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@@ -23,32 +23,6 @@
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PERCPU_MODULE_RESERVE)
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#endif
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-/*
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- * Must be an lvalue. Since @var must be a simple identifier,
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- * we force a syntax error here if it isn't.
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- */
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-#define get_cpu_var(var) (*({ \
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- preempt_disable(); \
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- this_cpu_ptr(&var); }))
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-
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-/*
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- * The weird & is necessary because sparse considers (void)(var) to be
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- * a direct dereference of percpu variable (var).
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- */
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-#define put_cpu_var(var) do { \
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- (void)&(var); \
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- preempt_enable(); \
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-} while (0)
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-
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-#define get_cpu_ptr(var) ({ \
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- preempt_disable(); \
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- this_cpu_ptr(var); })
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-
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-#define put_cpu_ptr(var) do { \
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- (void)(var); \
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- preempt_enable(); \
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-} while (0)
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-
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/* minimum unit size, also is the maximum supported allocation size */
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#define PCPU_MIN_UNIT_SIZE PFN_ALIGN(32 << 10)
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@@ -140,17 +114,6 @@ extern int __init pcpu_page_first_chunk(size_t reserved_size,
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pcpu_fc_populate_pte_fn_t populate_pte_fn);
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#endif
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-/*
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- * Use this to get to a cpu's version of the per-cpu object
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- * dynamically allocated. Non-atomic access to the current CPU's
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- * version should probably be combined with get_cpu()/put_cpu().
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- */
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-#ifdef CONFIG_SMP
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-#define per_cpu_ptr(ptr, cpu) SHIFT_PERCPU_PTR((ptr), per_cpu_offset((cpu)))
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-#else
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-#define per_cpu_ptr(ptr, cpu) ({ (void)(cpu); VERIFY_PERCPU_PTR((ptr)); })
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-#endif
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-
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extern void __percpu *__alloc_reserved_percpu(size_t size, size_t align);
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extern bool is_kernel_percpu_address(unsigned long addr);
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@@ -166,640 +129,4 @@ extern phys_addr_t per_cpu_ptr_to_phys(void *addr);
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#define alloc_percpu(type) \
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(typeof(type) __percpu *)__alloc_percpu(sizeof(type), __alignof__(type))
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-/*
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- * Branching function to split up a function into a set of functions that
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- * are called for different scalar sizes of the objects handled.
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- */
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-
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-extern void __bad_size_call_parameter(void);
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-
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-#ifdef CONFIG_DEBUG_PREEMPT
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-extern void __this_cpu_preempt_check(const char *op);
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-#else
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-static inline void __this_cpu_preempt_check(const char *op) { }
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-#endif
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-
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-#define __pcpu_size_call_return(stem, variable) \
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-({ typeof(variable) pscr_ret__; \
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- __verify_pcpu_ptr(&(variable)); \
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- switch(sizeof(variable)) { \
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- case 1: pscr_ret__ = stem##1(variable);break; \
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- case 2: pscr_ret__ = stem##2(variable);break; \
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- case 4: pscr_ret__ = stem##4(variable);break; \
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- case 8: pscr_ret__ = stem##8(variable);break; \
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- default: \
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- __bad_size_call_parameter();break; \
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- } \
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- pscr_ret__; \
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-})
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-
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-#define __pcpu_size_call_return2(stem, variable, ...) \
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-({ \
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- typeof(variable) pscr2_ret__; \
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- __verify_pcpu_ptr(&(variable)); \
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- switch(sizeof(variable)) { \
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- case 1: pscr2_ret__ = stem##1(variable, __VA_ARGS__); break; \
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- case 2: pscr2_ret__ = stem##2(variable, __VA_ARGS__); break; \
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- case 4: pscr2_ret__ = stem##4(variable, __VA_ARGS__); break; \
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- case 8: pscr2_ret__ = stem##8(variable, __VA_ARGS__); break; \
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- default: \
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- __bad_size_call_parameter(); break; \
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- } \
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- pscr2_ret__; \
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-})
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-
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-/*
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- * Special handling for cmpxchg_double. cmpxchg_double is passed two
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- * percpu variables. The first has to be aligned to a double word
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- * boundary and the second has to follow directly thereafter.
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- * We enforce this on all architectures even if they don't support
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- * a double cmpxchg instruction, since it's a cheap requirement, and it
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- * avoids breaking the requirement for architectures with the instruction.
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- */
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-#define __pcpu_double_call_return_bool(stem, pcp1, pcp2, ...) \
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-({ \
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- bool pdcrb_ret__; \
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- __verify_pcpu_ptr(&pcp1); \
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- BUILD_BUG_ON(sizeof(pcp1) != sizeof(pcp2)); \
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- VM_BUG_ON((unsigned long)(&pcp1) % (2 * sizeof(pcp1))); \
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- VM_BUG_ON((unsigned long)(&pcp2) != \
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- (unsigned long)(&pcp1) + sizeof(pcp1)); \
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- switch(sizeof(pcp1)) { \
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- case 1: pdcrb_ret__ = stem##1(pcp1, pcp2, __VA_ARGS__); break; \
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- case 2: pdcrb_ret__ = stem##2(pcp1, pcp2, __VA_ARGS__); break; \
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- case 4: pdcrb_ret__ = stem##4(pcp1, pcp2, __VA_ARGS__); break; \
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- case 8: pdcrb_ret__ = stem##8(pcp1, pcp2, __VA_ARGS__); break; \
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- default: \
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- __bad_size_call_parameter(); break; \
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- } \
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- pdcrb_ret__; \
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-})
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-
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-#define __pcpu_size_call(stem, variable, ...) \
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-do { \
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- __verify_pcpu_ptr(&(variable)); \
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- switch(sizeof(variable)) { \
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- case 1: stem##1(variable, __VA_ARGS__);break; \
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- case 2: stem##2(variable, __VA_ARGS__);break; \
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- case 4: stem##4(variable, __VA_ARGS__);break; \
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- case 8: stem##8(variable, __VA_ARGS__);break; \
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- default: \
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- __bad_size_call_parameter();break; \
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- } \
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-} while (0)
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-
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-/*
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- * this_cpu operations (C) 2008-2013 Christoph Lameter <cl@linux.com>
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- *
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- * Optimized manipulation for memory allocated through the per cpu
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- * allocator or for addresses of per cpu variables.
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- *
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- * These operation guarantee exclusivity of access for other operations
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- * on the *same* processor. The assumption is that per cpu data is only
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- * accessed by a single processor instance (the current one).
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- *
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- * The first group is used for accesses that must be done in a
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- * preemption safe way since we know that the context is not preempt
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- * safe. Interrupts may occur. If the interrupt modifies the variable
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- * too then RMW actions will not be reliable.
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- *
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- * The arch code can provide optimized functions in two ways:
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- *
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- * 1. Override the function completely. F.e. define this_cpu_add().
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- * The arch must then ensure that the various scalar format passed
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- * are handled correctly.
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- *
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- * 2. Provide functions for certain scalar sizes. F.e. provide
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- * this_cpu_add_2() to provide per cpu atomic operations for 2 byte
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- * sized RMW actions. If arch code does not provide operations for
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- * a scalar size then the fallback in the generic code will be
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- * used.
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- */
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-
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-#define _this_cpu_generic_read(pcp) \
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-({ typeof(pcp) ret__; \
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- preempt_disable(); \
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- ret__ = *this_cpu_ptr(&(pcp)); \
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- preempt_enable(); \
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- ret__; \
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-})
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-
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-#ifndef this_cpu_read
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-# ifndef this_cpu_read_1
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-# define this_cpu_read_1(pcp) _this_cpu_generic_read(pcp)
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-# endif
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-# ifndef this_cpu_read_2
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-# define this_cpu_read_2(pcp) _this_cpu_generic_read(pcp)
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-# endif
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-# ifndef this_cpu_read_4
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-# define this_cpu_read_4(pcp) _this_cpu_generic_read(pcp)
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-# endif
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-# ifndef this_cpu_read_8
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-# define this_cpu_read_8(pcp) _this_cpu_generic_read(pcp)
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-# endif
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-# define this_cpu_read(pcp) __pcpu_size_call_return(this_cpu_read_, (pcp))
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-#endif
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-
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-#define _this_cpu_generic_to_op(pcp, val, op) \
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-do { \
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- unsigned long flags; \
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- raw_local_irq_save(flags); \
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- *raw_cpu_ptr(&(pcp)) op val; \
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- raw_local_irq_restore(flags); \
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-} while (0)
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-
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-#ifndef this_cpu_write
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-# ifndef this_cpu_write_1
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-# define this_cpu_write_1(pcp, val) _this_cpu_generic_to_op((pcp), (val), =)
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-# endif
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-# ifndef this_cpu_write_2
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-# define this_cpu_write_2(pcp, val) _this_cpu_generic_to_op((pcp), (val), =)
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-# endif
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-# ifndef this_cpu_write_4
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-# define this_cpu_write_4(pcp, val) _this_cpu_generic_to_op((pcp), (val), =)
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-# endif
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-# ifndef this_cpu_write_8
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-# define this_cpu_write_8(pcp, val) _this_cpu_generic_to_op((pcp), (val), =)
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-# endif
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-# define this_cpu_write(pcp, val) __pcpu_size_call(this_cpu_write_, (pcp), (val))
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-#endif
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-
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-#ifndef this_cpu_add
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-# ifndef this_cpu_add_1
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-# define this_cpu_add_1(pcp, val) _this_cpu_generic_to_op((pcp), (val), +=)
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-# endif
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-# ifndef this_cpu_add_2
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-# define this_cpu_add_2(pcp, val) _this_cpu_generic_to_op((pcp), (val), +=)
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-# endif
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-# ifndef this_cpu_add_4
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-# define this_cpu_add_4(pcp, val) _this_cpu_generic_to_op((pcp), (val), +=)
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-# endif
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-# ifndef this_cpu_add_8
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-# define this_cpu_add_8(pcp, val) _this_cpu_generic_to_op((pcp), (val), +=)
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-# endif
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-# define this_cpu_add(pcp, val) __pcpu_size_call(this_cpu_add_, (pcp), (val))
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-#endif
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-
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-#ifndef this_cpu_sub
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-# define this_cpu_sub(pcp, val) this_cpu_add((pcp), -(typeof(pcp))(val))
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-#endif
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-
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-#ifndef this_cpu_inc
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-# define this_cpu_inc(pcp) this_cpu_add((pcp), 1)
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-#endif
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-
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-#ifndef this_cpu_dec
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-# define this_cpu_dec(pcp) this_cpu_sub((pcp), 1)
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-#endif
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-
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-#ifndef this_cpu_and
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-# ifndef this_cpu_and_1
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-# define this_cpu_and_1(pcp, val) _this_cpu_generic_to_op((pcp), (val), &=)
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-# endif
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-# ifndef this_cpu_and_2
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-# define this_cpu_and_2(pcp, val) _this_cpu_generic_to_op((pcp), (val), &=)
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-# endif
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-# ifndef this_cpu_and_4
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-# define this_cpu_and_4(pcp, val) _this_cpu_generic_to_op((pcp), (val), &=)
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-# endif
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-# ifndef this_cpu_and_8
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-# define this_cpu_and_8(pcp, val) _this_cpu_generic_to_op((pcp), (val), &=)
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-# endif
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-# define this_cpu_and(pcp, val) __pcpu_size_call(this_cpu_and_, (pcp), (val))
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-#endif
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-
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-#ifndef this_cpu_or
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-# ifndef this_cpu_or_1
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-# define this_cpu_or_1(pcp, val) _this_cpu_generic_to_op((pcp), (val), |=)
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-# endif
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-# ifndef this_cpu_or_2
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-# define this_cpu_or_2(pcp, val) _this_cpu_generic_to_op((pcp), (val), |=)
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-# endif
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-# ifndef this_cpu_or_4
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-# define this_cpu_or_4(pcp, val) _this_cpu_generic_to_op((pcp), (val), |=)
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-# endif
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-# ifndef this_cpu_or_8
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-# define this_cpu_or_8(pcp, val) _this_cpu_generic_to_op((pcp), (val), |=)
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-# endif
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-# define this_cpu_or(pcp, val) __pcpu_size_call(this_cpu_or_, (pcp), (val))
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-#endif
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-
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-#define _this_cpu_generic_add_return(pcp, val) \
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-({ \
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- typeof(pcp) ret__; \
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- unsigned long flags; \
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- raw_local_irq_save(flags); \
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- raw_cpu_add(pcp, val); \
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- ret__ = raw_cpu_read(pcp); \
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- raw_local_irq_restore(flags); \
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- ret__; \
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-})
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-
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-#ifndef this_cpu_add_return
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-# ifndef this_cpu_add_return_1
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-# define this_cpu_add_return_1(pcp, val) _this_cpu_generic_add_return(pcp, val)
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-# endif
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-# ifndef this_cpu_add_return_2
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-# define this_cpu_add_return_2(pcp, val) _this_cpu_generic_add_return(pcp, val)
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-# endif
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-# ifndef this_cpu_add_return_4
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-# define this_cpu_add_return_4(pcp, val) _this_cpu_generic_add_return(pcp, val)
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-# endif
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-# ifndef this_cpu_add_return_8
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-# define this_cpu_add_return_8(pcp, val) _this_cpu_generic_add_return(pcp, val)
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-# endif
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-# define this_cpu_add_return(pcp, val) __pcpu_size_call_return2(this_cpu_add_return_, pcp, val)
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-#endif
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-
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-#define this_cpu_sub_return(pcp, val) this_cpu_add_return(pcp, -(typeof(pcp))(val))
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-#define this_cpu_inc_return(pcp) this_cpu_add_return(pcp, 1)
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-#define this_cpu_dec_return(pcp) this_cpu_add_return(pcp, -1)
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-
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-#define _this_cpu_generic_xchg(pcp, nval) \
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-({ typeof(pcp) ret__; \
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- unsigned long flags; \
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- raw_local_irq_save(flags); \
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- ret__ = raw_cpu_read(pcp); \
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- raw_cpu_write(pcp, nval); \
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- raw_local_irq_restore(flags); \
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- ret__; \
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-})
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-
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-#ifndef this_cpu_xchg
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-# ifndef this_cpu_xchg_1
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-# define this_cpu_xchg_1(pcp, nval) _this_cpu_generic_xchg(pcp, nval)
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-# endif
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-# ifndef this_cpu_xchg_2
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-# define this_cpu_xchg_2(pcp, nval) _this_cpu_generic_xchg(pcp, nval)
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-# endif
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-# ifndef this_cpu_xchg_4
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-# define this_cpu_xchg_4(pcp, nval) _this_cpu_generic_xchg(pcp, nval)
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-# endif
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-# ifndef this_cpu_xchg_8
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-# define this_cpu_xchg_8(pcp, nval) _this_cpu_generic_xchg(pcp, nval)
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-# endif
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-# define this_cpu_xchg(pcp, nval) \
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- __pcpu_size_call_return2(this_cpu_xchg_, (pcp), nval)
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-#endif
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-
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-#define _this_cpu_generic_cmpxchg(pcp, oval, nval) \
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-({ \
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- typeof(pcp) ret__; \
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- unsigned long flags; \
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- raw_local_irq_save(flags); \
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- ret__ = raw_cpu_read(pcp); \
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- if (ret__ == (oval)) \
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- raw_cpu_write(pcp, nval); \
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- raw_local_irq_restore(flags); \
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- ret__; \
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-})
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-
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-#ifndef this_cpu_cmpxchg
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-# ifndef this_cpu_cmpxchg_1
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-# define this_cpu_cmpxchg_1(pcp, oval, nval) _this_cpu_generic_cmpxchg(pcp, oval, nval)
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-# endif
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-# ifndef this_cpu_cmpxchg_2
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-# define this_cpu_cmpxchg_2(pcp, oval, nval) _this_cpu_generic_cmpxchg(pcp, oval, nval)
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-# endif
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-# ifndef this_cpu_cmpxchg_4
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-# define this_cpu_cmpxchg_4(pcp, oval, nval) _this_cpu_generic_cmpxchg(pcp, oval, nval)
|
|
|
-# endif
|
|
|
-# ifndef this_cpu_cmpxchg_8
|
|
|
-# define this_cpu_cmpxchg_8(pcp, oval, nval) _this_cpu_generic_cmpxchg(pcp, oval, nval)
|
|
|
-# endif
|
|
|
-# define this_cpu_cmpxchg(pcp, oval, nval) \
|
|
|
- __pcpu_size_call_return2(this_cpu_cmpxchg_, pcp, oval, nval)
|
|
|
-#endif
|
|
|
-
|
|
|
-/*
|
|
|
- * cmpxchg_double replaces two adjacent scalars at once. The first
|
|
|
- * two parameters are per cpu variables which have to be of the same
|
|
|
- * size. A truth value is returned to indicate success or failure
|
|
|
- * (since a double register result is difficult to handle). There is
|
|
|
- * very limited hardware support for these operations, so only certain
|
|
|
- * sizes may work.
|
|
|
- */
|
|
|
-#define _this_cpu_generic_cmpxchg_double(pcp1, pcp2, oval1, oval2, nval1, nval2) \
|
|
|
-({ \
|
|
|
- int ret__; \
|
|
|
- unsigned long flags; \
|
|
|
- raw_local_irq_save(flags); \
|
|
|
- ret__ = raw_cpu_generic_cmpxchg_double(pcp1, pcp2, \
|
|
|
- oval1, oval2, nval1, nval2); \
|
|
|
- raw_local_irq_restore(flags); \
|
|
|
- ret__; \
|
|
|
-})
|
|
|
-
|
|
|
-#ifndef this_cpu_cmpxchg_double
|
|
|
-# ifndef this_cpu_cmpxchg_double_1
|
|
|
-# define this_cpu_cmpxchg_double_1(pcp1, pcp2, oval1, oval2, nval1, nval2) \
|
|
|
- _this_cpu_generic_cmpxchg_double(pcp1, pcp2, oval1, oval2, nval1, nval2)
|
|
|
-# endif
|
|
|
-# ifndef this_cpu_cmpxchg_double_2
|
|
|
-# define this_cpu_cmpxchg_double_2(pcp1, pcp2, oval1, oval2, nval1, nval2) \
|
|
|
- _this_cpu_generic_cmpxchg_double(pcp1, pcp2, oval1, oval2, nval1, nval2)
|
|
|
-# endif
|
|
|
-# ifndef this_cpu_cmpxchg_double_4
|
|
|
-# define this_cpu_cmpxchg_double_4(pcp1, pcp2, oval1, oval2, nval1, nval2) \
|
|
|
- _this_cpu_generic_cmpxchg_double(pcp1, pcp2, oval1, oval2, nval1, nval2)
|
|
|
-# endif
|
|
|
-# ifndef this_cpu_cmpxchg_double_8
|
|
|
-# define this_cpu_cmpxchg_double_8(pcp1, pcp2, oval1, oval2, nval1, nval2) \
|
|
|
- _this_cpu_generic_cmpxchg_double(pcp1, pcp2, oval1, oval2, nval1, nval2)
|
|
|
-# endif
|
|
|
-# define this_cpu_cmpxchg_double(pcp1, pcp2, oval1, oval2, nval1, nval2) \
|
|
|
- __pcpu_double_call_return_bool(this_cpu_cmpxchg_double_, (pcp1), (pcp2), (oval1), (oval2), (nval1), (nval2))
|
|
|
-#endif
|
|
|
-
|
|
|
-/*
|
|
|
- * Generic percpu operations for contexts where we do not want to do
|
|
|
- * any checks for preemptiosn.
|
|
|
- *
|
|
|
- * If there is no other protection through preempt disable and/or
|
|
|
- * disabling interupts then one of these RMW operations can show unexpected
|
|
|
- * behavior because the execution thread was rescheduled on another processor
|
|
|
- * or an interrupt occurred and the same percpu variable was modified from
|
|
|
- * the interrupt context.
|
|
|
- */
|
|
|
-#ifndef raw_cpu_read
|
|
|
-# ifndef raw_cpu_read_1
|
|
|
-# define raw_cpu_read_1(pcp) (*raw_cpu_ptr(&(pcp)))
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_read_2
|
|
|
-# define raw_cpu_read_2(pcp) (*raw_cpu_ptr(&(pcp)))
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_read_4
|
|
|
-# define raw_cpu_read_4(pcp) (*raw_cpu_ptr(&(pcp)))
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_read_8
|
|
|
-# define raw_cpu_read_8(pcp) (*raw_cpu_ptr(&(pcp)))
|
|
|
-# endif
|
|
|
-# define raw_cpu_read(pcp) __pcpu_size_call_return(raw_cpu_read_, (pcp))
|
|
|
-#endif
|
|
|
-
|
|
|
-#define raw_cpu_generic_to_op(pcp, val, op) \
|
|
|
-do { \
|
|
|
- *raw_cpu_ptr(&(pcp)) op val; \
|
|
|
-} while (0)
|
|
|
-
|
|
|
-
|
|
|
-#ifndef raw_cpu_write
|
|
|
-# ifndef raw_cpu_write_1
|
|
|
-# define raw_cpu_write_1(pcp, val) raw_cpu_generic_to_op((pcp), (val), =)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_write_2
|
|
|
-# define raw_cpu_write_2(pcp, val) raw_cpu_generic_to_op((pcp), (val), =)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_write_4
|
|
|
-# define raw_cpu_write_4(pcp, val) raw_cpu_generic_to_op((pcp), (val), =)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_write_8
|
|
|
-# define raw_cpu_write_8(pcp, val) raw_cpu_generic_to_op((pcp), (val), =)
|
|
|
-# endif
|
|
|
-# define raw_cpu_write(pcp, val) __pcpu_size_call(raw_cpu_write_, (pcp), (val))
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef raw_cpu_add
|
|
|
-# ifndef raw_cpu_add_1
|
|
|
-# define raw_cpu_add_1(pcp, val) raw_cpu_generic_to_op((pcp), (val), +=)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_add_2
|
|
|
-# define raw_cpu_add_2(pcp, val) raw_cpu_generic_to_op((pcp), (val), +=)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_add_4
|
|
|
-# define raw_cpu_add_4(pcp, val) raw_cpu_generic_to_op((pcp), (val), +=)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_add_8
|
|
|
-# define raw_cpu_add_8(pcp, val) raw_cpu_generic_to_op((pcp), (val), +=)
|
|
|
-# endif
|
|
|
-# define raw_cpu_add(pcp, val) __pcpu_size_call(raw_cpu_add_, (pcp), (val))
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef raw_cpu_sub
|
|
|
-# define raw_cpu_sub(pcp, val) raw_cpu_add((pcp), -(val))
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef raw_cpu_inc
|
|
|
-# define raw_cpu_inc(pcp) raw_cpu_add((pcp), 1)
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef raw_cpu_dec
|
|
|
-# define raw_cpu_dec(pcp) raw_cpu_sub((pcp), 1)
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef raw_cpu_and
|
|
|
-# ifndef raw_cpu_and_1
|
|
|
-# define raw_cpu_and_1(pcp, val) raw_cpu_generic_to_op((pcp), (val), &=)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_and_2
|
|
|
-# define raw_cpu_and_2(pcp, val) raw_cpu_generic_to_op((pcp), (val), &=)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_and_4
|
|
|
-# define raw_cpu_and_4(pcp, val) raw_cpu_generic_to_op((pcp), (val), &=)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_and_8
|
|
|
-# define raw_cpu_and_8(pcp, val) raw_cpu_generic_to_op((pcp), (val), &=)
|
|
|
-# endif
|
|
|
-# define raw_cpu_and(pcp, val) __pcpu_size_call(raw_cpu_and_, (pcp), (val))
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef raw_cpu_or
|
|
|
-# ifndef raw_cpu_or_1
|
|
|
-# define raw_cpu_or_1(pcp, val) raw_cpu_generic_to_op((pcp), (val), |=)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_or_2
|
|
|
-# define raw_cpu_or_2(pcp, val) raw_cpu_generic_to_op((pcp), (val), |=)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_or_4
|
|
|
-# define raw_cpu_or_4(pcp, val) raw_cpu_generic_to_op((pcp), (val), |=)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_or_8
|
|
|
-# define raw_cpu_or_8(pcp, val) raw_cpu_generic_to_op((pcp), (val), |=)
|
|
|
-# endif
|
|
|
-# define raw_cpu_or(pcp, val) __pcpu_size_call(raw_cpu_or_, (pcp), (val))
|
|
|
-#endif
|
|
|
-
|
|
|
-#define raw_cpu_generic_add_return(pcp, val) \
|
|
|
-({ \
|
|
|
- raw_cpu_add(pcp, val); \
|
|
|
- raw_cpu_read(pcp); \
|
|
|
-})
|
|
|
-
|
|
|
-#ifndef raw_cpu_add_return
|
|
|
-# ifndef raw_cpu_add_return_1
|
|
|
-# define raw_cpu_add_return_1(pcp, val) raw_cpu_generic_add_return(pcp, val)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_add_return_2
|
|
|
-# define raw_cpu_add_return_2(pcp, val) raw_cpu_generic_add_return(pcp, val)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_add_return_4
|
|
|
-# define raw_cpu_add_return_4(pcp, val) raw_cpu_generic_add_return(pcp, val)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_add_return_8
|
|
|
-# define raw_cpu_add_return_8(pcp, val) raw_cpu_generic_add_return(pcp, val)
|
|
|
-# endif
|
|
|
-# define raw_cpu_add_return(pcp, val) \
|
|
|
- __pcpu_size_call_return2(raw_cpu_add_return_, pcp, val)
|
|
|
-#endif
|
|
|
-
|
|
|
-#define raw_cpu_sub_return(pcp, val) raw_cpu_add_return(pcp, -(typeof(pcp))(val))
|
|
|
-#define raw_cpu_inc_return(pcp) raw_cpu_add_return(pcp, 1)
|
|
|
-#define raw_cpu_dec_return(pcp) raw_cpu_add_return(pcp, -1)
|
|
|
-
|
|
|
-#define raw_cpu_generic_xchg(pcp, nval) \
|
|
|
-({ typeof(pcp) ret__; \
|
|
|
- ret__ = raw_cpu_read(pcp); \
|
|
|
- raw_cpu_write(pcp, nval); \
|
|
|
- ret__; \
|
|
|
-})
|
|
|
-
|
|
|
-#ifndef raw_cpu_xchg
|
|
|
-# ifndef raw_cpu_xchg_1
|
|
|
-# define raw_cpu_xchg_1(pcp, nval) raw_cpu_generic_xchg(pcp, nval)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_xchg_2
|
|
|
-# define raw_cpu_xchg_2(pcp, nval) raw_cpu_generic_xchg(pcp, nval)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_xchg_4
|
|
|
-# define raw_cpu_xchg_4(pcp, nval) raw_cpu_generic_xchg(pcp, nval)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_xchg_8
|
|
|
-# define raw_cpu_xchg_8(pcp, nval) raw_cpu_generic_xchg(pcp, nval)
|
|
|
-# endif
|
|
|
-# define raw_cpu_xchg(pcp, nval) \
|
|
|
- __pcpu_size_call_return2(raw_cpu_xchg_, (pcp), nval)
|
|
|
-#endif
|
|
|
-
|
|
|
-#define raw_cpu_generic_cmpxchg(pcp, oval, nval) \
|
|
|
-({ \
|
|
|
- typeof(pcp) ret__; \
|
|
|
- ret__ = raw_cpu_read(pcp); \
|
|
|
- if (ret__ == (oval)) \
|
|
|
- raw_cpu_write(pcp, nval); \
|
|
|
- ret__; \
|
|
|
-})
|
|
|
-
|
|
|
-#ifndef raw_cpu_cmpxchg
|
|
|
-# ifndef raw_cpu_cmpxchg_1
|
|
|
-# define raw_cpu_cmpxchg_1(pcp, oval, nval) raw_cpu_generic_cmpxchg(pcp, oval, nval)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_cmpxchg_2
|
|
|
-# define raw_cpu_cmpxchg_2(pcp, oval, nval) raw_cpu_generic_cmpxchg(pcp, oval, nval)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_cmpxchg_4
|
|
|
-# define raw_cpu_cmpxchg_4(pcp, oval, nval) raw_cpu_generic_cmpxchg(pcp, oval, nval)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_cmpxchg_8
|
|
|
-# define raw_cpu_cmpxchg_8(pcp, oval, nval) raw_cpu_generic_cmpxchg(pcp, oval, nval)
|
|
|
-# endif
|
|
|
-# define raw_cpu_cmpxchg(pcp, oval, nval) \
|
|
|
- __pcpu_size_call_return2(raw_cpu_cmpxchg_, pcp, oval, nval)
|
|
|
-#endif
|
|
|
-
|
|
|
-#define raw_cpu_generic_cmpxchg_double(pcp1, pcp2, oval1, oval2, nval1, nval2) \
|
|
|
-({ \
|
|
|
- int __ret = 0; \
|
|
|
- if (raw_cpu_read(pcp1) == (oval1) && \
|
|
|
- raw_cpu_read(pcp2) == (oval2)) { \
|
|
|
- raw_cpu_write(pcp1, (nval1)); \
|
|
|
- raw_cpu_write(pcp2, (nval2)); \
|
|
|
- __ret = 1; \
|
|
|
- } \
|
|
|
- (__ret); \
|
|
|
-})
|
|
|
-
|
|
|
-#ifndef raw_cpu_cmpxchg_double
|
|
|
-# ifndef raw_cpu_cmpxchg_double_1
|
|
|
-# define raw_cpu_cmpxchg_double_1(pcp1, pcp2, oval1, oval2, nval1, nval2) \
|
|
|
- raw_cpu_generic_cmpxchg_double(pcp1, pcp2, oval1, oval2, nval1, nval2)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_cmpxchg_double_2
|
|
|
-# define raw_cpu_cmpxchg_double_2(pcp1, pcp2, oval1, oval2, nval1, nval2) \
|
|
|
- raw_cpu_generic_cmpxchg_double(pcp1, pcp2, oval1, oval2, nval1, nval2)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_cmpxchg_double_4
|
|
|
-# define raw_cpu_cmpxchg_double_4(pcp1, pcp2, oval1, oval2, nval1, nval2) \
|
|
|
- raw_cpu_generic_cmpxchg_double(pcp1, pcp2, oval1, oval2, nval1, nval2)
|
|
|
-# endif
|
|
|
-# ifndef raw_cpu_cmpxchg_double_8
|
|
|
-# define raw_cpu_cmpxchg_double_8(pcp1, pcp2, oval1, oval2, nval1, nval2) \
|
|
|
- raw_cpu_generic_cmpxchg_double(pcp1, pcp2, oval1, oval2, nval1, nval2)
|
|
|
-# endif
|
|
|
-# define raw_cpu_cmpxchg_double(pcp1, pcp2, oval1, oval2, nval1, nval2) \
|
|
|
- __pcpu_double_call_return_bool(raw_cpu_cmpxchg_double_, (pcp1), (pcp2), (oval1), (oval2), (nval1), (nval2))
|
|
|
-#endif
|
|
|
-
|
|
|
-/*
|
|
|
- * Generic percpu operations for context that are safe from preemption/interrupts.
|
|
|
- */
|
|
|
-#ifndef __this_cpu_read
|
|
|
-# define __this_cpu_read(pcp) \
|
|
|
- (__this_cpu_preempt_check("read"),__pcpu_size_call_return(raw_cpu_read_, (pcp)))
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef __this_cpu_write
|
|
|
-# define __this_cpu_write(pcp, val) \
|
|
|
-do { __this_cpu_preempt_check("write"); \
|
|
|
- __pcpu_size_call(raw_cpu_write_, (pcp), (val)); \
|
|
|
-} while (0)
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef __this_cpu_add
|
|
|
-# define __this_cpu_add(pcp, val) \
|
|
|
-do { __this_cpu_preempt_check("add"); \
|
|
|
- __pcpu_size_call(raw_cpu_add_, (pcp), (val)); \
|
|
|
-} while (0)
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef __this_cpu_sub
|
|
|
-# define __this_cpu_sub(pcp, val) __this_cpu_add((pcp), -(typeof(pcp))(val))
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef __this_cpu_inc
|
|
|
-# define __this_cpu_inc(pcp) __this_cpu_add((pcp), 1)
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef __this_cpu_dec
|
|
|
-# define __this_cpu_dec(pcp) __this_cpu_sub((pcp), 1)
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef __this_cpu_and
|
|
|
-# define __this_cpu_and(pcp, val) \
|
|
|
-do { __this_cpu_preempt_check("and"); \
|
|
|
- __pcpu_size_call(raw_cpu_and_, (pcp), (val)); \
|
|
|
-} while (0)
|
|
|
-
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef __this_cpu_or
|
|
|
-# define __this_cpu_or(pcp, val) \
|
|
|
-do { __this_cpu_preempt_check("or"); \
|
|
|
- __pcpu_size_call(raw_cpu_or_, (pcp), (val)); \
|
|
|
-} while (0)
|
|
|
-#endif
|
|
|
-
|
|
|
-#ifndef __this_cpu_add_return
|
|
|
-# define __this_cpu_add_return(pcp, val) \
|
|
|
- (__this_cpu_preempt_check("add_return"),__pcpu_size_call_return2(raw_cpu_add_return_, pcp, val))
|
|
|
-#endif
|
|
|
-
|
|
|
-#define __this_cpu_sub_return(pcp, val) __this_cpu_add_return(pcp, -(typeof(pcp))(val))
|
|
|
-#define __this_cpu_inc_return(pcp) __this_cpu_add_return(pcp, 1)
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|
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-#define __this_cpu_dec_return(pcp) __this_cpu_add_return(pcp, -1)
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-
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-#ifndef __this_cpu_xchg
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-# define __this_cpu_xchg(pcp, nval) \
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- (__this_cpu_preempt_check("xchg"),__pcpu_size_call_return2(raw_cpu_xchg_, (pcp), nval))
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-#endif
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-
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-#ifndef __this_cpu_cmpxchg
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-# define __this_cpu_cmpxchg(pcp, oval, nval) \
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- (__this_cpu_preempt_check("cmpxchg"),__pcpu_size_call_return2(raw_cpu_cmpxchg_, pcp, oval, nval))
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-#endif
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-
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-#ifndef __this_cpu_cmpxchg_double
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-# define __this_cpu_cmpxchg_double(pcp1, pcp2, oval1, oval2, nval1, nval2) \
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- (__this_cpu_preempt_check("cmpxchg_double"),__pcpu_double_call_return_bool(raw_cpu_cmpxchg_double_, (pcp1), (pcp2), (oval1), (oval2), (nval1), (nval2)))
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-#endif
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-
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#endif /* __LINUX_PERCPU_H */
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