160727d8bSWarner Losh /*- 24d846d26SWarner Losh * SPDX-License-Identifier: BSD-2-Clause 3fe267a55SPedro F. Giffuni * 4584061b4SJeff Roberson * Copyright (c) 2002-2019 Jeffrey Roberson <jeff@FreeBSD.org> 508ecce74SRobert Watson * Copyright (c) 2004, 2005 Bosko Milekic <bmilekic@FreeBSD.org> 6ae4e9636SRobert Watson * Copyright (c) 2004-2006 Robert N. M. Watson 708ecce74SRobert Watson * All rights reserved. 88355f576SJeff Roberson * 98355f576SJeff Roberson * Redistribution and use in source and binary forms, with or without 108355f576SJeff Roberson * modification, are permitted provided that the following conditions 118355f576SJeff Roberson * are met: 128355f576SJeff Roberson * 1. Redistributions of source code must retain the above copyright 138355f576SJeff Roberson * notice unmodified, this list of conditions, and the following 148355f576SJeff Roberson * disclaimer. 158355f576SJeff Roberson * 2. Redistributions in binary form must reproduce the above copyright 168355f576SJeff Roberson * notice, this list of conditions and the following disclaimer in the 178355f576SJeff Roberson * documentation and/or other materials provided with the distribution. 188355f576SJeff Roberson * 198355f576SJeff Roberson * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 208355f576SJeff Roberson * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 218355f576SJeff Roberson * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 228355f576SJeff Roberson * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 238355f576SJeff Roberson * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 248355f576SJeff Roberson * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 258355f576SJeff Roberson * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 268355f576SJeff Roberson * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 278355f576SJeff Roberson * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 288355f576SJeff Roberson * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 298355f576SJeff Roberson */ 308355f576SJeff Roberson 318355f576SJeff Roberson /* 328355f576SJeff Roberson * uma_core.c Implementation of the Universal Memory allocator 338355f576SJeff Roberson * 348355f576SJeff Roberson * This allocator is intended to replace the multitude of similar object caches 358355f576SJeff Roberson * in the standard FreeBSD kernel. The intent is to be flexible as well as 36763df3ecSPedro F. Giffuni * efficient. A primary design goal is to return unused memory to the rest of 378355f576SJeff Roberson * the system. This will make the system as a whole more flexible due to the 388355f576SJeff Roberson * ability to move memory to subsystems which most need it instead of leaving 398355f576SJeff Roberson * pools of reserved memory unused. 408355f576SJeff Roberson * 418355f576SJeff Roberson * The basic ideas stem from similar slab/zone based allocators whose algorithms 428355f576SJeff Roberson * are well known. 438355f576SJeff Roberson * 448355f576SJeff Roberson */ 458355f576SJeff Roberson 468355f576SJeff Roberson /* 478355f576SJeff Roberson * TODO: 488355f576SJeff Roberson * - Improve memory usage for large allocations 498355f576SJeff Roberson * - Investigate cache size adjustments 508355f576SJeff Roberson */ 518355f576SJeff Roberson 52874651b1SDavid E. O'Brien #include <sys/cdefs.h> 5348c5777eSRobert Watson #include "opt_ddb.h" 548355f576SJeff Roberson #include "opt_param.h" 558d689e04SGleb Smirnoff #include "opt_vm.h" 5648c5777eSRobert Watson 578355f576SJeff Roberson #include <sys/param.h> 588355f576SJeff Roberson #include <sys/systm.h> 5909c8cb71SMark Johnston #include <sys/asan.h> 60ef72505eSJeff Roberson #include <sys/bitset.h> 61194a979eSMark Johnston #include <sys/domainset.h> 629b43bc27SAndriy Gapon #include <sys/eventhandler.h> 638355f576SJeff Roberson #include <sys/kernel.h> 648355f576SJeff Roberson #include <sys/types.h> 65ad5b0f5bSJeff Roberson #include <sys/limits.h> 668355f576SJeff Roberson #include <sys/queue.h> 678355f576SJeff Roberson #include <sys/malloc.h> 683659f747SRobert Watson #include <sys/ktr.h> 698355f576SJeff Roberson #include <sys/lock.h> 7010094910SMark Johnston #include <sys/msan.h> 718355f576SJeff Roberson #include <sys/mutex.h> 724c1cc01cSJohn Baldwin #include <sys/proc.h> 7310cb2424SMark Murray #include <sys/random.h> 7489f6b863SAttilio Rao #include <sys/rwlock.h> 757a52a97eSRobert Watson #include <sys/sbuf.h> 76a2de44abSAlexander Motin #include <sys/sched.h> 774bd61e19SJeff Roberson #include <sys/sleepqueue.h> 788355f576SJeff Roberson #include <sys/smp.h> 79d4665eaaSJeff Roberson #include <sys/smr.h> 8010094910SMark Johnston #include <sys/sysctl.h> 81e60b2fcbSGleb Smirnoff #include <sys/taskqueue.h> 8286bbae32SJeff Roberson #include <sys/vmmeter.h> 8386bbae32SJeff Roberson 848355f576SJeff Roberson #include <vm/vm.h> 856f3b523cSKonstantin Belousov #include <vm/vm_param.h> 86194a979eSMark Johnston #include <vm/vm_domainset.h> 878355f576SJeff Roberson #include <vm/vm_object.h> 888355f576SJeff Roberson #include <vm/vm_page.h> 89a4915c21SAttilio Rao #include <vm/vm_pageout.h> 90ab3185d1SJeff Roberson #include <vm/vm_phys.h> 9130c5525bSAndrew Gallatin #include <vm/vm_pagequeue.h> 928355f576SJeff Roberson #include <vm/vm_map.h> 938355f576SJeff Roberson #include <vm/vm_kern.h> 948355f576SJeff Roberson #include <vm/vm_extern.h> 956f3b523cSKonstantin Belousov #include <vm/vm_dumpset.h> 968355f576SJeff Roberson #include <vm/uma.h> 978355f576SJeff Roberson #include <vm/uma_int.h> 98639c9550SJeff Roberson #include <vm/uma_dbg.h> 998355f576SJeff Roberson 10048c5777eSRobert Watson #include <ddb/ddb.h> 10148c5777eSRobert Watson 1028d689e04SGleb Smirnoff #ifdef DEBUG_MEMGUARD 1038d689e04SGleb Smirnoff #include <vm/memguard.h> 1048d689e04SGleb Smirnoff #endif 1058d689e04SGleb Smirnoff 106a81c400eSJeff Roberson #include <machine/md_var.h> 107a81c400eSJeff Roberson 108d4665eaaSJeff Roberson #ifdef INVARIANTS 109d4665eaaSJeff Roberson #define UMA_ALWAYS_CTORDTOR 1 110d4665eaaSJeff Roberson #else 111d4665eaaSJeff Roberson #define UMA_ALWAYS_CTORDTOR 0 112d4665eaaSJeff Roberson #endif 113d4665eaaSJeff Roberson 1148355f576SJeff Roberson /* 115ab3185d1SJeff Roberson * This is the zone and keg from which all zones are spawned. 1168355f576SJeff Roberson */ 117ab3185d1SJeff Roberson static uma_zone_t kegs; 118ab3185d1SJeff Roberson static uma_zone_t zones; 1198355f576SJeff Roberson 1209b8db4d0SRyan Libby /* 12154007ce8SMark Johnston * On INVARIANTS builds, the slab contains a second bitset of the same size, 12254007ce8SMark Johnston * "dbg_bits", which is laid out immediately after us_free. 12354007ce8SMark Johnston */ 12454007ce8SMark Johnston #ifdef INVARIANTS 12554007ce8SMark Johnston #define SLAB_BITSETS 2 12654007ce8SMark Johnston #else 12754007ce8SMark Johnston #define SLAB_BITSETS 1 12854007ce8SMark Johnston #endif 12954007ce8SMark Johnston 13054007ce8SMark Johnston /* 1319b8db4d0SRyan Libby * These are the two zones from which all offpage uma_slab_ts are allocated. 1329b8db4d0SRyan Libby * 1339b8db4d0SRyan Libby * One zone is for slab headers that can represent a larger number of items, 1349b8db4d0SRyan Libby * making the slabs themselves more efficient, and the other zone is for 1359b8db4d0SRyan Libby * headers that are smaller and represent fewer items, making the headers more 1369b8db4d0SRyan Libby * efficient. 1379b8db4d0SRyan Libby */ 1389b8db4d0SRyan Libby #define SLABZONE_SIZE(setsize) \ 1399b8db4d0SRyan Libby (sizeof(struct uma_hash_slab) + BITSET_SIZE(setsize) * SLAB_BITSETS) 1409b8db4d0SRyan Libby #define SLABZONE0_SETSIZE (PAGE_SIZE / 16) 1419b8db4d0SRyan Libby #define SLABZONE1_SETSIZE SLAB_MAX_SETSIZE 1429b8db4d0SRyan Libby #define SLABZONE0_SIZE SLABZONE_SIZE(SLABZONE0_SETSIZE) 1439b8db4d0SRyan Libby #define SLABZONE1_SIZE SLABZONE_SIZE(SLABZONE1_SETSIZE) 1449b8db4d0SRyan Libby static uma_zone_t slabzones[2]; 1458355f576SJeff Roberson 1468355f576SJeff Roberson /* 1478355f576SJeff Roberson * The initial hash tables come out of this zone so they can be allocated 1488355f576SJeff Roberson * prior to malloc coming up. 1498355f576SJeff Roberson */ 1508355f576SJeff Roberson static uma_zone_t hashzone; 1518355f576SJeff Roberson 1521e319f6dSRobert Watson /* The boot-time adjusted value for cache line alignment. */ 1533d8f548bSOlivier Certner static unsigned int uma_cache_align_mask = 64 - 1; 1541e319f6dSRobert Watson 155961647dfSJeff Roberson static MALLOC_DEFINE(M_UMAHASH, "UMAHash", "UMA Hash Buckets"); 15620a4e154SJeff Roberson static MALLOC_DEFINE(M_UMA, "UMA", "UMA Misc"); 157961647dfSJeff Roberson 1588355f576SJeff Roberson /* 15986bbae32SJeff Roberson * Are we allowed to allocate buckets? 16086bbae32SJeff Roberson */ 16186bbae32SJeff Roberson static int bucketdisable = 1; 16286bbae32SJeff Roberson 163099a0e58SBosko Milekic /* Linked list of all kegs in the system */ 16413e403fdSAntoine Brodin static LIST_HEAD(,uma_keg) uma_kegs = LIST_HEAD_INITIALIZER(uma_kegs); 1658355f576SJeff Roberson 16603175483SAlexander Motin /* Linked list of all cache-only zones in the system */ 16703175483SAlexander Motin static LIST_HEAD(,uma_zone) uma_cachezones = 16803175483SAlexander Motin LIST_HEAD_INITIALIZER(uma_cachezones); 16903175483SAlexander Motin 170aabe13f1SMark Johnston /* 171aabe13f1SMark Johnston * Mutex for global lists: uma_kegs, uma_cachezones, and the per-keg list of 172aabe13f1SMark Johnston * zones. 173aabe13f1SMark Johnston */ 174fe933c1dSMateusz Guzik static struct rwlock_padalign __exclusive_cache_line uma_rwlock; 1758355f576SJeff Roberson 176aabe13f1SMark Johnston static struct sx uma_reclaim_lock; 177aabe13f1SMark Johnston 178ac0a6fd0SGleb Smirnoff /* 179a81c400eSJeff Roberson * First available virual address for boot time allocations. 180ac0a6fd0SGleb Smirnoff */ 181a81c400eSJeff Roberson static vm_offset_t bootstart; 182a81c400eSJeff Roberson static vm_offset_t bootmem; 1838355f576SJeff Roberson 184fbd95859SMark Johnston /* 185fbd95859SMark Johnston * kmem soft limit, initialized by uma_set_limit(). Ensure that early 186fbd95859SMark Johnston * allocations don't trigger a wakeup of the reclaim thread. 187fbd95859SMark Johnston */ 1886d6a03d7SJeff Roberson unsigned long uma_kmem_limit = LONG_MAX; 189fbd95859SMark Johnston SYSCTL_ULONG(_vm, OID_AUTO, uma_kmem_limit, CTLFLAG_RD, &uma_kmem_limit, 0, 190fbd95859SMark Johnston "UMA kernel memory soft limit"); 1916d6a03d7SJeff Roberson unsigned long uma_kmem_total; 192fbd95859SMark Johnston SYSCTL_ULONG(_vm, OID_AUTO, uma_kmem_total, CTLFLAG_RD, &uma_kmem_total, 0, 193fbd95859SMark Johnston "UMA kernel memory usage"); 1942e47807cSJeff Roberson 1958355f576SJeff Roberson /* Is the VM done starting up? */ 196860bb7a0SMark Johnston static enum { 197860bb7a0SMark Johnston BOOT_COLD, 198a81c400eSJeff Roberson BOOT_KVA, 199dc2b3205SMark Johnston BOOT_PCPU, 200860bb7a0SMark Johnston BOOT_RUNNING, 201860bb7a0SMark Johnston BOOT_SHUTDOWN, 202860bb7a0SMark Johnston } booted = BOOT_COLD; 2038355f576SJeff Roberson 204ef72505eSJeff Roberson /* 2059643769aSJeff Roberson * This is the handle used to schedule events that need to happen 2069643769aSJeff Roberson * outside of the allocation fast path. 2079643769aSJeff Roberson */ 20893cd28eaSMark Johnston static struct timeout_task uma_timeout_task; 2099643769aSJeff Roberson #define UMA_TIMEOUT 20 /* Seconds for callout interval. */ 2108355f576SJeff Roberson 2118355f576SJeff Roberson /* 2128355f576SJeff Roberson * This structure is passed as the zone ctor arg so that I don't have to create 2138355f576SJeff Roberson * a special allocation function just for zones. 2148355f576SJeff Roberson */ 2158355f576SJeff Roberson struct uma_zctor_args { 216bb196eb4SMatthew D Fleming const char *name; 217c3bdc05fSAndrew R. Reiter size_t size; 2188355f576SJeff Roberson uma_ctor ctor; 2198355f576SJeff Roberson uma_dtor dtor; 2208355f576SJeff Roberson uma_init uminit; 2218355f576SJeff Roberson uma_fini fini; 2220095a784SJeff Roberson uma_import import; 2230095a784SJeff Roberson uma_release release; 2240095a784SJeff Roberson void *arg; 225099a0e58SBosko Milekic uma_keg_t keg; 226099a0e58SBosko Milekic int align; 22785dcf349SGleb Smirnoff uint32_t flags; 228099a0e58SBosko Milekic }; 229099a0e58SBosko Milekic 230099a0e58SBosko Milekic struct uma_kctor_args { 231099a0e58SBosko Milekic uma_zone_t zone; 232099a0e58SBosko Milekic size_t size; 233099a0e58SBosko Milekic uma_init uminit; 234099a0e58SBosko Milekic uma_fini fini; 2358355f576SJeff Roberson int align; 23685dcf349SGleb Smirnoff uint32_t flags; 2378355f576SJeff Roberson }; 2388355f576SJeff Roberson 239cae33c14SJeff Roberson struct uma_bucket_zone { 240cae33c14SJeff Roberson uma_zone_t ubz_zone; 241eaa17d42SRyan Libby const char *ubz_name; 242fc03d22bSJeff Roberson int ubz_entries; /* Number of items it can hold. */ 243fc03d22bSJeff Roberson int ubz_maxsize; /* Maximum allocation size per-item. */ 244cae33c14SJeff Roberson }; 245cae33c14SJeff Roberson 246f9d27e75SRobert Watson /* 247fc03d22bSJeff Roberson * Compute the actual number of bucket entries to pack them in power 248fc03d22bSJeff Roberson * of two sizes for more efficient space utilization. 249f9d27e75SRobert Watson */ 250fc03d22bSJeff Roberson #define BUCKET_SIZE(n) \ 251fc03d22bSJeff Roberson (((sizeof(void *) * (n)) - sizeof(struct uma_bucket)) / sizeof(void *)) 252fc03d22bSJeff Roberson 2531aa6c758SAlexander Motin #define BUCKET_MAX BUCKET_SIZE(256) 254fc03d22bSJeff Roberson 255fc03d22bSJeff Roberson struct uma_bucket_zone bucket_zones[] = { 256e84130a0SJeff Roberson /* Literal bucket sizes. */ 257e84130a0SJeff Roberson { NULL, "2 Bucket", 2, 4096 }, 258e84130a0SJeff Roberson { NULL, "4 Bucket", 4, 3072 }, 259e84130a0SJeff Roberson { NULL, "8 Bucket", 8, 2048 }, 260e84130a0SJeff Roberson { NULL, "16 Bucket", 16, 1024 }, 261e84130a0SJeff Roberson /* Rounded down power of 2 sizes for efficiency. */ 262fc03d22bSJeff Roberson { NULL, "32 Bucket", BUCKET_SIZE(32), 512 }, 263fc03d22bSJeff Roberson { NULL, "64 Bucket", BUCKET_SIZE(64), 256 }, 264fc03d22bSJeff Roberson { NULL, "128 Bucket", BUCKET_SIZE(128), 128 }, 2651aa6c758SAlexander Motin { NULL, "256 Bucket", BUCKET_SIZE(256), 64 }, 266fc03d22bSJeff Roberson { NULL, NULL, 0} 267fc03d22bSJeff Roberson }; 268cae33c14SJeff Roberson 2692019094aSRobert Watson /* 2702019094aSRobert Watson * Flags and enumerations to be passed to internal functions. 2712019094aSRobert Watson */ 272bb15d1c7SGleb Smirnoff enum zfreeskip { 273bb15d1c7SGleb Smirnoff SKIP_NONE = 0, 274bb15d1c7SGleb Smirnoff SKIP_CNT = 0x00000001, 275bb15d1c7SGleb Smirnoff SKIP_DTOR = 0x00010000, 276bb15d1c7SGleb Smirnoff SKIP_FINI = 0x00020000, 277bb15d1c7SGleb Smirnoff }; 278b23f72e9SBrian Feldman 2798355f576SJeff Roberson /* Prototypes.. */ 2808355f576SJeff Roberson 281a81c400eSJeff Roberson void uma_startup1(vm_offset_t); 282f4bef67cSGleb Smirnoff void uma_startup2(void); 283f4bef67cSGleb Smirnoff 284ab3185d1SJeff Roberson static void *noobj_alloc(uma_zone_t, vm_size_t, int, uint8_t *, int); 285ab3185d1SJeff Roberson static void *page_alloc(uma_zone_t, vm_size_t, int, uint8_t *, int); 286ab3059a8SMatt Macy static void *pcpu_page_alloc(uma_zone_t, vm_size_t, int, uint8_t *, int); 287ab3185d1SJeff Roberson static void *startup_alloc(uma_zone_t, vm_size_t, int, uint8_t *, int); 288ec0d8280SRyan Libby static void *contig_alloc(uma_zone_t, vm_size_t, int, uint8_t *, int); 289f2c2231eSRyan Stone static void page_free(void *, vm_size_t, uint8_t); 290ab3059a8SMatt Macy static void pcpu_page_free(void *, vm_size_t, uint8_t); 29186220393SMark Johnston static uma_slab_t keg_alloc_slab(uma_keg_t, uma_zone_t, int, int, int); 2929643769aSJeff Roberson static void cache_drain(uma_zone_t); 2938355f576SJeff Roberson static void bucket_drain(uma_zone_t, uma_bucket_t); 294aabe13f1SMark Johnston static void bucket_cache_reclaim(uma_zone_t zone, bool, int); 2952760658bSAlexander Motin static bool bucket_cache_reclaim_domain(uma_zone_t, bool, bool, int); 296b23f72e9SBrian Feldman static int keg_ctor(void *, int, void *, int); 297099a0e58SBosko Milekic static void keg_dtor(void *, int, void *); 2982760658bSAlexander Motin static void keg_drain(uma_keg_t keg, int domain); 299b23f72e9SBrian Feldman static int zone_ctor(void *, int, void *, int); 3009c2cd7e5SJeff Roberson static void zone_dtor(void *, int, void *); 301d4665eaaSJeff Roberson static inline void item_dtor(uma_zone_t zone, void *item, int size, 302d4665eaaSJeff Roberson void *udata, enum zfreeskip skip); 303b23f72e9SBrian Feldman static int zero_init(void *, int, int); 304c6fd3e23SJeff Roberson static void zone_free_bucket(uma_zone_t zone, uma_bucket_t bucket, void *udata, 305c6fd3e23SJeff Roberson int itemdomain, bool ws); 30620a4e154SJeff Roberson static void zone_foreach(void (*zfunc)(uma_zone_t, void *), void *); 307a81c400eSJeff Roberson static void zone_foreach_unlocked(void (*zfunc)(uma_zone_t, void *), void *); 30820a4e154SJeff Roberson static void zone_timeout(uma_zone_t zone, void *); 3093b2f2cb8SAlexander Motin static int hash_alloc(struct uma_hash *, u_int); 3100aef6126SJeff Roberson static int hash_expand(struct uma_hash *, struct uma_hash *); 3110aef6126SJeff Roberson static void hash_free(struct uma_hash *hash); 31293cd28eaSMark Johnston static void uma_timeout(void *, int); 313860bb7a0SMark Johnston static void uma_shutdown(void); 314ab3185d1SJeff Roberson static void *zone_alloc_item(uma_zone_t, void *, int, int); 3150095a784SJeff Roberson static void zone_free_item(uma_zone_t, void *, void *, enum zfreeskip); 3164bd61e19SJeff Roberson static int zone_alloc_limit(uma_zone_t zone, int count, int flags); 3174bd61e19SJeff Roberson static void zone_free_limit(uma_zone_t zone, int count); 31886bbae32SJeff Roberson static void bucket_enable(void); 319cae33c14SJeff Roberson static void bucket_init(void); 3206fd34d6fSJeff Roberson static uma_bucket_t bucket_alloc(uma_zone_t zone, void *, int); 3216fd34d6fSJeff Roberson static void bucket_free(uma_zone_t zone, uma_bucket_t, void *); 322aabe13f1SMark Johnston static void bucket_zone_drain(int domain); 323beb8beefSJeff Roberson static uma_bucket_t zone_alloc_bucket(uma_zone_t, void *, int, int); 3240095a784SJeff Roberson static void *slab_alloc_item(uma_keg_t keg, uma_slab_t slab); 325bb15d1c7SGleb Smirnoff static void slab_free_item(uma_zone_t zone, uma_slab_t slab, void *item); 32609c8cb71SMark Johnston static size_t slab_sizeof(int nitems); 327e20a199fSJeff Roberson static uma_keg_t uma_kcreate(uma_zone_t zone, size_t size, uma_init uminit, 32885dcf349SGleb Smirnoff uma_fini fini, int align, uint32_t flags); 329b75c4efcSAndrew Turner static int zone_import(void *, void **, int, int, int); 330b75c4efcSAndrew Turner static void zone_release(void *, void **, int); 331beb8beefSJeff Roberson static bool cache_alloc(uma_zone_t, uma_cache_t, void *, int); 3322cb67bd7SGleb Smirnoff static bool cache_free(uma_zone_t, uma_cache_t, void *, int); 333bbee39c6SJeff Roberson 3347a52a97eSRobert Watson static int sysctl_vm_zone_count(SYSCTL_HANDLER_ARGS); 3357a52a97eSRobert Watson static int sysctl_vm_zone_stats(SYSCTL_HANDLER_ARGS); 33620a4e154SJeff Roberson static int sysctl_handle_uma_zone_allocs(SYSCTL_HANDLER_ARGS); 33720a4e154SJeff Roberson static int sysctl_handle_uma_zone_frees(SYSCTL_HANDLER_ARGS); 3386d204a6aSRyan Libby static int sysctl_handle_uma_zone_flags(SYSCTL_HANDLER_ARGS); 339f7af5015SRyan Libby static int sysctl_handle_uma_slab_efficiency(SYSCTL_HANDLER_ARGS); 3404bd61e19SJeff Roberson static int sysctl_handle_uma_zone_items(SYSCTL_HANDLER_ARGS); 3418355f576SJeff Roberson 34231c251a0SJeff Roberson static uint64_t uma_zone_get_allocs(uma_zone_t zone); 34331c251a0SJeff Roberson 3447029da5cSPawel Biernacki static SYSCTL_NODE(_vm, OID_AUTO, debug, CTLFLAG_RD | CTLFLAG_MPSAFE, 0, 34533e5a1eaSRyan Libby "Memory allocation debugging"); 34633e5a1eaSRyan Libby 3479542ea7bSGleb Smirnoff #ifdef INVARIANTS 34831c251a0SJeff Roberson static uint64_t uma_keg_get_allocs(uma_keg_t zone); 349815db204SRyan Libby static inline struct noslabbits *slab_dbg_bits(uma_slab_t slab, uma_keg_t keg); 350815db204SRyan Libby 351c5deaf04SGleb Smirnoff static bool uma_dbg_kskip(uma_keg_t keg, void *mem); 352c5deaf04SGleb Smirnoff static bool uma_dbg_zskip(uma_zone_t zone, void *mem); 3539542ea7bSGleb Smirnoff static void uma_dbg_free(uma_zone_t zone, uma_slab_t slab, void *item); 3549542ea7bSGleb Smirnoff static void uma_dbg_alloc(uma_zone_t zone, uma_slab_t slab, void *item); 355c5deaf04SGleb Smirnoff 356c5deaf04SGleb Smirnoff static u_int dbg_divisor = 1; 357c5deaf04SGleb Smirnoff SYSCTL_UINT(_vm_debug, OID_AUTO, divisor, 358c5deaf04SGleb Smirnoff CTLFLAG_RDTUN | CTLFLAG_NOFETCH, &dbg_divisor, 0, 359c5deaf04SGleb Smirnoff "Debug & thrash every this item in memory allocator"); 360c5deaf04SGleb Smirnoff 361c5deaf04SGleb Smirnoff static counter_u64_t uma_dbg_cnt = EARLY_COUNTER; 362c5deaf04SGleb Smirnoff static counter_u64_t uma_skip_cnt = EARLY_COUNTER; 363c5deaf04SGleb Smirnoff SYSCTL_COUNTER_U64(_vm_debug, OID_AUTO, trashed, CTLFLAG_RD, 364c5deaf04SGleb Smirnoff &uma_dbg_cnt, "memory items debugged"); 365c5deaf04SGleb Smirnoff SYSCTL_COUNTER_U64(_vm_debug, OID_AUTO, skipped, CTLFLAG_RD, 366c5deaf04SGleb Smirnoff &uma_skip_cnt, "memory items skipped, not debugged"); 3679542ea7bSGleb Smirnoff #endif 3689542ea7bSGleb Smirnoff 3697029da5cSPawel Biernacki SYSCTL_NODE(_vm, OID_AUTO, uma, CTLFLAG_RW | CTLFLAG_MPSAFE, 0, 3707029da5cSPawel Biernacki "Universal Memory Allocator"); 37135ec24f3SRyan Libby 372a314aba8SMateusz Guzik SYSCTL_PROC(_vm, OID_AUTO, zone_count, CTLFLAG_RD|CTLFLAG_MPSAFE|CTLTYPE_INT, 3737a52a97eSRobert Watson 0, 0, sysctl_vm_zone_count, "I", "Number of UMA zones"); 3747a52a97eSRobert Watson 375a314aba8SMateusz Guzik SYSCTL_PROC(_vm, OID_AUTO, zone_stats, CTLFLAG_RD|CTLFLAG_MPSAFE|CTLTYPE_STRUCT, 3767a52a97eSRobert Watson 0, 0, sysctl_vm_zone_stats, "s,struct uma_type_header", "Zone Stats"); 3777a52a97eSRobert Watson 3782f891cd5SPawel Jakub Dawidek static int zone_warnings = 1; 379af3b2549SHans Petter Selasky SYSCTL_INT(_vm, OID_AUTO, zone_warnings, CTLFLAG_RWTUN, &zone_warnings, 0, 3802f891cd5SPawel Jakub Dawidek "Warn when UMA zones becomes full"); 3812f891cd5SPawel Jakub Dawidek 38233e5a1eaSRyan Libby static int multipage_slabs = 1; 38333e5a1eaSRyan Libby TUNABLE_INT("vm.debug.uma_multipage_slabs", &multipage_slabs); 38433e5a1eaSRyan Libby SYSCTL_INT(_vm_debug, OID_AUTO, uma_multipage_slabs, 38533e5a1eaSRyan Libby CTLFLAG_RDTUN | CTLFLAG_NOFETCH, &multipage_slabs, 0, 38633e5a1eaSRyan Libby "UMA may choose larger slab sizes for better efficiency"); 38733e5a1eaSRyan Libby 38886bbae32SJeff Roberson /* 3899b8db4d0SRyan Libby * Select the slab zone for an offpage slab with the given maximum item count. 3909b8db4d0SRyan Libby */ 3919b8db4d0SRyan Libby static inline uma_zone_t 3929b8db4d0SRyan Libby slabzone(int ipers) 3939b8db4d0SRyan Libby { 3949b8db4d0SRyan Libby 3959b8db4d0SRyan Libby return (slabzones[ipers > SLABZONE0_SETSIZE]); 3969b8db4d0SRyan Libby } 3979b8db4d0SRyan Libby 3989b8db4d0SRyan Libby /* 39986bbae32SJeff Roberson * This routine checks to see whether or not it's safe to enable buckets. 40086bbae32SJeff Roberson */ 40186bbae32SJeff Roberson static void 40286bbae32SJeff Roberson bucket_enable(void) 40386bbae32SJeff Roberson { 4043182660aSRyan Libby 405a81c400eSJeff Roberson KASSERT(booted >= BOOT_KVA, ("Bucket enable before init")); 406251386b4SMaksim Yevmenkin bucketdisable = vm_page_count_min(); 40786bbae32SJeff Roberson } 40886bbae32SJeff Roberson 409dc2c7965SRobert Watson /* 410dc2c7965SRobert Watson * Initialize bucket_zones, the array of zones of buckets of various sizes. 411dc2c7965SRobert Watson * 412dc2c7965SRobert Watson * For each zone, calculate the memory required for each bucket, consisting 413fc03d22bSJeff Roberson * of the header and an array of pointers. 414dc2c7965SRobert Watson */ 415cae33c14SJeff Roberson static void 416cae33c14SJeff Roberson bucket_init(void) 417cae33c14SJeff Roberson { 418cae33c14SJeff Roberson struct uma_bucket_zone *ubz; 419cae33c14SJeff Roberson int size; 420cae33c14SJeff Roberson 421d74e6a1dSAlan Cox for (ubz = &bucket_zones[0]; ubz->ubz_entries != 0; ubz++) { 422cae33c14SJeff Roberson size = roundup(sizeof(struct uma_bucket), sizeof(void *)); 423cae33c14SJeff Roberson size += sizeof(void *) * ubz->ubz_entries; 424cae33c14SJeff Roberson ubz->ubz_zone = uma_zcreate(ubz->ubz_name, size, 425e20a199fSJeff Roberson NULL, NULL, NULL, NULL, UMA_ALIGN_PTR, 426dfe13344SJeff Roberson UMA_ZONE_MTXCLASS | UMA_ZFLAG_BUCKET | 427dfe13344SJeff Roberson UMA_ZONE_FIRSTTOUCH); 428cae33c14SJeff Roberson } 429cae33c14SJeff Roberson } 430cae33c14SJeff Roberson 431dc2c7965SRobert Watson /* 432dc2c7965SRobert Watson * Given a desired number of entries for a bucket, return the zone from which 433dc2c7965SRobert Watson * to allocate the bucket. 434dc2c7965SRobert Watson */ 435dc2c7965SRobert Watson static struct uma_bucket_zone * 436dc2c7965SRobert Watson bucket_zone_lookup(int entries) 437dc2c7965SRobert Watson { 438fc03d22bSJeff Roberson struct uma_bucket_zone *ubz; 439dc2c7965SRobert Watson 440fc03d22bSJeff Roberson for (ubz = &bucket_zones[0]; ubz->ubz_entries != 0; ubz++) 441fc03d22bSJeff Roberson if (ubz->ubz_entries >= entries) 442fc03d22bSJeff Roberson return (ubz); 443fc03d22bSJeff Roberson ubz--; 444fc03d22bSJeff Roberson return (ubz); 445fc03d22bSJeff Roberson } 446fc03d22bSJeff Roberson 447fc03d22bSJeff Roberson static int 448fc03d22bSJeff Roberson bucket_select(int size) 449fc03d22bSJeff Roberson { 450fc03d22bSJeff Roberson struct uma_bucket_zone *ubz; 451fc03d22bSJeff Roberson 452fc03d22bSJeff Roberson ubz = &bucket_zones[0]; 453fc03d22bSJeff Roberson if (size > ubz->ubz_maxsize) 454fc03d22bSJeff Roberson return MAX((ubz->ubz_maxsize * ubz->ubz_entries) / size, 1); 455fc03d22bSJeff Roberson 456fc03d22bSJeff Roberson for (; ubz->ubz_entries != 0; ubz++) 457fc03d22bSJeff Roberson if (ubz->ubz_maxsize < size) 458fc03d22bSJeff Roberson break; 459fc03d22bSJeff Roberson ubz--; 460fc03d22bSJeff Roberson return (ubz->ubz_entries); 461dc2c7965SRobert Watson } 462dc2c7965SRobert Watson 463cae33c14SJeff Roberson static uma_bucket_t 4646fd34d6fSJeff Roberson bucket_alloc(uma_zone_t zone, void *udata, int flags) 465cae33c14SJeff Roberson { 466cae33c14SJeff Roberson struct uma_bucket_zone *ubz; 467cae33c14SJeff Roberson uma_bucket_t bucket; 468cae33c14SJeff Roberson 469cae33c14SJeff Roberson /* 470d4665eaaSJeff Roberson * Don't allocate buckets early in boot. 471cae33c14SJeff Roberson */ 472d4665eaaSJeff Roberson if (__predict_false(booted < BOOT_KVA)) 473cae33c14SJeff Roberson return (NULL); 474a81c400eSJeff Roberson 4756fd34d6fSJeff Roberson /* 4766fd34d6fSJeff Roberson * To limit bucket recursion we store the original zone flags 4776fd34d6fSJeff Roberson * in a cookie passed via zalloc_arg/zfree_arg. This allows the 4786fd34d6fSJeff Roberson * NOVM flag to persist even through deep recursions. We also 4796fd34d6fSJeff Roberson * store ZFLAG_BUCKET once we have recursed attempting to allocate 4806fd34d6fSJeff Roberson * a bucket for a bucket zone so we do not allow infinite bucket 4816fd34d6fSJeff Roberson * recursion. This cookie will even persist to frees of unused 4826fd34d6fSJeff Roberson * buckets via the allocation path or bucket allocations in the 4836fd34d6fSJeff Roberson * free path. 4846fd34d6fSJeff Roberson */ 4856fd34d6fSJeff Roberson if ((zone->uz_flags & UMA_ZFLAG_BUCKET) == 0) 4866fd34d6fSJeff Roberson udata = (void *)(uintptr_t)zone->uz_flags; 487e8a720feSAlexander Motin else { 488e8a720feSAlexander Motin if ((uintptr_t)udata & UMA_ZFLAG_BUCKET) 489e8a720feSAlexander Motin return (NULL); 4906fd34d6fSJeff Roberson udata = (void *)((uintptr_t)udata | UMA_ZFLAG_BUCKET); 491e8a720feSAlexander Motin } 492bae55c4aSRyan Libby if (((uintptr_t)udata & UMA_ZONE_VM) != 0) 493af526374SJeff Roberson flags |= M_NOVM; 494f8b6c515SMark Johnston ubz = bucket_zone_lookup(atomic_load_16(&zone->uz_bucket_size)); 49520d3ab87SAlexander Motin if (ubz->ubz_zone == zone && (ubz + 1)->ubz_entries != 0) 49620d3ab87SAlexander Motin ubz++; 4976fd34d6fSJeff Roberson bucket = uma_zalloc_arg(ubz->ubz_zone, udata, flags); 498cae33c14SJeff Roberson if (bucket) { 499cae33c14SJeff Roberson #ifdef INVARIANTS 500cae33c14SJeff Roberson bzero(bucket->ub_bucket, sizeof(void *) * ubz->ubz_entries); 501cae33c14SJeff Roberson #endif 502cae33c14SJeff Roberson bucket->ub_cnt = 0; 503f8b6c515SMark Johnston bucket->ub_entries = min(ubz->ubz_entries, 504f8b6c515SMark Johnston zone->uz_bucket_size_max); 505d4665eaaSJeff Roberson bucket->ub_seq = SMR_SEQ_INVALID; 506d4665eaaSJeff Roberson CTR3(KTR_UMA, "bucket_alloc: zone %s(%p) allocated bucket %p", 507d4665eaaSJeff Roberson zone->uz_name, zone, bucket); 508cae33c14SJeff Roberson } 509cae33c14SJeff Roberson 510cae33c14SJeff Roberson return (bucket); 511cae33c14SJeff Roberson } 512cae33c14SJeff Roberson 513cae33c14SJeff Roberson static void 5146fd34d6fSJeff Roberson bucket_free(uma_zone_t zone, uma_bucket_t bucket, void *udata) 515cae33c14SJeff Roberson { 516cae33c14SJeff Roberson struct uma_bucket_zone *ubz; 517cae33c14SJeff Roberson 518c6fd3e23SJeff Roberson if (bucket->ub_cnt != 0) 519c6fd3e23SJeff Roberson bucket_drain(zone, bucket); 520c6fd3e23SJeff Roberson 521fc03d22bSJeff Roberson KASSERT(bucket->ub_cnt == 0, 522fc03d22bSJeff Roberson ("bucket_free: Freeing a non free bucket.")); 523d4665eaaSJeff Roberson KASSERT(bucket->ub_seq == SMR_SEQ_INVALID, 524d4665eaaSJeff Roberson ("bucket_free: Freeing an SMR bucket.")); 5256fd34d6fSJeff Roberson if ((zone->uz_flags & UMA_ZFLAG_BUCKET) == 0) 5266fd34d6fSJeff Roberson udata = (void *)(uintptr_t)zone->uz_flags; 527dc2c7965SRobert Watson ubz = bucket_zone_lookup(bucket->ub_entries); 5286fd34d6fSJeff Roberson uma_zfree_arg(ubz->ubz_zone, bucket, udata); 529cae33c14SJeff Roberson } 530cae33c14SJeff Roberson 531cae33c14SJeff Roberson static void 532aabe13f1SMark Johnston bucket_zone_drain(int domain) 533cae33c14SJeff Roberson { 534cae33c14SJeff Roberson struct uma_bucket_zone *ubz; 535cae33c14SJeff Roberson 536cae33c14SJeff Roberson for (ubz = &bucket_zones[0]; ubz->ubz_entries != 0; ubz++) 537aabe13f1SMark Johnston uma_zone_reclaim_domain(ubz->ubz_zone, UMA_RECLAIM_DRAIN, 538aabe13f1SMark Johnston domain); 539cae33c14SJeff Roberson } 540cae33c14SJeff Roberson 54109c8cb71SMark Johnston #ifdef KASAN 5429a7c2de3SMark Johnston _Static_assert(UMA_SMALLEST_UNIT % KASAN_SHADOW_SCALE == 0, 5439a7c2de3SMark Johnston "Base UMA allocation size not a multiple of the KASAN scale factor"); 5449a7c2de3SMark Johnston 54509c8cb71SMark Johnston static void 54609c8cb71SMark Johnston kasan_mark_item_valid(uma_zone_t zone, void *item) 54709c8cb71SMark Johnston { 54809c8cb71SMark Johnston void *pcpu_item; 54909c8cb71SMark Johnston size_t sz, rsz; 55009c8cb71SMark Johnston int i; 55109c8cb71SMark Johnston 55209c8cb71SMark Johnston if ((zone->uz_flags & UMA_ZONE_NOKASAN) != 0) 55309c8cb71SMark Johnston return; 55409c8cb71SMark Johnston 55509c8cb71SMark Johnston sz = zone->uz_size; 55609c8cb71SMark Johnston rsz = roundup2(sz, KASAN_SHADOW_SCALE); 55709c8cb71SMark Johnston if ((zone->uz_flags & UMA_ZONE_PCPU) == 0) { 558b0dfc486SMark Johnston kasan_mark(item, sz, rsz, KASAN_GENERIC_REDZONE); 55909c8cb71SMark Johnston } else { 56009c8cb71SMark Johnston pcpu_item = zpcpu_base_to_offset(item); 56109c8cb71SMark Johnston for (i = 0; i <= mp_maxid; i++) 562b0dfc486SMark Johnston kasan_mark(zpcpu_get_cpu(pcpu_item, i), sz, rsz, 563b0dfc486SMark Johnston KASAN_GENERIC_REDZONE); 56409c8cb71SMark Johnston } 56509c8cb71SMark Johnston } 56609c8cb71SMark Johnston 56709c8cb71SMark Johnston static void 56809c8cb71SMark Johnston kasan_mark_item_invalid(uma_zone_t zone, void *item) 56909c8cb71SMark Johnston { 57009c8cb71SMark Johnston void *pcpu_item; 57109c8cb71SMark Johnston size_t sz; 57209c8cb71SMark Johnston int i; 57309c8cb71SMark Johnston 57409c8cb71SMark Johnston if ((zone->uz_flags & UMA_ZONE_NOKASAN) != 0) 57509c8cb71SMark Johnston return; 57609c8cb71SMark Johnston 57709c8cb71SMark Johnston sz = roundup2(zone->uz_size, KASAN_SHADOW_SCALE); 57809c8cb71SMark Johnston if ((zone->uz_flags & UMA_ZONE_PCPU) == 0) { 57909c8cb71SMark Johnston kasan_mark(item, 0, sz, KASAN_UMA_FREED); 58009c8cb71SMark Johnston } else { 58109c8cb71SMark Johnston pcpu_item = zpcpu_base_to_offset(item); 58209c8cb71SMark Johnston for (i = 0; i <= mp_maxid; i++) 583b0dfc486SMark Johnston kasan_mark(zpcpu_get_cpu(pcpu_item, i), 0, sz, 584b0dfc486SMark Johnston KASAN_UMA_FREED); 58509c8cb71SMark Johnston } 58609c8cb71SMark Johnston } 58709c8cb71SMark Johnston 58809c8cb71SMark Johnston static void 58909c8cb71SMark Johnston kasan_mark_slab_valid(uma_keg_t keg, void *mem) 59009c8cb71SMark Johnston { 59109c8cb71SMark Johnston size_t sz; 59209c8cb71SMark Johnston 59309c8cb71SMark Johnston if ((keg->uk_flags & UMA_ZONE_NOKASAN) == 0) { 59409c8cb71SMark Johnston sz = keg->uk_ppera * PAGE_SIZE; 59509c8cb71SMark Johnston kasan_mark(mem, sz, sz, 0); 59609c8cb71SMark Johnston } 59709c8cb71SMark Johnston } 59809c8cb71SMark Johnston 59909c8cb71SMark Johnston static void 60009c8cb71SMark Johnston kasan_mark_slab_invalid(uma_keg_t keg, void *mem) 60109c8cb71SMark Johnston { 60209c8cb71SMark Johnston size_t sz; 60309c8cb71SMark Johnston 60409c8cb71SMark Johnston if ((keg->uk_flags & UMA_ZONE_NOKASAN) == 0) { 60509c8cb71SMark Johnston if ((keg->uk_flags & UMA_ZFLAG_OFFPAGE) != 0) 60609c8cb71SMark Johnston sz = keg->uk_ppera * PAGE_SIZE; 60709c8cb71SMark Johnston else 60809c8cb71SMark Johnston sz = keg->uk_pgoff; 60909c8cb71SMark Johnston kasan_mark(mem, 0, sz, KASAN_UMA_FREED); 61009c8cb71SMark Johnston } 61109c8cb71SMark Johnston } 61209c8cb71SMark Johnston #else /* !KASAN */ 61309c8cb71SMark Johnston static void 61409c8cb71SMark Johnston kasan_mark_item_valid(uma_zone_t zone __unused, void *item __unused) 61509c8cb71SMark Johnston { 61609c8cb71SMark Johnston } 61709c8cb71SMark Johnston 61809c8cb71SMark Johnston static void 61909c8cb71SMark Johnston kasan_mark_item_invalid(uma_zone_t zone __unused, void *item __unused) 62009c8cb71SMark Johnston { 62109c8cb71SMark Johnston } 62209c8cb71SMark Johnston 62309c8cb71SMark Johnston static void 62409c8cb71SMark Johnston kasan_mark_slab_valid(uma_keg_t keg __unused, void *mem __unused) 62509c8cb71SMark Johnston { 62609c8cb71SMark Johnston } 62709c8cb71SMark Johnston 62809c8cb71SMark Johnston static void 62909c8cb71SMark Johnston kasan_mark_slab_invalid(uma_keg_t keg __unused, void *mem __unused) 63009c8cb71SMark Johnston { 63109c8cb71SMark Johnston } 63209c8cb71SMark Johnston #endif /* KASAN */ 63309c8cb71SMark Johnston 63410094910SMark Johnston #ifdef KMSAN 63510094910SMark Johnston static inline void 63610094910SMark Johnston kmsan_mark_item_uninitialized(uma_zone_t zone, void *item) 63710094910SMark Johnston { 63810094910SMark Johnston void *pcpu_item; 63910094910SMark Johnston size_t sz; 64010094910SMark Johnston int i; 64110094910SMark Johnston 64210094910SMark Johnston if ((zone->uz_flags & 64310094910SMark Johnston (UMA_ZFLAG_CACHE | UMA_ZONE_SECONDARY | UMA_ZONE_MALLOC)) != 0) { 64410094910SMark Johnston /* 64510094910SMark Johnston * Cache zones should not be instrumented by default, as UMA 64610094910SMark Johnston * does not have enough information to do so correctly. 64710094910SMark Johnston * Consumers can mark items themselves if it makes sense to do 64810094910SMark Johnston * so. 64910094910SMark Johnston * 65010094910SMark Johnston * Items from secondary zones are initialized by the parent 65110094910SMark Johnston * zone and thus cannot safely be marked by UMA. 65210094910SMark Johnston * 65310094910SMark Johnston * malloc zones are handled directly by malloc(9) and friends, 65410094910SMark Johnston * since they can provide more precise origin tracking. 65510094910SMark Johnston */ 65610094910SMark Johnston return; 65710094910SMark Johnston } 65810094910SMark Johnston if (zone->uz_keg->uk_init != NULL) { 65910094910SMark Johnston /* 66010094910SMark Johnston * By definition, initialized items cannot be marked. The 66110094910SMark Johnston * best we can do is mark items from these zones after they 66210094910SMark Johnston * are freed to the keg. 66310094910SMark Johnston */ 66410094910SMark Johnston return; 66510094910SMark Johnston } 66610094910SMark Johnston 66710094910SMark Johnston sz = zone->uz_size; 66810094910SMark Johnston if ((zone->uz_flags & UMA_ZONE_PCPU) == 0) { 66910094910SMark Johnston kmsan_orig(item, sz, KMSAN_TYPE_UMA, KMSAN_RET_ADDR); 67010094910SMark Johnston kmsan_mark(item, sz, KMSAN_STATE_UNINIT); 67110094910SMark Johnston } else { 67210094910SMark Johnston pcpu_item = zpcpu_base_to_offset(item); 67310094910SMark Johnston for (i = 0; i <= mp_maxid; i++) { 67410094910SMark Johnston kmsan_orig(zpcpu_get_cpu(pcpu_item, i), sz, 67510094910SMark Johnston KMSAN_TYPE_UMA, KMSAN_RET_ADDR); 67610094910SMark Johnston kmsan_mark(zpcpu_get_cpu(pcpu_item, i), sz, 67710094910SMark Johnston KMSAN_STATE_INITED); 67810094910SMark Johnston } 67910094910SMark Johnston } 68010094910SMark Johnston } 68110094910SMark Johnston #else /* !KMSAN */ 68210094910SMark Johnston static inline void 68310094910SMark Johnston kmsan_mark_item_uninitialized(uma_zone_t zone __unused, void *item __unused) 68410094910SMark Johnston { 68510094910SMark Johnston } 68610094910SMark Johnston #endif /* KMSAN */ 68710094910SMark Johnston 68808cfa56eSMark Johnston /* 689c6fd3e23SJeff Roberson * Acquire the domain lock and record contention. 690c6fd3e23SJeff Roberson */ 691c6fd3e23SJeff Roberson static uma_zone_domain_t 692c6fd3e23SJeff Roberson zone_domain_lock(uma_zone_t zone, int domain) 693c6fd3e23SJeff Roberson { 694c6fd3e23SJeff Roberson uma_zone_domain_t zdom; 695c6fd3e23SJeff Roberson bool lockfail; 696c6fd3e23SJeff Roberson 697c6fd3e23SJeff Roberson zdom = ZDOM_GET(zone, domain); 698c6fd3e23SJeff Roberson lockfail = false; 699c6fd3e23SJeff Roberson if (ZDOM_OWNED(zdom)) 700c6fd3e23SJeff Roberson lockfail = true; 701c6fd3e23SJeff Roberson ZDOM_LOCK(zdom); 702c6fd3e23SJeff Roberson /* This is unsynchronized. The counter does not need to be precise. */ 703c6fd3e23SJeff Roberson if (lockfail && zone->uz_bucket_size < zone->uz_bucket_size_max) 704c6fd3e23SJeff Roberson zone->uz_bucket_size++; 705c6fd3e23SJeff Roberson return (zdom); 706c6fd3e23SJeff Roberson } 707c6fd3e23SJeff Roberson 708c6fd3e23SJeff Roberson /* 709fe835cbfSJeff Roberson * Search for the domain with the least cached items and return it if it 710fe835cbfSJeff Roberson * is out of balance with the preferred domain. 711c6fd3e23SJeff Roberson */ 712c6fd3e23SJeff Roberson static __noinline int 713c6fd3e23SJeff Roberson zone_domain_lowest(uma_zone_t zone, int pref) 714c6fd3e23SJeff Roberson { 715fe835cbfSJeff Roberson long least, nitems, prefitems; 716c6fd3e23SJeff Roberson int domain; 717c6fd3e23SJeff Roberson int i; 718c6fd3e23SJeff Roberson 719fe835cbfSJeff Roberson prefitems = least = LONG_MAX; 720c6fd3e23SJeff Roberson domain = 0; 721c6fd3e23SJeff Roberson for (i = 0; i < vm_ndomains; i++) { 722c6fd3e23SJeff Roberson nitems = ZDOM_GET(zone, i)->uzd_nitems; 723c6fd3e23SJeff Roberson if (nitems < least) { 724c6fd3e23SJeff Roberson domain = i; 725c6fd3e23SJeff Roberson least = nitems; 726c6fd3e23SJeff Roberson } 727fe835cbfSJeff Roberson if (domain == pref) 728fe835cbfSJeff Roberson prefitems = nitems; 729fe835cbfSJeff Roberson } 730fe835cbfSJeff Roberson if (prefitems < least * 2) 731fe835cbfSJeff Roberson return (pref); 732c6fd3e23SJeff Roberson 733c6fd3e23SJeff Roberson return (domain); 734c6fd3e23SJeff Roberson } 735c6fd3e23SJeff Roberson 736c6fd3e23SJeff Roberson /* 737c6fd3e23SJeff Roberson * Search for the domain with the most cached items and return it or the 738c6fd3e23SJeff Roberson * preferred domain if it has enough to proceed. 739c6fd3e23SJeff Roberson */ 740c6fd3e23SJeff Roberson static __noinline int 741c6fd3e23SJeff Roberson zone_domain_highest(uma_zone_t zone, int pref) 742c6fd3e23SJeff Roberson { 743c6fd3e23SJeff Roberson long most, nitems; 744c6fd3e23SJeff Roberson int domain; 745c6fd3e23SJeff Roberson int i; 746c6fd3e23SJeff Roberson 747c6fd3e23SJeff Roberson if (ZDOM_GET(zone, pref)->uzd_nitems > BUCKET_MAX) 748c6fd3e23SJeff Roberson return (pref); 749c6fd3e23SJeff Roberson 750c6fd3e23SJeff Roberson most = 0; 751c6fd3e23SJeff Roberson domain = 0; 752c6fd3e23SJeff Roberson for (i = 0; i < vm_ndomains; i++) { 753c6fd3e23SJeff Roberson nitems = ZDOM_GET(zone, i)->uzd_nitems; 754c6fd3e23SJeff Roberson if (nitems > most) { 755c6fd3e23SJeff Roberson domain = i; 756c6fd3e23SJeff Roberson most = nitems; 757c6fd3e23SJeff Roberson } 758c6fd3e23SJeff Roberson } 759c6fd3e23SJeff Roberson 760c6fd3e23SJeff Roberson return (domain); 761c6fd3e23SJeff Roberson } 762c6fd3e23SJeff Roberson 763c6fd3e23SJeff Roberson /* 764c6fd3e23SJeff Roberson * Set the maximum imax value. 765c6fd3e23SJeff Roberson */ 766c6fd3e23SJeff Roberson static void 767c6fd3e23SJeff Roberson zone_domain_imax_set(uma_zone_domain_t zdom, int nitems) 768c6fd3e23SJeff Roberson { 769c6fd3e23SJeff Roberson long old; 770c6fd3e23SJeff Roberson 771c6fd3e23SJeff Roberson old = zdom->uzd_imax; 772c6fd3e23SJeff Roberson do { 773c6fd3e23SJeff Roberson if (old >= nitems) 7742760658bSAlexander Motin return; 775c6fd3e23SJeff Roberson } while (atomic_fcmpset_long(&zdom->uzd_imax, &old, nitems) == 0); 7762760658bSAlexander Motin 7772760658bSAlexander Motin /* 7782760658bSAlexander Motin * We are at new maximum, so do the last WSS update for the old 7792760658bSAlexander Motin * bimin and prepare to measure next allocation batch. 7802760658bSAlexander Motin */ 7812760658bSAlexander Motin if (zdom->uzd_wss < old - zdom->uzd_bimin) 7822760658bSAlexander Motin zdom->uzd_wss = old - zdom->uzd_bimin; 7832760658bSAlexander Motin zdom->uzd_bimin = nitems; 784c6fd3e23SJeff Roberson } 785c6fd3e23SJeff Roberson 786c6fd3e23SJeff Roberson /* 78708cfa56eSMark Johnston * Attempt to satisfy an allocation by retrieving a full bucket from one of the 788d4665eaaSJeff Roberson * zone's caches. If a bucket is found the zone is not locked on return. 78908cfa56eSMark Johnston */ 7900f9b7bf3SMark Johnston static uma_bucket_t 791c6fd3e23SJeff Roberson zone_fetch_bucket(uma_zone_t zone, uma_zone_domain_t zdom, bool reclaim) 7920f9b7bf3SMark Johnston { 7930f9b7bf3SMark Johnston uma_bucket_t bucket; 7942760658bSAlexander Motin long cnt; 795d4665eaaSJeff Roberson int i; 796d4665eaaSJeff Roberson bool dtor = false; 7970f9b7bf3SMark Johnston 798c6fd3e23SJeff Roberson ZDOM_LOCK_ASSERT(zdom); 7990f9b7bf3SMark Johnston 800dc3915c8SJeff Roberson if ((bucket = STAILQ_FIRST(&zdom->uzd_buckets)) == NULL) 801d4665eaaSJeff Roberson return (NULL); 802d4665eaaSJeff Roberson 803543117beSJeff Roberson /* SMR Buckets can not be re-used until readers expire. */ 804d4665eaaSJeff Roberson if ((zone->uz_flags & UMA_ZONE_SMR) != 0 && 805d4665eaaSJeff Roberson bucket->ub_seq != SMR_SEQ_INVALID) { 806d4665eaaSJeff Roberson if (!smr_poll(zone->uz_smr, bucket->ub_seq, false)) 807d4665eaaSJeff Roberson return (NULL); 808d4665eaaSJeff Roberson bucket->ub_seq = SMR_SEQ_INVALID; 809543117beSJeff Roberson dtor = (zone->uz_dtor != NULL) || UMA_ALWAYS_CTORDTOR; 810c6fd3e23SJeff Roberson if (STAILQ_NEXT(bucket, ub_link) != NULL) 811c6fd3e23SJeff Roberson zdom->uzd_seq = STAILQ_NEXT(bucket, ub_link)->ub_seq; 812d4665eaaSJeff Roberson } 813dc3915c8SJeff Roberson STAILQ_REMOVE_HEAD(&zdom->uzd_buckets, ub_link); 81406d8bdcbSMark Johnston 81506d8bdcbSMark Johnston KASSERT(zdom->uzd_nitems >= bucket->ub_cnt, 81606d8bdcbSMark Johnston ("%s: item count underflow (%ld, %d)", 81706d8bdcbSMark Johnston __func__, zdom->uzd_nitems, bucket->ub_cnt)); 81806d8bdcbSMark Johnston KASSERT(bucket->ub_cnt > 0, 81906d8bdcbSMark Johnston ("%s: empty bucket in bucket cache", __func__)); 8200f9b7bf3SMark Johnston zdom->uzd_nitems -= bucket->ub_cnt; 821c6fd3e23SJeff Roberson 8222760658bSAlexander Motin if (reclaim) { 823c6fd3e23SJeff Roberson /* 824c6fd3e23SJeff Roberson * Shift the bounds of the current WSS interval to avoid 8252760658bSAlexander Motin * perturbing the estimates. 826c6fd3e23SJeff Roberson */ 8272760658bSAlexander Motin cnt = lmin(zdom->uzd_bimin, bucket->ub_cnt); 8282760658bSAlexander Motin atomic_subtract_long(&zdom->uzd_imax, cnt); 8292760658bSAlexander Motin zdom->uzd_bimin -= cnt; 830c6fd3e23SJeff Roberson zdom->uzd_imin -= lmin(zdom->uzd_imin, bucket->ub_cnt); 8312760658bSAlexander Motin if (zdom->uzd_limin >= bucket->ub_cnt) { 8322760658bSAlexander Motin zdom->uzd_limin -= bucket->ub_cnt; 8332760658bSAlexander Motin } else { 8342760658bSAlexander Motin zdom->uzd_limin = 0; 8352760658bSAlexander Motin zdom->uzd_timin = 0; 8362760658bSAlexander Motin } 8372760658bSAlexander Motin } else if (zdom->uzd_bimin > zdom->uzd_nitems) { 8382760658bSAlexander Motin zdom->uzd_bimin = zdom->uzd_nitems; 8392760658bSAlexander Motin if (zdom->uzd_imin > zdom->uzd_nitems) 8400f9b7bf3SMark Johnston zdom->uzd_imin = zdom->uzd_nitems; 8412760658bSAlexander Motin } 842c6fd3e23SJeff Roberson 843c6fd3e23SJeff Roberson ZDOM_UNLOCK(zdom); 844d4665eaaSJeff Roberson if (dtor) 845d4665eaaSJeff Roberson for (i = 0; i < bucket->ub_cnt; i++) 846d4665eaaSJeff Roberson item_dtor(zone, bucket->ub_bucket[i], zone->uz_size, 847d4665eaaSJeff Roberson NULL, SKIP_NONE); 848d4665eaaSJeff Roberson 8490f9b7bf3SMark Johnston return (bucket); 8500f9b7bf3SMark Johnston } 8510f9b7bf3SMark Johnston 85208cfa56eSMark Johnston /* 85308cfa56eSMark Johnston * Insert a full bucket into the specified cache. The "ws" parameter indicates 85408cfa56eSMark Johnston * whether the bucket's contents should be counted as part of the zone's working 855c6fd3e23SJeff Roberson * set. The bucket may be freed if it exceeds the bucket limit. 85608cfa56eSMark Johnston */ 8570f9b7bf3SMark Johnston static void 858c6fd3e23SJeff Roberson zone_put_bucket(uma_zone_t zone, int domain, uma_bucket_t bucket, void *udata, 8590f9b7bf3SMark Johnston const bool ws) 8600f9b7bf3SMark Johnston { 861c6fd3e23SJeff Roberson uma_zone_domain_t zdom; 8620f9b7bf3SMark Johnston 863c6fd3e23SJeff Roberson /* We don't cache empty buckets. This can happen after a reclaim. */ 864c6fd3e23SJeff Roberson if (bucket->ub_cnt == 0) 865c6fd3e23SJeff Roberson goto out; 866c6fd3e23SJeff Roberson zdom = zone_domain_lock(zone, domain); 867c6fd3e23SJeff Roberson 868c6fd3e23SJeff Roberson /* 869c6fd3e23SJeff Roberson * Conditionally set the maximum number of items. 870c6fd3e23SJeff Roberson */ 8710f9b7bf3SMark Johnston zdom->uzd_nitems += bucket->ub_cnt; 872c6fd3e23SJeff Roberson if (__predict_true(zdom->uzd_nitems < zone->uz_bucket_max)) { 8732760658bSAlexander Motin if (ws) { 874c6fd3e23SJeff Roberson zone_domain_imax_set(zdom, zdom->uzd_nitems); 8752760658bSAlexander Motin } else { 8762760658bSAlexander Motin /* 8772760658bSAlexander Motin * Shift the bounds of the current WSS interval to 8782760658bSAlexander Motin * avoid perturbing the estimates. 8792760658bSAlexander Motin */ 8802760658bSAlexander Motin atomic_add_long(&zdom->uzd_imax, bucket->ub_cnt); 8812760658bSAlexander Motin zdom->uzd_imin += bucket->ub_cnt; 8822760658bSAlexander Motin zdom->uzd_bimin += bucket->ub_cnt; 8832760658bSAlexander Motin zdom->uzd_limin += bucket->ub_cnt; 8842760658bSAlexander Motin } 885c6fd3e23SJeff Roberson if (STAILQ_EMPTY(&zdom->uzd_buckets)) 886c6fd3e23SJeff Roberson zdom->uzd_seq = bucket->ub_seq; 8875afdf5c1SMark Johnston 8885afdf5c1SMark Johnston /* 8895afdf5c1SMark Johnston * Try to promote reuse of recently used items. For items 8905afdf5c1SMark Johnston * protected by SMR, try to defer reuse to minimize polling. 8915afdf5c1SMark Johnston */ 8925afdf5c1SMark Johnston if (bucket->ub_seq == SMR_SEQ_INVALID) 8935afdf5c1SMark Johnston STAILQ_INSERT_HEAD(&zdom->uzd_buckets, bucket, ub_link); 8945afdf5c1SMark Johnston else 895c6fd3e23SJeff Roberson STAILQ_INSERT_TAIL(&zdom->uzd_buckets, bucket, ub_link); 896c6fd3e23SJeff Roberson ZDOM_UNLOCK(zdom); 897c6fd3e23SJeff Roberson return; 898c6fd3e23SJeff Roberson } 899c6fd3e23SJeff Roberson zdom->uzd_nitems -= bucket->ub_cnt; 900c6fd3e23SJeff Roberson ZDOM_UNLOCK(zdom); 901c6fd3e23SJeff Roberson out: 902c6fd3e23SJeff Roberson bucket_free(zone, bucket, udata); 9030f9b7bf3SMark Johnston } 9040f9b7bf3SMark Johnston 905376b1ba3SJeff Roberson /* Pops an item out of a per-cpu cache bucket. */ 906376b1ba3SJeff Roberson static inline void * 907376b1ba3SJeff Roberson cache_bucket_pop(uma_cache_t cache, uma_cache_bucket_t bucket) 908376b1ba3SJeff Roberson { 909376b1ba3SJeff Roberson void *item; 910376b1ba3SJeff Roberson 911376b1ba3SJeff Roberson CRITICAL_ASSERT(curthread); 912376b1ba3SJeff Roberson 913376b1ba3SJeff Roberson bucket->ucb_cnt--; 914376b1ba3SJeff Roberson item = bucket->ucb_bucket->ub_bucket[bucket->ucb_cnt]; 915376b1ba3SJeff Roberson #ifdef INVARIANTS 916376b1ba3SJeff Roberson bucket->ucb_bucket->ub_bucket[bucket->ucb_cnt] = NULL; 917376b1ba3SJeff Roberson KASSERT(item != NULL, ("uma_zalloc: Bucket pointer mangled.")); 918376b1ba3SJeff Roberson #endif 919376b1ba3SJeff Roberson cache->uc_allocs++; 920376b1ba3SJeff Roberson 921376b1ba3SJeff Roberson return (item); 922376b1ba3SJeff Roberson } 923376b1ba3SJeff Roberson 924376b1ba3SJeff Roberson /* Pushes an item into a per-cpu cache bucket. */ 925376b1ba3SJeff Roberson static inline void 926376b1ba3SJeff Roberson cache_bucket_push(uma_cache_t cache, uma_cache_bucket_t bucket, void *item) 927376b1ba3SJeff Roberson { 928376b1ba3SJeff Roberson 929376b1ba3SJeff Roberson CRITICAL_ASSERT(curthread); 930376b1ba3SJeff Roberson KASSERT(bucket->ucb_bucket->ub_bucket[bucket->ucb_cnt] == NULL, 931376b1ba3SJeff Roberson ("uma_zfree: Freeing to non free bucket index.")); 932376b1ba3SJeff Roberson 933376b1ba3SJeff Roberson bucket->ucb_bucket->ub_bucket[bucket->ucb_cnt] = item; 934376b1ba3SJeff Roberson bucket->ucb_cnt++; 935376b1ba3SJeff Roberson cache->uc_frees++; 936376b1ba3SJeff Roberson } 937376b1ba3SJeff Roberson 938376b1ba3SJeff Roberson /* 939376b1ba3SJeff Roberson * Unload a UMA bucket from a per-cpu cache. 940376b1ba3SJeff Roberson */ 941376b1ba3SJeff Roberson static inline uma_bucket_t 942376b1ba3SJeff Roberson cache_bucket_unload(uma_cache_bucket_t bucket) 943376b1ba3SJeff Roberson { 944376b1ba3SJeff Roberson uma_bucket_t b; 945376b1ba3SJeff Roberson 946376b1ba3SJeff Roberson b = bucket->ucb_bucket; 947376b1ba3SJeff Roberson if (b != NULL) { 948376b1ba3SJeff Roberson MPASS(b->ub_entries == bucket->ucb_entries); 949376b1ba3SJeff Roberson b->ub_cnt = bucket->ucb_cnt; 950376b1ba3SJeff Roberson bucket->ucb_bucket = NULL; 951376b1ba3SJeff Roberson bucket->ucb_entries = bucket->ucb_cnt = 0; 952376b1ba3SJeff Roberson } 953376b1ba3SJeff Roberson 954376b1ba3SJeff Roberson return (b); 955376b1ba3SJeff Roberson } 956376b1ba3SJeff Roberson 957376b1ba3SJeff Roberson static inline uma_bucket_t 958376b1ba3SJeff Roberson cache_bucket_unload_alloc(uma_cache_t cache) 959376b1ba3SJeff Roberson { 960376b1ba3SJeff Roberson 961376b1ba3SJeff Roberson return (cache_bucket_unload(&cache->uc_allocbucket)); 962376b1ba3SJeff Roberson } 963376b1ba3SJeff Roberson 964376b1ba3SJeff Roberson static inline uma_bucket_t 965376b1ba3SJeff Roberson cache_bucket_unload_free(uma_cache_t cache) 966376b1ba3SJeff Roberson { 967376b1ba3SJeff Roberson 968376b1ba3SJeff Roberson return (cache_bucket_unload(&cache->uc_freebucket)); 969376b1ba3SJeff Roberson } 970376b1ba3SJeff Roberson 971376b1ba3SJeff Roberson static inline uma_bucket_t 972376b1ba3SJeff Roberson cache_bucket_unload_cross(uma_cache_t cache) 973376b1ba3SJeff Roberson { 974376b1ba3SJeff Roberson 975376b1ba3SJeff Roberson return (cache_bucket_unload(&cache->uc_crossbucket)); 976376b1ba3SJeff Roberson } 977376b1ba3SJeff Roberson 978376b1ba3SJeff Roberson /* 979376b1ba3SJeff Roberson * Load a bucket into a per-cpu cache bucket. 980376b1ba3SJeff Roberson */ 981376b1ba3SJeff Roberson static inline void 982376b1ba3SJeff Roberson cache_bucket_load(uma_cache_bucket_t bucket, uma_bucket_t b) 983376b1ba3SJeff Roberson { 984376b1ba3SJeff Roberson 985376b1ba3SJeff Roberson CRITICAL_ASSERT(curthread); 986376b1ba3SJeff Roberson MPASS(bucket->ucb_bucket == NULL); 987543117beSJeff Roberson MPASS(b->ub_seq == SMR_SEQ_INVALID); 988376b1ba3SJeff Roberson 989376b1ba3SJeff Roberson bucket->ucb_bucket = b; 990376b1ba3SJeff Roberson bucket->ucb_cnt = b->ub_cnt; 991376b1ba3SJeff Roberson bucket->ucb_entries = b->ub_entries; 992376b1ba3SJeff Roberson } 993376b1ba3SJeff Roberson 994376b1ba3SJeff Roberson static inline void 995376b1ba3SJeff Roberson cache_bucket_load_alloc(uma_cache_t cache, uma_bucket_t b) 996376b1ba3SJeff Roberson { 997376b1ba3SJeff Roberson 998376b1ba3SJeff Roberson cache_bucket_load(&cache->uc_allocbucket, b); 999376b1ba3SJeff Roberson } 1000376b1ba3SJeff Roberson 1001376b1ba3SJeff Roberson static inline void 1002376b1ba3SJeff Roberson cache_bucket_load_free(uma_cache_t cache, uma_bucket_t b) 1003376b1ba3SJeff Roberson { 1004376b1ba3SJeff Roberson 1005376b1ba3SJeff Roberson cache_bucket_load(&cache->uc_freebucket, b); 1006376b1ba3SJeff Roberson } 1007376b1ba3SJeff Roberson 1008dfe13344SJeff Roberson #ifdef NUMA 1009376b1ba3SJeff Roberson static inline void 1010376b1ba3SJeff Roberson cache_bucket_load_cross(uma_cache_t cache, uma_bucket_t b) 1011376b1ba3SJeff Roberson { 1012376b1ba3SJeff Roberson 1013376b1ba3SJeff Roberson cache_bucket_load(&cache->uc_crossbucket, b); 1014376b1ba3SJeff Roberson } 1015376b1ba3SJeff Roberson #endif 1016376b1ba3SJeff Roberson 1017376b1ba3SJeff Roberson /* 1018376b1ba3SJeff Roberson * Copy and preserve ucb_spare. 1019376b1ba3SJeff Roberson */ 1020376b1ba3SJeff Roberson static inline void 1021376b1ba3SJeff Roberson cache_bucket_copy(uma_cache_bucket_t b1, uma_cache_bucket_t b2) 1022376b1ba3SJeff Roberson { 1023376b1ba3SJeff Roberson 1024376b1ba3SJeff Roberson b1->ucb_bucket = b2->ucb_bucket; 1025376b1ba3SJeff Roberson b1->ucb_entries = b2->ucb_entries; 1026376b1ba3SJeff Roberson b1->ucb_cnt = b2->ucb_cnt; 1027376b1ba3SJeff Roberson } 1028376b1ba3SJeff Roberson 1029376b1ba3SJeff Roberson /* 1030376b1ba3SJeff Roberson * Swap two cache buckets. 1031376b1ba3SJeff Roberson */ 1032376b1ba3SJeff Roberson static inline void 1033376b1ba3SJeff Roberson cache_bucket_swap(uma_cache_bucket_t b1, uma_cache_bucket_t b2) 1034376b1ba3SJeff Roberson { 1035376b1ba3SJeff Roberson struct uma_cache_bucket b3; 1036376b1ba3SJeff Roberson 1037376b1ba3SJeff Roberson CRITICAL_ASSERT(curthread); 1038376b1ba3SJeff Roberson 1039376b1ba3SJeff Roberson cache_bucket_copy(&b3, b1); 1040376b1ba3SJeff Roberson cache_bucket_copy(b1, b2); 1041376b1ba3SJeff Roberson cache_bucket_copy(b2, &b3); 1042376b1ba3SJeff Roberson } 1043376b1ba3SJeff Roberson 1044c6fd3e23SJeff Roberson /* 1045c6fd3e23SJeff Roberson * Attempt to fetch a bucket from a zone on behalf of the current cpu cache. 1046c6fd3e23SJeff Roberson */ 1047c6fd3e23SJeff Roberson static uma_bucket_t 1048c6fd3e23SJeff Roberson cache_fetch_bucket(uma_zone_t zone, uma_cache_t cache, int domain) 1049c6fd3e23SJeff Roberson { 1050c6fd3e23SJeff Roberson uma_zone_domain_t zdom; 1051c6fd3e23SJeff Roberson uma_bucket_t bucket; 1052a04ce833SMark Johnston smr_seq_t seq; 1053c6fd3e23SJeff Roberson 1054c6fd3e23SJeff Roberson /* 1055c6fd3e23SJeff Roberson * Avoid the lock if possible. 1056c6fd3e23SJeff Roberson */ 1057c6fd3e23SJeff Roberson zdom = ZDOM_GET(zone, domain); 1058c6fd3e23SJeff Roberson if (zdom->uzd_nitems == 0) 1059c6fd3e23SJeff Roberson return (NULL); 1060c6fd3e23SJeff Roberson 1061c6fd3e23SJeff Roberson if ((cache_uz_flags(cache) & UMA_ZONE_SMR) != 0 && 1062a04ce833SMark Johnston (seq = atomic_load_32(&zdom->uzd_seq)) != SMR_SEQ_INVALID && 1063a04ce833SMark Johnston !smr_poll(zone->uz_smr, seq, false)) 1064c6fd3e23SJeff Roberson return (NULL); 1065c6fd3e23SJeff Roberson 1066c6fd3e23SJeff Roberson /* 1067c6fd3e23SJeff Roberson * Check the zone's cache of buckets. 1068c6fd3e23SJeff Roberson */ 1069c6fd3e23SJeff Roberson zdom = zone_domain_lock(zone, domain); 107006d8bdcbSMark Johnston if ((bucket = zone_fetch_bucket(zone, zdom, false)) != NULL) 1071c6fd3e23SJeff Roberson return (bucket); 1072c6fd3e23SJeff Roberson ZDOM_UNLOCK(zdom); 1073c6fd3e23SJeff Roberson 1074c6fd3e23SJeff Roberson return (NULL); 1075c6fd3e23SJeff Roberson } 1076c6fd3e23SJeff Roberson 10772f891cd5SPawel Jakub Dawidek static void 10782f891cd5SPawel Jakub Dawidek zone_log_warning(uma_zone_t zone) 10792f891cd5SPawel Jakub Dawidek { 10802f891cd5SPawel Jakub Dawidek static const struct timeval warninterval = { 300, 0 }; 10812f891cd5SPawel Jakub Dawidek 10822f891cd5SPawel Jakub Dawidek if (!zone_warnings || zone->uz_warning == NULL) 10832f891cd5SPawel Jakub Dawidek return; 10842f891cd5SPawel Jakub Dawidek 10852f891cd5SPawel Jakub Dawidek if (ratecheck(&zone->uz_ratecheck, &warninterval)) 10862f891cd5SPawel Jakub Dawidek printf("[zone: %s] %s\n", zone->uz_name, zone->uz_warning); 10872f891cd5SPawel Jakub Dawidek } 10882f891cd5SPawel Jakub Dawidek 108954503a13SJonathan T. Looney static inline void 109054503a13SJonathan T. Looney zone_maxaction(uma_zone_t zone) 109154503a13SJonathan T. Looney { 1092e60b2fcbSGleb Smirnoff 1093e60b2fcbSGleb Smirnoff if (zone->uz_maxaction.ta_func != NULL) 1094e60b2fcbSGleb Smirnoff taskqueue_enqueue(taskqueue_thread, &zone->uz_maxaction); 109554503a13SJonathan T. Looney } 109654503a13SJonathan T. Looney 10978355f576SJeff Roberson /* 10988355f576SJeff Roberson * Routine called by timeout which is used to fire off some time interval 10999643769aSJeff Roberson * based calculations. (stats, hash size, etc.) 11008355f576SJeff Roberson * 11018355f576SJeff Roberson * Arguments: 11028355f576SJeff Roberson * arg Unused 11038355f576SJeff Roberson * 11048355f576SJeff Roberson * Returns: 11058355f576SJeff Roberson * Nothing 11068355f576SJeff Roberson */ 11078355f576SJeff Roberson static void 110831508912SMark Johnston uma_timeout(void *context __unused, int pending __unused) 11098355f576SJeff Roberson { 111086bbae32SJeff Roberson bucket_enable(); 111120a4e154SJeff Roberson zone_foreach(zone_timeout, NULL); 11128355f576SJeff Roberson 11138355f576SJeff Roberson /* Reschedule this event */ 111493cd28eaSMark Johnston taskqueue_enqueue_timeout(taskqueue_thread, &uma_timeout_task, 111593cd28eaSMark Johnston UMA_TIMEOUT * hz); 11168355f576SJeff Roberson } 11178355f576SJeff Roberson 11188355f576SJeff Roberson /* 11192760658bSAlexander Motin * Update the working set size estimates for the zone's bucket cache. 11202760658bSAlexander Motin * The constants chosen here are somewhat arbitrary. 11210f9b7bf3SMark Johnston */ 11220f9b7bf3SMark Johnston static void 11230f9b7bf3SMark Johnston zone_domain_update_wss(uma_zone_domain_t zdom) 11240f9b7bf3SMark Johnston { 11252760658bSAlexander Motin long m; 11260f9b7bf3SMark Johnston 11272760658bSAlexander Motin ZDOM_LOCK_ASSERT(zdom); 11282760658bSAlexander Motin MPASS(zdom->uzd_imax >= zdom->uzd_nitems); 11292760658bSAlexander Motin MPASS(zdom->uzd_nitems >= zdom->uzd_bimin); 11302760658bSAlexander Motin MPASS(zdom->uzd_bimin >= zdom->uzd_imin); 11312760658bSAlexander Motin 11322760658bSAlexander Motin /* 11332760658bSAlexander Motin * Estimate WSS as modified moving average of biggest allocation 11342760658bSAlexander Motin * batches for each period over few minutes (UMA_TIMEOUT of 20s). 11352760658bSAlexander Motin */ 11362760658bSAlexander Motin zdom->uzd_wss = lmax(zdom->uzd_wss * 3 / 4, 11372760658bSAlexander Motin zdom->uzd_imax - zdom->uzd_bimin); 11382760658bSAlexander Motin 11392760658bSAlexander Motin /* 11402760658bSAlexander Motin * Estimate longtime minimum item count as a combination of recent 11412760658bSAlexander Motin * minimum item count, adjusted by WSS for safety, and the modified 11422760658bSAlexander Motin * moving average over the last several hours (UMA_TIMEOUT of 20s). 11432760658bSAlexander Motin * timin measures time since limin tried to go negative, that means 11442760658bSAlexander Motin * we were dangerously close to or got out of cache. 11452760658bSAlexander Motin */ 11462760658bSAlexander Motin m = zdom->uzd_imin - zdom->uzd_wss; 11472760658bSAlexander Motin if (m >= 0) { 11482760658bSAlexander Motin if (zdom->uzd_limin >= m) 11492760658bSAlexander Motin zdom->uzd_limin = m; 11502760658bSAlexander Motin else 11512760658bSAlexander Motin zdom->uzd_limin = (m + zdom->uzd_limin * 255) / 256; 11522760658bSAlexander Motin zdom->uzd_timin++; 11532760658bSAlexander Motin } else { 11542760658bSAlexander Motin zdom->uzd_limin = 0; 11552760658bSAlexander Motin zdom->uzd_timin = 0; 11562760658bSAlexander Motin } 11572760658bSAlexander Motin 11582760658bSAlexander Motin /* To reduce period edge effects on WSS keep half of the imax. */ 11592760658bSAlexander Motin atomic_subtract_long(&zdom->uzd_imax, 11602760658bSAlexander Motin (zdom->uzd_imax - zdom->uzd_nitems + 1) / 2); 11612760658bSAlexander Motin zdom->uzd_imin = zdom->uzd_bimin = zdom->uzd_nitems; 11620f9b7bf3SMark Johnston } 11630f9b7bf3SMark Johnston 11640f9b7bf3SMark Johnston /* 11659643769aSJeff Roberson * Routine to perform timeout driven calculations. This expands the 11669643769aSJeff Roberson * hashes and does per cpu statistics aggregation. 11678355f576SJeff Roberson * 1168e20a199fSJeff Roberson * Returns nothing. 11698355f576SJeff Roberson */ 11708355f576SJeff Roberson static void 117120a4e154SJeff Roberson zone_timeout(uma_zone_t zone, void *unused) 11728355f576SJeff Roberson { 117308034d10SKonstantin Belousov uma_keg_t keg; 11748b987a77SJeff Roberson u_int slabs, pages; 11758355f576SJeff Roberson 117654c5ae80SRyan Libby if ((zone->uz_flags & UMA_ZFLAG_HASH) == 0) 11772760658bSAlexander Motin goto trim; 117808034d10SKonstantin Belousov 117908034d10SKonstantin Belousov keg = zone->uz_keg; 11808b987a77SJeff Roberson 11818b987a77SJeff Roberson /* 11828b987a77SJeff Roberson * Hash zones are non-numa by definition so the first domain 11838b987a77SJeff Roberson * is the only one present. 11848b987a77SJeff Roberson */ 11858b987a77SJeff Roberson KEG_LOCK(keg, 0); 11868b987a77SJeff Roberson pages = keg->uk_domain[0].ud_pages; 11878b987a77SJeff Roberson 11888355f576SJeff Roberson /* 1189e20a199fSJeff Roberson * Expand the keg hash table. 11908355f576SJeff Roberson * 11918355f576SJeff Roberson * This is done if the number of slabs is larger than the hash size. 11928355f576SJeff Roberson * What I'm trying to do here is completely reduce collisions. This 11938355f576SJeff Roberson * may be a little aggressive. Should I allow for two collisions max? 11948355f576SJeff Roberson */ 11958b987a77SJeff Roberson if ((slabs = pages / keg->uk_ppera) > keg->uk_hash.uh_hashsize) { 11960aef6126SJeff Roberson struct uma_hash newhash; 11970aef6126SJeff Roberson struct uma_hash oldhash; 11980aef6126SJeff Roberson int ret; 11995300d9ddSJeff Roberson 12000aef6126SJeff Roberson /* 12010aef6126SJeff Roberson * This is so involved because allocating and freeing 1202e20a199fSJeff Roberson * while the keg lock is held will lead to deadlock. 12030aef6126SJeff Roberson * I have to do everything in stages and check for 12040aef6126SJeff Roberson * races. 12050aef6126SJeff Roberson */ 12068b987a77SJeff Roberson KEG_UNLOCK(keg, 0); 12073b2f2cb8SAlexander Motin ret = hash_alloc(&newhash, 1 << fls(slabs)); 12088b987a77SJeff Roberson KEG_LOCK(keg, 0); 12090aef6126SJeff Roberson if (ret) { 1210099a0e58SBosko Milekic if (hash_expand(&keg->uk_hash, &newhash)) { 1211099a0e58SBosko Milekic oldhash = keg->uk_hash; 1212099a0e58SBosko Milekic keg->uk_hash = newhash; 12130aef6126SJeff Roberson } else 12140aef6126SJeff Roberson oldhash = newhash; 12150aef6126SJeff Roberson 12168b987a77SJeff Roberson KEG_UNLOCK(keg, 0); 12170aef6126SJeff Roberson hash_free(&oldhash); 12182760658bSAlexander Motin goto trim; 12190aef6126SJeff Roberson } 12205300d9ddSJeff Roberson } 12218b987a77SJeff Roberson KEG_UNLOCK(keg, 0); 1222e20a199fSJeff Roberson 12232760658bSAlexander Motin trim: 12242760658bSAlexander Motin /* Trim caches not used for a long time. */ 1225*cf907074SAndrew Gallatin if ((zone->uz_flags & (UMA_ZONE_UNMANAGED | UMA_ZONE_NOTRIM)) == 0) { 12262760658bSAlexander Motin for (int i = 0; i < vm_ndomains; i++) { 12272760658bSAlexander Motin if (bucket_cache_reclaim_domain(zone, false, false, i) && 12282760658bSAlexander Motin (zone->uz_flags & UMA_ZFLAG_CACHE) == 0) 12292760658bSAlexander Motin keg_drain(zone->uz_keg, i); 12302760658bSAlexander Motin } 12318355f576SJeff Roberson } 1232389a3fa6SMark Johnston } 12338355f576SJeff Roberson 12348355f576SJeff Roberson /* 12355300d9ddSJeff Roberson * Allocate and zero fill the next sized hash table from the appropriate 12365300d9ddSJeff Roberson * backing store. 12375300d9ddSJeff Roberson * 12385300d9ddSJeff Roberson * Arguments: 12390aef6126SJeff Roberson * hash A new hash structure with the old hash size in uh_hashsize 12405300d9ddSJeff Roberson * 12415300d9ddSJeff Roberson * Returns: 1242763df3ecSPedro F. Giffuni * 1 on success and 0 on failure. 12435300d9ddSJeff Roberson */ 124437c84183SPoul-Henning Kamp static int 12453b2f2cb8SAlexander Motin hash_alloc(struct uma_hash *hash, u_int size) 12465300d9ddSJeff Roberson { 124759568a0eSAlexander Motin size_t alloc; 12485300d9ddSJeff Roberson 12493b2f2cb8SAlexander Motin KASSERT(powerof2(size), ("hash size must be power of 2")); 12503b2f2cb8SAlexander Motin if (size > UMA_HASH_SIZE_INIT) { 12513b2f2cb8SAlexander Motin hash->uh_hashsize = size; 12520aef6126SJeff Roberson alloc = sizeof(hash->uh_slab_hash[0]) * hash->uh_hashsize; 12531e0701e1SJeff Roberson hash->uh_slab_hash = malloc(alloc, M_UMAHASH, M_NOWAIT); 12545300d9ddSJeff Roberson } else { 12550aef6126SJeff Roberson alloc = sizeof(hash->uh_slab_hash[0]) * UMA_HASH_SIZE_INIT; 1256e20a199fSJeff Roberson hash->uh_slab_hash = zone_alloc_item(hashzone, NULL, 1257ab3185d1SJeff Roberson UMA_ANYDOMAIN, M_WAITOK); 12580aef6126SJeff Roberson hash->uh_hashsize = UMA_HASH_SIZE_INIT; 12595300d9ddSJeff Roberson } 12600aef6126SJeff Roberson if (hash->uh_slab_hash) { 12610aef6126SJeff Roberson bzero(hash->uh_slab_hash, alloc); 12620aef6126SJeff Roberson hash->uh_hashmask = hash->uh_hashsize - 1; 12630aef6126SJeff Roberson return (1); 12640aef6126SJeff Roberson } 12655300d9ddSJeff Roberson 12660aef6126SJeff Roberson return (0); 12675300d9ddSJeff Roberson } 12685300d9ddSJeff Roberson 12695300d9ddSJeff Roberson /* 127064f051e9SJeff Roberson * Expands the hash table for HASH zones. This is done from zone_timeout 127164f051e9SJeff Roberson * to reduce collisions. This must not be done in the regular allocation 127264f051e9SJeff Roberson * path, otherwise, we can recurse on the vm while allocating pages. 12738355f576SJeff Roberson * 12748355f576SJeff Roberson * Arguments: 12750aef6126SJeff Roberson * oldhash The hash you want to expand 12760aef6126SJeff Roberson * newhash The hash structure for the new table 12778355f576SJeff Roberson * 12788355f576SJeff Roberson * Returns: 12798355f576SJeff Roberson * Nothing 12808355f576SJeff Roberson * 12818355f576SJeff Roberson * Discussion: 12828355f576SJeff Roberson */ 12830aef6126SJeff Roberson static int 12840aef6126SJeff Roberson hash_expand(struct uma_hash *oldhash, struct uma_hash *newhash) 12858355f576SJeff Roberson { 12861e0701e1SJeff Roberson uma_hash_slab_t slab; 12876929b7d1SPedro F. Giffuni u_int hval; 12886929b7d1SPedro F. Giffuni u_int idx; 12898355f576SJeff Roberson 12900aef6126SJeff Roberson if (!newhash->uh_slab_hash) 12910aef6126SJeff Roberson return (0); 12928355f576SJeff Roberson 12930aef6126SJeff Roberson if (oldhash->uh_hashsize >= newhash->uh_hashsize) 12940aef6126SJeff Roberson return (0); 12958355f576SJeff Roberson 12968355f576SJeff Roberson /* 12978355f576SJeff Roberson * I need to investigate hash algorithms for resizing without a 12988355f576SJeff Roberson * full rehash. 12998355f576SJeff Roberson */ 13008355f576SJeff Roberson 13016929b7d1SPedro F. Giffuni for (idx = 0; idx < oldhash->uh_hashsize; idx++) 13021e0701e1SJeff Roberson while (!LIST_EMPTY(&oldhash->uh_slab_hash[idx])) { 13031e0701e1SJeff Roberson slab = LIST_FIRST(&oldhash->uh_slab_hash[idx]); 13041e0701e1SJeff Roberson LIST_REMOVE(slab, uhs_hlink); 13051e0701e1SJeff Roberson hval = UMA_HASH(newhash, slab->uhs_data); 13061e0701e1SJeff Roberson LIST_INSERT_HEAD(&newhash->uh_slab_hash[hval], 13071e0701e1SJeff Roberson slab, uhs_hlink); 13088355f576SJeff Roberson } 13098355f576SJeff Roberson 13100aef6126SJeff Roberson return (1); 13119c2cd7e5SJeff Roberson } 13129c2cd7e5SJeff Roberson 13135300d9ddSJeff Roberson /* 13145300d9ddSJeff Roberson * Free the hash bucket to the appropriate backing store. 13155300d9ddSJeff Roberson * 13165300d9ddSJeff Roberson * Arguments: 13175300d9ddSJeff Roberson * slab_hash The hash bucket we're freeing 13185300d9ddSJeff Roberson * hashsize The number of entries in that hash bucket 13195300d9ddSJeff Roberson * 13205300d9ddSJeff Roberson * Returns: 13215300d9ddSJeff Roberson * Nothing 13225300d9ddSJeff Roberson */ 13239c2cd7e5SJeff Roberson static void 13240aef6126SJeff Roberson hash_free(struct uma_hash *hash) 13259c2cd7e5SJeff Roberson { 13260aef6126SJeff Roberson if (hash->uh_slab_hash == NULL) 13270aef6126SJeff Roberson return; 13280aef6126SJeff Roberson if (hash->uh_hashsize == UMA_HASH_SIZE_INIT) 13290095a784SJeff Roberson zone_free_item(hashzone, hash->uh_slab_hash, NULL, SKIP_NONE); 13308355f576SJeff Roberson else 1331961647dfSJeff Roberson free(hash->uh_slab_hash, M_UMAHASH); 13328355f576SJeff Roberson } 13338355f576SJeff Roberson 13348355f576SJeff Roberson /* 13358355f576SJeff Roberson * Frees all outstanding items in a bucket 13368355f576SJeff Roberson * 13378355f576SJeff Roberson * Arguments: 13388355f576SJeff Roberson * zone The zone to free to, must be unlocked. 13394bd61e19SJeff Roberson * bucket The free/alloc bucket with items. 13408355f576SJeff Roberson * 13418355f576SJeff Roberson * Returns: 13428355f576SJeff Roberson * Nothing 13438355f576SJeff Roberson */ 13448355f576SJeff Roberson static void 13458355f576SJeff Roberson bucket_drain(uma_zone_t zone, uma_bucket_t bucket) 13468355f576SJeff Roberson { 13470095a784SJeff Roberson int i; 13488355f576SJeff Roberson 1349c6fd3e23SJeff Roberson if (bucket->ub_cnt == 0) 13508355f576SJeff Roberson return; 13518355f576SJeff Roberson 1352d4665eaaSJeff Roberson if ((zone->uz_flags & UMA_ZONE_SMR) != 0 && 1353d4665eaaSJeff Roberson bucket->ub_seq != SMR_SEQ_INVALID) { 1354d4665eaaSJeff Roberson smr_wait(zone->uz_smr, bucket->ub_seq); 1355543117beSJeff Roberson bucket->ub_seq = SMR_SEQ_INVALID; 1356d4665eaaSJeff Roberson for (i = 0; i < bucket->ub_cnt; i++) 1357d4665eaaSJeff Roberson item_dtor(zone, bucket->ub_bucket[i], 1358d4665eaaSJeff Roberson zone->uz_size, NULL, SKIP_NONE); 1359d4665eaaSJeff Roberson } 13600095a784SJeff Roberson if (zone->uz_fini) 136109c8cb71SMark Johnston for (i = 0; i < bucket->ub_cnt; i++) { 136209c8cb71SMark Johnston kasan_mark_item_valid(zone, bucket->ub_bucket[i]); 13630095a784SJeff Roberson zone->uz_fini(bucket->ub_bucket[i], zone->uz_size); 136409c8cb71SMark Johnston kasan_mark_item_invalid(zone, bucket->ub_bucket[i]); 136509c8cb71SMark Johnston } 13660095a784SJeff Roberson zone->uz_release(zone->uz_arg, bucket->ub_bucket, bucket->ub_cnt); 13674bd61e19SJeff Roberson if (zone->uz_max_items > 0) 13684bd61e19SJeff Roberson zone_free_limit(zone, bucket->ub_cnt); 1369d4665eaaSJeff Roberson #ifdef INVARIANTS 1370d4665eaaSJeff Roberson bzero(bucket->ub_bucket, sizeof(void *) * bucket->ub_cnt); 1371d4665eaaSJeff Roberson #endif 13720095a784SJeff Roberson bucket->ub_cnt = 0; 13738355f576SJeff Roberson } 13748355f576SJeff Roberson 13758355f576SJeff Roberson /* 13768355f576SJeff Roberson * Drains the per cpu caches for a zone. 13778355f576SJeff Roberson * 1378727c6918SJeff Roberson * NOTE: This may only be called while the zone is being torn down, and not 13795d1ae027SRobert Watson * during normal operation. This is necessary in order that we do not have 13805d1ae027SRobert Watson * to migrate CPUs to drain the per-CPU caches. 13815d1ae027SRobert Watson * 13828355f576SJeff Roberson * Arguments: 13838355f576SJeff Roberson * zone The zone to drain, must be unlocked. 13848355f576SJeff Roberson * 13858355f576SJeff Roberson * Returns: 13868355f576SJeff Roberson * Nothing 13878355f576SJeff Roberson */ 13888355f576SJeff Roberson static void 13899643769aSJeff Roberson cache_drain(uma_zone_t zone) 13908355f576SJeff Roberson { 13918355f576SJeff Roberson uma_cache_t cache; 1392376b1ba3SJeff Roberson uma_bucket_t bucket; 1393543117beSJeff Roberson smr_seq_t seq; 13948355f576SJeff Roberson int cpu; 13958355f576SJeff Roberson 13968355f576SJeff Roberson /* 13975d1ae027SRobert Watson * XXX: It is safe to not lock the per-CPU caches, because we're 13985d1ae027SRobert Watson * tearing down the zone anyway. I.e., there will be no further use 13995d1ae027SRobert Watson * of the caches at this point. 14005d1ae027SRobert Watson * 14015d1ae027SRobert Watson * XXX: It would good to be able to assert that the zone is being 14025d1ae027SRobert Watson * torn down to prevent improper use of cache_drain(). 14038355f576SJeff Roberson */ 1404543117beSJeff Roberson seq = SMR_SEQ_INVALID; 1405543117beSJeff Roberson if ((zone->uz_flags & UMA_ZONE_SMR) != 0) 1406226dd6dbSJeff Roberson seq = smr_advance(zone->uz_smr); 14073aa6d94eSJohn Baldwin CPU_FOREACH(cpu) { 14088355f576SJeff Roberson cache = &zone->uz_cpu[cpu]; 1409376b1ba3SJeff Roberson bucket = cache_bucket_unload_alloc(cache); 1410c6fd3e23SJeff Roberson if (bucket != NULL) 1411376b1ba3SJeff Roberson bucket_free(zone, bucket, NULL); 1412376b1ba3SJeff Roberson bucket = cache_bucket_unload_free(cache); 1413376b1ba3SJeff Roberson if (bucket != NULL) { 1414543117beSJeff Roberson bucket->ub_seq = seq; 1415376b1ba3SJeff Roberson bucket_free(zone, bucket, NULL); 1416376b1ba3SJeff Roberson } 1417376b1ba3SJeff Roberson bucket = cache_bucket_unload_cross(cache); 1418376b1ba3SJeff Roberson if (bucket != NULL) { 1419543117beSJeff Roberson bucket->ub_seq = seq; 1420376b1ba3SJeff Roberson bucket_free(zone, bucket, NULL); 1421376b1ba3SJeff Roberson } 1422d56368d7SBosko Milekic } 1423aabe13f1SMark Johnston bucket_cache_reclaim(zone, true, UMA_ANYDOMAIN); 1424aaa8bb16SJeff Roberson } 1425aaa8bb16SJeff Roberson 1426a2de44abSAlexander Motin static void 142720a4e154SJeff Roberson cache_shrink(uma_zone_t zone, void *unused) 1428a2de44abSAlexander Motin { 1429a2de44abSAlexander Motin 1430a2de44abSAlexander Motin if (zone->uz_flags & UMA_ZFLAG_INTERNAL) 1431a2de44abSAlexander Motin return; 1432a2de44abSAlexander Motin 1433aabe13f1SMark Johnston ZONE_LOCK(zone); 143420a4e154SJeff Roberson zone->uz_bucket_size = 143520a4e154SJeff Roberson (zone->uz_bucket_size_min + zone->uz_bucket_size) / 2; 1436aabe13f1SMark Johnston ZONE_UNLOCK(zone); 1437a2de44abSAlexander Motin } 1438a2de44abSAlexander Motin 1439a2de44abSAlexander Motin static void 144020a4e154SJeff Roberson cache_drain_safe_cpu(uma_zone_t zone, void *unused) 1441a2de44abSAlexander Motin { 1442a2de44abSAlexander Motin uma_cache_t cache; 1443c1685086SJeff Roberson uma_bucket_t b1, b2, b3; 1444ab3185d1SJeff Roberson int domain; 1445a2de44abSAlexander Motin 1446a2de44abSAlexander Motin if (zone->uz_flags & UMA_ZFLAG_INTERNAL) 1447a2de44abSAlexander Motin return; 1448a2de44abSAlexander Motin 1449c1685086SJeff Roberson b1 = b2 = b3 = NULL; 1450a2de44abSAlexander Motin critical_enter(); 1451a2de44abSAlexander Motin cache = &zone->uz_cpu[curcpu]; 1452c6fd3e23SJeff Roberson domain = PCPU_GET(domain); 1453376b1ba3SJeff Roberson b1 = cache_bucket_unload_alloc(cache); 1454d4665eaaSJeff Roberson 1455d4665eaaSJeff Roberson /* 1456d4665eaaSJeff Roberson * Don't flush SMR zone buckets. This leaves the zone without a 1457d4665eaaSJeff Roberson * bucket and forces every free to synchronize(). 1458d4665eaaSJeff Roberson */ 1459543117beSJeff Roberson if ((zone->uz_flags & UMA_ZONE_SMR) == 0) { 1460376b1ba3SJeff Roberson b2 = cache_bucket_unload_free(cache); 1461543117beSJeff Roberson b3 = cache_bucket_unload_cross(cache); 1462543117beSJeff Roberson } 1463543117beSJeff Roberson critical_exit(); 1464543117beSJeff Roberson 1465543117beSJeff Roberson if (b1 != NULL) 1466c6fd3e23SJeff Roberson zone_free_bucket(zone, b1, NULL, domain, false); 1467543117beSJeff Roberson if (b2 != NULL) 1468c6fd3e23SJeff Roberson zone_free_bucket(zone, b2, NULL, domain, false); 1469543117beSJeff Roberson if (b3 != NULL) { 1470c6fd3e23SJeff Roberson /* Adjust the domain so it goes to zone_free_cross. */ 1471c6fd3e23SJeff Roberson domain = (domain + 1) % vm_ndomains; 1472c6fd3e23SJeff Roberson zone_free_bucket(zone, b3, NULL, domain, false); 1473c1685086SJeff Roberson } 1474a2de44abSAlexander Motin } 1475a2de44abSAlexander Motin 1476a2de44abSAlexander Motin /* 1477a2de44abSAlexander Motin * Safely drain per-CPU caches of a zone(s) to alloc bucket. 1478a2de44abSAlexander Motin * This is an expensive call because it needs to bind to all CPUs 1479a2de44abSAlexander Motin * one by one and enter a critical section on each of them in order 1480a2de44abSAlexander Motin * to safely access their cache buckets. 1481a2de44abSAlexander Motin * Zone lock must not be held on call this function. 1482a2de44abSAlexander Motin */ 1483a2de44abSAlexander Motin static void 148408cfa56eSMark Johnston pcpu_cache_drain_safe(uma_zone_t zone) 1485a2de44abSAlexander Motin { 1486a2de44abSAlexander Motin int cpu; 1487a2de44abSAlexander Motin 1488a2de44abSAlexander Motin /* 1489727c6918SJeff Roberson * Polite bucket sizes shrinking was not enough, shrink aggressively. 1490a2de44abSAlexander Motin */ 1491a2de44abSAlexander Motin if (zone) 149220a4e154SJeff Roberson cache_shrink(zone, NULL); 1493a2de44abSAlexander Motin else 149420a4e154SJeff Roberson zone_foreach(cache_shrink, NULL); 1495a2de44abSAlexander Motin 1496a2de44abSAlexander Motin CPU_FOREACH(cpu) { 1497a2de44abSAlexander Motin thread_lock(curthread); 1498a2de44abSAlexander Motin sched_bind(curthread, cpu); 1499a2de44abSAlexander Motin thread_unlock(curthread); 1500a2de44abSAlexander Motin 1501a2de44abSAlexander Motin if (zone) 150220a4e154SJeff Roberson cache_drain_safe_cpu(zone, NULL); 1503a2de44abSAlexander Motin else 150420a4e154SJeff Roberson zone_foreach(cache_drain_safe_cpu, NULL); 1505a2de44abSAlexander Motin } 1506a2de44abSAlexander Motin thread_lock(curthread); 1507a2de44abSAlexander Motin sched_unbind(curthread); 1508a2de44abSAlexander Motin thread_unlock(curthread); 1509a2de44abSAlexander Motin } 1510a2de44abSAlexander Motin 1511aaa8bb16SJeff Roberson /* 151208cfa56eSMark Johnston * Reclaim cached buckets from a zone. All buckets are reclaimed if the caller 151308cfa56eSMark Johnston * requested a drain, otherwise the per-domain caches are trimmed to either 151408cfa56eSMark Johnston * estimated working set size. 1515aaa8bb16SJeff Roberson */ 15162760658bSAlexander Motin static bool 15172760658bSAlexander Motin bucket_cache_reclaim_domain(uma_zone_t zone, bool drain, bool trim, int domain) 1518aaa8bb16SJeff Roberson { 1519ab3185d1SJeff Roberson uma_zone_domain_t zdom; 1520aaa8bb16SJeff Roberson uma_bucket_t bucket; 1521c6fd3e23SJeff Roberson long target; 15222760658bSAlexander Motin bool done = false; 15238355f576SJeff Roberson 1524c6fd3e23SJeff Roberson /* 152591d947bfSJeff Roberson * The cross bucket is partially filled and not part of 152691d947bfSJeff Roberson * the item count. Reclaim it individually here. 152791d947bfSJeff Roberson */ 152854f421f9SMark Johnston zdom = ZDOM_GET(zone, domain); 1529226dd6dbSJeff Roberson if ((zone->uz_flags & UMA_ZONE_SMR) == 0 || drain) { 153091d947bfSJeff Roberson ZONE_CROSS_LOCK(zone); 153191d947bfSJeff Roberson bucket = zdom->uzd_cross; 153291d947bfSJeff Roberson zdom->uzd_cross = NULL; 153391d947bfSJeff Roberson ZONE_CROSS_UNLOCK(zone); 1534c6fd3e23SJeff Roberson if (bucket != NULL) 153591d947bfSJeff Roberson bucket_free(zone, bucket, NULL); 153691d947bfSJeff Roberson } 153791d947bfSJeff Roberson 153891d947bfSJeff Roberson /* 153908cfa56eSMark Johnston * If we were asked to drain the zone, we are done only once 15402760658bSAlexander Motin * this bucket cache is empty. If trim, we reclaim items in 15412760658bSAlexander Motin * excess of the zone's estimated working set size. Multiple 15422760658bSAlexander Motin * consecutive calls will shrink the WSS and so reclaim more. 15432760658bSAlexander Motin * If neither drain nor trim, then voluntarily reclaim 1/4 15442760658bSAlexander Motin * (to reduce first spike) of items not used for a long time. 154508cfa56eSMark Johnston */ 1546c6fd3e23SJeff Roberson ZDOM_LOCK(zdom); 15472760658bSAlexander Motin zone_domain_update_wss(zdom); 15482760658bSAlexander Motin if (drain) 15492760658bSAlexander Motin target = 0; 15502760658bSAlexander Motin else if (trim) 15512760658bSAlexander Motin target = zdom->uzd_wss; 15522760658bSAlexander Motin else if (zdom->uzd_timin > 900 / UMA_TIMEOUT) 15532760658bSAlexander Motin target = zdom->uzd_nitems - zdom->uzd_limin / 4; 15542760658bSAlexander Motin else { 15552760658bSAlexander Motin ZDOM_UNLOCK(zdom); 15562760658bSAlexander Motin return (done); 15572760658bSAlexander Motin } 15582760658bSAlexander Motin while ((bucket = STAILQ_FIRST(&zdom->uzd_buckets)) != NULL && 15592760658bSAlexander Motin zdom->uzd_nitems >= target + bucket->ub_cnt) { 1560c6fd3e23SJeff Roberson bucket = zone_fetch_bucket(zone, zdom, true); 156108cfa56eSMark Johnston if (bucket == NULL) 156208cfa56eSMark Johnston break; 15636fd34d6fSJeff Roberson bucket_free(zone, bucket, NULL); 15642760658bSAlexander Motin done = true; 1565c6fd3e23SJeff Roberson ZDOM_LOCK(zdom); 15668355f576SJeff Roberson } 1567c6fd3e23SJeff Roberson ZDOM_UNLOCK(zdom); 15682760658bSAlexander Motin return (done); 1569ab3185d1SJeff Roberson } 157054f421f9SMark Johnston 157154f421f9SMark Johnston static void 1572aabe13f1SMark Johnston bucket_cache_reclaim(uma_zone_t zone, bool drain, int domain) 157354f421f9SMark Johnston { 157454f421f9SMark Johnston int i; 157554f421f9SMark Johnston 157654f421f9SMark Johnston /* 157754f421f9SMark Johnston * Shrink the zone bucket size to ensure that the per-CPU caches 157854f421f9SMark Johnston * don't grow too large. 157954f421f9SMark Johnston */ 158054f421f9SMark Johnston if (zone->uz_bucket_size > zone->uz_bucket_size_min) 158154f421f9SMark Johnston zone->uz_bucket_size--; 158254f421f9SMark Johnston 1583aabe13f1SMark Johnston if (domain != UMA_ANYDOMAIN && 1584aabe13f1SMark Johnston (zone->uz_flags & UMA_ZONE_ROUNDROBIN) == 0) { 15852760658bSAlexander Motin bucket_cache_reclaim_domain(zone, drain, true, domain); 1586aabe13f1SMark Johnston } else { 158754f421f9SMark Johnston for (i = 0; i < vm_ndomains; i++) 15882760658bSAlexander Motin bucket_cache_reclaim_domain(zone, drain, true, i); 15898355f576SJeff Roberson } 1590aabe13f1SMark Johnston } 1591fc03d22bSJeff Roberson 1592fc03d22bSJeff Roberson static void 1593fc03d22bSJeff Roberson keg_free_slab(uma_keg_t keg, uma_slab_t slab, int start) 1594fc03d22bSJeff Roberson { 1595fc03d22bSJeff Roberson uint8_t *mem; 159609c8cb71SMark Johnston size_t size; 1597fc03d22bSJeff Roberson int i; 1598fc03d22bSJeff Roberson uint8_t flags; 1599fc03d22bSJeff Roberson 16001431a748SGleb Smirnoff CTR4(KTR_UMA, "keg_free_slab keg %s(%p) slab %p, returning %d bytes", 16011431a748SGleb Smirnoff keg->uk_name, keg, slab, PAGE_SIZE * keg->uk_ppera); 16021431a748SGleb Smirnoff 16031e0701e1SJeff Roberson mem = slab_data(slab, keg); 160409c8cb71SMark Johnston size = PAGE_SIZE * keg->uk_ppera; 160509c8cb71SMark Johnston 160609c8cb71SMark Johnston kasan_mark_slab_valid(keg, mem); 1607fc03d22bSJeff Roberson if (keg->uk_fini != NULL) { 160809c8cb71SMark Johnston for (i = start - 1; i > -1; i--) 1609c5deaf04SGleb Smirnoff #ifdef INVARIANTS 1610c5deaf04SGleb Smirnoff /* 1611c5deaf04SGleb Smirnoff * trash_fini implies that dtor was trash_dtor. trash_fini 1612c5deaf04SGleb Smirnoff * would check that memory hasn't been modified since free, 1613c5deaf04SGleb Smirnoff * which executed trash_dtor. 1614c5deaf04SGleb Smirnoff * That's why we need to run uma_dbg_kskip() check here, 1615c5deaf04SGleb Smirnoff * albeit we don't make skip check for other init/fini 1616c5deaf04SGleb Smirnoff * invocations. 1617c5deaf04SGleb Smirnoff */ 16181e0701e1SJeff Roberson if (!uma_dbg_kskip(keg, slab_item(slab, keg, i)) || 1619c5deaf04SGleb Smirnoff keg->uk_fini != trash_fini) 1620c5deaf04SGleb Smirnoff #endif 16211e0701e1SJeff Roberson keg->uk_fini(slab_item(slab, keg, i), keg->uk_size); 1622fc03d22bSJeff Roberson } 162309c8cb71SMark Johnston flags = slab->us_flags; 162409c8cb71SMark Johnston if (keg->uk_flags & UMA_ZFLAG_OFFPAGE) { 16259b8db4d0SRyan Libby zone_free_item(slabzone(keg->uk_ipers), slab_tohashslab(slab), 16269b8db4d0SRyan Libby NULL, SKIP_NONE); 162709c8cb71SMark Johnston } 162809c8cb71SMark Johnston keg->uk_freef(mem, size, flags); 162909c8cb71SMark Johnston uma_total_dec(size); 16308355f576SJeff Roberson } 16318355f576SJeff Roberson 1632f09cbea3SMark Johnston static void 1633f09cbea3SMark Johnston keg_drain_domain(uma_keg_t keg, int domain) 1634f09cbea3SMark Johnston { 1635f09cbea3SMark Johnston struct slabhead freeslabs; 1636f09cbea3SMark Johnston uma_domain_t dom; 1637f09cbea3SMark Johnston uma_slab_t slab, tmp; 1638f09cbea3SMark Johnston uint32_t i, stofree, stokeep, partial; 1639f09cbea3SMark Johnston 1640f09cbea3SMark Johnston dom = &keg->uk_domain[domain]; 1641f09cbea3SMark Johnston LIST_INIT(&freeslabs); 1642f09cbea3SMark Johnston 1643f09cbea3SMark Johnston CTR4(KTR_UMA, "keg_drain %s(%p) domain %d free items: %u", 1644575a4437SEd Maste keg->uk_name, keg, domain, dom->ud_free_items); 1645f09cbea3SMark Johnston 1646f09cbea3SMark Johnston KEG_LOCK(keg, domain); 1647f09cbea3SMark Johnston 1648f09cbea3SMark Johnston /* 1649f09cbea3SMark Johnston * Are the free items in partially allocated slabs sufficient to meet 1650f09cbea3SMark Johnston * the reserve? If not, compute the number of fully free slabs that must 1651f09cbea3SMark Johnston * be kept. 1652f09cbea3SMark Johnston */ 1653f09cbea3SMark Johnston partial = dom->ud_free_items - dom->ud_free_slabs * keg->uk_ipers; 1654f09cbea3SMark Johnston if (partial < keg->uk_reserve) { 1655f09cbea3SMark Johnston stokeep = min(dom->ud_free_slabs, 1656f09cbea3SMark Johnston howmany(keg->uk_reserve - partial, keg->uk_ipers)); 1657f09cbea3SMark Johnston } else { 1658f09cbea3SMark Johnston stokeep = 0; 1659f09cbea3SMark Johnston } 1660f09cbea3SMark Johnston stofree = dom->ud_free_slabs - stokeep; 1661f09cbea3SMark Johnston 1662f09cbea3SMark Johnston /* 1663f09cbea3SMark Johnston * Partition the free slabs into two sets: those that must be kept in 1664f09cbea3SMark Johnston * order to maintain the reserve, and those that may be released back to 1665f09cbea3SMark Johnston * the system. Since one set may be much larger than the other, 1666f09cbea3SMark Johnston * populate the smaller of the two sets and swap them if necessary. 1667f09cbea3SMark Johnston */ 1668f09cbea3SMark Johnston for (i = min(stofree, stokeep); i > 0; i--) { 1669f09cbea3SMark Johnston slab = LIST_FIRST(&dom->ud_free_slab); 1670f09cbea3SMark Johnston LIST_REMOVE(slab, us_link); 1671f09cbea3SMark Johnston LIST_INSERT_HEAD(&freeslabs, slab, us_link); 1672f09cbea3SMark Johnston } 1673f09cbea3SMark Johnston if (stofree > stokeep) 1674f09cbea3SMark Johnston LIST_SWAP(&freeslabs, &dom->ud_free_slab, uma_slab, us_link); 1675f09cbea3SMark Johnston 1676f09cbea3SMark Johnston if ((keg->uk_flags & UMA_ZFLAG_HASH) != 0) { 1677f09cbea3SMark Johnston LIST_FOREACH(slab, &freeslabs, us_link) 1678f09cbea3SMark Johnston UMA_HASH_REMOVE(&keg->uk_hash, slab); 1679f09cbea3SMark Johnston } 1680f09cbea3SMark Johnston dom->ud_free_items -= stofree * keg->uk_ipers; 1681f09cbea3SMark Johnston dom->ud_free_slabs -= stofree; 1682f09cbea3SMark Johnston dom->ud_pages -= stofree * keg->uk_ppera; 1683f09cbea3SMark Johnston KEG_UNLOCK(keg, domain); 1684f09cbea3SMark Johnston 1685f09cbea3SMark Johnston LIST_FOREACH_SAFE(slab, &freeslabs, us_link, tmp) 1686f09cbea3SMark Johnston keg_free_slab(keg, slab, keg->uk_ipers); 1687f09cbea3SMark Johnston } 1688f09cbea3SMark Johnston 16898355f576SJeff Roberson /* 1690e20a199fSJeff Roberson * Frees pages from a keg back to the system. This is done on demand from 16918355f576SJeff Roberson * the pageout daemon. 16928355f576SJeff Roberson * 1693e20a199fSJeff Roberson * Returns nothing. 16948355f576SJeff Roberson */ 1695e20a199fSJeff Roberson static void 1696aabe13f1SMark Johnston keg_drain(uma_keg_t keg, int domain) 16978355f576SJeff Roberson { 1698f09cbea3SMark Johnston int i; 16998355f576SJeff Roberson 1700f09cbea3SMark Johnston if ((keg->uk_flags & UMA_ZONE_NOFREE) != 0) 17018355f576SJeff Roberson return; 1702aabe13f1SMark Johnston if (domain != UMA_ANYDOMAIN) { 1703aabe13f1SMark Johnston keg_drain_domain(keg, domain); 1704aabe13f1SMark Johnston } else { 1705f09cbea3SMark Johnston for (i = 0; i < vm_ndomains; i++) 1706f09cbea3SMark Johnston keg_drain_domain(keg, i); 17078355f576SJeff Roberson } 1708aabe13f1SMark Johnston } 17098355f576SJeff Roberson 1710e20a199fSJeff Roberson static void 1711aabe13f1SMark Johnston zone_reclaim(uma_zone_t zone, int domain, int waitok, bool drain) 1712e20a199fSJeff Roberson { 17138355f576SJeff Roberson /* 1714aabe13f1SMark Johnston * Count active reclaim operations in order to interlock with 1715aabe13f1SMark Johnston * zone_dtor(), which removes the zone from global lists before 1716aabe13f1SMark Johnston * attempting to reclaim items itself. 1717aabe13f1SMark Johnston * 1718aabe13f1SMark Johnston * The zone may be destroyed while sleeping, so only zone_dtor() should 1719aabe13f1SMark Johnston * specify M_WAITOK. 1720e20a199fSJeff Roberson */ 1721e20a199fSJeff Roberson ZONE_LOCK(zone); 1722aabe13f1SMark Johnston if (waitok == M_WAITOK) { 1723aabe13f1SMark Johnston while (zone->uz_reclaimers > 0) 1724aabe13f1SMark Johnston msleep(zone, ZONE_LOCKPTR(zone), PVM, "zonedrain", 1); 1725e20a199fSJeff Roberson } 1726aabe13f1SMark Johnston zone->uz_reclaimers++; 1727e20a199fSJeff Roberson ZONE_UNLOCK(zone); 1728aabe13f1SMark Johnston bucket_cache_reclaim(zone, drain, domain); 172908cfa56eSMark Johnston 173008034d10SKonstantin Belousov if ((zone->uz_flags & UMA_ZFLAG_CACHE) == 0) 1731aabe13f1SMark Johnston keg_drain(zone->uz_keg, domain); 1732e20a199fSJeff Roberson ZONE_LOCK(zone); 1733aabe13f1SMark Johnston zone->uz_reclaimers--; 1734aabe13f1SMark Johnston if (zone->uz_reclaimers == 0) 1735e20a199fSJeff Roberson wakeup(zone); 1736e20a199fSJeff Roberson ZONE_UNLOCK(zone); 1737e20a199fSJeff Roberson } 1738e20a199fSJeff Roberson 1739e20a199fSJeff Roberson /* 17408b987a77SJeff Roberson * Allocate a new slab for a keg and inserts it into the partial slab list. 17418b987a77SJeff Roberson * The keg should be unlocked on entry. If the allocation succeeds it will 17428b987a77SJeff Roberson * be locked on return. 17438355f576SJeff Roberson * 17448355f576SJeff Roberson * Arguments: 174586220393SMark Johnston * flags Wait flags for the item initialization routine 174686220393SMark Johnston * aflags Wait flags for the slab allocation 17478355f576SJeff Roberson * 17488355f576SJeff Roberson * Returns: 17498355f576SJeff Roberson * The slab that was allocated or NULL if there is no memory and the 17508355f576SJeff Roberson * caller specified M_NOWAIT. 17518355f576SJeff Roberson */ 17528355f576SJeff Roberson static uma_slab_t 175386220393SMark Johnston keg_alloc_slab(uma_keg_t keg, uma_zone_t zone, int domain, int flags, 175486220393SMark Johnston int aflags) 17558355f576SJeff Roberson { 17568b987a77SJeff Roberson uma_domain_t dom; 1757099a0e58SBosko Milekic uma_slab_t slab; 17582e47807cSJeff Roberson unsigned long size; 175985dcf349SGleb Smirnoff uint8_t *mem; 176086220393SMark Johnston uint8_t sflags; 17618355f576SJeff Roberson int i; 17628355f576SJeff Roberson 1763b9fd884aSColin Percival TSENTER(); 1764b9fd884aSColin Percival 1765ab3185d1SJeff Roberson KASSERT(domain >= 0 && domain < vm_ndomains, 1766ab3185d1SJeff Roberson ("keg_alloc_slab: domain %d out of range", domain)); 1767a553d4b8SJeff Roberson 1768194a979eSMark Johnston slab = NULL; 1769194a979eSMark Johnston mem = NULL; 177054c5ae80SRyan Libby if (keg->uk_flags & UMA_ZFLAG_OFFPAGE) { 17719b8db4d0SRyan Libby uma_hash_slab_t hslab; 17729b8db4d0SRyan Libby hslab = zone_alloc_item(slabzone(keg->uk_ipers), NULL, 17739b8db4d0SRyan Libby domain, aflags); 17749b8db4d0SRyan Libby if (hslab == NULL) 1775727c6918SJeff Roberson goto fail; 17769b8db4d0SRyan Libby slab = &hslab->uhs_slab; 1777a553d4b8SJeff Roberson } 1778a553d4b8SJeff Roberson 17793370c5bfSJeff Roberson /* 17803370c5bfSJeff Roberson * This reproduces the old vm_zone behavior of zero filling pages the 17813370c5bfSJeff Roberson * first time they are added to a zone. 17823370c5bfSJeff Roberson * 17833370c5bfSJeff Roberson * Malloced items are zeroed in uma_zalloc. 17843370c5bfSJeff Roberson */ 17853370c5bfSJeff Roberson 1786099a0e58SBosko Milekic if ((keg->uk_flags & UMA_ZONE_MALLOC) == 0) 178786220393SMark Johnston aflags |= M_ZERO; 17883370c5bfSJeff Roberson else 178986220393SMark Johnston aflags &= ~M_ZERO; 17903370c5bfSJeff Roberson 1791263811f7SKip Macy if (keg->uk_flags & UMA_ZONE_NODUMP) 179286220393SMark Johnston aflags |= M_NODUMP; 1793263811f7SKip Macy 179478f3e0f6SBojan Novković if (keg->uk_flags & UMA_ZONE_NOFREE) 179578f3e0f6SBojan Novković aflags |= M_NEVERFREED; 179678f3e0f6SBojan Novković 1797e20a199fSJeff Roberson /* zone is passed for legacy reasons. */ 1798194a979eSMark Johnston size = keg->uk_ppera * PAGE_SIZE; 179909c8cb71SMark Johnston mem = keg->uk_allocf(zone, size, domain, &sflags, aflags); 1800a553d4b8SJeff Roberson if (mem == NULL) { 180154c5ae80SRyan Libby if (keg->uk_flags & UMA_ZFLAG_OFFPAGE) 18029b8db4d0SRyan Libby zone_free_item(slabzone(keg->uk_ipers), 18039b8db4d0SRyan Libby slab_tohashslab(slab), NULL, SKIP_NONE); 1804727c6918SJeff Roberson goto fail; 1805a553d4b8SJeff Roberson } 18062e47807cSJeff Roberson uma_total_inc(size); 18078355f576SJeff Roberson 18088b987a77SJeff Roberson /* For HASH zones all pages go to the same uma_domain. */ 180954c5ae80SRyan Libby if ((keg->uk_flags & UMA_ZFLAG_HASH) != 0) 18108b987a77SJeff Roberson domain = 0; 18118b987a77SJeff Roberson 1812a932a5a6SMark Johnston kmsan_mark(mem, size, 1813a932a5a6SMark Johnston (aflags & M_ZERO) != 0 ? KMSAN_STATE_INITED : KMSAN_STATE_UNINIT); 1814a932a5a6SMark Johnston 18155c0e403bSJeff Roberson /* Point the slab into the allocated memory */ 181654c5ae80SRyan Libby if (!(keg->uk_flags & UMA_ZFLAG_OFFPAGE)) 1817099a0e58SBosko Milekic slab = (uma_slab_t)(mem + keg->uk_pgoff); 18181e0701e1SJeff Roberson else 18199b8db4d0SRyan Libby slab_tohashslab(slab)->uhs_data = mem; 18205c0e403bSJeff Roberson 182154c5ae80SRyan Libby if (keg->uk_flags & UMA_ZFLAG_VTOSLAB) 1822099a0e58SBosko Milekic for (i = 0; i < keg->uk_ppera; i++) 1823584061b4SJeff Roberson vsetzoneslab((vm_offset_t)mem + (i * PAGE_SIZE), 1824584061b4SJeff Roberson zone, slab); 18258355f576SJeff Roberson 1826099a0e58SBosko Milekic slab->us_freecount = keg->uk_ipers; 182786220393SMark Johnston slab->us_flags = sflags; 1828ab3185d1SJeff Roberson slab->us_domain = domain; 18298b987a77SJeff Roberson 18309b78b1f4SJeff Roberson BIT_FILL(keg->uk_ipers, &slab->us_free); 1831ef72505eSJeff Roberson #ifdef INVARIANTS 1832815db204SRyan Libby BIT_ZERO(keg->uk_ipers, slab_dbg_bits(slab, keg)); 1833ef72505eSJeff Roberson #endif 1834099a0e58SBosko Milekic 1835b23f72e9SBrian Feldman if (keg->uk_init != NULL) { 1836099a0e58SBosko Milekic for (i = 0; i < keg->uk_ipers; i++) 18371e0701e1SJeff Roberson if (keg->uk_init(slab_item(slab, keg, i), 183886220393SMark Johnston keg->uk_size, flags) != 0) 1839b23f72e9SBrian Feldman break; 1840b23f72e9SBrian Feldman if (i != keg->uk_ipers) { 1841fc03d22bSJeff Roberson keg_free_slab(keg, slab, i); 1842727c6918SJeff Roberson goto fail; 1843b23f72e9SBrian Feldman } 1844b23f72e9SBrian Feldman } 184509c8cb71SMark Johnston kasan_mark_slab_invalid(keg, mem); 18468b987a77SJeff Roberson KEG_LOCK(keg, domain); 18475c0e403bSJeff Roberson 18481431a748SGleb Smirnoff CTR3(KTR_UMA, "keg_alloc_slab: allocated slab %p for %s(%p)", 18491431a748SGleb Smirnoff slab, keg->uk_name, keg); 18501431a748SGleb Smirnoff 185154c5ae80SRyan Libby if (keg->uk_flags & UMA_ZFLAG_HASH) 1852099a0e58SBosko Milekic UMA_HASH_INSERT(&keg->uk_hash, slab, mem); 18538355f576SJeff Roberson 18548b987a77SJeff Roberson /* 18558b987a77SJeff Roberson * If we got a slab here it's safe to mark it partially used 18568b987a77SJeff Roberson * and return. We assume that the caller is going to remove 18578b987a77SJeff Roberson * at least one item. 18588b987a77SJeff Roberson */ 18598b987a77SJeff Roberson dom = &keg->uk_domain[domain]; 18608b987a77SJeff Roberson LIST_INSERT_HEAD(&dom->ud_part_slab, slab, us_link); 18618b987a77SJeff Roberson dom->ud_pages += keg->uk_ppera; 18624ab3aee8SMark Johnston dom->ud_free_items += keg->uk_ipers; 18638355f576SJeff Roberson 1864b9fd884aSColin Percival TSEXIT(); 18658355f576SJeff Roberson return (slab); 1866727c6918SJeff Roberson 1867727c6918SJeff Roberson fail: 1868727c6918SJeff Roberson return (NULL); 18698355f576SJeff Roberson } 18708355f576SJeff Roberson 18718355f576SJeff Roberson /* 1872537f92cdSMark Johnston * This function is intended to be used early on in place of page_alloc(). It 1873537f92cdSMark Johnston * performs contiguous physical memory allocations and uses a bump allocator for 1874537f92cdSMark Johnston * KVA, so is usable before the kernel map is initialized. 1875009b6fcbSJeff Roberson */ 1876009b6fcbSJeff Roberson static void * 1877ab3185d1SJeff Roberson startup_alloc(uma_zone_t zone, vm_size_t bytes, int domain, uint8_t *pflag, 1878ab3185d1SJeff Roberson int wait) 1879009b6fcbSJeff Roberson { 1880a81c400eSJeff Roberson vm_paddr_t pa; 1881a81c400eSJeff Roberson vm_page_t m; 188284c39222SMark Johnston int i, pages; 1883099a0e58SBosko Milekic 1884f7d35785SGleb Smirnoff pages = howmany(bytes, PAGE_SIZE); 1885f7d35785SGleb Smirnoff KASSERT(pages > 0, ("%s can't reserve 0 pages", __func__)); 1886a81c400eSJeff Roberson 1887f7d35785SGleb Smirnoff *pflag = UMA_SLAB_BOOT; 188884c39222SMark Johnston m = vm_page_alloc_noobj_contig_domain(domain, malloc2vm_flags(wait) | 188984c39222SMark Johnston VM_ALLOC_WIRED, pages, (vm_paddr_t)0, ~(vm_paddr_t)0, 1, 0, 189084c39222SMark Johnston VM_MEMATTR_DEFAULT); 1891a81c400eSJeff Roberson if (m == NULL) 1892a81c400eSJeff Roberson return (NULL); 1893a81c400eSJeff Roberson 1894a81c400eSJeff Roberson pa = VM_PAGE_TO_PHYS(m); 1895a81c400eSJeff Roberson for (i = 0; i < pages; i++, pa += PAGE_SIZE) { 18960a44b8a5SBojan Novković #if MINIDUMP_PAGE_TRACKING && MINIDUMP_STARTUP_PAGE_TRACKING 1897a81c400eSJeff Roberson if ((wait & M_NODUMP) == 0) 1898a81c400eSJeff Roberson dump_add_page(pa); 1899a81c400eSJeff Roberson #endif 1900a81c400eSJeff Roberson } 1901f7d35785SGleb Smirnoff 190284c39222SMark Johnston /* Allocate KVA and indirectly advance bootmem. */ 190384c39222SMark Johnston return ((void *)pmap_map(&bootmem, m->phys_addr, 190484c39222SMark Johnston m->phys_addr + (pages * PAGE_SIZE), VM_PROT_READ | VM_PROT_WRITE)); 1905f7d35785SGleb Smirnoff } 1906f7d35785SGleb Smirnoff 1907a81c400eSJeff Roberson static void 1908a81c400eSJeff Roberson startup_free(void *mem, vm_size_t bytes) 1909a81c400eSJeff Roberson { 1910a81c400eSJeff Roberson vm_offset_t va; 1911a81c400eSJeff Roberson vm_page_t m; 1912a81c400eSJeff Roberson 1913a81c400eSJeff Roberson va = (vm_offset_t)mem; 1914a81c400eSJeff Roberson m = PHYS_TO_VM_PAGE(pmap_kextract(va)); 1915663de81fSMark Johnston 1916663de81fSMark Johnston /* 1917663de81fSMark Johnston * startup_alloc() returns direct-mapped slabs on some platforms. Avoid 1918663de81fSMark Johnston * unmapping ranges of the direct map. 1919663de81fSMark Johnston */ 1920663de81fSMark Johnston if (va >= bootstart && va + bytes <= bootmem) 1921a81c400eSJeff Roberson pmap_remove(kernel_pmap, va, va + bytes); 1922a81c400eSJeff Roberson for (; bytes != 0; bytes -= PAGE_SIZE, m++) { 19230a44b8a5SBojan Novković #if MINIDUMP_PAGE_TRACKING && MINIDUMP_STARTUP_PAGE_TRACKING 1924a81c400eSJeff Roberson dump_drop_page(VM_PAGE_TO_PHYS(m)); 1925a81c400eSJeff Roberson #endif 1926a81c400eSJeff Roberson vm_page_unwire_noq(m); 1927a81c400eSJeff Roberson vm_page_free(m); 1928a81c400eSJeff Roberson } 1929a81c400eSJeff Roberson } 1930a81c400eSJeff Roberson 1931f7d35785SGleb Smirnoff /* 19328355f576SJeff Roberson * Allocates a number of pages from the system 19338355f576SJeff Roberson * 19348355f576SJeff Roberson * Arguments: 19358355f576SJeff Roberson * bytes The number of bytes requested 19368355f576SJeff Roberson * wait Shall we wait? 19378355f576SJeff Roberson * 19388355f576SJeff Roberson * Returns: 19398355f576SJeff Roberson * A pointer to the alloced memory or possibly 19408355f576SJeff Roberson * NULL if M_NOWAIT is set. 19418355f576SJeff Roberson */ 19428355f576SJeff Roberson static void * 1943ab3185d1SJeff Roberson page_alloc(uma_zone_t zone, vm_size_t bytes, int domain, uint8_t *pflag, 1944ab3185d1SJeff Roberson int wait) 19458355f576SJeff Roberson { 19468355f576SJeff Roberson void *p; /* Returned page */ 19478355f576SJeff Roberson 19482e47807cSJeff Roberson *pflag = UMA_SLAB_KERNEL; 1949f49fd63aSJohn Baldwin p = kmem_malloc_domainset(DOMAINSET_FIXED(domain), bytes, wait); 19508355f576SJeff Roberson 19518355f576SJeff Roberson return (p); 19528355f576SJeff Roberson } 19538355f576SJeff Roberson 1954ab3059a8SMatt Macy static void * 1955ab3059a8SMatt Macy pcpu_page_alloc(uma_zone_t zone, vm_size_t bytes, int domain, uint8_t *pflag, 1956ab3059a8SMatt Macy int wait) 1957ab3059a8SMatt Macy { 1958ab3059a8SMatt Macy struct pglist alloctail; 1959ab3059a8SMatt Macy vm_offset_t addr, zkva; 1960ab3059a8SMatt Macy int cpu, flags; 1961ab3059a8SMatt Macy vm_page_t p, p_next; 1962ab3059a8SMatt Macy #ifdef NUMA 1963ab3059a8SMatt Macy struct pcpu *pc; 1964ab3059a8SMatt Macy #endif 1965ab3059a8SMatt Macy 1966ab3059a8SMatt Macy MPASS(bytes == (mp_maxid + 1) * PAGE_SIZE); 1967ab3059a8SMatt Macy 1968013072f0SMark Johnston TAILQ_INIT(&alloctail); 1969a4667e09SMark Johnston flags = VM_ALLOC_SYSTEM | VM_ALLOC_WIRED | malloc2vm_flags(wait); 1970013072f0SMark Johnston *pflag = UMA_SLAB_KERNEL; 1971ab3059a8SMatt Macy for (cpu = 0; cpu <= mp_maxid; cpu++) { 1972ab3059a8SMatt Macy if (CPU_ABSENT(cpu)) { 1973a4667e09SMark Johnston p = vm_page_alloc_noobj(flags); 1974ab3059a8SMatt Macy } else { 1975ab3059a8SMatt Macy #ifndef NUMA 1976a4667e09SMark Johnston p = vm_page_alloc_noobj(flags); 1977ab3059a8SMatt Macy #else 1978ab3059a8SMatt Macy pc = pcpu_find(cpu); 197920526802SAndrew Gallatin if (__predict_false(VM_DOMAIN_EMPTY(pc->pc_domain))) 198020526802SAndrew Gallatin p = NULL; 198120526802SAndrew Gallatin else 1982a4667e09SMark Johnston p = vm_page_alloc_noobj_domain(pc->pc_domain, 1983a4667e09SMark Johnston flags); 1984ab3059a8SMatt Macy if (__predict_false(p == NULL)) 1985a4667e09SMark Johnston p = vm_page_alloc_noobj(flags); 1986ab3059a8SMatt Macy #endif 1987ab3059a8SMatt Macy } 1988ab3059a8SMatt Macy if (__predict_false(p == NULL)) 1989ab3059a8SMatt Macy goto fail; 1990ab3059a8SMatt Macy TAILQ_INSERT_TAIL(&alloctail, p, listq); 1991ab3059a8SMatt Macy } 1992ab3059a8SMatt Macy if ((addr = kva_alloc(bytes)) == 0) 1993ab3059a8SMatt Macy goto fail; 1994ab3059a8SMatt Macy zkva = addr; 1995ab3059a8SMatt Macy TAILQ_FOREACH(p, &alloctail, listq) { 1996ab3059a8SMatt Macy pmap_qenter(zkva, &p, 1); 1997ab3059a8SMatt Macy zkva += PAGE_SIZE; 1998ab3059a8SMatt Macy } 1999ab3059a8SMatt Macy return ((void*)addr); 2000ab3059a8SMatt Macy fail: 2001ab3059a8SMatt Macy TAILQ_FOREACH_SAFE(p, &alloctail, listq, p_next) { 200288ea538aSMark Johnston vm_page_unwire_noq(p); 2003ab3059a8SMatt Macy vm_page_free(p); 2004ab3059a8SMatt Macy } 2005ab3059a8SMatt Macy return (NULL); 2006ab3059a8SMatt Macy } 2007ab3059a8SMatt Macy 20088355f576SJeff Roberson /* 2009a9d6f1feSMark Johnston * Allocates a number of pages not belonging to a VM object 20108355f576SJeff Roberson * 20118355f576SJeff Roberson * Arguments: 20128355f576SJeff Roberson * bytes The number of bytes requested 20138355f576SJeff Roberson * wait Shall we wait? 20148355f576SJeff Roberson * 20158355f576SJeff Roberson * Returns: 20168355f576SJeff Roberson * A pointer to the alloced memory or possibly 20178355f576SJeff Roberson * NULL if M_NOWAIT is set. 20188355f576SJeff Roberson */ 20198355f576SJeff Roberson static void * 2020ab3185d1SJeff Roberson noobj_alloc(uma_zone_t zone, vm_size_t bytes, int domain, uint8_t *flags, 2021ab3185d1SJeff Roberson int wait) 20228355f576SJeff Roberson { 2023a4915c21SAttilio Rao TAILQ_HEAD(, vm_page) alloctail; 2024a4915c21SAttilio Rao u_long npages; 2025b245ac95SAlan Cox vm_offset_t retkva, zkva; 2026a4915c21SAttilio Rao vm_page_t p, p_next; 2027e20a199fSJeff Roberson uma_keg_t keg; 2028a4667e09SMark Johnston int req; 20298355f576SJeff Roberson 2030a4915c21SAttilio Rao TAILQ_INIT(&alloctail); 2031bb15d1c7SGleb Smirnoff keg = zone->uz_keg; 2032a4667e09SMark Johnston req = VM_ALLOC_INTERRUPT | VM_ALLOC_WIRED; 2033a4667e09SMark Johnston if ((wait & M_WAITOK) != 0) 2034a4667e09SMark Johnston req |= VM_ALLOC_WAITOK; 2035a4915c21SAttilio Rao 2036a4915c21SAttilio Rao npages = howmany(bytes, PAGE_SIZE); 2037a4915c21SAttilio Rao while (npages > 0) { 2038a4667e09SMark Johnston p = vm_page_alloc_noobj_domain(domain, req); 2039a4915c21SAttilio Rao if (p != NULL) { 2040a4915c21SAttilio Rao /* 2041a4915c21SAttilio Rao * Since the page does not belong to an object, its 2042a4915c21SAttilio Rao * listq is unused. 2043a4915c21SAttilio Rao */ 2044a4915c21SAttilio Rao TAILQ_INSERT_TAIL(&alloctail, p, listq); 2045a4915c21SAttilio Rao npages--; 2046a4915c21SAttilio Rao continue; 2047a4915c21SAttilio Rao } 20488355f576SJeff Roberson /* 2049a4915c21SAttilio Rao * Page allocation failed, free intermediate pages and 2050a4915c21SAttilio Rao * exit. 20518355f576SJeff Roberson */ 2052a4915c21SAttilio Rao TAILQ_FOREACH_SAFE(p, &alloctail, listq, p_next) { 205388ea538aSMark Johnston vm_page_unwire_noq(p); 2054b245ac95SAlan Cox vm_page_free(p); 2055b245ac95SAlan Cox } 2056a4915c21SAttilio Rao return (NULL); 2057b245ac95SAlan Cox } 20588355f576SJeff Roberson *flags = UMA_SLAB_PRIV; 2059a4915c21SAttilio Rao zkva = keg->uk_kva + 2060a4915c21SAttilio Rao atomic_fetchadd_long(&keg->uk_offset, round_page(bytes)); 2061a4915c21SAttilio Rao retkva = zkva; 2062a4915c21SAttilio Rao TAILQ_FOREACH(p, &alloctail, listq) { 2063a4915c21SAttilio Rao pmap_qenter(zkva, &p, 1); 2064a4915c21SAttilio Rao zkva += PAGE_SIZE; 2065a4915c21SAttilio Rao } 20668355f576SJeff Roberson 20678355f576SJeff Roberson return ((void *)retkva); 20688355f576SJeff Roberson } 20698355f576SJeff Roberson 20708355f576SJeff Roberson /* 2071ec0d8280SRyan Libby * Allocate physically contiguous pages. 2072ec0d8280SRyan Libby */ 2073ec0d8280SRyan Libby static void * 2074ec0d8280SRyan Libby contig_alloc(uma_zone_t zone, vm_size_t bytes, int domain, uint8_t *pflag, 2075ec0d8280SRyan Libby int wait) 2076ec0d8280SRyan Libby { 2077ec0d8280SRyan Libby 2078ec0d8280SRyan Libby *pflag = UMA_SLAB_KERNEL; 2079ec0d8280SRyan Libby return ((void *)kmem_alloc_contig_domainset(DOMAINSET_FIXED(domain), 2080ec0d8280SRyan Libby bytes, wait, 0, ~(vm_paddr_t)0, 1, 0, VM_MEMATTR_DEFAULT)); 2081ec0d8280SRyan Libby } 2082ec0d8280SRyan Libby 2083da76d349SBojan Novković #if defined(UMA_USE_DMAP) && !defined(UMA_MD_SMALL_ALLOC) 2084da76d349SBojan Novković void * 2085da76d349SBojan Novković uma_small_alloc(uma_zone_t zone, vm_size_t bytes, int domain, uint8_t *flags, 2086da76d349SBojan Novković int wait) 2087da76d349SBojan Novković { 2088da76d349SBojan Novković vm_page_t m; 2089da76d349SBojan Novković vm_paddr_t pa; 2090da76d349SBojan Novković void *va; 2091da76d349SBojan Novković 2092da76d349SBojan Novković *flags = UMA_SLAB_PRIV; 2093da76d349SBojan Novković m = vm_page_alloc_noobj_domain(domain, 2094da76d349SBojan Novković malloc2vm_flags(wait) | VM_ALLOC_WIRED); 2095da76d349SBojan Novković if (m == NULL) 2096da76d349SBojan Novković return (NULL); 2097da76d349SBojan Novković pa = m->phys_addr; 2098da76d349SBojan Novković if ((wait & M_NODUMP) == 0) 2099da76d349SBojan Novković dump_add_page(pa); 2100da76d349SBojan Novković va = (void *)PHYS_TO_DMAP(pa); 2101da76d349SBojan Novković return (va); 2102da76d349SBojan Novković } 2103da76d349SBojan Novković #endif 2104da76d349SBojan Novković 2105ec0d8280SRyan Libby /* 21068355f576SJeff Roberson * Frees a number of pages to the system 21078355f576SJeff Roberson * 21088355f576SJeff Roberson * Arguments: 21098355f576SJeff Roberson * mem A pointer to the memory to be freed 21108355f576SJeff Roberson * size The size of the memory being freed 21118355f576SJeff Roberson * flags The original p->us_flags field 21128355f576SJeff Roberson * 21138355f576SJeff Roberson * Returns: 21148355f576SJeff Roberson * Nothing 21158355f576SJeff Roberson */ 21168355f576SJeff Roberson static void 2117f2c2231eSRyan Stone page_free(void *mem, vm_size_t size, uint8_t flags) 21188355f576SJeff Roberson { 21193370c5bfSJeff Roberson 2120a81c400eSJeff Roberson if ((flags & UMA_SLAB_BOOT) != 0) { 2121a81c400eSJeff Roberson startup_free(mem, size); 2122a81c400eSJeff Roberson return; 2123a81c400eSJeff Roberson } 2124a81c400eSJeff Roberson 2125ec0d8280SRyan Libby KASSERT((flags & UMA_SLAB_KERNEL) != 0, 2126ec0d8280SRyan Libby ("UMA: page_free used with invalid flags %x", flags)); 21278355f576SJeff Roberson 2128f49fd63aSJohn Baldwin kmem_free(mem, size); 21298355f576SJeff Roberson } 21308355f576SJeff Roberson 21318355f576SJeff Roberson /* 2132ab3059a8SMatt Macy * Frees pcpu zone allocations 2133ab3059a8SMatt Macy * 2134ab3059a8SMatt Macy * Arguments: 2135ab3059a8SMatt Macy * mem A pointer to the memory to be freed 2136ab3059a8SMatt Macy * size The size of the memory being freed 2137ab3059a8SMatt Macy * flags The original p->us_flags field 2138ab3059a8SMatt Macy * 2139ab3059a8SMatt Macy * Returns: 2140ab3059a8SMatt Macy * Nothing 2141ab3059a8SMatt Macy */ 2142ab3059a8SMatt Macy static void 2143ab3059a8SMatt Macy pcpu_page_free(void *mem, vm_size_t size, uint8_t flags) 2144ab3059a8SMatt Macy { 2145ab3059a8SMatt Macy vm_offset_t sva, curva; 2146ab3059a8SMatt Macy vm_paddr_t paddr; 2147ab3059a8SMatt Macy vm_page_t m; 2148ab3059a8SMatt Macy 2149ab3059a8SMatt Macy MPASS(size == (mp_maxid+1)*PAGE_SIZE); 21505ba16cf3SRyan Libby 21515ba16cf3SRyan Libby if ((flags & UMA_SLAB_BOOT) != 0) { 21525ba16cf3SRyan Libby startup_free(mem, size); 21535ba16cf3SRyan Libby return; 21545ba16cf3SRyan Libby } 21555ba16cf3SRyan Libby 2156ab3059a8SMatt Macy sva = (vm_offset_t)mem; 2157ab3059a8SMatt Macy for (curva = sva; curva < sva + size; curva += PAGE_SIZE) { 2158ab3059a8SMatt Macy paddr = pmap_kextract(curva); 2159ab3059a8SMatt Macy m = PHYS_TO_VM_PAGE(paddr); 216088ea538aSMark Johnston vm_page_unwire_noq(m); 2161ab3059a8SMatt Macy vm_page_free(m); 2162ab3059a8SMatt Macy } 2163ab3059a8SMatt Macy pmap_qremove(sva, size >> PAGE_SHIFT); 2164ab3059a8SMatt Macy kva_free(sva, size); 2165ab3059a8SMatt Macy } 2166ab3059a8SMatt Macy 2167da76d349SBojan Novković #if defined(UMA_USE_DMAP) && !defined(UMA_MD_SMALL_ALLOC) 2168da76d349SBojan Novković void 2169da76d349SBojan Novković uma_small_free(void *mem, vm_size_t size, uint8_t flags) 2170da76d349SBojan Novković { 2171da76d349SBojan Novković vm_page_t m; 2172da76d349SBojan Novković vm_paddr_t pa; 2173da76d349SBojan Novković 2174da76d349SBojan Novković pa = DMAP_TO_PHYS((vm_offset_t)mem); 2175da76d349SBojan Novković dump_drop_page(pa); 2176da76d349SBojan Novković m = PHYS_TO_VM_PAGE(pa); 2177da76d349SBojan Novković vm_page_unwire_noq(m); 2178da76d349SBojan Novković vm_page_free(m); 2179da76d349SBojan Novković } 2180da76d349SBojan Novković #endif 2181da76d349SBojan Novković 2182ab3059a8SMatt Macy /* 21838355f576SJeff Roberson * Zero fill initializer 21848355f576SJeff Roberson * 21858355f576SJeff Roberson * Arguments/Returns follow uma_init specifications 21868355f576SJeff Roberson */ 2187b23f72e9SBrian Feldman static int 2188b23f72e9SBrian Feldman zero_init(void *mem, int size, int flags) 21898355f576SJeff Roberson { 21908355f576SJeff Roberson bzero(mem, size); 2191b23f72e9SBrian Feldman return (0); 21928355f576SJeff Roberson } 21938355f576SJeff Roberson 2194815db204SRyan Libby #ifdef INVARIANTS 219554007ce8SMark Johnston static struct noslabbits * 2196815db204SRyan Libby slab_dbg_bits(uma_slab_t slab, uma_keg_t keg) 2197815db204SRyan Libby { 2198815db204SRyan Libby 2199815db204SRyan Libby return ((void *)((char *)&slab->us_free + BITSET_SIZE(keg->uk_ipers))); 2200815db204SRyan Libby } 2201815db204SRyan Libby #endif 2202815db204SRyan Libby 22038355f576SJeff Roberson /* 22049b78b1f4SJeff Roberson * Actual size of embedded struct slab (!OFFPAGE). 22059b78b1f4SJeff Roberson */ 220654007ce8SMark Johnston static size_t 22079b78b1f4SJeff Roberson slab_sizeof(int nitems) 22089b78b1f4SJeff Roberson { 22099b78b1f4SJeff Roberson size_t s; 22109b78b1f4SJeff Roberson 2211815db204SRyan Libby s = sizeof(struct uma_slab) + BITSET_SIZE(nitems) * SLAB_BITSETS; 22129b78b1f4SJeff Roberson return (roundup(s, UMA_ALIGN_PTR + 1)); 22139b78b1f4SJeff Roberson } 22149b78b1f4SJeff Roberson 22154a8b575cSRyan Libby #define UMA_FIXPT_SHIFT 31 22164a8b575cSRyan Libby #define UMA_FRAC_FIXPT(n, d) \ 22174a8b575cSRyan Libby ((uint32_t)(((uint64_t)(n) << UMA_FIXPT_SHIFT) / (d))) 22184a8b575cSRyan Libby #define UMA_FIXPT_PCT(f) \ 22194a8b575cSRyan Libby ((u_int)(((uint64_t)100 * (f)) >> UMA_FIXPT_SHIFT)) 22204a8b575cSRyan Libby #define UMA_PCT_FIXPT(pct) UMA_FRAC_FIXPT((pct), 100) 22214a8b575cSRyan Libby #define UMA_MIN_EFF UMA_PCT_FIXPT(100 - UMA_MAX_WASTE) 22224a8b575cSRyan Libby 22239b78b1f4SJeff Roberson /* 22244a8b575cSRyan Libby * Compute the number of items that will fit in a slab. If hdr is true, the 22254a8b575cSRyan Libby * item count may be limited to provide space in the slab for an inline slab 22264a8b575cSRyan Libby * header. Otherwise, all slab space will be provided for item storage. 22274a8b575cSRyan Libby */ 22284a8b575cSRyan Libby static u_int 22294a8b575cSRyan Libby slab_ipers_hdr(u_int size, u_int rsize, u_int slabsize, bool hdr) 22304a8b575cSRyan Libby { 22314a8b575cSRyan Libby u_int ipers; 22324a8b575cSRyan Libby u_int padpi; 22334a8b575cSRyan Libby 22344a8b575cSRyan Libby /* The padding between items is not needed after the last item. */ 22354a8b575cSRyan Libby padpi = rsize - size; 22364a8b575cSRyan Libby 22374a8b575cSRyan Libby if (hdr) { 22384a8b575cSRyan Libby /* 22394a8b575cSRyan Libby * Start with the maximum item count and remove items until 22404a8b575cSRyan Libby * the slab header first alongside the allocatable memory. 22414a8b575cSRyan Libby */ 22424a8b575cSRyan Libby for (ipers = MIN(SLAB_MAX_SETSIZE, 22434a8b575cSRyan Libby (slabsize + padpi - slab_sizeof(1)) / rsize); 22444a8b575cSRyan Libby ipers > 0 && 22454a8b575cSRyan Libby ipers * rsize - padpi + slab_sizeof(ipers) > slabsize; 22464a8b575cSRyan Libby ipers--) 22474a8b575cSRyan Libby continue; 22484a8b575cSRyan Libby } else { 22494a8b575cSRyan Libby ipers = MIN((slabsize + padpi) / rsize, SLAB_MAX_SETSIZE); 22504a8b575cSRyan Libby } 22514a8b575cSRyan Libby 22524a8b575cSRyan Libby return (ipers); 22534a8b575cSRyan Libby } 22544a8b575cSRyan Libby 225527ca37acSRyan Libby struct keg_layout_result { 225627ca37acSRyan Libby u_int format; 225727ca37acSRyan Libby u_int slabsize; 225827ca37acSRyan Libby u_int ipers; 225927ca37acSRyan Libby u_int eff; 226027ca37acSRyan Libby }; 226127ca37acSRyan Libby 226227ca37acSRyan Libby static void 226327ca37acSRyan Libby keg_layout_one(uma_keg_t keg, u_int rsize, u_int slabsize, u_int fmt, 226427ca37acSRyan Libby struct keg_layout_result *kl) 226527ca37acSRyan Libby { 226627ca37acSRyan Libby u_int total; 226727ca37acSRyan Libby 226827ca37acSRyan Libby kl->format = fmt; 226927ca37acSRyan Libby kl->slabsize = slabsize; 227027ca37acSRyan Libby 227127ca37acSRyan Libby /* Handle INTERNAL as inline with an extra page. */ 227227ca37acSRyan Libby if ((fmt & UMA_ZFLAG_INTERNAL) != 0) { 227327ca37acSRyan Libby kl->format &= ~UMA_ZFLAG_INTERNAL; 227427ca37acSRyan Libby kl->slabsize += PAGE_SIZE; 227527ca37acSRyan Libby } 227627ca37acSRyan Libby 227727ca37acSRyan Libby kl->ipers = slab_ipers_hdr(keg->uk_size, rsize, kl->slabsize, 227827ca37acSRyan Libby (fmt & UMA_ZFLAG_OFFPAGE) == 0); 227927ca37acSRyan Libby 228027ca37acSRyan Libby /* Account for memory used by an offpage slab header. */ 228127ca37acSRyan Libby total = kl->slabsize; 228227ca37acSRyan Libby if ((fmt & UMA_ZFLAG_OFFPAGE) != 0) 228327ca37acSRyan Libby total += slabzone(kl->ipers)->uz_keg->uk_rsize; 228427ca37acSRyan Libby 228527ca37acSRyan Libby kl->eff = UMA_FRAC_FIXPT(kl->ipers * rsize, total); 228627ca37acSRyan Libby } 228727ca37acSRyan Libby 22889b78b1f4SJeff Roberson /* 22894a8b575cSRyan Libby * Determine the format of a uma keg. This determines where the slab header 22904a8b575cSRyan Libby * will be placed (inline or offpage) and calculates ipers, rsize, and ppera. 22918355f576SJeff Roberson * 22928355f576SJeff Roberson * Arguments 2293e20a199fSJeff Roberson * keg The zone we should initialize 22948355f576SJeff Roberson * 22958355f576SJeff Roberson * Returns 22968355f576SJeff Roberson * Nothing 22978355f576SJeff Roberson */ 22988355f576SJeff Roberson static void 22994a8b575cSRyan Libby keg_layout(uma_keg_t keg) 23008355f576SJeff Roberson { 230127ca37acSRyan Libby struct keg_layout_result kl = {}, kl_tmp; 230227ca37acSRyan Libby u_int fmts[2]; 23034a8b575cSRyan Libby u_int alignsize; 230427ca37acSRyan Libby u_int nfmt; 23054a8b575cSRyan Libby u_int pages; 2306244f4554SBosko Milekic u_int rsize; 2307a55ebb7cSAndriy Gapon u_int slabsize; 230827ca37acSRyan Libby u_int i, j; 23098355f576SJeff Roberson 23104a8b575cSRyan Libby KASSERT((keg->uk_flags & UMA_ZONE_PCPU) == 0 || 23114a8b575cSRyan Libby (keg->uk_size <= UMA_PCPU_ALLOC_SIZE && 23124a8b575cSRyan Libby (keg->uk_flags & UMA_ZONE_CACHESPREAD) == 0), 23134a8b575cSRyan Libby ("%s: cannot configure for PCPU: keg=%s, size=%u, flags=0x%b", 23144a8b575cSRyan Libby __func__, keg->uk_name, keg->uk_size, keg->uk_flags, 23154a8b575cSRyan Libby PRINT_UMA_ZFLAGS)); 2316bae55c4aSRyan Libby KASSERT((keg->uk_flags & (UMA_ZFLAG_INTERNAL | UMA_ZONE_VM)) == 0 || 23174a8b575cSRyan Libby (keg->uk_flags & (UMA_ZONE_NOTOUCH | UMA_ZONE_PCPU)) == 0, 23184a8b575cSRyan Libby ("%s: incompatible flags 0x%b", __func__, keg->uk_flags, 23194a8b575cSRyan Libby PRINT_UMA_ZFLAGS)); 2320e28a647dSGleb Smirnoff 23214a8b575cSRyan Libby alignsize = keg->uk_align + 1; 2322b0dfc486SMark Johnston #ifdef KASAN 2323b0dfc486SMark Johnston /* 2324b0dfc486SMark Johnston * ASAN requires that each allocation be aligned to the shadow map 2325b0dfc486SMark Johnston * scale factor. 2326b0dfc486SMark Johnston */ 2327b0dfc486SMark Johnston if (alignsize < KASAN_SHADOW_SCALE) 2328b0dfc486SMark Johnston alignsize = KASAN_SHADOW_SCALE; 2329b0dfc486SMark Johnston #endif 2330ad97af7eSGleb Smirnoff 2331ef72505eSJeff Roberson /* 2332ef72505eSJeff Roberson * Calculate the size of each allocation (rsize) according to 2333ef72505eSJeff Roberson * alignment. If the requested size is smaller than we have 2334ef72505eSJeff Roberson * allocation bits for we round it up. 2335ef72505eSJeff Roberson */ 23369b8db4d0SRyan Libby rsize = MAX(keg->uk_size, UMA_SMALLEST_UNIT); 23374a8b575cSRyan Libby rsize = roundup2(rsize, alignsize); 2338ad97af7eSGleb Smirnoff 233927ca37acSRyan Libby if ((keg->uk_flags & UMA_ZONE_CACHESPREAD) != 0) { 23409b78b1f4SJeff Roberson /* 23414a8b575cSRyan Libby * We want one item to start on every align boundary in a page. 23424a8b575cSRyan Libby * To do this we will span pages. We will also extend the item 23434a8b575cSRyan Libby * by the size of align if it is an even multiple of align. 23444a8b575cSRyan Libby * Otherwise, it would fall on the same boundary every time. 23459b78b1f4SJeff Roberson */ 23464a8b575cSRyan Libby if ((rsize & alignsize) == 0) 23474a8b575cSRyan Libby rsize += alignsize; 23484a8b575cSRyan Libby slabsize = rsize * (PAGE_SIZE / alignsize); 23494a8b575cSRyan Libby slabsize = MIN(slabsize, rsize * SLAB_MAX_SETSIZE); 23504a8b575cSRyan Libby slabsize = MIN(slabsize, UMA_CACHESPREAD_MAX_SIZE); 235127ca37acSRyan Libby slabsize = round_page(slabsize); 23524a8b575cSRyan Libby } else { 23534a8b575cSRyan Libby /* 235427ca37acSRyan Libby * Start with a slab size of as many pages as it takes to 235527ca37acSRyan Libby * represent a single item. We will try to fit as many 235627ca37acSRyan Libby * additional items into the slab as possible. 23574a8b575cSRyan Libby */ 235827ca37acSRyan Libby slabsize = round_page(keg->uk_size); 23591ca6ed45SGleb Smirnoff } 2360ad97af7eSGleb Smirnoff 236127ca37acSRyan Libby /* Build a list of all of the available formats for this keg. */ 236227ca37acSRyan Libby nfmt = 0; 236327ca37acSRyan Libby 23644a8b575cSRyan Libby /* Evaluate an inline slab layout. */ 23654a8b575cSRyan Libby if ((keg->uk_flags & (UMA_ZONE_NOTOUCH | UMA_ZONE_PCPU)) == 0) 236627ca37acSRyan Libby fmts[nfmt++] = 0; 23674a8b575cSRyan Libby 23684a8b575cSRyan Libby /* TODO: vm_page-embedded slab. */ 2369244f4554SBosko Milekic 237020e8e865SBosko Milekic /* 2371244f4554SBosko Milekic * We can't do OFFPAGE if we're internal or if we've been 237220e8e865SBosko Milekic * asked to not go to the VM for buckets. If we do this we 2373bae55c4aSRyan Libby * may end up going to the VM for slabs which we do not want 2374bae55c4aSRyan Libby * to do if we're UMA_ZONE_VM, which clearly forbids it. 2375bae55c4aSRyan Libby * In those cases, evaluate a pseudo-format called INTERNAL 2376bae55c4aSRyan Libby * which has an inline slab header and one extra page to 2377bae55c4aSRyan Libby * guarantee that it fits. 237827ca37acSRyan Libby * 237927ca37acSRyan Libby * Otherwise, see if using an OFFPAGE slab will improve our 238027ca37acSRyan Libby * efficiency. 238120e8e865SBosko Milekic */ 2382bae55c4aSRyan Libby if ((keg->uk_flags & (UMA_ZFLAG_INTERNAL | UMA_ZONE_VM)) != 0) 238327ca37acSRyan Libby fmts[nfmt++] = UMA_ZFLAG_INTERNAL; 238427ca37acSRyan Libby else 238527ca37acSRyan Libby fmts[nfmt++] = UMA_ZFLAG_OFFPAGE; 2386244f4554SBosko Milekic 2387ef72505eSJeff Roberson /* 238827ca37acSRyan Libby * Choose a slab size and format which satisfy the minimum efficiency. 238927ca37acSRyan Libby * Prefer the smallest slab size that meets the constraints. 2390ef72505eSJeff Roberson * 239127ca37acSRyan Libby * Start with a minimum slab size, to accommodate CACHESPREAD. Then, 239227ca37acSRyan Libby * for small items (up to PAGE_SIZE), the iteration increment is one 239327ca37acSRyan Libby * page; and for large items, the increment is one item. 2394ef72505eSJeff Roberson */ 239527ca37acSRyan Libby i = (slabsize + rsize - keg->uk_size) / MAX(PAGE_SIZE, rsize); 239627ca37acSRyan Libby KASSERT(i >= 1, ("keg %s(%p) flags=0x%b slabsize=%u, rsize=%u, i=%u", 239727ca37acSRyan Libby keg->uk_name, keg, keg->uk_flags, PRINT_UMA_ZFLAGS, slabsize, 239827ca37acSRyan Libby rsize, i)); 239927ca37acSRyan Libby for ( ; ; i++) { 240027ca37acSRyan Libby slabsize = (rsize <= PAGE_SIZE) ? ptoa(i) : 240127ca37acSRyan Libby round_page(rsize * (i - 1) + keg->uk_size); 240227ca37acSRyan Libby 240327ca37acSRyan Libby for (j = 0; j < nfmt; j++) { 240427ca37acSRyan Libby /* Only if we have no viable format yet. */ 240527ca37acSRyan Libby if ((fmts[j] & UMA_ZFLAG_INTERNAL) != 0 && 240627ca37acSRyan Libby kl.ipers > 0) 240727ca37acSRyan Libby continue; 240827ca37acSRyan Libby 240927ca37acSRyan Libby keg_layout_one(keg, rsize, slabsize, fmts[j], &kl_tmp); 241027ca37acSRyan Libby if (kl_tmp.eff <= kl.eff) 241127ca37acSRyan Libby continue; 241227ca37acSRyan Libby 241327ca37acSRyan Libby kl = kl_tmp; 241427ca37acSRyan Libby 241527ca37acSRyan Libby CTR6(KTR_UMA, "keg %s layout: format %#x " 241627ca37acSRyan Libby "(ipers %u * rsize %u) / slabsize %#x = %u%% eff", 241727ca37acSRyan Libby keg->uk_name, kl.format, kl.ipers, rsize, 241827ca37acSRyan Libby kl.slabsize, UMA_FIXPT_PCT(kl.eff)); 241927ca37acSRyan Libby 242027ca37acSRyan Libby /* Stop when we reach the minimum efficiency. */ 242127ca37acSRyan Libby if (kl.eff >= UMA_MIN_EFF) 242227ca37acSRyan Libby break; 24238355f576SJeff Roberson } 2424ad97af7eSGleb Smirnoff 242533e5a1eaSRyan Libby if (kl.eff >= UMA_MIN_EFF || !multipage_slabs || 242627ca37acSRyan Libby slabsize >= SLAB_MAX_SETSIZE * rsize || 242727ca37acSRyan Libby (keg->uk_flags & (UMA_ZONE_PCPU | UMA_ZONE_CONTIG)) != 0) 242827ca37acSRyan Libby break; 242927ca37acSRyan Libby } 243027ca37acSRyan Libby 243127ca37acSRyan Libby pages = atop(kl.slabsize); 243227ca37acSRyan Libby if ((keg->uk_flags & UMA_ZONE_PCPU) != 0) 243327ca37acSRyan Libby pages *= mp_maxid + 1; 243427ca37acSRyan Libby 243527ca37acSRyan Libby keg->uk_rsize = rsize; 243627ca37acSRyan Libby keg->uk_ipers = kl.ipers; 243727ca37acSRyan Libby keg->uk_ppera = pages; 243827ca37acSRyan Libby keg->uk_flags |= kl.format; 243927ca37acSRyan Libby 24404a8b575cSRyan Libby /* 24414a8b575cSRyan Libby * How do we find the slab header if it is offpage or if not all item 24424a8b575cSRyan Libby * start addresses are in the same page? We could solve the latter 24434a8b575cSRyan Libby * case with vaddr alignment, but we don't. 24444a8b575cSRyan Libby */ 244527ca37acSRyan Libby if ((keg->uk_flags & UMA_ZFLAG_OFFPAGE) != 0 || 244627ca37acSRyan Libby (keg->uk_ipers - 1) * rsize >= PAGE_SIZE) { 244754c5ae80SRyan Libby if ((keg->uk_flags & UMA_ZONE_NOTPAGE) != 0) 244827ca37acSRyan Libby keg->uk_flags |= UMA_ZFLAG_HASH; 244954c5ae80SRyan Libby else 245027ca37acSRyan Libby keg->uk_flags |= UMA_ZFLAG_VTOSLAB; 245154c5ae80SRyan Libby } 245227ca37acSRyan Libby 2453e63a1c2fSRyan Libby CTR6(KTR_UMA, "%s: keg=%s, flags=%#x, rsize=%u, ipers=%u, ppera=%u", 245427ca37acSRyan Libby __func__, keg->uk_name, keg->uk_flags, rsize, keg->uk_ipers, 245527ca37acSRyan Libby pages); 24564a8b575cSRyan Libby KASSERT(keg->uk_ipers > 0 && keg->uk_ipers <= SLAB_MAX_SETSIZE, 24574a8b575cSRyan Libby ("%s: keg=%s, flags=0x%b, rsize=%u, ipers=%u, ppera=%u", __func__, 245827ca37acSRyan Libby keg->uk_name, keg->uk_flags, PRINT_UMA_ZFLAGS, rsize, 245927ca37acSRyan Libby keg->uk_ipers, pages)); 2460e20a199fSJeff Roberson } 2461e20a199fSJeff Roberson 24628355f576SJeff Roberson /* 2463099a0e58SBosko Milekic * Keg header ctor. This initializes all fields, locks, etc. And inserts 2464099a0e58SBosko Milekic * the keg onto the global keg list. 24658355f576SJeff Roberson * 24668355f576SJeff Roberson * Arguments/Returns follow uma_ctor specifications 2467099a0e58SBosko Milekic * udata Actually uma_kctor_args 2468099a0e58SBosko Milekic */ 2469b23f72e9SBrian Feldman static int 2470b23f72e9SBrian Feldman keg_ctor(void *mem, int size, void *udata, int flags) 2471099a0e58SBosko Milekic { 2472099a0e58SBosko Milekic struct uma_kctor_args *arg = udata; 2473099a0e58SBosko Milekic uma_keg_t keg = mem; 2474099a0e58SBosko Milekic uma_zone_t zone; 24758b987a77SJeff Roberson int i; 2476099a0e58SBosko Milekic 2477099a0e58SBosko Milekic bzero(keg, size); 2478099a0e58SBosko Milekic keg->uk_size = arg->size; 2479099a0e58SBosko Milekic keg->uk_init = arg->uminit; 2480099a0e58SBosko Milekic keg->uk_fini = arg->fini; 2481099a0e58SBosko Milekic keg->uk_align = arg->align; 24826fd34d6fSJeff Roberson keg->uk_reserve = 0; 2483099a0e58SBosko Milekic keg->uk_flags = arg->flags; 2484099a0e58SBosko Milekic 2485099a0e58SBosko Milekic /* 2486194a979eSMark Johnston * We use a global round-robin policy by default. Zones with 2487dfe13344SJeff Roberson * UMA_ZONE_FIRSTTOUCH set will use first-touch instead, in which 2488dfe13344SJeff Roberson * case the iterator is never run. 2489194a979eSMark Johnston */ 2490194a979eSMark Johnston keg->uk_dr.dr_policy = DOMAINSET_RR(); 2491194a979eSMark Johnston keg->uk_dr.dr_iter = 0; 2492194a979eSMark Johnston 2493194a979eSMark Johnston /* 2494c8b0a88bSJeff Roberson * The primary zone is passed to us at keg-creation time. 2495099a0e58SBosko Milekic */ 2496099a0e58SBosko Milekic zone = arg->zone; 2497e20a199fSJeff Roberson keg->uk_name = zone->uz_name; 2498099a0e58SBosko Milekic 2499099a0e58SBosko Milekic if (arg->flags & UMA_ZONE_ZINIT) 2500099a0e58SBosko Milekic keg->uk_init = zero_init; 2501099a0e58SBosko Milekic 2502cfcae3f8SGleb Smirnoff if (arg->flags & UMA_ZONE_MALLOC) 250354c5ae80SRyan Libby keg->uk_flags |= UMA_ZFLAG_VTOSLAB; 2504e20a199fSJeff Roberson 250554c5ae80SRyan Libby #ifndef SMP 2506ad97af7eSGleb Smirnoff keg->uk_flags &= ~UMA_ZONE_PCPU; 2507ad97af7eSGleb Smirnoff #endif 2508ad97af7eSGleb Smirnoff 25094a8b575cSRyan Libby keg_layout(keg); 2510099a0e58SBosko Milekic 25118b987a77SJeff Roberson /* 2512c6fd3e23SJeff Roberson * Use a first-touch NUMA policy for kegs that pmap_extract() will 2513c6fd3e23SJeff Roberson * work on. Use round-robin for everything else. 2514dfe13344SJeff Roberson * 2515dfe13344SJeff Roberson * Zones may override the default by specifying either. 25168b987a77SJeff Roberson */ 2517dfe13344SJeff Roberson #ifdef NUMA 2518dfe13344SJeff Roberson if ((keg->uk_flags & 2519c6fd3e23SJeff Roberson (UMA_ZONE_ROUNDROBIN | UMA_ZFLAG_CACHE | UMA_ZONE_NOTPAGE)) == 0) 2520dfe13344SJeff Roberson keg->uk_flags |= UMA_ZONE_FIRSTTOUCH; 2521dfe13344SJeff Roberson else if ((keg->uk_flags & UMA_ZONE_FIRSTTOUCH) == 0) 2522dfe13344SJeff Roberson keg->uk_flags |= UMA_ZONE_ROUNDROBIN; 25238b987a77SJeff Roberson #endif 25248b987a77SJeff Roberson 2525099a0e58SBosko Milekic /* 2526099a0e58SBosko Milekic * If we haven't booted yet we need allocations to go through the 2527099a0e58SBosko Milekic * startup cache until the vm is ready. 2528099a0e58SBosko Milekic */ 2529d25ed650SBojan Novković #ifdef UMA_USE_DMAP 2530a81c400eSJeff Roberson if (keg->uk_ppera == 1) 253177e19437SGleb Smirnoff keg->uk_allocf = uma_small_alloc; 2532a81c400eSJeff Roberson else 25338cd02d00SAlan Cox #endif 2534a81c400eSJeff Roberson if (booted < BOOT_KVA) 2535a81c400eSJeff Roberson keg->uk_allocf = startup_alloc; 2536ab3059a8SMatt Macy else if (keg->uk_flags & UMA_ZONE_PCPU) 2537ab3059a8SMatt Macy keg->uk_allocf = pcpu_page_alloc; 2538ec0d8280SRyan Libby else if ((keg->uk_flags & UMA_ZONE_CONTIG) != 0 && keg->uk_ppera > 1) 2539ec0d8280SRyan Libby keg->uk_allocf = contig_alloc; 254077e19437SGleb Smirnoff else 254177e19437SGleb Smirnoff keg->uk_allocf = page_alloc; 2542d25ed650SBojan Novković #ifdef UMA_USE_DMAP 254377e19437SGleb Smirnoff if (keg->uk_ppera == 1) 254477e19437SGleb Smirnoff keg->uk_freef = uma_small_free; 254577e19437SGleb Smirnoff else 254677e19437SGleb Smirnoff #endif 2547ab3059a8SMatt Macy if (keg->uk_flags & UMA_ZONE_PCPU) 2548ab3059a8SMatt Macy keg->uk_freef = pcpu_page_free; 2549ab3059a8SMatt Macy else 255077e19437SGleb Smirnoff keg->uk_freef = page_free; 2551099a0e58SBosko Milekic 2552099a0e58SBosko Milekic /* 25538b987a77SJeff Roberson * Initialize keg's locks. 2554099a0e58SBosko Milekic */ 25558b987a77SJeff Roberson for (i = 0; i < vm_ndomains; i++) 25568b987a77SJeff Roberson KEG_LOCK_INIT(keg, i, (arg->flags & UMA_ZONE_MTXCLASS)); 2557099a0e58SBosko Milekic 2558099a0e58SBosko Milekic /* 2559099a0e58SBosko Milekic * If we're putting the slab header in the actual page we need to 25609b78b1f4SJeff Roberson * figure out where in each page it goes. See slab_sizeof 25619b78b1f4SJeff Roberson * definition. 2562099a0e58SBosko Milekic */ 256354c5ae80SRyan Libby if (!(keg->uk_flags & UMA_ZFLAG_OFFPAGE)) { 25649b78b1f4SJeff Roberson size_t shsize; 25659b78b1f4SJeff Roberson 25669b78b1f4SJeff Roberson shsize = slab_sizeof(keg->uk_ipers); 25679b78b1f4SJeff Roberson keg->uk_pgoff = (PAGE_SIZE * keg->uk_ppera) - shsize; 2568244f4554SBosko Milekic /* 2569244f4554SBosko Milekic * The only way the following is possible is if with our 2570244f4554SBosko Milekic * UMA_ALIGN_PTR adjustments we are now bigger than 2571244f4554SBosko Milekic * UMA_SLAB_SIZE. I haven't checked whether this is 2572244f4554SBosko Milekic * mathematically possible for all cases, so we make 2573244f4554SBosko Milekic * sure here anyway. 2574244f4554SBosko Milekic */ 25759b78b1f4SJeff Roberson KASSERT(keg->uk_pgoff + shsize <= PAGE_SIZE * keg->uk_ppera, 25763d5e3df7SGleb Smirnoff ("zone %s ipers %d rsize %d size %d slab won't fit", 25773d5e3df7SGleb Smirnoff zone->uz_name, keg->uk_ipers, keg->uk_rsize, keg->uk_size)); 2578099a0e58SBosko Milekic } 2579099a0e58SBosko Milekic 258054c5ae80SRyan Libby if (keg->uk_flags & UMA_ZFLAG_HASH) 25813b2f2cb8SAlexander Motin hash_alloc(&keg->uk_hash, 0); 2582099a0e58SBosko Milekic 2583e63a1c2fSRyan Libby CTR3(KTR_UMA, "keg_ctor %p zone %s(%p)", keg, zone->uz_name, zone); 2584099a0e58SBosko Milekic 2585099a0e58SBosko Milekic LIST_INSERT_HEAD(&keg->uk_zones, zone, uz_link); 2586099a0e58SBosko Milekic 2587111fbcd5SBryan Venteicher rw_wlock(&uma_rwlock); 2588099a0e58SBosko Milekic LIST_INSERT_HEAD(&uma_kegs, keg, uk_link); 2589111fbcd5SBryan Venteicher rw_wunlock(&uma_rwlock); 2590b23f72e9SBrian Feldman return (0); 2591099a0e58SBosko Milekic } 2592099a0e58SBosko Milekic 25932efcc8cbSGleb Smirnoff static void 2594a81c400eSJeff Roberson zone_kva_available(uma_zone_t zone, void *unused) 2595a81c400eSJeff Roberson { 2596a81c400eSJeff Roberson uma_keg_t keg; 2597a81c400eSJeff Roberson 2598a81c400eSJeff Roberson if ((zone->uz_flags & UMA_ZFLAG_CACHE) != 0) 2599a81c400eSJeff Roberson return; 2600a81c400eSJeff Roberson KEG_GET(zone, keg); 2601ec0d8280SRyan Libby 2602ec0d8280SRyan Libby if (keg->uk_allocf == startup_alloc) { 2603ec0d8280SRyan Libby /* Switch to the real allocator. */ 2604f96d4157SJeff Roberson if (keg->uk_flags & UMA_ZONE_PCPU) 2605f96d4157SJeff Roberson keg->uk_allocf = pcpu_page_alloc; 2606ec0d8280SRyan Libby else if ((keg->uk_flags & UMA_ZONE_CONTIG) != 0 && 2607ec0d8280SRyan Libby keg->uk_ppera > 1) 2608ec0d8280SRyan Libby keg->uk_allocf = contig_alloc; 2609ec0d8280SRyan Libby else 2610a81c400eSJeff Roberson keg->uk_allocf = page_alloc; 2611a81c400eSJeff Roberson } 2612ec0d8280SRyan Libby } 2613a81c400eSJeff Roberson 2614a81c400eSJeff Roberson static void 261520a4e154SJeff Roberson zone_alloc_counters(uma_zone_t zone, void *unused) 26162efcc8cbSGleb Smirnoff { 26172efcc8cbSGleb Smirnoff 26182efcc8cbSGleb Smirnoff zone->uz_allocs = counter_u64_alloc(M_WAITOK); 26192efcc8cbSGleb Smirnoff zone->uz_frees = counter_u64_alloc(M_WAITOK); 26202efcc8cbSGleb Smirnoff zone->uz_fails = counter_u64_alloc(M_WAITOK); 2621c6fd3e23SJeff Roberson zone->uz_xdomain = counter_u64_alloc(M_WAITOK); 26222efcc8cbSGleb Smirnoff } 26232efcc8cbSGleb Smirnoff 262420a4e154SJeff Roberson static void 262520a4e154SJeff Roberson zone_alloc_sysctl(uma_zone_t zone, void *unused) 262620a4e154SJeff Roberson { 262720a4e154SJeff Roberson uma_zone_domain_t zdom; 26288b987a77SJeff Roberson uma_domain_t dom; 262920a4e154SJeff Roberson uma_keg_t keg; 263020a4e154SJeff Roberson struct sysctl_oid *oid, *domainoid; 26313b490537SJeff Roberson int domains, i, cnt; 263220a4e154SJeff Roberson static const char *nokeg = "cache zone"; 263320a4e154SJeff Roberson char *c; 263420a4e154SJeff Roberson 263520a4e154SJeff Roberson /* 263620a4e154SJeff Roberson * Make a sysctl safe copy of the zone name by removing 263720a4e154SJeff Roberson * any special characters and handling dups by appending 263820a4e154SJeff Roberson * an index. 263920a4e154SJeff Roberson */ 264020a4e154SJeff Roberson if (zone->uz_namecnt != 0) { 26413b490537SJeff Roberson /* Count the number of decimal digits and '_' separator. */ 26423b490537SJeff Roberson for (i = 1, cnt = zone->uz_namecnt; cnt != 0; i++) 26433b490537SJeff Roberson cnt /= 10; 26443b490537SJeff Roberson zone->uz_ctlname = malloc(strlen(zone->uz_name) + i + 1, 26453b490537SJeff Roberson M_UMA, M_WAITOK); 264620a4e154SJeff Roberson sprintf(zone->uz_ctlname, "%s_%d", zone->uz_name, 264720a4e154SJeff Roberson zone->uz_namecnt); 264820a4e154SJeff Roberson } else 264920a4e154SJeff Roberson zone->uz_ctlname = strdup(zone->uz_name, M_UMA); 265020a4e154SJeff Roberson for (c = zone->uz_ctlname; *c != '\0'; c++) 265120a4e154SJeff Roberson if (strchr("./\\ -", *c) != NULL) 265220a4e154SJeff Roberson *c = '_'; 265320a4e154SJeff Roberson 265420a4e154SJeff Roberson /* 265520a4e154SJeff Roberson * Basic parameters at the root. 265620a4e154SJeff Roberson */ 265720a4e154SJeff Roberson zone->uz_oid = SYSCTL_ADD_NODE(NULL, SYSCTL_STATIC_CHILDREN(_vm_uma), 26587029da5cSPawel Biernacki OID_AUTO, zone->uz_ctlname, CTLFLAG_RD | CTLFLAG_MPSAFE, NULL, ""); 265920a4e154SJeff Roberson oid = zone->uz_oid; 266020a4e154SJeff Roberson SYSCTL_ADD_U32(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 266120a4e154SJeff Roberson "size", CTLFLAG_RD, &zone->uz_size, 0, "Allocation size"); 26626d204a6aSRyan Libby SYSCTL_ADD_PROC(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 26636d204a6aSRyan Libby "flags", CTLFLAG_RD | CTLTYPE_STRING | CTLFLAG_MPSAFE, 26646d204a6aSRyan Libby zone, 0, sysctl_handle_uma_zone_flags, "A", 266520a4e154SJeff Roberson "Allocator configuration flags"); 266620a4e154SJeff Roberson SYSCTL_ADD_U16(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 266720a4e154SJeff Roberson "bucket_size", CTLFLAG_RD, &zone->uz_bucket_size, 0, 266820a4e154SJeff Roberson "Desired per-cpu cache size"); 266920a4e154SJeff Roberson SYSCTL_ADD_U16(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 267020a4e154SJeff Roberson "bucket_size_max", CTLFLAG_RD, &zone->uz_bucket_size_max, 0, 267120a4e154SJeff Roberson "Maximum allowed per-cpu cache size"); 267220a4e154SJeff Roberson 267320a4e154SJeff Roberson /* 267420a4e154SJeff Roberson * keg if present. 267520a4e154SJeff Roberson */ 267654c5ae80SRyan Libby if ((zone->uz_flags & UMA_ZFLAG_HASH) == 0) 26778b987a77SJeff Roberson domains = vm_ndomains; 26788b987a77SJeff Roberson else 26798b987a77SJeff Roberson domains = 1; 268020a4e154SJeff Roberson oid = SYSCTL_ADD_NODE(NULL, SYSCTL_CHILDREN(zone->uz_oid), OID_AUTO, 26817029da5cSPawel Biernacki "keg", CTLFLAG_RD | CTLFLAG_MPSAFE, NULL, ""); 268220a4e154SJeff Roberson keg = zone->uz_keg; 26833b490537SJeff Roberson if ((zone->uz_flags & UMA_ZFLAG_CACHE) == 0) { 268420a4e154SJeff Roberson SYSCTL_ADD_CONST_STRING(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 268520a4e154SJeff Roberson "name", CTLFLAG_RD, keg->uk_name, "Keg name"); 268620a4e154SJeff Roberson SYSCTL_ADD_U32(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 268720a4e154SJeff Roberson "rsize", CTLFLAG_RD, &keg->uk_rsize, 0, 268820a4e154SJeff Roberson "Real object size with alignment"); 268920a4e154SJeff Roberson SYSCTL_ADD_U16(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 269020a4e154SJeff Roberson "ppera", CTLFLAG_RD, &keg->uk_ppera, 0, 269120a4e154SJeff Roberson "pages per-slab allocation"); 269220a4e154SJeff Roberson SYSCTL_ADD_U16(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 269320a4e154SJeff Roberson "ipers", CTLFLAG_RD, &keg->uk_ipers, 0, 269420a4e154SJeff Roberson "items available per-slab"); 269520a4e154SJeff Roberson SYSCTL_ADD_U32(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 269620a4e154SJeff Roberson "align", CTLFLAG_RD, &keg->uk_align, 0, 269720a4e154SJeff Roberson "item alignment mask"); 2698f09cbea3SMark Johnston SYSCTL_ADD_U32(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 2699f09cbea3SMark Johnston "reserve", CTLFLAG_RD, &keg->uk_reserve, 0, 2700f09cbea3SMark Johnston "number of reserved items"); 2701f7af5015SRyan Libby SYSCTL_ADD_PROC(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 2702f7af5015SRyan Libby "efficiency", CTLFLAG_RD | CTLTYPE_INT | CTLFLAG_MPSAFE, 2703f7af5015SRyan Libby keg, 0, sysctl_handle_uma_slab_efficiency, "I", 2704f7af5015SRyan Libby "Slab utilization (100 - internal fragmentation %)"); 27058b987a77SJeff Roberson domainoid = SYSCTL_ADD_NODE(NULL, SYSCTL_CHILDREN(oid), 27067029da5cSPawel Biernacki OID_AUTO, "domain", CTLFLAG_RD | CTLFLAG_MPSAFE, NULL, ""); 27078b987a77SJeff Roberson for (i = 0; i < domains; i++) { 27088b987a77SJeff Roberson dom = &keg->uk_domain[i]; 27098b987a77SJeff Roberson oid = SYSCTL_ADD_NODE(NULL, SYSCTL_CHILDREN(domainoid), 27107029da5cSPawel Biernacki OID_AUTO, VM_DOMAIN(i)->vmd_name, 27117029da5cSPawel Biernacki CTLFLAG_RD | CTLFLAG_MPSAFE, NULL, ""); 27128b987a77SJeff Roberson SYSCTL_ADD_U32(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 27138b987a77SJeff Roberson "pages", CTLFLAG_RD, &dom->ud_pages, 0, 27148b987a77SJeff Roberson "Total pages currently allocated from VM"); 27158b987a77SJeff Roberson SYSCTL_ADD_U32(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 27164ab3aee8SMark Johnston "free_items", CTLFLAG_RD, &dom->ud_free_items, 0, 2717d6e77cdaSMark Johnston "Items free in the slab layer"); 2718d6e77cdaSMark Johnston SYSCTL_ADD_U32(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 2719d6e77cdaSMark Johnston "free_slabs", CTLFLAG_RD, &dom->ud_free_slabs, 0, 2720d6e77cdaSMark Johnston "Unused slabs"); 27218b987a77SJeff Roberson } 272220a4e154SJeff Roberson } else 272320a4e154SJeff Roberson SYSCTL_ADD_CONST_STRING(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 272420a4e154SJeff Roberson "name", CTLFLAG_RD, nokeg, "Keg name"); 272520a4e154SJeff Roberson 272620a4e154SJeff Roberson /* 272720a4e154SJeff Roberson * Information about zone limits. 272820a4e154SJeff Roberson */ 272920a4e154SJeff Roberson oid = SYSCTL_ADD_NODE(NULL, SYSCTL_CHILDREN(zone->uz_oid), OID_AUTO, 27307029da5cSPawel Biernacki "limit", CTLFLAG_RD | CTLFLAG_MPSAFE, NULL, ""); 27314bd61e19SJeff Roberson SYSCTL_ADD_PROC(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 27324bd61e19SJeff Roberson "items", CTLFLAG_RD | CTLTYPE_U64 | CTLFLAG_MPSAFE, 27334bd61e19SJeff Roberson zone, 0, sysctl_handle_uma_zone_items, "QU", 2734e574d407SMark Johnston "Current number of allocated items if limit is set"); 273520a4e154SJeff Roberson SYSCTL_ADD_U64(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 273620a4e154SJeff Roberson "max_items", CTLFLAG_RD, &zone->uz_max_items, 0, 2737e574d407SMark Johnston "Maximum number of allocated and cached items"); 273820a4e154SJeff Roberson SYSCTL_ADD_U32(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 273920a4e154SJeff Roberson "sleepers", CTLFLAG_RD, &zone->uz_sleepers, 0, 274020a4e154SJeff Roberson "Number of threads sleeping at limit"); 274120a4e154SJeff Roberson SYSCTL_ADD_U64(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 274220a4e154SJeff Roberson "sleeps", CTLFLAG_RD, &zone->uz_sleeps, 0, 274320a4e154SJeff Roberson "Total zone limit sleeps"); 27444bd61e19SJeff Roberson SYSCTL_ADD_U64(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 2745c6fd3e23SJeff Roberson "bucket_max", CTLFLAG_RD, &zone->uz_bucket_max, 0, 2746c6fd3e23SJeff Roberson "Maximum number of items in each domain's bucket cache"); 274720a4e154SJeff Roberson 274820a4e154SJeff Roberson /* 27498b987a77SJeff Roberson * Per-domain zone information. 275020a4e154SJeff Roberson */ 275120a4e154SJeff Roberson domainoid = SYSCTL_ADD_NODE(NULL, SYSCTL_CHILDREN(zone->uz_oid), 27527029da5cSPawel Biernacki OID_AUTO, "domain", CTLFLAG_RD | CTLFLAG_MPSAFE, NULL, ""); 275320a4e154SJeff Roberson for (i = 0; i < domains; i++) { 2754c6fd3e23SJeff Roberson zdom = ZDOM_GET(zone, i); 275520a4e154SJeff Roberson oid = SYSCTL_ADD_NODE(NULL, SYSCTL_CHILDREN(domainoid), 27567029da5cSPawel Biernacki OID_AUTO, VM_DOMAIN(i)->vmd_name, 27577029da5cSPawel Biernacki CTLFLAG_RD | CTLFLAG_MPSAFE, NULL, ""); 275820a4e154SJeff Roberson SYSCTL_ADD_LONG(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 275920a4e154SJeff Roberson "nitems", CTLFLAG_RD, &zdom->uzd_nitems, 276020a4e154SJeff Roberson "number of items in this domain"); 276120a4e154SJeff Roberson SYSCTL_ADD_LONG(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 276220a4e154SJeff Roberson "imax", CTLFLAG_RD, &zdom->uzd_imax, 276320a4e154SJeff Roberson "maximum item count in this period"); 276420a4e154SJeff Roberson SYSCTL_ADD_LONG(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 276520a4e154SJeff Roberson "imin", CTLFLAG_RD, &zdom->uzd_imin, 276620a4e154SJeff Roberson "minimum item count in this period"); 276720a4e154SJeff Roberson SYSCTL_ADD_LONG(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 27682760658bSAlexander Motin "bimin", CTLFLAG_RD, &zdom->uzd_bimin, 27692760658bSAlexander Motin "Minimum item count in this batch"); 27702760658bSAlexander Motin SYSCTL_ADD_LONG(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 277120a4e154SJeff Roberson "wss", CTLFLAG_RD, &zdom->uzd_wss, 277220a4e154SJeff Roberson "Working set size"); 27732760658bSAlexander Motin SYSCTL_ADD_LONG(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 27742760658bSAlexander Motin "limin", CTLFLAG_RD, &zdom->uzd_limin, 27752760658bSAlexander Motin "Long time minimum item count"); 27762760658bSAlexander Motin SYSCTL_ADD_INT(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 27772760658bSAlexander Motin "timin", CTLFLAG_RD, &zdom->uzd_timin, 0, 27782760658bSAlexander Motin "Time since zero long time minimum item count"); 277920a4e154SJeff Roberson } 278020a4e154SJeff Roberson 278120a4e154SJeff Roberson /* 278220a4e154SJeff Roberson * General statistics. 278320a4e154SJeff Roberson */ 278420a4e154SJeff Roberson oid = SYSCTL_ADD_NODE(NULL, SYSCTL_CHILDREN(zone->uz_oid), OID_AUTO, 27857029da5cSPawel Biernacki "stats", CTLFLAG_RD | CTLFLAG_MPSAFE, NULL, ""); 278620a4e154SJeff Roberson SYSCTL_ADD_PROC(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 278720a4e154SJeff Roberson "current", CTLFLAG_RD | CTLTYPE_INT | CTLFLAG_MPSAFE, 278820a4e154SJeff Roberson zone, 1, sysctl_handle_uma_zone_cur, "I", 278920a4e154SJeff Roberson "Current number of allocated items"); 279020a4e154SJeff Roberson SYSCTL_ADD_PROC(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 279120a4e154SJeff Roberson "allocs", CTLFLAG_RD | CTLTYPE_U64 | CTLFLAG_MPSAFE, 279220a4e154SJeff Roberson zone, 0, sysctl_handle_uma_zone_allocs, "QU", 279320a4e154SJeff Roberson "Total allocation calls"); 279420a4e154SJeff Roberson SYSCTL_ADD_PROC(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 279520a4e154SJeff Roberson "frees", CTLFLAG_RD | CTLTYPE_U64 | CTLFLAG_MPSAFE, 279620a4e154SJeff Roberson zone, 0, sysctl_handle_uma_zone_frees, "QU", 279720a4e154SJeff Roberson "Total free calls"); 279820a4e154SJeff Roberson SYSCTL_ADD_COUNTER_U64(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 279920a4e154SJeff Roberson "fails", CTLFLAG_RD, &zone->uz_fails, 280020a4e154SJeff Roberson "Number of allocation failures"); 2801c6fd3e23SJeff Roberson SYSCTL_ADD_COUNTER_U64(NULL, SYSCTL_CHILDREN(oid), OID_AUTO, 2802c6fd3e23SJeff Roberson "xdomain", CTLFLAG_RD, &zone->uz_xdomain, 280320a4e154SJeff Roberson "Free calls from the wrong domain"); 280420a4e154SJeff Roberson } 280520a4e154SJeff Roberson 280620a4e154SJeff Roberson struct uma_zone_count { 280720a4e154SJeff Roberson const char *name; 280820a4e154SJeff Roberson int count; 280920a4e154SJeff Roberson }; 281020a4e154SJeff Roberson 281120a4e154SJeff Roberson static void 281220a4e154SJeff Roberson zone_count(uma_zone_t zone, void *arg) 281320a4e154SJeff Roberson { 281420a4e154SJeff Roberson struct uma_zone_count *cnt; 281520a4e154SJeff Roberson 281620a4e154SJeff Roberson cnt = arg; 28173b490537SJeff Roberson /* 28183b490537SJeff Roberson * Some zones are rapidly created with identical names and 28193b490537SJeff Roberson * destroyed out of order. This can lead to gaps in the count. 28203b490537SJeff Roberson * Use one greater than the maximum observed for this name. 28213b490537SJeff Roberson */ 282220a4e154SJeff Roberson if (strcmp(zone->uz_name, cnt->name) == 0) 28233b490537SJeff Roberson cnt->count = MAX(cnt->count, 28243b490537SJeff Roberson zone->uz_namecnt + 1); 282520a4e154SJeff Roberson } 282620a4e154SJeff Roberson 2827cc7ce83aSJeff Roberson static void 2828cc7ce83aSJeff Roberson zone_update_caches(uma_zone_t zone) 2829cc7ce83aSJeff Roberson { 2830cc7ce83aSJeff Roberson int i; 2831cc7ce83aSJeff Roberson 2832cc7ce83aSJeff Roberson for (i = 0; i <= mp_maxid; i++) { 2833cc7ce83aSJeff Roberson cache_set_uz_size(&zone->uz_cpu[i], zone->uz_size); 2834cc7ce83aSJeff Roberson cache_set_uz_flags(&zone->uz_cpu[i], zone->uz_flags); 2835cc7ce83aSJeff Roberson } 2836cc7ce83aSJeff Roberson } 2837cc7ce83aSJeff Roberson 2838099a0e58SBosko Milekic /* 2839099a0e58SBosko Milekic * Zone header ctor. This initializes all fields, locks, etc. 2840099a0e58SBosko Milekic * 2841099a0e58SBosko Milekic * Arguments/Returns follow uma_ctor specifications 2842099a0e58SBosko Milekic * udata Actually uma_zctor_args 28438355f576SJeff Roberson */ 2844b23f72e9SBrian Feldman static int 2845b23f72e9SBrian Feldman zone_ctor(void *mem, int size, void *udata, int flags) 28468355f576SJeff Roberson { 284720a4e154SJeff Roberson struct uma_zone_count cnt; 28488355f576SJeff Roberson struct uma_zctor_args *arg = udata; 2849c6fd3e23SJeff Roberson uma_zone_domain_t zdom; 28508355f576SJeff Roberson uma_zone_t zone = mem; 2851099a0e58SBosko Milekic uma_zone_t z; 2852099a0e58SBosko Milekic uma_keg_t keg; 285308cfa56eSMark Johnston int i; 28548355f576SJeff Roberson 28558355f576SJeff Roberson bzero(zone, size); 28568355f576SJeff Roberson zone->uz_name = arg->name; 28578355f576SJeff Roberson zone->uz_ctor = arg->ctor; 28588355f576SJeff Roberson zone->uz_dtor = arg->dtor; 2859099a0e58SBosko Milekic zone->uz_init = NULL; 2860099a0e58SBosko Milekic zone->uz_fini = NULL; 2861bf965959SSean Bruno zone->uz_sleeps = 0; 286220a4e154SJeff Roberson zone->uz_bucket_size = 0; 286320a4e154SJeff Roberson zone->uz_bucket_size_min = 0; 286420a4e154SJeff Roberson zone->uz_bucket_size_max = BUCKET_MAX; 2865d4665eaaSJeff Roberson zone->uz_flags = (arg->flags & UMA_ZONE_SMR); 28662f891cd5SPawel Jakub Dawidek zone->uz_warning = NULL; 2867ab3185d1SJeff Roberson /* The domain structures follow the cpu structures. */ 2868c6fd3e23SJeff Roberson zone->uz_bucket_max = ULONG_MAX; 28692f891cd5SPawel Jakub Dawidek timevalclear(&zone->uz_ratecheck); 2870af526374SJeff Roberson 287120a4e154SJeff Roberson /* Count the number of duplicate names. */ 287220a4e154SJeff Roberson cnt.name = arg->name; 287320a4e154SJeff Roberson cnt.count = 0; 287420a4e154SJeff Roberson zone_foreach(zone_count, &cnt); 287520a4e154SJeff Roberson zone->uz_namecnt = cnt.count; 287691d947bfSJeff Roberson ZONE_CROSS_LOCK_INIT(zone); 28772efcc8cbSGleb Smirnoff 2878c6fd3e23SJeff Roberson for (i = 0; i < vm_ndomains; i++) { 2879c6fd3e23SJeff Roberson zdom = ZDOM_GET(zone, i); 2880c6fd3e23SJeff Roberson ZDOM_LOCK_INIT(zone, zdom, (arg->flags & UMA_ZONE_MTXCLASS)); 2881c6fd3e23SJeff Roberson STAILQ_INIT(&zdom->uzd_buckets); 2882c6fd3e23SJeff Roberson } 288308cfa56eSMark Johnston 288410094910SMark Johnston #if defined(INVARIANTS) && !defined(KASAN) && !defined(KMSAN) 2885ca293436SRyan Libby if (arg->uminit == trash_init && arg->fini == trash_fini) 2886cc7ce83aSJeff Roberson zone->uz_flags |= UMA_ZFLAG_TRASH | UMA_ZFLAG_CTORDTOR; 288709c8cb71SMark Johnston #elif defined(KASAN) 288809c8cb71SMark Johnston if ((arg->flags & (UMA_ZONE_NOFREE | UMA_ZFLAG_CACHE)) != 0) 288909c8cb71SMark Johnston arg->flags |= UMA_ZONE_NOKASAN; 2890ca293436SRyan Libby #endif 2891ca293436SRyan Libby 28920095a784SJeff Roberson /* 28930095a784SJeff Roberson * This is a pure cache zone, no kegs. 28940095a784SJeff Roberson */ 28950095a784SJeff Roberson if (arg->import) { 2896727c6918SJeff Roberson KASSERT((arg->flags & UMA_ZFLAG_CACHE) != 0, 2897727c6918SJeff Roberson ("zone_ctor: Import specified for non-cache zone.")); 28986fd34d6fSJeff Roberson zone->uz_flags = arg->flags; 2899af526374SJeff Roberson zone->uz_size = arg->size; 29000095a784SJeff Roberson zone->uz_import = arg->import; 29010095a784SJeff Roberson zone->uz_release = arg->release; 29020095a784SJeff Roberson zone->uz_arg = arg->arg; 2903c6fd3e23SJeff Roberson #ifdef NUMA 2904c6fd3e23SJeff Roberson /* 2905c6fd3e23SJeff Roberson * Cache zones are round-robin unless a policy is 2906c6fd3e23SJeff Roberson * specified because they may have incompatible 2907c6fd3e23SJeff Roberson * constraints. 2908c6fd3e23SJeff Roberson */ 2909c6fd3e23SJeff Roberson if ((zone->uz_flags & UMA_ZONE_FIRSTTOUCH) == 0) 2910c6fd3e23SJeff Roberson zone->uz_flags |= UMA_ZONE_ROUNDROBIN; 2911c6fd3e23SJeff Roberson #endif 2912111fbcd5SBryan Venteicher rw_wlock(&uma_rwlock); 291303175483SAlexander Motin LIST_INSERT_HEAD(&uma_cachezones, zone, uz_link); 2914111fbcd5SBryan Venteicher rw_wunlock(&uma_rwlock); 2915af526374SJeff Roberson goto out; 29160095a784SJeff Roberson } 29170095a784SJeff Roberson 29180095a784SJeff Roberson /* 29190095a784SJeff Roberson * Use the regular zone/keg/slab allocator. 29200095a784SJeff Roberson */ 2921b75c4efcSAndrew Turner zone->uz_import = zone_import; 2922b75c4efcSAndrew Turner zone->uz_release = zone_release; 29230095a784SJeff Roberson zone->uz_arg = zone; 2924bb15d1c7SGleb Smirnoff keg = arg->keg; 29250095a784SJeff Roberson 2926099a0e58SBosko Milekic if (arg->flags & UMA_ZONE_SECONDARY) { 292720a4e154SJeff Roberson KASSERT((zone->uz_flags & UMA_ZONE_SECONDARY) == 0, 292820a4e154SJeff Roberson ("Secondary zone requested UMA_ZFLAG_INTERNAL")); 2929099a0e58SBosko Milekic KASSERT(arg->keg != NULL, ("Secondary zone on zero'd keg")); 29308355f576SJeff Roberson zone->uz_init = arg->uminit; 2931e221e841SJeff Roberson zone->uz_fini = arg->fini; 2932e20a199fSJeff Roberson zone->uz_flags |= UMA_ZONE_SECONDARY; 2933111fbcd5SBryan Venteicher rw_wlock(&uma_rwlock); 2934099a0e58SBosko Milekic ZONE_LOCK(zone); 2935099a0e58SBosko Milekic LIST_FOREACH(z, &keg->uk_zones, uz_link) { 2936099a0e58SBosko Milekic if (LIST_NEXT(z, uz_link) == NULL) { 2937099a0e58SBosko Milekic LIST_INSERT_AFTER(z, zone, uz_link); 2938099a0e58SBosko Milekic break; 2939099a0e58SBosko Milekic } 2940099a0e58SBosko Milekic } 2941099a0e58SBosko Milekic ZONE_UNLOCK(zone); 2942111fbcd5SBryan Venteicher rw_wunlock(&uma_rwlock); 2943e20a199fSJeff Roberson } else if (keg == NULL) { 2944e20a199fSJeff Roberson if ((keg = uma_kcreate(zone, arg->size, arg->uminit, arg->fini, 2945e20a199fSJeff Roberson arg->align, arg->flags)) == NULL) 2946b23f72e9SBrian Feldman return (ENOMEM); 2947099a0e58SBosko Milekic } else { 2948099a0e58SBosko Milekic struct uma_kctor_args karg; 2949b23f72e9SBrian Feldman int error; 2950099a0e58SBosko Milekic 2951099a0e58SBosko Milekic /* We should only be here from uma_startup() */ 2952099a0e58SBosko Milekic karg.size = arg->size; 2953099a0e58SBosko Milekic karg.uminit = arg->uminit; 2954099a0e58SBosko Milekic karg.fini = arg->fini; 2955099a0e58SBosko Milekic karg.align = arg->align; 2956d4665eaaSJeff Roberson karg.flags = (arg->flags & ~UMA_ZONE_SMR); 2957099a0e58SBosko Milekic karg.zone = zone; 2958b23f72e9SBrian Feldman error = keg_ctor(arg->keg, sizeof(struct uma_keg), &karg, 2959b23f72e9SBrian Feldman flags); 2960b23f72e9SBrian Feldman if (error) 2961b23f72e9SBrian Feldman return (error); 2962099a0e58SBosko Milekic } 29630095a784SJeff Roberson 296420a4e154SJeff Roberson /* Inherit properties from the keg. */ 2965bb15d1c7SGleb Smirnoff zone->uz_keg = keg; 2966e20a199fSJeff Roberson zone->uz_size = keg->uk_size; 2967e20a199fSJeff Roberson zone->uz_flags |= (keg->uk_flags & 2968e20a199fSJeff Roberson (UMA_ZONE_INHERIT | UMA_ZFLAG_INHERIT)); 29698355f576SJeff Roberson 297020a4e154SJeff Roberson out: 2971dc2b3205SMark Johnston if (booted >= BOOT_PCPU) { 297220a4e154SJeff Roberson zone_alloc_counters(zone, NULL); 2973dc2b3205SMark Johnston if (booted >= BOOT_RUNNING) 297420a4e154SJeff Roberson zone_alloc_sysctl(zone, NULL); 297520a4e154SJeff Roberson } else { 297620a4e154SJeff Roberson zone->uz_allocs = EARLY_COUNTER; 297720a4e154SJeff Roberson zone->uz_frees = EARLY_COUNTER; 297820a4e154SJeff Roberson zone->uz_fails = EARLY_COUNTER; 2979099a0e58SBosko Milekic } 29808355f576SJeff Roberson 2981d4665eaaSJeff Roberson /* Caller requests a private SMR context. */ 2982d4665eaaSJeff Roberson if ((zone->uz_flags & UMA_ZONE_SMR) != 0) 2983226dd6dbSJeff Roberson zone->uz_smr = smr_create(zone->uz_name, 0, 0); 2984d4665eaaSJeff Roberson 29857e28037aSMark Johnston KASSERT((arg->flags & (UMA_ZONE_MAXBUCKET | UMA_ZONE_NOBUCKET)) != 29867e28037aSMark Johnston (UMA_ZONE_MAXBUCKET | UMA_ZONE_NOBUCKET), 29877e28037aSMark Johnston ("Invalid zone flag combination")); 298820a4e154SJeff Roberson if (arg->flags & UMA_ZFLAG_INTERNAL) 298920a4e154SJeff Roberson zone->uz_bucket_size_max = zone->uz_bucket_size = 0; 299020a4e154SJeff Roberson if ((arg->flags & UMA_ZONE_MAXBUCKET) != 0) 299120a4e154SJeff Roberson zone->uz_bucket_size = BUCKET_MAX; 299220a4e154SJeff Roberson else if ((arg->flags & UMA_ZONE_NOBUCKET) != 0) 299320a4e154SJeff Roberson zone->uz_bucket_size = 0; 29947e28037aSMark Johnston else 299520a4e154SJeff Roberson zone->uz_bucket_size = bucket_select(zone->uz_size); 299620a4e154SJeff Roberson zone->uz_bucket_size_min = zone->uz_bucket_size; 2997cc7ce83aSJeff Roberson if (zone->uz_dtor != NULL || zone->uz_ctor != NULL) 2998cc7ce83aSJeff Roberson zone->uz_flags |= UMA_ZFLAG_CTORDTOR; 2999cc7ce83aSJeff Roberson zone_update_caches(zone); 3000fc03d22bSJeff Roberson 3001b23f72e9SBrian Feldman return (0); 30028355f576SJeff Roberson } 30038355f576SJeff Roberson 30048355f576SJeff Roberson /* 3005099a0e58SBosko Milekic * Keg header dtor. This frees all data, destroys locks, frees the hash 3006099a0e58SBosko Milekic * table and removes the keg from the global list. 30079c2cd7e5SJeff Roberson * 30089c2cd7e5SJeff Roberson * Arguments/Returns follow uma_dtor specifications 30099c2cd7e5SJeff Roberson * udata unused 30109c2cd7e5SJeff Roberson */ 3011099a0e58SBosko Milekic static void 3012099a0e58SBosko Milekic keg_dtor(void *arg, int size, void *udata) 3013099a0e58SBosko Milekic { 3014099a0e58SBosko Milekic uma_keg_t keg; 30158b987a77SJeff Roberson uint32_t free, pages; 30168b987a77SJeff Roberson int i; 30179c2cd7e5SJeff Roberson 3018099a0e58SBosko Milekic keg = (uma_keg_t)arg; 30198b987a77SJeff Roberson free = pages = 0; 30208b987a77SJeff Roberson for (i = 0; i < vm_ndomains; i++) { 30214ab3aee8SMark Johnston free += keg->uk_domain[i].ud_free_items; 30228b987a77SJeff Roberson pages += keg->uk_domain[i].ud_pages; 30238b987a77SJeff Roberson KEG_LOCK_FINI(keg, i); 3024099a0e58SBosko Milekic } 30257e240677SRyan Libby if (pages != 0) 30268b987a77SJeff Roberson printf("Freed UMA keg (%s) was not empty (%u items). " 30278b987a77SJeff Roberson " Lost %u pages of memory.\n", 30288b987a77SJeff Roberson keg->uk_name ? keg->uk_name : "", 30297e240677SRyan Libby pages / keg->uk_ppera * keg->uk_ipers - free, pages); 3030099a0e58SBosko Milekic 3031099a0e58SBosko Milekic hash_free(&keg->uk_hash); 3032099a0e58SBosko Milekic } 3033099a0e58SBosko Milekic 3034099a0e58SBosko Milekic /* 3035099a0e58SBosko Milekic * Zone header dtor. 3036099a0e58SBosko Milekic * 3037099a0e58SBosko Milekic * Arguments/Returns follow uma_dtor specifications 3038099a0e58SBosko Milekic * udata unused 3039099a0e58SBosko Milekic */ 30409c2cd7e5SJeff Roberson static void 30419c2cd7e5SJeff Roberson zone_dtor(void *arg, int size, void *udata) 30429c2cd7e5SJeff Roberson { 30439c2cd7e5SJeff Roberson uma_zone_t zone; 3044099a0e58SBosko Milekic uma_keg_t keg; 3045c6fd3e23SJeff Roberson int i; 30469c2cd7e5SJeff Roberson 30479c2cd7e5SJeff Roberson zone = (uma_zone_t)arg; 30489643769aSJeff Roberson 304920a4e154SJeff Roberson sysctl_remove_oid(zone->uz_oid, 1, 1); 305020a4e154SJeff Roberson 3051e20a199fSJeff Roberson if (!(zone->uz_flags & UMA_ZFLAG_INTERNAL)) 30529643769aSJeff Roberson cache_drain(zone); 3053099a0e58SBosko Milekic 3054111fbcd5SBryan Venteicher rw_wlock(&uma_rwlock); 3055099a0e58SBosko Milekic LIST_REMOVE(zone, uz_link); 3056111fbcd5SBryan Venteicher rw_wunlock(&uma_rwlock); 30577b516613SJonathan T. Looney if ((zone->uz_flags & (UMA_ZONE_SECONDARY | UMA_ZFLAG_CACHE)) == 0) { 30587b516613SJonathan T. Looney keg = zone->uz_keg; 30597b516613SJonathan T. Looney keg->uk_reserve = 0; 30607b516613SJonathan T. Looney } 3061aabe13f1SMark Johnston zone_reclaim(zone, UMA_ANYDOMAIN, M_WAITOK, true); 3062c6fd3e23SJeff Roberson 3063e20a199fSJeff Roberson /* 3064323ad386STycho Nightingale * We only destroy kegs from non secondary/non cache zones. 3065e20a199fSJeff Roberson */ 3066323ad386STycho Nightingale if ((zone->uz_flags & (UMA_ZONE_SECONDARY | UMA_ZFLAG_CACHE)) == 0) { 3067323ad386STycho Nightingale keg = zone->uz_keg; 3068111fbcd5SBryan Venteicher rw_wlock(&uma_rwlock); 3069099a0e58SBosko Milekic LIST_REMOVE(keg, uk_link); 3070111fbcd5SBryan Venteicher rw_wunlock(&uma_rwlock); 30710095a784SJeff Roberson zone_free_item(kegs, keg, NULL, SKIP_NONE); 30729c2cd7e5SJeff Roberson } 30732efcc8cbSGleb Smirnoff counter_u64_free(zone->uz_allocs); 30742efcc8cbSGleb Smirnoff counter_u64_free(zone->uz_frees); 30752efcc8cbSGleb Smirnoff counter_u64_free(zone->uz_fails); 3076c6fd3e23SJeff Roberson counter_u64_free(zone->uz_xdomain); 307720a4e154SJeff Roberson free(zone->uz_ctlname, M_UMA); 3078c6fd3e23SJeff Roberson for (i = 0; i < vm_ndomains; i++) 3079c6fd3e23SJeff Roberson ZDOM_LOCK_FINI(ZDOM_GET(zone, i)); 308091d947bfSJeff Roberson ZONE_CROSS_LOCK_FINI(zone); 3081099a0e58SBosko Milekic } 3082099a0e58SBosko Milekic 3083a81c400eSJeff Roberson static void 3084a81c400eSJeff Roberson zone_foreach_unlocked(void (*zfunc)(uma_zone_t, void *arg), void *arg) 3085a81c400eSJeff Roberson { 3086a81c400eSJeff Roberson uma_keg_t keg; 3087a81c400eSJeff Roberson uma_zone_t zone; 3088a81c400eSJeff Roberson 3089a81c400eSJeff Roberson LIST_FOREACH(keg, &uma_kegs, uk_link) { 3090a81c400eSJeff Roberson LIST_FOREACH(zone, &keg->uk_zones, uz_link) 3091a81c400eSJeff Roberson zfunc(zone, arg); 3092a81c400eSJeff Roberson } 3093a81c400eSJeff Roberson LIST_FOREACH(zone, &uma_cachezones, uz_link) 3094a81c400eSJeff Roberson zfunc(zone, arg); 3095a81c400eSJeff Roberson } 3096a81c400eSJeff Roberson 30979c2cd7e5SJeff Roberson /* 30988355f576SJeff Roberson * Traverses every zone in the system and calls a callback 30998355f576SJeff Roberson * 31008355f576SJeff Roberson * Arguments: 31018355f576SJeff Roberson * zfunc A pointer to a function which accepts a zone 31028355f576SJeff Roberson * as an argument. 31038355f576SJeff Roberson * 31048355f576SJeff Roberson * Returns: 31058355f576SJeff Roberson * Nothing 31068355f576SJeff Roberson */ 31078355f576SJeff Roberson static void 310820a4e154SJeff Roberson zone_foreach(void (*zfunc)(uma_zone_t, void *arg), void *arg) 31098355f576SJeff Roberson { 31108355f576SJeff Roberson 3111111fbcd5SBryan Venteicher rw_rlock(&uma_rwlock); 3112a81c400eSJeff Roberson zone_foreach_unlocked(zfunc, arg); 3113111fbcd5SBryan Venteicher rw_runlock(&uma_rwlock); 31148355f576SJeff Roberson } 31158355f576SJeff Roberson 3116f4bef67cSGleb Smirnoff /* 3117a81c400eSJeff Roberson * Initialize the kernel memory allocator. This is done after pages can be 3118a81c400eSJeff Roberson * allocated but before general KVA is available. 3119f4bef67cSGleb Smirnoff */ 3120a81c400eSJeff Roberson void 3121a81c400eSJeff Roberson uma_startup1(vm_offset_t virtual_avail) 3122f4bef67cSGleb Smirnoff { 3123a81c400eSJeff Roberson struct uma_zctor_args args; 3124a81c400eSJeff Roberson size_t ksize, zsize, size; 3125c8b0a88bSJeff Roberson uma_keg_t primarykeg; 3126a81c400eSJeff Roberson uintptr_t m; 312781302f1dSMark Johnston int domain; 3128a81c400eSJeff Roberson uint8_t pflag; 3129a81c400eSJeff Roberson 3130a81c400eSJeff Roberson bootstart = bootmem = virtual_avail; 3131a81c400eSJeff Roberson 3132a81c400eSJeff Roberson rw_init(&uma_rwlock, "UMA lock"); 3133a81c400eSJeff Roberson sx_init(&uma_reclaim_lock, "umareclaim"); 3134f4bef67cSGleb Smirnoff 3135f4bef67cSGleb Smirnoff ksize = sizeof(struct uma_keg) + 3136f4bef67cSGleb Smirnoff (sizeof(struct uma_domain) * vm_ndomains); 313779c9f942SJeff Roberson ksize = roundup(ksize, UMA_SUPER_ALIGN); 3138f4bef67cSGleb Smirnoff zsize = sizeof(struct uma_zone) + 3139f4bef67cSGleb Smirnoff (sizeof(struct uma_cache) * (mp_maxid + 1)) + 3140f4bef67cSGleb Smirnoff (sizeof(struct uma_zone_domain) * vm_ndomains); 314179c9f942SJeff Roberson zsize = roundup(zsize, UMA_SUPER_ALIGN); 3142f4bef67cSGleb Smirnoff 3143a81c400eSJeff Roberson /* Allocate the zone of zones, zone of kegs, and zone of zones keg. */ 3144a81c400eSJeff Roberson size = (zsize * 2) + ksize; 314581302f1dSMark Johnston for (domain = 0; domain < vm_ndomains; domain++) { 314681302f1dSMark Johnston m = (uintptr_t)startup_alloc(NULL, size, domain, &pflag, 314781302f1dSMark Johnston M_NOWAIT | M_ZERO); 314881302f1dSMark Johnston if (m != 0) 314981302f1dSMark Johnston break; 315081302f1dSMark Johnston } 3151ab3185d1SJeff Roberson zones = (uma_zone_t)m; 315279c9f942SJeff Roberson m += zsize; 3153ab3185d1SJeff Roberson kegs = (uma_zone_t)m; 315479c9f942SJeff Roberson m += zsize; 3155c8b0a88bSJeff Roberson primarykeg = (uma_keg_t)m; 3156ab3185d1SJeff Roberson 3157099a0e58SBosko Milekic /* "manually" create the initial zone */ 31580095a784SJeff Roberson memset(&args, 0, sizeof(args)); 3159099a0e58SBosko Milekic args.name = "UMA Kegs"; 3160ab3185d1SJeff Roberson args.size = ksize; 3161099a0e58SBosko Milekic args.ctor = keg_ctor; 3162099a0e58SBosko Milekic args.dtor = keg_dtor; 31638355f576SJeff Roberson args.uminit = zero_init; 31648355f576SJeff Roberson args.fini = NULL; 3165c8b0a88bSJeff Roberson args.keg = primarykeg; 316679c9f942SJeff Roberson args.align = UMA_SUPER_ALIGN - 1; 3167b60f5b79SJeff Roberson args.flags = UMA_ZFLAG_INTERNAL; 3168ab3185d1SJeff Roberson zone_ctor(kegs, zsize, &args, M_WAITOK); 31698355f576SJeff Roberson 3170099a0e58SBosko Milekic args.name = "UMA Zones"; 3171f4bef67cSGleb Smirnoff args.size = zsize; 3172099a0e58SBosko Milekic args.ctor = zone_ctor; 3173099a0e58SBosko Milekic args.dtor = zone_dtor; 3174099a0e58SBosko Milekic args.uminit = zero_init; 3175099a0e58SBosko Milekic args.fini = NULL; 3176099a0e58SBosko Milekic args.keg = NULL; 317779c9f942SJeff Roberson args.align = UMA_SUPER_ALIGN - 1; 3178099a0e58SBosko Milekic args.flags = UMA_ZFLAG_INTERNAL; 3179ab3185d1SJeff Roberson zone_ctor(zones, zsize, &args, M_WAITOK); 3180099a0e58SBosko Milekic 31819b8db4d0SRyan Libby /* Now make zones for slab headers */ 31829b8db4d0SRyan Libby slabzones[0] = uma_zcreate("UMA Slabs 0", SLABZONE0_SIZE, 31839b8db4d0SRyan Libby NULL, NULL, NULL, NULL, UMA_ALIGN_PTR, UMA_ZFLAG_INTERNAL); 31849b8db4d0SRyan Libby slabzones[1] = uma_zcreate("UMA Slabs 1", SLABZONE1_SIZE, 31851e0701e1SJeff Roberson NULL, NULL, NULL, NULL, UMA_ALIGN_PTR, UMA_ZFLAG_INTERNAL); 31868355f576SJeff Roberson 31878355f576SJeff Roberson hashzone = uma_zcreate("UMA Hash", 31888355f576SJeff Roberson sizeof(struct slabhead *) * UMA_HASH_SIZE_INIT, 31891e0701e1SJeff Roberson NULL, NULL, NULL, NULL, UMA_ALIGN_PTR, UMA_ZFLAG_INTERNAL); 31908355f576SJeff Roberson 3191a81c400eSJeff Roberson bucket_init(); 3192d4665eaaSJeff Roberson smr_init(); 31938355f576SJeff Roberson } 31948355f576SJeff Roberson 3195da76d349SBojan Novković #ifndef UMA_USE_DMAP 3196a81c400eSJeff Roberson extern void vm_radix_reserve_kva(void); 3197f4bef67cSGleb Smirnoff #endif 3198f4bef67cSGleb Smirnoff 3199a81c400eSJeff Roberson /* 3200a81c400eSJeff Roberson * Advertise the availability of normal kva allocations and switch to 3201a81c400eSJeff Roberson * the default back-end allocator. Marks the KVA we consumed on startup 3202a81c400eSJeff Roberson * as used in the map. 3203a81c400eSJeff Roberson */ 32048355f576SJeff Roberson void 320599571dc3SJeff Roberson uma_startup2(void) 32068355f576SJeff Roberson { 3207f4bef67cSGleb Smirnoff 3208530cc6a2SJeff Roberson if (bootstart != bootmem) { 3209a81c400eSJeff Roberson vm_map_lock(kernel_map); 3210a81c400eSJeff Roberson (void)vm_map_insert(kernel_map, NULL, 0, bootstart, bootmem, 3211a81c400eSJeff Roberson VM_PROT_RW, VM_PROT_RW, MAP_NOFAULT); 3212a81c400eSJeff Roberson vm_map_unlock(kernel_map); 3213a81c400eSJeff Roberson } 3214a81c400eSJeff Roberson 3215da76d349SBojan Novković #ifndef UMA_USE_DMAP 3216a81c400eSJeff Roberson /* Set up radix zone to use noobj_alloc. */ 3217a81c400eSJeff Roberson vm_radix_reserve_kva(); 3218f7d35785SGleb Smirnoff #endif 3219a81c400eSJeff Roberson 3220a81c400eSJeff Roberson booted = BOOT_KVA; 3221a81c400eSJeff Roberson zone_foreach_unlocked(zone_kva_available, NULL); 3222f4bef67cSGleb Smirnoff bucket_enable(); 32238355f576SJeff Roberson } 32248355f576SJeff Roberson 3225a81c400eSJeff Roberson /* 3226dc2b3205SMark Johnston * Allocate counters as early as possible so that boot-time allocations are 3227dc2b3205SMark Johnston * accounted more precisely. 3228dc2b3205SMark Johnston */ 3229dc2b3205SMark Johnston static void 3230dc2b3205SMark Johnston uma_startup_pcpu(void *arg __unused) 3231dc2b3205SMark Johnston { 3232dc2b3205SMark Johnston 3233dc2b3205SMark Johnston zone_foreach_unlocked(zone_alloc_counters, NULL); 3234dc2b3205SMark Johnston booted = BOOT_PCPU; 3235dc2b3205SMark Johnston } 3236dc2b3205SMark Johnston SYSINIT(uma_startup_pcpu, SI_SUB_COUNTER, SI_ORDER_ANY, uma_startup_pcpu, NULL); 3237dc2b3205SMark Johnston 3238dc2b3205SMark Johnston /* 3239a81c400eSJeff Roberson * Finish our initialization steps. 3240a81c400eSJeff Roberson */ 32418355f576SJeff Roberson static void 3242dc2b3205SMark Johnston uma_startup3(void *arg __unused) 32438355f576SJeff Roberson { 32441431a748SGleb Smirnoff 3245c5deaf04SGleb Smirnoff #ifdef INVARIANTS 3246c5deaf04SGleb Smirnoff TUNABLE_INT_FETCH("vm.debug.divisor", &dbg_divisor); 3247c5deaf04SGleb Smirnoff uma_dbg_cnt = counter_u64_alloc(M_WAITOK); 3248c5deaf04SGleb Smirnoff uma_skip_cnt = counter_u64_alloc(M_WAITOK); 3249c5deaf04SGleb Smirnoff #endif 3250a81c400eSJeff Roberson zone_foreach_unlocked(zone_alloc_sysctl, NULL); 3251c5deaf04SGleb Smirnoff booted = BOOT_RUNNING; 3252860bb7a0SMark Johnston 3253860bb7a0SMark Johnston EVENTHANDLER_REGISTER(shutdown_post_sync, uma_shutdown, NULL, 3254860bb7a0SMark Johnston EVENTHANDLER_PRI_FIRST); 3255860bb7a0SMark Johnston } 3256dc2b3205SMark Johnston SYSINIT(uma_startup3, SI_SUB_VM_CONF, SI_ORDER_SECOND, uma_startup3, NULL); 3257860bb7a0SMark Johnston 3258860bb7a0SMark Johnston static void 325993cd28eaSMark Johnston uma_startup4(void *arg __unused) 326093cd28eaSMark Johnston { 326193cd28eaSMark Johnston TIMEOUT_TASK_INIT(taskqueue_thread, &uma_timeout_task, 0, uma_timeout, 326293cd28eaSMark Johnston NULL); 326393cd28eaSMark Johnston taskqueue_enqueue_timeout(taskqueue_thread, &uma_timeout_task, 326493cd28eaSMark Johnston UMA_TIMEOUT * hz); 326593cd28eaSMark Johnston } 326693cd28eaSMark Johnston SYSINIT(uma_startup4, SI_SUB_TASKQ, SI_ORDER_ANY, uma_startup4, NULL); 326793cd28eaSMark Johnston 326893cd28eaSMark Johnston static void 3269860bb7a0SMark Johnston uma_shutdown(void) 3270860bb7a0SMark Johnston { 3271860bb7a0SMark Johnston 3272860bb7a0SMark Johnston booted = BOOT_SHUTDOWN; 32738355f576SJeff Roberson } 32748355f576SJeff Roberson 3275e20a199fSJeff Roberson static uma_keg_t 3276099a0e58SBosko Milekic uma_kcreate(uma_zone_t zone, size_t size, uma_init uminit, uma_fini fini, 327785dcf349SGleb Smirnoff int align, uint32_t flags) 3278099a0e58SBosko Milekic { 3279099a0e58SBosko Milekic struct uma_kctor_args args; 3280099a0e58SBosko Milekic 3281099a0e58SBosko Milekic args.size = size; 3282099a0e58SBosko Milekic args.uminit = uminit; 3283099a0e58SBosko Milekic args.fini = fini; 3284e557eafeSOlivier Certner args.align = align; 3285099a0e58SBosko Milekic args.flags = flags; 3286099a0e58SBosko Milekic args.zone = zone; 3287ab3185d1SJeff Roberson return (zone_alloc_item(kegs, &args, UMA_ANYDOMAIN, M_WAITOK)); 3288099a0e58SBosko Milekic } 3289099a0e58SBosko Milekic 329087090f5eSOlivier Certner 329187090f5eSOlivier Certner static void 329287090f5eSOlivier Certner check_align_mask(unsigned int mask) 32931e319f6dSRobert Watson { 32941e319f6dSRobert Watson 329587090f5eSOlivier Certner KASSERT(powerof2(mask + 1), 329687090f5eSOlivier Certner ("UMA: %s: Not the mask of a power of 2 (%#x)", __func__, mask)); 32973d8f548bSOlivier Certner /* 32983d8f548bSOlivier Certner * Make sure the stored align mask doesn't have its highest bit set, 32993d8f548bSOlivier Certner * which would cause implementation-defined behavior when passing it as 33003d8f548bSOlivier Certner * the 'align' argument of uma_zcreate(). Such very large alignments do 33013d8f548bSOlivier Certner * not make sense anyway. 33023d8f548bSOlivier Certner */ 330387090f5eSOlivier Certner KASSERT(mask <= INT_MAX, 330487090f5eSOlivier Certner ("UMA: %s: Mask too big (%#x)", __func__, mask)); 330587090f5eSOlivier Certner } 330687090f5eSOlivier Certner 330787090f5eSOlivier Certner /* Public functions */ 330887090f5eSOlivier Certner /* See uma.h */ 330987090f5eSOlivier Certner void 331087090f5eSOlivier Certner uma_set_cache_align_mask(unsigned int mask) 331187090f5eSOlivier Certner { 331287090f5eSOlivier Certner 331387090f5eSOlivier Certner check_align_mask(mask); 331487090f5eSOlivier Certner uma_cache_align_mask = mask; 3315dc8f7692SOlivier Certner } 3316dc8f7692SOlivier Certner 3317dc8f7692SOlivier Certner /* Returns the alignment mask to use to request cache alignment. */ 33183d8f548bSOlivier Certner unsigned int 3319dc8f7692SOlivier Certner uma_get_cache_align_mask(void) 3320dc8f7692SOlivier Certner { 3321dc8f7692SOlivier Certner return (uma_cache_align_mask); 33221e319f6dSRobert Watson } 33231e319f6dSRobert Watson 33241e319f6dSRobert Watson /* See uma.h */ 33258355f576SJeff Roberson uma_zone_t 3326bb196eb4SMatthew D Fleming uma_zcreate(const char *name, size_t size, uma_ctor ctor, uma_dtor dtor, 332785dcf349SGleb Smirnoff uma_init uminit, uma_fini fini, int align, uint32_t flags) 33288355f576SJeff Roberson 33298355f576SJeff Roberson { 33308355f576SJeff Roberson struct uma_zctor_args args; 333195c4bf75SKonstantin Belousov uma_zone_t res; 33328355f576SJeff Roberson 333387090f5eSOlivier Certner check_align_mask(align); 3334a5a35578SJohn Baldwin 33358355f576SJeff Roberson /* This stuff is essential for the zone ctor */ 33360095a784SJeff Roberson memset(&args, 0, sizeof(args)); 33378355f576SJeff Roberson args.name = name; 33388355f576SJeff Roberson args.size = size; 33398355f576SJeff Roberson args.ctor = ctor; 33408355f576SJeff Roberson args.dtor = dtor; 33418355f576SJeff Roberson args.uminit = uminit; 33428355f576SJeff Roberson args.fini = fini; 334310094910SMark Johnston #if defined(INVARIANTS) && !defined(KASAN) && !defined(KMSAN) 3344afc6dc36SJohn-Mark Gurney /* 3345ca293436SRyan Libby * Inject procedures which check for memory use after free if we are 3346ca293436SRyan Libby * allowed to scramble the memory while it is not allocated. This 3347ca293436SRyan Libby * requires that: UMA is actually able to access the memory, no init 3348ca293436SRyan Libby * or fini procedures, no dependency on the initial value of the 3349ca293436SRyan Libby * memory, and no (legitimate) use of the memory after free. Note, 3350ca293436SRyan Libby * the ctor and dtor do not need to be empty. 3351afc6dc36SJohn-Mark Gurney */ 335254c5ae80SRyan Libby if ((!(flags & (UMA_ZONE_ZINIT | UMA_ZONE_NOTOUCH | 335354c5ae80SRyan Libby UMA_ZONE_NOFREE))) && uminit == NULL && fini == NULL) { 3354afc6dc36SJohn-Mark Gurney args.uminit = trash_init; 3355afc6dc36SJohn-Mark Gurney args.fini = trash_fini; 3356afc6dc36SJohn-Mark Gurney } 3357afc6dc36SJohn-Mark Gurney #endif 33588355f576SJeff Roberson args.align = align; 33598355f576SJeff Roberson args.flags = flags; 3360099a0e58SBosko Milekic args.keg = NULL; 3361099a0e58SBosko Milekic 3362aabe13f1SMark Johnston sx_xlock(&uma_reclaim_lock); 3363ab3185d1SJeff Roberson res = zone_alloc_item(zones, &args, UMA_ANYDOMAIN, M_WAITOK); 3364aabe13f1SMark Johnston sx_xunlock(&uma_reclaim_lock); 3365a81c400eSJeff Roberson 336695c4bf75SKonstantin Belousov return (res); 3367099a0e58SBosko Milekic } 3368099a0e58SBosko Milekic 3369099a0e58SBosko Milekic /* See uma.h */ 3370099a0e58SBosko Milekic uma_zone_t 33710464f16eSMark Johnston uma_zsecond_create(const char *name, uma_ctor ctor, uma_dtor dtor, 3372c8b0a88bSJeff Roberson uma_init zinit, uma_fini zfini, uma_zone_t primary) 3373099a0e58SBosko Milekic { 3374099a0e58SBosko Milekic struct uma_zctor_args args; 3375e20a199fSJeff Roberson uma_keg_t keg; 337695c4bf75SKonstantin Belousov uma_zone_t res; 3377099a0e58SBosko Milekic 3378c8b0a88bSJeff Roberson keg = primary->uz_keg; 33790095a784SJeff Roberson memset(&args, 0, sizeof(args)); 3380099a0e58SBosko Milekic args.name = name; 3381e20a199fSJeff Roberson args.size = keg->uk_size; 3382099a0e58SBosko Milekic args.ctor = ctor; 3383099a0e58SBosko Milekic args.dtor = dtor; 3384099a0e58SBosko Milekic args.uminit = zinit; 3385099a0e58SBosko Milekic args.fini = zfini; 3386e20a199fSJeff Roberson args.align = keg->uk_align; 3387e20a199fSJeff Roberson args.flags = keg->uk_flags | UMA_ZONE_SECONDARY; 3388e20a199fSJeff Roberson args.keg = keg; 33898355f576SJeff Roberson 3390aabe13f1SMark Johnston sx_xlock(&uma_reclaim_lock); 3391ab3185d1SJeff Roberson res = zone_alloc_item(zones, &args, UMA_ANYDOMAIN, M_WAITOK); 3392aabe13f1SMark Johnston sx_xunlock(&uma_reclaim_lock); 3393a81c400eSJeff Roberson 339495c4bf75SKonstantin Belousov return (res); 33958355f576SJeff Roberson } 33968355f576SJeff Roberson 33970095a784SJeff Roberson /* See uma.h */ 33980095a784SJeff Roberson uma_zone_t 33990464f16eSMark Johnston uma_zcache_create(const char *name, int size, uma_ctor ctor, uma_dtor dtor, 34000464f16eSMark Johnston uma_init zinit, uma_fini zfini, uma_import zimport, uma_release zrelease, 34010464f16eSMark Johnston void *arg, int flags) 34020095a784SJeff Roberson { 34030095a784SJeff Roberson struct uma_zctor_args args; 34040095a784SJeff Roberson 34050095a784SJeff Roberson memset(&args, 0, sizeof(args)); 34060095a784SJeff Roberson args.name = name; 3407af526374SJeff Roberson args.size = size; 34080095a784SJeff Roberson args.ctor = ctor; 34090095a784SJeff Roberson args.dtor = dtor; 34100095a784SJeff Roberson args.uminit = zinit; 34110095a784SJeff Roberson args.fini = zfini; 34120095a784SJeff Roberson args.import = zimport; 34130095a784SJeff Roberson args.release = zrelease; 34140095a784SJeff Roberson args.arg = arg; 34150095a784SJeff Roberson args.align = 0; 3416bb15d1c7SGleb Smirnoff args.flags = flags | UMA_ZFLAG_CACHE; 34170095a784SJeff Roberson 3418ab3185d1SJeff Roberson return (zone_alloc_item(zones, &args, UMA_ANYDOMAIN, M_WAITOK)); 34190095a784SJeff Roberson } 34200095a784SJeff Roberson 34218355f576SJeff Roberson /* See uma.h */ 34229c2cd7e5SJeff Roberson void 34239c2cd7e5SJeff Roberson uma_zdestroy(uma_zone_t zone) 34249c2cd7e5SJeff Roberson { 3425f4ff923bSRobert Watson 3426860bb7a0SMark Johnston /* 3427860bb7a0SMark Johnston * Large slabs are expensive to reclaim, so don't bother doing 3428860bb7a0SMark Johnston * unnecessary work if we're shutting down. 3429860bb7a0SMark Johnston */ 3430860bb7a0SMark Johnston if (booted == BOOT_SHUTDOWN && 3431860bb7a0SMark Johnston zone->uz_fini == NULL && zone->uz_release == zone_release) 3432860bb7a0SMark Johnston return; 3433aabe13f1SMark Johnston sx_xlock(&uma_reclaim_lock); 34340095a784SJeff Roberson zone_free_item(zones, zone, NULL, SKIP_NONE); 3435aabe13f1SMark Johnston sx_xunlock(&uma_reclaim_lock); 34369c2cd7e5SJeff Roberson } 34379c2cd7e5SJeff Roberson 34388d6fbbb8SJeff Roberson void 34398d6fbbb8SJeff Roberson uma_zwait(uma_zone_t zone) 34408d6fbbb8SJeff Roberson { 34418d6fbbb8SJeff Roberson 344270260874SJeff Roberson if ((zone->uz_flags & UMA_ZONE_SMR) != 0) 344370260874SJeff Roberson uma_zfree_smr(zone, uma_zalloc_smr(zone, M_WAITOK)); 344470260874SJeff Roberson else if ((zone->uz_flags & UMA_ZONE_PCPU) != 0) 344570260874SJeff Roberson uma_zfree_pcpu(zone, uma_zalloc_pcpu(zone, M_WAITOK)); 344670260874SJeff Roberson else 344770260874SJeff Roberson uma_zfree(zone, uma_zalloc(zone, M_WAITOK)); 34488d6fbbb8SJeff Roberson } 34498d6fbbb8SJeff Roberson 34504e180881SMateusz Guzik void * 34514e180881SMateusz Guzik uma_zalloc_pcpu_arg(uma_zone_t zone, void *udata, int flags) 34524e180881SMateusz Guzik { 34533acb6572SMateusz Guzik void *item, *pcpu_item; 3454b4799947SRuslan Bukin #ifdef SMP 34554e180881SMateusz Guzik int i; 34564e180881SMateusz Guzik 34574e180881SMateusz Guzik MPASS(zone->uz_flags & UMA_ZONE_PCPU); 3458b4799947SRuslan Bukin #endif 34594e180881SMateusz Guzik item = uma_zalloc_arg(zone, udata, flags & ~M_ZERO); 34603acb6572SMateusz Guzik if (item == NULL) 34613acb6572SMateusz Guzik return (NULL); 34623acb6572SMateusz Guzik pcpu_item = zpcpu_base_to_offset(item); 34633acb6572SMateusz Guzik if (flags & M_ZERO) { 3464b4799947SRuslan Bukin #ifdef SMP 3465013072f0SMark Johnston for (i = 0; i <= mp_maxid; i++) 34663acb6572SMateusz Guzik bzero(zpcpu_get_cpu(pcpu_item, i), zone->uz_size); 3467b4799947SRuslan Bukin #else 3468b4799947SRuslan Bukin bzero(item, zone->uz_size); 3469b4799947SRuslan Bukin #endif 34704e180881SMateusz Guzik } 34713acb6572SMateusz Guzik return (pcpu_item); 34724e180881SMateusz Guzik } 34734e180881SMateusz Guzik 34744e180881SMateusz Guzik /* 34754e180881SMateusz Guzik * A stub while both regular and pcpu cases are identical. 34764e180881SMateusz Guzik */ 34774e180881SMateusz Guzik void 34783acb6572SMateusz Guzik uma_zfree_pcpu_arg(uma_zone_t zone, void *pcpu_item, void *udata) 34794e180881SMateusz Guzik { 34803acb6572SMateusz Guzik void *item; 34814e180881SMateusz Guzik 3482c5b7751fSIan Lepore #ifdef SMP 34834e180881SMateusz Guzik MPASS(zone->uz_flags & UMA_ZONE_PCPU); 3484c5b7751fSIan Lepore #endif 3485b8f7267dSKristof Provost 3486b8f7267dSKristof Provost /* uma_zfree_pcu_*(..., NULL) does nothing, to match free(9). */ 3487b8f7267dSKristof Provost if (pcpu_item == NULL) 3488b8f7267dSKristof Provost return; 3489b8f7267dSKristof Provost 34903acb6572SMateusz Guzik item = zpcpu_offset_to_base(pcpu_item); 34914e180881SMateusz Guzik uma_zfree_arg(zone, item, udata); 34924e180881SMateusz Guzik } 34934e180881SMateusz Guzik 3494d4665eaaSJeff Roberson static inline void * 3495d4665eaaSJeff Roberson item_ctor(uma_zone_t zone, int uz_flags, int size, void *udata, int flags, 3496d4665eaaSJeff Roberson void *item) 3497beb8beefSJeff Roberson { 3498beb8beefSJeff Roberson #ifdef INVARIANTS 3499ca293436SRyan Libby bool skipdbg; 350009c8cb71SMark Johnston #endif 3501beb8beefSJeff Roberson 350209c8cb71SMark Johnston kasan_mark_item_valid(zone, item); 350310094910SMark Johnston kmsan_mark_item_uninitialized(zone, item); 350409c8cb71SMark Johnston 350509c8cb71SMark Johnston #ifdef INVARIANTS 3506beb8beefSJeff Roberson skipdbg = uma_dbg_zskip(zone, item); 350709c8cb71SMark Johnston if (!skipdbg && (uz_flags & UMA_ZFLAG_TRASH) != 0 && 3508ca293436SRyan Libby zone->uz_ctor != trash_ctor) 3509a03c2393SAlexander Motin trash_ctor(item, size, zone, flags); 3510beb8beefSJeff Roberson #endif 351109c8cb71SMark Johnston 3512d4665eaaSJeff Roberson /* Check flags before loading ctor pointer. */ 3513d4665eaaSJeff Roberson if (__predict_false((uz_flags & UMA_ZFLAG_CTORDTOR) != 0) && 3514d4665eaaSJeff Roberson __predict_false(zone->uz_ctor != NULL) && 3515cc7ce83aSJeff Roberson zone->uz_ctor(item, size, udata, flags) != 0) { 3516beb8beefSJeff Roberson counter_u64_add(zone->uz_fails, 1); 3517beb8beefSJeff Roberson zone_free_item(zone, item, udata, SKIP_DTOR | SKIP_CNT); 3518beb8beefSJeff Roberson return (NULL); 3519beb8beefSJeff Roberson } 3520beb8beefSJeff Roberson #ifdef INVARIANTS 3521beb8beefSJeff Roberson if (!skipdbg) 3522beb8beefSJeff Roberson uma_dbg_alloc(zone, NULL, item); 3523beb8beefSJeff Roberson #endif 35246d88d784SJeff Roberson if (__predict_false(flags & M_ZERO)) 35256d88d784SJeff Roberson return (memset(item, 0, size)); 3526beb8beefSJeff Roberson 3527beb8beefSJeff Roberson return (item); 3528beb8beefSJeff Roberson } 3529beb8beefSJeff Roberson 3530ca293436SRyan Libby static inline void 3531cc7ce83aSJeff Roberson item_dtor(uma_zone_t zone, void *item, int size, void *udata, 3532cc7ce83aSJeff Roberson enum zfreeskip skip) 3533ca293436SRyan Libby { 3534ca293436SRyan Libby #ifdef INVARIANTS 3535ca293436SRyan Libby bool skipdbg; 3536ca293436SRyan Libby 3537ca293436SRyan Libby skipdbg = uma_dbg_zskip(zone, item); 3538ca293436SRyan Libby if (skip == SKIP_NONE && !skipdbg) { 3539ca293436SRyan Libby if ((zone->uz_flags & UMA_ZONE_MALLOC) != 0) 3540ca293436SRyan Libby uma_dbg_free(zone, udata, item); 3541ca293436SRyan Libby else 3542ca293436SRyan Libby uma_dbg_free(zone, NULL, item); 3543ca293436SRyan Libby } 3544ca293436SRyan Libby #endif 3545cc7ce83aSJeff Roberson if (__predict_true(skip < SKIP_DTOR)) { 3546ca293436SRyan Libby if (zone->uz_dtor != NULL) 3547cc7ce83aSJeff Roberson zone->uz_dtor(item, size, udata); 3548ca293436SRyan Libby #ifdef INVARIANTS 3549ca293436SRyan Libby if (!skipdbg && (zone->uz_flags & UMA_ZFLAG_TRASH) != 0 && 3550ca293436SRyan Libby zone->uz_dtor != trash_dtor) 3551a03c2393SAlexander Motin trash_dtor(item, size, zone); 3552ca293436SRyan Libby #endif 3553ca293436SRyan Libby } 355409c8cb71SMark Johnston kasan_mark_item_invalid(zone, item); 3555ca293436SRyan Libby } 3556ca293436SRyan Libby 35571c58c09fSMateusz Guzik #ifdef NUMA 355881302f1dSMark Johnston static int 355981302f1dSMark Johnston item_domain(void *item) 356081302f1dSMark Johnston { 356181302f1dSMark Johnston int domain; 356281302f1dSMark Johnston 3563431fb8abSMark Johnston domain = vm_phys_domain(vtophys(item)); 356481302f1dSMark Johnston KASSERT(domain >= 0 && domain < vm_ndomains, 356581302f1dSMark Johnston ("%s: unknown domain for item %p", __func__, item)); 356681302f1dSMark Johnston return (domain); 356781302f1dSMark Johnston } 35681c58c09fSMateusz Guzik #endif 356981302f1dSMark Johnston 3570d4665eaaSJeff Roberson #if defined(INVARIANTS) || defined(DEBUG_MEMGUARD) || defined(WITNESS) 3571a8cbb835SEric van Gyzen #if defined(INVARIANTS) && (defined(DDB) || defined(STACK)) 3572a8cbb835SEric van Gyzen #include <sys/stack.h> 3573a8cbb835SEric van Gyzen #endif 3574d4665eaaSJeff Roberson #define UMA_ZALLOC_DEBUG 3575d4665eaaSJeff Roberson static int 3576d4665eaaSJeff Roberson uma_zalloc_debug(uma_zone_t zone, void **itemp, void *udata, int flags) 3577d4665eaaSJeff Roberson { 3578d4665eaaSJeff Roberson int error; 3579d4665eaaSJeff Roberson 3580d4665eaaSJeff Roberson error = 0; 3581d4665eaaSJeff Roberson #ifdef WITNESS 3582d4665eaaSJeff Roberson if (flags & M_WAITOK) { 3583d4665eaaSJeff Roberson WITNESS_WARN(WARN_GIANTOK | WARN_SLEEPOK, NULL, 3584d4665eaaSJeff Roberson "uma_zalloc_debug: zone \"%s\"", zone->uz_name); 3585d4665eaaSJeff Roberson } 3586d4665eaaSJeff Roberson #endif 3587d4665eaaSJeff Roberson 3588d4665eaaSJeff Roberson #ifdef INVARIANTS 3589d4665eaaSJeff Roberson KASSERT((flags & M_EXEC) == 0, 3590d4665eaaSJeff Roberson ("uma_zalloc_debug: called with M_EXEC")); 3591d4665eaaSJeff Roberson KASSERT(curthread->td_critnest == 0 || SCHEDULER_STOPPED(), 3592d4665eaaSJeff Roberson ("uma_zalloc_debug: called within spinlock or critical section")); 3593d4665eaaSJeff Roberson KASSERT((zone->uz_flags & UMA_ZONE_PCPU) == 0 || (flags & M_ZERO) == 0, 3594d4665eaaSJeff Roberson ("uma_zalloc_debug: allocating from a pcpu zone with M_ZERO")); 3595a8cbb835SEric van Gyzen 3596a8cbb835SEric van Gyzen _Static_assert(M_NOWAIT != 0 && M_WAITOK != 0, 3597a8cbb835SEric van Gyzen "M_NOWAIT and M_WAITOK must be non-zero for this assertion:"); 3598a8cbb835SEric van Gyzen #if 0 3599a8cbb835SEric van Gyzen /* 3600a8cbb835SEric van Gyzen * Give the #elif clause time to find problems, then remove it 3601a8cbb835SEric van Gyzen * and enable this. (Remove <sys/stack.h> above, too.) 3602a8cbb835SEric van Gyzen */ 3603a8cbb835SEric van Gyzen KASSERT((flags & (M_NOWAIT|M_WAITOK)) == M_NOWAIT || 3604a8cbb835SEric van Gyzen (flags & (M_NOWAIT|M_WAITOK)) == M_WAITOK, 3605a8cbb835SEric van Gyzen ("uma_zalloc_debug: must pass one of M_NOWAIT or M_WAITOK")); 3606a8cbb835SEric van Gyzen #elif defined(DDB) || defined(STACK) 3607a8cbb835SEric van Gyzen if (__predict_false((flags & (M_NOWAIT|M_WAITOK)) != M_NOWAIT && 3608a8cbb835SEric van Gyzen (flags & (M_NOWAIT|M_WAITOK)) != M_WAITOK)) { 3609a8cbb835SEric van Gyzen static int stack_count; 3610a8cbb835SEric van Gyzen struct stack st; 3611a8cbb835SEric van Gyzen 3612a8cbb835SEric van Gyzen if (stack_count < 10) { 3613a8cbb835SEric van Gyzen ++stack_count; 3614a8cbb835SEric van Gyzen printf("uma_zalloc* called with bad WAIT flags:\n"); 3615a8cbb835SEric van Gyzen stack_save(&st); 3616a8cbb835SEric van Gyzen stack_print(&st); 3617a8cbb835SEric van Gyzen } 3618a8cbb835SEric van Gyzen } 3619a8cbb835SEric van Gyzen #endif 3620d4665eaaSJeff Roberson #endif 3621d4665eaaSJeff Roberson 3622d4665eaaSJeff Roberson #ifdef DEBUG_MEMGUARD 36232dba2288SMark Johnston if ((zone->uz_flags & (UMA_ZONE_SMR | UMA_ZFLAG_CACHE)) == 0 && 36242dba2288SMark Johnston memguard_cmp_zone(zone)) { 3625d4665eaaSJeff Roberson void *item; 3626d4665eaaSJeff Roberson item = memguard_alloc(zone->uz_size, flags); 3627d4665eaaSJeff Roberson if (item != NULL) { 3628d4665eaaSJeff Roberson error = EJUSTRETURN; 3629d4665eaaSJeff Roberson if (zone->uz_init != NULL && 3630d4665eaaSJeff Roberson zone->uz_init(item, zone->uz_size, flags) != 0) { 3631d4665eaaSJeff Roberson *itemp = NULL; 3632d4665eaaSJeff Roberson return (error); 3633d4665eaaSJeff Roberson } 3634d4665eaaSJeff Roberson if (zone->uz_ctor != NULL && 3635d4665eaaSJeff Roberson zone->uz_ctor(item, zone->uz_size, udata, 3636d4665eaaSJeff Roberson flags) != 0) { 3637d4665eaaSJeff Roberson counter_u64_add(zone->uz_fails, 1); 3638389a3fa6SMark Johnston if (zone->uz_fini != NULL) 3639d4665eaaSJeff Roberson zone->uz_fini(item, zone->uz_size); 3640d4665eaaSJeff Roberson *itemp = NULL; 3641d4665eaaSJeff Roberson return (error); 3642d4665eaaSJeff Roberson } 3643d4665eaaSJeff Roberson *itemp = item; 3644d4665eaaSJeff Roberson return (error); 3645d4665eaaSJeff Roberson } 3646d4665eaaSJeff Roberson /* This is unfortunate but should not be fatal. */ 3647d4665eaaSJeff Roberson } 3648d4665eaaSJeff Roberson #endif 3649d4665eaaSJeff Roberson return (error); 3650d4665eaaSJeff Roberson } 3651d4665eaaSJeff Roberson 3652d4665eaaSJeff Roberson static int 3653d4665eaaSJeff Roberson uma_zfree_debug(uma_zone_t zone, void *item, void *udata) 3654d4665eaaSJeff Roberson { 3655d4665eaaSJeff Roberson KASSERT(curthread->td_critnest == 0 || SCHEDULER_STOPPED(), 3656d4665eaaSJeff Roberson ("uma_zfree_debug: called with spinlock or critical section held")); 3657d4665eaaSJeff Roberson 3658d4665eaaSJeff Roberson #ifdef DEBUG_MEMGUARD 36592dba2288SMark Johnston if ((zone->uz_flags & (UMA_ZONE_SMR | UMA_ZFLAG_CACHE)) == 0 && 36602dba2288SMark Johnston is_memguard_addr(item)) { 3661d4665eaaSJeff Roberson if (zone->uz_dtor != NULL) 3662d4665eaaSJeff Roberson zone->uz_dtor(item, zone->uz_size, udata); 3663d4665eaaSJeff Roberson if (zone->uz_fini != NULL) 3664d4665eaaSJeff Roberson zone->uz_fini(item, zone->uz_size); 3665d4665eaaSJeff Roberson memguard_free(item); 3666d4665eaaSJeff Roberson return (EJUSTRETURN); 3667d4665eaaSJeff Roberson } 3668d4665eaaSJeff Roberson #endif 3669d4665eaaSJeff Roberson return (0); 3670d4665eaaSJeff Roberson } 3671d4665eaaSJeff Roberson #endif 3672d4665eaaSJeff Roberson 36736d88d784SJeff Roberson static inline void * 36746d88d784SJeff Roberson cache_alloc_item(uma_zone_t zone, uma_cache_t cache, uma_cache_bucket_t bucket, 36756d88d784SJeff Roberson void *udata, int flags) 3676d4665eaaSJeff Roberson { 36776d88d784SJeff Roberson void *item; 36786d88d784SJeff Roberson int size, uz_flags; 36796d88d784SJeff Roberson 36806d88d784SJeff Roberson item = cache_bucket_pop(cache, bucket); 36816d88d784SJeff Roberson size = cache_uz_size(cache); 36826d88d784SJeff Roberson uz_flags = cache_uz_flags(cache); 36836d88d784SJeff Roberson critical_exit(); 36846d88d784SJeff Roberson return (item_ctor(zone, uz_flags, size, udata, flags, item)); 36856d88d784SJeff Roberson } 36866d88d784SJeff Roberson 36876d88d784SJeff Roberson static __noinline void * 36886d88d784SJeff Roberson cache_alloc_retry(uma_zone_t zone, uma_cache_t cache, void *udata, int flags) 36896d88d784SJeff Roberson { 36906d88d784SJeff Roberson uma_cache_bucket_t bucket; 3691d4665eaaSJeff Roberson int domain; 3692d4665eaaSJeff Roberson 36936d88d784SJeff Roberson while (cache_alloc(zone, cache, udata, flags)) { 36946d88d784SJeff Roberson cache = &zone->uz_cpu[curcpu]; 36956d88d784SJeff Roberson bucket = &cache->uc_allocbucket; 36966d88d784SJeff Roberson if (__predict_false(bucket->ucb_cnt == 0)) 36976d88d784SJeff Roberson continue; 36986d88d784SJeff Roberson return (cache_alloc_item(zone, cache, bucket, udata, flags)); 36996d88d784SJeff Roberson } 37006d88d784SJeff Roberson critical_exit(); 37016d88d784SJeff Roberson 3702d4665eaaSJeff Roberson /* 3703d4665eaaSJeff Roberson * We can not get a bucket so try to return a single item. 3704d4665eaaSJeff Roberson */ 3705d4665eaaSJeff Roberson if (zone->uz_flags & UMA_ZONE_FIRSTTOUCH) 3706d4665eaaSJeff Roberson domain = PCPU_GET(domain); 3707d4665eaaSJeff Roberson else 3708d4665eaaSJeff Roberson domain = UMA_ANYDOMAIN; 3709d4665eaaSJeff Roberson return (zone_alloc_item(zone, udata, domain, flags)); 3710d4665eaaSJeff Roberson } 3711d4665eaaSJeff Roberson 3712d4665eaaSJeff Roberson /* See uma.h */ 3713d4665eaaSJeff Roberson void * 3714d4665eaaSJeff Roberson uma_zalloc_smr(uma_zone_t zone, int flags) 3715d4665eaaSJeff Roberson { 3716d4665eaaSJeff Roberson uma_cache_bucket_t bucket; 3717d4665eaaSJeff Roberson uma_cache_t cache; 3718d4665eaaSJeff Roberson 3719841e0a87SGleb Smirnoff CTR3(KTR_UMA, "uma_zalloc_smr zone %s(%p) flags %d", zone->uz_name, 3720841e0a87SGleb Smirnoff zone, flags); 3721841e0a87SGleb Smirnoff 3722d4665eaaSJeff Roberson #ifdef UMA_ZALLOC_DEBUG 37236d88d784SJeff Roberson void *item; 37246d88d784SJeff Roberson 3725d4665eaaSJeff Roberson KASSERT((zone->uz_flags & UMA_ZONE_SMR) != 0, 3726952c8964SMark Johnston ("uma_zalloc_arg: called with non-SMR zone.")); 3727d4665eaaSJeff Roberson if (uma_zalloc_debug(zone, &item, NULL, flags) == EJUSTRETURN) 3728d4665eaaSJeff Roberson return (item); 3729d4665eaaSJeff Roberson #endif 3730d4665eaaSJeff Roberson 3731d4665eaaSJeff Roberson critical_enter(); 3732d4665eaaSJeff Roberson cache = &zone->uz_cpu[curcpu]; 3733d4665eaaSJeff Roberson bucket = &cache->uc_allocbucket; 37346d88d784SJeff Roberson if (__predict_false(bucket->ucb_cnt == 0)) 37356d88d784SJeff Roberson return (cache_alloc_retry(zone, cache, NULL, flags)); 37366d88d784SJeff Roberson return (cache_alloc_item(zone, cache, bucket, NULL, flags)); 3737d4665eaaSJeff Roberson } 3738d4665eaaSJeff Roberson 37399c2cd7e5SJeff Roberson /* See uma.h */ 37408355f576SJeff Roberson void * 37412cc35ff9SJeff Roberson uma_zalloc_arg(uma_zone_t zone, void *udata, int flags) 37428355f576SJeff Roberson { 3743376b1ba3SJeff Roberson uma_cache_bucket_t bucket; 3744ab3185d1SJeff Roberson uma_cache_t cache; 37458355f576SJeff Roberson 3746e866d8f0SMark Murray /* Enable entropy collection for RANDOM_ENABLE_UMA kernel option */ 374719fa89e9SMark Murray random_harvest_fast_uma(&zone, sizeof(zone), RANDOM_UMA); 374810cb2424SMark Murray 37498355f576SJeff Roberson /* This is the fast path allocation */ 3750e63a1c2fSRyan Libby CTR3(KTR_UMA, "uma_zalloc_arg zone %s(%p) flags %d", zone->uz_name, 3751e63a1c2fSRyan Libby zone, flags); 3752a553d4b8SJeff Roberson 3753d4665eaaSJeff Roberson #ifdef UMA_ZALLOC_DEBUG 37546d88d784SJeff Roberson void *item; 37556d88d784SJeff Roberson 3756d4665eaaSJeff Roberson KASSERT((zone->uz_flags & UMA_ZONE_SMR) == 0, 3757952c8964SMark Johnston ("uma_zalloc_arg: called with SMR zone.")); 3758d4665eaaSJeff Roberson if (uma_zalloc_debug(zone, &item, udata, flags) == EJUSTRETURN) 37598d689e04SGleb Smirnoff return (item); 37608d689e04SGleb Smirnoff #endif 3761d4665eaaSJeff Roberson 37625d1ae027SRobert Watson /* 37635d1ae027SRobert Watson * If possible, allocate from the per-CPU cache. There are two 37645d1ae027SRobert Watson * requirements for safe access to the per-CPU cache: (1) the thread 37655d1ae027SRobert Watson * accessing the cache must not be preempted or yield during access, 37665d1ae027SRobert Watson * and (2) the thread must not migrate CPUs without switching which 37675d1ae027SRobert Watson * cache it accesses. We rely on a critical section to prevent 37685d1ae027SRobert Watson * preemption and migration. We release the critical section in 37695d1ae027SRobert Watson * order to acquire the zone mutex if we are unable to allocate from 37705d1ae027SRobert Watson * the current cache; when we re-acquire the critical section, we 37715d1ae027SRobert Watson * must detect and handle migration if it has occurred. 37725d1ae027SRobert Watson */ 37735d1ae027SRobert Watson critical_enter(); 3774cc7ce83aSJeff Roberson cache = &zone->uz_cpu[curcpu]; 3775376b1ba3SJeff Roberson bucket = &cache->uc_allocbucket; 37766d88d784SJeff Roberson if (__predict_false(bucket->ucb_cnt == 0)) 37776d88d784SJeff Roberson return (cache_alloc_retry(zone, cache, udata, flags)); 37786d88d784SJeff Roberson return (cache_alloc_item(zone, cache, bucket, udata, flags)); 3779fc03d22bSJeff Roberson } 3780fc03d22bSJeff Roberson 37818355f576SJeff Roberson /* 3782beb8beefSJeff Roberson * Replenish an alloc bucket and possibly restore an old one. Called in 3783beb8beefSJeff Roberson * a critical section. Returns in a critical section. 3784beb8beefSJeff Roberson * 37854bd61e19SJeff Roberson * A false return value indicates an allocation failure. 37864bd61e19SJeff Roberson * A true return value indicates success and the caller should retry. 3787beb8beefSJeff Roberson */ 3788beb8beefSJeff Roberson static __noinline bool 3789beb8beefSJeff Roberson cache_alloc(uma_zone_t zone, uma_cache_t cache, void *udata, int flags) 3790beb8beefSJeff Roberson { 3791beb8beefSJeff Roberson uma_bucket_t bucket; 37928c277118SMark Johnston int curdomain, domain; 3793c6fd3e23SJeff Roberson bool new; 3794beb8beefSJeff Roberson 3795beb8beefSJeff Roberson CRITICAL_ASSERT(curthread); 3796beb8beefSJeff Roberson 3797beb8beefSJeff Roberson /* 3798beb8beefSJeff Roberson * If we have run out of items in our alloc bucket see 3799beb8beefSJeff Roberson * if we can switch with the free bucket. 3800d4665eaaSJeff Roberson * 3801d4665eaaSJeff Roberson * SMR Zones can't re-use the free bucket until the sequence has 3802d4665eaaSJeff Roberson * expired. 38038355f576SJeff Roberson */ 3804c6fd3e23SJeff Roberson if ((cache_uz_flags(cache) & UMA_ZONE_SMR) == 0 && 3805d4665eaaSJeff Roberson cache->uc_freebucket.ucb_cnt != 0) { 3806d4665eaaSJeff Roberson cache_bucket_swap(&cache->uc_freebucket, 3807d4665eaaSJeff Roberson &cache->uc_allocbucket); 3808beb8beefSJeff Roberson return (true); 38098355f576SJeff Roberson } 3810fc03d22bSJeff Roberson 3811fc03d22bSJeff Roberson /* 3812fc03d22bSJeff Roberson * Discard any empty allocation bucket while we hold no locks. 3813fc03d22bSJeff Roberson */ 3814376b1ba3SJeff Roberson bucket = cache_bucket_unload_alloc(cache); 3815fc03d22bSJeff Roberson critical_exit(); 3816c6fd3e23SJeff Roberson 3817c6fd3e23SJeff Roberson if (bucket != NULL) { 3818c6fd3e23SJeff Roberson KASSERT(bucket->ub_cnt == 0, 3819c6fd3e23SJeff Roberson ("cache_alloc: Entered with non-empty alloc bucket.")); 38206fd34d6fSJeff Roberson bucket_free(zone, bucket, udata); 3821c6fd3e23SJeff Roberson } 3822fc03d22bSJeff Roberson 38235d1ae027SRobert Watson /* 38245d1ae027SRobert Watson * Attempt to retrieve the item from the per-CPU cache has failed, so 3825c6fd3e23SJeff Roberson * we must go back to the zone. This requires the zdom lock, so we 38265d1ae027SRobert Watson * must drop the critical section, then re-acquire it when we go back 38275d1ae027SRobert Watson * to the cache. Since the critical section is released, we may be 38285d1ae027SRobert Watson * preempted or migrate. As such, make sure not to maintain any 38295d1ae027SRobert Watson * thread-local state specific to the cache from prior to releasing 38305d1ae027SRobert Watson * the critical section. 38315d1ae027SRobert Watson */ 3832c1685086SJeff Roberson domain = PCPU_GET(domain); 38338c277118SMark Johnston if ((cache_uz_flags(cache) & UMA_ZONE_ROUNDROBIN) != 0 || 38348c277118SMark Johnston VM_DOMAIN_EMPTY(domain)) 3835c6fd3e23SJeff Roberson domain = zone_domain_highest(zone, domain); 3836c6fd3e23SJeff Roberson bucket = cache_fetch_bucket(zone, cache, domain); 3837af32cefdSMark Johnston if (bucket == NULL && zone->uz_bucket_size != 0 && !bucketdisable) { 3838beb8beefSJeff Roberson bucket = zone_alloc_bucket(zone, udata, domain, flags); 3839c6fd3e23SJeff Roberson new = true; 3840af32cefdSMark Johnston } else { 3841c6fd3e23SJeff Roberson new = false; 3842af32cefdSMark Johnston } 3843c6fd3e23SJeff Roberson 38441431a748SGleb Smirnoff CTR3(KTR_UMA, "uma_zalloc: zone %s(%p) bucket zone returned %p", 38451431a748SGleb Smirnoff zone->uz_name, zone, bucket); 38464bd61e19SJeff Roberson if (bucket == NULL) { 3847fc03d22bSJeff Roberson critical_enter(); 3848beb8beefSJeff Roberson return (false); 38494bd61e19SJeff Roberson } 38500f9b7bf3SMark Johnston 3851fc03d22bSJeff Roberson /* 3852fc03d22bSJeff Roberson * See if we lost the race or were migrated. Cache the 3853fc03d22bSJeff Roberson * initialized bucket to make this less likely or claim 3854fc03d22bSJeff Roberson * the memory directly. 3855fc03d22bSJeff Roberson */ 38564bd61e19SJeff Roberson critical_enter(); 3857cc7ce83aSJeff Roberson cache = &zone->uz_cpu[curcpu]; 3858376b1ba3SJeff Roberson if (cache->uc_allocbucket.ucb_bucket == NULL && 3859c6fd3e23SJeff Roberson ((cache_uz_flags(cache) & UMA_ZONE_FIRSTTOUCH) == 0 || 38608c277118SMark Johnston (curdomain = PCPU_GET(domain)) == domain || 38618c277118SMark Johnston VM_DOMAIN_EMPTY(curdomain))) { 3862c6fd3e23SJeff Roberson if (new) 3863c6fd3e23SJeff Roberson atomic_add_long(&ZDOM_GET(zone, domain)->uzd_imax, 3864c6fd3e23SJeff Roberson bucket->ub_cnt); 3865376b1ba3SJeff Roberson cache_bucket_load_alloc(cache, bucket); 3866beb8beefSJeff Roberson return (true); 3867c6fd3e23SJeff Roberson } 3868c6fd3e23SJeff Roberson 3869c6fd3e23SJeff Roberson /* 3870c6fd3e23SJeff Roberson * We lost the race, release this bucket and start over. 3871c6fd3e23SJeff Roberson */ 3872c6fd3e23SJeff Roberson critical_exit(); 38732760658bSAlexander Motin zone_put_bucket(zone, domain, bucket, udata, !new); 3874c6fd3e23SJeff Roberson critical_enter(); 3875c6fd3e23SJeff Roberson 3876beb8beefSJeff Roberson return (true); 3877bbee39c6SJeff Roberson } 3878bbee39c6SJeff Roberson 3879ab3185d1SJeff Roberson void * 3880ab3185d1SJeff Roberson uma_zalloc_domain(uma_zone_t zone, void *udata, int domain, int flags) 3881bbee39c6SJeff Roberson { 388206d8bdcbSMark Johnston #ifdef NUMA 388306d8bdcbSMark Johnston uma_bucket_t bucket; 388406d8bdcbSMark Johnston uma_zone_domain_t zdom; 388506d8bdcbSMark Johnston void *item; 388606d8bdcbSMark Johnston #endif 3887ab3185d1SJeff Roberson 3888ab3185d1SJeff Roberson /* Enable entropy collection for RANDOM_ENABLE_UMA kernel option */ 388919fa89e9SMark Murray random_harvest_fast_uma(&zone, sizeof(zone), RANDOM_UMA); 3890ab3185d1SJeff Roberson 3891ab3185d1SJeff Roberson /* This is the fast path allocation */ 3892e63a1c2fSRyan Libby CTR4(KTR_UMA, "uma_zalloc_domain zone %s(%p) domain %d flags %d", 3893e63a1c2fSRyan Libby zone->uz_name, zone, domain, flags); 3894ab3185d1SJeff Roberson 389506d8bdcbSMark Johnston KASSERT((zone->uz_flags & UMA_ZONE_SMR) == 0, 389606d8bdcbSMark Johnston ("uma_zalloc_domain: called with SMR zone.")); 389706d8bdcbSMark Johnston #ifdef NUMA 389806d8bdcbSMark Johnston KASSERT((zone->uz_flags & UMA_ZONE_FIRSTTOUCH) != 0, 389906d8bdcbSMark Johnston ("uma_zalloc_domain: called with non-FIRSTTOUCH zone.")); 3900ab3185d1SJeff Roberson 390106d8bdcbSMark Johnston if (vm_ndomains == 1) 390206d8bdcbSMark Johnston return (uma_zalloc_arg(zone, udata, flags)); 390306d8bdcbSMark Johnston 3904490b09f2SEric van Gyzen #ifdef UMA_ZALLOC_DEBUG 3905490b09f2SEric van Gyzen if (uma_zalloc_debug(zone, &item, udata, flags) == EJUSTRETURN) 3906490b09f2SEric van Gyzen return (item); 3907490b09f2SEric van Gyzen #endif 3908490b09f2SEric van Gyzen 390906d8bdcbSMark Johnston /* 391006d8bdcbSMark Johnston * Try to allocate from the bucket cache before falling back to the keg. 391106d8bdcbSMark Johnston * We could try harder and attempt to allocate from per-CPU caches or 391206d8bdcbSMark Johnston * the per-domain cross-domain buckets, but the complexity is probably 391306d8bdcbSMark Johnston * not worth it. It is more important that frees of previous 391406d8bdcbSMark Johnston * cross-domain allocations do not blow up the cache. 391506d8bdcbSMark Johnston */ 391606d8bdcbSMark Johnston zdom = zone_domain_lock(zone, domain); 391706d8bdcbSMark Johnston if ((bucket = zone_fetch_bucket(zone, zdom, false)) != NULL) { 391806d8bdcbSMark Johnston item = bucket->ub_bucket[bucket->ub_cnt - 1]; 391906d8bdcbSMark Johnston #ifdef INVARIANTS 392006d8bdcbSMark Johnston bucket->ub_bucket[bucket->ub_cnt - 1] = NULL; 392106d8bdcbSMark Johnston #endif 392206d8bdcbSMark Johnston bucket->ub_cnt--; 392306d8bdcbSMark Johnston zone_put_bucket(zone, domain, bucket, udata, true); 392406d8bdcbSMark Johnston item = item_ctor(zone, zone->uz_flags, zone->uz_size, udata, 392506d8bdcbSMark Johnston flags, item); 392606d8bdcbSMark Johnston if (item != NULL) { 392706d8bdcbSMark Johnston KASSERT(item_domain(item) == domain, 392806d8bdcbSMark Johnston ("%s: bucket cache item %p from wrong domain", 392906d8bdcbSMark Johnston __func__, item)); 393006d8bdcbSMark Johnston counter_u64_add(zone->uz_allocs, 1); 393106d8bdcbSMark Johnston } 393206d8bdcbSMark Johnston return (item); 393306d8bdcbSMark Johnston } 393406d8bdcbSMark Johnston ZDOM_UNLOCK(zdom); 3935ab3185d1SJeff Roberson return (zone_alloc_item(zone, udata, domain, flags)); 393606d8bdcbSMark Johnston #else 393706d8bdcbSMark Johnston return (uma_zalloc_arg(zone, udata, flags)); 393806d8bdcbSMark Johnston #endif 3939ab3185d1SJeff Roberson } 3940ab3185d1SJeff Roberson 3941ab3185d1SJeff Roberson /* 3942ab3185d1SJeff Roberson * Find a slab with some space. Prefer slabs that are partially used over those 3943ab3185d1SJeff Roberson * that are totally full. This helps to reduce fragmentation. 3944ab3185d1SJeff Roberson * 3945ab3185d1SJeff Roberson * If 'rr' is 1, search all domains starting from 'domain'. Otherwise check 3946ab3185d1SJeff Roberson * only 'domain'. 3947ab3185d1SJeff Roberson */ 3948ab3185d1SJeff Roberson static uma_slab_t 3949194a979eSMark Johnston keg_first_slab(uma_keg_t keg, int domain, bool rr) 3950ab3185d1SJeff Roberson { 3951ab3185d1SJeff Roberson uma_domain_t dom; 3952bbee39c6SJeff Roberson uma_slab_t slab; 3953ab3185d1SJeff Roberson int start; 3954ab3185d1SJeff Roberson 3955ab3185d1SJeff Roberson KASSERT(domain >= 0 && domain < vm_ndomains, 3956ab3185d1SJeff Roberson ("keg_first_slab: domain %d out of range", domain)); 39578b987a77SJeff Roberson KEG_LOCK_ASSERT(keg, domain); 3958ab3185d1SJeff Roberson 3959ab3185d1SJeff Roberson slab = NULL; 3960ab3185d1SJeff Roberson start = domain; 3961ab3185d1SJeff Roberson do { 3962ab3185d1SJeff Roberson dom = &keg->uk_domain[domain]; 39634ab3aee8SMark Johnston if ((slab = LIST_FIRST(&dom->ud_part_slab)) != NULL) 39644ab3aee8SMark Johnston return (slab); 39654ab3aee8SMark Johnston if ((slab = LIST_FIRST(&dom->ud_free_slab)) != NULL) { 3966ab3185d1SJeff Roberson LIST_REMOVE(slab, us_link); 39674ab3aee8SMark Johnston dom->ud_free_slabs--; 3968ab3185d1SJeff Roberson LIST_INSERT_HEAD(&dom->ud_part_slab, slab, us_link); 3969ab3185d1SJeff Roberson return (slab); 3970ab3185d1SJeff Roberson } 3971ab3185d1SJeff Roberson if (rr) 3972ab3185d1SJeff Roberson domain = (domain + 1) % vm_ndomains; 3973ab3185d1SJeff Roberson } while (domain != start); 3974ab3185d1SJeff Roberson 3975ab3185d1SJeff Roberson return (NULL); 3976ab3185d1SJeff Roberson } 3977ab3185d1SJeff Roberson 39788b987a77SJeff Roberson /* 39798b987a77SJeff Roberson * Fetch an existing slab from a free or partial list. Returns with the 39808b987a77SJeff Roberson * keg domain lock held if a slab was found or unlocked if not. 39818b987a77SJeff Roberson */ 3982ab3185d1SJeff Roberson static uma_slab_t 3983194a979eSMark Johnston keg_fetch_free_slab(uma_keg_t keg, int domain, bool rr, int flags) 3984ab3185d1SJeff Roberson { 39858b987a77SJeff Roberson uma_slab_t slab; 3986194a979eSMark Johnston uint32_t reserve; 3987099a0e58SBosko Milekic 39888b987a77SJeff Roberson /* HASH has a single free list. */ 398954c5ae80SRyan Libby if ((keg->uk_flags & UMA_ZFLAG_HASH) != 0) 39908b987a77SJeff Roberson domain = 0; 3991194a979eSMark Johnston 39928b987a77SJeff Roberson KEG_LOCK(keg, domain); 3993194a979eSMark Johnston reserve = (flags & M_USE_RESERVE) != 0 ? 0 : keg->uk_reserve; 39944ab3aee8SMark Johnston if (keg->uk_domain[domain].ud_free_items <= reserve || 39958b987a77SJeff Roberson (slab = keg_first_slab(keg, domain, rr)) == NULL) { 39968b987a77SJeff Roberson KEG_UNLOCK(keg, domain); 3997194a979eSMark Johnston return (NULL); 39988b987a77SJeff Roberson } 39998b987a77SJeff Roberson return (slab); 4000194a979eSMark Johnston } 4001194a979eSMark Johnston 4002194a979eSMark Johnston static uma_slab_t 4003194a979eSMark Johnston keg_fetch_slab(uma_keg_t keg, uma_zone_t zone, int rdomain, const int flags) 4004194a979eSMark Johnston { 4005194a979eSMark Johnston struct vm_domainset_iter di; 4006194a979eSMark Johnston uma_slab_t slab; 4007194a979eSMark Johnston int aflags, domain; 4008194a979eSMark Johnston bool rr; 4009194a979eSMark Johnston 4010fab343a7SMark Johnston KASSERT((flags & (M_WAITOK | M_NOVM)) != (M_WAITOK | M_NOVM), 4011fab343a7SMark Johnston ("%s: invalid flags %#x", __func__, flags)); 4012fab343a7SMark Johnston 4013194a979eSMark Johnston restart: 4014bbee39c6SJeff Roberson /* 4015194a979eSMark Johnston * Use the keg's policy if upper layers haven't already specified a 4016194a979eSMark Johnston * domain (as happens with first-touch zones). 4017194a979eSMark Johnston * 4018194a979eSMark Johnston * To avoid races we run the iterator with the keg lock held, but that 4019194a979eSMark Johnston * means that we cannot allow the vm_domainset layer to sleep. Thus, 4020194a979eSMark Johnston * clear M_WAITOK and handle low memory conditions locally. 4021bbee39c6SJeff Roberson */ 4022ab3185d1SJeff Roberson rr = rdomain == UMA_ANYDOMAIN; 4023ab3185d1SJeff Roberson if (rr) { 4024194a979eSMark Johnston aflags = (flags & ~M_WAITOK) | M_NOWAIT; 4025194a979eSMark Johnston vm_domainset_iter_policy_ref_init(&di, &keg->uk_dr, &domain, 4026194a979eSMark Johnston &aflags); 4027194a979eSMark Johnston } else { 4028194a979eSMark Johnston aflags = flags; 4029194a979eSMark Johnston domain = rdomain; 4030194a979eSMark Johnston } 4031ab3185d1SJeff Roberson 4032194a979eSMark Johnston for (;;) { 4033194a979eSMark Johnston slab = keg_fetch_free_slab(keg, domain, rr, flags); 4034584061b4SJeff Roberson if (slab != NULL) 4035bbee39c6SJeff Roberson return (slab); 4036bbee39c6SJeff Roberson 4037bbee39c6SJeff Roberson /* 4038fab343a7SMark Johnston * M_NOVM is used to break the recursion that can otherwise 4039fab343a7SMark Johnston * occur if low-level memory management routines use UMA. 4040bbee39c6SJeff Roberson */ 4041fab343a7SMark Johnston if ((flags & M_NOVM) == 0) { 404286220393SMark Johnston slab = keg_alloc_slab(keg, zone, domain, flags, aflags); 40438b987a77SJeff Roberson if (slab != NULL) 4044bbee39c6SJeff Roberson return (slab); 4045fab343a7SMark Johnston } 4046fab343a7SMark Johnston 4047fab343a7SMark Johnston if (!rr) { 4048fab343a7SMark Johnston if ((flags & M_USE_RESERVE) != 0) { 4049fab343a7SMark Johnston /* 4050fab343a7SMark Johnston * Drain reserves from other domains before 4051fab343a7SMark Johnston * giving up or sleeping. It may be useful to 4052fab343a7SMark Johnston * support per-domain reserves eventually. 4053fab343a7SMark Johnston */ 4054fab343a7SMark Johnston rdomain = UMA_ANYDOMAIN; 4055fab343a7SMark Johnston goto restart; 4056fab343a7SMark Johnston } 4057fab343a7SMark Johnston if ((flags & M_WAITOK) == 0) 40583639ac42SJeff Roberson break; 4059fab343a7SMark Johnston vm_wait_domain(domain); 4060fab343a7SMark Johnston } else if (vm_domainset_iter_policy(&di, &domain) != 0) { 4061194a979eSMark Johnston if ((flags & M_WAITOK) != 0) { 406289d2fb14SKonstantin Belousov vm_wait_doms(&keg->uk_dr.dr_policy->ds_mask, 0); 4063194a979eSMark Johnston goto restart; 406430c5525bSAndrew Gallatin } 4065194a979eSMark Johnston break; 4066194a979eSMark Johnston } 4067ab3185d1SJeff Roberson } 4068ab3185d1SJeff Roberson 4069bbee39c6SJeff Roberson /* 4070bbee39c6SJeff Roberson * We might not have been able to get a slab but another cpu 4071bbee39c6SJeff Roberson * could have while we were unlocked. Check again before we 4072bbee39c6SJeff Roberson * fail. 4073bbee39c6SJeff Roberson */ 40748b987a77SJeff Roberson if ((slab = keg_fetch_free_slab(keg, domain, rr, flags)) != NULL) 4075bbee39c6SJeff Roberson return (slab); 40768b987a77SJeff Roberson 4077ab3185d1SJeff Roberson return (NULL); 4078ab3185d1SJeff Roberson } 4079bbee39c6SJeff Roberson 4080d56368d7SBosko Milekic static void * 40810095a784SJeff Roberson slab_alloc_item(uma_keg_t keg, uma_slab_t slab) 4082bbee39c6SJeff Roberson { 4083ab3185d1SJeff Roberson uma_domain_t dom; 4084bbee39c6SJeff Roberson void *item; 40859b8db4d0SRyan Libby int freei; 4086bbee39c6SJeff Roberson 40878b987a77SJeff Roberson KEG_LOCK_ASSERT(keg, slab->us_domain); 4088099a0e58SBosko Milekic 40898b987a77SJeff Roberson dom = &keg->uk_domain[slab->us_domain]; 40909b78b1f4SJeff Roberson freei = BIT_FFS(keg->uk_ipers, &slab->us_free) - 1; 40919b78b1f4SJeff Roberson BIT_CLR(keg->uk_ipers, freei, &slab->us_free); 40921e0701e1SJeff Roberson item = slab_item(slab, keg, freei); 4093bbee39c6SJeff Roberson slab->us_freecount--; 40944ab3aee8SMark Johnston dom->ud_free_items--; 4095ef72505eSJeff Roberson 40964ab3aee8SMark Johnston /* 40974ab3aee8SMark Johnston * Move this slab to the full list. It must be on the partial list, so 40984ab3aee8SMark Johnston * we do not need to update the free slab count. In particular, 40994ab3aee8SMark Johnston * keg_fetch_slab() always returns slabs on the partial list. 41004ab3aee8SMark Johnston */ 4101bbee39c6SJeff Roberson if (slab->us_freecount == 0) { 4102bbee39c6SJeff Roberson LIST_REMOVE(slab, us_link); 4103ab3185d1SJeff Roberson LIST_INSERT_HEAD(&dom->ud_full_slab, slab, us_link); 4104bbee39c6SJeff Roberson } 4105bbee39c6SJeff Roberson 4106bbee39c6SJeff Roberson return (item); 4107bbee39c6SJeff Roberson } 4108bbee39c6SJeff Roberson 4109bbee39c6SJeff Roberson static int 4110b75c4efcSAndrew Turner zone_import(void *arg, void **bucket, int max, int domain, int flags) 41110095a784SJeff Roberson { 41128b987a77SJeff Roberson uma_domain_t dom; 4113b75c4efcSAndrew Turner uma_zone_t zone; 41140095a784SJeff Roberson uma_slab_t slab; 41150095a784SJeff Roberson uma_keg_t keg; 4116a03af342SSean Bruno #ifdef NUMA 4117ab3185d1SJeff Roberson int stripe; 4118a03af342SSean Bruno #endif 41190095a784SJeff Roberson int i; 41200095a784SJeff Roberson 4121b75c4efcSAndrew Turner zone = arg; 41220095a784SJeff Roberson slab = NULL; 4123584061b4SJeff Roberson keg = zone->uz_keg; 4124af526374SJeff Roberson /* Try to keep the buckets totally full */ 41250095a784SJeff Roberson for (i = 0; i < max; ) { 4126584061b4SJeff Roberson if ((slab = keg_fetch_slab(keg, zone, domain, flags)) == NULL) 41270095a784SJeff Roberson break; 4128a03af342SSean Bruno #ifdef NUMA 4129ab3185d1SJeff Roberson stripe = howmany(max, vm_ndomains); 4130a03af342SSean Bruno #endif 41318b987a77SJeff Roberson dom = &keg->uk_domain[slab->us_domain]; 41321b2dcc8cSMark Johnston do { 41330095a784SJeff Roberson bucket[i++] = slab_alloc_item(keg, slab); 41347585c5dbSMark Johnston if (keg->uk_reserve > 0 && 41357585c5dbSMark Johnston dom->ud_free_items <= keg->uk_reserve) { 41361b2dcc8cSMark Johnston /* 41371b2dcc8cSMark Johnston * Avoid depleting the reserve after a 41381b2dcc8cSMark Johnston * successful item allocation, even if 41391b2dcc8cSMark Johnston * M_USE_RESERVE is specified. 41401b2dcc8cSMark Johnston */ 41411b2dcc8cSMark Johnston KEG_UNLOCK(keg, slab->us_domain); 41421b2dcc8cSMark Johnston goto out; 41431b2dcc8cSMark Johnston } 4144b6715dabSJeff Roberson #ifdef NUMA 4145ab3185d1SJeff Roberson /* 4146ab3185d1SJeff Roberson * If the zone is striped we pick a new slab for every 4147ab3185d1SJeff Roberson * N allocations. Eliminating this conditional will 4148ab3185d1SJeff Roberson * instead pick a new domain for each bucket rather 4149ab3185d1SJeff Roberson * than stripe within each bucket. The current option 4150ab3185d1SJeff Roberson * produces more fragmentation and requires more cpu 4151ab3185d1SJeff Roberson * time but yields better distribution. 4152ab3185d1SJeff Roberson */ 4153dfe13344SJeff Roberson if ((zone->uz_flags & UMA_ZONE_ROUNDROBIN) != 0 && 4154ab3185d1SJeff Roberson vm_ndomains > 1 && --stripe == 0) 4155ab3185d1SJeff Roberson break; 4156ab3185d1SJeff Roberson #endif 41571b2dcc8cSMark Johnston } while (slab->us_freecount != 0 && i < max); 41588b987a77SJeff Roberson KEG_UNLOCK(keg, slab->us_domain); 41591b2dcc8cSMark Johnston 4160ab3185d1SJeff Roberson /* Don't block if we allocated any successfully. */ 41610095a784SJeff Roberson flags &= ~M_WAITOK; 41620095a784SJeff Roberson flags |= M_NOWAIT; 41630095a784SJeff Roberson } 41641b2dcc8cSMark Johnston out: 41650095a784SJeff Roberson return i; 41660095a784SJeff Roberson } 41670095a784SJeff Roberson 41684bd61e19SJeff Roberson static int 41694bd61e19SJeff Roberson zone_alloc_limit_hard(uma_zone_t zone, int count, int flags) 41704bd61e19SJeff Roberson { 41714bd61e19SJeff Roberson uint64_t old, new, total, max; 41724bd61e19SJeff Roberson 41734bd61e19SJeff Roberson /* 41744bd61e19SJeff Roberson * The hard case. We're going to sleep because there were existing 41754bd61e19SJeff Roberson * sleepers or because we ran out of items. This routine enforces 41764bd61e19SJeff Roberson * fairness by keeping fifo order. 41774bd61e19SJeff Roberson * 41784bd61e19SJeff Roberson * First release our ill gotten gains and make some noise. 41794bd61e19SJeff Roberson */ 41804bd61e19SJeff Roberson for (;;) { 41814bd61e19SJeff Roberson zone_free_limit(zone, count); 41824bd61e19SJeff Roberson zone_log_warning(zone); 41834bd61e19SJeff Roberson zone_maxaction(zone); 41844bd61e19SJeff Roberson if (flags & M_NOWAIT) 41854bd61e19SJeff Roberson return (0); 41864bd61e19SJeff Roberson 41874bd61e19SJeff Roberson /* 41884bd61e19SJeff Roberson * We need to allocate an item or set ourself as a sleeper 41894bd61e19SJeff Roberson * while the sleepq lock is held to avoid wakeup races. This 41904bd61e19SJeff Roberson * is essentially a home rolled semaphore. 41914bd61e19SJeff Roberson */ 41924bd61e19SJeff Roberson sleepq_lock(&zone->uz_max_items); 41934bd61e19SJeff Roberson old = zone->uz_items; 41944bd61e19SJeff Roberson do { 41954bd61e19SJeff Roberson MPASS(UZ_ITEMS_SLEEPERS(old) < UZ_ITEMS_SLEEPERS_MAX); 41964bd61e19SJeff Roberson /* Cache the max since we will evaluate twice. */ 41974bd61e19SJeff Roberson max = zone->uz_max_items; 41984bd61e19SJeff Roberson if (UZ_ITEMS_SLEEPERS(old) != 0 || 41994bd61e19SJeff Roberson UZ_ITEMS_COUNT(old) >= max) 42004bd61e19SJeff Roberson new = old + UZ_ITEMS_SLEEPER; 42014bd61e19SJeff Roberson else 42024bd61e19SJeff Roberson new = old + MIN(count, max - old); 42034bd61e19SJeff Roberson } while (atomic_fcmpset_64(&zone->uz_items, &old, new) == 0); 42044bd61e19SJeff Roberson 42054bd61e19SJeff Roberson /* We may have successfully allocated under the sleepq lock. */ 42064bd61e19SJeff Roberson if (UZ_ITEMS_SLEEPERS(new) == 0) { 42074bd61e19SJeff Roberson sleepq_release(&zone->uz_max_items); 42084bd61e19SJeff Roberson return (new - old); 42094bd61e19SJeff Roberson } 42104bd61e19SJeff Roberson 42114bd61e19SJeff Roberson /* 42124bd61e19SJeff Roberson * This is in a different cacheline from uz_items so that we 42134bd61e19SJeff Roberson * don't constantly invalidate the fastpath cacheline when we 42144bd61e19SJeff Roberson * adjust item counts. This could be limited to toggling on 42154bd61e19SJeff Roberson * transitions. 42164bd61e19SJeff Roberson */ 42174bd61e19SJeff Roberson atomic_add_32(&zone->uz_sleepers, 1); 42184bd61e19SJeff Roberson atomic_add_64(&zone->uz_sleeps, 1); 42194bd61e19SJeff Roberson 42204bd61e19SJeff Roberson /* 42214bd61e19SJeff Roberson * We have added ourselves as a sleeper. The sleepq lock 42224bd61e19SJeff Roberson * protects us from wakeup races. Sleep now and then retry. 42234bd61e19SJeff Roberson */ 42244bd61e19SJeff Roberson sleepq_add(&zone->uz_max_items, NULL, "zonelimit", 0, 0); 42254bd61e19SJeff Roberson sleepq_wait(&zone->uz_max_items, PVM); 42264bd61e19SJeff Roberson 42274bd61e19SJeff Roberson /* 42284bd61e19SJeff Roberson * After wakeup, remove ourselves as a sleeper and try 42294bd61e19SJeff Roberson * again. We no longer have the sleepq lock for protection. 42304bd61e19SJeff Roberson * 42314bd61e19SJeff Roberson * Subract ourselves as a sleeper while attempting to add 42324bd61e19SJeff Roberson * our count. 42334bd61e19SJeff Roberson */ 42344bd61e19SJeff Roberson atomic_subtract_32(&zone->uz_sleepers, 1); 42354bd61e19SJeff Roberson old = atomic_fetchadd_64(&zone->uz_items, 42364bd61e19SJeff Roberson -(UZ_ITEMS_SLEEPER - count)); 42374bd61e19SJeff Roberson /* We're no longer a sleeper. */ 42384bd61e19SJeff Roberson old -= UZ_ITEMS_SLEEPER; 42394bd61e19SJeff Roberson 42404bd61e19SJeff Roberson /* 42414bd61e19SJeff Roberson * If we're still at the limit, restart. Notably do not 42424bd61e19SJeff Roberson * block on other sleepers. Cache the max value to protect 42434bd61e19SJeff Roberson * against changes via sysctl. 42444bd61e19SJeff Roberson */ 42454bd61e19SJeff Roberson total = UZ_ITEMS_COUNT(old); 42464bd61e19SJeff Roberson max = zone->uz_max_items; 42474bd61e19SJeff Roberson if (total >= max) 42484bd61e19SJeff Roberson continue; 42494bd61e19SJeff Roberson /* Truncate if necessary, otherwise wake other sleepers. */ 42504bd61e19SJeff Roberson if (total + count > max) { 42514bd61e19SJeff Roberson zone_free_limit(zone, total + count - max); 42524bd61e19SJeff Roberson count = max - total; 42534bd61e19SJeff Roberson } else if (total + count < max && UZ_ITEMS_SLEEPERS(old) != 0) 42544bd61e19SJeff Roberson wakeup_one(&zone->uz_max_items); 42554bd61e19SJeff Roberson 42564bd61e19SJeff Roberson return (count); 42574bd61e19SJeff Roberson } 42584bd61e19SJeff Roberson } 42594bd61e19SJeff Roberson 42604bd61e19SJeff Roberson /* 42614bd61e19SJeff Roberson * Allocate 'count' items from our max_items limit. Returns the number 42624bd61e19SJeff Roberson * available. If M_NOWAIT is not specified it will sleep until at least 42634bd61e19SJeff Roberson * one item can be allocated. 42644bd61e19SJeff Roberson */ 42654bd61e19SJeff Roberson static int 42664bd61e19SJeff Roberson zone_alloc_limit(uma_zone_t zone, int count, int flags) 42674bd61e19SJeff Roberson { 42684bd61e19SJeff Roberson uint64_t old; 42694bd61e19SJeff Roberson uint64_t max; 42704bd61e19SJeff Roberson 42714bd61e19SJeff Roberson max = zone->uz_max_items; 42724bd61e19SJeff Roberson MPASS(max > 0); 42734bd61e19SJeff Roberson 42744bd61e19SJeff Roberson /* 42754bd61e19SJeff Roberson * We expect normal allocations to succeed with a simple 42764bd61e19SJeff Roberson * fetchadd. 42774bd61e19SJeff Roberson */ 42784bd61e19SJeff Roberson old = atomic_fetchadd_64(&zone->uz_items, count); 42794bd61e19SJeff Roberson if (__predict_true(old + count <= max)) 42804bd61e19SJeff Roberson return (count); 42814bd61e19SJeff Roberson 42824bd61e19SJeff Roberson /* 42834bd61e19SJeff Roberson * If we had some items and no sleepers just return the 42844bd61e19SJeff Roberson * truncated value. We have to release the excess space 42854bd61e19SJeff Roberson * though because that may wake sleepers who weren't woken 42864bd61e19SJeff Roberson * because we were temporarily over the limit. 42874bd61e19SJeff Roberson */ 42884bd61e19SJeff Roberson if (old < max) { 42894bd61e19SJeff Roberson zone_free_limit(zone, (old + count) - max); 42904bd61e19SJeff Roberson return (max - old); 42914bd61e19SJeff Roberson } 42924bd61e19SJeff Roberson return (zone_alloc_limit_hard(zone, count, flags)); 42934bd61e19SJeff Roberson } 42944bd61e19SJeff Roberson 42954bd61e19SJeff Roberson /* 42964bd61e19SJeff Roberson * Free a number of items back to the limit. 42974bd61e19SJeff Roberson */ 42984bd61e19SJeff Roberson static void 42994bd61e19SJeff Roberson zone_free_limit(uma_zone_t zone, int count) 43004bd61e19SJeff Roberson { 43014bd61e19SJeff Roberson uint64_t old; 43024bd61e19SJeff Roberson 43034bd61e19SJeff Roberson MPASS(count > 0); 43044bd61e19SJeff Roberson 43054bd61e19SJeff Roberson /* 43064bd61e19SJeff Roberson * In the common case we either have no sleepers or 43074bd61e19SJeff Roberson * are still over the limit and can just return. 43084bd61e19SJeff Roberson */ 43094bd61e19SJeff Roberson old = atomic_fetchadd_64(&zone->uz_items, -count); 43104bd61e19SJeff Roberson if (__predict_true(UZ_ITEMS_SLEEPERS(old) == 0 || 43114bd61e19SJeff Roberson UZ_ITEMS_COUNT(old) - count >= zone->uz_max_items)) 43124bd61e19SJeff Roberson return; 43134bd61e19SJeff Roberson 43144bd61e19SJeff Roberson /* 43154bd61e19SJeff Roberson * Moderate the rate of wakeups. Sleepers will continue 43164bd61e19SJeff Roberson * to generate wakeups if necessary. 43174bd61e19SJeff Roberson */ 43184bd61e19SJeff Roberson wakeup_one(&zone->uz_max_items); 43194bd61e19SJeff Roberson } 43204bd61e19SJeff Roberson 4321fc03d22bSJeff Roberson static uma_bucket_t 4322beb8beefSJeff Roberson zone_alloc_bucket(uma_zone_t zone, void *udata, int domain, int flags) 4323bbee39c6SJeff Roberson { 4324bbee39c6SJeff Roberson uma_bucket_t bucket; 432509c8cb71SMark Johnston int error, maxbucket, cnt; 4326bbee39c6SJeff Roberson 4327e63a1c2fSRyan Libby CTR3(KTR_UMA, "zone_alloc_bucket zone %s(%p) domain %d", zone->uz_name, 4328e63a1c2fSRyan Libby zone, domain); 432930c5525bSAndrew Gallatin 4330c1685086SJeff Roberson /* Avoid allocs targeting empty domains. */ 4331c1685086SJeff Roberson if (domain != UMA_ANYDOMAIN && VM_DOMAIN_EMPTY(domain)) 4332c1685086SJeff Roberson domain = UMA_ANYDOMAIN; 43338c277118SMark Johnston else if ((zone->uz_flags & UMA_ZONE_ROUNDROBIN) != 0) 4334c6fd3e23SJeff Roberson domain = UMA_ANYDOMAIN; 4335c1685086SJeff Roberson 43364bd61e19SJeff Roberson if (zone->uz_max_items > 0) 43374bd61e19SJeff Roberson maxbucket = zone_alloc_limit(zone, zone->uz_bucket_size, 43384bd61e19SJeff Roberson M_NOWAIT); 43394bd61e19SJeff Roberson else 434020a4e154SJeff Roberson maxbucket = zone->uz_bucket_size; 43414bd61e19SJeff Roberson if (maxbucket == 0) 434254361f90SMark Johnston return (NULL); 4343beb8beefSJeff Roberson 43446fd34d6fSJeff Roberson /* Don't wait for buckets, preserve caller's NOVM setting. */ 43456fd34d6fSJeff Roberson bucket = bucket_alloc(zone, udata, M_NOWAIT | (flags & M_NOVM)); 4346beb8beefSJeff Roberson if (bucket == NULL) { 4347beb8beefSJeff Roberson cnt = 0; 4348beb8beefSJeff Roberson goto out; 4349beb8beefSJeff Roberson } 43500095a784SJeff Roberson 43510095a784SJeff Roberson bucket->ub_cnt = zone->uz_import(zone->uz_arg, bucket->ub_bucket, 4352beb8beefSJeff Roberson MIN(maxbucket, bucket->ub_entries), domain, flags); 43530095a784SJeff Roberson 43540095a784SJeff Roberson /* 43550095a784SJeff Roberson * Initialize the memory if necessary. 43560095a784SJeff Roberson */ 43570095a784SJeff Roberson if (bucket->ub_cnt != 0 && zone->uz_init != NULL) { 4358099a0e58SBosko Milekic int i; 4359bbee39c6SJeff Roberson 436009c8cb71SMark Johnston for (i = 0; i < bucket->ub_cnt; i++) { 436109c8cb71SMark Johnston kasan_mark_item_valid(zone, bucket->ub_bucket[i]); 436209c8cb71SMark Johnston error = zone->uz_init(bucket->ub_bucket[i], 436309c8cb71SMark Johnston zone->uz_size, flags); 436409c8cb71SMark Johnston kasan_mark_item_invalid(zone, bucket->ub_bucket[i]); 436509c8cb71SMark Johnston if (error != 0) 4366b23f72e9SBrian Feldman break; 436709c8cb71SMark Johnston } 436809c8cb71SMark Johnston 4369b23f72e9SBrian Feldman /* 4370b23f72e9SBrian Feldman * If we couldn't initialize the whole bucket, put the 4371b23f72e9SBrian Feldman * rest back onto the freelist. 4372b23f72e9SBrian Feldman */ 4373b23f72e9SBrian Feldman if (i != bucket->ub_cnt) { 4374af526374SJeff Roberson zone->uz_release(zone->uz_arg, &bucket->ub_bucket[i], 43750095a784SJeff Roberson bucket->ub_cnt - i); 4376a5a262c6SBosko Milekic #ifdef INVARIANTS 43770095a784SJeff Roberson bzero(&bucket->ub_bucket[i], 43780095a784SJeff Roberson sizeof(void *) * (bucket->ub_cnt - i)); 4379a5a262c6SBosko Milekic #endif 4380b23f72e9SBrian Feldman bucket->ub_cnt = i; 4381b23f72e9SBrian Feldman } 4382099a0e58SBosko Milekic } 4383099a0e58SBosko Milekic 4384beb8beefSJeff Roberson cnt = bucket->ub_cnt; 4385f7104ccdSAlexander Motin if (bucket->ub_cnt == 0) { 43866fd34d6fSJeff Roberson bucket_free(zone, bucket, udata); 43872efcc8cbSGleb Smirnoff counter_u64_add(zone->uz_fails, 1); 4388beb8beefSJeff Roberson bucket = NULL; 4389beb8beefSJeff Roberson } 4390beb8beefSJeff Roberson out: 43914bd61e19SJeff Roberson if (zone->uz_max_items > 0 && cnt < maxbucket) 43924bd61e19SJeff Roberson zone_free_limit(zone, maxbucket - cnt); 4393fc03d22bSJeff Roberson 4394fc03d22bSJeff Roberson return (bucket); 4395fc03d22bSJeff Roberson } 4396fc03d22bSJeff Roberson 43978355f576SJeff Roberson /* 43980095a784SJeff Roberson * Allocates a single item from a zone. 43998355f576SJeff Roberson * 44008355f576SJeff Roberson * Arguments 44018355f576SJeff Roberson * zone The zone to alloc for. 44028355f576SJeff Roberson * udata The data to be passed to the constructor. 4403ab3185d1SJeff Roberson * domain The domain to allocate from or UMA_ANYDOMAIN. 4404a163d034SWarner Losh * flags M_WAITOK, M_NOWAIT, M_ZERO. 44058355f576SJeff Roberson * 44068355f576SJeff Roberson * Returns 44078355f576SJeff Roberson * NULL if there is no memory and M_NOWAIT is set 4408bbee39c6SJeff Roberson * An item if successful 44098355f576SJeff Roberson */ 44108355f576SJeff Roberson 44118355f576SJeff Roberson static void * 4412ab3185d1SJeff Roberson zone_alloc_item(uma_zone_t zone, void *udata, int domain, int flags) 44138355f576SJeff Roberson { 44148355f576SJeff Roberson void *item; 44158355f576SJeff Roberson 4416791dda87SAndrew Gallatin if (zone->uz_max_items > 0 && zone_alloc_limit(zone, 1, flags) == 0) { 4417791dda87SAndrew Gallatin counter_u64_add(zone->uz_fails, 1); 4418bb15d1c7SGleb Smirnoff return (NULL); 4419791dda87SAndrew Gallatin } 44208355f576SJeff Roberson 4421c1685086SJeff Roberson /* Avoid allocs targeting empty domains. */ 4422c1685086SJeff Roberson if (domain != UMA_ANYDOMAIN && VM_DOMAIN_EMPTY(domain)) 442330c5525bSAndrew Gallatin domain = UMA_ANYDOMAIN; 4424c1685086SJeff Roberson 4425ab3185d1SJeff Roberson if (zone->uz_import(zone->uz_arg, &item, 1, domain, flags) != 1) 4426beb8beefSJeff Roberson goto fail_cnt; 44278355f576SJeff Roberson 4428099a0e58SBosko Milekic /* 4429099a0e58SBosko Milekic * We have to call both the zone's init (not the keg's init) 4430099a0e58SBosko Milekic * and the zone's ctor. This is because the item is going from 4431099a0e58SBosko Milekic * a keg slab directly to the user, and the user is expecting it 4432099a0e58SBosko Milekic * to be both zone-init'd as well as zone-ctor'd. 4433099a0e58SBosko Milekic */ 4434b23f72e9SBrian Feldman if (zone->uz_init != NULL) { 443509c8cb71SMark Johnston int error; 443609c8cb71SMark Johnston 443709c8cb71SMark Johnston kasan_mark_item_valid(zone, item); 443809c8cb71SMark Johnston error = zone->uz_init(item, zone->uz_size, flags); 443909c8cb71SMark Johnston kasan_mark_item_invalid(zone, item); 444009c8cb71SMark Johnston if (error != 0) { 4441bb15d1c7SGleb Smirnoff zone_free_item(zone, item, udata, SKIP_FINI | SKIP_CNT); 4442beb8beefSJeff Roberson goto fail_cnt; 4443beb8beefSJeff Roberson } 4444beb8beefSJeff Roberson } 4445d4665eaaSJeff Roberson item = item_ctor(zone, zone->uz_flags, zone->uz_size, udata, flags, 4446d4665eaaSJeff Roberson item); 4447beb8beefSJeff Roberson if (item == NULL) 44480095a784SJeff Roberson goto fail; 44498355f576SJeff Roberson 44502efcc8cbSGleb Smirnoff counter_u64_add(zone->uz_allocs, 1); 44511431a748SGleb Smirnoff CTR3(KTR_UMA, "zone_alloc_item item %p from %s(%p)", item, 44521431a748SGleb Smirnoff zone->uz_name, zone); 44531431a748SGleb Smirnoff 44548355f576SJeff Roberson return (item); 44550095a784SJeff Roberson 4456beb8beefSJeff Roberson fail_cnt: 4457beb8beefSJeff Roberson counter_u64_add(zone->uz_fails, 1); 44580095a784SJeff Roberson fail: 44594bd61e19SJeff Roberson if (zone->uz_max_items > 0) 44604bd61e19SJeff Roberson zone_free_limit(zone, 1); 44611431a748SGleb Smirnoff CTR2(KTR_UMA, "zone_alloc_item failed from %s(%p)", 44621431a748SGleb Smirnoff zone->uz_name, zone); 44634bd61e19SJeff Roberson 44640095a784SJeff Roberson return (NULL); 44658355f576SJeff Roberson } 44668355f576SJeff Roberson 44678355f576SJeff Roberson /* See uma.h */ 44688355f576SJeff Roberson void 4469d4665eaaSJeff Roberson uma_zfree_smr(uma_zone_t zone, void *item) 4470d4665eaaSJeff Roberson { 4471d4665eaaSJeff Roberson uma_cache_t cache; 4472d4665eaaSJeff Roberson uma_cache_bucket_t bucket; 4473a7e1a585SJohn Baldwin int itemdomain; 4474a7e1a585SJohn Baldwin #ifdef NUMA 4475a7e1a585SJohn Baldwin int uz_flags; 4476a7e1a585SJohn Baldwin #endif 4477d4665eaaSJeff Roberson 4478841e0a87SGleb Smirnoff CTR3(KTR_UMA, "uma_zfree_smr zone %s(%p) item %p", 4479841e0a87SGleb Smirnoff zone->uz_name, zone, item); 4480841e0a87SGleb Smirnoff 4481d4665eaaSJeff Roberson #ifdef UMA_ZALLOC_DEBUG 4482d4665eaaSJeff Roberson KASSERT((zone->uz_flags & UMA_ZONE_SMR) != 0, 4483952c8964SMark Johnston ("uma_zfree_smr: called with non-SMR zone.")); 4484d4665eaaSJeff Roberson KASSERT(item != NULL, ("uma_zfree_smr: Called with NULL pointer.")); 4485c6fd3e23SJeff Roberson SMR_ASSERT_NOT_ENTERED(zone->uz_smr); 4486d4665eaaSJeff Roberson if (uma_zfree_debug(zone, item, NULL) == EJUSTRETURN) 4487d4665eaaSJeff Roberson return; 4488d4665eaaSJeff Roberson #endif 4489d4665eaaSJeff Roberson cache = &zone->uz_cpu[curcpu]; 4490c6fd3e23SJeff Roberson itemdomain = 0; 4491d4665eaaSJeff Roberson #ifdef NUMA 4492a7e1a585SJohn Baldwin uz_flags = cache_uz_flags(cache); 4493d4665eaaSJeff Roberson if ((uz_flags & UMA_ZONE_FIRSTTOUCH) != 0) 449481302f1dSMark Johnston itemdomain = item_domain(item); 4495d4665eaaSJeff Roberson #endif 4496d4665eaaSJeff Roberson critical_enter(); 4497d4665eaaSJeff Roberson do { 4498d4665eaaSJeff Roberson cache = &zone->uz_cpu[curcpu]; 4499d4665eaaSJeff Roberson /* SMR Zones must free to the free bucket. */ 4500d4665eaaSJeff Roberson bucket = &cache->uc_freebucket; 4501d4665eaaSJeff Roberson #ifdef NUMA 4502d4665eaaSJeff Roberson if ((uz_flags & UMA_ZONE_FIRSTTOUCH) != 0 && 4503c6fd3e23SJeff Roberson PCPU_GET(domain) != itemdomain) { 4504d4665eaaSJeff Roberson bucket = &cache->uc_crossbucket; 4505d4665eaaSJeff Roberson } 4506d4665eaaSJeff Roberson #endif 4507d4665eaaSJeff Roberson if (__predict_true(bucket->ucb_cnt < bucket->ucb_entries)) { 4508d4665eaaSJeff Roberson cache_bucket_push(cache, bucket, item); 4509d4665eaaSJeff Roberson critical_exit(); 4510d4665eaaSJeff Roberson return; 4511d4665eaaSJeff Roberson } 45122cb67bd7SGleb Smirnoff } while (cache_free(zone, cache, NULL, itemdomain)); 4513d4665eaaSJeff Roberson critical_exit(); 4514d4665eaaSJeff Roberson 4515d4665eaaSJeff Roberson /* 4516d4665eaaSJeff Roberson * If nothing else caught this, we'll just do an internal free. 4517d4665eaaSJeff Roberson */ 4518d4665eaaSJeff Roberson zone_free_item(zone, item, NULL, SKIP_NONE); 4519d4665eaaSJeff Roberson } 4520d4665eaaSJeff Roberson 4521d4665eaaSJeff Roberson /* See uma.h */ 4522d4665eaaSJeff Roberson void 45238355f576SJeff Roberson uma_zfree_arg(uma_zone_t zone, void *item, void *udata) 45248355f576SJeff Roberson { 45258355f576SJeff Roberson uma_cache_t cache; 4526376b1ba3SJeff Roberson uma_cache_bucket_t bucket; 4527c6fd3e23SJeff Roberson int itemdomain, uz_flags; 45288355f576SJeff Roberson 4529e866d8f0SMark Murray /* Enable entropy collection for RANDOM_ENABLE_UMA kernel option */ 453019fa89e9SMark Murray random_harvest_fast_uma(&zone, sizeof(zone), RANDOM_UMA); 453110cb2424SMark Murray 453228782f73SGleb Smirnoff CTR3(KTR_UMA, "uma_zfree_arg zone %s(%p) item %p", 453328782f73SGleb Smirnoff zone->uz_name, zone, item); 45343659f747SRobert Watson 4535d4665eaaSJeff Roberson #ifdef UMA_ZALLOC_DEBUG 4536d4665eaaSJeff Roberson KASSERT((zone->uz_flags & UMA_ZONE_SMR) == 0, 4537952c8964SMark Johnston ("uma_zfree_arg: called with SMR zone.")); 4538d4665eaaSJeff Roberson if (uma_zfree_debug(zone, item, udata) == EJUSTRETURN) 4539d4665eaaSJeff Roberson return; 4540d4665eaaSJeff Roberson #endif 454120ed0cb0SMatthew D Fleming /* uma_zfree(..., NULL) does nothing, to match free(9). */ 454220ed0cb0SMatthew D Fleming if (item == NULL) 454320ed0cb0SMatthew D Fleming return; 4544cc7ce83aSJeff Roberson 4545cc7ce83aSJeff Roberson /* 4546cc7ce83aSJeff Roberson * We are accessing the per-cpu cache without a critical section to 4547cc7ce83aSJeff Roberson * fetch size and flags. This is acceptable, if we are preempted we 4548cc7ce83aSJeff Roberson * will simply read another cpu's line. 4549cc7ce83aSJeff Roberson */ 4550cc7ce83aSJeff Roberson cache = &zone->uz_cpu[curcpu]; 4551cc7ce83aSJeff Roberson uz_flags = cache_uz_flags(cache); 4552d4665eaaSJeff Roberson if (UMA_ALWAYS_CTORDTOR || 4553d4665eaaSJeff Roberson __predict_false((uz_flags & UMA_ZFLAG_CTORDTOR) != 0)) 4554cc7ce83aSJeff Roberson item_dtor(zone, item, cache_uz_size(cache), udata, SKIP_NONE); 4555ef72505eSJeff Roberson 4556af7f9b97SJeff Roberson /* 4557af7f9b97SJeff Roberson * The race here is acceptable. If we miss it we'll just have to wait 4558af7f9b97SJeff Roberson * a little longer for the limits to be reset. 4559af7f9b97SJeff Roberson */ 4560cc7ce83aSJeff Roberson if (__predict_false(uz_flags & UMA_ZFLAG_LIMIT)) { 45618a6776caSMark Johnston if (atomic_load_32(&zone->uz_sleepers) > 0) 4562fc03d22bSJeff Roberson goto zfree_item; 4563cc7ce83aSJeff Roberson } 4564af7f9b97SJeff Roberson 45655d1ae027SRobert Watson /* 45665d1ae027SRobert Watson * If possible, free to the per-CPU cache. There are two 45675d1ae027SRobert Watson * requirements for safe access to the per-CPU cache: (1) the thread 45685d1ae027SRobert Watson * accessing the cache must not be preempted or yield during access, 45695d1ae027SRobert Watson * and (2) the thread must not migrate CPUs without switching which 45705d1ae027SRobert Watson * cache it accesses. We rely on a critical section to prevent 45715d1ae027SRobert Watson * preemption and migration. We release the critical section in 45725d1ae027SRobert Watson * order to acquire the zone mutex if we are unable to free to the 45735d1ae027SRobert Watson * current cache; when we re-acquire the critical section, we must 45745d1ae027SRobert Watson * detect and handle migration if it has occurred. 45755d1ae027SRobert Watson */ 4576c6fd3e23SJeff Roberson itemdomain = 0; 4577dfe13344SJeff Roberson #ifdef NUMA 4578dfe13344SJeff Roberson if ((uz_flags & UMA_ZONE_FIRSTTOUCH) != 0) 457981302f1dSMark Johnston itemdomain = item_domain(item); 4580dfe13344SJeff Roberson #endif 45815d1ae027SRobert Watson critical_enter(); 45820a81b439SJeff Roberson do { 4583cc7ce83aSJeff Roberson cache = &zone->uz_cpu[curcpu]; 4584a553d4b8SJeff Roberson /* 4585dfe13344SJeff Roberson * Try to free into the allocbucket first to give LIFO 4586dfe13344SJeff Roberson * ordering for cache-hot datastructures. Spill over 4587dfe13344SJeff Roberson * into the freebucket if necessary. Alloc will swap 4588dfe13344SJeff Roberson * them if one runs dry. 4589a553d4b8SJeff Roberson */ 4590dfe13344SJeff Roberson bucket = &cache->uc_allocbucket; 4591d4665eaaSJeff Roberson #ifdef NUMA 4592d4665eaaSJeff Roberson if ((uz_flags & UMA_ZONE_FIRSTTOUCH) != 0 && 4593c6fd3e23SJeff Roberson PCPU_GET(domain) != itemdomain) { 4594d4665eaaSJeff Roberson bucket = &cache->uc_crossbucket; 4595d4665eaaSJeff Roberson } else 4596d4665eaaSJeff Roberson #endif 4597fe835cbfSJeff Roberson if (bucket->ucb_cnt == bucket->ucb_entries && 4598fe835cbfSJeff Roberson cache->uc_freebucket.ucb_cnt < 4599fe835cbfSJeff Roberson cache->uc_freebucket.ucb_entries) 4600fe835cbfSJeff Roberson cache_bucket_swap(&cache->uc_freebucket, 4601fe835cbfSJeff Roberson &cache->uc_allocbucket); 4602376b1ba3SJeff Roberson if (__predict_true(bucket->ucb_cnt < bucket->ucb_entries)) { 4603376b1ba3SJeff Roberson cache_bucket_push(cache, bucket, item); 46045d1ae027SRobert Watson critical_exit(); 46058355f576SJeff Roberson return; 4606fc03d22bSJeff Roberson } 46072cb67bd7SGleb Smirnoff } while (cache_free(zone, cache, udata, itemdomain)); 46080a81b439SJeff Roberson critical_exit(); 4609fc03d22bSJeff Roberson 46108355f576SJeff Roberson /* 46110a81b439SJeff Roberson * If nothing else caught this, we'll just do an internal free. 46128355f576SJeff Roberson */ 46130a81b439SJeff Roberson zfree_item: 46140a81b439SJeff Roberson zone_free_item(zone, item, udata, SKIP_DTOR); 46150a81b439SJeff Roberson } 4616fc03d22bSJeff Roberson 4617dfe13344SJeff Roberson #ifdef NUMA 461891d947bfSJeff Roberson /* 461991d947bfSJeff Roberson * sort crossdomain free buckets to domain correct buckets and cache 462091d947bfSJeff Roberson * them. 462191d947bfSJeff Roberson */ 462291d947bfSJeff Roberson static void 462391d947bfSJeff Roberson zone_free_cross(uma_zone_t zone, uma_bucket_t bucket, void *udata) 462491d947bfSJeff Roberson { 4625991f23efSMark Johnston struct uma_bucketlist emptybuckets, fullbuckets; 462691d947bfSJeff Roberson uma_zone_domain_t zdom; 462791d947bfSJeff Roberson uma_bucket_t b; 4628543117beSJeff Roberson smr_seq_t seq; 462991d947bfSJeff Roberson void *item; 463091d947bfSJeff Roberson int domain; 463191d947bfSJeff Roberson 463291d947bfSJeff Roberson CTR3(KTR_UMA, 463391d947bfSJeff Roberson "uma_zfree: zone %s(%p) draining cross bucket %p", 463491d947bfSJeff Roberson zone->uz_name, zone, bucket); 463591d947bfSJeff Roberson 4636543117beSJeff Roberson /* 4637543117beSJeff Roberson * It is possible for buckets to arrive here out of order so we fetch 4638543117beSJeff Roberson * the current smr seq rather than accepting the bucket's. 4639543117beSJeff Roberson */ 4640543117beSJeff Roberson seq = SMR_SEQ_INVALID; 4641543117beSJeff Roberson if ((zone->uz_flags & UMA_ZONE_SMR) != 0) 4642226dd6dbSJeff Roberson seq = smr_advance(zone->uz_smr); 4643226dd6dbSJeff Roberson 4644226dd6dbSJeff Roberson /* 4645226dd6dbSJeff Roberson * To avoid having ndomain * ndomain buckets for sorting we have a 4646226dd6dbSJeff Roberson * lock on the current crossfree bucket. A full matrix with 4647226dd6dbSJeff Roberson * per-domain locking could be used if necessary. 4648226dd6dbSJeff Roberson */ 4649991f23efSMark Johnston STAILQ_INIT(&emptybuckets); 4650226dd6dbSJeff Roberson STAILQ_INIT(&fullbuckets); 4651226dd6dbSJeff Roberson ZONE_CROSS_LOCK(zone); 4652991f23efSMark Johnston for (; bucket->ub_cnt > 0; bucket->ub_cnt--) { 465391d947bfSJeff Roberson item = bucket->ub_bucket[bucket->ub_cnt - 1]; 465481302f1dSMark Johnston domain = item_domain(item); 4655c6fd3e23SJeff Roberson zdom = ZDOM_GET(zone, domain); 465691d947bfSJeff Roberson if (zdom->uzd_cross == NULL) { 4657991f23efSMark Johnston if ((b = STAILQ_FIRST(&emptybuckets)) != NULL) { 4658991f23efSMark Johnston STAILQ_REMOVE_HEAD(&emptybuckets, ub_link); 4659991f23efSMark Johnston zdom->uzd_cross = b; 4660991f23efSMark Johnston } else { 4661991f23efSMark Johnston /* 4662991f23efSMark Johnston * Avoid allocating a bucket with the cross lock 4663991f23efSMark Johnston * held, since allocation can trigger a 4664991f23efSMark Johnston * cross-domain free and bucket zones may 4665991f23efSMark Johnston * allocate from each other. 4666991f23efSMark Johnston */ 4667991f23efSMark Johnston ZONE_CROSS_UNLOCK(zone); 4668991f23efSMark Johnston b = bucket_alloc(zone, udata, M_NOWAIT); 4669991f23efSMark Johnston if (b == NULL) 4670991f23efSMark Johnston goto out; 4671991f23efSMark Johnston ZONE_CROSS_LOCK(zone); 4672991f23efSMark Johnston if (zdom->uzd_cross != NULL) { 4673991f23efSMark Johnston STAILQ_INSERT_HEAD(&emptybuckets, b, 4674991f23efSMark Johnston ub_link); 4675991f23efSMark Johnston } else { 4676991f23efSMark Johnston zdom->uzd_cross = b; 4677991f23efSMark Johnston } 4678991f23efSMark Johnston } 467991d947bfSJeff Roberson } 4680543117beSJeff Roberson b = zdom->uzd_cross; 4681543117beSJeff Roberson b->ub_bucket[b->ub_cnt++] = item; 4682543117beSJeff Roberson b->ub_seq = seq; 4683543117beSJeff Roberson if (b->ub_cnt == b->ub_entries) { 4684543117beSJeff Roberson STAILQ_INSERT_HEAD(&fullbuckets, b, ub_link); 4685991f23efSMark Johnston if ((b = STAILQ_FIRST(&emptybuckets)) != NULL) 4686991f23efSMark Johnston STAILQ_REMOVE_HEAD(&emptybuckets, ub_link); 4687991f23efSMark Johnston zdom->uzd_cross = b; 468891d947bfSJeff Roberson } 468991d947bfSJeff Roberson } 469091d947bfSJeff Roberson ZONE_CROSS_UNLOCK(zone); 4691991f23efSMark Johnston out: 4692c6fd3e23SJeff Roberson if (bucket->ub_cnt == 0) 4693d4665eaaSJeff Roberson bucket->ub_seq = SMR_SEQ_INVALID; 469491d947bfSJeff Roberson bucket_free(zone, bucket, udata); 4695c6fd3e23SJeff Roberson 4696991f23efSMark Johnston while ((b = STAILQ_FIRST(&emptybuckets)) != NULL) { 4697991f23efSMark Johnston STAILQ_REMOVE_HEAD(&emptybuckets, ub_link); 4698991f23efSMark Johnston bucket_free(zone, b, udata); 4699991f23efSMark Johnston } 4700c6fd3e23SJeff Roberson while ((b = STAILQ_FIRST(&fullbuckets)) != NULL) { 4701c6fd3e23SJeff Roberson STAILQ_REMOVE_HEAD(&fullbuckets, ub_link); 470281302f1dSMark Johnston domain = item_domain(b->ub_bucket[0]); 4703c6fd3e23SJeff Roberson zone_put_bucket(zone, domain, b, udata, true); 4704c6fd3e23SJeff Roberson } 470591d947bfSJeff Roberson } 470691d947bfSJeff Roberson #endif 470791d947bfSJeff Roberson 47080a81b439SJeff Roberson static void 47090a81b439SJeff Roberson zone_free_bucket(uma_zone_t zone, uma_bucket_t bucket, void *udata, 4710c6fd3e23SJeff Roberson int itemdomain, bool ws) 47110a81b439SJeff Roberson { 47120a81b439SJeff Roberson 4713dfe13344SJeff Roberson #ifdef NUMA 47140a81b439SJeff Roberson /* 47150a81b439SJeff Roberson * Buckets coming from the wrong domain will be entirely for the 47160a81b439SJeff Roberson * only other domain on two domain systems. In this case we can 47170a81b439SJeff Roberson * simply cache them. Otherwise we need to sort them back to 471891d947bfSJeff Roberson * correct domains. 47190a81b439SJeff Roberson */ 4720c6fd3e23SJeff Roberson if ((zone->uz_flags & UMA_ZONE_FIRSTTOUCH) != 0 && 4721c6fd3e23SJeff Roberson vm_ndomains > 2 && PCPU_GET(domain) != itemdomain) { 472291d947bfSJeff Roberson zone_free_cross(zone, bucket, udata); 47230a81b439SJeff Roberson return; 47240a81b439SJeff Roberson } 47250a81b439SJeff Roberson #endif 472691d947bfSJeff Roberson 47270a81b439SJeff Roberson /* 47280a81b439SJeff Roberson * Attempt to save the bucket in the zone's domain bucket cache. 47290a81b439SJeff Roberson */ 47300a81b439SJeff Roberson CTR3(KTR_UMA, 47310a81b439SJeff Roberson "uma_zfree: zone %s(%p) putting bucket %p on free list", 47320a81b439SJeff Roberson zone->uz_name, zone, bucket); 47330a81b439SJeff Roberson /* ub_cnt is pointing to the last free item */ 4734c6fd3e23SJeff Roberson if ((zone->uz_flags & UMA_ZONE_ROUNDROBIN) != 0) 4735c6fd3e23SJeff Roberson itemdomain = zone_domain_lowest(zone, itemdomain); 4736c6fd3e23SJeff Roberson zone_put_bucket(zone, itemdomain, bucket, udata, ws); 47378355f576SJeff Roberson } 4738fc03d22bSJeff Roberson 47394d104ba0SAlexander Motin /* 47400a81b439SJeff Roberson * Populate a free or cross bucket for the current cpu cache. Free any 47410a81b439SJeff Roberson * existing full bucket either to the zone cache or back to the slab layer. 47420a81b439SJeff Roberson * 47430a81b439SJeff Roberson * Enters and returns in a critical section. false return indicates that 47440a81b439SJeff Roberson * we can not satisfy this free in the cache layer. true indicates that 47450a81b439SJeff Roberson * the caller should retry. 47464d104ba0SAlexander Motin */ 47470a81b439SJeff Roberson static __noinline bool 47482cb67bd7SGleb Smirnoff cache_free(uma_zone_t zone, uma_cache_t cache, void *udata, int itemdomain) 47490a81b439SJeff Roberson { 4750dfe13344SJeff Roberson uma_cache_bucket_t cbucket; 4751d4665eaaSJeff Roberson uma_bucket_t newbucket, bucket; 47520a81b439SJeff Roberson 47530a81b439SJeff Roberson CRITICAL_ASSERT(curthread); 47540a81b439SJeff Roberson 4755d4665eaaSJeff Roberson if (zone->uz_bucket_size == 0) 47560a81b439SJeff Roberson return false; 47570a81b439SJeff Roberson 4758cc7ce83aSJeff Roberson cache = &zone->uz_cpu[curcpu]; 4759d4665eaaSJeff Roberson newbucket = NULL; 47600a81b439SJeff Roberson 47610a81b439SJeff Roberson /* 4762dfe13344SJeff Roberson * FIRSTTOUCH domains need to free to the correct zdom. When 4763dfe13344SJeff Roberson * enabled this is the zdom of the item. The bucket is the 4764dfe13344SJeff Roberson * cross bucket if the current domain and itemdomain do not match. 47650a81b439SJeff Roberson */ 4766dfe13344SJeff Roberson cbucket = &cache->uc_freebucket; 4767dfe13344SJeff Roberson #ifdef NUMA 4768c6fd3e23SJeff Roberson if ((cache_uz_flags(cache) & UMA_ZONE_FIRSTTOUCH) != 0) { 4769c6fd3e23SJeff Roberson if (PCPU_GET(domain) != itemdomain) { 4770dfe13344SJeff Roberson cbucket = &cache->uc_crossbucket; 4771dfe13344SJeff Roberson if (cbucket->ucb_cnt != 0) 4772c6fd3e23SJeff Roberson counter_u64_add(zone->uz_xdomain, 4773dfe13344SJeff Roberson cbucket->ucb_cnt); 4774dfe13344SJeff Roberson } 4775c6fd3e23SJeff Roberson } 47760a81b439SJeff Roberson #endif 4777dfe13344SJeff Roberson bucket = cache_bucket_unload(cbucket); 4778c6fd3e23SJeff Roberson KASSERT(bucket == NULL || bucket->ub_cnt == bucket->ub_entries, 4779c6fd3e23SJeff Roberson ("cache_free: Entered with non-full free bucket.")); 47800a81b439SJeff Roberson 47810a81b439SJeff Roberson /* We are no longer associated with this CPU. */ 47820a81b439SJeff Roberson critical_exit(); 47830a81b439SJeff Roberson 4784d4665eaaSJeff Roberson /* 4785d4665eaaSJeff Roberson * Don't let SMR zones operate without a free bucket. Force 4786d4665eaaSJeff Roberson * a synchronize and re-use this one. We will only degrade 4787d4665eaaSJeff Roberson * to a synchronize every bucket_size items rather than every 4788d4665eaaSJeff Roberson * item if we fail to allocate a bucket. 4789d4665eaaSJeff Roberson */ 4790d4665eaaSJeff Roberson if ((zone->uz_flags & UMA_ZONE_SMR) != 0) { 4791d4665eaaSJeff Roberson if (bucket != NULL) 4792d4665eaaSJeff Roberson bucket->ub_seq = smr_advance(zone->uz_smr); 4793d4665eaaSJeff Roberson newbucket = bucket_alloc(zone, udata, M_NOWAIT); 4794d4665eaaSJeff Roberson if (newbucket == NULL && bucket != NULL) { 4795d4665eaaSJeff Roberson bucket_drain(zone, bucket); 4796d4665eaaSJeff Roberson newbucket = bucket; 4797d4665eaaSJeff Roberson bucket = NULL; 4798d4665eaaSJeff Roberson } 4799d4665eaaSJeff Roberson } else if (!bucketdisable) 4800d4665eaaSJeff Roberson newbucket = bucket_alloc(zone, udata, M_NOWAIT); 4801d4665eaaSJeff Roberson 48020a81b439SJeff Roberson if (bucket != NULL) 4803c6fd3e23SJeff Roberson zone_free_bucket(zone, bucket, udata, itemdomain, true); 4804a553d4b8SJeff Roberson 4805fc03d22bSJeff Roberson critical_enter(); 4806d4665eaaSJeff Roberson if ((bucket = newbucket) == NULL) 48070a81b439SJeff Roberson return (false); 4808cc7ce83aSJeff Roberson cache = &zone->uz_cpu[curcpu]; 4809dfe13344SJeff Roberson #ifdef NUMA 4810fc03d22bSJeff Roberson /* 48110a81b439SJeff Roberson * Check to see if we should be populating the cross bucket. If it 48120a81b439SJeff Roberson * is already populated we will fall through and attempt to populate 48130a81b439SJeff Roberson * the free bucket. 4814fc03d22bSJeff Roberson */ 4815c6fd3e23SJeff Roberson if ((cache_uz_flags(cache) & UMA_ZONE_FIRSTTOUCH) != 0) { 4816c6fd3e23SJeff Roberson if (PCPU_GET(domain) != itemdomain && 4817376b1ba3SJeff Roberson cache->uc_crossbucket.ucb_bucket == NULL) { 4818376b1ba3SJeff Roberson cache_bucket_load_cross(cache, bucket); 48190a81b439SJeff Roberson return (true); 48200a81b439SJeff Roberson } 48210a81b439SJeff Roberson } 48220a81b439SJeff Roberson #endif 48230a81b439SJeff Roberson /* 48240a81b439SJeff Roberson * We may have lost the race to fill the bucket or switched CPUs. 48250a81b439SJeff Roberson */ 4826376b1ba3SJeff Roberson if (cache->uc_freebucket.ucb_bucket != NULL) { 4827fc03d22bSJeff Roberson critical_exit(); 48286fd34d6fSJeff Roberson bucket_free(zone, bucket, udata); 48290a81b439SJeff Roberson critical_enter(); 48300a81b439SJeff Roberson } else 4831376b1ba3SJeff Roberson cache_bucket_load_free(cache, bucket); 48328355f576SJeff Roberson 48330a81b439SJeff Roberson return (true); 48348355f576SJeff Roberson } 48358355f576SJeff Roberson 48368355f576SJeff Roberson static void 4837bb15d1c7SGleb Smirnoff slab_free_item(uma_zone_t zone, uma_slab_t slab, void *item) 48388355f576SJeff Roberson { 4839bb15d1c7SGleb Smirnoff uma_keg_t keg; 4840ab3185d1SJeff Roberson uma_domain_t dom; 48419b8db4d0SRyan Libby int freei; 4842099a0e58SBosko Milekic 4843bb15d1c7SGleb Smirnoff keg = zone->uz_keg; 48448b987a77SJeff Roberson KEG_LOCK_ASSERT(keg, slab->us_domain); 4845ab3185d1SJeff Roberson 48468355f576SJeff Roberson /* Do we need to remove from any lists? */ 48478b987a77SJeff Roberson dom = &keg->uk_domain[slab->us_domain]; 4848099a0e58SBosko Milekic if (slab->us_freecount + 1 == keg->uk_ipers) { 48498355f576SJeff Roberson LIST_REMOVE(slab, us_link); 4850ab3185d1SJeff Roberson LIST_INSERT_HEAD(&dom->ud_free_slab, slab, us_link); 48514ab3aee8SMark Johnston dom->ud_free_slabs++; 48528355f576SJeff Roberson } else if (slab->us_freecount == 0) { 48538355f576SJeff Roberson LIST_REMOVE(slab, us_link); 4854ab3185d1SJeff Roberson LIST_INSERT_HEAD(&dom->ud_part_slab, slab, us_link); 48558355f576SJeff Roberson } 48568355f576SJeff Roberson 4857ef72505eSJeff Roberson /* Slab management. */ 48581e0701e1SJeff Roberson freei = slab_item_index(slab, keg, item); 48599b78b1f4SJeff Roberson BIT_SET(keg->uk_ipers, freei, &slab->us_free); 48608355f576SJeff Roberson slab->us_freecount++; 48618355f576SJeff Roberson 4862ef72505eSJeff Roberson /* Keg statistics. */ 48634ab3aee8SMark Johnston dom->ud_free_items++; 48640095a784SJeff Roberson } 48650095a784SJeff Roberson 48660095a784SJeff Roberson static void 4867b75c4efcSAndrew Turner zone_release(void *arg, void **bucket, int cnt) 48680095a784SJeff Roberson { 48698b987a77SJeff Roberson struct mtx *lock; 4870b75c4efcSAndrew Turner uma_zone_t zone; 48710095a784SJeff Roberson uma_slab_t slab; 48720095a784SJeff Roberson uma_keg_t keg; 48730095a784SJeff Roberson uint8_t *mem; 48748b987a77SJeff Roberson void *item; 48750095a784SJeff Roberson int i; 48768355f576SJeff Roberson 4877b75c4efcSAndrew Turner zone = arg; 4878bb15d1c7SGleb Smirnoff keg = zone->uz_keg; 48798b987a77SJeff Roberson lock = NULL; 488054c5ae80SRyan Libby if (__predict_false((zone->uz_flags & UMA_ZFLAG_HASH) != 0)) 48818b987a77SJeff Roberson lock = KEG_LOCK(keg, 0); 48820095a784SJeff Roberson for (i = 0; i < cnt; i++) { 48830095a784SJeff Roberson item = bucket[i]; 488454c5ae80SRyan Libby if (__predict_true((zone->uz_flags & UMA_ZFLAG_VTOSLAB) != 0)) { 48850095a784SJeff Roberson slab = vtoslab((vm_offset_t)item); 48868b987a77SJeff Roberson } else { 48878b987a77SJeff Roberson mem = (uint8_t *)((uintptr_t)item & (~UMA_SLAB_MASK)); 488854c5ae80SRyan Libby if ((zone->uz_flags & UMA_ZFLAG_HASH) != 0) 48898b987a77SJeff Roberson slab = hash_sfind(&keg->uk_hash, mem); 48908b987a77SJeff Roberson else 48918b987a77SJeff Roberson slab = (uma_slab_t)(mem + keg->uk_pgoff); 48928b987a77SJeff Roberson } 48938b987a77SJeff Roberson if (lock != KEG_LOCKPTR(keg, slab->us_domain)) { 48948b987a77SJeff Roberson if (lock != NULL) 48958b987a77SJeff Roberson mtx_unlock(lock); 48968b987a77SJeff Roberson lock = KEG_LOCK(keg, slab->us_domain); 48978b987a77SJeff Roberson } 4898bb15d1c7SGleb Smirnoff slab_free_item(zone, slab, item); 48990095a784SJeff Roberson } 49008b987a77SJeff Roberson if (lock != NULL) 49018b987a77SJeff Roberson mtx_unlock(lock); 49028355f576SJeff Roberson } 49038355f576SJeff Roberson 49040095a784SJeff Roberson /* 49050095a784SJeff Roberson * Frees a single item to any zone. 49060095a784SJeff Roberson * 49070095a784SJeff Roberson * Arguments: 49080095a784SJeff Roberson * zone The zone to free to 49090095a784SJeff Roberson * item The item we're freeing 49100095a784SJeff Roberson * udata User supplied data for the dtor 49110095a784SJeff Roberson * skip Skip dtors and finis 49120095a784SJeff Roberson */ 49136d88d784SJeff Roberson static __noinline void 49140095a784SJeff Roberson zone_free_item(uma_zone_t zone, void *item, void *udata, enum zfreeskip skip) 49150095a784SJeff Roberson { 4916c5deaf04SGleb Smirnoff 4917d4665eaaSJeff Roberson /* 4918d4665eaaSJeff Roberson * If a free is sent directly to an SMR zone we have to 4919d4665eaaSJeff Roberson * synchronize immediately because the item can instantly 4920d4665eaaSJeff Roberson * be reallocated. This should only happen in degenerate 4921d4665eaaSJeff Roberson * cases when no memory is available for per-cpu caches. 4922d4665eaaSJeff Roberson */ 4923d4665eaaSJeff Roberson if ((zone->uz_flags & UMA_ZONE_SMR) != 0 && skip == SKIP_NONE) 4924d4665eaaSJeff Roberson smr_synchronize(zone->uz_smr); 4925d4665eaaSJeff Roberson 4926cc7ce83aSJeff Roberson item_dtor(zone, item, zone->uz_size, udata, skip); 49270095a784SJeff Roberson 492809c8cb71SMark Johnston if (skip < SKIP_FINI && zone->uz_fini) { 492909c8cb71SMark Johnston kasan_mark_item_valid(zone, item); 49300095a784SJeff Roberson zone->uz_fini(item, zone->uz_size); 493109c8cb71SMark Johnston kasan_mark_item_invalid(zone, item); 493209c8cb71SMark Johnston } 49330095a784SJeff Roberson 49340095a784SJeff Roberson zone->uz_release(zone->uz_arg, &item, 1); 4935bb15d1c7SGleb Smirnoff 4936bb15d1c7SGleb Smirnoff if (skip & SKIP_CNT) 4937bb15d1c7SGleb Smirnoff return; 4938bb15d1c7SGleb Smirnoff 49392efcc8cbSGleb Smirnoff counter_u64_add(zone->uz_frees, 1); 49402efcc8cbSGleb Smirnoff 49414bd61e19SJeff Roberson if (zone->uz_max_items > 0) 49424bd61e19SJeff Roberson zone_free_limit(zone, 1); 4943bb45b411SGleb Smirnoff } 49440095a784SJeff Roberson 49458355f576SJeff Roberson /* See uma.h */ 49461c6cae97SLawrence Stewart int 4947736ee590SJeff Roberson uma_zone_set_max(uma_zone_t zone, int nitems) 4948736ee590SJeff Roberson { 4949e574d407SMark Johnston 4950e574d407SMark Johnston /* 4951e574d407SMark Johnston * If the limit is small, we may need to constrain the maximum per-CPU 4952e574d407SMark Johnston * cache size, or disable caching entirely. 4953e574d407SMark Johnston */ 4954e574d407SMark Johnston uma_zone_set_maxcache(zone, nitems); 4955bb15d1c7SGleb Smirnoff 49564bd61e19SJeff Roberson /* 49574bd61e19SJeff Roberson * XXX This can misbehave if the zone has any allocations with 49584bd61e19SJeff Roberson * no limit and a limit is imposed. There is currently no 49594bd61e19SJeff Roberson * way to clear a limit. 49604bd61e19SJeff Roberson */ 4961bb15d1c7SGleb Smirnoff ZONE_LOCK(zone); 4962d53927b0SMark Johnston if (zone->uz_max_items == 0) 4963d53927b0SMark Johnston ZONE_ASSERT_COLD(zone); 4964bb15d1c7SGleb Smirnoff zone->uz_max_items = nitems; 4965cc7ce83aSJeff Roberson zone->uz_flags |= UMA_ZFLAG_LIMIT; 4966cc7ce83aSJeff Roberson zone_update_caches(zone); 49674bd61e19SJeff Roberson /* We may need to wake waiters. */ 49684bd61e19SJeff Roberson wakeup(&zone->uz_max_items); 4969bb15d1c7SGleb Smirnoff ZONE_UNLOCK(zone); 4970bb15d1c7SGleb Smirnoff 4971bb15d1c7SGleb Smirnoff return (nitems); 4972bb15d1c7SGleb Smirnoff } 4973bb15d1c7SGleb Smirnoff 4974bb15d1c7SGleb Smirnoff /* See uma.h */ 4975003cf08bSMark Johnston void 4976bb15d1c7SGleb Smirnoff uma_zone_set_maxcache(uma_zone_t zone, int nitems) 4977bb15d1c7SGleb Smirnoff { 4978e574d407SMark Johnston int bpcpu, bpdom, bsize, nb; 4979bb15d1c7SGleb Smirnoff 4980bb15d1c7SGleb Smirnoff ZONE_LOCK(zone); 4981e574d407SMark Johnston 4982e574d407SMark Johnston /* 4983e574d407SMark Johnston * Compute a lower bound on the number of items that may be cached in 4984e574d407SMark Johnston * the zone. Each CPU gets at least two buckets, and for cross-domain 4985e574d407SMark Johnston * frees we use an additional bucket per CPU and per domain. Select the 4986e574d407SMark Johnston * largest bucket size that does not exceed half of the requested limit, 4987e574d407SMark Johnston * with the left over space given to the full bucket cache. 4988e574d407SMark Johnston */ 4989e574d407SMark Johnston bpdom = 0; 4990003cf08bSMark Johnston bpcpu = 2; 4991e574d407SMark Johnston #ifdef NUMA 4992e574d407SMark Johnston if ((zone->uz_flags & UMA_ZONE_FIRSTTOUCH) != 0 && vm_ndomains > 1) { 4993003cf08bSMark Johnston bpcpu++; 4994e574d407SMark Johnston bpdom++; 4995003cf08bSMark Johnston } 4996e574d407SMark Johnston #endif 4997e574d407SMark Johnston nb = bpcpu * mp_ncpus + bpdom * vm_ndomains; 4998e574d407SMark Johnston bsize = nitems / nb / 2; 4999e574d407SMark Johnston if (bsize > BUCKET_MAX) 5000e574d407SMark Johnston bsize = BUCKET_MAX; 5001e574d407SMark Johnston else if (bsize == 0 && nitems / nb > 0) 5002e574d407SMark Johnston bsize = 1; 5003e574d407SMark Johnston zone->uz_bucket_size_max = zone->uz_bucket_size = bsize; 500420a4e154SJeff Roberson if (zone->uz_bucket_size_min > zone->uz_bucket_size_max) 500520a4e154SJeff Roberson zone->uz_bucket_size_min = zone->uz_bucket_size_max; 5006e574d407SMark Johnston zone->uz_bucket_max = nitems - nb * bsize; 5007bb15d1c7SGleb Smirnoff ZONE_UNLOCK(zone); 5008736ee590SJeff Roberson } 5009736ee590SJeff Roberson 5010736ee590SJeff Roberson /* See uma.h */ 5011e49471b0SAndre Oppermann int 5012e49471b0SAndre Oppermann uma_zone_get_max(uma_zone_t zone) 5013e49471b0SAndre Oppermann { 5014e49471b0SAndre Oppermann int nitems; 5015e49471b0SAndre Oppermann 5016727c6918SJeff Roberson nitems = atomic_load_64(&zone->uz_max_items); 5017e49471b0SAndre Oppermann 5018e49471b0SAndre Oppermann return (nitems); 5019e49471b0SAndre Oppermann } 5020e49471b0SAndre Oppermann 5021e49471b0SAndre Oppermann /* See uma.h */ 50222f891cd5SPawel Jakub Dawidek void 50232f891cd5SPawel Jakub Dawidek uma_zone_set_warning(uma_zone_t zone, const char *warning) 50242f891cd5SPawel Jakub Dawidek { 50252f891cd5SPawel Jakub Dawidek 5026727c6918SJeff Roberson ZONE_ASSERT_COLD(zone); 50272f891cd5SPawel Jakub Dawidek zone->uz_warning = warning; 50282f891cd5SPawel Jakub Dawidek } 50292f891cd5SPawel Jakub Dawidek 50302f891cd5SPawel Jakub Dawidek /* See uma.h */ 503154503a13SJonathan T. Looney void 503254503a13SJonathan T. Looney uma_zone_set_maxaction(uma_zone_t zone, uma_maxaction_t maxaction) 503354503a13SJonathan T. Looney { 503454503a13SJonathan T. Looney 5035727c6918SJeff Roberson ZONE_ASSERT_COLD(zone); 5036e60b2fcbSGleb Smirnoff TASK_INIT(&zone->uz_maxaction, 0, (task_fn_t *)maxaction, zone); 503754503a13SJonathan T. Looney } 503854503a13SJonathan T. Looney 503954503a13SJonathan T. Looney /* See uma.h */ 5040c4ae7908SLawrence Stewart int 5041c4ae7908SLawrence Stewart uma_zone_get_cur(uma_zone_t zone) 5042c4ae7908SLawrence Stewart { 5043c4ae7908SLawrence Stewart int64_t nitems; 5044c4ae7908SLawrence Stewart u_int i; 5045c4ae7908SLawrence Stewart 5046bfb6b7a1SJeff Roberson nitems = 0; 5047bfb6b7a1SJeff Roberson if (zone->uz_allocs != EARLY_COUNTER && zone->uz_frees != EARLY_COUNTER) 50482efcc8cbSGleb Smirnoff nitems = counter_u64_fetch(zone->uz_allocs) - 50492efcc8cbSGleb Smirnoff counter_u64_fetch(zone->uz_frees); 5050727c6918SJeff Roberson CPU_FOREACH(i) 5051727c6918SJeff Roberson nitems += atomic_load_64(&zone->uz_cpu[i].uc_allocs) - 5052727c6918SJeff Roberson atomic_load_64(&zone->uz_cpu[i].uc_frees); 5053c4ae7908SLawrence Stewart 5054c4ae7908SLawrence Stewart return (nitems < 0 ? 0 : nitems); 5055c4ae7908SLawrence Stewart } 5056c4ae7908SLawrence Stewart 505720a4e154SJeff Roberson static uint64_t 505820a4e154SJeff Roberson uma_zone_get_allocs(uma_zone_t zone) 505920a4e154SJeff Roberson { 506020a4e154SJeff Roberson uint64_t nitems; 506120a4e154SJeff Roberson u_int i; 506220a4e154SJeff Roberson 5063bfb6b7a1SJeff Roberson nitems = 0; 5064bfb6b7a1SJeff Roberson if (zone->uz_allocs != EARLY_COUNTER) 506520a4e154SJeff Roberson nitems = counter_u64_fetch(zone->uz_allocs); 5066727c6918SJeff Roberson CPU_FOREACH(i) 5067727c6918SJeff Roberson nitems += atomic_load_64(&zone->uz_cpu[i].uc_allocs); 506820a4e154SJeff Roberson 506920a4e154SJeff Roberson return (nitems); 507020a4e154SJeff Roberson } 507120a4e154SJeff Roberson 507220a4e154SJeff Roberson static uint64_t 507320a4e154SJeff Roberson uma_zone_get_frees(uma_zone_t zone) 507420a4e154SJeff Roberson { 507520a4e154SJeff Roberson uint64_t nitems; 507620a4e154SJeff Roberson u_int i; 507720a4e154SJeff Roberson 5078bfb6b7a1SJeff Roberson nitems = 0; 5079bfb6b7a1SJeff Roberson if (zone->uz_frees != EARLY_COUNTER) 508020a4e154SJeff Roberson nitems = counter_u64_fetch(zone->uz_frees); 5081727c6918SJeff Roberson CPU_FOREACH(i) 5082727c6918SJeff Roberson nitems += atomic_load_64(&zone->uz_cpu[i].uc_frees); 508320a4e154SJeff Roberson 508420a4e154SJeff Roberson return (nitems); 508520a4e154SJeff Roberson } 508620a4e154SJeff Roberson 508731c251a0SJeff Roberson #ifdef INVARIANTS 508831c251a0SJeff Roberson /* Used only for KEG_ASSERT_COLD(). */ 508931c251a0SJeff Roberson static uint64_t 509031c251a0SJeff Roberson uma_keg_get_allocs(uma_keg_t keg) 509131c251a0SJeff Roberson { 509231c251a0SJeff Roberson uma_zone_t z; 509331c251a0SJeff Roberson uint64_t nitems; 509431c251a0SJeff Roberson 509531c251a0SJeff Roberson nitems = 0; 509631c251a0SJeff Roberson LIST_FOREACH(z, &keg->uk_zones, uz_link) 509731c251a0SJeff Roberson nitems += uma_zone_get_allocs(z); 509831c251a0SJeff Roberson 509931c251a0SJeff Roberson return (nitems); 510031c251a0SJeff Roberson } 510131c251a0SJeff Roberson #endif 510231c251a0SJeff Roberson 5103c4ae7908SLawrence Stewart /* See uma.h */ 5104736ee590SJeff Roberson void 5105099a0e58SBosko Milekic uma_zone_set_init(uma_zone_t zone, uma_init uminit) 5106099a0e58SBosko Milekic { 5107e20a199fSJeff Roberson uma_keg_t keg; 5108e20a199fSJeff Roberson 5109bb15d1c7SGleb Smirnoff KEG_GET(zone, keg); 5110727c6918SJeff Roberson KEG_ASSERT_COLD(keg); 5111e20a199fSJeff Roberson keg->uk_init = uminit; 5112099a0e58SBosko Milekic } 5113099a0e58SBosko Milekic 5114099a0e58SBosko Milekic /* See uma.h */ 5115099a0e58SBosko Milekic void 5116099a0e58SBosko Milekic uma_zone_set_fini(uma_zone_t zone, uma_fini fini) 5117099a0e58SBosko Milekic { 5118e20a199fSJeff Roberson uma_keg_t keg; 5119e20a199fSJeff Roberson 5120bb15d1c7SGleb Smirnoff KEG_GET(zone, keg); 5121727c6918SJeff Roberson KEG_ASSERT_COLD(keg); 5122e20a199fSJeff Roberson keg->uk_fini = fini; 5123099a0e58SBosko Milekic } 5124099a0e58SBosko Milekic 5125099a0e58SBosko Milekic /* See uma.h */ 5126099a0e58SBosko Milekic void 5127099a0e58SBosko Milekic uma_zone_set_zinit(uma_zone_t zone, uma_init zinit) 5128099a0e58SBosko Milekic { 5129af526374SJeff Roberson 5130727c6918SJeff Roberson ZONE_ASSERT_COLD(zone); 5131099a0e58SBosko Milekic zone->uz_init = zinit; 5132099a0e58SBosko Milekic } 5133099a0e58SBosko Milekic 5134099a0e58SBosko Milekic /* See uma.h */ 5135099a0e58SBosko Milekic void 5136099a0e58SBosko Milekic uma_zone_set_zfini(uma_zone_t zone, uma_fini zfini) 5137099a0e58SBosko Milekic { 5138af526374SJeff Roberson 5139727c6918SJeff Roberson ZONE_ASSERT_COLD(zone); 5140099a0e58SBosko Milekic zone->uz_fini = zfini; 5141099a0e58SBosko Milekic } 5142099a0e58SBosko Milekic 5143099a0e58SBosko Milekic /* See uma.h */ 5144099a0e58SBosko Milekic void 51458355f576SJeff Roberson uma_zone_set_freef(uma_zone_t zone, uma_free freef) 51468355f576SJeff Roberson { 51470095a784SJeff Roberson uma_keg_t keg; 5148e20a199fSJeff Roberson 5149bb15d1c7SGleb Smirnoff KEG_GET(zone, keg); 5150727c6918SJeff Roberson KEG_ASSERT_COLD(keg); 51510095a784SJeff Roberson keg->uk_freef = freef; 51528355f576SJeff Roberson } 51538355f576SJeff Roberson 51548355f576SJeff Roberson /* See uma.h */ 51558355f576SJeff Roberson void 51568355f576SJeff Roberson uma_zone_set_allocf(uma_zone_t zone, uma_alloc allocf) 51578355f576SJeff Roberson { 5158e20a199fSJeff Roberson uma_keg_t keg; 5159e20a199fSJeff Roberson 5160bb15d1c7SGleb Smirnoff KEG_GET(zone, keg); 5161727c6918SJeff Roberson KEG_ASSERT_COLD(keg); 5162e20a199fSJeff Roberson keg->uk_allocf = allocf; 51638355f576SJeff Roberson } 51648355f576SJeff Roberson 51658355f576SJeff Roberson /* See uma.h */ 51666fd34d6fSJeff Roberson void 5167d4665eaaSJeff Roberson uma_zone_set_smr(uma_zone_t zone, smr_t smr) 5168d4665eaaSJeff Roberson { 5169d4665eaaSJeff Roberson 5170d4665eaaSJeff Roberson ZONE_ASSERT_COLD(zone); 5171d4665eaaSJeff Roberson 51727f746c9fSMateusz Guzik KASSERT(smr != NULL, ("Got NULL smr")); 51737f746c9fSMateusz Guzik KASSERT((zone->uz_flags & UMA_ZONE_SMR) == 0, 51747f746c9fSMateusz Guzik ("zone %p (%s) already uses SMR", zone, zone->uz_name)); 5175d4665eaaSJeff Roberson zone->uz_flags |= UMA_ZONE_SMR; 5176d4665eaaSJeff Roberson zone->uz_smr = smr; 5177d4665eaaSJeff Roberson zone_update_caches(zone); 5178d4665eaaSJeff Roberson } 5179d4665eaaSJeff Roberson 5180d4665eaaSJeff Roberson smr_t 5181d4665eaaSJeff Roberson uma_zone_get_smr(uma_zone_t zone) 5182d4665eaaSJeff Roberson { 5183d4665eaaSJeff Roberson 5184d4665eaaSJeff Roberson return (zone->uz_smr); 5185d4665eaaSJeff Roberson } 5186d4665eaaSJeff Roberson 5187d4665eaaSJeff Roberson /* See uma.h */ 5188d4665eaaSJeff Roberson void 51896fd34d6fSJeff Roberson uma_zone_reserve(uma_zone_t zone, int items) 51906fd34d6fSJeff Roberson { 51916fd34d6fSJeff Roberson uma_keg_t keg; 51926fd34d6fSJeff Roberson 5193bb15d1c7SGleb Smirnoff KEG_GET(zone, keg); 5194727c6918SJeff Roberson KEG_ASSERT_COLD(keg); 51956fd34d6fSJeff Roberson keg->uk_reserve = items; 51966fd34d6fSJeff Roberson } 51976fd34d6fSJeff Roberson 51986fd34d6fSJeff Roberson /* See uma.h */ 51998355f576SJeff Roberson int 5200a4915c21SAttilio Rao uma_zone_reserve_kva(uma_zone_t zone, int count) 52018355f576SJeff Roberson { 5202099a0e58SBosko Milekic uma_keg_t keg; 52038355f576SJeff Roberson vm_offset_t kva; 52049ba30bcbSZbigniew Bodek u_int pages; 52058355f576SJeff Roberson 5206bb15d1c7SGleb Smirnoff KEG_GET(zone, keg); 5207727c6918SJeff Roberson KEG_ASSERT_COLD(keg); 5208727c6918SJeff Roberson ZONE_ASSERT_COLD(zone); 52098355f576SJeff Roberson 521079c9f942SJeff Roberson pages = howmany(count, keg->uk_ipers) * keg->uk_ppera; 5211a553d4b8SJeff Roberson 5212da76d349SBojan Novković #ifdef UMA_USE_DMAP 5213a4915c21SAttilio Rao if (keg->uk_ppera > 1) { 5214a4915c21SAttilio Rao #else 5215a4915c21SAttilio Rao if (1) { 5216a4915c21SAttilio Rao #endif 521757223e99SAndriy Gapon kva = kva_alloc((vm_size_t)pages * PAGE_SIZE); 5218d1f42ac2SAlan Cox if (kva == 0) 52198355f576SJeff Roberson return (0); 5220a4915c21SAttilio Rao } else 5221a4915c21SAttilio Rao kva = 0; 5222bb15d1c7SGleb Smirnoff 5223bb15d1c7SGleb Smirnoff MPASS(keg->uk_kva == 0); 5224099a0e58SBosko Milekic keg->uk_kva = kva; 5225a4915c21SAttilio Rao keg->uk_offset = 0; 5226bb15d1c7SGleb Smirnoff zone->uz_max_items = pages * keg->uk_ipers; 5227d25ed650SBojan Novković #ifdef UMA_USE_DMAP 5228a4915c21SAttilio Rao keg->uk_allocf = (keg->uk_ppera > 1) ? noobj_alloc : uma_small_alloc; 5229a4915c21SAttilio Rao #else 5230a4915c21SAttilio Rao keg->uk_allocf = noobj_alloc; 5231a4915c21SAttilio Rao #endif 5232cc7ce83aSJeff Roberson keg->uk_flags |= UMA_ZFLAG_LIMIT | UMA_ZONE_NOFREE; 5233cc7ce83aSJeff Roberson zone->uz_flags |= UMA_ZFLAG_LIMIT | UMA_ZONE_NOFREE; 5234cc7ce83aSJeff Roberson zone_update_caches(zone); 5235af526374SJeff Roberson 52368355f576SJeff Roberson return (1); 52378355f576SJeff Roberson } 52388355f576SJeff Roberson 52398355f576SJeff Roberson /* See uma.h */ 52408355f576SJeff Roberson void 52418355f576SJeff Roberson uma_prealloc(uma_zone_t zone, int items) 52428355f576SJeff Roberson { 5243920239efSMark Johnston struct vm_domainset_iter di; 5244ab3185d1SJeff Roberson uma_domain_t dom; 52458355f576SJeff Roberson uma_slab_t slab; 5246099a0e58SBosko Milekic uma_keg_t keg; 524786220393SMark Johnston int aflags, domain, slabs; 52488355f576SJeff Roberson 5249bb15d1c7SGleb Smirnoff KEG_GET(zone, keg); 525079c9f942SJeff Roberson slabs = howmany(items, keg->uk_ipers); 5251194a979eSMark Johnston while (slabs-- > 0) { 525286220393SMark Johnston aflags = M_NOWAIT; 525386220393SMark Johnston vm_domainset_iter_policy_ref_init(&di, &keg->uk_dr, &domain, 525486220393SMark Johnston &aflags); 525586220393SMark Johnston for (;;) { 525686220393SMark Johnston slab = keg_alloc_slab(keg, zone, domain, M_WAITOK, 525786220393SMark Johnston aflags); 525886220393SMark Johnston if (slab != NULL) { 5259ab3185d1SJeff Roberson dom = &keg->uk_domain[slab->us_domain]; 52604ab3aee8SMark Johnston /* 52614ab3aee8SMark Johnston * keg_alloc_slab() always returns a slab on the 52624ab3aee8SMark Johnston * partial list. 52634ab3aee8SMark Johnston */ 52648b987a77SJeff Roberson LIST_REMOVE(slab, us_link); 526586220393SMark Johnston LIST_INSERT_HEAD(&dom->ud_free_slab, slab, 526686220393SMark Johnston us_link); 52674ab3aee8SMark Johnston dom->ud_free_slabs++; 52688b987a77SJeff Roberson KEG_UNLOCK(keg, slab->us_domain); 5269920239efSMark Johnston break; 52708355f576SJeff Roberson } 52718b987a77SJeff Roberson if (vm_domainset_iter_policy(&di, &domain) != 0) 527289d2fb14SKonstantin Belousov vm_wait_doms(&keg->uk_dr.dr_policy->ds_mask, 0); 527386220393SMark Johnston } 527486220393SMark Johnston } 527586220393SMark Johnston } 52768355f576SJeff Roberson 5277ed581bf6SJeff Roberson /* 5278ed581bf6SJeff Roberson * Returns a snapshot of memory consumption in bytes. 5279ed581bf6SJeff Roberson */ 5280ed581bf6SJeff Roberson size_t 5281ed581bf6SJeff Roberson uma_zone_memory(uma_zone_t zone) 5282ed581bf6SJeff Roberson { 5283ed581bf6SJeff Roberson size_t sz; 5284ed581bf6SJeff Roberson int i; 5285ed581bf6SJeff Roberson 5286ed581bf6SJeff Roberson sz = 0; 5287ed581bf6SJeff Roberson if (zone->uz_flags & UMA_ZFLAG_CACHE) { 5288ed581bf6SJeff Roberson for (i = 0; i < vm_ndomains; i++) 5289c6fd3e23SJeff Roberson sz += ZDOM_GET(zone, i)->uzd_nitems; 5290ed581bf6SJeff Roberson return (sz * zone->uz_size); 5291ed581bf6SJeff Roberson } 5292ed581bf6SJeff Roberson for (i = 0; i < vm_ndomains; i++) 5293ed581bf6SJeff Roberson sz += zone->uz_keg->uk_domain[i].ud_pages; 5294ed581bf6SJeff Roberson 5295ed581bf6SJeff Roberson return (sz * PAGE_SIZE); 5296ed581bf6SJeff Roberson } 5297ed581bf6SJeff Roberson 5298389a3fa6SMark Johnston struct uma_reclaim_args { 5299389a3fa6SMark Johnston int domain; 5300389a3fa6SMark Johnston int req; 5301389a3fa6SMark Johnston }; 5302389a3fa6SMark Johnston 5303389a3fa6SMark Johnston static void 5304389a3fa6SMark Johnston uma_reclaim_domain_cb(uma_zone_t zone, void *arg) 5305389a3fa6SMark Johnston { 5306389a3fa6SMark Johnston struct uma_reclaim_args *args; 5307389a3fa6SMark Johnston 5308389a3fa6SMark Johnston args = arg; 5309*cf907074SAndrew Gallatin if ((zone->uz_flags & UMA_ZONE_UNMANAGED) != 0) 5310*cf907074SAndrew Gallatin return; 5311*cf907074SAndrew Gallatin if ((args->req == UMA_RECLAIM_TRIM) && 5312*cf907074SAndrew Gallatin (zone->uz_flags & UMA_ZONE_NOTRIM) !=0) 5313*cf907074SAndrew Gallatin return; 5314*cf907074SAndrew Gallatin 5315389a3fa6SMark Johnston uma_zone_reclaim_domain(zone, args->req, args->domain); 5316389a3fa6SMark Johnston } 5317389a3fa6SMark Johnston 53188355f576SJeff Roberson /* See uma.h */ 531908cfa56eSMark Johnston void 532008cfa56eSMark Johnston uma_reclaim(int req) 53218355f576SJeff Roberson { 5322aabe13f1SMark Johnston uma_reclaim_domain(req, UMA_ANYDOMAIN); 5323aabe13f1SMark Johnston } 532444ec2b63SKonstantin Belousov 5325aabe13f1SMark Johnston void 5326aabe13f1SMark Johnston uma_reclaim_domain(int req, int domain) 5327aabe13f1SMark Johnston { 5328389a3fa6SMark Johnston struct uma_reclaim_args args; 5329aabe13f1SMark Johnston 533086bbae32SJeff Roberson bucket_enable(); 533108cfa56eSMark Johnston 5332389a3fa6SMark Johnston args.domain = domain; 5333389a3fa6SMark Johnston args.req = req; 5334389a3fa6SMark Johnston 5335aabe13f1SMark Johnston sx_slock(&uma_reclaim_lock); 533608cfa56eSMark Johnston switch (req) { 533708cfa56eSMark Johnston case UMA_RECLAIM_TRIM: 533808cfa56eSMark Johnston case UMA_RECLAIM_DRAIN: 5339389a3fa6SMark Johnston zone_foreach(uma_reclaim_domain_cb, &args); 5340aabe13f1SMark Johnston break; 534108cfa56eSMark Johnston case UMA_RECLAIM_DRAIN_CPU: 5342389a3fa6SMark Johnston zone_foreach(uma_reclaim_domain_cb, &args); 534308cfa56eSMark Johnston pcpu_cache_drain_safe(NULL); 5344389a3fa6SMark Johnston zone_foreach(uma_reclaim_domain_cb, &args); 534508cfa56eSMark Johnston break; 534608cfa56eSMark Johnston default: 534708cfa56eSMark Johnston panic("unhandled reclamation request %d", req); 534808cfa56eSMark Johnston } 53490f9b7bf3SMark Johnston 53508355f576SJeff Roberson /* 53518355f576SJeff Roberson * Some slabs may have been freed but this zone will be visited early 53528355f576SJeff Roberson * we visit again so that we can free pages that are empty once other 53538355f576SJeff Roberson * zones are drained. We have to do the same for buckets. 53548355f576SJeff Roberson */ 5355389a3fa6SMark Johnston uma_zone_reclaim_domain(slabzones[0], UMA_RECLAIM_DRAIN, domain); 5356389a3fa6SMark Johnston uma_zone_reclaim_domain(slabzones[1], UMA_RECLAIM_DRAIN, domain); 5357aabe13f1SMark Johnston bucket_zone_drain(domain); 5358aabe13f1SMark Johnston sx_sunlock(&uma_reclaim_lock); 53598355f576SJeff Roberson } 53608355f576SJeff Roberson 53612e47807cSJeff Roberson static volatile int uma_reclaim_needed; 536244ec2b63SKonstantin Belousov 536344ec2b63SKonstantin Belousov void 536444ec2b63SKonstantin Belousov uma_reclaim_wakeup(void) 536544ec2b63SKonstantin Belousov { 536644ec2b63SKonstantin Belousov 53672e47807cSJeff Roberson if (atomic_fetchadd_int(&uma_reclaim_needed, 1) == 0) 53682e47807cSJeff Roberson wakeup(uma_reclaim); 536944ec2b63SKonstantin Belousov } 537044ec2b63SKonstantin Belousov 537144ec2b63SKonstantin Belousov void 537244ec2b63SKonstantin Belousov uma_reclaim_worker(void *arg __unused) 537344ec2b63SKonstantin Belousov { 537444ec2b63SKonstantin Belousov 537544ec2b63SKonstantin Belousov for (;;) { 537608cfa56eSMark Johnston sx_xlock(&uma_reclaim_lock); 5377200f8117SKonstantin Belousov while (atomic_load_int(&uma_reclaim_needed) == 0) 537808cfa56eSMark Johnston sx_sleep(uma_reclaim, &uma_reclaim_lock, PVM, "umarcl", 53792e47807cSJeff Roberson hz); 538008cfa56eSMark Johnston sx_xunlock(&uma_reclaim_lock); 53819b43bc27SAndriy Gapon EVENTHANDLER_INVOKE(vm_lowmem, VM_LOW_KMEM); 538208cfa56eSMark Johnston uma_reclaim(UMA_RECLAIM_DRAIN_CPU); 5383200f8117SKonstantin Belousov atomic_store_int(&uma_reclaim_needed, 0); 53842e47807cSJeff Roberson /* Don't fire more than once per-second. */ 53852e47807cSJeff Roberson pause("umarclslp", hz); 538644ec2b63SKonstantin Belousov } 538744ec2b63SKonstantin Belousov } 538844ec2b63SKonstantin Belousov 5389663b416fSJohn Baldwin /* See uma.h */ 539008cfa56eSMark Johnston void 539108cfa56eSMark Johnston uma_zone_reclaim(uma_zone_t zone, int req) 539208cfa56eSMark Johnston { 5393aabe13f1SMark Johnston uma_zone_reclaim_domain(zone, req, UMA_ANYDOMAIN); 5394aabe13f1SMark Johnston } 539508cfa56eSMark Johnston 5396aabe13f1SMark Johnston void 5397aabe13f1SMark Johnston uma_zone_reclaim_domain(uma_zone_t zone, int req, int domain) 5398aabe13f1SMark Johnston { 539908cfa56eSMark Johnston switch (req) { 540008cfa56eSMark Johnston case UMA_RECLAIM_TRIM: 5401389a3fa6SMark Johnston zone_reclaim(zone, domain, M_NOWAIT, false); 540208cfa56eSMark Johnston break; 540308cfa56eSMark Johnston case UMA_RECLAIM_DRAIN: 5404389a3fa6SMark Johnston zone_reclaim(zone, domain, M_NOWAIT, true); 540508cfa56eSMark Johnston break; 540608cfa56eSMark Johnston case UMA_RECLAIM_DRAIN_CPU: 540708cfa56eSMark Johnston pcpu_cache_drain_safe(zone); 5408389a3fa6SMark Johnston zone_reclaim(zone, domain, M_NOWAIT, true); 540908cfa56eSMark Johnston break; 541008cfa56eSMark Johnston default: 541108cfa56eSMark Johnston panic("unhandled reclamation request %d", req); 541208cfa56eSMark Johnston } 541308cfa56eSMark Johnston } 541408cfa56eSMark Johnston 541508cfa56eSMark Johnston /* See uma.h */ 5416663b416fSJohn Baldwin int 5417663b416fSJohn Baldwin uma_zone_exhausted(uma_zone_t zone) 5418663b416fSJohn Baldwin { 5419663b416fSJohn Baldwin 5420727c6918SJeff Roberson return (atomic_load_32(&zone->uz_sleepers) > 0); 54216c125b8dSMohan Srinivasan } 54226c125b8dSMohan Srinivasan 54232e47807cSJeff Roberson unsigned long 54242e47807cSJeff Roberson uma_limit(void) 54252e47807cSJeff Roberson { 54262e47807cSJeff Roberson 54272e47807cSJeff Roberson return (uma_kmem_limit); 54282e47807cSJeff Roberson } 54292e47807cSJeff Roberson 54302e47807cSJeff Roberson void 54312e47807cSJeff Roberson uma_set_limit(unsigned long limit) 54322e47807cSJeff Roberson { 54332e47807cSJeff Roberson 54342e47807cSJeff Roberson uma_kmem_limit = limit; 54352e47807cSJeff Roberson } 54362e47807cSJeff Roberson 54372e47807cSJeff Roberson unsigned long 54382e47807cSJeff Roberson uma_size(void) 54392e47807cSJeff Roberson { 54402e47807cSJeff Roberson 5441058f0f74SMark Johnston return (atomic_load_long(&uma_kmem_total)); 5442ad5b0f5bSJeff Roberson } 5443ad5b0f5bSJeff Roberson 5444ad5b0f5bSJeff Roberson long 5445ad5b0f5bSJeff Roberson uma_avail(void) 5446ad5b0f5bSJeff Roberson { 5447ad5b0f5bSJeff Roberson 5448058f0f74SMark Johnston return (uma_kmem_limit - uma_size()); 54492e47807cSJeff Roberson } 54502e47807cSJeff Roberson 5451a0d4b0aeSRobert Watson #ifdef DDB 54528355f576SJeff Roberson /* 54537a52a97eSRobert Watson * Generate statistics across both the zone and its per-cpu cache's. Return 54547a52a97eSRobert Watson * desired statistics if the pointer is non-NULL for that statistic. 54557a52a97eSRobert Watson * 54567a52a97eSRobert Watson * Note: does not update the zone statistics, as it can't safely clear the 54577a52a97eSRobert Watson * per-CPU cache statistic. 54587a52a97eSRobert Watson * 54597a52a97eSRobert Watson */ 54607a52a97eSRobert Watson static void 54610f9b7bf3SMark Johnston uma_zone_sumstat(uma_zone_t z, long *cachefreep, uint64_t *allocsp, 5462c1685086SJeff Roberson uint64_t *freesp, uint64_t *sleepsp, uint64_t *xdomainp) 54637a52a97eSRobert Watson { 54647a52a97eSRobert Watson uma_cache_t cache; 5465c1685086SJeff Roberson uint64_t allocs, frees, sleeps, xdomain; 54667a52a97eSRobert Watson int cachefree, cpu; 54677a52a97eSRobert Watson 5468c1685086SJeff Roberson allocs = frees = sleeps = xdomain = 0; 54697a52a97eSRobert Watson cachefree = 0; 54703aa6d94eSJohn Baldwin CPU_FOREACH(cpu) { 54717a52a97eSRobert Watson cache = &z->uz_cpu[cpu]; 5472376b1ba3SJeff Roberson cachefree += cache->uc_allocbucket.ucb_cnt; 5473376b1ba3SJeff Roberson cachefree += cache->uc_freebucket.ucb_cnt; 5474376b1ba3SJeff Roberson xdomain += cache->uc_crossbucket.ucb_cnt; 5475376b1ba3SJeff Roberson cachefree += cache->uc_crossbucket.ucb_cnt; 54767a52a97eSRobert Watson allocs += cache->uc_allocs; 54777a52a97eSRobert Watson frees += cache->uc_frees; 54787a52a97eSRobert Watson } 54792efcc8cbSGleb Smirnoff allocs += counter_u64_fetch(z->uz_allocs); 54802efcc8cbSGleb Smirnoff frees += counter_u64_fetch(z->uz_frees); 5481c6fd3e23SJeff Roberson xdomain += counter_u64_fetch(z->uz_xdomain); 5482bf965959SSean Bruno sleeps += z->uz_sleeps; 54837a52a97eSRobert Watson if (cachefreep != NULL) 54847a52a97eSRobert Watson *cachefreep = cachefree; 54857a52a97eSRobert Watson if (allocsp != NULL) 54867a52a97eSRobert Watson *allocsp = allocs; 54877a52a97eSRobert Watson if (freesp != NULL) 54887a52a97eSRobert Watson *freesp = frees; 5489bf965959SSean Bruno if (sleepsp != NULL) 5490bf965959SSean Bruno *sleepsp = sleeps; 5491c1685086SJeff Roberson if (xdomainp != NULL) 5492c1685086SJeff Roberson *xdomainp = xdomain; 54937a52a97eSRobert Watson } 5494a0d4b0aeSRobert Watson #endif /* DDB */ 54957a52a97eSRobert Watson 54967a52a97eSRobert Watson static int 54977a52a97eSRobert Watson sysctl_vm_zone_count(SYSCTL_HANDLER_ARGS) 54987a52a97eSRobert Watson { 54997a52a97eSRobert Watson uma_keg_t kz; 55007a52a97eSRobert Watson uma_zone_t z; 55017a52a97eSRobert Watson int count; 55027a52a97eSRobert Watson 55037a52a97eSRobert Watson count = 0; 5504111fbcd5SBryan Venteicher rw_rlock(&uma_rwlock); 55057a52a97eSRobert Watson LIST_FOREACH(kz, &uma_kegs, uk_link) { 55067a52a97eSRobert Watson LIST_FOREACH(z, &kz->uk_zones, uz_link) 55077a52a97eSRobert Watson count++; 55087a52a97eSRobert Watson } 5509b47acb0aSGleb Smirnoff LIST_FOREACH(z, &uma_cachezones, uz_link) 5510b47acb0aSGleb Smirnoff count++; 5511b47acb0aSGleb Smirnoff 5512111fbcd5SBryan Venteicher rw_runlock(&uma_rwlock); 55137a52a97eSRobert Watson return (sysctl_handle_int(oidp, &count, 0, req)); 55147a52a97eSRobert Watson } 55157a52a97eSRobert Watson 5516b47acb0aSGleb Smirnoff static void 5517b47acb0aSGleb Smirnoff uma_vm_zone_stats(struct uma_type_header *uth, uma_zone_t z, struct sbuf *sbuf, 5518b47acb0aSGleb Smirnoff struct uma_percpu_stat *ups, bool internal) 5519b47acb0aSGleb Smirnoff { 5520b47acb0aSGleb Smirnoff uma_zone_domain_t zdom; 5521b47acb0aSGleb Smirnoff uma_cache_t cache; 5522b47acb0aSGleb Smirnoff int i; 5523b47acb0aSGleb Smirnoff 5524b47acb0aSGleb Smirnoff for (i = 0; i < vm_ndomains; i++) { 5525c6fd3e23SJeff Roberson zdom = ZDOM_GET(z, i); 5526b47acb0aSGleb Smirnoff uth->uth_zone_free += zdom->uzd_nitems; 5527b47acb0aSGleb Smirnoff } 5528b47acb0aSGleb Smirnoff uth->uth_allocs = counter_u64_fetch(z->uz_allocs); 5529b47acb0aSGleb Smirnoff uth->uth_frees = counter_u64_fetch(z->uz_frees); 5530b47acb0aSGleb Smirnoff uth->uth_fails = counter_u64_fetch(z->uz_fails); 5531c6fd3e23SJeff Roberson uth->uth_xdomain = counter_u64_fetch(z->uz_xdomain); 5532b47acb0aSGleb Smirnoff uth->uth_sleeps = z->uz_sleeps; 55331de9724eSMark Johnston 5534b47acb0aSGleb Smirnoff for (i = 0; i < mp_maxid + 1; i++) { 5535b47acb0aSGleb Smirnoff bzero(&ups[i], sizeof(*ups)); 5536b47acb0aSGleb Smirnoff if (internal || CPU_ABSENT(i)) 5537b47acb0aSGleb Smirnoff continue; 5538b47acb0aSGleb Smirnoff cache = &z->uz_cpu[i]; 5539376b1ba3SJeff Roberson ups[i].ups_cache_free += cache->uc_allocbucket.ucb_cnt; 5540376b1ba3SJeff Roberson ups[i].ups_cache_free += cache->uc_freebucket.ucb_cnt; 5541376b1ba3SJeff Roberson ups[i].ups_cache_free += cache->uc_crossbucket.ucb_cnt; 5542b47acb0aSGleb Smirnoff ups[i].ups_allocs = cache->uc_allocs; 5543b47acb0aSGleb Smirnoff ups[i].ups_frees = cache->uc_frees; 5544b47acb0aSGleb Smirnoff } 5545b47acb0aSGleb Smirnoff } 5546b47acb0aSGleb Smirnoff 55477a52a97eSRobert Watson static int 55487a52a97eSRobert Watson sysctl_vm_zone_stats(SYSCTL_HANDLER_ARGS) 55497a52a97eSRobert Watson { 55507a52a97eSRobert Watson struct uma_stream_header ush; 55517a52a97eSRobert Watson struct uma_type_header uth; 555263b5d112SKonstantin Belousov struct uma_percpu_stat *ups; 55537a52a97eSRobert Watson struct sbuf sbuf; 55547a52a97eSRobert Watson uma_keg_t kz; 55557a52a97eSRobert Watson uma_zone_t z; 55564bd61e19SJeff Roberson uint64_t items; 55578b987a77SJeff Roberson uint32_t kfree, pages; 55584e657159SMatthew D Fleming int count, error, i; 55597a52a97eSRobert Watson 556000f0e671SMatthew D Fleming error = sysctl_wire_old_buffer(req, 0); 556100f0e671SMatthew D Fleming if (error != 0) 556200f0e671SMatthew D Fleming return (error); 55634e657159SMatthew D Fleming sbuf_new_for_sysctl(&sbuf, NULL, 128, req); 55641eafc078SIan Lepore sbuf_clear_flags(&sbuf, SBUF_INCLUDENUL); 556563b5d112SKonstantin Belousov ups = malloc((mp_maxid + 1) * sizeof(*ups), M_TEMP, M_WAITOK); 55664e657159SMatthew D Fleming 5567404a593eSMatthew D Fleming count = 0; 5568111fbcd5SBryan Venteicher rw_rlock(&uma_rwlock); 55697a52a97eSRobert Watson LIST_FOREACH(kz, &uma_kegs, uk_link) { 55707a52a97eSRobert Watson LIST_FOREACH(z, &kz->uk_zones, uz_link) 55717a52a97eSRobert Watson count++; 55727a52a97eSRobert Watson } 55737a52a97eSRobert Watson 5574b47acb0aSGleb Smirnoff LIST_FOREACH(z, &uma_cachezones, uz_link) 5575b47acb0aSGleb Smirnoff count++; 5576b47acb0aSGleb Smirnoff 55777a52a97eSRobert Watson /* 55787a52a97eSRobert Watson * Insert stream header. 55797a52a97eSRobert Watson */ 55807a52a97eSRobert Watson bzero(&ush, sizeof(ush)); 55817a52a97eSRobert Watson ush.ush_version = UMA_STREAM_VERSION; 5582ab3a57c0SRobert Watson ush.ush_maxcpus = (mp_maxid + 1); 55837a52a97eSRobert Watson ush.ush_count = count; 55844e657159SMatthew D Fleming (void)sbuf_bcat(&sbuf, &ush, sizeof(ush)); 55857a52a97eSRobert Watson 55867a52a97eSRobert Watson LIST_FOREACH(kz, &uma_kegs, uk_link) { 55878b987a77SJeff Roberson kfree = pages = 0; 55888b987a77SJeff Roberson for (i = 0; i < vm_ndomains; i++) { 55894ab3aee8SMark Johnston kfree += kz->uk_domain[i].ud_free_items; 55908b987a77SJeff Roberson pages += kz->uk_domain[i].ud_pages; 55918b987a77SJeff Roberson } 55927a52a97eSRobert Watson LIST_FOREACH(z, &kz->uk_zones, uz_link) { 55937a52a97eSRobert Watson bzero(&uth, sizeof(uth)); 5594cbbb4a00SRobert Watson strlcpy(uth.uth_name, z->uz_name, UTH_MAX_NAME); 55957a52a97eSRobert Watson uth.uth_align = kz->uk_align; 55967a52a97eSRobert Watson uth.uth_size = kz->uk_size; 55977a52a97eSRobert Watson uth.uth_rsize = kz->uk_rsize; 55984bd61e19SJeff Roberson if (z->uz_max_items > 0) { 55994bd61e19SJeff Roberson items = UZ_ITEMS_COUNT(z->uz_items); 56004bd61e19SJeff Roberson uth.uth_pages = (items / kz->uk_ipers) * 5601bb15d1c7SGleb Smirnoff kz->uk_ppera; 56024bd61e19SJeff Roberson } else 56038b987a77SJeff Roberson uth.uth_pages = pages; 5604f8c86a5fSGleb Smirnoff uth.uth_maxpages = (z->uz_max_items / kz->uk_ipers) * 5605bb15d1c7SGleb Smirnoff kz->uk_ppera; 5606bb15d1c7SGleb Smirnoff uth.uth_limit = z->uz_max_items; 56078b987a77SJeff Roberson uth.uth_keg_free = kfree; 5608cbbb4a00SRobert Watson 5609cbbb4a00SRobert Watson /* 5610cbbb4a00SRobert Watson * A zone is secondary is it is not the first entry 5611cbbb4a00SRobert Watson * on the keg's zone list. 5612cbbb4a00SRobert Watson */ 5613e20a199fSJeff Roberson if ((z->uz_flags & UMA_ZONE_SECONDARY) && 5614cbbb4a00SRobert Watson (LIST_FIRST(&kz->uk_zones) != z)) 5615cbbb4a00SRobert Watson uth.uth_zone_flags = UTH_ZONE_SECONDARY; 5616b47acb0aSGleb Smirnoff uma_vm_zone_stats(&uth, z, &sbuf, ups, 5617b47acb0aSGleb Smirnoff kz->uk_flags & UMA_ZFLAG_INTERNAL); 561863b5d112SKonstantin Belousov (void)sbuf_bcat(&sbuf, &uth, sizeof(uth)); 561963b5d112SKonstantin Belousov for (i = 0; i < mp_maxid + 1; i++) 562063b5d112SKonstantin Belousov (void)sbuf_bcat(&sbuf, &ups[i], sizeof(ups[i])); 56217a52a97eSRobert Watson } 56227a52a97eSRobert Watson } 5623b47acb0aSGleb Smirnoff LIST_FOREACH(z, &uma_cachezones, uz_link) { 5624b47acb0aSGleb Smirnoff bzero(&uth, sizeof(uth)); 5625b47acb0aSGleb Smirnoff strlcpy(uth.uth_name, z->uz_name, UTH_MAX_NAME); 5626b47acb0aSGleb Smirnoff uth.uth_size = z->uz_size; 5627b47acb0aSGleb Smirnoff uma_vm_zone_stats(&uth, z, &sbuf, ups, false); 5628b47acb0aSGleb Smirnoff (void)sbuf_bcat(&sbuf, &uth, sizeof(uth)); 5629b47acb0aSGleb Smirnoff for (i = 0; i < mp_maxid + 1; i++) 5630b47acb0aSGleb Smirnoff (void)sbuf_bcat(&sbuf, &ups[i], sizeof(ups[i])); 5631b47acb0aSGleb Smirnoff } 5632b47acb0aSGleb Smirnoff 5633111fbcd5SBryan Venteicher rw_runlock(&uma_rwlock); 56344e657159SMatthew D Fleming error = sbuf_finish(&sbuf); 56354e657159SMatthew D Fleming sbuf_delete(&sbuf); 563663b5d112SKonstantin Belousov free(ups, M_TEMP); 56377a52a97eSRobert Watson return (error); 56387a52a97eSRobert Watson } 563948c5777eSRobert Watson 56400a5a3ccbSGleb Smirnoff int 56410a5a3ccbSGleb Smirnoff sysctl_handle_uma_zone_max(SYSCTL_HANDLER_ARGS) 56420a5a3ccbSGleb Smirnoff { 56430a5a3ccbSGleb Smirnoff uma_zone_t zone = *(uma_zone_t *)arg1; 564416be9f54SGleb Smirnoff int error, max; 56450a5a3ccbSGleb Smirnoff 564616be9f54SGleb Smirnoff max = uma_zone_get_max(zone); 56470a5a3ccbSGleb Smirnoff error = sysctl_handle_int(oidp, &max, 0, req); 56480a5a3ccbSGleb Smirnoff if (error || !req->newptr) 56490a5a3ccbSGleb Smirnoff return (error); 56500a5a3ccbSGleb Smirnoff 56510a5a3ccbSGleb Smirnoff uma_zone_set_max(zone, max); 56520a5a3ccbSGleb Smirnoff 56530a5a3ccbSGleb Smirnoff return (0); 56540a5a3ccbSGleb Smirnoff } 56550a5a3ccbSGleb Smirnoff 56560a5a3ccbSGleb Smirnoff int 56570a5a3ccbSGleb Smirnoff sysctl_handle_uma_zone_cur(SYSCTL_HANDLER_ARGS) 56580a5a3ccbSGleb Smirnoff { 565920a4e154SJeff Roberson uma_zone_t zone; 56600a5a3ccbSGleb Smirnoff int cur; 56610a5a3ccbSGleb Smirnoff 566220a4e154SJeff Roberson /* 566320a4e154SJeff Roberson * Some callers want to add sysctls for global zones that 566420a4e154SJeff Roberson * may not yet exist so they pass a pointer to a pointer. 566520a4e154SJeff Roberson */ 566620a4e154SJeff Roberson if (arg2 == 0) 566720a4e154SJeff Roberson zone = *(uma_zone_t *)arg1; 566820a4e154SJeff Roberson else 566920a4e154SJeff Roberson zone = arg1; 56700a5a3ccbSGleb Smirnoff cur = uma_zone_get_cur(zone); 56710a5a3ccbSGleb Smirnoff return (sysctl_handle_int(oidp, &cur, 0, req)); 56720a5a3ccbSGleb Smirnoff } 56730a5a3ccbSGleb Smirnoff 567420a4e154SJeff Roberson static int 567520a4e154SJeff Roberson sysctl_handle_uma_zone_allocs(SYSCTL_HANDLER_ARGS) 567620a4e154SJeff Roberson { 567720a4e154SJeff Roberson uma_zone_t zone = arg1; 567820a4e154SJeff Roberson uint64_t cur; 567920a4e154SJeff Roberson 568020a4e154SJeff Roberson cur = uma_zone_get_allocs(zone); 568120a4e154SJeff Roberson return (sysctl_handle_64(oidp, &cur, 0, req)); 568220a4e154SJeff Roberson } 568320a4e154SJeff Roberson 568420a4e154SJeff Roberson static int 568520a4e154SJeff Roberson sysctl_handle_uma_zone_frees(SYSCTL_HANDLER_ARGS) 568620a4e154SJeff Roberson { 568720a4e154SJeff Roberson uma_zone_t zone = arg1; 568820a4e154SJeff Roberson uint64_t cur; 568920a4e154SJeff Roberson 569020a4e154SJeff Roberson cur = uma_zone_get_frees(zone); 569120a4e154SJeff Roberson return (sysctl_handle_64(oidp, &cur, 0, req)); 569220a4e154SJeff Roberson } 569320a4e154SJeff Roberson 56946d204a6aSRyan Libby static int 56956d204a6aSRyan Libby sysctl_handle_uma_zone_flags(SYSCTL_HANDLER_ARGS) 56966d204a6aSRyan Libby { 56976d204a6aSRyan Libby struct sbuf sbuf; 56986d204a6aSRyan Libby uma_zone_t zone = arg1; 56996d204a6aSRyan Libby int error; 57006d204a6aSRyan Libby 57016d204a6aSRyan Libby sbuf_new_for_sysctl(&sbuf, NULL, 0, req); 57026d204a6aSRyan Libby if (zone->uz_flags != 0) 57036d204a6aSRyan Libby sbuf_printf(&sbuf, "0x%b", zone->uz_flags, PRINT_UMA_ZFLAGS); 57046d204a6aSRyan Libby else 57056d204a6aSRyan Libby sbuf_printf(&sbuf, "0"); 57066d204a6aSRyan Libby error = sbuf_finish(&sbuf); 57076d204a6aSRyan Libby sbuf_delete(&sbuf); 57086d204a6aSRyan Libby 57096d204a6aSRyan Libby return (error); 57106d204a6aSRyan Libby } 57116d204a6aSRyan Libby 5712f7af5015SRyan Libby static int 5713f7af5015SRyan Libby sysctl_handle_uma_slab_efficiency(SYSCTL_HANDLER_ARGS) 5714f7af5015SRyan Libby { 5715f7af5015SRyan Libby uma_keg_t keg = arg1; 5716f7af5015SRyan Libby int avail, effpct, total; 5717f7af5015SRyan Libby 5718f7af5015SRyan Libby total = keg->uk_ppera * PAGE_SIZE; 571954c5ae80SRyan Libby if ((keg->uk_flags & UMA_ZFLAG_OFFPAGE) != 0) 57209b8db4d0SRyan Libby total += slabzone(keg->uk_ipers)->uz_keg->uk_rsize; 5721f7af5015SRyan Libby /* 5722f7af5015SRyan Libby * We consider the client's requested size and alignment here, not the 5723f7af5015SRyan Libby * real size determination uk_rsize, because we also adjust the real 5724f7af5015SRyan Libby * size for internal implementation reasons (max bitset size). 5725f7af5015SRyan Libby */ 5726f7af5015SRyan Libby avail = keg->uk_ipers * roundup2(keg->uk_size, keg->uk_align + 1); 5727f7af5015SRyan Libby if ((keg->uk_flags & UMA_ZONE_PCPU) != 0) 5728f7af5015SRyan Libby avail *= mp_maxid + 1; 5729f7af5015SRyan Libby effpct = 100 * avail / total; 5730f7af5015SRyan Libby return (sysctl_handle_int(oidp, &effpct, 0, req)); 5731f7af5015SRyan Libby } 5732f7af5015SRyan Libby 57334bd61e19SJeff Roberson static int 57344bd61e19SJeff Roberson sysctl_handle_uma_zone_items(SYSCTL_HANDLER_ARGS) 57354bd61e19SJeff Roberson { 57364bd61e19SJeff Roberson uma_zone_t zone = arg1; 57374bd61e19SJeff Roberson uint64_t cur; 57384bd61e19SJeff Roberson 57394bd61e19SJeff Roberson cur = UZ_ITEMS_COUNT(atomic_load_64(&zone->uz_items)); 57404bd61e19SJeff Roberson return (sysctl_handle_64(oidp, &cur, 0, req)); 57414bd61e19SJeff Roberson } 57424bd61e19SJeff Roberson 57439542ea7bSGleb Smirnoff #ifdef INVARIANTS 57449542ea7bSGleb Smirnoff static uma_slab_t 57459542ea7bSGleb Smirnoff uma_dbg_getslab(uma_zone_t zone, void *item) 57469542ea7bSGleb Smirnoff { 57479542ea7bSGleb Smirnoff uma_slab_t slab; 57489542ea7bSGleb Smirnoff uma_keg_t keg; 57499542ea7bSGleb Smirnoff uint8_t *mem; 57509542ea7bSGleb Smirnoff 57519542ea7bSGleb Smirnoff /* 57529542ea7bSGleb Smirnoff * It is safe to return the slab here even though the 57539542ea7bSGleb Smirnoff * zone is unlocked because the item's allocation state 57549542ea7bSGleb Smirnoff * essentially holds a reference. 57559542ea7bSGleb Smirnoff */ 5756727c6918SJeff Roberson mem = (uint8_t *)((uintptr_t)item & (~UMA_SLAB_MASK)); 5757727c6918SJeff Roberson if ((zone->uz_flags & UMA_ZFLAG_CACHE) != 0) 5758bb15d1c7SGleb Smirnoff return (NULL); 575954c5ae80SRyan Libby if (zone->uz_flags & UMA_ZFLAG_VTOSLAB) 5760727c6918SJeff Roberson return (vtoslab((vm_offset_t)mem)); 5761bb15d1c7SGleb Smirnoff keg = zone->uz_keg; 576254c5ae80SRyan Libby if ((keg->uk_flags & UMA_ZFLAG_HASH) == 0) 5763727c6918SJeff Roberson return ((uma_slab_t)(mem + keg->uk_pgoff)); 57648b987a77SJeff Roberson KEG_LOCK(keg, 0); 57659542ea7bSGleb Smirnoff slab = hash_sfind(&keg->uk_hash, mem); 57668b987a77SJeff Roberson KEG_UNLOCK(keg, 0); 57679542ea7bSGleb Smirnoff 57689542ea7bSGleb Smirnoff return (slab); 57699542ea7bSGleb Smirnoff } 57709542ea7bSGleb Smirnoff 5771c5deaf04SGleb Smirnoff static bool 5772c5deaf04SGleb Smirnoff uma_dbg_zskip(uma_zone_t zone, void *mem) 5773c5deaf04SGleb Smirnoff { 5774c5deaf04SGleb Smirnoff 5775727c6918SJeff Roberson if ((zone->uz_flags & UMA_ZFLAG_CACHE) != 0) 5776c5deaf04SGleb Smirnoff return (true); 5777c5deaf04SGleb Smirnoff 5778bb15d1c7SGleb Smirnoff return (uma_dbg_kskip(zone->uz_keg, mem)); 5779c5deaf04SGleb Smirnoff } 5780c5deaf04SGleb Smirnoff 5781c5deaf04SGleb Smirnoff static bool 5782c5deaf04SGleb Smirnoff uma_dbg_kskip(uma_keg_t keg, void *mem) 5783c5deaf04SGleb Smirnoff { 5784c5deaf04SGleb Smirnoff uintptr_t idx; 5785c5deaf04SGleb Smirnoff 5786c5deaf04SGleb Smirnoff if (dbg_divisor == 0) 5787c5deaf04SGleb Smirnoff return (true); 5788c5deaf04SGleb Smirnoff 5789c5deaf04SGleb Smirnoff if (dbg_divisor == 1) 5790c5deaf04SGleb Smirnoff return (false); 5791c5deaf04SGleb Smirnoff 5792c5deaf04SGleb Smirnoff idx = (uintptr_t)mem >> PAGE_SHIFT; 5793c5deaf04SGleb Smirnoff if (keg->uk_ipers > 1) { 5794c5deaf04SGleb Smirnoff idx *= keg->uk_ipers; 5795c5deaf04SGleb Smirnoff idx += ((uintptr_t)mem & PAGE_MASK) / keg->uk_rsize; 5796c5deaf04SGleb Smirnoff } 5797c5deaf04SGleb Smirnoff 5798c5deaf04SGleb Smirnoff if ((idx / dbg_divisor) * dbg_divisor != idx) { 5799c5deaf04SGleb Smirnoff counter_u64_add(uma_skip_cnt, 1); 5800c5deaf04SGleb Smirnoff return (true); 5801c5deaf04SGleb Smirnoff } 5802c5deaf04SGleb Smirnoff counter_u64_add(uma_dbg_cnt, 1); 5803c5deaf04SGleb Smirnoff 5804c5deaf04SGleb Smirnoff return (false); 5805c5deaf04SGleb Smirnoff } 5806c5deaf04SGleb Smirnoff 58079542ea7bSGleb Smirnoff /* 58089542ea7bSGleb Smirnoff * Set up the slab's freei data such that uma_dbg_free can function. 58099542ea7bSGleb Smirnoff * 58109542ea7bSGleb Smirnoff */ 58119542ea7bSGleb Smirnoff static void 58129542ea7bSGleb Smirnoff uma_dbg_alloc(uma_zone_t zone, uma_slab_t slab, void *item) 58139542ea7bSGleb Smirnoff { 58149542ea7bSGleb Smirnoff uma_keg_t keg; 58159542ea7bSGleb Smirnoff int freei; 58169542ea7bSGleb Smirnoff 58179542ea7bSGleb Smirnoff if (slab == NULL) { 58189542ea7bSGleb Smirnoff slab = uma_dbg_getslab(zone, item); 58199542ea7bSGleb Smirnoff if (slab == NULL) 5820952c8964SMark Johnston panic("uma: item %p did not belong to zone %s", 58219542ea7bSGleb Smirnoff item, zone->uz_name); 58229542ea7bSGleb Smirnoff } 5823584061b4SJeff Roberson keg = zone->uz_keg; 58241e0701e1SJeff Roberson freei = slab_item_index(slab, keg, item); 58259542ea7bSGleb Smirnoff 5826942951baSRyan Libby if (BIT_TEST_SET_ATOMIC(keg->uk_ipers, freei, 5827942951baSRyan Libby slab_dbg_bits(slab, keg))) 5828952c8964SMark Johnston panic("Duplicate alloc of %p from zone %p(%s) slab %p(%d)", 58299542ea7bSGleb Smirnoff item, zone, zone->uz_name, slab, freei); 58309542ea7bSGleb Smirnoff } 58319542ea7bSGleb Smirnoff 58329542ea7bSGleb Smirnoff /* 58339542ea7bSGleb Smirnoff * Verifies freed addresses. Checks for alignment, valid slab membership 58349542ea7bSGleb Smirnoff * and duplicate frees. 58359542ea7bSGleb Smirnoff * 58369542ea7bSGleb Smirnoff */ 58379542ea7bSGleb Smirnoff static void 58389542ea7bSGleb Smirnoff uma_dbg_free(uma_zone_t zone, uma_slab_t slab, void *item) 58399542ea7bSGleb Smirnoff { 58409542ea7bSGleb Smirnoff uma_keg_t keg; 58419542ea7bSGleb Smirnoff int freei; 58429542ea7bSGleb Smirnoff 58439542ea7bSGleb Smirnoff if (slab == NULL) { 58449542ea7bSGleb Smirnoff slab = uma_dbg_getslab(zone, item); 58459542ea7bSGleb Smirnoff if (slab == NULL) 5846952c8964SMark Johnston panic("uma: Freed item %p did not belong to zone %s", 58479542ea7bSGleb Smirnoff item, zone->uz_name); 58489542ea7bSGleb Smirnoff } 5849584061b4SJeff Roberson keg = zone->uz_keg; 58501e0701e1SJeff Roberson freei = slab_item_index(slab, keg, item); 58519542ea7bSGleb Smirnoff 58529542ea7bSGleb Smirnoff if (freei >= keg->uk_ipers) 5853952c8964SMark Johnston panic("Invalid free of %p from zone %p(%s) slab %p(%d)", 58549542ea7bSGleb Smirnoff item, zone, zone->uz_name, slab, freei); 58559542ea7bSGleb Smirnoff 58561e0701e1SJeff Roberson if (slab_item(slab, keg, freei) != item) 5857952c8964SMark Johnston panic("Unaligned free of %p from zone %p(%s) slab %p(%d)", 58589542ea7bSGleb Smirnoff item, zone, zone->uz_name, slab, freei); 58599542ea7bSGleb Smirnoff 5860942951baSRyan Libby if (!BIT_TEST_CLR_ATOMIC(keg->uk_ipers, freei, 5861942951baSRyan Libby slab_dbg_bits(slab, keg))) 5862952c8964SMark Johnston panic("Duplicate free of %p from zone %p(%s) slab %p(%d)", 58639542ea7bSGleb Smirnoff item, zone, zone->uz_name, slab, freei); 58649542ea7bSGleb Smirnoff } 58659542ea7bSGleb Smirnoff #endif /* INVARIANTS */ 58669542ea7bSGleb Smirnoff 586748c5777eSRobert Watson #ifdef DDB 586846d70077SConrad Meyer static int64_t 586946d70077SConrad Meyer get_uma_stats(uma_keg_t kz, uma_zone_t z, uint64_t *allocs, uint64_t *used, 58700223790fSConrad Meyer uint64_t *sleeps, long *cachefree, uint64_t *xdomain) 587148c5777eSRobert Watson { 587246d70077SConrad Meyer uint64_t frees; 58730f9b7bf3SMark Johnston int i; 587448c5777eSRobert Watson 587548c5777eSRobert Watson if (kz->uk_flags & UMA_ZFLAG_INTERNAL) { 587646d70077SConrad Meyer *allocs = counter_u64_fetch(z->uz_allocs); 58772efcc8cbSGleb Smirnoff frees = counter_u64_fetch(z->uz_frees); 587846d70077SConrad Meyer *sleeps = z->uz_sleeps; 587946d70077SConrad Meyer *cachefree = 0; 588046d70077SConrad Meyer *xdomain = 0; 588148c5777eSRobert Watson } else 588246d70077SConrad Meyer uma_zone_sumstat(z, cachefree, allocs, &frees, sleeps, 588346d70077SConrad Meyer xdomain); 58848b987a77SJeff Roberson for (i = 0; i < vm_ndomains; i++) { 5885c6fd3e23SJeff Roberson *cachefree += ZDOM_GET(z, i)->uzd_nitems; 5886e20a199fSJeff Roberson if (!((z->uz_flags & UMA_ZONE_SECONDARY) && 588748c5777eSRobert Watson (LIST_FIRST(&kz->uk_zones) != z))) 58884ab3aee8SMark Johnston *cachefree += kz->uk_domain[i].ud_free_items; 58898b987a77SJeff Roberson } 589046d70077SConrad Meyer *used = *allocs - frees; 589146d70077SConrad Meyer return (((int64_t)*used + *cachefree) * kz->uk_size); 589246d70077SConrad Meyer } 58930f9b7bf3SMark Johnston 5894c84c5e00SMitchell Horne DB_SHOW_COMMAND_FLAGS(uma, db_show_uma, DB_CMD_MEMSAFE) 589546d70077SConrad Meyer { 589646d70077SConrad Meyer const char *fmt_hdr, *fmt_entry; 589746d70077SConrad Meyer uma_keg_t kz; 589846d70077SConrad Meyer uma_zone_t z; 589946d70077SConrad Meyer uint64_t allocs, used, sleeps, xdomain; 590046d70077SConrad Meyer long cachefree; 590146d70077SConrad Meyer /* variables for sorting */ 590246d70077SConrad Meyer uma_keg_t cur_keg; 590346d70077SConrad Meyer uma_zone_t cur_zone, last_zone; 590446d70077SConrad Meyer int64_t cur_size, last_size, size; 590546d70077SConrad Meyer int ties; 590646d70077SConrad Meyer 590746d70077SConrad Meyer /* /i option produces machine-parseable CSV output */ 590846d70077SConrad Meyer if (modif[0] == 'i') { 590946d70077SConrad Meyer fmt_hdr = "%s,%s,%s,%s,%s,%s,%s,%s,%s\n"; 591046d70077SConrad Meyer fmt_entry = "\"%s\",%ju,%jd,%ld,%ju,%ju,%u,%jd,%ju\n"; 591146d70077SConrad Meyer } else { 591246d70077SConrad Meyer fmt_hdr = "%18s %6s %7s %7s %11s %7s %7s %10s %8s\n"; 591346d70077SConrad Meyer fmt_entry = "%18s %6ju %7jd %7ld %11ju %7ju %7u %10jd %8ju\n"; 591446d70077SConrad Meyer } 591546d70077SConrad Meyer 591646d70077SConrad Meyer db_printf(fmt_hdr, "Zone", "Size", "Used", "Free", "Requests", 591746d70077SConrad Meyer "Sleeps", "Bucket", "Total Mem", "XFree"); 591846d70077SConrad Meyer 591946d70077SConrad Meyer /* Sort the zones with largest size first. */ 592046d70077SConrad Meyer last_zone = NULL; 592146d70077SConrad Meyer last_size = INT64_MAX; 592246d70077SConrad Meyer for (;;) { 592346d70077SConrad Meyer cur_zone = NULL; 592446d70077SConrad Meyer cur_size = -1; 592546d70077SConrad Meyer ties = 0; 592646d70077SConrad Meyer LIST_FOREACH(kz, &uma_kegs, uk_link) { 592746d70077SConrad Meyer LIST_FOREACH(z, &kz->uk_zones, uz_link) { 592846d70077SConrad Meyer /* 592946d70077SConrad Meyer * In the case of size ties, print out zones 593046d70077SConrad Meyer * in the order they are encountered. That is, 593146d70077SConrad Meyer * when we encounter the most recently output 593246d70077SConrad Meyer * zone, we have already printed all preceding 593346d70077SConrad Meyer * ties, and we must print all following ties. 593446d70077SConrad Meyer */ 593546d70077SConrad Meyer if (z == last_zone) { 593646d70077SConrad Meyer ties = 1; 593746d70077SConrad Meyer continue; 593846d70077SConrad Meyer } 593946d70077SConrad Meyer size = get_uma_stats(kz, z, &allocs, &used, 594046d70077SConrad Meyer &sleeps, &cachefree, &xdomain); 594146d70077SConrad Meyer if (size > cur_size && size < last_size + ties) 594246d70077SConrad Meyer { 594346d70077SConrad Meyer cur_size = size; 594446d70077SConrad Meyer cur_zone = z; 594546d70077SConrad Meyer cur_keg = kz; 594646d70077SConrad Meyer } 594746d70077SConrad Meyer } 594846d70077SConrad Meyer } 594946d70077SConrad Meyer if (cur_zone == NULL) 595046d70077SConrad Meyer break; 595146d70077SConrad Meyer 595246d70077SConrad Meyer size = get_uma_stats(cur_keg, cur_zone, &allocs, &used, 595346d70077SConrad Meyer &sleeps, &cachefree, &xdomain); 595446d70077SConrad Meyer db_printf(fmt_entry, cur_zone->uz_name, 595546d70077SConrad Meyer (uintmax_t)cur_keg->uk_size, (intmax_t)used, cachefree, 595646d70077SConrad Meyer (uintmax_t)allocs, (uintmax_t)sleeps, 595720a4e154SJeff Roberson (unsigned)cur_zone->uz_bucket_size, (intmax_t)size, 595820a4e154SJeff Roberson xdomain); 595946d70077SConrad Meyer 5960687c94aaSJohn Baldwin if (db_pager_quit) 5961687c94aaSJohn Baldwin return; 596246d70077SConrad Meyer last_zone = cur_zone; 596346d70077SConrad Meyer last_size = cur_size; 596448c5777eSRobert Watson } 596548c5777eSRobert Watson } 596603175483SAlexander Motin 5967c84c5e00SMitchell Horne DB_SHOW_COMMAND_FLAGS(umacache, db_show_umacache, DB_CMD_MEMSAFE) 596803175483SAlexander Motin { 596903175483SAlexander Motin uma_zone_t z; 5970ab3185d1SJeff Roberson uint64_t allocs, frees; 59710f9b7bf3SMark Johnston long cachefree; 59720f9b7bf3SMark Johnston int i; 597303175483SAlexander Motin 597403175483SAlexander Motin db_printf("%18s %8s %8s %8s %12s %8s\n", "Zone", "Size", "Used", "Free", 597503175483SAlexander Motin "Requests", "Bucket"); 597603175483SAlexander Motin LIST_FOREACH(z, &uma_cachezones, uz_link) { 5977c1685086SJeff Roberson uma_zone_sumstat(z, &cachefree, &allocs, &frees, NULL, NULL); 59780f9b7bf3SMark Johnston for (i = 0; i < vm_ndomains; i++) 5979c6fd3e23SJeff Roberson cachefree += ZDOM_GET(z, i)->uzd_nitems; 59800f9b7bf3SMark Johnston db_printf("%18s %8ju %8jd %8ld %12ju %8u\n", 598103175483SAlexander Motin z->uz_name, (uintmax_t)z->uz_size, 598203175483SAlexander Motin (intmax_t)(allocs - frees), cachefree, 598320a4e154SJeff Roberson (uintmax_t)allocs, z->uz_bucket_size); 598403175483SAlexander Motin if (db_pager_quit) 598503175483SAlexander Motin return; 598603175483SAlexander Motin } 598703175483SAlexander Motin } 59889542ea7bSGleb Smirnoff #endif /* DDB */ 5989