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sys_lwp.c revision 1.48.4.2
      1  1.48.4.2     rmind /*	$NetBSD: sys_lwp.c,v 1.48.4.2 2010/07/03 01:19:54 rmind Exp $	*/
      2       1.2        ad 
      3       1.2        ad /*-
      4      1.36        ad  * Copyright (c) 2001, 2006, 2007, 2008 The NetBSD Foundation, Inc.
      5       1.2        ad  * All rights reserved.
      6       1.2        ad  *
      7       1.2        ad  * This code is derived from software contributed to The NetBSD Foundation
      8       1.2        ad  * by Nathan J. Williams, and Andrew Doran.
      9       1.2        ad  *
     10       1.2        ad  * Redistribution and use in source and binary forms, with or without
     11       1.2        ad  * modification, are permitted provided that the following conditions
     12       1.2        ad  * are met:
     13       1.2        ad  * 1. Redistributions of source code must retain the above copyright
     14       1.2        ad  *    notice, this list of conditions and the following disclaimer.
     15       1.2        ad  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.2        ad  *    notice, this list of conditions and the following disclaimer in the
     17       1.2        ad  *    documentation and/or other materials provided with the distribution.
     18       1.2        ad  *
     19       1.2        ad  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.2        ad  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.2        ad  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.2        ad  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.2        ad  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.2        ad  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.2        ad  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.2        ad  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.2        ad  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.2        ad  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.2        ad  * POSSIBILITY OF SUCH DAMAGE.
     30       1.2        ad  */
     31       1.2        ad 
     32       1.2        ad /*
     33       1.2        ad  * Lightweight process (LWP) system calls.  See kern_lwp.c for a description
     34       1.2        ad  * of LWPs.
     35       1.2        ad  */
     36       1.2        ad 
     37       1.2        ad #include <sys/cdefs.h>
     38  1.48.4.2     rmind __KERNEL_RCSID(0, "$NetBSD: sys_lwp.c,v 1.48.4.2 2010/07/03 01:19:54 rmind Exp $");
     39       1.2        ad 
     40       1.2        ad #include <sys/param.h>
     41       1.2        ad #include <sys/systm.h>
     42       1.2        ad #include <sys/pool.h>
     43       1.2        ad #include <sys/proc.h>
     44       1.2        ad #include <sys/types.h>
     45       1.2        ad #include <sys/syscallargs.h>
     46       1.2        ad #include <sys/kauth.h>
     47       1.2        ad #include <sys/kmem.h>
     48       1.2        ad #include <sys/sleepq.h>
     49      1.30        ad #include <sys/lwpctl.h>
     50      1.45        ad #include <sys/cpu.h>
     51       1.2        ad 
     52       1.2        ad #include <uvm/uvm_extern.h>
     53       1.2        ad 
     54      1.42  wrstuden #include "opt_sa.h"
     55      1.42  wrstuden 
     56       1.2        ad #define	LWP_UNPARK_MAX		1024
     57       1.2        ad 
     58      1.47     rmind static syncobj_t lwp_park_sobj = {
     59      1.26        ad 	SOBJ_SLEEPQ_LIFO,
     60       1.2        ad 	sleepq_unsleep,
     61       1.7      yamt 	sleepq_changepri,
     62       1.7      yamt 	sleepq_lendpri,
     63       1.7      yamt 	syncobj_noowner,
     64       1.2        ad };
     65       1.2        ad 
     66      1.47     rmind static sleeptab_t	lwp_park_tab;
     67       1.2        ad 
     68       1.2        ad void
     69       1.2        ad lwp_sys_init(void)
     70       1.2        ad {
     71       1.2        ad 	sleeptab_init(&lwp_park_tab);
     72       1.2        ad }
     73       1.2        ad 
     74       1.2        ad int
     75      1.47     rmind sys__lwp_create(struct lwp *l, const struct sys__lwp_create_args *uap,
     76      1.47     rmind     register_t *retval)
     77       1.2        ad {
     78      1.32       dsl 	/* {
     79       1.2        ad 		syscallarg(const ucontext_t *) ucp;
     80       1.2        ad 		syscallarg(u_long) flags;
     81       1.2        ad 		syscallarg(lwpid_t *) new_lwp;
     82      1.32       dsl 	} */
     83       1.2        ad 	struct proc *p = l->l_proc;
     84       1.2        ad 	struct lwp *l2;
     85  1.48.4.2     rmind 	struct schedstate_percpu *spc;
     86       1.2        ad 	vaddr_t uaddr;
     87       1.2        ad 	ucontext_t *newuc;
     88       1.2        ad 	int error, lid;
     89       1.2        ad 
     90      1.42  wrstuden #ifdef KERN_SA
     91      1.42  wrstuden 	mutex_enter(p->p_lock);
     92      1.42  wrstuden 	if ((p->p_sflag & (PS_SA | PS_WEXIT)) != 0 || p->p_sa != NULL) {
     93      1.42  wrstuden 		mutex_exit(p->p_lock);
     94      1.42  wrstuden 		return EINVAL;
     95      1.42  wrstuden 	}
     96      1.42  wrstuden 	mutex_exit(p->p_lock);
     97      1.42  wrstuden #endif
     98      1.42  wrstuden 
     99  1.48.4.1     rmind 	newuc = kmem_alloc(sizeof(ucontext_t), KM_SLEEP);
    100       1.2        ad 	error = copyin(SCARG(uap, ucp), newuc, p->p_emul->e_ucsize);
    101       1.2        ad 	if (error) {
    102  1.48.4.1     rmind 		kmem_free(newuc, sizeof(ucontext_t));
    103       1.2        ad 		return error;
    104       1.2        ad 	}
    105       1.2        ad 
    106       1.2        ad 	/* XXX check against resource limits */
    107       1.2        ad 
    108      1.46     rmind 	uaddr = uvm_uarea_alloc();
    109       1.2        ad 	if (__predict_false(uaddr == 0)) {
    110  1.48.4.1     rmind 		kmem_free(newuc, sizeof(ucontext_t));
    111       1.2        ad 		return ENOMEM;
    112       1.2        ad 	}
    113       1.2        ad 
    114      1.46     rmind 	error = lwp_create(l, p, uaddr, SCARG(uap, flags) & LWP_DETACHED,
    115      1.27        ad 	    NULL, 0, p->p_emul->e_startlwp, newuc, &l2, l->l_class);
    116      1.46     rmind 	if (__predict_false(error)) {
    117      1.46     rmind 		uvm_uarea_free(uaddr);
    118  1.48.4.1     rmind 		kmem_free(newuc, sizeof(ucontext_t));
    119      1.18     rmind 		return error;
    120      1.18     rmind 	}
    121       1.2        ad 
    122      1.21     rmind 	lid = l2->l_lid;
    123      1.21     rmind 	error = copyout(&lid, SCARG(uap, new_lwp), sizeof(lid));
    124      1.21     rmind 	if (error) {
    125      1.21     rmind 		lwp_exit(l2);
    126  1.48.4.1     rmind 		kmem_free(newuc, sizeof(ucontext_t));
    127      1.21     rmind 		return error;
    128      1.21     rmind 	}
    129      1.21     rmind 
    130       1.2        ad 	/*
    131       1.2        ad 	 * Set the new LWP running, unless the caller has requested that
    132       1.2        ad 	 * it be created in suspended state.  If the process is stopping,
    133       1.2        ad 	 * then the LWP is created stopped.
    134       1.2        ad 	 */
    135      1.39        ad 	mutex_enter(p->p_lock);
    136       1.2        ad 	lwp_lock(l2);
    137  1.48.4.2     rmind 	spc = &l2->l_cpu->ci_schedstate;
    138       1.2        ad 	if ((SCARG(uap, flags) & LWP_SUSPENDED) == 0 &&
    139       1.4     pavel 	    (l->l_flag & (LW_WREBOOT | LW_WSUSPEND | LW_WEXIT)) == 0) {
    140  1.48.4.2     rmind 	    	if (p->p_stat == SSTOP || (p->p_sflag & PS_STOPPING) != 0) {
    141  1.48.4.2     rmind 			KASSERT(l2->l_wchan == NULL);
    142       1.2        ad 	    		l2->l_stat = LSSTOP;
    143  1.48.4.2     rmind 			p->p_nrlwps--;
    144  1.48.4.2     rmind 			lwp_unlock_to(l2, spc->spc_lwplock);
    145  1.48.4.2     rmind 		} else {
    146  1.48.4.2     rmind 			KASSERT(lwp_locked(l2, spc->spc_mutex));
    147       1.2        ad 			l2->l_stat = LSRUN;
    148      1.19      yamt 			sched_enqueue(l2, false);
    149  1.48.4.2     rmind 			lwp_unlock(l2);
    150       1.2        ad 		}
    151      1.31        ad 	} else {
    152       1.2        ad 		l2->l_stat = LSSUSPENDED;
    153  1.48.4.2     rmind 		p->p_nrlwps--;
    154  1.48.4.2     rmind 		lwp_unlock_to(l2, spc->spc_lwplock);
    155      1.31        ad 	}
    156      1.39        ad 	mutex_exit(p->p_lock);
    157       1.2        ad 
    158       1.2        ad 	return 0;
    159       1.2        ad }
    160       1.2        ad 
    161       1.2        ad int
    162      1.32       dsl sys__lwp_exit(struct lwp *l, const void *v, register_t *retval)
    163       1.2        ad {
    164       1.2        ad 
    165       1.2        ad 	lwp_exit(l);
    166       1.2        ad 	return 0;
    167       1.2        ad }
    168       1.2        ad 
    169       1.2        ad int
    170      1.32       dsl sys__lwp_self(struct lwp *l, const void *v, register_t *retval)
    171       1.2        ad {
    172       1.2        ad 
    173       1.2        ad 	*retval = l->l_lid;
    174       1.2        ad 	return 0;
    175       1.2        ad }
    176       1.2        ad 
    177       1.2        ad int
    178      1.32       dsl sys__lwp_getprivate(struct lwp *l, const void *v, register_t *retval)
    179       1.2        ad {
    180       1.2        ad 
    181       1.2        ad 	*retval = (uintptr_t)l->l_private;
    182       1.2        ad 	return 0;
    183       1.2        ad }
    184       1.2        ad 
    185       1.2        ad int
    186      1.47     rmind sys__lwp_setprivate(struct lwp *l, const struct sys__lwp_setprivate_args *uap,
    187      1.47     rmind     register_t *retval)
    188       1.2        ad {
    189      1.32       dsl 	/* {
    190       1.2        ad 		syscallarg(void *) ptr;
    191      1.32       dsl 	} */
    192       1.2        ad 
    193       1.2        ad 	l->l_private = SCARG(uap, ptr);
    194      1.45        ad #ifdef __HAVE_CPU_LWP_SETPRIVATE
    195      1.45        ad 	cpu_lwp_setprivate(l, SCARG(uap, ptr));
    196      1.45        ad #endif
    197      1.45        ad 
    198       1.2        ad 	return 0;
    199       1.2        ad }
    200       1.2        ad 
    201       1.2        ad int
    202      1.47     rmind sys__lwp_suspend(struct lwp *l, const struct sys__lwp_suspend_args *uap,
    203      1.47     rmind     register_t *retval)
    204       1.2        ad {
    205      1.32       dsl 	/* {
    206       1.2        ad 		syscallarg(lwpid_t) target;
    207      1.32       dsl 	} */
    208       1.2        ad 	struct proc *p = l->l_proc;
    209       1.2        ad 	struct lwp *t;
    210       1.2        ad 	int error;
    211       1.2        ad 
    212      1.39        ad 	mutex_enter(p->p_lock);
    213      1.42  wrstuden 
    214      1.42  wrstuden #ifdef KERN_SA
    215      1.42  wrstuden 	if ((p->p_sflag & PS_SA) != 0 || p->p_sa != NULL) {
    216      1.42  wrstuden 		mutex_exit(p->p_lock);
    217      1.42  wrstuden 		return EINVAL;
    218      1.42  wrstuden 	}
    219      1.42  wrstuden #endif
    220      1.42  wrstuden 
    221       1.2        ad 	if ((t = lwp_find(p, SCARG(uap, target))) == NULL) {
    222      1.39        ad 		mutex_exit(p->p_lock);
    223       1.2        ad 		return ESRCH;
    224       1.2        ad 	}
    225       1.2        ad 
    226       1.2        ad 	/*
    227       1.2        ad 	 * Check for deadlock, which is only possible when we're suspending
    228       1.2        ad 	 * ourself.  XXX There is a short race here, as p_nrlwps is only
    229       1.2        ad 	 * incremented when an LWP suspends itself on the kernel/user
    230       1.2        ad 	 * boundary.  It's still possible to kill -9 the process so we
    231       1.2        ad 	 * don't bother checking further.
    232       1.2        ad 	 */
    233       1.2        ad 	lwp_lock(t);
    234       1.2        ad 	if ((t == l && p->p_nrlwps == 1) ||
    235       1.4     pavel 	    (l->l_flag & (LW_WCORE | LW_WEXIT)) != 0) {
    236       1.2        ad 		lwp_unlock(t);
    237      1.39        ad 		mutex_exit(p->p_lock);
    238       1.2        ad 		return EDEADLK;
    239       1.2        ad 	}
    240       1.2        ad 
    241       1.2        ad 	/*
    242       1.2        ad 	 * Suspend the LWP.  XXX If it's on a different CPU, we should wait
    243       1.2        ad 	 * for it to be preempted, where it will put itself to sleep.
    244       1.2        ad 	 *
    245       1.2        ad 	 * Suspension of the current LWP will happen on return to userspace.
    246       1.2        ad 	 */
    247       1.2        ad 	error = lwp_suspend(l, t);
    248      1.23     rmind 	if (error) {
    249      1.39        ad 		mutex_exit(p->p_lock);
    250      1.23     rmind 		return error;
    251      1.23     rmind 	}
    252      1.23     rmind 
    253      1.23     rmind 	/*
    254      1.23     rmind 	 * Wait for:
    255      1.23     rmind 	 *  o process exiting
    256      1.23     rmind 	 *  o target LWP suspended
    257      1.23     rmind 	 *  o target LWP not suspended and L_WSUSPEND clear
    258      1.23     rmind 	 *  o target LWP exited
    259      1.23     rmind 	 */
    260      1.23     rmind 	for (;;) {
    261      1.39        ad 		error = cv_wait_sig(&p->p_lwpcv, p->p_lock);
    262      1.23     rmind 		if (error) {
    263      1.23     rmind 			error = ERESTART;
    264      1.23     rmind 			break;
    265      1.23     rmind 		}
    266      1.25     rmind 		if (lwp_find(p, SCARG(uap, target)) == NULL) {
    267      1.25     rmind 			error = ESRCH;
    268      1.25     rmind 			break;
    269      1.25     rmind 		}
    270      1.23     rmind 		if ((l->l_flag | t->l_flag) & (LW_WCORE | LW_WEXIT)) {
    271      1.23     rmind 			error = ERESTART;
    272      1.23     rmind 			break;
    273      1.23     rmind 		}
    274      1.23     rmind 		if (t->l_stat == LSSUSPENDED ||
    275      1.23     rmind 		    (t->l_flag & LW_WSUSPEND) == 0)
    276      1.23     rmind 			break;
    277      1.23     rmind 	}
    278      1.39        ad 	mutex_exit(p->p_lock);
    279       1.2        ad 
    280       1.2        ad 	return error;
    281       1.2        ad }
    282       1.2        ad 
    283       1.2        ad int
    284      1.47     rmind sys__lwp_continue(struct lwp *l, const struct sys__lwp_continue_args *uap,
    285      1.47     rmind     register_t *retval)
    286       1.2        ad {
    287      1.32       dsl 	/* {
    288       1.2        ad 		syscallarg(lwpid_t) target;
    289      1.32       dsl 	} */
    290       1.2        ad 	int error;
    291       1.2        ad 	struct proc *p = l->l_proc;
    292       1.2        ad 	struct lwp *t;
    293       1.2        ad 
    294       1.2        ad 	error = 0;
    295       1.2        ad 
    296      1.39        ad 	mutex_enter(p->p_lock);
    297       1.2        ad 	if ((t = lwp_find(p, SCARG(uap, target))) == NULL) {
    298      1.39        ad 		mutex_exit(p->p_lock);
    299       1.2        ad 		return ESRCH;
    300       1.2        ad 	}
    301       1.2        ad 
    302       1.2        ad 	lwp_lock(t);
    303       1.2        ad 	lwp_continue(t);
    304      1.39        ad 	mutex_exit(p->p_lock);
    305       1.2        ad 
    306       1.2        ad 	return error;
    307       1.2        ad }
    308       1.2        ad 
    309       1.2        ad int
    310      1.47     rmind sys__lwp_wakeup(struct lwp *l, const struct sys__lwp_wakeup_args *uap,
    311      1.47     rmind     register_t *retval)
    312       1.2        ad {
    313      1.32       dsl 	/* {
    314       1.2        ad 		syscallarg(lwpid_t) target;
    315      1.32       dsl 	} */
    316       1.2        ad 	struct lwp *t;
    317       1.2        ad 	struct proc *p;
    318       1.2        ad 	int error;
    319       1.2        ad 
    320       1.2        ad 	p = l->l_proc;
    321      1.39        ad 	mutex_enter(p->p_lock);
    322       1.2        ad 
    323       1.2        ad 	if ((t = lwp_find(p, SCARG(uap, target))) == NULL) {
    324      1.39        ad 		mutex_exit(p->p_lock);
    325       1.2        ad 		return ESRCH;
    326       1.2        ad 	}
    327       1.2        ad 
    328       1.2        ad 	lwp_lock(t);
    329      1.15        ad 	t->l_flag |= (LW_CANCELLED | LW_UNPARKED);
    330       1.2        ad 
    331       1.2        ad 	if (t->l_stat != LSSLEEP) {
    332      1.16        ad 		lwp_unlock(t);
    333       1.2        ad 		error = ENODEV;
    334      1.16        ad 	} else if ((t->l_flag & LW_SINTR) == 0) {
    335      1.16        ad 		lwp_unlock(t);
    336       1.2        ad 		error = EBUSY;
    337      1.16        ad 	} else {
    338      1.16        ad 		/* Wake it up.  lwp_unsleep() will release the LWP lock. */
    339      1.46     rmind 		lwp_unsleep(t, true);
    340      1.16        ad 		error = 0;
    341       1.2        ad 	}
    342       1.2        ad 
    343      1.39        ad 	mutex_exit(p->p_lock);
    344       1.2        ad 
    345       1.2        ad 	return error;
    346       1.2        ad }
    347       1.2        ad 
    348       1.2        ad int
    349      1.47     rmind sys__lwp_wait(struct lwp *l, const struct sys__lwp_wait_args *uap,
    350      1.47     rmind     register_t *retval)
    351       1.2        ad {
    352      1.32       dsl 	/* {
    353       1.2        ad 		syscallarg(lwpid_t) wait_for;
    354       1.2        ad 		syscallarg(lwpid_t *) departed;
    355      1.32       dsl 	} */
    356       1.2        ad 	struct proc *p = l->l_proc;
    357       1.2        ad 	int error;
    358       1.2        ad 	lwpid_t dep;
    359       1.2        ad 
    360      1.39        ad 	mutex_enter(p->p_lock);
    361       1.2        ad 	error = lwp_wait1(l, SCARG(uap, wait_for), &dep, 0);
    362      1.39        ad 	mutex_exit(p->p_lock);
    363       1.2        ad 
    364       1.2        ad 	if (error)
    365       1.2        ad 		return error;
    366       1.2        ad 
    367       1.2        ad 	if (SCARG(uap, departed)) {
    368       1.2        ad 		error = copyout(&dep, SCARG(uap, departed), sizeof(dep));
    369       1.2        ad 		if (error)
    370       1.2        ad 			return error;
    371       1.2        ad 	}
    372       1.2        ad 
    373       1.2        ad 	return 0;
    374       1.2        ad }
    375       1.2        ad 
    376       1.2        ad int
    377      1.47     rmind sys__lwp_kill(struct lwp *l, const struct sys__lwp_kill_args *uap,
    378      1.47     rmind     register_t *retval)
    379       1.2        ad {
    380      1.32       dsl 	/* {
    381       1.2        ad 		syscallarg(lwpid_t)	target;
    382       1.2        ad 		syscallarg(int)		signo;
    383      1.32       dsl 	} */
    384       1.2        ad 	struct proc *p = l->l_proc;
    385       1.2        ad 	struct lwp *t;
    386       1.2        ad 	ksiginfo_t ksi;
    387       1.2        ad 	int signo = SCARG(uap, signo);
    388       1.2        ad 	int error = 0;
    389       1.2        ad 
    390       1.2        ad 	if ((u_int)signo >= NSIG)
    391       1.2        ad 		return EINVAL;
    392       1.2        ad 
    393       1.2        ad 	KSI_INIT(&ksi);
    394       1.2        ad 	ksi.ksi_signo = signo;
    395      1.43        ad 	ksi.ksi_code = SI_LWP;
    396       1.2        ad 	ksi.ksi_pid = p->p_pid;
    397       1.2        ad 	ksi.ksi_uid = kauth_cred_geteuid(l->l_cred);
    398       1.2        ad 	ksi.ksi_lid = SCARG(uap, target);
    399       1.2        ad 
    400      1.38        ad 	mutex_enter(proc_lock);
    401      1.39        ad 	mutex_enter(p->p_lock);
    402       1.2        ad 	if ((t = lwp_find(p, ksi.ksi_lid)) == NULL)
    403       1.2        ad 		error = ESRCH;
    404       1.2        ad 	else if (signo != 0)
    405       1.2        ad 		kpsignal2(p, &ksi);
    406      1.39        ad 	mutex_exit(p->p_lock);
    407      1.38        ad 	mutex_exit(proc_lock);
    408       1.2        ad 
    409       1.2        ad 	return error;
    410       1.2        ad }
    411       1.2        ad 
    412       1.2        ad int
    413      1.47     rmind sys__lwp_detach(struct lwp *l, const struct sys__lwp_detach_args *uap,
    414      1.47     rmind     register_t *retval)
    415       1.2        ad {
    416      1.32       dsl 	/* {
    417       1.2        ad 		syscallarg(lwpid_t)	target;
    418      1.32       dsl 	} */
    419       1.2        ad 	struct proc *p;
    420       1.2        ad 	struct lwp *t;
    421       1.2        ad 	lwpid_t target;
    422       1.2        ad 	int error;
    423       1.2        ad 
    424       1.2        ad 	target = SCARG(uap, target);
    425       1.2        ad 	p = l->l_proc;
    426       1.2        ad 
    427      1.39        ad 	mutex_enter(p->p_lock);
    428       1.2        ad 
    429       1.2        ad 	if (l->l_lid == target)
    430       1.2        ad 		t = l;
    431       1.2        ad 	else {
    432       1.2        ad 		/*
    433       1.2        ad 		 * We can't use lwp_find() here because the target might
    434       1.2        ad 		 * be a zombie.
    435       1.2        ad 		 */
    436       1.2        ad 		LIST_FOREACH(t, &p->p_lwps, l_sibling)
    437       1.2        ad 			if (t->l_lid == target)
    438       1.2        ad 				break;
    439       1.2        ad 	}
    440       1.2        ad 
    441       1.2        ad 	/*
    442       1.2        ad 	 * If the LWP is already detached, there's nothing to do.
    443       1.2        ad 	 * If it's a zombie, we need to clean up after it.  LSZOMB
    444       1.2        ad 	 * is visible with the proc mutex held.
    445       1.2        ad 	 *
    446       1.2        ad 	 * After we have detached or released the LWP, kick any
    447       1.2        ad 	 * other LWPs that may be sitting in _lwp_wait(), waiting
    448       1.2        ad 	 * for the target LWP to exit.
    449       1.2        ad 	 */
    450       1.2        ad 	if (t != NULL && t->l_stat != LSIDL) {
    451       1.2        ad 		if ((t->l_prflag & LPR_DETACHED) == 0) {
    452       1.2        ad 			p->p_ndlwps++;
    453       1.2        ad 			t->l_prflag |= LPR_DETACHED;
    454       1.2        ad 			if (t->l_stat == LSZOMB) {
    455      1.17        ad 				/* Releases proc mutex. */
    456      1.17        ad 				lwp_free(t, false, false);
    457       1.2        ad 				return 0;
    458       1.2        ad 			}
    459       1.2        ad 			error = 0;
    460      1.17        ad 
    461      1.17        ad 			/*
    462      1.17        ad 			 * Have any LWPs sleeping in lwp_wait() recheck
    463      1.17        ad 			 * for deadlock.
    464      1.17        ad 			 */
    465      1.17        ad 			cv_broadcast(&p->p_lwpcv);
    466       1.2        ad 		} else
    467       1.2        ad 			error = EINVAL;
    468       1.2        ad 	} else
    469       1.2        ad 		error = ESRCH;
    470       1.2        ad 
    471      1.39        ad 	mutex_exit(p->p_lock);
    472       1.2        ad 
    473       1.2        ad 	return error;
    474       1.2        ad }
    475       1.2        ad 
    476       1.2        ad static inline wchan_t
    477       1.2        ad lwp_park_wchan(struct proc *p, const void *hint)
    478       1.2        ad {
    479      1.22        ad 
    480       1.2        ad 	return (wchan_t)((uintptr_t)p ^ (uintptr_t)hint);
    481       1.2        ad }
    482       1.2        ad 
    483       1.2        ad int
    484      1.24        ad lwp_unpark(lwpid_t target, const void *hint)
    485       1.2        ad {
    486      1.24        ad 	sleepq_t *sq;
    487      1.24        ad 	wchan_t wchan;
    488      1.41        ad 	kmutex_t *mp;
    489      1.24        ad 	proc_t *p;
    490      1.24        ad 	lwp_t *t;
    491      1.24        ad 
    492      1.24        ad 	/*
    493      1.24        ad 	 * Easy case: search for the LWP on the sleep queue.  If
    494      1.24        ad 	 * it's parked, remove it from the queue and set running.
    495      1.24        ad 	 */
    496      1.24        ad 	p = curproc;
    497      1.24        ad 	wchan = lwp_park_wchan(p, hint);
    498      1.41        ad 	sq = sleeptab_lookup(&lwp_park_tab, wchan, &mp);
    499      1.24        ad 
    500      1.41        ad 	TAILQ_FOREACH(t, sq, l_sleepchain)
    501      1.24        ad 		if (t->l_proc == p && t->l_lid == target)
    502      1.24        ad 			break;
    503      1.24        ad 
    504      1.24        ad 	if (__predict_true(t != NULL)) {
    505      1.46     rmind 		sleepq_remove(sq, t);
    506      1.41        ad 		mutex_spin_exit(mp);
    507      1.24        ad 		return 0;
    508      1.24        ad 	}
    509      1.24        ad 
    510      1.24        ad 	/*
    511      1.24        ad 	 * The LWP hasn't parked yet.  Take the hit and mark the
    512      1.24        ad 	 * operation as pending.
    513      1.24        ad 	 */
    514      1.41        ad 	mutex_spin_exit(mp);
    515      1.20       dsl 
    516      1.39        ad 	mutex_enter(p->p_lock);
    517      1.24        ad 	if ((t = lwp_find(p, target)) == NULL) {
    518      1.39        ad 		mutex_exit(p->p_lock);
    519      1.24        ad 		return ESRCH;
    520      1.24        ad 	}
    521      1.20       dsl 
    522      1.24        ad 	/*
    523      1.24        ad 	 * It may not have parked yet, we may have raced, or it
    524      1.24        ad 	 * is parked on a different user sync object.
    525      1.24        ad 	 */
    526      1.24        ad 	lwp_lock(t);
    527      1.24        ad 	if (t->l_syncobj == &lwp_park_sobj) {
    528      1.24        ad 		/* Releases the LWP lock. */
    529      1.46     rmind 		lwp_unsleep(t, true);
    530      1.24        ad 	} else {
    531      1.24        ad 		/*
    532      1.24        ad 		 * Set the operation pending.  The next call to _lwp_park
    533      1.24        ad 		 * will return early.
    534      1.24        ad 		 */
    535      1.24        ad 		t->l_flag |= LW_UNPARKED;
    536      1.24        ad 		lwp_unlock(t);
    537      1.24        ad 	}
    538      1.20       dsl 
    539      1.39        ad 	mutex_exit(p->p_lock);
    540      1.24        ad 	return 0;
    541      1.20       dsl }
    542      1.20       dsl 
    543      1.20       dsl int
    544      1.24        ad lwp_park(struct timespec *ts, const void *hint)
    545      1.20       dsl {
    546       1.2        ad 	sleepq_t *sq;
    547      1.41        ad 	kmutex_t *mp;
    548       1.2        ad 	wchan_t wchan;
    549       1.2        ad 	int timo, error;
    550      1.24        ad 	lwp_t *l;
    551       1.2        ad 
    552       1.2        ad 	/* Fix up the given timeout value. */
    553      1.20       dsl 	if (ts != NULL) {
    554      1.48     rmind 		error = abstimeout2timo(ts, &timo);
    555      1.48     rmind 		if (error) {
    556       1.2        ad 			return error;
    557      1.48     rmind 		}
    558      1.24        ad 		KASSERT(timo != 0);
    559      1.48     rmind 	} else {
    560       1.2        ad 		timo = 0;
    561      1.48     rmind 	}
    562       1.2        ad 
    563       1.2        ad 	/* Find and lock the sleep queue. */
    564      1.24        ad 	l = curlwp;
    565      1.20       dsl 	wchan = lwp_park_wchan(l->l_proc, hint);
    566      1.41        ad 	sq = sleeptab_lookup(&lwp_park_tab, wchan, &mp);
    567       1.2        ad 
    568       1.2        ad 	/*
    569       1.2        ad 	 * Before going the full route and blocking, check to see if an
    570       1.2        ad 	 * unpark op is pending.
    571       1.2        ad 	 */
    572      1.19      yamt 	lwp_lock(l);
    573       1.8        ad 	if ((l->l_flag & (LW_CANCELLED | LW_UNPARKED)) != 0) {
    574       1.8        ad 		l->l_flag &= ~(LW_CANCELLED | LW_UNPARKED);
    575      1.19      yamt 		lwp_unlock(l);
    576      1.41        ad 		mutex_spin_exit(mp);
    577       1.2        ad 		return EALREADY;
    578       1.2        ad 	}
    579      1.41        ad 	lwp_unlock_to(l, mp);
    580      1.24        ad 	l->l_biglocks = 0;
    581      1.27        ad 	sleepq_enqueue(sq, wchan, "parked", &lwp_park_sobj);
    582      1.19      yamt 	error = sleepq_block(timo, true);
    583      1.13      yamt 	switch (error) {
    584      1.14      yamt 	case EWOULDBLOCK:
    585      1.14      yamt 		error = ETIMEDOUT;
    586      1.14      yamt 		break;
    587      1.14      yamt 	case ERESTART:
    588      1.14      yamt 		error = EINTR;
    589      1.14      yamt 		break;
    590      1.14      yamt 	default:
    591      1.14      yamt 		/* nothing */
    592      1.14      yamt 		break;
    593      1.13      yamt 	}
    594      1.13      yamt 	return error;
    595       1.2        ad }
    596       1.2        ad 
    597      1.24        ad /*
    598      1.24        ad  * 'park' an LWP waiting on a user-level synchronisation object.  The LWP
    599      1.24        ad  * will remain parked until another LWP in the same process calls in and
    600      1.24        ad  * requests that it be unparked.
    601      1.24        ad  */
    602       1.2        ad int
    603      1.44  christos sys____lwp_park50(struct lwp *l, const struct sys____lwp_park50_args *uap,
    604      1.44  christos     register_t *retval)
    605       1.2        ad {
    606      1.32       dsl 	/* {
    607      1.24        ad 		syscallarg(const struct timespec *)	ts;
    608      1.24        ad 		syscallarg(lwpid_t)			unpark;
    609      1.24        ad 		syscallarg(const void *)		hint;
    610      1.24        ad 		syscallarg(const void *)		unparkhint;
    611      1.32       dsl 	} */
    612      1.24        ad 	struct timespec ts, *tsp;
    613      1.24        ad 	int error;
    614       1.2        ad 
    615      1.24        ad 	if (SCARG(uap, ts) == NULL)
    616      1.24        ad 		tsp = NULL;
    617      1.24        ad 	else {
    618      1.24        ad 		error = copyin(SCARG(uap, ts), &ts, sizeof(ts));
    619      1.24        ad 		if (error != 0)
    620      1.24        ad 			return error;
    621      1.24        ad 		tsp = &ts;
    622      1.24        ad 	}
    623       1.2        ad 
    624      1.24        ad 	if (SCARG(uap, unpark) != 0) {
    625      1.24        ad 		error = lwp_unpark(SCARG(uap, unpark), SCARG(uap, unparkhint));
    626      1.24        ad 		if (error != 0)
    627      1.24        ad 			return error;
    628      1.15        ad 	}
    629      1.15        ad 
    630      1.24        ad 	return lwp_park(tsp, SCARG(uap, hint));
    631      1.24        ad }
    632       1.2        ad 
    633      1.24        ad int
    634      1.47     rmind sys__lwp_unpark(struct lwp *l, const struct sys__lwp_unpark_args *uap,
    635      1.47     rmind     register_t *retval)
    636      1.24        ad {
    637      1.32       dsl 	/* {
    638      1.24        ad 		syscallarg(lwpid_t)		target;
    639      1.24        ad 		syscallarg(const void *)	hint;
    640      1.32       dsl 	} */
    641       1.2        ad 
    642      1.24        ad 	return lwp_unpark(SCARG(uap, target), SCARG(uap, hint));
    643       1.2        ad }
    644       1.2        ad 
    645       1.2        ad int
    646      1.47     rmind sys__lwp_unpark_all(struct lwp *l, const struct sys__lwp_unpark_all_args *uap,
    647      1.47     rmind     register_t *retval)
    648       1.2        ad {
    649      1.32       dsl 	/* {
    650       1.2        ad 		syscallarg(const lwpid_t *)	targets;
    651       1.2        ad 		syscallarg(size_t)		ntargets;
    652       1.2        ad 		syscallarg(const void *)	hint;
    653      1.32       dsl 	} */
    654       1.2        ad 	struct proc *p;
    655       1.2        ad 	struct lwp *t;
    656       1.2        ad 	sleepq_t *sq;
    657       1.2        ad 	wchan_t wchan;
    658       1.2        ad 	lwpid_t targets[32], *tp, *tpp, *tmax, target;
    659      1.46     rmind 	int error;
    660      1.41        ad 	kmutex_t *mp;
    661      1.15        ad 	u_int ntargets;
    662       1.2        ad 	size_t sz;
    663       1.2        ad 
    664       1.2        ad 	p = l->l_proc;
    665       1.2        ad 	ntargets = SCARG(uap, ntargets);
    666       1.2        ad 
    667       1.2        ad 	if (SCARG(uap, targets) == NULL) {
    668       1.2        ad 		/*
    669       1.2        ad 		 * Let the caller know how much we are willing to do, and
    670       1.2        ad 		 * let it unpark the LWPs in blocks.
    671       1.2        ad 		 */
    672       1.2        ad 		*retval = LWP_UNPARK_MAX;
    673       1.2        ad 		return 0;
    674       1.2        ad 	}
    675       1.2        ad 	if (ntargets > LWP_UNPARK_MAX || ntargets == 0)
    676       1.2        ad 		return EINVAL;
    677       1.2        ad 
    678       1.2        ad 	/*
    679       1.2        ad 	 * Copy in the target array.  If it's a small number of LWPs, then
    680       1.2        ad 	 * place the numbers on the stack.
    681       1.2        ad 	 */
    682       1.2        ad 	sz = sizeof(target) * ntargets;
    683       1.2        ad 	if (sz <= sizeof(targets))
    684       1.2        ad 		tp = targets;
    685       1.2        ad 	else {
    686       1.2        ad 		tp = kmem_alloc(sz, KM_SLEEP);
    687       1.2        ad 		if (tp == NULL)
    688       1.2        ad 			return ENOMEM;
    689       1.2        ad 	}
    690       1.2        ad 	error = copyin(SCARG(uap, targets), tp, sz);
    691       1.2        ad 	if (error != 0) {
    692       1.2        ad 		if (tp != targets) {
    693       1.2        ad 			kmem_free(tp, sz);
    694       1.2        ad 		}
    695       1.2        ad 		return error;
    696       1.2        ad 	}
    697       1.2        ad 
    698       1.2        ad 	wchan = lwp_park_wchan(p, SCARG(uap, hint));
    699      1.41        ad 	sq = sleeptab_lookup(&lwp_park_tab, wchan, &mp);
    700       1.2        ad 
    701       1.2        ad 	for (tmax = tp + ntargets, tpp = tp; tpp < tmax; tpp++) {
    702       1.2        ad 		target = *tpp;
    703       1.2        ad 
    704       1.2        ad 		/*
    705       1.2        ad 		 * Easy case: search for the LWP on the sleep queue.  If
    706       1.2        ad 		 * it's parked, remove it from the queue and set running.
    707       1.2        ad 		 */
    708      1.41        ad 		TAILQ_FOREACH(t, sq, l_sleepchain)
    709       1.2        ad 			if (t->l_proc == p && t->l_lid == target)
    710       1.2        ad 				break;
    711       1.2        ad 
    712       1.2        ad 		if (t != NULL) {
    713      1.46     rmind 			sleepq_remove(sq, t);
    714       1.2        ad 			continue;
    715       1.2        ad 		}
    716       1.2        ad 
    717       1.2        ad 		/*
    718       1.2        ad 		 * The LWP hasn't parked yet.  Take the hit and
    719       1.2        ad 		 * mark the operation as pending.
    720       1.2        ad 		 */
    721      1.41        ad 		mutex_spin_exit(mp);
    722      1.39        ad 		mutex_enter(p->p_lock);
    723       1.2        ad 		if ((t = lwp_find(p, target)) == NULL) {
    724      1.39        ad 			mutex_exit(p->p_lock);
    725      1.41        ad 			mutex_spin_enter(mp);
    726       1.2        ad 			continue;
    727       1.2        ad 		}
    728       1.2        ad 		lwp_lock(t);
    729       1.2        ad 
    730      1.15        ad 		/*
    731      1.15        ad 		 * It may not have parked yet, we may have raced, or
    732      1.15        ad 		 * it is parked on a different user sync object.
    733      1.15        ad 		 */
    734      1.15        ad 		if (t->l_syncobj == &lwp_park_sobj) {
    735      1.15        ad 			/* Releases the LWP lock. */
    736      1.46     rmind 			lwp_unsleep(t, true);
    737       1.2        ad 		} else {
    738       1.2        ad 			/*
    739      1.15        ad 			 * Set the operation pending.  The next call to
    740      1.15        ad 			 * _lwp_park will return early.
    741       1.2        ad 			 */
    742       1.8        ad 			t->l_flag |= LW_UNPARKED;
    743       1.2        ad 			lwp_unlock(t);
    744       1.2        ad 		}
    745      1.15        ad 
    746      1.39        ad 		mutex_exit(p->p_lock);
    747      1.41        ad 		mutex_spin_enter(mp);
    748       1.2        ad 	}
    749       1.2        ad 
    750      1.41        ad 	mutex_spin_exit(mp);
    751      1.33        ad 	if (tp != targets)
    752       1.2        ad 		kmem_free(tp, sz);
    753      1.15        ad 
    754       1.2        ad 	return 0;
    755       1.2        ad }
    756      1.28        ad 
    757      1.28        ad int
    758      1.47     rmind sys__lwp_setname(struct lwp *l, const struct sys__lwp_setname_args *uap,
    759      1.47     rmind     register_t *retval)
    760      1.28        ad {
    761      1.32       dsl 	/* {
    762      1.28        ad 		syscallarg(lwpid_t)		target;
    763      1.28        ad 		syscallarg(const char *)	name;
    764      1.32       dsl 	} */
    765      1.28        ad 	char *name, *oname;
    766      1.30        ad 	lwpid_t target;
    767      1.28        ad 	proc_t *p;
    768      1.28        ad 	lwp_t *t;
    769      1.28        ad 	int error;
    770      1.28        ad 
    771      1.30        ad 	if ((target = SCARG(uap, target)) == 0)
    772      1.30        ad 		target = l->l_lid;
    773      1.30        ad 
    774      1.28        ad 	name = kmem_alloc(MAXCOMLEN, KM_SLEEP);
    775      1.28        ad 	if (name == NULL)
    776      1.28        ad 		return ENOMEM;
    777      1.28        ad 	error = copyinstr(SCARG(uap, name), name, MAXCOMLEN, NULL);
    778      1.28        ad 	switch (error) {
    779      1.28        ad 	case ENAMETOOLONG:
    780      1.28        ad 	case 0:
    781      1.28        ad 		name[MAXCOMLEN - 1] = '\0';
    782      1.28        ad 		break;
    783      1.28        ad 	default:
    784      1.28        ad 		kmem_free(name, MAXCOMLEN);
    785      1.28        ad 		return error;
    786      1.28        ad 	}
    787      1.28        ad 
    788      1.28        ad 	p = curproc;
    789      1.39        ad 	mutex_enter(p->p_lock);
    790      1.30        ad 	if ((t = lwp_find(p, target)) == NULL) {
    791      1.39        ad 		mutex_exit(p->p_lock);
    792      1.28        ad 		kmem_free(name, MAXCOMLEN);
    793      1.28        ad 		return ESRCH;
    794      1.28        ad 	}
    795      1.28        ad 	lwp_lock(t);
    796      1.28        ad 	oname = t->l_name;
    797      1.28        ad 	t->l_name = name;
    798      1.28        ad 	lwp_unlock(t);
    799      1.39        ad 	mutex_exit(p->p_lock);
    800      1.28        ad 
    801      1.28        ad 	if (oname != NULL)
    802      1.28        ad 		kmem_free(oname, MAXCOMLEN);
    803      1.28        ad 
    804      1.28        ad 	return 0;
    805      1.28        ad }
    806      1.28        ad 
    807      1.28        ad int
    808      1.47     rmind sys__lwp_getname(struct lwp *l, const struct sys__lwp_getname_args *uap,
    809      1.47     rmind     register_t *retval)
    810      1.28        ad {
    811      1.32       dsl 	/* {
    812      1.28        ad 		syscallarg(lwpid_t)		target;
    813      1.28        ad 		syscallarg(char *)		name;
    814      1.28        ad 		syscallarg(size_t)		len;
    815      1.32       dsl 	} */
    816      1.28        ad 	char name[MAXCOMLEN];
    817      1.30        ad 	lwpid_t target;
    818      1.28        ad 	proc_t *p;
    819      1.28        ad 	lwp_t *t;
    820      1.28        ad 
    821      1.30        ad 	if ((target = SCARG(uap, target)) == 0)
    822      1.30        ad 		target = l->l_lid;
    823      1.30        ad 
    824      1.28        ad 	p = curproc;
    825      1.39        ad 	mutex_enter(p->p_lock);
    826      1.30        ad 	if ((t = lwp_find(p, target)) == NULL) {
    827      1.39        ad 		mutex_exit(p->p_lock);
    828      1.28        ad 		return ESRCH;
    829      1.28        ad 	}
    830      1.28        ad 	lwp_lock(t);
    831      1.28        ad 	if (t->l_name == NULL)
    832      1.28        ad 		name[0] = '\0';
    833      1.28        ad 	else
    834      1.28        ad 		strcpy(name, t->l_name);
    835      1.28        ad 	lwp_unlock(t);
    836      1.39        ad 	mutex_exit(p->p_lock);
    837      1.28        ad 
    838      1.28        ad 	return copyoutstr(name, SCARG(uap, name), SCARG(uap, len), NULL);
    839      1.28        ad }
    840      1.30        ad 
    841      1.30        ad int
    842      1.47     rmind sys__lwp_ctl(struct lwp *l, const struct sys__lwp_ctl_args *uap,
    843      1.47     rmind     register_t *retval)
    844      1.30        ad {
    845      1.32       dsl 	/* {
    846      1.30        ad 		syscallarg(int)			features;
    847      1.30        ad 		syscallarg(struct lwpctl **)	address;
    848      1.32       dsl 	} */
    849      1.30        ad 	int error, features;
    850      1.30        ad 	vaddr_t vaddr;
    851      1.30        ad 
    852      1.30        ad 	features = SCARG(uap, features);
    853      1.35        ad 	features &= ~(LWPCTL_FEATURE_CURCPU | LWPCTL_FEATURE_PCTR);
    854      1.35        ad 	if (features != 0)
    855      1.30        ad 		return ENODEV;
    856      1.30        ad 	if ((error = lwp_ctl_alloc(&vaddr)) != 0)
    857      1.30        ad 		return error;
    858      1.30        ad 	return copyout(&vaddr, SCARG(uap, address), sizeof(void *));
    859      1.30        ad }
    860