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-
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-
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-
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-
-
-
-
-
-
-
-
- struct name { \
- struct type *slh_first; \
- }
-
-
- { NULL }
-
-
- struct { \
- struct type *sle_next; \
- }
-
-
-
-
-
-
-
-
- for((var) = SLIST_FIRST(head); \
- (var) != SLIST_END(head); \
- (var) = SLIST_NEXT(var, field))
-
-
- for ((var) = SLIST_FIRST(head); \
- (var) && ((tvar) = SLIST_NEXT(var, field), 1); \
- (var) = (tvar))
-
-
-
- SLIST_FIRST(head) = SLIST_END(head); \
- }
-
-
- (elm)->field.sle_next = (slistelm)->field.sle_next; \
- (slistelm)->field.sle_next = (elm); \
- } while (0)
-
-
- (elm)->field.sle_next = (head)->slh_first; \
- (head)->slh_first = (elm); \
- } while (0)
-
-
- (elm)->field.sle_next = (elm)->field.sle_next->field.sle_next; \
- } while (0)
-
-
- (head)->slh_first = (head)->slh_first->field.sle_next; \
- } while (0)
-
-
- if ((head)->slh_first == (elm)) { \
- SLIST_REMOVE_HEAD((head), field); \
- } else { \
- struct type *curelm = (head)->slh_first; \
- \
- while (curelm->field.sle_next != (elm)) \
- curelm = curelm->field.sle_next; \
- curelm->field.sle_next = \
- curelm->field.sle_next->field.sle_next; \
- _Q_INVALIDATE((elm)->field.sle_next); \
- } \
- } while (0)
-
- /*
- * List definitions.
- */
- #define LIST_HEAD(name, type) \
- struct name { \
- struct type *lh_first; /* first element */ \
- }
-
- #define LIST_HEAD_INITIALIZER(head) \
- { NULL }
-
- #define LIST_ENTRY(type) \
- struct { \
- struct type *le_next; /* next element */ \
- struct type **le_prev; /* address of previous next element */ \
- }
-
- /*
- * List access methods
- */
- #define LIST_FIRST(head) ((head)->lh_first)
- #define LIST_END(head) NULL
- #define LIST_EMPTY(head) (LIST_FIRST(head) == LIST_END(head))
- #define LIST_NEXT(elm, field) ((elm)->field.le_next)
-
- #define LIST_FOREACH(var, head, field) \
- for((var) = LIST_FIRST(head); \
- (var)!= LIST_END(head); \
- (var) = LIST_NEXT(var, field))
-
- #define LIST_FOREACH_SAFE(var, head, field, tvar) \
- for ((var) = LIST_FIRST(head); \
- (var) && ((tvar) = LIST_NEXT(var, field), 1); \
- (var) = (tvar))
-
- /*
- * List functions.
- */
- #define LIST_INIT(head) do { \
- LIST_FIRST(head) = LIST_END(head); \
- } while (0)
-
- #define LIST_INSERT_AFTER(listelm, elm, field) do { \
- if (((elm)->field.le_next = (listelm)->field.le_next) != NULL) \
- (listelm)->field.le_next->field.le_prev = \
- &(elm)->field.le_next; \
- (listelm)->field.le_next = (elm); \
- (elm)->field.le_prev = &(listelm)->field.le_next; \
- } while (0)
-
-
- (elm)->field.le_prev = (listelm)->field.le_prev; \
- (elm)->field.le_next = (listelm); \
- *(listelm)->field.le_prev = (elm); \
- (listelm)->field.le_prev = &(elm)->field.le_next; \
- } while (0)
-
-
- if (((elm)->field.le_next = (head)->lh_first) != NULL) \
- (head)->lh_first->field.le_prev = &(elm)->field.le_next;\
- (head)->lh_first = (elm); \
- (elm)->field.le_prev = &(head)->lh_first; \
- } while (0)
-
-
- if ((elm)->field.le_next != NULL) \
- (elm)->field.le_next->field.le_prev = \
- (elm)->field.le_prev; \
- *(elm)->field.le_prev = (elm)->field.le_next; \
- _Q_INVALIDATE((elm)->field.le_prev); \
- _Q_INVALIDATE((elm)->field.le_next); \
- } while (0)
-
- #define LIST_REPLACE(elm, elm2, field) do { \
- if (((elm2)->field.le_next = (elm)->field.le_next) != NULL) \
- (elm2)->field.le_next->field.le_prev = \
- &(elm2)->field.le_next; \
- (elm2)->field.le_prev = (elm)->field.le_prev; \
- *(elm2)->field.le_prev = (elm2); \
- _Q_INVALIDATE((elm)->field.le_prev); \
- _Q_INVALIDATE((elm)->field.le_next); \
- } while (0)
-
- /*
- * Simple queue definitions.
- */
- #define SIMPLEQ_HEAD(name, type) \
- struct name { \
- struct type *sqh_first; /* first element */ \
- struct type **sqh_last; /* addr of last next element */ \
- }
-
- #define SIMPLEQ_HEAD_INITIALIZER(head) \
- { NULL, &(head).sqh_first }
-
- #define SIMPLEQ_ENTRY(type) \
- struct { \
- struct type *sqe_next; /* next element */ \
- }
-
- /*
- * Simple queue access methods.
- */
- #define SIMPLEQ_FIRST(head) ((head)->sqh_first)
- #define SIMPLEQ_END(head) NULL
- #define SIMPLEQ_EMPTY(head) (SIMPLEQ_FIRST(head) == SIMPLEQ_END(head))
- #define SIMPLEQ_NEXT(elm, field) ((elm)->field.sqe_next)
-
- #define SIMPLEQ_FOREACH(var, head, field) \
- for((var) = SIMPLEQ_FIRST(head); \
- (var) != SIMPLEQ_END(head); \
- (var) = SIMPLEQ_NEXT(var, field))
-
- #define SIMPLEQ_FOREACH_SAFE(var, head, field, tvar) \
- for ((var) = SIMPLEQ_FIRST(head); \
- (var) && ((tvar) = SIMPLEQ_NEXT(var, field), 1); \
- (var) = (tvar))
-
- /*
- * Simple queue functions.
- */
- #define SIMPLEQ_INIT(head) do { \
- (head)->sqh_first = NULL; \
- (head)->sqh_last = &(head)->sqh_first; \
- } while (0)
-
-
- if (((elm)->field.sqe_next = (head)->sqh_first) == NULL) \
- (head)->sqh_last = &(elm)->field.sqe_next; \
- (head)->sqh_first = (elm); \
- } while (0)
-
-
- (elm)->field.sqe_next = NULL; \
- *(head)->sqh_last = (elm); \
- (head)->sqh_last = &(elm)->field.sqe_next; \
- } while (0)
-
-
- if (((elm)->field.sqe_next = (listelm)->field.sqe_next) == NULL)\
- (head)->sqh_last = &(elm)->field.sqe_next; \
- (listelm)->field.sqe_next = (elm); \
- } while (0)
-
-
- if (((head)->sqh_first = (head)->sqh_first->field.sqe_next) == NULL) \
- (head)->sqh_last = &(head)->sqh_first; \
- } while (0)
-
-
- if (((elm)->field.sqe_next = (elm)->field.sqe_next->field.sqe_next) \
- == NULL) \
- (head)->sqh_last = &(elm)->field.sqe_next; \
- } while (0)
-
-
-
- struct name { \
- struct type *sqx_first; \
- struct type **sqx_last; \
- unsigned long sqx_cookie; \
- }
-
-
- struct { \
- struct type *sqx_next; \
- }
-
-
-
- (unsigned long)(ptr)))
-
-
-
-
-
-
-
- for ((var) = XSIMPLEQ_FIRST(head); \
- (var) != XSIMPLEQ_END(head); \
- (var) = XSIMPLEQ_NEXT(head, var, field))
-
-
- for ((var) = XSIMPLEQ_FIRST(head); \
- (var) && ((tvar) = XSIMPLEQ_NEXT(head, var, field), 1); \
- (var) = (tvar))
-
-
-
- arc4random_buf(&(head)->sqx_cookie, sizeof((head)->sqx_cookie)); \
- (head)->sqx_first = XSIMPLEQ_XOR(head, NULL); \
- (head)->sqx_last = XSIMPLEQ_XOR(head, &(head)->sqx_first); \
- } while (0)
-
- #define XSIMPLEQ_INSERT_HEAD(head, elm, field) do { \
- if (((elm)->field.sqx_next = (head)->sqx_first) == \
- XSIMPLEQ_XOR(head, NULL)) \
- (head)->sqx_last = XSIMPLEQ_XOR(head, &(elm)->field.sqx_next); \
- (head)->sqx_first = XSIMPLEQ_XOR(head, (elm)); \
- } while (0)
-
-
- (elm)->field.sqx_next = XSIMPLEQ_XOR(head, NULL); \
- *(XSIMPLEQ_XOR(head, (head)->sqx_last)) = XSIMPLEQ_XOR(head, (elm)); \
- (head)->sqx_last = XSIMPLEQ_XOR(head, &(elm)->field.sqx_next); \
- } while (0)
-
- #define XSIMPLEQ_INSERT_AFTER(head, listelm, elm, field) do { \
- if (((elm)->field.sqx_next = (listelm)->field.sqx_next) == \
- XSIMPLEQ_XOR(head, NULL)) \
- (head)->sqx_last = XSIMPLEQ_XOR(head, &(elm)->field.sqx_next); \
- (listelm)->field.sqx_next = XSIMPLEQ_XOR(head, (elm)); \
- } while (0)
-
-
- if (((head)->sqx_first = XSIMPLEQ_XOR(head, \
- (head)->sqx_first)->field.sqx_next) == XSIMPLEQ_XOR(head, NULL)) \
- (head)->sqx_last = XSIMPLEQ_XOR(head, &(head)->sqx_first); \
- } while (0)
-
- #define XSIMPLEQ_REMOVE_AFTER(head, elm, field) do { \
- if (((elm)->field.sqx_next = XSIMPLEQ_XOR(head, \
- (elm)->field.sqx_next)->field.sqx_next) \
- == XSIMPLEQ_XOR(head, NULL)) \
- (head)->sqx_last = \
- XSIMPLEQ_XOR(head, &(elm)->field.sqx_next); \
- } while (0)
-
-
- /*
- * Tail queue definitions.
- */
- #define TAILQ_HEAD(name, type) \
- struct name { \
- struct type *tqh_first; /* first element */ \
- struct type **tqh_last; /* addr of last next element */ \
- }
-
- #define TAILQ_HEAD_INITIALIZER(head) \
- { NULL, &(head).tqh_first }
-
- #define TAILQ_ENTRY(type) \
- struct { \
- struct type *tqe_next; /* next element */ \
- struct type **tqe_prev; /* address of previous next element */ \
- }
-
- /*
- * tail queue access methods
- */
- #define TAILQ_FIRST(head) ((head)->tqh_first)
- #define TAILQ_END(head) NULL
- #define TAILQ_NEXT(elm, field) ((elm)->field.tqe_next)
- #define TAILQ_LAST(head, headname) \
- (*(((struct headname *)((head)->tqh_last))->tqh_last))
- /* XXX */
- #define TAILQ_PREV(elm, headname, field) \
- (*(((struct headname *)((elm)->field.tqe_prev))->tqh_last))
- #define TAILQ_EMPTY(head) \
- (TAILQ_FIRST(head) == TAILQ_END(head))
-
- #define TAILQ_FOREACH(var, head, field) \
- for((var) = TAILQ_FIRST(head); \
- (var) != TAILQ_END(head); \
- (var) = TAILQ_NEXT(var, field))
-
- #define TAILQ_FOREACH_SAFE(var, head, field, tvar) \
- for ((var) = TAILQ_FIRST(head); \
- (var) != TAILQ_END(head) && \
- ((tvar) = TAILQ_NEXT(var, field), 1); \
- (var) = (tvar))
-
-
- #define TAILQ_FOREACH_REVERSE(var, head, headname, field) \
- for((var) = TAILQ_LAST(head, headname); \
- (var) != TAILQ_END(head); \
- (var) = TAILQ_PREV(var, headname, field))
-
- #define TAILQ_FOREACH_REVERSE_SAFE(var, head, headname, field, tvar) \
- for ((var) = TAILQ_LAST(head, headname); \
- (var) != TAILQ_END(head) && \
- ((tvar) = TAILQ_PREV(var, headname, field), 1); \
- (var) = (tvar))
-
- /*
- * Tail queue functions.
- */
- #define TAILQ_INIT(head) do { \
- (head)->tqh_first = NULL; \
- (head)->tqh_last = &(head)->tqh_first; \
- } while (0)
-
-
- if (((elm)->field.tqe_next = (head)->tqh_first) != NULL) \
- (head)->tqh_first->field.tqe_prev = \
- &(elm)->field.tqe_next; \
- else \
- (head)->tqh_last = &(elm)->field.tqe_next; \
- (head)->tqh_first = (elm); \
- (elm)->field.tqe_prev = &(head)->tqh_first; \
- } while (0)
-
-
- (elm)->field.tqe_next = NULL; \
- (elm)->field.tqe_prev = (head)->tqh_last; \
- *(head)->tqh_last = (elm); \
- (head)->tqh_last = &(elm)->field.tqe_next; \
- } while (0)
-
-
- if (((elm)->field.tqe_next = (listelm)->field.tqe_next) != NULL)\
- (elm)->field.tqe_next->field.tqe_prev = \
- &(elm)->field.tqe_next; \
- else \
- (head)->tqh_last = &(elm)->field.tqe_next; \
- (listelm)->field.tqe_next = (elm); \
- (elm)->field.tqe_prev = &(listelm)->field.tqe_next; \
- } while (0)
-
-
- (elm)->field.tqe_prev = (listelm)->field.tqe_prev; \
- (elm)->field.tqe_next = (listelm); \
- *(listelm)->field.tqe_prev = (elm); \
- (listelm)->field.tqe_prev = &(elm)->field.tqe_next; \
- } while (0)
-
-
- if (((elm)->field.tqe_next) != NULL) \
- (elm)->field.tqe_next->field.tqe_prev = \
- (elm)->field.tqe_prev; \
- else \
- (head)->tqh_last = (elm)->field.tqe_prev; \
- *(elm)->field.tqe_prev = (elm)->field.tqe_next; \
- _Q_INVALIDATE((elm)->field.tqe_prev); \
- _Q_INVALIDATE((elm)->field.tqe_next); \
- } while (0)
-
- #define TAILQ_REPLACE(head, elm, elm2, field) do { \
- if (((elm2)->field.tqe_next = (elm)->field.tqe_next) != NULL) \
- (elm2)->field.tqe_next->field.tqe_prev = \
- &(elm2)->field.tqe_next; \
- else \
- (head)->tqh_last = &(elm2)->field.tqe_next; \
- (elm2)->field.tqe_prev = (elm)->field.tqe_prev; \
- *(elm2)->field.tqe_prev = (elm2); \
- _Q_INVALIDATE((elm)->field.tqe_prev); \
- _Q_INVALIDATE((elm)->field.tqe_next); \
- } while (0)
-
- /*
- * Circular queue definitions.
- */
- #define CIRCLEQ_HEAD(name, type) \
- struct name { \
- struct type *cqh_first; /* first element */ \
- struct type *cqh_last; /* last element */ \
- }
-
- #define CIRCLEQ_HEAD_INITIALIZER(head) \
- { CIRCLEQ_END(&head), CIRCLEQ_END(&head) }
-
- #define CIRCLEQ_ENTRY(type) \
- struct { \
- struct type *cqe_next; /* next element */ \
- struct type *cqe_prev; /* previous element */ \
- }
-
- /*
- * Circular queue access methods
- */
- #define CIRCLEQ_FIRST(head) ((head)->cqh_first)
- #define CIRCLEQ_LAST(head) ((head)->cqh_last)
- #define CIRCLEQ_END(head) ((void *)(head))
- #define CIRCLEQ_NEXT(elm, field) ((elm)->field.cqe_next)
- #define CIRCLEQ_PREV(elm, field) ((elm)->field.cqe_prev)
- #define CIRCLEQ_EMPTY(head) \
- (CIRCLEQ_FIRST(head) == CIRCLEQ_END(head))
-
- #define CIRCLEQ_FOREACH(var, head, field) \
- for((var) = CIRCLEQ_FIRST(head); \
- (var) != CIRCLEQ_END(head); \
- (var) = CIRCLEQ_NEXT(var, field))
-
- #define CIRCLEQ_FOREACH_SAFE(var, head, field, tvar) \
- for ((var) = CIRCLEQ_FIRST(head); \
- (var) != CIRCLEQ_END(head) && \
- ((tvar) = CIRCLEQ_NEXT(var, field), 1); \
- (var) = (tvar))
-
- #define CIRCLEQ_FOREACH_REVERSE(var, head, field) \
- for((var) = CIRCLEQ_LAST(head); \
- (var) != CIRCLEQ_END(head); \
- (var) = CIRCLEQ_PREV(var, field))
-
- #define CIRCLEQ_FOREACH_REVERSE_SAFE(var, head, headname, field, tvar) \
- for ((var) = CIRCLEQ_LAST(head, headname); \
- (var) != CIRCLEQ_END(head) && \
- ((tvar) = CIRCLEQ_PREV(var, headname, field), 1); \
- (var) = (tvar))
-
- /*
- * Circular queue functions.
- */
- #define CIRCLEQ_INIT(head) do { \
- (head)->cqh_first = CIRCLEQ_END(head); \
- (head)->cqh_last = CIRCLEQ_END(head); \
- } while (0)
-
-
- (elm)->field.cqe_next = (listelm)->field.cqe_next; \
- (elm)->field.cqe_prev = (listelm); \
- if ((listelm)->field.cqe_next == CIRCLEQ_END(head)) \
- (head)->cqh_last = (elm); \
- else \
- (listelm)->field.cqe_next->field.cqe_prev = (elm); \
- (listelm)->field.cqe_next = (elm); \
- } while (0)
-
-
- (elm)->field.cqe_next = (listelm); \
- (elm)->field.cqe_prev = (listelm)->field.cqe_prev; \
- if ((listelm)->field.cqe_prev == CIRCLEQ_END(head)) \
- (head)->cqh_first = (elm); \
- else \
- (listelm)->field.cqe_prev->field.cqe_next = (elm); \
- (listelm)->field.cqe_prev = (elm); \
- } while (0)
-
-
- (elm)->field.cqe_next = (head)->cqh_first; \
- (elm)->field.cqe_prev = CIRCLEQ_END(head); \
- if ((head)->cqh_last == CIRCLEQ_END(head)) \
- (head)->cqh_last = (elm); \
- else \
- (head)->cqh_first->field.cqe_prev = (elm); \
- (head)->cqh_first = (elm); \
- } while (0)
-
-
- (elm)->field.cqe_next = CIRCLEQ_END(head); \
- (elm)->field.cqe_prev = (head)->cqh_last; \
- if ((head)->cqh_first == CIRCLEQ_END(head)) \
- (head)->cqh_first = (elm); \
- else \
- (head)->cqh_last->field.cqe_next = (elm); \
- (head)->cqh_last = (elm); \
- } while (0)
-
-
- if ((elm)->field.cqe_next == CIRCLEQ_END(head)) \
- (head)->cqh_last = (elm)->field.cqe_prev; \
- else \
- (elm)->field.cqe_next->field.cqe_prev = \
- (elm)->field.cqe_prev; \
- if ((elm)->field.cqe_prev == CIRCLEQ_END(head)) \
- (head)->cqh_first = (elm)->field.cqe_next; \
- else \
- (elm)->field.cqe_prev->field.cqe_next = \
- (elm)->field.cqe_next; \
- _Q_INVALIDATE((elm)->field.cqe_prev); \
- _Q_INVALIDATE((elm)->field.cqe_next); \
- } while (0)
-
- #define CIRCLEQ_REPLACE(head, elm, elm2, field) do { \
- if (((elm2)->field.cqe_next = (elm)->field.cqe_next) == \
- CIRCLEQ_END(head)) \
- (head)->cqh_last = (elm2); \
- else \
- (elm2)->field.cqe_next->field.cqe_prev = (elm2); \
- if (((elm2)->field.cqe_prev = (elm)->field.cqe_prev) == \
- CIRCLEQ_END(head)) \
- (head)->cqh_first = (elm2); \
- else \
- (elm2)->field.cqe_prev->field.cqe_next = (elm2); \
- _Q_INVALIDATE((elm)->field.cqe_prev); \
- _Q_INVALIDATE((elm)->field.cqe_next); \
- } while (0)
-
- #endif /* !_SYS_QUEUE_H_ */
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