1 /* SPDX-License-Identifier: GPL-2.0+ */ 2 /* 3 * RCU expedited grace periods 4 * 5 * Copyright IBM Corporation, 2016 6 * 7 * Authors: Paul E. McKenney <paulmck@linux.ibm.com> 8 */ 9 10 #include <linux/console.h> 11 #include <linux/lockdep.h> 12 13 static void rcu_exp_handler(void *unused); 14 static int rcu_print_task_exp_stall(struct rcu_node *rnp); 15 static void rcu_exp_print_detail_task_stall_rnp(struct rcu_node *rnp); 16 17 /* 18 * Record the start of an expedited grace period. 19 */ 20 static void rcu_exp_gp_seq_start(void) 21 { 22 rcu_seq_start(&rcu_state.expedited_sequence); 23 rcu_poll_gp_seq_start_unlocked(&rcu_state.gp_seq_polled_exp_snap); 24 } 25 26 /* 27 * Return the value that the expedited-grace-period counter will have 28 * at the end of the current grace period. 29 */ 30 static __maybe_unused unsigned long rcu_exp_gp_seq_endval(void) 31 { 32 return rcu_seq_endval(&rcu_state.expedited_sequence); 33 } 34 35 /* 36 * Record the end of an expedited grace period. 37 */ 38 static void rcu_exp_gp_seq_end(void) 39 { 40 rcu_poll_gp_seq_end_unlocked(&rcu_state.gp_seq_polled_exp_snap); 41 rcu_seq_end(&rcu_state.expedited_sequence); 42 smp_mb(); /* Ensure that consecutive grace periods serialize. */ 43 } 44 45 /* 46 * Take a snapshot of the expedited-grace-period counter, which is the 47 * earliest value that will indicate that a full grace period has 48 * elapsed since the current time. 49 */ 50 static unsigned long rcu_exp_gp_seq_snap(void) 51 { 52 unsigned long s; 53 54 smp_mb(); /* Caller's modifications seen first by other CPUs. */ 55 s = rcu_seq_snap(&rcu_state.expedited_sequence); 56 trace_rcu_exp_grace_period(rcu_state.name, s, TPS("snap")); 57 return s; 58 } 59 60 /* 61 * Given a counter snapshot from rcu_exp_gp_seq_snap(), return true 62 * if a full expedited grace period has elapsed since that snapshot 63 * was taken. 64 */ 65 static bool rcu_exp_gp_seq_done(unsigned long s) 66 { 67 return rcu_seq_done(&rcu_state.expedited_sequence, s); 68 } 69 70 /* 71 * Reset the ->expmaskinit values in the rcu_node tree to reflect any 72 * recent CPU-online activity. Note that these masks are not cleared 73 * when CPUs go offline, so they reflect the union of all CPUs that have 74 * ever been online. This means that this function normally takes its 75 * no-work-to-do fastpath. 76 */ 77 static void sync_exp_reset_tree_hotplug(void) 78 { 79 bool done; 80 unsigned long flags; 81 unsigned long mask; 82 unsigned long oldmask; 83 int ncpus = smp_load_acquire(&rcu_state.ncpus); /* Order vs. locking. */ 84 struct rcu_node *rnp; 85 struct rcu_node *rnp_up; 86 87 /* If no new CPUs onlined since last time, nothing to do. */ 88 if (likely(ncpus == rcu_state.ncpus_snap)) 89 return; 90 rcu_state.ncpus_snap = ncpus; 91 92 /* 93 * Each pass through the following loop propagates newly onlined 94 * CPUs for the current rcu_node structure up the rcu_node tree. 95 */ 96 rcu_for_each_leaf_node(rnp) { 97 raw_spin_lock_irqsave_rcu_node(rnp, flags); 98 if (rnp->expmaskinit == rnp->expmaskinitnext) { 99 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 100 continue; /* No new CPUs, nothing to do. */ 101 } 102 103 /* Update this node's mask, track old value for propagation. */ 104 oldmask = rnp->expmaskinit; 105 rnp->expmaskinit = rnp->expmaskinitnext; 106 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 107 108 /* If was already nonzero, nothing to propagate. */ 109 if (oldmask) 110 continue; 111 112 /* Propagate the new CPU up the tree. */ 113 mask = rnp->grpmask; 114 rnp_up = rnp->parent; 115 done = false; 116 while (rnp_up) { 117 raw_spin_lock_irqsave_rcu_node(rnp_up, flags); 118 if (rnp_up->expmaskinit) 119 done = true; 120 rnp_up->expmaskinit |= mask; 121 raw_spin_unlock_irqrestore_rcu_node(rnp_up, flags); 122 if (done) 123 break; 124 mask = rnp_up->grpmask; 125 rnp_up = rnp_up->parent; 126 } 127 } 128 } 129 130 /* 131 * Reset the ->expmask values in the rcu_node tree in preparation for 132 * a new expedited grace period. 133 */ 134 static void __maybe_unused sync_exp_reset_tree(void) 135 { 136 unsigned long flags; 137 struct rcu_node *rnp; 138 139 sync_exp_reset_tree_hotplug(); 140 rcu_for_each_node_breadth_first(rnp) { 141 raw_spin_lock_irqsave_rcu_node(rnp, flags); 142 WARN_ON_ONCE(rnp->expmask); 143 WRITE_ONCE(rnp->expmask, rnp->expmaskinit); 144 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 145 } 146 } 147 148 /* 149 * Return non-zero if there is no RCU expedited grace period in progress 150 * for the specified rcu_node structure, in other words, if all CPUs and 151 * tasks covered by the specified rcu_node structure have done their bit 152 * for the current expedited grace period. 153 */ 154 static bool sync_rcu_exp_done(struct rcu_node *rnp) 155 { 156 raw_lockdep_assert_held_rcu_node(rnp); 157 return READ_ONCE(rnp->exp_tasks) == NULL && 158 READ_ONCE(rnp->expmask) == 0; 159 } 160 161 /* 162 * Like sync_rcu_exp_done(), but where the caller does not hold the 163 * rcu_node's ->lock. 164 */ 165 static bool sync_rcu_exp_done_unlocked(struct rcu_node *rnp) 166 { 167 unsigned long flags; 168 bool ret; 169 170 raw_spin_lock_irqsave_rcu_node(rnp, flags); 171 ret = sync_rcu_exp_done(rnp); 172 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 173 174 return ret; 175 } 176 177 /* 178 * Report the exit from RCU read-side critical section for the last task 179 * that queued itself during or before the current expedited preemptible-RCU 180 * grace period. This event is reported either to the rcu_node structure on 181 * which the task was queued or to one of that rcu_node structure's ancestors, 182 * recursively up the tree. (Calm down, calm down, we do the recursion 183 * iteratively!) 184 */ 185 static void __rcu_report_exp_rnp(struct rcu_node *rnp, 186 bool wake, unsigned long flags) 187 __releases(rnp->lock) 188 { 189 unsigned long mask; 190 191 raw_lockdep_assert_held_rcu_node(rnp); 192 for (;;) { 193 if (!sync_rcu_exp_done(rnp)) { 194 if (!rnp->expmask) 195 rcu_initiate_boost(rnp, flags); 196 else 197 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 198 break; 199 } 200 if (rnp->parent == NULL) { 201 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 202 if (wake) 203 swake_up_one(&rcu_state.expedited_wq); 204 205 break; 206 } 207 mask = rnp->grpmask; 208 raw_spin_unlock_rcu_node(rnp); /* irqs remain disabled */ 209 rnp = rnp->parent; 210 raw_spin_lock_rcu_node(rnp); /* irqs already disabled */ 211 WARN_ON_ONCE(!(rnp->expmask & mask)); 212 WRITE_ONCE(rnp->expmask, rnp->expmask & ~mask); 213 } 214 } 215 216 /* 217 * Report expedited quiescent state for specified node. This is a 218 * lock-acquisition wrapper function for __rcu_report_exp_rnp(). 219 */ 220 static void __maybe_unused rcu_report_exp_rnp(struct rcu_node *rnp, bool wake) 221 { 222 unsigned long flags; 223 224 raw_spin_lock_irqsave_rcu_node(rnp, flags); 225 __rcu_report_exp_rnp(rnp, wake, flags); 226 } 227 228 /* 229 * Report expedited quiescent state for multiple CPUs, all covered by the 230 * specified leaf rcu_node structure, which is acquired by the caller. 231 */ 232 static void rcu_report_exp_cpu_mult(struct rcu_node *rnp, unsigned long flags, 233 unsigned long mask_in, bool wake) 234 __releases(rnp->lock) 235 { 236 int cpu; 237 unsigned long mask; 238 struct rcu_data *rdp; 239 240 raw_lockdep_assert_held_rcu_node(rnp); 241 if (!(rnp->expmask & mask_in)) { 242 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 243 return; 244 } 245 mask = mask_in & rnp->expmask; 246 WRITE_ONCE(rnp->expmask, rnp->expmask & ~mask); 247 for_each_leaf_node_cpu_mask(rnp, cpu, mask) { 248 rdp = per_cpu_ptr(&rcu_data, cpu); 249 if (!IS_ENABLED(CONFIG_NO_HZ_FULL) || !rdp->rcu_forced_tick_exp) 250 continue; 251 rdp->rcu_forced_tick_exp = false; 252 tick_dep_clear_cpu(cpu, TICK_DEP_BIT_RCU_EXP); 253 } 254 __rcu_report_exp_rnp(rnp, wake, flags); /* Releases rnp->lock. */ 255 } 256 257 /* 258 * Report expedited quiescent state for specified rcu_data (CPU). 259 */ 260 static void rcu_report_exp_rdp(struct rcu_data *rdp) 261 { 262 unsigned long flags; 263 struct rcu_node *rnp = rdp->mynode; 264 265 raw_spin_lock_irqsave_rcu_node(rnp, flags); 266 WRITE_ONCE(rdp->cpu_no_qs.b.exp, false); 267 ASSERT_EXCLUSIVE_WRITER(rdp->cpu_no_qs.b.exp); 268 rcu_report_exp_cpu_mult(rnp, flags, rdp->grpmask, true); 269 } 270 271 /* Common code for work-done checking. */ 272 static bool sync_exp_work_done(unsigned long s) 273 { 274 if (rcu_exp_gp_seq_done(s)) { 275 trace_rcu_exp_grace_period(rcu_state.name, s, TPS("done")); 276 /* 277 * Order GP completion with preceding accesses. Order also GP 278 * completion with post GP update side accesses. Pairs with 279 * rcu_seq_end(). 280 */ 281 smp_mb(); 282 return true; 283 } 284 return false; 285 } 286 287 /* 288 * Funnel-lock acquisition for expedited grace periods. Returns true 289 * if some other task completed an expedited grace period that this task 290 * can piggy-back on, and with no mutex held. Otherwise, returns false 291 * with the mutex held, indicating that the caller must actually do the 292 * expedited grace period. 293 */ 294 static bool exp_funnel_lock(unsigned long s) 295 { 296 struct rcu_data *rdp = per_cpu_ptr(&rcu_data, raw_smp_processor_id()); 297 struct rcu_node *rnp = rdp->mynode; 298 struct rcu_node *rnp_root = rcu_get_root(); 299 300 /* Low-contention fastpath. */ 301 if (ULONG_CMP_LT(READ_ONCE(rnp->exp_seq_rq), s) && 302 (rnp == rnp_root || 303 ULONG_CMP_LT(READ_ONCE(rnp_root->exp_seq_rq), s)) && 304 mutex_trylock(&rcu_state.exp_mutex)) 305 goto fastpath; 306 307 /* 308 * Each pass through the following loop works its way up 309 * the rcu_node tree, returning if others have done the work or 310 * otherwise falls through to acquire ->exp_mutex. The mapping 311 * from CPU to rcu_node structure can be inexact, as it is just 312 * promoting locality and is not strictly needed for correctness. 313 */ 314 for (; rnp != NULL; rnp = rnp->parent) { 315 if (sync_exp_work_done(s)) 316 return true; 317 318 /* Work not done, either wait here or go up. */ 319 spin_lock(&rnp->exp_lock); 320 if (ULONG_CMP_GE(rnp->exp_seq_rq, s)) { 321 322 /* Someone else doing GP, so wait for them. */ 323 spin_unlock(&rnp->exp_lock); 324 trace_rcu_exp_funnel_lock(rcu_state.name, rnp->level, 325 rnp->grplo, rnp->grphi, 326 TPS("wait")); 327 wait_event(rnp->exp_wq[rcu_seq_ctr(s) & 0x3], 328 sync_exp_work_done(s)); 329 return true; 330 } 331 WRITE_ONCE(rnp->exp_seq_rq, s); /* Followers can wait on us. */ 332 spin_unlock(&rnp->exp_lock); 333 trace_rcu_exp_funnel_lock(rcu_state.name, rnp->level, 334 rnp->grplo, rnp->grphi, TPS("nxtlvl")); 335 } 336 mutex_lock(&rcu_state.exp_mutex); 337 fastpath: 338 if (sync_exp_work_done(s)) { 339 mutex_unlock(&rcu_state.exp_mutex); 340 return true; 341 } 342 rcu_exp_gp_seq_start(); 343 trace_rcu_exp_grace_period(rcu_state.name, s, TPS("start")); 344 return false; 345 } 346 347 /* 348 * Select the CPUs within the specified rcu_node that the upcoming 349 * expedited grace period needs to wait for. 350 */ 351 static void __sync_rcu_exp_select_node_cpus(struct rcu_exp_work *rewp) 352 { 353 int cpu; 354 unsigned long flags; 355 unsigned long mask_ofl_test; 356 unsigned long mask_ofl_ipi; 357 int ret; 358 struct rcu_node *rnp = container_of(rewp, struct rcu_node, rew); 359 360 raw_spin_lock_irqsave_rcu_node(rnp, flags); 361 362 /* Each pass checks a CPU for identity, offline, and idle. */ 363 mask_ofl_test = 0; 364 for_each_leaf_node_cpu_mask(rnp, cpu, rnp->expmask) { 365 struct rcu_data *rdp = per_cpu_ptr(&rcu_data, cpu); 366 unsigned long mask = rdp->grpmask; 367 int snap; 368 369 if (raw_smp_processor_id() == cpu || 370 !(rnp->qsmaskinitnext & mask)) { 371 mask_ofl_test |= mask; 372 } else { 373 /* 374 * Full ordering between remote CPU's post idle accesses 375 * and updater's accesses prior to current GP (and also 376 * the started GP sequence number) is enforced by 377 * rcu_seq_start() implicit barrier, relayed by kworkers 378 * locking and even further by smp_mb__after_unlock_lock() 379 * barriers chained all the way throughout the rnp locking 380 * tree since sync_exp_reset_tree() and up to the current 381 * leaf rnp locking. 382 * 383 * Ordering between remote CPU's pre idle accesses and 384 * post grace period updater's accesses is enforced by the 385 * below acquire semantic. 386 */ 387 snap = ct_rcu_watching_cpu_acquire(cpu); 388 if (rcu_watching_snap_in_eqs(snap)) 389 mask_ofl_test |= mask; 390 else 391 rdp->exp_watching_snap = snap; 392 } 393 } 394 mask_ofl_ipi = rnp->expmask & ~mask_ofl_test; 395 396 /* 397 * Need to wait for any blocked tasks as well. Note that 398 * additional blocking tasks will also block the expedited GP 399 * until such time as the ->expmask bits are cleared. 400 */ 401 if (rcu_preempt_has_tasks(rnp)) 402 WRITE_ONCE(rnp->exp_tasks, rnp->blkd_tasks.next); 403 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 404 405 /* IPI the remaining CPUs for expedited quiescent state. */ 406 for_each_leaf_node_cpu_mask(rnp, cpu, mask_ofl_ipi) { 407 struct rcu_data *rdp = per_cpu_ptr(&rcu_data, cpu); 408 unsigned long mask = rdp->grpmask; 409 410 retry_ipi: 411 if (rcu_watching_snap_stopped_since(rdp, rdp->exp_watching_snap)) { 412 mask_ofl_test |= mask; 413 continue; 414 } 415 if (get_cpu() == cpu) { 416 mask_ofl_test |= mask; 417 put_cpu(); 418 continue; 419 } 420 ret = smp_call_function_single(cpu, rcu_exp_handler, NULL, 0); 421 put_cpu(); 422 /* The CPU will report the QS in response to the IPI. */ 423 if (!ret) 424 continue; 425 426 /* Failed, raced with CPU hotplug operation. */ 427 raw_spin_lock_irqsave_rcu_node(rnp, flags); 428 if ((rnp->qsmaskinitnext & mask) && 429 (rnp->expmask & mask)) { 430 /* Online, so delay for a bit and try again. */ 431 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 432 trace_rcu_exp_grace_period(rcu_state.name, rcu_exp_gp_seq_endval(), TPS("selectofl")); 433 schedule_timeout_idle(1); 434 goto retry_ipi; 435 } 436 /* CPU really is offline, so we must report its QS. */ 437 if (rnp->expmask & mask) 438 mask_ofl_test |= mask; 439 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 440 } 441 /* Report quiescent states for those that went offline. */ 442 if (mask_ofl_test) { 443 raw_spin_lock_irqsave_rcu_node(rnp, flags); 444 rcu_report_exp_cpu_mult(rnp, flags, mask_ofl_test, false); 445 } 446 } 447 448 static void rcu_exp_sel_wait_wake(unsigned long s); 449 450 static void sync_rcu_exp_select_node_cpus(struct kthread_work *wp) 451 { 452 struct rcu_exp_work *rewp = 453 container_of(wp, struct rcu_exp_work, rew_work); 454 455 __sync_rcu_exp_select_node_cpus(rewp); 456 } 457 458 static inline bool rcu_exp_worker_started(void) 459 { 460 return !!READ_ONCE(rcu_exp_gp_kworker); 461 } 462 463 static inline bool rcu_exp_par_worker_started(struct rcu_node *rnp) 464 { 465 return !!READ_ONCE(rnp->exp_kworker); 466 } 467 468 static inline void sync_rcu_exp_select_cpus_queue_work(struct rcu_node *rnp) 469 { 470 kthread_init_work(&rnp->rew.rew_work, sync_rcu_exp_select_node_cpus); 471 /* 472 * Use rcu_exp_par_gp_kworker, because flushing a work item from 473 * another work item on the same kthread worker can result in 474 * deadlock. 475 */ 476 kthread_queue_work(READ_ONCE(rnp->exp_kworker), &rnp->rew.rew_work); 477 } 478 479 static inline void sync_rcu_exp_select_cpus_flush_work(struct rcu_node *rnp) 480 { 481 kthread_flush_work(&rnp->rew.rew_work); 482 } 483 484 /* 485 * Work-queue handler to drive an expedited grace period forward. 486 */ 487 static void wait_rcu_exp_gp(struct kthread_work *wp) 488 { 489 struct rcu_exp_work *rewp; 490 491 rewp = container_of(wp, struct rcu_exp_work, rew_work); 492 rcu_exp_sel_wait_wake(rewp->rew_s); 493 } 494 495 static inline void synchronize_rcu_expedited_queue_work(struct rcu_exp_work *rew) 496 { 497 kthread_init_work(&rew->rew_work, wait_rcu_exp_gp); 498 kthread_queue_work(rcu_exp_gp_kworker, &rew->rew_work); 499 } 500 501 /* 502 * Select the nodes that the upcoming expedited grace period needs 503 * to wait for. 504 */ 505 static void sync_rcu_exp_select_cpus(void) 506 { 507 struct rcu_node *rnp; 508 509 trace_rcu_exp_grace_period(rcu_state.name, rcu_exp_gp_seq_endval(), TPS("reset")); 510 sync_exp_reset_tree(); 511 trace_rcu_exp_grace_period(rcu_state.name, rcu_exp_gp_seq_endval(), TPS("select")); 512 513 /* Schedule work for each leaf rcu_node structure. */ 514 rcu_for_each_leaf_node(rnp) { 515 rnp->exp_need_flush = false; 516 if (!READ_ONCE(rnp->expmask)) 517 continue; /* Avoid early boot non-existent wq. */ 518 if (!rcu_exp_par_worker_started(rnp) || 519 rcu_scheduler_active != RCU_SCHEDULER_RUNNING || 520 rcu_is_last_leaf_node(rnp)) { 521 /* No worker started yet or last leaf, do direct call. */ 522 sync_rcu_exp_select_node_cpus(&rnp->rew.rew_work); 523 continue; 524 } 525 sync_rcu_exp_select_cpus_queue_work(rnp); 526 rnp->exp_need_flush = true; 527 } 528 529 /* Wait for jobs (if any) to complete. */ 530 rcu_for_each_leaf_node(rnp) 531 if (rnp->exp_need_flush) 532 sync_rcu_exp_select_cpus_flush_work(rnp); 533 } 534 535 /* 536 * Wait for the expedited grace period to elapse, within time limit. 537 * If the time limit is exceeded without the grace period elapsing, 538 * return false, otherwise return true. 539 */ 540 static bool synchronize_rcu_expedited_wait_once(long tlimit) 541 { 542 int t; 543 struct rcu_node *rnp_root = rcu_get_root(); 544 545 t = swait_event_timeout_exclusive(rcu_state.expedited_wq, 546 sync_rcu_exp_done_unlocked(rnp_root), 547 tlimit); 548 // Workqueues should not be signaled. 549 if (t > 0 || sync_rcu_exp_done_unlocked(rnp_root)) 550 return true; 551 WARN_ON(t < 0); /* workqueues should not be signaled. */ 552 return false; 553 } 554 555 /* 556 * Print out an expedited RCU CPU stall warning message. 557 */ 558 static void synchronize_rcu_expedited_stall(unsigned long jiffies_start, unsigned long j) 559 { 560 int cpu; 561 unsigned long mask; 562 int ndetected; 563 struct rcu_node *rnp; 564 struct rcu_node *rnp_root = rcu_get_root(); 565 566 if (READ_ONCE(csd_lock_suppress_rcu_stall) && csd_lock_is_stuck()) { 567 pr_err("INFO: %s detected expedited stalls, but suppressed full report due to a stuck CSD-lock.\n", rcu_state.name); 568 return; 569 } 570 pr_err("INFO: %s detected expedited stalls on CPUs/tasks: {", rcu_state.name); 571 ndetected = 0; 572 rcu_for_each_leaf_node(rnp) { 573 ndetected += rcu_print_task_exp_stall(rnp); 574 for_each_leaf_node_possible_cpu(rnp, cpu) { 575 struct rcu_data *rdp; 576 577 mask = leaf_node_cpu_bit(rnp, cpu); 578 if (!(READ_ONCE(rnp->expmask) & mask)) 579 continue; 580 ndetected++; 581 rdp = per_cpu_ptr(&rcu_data, cpu); 582 pr_cont(" %d-%c%c%c%c", cpu, 583 "O."[!!cpu_online(cpu)], 584 "o."[!!(rdp->grpmask & rnp->expmaskinit)], 585 "N."[!!(rdp->grpmask & rnp->expmaskinitnext)], 586 "D."[!!data_race(rdp->cpu_no_qs.b.exp)]); 587 } 588 } 589 pr_cont(" } %lu jiffies s: %lu root: %#lx/%c\n", 590 j - jiffies_start, rcu_state.expedited_sequence, data_race(rnp_root->expmask), 591 ".T"[!!data_race(rnp_root->exp_tasks)]); 592 if (ndetected) { 593 pr_err("blocking rcu_node structures (internal RCU debug):"); 594 rcu_for_each_node_breadth_first(rnp) { 595 if (rnp == rnp_root) 596 continue; /* printed unconditionally */ 597 if (sync_rcu_exp_done_unlocked(rnp)) 598 continue; 599 pr_cont(" l=%u:%d-%d:%#lx/%c", 600 rnp->level, rnp->grplo, rnp->grphi, data_race(rnp->expmask), 601 ".T"[!!data_race(rnp->exp_tasks)]); 602 } 603 pr_cont("\n"); 604 } 605 rcu_for_each_leaf_node(rnp) { 606 for_each_leaf_node_possible_cpu(rnp, cpu) { 607 mask = leaf_node_cpu_bit(rnp, cpu); 608 if (!(READ_ONCE(rnp->expmask) & mask)) 609 continue; 610 dump_cpu_task(cpu); 611 } 612 rcu_exp_print_detail_task_stall_rnp(rnp); 613 } 614 } 615 616 /* 617 * Wait for the expedited grace period to elapse, issuing any needed 618 * RCU CPU stall warnings along the way. 619 */ 620 static void synchronize_rcu_expedited_wait(void) 621 { 622 int cpu; 623 unsigned long j; 624 unsigned long jiffies_stall; 625 unsigned long jiffies_start; 626 unsigned long mask; 627 struct rcu_data *rdp; 628 struct rcu_node *rnp; 629 unsigned long flags; 630 631 trace_rcu_exp_grace_period(rcu_state.name, rcu_exp_gp_seq_endval(), TPS("startwait")); 632 jiffies_stall = rcu_exp_jiffies_till_stall_check(); 633 jiffies_start = jiffies; 634 if (tick_nohz_full_enabled() && rcu_inkernel_boot_has_ended()) { 635 if (synchronize_rcu_expedited_wait_once(1)) 636 return; 637 rcu_for_each_leaf_node(rnp) { 638 raw_spin_lock_irqsave_rcu_node(rnp, flags); 639 mask = READ_ONCE(rnp->expmask); 640 for_each_leaf_node_cpu_mask(rnp, cpu, mask) { 641 rdp = per_cpu_ptr(&rcu_data, cpu); 642 if (rdp->rcu_forced_tick_exp) 643 continue; 644 rdp->rcu_forced_tick_exp = true; 645 if (cpu_online(cpu)) 646 tick_dep_set_cpu(cpu, TICK_DEP_BIT_RCU_EXP); 647 } 648 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 649 } 650 j = READ_ONCE(jiffies_till_first_fqs); 651 if (synchronize_rcu_expedited_wait_once(j + HZ)) 652 return; 653 } 654 655 for (;;) { 656 unsigned long j; 657 658 if (synchronize_rcu_expedited_wait_once(jiffies_stall)) 659 return; 660 if (rcu_stall_is_suppressed()) 661 continue; 662 663 nbcon_cpu_emergency_enter(); 664 665 j = jiffies; 666 rcu_stall_notifier_call_chain(RCU_STALL_NOTIFY_EXP, (void *)(j - jiffies_start)); 667 trace_rcu_stall_warning(rcu_state.name, TPS("ExpeditedStall")); 668 synchronize_rcu_expedited_stall(jiffies_start, j); 669 jiffies_stall = 3 * rcu_exp_jiffies_till_stall_check() + 3; 670 671 nbcon_cpu_emergency_exit(); 672 673 panic_on_rcu_stall(); 674 } 675 } 676 677 /* 678 * Wait for the current expedited grace period to complete, and then 679 * wake up everyone who piggybacked on the just-completed expedited 680 * grace period. Also update all the ->exp_seq_rq counters as needed 681 * in order to avoid counter-wrap problems. 682 */ 683 static void rcu_exp_wait_wake(unsigned long s) 684 { 685 struct rcu_node *rnp; 686 687 synchronize_rcu_expedited_wait(); 688 689 // Switch over to wakeup mode, allowing the next GP to proceed. 690 // End the previous grace period only after acquiring the mutex 691 // to ensure that only one GP runs concurrently with wakeups. 692 mutex_lock(&rcu_state.exp_wake_mutex); 693 rcu_exp_gp_seq_end(); 694 trace_rcu_exp_grace_period(rcu_state.name, s, TPS("end")); 695 696 rcu_for_each_node_breadth_first(rnp) { 697 if (ULONG_CMP_LT(READ_ONCE(rnp->exp_seq_rq), s)) { 698 spin_lock(&rnp->exp_lock); 699 /* Recheck, avoid hang in case someone just arrived. */ 700 if (ULONG_CMP_LT(rnp->exp_seq_rq, s)) 701 WRITE_ONCE(rnp->exp_seq_rq, s); 702 spin_unlock(&rnp->exp_lock); 703 } 704 smp_mb(); /* All above changes before wakeup. */ 705 wake_up_all(&rnp->exp_wq[rcu_seq_ctr(s) & 0x3]); 706 } 707 trace_rcu_exp_grace_period(rcu_state.name, s, TPS("endwake")); 708 mutex_unlock(&rcu_state.exp_wake_mutex); 709 } 710 711 /* 712 * Common code to drive an expedited grace period forward, used by 713 * workqueues and mid-boot-time tasks. 714 */ 715 static void rcu_exp_sel_wait_wake(unsigned long s) 716 { 717 /* Initialize the rcu_node tree in preparation for the wait. */ 718 sync_rcu_exp_select_cpus(); 719 720 /* Wait and clean up, including waking everyone. */ 721 rcu_exp_wait_wake(s); 722 } 723 724 /* Request an expedited quiescent state. */ 725 static void rcu_exp_need_qs(void) 726 { 727 lockdep_assert_irqs_disabled(); 728 ASSERT_EXCLUSIVE_WRITER_SCOPED(*this_cpu_ptr(&rcu_data.cpu_no_qs.b.exp)); 729 __this_cpu_write(rcu_data.cpu_no_qs.b.exp, true); 730 /* Store .exp before .rcu_urgent_qs. */ 731 smp_store_release(this_cpu_ptr(&rcu_data.rcu_urgent_qs), true); 732 set_tsk_need_resched(current); 733 set_preempt_need_resched(); 734 } 735 736 #ifdef CONFIG_PREEMPT_RCU 737 738 /* 739 * Remote handler for smp_call_function_single(). If there is an 740 * RCU read-side critical section in effect, request that the 741 * next rcu_read_unlock() record the quiescent state up the 742 * ->expmask fields in the rcu_node tree. Otherwise, immediately 743 * report the quiescent state. 744 */ 745 static void rcu_exp_handler(void *unused) 746 { 747 int depth = rcu_preempt_depth(); 748 unsigned long flags; 749 struct rcu_data *rdp = this_cpu_ptr(&rcu_data); 750 struct rcu_node *rnp = rdp->mynode; 751 struct task_struct *t = current; 752 753 /* 754 * First, is there no need for a quiescent state from this CPU, 755 * or is this CPU already looking for a quiescent state for the 756 * current grace period? If either is the case, just leave. 757 * However, this should not happen due to the preemptible 758 * sync_sched_exp_online_cleanup() implementation being a no-op, 759 * so warn if this does happen. 760 */ 761 ASSERT_EXCLUSIVE_WRITER_SCOPED(rdp->cpu_no_qs.b.exp); 762 if (WARN_ON_ONCE(!(READ_ONCE(rnp->expmask) & rdp->grpmask) || 763 READ_ONCE(rdp->cpu_no_qs.b.exp))) 764 return; 765 766 /* 767 * Second, the common case of not being in an RCU read-side 768 * critical section. If also enabled or idle, immediately 769 * report the quiescent state, otherwise defer. 770 */ 771 if (!depth) { 772 if (!(preempt_count() & (PREEMPT_MASK | SOFTIRQ_MASK)) || 773 rcu_is_cpu_rrupt_from_idle()) 774 rcu_report_exp_rdp(rdp); 775 else 776 rcu_exp_need_qs(); 777 return; 778 } 779 780 /* 781 * Third, the less-common case of being in an RCU read-side 782 * critical section. In this case we can count on a future 783 * rcu_read_unlock(). However, this rcu_read_unlock() might 784 * execute on some other CPU, but in that case there will be 785 * a future context switch. Either way, if the expedited 786 * grace period is still waiting on this CPU, set ->deferred_qs 787 * so that the eventual quiescent state will be reported. 788 * Note that there is a large group of race conditions that 789 * can have caused this quiescent state to already have been 790 * reported, so we really do need to check ->expmask. 791 */ 792 if (depth > 0) { 793 raw_spin_lock_irqsave_rcu_node(rnp, flags); 794 if (rnp->expmask & rdp->grpmask) { 795 WRITE_ONCE(rdp->cpu_no_qs.b.exp, true); 796 t->rcu_read_unlock_special.b.exp_hint = true; 797 } 798 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 799 return; 800 } 801 802 // Fourth and finally, negative nesting depth should not happen. 803 WARN_ON_ONCE(1); 804 } 805 806 /* PREEMPTION=y, so no PREEMPTION=n expedited grace period to clean up after. */ 807 static void sync_sched_exp_online_cleanup(int cpu) 808 { 809 } 810 811 /* 812 * Scan the current list of tasks blocked within RCU read-side critical 813 * sections, printing out the tid of each that is blocking the current 814 * expedited grace period. 815 */ 816 static int rcu_print_task_exp_stall(struct rcu_node *rnp) 817 { 818 unsigned long flags; 819 int ndetected = 0; 820 struct task_struct *t; 821 822 raw_spin_lock_irqsave_rcu_node(rnp, flags); 823 if (!rnp->exp_tasks) { 824 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 825 return 0; 826 } 827 t = list_entry(rnp->exp_tasks->prev, 828 struct task_struct, rcu_node_entry); 829 list_for_each_entry_continue(t, &rnp->blkd_tasks, rcu_node_entry) { 830 pr_cont(" P%d", t->pid); 831 ndetected++; 832 } 833 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 834 return ndetected; 835 } 836 837 /* 838 * Scan the current list of tasks blocked within RCU read-side critical 839 * sections, dumping the stack of each that is blocking the current 840 * expedited grace period. 841 */ 842 static void rcu_exp_print_detail_task_stall_rnp(struct rcu_node *rnp) 843 { 844 unsigned long flags; 845 struct task_struct *t; 846 847 if (!rcu_exp_stall_task_details) 848 return; 849 raw_spin_lock_irqsave_rcu_node(rnp, flags); 850 if (!READ_ONCE(rnp->exp_tasks)) { 851 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 852 return; 853 } 854 t = list_entry(rnp->exp_tasks->prev, 855 struct task_struct, rcu_node_entry); 856 list_for_each_entry_continue(t, &rnp->blkd_tasks, rcu_node_entry) { 857 /* 858 * We could be printing a lot while holding a spinlock. 859 * Avoid triggering hard lockup. 860 */ 861 touch_nmi_watchdog(); 862 sched_show_task(t); 863 } 864 raw_spin_unlock_irqrestore_rcu_node(rnp, flags); 865 } 866 867 #else /* #ifdef CONFIG_PREEMPT_RCU */ 868 869 /* Invoked on each online non-idle CPU for expedited quiescent state. */ 870 static void rcu_exp_handler(void *unused) 871 { 872 struct rcu_data *rdp = this_cpu_ptr(&rcu_data); 873 struct rcu_node *rnp = rdp->mynode; 874 bool preempt_bh_enabled = !(preempt_count() & (PREEMPT_MASK | SOFTIRQ_MASK)); 875 876 ASSERT_EXCLUSIVE_WRITER_SCOPED(rdp->cpu_no_qs.b.exp); 877 if (!(READ_ONCE(rnp->expmask) & rdp->grpmask) || 878 __this_cpu_read(rcu_data.cpu_no_qs.b.exp)) 879 return; 880 if (rcu_is_cpu_rrupt_from_idle() || 881 (IS_ENABLED(CONFIG_PREEMPT_COUNT) && preempt_bh_enabled)) { 882 rcu_report_exp_rdp(this_cpu_ptr(&rcu_data)); 883 return; 884 } 885 rcu_exp_need_qs(); 886 } 887 888 /* Send IPI for expedited cleanup if needed at end of CPU-hotplug operation. */ 889 static void sync_sched_exp_online_cleanup(int cpu) 890 { 891 unsigned long flags; 892 int my_cpu; 893 struct rcu_data *rdp; 894 int ret; 895 struct rcu_node *rnp; 896 897 rdp = per_cpu_ptr(&rcu_data, cpu); 898 rnp = rdp->mynode; 899 my_cpu = get_cpu(); 900 /* Quiescent state either not needed or already requested, leave. */ 901 if (!(READ_ONCE(rnp->expmask) & rdp->grpmask) || 902 READ_ONCE(rdp->cpu_no_qs.b.exp)) { 903 put_cpu(); 904 return; 905 } 906 /* Quiescent state needed on current CPU, so set it up locally. */ 907 if (my_cpu == cpu) { 908 local_irq_save(flags); 909 rcu_exp_need_qs(); 910 local_irq_restore(flags); 911 put_cpu(); 912 return; 913 } 914 /* Quiescent state needed on some other CPU, send IPI. */ 915 ret = smp_call_function_single(cpu, rcu_exp_handler, NULL, 0); 916 put_cpu(); 917 WARN_ON_ONCE(ret); 918 } 919 920 /* 921 * Because preemptible RCU does not exist, we never have to check for 922 * tasks blocked within RCU read-side critical sections that are 923 * blocking the current expedited grace period. 924 */ 925 static int rcu_print_task_exp_stall(struct rcu_node *rnp) 926 { 927 return 0; 928 } 929 930 /* 931 * Because preemptible RCU does not exist, we never have to print out 932 * tasks blocked within RCU read-side critical sections that are blocking 933 * the current expedited grace period. 934 */ 935 static void rcu_exp_print_detail_task_stall_rnp(struct rcu_node *rnp) 936 { 937 } 938 939 #endif /* #else #ifdef CONFIG_PREEMPT_RCU */ 940 941 /** 942 * synchronize_rcu_expedited - Brute-force RCU grace period 943 * 944 * Wait for an RCU grace period, but expedite it. The basic idea is to 945 * IPI all non-idle non-nohz online CPUs. The IPI handler checks whether 946 * the CPU is in an RCU critical section, and if so, it sets a flag that 947 * causes the outermost rcu_read_unlock() to report the quiescent state 948 * for RCU-preempt or asks the scheduler for help for RCU-sched. On the 949 * other hand, if the CPU is not in an RCU read-side critical section, 950 * the IPI handler reports the quiescent state immediately. 951 * 952 * Although this is a great improvement over previous expedited 953 * implementations, it is still unfriendly to real-time workloads, so is 954 * thus not recommended for any sort of common-case code. In fact, if 955 * you are using synchronize_rcu_expedited() in a loop, please restructure 956 * your code to batch your updates, and then use a single synchronize_rcu() 957 * instead. 958 * 959 * This has the same semantics as (but is more brutal than) synchronize_rcu(). 960 */ 961 void synchronize_rcu_expedited(void) 962 { 963 unsigned long flags; 964 struct rcu_exp_work rew; 965 struct rcu_node *rnp; 966 unsigned long s; 967 968 RCU_LOCKDEP_WARN(lock_is_held(&rcu_bh_lock_map) || 969 lock_is_held(&rcu_lock_map) || 970 lock_is_held(&rcu_sched_lock_map), 971 "Illegal synchronize_rcu_expedited() in RCU read-side critical section"); 972 973 /* Is the state is such that the call is a grace period? */ 974 if (rcu_blocking_is_gp()) { 975 // Note well that this code runs with !PREEMPT && !SMP. 976 // In addition, all code that advances grace periods runs 977 // at process level. Therefore, this expedited GP overlaps 978 // with other expedited GPs only by being fully nested within 979 // them, which allows reuse of ->gp_seq_polled_exp_snap. 980 rcu_poll_gp_seq_start_unlocked(&rcu_state.gp_seq_polled_exp_snap); 981 rcu_poll_gp_seq_end_unlocked(&rcu_state.gp_seq_polled_exp_snap); 982 983 local_irq_save(flags); 984 WARN_ON_ONCE(num_online_cpus() > 1); 985 rcu_state.expedited_sequence += (1 << RCU_SEQ_CTR_SHIFT); 986 local_irq_restore(flags); 987 return; // Context allows vacuous grace periods. 988 } 989 990 /* If expedited grace periods are prohibited, fall back to normal. */ 991 if (rcu_gp_is_normal()) { 992 synchronize_rcu_normal(); 993 return; 994 } 995 996 /* Take a snapshot of the sequence number. */ 997 s = rcu_exp_gp_seq_snap(); 998 if (exp_funnel_lock(s)) 999 return; /* Someone else did our work for us. */ 1000 1001 /* Ensure that load happens before action based on it. */ 1002 if (unlikely((rcu_scheduler_active == RCU_SCHEDULER_INIT) || !rcu_exp_worker_started())) { 1003 /* Direct call during scheduler init and early_initcalls(). */ 1004 rcu_exp_sel_wait_wake(s); 1005 } else { 1006 /* Marshall arguments & schedule the expedited grace period. */ 1007 rew.rew_s = s; 1008 synchronize_rcu_expedited_queue_work(&rew); 1009 } 1010 1011 /* Wait for expedited grace period to complete. */ 1012 rnp = rcu_get_root(); 1013 wait_event(rnp->exp_wq[rcu_seq_ctr(s) & 0x3], 1014 sync_exp_work_done(s)); 1015 1016 /* Let the next expedited grace period start. */ 1017 mutex_unlock(&rcu_state.exp_mutex); 1018 } 1019 EXPORT_SYMBOL_GPL(synchronize_rcu_expedited); 1020 1021 /* 1022 * Ensure that start_poll_synchronize_rcu_expedited() has the expedited 1023 * RCU grace periods that it needs. 1024 */ 1025 static void sync_rcu_do_polled_gp(struct work_struct *wp) 1026 { 1027 unsigned long flags; 1028 int i = 0; 1029 struct rcu_node *rnp = container_of(wp, struct rcu_node, exp_poll_wq); 1030 unsigned long s; 1031 1032 raw_spin_lock_irqsave(&rnp->exp_poll_lock, flags); 1033 s = rnp->exp_seq_poll_rq; 1034 rnp->exp_seq_poll_rq = RCU_GET_STATE_COMPLETED; 1035 raw_spin_unlock_irqrestore(&rnp->exp_poll_lock, flags); 1036 if (s == RCU_GET_STATE_COMPLETED) 1037 return; 1038 while (!poll_state_synchronize_rcu(s)) { 1039 synchronize_rcu_expedited(); 1040 if (i == 10 || i == 20) 1041 pr_info("%s: i = %d s = %lx gp_seq_polled = %lx\n", __func__, i, s, READ_ONCE(rcu_state.gp_seq_polled)); 1042 i++; 1043 } 1044 raw_spin_lock_irqsave(&rnp->exp_poll_lock, flags); 1045 s = rnp->exp_seq_poll_rq; 1046 if (poll_state_synchronize_rcu(s)) 1047 rnp->exp_seq_poll_rq = RCU_GET_STATE_COMPLETED; 1048 raw_spin_unlock_irqrestore(&rnp->exp_poll_lock, flags); 1049 } 1050 1051 /** 1052 * start_poll_synchronize_rcu_expedited - Snapshot current RCU state and start expedited grace period 1053 * 1054 * Returns a cookie to pass to a call to cond_synchronize_rcu(), 1055 * cond_synchronize_rcu_expedited(), or poll_state_synchronize_rcu(), 1056 * allowing them to determine whether or not any sort of grace period has 1057 * elapsed in the meantime. If the needed expedited grace period is not 1058 * already slated to start, initiates that grace period. 1059 */ 1060 unsigned long start_poll_synchronize_rcu_expedited(void) 1061 { 1062 unsigned long flags; 1063 struct rcu_data *rdp; 1064 struct rcu_node *rnp; 1065 unsigned long s; 1066 1067 s = get_state_synchronize_rcu(); 1068 rdp = per_cpu_ptr(&rcu_data, raw_smp_processor_id()); 1069 rnp = rdp->mynode; 1070 if (rcu_init_invoked()) 1071 raw_spin_lock_irqsave(&rnp->exp_poll_lock, flags); 1072 if (!poll_state_synchronize_rcu(s)) { 1073 if (rcu_init_invoked()) { 1074 rnp->exp_seq_poll_rq = s; 1075 queue_work(rcu_gp_wq, &rnp->exp_poll_wq); 1076 } 1077 } 1078 if (rcu_init_invoked()) 1079 raw_spin_unlock_irqrestore(&rnp->exp_poll_lock, flags); 1080 1081 return s; 1082 } 1083 EXPORT_SYMBOL_GPL(start_poll_synchronize_rcu_expedited); 1084 1085 /** 1086 * start_poll_synchronize_rcu_expedited_full - Take a full snapshot and start expedited grace period 1087 * @rgosp: Place to put snapshot of grace-period state 1088 * 1089 * Places the normal and expedited grace-period states in rgosp. This 1090 * state value can be passed to a later call to cond_synchronize_rcu_full() 1091 * or poll_state_synchronize_rcu_full() to determine whether or not a 1092 * grace period (whether normal or expedited) has elapsed in the meantime. 1093 * If the needed expedited grace period is not already slated to start, 1094 * initiates that grace period. 1095 */ 1096 void start_poll_synchronize_rcu_expedited_full(struct rcu_gp_oldstate *rgosp) 1097 { 1098 get_state_synchronize_rcu_full(rgosp); 1099 (void)start_poll_synchronize_rcu_expedited(); 1100 } 1101 EXPORT_SYMBOL_GPL(start_poll_synchronize_rcu_expedited_full); 1102 1103 /** 1104 * cond_synchronize_rcu_expedited - Conditionally wait for an expedited RCU grace period 1105 * 1106 * @oldstate: value from get_state_synchronize_rcu(), start_poll_synchronize_rcu(), or start_poll_synchronize_rcu_expedited() 1107 * 1108 * If any type of full RCU grace period has elapsed since the earlier 1109 * call to get_state_synchronize_rcu(), start_poll_synchronize_rcu(), 1110 * or start_poll_synchronize_rcu_expedited(), just return. Otherwise, 1111 * invoke synchronize_rcu_expedited() to wait for a full grace period. 1112 * 1113 * Yes, this function does not take counter wrap into account. 1114 * But counter wrap is harmless. If the counter wraps, we have waited for 1115 * more than 2 billion grace periods (and way more on a 64-bit system!), 1116 * so waiting for a couple of additional grace periods should be just fine. 1117 * 1118 * This function provides the same memory-ordering guarantees that 1119 * would be provided by a synchronize_rcu() that was invoked at the call 1120 * to the function that provided @oldstate and that returned at the end 1121 * of this function. 1122 */ 1123 void cond_synchronize_rcu_expedited(unsigned long oldstate) 1124 { 1125 if (!poll_state_synchronize_rcu(oldstate)) 1126 synchronize_rcu_expedited(); 1127 } 1128 EXPORT_SYMBOL_GPL(cond_synchronize_rcu_expedited); 1129 1130 /** 1131 * cond_synchronize_rcu_expedited_full - Conditionally wait for an expedited RCU grace period 1132 * @rgosp: value from get_state_synchronize_rcu_full(), start_poll_synchronize_rcu_full(), or start_poll_synchronize_rcu_expedited_full() 1133 * 1134 * If a full RCU grace period has elapsed since the call to 1135 * get_state_synchronize_rcu_full(), start_poll_synchronize_rcu_full(), 1136 * or start_poll_synchronize_rcu_expedited_full() from which @rgosp was 1137 * obtained, just return. Otherwise, invoke synchronize_rcu_expedited() 1138 * to wait for a full grace period. 1139 * 1140 * Yes, this function does not take counter wrap into account. 1141 * But counter wrap is harmless. If the counter wraps, we have waited for 1142 * more than 2 billion grace periods (and way more on a 64-bit system!), 1143 * so waiting for a couple of additional grace periods should be just fine. 1144 * 1145 * This function provides the same memory-ordering guarantees that 1146 * would be provided by a synchronize_rcu() that was invoked at the call 1147 * to the function that provided @rgosp and that returned at the end of 1148 * this function. 1149 */ 1150 void cond_synchronize_rcu_expedited_full(struct rcu_gp_oldstate *rgosp) 1151 { 1152 if (!poll_state_synchronize_rcu_full(rgosp)) 1153 synchronize_rcu_expedited(); 1154 } 1155 EXPORT_SYMBOL_GPL(cond_synchronize_rcu_expedited_full); 1156