inode.c 12 KB

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  1. /*
  2. * arch/s390/hypfs/inode.c
  3. * Hypervisor filesystem for Linux on s390.
  4. *
  5. * Copyright IBM Corp. 2006, 2008
  6. * Author(s): Michael Holzheu <holzheu@de.ibm.com>
  7. */
  8. #define KMSG_COMPONENT "hypfs"
  9. #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
  10. #include <linux/types.h>
  11. #include <linux/errno.h>
  12. #include <linux/fs.h>
  13. #include <linux/namei.h>
  14. #include <linux/vfs.h>
  15. #include <linux/pagemap.h>
  16. #include <linux/gfp.h>
  17. #include <linux/time.h>
  18. #include <linux/parser.h>
  19. #include <linux/sysfs.h>
  20. #include <linux/module.h>
  21. #include <linux/seq_file.h>
  22. #include <linux/mount.h>
  23. #include <asm/ebcdic.h>
  24. #include "hypfs.h"
  25. #define HYPFS_MAGIC 0x687970 /* ASCII 'hyp' */
  26. #define TMP_SIZE 64 /* size of temporary buffers */
  27. static struct dentry *hypfs_create_update_file(struct super_block *sb,
  28. struct dentry *dir);
  29. struct hypfs_sb_info {
  30. uid_t uid; /* uid used for files and dirs */
  31. gid_t gid; /* gid used for files and dirs */
  32. struct dentry *update_file; /* file to trigger update */
  33. time_t last_update; /* last update time in secs since 1970 */
  34. struct mutex lock; /* lock to protect update process */
  35. };
  36. static const struct file_operations hypfs_file_ops;
  37. static struct file_system_type hypfs_type;
  38. static struct super_operations hypfs_s_ops;
  39. /* start of list of all dentries, which have to be deleted on update */
  40. static struct dentry *hypfs_last_dentry;
  41. static void hypfs_update_update(struct super_block *sb)
  42. {
  43. struct hypfs_sb_info *sb_info = sb->s_fs_info;
  44. struct inode *inode = sb_info->update_file->d_inode;
  45. sb_info->last_update = get_seconds();
  46. inode->i_atime = inode->i_mtime = inode->i_ctime = CURRENT_TIME;
  47. }
  48. /* directory tree removal functions */
  49. static void hypfs_add_dentry(struct dentry *dentry)
  50. {
  51. dentry->d_fsdata = hypfs_last_dentry;
  52. hypfs_last_dentry = dentry;
  53. }
  54. static inline int hypfs_positive(struct dentry *dentry)
  55. {
  56. return dentry->d_inode && !d_unhashed(dentry);
  57. }
  58. static void hypfs_remove(struct dentry *dentry)
  59. {
  60. struct dentry *parent;
  61. parent = dentry->d_parent;
  62. if (!parent || !parent->d_inode)
  63. return;
  64. mutex_lock(&parent->d_inode->i_mutex);
  65. if (hypfs_positive(dentry)) {
  66. if (S_ISDIR(dentry->d_inode->i_mode))
  67. simple_rmdir(parent->d_inode, dentry);
  68. else
  69. simple_unlink(parent->d_inode, dentry);
  70. }
  71. d_delete(dentry);
  72. dput(dentry);
  73. mutex_unlock(&parent->d_inode->i_mutex);
  74. }
  75. static void hypfs_delete_tree(struct dentry *root)
  76. {
  77. while (hypfs_last_dentry) {
  78. struct dentry *next_dentry;
  79. next_dentry = hypfs_last_dentry->d_fsdata;
  80. hypfs_remove(hypfs_last_dentry);
  81. hypfs_last_dentry = next_dentry;
  82. }
  83. }
  84. static struct inode *hypfs_make_inode(struct super_block *sb, int mode)
  85. {
  86. struct inode *ret = new_inode(sb);
  87. if (ret) {
  88. struct hypfs_sb_info *hypfs_info = sb->s_fs_info;
  89. ret->i_mode = mode;
  90. ret->i_uid = hypfs_info->uid;
  91. ret->i_gid = hypfs_info->gid;
  92. ret->i_blocks = 0;
  93. ret->i_atime = ret->i_mtime = ret->i_ctime = CURRENT_TIME;
  94. if (mode & S_IFDIR)
  95. ret->i_nlink = 2;
  96. else
  97. ret->i_nlink = 1;
  98. }
  99. return ret;
  100. }
  101. static void hypfs_drop_inode(struct inode *inode)
  102. {
  103. kfree(inode->i_private);
  104. generic_delete_inode(inode);
  105. }
  106. static int hypfs_open(struct inode *inode, struct file *filp)
  107. {
  108. char *data = filp->f_path.dentry->d_inode->i_private;
  109. struct hypfs_sb_info *fs_info;
  110. if (filp->f_mode & FMODE_WRITE) {
  111. if (!(inode->i_mode & S_IWUGO))
  112. return -EACCES;
  113. }
  114. if (filp->f_mode & FMODE_READ) {
  115. if (!(inode->i_mode & S_IRUGO))
  116. return -EACCES;
  117. }
  118. fs_info = inode->i_sb->s_fs_info;
  119. if(data) {
  120. mutex_lock(&fs_info->lock);
  121. filp->private_data = kstrdup(data, GFP_KERNEL);
  122. if (!filp->private_data) {
  123. mutex_unlock(&fs_info->lock);
  124. return -ENOMEM;
  125. }
  126. mutex_unlock(&fs_info->lock);
  127. }
  128. return 0;
  129. }
  130. static ssize_t hypfs_aio_read(struct kiocb *iocb, const struct iovec *iov,
  131. unsigned long nr_segs, loff_t offset)
  132. {
  133. char *data;
  134. ssize_t ret;
  135. struct file *filp = iocb->ki_filp;
  136. /* XXX: temporary */
  137. char __user *buf = iov[0].iov_base;
  138. size_t count = iov[0].iov_len;
  139. if (nr_segs != 1)
  140. return -EINVAL;
  141. data = filp->private_data;
  142. ret = simple_read_from_buffer(buf, count, &offset, data, strlen(data));
  143. if (ret <= 0)
  144. return ret;
  145. iocb->ki_pos += ret;
  146. file_accessed(filp);
  147. return ret;
  148. }
  149. static ssize_t hypfs_aio_write(struct kiocb *iocb, const struct iovec *iov,
  150. unsigned long nr_segs, loff_t offset)
  151. {
  152. int rc;
  153. struct super_block *sb;
  154. struct hypfs_sb_info *fs_info;
  155. size_t count = iov_length(iov, nr_segs);
  156. sb = iocb->ki_filp->f_path.dentry->d_inode->i_sb;
  157. fs_info = sb->s_fs_info;
  158. /*
  159. * Currently we only allow one update per second for two reasons:
  160. * 1. diag 204 is VERY expensive
  161. * 2. If several processes do updates in parallel and then read the
  162. * hypfs data, the likelihood of collisions is reduced, if we restrict
  163. * the minimum update interval. A collision occurs, if during the
  164. * data gathering of one process another process triggers an update
  165. * If the first process wants to ensure consistent data, it has
  166. * to restart data collection in this case.
  167. */
  168. mutex_lock(&fs_info->lock);
  169. if (fs_info->last_update == get_seconds()) {
  170. rc = -EBUSY;
  171. goto out;
  172. }
  173. hypfs_delete_tree(sb->s_root);
  174. if (MACHINE_IS_VM)
  175. rc = hypfs_vm_create_files(sb, sb->s_root);
  176. else
  177. rc = hypfs_diag_create_files(sb, sb->s_root);
  178. if (rc) {
  179. pr_err("Updating the hypfs tree failed\n");
  180. hypfs_delete_tree(sb->s_root);
  181. goto out;
  182. }
  183. hypfs_update_update(sb);
  184. rc = count;
  185. out:
  186. mutex_unlock(&fs_info->lock);
  187. return rc;
  188. }
  189. static int hypfs_release(struct inode *inode, struct file *filp)
  190. {
  191. kfree(filp->private_data);
  192. return 0;
  193. }
  194. enum { opt_uid, opt_gid, opt_err };
  195. static const match_table_t hypfs_tokens = {
  196. {opt_uid, "uid=%u"},
  197. {opt_gid, "gid=%u"},
  198. {opt_err, NULL}
  199. };
  200. static int hypfs_parse_options(char *options, struct super_block *sb)
  201. {
  202. char *str;
  203. substring_t args[MAX_OPT_ARGS];
  204. if (!options)
  205. return 0;
  206. while ((str = strsep(&options, ",")) != NULL) {
  207. int token, option;
  208. struct hypfs_sb_info *hypfs_info = sb->s_fs_info;
  209. if (!*str)
  210. continue;
  211. token = match_token(str, hypfs_tokens, args);
  212. switch (token) {
  213. case opt_uid:
  214. if (match_int(&args[0], &option))
  215. return -EINVAL;
  216. hypfs_info->uid = option;
  217. break;
  218. case opt_gid:
  219. if (match_int(&args[0], &option))
  220. return -EINVAL;
  221. hypfs_info->gid = option;
  222. break;
  223. case opt_err:
  224. default:
  225. pr_err("%s is not a valid mount option\n", str);
  226. return -EINVAL;
  227. }
  228. }
  229. return 0;
  230. }
  231. static int hypfs_show_options(struct seq_file *s, struct vfsmount *mnt)
  232. {
  233. struct hypfs_sb_info *hypfs_info = mnt->mnt_sb->s_fs_info;
  234. seq_printf(s, ",uid=%u", hypfs_info->uid);
  235. seq_printf(s, ",gid=%u", hypfs_info->gid);
  236. return 0;
  237. }
  238. static int hypfs_fill_super(struct super_block *sb, void *data, int silent)
  239. {
  240. struct inode *root_inode;
  241. struct dentry *root_dentry;
  242. int rc = 0;
  243. struct hypfs_sb_info *sbi;
  244. sbi = kzalloc(sizeof(struct hypfs_sb_info), GFP_KERNEL);
  245. if (!sbi)
  246. return -ENOMEM;
  247. mutex_init(&sbi->lock);
  248. sbi->uid = current_uid();
  249. sbi->gid = current_gid();
  250. sb->s_fs_info = sbi;
  251. sb->s_blocksize = PAGE_CACHE_SIZE;
  252. sb->s_blocksize_bits = PAGE_CACHE_SHIFT;
  253. sb->s_magic = HYPFS_MAGIC;
  254. sb->s_op = &hypfs_s_ops;
  255. if (hypfs_parse_options(data, sb)) {
  256. rc = -EINVAL;
  257. goto err_alloc;
  258. }
  259. root_inode = hypfs_make_inode(sb, S_IFDIR | 0755);
  260. if (!root_inode) {
  261. rc = -ENOMEM;
  262. goto err_alloc;
  263. }
  264. root_inode->i_op = &simple_dir_inode_operations;
  265. root_inode->i_fop = &simple_dir_operations;
  266. root_dentry = d_alloc_root(root_inode);
  267. if (!root_dentry) {
  268. iput(root_inode);
  269. rc = -ENOMEM;
  270. goto err_alloc;
  271. }
  272. if (MACHINE_IS_VM)
  273. rc = hypfs_vm_create_files(sb, root_dentry);
  274. else
  275. rc = hypfs_diag_create_files(sb, root_dentry);
  276. if (rc)
  277. goto err_tree;
  278. sbi->update_file = hypfs_create_update_file(sb, root_dentry);
  279. if (IS_ERR(sbi->update_file)) {
  280. rc = PTR_ERR(sbi->update_file);
  281. goto err_tree;
  282. }
  283. hypfs_update_update(sb);
  284. sb->s_root = root_dentry;
  285. pr_info("Hypervisor filesystem mounted\n");
  286. return 0;
  287. err_tree:
  288. hypfs_delete_tree(root_dentry);
  289. d_genocide(root_dentry);
  290. dput(root_dentry);
  291. err_alloc:
  292. kfree(sbi);
  293. return rc;
  294. }
  295. static int hypfs_get_super(struct file_system_type *fst, int flags,
  296. const char *devname, void *data, struct vfsmount *mnt)
  297. {
  298. return get_sb_single(fst, flags, data, hypfs_fill_super, mnt);
  299. }
  300. static void hypfs_kill_super(struct super_block *sb)
  301. {
  302. struct hypfs_sb_info *sb_info = sb->s_fs_info;
  303. if (sb->s_root) {
  304. hypfs_delete_tree(sb->s_root);
  305. hypfs_remove(sb_info->update_file);
  306. kfree(sb->s_fs_info);
  307. sb->s_fs_info = NULL;
  308. }
  309. kill_litter_super(sb);
  310. }
  311. static struct dentry *hypfs_create_file(struct super_block *sb,
  312. struct dentry *parent, const char *name,
  313. char *data, mode_t mode)
  314. {
  315. struct dentry *dentry;
  316. struct inode *inode;
  317. struct qstr qname;
  318. qname.name = name;
  319. qname.len = strlen(name);
  320. qname.hash = full_name_hash(name, qname.len);
  321. mutex_lock(&parent->d_inode->i_mutex);
  322. dentry = lookup_one_len(name, parent, strlen(name));
  323. if (IS_ERR(dentry)) {
  324. dentry = ERR_PTR(-ENOMEM);
  325. goto fail;
  326. }
  327. inode = hypfs_make_inode(sb, mode);
  328. if (!inode) {
  329. dput(dentry);
  330. dentry = ERR_PTR(-ENOMEM);
  331. goto fail;
  332. }
  333. if (mode & S_IFREG) {
  334. inode->i_fop = &hypfs_file_ops;
  335. if (data)
  336. inode->i_size = strlen(data);
  337. else
  338. inode->i_size = 0;
  339. } else if (mode & S_IFDIR) {
  340. inode->i_op = &simple_dir_inode_operations;
  341. inode->i_fop = &simple_dir_operations;
  342. parent->d_inode->i_nlink++;
  343. } else
  344. BUG();
  345. inode->i_private = data;
  346. d_instantiate(dentry, inode);
  347. dget(dentry);
  348. fail:
  349. mutex_unlock(&parent->d_inode->i_mutex);
  350. return dentry;
  351. }
  352. struct dentry *hypfs_mkdir(struct super_block *sb, struct dentry *parent,
  353. const char *name)
  354. {
  355. struct dentry *dentry;
  356. dentry = hypfs_create_file(sb, parent, name, NULL, S_IFDIR | DIR_MODE);
  357. if (IS_ERR(dentry))
  358. return dentry;
  359. hypfs_add_dentry(dentry);
  360. return dentry;
  361. }
  362. static struct dentry *hypfs_create_update_file(struct super_block *sb,
  363. struct dentry *dir)
  364. {
  365. struct dentry *dentry;
  366. dentry = hypfs_create_file(sb, dir, "update", NULL,
  367. S_IFREG | UPDATE_FILE_MODE);
  368. /*
  369. * We do not put the update file on the 'delete' list with
  370. * hypfs_add_dentry(), since it should not be removed when the tree
  371. * is updated.
  372. */
  373. return dentry;
  374. }
  375. struct dentry *hypfs_create_u64(struct super_block *sb, struct dentry *dir,
  376. const char *name, __u64 value)
  377. {
  378. char *buffer;
  379. char tmp[TMP_SIZE];
  380. struct dentry *dentry;
  381. snprintf(tmp, TMP_SIZE, "%lld\n", (unsigned long long int)value);
  382. buffer = kstrdup(tmp, GFP_KERNEL);
  383. if (!buffer)
  384. return ERR_PTR(-ENOMEM);
  385. dentry =
  386. hypfs_create_file(sb, dir, name, buffer, S_IFREG | REG_FILE_MODE);
  387. if (IS_ERR(dentry)) {
  388. kfree(buffer);
  389. return ERR_PTR(-ENOMEM);
  390. }
  391. hypfs_add_dentry(dentry);
  392. return dentry;
  393. }
  394. struct dentry *hypfs_create_str(struct super_block *sb, struct dentry *dir,
  395. const char *name, char *string)
  396. {
  397. char *buffer;
  398. struct dentry *dentry;
  399. buffer = kmalloc(strlen(string) + 2, GFP_KERNEL);
  400. if (!buffer)
  401. return ERR_PTR(-ENOMEM);
  402. sprintf(buffer, "%s\n", string);
  403. dentry =
  404. hypfs_create_file(sb, dir, name, buffer, S_IFREG | REG_FILE_MODE);
  405. if (IS_ERR(dentry)) {
  406. kfree(buffer);
  407. return ERR_PTR(-ENOMEM);
  408. }
  409. hypfs_add_dentry(dentry);
  410. return dentry;
  411. }
  412. static const struct file_operations hypfs_file_ops = {
  413. .open = hypfs_open,
  414. .release = hypfs_release,
  415. .read = do_sync_read,
  416. .write = do_sync_write,
  417. .aio_read = hypfs_aio_read,
  418. .aio_write = hypfs_aio_write,
  419. };
  420. static struct file_system_type hypfs_type = {
  421. .owner = THIS_MODULE,
  422. .name = "s390_hypfs",
  423. .get_sb = hypfs_get_super,
  424. .kill_sb = hypfs_kill_super
  425. };
  426. static struct super_operations hypfs_s_ops = {
  427. .statfs = simple_statfs,
  428. .drop_inode = hypfs_drop_inode,
  429. .show_options = hypfs_show_options,
  430. };
  431. static struct kobject *s390_kobj;
  432. static int __init hypfs_init(void)
  433. {
  434. int rc;
  435. if (MACHINE_IS_VM) {
  436. if (hypfs_vm_init())
  437. /* no diag 2fc, just exit */
  438. return -ENODATA;
  439. } else {
  440. if (hypfs_diag_init()) {
  441. rc = -ENODATA;
  442. goto fail_diag;
  443. }
  444. }
  445. s390_kobj = kobject_create_and_add("s390", hypervisor_kobj);
  446. if (!s390_kobj) {
  447. rc = -ENOMEM;;
  448. goto fail_sysfs;
  449. }
  450. rc = register_filesystem(&hypfs_type);
  451. if (rc)
  452. goto fail_filesystem;
  453. return 0;
  454. fail_filesystem:
  455. kobject_put(s390_kobj);
  456. fail_sysfs:
  457. if (!MACHINE_IS_VM)
  458. hypfs_diag_exit();
  459. fail_diag:
  460. pr_err("Initialization of hypfs failed with rc=%i\n", rc);
  461. return rc;
  462. }
  463. static void __exit hypfs_exit(void)
  464. {
  465. if (!MACHINE_IS_VM)
  466. hypfs_diag_exit();
  467. unregister_filesystem(&hypfs_type);
  468. kobject_put(s390_kobj);
  469. }
  470. module_init(hypfs_init)
  471. module_exit(hypfs_exit)
  472. MODULE_LICENSE("GPL");
  473. MODULE_AUTHOR("Michael Holzheu <holzheu@de.ibm.com>");
  474. MODULE_DESCRIPTION("s390 Hypervisor Filesystem");