file.c 6.3 KB

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  1. /*
  2. * file.c
  3. *
  4. * PURPOSE
  5. * File handling routines for the OSTA-UDF(tm) filesystem.
  6. *
  7. * COPYRIGHT
  8. * This file is distributed under the terms of the GNU General Public
  9. * License (GPL). Copies of the GPL can be obtained from:
  10. * ftp://prep.ai.mit.edu/pub/gnu/GPL
  11. * Each contributing author retains all rights to their own work.
  12. *
  13. * (C) 1998-1999 Dave Boynton
  14. * (C) 1998-2004 Ben Fennema
  15. * (C) 1999-2000 Stelias Computing Inc
  16. *
  17. * HISTORY
  18. *
  19. * 10/02/98 dgb Attempt to integrate into udf.o
  20. * 10/07/98 Switched to using generic_readpage, etc., like isofs
  21. * And it works!
  22. * 12/06/98 blf Added udf_file_read. uses generic_file_read for all cases but
  23. * ICBTAG_FLAG_AD_IN_ICB.
  24. * 04/06/99 64 bit file handling on 32 bit systems taken from ext2 file.c
  25. * 05/12/99 Preliminary file write support
  26. */
  27. #include "udfdecl.h"
  28. #include <linux/fs.h>
  29. #include <asm/uaccess.h>
  30. #include <linux/kernel.h>
  31. #include <linux/string.h> /* memset */
  32. #include <linux/capability.h>
  33. #include <linux/errno.h>
  34. #include <linux/pagemap.h>
  35. #include <linux/buffer_head.h>
  36. #include <linux/aio.h>
  37. #include "udf_i.h"
  38. #include "udf_sb.h"
  39. static int udf_adinicb_readpage(struct file *file, struct page *page)
  40. {
  41. struct inode *inode = page->mapping->host;
  42. char *kaddr;
  43. struct udf_inode_info *iinfo = UDF_I(inode);
  44. BUG_ON(!PageLocked(page));
  45. kaddr = kmap(page);
  46. memset(kaddr, 0, PAGE_CACHE_SIZE);
  47. memcpy(kaddr, iinfo->i_ext.i_data + iinfo->i_lenEAttr, inode->i_size);
  48. flush_dcache_page(page);
  49. SetPageUptodate(page);
  50. kunmap(page);
  51. unlock_page(page);
  52. return 0;
  53. }
  54. static int udf_adinicb_writepage(struct page *page,
  55. struct writeback_control *wbc)
  56. {
  57. struct inode *inode = page->mapping->host;
  58. char *kaddr;
  59. struct udf_inode_info *iinfo = UDF_I(inode);
  60. BUG_ON(!PageLocked(page));
  61. kaddr = kmap(page);
  62. memcpy(iinfo->i_ext.i_data + iinfo->i_lenEAttr, kaddr, inode->i_size);
  63. mark_inode_dirty(inode);
  64. SetPageUptodate(page);
  65. kunmap(page);
  66. unlock_page(page);
  67. return 0;
  68. }
  69. static int udf_adinicb_write_end(struct file *file,
  70. struct address_space *mapping,
  71. loff_t pos, unsigned len, unsigned copied,
  72. struct page *page, void *fsdata)
  73. {
  74. struct inode *inode = mapping->host;
  75. unsigned offset = pos & (PAGE_CACHE_SIZE - 1);
  76. char *kaddr;
  77. struct udf_inode_info *iinfo = UDF_I(inode);
  78. kaddr = kmap_atomic(page, KM_USER0);
  79. memcpy(iinfo->i_ext.i_data + iinfo->i_lenEAttr + offset,
  80. kaddr + offset, copied);
  81. kunmap_atomic(kaddr, KM_USER0);
  82. return simple_write_end(file, mapping, pos, len, copied, page, fsdata);
  83. }
  84. const struct address_space_operations udf_adinicb_aops = {
  85. .readpage = udf_adinicb_readpage,
  86. .writepage = udf_adinicb_writepage,
  87. .sync_page = block_sync_page,
  88. .write_begin = simple_write_begin,
  89. .write_end = udf_adinicb_write_end,
  90. };
  91. static ssize_t udf_file_aio_write(struct kiocb *iocb, const struct iovec *iov,
  92. unsigned long nr_segs, loff_t ppos)
  93. {
  94. ssize_t retval;
  95. struct file *file = iocb->ki_filp;
  96. struct inode *inode = file->f_path.dentry->d_inode;
  97. int err, pos;
  98. size_t count = iocb->ki_left;
  99. struct udf_inode_info *iinfo = UDF_I(inode);
  100. down_write(&iinfo->i_data_sem);
  101. if (iinfo->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB) {
  102. if (file->f_flags & O_APPEND)
  103. pos = inode->i_size;
  104. else
  105. pos = ppos;
  106. if (inode->i_sb->s_blocksize <
  107. (udf_file_entry_alloc_offset(inode) +
  108. pos + count)) {
  109. udf_expand_file_adinicb(inode, pos + count, &err);
  110. if (iinfo->i_alloc_type == ICBTAG_FLAG_AD_IN_ICB) {
  111. udf_debug("udf_expand_adinicb: err=%d\n", err);
  112. up_write(&iinfo->i_data_sem);
  113. return err;
  114. }
  115. } else {
  116. if (pos + count > inode->i_size)
  117. iinfo->i_lenAlloc = pos + count;
  118. else
  119. iinfo->i_lenAlloc = inode->i_size;
  120. }
  121. }
  122. up_write(&iinfo->i_data_sem);
  123. retval = generic_file_aio_write(iocb, iov, nr_segs, ppos);
  124. if (retval > 0)
  125. mark_inode_dirty(inode);
  126. return retval;
  127. }
  128. long udf_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
  129. {
  130. struct inode *inode = filp->f_dentry->d_inode;
  131. long old_block, new_block;
  132. int result = -EINVAL;
  133. if (file_permission(filp, MAY_READ) != 0) {
  134. udf_debug("no permission to access inode %lu\n", inode->i_ino);
  135. result = -EPERM;
  136. goto out;
  137. }
  138. if (!arg) {
  139. udf_debug("invalid argument to udf_ioctl\n");
  140. result = -EINVAL;
  141. goto out;
  142. }
  143. switch (cmd) {
  144. case UDF_GETVOLIDENT:
  145. if (copy_to_user((char __user *)arg,
  146. UDF_SB(inode->i_sb)->s_volume_ident, 32))
  147. result = -EFAULT;
  148. else
  149. result = 0;
  150. goto out;
  151. case UDF_RELOCATE_BLOCKS:
  152. if (!capable(CAP_SYS_ADMIN)) {
  153. result = -EACCES;
  154. goto out;
  155. }
  156. if (get_user(old_block, (long __user *)arg)) {
  157. result = -EFAULT;
  158. goto out;
  159. }
  160. result = udf_relocate_blocks(inode->i_sb,
  161. old_block, &new_block);
  162. if (result == 0)
  163. result = put_user(new_block, (long __user *)arg);
  164. goto out;
  165. case UDF_GETEASIZE:
  166. result = put_user(UDF_I(inode)->i_lenEAttr, (int __user *)arg);
  167. goto out;
  168. case UDF_GETEABLOCK:
  169. result = copy_to_user((char __user *)arg,
  170. UDF_I(inode)->i_ext.i_data,
  171. UDF_I(inode)->i_lenEAttr) ? -EFAULT : 0;
  172. goto out;
  173. }
  174. out:
  175. return result;
  176. }
  177. static int udf_release_file(struct inode *inode, struct file *filp)
  178. {
  179. if (filp->f_mode & FMODE_WRITE) {
  180. mutex_lock(&inode->i_mutex);
  181. down_write(&UDF_I(inode)->i_data_sem);
  182. udf_discard_prealloc(inode);
  183. udf_truncate_tail_extent(inode);
  184. up_write(&UDF_I(inode)->i_data_sem);
  185. mutex_unlock(&inode->i_mutex);
  186. }
  187. return 0;
  188. }
  189. const struct file_operations udf_file_operations = {
  190. .read = do_sync_read,
  191. .aio_read = generic_file_aio_read,
  192. .unlocked_ioctl = udf_ioctl,
  193. .open = generic_file_open,
  194. .mmap = generic_file_mmap,
  195. .write = do_sync_write,
  196. .aio_write = udf_file_aio_write,
  197. .release = udf_release_file,
  198. .fsync = generic_file_fsync,
  199. .splice_read = generic_file_splice_read,
  200. .llseek = generic_file_llseek,
  201. };
  202. static int udf_setattr(struct dentry *dentry, struct iattr *attr)
  203. {
  204. struct inode *inode = dentry->d_inode;
  205. int error;
  206. error = inode_change_ok(inode, attr);
  207. if (error)
  208. return error;
  209. if ((attr->ia_valid & ATTR_SIZE) &&
  210. attr->ia_size != i_size_read(inode)) {
  211. error = vmtruncate(inode, attr->ia_size);
  212. if (error)
  213. return error;
  214. }
  215. setattr_copy(inode, attr);
  216. mark_inode_dirty(inode);
  217. return 0;
  218. }
  219. const struct inode_operations udf_file_inode_operations = {
  220. .setattr = udf_setattr,
  221. .truncate = udf_truncate,
  222. };