1 /* 2 * Read-Copy Update module-based torture test facility 3 * 4 * This program is free software; you can redistribute it and/or modify 5 * it under the terms of the GNU General Public License as published by 6 * the Free Software Foundation; either version 2 of the License, or 7 * (at your option) any later version. 8 * 9 * This program is distributed in the hope that it will be useful, 10 * but WITHOUT ANY WARRANTY; without even the implied warranty of 11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 12 * GNU General Public License for more details. 13 * 14 * You should have received a copy of the GNU General Public License 15 * along with this program; if not, you can access it online at 16 * http://www.gnu.org/licenses/gpl-2.0.html. 17 * 18 * Copyright (C) IBM Corporation, 2005, 2006 19 * 20 * Authors: Paul E. McKenney <paulmck@us.ibm.com> 21 * Josh Triplett <josh@joshtriplett.org> 22 * 23 * See also: Documentation/RCU/torture.txt 24 */ 25 #include <linux/types.h> 26 #include <linux/kernel.h> 27 #include <linux/init.h> 28 #include <linux/module.h> 29 #include <linux/kthread.h> 30 #include <linux/err.h> 31 #include <linux/spinlock.h> 32 #include <linux/smp.h> 33 #include <linux/rcupdate.h> 34 #include <linux/interrupt.h> 35 #include <linux/sched.h> 36 #include <linux/atomic.h> 37 #include <linux/bitops.h> 38 #include <linux/completion.h> 39 #include <linux/moduleparam.h> 40 #include <linux/percpu.h> 41 #include <linux/notifier.h> 42 #include <linux/reboot.h> 43 #include <linux/freezer.h> 44 #include <linux/cpu.h> 45 #include <linux/delay.h> 46 #include <linux/stat.h> 47 #include <linux/srcu.h> 48 #include <linux/slab.h> 49 #include <linux/trace_clock.h> 50 #include <asm/byteorder.h> 51 #include <linux/torture.h> 52 #include <linux/vmalloc.h> 53 54 MODULE_LICENSE("GPL"); 55 MODULE_AUTHOR("Paul E. McKenney <paulmck@us.ibm.com> and Josh Triplett <josh@joshtriplett.org>"); 56 57 58 torture_param(int, cbflood_inter_holdoff, HZ, 59 "Holdoff between floods (jiffies)"); 60 torture_param(int, cbflood_intra_holdoff, 1, 61 "Holdoff between bursts (jiffies)"); 62 torture_param(int, cbflood_n_burst, 3, "# bursts in flood, zero to disable"); 63 torture_param(int, cbflood_n_per_burst, 20000, 64 "# callbacks per burst in flood"); 65 torture_param(int, fqs_duration, 0, 66 "Duration of fqs bursts (us), 0 to disable"); 67 torture_param(int, fqs_holdoff, 0, "Holdoff time within fqs bursts (us)"); 68 torture_param(int, fqs_stutter, 3, "Wait time between fqs bursts (s)"); 69 torture_param(bool, gp_cond, false, "Use conditional/async GP wait primitives"); 70 torture_param(bool, gp_exp, false, "Use expedited GP wait primitives"); 71 torture_param(bool, gp_normal, false, 72 "Use normal (non-expedited) GP wait primitives"); 73 torture_param(bool, gp_sync, false, "Use synchronous GP wait primitives"); 74 torture_param(int, irqreader, 1, "Allow RCU readers from irq handlers"); 75 torture_param(int, n_barrier_cbs, 0, 76 "# of callbacks/kthreads for barrier testing"); 77 torture_param(int, nfakewriters, 4, "Number of RCU fake writer threads"); 78 torture_param(int, nreaders, -1, "Number of RCU reader threads"); 79 torture_param(int, object_debug, 0, 80 "Enable debug-object double call_rcu() testing"); 81 torture_param(int, onoff_holdoff, 0, "Time after boot before CPU hotplugs (s)"); 82 torture_param(int, onoff_interval, 0, 83 "Time between CPU hotplugs (s), 0=disable"); 84 torture_param(int, shuffle_interval, 3, "Number of seconds between shuffles"); 85 torture_param(int, shutdown_secs, 0, "Shutdown time (s), <= zero to disable."); 86 torture_param(int, stall_cpu, 0, "Stall duration (s), zero to disable."); 87 torture_param(int, stall_cpu_holdoff, 10, 88 "Time to wait before starting stall (s)."); 89 torture_param(int, stat_interval, 60, 90 "Number of seconds between stats printk()s"); 91 torture_param(int, stutter, 5, "Number of seconds to run/halt test"); 92 torture_param(int, test_boost, 1, "Test RCU prio boost: 0=no, 1=maybe, 2=yes."); 93 torture_param(int, test_boost_duration, 4, 94 "Duration of each boost test, seconds."); 95 torture_param(int, test_boost_interval, 7, 96 "Interval between boost tests, seconds."); 97 torture_param(bool, test_no_idle_hz, true, 98 "Test support for tickless idle CPUs"); 99 torture_param(bool, verbose, true, 100 "Enable verbose debugging printk()s"); 101 102 static char *torture_type = "rcu"; 103 module_param(torture_type, charp, 0444); 104 MODULE_PARM_DESC(torture_type, "Type of RCU to torture (rcu, rcu_bh, ...)"); 105 106 static int nrealreaders; 107 static int ncbflooders; 108 static struct task_struct *writer_task; 109 static struct task_struct **fakewriter_tasks; 110 static struct task_struct **reader_tasks; 111 static struct task_struct *stats_task; 112 static struct task_struct **cbflood_task; 113 static struct task_struct *fqs_task; 114 static struct task_struct *boost_tasks[NR_CPUS]; 115 static struct task_struct *stall_task; 116 static struct task_struct **barrier_cbs_tasks; 117 static struct task_struct *barrier_task; 118 119 #define RCU_TORTURE_PIPE_LEN 10 120 121 struct rcu_torture { 122 struct rcu_head rtort_rcu; 123 int rtort_pipe_count; 124 struct list_head rtort_free; 125 int rtort_mbtest; 126 }; 127 128 static LIST_HEAD(rcu_torture_freelist); 129 static struct rcu_torture __rcu *rcu_torture_current; 130 static unsigned long rcu_torture_current_version; 131 static struct rcu_torture rcu_tortures[10 * RCU_TORTURE_PIPE_LEN]; 132 static DEFINE_SPINLOCK(rcu_torture_lock); 133 static DEFINE_PER_CPU(long [RCU_TORTURE_PIPE_LEN + 1], rcu_torture_count); 134 static DEFINE_PER_CPU(long [RCU_TORTURE_PIPE_LEN + 1], rcu_torture_batch); 135 static atomic_t rcu_torture_wcount[RCU_TORTURE_PIPE_LEN + 1]; 136 static atomic_t n_rcu_torture_alloc; 137 static atomic_t n_rcu_torture_alloc_fail; 138 static atomic_t n_rcu_torture_free; 139 static atomic_t n_rcu_torture_mberror; 140 static atomic_t n_rcu_torture_error; 141 static long n_rcu_torture_barrier_error; 142 static long n_rcu_torture_boost_ktrerror; 143 static long n_rcu_torture_boost_rterror; 144 static long n_rcu_torture_boost_failure; 145 static long n_rcu_torture_boosts; 146 static long n_rcu_torture_timers; 147 static long n_barrier_attempts; 148 static long n_barrier_successes; 149 static atomic_long_t n_cbfloods; 150 static struct list_head rcu_torture_removed; 151 152 static int rcu_torture_writer_state; 153 #define RTWS_FIXED_DELAY 0 154 #define RTWS_DELAY 1 155 #define RTWS_REPLACE 2 156 #define RTWS_DEF_FREE 3 157 #define RTWS_EXP_SYNC 4 158 #define RTWS_COND_GET 5 159 #define RTWS_COND_SYNC 6 160 #define RTWS_SYNC 7 161 #define RTWS_STUTTER 8 162 #define RTWS_STOPPING 9 163 static const char * const rcu_torture_writer_state_names[] = { 164 "RTWS_FIXED_DELAY", 165 "RTWS_DELAY", 166 "RTWS_REPLACE", 167 "RTWS_DEF_FREE", 168 "RTWS_EXP_SYNC", 169 "RTWS_COND_GET", 170 "RTWS_COND_SYNC", 171 "RTWS_SYNC", 172 "RTWS_STUTTER", 173 "RTWS_STOPPING", 174 }; 175 176 static const char *rcu_torture_writer_state_getname(void) 177 { 178 unsigned int i = READ_ONCE(rcu_torture_writer_state); 179 180 if (i >= ARRAY_SIZE(rcu_torture_writer_state_names)) 181 return "???"; 182 return rcu_torture_writer_state_names[i]; 183 } 184 185 static int torture_runnable = IS_ENABLED(MODULE); 186 module_param(torture_runnable, int, 0444); 187 MODULE_PARM_DESC(torture_runnable, "Start rcutorture at boot"); 188 189 #if defined(CONFIG_RCU_BOOST) && !defined(CONFIG_HOTPLUG_CPU) 190 #define rcu_can_boost() 1 191 #else /* #if defined(CONFIG_RCU_BOOST) && !defined(CONFIG_HOTPLUG_CPU) */ 192 #define rcu_can_boost() 0 193 #endif /* #else #if defined(CONFIG_RCU_BOOST) && !defined(CONFIG_HOTPLUG_CPU) */ 194 195 #ifdef CONFIG_RCU_TRACE 196 static u64 notrace rcu_trace_clock_local(void) 197 { 198 u64 ts = trace_clock_local(); 199 unsigned long __maybe_unused ts_rem = do_div(ts, NSEC_PER_USEC); 200 return ts; 201 } 202 #else /* #ifdef CONFIG_RCU_TRACE */ 203 static u64 notrace rcu_trace_clock_local(void) 204 { 205 return 0ULL; 206 } 207 #endif /* #else #ifdef CONFIG_RCU_TRACE */ 208 209 static unsigned long boost_starttime; /* jiffies of next boost test start. */ 210 static DEFINE_MUTEX(boost_mutex); /* protect setting boost_starttime */ 211 /* and boost task create/destroy. */ 212 static atomic_t barrier_cbs_count; /* Barrier callbacks registered. */ 213 static bool barrier_phase; /* Test phase. */ 214 static atomic_t barrier_cbs_invoked; /* Barrier callbacks invoked. */ 215 static wait_queue_head_t *barrier_cbs_wq; /* Coordinate barrier testing. */ 216 static DECLARE_WAIT_QUEUE_HEAD(barrier_wq); 217 218 /* 219 * Allocate an element from the rcu_tortures pool. 220 */ 221 static struct rcu_torture * 222 rcu_torture_alloc(void) 223 { 224 struct list_head *p; 225 226 spin_lock_bh(&rcu_torture_lock); 227 if (list_empty(&rcu_torture_freelist)) { 228 atomic_inc(&n_rcu_torture_alloc_fail); 229 spin_unlock_bh(&rcu_torture_lock); 230 return NULL; 231 } 232 atomic_inc(&n_rcu_torture_alloc); 233 p = rcu_torture_freelist.next; 234 list_del_init(p); 235 spin_unlock_bh(&rcu_torture_lock); 236 return container_of(p, struct rcu_torture, rtort_free); 237 } 238 239 /* 240 * Free an element to the rcu_tortures pool. 241 */ 242 static void 243 rcu_torture_free(struct rcu_torture *p) 244 { 245 atomic_inc(&n_rcu_torture_free); 246 spin_lock_bh(&rcu_torture_lock); 247 list_add_tail(&p->rtort_free, &rcu_torture_freelist); 248 spin_unlock_bh(&rcu_torture_lock); 249 } 250 251 /* 252 * Operations vector for selecting different types of tests. 253 */ 254 255 struct rcu_torture_ops { 256 int ttype; 257 void (*init)(void); 258 void (*cleanup)(void); 259 int (*readlock)(void); 260 void (*read_delay)(struct torture_random_state *rrsp); 261 void (*readunlock)(int idx); 262 unsigned long (*started)(void); 263 unsigned long (*completed)(void); 264 void (*deferred_free)(struct rcu_torture *p); 265 void (*sync)(void); 266 void (*exp_sync)(void); 267 unsigned long (*get_state)(void); 268 void (*cond_sync)(unsigned long oldstate); 269 call_rcu_func_t call; 270 void (*cb_barrier)(void); 271 void (*fqs)(void); 272 void (*stats)(void); 273 int irq_capable; 274 int can_boost; 275 const char *name; 276 }; 277 278 static struct rcu_torture_ops *cur_ops; 279 280 /* 281 * Definitions for rcu torture testing. 282 */ 283 284 static int rcu_torture_read_lock(void) __acquires(RCU) 285 { 286 rcu_read_lock(); 287 return 0; 288 } 289 290 static void rcu_read_delay(struct torture_random_state *rrsp) 291 { 292 const unsigned long shortdelay_us = 200; 293 const unsigned long longdelay_ms = 50; 294 295 /* We want a short delay sometimes to make a reader delay the grace 296 * period, and we want a long delay occasionally to trigger 297 * force_quiescent_state. */ 298 299 if (!(torture_random(rrsp) % (nrealreaders * 2000 * longdelay_ms))) 300 mdelay(longdelay_ms); 301 if (!(torture_random(rrsp) % (nrealreaders * 2 * shortdelay_us))) 302 udelay(shortdelay_us); 303 #ifdef CONFIG_PREEMPT 304 if (!preempt_count() && 305 !(torture_random(rrsp) % (nrealreaders * 20000))) 306 preempt_schedule(); /* No QS if preempt_disable() in effect */ 307 #endif 308 } 309 310 static void rcu_torture_read_unlock(int idx) __releases(RCU) 311 { 312 rcu_read_unlock(); 313 } 314 315 /* 316 * Update callback in the pipe. This should be invoked after a grace period. 317 */ 318 static bool 319 rcu_torture_pipe_update_one(struct rcu_torture *rp) 320 { 321 int i; 322 323 i = rp->rtort_pipe_count; 324 if (i > RCU_TORTURE_PIPE_LEN) 325 i = RCU_TORTURE_PIPE_LEN; 326 atomic_inc(&rcu_torture_wcount[i]); 327 if (++rp->rtort_pipe_count >= RCU_TORTURE_PIPE_LEN) { 328 rp->rtort_mbtest = 0; 329 return true; 330 } 331 return false; 332 } 333 334 /* 335 * Update all callbacks in the pipe. Suitable for synchronous grace-period 336 * primitives. 337 */ 338 static void 339 rcu_torture_pipe_update(struct rcu_torture *old_rp) 340 { 341 struct rcu_torture *rp; 342 struct rcu_torture *rp1; 343 344 if (old_rp) 345 list_add(&old_rp->rtort_free, &rcu_torture_removed); 346 list_for_each_entry_safe(rp, rp1, &rcu_torture_removed, rtort_free) { 347 if (rcu_torture_pipe_update_one(rp)) { 348 list_del(&rp->rtort_free); 349 rcu_torture_free(rp); 350 } 351 } 352 } 353 354 static void 355 rcu_torture_cb(struct rcu_head *p) 356 { 357 struct rcu_torture *rp = container_of(p, struct rcu_torture, rtort_rcu); 358 359 if (torture_must_stop_irq()) { 360 /* Test is ending, just drop callbacks on the floor. */ 361 /* The next initialization will pick up the pieces. */ 362 return; 363 } 364 if (rcu_torture_pipe_update_one(rp)) 365 rcu_torture_free(rp); 366 else 367 cur_ops->deferred_free(rp); 368 } 369 370 static unsigned long rcu_no_completed(void) 371 { 372 return 0; 373 } 374 375 static void rcu_torture_deferred_free(struct rcu_torture *p) 376 { 377 call_rcu(&p->rtort_rcu, rcu_torture_cb); 378 } 379 380 static void rcu_sync_torture_init(void) 381 { 382 INIT_LIST_HEAD(&rcu_torture_removed); 383 } 384 385 static struct rcu_torture_ops rcu_ops = { 386 .ttype = RCU_FLAVOR, 387 .init = rcu_sync_torture_init, 388 .readlock = rcu_torture_read_lock, 389 .read_delay = rcu_read_delay, 390 .readunlock = rcu_torture_read_unlock, 391 .started = rcu_batches_started, 392 .completed = rcu_batches_completed, 393 .deferred_free = rcu_torture_deferred_free, 394 .sync = synchronize_rcu, 395 .exp_sync = synchronize_rcu_expedited, 396 .get_state = get_state_synchronize_rcu, 397 .cond_sync = cond_synchronize_rcu, 398 .call = call_rcu, 399 .cb_barrier = rcu_barrier, 400 .fqs = rcu_force_quiescent_state, 401 .stats = NULL, 402 .irq_capable = 1, 403 .can_boost = rcu_can_boost(), 404 .name = "rcu" 405 }; 406 407 /* 408 * Definitions for rcu_bh torture testing. 409 */ 410 411 static int rcu_bh_torture_read_lock(void) __acquires(RCU_BH) 412 { 413 rcu_read_lock_bh(); 414 return 0; 415 } 416 417 static void rcu_bh_torture_read_unlock(int idx) __releases(RCU_BH) 418 { 419 rcu_read_unlock_bh(); 420 } 421 422 static void rcu_bh_torture_deferred_free(struct rcu_torture *p) 423 { 424 call_rcu_bh(&p->rtort_rcu, rcu_torture_cb); 425 } 426 427 static struct rcu_torture_ops rcu_bh_ops = { 428 .ttype = RCU_BH_FLAVOR, 429 .init = rcu_sync_torture_init, 430 .readlock = rcu_bh_torture_read_lock, 431 .read_delay = rcu_read_delay, /* just reuse rcu's version. */ 432 .readunlock = rcu_bh_torture_read_unlock, 433 .started = rcu_batches_started_bh, 434 .completed = rcu_batches_completed_bh, 435 .deferred_free = rcu_bh_torture_deferred_free, 436 .sync = synchronize_rcu_bh, 437 .exp_sync = synchronize_rcu_bh_expedited, 438 .call = call_rcu_bh, 439 .cb_barrier = rcu_barrier_bh, 440 .fqs = rcu_bh_force_quiescent_state, 441 .stats = NULL, 442 .irq_capable = 1, 443 .name = "rcu_bh" 444 }; 445 446 /* 447 * Don't even think about trying any of these in real life!!! 448 * The names includes "busted", and they really means it! 449 * The only purpose of these functions is to provide a buggy RCU 450 * implementation to make sure that rcutorture correctly emits 451 * buggy-RCU error messages. 452 */ 453 static void rcu_busted_torture_deferred_free(struct rcu_torture *p) 454 { 455 /* This is a deliberate bug for testing purposes only! */ 456 rcu_torture_cb(&p->rtort_rcu); 457 } 458 459 static void synchronize_rcu_busted(void) 460 { 461 /* This is a deliberate bug for testing purposes only! */ 462 } 463 464 static void 465 call_rcu_busted(struct rcu_head *head, rcu_callback_t func) 466 { 467 /* This is a deliberate bug for testing purposes only! */ 468 func(head); 469 } 470 471 static struct rcu_torture_ops rcu_busted_ops = { 472 .ttype = INVALID_RCU_FLAVOR, 473 .init = rcu_sync_torture_init, 474 .readlock = rcu_torture_read_lock, 475 .read_delay = rcu_read_delay, /* just reuse rcu's version. */ 476 .readunlock = rcu_torture_read_unlock, 477 .started = rcu_no_completed, 478 .completed = rcu_no_completed, 479 .deferred_free = rcu_busted_torture_deferred_free, 480 .sync = synchronize_rcu_busted, 481 .exp_sync = synchronize_rcu_busted, 482 .call = call_rcu_busted, 483 .cb_barrier = NULL, 484 .fqs = NULL, 485 .stats = NULL, 486 .irq_capable = 1, 487 .name = "rcu_busted" 488 }; 489 490 /* 491 * Definitions for srcu torture testing. 492 */ 493 494 DEFINE_STATIC_SRCU(srcu_ctl); 495 static struct srcu_struct srcu_ctld; 496 static struct srcu_struct *srcu_ctlp = &srcu_ctl; 497 498 static int srcu_torture_read_lock(void) __acquires(srcu_ctlp) 499 { 500 return srcu_read_lock(srcu_ctlp); 501 } 502 503 static void srcu_read_delay(struct torture_random_state *rrsp) 504 { 505 long delay; 506 const long uspertick = 1000000 / HZ; 507 const long longdelay = 10; 508 509 /* We want there to be long-running readers, but not all the time. */ 510 511 delay = torture_random(rrsp) % 512 (nrealreaders * 2 * longdelay * uspertick); 513 if (!delay) 514 schedule_timeout_interruptible(longdelay); 515 else 516 rcu_read_delay(rrsp); 517 } 518 519 static void srcu_torture_read_unlock(int idx) __releases(srcu_ctlp) 520 { 521 srcu_read_unlock(srcu_ctlp, idx); 522 } 523 524 static unsigned long srcu_torture_completed(void) 525 { 526 return srcu_batches_completed(srcu_ctlp); 527 } 528 529 static void srcu_torture_deferred_free(struct rcu_torture *rp) 530 { 531 call_srcu(srcu_ctlp, &rp->rtort_rcu, rcu_torture_cb); 532 } 533 534 static void srcu_torture_synchronize(void) 535 { 536 synchronize_srcu(srcu_ctlp); 537 } 538 539 static void srcu_torture_call(struct rcu_head *head, 540 rcu_callback_t func) 541 { 542 call_srcu(srcu_ctlp, head, func); 543 } 544 545 static void srcu_torture_barrier(void) 546 { 547 srcu_barrier(srcu_ctlp); 548 } 549 550 static void srcu_torture_stats(void) 551 { 552 int cpu; 553 int idx = srcu_ctlp->completed & 0x1; 554 555 pr_alert("%s%s per-CPU(idx=%d):", 556 torture_type, TORTURE_FLAG, idx); 557 for_each_possible_cpu(cpu) { 558 long c0, c1; 559 560 c0 = (long)per_cpu_ptr(srcu_ctlp->per_cpu_ref, cpu)->c[!idx]; 561 c1 = (long)per_cpu_ptr(srcu_ctlp->per_cpu_ref, cpu)->c[idx]; 562 pr_cont(" %d(%ld,%ld)", cpu, c0, c1); 563 } 564 pr_cont("\n"); 565 } 566 567 static void srcu_torture_synchronize_expedited(void) 568 { 569 synchronize_srcu_expedited(srcu_ctlp); 570 } 571 572 static struct rcu_torture_ops srcu_ops = { 573 .ttype = SRCU_FLAVOR, 574 .init = rcu_sync_torture_init, 575 .readlock = srcu_torture_read_lock, 576 .read_delay = srcu_read_delay, 577 .readunlock = srcu_torture_read_unlock, 578 .started = NULL, 579 .completed = srcu_torture_completed, 580 .deferred_free = srcu_torture_deferred_free, 581 .sync = srcu_torture_synchronize, 582 .exp_sync = srcu_torture_synchronize_expedited, 583 .call = srcu_torture_call, 584 .cb_barrier = srcu_torture_barrier, 585 .stats = srcu_torture_stats, 586 .name = "srcu" 587 }; 588 589 static void srcu_torture_init(void) 590 { 591 rcu_sync_torture_init(); 592 WARN_ON(init_srcu_struct(&srcu_ctld)); 593 srcu_ctlp = &srcu_ctld; 594 } 595 596 static void srcu_torture_cleanup(void) 597 { 598 cleanup_srcu_struct(&srcu_ctld); 599 srcu_ctlp = &srcu_ctl; /* In case of a later rcutorture run. */ 600 } 601 602 /* As above, but dynamically allocated. */ 603 static struct rcu_torture_ops srcud_ops = { 604 .ttype = SRCU_FLAVOR, 605 .init = srcu_torture_init, 606 .cleanup = srcu_torture_cleanup, 607 .readlock = srcu_torture_read_lock, 608 .read_delay = srcu_read_delay, 609 .readunlock = srcu_torture_read_unlock, 610 .started = NULL, 611 .completed = srcu_torture_completed, 612 .deferred_free = srcu_torture_deferred_free, 613 .sync = srcu_torture_synchronize, 614 .exp_sync = srcu_torture_synchronize_expedited, 615 .call = srcu_torture_call, 616 .cb_barrier = srcu_torture_barrier, 617 .stats = srcu_torture_stats, 618 .name = "srcud" 619 }; 620 621 /* 622 * Definitions for sched torture testing. 623 */ 624 625 static int sched_torture_read_lock(void) 626 { 627 preempt_disable(); 628 return 0; 629 } 630 631 static void sched_torture_read_unlock(int idx) 632 { 633 preempt_enable(); 634 } 635 636 static void rcu_sched_torture_deferred_free(struct rcu_torture *p) 637 { 638 call_rcu_sched(&p->rtort_rcu, rcu_torture_cb); 639 } 640 641 static struct rcu_torture_ops sched_ops = { 642 .ttype = RCU_SCHED_FLAVOR, 643 .init = rcu_sync_torture_init, 644 .readlock = sched_torture_read_lock, 645 .read_delay = rcu_read_delay, /* just reuse rcu's version. */ 646 .readunlock = sched_torture_read_unlock, 647 .started = rcu_batches_started_sched, 648 .completed = rcu_batches_completed_sched, 649 .deferred_free = rcu_sched_torture_deferred_free, 650 .sync = synchronize_sched, 651 .exp_sync = synchronize_sched_expedited, 652 .get_state = get_state_synchronize_sched, 653 .cond_sync = cond_synchronize_sched, 654 .call = call_rcu_sched, 655 .cb_barrier = rcu_barrier_sched, 656 .fqs = rcu_sched_force_quiescent_state, 657 .stats = NULL, 658 .irq_capable = 1, 659 .name = "sched" 660 }; 661 662 #ifdef CONFIG_TASKS_RCU 663 664 /* 665 * Definitions for RCU-tasks torture testing. 666 */ 667 668 static int tasks_torture_read_lock(void) 669 { 670 return 0; 671 } 672 673 static void tasks_torture_read_unlock(int idx) 674 { 675 } 676 677 static void rcu_tasks_torture_deferred_free(struct rcu_torture *p) 678 { 679 call_rcu_tasks(&p->rtort_rcu, rcu_torture_cb); 680 } 681 682 static struct rcu_torture_ops tasks_ops = { 683 .ttype = RCU_TASKS_FLAVOR, 684 .init = rcu_sync_torture_init, 685 .readlock = tasks_torture_read_lock, 686 .read_delay = rcu_read_delay, /* just reuse rcu's version. */ 687 .readunlock = tasks_torture_read_unlock, 688 .started = rcu_no_completed, 689 .completed = rcu_no_completed, 690 .deferred_free = rcu_tasks_torture_deferred_free, 691 .sync = synchronize_rcu_tasks, 692 .exp_sync = synchronize_rcu_tasks, 693 .call = call_rcu_tasks, 694 .cb_barrier = rcu_barrier_tasks, 695 .fqs = NULL, 696 .stats = NULL, 697 .irq_capable = 1, 698 .name = "tasks" 699 }; 700 701 #define RCUTORTURE_TASKS_OPS &tasks_ops, 702 703 static bool __maybe_unused torturing_tasks(void) 704 { 705 return cur_ops == &tasks_ops; 706 } 707 708 #else /* #ifdef CONFIG_TASKS_RCU */ 709 710 #define RCUTORTURE_TASKS_OPS 711 712 static bool __maybe_unused torturing_tasks(void) 713 { 714 return false; 715 } 716 717 #endif /* #else #ifdef CONFIG_TASKS_RCU */ 718 719 /* 720 * RCU torture priority-boost testing. Runs one real-time thread per 721 * CPU for moderate bursts, repeatedly registering RCU callbacks and 722 * spinning waiting for them to be invoked. If a given callback takes 723 * too long to be invoked, we assume that priority inversion has occurred. 724 */ 725 726 struct rcu_boost_inflight { 727 struct rcu_head rcu; 728 int inflight; 729 }; 730 731 static void rcu_torture_boost_cb(struct rcu_head *head) 732 { 733 struct rcu_boost_inflight *rbip = 734 container_of(head, struct rcu_boost_inflight, rcu); 735 736 /* Ensure RCU-core accesses precede clearing ->inflight */ 737 smp_store_release(&rbip->inflight, 0); 738 } 739 740 static int rcu_torture_boost(void *arg) 741 { 742 unsigned long call_rcu_time; 743 unsigned long endtime; 744 unsigned long oldstarttime; 745 struct rcu_boost_inflight rbi = { .inflight = 0 }; 746 struct sched_param sp; 747 748 VERBOSE_TOROUT_STRING("rcu_torture_boost started"); 749 750 /* Set real-time priority. */ 751 sp.sched_priority = 1; 752 if (sched_setscheduler(current, SCHED_FIFO, &sp) < 0) { 753 VERBOSE_TOROUT_STRING("rcu_torture_boost RT prio failed!"); 754 n_rcu_torture_boost_rterror++; 755 } 756 757 init_rcu_head_on_stack(&rbi.rcu); 758 /* Each pass through the following loop does one boost-test cycle. */ 759 do { 760 /* Wait for the next test interval. */ 761 oldstarttime = boost_starttime; 762 while (ULONG_CMP_LT(jiffies, oldstarttime)) { 763 schedule_timeout_interruptible(oldstarttime - jiffies); 764 stutter_wait("rcu_torture_boost"); 765 if (torture_must_stop()) 766 goto checkwait; 767 } 768 769 /* Do one boost-test interval. */ 770 endtime = oldstarttime + test_boost_duration * HZ; 771 call_rcu_time = jiffies; 772 while (ULONG_CMP_LT(jiffies, endtime)) { 773 /* If we don't have a callback in flight, post one. */ 774 if (!smp_load_acquire(&rbi.inflight)) { 775 /* RCU core before ->inflight = 1. */ 776 smp_store_release(&rbi.inflight, 1); 777 call_rcu(&rbi.rcu, rcu_torture_boost_cb); 778 if (jiffies - call_rcu_time > 779 test_boost_duration * HZ - HZ / 2) { 780 VERBOSE_TOROUT_STRING("rcu_torture_boost boosting failed"); 781 n_rcu_torture_boost_failure++; 782 } 783 call_rcu_time = jiffies; 784 } 785 stutter_wait("rcu_torture_boost"); 786 if (torture_must_stop()) 787 goto checkwait; 788 } 789 790 /* 791 * Set the start time of the next test interval. 792 * Yes, this is vulnerable to long delays, but such 793 * delays simply cause a false negative for the next 794 * interval. Besides, we are running at RT priority, 795 * so delays should be relatively rare. 796 */ 797 while (oldstarttime == boost_starttime && 798 !kthread_should_stop()) { 799 if (mutex_trylock(&boost_mutex)) { 800 boost_starttime = jiffies + 801 test_boost_interval * HZ; 802 n_rcu_torture_boosts++; 803 mutex_unlock(&boost_mutex); 804 break; 805 } 806 schedule_timeout_uninterruptible(1); 807 } 808 809 /* Go do the stutter. */ 810 checkwait: stutter_wait("rcu_torture_boost"); 811 } while (!torture_must_stop()); 812 813 /* Clean up and exit. */ 814 while (!kthread_should_stop() || smp_load_acquire(&rbi.inflight)) { 815 torture_shutdown_absorb("rcu_torture_boost"); 816 schedule_timeout_uninterruptible(1); 817 } 818 destroy_rcu_head_on_stack(&rbi.rcu); 819 torture_kthread_stopping("rcu_torture_boost"); 820 return 0; 821 } 822 823 static void rcu_torture_cbflood_cb(struct rcu_head *rhp) 824 { 825 } 826 827 /* 828 * RCU torture callback-flood kthread. Repeatedly induces bursts of calls 829 * to call_rcu() or analogous, increasing the probability of occurrence 830 * of callback-overflow corner cases. 831 */ 832 static int 833 rcu_torture_cbflood(void *arg) 834 { 835 int err = 1; 836 int i; 837 int j; 838 struct rcu_head *rhp; 839 840 if (cbflood_n_per_burst > 0 && 841 cbflood_inter_holdoff > 0 && 842 cbflood_intra_holdoff > 0 && 843 cur_ops->call && 844 cur_ops->cb_barrier) { 845 rhp = vmalloc(sizeof(*rhp) * 846 cbflood_n_burst * cbflood_n_per_burst); 847 err = !rhp; 848 } 849 if (err) { 850 VERBOSE_TOROUT_STRING("rcu_torture_cbflood disabled: Bad args or OOM"); 851 goto wait_for_stop; 852 } 853 VERBOSE_TOROUT_STRING("rcu_torture_cbflood task started"); 854 do { 855 schedule_timeout_interruptible(cbflood_inter_holdoff); 856 atomic_long_inc(&n_cbfloods); 857 WARN_ON(signal_pending(current)); 858 for (i = 0; i < cbflood_n_burst; i++) { 859 for (j = 0; j < cbflood_n_per_burst; j++) { 860 cur_ops->call(&rhp[i * cbflood_n_per_burst + j], 861 rcu_torture_cbflood_cb); 862 } 863 schedule_timeout_interruptible(cbflood_intra_holdoff); 864 WARN_ON(signal_pending(current)); 865 } 866 cur_ops->cb_barrier(); 867 stutter_wait("rcu_torture_cbflood"); 868 } while (!torture_must_stop()); 869 vfree(rhp); 870 wait_for_stop: 871 torture_kthread_stopping("rcu_torture_cbflood"); 872 return 0; 873 } 874 875 /* 876 * RCU torture force-quiescent-state kthread. Repeatedly induces 877 * bursts of calls to force_quiescent_state(), increasing the probability 878 * of occurrence of some important types of race conditions. 879 */ 880 static int 881 rcu_torture_fqs(void *arg) 882 { 883 unsigned long fqs_resume_time; 884 int fqs_burst_remaining; 885 886 VERBOSE_TOROUT_STRING("rcu_torture_fqs task started"); 887 do { 888 fqs_resume_time = jiffies + fqs_stutter * HZ; 889 while (ULONG_CMP_LT(jiffies, fqs_resume_time) && 890 !kthread_should_stop()) { 891 schedule_timeout_interruptible(1); 892 } 893 fqs_burst_remaining = fqs_duration; 894 while (fqs_burst_remaining > 0 && 895 !kthread_should_stop()) { 896 cur_ops->fqs(); 897 udelay(fqs_holdoff); 898 fqs_burst_remaining -= fqs_holdoff; 899 } 900 stutter_wait("rcu_torture_fqs"); 901 } while (!torture_must_stop()); 902 torture_kthread_stopping("rcu_torture_fqs"); 903 return 0; 904 } 905 906 /* 907 * RCU torture writer kthread. Repeatedly substitutes a new structure 908 * for that pointed to by rcu_torture_current, freeing the old structure 909 * after a series of grace periods (the "pipeline"). 910 */ 911 static int 912 rcu_torture_writer(void *arg) 913 { 914 bool can_expedite = !rcu_gp_is_expedited() && !rcu_gp_is_normal(); 915 int expediting = 0; 916 unsigned long gp_snap; 917 bool gp_cond1 = gp_cond, gp_exp1 = gp_exp, gp_normal1 = gp_normal; 918 bool gp_sync1 = gp_sync; 919 int i; 920 struct rcu_torture *rp; 921 struct rcu_torture *old_rp; 922 static DEFINE_TORTURE_RANDOM(rand); 923 int synctype[] = { RTWS_DEF_FREE, RTWS_EXP_SYNC, 924 RTWS_COND_GET, RTWS_SYNC }; 925 int nsynctypes = 0; 926 927 VERBOSE_TOROUT_STRING("rcu_torture_writer task started"); 928 if (!can_expedite) { 929 pr_alert("%s" TORTURE_FLAG 930 " GP expediting controlled from boot/sysfs for %s,\n", 931 torture_type, cur_ops->name); 932 pr_alert("%s" TORTURE_FLAG 933 " Disabled dynamic grace-period expediting.\n", 934 torture_type); 935 } 936 937 /* Initialize synctype[] array. If none set, take default. */ 938 if (!gp_cond1 && !gp_exp1 && !gp_normal1 && !gp_sync1) 939 gp_cond1 = gp_exp1 = gp_normal1 = gp_sync1 = true; 940 if (gp_cond1 && cur_ops->get_state && cur_ops->cond_sync) 941 synctype[nsynctypes++] = RTWS_COND_GET; 942 else if (gp_cond && (!cur_ops->get_state || !cur_ops->cond_sync)) 943 pr_alert("rcu_torture_writer: gp_cond without primitives.\n"); 944 if (gp_exp1 && cur_ops->exp_sync) 945 synctype[nsynctypes++] = RTWS_EXP_SYNC; 946 else if (gp_exp && !cur_ops->exp_sync) 947 pr_alert("rcu_torture_writer: gp_exp without primitives.\n"); 948 if (gp_normal1 && cur_ops->deferred_free) 949 synctype[nsynctypes++] = RTWS_DEF_FREE; 950 else if (gp_normal && !cur_ops->deferred_free) 951 pr_alert("rcu_torture_writer: gp_normal without primitives.\n"); 952 if (gp_sync1 && cur_ops->sync) 953 synctype[nsynctypes++] = RTWS_SYNC; 954 else if (gp_sync && !cur_ops->sync) 955 pr_alert("rcu_torture_writer: gp_sync without primitives.\n"); 956 if (WARN_ONCE(nsynctypes == 0, 957 "rcu_torture_writer: No update-side primitives.\n")) { 958 /* 959 * No updates primitives, so don't try updating. 960 * The resulting test won't be testing much, hence the 961 * above WARN_ONCE(). 962 */ 963 rcu_torture_writer_state = RTWS_STOPPING; 964 torture_kthread_stopping("rcu_torture_writer"); 965 } 966 967 do { 968 rcu_torture_writer_state = RTWS_FIXED_DELAY; 969 schedule_timeout_uninterruptible(1); 970 rp = rcu_torture_alloc(); 971 if (rp == NULL) 972 continue; 973 rp->rtort_pipe_count = 0; 974 rcu_torture_writer_state = RTWS_DELAY; 975 udelay(torture_random(&rand) & 0x3ff); 976 rcu_torture_writer_state = RTWS_REPLACE; 977 old_rp = rcu_dereference_check(rcu_torture_current, 978 current == writer_task); 979 rp->rtort_mbtest = 1; 980 rcu_assign_pointer(rcu_torture_current, rp); 981 smp_wmb(); /* Mods to old_rp must follow rcu_assign_pointer() */ 982 if (old_rp) { 983 i = old_rp->rtort_pipe_count; 984 if (i > RCU_TORTURE_PIPE_LEN) 985 i = RCU_TORTURE_PIPE_LEN; 986 atomic_inc(&rcu_torture_wcount[i]); 987 old_rp->rtort_pipe_count++; 988 switch (synctype[torture_random(&rand) % nsynctypes]) { 989 case RTWS_DEF_FREE: 990 rcu_torture_writer_state = RTWS_DEF_FREE; 991 cur_ops->deferred_free(old_rp); 992 break; 993 case RTWS_EXP_SYNC: 994 rcu_torture_writer_state = RTWS_EXP_SYNC; 995 cur_ops->exp_sync(); 996 rcu_torture_pipe_update(old_rp); 997 break; 998 case RTWS_COND_GET: 999 rcu_torture_writer_state = RTWS_COND_GET; 1000 gp_snap = cur_ops->get_state(); 1001 i = torture_random(&rand) % 16; 1002 if (i != 0) 1003 schedule_timeout_interruptible(i); 1004 udelay(torture_random(&rand) % 1000); 1005 rcu_torture_writer_state = RTWS_COND_SYNC; 1006 cur_ops->cond_sync(gp_snap); 1007 rcu_torture_pipe_update(old_rp); 1008 break; 1009 case RTWS_SYNC: 1010 rcu_torture_writer_state = RTWS_SYNC; 1011 cur_ops->sync(); 1012 rcu_torture_pipe_update(old_rp); 1013 break; 1014 default: 1015 WARN_ON_ONCE(1); 1016 break; 1017 } 1018 } 1019 rcutorture_record_progress(++rcu_torture_current_version); 1020 /* Cycle through nesting levels of rcu_expedite_gp() calls. */ 1021 if (can_expedite && 1022 !(torture_random(&rand) & 0xff & (!!expediting - 1))) { 1023 WARN_ON_ONCE(expediting == 0 && rcu_gp_is_expedited()); 1024 if (expediting >= 0) 1025 rcu_expedite_gp(); 1026 else 1027 rcu_unexpedite_gp(); 1028 if (++expediting > 3) 1029 expediting = -expediting; 1030 } 1031 rcu_torture_writer_state = RTWS_STUTTER; 1032 stutter_wait("rcu_torture_writer"); 1033 } while (!torture_must_stop()); 1034 /* Reset expediting back to unexpedited. */ 1035 if (expediting > 0) 1036 expediting = -expediting; 1037 while (can_expedite && expediting++ < 0) 1038 rcu_unexpedite_gp(); 1039 WARN_ON_ONCE(can_expedite && rcu_gp_is_expedited()); 1040 rcu_torture_writer_state = RTWS_STOPPING; 1041 torture_kthread_stopping("rcu_torture_writer"); 1042 return 0; 1043 } 1044 1045 /* 1046 * RCU torture fake writer kthread. Repeatedly calls sync, with a random 1047 * delay between calls. 1048 */ 1049 static int 1050 rcu_torture_fakewriter(void *arg) 1051 { 1052 DEFINE_TORTURE_RANDOM(rand); 1053 1054 VERBOSE_TOROUT_STRING("rcu_torture_fakewriter task started"); 1055 set_user_nice(current, MAX_NICE); 1056 1057 do { 1058 schedule_timeout_uninterruptible(1 + torture_random(&rand)%10); 1059 udelay(torture_random(&rand) & 0x3ff); 1060 if (cur_ops->cb_barrier != NULL && 1061 torture_random(&rand) % (nfakewriters * 8) == 0) { 1062 cur_ops->cb_barrier(); 1063 } else if (gp_normal == gp_exp) { 1064 if (torture_random(&rand) & 0x80) 1065 cur_ops->sync(); 1066 else 1067 cur_ops->exp_sync(); 1068 } else if (gp_normal) { 1069 cur_ops->sync(); 1070 } else { 1071 cur_ops->exp_sync(); 1072 } 1073 stutter_wait("rcu_torture_fakewriter"); 1074 } while (!torture_must_stop()); 1075 1076 torture_kthread_stopping("rcu_torture_fakewriter"); 1077 return 0; 1078 } 1079 1080 /* 1081 * RCU torture reader from timer handler. Dereferences rcu_torture_current, 1082 * incrementing the corresponding element of the pipeline array. The 1083 * counter in the element should never be greater than 1, otherwise, the 1084 * RCU implementation is broken. 1085 */ 1086 static void rcu_torture_timer(unsigned long unused) 1087 { 1088 int idx; 1089 unsigned long started; 1090 unsigned long completed; 1091 static DEFINE_TORTURE_RANDOM(rand); 1092 static DEFINE_SPINLOCK(rand_lock); 1093 struct rcu_torture *p; 1094 int pipe_count; 1095 unsigned long long ts; 1096 1097 idx = cur_ops->readlock(); 1098 if (cur_ops->started) 1099 started = cur_ops->started(); 1100 else 1101 started = cur_ops->completed(); 1102 ts = rcu_trace_clock_local(); 1103 p = rcu_dereference_check(rcu_torture_current, 1104 rcu_read_lock_bh_held() || 1105 rcu_read_lock_sched_held() || 1106 srcu_read_lock_held(srcu_ctlp) || 1107 torturing_tasks()); 1108 if (p == NULL) { 1109 /* Leave because rcu_torture_writer is not yet underway */ 1110 cur_ops->readunlock(idx); 1111 return; 1112 } 1113 if (p->rtort_mbtest == 0) 1114 atomic_inc(&n_rcu_torture_mberror); 1115 spin_lock(&rand_lock); 1116 cur_ops->read_delay(&rand); 1117 n_rcu_torture_timers++; 1118 spin_unlock(&rand_lock); 1119 preempt_disable(); 1120 pipe_count = p->rtort_pipe_count; 1121 if (pipe_count > RCU_TORTURE_PIPE_LEN) { 1122 /* Should not happen, but... */ 1123 pipe_count = RCU_TORTURE_PIPE_LEN; 1124 } 1125 completed = cur_ops->completed(); 1126 if (pipe_count > 1) { 1127 do_trace_rcu_torture_read(cur_ops->name, &p->rtort_rcu, ts, 1128 started, completed); 1129 rcu_ftrace_dump(DUMP_ALL); 1130 } 1131 __this_cpu_inc(rcu_torture_count[pipe_count]); 1132 completed = completed - started; 1133 if (cur_ops->started) 1134 completed++; 1135 if (completed > RCU_TORTURE_PIPE_LEN) { 1136 /* Should not happen, but... */ 1137 completed = RCU_TORTURE_PIPE_LEN; 1138 } 1139 __this_cpu_inc(rcu_torture_batch[completed]); 1140 preempt_enable(); 1141 cur_ops->readunlock(idx); 1142 } 1143 1144 /* 1145 * RCU torture reader kthread. Repeatedly dereferences rcu_torture_current, 1146 * incrementing the corresponding element of the pipeline array. The 1147 * counter in the element should never be greater than 1, otherwise, the 1148 * RCU implementation is broken. 1149 */ 1150 static int 1151 rcu_torture_reader(void *arg) 1152 { 1153 unsigned long started; 1154 unsigned long completed; 1155 int idx; 1156 DEFINE_TORTURE_RANDOM(rand); 1157 struct rcu_torture *p; 1158 int pipe_count; 1159 struct timer_list t; 1160 unsigned long long ts; 1161 1162 VERBOSE_TOROUT_STRING("rcu_torture_reader task started"); 1163 set_user_nice(current, MAX_NICE); 1164 if (irqreader && cur_ops->irq_capable) 1165 setup_timer_on_stack(&t, rcu_torture_timer, 0); 1166 1167 do { 1168 if (irqreader && cur_ops->irq_capable) { 1169 if (!timer_pending(&t)) 1170 mod_timer(&t, jiffies + 1); 1171 } 1172 idx = cur_ops->readlock(); 1173 if (cur_ops->started) 1174 started = cur_ops->started(); 1175 else 1176 started = cur_ops->completed(); 1177 ts = rcu_trace_clock_local(); 1178 p = rcu_dereference_check(rcu_torture_current, 1179 rcu_read_lock_bh_held() || 1180 rcu_read_lock_sched_held() || 1181 srcu_read_lock_held(srcu_ctlp) || 1182 torturing_tasks()); 1183 if (p == NULL) { 1184 /* Wait for rcu_torture_writer to get underway */ 1185 cur_ops->readunlock(idx); 1186 schedule_timeout_interruptible(HZ); 1187 continue; 1188 } 1189 if (p->rtort_mbtest == 0) 1190 atomic_inc(&n_rcu_torture_mberror); 1191 cur_ops->read_delay(&rand); 1192 preempt_disable(); 1193 pipe_count = p->rtort_pipe_count; 1194 if (pipe_count > RCU_TORTURE_PIPE_LEN) { 1195 /* Should not happen, but... */ 1196 pipe_count = RCU_TORTURE_PIPE_LEN; 1197 } 1198 completed = cur_ops->completed(); 1199 if (pipe_count > 1) { 1200 do_trace_rcu_torture_read(cur_ops->name, &p->rtort_rcu, 1201 ts, started, completed); 1202 rcu_ftrace_dump(DUMP_ALL); 1203 } 1204 __this_cpu_inc(rcu_torture_count[pipe_count]); 1205 completed = completed - started; 1206 if (cur_ops->started) 1207 completed++; 1208 if (completed > RCU_TORTURE_PIPE_LEN) { 1209 /* Should not happen, but... */ 1210 completed = RCU_TORTURE_PIPE_LEN; 1211 } 1212 __this_cpu_inc(rcu_torture_batch[completed]); 1213 preempt_enable(); 1214 cur_ops->readunlock(idx); 1215 stutter_wait("rcu_torture_reader"); 1216 } while (!torture_must_stop()); 1217 if (irqreader && cur_ops->irq_capable) { 1218 del_timer_sync(&t); 1219 destroy_timer_on_stack(&t); 1220 } 1221 torture_kthread_stopping("rcu_torture_reader"); 1222 return 0; 1223 } 1224 1225 /* 1226 * Print torture statistics. Caller must ensure that there is only 1227 * one call to this function at a given time!!! This is normally 1228 * accomplished by relying on the module system to only have one copy 1229 * of the module loaded, and then by giving the rcu_torture_stats 1230 * kthread full control (or the init/cleanup functions when rcu_torture_stats 1231 * thread is not running). 1232 */ 1233 static void 1234 rcu_torture_stats_print(void) 1235 { 1236 int cpu; 1237 int i; 1238 long pipesummary[RCU_TORTURE_PIPE_LEN + 1] = { 0 }; 1239 long batchsummary[RCU_TORTURE_PIPE_LEN + 1] = { 0 }; 1240 static unsigned long rtcv_snap = ULONG_MAX; 1241 1242 for_each_possible_cpu(cpu) { 1243 for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) { 1244 pipesummary[i] += per_cpu(rcu_torture_count, cpu)[i]; 1245 batchsummary[i] += per_cpu(rcu_torture_batch, cpu)[i]; 1246 } 1247 } 1248 for (i = RCU_TORTURE_PIPE_LEN - 1; i >= 0; i--) { 1249 if (pipesummary[i] != 0) 1250 break; 1251 } 1252 1253 pr_alert("%s%s ", torture_type, TORTURE_FLAG); 1254 pr_cont("rtc: %p ver: %lu tfle: %d rta: %d rtaf: %d rtf: %d ", 1255 rcu_torture_current, 1256 rcu_torture_current_version, 1257 list_empty(&rcu_torture_freelist), 1258 atomic_read(&n_rcu_torture_alloc), 1259 atomic_read(&n_rcu_torture_alloc_fail), 1260 atomic_read(&n_rcu_torture_free)); 1261 pr_cont("rtmbe: %d rtbke: %ld rtbre: %ld ", 1262 atomic_read(&n_rcu_torture_mberror), 1263 n_rcu_torture_boost_ktrerror, 1264 n_rcu_torture_boost_rterror); 1265 pr_cont("rtbf: %ld rtb: %ld nt: %ld ", 1266 n_rcu_torture_boost_failure, 1267 n_rcu_torture_boosts, 1268 n_rcu_torture_timers); 1269 torture_onoff_stats(); 1270 pr_cont("barrier: %ld/%ld:%ld ", 1271 n_barrier_successes, 1272 n_barrier_attempts, 1273 n_rcu_torture_barrier_error); 1274 pr_cont("cbflood: %ld\n", atomic_long_read(&n_cbfloods)); 1275 1276 pr_alert("%s%s ", torture_type, TORTURE_FLAG); 1277 if (atomic_read(&n_rcu_torture_mberror) != 0 || 1278 n_rcu_torture_barrier_error != 0 || 1279 n_rcu_torture_boost_ktrerror != 0 || 1280 n_rcu_torture_boost_rterror != 0 || 1281 n_rcu_torture_boost_failure != 0 || 1282 i > 1) { 1283 pr_cont("%s", "!!! "); 1284 atomic_inc(&n_rcu_torture_error); 1285 WARN_ON_ONCE(1); 1286 } 1287 pr_cont("Reader Pipe: "); 1288 for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) 1289 pr_cont(" %ld", pipesummary[i]); 1290 pr_cont("\n"); 1291 1292 pr_alert("%s%s ", torture_type, TORTURE_FLAG); 1293 pr_cont("Reader Batch: "); 1294 for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) 1295 pr_cont(" %ld", batchsummary[i]); 1296 pr_cont("\n"); 1297 1298 pr_alert("%s%s ", torture_type, TORTURE_FLAG); 1299 pr_cont("Free-Block Circulation: "); 1300 for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) { 1301 pr_cont(" %d", atomic_read(&rcu_torture_wcount[i])); 1302 } 1303 pr_cont("\n"); 1304 1305 if (cur_ops->stats) 1306 cur_ops->stats(); 1307 if (rtcv_snap == rcu_torture_current_version && 1308 rcu_torture_current != NULL) { 1309 int __maybe_unused flags; 1310 unsigned long __maybe_unused gpnum; 1311 unsigned long __maybe_unused completed; 1312 1313 rcutorture_get_gp_data(cur_ops->ttype, 1314 &flags, &gpnum, &completed); 1315 pr_alert("??? Writer stall state %s(%d) g%lu c%lu f%#x\n", 1316 rcu_torture_writer_state_getname(), 1317 rcu_torture_writer_state, 1318 gpnum, completed, flags); 1319 show_rcu_gp_kthreads(); 1320 rcu_ftrace_dump(DUMP_ALL); 1321 } 1322 rtcv_snap = rcu_torture_current_version; 1323 } 1324 1325 /* 1326 * Periodically prints torture statistics, if periodic statistics printing 1327 * was specified via the stat_interval module parameter. 1328 */ 1329 static int 1330 rcu_torture_stats(void *arg) 1331 { 1332 VERBOSE_TOROUT_STRING("rcu_torture_stats task started"); 1333 do { 1334 schedule_timeout_interruptible(stat_interval * HZ); 1335 rcu_torture_stats_print(); 1336 torture_shutdown_absorb("rcu_torture_stats"); 1337 } while (!torture_must_stop()); 1338 torture_kthread_stopping("rcu_torture_stats"); 1339 return 0; 1340 } 1341 1342 static inline void 1343 rcu_torture_print_module_parms(struct rcu_torture_ops *cur_ops, const char *tag) 1344 { 1345 pr_alert("%s" TORTURE_FLAG 1346 "--- %s: nreaders=%d nfakewriters=%d " 1347 "stat_interval=%d verbose=%d test_no_idle_hz=%d " 1348 "shuffle_interval=%d stutter=%d irqreader=%d " 1349 "fqs_duration=%d fqs_holdoff=%d fqs_stutter=%d " 1350 "test_boost=%d/%d test_boost_interval=%d " 1351 "test_boost_duration=%d shutdown_secs=%d " 1352 "stall_cpu=%d stall_cpu_holdoff=%d " 1353 "n_barrier_cbs=%d " 1354 "onoff_interval=%d onoff_holdoff=%d\n", 1355 torture_type, tag, nrealreaders, nfakewriters, 1356 stat_interval, verbose, test_no_idle_hz, shuffle_interval, 1357 stutter, irqreader, fqs_duration, fqs_holdoff, fqs_stutter, 1358 test_boost, cur_ops->can_boost, 1359 test_boost_interval, test_boost_duration, shutdown_secs, 1360 stall_cpu, stall_cpu_holdoff, 1361 n_barrier_cbs, 1362 onoff_interval, onoff_holdoff); 1363 } 1364 1365 static void rcutorture_booster_cleanup(int cpu) 1366 { 1367 struct task_struct *t; 1368 1369 if (boost_tasks[cpu] == NULL) 1370 return; 1371 mutex_lock(&boost_mutex); 1372 t = boost_tasks[cpu]; 1373 boost_tasks[cpu] = NULL; 1374 mutex_unlock(&boost_mutex); 1375 1376 /* This must be outside of the mutex, otherwise deadlock! */ 1377 torture_stop_kthread(rcu_torture_boost, t); 1378 } 1379 1380 static int rcutorture_booster_init(int cpu) 1381 { 1382 int retval; 1383 1384 if (boost_tasks[cpu] != NULL) 1385 return 0; /* Already created, nothing more to do. */ 1386 1387 /* Don't allow time recalculation while creating a new task. */ 1388 mutex_lock(&boost_mutex); 1389 VERBOSE_TOROUT_STRING("Creating rcu_torture_boost task"); 1390 boost_tasks[cpu] = kthread_create_on_node(rcu_torture_boost, NULL, 1391 cpu_to_node(cpu), 1392 "rcu_torture_boost"); 1393 if (IS_ERR(boost_tasks[cpu])) { 1394 retval = PTR_ERR(boost_tasks[cpu]); 1395 VERBOSE_TOROUT_STRING("rcu_torture_boost task create failed"); 1396 n_rcu_torture_boost_ktrerror++; 1397 boost_tasks[cpu] = NULL; 1398 mutex_unlock(&boost_mutex); 1399 return retval; 1400 } 1401 kthread_bind(boost_tasks[cpu], cpu); 1402 wake_up_process(boost_tasks[cpu]); 1403 mutex_unlock(&boost_mutex); 1404 return 0; 1405 } 1406 1407 /* 1408 * CPU-stall kthread. It waits as specified by stall_cpu_holdoff, then 1409 * induces a CPU stall for the time specified by stall_cpu. 1410 */ 1411 static int rcu_torture_stall(void *args) 1412 { 1413 unsigned long stop_at; 1414 1415 VERBOSE_TOROUT_STRING("rcu_torture_stall task started"); 1416 if (stall_cpu_holdoff > 0) { 1417 VERBOSE_TOROUT_STRING("rcu_torture_stall begin holdoff"); 1418 schedule_timeout_interruptible(stall_cpu_holdoff * HZ); 1419 VERBOSE_TOROUT_STRING("rcu_torture_stall end holdoff"); 1420 } 1421 if (!kthread_should_stop()) { 1422 stop_at = get_seconds() + stall_cpu; 1423 /* RCU CPU stall is expected behavior in following code. */ 1424 pr_alert("rcu_torture_stall start.\n"); 1425 rcu_read_lock(); 1426 preempt_disable(); 1427 while (ULONG_CMP_LT(get_seconds(), stop_at)) 1428 continue; /* Induce RCU CPU stall warning. */ 1429 preempt_enable(); 1430 rcu_read_unlock(); 1431 pr_alert("rcu_torture_stall end.\n"); 1432 } 1433 torture_shutdown_absorb("rcu_torture_stall"); 1434 while (!kthread_should_stop()) 1435 schedule_timeout_interruptible(10 * HZ); 1436 return 0; 1437 } 1438 1439 /* Spawn CPU-stall kthread, if stall_cpu specified. */ 1440 static int __init rcu_torture_stall_init(void) 1441 { 1442 if (stall_cpu <= 0) 1443 return 0; 1444 return torture_create_kthread(rcu_torture_stall, NULL, stall_task); 1445 } 1446 1447 /* Callback function for RCU barrier testing. */ 1448 static void rcu_torture_barrier_cbf(struct rcu_head *rcu) 1449 { 1450 atomic_inc(&barrier_cbs_invoked); 1451 } 1452 1453 /* kthread function to register callbacks used to test RCU barriers. */ 1454 static int rcu_torture_barrier_cbs(void *arg) 1455 { 1456 long myid = (long)arg; 1457 bool lastphase = 0; 1458 bool newphase; 1459 struct rcu_head rcu; 1460 1461 init_rcu_head_on_stack(&rcu); 1462 VERBOSE_TOROUT_STRING("rcu_torture_barrier_cbs task started"); 1463 set_user_nice(current, MAX_NICE); 1464 do { 1465 wait_event(barrier_cbs_wq[myid], 1466 (newphase = 1467 smp_load_acquire(&barrier_phase)) != lastphase || 1468 torture_must_stop()); 1469 lastphase = newphase; 1470 if (torture_must_stop()) 1471 break; 1472 /* 1473 * The above smp_load_acquire() ensures barrier_phase load 1474 * is ordered before the following ->call(). 1475 */ 1476 local_irq_disable(); /* Just to test no-irq call_rcu(). */ 1477 cur_ops->call(&rcu, rcu_torture_barrier_cbf); 1478 local_irq_enable(); 1479 if (atomic_dec_and_test(&barrier_cbs_count)) 1480 wake_up(&barrier_wq); 1481 } while (!torture_must_stop()); 1482 if (cur_ops->cb_barrier != NULL) 1483 cur_ops->cb_barrier(); 1484 destroy_rcu_head_on_stack(&rcu); 1485 torture_kthread_stopping("rcu_torture_barrier_cbs"); 1486 return 0; 1487 } 1488 1489 /* kthread function to drive and coordinate RCU barrier testing. */ 1490 static int rcu_torture_barrier(void *arg) 1491 { 1492 int i; 1493 1494 VERBOSE_TOROUT_STRING("rcu_torture_barrier task starting"); 1495 do { 1496 atomic_set(&barrier_cbs_invoked, 0); 1497 atomic_set(&barrier_cbs_count, n_barrier_cbs); 1498 /* Ensure barrier_phase ordered after prior assignments. */ 1499 smp_store_release(&barrier_phase, !barrier_phase); 1500 for (i = 0; i < n_barrier_cbs; i++) 1501 wake_up(&barrier_cbs_wq[i]); 1502 wait_event(barrier_wq, 1503 atomic_read(&barrier_cbs_count) == 0 || 1504 torture_must_stop()); 1505 if (torture_must_stop()) 1506 break; 1507 n_barrier_attempts++; 1508 cur_ops->cb_barrier(); /* Implies smp_mb() for wait_event(). */ 1509 if (atomic_read(&barrier_cbs_invoked) != n_barrier_cbs) { 1510 n_rcu_torture_barrier_error++; 1511 pr_err("barrier_cbs_invoked = %d, n_barrier_cbs = %d\n", 1512 atomic_read(&barrier_cbs_invoked), 1513 n_barrier_cbs); 1514 WARN_ON_ONCE(1); 1515 } 1516 n_barrier_successes++; 1517 schedule_timeout_interruptible(HZ / 10); 1518 } while (!torture_must_stop()); 1519 torture_kthread_stopping("rcu_torture_barrier"); 1520 return 0; 1521 } 1522 1523 /* Initialize RCU barrier testing. */ 1524 static int rcu_torture_barrier_init(void) 1525 { 1526 int i; 1527 int ret; 1528 1529 if (n_barrier_cbs <= 0) 1530 return 0; 1531 if (cur_ops->call == NULL || cur_ops->cb_barrier == NULL) { 1532 pr_alert("%s" TORTURE_FLAG 1533 " Call or barrier ops missing for %s,\n", 1534 torture_type, cur_ops->name); 1535 pr_alert("%s" TORTURE_FLAG 1536 " RCU barrier testing omitted from run.\n", 1537 torture_type); 1538 return 0; 1539 } 1540 atomic_set(&barrier_cbs_count, 0); 1541 atomic_set(&barrier_cbs_invoked, 0); 1542 barrier_cbs_tasks = 1543 kzalloc(n_barrier_cbs * sizeof(barrier_cbs_tasks[0]), 1544 GFP_KERNEL); 1545 barrier_cbs_wq = 1546 kzalloc(n_barrier_cbs * sizeof(barrier_cbs_wq[0]), 1547 GFP_KERNEL); 1548 if (barrier_cbs_tasks == NULL || !barrier_cbs_wq) 1549 return -ENOMEM; 1550 for (i = 0; i < n_barrier_cbs; i++) { 1551 init_waitqueue_head(&barrier_cbs_wq[i]); 1552 ret = torture_create_kthread(rcu_torture_barrier_cbs, 1553 (void *)(long)i, 1554 barrier_cbs_tasks[i]); 1555 if (ret) 1556 return ret; 1557 } 1558 return torture_create_kthread(rcu_torture_barrier, NULL, barrier_task); 1559 } 1560 1561 /* Clean up after RCU barrier testing. */ 1562 static void rcu_torture_barrier_cleanup(void) 1563 { 1564 int i; 1565 1566 torture_stop_kthread(rcu_torture_barrier, barrier_task); 1567 if (barrier_cbs_tasks != NULL) { 1568 for (i = 0; i < n_barrier_cbs; i++) 1569 torture_stop_kthread(rcu_torture_barrier_cbs, 1570 barrier_cbs_tasks[i]); 1571 kfree(barrier_cbs_tasks); 1572 barrier_cbs_tasks = NULL; 1573 } 1574 if (barrier_cbs_wq != NULL) { 1575 kfree(barrier_cbs_wq); 1576 barrier_cbs_wq = NULL; 1577 } 1578 } 1579 1580 static int rcutorture_cpu_notify(struct notifier_block *self, 1581 unsigned long action, void *hcpu) 1582 { 1583 long cpu = (long)hcpu; 1584 1585 switch (action & ~CPU_TASKS_FROZEN) { 1586 case CPU_ONLINE: 1587 case CPU_DOWN_FAILED: 1588 (void)rcutorture_booster_init(cpu); 1589 break; 1590 case CPU_DOWN_PREPARE: 1591 rcutorture_booster_cleanup(cpu); 1592 break; 1593 default: 1594 break; 1595 } 1596 return NOTIFY_OK; 1597 } 1598 1599 static struct notifier_block rcutorture_cpu_nb = { 1600 .notifier_call = rcutorture_cpu_notify, 1601 }; 1602 1603 static void 1604 rcu_torture_cleanup(void) 1605 { 1606 int i; 1607 1608 rcutorture_record_test_transition(); 1609 if (torture_cleanup_begin()) { 1610 if (cur_ops->cb_barrier != NULL) 1611 cur_ops->cb_barrier(); 1612 return; 1613 } 1614 1615 rcu_torture_barrier_cleanup(); 1616 torture_stop_kthread(rcu_torture_stall, stall_task); 1617 torture_stop_kthread(rcu_torture_writer, writer_task); 1618 1619 if (reader_tasks) { 1620 for (i = 0; i < nrealreaders; i++) 1621 torture_stop_kthread(rcu_torture_reader, 1622 reader_tasks[i]); 1623 kfree(reader_tasks); 1624 } 1625 rcu_torture_current = NULL; 1626 1627 if (fakewriter_tasks) { 1628 for (i = 0; i < nfakewriters; i++) { 1629 torture_stop_kthread(rcu_torture_fakewriter, 1630 fakewriter_tasks[i]); 1631 } 1632 kfree(fakewriter_tasks); 1633 fakewriter_tasks = NULL; 1634 } 1635 1636 torture_stop_kthread(rcu_torture_stats, stats_task); 1637 torture_stop_kthread(rcu_torture_fqs, fqs_task); 1638 for (i = 0; i < ncbflooders; i++) 1639 torture_stop_kthread(rcu_torture_cbflood, cbflood_task[i]); 1640 if ((test_boost == 1 && cur_ops->can_boost) || 1641 test_boost == 2) { 1642 unregister_cpu_notifier(&rcutorture_cpu_nb); 1643 for_each_possible_cpu(i) 1644 rcutorture_booster_cleanup(i); 1645 } 1646 1647 /* 1648 * Wait for all RCU callbacks to fire, then do flavor-specific 1649 * cleanup operations. 1650 */ 1651 if (cur_ops->cb_barrier != NULL) 1652 cur_ops->cb_barrier(); 1653 if (cur_ops->cleanup != NULL) 1654 cur_ops->cleanup(); 1655 1656 rcu_torture_stats_print(); /* -After- the stats thread is stopped! */ 1657 1658 if (atomic_read(&n_rcu_torture_error) || n_rcu_torture_barrier_error) 1659 rcu_torture_print_module_parms(cur_ops, "End of test: FAILURE"); 1660 else if (torture_onoff_failures()) 1661 rcu_torture_print_module_parms(cur_ops, 1662 "End of test: RCU_HOTPLUG"); 1663 else 1664 rcu_torture_print_module_parms(cur_ops, "End of test: SUCCESS"); 1665 torture_cleanup_end(); 1666 } 1667 1668 #ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD 1669 static void rcu_torture_leak_cb(struct rcu_head *rhp) 1670 { 1671 } 1672 1673 static void rcu_torture_err_cb(struct rcu_head *rhp) 1674 { 1675 /* 1676 * This -might- happen due to race conditions, but is unlikely. 1677 * The scenario that leads to this happening is that the 1678 * first of the pair of duplicate callbacks is queued, 1679 * someone else starts a grace period that includes that 1680 * callback, then the second of the pair must wait for the 1681 * next grace period. Unlikely, but can happen. If it 1682 * does happen, the debug-objects subsystem won't have splatted. 1683 */ 1684 pr_alert("rcutorture: duplicated callback was invoked.\n"); 1685 } 1686 #endif /* #ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD */ 1687 1688 /* 1689 * Verify that double-free causes debug-objects to complain, but only 1690 * if CONFIG_DEBUG_OBJECTS_RCU_HEAD=y. Otherwise, say that the test 1691 * cannot be carried out. 1692 */ 1693 static void rcu_test_debug_objects(void) 1694 { 1695 #ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD 1696 struct rcu_head rh1; 1697 struct rcu_head rh2; 1698 1699 init_rcu_head_on_stack(&rh1); 1700 init_rcu_head_on_stack(&rh2); 1701 pr_alert("rcutorture: WARN: Duplicate call_rcu() test starting.\n"); 1702 1703 /* Try to queue the rh2 pair of callbacks for the same grace period. */ 1704 preempt_disable(); /* Prevent preemption from interrupting test. */ 1705 rcu_read_lock(); /* Make it impossible to finish a grace period. */ 1706 call_rcu(&rh1, rcu_torture_leak_cb); /* Start grace period. */ 1707 local_irq_disable(); /* Make it harder to start a new grace period. */ 1708 call_rcu(&rh2, rcu_torture_leak_cb); 1709 call_rcu(&rh2, rcu_torture_err_cb); /* Duplicate callback. */ 1710 local_irq_enable(); 1711 rcu_read_unlock(); 1712 preempt_enable(); 1713 1714 /* Wait for them all to get done so we can safely return. */ 1715 rcu_barrier(); 1716 pr_alert("rcutorture: WARN: Duplicate call_rcu() test complete.\n"); 1717 destroy_rcu_head_on_stack(&rh1); 1718 destroy_rcu_head_on_stack(&rh2); 1719 #else /* #ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD */ 1720 pr_alert("rcutorture: !CONFIG_DEBUG_OBJECTS_RCU_HEAD, not testing duplicate call_rcu()\n"); 1721 #endif /* #else #ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD */ 1722 } 1723 1724 static int __init 1725 rcu_torture_init(void) 1726 { 1727 int i; 1728 int cpu; 1729 int firsterr = 0; 1730 static struct rcu_torture_ops *torture_ops[] = { 1731 &rcu_ops, &rcu_bh_ops, &rcu_busted_ops, &srcu_ops, &srcud_ops, 1732 &sched_ops, RCUTORTURE_TASKS_OPS 1733 }; 1734 1735 if (!torture_init_begin(torture_type, verbose, &torture_runnable)) 1736 return -EBUSY; 1737 1738 /* Process args and tell the world that the torturer is on the job. */ 1739 for (i = 0; i < ARRAY_SIZE(torture_ops); i++) { 1740 cur_ops = torture_ops[i]; 1741 if (strcmp(torture_type, cur_ops->name) == 0) 1742 break; 1743 } 1744 if (i == ARRAY_SIZE(torture_ops)) { 1745 pr_alert("rcu-torture: invalid torture type: \"%s\"\n", 1746 torture_type); 1747 pr_alert("rcu-torture types:"); 1748 for (i = 0; i < ARRAY_SIZE(torture_ops); i++) 1749 pr_alert(" %s", torture_ops[i]->name); 1750 pr_alert("\n"); 1751 firsterr = -EINVAL; 1752 goto unwind; 1753 } 1754 if (cur_ops->fqs == NULL && fqs_duration != 0) { 1755 pr_alert("rcu-torture: ->fqs NULL and non-zero fqs_duration, fqs disabled.\n"); 1756 fqs_duration = 0; 1757 } 1758 if (cur_ops->init) 1759 cur_ops->init(); 1760 1761 if (nreaders >= 0) { 1762 nrealreaders = nreaders; 1763 } else { 1764 nrealreaders = num_online_cpus() - 2 - nreaders; 1765 if (nrealreaders <= 0) 1766 nrealreaders = 1; 1767 } 1768 rcu_torture_print_module_parms(cur_ops, "Start of test"); 1769 1770 /* Set up the freelist. */ 1771 1772 INIT_LIST_HEAD(&rcu_torture_freelist); 1773 for (i = 0; i < ARRAY_SIZE(rcu_tortures); i++) { 1774 rcu_tortures[i].rtort_mbtest = 0; 1775 list_add_tail(&rcu_tortures[i].rtort_free, 1776 &rcu_torture_freelist); 1777 } 1778 1779 /* Initialize the statistics so that each run gets its own numbers. */ 1780 1781 rcu_torture_current = NULL; 1782 rcu_torture_current_version = 0; 1783 atomic_set(&n_rcu_torture_alloc, 0); 1784 atomic_set(&n_rcu_torture_alloc_fail, 0); 1785 atomic_set(&n_rcu_torture_free, 0); 1786 atomic_set(&n_rcu_torture_mberror, 0); 1787 atomic_set(&n_rcu_torture_error, 0); 1788 n_rcu_torture_barrier_error = 0; 1789 n_rcu_torture_boost_ktrerror = 0; 1790 n_rcu_torture_boost_rterror = 0; 1791 n_rcu_torture_boost_failure = 0; 1792 n_rcu_torture_boosts = 0; 1793 for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) 1794 atomic_set(&rcu_torture_wcount[i], 0); 1795 for_each_possible_cpu(cpu) { 1796 for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) { 1797 per_cpu(rcu_torture_count, cpu)[i] = 0; 1798 per_cpu(rcu_torture_batch, cpu)[i] = 0; 1799 } 1800 } 1801 1802 /* Start up the kthreads. */ 1803 1804 firsterr = torture_create_kthread(rcu_torture_writer, NULL, 1805 writer_task); 1806 if (firsterr) 1807 goto unwind; 1808 if (nfakewriters > 0) { 1809 fakewriter_tasks = kzalloc(nfakewriters * 1810 sizeof(fakewriter_tasks[0]), 1811 GFP_KERNEL); 1812 if (fakewriter_tasks == NULL) { 1813 VERBOSE_TOROUT_ERRSTRING("out of memory"); 1814 firsterr = -ENOMEM; 1815 goto unwind; 1816 } 1817 } 1818 for (i = 0; i < nfakewriters; i++) { 1819 firsterr = torture_create_kthread(rcu_torture_fakewriter, 1820 NULL, fakewriter_tasks[i]); 1821 if (firsterr) 1822 goto unwind; 1823 } 1824 reader_tasks = kzalloc(nrealreaders * sizeof(reader_tasks[0]), 1825 GFP_KERNEL); 1826 if (reader_tasks == NULL) { 1827 VERBOSE_TOROUT_ERRSTRING("out of memory"); 1828 firsterr = -ENOMEM; 1829 goto unwind; 1830 } 1831 for (i = 0; i < nrealreaders; i++) { 1832 firsterr = torture_create_kthread(rcu_torture_reader, NULL, 1833 reader_tasks[i]); 1834 if (firsterr) 1835 goto unwind; 1836 } 1837 if (stat_interval > 0) { 1838 firsterr = torture_create_kthread(rcu_torture_stats, NULL, 1839 stats_task); 1840 if (firsterr) 1841 goto unwind; 1842 } 1843 if (test_no_idle_hz && shuffle_interval > 0) { 1844 firsterr = torture_shuffle_init(shuffle_interval * HZ); 1845 if (firsterr) 1846 goto unwind; 1847 } 1848 if (stutter < 0) 1849 stutter = 0; 1850 if (stutter) { 1851 firsterr = torture_stutter_init(stutter * HZ); 1852 if (firsterr) 1853 goto unwind; 1854 } 1855 if (fqs_duration < 0) 1856 fqs_duration = 0; 1857 if (fqs_duration) { 1858 /* Create the fqs thread */ 1859 firsterr = torture_create_kthread(rcu_torture_fqs, NULL, 1860 fqs_task); 1861 if (firsterr) 1862 goto unwind; 1863 } 1864 if (test_boost_interval < 1) 1865 test_boost_interval = 1; 1866 if (test_boost_duration < 2) 1867 test_boost_duration = 2; 1868 if ((test_boost == 1 && cur_ops->can_boost) || 1869 test_boost == 2) { 1870 1871 boost_starttime = jiffies + test_boost_interval * HZ; 1872 register_cpu_notifier(&rcutorture_cpu_nb); 1873 for_each_possible_cpu(i) { 1874 if (cpu_is_offline(i)) 1875 continue; /* Heuristic: CPU can go offline. */ 1876 firsterr = rcutorture_booster_init(i); 1877 if (firsterr) 1878 goto unwind; 1879 } 1880 } 1881 firsterr = torture_shutdown_init(shutdown_secs, rcu_torture_cleanup); 1882 if (firsterr) 1883 goto unwind; 1884 firsterr = torture_onoff_init(onoff_holdoff * HZ, onoff_interval * HZ); 1885 if (firsterr) 1886 goto unwind; 1887 firsterr = rcu_torture_stall_init(); 1888 if (firsterr) 1889 goto unwind; 1890 firsterr = rcu_torture_barrier_init(); 1891 if (firsterr) 1892 goto unwind; 1893 if (object_debug) 1894 rcu_test_debug_objects(); 1895 if (cbflood_n_burst > 0) { 1896 /* Create the cbflood threads */ 1897 ncbflooders = (num_online_cpus() + 3) / 4; 1898 cbflood_task = kcalloc(ncbflooders, sizeof(*cbflood_task), 1899 GFP_KERNEL); 1900 if (!cbflood_task) { 1901 VERBOSE_TOROUT_ERRSTRING("out of memory"); 1902 firsterr = -ENOMEM; 1903 goto unwind; 1904 } 1905 for (i = 0; i < ncbflooders; i++) { 1906 firsterr = torture_create_kthread(rcu_torture_cbflood, 1907 NULL, 1908 cbflood_task[i]); 1909 if (firsterr) 1910 goto unwind; 1911 } 1912 } 1913 rcutorture_record_test_transition(); 1914 torture_init_end(); 1915 return 0; 1916 1917 unwind: 1918 torture_init_end(); 1919 rcu_torture_cleanup(); 1920 return firsterr; 1921 } 1922 1923 module_init(rcu_torture_init); 1924 module_exit(rcu_torture_cleanup); 1925