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kern_resource.c revision 1.103.4.11
      1  1.103.4.11        ad /*	$NetBSD: kern_resource.c,v 1.103.4.11 2007/02/05 13:16:49 ad Exp $	*/
      2        1.20       cgd 
      3        1.17       cgd /*-
      4        1.19       cgd  * Copyright (c) 1982, 1986, 1991, 1993
      5        1.19       cgd  *	The Regents of the University of California.  All rights reserved.
      6        1.17       cgd  * (c) UNIX System Laboratories, Inc.
      7        1.17       cgd  * All or some portions of this file are derived from material licensed
      8        1.17       cgd  * to the University of California by American Telephone and Telegraph
      9        1.17       cgd  * Co. or Unix System Laboratories, Inc. and are reproduced herein with
     10        1.17       cgd  * the permission of UNIX System Laboratories, Inc.
     11        1.17       cgd  *
     12        1.17       cgd  * Redistribution and use in source and binary forms, with or without
     13        1.17       cgd  * modification, are permitted provided that the following conditions
     14        1.17       cgd  * are met:
     15        1.17       cgd  * 1. Redistributions of source code must retain the above copyright
     16        1.17       cgd  *    notice, this list of conditions and the following disclaimer.
     17        1.17       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     18        1.17       cgd  *    notice, this list of conditions and the following disclaimer in the
     19        1.17       cgd  *    documentation and/or other materials provided with the distribution.
     20        1.72       agc  * 3. Neither the name of the University nor the names of its contributors
     21        1.17       cgd  *    may be used to endorse or promote products derived from this software
     22        1.17       cgd  *    without specific prior written permission.
     23        1.17       cgd  *
     24        1.17       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     25        1.17       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     26        1.17       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     27        1.17       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     28        1.17       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     29        1.17       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     30        1.17       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     31        1.17       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     32        1.17       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     33        1.17       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     34        1.17       cgd  * SUCH DAMAGE.
     35        1.17       cgd  *
     36        1.45      fvdl  *	@(#)kern_resource.c	8.8 (Berkeley) 2/14/95
     37        1.17       cgd  */
     38        1.61     lukem 
     39        1.61     lukem #include <sys/cdefs.h>
     40  1.103.4.11        ad __KERNEL_RCSID(0, "$NetBSD: kern_resource.c,v 1.103.4.11 2007/02/05 13:16:49 ad Exp $");
     41        1.44       mrg 
     42        1.17       cgd #include <sys/param.h>
     43        1.22       cgd #include <sys/systm.h>
     44        1.17       cgd #include <sys/kernel.h>
     45        1.19       cgd #include <sys/file.h>
     46        1.17       cgd #include <sys/resourcevar.h>
     47        1.17       cgd #include <sys/malloc.h>
     48       1.100      yamt #include <sys/namei.h>
     49        1.49   thorpej #include <sys/pool.h>
     50        1.17       cgd #include <sys/proc.h>
     51        1.74    atatat #include <sys/sysctl.h>
     52       1.101      elad #include <sys/kauth.h>
     53        1.17       cgd 
     54        1.22       cgd #include <sys/mount.h>
     55        1.22       cgd #include <sys/syscallargs.h>
     56        1.17       cgd 
     57        1.43       mrg #include <uvm/uvm_extern.h>
     58        1.43       mrg 
     59        1.17       cgd /*
     60        1.60       eeh  * Maximum process data and stack limits.
     61        1.60       eeh  * They are variables so they are patchable.
     62        1.60       eeh  */
     63        1.60       eeh rlim_t maxdmap = MAXDSIZ;
     64        1.60       eeh rlim_t maxsmap = MAXSSIZ;
     65        1.60       eeh 
     66        1.82      matt struct uihashhead *uihashtbl;
     67        1.82      matt u_long uihash;		/* size of hash table - 1 */
     68        1.88  christos struct simplelock uihashtbl_slock = SIMPLELOCK_INITIALIZER;
     69        1.82      matt 
     70        1.79  christos 
     71        1.60       eeh /*
     72        1.17       cgd  * Resource controls and accounting.
     73        1.17       cgd  */
     74        1.17       cgd 
     75        1.25       cgd int
     76        1.98   thorpej sys_getpriority(struct lwp *l, void *v, register_t *retval)
     77        1.30   thorpej {
     78        1.54  augustss 	struct sys_getpriority_args /* {
     79        1.22       cgd 		syscallarg(int) which;
     80        1.81    kleink 		syscallarg(id_t) who;
     81        1.30   thorpej 	} */ *uap = v;
     82        1.68   thorpej 	struct proc *curp = l->l_proc, *p;
     83        1.54  augustss 	int low = NZERO + PRIO_MAX + 1;
     84   1.103.4.1        ad 	int who = SCARG(uap, who);
     85        1.17       cgd 
     86  1.103.4.11        ad 	rw_enter(&proclist_lock, RW_READER);
     87        1.22       cgd 	switch (SCARG(uap, which)) {
     88        1.17       cgd 	case PRIO_PROCESS:
     89   1.103.4.1        ad 		if (who == 0)
     90        1.17       cgd 			p = curp;
     91        1.17       cgd 		else
     92  1.103.4.11        ad 			p = p_find(who, PFIND_LOCKED);
     93   1.103.4.1        ad 		if (p != NULL)
     94   1.103.4.1        ad 			low = p->p_nice;
     95        1.17       cgd 		break;
     96        1.17       cgd 
     97        1.17       cgd 	case PRIO_PGRP: {
     98        1.54  augustss 		struct pgrp *pg;
     99        1.17       cgd 
    100   1.103.4.1        ad 		if (who == 0)
    101        1.17       cgd 			pg = curp->p_pgrp;
    102  1.103.4.11        ad 		else if ((pg = pg_find(who, PFIND_LOCKED)) == NULL)
    103        1.17       cgd 			break;
    104        1.64      matt 		LIST_FOREACH(p, &pg->pg_members, p_pglist) {
    105        1.17       cgd 			if (p->p_nice < low)
    106        1.17       cgd 				low = p->p_nice;
    107        1.17       cgd 		}
    108        1.17       cgd 		break;
    109        1.17       cgd 	}
    110        1.17       cgd 
    111        1.17       cgd 	case PRIO_USER:
    112   1.103.4.1        ad 		if (who == 0)
    113   1.103.4.1        ad 			who = (int)kauth_cred_geteuid(l->l_cred);
    114        1.86      yamt 		PROCLIST_FOREACH(p, &allproc) {
    115   1.103.4.4        ad 			mutex_enter(&p->p_mutex);
    116       1.102        ad 			if (kauth_cred_geteuid(p->p_cred) ==
    117   1.103.4.1        ad 			    (uid_t)who && p->p_nice < low)
    118        1.17       cgd 				low = p->p_nice;
    119   1.103.4.4        ad 			mutex_exit(&p->p_mutex);
    120        1.64      matt 		}
    121        1.17       cgd 		break;
    122        1.17       cgd 
    123        1.17       cgd 	default:
    124  1.103.4.11        ad 		rw_exit(&proclist_lock);
    125        1.17       cgd 		return (EINVAL);
    126        1.17       cgd 	}
    127  1.103.4.11        ad 	rw_exit(&proclist_lock);
    128  1.103.4.11        ad 
    129        1.37        ws 	if (low == NZERO + PRIO_MAX + 1)
    130        1.17       cgd 		return (ESRCH);
    131        1.37        ws 	*retval = low - NZERO;
    132        1.17       cgd 	return (0);
    133        1.17       cgd }
    134        1.17       cgd 
    135        1.17       cgd /* ARGSUSED */
    136        1.25       cgd int
    137        1.98   thorpej sys_setpriority(struct lwp *l, void *v, register_t *retval)
    138        1.30   thorpej {
    139        1.54  augustss 	struct sys_setpriority_args /* {
    140        1.22       cgd 		syscallarg(int) which;
    141        1.81    kleink 		syscallarg(id_t) who;
    142        1.22       cgd 		syscallarg(int) prio;
    143        1.30   thorpej 	} */ *uap = v;
    144        1.68   thorpej 	struct proc *curp = l->l_proc, *p;
    145        1.17       cgd 	int found = 0, error = 0;
    146   1.103.4.1        ad 	int who = SCARG(uap, who);
    147        1.17       cgd 
    148  1.103.4.11        ad 	rw_enter(&proclist_lock, RW_READER);
    149        1.22       cgd 	switch (SCARG(uap, which)) {
    150        1.17       cgd 	case PRIO_PROCESS:
    151   1.103.4.1        ad 		if (who == 0)
    152        1.17       cgd 			p = curp;
    153        1.17       cgd 		else
    154  1.103.4.11        ad 			p = p_find(who, PFIND_LOCKED);
    155   1.103.4.1        ad 		if (p != 0) {
    156   1.103.4.4        ad 			mutex_enter(&p->p_mutex);
    157   1.103.4.1        ad 			error = donice(l, p, SCARG(uap, prio));
    158   1.103.4.4        ad 			mutex_exit(&p->p_mutex);
    159   1.103.4.1        ad 		}
    160        1.17       cgd 		found++;
    161        1.17       cgd 		break;
    162        1.17       cgd 
    163        1.17       cgd 	case PRIO_PGRP: {
    164        1.54  augustss 		struct pgrp *pg;
    165        1.87     perry 
    166   1.103.4.1        ad 		if (who == 0)
    167        1.17       cgd 			pg = curp->p_pgrp;
    168  1.103.4.11        ad 		else if ((pg = pg_find(who, PFIND_LOCKED)) == NULL)
    169        1.17       cgd 			break;
    170        1.64      matt 		LIST_FOREACH(p, &pg->pg_members, p_pglist) {
    171   1.103.4.4        ad 			mutex_enter(&p->p_mutex);
    172       1.102        ad 			error = donice(l, p, SCARG(uap, prio));
    173   1.103.4.4        ad 			mutex_exit(&p->p_mutex);
    174        1.17       cgd 			found++;
    175        1.17       cgd 		}
    176        1.17       cgd 		break;
    177        1.17       cgd 	}
    178        1.17       cgd 
    179        1.17       cgd 	case PRIO_USER:
    180   1.103.4.1        ad 		if (who == 0)
    181   1.103.4.1        ad 			who = (int)kauth_cred_geteuid(l->l_cred);
    182        1.86      yamt 		PROCLIST_FOREACH(p, &allproc) {
    183   1.103.4.4        ad 			mutex_enter(&p->p_mutex);
    184       1.102        ad 			if (kauth_cred_geteuid(p->p_cred) ==
    185       1.102        ad 			    (uid_t)SCARG(uap, who)) {
    186       1.102        ad 				error = donice(l, p, SCARG(uap, prio));
    187        1.17       cgd 				found++;
    188        1.17       cgd 			}
    189   1.103.4.4        ad 			mutex_exit(&p->p_mutex);
    190        1.64      matt 		}
    191        1.17       cgd 		break;
    192        1.17       cgd 
    193        1.17       cgd 	default:
    194  1.103.4.11        ad 		error = EINVAL;
    195  1.103.4.11        ad 		break;
    196        1.17       cgd 	}
    197  1.103.4.11        ad 	rw_exit(&proclist_lock);
    198        1.17       cgd 	if (found == 0)
    199        1.17       cgd 		return (ESRCH);
    200        1.17       cgd 	return (error);
    201        1.17       cgd }
    202        1.17       cgd 
    203   1.103.4.1        ad /*
    204   1.103.4.1        ad  * Renice a process.
    205   1.103.4.1        ad  *
    206   1.103.4.1        ad  * Call with the target process' credentials locked.
    207   1.103.4.1        ad  */
    208        1.25       cgd int
    209       1.102        ad donice(struct lwp *l, struct proc *chgp, int n)
    210        1.17       cgd {
    211       1.102        ad 	kauth_cred_t cred = l->l_cred;
    212   1.103.4.2        ad 	int onice;
    213        1.17       cgd 
    214   1.103.4.4        ad 	LOCK_ASSERT(mutex_owned(&chgp->p_mutex));
    215   1.103.4.1        ad 
    216        1.17       cgd 	if (n > PRIO_MAX)
    217        1.17       cgd 		n = PRIO_MAX;
    218        1.17       cgd 	if (n < PRIO_MIN)
    219        1.17       cgd 		n = PRIO_MIN;
    220        1.37        ws 	n += NZERO;
    221   1.103.4.8        ad 	onice = chgp->p_nice;
    222  1.103.4.10        ad 	onice = chgp->p_nice;
    223   1.103.4.2        ad 
    224   1.103.4.2        ad   again:
    225  1.103.4.10        ad 	if (kauth_authorize_process(cred, KAUTH_PROCESS_NICE, chgp,
    226  1.103.4.10        ad 	    KAUTH_ARG(n), NULL, NULL))
    227        1.17       cgd 		return (EACCES);
    228   1.103.4.8        ad 	mutex_enter(&chgp->p_stmutex);
    229   1.103.4.2        ad 	if (onice != chgp->p_nice) {
    230   1.103.4.8        ad 		mutex_exit(&chgp->p_stmutex);
    231   1.103.4.2        ad 		goto again;
    232   1.103.4.2        ad 	}
    233        1.17       cgd 	chgp->p_nice = n;
    234        1.68   thorpej 	(void)resetprocpriority(chgp);
    235   1.103.4.8        ad 	mutex_exit(&chgp->p_stmutex);
    236        1.17       cgd 	return (0);
    237        1.17       cgd }
    238        1.17       cgd 
    239        1.17       cgd /* ARGSUSED */
    240        1.25       cgd int
    241        1.98   thorpej sys_setrlimit(struct lwp *l, void *v, register_t *retval)
    242        1.30   thorpej {
    243        1.54  augustss 	struct sys_setrlimit_args /* {
    244        1.42   mycroft 		syscallarg(int) which;
    245        1.39       cgd 		syscallarg(const struct rlimit *) rlp;
    246        1.30   thorpej 	} */ *uap = v;
    247        1.42   mycroft 	int which = SCARG(uap, which);
    248        1.19       cgd 	struct rlimit alim;
    249        1.17       cgd 	int error;
    250        1.17       cgd 
    251        1.46     perry 	error = copyin(SCARG(uap, rlp), &alim, sizeof(struct rlimit));
    252        1.33  christos 	if (error)
    253        1.17       cgd 		return (error);
    254       1.102        ad 	return (dosetrlimit(l, l->l_proc, which, &alim));
    255        1.17       cgd }
    256        1.17       cgd 
    257        1.17       cgd int
    258       1.102        ad dosetrlimit(struct lwp *l, struct proc *p, int which, struct rlimit *limp)
    259        1.17       cgd {
    260        1.54  augustss 	struct rlimit *alimp;
    261        1.83        pk 	struct plimit *oldplim;
    262        1.17       cgd 	int error;
    263        1.17       cgd 
    264        1.67    itojun 	if ((u_int)which >= RLIM_NLIMITS)
    265        1.17       cgd 		return (EINVAL);
    266        1.38  matthias 
    267        1.38  matthias 	if (limp->rlim_cur < 0 || limp->rlim_max < 0)
    268        1.38  matthias 		return (EINVAL);
    269        1.38  matthias 
    270        1.17       cgd 	alimp = &p->p_rlimit[which];
    271        1.53    bouyer 	/* if we don't change the value, no need to limcopy() */
    272        1.53    bouyer 	if (limp->rlim_cur == alimp->rlim_cur &&
    273        1.53    bouyer 	    limp->rlim_max == alimp->rlim_max)
    274        1.53    bouyer 		return 0;
    275        1.53    bouyer 
    276        1.62  jdolecek 	if (limp->rlim_cur > limp->rlim_max) {
    277        1.62  jdolecek 		/*
    278        1.62  jdolecek 		 * This is programming error. According to SUSv2, we should
    279        1.62  jdolecek 		 * return error in this case.
    280        1.62  jdolecek 		 */
    281        1.62  jdolecek 		return (EINVAL);
    282        1.62  jdolecek 	}
    283  1.103.4.10        ad 	error = kauth_authorize_process(l->l_cred, KAUTH_PROCESS_RLIMIT,
    284  1.103.4.10        ad 	    p, limp, KAUTH_ARG(which), NULL);
    285   1.103.4.7        ad 	if (error)
    286        1.17       cgd 			return (error);
    287        1.62  jdolecek 
    288  1.103.4.11        ad 	mutex_enter(&p->p_mutex);
    289        1.17       cgd 	if (p->p_limit->p_refcnt > 1 &&
    290        1.17       cgd 	    (p->p_limit->p_lflags & PL_SHAREMOD) == 0) {
    291  1.103.4.11        ad 	    	oldplim = p->p_limit;
    292  1.103.4.11        ad 		p->p_limit = limcopy(p);
    293        1.83        pk 		limfree(oldplim);
    294        1.17       cgd 		alimp = &p->p_rlimit[which];
    295        1.17       cgd 	}
    296        1.17       cgd 
    297        1.17       cgd 	switch (which) {
    298        1.17       cgd 
    299        1.17       cgd 	case RLIMIT_DATA:
    300        1.19       cgd 		if (limp->rlim_cur > maxdmap)
    301        1.19       cgd 			limp->rlim_cur = maxdmap;
    302        1.19       cgd 		if (limp->rlim_max > maxdmap)
    303        1.19       cgd 			limp->rlim_max = maxdmap;
    304        1.17       cgd 		break;
    305        1.17       cgd 
    306        1.17       cgd 	case RLIMIT_STACK:
    307        1.19       cgd 		if (limp->rlim_cur > maxsmap)
    308        1.19       cgd 			limp->rlim_cur = maxsmap;
    309        1.19       cgd 		if (limp->rlim_max > maxsmap)
    310        1.19       cgd 			limp->rlim_max = maxsmap;
    311        1.62  jdolecek 
    312        1.62  jdolecek 		/*
    313        1.62  jdolecek 		 * Return EINVAL if the new stack size limit is lower than
    314        1.62  jdolecek 		 * current usage. Otherwise, the process would get SIGSEGV the
    315        1.62  jdolecek 		 * moment it would try to access anything on it's current stack.
    316        1.62  jdolecek 		 * This conforms to SUSv2.
    317        1.62  jdolecek 		 */
    318        1.62  jdolecek 		if (limp->rlim_cur < p->p_vmspace->vm_ssize * PAGE_SIZE
    319  1.103.4.11        ad 		    || limp->rlim_max < p->p_vmspace->vm_ssize * PAGE_SIZE) {
    320  1.103.4.11        ad 			mutex_exit(&p->p_mutex);
    321        1.62  jdolecek 			return (EINVAL);
    322  1.103.4.11        ad 		}
    323        1.40     enami 
    324        1.17       cgd 		/*
    325        1.40     enami 		 * Stack is allocated to the max at exec time with
    326        1.40     enami 		 * only "rlim_cur" bytes accessible (In other words,
    327        1.40     enami 		 * allocates stack dividing two contiguous regions at
    328        1.40     enami 		 * "rlim_cur" bytes boundary).
    329        1.40     enami 		 *
    330        1.40     enami 		 * Since allocation is done in terms of page, roundup
    331        1.40     enami 		 * "rlim_cur" (otherwise, contiguous regions
    332        1.40     enami 		 * overlap).  If stack limit is going up make more
    333        1.40     enami 		 * accessible, if going down make inaccessible.
    334        1.17       cgd 		 */
    335        1.40     enami 		limp->rlim_cur = round_page(limp->rlim_cur);
    336        1.17       cgd 		if (limp->rlim_cur != alimp->rlim_cur) {
    337        1.48       eeh 			vaddr_t addr;
    338        1.48       eeh 			vsize_t size;
    339        1.17       cgd 			vm_prot_t prot;
    340        1.17       cgd 
    341        1.17       cgd 			if (limp->rlim_cur > alimp->rlim_cur) {
    342        1.73       chs 				prot = VM_PROT_READ | VM_PROT_WRITE;
    343        1.17       cgd 				size = limp->rlim_cur - alimp->rlim_cur;
    344        1.91      fvdl 				addr = (vaddr_t)p->p_vmspace->vm_minsaddr -
    345        1.91      fvdl 				    limp->rlim_cur;
    346        1.17       cgd 			} else {
    347        1.17       cgd 				prot = VM_PROT_NONE;
    348        1.17       cgd 				size = alimp->rlim_cur - limp->rlim_cur;
    349        1.91      fvdl 				addr = (vaddr_t)p->p_vmspace->vm_minsaddr -
    350        1.91      fvdl 				     alimp->rlim_cur;
    351        1.17       cgd 			}
    352        1.43       mrg 			(void) uvm_map_protect(&p->p_vmspace->vm_map,
    353       1.102        ad 			    addr, addr+size, prot, FALSE);
    354        1.17       cgd 		}
    355        1.17       cgd 		break;
    356        1.19       cgd 
    357        1.19       cgd 	case RLIMIT_NOFILE:
    358        1.19       cgd 		if (limp->rlim_cur > maxfiles)
    359        1.19       cgd 			limp->rlim_cur = maxfiles;
    360        1.19       cgd 		if (limp->rlim_max > maxfiles)
    361        1.19       cgd 			limp->rlim_max = maxfiles;
    362        1.19       cgd 		break;
    363        1.19       cgd 
    364        1.19       cgd 	case RLIMIT_NPROC:
    365        1.19       cgd 		if (limp->rlim_cur > maxproc)
    366        1.19       cgd 			limp->rlim_cur = maxproc;
    367        1.19       cgd 		if (limp->rlim_max > maxproc)
    368        1.19       cgd 			limp->rlim_max = maxproc;
    369        1.19       cgd 		break;
    370        1.17       cgd 	}
    371        1.17       cgd 	*alimp = *limp;
    372  1.103.4.11        ad 	mutex_exit(&p->p_mutex);
    373        1.17       cgd 	return (0);
    374        1.17       cgd }
    375        1.17       cgd 
    376        1.17       cgd /* ARGSUSED */
    377        1.25       cgd int
    378        1.98   thorpej sys_getrlimit(struct lwp *l, void *v, register_t *retval)
    379        1.30   thorpej {
    380        1.54  augustss 	struct sys_getrlimit_args /* {
    381        1.42   mycroft 		syscallarg(int) which;
    382        1.22       cgd 		syscallarg(struct rlimit *) rlp;
    383        1.30   thorpej 	} */ *uap = v;
    384        1.68   thorpej 	struct proc *p = l->l_proc;
    385        1.42   mycroft 	int which = SCARG(uap, which);
    386        1.17       cgd 
    387        1.67    itojun 	if ((u_int)which >= RLIM_NLIMITS)
    388        1.17       cgd 		return (EINVAL);
    389        1.42   mycroft 	return (copyout(&p->p_rlimit[which], SCARG(uap, rlp),
    390        1.46     perry 	    sizeof(struct rlimit)));
    391        1.17       cgd }
    392        1.17       cgd 
    393        1.17       cgd /*
    394        1.17       cgd  * Transform the running time and tick information in proc p into user,
    395        1.17       cgd  * system, and interrupt time usage.
    396   1.103.4.6        ad  *
    397   1.103.4.6        ad  * Should be called with p->p_smutex held unless called from exit1().
    398        1.17       cgd  */
    399        1.25       cgd void
    400        1.98   thorpej calcru(struct proc *p, struct timeval *up, struct timeval *sp,
    401   1.103.4.2        ad     struct timeval *ip, struct timeval *rp)
    402        1.17       cgd {
    403        1.54  augustss 	u_quad_t u, st, ut, it, tot;
    404        1.70       dsl 	unsigned long sec;
    405        1.70       dsl 	long usec;
    406   1.103.4.6        ad  	struct timeval tv;
    407        1.68   thorpej 	struct lwp *l;
    408        1.17       cgd 
    409   1.103.4.6        ad 	mutex_enter(&p->p_stmutex);
    410        1.17       cgd 	st = p->p_sticks;
    411        1.17       cgd 	ut = p->p_uticks;
    412        1.17       cgd 	it = p->p_iticks;
    413   1.103.4.6        ad 	mutex_exit(&p->p_stmutex);
    414   1.103.4.6        ad 
    415   1.103.4.6        ad 	sec = p->p_rtime.tv_sec;
    416   1.103.4.6        ad 	usec = p->p_rtime.tv_usec;
    417        1.17       cgd 
    418        1.70       dsl 	LIST_FOREACH(l, &p->p_lwps, l_sibling) {
    419   1.103.4.2        ad 		lwp_lock(l);
    420   1.103.4.2        ad 		sec += l->l_rtime.tv_sec;
    421   1.103.4.6        ad 		if ((usec += l->l_rtime.tv_usec) >= 1000000) {
    422   1.103.4.6        ad 			sec++;
    423   1.103.4.6        ad 			usec -= 1000000;
    424   1.103.4.6        ad 		}
    425   1.103.4.6        ad 		if (l->l_cpu == curcpu()) {
    426        1.68   thorpej 			struct schedstate_percpu *spc;
    427        1.87     perry 
    428        1.68   thorpej 			KDASSERT(l->l_cpu != NULL);
    429        1.68   thorpej 			spc = &l->l_cpu->ci_schedstate;
    430        1.87     perry 
    431        1.68   thorpej 			/*
    432        1.68   thorpej 			 * Adjust for the current time slice.  This is
    433        1.68   thorpej 			 * actually fairly important since the error
    434        1.68   thorpej 			 * here is on the order of a time quantum,
    435        1.68   thorpej 			 * which is much greater than the sampling
    436        1.87     perry 			 * error.
    437        1.68   thorpej 			 */
    438        1.68   thorpej 			microtime(&tv);
    439        1.68   thorpej 			sec += tv.tv_sec - spc->spc_runtime.tv_sec;
    440        1.68   thorpej 			usec += tv.tv_usec - spc->spc_runtime.tv_usec;
    441   1.103.4.6        ad 			if (usec >= 1000000) {
    442   1.103.4.6        ad 				sec++;
    443   1.103.4.6        ad 				usec -= 1000000;
    444   1.103.4.6        ad 			}
    445        1.68   thorpej 		}
    446   1.103.4.2        ad 		lwp_unlock(l);
    447        1.17       cgd 	}
    448        1.69       dsl 
    449        1.69       dsl 	tot = st + ut + it;
    450        1.70       dsl 	u = sec * 1000000ull + usec;
    451        1.70       dsl 
    452        1.69       dsl 	if (tot == 0) {
    453        1.69       dsl 		/* No ticks, so can't use to share time out, split 50-50 */
    454        1.70       dsl 		st = ut = u / 2;
    455        1.70       dsl 	} else {
    456        1.70       dsl 		st = (u * st) / tot;
    457        1.70       dsl 		ut = (u * ut) / tot;
    458        1.69       dsl 	}
    459   1.103.4.2        ad 	if (sp != NULL) {
    460   1.103.4.2        ad 		sp->tv_sec = st / 1000000;
    461   1.103.4.2        ad 		sp->tv_usec = st % 1000000;
    462   1.103.4.2        ad 	}
    463   1.103.4.2        ad 	if (up != NULL) {
    464   1.103.4.2        ad 		up->tv_sec = ut / 1000000;
    465   1.103.4.2        ad 		up->tv_usec = ut % 1000000;
    466   1.103.4.2        ad 	}
    467        1.17       cgd 	if (ip != NULL) {
    468        1.70       dsl 		if (it != 0)
    469        1.70       dsl 			it = (u * it) / tot;
    470        1.17       cgd 		ip->tv_sec = it / 1000000;
    471        1.17       cgd 		ip->tv_usec = it % 1000000;
    472        1.17       cgd 	}
    473   1.103.4.2        ad 	if (rp != NULL) {
    474   1.103.4.2        ad 		rp->tv_sec = sec;
    475   1.103.4.2        ad 		rp->tv_usec = usec;
    476   1.103.4.2        ad 	}
    477        1.17       cgd }
    478        1.17       cgd 
    479        1.17       cgd /* ARGSUSED */
    480        1.25       cgd int
    481        1.98   thorpej sys_getrusage(struct lwp *l, void *v, register_t *retval)
    482        1.30   thorpej {
    483        1.54  augustss 	struct sys_getrusage_args /* {
    484        1.22       cgd 		syscallarg(int) who;
    485        1.22       cgd 		syscallarg(struct rusage *) rusage;
    486        1.30   thorpej 	} */ *uap = v;
    487        1.54  augustss 	struct rusage *rup;
    488        1.68   thorpej 	struct proc *p = l->l_proc;
    489        1.17       cgd 
    490        1.22       cgd 	switch (SCARG(uap, who)) {
    491        1.17       cgd 
    492        1.19       cgd 	case RUSAGE_SELF:
    493        1.17       cgd 		rup = &p->p_stats->p_ru;
    494   1.103.4.3        ad 		mutex_enter(&p->p_smutex);
    495   1.103.4.2        ad 		calcru(p, &rup->ru_utime, &rup->ru_stime, NULL, NULL);
    496   1.103.4.3        ad 		mutex_exit(&p->p_smutex);
    497        1.17       cgd 		break;
    498        1.17       cgd 
    499        1.17       cgd 	case RUSAGE_CHILDREN:
    500        1.17       cgd 		rup = &p->p_stats->p_cru;
    501        1.17       cgd 		break;
    502        1.17       cgd 
    503        1.17       cgd 	default:
    504        1.17       cgd 		return (EINVAL);
    505        1.17       cgd 	}
    506        1.46     perry 	return (copyout(rup, SCARG(uap, rusage), sizeof(struct rusage)));
    507        1.17       cgd }
    508        1.17       cgd 
    509        1.25       cgd void
    510        1.98   thorpej ruadd(struct rusage *ru, struct rusage *ru2)
    511        1.17       cgd {
    512        1.54  augustss 	long *ip, *ip2;
    513        1.54  augustss 	int i;
    514        1.17       cgd 
    515        1.27   mycroft 	timeradd(&ru->ru_utime, &ru2->ru_utime, &ru->ru_utime);
    516        1.27   mycroft 	timeradd(&ru->ru_stime, &ru2->ru_stime, &ru->ru_stime);
    517        1.17       cgd 	if (ru->ru_maxrss < ru2->ru_maxrss)
    518        1.17       cgd 		ru->ru_maxrss = ru2->ru_maxrss;
    519        1.17       cgd 	ip = &ru->ru_first; ip2 = &ru2->ru_first;
    520        1.17       cgd 	for (i = &ru->ru_last - &ru->ru_first; i >= 0; i--)
    521        1.17       cgd 		*ip++ += *ip2++;
    522        1.17       cgd }
    523        1.17       cgd 
    524        1.17       cgd /*
    525        1.17       cgd  * Make a copy of the plimit structure.
    526        1.17       cgd  * We share these structures copy-on-write after fork,
    527        1.17       cgd  * and copy when a limit is changed.
    528  1.103.4.11        ad  *
    529  1.103.4.11        ad  * XXXSMP This is atrocious, need to simplify.
    530        1.17       cgd  */
    531        1.17       cgd struct plimit *
    532  1.103.4.11        ad limcopy(struct proc *p)
    533        1.17       cgd {
    534  1.103.4.11        ad 	struct plimit *lim, *newlim;
    535  1.103.4.11        ad 	char *corename;
    536  1.103.4.11        ad 	size_t l;
    537        1.83        pk 
    538  1.103.4.11        ad 	LOCK_ASSERT(mutex_owned(&p->p_mutex));
    539        1.17       cgd 
    540  1.103.4.11        ad 	mutex_exit(&p->p_mutex);
    541        1.49   thorpej 	newlim = pool_get(&plimit_pool, PR_WAITOK);
    542        1.83        pk 	simple_lock_init(&newlim->p_slock);
    543        1.83        pk 	newlim->p_lflags = 0;
    544        1.83        pk 	newlim->p_refcnt = 1;
    545  1.103.4.11        ad 	mutex_enter(&p->p_mutex);
    546        1.83        pk 
    547  1.103.4.11        ad 	for (;;) {
    548  1.103.4.11        ad 		lim = p->p_limit;
    549  1.103.4.11        ad 		simple_lock(&lim->p_slock);
    550  1.103.4.11        ad 		if (lim->pl_corename != defcorename) {
    551  1.103.4.11        ad 			l = strlen(lim->pl_corename) + 1;
    552        1.83        pk 
    553  1.103.4.11        ad 			simple_unlock(&lim->p_slock);
    554  1.103.4.11        ad 			mutex_exit(&p->p_mutex);
    555  1.103.4.11        ad 			corename = malloc(l, M_TEMP, M_WAITOK);
    556  1.103.4.11        ad 			mutex_enter(&p->p_mutex);
    557  1.103.4.11        ad 			simple_lock(&lim->p_slock);
    558  1.103.4.11        ad 
    559  1.103.4.11        ad 			if (l != strlen(lim->pl_corename) + 1) {
    560  1.103.4.11        ad 				simple_unlock(&lim->p_slock);
    561  1.103.4.11        ad 				mutex_exit(&p->p_mutex);
    562  1.103.4.11        ad 				free(corename, M_TEMP);
    563  1.103.4.11        ad 				mutex_enter(&p->p_mutex);
    564  1.103.4.11        ad 				continue;
    565  1.103.4.11        ad 			}
    566  1.103.4.11        ad 		} else
    567  1.103.4.11        ad 			l = 0;
    568  1.103.4.11        ad 
    569  1.103.4.11        ad 		memcpy(newlim->pl_rlimit, lim->pl_rlimit,
    570  1.103.4.11        ad 		    sizeof(struct rlimit) * RLIM_NLIMITS);
    571  1.103.4.11        ad 		if (l != 0)
    572  1.103.4.11        ad 			strlcpy(newlim->pl_corename, lim->pl_corename, l);
    573  1.103.4.11        ad 		else
    574  1.103.4.11        ad 			newlim->pl_corename = defcorename;
    575  1.103.4.11        ad 		simple_unlock(&lim->p_slock);
    576  1.103.4.11        ad 		break;
    577  1.103.4.11        ad 	}
    578        1.83        pk 
    579        1.32   mycroft 	return (newlim);
    580        1.32   mycroft }
    581        1.32   mycroft 
    582        1.32   mycroft void
    583        1.98   thorpej limfree(struct plimit *lim)
    584        1.32   mycroft {
    585        1.84  christos 	int n;
    586        1.85    kleink 
    587        1.83        pk 	simple_lock(&lim->p_slock);
    588        1.84  christos 	n = --lim->p_refcnt;
    589        1.83        pk 	simple_unlock(&lim->p_slock);
    590        1.83        pk 	if (n > 0)
    591        1.32   mycroft 		return;
    592        1.53    bouyer #ifdef DIAGNOSTIC
    593        1.83        pk 	if (n < 0)
    594        1.53    bouyer 		panic("limfree");
    595        1.53    bouyer #endif
    596        1.53    bouyer 	if (lim->pl_corename != defcorename)
    597        1.53    bouyer 		free(lim->pl_corename, M_TEMP);
    598        1.49   thorpej 	pool_put(&plimit_pool, lim);
    599        1.68   thorpej }
    600        1.68   thorpej 
    601        1.68   thorpej struct pstats *
    602        1.98   thorpej pstatscopy(struct pstats *ps)
    603        1.68   thorpej {
    604        1.87     perry 
    605        1.68   thorpej 	struct pstats *newps;
    606        1.68   thorpej 
    607        1.68   thorpej 	newps = pool_get(&pstats_pool, PR_WAITOK);
    608        1.68   thorpej 
    609        1.68   thorpej 	memset(&newps->pstat_startzero, 0,
    610        1.68   thorpej 	(unsigned) ((caddr_t)&newps->pstat_endzero -
    611        1.68   thorpej 		    (caddr_t)&newps->pstat_startzero));
    612        1.68   thorpej 	memcpy(&newps->pstat_startcopy, &ps->pstat_startcopy,
    613        1.68   thorpej 	((caddr_t)&newps->pstat_endcopy -
    614        1.68   thorpej 	 (caddr_t)&newps->pstat_startcopy));
    615        1.68   thorpej 
    616        1.68   thorpej 	return (newps);
    617        1.68   thorpej 
    618        1.68   thorpej }
    619        1.68   thorpej 
    620        1.68   thorpej void
    621        1.98   thorpej pstatsfree(struct pstats *ps)
    622        1.68   thorpej {
    623        1.68   thorpej 
    624        1.68   thorpej 	pool_put(&pstats_pool, ps);
    625        1.74    atatat }
    626        1.74    atatat 
    627        1.74    atatat /*
    628        1.74    atatat  * sysctl interface in five parts
    629        1.74    atatat  */
    630        1.74    atatat 
    631        1.74    atatat /*
    632        1.74    atatat  * a routine for sysctl proc subtree helpers that need to pick a valid
    633        1.74    atatat  * process by pid.
    634        1.74    atatat  */
    635        1.74    atatat static int
    636       1.102        ad sysctl_proc_findproc(struct lwp *l, struct proc **p2, pid_t pid)
    637        1.74    atatat {
    638        1.74    atatat 	struct proc *ptmp;
    639       1.101      elad 	int error = 0;
    640        1.74    atatat 
    641        1.74    atatat 	if (pid == PROC_CURPROC)
    642       1.102        ad 		ptmp = l->l_proc;
    643        1.74    atatat 	else if ((ptmp = pfind(pid)) == NULL)
    644        1.74    atatat 		error = ESRCH;
    645        1.74    atatat 
    646        1.74    atatat 	*p2 = ptmp;
    647        1.74    atatat 	return (error);
    648        1.74    atatat }
    649        1.74    atatat 
    650        1.74    atatat /*
    651        1.74    atatat  * sysctl helper routine for setting a process's specific corefile
    652        1.74    atatat  * name.  picks the process based on the given pid and checks the
    653        1.74    atatat  * correctness of the new value.
    654        1.74    atatat  */
    655        1.74    atatat static int
    656        1.74    atatat sysctl_proc_corename(SYSCTLFN_ARGS)
    657        1.74    atatat {
    658       1.102        ad 	struct proc *ptmp;
    659        1.83        pk 	struct plimit *lim;
    660        1.74    atatat 	int error = 0, len;
    661       1.100      yamt 	char *cname;
    662       1.100      yamt 	char *tmp;
    663        1.74    atatat 	struct sysctlnode node;
    664        1.74    atatat 
    665        1.74    atatat 	/*
    666        1.74    atatat 	 * is this all correct?
    667        1.74    atatat 	 */
    668        1.74    atatat 	if (namelen != 0)
    669        1.74    atatat 		return (EINVAL);
    670        1.74    atatat 	if (name[-1] != PROC_PID_CORENAME)
    671        1.74    atatat 		return (EINVAL);
    672        1.74    atatat 
    673        1.74    atatat 	/*
    674        1.74    atatat 	 * whom are we tweaking?
    675        1.74    atatat 	 */
    676       1.102        ad 	error = sysctl_proc_findproc(l, &ptmp, (pid_t)name[-2]);
    677        1.74    atatat 	if (error)
    678        1.74    atatat 		return (error);
    679        1.74    atatat 
    680   1.103.4.7        ad 	/* XXX this should be in p_find() */
    681   1.103.4.7        ad 	error = kauth_authorize_process(l->l_cred, KAUTH_PROCESS_CANSEE,
    682   1.103.4.7        ad 	    ptmp, NULL, NULL, NULL);
    683   1.103.4.7        ad 	if (error)
    684   1.103.4.7        ad 		return (error);
    685   1.103.4.7        ad 
    686       1.100      yamt 	cname = PNBUF_GET();
    687        1.74    atatat 	/*
    688        1.74    atatat 	 * let them modify a temporary copy of the core name
    689        1.74    atatat 	 */
    690        1.74    atatat 	node = *rnode;
    691       1.100      yamt 	strlcpy(cname, ptmp->p_limit->pl_corename, MAXPATHLEN);
    692        1.74    atatat 	node.sysctl_data = cname;
    693        1.74    atatat 	error = sysctl_lookup(SYSCTLFN_CALL(&node));
    694        1.74    atatat 
    695        1.74    atatat 	/*
    696        1.74    atatat 	 * if that failed, or they have nothing new to say, or we've
    697        1.74    atatat 	 * heard it before...
    698        1.74    atatat 	 */
    699        1.74    atatat 	if (error || newp == NULL ||
    700       1.100      yamt 	    strcmp(cname, ptmp->p_limit->pl_corename) == 0) {
    701       1.100      yamt 		goto done;
    702       1.100      yamt 	}
    703        1.74    atatat 
    704   1.103.4.7        ad 	error = kauth_authorize_process(l->l_cred, KAUTH_PROCESS_CORENAME,
    705   1.103.4.7        ad 	    ptmp, cname, NULL, NULL);
    706   1.103.4.7        ad 	if (error)
    707   1.103.4.7        ad 		return (error);
    708       1.103      elad 
    709        1.74    atatat 	/*
    710        1.74    atatat 	 * no error yet and cname now has the new core name in it.
    711        1.74    atatat 	 * let's see if it looks acceptable.  it must be either "core"
    712        1.74    atatat 	 * or end in ".core" or "/core".
    713        1.74    atatat 	 */
    714        1.74    atatat 	len = strlen(cname);
    715       1.100      yamt 	if (len < 4) {
    716       1.100      yamt 		error = EINVAL;
    717       1.100      yamt 	} else if (strcmp(cname + len - 4, "core") != 0) {
    718       1.100      yamt 		error = EINVAL;
    719       1.100      yamt 	} else if (len > 4 && cname[len - 5] != '/' && cname[len - 5] != '.') {
    720       1.100      yamt 		error = EINVAL;
    721       1.100      yamt 	}
    722       1.100      yamt 	if (error != 0) {
    723       1.100      yamt 		goto done;
    724       1.100      yamt 	}
    725        1.74    atatat 
    726        1.74    atatat 	/*
    727        1.74    atatat 	 * hmm...looks good.  now...where do we put it?
    728        1.74    atatat 	 */
    729        1.74    atatat 	tmp = malloc(len + 1, M_TEMP, M_WAITOK|M_CANFAIL);
    730       1.100      yamt 	if (tmp == NULL) {
    731       1.100      yamt 		error = ENOMEM;
    732       1.100      yamt 		goto done;
    733       1.100      yamt 	}
    734        1.74    atatat 	strlcpy(tmp, cname, len + 1);
    735        1.74    atatat 
    736  1.103.4.11        ad 	mutex_enter(&ptmp->p_mutex);
    737        1.83        pk 	lim = ptmp->p_limit;
    738        1.83        pk 	if (lim->p_refcnt > 1 && (lim->p_lflags & PL_SHAREMOD) == 0) {
    739  1.103.4.11        ad 		ptmp->p_limit = limcopy(ptmp);
    740        1.83        pk 		limfree(lim);
    741        1.83        pk 		lim = ptmp->p_limit;
    742        1.83        pk 	}
    743        1.83        pk 	if (lim->pl_corename != defcorename)
    744        1.83        pk 		free(lim->pl_corename, M_TEMP);
    745        1.83        pk 	lim->pl_corename = tmp;
    746  1.103.4.11        ad 	mutex_exit(&ptmp->p_mutex);
    747       1.100      yamt done:
    748       1.100      yamt 	PNBUF_PUT(cname);
    749       1.100      yamt 	return error;
    750        1.74    atatat }
    751        1.74    atatat 
    752        1.74    atatat /*
    753        1.74    atatat  * sysctl helper routine for checking/setting a process's stop flags,
    754        1.74    atatat  * one for fork and one for exec.
    755        1.74    atatat  */
    756        1.74    atatat static int
    757        1.74    atatat sysctl_proc_stop(SYSCTLFN_ARGS)
    758        1.74    atatat {
    759       1.102        ad 	struct proc *ptmp;
    760        1.74    atatat 	int i, f, error = 0;
    761        1.74    atatat 	struct sysctlnode node;
    762        1.74    atatat 
    763        1.74    atatat 	if (namelen != 0)
    764        1.74    atatat 		return (EINVAL);
    765        1.74    atatat 
    766       1.102        ad 	error = sysctl_proc_findproc(l, &ptmp, (pid_t)name[-2]);
    767        1.74    atatat 	if (error)
    768        1.74    atatat 		return (error);
    769        1.74    atatat 
    770   1.103.4.7        ad 	/* XXX this should be in p_find() */
    771   1.103.4.7        ad 	error = kauth_authorize_process(l->l_cred, KAUTH_PROCESS_CANSEE,
    772   1.103.4.7        ad 	    ptmp, NULL, NULL, NULL);
    773   1.103.4.7        ad 	if (error)
    774   1.103.4.7        ad 		return (error);
    775   1.103.4.7        ad 
    776        1.74    atatat 	switch (rnode->sysctl_num) {
    777        1.74    atatat 	case PROC_PID_STOPFORK:
    778   1.103.4.4        ad 		f = PS_STOPFORK;
    779        1.74    atatat 		break;
    780        1.74    atatat 	case PROC_PID_STOPEXEC:
    781   1.103.4.4        ad 		f = PS_STOPEXEC;
    782        1.74    atatat 		break;
    783        1.74    atatat 	case PROC_PID_STOPEXIT:
    784   1.103.4.4        ad 		f = PS_STOPEXIT;
    785        1.74    atatat 		break;
    786        1.74    atatat 	default:
    787        1.74    atatat 		return (EINVAL);
    788        1.74    atatat 	}
    789        1.74    atatat 
    790        1.74    atatat 	i = (ptmp->p_flag & f) ? 1 : 0;
    791        1.74    atatat 	node = *rnode;
    792        1.74    atatat 	node.sysctl_data = &i;
    793        1.74    atatat 	error = sysctl_lookup(SYSCTLFN_CALL(&node));
    794        1.74    atatat 	if (error || newp == NULL)
    795        1.74    atatat 		return (error);
    796        1.74    atatat 
    797   1.103.4.4        ad 	mutex_enter(&ptmp->p_smutex);
    798   1.103.4.7        ad 	error = kauth_authorize_process(l->l_cred, KAUTH_PROCESS_STOPFLAG,
    799   1.103.4.7        ad 	    ptmp, KAUTH_ARG(f), NULL, NULL);
    800   1.103.4.7        ad 	if (error)
    801   1.103.4.7        ad 		return (error);
    802        1.74    atatat 	if (i)
    803   1.103.4.4        ad 		ptmp->p_sflag |= f;
    804        1.74    atatat 	else
    805   1.103.4.4        ad 		ptmp->p_sflag &= ~f;
    806   1.103.4.4        ad 	mutex_exit(&ptmp->p_smutex);
    807        1.74    atatat 
    808        1.74    atatat 	return (0);
    809        1.74    atatat }
    810        1.74    atatat 
    811        1.74    atatat /*
    812        1.74    atatat  * sysctl helper routine for a process's rlimits as exposed by sysctl.
    813        1.74    atatat  */
    814        1.74    atatat static int
    815        1.74    atatat sysctl_proc_plimit(SYSCTLFN_ARGS)
    816        1.74    atatat {
    817       1.102        ad 	struct proc *ptmp;
    818        1.74    atatat 	u_int limitno;
    819        1.74    atatat 	int which, error = 0;
    820        1.74    atatat         struct rlimit alim;
    821        1.74    atatat 	struct sysctlnode node;
    822        1.74    atatat 
    823        1.74    atatat 	if (namelen != 0)
    824        1.74    atatat 		return (EINVAL);
    825        1.74    atatat 
    826        1.74    atatat 	which = name[-1];
    827        1.74    atatat 	if (which != PROC_PID_LIMIT_TYPE_SOFT &&
    828        1.74    atatat 	    which != PROC_PID_LIMIT_TYPE_HARD)
    829        1.74    atatat 		return (EINVAL);
    830        1.74    atatat 
    831        1.74    atatat 	limitno = name[-2] - 1;
    832        1.74    atatat 	if (limitno >= RLIM_NLIMITS)
    833        1.74    atatat 		return (EINVAL);
    834        1.74    atatat 
    835        1.74    atatat 	if (name[-3] != PROC_PID_LIMIT)
    836        1.74    atatat 		return (EINVAL);
    837        1.74    atatat 
    838       1.102        ad 	error = sysctl_proc_findproc(l, &ptmp, (pid_t)name[-4]);
    839        1.74    atatat 	if (error)
    840        1.74    atatat 		return (error);
    841        1.74    atatat 
    842   1.103.4.7        ad 	/* XXX this should be in p_find() */
    843   1.103.4.7        ad 	error = kauth_authorize_process(l->l_cred, KAUTH_PROCESS_CANSEE,
    844   1.103.4.7        ad 	    ptmp, NULL, NULL, NULL);
    845   1.103.4.7        ad 	if (error)
    846   1.103.4.7        ad 		return (error);
    847   1.103.4.7        ad 
    848        1.74    atatat 	node = *rnode;
    849        1.74    atatat 	memcpy(&alim, &ptmp->p_rlimit[limitno], sizeof(alim));
    850        1.74    atatat 	if (which == PROC_PID_LIMIT_TYPE_HARD)
    851        1.74    atatat 		node.sysctl_data = &alim.rlim_max;
    852        1.74    atatat 	else
    853        1.74    atatat 		node.sysctl_data = &alim.rlim_cur;
    854        1.74    atatat 
    855        1.74    atatat 	error = sysctl_lookup(SYSCTLFN_CALL(&node));
    856        1.74    atatat 	if (error || newp == NULL)
    857        1.74    atatat 		return (error);
    858        1.74    atatat 
    859       1.102        ad 	return (dosetrlimit(l, ptmp, limitno, &alim));
    860        1.74    atatat }
    861        1.74    atatat 
    862        1.74    atatat /*
    863        1.74    atatat  * and finally, the actually glue that sticks it to the tree
    864        1.74    atatat  */
    865        1.74    atatat SYSCTL_SETUP(sysctl_proc_setup, "sysctl proc subtree setup")
    866        1.74    atatat {
    867        1.74    atatat 
    868        1.76    atatat 	sysctl_createv(clog, 0, NULL, NULL,
    869        1.76    atatat 		       CTLFLAG_PERMANENT,
    870        1.74    atatat 		       CTLTYPE_NODE, "proc", NULL,
    871        1.74    atatat 		       NULL, 0, NULL, 0,
    872        1.74    atatat 		       CTL_PROC, CTL_EOL);
    873        1.76    atatat 	sysctl_createv(clog, 0, NULL, NULL,
    874        1.76    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_ANYNUMBER,
    875        1.78    atatat 		       CTLTYPE_NODE, "curproc",
    876        1.78    atatat 		       SYSCTL_DESCR("Per-process settings"),
    877        1.74    atatat 		       NULL, 0, NULL, 0,
    878        1.74    atatat 		       CTL_PROC, PROC_CURPROC, CTL_EOL);
    879        1.74    atatat 
    880        1.76    atatat 	sysctl_createv(clog, 0, NULL, NULL,
    881       1.103      elad 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE|CTLFLAG_ANYWRITE,
    882        1.78    atatat 		       CTLTYPE_STRING, "corename",
    883        1.78    atatat 		       SYSCTL_DESCR("Core file name"),
    884        1.74    atatat 		       sysctl_proc_corename, 0, NULL, MAXPATHLEN,
    885        1.74    atatat 		       CTL_PROC, PROC_CURPROC, PROC_PID_CORENAME, CTL_EOL);
    886        1.76    atatat 	sysctl_createv(clog, 0, NULL, NULL,
    887        1.76    atatat 		       CTLFLAG_PERMANENT,
    888        1.78    atatat 		       CTLTYPE_NODE, "rlimit",
    889        1.78    atatat 		       SYSCTL_DESCR("Process limits"),
    890        1.74    atatat 		       NULL, 0, NULL, 0,
    891        1.74    atatat 		       CTL_PROC, PROC_CURPROC, PROC_PID_LIMIT, CTL_EOL);
    892        1.74    atatat 
    893        1.74    atatat #define create_proc_plimit(s, n) do {					\
    894        1.76    atatat 	sysctl_createv(clog, 0, NULL, NULL,				\
    895        1.76    atatat 		       CTLFLAG_PERMANENT,				\
    896        1.78    atatat 		       CTLTYPE_NODE, s,					\
    897        1.78    atatat 		       SYSCTL_DESCR("Process " s " limits"),		\
    898        1.74    atatat 		       NULL, 0, NULL, 0,				\
    899        1.74    atatat 		       CTL_PROC, PROC_CURPROC, PROC_PID_LIMIT, n,	\
    900        1.74    atatat 		       CTL_EOL);					\
    901        1.76    atatat 	sysctl_createv(clog, 0, NULL, NULL,				\
    902        1.76    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE|CTLFLAG_ANYWRITE, \
    903        1.78    atatat 		       CTLTYPE_QUAD, "soft",				\
    904        1.78    atatat 		       SYSCTL_DESCR("Process soft " s " limit"),	\
    905        1.74    atatat 		       sysctl_proc_plimit, 0, NULL, 0,			\
    906        1.74    atatat 		       CTL_PROC, PROC_CURPROC, PROC_PID_LIMIT, n,	\
    907        1.74    atatat 		       PROC_PID_LIMIT_TYPE_SOFT, CTL_EOL);		\
    908        1.76    atatat 	sysctl_createv(clog, 0, NULL, NULL,				\
    909        1.76    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE|CTLFLAG_ANYWRITE, \
    910        1.78    atatat 		       CTLTYPE_QUAD, "hard",				\
    911        1.78    atatat 		       SYSCTL_DESCR("Process hard " s " limit"),	\
    912        1.74    atatat 		       sysctl_proc_plimit, 0, NULL, 0,			\
    913        1.74    atatat 		       CTL_PROC, PROC_CURPROC, PROC_PID_LIMIT, n,	\
    914        1.74    atatat 		       PROC_PID_LIMIT_TYPE_HARD, CTL_EOL);		\
    915        1.74    atatat 	} while (0/*CONSTCOND*/)
    916        1.74    atatat 
    917        1.74    atatat 	create_proc_plimit("cputime",		PROC_PID_LIMIT_CPU);
    918        1.74    atatat 	create_proc_plimit("filesize",		PROC_PID_LIMIT_FSIZE);
    919        1.74    atatat 	create_proc_plimit("datasize",		PROC_PID_LIMIT_DATA);
    920        1.74    atatat 	create_proc_plimit("stacksize",		PROC_PID_LIMIT_STACK);
    921        1.74    atatat 	create_proc_plimit("coredumpsize",	PROC_PID_LIMIT_CORE);
    922        1.74    atatat 	create_proc_plimit("memoryuse",		PROC_PID_LIMIT_RSS);
    923        1.74    atatat 	create_proc_plimit("memorylocked",	PROC_PID_LIMIT_MEMLOCK);
    924        1.74    atatat 	create_proc_plimit("maxproc",		PROC_PID_LIMIT_NPROC);
    925        1.74    atatat 	create_proc_plimit("descriptors",	PROC_PID_LIMIT_NOFILE);
    926        1.79  christos 	create_proc_plimit("sbsize",		PROC_PID_LIMIT_SBSIZE);
    927        1.74    atatat 
    928        1.74    atatat #undef create_proc_plimit
    929        1.74    atatat 
    930        1.76    atatat 	sysctl_createv(clog, 0, NULL, NULL,
    931        1.76    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE|CTLFLAG_ANYWRITE,
    932        1.78    atatat 		       CTLTYPE_INT, "stopfork",
    933        1.78    atatat 		       SYSCTL_DESCR("Stop process at fork(2)"),
    934        1.74    atatat 		       sysctl_proc_stop, 0, NULL, 0,
    935        1.74    atatat 		       CTL_PROC, PROC_CURPROC, PROC_PID_STOPFORK, CTL_EOL);
    936        1.76    atatat 	sysctl_createv(clog, 0, NULL, NULL,
    937        1.76    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE|CTLFLAG_ANYWRITE,
    938        1.78    atatat 		       CTLTYPE_INT, "stopexec",
    939        1.78    atatat 		       SYSCTL_DESCR("Stop process at execve(2)"),
    940        1.74    atatat 		       sysctl_proc_stop, 0, NULL, 0,
    941        1.74    atatat 		       CTL_PROC, PROC_CURPROC, PROC_PID_STOPEXEC, CTL_EOL);
    942        1.76    atatat 	sysctl_createv(clog, 0, NULL, NULL,
    943        1.76    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE|CTLFLAG_ANYWRITE,
    944        1.78    atatat 		       CTLTYPE_INT, "stopexit",
    945        1.78    atatat 		       SYSCTL_DESCR("Stop process before completing exit"),
    946        1.74    atatat 		       sysctl_proc_stop, 0, NULL, 0,
    947        1.74    atatat 		       CTL_PROC, PROC_CURPROC, PROC_PID_STOPEXIT, CTL_EOL);
    948        1.17       cgd }
    949        1.79  christos 
    950        1.88  christos struct uidinfo *
    951        1.88  christos uid_find(uid_t uid)
    952        1.79  christos {
    953        1.79  christos 	struct uidinfo *uip;
    954        1.90  christos 	struct uidinfo *newuip = NULL;
    955        1.79  christos 	struct uihashhead *uipp;
    956        1.79  christos 
    957        1.79  christos 	uipp = UIHASH(uid);
    958        1.79  christos 
    959        1.90  christos again:
    960        1.89  christos 	simple_lock(&uihashtbl_slock);
    961        1.79  christos 	LIST_FOREACH(uip, uipp, ui_hash)
    962        1.88  christos 		if (uip->ui_uid == uid) {
    963        1.88  christos 			simple_unlock(&uihashtbl_slock);
    964        1.90  christos 			if (newuip)
    965        1.90  christos 				free(newuip, M_PROC);
    966        1.79  christos 			return uip;
    967        1.88  christos 		}
    968        1.79  christos 
    969        1.90  christos 	if (newuip == NULL) {
    970        1.90  christos 		simple_unlock(&uihashtbl_slock);
    971        1.90  christos 		newuip = malloc(sizeof(*uip), M_PROC, M_WAITOK | M_ZERO);
    972        1.90  christos 		goto again;
    973        1.90  christos 	}
    974        1.90  christos 	uip = newuip;
    975        1.89  christos 
    976        1.79  christos 	LIST_INSERT_HEAD(uipp, uip, ui_hash);
    977        1.79  christos 	uip->ui_uid = uid;
    978        1.94  christos 	simple_lock_init(&uip->ui_slock);
    979        1.88  christos 	simple_unlock(&uihashtbl_slock);
    980        1.89  christos 
    981        1.79  christos 	return uip;
    982        1.79  christos }
    983        1.79  christos 
    984        1.79  christos /*
    985        1.79  christos  * Change the count associated with number of processes
    986        1.79  christos  * a given user is using.
    987        1.79  christos  */
    988        1.79  christos int
    989        1.79  christos chgproccnt(uid_t uid, int diff)
    990        1.79  christos {
    991        1.79  christos 	struct uidinfo *uip;
    992        1.96  christos 	int s;
    993        1.79  christos 
    994        1.79  christos 	if (diff == 0)
    995        1.79  christos 		return 0;
    996        1.79  christos 
    997        1.88  christos 	uip = uid_find(uid);
    998        1.96  christos 	UILOCK(uip, s);
    999        1.88  christos 	uip->ui_proccnt += diff;
   1000        1.88  christos 	KASSERT(uip->ui_proccnt >= 0);
   1001        1.96  christos 	UIUNLOCK(uip, s);
   1002        1.88  christos 	return uip->ui_proccnt;
   1003        1.79  christos }
   1004        1.79  christos 
   1005        1.79  christos int
   1006        1.97  christos chgsbsize(struct uidinfo *uip, u_long *hiwat, u_long to, rlim_t xmax)
   1007        1.79  christos {
   1008        1.79  christos 	rlim_t nsb;
   1009        1.96  christos 	int s;
   1010        1.79  christos 
   1011        1.96  christos 	UILOCK(uip, s);
   1012        1.80      yamt 	nsb = uip->ui_sbsize + to - *hiwat;
   1013        1.97  christos 	if (to > *hiwat && nsb > xmax) {
   1014        1.96  christos 		UIUNLOCK(uip, s);
   1015        1.95  christos 		splx(s);
   1016        1.88  christos 		return 0;
   1017        1.94  christos 	}
   1018        1.79  christos 	*hiwat = to;
   1019        1.79  christos 	uip->ui_sbsize = nsb;
   1020        1.79  christos 	KASSERT(uip->ui_sbsize >= 0);
   1021        1.96  christos 	UIUNLOCK(uip, s);
   1022        1.88  christos 	return 1;
   1023        1.79  christos }
   1024