* primitives such as list_add_rcu() as long as it's guarded by rcu_read_lock().
  */
 #define list_entry_rcu(ptr, type, member) \
-       ({typeof (*ptr) __rcu *__ptr = (typeof (*ptr) __rcu __force *)ptr; \
-        container_of((typeof(ptr))rcu_dereference_raw(__ptr), type, member); \
-       })
+({ \
+       typeof(*ptr) __rcu *__ptr = (typeof(*ptr) __rcu __force *)ptr; \
+       container_of((typeof(ptr))rcu_dereference_raw(__ptr), type, member); \
+})
 
 /**
  * Where are list_empty_rcu() and list_first_entry_rcu()?
  * primitives such as list_add_rcu() as long as it's guarded by rcu_read_lock().
  */
 #define list_first_or_null_rcu(ptr, type, member) \
-       ({struct list_head *__ptr = (ptr); \
-         struct list_head *__next = ACCESS_ONCE(__ptr->next); \
-         likely(__ptr != __next) ? \
-               list_entry_rcu(__next, type, member) : NULL; \
-       })
+({ \
+       struct list_head *__ptr = (ptr); \
+       struct list_head *__next = ACCESS_ONCE(__ptr->next); \
+       likely(__ptr != __next) ? list_entry_rcu(__next, type, member) : NULL; \
+})
 
 /**
  * list_for_each_entry_rcu     -       iterate over rcu list of given type
 
 #endif /* #else #ifdef __CHECKER__ */
 
 #define __rcu_access_pointer(p, space) \
-       ({ \
-               typeof(*p) *_________p1 = (typeof(*p)*__force )ACCESS_ONCE(p); \
-               rcu_dereference_sparse(p, space); \
-               ((typeof(*p) __force __kernel *)(_________p1)); \
-       })
+({ \
+       typeof(*p) *_________p1 = (typeof(*p) *__force)ACCESS_ONCE(p); \
+       rcu_dereference_sparse(p, space); \
+       ((typeof(*p) __force __kernel *)(_________p1)); \
+})
 #define __rcu_dereference_check(p, c, space) \
-       ({ \
-               typeof(*p) *_________p1 = (typeof(*p)*__force )ACCESS_ONCE(p); \
-               rcu_lockdep_assert(c, "suspicious rcu_dereference_check() usage"); \
-               rcu_dereference_sparse(p, space); \
-               smp_read_barrier_depends(); \
-               ((typeof(*p) __force __kernel *)(_________p1)); \
-       })
+({ \
+       typeof(*p) *_________p1 = (typeof(*p) *__force)ACCESS_ONCE(p); \
+       rcu_lockdep_assert(c, "suspicious rcu_dereference_check() usage"); \
+       rcu_dereference_sparse(p, space); \
+       smp_read_barrier_depends(); /* Dependency order vs. p above. */ \
+       ((typeof(*p) __force __kernel *)(_________p1)); \
+})
 #define __rcu_dereference_protected(p, c, space) \
-       ({ \
-               rcu_lockdep_assert(c, "suspicious rcu_dereference_protected() usage"); \
-               rcu_dereference_sparse(p, space); \
-               ((typeof(*p) __force __kernel *)(p)); \
-       })
+({ \
+       rcu_lockdep_assert(c, "suspicious rcu_dereference_protected() usage"); \
+       rcu_dereference_sparse(p, space); \
+       ((typeof(*p) __force __kernel *)(p)); \
+})
 
 #define __rcu_access_index(p, space) \
-       ({ \
-               typeof(p) _________p1 = ACCESS_ONCE(p); \
-               rcu_dereference_sparse(p, space); \
-               (_________p1); \
-       })
+({ \
+       typeof(p) _________p1 = ACCESS_ONCE(p); \
+       rcu_dereference_sparse(p, space); \
+       (_________p1); \
+})
 #define __rcu_dereference_index_check(p, c) \
-       ({ \
-               typeof(p) _________p1 = ACCESS_ONCE(p); \
-               rcu_lockdep_assert(c, \
-                                  "suspicious rcu_dereference_index_check() usage"); \
-               smp_read_barrier_depends(); \
-               (_________p1); \
-       })
+({ \
+       typeof(p) _________p1 = ACCESS_ONCE(p); \
+       rcu_lockdep_assert(c, \
+                          "suspicious rcu_dereference_index_check() usage"); \
+       smp_read_barrier_depends(); /* Dependency order vs. p above. */ \
+       (_________p1); \
+})
 
 /**
  * RCU_INITIALIZER() - statically initialize an RCU-protected global variable