huawei-mrd-kernel/kernel/locking/spinlock_debug.c

382 lines
9.6 KiB
C

/*
* Copyright 2005, Red Hat, Inc., Ingo Molnar
* Released under the General Public License (GPL).
*
* This file contains the spinlock/rwlock implementations for
* DEBUG_SPINLOCK.
*/
#define pr_fmt(fmt) "spinlock_debug: " fmt
#include <linux/spinlock.h>
#include <linux/nmi.h>
#include <linux/interrupt.h>
#include <linux/debug_locks.h>
#include <linux/delay.h>
#include <linux/export.h>
#include <linux/printk.h>
#include <mt-plat/aee.h>
#ifdef CONFIG_MTK_SCHED_MONITOR
#include "mtk_sched_mon.h"
#endif
void __raw_spin_lock_init(raw_spinlock_t *lock, const char *name,
struct lock_class_key *key)
{
#ifdef CONFIG_DEBUG_LOCK_ALLOC
/*
* Make sure we are not reinitializing a held lock:
*/
debug_check_no_locks_freed((void *)lock, sizeof(*lock));
lockdep_init_map(&lock->dep_map, name, key, 0);
#endif
lock->raw_lock = (arch_spinlock_t)__ARCH_SPIN_LOCK_UNLOCKED;
lock->magic = SPINLOCK_MAGIC;
lock->owner = SPINLOCK_OWNER_INIT;
lock->owner_cpu = -1;
}
EXPORT_SYMBOL(__raw_spin_lock_init);
void __rwlock_init(rwlock_t *lock, const char *name,
struct lock_class_key *key)
{
#ifdef CONFIG_DEBUG_LOCK_ALLOC
/*
* Make sure we are not reinitializing a held lock:
*/
debug_check_no_locks_freed((void *)lock, sizeof(*lock));
lockdep_init_map(&lock->dep_map, name, key, 0);
#endif
lock->raw_lock = (arch_rwlock_t) __ARCH_RW_LOCK_UNLOCKED;
lock->magic = RWLOCK_MAGIC;
lock->owner = SPINLOCK_OWNER_INIT;
lock->owner_cpu = -1;
}
EXPORT_SYMBOL(__rwlock_init);
static void spin_dump(raw_spinlock_t *lock, const char *msg)
{
struct task_struct *owner = NULL;
if (lock->owner && lock->owner != SPINLOCK_OWNER_INIT)
owner = lock->owner;
pr_info("BUG: spinlock %s on CPU#%d, %s/%d\n",
msg, raw_smp_processor_id(),
current->comm, task_pid_nr(current));
pr_info(" lock: %pS, .magic: %08x, .owner: %s/%d, "
".owner_cpu: %d\n",
lock, lock->magic,
owner ? owner->comm : "<none>",
owner ? task_pid_nr(owner) : -1,
lock->owner_cpu);
dump_stack();
}
static void spin_bug(raw_spinlock_t *lock, const char *msg)
{
char aee_str[50];
if (!debug_locks_off())
return;
spin_dump(lock, msg);
snprintf(aee_str, 50, "%s: %s\n", current->comm, msg);
if (!strcmp(msg, "bad magic") || !strcmp(msg, "already unlocked")
|| !strcmp(msg, "wrong owner") || !strcmp(msg, "wrong CPU")) {
pr_info("%s\n", aee_str);
pr_info("maybe use an un-initial spin_lock or mem corrupt\n");
pr_info("maybe already unlocked or wrong owner or wrong CPU\n");
pr_info("maybe bad magic %08x, should be %08x\n",
lock->magic, SPINLOCK_MAGIC);
pr_info(">>>>>>>>>>>>>> Let's KE <<<<<<<<<<<<<<\n");
BUG_ON(1);
}
aee_kernel_warning_api(__FILE__, __LINE__,
DB_OPT_DUMMY_DUMP | DB_OPT_FTRACE,
aee_str, "spinlock debugger\n");
}
#define SPIN_BUG_ON(cond, lock, msg) if (unlikely(cond)) spin_bug(lock, msg)
static inline void
debug_spin_lock_before(raw_spinlock_t *lock)
{
SPIN_BUG_ON(lock->magic != SPINLOCK_MAGIC, lock, "bad magic");
SPIN_BUG_ON(lock->owner == current, lock, "recursion");
SPIN_BUG_ON(lock->owner_cpu == raw_smp_processor_id(),
lock, "cpu recursion");
}
static inline void debug_spin_lock_after(raw_spinlock_t *lock)
{
lock->owner_cpu = raw_smp_processor_id();
lock->owner = current;
}
static inline void debug_spin_unlock(raw_spinlock_t *lock)
{
SPIN_BUG_ON(lock->magic != SPINLOCK_MAGIC, lock, "bad magic");
SPIN_BUG_ON(!raw_spin_is_locked(lock), lock, "already unlocked");
SPIN_BUG_ON(lock->owner != current, lock, "wrong owner");
SPIN_BUG_ON(lock->owner_cpu != raw_smp_processor_id(),
lock, "wrong CPU");
lock->owner = SPINLOCK_OWNER_INIT;
lock->owner_cpu = -1;
}
#ifdef MTK_LOCK_DEBUG
static void show_cpu_backtrace(void *ignored)
{
pr_info("========== The call trace of lock owner on CPU%d ==========\n",
smp_processor_id());
show_stack(NULL, NULL);
}
#endif
/*Select appropriate loop counts to 1~2sec*/
#if HZ == 100
#define LOOP_HZ 100 /* temp 10 */
#elif HZ == 10
#define LOOP_HZ 2 /* temp 2 */
#else
#define LOOP_HZ HZ
#endif
#define WARNING_TIME 1000000000 /* warning time 1 seconds */
static void __spin_lock_debug(raw_spinlock_t *lock)
{
#ifdef MTK_LOCK_DEBUG
u64 i;
u64 loops = loops_per_jiffy * LOOP_HZ;
int print_once = 1;
char aee_str[50];
unsigned long long t1, t2, t3;
struct task_struct *owner = NULL;
if (is_logbuf_lock(lock)) { /* ignore to debug logbuf_lock */
for (i = 0; i < loops; i++) {
if (arch_spin_trylock(&lock->raw_lock))
return;
__delay(1);
}
return;
}
t1 = sched_clock();
t2 = t1;
for (;;) {
for (i = 0; i < loops; i++) {
if (arch_spin_trylock(&lock->raw_lock))
return;
__delay(1);
}
t3 = sched_clock();
if (t3 < t2)
continue;
else if (t3 - t2 < WARNING_TIME)
continue;
/* if(sched_clock() - t2 < WARNING_TIME) continue; */
t2 = sched_clock();
/* lockup suspected: */
if (lock->owner && lock->owner != SPINLOCK_OWNER_INIT)
owner = lock->owner;
pr_info("(%ps) spin time: %llu ns(from %llu ns), raw_lock: 0x%08x, lock is held by %s/%d on CPU#%d\n",
lock,
sched_clock() - t1, t1,
*((unsigned int *)&lock->raw_lock),
owner ? owner->comm : "<none>",
owner ? task_pid_nr(owner) : -1,
lock->owner_cpu);
if (oops_in_progress != 0)
/* in exception follow, printk maybe spinlock error */
continue;
if (print_once) {
print_once = 0;
pr_info("(%ps) magic: %08x, owner: %s/%d, owner_cpu: %d\n",
lock, lock->magic,
owner ? owner->comm : "<none>",
owner ? task_pid_nr(owner) : -1,
lock->owner_cpu);
pr_info("========== The call trace of spinning task ==========\n");
dump_stack();
if (owner) {
pr_info("spinlock debug show lock owenr [%s/%d] info\n",
owner->comm, owner->pid);
smp_call_function_single(lock->owner_cpu,
show_cpu_backtrace, NULL, 0);
debug_show_held_locks(owner);
}
/* ensure debug_locks is true,then can call aee */
debug_show_all_locks();
snprintf(aee_str, 50,
"Spinlock lockup: %ps in %s\n",
lock, current->comm);
#if defined(CONFIG_MTK_AEE_FEATURE)
aee_kernel_warning_api(__FILE__, __LINE__,
DB_OPT_DUMMY_DUMP | DB_OPT_FTRACE,
aee_str, "spinlock debugger\n");
#endif
}
}
#else /* MTK_LOCK_DEBUG */
u64 i;
u64 loops = loops_per_jiffy * HZ;
for (i = 0; i < loops; i++) {
if (arch_spin_trylock(&lock->raw_lock))
return;
__delay(1);
}
/* lockup suspected: */
spin_dump(lock, "lockup suspected");
#ifdef CONFIG_SMP
trigger_all_cpu_backtrace();
#endif
/*
* The trylock above was causing a livelock. Give the lower level arch
* specific lock code a chance to acquire the lock. We have already
* printed a warning/backtrace at this point. The non-debug arch
* specific code might actually succeed in acquiring the lock. If it is
* not successful, the end-result is the same - there is no forward
* progress.
*/
arch_spin_lock(&lock->raw_lock);
#endif /* MTK_LOCK_DEBUG */
}
/*
* We are now relying on the NMI watchdog to detect lockup instead of doing
* the detection here with an unfair lock which can cause problem of its own.
*/
void do_raw_spin_lock(raw_spinlock_t *lock)
{
#ifdef CONFIG_MTK_SCHED_MONITOR
mt_trace_lock_spinning_start(lock);
#endif
debug_spin_lock_before(lock);
if (unlikely(!arch_spin_trylock(&lock->raw_lock)))
__spin_lock_debug(lock);
debug_spin_lock_after(lock);
#ifdef CONFIG_MTK_SCHED_MONITOR
mt_trace_lock_spinning_end(lock);
#endif
}
int do_raw_spin_trylock(raw_spinlock_t *lock)
{
int ret = arch_spin_trylock(&lock->raw_lock);
if (ret)
debug_spin_lock_after(lock);
#ifndef CONFIG_SMP
/*
* Must not happen on UP:
*/
SPIN_BUG_ON(!ret, lock, "trylock failure on UP");
#endif
return ret;
}
void do_raw_spin_unlock(raw_spinlock_t *lock)
{
debug_spin_unlock(lock);
arch_spin_unlock(&lock->raw_lock);
}
static void rwlock_bug(rwlock_t *lock, const char *msg)
{
if (!debug_locks_off())
return;
pr_info("BUG: rwlock %s on CPU#%d, %s/%d, %p\n",
msg, raw_smp_processor_id(), current->comm,
task_pid_nr(current), lock);
dump_stack();
}
#define RWLOCK_BUG_ON(cond, lock, msg) if (unlikely(cond)) rwlock_bug(lock, msg)
void do_raw_read_lock(rwlock_t *lock)
{
RWLOCK_BUG_ON(lock->magic != RWLOCK_MAGIC, lock, "bad magic");
arch_read_lock(&lock->raw_lock);
}
int do_raw_read_trylock(rwlock_t *lock)
{
int ret = arch_read_trylock(&lock->raw_lock);
#ifndef CONFIG_SMP
/*
* Must not happen on UP:
*/
RWLOCK_BUG_ON(!ret, lock, "trylock failure on UP");
#endif
return ret;
}
void do_raw_read_unlock(rwlock_t *lock)
{
RWLOCK_BUG_ON(lock->magic != RWLOCK_MAGIC, lock, "bad magic");
arch_read_unlock(&lock->raw_lock);
}
static inline void debug_write_lock_before(rwlock_t *lock)
{
RWLOCK_BUG_ON(lock->magic != RWLOCK_MAGIC, lock, "bad magic");
RWLOCK_BUG_ON(lock->owner == current, lock, "recursion");
RWLOCK_BUG_ON(lock->owner_cpu == raw_smp_processor_id(),
lock, "cpu recursion");
}
static inline void debug_write_lock_after(rwlock_t *lock)
{
lock->owner_cpu = raw_smp_processor_id();
lock->owner = current;
}
static inline void debug_write_unlock(rwlock_t *lock)
{
RWLOCK_BUG_ON(lock->magic != RWLOCK_MAGIC, lock, "bad magic");
RWLOCK_BUG_ON(lock->owner != current, lock, "wrong owner");
RWLOCK_BUG_ON(lock->owner_cpu != raw_smp_processor_id(),
lock, "wrong CPU");
lock->owner = SPINLOCK_OWNER_INIT;
lock->owner_cpu = -1;
}
void do_raw_write_lock(rwlock_t *lock)
{
debug_write_lock_before(lock);
arch_write_lock(&lock->raw_lock);
debug_write_lock_after(lock);
}
int do_raw_write_trylock(rwlock_t *lock)
{
int ret = arch_write_trylock(&lock->raw_lock);
if (ret)
debug_write_lock_after(lock);
#ifndef CONFIG_SMP
/*
* Must not happen on UP:
*/
RWLOCK_BUG_ON(!ret, lock, "trylock failure on UP");
#endif
return ret;
}
void do_raw_write_unlock(rwlock_t *lock)
{
debug_write_unlock(lock);
arch_write_unlock(&lock->raw_lock);
}