |
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bp->ndx == lastdone+nready*accumulate+1; |
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bp = bp->next) |
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int nout = 0; |
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BINQ *bp; |
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int i; |
204 |
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|
207 |
< |
if (accumulate <= 0) /* just accumulating? */ |
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< |
return(0); |
209 |
< |
/* else output ready results */ |
204 |
> |
/* output ready results */ |
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while (out_bq != NULL && out_bq->nadded >= accumulate |
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&& out_bq->ndx == lastdone+1) { |
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if ((nmax > 0) & (nout >= nmax)) |
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if (rval < 0) |
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error(SYSTEM, "open_process() call failed"); |
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if (rval == 0) { /* if in child, set up & return true */ |
280 |
< |
lu_doall(&modconttab, set_stdout, NULL); |
280 |
> |
lu_doall(&modconttab, &set_stdout, NULL); |
281 |
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lu_done(&ofiletab); |
282 |
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while (nchild--) { /* don't share other pipes */ |
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close(kida[nchild].pr.w); |
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kida[nchild].infp = fdopen(kida[nchild].pr.r, "rb"); |
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if (kida[nchild].infp == NULL) |
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error(SYSTEM, "out of memory in in_rchild()"); |
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#ifdef getc_unlocked |
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#if 0 |
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flockfile(kida[nchild].infp); /* avoid mutex overhead */ |
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#endif |
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kida[nchild++].nr = 0; /* mark as available */ |
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|
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/* Close child processes */ |
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void |
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end_children() |
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> |
end_children(int immed) |
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{ |
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int status; |
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|
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while (nchild > 0) { |
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nchild--; |
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< |
if ((status = close_process(&kida[nchild].pr)) > 0) { |
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> |
#ifdef SIGKILL |
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> |
if (immed) /* error mode -- quick exit */ |
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kill(kida[nchild].pr.pid, SIGKILL); |
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#endif |
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if ((status = close_process(&kida[nchild].pr)) > 0 && !immed) { |
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sprintf(errmsg, |
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"rendering process returned bad status (%d)", |
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status); |
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void |
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parental_loop() |
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{ |
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#define MAXIQ (int)(PIPE_BUF/(sizeof(FVECT)*2)) |
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static int ignore_warning_given = 0; |
406 |
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int qlimit = (accumulate == 1) ? 1 : MAXIQ-1; |
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const int qlimit = (accumulate == 1) ? 1 : MAXIQ-1; |
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int ninq = 0; |
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FVECT orgdir[2*MAXIQ]; |
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int i, n; |
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flockfile(stdin); /* avoid lock/unlock overhead */ |
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#endif |
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while (getvec(orgdir[2*ninq]) == 0 && getvec(orgdir[2*ninq+1]) == 0) { |
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< |
if (orgdir[2*ninq+1][0] == 0.0 && /* asking for flush? */ |
413 |
< |
(orgdir[2*ninq+1][1] == 0.0) & |
414 |
< |
(orgdir[2*ninq+1][2] == 0.0)) { |
415 |
< |
if (accumulate != 1) { |
416 |
< |
if (!ignore_warning_given++) |
417 |
< |
error(WARNING, |
421 |
< |
"dummy ray(s) ignored during accumulation\n"); |
422 |
< |
continue; |
423 |
< |
} |
424 |
< |
while (next_child_nq(1) >= 0) |
425 |
< |
; /* clear the queue */ |
426 |
< |
lastdone = lastray = 0; |
427 |
< |
if ((yres <= 0) | (xres <= 0)) |
428 |
< |
waitflush = 1; /* flush next */ |
429 |
< |
put_zero_record(++lastray); |
430 |
< |
} else if (++ninq >= qlimit || accumulate > 1 && |
412 |
> |
const int zero_ray = orgdir[2*ninq+1][0] == 0.0 && |
413 |
> |
(orgdir[2*ninq+1][1] == 0.0) & |
414 |
> |
(orgdir[2*ninq+1][2] == 0.0); |
415 |
> |
ninq += !zero_ray; |
416 |
> |
/* Zero ray cannot go in input queue */ |
417 |
> |
if (zero_ray ? ninq : ninq >= qlimit || |
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lastray/accumulate != (lastray+ninq)/accumulate) { |
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i = next_child_nq(0); /* manages output */ |
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n = ninq; |
421 |
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if (accumulate != 1) /* request flush? */ |
421 |
> |
if (accumulate > 1) /* need terminator? */ |
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memset(orgdir[2*n++], 0, sizeof(FVECT)*2); |
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n *= sizeof(FVECT)*2; /* send assignment */ |
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if (writebuf(kida[i].pr.w, (char *)orgdir, n) != n) |
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error(SYSTEM, "pipe write error"); |
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kida[i].r1 = lastray+1; |
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lastray += kida[i].nr = ninq; /* mark as busy */ |
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– |
ninq = 0; |
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if (lastray < lastdone) { /* RNUMBER wrapped? */ |
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while (next_child_nq(1) >= 0) |
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; |
431 |
< |
lastdone = lastray = 0; |
431 |
> |
lastray -= ninq; |
432 |
> |
lastdone = lastray %= accumulate; |
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} |
434 |
+ |
ninq = 0; |
435 |
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} |
436 |
+ |
if (zero_ray) { /* put bogus record? */ |
437 |
+ |
if ((yres <= 0) | (xres <= 1) && |
438 |
+ |
(lastray+1) % accumulate == 0) { |
439 |
+ |
while (next_child_nq(1) >= 0) |
440 |
+ |
; /* clear the queue */ |
441 |
+ |
lastdone = lastray = accumulate-1; |
442 |
+ |
waitflush = 1; /* flush next */ |
443 |
+ |
} |
444 |
+ |
put_zero_record(++lastray); |
445 |
+ |
} |
446 |
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if (raysleft && !--raysleft) |
447 |
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break; /* preemptive EOI */ |
448 |
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} |
449 |
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while (next_child_nq(1) >= 0) /* empty results queue */ |
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; |
451 |
< |
/* output accumulated record */ |
452 |
< |
if (accumulate <= 0 || account < accumulate) { |
453 |
< |
end_children(); /* frees up file descriptors */ |
456 |
< |
if (account < accumulate) { |
457 |
< |
error(WARNING, "partial accumulation in final record"); |
458 |
< |
accumulate -= account; |
459 |
< |
} |
460 |
< |
for (i = 0; i < nmods; i++) |
461 |
< |
mod_output(out_bq->mca[i]); |
462 |
< |
end_record(); |
463 |
< |
free_binq(out_bq); |
451 |
> |
if (account < accumulate) { |
452 |
> |
error(WARNING, "partial accumulation in final record"); |
453 |
> |
free_binq(out_bq); /* XXX just ignore it */ |
454 |
|
out_bq = NULL; |
455 |
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} |
456 |
+ |
free_binq(NULL); /* clean up */ |
457 |
+ |
lu_done(&ofiletab); |
458 |
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if (raysleft) |
459 |
|
error(USER, "unexpected EOF on input"); |
460 |
< |
free_binq(NULL); /* clean up */ |
460 |
> |
} |
461 |
> |
|
462 |
> |
|
463 |
> |
/* Wait for the next available child by monitoring "to" pipes */ |
464 |
> |
static int |
465 |
> |
next_child_ready() |
466 |
> |
{ |
467 |
> |
fd_set writeset, errset; |
468 |
> |
int i, n; |
469 |
> |
|
470 |
> |
for (i = nchild; i--; ) /* see if there's one free first */ |
471 |
> |
if (!kida[i].nr) |
472 |
> |
return(i); |
473 |
> |
/* prepare select() call */ |
474 |
> |
FD_ZERO(&writeset); FD_ZERO(&errset); |
475 |
> |
n = 0; |
476 |
> |
for (i = nchild; i--; ) { |
477 |
> |
FD_SET(kida[i].pr.w, &writeset); |
478 |
> |
FD_SET(kida[i].pr.r, &errset); |
479 |
> |
if (kida[i].pr.w >= n) |
480 |
> |
n = kida[i].pr.w + 1; |
481 |
> |
if (kida[i].pr.r >= n) |
482 |
> |
n = kida[i].pr.r + 1; |
483 |
> |
} |
484 |
> |
errno = 0; |
485 |
> |
n = select(n, NULL, &writeset, &errset, NULL); |
486 |
> |
if (n < 0) |
487 |
> |
error(SYSTEM, "select() error in next_child_ready()"); |
488 |
> |
n = -1; /* identify waiting child */ |
489 |
> |
for (i = nchild; i--; ) { |
490 |
> |
if (FD_ISSET(kida[i].pr.r, &errset)) |
491 |
> |
error(USER, "rendering process died"); |
492 |
> |
if (FD_ISSET(kida[i].pr.w, &writeset)) |
493 |
> |
kida[n = i].nr = 0; |
494 |
> |
} |
495 |
> |
return(n); /* first available child */ |
496 |
> |
} |
497 |
> |
|
498 |
> |
|
499 |
> |
/* Modified parental loop for full accumulation mode (-c 0) */ |
500 |
> |
void |
501 |
> |
feeder_loop() |
502 |
> |
{ |
503 |
> |
static int ignore_warning_given = 0; |
504 |
> |
int ninq = 0; |
505 |
> |
FVECT orgdir[2*MAXIQ]; |
506 |
> |
int i, n; |
507 |
> |
/* load rays from stdin & process */ |
508 |
> |
#ifdef getc_unlocked |
509 |
> |
flockfile(stdin); /* avoid lock/unlock overhead */ |
510 |
> |
#endif |
511 |
> |
while (getvec(orgdir[2*ninq]) == 0 && getvec(orgdir[2*ninq+1]) == 0) { |
512 |
> |
if (orgdir[2*ninq+1][0] == 0.0 && /* asking for flush? */ |
513 |
> |
(orgdir[2*ninq+1][1] == 0.0) & |
514 |
> |
(orgdir[2*ninq+1][2] == 0.0)) { |
515 |
> |
if (!ignore_warning_given++) |
516 |
> |
error(WARNING, |
517 |
> |
"dummy ray(s) ignored during accumulation\n"); |
518 |
> |
continue; |
519 |
> |
} |
520 |
> |
if (++ninq >= MAXIQ) { |
521 |
> |
i = next_child_ready(); /* get eager child */ |
522 |
> |
n = sizeof(FVECT)*2 * ninq; /* give assignment */ |
523 |
> |
if (writebuf(kida[i].pr.w, (char *)orgdir, n) != n) |
524 |
> |
error(SYSTEM, "pipe write error"); |
525 |
> |
kida[i].r1 = lastray+1; |
526 |
> |
lastray += kida[i].nr = ninq; |
527 |
> |
if (lastray < lastdone) /* RNUMBER wrapped? */ |
528 |
> |
lastdone = lastray = 0; |
529 |
> |
ninq = 0; |
530 |
> |
} |
531 |
> |
if (raysleft && !--raysleft) |
532 |
> |
break; /* preemptive EOI */ |
533 |
> |
} |
534 |
> |
if (ninq) { /* polish off input */ |
535 |
> |
i = next_child_ready(); |
536 |
> |
n = sizeof(FVECT)*2 * ninq; |
537 |
> |
if (writebuf(kida[i].pr.w, (char *)orgdir, n) != n) |
538 |
> |
error(SYSTEM, "pipe write error"); |
539 |
> |
kida[i].r1 = lastray+1; |
540 |
> |
lastray += kida[i].nr = ninq; |
541 |
> |
ninq = 0; |
542 |
> |
} |
543 |
> |
memset(orgdir, 0, sizeof(FVECT)*2); /* get results */ |
544 |
> |
for (i = nchild; i--; ) { |
545 |
> |
writebuf(kida[i].pr.w, (char *)orgdir, sizeof(FVECT)*2); |
546 |
> |
queue_results(i); |
547 |
> |
} |
548 |
> |
if (recover) /* and from before? */ |
549 |
> |
queue_modifiers(); |
550 |
> |
end_children(0); /* free up file descriptors */ |
551 |
> |
for (i = 0; i < nmods; i++) |
552 |
> |
mod_output(out_bq->mca[i]); /* output accumulated record */ |
553 |
> |
end_record(); |
554 |
> |
free_binq(out_bq); /* clean up */ |
555 |
> |
out_bq = NULL; |
556 |
> |
free_binq(NULL); |
557 |
|
lu_done(&ofiletab); |
558 |
< |
#undef MAXIQ |
558 |
> |
if (raysleft) |
559 |
> |
error(USER, "unexpected EOF on input"); |
560 |
|
} |