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eval.c revision 1.96
      1 /*	$NetBSD: eval.c,v 1.96 2009/01/19 19:47:11 christos Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 1993
      5  *	The Regents of the University of California.  All rights reserved.
      6  *
      7  * This code is derived from software contributed to Berkeley by
      8  * Kenneth Almquist.
      9  *
     10  * Redistribution and use in source and binary forms, with or without
     11  * modification, are permitted provided that the following conditions
     12  * are met:
     13  * 1. Redistributions of source code must retain the above copyright
     14  *    notice, this list of conditions and the following disclaimer.
     15  * 2. Redistributions in binary form must reproduce the above copyright
     16  *    notice, this list of conditions and the following disclaimer in the
     17  *    documentation and/or other materials provided with the distribution.
     18  * 3. Neither the name of the University nor the names of its contributors
     19  *    may be used to endorse or promote products derived from this software
     20  *    without specific prior written permission.
     21  *
     22  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     23  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     24  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     25  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     26  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     27  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     28  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     29  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     30  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     31  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     32  * SUCH DAMAGE.
     33  */
     34 
     35 #include <sys/cdefs.h>
     36 #ifndef lint
     37 #if 0
     38 static char sccsid[] = "@(#)eval.c	8.9 (Berkeley) 6/8/95";
     39 #else
     40 __RCSID("$NetBSD: eval.c,v 1.96 2009/01/19 19:47:11 christos Exp $");
     41 #endif
     42 #endif /* not lint */
     43 
     44 #include <stdbool.h>
     45 #include <stdlib.h>
     46 #include <signal.h>
     47 #include <stdio.h>
     48 #include <unistd.h>
     49 #include <sys/fcntl.h>
     50 #include <sys/times.h>
     51 #include <sys/param.h>
     52 #include <sys/types.h>
     53 #include <sys/wait.h>
     54 #include <sys/sysctl.h>
     55 
     56 /*
     57  * Evaluate a command.
     58  */
     59 
     60 #include "shell.h"
     61 #include "nodes.h"
     62 #include "syntax.h"
     63 #include "expand.h"
     64 #include "parser.h"
     65 #include "jobs.h"
     66 #include "eval.h"
     67 #include "builtins.h"
     68 #include "options.h"
     69 #include "exec.h"
     70 #include "redir.h"
     71 #include "input.h"
     72 #include "output.h"
     73 #include "trap.h"
     74 #include "var.h"
     75 #include "memalloc.h"
     76 #include "error.h"
     77 #include "show.h"
     78 #include "mystring.h"
     79 #include "main.h"
     80 #ifndef SMALL
     81 #include "myhistedit.h"
     82 #endif
     83 
     84 
     85 /* flags in argument to evaltree */
     86 #define EV_EXIT 01		/* exit after evaluating tree */
     87 #define EV_TESTED 02		/* exit status is checked; ignore -e flag */
     88 #define EV_BACKCMD 04		/* command executing within back quotes */
     89 
     90 int evalskip;			/* set if we are skipping commands */
     91 STATIC int skipcount;		/* number of levels to skip */
     92 MKINIT int loopnest;		/* current loop nesting level */
     93 int funcnest;			/* depth of function calls */
     94 
     95 
     96 const char *commandname;
     97 struct strlist *cmdenviron;
     98 int exitstatus;			/* exit status of last command */
     99 int back_exitstatus;		/* exit status of backquoted command */
    100 
    101 
    102 STATIC void evalloop(union node *, int);
    103 STATIC void evalfor(union node *, int);
    104 STATIC void evalcase(union node *, int);
    105 STATIC void evalsubshell(union node *, int);
    106 STATIC void expredir(union node *);
    107 STATIC void evalpipe(union node *);
    108 STATIC void evalcommand(union node *, int, struct backcmd *);
    109 STATIC void prehash(union node *);
    110 
    111 
    112 /*
    113  * Called to reset things after an exception.
    114  */
    115 
    116 #ifdef mkinit
    117 INCLUDE "eval.h"
    118 
    119 RESET {
    120 	evalskip = 0;
    121 	loopnest = 0;
    122 	funcnest = 0;
    123 }
    124 
    125 SHELLPROC {
    126 	exitstatus = 0;
    127 }
    128 #endif
    129 
    130 static int
    131 sh_pipe(int fds[2])
    132 {
    133 	int nfd;
    134 
    135 	if (pipe(fds))
    136 		return -1;
    137 
    138 	if (fds[0] < 3) {
    139 		nfd = fcntl(fds[0], F_DUPFD, 3);
    140 		if (nfd != -1) {
    141 			close(fds[0]);
    142 			fds[0] = nfd;
    143 		}
    144 	}
    145 
    146 	if (fds[1] < 3) {
    147 		nfd = fcntl(fds[1], F_DUPFD, 3);
    148 		if (nfd != -1) {
    149 			close(fds[1]);
    150 			fds[1] = nfd;
    151 		}
    152 	}
    153 	return 0;
    154 }
    155 
    156 
    157 /*
    158  * The eval commmand.
    159  */
    160 
    161 int
    162 evalcmd(int argc, char **argv)
    163 {
    164         char *p;
    165         char *concat;
    166         char **ap;
    167 
    168         if (argc > 1) {
    169                 p = argv[1];
    170                 if (argc > 2) {
    171                         STARTSTACKSTR(concat);
    172                         ap = argv + 2;
    173                         for (;;) {
    174                                 while (*p)
    175                                         STPUTC(*p++, concat);
    176                                 if ((p = *ap++) == NULL)
    177                                         break;
    178                                 STPUTC(' ', concat);
    179                         }
    180                         STPUTC('\0', concat);
    181                         p = grabstackstr(concat);
    182                 }
    183                 evalstring(p, EV_TESTED);
    184         }
    185         return exitstatus;
    186 }
    187 
    188 
    189 /*
    190  * Execute a command or commands contained in a string.
    191  */
    192 
    193 void
    194 evalstring(char *s, int flag)
    195 {
    196 	union node *n;
    197 	struct stackmark smark;
    198 
    199 	setstackmark(&smark);
    200 	setinputstring(s, 1);
    201 
    202 	while ((n = parsecmd(0)) != NEOF) {
    203 		evaltree(n, flag);
    204 		popstackmark(&smark);
    205 	}
    206 	popfile();
    207 	popstackmark(&smark);
    208 }
    209 
    210 
    211 
    212 /*
    213  * Evaluate a parse tree.  The value is left in the global variable
    214  * exitstatus.
    215  */
    216 
    217 void
    218 evaltree(union node *n, int flags)
    219 {
    220 	bool do_etest;
    221 
    222 	do_etest = false;
    223 	if (n == NULL) {
    224 		TRACE(("evaltree(NULL) called\n"));
    225 		exitstatus = 0;
    226 		goto out;
    227 	}
    228 #ifndef SMALL
    229 	displayhist = 1;	/* show history substitutions done with fc */
    230 #endif
    231 	TRACE(("pid %d, evaltree(%p: %d, %d) called\n",
    232 	    getpid(), n, n->type, flags));
    233 	switch (n->type) {
    234 	case NSEMI:
    235 		evaltree(n->nbinary.ch1, flags & EV_TESTED);
    236 		if (evalskip)
    237 			goto out;
    238 		evaltree(n->nbinary.ch2, flags);
    239 		break;
    240 	case NAND:
    241 		evaltree(n->nbinary.ch1, EV_TESTED);
    242 		if (evalskip || exitstatus != 0)
    243 			goto out;
    244 		evaltree(n->nbinary.ch2, flags);
    245 		break;
    246 	case NOR:
    247 		evaltree(n->nbinary.ch1, EV_TESTED);
    248 		if (evalskip || exitstatus == 0)
    249 			goto out;
    250 		evaltree(n->nbinary.ch2, flags);
    251 		break;
    252 	case NREDIR:
    253 		expredir(n->nredir.redirect);
    254 		redirect(n->nredir.redirect, REDIR_PUSH);
    255 		evaltree(n->nredir.n, flags);
    256 		popredir();
    257 		break;
    258 	case NSUBSHELL:
    259 		evalsubshell(n, flags);
    260 		do_etest = !(flags & EV_TESTED);
    261 		break;
    262 	case NBACKGND:
    263 		evalsubshell(n, flags);
    264 		break;
    265 	case NIF: {
    266 		evaltree(n->nif.test, EV_TESTED);
    267 		if (evalskip)
    268 			goto out;
    269 		if (exitstatus == 0)
    270 			evaltree(n->nif.ifpart, flags);
    271 		else if (n->nif.elsepart)
    272 			evaltree(n->nif.elsepart, flags);
    273 		else
    274 			exitstatus = 0;
    275 		break;
    276 	}
    277 	case NWHILE:
    278 	case NUNTIL:
    279 		evalloop(n, flags);
    280 		break;
    281 	case NFOR:
    282 		evalfor(n, flags);
    283 		break;
    284 	case NCASE:
    285 		evalcase(n, flags);
    286 		break;
    287 	case NDEFUN:
    288 		defun(n->narg.text, n->narg.next);
    289 		exitstatus = 0;
    290 		break;
    291 	case NNOT:
    292 		evaltree(n->nnot.com, EV_TESTED);
    293 		exitstatus = !exitstatus;
    294 		break;
    295 	case NPIPE:
    296 		evalpipe(n);
    297 		do_etest = !(flags & EV_TESTED);
    298 		break;
    299 	case NCMD:
    300 		evalcommand(n, flags, (struct backcmd *)NULL);
    301 		do_etest = !(flags & EV_TESTED);
    302 		break;
    303 	default:
    304 		out1fmt("Node type = %d\n", n->type);
    305 		flushout(&output);
    306 		break;
    307 	}
    308 out:
    309 	if (pendingsigs)
    310 		dotrap();
    311 	if ((flags & EV_EXIT) != 0 || (eflag && exitstatus != 0 && do_etest))
    312 		exitshell(exitstatus);
    313 }
    314 
    315 
    316 STATIC void
    317 evalloop(union node *n, int flags)
    318 {
    319 	int status;
    320 
    321 	loopnest++;
    322 	status = 0;
    323 	for (;;) {
    324 		evaltree(n->nbinary.ch1, EV_TESTED);
    325 		if (evalskip) {
    326 skipping:	  if (evalskip == SKIPCONT && --skipcount <= 0) {
    327 				evalskip = 0;
    328 				continue;
    329 			}
    330 			if (evalskip == SKIPBREAK && --skipcount <= 0)
    331 				evalskip = 0;
    332 			break;
    333 		}
    334 		if (n->type == NWHILE) {
    335 			if (exitstatus != 0)
    336 				break;
    337 		} else {
    338 			if (exitstatus == 0)
    339 				break;
    340 		}
    341 		evaltree(n->nbinary.ch2, flags & EV_TESTED);
    342 		status = exitstatus;
    343 		if (evalskip)
    344 			goto skipping;
    345 	}
    346 	loopnest--;
    347 	exitstatus = status;
    348 }
    349 
    350 
    351 
    352 STATIC void
    353 evalfor(union node *n, int flags)
    354 {
    355 	struct arglist arglist;
    356 	union node *argp;
    357 	struct strlist *sp;
    358 	struct stackmark smark;
    359 	int status = 0;
    360 
    361 	setstackmark(&smark);
    362 	arglist.lastp = &arglist.list;
    363 	for (argp = n->nfor.args ; argp ; argp = argp->narg.next) {
    364 		expandarg(argp, &arglist, EXP_FULL | EXP_TILDE);
    365 		if (evalskip)
    366 			goto out;
    367 	}
    368 	*arglist.lastp = NULL;
    369 
    370 	loopnest++;
    371 	for (sp = arglist.list ; sp ; sp = sp->next) {
    372 		setvar(n->nfor.var, sp->text, 0);
    373 		evaltree(n->nfor.body, flags & EV_TESTED);
    374 		status = exitstatus;
    375 		if (evalskip) {
    376 			if (evalskip == SKIPCONT && --skipcount <= 0) {
    377 				evalskip = 0;
    378 				continue;
    379 			}
    380 			if (evalskip == SKIPBREAK && --skipcount <= 0)
    381 				evalskip = 0;
    382 			break;
    383 		}
    384 	}
    385 	loopnest--;
    386 	exitstatus = status;
    387 out:
    388 	popstackmark(&smark);
    389 }
    390 
    391 
    392 
    393 STATIC void
    394 evalcase(union node *n, int flags)
    395 {
    396 	union node *cp;
    397 	union node *patp;
    398 	struct arglist arglist;
    399 	struct stackmark smark;
    400 	int status = 0;
    401 
    402 	setstackmark(&smark);
    403 	arglist.lastp = &arglist.list;
    404 	expandarg(n->ncase.expr, &arglist, EXP_TILDE);
    405 	for (cp = n->ncase.cases ; cp && evalskip == 0 ; cp = cp->nclist.next) {
    406 		for (patp = cp->nclist.pattern ; patp ; patp = patp->narg.next) {
    407 			if (casematch(patp, arglist.list->text)) {
    408 				if (evalskip == 0) {
    409 					evaltree(cp->nclist.body, flags);
    410 					status = exitstatus;
    411 				}
    412 				goto out;
    413 			}
    414 		}
    415 	}
    416 out:
    417 	exitstatus = status;
    418 	popstackmark(&smark);
    419 }
    420 
    421 
    422 
    423 /*
    424  * Kick off a subshell to evaluate a tree.
    425  */
    426 
    427 STATIC void
    428 evalsubshell(union node *n, int flags)
    429 {
    430 	struct job *jp;
    431 	int backgnd = (n->type == NBACKGND);
    432 
    433 	expredir(n->nredir.redirect);
    434 	INTOFF;
    435 	jp = makejob(n, 1);
    436 	if (forkshell(jp, n, backgnd ? FORK_BG : FORK_FG) == 0) {
    437 		INTON;
    438 		if (backgnd)
    439 			flags &=~ EV_TESTED;
    440 		redirect(n->nredir.redirect, 0);
    441 		/* never returns */
    442 		evaltree(n->nredir.n, flags | EV_EXIT);
    443 	}
    444 	if (! backgnd)
    445 		exitstatus = waitforjob(jp);
    446 	INTON;
    447 }
    448 
    449 
    450 
    451 /*
    452  * Compute the names of the files in a redirection list.
    453  */
    454 
    455 STATIC void
    456 expredir(union node *n)
    457 {
    458 	union node *redir;
    459 
    460 	for (redir = n ; redir ; redir = redir->nfile.next) {
    461 		struct arglist fn;
    462 		fn.lastp = &fn.list;
    463 		switch (redir->type) {
    464 		case NFROMTO:
    465 		case NFROM:
    466 		case NTO:
    467 		case NCLOBBER:
    468 		case NAPPEND:
    469 			expandarg(redir->nfile.fname, &fn, EXP_TILDE | EXP_REDIR);
    470 			redir->nfile.expfname = fn.list->text;
    471 			break;
    472 		case NFROMFD:
    473 		case NTOFD:
    474 			if (redir->ndup.vname) {
    475 				expandarg(redir->ndup.vname, &fn, EXP_FULL | EXP_TILDE);
    476 				fixredir(redir, fn.list->text, 1);
    477 			}
    478 			break;
    479 		}
    480 	}
    481 }
    482 
    483 
    484 
    485 /*
    486  * Evaluate a pipeline.  All the processes in the pipeline are children
    487  * of the process creating the pipeline.  (This differs from some versions
    488  * of the shell, which make the last process in a pipeline the parent
    489  * of all the rest.)
    490  */
    491 
    492 STATIC void
    493 evalpipe(union node *n)
    494 {
    495 	struct job *jp;
    496 	struct nodelist *lp;
    497 	int pipelen;
    498 	int prevfd;
    499 	int pip[2];
    500 
    501 	TRACE(("evalpipe(0x%lx) called\n", (long)n));
    502 	pipelen = 0;
    503 	for (lp = n->npipe.cmdlist ; lp ; lp = lp->next)
    504 		pipelen++;
    505 	INTOFF;
    506 	jp = makejob(n, pipelen);
    507 	prevfd = -1;
    508 	for (lp = n->npipe.cmdlist ; lp ; lp = lp->next) {
    509 		prehash(lp->n);
    510 		pip[1] = -1;
    511 		if (lp->next) {
    512 			if (sh_pipe(pip) < 0) {
    513 				if (prevfd >= 0)
    514 					close(prevfd);
    515 				error("Pipe call failed");
    516 			}
    517 		}
    518 		if (forkshell(jp, lp->n, n->npipe.backgnd ? FORK_BG : FORK_FG) == 0) {
    519 			INTON;
    520 			if (prevfd > 0) {
    521 				close(0);
    522 				copyfd(prevfd, 0);
    523 				close(prevfd);
    524 			}
    525 			if (pip[1] >= 0) {
    526 				close(pip[0]);
    527 				if (pip[1] != 1) {
    528 					close(1);
    529 					copyfd(pip[1], 1);
    530 					close(pip[1]);
    531 				}
    532 			}
    533 			evaltree(lp->n, EV_EXIT);
    534 		}
    535 		if (prevfd >= 0)
    536 			close(prevfd);
    537 		prevfd = pip[0];
    538 		close(pip[1]);
    539 	}
    540 	if (n->npipe.backgnd == 0) {
    541 		exitstatus = waitforjob(jp);
    542 		TRACE(("evalpipe:  job done exit status %d\n", exitstatus));
    543 	}
    544 	INTON;
    545 }
    546 
    547 
    548 
    549 /*
    550  * Execute a command inside back quotes.  If it's a builtin command, we
    551  * want to save its output in a block obtained from malloc.  Otherwise
    552  * we fork off a subprocess and get the output of the command via a pipe.
    553  * Should be called with interrupts off.
    554  */
    555 
    556 void
    557 evalbackcmd(union node *n, struct backcmd *result)
    558 {
    559 	int pip[2];
    560 	struct job *jp;
    561 	struct stackmark smark;		/* unnecessary */
    562 
    563 	setstackmark(&smark);
    564 	result->fd = -1;
    565 	result->buf = NULL;
    566 	result->nleft = 0;
    567 	result->jp = NULL;
    568 	if (n == NULL) {
    569 		goto out;
    570 	}
    571 #ifdef notyet
    572 	/*
    573 	 * For now we disable executing builtins in the same
    574 	 * context as the shell, because we are not keeping
    575 	 * enough state to recover from changes that are
    576 	 * supposed only to affect subshells. eg. echo "`cd /`"
    577 	 */
    578 	if (n->type == NCMD) {
    579 		exitstatus = oexitstatus;
    580 		evalcommand(n, EV_BACKCMD, result);
    581 	} else
    582 #endif
    583 	{
    584 		INTOFF;
    585 		if (sh_pipe(pip) < 0)
    586 			error("Pipe call failed");
    587 		jp = makejob(n, 1);
    588 		if (forkshell(jp, n, FORK_NOJOB) == 0) {
    589 			FORCEINTON;
    590 			close(pip[0]);
    591 			if (pip[1] != 1) {
    592 				close(1);
    593 				copyfd(pip[1], 1);
    594 				close(pip[1]);
    595 			}
    596 			eflag = 0;
    597 			evaltree(n, EV_EXIT);
    598 			/* NOTREACHED */
    599 		}
    600 		close(pip[1]);
    601 		result->fd = pip[0];
    602 		result->jp = jp;
    603 		INTON;
    604 	}
    605 out:
    606 	popstackmark(&smark);
    607 	TRACE(("evalbackcmd done: fd=%d buf=0x%x nleft=%d jp=0x%x\n",
    608 		result->fd, result->buf, result->nleft, result->jp));
    609 }
    610 
    611 static const char *
    612 syspath(void)
    613 {
    614 	static char *sys_path = NULL;
    615 	static int mib[] = {CTL_USER, USER_CS_PATH};
    616 	static char def_path[] = "PATH=/usr/bin:/bin:/usr/sbin:/sbin";
    617 	size_t len;
    618 
    619 	if (sys_path == NULL) {
    620 		if (sysctl(mib, 2, 0, &len, 0, 0) != -1 &&
    621 		    (sys_path = ckmalloc(len + 5)) != NULL &&
    622 		    sysctl(mib, 2, sys_path + 5, &len, 0, 0) != -1) {
    623 			memcpy(sys_path, "PATH=", 5);
    624 		} else {
    625 			ckfree(sys_path);
    626 			/* something to keep things happy */
    627 			sys_path = def_path;
    628 		}
    629 	}
    630 	return sys_path;
    631 }
    632 
    633 static int
    634 parse_command_args(int argc, char **argv, int *use_syspath)
    635 {
    636 	int sv_argc = argc;
    637 	char *cp, c;
    638 
    639 	*use_syspath = 0;
    640 
    641 	for (;;) {
    642 		argv++;
    643 		if (--argc == 0)
    644 			break;
    645 		cp = *argv;
    646 		if (*cp++ != '-')
    647 			break;
    648 		if (*cp == '-' && cp[1] == 0) {
    649 			argv++;
    650 			argc--;
    651 			break;
    652 		}
    653 		while ((c = *cp++)) {
    654 			switch (c) {
    655 			case 'p':
    656 				*use_syspath = 1;
    657 				break;
    658 			default:
    659 				/* run 'typecmd' for other options */
    660 				return 0;
    661 			}
    662 		}
    663 	}
    664 	return sv_argc - argc;
    665 }
    666 
    667 int vforked = 0;
    668 
    669 /*
    670  * Execute a simple command.
    671  */
    672 
    673 STATIC void
    674 evalcommand(union node *cmd, int flgs, struct backcmd *backcmd)
    675 {
    676 	struct stackmark smark;
    677 	union node *argp;
    678 	struct arglist arglist;
    679 	struct arglist varlist;
    680 	volatile int flags = flgs;
    681 	char ** volatile argv;
    682 	volatile int argc;
    683 	char **envp;
    684 	int varflag;
    685 	struct strlist *sp;
    686 	volatile int mode;
    687 	int pip[2];
    688 	struct cmdentry cmdentry;
    689 	struct job * volatile jp;
    690 	struct jmploc jmploc;
    691 	struct jmploc *volatile savehandler = NULL;
    692 	const char *volatile savecmdname;
    693 	volatile struct shparam saveparam;
    694 	struct localvar *volatile savelocalvars;
    695 	volatile int e;
    696 	char * volatile lastarg;
    697 	const char * volatile path = pathval();
    698 	volatile int temp_path;
    699 
    700 	vforked = 0;
    701 	/* First expand the arguments. */
    702 	TRACE(("evalcommand(0x%lx, %d) called\n", (long)cmd, flags));
    703 	setstackmark(&smark);
    704 	back_exitstatus = 0;
    705 
    706 	arglist.lastp = &arglist.list;
    707 	varflag = 1;
    708 	/* Expand arguments, ignoring the initial 'name=value' ones */
    709 	for (argp = cmd->ncmd.args ; argp ; argp = argp->narg.next) {
    710 		char *p = argp->narg.text;
    711 		if (varflag && is_name(*p)) {
    712 			do {
    713 				p++;
    714 			} while (is_in_name(*p));
    715 			if (*p == '=')
    716 				continue;
    717 		}
    718 		expandarg(argp, &arglist, EXP_FULL | EXP_TILDE);
    719 		varflag = 0;
    720 	}
    721 	*arglist.lastp = NULL;
    722 
    723 	expredir(cmd->ncmd.redirect);
    724 
    725 	/* Now do the initial 'name=value' ones we skipped above */
    726 	varlist.lastp = &varlist.list;
    727 	for (argp = cmd->ncmd.args ; argp ; argp = argp->narg.next) {
    728 		char *p = argp->narg.text;
    729 		if (!is_name(*p))
    730 			break;
    731 		do
    732 			p++;
    733 		while (is_in_name(*p));
    734 		if (*p != '=')
    735 			break;
    736 		expandarg(argp, &varlist, EXP_VARTILDE);
    737 	}
    738 	*varlist.lastp = NULL;
    739 
    740 	argc = 0;
    741 	for (sp = arglist.list ; sp ; sp = sp->next)
    742 		argc++;
    743 	argv = stalloc(sizeof (char *) * (argc + 1));
    744 
    745 	for (sp = arglist.list ; sp ; sp = sp->next) {
    746 		TRACE(("evalcommand arg: %s\n", sp->text));
    747 		*argv++ = sp->text;
    748 	}
    749 	*argv = NULL;
    750 	lastarg = NULL;
    751 	if (iflag && funcnest == 0 && argc > 0)
    752 		lastarg = argv[-1];
    753 	argv -= argc;
    754 
    755 	/* Print the command if xflag is set. */
    756 	if (xflag) {
    757 		char sep = 0;
    758 		out2str(ps4val());
    759 		for (sp = varlist.list ; sp ; sp = sp->next) {
    760 			if (sep != 0)
    761 				outc(sep, &errout);
    762 			out2shstr(sp->text);
    763 			sep = ' ';
    764 		}
    765 		for (sp = arglist.list ; sp ; sp = sp->next) {
    766 			if (sep != 0)
    767 				outc(sep, &errout);
    768 			out2shstr(sp->text);
    769 			sep = ' ';
    770 		}
    771 		outc('\n', &errout);
    772 		flushout(&errout);
    773 	}
    774 
    775 	/* Now locate the command. */
    776 	if (argc == 0) {
    777 		cmdentry.cmdtype = CMDSPLBLTIN;
    778 		cmdentry.u.bltin = bltincmd;
    779 	} else {
    780 		static const char PATH[] = "PATH=";
    781 		int cmd_flags = DO_ERR;
    782 
    783 		/*
    784 		 * Modify the command lookup path, if a PATH= assignment
    785 		 * is present
    786 		 */
    787 		for (sp = varlist.list; sp; sp = sp->next)
    788 			if (strncmp(sp->text, PATH, sizeof(PATH) - 1) == 0)
    789 				path = sp->text + sizeof(PATH) - 1;
    790 
    791 		do {
    792 			int argsused, use_syspath;
    793 			find_command(argv[0], &cmdentry, cmd_flags, path);
    794 			if (cmdentry.cmdtype == CMDUNKNOWN) {
    795 				exitstatus = 127;
    796 				flushout(&errout);
    797 				goto out;
    798 			}
    799 
    800 			/* implement the 'command' builtin here */
    801 			if (cmdentry.cmdtype != CMDBUILTIN ||
    802 			    cmdentry.u.bltin != bltincmd)
    803 				break;
    804 			cmd_flags |= DO_NOFUNC;
    805 			argsused = parse_command_args(argc, argv, &use_syspath);
    806 			if (argsused == 0) {
    807 				/* use 'type' builting to display info */
    808 				cmdentry.u.bltin = typecmd;
    809 				break;
    810 			}
    811 			argc -= argsused;
    812 			argv += argsused;
    813 			if (use_syspath)
    814 				path = syspath() + 5;
    815 		} while (argc != 0);
    816 		if (cmdentry.cmdtype == CMDSPLBLTIN && cmd_flags & DO_NOFUNC)
    817 			/* posix mandates that 'command <splbltin>' act as if
    818 			   <splbltin> was a normal builtin */
    819 			cmdentry.cmdtype = CMDBUILTIN;
    820 	}
    821 
    822 	/* Fork off a child process if necessary. */
    823 	if (cmd->ncmd.backgnd
    824 	 || (cmdentry.cmdtype == CMDNORMAL && (flags & EV_EXIT) == 0)
    825 	 || ((flags & EV_BACKCMD) != 0
    826 	    && ((cmdentry.cmdtype != CMDBUILTIN && cmdentry.cmdtype != CMDSPLBLTIN)
    827 		 || cmdentry.u.bltin == dotcmd
    828 		 || cmdentry.u.bltin == evalcmd))) {
    829 		INTOFF;
    830 		jp = makejob(cmd, 1);
    831 		mode = cmd->ncmd.backgnd;
    832 		if (flags & EV_BACKCMD) {
    833 			mode = FORK_NOJOB;
    834 			if (sh_pipe(pip) < 0)
    835 				error("Pipe call failed");
    836 		}
    837 #ifdef DO_SHAREDVFORK
    838 		/* It is essential that if DO_SHAREDVFORK is defined that the
    839 		 * child's address space is actually shared with the parent as
    840 		 * we rely on this.
    841 		 */
    842 		if (cmdentry.cmdtype == CMDNORMAL) {
    843 			pid_t	pid;
    844 
    845 			savelocalvars = localvars;
    846 			localvars = NULL;
    847 			vforked = 1;
    848 			switch (pid = vfork()) {
    849 			case -1:
    850 				TRACE(("Vfork failed, errno=%d\n", errno));
    851 				INTON;
    852 				error("Cannot vfork");
    853 				break;
    854 			case 0:
    855 				/* Make sure that exceptions only unwind to
    856 				 * after the vfork(2)
    857 				 */
    858 				if (setjmp(jmploc.loc)) {
    859 					if (exception == EXSHELLPROC) {
    860 						/* We can't progress with the vfork,
    861 						 * so, set vforked = 2 so the parent
    862 						 * knows, and _exit();
    863 						 */
    864 						vforked = 2;
    865 						_exit(0);
    866 					} else {
    867 						_exit(exerrno);
    868 					}
    869 				}
    870 				savehandler = handler;
    871 				handler = &jmploc;
    872 				listmklocal(varlist.list, VEXPORT | VNOFUNC);
    873 				forkchild(jp, cmd, mode, vforked);
    874 				break;
    875 			default:
    876 				handler = savehandler;	/* restore from vfork(2) */
    877 				poplocalvars();
    878 				localvars = savelocalvars;
    879 				if (vforked == 2) {
    880 					vforked = 0;
    881 
    882 					(void)waitpid(pid, NULL, 0);
    883 					/* We need to progress in a normal fork fashion */
    884 					goto normal_fork;
    885 				}
    886 				vforked = 0;
    887 				forkparent(jp, cmd, mode, pid);
    888 				goto parent;
    889 			}
    890 		} else {
    891 normal_fork:
    892 #endif
    893 			if (forkshell(jp, cmd, mode) != 0)
    894 				goto parent;	/* at end of routine */
    895 			FORCEINTON;
    896 #ifdef DO_SHAREDVFORK
    897 		}
    898 #endif
    899 		if (flags & EV_BACKCMD) {
    900 			if (!vforked) {
    901 				FORCEINTON;
    902 			}
    903 			close(pip[0]);
    904 			if (pip[1] != 1) {
    905 				close(1);
    906 				copyfd(pip[1], 1);
    907 				close(pip[1]);
    908 			}
    909 		}
    910 		flags |= EV_EXIT;
    911 	}
    912 
    913 	/* This is the child process if a fork occurred. */
    914 	/* Execute the command. */
    915 	switch (cmdentry.cmdtype) {
    916 	case CMDFUNCTION:
    917 #ifdef DEBUG
    918 		trputs("Shell function:  ");  trargs(argv);
    919 #endif
    920 		redirect(cmd->ncmd.redirect, REDIR_PUSH);
    921 		saveparam = shellparam;
    922 		shellparam.malloc = 0;
    923 		shellparam.reset = 1;
    924 		shellparam.nparam = argc - 1;
    925 		shellparam.p = argv + 1;
    926 		shellparam.optnext = NULL;
    927 		INTOFF;
    928 		savelocalvars = localvars;
    929 		localvars = NULL;
    930 		INTON;
    931 		if (setjmp(jmploc.loc)) {
    932 			if (exception == EXSHELLPROC) {
    933 				freeparam((volatile struct shparam *)
    934 				    &saveparam);
    935 			} else {
    936 				freeparam(&shellparam);
    937 				shellparam = saveparam;
    938 			}
    939 			poplocalvars();
    940 			localvars = savelocalvars;
    941 			handler = savehandler;
    942 			longjmp(handler->loc, 1);
    943 		}
    944 		savehandler = handler;
    945 		handler = &jmploc;
    946 		listmklocal(varlist.list, 0);
    947 		/* stop shell blowing its stack */
    948 		if (++funcnest > 1000)
    949 			error("too many nested function calls");
    950 		evaltree(cmdentry.u.func, flags & EV_TESTED);
    951 		funcnest--;
    952 		INTOFF;
    953 		poplocalvars();
    954 		localvars = savelocalvars;
    955 		freeparam(&shellparam);
    956 		shellparam = saveparam;
    957 		handler = savehandler;
    958 		popredir();
    959 		INTON;
    960 		if (evalskip == SKIPFUNC) {
    961 			evalskip = 0;
    962 			skipcount = 0;
    963 		}
    964 		if (flags & EV_EXIT)
    965 			exitshell(exitstatus);
    966 		break;
    967 
    968 	case CMDBUILTIN:
    969 	case CMDSPLBLTIN:
    970 #ifdef DEBUG
    971 		trputs("builtin command:  ");  trargs(argv);
    972 #endif
    973 		mode = (cmdentry.u.bltin == execcmd) ? 0 : REDIR_PUSH;
    974 		if (flags == EV_BACKCMD) {
    975 			memout.nleft = 0;
    976 			memout.nextc = memout.buf;
    977 			memout.bufsize = 64;
    978 			mode |= REDIR_BACKQ;
    979 		}
    980 		e = -1;
    981 		savehandler = handler;
    982 		savecmdname = commandname;
    983 		handler = &jmploc;
    984 		if (!setjmp(jmploc.loc)) {
    985 			/* We need to ensure the command hash table isn't
    986 			 * corruped by temporary PATH assignments.
    987 			 * However we must ensure the 'local' command works!
    988 			 */
    989 			if (path != pathval() && (cmdentry.u.bltin == hashcmd ||
    990 			    cmdentry.u.bltin == typecmd)) {
    991 				savelocalvars = localvars;
    992 				localvars = 0;
    993 				mklocal(path - 5 /* PATH= */, 0);
    994 				temp_path = 1;
    995 			} else
    996 				temp_path = 0;
    997 			redirect(cmd->ncmd.redirect, mode);
    998 
    999 			/* exec is a special builtin, but needs this list... */
   1000 			cmdenviron = varlist.list;
   1001 			/* we must check 'readonly' flag for all builtins */
   1002 			listsetvar(varlist.list,
   1003 				cmdentry.cmdtype == CMDSPLBLTIN ? 0 : VNOSET);
   1004 			commandname = argv[0];
   1005 			/* initialize nextopt */
   1006 			argptr = argv + 1;
   1007 			optptr = NULL;
   1008 			/* and getopt */
   1009 			optreset = 1;
   1010 			optind = 1;
   1011 			exitstatus = cmdentry.u.bltin(argc, argv);
   1012 		} else {
   1013 			e = exception;
   1014 			exitstatus = e == EXINT ? SIGINT + 128 :
   1015 					e == EXEXEC ? exerrno : 2;
   1016 		}
   1017 		handler = savehandler;
   1018 		flushall();
   1019 		out1 = &output;
   1020 		out2 = &errout;
   1021 		freestdout();
   1022 		if (temp_path) {
   1023 			poplocalvars();
   1024 			localvars = savelocalvars;
   1025 		}
   1026 		cmdenviron = NULL;
   1027 		if (e != EXSHELLPROC) {
   1028 			commandname = savecmdname;
   1029 			if (flags & EV_EXIT)
   1030 				exitshell(exitstatus);
   1031 		}
   1032 		if (e != -1) {
   1033 			if ((e != EXERROR && e != EXEXEC)
   1034 			    || cmdentry.cmdtype == CMDSPLBLTIN)
   1035 				exraise(e);
   1036 			FORCEINTON;
   1037 		}
   1038 		if (cmdentry.u.bltin != execcmd)
   1039 			popredir();
   1040 		if (flags == EV_BACKCMD) {
   1041 			backcmd->buf = memout.buf;
   1042 			backcmd->nleft = memout.nextc - memout.buf;
   1043 			memout.buf = NULL;
   1044 		}
   1045 		break;
   1046 
   1047 	default:
   1048 #ifdef DEBUG
   1049 		trputs("normal command:  ");  trargs(argv);
   1050 #endif
   1051 		clearredir(vforked);
   1052 		redirect(cmd->ncmd.redirect, vforked ? REDIR_VFORK : 0);
   1053 		if (!vforked)
   1054 			for (sp = varlist.list ; sp ; sp = sp->next)
   1055 				setvareq(sp->text, VEXPORT|VSTACK);
   1056 		envp = environment();
   1057 		shellexec(argv, envp, path, cmdentry.u.index, vforked);
   1058 		break;
   1059 	}
   1060 	goto out;
   1061 
   1062 parent:	/* parent process gets here (if we forked) */
   1063 	if (mode == FORK_FG) {	/* argument to fork */
   1064 		exitstatus = waitforjob(jp);
   1065 	} else if (mode == FORK_NOJOB) {
   1066 		backcmd->fd = pip[0];
   1067 		close(pip[1]);
   1068 		backcmd->jp = jp;
   1069 	}
   1070 	FORCEINTON;
   1071 
   1072 out:
   1073 	if (lastarg)
   1074 		/* dsl: I think this is intended to be used to support
   1075 		 * '_' in 'vi' command mode during line editing...
   1076 		 * However I implemented that within libedit itself.
   1077 		 */
   1078 		setvar("_", lastarg, 0);
   1079 	popstackmark(&smark);
   1080 }
   1081 
   1082 
   1083 /*
   1084  * Search for a command.  This is called before we fork so that the
   1085  * location of the command will be available in the parent as well as
   1086  * the child.  The check for "goodname" is an overly conservative
   1087  * check that the name will not be subject to expansion.
   1088  */
   1089 
   1090 STATIC void
   1091 prehash(union node *n)
   1092 {
   1093 	struct cmdentry entry;
   1094 
   1095 	if (n && n->type == NCMD && n->ncmd.args)
   1096 		if (goodname(n->ncmd.args->narg.text))
   1097 			find_command(n->ncmd.args->narg.text, &entry, 0,
   1098 				     pathval());
   1099 }
   1100 
   1101 
   1102 
   1103 /*
   1104  * Builtin commands.  Builtin commands whose functions are closely
   1105  * tied to evaluation are implemented here.
   1106  */
   1107 
   1108 /*
   1109  * No command given.
   1110  */
   1111 
   1112 int
   1113 bltincmd(int argc, char **argv)
   1114 {
   1115 	/*
   1116 	 * Preserve exitstatus of a previous possible redirection
   1117 	 * as POSIX mandates
   1118 	 */
   1119 	return back_exitstatus;
   1120 }
   1121 
   1122 
   1123 /*
   1124  * Handle break and continue commands.  Break, continue, and return are
   1125  * all handled by setting the evalskip flag.  The evaluation routines
   1126  * above all check this flag, and if it is set they start skipping
   1127  * commands rather than executing them.  The variable skipcount is
   1128  * the number of loops to break/continue, or the number of function
   1129  * levels to return.  (The latter is always 1.)  It should probably
   1130  * be an error to break out of more loops than exist, but it isn't
   1131  * in the standard shell so we don't make it one here.
   1132  */
   1133 
   1134 int
   1135 breakcmd(int argc, char **argv)
   1136 {
   1137 	int n = argc > 1 ? number(argv[1]) : 1;
   1138 
   1139 	if (n > loopnest)
   1140 		n = loopnest;
   1141 	if (n > 0) {
   1142 		evalskip = (**argv == 'c')? SKIPCONT : SKIPBREAK;
   1143 		skipcount = n;
   1144 	}
   1145 	return 0;
   1146 }
   1147 
   1148 
   1149 /*
   1150  * The return command.
   1151  */
   1152 
   1153 int
   1154 returncmd(int argc, char **argv)
   1155 {
   1156 	int ret = argc > 1 ? number(argv[1]) : exitstatus;
   1157 
   1158 	if (funcnest) {
   1159 		evalskip = SKIPFUNC;
   1160 		skipcount = 1;
   1161 		return ret;
   1162 	}
   1163 	else {
   1164 		/* Do what ksh does; skip the rest of the file */
   1165 		evalskip = SKIPFILE;
   1166 		skipcount = 1;
   1167 		return ret;
   1168 	}
   1169 }
   1170 
   1171 
   1172 int
   1173 falsecmd(int argc, char **argv)
   1174 {
   1175 	return 1;
   1176 }
   1177 
   1178 
   1179 int
   1180 truecmd(int argc, char **argv)
   1181 {
   1182 	return 0;
   1183 }
   1184 
   1185 
   1186 int
   1187 execcmd(int argc, char **argv)
   1188 {
   1189 	if (argc > 1) {
   1190 		struct strlist *sp;
   1191 
   1192 		iflag = 0;		/* exit on error */
   1193 		mflag = 0;
   1194 		optschanged();
   1195 		for (sp = cmdenviron; sp; sp = sp->next)
   1196 			setvareq(sp->text, VEXPORT|VSTACK);
   1197 		shellexec(argv + 1, environment(), pathval(), 0, 0);
   1198 	}
   1199 	return 0;
   1200 }
   1201 
   1202 static int
   1203 conv_time(clock_t ticks, char *seconds, size_t l)
   1204 {
   1205 	static clock_t tpm = 0;
   1206 	clock_t mins;
   1207 	int i;
   1208 
   1209 	if (!tpm)
   1210 		tpm = sysconf(_SC_CLK_TCK) * 60;
   1211 
   1212 	mins = ticks / tpm;
   1213 	snprintf(seconds, l, "%.4f", (ticks - mins * tpm) * 60.0 / tpm );
   1214 
   1215 	if (seconds[0] == '6' && seconds[1] == '0') {
   1216 		/* 59.99995 got rounded up... */
   1217 		mins++;
   1218 		strlcpy(seconds, "0.0", l);
   1219 		return mins;
   1220 	}
   1221 
   1222 	/* suppress trailing zeros */
   1223 	i = strlen(seconds) - 1;
   1224 	for (; seconds[i] == '0' && seconds[i - 1] != '.'; i--)
   1225 		seconds[i] = 0;
   1226 	return mins;
   1227 }
   1228 
   1229 int
   1230 timescmd(int argc, char **argv)
   1231 {
   1232 	struct tms tms;
   1233 	int u, s, cu, cs;
   1234 	char us[8], ss[8], cus[8], css[8];
   1235 
   1236 	nextopt("");
   1237 
   1238 	times(&tms);
   1239 
   1240 	u = conv_time(tms.tms_utime, us, sizeof(us));
   1241 	s = conv_time(tms.tms_stime, ss, sizeof(ss));
   1242 	cu = conv_time(tms.tms_cutime, cus, sizeof(cus));
   1243 	cs = conv_time(tms.tms_cstime, css, sizeof(css));
   1244 
   1245 	outfmt(out1, "%dm%ss %dm%ss\n%dm%ss %dm%ss\n",
   1246 		u, us, s, ss, cu, cus, cs, css);
   1247 
   1248 	return 0;
   1249 }
   1250