xref: /csrg-svn/sys/kern/kern_fork.c (revision 53646)
123370Smckusick /*
248405Skarels  * Copyright (c) 1982, 1986, 1989, 1991 Regents of the University of California.
337728Smckusick  * All rights reserved.
423370Smckusick  *
544434Sbostic  * %sccs.include.redist.c%
637728Smckusick  *
7*53646Smckusick  *	@(#)kern_fork.c	7.33 (Berkeley) 05/20/92
823370Smckusick  */
912791Ssam 
1017090Sbloom #include "param.h"
1117090Sbloom #include "systm.h"
1217090Sbloom #include "map.h"
1345914Smckusick #include "filedesc.h"
1417090Sbloom #include "kernel.h"
1547547Skarels #include "malloc.h"
1617090Sbloom #include "proc.h"
1747547Skarels #include "resourcevar.h"
1837728Smckusick #include "vnode.h"
1917090Sbloom #include "file.h"
2017090Sbloom #include "acct.h"
2140812Smarc #include "ktrace.h"
2212791Ssam 
2342921Smckusick /* ARGSUSED */
2442921Smckusick fork(p, uap, retval)
2542921Smckusick 	struct proc *p;
2652493Storek 	struct args *uap;
2742921Smckusick 	int retval[];
2812791Ssam {
2912791Ssam 
3044404Skarels 	return (fork1(p, 0, retval));
3112791Ssam }
3212791Ssam 
3342921Smckusick /* ARGSUSED */
3442921Smckusick vfork(p, uap, retval)
3542921Smckusick 	struct proc *p;
3652493Storek 	struct args *uap;
3742921Smckusick 	int retval[];
3812791Ssam {
3912791Ssam 
4044404Skarels 	return (fork1(p, 1, retval));
4112791Ssam }
4212791Ssam 
4347547Skarels int	nprocs = 1;		/* process 0 */
4447547Skarels 
4542921Smckusick fork1(p1, isvfork, retval)
4642921Smckusick 	register struct proc *p1;
4742921Smckusick 	int isvfork, retval[];
4812791Ssam {
4942921Smckusick 	register struct proc *p2;
5047547Skarels 	register int count, uid;
51*53646Smckusick 	struct proc **hash;
5247547Skarels 	static int nextpid, pidchecked = 0;
5312791Ssam 
5447547Skarels 	count = 0;
5547547Skarels 	if ((uid = p1->p_ucred->cr_uid) != 0) {
5642921Smckusick 		for (p2 = allproc; p2; p2 = p2->p_nxt)
5747547Skarels 			if (p2->p_ucred->cr_uid == uid)
5847547Skarels 				count++;
5942921Smckusick 		for (p2 = zombproc; p2; p2 = p2->p_nxt)
6047547Skarels 			if (p2->p_ucred->cr_uid == uid)
6147547Skarels 				count++;
6212791Ssam 	}
6312791Ssam 	/*
64*53646Smckusick 	 * Although process entries are dynamically created, we still keep
65*53646Smckusick 	 * a global limit on the maximum number we will create.  Don't allow
66*53646Smckusick 	 * a nonprivileged user to exceed its current limit or to bring us
67*53646Smckusick 	 * within one of the global limit; don't let root exceed the limit.
68*53646Smckusick 	 * nprocs is the current number of processes, maxproc is the limit.
6912791Ssam 	 */
7047547Skarels 	if (nprocs >= maxproc || uid == 0 && nprocs >= maxproc + 1) {
7112791Ssam 		tablefull("proc");
7242921Smckusick 		return (EAGAIN);
7312791Ssam 	}
7447547Skarels 	if (count > p1->p_rlimit[RLIMIT_NPROC].rlim_cur)
7547547Skarels 		return (EAGAIN);
7612791Ssam 
77*53646Smckusick 	/* Allocate new proc. */
78*53646Smckusick 	MALLOC(p2, struct proc *, sizeof(struct proc), M_PROC, M_WAITOK);
79*53646Smckusick 
8012791Ssam 	/*
81*53646Smckusick 	 * Find an unused process ID.  We remember a range of unused IDs
82*53646Smckusick 	 * ready to use (from nextpid+1 through pidchecked-1).
8312791Ssam 	 */
8447547Skarels 	nextpid++;
8512791Ssam retry:
8647547Skarels 	/*
8747547Skarels 	 * If the process ID prototype has wrapped around,
8847547Skarels 	 * restart somewhat above 0, as the low-numbered procs
8947547Skarels 	 * tend to include daemons that don't exit.
9047547Skarels 	 */
9147547Skarels 	if (nextpid >= PID_MAX) {
9247547Skarels 		nextpid = 100;
9316528Skarels 		pidchecked = 0;
9412791Ssam 	}
9547547Skarels 	if (nextpid >= pidchecked) {
9616528Skarels 		int doingzomb = 0;
9716578Ssam 
9845005Skarels 		pidchecked = PID_MAX;
9916528Skarels 		/*
10047547Skarels 		 * Scan the active and zombie procs to check whether this pid
10116528Skarels 		 * is in use.  Remember the lowest pid that's greater
10247547Skarels 		 * than nextpid, so we can avoid checking for a while.
10316528Skarels 		 */
10447547Skarels 		p2 = allproc;
10516528Skarels again:
10647547Skarels 		for (; p2 != NULL; p2 = p2->p_nxt) {
107*53646Smckusick 			while (p2->p_pid == nextpid ||
10847547Skarels 			    p2->p_pgrp->pg_id == nextpid) {
10947547Skarels 				nextpid++;
11047547Skarels 				if (nextpid >= pidchecked)
11116528Skarels 					goto retry;
11216528Skarels 			}
11347547Skarels 			if (p2->p_pid > nextpid && pidchecked > p2->p_pid)
11447547Skarels 				pidchecked = p2->p_pid;
11547547Skarels 			if (p2->p_pgrp->pg_id > nextpid &&
11647547Skarels 			    pidchecked > p2->p_pgrp->pg_id)
11747547Skarels 				pidchecked = p2->p_pgrp->pg_id;
11816528Skarels 		}
11916528Skarels 		if (!doingzomb) {
12016528Skarels 			doingzomb = 1;
12147547Skarels 			p2 = zombproc;
12216528Skarels 			goto again;
12316528Skarels 		}
12412791Ssam 	}
12512791Ssam 
12616528Skarels 
127*53646Smckusick 	/* Link onto allproc (this should probably be delayed). */
12847547Skarels 	nprocs++;
12952493Storek 	p2->p_stat = SIDL;			/* protect against others */
130*53646Smckusick 	p2->p_pid = nextpid;
13147547Skarels 	p2->p_nxt = allproc;
13247547Skarels 	p2->p_nxt->p_prev = &p2->p_nxt;		/* allproc is never NULL */
13347547Skarels 	p2->p_prev = &allproc;
13447547Skarels 	allproc = p2;
13547547Skarels 	p2->p_link = NULL;			/* shouldn't be necessary */
13647547Skarels 	p2->p_rlink = NULL;			/* shouldn't be necessary */
13747547Skarels 
138*53646Smckusick 	/* Insert on the hash chain. */
139*53646Smckusick 	hash = &pidhash[PIDHASH(p2->p_pid)];
140*53646Smckusick 	p2->p_hash = *hash;
141*53646Smckusick 	*hash = p2;
142*53646Smckusick 
14347547Skarels 	/*
14412791Ssam 	 * Make a proc table entry for the new process.
14547547Skarels 	 * Start by zeroing the section of proc that is zero-initialized,
14647547Skarels 	 * then copy the section that is copied directly from the parent.
14712791Ssam 	 */
14847547Skarels 	bzero(&p2->p_startzero,
14947547Skarels 	    (unsigned) ((caddr_t)&p2->p_endzero - (caddr_t)&p2->p_startzero));
15047547Skarels 	bcopy(&p1->p_startcopy, &p2->p_startcopy,
15147547Skarels 	    (unsigned) ((caddr_t)&p2->p_endcopy - (caddr_t)&p2->p_startcopy));
15249731Smckusick 	p2->p_spare[0] = 0;	/* XXX - should be in zero range */
15349731Smckusick 	p2->p_spare[1] = 0;	/* XXX - should be in zero range */
15449731Smckusick 	p2->p_spare[2] = 0;	/* XXX - should be in zero range */
15549731Smckusick 	p2->p_spare[3] = 0;	/* XXX - should be in zero range */
15647547Skarels 
15747547Skarels 	/*
15847547Skarels 	 * Duplicate sub-structures as needed.
15947547Skarels 	 * Increase reference counts on shared objects.
16048405Skarels 	 * The p_stats and p_sigacts substructs are set in vm_fork.
16147547Skarels 	 */
16247547Skarels 	MALLOC(p2->p_cred, struct pcred *, sizeof(struct pcred),
16347547Skarels 	    M_SUBPROC, M_WAITOK);
16447547Skarels 	bcopy(p1->p_cred, p2->p_cred, sizeof(*p2->p_cred));
16549746Smckusick 	p2->p_cred->p_refcnt = 1;
16647547Skarels 	crhold(p1->p_ucred);
16747547Skarels 
16847547Skarels 	p2->p_fd = fdcopy(p1);
16947547Skarels 	/*
17047547Skarels 	 * If p_limit is still copy-on-write, bump refcnt,
17147547Skarels 	 * otherwise get a copy that won't be modified.
17247547Skarels 	 * (If PL_SHAREMOD is clear, the structure is shared
17347547Skarels 	 * copy-on-write.)
17447547Skarels 	 */
17547547Skarels 	if (p1->p_limit->p_lflags & PL_SHAREMOD)
17647547Skarels 		p2->p_limit = limcopy(p1->p_limit);
17747547Skarels 	else {
17847547Skarels 		p2->p_limit = p1->p_limit;
17947547Skarels 		p2->p_limit->p_refcnt++;
18047547Skarels 	}
18147547Skarels 
18248405Skarels 	p2->p_flag = SLOAD | (p1->p_flag & SHPUX);
18347547Skarels 	if (p1->p_session->s_ttyvp != NULL && p1->p_flag & SCTTY)
18447547Skarels 		p2->p_flag |= SCTTY;
18545727Smckusick 	if (isvfork)
18647547Skarels 		p2->p_flag |= SPPWAIT;
18747547Skarels 	p2->p_pgrpnxt = p1->p_pgrpnxt;
18847547Skarels 	p1->p_pgrpnxt = p2;
18947547Skarels 	p2->p_pptr = p1;
19047547Skarels 	p2->p_osptr = p1->p_cptr;
19147547Skarels 	if (p1->p_cptr)
19247547Skarels 		p1->p_cptr->p_ysptr = p2;
19347547Skarels 	p1->p_cptr = p2;
19447547Skarels #ifdef KTRACE
19512791Ssam 	/*
19647547Skarels 	 * Copy traceflag and tracefile if enabled.
19747547Skarels 	 * If not inherited, these were zeroed above.
19812791Ssam 	 */
19947547Skarels 	if (p1->p_traceflag&KTRFAC_INHERIT) {
20047547Skarels 		p2->p_traceflag = p1->p_traceflag;
20147547Skarels 		if ((p2->p_tracep = p1->p_tracep) != NULL)
20247547Skarels 			VREF(p2->p_tracep);
20347547Skarels 	}
20445727Smckusick #endif
20512791Ssam 
20647547Skarels #if defined(tahoe)
20747547Skarels 	p2->p_vmspace->p_ckey = p1->p_vmspace->p_ckey; /* XXX move this */
20847547Skarels #endif
20947547Skarels 
21012791Ssam 	/*
21112791Ssam 	 * This begins the section where we must prevent the parent
21212791Ssam 	 * from being swapped.
21312791Ssam 	 */
21447547Skarels 	p1->p_flag |= SKEEP;
21548405Skarels 	/*
21648405Skarels 	 * Set return values for child before vm_fork,
21748405Skarels 	 * so they can be copied to child stack.
21848405Skarels 	 * We return parent pid, and mark as child in retval[1].
21949099Skarels 	 * NOTE: the kernel stack may be at a different location in the child
22049099Skarels 	 * process, and thus addresses of automatic variables (including retval)
22149099Skarels 	 * may be invalid after vm_fork returns in the child process.
22248405Skarels 	 */
22348405Skarels 	retval[0] = p1->p_pid;
22448405Skarels 	retval[1] = 1;
22547547Skarels 	if (vm_fork(p1, p2, isvfork)) {
22647547Skarels 		/*
22748405Skarels 		 * Child process.  Set start time and get to work.
22847547Skarels 		 */
22941180Smarc 		(void) splclock();
23047547Skarels 		p2->p_stats->p_start = time;
23141180Smarc 		(void) spl0();
23247547Skarels 		p2->p_acflag = AFORK;
23347547Skarels 		return (0);
23441180Smarc 	}
23512791Ssam 
23612791Ssam 	/*
23712791Ssam 	 * Make child runnable and add to run queue.
23812791Ssam 	 */
23947547Skarels 	(void) splhigh();
24047547Skarels 	p2->p_stat = SRUN;
24147547Skarels 	setrq(p2);
24212791Ssam 	(void) spl0();
24312791Ssam 
24412791Ssam 	/*
24512791Ssam 	 * Now can be swapped.
24612791Ssam 	 */
24747547Skarels 	p1->p_flag &= ~SKEEP;
24812791Ssam 
24912791Ssam 	/*
25049099Skarels 	 * Preserve synchronization semantics of vfork.
25147547Skarels 	 * If waiting for child to exec or exit, set SPPWAIT
25247547Skarels 	 * on child, and sleep on our proc (in case of exit).
25312791Ssam 	 */
25447547Skarels 	if (isvfork)
25547547Skarels 		while (p2->p_flag & SPPWAIT)
25648405Skarels 			tsleep((caddr_t)p1, PWAIT, "ppwait", 0);
25712791Ssam 
25812791Ssam 	/*
25948405Skarels 	 * Return child pid to parent process,
26048405Skarels 	 * marking us as parent via retval[1].
26112791Ssam 	 */
26247547Skarels 	retval[0] = p2->p_pid;
26348405Skarels 	retval[1] = 0;
26412791Ssam 	return (0);
26512791Ssam }
266