Home | History | Annotate | Line # | Download | only in kern
sys_pset.c revision 1.17.12.1
      1  1.17.12.1    tls /*	$NetBSD: sys_pset.c,v 1.17.12.1 2014/08/20 00:04:29 tls Exp $	*/
      2        1.1  rmind 
      3        1.1  rmind /*
      4        1.1  rmind  * Copyright (c) 2008, Mindaugas Rasiukevicius <rmind at NetBSD org>
      5        1.1  rmind  * All rights reserved.
      6        1.1  rmind  *
      7        1.1  rmind  * Redistribution and use in source and binary forms, with or without
      8        1.1  rmind  * modification, are permitted provided that the following conditions
      9        1.1  rmind  * are met:
     10        1.1  rmind  * 1. Redistributions of source code must retain the above copyright
     11        1.1  rmind  *    notice, this list of conditions and the following disclaimer.
     12        1.1  rmind  * 2. Redistributions in binary form must reproduce the above copyright
     13        1.1  rmind  *    notice, this list of conditions and the following disclaimer in the
     14        1.1  rmind  *    documentation and/or other materials provided with the distribution.
     15        1.1  rmind  *
     16        1.7  rmind  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     17        1.7  rmind  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     18        1.7  rmind  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     19        1.7  rmind  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     20        1.7  rmind  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     21        1.7  rmind  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     22        1.7  rmind  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     23        1.7  rmind  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     24        1.7  rmind  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     25        1.7  rmind  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     26        1.7  rmind  * SUCH DAMAGE.
     27        1.1  rmind  */
     28        1.1  rmind 
     29        1.1  rmind /*
     30        1.1  rmind  * Implementation of the Processor Sets.
     31        1.1  rmind  *
     32        1.1  rmind  * Locking
     33        1.1  rmind  *  The array of the processor-set structures and its members are protected
     34        1.8     ad  *  by the global cpu_lock.  Note that in scheduler, the very l_psid value
     35        1.1  rmind  *  might be used without lock held.
     36        1.1  rmind  */
     37        1.1  rmind 
     38        1.1  rmind #include <sys/cdefs.h>
     39  1.17.12.1    tls __KERNEL_RCSID(0, "$NetBSD: sys_pset.c,v 1.17.12.1 2014/08/20 00:04:29 tls Exp $");
     40        1.1  rmind 
     41        1.1  rmind #include <sys/param.h>
     42        1.1  rmind 
     43        1.1  rmind #include <sys/cpu.h>
     44        1.1  rmind #include <sys/kauth.h>
     45        1.1  rmind #include <sys/kmem.h>
     46        1.1  rmind #include <sys/lwp.h>
     47        1.1  rmind #include <sys/mutex.h>
     48        1.1  rmind #include <sys/proc.h>
     49        1.1  rmind #include <sys/pset.h>
     50        1.1  rmind #include <sys/sched.h>
     51        1.1  rmind #include <sys/syscallargs.h>
     52        1.1  rmind #include <sys/sysctl.h>
     53        1.1  rmind #include <sys/systm.h>
     54        1.1  rmind #include <sys/types.h>
     55        1.1  rmind 
     56        1.1  rmind static pset_info_t **	psets;
     57        1.1  rmind static u_int		psets_max;
     58        1.1  rmind static u_int		psets_count;
     59       1.13   elad static kauth_listener_t	psets_listener;
     60        1.1  rmind 
     61        1.1  rmind static int	psets_realloc(int);
     62        1.1  rmind static int	psid_validate(psetid_t, bool);
     63        1.1  rmind static int	kern_pset_create(psetid_t *);
     64        1.1  rmind static int	kern_pset_destroy(psetid_t);
     65        1.1  rmind 
     66       1.13   elad static int
     67       1.13   elad psets_listener_cb(kauth_cred_t cred, kauth_action_t action, void *cookie,
     68       1.13   elad     void *arg0, void *arg1, void *arg2, void *arg3)
     69       1.13   elad {
     70       1.13   elad 	psetid_t id;
     71       1.13   elad 	enum kauth_system_req req;
     72       1.13   elad 	int result;
     73       1.13   elad 
     74       1.13   elad 	result = KAUTH_RESULT_DEFER;
     75       1.13   elad 	req = (enum kauth_system_req)arg0;
     76       1.13   elad 	id = (psetid_t)(unsigned long)arg1;
     77       1.13   elad 
     78       1.13   elad 	if (action != KAUTH_SYSTEM_PSET)
     79       1.13   elad 		return result;
     80       1.13   elad 
     81       1.13   elad 	if ((req == KAUTH_REQ_SYSTEM_PSET_ASSIGN) ||
     82       1.13   elad 	    (req == KAUTH_REQ_SYSTEM_PSET_BIND)) {
     83       1.13   elad 		if (id == PS_QUERY)
     84       1.13   elad 			result = KAUTH_RESULT_ALLOW;
     85       1.13   elad 	}
     86       1.13   elad 
     87       1.13   elad 	return result;
     88       1.13   elad }
     89       1.13   elad 
     90        1.1  rmind /*
     91        1.1  rmind  * Initialization of the processor-sets.
     92        1.1  rmind  */
     93        1.1  rmind void
     94        1.1  rmind psets_init(void)
     95        1.1  rmind {
     96        1.1  rmind 
     97       1.14     ad 	psets_max = max(maxcpus, 32);
     98        1.1  rmind 	psets = kmem_zalloc(psets_max * sizeof(void *), KM_SLEEP);
     99        1.1  rmind 	psets_count = 0;
    100       1.13   elad 
    101       1.13   elad 	psets_listener = kauth_listen_scope(KAUTH_SCOPE_SYSTEM,
    102       1.13   elad 	    psets_listener_cb, NULL);
    103        1.1  rmind }
    104        1.1  rmind 
    105        1.1  rmind /*
    106        1.1  rmind  * Reallocate the array of the processor-set structures.
    107        1.1  rmind  */
    108        1.1  rmind static int
    109        1.1  rmind psets_realloc(int new_psets_max)
    110        1.1  rmind {
    111        1.1  rmind 	pset_info_t **new_psets, **old_psets;
    112        1.1  rmind 	const u_int newsize = new_psets_max * sizeof(void *);
    113        1.1  rmind 	u_int i, oldsize;
    114        1.1  rmind 
    115        1.1  rmind 	if (new_psets_max < 1)
    116        1.1  rmind 		return EINVAL;
    117        1.1  rmind 
    118        1.1  rmind 	new_psets = kmem_zalloc(newsize, KM_SLEEP);
    119        1.8     ad 	mutex_enter(&cpu_lock);
    120        1.1  rmind 	old_psets = psets;
    121        1.1  rmind 	oldsize = psets_max * sizeof(void *);
    122        1.1  rmind 
    123        1.1  rmind 	/* Check if we can lower the size of the array */
    124        1.1  rmind 	if (new_psets_max < psets_max) {
    125        1.1  rmind 		for (i = new_psets_max; i < psets_max; i++) {
    126        1.1  rmind 			if (psets[i] == NULL)
    127        1.1  rmind 				continue;
    128        1.8     ad 			mutex_exit(&cpu_lock);
    129        1.1  rmind 			kmem_free(new_psets, newsize);
    130        1.1  rmind 			return EBUSY;
    131        1.1  rmind 		}
    132        1.1  rmind 	}
    133        1.1  rmind 
    134        1.1  rmind 	/* Copy all pointers to the new array */
    135        1.1  rmind 	memcpy(new_psets, psets, newsize);
    136        1.1  rmind 	psets_max = new_psets_max;
    137        1.1  rmind 	psets = new_psets;
    138        1.8     ad 	mutex_exit(&cpu_lock);
    139        1.1  rmind 
    140        1.1  rmind 	kmem_free(old_psets, oldsize);
    141        1.1  rmind 	return 0;
    142        1.1  rmind }
    143        1.1  rmind 
    144        1.1  rmind /*
    145        1.1  rmind  * Validate processor-set ID.
    146        1.1  rmind  */
    147        1.1  rmind static int
    148        1.1  rmind psid_validate(psetid_t psid, bool chkps)
    149        1.1  rmind {
    150        1.1  rmind 
    151        1.8     ad 	KASSERT(mutex_owned(&cpu_lock));
    152        1.1  rmind 
    153        1.1  rmind 	if (chkps && (psid == PS_NONE || psid == PS_QUERY || psid == PS_MYID))
    154        1.1  rmind 		return 0;
    155        1.1  rmind 	if (psid <= 0 || psid > psets_max)
    156        1.1  rmind 		return EINVAL;
    157        1.1  rmind 	if (psets[psid - 1] == NULL)
    158        1.1  rmind 		return EINVAL;
    159        1.1  rmind 	if (psets[psid - 1]->ps_flags & PSET_BUSY)
    160        1.1  rmind 		return EBUSY;
    161        1.1  rmind 
    162        1.1  rmind 	return 0;
    163        1.1  rmind }
    164        1.1  rmind 
    165        1.1  rmind /*
    166        1.1  rmind  * Create a processor-set.
    167        1.1  rmind  */
    168        1.1  rmind static int
    169        1.1  rmind kern_pset_create(psetid_t *psid)
    170        1.1  rmind {
    171        1.1  rmind 	pset_info_t *pi;
    172        1.1  rmind 	u_int i;
    173        1.1  rmind 
    174        1.1  rmind 	if (psets_count == psets_max)
    175        1.1  rmind 		return ENOMEM;
    176        1.1  rmind 
    177        1.1  rmind 	pi = kmem_zalloc(sizeof(pset_info_t), KM_SLEEP);
    178        1.1  rmind 
    179        1.8     ad 	mutex_enter(&cpu_lock);
    180        1.1  rmind 	if (psets_count == psets_max) {
    181        1.8     ad 		mutex_exit(&cpu_lock);
    182        1.1  rmind 		kmem_free(pi, sizeof(pset_info_t));
    183        1.1  rmind 		return ENOMEM;
    184        1.1  rmind 	}
    185        1.1  rmind 
    186        1.1  rmind 	/* Find a free entry in the array */
    187        1.1  rmind 	for (i = 0; i < psets_max; i++)
    188        1.1  rmind 		if (psets[i] == NULL)
    189        1.1  rmind 			break;
    190        1.1  rmind 	KASSERT(i != psets_max);
    191        1.1  rmind 
    192        1.1  rmind 	psets[i] = pi;
    193        1.1  rmind 	psets_count++;
    194        1.8     ad 	mutex_exit(&cpu_lock);
    195        1.1  rmind 
    196        1.1  rmind 	*psid = i + 1;
    197        1.1  rmind 	return 0;
    198        1.1  rmind }
    199        1.1  rmind 
    200        1.1  rmind /*
    201        1.1  rmind  * Destroy a processor-set.
    202        1.1  rmind  */
    203        1.1  rmind static int
    204        1.1  rmind kern_pset_destroy(psetid_t psid)
    205        1.1  rmind {
    206        1.1  rmind 	struct cpu_info *ci;
    207        1.1  rmind 	pset_info_t *pi;
    208        1.1  rmind 	struct lwp *l;
    209        1.1  rmind 	CPU_INFO_ITERATOR cii;
    210        1.1  rmind 	int error;
    211        1.1  rmind 
    212        1.8     ad 	mutex_enter(&cpu_lock);
    213        1.1  rmind 	if (psid == PS_MYID) {
    214        1.1  rmind 		/* Use caller's processor-set ID */
    215        1.1  rmind 		psid = curlwp->l_psid;
    216        1.1  rmind 	}
    217        1.1  rmind 	error = psid_validate(psid, false);
    218        1.1  rmind 	if (error) {
    219        1.8     ad 		mutex_exit(&cpu_lock);
    220        1.1  rmind 		return error;
    221        1.1  rmind 	}
    222        1.1  rmind 
    223        1.1  rmind 	/* Release the processor-set from all CPUs */
    224        1.1  rmind 	for (CPU_INFO_FOREACH(cii, ci)) {
    225        1.1  rmind 		struct schedstate_percpu *spc;
    226        1.1  rmind 
    227        1.1  rmind 		spc = &ci->ci_schedstate;
    228        1.1  rmind 		if (spc->spc_psid != psid)
    229        1.1  rmind 			continue;
    230        1.1  rmind 		spc->spc_psid = PS_NONE;
    231        1.1  rmind 	}
    232        1.1  rmind 	/* Mark that processor-set is going to be destroyed */
    233        1.1  rmind 	pi = psets[psid - 1];
    234        1.1  rmind 	pi->ps_flags |= PSET_BUSY;
    235        1.8     ad 	mutex_exit(&cpu_lock);
    236        1.1  rmind 
    237        1.1  rmind 	/* Unmark the processor-set ID from each thread */
    238        1.5     ad 	mutex_enter(proc_lock);
    239        1.1  rmind 	LIST_FOREACH(l, &alllwp, l_list) {
    240        1.1  rmind 		/* Safe to check and set without lock held */
    241        1.1  rmind 		if (l->l_psid != psid)
    242        1.1  rmind 			continue;
    243        1.1  rmind 		l->l_psid = PS_NONE;
    244        1.1  rmind 	}
    245        1.5     ad 	mutex_exit(proc_lock);
    246        1.1  rmind 
    247        1.1  rmind 	/* Destroy the processor-set */
    248        1.8     ad 	mutex_enter(&cpu_lock);
    249        1.1  rmind 	psets[psid - 1] = NULL;
    250        1.1  rmind 	psets_count--;
    251        1.8     ad 	mutex_exit(&cpu_lock);
    252        1.1  rmind 
    253        1.1  rmind 	kmem_free(pi, sizeof(pset_info_t));
    254        1.1  rmind 	return 0;
    255        1.1  rmind }
    256        1.1  rmind 
    257        1.1  rmind /*
    258        1.1  rmind  * General system calls for the processor-sets.
    259        1.1  rmind  */
    260        1.1  rmind 
    261        1.1  rmind int
    262        1.1  rmind sys_pset_create(struct lwp *l, const struct sys_pset_create_args *uap,
    263        1.1  rmind     register_t *retval)
    264        1.1  rmind {
    265        1.1  rmind 	/* {
    266        1.1  rmind 		syscallarg(psetid_t) *psid;
    267        1.1  rmind 	} */
    268        1.1  rmind 	psetid_t psid;
    269        1.1  rmind 	int error;
    270        1.1  rmind 
    271        1.1  rmind 	/* Available only for super-user */
    272        1.4   elad 	if (kauth_authorize_system(l->l_cred, KAUTH_SYSTEM_PSET,
    273        1.4   elad 	    KAUTH_REQ_SYSTEM_PSET_CREATE, NULL, NULL, NULL))
    274        1.1  rmind 		return EPERM;
    275        1.1  rmind 
    276        1.1  rmind 	error = kern_pset_create(&psid);
    277        1.1  rmind 	if (error)
    278        1.1  rmind 		return error;
    279        1.1  rmind 
    280        1.1  rmind 	error = copyout(&psid, SCARG(uap, psid), sizeof(psetid_t));
    281        1.1  rmind 	if (error)
    282        1.1  rmind 		(void)kern_pset_destroy(psid);
    283        1.1  rmind 
    284        1.1  rmind 	return error;
    285        1.1  rmind }
    286        1.1  rmind 
    287        1.1  rmind int
    288        1.1  rmind sys_pset_destroy(struct lwp *l, const struct sys_pset_destroy_args *uap,
    289        1.1  rmind     register_t *retval)
    290        1.1  rmind {
    291        1.1  rmind 	/* {
    292        1.1  rmind 		syscallarg(psetid_t) psid;
    293        1.1  rmind 	} */
    294        1.1  rmind 
    295        1.1  rmind 	/* Available only for super-user */
    296        1.4   elad 	if (kauth_authorize_system(l->l_cred, KAUTH_SYSTEM_PSET,
    297        1.4   elad 	    KAUTH_REQ_SYSTEM_PSET_DESTROY,
    298        1.4   elad 	    KAUTH_ARG(SCARG(uap, psid)), NULL, NULL))
    299        1.1  rmind 		return EPERM;
    300        1.1  rmind 
    301        1.1  rmind 	return kern_pset_destroy(SCARG(uap, psid));
    302        1.1  rmind }
    303        1.1  rmind 
    304        1.1  rmind int
    305        1.1  rmind sys_pset_assign(struct lwp *l, const struct sys_pset_assign_args *uap,
    306        1.1  rmind     register_t *retval)
    307        1.1  rmind {
    308        1.1  rmind 	/* {
    309        1.1  rmind 		syscallarg(psetid_t) psid;
    310        1.1  rmind 		syscallarg(cpuid_t) cpuid;
    311        1.1  rmind 		syscallarg(psetid_t) *opsid;
    312        1.1  rmind 	} */
    313       1.10  rmind 	struct cpu_info *ici, *ci = NULL;
    314        1.9  rmind 	struct schedstate_percpu *spc = NULL;
    315       1.10  rmind 	struct lwp *t;
    316        1.1  rmind 	psetid_t psid = SCARG(uap, psid), opsid = 0;
    317        1.1  rmind 	CPU_INFO_ITERATOR cii;
    318        1.9  rmind 	int error = 0, nnone = 0;
    319        1.1  rmind 
    320        1.1  rmind 	/* Available only for super-user, except the case of PS_QUERY */
    321        1.4   elad 	if (kauth_authorize_system(l->l_cred, KAUTH_SYSTEM_PSET,
    322        1.4   elad 	    KAUTH_REQ_SYSTEM_PSET_ASSIGN, KAUTH_ARG(SCARG(uap, psid)), NULL,
    323        1.4   elad 	    NULL))
    324        1.1  rmind 		return EPERM;
    325        1.1  rmind 
    326        1.1  rmind 	/* Find the target CPU */
    327        1.8     ad 	mutex_enter(&cpu_lock);
    328       1.10  rmind 	for (CPU_INFO_FOREACH(cii, ici)) {
    329       1.10  rmind 		struct schedstate_percpu *ispc;
    330       1.10  rmind 		ispc = &ici->ci_schedstate;
    331       1.10  rmind 		if (cpu_index(ici) == SCARG(uap, cpuid)) {
    332       1.10  rmind 			ci = ici;
    333       1.10  rmind 			spc = ispc;
    334       1.10  rmind 		}
    335       1.10  rmind 		nnone += (ispc->spc_psid == PS_NONE);
    336        1.8     ad 	}
    337       1.10  rmind 	if (ci == NULL) {
    338        1.8     ad 		mutex_exit(&cpu_lock);
    339        1.1  rmind 		return EINVAL;
    340        1.8     ad 	}
    341        1.1  rmind 	error = psid_validate(psid, true);
    342        1.1  rmind 	if (error) {
    343        1.8     ad 		mutex_exit(&cpu_lock);
    344        1.1  rmind 		return error;
    345        1.1  rmind 	}
    346        1.1  rmind 	opsid = spc->spc_psid;
    347        1.1  rmind 	switch (psid) {
    348        1.1  rmind 	case PS_QUERY:
    349        1.1  rmind 		break;
    350        1.1  rmind 	case PS_MYID:
    351        1.1  rmind 		psid = curlwp->l_psid;
    352        1.8     ad 		/* FALLTHROUGH */
    353        1.1  rmind 	default:
    354        1.9  rmind 		/*
    355        1.9  rmind 		 * Ensure at least one CPU stays in the default set,
    356        1.9  rmind 		 * and that specified CPU is not offline.
    357        1.9  rmind 		 */
    358        1.9  rmind 		if (psid != PS_NONE && ((spc->spc_flags & SPCF_OFFLINE) ||
    359        1.9  rmind 		    (nnone == 1 && spc->spc_psid == PS_NONE))) {
    360        1.8     ad 			mutex_exit(&cpu_lock);
    361        1.8     ad 			return EBUSY;
    362        1.8     ad 		}
    363       1.10  rmind 		mutex_enter(proc_lock);
    364       1.10  rmind 		/*
    365       1.10  rmind 		 * Ensure that none of the threads are using affinity mask
    366       1.10  rmind 		 * with this target CPU in it.
    367       1.10  rmind 		 */
    368       1.10  rmind 		LIST_FOREACH(t, &alllwp, l_list) {
    369       1.17  rmind 			if (t->l_affinity == NULL) {
    370       1.10  rmind 				continue;
    371       1.17  rmind 			}
    372       1.12  rmind 			lwp_lock(t);
    373       1.17  rmind 			if (t->l_affinity == NULL) {
    374       1.12  rmind 				lwp_unlock(t);
    375       1.12  rmind 				continue;
    376       1.12  rmind 			}
    377       1.16  rmind 			if (kcpuset_isset(t->l_affinity, cpu_index(ci))) {
    378       1.12  rmind 				lwp_unlock(t);
    379       1.10  rmind 				mutex_exit(proc_lock);
    380       1.10  rmind 				mutex_exit(&cpu_lock);
    381       1.10  rmind 				return EPERM;
    382       1.10  rmind 			}
    383       1.10  rmind 		}
    384       1.10  rmind 		/*
    385       1.10  rmind 		 * Set the processor-set ID.
    386       1.10  rmind 		 * Migrate out any threads running on this CPU.
    387       1.10  rmind 		 */
    388        1.1  rmind 		spc->spc_psid = psid;
    389       1.10  rmind 
    390       1.10  rmind 		LIST_FOREACH(t, &alllwp, l_list) {
    391       1.10  rmind 			struct cpu_info *tci;
    392       1.10  rmind 			if (t->l_cpu != ci)
    393       1.10  rmind 				continue;
    394       1.10  rmind 			if (t->l_pflag & (LP_BOUND | LP_INTR))
    395       1.10  rmind 				continue;
    396       1.10  rmind 			lwp_lock(t);
    397       1.10  rmind 			tci = sched_takecpu(t);
    398       1.10  rmind 			KASSERT(tci != ci);
    399       1.10  rmind 			lwp_migrate(t, tci);
    400       1.10  rmind 		}
    401       1.10  rmind 		mutex_exit(proc_lock);
    402        1.8     ad 		break;
    403        1.1  rmind 	}
    404        1.8     ad 	mutex_exit(&cpu_lock);
    405        1.1  rmind 
    406        1.1  rmind 	if (SCARG(uap, opsid) != NULL)
    407        1.1  rmind 		error = copyout(&opsid, SCARG(uap, opsid), sizeof(psetid_t));
    408        1.1  rmind 
    409        1.1  rmind 	return error;
    410        1.1  rmind }
    411        1.1  rmind 
    412        1.1  rmind int
    413        1.1  rmind sys__pset_bind(struct lwp *l, const struct sys__pset_bind_args *uap,
    414        1.1  rmind     register_t *retval)
    415        1.1  rmind {
    416        1.1  rmind 	/* {
    417        1.1  rmind 		syscallarg(idtype_t) idtype;
    418        1.1  rmind 		syscallarg(id_t) first_id;
    419        1.1  rmind 		syscallarg(id_t) second_id;
    420        1.1  rmind 		syscallarg(psetid_t) psid;
    421        1.1  rmind 		syscallarg(psetid_t) *opsid;
    422        1.1  rmind 	} */
    423        1.1  rmind 	struct cpu_info *ci;
    424        1.1  rmind 	struct proc *p;
    425        1.1  rmind 	struct lwp *t;
    426        1.1  rmind 	id_t id1, id2;
    427        1.1  rmind 	pid_t pid = 0;
    428        1.1  rmind 	lwpid_t lid = 0;
    429        1.1  rmind 	psetid_t psid, opsid;
    430        1.1  rmind 	int error = 0, lcnt;
    431        1.1  rmind 
    432        1.1  rmind 	psid = SCARG(uap, psid);
    433        1.1  rmind 
    434        1.1  rmind 	/* Available only for super-user, except the case of PS_QUERY */
    435        1.4   elad 	if (kauth_authorize_system(l->l_cred, KAUTH_SYSTEM_PSET,
    436        1.4   elad 	    KAUTH_REQ_SYSTEM_PSET_BIND, KAUTH_ARG(SCARG(uap, psid)), NULL,
    437        1.4   elad 	    NULL))
    438        1.1  rmind 		return EPERM;
    439        1.1  rmind 
    440        1.8     ad 	mutex_enter(&cpu_lock);
    441        1.1  rmind 	error = psid_validate(psid, true);
    442        1.1  rmind 	if (error) {
    443        1.8     ad 		mutex_exit(&cpu_lock);
    444        1.1  rmind 		return error;
    445        1.1  rmind 	}
    446        1.1  rmind 	if (psid == PS_MYID)
    447        1.1  rmind 		psid = curlwp->l_psid;
    448        1.1  rmind 	if (psid != PS_QUERY && psid != PS_NONE)
    449        1.1  rmind 		psets[psid - 1]->ps_flags |= PSET_BUSY;
    450        1.8     ad 	mutex_exit(&cpu_lock);
    451        1.1  rmind 
    452        1.1  rmind 	/*
    453        1.1  rmind 	 * Get PID and LID from the ID.
    454        1.1  rmind 	 */
    455        1.1  rmind 	p = l->l_proc;
    456        1.1  rmind 	id1 = SCARG(uap, first_id);
    457        1.1  rmind 	id2 = SCARG(uap, second_id);
    458        1.1  rmind 
    459        1.1  rmind 	switch (SCARG(uap, idtype)) {
    460        1.1  rmind 	case P_PID:
    461        1.1  rmind 		/*
    462        1.1  rmind 		 * Process:
    463        1.1  rmind 		 *  First ID	- PID;
    464        1.1  rmind 		 *  Second ID	- ignored;
    465        1.1  rmind 		 */
    466        1.1  rmind 		pid = (id1 == P_MYID) ? p->p_pid : id1;
    467        1.1  rmind 		lid = 0;
    468        1.1  rmind 		break;
    469        1.1  rmind 	case P_LWPID:
    470        1.1  rmind 		/*
    471        1.1  rmind 		 * Thread (LWP):
    472        1.1  rmind 		 *  First ID	- LID;
    473        1.1  rmind 		 *  Second ID	- PID;
    474        1.1  rmind 		 */
    475        1.1  rmind 		if (id1 == P_MYID) {
    476        1.1  rmind 			pid = p->p_pid;
    477        1.1  rmind 			lid = l->l_lid;
    478        1.1  rmind 			break;
    479        1.1  rmind 		}
    480        1.1  rmind 		lid = id1;
    481        1.1  rmind 		pid = (id2 == P_MYID) ? p->p_pid : id2;
    482        1.1  rmind 		break;
    483        1.1  rmind 	default:
    484        1.2   yamt 		error = EINVAL;
    485        1.2   yamt 		goto error;
    486        1.1  rmind 	}
    487        1.1  rmind 
    488        1.1  rmind 	/* Find the process */
    489        1.5     ad 	mutex_enter(proc_lock);
    490       1.15  rmind 	p = proc_find(pid);
    491        1.1  rmind 	if (p == NULL) {
    492        1.5     ad 		mutex_exit(proc_lock);
    493        1.1  rmind 		error = ESRCH;
    494        1.1  rmind 		goto error;
    495        1.1  rmind 	}
    496        1.6     ad 	mutex_enter(p->p_lock);
    497        1.5     ad 	mutex_exit(proc_lock);
    498        1.1  rmind 
    499        1.1  rmind 	/* Disallow modification of the system processes */
    500        1.1  rmind 	if (p->p_flag & PK_SYSTEM) {
    501        1.6     ad 		mutex_exit(p->p_lock);
    502        1.1  rmind 		error = EPERM;
    503        1.1  rmind 		goto error;
    504        1.1  rmind 	}
    505        1.1  rmind 
    506        1.1  rmind 	/* Find the LWP(s) */
    507        1.1  rmind 	lcnt = 0;
    508        1.1  rmind 	ci = NULL;
    509        1.1  rmind 	LIST_FOREACH(t, &p->p_lwps, l_sibling) {
    510        1.1  rmind 		if (lid && lid != t->l_lid)
    511        1.1  rmind 			continue;
    512        1.1  rmind 		/*
    513        1.1  rmind 		 * Bind the thread to the processor-set,
    514        1.1  rmind 		 * take some CPU and migrate.
    515        1.1  rmind 		 */
    516        1.1  rmind 		lwp_lock(t);
    517        1.1  rmind 		opsid = t->l_psid;
    518        1.1  rmind 		t->l_psid = psid;
    519       1.11  rmind 		ci = sched_takecpu(t);
    520        1.1  rmind 		/* Unlocks LWP */
    521        1.1  rmind 		lwp_migrate(t, ci);
    522        1.1  rmind 		lcnt++;
    523        1.1  rmind 	}
    524        1.6     ad 	mutex_exit(p->p_lock);
    525        1.1  rmind 	if (lcnt == 0) {
    526        1.1  rmind 		error = ESRCH;
    527        1.1  rmind 		goto error;
    528        1.1  rmind 	}
    529        1.1  rmind 	if (SCARG(uap, opsid))
    530        1.1  rmind 		error = copyout(&opsid, SCARG(uap, opsid), sizeof(psetid_t));
    531        1.1  rmind error:
    532        1.1  rmind 	if (psid != PS_QUERY && psid != PS_NONE) {
    533        1.8     ad 		mutex_enter(&cpu_lock);
    534        1.1  rmind 		psets[psid - 1]->ps_flags &= ~PSET_BUSY;
    535        1.8     ad 		mutex_exit(&cpu_lock);
    536        1.1  rmind 	}
    537        1.1  rmind 	return error;
    538        1.1  rmind }
    539        1.1  rmind 
    540        1.1  rmind /*
    541        1.1  rmind  * Sysctl nodes and initialization.
    542        1.1  rmind  */
    543        1.1  rmind 
    544        1.1  rmind static int
    545        1.1  rmind sysctl_psets_max(SYSCTLFN_ARGS)
    546        1.1  rmind {
    547        1.1  rmind 	struct sysctlnode node;
    548        1.1  rmind 	int error, newsize;
    549        1.1  rmind 
    550        1.1  rmind 	node = *rnode;
    551        1.1  rmind 	node.sysctl_data = &newsize;
    552        1.1  rmind 
    553        1.1  rmind 	newsize = psets_max;
    554        1.1  rmind 	error = sysctl_lookup(SYSCTLFN_CALL(&node));
    555        1.1  rmind 	if (error || newp == NULL)
    556        1.1  rmind 		return error;
    557        1.1  rmind 
    558        1.1  rmind 	if (newsize <= 0)
    559        1.1  rmind 		return EINVAL;
    560        1.1  rmind 
    561        1.1  rmind 	sysctl_unlock();
    562        1.1  rmind 	error = psets_realloc(newsize);
    563        1.1  rmind 	sysctl_relock();
    564        1.1  rmind 	return error;
    565        1.1  rmind }
    566        1.1  rmind 
    567        1.8     ad static int
    568        1.8     ad sysctl_psets_list(SYSCTLFN_ARGS)
    569        1.8     ad {
    570        1.8     ad 	const size_t bufsz = 1024;
    571        1.8     ad 	char *buf, tbuf[16];
    572        1.8     ad 	int i, error;
    573        1.8     ad 	size_t len;
    574        1.8     ad 
    575        1.8     ad 	sysctl_unlock();
    576        1.8     ad 	buf = kmem_alloc(bufsz, KM_SLEEP);
    577        1.8     ad 	snprintf(buf, bufsz, "%d:1", PS_NONE);	/* XXX */
    578        1.8     ad 
    579        1.8     ad 	mutex_enter(&cpu_lock);
    580        1.8     ad 	for (i = 0; i < psets_max; i++) {
    581        1.8     ad 		if (psets[i] == NULL)
    582        1.8     ad 			continue;
    583        1.8     ad 		snprintf(tbuf, sizeof(tbuf), ",%d:2", i + 1);	/* XXX */
    584        1.8     ad 		strlcat(buf, tbuf, bufsz);
    585        1.8     ad 	}
    586        1.8     ad 	mutex_exit(&cpu_lock);
    587        1.8     ad 	len = strlen(buf) + 1;
    588        1.8     ad 	error = 0;
    589        1.8     ad 	if (oldp != NULL)
    590        1.8     ad 		error = copyout(buf, oldp, min(len, *oldlenp));
    591        1.8     ad 	*oldlenp = len;
    592        1.8     ad 	kmem_free(buf, bufsz);
    593        1.8     ad 	sysctl_relock();
    594        1.8     ad 	return error;
    595        1.8     ad }
    596        1.8     ad 
    597        1.1  rmind SYSCTL_SETUP(sysctl_pset_setup, "sysctl kern.pset subtree setup")
    598        1.1  rmind {
    599        1.1  rmind 	const struct sysctlnode *node = NULL;
    600        1.1  rmind 
    601        1.1  rmind 	sysctl_createv(clog, 0, NULL, &node,
    602        1.1  rmind 		CTLFLAG_PERMANENT,
    603        1.1  rmind 		CTLTYPE_NODE, "pset",
    604        1.1  rmind 		SYSCTL_DESCR("Processor-set options"),
    605        1.1  rmind 		NULL, 0, NULL, 0,
    606        1.1  rmind 		CTL_KERN, CTL_CREATE, CTL_EOL);
    607        1.1  rmind 
    608        1.1  rmind 	if (node == NULL)
    609        1.1  rmind 		return;
    610        1.1  rmind 
    611        1.1  rmind 	sysctl_createv(clog, 0, &node, NULL,
    612        1.1  rmind 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
    613        1.1  rmind 		CTLTYPE_INT, "psets_max",
    614        1.1  rmind 		SYSCTL_DESCR("Maximal count of the processor-sets"),
    615        1.1  rmind 		sysctl_psets_max, 0, &psets_max, 0,
    616        1.1  rmind 		CTL_CREATE, CTL_EOL);
    617        1.8     ad 	sysctl_createv(clog, 0, &node, NULL,
    618        1.8     ad 		CTLFLAG_PERMANENT,
    619        1.8     ad 		CTLTYPE_STRING, "list",
    620        1.8     ad 		SYSCTL_DESCR("List of active sets"),
    621        1.8     ad 		sysctl_psets_list, 0, NULL, 0,
    622        1.8     ad 		CTL_CREATE, CTL_EOL);
    623        1.1  rmind }
    624