1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3 * Read-Copy Update module-based torture test facility
4 *
5 * Copyright (C) IBM Corporation, 2005, 2006
6 *
7 * Authors: Paul E. McKenney <paulmck@linux.ibm.com>
8 * Josh Triplett <josh@joshtriplett.org>
9 *
10 * See also: Documentation/RCU/torture.rst
11 */
12
13 #define pr_fmt(fmt) fmt
14
15 #include <linux/types.h>
16 #include <linux/kernel.h>
17 #include <linux/init.h>
18 #include <linux/module.h>
19 #include <linux/kthread.h>
20 #include <linux/err.h>
21 #include <linux/spinlock.h>
22 #include <linux/smp.h>
23 #include <linux/rcupdate_wait.h>
24 #include <linux/rcu_notifier.h>
25 #include <linux/interrupt.h>
26 #include <linux/sched/signal.h>
27 #include <uapi/linux/sched/types.h>
28 #include <linux/atomic.h>
29 #include <linux/bitops.h>
30 #include <linux/completion.h>
31 #include <linux/moduleparam.h>
32 #include <linux/percpu.h>
33 #include <linux/notifier.h>
34 #include <linux/reboot.h>
35 #include <linux/freezer.h>
36 #include <linux/cpu.h>
37 #include <linux/delay.h>
38 #include <linux/stat.h>
39 #include <linux/srcu.h>
40 #include <linux/slab.h>
41 #include <linux/trace_clock.h>
42 #include <asm/byteorder.h>
43 #include <linux/torture.h>
44 #include <linux/vmalloc.h>
45 #include <linux/sched/debug.h>
46 #include <linux/sched/sysctl.h>
47 #include <linux/oom.h>
48 #include <linux/tick.h>
49 #include <linux/rcupdate_trace.h>
50 #include <linux/nmi.h>
51
52 #include "rcu.h"
53
54 MODULE_DESCRIPTION("Read-Copy Update module-based torture test facility");
55 MODULE_LICENSE("GPL");
56 MODULE_AUTHOR("Paul E. McKenney <paulmck@linux.ibm.com> and Josh Triplett <josh@joshtriplett.org>");
57
58 // Bits for ->extendables field, extendables param, and related definitions.
59 #define RCUTORTURE_RDR_SHIFT_1 8 // Put SRCU index in upper bits.
60 #define RCUTORTURE_RDR_MASK_1 (0xff << RCUTORTURE_RDR_SHIFT_1)
61 #define RCUTORTURE_RDR_SHIFT_2 16 // Put SRCU index in upper bits.
62 #define RCUTORTURE_RDR_MASK_2 (0xff << RCUTORTURE_RDR_SHIFT_2)
63 #define RCUTORTURE_RDR_BH 0x01 // Extend readers by disabling bh.
64 #define RCUTORTURE_RDR_IRQ 0x02 // ... disabling interrupts.
65 #define RCUTORTURE_RDR_PREEMPT 0x04 // ... disabling preemption.
66 #define RCUTORTURE_RDR_RBH 0x08 // ... rcu_read_lock_bh().
67 #define RCUTORTURE_RDR_SCHED 0x10 // ... rcu_read_lock_sched().
68 #define RCUTORTURE_RDR_RCU_1 0x20 // ... entering another RCU reader.
69 #define RCUTORTURE_RDR_RCU_2 0x40 // ... entering another RCU reader.
70 #define RCUTORTURE_RDR_UPDOWN 0x80 // ... up-read from task, down-read from timer.
71 // Note: Manual start, automatic end.
72 #define RCUTORTURE_RDR_NBITS 8 // Number of bits defined above.
73 #define RCUTORTURE_MAX_EXTEND \
74 (RCUTORTURE_RDR_BH | RCUTORTURE_RDR_IRQ | RCUTORTURE_RDR_PREEMPT | \
75 RCUTORTURE_RDR_RBH | RCUTORTURE_RDR_SCHED) // Intentionally omit RCUTORTURE_RDR_UPDOWN.
76 #define RCUTORTURE_RDR_ALLBITS \
77 (RCUTORTURE_MAX_EXTEND | RCUTORTURE_RDR_RCU_1 | RCUTORTURE_RDR_RCU_2 | \
78 RCUTORTURE_RDR_MASK_1 | RCUTORTURE_RDR_MASK_2)
79 #define RCUTORTURE_RDR_MAX_LOOPS 0x7 /* Maximum reader extensions. */
80 /* Must be power of two minus one. */
81 #define RCUTORTURE_RDR_MAX_SEGS (RCUTORTURE_RDR_MAX_LOOPS + 3)
82
83 torture_param(int, extendables, RCUTORTURE_MAX_EXTEND,
84 "Extend readers by disabling bh (1), irqs (2), or preempt (4)");
85 torture_param(int, fqs_duration, 0, "Duration of fqs bursts (us), 0 to disable");
86 torture_param(int, fqs_holdoff, 0, "Holdoff time within fqs bursts (us)");
87 torture_param(int, fqs_stutter, 3, "Wait time between fqs bursts (s)");
88 torture_param(int, fwd_progress, 1, "Number of grace-period forward progress tasks (0 to disable)");
89 torture_param(int, fwd_progress_div, 4, "Fraction of CPU stall to wait");
90 torture_param(int, fwd_progress_holdoff, 60, "Time between forward-progress tests (s)");
91 torture_param(bool, fwd_progress_need_resched, 1, "Hide cond_resched() behind need_resched()");
92 torture_param(bool, gp_cond, false, "Use conditional/async GP wait primitives");
93 torture_param(bool, gp_cond_exp, false, "Use conditional/async expedited GP wait primitives");
94 torture_param(bool, gp_cond_full, false, "Use conditional/async full-state GP wait primitives");
95 torture_param(bool, gp_cond_exp_full, false,
96 "Use conditional/async full-stateexpedited GP wait primitives");
97 torture_param(int, gp_cond_wi, 16 * USEC_PER_SEC / HZ,
98 "Wait interval for normal conditional grace periods, us (default 16 jiffies)");
99 torture_param(int, gp_cond_wi_exp, 128,
100 "Wait interval for expedited conditional grace periods, us (default 128 us)");
101 torture_param(bool, gp_exp, false, "Use expedited GP wait primitives");
102 torture_param(bool, gp_normal, false, "Use normal (non-expedited) GP wait primitives");
103 torture_param(bool, gp_poll, false, "Use polling GP wait primitives");
104 torture_param(bool, gp_poll_exp, false, "Use polling expedited GP wait primitives");
105 torture_param(bool, gp_poll_full, false, "Use polling full-state GP wait primitives");
106 torture_param(bool, gp_poll_exp_full, false, "Use polling full-state expedited GP wait primitives");
107 torture_param(int, gp_poll_wi, 16 * USEC_PER_SEC / HZ,
108 "Wait interval for normal polled grace periods, us (default 16 jiffies)");
109 torture_param(int, gp_poll_wi_exp, 128,
110 "Wait interval for expedited polled grace periods, us (default 128 us)");
111 torture_param(bool, gp_sync, false, "Use synchronous GP wait primitives");
112 torture_param(int, irqreader, 1, "Allow RCU readers from irq handlers");
113 torture_param(int, leakpointer, 0, "Leak pointer dereferences from readers");
114 torture_param(int, n_barrier_cbs, 0, "# of callbacks/kthreads for barrier testing");
115 torture_param(int, n_up_down, 32, "# of concurrent up/down hrtimer-based RCU readers");
116 torture_param(int, nfakewriters, 4, "Number of RCU fake writer threads");
117 torture_param(int, nreaders, -1, "Number of RCU reader threads");
118 torture_param(int, object_debug, 0, "Enable debug-object double call_rcu() testing");
119 torture_param(int, onoff_holdoff, 0, "Time after boot before CPU hotplugs (s)");
120 torture_param(int, onoff_interval, 0, "Time between CPU hotplugs (jiffies), 0=disable");
121 torture_param(bool, gpwrap_lag, true, "Enable grace-period wrap lag testing");
122 torture_param(int, gpwrap_lag_gps, 8, "Value to set for set_gpwrap_lag during an active testing period.");
123 torture_param(int, gpwrap_lag_cycle_mins, 30, "Total cycle duration for gpwrap lag testing (in minutes)");
124 torture_param(int, gpwrap_lag_active_mins, 5, "Duration for which gpwrap lag is active within each cycle (in minutes)");
125 torture_param(int, nocbs_nthreads, 0, "Number of NOCB toggle threads, 0 to disable");
126 torture_param(int, nocbs_toggle, 1000, "Time between toggling nocb state (ms)");
127 torture_param(int, preempt_duration, 0, "Preemption duration (ms), zero to disable");
128 torture_param(int, preempt_interval, MSEC_PER_SEC, "Interval between preemptions (ms)");
129 torture_param(int, read_exit_delay, 13, "Delay between read-then-exit episodes (s)");
130 torture_param(int, read_exit_burst, 16, "# of read-then-exit bursts per episode, zero to disable");
131 torture_param(int, reader_flavor, SRCU_READ_FLAVOR_NORMAL, "Reader flavors to use, one per bit.");
132 torture_param(int, shuffle_interval, 3, "Number of seconds between shuffles");
133 torture_param(int, shutdown_secs, 0, "Shutdown time (s), <= zero to disable.");
134 torture_param(int, stall_cpu, 0, "Stall duration (s), zero to disable.");
135 torture_param(int, stall_cpu_holdoff, 10, "Time to wait before starting stall (s).");
136 torture_param(bool, stall_no_softlockup, false, "Avoid softlockup warning during cpu stall.");
137 torture_param(int, stall_cpu_irqsoff, 0, "Disable interrupts while stalling.");
138 torture_param(int, stall_cpu_block, 0, "Sleep while stalling.");
139 torture_param(int, stall_cpu_repeat, 0, "Number of additional stalls after the first one.");
140 torture_param(int, stall_gp_kthread, 0, "Grace-period kthread stall duration (s).");
141 torture_param(int, stat_interval, 60, "Number of seconds between stats printk()s");
142 torture_param(int, stutter, 5, "Number of seconds to run/halt test");
143 torture_param(int, test_boost, 1, "Test RCU prio boost: 0=no, 1=maybe, 2=yes.");
144 torture_param(int, test_boost_duration, 4, "Duration of each boost test, seconds.");
145 torture_param(int, test_boost_holdoff, 0, "Holdoff time from rcutorture start, seconds.");
146 torture_param(int, test_boost_interval, 7, "Interval between boost tests, seconds.");
147 torture_param(int, test_nmis, 0, "End-test NMI tests, 0 to disable.");
148 torture_param(bool, test_no_idle_hz, true, "Test support for tickless idle CPUs");
149 torture_param(int, test_srcu_lockdep, 0, "Test specified SRCU deadlock scenario.");
150 torture_param(int, verbose, 1, "Enable verbose debugging printk()s");
151
152 static char *torture_type = "rcu";
153 module_param(torture_type, charp, 0444);
154 MODULE_PARM_DESC(torture_type, "Type of RCU to torture (rcu, srcu, ...)");
155
156 static int nrealnocbers;
157 static int nrealreaders;
158 static int nrealfakewriters;
159 static struct task_struct *writer_task;
160 static struct task_struct **fakewriter_tasks;
161 static struct task_struct **reader_tasks;
162 static struct task_struct *updown_task;
163 static struct task_struct **nocb_tasks;
164 static struct task_struct *stats_task;
165 static struct task_struct *fqs_task;
166 static struct task_struct *boost_tasks[NR_CPUS];
167 static struct task_struct *stall_task;
168 static struct task_struct **fwd_prog_tasks;
169 static struct task_struct **barrier_cbs_tasks;
170 static struct task_struct *barrier_task;
171 static struct task_struct *read_exit_task;
172 static struct task_struct *preempt_task;
173
174 #define RCU_TORTURE_PIPE_LEN 10
175
176 // Mailbox-like structure to check RCU global memory ordering.
177 struct rcu_torture_reader_check {
178 unsigned long rtc_myloops;
179 int rtc_chkrdr;
180 unsigned long rtc_chkloops;
181 int rtc_ready;
182 struct rcu_torture_reader_check *rtc_assigner;
183 } ____cacheline_internodealigned_in_smp;
184
185 // Update-side data structure used to check RCU readers.
186 struct rcu_torture {
187 struct rcu_head rtort_rcu;
188 int rtort_pipe_count;
189 struct list_head rtort_free;
190 int rtort_mbtest;
191 struct rcu_torture_reader_check *rtort_chkp;
192 };
193
194 static LIST_HEAD(rcu_torture_freelist);
195 static struct rcu_torture __rcu *rcu_torture_current;
196 static unsigned long rcu_torture_current_version;
197 static struct rcu_torture rcu_tortures[10 * RCU_TORTURE_PIPE_LEN];
198 static DEFINE_SPINLOCK(rcu_torture_lock);
199 static DEFINE_PER_CPU(long [RCU_TORTURE_PIPE_LEN + 1], rcu_torture_count);
200 static DEFINE_PER_CPU(long [RCU_TORTURE_PIPE_LEN + 1], rcu_torture_batch);
201 static atomic_t rcu_torture_wcount[RCU_TORTURE_PIPE_LEN + 1];
202 static struct rcu_torture_reader_check *rcu_torture_reader_mbchk;
203 static atomic_t n_rcu_torture_alloc;
204 static atomic_t n_rcu_torture_alloc_fail;
205 static atomic_t n_rcu_torture_free;
206 static atomic_t n_rcu_torture_mberror;
207 static atomic_t n_rcu_torture_mbchk_fail;
208 static atomic_t n_rcu_torture_mbchk_tries;
209 static atomic_t n_rcu_torture_error;
210 static long n_rcu_torture_barrier_error;
211 static long n_rcu_torture_boost_ktrerror;
212 static long n_rcu_torture_boost_failure;
213 static long n_rcu_torture_boosts;
214 static atomic_long_t n_rcu_torture_timers;
215 static long n_barrier_attempts;
216 static long n_barrier_successes; /* did rcu_barrier test succeed? */
217 static unsigned long n_read_exits;
218 static struct list_head rcu_torture_removed;
219 static unsigned long shutdown_jiffies;
220 static unsigned long start_gp_seq;
221 static atomic_long_t n_nocb_offload;
222 static atomic_long_t n_nocb_deoffload;
223
224 static int rcu_torture_writer_state;
225 #define RTWS_FIXED_DELAY 0
226 #define RTWS_DELAY 1
227 #define RTWS_REPLACE 2
228 #define RTWS_DEF_FREE 3
229 #define RTWS_EXP_SYNC 4
230 #define RTWS_COND_GET 5
231 #define RTWS_COND_GET_FULL 6
232 #define RTWS_COND_GET_EXP 7
233 #define RTWS_COND_GET_EXP_FULL 8
234 #define RTWS_COND_SYNC 9
235 #define RTWS_COND_SYNC_FULL 10
236 #define RTWS_COND_SYNC_EXP 11
237 #define RTWS_COND_SYNC_EXP_FULL 12
238 #define RTWS_POLL_GET 13
239 #define RTWS_POLL_GET_FULL 14
240 #define RTWS_POLL_GET_EXP 15
241 #define RTWS_POLL_GET_EXP_FULL 16
242 #define RTWS_POLL_WAIT 17
243 #define RTWS_POLL_WAIT_FULL 18
244 #define RTWS_POLL_WAIT_EXP 19
245 #define RTWS_POLL_WAIT_EXP_FULL 20
246 #define RTWS_SYNC 21
247 #define RTWS_STUTTER 22
248 #define RTWS_STOPPING 23
249 static const char * const rcu_torture_writer_state_names[] = {
250 "RTWS_FIXED_DELAY",
251 "RTWS_DELAY",
252 "RTWS_REPLACE",
253 "RTWS_DEF_FREE",
254 "RTWS_EXP_SYNC",
255 "RTWS_COND_GET",
256 "RTWS_COND_GET_FULL",
257 "RTWS_COND_GET_EXP",
258 "RTWS_COND_GET_EXP_FULL",
259 "RTWS_COND_SYNC",
260 "RTWS_COND_SYNC_FULL",
261 "RTWS_COND_SYNC_EXP",
262 "RTWS_COND_SYNC_EXP_FULL",
263 "RTWS_POLL_GET",
264 "RTWS_POLL_GET_FULL",
265 "RTWS_POLL_GET_EXP",
266 "RTWS_POLL_GET_EXP_FULL",
267 "RTWS_POLL_WAIT",
268 "RTWS_POLL_WAIT_FULL",
269 "RTWS_POLL_WAIT_EXP",
270 "RTWS_POLL_WAIT_EXP_FULL",
271 "RTWS_SYNC",
272 "RTWS_STUTTER",
273 "RTWS_STOPPING",
274 };
275
276 /* Record reader segment types and duration for first failing read. */
277 struct rt_read_seg {
278 int rt_readstate;
279 unsigned long rt_delay_jiffies;
280 unsigned long rt_delay_ms;
281 unsigned long rt_delay_us;
282 bool rt_preempted;
283 int rt_cpu;
284 int rt_end_cpu;
285 unsigned long long rt_gp_seq;
286 unsigned long long rt_gp_seq_end;
287 u64 rt_ts;
288 };
289 static int err_segs_recorded;
290 static struct rt_read_seg err_segs[RCUTORTURE_RDR_MAX_SEGS];
291 static int rt_read_nsegs;
292 static int rt_read_preempted;
293
rcu_torture_writer_state_getname(void)294 static const char *rcu_torture_writer_state_getname(void)
295 {
296 unsigned int i = READ_ONCE(rcu_torture_writer_state);
297
298 if (i >= ARRAY_SIZE(rcu_torture_writer_state_names))
299 return "???";
300 return rcu_torture_writer_state_names[i];
301 }
302
303 #ifdef CONFIG_RCU_TRACE
rcu_trace_clock_local(void)304 static u64 notrace rcu_trace_clock_local(void)
305 {
306 u64 ts = trace_clock_local();
307
308 (void)do_div(ts, NSEC_PER_USEC);
309 return ts;
310 }
311 #else /* #ifdef CONFIG_RCU_TRACE */
rcu_trace_clock_local(void)312 static u64 notrace rcu_trace_clock_local(void)
313 {
314 return 0ULL;
315 }
316 #endif /* #else #ifdef CONFIG_RCU_TRACE */
317
318 /*
319 * Stop aggressive CPU-hog tests a bit before the end of the test in order
320 * to avoid interfering with test shutdown.
321 */
shutdown_time_arrived(void)322 static bool shutdown_time_arrived(void)
323 {
324 return shutdown_secs && time_after(jiffies, shutdown_jiffies - 30 * HZ);
325 }
326
327 static unsigned long boost_starttime; /* jiffies of next boost test start. */
328 static DEFINE_MUTEX(boost_mutex); /* protect setting boost_starttime */
329 /* and boost task create/destroy. */
330 static atomic_t barrier_cbs_count; /* Barrier callbacks registered. */
331 static bool barrier_phase; /* Test phase. */
332 static atomic_t barrier_cbs_invoked; /* Barrier callbacks invoked. */
333 static wait_queue_head_t *barrier_cbs_wq; /* Coordinate barrier testing. */
334 static DECLARE_WAIT_QUEUE_HEAD(barrier_wq);
335
336 static atomic_t rcu_fwd_cb_nodelay; /* Short rcu_torture_delay() delays. */
337
338 /*
339 * Allocate an element from the rcu_tortures pool.
340 */
341 static struct rcu_torture *
rcu_torture_alloc(void)342 rcu_torture_alloc(void)
343 {
344 struct list_head *p;
345
346 spin_lock_bh(&rcu_torture_lock);
347 if (list_empty(&rcu_torture_freelist)) {
348 atomic_inc(&n_rcu_torture_alloc_fail);
349 spin_unlock_bh(&rcu_torture_lock);
350 return NULL;
351 }
352 atomic_inc(&n_rcu_torture_alloc);
353 p = rcu_torture_freelist.next;
354 list_del_init(p);
355 spin_unlock_bh(&rcu_torture_lock);
356 return container_of(p, struct rcu_torture, rtort_free);
357 }
358
359 /*
360 * Free an element to the rcu_tortures pool.
361 */
362 static void
rcu_torture_free(struct rcu_torture * p)363 rcu_torture_free(struct rcu_torture *p)
364 {
365 atomic_inc(&n_rcu_torture_free);
366 spin_lock_bh(&rcu_torture_lock);
367 list_add_tail(&p->rtort_free, &rcu_torture_freelist);
368 spin_unlock_bh(&rcu_torture_lock);
369 }
370
371 /*
372 * Operations vector for selecting different types of tests.
373 */
374
375 struct rcu_torture_ops {
376 int ttype;
377 void (*init)(void);
378 void (*cleanup)(void);
379 int (*readlock)(void);
380 void (*read_delay)(struct torture_random_state *rrsp,
381 struct rt_read_seg *rtrsp);
382 void (*readunlock)(int idx);
383 int (*readlock_held)(void); // lockdep.
384 int (*readlock_nesting)(void); // actual nesting, if available, -1 if not.
385 int (*down_read)(void);
386 void (*up_read)(int idx);
387 unsigned long (*get_gp_seq)(void);
388 unsigned long (*gp_diff)(unsigned long new, unsigned long old);
389 void (*deferred_free)(struct rcu_torture *p);
390 void (*sync)(void);
391 void (*exp_sync)(void);
392 void (*exp_current)(void);
393 unsigned long (*get_gp_state_exp)(void);
394 unsigned long (*start_gp_poll_exp)(void);
395 void (*start_gp_poll_exp_full)(struct rcu_gp_oldstate *rgosp);
396 bool (*poll_gp_state_exp)(unsigned long oldstate);
397 void (*cond_sync_exp)(unsigned long oldstate);
398 void (*cond_sync_exp_full)(struct rcu_gp_oldstate *rgosp);
399 unsigned long (*get_comp_state)(void);
400 void (*get_comp_state_full)(struct rcu_gp_oldstate *rgosp);
401 bool (*same_gp_state)(unsigned long oldstate1, unsigned long oldstate2);
402 bool (*same_gp_state_full)(struct rcu_gp_oldstate *rgosp1, struct rcu_gp_oldstate *rgosp2);
403 unsigned long (*get_gp_state)(void);
404 void (*get_gp_state_full)(struct rcu_gp_oldstate *rgosp);
405 unsigned long (*start_gp_poll)(void);
406 void (*start_gp_poll_full)(struct rcu_gp_oldstate *rgosp);
407 bool (*poll_gp_state)(unsigned long oldstate);
408 bool (*poll_gp_state_full)(struct rcu_gp_oldstate *rgosp);
409 bool (*poll_need_2gp)(bool poll, bool poll_full);
410 void (*cond_sync)(unsigned long oldstate);
411 void (*cond_sync_full)(struct rcu_gp_oldstate *rgosp);
412 int poll_active;
413 int poll_active_full;
414 call_rcu_func_t call;
415 void (*cb_barrier)(void);
416 void (*fqs)(void);
417 void (*stats)(void);
418 void (*gp_kthread_dbg)(void);
419 bool (*check_boost_failed)(unsigned long gp_state, int *cpup);
420 int (*stall_dur)(void);
421 void (*get_gp_data)(int *flags, unsigned long *gp_seq);
422 void (*gp_slow_register)(atomic_t *rgssp);
423 void (*gp_slow_unregister)(atomic_t *rgssp);
424 bool (*reader_blocked)(void);
425 unsigned long long (*gather_gp_seqs)(void);
426 void (*format_gp_seqs)(unsigned long long seqs, char *cp, size_t len);
427 void (*set_gpwrap_lag)(unsigned long lag);
428 int (*get_gpwrap_count)(int cpu);
429 long cbflood_max;
430 int irq_capable;
431 int can_boost;
432 int extendables;
433 int slow_gps;
434 int no_pi_lock;
435 int debug_objects;
436 int start_poll_irqsoff;
437 int have_up_down;
438 const char *name;
439 };
440
441 static struct rcu_torture_ops *cur_ops;
442
443 /*
444 * Definitions for rcu torture testing.
445 */
446
torture_readlock_not_held(void)447 static int torture_readlock_not_held(void)
448 {
449 return rcu_read_lock_bh_held() || rcu_read_lock_sched_held();
450 }
451
rcu_torture_read_lock(void)452 static int rcu_torture_read_lock(void)
453 {
454 rcu_read_lock();
455 return 0;
456 }
457
458 static void
rcu_read_delay(struct torture_random_state * rrsp,struct rt_read_seg * rtrsp)459 rcu_read_delay(struct torture_random_state *rrsp, struct rt_read_seg *rtrsp)
460 {
461 unsigned long started;
462 unsigned long completed;
463 const unsigned long shortdelay_us = 200;
464 unsigned long longdelay_ms = 300;
465 unsigned long long ts;
466
467 /* We want a short delay sometimes to make a reader delay the grace
468 * period, and we want a long delay occasionally to trigger
469 * force_quiescent_state. */
470
471 if (!atomic_read(&rcu_fwd_cb_nodelay) &&
472 !(torture_random(rrsp) % (nrealreaders * 2000 * longdelay_ms))) {
473 started = cur_ops->get_gp_seq();
474 ts = rcu_trace_clock_local();
475 if ((preempt_count() & HARDIRQ_MASK) || softirq_count())
476 longdelay_ms = 5; /* Avoid triggering BH limits. */
477 mdelay(longdelay_ms);
478 rtrsp->rt_delay_ms = longdelay_ms;
479 completed = cur_ops->get_gp_seq();
480 do_trace_rcu_torture_read(cur_ops->name, NULL, ts,
481 started, completed);
482 }
483 if (!(torture_random(rrsp) % (nrealreaders * 2 * shortdelay_us))) {
484 udelay(shortdelay_us);
485 rtrsp->rt_delay_us = shortdelay_us;
486 }
487 if (!preempt_count() &&
488 !(torture_random(rrsp) % (nrealreaders * 500)))
489 torture_preempt_schedule(); /* QS only if preemptible. */
490 }
491
rcu_torture_read_unlock(int idx)492 static void rcu_torture_read_unlock(int idx)
493 {
494 rcu_read_unlock();
495 }
496
rcu_torture_readlock_nesting(void)497 static int rcu_torture_readlock_nesting(void)
498 {
499 if (IS_ENABLED(CONFIG_PREEMPT_RCU))
500 return rcu_preempt_depth();
501 if (IS_ENABLED(CONFIG_PREEMPT_COUNT))
502 return (preempt_count() & PREEMPT_MASK);
503 return -1;
504 }
505
506 /*
507 * Update callback in the pipe. This should be invoked after a grace period.
508 */
509 static bool
rcu_torture_pipe_update_one(struct rcu_torture * rp)510 rcu_torture_pipe_update_one(struct rcu_torture *rp)
511 {
512 int i;
513 struct rcu_torture_reader_check *rtrcp = READ_ONCE(rp->rtort_chkp);
514
515 if (rtrcp) {
516 WRITE_ONCE(rp->rtort_chkp, NULL);
517 smp_store_release(&rtrcp->rtc_ready, 1); // Pair with smp_load_acquire().
518 }
519 i = rp->rtort_pipe_count;
520 if (i > RCU_TORTURE_PIPE_LEN)
521 i = RCU_TORTURE_PIPE_LEN;
522 atomic_inc(&rcu_torture_wcount[i]);
523 WRITE_ONCE(rp->rtort_pipe_count, i + 1);
524 ASSERT_EXCLUSIVE_WRITER(rp->rtort_pipe_count);
525 if (i + 1 >= RCU_TORTURE_PIPE_LEN) {
526 rp->rtort_mbtest = 0;
527 return true;
528 }
529 return false;
530 }
531
532 /*
533 * Update all callbacks in the pipe. Suitable for synchronous grace-period
534 * primitives.
535 */
536 static void
rcu_torture_pipe_update(struct rcu_torture * old_rp)537 rcu_torture_pipe_update(struct rcu_torture *old_rp)
538 {
539 struct rcu_torture *rp;
540 struct rcu_torture *rp1;
541
542 if (old_rp)
543 list_add(&old_rp->rtort_free, &rcu_torture_removed);
544 list_for_each_entry_safe(rp, rp1, &rcu_torture_removed, rtort_free) {
545 if (rcu_torture_pipe_update_one(rp)) {
546 list_del(&rp->rtort_free);
547 rcu_torture_free(rp);
548 }
549 }
550 }
551
552 static void
rcu_torture_cb(struct rcu_head * p)553 rcu_torture_cb(struct rcu_head *p)
554 {
555 struct rcu_torture *rp = container_of(p, struct rcu_torture, rtort_rcu);
556
557 if (torture_must_stop_irq()) {
558 /* Test is ending, just drop callbacks on the floor. */
559 /* The next initialization will pick up the pieces. */
560 return;
561 }
562 if (rcu_torture_pipe_update_one(rp))
563 rcu_torture_free(rp);
564 else
565 cur_ops->deferred_free(rp);
566 }
567
rcu_no_completed(void)568 static unsigned long rcu_no_completed(void)
569 {
570 return 0;
571 }
572
rcu_torture_deferred_free(struct rcu_torture * p)573 static void rcu_torture_deferred_free(struct rcu_torture *p)
574 {
575 call_rcu_hurry(&p->rtort_rcu, rcu_torture_cb);
576 }
577
rcu_sync_torture_init(void)578 static void rcu_sync_torture_init(void)
579 {
580 INIT_LIST_HEAD(&rcu_torture_removed);
581 }
582
rcu_poll_need_2gp(bool poll,bool poll_full)583 static bool rcu_poll_need_2gp(bool poll, bool poll_full)
584 {
585 return poll;
586 }
587
588 static struct rcu_torture_ops rcu_ops = {
589 .ttype = RCU_FLAVOR,
590 .init = rcu_sync_torture_init,
591 .readlock = rcu_torture_read_lock,
592 .read_delay = rcu_read_delay,
593 .readunlock = rcu_torture_read_unlock,
594 .readlock_held = torture_readlock_not_held,
595 .readlock_nesting = rcu_torture_readlock_nesting,
596 .get_gp_seq = rcu_get_gp_seq,
597 .gp_diff = rcu_seq_diff,
598 .deferred_free = rcu_torture_deferred_free,
599 .sync = synchronize_rcu,
600 .exp_sync = synchronize_rcu_expedited,
601 .same_gp_state = same_state_synchronize_rcu,
602 .same_gp_state_full = same_state_synchronize_rcu_full,
603 .get_comp_state = get_completed_synchronize_rcu,
604 .get_comp_state_full = get_completed_synchronize_rcu_full,
605 .get_gp_state = get_state_synchronize_rcu,
606 .get_gp_state_full = get_state_synchronize_rcu_full,
607 .start_gp_poll = start_poll_synchronize_rcu,
608 .start_gp_poll_full = start_poll_synchronize_rcu_full,
609 .poll_gp_state = poll_state_synchronize_rcu,
610 .poll_gp_state_full = poll_state_synchronize_rcu_full,
611 .poll_need_2gp = rcu_poll_need_2gp,
612 .cond_sync = cond_synchronize_rcu,
613 .cond_sync_full = cond_synchronize_rcu_full,
614 .poll_active = NUM_ACTIVE_RCU_POLL_OLDSTATE,
615 .poll_active_full = NUM_ACTIVE_RCU_POLL_FULL_OLDSTATE,
616 .get_gp_state_exp = get_state_synchronize_rcu,
617 .start_gp_poll_exp = start_poll_synchronize_rcu_expedited,
618 .start_gp_poll_exp_full = start_poll_synchronize_rcu_expedited_full,
619 .poll_gp_state_exp = poll_state_synchronize_rcu,
620 .cond_sync_exp = cond_synchronize_rcu_expedited,
621 .cond_sync_exp_full = cond_synchronize_rcu_expedited_full,
622 .call = call_rcu_hurry,
623 .cb_barrier = rcu_barrier,
624 .fqs = rcu_force_quiescent_state,
625 .gp_kthread_dbg = show_rcu_gp_kthreads,
626 .check_boost_failed = rcu_check_boost_fail,
627 .stall_dur = rcu_jiffies_till_stall_check,
628 .get_gp_data = rcutorture_get_gp_data,
629 .gp_slow_register = rcu_gp_slow_register,
630 .gp_slow_unregister = rcu_gp_slow_unregister,
631 .reader_blocked = IS_ENABLED(CONFIG_RCU_TORTURE_TEST_LOG_CPU)
632 ? has_rcu_reader_blocked
633 : NULL,
634 .gather_gp_seqs = rcutorture_gather_gp_seqs,
635 .format_gp_seqs = rcutorture_format_gp_seqs,
636 .set_gpwrap_lag = rcu_set_gpwrap_lag,
637 .get_gpwrap_count = rcu_get_gpwrap_count,
638 .irq_capable = 1,
639 .can_boost = IS_ENABLED(CONFIG_RCU_BOOST),
640 .extendables = RCUTORTURE_MAX_EXTEND,
641 .debug_objects = 1,
642 .start_poll_irqsoff = 1,
643 .name = "rcu"
644 };
645
646 /*
647 * Don't even think about trying any of these in real life!!!
648 * The names includes "busted", and they really means it!
649 * The only purpose of these functions is to provide a buggy RCU
650 * implementation to make sure that rcutorture correctly emits
651 * buggy-RCU error messages.
652 */
rcu_busted_torture_deferred_free(struct rcu_torture * p)653 static void rcu_busted_torture_deferred_free(struct rcu_torture *p)
654 {
655 /* This is a deliberate bug for testing purposes only! */
656 rcu_torture_cb(&p->rtort_rcu);
657 }
658
synchronize_rcu_busted(void)659 static void synchronize_rcu_busted(void)
660 {
661 /* This is a deliberate bug for testing purposes only! */
662 }
663
664 static void
call_rcu_busted(struct rcu_head * head,rcu_callback_t func)665 call_rcu_busted(struct rcu_head *head, rcu_callback_t func)
666 {
667 /* This is a deliberate bug for testing purposes only! */
668 func(head);
669 }
670
671 static struct rcu_torture_ops rcu_busted_ops = {
672 .ttype = INVALID_RCU_FLAVOR,
673 .init = rcu_sync_torture_init,
674 .readlock = rcu_torture_read_lock,
675 .read_delay = rcu_read_delay, /* just reuse rcu's version. */
676 .readunlock = rcu_torture_read_unlock,
677 .readlock_held = torture_readlock_not_held,
678 .get_gp_seq = rcu_no_completed,
679 .deferred_free = rcu_busted_torture_deferred_free,
680 .sync = synchronize_rcu_busted,
681 .exp_sync = synchronize_rcu_busted,
682 .call = call_rcu_busted,
683 .gather_gp_seqs = rcutorture_gather_gp_seqs,
684 .format_gp_seqs = rcutorture_format_gp_seqs,
685 .irq_capable = 1,
686 .extendables = RCUTORTURE_MAX_EXTEND,
687 .name = "busted"
688 };
689
690 /*
691 * Definitions for srcu torture testing.
692 */
693
694 DEFINE_STATIC_SRCU(srcu_ctl);
695 DEFINE_STATIC_SRCU_FAST(srcu_ctlf);
696 DEFINE_STATIC_SRCU_FAST_UPDOWN(srcu_ctlfud);
697 static struct srcu_struct srcu_ctld;
698 static struct srcu_struct *srcu_ctlp = &srcu_ctl;
699 static struct rcu_torture_ops srcud_ops;
700
srcu_torture_init(void)701 static void srcu_torture_init(void)
702 {
703 rcu_sync_torture_init();
704 if (!reader_flavor || (reader_flavor & SRCU_READ_FLAVOR_NORMAL))
705 VERBOSE_TOROUT_STRING("srcu_torture_init normal SRCU");
706 if (reader_flavor & SRCU_READ_FLAVOR_NMI)
707 VERBOSE_TOROUT_STRING("srcu_torture_init NMI-safe SRCU");
708 if (reader_flavor & SRCU_READ_FLAVOR_FAST) {
709 srcu_ctlp = &srcu_ctlf;
710 VERBOSE_TOROUT_STRING("srcu_torture_init fast SRCU");
711 }
712 if (reader_flavor & SRCU_READ_FLAVOR_FAST_UPDOWN) {
713 srcu_ctlp = &srcu_ctlfud;
714 VERBOSE_TOROUT_STRING("srcu_torture_init fast-up/down SRCU");
715 }
716 }
717
srcu_get_gp_data(int * flags,unsigned long * gp_seq)718 static void srcu_get_gp_data(int *flags, unsigned long *gp_seq)
719 {
720 srcutorture_get_gp_data(srcu_ctlp, flags, gp_seq);
721 }
722
srcu_torture_read_lock(void)723 static int srcu_torture_read_lock(void)
724 {
725 int idx;
726 struct srcu_ctr __percpu *scp;
727 int ret = 0;
728
729 WARN_ON_ONCE(reader_flavor & ~SRCU_READ_FLAVOR_ALL);
730
731 if ((reader_flavor & SRCU_READ_FLAVOR_NORMAL) || !(reader_flavor & SRCU_READ_FLAVOR_ALL)) {
732 idx = srcu_read_lock(srcu_ctlp);
733 WARN_ON_ONCE(idx & ~0x1);
734 ret += idx;
735 }
736 if (reader_flavor & SRCU_READ_FLAVOR_NMI) {
737 idx = srcu_read_lock_nmisafe(srcu_ctlp);
738 WARN_ON_ONCE(idx & ~0x1);
739 ret += idx << 1;
740 }
741 if (reader_flavor & SRCU_READ_FLAVOR_FAST) {
742 scp = srcu_read_lock_fast(srcu_ctlp);
743 idx = __srcu_ptr_to_ctr(srcu_ctlp, scp);
744 WARN_ON_ONCE(idx & ~0x1);
745 ret += idx << 2;
746 }
747 if (reader_flavor & SRCU_READ_FLAVOR_FAST_UPDOWN) {
748 scp = srcu_read_lock_fast_updown(srcu_ctlp);
749 idx = __srcu_ptr_to_ctr(srcu_ctlp, scp);
750 WARN_ON_ONCE(idx & ~0x1);
751 ret += idx << 3;
752 }
753 return ret;
754 }
755
756 static void
srcu_read_delay(struct torture_random_state * rrsp,struct rt_read_seg * rtrsp)757 srcu_read_delay(struct torture_random_state *rrsp, struct rt_read_seg *rtrsp)
758 {
759 long delay;
760 const long uspertick = 1000000 / HZ;
761 const long longdelay = 10;
762
763 /* We want there to be long-running readers, but not all the time. */
764
765 delay = torture_random(rrsp) %
766 (nrealreaders * 2 * longdelay * uspertick);
767 if (!delay && in_task()) {
768 schedule_timeout_interruptible(longdelay);
769 rtrsp->rt_delay_jiffies = longdelay;
770 } else {
771 rcu_read_delay(rrsp, rtrsp);
772 }
773 }
774
srcu_torture_read_unlock(int idx)775 static void srcu_torture_read_unlock(int idx)
776 {
777 WARN_ON_ONCE((reader_flavor && (idx & ~reader_flavor)) || (!reader_flavor && (idx & ~0x1)));
778 if (reader_flavor & SRCU_READ_FLAVOR_FAST_UPDOWN)
779 srcu_read_unlock_fast_updown(srcu_ctlp,
780 __srcu_ctr_to_ptr(srcu_ctlp, (idx & 0x8) >> 3));
781 if (reader_flavor & SRCU_READ_FLAVOR_FAST)
782 srcu_read_unlock_fast(srcu_ctlp, __srcu_ctr_to_ptr(srcu_ctlp, (idx & 0x4) >> 2));
783 if (reader_flavor & SRCU_READ_FLAVOR_NMI)
784 srcu_read_unlock_nmisafe(srcu_ctlp, (idx & 0x2) >> 1);
785 if ((reader_flavor & SRCU_READ_FLAVOR_NORMAL) || !(reader_flavor & SRCU_READ_FLAVOR_ALL))
786 srcu_read_unlock(srcu_ctlp, idx & 0x1);
787 }
788
torture_srcu_read_lock_held(void)789 static int torture_srcu_read_lock_held(void)
790 {
791 return srcu_read_lock_held(srcu_ctlp);
792 }
793
srcu_torture_have_up_down(void)794 static bool srcu_torture_have_up_down(void)
795 {
796 int rf = reader_flavor;
797
798 if (!rf)
799 rf = SRCU_READ_FLAVOR_NORMAL;
800 return !!(cur_ops->have_up_down & rf);
801 }
802
srcu_torture_down_read(void)803 static int srcu_torture_down_read(void)
804 {
805 int idx;
806 struct srcu_ctr __percpu *scp;
807
808 WARN_ON_ONCE(reader_flavor & ~SRCU_READ_FLAVOR_ALL);
809 WARN_ON_ONCE(reader_flavor & (reader_flavor - 1));
810
811 if ((reader_flavor & SRCU_READ_FLAVOR_NORMAL) || !(reader_flavor & SRCU_READ_FLAVOR_ALL)) {
812 idx = srcu_down_read(srcu_ctlp);
813 WARN_ON_ONCE(idx & ~0x1);
814 return idx;
815 }
816 if (reader_flavor & SRCU_READ_FLAVOR_FAST_UPDOWN) {
817 scp = srcu_down_read_fast(srcu_ctlp);
818 idx = __srcu_ptr_to_ctr(srcu_ctlp, scp);
819 WARN_ON_ONCE(idx & ~0x1);
820 return idx << 3;
821 }
822 WARN_ON_ONCE(1);
823 return 0;
824 }
825
srcu_torture_up_read(int idx)826 static void srcu_torture_up_read(int idx)
827 {
828 WARN_ON_ONCE((reader_flavor && (idx & ~reader_flavor)) || (!reader_flavor && (idx & ~0x1)));
829 if (reader_flavor & SRCU_READ_FLAVOR_FAST_UPDOWN)
830 srcu_up_read_fast(srcu_ctlp, __srcu_ctr_to_ptr(srcu_ctlp, (idx & 0x8) >> 3));
831 else if ((reader_flavor & SRCU_READ_FLAVOR_NORMAL) ||
832 !(reader_flavor & SRCU_READ_FLAVOR_ALL))
833 srcu_up_read(srcu_ctlp, idx & 0x1);
834 else
835 WARN_ON_ONCE(1);
836 }
837
srcu_torture_completed(void)838 static unsigned long srcu_torture_completed(void)
839 {
840 return srcu_batches_completed(srcu_ctlp);
841 }
842
srcu_torture_deferred_free(struct rcu_torture * rp)843 static void srcu_torture_deferred_free(struct rcu_torture *rp)
844 {
845 unsigned long flags;
846 bool lockit = jiffies & 0x1;
847
848 if (lockit)
849 raw_spin_lock_irqsave(¤t->pi_lock, flags);
850 call_srcu(srcu_ctlp, &rp->rtort_rcu, rcu_torture_cb);
851 if (lockit)
852 raw_spin_unlock_irqrestore(¤t->pi_lock, flags);
853 }
854
srcu_torture_synchronize(void)855 static void srcu_torture_synchronize(void)
856 {
857 synchronize_srcu(srcu_ctlp);
858 }
859
srcu_torture_get_gp_state(void)860 static unsigned long srcu_torture_get_gp_state(void)
861 {
862 return get_state_synchronize_srcu(srcu_ctlp);
863 }
864
srcu_torture_start_gp_poll(void)865 static unsigned long srcu_torture_start_gp_poll(void)
866 {
867 return start_poll_synchronize_srcu(srcu_ctlp);
868 }
869
srcu_torture_poll_gp_state(unsigned long oldstate)870 static bool srcu_torture_poll_gp_state(unsigned long oldstate)
871 {
872 return poll_state_synchronize_srcu(srcu_ctlp, oldstate);
873 }
874
srcu_torture_call(struct rcu_head * head,rcu_callback_t func)875 static void srcu_torture_call(struct rcu_head *head,
876 rcu_callback_t func)
877 {
878 call_srcu(srcu_ctlp, head, func);
879 }
880
srcu_torture_barrier(void)881 static void srcu_torture_barrier(void)
882 {
883 srcu_barrier(srcu_ctlp);
884 }
885
srcu_torture_stats(void)886 static void srcu_torture_stats(void)
887 {
888 srcu_torture_stats_print(srcu_ctlp, torture_type, TORTURE_FLAG);
889 }
890
srcu_torture_synchronize_expedited(void)891 static void srcu_torture_synchronize_expedited(void)
892 {
893 synchronize_srcu_expedited(srcu_ctlp);
894 }
895
srcu_torture_expedite_current(void)896 static void srcu_torture_expedite_current(void)
897 {
898 srcu_expedite_current(srcu_ctlp);
899 }
900
901 static struct rcu_torture_ops srcu_ops = {
902 .ttype = SRCU_FLAVOR,
903 .init = srcu_torture_init,
904 .readlock = srcu_torture_read_lock,
905 .read_delay = srcu_read_delay,
906 .readunlock = srcu_torture_read_unlock,
907 .down_read = srcu_torture_down_read,
908 .up_read = srcu_torture_up_read,
909 .readlock_held = torture_srcu_read_lock_held,
910 .get_gp_seq = srcu_torture_completed,
911 .gp_diff = rcu_seq_diff,
912 .deferred_free = srcu_torture_deferred_free,
913 .sync = srcu_torture_synchronize,
914 .exp_sync = srcu_torture_synchronize_expedited,
915 .exp_current = srcu_torture_expedite_current,
916 .same_gp_state = same_state_synchronize_srcu,
917 .get_comp_state = get_completed_synchronize_srcu,
918 .get_gp_state = srcu_torture_get_gp_state,
919 .start_gp_poll = srcu_torture_start_gp_poll,
920 .poll_gp_state = srcu_torture_poll_gp_state,
921 .poll_active = NUM_ACTIVE_SRCU_POLL_OLDSTATE,
922 .call = srcu_torture_call,
923 .cb_barrier = srcu_torture_barrier,
924 .stats = srcu_torture_stats,
925 .get_gp_data = srcu_get_gp_data,
926 .cbflood_max = 50000,
927 .irq_capable = 1,
928 .no_pi_lock = IS_ENABLED(CONFIG_TINY_SRCU),
929 .debug_objects = 1,
930 .have_up_down = IS_ENABLED(CONFIG_TINY_SRCU)
931 ? 0 : SRCU_READ_FLAVOR_NORMAL | SRCU_READ_FLAVOR_FAST_UPDOWN,
932 .name = "srcu"
933 };
934
srcud_torture_init(void)935 static void srcud_torture_init(void)
936 {
937 rcu_sync_torture_init();
938 if (!reader_flavor || (reader_flavor & SRCU_READ_FLAVOR_NORMAL)) {
939 WARN_ON(init_srcu_struct(&srcu_ctld));
940 VERBOSE_TOROUT_STRING("srcud_torture_init normal SRCU");
941 } else if (reader_flavor & SRCU_READ_FLAVOR_NMI) {
942 WARN_ON(init_srcu_struct(&srcu_ctld));
943 VERBOSE_TOROUT_STRING("srcud_torture_init NMI-safe SRCU");
944 } else if (reader_flavor & SRCU_READ_FLAVOR_FAST) {
945 WARN_ON(init_srcu_struct_fast(&srcu_ctld));
946 VERBOSE_TOROUT_STRING("srcud_torture_init fast SRCU");
947 } else if (reader_flavor & SRCU_READ_FLAVOR_FAST_UPDOWN) {
948 WARN_ON(init_srcu_struct_fast_updown(&srcu_ctld));
949 VERBOSE_TOROUT_STRING("srcud_torture_init fast-up/down SRCU");
950 } else {
951 WARN_ON(init_srcu_struct(&srcu_ctld));
952 }
953 srcu_ctlp = &srcu_ctld;
954 }
955
srcu_torture_cleanup(void)956 static void srcu_torture_cleanup(void)
957 {
958 cleanup_srcu_struct(&srcu_ctld);
959 srcu_ctlp = &srcu_ctl; /* In case of a later rcutorture run. */
960 }
961
962 /* As above, but dynamically allocated. */
963 static struct rcu_torture_ops srcud_ops = {
964 .ttype = SRCU_FLAVOR,
965 .init = srcud_torture_init,
966 .cleanup = srcu_torture_cleanup,
967 .readlock = srcu_torture_read_lock,
968 .read_delay = srcu_read_delay,
969 .readunlock = srcu_torture_read_unlock,
970 .readlock_held = torture_srcu_read_lock_held,
971 .down_read = srcu_torture_down_read,
972 .up_read = srcu_torture_up_read,
973 .get_gp_seq = srcu_torture_completed,
974 .gp_diff = rcu_seq_diff,
975 .deferred_free = srcu_torture_deferred_free,
976 .sync = srcu_torture_synchronize,
977 .exp_sync = srcu_torture_synchronize_expedited,
978 .exp_current = srcu_torture_expedite_current,
979 .same_gp_state = same_state_synchronize_srcu,
980 .get_comp_state = get_completed_synchronize_srcu,
981 .get_gp_state = srcu_torture_get_gp_state,
982 .start_gp_poll = srcu_torture_start_gp_poll,
983 .poll_gp_state = srcu_torture_poll_gp_state,
984 .poll_active = NUM_ACTIVE_SRCU_POLL_OLDSTATE,
985 .call = srcu_torture_call,
986 .cb_barrier = srcu_torture_barrier,
987 .stats = srcu_torture_stats,
988 .get_gp_data = srcu_get_gp_data,
989 .cbflood_max = 50000,
990 .irq_capable = 1,
991 .no_pi_lock = IS_ENABLED(CONFIG_TINY_SRCU),
992 .debug_objects = 1,
993 .have_up_down = IS_ENABLED(CONFIG_TINY_SRCU)
994 ? 0 : SRCU_READ_FLAVOR_NORMAL | SRCU_READ_FLAVOR_FAST_UPDOWN,
995 .name = "srcud"
996 };
997
998 /* As above, but broken due to inappropriate reader extension. */
999 static struct rcu_torture_ops busted_srcud_ops = {
1000 .ttype = SRCU_FLAVOR,
1001 .init = srcu_torture_init,
1002 .cleanup = srcu_torture_cleanup,
1003 .readlock = srcu_torture_read_lock,
1004 .read_delay = rcu_read_delay,
1005 .readunlock = srcu_torture_read_unlock,
1006 .readlock_held = torture_srcu_read_lock_held,
1007 .get_gp_seq = srcu_torture_completed,
1008 .deferred_free = srcu_torture_deferred_free,
1009 .sync = srcu_torture_synchronize,
1010 .exp_sync = srcu_torture_synchronize_expedited,
1011 .call = srcu_torture_call,
1012 .cb_barrier = srcu_torture_barrier,
1013 .stats = srcu_torture_stats,
1014 .irq_capable = 1,
1015 .no_pi_lock = IS_ENABLED(CONFIG_TINY_SRCU),
1016 .extendables = RCUTORTURE_MAX_EXTEND,
1017 .name = "busted_srcud"
1018 };
1019
1020 /*
1021 * Definitions for trivial CONFIG_PREEMPT=n-only torture testing.
1022 * This implementation does not work well with CPU hotplug nor
1023 * with rcutorture's shuffling.
1024 */
1025
synchronize_rcu_trivial(void)1026 static void synchronize_rcu_trivial(void)
1027 {
1028 int cpu;
1029
1030 for_each_online_cpu(cpu) {
1031 torture_sched_setaffinity(current->pid, cpumask_of(cpu), true);
1032 WARN_ON_ONCE(raw_smp_processor_id() != cpu);
1033 }
1034 }
1035
rcu_sync_torture_init_trivial(void)1036 static void rcu_sync_torture_init_trivial(void)
1037 {
1038 rcu_sync_torture_init();
1039 // if (onoff_interval || shuffle_interval) {
1040 if (WARN_ONCE(onoff_interval || shuffle_interval, "%s: Non-zero onoff_interval (%d) or shuffle_interval (%d) breaks trivial RCU, resetting to zero", __func__, onoff_interval, shuffle_interval)) {
1041 onoff_interval = 0;
1042 shuffle_interval = 0;
1043 }
1044 }
1045
rcu_torture_read_lock_trivial(void)1046 static int rcu_torture_read_lock_trivial(void)
1047 {
1048 preempt_disable();
1049 return 0;
1050 }
1051
rcu_torture_read_unlock_trivial(int idx)1052 static void rcu_torture_read_unlock_trivial(int idx)
1053 {
1054 preempt_enable();
1055 }
1056
1057 static struct rcu_torture_ops trivial_ops = {
1058 .ttype = RCU_TRIVIAL_FLAVOR,
1059 .init = rcu_sync_torture_init_trivial,
1060 .readlock = rcu_torture_read_lock_trivial,
1061 .read_delay = rcu_read_delay, /* just reuse rcu's version. */
1062 .readunlock = rcu_torture_read_unlock_trivial,
1063 .readlock_held = torture_readlock_not_held,
1064 .get_gp_seq = rcu_no_completed,
1065 .sync = synchronize_rcu_trivial,
1066 .exp_sync = synchronize_rcu_trivial,
1067 .irq_capable = 1,
1068 .name = "trivial"
1069 };
1070
1071 #ifdef CONFIG_TRIVIAL_PREEMPT_RCU
1072
1073 /*
1074 * Definitions for trivial CONFIG_PREEMPT=y torture testing. This
1075 * implementation does not work well with large numbers of tasks or with
1076 * long-term preemption. Either or both get you RCU CPU stall warnings.
1077 */
1078
rcu_sync_torture_init_trivial_preempt(void)1079 static void rcu_sync_torture_init_trivial_preempt(void)
1080 {
1081 rcu_sync_torture_init();
1082 if (WARN_ONCE(onoff_interval || shuffle_interval, "%s: Non-zero onoff_interval (%d) or shuffle_interval (%d) breaks trivial RCU, resetting to zero", __func__, onoff_interval, shuffle_interval)) {
1083 onoff_interval = 0;
1084 shuffle_interval = 0;
1085 }
1086 }
1087
rcu_torture_read_lock_trivial_preempt(void)1088 static int rcu_torture_read_lock_trivial_preempt(void)
1089 {
1090 struct task_struct *t = current;
1091
1092 WRITE_ONCE(t->rcu_trivial_preempt_nesting, t->rcu_trivial_preempt_nesting + 1);
1093 smp_mb();
1094 return 0;
1095 }
1096
rcu_torture_read_unlock_trivial_preempt(int idx)1097 static void rcu_torture_read_unlock_trivial_preempt(int idx)
1098 {
1099 struct task_struct *t = current;
1100
1101 smp_store_release(&t->rcu_trivial_preempt_nesting, t->rcu_trivial_preempt_nesting - 1);
1102 }
1103
1104 static struct rcu_torture_ops trivial_preempt_ops = {
1105 .ttype = RCU_TRIVIAL_FLAVOR,
1106 .init = rcu_sync_torture_init_trivial_preempt,
1107 .readlock = rcu_torture_read_lock_trivial_preempt,
1108 .read_delay = rcu_read_delay, // just reuse rcu's version.
1109 .readunlock = rcu_torture_read_unlock_trivial_preempt,
1110 .readlock_held = torture_readlock_not_held,
1111 .get_gp_seq = rcu_no_completed,
1112 .sync = synchronize_rcu_trivial_preempt,
1113 .exp_sync = synchronize_rcu_trivial_preempt,
1114 .irq_capable = 0, // In theory it should be, but let's keep it trivial.
1115 .name = "trivial-preempt"
1116 };
1117
1118 #define TRIVIAL_PREEMPT_OPS &trivial_preempt_ops,
1119
1120 #else // #ifdef CONFIG_TRIVIAL_PREEMPT_RCU
1121
1122 #define TRIVIAL_PREEMPT_OPS
1123
1124 #endif // #else // #ifdef CONFIG_TRIVIAL_PREEMPT_RCU
1125
1126 #ifdef CONFIG_TASKS_RCU
1127
1128 /*
1129 * Definitions for RCU-tasks torture testing.
1130 */
1131
tasks_torture_read_lock(void)1132 static int tasks_torture_read_lock(void)
1133 {
1134 return 0;
1135 }
1136
tasks_torture_read_unlock(int idx)1137 static void tasks_torture_read_unlock(int idx)
1138 {
1139 }
1140
rcu_tasks_torture_deferred_free(struct rcu_torture * p)1141 static void rcu_tasks_torture_deferred_free(struct rcu_torture *p)
1142 {
1143 call_rcu_tasks(&p->rtort_rcu, rcu_torture_cb);
1144 }
1145
synchronize_rcu_mult_test(void)1146 static void synchronize_rcu_mult_test(void)
1147 {
1148 synchronize_rcu_mult(call_rcu_tasks, call_rcu_hurry);
1149 }
1150
1151 static struct rcu_torture_ops tasks_ops = {
1152 .ttype = RCU_TASKS_FLAVOR,
1153 .init = rcu_sync_torture_init,
1154 .readlock = tasks_torture_read_lock,
1155 .read_delay = rcu_read_delay, /* just reuse rcu's version. */
1156 .readunlock = tasks_torture_read_unlock,
1157 .get_gp_seq = rcu_no_completed,
1158 .deferred_free = rcu_tasks_torture_deferred_free,
1159 .sync = synchronize_rcu_tasks,
1160 .exp_sync = synchronize_rcu_mult_test,
1161 .call = call_rcu_tasks,
1162 .cb_barrier = rcu_barrier_tasks,
1163 .gp_kthread_dbg = show_rcu_tasks_classic_gp_kthread,
1164 .get_gp_data = rcu_tasks_get_gp_data,
1165 .irq_capable = 1,
1166 .slow_gps = 1,
1167 .name = "tasks"
1168 };
1169
1170 #define TASKS_OPS &tasks_ops,
1171
1172 #else // #ifdef CONFIG_TASKS_RCU
1173
1174 #define TASKS_OPS
1175
1176 #endif // #else #ifdef CONFIG_TASKS_RCU
1177
1178
1179 #ifdef CONFIG_TASKS_RUDE_RCU
1180
1181 /*
1182 * Definitions for rude RCU-tasks torture testing.
1183 */
1184
1185 static struct rcu_torture_ops tasks_rude_ops = {
1186 .ttype = RCU_TASKS_RUDE_FLAVOR,
1187 .init = rcu_sync_torture_init,
1188 .readlock = rcu_torture_read_lock_trivial,
1189 .read_delay = rcu_read_delay, /* just reuse rcu's version. */
1190 .readunlock = rcu_torture_read_unlock_trivial,
1191 .get_gp_seq = rcu_no_completed,
1192 .sync = synchronize_rcu_tasks_rude,
1193 .exp_sync = synchronize_rcu_tasks_rude,
1194 .gp_kthread_dbg = show_rcu_tasks_rude_gp_kthread,
1195 .get_gp_data = rcu_tasks_rude_get_gp_data,
1196 .cbflood_max = 50000,
1197 .irq_capable = 1,
1198 .name = "tasks-rude"
1199 };
1200
1201 #define TASKS_RUDE_OPS &tasks_rude_ops,
1202
1203 #else // #ifdef CONFIG_TASKS_RUDE_RCU
1204
1205 #define TASKS_RUDE_OPS
1206
1207 #endif // #else #ifdef CONFIG_TASKS_RUDE_RCU
1208
1209
1210 #ifdef CONFIG_TASKS_TRACE_RCU
1211
1212 /*
1213 * Definitions for tracing RCU-tasks torture testing.
1214 */
1215
tasks_tracing_torture_read_lock(void)1216 static int tasks_tracing_torture_read_lock(void)
1217 {
1218 rcu_read_lock_trace();
1219 return 0;
1220 }
1221
tasks_tracing_torture_read_unlock(int idx)1222 static void tasks_tracing_torture_read_unlock(int idx)
1223 {
1224 rcu_read_unlock_trace();
1225 }
1226
rcu_tasks_tracing_torture_deferred_free(struct rcu_torture * p)1227 static void rcu_tasks_tracing_torture_deferred_free(struct rcu_torture *p)
1228 {
1229 call_rcu_tasks_trace(&p->rtort_rcu, rcu_torture_cb);
1230 }
1231
1232 static struct rcu_torture_ops tasks_tracing_ops = {
1233 .ttype = RCU_TASKS_TRACING_FLAVOR,
1234 .init = rcu_sync_torture_init,
1235 .readlock = tasks_tracing_torture_read_lock,
1236 .read_delay = srcu_read_delay, /* just reuse srcu's version. */
1237 .readunlock = tasks_tracing_torture_read_unlock,
1238 .readlock_held = rcu_read_lock_trace_held,
1239 .get_gp_seq = rcu_no_completed,
1240 .deferred_free = rcu_tasks_tracing_torture_deferred_free,
1241 .sync = synchronize_rcu_tasks_trace,
1242 .exp_sync = synchronize_rcu_tasks_trace,
1243 .exp_current = rcu_tasks_trace_expedite_current,
1244 .call = call_rcu_tasks_trace,
1245 .cb_barrier = rcu_barrier_tasks_trace,
1246 .cbflood_max = 50000,
1247 .irq_capable = 1,
1248 .slow_gps = 1,
1249 .name = "tasks-tracing"
1250 };
1251
1252 #define TASKS_TRACING_OPS &tasks_tracing_ops,
1253
1254 #else // #ifdef CONFIG_TASKS_TRACE_RCU
1255
1256 #define TASKS_TRACING_OPS
1257
1258 #endif // #else #ifdef CONFIG_TASKS_TRACE_RCU
1259
1260
rcutorture_seq_diff(unsigned long new,unsigned long old)1261 static unsigned long rcutorture_seq_diff(unsigned long new, unsigned long old)
1262 {
1263 if (!cur_ops->gp_diff)
1264 return new - old;
1265 return cur_ops->gp_diff(new, old);
1266 }
1267
1268 /*
1269 * RCU torture priority-boost testing. Runs one real-time thread per
1270 * CPU for moderate bursts, repeatedly starting grace periods and waiting
1271 * for them to complete. If a given grace period takes too long, we assume
1272 * that priority inversion has occurred.
1273 */
1274
1275 static int old_rt_runtime = -1;
1276
rcu_torture_disable_rt_throttle(void)1277 static void rcu_torture_disable_rt_throttle(void)
1278 {
1279 /*
1280 * Disable RT throttling so that rcutorture's boost threads don't get
1281 * throttled. Only possible if rcutorture is built-in otherwise the
1282 * user should manually do this by setting the sched_rt_period_us and
1283 * sched_rt_runtime sysctls.
1284 */
1285 if (!IS_BUILTIN(CONFIG_RCU_TORTURE_TEST) || old_rt_runtime != -1)
1286 return;
1287
1288 old_rt_runtime = sysctl_sched_rt_runtime;
1289 sysctl_sched_rt_runtime = -1;
1290 }
1291
rcu_torture_enable_rt_throttle(void)1292 static void rcu_torture_enable_rt_throttle(void)
1293 {
1294 if (!IS_BUILTIN(CONFIG_RCU_TORTURE_TEST) || old_rt_runtime == -1)
1295 return;
1296
1297 sysctl_sched_rt_runtime = old_rt_runtime;
1298 old_rt_runtime = -1;
1299 }
1300
rcu_torture_boost_failed(unsigned long gp_state,unsigned long * start)1301 static bool rcu_torture_boost_failed(unsigned long gp_state, unsigned long *start)
1302 {
1303 int cpu;
1304 static int dbg_done;
1305 unsigned long end = jiffies;
1306 bool gp_done;
1307 unsigned long j;
1308 static unsigned long last_persist;
1309 unsigned long lp;
1310 unsigned long mininterval = test_boost_duration * HZ - HZ / 2;
1311
1312 if (end - *start > mininterval) {
1313 // Recheck after checking time to avoid false positives.
1314 smp_mb(); // Time check before grace-period check.
1315 if (cur_ops->poll_gp_state(gp_state))
1316 return false; // passed, though perhaps just barely
1317 if (cur_ops->check_boost_failed && !cur_ops->check_boost_failed(gp_state, &cpu)) {
1318 // At most one persisted message per boost test.
1319 j = jiffies;
1320 lp = READ_ONCE(last_persist);
1321 if (time_after(j, lp + mininterval) &&
1322 cmpxchg(&last_persist, lp, j) == lp) {
1323 if (cpu < 0)
1324 pr_info("Boost inversion persisted: QS from all CPUs\n");
1325 else
1326 pr_info("Boost inversion persisted: No QS from CPU %d\n", cpu);
1327 }
1328 return false; // passed on a technicality
1329 }
1330 VERBOSE_TOROUT_STRING("rcu_torture_boost boosting failed");
1331 n_rcu_torture_boost_failure++;
1332 if (!xchg(&dbg_done, 1) && cur_ops->gp_kthread_dbg) {
1333 pr_info("Boost inversion thread ->rt_priority %u gp_state %lu jiffies %lu\n",
1334 current->rt_priority, gp_state, end - *start);
1335 cur_ops->gp_kthread_dbg();
1336 // Recheck after print to flag grace period ending during splat.
1337 gp_done = cur_ops->poll_gp_state(gp_state);
1338 pr_info("Boost inversion: GP %lu %s.\n", gp_state,
1339 gp_done ? "ended already" : "still pending");
1340
1341 }
1342
1343 return true; // failed
1344 } else if (cur_ops->check_boost_failed && !cur_ops->check_boost_failed(gp_state, NULL)) {
1345 *start = jiffies;
1346 }
1347
1348 return false; // passed
1349 }
1350
rcu_torture_boost(void * arg)1351 static int rcu_torture_boost(void *arg)
1352 {
1353 unsigned long endtime;
1354 unsigned long gp_state;
1355 unsigned long gp_state_time;
1356 unsigned long oldstarttime;
1357 unsigned long booststarttime = get_torture_init_jiffies() + test_boost_holdoff * HZ;
1358
1359 if (test_boost_holdoff <= 0 || time_after(jiffies, booststarttime)) {
1360 VERBOSE_TOROUT_STRING("rcu_torture_boost started");
1361 } else {
1362 VERBOSE_TOROUT_STRING("rcu_torture_boost started holdoff period");
1363 while (time_before(jiffies, booststarttime)) {
1364 schedule_timeout_idle(HZ);
1365 if (kthread_should_stop())
1366 goto cleanup;
1367 }
1368 VERBOSE_TOROUT_STRING("rcu_torture_boost finished holdoff period");
1369 }
1370
1371 /* Set real-time priority. */
1372 sched_set_fifo_low(current);
1373
1374 /* Each pass through the following loop does one boost-test cycle. */
1375 do {
1376 bool failed = false; // Test failed already in this test interval
1377 bool gp_initiated = false;
1378
1379 if (kthread_should_stop())
1380 goto checkwait;
1381
1382 /* Wait for the next test interval. */
1383 oldstarttime = READ_ONCE(boost_starttime);
1384 while (time_before(jiffies, oldstarttime)) {
1385 schedule_timeout_interruptible(oldstarttime - jiffies);
1386 if (stutter_wait("rcu_torture_boost"))
1387 sched_set_fifo_low(current);
1388 if (torture_must_stop())
1389 goto checkwait;
1390 }
1391
1392 // Do one boost-test interval.
1393 endtime = oldstarttime + test_boost_duration * HZ;
1394 while (time_before(jiffies, endtime)) {
1395 // Has current GP gone too long?
1396 if (gp_initiated && !failed && !cur_ops->poll_gp_state(gp_state))
1397 failed = rcu_torture_boost_failed(gp_state, &gp_state_time);
1398 // If we don't have a grace period in flight, start one.
1399 if (!gp_initiated || cur_ops->poll_gp_state(gp_state)) {
1400 gp_state = cur_ops->start_gp_poll();
1401 gp_initiated = true;
1402 gp_state_time = jiffies;
1403 }
1404 if (stutter_wait("rcu_torture_boost")) {
1405 sched_set_fifo_low(current);
1406 // If the grace period already ended,
1407 // we don't know when that happened, so
1408 // start over.
1409 if (cur_ops->poll_gp_state(gp_state))
1410 gp_initiated = false;
1411 }
1412 if (torture_must_stop())
1413 goto checkwait;
1414 }
1415
1416 // In case the grace period extended beyond the end of the loop.
1417 if (gp_initiated && !failed && !cur_ops->poll_gp_state(gp_state))
1418 rcu_torture_boost_failed(gp_state, &gp_state_time);
1419
1420 /*
1421 * Set the start time of the next test interval.
1422 * Yes, this is vulnerable to long delays, but such
1423 * delays simply cause a false negative for the next
1424 * interval. Besides, we are running at RT priority,
1425 * so delays should be relatively rare.
1426 */
1427 while (oldstarttime == READ_ONCE(boost_starttime) && !kthread_should_stop()) {
1428 if (mutex_trylock(&boost_mutex)) {
1429 if (oldstarttime == boost_starttime) {
1430 WRITE_ONCE(boost_starttime,
1431 jiffies + test_boost_interval * HZ);
1432 n_rcu_torture_boosts++;
1433 }
1434 mutex_unlock(&boost_mutex);
1435 break;
1436 }
1437 schedule_timeout_uninterruptible(HZ / 20);
1438 }
1439
1440 /* Go do the stutter. */
1441 checkwait: if (stutter_wait("rcu_torture_boost"))
1442 sched_set_fifo_low(current);
1443 } while (!torture_must_stop());
1444
1445 cleanup:
1446 /* Clean up and exit. */
1447 while (!kthread_should_stop()) {
1448 torture_shutdown_absorb("rcu_torture_boost");
1449 schedule_timeout_uninterruptible(HZ / 20);
1450 }
1451 torture_kthread_stopping("rcu_torture_boost");
1452 return 0;
1453 }
1454
1455 /*
1456 * RCU torture force-quiescent-state kthread. Repeatedly induces
1457 * bursts of calls to force_quiescent_state(), increasing the probability
1458 * of occurrence of some important types of race conditions.
1459 */
1460 static int
rcu_torture_fqs(void * arg)1461 rcu_torture_fqs(void *arg)
1462 {
1463 unsigned long fqs_resume_time;
1464 int fqs_burst_remaining;
1465 int oldnice = task_nice(current);
1466
1467 VERBOSE_TOROUT_STRING("rcu_torture_fqs task started");
1468 do {
1469 fqs_resume_time = jiffies + fqs_stutter * HZ;
1470 while (time_before(jiffies, fqs_resume_time) &&
1471 !kthread_should_stop()) {
1472 schedule_timeout_interruptible(HZ / 20);
1473 }
1474 fqs_burst_remaining = fqs_duration;
1475 while (fqs_burst_remaining > 0 &&
1476 !kthread_should_stop()) {
1477 cur_ops->fqs();
1478 udelay(fqs_holdoff);
1479 fqs_burst_remaining -= fqs_holdoff;
1480 }
1481 if (stutter_wait("rcu_torture_fqs"))
1482 sched_set_normal(current, oldnice);
1483 } while (!torture_must_stop());
1484 torture_kthread_stopping("rcu_torture_fqs");
1485 return 0;
1486 }
1487
1488 // Used by writers to randomly choose from the available grace-period primitives.
1489 static int synctype[ARRAY_SIZE(rcu_torture_writer_state_names)] = { };
1490 static int nsynctypes;
1491
1492 /*
1493 * Determine which grace-period primitives are available.
1494 */
rcu_torture_write_types(void)1495 static void rcu_torture_write_types(void)
1496 {
1497 bool gp_cond1 = gp_cond, gp_cond_exp1 = gp_cond_exp, gp_cond_full1 = gp_cond_full;
1498 bool gp_cond_exp_full1 = gp_cond_exp_full, gp_exp1 = gp_exp, gp_poll_exp1 = gp_poll_exp;
1499 bool gp_poll_exp_full1 = gp_poll_exp_full, gp_normal1 = gp_normal, gp_poll1 = gp_poll;
1500 bool gp_poll_full1 = gp_poll_full, gp_sync1 = gp_sync;
1501
1502 /* Initialize synctype[] array. If none set, take default. */
1503 if (!gp_cond1 &&
1504 !gp_cond_exp1 &&
1505 !gp_cond_full1 &&
1506 !gp_cond_exp_full1 &&
1507 !gp_exp1 &&
1508 !gp_poll_exp1 &&
1509 !gp_poll_exp_full1 &&
1510 !gp_normal1 &&
1511 !gp_poll1 &&
1512 !gp_poll_full1 &&
1513 !gp_sync1) {
1514 gp_cond1 = true;
1515 gp_cond_exp1 = true;
1516 gp_cond_full1 = true;
1517 gp_cond_exp_full1 = true;
1518 gp_exp1 = true;
1519 gp_poll_exp1 = true;
1520 gp_poll_exp_full1 = true;
1521 gp_normal1 = true;
1522 gp_poll1 = true;
1523 gp_poll_full1 = true;
1524 gp_sync1 = true;
1525 }
1526 if (gp_cond1 && cur_ops->get_gp_state && cur_ops->cond_sync) {
1527 synctype[nsynctypes++] = RTWS_COND_GET;
1528 pr_info("%s: Testing conditional GPs.\n", __func__);
1529 } else if (gp_cond && (!cur_ops->get_gp_state || !cur_ops->cond_sync)) {
1530 pr_alert("%s: gp_cond without primitives.\n", __func__);
1531 }
1532 if (gp_cond_exp1 && cur_ops->get_gp_state_exp && cur_ops->cond_sync_exp) {
1533 synctype[nsynctypes++] = RTWS_COND_GET_EXP;
1534 pr_info("%s: Testing conditional expedited GPs.\n", __func__);
1535 } else if (gp_cond_exp && (!cur_ops->get_gp_state_exp || !cur_ops->cond_sync_exp)) {
1536 pr_alert("%s: gp_cond_exp without primitives.\n", __func__);
1537 }
1538 if (gp_cond_full1 && cur_ops->get_gp_state && cur_ops->cond_sync_full) {
1539 synctype[nsynctypes++] = RTWS_COND_GET_FULL;
1540 pr_info("%s: Testing conditional full-state GPs.\n", __func__);
1541 } else if (gp_cond_full && (!cur_ops->get_gp_state || !cur_ops->cond_sync_full)) {
1542 pr_alert("%s: gp_cond_full without primitives.\n", __func__);
1543 }
1544 if (gp_cond_exp_full1 && cur_ops->get_gp_state_exp && cur_ops->cond_sync_exp_full) {
1545 synctype[nsynctypes++] = RTWS_COND_GET_EXP_FULL;
1546 pr_info("%s: Testing conditional full-state expedited GPs.\n", __func__);
1547 } else if (gp_cond_exp_full &&
1548 (!cur_ops->get_gp_state_exp || !cur_ops->cond_sync_exp_full)) {
1549 pr_alert("%s: gp_cond_exp_full without primitives.\n", __func__);
1550 }
1551 if (gp_exp1 && cur_ops->exp_sync) {
1552 synctype[nsynctypes++] = RTWS_EXP_SYNC;
1553 pr_info("%s: Testing expedited GPs.\n", __func__);
1554 } else if (gp_exp && !cur_ops->exp_sync) {
1555 pr_alert("%s: gp_exp without primitives.\n", __func__);
1556 }
1557 if (gp_normal1 && cur_ops->deferred_free) {
1558 synctype[nsynctypes++] = RTWS_DEF_FREE;
1559 pr_info("%s: Testing asynchronous GPs.\n", __func__);
1560 } else if (gp_normal && !cur_ops->deferred_free) {
1561 pr_alert("%s: gp_normal without primitives.\n", __func__);
1562 }
1563 if (gp_poll1 && cur_ops->get_comp_state && cur_ops->same_gp_state &&
1564 cur_ops->start_gp_poll && cur_ops->poll_gp_state) {
1565 synctype[nsynctypes++] = RTWS_POLL_GET;
1566 pr_info("%s: Testing polling GPs.\n", __func__);
1567 } else if (gp_poll && (!cur_ops->start_gp_poll || !cur_ops->poll_gp_state)) {
1568 pr_alert("%s: gp_poll without primitives.\n", __func__);
1569 }
1570 if (gp_poll_full1 && cur_ops->get_comp_state_full && cur_ops->same_gp_state_full
1571 && cur_ops->start_gp_poll_full && cur_ops->poll_gp_state_full) {
1572 synctype[nsynctypes++] = RTWS_POLL_GET_FULL;
1573 pr_info("%s: Testing polling full-state GPs.\n", __func__);
1574 } else if (gp_poll_full && (!cur_ops->start_gp_poll_full || !cur_ops->poll_gp_state_full)) {
1575 pr_alert("%s: gp_poll_full without primitives.\n", __func__);
1576 }
1577 if (gp_poll_exp1 && cur_ops->start_gp_poll_exp && cur_ops->poll_gp_state_exp) {
1578 synctype[nsynctypes++] = RTWS_POLL_GET_EXP;
1579 pr_info("%s: Testing polling expedited GPs.\n", __func__);
1580 } else if (gp_poll_exp && (!cur_ops->start_gp_poll_exp || !cur_ops->poll_gp_state_exp)) {
1581 pr_alert("%s: gp_poll_exp without primitives.\n", __func__);
1582 }
1583 if (gp_poll_exp_full1 && cur_ops->start_gp_poll_exp_full && cur_ops->poll_gp_state_full) {
1584 synctype[nsynctypes++] = RTWS_POLL_GET_EXP_FULL;
1585 pr_info("%s: Testing polling full-state expedited GPs.\n", __func__);
1586 } else if (gp_poll_exp_full &&
1587 (!cur_ops->start_gp_poll_exp_full || !cur_ops->poll_gp_state_full)) {
1588 pr_alert("%s: gp_poll_exp_full without primitives.\n", __func__);
1589 }
1590 if (gp_sync1 && cur_ops->sync) {
1591 synctype[nsynctypes++] = RTWS_SYNC;
1592 pr_info("%s: Testing normal GPs.\n", __func__);
1593 } else if (gp_sync && !cur_ops->sync) {
1594 pr_alert("%s: gp_sync without primitives.\n", __func__);
1595 }
1596 pr_alert("%s: Testing %d update types.\n", __func__, nsynctypes);
1597 pr_info("%s: gp_cond_wi %d gp_cond_wi_exp %d gp_poll_wi %d gp_poll_wi_exp %d\n", __func__, gp_cond_wi, gp_cond_wi_exp, gp_poll_wi, gp_poll_wi_exp);
1598 }
1599
1600 /*
1601 * Do the specified rcu_torture_writer() synchronous grace period,
1602 * while also testing out the polled APIs. Note well that the single-CPU
1603 * grace-period optimizations must be accounted for.
1604 */
do_rtws_sync(struct torture_random_state * trsp,void (* sync)(void))1605 static void do_rtws_sync(struct torture_random_state *trsp, void (*sync)(void))
1606 {
1607 unsigned long cookie;
1608 struct rcu_gp_oldstate cookie_full;
1609 bool dopoll;
1610 bool dopoll_full;
1611 unsigned long r = torture_random(trsp);
1612
1613 dopoll = cur_ops->get_gp_state && cur_ops->poll_gp_state && !(r & 0x300);
1614 dopoll_full = cur_ops->get_gp_state_full && cur_ops->poll_gp_state_full && !(r & 0xc00);
1615 if (dopoll || dopoll_full)
1616 cpus_read_lock();
1617 if (dopoll)
1618 cookie = cur_ops->get_gp_state();
1619 if (dopoll_full)
1620 cur_ops->get_gp_state_full(&cookie_full);
1621 if (cur_ops->poll_need_2gp && cur_ops->poll_need_2gp(dopoll, dopoll_full))
1622 sync();
1623 sync();
1624 WARN_ONCE(dopoll && !cur_ops->poll_gp_state(cookie),
1625 "%s: Cookie check 3 failed %pS() online %*pbl.",
1626 __func__, sync, cpumask_pr_args(cpu_online_mask));
1627 WARN_ONCE(dopoll_full && !cur_ops->poll_gp_state_full(&cookie_full),
1628 "%s: Cookie check 4 failed %pS() online %*pbl",
1629 __func__, sync, cpumask_pr_args(cpu_online_mask));
1630 if (dopoll || dopoll_full)
1631 cpus_read_unlock();
1632 }
1633
1634 /*
1635 * RCU torture writer kthread. Repeatedly substitutes a new structure
1636 * for that pointed to by rcu_torture_current, freeing the old structure
1637 * after a series of grace periods (the "pipeline").
1638 */
1639 static int
rcu_torture_writer(void * arg)1640 rcu_torture_writer(void *arg)
1641 {
1642 bool booting_still = false;
1643 bool can_expedite = !rcu_gp_is_expedited() && !rcu_gp_is_normal();
1644 unsigned long cookie;
1645 struct rcu_gp_oldstate cookie_full;
1646 int expediting = 0;
1647 unsigned long gp_snap;
1648 unsigned long gp_snap1;
1649 struct rcu_gp_oldstate gp_snap_full;
1650 struct rcu_gp_oldstate gp_snap1_full;
1651 int i;
1652 int idx;
1653 unsigned long j;
1654 int oldnice = task_nice(current);
1655 struct rcu_gp_oldstate *rgo = NULL;
1656 int rgo_size = 0;
1657 struct rcu_torture *rp;
1658 struct rcu_torture *old_rp;
1659 static DEFINE_TORTURE_RANDOM(rand);
1660 unsigned long stallsdone = jiffies;
1661 bool stutter_waited;
1662 unsigned long *ulo = NULL;
1663 int ulo_size = 0;
1664
1665 // If a new stall test is added, this must be adjusted.
1666 if (stall_cpu_holdoff + stall_gp_kthread + stall_cpu)
1667 stallsdone += (stall_cpu_holdoff + stall_gp_kthread + stall_cpu + 60) *
1668 HZ * (stall_cpu_repeat + 1);
1669 VERBOSE_TOROUT_STRING("rcu_torture_writer task started");
1670 if (!can_expedite)
1671 pr_alert("%s" TORTURE_FLAG
1672 " GP expediting controlled from boot/sysfs for %s.\n",
1673 torture_type, cur_ops->name);
1674 if (WARN_ONCE(nsynctypes == 0,
1675 "%s: No update-side primitives.\n", __func__)) {
1676 /*
1677 * No updates primitives, so don't try updating.
1678 * The resulting test won't be testing much, hence the
1679 * above WARN_ONCE().
1680 */
1681 rcu_torture_writer_state = RTWS_STOPPING;
1682 torture_kthread_stopping("rcu_torture_writer");
1683 return 0;
1684 }
1685 if (cur_ops->poll_active > 0) {
1686 ulo = kcalloc(cur_ops->poll_active, sizeof(*ulo), GFP_KERNEL);
1687 if (!WARN_ON(!ulo))
1688 ulo_size = cur_ops->poll_active;
1689 }
1690 if (cur_ops->poll_active_full > 0) {
1691 rgo = kzalloc_objs(*rgo, cur_ops->poll_active_full);
1692 if (!WARN_ON(!rgo))
1693 rgo_size = cur_ops->poll_active_full;
1694 }
1695
1696 // If the system is still booting, let it finish.
1697 j = jiffies;
1698 while (!torture_must_stop() && !rcu_inkernel_boot_has_ended()) {
1699 booting_still = true;
1700 schedule_timeout_interruptible(HZ);
1701 }
1702 if (booting_still)
1703 pr_alert("%s" TORTURE_FLAG " Waited %lu jiffies for boot to complete.\n",
1704 torture_type, jiffies - j);
1705
1706 do {
1707 rcu_torture_writer_state = RTWS_FIXED_DELAY;
1708 torture_hrtimeout_us(500, 1000, &rand);
1709 rp = rcu_torture_alloc();
1710 if (rp == NULL)
1711 continue;
1712 rp->rtort_pipe_count = 0;
1713 ASSERT_EXCLUSIVE_WRITER(rp->rtort_pipe_count);
1714 rcu_torture_writer_state = RTWS_DELAY;
1715 udelay(torture_random(&rand) & 0x3ff);
1716 rcu_torture_writer_state = RTWS_REPLACE;
1717 old_rp = rcu_dereference_check(rcu_torture_current,
1718 current == writer_task);
1719 rp->rtort_mbtest = 1;
1720 rcu_assign_pointer(rcu_torture_current, rp);
1721 smp_wmb(); /* Mods to old_rp must follow rcu_assign_pointer() */
1722 if (old_rp) {
1723 i = old_rp->rtort_pipe_count;
1724 if (i > RCU_TORTURE_PIPE_LEN)
1725 i = RCU_TORTURE_PIPE_LEN;
1726 atomic_inc(&rcu_torture_wcount[i]);
1727 WRITE_ONCE(old_rp->rtort_pipe_count,
1728 old_rp->rtort_pipe_count + 1);
1729 ASSERT_EXCLUSIVE_WRITER(old_rp->rtort_pipe_count);
1730
1731 // Make sure readers block polled grace periods.
1732 if (cur_ops->get_gp_state && cur_ops->poll_gp_state) {
1733 idx = cur_ops->readlock();
1734 cookie = cur_ops->get_gp_state();
1735 WARN_ONCE(cur_ops->poll_gp_state(cookie),
1736 "%s: Cookie check 1 failed %s(%d) %lu->%lu\n",
1737 __func__,
1738 rcu_torture_writer_state_getname(),
1739 rcu_torture_writer_state,
1740 cookie, cur_ops->get_gp_state());
1741 if (cur_ops->get_comp_state) {
1742 cookie = cur_ops->get_comp_state();
1743 WARN_ON_ONCE(!cur_ops->poll_gp_state(cookie));
1744 }
1745 cur_ops->readunlock(idx);
1746 }
1747 if (cur_ops->get_gp_state_full && cur_ops->poll_gp_state_full) {
1748 idx = cur_ops->readlock();
1749 cur_ops->get_gp_state_full(&cookie_full);
1750 WARN_ONCE(cur_ops->poll_gp_state_full(&cookie_full),
1751 "%s: Cookie check 5 failed %s(%d) online %*pbl\n",
1752 __func__,
1753 rcu_torture_writer_state_getname(),
1754 rcu_torture_writer_state,
1755 cpumask_pr_args(cpu_online_mask));
1756 if (cur_ops->get_comp_state_full) {
1757 cur_ops->get_comp_state_full(&cookie_full);
1758 WARN_ON_ONCE(!cur_ops->poll_gp_state_full(&cookie_full));
1759 }
1760 cur_ops->readunlock(idx);
1761 }
1762 switch (synctype[torture_random(&rand) % nsynctypes]) {
1763 case RTWS_DEF_FREE:
1764 rcu_torture_writer_state = RTWS_DEF_FREE;
1765 cur_ops->deferred_free(old_rp);
1766 break;
1767 case RTWS_EXP_SYNC:
1768 rcu_torture_writer_state = RTWS_EXP_SYNC;
1769 do_rtws_sync(&rand, cur_ops->exp_sync);
1770 rcu_torture_pipe_update(old_rp);
1771 break;
1772 case RTWS_COND_GET:
1773 rcu_torture_writer_state = RTWS_COND_GET;
1774 gp_snap = cur_ops->get_gp_state();
1775 torture_hrtimeout_us(torture_random(&rand) % gp_cond_wi,
1776 1000, &rand);
1777 rcu_torture_writer_state = RTWS_COND_SYNC;
1778 cur_ops->cond_sync(gp_snap);
1779 rcu_torture_pipe_update(old_rp);
1780 break;
1781 case RTWS_COND_GET_EXP:
1782 rcu_torture_writer_state = RTWS_COND_GET_EXP;
1783 gp_snap = cur_ops->get_gp_state_exp();
1784 torture_hrtimeout_us(torture_random(&rand) % gp_cond_wi_exp,
1785 1000, &rand);
1786 rcu_torture_writer_state = RTWS_COND_SYNC_EXP;
1787 cur_ops->cond_sync_exp(gp_snap);
1788 rcu_torture_pipe_update(old_rp);
1789 break;
1790 case RTWS_COND_GET_FULL:
1791 rcu_torture_writer_state = RTWS_COND_GET_FULL;
1792 cur_ops->get_gp_state_full(&gp_snap_full);
1793 torture_hrtimeout_us(torture_random(&rand) % gp_cond_wi,
1794 1000, &rand);
1795 rcu_torture_writer_state = RTWS_COND_SYNC_FULL;
1796 cur_ops->cond_sync_full(&gp_snap_full);
1797 rcu_torture_pipe_update(old_rp);
1798 break;
1799 case RTWS_COND_GET_EXP_FULL:
1800 rcu_torture_writer_state = RTWS_COND_GET_EXP_FULL;
1801 cur_ops->get_gp_state_full(&gp_snap_full);
1802 torture_hrtimeout_us(torture_random(&rand) % gp_cond_wi_exp,
1803 1000, &rand);
1804 rcu_torture_writer_state = RTWS_COND_SYNC_EXP_FULL;
1805 cur_ops->cond_sync_exp_full(&gp_snap_full);
1806 rcu_torture_pipe_update(old_rp);
1807 break;
1808 case RTWS_POLL_GET:
1809 rcu_torture_writer_state = RTWS_POLL_GET;
1810 for (i = 0; i < ulo_size; i++)
1811 ulo[i] = cur_ops->get_comp_state();
1812 gp_snap = cur_ops->start_gp_poll();
1813 rcu_torture_writer_state = RTWS_POLL_WAIT;
1814 if (cur_ops->exp_current && !(torture_random(&rand) & 0xff))
1815 cur_ops->exp_current();
1816 while (!cur_ops->poll_gp_state(gp_snap)) {
1817 gp_snap1 = cur_ops->get_gp_state();
1818 for (i = 0; i < ulo_size; i++)
1819 if (cur_ops->poll_gp_state(ulo[i]) ||
1820 cur_ops->same_gp_state(ulo[i], gp_snap1)) {
1821 ulo[i] = gp_snap1;
1822 break;
1823 }
1824 WARN_ON_ONCE(ulo_size > 0 && i >= ulo_size);
1825 torture_hrtimeout_us(torture_random(&rand) % gp_poll_wi,
1826 1000, &rand);
1827 }
1828 rcu_torture_pipe_update(old_rp);
1829 break;
1830 case RTWS_POLL_GET_FULL:
1831 rcu_torture_writer_state = RTWS_POLL_GET_FULL;
1832 for (i = 0; i < rgo_size; i++)
1833 cur_ops->get_comp_state_full(&rgo[i]);
1834 cur_ops->start_gp_poll_full(&gp_snap_full);
1835 rcu_torture_writer_state = RTWS_POLL_WAIT_FULL;
1836 if (cur_ops->exp_current && !(torture_random(&rand) & 0xff))
1837 cur_ops->exp_current();
1838 while (!cur_ops->poll_gp_state_full(&gp_snap_full)) {
1839 cur_ops->get_gp_state_full(&gp_snap1_full);
1840 for (i = 0; i < rgo_size; i++)
1841 if (cur_ops->poll_gp_state_full(&rgo[i]) ||
1842 cur_ops->same_gp_state_full(&rgo[i],
1843 &gp_snap1_full)) {
1844 rgo[i] = gp_snap1_full;
1845 break;
1846 }
1847 WARN_ON_ONCE(rgo_size > 0 && i >= rgo_size);
1848 torture_hrtimeout_us(torture_random(&rand) % gp_poll_wi,
1849 1000, &rand);
1850 }
1851 rcu_torture_pipe_update(old_rp);
1852 break;
1853 case RTWS_POLL_GET_EXP:
1854 rcu_torture_writer_state = RTWS_POLL_GET_EXP;
1855 gp_snap = cur_ops->start_gp_poll_exp();
1856 rcu_torture_writer_state = RTWS_POLL_WAIT_EXP;
1857 while (!cur_ops->poll_gp_state_exp(gp_snap))
1858 torture_hrtimeout_us(torture_random(&rand) % gp_poll_wi_exp,
1859 1000, &rand);
1860 rcu_torture_pipe_update(old_rp);
1861 break;
1862 case RTWS_POLL_GET_EXP_FULL:
1863 rcu_torture_writer_state = RTWS_POLL_GET_EXP_FULL;
1864 cur_ops->start_gp_poll_exp_full(&gp_snap_full);
1865 rcu_torture_writer_state = RTWS_POLL_WAIT_EXP_FULL;
1866 while (!cur_ops->poll_gp_state_full(&gp_snap_full))
1867 torture_hrtimeout_us(torture_random(&rand) % gp_poll_wi_exp,
1868 1000, &rand);
1869 rcu_torture_pipe_update(old_rp);
1870 break;
1871 case RTWS_SYNC:
1872 rcu_torture_writer_state = RTWS_SYNC;
1873 do_rtws_sync(&rand, cur_ops->sync);
1874 rcu_torture_pipe_update(old_rp);
1875 break;
1876 default:
1877 WARN_ON_ONCE(1);
1878 break;
1879 }
1880 }
1881 WRITE_ONCE(rcu_torture_current_version,
1882 rcu_torture_current_version + 1);
1883 /* Cycle through nesting levels of rcu_expedite_gp() calls. */
1884 if (can_expedite &&
1885 !(torture_random(&rand) & 0xff & (!!expediting - 1))) {
1886 WARN_ON_ONCE(expediting == 0 && rcu_gp_is_expedited());
1887 if (expediting >= 0)
1888 rcu_expedite_gp();
1889 else
1890 rcu_unexpedite_gp();
1891 if (++expediting > 3)
1892 expediting = -expediting;
1893 } else if (!can_expedite) { /* Disabled during boot, recheck. */
1894 can_expedite = !rcu_gp_is_expedited() &&
1895 !rcu_gp_is_normal();
1896 }
1897 rcu_torture_writer_state = RTWS_STUTTER;
1898 stutter_waited = stutter_wait("rcu_torture_writer");
1899 if (stutter_waited &&
1900 !atomic_read(&rcu_fwd_cb_nodelay) &&
1901 !cur_ops->slow_gps &&
1902 !torture_must_stop() &&
1903 time_after(jiffies, stallsdone))
1904 for (i = 0; i < ARRAY_SIZE(rcu_tortures); i++)
1905 if (list_empty(&rcu_tortures[i].rtort_free) &&
1906 rcu_access_pointer(rcu_torture_current) != &rcu_tortures[i]) {
1907 tracing_off();
1908 if (cur_ops->gp_kthread_dbg)
1909 cur_ops->gp_kthread_dbg();
1910 WARN(1, "%s: rtort_pipe_count: %d\n", __func__, rcu_tortures[i].rtort_pipe_count);
1911 rcu_ftrace_dump(DUMP_ALL);
1912 break;
1913 }
1914 if (stutter_waited)
1915 sched_set_normal(current, oldnice);
1916 } while (!torture_must_stop());
1917 rcu_torture_current = NULL; // Let stats task know that we are done.
1918 /* Reset expediting back to unexpedited. */
1919 if (expediting > 0)
1920 expediting = -expediting;
1921 while (can_expedite && expediting++ < 0)
1922 rcu_unexpedite_gp();
1923 WARN_ON_ONCE(can_expedite && rcu_gp_is_expedited());
1924 if (!can_expedite)
1925 pr_alert("%s" TORTURE_FLAG
1926 " Dynamic grace-period expediting was disabled.\n",
1927 torture_type);
1928 kfree(ulo);
1929 kfree(rgo);
1930 rcu_torture_writer_state = RTWS_STOPPING;
1931 torture_kthread_stopping("rcu_torture_writer");
1932 return 0;
1933 }
1934
1935 /*
1936 * RCU torture fake writer kthread. Repeatedly calls sync, with a random
1937 * delay between calls.
1938 */
1939 static int
rcu_torture_fakewriter(void * arg)1940 rcu_torture_fakewriter(void *arg)
1941 {
1942 unsigned long gp_snap;
1943 struct rcu_gp_oldstate gp_snap_full;
1944 DEFINE_TORTURE_RANDOM(rand);
1945
1946 VERBOSE_TOROUT_STRING("rcu_torture_fakewriter task started");
1947 set_user_nice(current, MAX_NICE);
1948
1949 if (WARN_ONCE(nsynctypes == 0,
1950 "%s: No update-side primitives.\n", __func__)) {
1951 /*
1952 * No updates primitives, so don't try updating.
1953 * The resulting test won't be testing much, hence the
1954 * above WARN_ONCE().
1955 */
1956 torture_kthread_stopping("rcu_torture_fakewriter");
1957 return 0;
1958 }
1959
1960 do {
1961 torture_hrtimeout_jiffies(torture_random(&rand) % 10, &rand);
1962 if (cur_ops->cb_barrier != NULL &&
1963 torture_random(&rand) % (nrealfakewriters * 8) == 0) {
1964 cur_ops->cb_barrier();
1965 } else {
1966 switch (synctype[torture_random(&rand) % nsynctypes]) {
1967 case RTWS_DEF_FREE:
1968 break;
1969 case RTWS_EXP_SYNC:
1970 cur_ops->exp_sync();
1971 break;
1972 case RTWS_COND_GET:
1973 gp_snap = cur_ops->get_gp_state();
1974 torture_hrtimeout_jiffies(torture_random(&rand) % 16, &rand);
1975 cur_ops->cond_sync(gp_snap);
1976 break;
1977 case RTWS_COND_GET_EXP:
1978 gp_snap = cur_ops->get_gp_state_exp();
1979 torture_hrtimeout_jiffies(torture_random(&rand) % 16, &rand);
1980 cur_ops->cond_sync_exp(gp_snap);
1981 break;
1982 case RTWS_COND_GET_FULL:
1983 cur_ops->get_gp_state_full(&gp_snap_full);
1984 torture_hrtimeout_jiffies(torture_random(&rand) % 16, &rand);
1985 cur_ops->cond_sync_full(&gp_snap_full);
1986 break;
1987 case RTWS_COND_GET_EXP_FULL:
1988 cur_ops->get_gp_state_full(&gp_snap_full);
1989 torture_hrtimeout_jiffies(torture_random(&rand) % 16, &rand);
1990 cur_ops->cond_sync_exp_full(&gp_snap_full);
1991 break;
1992 case RTWS_POLL_GET:
1993 if (cur_ops->start_poll_irqsoff)
1994 local_irq_disable();
1995 gp_snap = cur_ops->start_gp_poll();
1996 if (cur_ops->start_poll_irqsoff)
1997 local_irq_enable();
1998 while (!cur_ops->poll_gp_state(gp_snap)) {
1999 torture_hrtimeout_jiffies(torture_random(&rand) % 16,
2000 &rand);
2001 }
2002 break;
2003 case RTWS_POLL_GET_FULL:
2004 if (cur_ops->start_poll_irqsoff)
2005 local_irq_disable();
2006 cur_ops->start_gp_poll_full(&gp_snap_full);
2007 if (cur_ops->start_poll_irqsoff)
2008 local_irq_enable();
2009 while (!cur_ops->poll_gp_state_full(&gp_snap_full)) {
2010 torture_hrtimeout_jiffies(torture_random(&rand) % 16,
2011 &rand);
2012 }
2013 break;
2014 case RTWS_POLL_GET_EXP:
2015 gp_snap = cur_ops->start_gp_poll_exp();
2016 while (!cur_ops->poll_gp_state_exp(gp_snap)) {
2017 torture_hrtimeout_jiffies(torture_random(&rand) % 16,
2018 &rand);
2019 }
2020 break;
2021 case RTWS_POLL_GET_EXP_FULL:
2022 cur_ops->start_gp_poll_exp_full(&gp_snap_full);
2023 while (!cur_ops->poll_gp_state_full(&gp_snap_full)) {
2024 torture_hrtimeout_jiffies(torture_random(&rand) % 16,
2025 &rand);
2026 }
2027 break;
2028 case RTWS_SYNC:
2029 cur_ops->sync();
2030 break;
2031 default:
2032 WARN_ON_ONCE(1);
2033 break;
2034 }
2035 }
2036 stutter_wait("rcu_torture_fakewriter");
2037 } while (!torture_must_stop());
2038
2039 torture_kthread_stopping("rcu_torture_fakewriter");
2040 return 0;
2041 }
2042
rcu_torture_timer_cb(struct rcu_head * rhp)2043 static void rcu_torture_timer_cb(struct rcu_head *rhp)
2044 {
2045 kfree(rhp);
2046 }
2047
2048 // Set up and carry out testing of RCU's global memory ordering
rcu_torture_reader_do_mbchk(long myid,struct rcu_torture * rtp,struct torture_random_state * trsp)2049 static void rcu_torture_reader_do_mbchk(long myid, struct rcu_torture *rtp,
2050 struct torture_random_state *trsp)
2051 {
2052 unsigned long loops;
2053 int noc = torture_num_online_cpus();
2054 int rdrchked;
2055 int rdrchker;
2056 struct rcu_torture_reader_check *rtrcp; // Me.
2057 struct rcu_torture_reader_check *rtrcp_assigner; // Assigned us to do checking.
2058 struct rcu_torture_reader_check *rtrcp_chked; // Reader being checked.
2059 struct rcu_torture_reader_check *rtrcp_chker; // Reader doing checking when not me.
2060
2061 if (myid < 0)
2062 return; // Don't try this from timer handlers.
2063
2064 // Increment my counter.
2065 rtrcp = &rcu_torture_reader_mbchk[myid];
2066 WRITE_ONCE(rtrcp->rtc_myloops, rtrcp->rtc_myloops + 1);
2067
2068 // Attempt to assign someone else some checking work.
2069 rdrchked = torture_random(trsp) % nrealreaders;
2070 rtrcp_chked = &rcu_torture_reader_mbchk[rdrchked];
2071 rdrchker = torture_random(trsp) % nrealreaders;
2072 rtrcp_chker = &rcu_torture_reader_mbchk[rdrchker];
2073 if (rdrchked != myid && rdrchked != rdrchker && noc >= rdrchked && noc >= rdrchker &&
2074 smp_load_acquire(&rtrcp->rtc_chkrdr) < 0 && // Pairs with smp_store_release below.
2075 !READ_ONCE(rtp->rtort_chkp) &&
2076 !smp_load_acquire(&rtrcp_chker->rtc_assigner)) { // Pairs with smp_store_release below.
2077 rtrcp->rtc_chkloops = READ_ONCE(rtrcp_chked->rtc_myloops);
2078 WARN_ON_ONCE(rtrcp->rtc_chkrdr >= 0);
2079 rtrcp->rtc_chkrdr = rdrchked;
2080 WARN_ON_ONCE(rtrcp->rtc_ready); // This gets set after the grace period ends.
2081 if (cmpxchg_relaxed(&rtrcp_chker->rtc_assigner, NULL, rtrcp) ||
2082 cmpxchg_relaxed(&rtp->rtort_chkp, NULL, rtrcp))
2083 (void)cmpxchg_relaxed(&rtrcp_chker->rtc_assigner, rtrcp, NULL); // Back out.
2084 }
2085
2086 // If assigned some completed work, do it!
2087 rtrcp_assigner = READ_ONCE(rtrcp->rtc_assigner);
2088 if (!rtrcp_assigner || !smp_load_acquire(&rtrcp_assigner->rtc_ready))
2089 return; // No work or work not yet ready.
2090 rdrchked = rtrcp_assigner->rtc_chkrdr;
2091 if (WARN_ON_ONCE(rdrchked < 0))
2092 return;
2093 rtrcp_chked = &rcu_torture_reader_mbchk[rdrchked];
2094 loops = READ_ONCE(rtrcp_chked->rtc_myloops);
2095 atomic_inc(&n_rcu_torture_mbchk_tries);
2096 if (ULONG_CMP_LT(loops, rtrcp_assigner->rtc_chkloops))
2097 atomic_inc(&n_rcu_torture_mbchk_fail);
2098 rtrcp_assigner->rtc_chkloops = loops + ULONG_MAX / 2;
2099 rtrcp_assigner->rtc_ready = 0;
2100 smp_store_release(&rtrcp->rtc_assigner, NULL); // Someone else can assign us work.
2101 smp_store_release(&rtrcp_assigner->rtc_chkrdr, -1); // Assigner can again assign.
2102 }
2103
2104 // Verify the specified RCUTORTURE_RDR* state.
2105 #define ROEC_ARGS "%s %s: Current %#x To add %#x To remove %#x preempt_count() %#x\n", __func__, s, curstate, new, old, preempt_count()
rcutorture_one_extend_check(char * s,int curstate,int new,int old)2106 static void rcutorture_one_extend_check(char *s, int curstate, int new, int old)
2107 {
2108 int mask;
2109
2110 if (!IS_ENABLED(CONFIG_RCU_TORTURE_TEST_CHK_RDR_STATE) || in_nmi())
2111 return;
2112
2113 WARN_ONCE(!(curstate & RCUTORTURE_RDR_IRQ) && irqs_disabled() && !in_hardirq(), ROEC_ARGS);
2114 WARN_ONCE((curstate & RCUTORTURE_RDR_IRQ) && !irqs_disabled(), ROEC_ARGS);
2115
2116 // If CONFIG_PREEMPT_COUNT=n, further checks are unreliable.
2117 if (!IS_ENABLED(CONFIG_PREEMPT_COUNT))
2118 return;
2119
2120 WARN_ONCE((curstate & (RCUTORTURE_RDR_BH | RCUTORTURE_RDR_RBH)) &&
2121 !softirq_count(), ROEC_ARGS);
2122 WARN_ONCE((curstate & (RCUTORTURE_RDR_PREEMPT | RCUTORTURE_RDR_SCHED)) &&
2123 !(preempt_count() & PREEMPT_MASK), ROEC_ARGS);
2124 WARN_ONCE(cur_ops->readlock_nesting &&
2125 (curstate & (RCUTORTURE_RDR_RCU_1 | RCUTORTURE_RDR_RCU_2)) &&
2126 cur_ops->readlock_nesting() == 0, ROEC_ARGS);
2127
2128 // Interrupt handlers have all sorts of stuff disabled, so ignore
2129 // unintended disabling.
2130 if (in_serving_softirq() || in_hardirq())
2131 return;
2132
2133 WARN_ONCE(cur_ops->extendables &&
2134 !(curstate & (RCUTORTURE_RDR_BH | RCUTORTURE_RDR_RBH)) &&
2135 softirq_count(), ROEC_ARGS);
2136
2137 /*
2138 * non-preemptible RCU in a preemptible kernel uses preempt_disable()
2139 * as rcu_read_lock().
2140 */
2141 mask = RCUTORTURE_RDR_PREEMPT | RCUTORTURE_RDR_SCHED;
2142 if (!IS_ENABLED(CONFIG_PREEMPT_RCU))
2143 mask |= RCUTORTURE_RDR_RCU_1 | RCUTORTURE_RDR_RCU_2;
2144
2145 WARN_ONCE(cur_ops->extendables && !(curstate & mask) &&
2146 (preempt_count() & PREEMPT_MASK), ROEC_ARGS);
2147
2148 /*
2149 * non-preemptible RCU in a preemptible kernel uses "preempt_count() &
2150 * PREEMPT_MASK" as ->readlock_nesting().
2151 */
2152 mask = RCUTORTURE_RDR_RCU_1 | RCUTORTURE_RDR_RCU_2;
2153 if (!IS_ENABLED(CONFIG_PREEMPT_RCU))
2154 mask |= RCUTORTURE_RDR_PREEMPT | RCUTORTURE_RDR_SCHED;
2155
2156 if (IS_ENABLED(CONFIG_PREEMPT_RT) && softirq_count())
2157 mask |= RCUTORTURE_RDR_BH | RCUTORTURE_RDR_RBH;
2158
2159 WARN_ONCE(cur_ops->readlock_nesting && !(curstate & mask) &&
2160 cur_ops->readlock_nesting() > 0, ROEC_ARGS);
2161 }
2162
2163 /*
2164 * Do one extension of an RCU read-side critical section using the
2165 * current reader state in readstate (set to zero for initial entry
2166 * to extended critical section), set the new state as specified by
2167 * newstate (set to zero for final exit from extended critical section),
2168 * and random-number-generator state in trsp. If this is neither the
2169 * beginning or end of the critical section and if there was actually a
2170 * change, do a ->read_delay().
2171 */
rcutorture_one_extend(int * readstate,int newstate,struct torture_random_state * trsp,struct rt_read_seg * rtrsp)2172 static void rcutorture_one_extend(int *readstate, int newstate, struct torture_random_state *trsp,
2173 struct rt_read_seg *rtrsp)
2174 {
2175 bool first;
2176 unsigned long flags;
2177 int idxnew1 = -1;
2178 int idxnew2 = -1;
2179 int idxold1 = *readstate;
2180 int idxold2 = idxold1;
2181 int statesnew = ~*readstate & newstate;
2182 int statesold = *readstate & ~newstate;
2183
2184 first = idxold1 == 0;
2185 WARN_ON_ONCE(idxold2 < 0);
2186 WARN_ON_ONCE(idxold2 & ~(RCUTORTURE_RDR_ALLBITS | RCUTORTURE_RDR_UPDOWN));
2187 rcutorture_one_extend_check("before change", idxold1, statesnew, statesold);
2188 rtrsp->rt_readstate = newstate;
2189
2190 /* First, put new protection in place to avoid critical-section gap. */
2191 if (statesnew & RCUTORTURE_RDR_BH)
2192 local_bh_disable();
2193 if (statesnew & RCUTORTURE_RDR_RBH)
2194 rcu_read_lock_bh();
2195 if (statesnew & RCUTORTURE_RDR_IRQ)
2196 local_irq_disable();
2197 if (statesnew & RCUTORTURE_RDR_PREEMPT)
2198 preempt_disable();
2199 if (statesnew & RCUTORTURE_RDR_SCHED)
2200 rcu_read_lock_sched();
2201 if (statesnew & RCUTORTURE_RDR_RCU_1)
2202 idxnew1 = (cur_ops->readlock() << RCUTORTURE_RDR_SHIFT_1) & RCUTORTURE_RDR_MASK_1;
2203 if (statesnew & RCUTORTURE_RDR_RCU_2)
2204 idxnew2 = (cur_ops->readlock() << RCUTORTURE_RDR_SHIFT_2) & RCUTORTURE_RDR_MASK_2;
2205
2206 // Complain unless both the old and the new protection is in place.
2207 rcutorture_one_extend_check("during change", idxold1 | statesnew, statesnew, statesold);
2208
2209 // Sample CPU under both sets of protections to reduce confusion.
2210 if (IS_ENABLED(CONFIG_RCU_TORTURE_TEST_LOG_CPU)) {
2211 int cpu = raw_smp_processor_id();
2212 rtrsp->rt_cpu = cpu;
2213 if (!first) {
2214 rtrsp[-1].rt_end_cpu = cpu;
2215 if (cur_ops->reader_blocked)
2216 rtrsp[-1].rt_preempted = cur_ops->reader_blocked();
2217 }
2218 }
2219 // Sample grace-period sequence number, as good a place as any.
2220 if (IS_ENABLED(CONFIG_RCU_TORTURE_TEST_LOG_GP) && cur_ops->gather_gp_seqs) {
2221 rtrsp->rt_gp_seq = cur_ops->gather_gp_seqs();
2222 rtrsp->rt_ts = ktime_get_mono_fast_ns();
2223 if (!first)
2224 rtrsp[-1].rt_gp_seq_end = rtrsp->rt_gp_seq;
2225 }
2226
2227 /*
2228 * Next, remove old protection, in decreasing order of strength
2229 * to avoid unlock paths that aren't safe in the stronger
2230 * context. Namely: BH can not be enabled with disabled interrupts.
2231 * Additionally PREEMPT_RT requires that BH is enabled in preemptible
2232 * context.
2233 */
2234 if (statesold & RCUTORTURE_RDR_IRQ)
2235 local_irq_enable();
2236 if (statesold & RCUTORTURE_RDR_PREEMPT)
2237 preempt_enable();
2238 if (statesold & RCUTORTURE_RDR_SCHED)
2239 rcu_read_unlock_sched();
2240 if (statesold & RCUTORTURE_RDR_BH)
2241 local_bh_enable();
2242 if (statesold & RCUTORTURE_RDR_RBH)
2243 rcu_read_unlock_bh();
2244 if (statesold & RCUTORTURE_RDR_RCU_2) {
2245 cur_ops->readunlock((idxold2 & RCUTORTURE_RDR_MASK_2) >> RCUTORTURE_RDR_SHIFT_2);
2246 WARN_ON_ONCE(idxnew2 != -1);
2247 idxold2 = 0;
2248 }
2249 if (statesold & RCUTORTURE_RDR_RCU_1) {
2250 bool lockit;
2251
2252 lockit = !cur_ops->no_pi_lock && !statesnew && !(torture_random(trsp) & 0xffff);
2253 if (lockit)
2254 raw_spin_lock_irqsave(¤t->pi_lock, flags);
2255 cur_ops->readunlock((idxold1 & RCUTORTURE_RDR_MASK_1) >> RCUTORTURE_RDR_SHIFT_1);
2256 WARN_ON_ONCE(idxnew1 != -1);
2257 idxold1 = 0;
2258 if (lockit)
2259 raw_spin_unlock_irqrestore(¤t->pi_lock, flags);
2260 }
2261 if (statesold & RCUTORTURE_RDR_UPDOWN) {
2262 cur_ops->up_read((idxold1 & RCUTORTURE_RDR_MASK_1) >> RCUTORTURE_RDR_SHIFT_1);
2263 WARN_ON_ONCE(idxnew1 != -1);
2264 idxold1 = 0;
2265 }
2266
2267 /* Delay if neither beginning nor end and there was a change. */
2268 if ((statesnew || statesold) && *readstate && newstate)
2269 cur_ops->read_delay(trsp, rtrsp);
2270
2271 /* Update the reader state. */
2272 if (idxnew1 == -1)
2273 idxnew1 = idxold1 & RCUTORTURE_RDR_MASK_1;
2274 WARN_ON_ONCE(idxnew1 < 0);
2275 if (idxnew2 == -1)
2276 idxnew2 = idxold2 & RCUTORTURE_RDR_MASK_2;
2277 WARN_ON_ONCE(idxnew2 < 0);
2278 *readstate = idxnew1 | idxnew2 | newstate;
2279 WARN_ON_ONCE(*readstate < 0);
2280 if (WARN_ON_ONCE(*readstate & ~RCUTORTURE_RDR_ALLBITS))
2281 pr_info("Unexpected readstate value of %#x\n", *readstate);
2282 rcutorture_one_extend_check("after change", *readstate, statesnew, statesold);
2283 }
2284
2285 /* Return the biggest extendables mask given current RCU and boot parameters. */
rcutorture_extend_mask_max(void)2286 static int rcutorture_extend_mask_max(void)
2287 {
2288 int mask;
2289
2290 WARN_ON_ONCE(extendables & ~RCUTORTURE_MAX_EXTEND);
2291 mask = extendables & RCUTORTURE_MAX_EXTEND & cur_ops->extendables;
2292 mask = mask | RCUTORTURE_RDR_RCU_1 | RCUTORTURE_RDR_RCU_2;
2293 return mask;
2294 }
2295
2296 /* Return a random protection state mask, but with at least one bit set. */
2297 static int
rcutorture_extend_mask(int oldmask,struct torture_random_state * trsp)2298 rcutorture_extend_mask(int oldmask, struct torture_random_state *trsp)
2299 {
2300 int mask = rcutorture_extend_mask_max();
2301 unsigned long randmask1 = torture_random(trsp);
2302 unsigned long randmask2 = randmask1 >> 3;
2303 unsigned long preempts = RCUTORTURE_RDR_PREEMPT | RCUTORTURE_RDR_SCHED;
2304 unsigned long preempts_irq = preempts | RCUTORTURE_RDR_IRQ;
2305 unsigned long bhs = RCUTORTURE_RDR_BH | RCUTORTURE_RDR_RBH;
2306
2307 WARN_ON_ONCE(mask >> RCUTORTURE_RDR_SHIFT_1); // Can't have reader idx bits.
2308 /* Mostly only one bit (need preemption!), sometimes lots of bits. */
2309 if (!(randmask1 & 0x7))
2310 mask = mask & randmask2;
2311 else
2312 mask = mask & (1 << (randmask2 % RCUTORTURE_RDR_NBITS));
2313
2314 // Can't have nested RCU reader without outer RCU reader.
2315 if (!(mask & RCUTORTURE_RDR_RCU_1) && (mask & RCUTORTURE_RDR_RCU_2)) {
2316 if (oldmask & RCUTORTURE_RDR_RCU_1)
2317 mask &= ~RCUTORTURE_RDR_RCU_2;
2318 else
2319 mask |= RCUTORTURE_RDR_RCU_1;
2320 }
2321
2322 /*
2323 * Can't enable bh w/irq disabled.
2324 */
2325 if (mask & RCUTORTURE_RDR_IRQ)
2326 mask |= oldmask & bhs;
2327
2328 /*
2329 * Ideally these sequences would be detected in debug builds
2330 * (regardless of RT), but until then don't stop testing
2331 * them on non-RT.
2332 */
2333 if (IS_ENABLED(CONFIG_PREEMPT_RT)) {
2334 /* Can't modify BH in atomic context */
2335 if (oldmask & preempts_irq)
2336 mask &= ~bhs;
2337 if ((oldmask | mask) & preempts_irq)
2338 mask |= oldmask & bhs;
2339 }
2340
2341 return mask ?: RCUTORTURE_RDR_RCU_1;
2342 }
2343
2344 /*
2345 * Do a randomly selected number of extensions of an existing RCU read-side
2346 * critical section.
2347 */
2348 static struct rt_read_seg *
rcutorture_loop_extend(int * readstate,struct torture_random_state * trsp,struct rt_read_seg * rtrsp)2349 rcutorture_loop_extend(int *readstate, struct torture_random_state *trsp, struct rt_read_seg *rtrsp)
2350 {
2351 int i;
2352 int j;
2353 int mask = rcutorture_extend_mask_max();
2354
2355 WARN_ON_ONCE(!*readstate); /* -Existing- RCU read-side critsect! */
2356 if (!((mask - 1) & mask))
2357 return rtrsp; /* Current RCU reader not extendable. */
2358 /* Bias towards larger numbers of loops. */
2359 i = torture_random(trsp);
2360 i = ((i | (i >> 3)) & RCUTORTURE_RDR_MAX_LOOPS) + 1;
2361 for (j = 0; j < i; j++) {
2362 mask = rcutorture_extend_mask(*readstate, trsp);
2363 WARN_ON_ONCE(mask & RCUTORTURE_RDR_UPDOWN);
2364 rcutorture_one_extend(readstate, mask, trsp, &rtrsp[j]);
2365 }
2366 return &rtrsp[j];
2367 }
2368
2369 struct rcu_torture_one_read_state {
2370 bool checkpolling;
2371 unsigned long cookie;
2372 struct rcu_gp_oldstate cookie_full;
2373 unsigned long started;
2374 struct rcu_torture *p;
2375 int readstate;
2376 struct rt_read_seg rtseg[RCUTORTURE_RDR_MAX_SEGS];
2377 struct rt_read_seg *rtrsp;
2378 unsigned long long ts;
2379 };
2380
init_rcu_torture_one_read_state(struct rcu_torture_one_read_state * rtorsp,struct torture_random_state * trsp)2381 static void init_rcu_torture_one_read_state(struct rcu_torture_one_read_state *rtorsp,
2382 struct torture_random_state *trsp)
2383 {
2384 memset(rtorsp, 0, sizeof(*rtorsp));
2385 rtorsp->checkpolling = !(torture_random(trsp) & 0xfff);
2386 rtorsp->rtrsp = &rtorsp->rtseg[0];
2387 }
2388
2389 /*
2390 * Set up the first segment of a series of overlapping read-side
2391 * critical sections. The caller must have actually initiated the
2392 * outermost read-side critical section.
2393 */
rcu_torture_one_read_start(struct rcu_torture_one_read_state * rtorsp,struct torture_random_state * trsp,long myid)2394 static bool rcu_torture_one_read_start(struct rcu_torture_one_read_state *rtorsp,
2395 struct torture_random_state *trsp, long myid)
2396 {
2397 if (rtorsp->checkpolling) {
2398 if (cur_ops->get_gp_state && cur_ops->poll_gp_state)
2399 rtorsp->cookie = cur_ops->get_gp_state();
2400 if (cur_ops->get_gp_state_full && cur_ops->poll_gp_state_full)
2401 cur_ops->get_gp_state_full(&rtorsp->cookie_full);
2402 }
2403 rtorsp->started = cur_ops->get_gp_seq();
2404 rtorsp->ts = rcu_trace_clock_local();
2405 rtorsp->p = rcu_dereference_check(rcu_torture_current,
2406 !cur_ops->readlock_held || cur_ops->readlock_held() ||
2407 (rtorsp->readstate & RCUTORTURE_RDR_UPDOWN));
2408 if (rtorsp->p == NULL) {
2409 /* Wait for rcu_torture_writer to get underway */
2410 rcutorture_one_extend(&rtorsp->readstate, 0, trsp, rtorsp->rtrsp);
2411 return false;
2412 }
2413 if (rtorsp->p->rtort_mbtest == 0)
2414 atomic_inc(&n_rcu_torture_mberror);
2415 rcu_torture_reader_do_mbchk(myid, rtorsp->p, trsp);
2416 return true;
2417 }
2418
2419 /*
2420 * Complete the last segment of a series of overlapping read-side
2421 * critical sections and check for errors.
2422 */
rcu_torture_one_read_end(struct rcu_torture_one_read_state * rtorsp,struct torture_random_state * trsp)2423 static void rcu_torture_one_read_end(struct rcu_torture_one_read_state *rtorsp,
2424 struct torture_random_state *trsp)
2425 {
2426 int i;
2427 unsigned long completed;
2428 int pipe_count;
2429 bool preempted = false;
2430 struct rt_read_seg *rtrsp1;
2431
2432 preempt_disable();
2433 pipe_count = READ_ONCE(rtorsp->p->rtort_pipe_count);
2434 if (pipe_count > RCU_TORTURE_PIPE_LEN) {
2435 // Should not happen in a correct RCU implementation,
2436 // happens quite often for torture_type=busted.
2437 pipe_count = RCU_TORTURE_PIPE_LEN;
2438 }
2439 completed = cur_ops->get_gp_seq();
2440 if (pipe_count > 1) {
2441 do_trace_rcu_torture_read(cur_ops->name, &rtorsp->p->rtort_rcu,
2442 rtorsp->ts, rtorsp->started, completed);
2443 rcu_ftrace_dump(DUMP_ALL);
2444 }
2445 __this_cpu_inc(rcu_torture_count[pipe_count]);
2446 completed = rcutorture_seq_diff(completed, rtorsp->started);
2447 if (completed > RCU_TORTURE_PIPE_LEN) {
2448 /* Should not happen, but... */
2449 completed = RCU_TORTURE_PIPE_LEN;
2450 }
2451 __this_cpu_inc(rcu_torture_batch[completed]);
2452 preempt_enable();
2453 if (rtorsp->checkpolling) {
2454 if (cur_ops->get_gp_state && cur_ops->poll_gp_state)
2455 WARN_ONCE(cur_ops->poll_gp_state(rtorsp->cookie),
2456 "%s: Cookie check 2 failed %s(%d) %lu->%lu\n",
2457 __func__,
2458 rcu_torture_writer_state_getname(),
2459 rcu_torture_writer_state,
2460 rtorsp->cookie, cur_ops->get_gp_state());
2461 if (cur_ops->get_gp_state_full && cur_ops->poll_gp_state_full)
2462 WARN_ONCE(cur_ops->poll_gp_state_full(&rtorsp->cookie_full),
2463 "%s: Cookie check 6 failed %s(%d) online %*pbl\n",
2464 __func__,
2465 rcu_torture_writer_state_getname(),
2466 rcu_torture_writer_state,
2467 cpumask_pr_args(cpu_online_mask));
2468 }
2469 if (cur_ops->reader_blocked)
2470 preempted = cur_ops->reader_blocked();
2471 rcutorture_one_extend(&rtorsp->readstate, 0, trsp, rtorsp->rtrsp);
2472 WARN_ON_ONCE(rtorsp->readstate);
2473 // This next splat is expected behavior if leakpointer, especially
2474 // for CONFIG_RCU_STRICT_GRACE_PERIOD=y kernels.
2475 WARN_ON_ONCE(leakpointer && READ_ONCE(rtorsp->p->rtort_pipe_count) > 1);
2476
2477 /* If error or close call, record the sequence of reader protections. */
2478 if ((pipe_count > 1 || completed > 1) && !xchg(&err_segs_recorded, 1)) {
2479 i = 0;
2480 for (rtrsp1 = &rtorsp->rtseg[0]; rtrsp1 < rtorsp->rtrsp; rtrsp1++)
2481 err_segs[i++] = *rtrsp1;
2482 rt_read_nsegs = i;
2483 rt_read_preempted = preempted;
2484 }
2485 }
2486
2487 /*
2488 * Do one read-side critical section, returning false if there was
2489 * no data to read. Can be invoked both from process context and
2490 * from a timer handler.
2491 */
rcu_torture_one_read(struct torture_random_state * trsp,long myid)2492 static bool rcu_torture_one_read(struct torture_random_state *trsp, long myid)
2493 {
2494 int newstate;
2495 struct rcu_torture_one_read_state rtors;
2496
2497 WARN_ON_ONCE(!rcu_is_watching());
2498 init_rcu_torture_one_read_state(&rtors, trsp);
2499 newstate = rcutorture_extend_mask(rtors.readstate, trsp);
2500 WARN_ON_ONCE(newstate & RCUTORTURE_RDR_UPDOWN);
2501 rcutorture_one_extend(&rtors.readstate, newstate, trsp, rtors.rtrsp++);
2502 if (!rcu_torture_one_read_start(&rtors, trsp, myid))
2503 return false;
2504 rtors.rtrsp = rcutorture_loop_extend(&rtors.readstate, trsp, rtors.rtrsp);
2505 rcu_torture_one_read_end(&rtors, trsp);
2506 return true;
2507 }
2508
2509 static DEFINE_TORTURE_RANDOM_PERCPU(rcu_torture_timer_rand);
2510
2511 /*
2512 * RCU torture reader from timer handler. Dereferences rcu_torture_current,
2513 * incrementing the corresponding element of the pipeline array. The
2514 * counter in the element should never be greater than 1, otherwise, the
2515 * RCU implementation is broken.
2516 */
rcu_torture_timer(struct timer_list * unused)2517 static void rcu_torture_timer(struct timer_list *unused)
2518 {
2519 WARN_ON_ONCE(!in_serving_softirq());
2520 WARN_ON_ONCE(in_hardirq());
2521 WARN_ON_ONCE(in_nmi());
2522 atomic_long_inc(&n_rcu_torture_timers);
2523 (void)rcu_torture_one_read(this_cpu_ptr(&rcu_torture_timer_rand), -1);
2524
2525 /* Test call_rcu() invocation from interrupt handler. */
2526 if (cur_ops->call) {
2527 struct rcu_head *rhp = kmalloc_obj(*rhp, GFP_NOWAIT);
2528
2529 if (rhp)
2530 cur_ops->call(rhp, rcu_torture_timer_cb);
2531 }
2532 }
2533
2534 /*
2535 * RCU torture reader kthread. Repeatedly dereferences rcu_torture_current,
2536 * incrementing the corresponding element of the pipeline array. The
2537 * counter in the element should never be greater than 1, otherwise, the
2538 * RCU implementation is broken.
2539 */
2540 static int
rcu_torture_reader(void * arg)2541 rcu_torture_reader(void *arg)
2542 {
2543 unsigned long lastsleep = jiffies;
2544 long myid = (long)arg;
2545 int mynumonline = myid;
2546 DEFINE_TORTURE_RANDOM(rand);
2547 struct timer_list t;
2548
2549 VERBOSE_TOROUT_STRING("rcu_torture_reader task started");
2550 set_user_nice(current, MAX_NICE);
2551 if (irqreader && cur_ops->irq_capable)
2552 timer_setup_on_stack(&t, rcu_torture_timer, 0);
2553 tick_dep_set_task(current, TICK_DEP_BIT_RCU); // CPU bound, so need tick.
2554 do {
2555 if (irqreader && cur_ops->irq_capable) {
2556 if (!timer_pending(&t))
2557 mod_timer(&t, jiffies + 1);
2558 }
2559 if (!rcu_torture_one_read(&rand, myid) && !torture_must_stop())
2560 schedule_timeout_interruptible(HZ);
2561 if (time_after(jiffies, lastsleep) && !torture_must_stop()) {
2562 torture_hrtimeout_us(500, 1000, &rand);
2563 lastsleep = jiffies + 10;
2564 }
2565 while (!torture_must_stop() &&
2566 (torture_num_online_cpus() < mynumonline || !rcu_inkernel_boot_has_ended()))
2567 schedule_timeout_interruptible(HZ / 5);
2568 stutter_wait("rcu_torture_reader");
2569 } while (!torture_must_stop());
2570 if (irqreader && cur_ops->irq_capable) {
2571 timer_delete_sync(&t);
2572 timer_destroy_on_stack(&t);
2573 }
2574 tick_dep_clear_task(current, TICK_DEP_BIT_RCU);
2575 torture_kthread_stopping("rcu_torture_reader");
2576 return 0;
2577 }
2578
2579 struct rcu_torture_one_read_state_updown {
2580 struct hrtimer rtorsu_hrt;
2581 bool rtorsu_inuse;
2582 ktime_t rtorsu_kt;
2583 int rtorsu_cpu;
2584 unsigned long rtorsu_j;
2585 unsigned long rtorsu_ndowns;
2586 unsigned long rtorsu_nups;
2587 unsigned long rtorsu_nmigrates;
2588 struct torture_random_state rtorsu_trs;
2589 struct rcu_torture_one_read_state rtorsu_rtors;
2590 };
2591
2592 static struct rcu_torture_one_read_state_updown *updownreaders;
2593 static DEFINE_TORTURE_RANDOM(rcu_torture_updown_rand);
2594 static int rcu_torture_updown(void *arg);
2595
rcu_torture_updown_hrt(struct hrtimer * hrtp)2596 static enum hrtimer_restart rcu_torture_updown_hrt(struct hrtimer *hrtp)
2597 {
2598 int cpu = raw_smp_processor_id();
2599 struct rcu_torture_one_read_state_updown *rtorsup;
2600
2601 rtorsup = container_of(hrtp, struct rcu_torture_one_read_state_updown, rtorsu_hrt);
2602 rcu_torture_one_read_end(&rtorsup->rtorsu_rtors, &rtorsup->rtorsu_trs);
2603 WARN_ONCE(rtorsup->rtorsu_nups >= rtorsup->rtorsu_ndowns, "%s: Up without matching down #%zu.\n", __func__, rtorsup - updownreaders);
2604 WRITE_ONCE(rtorsup->rtorsu_nups, rtorsup->rtorsu_nups + 1);
2605 WRITE_ONCE(rtorsup->rtorsu_nmigrates,
2606 rtorsup->rtorsu_nmigrates + (cpu != rtorsup->rtorsu_cpu));
2607 smp_store_release(&rtorsup->rtorsu_inuse, false);
2608 return HRTIMER_NORESTART;
2609 }
2610
rcu_torture_updown_init(void)2611 static int rcu_torture_updown_init(void)
2612 {
2613 int i;
2614 struct torture_random_state *rand = &rcu_torture_updown_rand;
2615 int ret;
2616
2617 if (n_up_down < 0)
2618 return 0;
2619 if (!srcu_torture_have_up_down()) {
2620 VERBOSE_TOROUT_STRING("rcu_torture_updown_init: Disabling up/down reader tests due to lack of primitives");
2621 return 0;
2622 }
2623 updownreaders = kzalloc_objs(*updownreaders, n_up_down);
2624 if (!updownreaders) {
2625 VERBOSE_TOROUT_STRING("rcu_torture_updown_init: Out of memory, disabling up/down reader tests");
2626 return -ENOMEM;
2627 }
2628 for (i = 0; i < n_up_down; i++) {
2629 init_rcu_torture_one_read_state(&updownreaders[i].rtorsu_rtors, rand);
2630 hrtimer_setup(&updownreaders[i].rtorsu_hrt, rcu_torture_updown_hrt, CLOCK_MONOTONIC,
2631 HRTIMER_MODE_REL | HRTIMER_MODE_HARD);
2632 torture_random_init(&updownreaders[i].rtorsu_trs);
2633 init_rcu_torture_one_read_state(&updownreaders[i].rtorsu_rtors,
2634 &updownreaders[i].rtorsu_trs);
2635 }
2636 ret = torture_create_kthread(rcu_torture_updown, rand, updown_task);
2637 if (ret) {
2638 kfree(updownreaders);
2639 updownreaders = NULL;
2640 }
2641 return ret;
2642 }
2643
rcu_torture_updown_cleanup(void)2644 static void rcu_torture_updown_cleanup(void)
2645 {
2646 struct rcu_torture_one_read_state_updown *rtorsup;
2647
2648 for (rtorsup = updownreaders; rtorsup < &updownreaders[n_up_down]; rtorsup++) {
2649 if (!smp_load_acquire(&rtorsup->rtorsu_inuse))
2650 continue;
2651 if (hrtimer_cancel(&rtorsup->rtorsu_hrt) || WARN_ON_ONCE(rtorsup->rtorsu_inuse)) {
2652 rcu_torture_one_read_end(&rtorsup->rtorsu_rtors, &rtorsup->rtorsu_trs);
2653 WARN_ONCE(rtorsup->rtorsu_nups >= rtorsup->rtorsu_ndowns, "%s: Up without matching down #%zu.\n", __func__, rtorsup - updownreaders);
2654 WRITE_ONCE(rtorsup->rtorsu_nups, rtorsup->rtorsu_nups + 1);
2655 smp_store_release(&rtorsup->rtorsu_inuse, false);
2656 }
2657
2658 }
2659 kfree(updownreaders);
2660 updownreaders = NULL;
2661 }
2662
2663 // Do one reader for rcu_torture_updown().
rcu_torture_updown_one(struct rcu_torture_one_read_state_updown * rtorsup)2664 static void rcu_torture_updown_one(struct rcu_torture_one_read_state_updown *rtorsup)
2665 {
2666 int idx;
2667 int rawidx;
2668 ktime_t t;
2669
2670 init_rcu_torture_one_read_state(&rtorsup->rtorsu_rtors, &rtorsup->rtorsu_trs);
2671 rawidx = cur_ops->down_read();
2672 WRITE_ONCE(rtorsup->rtorsu_ndowns, rtorsup->rtorsu_ndowns + 1);
2673 idx = (rawidx << RCUTORTURE_RDR_SHIFT_1) & RCUTORTURE_RDR_MASK_1;
2674 rtorsup->rtorsu_rtors.readstate = idx | RCUTORTURE_RDR_UPDOWN;
2675 rtorsup->rtorsu_rtors.rtrsp++;
2676 rtorsup->rtorsu_cpu = raw_smp_processor_id();
2677 if (!rcu_torture_one_read_start(&rtorsup->rtorsu_rtors, &rtorsup->rtorsu_trs, -1)) {
2678 WARN_ONCE(rtorsup->rtorsu_nups >= rtorsup->rtorsu_ndowns, "%s: Up without matching down #%zu.\n", __func__, rtorsup - updownreaders);
2679 WRITE_ONCE(rtorsup->rtorsu_nups, rtorsup->rtorsu_nups + 1);
2680 schedule_timeout_idle(HZ);
2681 return;
2682 }
2683 smp_store_release(&rtorsup->rtorsu_inuse, true);
2684 t = torture_random(&rtorsup->rtorsu_trs) & 0xfffff; // One per million.
2685 if (t < 10 * 1000)
2686 t = 200 * 1000 * 1000;
2687 hrtimer_start(&rtorsup->rtorsu_hrt, t, HRTIMER_MODE_REL | HRTIMER_MODE_HARD);
2688 smp_mb(); // Sample jiffies after posting hrtimer.
2689 rtorsup->rtorsu_j = jiffies; // Not used by hrtimer handler.
2690 rtorsup->rtorsu_kt = t;
2691 }
2692
2693 /*
2694 * RCU torture up/down reader kthread, starting RCU readers in kthread
2695 * context and ending them in hrtimer handlers. Otherwise similar to
2696 * rcu_torture_reader().
2697 */
2698 static int
rcu_torture_updown(void * arg)2699 rcu_torture_updown(void *arg)
2700 {
2701 unsigned long j;
2702 struct rcu_torture_one_read_state_updown *rtorsup;
2703
2704 VERBOSE_TOROUT_STRING("rcu_torture_updown task started");
2705 do {
2706 for (rtorsup = updownreaders; rtorsup < &updownreaders[n_up_down]; rtorsup++) {
2707 if (torture_must_stop())
2708 break;
2709 j = smp_load_acquire(&jiffies); // Time before ->rtorsu_inuse.
2710 if (smp_load_acquire(&rtorsup->rtorsu_inuse)) {
2711 WARN_ONCE(time_after(j, rtorsup->rtorsu_j + 1 + HZ * 10),
2712 "hrtimer queued at jiffies %lu for %lld ns took %lu jiffies\n", rtorsup->rtorsu_j, rtorsup->rtorsu_kt, j - rtorsup->rtorsu_j);
2713 continue;
2714 }
2715 rcu_torture_updown_one(rtorsup);
2716 }
2717 torture_hrtimeout_ms(1, 1000, &rcu_torture_updown_rand);
2718 stutter_wait("rcu_torture_updown");
2719 } while (!torture_must_stop());
2720 rcu_torture_updown_cleanup();
2721 torture_kthread_stopping("rcu_torture_updown");
2722 return 0;
2723 }
2724
2725 /*
2726 * Randomly Toggle CPUs' callback-offload state. This uses hrtimers to
2727 * increase race probabilities and fuzzes the interval between toggling.
2728 */
rcu_nocb_toggle(void * arg)2729 static int rcu_nocb_toggle(void *arg)
2730 {
2731 int cpu;
2732 int maxcpu = -1;
2733 int oldnice = task_nice(current);
2734 long r;
2735 DEFINE_TORTURE_RANDOM(rand);
2736 ktime_t toggle_delay;
2737 unsigned long toggle_fuzz;
2738 ktime_t toggle_interval = ms_to_ktime(nocbs_toggle);
2739
2740 VERBOSE_TOROUT_STRING("rcu_nocb_toggle task started");
2741 while (!rcu_inkernel_boot_has_ended())
2742 schedule_timeout_interruptible(HZ / 10);
2743 for_each_possible_cpu(cpu)
2744 maxcpu = cpu;
2745 WARN_ON(maxcpu < 0);
2746 if (toggle_interval > ULONG_MAX)
2747 toggle_fuzz = ULONG_MAX >> 3;
2748 else
2749 toggle_fuzz = toggle_interval >> 3;
2750 if (toggle_fuzz <= 0)
2751 toggle_fuzz = NSEC_PER_USEC;
2752 do {
2753 r = torture_random(&rand);
2754 cpu = (r >> 1) % (maxcpu + 1);
2755 if (r & 0x1) {
2756 rcu_nocb_cpu_offload(cpu);
2757 atomic_long_inc(&n_nocb_offload);
2758 } else {
2759 rcu_nocb_cpu_deoffload(cpu);
2760 atomic_long_inc(&n_nocb_deoffload);
2761 }
2762 toggle_delay = torture_random(&rand) % toggle_fuzz + toggle_interval;
2763 set_current_state(TASK_INTERRUPTIBLE);
2764 schedule_hrtimeout(&toggle_delay, HRTIMER_MODE_REL);
2765 if (stutter_wait("rcu_nocb_toggle"))
2766 sched_set_normal(current, oldnice);
2767 } while (!torture_must_stop());
2768 torture_kthread_stopping("rcu_nocb_toggle");
2769 return 0;
2770 }
2771
2772 /*
2773 * Print torture statistics. Caller must ensure that there is only
2774 * one call to this function at a given time!!! This is normally
2775 * accomplished by relying on the module system to only have one copy
2776 * of the module loaded, and then by giving the rcu_torture_stats
2777 * kthread full control (or the init/cleanup functions when rcu_torture_stats
2778 * thread is not running).
2779 */
2780 static void
rcu_torture_stats_print(void)2781 rcu_torture_stats_print(void)
2782 {
2783 int cpu;
2784 int i;
2785 long pipesummary[RCU_TORTURE_PIPE_LEN + 1] = { 0 };
2786 long batchsummary[RCU_TORTURE_PIPE_LEN + 1] = { 0 };
2787 long n_gpwraps = 0;
2788 unsigned long ndowns = 0;
2789 unsigned long nunexpired = 0;
2790 unsigned long nmigrates = 0;
2791 unsigned long nups = 0;
2792 struct rcu_torture *rtcp;
2793 static unsigned long rtcv_snap = ULONG_MAX;
2794 static bool splatted;
2795 struct task_struct *wtp;
2796
2797 for_each_possible_cpu(cpu) {
2798 for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) {
2799 pipesummary[i] += READ_ONCE(per_cpu(rcu_torture_count, cpu)[i]);
2800 batchsummary[i] += READ_ONCE(per_cpu(rcu_torture_batch, cpu)[i]);
2801 }
2802 if (cur_ops->get_gpwrap_count)
2803 n_gpwraps += cur_ops->get_gpwrap_count(cpu);
2804 }
2805 if (updownreaders) {
2806 for (i = 0; i < n_up_down; i++) {
2807 ndowns += READ_ONCE(updownreaders[i].rtorsu_ndowns);
2808 nups += READ_ONCE(updownreaders[i].rtorsu_nups);
2809 nunexpired += READ_ONCE(updownreaders[i].rtorsu_inuse);
2810 nmigrates += READ_ONCE(updownreaders[i].rtorsu_nmigrates);
2811 }
2812 }
2813 for (i = RCU_TORTURE_PIPE_LEN; i >= 0; i--) {
2814 if (pipesummary[i] != 0)
2815 break;
2816 } // The value of variable "i" is used later, so don't clobber it!
2817
2818 pr_alert("%s%s ", torture_type, TORTURE_FLAG);
2819 rtcp = rcu_access_pointer(rcu_torture_current);
2820 pr_cont("rtc: %p %s: %lu tfle: %d rta: %d rtaf: %d rtf: %d ",
2821 rtcp,
2822 rtcp && !rcu_stall_is_suppressed_at_boot() ? "ver" : "VER",
2823 rcu_torture_current_version,
2824 list_empty(&rcu_torture_freelist),
2825 atomic_read(&n_rcu_torture_alloc),
2826 atomic_read(&n_rcu_torture_alloc_fail),
2827 atomic_read(&n_rcu_torture_free));
2828 pr_cont("rtmbe: %d rtmbkf: %d/%d rtbe: %ld rtbke: %ld ",
2829 atomic_read(&n_rcu_torture_mberror),
2830 atomic_read(&n_rcu_torture_mbchk_fail), atomic_read(&n_rcu_torture_mbchk_tries),
2831 n_rcu_torture_barrier_error,
2832 n_rcu_torture_boost_ktrerror);
2833 pr_cont("rtbf: %ld rtb: %ld nt: %ld ",
2834 n_rcu_torture_boost_failure,
2835 n_rcu_torture_boosts,
2836 atomic_long_read(&n_rcu_torture_timers));
2837 if (updownreaders)
2838 pr_cont("ndowns: %lu nups: %lu nhrt: %lu nmigrates: %lu ", ndowns, nups, nunexpired, nmigrates);
2839 torture_onoff_stats();
2840 pr_cont("barrier: %ld/%ld:%ld ",
2841 data_race(n_barrier_successes),
2842 data_race(n_barrier_attempts),
2843 data_race(n_rcu_torture_barrier_error));
2844 pr_cont("read-exits: %ld ", data_race(n_read_exits)); // Statistic.
2845 pr_cont("nocb-toggles: %ld:%ld ",
2846 atomic_long_read(&n_nocb_offload), atomic_long_read(&n_nocb_deoffload));
2847 pr_cont("gpwraps: %ld\n", n_gpwraps);
2848
2849 pr_alert("%s%s ", torture_type, TORTURE_FLAG);
2850 if (atomic_read(&n_rcu_torture_mberror) ||
2851 atomic_read(&n_rcu_torture_mbchk_fail) ||
2852 n_rcu_torture_barrier_error || n_rcu_torture_boost_ktrerror ||
2853 n_rcu_torture_boost_failure || i > 1) {
2854 pr_cont("%s", "!!! ");
2855 atomic_inc(&n_rcu_torture_error);
2856 WARN_ON_ONCE(atomic_read(&n_rcu_torture_mberror));
2857 WARN_ON_ONCE(atomic_read(&n_rcu_torture_mbchk_fail));
2858 WARN_ON_ONCE(n_rcu_torture_barrier_error); // rcu_barrier()
2859 WARN_ON_ONCE(n_rcu_torture_boost_ktrerror); // no boost kthread
2860 WARN_ON_ONCE(n_rcu_torture_boost_failure); // boost failed (TIMER_SOFTIRQ RT prio?)
2861 WARN_ON_ONCE(i > 1); // Too-short grace period
2862 }
2863 pr_cont("Reader Pipe: ");
2864 for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++)
2865 pr_cont(" %ld", pipesummary[i]);
2866 pr_cont("\n");
2867
2868 pr_alert("%s%s ", torture_type, TORTURE_FLAG);
2869 pr_cont("Reader Batch: ");
2870 for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++)
2871 pr_cont(" %ld", batchsummary[i]);
2872 pr_cont("\n");
2873
2874 pr_alert("%s%s ", torture_type, TORTURE_FLAG);
2875 pr_cont("Free-Block Circulation: ");
2876 for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) {
2877 pr_cont(" %d", atomic_read(&rcu_torture_wcount[i]));
2878 }
2879 pr_cont("\n");
2880
2881 if (cur_ops->stats)
2882 cur_ops->stats();
2883 if (rtcv_snap == rcu_torture_current_version &&
2884 rcu_access_pointer(rcu_torture_current) &&
2885 !rcu_stall_is_suppressed() &&
2886 rcu_inkernel_boot_has_ended()) {
2887 int __maybe_unused flags = 0;
2888 unsigned long __maybe_unused gp_seq = 0;
2889
2890 if (cur_ops->get_gp_data)
2891 cur_ops->get_gp_data(&flags, &gp_seq);
2892 wtp = READ_ONCE(writer_task);
2893 pr_alert("??? Writer stall state %s(%d) g%lu f%#x ->state %#x cpu %d\n",
2894 rcu_torture_writer_state_getname(),
2895 rcu_torture_writer_state, gp_seq, flags,
2896 wtp == NULL ? ~0U : wtp->__state,
2897 wtp == NULL ? -1 : (int)task_cpu(wtp));
2898 if (!splatted && wtp) {
2899 sched_show_task(wtp);
2900 splatted = true;
2901 }
2902 if (cur_ops->gp_kthread_dbg)
2903 cur_ops->gp_kthread_dbg();
2904 rcu_ftrace_dump(DUMP_ALL);
2905 }
2906 rtcv_snap = rcu_torture_current_version;
2907 }
2908
2909 /*
2910 * Periodically prints torture statistics, if periodic statistics printing
2911 * was specified via the stat_interval module parameter.
2912 */
2913 static int
rcu_torture_stats(void * arg)2914 rcu_torture_stats(void *arg)
2915 {
2916 VERBOSE_TOROUT_STRING("rcu_torture_stats task started");
2917 do {
2918 schedule_timeout_interruptible(stat_interval * HZ);
2919 rcu_torture_stats_print();
2920 torture_shutdown_absorb("rcu_torture_stats");
2921 } while (!torture_must_stop());
2922 torture_kthread_stopping("rcu_torture_stats");
2923 return 0;
2924 }
2925
2926 /* Test mem_dump_obj() and friends. */
rcu_torture_mem_dump_obj(void)2927 static void rcu_torture_mem_dump_obj(void)
2928 {
2929 struct rcu_head *rhp;
2930 struct kmem_cache *kcp;
2931 static int z;
2932
2933 kcp = kmem_cache_create("rcuscale", 136, 8, SLAB_STORE_USER, NULL);
2934 if (WARN_ON_ONCE(!kcp))
2935 return;
2936 rhp = kmem_cache_alloc(kcp, GFP_KERNEL);
2937 if (WARN_ON_ONCE(!rhp)) {
2938 kmem_cache_destroy(kcp);
2939 return;
2940 }
2941 pr_alert("mem_dump_obj() slab test: rcu_torture_stats = %px, &rhp = %px, rhp = %px, &z = %px\n", stats_task, &rhp, rhp, &z);
2942 pr_alert("mem_dump_obj(ZERO_SIZE_PTR):");
2943 mem_dump_obj(ZERO_SIZE_PTR);
2944 pr_alert("mem_dump_obj(NULL):");
2945 mem_dump_obj(NULL);
2946 pr_alert("mem_dump_obj(%px):", &rhp);
2947 mem_dump_obj(&rhp);
2948 pr_alert("mem_dump_obj(%px):", rhp);
2949 mem_dump_obj(rhp);
2950 pr_alert("mem_dump_obj(%px):", &rhp->func);
2951 mem_dump_obj(&rhp->func);
2952 pr_alert("mem_dump_obj(%px):", &z);
2953 mem_dump_obj(&z);
2954 kmem_cache_free(kcp, rhp);
2955 kmem_cache_destroy(kcp);
2956 rhp = kmalloc_obj(*rhp);
2957 if (WARN_ON_ONCE(!rhp))
2958 return;
2959 pr_alert("mem_dump_obj() kmalloc test: rcu_torture_stats = %px, &rhp = %px, rhp = %px\n", stats_task, &rhp, rhp);
2960 pr_alert("mem_dump_obj(kmalloc %px):", rhp);
2961 mem_dump_obj(rhp);
2962 pr_alert("mem_dump_obj(kmalloc %px):", &rhp->func);
2963 mem_dump_obj(&rhp->func);
2964 kfree(rhp);
2965 rhp = vmalloc(4096);
2966 if (WARN_ON_ONCE(!rhp))
2967 return;
2968 pr_alert("mem_dump_obj() vmalloc test: rcu_torture_stats = %px, &rhp = %px, rhp = %px\n", stats_task, &rhp, rhp);
2969 pr_alert("mem_dump_obj(vmalloc %px):", rhp);
2970 mem_dump_obj(rhp);
2971 pr_alert("mem_dump_obj(vmalloc %px):", &rhp->func);
2972 mem_dump_obj(&rhp->func);
2973 vfree(rhp);
2974 }
2975
2976 static void
rcu_torture_print_module_parms(struct rcu_torture_ops * cur_ops,const char * tag)2977 rcu_torture_print_module_parms(struct rcu_torture_ops *cur_ops, const char *tag)
2978 {
2979 pr_alert("%s" TORTURE_FLAG
2980 "--- %s: nreaders=%d nfakewriters=%d "
2981 "stat_interval=%d verbose=%d test_no_idle_hz=%d "
2982 "shuffle_interval=%d stutter=%d irqreader=%d "
2983 "fqs_duration=%d fqs_holdoff=%d fqs_stutter=%d "
2984 "test_boost=%d/%d test_boost_interval=%d "
2985 "test_boost_duration=%d test_boost_holdoff=%d shutdown_secs=%d "
2986 "stall_cpu=%d stall_cpu_holdoff=%d stall_cpu_irqsoff=%d "
2987 "stall_cpu_block=%d stall_cpu_repeat=%d "
2988 "n_barrier_cbs=%d "
2989 "onoff_interval=%d onoff_holdoff=%d "
2990 "read_exit_delay=%d read_exit_burst=%d "
2991 "reader_flavor=%x "
2992 "nocbs_nthreads=%d nocbs_toggle=%d "
2993 "test_nmis=%d "
2994 "preempt_duration=%d preempt_interval=%d n_up_down=%d\n",
2995 torture_type, tag, nrealreaders, nrealfakewriters,
2996 stat_interval, verbose, test_no_idle_hz, shuffle_interval,
2997 stutter, irqreader, fqs_duration, fqs_holdoff, fqs_stutter,
2998 test_boost, cur_ops->can_boost,
2999 test_boost_interval, test_boost_duration, test_boost_holdoff, shutdown_secs,
3000 stall_cpu, stall_cpu_holdoff, stall_cpu_irqsoff,
3001 stall_cpu_block, stall_cpu_repeat,
3002 n_barrier_cbs,
3003 onoff_interval, onoff_holdoff,
3004 read_exit_delay, read_exit_burst,
3005 reader_flavor,
3006 nocbs_nthreads, nocbs_toggle,
3007 test_nmis,
3008 preempt_duration, preempt_interval, n_up_down);
3009 }
3010
rcutorture_booster_cleanup(unsigned int cpu)3011 static int rcutorture_booster_cleanup(unsigned int cpu)
3012 {
3013 struct task_struct *t;
3014
3015 if (boost_tasks[cpu] == NULL)
3016 return 0;
3017 mutex_lock(&boost_mutex);
3018 t = boost_tasks[cpu];
3019 boost_tasks[cpu] = NULL;
3020 rcu_torture_enable_rt_throttle();
3021 mutex_unlock(&boost_mutex);
3022
3023 /* This must be outside of the mutex, otherwise deadlock! */
3024 torture_stop_kthread(rcu_torture_boost, t);
3025 return 0;
3026 }
3027
rcutorture_booster_init(unsigned int cpu)3028 static int rcutorture_booster_init(unsigned int cpu)
3029 {
3030 int retval;
3031
3032 if (boost_tasks[cpu] != NULL)
3033 return 0; /* Already created, nothing more to do. */
3034
3035 // Testing RCU priority boosting requires rcutorture do
3036 // some serious abuse. Counter this by running ksoftirqd
3037 // at higher priority.
3038 if (IS_BUILTIN(CONFIG_RCU_TORTURE_TEST)) {
3039 struct sched_param sp;
3040 struct task_struct *t;
3041
3042 t = per_cpu(ksoftirqd, cpu);
3043 WARN_ON_ONCE(!t);
3044 sp.sched_priority = 2;
3045 sched_setscheduler_nocheck(t, SCHED_FIFO, &sp);
3046 #ifdef CONFIG_IRQ_FORCED_THREADING
3047 if (force_irqthreads()) {
3048 t = per_cpu(ktimerd, cpu);
3049 WARN_ON_ONCE(!t);
3050 sp.sched_priority = 2;
3051 sched_setscheduler_nocheck(t, SCHED_FIFO, &sp);
3052 }
3053 #endif
3054 }
3055
3056 /* Don't allow time recalculation while creating a new task. */
3057 mutex_lock(&boost_mutex);
3058 rcu_torture_disable_rt_throttle();
3059 VERBOSE_TOROUT_STRING("Creating rcu_torture_boost task");
3060 boost_tasks[cpu] = kthread_run_on_cpu(rcu_torture_boost, NULL,
3061 cpu, "rcu_torture_boost_%u");
3062 if (IS_ERR(boost_tasks[cpu])) {
3063 retval = PTR_ERR(boost_tasks[cpu]);
3064 VERBOSE_TOROUT_STRING("rcu_torture_boost task create failed");
3065 n_rcu_torture_boost_ktrerror++;
3066 boost_tasks[cpu] = NULL;
3067 mutex_unlock(&boost_mutex);
3068 return retval;
3069 }
3070 mutex_unlock(&boost_mutex);
3071 return 0;
3072 }
3073
rcu_torture_stall_nf(struct notifier_block * nb,unsigned long v,void * ptr)3074 static int rcu_torture_stall_nf(struct notifier_block *nb, unsigned long v, void *ptr)
3075 {
3076 pr_info("%s: v=%lu, duration=%lu.\n", __func__, v, (unsigned long)ptr);
3077 return NOTIFY_OK;
3078 }
3079
3080 static struct notifier_block rcu_torture_stall_block = {
3081 .notifier_call = rcu_torture_stall_nf,
3082 };
3083
3084 /*
3085 * CPU-stall kthread. It waits as specified by stall_cpu_holdoff, then
3086 * induces a CPU stall for the time specified by stall_cpu. If a new
3087 * stall test is added, stallsdone in rcu_torture_writer() must be adjusted.
3088 */
rcu_torture_stall_one(int rep,int irqsoff)3089 static void rcu_torture_stall_one(int rep, int irqsoff)
3090 {
3091 int idx;
3092 unsigned long stop_at;
3093
3094 if (stall_cpu_holdoff > 0) {
3095 VERBOSE_TOROUT_STRING("rcu_torture_stall begin holdoff");
3096 schedule_timeout_interruptible(stall_cpu_holdoff * HZ);
3097 VERBOSE_TOROUT_STRING("rcu_torture_stall end holdoff");
3098 }
3099 if (!kthread_should_stop() && stall_gp_kthread > 0) {
3100 VERBOSE_TOROUT_STRING("rcu_torture_stall begin GP stall");
3101 rcu_gp_set_torture_wait(stall_gp_kthread * HZ);
3102 for (idx = 0; idx < stall_gp_kthread + 2; idx++) {
3103 if (kthread_should_stop())
3104 break;
3105 schedule_timeout_uninterruptible(HZ);
3106 }
3107 }
3108 if (!kthread_should_stop() && stall_cpu > 0) {
3109 VERBOSE_TOROUT_STRING("rcu_torture_stall begin CPU stall");
3110 stop_at = ktime_get_seconds() + stall_cpu;
3111 /* RCU CPU stall is expected behavior in following code. */
3112 idx = cur_ops->readlock();
3113 if (irqsoff)
3114 local_irq_disable();
3115 else if (!stall_cpu_block)
3116 preempt_disable();
3117 pr_alert("%s start stall episode %d on CPU %d.\n",
3118 __func__, rep + 1, raw_smp_processor_id());
3119 while (ULONG_CMP_LT((unsigned long)ktime_get_seconds(), stop_at) &&
3120 !kthread_should_stop())
3121 if (stall_cpu_block) {
3122 #ifdef CONFIG_PREEMPTION
3123 preempt_schedule();
3124 #else
3125 schedule_timeout_uninterruptible(HZ);
3126 #endif
3127 } else if (stall_no_softlockup) {
3128 touch_softlockup_watchdog();
3129 }
3130 if (irqsoff)
3131 local_irq_enable();
3132 else if (!stall_cpu_block)
3133 preempt_enable();
3134 cur_ops->readunlock(idx);
3135 }
3136 }
3137
3138 /*
3139 * CPU-stall kthread. Invokes rcu_torture_stall_one() once, and then as many
3140 * additional times as specified by the stall_cpu_repeat module parameter.
3141 * Note that stall_cpu_irqsoff is ignored on the second and subsequent
3142 * stall.
3143 */
rcu_torture_stall(void * args)3144 static int rcu_torture_stall(void *args)
3145 {
3146 int i;
3147 int repeat = stall_cpu_repeat;
3148 int ret;
3149
3150 VERBOSE_TOROUT_STRING("rcu_torture_stall task started");
3151 if (repeat < 0) {
3152 repeat = 0;
3153 WARN_ON_ONCE(IS_BUILTIN(CONFIG_RCU_TORTURE_TEST));
3154 }
3155 if (rcu_cpu_stall_notifiers) {
3156 ret = rcu_stall_chain_notifier_register(&rcu_torture_stall_block);
3157 if (ret)
3158 pr_info("%s: rcu_stall_chain_notifier_register() returned %d, %sexpected.\n",
3159 __func__, ret, !IS_ENABLED(CONFIG_RCU_STALL_COMMON) ? "un" : "");
3160 }
3161 for (i = 0; i <= repeat; i++) {
3162 if (kthread_should_stop())
3163 break;
3164 rcu_torture_stall_one(i, i == 0 ? stall_cpu_irqsoff : 0);
3165 }
3166 pr_alert("%s end.\n", __func__);
3167 if (rcu_cpu_stall_notifiers && !ret) {
3168 ret = rcu_stall_chain_notifier_unregister(&rcu_torture_stall_block);
3169 if (ret)
3170 pr_info("%s: rcu_stall_chain_notifier_unregister() returned %d.\n", __func__, ret);
3171 }
3172 torture_shutdown_absorb("rcu_torture_stall");
3173 while (!kthread_should_stop())
3174 schedule_timeout_interruptible(10 * HZ);
3175 return 0;
3176 }
3177
3178 /* Spawn CPU-stall kthread, if stall_cpu specified. */
rcu_torture_stall_init(void)3179 static int __init rcu_torture_stall_init(void)
3180 {
3181 if (stall_cpu <= 0 && stall_gp_kthread <= 0)
3182 return 0;
3183 return torture_create_kthread(rcu_torture_stall, NULL, stall_task);
3184 }
3185
3186 /* State structure for forward-progress self-propagating RCU callback. */
3187 struct fwd_cb_state {
3188 struct rcu_head rh;
3189 int stop;
3190 };
3191
3192 /*
3193 * Forward-progress self-propagating RCU callback function. Because
3194 * callbacks run from softirq, this function is an implicit RCU read-side
3195 * critical section.
3196 */
rcu_torture_fwd_prog_cb(struct rcu_head * rhp)3197 static void rcu_torture_fwd_prog_cb(struct rcu_head *rhp)
3198 {
3199 struct fwd_cb_state *fcsp = container_of(rhp, struct fwd_cb_state, rh);
3200
3201 if (READ_ONCE(fcsp->stop)) {
3202 WRITE_ONCE(fcsp->stop, 2);
3203 return;
3204 }
3205 cur_ops->call(&fcsp->rh, rcu_torture_fwd_prog_cb);
3206 }
3207
3208 /* State for continuous-flood RCU callbacks. */
3209 struct rcu_fwd_cb {
3210 struct rcu_head rh;
3211 struct rcu_fwd_cb *rfc_next;
3212 struct rcu_fwd *rfc_rfp;
3213 int rfc_gps;
3214 };
3215
3216 #define MAX_FWD_CB_JIFFIES (8 * HZ) /* Maximum CB test duration. */
3217 #define MIN_FWD_CB_LAUNDERS 3 /* This many CB invocations to count. */
3218 #define MIN_FWD_CBS_LAUNDERED 100 /* Number of counted CBs. */
3219 #define FWD_CBS_HIST_DIV 10 /* Histogram buckets/second. */
3220 #define N_LAUNDERS_HIST (2 * MAX_FWD_CB_JIFFIES / (HZ / FWD_CBS_HIST_DIV))
3221
3222 struct rcu_launder_hist {
3223 long n_launders;
3224 unsigned long launder_gp_seq;
3225 };
3226
3227 struct rcu_fwd {
3228 spinlock_t rcu_fwd_lock;
3229 struct rcu_fwd_cb *rcu_fwd_cb_head;
3230 struct rcu_fwd_cb **rcu_fwd_cb_tail;
3231 long n_launders_cb;
3232 unsigned long rcu_fwd_startat;
3233 struct rcu_launder_hist n_launders_hist[N_LAUNDERS_HIST];
3234 unsigned long rcu_launder_gp_seq_start;
3235 int rcu_fwd_id;
3236 };
3237
3238 static DEFINE_MUTEX(rcu_fwd_mutex);
3239 static struct rcu_fwd *rcu_fwds;
3240 static unsigned long rcu_fwd_seq;
3241 static atomic_long_t rcu_fwd_max_cbs;
3242 static bool rcu_fwd_emergency_stop;
3243
rcu_torture_fwd_cb_hist(struct rcu_fwd * rfp)3244 static void rcu_torture_fwd_cb_hist(struct rcu_fwd *rfp)
3245 {
3246 unsigned long gps;
3247 unsigned long gps_old;
3248 int i;
3249 int j;
3250
3251 for (i = ARRAY_SIZE(rfp->n_launders_hist) - 1; i > 0; i--)
3252 if (rfp->n_launders_hist[i].n_launders > 0)
3253 break;
3254 pr_alert("%s: Callback-invocation histogram %d (duration %lu jiffies):",
3255 __func__, rfp->rcu_fwd_id, jiffies - rfp->rcu_fwd_startat);
3256 gps_old = rfp->rcu_launder_gp_seq_start;
3257 for (j = 0; j <= i; j++) {
3258 gps = rfp->n_launders_hist[j].launder_gp_seq;
3259 pr_cont(" %ds/%d: %ld:%ld",
3260 j + 1, FWD_CBS_HIST_DIV,
3261 rfp->n_launders_hist[j].n_launders,
3262 rcutorture_seq_diff(gps, gps_old));
3263 gps_old = gps;
3264 }
3265 pr_cont("\n");
3266 }
3267
3268 /* Callback function for continuous-flood RCU callbacks. */
rcu_torture_fwd_cb_cr(struct rcu_head * rhp)3269 static void rcu_torture_fwd_cb_cr(struct rcu_head *rhp)
3270 {
3271 unsigned long flags;
3272 int i;
3273 struct rcu_fwd_cb *rfcp = container_of(rhp, struct rcu_fwd_cb, rh);
3274 struct rcu_fwd_cb **rfcpp;
3275 struct rcu_fwd *rfp = rfcp->rfc_rfp;
3276
3277 rfcp->rfc_next = NULL;
3278 rfcp->rfc_gps++;
3279 spin_lock_irqsave(&rfp->rcu_fwd_lock, flags);
3280 rfcpp = rfp->rcu_fwd_cb_tail;
3281 rfp->rcu_fwd_cb_tail = &rfcp->rfc_next;
3282 smp_store_release(rfcpp, rfcp);
3283 WRITE_ONCE(rfp->n_launders_cb, rfp->n_launders_cb + 1);
3284 i = ((jiffies - rfp->rcu_fwd_startat) / (HZ / FWD_CBS_HIST_DIV));
3285 if (i >= ARRAY_SIZE(rfp->n_launders_hist))
3286 i = ARRAY_SIZE(rfp->n_launders_hist) - 1;
3287 rfp->n_launders_hist[i].n_launders++;
3288 rfp->n_launders_hist[i].launder_gp_seq = cur_ops->get_gp_seq();
3289 spin_unlock_irqrestore(&rfp->rcu_fwd_lock, flags);
3290 }
3291
3292 // Give the scheduler a chance, even on nohz_full CPUs.
rcu_torture_fwd_prog_cond_resched(unsigned long iter)3293 static void rcu_torture_fwd_prog_cond_resched(unsigned long iter)
3294 {
3295 if (IS_ENABLED(CONFIG_PREEMPTION) && IS_ENABLED(CONFIG_NO_HZ_FULL)) {
3296 // Real call_rcu() floods hit userspace, so emulate that.
3297 if (need_resched() || (iter & 0xfff))
3298 schedule();
3299 return;
3300 }
3301 // No userspace emulation: CB invocation throttles call_rcu()
3302 cond_resched();
3303 }
3304
3305 /*
3306 * Free all callbacks on the rcu_fwd_cb_head list, either because the
3307 * test is over or because we hit an OOM event.
3308 */
rcu_torture_fwd_prog_cbfree(struct rcu_fwd * rfp)3309 static unsigned long rcu_torture_fwd_prog_cbfree(struct rcu_fwd *rfp)
3310 {
3311 unsigned long flags;
3312 unsigned long freed = 0;
3313 struct rcu_fwd_cb *rfcp;
3314
3315 for (;;) {
3316 spin_lock_irqsave(&rfp->rcu_fwd_lock, flags);
3317 rfcp = rfp->rcu_fwd_cb_head;
3318 if (!rfcp) {
3319 spin_unlock_irqrestore(&rfp->rcu_fwd_lock, flags);
3320 break;
3321 }
3322 rfp->rcu_fwd_cb_head = rfcp->rfc_next;
3323 if (!rfp->rcu_fwd_cb_head)
3324 rfp->rcu_fwd_cb_tail = &rfp->rcu_fwd_cb_head;
3325 spin_unlock_irqrestore(&rfp->rcu_fwd_lock, flags);
3326 kfree(rfcp);
3327 freed++;
3328 rcu_torture_fwd_prog_cond_resched(freed);
3329 if (tick_nohz_full_enabled()) {
3330 local_irq_save(flags);
3331 rcu_momentary_eqs();
3332 local_irq_restore(flags);
3333 }
3334 }
3335 return freed;
3336 }
3337
3338 /* Carry out need_resched()/cond_resched() forward-progress testing. */
rcu_torture_fwd_prog_nr(struct rcu_fwd * rfp,int * tested,int * tested_tries)3339 static void rcu_torture_fwd_prog_nr(struct rcu_fwd *rfp,
3340 int *tested, int *tested_tries)
3341 {
3342 unsigned long cver;
3343 unsigned long dur;
3344 struct fwd_cb_state fcs;
3345 unsigned long gps;
3346 int idx;
3347 int sd;
3348 int sd4;
3349 bool selfpropcb = false;
3350 unsigned long stopat;
3351 static DEFINE_TORTURE_RANDOM(trs);
3352
3353 pr_alert("%s: Starting forward-progress test %d\n", __func__, rfp->rcu_fwd_id);
3354 if (!cur_ops->sync)
3355 return; // Cannot do need_resched() forward progress testing without ->sync.
3356 if (cur_ops->call && cur_ops->cb_barrier) {
3357 init_rcu_head_on_stack(&fcs.rh);
3358 selfpropcb = true;
3359 }
3360
3361 /* Tight loop containing cond_resched(). */
3362 atomic_inc(&rcu_fwd_cb_nodelay);
3363 cur_ops->sync(); /* Later readers see above write. */
3364 if (selfpropcb) {
3365 WRITE_ONCE(fcs.stop, 0);
3366 cur_ops->call(&fcs.rh, rcu_torture_fwd_prog_cb);
3367 }
3368 cver = READ_ONCE(rcu_torture_current_version);
3369 gps = cur_ops->get_gp_seq();
3370 sd = cur_ops->stall_dur() + 1;
3371 sd4 = (sd + fwd_progress_div - 1) / fwd_progress_div;
3372 dur = sd4 + torture_random(&trs) % (sd - sd4);
3373 WRITE_ONCE(rfp->rcu_fwd_startat, jiffies);
3374 stopat = rfp->rcu_fwd_startat + dur;
3375 while (time_before(jiffies, stopat) &&
3376 !shutdown_time_arrived() &&
3377 !READ_ONCE(rcu_fwd_emergency_stop) && !torture_must_stop()) {
3378 idx = cur_ops->readlock();
3379 udelay(10);
3380 cur_ops->readunlock(idx);
3381 if (!fwd_progress_need_resched || need_resched())
3382 cond_resched();
3383 }
3384 (*tested_tries)++;
3385 if (!time_before(jiffies, stopat) &&
3386 !shutdown_time_arrived() &&
3387 !READ_ONCE(rcu_fwd_emergency_stop) && !torture_must_stop()) {
3388 (*tested)++;
3389 cver = READ_ONCE(rcu_torture_current_version) - cver;
3390 gps = rcutorture_seq_diff(cur_ops->get_gp_seq(), gps);
3391 WARN_ON(!cver && gps < 2);
3392 pr_alert("%s: %d Duration %ld cver %ld gps %ld\n", __func__,
3393 rfp->rcu_fwd_id, dur, cver, gps);
3394 }
3395 if (selfpropcb) {
3396 WRITE_ONCE(fcs.stop, 1);
3397 cur_ops->sync(); /* Wait for running CB to complete. */
3398 pr_alert("%s: Waiting for CBs: %pS() %d\n", __func__, cur_ops->cb_barrier, rfp->rcu_fwd_id);
3399 cur_ops->cb_barrier(); /* Wait for queued callbacks. */
3400 }
3401
3402 if (selfpropcb) {
3403 WARN_ON(READ_ONCE(fcs.stop) != 2);
3404 destroy_rcu_head_on_stack(&fcs.rh);
3405 }
3406 schedule_timeout_uninterruptible(HZ / 10); /* Let kthreads recover. */
3407 atomic_dec(&rcu_fwd_cb_nodelay);
3408 }
3409
3410 /* Carry out call_rcu() forward-progress testing. */
rcu_torture_fwd_prog_cr(struct rcu_fwd * rfp)3411 static void rcu_torture_fwd_prog_cr(struct rcu_fwd *rfp)
3412 {
3413 unsigned long cver;
3414 unsigned long flags;
3415 unsigned long gps;
3416 int i;
3417 long n_launders;
3418 long n_launders_cb_snap;
3419 long n_launders_sa;
3420 long n_max_cbs;
3421 long n_max_gps;
3422 struct rcu_fwd_cb *rfcp;
3423 struct rcu_fwd_cb *rfcpn;
3424 unsigned long stopat;
3425 unsigned long stoppedat;
3426
3427 pr_alert("%s: Starting forward-progress test %d\n", __func__, rfp->rcu_fwd_id);
3428 if (READ_ONCE(rcu_fwd_emergency_stop))
3429 return; /* Get out of the way quickly, no GP wait! */
3430 if (!cur_ops->call)
3431 return; /* Can't do call_rcu() fwd prog without ->call. */
3432
3433 /* Loop continuously posting RCU callbacks. */
3434 atomic_inc(&rcu_fwd_cb_nodelay);
3435 cur_ops->sync(); /* Later readers see above write. */
3436 WRITE_ONCE(rfp->rcu_fwd_startat, jiffies);
3437 stopat = rfp->rcu_fwd_startat + MAX_FWD_CB_JIFFIES;
3438 n_launders = 0;
3439 rfp->n_launders_cb = 0; // Hoist initialization for multi-kthread
3440 n_launders_sa = 0;
3441 n_max_cbs = 0;
3442 n_max_gps = 0;
3443 for (i = 0; i < ARRAY_SIZE(rfp->n_launders_hist); i++)
3444 rfp->n_launders_hist[i].n_launders = 0;
3445 cver = READ_ONCE(rcu_torture_current_version);
3446 gps = cur_ops->get_gp_seq();
3447 rfp->rcu_launder_gp_seq_start = gps;
3448 tick_dep_set_task(current, TICK_DEP_BIT_RCU); // CPU bound, so need tick.
3449 while (time_before(jiffies, stopat) &&
3450 !shutdown_time_arrived() &&
3451 !READ_ONCE(rcu_fwd_emergency_stop) && !torture_must_stop()) {
3452 rfcp = READ_ONCE(rfp->rcu_fwd_cb_head);
3453 rfcpn = NULL;
3454 if (rfcp)
3455 rfcpn = READ_ONCE(rfcp->rfc_next);
3456 if (rfcpn) {
3457 if (rfcp->rfc_gps >= MIN_FWD_CB_LAUNDERS &&
3458 ++n_max_gps >= MIN_FWD_CBS_LAUNDERED)
3459 break;
3460 rfp->rcu_fwd_cb_head = rfcpn;
3461 n_launders++;
3462 n_launders_sa++;
3463 } else if (!cur_ops->cbflood_max || cur_ops->cbflood_max > n_max_cbs) {
3464 rfcp = kmalloc_obj(*rfcp);
3465 if (WARN_ON_ONCE(!rfcp)) {
3466 schedule_timeout_interruptible(1);
3467 continue;
3468 }
3469 n_max_cbs++;
3470 n_launders_sa = 0;
3471 rfcp->rfc_gps = 0;
3472 rfcp->rfc_rfp = rfp;
3473 } else {
3474 rfcp = NULL;
3475 }
3476 if (rfcp)
3477 cur_ops->call(&rfcp->rh, rcu_torture_fwd_cb_cr);
3478 rcu_torture_fwd_prog_cond_resched(n_launders + n_max_cbs);
3479 if (tick_nohz_full_enabled()) {
3480 local_irq_save(flags);
3481 rcu_momentary_eqs();
3482 local_irq_restore(flags);
3483 }
3484 }
3485 stoppedat = jiffies;
3486 n_launders_cb_snap = READ_ONCE(rfp->n_launders_cb);
3487 cver = READ_ONCE(rcu_torture_current_version) - cver;
3488 gps = rcutorture_seq_diff(cur_ops->get_gp_seq(), gps);
3489 pr_alert("%s: Waiting for CBs: %pS() %d\n", __func__, cur_ops->cb_barrier, rfp->rcu_fwd_id);
3490 cur_ops->cb_barrier(); /* Wait for callbacks to be invoked. */
3491 (void)rcu_torture_fwd_prog_cbfree(rfp);
3492
3493 if (!torture_must_stop() && !READ_ONCE(rcu_fwd_emergency_stop) &&
3494 !shutdown_time_arrived()) {
3495 if (WARN_ON(n_max_gps < MIN_FWD_CBS_LAUNDERED) && cur_ops->gp_kthread_dbg)
3496 cur_ops->gp_kthread_dbg();
3497 pr_alert("%s Duration %lu barrier: %lu pending %ld n_launders: %ld n_launders_sa: %ld n_max_gps: %ld n_max_cbs: %ld cver %ld gps %ld #online %u\n",
3498 __func__,
3499 stoppedat - rfp->rcu_fwd_startat, jiffies - stoppedat,
3500 n_launders + n_max_cbs - n_launders_cb_snap,
3501 n_launders, n_launders_sa,
3502 n_max_gps, n_max_cbs, cver, gps, num_online_cpus());
3503 atomic_long_add(n_max_cbs, &rcu_fwd_max_cbs);
3504 mutex_lock(&rcu_fwd_mutex); // Serialize histograms.
3505 rcu_torture_fwd_cb_hist(rfp);
3506 mutex_unlock(&rcu_fwd_mutex);
3507 }
3508 schedule_timeout_uninterruptible(HZ); /* Let CBs drain. */
3509 tick_dep_clear_task(current, TICK_DEP_BIT_RCU);
3510 atomic_dec(&rcu_fwd_cb_nodelay);
3511 }
3512
3513
3514 /*
3515 * OOM notifier, but this only prints diagnostic information for the
3516 * current forward-progress test.
3517 */
rcutorture_oom_notify(struct notifier_block * self,unsigned long notused,void * nfreed)3518 static int rcutorture_oom_notify(struct notifier_block *self,
3519 unsigned long notused, void *nfreed)
3520 {
3521 int i;
3522 long ncbs;
3523 struct rcu_fwd *rfp;
3524
3525 mutex_lock(&rcu_fwd_mutex);
3526 rfp = rcu_fwds;
3527 if (!rfp) {
3528 mutex_unlock(&rcu_fwd_mutex);
3529 return NOTIFY_OK;
3530 }
3531 WARN(1, "%s invoked upon OOM during forward-progress testing.\n",
3532 __func__);
3533 for (i = 0; i < fwd_progress; i++) {
3534 rcu_torture_fwd_cb_hist(&rfp[i]);
3535 rcu_fwd_progress_check(1 + (jiffies - READ_ONCE(rfp[i].rcu_fwd_startat)) / 2);
3536 }
3537 WRITE_ONCE(rcu_fwd_emergency_stop, true);
3538 smp_mb(); /* Emergency stop before free and wait to avoid hangs. */
3539 ncbs = 0;
3540 for (i = 0; i < fwd_progress; i++)
3541 ncbs += rcu_torture_fwd_prog_cbfree(&rfp[i]);
3542 pr_info("%s: Freed %lu RCU callbacks.\n", __func__, ncbs);
3543 cur_ops->cb_barrier();
3544 ncbs = 0;
3545 for (i = 0; i < fwd_progress; i++)
3546 ncbs += rcu_torture_fwd_prog_cbfree(&rfp[i]);
3547 pr_info("%s: Freed %lu RCU callbacks.\n", __func__, ncbs);
3548 cur_ops->cb_barrier();
3549 ncbs = 0;
3550 for (i = 0; i < fwd_progress; i++)
3551 ncbs += rcu_torture_fwd_prog_cbfree(&rfp[i]);
3552 pr_info("%s: Freed %lu RCU callbacks.\n", __func__, ncbs);
3553 smp_mb(); /* Frees before return to avoid redoing OOM. */
3554 (*(unsigned long *)nfreed)++; /* Forward progress CBs freed! */
3555 pr_info("%s returning after OOM processing.\n", __func__);
3556 mutex_unlock(&rcu_fwd_mutex);
3557 return NOTIFY_OK;
3558 }
3559
3560 static struct notifier_block rcutorture_oom_nb = {
3561 .notifier_call = rcutorture_oom_notify
3562 };
3563
3564 /* Carry out grace-period forward-progress testing. */
rcu_torture_fwd_prog(void * args)3565 static int rcu_torture_fwd_prog(void *args)
3566 {
3567 bool firsttime = true;
3568 long max_cbs;
3569 int oldnice = task_nice(current);
3570 unsigned long oldseq = READ_ONCE(rcu_fwd_seq);
3571 struct rcu_fwd *rfp = args;
3572 int tested = 0;
3573 int tested_tries = 0;
3574
3575 VERBOSE_TOROUT_STRING("rcu_torture_fwd_progress task started");
3576 while (!rcu_inkernel_boot_has_ended())
3577 schedule_timeout_interruptible(HZ / 10);
3578 rcu_bind_current_to_nocb();
3579 if (!IS_ENABLED(CONFIG_SMP) || !IS_ENABLED(CONFIG_RCU_BOOST))
3580 set_user_nice(current, MAX_NICE);
3581 do {
3582 if (!rfp->rcu_fwd_id) {
3583 schedule_timeout_interruptible(fwd_progress_holdoff * HZ);
3584 WRITE_ONCE(rcu_fwd_emergency_stop, false);
3585 if (!firsttime) {
3586 max_cbs = atomic_long_xchg(&rcu_fwd_max_cbs, 0);
3587 pr_alert("%s n_max_cbs: %ld\n", __func__, max_cbs);
3588 }
3589 firsttime = false;
3590 WRITE_ONCE(rcu_fwd_seq, rcu_fwd_seq + 1);
3591 } else {
3592 while (READ_ONCE(rcu_fwd_seq) == oldseq && !torture_must_stop())
3593 schedule_timeout_interruptible(HZ / 20);
3594 oldseq = READ_ONCE(rcu_fwd_seq);
3595 }
3596 pr_alert("%s: Starting forward-progress test %d\n", __func__, rfp->rcu_fwd_id);
3597 if (rcu_inkernel_boot_has_ended() && torture_num_online_cpus() > rfp->rcu_fwd_id)
3598 rcu_torture_fwd_prog_cr(rfp);
3599 if ((cur_ops->stall_dur && cur_ops->stall_dur() > 0) &&
3600 (!IS_ENABLED(CONFIG_TINY_RCU) ||
3601 (rcu_inkernel_boot_has_ended() &&
3602 torture_num_online_cpus() > rfp->rcu_fwd_id)))
3603 rcu_torture_fwd_prog_nr(rfp, &tested, &tested_tries);
3604
3605 /* Avoid slow periods, better to test when busy. */
3606 if (stutter_wait("rcu_torture_fwd_prog"))
3607 sched_set_normal(current, oldnice);
3608 } while (!torture_must_stop());
3609 /* Short runs might not contain a valid forward-progress attempt. */
3610 if (!rfp->rcu_fwd_id) {
3611 WARN_ON(!tested && tested_tries >= 5);
3612 pr_alert("%s: tested %d tested_tries %d\n", __func__, tested, tested_tries);
3613 }
3614 torture_kthread_stopping("rcu_torture_fwd_prog");
3615 return 0;
3616 }
3617
3618 /* If forward-progress checking is requested and feasible, spawn the thread. */
rcu_torture_fwd_prog_init(void)3619 static int __init rcu_torture_fwd_prog_init(void)
3620 {
3621 int i;
3622 int ret = 0;
3623 struct rcu_fwd *rfp;
3624
3625 if (!fwd_progress)
3626 return 0; /* Not requested, so don't do it. */
3627 if (fwd_progress >= nr_cpu_ids) {
3628 VERBOSE_TOROUT_STRING("rcu_torture_fwd_prog_init: Limiting fwd_progress to # CPUs.\n");
3629 fwd_progress = nr_cpu_ids;
3630 } else if (fwd_progress < 0) {
3631 fwd_progress = nr_cpu_ids;
3632 }
3633 if ((!cur_ops->sync && !cur_ops->call) ||
3634 (!cur_ops->cbflood_max && (!cur_ops->stall_dur || cur_ops->stall_dur() <= 0)) ||
3635 cur_ops == &rcu_busted_ops) {
3636 VERBOSE_TOROUT_STRING("rcu_torture_fwd_prog_init: Disabled, unsupported by RCU flavor under test");
3637 fwd_progress = 0;
3638 return 0;
3639 }
3640 if (stall_cpu > 0 || (preempt_duration > 0 && IS_ENABLED(CONFIG_RCU_NOCB_CPU))) {
3641 VERBOSE_TOROUT_STRING("rcu_torture_fwd_prog_init: Disabled, conflicts with CPU-stall and/or preemption testing");
3642 fwd_progress = 0;
3643 if (IS_MODULE(CONFIG_RCU_TORTURE_TEST))
3644 return -EINVAL; /* In module, can fail back to user. */
3645 WARN_ON(1); /* Make sure rcutorture scripting notices conflict. */
3646 return 0;
3647 }
3648 if (fwd_progress_holdoff <= 0)
3649 fwd_progress_holdoff = 1;
3650 if (fwd_progress_div <= 0)
3651 fwd_progress_div = 4;
3652 rfp = kzalloc_objs(*rfp, fwd_progress);
3653 fwd_prog_tasks = kzalloc_objs(*fwd_prog_tasks, fwd_progress);
3654 if (!rfp || !fwd_prog_tasks) {
3655 kfree(rfp);
3656 kfree(fwd_prog_tasks);
3657 fwd_prog_tasks = NULL;
3658 fwd_progress = 0;
3659 return -ENOMEM;
3660 }
3661 for (i = 0; i < fwd_progress; i++) {
3662 spin_lock_init(&rfp[i].rcu_fwd_lock);
3663 rfp[i].rcu_fwd_cb_tail = &rfp[i].rcu_fwd_cb_head;
3664 rfp[i].rcu_fwd_id = i;
3665 }
3666 mutex_lock(&rcu_fwd_mutex);
3667 rcu_fwds = rfp;
3668 mutex_unlock(&rcu_fwd_mutex);
3669 register_oom_notifier(&rcutorture_oom_nb);
3670 for (i = 0; i < fwd_progress; i++) {
3671 ret = torture_create_kthread(rcu_torture_fwd_prog, &rcu_fwds[i], fwd_prog_tasks[i]);
3672 if (ret) {
3673 fwd_progress = i;
3674 return ret;
3675 }
3676 }
3677 return 0;
3678 }
3679
rcu_torture_fwd_prog_cleanup(void)3680 static void rcu_torture_fwd_prog_cleanup(void)
3681 {
3682 int i;
3683 struct rcu_fwd *rfp;
3684
3685 if (!rcu_fwds || !fwd_prog_tasks)
3686 return;
3687 for (i = 0; i < fwd_progress; i++)
3688 torture_stop_kthread(rcu_torture_fwd_prog, fwd_prog_tasks[i]);
3689 unregister_oom_notifier(&rcutorture_oom_nb);
3690 mutex_lock(&rcu_fwd_mutex);
3691 rfp = rcu_fwds;
3692 rcu_fwds = NULL;
3693 mutex_unlock(&rcu_fwd_mutex);
3694 kfree(rfp);
3695 kfree(fwd_prog_tasks);
3696 fwd_prog_tasks = NULL;
3697 }
3698
3699 /* Callback function for RCU barrier testing. */
rcu_torture_barrier_cbf(struct rcu_head * rcu)3700 static void rcu_torture_barrier_cbf(struct rcu_head *rcu)
3701 {
3702 atomic_inc(&barrier_cbs_invoked);
3703 }
3704
3705 /* IPI handler to get callback posted on desired CPU, if online. */
rcu_torture_barrier1cb(void * rcu_void)3706 static int rcu_torture_barrier1cb(void *rcu_void)
3707 {
3708 struct rcu_head *rhp = rcu_void;
3709
3710 cur_ops->call(rhp, rcu_torture_barrier_cbf);
3711 return 0;
3712 }
3713
3714 /* kthread function to register callbacks used to test RCU barriers. */
rcu_torture_barrier_cbs(void * arg)3715 static int rcu_torture_barrier_cbs(void *arg)
3716 {
3717 long myid = (long)arg;
3718 bool lastphase = false;
3719 bool newphase;
3720 struct rcu_head rcu;
3721
3722 init_rcu_head_on_stack(&rcu);
3723 VERBOSE_TOROUT_STRING("rcu_torture_barrier_cbs task started");
3724 set_user_nice(current, MAX_NICE);
3725 do {
3726 wait_event(barrier_cbs_wq[myid],
3727 (newphase =
3728 smp_load_acquire(&barrier_phase)) != lastphase ||
3729 torture_must_stop());
3730 lastphase = newphase;
3731 if (torture_must_stop())
3732 break;
3733 /*
3734 * The above smp_load_acquire() ensures barrier_phase load
3735 * is ordered before the following ->call().
3736 */
3737 if (smp_call_on_cpu(myid, rcu_torture_barrier1cb, &rcu, 1))
3738 cur_ops->call(&rcu, rcu_torture_barrier_cbf);
3739
3740 if (atomic_dec_and_test(&barrier_cbs_count))
3741 wake_up(&barrier_wq);
3742 } while (!torture_must_stop());
3743 if (cur_ops->cb_barrier != NULL)
3744 cur_ops->cb_barrier();
3745 destroy_rcu_head_on_stack(&rcu);
3746 torture_kthread_stopping("rcu_torture_barrier_cbs");
3747 return 0;
3748 }
3749
3750 /* kthread function to drive and coordinate RCU barrier testing. */
rcu_torture_barrier(void * arg)3751 static int rcu_torture_barrier(void *arg)
3752 {
3753 int i;
3754
3755 VERBOSE_TOROUT_STRING("rcu_torture_barrier task starting");
3756 do {
3757 atomic_set(&barrier_cbs_invoked, 0);
3758 atomic_set(&barrier_cbs_count, n_barrier_cbs);
3759 /* Ensure barrier_phase ordered after prior assignments. */
3760 smp_store_release(&barrier_phase, !barrier_phase);
3761 for (i = 0; i < n_barrier_cbs; i++)
3762 wake_up(&barrier_cbs_wq[i]);
3763 wait_event(barrier_wq,
3764 atomic_read(&barrier_cbs_count) == 0 ||
3765 torture_must_stop());
3766 if (torture_must_stop())
3767 break;
3768 n_barrier_attempts++;
3769 cur_ops->cb_barrier(); /* Implies smp_mb() for wait_event(). */
3770 if (atomic_read(&barrier_cbs_invoked) != n_barrier_cbs) {
3771 n_rcu_torture_barrier_error++;
3772 pr_err("barrier_cbs_invoked = %d, n_barrier_cbs = %d\n",
3773 atomic_read(&barrier_cbs_invoked),
3774 n_barrier_cbs);
3775 WARN_ON(1);
3776 // Wait manually for the remaining callbacks
3777 i = 0;
3778 do {
3779 if (WARN_ON(i++ > HZ))
3780 i = INT_MIN;
3781 schedule_timeout_interruptible(1);
3782 cur_ops->cb_barrier();
3783 } while (atomic_read(&barrier_cbs_invoked) !=
3784 n_barrier_cbs &&
3785 !torture_must_stop());
3786 smp_mb(); // Can't trust ordering if broken.
3787 if (!torture_must_stop())
3788 pr_err("Recovered: barrier_cbs_invoked = %d\n",
3789 atomic_read(&barrier_cbs_invoked));
3790 } else {
3791 n_barrier_successes++;
3792 }
3793 schedule_timeout_interruptible(HZ / 10);
3794 } while (!torture_must_stop());
3795 torture_kthread_stopping("rcu_torture_barrier");
3796 return 0;
3797 }
3798
3799 /* Initialize RCU barrier testing. */
rcu_torture_barrier_init(void)3800 static int rcu_torture_barrier_init(void)
3801 {
3802 int i;
3803 int ret;
3804
3805 if (n_barrier_cbs <= 0)
3806 return 0;
3807 if (cur_ops->call == NULL || cur_ops->cb_barrier == NULL) {
3808 pr_alert("%s" TORTURE_FLAG
3809 " Call or barrier ops missing for %s,\n",
3810 torture_type, cur_ops->name);
3811 pr_alert("%s" TORTURE_FLAG
3812 " RCU barrier testing omitted from run.\n",
3813 torture_type);
3814 return 0;
3815 }
3816 atomic_set(&barrier_cbs_count, 0);
3817 atomic_set(&barrier_cbs_invoked, 0);
3818 barrier_cbs_tasks =
3819 kzalloc_objs(barrier_cbs_tasks[0], n_barrier_cbs);
3820 barrier_cbs_wq =
3821 kzalloc_objs(barrier_cbs_wq[0], n_barrier_cbs);
3822 if (barrier_cbs_tasks == NULL || !barrier_cbs_wq)
3823 return -ENOMEM;
3824 for (i = 0; i < n_barrier_cbs; i++) {
3825 init_waitqueue_head(&barrier_cbs_wq[i]);
3826 ret = torture_create_kthread(rcu_torture_barrier_cbs,
3827 (void *)(long)i,
3828 barrier_cbs_tasks[i]);
3829 if (ret)
3830 return ret;
3831 }
3832 return torture_create_kthread(rcu_torture_barrier, NULL, barrier_task);
3833 }
3834
3835 /* Clean up after RCU barrier testing. */
rcu_torture_barrier_cleanup(void)3836 static void rcu_torture_barrier_cleanup(void)
3837 {
3838 int i;
3839
3840 torture_stop_kthread(rcu_torture_barrier, barrier_task);
3841 if (barrier_cbs_tasks != NULL) {
3842 for (i = 0; i < n_barrier_cbs; i++)
3843 torture_stop_kthread(rcu_torture_barrier_cbs,
3844 barrier_cbs_tasks[i]);
3845 kfree(barrier_cbs_tasks);
3846 barrier_cbs_tasks = NULL;
3847 }
3848 if (barrier_cbs_wq != NULL) {
3849 kfree(barrier_cbs_wq);
3850 barrier_cbs_wq = NULL;
3851 }
3852 }
3853
rcu_torture_can_boost(void)3854 static bool rcu_torture_can_boost(void)
3855 {
3856 static int boost_warn_once;
3857 int prio;
3858
3859 if (!(test_boost == 1 && cur_ops->can_boost) && test_boost != 2)
3860 return false;
3861 if (!cur_ops->start_gp_poll || !cur_ops->poll_gp_state)
3862 return false;
3863
3864 prio = rcu_get_gp_kthreads_prio();
3865 if (!prio)
3866 return false;
3867
3868 if (prio < 2) {
3869 if (boost_warn_once == 1)
3870 return false;
3871
3872 pr_alert("%s: WARN: RCU kthread priority too low to test boosting. Skipping RCU boost test. Try passing rcutree.kthread_prio > 1 on the kernel command line.\n", KBUILD_MODNAME);
3873 boost_warn_once = 1;
3874 return false;
3875 }
3876
3877 return true;
3878 }
3879
3880 static bool read_exit_child_stop;
3881 static bool read_exit_child_stopped;
3882 static wait_queue_head_t read_exit_wq;
3883
3884 // Child kthread which just does an rcutorture reader and exits.
rcu_torture_read_exit_child(void * trsp_in)3885 static int rcu_torture_read_exit_child(void *trsp_in)
3886 {
3887 struct torture_random_state *trsp = trsp_in;
3888
3889 set_user_nice(current, MAX_NICE);
3890 // Minimize time between reading and exiting.
3891 while (!kthread_should_stop())
3892 schedule_timeout_uninterruptible(HZ / 20);
3893 (void)rcu_torture_one_read(trsp, -1);
3894 return 0;
3895 }
3896
3897 // Parent kthread which creates and destroys read-exit child kthreads.
rcu_torture_read_exit(void * unused)3898 static int rcu_torture_read_exit(void *unused)
3899 {
3900 bool errexit = false;
3901 int i;
3902 struct task_struct *tsp;
3903 DEFINE_TORTURE_RANDOM(trs);
3904
3905 // Allocate and initialize.
3906 set_user_nice(current, MAX_NICE);
3907 VERBOSE_TOROUT_STRING("rcu_torture_read_exit: Start of test");
3908
3909 // Each pass through this loop does one read-exit episode.
3910 do {
3911 VERBOSE_TOROUT_STRING("rcu_torture_read_exit: Start of episode");
3912 for (i = 0; i < read_exit_burst; i++) {
3913 if (READ_ONCE(read_exit_child_stop))
3914 break;
3915 stutter_wait("rcu_torture_read_exit");
3916 // Spawn child.
3917 tsp = kthread_run(rcu_torture_read_exit_child,
3918 &trs, "%s", "rcu_torture_read_exit_child");
3919 if (IS_ERR(tsp)) {
3920 TOROUT_ERRSTRING("out of memory");
3921 errexit = true;
3922 break;
3923 }
3924 cond_resched();
3925 kthread_stop(tsp);
3926 n_read_exits++;
3927 }
3928 VERBOSE_TOROUT_STRING("rcu_torture_read_exit: End of episode");
3929 rcu_barrier(); // Wait for task_struct free, avoid OOM.
3930 i = 0;
3931 for (; !errexit && !READ_ONCE(read_exit_child_stop) && i < read_exit_delay; i++)
3932 schedule_timeout_uninterruptible(HZ);
3933 } while (!errexit && !READ_ONCE(read_exit_child_stop));
3934
3935 // Clean up and exit.
3936 smp_store_release(&read_exit_child_stopped, true); // After reaping.
3937 smp_mb(); // Store before wakeup.
3938 wake_up(&read_exit_wq);
3939 while (!torture_must_stop())
3940 schedule_timeout_uninterruptible(HZ / 20);
3941 torture_kthread_stopping("rcu_torture_read_exit");
3942 return 0;
3943 }
3944
rcu_torture_read_exit_init(void)3945 static int rcu_torture_read_exit_init(void)
3946 {
3947 if (read_exit_burst <= 0)
3948 return 0;
3949 init_waitqueue_head(&read_exit_wq);
3950 read_exit_child_stop = false;
3951 read_exit_child_stopped = false;
3952 return torture_create_kthread(rcu_torture_read_exit, NULL,
3953 read_exit_task);
3954 }
3955
rcu_torture_read_exit_cleanup(void)3956 static void rcu_torture_read_exit_cleanup(void)
3957 {
3958 if (!read_exit_task)
3959 return;
3960 WRITE_ONCE(read_exit_child_stop, true);
3961 smp_mb(); // Above write before wait.
3962 wait_event(read_exit_wq, smp_load_acquire(&read_exit_child_stopped));
3963 torture_stop_kthread(rcutorture_read_exit, read_exit_task);
3964 }
3965
rcutorture_test_nmis(int n)3966 static void rcutorture_test_nmis(int n)
3967 {
3968 #if IS_BUILTIN(CONFIG_RCU_TORTURE_TEST)
3969 int cpu;
3970 int dumpcpu;
3971 int i;
3972
3973 for (i = 0; i < n; i++) {
3974 preempt_disable();
3975 cpu = smp_processor_id();
3976 dumpcpu = cpu + 1;
3977 if (dumpcpu >= nr_cpu_ids)
3978 dumpcpu = 0;
3979 pr_alert("%s: CPU %d invoking dump_cpu_task(%d)\n", __func__, cpu, dumpcpu);
3980 dump_cpu_task(dumpcpu);
3981 preempt_enable();
3982 schedule_timeout_uninterruptible(15 * HZ);
3983 }
3984 #else // #if IS_BUILTIN(CONFIG_RCU_TORTURE_TEST)
3985 WARN_ONCE(n, "Non-zero rcutorture.test_nmis=%d permitted only when rcutorture is built in.\n", test_nmis);
3986 #endif // #else // #if IS_BUILTIN(CONFIG_RCU_TORTURE_TEST)
3987 }
3988
3989 // Randomly preempt online CPUs.
rcu_torture_preempt(void * unused)3990 static int rcu_torture_preempt(void *unused)
3991 {
3992 int cpu = -1;
3993 DEFINE_TORTURE_RANDOM(rand);
3994
3995 schedule_timeout_idle(stall_cpu_holdoff);
3996 do {
3997 // Wait for preempt_interval ms with up to 100us fuzz.
3998 torture_hrtimeout_ms(preempt_interval, 100, &rand);
3999 // Select online CPU.
4000 cpu = cpumask_next(cpu, cpu_online_mask);
4001 if (cpu >= nr_cpu_ids)
4002 cpu = cpumask_next(-1, cpu_online_mask);
4003 WARN_ON_ONCE(cpu >= nr_cpu_ids);
4004 // Move to that CPU, if can't do so, retry later.
4005 if (torture_sched_setaffinity(current->pid, cpumask_of(cpu), false))
4006 continue;
4007 // Preempt at high-ish priority, then reset to normal.
4008 sched_set_fifo(current);
4009 torture_sched_setaffinity(current->pid, cpu_present_mask, true);
4010 mdelay(preempt_duration);
4011 sched_set_normal(current, 0);
4012 stutter_wait("rcu_torture_preempt");
4013 } while (!torture_must_stop());
4014 torture_kthread_stopping("rcu_torture_preempt");
4015 return 0;
4016 }
4017
4018 static enum cpuhp_state rcutor_hp;
4019
4020 static struct hrtimer gpwrap_lag_timer;
4021 static bool gpwrap_lag_active;
4022
4023 /* Timer handler for toggling RCU grace-period sequence overflow test lag value */
rcu_gpwrap_lag_timer(struct hrtimer * timer)4024 static enum hrtimer_restart rcu_gpwrap_lag_timer(struct hrtimer *timer)
4025 {
4026 ktime_t next_delay;
4027
4028 if (gpwrap_lag_active) {
4029 pr_alert("rcu-torture: Disabling gpwrap lag (value=0)\n");
4030 cur_ops->set_gpwrap_lag(0);
4031 gpwrap_lag_active = false;
4032 next_delay = ktime_set((gpwrap_lag_cycle_mins - gpwrap_lag_active_mins) * 60, 0);
4033 } else {
4034 pr_alert("rcu-torture: Enabling gpwrap lag (value=%d)\n", gpwrap_lag_gps);
4035 cur_ops->set_gpwrap_lag(gpwrap_lag_gps);
4036 gpwrap_lag_active = true;
4037 next_delay = ktime_set(gpwrap_lag_active_mins * 60, 0);
4038 }
4039
4040 if (torture_must_stop_irq())
4041 return HRTIMER_NORESTART;
4042
4043 hrtimer_forward_now(timer, next_delay);
4044 return HRTIMER_RESTART;
4045 }
4046
rcu_gpwrap_lag_init(void)4047 static int rcu_gpwrap_lag_init(void)
4048 {
4049 if (!gpwrap_lag)
4050 return 0;
4051
4052 if (gpwrap_lag_cycle_mins <= 0 || gpwrap_lag_active_mins <= 0) {
4053 pr_alert("rcu-torture: lag timing parameters must be positive\n");
4054 return -EINVAL;
4055 }
4056
4057 hrtimer_setup(&gpwrap_lag_timer, rcu_gpwrap_lag_timer, CLOCK_MONOTONIC, HRTIMER_MODE_REL);
4058 gpwrap_lag_active = false;
4059 hrtimer_start(&gpwrap_lag_timer,
4060 ktime_set((gpwrap_lag_cycle_mins - gpwrap_lag_active_mins) * 60, 0), HRTIMER_MODE_REL);
4061
4062 return 0;
4063 }
4064
rcu_gpwrap_lag_cleanup(void)4065 static void rcu_gpwrap_lag_cleanup(void)
4066 {
4067 hrtimer_cancel(&gpwrap_lag_timer);
4068 cur_ops->set_gpwrap_lag(0);
4069 gpwrap_lag_active = false;
4070 }
4071 static void
rcu_torture_cleanup(void)4072 rcu_torture_cleanup(void)
4073 {
4074 int firsttime;
4075 int flags = 0;
4076 unsigned long gp_seq = 0;
4077 int i;
4078 int j;
4079
4080 if (torture_cleanup_begin()) {
4081 if (cur_ops->cb_barrier != NULL) {
4082 pr_info("%s: Invoking %pS().\n", __func__, cur_ops->cb_barrier);
4083 cur_ops->cb_barrier();
4084 }
4085 if (cur_ops->gp_slow_unregister)
4086 cur_ops->gp_slow_unregister(NULL);
4087 return;
4088 }
4089 if (!cur_ops) {
4090 torture_cleanup_end();
4091 return;
4092 }
4093
4094 rcutorture_test_nmis(test_nmis);
4095
4096 if (cur_ops->gp_kthread_dbg)
4097 cur_ops->gp_kthread_dbg();
4098 torture_stop_kthread(rcu_torture_preempt, preempt_task);
4099 rcu_torture_read_exit_cleanup();
4100 rcu_torture_barrier_cleanup();
4101 rcu_torture_fwd_prog_cleanup();
4102 torture_stop_kthread(rcu_torture_stall, stall_task);
4103 torture_stop_kthread(rcu_torture_writer, writer_task);
4104
4105 if (nocb_tasks) {
4106 for (i = 0; i < nrealnocbers; i++)
4107 torture_stop_kthread(rcu_nocb_toggle, nocb_tasks[i]);
4108 kfree(nocb_tasks);
4109 nocb_tasks = NULL;
4110 }
4111
4112 if (updown_task) {
4113 torture_stop_kthread(rcu_torture_updown, updown_task);
4114 updown_task = NULL;
4115 }
4116 if (reader_tasks) {
4117 for (i = 0; i < nrealreaders; i++)
4118 torture_stop_kthread(rcu_torture_reader,
4119 reader_tasks[i]);
4120 kfree(reader_tasks);
4121 reader_tasks = NULL;
4122 }
4123 kfree(rcu_torture_reader_mbchk);
4124 rcu_torture_reader_mbchk = NULL;
4125
4126 if (fakewriter_tasks) {
4127 for (i = 0; i < nrealfakewriters; i++)
4128 torture_stop_kthread(rcu_torture_fakewriter,
4129 fakewriter_tasks[i]);
4130 kfree(fakewriter_tasks);
4131 fakewriter_tasks = NULL;
4132 }
4133
4134 if (cur_ops->get_gp_data)
4135 cur_ops->get_gp_data(&flags, &gp_seq);
4136 pr_alert("%s: End-test grace-period state: g%ld f%#x total-gps=%ld\n",
4137 cur_ops->name, (long)gp_seq, flags,
4138 rcutorture_seq_diff(gp_seq, start_gp_seq));
4139 torture_stop_kthread(rcu_torture_stats, stats_task);
4140 torture_stop_kthread(rcu_torture_fqs, fqs_task);
4141 if (rcu_torture_can_boost() && rcutor_hp >= 0)
4142 cpuhp_remove_state(rcutor_hp);
4143
4144 /*
4145 * Wait for all RCU callbacks to fire, then do torture-type-specific
4146 * cleanup operations.
4147 */
4148 if (cur_ops->cb_barrier != NULL) {
4149 pr_info("%s: Invoking %pS().\n", __func__, cur_ops->cb_barrier);
4150 cur_ops->cb_barrier();
4151 }
4152 if (cur_ops->cleanup != NULL)
4153 cur_ops->cleanup();
4154
4155 rcu_torture_mem_dump_obj();
4156
4157 rcu_torture_stats_print(); /* -After- the stats thread is stopped! */
4158
4159 if (err_segs_recorded) {
4160 pr_alert("Failure/close-call rcutorture reader segments:\n");
4161 if (rt_read_nsegs == 0)
4162 pr_alert("\t: No segments recorded!!!\n");
4163 firsttime = 1;
4164 for (i = 0; i < rt_read_nsegs; i++) {
4165 if (IS_ENABLED(CONFIG_RCU_TORTURE_TEST_LOG_GP))
4166 pr_alert("\t%lluus ", div64_u64(err_segs[i].rt_ts, 1000ULL));
4167 else
4168 pr_alert("\t");
4169 pr_cont("%d: %#4x", i, err_segs[i].rt_readstate);
4170 if (err_segs[i].rt_delay_jiffies != 0) {
4171 pr_cont("%s%ldjiffies", firsttime ? "" : "+",
4172 err_segs[i].rt_delay_jiffies);
4173 firsttime = 0;
4174 }
4175 if (IS_ENABLED(CONFIG_RCU_TORTURE_TEST_LOG_CPU)) {
4176 pr_cont(" CPU %2d", err_segs[i].rt_cpu);
4177 if (err_segs[i].rt_cpu != err_segs[i].rt_end_cpu)
4178 pr_cont("->%-2d", err_segs[i].rt_end_cpu);
4179 else
4180 pr_cont(" ...");
4181 }
4182 if (IS_ENABLED(CONFIG_RCU_TORTURE_TEST_LOG_GP) &&
4183 cur_ops->gather_gp_seqs && cur_ops->format_gp_seqs) {
4184 char buf1[20+1];
4185 char buf2[20+1];
4186 char sepchar = '-';
4187
4188 cur_ops->format_gp_seqs(err_segs[i].rt_gp_seq,
4189 buf1, ARRAY_SIZE(buf1));
4190 cur_ops->format_gp_seqs(err_segs[i].rt_gp_seq_end,
4191 buf2, ARRAY_SIZE(buf2));
4192 if (err_segs[i].rt_gp_seq == err_segs[i].rt_gp_seq_end) {
4193 if (buf2[0]) {
4194 for (j = 0; buf2[j]; j++)
4195 buf2[j] = '.';
4196 if (j)
4197 buf2[j - 1] = ' ';
4198 }
4199 sepchar = ' ';
4200 }
4201 pr_cont(" %s%c%s", buf1, sepchar, buf2);
4202 }
4203 if (err_segs[i].rt_delay_ms != 0) {
4204 pr_cont(" %s%ldms", firsttime ? "" : "+",
4205 err_segs[i].rt_delay_ms);
4206 firsttime = 0;
4207 }
4208 if (err_segs[i].rt_delay_us != 0) {
4209 pr_cont(" %s%ldus", firsttime ? "" : "+",
4210 err_segs[i].rt_delay_us);
4211 firsttime = 0;
4212 }
4213 pr_cont("%s", err_segs[i].rt_preempted ? " preempted" : "");
4214 if (err_segs[i].rt_readstate & RCUTORTURE_RDR_BH)
4215 pr_cont(" BH");
4216 if (err_segs[i].rt_readstate & RCUTORTURE_RDR_IRQ)
4217 pr_cont(" IRQ");
4218 if (err_segs[i].rt_readstate & RCUTORTURE_RDR_PREEMPT)
4219 pr_cont(" PREEMPT");
4220 if (err_segs[i].rt_readstate & RCUTORTURE_RDR_RBH)
4221 pr_cont(" RBH");
4222 if (err_segs[i].rt_readstate & RCUTORTURE_RDR_SCHED)
4223 pr_cont(" SCHED");
4224 if (err_segs[i].rt_readstate & RCUTORTURE_RDR_RCU_1)
4225 pr_cont(" RCU_1");
4226 if (err_segs[i].rt_readstate & RCUTORTURE_RDR_RCU_2)
4227 pr_cont(" RCU_2");
4228 pr_cont("\n");
4229
4230 }
4231 if (rt_read_preempted)
4232 pr_alert("\tReader was preempted.\n");
4233 }
4234 if (atomic_read(&n_rcu_torture_error) || n_rcu_torture_barrier_error)
4235 rcu_torture_print_module_parms(cur_ops, "End of test: FAILURE");
4236 else if (torture_onoff_failures())
4237 rcu_torture_print_module_parms(cur_ops,
4238 "End of test: RCU_HOTPLUG");
4239 else
4240 rcu_torture_print_module_parms(cur_ops, "End of test: SUCCESS");
4241 torture_cleanup_end();
4242 if (cur_ops->gp_slow_unregister)
4243 cur_ops->gp_slow_unregister(NULL);
4244
4245 if (gpwrap_lag && cur_ops->set_gpwrap_lag)
4246 rcu_gpwrap_lag_cleanup();
4247 }
4248
rcu_torture_leak_cb(struct rcu_head * rhp)4249 static void rcu_torture_leak_cb(struct rcu_head *rhp)
4250 {
4251 }
4252
rcu_torture_err_cb(struct rcu_head * rhp)4253 static void rcu_torture_err_cb(struct rcu_head *rhp)
4254 {
4255 /*
4256 * This -might- happen due to race conditions, but is unlikely.
4257 * The scenario that leads to this happening is that the
4258 * first of the pair of duplicate callbacks is queued,
4259 * someone else starts a grace period that includes that
4260 * callback, then the second of the pair must wait for the
4261 * next grace period. Unlikely, but can happen. If it
4262 * does happen, the debug-objects subsystem won't have splatted.
4263 */
4264 pr_alert("%s: duplicated callback was invoked.\n", KBUILD_MODNAME);
4265 }
4266
4267 /*
4268 * Verify that double-free causes debug-objects to complain, but only
4269 * if CONFIG_DEBUG_OBJECTS_RCU_HEAD=y. Otherwise, say that the test
4270 * cannot be carried out.
4271 */
rcu_test_debug_objects(void)4272 static void rcu_test_debug_objects(void)
4273 {
4274 struct rcu_head rh1;
4275 struct rcu_head rh2;
4276 int idx;
4277
4278 if (!IS_ENABLED(CONFIG_DEBUG_OBJECTS_RCU_HEAD)) {
4279 pr_alert("%s: !CONFIG_DEBUG_OBJECTS_RCU_HEAD, not testing duplicate call_%s()\n",
4280 KBUILD_MODNAME, cur_ops->name);
4281 return;
4282 }
4283
4284 if (WARN_ON_ONCE(cur_ops->debug_objects &&
4285 (!cur_ops->call || !cur_ops->cb_barrier)))
4286 return;
4287
4288 struct rcu_head *rhp = kmalloc_obj(*rhp);
4289
4290 init_rcu_head_on_stack(&rh1);
4291 init_rcu_head_on_stack(&rh2);
4292 pr_alert("%s: WARN: Duplicate call_%s() test starting.\n", KBUILD_MODNAME, cur_ops->name);
4293
4294 /* Try to queue the rh2 pair of callbacks for the same grace period. */
4295 idx = cur_ops->readlock(); /* Make it impossible to finish a grace period. */
4296 cur_ops->call(&rh1, rcu_torture_leak_cb); /* Start grace period. */
4297 cur_ops->call(&rh2, rcu_torture_leak_cb);
4298 cur_ops->call(&rh2, rcu_torture_err_cb); /* Duplicate callback. */
4299 if (rhp) {
4300 cur_ops->call(rhp, rcu_torture_leak_cb);
4301 cur_ops->call(rhp, rcu_torture_err_cb); /* Another duplicate callback. */
4302 }
4303 cur_ops->readunlock(idx);
4304
4305 /* Wait for them all to get done so we can safely return. */
4306 cur_ops->cb_barrier();
4307 pr_alert("%s: WARN: Duplicate call_%s() test complete.\n", KBUILD_MODNAME, cur_ops->name);
4308 destroy_rcu_head_on_stack(&rh1);
4309 destroy_rcu_head_on_stack(&rh2);
4310 kfree(rhp);
4311 }
4312
rcutorture_sync(void)4313 static void rcutorture_sync(void)
4314 {
4315 static unsigned long n;
4316
4317 if (cur_ops->sync && !(++n & 0xfff))
4318 cur_ops->sync();
4319 }
4320
4321 static DEFINE_MUTEX(mut0);
4322 static DEFINE_MUTEX(mut1);
4323 static DEFINE_MUTEX(mut2);
4324 static DEFINE_MUTEX(mut3);
4325 static DEFINE_MUTEX(mut4);
4326 static DEFINE_MUTEX(mut5);
4327 static DEFINE_MUTEX(mut6);
4328 static DEFINE_MUTEX(mut7);
4329 static DEFINE_MUTEX(mut8);
4330 static DEFINE_MUTEX(mut9);
4331
4332 static DECLARE_RWSEM(rwsem0);
4333 static DECLARE_RWSEM(rwsem1);
4334 static DECLARE_RWSEM(rwsem2);
4335 static DECLARE_RWSEM(rwsem3);
4336 static DECLARE_RWSEM(rwsem4);
4337 static DECLARE_RWSEM(rwsem5);
4338 static DECLARE_RWSEM(rwsem6);
4339 static DECLARE_RWSEM(rwsem7);
4340 static DECLARE_RWSEM(rwsem8);
4341 static DECLARE_RWSEM(rwsem9);
4342
4343 DEFINE_STATIC_SRCU(srcu0);
4344 DEFINE_STATIC_SRCU(srcu1);
4345 DEFINE_STATIC_SRCU(srcu2);
4346 DEFINE_STATIC_SRCU(srcu3);
4347 DEFINE_STATIC_SRCU(srcu4);
4348 DEFINE_STATIC_SRCU(srcu5);
4349 DEFINE_STATIC_SRCU(srcu6);
4350 DEFINE_STATIC_SRCU(srcu7);
4351 DEFINE_STATIC_SRCU(srcu8);
4352 DEFINE_STATIC_SRCU(srcu9);
4353
srcu_lockdep_next(const char * f,const char * fl,const char * fs,const char * fu,int i,int cyclelen,int deadlock)4354 static int srcu_lockdep_next(const char *f, const char *fl, const char *fs, const char *fu, int i,
4355 int cyclelen, int deadlock)
4356 {
4357 int j = i + 1;
4358
4359 if (j >= cyclelen)
4360 j = deadlock ? 0 : -1;
4361 if (j >= 0)
4362 pr_info("%s: %s(%d), %s(%d), %s(%d)\n", f, fl, i, fs, j, fu, i);
4363 else
4364 pr_info("%s: %s(%d), %s(%d)\n", f, fl, i, fu, i);
4365 return j;
4366 }
4367
4368 // Test lockdep on SRCU-based deadlock scenarios.
rcu_torture_init_srcu_lockdep(void)4369 static void rcu_torture_init_srcu_lockdep(void)
4370 {
4371 int cyclelen;
4372 int deadlock;
4373 bool err = false;
4374 int i;
4375 int j;
4376 int idx;
4377 struct mutex *muts[] = { &mut0, &mut1, &mut2, &mut3, &mut4,
4378 &mut5, &mut6, &mut7, &mut8, &mut9 };
4379 struct rw_semaphore *rwsems[] = { &rwsem0, &rwsem1, &rwsem2, &rwsem3, &rwsem4,
4380 &rwsem5, &rwsem6, &rwsem7, &rwsem8, &rwsem9 };
4381 struct srcu_struct *srcus[] = { &srcu0, &srcu1, &srcu2, &srcu3, &srcu4,
4382 &srcu5, &srcu6, &srcu7, &srcu8, &srcu9 };
4383 int testtype;
4384
4385 if (!test_srcu_lockdep)
4386 return;
4387
4388 deadlock = test_srcu_lockdep / 1000;
4389 testtype = (test_srcu_lockdep / 10) % 100;
4390 cyclelen = test_srcu_lockdep % 10;
4391 WARN_ON_ONCE(ARRAY_SIZE(muts) != ARRAY_SIZE(srcus));
4392 if (WARN_ONCE(deadlock != !!deadlock,
4393 "%s: test_srcu_lockdep=%d and deadlock digit %d must be zero or one.\n",
4394 __func__, test_srcu_lockdep, deadlock))
4395 err = true;
4396 if (WARN_ONCE(cyclelen <= 0,
4397 "%s: test_srcu_lockdep=%d and cycle-length digit %d must be greater than zero.\n",
4398 __func__, test_srcu_lockdep, cyclelen))
4399 err = true;
4400 if (err)
4401 goto err_out;
4402
4403 if (testtype == 0) {
4404 pr_info("%s: test_srcu_lockdep = %05d: SRCU %d-way %sdeadlock.\n",
4405 __func__, test_srcu_lockdep, cyclelen, deadlock ? "" : "non-");
4406 if (deadlock && cyclelen == 1)
4407 pr_info("%s: Expect hang.\n", __func__);
4408 for (i = 0; i < cyclelen; i++) {
4409 j = srcu_lockdep_next(__func__, "srcu_read_lock", "synchronize_srcu",
4410 "srcu_read_unlock", i, cyclelen, deadlock);
4411 idx = srcu_read_lock(srcus[i]);
4412 if (j >= 0)
4413 synchronize_srcu(srcus[j]);
4414 srcu_read_unlock(srcus[i], idx);
4415 }
4416 return;
4417 }
4418
4419 if (testtype == 1) {
4420 pr_info("%s: test_srcu_lockdep = %05d: SRCU/mutex %d-way %sdeadlock.\n",
4421 __func__, test_srcu_lockdep, cyclelen, deadlock ? "" : "non-");
4422 for (i = 0; i < cyclelen; i++) {
4423 pr_info("%s: srcu_read_lock(%d), mutex_lock(%d), mutex_unlock(%d), srcu_read_unlock(%d)\n",
4424 __func__, i, i, i, i);
4425 idx = srcu_read_lock(srcus[i]);
4426 mutex_lock(muts[i]);
4427 mutex_unlock(muts[i]);
4428 srcu_read_unlock(srcus[i], idx);
4429
4430 j = srcu_lockdep_next(__func__, "mutex_lock", "synchronize_srcu",
4431 "mutex_unlock", i, cyclelen, deadlock);
4432 mutex_lock(muts[i]);
4433 if (j >= 0)
4434 synchronize_srcu(srcus[j]);
4435 mutex_unlock(muts[i]);
4436 }
4437 return;
4438 }
4439
4440 if (testtype == 2) {
4441 pr_info("%s: test_srcu_lockdep = %05d: SRCU/rwsem %d-way %sdeadlock.\n",
4442 __func__, test_srcu_lockdep, cyclelen, deadlock ? "" : "non-");
4443 for (i = 0; i < cyclelen; i++) {
4444 pr_info("%s: srcu_read_lock(%d), down_read(%d), up_read(%d), srcu_read_unlock(%d)\n",
4445 __func__, i, i, i, i);
4446 idx = srcu_read_lock(srcus[i]);
4447 down_read(rwsems[i]);
4448 up_read(rwsems[i]);
4449 srcu_read_unlock(srcus[i], idx);
4450
4451 j = srcu_lockdep_next(__func__, "down_write", "synchronize_srcu",
4452 "up_write", i, cyclelen, deadlock);
4453 down_write(rwsems[i]);
4454 if (j >= 0)
4455 synchronize_srcu(srcus[j]);
4456 up_write(rwsems[i]);
4457 }
4458 return;
4459 }
4460
4461 #ifdef CONFIG_TASKS_TRACE_RCU
4462 if (testtype == 3) {
4463 pr_info("%s: test_srcu_lockdep = %05d: SRCU and Tasks Trace RCU %d-way %sdeadlock.\n",
4464 __func__, test_srcu_lockdep, cyclelen, deadlock ? "" : "non-");
4465 if (deadlock && cyclelen == 1)
4466 pr_info("%s: Expect hang.\n", __func__);
4467 for (i = 0; i < cyclelen; i++) {
4468 char *fl = i == 0 ? "rcu_read_lock_trace" : "srcu_read_lock";
4469 char *fs = i == cyclelen - 1 ? "synchronize_rcu_tasks_trace"
4470 : "synchronize_srcu";
4471 char *fu = i == 0 ? "rcu_read_unlock_trace" : "srcu_read_unlock";
4472
4473 j = srcu_lockdep_next(__func__, fl, fs, fu, i, cyclelen, deadlock);
4474 if (i == 0)
4475 rcu_read_lock_trace();
4476 else
4477 idx = srcu_read_lock(srcus[i]);
4478 if (j >= 0) {
4479 if (i == cyclelen - 1)
4480 synchronize_rcu_tasks_trace();
4481 else
4482 synchronize_srcu(srcus[j]);
4483 }
4484 if (i == 0)
4485 rcu_read_unlock_trace();
4486 else
4487 srcu_read_unlock(srcus[i], idx);
4488 }
4489 return;
4490 }
4491 #endif // #ifdef CONFIG_TASKS_TRACE_RCU
4492
4493 err_out:
4494 pr_info("%s: test_srcu_lockdep = %05d does nothing.\n", __func__, test_srcu_lockdep);
4495 pr_info("%s: test_srcu_lockdep = DNNL.\n", __func__);
4496 pr_info("%s: D: Deadlock if nonzero.\n", __func__);
4497 pr_info("%s: NN: Test number, 0=SRCU, 1=SRCU/mutex, 2=SRCU/rwsem, 3=SRCU/Tasks Trace RCU.\n", __func__);
4498 pr_info("%s: L: Cycle length.\n", __func__);
4499 if (!IS_ENABLED(CONFIG_TASKS_TRACE_RCU))
4500 pr_info("%s: NN=3 disallowed because kernel is built with CONFIG_TASKS_TRACE_RCU=n\n", __func__);
4501 }
4502
4503 static int __init
rcu_torture_init(void)4504 rcu_torture_init(void)
4505 {
4506 long i;
4507 int cpu;
4508 int firsterr = 0;
4509 int flags = 0;
4510 unsigned long gp_seq = 0;
4511 static struct rcu_torture_ops *torture_ops[] = {
4512 &rcu_ops, &rcu_busted_ops, &srcu_ops, &srcud_ops, &busted_srcud_ops,
4513 TASKS_OPS TASKS_RUDE_OPS TASKS_TRACING_OPS
4514 &trivial_ops, TRIVIAL_PREEMPT_OPS
4515 };
4516
4517 if (!torture_init_begin(torture_type, verbose))
4518 return -EBUSY;
4519
4520 /* Process args and tell the world that the torturer is on the job. */
4521 for (i = 0; i < ARRAY_SIZE(torture_ops); i++) {
4522 cur_ops = torture_ops[i];
4523 if (strcmp(torture_type, cur_ops->name) == 0)
4524 break;
4525 }
4526 if (i == ARRAY_SIZE(torture_ops)) {
4527 pr_alert("rcu-torture: invalid torture type: \"%s\"\n",
4528 torture_type);
4529 pr_alert("rcu-torture types:");
4530 for (i = 0; i < ARRAY_SIZE(torture_ops); i++)
4531 pr_cont(" %s", torture_ops[i]->name);
4532 pr_cont("\n");
4533 firsterr = -EINVAL;
4534 cur_ops = NULL;
4535 goto unwind;
4536 }
4537 if (cur_ops->fqs == NULL && fqs_duration != 0) {
4538 pr_alert("rcu-torture: ->fqs NULL and non-zero fqs_duration, fqs disabled.\n");
4539 fqs_duration = 0;
4540 }
4541 if (nocbs_nthreads != 0 && (cur_ops != &rcu_ops ||
4542 !IS_ENABLED(CONFIG_RCU_NOCB_CPU))) {
4543 pr_alert("rcu-torture types: %s and CONFIG_RCU_NOCB_CPU=%d, nocb toggle disabled.\n",
4544 cur_ops->name, IS_ENABLED(CONFIG_RCU_NOCB_CPU));
4545 nocbs_nthreads = 0;
4546 }
4547 if (cur_ops->init)
4548 cur_ops->init();
4549
4550 rcu_torture_init_srcu_lockdep();
4551
4552 if (nfakewriters >= 0) {
4553 nrealfakewriters = nfakewriters;
4554 } else {
4555 nrealfakewriters = num_online_cpus() - 2 - nfakewriters;
4556 if (nrealfakewriters <= 0)
4557 nrealfakewriters = 1;
4558 }
4559
4560 if (nreaders >= 0) {
4561 nrealreaders = nreaders;
4562 } else {
4563 nrealreaders = num_online_cpus() - 2 - nreaders;
4564 if (nrealreaders <= 0)
4565 nrealreaders = 1;
4566 }
4567 rcu_torture_print_module_parms(cur_ops, "Start of test");
4568 if (cur_ops->get_gp_data)
4569 cur_ops->get_gp_data(&flags, &gp_seq);
4570 start_gp_seq = gp_seq;
4571 pr_alert("%s: Start-test grace-period state: g%ld f%#x\n",
4572 cur_ops->name, (long)gp_seq, flags);
4573
4574 /* Set up the freelist. */
4575
4576 INIT_LIST_HEAD(&rcu_torture_freelist);
4577 for (i = 0; i < ARRAY_SIZE(rcu_tortures); i++) {
4578 rcu_tortures[i].rtort_mbtest = 0;
4579 list_add_tail(&rcu_tortures[i].rtort_free,
4580 &rcu_torture_freelist);
4581 }
4582
4583 /* Initialize the statistics so that each run gets its own numbers. */
4584
4585 rcu_torture_current = NULL;
4586 rcu_torture_current_version = 0;
4587 atomic_set(&n_rcu_torture_alloc, 0);
4588 atomic_set(&n_rcu_torture_alloc_fail, 0);
4589 atomic_set(&n_rcu_torture_free, 0);
4590 atomic_set(&n_rcu_torture_mberror, 0);
4591 atomic_set(&n_rcu_torture_mbchk_fail, 0);
4592 atomic_set(&n_rcu_torture_mbchk_tries, 0);
4593 atomic_set(&n_rcu_torture_error, 0);
4594 n_rcu_torture_barrier_error = 0;
4595 n_rcu_torture_boost_ktrerror = 0;
4596 n_rcu_torture_boost_failure = 0;
4597 n_rcu_torture_boosts = 0;
4598 for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++)
4599 atomic_set(&rcu_torture_wcount[i], 0);
4600 for_each_possible_cpu(cpu) {
4601 for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) {
4602 per_cpu(rcu_torture_count, cpu)[i] = 0;
4603 per_cpu(rcu_torture_batch, cpu)[i] = 0;
4604 }
4605 }
4606 err_segs_recorded = 0;
4607 rt_read_nsegs = 0;
4608
4609 /* Start up the kthreads. */
4610
4611 rcu_torture_write_types();
4612 if (nrealfakewriters > 0) {
4613 fakewriter_tasks = kzalloc_objs(fakewriter_tasks[0],
4614 nrealfakewriters);
4615 if (fakewriter_tasks == NULL) {
4616 TOROUT_ERRSTRING("out of memory");
4617 firsterr = -ENOMEM;
4618 goto unwind;
4619 }
4620 }
4621 for (i = 0; i < nrealfakewriters; i++) {
4622 firsterr = torture_create_kthread(rcu_torture_fakewriter,
4623 NULL, fakewriter_tasks[i]);
4624 if (torture_init_error(firsterr))
4625 goto unwind;
4626 }
4627 reader_tasks = kzalloc_objs(reader_tasks[0], nrealreaders);
4628 rcu_torture_reader_mbchk = kzalloc_objs(*rcu_torture_reader_mbchk,
4629 nrealreaders);
4630 if (!reader_tasks || !rcu_torture_reader_mbchk) {
4631 TOROUT_ERRSTRING("out of memory");
4632 firsterr = -ENOMEM;
4633 goto unwind;
4634 }
4635 for (i = 0; i < nrealreaders; i++) {
4636 rcu_torture_reader_mbchk[i].rtc_chkrdr = -1;
4637 firsterr = torture_create_kthread(rcu_torture_reader, (void *)i,
4638 reader_tasks[i]);
4639 if (torture_init_error(firsterr))
4640 goto unwind;
4641 }
4642
4643 firsterr = torture_create_kthread(rcu_torture_writer, NULL,
4644 writer_task);
4645 if (torture_init_error(firsterr))
4646 goto unwind;
4647
4648 firsterr = rcu_torture_updown_init();
4649 if (torture_init_error(firsterr))
4650 goto unwind;
4651 nrealnocbers = nocbs_nthreads;
4652 if (WARN_ON(nrealnocbers < 0))
4653 nrealnocbers = 1;
4654 if (WARN_ON(nocbs_toggle < 0))
4655 nocbs_toggle = HZ;
4656 if (nrealnocbers > 0) {
4657 nocb_tasks = kzalloc_objs(nocb_tasks[0], nrealnocbers);
4658 if (nocb_tasks == NULL) {
4659 TOROUT_ERRSTRING("out of memory");
4660 firsterr = -ENOMEM;
4661 goto unwind;
4662 }
4663 } else {
4664 nocb_tasks = NULL;
4665 }
4666 for (i = 0; i < nrealnocbers; i++) {
4667 firsterr = torture_create_kthread(rcu_nocb_toggle, NULL, nocb_tasks[i]);
4668 if (torture_init_error(firsterr))
4669 goto unwind;
4670 }
4671 if (stat_interval > 0) {
4672 firsterr = torture_create_kthread(rcu_torture_stats, NULL,
4673 stats_task);
4674 if (torture_init_error(firsterr))
4675 goto unwind;
4676 }
4677 if (test_no_idle_hz && shuffle_interval > 0) {
4678 firsterr = torture_shuffle_init(shuffle_interval * HZ);
4679 if (torture_init_error(firsterr))
4680 goto unwind;
4681 }
4682 if (stutter < 0)
4683 stutter = 0;
4684 if (stutter) {
4685 int t;
4686
4687 t = cur_ops->stall_dur ? cur_ops->stall_dur() : stutter * HZ;
4688 firsterr = torture_stutter_init(stutter * HZ, t);
4689 if (torture_init_error(firsterr))
4690 goto unwind;
4691 }
4692 if (fqs_duration < 0)
4693 fqs_duration = 0;
4694 if (fqs_holdoff < 0)
4695 fqs_holdoff = 0;
4696 if (fqs_duration && fqs_holdoff) {
4697 /* Create the fqs thread */
4698 firsterr = torture_create_kthread(rcu_torture_fqs, NULL,
4699 fqs_task);
4700 if (torture_init_error(firsterr))
4701 goto unwind;
4702 }
4703 if (test_boost_interval < 1)
4704 test_boost_interval = 1;
4705 if (test_boost_duration < 2)
4706 test_boost_duration = 2;
4707 if (rcu_torture_can_boost()) {
4708
4709 boost_starttime = jiffies + test_boost_interval * HZ;
4710
4711 firsterr = cpuhp_setup_state(CPUHP_AP_ONLINE_DYN, "RCU_TORTURE",
4712 rcutorture_booster_init,
4713 rcutorture_booster_cleanup);
4714 rcutor_hp = firsterr;
4715 if (torture_init_error(firsterr))
4716 goto unwind;
4717 }
4718 shutdown_jiffies = jiffies + shutdown_secs * HZ;
4719 firsterr = torture_shutdown_init(shutdown_secs, rcu_torture_cleanup);
4720 if (torture_init_error(firsterr))
4721 goto unwind;
4722 firsterr = torture_onoff_init(onoff_holdoff * HZ, onoff_interval,
4723 rcutorture_sync);
4724 if (torture_init_error(firsterr))
4725 goto unwind;
4726 firsterr = rcu_torture_stall_init();
4727 if (torture_init_error(firsterr))
4728 goto unwind;
4729 firsterr = rcu_torture_fwd_prog_init();
4730 if (torture_init_error(firsterr))
4731 goto unwind;
4732 firsterr = rcu_torture_barrier_init();
4733 if (torture_init_error(firsterr))
4734 goto unwind;
4735 firsterr = rcu_torture_read_exit_init();
4736 if (torture_init_error(firsterr))
4737 goto unwind;
4738 if (preempt_duration > 0) {
4739 firsterr = torture_create_kthread(rcu_torture_preempt, NULL, preempt_task);
4740 if (torture_init_error(firsterr))
4741 goto unwind;
4742 }
4743 if (object_debug)
4744 rcu_test_debug_objects();
4745
4746 if (cur_ops->gp_slow_register && !WARN_ON_ONCE(!cur_ops->gp_slow_unregister))
4747 cur_ops->gp_slow_register(&rcu_fwd_cb_nodelay);
4748
4749 if (gpwrap_lag && cur_ops->set_gpwrap_lag) {
4750 firsterr = rcu_gpwrap_lag_init();
4751 if (torture_init_error(firsterr))
4752 goto unwind;
4753 }
4754
4755 torture_init_end();
4756 return 0;
4757
4758 unwind:
4759 torture_init_end();
4760 rcu_torture_cleanup();
4761 if (shutdown_secs) {
4762 WARN_ON(!IS_MODULE(CONFIG_RCU_TORTURE_TEST));
4763 kernel_power_off();
4764 }
4765 return firsterr;
4766 }
4767
4768 module_init(rcu_torture_init);
4769 module_exit(rcu_torture_cleanup);
4770