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@@ -23,10 +23,6 @@
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* This function is atomic and may not be reordered. See __set_bit()
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* if you do not require the atomic guarantees.
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*
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- * Note: there are no guarantees that this function will not be reordered
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- * on non-x86 architectures, so if you are writing portable code,
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- * make sure not to rely on its reordering guarantees.
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- *
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* Note that @nr may be almost arbitrarily large; this function is not
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* restricted to acting on a single-word quantity.
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*/
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@@ -61,8 +57,7 @@ static inline void sync_clear_bit(int nr, volatile unsigned long * addr)
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* @nr: Bit to change
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* @addr: Address to start counting from
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*
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- * change_bit() is atomic and may not be reordered. It may be
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- * reordered on other architectures than x86.
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+ * sync_change_bit() is atomic and may not be reordered.
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* Note that @nr may be almost arbitrarily large; this function is not
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* restricted to acting on a single-word quantity.
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*/
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@@ -80,7 +75,6 @@ static inline void sync_change_bit(int nr, volatile unsigned long * addr)
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* @addr: Address to count from
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*
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* This operation is atomic and cannot be reordered.
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- * It may be reordered on other architectures than x86.
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* It also implies a memory barrier.
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*/
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static inline int sync_test_and_set_bit(int nr, volatile unsigned long * addr)
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@@ -99,7 +93,6 @@ static inline int sync_test_and_set_bit(int nr, volatile unsigned long * addr)
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* @addr: Address to count from
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*
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* This operation is atomic and cannot be reordered.
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- * It can be reorderdered on other architectures other than x86.
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* It also implies a memory barrier.
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*/
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static inline int sync_test_and_clear_bit(int nr, volatile unsigned long * addr)
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