}
 EXPORT_SYMBOL(_raw_spin_lock_wait);
 
+void _raw_spin_lock_wait_flags(raw_spinlock_t *lp, unsigned long flags)
+{
+       int count = spin_retry;
+       unsigned int cpu = ~smp_processor_id();
+
+       local_irq_restore(flags);
+       while (1) {
+               if (count-- <= 0) {
+                       unsigned int owner = lp->owner_cpu;
+                       if (owner != 0)
+                               _raw_yield_cpu(~owner);
+                       count = spin_retry;
+               }
+               if (__raw_spin_is_locked(lp))
+                       continue;
+               local_irq_disable();
+               if (_raw_compare_and_swap(&lp->owner_cpu, 0, cpu) == 0)
+                       return;
+               local_irq_restore(flags);
+       }
+}
+EXPORT_SYMBOL(_raw_spin_lock_wait_flags);
+
 int _raw_spin_trylock_retry(raw_spinlock_t *lp)
 {
        unsigned int cpu = ~smp_processor_id();
 
  */
 
 #define __raw_spin_is_locked(x) ((x)->owner_cpu != 0)
-#define __raw_spin_lock_flags(lock, flags) __raw_spin_lock(lock)
 #define __raw_spin_unlock_wait(lock) \
        do { while (__raw_spin_is_locked(lock)) \
                 _raw_spin_relax(lock); } while (0)
 
 extern void _raw_spin_lock_wait(raw_spinlock_t *);
+extern void _raw_spin_lock_wait_flags(raw_spinlock_t *, unsigned long flags);
 extern int _raw_spin_trylock_retry(raw_spinlock_t *);
 extern void _raw_spin_relax(raw_spinlock_t *lock);
 
        _raw_spin_lock_wait(lp);
 }
 
+static inline void __raw_spin_lock_flags(raw_spinlock_t *lp,
+                                        unsigned long flags)
+{
+       int old;
+
+       old = _raw_compare_and_swap(&lp->owner_cpu, 0, ~smp_processor_id());
+       if (likely(old == 0))
+               return;
+       _raw_spin_lock_wait_flags(lp, flags);
+}
+
 static inline int __raw_spin_trylock(raw_spinlock_t *lp)
 {
        int old;