rcutorture.c 48.4 KB
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/*
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 * Read-Copy Update module-based torture test facility
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 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2 of the License, or
 * (at your option) any later version.
 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License
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 * along with this program; if not, you can access it online at
 * http://www.gnu.org/licenses/gpl-2.0.html.
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 *
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 * Copyright (C) IBM Corporation, 2005, 2006
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 *
 * Authors: Paul E. McKenney <paulmck@us.ibm.com>
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 *	  Josh Triplett <josh@freedesktop.org>
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 *
 * See also:  Documentation/RCU/torture.txt
 */
#include <linux/types.h>
#include <linux/kernel.h>
#include <linux/init.h>
#include <linux/module.h>
#include <linux/kthread.h>
#include <linux/err.h>
#include <linux/spinlock.h>
#include <linux/smp.h>
#include <linux/rcupdate.h>
#include <linux/interrupt.h>
#include <linux/sched.h>
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#include <linux/atomic.h>
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#include <linux/bitops.h>
#include <linux/completion.h>
#include <linux/moduleparam.h>
#include <linux/percpu.h>
#include <linux/notifier.h>
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#include <linux/reboot.h>
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#include <linux/freezer.h>
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#include <linux/cpu.h>
#include <linux/delay.h>
#include <linux/stat.h>
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#include <linux/srcu.h>
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#include <linux/slab.h>
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#include <linux/trace_clock.h>
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#include <asm/byteorder.h>
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#include <linux/torture.h>
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MODULE_LICENSE("GPL");
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MODULE_AUTHOR("Paul E. McKenney <paulmck@us.ibm.com> and Josh Triplett <josh@freedesktop.org>");
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torture_param(int, fqs_duration, 0,
	      "Duration of fqs bursts (us), 0 to disable");
torture_param(int, fqs_holdoff, 0, "Holdoff time within fqs bursts (us)");
torture_param(int, fqs_stutter, 3, "Wait time between fqs bursts (s)");
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torture_param(bool, gp_cond, false, "Use conditional/async GP wait primitives");
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torture_param(bool, gp_exp, false, "Use expedited GP wait primitives");
torture_param(bool, gp_normal, false,
	     "Use normal (non-expedited) GP wait primitives");
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torture_param(bool, gp_sync, false, "Use synchronous GP wait primitives");
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torture_param(int, irqreader, 1, "Allow RCU readers from irq handlers");
torture_param(int, n_barrier_cbs, 0,
	     "# of callbacks/kthreads for barrier testing");
torture_param(int, nfakewriters, 4, "Number of RCU fake writer threads");
torture_param(int, nreaders, -1, "Number of RCU reader threads");
torture_param(int, object_debug, 0,
	     "Enable debug-object double call_rcu() testing");
torture_param(int, onoff_holdoff, 0, "Time after boot before CPU hotplugs (s)");
torture_param(int, onoff_interval, 0,
	     "Time between CPU hotplugs (s), 0=disable");
torture_param(int, shuffle_interval, 3, "Number of seconds between shuffles");
torture_param(int, shutdown_secs, 0, "Shutdown time (s), <= zero to disable.");
torture_param(int, stall_cpu, 0, "Stall duration (s), zero to disable.");
torture_param(int, stall_cpu_holdoff, 10,
	     "Time to wait before starting stall (s).");
torture_param(int, stat_interval, 60,
	     "Number of seconds between stats printk()s");
torture_param(int, stutter, 5, "Number of seconds to run/halt test");
torture_param(int, test_boost, 1, "Test RCU prio boost: 0=no, 1=maybe, 2=yes.");
torture_param(int, test_boost_duration, 4,
	     "Duration of each boost test, seconds.");
torture_param(int, test_boost_interval, 7,
	     "Interval between boost tests, seconds.");
torture_param(bool, test_no_idle_hz, true,
	     "Test support for tickless idle CPUs");
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torture_param(bool, verbose, true,
	     "Enable verbose debugging printk()s");
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static char *torture_type = "rcu";
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module_param(torture_type, charp, 0444);
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MODULE_PARM_DESC(torture_type, "Type of RCU to torture (rcu, rcu_bh, ...)");
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static int nrealreaders;
static struct task_struct *writer_task;
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static struct task_struct **fakewriter_tasks;
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static struct task_struct **reader_tasks;
static struct task_struct *stats_task;
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static struct task_struct *fqs_task;
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static struct task_struct *boost_tasks[NR_CPUS];
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static struct task_struct *stall_task;
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static struct task_struct **barrier_cbs_tasks;
static struct task_struct *barrier_task;
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#define RCU_TORTURE_PIPE_LEN 10

struct rcu_torture {
	struct rcu_head rtort_rcu;
	int rtort_pipe_count;
	struct list_head rtort_free;
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	int rtort_mbtest;
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};

static LIST_HEAD(rcu_torture_freelist);
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static struct rcu_torture __rcu *rcu_torture_current;
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static unsigned long rcu_torture_current_version;
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static struct rcu_torture rcu_tortures[10 * RCU_TORTURE_PIPE_LEN];
static DEFINE_SPINLOCK(rcu_torture_lock);
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static DEFINE_PER_CPU(long [RCU_TORTURE_PIPE_LEN + 1],
		      rcu_torture_count) = { 0 };
static DEFINE_PER_CPU(long [RCU_TORTURE_PIPE_LEN + 1],
		      rcu_torture_batch) = { 0 };
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static atomic_t rcu_torture_wcount[RCU_TORTURE_PIPE_LEN + 1];
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static atomic_t n_rcu_torture_alloc;
static atomic_t n_rcu_torture_alloc_fail;
static atomic_t n_rcu_torture_free;
static atomic_t n_rcu_torture_mberror;
static atomic_t n_rcu_torture_error;
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static long n_rcu_torture_barrier_error;
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static long n_rcu_torture_boost_ktrerror;
static long n_rcu_torture_boost_rterror;
static long n_rcu_torture_boost_failure;
static long n_rcu_torture_boosts;
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static long n_rcu_torture_timers;
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static long n_barrier_attempts;
static long n_barrier_successes;
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static struct list_head rcu_torture_removed;
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static int rcu_torture_writer_state;
#define RTWS_FIXED_DELAY	0
#define RTWS_DELAY		1
#define RTWS_REPLACE		2
#define RTWS_DEF_FREE		3
#define RTWS_EXP_SYNC		4
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#define RTWS_COND_GET		5
#define RTWS_COND_SYNC		6
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#define RTWS_SYNC		7
#define RTWS_STUTTER		8
#define RTWS_STOPPING		9
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#if defined(MODULE) || defined(CONFIG_RCU_TORTURE_TEST_RUNNABLE)
#define RCUTORTURE_RUNNABLE_INIT 1
#else
#define RCUTORTURE_RUNNABLE_INIT 0
#endif
int rcutorture_runnable = RCUTORTURE_RUNNABLE_INIT;
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module_param(rcutorture_runnable, int, 0444);
MODULE_PARM_DESC(rcutorture_runnable, "Start rcutorture at boot");
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#if defined(CONFIG_RCU_BOOST) && !defined(CONFIG_HOTPLUG_CPU)
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#define rcu_can_boost() 1
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#else /* #if defined(CONFIG_RCU_BOOST) && !defined(CONFIG_HOTPLUG_CPU) */
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#define rcu_can_boost() 0
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#endif /* #else #if defined(CONFIG_RCU_BOOST) && !defined(CONFIG_HOTPLUG_CPU) */
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#ifdef CONFIG_RCU_TRACE
static u64 notrace rcu_trace_clock_local(void)
{
	u64 ts = trace_clock_local();
	unsigned long __maybe_unused ts_rem = do_div(ts, NSEC_PER_USEC);
	return ts;
}
#else /* #ifdef CONFIG_RCU_TRACE */
static u64 notrace rcu_trace_clock_local(void)
{
	return 0ULL;
}
#endif /* #else #ifdef CONFIG_RCU_TRACE */

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static unsigned long boost_starttime;	/* jiffies of next boost test start. */
DEFINE_MUTEX(boost_mutex);		/* protect setting boost_starttime */
					/*  and boost task create/destroy. */
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static atomic_t barrier_cbs_count;	/* Barrier callbacks registered. */
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static bool barrier_phase;		/* Test phase. */
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static atomic_t barrier_cbs_invoked;	/* Barrier callbacks invoked. */
static wait_queue_head_t *barrier_cbs_wq; /* Coordinate barrier testing. */
static DECLARE_WAIT_QUEUE_HEAD(barrier_wq);
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/*
 * Allocate an element from the rcu_tortures pool.
 */
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static struct rcu_torture *
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rcu_torture_alloc(void)
{
	struct list_head *p;

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	spin_lock_bh(&rcu_torture_lock);
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	if (list_empty(&rcu_torture_freelist)) {
		atomic_inc(&n_rcu_torture_alloc_fail);
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		spin_unlock_bh(&rcu_torture_lock);
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		return NULL;
	}
	atomic_inc(&n_rcu_torture_alloc);
	p = rcu_torture_freelist.next;
	list_del_init(p);
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	spin_unlock_bh(&rcu_torture_lock);
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	return container_of(p, struct rcu_torture, rtort_free);
}

/*
 * Free an element to the rcu_tortures pool.
 */
static void
rcu_torture_free(struct rcu_torture *p)
{
	atomic_inc(&n_rcu_torture_free);
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	spin_lock_bh(&rcu_torture_lock);
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	list_add_tail(&p->rtort_free, &rcu_torture_freelist);
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	spin_unlock_bh(&rcu_torture_lock);
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}

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/*
 * Operations vector for selecting different types of tests.
 */

struct rcu_torture_ops {
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	int ttype;
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	void (*init)(void);
	int (*readlock)(void);
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	void (*read_delay)(struct torture_random_state *rrsp);
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	void (*readunlock)(int idx);
	int (*completed)(void);
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	void (*deferred_free)(struct rcu_torture *p);
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	void (*sync)(void);
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	void (*exp_sync)(void);
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	unsigned long (*get_state)(void);
	void (*cond_sync)(unsigned long oldstate);
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	void (*call)(struct rcu_head *head, void (*func)(struct rcu_head *rcu));
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	void (*cb_barrier)(void);
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	void (*fqs)(void);
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	void (*stats)(char *page);
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	int irq_capable;
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	int can_boost;
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	const char *name;
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};
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static struct rcu_torture_ops *cur_ops;
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/*
 * Definitions for rcu torture testing.
 */

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static int rcu_torture_read_lock(void) __acquires(RCU)
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{
	rcu_read_lock();
	return 0;
}

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static void rcu_read_delay(struct torture_random_state *rrsp)
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{
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	const unsigned long shortdelay_us = 200;
	const unsigned long longdelay_ms = 50;
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	/* We want a short delay sometimes to make a reader delay the grace
	 * period, and we want a long delay occasionally to trigger
	 * force_quiescent_state. */
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	if (!(torture_random(rrsp) % (nrealreaders * 2000 * longdelay_ms)))
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		mdelay(longdelay_ms);
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	if (!(torture_random(rrsp) % (nrealreaders * 2 * shortdelay_us)))
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		udelay(shortdelay_us);
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#ifdef CONFIG_PREEMPT
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	if (!preempt_count() &&
	    !(torture_random(rrsp) % (nrealreaders * 20000)))
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		preempt_schedule();  /* No QS if preempt_disable() in effect */
#endif
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}

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static void rcu_torture_read_unlock(int idx) __releases(RCU)
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{
	rcu_read_unlock();
}

static int rcu_torture_completed(void)
{
	return rcu_batches_completed();
}

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/*
 * Update callback in the pipe.  This should be invoked after a grace period.
 */
static bool
rcu_torture_pipe_update_one(struct rcu_torture *rp)
{
	int i;

	i = rp->rtort_pipe_count;
	if (i > RCU_TORTURE_PIPE_LEN)
		i = RCU_TORTURE_PIPE_LEN;
	atomic_inc(&rcu_torture_wcount[i]);
	if (++rp->rtort_pipe_count >= RCU_TORTURE_PIPE_LEN) {
		rp->rtort_mbtest = 0;
		return true;
	}
	return false;
}

/*
 * Update all callbacks in the pipe.  Suitable for synchronous grace-period
 * primitives.
 */
static void
rcu_torture_pipe_update(struct rcu_torture *old_rp)
{
	struct rcu_torture *rp;
	struct rcu_torture *rp1;

	if (old_rp)
		list_add(&old_rp->rtort_free, &rcu_torture_removed);
	list_for_each_entry_safe(rp, rp1, &rcu_torture_removed, rtort_free) {
		if (rcu_torture_pipe_update_one(rp)) {
			list_del(&rp->rtort_free);
			rcu_torture_free(rp);
		}
	}
}

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static void
rcu_torture_cb(struct rcu_head *p)
{
	struct rcu_torture *rp = container_of(p, struct rcu_torture, rtort_rcu);

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	if (torture_must_stop_irq()) {
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		/* Test is ending, just drop callbacks on the floor. */
		/* The next initialization will pick up the pieces. */
		return;
	}
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	if (rcu_torture_pipe_update_one(rp))
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		rcu_torture_free(rp);
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	else
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		cur_ops->deferred_free(rp);
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}

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static int rcu_no_completed(void)
{
	return 0;
}

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static void rcu_torture_deferred_free(struct rcu_torture *p)
{
	call_rcu(&p->rtort_rcu, rcu_torture_cb);
}

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static void rcu_sync_torture_init(void)
{
	INIT_LIST_HEAD(&rcu_torture_removed);
}

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static struct rcu_torture_ops rcu_ops = {
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	.ttype		= RCU_FLAVOR,
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	.init		= rcu_sync_torture_init,
	.readlock	= rcu_torture_read_lock,
	.read_delay	= rcu_read_delay,
	.readunlock	= rcu_torture_read_unlock,
	.completed	= rcu_torture_completed,
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	.deferred_free	= rcu_torture_deferred_free,
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	.sync		= synchronize_rcu,
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	.exp_sync	= synchronize_rcu_expedited,
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	.get_state	= get_state_synchronize_rcu,
	.cond_sync	= cond_synchronize_rcu,
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	.call		= call_rcu,
	.cb_barrier	= rcu_barrier,
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	.fqs		= rcu_force_quiescent_state,
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	.stats		= NULL,
	.irq_capable	= 1,
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	.can_boost	= rcu_can_boost(),
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	.name		= "rcu"
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};

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/*
 * Definitions for rcu_bh torture testing.
 */

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static int rcu_bh_torture_read_lock(void) __acquires(RCU_BH)
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{
	rcu_read_lock_bh();
	return 0;
}

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static void rcu_bh_torture_read_unlock(int idx) __releases(RCU_BH)
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{
	rcu_read_unlock_bh();
}

static int rcu_bh_torture_completed(void)
{
	return rcu_batches_completed_bh();
}

static void rcu_bh_torture_deferred_free(struct rcu_torture *p)
{
	call_rcu_bh(&p->rtort_rcu, rcu_torture_cb);
}

static struct rcu_torture_ops rcu_bh_ops = {
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	.ttype		= RCU_BH_FLAVOR,
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	.init		= rcu_sync_torture_init,
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	.readlock	= rcu_bh_torture_read_lock,
	.read_delay	= rcu_read_delay,  /* just reuse rcu's version. */
	.readunlock	= rcu_bh_torture_read_unlock,
	.completed	= rcu_bh_torture_completed,
	.deferred_free	= rcu_bh_torture_deferred_free,
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	.sync		= synchronize_rcu_bh,
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	.exp_sync	= synchronize_rcu_bh_expedited,
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	.call		= call_rcu_bh,
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	.cb_barrier	= rcu_barrier_bh,
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	.fqs		= rcu_bh_force_quiescent_state,
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	.stats		= NULL,
	.irq_capable	= 1,
	.name		= "rcu_bh"
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};

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/*
 * Don't even think about trying any of these in real life!!!
 * The names includes "busted", and they really means it!
 * The only purpose of these functions is to provide a buggy RCU
 * implementation to make sure that rcutorture correctly emits
 * buggy-RCU error messages.
 */
static void rcu_busted_torture_deferred_free(struct rcu_torture *p)
{
	/* This is a deliberate bug for testing purposes only! */
	rcu_torture_cb(&p->rtort_rcu);
}

static void synchronize_rcu_busted(void)
{
	/* This is a deliberate bug for testing purposes only! */
}

static void
call_rcu_busted(struct rcu_head *head, void (*func)(struct rcu_head *rcu))
{
	/* This is a deliberate bug for testing purposes only! */
	func(head);
}

static struct rcu_torture_ops rcu_busted_ops = {
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	.ttype		= INVALID_RCU_FLAVOR,
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	.init		= rcu_sync_torture_init,
	.readlock	= rcu_torture_read_lock,
	.read_delay	= rcu_read_delay,  /* just reuse rcu's version. */
	.readunlock	= rcu_torture_read_unlock,
	.completed	= rcu_no_completed,
	.deferred_free	= rcu_busted_torture_deferred_free,
	.sync		= synchronize_rcu_busted,
	.exp_sync	= synchronize_rcu_busted,
	.call		= call_rcu_busted,
	.cb_barrier	= NULL,
	.fqs		= NULL,
	.stats		= NULL,
	.irq_capable	= 1,
	.name		= "rcu_busted"
};

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/*
 * Definitions for srcu torture testing.
 */

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DEFINE_STATIC_SRCU(srcu_ctl);
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static int srcu_torture_read_lock(void) __acquires(&srcu_ctl)
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{
	return srcu_read_lock(&srcu_ctl);
}

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static void srcu_read_delay(struct torture_random_state *rrsp)
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{
	long delay;
	const long uspertick = 1000000 / HZ;
	const long longdelay = 10;

	/* We want there to be long-running readers, but not all the time. */

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	delay = torture_random(rrsp) %
		(nrealreaders * 2 * longdelay * uspertick);
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	if (!delay)
		schedule_timeout_interruptible(longdelay);
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	else
		rcu_read_delay(rrsp);
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}

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static void srcu_torture_read_unlock(int idx) __releases(&srcu_ctl)
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{
	srcu_read_unlock(&srcu_ctl, idx);
}

static int srcu_torture_completed(void)
{
	return srcu_batches_completed(&srcu_ctl);
}

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static void srcu_torture_deferred_free(struct rcu_torture *rp)
{
	call_srcu(&srcu_ctl, &rp->rtort_rcu, rcu_torture_cb);
}

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static void srcu_torture_synchronize(void)
{
	synchronize_srcu(&srcu_ctl);
}

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static void srcu_torture_call(struct rcu_head *head,
			      void (*func)(struct rcu_head *head))
{
	call_srcu(&srcu_ctl, head, func);
}

static void srcu_torture_barrier(void)
{
	srcu_barrier(&srcu_ctl);
}

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static void srcu_torture_stats(char *page)
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{
	int cpu;
	int idx = srcu_ctl.completed & 0x1;

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	page += sprintf(page, "%s%s per-CPU(idx=%d):",
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		       torture_type, TORTURE_FLAG, idx);
	for_each_possible_cpu(cpu) {
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		long c0, c1;

		c0 = (long)per_cpu_ptr(srcu_ctl.per_cpu_ref, cpu)->c[!idx];
		c1 = (long)per_cpu_ptr(srcu_ctl.per_cpu_ref, cpu)->c[idx];
		page += sprintf(page, " %d(%ld,%ld)", cpu, c0, c1);
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	}
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	sprintf(page, "\n");
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}

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static void srcu_torture_synchronize_expedited(void)
{
	synchronize_srcu_expedited(&srcu_ctl);
}

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static struct rcu_torture_ops srcu_ops = {
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	.ttype		= SRCU_FLAVOR,
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	.init		= rcu_sync_torture_init,
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	.readlock	= srcu_torture_read_lock,
	.read_delay	= srcu_read_delay,
	.readunlock	= srcu_torture_read_unlock,
	.completed	= srcu_torture_completed,
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	.deferred_free	= srcu_torture_deferred_free,
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	.sync		= srcu_torture_synchronize,
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	.exp_sync	= srcu_torture_synchronize_expedited,
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	.call		= srcu_torture_call,
	.cb_barrier	= srcu_torture_barrier,
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	.stats		= srcu_torture_stats,
	.name		= "srcu"
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};

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/*
 * Definitions for sched torture testing.
 */

static int sched_torture_read_lock(void)
{
	preempt_disable();
	return 0;
}

static void sched_torture_read_unlock(int idx)
{
	preempt_enable();
}

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static void rcu_sched_torture_deferred_free(struct rcu_torture *p)
{
	call_rcu_sched(&p->rtort_rcu, rcu_torture_cb);
}

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static struct rcu_torture_ops sched_ops = {
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	.ttype		= RCU_SCHED_FLAVOR,
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	.init		= rcu_sync_torture_init,
	.readlock	= sched_torture_read_lock,
	.read_delay	= rcu_read_delay,  /* just reuse rcu's version. */
	.readunlock	= sched_torture_read_unlock,
592
	.completed	= rcu_no_completed,
593
	.deferred_free	= rcu_sched_torture_deferred_free,
594
	.sync		= synchronize_sched,
595 596
	.exp_sync	= synchronize_sched_expedited,
	.call		= call_rcu_sched,
597
	.cb_barrier	= rcu_barrier_sched,
598
	.fqs		= rcu_sched_force_quiescent_state,
599 600 601
	.stats		= NULL,
	.irq_capable	= 1,
	.name		= "sched"
602 603
};

604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632
/*
 * RCU torture priority-boost testing.  Runs one real-time thread per
 * CPU for moderate bursts, repeatedly registering RCU callbacks and
 * spinning waiting for them to be invoked.  If a given callback takes
 * too long to be invoked, we assume that priority inversion has occurred.
 */

struct rcu_boost_inflight {
	struct rcu_head rcu;
	int inflight;
};

static void rcu_torture_boost_cb(struct rcu_head *head)
{
	struct rcu_boost_inflight *rbip =
		container_of(head, struct rcu_boost_inflight, rcu);

	smp_mb(); /* Ensure RCU-core accesses precede clearing ->inflight */
	rbip->inflight = 0;
}

static int rcu_torture_boost(void *arg)
{
	unsigned long call_rcu_time;
	unsigned long endtime;
	unsigned long oldstarttime;
	struct rcu_boost_inflight rbi = { .inflight = 0 };
	struct sched_param sp;

633
	VERBOSE_TOROUT_STRING("rcu_torture_boost started");
634 635 636 637

	/* Set real-time priority. */
	sp.sched_priority = 1;
	if (sched_setscheduler(current, SCHED_FIFO, &sp) < 0) {
638
		VERBOSE_TOROUT_STRING("rcu_torture_boost RT prio failed!");
639 640 641
		n_rcu_torture_boost_rterror++;
	}

642
	init_rcu_head_on_stack(&rbi.rcu);
643 644 645 646
	/* Each pass through the following loop does one boost-test cycle. */
	do {
		/* Wait for the next test interval. */
		oldstarttime = boost_starttime;
647
		while (ULONG_CMP_LT(jiffies, oldstarttime)) {
648
			schedule_timeout_interruptible(oldstarttime - jiffies);
649
			stutter_wait("rcu_torture_boost");
650
			if (torture_must_stop())
651 652 653 654 655 656
				goto checkwait;
		}

		/* Do one boost-test interval. */
		endtime = oldstarttime + test_boost_duration * HZ;
		call_rcu_time = jiffies;
657
		while (ULONG_CMP_LT(jiffies, endtime)) {
658 659 660 661 662 663 664
			/* If we don't have a callback in flight, post one. */
			if (!rbi.inflight) {
				smp_mb(); /* RCU core before ->inflight = 1. */
				rbi.inflight = 1;
				call_rcu(&rbi.rcu, rcu_torture_boost_cb);
				if (jiffies - call_rcu_time >
					 test_boost_duration * HZ - HZ / 2) {
665
					VERBOSE_TOROUT_STRING("rcu_torture_boost boosting failed");
666 667 668 669 670
					n_rcu_torture_boost_failure++;
				}
				call_rcu_time = jiffies;
			}
			cond_resched();
671
			stutter_wait("rcu_torture_boost");
672
			if (torture_must_stop())
673 674 675 676 677 678 679 680 681 682
				goto checkwait;
		}

		/*
		 * Set the start time of the next test interval.
		 * Yes, this is vulnerable to long delays, but such
		 * delays simply cause a false negative for the next
		 * interval.  Besides, we are running at RT priority,
		 * so delays should be relatively rare.
		 */
683 684
		while (oldstarttime == boost_starttime &&
		       !kthread_should_stop()) {
685 686 687 688 689 690 691 692 693 694 695
			if (mutex_trylock(&boost_mutex)) {
				boost_starttime = jiffies +
						  test_boost_interval * HZ;
				n_rcu_torture_boosts++;
				mutex_unlock(&boost_mutex);
				break;
			}
			schedule_timeout_uninterruptible(1);
		}

		/* Go do the stutter. */
696
checkwait:	stutter_wait("rcu_torture_boost");
697
	} while (!torture_must_stop());
698 699

	/* Clean up and exit. */
700 701
	while (!kthread_should_stop() || rbi.inflight) {
		torture_shutdown_absorb("rcu_torture_boost");
702
		schedule_timeout_uninterruptible(1);
703
	}
704
	smp_mb(); /* order accesses to ->inflight before stack-frame death. */
705
	destroy_rcu_head_on_stack(&rbi.rcu);
706
	torture_kthread_stopping("rcu_torture_boost");
707 708 709
	return 0;
}

710 711 712 713 714 715 716 717 718 719 720
/*
 * RCU torture force-quiescent-state kthread.  Repeatedly induces
 * bursts of calls to force_quiescent_state(), increasing the probability
 * of occurrence of some important types of race conditions.
 */
static int
rcu_torture_fqs(void *arg)
{
	unsigned long fqs_resume_time;
	int fqs_burst_remaining;

721
	VERBOSE_TOROUT_STRING("rcu_torture_fqs task started");
722 723
	do {
		fqs_resume_time = jiffies + fqs_stutter * HZ;
724 725
		while (ULONG_CMP_LT(jiffies, fqs_resume_time) &&
		       !kthread_should_stop()) {
726 727 728
			schedule_timeout_interruptible(1);
		}
		fqs_burst_remaining = fqs_duration;
729 730
		while (fqs_burst_remaining > 0 &&
		       !kthread_should_stop()) {
731 732 733 734
			cur_ops->fqs();
			udelay(fqs_holdoff);
			fqs_burst_remaining -= fqs_holdoff;
		}
735
		stutter_wait("rcu_torture_fqs");
736
	} while (!torture_must_stop());
737
	torture_kthread_stopping("rcu_torture_fqs");
738 739 740
	return 0;
}

741 742 743 744 745 746 747 748
/*
 * RCU torture writer kthread.  Repeatedly substitutes a new structure
 * for that pointed to by rcu_torture_current, freeing the old structure
 * after a series of grace periods (the "pipeline").
 */
static int
rcu_torture_writer(void *arg)
{
749 750
	unsigned long gp_snap;
	bool gp_cond1 = gp_cond, gp_exp1 = gp_exp, gp_normal1 = gp_normal;
751
	bool gp_sync1 = gp_sync;
752 753 754
	int i;
	struct rcu_torture *rp;
	struct rcu_torture *old_rp;
755
	static DEFINE_TORTURE_RANDOM(rand);
756 757
	int synctype[] = { RTWS_DEF_FREE, RTWS_EXP_SYNC,
			   RTWS_COND_GET, RTWS_SYNC };
758
	int nsynctypes = 0;
759

760
	VERBOSE_TOROUT_STRING("rcu_torture_writer task started");
761
	set_user_nice(current, MAX_NICE);
762

763
	/* Initialize synctype[] array.  If none set, take default. */
764 765
	if (!gp_cond1 && !gp_exp1 && !gp_normal1 && !gp_sync)
		gp_cond1 = gp_exp1 = gp_normal1 = gp_sync1 = true;
766 767 768 769 770 771 772 773 774 775 776 777
	if (gp_cond1 && cur_ops->get_state && cur_ops->cond_sync)
		synctype[nsynctypes++] = RTWS_COND_GET;
	else if (gp_cond && (!cur_ops->get_state || !cur_ops->cond_sync))
		pr_alert("rcu_torture_writer: gp_cond without primitives.\n");
	if (gp_exp1 && cur_ops->exp_sync)
		synctype[nsynctypes++] = RTWS_EXP_SYNC;
	else if (gp_exp && !cur_ops->exp_sync)
		pr_alert("rcu_torture_writer: gp_exp without primitives.\n");
	if (gp_normal1 && cur_ops->deferred_free)
		synctype[nsynctypes++] = RTWS_DEF_FREE;
	else if (gp_normal && !cur_ops->deferred_free)
		pr_alert("rcu_torture_writer: gp_normal without primitives.\n");
778 779 780 781
	if (gp_sync1 && cur_ops->sync)
		synctype[nsynctypes++] = RTWS_SYNC;
	else if (gp_sync && !cur_ops->sync)
		pr_alert("rcu_torture_writer: gp_sync without primitives.\n");
782 783
	if (WARN_ONCE(nsynctypes == 0,
		      "rcu_torture_writer: No update-side primitives.\n")) {
784 785 786 787 788
		/*
		 * No updates primitives, so don't try updating.
		 * The resulting test won't be testing much, hence the
		 * above WARN_ONCE().
		 */
789 790 791 792
		rcu_torture_writer_state = RTWS_STOPPING;
		torture_kthread_stopping("rcu_torture_writer");
	}

793
	do {
794
		rcu_torture_writer_state = RTWS_FIXED_DELAY;
795
		schedule_timeout_uninterruptible(1);
796 797
		rp = rcu_torture_alloc();
		if (rp == NULL)
798 799
			continue;
		rp->rtort_pipe_count = 0;
800
		rcu_torture_writer_state = RTWS_DELAY;
801
		udelay(torture_random(&rand) & 0x3ff);
802
		rcu_torture_writer_state = RTWS_REPLACE;
803 804
		old_rp = rcu_dereference_check(rcu_torture_current,
					       current == writer_task);
805
		rp->rtort_mbtest = 1;
806
		rcu_assign_pointer(rcu_torture_current, rp);
807
		smp_wmb(); /* Mods to old_rp must follow rcu_assign_pointer() */
808
		if (old_rp) {
809 810 811 812 813
			i = old_rp->rtort_pipe_count;
			if (i > RCU_TORTURE_PIPE_LEN)
				i = RCU_TORTURE_PIPE_LEN;
			atomic_inc(&rcu_torture_wcount[i]);
			old_rp->rtort_pipe_count++;
814 815
			switch (synctype[torture_random(&rand) % nsynctypes]) {
			case RTWS_DEF_FREE:
816
				rcu_torture_writer_state = RTWS_DEF_FREE;
817
				cur_ops->deferred_free(old_rp);
818 819
				break;
			case RTWS_EXP_SYNC:
820
				rcu_torture_writer_state = RTWS_EXP_SYNC;
821
				cur_ops->exp_sync();
822 823 824 825 826 827 828 829 830 831 832 833 834
				rcu_torture_pipe_update(old_rp);
				break;
			case RTWS_COND_GET:
				rcu_torture_writer_state = RTWS_COND_GET;
				gp_snap = cur_ops->get_state();
				i = torture_random(&rand) % 16;
				if (i != 0)
					schedule_timeout_interruptible(i);
				udelay(torture_random(&rand) % 1000);
				rcu_torture_writer_state = RTWS_COND_SYNC;
				cur_ops->cond_sync(gp_snap);
				rcu_torture_pipe_update(old_rp);
				break;
835 836 837 838 839
			case RTWS_SYNC:
				rcu_torture_writer_state = RTWS_SYNC;
				cur_ops->sync();
				rcu_torture_pipe_update(old_rp);
				break;
840 841 842
			default:
				WARN_ON_ONCE(1);
				break;
843
			}
844
		}
845
		rcutorture_record_progress(++rcu_torture_current_version);
846
		rcu_torture_writer_state = RTWS_STUTTER;
847
		stutter_wait("rcu_torture_writer");
848
	} while (!torture_must_stop());
849
	rcu_torture_writer_state = RTWS_STOPPING;
850
	torture_kthread_stopping("rcu_torture_writer");
851 852 853
	return 0;
}

854 855 856 857 858 859 860
/*
 * RCU torture fake writer kthread.  Repeatedly calls sync, with a random
 * delay between calls.
 */
static int
rcu_torture_fakewriter(void *arg)
{
861
	DEFINE_TORTURE_RANDOM(rand);
862

863
	VERBOSE_TOROUT_STRING("rcu_torture_fakewriter task started");
864
	set_user_nice(current, MAX_NICE);
865 866

	do {
867 868
		schedule_timeout_uninterruptible(1 + torture_random(&rand)%10);
		udelay(torture_random(&rand) & 0x3ff);
869
		if (cur_ops->cb_barrier != NULL &&
870
		    torture_random(&rand) % (nfakewriters * 8) == 0) {
871
			cur_ops->cb_barrier();
872
		} else if (gp_normal == gp_exp) {
873
			if (torture_random(&rand) & 0x80)
874 875 876 877
				cur_ops->sync();
			else
				cur_ops->exp_sync();
		} else if (gp_normal) {
878
			cur_ops->sync();
879 880 881
		} else {
			cur_ops->exp_sync();
		}
882
		stutter_wait("rcu_torture_fakewriter");
883
	} while (!torture_must_stop());
884

885
	torture_kthread_stopping("rcu_torture_fakewriter");
886 887 888
	return 0;
}

889
static void rcutorture_trace_dump(void)
890 891 892 893 894 895 896 897 898 899
{
	static atomic_t beenhere = ATOMIC_INIT(0);

	if (atomic_read(&beenhere))
		return;
	if (atomic_xchg(&beenhere, 1) != 0)
		return;
	ftrace_dump(DUMP_ALL);
}

900 901 902 903 904 905 906 907 908 909
/*
 * RCU torture reader from timer handler.  Dereferences rcu_torture_current,
 * incrementing the corresponding element of the pipeline array.  The
 * counter in the element should never be greater than 1, otherwise, the
 * RCU implementation is broken.
 */
static void rcu_torture_timer(unsigned long unused)
{
	int idx;
	int completed;
910
	int completed_end;
911
	static DEFINE_TORTURE_RANDOM(rand);
912 913 914
	static DEFINE_SPINLOCK(rand_lock);
	struct rcu_torture *p;
	int pipe_count;
915
	unsigned long long ts;
916 917 918

	idx = cur_ops->readlock();
	completed = cur_ops->completed();
919
	ts = rcu_trace_clock_local();
920 921 922 923
	p = rcu_dereference_check(rcu_torture_current,
				  rcu_read_lock_bh_held() ||
				  rcu_read_lock_sched_held() ||
				  srcu_read_lock_held(&srcu_ctl));
924 925 926 927 928 929 930 931
	if (p == NULL) {
		/* Leave because rcu_torture_writer is not yet underway */
		cur_ops->readunlock(idx);
		return;
	}
	if (p->rtort_mbtest == 0)
		atomic_inc(&n_rcu_torture_mberror);
	spin_lock(&rand_lock);
932
	cur_ops->read_delay(&rand);
933 934 935 936 937 938 939 940
	n_rcu_torture_timers++;
	spin_unlock(&rand_lock);
	preempt_disable();
	pipe_count = p->rtort_pipe_count;
	if (pipe_count > RCU_TORTURE_PIPE_LEN) {
		/* Should not happen, but... */
		pipe_count = RCU_TORTURE_PIPE_LEN;
	}
941 942 943 944
	completed_end = cur_ops->completed();
	if (pipe_count > 1) {
		do_trace_rcu_torture_read(cur_ops->name, &p->rtort_rcu, ts,
					  completed, completed_end);
945
		rcutorture_trace_dump();
946
	}
R
Rusty Russell 已提交
947
	__this_cpu_inc(rcu_torture_count[pipe_count]);
948
	completed = completed_end - completed;
949 950 951 952
	if (completed > RCU_TORTURE_PIPE_LEN) {
		/* Should not happen, but... */
		completed = RCU_TORTURE_PIPE_LEN;
	}
R
Rusty Russell 已提交
953
	__this_cpu_inc(rcu_torture_batch[completed]);
954 955 956 957
	preempt_enable();
	cur_ops->readunlock(idx);
}

958 959 960 961 962 963 964 965 966 967
/*
 * RCU torture reader kthread.  Repeatedly dereferences rcu_torture_current,
 * incrementing the corresponding element of the pipeline array.  The
 * counter in the element should never be greater than 1, otherwise, the
 * RCU implementation is broken.
 */
static int
rcu_torture_reader(void *arg)
{
	int completed;
968
	int completed_end;
969
	int idx;
970
	DEFINE_TORTURE_RANDOM(rand);
971 972
	struct rcu_torture *p;
	int pipe_count;
973
	struct timer_list t;
974
	unsigned long long ts;
975

976
	VERBOSE_TOROUT_STRING("rcu_torture_reader task started");
977
	set_user_nice(current, MAX_NICE);
978
	if (irqreader && cur_ops->irq_capable)
979
		setup_timer_on_stack(&t, rcu_torture_timer, 0);
980

981
	do {
982
		if (irqreader && cur_ops->irq_capable) {
983
			if (!timer_pending(&t))
984
				mod_timer(&t, jiffies + 1);
985
		}
986 987
		idx = cur_ops->readlock();
		completed = cur_ops->completed();
988
		ts = rcu_trace_clock_local();
989 990 991 992
		p = rcu_dereference_check(rcu_torture_current,
					  rcu_read_lock_bh_held() ||
					  rcu_read_lock_sched_held() ||
					  srcu_read_lock_held(&srcu_ctl));
993 994
		if (p == NULL) {
			/* Wait for rcu_torture_writer to get underway */
995
			cur_ops->readunlock(idx);
996 997 998
			schedule_timeout_interruptible(HZ);
			continue;
		}
999 1000
		if (p->rtort_mbtest == 0)
			atomic_inc(&n_rcu_torture_mberror);
1001
		cur_ops->read_delay(&rand);
1002 1003 1004 1005 1006 1007
		preempt_disable();
		pipe_count = p->rtort_pipe_count;
		if (pipe_count > RCU_TORTURE_PIPE_LEN) {
			/* Should not happen, but... */
			pipe_count = RCU_TORTURE_PIPE_LEN;
		}
1008 1009 1010 1011
		completed_end = cur_ops->completed();
		if (pipe_count > 1) {
			do_trace_rcu_torture_read(cur_ops->name, &p->rtort_rcu,
						  ts, completed, completed_end);
1012
			rcutorture_trace_dump();
1013
		}
R
Rusty Russell 已提交
1014
		__this_cpu_inc(rcu_torture_count[pipe_count]);
1015
		completed = completed_end - completed;
1016 1017 1018 1019
		if (completed > RCU_TORTURE_PIPE_LEN) {
			/* Should not happen, but... */
			completed = RCU_TORTURE_PIPE_LEN;
		}
R
Rusty Russell 已提交
1020
		__this_cpu_inc(rcu_torture_batch[completed]);
1021
		preempt_enable();
1022
		cur_ops->readunlock(idx);
1023
		cond_resched();
1024
		stutter_wait("rcu_torture_reader");
1025
	} while (!torture_must_stop());
1026
	if (irqreader && cur_ops->irq_capable)
1027
		del_timer_sync(&t);
1028
	torture_kthread_stopping("rcu_torture_reader");
1029 1030 1031 1032 1033 1034
	return 0;
}

/*
 * Create an RCU-torture statistics message in the specified buffer.
 */
1035
static void
1036 1037 1038 1039 1040 1041
rcu_torture_printk(char *page)
{
	int cpu;
	int i;
	long pipesummary[RCU_TORTURE_PIPE_LEN + 1] = { 0 };
	long batchsummary[RCU_TORTURE_PIPE_LEN + 1] = { 0 };
1042
	static unsigned long rtcv_snap = ULONG_MAX;
1043

1044
	for_each_possible_cpu(cpu) {
1045 1046 1047 1048 1049 1050 1051 1052 1053
		for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) {
			pipesummary[i] += per_cpu(rcu_torture_count, cpu)[i];
			batchsummary[i] += per_cpu(rcu_torture_batch, cpu)[i];
		}
	}
	for (i = RCU_TORTURE_PIPE_LEN - 1; i >= 0; i--) {
		if (pipesummary[i] != 0)
			break;
	}
1054 1055
	page += sprintf(page, "%s%s ", torture_type, TORTURE_FLAG);
	page += sprintf(page,
1056
		       "rtc: %p ver: %lu tfle: %d rta: %d rtaf: %d rtf: %d ",
1057 1058 1059 1060 1061
		       rcu_torture_current,
		       rcu_torture_current_version,
		       list_empty(&rcu_torture_freelist),
		       atomic_read(&n_rcu_torture_alloc),
		       atomic_read(&n_rcu_torture_alloc_fail),
1062
		       atomic_read(&n_rcu_torture_free));
1063
	page += sprintf(page, "rtmbe: %d rtbke: %ld rtbre: %ld ",
1064
		       atomic_read(&n_rcu_torture_mberror),
1065
		       n_rcu_torture_boost_ktrerror,
1066
		       n_rcu_torture_boost_rterror);
1067
	page += sprintf(page, "rtbf: %ld rtb: %ld nt: %ld ",
1068 1069
		       n_rcu_torture_boost_failure,
		       n_rcu_torture_boosts,
1070
		       n_rcu_torture_timers);
1071
	page = torture_onoff_stats(page);
1072
	page += sprintf(page, "barrier: %ld/%ld:%ld",
1073 1074 1075
		       n_barrier_successes,
		       n_barrier_attempts,
		       n_rcu_torture_barrier_error);
1076
	page += sprintf(page, "\n%s%s ", torture_type, TORTURE_FLAG);
1077
	if (atomic_read(&n_rcu_torture_mberror) != 0 ||
1078
	    n_rcu_torture_barrier_error != 0 ||
1079 1080
	    n_rcu_torture_boost_ktrerror != 0 ||
	    n_rcu_torture_boost_rterror != 0 ||
1081 1082
	    n_rcu_torture_boost_failure != 0 ||
	    i > 1) {
1083
		page += sprintf(page, "!!! ");
1084
		atomic_inc(&n_rcu_torture_error);
1085
		WARN_ON_ONCE(1);
1086
	}
1087
	page += sprintf(page, "Reader Pipe: ");
1088
	for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++)
1089 1090 1091
		page += sprintf(page, " %ld", pipesummary[i]);
	page += sprintf(page, "\n%s%s ", torture_type, TORTURE_FLAG);
	page += sprintf(page, "Reader Batch: ");
1092
	for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++)
1093 1094 1095
		page += sprintf(page, " %ld", batchsummary[i]);
	page += sprintf(page, "\n%s%s ", torture_type, TORTURE_FLAG);
	page += sprintf(page, "Free-Block Circulation: ");
1096
	for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) {
1097
		page += sprintf(page, " %d",
1098 1099
			       atomic_read(&rcu_torture_wcount[i]));
	}
1100
	page += sprintf(page, "\n");
1101
	if (cur_ops->stats)
1102
		cur_ops->stats(page);
1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114
	if (rtcv_snap == rcu_torture_current_version &&
	    rcu_torture_current != NULL) {
		int __maybe_unused flags;
		unsigned long __maybe_unused gpnum;
		unsigned long __maybe_unused completed;

		rcutorture_get_gp_data(cur_ops->ttype,
				       &flags, &gpnum, &completed);
		page += sprintf(page,
				"??? Writer stall state %d g%lu c%lu f%#x\n",
				rcu_torture_writer_state,
				gpnum, completed, flags);
1115
		show_rcu_gp_kthreads();
1116
		rcutorture_trace_dump();
1117 1118
	}
	rtcv_snap = rcu_torture_current_version;
1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131
}

/*
 * Print torture statistics.  Caller must ensure that there is only
 * one call to this function at a given time!!!  This is normally
 * accomplished by relying on the module system to only have one copy
 * of the module loaded, and then by giving the rcu_torture_stats
 * kthread full control (or the init/cleanup functions when rcu_torture_stats
 * thread is not running).
 */
static void
rcu_torture_stats_print(void)
{
1132 1133
	int size = nr_cpu_ids * 200 + 8192;
	char *buf;
1134

1135 1136 1137 1138 1139 1140 1141 1142
	buf = kmalloc(size, GFP_KERNEL);
	if (!buf) {
		pr_err("rcu-torture: Out of memory, need: %d", size);
		return;
	}
	rcu_torture_printk(buf);
	pr_alert("%s", buf);
	kfree(buf);
1143 1144 1145 1146 1147 1148 1149 1150 1151
}

/*
 * Periodically prints torture statistics, if periodic statistics printing
 * was specified via the stat_interval module parameter.
 */
static int
rcu_torture_stats(void *arg)
{
1152
	VERBOSE_TOROUT_STRING("rcu_torture_stats task started");
1153 1154 1155
	do {
		schedule_timeout_interruptible(stat_interval * HZ);
		rcu_torture_stats_print();
1156
		torture_shutdown_absorb("rcu_torture_stats");
1157
	} while (!torture_must_stop());
1158
	torture_kthread_stopping("rcu_torture_stats");
1159 1160 1161
	return 0;
}

1162
static inline void
1163
rcu_torture_print_module_parms(struct rcu_torture_ops *cur_ops, const char *tag)
1164
{
1165 1166 1167 1168 1169 1170 1171
	pr_alert("%s" TORTURE_FLAG
		 "--- %s: nreaders=%d nfakewriters=%d "
		 "stat_interval=%d verbose=%d test_no_idle_hz=%d "
		 "shuffle_interval=%d stutter=%d irqreader=%d "
		 "fqs_duration=%d fqs_holdoff=%d fqs_stutter=%d "
		 "test_boost=%d/%d test_boost_interval=%d "
		 "test_boost_duration=%d shutdown_secs=%d "
1172 1173
		 "stall_cpu=%d stall_cpu_holdoff=%d "
		 "n_barrier_cbs=%d "
1174 1175 1176 1177 1178 1179
		 "onoff_interval=%d onoff_holdoff=%d\n",
		 torture_type, tag, nrealreaders, nfakewriters,
		 stat_interval, verbose, test_no_idle_hz, shuffle_interval,
		 stutter, irqreader, fqs_duration, fqs_holdoff, fqs_stutter,
		 test_boost, cur_ops->can_boost,
		 test_boost_interval, test_boost_duration, shutdown_secs,
1180 1181
		 stall_cpu, stall_cpu_holdoff,
		 n_barrier_cbs,
1182
		 onoff_interval, onoff_holdoff);
1183 1184
}

1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196
static void rcutorture_booster_cleanup(int cpu)
{
	struct task_struct *t;

	if (boost_tasks[cpu] == NULL)
		return;
	mutex_lock(&boost_mutex);
	t = boost_tasks[cpu];
	boost_tasks[cpu] = NULL;
	mutex_unlock(&boost_mutex);

	/* This must be outside of the mutex, otherwise deadlock! */
1197
	torture_stop_kthread(rcu_torture_boost, t);
1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208
}

static int rcutorture_booster_init(int cpu)
{
	int retval;

	if (boost_tasks[cpu] != NULL)
		return 0;  /* Already created, nothing more to do. */

	/* Don't allow time recalculation while creating a new task. */
	mutex_lock(&boost_mutex);
1209
	VERBOSE_TOROUT_STRING("Creating rcu_torture_boost task");
E
Eric Dumazet 已提交
1210 1211 1212
	boost_tasks[cpu] = kthread_create_on_node(rcu_torture_boost, NULL,
						  cpu_to_node(cpu),
						  "rcu_torture_boost");
1213 1214
	if (IS_ERR(boost_tasks[cpu])) {
		retval = PTR_ERR(boost_tasks[cpu]);
1215
		VERBOSE_TOROUT_STRING("rcu_torture_boost task create failed");
1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226
		n_rcu_torture_boost_ktrerror++;
		boost_tasks[cpu] = NULL;
		mutex_unlock(&boost_mutex);
		return retval;
	}
	kthread_bind(boost_tasks[cpu], cpu);
	wake_up_process(boost_tasks[cpu]);
	mutex_unlock(&boost_mutex);
	return 0;
}

1227 1228 1229 1230
/*
 * CPU-stall kthread.  It waits as specified by stall_cpu_holdoff, then
 * induces a CPU stall for the time specified by stall_cpu.
 */
1231
static int rcu_torture_stall(void *args)
1232 1233 1234
{
	unsigned long stop_at;

1235
	VERBOSE_TOROUT_STRING("rcu_torture_stall task started");
1236
	if (stall_cpu_holdoff > 0) {
1237
		VERBOSE_TOROUT_STRING("rcu_torture_stall begin holdoff");
1238
		schedule_timeout_interruptible(stall_cpu_holdoff * HZ);
1239
		VERBOSE_TOROUT_STRING("rcu_torture_stall end holdoff");
1240 1241 1242 1243
	}
	if (!kthread_should_stop()) {
		stop_at = get_seconds() + stall_cpu;
		/* RCU CPU stall is expected behavior in following code. */
1244
		pr_alert("rcu_torture_stall start.\n");
1245 1246 1247 1248 1249 1250
		rcu_read_lock();
		preempt_disable();
		while (ULONG_CMP_LT(get_seconds(), stop_at))
			continue;  /* Induce RCU CPU stall warning. */
		preempt_enable();
		rcu_read_unlock();
1251
		pr_alert("rcu_torture_stall end.\n");
1252
	}
1253
	torture_shutdown_absorb("rcu_torture_stall");
1254 1255 1256 1257 1258 1259 1260 1261 1262 1263
	while (!kthread_should_stop())
		schedule_timeout_interruptible(10 * HZ);
	return 0;
}

/* Spawn CPU-stall kthread, if stall_cpu specified. */
static int __init rcu_torture_stall_init(void)
{
	if (stall_cpu <= 0)
		return 0;
1264
	return torture_create_kthread(rcu_torture_stall, NULL, stall_task);
1265 1266
}

1267
/* Callback function for RCU barrier testing. */
1268
static void rcu_torture_barrier_cbf(struct rcu_head *rcu)
1269 1270 1271 1272 1273 1274 1275 1276
{
	atomic_inc(&barrier_cbs_invoked);
}

/* kthread function to register callbacks used to test RCU barriers. */
static int rcu_torture_barrier_cbs(void *arg)
{
	long myid = (long)arg;
1277
	bool lastphase = 0;
1278
	bool newphase;
1279 1280 1281
	struct rcu_head rcu;

	init_rcu_head_on_stack(&rcu);
1282
	VERBOSE_TOROUT_STRING("rcu_torture_barrier_cbs task started");
1283
	set_user_nice(current, MAX_NICE);
1284 1285
	do {
		wait_event(barrier_cbs_wq[myid],
1286 1287
			   (newphase =
			    ACCESS_ONCE(barrier_phase)) != lastphase ||
1288
			   torture_must_stop());
1289
		lastphase = newphase;
1290
		smp_mb(); /* ensure barrier_phase load before ->call(). */
1291
		if (torture_must_stop())
1292 1293 1294 1295
			break;
		cur_ops->call(&rcu, rcu_torture_barrier_cbf);
		if (atomic_dec_and_test(&barrier_cbs_count))
			wake_up(&barrier_wq);
1296
	} while (!torture_must_stop());
1297 1298
	cur_ops->cb_barrier();
	destroy_rcu_head_on_stack(&rcu);
1299
	torture_kthread_stopping("rcu_torture_barrier_cbs");
1300 1301 1302 1303 1304 1305 1306 1307
	return 0;
}

/* kthread function to drive and coordinate RCU barrier testing. */
static int rcu_torture_barrier(void *arg)
{
	int i;

1308
	VERBOSE_TOROUT_STRING("rcu_torture_barrier task starting");
1309 1310 1311
	do {
		atomic_set(&barrier_cbs_invoked, 0);
		atomic_set(&barrier_cbs_count, n_barrier_cbs);
1312 1313
		smp_mb(); /* Ensure barrier_phase after prior assignments. */
		barrier_phase = !barrier_phase;
1314 1315 1316 1317
		for (i = 0; i < n_barrier_cbs; i++)
			wake_up(&barrier_cbs_wq[i]);
		wait_event(barrier_wq,
			   atomic_read(&barrier_cbs_count) == 0 ||
1318 1319
			   torture_must_stop());
		if (torture_must_stop())
1320 1321
			break;
		n_barrier_attempts++;
1322
		cur_ops->cb_barrier(); /* Implies smp_mb() for wait_event(). */
1323 1324 1325 1326 1327 1328
		if (atomic_read(&barrier_cbs_invoked) != n_barrier_cbs) {
			n_rcu_torture_barrier_error++;
			WARN_ON_ONCE(1);
		}
		n_barrier_successes++;
		schedule_timeout_interruptible(HZ / 10);
1329
	} while (!torture_must_stop());
1330
	torture_kthread_stopping("rcu_torture_barrier");
1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342
	return 0;
}

/* Initialize RCU barrier testing. */
static int rcu_torture_barrier_init(void)
{
	int i;
	int ret;

	if (n_barrier_cbs == 0)
		return 0;
	if (cur_ops->call == NULL || cur_ops->cb_barrier == NULL) {
1343 1344 1345 1346 1347 1348
		pr_alert("%s" TORTURE_FLAG
			 " Call or barrier ops missing for %s,\n",
			 torture_type, cur_ops->name);
		pr_alert("%s" TORTURE_FLAG
			 " RCU barrier testing omitted from run.\n",
			 torture_type);
1349 1350 1351 1352 1353 1354 1355 1356 1357 1358
		return 0;
	}
	atomic_set(&barrier_cbs_count, 0);
	atomic_set(&barrier_cbs_invoked, 0);
	barrier_cbs_tasks =
		kzalloc(n_barrier_cbs * sizeof(barrier_cbs_tasks[0]),
			GFP_KERNEL);
	barrier_cbs_wq =
		kzalloc(n_barrier_cbs * sizeof(barrier_cbs_wq[0]),
			GFP_KERNEL);
1359
	if (barrier_cbs_tasks == NULL || !barrier_cbs_wq)
1360 1361 1362
		return -ENOMEM;
	for (i = 0; i < n_barrier_cbs; i++) {
		init_waitqueue_head(&barrier_cbs_wq[i]);
1363 1364 1365 1366
		ret = torture_create_kthread(rcu_torture_barrier_cbs,
					     (void *)(long)i,
					     barrier_cbs_tasks[i]);
		if (ret)
1367 1368
			return ret;
	}
1369
	return torture_create_kthread(rcu_torture_barrier, NULL, barrier_task);
1370 1371 1372 1373 1374 1375 1376
}

/* Clean up after RCU barrier testing. */
static void rcu_torture_barrier_cleanup(void)
{
	int i;

1377
	torture_stop_kthread(rcu_torture_barrier, barrier_task);
1378
	if (barrier_cbs_tasks != NULL) {
1379 1380 1381
		for (i = 0; i < n_barrier_cbs; i++)
			torture_stop_kthread(rcu_torture_barrier_cbs,
					     barrier_cbs_tasks[i]);
1382 1383 1384 1385 1386 1387 1388 1389 1390
		kfree(barrier_cbs_tasks);
		barrier_cbs_tasks = NULL;
	}
	if (barrier_cbs_wq != NULL) {
		kfree(barrier_cbs_wq);
		barrier_cbs_wq = NULL;
	}
}

1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413
static int rcutorture_cpu_notify(struct notifier_block *self,
				 unsigned long action, void *hcpu)
{
	long cpu = (long)hcpu;

	switch (action) {
	case CPU_ONLINE:
	case CPU_DOWN_FAILED:
		(void)rcutorture_booster_init(cpu);
		break;
	case CPU_DOWN_PREPARE:
		rcutorture_booster_cleanup(cpu);
		break;
	default:
		break;
	}
	return NOTIFY_OK;
}

static struct notifier_block rcutorture_cpu_nb = {
	.notifier_call = rcutorture_cpu_notify,
};

1414 1415 1416 1417 1418
static void
rcu_torture_cleanup(void)
{
	int i;

1419
	rcutorture_record_test_transition();
1420
	if (torture_cleanup()) {
1421 1422 1423 1424
		if (cur_ops->cb_barrier != NULL)
			cur_ops->cb_barrier();
		return;
	}
1425

1426
	rcu_torture_barrier_cleanup();
1427 1428
	torture_stop_kthread(rcu_torture_stall, stall_task);
	torture_stop_kthread(rcu_torture_writer, writer_task);
1429

1430
	if (reader_tasks) {
1431 1432 1433
		for (i = 0; i < nrealreaders; i++)
			torture_stop_kthread(rcu_torture_reader,
					     reader_tasks[i]);
1434 1435 1436 1437
		kfree(reader_tasks);
	}
	rcu_torture_current = NULL;

1438
	if (fakewriter_tasks) {
1439
		for (i = 0; i < nfakewriters; i++) {
1440 1441
			torture_stop_kthread(rcu_torture_fakewriter,
					     fakewriter_tasks[i]);
1442 1443 1444 1445 1446
		}
		kfree(fakewriter_tasks);
		fakewriter_tasks = NULL;
	}

1447 1448
	torture_stop_kthread(rcu_torture_stats, stats_task);
	torture_stop_kthread(rcu_torture_fqs, fqs_task);
1449 1450 1451 1452 1453 1454
	if ((test_boost == 1 && cur_ops->can_boost) ||
	    test_boost == 2) {
		unregister_cpu_notifier(&rcutorture_cpu_nb);
		for_each_possible_cpu(i)
			rcutorture_booster_cleanup(i);
	}
1455

1456
	/* Wait for all RCU callbacks to fire.  */
1457 1458 1459

	if (cur_ops->cb_barrier != NULL)
		cur_ops->cb_barrier();
1460 1461

	rcu_torture_stats_print();  /* -After- the stats thread is stopped! */
1462

1463
	if (atomic_read(&n_rcu_torture_error) || n_rcu_torture_barrier_error)
1464
		rcu_torture_print_module_parms(cur_ops, "End of test: FAILURE");
1465
	else if (torture_onoff_failures())
1466 1467
		rcu_torture_print_module_parms(cur_ops,
					       "End of test: RCU_HOTPLUG");
1468
	else
1469
		rcu_torture_print_module_parms(cur_ops, "End of test: SUCCESS");
1470 1471
}

1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527
#ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD
static void rcu_torture_leak_cb(struct rcu_head *rhp)
{
}

static void rcu_torture_err_cb(struct rcu_head *rhp)
{
	/*
	 * This -might- happen due to race conditions, but is unlikely.
	 * The scenario that leads to this happening is that the
	 * first of the pair of duplicate callbacks is queued,
	 * someone else starts a grace period that includes that
	 * callback, then the second of the pair must wait for the
	 * next grace period.  Unlikely, but can happen.  If it
	 * does happen, the debug-objects subsystem won't have splatted.
	 */
	pr_alert("rcutorture: duplicated callback was invoked.\n");
}
#endif /* #ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD */

/*
 * Verify that double-free causes debug-objects to complain, but only
 * if CONFIG_DEBUG_OBJECTS_RCU_HEAD=y.  Otherwise, say that the test
 * cannot be carried out.
 */
static void rcu_test_debug_objects(void)
{
#ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD
	struct rcu_head rh1;
	struct rcu_head rh2;

	init_rcu_head_on_stack(&rh1);
	init_rcu_head_on_stack(&rh2);
	pr_alert("rcutorture: WARN: Duplicate call_rcu() test starting.\n");

	/* Try to queue the rh2 pair of callbacks for the same grace period. */
	preempt_disable(); /* Prevent preemption from interrupting test. */
	rcu_read_lock(); /* Make it impossible to finish a grace period. */
	call_rcu(&rh1, rcu_torture_leak_cb); /* Start grace period. */
	local_irq_disable(); /* Make it harder to start a new grace period. */
	call_rcu(&rh2, rcu_torture_leak_cb);
	call_rcu(&rh2, rcu_torture_err_cb); /* Duplicate callback. */
	local_irq_enable();
	rcu_read_unlock();
	preempt_enable();

	/* Wait for them all to get done so we can safely return. */
	rcu_barrier();
	pr_alert("rcutorture: WARN: Duplicate call_rcu() test complete.\n");
	destroy_rcu_head_on_stack(&rh1);
	destroy_rcu_head_on_stack(&rh2);
#else /* #ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD */
	pr_alert("rcutorture: !CONFIG_DEBUG_OBJECTS_RCU_HEAD, not testing duplicate call_rcu()\n");
#endif /* #else #ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD */
}

1528
static int __init
1529 1530 1531 1532 1533
rcu_torture_init(void)
{
	int i;
	int cpu;
	int firsterr = 0;
1534
	static struct rcu_torture_ops *torture_ops[] = {
1535
		&rcu_ops, &rcu_bh_ops, &rcu_busted_ops, &srcu_ops, &sched_ops,
1536
	};
1537

1538
	torture_init_begin(torture_type, verbose, &rcutorture_runnable);
1539

1540
	/* Process args and tell the world that the torturer is on the job. */
1541
	for (i = 0; i < ARRAY_SIZE(torture_ops); i++) {
1542
		cur_ops = torture_ops[i];
1543
		if (strcmp(torture_type, cur_ops->name) == 0)
1544 1545
			break;
	}
1546
	if (i == ARRAY_SIZE(torture_ops)) {
1547 1548 1549
		pr_alert("rcu-torture: invalid torture type: \"%s\"\n",
			 torture_type);
		pr_alert("rcu-torture types:");
1550
		for (i = 0; i < ARRAY_SIZE(torture_ops); i++)
1551 1552
			pr_alert(" %s", torture_ops[i]->name);
		pr_alert("\n");
1553
		torture_init_end();
1554
		return -EINVAL;
1555
	}
1556
	if (cur_ops->fqs == NULL && fqs_duration != 0) {
1557
		pr_alert("rcu-torture: ->fqs NULL and non-zero fqs_duration, fqs disabled.\n");
1558 1559
		fqs_duration = 0;
	}
1560
	if (cur_ops->init)
1561 1562
		cur_ops->init(); /* no "goto unwind" prior to this point!!! */

1563
	if (nreaders >= 0) {
1564
		nrealreaders = nreaders;
1565 1566 1567 1568 1569
	} else {
		nrealreaders = num_online_cpus() - 1;
		if (nrealreaders <= 0)
			nrealreaders = 1;
	}
1570
	rcu_torture_print_module_parms(cur_ops, "Start of test");
1571 1572 1573 1574

	/* Set up the freelist. */

	INIT_LIST_HEAD(&rcu_torture_freelist);
1575
	for (i = 0; i < ARRAY_SIZE(rcu_tortures); i++) {
1576
		rcu_tortures[i].rtort_mbtest = 0;
1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587
		list_add_tail(&rcu_tortures[i].rtort_free,
			      &rcu_torture_freelist);
	}

	/* Initialize the statistics so that each run gets its own numbers. */

	rcu_torture_current = NULL;
	rcu_torture_current_version = 0;
	atomic_set(&n_rcu_torture_alloc, 0);
	atomic_set(&n_rcu_torture_alloc_fail, 0);
	atomic_set(&n_rcu_torture_free, 0);
1588 1589
	atomic_set(&n_rcu_torture_mberror, 0);
	atomic_set(&n_rcu_torture_error, 0);
1590
	n_rcu_torture_barrier_error = 0;
1591 1592 1593 1594
	n_rcu_torture_boost_ktrerror = 0;
	n_rcu_torture_boost_rterror = 0;
	n_rcu_torture_boost_failure = 0;
	n_rcu_torture_boosts = 0;
1595 1596
	for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++)
		atomic_set(&rcu_torture_wcount[i], 0);
1597
	for_each_possible_cpu(cpu) {
1598 1599 1600 1601 1602 1603 1604 1605
		for (i = 0; i < RCU_TORTURE_PIPE_LEN + 1; i++) {
			per_cpu(rcu_torture_count, cpu)[i] = 0;
			per_cpu(rcu_torture_batch, cpu)[i] = 0;
		}
	}

	/* Start up the kthreads. */

1606 1607 1608
	firsterr = torture_create_kthread(rcu_torture_writer, NULL,
					  writer_task);
	if (firsterr)
1609
		goto unwind;
1610
	fakewriter_tasks = kzalloc(nfakewriters * sizeof(fakewriter_tasks[0]),
1611
				   GFP_KERNEL);
1612
	if (fakewriter_tasks == NULL) {
1613
		VERBOSE_TOROUT_ERRSTRING("out of memory");
1614 1615 1616 1617
		firsterr = -ENOMEM;
		goto unwind;
	}
	for (i = 0; i < nfakewriters; i++) {
1618 1619 1620
		firsterr = torture_create_kthread(rcu_torture_fakewriter,
						  NULL, fakewriter_tasks[i]);
		if (firsterr)
1621 1622
			goto unwind;
	}
1623
	reader_tasks = kzalloc(nrealreaders * sizeof(reader_tasks[0]),
1624 1625
			       GFP_KERNEL);
	if (reader_tasks == NULL) {
1626
		VERBOSE_TOROUT_ERRSTRING("out of memory");
1627 1628 1629 1630
		firsterr = -ENOMEM;
		goto unwind;
	}
	for (i = 0; i < nrealreaders; i++) {
1631 1632 1633
		firsterr = torture_create_kthread(rcu_torture_reader, NULL,
						  reader_tasks[i]);
		if (firsterr)
1634 1635 1636
			goto unwind;
	}
	if (stat_interval > 0) {
1637 1638 1639
		firsterr = torture_create_kthread(rcu_torture_stats, NULL,
						  stats_task);
		if (firsterr)
1640 1641
			goto unwind;
	}
1642
	if (test_no_idle_hz) {
1643 1644
		firsterr = torture_shuffle_init(shuffle_interval * HZ);
		if (firsterr)
1645 1646
			goto unwind;
	}
1647 1648 1649
	if (stutter < 0)
		stutter = 0;
	if (stutter) {
1650 1651
		firsterr = torture_stutter_init(stutter * HZ);
		if (firsterr)
1652 1653
			goto unwind;
	}
1654 1655 1656
	if (fqs_duration < 0)
		fqs_duration = 0;
	if (fqs_duration) {
1657
		/* Create the fqs thread */
1658 1659
		firsterr = torture_create_kthread(rcu_torture_fqs, NULL,
						  fqs_task);
1660
		if (firsterr)
1661 1662
			goto unwind;
	}
1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674
	if (test_boost_interval < 1)
		test_boost_interval = 1;
	if (test_boost_duration < 2)
		test_boost_duration = 2;
	if ((test_boost == 1 && cur_ops->can_boost) ||
	    test_boost == 2) {

		boost_starttime = jiffies + test_boost_interval * HZ;
		register_cpu_notifier(&rcutorture_cpu_nb);
		for_each_possible_cpu(i) {
			if (cpu_is_offline(i))
				continue;  /* Heuristic: CPU can go offline. */
1675 1676
			firsterr = rcutorture_booster_init(i);
			if (firsterr)
1677 1678 1679
				goto unwind;
		}
	}
1680 1681
	firsterr = torture_shutdown_init(shutdown_secs, rcu_torture_cleanup);
	if (firsterr)
1682
		goto unwind;
1683 1684
	firsterr = torture_onoff_init(onoff_holdoff * HZ, onoff_interval * HZ);
	if (firsterr)
1685
		goto unwind;
1686 1687
	firsterr = rcu_torture_stall_init();
	if (firsterr)
1688
		goto unwind;
1689 1690
	firsterr = rcu_torture_barrier_init();
	if (firsterr)
1691
		goto unwind;
1692 1693
	if (object_debug)
		rcu_test_debug_objects();
1694
	rcutorture_record_test_transition();
1695
	torture_init_end();
1696 1697 1698
	return 0;

unwind:
1699
	torture_init_end();
1700 1701 1702 1703 1704 1705
	rcu_torture_cleanup();
	return firsterr;
}

module_init(rcu_torture_init);
module_exit(rcu_torture_cleanup);