aio.h 6.9 KB

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  1. #ifndef __LINUX__AIO_H
  2. #define __LINUX__AIO_H
  3. #include <linux/list.h>
  4. #include <linux/workqueue.h>
  5. #include <linux/aio_abi.h>
  6. #include <linux/uio.h>
  7. #include <asm/atomic.h>
  8. #define AIO_MAXSEGS 4
  9. #define AIO_KIOGRP_NR_ATOMIC 8
  10. struct kioctx;
  11. /* Notes on cancelling a kiocb:
  12. * If a kiocb is cancelled, aio_complete may return 0 to indicate
  13. * that cancel has not yet disposed of the kiocb. All cancel
  14. * operations *must* call aio_put_req to dispose of the kiocb
  15. * to guard against races with the completion code.
  16. */
  17. #define KIOCB_C_CANCELLED 0x01
  18. #define KIOCB_C_COMPLETE 0x02
  19. #define KIOCB_SYNC_KEY (~0U)
  20. /* ki_flags bits */
  21. /*
  22. * This may be used for cancel/retry serialization in the future, but
  23. * for now it's unused and we probably don't want modules to even
  24. * think they can use it.
  25. */
  26. /* #define KIF_LOCKED 0 */
  27. #define KIF_KICKED 1
  28. #define KIF_CANCELLED 2
  29. #define kiocbTryLock(iocb) test_and_set_bit(KIF_LOCKED, &(iocb)->ki_flags)
  30. #define kiocbTryKick(iocb) test_and_set_bit(KIF_KICKED, &(iocb)->ki_flags)
  31. #define kiocbSetLocked(iocb) set_bit(KIF_LOCKED, &(iocb)->ki_flags)
  32. #define kiocbSetKicked(iocb) set_bit(KIF_KICKED, &(iocb)->ki_flags)
  33. #define kiocbSetCancelled(iocb) set_bit(KIF_CANCELLED, &(iocb)->ki_flags)
  34. #define kiocbClearLocked(iocb) clear_bit(KIF_LOCKED, &(iocb)->ki_flags)
  35. #define kiocbClearKicked(iocb) clear_bit(KIF_KICKED, &(iocb)->ki_flags)
  36. #define kiocbClearCancelled(iocb) clear_bit(KIF_CANCELLED, &(iocb)->ki_flags)
  37. #define kiocbIsLocked(iocb) test_bit(KIF_LOCKED, &(iocb)->ki_flags)
  38. #define kiocbIsKicked(iocb) test_bit(KIF_KICKED, &(iocb)->ki_flags)
  39. #define kiocbIsCancelled(iocb) test_bit(KIF_CANCELLED, &(iocb)->ki_flags)
  40. /* is there a better place to document function pointer methods? */
  41. /**
  42. * ki_retry - iocb forward progress callback
  43. * @kiocb: The kiocb struct to advance by performing an operation.
  44. *
  45. * This callback is called when the AIO core wants a given AIO operation
  46. * to make forward progress. The kiocb argument describes the operation
  47. * that is to be performed. As the operation proceeds, perhaps partially,
  48. * ki_retry is expected to update the kiocb with progress made. Typically
  49. * ki_retry is set in the AIO core and it itself calls file_operations
  50. * helpers.
  51. *
  52. * ki_retry's return value determines when the AIO operation is completed
  53. * and an event is generated in the AIO event ring. Except the special
  54. * return values described below, the value that is returned from ki_retry
  55. * is transferred directly into the completion ring as the operation's
  56. * resulting status. Once this has happened ki_retry *MUST NOT* reference
  57. * the kiocb pointer again.
  58. *
  59. * If ki_retry returns -EIOCBQUEUED it has made a promise that aio_complete()
  60. * will be called on the kiocb pointer in the future. The AIO core will
  61. * not ask the method again -- ki_retry must ensure forward progress.
  62. * aio_complete() must be called once and only once in the future, multiple
  63. * calls may result in undefined behaviour.
  64. *
  65. * If ki_retry returns -EIOCBRETRY it has made a promise that kick_iocb()
  66. * will be called on the kiocb pointer in the future. This may happen
  67. * through generic helpers that associate kiocb->ki_wait with a wait
  68. * queue head that ki_retry uses via current->io_wait. It can also happen
  69. * with custom tracking and manual calls to kick_iocb(), though that is
  70. * discouraged. In either case, kick_iocb() must be called once and only
  71. * once. ki_retry must ensure forward progress, the AIO core will wait
  72. * indefinitely for kick_iocb() to be called.
  73. */
  74. struct kiocb {
  75. struct list_head ki_run_list;
  76. unsigned long ki_flags;
  77. int ki_users;
  78. unsigned ki_key; /* id of this request */
  79. struct file *ki_filp;
  80. struct kioctx *ki_ctx; /* may be NULL for sync ops */
  81. int (*ki_cancel)(struct kiocb *, struct io_event *);
  82. ssize_t (*ki_retry)(struct kiocb *);
  83. void (*ki_dtor)(struct kiocb *);
  84. union {
  85. void __user *user;
  86. struct task_struct *tsk;
  87. } ki_obj;
  88. __u64 ki_user_data; /* user's data for completion */
  89. wait_queue_t ki_wait;
  90. loff_t ki_pos;
  91. void *private;
  92. /* State that we remember to be able to restart/retry */
  93. unsigned short ki_opcode;
  94. size_t ki_nbytes; /* copy of iocb->aio_nbytes */
  95. char __user *ki_buf; /* remaining iocb->aio_buf */
  96. size_t ki_left; /* remaining bytes */
  97. struct iovec ki_inline_vec; /* inline vector */
  98. struct iovec *ki_iovec;
  99. unsigned long ki_nr_segs;
  100. unsigned long ki_cur_seg;
  101. struct list_head ki_list; /* the aio core uses this
  102. * for cancellation */
  103. /*
  104. * If the aio_resfd field of the userspace iocb is not zero,
  105. * this is the underlying file* to deliver event to.
  106. */
  107. struct file *ki_eventfd;
  108. };
  109. #define is_sync_kiocb(iocb) ((iocb)->ki_key == KIOCB_SYNC_KEY)
  110. #define init_sync_kiocb(x, filp) \
  111. do { \
  112. struct task_struct *tsk = current; \
  113. (x)->ki_flags = 0; \
  114. (x)->ki_users = 1; \
  115. (x)->ki_key = KIOCB_SYNC_KEY; \
  116. (x)->ki_filp = (filp); \
  117. (x)->ki_ctx = NULL; \
  118. (x)->ki_cancel = NULL; \
  119. (x)->ki_retry = NULL; \
  120. (x)->ki_dtor = NULL; \
  121. (x)->ki_obj.tsk = tsk; \
  122. (x)->ki_user_data = 0; \
  123. init_wait((&(x)->ki_wait)); \
  124. } while (0)
  125. #define AIO_RING_MAGIC 0xa10a10a1
  126. #define AIO_RING_COMPAT_FEATURES 1
  127. #define AIO_RING_INCOMPAT_FEATURES 0
  128. struct aio_ring {
  129. unsigned id; /* kernel internal index number */
  130. unsigned nr; /* number of io_events */
  131. unsigned head;
  132. unsigned tail;
  133. unsigned magic;
  134. unsigned compat_features;
  135. unsigned incompat_features;
  136. unsigned header_length; /* size of aio_ring */
  137. struct io_event io_events[0];
  138. }; /* 128 bytes + ring size */
  139. #define aio_ring_avail(info, ring) (((ring)->head + (info)->nr - 1 - (ring)->tail) % (info)->nr)
  140. #define AIO_RING_PAGES 8
  141. struct aio_ring_info {
  142. unsigned long mmap_base;
  143. unsigned long mmap_size;
  144. struct page **ring_pages;
  145. spinlock_t ring_lock;
  146. long nr_pages;
  147. unsigned nr, tail;
  148. struct page *internal_pages[AIO_RING_PAGES];
  149. };
  150. struct kioctx {
  151. atomic_t users;
  152. int dead;
  153. struct mm_struct *mm;
  154. /* This needs improving */
  155. unsigned long user_id;
  156. struct kioctx *next;
  157. wait_queue_head_t wait;
  158. spinlock_t ctx_lock;
  159. int reqs_active;
  160. struct list_head active_reqs; /* used for cancellation */
  161. struct list_head run_list; /* used for kicked reqs */
  162. /* sys_io_setup currently limits this to an unsigned int */
  163. unsigned max_reqs;
  164. struct aio_ring_info ring_info;
  165. struct delayed_work wq;
  166. };
  167. /* prototypes */
  168. extern unsigned aio_max_size;
  169. extern ssize_t wait_on_sync_kiocb(struct kiocb *iocb);
  170. extern int aio_put_req(struct kiocb *iocb);
  171. extern void kick_iocb(struct kiocb *iocb);
  172. extern int aio_complete(struct kiocb *iocb, long res, long res2);
  173. struct mm_struct;
  174. extern void exit_aio(struct mm_struct *mm);
  175. #define io_wait_to_kiocb(wait) container_of(wait, struct kiocb, ki_wait)
  176. #include <linux/aio_abi.h>
  177. static inline struct kiocb *list_kiocb(struct list_head *h)
  178. {
  179. return list_entry(h, struct kiocb, ki_list);
  180. }
  181. /* for sysctl: */
  182. extern unsigned long aio_nr;
  183. extern unsigned long aio_max_nr;
  184. #endif /* __LINUX__AIO_H */