VirtualFileSystem.cpp 33 KB

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  1. /*
  2. * Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include <AK/GenericLexer.h>
  7. #include <AK/Singleton.h>
  8. #include <AK/StringBuilder.h>
  9. #include <Kernel/Debug.h>
  10. #include <Kernel/Devices/BlockDevice.h>
  11. #include <Kernel/FileSystem/Custody.h>
  12. #include <Kernel/FileSystem/FileBackedFileSystem.h>
  13. #include <Kernel/FileSystem/FileSystem.h>
  14. #include <Kernel/FileSystem/OpenFileDescription.h>
  15. #include <Kernel/FileSystem/VirtualFileSystem.h>
  16. #include <Kernel/KLexicalPath.h>
  17. #include <Kernel/KSyms.h>
  18. #include <Kernel/Process.h>
  19. #include <Kernel/Sections.h>
  20. #include <LibC/errno_numbers.h>
  21. namespace Kernel {
  22. static Singleton<VirtualFileSystem> s_the;
  23. static constexpr int symlink_recursion_limit { 5 }; // FIXME: increase?
  24. static constexpr int root_mount_flags = MS_NODEV | MS_NOSUID | MS_RDONLY;
  25. UNMAP_AFTER_INIT void VirtualFileSystem::initialize()
  26. {
  27. s_the.ensure_instance();
  28. }
  29. VirtualFileSystem& VirtualFileSystem::the()
  30. {
  31. return *s_the;
  32. }
  33. UNMAP_AFTER_INIT VirtualFileSystem::VirtualFileSystem()
  34. {
  35. }
  36. UNMAP_AFTER_INIT VirtualFileSystem::~VirtualFileSystem()
  37. {
  38. }
  39. InodeIdentifier VirtualFileSystem::root_inode_id() const
  40. {
  41. VERIFY(m_root_inode);
  42. return m_root_inode->identifier();
  43. }
  44. KResult VirtualFileSystem::mount(FileSystem& fs, Custody& mount_point, int flags)
  45. {
  46. return m_mounts.with_exclusive([&](auto& mounts) -> KResult {
  47. auto& inode = mount_point.inode();
  48. dbgln("VirtualFileSystem: Mounting {} at inode {} with flags {}",
  49. fs.class_name(),
  50. inode.identifier(),
  51. flags);
  52. // FIXME: check that this is not already a mount point
  53. Mount mount { fs, &mount_point, flags };
  54. mounts.append(move(mount));
  55. return KSuccess;
  56. });
  57. }
  58. KResult VirtualFileSystem::bind_mount(Custody& source, Custody& mount_point, int flags)
  59. {
  60. return m_mounts.with_exclusive([&](auto& mounts) -> KResult {
  61. dbgln("VirtualFileSystem: Bind-mounting inode {} at inode {}", source.inode().identifier(), mount_point.inode().identifier());
  62. // FIXME: check that this is not already a mount point
  63. Mount mount { source.inode(), mount_point, flags };
  64. mounts.append(move(mount));
  65. return KSuccess;
  66. });
  67. }
  68. KResult VirtualFileSystem::remount(Custody& mount_point, int new_flags)
  69. {
  70. dbgln("VirtualFileSystem: Remounting inode {}", mount_point.inode().identifier());
  71. auto* mount = find_mount_for_guest(mount_point.inode().identifier());
  72. if (!mount)
  73. return ENODEV;
  74. mount->set_flags(new_flags);
  75. return KSuccess;
  76. }
  77. KResult VirtualFileSystem::unmount(Inode& guest_inode)
  78. {
  79. dbgln("VirtualFileSystem: unmount called with inode {}", guest_inode.identifier());
  80. return m_mounts.with_exclusive([&](auto& mounts) -> KResult {
  81. for (size_t i = 0; i < mounts.size(); ++i) {
  82. auto& mount = mounts[i];
  83. if (&mount.guest() != &guest_inode)
  84. continue;
  85. TRY(mount.guest_fs().prepare_to_unmount());
  86. dbgln("VirtualFileSystem: Unmounting file system {}...", mount.guest_fs().fsid());
  87. mounts.unstable_take(i);
  88. return KSuccess;
  89. }
  90. dbgln("VirtualFileSystem: Nothing mounted on inode {}", guest_inode.identifier());
  91. return ENODEV;
  92. });
  93. }
  94. KResult VirtualFileSystem::mount_root(FileSystem& fs)
  95. {
  96. if (m_root_inode) {
  97. dmesgln("VirtualFileSystem: mount_root can't mount another root");
  98. return EEXIST;
  99. }
  100. Mount mount { fs, nullptr, root_mount_flags };
  101. auto& root_inode = fs.root_inode();
  102. if (!root_inode.is_directory()) {
  103. dmesgln("VirtualFileSystem: root inode ({}) for / is not a directory :(", root_inode.identifier());
  104. return ENOTDIR;
  105. }
  106. m_root_inode = root_inode;
  107. dmesgln("VirtualFileSystem: mounted root from {} ({})", fs.class_name(), static_cast<FileBackedFileSystem&>(fs).file_description().absolute_path());
  108. m_mounts.with_exclusive([&](auto& mounts) {
  109. mounts.append(move(mount));
  110. });
  111. m_root_custody = TRY(Custody::try_create(nullptr, "", *m_root_inode, root_mount_flags));
  112. return KSuccess;
  113. }
  114. auto VirtualFileSystem::find_mount_for_host(InodeIdentifier id) -> Mount*
  115. {
  116. return m_mounts.with_exclusive([&](auto& mounts) -> Mount* {
  117. for (auto& mount : mounts) {
  118. if (mount.host() && mount.host()->identifier() == id)
  119. return &mount;
  120. }
  121. return nullptr;
  122. });
  123. }
  124. auto VirtualFileSystem::find_mount_for_guest(InodeIdentifier id) -> Mount*
  125. {
  126. return m_mounts.with_exclusive([&](auto& mounts) -> Mount* {
  127. for (auto& mount : mounts) {
  128. if (mount.guest().identifier() == id)
  129. return &mount;
  130. }
  131. return nullptr;
  132. });
  133. }
  134. bool VirtualFileSystem::is_vfs_root(InodeIdentifier inode) const
  135. {
  136. return inode == root_inode_id();
  137. }
  138. KResult VirtualFileSystem::traverse_directory_inode(Inode& dir_inode, Function<bool(FileSystem::DirectoryEntryView const&)> callback)
  139. {
  140. return dir_inode.traverse_as_directory([&](auto& entry) {
  141. InodeIdentifier resolved_inode;
  142. if (auto mount = find_mount_for_host(entry.inode))
  143. resolved_inode = mount->guest().identifier();
  144. else
  145. resolved_inode = entry.inode;
  146. // FIXME: This is now broken considering chroot and bind mounts.
  147. bool is_root_inode = dir_inode.identifier() == dir_inode.fs().root_inode().identifier();
  148. if (is_root_inode && !is_vfs_root(dir_inode.identifier()) && entry.name == "..") {
  149. auto mount = find_mount_for_guest(dir_inode.identifier());
  150. VERIFY(mount);
  151. VERIFY(mount->host());
  152. resolved_inode = mount->host()->identifier();
  153. }
  154. callback({ entry.name, resolved_inode, entry.file_type });
  155. return true;
  156. });
  157. }
  158. KResult VirtualFileSystem::utime(StringView path, Custody& base, time_t atime, time_t mtime)
  159. {
  160. auto custody = TRY(resolve_path(path, base));
  161. auto& inode = custody->inode();
  162. auto& current_process = Process::current();
  163. if (!current_process.is_superuser() && inode.metadata().uid != current_process.euid())
  164. return EACCES;
  165. if (custody->is_readonly())
  166. return EROFS;
  167. TRY(inode.set_atime(atime));
  168. TRY(inode.set_mtime(mtime));
  169. return KSuccess;
  170. }
  171. KResultOr<InodeMetadata> VirtualFileSystem::lookup_metadata(StringView path, Custody& base, int options)
  172. {
  173. auto custody = TRY(resolve_path(path, base, nullptr, options));
  174. return custody->inode().metadata();
  175. }
  176. KResultOr<NonnullRefPtr<OpenFileDescription>> VirtualFileSystem::open(StringView path, int options, mode_t mode, Custody& base, Optional<UidAndGid> owner)
  177. {
  178. if ((options & O_CREAT) && (options & O_DIRECTORY))
  179. return EINVAL;
  180. RefPtr<Custody> parent_custody;
  181. auto custody_or_error = resolve_path(path, base, &parent_custody, options);
  182. if (custody_or_error.is_error()) {
  183. // NOTE: ENOENT with a non-null parent custody signals us that the immediate parent
  184. // of the file exists, but the file itself does not.
  185. if ((options & O_CREAT) && custody_or_error.error() == ENOENT && parent_custody)
  186. return create(path, options, mode, *parent_custody, move(owner));
  187. return custody_or_error.error();
  188. }
  189. if ((options & O_CREAT) && (options & O_EXCL))
  190. return EEXIST;
  191. auto& custody = *custody_or_error.value();
  192. auto& inode = custody.inode();
  193. auto metadata = inode.metadata();
  194. if ((options & O_DIRECTORY) && !metadata.is_directory())
  195. return ENOTDIR;
  196. bool should_truncate_file = false;
  197. auto& current_process = Process::current();
  198. if ((options & O_RDONLY) && !metadata.may_read(current_process))
  199. return EACCES;
  200. if (options & O_WRONLY) {
  201. if (!metadata.may_write(current_process))
  202. return EACCES;
  203. if (metadata.is_directory())
  204. return EISDIR;
  205. should_truncate_file = options & O_TRUNC;
  206. }
  207. if (options & O_EXEC) {
  208. if (!metadata.may_execute(current_process) || (custody.mount_flags() & MS_NOEXEC))
  209. return EACCES;
  210. }
  211. if (auto preopen_fd = inode.preopen_fd())
  212. return *preopen_fd;
  213. if (metadata.is_fifo()) {
  214. auto fifo = TRY(inode.fifo());
  215. if (options & O_WRONLY) {
  216. auto description = TRY(fifo->open_direction_blocking(FIFO::Direction::Writer));
  217. description->set_rw_mode(options);
  218. description->set_file_flags(options);
  219. description->set_original_inode({}, inode);
  220. return description;
  221. } else if (options & O_RDONLY) {
  222. auto description = TRY(fifo->open_direction_blocking(FIFO::Direction::Reader));
  223. description->set_rw_mode(options);
  224. description->set_file_flags(options);
  225. description->set_original_inode({}, inode);
  226. return description;
  227. }
  228. return EINVAL;
  229. }
  230. if (metadata.is_device()) {
  231. if (custody.mount_flags() & MS_NODEV)
  232. return EACCES;
  233. auto device = Device::get_device(metadata.major_device, metadata.minor_device);
  234. if (device == nullptr) {
  235. return ENODEV;
  236. }
  237. auto description = TRY(device->open(options));
  238. description->set_original_inode({}, inode);
  239. description->set_original_custody({}, custody);
  240. return description;
  241. }
  242. // Check for read-only FS. Do this after handling preopen FD and devices,
  243. // but before modifying the inode in any way.
  244. if ((options & O_WRONLY) && custody.is_readonly())
  245. return EROFS;
  246. if (should_truncate_file) {
  247. TRY(inode.truncate(0));
  248. TRY(inode.set_mtime(kgettimeofday().to_truncated_seconds()));
  249. }
  250. auto description = TRY(OpenFileDescription::try_create(custody));
  251. description->set_rw_mode(options);
  252. description->set_file_flags(options);
  253. return description;
  254. }
  255. KResult VirtualFileSystem::mknod(StringView path, mode_t mode, dev_t dev, Custody& base)
  256. {
  257. if (!is_regular_file(mode) && !is_block_device(mode) && !is_character_device(mode) && !is_fifo(mode) && !is_socket(mode))
  258. return EINVAL;
  259. RefPtr<Custody> parent_custody;
  260. auto existing_file_or_error = resolve_path(path, base, &parent_custody);
  261. if (!existing_file_or_error.is_error())
  262. return EEXIST;
  263. if (!parent_custody)
  264. return ENOENT;
  265. if (existing_file_or_error.error() != ENOENT)
  266. return existing_file_or_error.error();
  267. auto& parent_inode = parent_custody->inode();
  268. auto& current_process = Process::current();
  269. if (!parent_inode.metadata().may_write(current_process))
  270. return EACCES;
  271. if (parent_custody->is_readonly())
  272. return EROFS;
  273. auto basename = KLexicalPath::basename(path);
  274. dbgln("VirtualFileSystem::mknod: '{}' mode={} dev={} in {}", basename, mode, dev, parent_inode.identifier());
  275. return parent_inode.create_child(basename, mode, dev, current_process.euid(), current_process.egid()).result();
  276. }
  277. KResultOr<NonnullRefPtr<OpenFileDescription>> VirtualFileSystem::create(StringView path, int options, mode_t mode, Custody& parent_custody, Optional<UidAndGid> owner)
  278. {
  279. auto basename = KLexicalPath::basename(path);
  280. auto parent_path = TRY(parent_custody.try_serialize_absolute_path());
  281. auto full_path = TRY(KLexicalPath::try_join(parent_path->view(), basename));
  282. TRY(validate_path_against_process_veil(full_path->view(), options));
  283. if (!is_socket(mode) && !is_fifo(mode) && !is_block_device(mode) && !is_character_device(mode)) {
  284. // Turn it into a regular file. (This feels rather hackish.)
  285. mode |= 0100000;
  286. }
  287. auto& parent_inode = parent_custody.inode();
  288. auto& current_process = Process::current();
  289. if (!parent_inode.metadata().may_write(current_process))
  290. return EACCES;
  291. if (parent_custody.is_readonly())
  292. return EROFS;
  293. dbgln_if(VFS_DEBUG, "VirtualFileSystem::create: '{}' in {}", basename, parent_inode.identifier());
  294. auto uid = owner.has_value() ? owner.value().uid : current_process.euid();
  295. auto gid = owner.has_value() ? owner.value().gid : current_process.egid();
  296. auto inode = TRY(parent_inode.create_child(basename, mode, 0, uid, gid));
  297. auto custody = TRY(Custody::try_create(&parent_custody, basename, inode, parent_custody.mount_flags()));
  298. auto description = TRY(OpenFileDescription::try_create(move(custody)));
  299. description->set_rw_mode(options);
  300. description->set_file_flags(options);
  301. return description;
  302. }
  303. KResult VirtualFileSystem::mkdir(StringView path, mode_t mode, Custody& base)
  304. {
  305. // Unlike in basically every other case, where it's only the last
  306. // path component (the one being created) that is allowed not to
  307. // exist, POSIX allows mkdir'ed path to have trailing slashes.
  308. // Let's handle that case by trimming any trailing slashes.
  309. path = path.trim("/"sv, TrimMode::Right);
  310. if (path.is_empty()) {
  311. // NOTE: This means the path was a series of slashes, which resolves to "/".
  312. path = "/";
  313. }
  314. RefPtr<Custody> parent_custody;
  315. auto result = resolve_path(path, base, &parent_custody);
  316. if (!result.is_error())
  317. return EEXIST;
  318. else if (!parent_custody)
  319. return result.error();
  320. // NOTE: If resolve_path fails with a non-null parent custody, the error should be ENOENT.
  321. VERIFY(result.error() == ENOENT);
  322. auto& parent_inode = parent_custody->inode();
  323. auto& current_process = Process::current();
  324. if (!parent_inode.metadata().may_write(current_process))
  325. return EACCES;
  326. if (parent_custody->is_readonly())
  327. return EROFS;
  328. auto basename = KLexicalPath::basename(path);
  329. dbgln_if(VFS_DEBUG, "VirtualFileSystem::mkdir: '{}' in {}", basename, parent_inode.identifier());
  330. return parent_inode.create_child(basename, S_IFDIR | mode, 0, current_process.euid(), current_process.egid()).result();
  331. }
  332. KResult VirtualFileSystem::access(StringView path, int mode, Custody& base)
  333. {
  334. auto custody = TRY(resolve_path(path, base));
  335. auto& inode = custody->inode();
  336. auto metadata = inode.metadata();
  337. auto& current_process = Process::current();
  338. if (mode & R_OK) {
  339. if (!metadata.may_read(current_process))
  340. return EACCES;
  341. }
  342. if (mode & W_OK) {
  343. if (!metadata.may_write(current_process))
  344. return EACCES;
  345. if (custody->is_readonly())
  346. return EROFS;
  347. }
  348. if (mode & X_OK) {
  349. if (!metadata.may_execute(current_process))
  350. return EACCES;
  351. }
  352. return KSuccess;
  353. }
  354. KResultOr<NonnullRefPtr<Custody>> VirtualFileSystem::open_directory(StringView path, Custody& base)
  355. {
  356. auto custody = TRY(resolve_path(path, base));
  357. auto& inode = custody->inode();
  358. if (!inode.is_directory())
  359. return ENOTDIR;
  360. if (!inode.metadata().may_execute(Process::current()))
  361. return EACCES;
  362. return custody;
  363. }
  364. KResult VirtualFileSystem::chmod(Custody& custody, mode_t mode)
  365. {
  366. auto& inode = custody.inode();
  367. auto& current_process = Process::current();
  368. if (current_process.euid() != inode.metadata().uid && !current_process.is_superuser())
  369. return EPERM;
  370. if (custody.is_readonly())
  371. return EROFS;
  372. // Only change the permission bits.
  373. mode = (inode.mode() & ~07777u) | (mode & 07777u);
  374. return inode.chmod(mode);
  375. }
  376. KResult VirtualFileSystem::chmod(StringView path, mode_t mode, Custody& base)
  377. {
  378. auto custody = TRY(resolve_path(path, base));
  379. return chmod(custody, mode);
  380. }
  381. KResult VirtualFileSystem::rename(StringView old_path, StringView new_path, Custody& base)
  382. {
  383. RefPtr<Custody> old_parent_custody;
  384. auto old_custody = TRY(resolve_path(old_path, base, &old_parent_custody, O_NOFOLLOW_NOERROR));
  385. auto& old_inode = old_custody->inode();
  386. RefPtr<Custody> new_parent_custody;
  387. auto new_custody_or_error = resolve_path(new_path, base, &new_parent_custody);
  388. if (new_custody_or_error.is_error()) {
  389. if (new_custody_or_error.error() != ENOENT || !new_parent_custody)
  390. return new_custody_or_error.error();
  391. }
  392. if (!old_parent_custody || !new_parent_custody) {
  393. return EPERM;
  394. }
  395. if (!new_custody_or_error.is_error()) {
  396. auto& new_inode = new_custody_or_error.value()->inode();
  397. if (old_inode.index() != new_inode.index() && old_inode.is_directory() && new_inode.is_directory()) {
  398. size_t child_count = 0;
  399. TRY(new_inode.traverse_as_directory([&child_count](auto&) {
  400. ++child_count;
  401. return child_count <= 2;
  402. }));
  403. if (child_count > 2)
  404. return ENOTEMPTY;
  405. }
  406. }
  407. auto& old_parent_inode = old_parent_custody->inode();
  408. auto& new_parent_inode = new_parent_custody->inode();
  409. if (&old_parent_inode.fs() != &new_parent_inode.fs())
  410. return EXDEV;
  411. for (auto* new_ancestor = new_parent_custody.ptr(); new_ancestor; new_ancestor = new_ancestor->parent()) {
  412. if (&old_inode == &new_ancestor->inode())
  413. return EDIRINTOSELF;
  414. }
  415. auto& current_process = Process::current();
  416. if (!new_parent_inode.metadata().may_write(current_process))
  417. return EACCES;
  418. if (!old_parent_inode.metadata().may_write(current_process))
  419. return EACCES;
  420. if (old_parent_inode.metadata().is_sticky()) {
  421. if (!current_process.is_superuser() && old_inode.metadata().uid != current_process.euid())
  422. return EACCES;
  423. }
  424. if (old_parent_custody->is_readonly() || new_parent_custody->is_readonly())
  425. return EROFS;
  426. auto old_basename = KLexicalPath::basename(old_path);
  427. if (old_basename.is_empty() || old_basename == "."sv || old_basename == ".."sv)
  428. return EINVAL;
  429. auto new_basename = KLexicalPath::basename(new_path);
  430. if (new_basename.is_empty() || new_basename == "."sv || new_basename == ".."sv)
  431. return EINVAL;
  432. if (old_basename == new_basename && old_parent_inode.index() == new_parent_inode.index())
  433. return KSuccess;
  434. if (!new_custody_or_error.is_error()) {
  435. auto& new_custody = *new_custody_or_error.value();
  436. auto& new_inode = new_custody.inode();
  437. // FIXME: Is this really correct? Check what other systems do.
  438. if (&new_inode == &old_inode)
  439. return KSuccess;
  440. if (new_parent_inode.metadata().is_sticky()) {
  441. if (!current_process.is_superuser() && new_inode.metadata().uid != current_process.euid())
  442. return EACCES;
  443. }
  444. if (new_inode.is_directory() && !old_inode.is_directory())
  445. return EISDIR;
  446. TRY(new_parent_inode.remove_child(new_basename));
  447. }
  448. TRY(new_parent_inode.add_child(old_inode, new_basename, old_inode.mode()));
  449. TRY(old_parent_inode.remove_child(old_basename));
  450. return KSuccess;
  451. }
  452. KResult VirtualFileSystem::chown(Custody& custody, UserID a_uid, GroupID a_gid)
  453. {
  454. auto& inode = custody.inode();
  455. auto metadata = inode.metadata();
  456. auto& current_process = Process::current();
  457. if (current_process.euid() != metadata.uid && !current_process.is_superuser())
  458. return EPERM;
  459. UserID new_uid = metadata.uid;
  460. GroupID new_gid = metadata.gid;
  461. if (a_uid != (uid_t)-1) {
  462. if (current_process.euid() != a_uid && !current_process.is_superuser())
  463. return EPERM;
  464. new_uid = a_uid;
  465. }
  466. if (a_gid != (gid_t)-1) {
  467. if (!current_process.in_group(a_gid) && !current_process.is_superuser())
  468. return EPERM;
  469. new_gid = a_gid;
  470. }
  471. if (custody.is_readonly())
  472. return EROFS;
  473. dbgln_if(VFS_DEBUG, "VirtualFileSystem::chown(): inode {} <- uid={} gid={}", inode.identifier(), new_uid, new_gid);
  474. if (metadata.is_setuid() || metadata.is_setgid()) {
  475. dbgln_if(VFS_DEBUG, "VirtualFileSystem::chown(): Stripping SUID/SGID bits from {}", inode.identifier());
  476. TRY(inode.chmod(metadata.mode & ~(04000 | 02000)));
  477. }
  478. return inode.chown(new_uid, new_gid);
  479. }
  480. KResult VirtualFileSystem::chown(StringView path, UserID a_uid, GroupID a_gid, Custody& base)
  481. {
  482. auto custody = TRY(resolve_path(path, base));
  483. return chown(custody, a_uid, a_gid);
  484. }
  485. static bool hard_link_allowed(const Inode& inode)
  486. {
  487. auto metadata = inode.metadata();
  488. if (Process::current().euid() == metadata.uid)
  489. return true;
  490. if (metadata.is_regular_file()
  491. && !metadata.is_setuid()
  492. && !(metadata.is_setgid() && metadata.mode & S_IXGRP)
  493. && metadata.may_write(Process::current())) {
  494. return true;
  495. }
  496. return false;
  497. }
  498. KResult VirtualFileSystem::link(StringView old_path, StringView new_path, Custody& base)
  499. {
  500. auto old_custody = TRY(resolve_path(old_path, base));
  501. auto& old_inode = old_custody->inode();
  502. RefPtr<Custody> parent_custody;
  503. auto new_custody_or_error = resolve_path(new_path, base, &parent_custody);
  504. if (!new_custody_or_error.is_error())
  505. return EEXIST;
  506. if (!parent_custody)
  507. return ENOENT;
  508. auto& parent_inode = parent_custody->inode();
  509. if (parent_inode.fsid() != old_inode.fsid())
  510. return EXDEV;
  511. if (!parent_inode.metadata().may_write(Process::current()))
  512. return EACCES;
  513. if (old_inode.is_directory())
  514. return EPERM;
  515. if (parent_custody->is_readonly())
  516. return EROFS;
  517. if (!hard_link_allowed(old_inode))
  518. return EPERM;
  519. return parent_inode.add_child(old_inode, KLexicalPath::basename(new_path), old_inode.mode());
  520. }
  521. KResult VirtualFileSystem::unlink(StringView path, Custody& base)
  522. {
  523. RefPtr<Custody> parent_custody;
  524. auto custody = TRY(resolve_path(path, base, &parent_custody, O_NOFOLLOW_NOERROR | O_UNLINK_INTERNAL));
  525. auto& inode = custody->inode();
  526. if (inode.is_directory())
  527. return EISDIR;
  528. // We have just checked that the inode is not a directory, and thus it's not
  529. // the root. So it should have a parent. Note that this would be invalidated
  530. // if we were to support bind-mounting regular files on top of the root.
  531. VERIFY(parent_custody);
  532. auto& parent_inode = parent_custody->inode();
  533. auto& current_process = Process::current();
  534. if (!parent_inode.metadata().may_write(current_process))
  535. return EACCES;
  536. if (parent_inode.metadata().is_sticky()) {
  537. if (!current_process.is_superuser() && inode.metadata().uid != current_process.euid())
  538. return EACCES;
  539. }
  540. if (parent_custody->is_readonly())
  541. return EROFS;
  542. return parent_inode.remove_child(KLexicalPath::basename(path));
  543. }
  544. KResult VirtualFileSystem::symlink(StringView target, StringView linkpath, Custody& base)
  545. {
  546. RefPtr<Custody> parent_custody;
  547. auto existing_custody_or_error = resolve_path(linkpath, base, &parent_custody);
  548. if (!existing_custody_or_error.is_error())
  549. return EEXIST;
  550. if (!parent_custody)
  551. return ENOENT;
  552. if (existing_custody_or_error.is_error() && existing_custody_or_error.error() != ENOENT)
  553. return existing_custody_or_error.error();
  554. auto& parent_inode = parent_custody->inode();
  555. auto& current_process = Process::current();
  556. if (!parent_inode.metadata().may_write(current_process))
  557. return EACCES;
  558. if (parent_custody->is_readonly())
  559. return EROFS;
  560. auto basename = KLexicalPath::basename(linkpath);
  561. dbgln_if(VFS_DEBUG, "VirtualFileSystem::symlink: '{}' (-> '{}') in {}", basename, target, parent_inode.identifier());
  562. auto inode = TRY(parent_inode.create_child(basename, S_IFLNK | 0644, 0, current_process.euid(), current_process.egid()));
  563. auto target_buffer = UserOrKernelBuffer::for_kernel_buffer(const_cast<u8*>((const u8*)target.characters_without_null_termination()));
  564. TRY(inode->write_bytes(0, target.length(), target_buffer, nullptr));
  565. return KSuccess;
  566. }
  567. KResult VirtualFileSystem::rmdir(StringView path, Custody& base)
  568. {
  569. RefPtr<Custody> parent_custody;
  570. auto custody = TRY(resolve_path(path, base, &parent_custody));
  571. auto& inode = custody->inode();
  572. // FIXME: We should return EINVAL if the last component of the path is "."
  573. // FIXME: We should return ENOTEMPTY if the last component of the path is ".."
  574. if (!inode.is_directory())
  575. return ENOTDIR;
  576. if (!parent_custody)
  577. return EBUSY;
  578. auto& parent_inode = parent_custody->inode();
  579. auto parent_metadata = parent_inode.metadata();
  580. auto& current_process = Process::current();
  581. if (!parent_metadata.may_write(current_process))
  582. return EACCES;
  583. if (parent_metadata.is_sticky()) {
  584. if (!current_process.is_superuser() && inode.metadata().uid != current_process.euid())
  585. return EACCES;
  586. }
  587. size_t child_count = 0;
  588. TRY(inode.traverse_as_directory([&child_count](auto&) {
  589. ++child_count;
  590. return true;
  591. }));
  592. if (child_count != 2)
  593. return ENOTEMPTY;
  594. if (custody->is_readonly())
  595. return EROFS;
  596. TRY(inode.remove_child("."));
  597. TRY(inode.remove_child(".."));
  598. return parent_inode.remove_child(KLexicalPath::basename(path));
  599. }
  600. void VirtualFileSystem::for_each_mount(Function<void(Mount const&)> callback) const
  601. {
  602. m_mounts.with_shared([&](auto& mounts) {
  603. for (auto& mount : mounts) {
  604. callback(mount);
  605. }
  606. });
  607. }
  608. void VirtualFileSystem::sync()
  609. {
  610. FileSystem::sync();
  611. }
  612. Custody& VirtualFileSystem::root_custody()
  613. {
  614. return *m_root_custody;
  615. }
  616. UnveilNode const& VirtualFileSystem::find_matching_unveiled_path(StringView path)
  617. {
  618. auto& current_process = Process::current();
  619. VERIFY(current_process.veil_state() != VeilState::None);
  620. auto& unveil_root = current_process.unveiled_paths();
  621. auto path_parts = KLexicalPath::parts(path);
  622. return unveil_root.traverse_until_last_accessible_node(path_parts.begin(), path_parts.end());
  623. }
  624. KResult VirtualFileSystem::validate_path_against_process_veil(Custody const& custody, int options)
  625. {
  626. if (Process::current().veil_state() == VeilState::None)
  627. return KSuccess;
  628. auto absolute_path = TRY(custody.try_serialize_absolute_path());
  629. return validate_path_against_process_veil(absolute_path->view(), options);
  630. }
  631. KResult VirtualFileSystem::validate_path_against_process_veil(StringView path, int options)
  632. {
  633. if (Process::current().veil_state() == VeilState::None)
  634. return KSuccess;
  635. if (path == "/usr/lib/Loader.so")
  636. return KSuccess;
  637. VERIFY(path.starts_with('/'));
  638. VERIFY(!path.contains("/../"sv) && !path.ends_with("/.."sv));
  639. VERIFY(!path.contains("/./"sv) && !path.ends_with("/."sv));
  640. auto& unveiled_path = find_matching_unveiled_path(path);
  641. if (unveiled_path.permissions() == UnveilAccess::None) {
  642. dbgln("Rejecting path '{}' since it hasn't been unveiled.", path);
  643. dump_backtrace();
  644. return ENOENT;
  645. }
  646. if (options & O_CREAT) {
  647. if (!(unveiled_path.permissions() & UnveilAccess::CreateOrRemove)) {
  648. dbgln("Rejecting path '{}' since it hasn't been unveiled with 'c' permission.", path);
  649. dump_backtrace();
  650. return EACCES;
  651. }
  652. }
  653. if (options & O_UNLINK_INTERNAL) {
  654. if (!(unveiled_path.permissions() & UnveilAccess::CreateOrRemove)) {
  655. dbgln("Rejecting path '{}' for unlink since it hasn't been unveiled with 'c' permission.", path);
  656. dump_backtrace();
  657. return EACCES;
  658. }
  659. return KSuccess;
  660. }
  661. if (options & O_RDONLY) {
  662. if (options & O_DIRECTORY) {
  663. if (!(unveiled_path.permissions() & (UnveilAccess::Read | UnveilAccess::Browse))) {
  664. dbgln("Rejecting path '{}' since it hasn't been unveiled with 'r' or 'b' permissions.", path);
  665. dump_backtrace();
  666. return EACCES;
  667. }
  668. } else {
  669. if (!(unveiled_path.permissions() & UnveilAccess::Read)) {
  670. dbgln("Rejecting path '{}' since it hasn't been unveiled with 'r' permission.", path);
  671. dump_backtrace();
  672. return EACCES;
  673. }
  674. }
  675. }
  676. if (options & O_WRONLY) {
  677. if (!(unveiled_path.permissions() & UnveilAccess::Write)) {
  678. dbgln("Rejecting path '{}' since it hasn't been unveiled with 'w' permission.", path);
  679. dump_backtrace();
  680. return EACCES;
  681. }
  682. }
  683. if (options & O_EXEC) {
  684. if (!(unveiled_path.permissions() & UnveilAccess::Execute)) {
  685. dbgln("Rejecting path '{}' since it hasn't been unveiled with 'x' permission.", path);
  686. dump_backtrace();
  687. return EACCES;
  688. }
  689. }
  690. return KSuccess;
  691. }
  692. KResultOr<NonnullRefPtr<Custody>> VirtualFileSystem::resolve_path(StringView path, Custody& base, RefPtr<Custody>* out_parent, int options, int symlink_recursion_level)
  693. {
  694. auto custody = TRY(resolve_path_without_veil(path, base, out_parent, options, symlink_recursion_level));
  695. TRY(validate_path_against_process_veil(*custody, options));
  696. return custody;
  697. }
  698. static bool safe_to_follow_symlink(const Inode& inode, const InodeMetadata& parent_metadata)
  699. {
  700. auto metadata = inode.metadata();
  701. if (Process::current().euid() == metadata.uid)
  702. return true;
  703. if (!(parent_metadata.is_sticky() && parent_metadata.mode & S_IWOTH))
  704. return true;
  705. if (metadata.uid == parent_metadata.uid)
  706. return true;
  707. return false;
  708. }
  709. KResultOr<NonnullRefPtr<Custody>> VirtualFileSystem::resolve_path_without_veil(StringView path, Custody& base, RefPtr<Custody>* out_parent, int options, int symlink_recursion_level)
  710. {
  711. if (symlink_recursion_level >= symlink_recursion_limit)
  712. return ELOOP;
  713. if (path.is_empty())
  714. return EINVAL;
  715. GenericLexer path_lexer(path);
  716. auto& current_process = Process::current();
  717. NonnullRefPtr<Custody> custody = path[0] == '/' ? root_custody() : base;
  718. bool extra_iteration = path[path.length() - 1] == '/';
  719. while (!path_lexer.is_eof() || extra_iteration) {
  720. if (path_lexer.is_eof())
  721. extra_iteration = false;
  722. auto part = path_lexer.consume_until('/');
  723. path_lexer.consume_specific('/');
  724. Custody& parent = custody;
  725. auto parent_metadata = parent.inode().metadata();
  726. if (!parent_metadata.is_directory())
  727. return ENOTDIR;
  728. // Ensure the current user is allowed to resolve paths inside this directory.
  729. if (!parent_metadata.may_execute(current_process))
  730. return EACCES;
  731. bool have_more_parts = !path_lexer.is_eof() || extra_iteration;
  732. if (part == "..") {
  733. // If we encounter a "..", take a step back, but don't go beyond the root.
  734. if (custody->parent())
  735. custody = *custody->parent();
  736. continue;
  737. } else if (part == "." || part.is_empty()) {
  738. continue;
  739. }
  740. // Okay, let's look up this part.
  741. auto child_or_error = parent.inode().lookup(part);
  742. if (child_or_error.is_error()) {
  743. if (out_parent) {
  744. // ENOENT with a non-null parent custody signals to caller that
  745. // we found the immediate parent of the file, but the file itself
  746. // does not exist yet.
  747. *out_parent = have_more_parts ? nullptr : &parent;
  748. }
  749. return child_or_error.error();
  750. }
  751. auto child_inode = child_or_error.release_value();
  752. int mount_flags_for_child = parent.mount_flags();
  753. // See if there's something mounted on the child; in that case
  754. // we would need to return the guest inode, not the host inode.
  755. if (auto mount = find_mount_for_host(child_inode->identifier())) {
  756. child_inode = mount->guest();
  757. mount_flags_for_child = mount->flags();
  758. }
  759. custody = TRY(Custody::try_create(&parent, part, *child_inode, mount_flags_for_child));
  760. if (child_inode->metadata().is_symlink()) {
  761. if (!have_more_parts) {
  762. if (options & O_NOFOLLOW)
  763. return ELOOP;
  764. if (options & O_NOFOLLOW_NOERROR)
  765. break;
  766. }
  767. if (!safe_to_follow_symlink(*child_inode, parent_metadata))
  768. return EACCES;
  769. TRY(validate_path_against_process_veil(*custody, options));
  770. auto symlink_target = TRY(child_inode->resolve_as_link(parent, out_parent, options, symlink_recursion_level + 1));
  771. if (!have_more_parts)
  772. return symlink_target;
  773. // Now, resolve the remaining path relative to the symlink target.
  774. // We prepend a "." to it to ensure that it's not empty and that
  775. // any initial slashes it might have get interpreted properly.
  776. StringBuilder remaining_path;
  777. remaining_path.append('.');
  778. remaining_path.append(path.substring_view_starting_after_substring(part));
  779. return resolve_path_without_veil(remaining_path.to_string(), symlink_target, out_parent, options, symlink_recursion_level + 1);
  780. }
  781. }
  782. if (out_parent)
  783. *out_parent = custody->parent();
  784. return custody;
  785. }
  786. }