xref: /freebsd/sys/vm/uma_int.h (revision a4915c21d9d06823579d21fdf68c041c49eb67ac)
160727d8bSWarner Losh /*-
2e20a199fSJeff Roberson  * Copyright (c) 2002-2005, 2009 Jeffrey Roberson <jeff@FreeBSD.org>
308ecce74SRobert Watson  * Copyright (c) 2004, 2005 Bosko Milekic <bmilekic@FreeBSD.org>
408ecce74SRobert Watson  * All rights reserved.
58355f576SJeff Roberson  *
68355f576SJeff Roberson  * Redistribution and use in source and binary forms, with or without
78355f576SJeff Roberson  * modification, are permitted provided that the following conditions
88355f576SJeff Roberson  * are met:
98355f576SJeff Roberson  * 1. Redistributions of source code must retain the above copyright
108355f576SJeff Roberson  *    notice unmodified, this list of conditions, and the following
118355f576SJeff Roberson  *    disclaimer.
128355f576SJeff Roberson  * 2. Redistributions in binary form must reproduce the above copyright
138355f576SJeff Roberson  *    notice, this list of conditions and the following disclaimer in the
148355f576SJeff Roberson  *    documentation and/or other materials provided with the distribution.
158355f576SJeff Roberson  *
168355f576SJeff Roberson  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
178355f576SJeff Roberson  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
188355f576SJeff Roberson  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
198355f576SJeff Roberson  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
208355f576SJeff Roberson  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
218355f576SJeff Roberson  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
228355f576SJeff Roberson  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
238355f576SJeff Roberson  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
248355f576SJeff Roberson  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
258355f576SJeff Roberson  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
268355f576SJeff Roberson  *
278355f576SJeff Roberson  * $FreeBSD$
288355f576SJeff Roberson  *
298355f576SJeff Roberson  */
308355f576SJeff Roberson 
318355f576SJeff Roberson /*
328355f576SJeff Roberson  * This file includes definitions, structures, prototypes, and inlines that
338355f576SJeff Roberson  * should not be used outside of the actual implementation of UMA.
348355f576SJeff Roberson  */
358355f576SJeff Roberson 
368355f576SJeff Roberson /*
378355f576SJeff Roberson  * Here's a quick description of the relationship between the objects:
388355f576SJeff Roberson  *
39099a0e58SBosko Milekic  * Kegs contain lists of slabs which are stored in either the full bin, empty
408355f576SJeff Roberson  * bin, or partially allocated bin, to reduce fragmentation.  They also contain
418355f576SJeff Roberson  * the user supplied value for size, which is adjusted for alignment purposes
42099a0e58SBosko Milekic  * and rsize is the result of that.  The Keg also stores information for
438355f576SJeff Roberson  * managing a hash of page addresses that maps pages to uma_slab_t structures
448355f576SJeff Roberson  * for pages that don't have embedded uma_slab_t's.
458355f576SJeff Roberson  *
468355f576SJeff Roberson  * The uma_slab_t may be embedded in a UMA_SLAB_SIZE chunk of memory or it may
478355f576SJeff Roberson  * be allocated off the page from a special slab zone.  The free list within a
4859d7277fSAlan Cox  * slab is managed with a linked list of indices, which are 8 bit values.  If
498355f576SJeff Roberson  * UMA_SLAB_SIZE is defined to be too large I will have to switch to 16bit
508355f576SJeff Roberson  * values.  Currently on alpha you can get 250 or so 32 byte items and on x86
518355f576SJeff Roberson  * you can get 250 or so 16byte items.  For item sizes that would yield more
52c235bfa5SJeff Roberson  * than 10% memory waste we potentially allocate a separate uma_slab_t if this
538355f576SJeff Roberson  * will improve the number of items per slab that will fit.
548355f576SJeff Roberson  *
558355f576SJeff Roberson  * Other potential space optimizations are storing the 8bit of linkage in space
568355f576SJeff Roberson  * wasted between items due to alignment problems.  This may yield a much better
578355f576SJeff Roberson  * memory footprint for certain sizes of objects.  Another alternative is to
588355f576SJeff Roberson  * increase the UMA_SLAB_SIZE, or allow for dynamic slab sizes.  I prefer
5959d7277fSAlan Cox  * dynamic slab sizes because we could stick with 8 bit indices and only use
608355f576SJeff Roberson  * large slab sizes for zones with a lot of waste per slab.  This may create
6159d7277fSAlan Cox  * inefficiencies in the vm subsystem due to fragmentation in the address space.
628355f576SJeff Roberson  *
638355f576SJeff Roberson  * The only really gross cases, with regards to memory waste, are for those
648355f576SJeff Roberson  * items that are just over half the page size.   You can get nearly 50% waste,
658355f576SJeff Roberson  * so you fall back to the memory footprint of the power of two allocator. I
668355f576SJeff Roberson  * have looked at memory allocation sizes on many of the machines available to
678355f576SJeff Roberson  * me, and there does not seem to be an abundance of allocations at this range
688355f576SJeff Roberson  * so at this time it may not make sense to optimize for it.  This can, of
698355f576SJeff Roberson  * course, be solved with dynamic slab sizes.
708355f576SJeff Roberson  *
71099a0e58SBosko Milekic  * Kegs may serve multiple Zones but by far most of the time they only serve
72099a0e58SBosko Milekic  * one.  When a Zone is created, a Keg is allocated and setup for it.  While
73099a0e58SBosko Milekic  * the backing Keg stores slabs, the Zone caches Buckets of items allocated
74099a0e58SBosko Milekic  * from the slabs.  Each Zone is equipped with an init/fini and ctor/dtor
75099a0e58SBosko Milekic  * pair, as well as with its own set of small per-CPU caches, layered above
76099a0e58SBosko Milekic  * the Zone's general Bucket cache.
77099a0e58SBosko Milekic  *
786ab3b958SRobert Watson  * The PCPU caches are protected by critical sections, and may be accessed
796ab3b958SRobert Watson  * safely only from their associated CPU, while the Zones backed by the same
806ab3b958SRobert Watson  * Keg all share a common Keg lock (to coalesce contention on the backing
816ab3b958SRobert Watson  * slabs).  The backing Keg typically only serves one Zone but in the case of
826ab3b958SRobert Watson  * multiple Zones, one of the Zones is considered the Master Zone and all
836ab3b958SRobert Watson  * Zone-related stats from the Keg are done in the Master Zone.  For an
846ab3b958SRobert Watson  * example of a Multi-Zone setup, refer to the Mbuf allocation code.
858355f576SJeff Roberson  */
868355f576SJeff Roberson 
878355f576SJeff Roberson /*
888355f576SJeff Roberson  *	This is the representation for normal (Non OFFPAGE slab)
898355f576SJeff Roberson  *
908355f576SJeff Roberson  *	i == item
918355f576SJeff Roberson  *	s == slab pointer
928355f576SJeff Roberson  *
938355f576SJeff Roberson  *	<----------------  Page (UMA_SLAB_SIZE) ------------------>
948355f576SJeff Roberson  *	___________________________________________________________
958355f576SJeff Roberson  *     | _  _  _  _  _  _  _  _  _  _  _  _  _  _  _   ___________ |
968355f576SJeff Roberson  *     ||i||i||i||i||i||i||i||i||i||i||i||i||i||i||i| |slab header||
978355f576SJeff Roberson  *     ||_||_||_||_||_||_||_||_||_||_||_||_||_||_||_| |___________||
988355f576SJeff Roberson  *     |___________________________________________________________|
998355f576SJeff Roberson  *
1008355f576SJeff Roberson  *
1018355f576SJeff Roberson  *	This is an OFFPAGE slab. These can be larger than UMA_SLAB_SIZE.
1028355f576SJeff Roberson  *
1038355f576SJeff Roberson  *	___________________________________________________________
1048355f576SJeff Roberson  *     | _  _  _  _  _  _  _  _  _  _  _  _  _  _  _  _  _  _  _   |
1058355f576SJeff Roberson  *     ||i||i||i||i||i||i||i||i||i||i||i||i||i||i||i||i||i||i||i|  |
1068355f576SJeff Roberson  *     ||_||_||_||_||_||_||_||_||_||_||_||_||_||_||_||_||_||_||_|  |
1078355f576SJeff Roberson  *     |___________________________________________________________|
1088355f576SJeff Roberson  *       ___________    ^
1098355f576SJeff Roberson  *	|slab header|   |
1108355f576SJeff Roberson  *	|___________|---*
1118355f576SJeff Roberson  *
1128355f576SJeff Roberson  */
1138355f576SJeff Roberson 
1148355f576SJeff Roberson #ifndef VM_UMA_INT_H
1158355f576SJeff Roberson #define VM_UMA_INT_H
1168355f576SJeff Roberson 
1178355f576SJeff Roberson #define UMA_SLAB_SIZE	PAGE_SIZE	/* How big are our slabs? */
1188355f576SJeff Roberson #define UMA_SLAB_MASK	(PAGE_SIZE - 1)	/* Mask to get back to the page */
1198355f576SJeff Roberson #define UMA_SLAB_SHIFT	PAGE_SHIFT	/* Number of bits PAGE_MASK */
1208355f576SJeff Roberson 
121342f1793SAlan Cox #define UMA_BOOT_PAGES		64	/* Pages allocated for startup */
1228355f576SJeff Roberson 
1238355f576SJeff Roberson /* Max waste before going to off page slab management */
1248355f576SJeff Roberson #define UMA_MAX_WASTE	(UMA_SLAB_SIZE / 10)
1258355f576SJeff Roberson 
1268355f576SJeff Roberson /*
1278355f576SJeff Roberson  * I doubt there will be many cases where this is exceeded. This is the initial
1288355f576SJeff Roberson  * size of the hash table for uma_slabs that are managed off page. This hash
1298355f576SJeff Roberson  * does expand by powers of two.  Currently it doesn't get smaller.
1308355f576SJeff Roberson  */
1318355f576SJeff Roberson #define UMA_HASH_SIZE_INIT	32
1328355f576SJeff Roberson 
1338355f576SJeff Roberson /*
1348355f576SJeff Roberson  * I should investigate other hashing algorithms.  This should yield a low
1358355f576SJeff Roberson  * number of collisions if the pages are relatively contiguous.
1368355f576SJeff Roberson  *
1378355f576SJeff Roberson  * This is the same algorithm that most processor caches use.
1388355f576SJeff Roberson  *
1398355f576SJeff Roberson  * I'm shifting and masking instead of % because it should be faster.
1408355f576SJeff Roberson  */
1418355f576SJeff Roberson 
1428355f576SJeff Roberson #define UMA_HASH(h, s) ((((unsigned long)s) >> UMA_SLAB_SHIFT) &	\
1438355f576SJeff Roberson     (h)->uh_hashmask)
1448355f576SJeff Roberson 
1458355f576SJeff Roberson #define UMA_HASH_INSERT(h, s, mem)					\
1468355f576SJeff Roberson 		SLIST_INSERT_HEAD(&(h)->uh_slab_hash[UMA_HASH((h),	\
1474e2d83fcSAntoine Brodin 		    (mem))], (s), us_hlink)
1488355f576SJeff Roberson #define UMA_HASH_REMOVE(h, s, mem)					\
1498355f576SJeff Roberson 		SLIST_REMOVE(&(h)->uh_slab_hash[UMA_HASH((h),		\
1504e2d83fcSAntoine Brodin 		    (mem))], (s), uma_slab, us_hlink)
1518355f576SJeff Roberson 
1528355f576SJeff Roberson /* Hash table for freed address -> slab translation */
1538355f576SJeff Roberson 
1548355f576SJeff Roberson SLIST_HEAD(slabhead, uma_slab);
1558355f576SJeff Roberson 
1568355f576SJeff Roberson struct uma_hash {
1578355f576SJeff Roberson 	struct slabhead	*uh_slab_hash;	/* Hash table for slabs */
1588355f576SJeff Roberson 	int		uh_hashsize;	/* Current size of the hash table */
1598355f576SJeff Roberson 	int		uh_hashmask;	/* Mask used during hashing */
1608355f576SJeff Roberson };
1618355f576SJeff Roberson 
1628355f576SJeff Roberson /*
1635e4bb93cSKip Macy  * align field or structure to cache line
1645e4bb93cSKip Macy  */
1651a23373cSKip Macy #if defined(__amd64__)
1661a23373cSKip Macy #define UMA_ALIGN	__aligned(CACHE_LINE_SIZE)
1671a23373cSKip Macy #else
1686b4391d7SKip Macy #define UMA_ALIGN
1691a23373cSKip Macy #endif
1705e4bb93cSKip Macy 
1715e4bb93cSKip Macy /*
1728355f576SJeff Roberson  * Structures for per cpu queues.
1738355f576SJeff Roberson  */
1748355f576SJeff Roberson 
1758355f576SJeff Roberson struct uma_bucket {
1768355f576SJeff Roberson 	LIST_ENTRY(uma_bucket)	ub_link;	/* Link into the zone */
177cae33c14SJeff Roberson 	int16_t	ub_cnt;				/* Count of free items. */
178cae33c14SJeff Roberson 	int16_t	ub_entries;			/* Max items. */
179cae33c14SJeff Roberson 	void	*ub_bucket[];			/* actual allocation storage */
1801a23373cSKip Macy };
1818355f576SJeff Roberson 
1828355f576SJeff Roberson typedef struct uma_bucket * uma_bucket_t;
1838355f576SJeff Roberson 
1848355f576SJeff Roberson struct uma_cache {
1858355f576SJeff Roberson 	uma_bucket_t	uc_freebucket;	/* Bucket we're freeing to */
1868355f576SJeff Roberson 	uma_bucket_t	uc_allocbucket;	/* Bucket to allocate from */
1878355f576SJeff Roberson 	u_int64_t	uc_allocs;	/* Count of allocations */
188773df9abSRobert Watson 	u_int64_t	uc_frees;	/* Count of frees */
1895e4bb93cSKip Macy } UMA_ALIGN;
1908355f576SJeff Roberson 
1918355f576SJeff Roberson typedef struct uma_cache * uma_cache_t;
1928355f576SJeff Roberson 
1938355f576SJeff Roberson /*
194099a0e58SBosko Milekic  * Keg management structure
195099a0e58SBosko Milekic  *
196099a0e58SBosko Milekic  * TODO: Optimize for cache line size
197099a0e58SBosko Milekic  *
198099a0e58SBosko Milekic  */
199099a0e58SBosko Milekic struct uma_keg {
200099a0e58SBosko Milekic 	LIST_ENTRY(uma_keg)	uk_link;	/* List of all kegs */
201099a0e58SBosko Milekic 
202099a0e58SBosko Milekic 	struct mtx	uk_lock;	/* Lock for the keg */
203099a0e58SBosko Milekic 	struct uma_hash	uk_hash;
204099a0e58SBosko Milekic 
205bb196eb4SMatthew D Fleming 	const char	*uk_name;		/* Name of creating zone. */
206099a0e58SBosko Milekic 	LIST_HEAD(,uma_zone)	uk_zones;	/* Keg's zones */
207099a0e58SBosko Milekic 	LIST_HEAD(,uma_slab)	uk_part_slab;	/* partially allocated slabs */
208099a0e58SBosko Milekic 	LIST_HEAD(,uma_slab)	uk_free_slab;	/* empty slab list */
209099a0e58SBosko Milekic 	LIST_HEAD(,uma_slab)	uk_full_slab;	/* full slabs */
210099a0e58SBosko Milekic 
211099a0e58SBosko Milekic 	u_int32_t	uk_recurse;	/* Allocation recursion count */
212099a0e58SBosko Milekic 	u_int32_t	uk_align;	/* Alignment mask */
213099a0e58SBosko Milekic 	u_int32_t	uk_pages;	/* Total page count */
214099a0e58SBosko Milekic 	u_int32_t	uk_free;	/* Count of items free in slabs */
215099a0e58SBosko Milekic 	u_int32_t	uk_size;	/* Requested size of each item */
216099a0e58SBosko Milekic 	u_int32_t	uk_rsize;	/* Real size of each item */
217099a0e58SBosko Milekic 	u_int32_t	uk_maxpages;	/* Maximum number of pages to alloc */
218099a0e58SBosko Milekic 
219099a0e58SBosko Milekic 	uma_init	uk_init;	/* Keg's init routine */
220099a0e58SBosko Milekic 	uma_fini	uk_fini;	/* Keg's fini routine */
221099a0e58SBosko Milekic 	uma_alloc	uk_allocf;	/* Allocation function */
222099a0e58SBosko Milekic 	uma_free	uk_freef;	/* Free routine */
223099a0e58SBosko Milekic 
224*a4915c21SAttilio Rao 	u_long		uk_offset;	/* Next free offset from base KVA */
225*a4915c21SAttilio Rao 	vm_offset_t	uk_kva;		/* Zone base KVA */
226099a0e58SBosko Milekic 	uma_zone_t	uk_slabzone;	/* Slab zone backing us, if OFFPAGE */
227099a0e58SBosko Milekic 
228099a0e58SBosko Milekic 	u_int16_t	uk_pgoff;	/* Offset to uma_slab struct */
229099a0e58SBosko Milekic 	u_int16_t	uk_ppera;	/* pages per allocation from backend */
230099a0e58SBosko Milekic 	u_int16_t	uk_ipers;	/* Items per slab */
2312018f30cSMike Silbersack 	u_int32_t	uk_flags;	/* Internal flags */
232099a0e58SBosko Milekic };
233099a0e58SBosko Milekic typedef struct uma_keg	* uma_keg_t;
234099a0e58SBosko Milekic 
235099a0e58SBosko Milekic /* Page management structure */
236099a0e58SBosko Milekic 
237099a0e58SBosko Milekic /* Sorry for the union, but space efficiency is important */
238099a0e58SBosko Milekic struct uma_slab_head {
239099a0e58SBosko Milekic 	uma_keg_t	us_keg;			/* Keg we live in */
240099a0e58SBosko Milekic 	union {
241099a0e58SBosko Milekic 		LIST_ENTRY(uma_slab)	_us_link;	/* slabs in zone */
242099a0e58SBosko Milekic 		unsigned long	_us_size;	/* Size of allocation */
243099a0e58SBosko Milekic 	} us_type;
244099a0e58SBosko Milekic 	SLIST_ENTRY(uma_slab)	us_hlink;	/* Link for hash table */
245099a0e58SBosko Milekic 	u_int8_t	*us_data;		/* First item */
246099a0e58SBosko Milekic 	u_int8_t	us_flags;		/* Page flags see uma.h */
247099a0e58SBosko Milekic 	u_int8_t	us_freecount;	/* How many are free? */
248099a0e58SBosko Milekic 	u_int8_t	us_firstfree;	/* First free item index */
249099a0e58SBosko Milekic };
250099a0e58SBosko Milekic 
251099a0e58SBosko Milekic /* The standard slab structure */
252099a0e58SBosko Milekic struct uma_slab {
253099a0e58SBosko Milekic 	struct uma_slab_head	us_head;	/* slab header data */
254099a0e58SBosko Milekic 	struct {
255099a0e58SBosko Milekic 		u_int8_t	us_item;
256099a0e58SBosko Milekic 	} us_freelist[1];			/* actual number bigger */
257099a0e58SBosko Milekic };
258099a0e58SBosko Milekic 
259099a0e58SBosko Milekic /*
260099a0e58SBosko Milekic  * The slab structure for UMA_ZONE_REFCNT zones for whose items we
261099a0e58SBosko Milekic  * maintain reference counters in the slab for.
262099a0e58SBosko Milekic  */
263099a0e58SBosko Milekic struct uma_slab_refcnt {
264099a0e58SBosko Milekic 	struct uma_slab_head	us_head;	/* slab header data */
265099a0e58SBosko Milekic 	struct {
266099a0e58SBosko Milekic 		u_int8_t	us_item;
267099a0e58SBosko Milekic 		u_int32_t	us_refcnt;
268099a0e58SBosko Milekic 	} us_freelist[1];			/* actual number bigger */
269099a0e58SBosko Milekic };
270099a0e58SBosko Milekic 
271099a0e58SBosko Milekic #define	us_keg		us_head.us_keg
272099a0e58SBosko Milekic #define	us_link		us_head.us_type._us_link
273099a0e58SBosko Milekic #define	us_size		us_head.us_type._us_size
274099a0e58SBosko Milekic #define	us_hlink	us_head.us_hlink
275099a0e58SBosko Milekic #define	us_data		us_head.us_data
276099a0e58SBosko Milekic #define	us_flags	us_head.us_flags
277099a0e58SBosko Milekic #define	us_freecount	us_head.us_freecount
278099a0e58SBosko Milekic #define	us_firstfree	us_head.us_firstfree
279099a0e58SBosko Milekic 
280099a0e58SBosko Milekic typedef struct uma_slab * uma_slab_t;
281099a0e58SBosko Milekic typedef struct uma_slab_refcnt * uma_slabrefcnt_t;
282e20a199fSJeff Roberson typedef uma_slab_t (*uma_slaballoc)(uma_zone_t, uma_keg_t, int);
283e20a199fSJeff Roberson 
284099a0e58SBosko Milekic 
285099a0e58SBosko Milekic /*
286244f4554SBosko Milekic  * These give us the size of one free item reference within our corresponding
287244f4554SBosko Milekic  * uma_slab structures, so that our calculations during zone setup are correct
288244f4554SBosko Milekic  * regardless of what the compiler decides to do with padding the structure
289244f4554SBosko Milekic  * arrays within uma_slab.
290244f4554SBosko Milekic  */
291244f4554SBosko Milekic #define	UMA_FRITM_SZ	(sizeof(struct uma_slab) - sizeof(struct uma_slab_head))
292244f4554SBosko Milekic #define	UMA_FRITMREF_SZ	(sizeof(struct uma_slab_refcnt) -	\
293244f4554SBosko Milekic     sizeof(struct uma_slab_head))
294244f4554SBosko Milekic 
295e20a199fSJeff Roberson struct uma_klink {
296e20a199fSJeff Roberson 	LIST_ENTRY(uma_klink)	kl_link;
297e20a199fSJeff Roberson 	uma_keg_t		kl_keg;
298e20a199fSJeff Roberson };
299e20a199fSJeff Roberson typedef struct uma_klink *uma_klink_t;
300e20a199fSJeff Roberson 
301244f4554SBosko Milekic /*
3028355f576SJeff Roberson  * Zone management structure
3038355f576SJeff Roberson  *
3048355f576SJeff Roberson  * TODO: Optimize for cache line size
3058355f576SJeff Roberson  *
3068355f576SJeff Roberson  */
3078355f576SJeff Roberson struct uma_zone {
308bb196eb4SMatthew D Fleming 	const char	*uz_name;	/* Text name of the zone */
309099a0e58SBosko Milekic 	struct mtx	*uz_lock;	/* Lock for the zone (keg's lock) */
3108355f576SJeff Roberson 
311099a0e58SBosko Milekic 	LIST_ENTRY(uma_zone)	uz_link;	/* List of all zones in keg */
3128355f576SJeff Roberson 	LIST_HEAD(,uma_bucket)	uz_full_bucket;	/* full buckets */
3138355f576SJeff Roberson 	LIST_HEAD(,uma_bucket)	uz_free_bucket;	/* Buckets for frees */
3148355f576SJeff Roberson 
315e20a199fSJeff Roberson 	LIST_HEAD(,uma_klink)	uz_kegs;	/* List of kegs. */
316e20a199fSJeff Roberson 	struct uma_klink	uz_klink;	/* klink for first keg. */
317e20a199fSJeff Roberson 
318e20a199fSJeff Roberson 	uma_slaballoc	uz_slab;	/* Allocate a slab from the backend. */
3198355f576SJeff Roberson 	uma_ctor	uz_ctor;	/* Constructor for each allocation */
3208355f576SJeff Roberson 	uma_dtor	uz_dtor;	/* Destructor */
3218355f576SJeff Roberson 	uma_init	uz_init;	/* Initializer for each item */
3228355f576SJeff Roberson 	uma_fini	uz_fini;	/* Discards memory */
323099a0e58SBosko Milekic 
324e20a199fSJeff Roberson 	u_int32_t	uz_flags;	/* Flags inherited from kegs */
325e20a199fSJeff Roberson 	u_int32_t	uz_size;	/* Size inherited from kegs */
3265e4bb93cSKip Macy 
3275e4bb93cSKip Macy 	u_int64_t	uz_allocs UMA_ALIGN; /* Total number of allocations */
3285e4bb93cSKip Macy 	u_int64_t	uz_frees;	/* Total number of frees */
3295e4bb93cSKip Macy 	u_int64_t	uz_fails;	/* Total number of alloc failures */
330bf965959SSean Bruno 	u_int64_t	uz_sleeps;	/* Total number of alloc sleeps */
331a553d4b8SJeff Roberson 	uint16_t	uz_fills;	/* Outstanding bucket fills */
332936c747bSGleb Smirnoff 	uint16_t	uz_count;	/* Highest amount of items in bucket */
333099a0e58SBosko Milekic 
3342f891cd5SPawel Jakub Dawidek 	/* The next three fields are used to print a rate-limited warnings. */
3352f891cd5SPawel Jakub Dawidek 	const char	*uz_warning;	/* Warning to print on failure */
3362f891cd5SPawel Jakub Dawidek 	struct timeval	uz_ratecheck;	/* Warnings rate-limiting */
3372f891cd5SPawel Jakub Dawidek 
3388355f576SJeff Roberson 	/*
3398355f576SJeff Roberson 	 * This HAS to be the last item because we adjust the zone size
3408355f576SJeff Roberson 	 * based on NCPU and then allocate the space for the zones.
3418355f576SJeff Roberson 	 */
3421a23373cSKip Macy 	struct uma_cache	uz_cpu[1]; /* Per cpu caches */
3438355f576SJeff Roberson };
3448355f576SJeff Roberson 
345b60f5b79SJeff Roberson /*
346b60f5b79SJeff Roberson  * These flags must not overlap with the UMA_ZONE flags specified in uma.h.
347b60f5b79SJeff Roberson  */
348e20a199fSJeff Roberson #define	UMA_ZFLAG_BUCKET	0x02000000	/* Bucket zone. */
349e20a199fSJeff Roberson #define	UMA_ZFLAG_MULTI		0x04000000	/* Multiple kegs in the zone. */
350e20a199fSJeff Roberson #define	UMA_ZFLAG_DRAINING	0x08000000	/* Running zone_drain. */
3512018f30cSMike Silbersack #define UMA_ZFLAG_PRIVALLOC	0x10000000	/* Use uz_allocf. */
3522018f30cSMike Silbersack #define UMA_ZFLAG_INTERNAL	0x20000000	/* No offpage no PCPU. */
3532018f30cSMike Silbersack #define UMA_ZFLAG_FULL		0x40000000	/* Reached uz_maxpages */
3542018f30cSMike Silbersack #define UMA_ZFLAG_CACHEONLY	0x80000000	/* Don't ask VM for buckets. */
3558355f576SJeff Roberson 
356e20a199fSJeff Roberson #define	UMA_ZFLAG_INHERIT	(UMA_ZFLAG_INTERNAL | UMA_ZFLAG_CACHEONLY | \
357e20a199fSJeff Roberson 				    UMA_ZFLAG_BUCKET)
358e20a199fSJeff Roberson 
3595e4bb93cSKip Macy #undef UMA_ALIGN
3605e4bb93cSKip Macy 
361af17e9a9SRobert Watson #ifdef _KERNEL
3628355f576SJeff Roberson /* Internal prototypes */
3638355f576SJeff Roberson static __inline uma_slab_t hash_sfind(struct uma_hash *hash, u_int8_t *data);
3648355f576SJeff Roberson void *uma_large_malloc(int size, int wait);
3658355f576SJeff Roberson void uma_large_free(uma_slab_t slab);
3668355f576SJeff Roberson 
3678355f576SJeff Roberson /* Lock Macros */
3688355f576SJeff Roberson 
369e20a199fSJeff Roberson #define	KEG_LOCK_INIT(k, lc)					\
37028bc4419SJeff Roberson 	do {							\
37128bc4419SJeff Roberson 		if ((lc))					\
372e20a199fSJeff Roberson 			mtx_init(&(k)->uk_lock, (k)->uk_name,	\
373e20a199fSJeff Roberson 			    (k)->uk_name, MTX_DEF | MTX_DUPOK);	\
37428bc4419SJeff Roberson 		else						\
375e20a199fSJeff Roberson 			mtx_init(&(k)->uk_lock, (k)->uk_name,	\
37628bc4419SJeff Roberson 			    "UMA zone", MTX_DEF | MTX_DUPOK);	\
37728bc4419SJeff Roberson 	} while (0)
37828bc4419SJeff Roberson 
379e20a199fSJeff Roberson #define	KEG_LOCK_FINI(k)	mtx_destroy(&(k)->uk_lock)
380e20a199fSJeff Roberson #define	KEG_LOCK(k)	mtx_lock(&(k)->uk_lock)
381e20a199fSJeff Roberson #define	KEG_UNLOCK(k)	mtx_unlock(&(k)->uk_lock)
382099a0e58SBosko Milekic #define	ZONE_LOCK(z)	mtx_lock((z)->uz_lock)
383099a0e58SBosko Milekic #define ZONE_UNLOCK(z)	mtx_unlock((z)->uz_lock)
3848355f576SJeff Roberson 
3858355f576SJeff Roberson /*
3868355f576SJeff Roberson  * Find a slab within a hash table.  This is used for OFFPAGE zones to lookup
3878355f576SJeff Roberson  * the slab structure.
3888355f576SJeff Roberson  *
3898355f576SJeff Roberson  * Arguments:
3908355f576SJeff Roberson  *	hash  The hash table to search.
3918355f576SJeff Roberson  *	data  The base page of the item.
3928355f576SJeff Roberson  *
3938355f576SJeff Roberson  * Returns:
3948355f576SJeff Roberson  *	A pointer to a slab if successful, else NULL.
3958355f576SJeff Roberson  */
3968355f576SJeff Roberson static __inline uma_slab_t
3978355f576SJeff Roberson hash_sfind(struct uma_hash *hash, u_int8_t *data)
3988355f576SJeff Roberson {
3998355f576SJeff Roberson         uma_slab_t slab;
4008355f576SJeff Roberson         int hval;
4018355f576SJeff Roberson 
4028355f576SJeff Roberson         hval = UMA_HASH(hash, data);
4038355f576SJeff Roberson 
4048355f576SJeff Roberson         SLIST_FOREACH(slab, &hash->uh_slab_hash[hval], us_hlink) {
4058355f576SJeff Roberson                 if ((u_int8_t *)slab->us_data == data)
4068355f576SJeff Roberson                         return (slab);
4078355f576SJeff Roberson         }
4088355f576SJeff Roberson         return (NULL);
4098355f576SJeff Roberson }
4108355f576SJeff Roberson 
41199571dc3SJeff Roberson static __inline uma_slab_t
41299571dc3SJeff Roberson vtoslab(vm_offset_t va)
41399571dc3SJeff Roberson {
41499571dc3SJeff Roberson 	vm_page_t p;
41599571dc3SJeff Roberson 	uma_slab_t slab;
41699571dc3SJeff Roberson 
41799571dc3SJeff Roberson 	p = PHYS_TO_VM_PAGE(pmap_kextract(va));
41899571dc3SJeff Roberson 	slab = (uma_slab_t )p->object;
41999571dc3SJeff Roberson 
42099571dc3SJeff Roberson 	if (p->flags & PG_SLAB)
42199571dc3SJeff Roberson 		return (slab);
42299571dc3SJeff Roberson 	else
42399571dc3SJeff Roberson 		return (NULL);
42499571dc3SJeff Roberson }
42599571dc3SJeff Roberson 
42699571dc3SJeff Roberson static __inline void
42799571dc3SJeff Roberson vsetslab(vm_offset_t va, uma_slab_t slab)
42899571dc3SJeff Roberson {
42999571dc3SJeff Roberson 	vm_page_t p;
43099571dc3SJeff Roberson 
4316fc96493SOlivier Houchard 	p = PHYS_TO_VM_PAGE(pmap_kextract(va));
43299571dc3SJeff Roberson 	p->object = (vm_object_t)slab;
43399571dc3SJeff Roberson 	p->flags |= PG_SLAB;
43499571dc3SJeff Roberson }
43599571dc3SJeff Roberson 
43699571dc3SJeff Roberson static __inline void
43799571dc3SJeff Roberson vsetobj(vm_offset_t va, vm_object_t obj)
43899571dc3SJeff Roberson {
43999571dc3SJeff Roberson 	vm_page_t p;
44099571dc3SJeff Roberson 
4416fc96493SOlivier Houchard 	p = PHYS_TO_VM_PAGE(pmap_kextract(va));
44299571dc3SJeff Roberson 	p->object = obj;
44399571dc3SJeff Roberson 	p->flags &= ~PG_SLAB;
44499571dc3SJeff Roberson }
4458355f576SJeff Roberson 
44648eea375SJeff Roberson /*
44748eea375SJeff Roberson  * The following two functions may be defined by architecture specific code
44848eea375SJeff Roberson  * if they can provide more effecient allocation functions.  This is useful
44948eea375SJeff Roberson  * for using direct mapped addresses.
45048eea375SJeff Roberson  */
45148eea375SJeff Roberson void *uma_small_alloc(uma_zone_t zone, int bytes, u_int8_t *pflag, int wait);
45248eea375SJeff Roberson void uma_small_free(void *mem, int size, u_int8_t flags);
453af17e9a9SRobert Watson #endif /* _KERNEL */
45448eea375SJeff Roberson 
4558355f576SJeff Roberson #endif /* VM_UMA_INT_H */
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