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uvm_extern.h revision 1.40.2.1
      1  1.40.2.1  minoura /*	$NetBSD: uvm_extern.h,v 1.40.2.1 2000/06/22 17:10:43 minoura Exp $	*/
      2       1.1      mrg 
      3       1.1      mrg /*
      4       1.1      mrg  *
      5       1.1      mrg  * Copyright (c) 1997 Charles D. Cranor and Washington University.
      6       1.1      mrg  * All rights reserved.
      7       1.1      mrg  *
      8       1.1      mrg  * Redistribution and use in source and binary forms, with or without
      9       1.1      mrg  * modification, are permitted provided that the following conditions
     10       1.1      mrg  * are met:
     11       1.1      mrg  * 1. Redistributions of source code must retain the above copyright
     12       1.1      mrg  *    notice, this list of conditions and the following disclaimer.
     13       1.1      mrg  * 2. Redistributions in binary form must reproduce the above copyright
     14       1.1      mrg  *    notice, this list of conditions and the following disclaimer in the
     15       1.1      mrg  *    documentation and/or other materials provided with the distribution.
     16       1.1      mrg  * 3. All advertising materials mentioning features or use of this software
     17       1.1      mrg  *    must display the following acknowledgement:
     18       1.1      mrg  *      This product includes software developed by Charles D. Cranor and
     19       1.1      mrg  *      Washington University.
     20       1.1      mrg  * 4. The name of the author may not be used to endorse or promote products
     21       1.1      mrg  *    derived from this software without specific prior written permission.
     22       1.1      mrg  *
     23       1.1      mrg  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     24       1.1      mrg  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     25       1.1      mrg  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     26       1.1      mrg  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     27       1.1      mrg  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     28       1.1      mrg  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     29       1.1      mrg  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     30       1.1      mrg  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     31       1.1      mrg  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     32       1.1      mrg  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     33       1.4      mrg  *
     34       1.4      mrg  * from: Id: uvm_extern.h,v 1.1.2.21 1998/02/07 01:16:53 chs Exp
     35       1.1      mrg  */
     36       1.1      mrg 
     37       1.8    perry #ifndef _UVM_UVM_EXTERN_H_
     38       1.8    perry #define _UVM_UVM_EXTERN_H_
     39       1.1      mrg 
     40       1.1      mrg /*
     41       1.1      mrg  * uvm_extern.h: this file defines the external interface to the VM system.
     42       1.1      mrg  *
     43       1.1      mrg  * this should be the only file included by non-VM parts of the kernel
     44       1.1      mrg  * which need access to VM services.   if you want to know the interface
     45       1.1      mrg  * to the MI VM layer without knowing the details, this is the file to
     46       1.1      mrg  * learn.
     47       1.1      mrg  *
     48       1.1      mrg  * NOTE: vm system calls are prototyped in syscallargs.h
     49       1.1      mrg  */
     50       1.1      mrg 
     51       1.1      mrg /*
     52       1.1      mrg  * defines
     53       1.1      mrg  */
     54       1.1      mrg 
     55       1.1      mrg /*
     56       1.1      mrg  * the following defines are for uvm_map and functions which call it.
     57       1.1      mrg  */
     58       1.1      mrg 
     59       1.1      mrg /* protections bits */
     60       1.1      mrg #define UVM_PROT_MASK	0x07	/* protection mask */
     61       1.1      mrg #define UVM_PROT_NONE	0x00	/* protection none */
     62       1.1      mrg #define UVM_PROT_ALL	0x07	/* everything */
     63       1.1      mrg #define UVM_PROT_READ	0x01	/* read */
     64       1.1      mrg #define UVM_PROT_WRITE  0x02	/* write */
     65       1.1      mrg #define UVM_PROT_EXEC	0x04	/* exec */
     66       1.1      mrg 
     67       1.1      mrg /* protection short codes */
     68       1.1      mrg #define UVM_PROT_R	0x01	/* read */
     69       1.1      mrg #define UVM_PROT_W	0x02	/* write */
     70       1.1      mrg #define UVM_PROT_RW	0x03    /* read-write */
     71       1.1      mrg #define UVM_PROT_X	0x04	/* exec */
     72       1.1      mrg #define UVM_PROT_RX	0x05	/* read-exec */
     73       1.1      mrg #define UVM_PROT_WX	0x06	/* write-exec */
     74       1.1      mrg #define UVM_PROT_RWX	0x07	/* read-write-exec */
     75       1.1      mrg 
     76       1.1      mrg /* 0x08: not used */
     77       1.1      mrg 
     78       1.1      mrg /* inherit codes */
     79       1.1      mrg #define UVM_INH_MASK	0x30	/* inherit mask */
     80       1.1      mrg #define UVM_INH_SHARE	0x00	/* "share" */
     81       1.1      mrg #define UVM_INH_COPY	0x10	/* "copy" */
     82       1.1      mrg #define UVM_INH_NONE	0x20	/* "none" */
     83       1.1      mrg #define UVM_INH_DONATE	0x30	/* "donate" << not used */
     84       1.1      mrg 
     85       1.1      mrg /* 0x40, 0x80: not used */
     86       1.1      mrg 
     87       1.1      mrg /* bits 0x700: max protection, 0x800: not used */
     88       1.1      mrg 
     89       1.1      mrg /* bits 0x7000: advice, 0x8000: not used */
     90       1.1      mrg /* advice: matches MADV_* from sys/mman.h */
     91       1.1      mrg #define UVM_ADV_NORMAL	0x0	/* 'normal' */
     92       1.1      mrg #define UVM_ADV_RANDOM	0x1	/* 'random' */
     93       1.1      mrg #define UVM_ADV_SEQUENTIAL 0x2	/* 'sequential' */
     94       1.1      mrg /* 0x3: will need, 0x4: dontneed */
     95       1.1      mrg #define UVM_ADV_MASK	0x7	/* mask */
     96       1.1      mrg 
     97       1.1      mrg /* mapping flags */
     98       1.1      mrg #define UVM_FLAG_FIXED   0x010000 /* find space */
     99       1.1      mrg #define UVM_FLAG_OVERLAY 0x020000 /* establish overlay */
    100       1.1      mrg #define UVM_FLAG_NOMERGE 0x040000 /* don't merge map entries */
    101       1.1      mrg #define UVM_FLAG_COPYONW 0x080000 /* set copy_on_write flag */
    102       1.1      mrg #define UVM_FLAG_AMAPPAD 0x100000 /* for bss: pad amap to reduce malloc() */
    103       1.1      mrg #define UVM_FLAG_TRYLOCK 0x200000 /* fail if we can not lock map */
    104       1.1      mrg 
    105       1.1      mrg /* macros to extract info */
    106       1.1      mrg #define UVM_PROTECTION(X)	((X) & UVM_PROT_MASK)
    107       1.1      mrg #define UVM_INHERIT(X)		(((X) & UVM_INH_MASK) >> 4)
    108       1.1      mrg #define UVM_MAXPROTECTION(X)	(((X) >> 8) & UVM_PROT_MASK)
    109       1.1      mrg #define UVM_ADVICE(X)		(((X) >> 12) & UVM_ADV_MASK)
    110       1.1      mrg 
    111       1.1      mrg #define UVM_MAPFLAG(PROT,MAXPROT,INH,ADVICE,FLAGS) \
    112       1.1      mrg 	((MAXPROT << 8)|(PROT)|(INH)|((ADVICE) << 12)|(FLAGS))
    113       1.1      mrg 
    114       1.1      mrg /* magic offset value */
    115      1.38   kleink #define UVM_UNKNOWN_OFFSET ((voff_t) -1)
    116       1.1      mrg 				/* offset not known(obj) or don't care(!obj) */
    117       1.1      mrg 
    118       1.1      mrg /*
    119       1.1      mrg  * the following defines are for uvm_km_kmemalloc's flags
    120       1.1      mrg  */
    121       1.1      mrg #define UVM_KMF_NOWAIT	0x1			/* matches M_NOWAIT */
    122       1.1      mrg #define UVM_KMF_VALLOC	0x2			/* allocate VA only */
    123       1.1      mrg #define UVM_KMF_TRYLOCK	UVM_FLAG_TRYLOCK	/* try locking only */
    124       1.1      mrg 
    125       1.1      mrg /*
    126      1.15  thorpej  * the following defines the strategies for uvm_pagealloc_strat()
    127      1.15  thorpej  */
    128      1.15  thorpej #define	UVM_PGA_STRAT_NORMAL	0	/* high -> low free list walk */
    129      1.15  thorpej #define	UVM_PGA_STRAT_ONLY	1	/* only specified free list */
    130      1.15  thorpej #define	UVM_PGA_STRAT_FALLBACK	2	/* ONLY falls back on NORMAL */
    131      1.15  thorpej 
    132      1.15  thorpej /*
    133      1.24      chs  * flags for uvm_pagealloc_strat()
    134      1.24      chs  */
    135      1.39  thorpej #define UVM_PGA_USERESERVE	0x0001	/* ok to use reserve pages */
    136      1.39  thorpej #define	UVM_PGA_ZERO		0x0002	/* returned page must be zero'd */
    137      1.24      chs 
    138      1.24      chs /*
    139      1.33  thorpej  * lockflags that control the locking behavior of various functions.
    140      1.33  thorpej  */
    141      1.33  thorpej #define	UVM_LK_ENTER	0x00000001	/* map locked on entry */
    142      1.33  thorpej #define	UVM_LK_EXIT	0x00000002	/* leave map locked on exit */
    143      1.33  thorpej 
    144      1.33  thorpej /*
    145       1.1      mrg  * structures
    146       1.1      mrg  */
    147       1.1      mrg 
    148       1.1      mrg struct core;
    149       1.1      mrg struct mount;
    150       1.1      mrg struct pglist;
    151       1.1      mrg struct proc;
    152       1.1      mrg struct ucred;
    153       1.1      mrg struct uio;
    154       1.1      mrg struct uvm_object;
    155       1.1      mrg struct vm_anon;
    156       1.1      mrg struct vmspace;
    157      1.10  thorpej struct pmap;
    158       1.1      mrg struct vnode;
    159      1.34  thorpej struct simplelock;
    160       1.1      mrg 
    161       1.1      mrg /*
    162       1.1      mrg  * uvmexp: global data structures that are exported to parts of the kernel
    163       1.1      mrg  * other than the vm system.
    164       1.1      mrg  */
    165       1.1      mrg 
    166       1.1      mrg struct uvmexp {
    167       1.9      mrg 	/* vm_page constants */
    168       1.1      mrg 	int pagesize;   /* size of a page (PAGE_SIZE): must be power of 2 */
    169       1.1      mrg 	int pagemask;   /* page mask */
    170       1.1      mrg 	int pageshift;  /* page shift */
    171       1.1      mrg 
    172       1.9      mrg 	/* vm_page counters */
    173       1.1      mrg 	int npages;     /* number of pages we manage */
    174       1.1      mrg 	int free;       /* number of free pages */
    175       1.1      mrg 	int active;     /* number of active pages */
    176       1.1      mrg 	int inactive;   /* number of pages that we free'd but may want back */
    177       1.3      chs 	int paging;	/* number of pages in the process of being paged out */
    178       1.1      mrg 	int wired;      /* number of wired pages */
    179      1.40  thorpej 	int zeropages;	/* number of zero'd pages */
    180       1.3      chs 	int reserve_pagedaemon; /* number of pages reserved for pagedaemon */
    181       1.3      chs 	int reserve_kernel; /* number of pages reserved for kernel */
    182       1.1      mrg 
    183       1.9      mrg 	/* pageout params */
    184       1.9      mrg 	int freemin;    /* min number of free pages */
    185       1.9      mrg 	int freetarg;   /* target number of free pages */
    186       1.9      mrg 	int inactarg;   /* target number of inactive pages */
    187       1.9      mrg 	int wiredmax;   /* max number of wired pages */
    188       1.1      mrg 
    189       1.9      mrg 	/* swap */
    190       1.1      mrg 	int nswapdev;	/* number of configured swap devices in system */
    191       1.1      mrg 	int swpages;	/* number of PAGE_SIZE'ed swap pages */
    192      1.32  thorpej 	int swpguniq;	/* number of swap pages in use, not also in RAM */
    193       1.3      chs 	int swpginuse;	/* number of swap pages in use */
    194      1.23      chs 	int swpgonly;	/* number of swap pages in use, not also in RAM */
    195       1.1      mrg 	int nswget;	/* number of times fault calls uvm_swap_get() */
    196       1.1      mrg 	int nanon;	/* number total of anon's in system */
    197      1.32  thorpej 	int nanonneeded;/* number of anons currently needed */
    198       1.1      mrg 	int nfreeanon;	/* number of free anon's */
    199       1.1      mrg 
    200       1.9      mrg 	/* stat counters */
    201       1.7      mrg 	int faults;		/* page fault count */
    202       1.7      mrg 	int traps;		/* trap count */
    203       1.7      mrg 	int intrs;		/* interrupt count */
    204       1.7      mrg 	int swtch;		/* context switch count */
    205       1.7      mrg 	int softs;		/* software interrupt count */
    206       1.7      mrg 	int syscalls;		/* system calls */
    207       1.7      mrg 	int pageins;		/* pagein operation count */
    208       1.7      mrg 				/* pageouts are in pdpageouts below */
    209       1.7      mrg 	int swapins;		/* swapins */
    210       1.7      mrg 	int swapouts;		/* swapouts */
    211       1.7      mrg 	int pgswapin;		/* pages swapped in */
    212       1.7      mrg 	int pgswapout;		/* pages swapped out */
    213       1.7      mrg 	int forks;  		/* forks */
    214       1.1      mrg 	int forks_ppwait;	/* forks where parent waits */
    215       1.1      mrg 	int forks_sharevm;	/* forks where vmspace is shared */
    216      1.40  thorpej 	int pga_zerohit;	/* pagealloc where zero wanted and zero
    217      1.40  thorpej 				   was available */
    218      1.40  thorpej 	int pga_zeromiss;	/* pagealloc where zero wanted and zero
    219      1.40  thorpej 				   not available */
    220       1.1      mrg 
    221       1.9      mrg 	/* fault subcounters */
    222       1.1      mrg 	int fltnoram;	/* number of times fault was out of ram */
    223       1.1      mrg 	int fltnoanon;	/* number of times fault was out of anons */
    224       1.1      mrg 	int fltpgwait;	/* number of times fault had to wait on a page */
    225       1.1      mrg 	int fltpgrele;	/* number of times fault found a released page */
    226       1.1      mrg 	int fltrelck;	/* number of times fault relock called */
    227       1.1      mrg 	int fltrelckok;	/* number of times fault relock is a success */
    228       1.1      mrg 	int fltanget;	/* number of times fault gets anon page */
    229       1.1      mrg 	int fltanretry;	/* number of times fault retrys an anon get */
    230       1.1      mrg 	int fltamcopy;	/* number of times fault clears "needs copy" */
    231       1.1      mrg 	int fltnamap;	/* number of times fault maps a neighbor anon page */
    232       1.1      mrg 	int fltnomap;	/* number of times fault maps a neighbor obj page */
    233       1.1      mrg 	int fltlget;	/* number of times fault does a locked pgo_get */
    234       1.1      mrg 	int fltget;	/* number of times fault does an unlocked get */
    235       1.1      mrg 	int flt_anon;	/* number of times fault anon (case 1a) */
    236       1.1      mrg 	int flt_acow;	/* number of times fault anon cow (case 1b) */
    237       1.1      mrg 	int flt_obj;	/* number of times fault is on object page (2a) */
    238       1.1      mrg 	int flt_prcopy;	/* number of times fault promotes with copy (2b) */
    239       1.1      mrg 	int flt_przero;	/* number of times fault promotes with zerofill (2b) */
    240       1.1      mrg 
    241       1.9      mrg 	/* daemon counters */
    242       1.1      mrg 	int pdwoke;	/* number of times daemon woke up */
    243       1.1      mrg 	int pdrevs;	/* number of times daemon rev'd clock hand */
    244       1.1      mrg 	int pdswout;	/* number of times daemon called for swapout */
    245       1.1      mrg 	int pdfreed;	/* number of pages daemon freed since boot */
    246       1.1      mrg 	int pdscans;	/* number of pages daemon scaned since boot */
    247       1.1      mrg 	int pdanscan;	/* number of anonymous pages scanned by daemon */
    248       1.1      mrg 	int pdobscan;	/* number of object pages scanned by daemon */
    249       1.1      mrg 	int pdreact;	/* number of pages daemon reactivated since boot */
    250       1.1      mrg 	int pdbusy;	/* number of times daemon found a busy page */
    251       1.1      mrg 	int pdpageouts;	/* number of times daemon started a pageout */
    252       1.1      mrg 	int pdpending;	/* number of times daemon got a pending pagout */
    253       1.1      mrg 	int pddeact;	/* number of pages daemon deactivates */
    254       1.1      mrg 
    255       1.9      mrg 	/* kernel memory objects: managed by uvm_km_kmemalloc() only! */
    256       1.1      mrg 	struct uvm_object *kmem_object;
    257       1.1      mrg 	struct uvm_object *mb_object;
    258       1.1      mrg };
    259       1.1      mrg 
    260      1.31  thorpej #ifdef _KERNEL
    261       1.1      mrg 
    262       1.1      mrg extern struct uvmexp uvmexp;
    263       1.1      mrg 
    264       1.1      mrg /*
    265       1.1      mrg  * macros
    266       1.1      mrg  */
    267       1.1      mrg 
    268       1.1      mrg /* zalloc zeros memory, alloc does not */
    269       1.1      mrg #define uvm_km_zalloc(MAP,SIZE) uvm_km_alloc1(MAP,SIZE,TRUE)
    270       1.1      mrg #define uvm_km_alloc(MAP,SIZE)  uvm_km_alloc1(MAP,SIZE,FALSE)
    271       1.1      mrg 
    272      1.31  thorpej #endif /* _KERNEL */
    273      1.31  thorpej 
    274       1.1      mrg /*
    275       1.1      mrg  * typedefs
    276       1.1      mrg  */
    277       1.1      mrg 
    278       1.1      mrg typedef unsigned int  uvm_flag_t;
    279       1.1      mrg typedef int vm_fault_t;
    280       1.1      mrg 
    281      1.31  thorpej #ifdef _KERNEL
    282      1.31  thorpej 
    283       1.1      mrg /* uvm_aobj.c */
    284      1.19      eeh struct uvm_object	*uao_create __P((vsize_t, int));
    285       1.1      mrg void			uao_detach __P((struct uvm_object *));
    286      1.36      chs void			uao_detach_locked __P((struct uvm_object *));
    287       1.1      mrg void			uao_reference __P((struct uvm_object *));
    288      1.36      chs void			uao_reference_locked __P((struct uvm_object *));
    289       1.1      mrg 
    290       1.1      mrg /* uvm_fault.c */
    291      1.19      eeh int			uvm_fault __P((vm_map_t, vaddr_t,
    292       1.9      mrg 				vm_fault_t, vm_prot_t));
    293       1.1      mrg 				/* handle a page fault */
    294       1.1      mrg 
    295       1.1      mrg /* uvm_glue.c */
    296       1.1      mrg #if defined(KGDB)
    297      1.13   kleink void			uvm_chgkprot __P((caddr_t, size_t, int));
    298       1.1      mrg #endif
    299      1.25  thorpej void			uvm_fork __P((struct proc *, struct proc *, boolean_t,
    300  1.40.2.1  minoura 			    void *, size_t, void (*)(void *), void *));
    301      1.21  thorpej void			uvm_exit __P((struct proc *));
    302       1.1      mrg void			uvm_init_limits __P((struct proc *));
    303      1.13   kleink boolean_t		uvm_kernacc __P((caddr_t, size_t, int));
    304      1.11  mycroft __dead void		uvm_scheduler __P((void)) __attribute__((noreturn));
    305       1.1      mrg void			uvm_swapin __P((struct proc *));
    306      1.13   kleink boolean_t		uvm_useracc __P((caddr_t, size_t, int));
    307      1.29  thorpej int			uvm_vslock __P((struct proc *, caddr_t, size_t,
    308      1.26  thorpej 			    vm_prot_t));
    309      1.13   kleink void			uvm_vsunlock __P((struct proc *, caddr_t, size_t));
    310       1.1      mrg 
    311       1.1      mrg 
    312       1.1      mrg /* uvm_init.c */
    313       1.1      mrg void			uvm_init __P((void));
    314       1.1      mrg 				/* init the uvm system */
    315       1.1      mrg 
    316       1.1      mrg /* uvm_io.c */
    317       1.1      mrg int			uvm_io __P((vm_map_t, struct uio *));
    318       1.1      mrg 
    319       1.1      mrg /* uvm_km.c */
    320      1.19      eeh vaddr_t			uvm_km_alloc1 __P((vm_map_t, vsize_t, boolean_t));
    321      1.19      eeh void			uvm_km_free __P((vm_map_t, vaddr_t, vsize_t));
    322      1.19      eeh void			uvm_km_free_wakeup __P((vm_map_t, vaddr_t,
    323      1.19      eeh 						vsize_t));
    324      1.19      eeh vaddr_t			uvm_km_kmemalloc __P((vm_map_t, struct uvm_object *,
    325      1.19      eeh 						vsize_t, int));
    326      1.19      eeh struct vm_map		*uvm_km_suballoc __P((vm_map_t, vaddr_t *,
    327      1.27  thorpej 				vaddr_t *, vsize_t, int,
    328       1.6  thorpej 				boolean_t, vm_map_t));
    329      1.19      eeh vaddr_t			uvm_km_valloc __P((vm_map_t, vsize_t));
    330      1.19      eeh vaddr_t			uvm_km_valloc_wait __P((vm_map_t, vsize_t));
    331      1.19      eeh vaddr_t			uvm_km_alloc_poolpage1 __P((vm_map_t,
    332      1.20  thorpej 				struct uvm_object *, boolean_t));
    333      1.19      eeh void			uvm_km_free_poolpage1 __P((vm_map_t, vaddr_t));
    334       1.1      mrg 
    335      1.20  thorpej #define	uvm_km_alloc_poolpage(waitok)	uvm_km_alloc_poolpage1(kmem_map, \
    336      1.20  thorpej 						uvmexp.kmem_object, (waitok))
    337      1.17  thorpej #define	uvm_km_free_poolpage(addr)	uvm_km_free_poolpage1(kmem_map, (addr))
    338       1.1      mrg 
    339       1.1      mrg /* uvm_map.c */
    340      1.19      eeh int			uvm_map __P((vm_map_t, vaddr_t *, vsize_t,
    341      1.38   kleink 				struct uvm_object *, voff_t, uvm_flag_t));
    342      1.19      eeh int			uvm_map_pageable __P((vm_map_t, vaddr_t,
    343      1.33  thorpej 				vaddr_t, boolean_t, int));
    344      1.28  thorpej int			uvm_map_pageable_all __P((vm_map_t, int, vsize_t));
    345      1.19      eeh boolean_t		uvm_map_checkprot __P((vm_map_t, vaddr_t,
    346      1.19      eeh 				vaddr_t, vm_prot_t));
    347      1.19      eeh int			uvm_map_protect __P((vm_map_t, vaddr_t,
    348      1.19      eeh 				vaddr_t, vm_prot_t, boolean_t));
    349      1.19      eeh struct vmspace		*uvmspace_alloc __P((vaddr_t, vaddr_t,
    350      1.10  thorpej 				boolean_t));
    351      1.10  thorpej void			uvmspace_init __P((struct vmspace *, struct pmap *,
    352      1.19      eeh 				vaddr_t, vaddr_t, boolean_t));
    353       1.1      mrg void			uvmspace_exec __P((struct proc *));
    354       1.1      mrg struct vmspace		*uvmspace_fork __P((struct vmspace *));
    355       1.1      mrg void			uvmspace_free __P((struct vmspace *));
    356       1.1      mrg void			uvmspace_share __P((struct proc *, struct proc *));
    357       1.1      mrg void			uvmspace_unshare __P((struct proc *));
    358       1.1      mrg 
    359       1.1      mrg 
    360       1.1      mrg /* uvm_meter.c */
    361       1.1      mrg void			uvm_meter __P((void));
    362       1.1      mrg int			uvm_sysctl __P((int *, u_int, void *, size_t *,
    363       1.1      mrg 				void *, size_t, struct proc *));
    364       1.1      mrg 
    365       1.1      mrg /* uvm_mmap.c */
    366      1.19      eeh int			uvm_mmap __P((vm_map_t, vaddr_t *, vsize_t,
    367       1.1      mrg 				vm_prot_t, vm_prot_t, int,
    368      1.38   kleink 				caddr_t, voff_t, vsize_t));
    369       1.1      mrg 
    370       1.1      mrg /* uvm_page.c */
    371      1.15  thorpej struct vm_page		*uvm_pagealloc_strat __P((struct uvm_object *,
    372      1.38   kleink 				voff_t, struct vm_anon *, int, int, int));
    373      1.24      chs #define	uvm_pagealloc(obj, off, anon, flags) \
    374      1.24      chs 	    uvm_pagealloc_strat((obj), (off), (anon), (flags), \
    375      1.24      chs 				UVM_PGA_STRAT_NORMAL, 0)
    376       1.1      mrg void			uvm_pagerealloc __P((struct vm_page *,
    377      1.38   kleink 					     struct uvm_object *, voff_t));
    378      1.19      eeh /* Actually, uvm_page_physload takes PF#s which need their own type */
    379      1.35      eeh void			uvm_page_physload __P((paddr_t, paddr_t,
    380      1.35      eeh 					       paddr_t, paddr_t, int));
    381       1.1      mrg void			uvm_setpagesize __P((void));
    382       1.1      mrg 
    383       1.1      mrg /* uvm_pdaemon.c */
    384       1.1      mrg void			uvm_pageout __P((void));
    385       1.1      mrg 
    386       1.1      mrg /* uvm_pglist.c */
    387      1.19      eeh int			uvm_pglistalloc __P((psize_t, paddr_t,
    388      1.19      eeh 				paddr_t, paddr_t, paddr_t,
    389       1.1      mrg 				struct pglist *, int, int));
    390       1.1      mrg void			uvm_pglistfree __P((struct pglist *));
    391       1.1      mrg 
    392       1.1      mrg /* uvm_swap.c */
    393       1.1      mrg void			uvm_swap_init __P((void));
    394       1.1      mrg 
    395       1.1      mrg /* uvm_unix.c */
    396       1.1      mrg int			uvm_coredump __P((struct proc *, struct vnode *,
    397       1.1      mrg 				struct ucred *, struct core *));
    398      1.19      eeh int			uvm_grow __P((struct proc *, vaddr_t));
    399      1.35      eeh /* should only be needed if COMPAT_NETBSD32 is defined */
    400      1.35      eeh struct core32;
    401      1.35      eeh int			uvm_coredump32 __P((struct proc *, struct vnode *,
    402      1.35      eeh 				struct ucred *, struct core32 *));
    403       1.1      mrg 
    404       1.1      mrg /* uvm_user.c */
    405      1.19      eeh int			uvm_deallocate __P((vm_map_t, vaddr_t, vsize_t));
    406       1.1      mrg 
    407       1.1      mrg /* uvm_vnode.c */
    408      1.38   kleink void			uvm_vnp_setsize __P((struct vnode *, voff_t));
    409       1.1      mrg void			uvm_vnp_sync __P((struct mount *));
    410       1.1      mrg void 			uvm_vnp_terminate __P((struct vnode *));
    411       1.1      mrg 				/* terminate a uvm/uvn object */
    412       1.1      mrg boolean_t		uvm_vnp_uncache __P((struct vnode *));
    413       1.1      mrg struct uvm_object	*uvn_attach __P((void *, vm_prot_t));
    414      1.37  thorpej 
    415      1.37  thorpej /* kern_malloc.c */
    416      1.37  thorpej void			kmeminit_nkmempages __P((void));
    417      1.37  thorpej void			kmeminit __P((void));
    418      1.37  thorpej extern int		nkmempages;
    419       1.1      mrg 
    420      1.31  thorpej #endif /* _KERNEL */
    421      1.31  thorpej 
    422       1.8    perry #endif /* _UVM_UVM_EXTERN_H_ */
    423