extern struct eeh_ops *eeh_ops;
extern int eeh_subsystem_enabled;
extern struct mutex eeh_mutex;
+extern raw_spinlock_t confirm_error_lock;
extern int eeh_probe_mode;
#define EEH_PROBE_MODE_DEV (1<<0) /* From PCI device */
mutex_unlock(&eeh_mutex);
}
+static inline void eeh_serialize_lock(unsigned long *flags)
+{
+ raw_spin_lock_irqsave(&confirm_error_lock, *flags);
+}
+
+static inline void eeh_serialize_unlock(unsigned long flags)
+{
+ raw_spin_unlock_irqrestore(&confirm_error_lock, flags);
+}
+
/*
* Max number of EEH freezes allowed before we consider the device
* to be permanently disabled.
DEFINE_MUTEX(eeh_mutex);
/* Lock to avoid races due to multiple reports of an error */
-static DEFINE_RAW_SPINLOCK(confirm_error_lock);
+DEFINE_RAW_SPINLOCK(confirm_error_lock);
/* Buffer for reporting pci register dumps. Its here in BSS, and
* not dynamically alloced, so that it ends up in RMO where RTAS
* in one slot might report errors simultaneously, and we
* only want one error recovery routine running.
*/
- raw_spin_lock_irqsave(&confirm_error_lock, flags);
+ eeh_serialize_lock(&flags);
rc = 1;
if (pe->state & EEH_PE_ISOLATED) {
pe->check_count++;
* bridges.
*/
eeh_pe_state_mark(pe, EEH_PE_ISOLATED);
- raw_spin_unlock_irqrestore(&confirm_error_lock, flags);
+ eeh_serialize_unlock(flags);
eeh_send_failure_event(pe);
return 1;
dn_unlock:
- raw_spin_unlock_irqrestore(&confirm_error_lock, flags);
+ eeh_serialize_unlock(flags);
return rc;
}
return ret;
}
- raw_spin_lock_init(&confirm_error_lock);
-
/* Initialize EEH event */
ret = eeh_event_init();
if (ret)