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uvm_aobj.c revision 1.116.12.2
      1  1.116.12.2       tls /*	$NetBSD: uvm_aobj.c,v 1.116.12.2 2014/08/20 00:04:45 tls Exp $	*/
      2         1.6       mrg 
      3         1.7       chs /*
      4         1.7       chs  * Copyright (c) 1998 Chuck Silvers, Charles D. Cranor and
      5         1.7       chs  *                    Washington University.
      6         1.7       chs  * All rights reserved.
      7         1.7       chs  *
      8         1.7       chs  * Redistribution and use in source and binary forms, with or without
      9         1.7       chs  * modification, are permitted provided that the following conditions
     10         1.7       chs  * are met:
     11         1.7       chs  * 1. Redistributions of source code must retain the above copyright
     12         1.7       chs  *    notice, this list of conditions and the following disclaimer.
     13         1.7       chs  * 2. Redistributions in binary form must reproduce the above copyright
     14         1.7       chs  *    notice, this list of conditions and the following disclaimer in the
     15         1.7       chs  *    documentation and/or other materials provided with the distribution.
     16         1.7       chs  *
     17         1.7       chs  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     18         1.7       chs  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     19         1.7       chs  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     20         1.7       chs  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     21         1.7       chs  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     22         1.7       chs  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     23         1.7       chs  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     24         1.7       chs  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     25         1.7       chs  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     26         1.7       chs  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     27         1.7       chs  *
     28         1.4       mrg  * from: Id: uvm_aobj.c,v 1.1.2.5 1998/02/06 05:14:38 chs Exp
     29         1.4       mrg  */
     30       1.113     rmind 
     31         1.7       chs /*
     32         1.7       chs  * uvm_aobj.c: anonymous memory uvm_object pager
     33         1.7       chs  *
     34         1.7       chs  * author: Chuck Silvers <chuq (at) chuq.com>
     35         1.7       chs  * started: Jan-1998
     36         1.7       chs  *
     37         1.7       chs  * - design mostly from Chuck Cranor
     38         1.7       chs  */
     39        1.49     lukem 
     40        1.49     lukem #include <sys/cdefs.h>
     41  1.116.12.2       tls __KERNEL_RCSID(0, "$NetBSD: uvm_aobj.c,v 1.116.12.2 2014/08/20 00:04:45 tls Exp $");
     42         1.7       chs 
     43         1.7       chs #include "opt_uvmhist.h"
     44         1.1       mrg 
     45         1.1       mrg #include <sys/param.h>
     46         1.1       mrg #include <sys/systm.h>
     47        1.37       chs #include <sys/kernel.h>
     48       1.104     rmind #include <sys/kmem.h>
     49        1.12   thorpej #include <sys/pool.h>
     50  1.116.12.1       tls #include <sys/atomic.h>
     51         1.1       mrg 
     52         1.1       mrg #include <uvm/uvm.h>
     53         1.1       mrg 
     54         1.1       mrg /*
     55  1.116.12.1       tls  * An anonymous UVM object (aobj) manages anonymous-memory.  In addition to
     56  1.116.12.1       tls  * keeping the list of resident pages, it may also keep a list of allocated
     57  1.116.12.1       tls  * swap blocks.  Depending on the size of the object, this list is either
     58  1.116.12.1       tls  * stored in an array (small objects) or in a hash table (large objects).
     59  1.116.12.1       tls  *
     60  1.116.12.1       tls  * Lock order
     61  1.116.12.1       tls  *
     62  1.116.12.1       tls  *	uao_list_lock ->
     63  1.116.12.1       tls  *		uvm_object::vmobjlock
     64         1.1       mrg  */
     65         1.1       mrg 
     66         1.1       mrg /*
     67  1.116.12.1       tls  * Note: for hash tables, we break the address space of the aobj into blocks
     68  1.116.12.1       tls  * of UAO_SWHASH_CLUSTER_SIZE pages, which shall be a power of two.
     69         1.1       mrg  */
     70         1.1       mrg 
     71  1.116.12.1       tls #define	UAO_SWHASH_CLUSTER_SHIFT	4
     72  1.116.12.1       tls #define	UAO_SWHASH_CLUSTER_SIZE		(1 << UAO_SWHASH_CLUSTER_SHIFT)
     73         1.1       mrg 
     74  1.116.12.1       tls /* Get the "tag" for this page index. */
     75  1.116.12.1       tls #define	UAO_SWHASH_ELT_TAG(idx)		((idx) >> UAO_SWHASH_CLUSTER_SHIFT)
     76  1.116.12.1       tls #define UAO_SWHASH_ELT_PAGESLOT_IDX(idx) \
     77  1.116.12.1       tls     ((idx) & (UAO_SWHASH_CLUSTER_SIZE - 1))
     78         1.1       mrg 
     79  1.116.12.1       tls /* Given an ELT and a page index, find the swap slot. */
     80  1.116.12.1       tls #define	UAO_SWHASH_ELT_PAGESLOT(elt, idx) \
     81  1.116.12.1       tls     ((elt)->slots[UAO_SWHASH_ELT_PAGESLOT_IDX(idx)])
     82        1.75      yamt 
     83  1.116.12.1       tls /* Given an ELT, return its pageidx base. */
     84  1.116.12.1       tls #define	UAO_SWHASH_ELT_PAGEIDX_BASE(ELT) \
     85  1.116.12.1       tls     ((elt)->tag << UAO_SWHASH_CLUSTER_SHIFT)
     86        1.46       chs 
     87  1.116.12.1       tls /* The hash function. */
     88  1.116.12.1       tls #define	UAO_SWHASH_HASH(aobj, idx) \
     89  1.116.12.1       tls     (&(aobj)->u_swhash[(((idx) >> UAO_SWHASH_CLUSTER_SHIFT) \
     90  1.116.12.1       tls     & (aobj)->u_swhashmask)])
     91         1.1       mrg 
     92         1.1       mrg /*
     93  1.116.12.1       tls  * The threshold which determines whether we will use an array or a
     94         1.1       mrg  * hash table to store the list of allocated swap blocks.
     95         1.1       mrg  */
     96  1.116.12.1       tls #define	UAO_SWHASH_THRESHOLD		(UAO_SWHASH_CLUSTER_SIZE * 4)
     97  1.116.12.1       tls #define	UAO_USES_SWHASH(aobj) \
     98  1.116.12.1       tls     ((aobj)->u_pages > UAO_SWHASH_THRESHOLD)
     99  1.116.12.1       tls 
    100  1.116.12.1       tls /* The number of buckets in a hash, with an upper bound. */
    101  1.116.12.1       tls #define	UAO_SWHASH_MAXBUCKETS		256
    102  1.116.12.1       tls #define	UAO_SWHASH_BUCKETS(aobj) \
    103  1.116.12.1       tls     (MIN((aobj)->u_pages >> UAO_SWHASH_CLUSTER_SHIFT, UAO_SWHASH_MAXBUCKETS))
    104         1.1       mrg 
    105         1.1       mrg /*
    106         1.1       mrg  * uao_swhash_elt: when a hash table is being used, this structure defines
    107         1.1       mrg  * the format of an entry in the bucket list.
    108         1.1       mrg  */
    109         1.1       mrg 
    110         1.1       mrg struct uao_swhash_elt {
    111         1.5       mrg 	LIST_ENTRY(uao_swhash_elt) list;	/* the hash list */
    112        1.28    kleink 	voff_t tag;				/* our 'tag' */
    113         1.5       mrg 	int count;				/* our number of active slots */
    114         1.5       mrg 	int slots[UAO_SWHASH_CLUSTER_SIZE];	/* the slots */
    115         1.1       mrg };
    116         1.1       mrg 
    117         1.1       mrg /*
    118         1.1       mrg  * uao_swhash: the swap hash table structure
    119         1.1       mrg  */
    120         1.1       mrg 
    121         1.1       mrg LIST_HEAD(uao_swhash, uao_swhash_elt);
    122         1.1       mrg 
    123        1.12   thorpej /*
    124       1.113     rmind  * uao_swhash_elt_pool: pool of uao_swhash_elt structures.
    125       1.113     rmind  * Note: pages for this pool must not come from a pageable kernel map.
    126        1.12   thorpej  */
    127  1.116.12.1       tls static struct pool	uao_swhash_elt_pool	__cacheline_aligned;
    128         1.1       mrg 
    129         1.1       mrg /*
    130         1.1       mrg  * uvm_aobj: the actual anon-backed uvm_object
    131         1.1       mrg  *
    132         1.1       mrg  * => the uvm_object is at the top of the structure, this allows
    133        1.46       chs  *   (struct uvm_aobj *) == (struct uvm_object *)
    134         1.1       mrg  * => only one of u_swslots and u_swhash is used in any given aobj
    135         1.1       mrg  */
    136         1.1       mrg 
    137         1.1       mrg struct uvm_aobj {
    138         1.5       mrg 	struct uvm_object u_obj; /* has: lock, pgops, memq, #pages, #refs */
    139        1.79    cherry 	pgoff_t u_pages;	 /* number of pages in entire object */
    140         1.5       mrg 	int u_flags;		 /* the flags (see uvm_aobj.h) */
    141         1.5       mrg 	int *u_swslots;		 /* array of offset->swapslot mappings */
    142         1.5       mrg 				 /*
    143         1.5       mrg 				  * hashtable of offset->swapslot mappings
    144         1.5       mrg 				  * (u_swhash is an array of bucket heads)
    145         1.5       mrg 				  */
    146         1.5       mrg 	struct uao_swhash *u_swhash;
    147         1.5       mrg 	u_long u_swhashmask;		/* mask for hashtable */
    148         1.5       mrg 	LIST_ENTRY(uvm_aobj) u_list;	/* global list of aobjs */
    149  1.116.12.2       tls 	int u_freelist;		  /* freelist to allocate pages from */
    150         1.1       mrg };
    151         1.1       mrg 
    152        1.62  junyoung static void	uao_free(struct uvm_aobj *);
    153        1.62  junyoung static int	uao_get(struct uvm_object *, voff_t, struct vm_page **,
    154        1.62  junyoung 		    int *, int, vm_prot_t, int, int);
    155        1.86      matt static int	uao_put(struct uvm_object *, voff_t, voff_t, int);
    156        1.72      yamt 
    157        1.72      yamt #if defined(VMSWAP)
    158        1.72      yamt static struct uao_swhash_elt *uao_find_swhash_elt
    159        1.85   thorpej     (struct uvm_aobj *, int, bool);
    160        1.72      yamt 
    161        1.85   thorpej static bool uao_pagein(struct uvm_aobj *, int, int);
    162        1.85   thorpej static bool uao_pagein_page(struct uvm_aobj *, int);
    163        1.72      yamt #endif /* defined(VMSWAP) */
    164         1.1       mrg 
    165  1.116.12.2       tls static struct vm_page	*uao_pagealloc(struct uvm_object *, voff_t, int);
    166  1.116.12.2       tls 
    167         1.1       mrg /*
    168         1.1       mrg  * aobj_pager
    169        1.41       chs  *
    170         1.1       mrg  * note that some functions (e.g. put) are handled elsewhere
    171         1.1       mrg  */
    172         1.1       mrg 
    173        1.95      yamt const struct uvm_pagerops aobj_pager = {
    174        1.94      yamt 	.pgo_reference = uao_reference,
    175        1.94      yamt 	.pgo_detach = uao_detach,
    176        1.94      yamt 	.pgo_get = uao_get,
    177        1.94      yamt 	.pgo_put = uao_put,
    178         1.1       mrg };
    179         1.1       mrg 
    180         1.1       mrg /*
    181         1.1       mrg  * uao_list: global list of active aobjs, locked by uao_list_lock
    182         1.1       mrg  */
    183         1.1       mrg 
    184  1.116.12.1       tls static LIST_HEAD(aobjlist, uvm_aobj) uao_list	__cacheline_aligned;
    185  1.116.12.1       tls static kmutex_t		uao_list_lock		__cacheline_aligned;
    186         1.1       mrg 
    187         1.1       mrg /*
    188         1.1       mrg  * hash table/array related functions
    189         1.1       mrg  */
    190         1.1       mrg 
    191        1.72      yamt #if defined(VMSWAP)
    192        1.72      yamt 
    193         1.1       mrg /*
    194         1.1       mrg  * uao_find_swhash_elt: find (or create) a hash table entry for a page
    195         1.1       mrg  * offset.
    196         1.1       mrg  *
    197         1.1       mrg  * => the object should be locked by the caller
    198         1.1       mrg  */
    199         1.1       mrg 
    200         1.5       mrg static struct uao_swhash_elt *
    201        1.85   thorpej uao_find_swhash_elt(struct uvm_aobj *aobj, int pageidx, bool create)
    202         1.5       mrg {
    203         1.5       mrg 	struct uao_swhash *swhash;
    204         1.5       mrg 	struct uao_swhash_elt *elt;
    205        1.28    kleink 	voff_t page_tag;
    206         1.1       mrg 
    207        1.45       chs 	swhash = UAO_SWHASH_HASH(aobj, pageidx);
    208        1.45       chs 	page_tag = UAO_SWHASH_ELT_TAG(pageidx);
    209         1.1       mrg 
    210         1.5       mrg 	/*
    211         1.5       mrg 	 * now search the bucket for the requested tag
    212         1.5       mrg 	 */
    213        1.45       chs 
    214        1.37       chs 	LIST_FOREACH(elt, swhash, list) {
    215        1.45       chs 		if (elt->tag == page_tag) {
    216        1.45       chs 			return elt;
    217        1.45       chs 		}
    218         1.5       mrg 	}
    219        1.45       chs 	if (!create) {
    220         1.5       mrg 		return NULL;
    221        1.45       chs 	}
    222         1.5       mrg 
    223         1.5       mrg 	/*
    224        1.12   thorpej 	 * allocate a new entry for the bucket and init/insert it in
    225         1.5       mrg 	 */
    226        1.45       chs 
    227        1.45       chs 	elt = pool_get(&uao_swhash_elt_pool, PR_NOWAIT);
    228        1.45       chs 	if (elt == NULL) {
    229        1.45       chs 		return NULL;
    230        1.45       chs 	}
    231         1.5       mrg 	LIST_INSERT_HEAD(swhash, elt, list);
    232         1.5       mrg 	elt->tag = page_tag;
    233         1.5       mrg 	elt->count = 0;
    234         1.9     perry 	memset(elt->slots, 0, sizeof(elt->slots));
    235        1.45       chs 	return elt;
    236         1.1       mrg }
    237         1.1       mrg 
    238         1.1       mrg /*
    239         1.1       mrg  * uao_find_swslot: find the swap slot number for an aobj/pageidx
    240         1.1       mrg  *
    241        1.41       chs  * => object must be locked by caller
    242         1.1       mrg  */
    243        1.46       chs 
    244        1.46       chs int
    245        1.67   thorpej uao_find_swslot(struct uvm_object *uobj, int pageidx)
    246         1.1       mrg {
    247        1.46       chs 	struct uvm_aobj *aobj = (struct uvm_aobj *)uobj;
    248        1.46       chs 	struct uao_swhash_elt *elt;
    249         1.1       mrg 
    250         1.5       mrg 	/*
    251         1.5       mrg 	 * if noswap flag is set, then we never return a slot
    252         1.5       mrg 	 */
    253         1.1       mrg 
    254         1.5       mrg 	if (aobj->u_flags & UAO_FLAG_NOSWAP)
    255  1.116.12.1       tls 		return 0;
    256         1.1       mrg 
    257         1.5       mrg 	/*
    258         1.5       mrg 	 * if hashing, look in hash table.
    259         1.5       mrg 	 */
    260         1.1       mrg 
    261         1.5       mrg 	if (UAO_USES_SWHASH(aobj)) {
    262        1.87   thorpej 		elt = uao_find_swhash_elt(aobj, pageidx, false);
    263  1.116.12.1       tls 		return elt ? UAO_SWHASH_ELT_PAGESLOT(elt, pageidx) : 0;
    264         1.5       mrg 	}
    265         1.1       mrg 
    266        1.41       chs 	/*
    267         1.5       mrg 	 * otherwise, look in the array
    268         1.5       mrg 	 */
    269        1.46       chs 
    270  1.116.12.1       tls 	return aobj->u_swslots[pageidx];
    271         1.1       mrg }
    272         1.1       mrg 
    273         1.1       mrg /*
    274         1.1       mrg  * uao_set_swslot: set the swap slot for a page in an aobj.
    275         1.1       mrg  *
    276         1.1       mrg  * => setting a slot to zero frees the slot
    277         1.1       mrg  * => object must be locked by caller
    278        1.45       chs  * => we return the old slot number, or -1 if we failed to allocate
    279        1.45       chs  *    memory to record the new slot number
    280         1.1       mrg  */
    281        1.46       chs 
    282         1.5       mrg int
    283        1.67   thorpej uao_set_swslot(struct uvm_object *uobj, int pageidx, int slot)
    284         1.5       mrg {
    285         1.5       mrg 	struct uvm_aobj *aobj = (struct uvm_aobj *)uobj;
    286        1.45       chs 	struct uao_swhash_elt *elt;
    287         1.5       mrg 	int oldslot;
    288         1.5       mrg 	UVMHIST_FUNC("uao_set_swslot"); UVMHIST_CALLED(pdhist);
    289         1.5       mrg 	UVMHIST_LOG(pdhist, "aobj %p pageidx %d slot %d",
    290         1.5       mrg 	    aobj, pageidx, slot, 0);
    291         1.1       mrg 
    292       1.115     rmind 	KASSERT(mutex_owned(uobj->vmobjlock) || uobj->uo_refs == 0);
    293       1.109     rmind 
    294         1.5       mrg 	/*
    295        1.46       chs 	 * if noswap flag is set, then we can't set a non-zero slot.
    296         1.5       mrg 	 */
    297         1.1       mrg 
    298         1.5       mrg 	if (aobj->u_flags & UAO_FLAG_NOSWAP) {
    299  1.116.12.1       tls 		KASSERTMSG(slot == 0, "uao_set_swslot: no swap object");
    300  1.116.12.1       tls 		return 0;
    301         1.5       mrg 	}
    302         1.1       mrg 
    303         1.5       mrg 	/*
    304         1.5       mrg 	 * are we using a hash table?  if so, add it in the hash.
    305         1.5       mrg 	 */
    306         1.1       mrg 
    307         1.5       mrg 	if (UAO_USES_SWHASH(aobj)) {
    308        1.39       chs 
    309        1.12   thorpej 		/*
    310        1.12   thorpej 		 * Avoid allocating an entry just to free it again if
    311        1.12   thorpej 		 * the page had not swap slot in the first place, and
    312        1.12   thorpej 		 * we are freeing.
    313        1.12   thorpej 		 */
    314        1.39       chs 
    315        1.46       chs 		elt = uao_find_swhash_elt(aobj, pageidx, slot != 0);
    316        1.12   thorpej 		if (elt == NULL) {
    317        1.45       chs 			return slot ? -1 : 0;
    318        1.12   thorpej 		}
    319         1.5       mrg 
    320         1.5       mrg 		oldslot = UAO_SWHASH_ELT_PAGESLOT(elt, pageidx);
    321         1.5       mrg 		UAO_SWHASH_ELT_PAGESLOT(elt, pageidx) = slot;
    322         1.5       mrg 
    323         1.5       mrg 		/*
    324         1.5       mrg 		 * now adjust the elt's reference counter and free it if we've
    325         1.5       mrg 		 * dropped it to zero.
    326         1.5       mrg 		 */
    327         1.5       mrg 
    328         1.5       mrg 		if (slot) {
    329         1.5       mrg 			if (oldslot == 0)
    330         1.5       mrg 				elt->count++;
    331        1.45       chs 		} else {
    332        1.45       chs 			if (oldslot)
    333         1.5       mrg 				elt->count--;
    334         1.5       mrg 
    335         1.5       mrg 			if (elt->count == 0) {
    336         1.5       mrg 				LIST_REMOVE(elt, list);
    337        1.12   thorpej 				pool_put(&uao_swhash_elt_pool, elt);
    338         1.5       mrg 			}
    339         1.5       mrg 		}
    340        1.41       chs 	} else {
    341         1.5       mrg 		/* we are using an array */
    342         1.5       mrg 		oldslot = aobj->u_swslots[pageidx];
    343         1.5       mrg 		aobj->u_swslots[pageidx] = slot;
    344         1.5       mrg 	}
    345  1.116.12.1       tls 	return oldslot;
    346         1.1       mrg }
    347         1.1       mrg 
    348        1.72      yamt #endif /* defined(VMSWAP) */
    349        1.72      yamt 
    350         1.1       mrg /*
    351         1.1       mrg  * end of hash/array functions
    352         1.1       mrg  */
    353         1.1       mrg 
    354         1.1       mrg /*
    355         1.1       mrg  * uao_free: free all resources held by an aobj, and then free the aobj
    356         1.1       mrg  *
    357         1.1       mrg  * => the aobj should be dead
    358         1.1       mrg  */
    359        1.46       chs 
    360         1.1       mrg static void
    361        1.67   thorpej uao_free(struct uvm_aobj *aobj)
    362         1.1       mrg {
    363  1.116.12.1       tls 	struct uvm_object *uobj = &aobj->u_obj;
    364        1.96        ad 
    365  1.116.12.1       tls 	KASSERT(mutex_owned(uobj->vmobjlock));
    366  1.116.12.1       tls 	uao_dropswap_range(uobj, 0, 0);
    367  1.116.12.1       tls 	mutex_exit(uobj->vmobjlock);
    368        1.72      yamt 
    369        1.72      yamt #if defined(VMSWAP)
    370         1.5       mrg 	if (UAO_USES_SWHASH(aobj)) {
    371         1.1       mrg 
    372         1.5       mrg 		/*
    373        1.75      yamt 		 * free the hash table itself.
    374         1.5       mrg 		 */
    375        1.46       chs 
    376       1.104     rmind 		hashdone(aobj->u_swhash, HASH_LIST, aobj->u_swhashmask);
    377         1.5       mrg 	} else {
    378         1.5       mrg 
    379         1.5       mrg 		/*
    380        1.75      yamt 		 * free the array itsself.
    381         1.5       mrg 		 */
    382         1.5       mrg 
    383       1.104     rmind 		kmem_free(aobj->u_swslots, aobj->u_pages * sizeof(int));
    384         1.1       mrg 	}
    385        1.72      yamt #endif /* defined(VMSWAP) */
    386        1.72      yamt 
    387         1.5       mrg 	/*
    388         1.5       mrg 	 * finally free the aobj itself
    389         1.5       mrg 	 */
    390        1.46       chs 
    391  1.116.12.1       tls 	uvm_obj_destroy(uobj, true);
    392       1.113     rmind 	kmem_free(aobj, sizeof(struct uvm_aobj));
    393         1.1       mrg }
    394         1.1       mrg 
    395         1.1       mrg /*
    396         1.1       mrg  * pager functions
    397         1.1       mrg  */
    398         1.1       mrg 
    399         1.1       mrg /*
    400         1.1       mrg  * uao_create: create an aobj of the given size and return its uvm_object.
    401         1.1       mrg  *
    402         1.1       mrg  * => for normal use, flags are always zero
    403         1.1       mrg  * => for the kernel object, the flags are:
    404         1.1       mrg  *	UAO_FLAG_KERNOBJ - allocate the kernel object (can only happen once)
    405         1.1       mrg  *	UAO_FLAG_KERNSWAP - enable swapping of kernel object ("           ")
    406         1.1       mrg  */
    407        1.46       chs 
    408         1.5       mrg struct uvm_object *
    409        1.67   thorpej uao_create(vsize_t size, int flags)
    410         1.5       mrg {
    411        1.46       chs 	static struct uvm_aobj kernel_object_store;
    412       1.115     rmind 	static kmutex_t kernel_object_lock;
    413  1.116.12.2       tls 	static int kobj_alloced __diagused = 0;
    414        1.79    cherry 	pgoff_t pages = round_page(size) >> PAGE_SHIFT;
    415         1.5       mrg 	struct uvm_aobj *aobj;
    416        1.66      yamt 	int refs;
    417         1.1       mrg 
    418         1.5       mrg 	/*
    419       1.114     rmind 	 * Allocate a new aobj, unless kernel object is requested.
    420        1.27       chs 	 */
    421         1.5       mrg 
    422        1.46       chs 	if (flags & UAO_FLAG_KERNOBJ) {
    423        1.46       chs 		KASSERT(!kobj_alloced);
    424         1.5       mrg 		aobj = &kernel_object_store;
    425         1.5       mrg 		aobj->u_pages = pages;
    426        1.46       chs 		aobj->u_flags = UAO_FLAG_NOSWAP;
    427        1.66      yamt 		refs = UVM_OBJ_KERN;
    428         1.5       mrg 		kobj_alloced = UAO_FLAG_KERNOBJ;
    429         1.5       mrg 	} else if (flags & UAO_FLAG_KERNSWAP) {
    430        1.46       chs 		KASSERT(kobj_alloced == UAO_FLAG_KERNOBJ);
    431         1.5       mrg 		aobj = &kernel_object_store;
    432         1.5       mrg 		kobj_alloced = UAO_FLAG_KERNSWAP;
    433        1.66      yamt 		refs = 0xdeadbeaf; /* XXX: gcc */
    434        1.46       chs 	} else {
    435       1.113     rmind 		aobj = kmem_alloc(sizeof(struct uvm_aobj), KM_SLEEP);
    436         1.5       mrg 		aobj->u_pages = pages;
    437        1.46       chs 		aobj->u_flags = 0;
    438        1.66      yamt 		refs = 1;
    439         1.5       mrg 	}
    440         1.1       mrg 
    441         1.5       mrg 	/*
    442  1.116.12.2       tls 	 * no freelist by default
    443  1.116.12.2       tls 	 */
    444  1.116.12.2       tls 
    445  1.116.12.2       tls 	aobj->u_freelist = VM_NFREELIST;
    446  1.116.12.2       tls 
    447  1.116.12.2       tls 	/*
    448         1.5       mrg  	 * allocate hash/array if necessary
    449         1.5       mrg  	 *
    450         1.5       mrg  	 * note: in the KERNSWAP case no need to worry about locking since
    451         1.5       mrg  	 * we are still booting we should be the only thread around.
    452         1.5       mrg  	 */
    453        1.46       chs 
    454         1.5       mrg 	if (flags == 0 || (flags & UAO_FLAG_KERNSWAP) != 0) {
    455        1.72      yamt #if defined(VMSWAP)
    456       1.104     rmind 		const int kernswap = (flags & UAO_FLAG_KERNSWAP) != 0;
    457         1.5       mrg 
    458         1.5       mrg 		/* allocate hash table or array depending on object size */
    459        1.27       chs 		if (UAO_USES_SWHASH(aobj)) {
    460       1.104     rmind 			aobj->u_swhash = hashinit(UAO_SWHASH_BUCKETS(aobj),
    461       1.104     rmind 			    HASH_LIST, kernswap ? false : true,
    462       1.104     rmind 			    &aobj->u_swhashmask);
    463         1.5       mrg 			if (aobj->u_swhash == NULL)
    464         1.5       mrg 				panic("uao_create: hashinit swhash failed");
    465         1.5       mrg 		} else {
    466       1.104     rmind 			aobj->u_swslots = kmem_zalloc(pages * sizeof(int),
    467       1.104     rmind 			    kernswap ? KM_NOSLEEP : KM_SLEEP);
    468         1.5       mrg 			if (aobj->u_swslots == NULL)
    469       1.114     rmind 				panic("uao_create: swslots allocation failed");
    470         1.5       mrg 		}
    471        1.72      yamt #endif /* defined(VMSWAP) */
    472         1.5       mrg 
    473         1.5       mrg 		if (flags) {
    474         1.5       mrg 			aobj->u_flags &= ~UAO_FLAG_NOSWAP; /* clear noswap */
    475  1.116.12.1       tls 			return &aobj->u_obj;
    476         1.5       mrg 		}
    477         1.5       mrg 	}
    478         1.5       mrg 
    479         1.5       mrg 	/*
    480       1.115     rmind 	 * Initialise UVM object.
    481       1.115     rmind 	 */
    482        1.46       chs 
    483       1.115     rmind 	const bool kernobj = (flags & UAO_FLAG_KERNOBJ) != 0;
    484       1.115     rmind 	uvm_obj_init(&aobj->u_obj, &aobj_pager, !kernobj, refs);
    485       1.115     rmind 	if (__predict_false(kernobj)) {
    486       1.115     rmind 		/* Initialisation only once, for UAO_FLAG_KERNOBJ. */
    487       1.115     rmind 		mutex_init(&kernel_object_lock, MUTEX_DEFAULT, IPL_NONE);
    488       1.115     rmind 		uvm_obj_setlock(&aobj->u_obj, &kernel_object_lock);
    489       1.115     rmind 	}
    490         1.1       mrg 
    491         1.5       mrg 	/*
    492         1.5       mrg  	 * now that aobj is ready, add it to the global list
    493         1.5       mrg  	 */
    494        1.46       chs 
    495        1.90        ad 	mutex_enter(&uao_list_lock);
    496         1.5       mrg 	LIST_INSERT_HEAD(&uao_list, aobj, u_list);
    497        1.90        ad 	mutex_exit(&uao_list_lock);
    498         1.5       mrg 	return(&aobj->u_obj);
    499         1.1       mrg }
    500         1.1       mrg 
    501         1.1       mrg /*
    502  1.116.12.2       tls  * uao_set_pgfl: allocate pages only from the specified freelist.
    503  1.116.12.2       tls  *
    504  1.116.12.2       tls  * => must be called before any pages are allocated for the object.
    505  1.116.12.2       tls  * => reset by setting it to VM_NFREELIST, meaning any freelist.
    506  1.116.12.2       tls  */
    507  1.116.12.2       tls 
    508  1.116.12.2       tls void
    509  1.116.12.2       tls uao_set_pgfl(struct uvm_object *uobj, int freelist)
    510  1.116.12.2       tls {
    511  1.116.12.2       tls 	struct uvm_aobj *aobj = (struct uvm_aobj *)uobj;
    512  1.116.12.2       tls 
    513  1.116.12.2       tls 	KASSERTMSG((0 <= freelist), "invalid freelist %d", freelist);
    514  1.116.12.2       tls 	KASSERTMSG((freelist <= VM_NFREELIST), "invalid freelist %d",
    515  1.116.12.2       tls 	    freelist);
    516  1.116.12.2       tls 
    517  1.116.12.2       tls 	aobj->u_freelist = freelist;
    518  1.116.12.2       tls }
    519  1.116.12.2       tls 
    520  1.116.12.2       tls /*
    521  1.116.12.2       tls  * uao_pagealloc: allocate a page for aobj.
    522  1.116.12.2       tls  */
    523  1.116.12.2       tls 
    524  1.116.12.2       tls static inline struct vm_page *
    525  1.116.12.2       tls uao_pagealloc(struct uvm_object *uobj, voff_t offset, int flags)
    526  1.116.12.2       tls {
    527  1.116.12.2       tls 	struct uvm_aobj *aobj = (struct uvm_aobj *)uobj;
    528  1.116.12.2       tls 
    529  1.116.12.2       tls 	if (__predict_true(aobj->u_freelist == VM_NFREELIST))
    530  1.116.12.2       tls 		return uvm_pagealloc(uobj, offset, NULL, flags);
    531  1.116.12.2       tls 	else
    532  1.116.12.2       tls 		return uvm_pagealloc_strat(uobj, offset, NULL, flags,
    533  1.116.12.2       tls 		    UVM_PGA_STRAT_ONLY, aobj->u_freelist);
    534  1.116.12.2       tls }
    535  1.116.12.2       tls 
    536  1.116.12.2       tls /*
    537         1.1       mrg  * uao_init: set up aobj pager subsystem
    538         1.1       mrg  *
    539         1.1       mrg  * => called at boot time from uvm_pager_init()
    540         1.1       mrg  */
    541        1.46       chs 
    542        1.27       chs void
    543        1.46       chs uao_init(void)
    544         1.5       mrg {
    545        1.12   thorpej 	static int uao_initialized;
    546        1.12   thorpej 
    547        1.12   thorpej 	if (uao_initialized)
    548        1.12   thorpej 		return;
    549        1.87   thorpej 	uao_initialized = true;
    550         1.5       mrg 	LIST_INIT(&uao_list);
    551        1.96        ad 	mutex_init(&uao_list_lock, MUTEX_DEFAULT, IPL_NONE);
    552       1.107     pooka 	pool_init(&uao_swhash_elt_pool, sizeof(struct uao_swhash_elt),
    553       1.107     pooka 	    0, 0, 0, "uaoeltpl", NULL, IPL_VM);
    554         1.1       mrg }
    555         1.1       mrg 
    556         1.1       mrg /*
    557  1.116.12.1       tls  * uao_reference: hold a reference to an anonymous UVM object.
    558         1.1       mrg  */
    559         1.5       mrg void
    560        1.67   thorpej uao_reference(struct uvm_object *uobj)
    561         1.1       mrg {
    562  1.116.12.1       tls 	/* Kernel object is persistent. */
    563  1.116.12.1       tls 	if (UVM_OBJ_IS_KERN_OBJECT(uobj)) {
    564         1.5       mrg 		return;
    565  1.116.12.1       tls 	}
    566  1.116.12.1       tls 	atomic_inc_uint(&uobj->uo_refs);
    567         1.1       mrg }
    568         1.1       mrg 
    569         1.1       mrg /*
    570  1.116.12.1       tls  * uao_detach: drop a reference to an anonymous UVM object.
    571         1.1       mrg  */
    572         1.5       mrg void
    573        1.67   thorpej uao_detach(struct uvm_object *uobj)
    574         1.5       mrg {
    575         1.5       mrg 	struct uvm_aobj *aobj = (struct uvm_aobj *)uobj;
    576        1.46       chs 	struct vm_page *pg;
    577  1.116.12.1       tls 
    578         1.5       mrg 	UVMHIST_FUNC("uao_detach"); UVMHIST_CALLED(maphist);
    579         1.1       mrg 
    580         1.5       mrg 	/*
    581  1.116.12.1       tls 	 * Detaching from kernel object is a NOP.
    582  1.116.12.1       tls 	 */
    583        1.46       chs 
    584  1.116.12.1       tls 	if (UVM_OBJ_IS_KERN_OBJECT(uobj))
    585         1.5       mrg 		return;
    586  1.116.12.1       tls 
    587  1.116.12.1       tls 	/*
    588  1.116.12.1       tls 	 * Drop the reference.  If it was the last one, destroy the object.
    589  1.116.12.1       tls 	 */
    590         1.5       mrg 
    591         1.5       mrg 	UVMHIST_LOG(maphist,"  (uobj=0x%x)  ref=%d", uobj,uobj->uo_refs,0,0);
    592  1.116.12.1       tls 	if (atomic_dec_uint_nv(&uobj->uo_refs) > 0) {
    593         1.5       mrg 		UVMHIST_LOG(maphist, "<- done (rc>0)", 0,0,0,0);
    594         1.5       mrg 		return;
    595         1.5       mrg 	}
    596         1.5       mrg 
    597         1.5       mrg 	/*
    598  1.116.12.1       tls 	 * Remove the aobj from the global list.
    599  1.116.12.1       tls 	 */
    600        1.46       chs 
    601        1.92        ad 	mutex_enter(&uao_list_lock);
    602         1.5       mrg 	LIST_REMOVE(aobj, u_list);
    603        1.92        ad 	mutex_exit(&uao_list_lock);
    604         1.5       mrg 
    605         1.5       mrg 	/*
    606  1.116.12.1       tls 	 * Free all the pages left in the aobj.  For each page, when the
    607  1.116.12.1       tls 	 * page is no longer busy (and thus after any disk I/O that it is
    608  1.116.12.1       tls 	 * involved in is complete), release any swap resources and free
    609  1.116.12.1       tls 	 * the page itself.
    610  1.116.12.1       tls 	 */
    611        1.46       chs 
    612  1.116.12.1       tls 	mutex_enter(uobj->vmobjlock);
    613        1.96        ad 	mutex_enter(&uvm_pageqlock);
    614        1.46       chs 	while ((pg = TAILQ_FIRST(&uobj->memq)) != NULL) {
    615        1.46       chs 		pmap_page_protect(pg, VM_PROT_NONE);
    616         1.5       mrg 		if (pg->flags & PG_BUSY) {
    617        1.46       chs 			pg->flags |= PG_WANTED;
    618        1.96        ad 			mutex_exit(&uvm_pageqlock);
    619       1.115     rmind 			UVM_UNLOCK_AND_WAIT(pg, uobj->vmobjlock, false,
    620        1.46       chs 			    "uao_det", 0);
    621       1.115     rmind 			mutex_enter(uobj->vmobjlock);
    622        1.96        ad 			mutex_enter(&uvm_pageqlock);
    623         1.5       mrg 			continue;
    624         1.5       mrg 		}
    625        1.18       chs 		uao_dropswap(&aobj->u_obj, pg->offset >> PAGE_SHIFT);
    626         1.5       mrg 		uvm_pagefree(pg);
    627         1.5       mrg 	}
    628        1.96        ad 	mutex_exit(&uvm_pageqlock);
    629         1.1       mrg 
    630         1.5       mrg 	/*
    631  1.116.12.1       tls 	 * Finally, free the anonymous UVM object itself.
    632  1.116.12.1       tls 	 */
    633         1.1       mrg 
    634         1.5       mrg 	uao_free(aobj);
    635         1.5       mrg }
    636         1.1       mrg 
    637         1.1       mrg /*
    638        1.46       chs  * uao_put: flush pages out of a uvm object
    639        1.22   thorpej  *
    640        1.22   thorpej  * => object should be locked by caller.  we may _unlock_ the object
    641        1.22   thorpej  *	if (and only if) we need to clean a page (PGO_CLEANIT).
    642        1.22   thorpej  *	XXXJRT Currently, however, we don't.  In the case of cleaning
    643        1.22   thorpej  *	XXXJRT a page, we simply just deactivate it.  Should probably
    644        1.22   thorpej  *	XXXJRT handle this better, in the future (although "flushing"
    645        1.22   thorpej  *	XXXJRT anonymous memory isn't terribly important).
    646        1.22   thorpej  * => if PGO_CLEANIT is not set, then we will neither unlock the object
    647        1.22   thorpej  *	or block.
    648        1.22   thorpej  * => if PGO_ALLPAGE is set, then all pages in the object are valid targets
    649        1.22   thorpej  *	for flushing.
    650        1.22   thorpej  * => NOTE: we rely on the fact that the object's memq is a TAILQ and
    651        1.22   thorpej  *	that new pages are inserted on the tail end of the list.  thus,
    652        1.22   thorpej  *	we can make a complete pass through the object in one go by starting
    653        1.22   thorpej  *	at the head and working towards the tail (new pages are put in
    654        1.22   thorpej  *	front of us).
    655        1.22   thorpej  * => NOTE: we are allowed to lock the page queues, so the caller
    656        1.22   thorpej  *	must not be holding the lock on them [e.g. pagedaemon had
    657        1.22   thorpej  *	better not call us with the queues locked]
    658        1.86      matt  * => we return 0 unless we encountered some sort of I/O error
    659        1.22   thorpej  *	XXXJRT currently never happens, as we never directly initiate
    660        1.22   thorpej  *	XXXJRT I/O
    661        1.22   thorpej  *
    662        1.22   thorpej  * note on page traversal:
    663        1.22   thorpej  *	we can traverse the pages in an object either by going down the
    664        1.22   thorpej  *	linked list in "uobj->memq", or we can go over the address range
    665        1.22   thorpej  *	by page doing hash table lookups for each address.  depending
    666        1.22   thorpej  *	on how many pages are in the object it may be cheaper to do one
    667        1.22   thorpej  *	or the other.  we set "by_list" to true if we are using memq.
    668        1.22   thorpej  *	if the cost of a hash lookup was equal to the cost of the list
    669        1.22   thorpej  *	traversal we could compare the number of pages in the start->stop
    670        1.22   thorpej  *	range to the total number of pages in the object.  however, it
    671        1.22   thorpej  *	seems that a hash table lookup is more expensive than the linked
    672        1.22   thorpej  *	list traversal, so we multiply the number of pages in the
    673        1.22   thorpej  *	start->stop range by a penalty which we define below.
    674         1.1       mrg  */
    675        1.22   thorpej 
    676        1.68   thorpej static int
    677        1.67   thorpej uao_put(struct uvm_object *uobj, voff_t start, voff_t stop, int flags)
    678         1.5       mrg {
    679        1.46       chs 	struct uvm_aobj *aobj = (struct uvm_aobj *)uobj;
    680        1.51     enami 	struct vm_page *pg, *nextpg, curmp, endmp;
    681        1.85   thorpej 	bool by_list;
    682        1.28    kleink 	voff_t curoff;
    683        1.46       chs 	UVMHIST_FUNC("uao_put"); UVMHIST_CALLED(maphist);
    684        1.22   thorpej 
    685       1.115     rmind 	KASSERT(mutex_owned(uobj->vmobjlock));
    686        1.96        ad 
    687        1.46       chs 	curoff = 0;
    688        1.22   thorpej 	if (flags & PGO_ALLPAGES) {
    689        1.22   thorpej 		start = 0;
    690        1.22   thorpej 		stop = aobj->u_pages << PAGE_SHIFT;
    691        1.86      matt 		by_list = true;		/* always go by the list */
    692        1.22   thorpej 	} else {
    693        1.22   thorpej 		start = trunc_page(start);
    694        1.71      yamt 		if (stop == 0) {
    695        1.71      yamt 			stop = aobj->u_pages << PAGE_SHIFT;
    696        1.71      yamt 		} else {
    697        1.71      yamt 			stop = round_page(stop);
    698        1.71      yamt 		}
    699        1.22   thorpej 		if (stop > (aobj->u_pages << PAGE_SHIFT)) {
    700        1.22   thorpej 			printf("uao_flush: strange, got an out of range "
    701        1.22   thorpej 			    "flush (fixed)\n");
    702        1.22   thorpej 			stop = aobj->u_pages << PAGE_SHIFT;
    703        1.22   thorpej 		}
    704        1.22   thorpej 		by_list = (uobj->uo_npages <=
    705       1.105      yamt 		    ((stop - start) >> PAGE_SHIFT) * UVM_PAGE_TREE_PENALTY);
    706        1.22   thorpej 	}
    707        1.22   thorpej 	UVMHIST_LOG(maphist,
    708        1.22   thorpej 	    " flush start=0x%lx, stop=0x%x, by_list=%d, flags=0x%x",
    709        1.22   thorpej 	    start, stop, by_list, flags);
    710         1.1       mrg 
    711         1.5       mrg 	/*
    712        1.22   thorpej 	 * Don't need to do any work here if we're not freeing
    713        1.22   thorpej 	 * or deactivating pages.
    714        1.22   thorpej 	 */
    715        1.46       chs 
    716        1.22   thorpej 	if ((flags & (PGO_DEACTIVATE|PGO_FREE)) == 0) {
    717       1.115     rmind 		mutex_exit(uobj->vmobjlock);
    718        1.46       chs 		return 0;
    719        1.22   thorpej 	}
    720        1.22   thorpej 
    721         1.5       mrg 	/*
    722        1.51     enami 	 * Initialize the marker pages.  See the comment in
    723        1.51     enami 	 * genfs_putpages() also.
    724        1.51     enami 	 */
    725        1.51     enami 
    726       1.110   hannken 	curmp.flags = PG_MARKER;
    727       1.110   hannken 	endmp.flags = PG_MARKER;
    728        1.51     enami 
    729        1.51     enami 	/*
    730        1.46       chs 	 * now do it.  note: we must update nextpg in the body of loop or we
    731        1.51     enami 	 * will get stuck.  we need to use nextpg if we'll traverse the list
    732        1.51     enami 	 * because we may free "pg" before doing the next loop.
    733        1.21   thorpej 	 */
    734        1.22   thorpej 
    735        1.22   thorpej 	if (by_list) {
    736       1.102        ad 		TAILQ_INSERT_TAIL(&uobj->memq, &endmp, listq.queue);
    737        1.51     enami 		nextpg = TAILQ_FIRST(&uobj->memq);
    738        1.22   thorpej 	} else {
    739        1.22   thorpej 		curoff = start;
    740        1.52       scw 		nextpg = NULL;	/* Quell compiler warning */
    741        1.22   thorpej 	}
    742        1.22   thorpej 
    743        1.99        ad 	/* locked: uobj */
    744        1.51     enami 	for (;;) {
    745        1.22   thorpej 		if (by_list) {
    746        1.51     enami 			pg = nextpg;
    747        1.51     enami 			if (pg == &endmp)
    748        1.51     enami 				break;
    749       1.102        ad 			nextpg = TAILQ_NEXT(pg, listq.queue);
    750       1.110   hannken 			if (pg->flags & PG_MARKER)
    751       1.110   hannken 				continue;
    752        1.46       chs 			if (pg->offset < start || pg->offset >= stop)
    753        1.22   thorpej 				continue;
    754        1.22   thorpej 		} else {
    755        1.51     enami 			if (curoff < stop) {
    756        1.51     enami 				pg = uvm_pagelookup(uobj, curoff);
    757        1.51     enami 				curoff += PAGE_SIZE;
    758        1.51     enami 			} else
    759        1.51     enami 				break;
    760        1.46       chs 			if (pg == NULL)
    761        1.22   thorpej 				continue;
    762        1.22   thorpej 		}
    763        1.98      yamt 
    764        1.98      yamt 		/*
    765        1.98      yamt 		 * wait and try again if the page is busy.
    766        1.98      yamt 		 */
    767        1.98      yamt 
    768        1.98      yamt 		if (pg->flags & PG_BUSY) {
    769        1.98      yamt 			if (by_list) {
    770       1.102        ad 				TAILQ_INSERT_BEFORE(pg, &curmp, listq.queue);
    771        1.98      yamt 			}
    772        1.98      yamt 			pg->flags |= PG_WANTED;
    773       1.115     rmind 			UVM_UNLOCK_AND_WAIT(pg, uobj->vmobjlock, 0,
    774        1.98      yamt 			    "uao_put", 0);
    775       1.115     rmind 			mutex_enter(uobj->vmobjlock);
    776        1.98      yamt 			if (by_list) {
    777       1.102        ad 				nextpg = TAILQ_NEXT(&curmp, listq.queue);
    778        1.98      yamt 				TAILQ_REMOVE(&uobj->memq, &curmp,
    779       1.102        ad 				    listq.queue);
    780        1.98      yamt 			} else
    781        1.98      yamt 				curoff -= PAGE_SIZE;
    782        1.98      yamt 			continue;
    783        1.98      yamt 		}
    784        1.98      yamt 
    785        1.46       chs 		switch (flags & (PGO_CLEANIT|PGO_FREE|PGO_DEACTIVATE)) {
    786        1.41       chs 
    787        1.22   thorpej 		/*
    788        1.22   thorpej 		 * XXX In these first 3 cases, we always just
    789        1.22   thorpej 		 * XXX deactivate the page.  We may want to
    790        1.22   thorpej 		 * XXX handle the different cases more specifically
    791        1.22   thorpej 		 * XXX in the future.
    792        1.22   thorpej 		 */
    793        1.46       chs 
    794        1.22   thorpej 		case PGO_CLEANIT|PGO_FREE:
    795        1.22   thorpej 		case PGO_CLEANIT|PGO_DEACTIVATE:
    796        1.22   thorpej 		case PGO_DEACTIVATE:
    797        1.25   thorpej  deactivate_it:
    798        1.98      yamt 			mutex_enter(&uvm_pageqlock);
    799        1.83      yamt 			/* skip the page if it's wired */
    800        1.98      yamt 			if (pg->wire_count == 0) {
    801        1.98      yamt 				uvm_pagedeactivate(pg);
    802        1.98      yamt 			}
    803        1.98      yamt 			mutex_exit(&uvm_pageqlock);
    804        1.98      yamt 			break;
    805        1.22   thorpej 
    806        1.22   thorpej 		case PGO_FREE:
    807        1.25   thorpej 			/*
    808        1.25   thorpej 			 * If there are multiple references to
    809        1.25   thorpej 			 * the object, just deactivate the page.
    810        1.25   thorpej 			 */
    811        1.46       chs 
    812        1.25   thorpej 			if (uobj->uo_refs > 1)
    813        1.25   thorpej 				goto deactivate_it;
    814        1.25   thorpej 
    815        1.22   thorpej 			/*
    816        1.98      yamt 			 * free the swap slot and the page.
    817        1.22   thorpej 			 */
    818        1.46       chs 
    819        1.46       chs 			pmap_page_protect(pg, VM_PROT_NONE);
    820        1.75      yamt 
    821        1.75      yamt 			/*
    822        1.75      yamt 			 * freeing swapslot here is not strictly necessary.
    823        1.75      yamt 			 * however, leaving it here doesn't save much
    824        1.75      yamt 			 * because we need to update swap accounting anyway.
    825        1.75      yamt 			 */
    826        1.75      yamt 
    827        1.46       chs 			uao_dropswap(uobj, pg->offset >> PAGE_SHIFT);
    828        1.98      yamt 			mutex_enter(&uvm_pageqlock);
    829        1.46       chs 			uvm_pagefree(pg);
    830        1.98      yamt 			mutex_exit(&uvm_pageqlock);
    831        1.98      yamt 			break;
    832        1.98      yamt 
    833        1.98      yamt 		default:
    834        1.98      yamt 			panic("%s: impossible", __func__);
    835        1.22   thorpej 		}
    836        1.22   thorpej 	}
    837        1.51     enami 	if (by_list) {
    838       1.102        ad 		TAILQ_REMOVE(&uobj->memq, &endmp, listq.queue);
    839        1.89        ad 	}
    840       1.115     rmind 	mutex_exit(uobj->vmobjlock);
    841        1.46       chs 	return 0;
    842         1.1       mrg }
    843         1.1       mrg 
    844         1.1       mrg /*
    845         1.1       mrg  * uao_get: fetch me a page
    846         1.1       mrg  *
    847         1.1       mrg  * we have three cases:
    848         1.1       mrg  * 1: page is resident     -> just return the page.
    849         1.1       mrg  * 2: page is zero-fill    -> allocate a new page and zero it.
    850         1.1       mrg  * 3: page is swapped out  -> fetch the page from swap.
    851         1.1       mrg  *
    852         1.1       mrg  * cases 1 and 2 can be handled with PGO_LOCKED, case 3 cannot.
    853         1.1       mrg  * so, if the "center" page hits case 3 (or any page, with PGO_ALLPAGES),
    854        1.40       chs  * then we will need to return EBUSY.
    855         1.1       mrg  *
    856         1.1       mrg  * => prefer map unlocked (not required)
    857         1.1       mrg  * => object must be locked!  we will _unlock_ it before starting any I/O.
    858         1.1       mrg  * => flags: PGO_ALLPAGES: get all of the pages
    859         1.1       mrg  *           PGO_LOCKED: fault data structures are locked
    860         1.1       mrg  * => NOTE: offset is the offset of pps[0], _NOT_ pps[centeridx]
    861         1.1       mrg  * => NOTE: caller must check for released pages!!
    862         1.1       mrg  */
    863        1.46       chs 
    864         1.5       mrg static int
    865        1.67   thorpej uao_get(struct uvm_object *uobj, voff_t offset, struct vm_page **pps,
    866        1.82      yamt     int *npagesp, int centeridx, vm_prot_t access_type, int advice, int flags)
    867         1.5       mrg {
    868        1.28    kleink 	voff_t current_offset;
    869        1.52       scw 	struct vm_page *ptmp = NULL;	/* Quell compiler warning */
    870        1.72      yamt 	int lcv, gotpages, maxpages, swslot, pageidx;
    871        1.85   thorpej 	bool done;
    872         1.5       mrg 	UVMHIST_FUNC("uao_get"); UVMHIST_CALLED(pdhist);
    873         1.5       mrg 
    874        1.27       chs 	UVMHIST_LOG(pdhist, "aobj=%p offset=%d, flags=%d",
    875        1.74      yamt 		    (struct uvm_aobj *)uobj, offset, flags,0);
    876        1.37       chs 
    877         1.5       mrg 	/*
    878         1.5       mrg  	 * get number of pages
    879         1.5       mrg  	 */
    880        1.46       chs 
    881         1.5       mrg 	maxpages = *npagesp;
    882         1.5       mrg 
    883         1.5       mrg 	/*
    884         1.5       mrg  	 * step 1: handled the case where fault data structures are locked.
    885         1.5       mrg  	 */
    886         1.1       mrg 
    887         1.5       mrg 	if (flags & PGO_LOCKED) {
    888        1.46       chs 
    889         1.5       mrg 		/*
    890         1.5       mrg  		 * step 1a: get pages that are already resident.   only do
    891         1.5       mrg 		 * this if the data structures are locked (i.e. the first
    892         1.5       mrg 		 * time through).
    893         1.5       mrg  		 */
    894         1.5       mrg 
    895        1.87   thorpej 		done = true;	/* be optimistic */
    896         1.5       mrg 		gotpages = 0;	/* # of pages we got so far */
    897         1.5       mrg 		for (lcv = 0, current_offset = offset ; lcv < maxpages ;
    898         1.5       mrg 		    lcv++, current_offset += PAGE_SIZE) {
    899         1.5       mrg 			/* do we care about this page?  if not, skip it */
    900         1.5       mrg 			if (pps[lcv] == PGO_DONTCARE)
    901         1.5       mrg 				continue;
    902         1.5       mrg 			ptmp = uvm_pagelookup(uobj, current_offset);
    903         1.5       mrg 
    904         1.5       mrg 			/*
    905        1.30   thorpej  			 * if page is new, attempt to allocate the page,
    906        1.30   thorpej 			 * zero-fill'd.
    907         1.5       mrg  			 */
    908        1.46       chs 
    909  1.116.12.1       tls 			if (ptmp == NULL && uao_find_swslot(uobj,
    910        1.15       chs 			    current_offset >> PAGE_SHIFT) == 0) {
    911  1.116.12.2       tls 				ptmp = uao_pagealloc(uobj, current_offset,
    912  1.116.12.2       tls 				    UVM_FLAG_COLORMATCH|UVM_PGA_ZERO);
    913         1.5       mrg 				if (ptmp) {
    914         1.5       mrg 					/* new page */
    915        1.47       chs 					ptmp->flags &= ~(PG_FAKE);
    916         1.5       mrg 					ptmp->pqflags |= PQ_AOBJ;
    917        1.47       chs 					goto gotpage;
    918         1.5       mrg 				}
    919         1.5       mrg 			}
    920         1.5       mrg 
    921         1.5       mrg 			/*
    922        1.46       chs 			 * to be useful must get a non-busy page
    923         1.5       mrg 			 */
    924        1.46       chs 
    925        1.46       chs 			if (ptmp == NULL || (ptmp->flags & PG_BUSY) != 0) {
    926         1.5       mrg 				if (lcv == centeridx ||
    927         1.5       mrg 				    (flags & PGO_ALLPAGES) != 0)
    928         1.5       mrg 					/* need to do a wait or I/O! */
    929        1.87   thorpej 					done = false;
    930         1.5       mrg 					continue;
    931         1.5       mrg 			}
    932         1.5       mrg 
    933         1.5       mrg 			/*
    934         1.5       mrg 			 * useful page: busy/lock it and plug it in our
    935         1.5       mrg 			 * result array
    936         1.5       mrg 			 */
    937        1.46       chs 
    938         1.5       mrg 			/* caller must un-busy this page */
    939        1.41       chs 			ptmp->flags |= PG_BUSY;
    940         1.5       mrg 			UVM_PAGE_OWN(ptmp, "uao_get1");
    941        1.47       chs gotpage:
    942         1.5       mrg 			pps[lcv] = ptmp;
    943         1.5       mrg 			gotpages++;
    944        1.46       chs 		}
    945         1.5       mrg 
    946         1.5       mrg 		/*
    947         1.5       mrg  		 * step 1b: now we've either done everything needed or we
    948         1.5       mrg 		 * to unlock and do some waiting or I/O.
    949         1.5       mrg  		 */
    950         1.5       mrg 
    951         1.5       mrg 		UVMHIST_LOG(pdhist, "<- done (done=%d)", done, 0,0,0);
    952         1.5       mrg 		*npagesp = gotpages;
    953         1.5       mrg 		if (done)
    954        1.46       chs 			return 0;
    955         1.5       mrg 		else
    956        1.46       chs 			return EBUSY;
    957         1.1       mrg 	}
    958         1.1       mrg 
    959         1.5       mrg 	/*
    960         1.5       mrg  	 * step 2: get non-resident or busy pages.
    961         1.5       mrg  	 * object is locked.   data structures are unlocked.
    962         1.5       mrg  	 */
    963         1.5       mrg 
    964        1.76      yamt 	if ((flags & PGO_SYNCIO) == 0) {
    965        1.76      yamt 		goto done;
    966        1.76      yamt 	}
    967        1.76      yamt 
    968         1.5       mrg 	for (lcv = 0, current_offset = offset ; lcv < maxpages ;
    969         1.5       mrg 	    lcv++, current_offset += PAGE_SIZE) {
    970        1.27       chs 
    971         1.5       mrg 		/*
    972         1.5       mrg 		 * - skip over pages we've already gotten or don't want
    973         1.5       mrg 		 * - skip over pages we don't _have_ to get
    974         1.5       mrg 		 */
    975        1.27       chs 
    976         1.5       mrg 		if (pps[lcv] != NULL ||
    977         1.5       mrg 		    (lcv != centeridx && (flags & PGO_ALLPAGES) == 0))
    978         1.5       mrg 			continue;
    979         1.5       mrg 
    980        1.27       chs 		pageidx = current_offset >> PAGE_SHIFT;
    981        1.27       chs 
    982         1.5       mrg 		/*
    983         1.5       mrg  		 * we have yet to locate the current page (pps[lcv]).   we
    984         1.5       mrg 		 * first look for a page that is already at the current offset.
    985         1.5       mrg 		 * if we find a page, we check to see if it is busy or
    986         1.5       mrg 		 * released.  if that is the case, then we sleep on the page
    987         1.5       mrg 		 * until it is no longer busy or released and repeat the lookup.
    988         1.5       mrg 		 * if the page we found is neither busy nor released, then we
    989         1.5       mrg 		 * busy it (so we own it) and plug it into pps[lcv].   this
    990         1.5       mrg 		 * 'break's the following while loop and indicates we are
    991         1.5       mrg 		 * ready to move on to the next page in the "lcv" loop above.
    992         1.5       mrg  		 *
    993         1.5       mrg  		 * if we exit the while loop with pps[lcv] still set to NULL,
    994         1.5       mrg 		 * then it means that we allocated a new busy/fake/clean page
    995         1.5       mrg 		 * ptmp in the object and we need to do I/O to fill in the data.
    996         1.5       mrg  		 */
    997         1.5       mrg 
    998         1.5       mrg 		/* top of "pps" while loop */
    999         1.5       mrg 		while (pps[lcv] == NULL) {
   1000         1.5       mrg 			/* look for a resident page */
   1001         1.5       mrg 			ptmp = uvm_pagelookup(uobj, current_offset);
   1002         1.5       mrg 
   1003         1.5       mrg 			/* not resident?   allocate one now (if we can) */
   1004         1.5       mrg 			if (ptmp == NULL) {
   1005         1.5       mrg 
   1006  1.116.12.2       tls 				ptmp = uao_pagealloc(uobj, current_offset, 0);
   1007         1.5       mrg 
   1008         1.5       mrg 				/* out of RAM? */
   1009         1.5       mrg 				if (ptmp == NULL) {
   1010       1.115     rmind 					mutex_exit(uobj->vmobjlock);
   1011         1.5       mrg 					UVMHIST_LOG(pdhist,
   1012         1.5       mrg 					    "sleeping, ptmp == NULL\n",0,0,0,0);
   1013         1.5       mrg 					uvm_wait("uao_getpage");
   1014       1.115     rmind 					mutex_enter(uobj->vmobjlock);
   1015        1.41       chs 					continue;
   1016         1.5       mrg 				}
   1017         1.5       mrg 
   1018         1.5       mrg 				/*
   1019         1.5       mrg 				 * safe with PQ's unlocked: because we just
   1020         1.5       mrg 				 * alloc'd the page
   1021         1.5       mrg 				 */
   1022        1.46       chs 
   1023         1.5       mrg 				ptmp->pqflags |= PQ_AOBJ;
   1024         1.5       mrg 
   1025        1.41       chs 				/*
   1026         1.5       mrg 				 * got new page ready for I/O.  break pps while
   1027         1.5       mrg 				 * loop.  pps[lcv] is still NULL.
   1028         1.5       mrg 				 */
   1029        1.46       chs 
   1030         1.5       mrg 				break;
   1031         1.5       mrg 			}
   1032         1.5       mrg 
   1033         1.5       mrg 			/* page is there, see if we need to wait on it */
   1034        1.46       chs 			if ((ptmp->flags & PG_BUSY) != 0) {
   1035         1.5       mrg 				ptmp->flags |= PG_WANTED;
   1036         1.5       mrg 				UVMHIST_LOG(pdhist,
   1037         1.5       mrg 				    "sleeping, ptmp->flags 0x%x\n",
   1038         1.5       mrg 				    ptmp->flags,0,0,0);
   1039       1.115     rmind 				UVM_UNLOCK_AND_WAIT(ptmp, uobj->vmobjlock,
   1040        1.87   thorpej 				    false, "uao_get", 0);
   1041       1.115     rmind 				mutex_enter(uobj->vmobjlock);
   1042        1.46       chs 				continue;
   1043         1.5       mrg 			}
   1044        1.41       chs 
   1045        1.41       chs 			/*
   1046         1.5       mrg  			 * if we get here then the page has become resident and
   1047         1.5       mrg 			 * unbusy between steps 1 and 2.  we busy it now (so we
   1048         1.5       mrg 			 * own it) and set pps[lcv] (so that we exit the while
   1049         1.5       mrg 			 * loop).
   1050         1.5       mrg  			 */
   1051        1.46       chs 
   1052         1.5       mrg 			/* we own it, caller must un-busy */
   1053         1.5       mrg 			ptmp->flags |= PG_BUSY;
   1054         1.5       mrg 			UVM_PAGE_OWN(ptmp, "uao_get2");
   1055         1.5       mrg 			pps[lcv] = ptmp;
   1056         1.5       mrg 		}
   1057         1.5       mrg 
   1058         1.5       mrg 		/*
   1059         1.5       mrg  		 * if we own the valid page at the correct offset, pps[lcv] will
   1060         1.5       mrg  		 * point to it.   nothing more to do except go to the next page.
   1061         1.5       mrg  		 */
   1062        1.46       chs 
   1063         1.5       mrg 		if (pps[lcv])
   1064         1.5       mrg 			continue;			/* next lcv */
   1065         1.5       mrg 
   1066         1.5       mrg 		/*
   1067        1.41       chs  		 * we have a "fake/busy/clean" page that we just allocated.
   1068         1.5       mrg  		 * do the needed "i/o", either reading from swap or zeroing.
   1069         1.5       mrg  		 */
   1070        1.46       chs 
   1071  1.116.12.1       tls 		swslot = uao_find_swslot(uobj, pageidx);
   1072         1.5       mrg 
   1073         1.5       mrg 		/*
   1074         1.5       mrg  		 * just zero the page if there's nothing in swap.
   1075         1.5       mrg  		 */
   1076        1.46       chs 
   1077        1.46       chs 		if (swslot == 0) {
   1078        1.46       chs 
   1079         1.5       mrg 			/*
   1080         1.5       mrg 			 * page hasn't existed before, just zero it.
   1081         1.5       mrg 			 */
   1082        1.46       chs 
   1083         1.5       mrg 			uvm_pagezero(ptmp);
   1084        1.27       chs 		} else {
   1085        1.72      yamt #if defined(VMSWAP)
   1086        1.72      yamt 			int error;
   1087        1.72      yamt 
   1088         1.5       mrg 			UVMHIST_LOG(pdhist, "pagein from swslot %d",
   1089         1.5       mrg 			     swslot, 0,0,0);
   1090         1.5       mrg 
   1091         1.5       mrg 			/*
   1092         1.5       mrg 			 * page in the swapped-out page.
   1093         1.5       mrg 			 * unlock object for i/o, relock when done.
   1094         1.5       mrg 			 */
   1095        1.46       chs 
   1096       1.115     rmind 			mutex_exit(uobj->vmobjlock);
   1097        1.46       chs 			error = uvm_swap_get(ptmp, swslot, PGO_SYNCIO);
   1098       1.115     rmind 			mutex_enter(uobj->vmobjlock);
   1099         1.5       mrg 
   1100         1.5       mrg 			/*
   1101         1.5       mrg 			 * I/O done.  check for errors.
   1102         1.5       mrg 			 */
   1103        1.46       chs 
   1104        1.46       chs 			if (error != 0) {
   1105         1.5       mrg 				UVMHIST_LOG(pdhist, "<- done (error=%d)",
   1106        1.46       chs 				    error,0,0,0);
   1107         1.5       mrg 				if (ptmp->flags & PG_WANTED)
   1108        1.24   thorpej 					wakeup(ptmp);
   1109        1.27       chs 
   1110        1.27       chs 				/*
   1111        1.27       chs 				 * remove the swap slot from the aobj
   1112        1.27       chs 				 * and mark the aobj as having no real slot.
   1113        1.27       chs 				 * don't free the swap slot, thus preventing
   1114        1.27       chs 				 * it from being used again.
   1115        1.27       chs 				 */
   1116        1.46       chs 
   1117  1.116.12.1       tls 				swslot = uao_set_swslot(uobj, pageidx,
   1118  1.116.12.1       tls 				    SWSLOT_BAD);
   1119        1.57        pk 				if (swslot > 0) {
   1120        1.45       chs 					uvm_swap_markbad(swslot, 1);
   1121        1.45       chs 				}
   1122        1.27       chs 
   1123        1.96        ad 				mutex_enter(&uvm_pageqlock);
   1124         1.5       mrg 				uvm_pagefree(ptmp);
   1125        1.96        ad 				mutex_exit(&uvm_pageqlock);
   1126       1.115     rmind 				mutex_exit(uobj->vmobjlock);
   1127        1.46       chs 				return error;
   1128         1.5       mrg 			}
   1129        1.72      yamt #else /* defined(VMSWAP) */
   1130        1.72      yamt 			panic("%s: pagein", __func__);
   1131        1.72      yamt #endif /* defined(VMSWAP) */
   1132         1.5       mrg 		}
   1133         1.5       mrg 
   1134        1.78      yamt 		if ((access_type & VM_PROT_WRITE) == 0) {
   1135        1.78      yamt 			ptmp->flags |= PG_CLEAN;
   1136        1.78      yamt 			pmap_clear_modify(ptmp);
   1137        1.78      yamt 		}
   1138        1.78      yamt 
   1139        1.41       chs 		/*
   1140         1.5       mrg  		 * we got the page!   clear the fake flag (indicates valid
   1141         1.5       mrg 		 * data now in page) and plug into our result array.   note
   1142        1.41       chs 		 * that page is still busy.
   1143         1.5       mrg  		 *
   1144         1.5       mrg  		 * it is the callers job to:
   1145         1.5       mrg  		 * => check if the page is released
   1146         1.5       mrg  		 * => unbusy the page
   1147         1.5       mrg  		 * => activate the page
   1148         1.5       mrg  		 */
   1149         1.5       mrg 
   1150        1.46       chs 		ptmp->flags &= ~PG_FAKE;
   1151         1.5       mrg 		pps[lcv] = ptmp;
   1152        1.46       chs 	}
   1153         1.1       mrg 
   1154         1.1       mrg 	/*
   1155         1.5       mrg  	 * finally, unlock object and return.
   1156         1.5       mrg  	 */
   1157         1.1       mrg 
   1158        1.76      yamt done:
   1159       1.115     rmind 	mutex_exit(uobj->vmobjlock);
   1160         1.5       mrg 	UVMHIST_LOG(pdhist, "<- done (OK)",0,0,0,0);
   1161        1.46       chs 	return 0;
   1162         1.1       mrg }
   1163         1.1       mrg 
   1164        1.72      yamt #if defined(VMSWAP)
   1165        1.72      yamt 
   1166         1.1       mrg /*
   1167        1.18       chs  * uao_dropswap:  release any swap resources from this aobj page.
   1168        1.41       chs  *
   1169        1.18       chs  * => aobj must be locked or have a reference count of 0.
   1170        1.18       chs  */
   1171        1.18       chs 
   1172        1.18       chs void
   1173        1.67   thorpej uao_dropswap(struct uvm_object *uobj, int pageidx)
   1174        1.18       chs {
   1175        1.18       chs 	int slot;
   1176        1.18       chs 
   1177        1.18       chs 	slot = uao_set_swslot(uobj, pageidx, 0);
   1178        1.18       chs 	if (slot) {
   1179        1.18       chs 		uvm_swap_free(slot, 1);
   1180        1.18       chs 	}
   1181        1.27       chs }
   1182        1.27       chs 
   1183        1.27       chs /*
   1184        1.27       chs  * page in every page in every aobj that is paged-out to a range of swslots.
   1185        1.41       chs  *
   1186        1.27       chs  * => nothing should be locked.
   1187        1.87   thorpej  * => returns true if pagein was aborted due to lack of memory.
   1188        1.27       chs  */
   1189        1.46       chs 
   1190        1.85   thorpej bool
   1191        1.67   thorpej uao_swap_off(int startslot, int endslot)
   1192        1.27       chs {
   1193  1.116.12.1       tls 	struct uvm_aobj *aobj;
   1194        1.27       chs 
   1195        1.27       chs 	/*
   1196  1.116.12.1       tls 	 * Walk the list of all anonymous UVM objects.  Grab the first.
   1197        1.27       chs 	 */
   1198        1.90        ad 	mutex_enter(&uao_list_lock);
   1199  1.116.12.1       tls 	if ((aobj = LIST_FIRST(&uao_list)) == NULL) {
   1200  1.116.12.1       tls 		mutex_exit(&uao_list_lock);
   1201  1.116.12.1       tls 		return false;
   1202  1.116.12.1       tls 	}
   1203  1.116.12.1       tls 	uao_reference(&aobj->u_obj);
   1204        1.46       chs 
   1205  1.116.12.1       tls 	do {
   1206  1.116.12.1       tls 		struct uvm_aobj *nextaobj;
   1207  1.116.12.1       tls 		bool rv;
   1208        1.27       chs 
   1209        1.27       chs 		/*
   1210  1.116.12.1       tls 		 * Prefetch the next object and immediately hold a reference
   1211  1.116.12.1       tls 		 * on it, so neither the current nor the next entry could
   1212  1.116.12.1       tls 		 * disappear while we are iterating.
   1213        1.27       chs 		 */
   1214  1.116.12.1       tls 		if ((nextaobj = LIST_NEXT(aobj, u_list)) != NULL) {
   1215  1.116.12.1       tls 			uao_reference(&nextaobj->u_obj);
   1216  1.116.12.1       tls 		}
   1217        1.90        ad 		mutex_exit(&uao_list_lock);
   1218        1.27       chs 
   1219        1.27       chs 		/*
   1220  1.116.12.1       tls 		 * Page in all pages in the swap slot range.
   1221        1.27       chs 		 */
   1222  1.116.12.1       tls 		mutex_enter(aobj->u_obj.vmobjlock);
   1223        1.27       chs 		rv = uao_pagein(aobj, startslot, endslot);
   1224  1.116.12.1       tls 		mutex_exit(aobj->u_obj.vmobjlock);
   1225  1.116.12.1       tls 
   1226  1.116.12.1       tls 		/* Drop the reference of the current object. */
   1227  1.116.12.1       tls 		uao_detach(&aobj->u_obj);
   1228        1.27       chs 		if (rv) {
   1229  1.116.12.1       tls 			if (nextaobj) {
   1230  1.116.12.1       tls 				uao_detach(&nextaobj->u_obj);
   1231  1.116.12.1       tls 			}
   1232        1.27       chs 			return rv;
   1233        1.27       chs 		}
   1234        1.27       chs 
   1235  1.116.12.1       tls 		aobj = nextaobj;
   1236        1.90        ad 		mutex_enter(&uao_list_lock);
   1237  1.116.12.1       tls 	} while (aobj);
   1238        1.27       chs 
   1239        1.90        ad 	mutex_exit(&uao_list_lock);
   1240        1.87   thorpej 	return false;
   1241        1.27       chs }
   1242        1.27       chs 
   1243        1.27       chs /*
   1244        1.27       chs  * page in any pages from aobj in the given range.
   1245        1.27       chs  *
   1246        1.27       chs  * => aobj must be locked and is returned locked.
   1247        1.87   thorpej  * => returns true if pagein was aborted due to lack of memory.
   1248        1.27       chs  */
   1249        1.85   thorpej static bool
   1250        1.67   thorpej uao_pagein(struct uvm_aobj *aobj, int startslot, int endslot)
   1251        1.27       chs {
   1252        1.85   thorpej 	bool rv;
   1253        1.27       chs 
   1254        1.27       chs 	if (UAO_USES_SWHASH(aobj)) {
   1255        1.27       chs 		struct uao_swhash_elt *elt;
   1256        1.65  christos 		int buck;
   1257        1.27       chs 
   1258        1.27       chs restart:
   1259        1.65  christos 		for (buck = aobj->u_swhashmask; buck >= 0; buck--) {
   1260        1.65  christos 			for (elt = LIST_FIRST(&aobj->u_swhash[buck]);
   1261        1.27       chs 			     elt != NULL;
   1262        1.27       chs 			     elt = LIST_NEXT(elt, list)) {
   1263        1.27       chs 				int i;
   1264        1.27       chs 
   1265        1.27       chs 				for (i = 0; i < UAO_SWHASH_CLUSTER_SIZE; i++) {
   1266        1.27       chs 					int slot = elt->slots[i];
   1267        1.27       chs 
   1268        1.27       chs 					/*
   1269        1.27       chs 					 * if the slot isn't in range, skip it.
   1270        1.27       chs 					 */
   1271        1.46       chs 
   1272        1.41       chs 					if (slot < startslot ||
   1273        1.27       chs 					    slot >= endslot) {
   1274        1.27       chs 						continue;
   1275        1.27       chs 					}
   1276        1.27       chs 
   1277        1.27       chs 					/*
   1278        1.27       chs 					 * process the page,
   1279        1.27       chs 					 * the start over on this object
   1280        1.27       chs 					 * since the swhash elt
   1281        1.27       chs 					 * may have been freed.
   1282        1.27       chs 					 */
   1283        1.46       chs 
   1284        1.27       chs 					rv = uao_pagein_page(aobj,
   1285        1.27       chs 					  UAO_SWHASH_ELT_PAGEIDX_BASE(elt) + i);
   1286        1.27       chs 					if (rv) {
   1287        1.27       chs 						return rv;
   1288        1.27       chs 					}
   1289        1.27       chs 					goto restart;
   1290        1.27       chs 				}
   1291        1.27       chs 			}
   1292        1.27       chs 		}
   1293        1.27       chs 	} else {
   1294        1.27       chs 		int i;
   1295        1.27       chs 
   1296        1.27       chs 		for (i = 0; i < aobj->u_pages; i++) {
   1297        1.27       chs 			int slot = aobj->u_swslots[i];
   1298        1.27       chs 
   1299        1.27       chs 			/*
   1300        1.27       chs 			 * if the slot isn't in range, skip it
   1301        1.27       chs 			 */
   1302        1.46       chs 
   1303        1.27       chs 			if (slot < startslot || slot >= endslot) {
   1304        1.27       chs 				continue;
   1305        1.27       chs 			}
   1306        1.27       chs 
   1307        1.27       chs 			/*
   1308        1.27       chs 			 * process the page.
   1309        1.27       chs 			 */
   1310        1.46       chs 
   1311        1.27       chs 			rv = uao_pagein_page(aobj, i);
   1312        1.27       chs 			if (rv) {
   1313        1.27       chs 				return rv;
   1314        1.27       chs 			}
   1315        1.27       chs 		}
   1316        1.27       chs 	}
   1317        1.27       chs 
   1318        1.87   thorpej 	return false;
   1319        1.27       chs }
   1320        1.27       chs 
   1321        1.27       chs /*
   1322  1.116.12.1       tls  * uao_pagein_page: page in a single page from an anonymous UVM object.
   1323        1.27       chs  *
   1324  1.116.12.1       tls  * => Returns true if pagein was aborted due to lack of memory.
   1325  1.116.12.1       tls  * => Object must be locked and is returned locked.
   1326        1.27       chs  */
   1327        1.46       chs 
   1328        1.85   thorpej static bool
   1329        1.67   thorpej uao_pagein_page(struct uvm_aobj *aobj, int pageidx)
   1330        1.27       chs {
   1331  1.116.12.1       tls 	struct uvm_object *uobj = &aobj->u_obj;
   1332        1.27       chs 	struct vm_page *pg;
   1333        1.57        pk 	int rv, npages;
   1334        1.27       chs 
   1335        1.27       chs 	pg = NULL;
   1336        1.27       chs 	npages = 1;
   1337  1.116.12.1       tls 
   1338  1.116.12.1       tls 	KASSERT(mutex_owned(uobj->vmobjlock));
   1339  1.116.12.1       tls 	rv = uao_get(uobj, pageidx << PAGE_SHIFT, &pg, &npages,
   1340  1.116.12.1       tls 	    0, VM_PROT_READ | VM_PROT_WRITE, 0, PGO_SYNCIO);
   1341        1.27       chs 
   1342        1.27       chs 	/*
   1343        1.27       chs 	 * relock and finish up.
   1344        1.27       chs 	 */
   1345        1.46       chs 
   1346  1.116.12.1       tls 	mutex_enter(uobj->vmobjlock);
   1347        1.27       chs 	switch (rv) {
   1348        1.40       chs 	case 0:
   1349        1.27       chs 		break;
   1350        1.27       chs 
   1351        1.40       chs 	case EIO:
   1352        1.40       chs 	case ERESTART:
   1353        1.46       chs 
   1354        1.27       chs 		/*
   1355        1.27       chs 		 * nothing more to do on errors.
   1356        1.40       chs 		 * ERESTART can only mean that the anon was freed,
   1357        1.27       chs 		 * so again there's nothing to do.
   1358        1.27       chs 		 */
   1359        1.46       chs 
   1360        1.87   thorpej 		return false;
   1361        1.59        pk 
   1362        1.59        pk 	default:
   1363        1.87   thorpej 		return true;
   1364        1.27       chs 	}
   1365        1.27       chs 
   1366        1.27       chs 	/*
   1367        1.27       chs 	 * ok, we've got the page now.
   1368        1.27       chs 	 * mark it as dirty, clear its swslot and un-busy it.
   1369        1.27       chs 	 */
   1370        1.57        pk 	uao_dropswap(&aobj->u_obj, pageidx);
   1371        1.27       chs 
   1372        1.27       chs 	/*
   1373        1.80      yamt 	 * make sure it's on a page queue.
   1374        1.27       chs 	 */
   1375        1.96        ad 	mutex_enter(&uvm_pageqlock);
   1376        1.58        pk 	if (pg->wire_count == 0)
   1377        1.80      yamt 		uvm_pageenqueue(pg);
   1378        1.96        ad 	mutex_exit(&uvm_pageqlock);
   1379        1.56      yamt 
   1380        1.59        pk 	if (pg->flags & PG_WANTED) {
   1381        1.59        pk 		wakeup(pg);
   1382        1.59        pk 	}
   1383        1.59        pk 	pg->flags &= ~(PG_WANTED|PG_BUSY|PG_CLEAN|PG_FAKE);
   1384        1.56      yamt 	UVM_PAGE_OWN(pg, NULL);
   1385        1.56      yamt 
   1386        1.87   thorpej 	return false;
   1387         1.1       mrg }
   1388        1.72      yamt 
   1389        1.75      yamt /*
   1390        1.75      yamt  * uao_dropswap_range: drop swapslots in the range.
   1391        1.75      yamt  *
   1392        1.75      yamt  * => aobj must be locked and is returned locked.
   1393        1.75      yamt  * => start is inclusive.  end is exclusive.
   1394        1.75      yamt  */
   1395        1.75      yamt 
   1396        1.75      yamt void
   1397        1.75      yamt uao_dropswap_range(struct uvm_object *uobj, voff_t start, voff_t end)
   1398        1.75      yamt {
   1399        1.75      yamt 	struct uvm_aobj *aobj = (struct uvm_aobj *)uobj;
   1400  1.116.12.1       tls 	int swpgonlydelta = 0;
   1401        1.75      yamt 
   1402       1.115     rmind 	KASSERT(mutex_owned(uobj->vmobjlock));
   1403        1.75      yamt 
   1404        1.75      yamt 	if (end == 0) {
   1405        1.75      yamt 		end = INT64_MAX;
   1406        1.75      yamt 	}
   1407        1.75      yamt 
   1408        1.75      yamt 	if (UAO_USES_SWHASH(aobj)) {
   1409        1.75      yamt 		int i, hashbuckets = aobj->u_swhashmask + 1;
   1410        1.75      yamt 		voff_t taghi;
   1411        1.75      yamt 		voff_t taglo;
   1412        1.75      yamt 
   1413        1.75      yamt 		taglo = UAO_SWHASH_ELT_TAG(start);
   1414        1.75      yamt 		taghi = UAO_SWHASH_ELT_TAG(end);
   1415        1.75      yamt 
   1416        1.75      yamt 		for (i = 0; i < hashbuckets; i++) {
   1417        1.75      yamt 			struct uao_swhash_elt *elt, *next;
   1418        1.75      yamt 
   1419        1.75      yamt 			for (elt = LIST_FIRST(&aobj->u_swhash[i]);
   1420        1.75      yamt 			     elt != NULL;
   1421        1.75      yamt 			     elt = next) {
   1422        1.75      yamt 				int startidx, endidx;
   1423        1.75      yamt 				int j;
   1424        1.75      yamt 
   1425        1.75      yamt 				next = LIST_NEXT(elt, list);
   1426        1.75      yamt 
   1427        1.75      yamt 				if (elt->tag < taglo || taghi < elt->tag) {
   1428        1.75      yamt 					continue;
   1429        1.75      yamt 				}
   1430        1.75      yamt 
   1431        1.75      yamt 				if (elt->tag == taglo) {
   1432        1.75      yamt 					startidx =
   1433        1.75      yamt 					    UAO_SWHASH_ELT_PAGESLOT_IDX(start);
   1434        1.75      yamt 				} else {
   1435        1.75      yamt 					startidx = 0;
   1436        1.75      yamt 				}
   1437        1.75      yamt 
   1438        1.75      yamt 				if (elt->tag == taghi) {
   1439        1.75      yamt 					endidx =
   1440        1.75      yamt 					    UAO_SWHASH_ELT_PAGESLOT_IDX(end);
   1441        1.75      yamt 				} else {
   1442        1.75      yamt 					endidx = UAO_SWHASH_CLUSTER_SIZE;
   1443        1.75      yamt 				}
   1444        1.75      yamt 
   1445        1.75      yamt 				for (j = startidx; j < endidx; j++) {
   1446        1.75      yamt 					int slot = elt->slots[j];
   1447        1.75      yamt 
   1448        1.75      yamt 					KASSERT(uvm_pagelookup(&aobj->u_obj,
   1449        1.75      yamt 					    (UAO_SWHASH_ELT_PAGEIDX_BASE(elt)
   1450        1.75      yamt 					    + j) << PAGE_SHIFT) == NULL);
   1451        1.75      yamt 					if (slot > 0) {
   1452        1.75      yamt 						uvm_swap_free(slot, 1);
   1453        1.75      yamt 						swpgonlydelta++;
   1454        1.75      yamt 						KASSERT(elt->count > 0);
   1455        1.75      yamt 						elt->slots[j] = 0;
   1456        1.75      yamt 						elt->count--;
   1457        1.75      yamt 					}
   1458        1.75      yamt 				}
   1459        1.75      yamt 
   1460        1.75      yamt 				if (elt->count == 0) {
   1461        1.75      yamt 					LIST_REMOVE(elt, list);
   1462        1.75      yamt 					pool_put(&uao_swhash_elt_pool, elt);
   1463        1.75      yamt 				}
   1464        1.75      yamt 			}
   1465        1.75      yamt 		}
   1466        1.75      yamt 	} else {
   1467        1.75      yamt 		int i;
   1468        1.75      yamt 
   1469        1.75      yamt 		if (aobj->u_pages < end) {
   1470        1.75      yamt 			end = aobj->u_pages;
   1471        1.75      yamt 		}
   1472        1.75      yamt 		for (i = start; i < end; i++) {
   1473        1.75      yamt 			int slot = aobj->u_swslots[i];
   1474        1.75      yamt 
   1475        1.75      yamt 			if (slot > 0) {
   1476        1.75      yamt 				uvm_swap_free(slot, 1);
   1477        1.75      yamt 				swpgonlydelta++;
   1478        1.75      yamt 			}
   1479        1.75      yamt 		}
   1480        1.75      yamt 	}
   1481        1.75      yamt 
   1482        1.75      yamt 	/*
   1483        1.75      yamt 	 * adjust the counter of pages only in swap for all
   1484        1.75      yamt 	 * the swap slots we've freed.
   1485        1.75      yamt 	 */
   1486        1.75      yamt 
   1487        1.75      yamt 	if (swpgonlydelta > 0) {
   1488        1.92        ad 		mutex_enter(&uvm_swap_data_lock);
   1489        1.75      yamt 		KASSERT(uvmexp.swpgonly >= swpgonlydelta);
   1490        1.75      yamt 		uvmexp.swpgonly -= swpgonlydelta;
   1491        1.92        ad 		mutex_exit(&uvm_swap_data_lock);
   1492        1.75      yamt 	}
   1493        1.75      yamt }
   1494        1.75      yamt 
   1495        1.72      yamt #endif /* defined(VMSWAP) */
   1496