959826ca1b
vendor provided pmu-events tables and sundry cleanups. The vendor pmu-events tables provide counter descriptions, default sample rates, event, umask, and flag values for all the counter configuration permutations. Using this gives us: - much simpler kernel code for the MD component - helpful long and short event descriptions - simpler user code - sample rates that won't overload the system Update man page with newer sample types and remove unused sample type.
458 lines
11 KiB
C
458 lines
11 KiB
C
/*-
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* Copyright (c) 2010 Isilon Systems, Inc.
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* Copyright (c) 2010 iX Systems, Inc.
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* Copyright (c) 2010 Panasas, Inc.
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* Copyright (c) 2013-2016 Mellanox Technologies, Ltd.
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice unmodified, this list of conditions, and the following
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* disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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* IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*
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* $FreeBSD$
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*/
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#ifndef _LINUX_LIST_H_
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#define _LINUX_LIST_H_
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#define container_of(ptr, type, member) \
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({ \
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const __typeof(((type *)0)->member) *__p = (ptr); \
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(type *)((uintptr_t)__p - offsetof(type, member)); \
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})
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#define LINUX_LIST_HEAD_INIT(name) { &(name), &(name) }
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#define LINUX_LIST_HEAD(name) \
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struct list_head name = LINUX_LIST_HEAD_INIT(name)
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#ifndef LIST_HEAD_DEF
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#define LIST_HEAD_DEF
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struct list_head {
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struct list_head *next;
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struct list_head *prev;
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};
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#endif
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#define barrier() __asm__ __volatile__("": : :"memory")
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#define ACCESS_ONCE(x) (*(volatile __typeof(x) *)&(x))
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#define WRITE_ONCE(x,v) do { \
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barrier(); \
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ACCESS_ONCE(x) = (v); \
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barrier(); \
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} while (0)
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#define READ_ONCE(x) ({ \
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__typeof(x) __var = ({ \
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barrier(); \
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ACCESS_ONCE(x); \
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}); \
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barrier(); \
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__var; \
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})
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static inline void
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INIT_LIST_HEAD(struct list_head *list)
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{
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list->next = list->prev = list;
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}
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static inline int
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list_empty(const struct list_head *head)
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{
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return (head->next == head);
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}
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static inline int
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list_empty_careful(const struct list_head *head)
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{
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struct list_head *next = head->next;
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return ((next == head) && (next == head->prev));
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}
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static inline void
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__list_del(struct list_head *prev, struct list_head *next)
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{
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next->prev = prev;
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WRITE_ONCE(prev->next, next);
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}
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static inline void
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__list_del_entry(struct list_head *entry)
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{
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__list_del(entry->prev, entry->next);
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}
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static inline void
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list_del(struct list_head *entry)
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{
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__list_del(entry->prev, entry->next);
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}
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static inline void
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list_replace(struct list_head *old, struct list_head *new)
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{
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new->next = old->next;
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new->next->prev = new;
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new->prev = old->prev;
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new->prev->next = new;
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}
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static inline void
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list_replace_init(struct list_head *old, struct list_head *new)
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{
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list_replace(old, new);
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INIT_LIST_HEAD(old);
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}
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static inline void
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linux_list_add(struct list_head *new, struct list_head *prev,
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struct list_head *next)
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{
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next->prev = new;
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new->next = next;
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new->prev = prev;
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prev->next = new;
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}
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static inline void
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list_del_init(struct list_head *entry)
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{
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list_del(entry);
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INIT_LIST_HEAD(entry);
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}
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#define list_entry(ptr, type, field) container_of(ptr, type, field)
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#define list_first_entry(ptr, type, member) \
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list_entry((ptr)->next, type, member)
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#define list_last_entry(ptr, type, member) \
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list_entry((ptr)->prev, type, member)
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#define list_first_entry_or_null(ptr, type, member) \
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(!list_empty(ptr) ? list_first_entry(ptr, type, member) : NULL)
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#define list_next_entry(ptr, member) \
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list_entry(((ptr)->member.next), typeof(*(ptr)), member)
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#define list_safe_reset_next(ptr, n, member) \
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(n) = list_next_entry(ptr, member)
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#define list_prev_entry(ptr, member) \
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list_entry(((ptr)->member.prev), typeof(*(ptr)), member)
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#define list_for_each(p, head) \
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for (p = (head)->next; p != (head); p = (p)->next)
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#define list_for_each_safe(p, n, head) \
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for (p = (head)->next, n = (p)->next; p != (head); p = n, n = (p)->next)
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#define list_for_each_entry(p, h, field) \
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for (p = list_entry((h)->next, typeof(*p), field); &(p)->field != (h); \
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p = list_entry((p)->field.next, typeof(*p), field))
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#define list_for_each_entry_safe(p, n, h, field) \
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for (p = list_entry((h)->next, typeof(*p), field), \
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n = list_entry((p)->field.next, typeof(*p), field); &(p)->field != (h);\
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p = n, n = list_entry(n->field.next, typeof(*n), field))
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#define list_for_each_entry_from(p, h, field) \
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for ( ; &(p)->field != (h); \
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p = list_entry((p)->field.next, typeof(*p), field))
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#define list_for_each_entry_continue(p, h, field) \
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for (p = list_next_entry((p), field); &(p)->field != (h); \
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p = list_next_entry((p), field))
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#define list_for_each_entry_safe_from(pos, n, head, member) \
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for (n = list_entry((pos)->member.next, typeof(*pos), member); \
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&(pos)->member != (head); \
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pos = n, n = list_entry(n->member.next, typeof(*n), member))
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#define list_for_each_entry_reverse(p, h, field) \
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for (p = list_entry((h)->prev, typeof(*p), field); &(p)->field != (h); \
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p = list_entry((p)->field.prev, typeof(*p), field))
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#define list_for_each_entry_safe_reverse(p, n, h, field) \
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for (p = list_entry((h)->prev, typeof(*p), field), \
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n = list_entry((p)->field.prev, typeof(*p), field); &(p)->field != (h); \
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p = n, n = list_entry(n->field.prev, typeof(*n), field))
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#define list_for_each_entry_continue_reverse(p, h, field) \
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for (p = list_entry((p)->field.prev, typeof(*p), field); &(p)->field != (h); \
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p = list_entry((p)->field.prev, typeof(*p), field))
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#define list_for_each_prev(p, h) for (p = (h)->prev; p != (h); p = (p)->prev)
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static inline void
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list_add(struct list_head *new, struct list_head *head)
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{
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linux_list_add(new, head, head->next);
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}
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static inline void
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list_add_tail(struct list_head *new, struct list_head *head)
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{
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linux_list_add(new, head->prev, head);
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}
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static inline void
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list_move(struct list_head *list, struct list_head *head)
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{
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list_del(list);
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list_add(list, head);
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}
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static inline void
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list_move_tail(struct list_head *entry, struct list_head *head)
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{
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list_del(entry);
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list_add_tail(entry, head);
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}
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static inline void
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linux_list_splice(const struct list_head *list, struct list_head *prev,
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struct list_head *next)
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{
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struct list_head *first;
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struct list_head *last;
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if (list_empty(list))
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return;
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first = list->next;
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last = list->prev;
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first->prev = prev;
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prev->next = first;
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last->next = next;
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next->prev = last;
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}
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static inline void
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list_splice(const struct list_head *list, struct list_head *head)
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{
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linux_list_splice(list, head, head->next);
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}
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static inline void
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list_splice_tail(struct list_head *list, struct list_head *head)
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{
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linux_list_splice(list, head->prev, head);
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}
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static inline void
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list_splice_init(struct list_head *list, struct list_head *head)
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{
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linux_list_splice(list, head, head->next);
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INIT_LIST_HEAD(list);
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}
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static inline void
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list_splice_tail_init(struct list_head *list, struct list_head *head)
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{
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linux_list_splice(list, head->prev, head);
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INIT_LIST_HEAD(list);
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}
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#undef LIST_HEAD
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#define LIST_HEAD(name) struct list_head name = { &(name), &(name) }
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struct hlist_head {
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struct hlist_node *first;
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};
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struct hlist_node {
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struct hlist_node *next, **pprev;
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};
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#define HLIST_HEAD_INIT { }
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#define HLIST_HEAD(name) struct hlist_head name = HLIST_HEAD_INIT
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#define INIT_HLIST_HEAD(head) (head)->first = NULL
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#define INIT_HLIST_NODE(node) \
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do { \
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(node)->next = NULL; \
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(node)->pprev = NULL; \
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} while (0)
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static inline int
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hlist_unhashed(const struct hlist_node *h)
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{
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return !h->pprev;
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}
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static inline int
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hlist_empty(const struct hlist_head *h)
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{
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return !h->first;
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}
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static inline void
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hlist_del(struct hlist_node *n)
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{
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if (n->next)
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n->next->pprev = n->pprev;
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*n->pprev = n->next;
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}
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static inline void
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hlist_del_init(struct hlist_node *n)
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{
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if (hlist_unhashed(n))
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return;
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hlist_del(n);
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INIT_HLIST_NODE(n);
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}
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static inline void
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hlist_add_head(struct hlist_node *n, struct hlist_head *h)
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{
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n->next = h->first;
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if (h->first)
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h->first->pprev = &n->next;
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h->first = n;
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n->pprev = &h->first;
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}
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static inline void
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hlist_add_before(struct hlist_node *n, struct hlist_node *next)
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{
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n->pprev = next->pprev;
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n->next = next;
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next->pprev = &n->next;
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*(n->pprev) = n;
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}
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static inline void
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hlist_add_after(struct hlist_node *n, struct hlist_node *next)
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{
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next->next = n->next;
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n->next = next;
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next->pprev = &n->next;
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if (next->next)
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next->next->pprev = &next->next;
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}
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static inline void
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hlist_move_list(struct hlist_head *old, struct hlist_head *new)
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{
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new->first = old->first;
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if (new->first)
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new->first->pprev = &new->first;
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old->first = NULL;
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}
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static inline int list_is_singular(const struct list_head *head)
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{
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return !list_empty(head) && (head->next == head->prev);
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}
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static inline void __list_cut_position(struct list_head *list,
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struct list_head *head, struct list_head *entry)
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{
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struct list_head *new_first = entry->next;
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list->next = head->next;
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list->next->prev = list;
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list->prev = entry;
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entry->next = list;
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head->next = new_first;
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new_first->prev = head;
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}
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static inline void list_cut_position(struct list_head *list,
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struct list_head *head, struct list_head *entry)
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{
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if (list_empty(head))
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return;
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if (list_is_singular(head) &&
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(head->next != entry && head != entry))
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return;
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if (entry == head)
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INIT_LIST_HEAD(list);
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else
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__list_cut_position(list, head, entry);
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}
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static inline int list_is_last(const struct list_head *list,
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const struct list_head *head)
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{
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return list->next == head;
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}
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#define hlist_entry(ptr, type, field) container_of(ptr, type, field)
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#define hlist_for_each(p, head) \
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for (p = (head)->first; p; p = (p)->next)
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#define hlist_for_each_safe(p, n, head) \
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for (p = (head)->first; p && ({ n = (p)->next; 1; }); p = n)
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#define hlist_entry_safe(ptr, type, member) \
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((ptr) ? hlist_entry(ptr, type, member) : NULL)
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#define hlist_for_each_entry(pos, head, member) \
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for (pos = hlist_entry_safe((head)->first, typeof(*(pos)), member);\
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pos; \
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pos = hlist_entry_safe((pos)->member.next, typeof(*(pos)), member))
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#define hlist_for_each_entry_continue(pos, member) \
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for (pos = hlist_entry_safe((pos)->member.next, typeof(*(pos)), member); \
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(pos); \
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pos = hlist_entry_safe((pos)->member.next, typeof(*(pos)), member))
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#define hlist_for_each_entry_from(pos, member) \
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for (; (pos); \
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pos = hlist_entry_safe((pos)->member.next, typeof(*(pos)), member))
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#define hlist_for_each_entry_safe(pos, n, head, member) \
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for (pos = hlist_entry_safe((head)->first, typeof(*(pos)), member); \
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(pos) && ({ n = (pos)->member.next; 1; }); \
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pos = hlist_entry_safe(n, typeof(*(pos)), member))
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extern void list_sort(void *priv, struct list_head *head, int (*cmp)(void *priv,
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struct list_head *a, struct list_head *b));
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#endif /* _LINUX_LIST_H_ */
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