aio.h

来自「自己做的交叉编译工具!gcc-3.4.5,glibc-2.3.6在ubuntu8」· C头文件 代码 · 共 198 行

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#ifndef __LINUX__AIO_H#define __LINUX__AIO_H#include <linux/workqueue.h>#include <linux/aio_abi.h>#include <asm/atomic.h>#define AIO_MAXSEGS		4#define AIO_KIOGRP_NR_ATOMIC	8struct kioctx;/* Notes on cancelling a kiocb: *	If a kiocb is cancelled, aio_complete may return 0 to indicate  *	that cancel has not yet disposed of the kiocb.  All cancel  *	operations *must* call aio_put_req to dispose of the kiocb  *	to guard against races with the completion code. */#define KIOCB_C_CANCELLED	0x01#define KIOCB_C_COMPLETE	0x02#define KIOCB_SYNC_KEY		(~0U)/* ki_flags bits */#define KIF_LOCKED		0#define KIF_KICKED		1#define KIF_CANCELLED		2#define kiocbTryLock(iocb)	test_and_set_bit(KIF_LOCKED, &(iocb)->ki_flags)#define kiocbTryKick(iocb)	test_and_set_bit(KIF_KICKED, &(iocb)->ki_flags)#define kiocbSetLocked(iocb)	set_bit(KIF_LOCKED, &(iocb)->ki_flags)#define kiocbSetKicked(iocb)	set_bit(KIF_KICKED, &(iocb)->ki_flags)#define kiocbSetCancelled(iocb)	set_bit(KIF_CANCELLED, &(iocb)->ki_flags)#define kiocbClearLocked(iocb)	clear_bit(KIF_LOCKED, &(iocb)->ki_flags)#define kiocbClearKicked(iocb)	clear_bit(KIF_KICKED, &(iocb)->ki_flags)#define kiocbClearCancelled(iocb)	clear_bit(KIF_CANCELLED, &(iocb)->ki_flags)#define kiocbIsLocked(iocb)	test_bit(KIF_LOCKED, &(iocb)->ki_flags)#define kiocbIsKicked(iocb)	test_bit(KIF_KICKED, &(iocb)->ki_flags)#define kiocbIsCancelled(iocb)	test_bit(KIF_CANCELLED, &(iocb)->ki_flags)struct kiocb {	struct list_head	ki_run_list;	long			ki_flags;	int			ki_users;	unsigned		ki_key;		/* id of this request */	struct file		*ki_filp;	struct kioctx		*ki_ctx;	/* may be NULL for sync ops */	int			(*ki_cancel)(struct kiocb *, struct io_event *);	ssize_t			(*ki_retry)(struct kiocb *);	void			(*ki_dtor)(struct kiocb *);	struct list_head	ki_list;	/* the aio core uses this						 * for cancellation */	void 		*ki_user_obj;	/* pointer to userland's iocb */	__u64			ki_user_data;	/* user's data for completion */	loff_t			ki_pos;	/* State that we remember to be able to restart/retry  */	unsigned short		ki_opcode;	size_t			ki_nbytes; 	/* copy of iocb->aio_nbytes */	char 			*ki_buf;	/* remaining iocb->aio_buf */	size_t			ki_left; 	/* remaining bytes */	wait_queue_t		ki_wait;	long			ki_retried; 	/* just for testing */	long			ki_kicked; 	/* just for testing */	long			ki_queued; 	/* just for testing */	void			*private;};#define is_sync_kiocb(iocb)	((iocb)->ki_key == KIOCB_SYNC_KEY)#define init_sync_kiocb(x, filp)			\	do {						\		struct task_struct *tsk = current;	\		(x)->ki_flags = 0;			\		(x)->ki_users = 1;			\		(x)->ki_key = KIOCB_SYNC_KEY;		\		(x)->ki_filp = (filp);			\		(x)->ki_ctx = &tsk->active_mm->default_kioctx;	\		(x)->ki_cancel = NULL;			\		(x)->ki_dtor = NULL;			\		(x)->ki_obj.tsk = tsk;			\		(x)->ki_user_data = 0;                  \		init_wait((&(x)->ki_wait));             \	} while (0)#define AIO_RING_MAGIC			0xa10a10a1#define AIO_RING_COMPAT_FEATURES	1#define AIO_RING_INCOMPAT_FEATURES	0struct aio_ring {	unsigned	id;	/* kernel internal index number */	unsigned	nr;	/* number of io_events */	unsigned	head;	unsigned	tail;	unsigned	magic;	unsigned	compat_features;	unsigned	incompat_features;	unsigned	header_length;	/* size of aio_ring */	struct io_event		io_events[0];}; /* 128 bytes + ring size */#define aio_ring_avail(info, ring)	(((ring)->head + (info)->nr - 1 - (ring)->tail) % (info)->nr)#define AIO_RING_PAGES	8struct aio_ring_info {	unsigned long		mmap_base;	unsigned long		mmap_size;	struct page		**ring_pages;	spinlock_t		ring_lock;	long			nr_pages;	unsigned		nr, tail;	struct page		*internal_pages[AIO_RING_PAGES];};struct kioctx {	atomic_t		users;	int			dead;	struct mm_struct	*mm;	/* This needs improving */	unsigned long		user_id;	struct kioctx		*next;	wait_queue_head_t	wait;	spinlock_t		ctx_lock;	int			reqs_active;	struct list_head	active_reqs;	/* used for cancellation */	struct list_head	run_list;	/* used for kicked reqs */	unsigned		max_reqs;	struct aio_ring_info	ring_info;	struct work_struct	wq;};/* prototypes */extern unsigned aio_max_size;extern ssize_t FASTCALL(wait_on_sync_kiocb(struct kiocb *iocb));extern int FASTCALL(aio_put_req(struct kiocb *iocb));extern void FASTCALL(kick_iocb(struct kiocb *iocb));extern int FASTCALL(aio_complete(struct kiocb *iocb, long res, long res2));extern void FASTCALL(__put_ioctx(struct kioctx *ctx));struct mm_struct;extern void FASTCALL(exit_aio(struct mm_struct *mm));extern struct kioctx *lookup_ioctx(unsigned long ctx_id);extern int FASTCALL(io_submit_one(struct kioctx *ctx,			struct iocb *user_iocb, struct iocb *iocb));/* semi private, but used by the 32bit emulations: */struct kioctx *lookup_ioctx(unsigned long ctx_id);int FASTCALL(io_submit_one(struct kioctx *ctx, struct iocb *user_iocb,				  struct iocb *iocb));#define get_ioctx(kioctx)	do { if (unlikely(atomic_read(&(kioctx)->users) <= 0)) BUG(); atomic_inc(&(kioctx)->users); } while (0)#define put_ioctx(kioctx)	do { if (unlikely(atomic_dec_and_test(&(kioctx)->users))) __put_ioctx(kioctx); else if (unlikely(atomic_read(&(kioctx)->users) < 0)) BUG(); } while (0)#define in_aio() !is_sync_wait(current->io_wait)/* may be used for debugging */#define warn_if_async()							\do {									\	if (in_aio()) {							\		printk(KERN_ERR "%s(%s:%d) called in async context!\n",	\			__FUNCTION__, __FILE__, __LINE__);		\		dump_stack();						\	}								\} while (0)#define io_wait_to_kiocb(wait) container_of(wait, struct kiocb, ki_wait)#define is_retried_kiocb(iocb) ((iocb)->ki_retried > 1)#include <linux/aio_abi.h>static inline struct kiocb *list_kiocb(struct list_head *h){	return list_entry(h, struct kiocb, ki_list);}/* for sysctl: */extern atomic_t aio_nr;extern unsigned aio_max_nr;#endif /* __LINUX__AIO_H */

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