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sysv_shm.c revision 1.138
      1  1.138      maxv /*	$NetBSD: sysv_shm.c,v 1.138 2019/08/23 10:22:14 maxv Exp $	*/
      2   1.52   thorpej 
      3   1.52   thorpej /*-
      4   1.96        ad  * Copyright (c) 1999, 2007 The NetBSD Foundation, Inc.
      5   1.52   thorpej  * All rights reserved.
      6   1.52   thorpej  *
      7   1.52   thorpej  * This code is derived from software contributed to The NetBSD Foundation
      8   1.52   thorpej  * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
      9  1.102        ad  * NASA Ames Research Center, and by Mindaugas Rasiukevicius.
     10   1.52   thorpej  *
     11   1.52   thorpej  * Redistribution and use in source and binary forms, with or without
     12   1.52   thorpej  * modification, are permitted provided that the following conditions
     13   1.52   thorpej  * are met:
     14   1.52   thorpej  * 1. Redistributions of source code must retain the above copyright
     15   1.52   thorpej  *    notice, this list of conditions and the following disclaimer.
     16   1.52   thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     17   1.52   thorpej  *    notice, this list of conditions and the following disclaimer in the
     18   1.52   thorpej  *    documentation and/or other materials provided with the distribution.
     19   1.52   thorpej  *
     20   1.52   thorpej  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     21   1.52   thorpej  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     22   1.52   thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     23   1.52   thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     24   1.52   thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     25   1.52   thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     26   1.52   thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     27   1.52   thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     28   1.52   thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     29   1.52   thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     30   1.52   thorpej  * POSSIBILITY OF SUCH DAMAGE.
     31   1.52   thorpej  */
     32   1.22       cgd 
     33   1.11   hpeyerl /*
     34   1.48   mycroft  * Copyright (c) 1994 Adam Glass and Charles M. Hannum.  All rights reserved.
     35   1.11   hpeyerl  *
     36   1.11   hpeyerl  * Redistribution and use in source and binary forms, with or without
     37   1.11   hpeyerl  * modification, are permitted provided that the following conditions
     38   1.11   hpeyerl  * are met:
     39   1.11   hpeyerl  * 1. Redistributions of source code must retain the above copyright
     40   1.11   hpeyerl  *    notice, this list of conditions and the following disclaimer.
     41   1.17   mycroft  * 2. Redistributions in binary form must reproduce the above copyright
     42   1.17   mycroft  *    notice, this list of conditions and the following disclaimer in the
     43   1.17   mycroft  *    documentation and/or other materials provided with the distribution.
     44   1.17   mycroft  * 3. All advertising materials mentioning features or use of this software
     45   1.17   mycroft  *    must display the following acknowledgement:
     46   1.48   mycroft  *	This product includes software developed by Adam Glass and Charles M.
     47   1.17   mycroft  *	Hannum.
     48   1.17   mycroft  * 4. The names of the authors may not be used to endorse or promote products
     49   1.11   hpeyerl  *    derived from this software without specific prior written permission.
     50   1.11   hpeyerl  *
     51   1.17   mycroft  * THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS OR
     52   1.17   mycroft  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     53   1.17   mycroft  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     54   1.17   mycroft  * IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT,
     55   1.17   mycroft  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     56   1.17   mycroft  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     57   1.17   mycroft  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     58   1.17   mycroft  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     59   1.17   mycroft  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     60   1.17   mycroft  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     61   1.11   hpeyerl  */
     62   1.62     lukem 
     63   1.62     lukem #include <sys/cdefs.h>
     64  1.138      maxv __KERNEL_RCSID(0, "$NetBSD: sysv_shm.c,v 1.138 2019/08/23 10:22:14 maxv Exp $");
     65   1.43       mrg 
     66  1.126  pgoyette #ifdef _KERNEL_OPT
     67  1.126  pgoyette #include "opt_sysv.h"
     68  1.126  pgoyette #endif
     69   1.11   hpeyerl 
     70   1.11   hpeyerl #include <sys/param.h>
     71   1.11   hpeyerl #include <sys/kernel.h>
     72  1.102        ad #include <sys/kmem.h>
     73   1.11   hpeyerl #include <sys/shm.h>
     74   1.96        ad #include <sys/mutex.h>
     75   1.11   hpeyerl #include <sys/mman.h>
     76   1.12   mycroft #include <sys/stat.h>
     77   1.56    simonb #include <sys/sysctl.h>
     78   1.56    simonb #include <sys/mount.h>		/* XXX for <sys/syscallargs.h> */
     79   1.56    simonb #include <sys/syscallargs.h>
     80   1.69  drochner #include <sys/queue.h>
     81   1.87      elad #include <sys/kauth.h>
     82   1.35  christos 
     83   1.60   thorpej #include <uvm/uvm_extern.h>
     84   1.75  christos #include <uvm/uvm_object.h>
     85   1.60   thorpej 
     86   1.69  drochner struct shmmap_entry {
     87   1.69  drochner 	SLIST_ENTRY(shmmap_entry) next;
     88   1.47       eeh 	vaddr_t va;
     89   1.11   hpeyerl 	int shmid;
     90   1.11   hpeyerl };
     91   1.11   hpeyerl 
     92  1.119     rmind int			shm_nused		__cacheline_aligned;
     93  1.119     rmind struct shmid_ds *	shmsegs			__read_mostly;
     94  1.119     rmind 
     95  1.119     rmind static kmutex_t		shm_lock		__cacheline_aligned;
     96  1.119     rmind static kcondvar_t *	shm_cv			__cacheline_aligned;
     97  1.119     rmind static int		shm_last_free		__cacheline_aligned;
     98  1.119     rmind static size_t		shm_committed		__cacheline_aligned;
     99  1.119     rmind static int		shm_use_phys		__read_mostly;
    100  1.102        ad 
    101  1.102        ad static kcondvar_t	shm_realloc_cv;
    102  1.102        ad static bool		shm_realloc_state;
    103  1.102        ad static u_int		shm_realloc_disable;
    104   1.69  drochner 
    105   1.69  drochner struct shmmap_state {
    106   1.69  drochner 	unsigned int nitems;
    107   1.69  drochner 	unsigned int nrefs;
    108   1.69  drochner 	SLIST_HEAD(, shmmap_entry) entries;
    109   1.69  drochner };
    110   1.69  drochner 
    111  1.127  pgoyette extern int kern_has_sysvshm;
    112  1.127  pgoyette 
    113  1.130  pgoyette SYSCTL_SETUP_PROTO(sysctl_ipc_shm_setup);
    114  1.130  pgoyette 
    115  1.102        ad #ifdef SHMDEBUG
    116  1.102        ad #define SHMPRINTF(a) printf a
    117  1.102        ad #else
    118  1.102        ad #define SHMPRINTF(a)
    119  1.102        ad #endif
    120  1.102        ad 
    121   1.92  christos static int shmrealloc(int);
    122   1.11   hpeyerl 
    123  1.102        ad /*
    124  1.138      maxv  * Find the shared memory segment permission by the index. Only used by
    125  1.138      maxv  * compat_linux to implement SHM_STAT.
    126  1.138      maxv  */
    127  1.138      maxv int
    128  1.138      maxv shm_find_segment_perm_by_index(int index, struct ipc_perm *perm)
    129  1.138      maxv {
    130  1.138      maxv 	struct shmid_ds *shmseg;
    131  1.138      maxv 
    132  1.138      maxv 	mutex_enter(&shm_lock);
    133  1.138      maxv 	if (index < 0 || index >= shminfo.shmmni) {
    134  1.138      maxv 		mutex_exit(&shm_lock);
    135  1.138      maxv 		return EINVAL;
    136  1.138      maxv 	}
    137  1.138      maxv 	shmseg = &shmsegs[index];
    138  1.138      maxv 	memcpy(perm, &shmseg->shm_perm, sizeof(*perm));
    139  1.138      maxv 	mutex_exit(&shm_lock);
    140  1.138      maxv 	return 0;
    141  1.138      maxv }
    142  1.138      maxv 
    143  1.138      maxv /*
    144  1.102        ad  * Find the shared memory segment by the identifier.
    145  1.102        ad  *  => must be called with shm_lock held;
    146  1.102        ad  */
    147   1.86   thorpej static struct shmid_ds *
    148   1.86   thorpej shm_find_segment_by_shmid(int shmid)
    149   1.11   hpeyerl {
    150   1.11   hpeyerl 	int segnum;
    151   1.11   hpeyerl 	struct shmid_ds *shmseg;
    152   1.11   hpeyerl 
    153  1.102        ad 	KASSERT(mutex_owned(&shm_lock));
    154  1.102        ad 
    155   1.11   hpeyerl 	segnum = IPCID_TO_IX(shmid);
    156   1.12   mycroft 	if (segnum < 0 || segnum >= shminfo.shmmni)
    157   1.11   hpeyerl 		return NULL;
    158   1.11   hpeyerl 	shmseg = &shmsegs[segnum];
    159   1.64      fvdl 	if ((shmseg->shm_perm.mode & SHMSEG_ALLOCATED) == 0)
    160   1.64      fvdl 		return NULL;
    161  1.102        ad 	if ((shmseg->shm_perm.mode &
    162  1.102        ad 	    (SHMSEG_REMOVED|SHMSEG_RMLINGER)) == SHMSEG_REMOVED)
    163   1.64      fvdl 		return NULL;
    164   1.64      fvdl 	if (shmseg->shm_perm._seq != IPCID_TO_SEQ(shmid))
    165   1.11   hpeyerl 		return NULL;
    166  1.102        ad 
    167   1.11   hpeyerl 	return shmseg;
    168   1.11   hpeyerl }
    169   1.11   hpeyerl 
    170  1.102        ad /*
    171  1.102        ad  * Free memory segment.
    172  1.102        ad  *  => must be called with shm_lock held;
    173  1.102        ad  */
    174   1.12   mycroft static void
    175  1.102        ad shm_free_segment(int segnum)
    176   1.12   mycroft {
    177  1.102        ad 	struct shmid_ds *shmseg;
    178  1.102        ad 	size_t size;
    179  1.102        ad 	bool wanted;
    180  1.102        ad 
    181  1.102        ad 	KASSERT(mutex_owned(&shm_lock));
    182   1.12   mycroft 
    183  1.102        ad 	shmseg = &shmsegs[segnum];
    184  1.102        ad 	SHMPRINTF(("shm freeing key 0x%lx seq 0x%x\n",
    185  1.102        ad 	    shmseg->shm_perm._key, shmseg->shm_perm._seq));
    186  1.102        ad 
    187  1.102        ad 	size = (shmseg->shm_segsz + PGOFSET) & ~PGOFSET;
    188  1.102        ad 	wanted = (shmseg->shm_perm.mode & SHMSEG_WANTED);
    189   1.85  christos 
    190   1.52   thorpej 	shmseg->_shm_internal = NULL;
    191   1.14   mycroft 	shm_committed -= btoc(size);
    192  1.102        ad 	shm_nused--;
    193   1.12   mycroft 	shmseg->shm_perm.mode = SHMSEG_FREE;
    194  1.102        ad 	shm_last_free = segnum;
    195  1.102        ad 	if (wanted == true)
    196  1.102        ad 		cv_broadcast(&shm_cv[segnum]);
    197   1.12   mycroft }
    198   1.12   mycroft 
    199  1.102        ad /*
    200  1.102        ad  * Delete entry from the shm map.
    201  1.102        ad  *  => must be called with shm_lock held;
    202  1.102        ad  */
    203  1.102        ad static struct uvm_object *
    204  1.102        ad shm_delete_mapping(struct shmmap_state *shmmap_s,
    205   1.86   thorpej     struct shmmap_entry *shmmap_se)
    206   1.11   hpeyerl {
    207  1.102        ad 	struct uvm_object *uobj = NULL;
    208   1.12   mycroft 	struct shmid_ds *shmseg;
    209   1.61       chs 	int segnum;
    210  1.102        ad 
    211  1.102        ad 	KASSERT(mutex_owned(&shm_lock));
    212   1.76  junyoung 
    213   1.69  drochner 	segnum = IPCID_TO_IX(shmmap_se->shmid);
    214   1.12   mycroft 	shmseg = &shmsegs[segnum];
    215   1.69  drochner 	SLIST_REMOVE(&shmmap_s->entries, shmmap_se, shmmap_entry, next);
    216   1.69  drochner 	shmmap_s->nitems--;
    217   1.88    kardel 	shmseg->shm_dtime = time_second;
    218   1.12   mycroft 	if ((--shmseg->shm_nattch <= 0) &&
    219   1.11   hpeyerl 	    (shmseg->shm_perm.mode & SHMSEG_REMOVED)) {
    220  1.102        ad 		uobj = shmseg->_shm_internal;
    221  1.102        ad 		shm_free_segment(segnum);
    222   1.11   hpeyerl 	}
    223  1.102        ad 
    224  1.102        ad 	return uobj;
    225   1.11   hpeyerl }
    226   1.11   hpeyerl 
    227   1.69  drochner /*
    228  1.102        ad  * Get a non-shared shm map for that vmspace.  Note, that memory
    229  1.102        ad  * allocation might be performed with lock held.
    230   1.69  drochner  */
    231   1.69  drochner static struct shmmap_state *
    232   1.69  drochner shmmap_getprivate(struct proc *p)
    233   1.69  drochner {
    234   1.69  drochner 	struct shmmap_state *oshmmap_s, *shmmap_s;
    235   1.69  drochner 	struct shmmap_entry *oshmmap_se, *shmmap_se;
    236   1.69  drochner 
    237  1.102        ad 	KASSERT(mutex_owned(&shm_lock));
    238  1.102        ad 
    239  1.102        ad 	/* 1. A shm map with refcnt = 1, used by ourselves, thus return */
    240   1.69  drochner 	oshmmap_s = (struct shmmap_state *)p->p_vmspace->vm_shm;
    241   1.69  drochner 	if (oshmmap_s && oshmmap_s->nrefs == 1)
    242  1.102        ad 		return oshmmap_s;
    243   1.69  drochner 
    244  1.102        ad 	/* 2. No shm map preset - create a fresh one */
    245  1.102        ad 	shmmap_s = kmem_zalloc(sizeof(struct shmmap_state), KM_SLEEP);
    246   1.69  drochner 	shmmap_s->nrefs = 1;
    247   1.69  drochner 	SLIST_INIT(&shmmap_s->entries);
    248   1.98  christos 	p->p_vmspace->vm_shm = (void *)shmmap_s;
    249   1.69  drochner 
    250  1.102        ad 	if (oshmmap_s == NULL)
    251  1.102        ad 		return shmmap_s;
    252  1.102        ad 
    253  1.102        ad 	SHMPRINTF(("shmmap_getprivate: vm %p split (%d entries), was used by %d\n",
    254  1.102        ad 	    p->p_vmspace, oshmmap_s->nitems, oshmmap_s->nrefs));
    255   1.69  drochner 
    256  1.102        ad 	/* 3. A shared shm map, copy to a fresh one and adjust refcounts */
    257   1.69  drochner 	SLIST_FOREACH(oshmmap_se, &oshmmap_s->entries, next) {
    258  1.119     rmind 		shmmap_se = kmem_alloc(sizeof(struct shmmap_entry), KM_SLEEP);
    259   1.69  drochner 		shmmap_se->va = oshmmap_se->va;
    260   1.69  drochner 		shmmap_se->shmid = oshmmap_se->shmid;
    261   1.69  drochner 		SLIST_INSERT_HEAD(&shmmap_s->entries, shmmap_se, next);
    262   1.69  drochner 	}
    263   1.69  drochner 	shmmap_s->nitems = oshmmap_s->nitems;
    264   1.69  drochner 	oshmmap_s->nrefs--;
    265  1.102        ad 
    266  1.102        ad 	return shmmap_s;
    267   1.69  drochner }
    268   1.69  drochner 
    269  1.102        ad /*
    270  1.102        ad  * Lock/unlock the memory.
    271  1.102        ad  *  => must be called with shm_lock held;
    272  1.102        ad  */
    273  1.135       chs static int
    274  1.135       chs shm_memlock(struct shmid_ds *shmseg, int shmid, int cmd)
    275   1.70  drochner {
    276  1.102        ad 	size_t size;
    277  1.102        ad 	int error;
    278  1.102        ad 
    279  1.102        ad 	KASSERT(mutex_owned(&shm_lock));
    280  1.102        ad 
    281  1.135       chs 	size = round_page(shmseg->shm_segsz);
    282  1.135       chs 
    283  1.135       chs 	if (cmd == SHM_LOCK && (shmseg->shm_perm.mode & SHMSEG_WIRED) == 0) {
    284  1.135       chs 		/* Wire the object and map, then tag it */
    285  1.135       chs 		error = uvm_obj_wirepages(shmseg->_shm_internal,
    286  1.135       chs 		    0, size, NULL);
    287  1.135       chs 		if (error)
    288  1.135       chs 			return EIO;
    289  1.135       chs 		shmseg->shm_perm.mode |= SHMSEG_WIRED;
    290  1.135       chs 
    291  1.135       chs 	} else if (cmd == SHM_UNLOCK &&
    292  1.135       chs 	    (shmseg->shm_perm.mode & SHMSEG_WIRED) != 0) {
    293  1.135       chs 		/* Unwire the object, then untag it */
    294  1.135       chs 		uvm_obj_unwirepages(shmseg->_shm_internal, 0, size);
    295  1.135       chs 		shmseg->shm_perm.mode &= ~SHMSEG_WIRED;
    296   1.70  drochner 	}
    297  1.102        ad 
    298   1.70  drochner 	return 0;
    299   1.70  drochner }
    300   1.70  drochner 
    301  1.102        ad /*
    302  1.102        ad  * Unmap shared memory.
    303  1.102        ad  */
    304   1.12   mycroft int
    305  1.101       dsl sys_shmdt(struct lwp *l, const struct sys_shmdt_args *uap, register_t *retval)
    306   1.32   thorpej {
    307  1.101       dsl 	/* {
    308   1.44    kleink 		syscallarg(const void *) shmaddr;
    309  1.101       dsl 	} */
    310   1.65   thorpej 	struct proc *p = l->l_proc;
    311  1.102        ad 	struct shmmap_state *shmmap_s1, *shmmap_s;
    312   1.69  drochner 	struct shmmap_entry *shmmap_se;
    313  1.102        ad 	struct uvm_object *uobj;
    314  1.102        ad 	struct shmid_ds *shmseg;
    315  1.102        ad 	size_t size;
    316   1.11   hpeyerl 
    317  1.102        ad 	mutex_enter(&shm_lock);
    318  1.102        ad 	/* In case of reallocation, we will wait for completion */
    319  1.102        ad 	while (__predict_false(shm_realloc_state))
    320  1.102        ad 		cv_wait(&shm_realloc_cv, &shm_lock);
    321  1.102        ad 
    322  1.102        ad 	shmmap_s1 = (struct shmmap_state *)p->p_vmspace->vm_shm;
    323  1.102        ad 	if (shmmap_s1 == NULL) {
    324  1.102        ad 		mutex_exit(&shm_lock);
    325   1.38  christos 		return EINVAL;
    326  1.102        ad 	}
    327   1.38  christos 
    328  1.102        ad 	/* Find the map entry */
    329  1.102        ad 	SLIST_FOREACH(shmmap_se, &shmmap_s1->entries, next)
    330  1.102        ad 		if (shmmap_se->va == (vaddr_t)SCARG(uap, shmaddr))
    331  1.102        ad 			break;
    332  1.102        ad 	if (shmmap_se == NULL) {
    333  1.102        ad 		mutex_exit(&shm_lock);
    334   1.70  drochner 		return EINVAL;
    335  1.102        ad 	}
    336   1.70  drochner 
    337  1.102        ad 	shmmap_s = shmmap_getprivate(p);
    338  1.102        ad 	if (shmmap_s != shmmap_s1) {
    339  1.102        ad 		/* Map has been copied, lookup entry in new map */
    340  1.102        ad 		SLIST_FOREACH(shmmap_se, &shmmap_s->entries, next)
    341  1.102        ad 			if (shmmap_se->va == (vaddr_t)SCARG(uap, shmaddr))
    342  1.102        ad 				break;
    343  1.102        ad 		if (shmmap_se == NULL) {
    344  1.102        ad 			mutex_exit(&shm_lock);
    345  1.102        ad 			return EINVAL;
    346  1.102        ad 		}
    347   1.70  drochner 	}
    348  1.102        ad 
    349  1.102        ad 	SHMPRINTF(("shmdt: vm %p: remove %d @%lx\n",
    350  1.102        ad 	    p->p_vmspace, shmmap_se->shmid, shmmap_se->va));
    351  1.102        ad 
    352  1.102        ad 	/* Delete the entry from shm map */
    353  1.102        ad 	uobj = shm_delete_mapping(shmmap_s, shmmap_se);
    354  1.102        ad 	shmseg = &shmsegs[IPCID_TO_IX(shmmap_se->shmid)];
    355  1.102        ad 	size = (shmseg->shm_segsz + PGOFSET) & ~PGOFSET;
    356  1.102        ad 	mutex_exit(&shm_lock);
    357  1.102        ad 
    358  1.102        ad 	uvm_deallocate(&p->p_vmspace->vm_map, shmmap_se->va, size);
    359  1.119     rmind 	if (uobj != NULL) {
    360  1.102        ad 		uao_detach(uobj);
    361  1.119     rmind 	}
    362  1.119     rmind 	kmem_free(shmmap_se, sizeof(struct shmmap_entry));
    363  1.102        ad 
    364   1.70  drochner 	return 0;
    365   1.11   hpeyerl }
    366   1.11   hpeyerl 
    367  1.102        ad /*
    368  1.102        ad  * Map shared memory.
    369  1.102        ad  */
    370   1.12   mycroft int
    371  1.101       dsl sys_shmat(struct lwp *l, const struct sys_shmat_args *uap, register_t *retval)
    372   1.32   thorpej {
    373  1.101       dsl 	/* {
    374   1.26       cgd 		syscallarg(int) shmid;
    375   1.44    kleink 		syscallarg(const void *) shmaddr;
    376   1.35  christos 		syscallarg(int) shmflg;
    377  1.101       dsl 	} */
    378   1.94     rmind 	int error, flags = 0;
    379   1.65   thorpej 	struct proc *p = l->l_proc;
    380   1.89        ad 	kauth_cred_t cred = l->l_cred;
    381   1.11   hpeyerl 	struct shmid_ds *shmseg;
    382   1.69  drochner 	struct shmmap_state *shmmap_s;
    383  1.102        ad 	struct shmmap_entry *shmmap_se;
    384   1.74  christos 	struct uvm_object *uobj;
    385  1.102        ad 	struct vmspace *vm;
    386   1.47       eeh 	vaddr_t attach_va;
    387   1.11   hpeyerl 	vm_prot_t prot;
    388   1.47       eeh 	vsize_t size;
    389  1.102        ad 
    390  1.102        ad 	/* Allocate a new map entry and set it */
    391  1.119     rmind 	shmmap_se = kmem_alloc(sizeof(struct shmmap_entry), KM_SLEEP);
    392  1.114     rmind 	shmmap_se->shmid = SCARG(uap, shmid);
    393  1.102        ad 
    394  1.102        ad 	mutex_enter(&shm_lock);
    395  1.102        ad 	/* In case of reallocation, we will wait for completion */
    396  1.102        ad 	while (__predict_false(shm_realloc_state))
    397  1.102        ad 		cv_wait(&shm_realloc_cv, &shm_lock);
    398   1.11   hpeyerl 
    399   1.78  jdolecek 	shmseg = shm_find_segment_by_shmid(SCARG(uap, shmid));
    400  1.102        ad 	if (shmseg == NULL) {
    401  1.102        ad 		error = EINVAL;
    402  1.102        ad 		goto err;
    403  1.102        ad 	}
    404   1.35  christos 	error = ipcperm(cred, &shmseg->shm_perm,
    405  1.102        ad 	    (SCARG(uap, shmflg) & SHM_RDONLY) ? IPC_R : IPC_R|IPC_W);
    406   1.35  christos 	if (error)
    407  1.102        ad 		goto err;
    408   1.69  drochner 
    409  1.102        ad 	vm = p->p_vmspace;
    410  1.102        ad 	shmmap_s = (struct shmmap_state *)vm->vm_shm;
    411  1.102        ad 	if (shmmap_s && shmmap_s->nitems >= shminfo.shmseg) {
    412  1.102        ad 		error = EMFILE;
    413  1.102        ad 		goto err;
    414  1.102        ad 	}
    415   1.69  drochner 
    416   1.53     ragge 	size = (shmseg->shm_segsz + PGOFSET) & ~PGOFSET;
    417   1.12   mycroft 	prot = VM_PROT_READ;
    418   1.78  jdolecek 	if ((SCARG(uap, shmflg) & SHM_RDONLY) == 0)
    419   1.12   mycroft 		prot |= VM_PROT_WRITE;
    420   1.78  jdolecek 	if (SCARG(uap, shmaddr)) {
    421   1.94     rmind 		flags |= UVM_FLAG_FIXED;
    422   1.78  jdolecek 		if (SCARG(uap, shmflg) & SHM_RND)
    423   1.26       cgd 			attach_va =
    424   1.78  jdolecek 			    (vaddr_t)SCARG(uap, shmaddr) & ~(SHMLBA-1);
    425   1.78  jdolecek 		else if (((vaddr_t)SCARG(uap, shmaddr) & (SHMLBA-1)) == 0)
    426   1.78  jdolecek 			attach_va = (vaddr_t)SCARG(uap, shmaddr);
    427  1.102        ad 		else {
    428  1.102        ad 			error = EINVAL;
    429  1.102        ad 			goto err;
    430  1.102        ad 		}
    431   1.12   mycroft 	} else {
    432  1.108     rmind 		/* This is just a hint to uvm_map() about where to put it. */
    433   1.83      fvdl 		attach_va = p->p_emul->e_vm_default_addr(p,
    434  1.131    martin 		    (vaddr_t)vm->vm_daddr, size,
    435  1.131    martin 		    p->p_vmspace->vm_map.flags & VM_MAP_TOPDOWN);
    436   1.11   hpeyerl 	}
    437  1.102        ad 
    438  1.102        ad 	/*
    439  1.102        ad 	 * Create a map entry, add it to the list and increase the counters.
    440  1.102        ad 	 * The lock will be dropped before the mapping, disable reallocation.
    441  1.102        ad 	 */
    442  1.102        ad 	shmmap_s = shmmap_getprivate(p);
    443  1.102        ad 	SLIST_INSERT_HEAD(&shmmap_s->entries, shmmap_se, next);
    444  1.102        ad 	shmmap_s->nitems++;
    445  1.102        ad 	shmseg->shm_lpid = p->p_pid;
    446  1.102        ad 	shmseg->shm_nattch++;
    447  1.102        ad 	shm_realloc_disable++;
    448  1.102        ad 
    449  1.102        ad 	/*
    450  1.136  riastrad 	 * Add a reference to the uvm object while we hold the
    451  1.136  riastrad 	 * shm_lock.
    452  1.102        ad 	 */
    453   1.80  jdolecek 	uobj = shmseg->_shm_internal;
    454  1.102        ad 	uao_reference(uobj);
    455  1.136  riastrad 	mutex_exit(&shm_lock);
    456  1.136  riastrad 
    457  1.136  riastrad 	/*
    458  1.136  riastrad 	 * Drop the shm_lock to map it into the address space, and lock
    459  1.136  riastrad 	 * the memory, if needed (XXX where does this lock memory?).
    460  1.136  riastrad 	 */
    461  1.102        ad 	error = uvm_map(&vm->vm_map, &attach_va, size, uobj, 0, 0,
    462   1.94     rmind 	    UVM_MAPFLAG(prot, prot, UVM_INH_SHARE, UVM_ADV_RANDOM, flags));
    463   1.92  christos 	if (error)
    464  1.102        ad 		goto err_detach;
    465   1.92  christos 
    466  1.102        ad 	/* Set the new address, and update the time */
    467  1.102        ad 	mutex_enter(&shm_lock);
    468   1.69  drochner 	shmmap_se->va = attach_va;
    469   1.88    kardel 	shmseg->shm_atime = time_second;
    470  1.102        ad 	shm_realloc_disable--;
    471  1.102        ad 	retval[0] = attach_va;
    472  1.102        ad 	SHMPRINTF(("shmat: vm %p: add %d @%lx\n",
    473  1.102        ad 	    p->p_vmspace, shmmap_se->shmid, attach_va));
    474  1.102        ad err:
    475  1.102        ad 	cv_broadcast(&shm_realloc_cv);
    476  1.102        ad 	mutex_exit(&shm_lock);
    477  1.119     rmind 	if (error && shmmap_se) {
    478  1.119     rmind 		kmem_free(shmmap_se, sizeof(struct shmmap_entry));
    479  1.119     rmind 	}
    480  1.102        ad 	return error;
    481   1.78  jdolecek 
    482  1.102        ad err_detach:
    483  1.102        ad 	uao_detach(uobj);
    484  1.102        ad 	mutex_enter(&shm_lock);
    485  1.102        ad 	uobj = shm_delete_mapping(shmmap_s, shmmap_se);
    486  1.102        ad 	shm_realloc_disable--;
    487  1.102        ad 	cv_broadcast(&shm_realloc_cv);
    488  1.102        ad 	mutex_exit(&shm_lock);
    489  1.119     rmind 	if (uobj != NULL) {
    490  1.102        ad 		uao_detach(uobj);
    491  1.119     rmind 	}
    492  1.119     rmind 	kmem_free(shmmap_se, sizeof(struct shmmap_entry));
    493   1.92  christos 	return error;
    494   1.11   hpeyerl }
    495   1.11   hpeyerl 
    496  1.102        ad /*
    497  1.102        ad  * Shared memory control operations.
    498  1.102        ad  */
    499   1.12   mycroft int
    500  1.115  christos sys___shmctl50(struct lwp *l, const struct sys___shmctl50_args *uap,
    501  1.115  christos     register_t *retval)
    502   1.32   thorpej {
    503  1.101       dsl 	/* {
    504   1.26       cgd 		syscallarg(int) shmid;
    505   1.26       cgd 		syscallarg(int) cmd;
    506   1.26       cgd 		syscallarg(struct shmid_ds *) buf;
    507  1.101       dsl 	} */
    508   1.52   thorpej 	struct shmid_ds shmbuf;
    509   1.52   thorpej 	int cmd, error;
    510   1.52   thorpej 
    511   1.52   thorpej 	cmd = SCARG(uap, cmd);
    512   1.52   thorpej 	if (cmd == IPC_SET) {
    513   1.52   thorpej 		error = copyin(SCARG(uap, buf), &shmbuf, sizeof(shmbuf));
    514   1.52   thorpej 		if (error)
    515  1.102        ad 			return error;
    516   1.52   thorpej 	}
    517   1.52   thorpej 
    518   1.89        ad 	error = shmctl1(l, SCARG(uap, shmid), cmd,
    519   1.52   thorpej 	    (cmd == IPC_SET || cmd == IPC_STAT) ? &shmbuf : NULL);
    520   1.52   thorpej 
    521   1.52   thorpej 	if (error == 0 && cmd == IPC_STAT)
    522   1.52   thorpej 		error = copyout(&shmbuf, SCARG(uap, buf), sizeof(shmbuf));
    523   1.52   thorpej 
    524  1.102        ad 	return error;
    525   1.52   thorpej }
    526   1.52   thorpej 
    527   1.52   thorpej int
    528   1.89        ad shmctl1(struct lwp *l, int shmid, int cmd, struct shmid_ds *shmbuf)
    529   1.52   thorpej {
    530  1.102        ad 	struct uvm_object *uobj = NULL;
    531   1.89        ad 	kauth_cred_t cred = l->l_cred;
    532   1.11   hpeyerl 	struct shmid_ds *shmseg;
    533   1.52   thorpej 	int error = 0;
    534  1.102        ad 
    535  1.102        ad 	mutex_enter(&shm_lock);
    536  1.102        ad 	/* In case of reallocation, we will wait for completion */
    537  1.102        ad 	while (__predict_false(shm_realloc_state))
    538  1.102        ad 		cv_wait(&shm_realloc_cv, &shm_lock);
    539   1.11   hpeyerl 
    540   1.78  jdolecek 	shmseg = shm_find_segment_by_shmid(shmid);
    541  1.102        ad 	if (shmseg == NULL) {
    542  1.102        ad 		mutex_exit(&shm_lock);
    543   1.11   hpeyerl 		return EINVAL;
    544  1.102        ad 	}
    545   1.92  christos 
    546   1.52   thorpej 	switch (cmd) {
    547   1.11   hpeyerl 	case IPC_STAT:
    548   1.35  christos 		if ((error = ipcperm(cred, &shmseg->shm_perm, IPC_R)) != 0)
    549  1.102        ad 			break;
    550  1.133       mrg 		memset(shmbuf, 0, sizeof *shmbuf);
    551  1.133       mrg 		shmbuf->shm_perm = shmseg->shm_perm;
    552  1.133       mrg 		shmbuf->shm_perm.mode &= 0777;
    553  1.133       mrg 		shmbuf->shm_segsz = shmseg->shm_segsz;
    554  1.133       mrg 		shmbuf->shm_lpid = shmseg->shm_lpid;
    555  1.133       mrg 		shmbuf->shm_cpid = shmseg->shm_cpid;
    556  1.133       mrg 		shmbuf->shm_nattch = shmseg->shm_nattch;
    557  1.133       mrg 		shmbuf->shm_atime = shmseg->shm_atime;
    558  1.133       mrg 		shmbuf->shm_dtime = shmseg->shm_dtime;
    559  1.133       mrg 		shmbuf->shm_ctime = shmseg->shm_ctime;
    560   1.11   hpeyerl 		break;
    561   1.11   hpeyerl 	case IPC_SET:
    562   1.35  christos 		if ((error = ipcperm(cred, &shmseg->shm_perm, IPC_M)) != 0)
    563  1.102        ad 			break;
    564   1.52   thorpej 		shmseg->shm_perm.uid = shmbuf->shm_perm.uid;
    565   1.52   thorpej 		shmseg->shm_perm.gid = shmbuf->shm_perm.gid;
    566   1.12   mycroft 		shmseg->shm_perm.mode =
    567   1.12   mycroft 		    (shmseg->shm_perm.mode & ~ACCESSPERMS) |
    568   1.52   thorpej 		    (shmbuf->shm_perm.mode & ACCESSPERMS);
    569   1.88    kardel 		shmseg->shm_ctime = time_second;
    570   1.11   hpeyerl 		break;
    571   1.11   hpeyerl 	case IPC_RMID:
    572   1.35  christos 		if ((error = ipcperm(cred, &shmseg->shm_perm, IPC_M)) != 0)
    573  1.102        ad 			break;
    574   1.52   thorpej 		shmseg->shm_perm._key = IPC_PRIVATE;
    575   1.12   mycroft 		shmseg->shm_perm.mode |= SHMSEG_REMOVED;
    576   1.12   mycroft 		if (shmseg->shm_nattch <= 0) {
    577  1.102        ad 			uobj = shmseg->_shm_internal;
    578  1.102        ad 			shm_free_segment(IPCID_TO_IX(shmid));
    579   1.11   hpeyerl 		}
    580   1.11   hpeyerl 		break;
    581   1.11   hpeyerl 	case SHM_LOCK:
    582   1.11   hpeyerl 	case SHM_UNLOCK:
    583  1.123      elad 		if ((error = kauth_authorize_system(cred,
    584  1.123      elad 		    KAUTH_SYSTEM_SYSVIPC,
    585  1.123      elad 		    (cmd == SHM_LOCK) ? KAUTH_REQ_SYSTEM_SYSVIPC_SHM_LOCK :
    586  1.123      elad 		    KAUTH_REQ_SYSTEM_SYSVIPC_SHM_UNLOCK, NULL, NULL, NULL)) != 0)
    587  1.102        ad 			break;
    588  1.135       chs 		error = shm_memlock(shmseg, shmid, cmd);
    589   1.92  christos 		break;
    590   1.11   hpeyerl 	default:
    591  1.102        ad 		error = EINVAL;
    592   1.11   hpeyerl 	}
    593  1.102        ad 
    594  1.102        ad 	mutex_exit(&shm_lock);
    595  1.102        ad 	if (uobj != NULL)
    596  1.102        ad 		uao_detach(uobj);
    597  1.102        ad 	return error;
    598   1.11   hpeyerl }
    599   1.11   hpeyerl 
    600  1.102        ad /*
    601  1.102        ad  * Try to take an already existing segment.
    602  1.102        ad  *  => must be called with shm_lock held;
    603  1.102        ad  *  => called from one place, thus, inline;
    604  1.102        ad  */
    605  1.102        ad static inline int
    606  1.101       dsl shmget_existing(struct lwp *l, const struct sys_shmget_args *uap, int mode,
    607  1.102        ad     register_t *retval)
    608   1.11   hpeyerl {
    609   1.12   mycroft 	struct shmid_ds *shmseg;
    610   1.89        ad 	kauth_cred_t cred = l->l_cred;
    611  1.102        ad 	int segnum, error;
    612  1.102        ad again:
    613  1.102        ad 	KASSERT(mutex_owned(&shm_lock));
    614  1.102        ad 
    615  1.102        ad 	/* Find segment by key */
    616  1.102        ad 	for (segnum = 0; segnum < shminfo.shmmni; segnum++)
    617  1.102        ad 		if ((shmsegs[segnum].shm_perm.mode & SHMSEG_ALLOCATED) &&
    618  1.102        ad 		    shmsegs[segnum].shm_perm._key == SCARG(uap, key))
    619  1.102        ad 			break;
    620  1.102        ad 	if (segnum == shminfo.shmmni) {
    621  1.102        ad 		/* Not found */
    622  1.102        ad 		return -1;
    623  1.102        ad 	}
    624   1.11   hpeyerl 
    625   1.11   hpeyerl 	shmseg = &shmsegs[segnum];
    626   1.16   mycroft 	if (shmseg->shm_perm.mode & SHMSEG_REMOVED) {
    627   1.16   mycroft 		/*
    628   1.16   mycroft 		 * This segment is in the process of being allocated.  Wait
    629   1.16   mycroft 		 * until it's done, and look the key up again (in case the
    630   1.16   mycroft 		 * allocation failed or it was freed).
    631   1.16   mycroft 		 */
    632   1.16   mycroft 		shmseg->shm_perm.mode |= SHMSEG_WANTED;
    633  1.102        ad 		error = cv_wait_sig(&shm_cv[segnum], &shm_lock);
    634   1.35  christos 		if (error)
    635   1.16   mycroft 			return error;
    636  1.102        ad 		goto again;
    637   1.16   mycroft 	}
    638  1.102        ad 
    639  1.113       erh 	/*
    640  1.113       erh 	 * First check the flags, to generate a useful error when a
    641  1.113       erh 	 * segment already exists.
    642  1.113       erh 	 */
    643  1.113       erh 	if ((SCARG(uap, shmflg) & (IPC_CREAT | IPC_EXCL)) ==
    644  1.113       erh 	    (IPC_CREAT | IPC_EXCL))
    645  1.113       erh 		return EEXIST;
    646  1.113       erh 
    647  1.113       erh 	/* Check the permission and segment size. */
    648  1.102        ad 	error = ipcperm(cred, &shmseg->shm_perm, mode);
    649  1.102        ad 	if (error)
    650   1.11   hpeyerl 		return error;
    651   1.26       cgd 	if (SCARG(uap, size) && SCARG(uap, size) > shmseg->shm_segsz)
    652   1.11   hpeyerl 		return EINVAL;
    653  1.102        ad 
    654   1.11   hpeyerl 	*retval = IXSEQ_TO_IPCID(segnum, shmseg->shm_perm);
    655   1.11   hpeyerl 	return 0;
    656   1.11   hpeyerl }
    657   1.11   hpeyerl 
    658  1.102        ad int
    659  1.102        ad sys_shmget(struct lwp *l, const struct sys_shmget_args *uap, register_t *retval)
    660   1.14   mycroft {
    661  1.102        ad 	/* {
    662  1.102        ad 		syscallarg(key_t) key;
    663  1.104     rmind 		syscallarg(size_t) size;
    664  1.102        ad 		syscallarg(int) shmflg;
    665  1.102        ad 	} */
    666  1.102        ad 	struct shmid_ds *shmseg;
    667   1.89        ad 	kauth_cred_t cred = l->l_cred;
    668  1.102        ad 	key_t key = SCARG(uap, key);
    669  1.104     rmind 	size_t size;
    670  1.104     rmind 	int error, mode, segnum;
    671  1.102        ad 	bool lockmem;
    672  1.102        ad 
    673  1.102        ad 	mode = SCARG(uap, shmflg) & ACCESSPERMS;
    674  1.102        ad 	if (SCARG(uap, shmflg) & _SHM_RMLINGER)
    675  1.102        ad 		mode |= SHMSEG_RMLINGER;
    676  1.102        ad 
    677  1.118  jakllsch 	SHMPRINTF(("shmget: key 0x%lx size 0x%zx shmflg 0x%x mode 0x%x\n",
    678  1.102        ad 	    SCARG(uap, key), SCARG(uap, size), SCARG(uap, shmflg), mode));
    679  1.102        ad 
    680  1.102        ad 	mutex_enter(&shm_lock);
    681  1.102        ad 	/* In case of reallocation, we will wait for completion */
    682  1.102        ad 	while (__predict_false(shm_realloc_state))
    683  1.102        ad 		cv_wait(&shm_realloc_cv, &shm_lock);
    684  1.102        ad 
    685  1.102        ad 	if (key != IPC_PRIVATE) {
    686  1.102        ad 		error = shmget_existing(l, uap, mode, retval);
    687  1.102        ad 		if (error != -1) {
    688  1.102        ad 			mutex_exit(&shm_lock);
    689  1.102        ad 			return error;
    690  1.102        ad 		}
    691  1.102        ad 		if ((SCARG(uap, shmflg) & IPC_CREAT) == 0) {
    692  1.102        ad 			mutex_exit(&shm_lock);
    693  1.102        ad 			return ENOENT;
    694  1.102        ad 		}
    695  1.102        ad 	}
    696  1.102        ad 	error = 0;
    697   1.76  junyoung 
    698  1.102        ad 	/*
    699  1.102        ad 	 * Check the for the limits.
    700  1.102        ad 	 */
    701  1.102        ad 	size = SCARG(uap, size);
    702  1.102        ad 	if (size < shminfo.shmmin || size > shminfo.shmmax) {
    703  1.102        ad 		mutex_exit(&shm_lock);
    704   1.14   mycroft 		return EINVAL;
    705  1.102        ad 	}
    706  1.102        ad 	if (shm_nused >= shminfo.shmmni) {
    707  1.102        ad 		mutex_exit(&shm_lock);
    708   1.14   mycroft 		return ENOSPC;
    709  1.102        ad 	}
    710  1.135       chs 	size = round_page(size);
    711  1.102        ad 	if (shm_committed + btoc(size) > shminfo.shmall) {
    712  1.102        ad 		mutex_exit(&shm_lock);
    713   1.14   mycroft 		return ENOMEM;
    714  1.102        ad 	}
    715  1.102        ad 
    716  1.102        ad 	/* Find the first available segment */
    717   1.14   mycroft 	if (shm_last_free < 0) {
    718  1.102        ad 		for (segnum = 0; segnum < shminfo.shmmni; segnum++)
    719  1.102        ad 			if (shmsegs[segnum].shm_perm.mode & SHMSEG_FREE)
    720   1.14   mycroft 				break;
    721  1.102        ad 		KASSERT(segnum < shminfo.shmmni);
    722  1.102        ad 	} else {
    723   1.14   mycroft 		segnum = shm_last_free;
    724   1.14   mycroft 		shm_last_free = -1;
    725   1.14   mycroft 	}
    726  1.102        ad 
    727  1.102        ad 	/*
    728  1.102        ad 	 * Initialize the segment.
    729  1.102        ad 	 * We will drop the lock while allocating the memory, thus mark the
    730  1.102        ad 	 * segment present, but removed, that no other thread could take it.
    731  1.102        ad 	 * Also, disable reallocation, while lock is dropped.
    732  1.102        ad 	 */
    733   1.14   mycroft 	shmseg = &shmsegs[segnum];
    734  1.102        ad 	shmseg->shm_perm.mode = SHMSEG_ALLOCATED | SHMSEG_REMOVED;
    735  1.102        ad 	shm_committed += btoc(size);
    736  1.102        ad 	shm_nused++;
    737  1.102        ad 	lockmem = shm_use_phys;
    738  1.102        ad 	shm_realloc_disable++;
    739  1.102        ad 	mutex_exit(&shm_lock);
    740  1.102        ad 
    741  1.102        ad 	/* Allocate the memory object and lock it if needed */
    742  1.102        ad 	shmseg->_shm_internal = uao_create(size, 0);
    743  1.102        ad 	if (lockmem) {
    744  1.102        ad 		/* Wire the pages and tag it */
    745  1.122  christos 		error = uvm_obj_wirepages(shmseg->_shm_internal, 0, size, NULL);
    746  1.102        ad 		if (error) {
    747  1.108     rmind 			uao_detach(shmseg->_shm_internal);
    748  1.102        ad 			mutex_enter(&shm_lock);
    749  1.102        ad 			shm_free_segment(segnum);
    750  1.102        ad 			shm_realloc_disable--;
    751  1.102        ad 			mutex_exit(&shm_lock);
    752  1.102        ad 			return error;
    753  1.102        ad 		}
    754  1.102        ad 	}
    755  1.102        ad 
    756   1.14   mycroft 	/*
    757  1.102        ad 	 * Please note, while segment is marked, there are no need to hold the
    758  1.102        ad 	 * lock, while setting it (except shm_perm.mode).
    759   1.14   mycroft 	 */
    760   1.52   thorpej 	shmseg->shm_perm._key = SCARG(uap, key);
    761   1.52   thorpej 	shmseg->shm_perm._seq = (shmseg->shm_perm._seq + 1) & 0x7fff;
    762  1.102        ad 	*retval = IXSEQ_TO_IPCID(segnum, shmseg->shm_perm);
    763   1.42       mrg 
    764   1.87      elad 	shmseg->shm_perm.cuid = shmseg->shm_perm.uid = kauth_cred_geteuid(cred);
    765   1.87      elad 	shmseg->shm_perm.cgid = shmseg->shm_perm.gid = kauth_cred_getegid(cred);
    766   1.26       cgd 	shmseg->shm_segsz = SCARG(uap, size);
    767   1.89        ad 	shmseg->shm_cpid = l->l_proc->p_pid;
    768   1.14   mycroft 	shmseg->shm_lpid = shmseg->shm_nattch = 0;
    769   1.14   mycroft 	shmseg->shm_atime = shmseg->shm_dtime = 0;
    770   1.88    kardel 	shmseg->shm_ctime = time_second;
    771   1.40  drochner 
    772  1.102        ad 	/*
    773  1.102        ad 	 * Segment is initialized.
    774  1.102        ad 	 * Enter the lock, mark as allocated, and notify waiters (if any).
    775  1.102        ad 	 * Also, unmark the state of reallocation.
    776  1.102        ad 	 */
    777  1.102        ad 	mutex_enter(&shm_lock);
    778  1.102        ad 	shmseg->shm_perm.mode = (shmseg->shm_perm.mode & SHMSEG_WANTED) |
    779  1.102        ad 	    (mode & (ACCESSPERMS | SHMSEG_RMLINGER)) |
    780  1.102        ad 	    SHMSEG_ALLOCATED | (lockmem ? SHMSEG_WIRED : 0);
    781   1.16   mycroft 	if (shmseg->shm_perm.mode & SHMSEG_WANTED) {
    782   1.16   mycroft 		shmseg->shm_perm.mode &= ~SHMSEG_WANTED;
    783  1.102        ad 		cv_broadcast(&shm_cv[segnum]);
    784   1.92  christos 	}
    785  1.102        ad 	shm_realloc_disable--;
    786  1.102        ad 	cv_broadcast(&shm_realloc_cv);
    787  1.102        ad 	mutex_exit(&shm_lock);
    788   1.92  christos 
    789   1.40  drochner 	return error;
    790   1.14   mycroft }
    791   1.14   mycroft 
    792   1.12   mycroft void
    793   1.86   thorpej shmfork(struct vmspace *vm1, struct vmspace *vm2)
    794   1.11   hpeyerl {
    795   1.11   hpeyerl 	struct shmmap_state *shmmap_s;
    796   1.69  drochner 	struct shmmap_entry *shmmap_se;
    797   1.69  drochner 
    798  1.102        ad 	SHMPRINTF(("shmfork %p->%p\n", vm1, vm2));
    799  1.102        ad 	mutex_enter(&shm_lock);
    800   1.69  drochner 	vm2->vm_shm = vm1->vm_shm;
    801  1.102        ad 	if (vm1->vm_shm) {
    802  1.102        ad 		shmmap_s = (struct shmmap_state *)vm1->vm_shm;
    803  1.102        ad 		SLIST_FOREACH(shmmap_se, &shmmap_s->entries, next)
    804  1.102        ad 			shmsegs[IPCID_TO_IX(shmmap_se->shmid)].shm_nattch++;
    805  1.102        ad 		shmmap_s->nrefs++;
    806  1.102        ad 	}
    807  1.102        ad 	mutex_exit(&shm_lock);
    808   1.11   hpeyerl }
    809   1.11   hpeyerl 
    810   1.12   mycroft void
    811   1.86   thorpej shmexit(struct vmspace *vm)
    812   1.11   hpeyerl {
    813   1.12   mycroft 	struct shmmap_state *shmmap_s;
    814   1.69  drochner 	struct shmmap_entry *shmmap_se;
    815  1.102        ad 
    816  1.102        ad 	mutex_enter(&shm_lock);
    817   1.41   thorpej 	shmmap_s = (struct shmmap_state *)vm->vm_shm;
    818  1.102        ad 	if (shmmap_s == NULL) {
    819  1.102        ad 		mutex_exit(&shm_lock);
    820   1.38  christos 		return;
    821  1.102        ad 	}
    822   1.41   thorpej 	vm->vm_shm = NULL;
    823   1.69  drochner 
    824   1.69  drochner 	if (--shmmap_s->nrefs > 0) {
    825  1.102        ad 		SHMPRINTF(("shmexit: vm %p drop ref (%d entries), refs = %d\n",
    826  1.102        ad 		    vm, shmmap_s->nitems, shmmap_s->nrefs));
    827  1.117     rmind 		SLIST_FOREACH(shmmap_se, &shmmap_s->entries, next) {
    828   1.69  drochner 			shmsegs[IPCID_TO_IX(shmmap_se->shmid)].shm_nattch--;
    829  1.117     rmind 		}
    830  1.102        ad 		mutex_exit(&shm_lock);
    831  1.102        ad 		return;
    832  1.102        ad 	}
    833  1.102        ad 
    834  1.117     rmind 	SHMPRINTF(("shmexit: vm %p cleanup (%d entries)\n", vm, shmmap_s->nitems));
    835  1.117     rmind 	if (shmmap_s->nitems == 0) {
    836  1.117     rmind 		mutex_exit(&shm_lock);
    837  1.102        ad 		kmem_free(shmmap_s, sizeof(struct shmmap_state));
    838   1.69  drochner 		return;
    839   1.69  drochner 	}
    840   1.69  drochner 
    841  1.117     rmind 	/*
    842  1.117     rmind 	 * Delete the entry from shm map.
    843  1.117     rmind 	 */
    844  1.117     rmind 	for (;;) {
    845  1.102        ad 		struct shmid_ds *shmseg;
    846  1.117     rmind 		struct uvm_object *uobj;
    847  1.117     rmind 		size_t sz;
    848  1.102        ad 
    849   1.69  drochner 		shmmap_se = SLIST_FIRST(&shmmap_s->entries);
    850  1.117     rmind 		KASSERT(shmmap_se != NULL);
    851  1.117     rmind 
    852  1.102        ad 		shmseg = &shmsegs[IPCID_TO_IX(shmmap_se->shmid)];
    853  1.117     rmind 		sz = (shmseg->shm_segsz + PGOFSET) & ~PGOFSET;
    854  1.117     rmind 		/* shm_delete_mapping() removes from the list. */
    855  1.117     rmind 		uobj = shm_delete_mapping(shmmap_s, shmmap_se);
    856  1.117     rmind 		mutex_exit(&shm_lock);
    857  1.102        ad 
    858  1.117     rmind 		uvm_deallocate(&vm->vm_map, shmmap_se->va, sz);
    859  1.117     rmind 		if (uobj != NULL) {
    860  1.117     rmind 			uao_detach(uobj);
    861  1.117     rmind 		}
    862  1.119     rmind 		kmem_free(shmmap_se, sizeof(struct shmmap_entry));
    863  1.117     rmind 
    864  1.117     rmind 		if (SLIST_EMPTY(&shmmap_s->entries)) {
    865  1.117     rmind 			break;
    866  1.117     rmind 		}
    867  1.117     rmind 		mutex_enter(&shm_lock);
    868  1.117     rmind 		KASSERT(!SLIST_EMPTY(&shmmap_s->entries));
    869  1.102        ad 	}
    870  1.102        ad 	kmem_free(shmmap_s, sizeof(struct shmmap_state));
    871   1.11   hpeyerl }
    872   1.11   hpeyerl 
    873   1.92  christos static int
    874   1.92  christos shmrealloc(int newshmni)
    875   1.92  christos {
    876   1.92  christos 	vaddr_t v;
    877  1.102        ad 	struct shmid_ds *oldshmsegs, *newshmsegs;
    878  1.110        ad 	kcondvar_t *newshm_cv, *oldshm_cv;
    879  1.104     rmind 	size_t sz;
    880  1.110        ad 	int i, lsegid, oldshmni;
    881   1.92  christos 
    882   1.92  christos 	if (newshmni < 1)
    883   1.92  christos 		return EINVAL;
    884   1.92  christos 
    885   1.92  christos 	/* Allocate new memory area */
    886  1.102        ad 	sz = ALIGN(newshmni * sizeof(struct shmid_ds)) +
    887  1.104     rmind 	    ALIGN(newshmni * sizeof(kcondvar_t));
    888  1.121  uebayasi 	sz = round_page(sz);
    889  1.121  uebayasi 	v = uvm_km_alloc(kernel_map, sz, 0, UVM_KMF_WIRED|UVM_KMF_ZERO);
    890   1.92  christos 	if (v == 0)
    891   1.92  christos 		return ENOMEM;
    892   1.92  christos 
    893  1.102        ad 	mutex_enter(&shm_lock);
    894  1.102        ad 	while (shm_realloc_state || shm_realloc_disable)
    895  1.102        ad 		cv_wait(&shm_realloc_cv, &shm_lock);
    896  1.102        ad 
    897  1.102        ad 	/*
    898  1.102        ad 	 * Get the number of last segment.  Fail we are trying to
    899  1.102        ad 	 * reallocate less memory than we use.
    900  1.104     rmind 	 */
    901  1.102        ad 	lsegid = 0;
    902  1.102        ad 	for (i = 0; i < shminfo.shmmni; i++)
    903  1.102        ad 		if ((shmsegs[i].shm_perm.mode & SHMSEG_FREE) == 0)
    904  1.102        ad 			lsegid = i;
    905  1.102        ad 	if (lsegid >= newshmni) {
    906  1.102        ad 		mutex_exit(&shm_lock);
    907  1.102        ad 		uvm_km_free(kernel_map, v, sz, UVM_KMF_WIRED);
    908  1.102        ad 		return EBUSY;
    909  1.102        ad 	}
    910  1.102        ad 	shm_realloc_state = true;
    911  1.102        ad 
    912   1.92  christos 	newshmsegs = (void *)v;
    913  1.111     rmind 	newshm_cv = (void *)((uintptr_t)newshmsegs +
    914  1.111     rmind 	    ALIGN(newshmni * sizeof(struct shmid_ds)));
    915   1.92  christos 
    916   1.92  christos 	/* Copy all memory to the new area */
    917  1.125     njoly 	for (i = 0; i < shm_nused; i++) {
    918  1.125     njoly 		cv_init(&newshm_cv[i], "shmwait");
    919   1.92  christos 		(void)memcpy(&newshmsegs[i], &shmsegs[i],
    920   1.92  christos 		    sizeof(newshmsegs[0]));
    921  1.125     njoly 	}
    922   1.92  christos 
    923   1.92  christos 	/* Mark as free all new segments, if there is any */
    924   1.92  christos 	for (; i < newshmni; i++) {
    925  1.102        ad 		cv_init(&newshm_cv[i], "shmwait");
    926   1.92  christos 		newshmsegs[i].shm_perm.mode = SHMSEG_FREE;
    927   1.92  christos 		newshmsegs[i].shm_perm._seq = 0;
    928   1.92  christos 	}
    929   1.92  christos 
    930  1.102        ad 	oldshmsegs = shmsegs;
    931  1.110        ad 	oldshmni = shminfo.shmmni;
    932  1.102        ad 	shminfo.shmmni = newshmni;
    933   1.92  christos 	shmsegs = newshmsegs;
    934  1.102        ad 	shm_cv = newshm_cv;
    935  1.102        ad 
    936  1.102        ad 	/* Reallocation completed - notify all waiters, if any */
    937  1.102        ad 	shm_realloc_state = false;
    938  1.102        ad 	cv_broadcast(&shm_realloc_cv);
    939  1.102        ad 	mutex_exit(&shm_lock);
    940   1.92  christos 
    941  1.110        ad 	/* Release now unused resources. */
    942  1.111     rmind 	oldshm_cv = (void *)((uintptr_t)oldshmsegs +
    943  1.111     rmind 	    ALIGN(oldshmni * sizeof(struct shmid_ds)));
    944  1.110        ad 	for (i = 0; i < oldshmni; i++)
    945  1.110        ad 		cv_destroy(&oldshm_cv[i]);
    946  1.110        ad 
    947  1.110        ad 	sz = ALIGN(oldshmni * sizeof(struct shmid_ds)) +
    948  1.110        ad 	    ALIGN(oldshmni * sizeof(kcondvar_t));
    949  1.121  uebayasi 	sz = round_page(sz);
    950  1.102        ad 	uvm_km_free(kernel_map, (vaddr_t)oldshmsegs, sz, UVM_KMF_WIRED);
    951  1.110        ad 
    952   1.92  christos 	return 0;
    953   1.92  christos }
    954   1.92  christos 
    955  1.134  pgoyette int
    956  1.137  pgoyette shminit(void)
    957   1.11   hpeyerl {
    958   1.71  jdolecek 	vaddr_t v;
    959  1.104     rmind 	size_t sz;
    960  1.104     rmind 	int i;
    961   1.71  jdolecek 
    962   1.96        ad 	mutex_init(&shm_lock, MUTEX_DEFAULT, IPL_NONE);
    963  1.102        ad 	cv_init(&shm_realloc_cv, "shmrealc");
    964  1.102        ad 
    965  1.102        ad 	/* Allocate the wired memory for our structures */
    966  1.102        ad 	sz = ALIGN(shminfo.shmmni * sizeof(struct shmid_ds)) +
    967  1.102        ad 	    ALIGN(shminfo.shmmni * sizeof(kcondvar_t));
    968  1.121  uebayasi 	sz = round_page(sz);
    969  1.121  uebayasi 	v = uvm_km_alloc(kernel_map, sz, 0, UVM_KMF_WIRED|UVM_KMF_ZERO);
    970  1.134  pgoyette 	if (v == 0) {
    971  1.134  pgoyette 		printf("sysv_shm: cannot allocate memory");
    972  1.134  pgoyette 		return ENOMEM;
    973  1.134  pgoyette 	}
    974   1.71  jdolecek 	shmsegs = (void *)v;
    975  1.111     rmind 	shm_cv = (void *)((uintptr_t)shmsegs +
    976  1.111     rmind 	    ALIGN(shminfo.shmmni * sizeof(struct shmid_ds)));
    977   1.24   deraadt 
    978  1.116     joerg 	if (shminfo.shmmax == 0)
    979  1.132  riastrad 		shminfo.shmmax = uimax(physmem / 4, 1024) * PAGE_SIZE;
    980  1.116     joerg 	else
    981  1.116     joerg 		shminfo.shmmax *= PAGE_SIZE;
    982  1.116     joerg 	shminfo.shmall = shminfo.shmmax / PAGE_SIZE;
    983   1.11   hpeyerl 
    984   1.11   hpeyerl 	for (i = 0; i < shminfo.shmmni; i++) {
    985  1.102        ad 		cv_init(&shm_cv[i], "shmwait");
    986   1.11   hpeyerl 		shmsegs[i].shm_perm.mode = SHMSEG_FREE;
    987   1.52   thorpej 		shmsegs[i].shm_perm._seq = 0;
    988   1.11   hpeyerl 	}
    989   1.11   hpeyerl 	shm_last_free = 0;
    990   1.11   hpeyerl 	shm_nused = 0;
    991   1.11   hpeyerl 	shm_committed = 0;
    992  1.102        ad 	shm_realloc_disable = 0;
    993  1.102        ad 	shm_realloc_state = false;
    994  1.123      elad 
    995  1.127  pgoyette 	kern_has_sysvshm = 1;
    996  1.127  pgoyette 
    997  1.129  pgoyette 	/* Load the callback function pointers for the uvm subsystem */
    998  1.129  pgoyette 	uvm_shmexit = shmexit;
    999  1.129  pgoyette 	uvm_shmfork = shmfork;
   1000  1.129  pgoyette 
   1001  1.134  pgoyette 	return 0;
   1002   1.11   hpeyerl }
   1003   1.92  christos 
   1004  1.128  pgoyette int
   1005  1.128  pgoyette shmfini(void)
   1006  1.128  pgoyette {
   1007  1.128  pgoyette 	size_t sz;
   1008  1.128  pgoyette 	int i;
   1009  1.128  pgoyette 	vaddr_t v = (vaddr_t)shmsegs;
   1010  1.128  pgoyette 
   1011  1.128  pgoyette 	mutex_enter(&shm_lock);
   1012  1.128  pgoyette 	if (shm_nused) {
   1013  1.128  pgoyette 		mutex_exit(&shm_lock);
   1014  1.128  pgoyette 		return 1;
   1015  1.128  pgoyette 	}
   1016  1.128  pgoyette 
   1017  1.129  pgoyette 	/* Clear the callback function pointers for the uvm subsystem */
   1018  1.129  pgoyette 	uvm_shmexit = NULL;
   1019  1.129  pgoyette 	uvm_shmfork = NULL;
   1020  1.129  pgoyette 
   1021  1.128  pgoyette 	/* Destroy all condvars */
   1022  1.128  pgoyette 	for (i = 0; i < shminfo.shmmni; i++)
   1023  1.128  pgoyette 		cv_destroy(&shm_cv[i]);
   1024  1.128  pgoyette 	cv_destroy(&shm_realloc_cv);
   1025  1.128  pgoyette 
   1026  1.128  pgoyette 	/* Free the allocated/wired memory */
   1027  1.128  pgoyette 	sz = ALIGN(shminfo.shmmni * sizeof(struct shmid_ds)) +
   1028  1.128  pgoyette 	    ALIGN(shminfo.shmmni * sizeof(kcondvar_t));
   1029  1.128  pgoyette 	sz = round_page(sz);
   1030  1.128  pgoyette 	uvm_km_free(kernel_map, v, sz, UVM_KMF_WIRED);
   1031  1.128  pgoyette 
   1032  1.128  pgoyette 	/* Release and destroy our mutex */
   1033  1.128  pgoyette 	mutex_exit(&shm_lock);
   1034  1.128  pgoyette 	mutex_destroy(&shm_lock);
   1035  1.128  pgoyette 
   1036  1.128  pgoyette 	kern_has_sysvshm = 0;
   1037  1.128  pgoyette 
   1038  1.128  pgoyette 	return 0;
   1039  1.128  pgoyette }
   1040  1.128  pgoyette 
   1041   1.92  christos static int
   1042   1.92  christos sysctl_ipc_shmmni(SYSCTLFN_ARGS)
   1043   1.92  christos {
   1044   1.92  christos 	int newsize, error;
   1045   1.92  christos 	struct sysctlnode node;
   1046   1.92  christos 	node = *rnode;
   1047   1.92  christos 	node.sysctl_data = &newsize;
   1048   1.92  christos 
   1049   1.92  christos 	newsize = shminfo.shmmni;
   1050   1.92  christos 	error = sysctl_lookup(SYSCTLFN_CALL(&node));
   1051   1.92  christos 	if (error || newp == NULL)
   1052   1.92  christos 		return error;
   1053   1.92  christos 
   1054  1.103        ad 	sysctl_unlock();
   1055  1.103        ad 	error = shmrealloc(newsize);
   1056  1.103        ad 	sysctl_relock();
   1057  1.103        ad 	return error;
   1058   1.92  christos }
   1059   1.92  christos 
   1060   1.92  christos static int
   1061   1.92  christos sysctl_ipc_shmmaxpgs(SYSCTLFN_ARGS)
   1062   1.92  christos {
   1063  1.112     rmind 	uint32_t newsize;
   1064  1.112     rmind 	int error;
   1065   1.92  christos 	struct sysctlnode node;
   1066   1.92  christos 	node = *rnode;
   1067   1.92  christos 	node.sysctl_data = &newsize;
   1068  1.102        ad 
   1069   1.92  christos 	newsize = shminfo.shmall;
   1070   1.92  christos 	error = sysctl_lookup(SYSCTLFN_CALL(&node));
   1071   1.92  christos 	if (error || newp == NULL)
   1072   1.92  christos 		return error;
   1073   1.92  christos 
   1074   1.92  christos 	if (newsize < 1)
   1075   1.92  christos 		return EINVAL;
   1076   1.92  christos 
   1077   1.92  christos 	shminfo.shmall = newsize;
   1078  1.112     rmind 	shminfo.shmmax = (uint64_t)shminfo.shmall * PAGE_SIZE;
   1079  1.112     rmind 
   1080  1.112     rmind 	return 0;
   1081  1.112     rmind }
   1082  1.112     rmind 
   1083  1.112     rmind static int
   1084  1.112     rmind sysctl_ipc_shmmax(SYSCTLFN_ARGS)
   1085  1.112     rmind {
   1086  1.112     rmind 	uint64_t newsize;
   1087  1.112     rmind 	int error;
   1088  1.112     rmind 	struct sysctlnode node;
   1089  1.112     rmind 	node = *rnode;
   1090  1.112     rmind 	node.sysctl_data = &newsize;
   1091  1.112     rmind 
   1092  1.112     rmind 	newsize = shminfo.shmmax;
   1093  1.112     rmind 	error = sysctl_lookup(SYSCTLFN_CALL(&node));
   1094  1.112     rmind 	if (error || newp == NULL)
   1095  1.112     rmind 		return error;
   1096  1.112     rmind 
   1097  1.112     rmind 	if (newsize < PAGE_SIZE)
   1098  1.112     rmind 		return EINVAL;
   1099  1.112     rmind 
   1100  1.112     rmind 	shminfo.shmmax = round_page(newsize);
   1101  1.112     rmind 	shminfo.shmall = shminfo.shmmax >> PAGE_SHIFT;
   1102   1.92  christos 
   1103   1.92  christos 	return 0;
   1104   1.92  christos }
   1105   1.92  christos 
   1106   1.92  christos SYSCTL_SETUP(sysctl_ipc_shm_setup, "sysctl kern.ipc subtree setup")
   1107   1.92  christos {
   1108  1.102        ad 
   1109   1.92  christos 	sysctl_createv(clog, 0, NULL, NULL,
   1110   1.92  christos 		CTLFLAG_PERMANENT,
   1111   1.92  christos 		CTLTYPE_NODE, "ipc",
   1112   1.92  christos 		SYSCTL_DESCR("SysV IPC options"),
   1113   1.92  christos 		NULL, 0, NULL, 0,
   1114   1.92  christos 		CTL_KERN, KERN_SYSVIPC, CTL_EOL);
   1115   1.92  christos 	sysctl_createv(clog, 0, NULL, NULL,
   1116  1.112     rmind 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
   1117  1.112     rmind 		CTLTYPE_QUAD, "shmmax",
   1118   1.92  christos 		SYSCTL_DESCR("Max shared memory segment size in bytes"),
   1119  1.112     rmind 		sysctl_ipc_shmmax, 0, &shminfo.shmmax, 0,
   1120   1.92  christos 		CTL_KERN, KERN_SYSVIPC, KERN_SYSVIPC_SHMMAX, CTL_EOL);
   1121   1.92  christos 	sysctl_createv(clog, 0, NULL, NULL,
   1122   1.92  christos 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
   1123   1.92  christos 		CTLTYPE_INT, "shmmni",
   1124   1.92  christos 		SYSCTL_DESCR("Max number of shared memory identifiers"),
   1125   1.92  christos 		sysctl_ipc_shmmni, 0, &shminfo.shmmni, 0,
   1126   1.92  christos 		CTL_KERN, KERN_SYSVIPC, KERN_SYSVIPC_SHMMNI, CTL_EOL);
   1127   1.92  christos 	sysctl_createv(clog, 0, NULL, NULL,
   1128   1.92  christos 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
   1129   1.92  christos 		CTLTYPE_INT, "shmseg",
   1130   1.92  christos 		SYSCTL_DESCR("Max shared memory segments per process"),
   1131   1.92  christos 		NULL, 0, &shminfo.shmseg, 0,
   1132   1.92  christos 		CTL_KERN, KERN_SYSVIPC, KERN_SYSVIPC_SHMSEG, CTL_EOL);
   1133   1.92  christos 	sysctl_createv(clog, 0, NULL, NULL,
   1134   1.92  christos 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
   1135   1.92  christos 		CTLTYPE_INT, "shmmaxpgs",
   1136   1.92  christos 		SYSCTL_DESCR("Max amount of shared memory in pages"),
   1137   1.92  christos 		sysctl_ipc_shmmaxpgs, 0, &shminfo.shmall, 0,
   1138   1.92  christos 		CTL_KERN, KERN_SYSVIPC, KERN_SYSVIPC_SHMMAXPGS, CTL_EOL);
   1139   1.92  christos 	sysctl_createv(clog, 0, NULL, NULL,
   1140   1.92  christos 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
   1141   1.92  christos 		CTLTYPE_INT, "shm_use_phys",
   1142   1.92  christos 		SYSCTL_DESCR("Enable/disable locking of shared memory in "
   1143   1.92  christos 		    "physical memory"), NULL, 0, &shm_use_phys, 0,
   1144   1.92  christos 		CTL_KERN, KERN_SYSVIPC, KERN_SYSVIPC_SHMUSEPHYS, CTL_EOL);
   1145   1.92  christos }
   1146