VirtualFileSystem.cpp 21 KB

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  1. #include "VirtualFileSystem.h"
  2. #include "FileDescriptor.h"
  3. #include "FileSystem.h"
  4. #include <AK/FileSystemPath.h>
  5. #include <AK/StringBuilder.h>
  6. #include <AK/kmalloc.h>
  7. #include <AK/kstdio.h>
  8. #include <AK/ktime.h>
  9. #include "CharacterDevice.h"
  10. #include <LibC/errno_numbers.h>
  11. #include <Kernel/Process.h>
  12. //#define VFS_DEBUG
  13. static VFS* s_the;
  14. VFS& VFS::the()
  15. {
  16. ASSERT(s_the);
  17. return *s_the;
  18. }
  19. VFS::VFS()
  20. {
  21. #ifdef VFS_DEBUG
  22. kprintf("VFS: Constructing VFS\n");
  23. #endif
  24. s_the = this;
  25. }
  26. VFS::~VFS()
  27. {
  28. }
  29. InodeIdentifier VFS::root_inode_id() const
  30. {
  31. ASSERT(m_root_inode);
  32. return m_root_inode->identifier();
  33. }
  34. bool VFS::mount(RetainPtr<FS>&& file_system, const String& path)
  35. {
  36. ASSERT(file_system);
  37. int error;
  38. auto inode = old_resolve_path(path, root_inode_id(), error);
  39. if (!inode.is_valid()) {
  40. kprintf("VFS: mount can't resolve mount point '%s'\n", path.characters());
  41. return false;
  42. }
  43. kprintf("VFS: mounting %s{%p} at %s (inode: %u)\n", file_system->class_name(), file_system.ptr(), path.characters(), inode.index());
  44. // FIXME: check that this is not already a mount point
  45. auto mount = make<Mount>(inode, move(file_system));
  46. m_mounts.append(move(mount));
  47. return true;
  48. }
  49. bool VFS::mount_root(RetainPtr<FS>&& file_system)
  50. {
  51. if (m_root_inode) {
  52. kprintf("VFS: mount_root can't mount another root\n");
  53. return false;
  54. }
  55. auto mount = make<Mount>(InodeIdentifier(), move(file_system));
  56. auto root_inode_id = mount->guest().fs()->root_inode();
  57. auto root_inode = mount->guest().fs()->get_inode(root_inode_id);
  58. if (!root_inode->is_directory()) {
  59. kprintf("VFS: root inode (%02u:%08u) for / is not a directory :(\n", root_inode_id.fsid(), root_inode_id.index());
  60. return false;
  61. }
  62. m_root_inode = move(root_inode);
  63. kprintf("VFS: mounted root on %s{%p}\n",
  64. m_root_inode->fs().class_name(),
  65. &m_root_inode->fs());
  66. m_mounts.append(move(mount));
  67. return true;
  68. }
  69. auto VFS::find_mount_for_host(InodeIdentifier inode) -> Mount*
  70. {
  71. for (auto& mount : m_mounts) {
  72. if (mount->host() == inode)
  73. return mount.ptr();
  74. }
  75. return nullptr;
  76. }
  77. auto VFS::find_mount_for_guest(InodeIdentifier inode) -> Mount*
  78. {
  79. for (auto& mount : m_mounts) {
  80. if (mount->guest() == inode)
  81. return mount.ptr();
  82. }
  83. return nullptr;
  84. }
  85. bool VFS::is_vfs_root(InodeIdentifier inode) const
  86. {
  87. return inode == root_inode_id();
  88. }
  89. void VFS::traverse_directory_inode(Inode& dir_inode, Function<bool(const FS::DirectoryEntry&)> callback)
  90. {
  91. dir_inode.traverse_as_directory([&] (const FS::DirectoryEntry& entry) {
  92. InodeIdentifier resolved_inode;
  93. if (auto mount = find_mount_for_host(entry.inode))
  94. resolved_inode = mount->guest();
  95. else
  96. resolved_inode = entry.inode;
  97. if (dir_inode.identifier().is_root_inode() && !is_vfs_root(dir_inode.identifier()) && !strcmp(entry.name, "..")) {
  98. auto mount = find_mount_for_guest(entry.inode);
  99. ASSERT(mount);
  100. resolved_inode = mount->host();
  101. }
  102. callback(FS::DirectoryEntry(entry.name, entry.name_length, resolved_inode, entry.file_type));
  103. return true;
  104. });
  105. }
  106. KResultOr<Retained<FileDescriptor>> VFS::open(RetainPtr<Device>&& device, int options)
  107. {
  108. // FIXME: Respect options.
  109. (void)options;
  110. return FileDescriptor::create(move(device));
  111. }
  112. KResult VFS::utime(const String& path, Inode& base, time_t atime, time_t mtime)
  113. {
  114. auto descriptor_or_error = VFS::the().open(move(path), 0, 0, base);
  115. if (descriptor_or_error.is_error())
  116. return descriptor_or_error.error();
  117. auto& inode = *descriptor_or_error.value()->inode();
  118. if (inode.fs().is_readonly())
  119. return KResult(-EROFS);
  120. if (inode.metadata().uid != current->process().euid())
  121. return KResult(-EACCES);
  122. int error = inode.set_atime(atime);
  123. if (error)
  124. return KResult(error);
  125. error = inode.set_mtime(mtime);
  126. if (error)
  127. return KResult(error);
  128. return KSuccess;
  129. }
  130. KResult VFS::stat(const String& path, int options, Inode& base, struct stat& statbuf)
  131. {
  132. auto inode_or_error = resolve_path_to_inode(path, base, nullptr, options);
  133. if (inode_or_error.is_error())
  134. return inode_or_error.error();
  135. return FileDescriptor::create(inode_or_error.value().ptr())->fstat(statbuf);
  136. }
  137. KResultOr<Retained<FileDescriptor>> VFS::open(const String& path, int options, mode_t mode, Inode& base)
  138. {
  139. auto inode_or_error = resolve_path_to_inode(path, base, nullptr, options);
  140. if (options & O_CREAT) {
  141. if (inode_or_error.is_error())
  142. return create(path, options, mode, base);
  143. if (options & O_EXCL)
  144. return KResult(-EEXIST);
  145. }
  146. if (inode_or_error.is_error())
  147. return inode_or_error.error();
  148. auto metadata = inode_or_error.value()->metadata();
  149. // NOTE: Read permission is a bit weird, since O_RDONLY == 0,
  150. // so we check if (NOT write_only OR read_and_write)
  151. if (!(options & O_WRONLY) || (options & O_RDWR)) {
  152. if (!metadata.may_read(current->process()))
  153. return KResult(-EACCES);
  154. }
  155. if ((options & O_WRONLY) || (options & O_RDWR)) {
  156. if (!metadata.may_write(current->process()))
  157. return KResult(-EACCES);
  158. if (metadata.is_directory())
  159. return KResult(-EISDIR);
  160. }
  161. if (metadata.is_device()) {
  162. auto it = m_devices.find(encoded_device(metadata.major_device, metadata.minor_device));
  163. if (it == m_devices.end()) {
  164. return KResult(-ENODEV);
  165. }
  166. auto descriptor_or_error = (*it).value->open(options);
  167. if (descriptor_or_error.is_error())
  168. return descriptor_or_error.error();
  169. descriptor_or_error.value()->set_original_inode(Badge<VFS>(), *inode_or_error.value());
  170. return descriptor_or_error;
  171. }
  172. return FileDescriptor::create(*inode_or_error.value());
  173. }
  174. KResultOr<Retained<FileDescriptor>> VFS::create(const String& path, int options, mode_t mode, Inode& base)
  175. {
  176. (void)options;
  177. if (!is_socket(mode) && !is_fifo(mode) && !is_block_device(mode) && !is_character_device(mode)) {
  178. // Turn it into a regular file. (This feels rather hackish.)
  179. mode |= 0100000;
  180. }
  181. RetainPtr<Inode> parent_inode;
  182. auto existing_file_or_error = resolve_path_to_inode(path, base, &parent_inode);
  183. if (!existing_file_or_error.is_error())
  184. return KResult(-EEXIST);
  185. if (!parent_inode)
  186. return KResult(-ENOENT);
  187. if (existing_file_or_error.error() != -ENOENT)
  188. return existing_file_or_error.error();
  189. if (!parent_inode->metadata().may_write(current->process()))
  190. return KResult(-EACCES);
  191. FileSystemPath p(path);
  192. dbgprintf("VFS::create_file: '%s' in %u:%u\n", p.basename().characters(), parent_inode->fsid(), parent_inode->index());
  193. int error;
  194. auto new_file = parent_inode->fs().create_inode(parent_inode->identifier(), p.basename(), mode, 0, error);
  195. if (!new_file)
  196. return KResult(error);
  197. return FileDescriptor::create(move(new_file));
  198. }
  199. KResult VFS::mkdir(const String& path, mode_t mode, Inode& base)
  200. {
  201. RetainPtr<Inode> parent_inode;
  202. auto result = resolve_path_to_inode(path, base, &parent_inode);
  203. if (!result.is_error())
  204. return KResult(-EEXIST);
  205. if (!parent_inode)
  206. return KResult(-ENOENT);
  207. if (result.error() != -ENOENT)
  208. return result.error();
  209. if (!parent_inode->metadata().may_write(current->process()))
  210. return KResult(-EACCES);
  211. FileSystemPath p(path);
  212. dbgprintf("VFS::mkdir: '%s' in %u:%u\n", p.basename().characters(), parent_inode->fsid(), parent_inode->index());
  213. int error;
  214. auto new_dir = parent_inode->fs().create_directory(parent_inode->identifier(), p.basename(), mode, error);
  215. if (new_dir)
  216. return KSuccess;
  217. return KResult(error);
  218. }
  219. KResult VFS::access(const String& path, int mode, Inode& base)
  220. {
  221. auto inode_or_error = resolve_path_to_inode(path, base);
  222. if (inode_or_error.is_error())
  223. return inode_or_error.error();
  224. auto inode = inode_or_error.value();
  225. auto metadata = inode->metadata();
  226. if (mode & R_OK) {
  227. if (!metadata.may_read(current->process()))
  228. return KResult(-EACCES);
  229. }
  230. if (mode & W_OK) {
  231. if (!metadata.may_write(current->process()))
  232. return KResult(-EACCES);
  233. }
  234. if (mode & X_OK) {
  235. if (!metadata.may_execute(current->process()))
  236. return KResult(-EACCES);
  237. }
  238. return KSuccess;
  239. }
  240. KResultOr<Retained<Inode>> VFS::open_directory(const String& path, Inode& base)
  241. {
  242. auto inode_or_error = resolve_path_to_inode(path, base);
  243. if (inode_or_error.is_error())
  244. return inode_or_error.error();
  245. auto inode = inode_or_error.value();
  246. if (!inode->is_directory())
  247. return KResult(-ENOTDIR);
  248. if (!inode->metadata().may_execute(current->process()))
  249. return KResult(-EACCES);
  250. return Retained<Inode>(*inode);
  251. }
  252. KResult VFS::chmod(Inode& inode, mode_t mode)
  253. {
  254. if (inode.fs().is_readonly())
  255. return KResult(-EROFS);
  256. if (current->process().euid() != inode.metadata().uid && !current->process().is_superuser())
  257. return KResult(-EPERM);
  258. // Only change the permission bits.
  259. mode = (inode.mode() & ~04777u) | (mode & 04777u);
  260. return inode.chmod(mode);
  261. }
  262. KResult VFS::chmod(const String& path, mode_t mode, Inode& base)
  263. {
  264. auto inode_or_error = resolve_path_to_inode(path, base);
  265. if (inode_or_error.is_error())
  266. return inode_or_error.error();
  267. auto inode = inode_or_error.value();
  268. return chmod(*inode, mode);
  269. }
  270. KResult VFS::chown(const String& path, uid_t a_uid, gid_t a_gid, Inode& base)
  271. {
  272. auto inode_or_error = resolve_path_to_inode(path, base);
  273. if (inode_or_error.is_error())
  274. return inode_or_error.error();
  275. auto inode = inode_or_error.value();
  276. if (inode->fs().is_readonly())
  277. return KResult(-EROFS);
  278. if (current->process().euid() != inode->metadata().uid && !current->process().is_superuser())
  279. return KResult(-EPERM);
  280. uid_t new_uid = inode->metadata().uid;
  281. gid_t new_gid = inode->metadata().gid;
  282. if (a_uid != (uid_t)-1) {
  283. if (current->process().euid() != a_uid && !current->process().is_superuser())
  284. return KResult(-EPERM);
  285. new_uid = a_uid;
  286. }
  287. if (a_gid != (gid_t)-1) {
  288. if (!current->process().in_group(a_gid) && !current->process().is_superuser())
  289. return KResult(-EPERM);
  290. new_gid = a_gid;
  291. }
  292. dbgprintf("VFS::chown(): inode %u:%u <- uid:%d, gid:%d\n", inode->fsid(), inode->index(), new_uid, new_gid);
  293. return inode->chown(new_uid, new_gid);
  294. }
  295. KResultOr<Retained<Inode>> VFS::resolve_path_to_inode(const String& path, Inode& base, RetainPtr<Inode>* parent_inode, int options)
  296. {
  297. // FIXME: This won't work nicely across mount boundaries.
  298. FileSystemPath p(path);
  299. if (!p.is_valid())
  300. return KResult(-EINVAL);
  301. InodeIdentifier parent_id;
  302. auto result = resolve_path(path, base.identifier(), options, &parent_id);
  303. if (parent_inode && parent_id.is_valid())
  304. *parent_inode = get_inode(parent_id);
  305. if (result.is_error())
  306. return result.error();
  307. return Retained<Inode>(*get_inode(result.value()));
  308. }
  309. KResult VFS::link(const String& old_path, const String& new_path, Inode& base)
  310. {
  311. auto old_inode_or_error = resolve_path_to_inode(old_path, base);
  312. if (old_inode_or_error.is_error())
  313. return old_inode_or_error.error();
  314. auto old_inode = old_inode_or_error.value();
  315. RetainPtr<Inode> parent_inode;
  316. auto new_inode_or_error = resolve_path_to_inode(new_path, base, &parent_inode);
  317. if (!new_inode_or_error.is_error())
  318. return KResult(-EEXIST);
  319. if (!parent_inode)
  320. return KResult(-ENOENT);
  321. if (parent_inode->fsid() != old_inode->fsid())
  322. return KResult(-EXDEV);
  323. if (parent_inode->fs().is_readonly())
  324. return KResult(-EROFS);
  325. if (!parent_inode->metadata().may_write(current->process()))
  326. return KResult(-EACCES);
  327. return parent_inode->add_child(old_inode->identifier(), FileSystemPath(new_path).basename(), 0);
  328. }
  329. KResult VFS::unlink(const String& path, Inode& base)
  330. {
  331. RetainPtr<Inode> parent_inode;
  332. auto inode_or_error = resolve_path_to_inode(path, base, &parent_inode);
  333. if (inode_or_error.is_error())
  334. return inode_or_error.error();
  335. auto inode = inode_or_error.value();
  336. if (inode->is_directory())
  337. return KResult(-EISDIR);
  338. if (!parent_inode->metadata().may_write(current->process()))
  339. return KResult(-EACCES);
  340. return parent_inode->remove_child(FileSystemPath(path).basename());
  341. }
  342. KResult VFS::symlink(const String& target, const String& linkpath, Inode& base)
  343. {
  344. RetainPtr<Inode> parent_inode;
  345. auto existing_file_or_error = resolve_path_to_inode(linkpath, base, &parent_inode);
  346. if (!existing_file_or_error.is_error())
  347. return KResult(-EEXIST);
  348. if (!parent_inode)
  349. return KResult(-ENOENT);
  350. if (existing_file_or_error.error() != -ENOENT)
  351. return existing_file_or_error.error();
  352. if (!parent_inode->metadata().may_write(current->process()))
  353. return KResult(-EACCES);
  354. FileSystemPath p(linkpath);
  355. dbgprintf("VFS::symlink: '%s' (-> '%s') in %u:%u\n", p.basename().characters(), target.characters(), parent_inode->fsid(), parent_inode->index());
  356. int error;
  357. auto new_file = parent_inode->fs().create_inode(parent_inode->identifier(), p.basename(), 0120644, 0, error);
  358. if (!new_file)
  359. return KResult(error);
  360. ssize_t nwritten = new_file->write_bytes(0, target.length(), (const byte*)target.characters(), nullptr);
  361. if (nwritten < 0)
  362. return KResult(nwritten);
  363. return KSuccess;
  364. }
  365. KResult VFS::rmdir(const String& path, Inode& base)
  366. {
  367. RetainPtr<Inode> parent_inode;
  368. auto inode_or_error = resolve_path_to_inode(path, base, &parent_inode);
  369. if (inode_or_error.is_error())
  370. return KResult(inode_or_error.error());
  371. auto inode = inode_or_error.value();
  372. if (inode->fs().is_readonly())
  373. return KResult(-EROFS);
  374. // FIXME: We should return EINVAL if the last component of the path is "."
  375. // FIXME: We should return ENOTEMPTY if the last component of the path is ".."
  376. if (!inode->is_directory())
  377. return KResult(-ENOTDIR);
  378. if (!parent_inode->metadata().may_write(current->process()))
  379. return KResult(-EACCES);
  380. if (inode->directory_entry_count() != 2)
  381. return KResult(-ENOTEMPTY);
  382. auto result = inode->remove_child(".");
  383. if (result.is_error())
  384. return result;
  385. result = inode->remove_child("..");
  386. if (result.is_error())
  387. return result;
  388. // FIXME: The reverse_lookup here can definitely be avoided.
  389. return parent_inode->remove_child(parent_inode->reverse_lookup(inode->identifier()));
  390. }
  391. KResultOr<InodeIdentifier> VFS::resolve_symbolic_link(InodeIdentifier base, Inode& symlink_inode)
  392. {
  393. auto symlink_contents = symlink_inode.read_entire();
  394. if (!symlink_contents)
  395. return KResult(-ENOENT);
  396. auto linkee = String((const char*)symlink_contents.pointer(), symlink_contents.size());
  397. #ifdef VFS_DEBUG
  398. kprintf("linkee (%s)(%u) from %u:%u\n", linkee.characters(), linkee.length(), base.fsid(), base.index());
  399. #endif
  400. return resolve_path(linkee, base);
  401. }
  402. RetainPtr<Inode> VFS::get_inode(InodeIdentifier inode_id)
  403. {
  404. if (!inode_id.is_valid())
  405. return nullptr;
  406. return inode_id.fs()->get_inode(inode_id);
  407. }
  408. KResultOr<String> VFS::absolute_path(InodeIdentifier inode_id)
  409. {
  410. auto inode = get_inode(inode_id);
  411. if (!inode)
  412. return KResult(-EIO);
  413. return absolute_path(*inode);
  414. }
  415. KResultOr<String> VFS::absolute_path(Inode& core_inode)
  416. {
  417. Vector<InodeIdentifier> lineage;
  418. RetainPtr<Inode> inode = &core_inode;
  419. while (inode->identifier() != root_inode_id()) {
  420. if (auto* mount = find_mount_for_guest(inode->identifier()))
  421. lineage.append(mount->host());
  422. else
  423. lineage.append(inode->identifier());
  424. InodeIdentifier parent_id;
  425. if (inode->is_directory()) {
  426. auto result = resolve_path("..", inode->identifier());
  427. if (result.is_error())
  428. return result.error();
  429. parent_id = result.value();
  430. } else {
  431. parent_id = inode->parent()->identifier();
  432. }
  433. if (!parent_id.is_valid())
  434. return KResult(-EIO);
  435. inode = get_inode(parent_id);
  436. }
  437. if (lineage.is_empty())
  438. return "/";
  439. lineage.append(root_inode_id());
  440. StringBuilder builder;
  441. for (size_t i = lineage.size() - 1; i >= 1; --i) {
  442. auto& child = lineage[i - 1];
  443. auto parent = lineage[i];
  444. if (auto* mount = find_mount_for_host(parent))
  445. parent = mount->guest();
  446. builder.append('/');
  447. auto parent_inode = get_inode(parent);
  448. builder.append(parent_inode->reverse_lookup(child));
  449. }
  450. return builder.to_string();
  451. }
  452. KResultOr<InodeIdentifier> VFS::resolve_path(const String& path, InodeIdentifier base, int options, InodeIdentifier* parent_id)
  453. {
  454. if (path.is_empty())
  455. return KResult(-EINVAL);
  456. auto parts = path.split('/');
  457. InodeIdentifier crumb_id;
  458. if (path[0] == '/')
  459. crumb_id = root_inode_id();
  460. else
  461. crumb_id = base.is_valid() ? base : root_inode_id();
  462. if (parent_id)
  463. *parent_id = crumb_id;
  464. for (int i = 0; i < parts.size(); ++i) {
  465. bool inode_was_root_at_head_of_loop = crumb_id.is_root_inode();
  466. auto& part = parts[i];
  467. if (part.is_empty())
  468. break;
  469. auto crumb_inode = get_inode(crumb_id);
  470. if (!crumb_inode) {
  471. #ifdef VFS_DEBUG
  472. kprintf("invalid metadata\n");
  473. #endif
  474. return KResult(-EIO);
  475. }
  476. auto metadata = crumb_inode->metadata();
  477. if (!metadata.is_directory()) {
  478. #ifdef VFS_DEBUG
  479. kprintf("parent of <%s> not directory, it's inode %u:%u / %u:%u, mode: %u, size: %u\n", part.characters(), crumb_id.fsid(), crumb_id.index(), metadata.inode.fsid(), metadata.inode.index(), metadata.mode, metadata.size);
  480. #endif
  481. return KResult(-ENOTDIR);
  482. }
  483. if (!metadata.may_execute(current->process()))
  484. return KResult(-EACCES);
  485. auto parent = crumb_id;
  486. crumb_id = crumb_inode->lookup(part);
  487. if (!crumb_id.is_valid()) {
  488. #ifdef VFS_DEBUG
  489. kprintf("child <%s>(%u) not found in directory, %02u:%08u\n", part.characters(), part.length(), parent.fsid(), parent.index());
  490. #endif
  491. return KResult(-ENOENT);
  492. }
  493. #ifdef VFS_DEBUG
  494. kprintf("<%s> %u:%u\n", part.characters(), crumb_id.fsid(), crumb_id.index());
  495. #endif
  496. if (auto mount = find_mount_for_host(crumb_id)) {
  497. #ifdef VFS_DEBUG
  498. kprintf(" -- is host\n");
  499. #endif
  500. crumb_id = mount->guest();
  501. }
  502. if (inode_was_root_at_head_of_loop && crumb_id.is_root_inode() && !is_vfs_root(crumb_id) && part == "..") {
  503. #ifdef VFS_DEBUG
  504. kprintf(" -- is guest\n");
  505. #endif
  506. auto mount = find_mount_for_guest(crumb_id);
  507. auto dir_inode = get_inode(mount->host());
  508. ASSERT(dir_inode);
  509. crumb_id = dir_inode->lookup("..");
  510. }
  511. crumb_inode = get_inode(crumb_id);
  512. ASSERT(crumb_inode);
  513. metadata = crumb_inode->metadata();
  514. if (metadata.is_directory()) {
  515. if (i != parts.size() - 1) {
  516. if (parent_id)
  517. *parent_id = crumb_id;
  518. }
  519. }
  520. if (metadata.is_symlink()) {
  521. if (i == parts.size() - 1) {
  522. if (options & O_NOFOLLOW)
  523. return KResult(-ELOOP);
  524. if (options & O_NOFOLLOW_NOERROR)
  525. return crumb_id;
  526. }
  527. auto result = resolve_symbolic_link(parent, *crumb_inode);
  528. if (result.is_error())
  529. return KResult(-ENOENT);
  530. crumb_id = result.value();
  531. ASSERT(crumb_id.is_valid());
  532. }
  533. }
  534. return crumb_id;
  535. }
  536. InodeIdentifier VFS::old_resolve_path(const String& path, InodeIdentifier base, int& error, int options, InodeIdentifier* parent_id)
  537. {
  538. auto result = resolve_path(path, base, options, parent_id);
  539. if (result.is_error()) {
  540. error = result.error();
  541. return { };
  542. }
  543. return result.value();
  544. }
  545. VFS::Mount::Mount(InodeIdentifier host, RetainPtr<FS>&& guest_fs)
  546. : m_host(host)
  547. , m_guest(guest_fs->root_inode())
  548. , m_guest_fs(move(guest_fs))
  549. {
  550. }
  551. void VFS::register_device(Device& device)
  552. {
  553. m_devices.set(encoded_device(device.major(), device.minor()), &device);
  554. }
  555. void VFS::unregister_device(Device& device)
  556. {
  557. m_devices.remove(encoded_device(device.major(), device.minor()));
  558. }
  559. Device* VFS::get_device(unsigned major, unsigned minor)
  560. {
  561. auto it = m_devices.find(encoded_device(major, minor));
  562. if (it == m_devices.end())
  563. return nullptr;
  564. return (*it).value;
  565. }
  566. void VFS::for_each_mount(Function<void(const Mount&)> callback) const
  567. {
  568. for (auto& mount : m_mounts) {
  569. callback(*mount);
  570. }
  571. }
  572. void VFS::sync()
  573. {
  574. FS::sync();
  575. }