xfs_attr_leaf.h 10 KB

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  1. /*
  2. * Copyright (c) 2000,2002-2003,2005 Silicon Graphics, Inc.
  3. * All Rights Reserved.
  4. *
  5. * This program is free software; you can redistribute it and/or
  6. * modify it under the terms of the GNU General Public License as
  7. * published by the Free Software Foundation.
  8. *
  9. * This program is distributed in the hope that it would be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. * GNU General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License
  15. * along with this program; if not, write the Free Software Foundation,
  16. * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  17. */
  18. #ifndef __XFS_ATTR_LEAF_H__
  19. #define __XFS_ATTR_LEAF_H__
  20. /*
  21. * Attribute storage layout, internal structure, access macros, etc.
  22. *
  23. * Attribute lists are structured around Btrees where all the data
  24. * elements are in the leaf nodes. Attribute names are hashed into an int,
  25. * then that int is used as the index into the Btree. Since the hashval
  26. * of an attribute name may not be unique, we may have duplicate keys. The
  27. * internal links in the Btree are logical block offsets into the file.
  28. */
  29. struct attrlist;
  30. struct attrlist_cursor_kern;
  31. struct xfs_attr_list_context;
  32. struct xfs_da_args;
  33. struct xfs_da_state;
  34. struct xfs_da_state_blk;
  35. struct xfs_inode;
  36. struct xfs_trans;
  37. /*========================================================================
  38. * Attribute structure when equal to XFS_LBSIZE(mp) bytes.
  39. *========================================================================*/
  40. /*
  41. * This is the structure of the leaf nodes in the Btree.
  42. *
  43. * Struct leaf_entry's are packed from the top. Name/values grow from the
  44. * bottom but are not packed. The freemap contains run-length-encoded entries
  45. * for the free bytes after the leaf_entry's, but only the N largest such,
  46. * smaller runs are dropped. When the freemap doesn't show enough space
  47. * for an allocation, we compact the name/value area and try again. If we
  48. * still don't have enough space, then we have to split the block. The
  49. * name/value structs (both local and remote versions) must be 32bit aligned.
  50. *
  51. * Since we have duplicate hash keys, for each key that matches, compare
  52. * the actual name string. The root and intermediate node search always
  53. * takes the first-in-the-block key match found, so we should only have
  54. * to work "forw"ard. If none matches, continue with the "forw"ard leaf
  55. * nodes until the hash key changes or the attribute name is found.
  56. *
  57. * We store the fact that an attribute is a ROOT/USER/SECURE attribute in
  58. * the leaf_entry. The namespaces are independent only because we also look
  59. * at the namespace bit when we are looking for a matching attribute name.
  60. *
  61. * We also store an "incomplete" bit in the leaf_entry. It shows that an
  62. * attribute is in the middle of being created and should not be shown to
  63. * the user if we crash during the time that the bit is set. We clear the
  64. * bit when we have finished setting up the attribute. We do this because
  65. * we cannot create some large attributes inside a single transaction, and we
  66. * need some indication that we weren't finished if we crash in the middle.
  67. */
  68. #define XFS_ATTR_LEAF_MAPSIZE 3 /* how many freespace slots */
  69. typedef struct xfs_attr_leaf_map { /* RLE map of free bytes */
  70. __be16 base; /* base of free region */
  71. __be16 size; /* length of free region */
  72. } xfs_attr_leaf_map_t;
  73. typedef struct xfs_attr_leaf_hdr { /* constant-structure header block */
  74. xfs_da_blkinfo_t info; /* block type, links, etc. */
  75. __be16 count; /* count of active leaf_entry's */
  76. __be16 usedbytes; /* num bytes of names/values stored */
  77. __be16 firstused; /* first used byte in name area */
  78. __u8 holes; /* != 0 if blk needs compaction */
  79. __u8 pad1;
  80. xfs_attr_leaf_map_t freemap[XFS_ATTR_LEAF_MAPSIZE];
  81. /* N largest free regions */
  82. } xfs_attr_leaf_hdr_t;
  83. typedef struct xfs_attr_leaf_entry { /* sorted on key, not name */
  84. __be32 hashval; /* hash value of name */
  85. __be16 nameidx; /* index into buffer of name/value */
  86. __u8 flags; /* LOCAL/ROOT/SECURE/INCOMPLETE flag */
  87. __u8 pad2; /* unused pad byte */
  88. } xfs_attr_leaf_entry_t;
  89. typedef struct xfs_attr_leaf_name_local {
  90. __be16 valuelen; /* number of bytes in value */
  91. __u8 namelen; /* length of name bytes */
  92. __u8 nameval[1]; /* name/value bytes */
  93. } xfs_attr_leaf_name_local_t;
  94. typedef struct xfs_attr_leaf_name_remote {
  95. __be32 valueblk; /* block number of value bytes */
  96. __be32 valuelen; /* number of bytes in value */
  97. __u8 namelen; /* length of name bytes */
  98. __u8 name[1]; /* name bytes */
  99. } xfs_attr_leaf_name_remote_t;
  100. typedef struct xfs_attr_leafblock {
  101. xfs_attr_leaf_hdr_t hdr; /* constant-structure header block */
  102. xfs_attr_leaf_entry_t entries[1]; /* sorted on key, not name */
  103. xfs_attr_leaf_name_local_t namelist; /* grows from bottom of buf */
  104. xfs_attr_leaf_name_remote_t valuelist; /* grows from bottom of buf */
  105. } xfs_attr_leafblock_t;
  106. /*
  107. * Flags used in the leaf_entry[i].flags field.
  108. * NOTE: the INCOMPLETE bit must not collide with the flags bits specified
  109. * on the system call, they are "or"ed together for various operations.
  110. */
  111. #define XFS_ATTR_LOCAL_BIT 0 /* attr is stored locally */
  112. #define XFS_ATTR_ROOT_BIT 1 /* limit access to trusted attrs */
  113. #define XFS_ATTR_SECURE_BIT 2 /* limit access to secure attrs */
  114. #define XFS_ATTR_INCOMPLETE_BIT 7 /* attr in middle of create/delete */
  115. #define XFS_ATTR_LOCAL (1 << XFS_ATTR_LOCAL_BIT)
  116. #define XFS_ATTR_ROOT (1 << XFS_ATTR_ROOT_BIT)
  117. #define XFS_ATTR_SECURE (1 << XFS_ATTR_SECURE_BIT)
  118. #define XFS_ATTR_INCOMPLETE (1 << XFS_ATTR_INCOMPLETE_BIT)
  119. /*
  120. * Conversion macros for converting namespace bits from argument flags
  121. * to ondisk flags.
  122. */
  123. #define XFS_ATTR_NSP_ARGS_MASK (ATTR_ROOT | ATTR_SECURE)
  124. #define XFS_ATTR_NSP_ONDISK_MASK (XFS_ATTR_ROOT | XFS_ATTR_SECURE)
  125. #define XFS_ATTR_NSP_ONDISK(flags) ((flags) & XFS_ATTR_NSP_ONDISK_MASK)
  126. #define XFS_ATTR_NSP_ARGS(flags) ((flags) & XFS_ATTR_NSP_ARGS_MASK)
  127. #define XFS_ATTR_NSP_ARGS_TO_ONDISK(x) (((x) & ATTR_ROOT ? XFS_ATTR_ROOT : 0) |\
  128. ((x) & ATTR_SECURE ? XFS_ATTR_SECURE : 0))
  129. #define XFS_ATTR_NSP_ONDISK_TO_ARGS(x) (((x) & XFS_ATTR_ROOT ? ATTR_ROOT : 0) |\
  130. ((x) & XFS_ATTR_SECURE ? ATTR_SECURE : 0))
  131. /*
  132. * Alignment for namelist and valuelist entries (since they are mixed
  133. * there can be only one alignment value)
  134. */
  135. #define XFS_ATTR_LEAF_NAME_ALIGN ((uint)sizeof(xfs_dablk_t))
  136. /*
  137. * Cast typed pointers for "local" and "remote" name/value structs.
  138. */
  139. static inline xfs_attr_leaf_name_remote_t *
  140. xfs_attr_leaf_name_remote(xfs_attr_leafblock_t *leafp, int idx)
  141. {
  142. return (xfs_attr_leaf_name_remote_t *)
  143. &((char *)leafp)[be16_to_cpu(leafp->entries[idx].nameidx)];
  144. }
  145. static inline xfs_attr_leaf_name_local_t *
  146. xfs_attr_leaf_name_local(xfs_attr_leafblock_t *leafp, int idx)
  147. {
  148. return (xfs_attr_leaf_name_local_t *)
  149. &((char *)leafp)[be16_to_cpu(leafp->entries[idx].nameidx)];
  150. }
  151. static inline char *xfs_attr_leaf_name(xfs_attr_leafblock_t *leafp, int idx)
  152. {
  153. return &((char *)leafp)[be16_to_cpu(leafp->entries[idx].nameidx)];
  154. }
  155. /*
  156. * Calculate total bytes used (including trailing pad for alignment) for
  157. * a "local" name/value structure, a "remote" name/value structure, and
  158. * a pointer which might be either.
  159. */
  160. static inline int xfs_attr_leaf_entsize_remote(int nlen)
  161. {
  162. return ((uint)sizeof(xfs_attr_leaf_name_remote_t) - 1 + (nlen) + \
  163. XFS_ATTR_LEAF_NAME_ALIGN - 1) & ~(XFS_ATTR_LEAF_NAME_ALIGN - 1);
  164. }
  165. static inline int xfs_attr_leaf_entsize_local(int nlen, int vlen)
  166. {
  167. return ((uint)sizeof(xfs_attr_leaf_name_local_t) - 1 + (nlen) + (vlen) +
  168. XFS_ATTR_LEAF_NAME_ALIGN - 1) & ~(XFS_ATTR_LEAF_NAME_ALIGN - 1);
  169. }
  170. static inline int xfs_attr_leaf_entsize_local_max(int bsize)
  171. {
  172. return (((bsize) >> 1) + ((bsize) >> 2));
  173. }
  174. /*
  175. * Used to keep a list of "remote value" extents when unlinking an inode.
  176. */
  177. typedef struct xfs_attr_inactive_list {
  178. xfs_dablk_t valueblk; /* block number of value bytes */
  179. int valuelen; /* number of bytes in value */
  180. } xfs_attr_inactive_list_t;
  181. /*========================================================================
  182. * Function prototypes for the kernel.
  183. *========================================================================*/
  184. /*
  185. * Internal routines when attribute fork size < XFS_LITINO(mp).
  186. */
  187. void xfs_attr_shortform_create(struct xfs_da_args *args);
  188. void xfs_attr_shortform_add(struct xfs_da_args *args, int forkoff);
  189. int xfs_attr_shortform_lookup(struct xfs_da_args *args);
  190. int xfs_attr_shortform_getvalue(struct xfs_da_args *args);
  191. int xfs_attr_shortform_to_leaf(struct xfs_da_args *args);
  192. int xfs_attr_shortform_remove(struct xfs_da_args *args);
  193. int xfs_attr_shortform_list(struct xfs_attr_list_context *context);
  194. int xfs_attr_shortform_allfit(struct xfs_buf *bp, struct xfs_inode *dp);
  195. int xfs_attr_shortform_bytesfit(xfs_inode_t *dp, int bytes);
  196. /*
  197. * Internal routines when attribute fork size == XFS_LBSIZE(mp).
  198. */
  199. int xfs_attr_leaf_to_node(struct xfs_da_args *args);
  200. int xfs_attr_leaf_to_shortform(struct xfs_buf *bp,
  201. struct xfs_da_args *args, int forkoff);
  202. int xfs_attr_leaf_clearflag(struct xfs_da_args *args);
  203. int xfs_attr_leaf_setflag(struct xfs_da_args *args);
  204. int xfs_attr_leaf_flipflags(xfs_da_args_t *args);
  205. /*
  206. * Routines used for growing the Btree.
  207. */
  208. int xfs_attr_leaf_split(struct xfs_da_state *state,
  209. struct xfs_da_state_blk *oldblk,
  210. struct xfs_da_state_blk *newblk);
  211. int xfs_attr_leaf_lookup_int(struct xfs_buf *leaf,
  212. struct xfs_da_args *args);
  213. int xfs_attr_leaf_getvalue(struct xfs_buf *bp, struct xfs_da_args *args);
  214. int xfs_attr_leaf_add(struct xfs_buf *leaf_buffer,
  215. struct xfs_da_args *args);
  216. int xfs_attr_leaf_remove(struct xfs_buf *leaf_buffer,
  217. struct xfs_da_args *args);
  218. int xfs_attr_leaf_list_int(struct xfs_buf *bp,
  219. struct xfs_attr_list_context *context);
  220. /*
  221. * Routines used for shrinking the Btree.
  222. */
  223. int xfs_attr_leaf_toosmall(struct xfs_da_state *state, int *retval);
  224. void xfs_attr_leaf_unbalance(struct xfs_da_state *state,
  225. struct xfs_da_state_blk *drop_blk,
  226. struct xfs_da_state_blk *save_blk);
  227. int xfs_attr_root_inactive(struct xfs_trans **trans, struct xfs_inode *dp);
  228. /*
  229. * Utility routines.
  230. */
  231. xfs_dahash_t xfs_attr_leaf_lasthash(struct xfs_buf *bp, int *count);
  232. int xfs_attr_leaf_order(struct xfs_buf *leaf1_bp,
  233. struct xfs_buf *leaf2_bp);
  234. int xfs_attr_leaf_newentsize(int namelen, int valuelen, int blocksize,
  235. int *local);
  236. #endif /* __XFS_ATTR_LEAF_H__ */