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x86, percpu: Add 'percpu_read_stable()' interface for cacheable accesses
This is very useful for some common things like 'get_current()' and 'get_thread_info()', which can be used multiple times in a function, and where the result is cacheable. tj: Added the magical undocumented "P" modifier to UP __percpu_arg() to force gcc to dereference the pointer value passed in via the "p" input constraint. Without this, percpu_read_stable() returns the address of the percpu variable. Also added comment explaining the difference between percpu_read() and percpu_read_stable(). Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org> Signed-off-by: Tejun Heo <tj@kernel.org> Signed-off-by: H. Peter Anvin <hpa@zytor.com>
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@ -11,7 +11,7 @@ DECLARE_PER_CPU(struct task_struct *, current_task);
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static __always_inline struct task_struct *get_current(void)
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{
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return percpu_read(current_task);
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return percpu_read_stable(current_task);
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}
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#define current get_current()
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@ -49,7 +49,7 @@
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#define __percpu_arg(x) "%%"__stringify(__percpu_seg)":%P" #x
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#define __my_cpu_offset percpu_read(this_cpu_off)
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#else
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#define __percpu_arg(x) "%" #x
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#define __percpu_arg(x) "%P" #x
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#endif
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/*
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@ -104,36 +104,48 @@ do { \
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} \
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} while (0)
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#define percpu_from_op(op, var) \
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#define percpu_from_op(op, var, constraint) \
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({ \
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typeof(var) ret__; \
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switch (sizeof(var)) { \
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case 1: \
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asm(op "b "__percpu_arg(1)",%0" \
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: "=q" (ret__) \
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: "m" (var)); \
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: constraint); \
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break; \
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case 2: \
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asm(op "w "__percpu_arg(1)",%0" \
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: "=r" (ret__) \
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: "m" (var)); \
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: constraint); \
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break; \
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case 4: \
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asm(op "l "__percpu_arg(1)",%0" \
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: "=r" (ret__) \
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: "m" (var)); \
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: constraint); \
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break; \
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case 8: \
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asm(op "q "__percpu_arg(1)",%0" \
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: "=r" (ret__) \
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: "m" (var)); \
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: constraint); \
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break; \
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default: __bad_percpu_size(); \
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} \
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ret__; \
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})
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#define percpu_read(var) percpu_from_op("mov", per_cpu__##var)
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/*
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* percpu_read() makes gcc load the percpu variable every time it is
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* accessed while percpu_read_stable() allows the value to be cached.
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* percpu_read_stable() is more efficient and can be used if its value
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* is guaranteed to be valid across cpus. The current users include
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* get_current() and get_thread_info() both of which are actually
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* per-thread variables implemented as per-cpu variables and thus
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* stable for the duration of the respective task.
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*/
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#define percpu_read(var) percpu_from_op("mov", per_cpu__##var, \
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"m" (per_cpu__##var))
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#define percpu_read_stable(var) percpu_from_op("mov", per_cpu__##var, \
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"p" (&per_cpu__##var))
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#define percpu_write(var, val) percpu_to_op("mov", per_cpu__##var, val)
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#define percpu_add(var, val) percpu_to_op("add", per_cpu__##var, val)
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#define percpu_sub(var, val) percpu_to_op("sub", per_cpu__##var, val)
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@ -213,7 +213,7 @@ DECLARE_PER_CPU(unsigned long, kernel_stack);
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static inline struct thread_info *current_thread_info(void)
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{
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struct thread_info *ti;
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ti = (void *)(percpu_read(kernel_stack) +
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ti = (void *)(percpu_read_stable(kernel_stack) +
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KERNEL_STACK_OFFSET - THREAD_SIZE);
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return ti;
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}
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