* This returns the old value in the lock, so we succeeded
  * in getting the lock if the return value is 0.
  */
-static __inline__ unsigned long __spin_trylock(raw_spinlock_t *lock)
+static inline unsigned long __spin_trylock(raw_spinlock_t *lock)
 {
        unsigned long tmp, token;
 
        return tmp;
 }
 
-static int __inline__ __raw_spin_trylock(raw_spinlock_t *lock)
+static inline int __raw_spin_trylock(raw_spinlock_t *lock)
 {
        CLEAR_IO_SYNC;
        return __spin_trylock(lock) == 0;
 #define SHARED_PROCESSOR       0
 #endif
 
-static void __inline__ __raw_spin_lock(raw_spinlock_t *lock)
+static inline void __raw_spin_lock(raw_spinlock_t *lock)
 {
        CLEAR_IO_SYNC;
        while (1) {
        }
 }
 
-static void __inline__ __raw_spin_lock_flags(raw_spinlock_t *lock, unsigned long flags)
+static inline
+void __raw_spin_lock_flags(raw_spinlock_t *lock, unsigned long flags)
 {
        unsigned long flags_dis;
 
        }
 }
 
-static __inline__ void __raw_spin_unlock(raw_spinlock_t *lock)
+static inline void __raw_spin_unlock(raw_spinlock_t *lock)
 {
        SYNC_IO;
        __asm__ __volatile__("# __raw_spin_unlock\n\t"
  * This returns the old value in the lock + 1,
  * so we got a read lock if the return value is > 0.
  */
-static long __inline__ __read_trylock(raw_rwlock_t *rw)
+static inline long __read_trylock(raw_rwlock_t *rw)
 {
        long tmp;
 
  * This returns the old value in the lock,
  * so we got the write lock if the return value is 0.
  */
-static __inline__ long __write_trylock(raw_rwlock_t *rw)
+static inline long __write_trylock(raw_rwlock_t *rw)
 {
        long tmp, token;
 
        return tmp;
 }
 
-static void __inline__ __raw_read_lock(raw_rwlock_t *rw)
+static inline void __raw_read_lock(raw_rwlock_t *rw)
 {
        while (1) {
                if (likely(__read_trylock(rw) > 0))
        }
 }
 
-static void __inline__ __raw_write_lock(raw_rwlock_t *rw)
+static inline void __raw_write_lock(raw_rwlock_t *rw)
 {
        while (1) {
                if (likely(__write_trylock(rw) == 0))
        }
 }
 
-static int __inline__ __raw_read_trylock(raw_rwlock_t *rw)
+static inline int __raw_read_trylock(raw_rwlock_t *rw)
 {
        return __read_trylock(rw) > 0;
 }
 
-static int __inline__ __raw_write_trylock(raw_rwlock_t *rw)
+static inline int __raw_write_trylock(raw_rwlock_t *rw)
 {
        return __write_trylock(rw) == 0;
 }
 
-static void __inline__ __raw_read_unlock(raw_rwlock_t *rw)
+static inline void __raw_read_unlock(raw_rwlock_t *rw)
 {
        long tmp;
 
        : "cr0", "memory");
 }
 
-static __inline__ void __raw_write_unlock(raw_rwlock_t *rw)
+static inline void __raw_write_unlock(raw_rwlock_t *rw)
 {
        __asm__ __volatile__("# write_unlock\n\t"
                                LWSYNC_ON_SMP: : :"memory");