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kern_fork.c revision 1.199.2.1
      1  1.199.2.1    bouyer /*	$NetBSD: kern_fork.c,v 1.199.2.1 2017/04/21 16:54:02 bouyer Exp $	*/
      2       1.85   thorpej 
      3       1.85   thorpej /*-
      4      1.159        ad  * Copyright (c) 1999, 2001, 2004, 2006, 2007, 2008 The NetBSD Foundation, Inc.
      5       1.85   thorpej  * All rights reserved.
      6       1.85   thorpej  *
      7       1.85   thorpej  * This code is derived from software contributed to The NetBSD Foundation
      8       1.85   thorpej  * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
      9      1.151        ad  * NASA Ames Research Center, by Charles M. Hannum, and by Andrew Doran.
     10      1.120     perry  *
     11      1.120     perry  * Redistribution and use in source and binary forms, with or without
     12       1.85   thorpej  * modification, are permitted provided that the following conditions
     13       1.85   thorpej  * are met:
     14       1.85   thorpej  * 1. Redistributions of source code must retain the above copyright
     15       1.85   thorpej  *    notice, this list of conditions and the following disclaimer.
     16       1.85   thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     17       1.85   thorpej  *    notice, this list of conditions and the following disclaimer in the
     18       1.85   thorpej  *    documentation and/or other materials provided with the distribution.
     19      1.120     perry  *
     20       1.85   thorpej  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     21       1.85   thorpej  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     22       1.85   thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     23       1.85   thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     24       1.85   thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     25       1.85   thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     26       1.85   thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     27       1.85   thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     28       1.85   thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     29       1.85   thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     30       1.85   thorpej  * POSSIBILITY OF SUCH DAMAGE.
     31      1.120     perry  */
     32       1.19       cgd 
     33       1.16       cgd /*
     34       1.17       cgd  * Copyright (c) 1982, 1986, 1989, 1991, 1993
     35       1.17       cgd  *	The Regents of the University of California.  All rights reserved.
     36       1.16       cgd  * (c) UNIX System Laboratories, Inc.
     37       1.16       cgd  * All or some portions of this file are derived from material licensed
     38       1.16       cgd  * to the University of California by American Telephone and Telegraph
     39       1.16       cgd  * Co. or Unix System Laboratories, Inc. and are reproduced herein with
     40       1.16       cgd  * the permission of UNIX System Laboratories, Inc.
     41       1.16       cgd  *
     42       1.16       cgd  * Redistribution and use in source and binary forms, with or without
     43       1.16       cgd  * modification, are permitted provided that the following conditions
     44       1.16       cgd  * are met:
     45       1.16       cgd  * 1. Redistributions of source code must retain the above copyright
     46       1.16       cgd  *    notice, this list of conditions and the following disclaimer.
     47       1.16       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     48       1.16       cgd  *    notice, this list of conditions and the following disclaimer in the
     49       1.16       cgd  *    documentation and/or other materials provided with the distribution.
     50      1.110       agc  * 3. Neither the name of the University nor the names of its contributors
     51       1.16       cgd  *    may be used to endorse or promote products derived from this software
     52       1.16       cgd  *    without specific prior written permission.
     53       1.16       cgd  *
     54       1.16       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     55       1.16       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     56       1.16       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     57       1.16       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     58       1.16       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     59       1.16       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     60       1.16       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     61       1.16       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     62       1.16       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     63       1.16       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     64       1.16       cgd  * SUCH DAMAGE.
     65       1.16       cgd  *
     66       1.40      fvdl  *	@(#)kern_fork.c	8.8 (Berkeley) 2/14/95
     67       1.16       cgd  */
     68       1.87     lukem 
     69       1.87     lukem #include <sys/cdefs.h>
     70  1.199.2.1    bouyer __KERNEL_RCSID(0, "$NetBSD: kern_fork.c,v 1.199.2.1 2017/04/21 16:54:02 bouyer Exp $");
     71       1.38       mrg 
     72       1.43   thorpej #include "opt_ktrace.h"
     73      1.194  christos #include "opt_dtrace.h"
     74       1.16       cgd 
     75       1.16       cgd #include <sys/param.h>
     76       1.16       cgd #include <sys/systm.h>
     77       1.16       cgd #include <sys/filedesc.h>
     78       1.16       cgd #include <sys/kernel.h>
     79       1.44   thorpej #include <sys/pool.h>
     80       1.29  christos #include <sys/mount.h>
     81       1.16       cgd #include <sys/proc.h>
     82       1.92  gmcgarry #include <sys/ras.h>
     83       1.16       cgd #include <sys/resourcevar.h>
     84       1.16       cgd #include <sys/vnode.h>
     85       1.16       cgd #include <sys/file.h>
     86       1.16       cgd #include <sys/acct.h>
     87       1.16       cgd #include <sys/ktrace.h>
     88       1.53      ross #include <sys/sched.h>
     89       1.56   thorpej #include <sys/signalvar.h>
     90      1.124      elad #include <sys/kauth.h>
     91      1.151        ad #include <sys/atomic.h>
     92       1.29  christos #include <sys/syscallargs.h>
     93      1.171     pooka #include <sys/uidinfo.h>
     94      1.176    darran #include <sys/sdt.h>
     95      1.186  christos #include <sys/ptrace.h>
     96       1.16       cgd 
     97       1.37       mrg #include <uvm/uvm_extern.h>
     98       1.37       mrg 
     99      1.176    darran /*
    100      1.176    darran  * DTrace SDT provider definitions
    101      1.176    darran  */
    102      1.194  christos SDT_PROVIDER_DECLARE(proc);
    103      1.194  christos SDT_PROBE_DEFINE3(proc, kernel, , create,
    104      1.194  christos     "struct proc *", /* new process */
    105      1.194  christos     "struct proc *", /* parent process */
    106      1.194  christos     "int" /* flags */);
    107      1.176    darran 
    108      1.188     rmind u_int	nprocs __cacheline_aligned = 1;		/* process 0 */
    109       1.26   mycroft 
    110      1.103  jdolecek /*
    111      1.103  jdolecek  * Number of ticks to sleep if fork() would fail due to process hitting
    112      1.103  jdolecek  * limits. Exported in miliseconds to userland via sysctl.
    113      1.103  jdolecek  */
    114      1.103  jdolecek int	forkfsleep = 0;
    115      1.103  jdolecek 
    116       1.26   mycroft int
    117      1.153       dsl sys_fork(struct lwp *l, const void *v, register_t *retval)
    118       1.16       cgd {
    119       1.16       cgd 
    120      1.188     rmind 	return fork1(l, 0, SIGCHLD, NULL, 0, NULL, NULL, retval, NULL);
    121       1.16       cgd }
    122       1.16       cgd 
    123       1.34   thorpej /*
    124       1.34   thorpej  * vfork(2) system call compatible with 4.4BSD (i.e. BSD with Mach VM).
    125       1.34   thorpej  * Address space is not shared, but parent is blocked until child exit.
    126       1.34   thorpej  */
    127       1.26   mycroft int
    128      1.153       dsl sys_vfork(struct lwp *l, const void *v, register_t *retval)
    129       1.16       cgd {
    130       1.16       cgd 
    131      1.188     rmind 	return fork1(l, FORK_PPWAIT, SIGCHLD, NULL, 0, NULL, NULL,
    132      1.188     rmind 	    retval, NULL);
    133       1.16       cgd }
    134       1.16       cgd 
    135       1.34   thorpej /*
    136       1.34   thorpej  * New vfork(2) system call for NetBSD, which implements original 3BSD vfork(2)
    137       1.34   thorpej  * semantics.  Address space is shared, and parent is blocked until child exit.
    138       1.34   thorpej  */
    139       1.26   mycroft int
    140      1.153       dsl sys___vfork14(struct lwp *l, const void *v, register_t *retval)
    141       1.34   thorpej {
    142       1.34   thorpej 
    143      1.188     rmind 	return fork1(l, FORK_PPWAIT|FORK_SHAREVM, SIGCHLD, NULL, 0,
    144      1.188     rmind 	    NULL, NULL, retval, NULL);
    145       1.85   thorpej }
    146       1.85   thorpej 
    147       1.85   thorpej /*
    148       1.85   thorpej  * Linux-compatible __clone(2) system call.
    149       1.85   thorpej  */
    150       1.85   thorpej int
    151      1.188     rmind sys___clone(struct lwp *l, const struct sys___clone_args *uap,
    152      1.188     rmind     register_t *retval)
    153       1.85   thorpej {
    154      1.153       dsl 	/* {
    155       1.85   thorpej 		syscallarg(int) flags;
    156       1.85   thorpej 		syscallarg(void *) stack;
    157      1.153       dsl 	} */
    158       1.85   thorpej 	int flags, sig;
    159       1.85   thorpej 
    160       1.85   thorpej 	/*
    161       1.85   thorpej 	 * We don't support the CLONE_PID or CLONE_PTRACE flags.
    162       1.85   thorpej 	 */
    163       1.85   thorpej 	if (SCARG(uap, flags) & (CLONE_PID|CLONE_PTRACE))
    164      1.188     rmind 		return EINVAL;
    165       1.86      fvdl 
    166      1.118  jdolecek 	/*
    167      1.118  jdolecek 	 * Linux enforces CLONE_VM with CLONE_SIGHAND, do same.
    168      1.118  jdolecek 	 */
    169      1.118  jdolecek 	if (SCARG(uap, flags) & CLONE_SIGHAND
    170      1.118  jdolecek 	    && (SCARG(uap, flags) & CLONE_VM) == 0)
    171      1.188     rmind 		return EINVAL;
    172      1.118  jdolecek 
    173       1.86      fvdl 	flags = 0;
    174       1.85   thorpej 
    175       1.85   thorpej 	if (SCARG(uap, flags) & CLONE_VM)
    176       1.85   thorpej 		flags |= FORK_SHAREVM;
    177       1.85   thorpej 	if (SCARG(uap, flags) & CLONE_FS)
    178       1.85   thorpej 		flags |= FORK_SHARECWD;
    179       1.85   thorpej 	if (SCARG(uap, flags) & CLONE_FILES)
    180       1.85   thorpej 		flags |= FORK_SHAREFILES;
    181       1.85   thorpej 	if (SCARG(uap, flags) & CLONE_SIGHAND)
    182       1.85   thorpej 		flags |= FORK_SHARESIGS;
    183       1.85   thorpej 	if (SCARG(uap, flags) & CLONE_VFORK)
    184       1.85   thorpej 		flags |= FORK_PPWAIT;
    185       1.85   thorpej 
    186       1.85   thorpej 	sig = SCARG(uap, flags) & CLONE_CSIGNAL;
    187       1.85   thorpej 	if (sig < 0 || sig >= _NSIG)
    188      1.188     rmind 		return EINVAL;
    189       1.85   thorpej 
    190       1.85   thorpej 	/*
    191       1.85   thorpej 	 * Note that the Linux API does not provide a portable way of
    192       1.85   thorpej 	 * specifying the stack area; the caller must know if the stack
    193       1.85   thorpej 	 * grows up or down.  So, we pass a stack size of 0, so that the
    194       1.85   thorpej 	 * code that makes this adjustment is a noop.
    195       1.85   thorpej 	 */
    196      1.188     rmind 	return fork1(l, flags, sig, SCARG(uap, stack), 0,
    197      1.188     rmind 	    NULL, NULL, retval, NULL);
    198       1.49   thorpej }
    199       1.49   thorpej 
    200      1.188     rmind /*
    201      1.188     rmind  * Print the 'table full' message once per 10 seconds.
    202      1.188     rmind  */
    203      1.188     rmind static struct timeval fork_tfmrate = { 10, 0 };
    204      1.101  jdolecek 
    205      1.130        ad /*
    206      1.130        ad  * General fork call.  Note that another LWP in the process may call exec()
    207      1.130        ad  * or exit() while we are forking.  It's safe to continue here, because
    208      1.130        ad  * neither operation will complete until all LWPs have exited the process.
    209      1.188     rmind  */
    210       1.34   thorpej int
    211      1.105   thorpej fork1(struct lwp *l1, int flags, int exitsig, void *stack, size_t stacksize,
    212       1.70   thorpej     void (*func)(void *), void *arg, register_t *retval,
    213       1.70   thorpej     struct proc **rnewprocp)
    214       1.16       cgd {
    215      1.113       dsl 	struct proc	*p1, *p2, *parent;
    216      1.144       dsl 	struct plimit   *p1_lim;
    217       1.84     lukem 	uid_t		uid;
    218      1.105   thorpej 	struct lwp	*l2;
    219      1.130        ad 	int		count;
    220       1.84     lukem 	vaddr_t		uaddr;
    221      1.151        ad 	int		tnprocs;
    222      1.199     kamil 	int		tracefork, tracevforkdone;
    223      1.156      elad 	int		error = 0;
    224       1.16       cgd 
    225      1.105   thorpej 	p1 = l1->l_proc;
    226      1.162        ad 	uid = kauth_cred_getuid(l1->l_cred);
    227      1.151        ad 	tnprocs = atomic_inc_uint_nv(&nprocs);
    228      1.156      elad 
    229      1.156      elad 	/*
    230      1.156      elad 	 * Although process entries are dynamically created, we still keep
    231      1.156      elad 	 * a global limit on the maximum number we will create.
    232      1.156      elad 	 */
    233      1.156      elad 	if (__predict_false(tnprocs >= maxproc))
    234      1.156      elad 		error = -1;
    235      1.156      elad 	else
    236      1.157        ad 		error = kauth_authorize_process(l1->l_cred,
    237      1.156      elad 		    KAUTH_PROCESS_FORK, p1, KAUTH_ARG(tnprocs), NULL, NULL);
    238      1.156      elad 
    239      1.156      elad 	if (error) {
    240      1.101  jdolecek 		static struct timeval lasttfm;
    241      1.151        ad 		atomic_dec_uint(&nprocs);
    242      1.101  jdolecek 		if (ratecheck(&lasttfm, &fork_tfmrate))
    243      1.101  jdolecek 			tablefull("proc", "increase kern.maxproc or NPROC");
    244      1.103  jdolecek 		if (forkfsleep)
    245      1.166        ad 			kpause("forkmx", false, forkfsleep, NULL);
    246      1.188     rmind 		return EAGAIN;
    247       1.16       cgd 	}
    248       1.21   mycroft 
    249       1.17       cgd 	/*
    250      1.150      elad 	 * Enforce limits.
    251       1.17       cgd 	 */
    252       1.17       cgd 	count = chgproccnt(uid, 1);
    253      1.189      elad 	if (__predict_false(count > p1->p_rlimit[RLIMIT_NPROC].rlim_cur)) {
    254      1.189      elad 		if (kauth_authorize_process(l1->l_cred, KAUTH_PROCESS_RLIMIT,
    255      1.189      elad 		    p1, KAUTH_ARG(KAUTH_REQ_PROCESS_RLIMIT_BYPASS),
    256      1.189      elad 		    &p1->p_rlimit[RLIMIT_NPROC], KAUTH_ARG(RLIMIT_NPROC)) != 0) {
    257      1.189      elad 			(void)chgproccnt(uid, -1);
    258      1.189      elad 			atomic_dec_uint(&nprocs);
    259      1.189      elad 			if (forkfsleep)
    260      1.189      elad 				kpause("forkulim", false, forkfsleep, NULL);
    261      1.189      elad 			return EAGAIN;
    262      1.189      elad 		}
    263       1.17       cgd 	}
    264       1.17       cgd 
    265       1.41   thorpej 	/*
    266       1.41   thorpej 	 * Allocate virtual address space for the U-area now, while it
    267       1.41   thorpej 	 * is still easy to abort the fork operation if we're out of
    268      1.174     rmind 	 * kernel virtual address space.
    269       1.41   thorpej 	 */
    270      1.174     rmind 	uaddr = uvm_uarea_alloc();
    271       1.64   thorpej 	if (__predict_false(uaddr == 0)) {
    272       1.41   thorpej 		(void)chgproccnt(uid, -1);
    273      1.151        ad 		atomic_dec_uint(&nprocs);
    274      1.188     rmind 		return ENOMEM;
    275       1.41   thorpej 	}
    276       1.41   thorpej 
    277       1.41   thorpej 	/*
    278       1.41   thorpej 	 * We are now committed to the fork.  From here on, we may
    279       1.41   thorpej 	 * block on resources, but resource allocation may NOT fail.
    280       1.41   thorpej 	 */
    281       1.41   thorpej 
    282       1.17       cgd 	/* Allocate new proc. */
    283      1.107       dsl 	p2 = proc_alloc();
    284       1.16       cgd 
    285       1.16       cgd 	/*
    286       1.16       cgd 	 * Make a proc table entry for the new process.
    287       1.16       cgd 	 * Start by zeroing the section of proc that is zero-initialized,
    288       1.16       cgd 	 * then copy the section that is copied directly from the parent.
    289       1.16       cgd 	 */
    290       1.45     perry 	memset(&p2->p_startzero, 0,
    291      1.135  christos 	    (unsigned) ((char *)&p2->p_endzero - (char *)&p2->p_startzero));
    292       1.45     perry 	memcpy(&p2->p_startcopy, &p1->p_startcopy,
    293      1.135  christos 	    (unsigned) ((char *)&p2->p_endcopy - (char *)&p2->p_startcopy));
    294       1.66   thorpej 
    295      1.193  christos 	TAILQ_INIT(&p2->p_sigpend.sp_info);
    296      1.130        ad 
    297      1.105   thorpej 	LIST_INIT(&p2->p_lwps);
    298      1.130        ad 	LIST_INIT(&p2->p_sigwaiters);
    299       1.16       cgd 
    300       1.16       cgd 	/*
    301       1.16       cgd 	 * Duplicate sub-structures as needed.
    302       1.16       cgd 	 * Increase reference counts on shared objects.
    303      1.122      cube 	 * Inherit flags we want to keep.  The flags related to SIGCHLD
    304      1.122      cube 	 * handling are important in order to keep a consistent behaviour
    305      1.179      matt 	 * for the child after the fork.  If we are a 32-bit process, the
    306      1.179      matt 	 * child will be too.
    307       1.16       cgd 	 */
    308      1.179      matt 	p2->p_flag =
    309      1.179      matt 	    p1->p_flag & (PK_SUGID | PK_NOCLDWAIT | PK_CLDSIGIGN | PK_32);
    310       1.21   mycroft 	p2->p_emul = p1->p_emul;
    311       1.88   thorpej 	p2->p_execsw = p1->p_execsw;
    312       1.83      fvdl 
    313      1.130        ad 	if (flags & FORK_SYSTEM) {
    314      1.130        ad 		/*
    315      1.130        ad 		 * Mark it as a system process.  Set P_NOCLDWAIT so that
    316      1.188     rmind 		 * children are reparented to init(8) when they exit.
    317      1.130        ad 		 * init(8) can easily wait them out for us.
    318      1.130        ad 		 */
    319      1.132     pavel 		p2->p_flag |= (PK_SYSTEM | PK_NOCLDWAIT);
    320      1.130        ad 	}
    321      1.130        ad 
    322      1.152        ad 	mutex_init(&p2->p_stmutex, MUTEX_DEFAULT, IPL_HIGH);
    323      1.155        ad 	mutex_init(&p2->p_auxlock, MUTEX_DEFAULT, IPL_NONE);
    324      1.147        ad 	rw_init(&p2->p_reflock);
    325      1.130        ad 	cv_init(&p2->p_waitcv, "wait");
    326      1.130        ad 	cv_init(&p2->p_lwpcv, "lwpwait");
    327      1.124      elad 
    328      1.162        ad 	/*
    329      1.162        ad 	 * Share a lock between the processes if they are to share signal
    330      1.162        ad 	 * state: we must synchronize access to it.
    331      1.162        ad 	 */
    332      1.162        ad 	if (flags & FORK_SHARESIGS) {
    333      1.162        ad 		p2->p_lock = p1->p_lock;
    334      1.162        ad 		mutex_obj_hold(p1->p_lock);
    335      1.162        ad 	} else
    336      1.162        ad 		p2->p_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NONE);
    337      1.162        ad 
    338      1.129      elad 	kauth_proc_fork(p1, p2);
    339       1.92  gmcgarry 
    340      1.145        ad 	p2->p_raslist = NULL;
    341       1.92  gmcgarry #if defined(__HAVE_RAS)
    342       1.92  gmcgarry 	ras_fork(p1, p2);
    343       1.92  gmcgarry #endif
    344       1.51  sommerfe 
    345       1.17       cgd 	/* bump references to the text vnode (for procfs) */
    346       1.17       cgd 	p2->p_textvp = p1->p_textvp;
    347       1.17       cgd 	if (p2->p_textvp)
    348      1.175     pooka 		vref(p2->p_textvp);
    349       1.16       cgd 
    350       1.57   thorpej 	if (flags & FORK_SHAREFILES)
    351      1.159        ad 		fd_share(p2);
    352       1.91     pooka 	else if (flags & FORK_CLEANFILES)
    353      1.159        ad 		p2->p_fd = fd_init(NULL);
    354       1.57   thorpej 	else
    355      1.159        ad 		p2->p_fd = fd_copy();
    356       1.57   thorpej 
    357      1.181     rmind 	/* XXX racy */
    358      1.181     rmind 	p2->p_mqueue_cnt = p1->p_mqueue_cnt;
    359      1.181     rmind 
    360       1.57   thorpej 	if (flags & FORK_SHARECWD)
    361      1.159        ad 		cwdshare(p2);
    362       1.57   thorpej 	else
    363      1.159        ad 		p2->p_cwdi = cwdinit();
    364       1.55   thorpej 
    365       1.16       cgd 	/*
    366      1.183     rmind 	 * Note: p_limit (rlimit stuff) is copy-on-write, so normally
    367      1.183     rmind 	 * we just need increase pl_refcnt.
    368      1.144       dsl 	 */
    369      1.144       dsl 	p1_lim = p1->p_limit;
    370      1.183     rmind 	if (!p1_lim->pl_writeable) {
    371      1.144       dsl 		lim_addref(p1_lim);
    372      1.144       dsl 		p2->p_limit = p1_lim;
    373      1.183     rmind 	} else {
    374      1.183     rmind 		p2->p_limit = lim_copy(p1_lim);
    375       1.16       cgd 	}
    376       1.16       cgd 
    377      1.190     rmind 	if (flags & FORK_PPWAIT) {
    378      1.190     rmind 		/* Mark ourselves as waiting for a child. */
    379      1.190     rmind 		l1->l_pflag |= LP_VFORKWAIT;
    380      1.190     rmind 		p2->p_lflag = PL_PPWAIT;
    381      1.190     rmind 		p2->p_vforklwp = l1;
    382      1.190     rmind 	} else {
    383      1.190     rmind 		p2->p_lflag = 0;
    384      1.190     rmind 	}
    385      1.170        ad 	p2->p_sflag = 0;
    386      1.130        ad 	p2->p_slflag = 0;
    387      1.113       dsl 	parent = (flags & FORK_NOWAIT) ? initproc : p1;
    388      1.113       dsl 	p2->p_pptr = parent;
    389      1.169        ad 	p2->p_ppid = parent->p_pid;
    390      1.107       dsl 	LIST_INIT(&p2->p_children);
    391      1.107       dsl 
    392      1.138     rmind 	p2->p_aio = NULL;
    393       1.62   thorpej 
    394       1.16       cgd #ifdef KTRACE
    395       1.16       cgd 	/*
    396       1.16       cgd 	 * Copy traceflag and tracefile if enabled.
    397       1.16       cgd 	 * If not inherited, these were zeroed above.
    398       1.16       cgd 	 */
    399       1.83      fvdl 	if (p1->p_traceflag & KTRFAC_INHERIT) {
    400      1.142        ad 		mutex_enter(&ktrace_lock);
    401       1.16       cgd 		p2->p_traceflag = p1->p_traceflag;
    402       1.16       cgd 		if ((p2->p_tracep = p1->p_tracep) != NULL)
    403       1.42  christos 			ktradref(p2);
    404      1.142        ad 		mutex_exit(&ktrace_lock);
    405       1.16       cgd 	}
    406       1.16       cgd #endif
    407       1.83      fvdl 
    408       1.56   thorpej 	/*
    409       1.56   thorpej 	 * Create signal actions for the child process.
    410       1.56   thorpej 	 */
    411      1.148        ad 	p2->p_sigacts = sigactsinit(p1, flags & FORK_SHARESIGS);
    412      1.162        ad 	mutex_enter(p1->p_lock);
    413      1.130        ad 	p2->p_sflag |=
    414      1.130        ad 	    (p1->p_sflag & (PS_STOPFORK | PS_STOPEXEC | PS_NOCLDSTOP));
    415      1.139      yamt 	sched_proc_fork(p1, p2);
    416      1.162        ad 	mutex_exit(p1->p_lock);
    417      1.130        ad 
    418      1.130        ad 	p2->p_stflag = p1->p_stflag;
    419       1.75  jdolecek 
    420       1.75  jdolecek 	/*
    421      1.120     perry 	 * p_stats.
    422      1.105   thorpej 	 * Copy parts of p_stats, and zero out the rest.
    423      1.105   thorpej 	 */
    424      1.105   thorpej 	p2->p_stats = pstatscopy(p1->p_stats);
    425      1.105   thorpej 
    426      1.105   thorpej 	/*
    427      1.178       chs 	 * Set up the new process address space.
    428      1.178       chs 	 */
    429      1.178       chs 	uvm_proc_fork(p1, p2, (flags & FORK_SHAREVM) ? true : false);
    430      1.178       chs 
    431      1.178       chs 	/*
    432      1.178       chs 	 * Finish creating the child process.
    433      1.178       chs 	 * It will return through a different path later.
    434      1.178       chs 	 */
    435      1.178       chs 	lwp_create(l1, p2, uaddr, (flags & FORK_PPWAIT) ? LWP_VFORK : 0,
    436      1.178       chs 	    stack, stacksize, (func != NULL) ? func : child_return, arg, &l2,
    437  1.199.2.1    bouyer 	    l1->l_class, &l1->l_sigmask, &l1->l_sigstk);
    438      1.185  christos 
    439      1.185  christos 	/*
    440      1.185  christos 	 * Inherit l_private from the parent.
    441      1.185  christos 	 * Note that we cannot use lwp_setprivate() here since that
    442      1.185  christos 	 * also sets the CPU TLS register, which is incorrect if the
    443      1.185  christos 	 * process has changed that without letting the kernel know.
    444      1.185  christos 	 */
    445      1.185  christos 	l2->l_private = l1->l_private;
    446      1.178       chs 
    447      1.178       chs 	/*
    448      1.178       chs 	 * If emulation has a process fork hook, call it now.
    449       1.75  jdolecek 	 */
    450       1.75  jdolecek 	if (p2->p_emul->e_proc_fork)
    451      1.178       chs 		(*p2->p_emul->e_proc_fork)(p2, l1, flags);
    452      1.106   thorpej 
    453      1.106   thorpej 	/*
    454      1.106   thorpej 	 * ...and finally, any other random fork hooks that subsystems
    455      1.106   thorpej 	 * might have registered.
    456      1.106   thorpej 	 */
    457      1.106   thorpej 	doforkhooks(p2, p1);
    458       1.16       cgd 
    459      1.194  christos 	SDT_PROBE(proc, kernel, , create, p2, p1, flags, 0, 0);
    460      1.176    darran 
    461       1.26   mycroft 	/*
    462      1.130        ad 	 * It's now safe for the scheduler and other processes to see the
    463      1.130        ad 	 * child process.
    464      1.130        ad 	 */
    465      1.161        ad 	mutex_enter(proc_lock);
    466      1.130        ad 
    467      1.130        ad 	if (p1->p_session->s_ttyvp != NULL && p1->p_lflag & PL_CONTROLT)
    468      1.130        ad 		p2->p_lflag |= PL_CONTROLT;
    469      1.130        ad 
    470      1.130        ad 	LIST_INSERT_HEAD(&parent->p_children, p2, p_sibling);
    471       1.95  christos 	p2->p_exitsig = exitsig;		/* signal for parent on exit */
    472      1.130        ad 
    473      1.187  christos 	/*
    474      1.199     kamil 	 * Trace fork(2) and vfork(2)-like events on demand in a debugger.
    475      1.187  christos 	 */
    476      1.186  christos 	tracefork = (p1->p_slflag & (PSL_TRACEFORK|PSL_TRACED)) ==
    477      1.187  christos 	    (PSL_TRACEFORK|PSL_TRACED) && (flags && FORK_PPWAIT) == 0;
    478      1.199     kamil 	tracevforkdone = (p1->p_slflag & (PSL_TRACEVFORK_DONE|PSL_TRACED)) ==
    479      1.199     kamil 	    (PSL_TRACEVFORK_DONE|PSL_TRACED) && (flags && FORK_PPWAIT);
    480      1.186  christos 	if (tracefork) {
    481      1.196  christos 		proc_changeparent(p2, p1->p_pptr);
    482      1.186  christos 		/*
    483      1.186  christos 		 * Set ptrace status.
    484      1.186  christos 		 */
    485      1.186  christos 		p1->p_fpid = p2->p_pid;
    486      1.186  christos 		p2->p_fpid = p1->p_pid;
    487      1.186  christos 	}
    488      1.199     kamil 	if (tracevforkdone) {
    489      1.199     kamil 		/*
    490      1.199     kamil 		 * Set ptrace status.
    491      1.199     kamil 		 */
    492      1.199     kamil 		p1->p_vfpid_done = p2->p_pid;
    493      1.199     kamil 	}
    494      1.186  christos 
    495      1.130        ad 	LIST_INSERT_AFTER(p1, p2, p_pglist);
    496       1.95  christos 	LIST_INSERT_HEAD(&allproc, p2, p_list);
    497      1.130        ad 
    498      1.158       dsl 	p2->p_trace_enabled = trace_is_enabled(p2);
    499       1.98    provos #ifdef __HAVE_SYSCALL_INTERN
    500       1.98    provos 	(*p2->p_emul->e_syscall_intern)(p2);
    501       1.98    provos #endif
    502       1.16       cgd 
    503  1.199.2.1    bouyer 	/* if we are being traced, give the owner a chance to interfere */
    504  1.199.2.1    bouyer 	if (p2->p_slflag & PSL_TRACED) {
    505  1.199.2.1    bouyer 		ksiginfo_t ksi;
    506  1.199.2.1    bouyer 
    507  1.199.2.1    bouyer 		KSI_INIT_EMPTY(&ksi);
    508  1.199.2.1    bouyer 		ksi.ksi_signo = SIGTRAP;
    509  1.199.2.1    bouyer 		ksi.ksi_code = TRAP_CHLD;
    510  1.199.2.1    bouyer 		ksi.ksi_lid = l2->l_lid;
    511  1.199.2.1    bouyer 		kpsignal(p2, &ksi, NULL);
    512  1.199.2.1    bouyer 	}
    513  1.199.2.1    bouyer 
    514       1.16       cgd 	/*
    515       1.34   thorpej 	 * Update stats now that we know the fork was successful.
    516       1.34   thorpej 	 */
    517       1.37       mrg 	uvmexp.forks++;
    518       1.37       mrg 	if (flags & FORK_PPWAIT)
    519       1.37       mrg 		uvmexp.forks_ppwait++;
    520       1.37       mrg 	if (flags & FORK_SHAREVM)
    521       1.37       mrg 		uvmexp.forks_sharevm++;
    522       1.35   thorpej 
    523       1.35   thorpej 	/*
    524       1.35   thorpej 	 * Pass a pointer to the new process to the caller.
    525       1.35   thorpej 	 */
    526       1.35   thorpej 	if (rnewprocp != NULL)
    527       1.35   thorpej 		*rnewprocp = p2;
    528       1.34   thorpej 
    529      1.142        ad 	if (ktrpoint(KTR_EMUL))
    530      1.114     enami 		p2->p_traceflag |= KTRFAC_TRC_EMUL;
    531       1.78  jdolecek 
    532       1.34   thorpej 	/*
    533      1.161        ad 	 * Notify any interested parties about the new process.
    534      1.161        ad 	 */
    535      1.161        ad 	if (!SLIST_EMPTY(&p1->p_klist)) {
    536      1.161        ad 		mutex_exit(proc_lock);
    537      1.161        ad 		KNOTE(&p1->p_klist, NOTE_FORK | p2->p_pid);
    538      1.161        ad 		mutex_enter(proc_lock);
    539      1.161        ad 	}
    540      1.161        ad 
    541      1.161        ad 	/*
    542      1.130        ad 	 * Make child runnable, set start time, and add to run queue except
    543      1.130        ad 	 * if the parent requested the child to start in SSTOP state.
    544      1.130        ad 	 */
    545      1.162        ad 	mutex_enter(p2->p_lock);
    546      1.130        ad 
    547      1.165        ad 	/*
    548      1.165        ad 	 * Start profiling.
    549      1.165        ad 	 */
    550      1.165        ad 	if ((p2->p_stflag & PST_PROFIL) != 0) {
    551      1.165        ad 		mutex_spin_enter(&p2->p_stmutex);
    552      1.165        ad 		startprofclock(p2);
    553      1.165        ad 		mutex_spin_exit(&p2->p_stmutex);
    554      1.165        ad 	}
    555      1.165        ad 
    556      1.130        ad 	getmicrotime(&p2->p_stats->p_start);
    557      1.130        ad 	p2->p_acflag = AFORK;
    558      1.165        ad 	lwp_lock(l2);
    559      1.177      yamt 	KASSERT(p2->p_nrlwps == 1);
    560      1.130        ad 	if (p2->p_sflag & PS_STOPFORK) {
    561      1.184     rmind 		struct schedstate_percpu *spc = &l2->l_cpu->ci_schedstate;
    562      1.130        ad 		p2->p_nrlwps = 0;
    563      1.130        ad 		p2->p_stat = SSTOP;
    564      1.130        ad 		p2->p_waited = 0;
    565      1.130        ad 		p1->p_nstopchild++;
    566      1.130        ad 		l2->l_stat = LSSTOP;
    567      1.184     rmind 		KASSERT(l2->l_wchan == NULL);
    568      1.184     rmind 		lwp_unlock_to(l2, spc->spc_lwplock);
    569      1.130        ad 	} else {
    570      1.130        ad 		p2->p_nrlwps = 1;
    571      1.130        ad 		p2->p_stat = SACTIVE;
    572      1.130        ad 		l2->l_stat = LSRUN;
    573      1.139      yamt 		sched_enqueue(l2, false);
    574      1.130        ad 		lwp_unlock(l2);
    575      1.130        ad 	}
    576      1.190     rmind 
    577      1.190     rmind 	/*
    578      1.190     rmind 	 * Return child pid to parent process,
    579      1.190     rmind 	 * marking us as parent via retval[1].
    580      1.190     rmind 	 */
    581      1.190     rmind 	if (retval != NULL) {
    582      1.190     rmind 		retval[0] = p2->p_pid;
    583      1.190     rmind 		retval[1] = 0;
    584      1.190     rmind 	}
    585      1.167        ad 	mutex_exit(p2->p_lock);
    586      1.130        ad 
    587      1.130        ad 	/*
    588       1.17       cgd 	 * Preserve synchronization semantics of vfork.  If waiting for
    589      1.190     rmind 	 * child to exec or exit, sleep until it clears LP_VFORKWAIT.
    590       1.16       cgd 	 */
    591      1.191  christos 	while (p2->p_lflag & PL_PPWAIT)
    592      1.191  christos 		cv_wait(&p1->p_waitcv, proc_lock);
    593      1.130        ad 
    594      1.188     rmind 	/*
    595      1.188     rmind 	 * Let the parent know that we are tracing its child.
    596      1.188     rmind 	 */
    597      1.199     kamil 	if (tracefork || tracevforkdone) {
    598      1.186  christos 		ksiginfo_t ksi;
    599      1.188     rmind 
    600      1.188     rmind 		KSI_INIT_EMPTY(&ksi);
    601      1.188     rmind 		ksi.ksi_signo = SIGTRAP;
    602      1.198     kamil 		ksi.ksi_code = TRAP_CHLD;
    603      1.188     rmind 		ksi.ksi_lid = l1->l_lid;
    604      1.188     rmind 		kpsignal(p1, &ksi, NULL);
    605      1.186  christos 	}
    606      1.167        ad 	mutex_exit(proc_lock);
    607       1.16       cgd 
    608      1.188     rmind 	return 0;
    609       1.16       cgd }
    610