19454b2d8SWarner Losh /*- 24d846d26SWarner Losh * SPDX-License-Identifier: BSD-2-Clause 38a36da99SPedro F. Giffuni * 444990b8cSJulian Elischer * Copyright (C) 2001 Julian Elischer <julian@freebsd.org>. 544990b8cSJulian Elischer * All rights reserved. 644990b8cSJulian Elischer * 744990b8cSJulian Elischer * Redistribution and use in source and binary forms, with or without 844990b8cSJulian Elischer * modification, are permitted provided that the following conditions 944990b8cSJulian Elischer * are met: 1044990b8cSJulian Elischer * 1. Redistributions of source code must retain the above copyright 1144990b8cSJulian Elischer * notice(s), this list of conditions and the following disclaimer as 1244990b8cSJulian Elischer * the first lines of this file unmodified other than the possible 1344990b8cSJulian Elischer * addition of one or more copyright notices. 1444990b8cSJulian Elischer * 2. Redistributions in binary form must reproduce the above copyright 1544990b8cSJulian Elischer * notice(s), this list of conditions and the following disclaimer in the 1644990b8cSJulian Elischer * documentation and/or other materials provided with the distribution. 1744990b8cSJulian Elischer * 1844990b8cSJulian Elischer * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDER(S) ``AS IS'' AND ANY 1944990b8cSJulian Elischer * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED 2044990b8cSJulian Elischer * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE 2144990b8cSJulian Elischer * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER(S) BE LIABLE FOR ANY 2244990b8cSJulian Elischer * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES 2344990b8cSJulian Elischer * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR 2444990b8cSJulian Elischer * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER 2544990b8cSJulian Elischer * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 2644990b8cSJulian Elischer * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 2744990b8cSJulian Elischer * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH 2844990b8cSJulian Elischer * DAMAGE. 2944990b8cSJulian Elischer */ 3044990b8cSJulian Elischer 313d06b4b3SAttilio Rao #include "opt_witness.h" 3216d95d4fSJoseph Koshy #include "opt_hwpmc_hooks.h" 333d06b4b3SAttilio Rao 34677b542eSDavid E. O'Brien #include <sys/cdefs.h> 35677b542eSDavid E. O'Brien __FBSDID("$FreeBSD$"); 36677b542eSDavid E. O'Brien 3744990b8cSJulian Elischer #include <sys/param.h> 3844990b8cSJulian Elischer #include <sys/systm.h> 3944990b8cSJulian Elischer #include <sys/kernel.h> 4044990b8cSJulian Elischer #include <sys/lock.h> 415dda15adSMark Johnston #include <sys/msan.h> 4244990b8cSJulian Elischer #include <sys/mutex.h> 4344990b8cSJulian Elischer #include <sys/proc.h> 4435bb59edSMateusz Guzik #include <sys/bitstring.h> 456febf180SGleb Smirnoff #include <sys/epoch.h> 468f0e9130SKonstantin Belousov #include <sys/rangelock.h> 47e170bfdaSDavid Xu #include <sys/resourcevar.h> 48b3e9e682SRyan Stone #include <sys/sdt.h> 4994e0a4cdSJulian Elischer #include <sys/smp.h> 50de028f5aSJeff Roberson #include <sys/sched.h> 5144f3b092SJohn Baldwin #include <sys/sleepqueue.h> 52ace8398dSJeff Roberson #include <sys/selinfo.h> 53d1e7a4a5SJohn Baldwin #include <sys/syscallsubr.h> 54598f2b81SMateusz Guzik #include <sys/dtrace_bsd.h> 5591d1786fSDmitry Chagin #include <sys/sysent.h> 56961a7b24SJohn Baldwin #include <sys/turnstile.h> 57d116b9f1SMateusz Guzik #include <sys/taskqueue.h> 5844990b8cSJulian Elischer #include <sys/ktr.h> 59cf7d9a8cSDavid Xu #include <sys/rwlock.h> 60af29f399SDmitry Chagin #include <sys/umtxvar.h> 619ed01c32SGleb Smirnoff #include <sys/vmmeter.h> 62d7f687fcSJeff Roberson #include <sys/cpuset.h> 6316d95d4fSJoseph Koshy #ifdef HWPMC_HOOKS 6416d95d4fSJoseph Koshy #include <sys/pmckern.h> 6516d95d4fSJoseph Koshy #endif 661bd3cf5dSMateusz Guzik #include <sys/priv.h> 6744990b8cSJulian Elischer 68911b84b0SRobert Watson #include <security/audit/audit.h> 69911b84b0SRobert Watson 70d116b9f1SMateusz Guzik #include <vm/pmap.h> 7144990b8cSJulian Elischer #include <vm/vm.h> 7249a2507bSAlan Cox #include <vm/vm_extern.h> 7344990b8cSJulian Elischer #include <vm/uma.h> 74d116b9f1SMateusz Guzik #include <vm/vm_phys.h> 75b209f889SRandall Stewart #include <sys/eventhandler.h> 7602fb42b0SPeter Wemm 77acd9f517SKonstantin Belousov /* 78acd9f517SKonstantin Belousov * Asserts below verify the stability of struct thread and struct proc 79acd9f517SKonstantin Belousov * layout, as exposed by KBI to modules. On head, the KBI is allowed 80acd9f517SKonstantin Belousov * to drift, change to the structures must be accompanied by the 81acd9f517SKonstantin Belousov * assert update. 82acd9f517SKonstantin Belousov * 83acd9f517SKonstantin Belousov * On the stable branches after KBI freeze, conditions must not be 84acd9f517SKonstantin Belousov * violated. Typically new fields are moved to the end of the 85acd9f517SKonstantin Belousov * structures. 86acd9f517SKonstantin Belousov */ 87acd9f517SKonstantin Belousov #ifdef __amd64__ 88a422084aSMark Johnston _Static_assert(offsetof(struct thread, td_flags) == 0x108, 89acd9f517SKonstantin Belousov "struct thread KBI td_flags"); 90c6d31b83SKonstantin Belousov _Static_assert(offsetof(struct thread, td_pflags) == 0x114, 91acd9f517SKonstantin Belousov "struct thread KBI td_pflags"); 929a19595cSMateusz Guzik _Static_assert(offsetof(struct thread, td_frame) == 0x4b8, 93acd9f517SKonstantin Belousov "struct thread KBI td_frame"); 94c6d31b83SKonstantin Belousov _Static_assert(offsetof(struct thread, td_emuldata) == 0x6c0, 95acd9f517SKonstantin Belousov "struct thread KBI td_emuldata"); 9685078b85SConrad Meyer _Static_assert(offsetof(struct proc, p_flag) == 0xb8, 97acd9f517SKonstantin Belousov "struct proc KBI p_flag"); 9885078b85SConrad Meyer _Static_assert(offsetof(struct proc, p_pid) == 0xc4, 99acd9f517SKonstantin Belousov "struct proc KBI p_pid"); 100351d5f7fSKonstantin Belousov _Static_assert(offsetof(struct proc, p_filemon) == 0x3c8, 101acd9f517SKonstantin Belousov "struct proc KBI p_filemon"); 1025e5675cbSKonstantin Belousov _Static_assert(offsetof(struct proc, p_comm) == 0x3e0, 103acd9f517SKonstantin Belousov "struct proc KBI p_comm"); 10493ca6ff2SKonstantin Belousov _Static_assert(offsetof(struct proc, p_emuldata) == 0x4d0, 105acd9f517SKonstantin Belousov "struct proc KBI p_emuldata"); 106acd9f517SKonstantin Belousov #endif 107acd9f517SKonstantin Belousov #ifdef __i386__ 108a422084aSMark Johnston _Static_assert(offsetof(struct thread, td_flags) == 0x9c, 109acd9f517SKonstantin Belousov "struct thread KBI td_flags"); 110c6d31b83SKonstantin Belousov _Static_assert(offsetof(struct thread, td_pflags) == 0xa8, 111acd9f517SKonstantin Belousov "struct thread KBI td_pflags"); 1129a19595cSMateusz Guzik _Static_assert(offsetof(struct thread, td_frame) == 0x314, 113acd9f517SKonstantin Belousov "struct thread KBI td_frame"); 1149a19595cSMateusz Guzik _Static_assert(offsetof(struct thread, td_emuldata) == 0x358, 115acd9f517SKonstantin Belousov "struct thread KBI td_emuldata"); 11685078b85SConrad Meyer _Static_assert(offsetof(struct proc, p_flag) == 0x6c, 117acd9f517SKonstantin Belousov "struct proc KBI p_flag"); 11885078b85SConrad Meyer _Static_assert(offsetof(struct proc, p_pid) == 0x78, 119acd9f517SKonstantin Belousov "struct proc KBI p_pid"); 1204d675b80SKonstantin Belousov _Static_assert(offsetof(struct proc, p_filemon) == 0x270, 121acd9f517SKonstantin Belousov "struct proc KBI p_filemon"); 1225e5675cbSKonstantin Belousov _Static_assert(offsetof(struct proc, p_comm) == 0x284, 123acd9f517SKonstantin Belousov "struct proc KBI p_comm"); 12493ca6ff2SKonstantin Belousov _Static_assert(offsetof(struct proc, p_emuldata) == 0x318, 125acd9f517SKonstantin Belousov "struct proc KBI p_emuldata"); 126acd9f517SKonstantin Belousov #endif 127acd9f517SKonstantin Belousov 128b3e9e682SRyan Stone SDT_PROVIDER_DECLARE(proc); 129d9fae5abSAndriy Gapon SDT_PROBE_DEFINE(proc, , , lwp__exit); 130b3e9e682SRyan Stone 1318460a577SJohn Birrell /* 1328460a577SJohn Birrell * thread related storage. 1338460a577SJohn Birrell */ 13444990b8cSJulian Elischer static uma_zone_t thread_zone; 13544990b8cSJulian Elischer 136d116b9f1SMateusz Guzik struct thread_domain_data { 137d116b9f1SMateusz Guzik struct thread *tdd_zombies; 138d116b9f1SMateusz Guzik int tdd_reapticks; 139d116b9f1SMateusz Guzik } __aligned(CACHE_LINE_SIZE); 140d116b9f1SMateusz Guzik 141d116b9f1SMateusz Guzik static struct thread_domain_data thread_domain_data[MAXMEMDOM]; 142d116b9f1SMateusz Guzik 143d116b9f1SMateusz Guzik static struct task thread_reap_task; 144d116b9f1SMateusz Guzik static struct callout thread_reap_callout; 14544990b8cSJulian Elischer 146ff8fbcffSJeff Roberson static void thread_zombie(struct thread *); 147b83e94beSMateusz Guzik static void thread_reap(void); 148d116b9f1SMateusz Guzik static void thread_reap_all(void); 149d116b9f1SMateusz Guzik static void thread_reap_task_cb(void *, int); 150d116b9f1SMateusz Guzik static void thread_reap_callout_cb(void *); 15184cdea97SKonstantin Belousov static int thread_unsuspend_one(struct thread *td, struct proc *p, 15284cdea97SKonstantin Belousov bool boundary); 153755341dfSMateusz Guzik static void thread_free_batched(struct thread *td); 154ff8fbcffSJeff Roberson 155d1ca25beSMateusz Guzik static __exclusive_cache_line struct mtx tid_lock; 156934e7e5eSMateusz Guzik static bitstr_t *tid_bitmap; 15735bb59edSMateusz Guzik 158cf7d9a8cSDavid Xu static MALLOC_DEFINE(M_TIDHASH, "tidhash", "thread hash"); 159cf7d9a8cSDavid Xu 1601bd3cf5dSMateusz Guzik static int maxthread; 1611bd3cf5dSMateusz Guzik SYSCTL_INT(_kern, OID_AUTO, maxthread, CTLFLAG_RDTUN, 1621bd3cf5dSMateusz Guzik &maxthread, 0, "Maximum number of threads"); 1631bd3cf5dSMateusz Guzik 16462dbc992SMateusz Guzik static __exclusive_cache_line int nthreads; 1651bd3cf5dSMateusz Guzik 166aae3547bSMateusz Guzik static LIST_HEAD(tidhashhead, thread) *tidhashtbl; 167aae3547bSMateusz Guzik static u_long tidhash; 16826007fe3SMateusz Guzik static u_long tidhashlock; 16926007fe3SMateusz Guzik static struct rwlock *tidhashtbl_lock; 170aae3547bSMateusz Guzik #define TIDHASH(tid) (&tidhashtbl[(tid) & tidhash]) 17126007fe3SMateusz Guzik #define TIDHASHLOCK(tid) (&tidhashtbl_lock[(tid) & tidhashlock]) 172cf7d9a8cSDavid Xu 1732ca45184SMatt Joras EVENTHANDLER_LIST_DEFINE(thread_ctor); 1742ca45184SMatt Joras EVENTHANDLER_LIST_DEFINE(thread_dtor); 1752ca45184SMatt Joras EVENTHANDLER_LIST_DEFINE(thread_init); 1762ca45184SMatt Joras EVENTHANDLER_LIST_DEFINE(thread_fini); 1772ca45184SMatt Joras 17862dbc992SMateusz Guzik static bool 179d116b9f1SMateusz Guzik thread_count_inc_try(void) 180ec6ea5e8SDavid Xu { 18162dbc992SMateusz Guzik int nthreads_new; 182ec6ea5e8SDavid Xu 18362dbc992SMateusz Guzik nthreads_new = atomic_fetchadd_int(&nthreads, 1) + 1; 18462dbc992SMateusz Guzik if (nthreads_new >= maxthread - 100) { 1851bd3cf5dSMateusz Guzik if (priv_check_cred(curthread->td_ucred, PRIV_MAXPROC) != 0 || 18662dbc992SMateusz Guzik nthreads_new >= maxthread) { 18762dbc992SMateusz Guzik atomic_subtract_int(&nthreads, 1); 188d116b9f1SMateusz Guzik return (false); 189d116b9f1SMateusz Guzik } 190d116b9f1SMateusz Guzik } 191d116b9f1SMateusz Guzik return (true); 192d116b9f1SMateusz Guzik } 193d116b9f1SMateusz Guzik 194d116b9f1SMateusz Guzik static bool 195d116b9f1SMateusz Guzik thread_count_inc(void) 196d116b9f1SMateusz Guzik { 197d116b9f1SMateusz Guzik static struct timeval lastfail; 198d116b9f1SMateusz Guzik static int curfail; 199d116b9f1SMateusz Guzik 200d116b9f1SMateusz Guzik thread_reap(); 201d116b9f1SMateusz Guzik if (thread_count_inc_try()) { 202d116b9f1SMateusz Guzik return (true); 203d116b9f1SMateusz Guzik } 204d116b9f1SMateusz Guzik 205d116b9f1SMateusz Guzik thread_reap_all(); 206d116b9f1SMateusz Guzik if (thread_count_inc_try()) { 207d116b9f1SMateusz Guzik return (true); 208d116b9f1SMateusz Guzik } 209d116b9f1SMateusz Guzik 2101bd3cf5dSMateusz Guzik if (ppsratecheck(&lastfail, &curfail, 1)) { 2111bd3cf5dSMateusz Guzik printf("maxthread limit exceeded by uid %u " 2121bd3cf5dSMateusz Guzik "(pid %d); consider increasing kern.maxthread\n", 2131bd3cf5dSMateusz Guzik curthread->td_ucred->cr_ruid, curproc->p_pid); 2141bd3cf5dSMateusz Guzik } 21562dbc992SMateusz Guzik return (false); 2161bd3cf5dSMateusz Guzik } 2171bd3cf5dSMateusz Guzik 21862dbc992SMateusz Guzik static void 21962dbc992SMateusz Guzik thread_count_sub(int n) 22062dbc992SMateusz Guzik { 22162dbc992SMateusz Guzik 22262dbc992SMateusz Guzik atomic_subtract_int(&nthreads, n); 22362dbc992SMateusz Guzik } 22462dbc992SMateusz Guzik 22562dbc992SMateusz Guzik static void 22662dbc992SMateusz Guzik thread_count_dec(void) 22762dbc992SMateusz Guzik { 22862dbc992SMateusz Guzik 22962dbc992SMateusz Guzik thread_count_sub(1); 23062dbc992SMateusz Guzik } 23162dbc992SMateusz Guzik 23262dbc992SMateusz Guzik static lwpid_t 23362dbc992SMateusz Guzik tid_alloc(void) 23462dbc992SMateusz Guzik { 23562dbc992SMateusz Guzik static lwpid_t trytid; 23662dbc992SMateusz Guzik lwpid_t tid; 23762dbc992SMateusz Guzik 23862dbc992SMateusz Guzik mtx_lock(&tid_lock); 23935bb59edSMateusz Guzik /* 24035bb59edSMateusz Guzik * It is an invariant that the bitmap is big enough to hold maxthread 24135bb59edSMateusz Guzik * IDs. If we got to this point there has to be at least one free. 24235bb59edSMateusz Guzik */ 24335bb59edSMateusz Guzik if (trytid >= maxthread) 24435bb59edSMateusz Guzik trytid = 0; 24535bb59edSMateusz Guzik bit_ffc_at(tid_bitmap, trytid, maxthread, &tid); 24635bb59edSMateusz Guzik if (tid == -1) { 24735bb59edSMateusz Guzik KASSERT(trytid != 0, ("unexpectedly ran out of IDs")); 24835bb59edSMateusz Guzik trytid = 0; 24935bb59edSMateusz Guzik bit_ffc_at(tid_bitmap, trytid, maxthread, &tid); 25035bb59edSMateusz Guzik KASSERT(tid != -1, ("unexpectedly ran out of IDs")); 251ec6ea5e8SDavid Xu } 25235bb59edSMateusz Guzik bit_set(tid_bitmap, tid); 253934e7e5eSMateusz Guzik trytid = tid + 1; 254ec6ea5e8SDavid Xu mtx_unlock(&tid_lock); 25535bb59edSMateusz Guzik return (tid + NO_PID); 256ec6ea5e8SDavid Xu } 257ec6ea5e8SDavid Xu 258ec6ea5e8SDavid Xu static void 259755341dfSMateusz Guzik tid_free_locked(lwpid_t rtid) 260ec6ea5e8SDavid Xu { 26135bb59edSMateusz Guzik lwpid_t tid; 262ec6ea5e8SDavid Xu 263755341dfSMateusz Guzik mtx_assert(&tid_lock, MA_OWNED); 26435bb59edSMateusz Guzik KASSERT(rtid >= NO_PID, 26535bb59edSMateusz Guzik ("%s: invalid tid %d\n", __func__, rtid)); 26635bb59edSMateusz Guzik tid = rtid - NO_PID; 26735bb59edSMateusz Guzik KASSERT(bit_test(tid_bitmap, tid) != 0, 26835bb59edSMateusz Guzik ("thread ID %d not allocated\n", rtid)); 26935bb59edSMateusz Guzik bit_clear(tid_bitmap, tid); 270755341dfSMateusz Guzik } 271755341dfSMateusz Guzik 272755341dfSMateusz Guzik static void 273755341dfSMateusz Guzik tid_free(lwpid_t rtid) 274755341dfSMateusz Guzik { 275755341dfSMateusz Guzik 276755341dfSMateusz Guzik mtx_lock(&tid_lock); 277755341dfSMateusz Guzik tid_free_locked(rtid); 278755341dfSMateusz Guzik mtx_unlock(&tid_lock); 279755341dfSMateusz Guzik } 280755341dfSMateusz Guzik 281755341dfSMateusz Guzik static void 282755341dfSMateusz Guzik tid_free_batch(lwpid_t *batch, int n) 283755341dfSMateusz Guzik { 284755341dfSMateusz Guzik int i; 285755341dfSMateusz Guzik 286755341dfSMateusz Guzik mtx_lock(&tid_lock); 287755341dfSMateusz Guzik for (i = 0; i < n; i++) { 288755341dfSMateusz Guzik tid_free_locked(batch[i]); 289755341dfSMateusz Guzik } 290ec6ea5e8SDavid Xu mtx_unlock(&tid_lock); 291ec6ea5e8SDavid Xu } 292ec6ea5e8SDavid Xu 293fdcac928SMarcel Moolenaar /* 2945ef7b7a0SMateusz Guzik * Batching for thread reapping. 2955ef7b7a0SMateusz Guzik */ 2965ef7b7a0SMateusz Guzik struct tidbatch { 2975ef7b7a0SMateusz Guzik lwpid_t tab[16]; 2985ef7b7a0SMateusz Guzik int n; 2995ef7b7a0SMateusz Guzik }; 3005ef7b7a0SMateusz Guzik 3015ef7b7a0SMateusz Guzik static void 3025ef7b7a0SMateusz Guzik tidbatch_prep(struct tidbatch *tb) 3035ef7b7a0SMateusz Guzik { 3045ef7b7a0SMateusz Guzik 3055ef7b7a0SMateusz Guzik tb->n = 0; 3065ef7b7a0SMateusz Guzik } 3075ef7b7a0SMateusz Guzik 3085ef7b7a0SMateusz Guzik static void 3095ef7b7a0SMateusz Guzik tidbatch_add(struct tidbatch *tb, struct thread *td) 3105ef7b7a0SMateusz Guzik { 3115ef7b7a0SMateusz Guzik 3125ef7b7a0SMateusz Guzik KASSERT(tb->n < nitems(tb->tab), 3135ef7b7a0SMateusz Guzik ("%s: count too high %d", __func__, tb->n)); 3145ef7b7a0SMateusz Guzik tb->tab[tb->n] = td->td_tid; 3155ef7b7a0SMateusz Guzik tb->n++; 3165ef7b7a0SMateusz Guzik } 3175ef7b7a0SMateusz Guzik 3185ef7b7a0SMateusz Guzik static void 3195ef7b7a0SMateusz Guzik tidbatch_process(struct tidbatch *tb) 3205ef7b7a0SMateusz Guzik { 3215ef7b7a0SMateusz Guzik 3225ef7b7a0SMateusz Guzik KASSERT(tb->n <= nitems(tb->tab), 3235ef7b7a0SMateusz Guzik ("%s: count too high %d", __func__, tb->n)); 3245ef7b7a0SMateusz Guzik if (tb->n == nitems(tb->tab)) { 3255ef7b7a0SMateusz Guzik tid_free_batch(tb->tab, tb->n); 3265ef7b7a0SMateusz Guzik tb->n = 0; 3275ef7b7a0SMateusz Guzik } 3285ef7b7a0SMateusz Guzik } 3295ef7b7a0SMateusz Guzik 3305ef7b7a0SMateusz Guzik static void 3315ef7b7a0SMateusz Guzik tidbatch_final(struct tidbatch *tb) 3325ef7b7a0SMateusz Guzik { 3335ef7b7a0SMateusz Guzik 3345ef7b7a0SMateusz Guzik KASSERT(tb->n <= nitems(tb->tab), 3355ef7b7a0SMateusz Guzik ("%s: count too high %d", __func__, tb->n)); 3365ef7b7a0SMateusz Guzik if (tb->n != 0) { 3375ef7b7a0SMateusz Guzik tid_free_batch(tb->tab, tb->n); 3385ef7b7a0SMateusz Guzik } 3395ef7b7a0SMateusz Guzik } 3405ef7b7a0SMateusz Guzik 3415ef7b7a0SMateusz Guzik /* 342*e0c86f5cSMateusz Guzik * Batching thread count free, for consistency 343*e0c86f5cSMateusz Guzik */ 344*e0c86f5cSMateusz Guzik struct tdcountbatch { 345*e0c86f5cSMateusz Guzik int n; 346*e0c86f5cSMateusz Guzik }; 347*e0c86f5cSMateusz Guzik 348*e0c86f5cSMateusz Guzik static void 349*e0c86f5cSMateusz Guzik tdcountbatch_prep(struct tdcountbatch *tb) 350*e0c86f5cSMateusz Guzik { 351*e0c86f5cSMateusz Guzik 352*e0c86f5cSMateusz Guzik tb->n = 0; 353*e0c86f5cSMateusz Guzik } 354*e0c86f5cSMateusz Guzik 355*e0c86f5cSMateusz Guzik static void 356*e0c86f5cSMateusz Guzik tdcountbatch_add(struct tdcountbatch *tb, struct thread *td __unused) 357*e0c86f5cSMateusz Guzik { 358*e0c86f5cSMateusz Guzik 359*e0c86f5cSMateusz Guzik tb->n++; 360*e0c86f5cSMateusz Guzik } 361*e0c86f5cSMateusz Guzik 362*e0c86f5cSMateusz Guzik static void 363*e0c86f5cSMateusz Guzik tdcountbatch_process(struct tdcountbatch *tb) 364*e0c86f5cSMateusz Guzik { 365*e0c86f5cSMateusz Guzik 366*e0c86f5cSMateusz Guzik if (tb->n == 32) { 367*e0c86f5cSMateusz Guzik thread_count_sub(tb->n); 368*e0c86f5cSMateusz Guzik tb->n = 0; 369*e0c86f5cSMateusz Guzik } 370*e0c86f5cSMateusz Guzik } 371*e0c86f5cSMateusz Guzik 372*e0c86f5cSMateusz Guzik static void 373*e0c86f5cSMateusz Guzik tdcountbatch_final(struct tdcountbatch *tb) 374*e0c86f5cSMateusz Guzik { 375*e0c86f5cSMateusz Guzik 376*e0c86f5cSMateusz Guzik if (tb->n != 0) { 377*e0c86f5cSMateusz Guzik thread_count_sub(tb->n); 378*e0c86f5cSMateusz Guzik } 379*e0c86f5cSMateusz Guzik } 380*e0c86f5cSMateusz Guzik 381*e0c86f5cSMateusz Guzik /* 382696058c3SJulian Elischer * Prepare a thread for use. 38344990b8cSJulian Elischer */ 384b23f72e9SBrian Feldman static int 385b23f72e9SBrian Feldman thread_ctor(void *mem, int size, void *arg, int flags) 38644990b8cSJulian Elischer { 38744990b8cSJulian Elischer struct thread *td; 38844990b8cSJulian Elischer 38944990b8cSJulian Elischer td = (struct thread *)mem; 390fa2528acSAlex Richardson TD_SET_STATE(td, TDS_INACTIVE); 39194dd54b9SKonstantin Belousov td->td_lastcpu = td->td_oncpu = NOCPU; 3926c27c603SJuli Mallett 3936c27c603SJuli Mallett /* 3946c27c603SJuli Mallett * Note that td_critnest begins life as 1 because the thread is not 3956c27c603SJuli Mallett * running and is thereby implicitly waiting to be on the receiving 396a54e85fdSJeff Roberson * end of a context switch. 3976c27c603SJuli Mallett */ 398139b7550SJohn Baldwin td->td_critnest = 1; 399acbe332aSDavid Xu td->td_lend_user_pri = PRI_MAX; 400911b84b0SRobert Watson #ifdef AUDIT 401911b84b0SRobert Watson audit_thread_alloc(td); 402911b84b0SRobert Watson #endif 403598f2b81SMateusz Guzik #ifdef KDTRACE_HOOKS 404598f2b81SMateusz Guzik kdtrace_thread_ctor(td); 405598f2b81SMateusz Guzik #endif 406d10183d9SDavid Xu umtx_thread_alloc(td); 40719d3e47dSMateusz Guzik MPASS(td->td_sel == NULL); 408b23f72e9SBrian Feldman return (0); 40944990b8cSJulian Elischer } 41044990b8cSJulian Elischer 41144990b8cSJulian Elischer /* 41244990b8cSJulian Elischer * Reclaim a thread after use. 41344990b8cSJulian Elischer */ 41444990b8cSJulian Elischer static void 41544990b8cSJulian Elischer thread_dtor(void *mem, int size, void *arg) 41644990b8cSJulian Elischer { 41744990b8cSJulian Elischer struct thread *td; 41844990b8cSJulian Elischer 41944990b8cSJulian Elischer td = (struct thread *)mem; 42044990b8cSJulian Elischer 42144990b8cSJulian Elischer #ifdef INVARIANTS 42244990b8cSJulian Elischer /* Verify that this thread is in a safe state to free. */ 423fa2528acSAlex Richardson switch (TD_GET_STATE(td)) { 42471fad9fdSJulian Elischer case TDS_INHIBITED: 42571fad9fdSJulian Elischer case TDS_RUNNING: 42671fad9fdSJulian Elischer case TDS_CAN_RUN: 42744990b8cSJulian Elischer case TDS_RUNQ: 42844990b8cSJulian Elischer /* 42944990b8cSJulian Elischer * We must never unlink a thread that is in one of 43044990b8cSJulian Elischer * these states, because it is currently active. 43144990b8cSJulian Elischer */ 43244990b8cSJulian Elischer panic("bad state for thread unlinking"); 43344990b8cSJulian Elischer /* NOTREACHED */ 43471fad9fdSJulian Elischer case TDS_INACTIVE: 43544990b8cSJulian Elischer break; 43644990b8cSJulian Elischer default: 43744990b8cSJulian Elischer panic("bad thread state"); 43844990b8cSJulian Elischer /* NOTREACHED */ 43944990b8cSJulian Elischer } 44044990b8cSJulian Elischer #endif 4416e8525ceSRobert Watson #ifdef AUDIT 4426e8525ceSRobert Watson audit_thread_free(td); 4436e8525ceSRobert Watson #endif 444598f2b81SMateusz Guzik #ifdef KDTRACE_HOOKS 445598f2b81SMateusz Guzik kdtrace_thread_dtor(td); 446598f2b81SMateusz Guzik #endif 4471ba4a712SPawel Jakub Dawidek /* Free all OSD associated to this thread. */ 4481ba4a712SPawel Jakub Dawidek osd_thread_exit(td); 449c6d31b83SKonstantin Belousov ast_kclear(td); 45019d3e47dSMateusz Guzik seltdfini(td); 45144990b8cSJulian Elischer } 45244990b8cSJulian Elischer 45344990b8cSJulian Elischer /* 45444990b8cSJulian Elischer * Initialize type-stable parts of a thread (when newly created). 45544990b8cSJulian Elischer */ 456b23f72e9SBrian Feldman static int 457b23f72e9SBrian Feldman thread_init(void *mem, int size, int flags) 45844990b8cSJulian Elischer { 45944990b8cSJulian Elischer struct thread *td; 46044990b8cSJulian Elischer 46144990b8cSJulian Elischer td = (struct thread *)mem; 462247aba24SMarcel Moolenaar 463b83e94beSMateusz Guzik td->td_allocdomain = vm_phys_domain(vtophys(td)); 46444f3b092SJohn Baldwin td->td_sleepqueue = sleepq_alloc(); 465961a7b24SJohn Baldwin td->td_turnstile = turnstile_alloc(); 4668f0e9130SKonstantin Belousov td->td_rlqe = NULL; 4672ca45184SMatt Joras EVENTHANDLER_DIRECT_INVOKE(thread_init, td); 468d10183d9SDavid Xu umtx_thread_init(td); 46989b57fcfSKonstantin Belousov td->td_kstack = 0; 470ad8b1d85SKonstantin Belousov td->td_sel = NULL; 471b23f72e9SBrian Feldman return (0); 47244990b8cSJulian Elischer } 47344990b8cSJulian Elischer 47444990b8cSJulian Elischer /* 47544990b8cSJulian Elischer * Tear down type-stable parts of a thread (just before being discarded). 47644990b8cSJulian Elischer */ 47744990b8cSJulian Elischer static void 47844990b8cSJulian Elischer thread_fini(void *mem, int size) 47944990b8cSJulian Elischer { 48044990b8cSJulian Elischer struct thread *td; 48144990b8cSJulian Elischer 48244990b8cSJulian Elischer td = (struct thread *)mem; 4832ca45184SMatt Joras EVENTHANDLER_DIRECT_INVOKE(thread_fini, td); 4848f0e9130SKonstantin Belousov rlqentry_free(td->td_rlqe); 485961a7b24SJohn Baldwin turnstile_free(td->td_turnstile); 48644f3b092SJohn Baldwin sleepq_free(td->td_sleepqueue); 487d10183d9SDavid Xu umtx_thread_fini(td); 48819d3e47dSMateusz Guzik MPASS(td->td_sel == NULL); 48944990b8cSJulian Elischer } 4905215b187SJeff Roberson 4915c8329edSJulian Elischer /* 4925215b187SJeff Roberson * For a newly created process, 4935215b187SJeff Roberson * link up all the structures and its initial threads etc. 494ed062c8dSJulian Elischer * called from: 495e7d939bdSMarcel Moolenaar * {arch}/{arch}/machdep.c {arch}_init(), init386() etc. 496ed062c8dSJulian Elischer * proc_dtor() (should go away) 497ed062c8dSJulian Elischer * proc_init() 4985c8329edSJulian Elischer */ 4995c8329edSJulian Elischer void 50089b57fcfSKonstantin Belousov proc_linkup0(struct proc *p, struct thread *td) 50189b57fcfSKonstantin Belousov { 50289b57fcfSKonstantin Belousov TAILQ_INIT(&p->p_threads); /* all threads in proc */ 50389b57fcfSKonstantin Belousov proc_linkup(p, td); 50489b57fcfSKonstantin Belousov } 50589b57fcfSKonstantin Belousov 50689b57fcfSKonstantin Belousov void 5078460a577SJohn Birrell proc_linkup(struct proc *p, struct thread *td) 5085c8329edSJulian Elischer { 509a54e85fdSJeff Roberson 5109104847fSDavid Xu sigqueue_init(&p->p_sigqueue, p); 511cc29f221SKonstantin Belousov p->p_ksi = ksiginfo_alloc(M_WAITOK); 512ebceaf6dSDavid Xu if (p->p_ksi != NULL) { 5135c474517SDavid Xu /* XXX p_ksi may be null if ksiginfo zone is not ready */ 514ebceaf6dSDavid Xu p->p_ksi->ksi_flags = KSI_EXT | KSI_INS; 515ebceaf6dSDavid Xu } 516b2f92ef9SDavid Xu LIST_INIT(&p->p_mqnotifier); 5175c8329edSJulian Elischer p->p_numthreads = 0; 5188460a577SJohn Birrell thread_link(td, p); 5195c8329edSJulian Elischer } 5205c8329edSJulian Elischer 521c6d31b83SKonstantin Belousov static void 522c6d31b83SKonstantin Belousov ast_suspend(struct thread *td, int tda __unused) 523c6d31b83SKonstantin Belousov { 524c6d31b83SKonstantin Belousov struct proc *p; 525c6d31b83SKonstantin Belousov 526c6d31b83SKonstantin Belousov p = td->td_proc; 527c6d31b83SKonstantin Belousov /* 528c6d31b83SKonstantin Belousov * We need to check to see if we have to exit or wait due to a 529c6d31b83SKonstantin Belousov * single threading requirement or some other STOP condition. 530c6d31b83SKonstantin Belousov */ 531c6d31b83SKonstantin Belousov PROC_LOCK(p); 532c6d31b83SKonstantin Belousov thread_suspend_check(0); 533c6d31b83SKonstantin Belousov PROC_UNLOCK(p); 534c6d31b83SKonstantin Belousov } 535c6d31b83SKonstantin Belousov 5361bd3cf5dSMateusz Guzik extern int max_threads_per_proc; 5371bd3cf5dSMateusz Guzik 5385c8329edSJulian Elischer /* 53944990b8cSJulian Elischer * Initialize global thread allocation resources. 54044990b8cSJulian Elischer */ 54144990b8cSJulian Elischer void 54244990b8cSJulian Elischer threadinit(void) 54344990b8cSJulian Elischer { 54426007fe3SMateusz Guzik u_long i; 545cf31cadeSMateusz Guzik lwpid_t tid0; 54644990b8cSJulian Elischer 5471bd3cf5dSMateusz Guzik /* 5481bd3cf5dSMateusz Guzik * Place an upper limit on threads which can be allocated. 5491bd3cf5dSMateusz Guzik * 5501bd3cf5dSMateusz Guzik * Note that other factors may make the de facto limit much lower. 5511bd3cf5dSMateusz Guzik * 5521bd3cf5dSMateusz Guzik * Platform limits are somewhat arbitrary but deemed "more than good 5531bd3cf5dSMateusz Guzik * enough" for the foreseable future. 5541bd3cf5dSMateusz Guzik */ 5551bd3cf5dSMateusz Guzik if (maxthread == 0) { 5561bd3cf5dSMateusz Guzik #ifdef _LP64 5571bd3cf5dSMateusz Guzik maxthread = MIN(maxproc * max_threads_per_proc, 1000000); 5581bd3cf5dSMateusz Guzik #else 5591bd3cf5dSMateusz Guzik maxthread = MIN(maxproc * max_threads_per_proc, 100000); 5601bd3cf5dSMateusz Guzik #endif 5611bd3cf5dSMateusz Guzik } 5621bd3cf5dSMateusz Guzik 5631ea7a6f8SPoul-Henning Kamp mtx_init(&tid_lock, "TID lock", NULL, MTX_DEF); 56435bb59edSMateusz Guzik tid_bitmap = bit_alloc(maxthread, M_TIDHASH, M_WAITOK); 56562dbc992SMateusz Guzik /* 56662dbc992SMateusz Guzik * Handle thread0. 56762dbc992SMateusz Guzik */ 56862dbc992SMateusz Guzik thread_count_inc(); 569cf31cadeSMateusz Guzik tid0 = tid_alloc(); 570cf31cadeSMateusz Guzik if (tid0 != THREAD0_TID) 571cf31cadeSMateusz Guzik panic("tid0 %d != %d\n", tid0, THREAD0_TID); 5721ea7a6f8SPoul-Henning Kamp 573de028f5aSJeff Roberson thread_zone = uma_zcreate("THREAD", sched_sizeof_thread(), 57444990b8cSJulian Elischer thread_ctor, thread_dtor, thread_init, thread_fini, 5752c10be9eSMark Johnston 32 - 1, UMA_ZONE_NOFREE); 576cf7d9a8cSDavid Xu tidhashtbl = hashinit(maxproc / 2, M_TIDHASH, &tidhash); 57726007fe3SMateusz Guzik tidhashlock = (tidhash + 1) / 64; 57826007fe3SMateusz Guzik if (tidhashlock > 0) 57926007fe3SMateusz Guzik tidhashlock--; 58026007fe3SMateusz Guzik tidhashtbl_lock = malloc(sizeof(*tidhashtbl_lock) * (tidhashlock + 1), 58126007fe3SMateusz Guzik M_TIDHASH, M_WAITOK | M_ZERO); 58226007fe3SMateusz Guzik for (i = 0; i < tidhashlock + 1; i++) 58326007fe3SMateusz Guzik rw_init(&tidhashtbl_lock[i], "tidhash"); 584d116b9f1SMateusz Guzik 585d116b9f1SMateusz Guzik TASK_INIT(&thread_reap_task, 0, thread_reap_task_cb, NULL); 586d116b9f1SMateusz Guzik callout_init(&thread_reap_callout, 1); 587845d7797SKonstantin Belousov callout_reset(&thread_reap_callout, 5 * hz, 588845d7797SKonstantin Belousov thread_reap_callout_cb, NULL); 589c6d31b83SKonstantin Belousov ast_register(TDA_SUSPEND, ASTR_ASTF_REQUIRED, 0, ast_suspend); 59044990b8cSJulian Elischer } 59144990b8cSJulian Elischer 59244990b8cSJulian Elischer /* 593ff8fbcffSJeff Roberson * Place an unused thread on the zombie list. 59444990b8cSJulian Elischer */ 59544990b8cSJulian Elischer void 596ff8fbcffSJeff Roberson thread_zombie(struct thread *td) 59744990b8cSJulian Elischer { 598d116b9f1SMateusz Guzik struct thread_domain_data *tdd; 599c5315f51SMateusz Guzik struct thread *ztd; 600c5315f51SMateusz Guzik 601a9568cd2SMateusz Guzik tdd = &thread_domain_data[td->td_allocdomain]; 602d116b9f1SMateusz Guzik ztd = atomic_load_ptr(&tdd->tdd_zombies); 603c5315f51SMateusz Guzik for (;;) { 604c5315f51SMateusz Guzik td->td_zombie = ztd; 605d116b9f1SMateusz Guzik if (atomic_fcmpset_rel_ptr((uintptr_t *)&tdd->tdd_zombies, 606c5315f51SMateusz Guzik (uintptr_t *)&ztd, (uintptr_t)td)) 607c5315f51SMateusz Guzik break; 608c5315f51SMateusz Guzik continue; 609c5315f51SMateusz Guzik } 61044990b8cSJulian Elischer } 61144990b8cSJulian Elischer 6125c8329edSJulian Elischer /* 613ff8fbcffSJeff Roberson * Release a thread that has exited after cpu_throw(). 614ff8fbcffSJeff Roberson */ 615ff8fbcffSJeff Roberson void 616ff8fbcffSJeff Roberson thread_stash(struct thread *td) 617ff8fbcffSJeff Roberson { 618ff8fbcffSJeff Roberson atomic_subtract_rel_int(&td->td_proc->p_exitthreads, 1); 619ff8fbcffSJeff Roberson thread_zombie(td); 620ff8fbcffSJeff Roberson } 621ff8fbcffSJeff Roberson 622ff8fbcffSJeff Roberson /* 623d116b9f1SMateusz Guzik * Reap zombies from passed domain. 62444990b8cSJulian Elischer */ 625d116b9f1SMateusz Guzik static void 626d116b9f1SMateusz Guzik thread_reap_domain(struct thread_domain_data *tdd) 62744990b8cSJulian Elischer { 628c5315f51SMateusz Guzik struct thread *itd, *ntd; 6295ef7b7a0SMateusz Guzik struct tidbatch tidbatch; 630f34a2f56SMateusz Guzik struct credbatch credbatch; 631bbe62559SMateusz Guzik struct limbatch limbatch; 632*e0c86f5cSMateusz Guzik struct tdcountbatch tdcountbatch; 63344990b8cSJulian Elischer 63444990b8cSJulian Elischer /* 635c5315f51SMateusz Guzik * Reading upfront is pessimal if followed by concurrent atomic_swap, 636c5315f51SMateusz Guzik * but most of the time the list is empty. 63744990b8cSJulian Elischer */ 638d116b9f1SMateusz Guzik if (tdd->tdd_zombies == NULL) 639c5315f51SMateusz Guzik return; 640c5315f51SMateusz Guzik 641d116b9f1SMateusz Guzik itd = (struct thread *)atomic_swap_ptr((uintptr_t *)&tdd->tdd_zombies, 642c5315f51SMateusz Guzik (uintptr_t)NULL); 6435ef7b7a0SMateusz Guzik if (itd == NULL) 6445ef7b7a0SMateusz Guzik return; 6455ef7b7a0SMateusz Guzik 646d116b9f1SMateusz Guzik /* 647d116b9f1SMateusz Guzik * Multiple CPUs can get here, the race is fine as ticks is only 648d116b9f1SMateusz Guzik * advisory. 649d116b9f1SMateusz Guzik */ 650d116b9f1SMateusz Guzik tdd->tdd_reapticks = ticks; 651d116b9f1SMateusz Guzik 6525ef7b7a0SMateusz Guzik tidbatch_prep(&tidbatch); 653f34a2f56SMateusz Guzik credbatch_prep(&credbatch); 654bbe62559SMateusz Guzik limbatch_prep(&limbatch); 655*e0c86f5cSMateusz Guzik tdcountbatch_prep(&tdcountbatch); 656d116b9f1SMateusz Guzik 657c5315f51SMateusz Guzik while (itd != NULL) { 658c5315f51SMateusz Guzik ntd = itd->td_zombie; 6595ef7b7a0SMateusz Guzik EVENTHANDLER_DIRECT_INVOKE(thread_dtor, itd); 660bbe62559SMateusz Guzik 6615ef7b7a0SMateusz Guzik tidbatch_add(&tidbatch, itd); 662f34a2f56SMateusz Guzik credbatch_add(&credbatch, itd); 663bbe62559SMateusz Guzik limbatch_add(&limbatch, itd); 664*e0c86f5cSMateusz Guzik tdcountbatch_add(&tdcountbatch, itd); 665bbe62559SMateusz Guzik 666755341dfSMateusz Guzik thread_free_batched(itd); 667bbe62559SMateusz Guzik 6685ef7b7a0SMateusz Guzik tidbatch_process(&tidbatch); 669f34a2f56SMateusz Guzik credbatch_process(&credbatch); 670bbe62559SMateusz Guzik limbatch_process(&limbatch); 671*e0c86f5cSMateusz Guzik tdcountbatch_process(&tdcountbatch); 672bbe62559SMateusz Guzik 673c5315f51SMateusz Guzik itd = ntd; 67444990b8cSJulian Elischer } 675755341dfSMateusz Guzik 6765ef7b7a0SMateusz Guzik tidbatch_final(&tidbatch); 677f34a2f56SMateusz Guzik credbatch_final(&credbatch); 678bbe62559SMateusz Guzik limbatch_final(&limbatch); 679*e0c86f5cSMateusz Guzik tdcountbatch_final(&tdcountbatch); 680ed062c8dSJulian Elischer } 68144990b8cSJulian Elischer 6824f0db5e0SJulian Elischer /* 683d116b9f1SMateusz Guzik * Reap zombies from all domains. 684d116b9f1SMateusz Guzik */ 685d116b9f1SMateusz Guzik static void 686d116b9f1SMateusz Guzik thread_reap_all(void) 687d116b9f1SMateusz Guzik { 688d116b9f1SMateusz Guzik struct thread_domain_data *tdd; 689d116b9f1SMateusz Guzik int i, domain; 690d116b9f1SMateusz Guzik 691d116b9f1SMateusz Guzik domain = PCPU_GET(domain); 692d116b9f1SMateusz Guzik for (i = 0; i < vm_ndomains; i++) { 693d116b9f1SMateusz Guzik tdd = &thread_domain_data[(i + domain) % vm_ndomains]; 694d116b9f1SMateusz Guzik thread_reap_domain(tdd); 695d116b9f1SMateusz Guzik } 696d116b9f1SMateusz Guzik } 697d116b9f1SMateusz Guzik 698d116b9f1SMateusz Guzik /* 699d116b9f1SMateusz Guzik * Reap zombies from local domain. 700d116b9f1SMateusz Guzik */ 701b83e94beSMateusz Guzik static void 702d116b9f1SMateusz Guzik thread_reap(void) 703d116b9f1SMateusz Guzik { 704d116b9f1SMateusz Guzik struct thread_domain_data *tdd; 705d116b9f1SMateusz Guzik int domain; 706d116b9f1SMateusz Guzik 707d116b9f1SMateusz Guzik domain = PCPU_GET(domain); 708d116b9f1SMateusz Guzik tdd = &thread_domain_data[domain]; 709d116b9f1SMateusz Guzik 710d116b9f1SMateusz Guzik thread_reap_domain(tdd); 711d116b9f1SMateusz Guzik } 712d116b9f1SMateusz Guzik 713d116b9f1SMateusz Guzik static void 714d116b9f1SMateusz Guzik thread_reap_task_cb(void *arg __unused, int pending __unused) 715d116b9f1SMateusz Guzik { 716d116b9f1SMateusz Guzik 717d116b9f1SMateusz Guzik thread_reap_all(); 718d116b9f1SMateusz Guzik } 719d116b9f1SMateusz Guzik 720d116b9f1SMateusz Guzik static void 721d116b9f1SMateusz Guzik thread_reap_callout_cb(void *arg __unused) 722d116b9f1SMateusz Guzik { 723d116b9f1SMateusz Guzik struct thread_domain_data *tdd; 724d116b9f1SMateusz Guzik int i, cticks, lticks; 725d116b9f1SMateusz Guzik bool wantreap; 726d116b9f1SMateusz Guzik 727d116b9f1SMateusz Guzik wantreap = false; 728d116b9f1SMateusz Guzik cticks = atomic_load_int(&ticks); 729d116b9f1SMateusz Guzik for (i = 0; i < vm_ndomains; i++) { 730d116b9f1SMateusz Guzik tdd = &thread_domain_data[i]; 731d116b9f1SMateusz Guzik lticks = tdd->tdd_reapticks; 732d116b9f1SMateusz Guzik if (tdd->tdd_zombies != NULL && 733d116b9f1SMateusz Guzik (u_int)(cticks - lticks) > 5 * hz) { 734d116b9f1SMateusz Guzik wantreap = true; 735d116b9f1SMateusz Guzik break; 736d116b9f1SMateusz Guzik } 737d116b9f1SMateusz Guzik } 738d116b9f1SMateusz Guzik 739d116b9f1SMateusz Guzik if (wantreap) 740d116b9f1SMateusz Guzik taskqueue_enqueue(taskqueue_thread, &thread_reap_task); 741845d7797SKonstantin Belousov callout_reset(&thread_reap_callout, 5 * hz, 742845d7797SKonstantin Belousov thread_reap_callout_cb, NULL); 743d116b9f1SMateusz Guzik } 744d116b9f1SMateusz Guzik 745d116b9f1SMateusz Guzik /* 746f62c7e54SKonstantin Belousov * Calling this function guarantees that any thread that exited before 747f62c7e54SKonstantin Belousov * the call is reaped when the function returns. By 'exited' we mean 748f62c7e54SKonstantin Belousov * a thread removed from the process linkage with thread_unlink(). 749f62c7e54SKonstantin Belousov * Practically this means that caller must lock/unlock corresponding 750f62c7e54SKonstantin Belousov * process lock before the call, to synchronize with thread_exit(). 751f62c7e54SKonstantin Belousov */ 752f62c7e54SKonstantin Belousov void 753f62c7e54SKonstantin Belousov thread_reap_barrier(void) 754f62c7e54SKonstantin Belousov { 755f62c7e54SKonstantin Belousov struct task *t; 756f62c7e54SKonstantin Belousov 757f62c7e54SKonstantin Belousov /* 758f62c7e54SKonstantin Belousov * First do context switches to each CPU to ensure that all 759f62c7e54SKonstantin Belousov * PCPU pc_deadthreads are moved to zombie list. 760f62c7e54SKonstantin Belousov */ 761f62c7e54SKonstantin Belousov quiesce_all_cpus("", PDROP); 762f62c7e54SKonstantin Belousov 763f62c7e54SKonstantin Belousov /* 764f62c7e54SKonstantin Belousov * Second, fire the task in the same thread as normal 765f62c7e54SKonstantin Belousov * thread_reap() is done, to serialize reaping. 766f62c7e54SKonstantin Belousov */ 767f62c7e54SKonstantin Belousov t = malloc(sizeof(*t), M_TEMP, M_WAITOK); 768f62c7e54SKonstantin Belousov TASK_INIT(t, 0, thread_reap_task_cb, t); 769f62c7e54SKonstantin Belousov taskqueue_enqueue(taskqueue_thread, t); 770f62c7e54SKonstantin Belousov taskqueue_drain(taskqueue_thread, t); 771f62c7e54SKonstantin Belousov free(t, M_TEMP); 772f62c7e54SKonstantin Belousov } 773f62c7e54SKonstantin Belousov 774f62c7e54SKonstantin Belousov /* 77544990b8cSJulian Elischer * Allocate a thread. 77644990b8cSJulian Elischer */ 77744990b8cSJulian Elischer struct thread * 7788a945d10SKonstantin Belousov thread_alloc(int pages) 77944990b8cSJulian Elischer { 78089b57fcfSKonstantin Belousov struct thread *td; 7811bd3cf5dSMateusz Guzik lwpid_t tid; 7828460a577SJohn Birrell 78362dbc992SMateusz Guzik if (!thread_count_inc()) { 7841bd3cf5dSMateusz Guzik return (NULL); 7851bd3cf5dSMateusz Guzik } 7861bd3cf5dSMateusz Guzik 78762dbc992SMateusz Guzik tid = tid_alloc(); 7881bd3cf5dSMateusz Guzik td = uma_zalloc(thread_zone, M_WAITOK); 78989b57fcfSKonstantin Belousov KASSERT(td->td_kstack == 0, ("thread_alloc got thread with kstack")); 7908a945d10SKonstantin Belousov if (!vm_thread_new(td, pages)) { 79189b57fcfSKonstantin Belousov uma_zfree(thread_zone, td); 7921bd3cf5dSMateusz Guzik tid_free(tid); 79362dbc992SMateusz Guzik thread_count_dec(); 79489b57fcfSKonstantin Belousov return (NULL); 79589b57fcfSKonstantin Belousov } 7961bd3cf5dSMateusz Guzik td->td_tid = tid; 797f575573cSKonstantin Belousov bzero(&td->td_sa.args, sizeof(td->td_sa.args)); 7985dda15adSMark Johnston kmsan_thread_alloc(td); 7990c3967e7SMarcel Moolenaar cpu_thread_alloc(td); 8001bd3cf5dSMateusz Guzik EVENTHANDLER_DIRECT_INVOKE(thread_ctor, td); 80189b57fcfSKonstantin Belousov return (td); 80244990b8cSJulian Elischer } 80344990b8cSJulian Elischer 8048a945d10SKonstantin Belousov int 8058a945d10SKonstantin Belousov thread_alloc_stack(struct thread *td, int pages) 8068a945d10SKonstantin Belousov { 8078a945d10SKonstantin Belousov 8088a945d10SKonstantin Belousov KASSERT(td->td_kstack == 0, 8098a945d10SKonstantin Belousov ("thread_alloc_stack called on a thread with kstack")); 8108a945d10SKonstantin Belousov if (!vm_thread_new(td, pages)) 8118a945d10SKonstantin Belousov return (0); 8128a945d10SKonstantin Belousov cpu_thread_alloc(td); 8138a945d10SKonstantin Belousov return (1); 8148a945d10SKonstantin Belousov } 8154f0db5e0SJulian Elischer 8164f0db5e0SJulian Elischer /* 81744990b8cSJulian Elischer * Deallocate a thread. 81844990b8cSJulian Elischer */ 819755341dfSMateusz Guzik static void 820755341dfSMateusz Guzik thread_free_batched(struct thread *td) 82144990b8cSJulian Elischer { 8222e6b8de4SJeff Roberson 8232e6b8de4SJeff Roberson lock_profile_thread_exit(td); 82445aea8deSJeff Roberson if (td->td_cpuset) 825d7f687fcSJeff Roberson cpuset_rel(td->td_cpuset); 826d7f687fcSJeff Roberson td->td_cpuset = NULL; 8270c3967e7SMarcel Moolenaar cpu_thread_free(td); 82889b57fcfSKonstantin Belousov if (td->td_kstack != 0) 82989b57fcfSKonstantin Belousov vm_thread_dispose(td); 8302d19b736SKonstantin Belousov callout_drain(&td->td_slpcallout); 831755341dfSMateusz Guzik /* 832755341dfSMateusz Guzik * Freeing handled by the caller. 833755341dfSMateusz Guzik */ 8341bd3cf5dSMateusz Guzik td->td_tid = -1; 8355dda15adSMark Johnston kmsan_thread_free(td); 83644990b8cSJulian Elischer uma_zfree(thread_zone, td); 83744990b8cSJulian Elischer } 83844990b8cSJulian Elischer 8394ea6a9a2SMateusz Guzik void 840755341dfSMateusz Guzik thread_free(struct thread *td) 841755341dfSMateusz Guzik { 842755341dfSMateusz Guzik lwpid_t tid; 843755341dfSMateusz Guzik 8445ef7b7a0SMateusz Guzik EVENTHANDLER_DIRECT_INVOKE(thread_dtor, td); 845755341dfSMateusz Guzik tid = td->td_tid; 846755341dfSMateusz Guzik thread_free_batched(td); 847755341dfSMateusz Guzik tid_free(tid); 84862dbc992SMateusz Guzik thread_count_dec(); 849755341dfSMateusz Guzik } 850755341dfSMateusz Guzik 851755341dfSMateusz Guzik void 8524ea6a9a2SMateusz Guzik thread_cow_get_proc(struct thread *newtd, struct proc *p) 8534ea6a9a2SMateusz Guzik { 8544ea6a9a2SMateusz Guzik 8554ea6a9a2SMateusz Guzik PROC_LOCK_ASSERT(p, MA_OWNED); 8561724c563SMateusz Guzik newtd->td_realucred = crcowget(p->p_ucred); 8571724c563SMateusz Guzik newtd->td_ucred = newtd->td_realucred; 858f6f6d240SMateusz Guzik newtd->td_limit = lim_hold(p->p_limit); 8594ea6a9a2SMateusz Guzik newtd->td_cowgen = p->p_cowgen; 8604ea6a9a2SMateusz Guzik } 8614ea6a9a2SMateusz Guzik 8624ea6a9a2SMateusz Guzik void 8634ea6a9a2SMateusz Guzik thread_cow_get(struct thread *newtd, struct thread *td) 8644ea6a9a2SMateusz Guzik { 8654ea6a9a2SMateusz Guzik 8661724c563SMateusz Guzik MPASS(td->td_realucred == td->td_ucred); 8671724c563SMateusz Guzik newtd->td_realucred = crcowget(td->td_realucred); 8681724c563SMateusz Guzik newtd->td_ucred = newtd->td_realucred; 869f6f6d240SMateusz Guzik newtd->td_limit = lim_hold(td->td_limit); 8704ea6a9a2SMateusz Guzik newtd->td_cowgen = td->td_cowgen; 8714ea6a9a2SMateusz Guzik } 8724ea6a9a2SMateusz Guzik 8734ea6a9a2SMateusz Guzik void 8744ea6a9a2SMateusz Guzik thread_cow_free(struct thread *td) 8754ea6a9a2SMateusz Guzik { 8764ea6a9a2SMateusz Guzik 8771724c563SMateusz Guzik if (td->td_realucred != NULL) 8781724c563SMateusz Guzik crcowfree(td); 879cd672ca6SMateusz Guzik if (td->td_limit != NULL) 880f6f6d240SMateusz Guzik lim_free(td->td_limit); 8814ea6a9a2SMateusz Guzik } 8824ea6a9a2SMateusz Guzik 8834ea6a9a2SMateusz Guzik void 8844ea6a9a2SMateusz Guzik thread_cow_update(struct thread *td) 8854ea6a9a2SMateusz Guzik { 8864ea6a9a2SMateusz Guzik struct proc *p; 887cd672ca6SMateusz Guzik struct ucred *oldcred; 888cd672ca6SMateusz Guzik struct plimit *oldlimit; 8894ea6a9a2SMateusz Guzik 8904ea6a9a2SMateusz Guzik p = td->td_proc; 8914ea6a9a2SMateusz Guzik PROC_LOCK(p); 8921724c563SMateusz Guzik oldcred = crcowsync(); 8938a0cb04dSMateusz Guzik oldlimit = lim_cowsync(); 8944ea6a9a2SMateusz Guzik td->td_cowgen = p->p_cowgen; 8954ea6a9a2SMateusz Guzik PROC_UNLOCK(p); 896cd672ca6SMateusz Guzik if (oldcred != NULL) 897cd672ca6SMateusz Guzik crfree(oldcred); 898cd672ca6SMateusz Guzik if (oldlimit != NULL) 899cd672ca6SMateusz Guzik lim_free(oldlimit); 9004ea6a9a2SMateusz Guzik } 9014ea6a9a2SMateusz Guzik 90232114b63SMateusz Guzik void 90332114b63SMateusz Guzik thread_cow_synced(struct thread *td) 90432114b63SMateusz Guzik { 90532114b63SMateusz Guzik struct proc *p; 90632114b63SMateusz Guzik 90732114b63SMateusz Guzik p = td->td_proc; 90832114b63SMateusz Guzik PROC_LOCK_ASSERT(p, MA_OWNED); 90932114b63SMateusz Guzik MPASS(td->td_cowgen != p->p_cowgen); 91032114b63SMateusz Guzik MPASS(td->td_ucred == p->p_ucred); 91132114b63SMateusz Guzik MPASS(td->td_limit == p->p_limit); 91232114b63SMateusz Guzik td->td_cowgen = p->p_cowgen; 91332114b63SMateusz Guzik } 91432114b63SMateusz Guzik 91544990b8cSJulian Elischer /* 91644990b8cSJulian Elischer * Discard the current thread and exit from its context. 91794e0a4cdSJulian Elischer * Always called with scheduler locked. 91844990b8cSJulian Elischer * 91944990b8cSJulian Elischer * Because we can't free a thread while we're operating under its context, 920696058c3SJulian Elischer * push the current thread into our CPU's deadthread holder. This means 921696058c3SJulian Elischer * we needn't worry about someone else grabbing our context before we 9226617724cSJeff Roberson * do a cpu_throw(). 92344990b8cSJulian Elischer */ 92444990b8cSJulian Elischer void 92544990b8cSJulian Elischer thread_exit(void) 92644990b8cSJulian Elischer { 9277e3a96eaSJohn Baldwin uint64_t runtime, new_switchtime; 92844990b8cSJulian Elischer struct thread *td; 9291c4bcd05SJeff Roberson struct thread *td2; 93044990b8cSJulian Elischer struct proc *p; 9317847a9daSJohn Baldwin int wakeup_swapper; 93244990b8cSJulian Elischer 93344990b8cSJulian Elischer td = curthread; 93444990b8cSJulian Elischer p = td->td_proc; 93544990b8cSJulian Elischer 936a54e85fdSJeff Roberson PROC_SLOCK_ASSERT(p, MA_OWNED); 937ed062c8dSJulian Elischer mtx_assert(&Giant, MA_NOTOWNED); 938a54e85fdSJeff Roberson 93944990b8cSJulian Elischer PROC_LOCK_ASSERT(p, MA_OWNED); 940ed062c8dSJulian Elischer KASSERT(p != NULL, ("thread exiting without a process")); 941cc701b73SRobert Watson CTR3(KTR_PROC, "thread_exit: thread %p (pid %ld, %s)", td, 942e01eafefSJulian Elischer (long)p->p_pid, td->td_name); 9436c9271a9SAndriy Gapon SDT_PROBE0(proc, , , lwp__exit); 9449104847fSDavid Xu KASSERT(TAILQ_EMPTY(&td->td_sigqueue.sq_list), ("signal pending")); 945936c24faSMateusz Guzik MPASS(td->td_realucred == td->td_ucred); 94644990b8cSJulian Elischer 947ed062c8dSJulian Elischer /* 948ed062c8dSJulian Elischer * drop FPU & debug register state storage, or any other 949ed062c8dSJulian Elischer * architecture specific resources that 950ed062c8dSJulian Elischer * would not be on a new untouched process. 951ed062c8dSJulian Elischer */ 952bd07998eSKonstantin Belousov cpu_thread_exit(td); 95344990b8cSJulian Elischer 954ed062c8dSJulian Elischer /* 9551faf202eSJulian Elischer * The last thread is left attached to the process 9561faf202eSJulian Elischer * So that the whole bundle gets recycled. Skip 957ed062c8dSJulian Elischer * all this stuff if we never had threads. 958ed062c8dSJulian Elischer * EXIT clears all sign of other threads when 959ed062c8dSJulian Elischer * it goes to single threading, so the last thread always 960ed062c8dSJulian Elischer * takes the short path. 9611faf202eSJulian Elischer */ 962ed062c8dSJulian Elischer if (p->p_flag & P_HADTHREADS) { 9631faf202eSJulian Elischer if (p->p_numthreads > 1) { 964fd229b5bSKonstantin Belousov atomic_add_int(&td->td_proc->p_exitthreads, 1); 965d3a0bd78SJulian Elischer thread_unlink(td); 9661c4bcd05SJeff Roberson td2 = FIRST_THREAD_IN_PROC(p); 9671c4bcd05SJeff Roberson sched_exit_thread(td2, td); 968ed062c8dSJulian Elischer 969ed062c8dSJulian Elischer /* 97044990b8cSJulian Elischer * The test below is NOT true if we are the 9719182554aSKonstantin Belousov * sole exiting thread. P_STOPPED_SINGLE is unset 97244990b8cSJulian Elischer * in exit1() after it is the only survivor. 97344990b8cSJulian Elischer */ 9741279572aSDavid Xu if (P_SHOULDSTOP(p) == P_STOPPED_SINGLE) { 97544990b8cSJulian Elischer if (p->p_numthreads == p->p_suspcount) { 976a54e85fdSJeff Roberson thread_lock(p->p_singlethread); 9777847a9daSJohn Baldwin wakeup_swapper = thread_unsuspend_one( 97884cdea97SKonstantin Belousov p->p_singlethread, p, false); 9797847a9daSJohn Baldwin if (wakeup_swapper) 9807847a9daSJohn Baldwin kick_proc0(); 98144990b8cSJulian Elischer } 98244990b8cSJulian Elischer } 98348bfcdddSJulian Elischer 984696058c3SJulian Elischer PCPU_SET(deadthread, td); 9851faf202eSJulian Elischer } else { 986ed062c8dSJulian Elischer /* 987ed062c8dSJulian Elischer * The last thread is exiting.. but not through exit() 988ed062c8dSJulian Elischer */ 989ed062c8dSJulian Elischer panic ("thread_exit: Last thread exiting on its own"); 990ed062c8dSJulian Elischer } 9911faf202eSJulian Elischer } 99216d95d4fSJoseph Koshy #ifdef HWPMC_HOOKS 99316d95d4fSJoseph Koshy /* 99416d95d4fSJoseph Koshy * If this thread is part of a process that is being tracked by hwpmc(4), 99516d95d4fSJoseph Koshy * inform the module of the thread's impending exit. 99616d95d4fSJoseph Koshy */ 9976161b98cSMatt Macy if (PMC_PROC_IS_USING_PMCS(td->td_proc)) { 99816d95d4fSJoseph Koshy PMC_SWITCH_CONTEXT(td, PMC_FN_CSW_OUT); 9996161b98cSMatt Macy PMC_CALL_HOOK_UNLOCKED(td, PMC_FN_THR_EXIT, NULL); 1000ebfaf69cSMatt Macy } else if (PMC_SYSTEM_SAMPLING_ACTIVE()) 1001ebfaf69cSMatt Macy PMC_CALL_HOOK_UNLOCKED(td, PMC_FN_THR_EXIT_LOG, NULL); 100216d95d4fSJoseph Koshy #endif 1003a54e85fdSJeff Roberson PROC_UNLOCK(p); 10045c7bebf9SKonstantin Belousov PROC_STATLOCK(p); 10055c7bebf9SKonstantin Belousov thread_lock(td); 10065c7bebf9SKonstantin Belousov PROC_SUNLOCK(p); 10077e3a96eaSJohn Baldwin 10087e3a96eaSJohn Baldwin /* Do the same timestamp bookkeeping that mi_switch() would do. */ 10097e3a96eaSJohn Baldwin new_switchtime = cpu_ticks(); 10107e3a96eaSJohn Baldwin runtime = new_switchtime - PCPU_GET(switchtime); 10117e3a96eaSJohn Baldwin td->td_runtime += runtime; 10127e3a96eaSJohn Baldwin td->td_incruntime += runtime; 10137e3a96eaSJohn Baldwin PCPU_SET(switchtime, new_switchtime); 10147e3a96eaSJohn Baldwin PCPU_SET(switchticks, ticks); 101583c9dea1SGleb Smirnoff VM_CNT_INC(v_swtch); 10167e3a96eaSJohn Baldwin 10177e3a96eaSJohn Baldwin /* Save our resource usage in our process. */ 10187e3a96eaSJohn Baldwin td->td_ru.ru_nvcsw++; 101961a74c5cSJeff Roberson ruxagg_locked(p, td); 10207e3a96eaSJohn Baldwin rucollect(&p->p_ru, &td->td_ru); 10215c7bebf9SKonstantin Belousov PROC_STATUNLOCK(p); 10227e3a96eaSJohn Baldwin 1023fa2528acSAlex Richardson TD_SET_STATE(td, TDS_INACTIVE); 10243d06b4b3SAttilio Rao #ifdef WITNESS 10253d06b4b3SAttilio Rao witness_thread_exit(td); 10263d06b4b3SAttilio Rao #endif 1027732d9528SJulian Elischer CTR1(KTR_PROC, "thread_exit: cpu_throw() thread %p", td); 1028a54e85fdSJeff Roberson sched_throw(td); 1029cc66ebe2SPeter Wemm panic("I'm a teapot!"); 103044990b8cSJulian Elischer /* NOTREACHED */ 103144990b8cSJulian Elischer } 103244990b8cSJulian Elischer 103344990b8cSJulian Elischer /* 1034696058c3SJulian Elischer * Do any thread specific cleanups that may be needed in wait() 103537814395SPeter Wemm * called with Giant, proc and schedlock not held. 1036696058c3SJulian Elischer */ 1037696058c3SJulian Elischer void 1038696058c3SJulian Elischer thread_wait(struct proc *p) 1039696058c3SJulian Elischer { 1040696058c3SJulian Elischer struct thread *td; 1041696058c3SJulian Elischer 104237814395SPeter Wemm mtx_assert(&Giant, MA_NOTOWNED); 1043624bf9e1SKonstantin Belousov KASSERT(p->p_numthreads == 1, ("multiple threads in thread_wait()")); 1044624bf9e1SKonstantin Belousov KASSERT(p->p_exitthreads == 0, ("p_exitthreads leaking")); 1045ff8fbcffSJeff Roberson td = FIRST_THREAD_IN_PROC(p); 1046ff8fbcffSJeff Roberson /* Lock the last thread so we spin until it exits cpu_throw(). */ 1047ff8fbcffSJeff Roberson thread_lock(td); 1048ff8fbcffSJeff Roberson thread_unlock(td); 10492e6b8de4SJeff Roberson lock_profile_thread_exit(td); 1050d7f687fcSJeff Roberson cpuset_rel(td->td_cpuset); 1051d7f687fcSJeff Roberson td->td_cpuset = NULL; 1052696058c3SJulian Elischer cpu_thread_clean(td); 10534ea6a9a2SMateusz Guzik thread_cow_free(td); 10542d19b736SKonstantin Belousov callout_drain(&td->td_slpcallout); 1055696058c3SJulian Elischer thread_reap(); /* check for zombie threads etc. */ 1056696058c3SJulian Elischer } 1057696058c3SJulian Elischer 1058696058c3SJulian Elischer /* 105944990b8cSJulian Elischer * Link a thread to a process. 10601faf202eSJulian Elischer * set up anything that needs to be initialized for it to 10611faf202eSJulian Elischer * be used by the process. 106244990b8cSJulian Elischer */ 106344990b8cSJulian Elischer void 10648460a577SJohn Birrell thread_link(struct thread *td, struct proc *p) 106544990b8cSJulian Elischer { 106644990b8cSJulian Elischer 1067a54e85fdSJeff Roberson /* 1068a54e85fdSJeff Roberson * XXX This can't be enabled because it's called for proc0 before 1069374ae2a3SJeff Roberson * its lock has been created. 1070374ae2a3SJeff Roberson * PROC_LOCK_ASSERT(p, MA_OWNED); 1071a54e85fdSJeff Roberson */ 1072fa2528acSAlex Richardson TD_SET_STATE(td, TDS_INACTIVE); 107344990b8cSJulian Elischer td->td_proc = p; 1074b61ce5b0SJeff Roberson td->td_flags = TDF_INMEM; 107544990b8cSJulian Elischer 10761faf202eSJulian Elischer LIST_INIT(&td->td_contested); 1077eea4f254SJeff Roberson LIST_INIT(&td->td_lprof[0]); 1078eea4f254SJeff Roberson LIST_INIT(&td->td_lprof[1]); 1079f6eccf96SGleb Smirnoff #ifdef EPOCH_TRACE 1080dd902d01SGleb Smirnoff SLIST_INIT(&td->td_epochs); 1081f6eccf96SGleb Smirnoff #endif 10829104847fSDavid Xu sigqueue_init(&td->td_sigqueue, p); 1083fd90e2edSJung-uk Kim callout_init(&td->td_slpcallout, 1); 108466d8df9dSDaniel Eischen TAILQ_INSERT_TAIL(&p->p_threads, td, td_plist); 108544990b8cSJulian Elischer p->p_numthreads++; 108644990b8cSJulian Elischer } 108744990b8cSJulian Elischer 1088ed062c8dSJulian Elischer /* 1089ed062c8dSJulian Elischer * Called from: 1090ed062c8dSJulian Elischer * thread_exit() 1091ed062c8dSJulian Elischer */ 1092d3a0bd78SJulian Elischer void 1093d3a0bd78SJulian Elischer thread_unlink(struct thread *td) 1094d3a0bd78SJulian Elischer { 1095d3a0bd78SJulian Elischer struct proc *p = td->td_proc; 1096d3a0bd78SJulian Elischer 1097374ae2a3SJeff Roberson PROC_LOCK_ASSERT(p, MA_OWNED); 1098f6eccf96SGleb Smirnoff #ifdef EPOCH_TRACE 1099dd902d01SGleb Smirnoff MPASS(SLIST_EMPTY(&td->td_epochs)); 1100f6eccf96SGleb Smirnoff #endif 1101dd902d01SGleb Smirnoff 1102d3a0bd78SJulian Elischer TAILQ_REMOVE(&p->p_threads, td, td_plist); 1103d3a0bd78SJulian Elischer p->p_numthreads--; 1104d3a0bd78SJulian Elischer /* could clear a few other things here */ 11058460a577SJohn Birrell /* Must NOT clear links to proc! */ 11065c8329edSJulian Elischer } 11075c8329edSJulian Elischer 110879799053SKonstantin Belousov static int 110979799053SKonstantin Belousov calc_remaining(struct proc *p, int mode) 111079799053SKonstantin Belousov { 111179799053SKonstantin Belousov int remaining; 111279799053SKonstantin Belousov 11137b519077SKonstantin Belousov PROC_LOCK_ASSERT(p, MA_OWNED); 11147b519077SKonstantin Belousov PROC_SLOCK_ASSERT(p, MA_OWNED); 111579799053SKonstantin Belousov if (mode == SINGLE_EXIT) 111679799053SKonstantin Belousov remaining = p->p_numthreads; 111779799053SKonstantin Belousov else if (mode == SINGLE_BOUNDARY) 111879799053SKonstantin Belousov remaining = p->p_numthreads - p->p_boundary_count; 11196ddcc233SKonstantin Belousov else if (mode == SINGLE_NO_EXIT || mode == SINGLE_ALLPROC) 112079799053SKonstantin Belousov remaining = p->p_numthreads - p->p_suspcount; 112179799053SKonstantin Belousov else 112279799053SKonstantin Belousov panic("calc_remaining: wrong mode %d", mode); 112379799053SKonstantin Belousov return (remaining); 112479799053SKonstantin Belousov } 112579799053SKonstantin Belousov 112607a9368aSKonstantin Belousov static int 112707a9368aSKonstantin Belousov remain_for_mode(int mode) 112807a9368aSKonstantin Belousov { 112907a9368aSKonstantin Belousov 11306ddcc233SKonstantin Belousov return (mode == SINGLE_ALLPROC ? 0 : 1); 113107a9368aSKonstantin Belousov } 113207a9368aSKonstantin Belousov 113307a9368aSKonstantin Belousov static int 113407a9368aSKonstantin Belousov weed_inhib(int mode, struct thread *td2, struct proc *p) 113507a9368aSKonstantin Belousov { 113607a9368aSKonstantin Belousov int wakeup_swapper; 113707a9368aSKonstantin Belousov 113807a9368aSKonstantin Belousov PROC_LOCK_ASSERT(p, MA_OWNED); 113907a9368aSKonstantin Belousov PROC_SLOCK_ASSERT(p, MA_OWNED); 114007a9368aSKonstantin Belousov THREAD_LOCK_ASSERT(td2, MA_OWNED); 114107a9368aSKonstantin Belousov 114207a9368aSKonstantin Belousov wakeup_swapper = 0; 114361a74c5cSJeff Roberson 114461a74c5cSJeff Roberson /* 114561a74c5cSJeff Roberson * Since the thread lock is dropped by the scheduler we have 114661a74c5cSJeff Roberson * to retry to check for races. 114761a74c5cSJeff Roberson */ 114861a74c5cSJeff Roberson restart: 114907a9368aSKonstantin Belousov switch (mode) { 115007a9368aSKonstantin Belousov case SINGLE_EXIT: 115161a74c5cSJeff Roberson if (TD_IS_SUSPENDED(td2)) { 115284cdea97SKonstantin Belousov wakeup_swapper |= thread_unsuspend_one(td2, p, true); 115361a74c5cSJeff Roberson thread_lock(td2); 115461a74c5cSJeff Roberson goto restart; 115561a74c5cSJeff Roberson } 115661a74c5cSJeff Roberson if (TD_CAN_ABORT(td2)) { 115707a9368aSKonstantin Belousov wakeup_swapper |= sleepq_abort(td2, EINTR); 115861a74c5cSJeff Roberson return (wakeup_swapper); 115961a74c5cSJeff Roberson } 116007a9368aSKonstantin Belousov break; 116107a9368aSKonstantin Belousov case SINGLE_BOUNDARY: 116207a9368aSKonstantin Belousov case SINGLE_NO_EXIT: 116361a74c5cSJeff Roberson if (TD_IS_SUSPENDED(td2) && 116461a74c5cSJeff Roberson (td2->td_flags & TDF_BOUNDARY) == 0) { 116584cdea97SKonstantin Belousov wakeup_swapper |= thread_unsuspend_one(td2, p, false); 116661a74c5cSJeff Roberson thread_lock(td2); 116761a74c5cSJeff Roberson goto restart; 116861a74c5cSJeff Roberson } 116961a74c5cSJeff Roberson if (TD_CAN_ABORT(td2)) { 117007a9368aSKonstantin Belousov wakeup_swapper |= sleepq_abort(td2, ERESTART); 117161a74c5cSJeff Roberson return (wakeup_swapper); 117261a74c5cSJeff Roberson } 1173917dd390SKonstantin Belousov break; 11746ddcc233SKonstantin Belousov case SINGLE_ALLPROC: 11756ddcc233SKonstantin Belousov /* 11766ddcc233SKonstantin Belousov * ALLPROC suspend tries to avoid spurious EINTR for 11776ddcc233SKonstantin Belousov * threads sleeping interruptable, by suspending the 11786ddcc233SKonstantin Belousov * thread directly, similarly to sig_suspend_threads(). 1179dd883e9aSKonstantin Belousov * Since such sleep is not neccessary performed at the user 1180dd883e9aSKonstantin Belousov * boundary, TDF_ALLPROCSUSP is used to avoid immediate 1181dd883e9aSKonstantin Belousov * un-suspend. 11826ddcc233SKonstantin Belousov */ 11835c274b36SBrooks Davis if (TD_IS_SUSPENDED(td2) && 11845c274b36SBrooks Davis (td2->td_flags & TDF_ALLPROCSUSP) == 0) { 118584cdea97SKonstantin Belousov wakeup_swapper |= thread_unsuspend_one(td2, p, false); 118661a74c5cSJeff Roberson thread_lock(td2); 118761a74c5cSJeff Roberson goto restart; 118861a74c5cSJeff Roberson } 118961a74c5cSJeff Roberson if (TD_CAN_ABORT(td2)) { 11906ddcc233SKonstantin Belousov td2->td_flags |= TDF_ALLPROCSUSP; 11916ddcc233SKonstantin Belousov wakeup_swapper |= sleepq_abort(td2, ERESTART); 119261a74c5cSJeff Roberson return (wakeup_swapper); 11936ddcc233SKonstantin Belousov } 119407a9368aSKonstantin Belousov break; 119561a74c5cSJeff Roberson default: 119661a74c5cSJeff Roberson break; 119707a9368aSKonstantin Belousov } 119861a74c5cSJeff Roberson thread_unlock(td2); 119907a9368aSKonstantin Belousov return (wakeup_swapper); 120007a9368aSKonstantin Belousov } 120107a9368aSKonstantin Belousov 12025215b187SJeff Roberson /* 120344990b8cSJulian Elischer * Enforce single-threading. 120444990b8cSJulian Elischer * 120544990b8cSJulian Elischer * Returns 1 if the caller must abort (another thread is waiting to 120644990b8cSJulian Elischer * exit the process or similar). Process is locked! 120744990b8cSJulian Elischer * Returns 0 when you are successfully the only thread running. 120844990b8cSJulian Elischer * A process has successfully single threaded in the suspend mode when 120944990b8cSJulian Elischer * There are no threads in user mode. Threads in the kernel must be 121044990b8cSJulian Elischer * allowed to continue until they get to the user boundary. They may even 121144990b8cSJulian Elischer * copy out their return values and data before suspending. They may however be 1212e2668f55SMaxim Konovalov * accelerated in reaching the user boundary as we will wake up 121344990b8cSJulian Elischer * any sleeping threads that are interruptable. (PCATCH). 121444990b8cSJulian Elischer */ 121544990b8cSJulian Elischer int 12166ddcc233SKonstantin Belousov thread_single(struct proc *p, int mode) 121744990b8cSJulian Elischer { 121844990b8cSJulian Elischer struct thread *td; 121944990b8cSJulian Elischer struct thread *td2; 1220da7bbd2cSJohn Baldwin int remaining, wakeup_swapper; 122144990b8cSJulian Elischer 122244990b8cSJulian Elischer td = curthread; 12236ddcc233SKonstantin Belousov KASSERT(mode == SINGLE_EXIT || mode == SINGLE_BOUNDARY || 12246ddcc233SKonstantin Belousov mode == SINGLE_ALLPROC || mode == SINGLE_NO_EXIT, 12256ddcc233SKonstantin Belousov ("invalid mode %d", mode)); 12266ddcc233SKonstantin Belousov /* 12276ddcc233SKonstantin Belousov * If allowing non-ALLPROC singlethreading for non-curproc 12286ddcc233SKonstantin Belousov * callers, calc_remaining() and remain_for_mode() should be 12296ddcc233SKonstantin Belousov * adjusted to also account for td->td_proc != p. For now 12306ddcc233SKonstantin Belousov * this is not implemented because it is not used. 12316ddcc233SKonstantin Belousov */ 12326ddcc233SKonstantin Belousov KASSERT((mode == SINGLE_ALLPROC && td->td_proc != p) || 12336ddcc233SKonstantin Belousov (mode != SINGLE_ALLPROC && td->td_proc == p), 12346ddcc233SKonstantin Belousov ("mode %d proc %p curproc %p", mode, p, td->td_proc)); 123537814395SPeter Wemm mtx_assert(&Giant, MA_NOTOWNED); 123644990b8cSJulian Elischer PROC_LOCK_ASSERT(p, MA_OWNED); 123744990b8cSJulian Elischer 1238d7a9e6e7SKonstantin Belousov /* 1239d7a9e6e7SKonstantin Belousov * Is someone already single threading? 1240d7a9e6e7SKonstantin Belousov * Or may be singlethreading is not needed at all. 1241d7a9e6e7SKonstantin Belousov */ 1242d7a9e6e7SKonstantin Belousov if (mode == SINGLE_ALLPROC) { 1243d7a9e6e7SKonstantin Belousov while ((p->p_flag & P_STOPPED_SINGLE) != 0) { 1244d7a9e6e7SKonstantin Belousov if ((p->p_flag2 & P2_WEXIT) != 0) 1245d7a9e6e7SKonstantin Belousov return (1); 1246d7a9e6e7SKonstantin Belousov msleep(&p->p_flag, &p->p_mtx, PCATCH, "thrsgl", 0); 1247d7a9e6e7SKonstantin Belousov } 1248d7a9e6e7SKonstantin Belousov } else if ((p->p_flag & P_HADTHREADS) == 0) 124944990b8cSJulian Elischer return (0); 1250906ac69dSDavid Xu if (p->p_singlethread != NULL && p->p_singlethread != td) 125144990b8cSJulian Elischer return (1); 125244990b8cSJulian Elischer 1253906ac69dSDavid Xu if (mode == SINGLE_EXIT) { 1254906ac69dSDavid Xu p->p_flag |= P_SINGLE_EXIT; 1255906ac69dSDavid Xu p->p_flag &= ~P_SINGLE_BOUNDARY; 1256906ac69dSDavid Xu } else { 1257906ac69dSDavid Xu p->p_flag &= ~P_SINGLE_EXIT; 1258906ac69dSDavid Xu if (mode == SINGLE_BOUNDARY) 1259906ac69dSDavid Xu p->p_flag |= P_SINGLE_BOUNDARY; 1260906ac69dSDavid Xu else 1261906ac69dSDavid Xu p->p_flag &= ~P_SINGLE_BOUNDARY; 1262906ac69dSDavid Xu } 1263f829268bSKonstantin Belousov if (mode == SINGLE_ALLPROC) 12646ddcc233SKonstantin Belousov p->p_flag |= P_TOTAL_STOP; 12651279572aSDavid Xu p->p_flag |= P_STOPPED_SINGLE; 12667b4a950aSDavid Xu PROC_SLOCK(p); 1267112afcb2SJohn Baldwin p->p_singlethread = td; 126879799053SKonstantin Belousov remaining = calc_remaining(p, mode); 126907a9368aSKonstantin Belousov while (remaining != remain_for_mode(mode)) { 1270bf1a3220SDavid Xu if (P_SHOULDSTOP(p) != P_STOPPED_SINGLE) 1271bf1a3220SDavid Xu goto stopme; 1272da7bbd2cSJohn Baldwin wakeup_swapper = 0; 127344990b8cSJulian Elischer FOREACH_THREAD_IN_PROC(p, td2) { 127444990b8cSJulian Elischer if (td2 == td) 127544990b8cSJulian Elischer continue; 1276a54e85fdSJeff Roberson thread_lock(td2); 1277c6d31b83SKonstantin Belousov ast_sched_locked(td2, TDA_SUSPEND); 12786ddcc233SKonstantin Belousov if (TD_IS_INHIBITED(td2)) { 127907a9368aSKonstantin Belousov wakeup_swapper |= weed_inhib(mode, td2, p); 1280d8267df7SDavid Xu #ifdef SMP 1281b9009b17SKonstantin Belousov } else if (TD_IS_RUNNING(td2)) { 1282d8267df7SDavid Xu forward_signal(td2); 128361a74c5cSJeff Roberson thread_unlock(td2); 1284d8267df7SDavid Xu #endif 128561a74c5cSJeff Roberson } else 1286a54e85fdSJeff Roberson thread_unlock(td2); 12879d102777SJulian Elischer } 1288da7bbd2cSJohn Baldwin if (wakeup_swapper) 1289da7bbd2cSJohn Baldwin kick_proc0(); 129079799053SKonstantin Belousov remaining = calc_remaining(p, mode); 1291ec008e96SDavid Xu 12929d102777SJulian Elischer /* 12939d102777SJulian Elischer * Maybe we suspended some threads.. was it enough? 12949d102777SJulian Elischer */ 129507a9368aSKonstantin Belousov if (remaining == remain_for_mode(mode)) 12969d102777SJulian Elischer break; 12979d102777SJulian Elischer 1298bf1a3220SDavid Xu stopme: 129944990b8cSJulian Elischer /* 130044990b8cSJulian Elischer * Wake us up when everyone else has suspended. 1301e3b9bf71SJulian Elischer * In the mean time we suspend as well. 130244990b8cSJulian Elischer */ 13036ddcc233SKonstantin Belousov thread_suspend_switch(td, p); 130479799053SKonstantin Belousov remaining = calc_remaining(p, mode); 130544990b8cSJulian Elischer } 1306906ac69dSDavid Xu if (mode == SINGLE_EXIT) { 130791599697SJulian Elischer /* 13088626a0ddSKonstantin Belousov * Convert the process to an unthreaded process. The 13098626a0ddSKonstantin Belousov * SINGLE_EXIT is called by exit1() or execve(), in 13108626a0ddSKonstantin Belousov * both cases other threads must be retired. 131191599697SJulian Elischer */ 13128626a0ddSKonstantin Belousov KASSERT(p->p_numthreads == 1, ("Unthreading with >1 threads")); 1313ed062c8dSJulian Elischer p->p_singlethread = NULL; 13148626a0ddSKonstantin Belousov p->p_flag &= ~(P_STOPPED_SINGLE | P_SINGLE_EXIT | P_HADTHREADS); 1315fd229b5bSKonstantin Belousov 1316fd229b5bSKonstantin Belousov /* 1317fd229b5bSKonstantin Belousov * Wait for any remaining threads to exit cpu_throw(). 1318fd229b5bSKonstantin Belousov */ 1319fd229b5bSKonstantin Belousov while (p->p_exitthreads != 0) { 1320fd229b5bSKonstantin Belousov PROC_SUNLOCK(p); 1321fd229b5bSKonstantin Belousov PROC_UNLOCK(p); 1322fd229b5bSKonstantin Belousov sched_relinquish(td); 1323fd229b5bSKonstantin Belousov PROC_LOCK(p); 1324fd229b5bSKonstantin Belousov PROC_SLOCK(p); 1325fd229b5bSKonstantin Belousov } 1326ac437c07SKonstantin Belousov } else if (mode == SINGLE_BOUNDARY) { 1327ac437c07SKonstantin Belousov /* 1328ac437c07SKonstantin Belousov * Wait until all suspended threads are removed from 1329ac437c07SKonstantin Belousov * the processors. The thread_suspend_check() 1330ac437c07SKonstantin Belousov * increments p_boundary_count while it is still 1331ac437c07SKonstantin Belousov * running, which makes it possible for the execve() 1332ac437c07SKonstantin Belousov * to destroy vmspace while our other threads are 1333ac437c07SKonstantin Belousov * still using the address space. 1334ac437c07SKonstantin Belousov * 1335ac437c07SKonstantin Belousov * We lock the thread, which is only allowed to 1336ac437c07SKonstantin Belousov * succeed after context switch code finished using 1337ac437c07SKonstantin Belousov * the address space. 1338ac437c07SKonstantin Belousov */ 1339ac437c07SKonstantin Belousov FOREACH_THREAD_IN_PROC(p, td2) { 1340ac437c07SKonstantin Belousov if (td2 == td) 1341ac437c07SKonstantin Belousov continue; 1342ac437c07SKonstantin Belousov thread_lock(td2); 1343ac437c07SKonstantin Belousov KASSERT((td2->td_flags & TDF_BOUNDARY) != 0, 1344ac437c07SKonstantin Belousov ("td %p not on boundary", td2)); 1345ac437c07SKonstantin Belousov KASSERT(TD_IS_SUSPENDED(td2), 1346ac437c07SKonstantin Belousov ("td %p is not suspended", td2)); 1347ac437c07SKonstantin Belousov thread_unlock(td2); 1348ac437c07SKonstantin Belousov } 134991599697SJulian Elischer } 13507b4a950aSDavid Xu PROC_SUNLOCK(p); 135144990b8cSJulian Elischer return (0); 135244990b8cSJulian Elischer } 135344990b8cSJulian Elischer 13548638fe7bSKonstantin Belousov bool 13558638fe7bSKonstantin Belousov thread_suspend_check_needed(void) 13568638fe7bSKonstantin Belousov { 13578638fe7bSKonstantin Belousov struct proc *p; 13588638fe7bSKonstantin Belousov struct thread *td; 13598638fe7bSKonstantin Belousov 13608638fe7bSKonstantin Belousov td = curthread; 13618638fe7bSKonstantin Belousov p = td->td_proc; 13628638fe7bSKonstantin Belousov PROC_LOCK_ASSERT(p, MA_OWNED); 13638638fe7bSKonstantin Belousov return (P_SHOULDSTOP(p) || ((p->p_flag & P_TRACED) != 0 && 13648638fe7bSKonstantin Belousov (td->td_dbgflags & TDB_SUSPEND) != 0)); 13658638fe7bSKonstantin Belousov } 13668638fe7bSKonstantin Belousov 136744990b8cSJulian Elischer /* 136844990b8cSJulian Elischer * Called in from locations that can safely check to see 136944990b8cSJulian Elischer * whether we have to suspend or at least throttle for a 137044990b8cSJulian Elischer * single-thread event (e.g. fork). 137144990b8cSJulian Elischer * 137244990b8cSJulian Elischer * Such locations include userret(). 137344990b8cSJulian Elischer * If the "return_instead" argument is non zero, the thread must be able to 137444990b8cSJulian Elischer * accept 0 (caller may continue), or 1 (caller must abort) as a result. 137544990b8cSJulian Elischer * 137644990b8cSJulian Elischer * The 'return_instead' argument tells the function if it may do a 137744990b8cSJulian Elischer * thread_exit() or suspend, or whether the caller must abort and back 137844990b8cSJulian Elischer * out instead. 137944990b8cSJulian Elischer * 138044990b8cSJulian Elischer * If the thread that set the single_threading request has set the 138144990b8cSJulian Elischer * P_SINGLE_EXIT bit in the process flags then this call will never return 138244990b8cSJulian Elischer * if 'return_instead' is false, but will exit. 138344990b8cSJulian Elischer * 138444990b8cSJulian Elischer * P_SINGLE_EXIT | return_instead == 0| return_instead != 0 138544990b8cSJulian Elischer *---------------+--------------------+--------------------- 138644990b8cSJulian Elischer * 0 | returns 0 | returns 0 or 1 1387353374b5SJohn Baldwin * | when ST ends | immediately 138844990b8cSJulian Elischer *---------------+--------------------+--------------------- 138944990b8cSJulian Elischer * 1 | thread exits | returns 1 1390353374b5SJohn Baldwin * | | immediately 139144990b8cSJulian Elischer * 0 = thread_exit() or suspension ok, 139244990b8cSJulian Elischer * other = return error instead of stopping the thread. 139344990b8cSJulian Elischer * 139444990b8cSJulian Elischer * While a full suspension is under effect, even a single threading 139544990b8cSJulian Elischer * thread would be suspended if it made this call (but it shouldn't). 139644990b8cSJulian Elischer * This call should only be made from places where 139744990b8cSJulian Elischer * thread_exit() would be safe as that may be the outcome unless 139844990b8cSJulian Elischer * return_instead is set. 139944990b8cSJulian Elischer */ 140044990b8cSJulian Elischer int 140144990b8cSJulian Elischer thread_suspend_check(int return_instead) 140244990b8cSJulian Elischer { 1403ecafb24bSJuli Mallett struct thread *td; 1404ecafb24bSJuli Mallett struct proc *p; 140546e47c4fSKonstantin Belousov int wakeup_swapper; 140644990b8cSJulian Elischer 140744990b8cSJulian Elischer td = curthread; 140844990b8cSJulian Elischer p = td->td_proc; 140937814395SPeter Wemm mtx_assert(&Giant, MA_NOTOWNED); 141044990b8cSJulian Elischer PROC_LOCK_ASSERT(p, MA_OWNED); 14118638fe7bSKonstantin Belousov while (thread_suspend_check_needed()) { 14121279572aSDavid Xu if (P_SHOULDSTOP(p) == P_STOPPED_SINGLE) { 141344990b8cSJulian Elischer KASSERT(p->p_singlethread != NULL, 141444990b8cSJulian Elischer ("singlethread not set")); 141544990b8cSJulian Elischer /* 1416e3b9bf71SJulian Elischer * The only suspension in action is a 1417e3b9bf71SJulian Elischer * single-threading. Single threader need not stop. 1418bd07998eSKonstantin Belousov * It is safe to access p->p_singlethread unlocked 1419bd07998eSKonstantin Belousov * because it can only be set to our address by us. 142044990b8cSJulian Elischer */ 1421e3b9bf71SJulian Elischer if (p->p_singlethread == td) 142244990b8cSJulian Elischer return (0); /* Exempt from stopping. */ 142344990b8cSJulian Elischer } 142445a4bfa1SDavid Xu if ((p->p_flag & P_SINGLE_EXIT) && return_instead) 142594f0972bSDavid Xu return (EINTR); 142644990b8cSJulian Elischer 1427906ac69dSDavid Xu /* Should we goto user boundary if we didn't come from there? */ 1428906ac69dSDavid Xu if (P_SHOULDSTOP(p) == P_STOPPED_SINGLE && 1429906ac69dSDavid Xu (p->p_flag & P_SINGLE_BOUNDARY) && return_instead) 143094f0972bSDavid Xu return (ERESTART); 1431906ac69dSDavid Xu 143244990b8cSJulian Elischer /* 14333077f938SKonstantin Belousov * Ignore suspend requests if they are deferred. 1434d071a6faSJohn Baldwin */ 14353077f938SKonstantin Belousov if ((td->td_flags & TDF_SBDRY) != 0) { 1436d071a6faSJohn Baldwin KASSERT(return_instead, 1437d071a6faSJohn Baldwin ("TDF_SBDRY set for unsafe thread_suspend_check")); 143846e47c4fSKonstantin Belousov KASSERT((td->td_flags & (TDF_SEINTR | TDF_SERESTART)) != 143946e47c4fSKonstantin Belousov (TDF_SEINTR | TDF_SERESTART), 144046e47c4fSKonstantin Belousov ("both TDF_SEINTR and TDF_SERESTART")); 144146e47c4fSKonstantin Belousov return (TD_SBDRY_INTR(td) ? TD_SBDRY_ERRNO(td) : 0); 1442d071a6faSJohn Baldwin } 1443d071a6faSJohn Baldwin 1444d071a6faSJohn Baldwin /* 144544990b8cSJulian Elischer * If the process is waiting for us to exit, 144644990b8cSJulian Elischer * this thread should just suicide. 14471279572aSDavid Xu * Assumes that P_SINGLE_EXIT implies P_STOPPED_SINGLE. 144844990b8cSJulian Elischer */ 1449cf7d9a8cSDavid Xu if ((p->p_flag & P_SINGLE_EXIT) && (p->p_singlethread != td)) { 1450cf7d9a8cSDavid Xu PROC_UNLOCK(p); 145191d1786fSDmitry Chagin 145291d1786fSDmitry Chagin /* 145391d1786fSDmitry Chagin * Allow Linux emulation layer to do some work 145491d1786fSDmitry Chagin * before thread suicide. 145591d1786fSDmitry Chagin */ 145691d1786fSDmitry Chagin if (__predict_false(p->p_sysent->sv_thread_detach != NULL)) 145791d1786fSDmitry Chagin (p->p_sysent->sv_thread_detach)(td); 14582a339d9eSKonstantin Belousov umtx_thread_exit(td); 1459d1e7a4a5SJohn Baldwin kern_thr_exit(td); 1460d1e7a4a5SJohn Baldwin panic("stopped thread did not exit"); 1461cf7d9a8cSDavid Xu } 146221ecd1e9SDavid Xu 146321ecd1e9SDavid Xu PROC_SLOCK(p); 146421ecd1e9SDavid Xu thread_stopped(p); 1465a54e85fdSJeff Roberson if (P_SHOULDSTOP(p) == P_STOPPED_SINGLE) { 1466a54e85fdSJeff Roberson if (p->p_numthreads == p->p_suspcount + 1) { 1467a54e85fdSJeff Roberson thread_lock(p->p_singlethread); 146884cdea97SKonstantin Belousov wakeup_swapper = thread_unsuspend_one( 146984cdea97SKonstantin Belousov p->p_singlethread, p, false); 14707847a9daSJohn Baldwin if (wakeup_swapper) 14717847a9daSJohn Baldwin kick_proc0(); 1472a54e85fdSJeff Roberson } 1473a54e85fdSJeff Roberson } 14743f9be10eSDavid Xu PROC_UNLOCK(p); 14757b4a950aSDavid Xu thread_lock(td); 147644990b8cSJulian Elischer /* 147744990b8cSJulian Elischer * When a thread suspends, it just 1478ad1e7d28SJulian Elischer * gets taken off all queues. 147944990b8cSJulian Elischer */ 148071fad9fdSJulian Elischer thread_suspend_one(td); 1481906ac69dSDavid Xu if (return_instead == 0) { 1482906ac69dSDavid Xu p->p_boundary_count++; 1483906ac69dSDavid Xu td->td_flags |= TDF_BOUNDARY; 1484cf19bf91SJulian Elischer } 14857b4a950aSDavid Xu PROC_SUNLOCK(p); 1486686bcb5cSJeff Roberson mi_switch(SW_INVOL | SWT_SUSPEND); 148744990b8cSJulian Elischer PROC_LOCK(p); 148844990b8cSJulian Elischer } 148944990b8cSJulian Elischer return (0); 149044990b8cSJulian Elischer } 149144990b8cSJulian Elischer 1492478ca4b0SKonstantin Belousov /* 1493478ca4b0SKonstantin Belousov * Check for possible stops and suspensions while executing a 1494478ca4b0SKonstantin Belousov * casueword or similar transiently failing operation. 1495478ca4b0SKonstantin Belousov * 1496478ca4b0SKonstantin Belousov * The sleep argument controls whether the function can handle a stop 1497478ca4b0SKonstantin Belousov * request itself or it should return ERESTART and the request is 1498478ca4b0SKonstantin Belousov * proceed at the kernel/user boundary in ast. 1499478ca4b0SKonstantin Belousov * 1500478ca4b0SKonstantin Belousov * Typically, when retrying due to casueword(9) failure (rv == 1), we 1501478ca4b0SKonstantin Belousov * should handle the stop requests there, with exception of cases when 1502478ca4b0SKonstantin Belousov * the thread owns a kernel resource, for instance busied the umtx 1503300b525dSKonstantin Belousov * key, or when functions return immediately if thread_check_susp() 1504478ca4b0SKonstantin Belousov * returned non-zero. On the other hand, retrying the whole lock 1505478ca4b0SKonstantin Belousov * operation, we better not stop there but delegate the handling to 1506478ca4b0SKonstantin Belousov * ast. 1507478ca4b0SKonstantin Belousov * 1508478ca4b0SKonstantin Belousov * If the request is for thread termination P_SINGLE_EXIT, we cannot 1509478ca4b0SKonstantin Belousov * handle it at all, and simply return EINTR. 1510478ca4b0SKonstantin Belousov */ 1511478ca4b0SKonstantin Belousov int 1512478ca4b0SKonstantin Belousov thread_check_susp(struct thread *td, bool sleep) 1513478ca4b0SKonstantin Belousov { 1514478ca4b0SKonstantin Belousov struct proc *p; 1515478ca4b0SKonstantin Belousov int error; 1516478ca4b0SKonstantin Belousov 1517478ca4b0SKonstantin Belousov /* 1518c6d31b83SKonstantin Belousov * The check for TDA_SUSPEND is racy, but it is enough to 1519478ca4b0SKonstantin Belousov * eventually break the lockstep loop. 1520478ca4b0SKonstantin Belousov */ 1521c6d31b83SKonstantin Belousov if (!td_ast_pending(td, TDA_SUSPEND)) 1522478ca4b0SKonstantin Belousov return (0); 1523478ca4b0SKonstantin Belousov error = 0; 1524478ca4b0SKonstantin Belousov p = td->td_proc; 1525478ca4b0SKonstantin Belousov PROC_LOCK(p); 1526478ca4b0SKonstantin Belousov if (p->p_flag & P_SINGLE_EXIT) 1527478ca4b0SKonstantin Belousov error = EINTR; 1528478ca4b0SKonstantin Belousov else if (P_SHOULDSTOP(p) || 1529478ca4b0SKonstantin Belousov ((p->p_flag & P_TRACED) && (td->td_dbgflags & TDB_SUSPEND))) 1530478ca4b0SKonstantin Belousov error = sleep ? thread_suspend_check(0) : ERESTART; 1531478ca4b0SKonstantin Belousov PROC_UNLOCK(p); 1532478ca4b0SKonstantin Belousov return (error); 1533478ca4b0SKonstantin Belousov } 1534478ca4b0SKonstantin Belousov 153535c32a76SDavid Xu void 15366ddcc233SKonstantin Belousov thread_suspend_switch(struct thread *td, struct proc *p) 1537a54e85fdSJeff Roberson { 1538a54e85fdSJeff Roberson 1539a54e85fdSJeff Roberson KASSERT(!TD_IS_SUSPENDED(td), ("already suspended")); 1540a54e85fdSJeff Roberson PROC_LOCK_ASSERT(p, MA_OWNED); 15417b4a950aSDavid Xu PROC_SLOCK_ASSERT(p, MA_OWNED); 1542a54e85fdSJeff Roberson /* 1543a54e85fdSJeff Roberson * We implement thread_suspend_one in stages here to avoid 1544a54e85fdSJeff Roberson * dropping the proc lock while the thread lock is owned. 1545a54e85fdSJeff Roberson */ 15466ddcc233SKonstantin Belousov if (p == td->td_proc) { 1547a54e85fdSJeff Roberson thread_stopped(p); 1548a54e85fdSJeff Roberson p->p_suspcount++; 15496ddcc233SKonstantin Belousov } 15503f9be10eSDavid Xu PROC_UNLOCK(p); 15517b4a950aSDavid Xu thread_lock(td); 1552c6d31b83SKonstantin Belousov ast_unsched_locked(td, TDA_SUSPEND); 1553a54e85fdSJeff Roberson TD_SET_SUSPENDED(td); 1554c5aa6b58SJeff Roberson sched_sleep(td, 0); 15557b4a950aSDavid Xu PROC_SUNLOCK(p); 1556a54e85fdSJeff Roberson DROP_GIANT(); 1557686bcb5cSJeff Roberson mi_switch(SW_VOL | SWT_SUSPEND); 1558a54e85fdSJeff Roberson PICKUP_GIANT(); 1559a54e85fdSJeff Roberson PROC_LOCK(p); 15607b4a950aSDavid Xu PROC_SLOCK(p); 1561a54e85fdSJeff Roberson } 1562a54e85fdSJeff Roberson 1563a54e85fdSJeff Roberson void 156435c32a76SDavid Xu thread_suspend_one(struct thread *td) 156535c32a76SDavid Xu { 15666ddcc233SKonstantin Belousov struct proc *p; 156735c32a76SDavid Xu 15686ddcc233SKonstantin Belousov p = td->td_proc; 15697b4a950aSDavid Xu PROC_SLOCK_ASSERT(p, MA_OWNED); 1570a54e85fdSJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 1571e574e444SDavid Xu KASSERT(!TD_IS_SUSPENDED(td), ("already suspended")); 157235c32a76SDavid Xu p->p_suspcount++; 1573c6d31b83SKonstantin Belousov ast_unsched_locked(td, TDA_SUSPEND); 157471fad9fdSJulian Elischer TD_SET_SUSPENDED(td); 1575c5aa6b58SJeff Roberson sched_sleep(td, 0); 157635c32a76SDavid Xu } 157735c32a76SDavid Xu 157884cdea97SKonstantin Belousov static int 157984cdea97SKonstantin Belousov thread_unsuspend_one(struct thread *td, struct proc *p, bool boundary) 158035c32a76SDavid Xu { 158135c32a76SDavid Xu 1582a54e85fdSJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 1583ad1e7d28SJulian Elischer KASSERT(TD_IS_SUSPENDED(td), ("Thread not suspended")); 158471fad9fdSJulian Elischer TD_CLR_SUSPENDED(td); 15856ddcc233SKonstantin Belousov td->td_flags &= ~TDF_ALLPROCSUSP; 15866ddcc233SKonstantin Belousov if (td->td_proc == p) { 15876ddcc233SKonstantin Belousov PROC_SLOCK_ASSERT(p, MA_OWNED); 158835c32a76SDavid Xu p->p_suspcount--; 158984cdea97SKonstantin Belousov if (boundary && (td->td_flags & TDF_BOUNDARY) != 0) { 159084cdea97SKonstantin Belousov td->td_flags &= ~TDF_BOUNDARY; 159184cdea97SKonstantin Belousov p->p_boundary_count--; 159284cdea97SKonstantin Belousov } 15936ddcc233SKonstantin Belousov } 159461a74c5cSJeff Roberson return (setrunnable(td, 0)); 159535c32a76SDavid Xu } 159635c32a76SDavid Xu 1597af928fdeSKonstantin Belousov void 1598af928fdeSKonstantin Belousov thread_run_flash(struct thread *td) 1599af928fdeSKonstantin Belousov { 1600af928fdeSKonstantin Belousov struct proc *p; 1601af928fdeSKonstantin Belousov 1602af928fdeSKonstantin Belousov p = td->td_proc; 1603af928fdeSKonstantin Belousov PROC_LOCK_ASSERT(p, MA_OWNED); 1604af928fdeSKonstantin Belousov 1605af928fdeSKonstantin Belousov if (TD_ON_SLEEPQ(td)) 1606af928fdeSKonstantin Belousov sleepq_remove_nested(td); 1607af928fdeSKonstantin Belousov else 1608af928fdeSKonstantin Belousov thread_lock(td); 1609af928fdeSKonstantin Belousov 1610af928fdeSKonstantin Belousov THREAD_LOCK_ASSERT(td, MA_OWNED); 1611af928fdeSKonstantin Belousov KASSERT(TD_IS_SUSPENDED(td), ("Thread not suspended")); 1612af928fdeSKonstantin Belousov 1613af928fdeSKonstantin Belousov TD_CLR_SUSPENDED(td); 1614af928fdeSKonstantin Belousov PROC_SLOCK(p); 1615af928fdeSKonstantin Belousov MPASS(p->p_suspcount > 0); 1616af928fdeSKonstantin Belousov p->p_suspcount--; 1617af928fdeSKonstantin Belousov PROC_SUNLOCK(p); 1618af928fdeSKonstantin Belousov if (setrunnable(td, 0)) 1619af928fdeSKonstantin Belousov kick_proc0(); 1620af928fdeSKonstantin Belousov } 1621af928fdeSKonstantin Belousov 162244990b8cSJulian Elischer /* 162344990b8cSJulian Elischer * Allow all threads blocked by single threading to continue running. 162444990b8cSJulian Elischer */ 162544990b8cSJulian Elischer void 162644990b8cSJulian Elischer thread_unsuspend(struct proc *p) 162744990b8cSJulian Elischer { 162844990b8cSJulian Elischer struct thread *td; 16297847a9daSJohn Baldwin int wakeup_swapper; 163044990b8cSJulian Elischer 163144990b8cSJulian Elischer PROC_LOCK_ASSERT(p, MA_OWNED); 16327b4a950aSDavid Xu PROC_SLOCK_ASSERT(p, MA_OWNED); 16337847a9daSJohn Baldwin wakeup_swapper = 0; 163444990b8cSJulian Elischer if (!P_SHOULDSTOP(p)) { 1635ad1e7d28SJulian Elischer FOREACH_THREAD_IN_PROC(p, td) { 1636a54e85fdSJeff Roberson thread_lock(td); 1637f829268bSKonstantin Belousov if (TD_IS_SUSPENDED(td)) 163884cdea97SKonstantin Belousov wakeup_swapper |= thread_unsuspend_one(td, p, 163984cdea97SKonstantin Belousov true); 1640f829268bSKonstantin Belousov else 1641a54e85fdSJeff Roberson thread_unlock(td); 1642ad1e7d28SJulian Elischer } 164384cdea97SKonstantin Belousov } else if (P_SHOULDSTOP(p) == P_STOPPED_SINGLE && 164484cdea97SKonstantin Belousov p->p_numthreads == p->p_suspcount) { 164544990b8cSJulian Elischer /* 164644990b8cSJulian Elischer * Stopping everything also did the job for the single 164744990b8cSJulian Elischer * threading request. Now we've downgraded to single-threaded, 164844990b8cSJulian Elischer * let it continue. 164944990b8cSJulian Elischer */ 16506ddcc233SKonstantin Belousov if (p->p_singlethread->td_proc == p) { 1651a54e85fdSJeff Roberson thread_lock(p->p_singlethread); 16526ddcc233SKonstantin Belousov wakeup_swapper = thread_unsuspend_one( 165384cdea97SKonstantin Belousov p->p_singlethread, p, false); 165444990b8cSJulian Elischer } 16556ddcc233SKonstantin Belousov } 16567847a9daSJohn Baldwin if (wakeup_swapper) 16577847a9daSJohn Baldwin kick_proc0(); 165844990b8cSJulian Elischer } 165944990b8cSJulian Elischer 1660ed062c8dSJulian Elischer /* 1661ed062c8dSJulian Elischer * End the single threading mode.. 1662ed062c8dSJulian Elischer */ 166344990b8cSJulian Elischer void 16646ddcc233SKonstantin Belousov thread_single_end(struct proc *p, int mode) 166544990b8cSJulian Elischer { 166644990b8cSJulian Elischer struct thread *td; 16677847a9daSJohn Baldwin int wakeup_swapper; 166844990b8cSJulian Elischer 16696ddcc233SKonstantin Belousov KASSERT(mode == SINGLE_EXIT || mode == SINGLE_BOUNDARY || 16706ddcc233SKonstantin Belousov mode == SINGLE_ALLPROC || mode == SINGLE_NO_EXIT, 16716ddcc233SKonstantin Belousov ("invalid mode %d", mode)); 167244990b8cSJulian Elischer PROC_LOCK_ASSERT(p, MA_OWNED); 16736ddcc233SKonstantin Belousov KASSERT((mode == SINGLE_ALLPROC && (p->p_flag & P_TOTAL_STOP) != 0) || 16746ddcc233SKonstantin Belousov (mode != SINGLE_ALLPROC && (p->p_flag & P_TOTAL_STOP) == 0), 16756ddcc233SKonstantin Belousov ("mode %d does not match P_TOTAL_STOP", mode)); 167684cdea97SKonstantin Belousov KASSERT(mode == SINGLE_ALLPROC || p->p_singlethread == curthread, 167784cdea97SKonstantin Belousov ("thread_single_end from other thread %p %p", 167884cdea97SKonstantin Belousov curthread, p->p_singlethread)); 167984cdea97SKonstantin Belousov KASSERT(mode != SINGLE_BOUNDARY || 168084cdea97SKonstantin Belousov (p->p_flag & P_SINGLE_BOUNDARY) != 0, 168184cdea97SKonstantin Belousov ("mis-matched SINGLE_BOUNDARY flags %x", p->p_flag)); 16826ddcc233SKonstantin Belousov p->p_flag &= ~(P_STOPPED_SINGLE | P_SINGLE_EXIT | P_SINGLE_BOUNDARY | 16836ddcc233SKonstantin Belousov P_TOTAL_STOP); 16847b4a950aSDavid Xu PROC_SLOCK(p); 168544990b8cSJulian Elischer p->p_singlethread = NULL; 16867847a9daSJohn Baldwin wakeup_swapper = 0; 168749539972SJulian Elischer /* 16887847a9daSJohn Baldwin * If there are other threads they may now run, 168949539972SJulian Elischer * unless of course there is a blanket 'stop order' 169049539972SJulian Elischer * on the process. The single threader must be allowed 169149539972SJulian Elischer * to continue however as this is a bad place to stop. 169249539972SJulian Elischer */ 16936ddcc233SKonstantin Belousov if (p->p_numthreads != remain_for_mode(mode) && !P_SHOULDSTOP(p)) { 1694ad1e7d28SJulian Elischer FOREACH_THREAD_IN_PROC(p, td) { 1695a54e85fdSJeff Roberson thread_lock(td); 1696ad1e7d28SJulian Elischer if (TD_IS_SUSPENDED(td)) { 169784cdea97SKonstantin Belousov wakeup_swapper |= thread_unsuspend_one(td, p, 16982d5ef216SMark Johnston true); 169961a74c5cSJeff Roberson } else 1700a54e85fdSJeff Roberson thread_unlock(td); 170149539972SJulian Elischer } 1702ad1e7d28SJulian Elischer } 170384cdea97SKonstantin Belousov KASSERT(mode != SINGLE_BOUNDARY || p->p_boundary_count == 0, 170484cdea97SKonstantin Belousov ("inconsistent boundary count %d", p->p_boundary_count)); 17057b4a950aSDavid Xu PROC_SUNLOCK(p); 17067847a9daSJohn Baldwin if (wakeup_swapper) 17077847a9daSJohn Baldwin kick_proc0(); 1708d7a9e6e7SKonstantin Belousov wakeup(&p->p_flag); 170949539972SJulian Elischer } 17104fc21c09SDaniel Eischen 1711aae3547bSMateusz Guzik /* 1712aae3547bSMateusz Guzik * Locate a thread by number and return with proc lock held. 1713aae3547bSMateusz Guzik * 1714aae3547bSMateusz Guzik * thread exit establishes proc -> tidhash lock ordering, but lookup 1715aae3547bSMateusz Guzik * takes tidhash first and needs to return locked proc. 1716aae3547bSMateusz Guzik * 1717aae3547bSMateusz Guzik * The problem is worked around by relying on type-safety of both 1718aae3547bSMateusz Guzik * structures and doing the work in 2 steps: 1719aae3547bSMateusz Guzik * - tidhash-locked lookup which saves both thread and proc pointers 1720aae3547bSMateusz Guzik * - proc-locked verification that the found thread still matches 1721aae3547bSMateusz Guzik */ 1722aae3547bSMateusz Guzik static bool 1723aae3547bSMateusz Guzik tdfind_hash(lwpid_t tid, pid_t pid, struct proc **pp, struct thread **tdp) 1724cf7d9a8cSDavid Xu { 1725cf7d9a8cSDavid Xu #define RUN_THRESH 16 1726aae3547bSMateusz Guzik struct proc *p; 1727cf7d9a8cSDavid Xu struct thread *td; 1728aae3547bSMateusz Guzik int run; 1729aae3547bSMateusz Guzik bool locked; 1730cf7d9a8cSDavid Xu 1731aae3547bSMateusz Guzik run = 0; 173226007fe3SMateusz Guzik rw_rlock(TIDHASHLOCK(tid)); 1733aae3547bSMateusz Guzik locked = true; 1734cf7d9a8cSDavid Xu LIST_FOREACH(td, TIDHASH(tid), td_hash) { 1735aae3547bSMateusz Guzik if (td->td_tid != tid) { 1736aae3547bSMateusz Guzik run++; 1737aae3547bSMateusz Guzik continue; 1738cf7d9a8cSDavid Xu } 1739aae3547bSMateusz Guzik p = td->td_proc; 1740aae3547bSMateusz Guzik if (pid != -1 && p->p_pid != pid) { 1741cf7d9a8cSDavid Xu td = NULL; 1742cf7d9a8cSDavid Xu break; 1743cf7d9a8cSDavid Xu } 1744cf7d9a8cSDavid Xu if (run > RUN_THRESH) { 174526007fe3SMateusz Guzik if (rw_try_upgrade(TIDHASHLOCK(tid))) { 1746cf7d9a8cSDavid Xu LIST_REMOVE(td, td_hash); 1747cf7d9a8cSDavid Xu LIST_INSERT_HEAD(TIDHASH(td->td_tid), 1748cf7d9a8cSDavid Xu td, td_hash); 174926007fe3SMateusz Guzik rw_wunlock(TIDHASHLOCK(tid)); 1750aae3547bSMateusz Guzik locked = false; 1751aae3547bSMateusz Guzik break; 1752cf7d9a8cSDavid Xu } 1753cf7d9a8cSDavid Xu } 1754cf7d9a8cSDavid Xu break; 1755cf7d9a8cSDavid Xu } 1756aae3547bSMateusz Guzik if (locked) 175726007fe3SMateusz Guzik rw_runlock(TIDHASHLOCK(tid)); 1758aae3547bSMateusz Guzik if (td == NULL) 1759aae3547bSMateusz Guzik return (false); 1760aae3547bSMateusz Guzik *pp = p; 1761aae3547bSMateusz Guzik *tdp = td; 1762aae3547bSMateusz Guzik return (true); 1763aae3547bSMateusz Guzik } 1764aae3547bSMateusz Guzik 1765aae3547bSMateusz Guzik struct thread * 1766aae3547bSMateusz Guzik tdfind(lwpid_t tid, pid_t pid) 1767aae3547bSMateusz Guzik { 1768aae3547bSMateusz Guzik struct proc *p; 1769aae3547bSMateusz Guzik struct thread *td; 1770aae3547bSMateusz Guzik 1771aae3547bSMateusz Guzik td = curthread; 1772aae3547bSMateusz Guzik if (td->td_tid == tid) { 1773aae3547bSMateusz Guzik if (pid != -1 && td->td_proc->p_pid != pid) 1774aae3547bSMateusz Guzik return (NULL); 1775aae3547bSMateusz Guzik PROC_LOCK(td->td_proc); 1776cf7d9a8cSDavid Xu return (td); 1777cf7d9a8cSDavid Xu } 1778cf7d9a8cSDavid Xu 1779aae3547bSMateusz Guzik for (;;) { 1780aae3547bSMateusz Guzik if (!tdfind_hash(tid, pid, &p, &td)) 1781aae3547bSMateusz Guzik return (NULL); 1782aae3547bSMateusz Guzik PROC_LOCK(p); 1783aae3547bSMateusz Guzik if (td->td_tid != tid) { 1784aae3547bSMateusz Guzik PROC_UNLOCK(p); 1785aae3547bSMateusz Guzik continue; 1786aae3547bSMateusz Guzik } 1787aae3547bSMateusz Guzik if (td->td_proc != p) { 1788aae3547bSMateusz Guzik PROC_UNLOCK(p); 1789aae3547bSMateusz Guzik continue; 1790aae3547bSMateusz Guzik } 1791aae3547bSMateusz Guzik if (p->p_state == PRS_NEW) { 1792aae3547bSMateusz Guzik PROC_UNLOCK(p); 1793aae3547bSMateusz Guzik return (NULL); 1794aae3547bSMateusz Guzik } 1795aae3547bSMateusz Guzik return (td); 1796aae3547bSMateusz Guzik } 1797aae3547bSMateusz Guzik } 1798aae3547bSMateusz Guzik 1799cf7d9a8cSDavid Xu void 1800cf7d9a8cSDavid Xu tidhash_add(struct thread *td) 1801cf7d9a8cSDavid Xu { 180226007fe3SMateusz Guzik rw_wlock(TIDHASHLOCK(td->td_tid)); 1803cf7d9a8cSDavid Xu LIST_INSERT_HEAD(TIDHASH(td->td_tid), td, td_hash); 180426007fe3SMateusz Guzik rw_wunlock(TIDHASHLOCK(td->td_tid)); 1805cf7d9a8cSDavid Xu } 1806cf7d9a8cSDavid Xu 1807cf7d9a8cSDavid Xu void 1808cf7d9a8cSDavid Xu tidhash_remove(struct thread *td) 1809cf7d9a8cSDavid Xu { 181026007fe3SMateusz Guzik 181126007fe3SMateusz Guzik rw_wlock(TIDHASHLOCK(td->td_tid)); 1812cf7d9a8cSDavid Xu LIST_REMOVE(td, td_hash); 181326007fe3SMateusz Guzik rw_wunlock(TIDHASHLOCK(td->td_tid)); 1814cf7d9a8cSDavid Xu } 1815