Ext2FileSystem.cpp 38 KB

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  1. #include "Ext2FileSystem.h"
  2. #include "ext2_fs.h"
  3. #include "UnixTypes.h"
  4. #include <AK/Bitmap.h>
  5. #include <AK/StdLib.h>
  6. #include <AK/kmalloc.h>
  7. #include <AK/ktime.h>
  8. #include <AK/kstdio.h>
  9. #include <AK/BufferStream.h>
  10. #include <LibC/errno_numbers.h>
  11. //#define EXT2_DEBUG
  12. class Ext2FileSystem::CachedExt2InodeImpl : public Retainable<CachedExt2InodeImpl> {
  13. public:
  14. CachedExt2InodeImpl(OwnPtr<ext2_inode>&& e2i) : e2inode(move(e2i)) { }
  15. ~CachedExt2InodeImpl() { }
  16. OwnPtr<ext2_inode> e2inode;
  17. };
  18. class Ext2FileSystem::CachedExt2Inode {
  19. public:
  20. const ext2_inode* operator->() const { return ptr->e2inode.ptr(); }
  21. const ext2_inode& operator*() const { return *ptr->e2inode; }
  22. ext2_inode* operator->() { return ptr->e2inode.ptr(); }
  23. ext2_inode& operator*() { return *ptr->e2inode; }
  24. bool operator!() const { return !ptr; }
  25. operator bool() const { return !!ptr; }
  26. CachedExt2Inode() { }
  27. explicit CachedExt2Inode(OwnPtr<ext2_inode>&& e2inode)
  28. : ptr(adopt(*new CachedExt2InodeImpl(move(e2inode))))
  29. { }
  30. explicit CachedExt2Inode(RetainPtr<CachedExt2InodeImpl> p)
  31. : ptr(p)
  32. { }
  33. RetainPtr<CachedExt2InodeImpl> ptr;
  34. };
  35. RetainPtr<Ext2FileSystem> Ext2FileSystem::create(RetainPtr<DiskDevice>&& device)
  36. {
  37. return adopt(*new Ext2FileSystem(move(device)));
  38. }
  39. Ext2FileSystem::Ext2FileSystem(RetainPtr<DiskDevice>&& device)
  40. : DiskBackedFileSystem(move(device))
  41. {
  42. }
  43. Ext2FileSystem::~Ext2FileSystem()
  44. {
  45. }
  46. ByteBuffer Ext2FileSystem::readSuperBlock() const
  47. {
  48. auto buffer = ByteBuffer::createUninitialized(1024);
  49. device().readBlock(2, buffer.pointer());
  50. device().readBlock(3, buffer.offsetPointer(512));
  51. return buffer;
  52. }
  53. bool Ext2FileSystem::writeSuperBlock(const ext2_super_block& sb)
  54. {
  55. const byte* raw = (const byte*)&sb;
  56. bool success;
  57. success = device().writeBlock(2, raw);
  58. ASSERT(success);
  59. success = device().writeBlock(3, raw + 512);
  60. ASSERT(success);
  61. // FIXME: This is an ugly way to refresh the superblock cache. :-|
  62. superBlock();
  63. return true;
  64. }
  65. unsigned Ext2FileSystem::firstBlockOfGroup(unsigned groupIndex) const
  66. {
  67. return superBlock().s_first_data_block + (groupIndex * superBlock().s_blocks_per_group);
  68. }
  69. const ext2_super_block& Ext2FileSystem::superBlock() const
  70. {
  71. if (!m_cachedSuperBlock)
  72. m_cachedSuperBlock = readSuperBlock();
  73. return *reinterpret_cast<ext2_super_block*>(m_cachedSuperBlock.pointer());
  74. }
  75. const ext2_group_desc& Ext2FileSystem::blockGroupDescriptor(unsigned groupIndex) const
  76. {
  77. // FIXME: Should this fail gracefully somehow?
  78. ASSERT(groupIndex <= m_blockGroupCount);
  79. if (!m_cachedBlockGroupDescriptorTable) {
  80. unsigned blocksToRead = ceilDiv(m_blockGroupCount * (unsigned)sizeof(ext2_group_desc), blockSize());
  81. unsigned firstBlockOfBGDT = blockSize() == 1024 ? 2 : 1;
  82. #ifdef EXT2_DEBUG
  83. kprintf("ext2fs: block group count: %u, blocks-to-read: %u\n", m_blockGroupCount, blocksToRead);
  84. kprintf("ext2fs: first block of BGDT: %u\n", firstBlockOfBGDT);
  85. #endif
  86. m_cachedBlockGroupDescriptorTable = readBlocks(firstBlockOfBGDT, blocksToRead);
  87. }
  88. return reinterpret_cast<ext2_group_desc*>(m_cachedBlockGroupDescriptorTable.pointer())[groupIndex - 1];
  89. }
  90. bool Ext2FileSystem::initialize()
  91. {
  92. auto& superBlock = this->superBlock();
  93. #ifdef EXT2_DEBUG
  94. kprintf("ext2fs: super block magic: %x (super block size: %u)\n", superBlock.s_magic, sizeof(ext2_super_block));
  95. #endif
  96. if (superBlock.s_magic != EXT2_SUPER_MAGIC)
  97. return false;
  98. #ifdef EXT2_DEBUG
  99. kprintf("ext2fs: %u inodes, %u blocks\n", superBlock.s_inodes_count, superBlock.s_blocks_count);
  100. kprintf("ext2fs: block size = %u\n", EXT2_BLOCK_SIZE(&superBlock));
  101. kprintf("ext2fs: first data block = %u\n", superBlock.s_first_data_block);
  102. kprintf("ext2fs: inodes per block = %u\n", inodesPerBlock());
  103. kprintf("ext2fs: inodes per group = %u\n", inodesPerGroup());
  104. kprintf("ext2fs: free inodes = %u\n", superBlock.s_free_inodes_count);
  105. kprintf("ext2fs: desc per block = %u\n", EXT2_DESC_PER_BLOCK(&superBlock));
  106. kprintf("ext2fs: desc size = %u\n", EXT2_DESC_SIZE(&superBlock));
  107. #endif
  108. setBlockSize(EXT2_BLOCK_SIZE(&superBlock));
  109. m_blockGroupCount = ceilDiv(superBlock.s_blocks_count, superBlock.s_blocks_per_group);
  110. if (m_blockGroupCount == 0) {
  111. kprintf("ext2fs: no block groups :(\n");
  112. return false;
  113. }
  114. // Preheat the BGD cache.
  115. blockGroupDescriptor(0);
  116. #ifdef EXT2_DEBUG
  117. for (unsigned i = 1; i <= m_blockGroupCount; ++i) {
  118. auto& group = blockGroupDescriptor(i);
  119. kprintf("ext2fs: group[%u] { block_bitmap: %u, inode_bitmap: %u, inode_table: %u }\n",
  120. i,
  121. group.bg_block_bitmap,
  122. group.bg_inode_bitmap,
  123. group.bg_inode_table);
  124. }
  125. #endif
  126. return true;
  127. }
  128. const char* Ext2FileSystem::className() const
  129. {
  130. return "ext2fs";
  131. }
  132. InodeIdentifier Ext2FileSystem::rootInode() const
  133. {
  134. return { id(), EXT2_ROOT_INO };
  135. }
  136. #ifdef EXT2_DEBUG
  137. static void dumpExt2Inode(const ext2_inode& inode)
  138. {
  139. kprintf("Dump of ext2_inode:\n");
  140. kprintf(" i_size: %u\n", inode.i_size);
  141. kprintf(" i_mode: %u\n", inode.i_mode);
  142. kprintf(" i_blocks: %u\n", inode.i_blocks);
  143. kprintf(" i_uid: %u\n", inode.i_uid);
  144. kprintf(" i_gid: %u\n", inode.i_gid);
  145. }
  146. #endif
  147. ByteBuffer Ext2FileSystem::readBlockContainingInode(unsigned inode, unsigned& blockIndex, unsigned& offset) const
  148. {
  149. auto& superBlock = this->superBlock();
  150. if (inode != EXT2_ROOT_INO && inode < EXT2_FIRST_INO(&superBlock))
  151. return { };
  152. if (inode > superBlock.s_inodes_count)
  153. return { };
  154. auto& bgd = blockGroupDescriptor(groupIndexFromInode(inode));
  155. offset = ((inode - 1) % inodesPerGroup()) * inodeSize();
  156. blockIndex = bgd.bg_inode_table + (offset >> EXT2_BLOCK_SIZE_BITS(&superBlock));
  157. offset &= blockSize() - 1;
  158. return readBlock(blockIndex);
  159. }
  160. auto Ext2FileSystem::lookupExt2Inode(unsigned inode) const -> CachedExt2Inode
  161. {
  162. {
  163. LOCKER(m_inodeCacheLock);
  164. auto it = m_inodeCache.find(inode);
  165. if (it != m_inodeCache.end()) {
  166. return CachedExt2Inode{ (*it).value };
  167. }
  168. }
  169. unsigned blockIndex;
  170. unsigned offset;
  171. auto block = readBlockContainingInode(inode, blockIndex, offset);
  172. if (!block)
  173. return { };
  174. auto* e2inode = reinterpret_cast<ext2_inode*>(kmalloc(inodeSize()));
  175. memcpy(e2inode, reinterpret_cast<ext2_inode*>(block.offsetPointer(offset)), inodeSize());
  176. #ifdef EXT2_DEBUG
  177. dumpExt2Inode(*e2inode);
  178. #endif
  179. LOCKER(m_inodeCacheLock);
  180. if (m_inodeCache.size() >= 128)
  181. m_inodeCache.removeOneRandomly();
  182. auto cachedInode = adopt(*new CachedExt2InodeImpl(OwnPtr<ext2_inode>(e2inode)));
  183. m_inodeCache.set(inode, cachedInode.copyRef());
  184. return CachedExt2Inode{ cachedInode };
  185. }
  186. InodeMetadata Ext2FileSystem::inodeMetadata(InodeIdentifier inode) const
  187. {
  188. ASSERT(inode.fileSystemID() == id());
  189. auto e2inode = lookupExt2Inode(inode.index());
  190. if (!e2inode)
  191. return InodeMetadata();
  192. InodeMetadata metadata;
  193. metadata.inode = inode;
  194. metadata.size = e2inode->i_size;
  195. metadata.mode = e2inode->i_mode;
  196. metadata.uid = e2inode->i_uid;
  197. metadata.gid = e2inode->i_gid;
  198. metadata.linkCount = e2inode->i_links_count;
  199. metadata.atime = e2inode->i_atime;
  200. metadata.ctime = e2inode->i_ctime;
  201. metadata.mtime = e2inode->i_mtime;
  202. metadata.dtime = e2inode->i_dtime;
  203. metadata.blockSize = blockSize();
  204. metadata.blockCount = e2inode->i_blocks;
  205. if (isBlockDevice(e2inode->i_mode) || isCharacterDevice(e2inode->i_mode)) {
  206. unsigned dev = e2inode->i_block[0];
  207. metadata.majorDevice = (dev & 0xfff00) >> 8;
  208. metadata.minorDevice= (dev & 0xff) | ((dev >> 12) & 0xfff00);
  209. }
  210. return metadata;
  211. }
  212. Vector<unsigned> Ext2FileSystem::blockListForInode(const ext2_inode& e2inode) const
  213. {
  214. unsigned entriesPerBlock = EXT2_ADDR_PER_BLOCK(&superBlock());
  215. // NOTE: i_blocks is number of 512-byte blocks, not number of fs-blocks.
  216. unsigned blockCount = e2inode.i_blocks / (blockSize() / 512);
  217. unsigned blocksRemaining = blockCount;
  218. Vector<unsigned> list;
  219. list.ensureCapacity(blocksRemaining);
  220. unsigned directCount = min(blockCount, (unsigned)EXT2_NDIR_BLOCKS);
  221. for (unsigned i = 0; i < directCount; ++i) {
  222. list.unchecked_append(e2inode.i_block[i]);
  223. --blocksRemaining;
  224. }
  225. if (!blocksRemaining)
  226. return list;
  227. auto processBlockArray = [&] (unsigned arrayBlockIndex, auto&& callback) {
  228. auto arrayBlock = readBlock(arrayBlockIndex);
  229. ASSERT(arrayBlock);
  230. auto* array = reinterpret_cast<const __u32*>(arrayBlock.pointer());
  231. unsigned count = min(blocksRemaining, entriesPerBlock);
  232. for (unsigned i = 0; i < count; ++i) {
  233. if (!array[i]) {
  234. blocksRemaining = 0;
  235. return;
  236. }
  237. callback(array[i]);
  238. --blocksRemaining;
  239. }
  240. };
  241. processBlockArray(e2inode.i_block[EXT2_IND_BLOCK], [&] (unsigned entry) {
  242. list.unchecked_append(entry);
  243. });
  244. if (!blocksRemaining)
  245. return list;
  246. processBlockArray(e2inode.i_block[EXT2_DIND_BLOCK], [&] (unsigned entry) {
  247. processBlockArray(entry, [&] (unsigned entry) {
  248. list.unchecked_append(entry);
  249. });
  250. });
  251. if (!blocksRemaining)
  252. return list;
  253. processBlockArray(e2inode.i_block[EXT2_TIND_BLOCK], [&] (unsigned entry) {
  254. processBlockArray(entry, [&] (unsigned entry) {
  255. processBlockArray(entry, [&] (unsigned entry) {
  256. list.unchecked_append(entry);
  257. });
  258. });
  259. });
  260. return list;
  261. }
  262. Ext2Inode::Ext2Inode(Ext2FileSystem& fs, unsigned index, const ext2_inode& raw_inode)
  263. : CoreInode(fs, index)
  264. , m_raw_inode(raw_inode)
  265. {
  266. }
  267. Ext2Inode::~Ext2Inode()
  268. {
  269. }
  270. void Ext2Inode::populate_metadata() const
  271. {
  272. m_metadata.inode = identifier();
  273. m_metadata.size = m_raw_inode.i_size;
  274. m_metadata.mode = m_raw_inode.i_mode;
  275. m_metadata.uid = m_raw_inode.i_uid;
  276. m_metadata.gid = m_raw_inode.i_gid;
  277. m_metadata.linkCount = m_raw_inode.i_links_count;
  278. m_metadata.atime = m_raw_inode.i_atime;
  279. m_metadata.ctime = m_raw_inode.i_ctime;
  280. m_metadata.mtime = m_raw_inode.i_mtime;
  281. m_metadata.dtime = m_raw_inode.i_dtime;
  282. m_metadata.blockSize = fs().blockSize();
  283. m_metadata.blockCount = m_raw_inode.i_blocks;
  284. if (isBlockDevice(m_raw_inode.i_mode) || isCharacterDevice(m_raw_inode.i_mode)) {
  285. unsigned dev = m_raw_inode.i_block[0];
  286. m_metadata.majorDevice = (dev & 0xfff00) >> 8;
  287. m_metadata.minorDevice= (dev & 0xff) | ((dev >> 12) & 0xfff00);
  288. }
  289. }
  290. RetainPtr<CoreInode> Ext2FileSystem::get_inode(InodeIdentifier inode) const
  291. {
  292. ASSERT(inode.fileSystemID() == id());
  293. {
  294. LOCKER(m_inode_cache_lock);
  295. auto it = m_inode_cache.find(inode.index());
  296. if (it != m_inode_cache.end())
  297. return (*it).value;
  298. }
  299. auto raw_inode = lookupExt2Inode(inode.index());
  300. if (!raw_inode)
  301. return nullptr;
  302. LOCKER(m_inode_cache_lock);
  303. auto it = m_inode_cache.find(inode.index());
  304. if (it != m_inode_cache.end())
  305. return (*it).value;
  306. auto new_inode = adopt(*new Ext2Inode(const_cast<Ext2FileSystem&>(*this), inode.index(), *raw_inode));
  307. m_inode_cache.set(inode.index(), new_inode.copyRef());
  308. return new_inode;
  309. }
  310. Unix::ssize_t Ext2Inode::read_bytes(Unix::off_t offset, Unix::size_t count, byte* buffer, FileDescriptor*)
  311. {
  312. ASSERT(offset >= 0);
  313. if (m_raw_inode.i_size == 0)
  314. return 0;
  315. // Symbolic links shorter than 60 characters are store inline inside the i_block array.
  316. // This avoids wasting an entire block on short links. (Most links are short.)
  317. static const unsigned max_inline_symlink_length = 60;
  318. if (is_symlink() && size() < max_inline_symlink_length) {
  319. Unix::ssize_t nread = min((Unix::off_t)size() - offset, static_cast<Unix::off_t>(count));
  320. memcpy(buffer, m_raw_inode.i_block + offset, nread);
  321. return nread;
  322. }
  323. if (m_block_list.isEmpty()) {
  324. auto block_list = fs().blockListForInode(m_raw_inode);
  325. LOCKER(m_lock);
  326. if (m_block_list.size() != block_list.size())
  327. m_block_list = move(block_list);
  328. }
  329. if (m_block_list.isEmpty()) {
  330. kprintf("ext2fs: read_bytes: empty block list for inode %u\n", index());
  331. return -EIO;
  332. }
  333. const size_t block_size = fs().blockSize();
  334. dword first_block_logical_index = offset / block_size;
  335. dword last_block_logical_index = (offset + count) / block_size;
  336. if (last_block_logical_index >= m_block_list.size())
  337. last_block_logical_index = m_block_list.size() - 1;
  338. dword offset_into_first_block = offset % block_size;
  339. Unix::ssize_t nread = 0;
  340. Unix::size_t remaining_count = min((Unix::off_t)count, (Unix::off_t)size() - offset);
  341. byte* out = buffer;
  342. #ifdef EXT2_DEBUG
  343. kprintf("ok let's do it, read(%llu, %u) -> blocks %u thru %u, oifb: %u\n", offset, count, firstBlockLogicalIndex, lastBlockLogicalIndex, offsetIntoFirstBlock);
  344. #endif
  345. for (dword bi = first_block_logical_index; remaining_count && bi <= last_block_logical_index; ++bi) {
  346. auto block = fs().readBlock(m_block_list[bi]);
  347. if (!block) {
  348. kprintf("ext2fs: read_bytes: readBlock(%u) failed (lbi: %u)\n", m_block_list[bi], bi);
  349. return -EIO;
  350. }
  351. dword offset_into_block = (bi == first_block_logical_index) ? offset_into_first_block : 0;
  352. dword num_bytes_to_copy = min(block_size - offset_into_block, remaining_count);
  353. memcpy(out, block.pointer() + offset_into_block, num_bytes_to_copy);
  354. remaining_count -= num_bytes_to_copy;
  355. nread += num_bytes_to_copy;
  356. out += num_bytes_to_copy;
  357. }
  358. return nread;
  359. }
  360. Unix::ssize_t Ext2FileSystem::readInodeBytes(InodeIdentifier inode, Unix::off_t offset, Unix::size_t count, byte* buffer, FileDescriptor*) const
  361. {
  362. ASSERT(offset >= 0);
  363. ASSERT(inode.fileSystemID() == id());
  364. auto e2inode = lookupExt2Inode(inode.index());
  365. if (!e2inode) {
  366. kprintf("ext2fs: readInodeBytes: metadata lookup for inode %u failed\n", inode.index());
  367. return -EIO;
  368. }
  369. #if 0
  370. // FIXME: We can't fail here while the directory traversal depends on this function. :]
  371. if (isDirectory(e2inode->i_mode))
  372. return -EISDIR;
  373. #endif
  374. if (e2inode->i_size == 0)
  375. return 0;
  376. // Symbolic links shorter than 60 characters are store inline inside the i_block array.
  377. // This avoids wasting an entire block on short links. (Most links are short.)
  378. static const unsigned maxInlineSymlinkLength = 60;
  379. if (isSymbolicLink(e2inode->i_mode) && e2inode->i_size < maxInlineSymlinkLength) {
  380. Unix::ssize_t nread = min((Unix::off_t)e2inode->i_size - offset, static_cast<Unix::off_t>(count));
  381. memcpy(buffer, e2inode->i_block + offset, nread);
  382. return nread;
  383. }
  384. // FIXME: It's grossly inefficient to fetch the blocklist on every call to readInodeBytes().
  385. // It needs to be cached!
  386. auto list = blockListForInode(*e2inode);
  387. if (list.isEmpty()) {
  388. kprintf("ext2fs: readInodeBytes: empty block list for inode %u\n", inode.index());
  389. return -EIO;
  390. }
  391. dword firstBlockLogicalIndex = offset / blockSize();
  392. dword lastBlockLogicalIndex = (offset + count) / blockSize();
  393. if (lastBlockLogicalIndex >= list.size())
  394. lastBlockLogicalIndex = list.size() - 1;
  395. dword offsetIntoFirstBlock = offset % blockSize();
  396. Unix::ssize_t nread = 0;
  397. Unix::size_t remainingCount = min((Unix::off_t)count, (Unix::off_t)e2inode->i_size - offset);
  398. byte* out = buffer;
  399. #ifdef EXT2_DEBUG
  400. kprintf("ok let's do it, read(%llu, %u) -> blocks %u thru %u, oifb: %u\n", offset, count, firstBlockLogicalIndex, lastBlockLogicalIndex, offsetIntoFirstBlock);
  401. #endif
  402. for (dword bi = firstBlockLogicalIndex; bi <= lastBlockLogicalIndex; ++bi) {
  403. auto block = readBlock(list[bi]);
  404. if (!block) {
  405. kprintf("ext2fs: readInodeBytes: readBlock(%u) failed (lbi: %u)\n", list[bi], bi);
  406. return -EIO;
  407. }
  408. dword offsetIntoBlock;
  409. if (bi == firstBlockLogicalIndex)
  410. offsetIntoBlock = offsetIntoFirstBlock;
  411. else
  412. offsetIntoBlock = 0;
  413. dword numBytesToCopy = min(blockSize() - offsetIntoBlock, remainingCount);
  414. memcpy(out, block.pointer() + offsetIntoBlock, numBytesToCopy);
  415. remainingCount -= numBytesToCopy;
  416. nread += numBytesToCopy;
  417. out += numBytesToCopy;
  418. }
  419. return nread;
  420. }
  421. bool Ext2FileSystem::writeInode(InodeIdentifier inode, const ByteBuffer& data)
  422. {
  423. ASSERT(inode.fileSystemID() == id());
  424. auto e2inode = lookupExt2Inode(inode.index());
  425. if (!e2inode) {
  426. kprintf("ext2fs: writeInode: metadata lookup for inode %u failed\n", inode.index());
  427. return false;
  428. }
  429. // FIXME: Support writing to symlink inodes.
  430. ASSERT(!isSymbolicLink(e2inode->i_mode));
  431. unsigned blocksNeededBefore = ceilDiv(e2inode->i_size, blockSize());
  432. unsigned blocksNeededAfter = ceilDiv((unsigned)data.size(), blockSize());
  433. // FIXME: Support growing or shrinking the block list.
  434. ASSERT(blocksNeededBefore == blocksNeededAfter);
  435. auto list = blockListForInode(*e2inode);
  436. if (list.isEmpty()) {
  437. kprintf("ext2fs: writeInode: empty block list for inode %u\n", inode.index());
  438. return false;
  439. }
  440. for (unsigned i = 0; i < list.size(); ++i) {
  441. auto section = data.slice(i * blockSize(), blockSize());
  442. kprintf("section = %p (%u)\n", section.pointer(), section.size());
  443. bool success = writeBlock(list[i], section);
  444. ASSERT(success);
  445. }
  446. return true;
  447. }
  448. bool Ext2Inode::traverse_as_directory(Function<bool(const FileSystem::DirectoryEntry&)> callback)
  449. {
  450. ASSERT(metadata().isDirectory());
  451. #ifdef EXT2_DEBUG
  452. kprintf("Ext2Inode::traverse_as_directory: inode=%u:\n", index());
  453. #endif
  454. auto buffer = read_entire();
  455. ASSERT(buffer);
  456. auto* entry = reinterpret_cast<ext2_dir_entry_2*>(buffer.pointer());
  457. while (entry < buffer.endPointer()) {
  458. if (entry->inode != 0) {
  459. #ifdef EXT2_DEBUG
  460. kprintf("Ext2Inode::traverse_as_directory: %u, name_len: %u, rec_len: %u, file_type: %u, name: %s\n", entry->inode, entry->name_len, entry->rec_len, entry->file_type, namebuf);
  461. #endif
  462. if (!callback({ entry->name, entry->name_len, { fsid(), entry->inode }, entry->file_type }))
  463. break;
  464. }
  465. entry = (ext2_dir_entry_2*)((char*)entry + entry->rec_len);
  466. }
  467. return true;
  468. }
  469. bool Ext2FileSystem::enumerateDirectoryInode(InodeIdentifier inode, Function<bool(const DirectoryEntry&)> callback) const
  470. {
  471. ASSERT(inode.fileSystemID() == id());
  472. ASSERT(isDirectoryInode(inode.index()));
  473. #ifdef EXT2_DEBUG
  474. kprintf("ext2fs: Enumerating directory contents of inode %u:\n", inode.index());
  475. #endif
  476. auto buffer = readEntireInode(inode);
  477. ASSERT(buffer);
  478. auto* entry = reinterpret_cast<ext2_dir_entry_2*>(buffer.pointer());
  479. while (entry < buffer.endPointer()) {
  480. if (entry->inode != 0) {
  481. #ifdef EXT2_DEBUG
  482. kprintf("inode: %u, name_len: %u, rec_len: %u, file_type: %u, name: %s\n", entry->inode, entry->name_len, entry->rec_len, entry->file_type, namebuf);
  483. #endif
  484. if (!callback({ entry->name, entry->name_len, { id(), entry->inode }, entry->file_type }))
  485. break;
  486. }
  487. entry = (ext2_dir_entry_2*)((char*)entry + entry->rec_len);
  488. }
  489. return true;
  490. }
  491. bool Ext2FileSystem::addInodeToDirectory(unsigned directoryInode, unsigned inode, const String& name, byte fileType)
  492. {
  493. auto e2inodeForDirectory = lookupExt2Inode(directoryInode);
  494. ASSERT(e2inodeForDirectory);
  495. ASSERT(isDirectory(e2inodeForDirectory->i_mode));
  496. //#ifdef EXT2_DEBUG
  497. kprintf("ext2fs: Adding inode %u with name '%s' to directory %u\n", inode, name.characters(), directoryInode);
  498. //#endif
  499. Vector<DirectoryEntry> entries;
  500. bool nameAlreadyExists = false;
  501. enumerateDirectoryInode({ id(), directoryInode }, [&] (const DirectoryEntry& entry) {
  502. if (!strcmp(entry.name, name.characters())) {
  503. nameAlreadyExists = true;
  504. return false;
  505. }
  506. entries.append(entry);
  507. return true;
  508. });
  509. if (nameAlreadyExists) {
  510. kprintf("ext2fs: Name '%s' already exists in directory inode %u\n", name.characters(), directoryInode);
  511. return false;
  512. }
  513. entries.append({ name.characters(), name.length(), { id(), inode }, fileType });
  514. return writeDirectoryInode(directoryInode, move(entries));
  515. }
  516. bool Ext2FileSystem::writeDirectoryInode(unsigned directoryInode, Vector<DirectoryEntry>&& entries)
  517. {
  518. kprintf("ext2fs: New directory inode %u contents to write:\n", directoryInode);
  519. unsigned directorySize = 0;
  520. for (auto& entry : entries) {
  521. kprintf(" - %08u %s\n", entry.inode.index(), entry.name);
  522. directorySize += EXT2_DIR_REC_LEN(entry.name_length);
  523. }
  524. unsigned blocksNeeded = ceilDiv(directorySize, blockSize());
  525. unsigned occupiedSize = blocksNeeded * blockSize();
  526. kprintf("ext2fs: directory size: %u (occupied: %u)\n", directorySize, occupiedSize);
  527. auto directoryData = ByteBuffer::createUninitialized(occupiedSize);
  528. BufferStream stream(directoryData);
  529. for (unsigned i = 0; i < entries.size(); ++i) {
  530. auto& entry = entries[i];
  531. unsigned recordLength = EXT2_DIR_REC_LEN(entry.name_length);
  532. if (i == entries.size() - 1)
  533. recordLength += occupiedSize - directorySize;
  534. kprintf("* inode: %u", entry.inode.index());
  535. kprintf(", name_len: %u", word(entry.name_length));
  536. kprintf(", rec_len: %u", word(recordLength));
  537. kprintf(", file_type: %u", byte(entry.fileType));
  538. kprintf(", name: %s\n", entry.name);
  539. stream << dword(entry.inode.index());
  540. stream << word(recordLength);
  541. stream << byte(entry.name_length);
  542. stream << byte(entry.fileType);
  543. stream << entry.name;
  544. unsigned padding = recordLength - entry.name_length - 8;
  545. kprintf(" *** pad %u bytes\n", padding);
  546. for (unsigned j = 0; j < padding; ++j) {
  547. stream << byte(0);
  548. }
  549. }
  550. stream.fillToEnd(0);
  551. #if 0
  552. kprintf("data to write (%u):\n", directoryData.size());
  553. for (unsigned i = 0; i < directoryData.size(); ++i) {
  554. kprintf("%02x ", directoryData[i]);
  555. if ((i + 1) % 8 == 0)
  556. kprintf(" ");
  557. if ((i + 1) % 16 == 0)
  558. kprintf("\n");
  559. }
  560. kprintf("\n");
  561. #endif
  562. writeInode({ id(), directoryInode }, directoryData);
  563. return true;
  564. }
  565. unsigned Ext2FileSystem::inodesPerBlock() const
  566. {
  567. return EXT2_INODES_PER_BLOCK(&superBlock());
  568. }
  569. unsigned Ext2FileSystem::inodesPerGroup() const
  570. {
  571. return EXT2_INODES_PER_GROUP(&superBlock());
  572. }
  573. unsigned Ext2FileSystem::inodeSize() const
  574. {
  575. return EXT2_INODE_SIZE(&superBlock());
  576. }
  577. unsigned Ext2FileSystem::blocksPerGroup() const
  578. {
  579. return EXT2_BLOCKS_PER_GROUP(&superBlock());
  580. }
  581. void Ext2FileSystem::dumpBlockBitmap(unsigned groupIndex) const
  582. {
  583. ASSERT(groupIndex <= m_blockGroupCount);
  584. auto& bgd = blockGroupDescriptor(groupIndex);
  585. unsigned blocksInGroup = min(blocksPerGroup(), superBlock().s_blocks_count);
  586. unsigned blockCount = ceilDiv(blocksInGroup, 8u);
  587. auto bitmapBlocks = readBlocks(bgd.bg_block_bitmap, blockCount);
  588. ASSERT(bitmapBlocks);
  589. kprintf("ext2fs: group[%u] block bitmap (bitmap occupies %u blocks):\n", groupIndex, blockCount);
  590. auto bitmap = Bitmap::wrap(bitmapBlocks.pointer(), blocksInGroup);
  591. for (unsigned i = 0; i < blocksInGroup; ++i) {
  592. kprintf("%c", bitmap.get(i) ? '1' : '0');
  593. }
  594. kprintf("\n");
  595. }
  596. void Ext2FileSystem::dumpInodeBitmap(unsigned groupIndex) const
  597. {
  598. traverseInodeBitmap(groupIndex, [] (unsigned, const Bitmap& bitmap) {
  599. for (unsigned i = 0; i < bitmap.size(); ++i)
  600. kprintf("%c", bitmap.get(i) ? '1' : '0');
  601. return true;
  602. });
  603. }
  604. template<typename F>
  605. void Ext2FileSystem::traverseInodeBitmap(unsigned groupIndex, F callback) const
  606. {
  607. ASSERT(groupIndex <= m_blockGroupCount);
  608. auto& bgd = blockGroupDescriptor(groupIndex);
  609. unsigned inodesInGroup = min(inodesPerGroup(), superBlock().s_inodes_count);
  610. unsigned blockCount = ceilDiv(inodesInGroup, 8u);
  611. for (unsigned i = 0; i < blockCount; ++i) {
  612. auto block = readBlock(bgd.bg_inode_bitmap + i);
  613. ASSERT(block);
  614. bool shouldContinue = callback(i * (blockSize() / 8) + 1, Bitmap::wrap(block.pointer(), inodesInGroup));
  615. if (!shouldContinue)
  616. break;
  617. }
  618. }
  619. template<typename F>
  620. void Ext2FileSystem::traverseBlockBitmap(unsigned groupIndex, F callback) const
  621. {
  622. ASSERT(groupIndex <= m_blockGroupCount);
  623. auto& bgd = blockGroupDescriptor(groupIndex);
  624. unsigned blocksInGroup = min(blocksPerGroup(), superBlock().s_blocks_count);
  625. unsigned blockCount = ceilDiv(blocksInGroup, 8u);
  626. for (unsigned i = 0; i < blockCount; ++i) {
  627. auto block = readBlock(bgd.bg_block_bitmap + i);
  628. ASSERT(block);
  629. bool shouldContinue = callback(i * (blockSize() / 8) + 1, Bitmap::wrap(block.pointer(), blocksInGroup));
  630. if (!shouldContinue)
  631. break;
  632. }
  633. }
  634. bool Ext2FileSystem::modifyLinkCount(InodeIndex inode, int delta)
  635. {
  636. ASSERT(inode);
  637. auto e2inode = lookupExt2Inode(inode);
  638. if (!e2inode)
  639. return false;
  640. auto newLinkCount = e2inode->i_links_count + delta;
  641. kprintf("changing inode %u link count from %u to %u\n", inode, e2inode->i_links_count, newLinkCount);
  642. e2inode->i_links_count = newLinkCount;
  643. return writeExt2Inode(inode, *e2inode);
  644. }
  645. bool Ext2FileSystem::setModificationTime(InodeIdentifier inode, dword timestamp)
  646. {
  647. ASSERT(inode.fileSystemID() == id());
  648. auto e2inode = lookupExt2Inode(inode.index());
  649. if (!e2inode)
  650. return false;
  651. kprintf("changing inode %u mtime from %u to %u\n", inode.index(), e2inode->i_mtime, timestamp);
  652. e2inode->i_mtime = timestamp;
  653. return writeExt2Inode(inode.index(), *e2inode);
  654. }
  655. bool Ext2FileSystem::writeExt2Inode(unsigned inode, const ext2_inode& e2inode)
  656. {
  657. unsigned blockIndex;
  658. unsigned offset;
  659. auto block = readBlockContainingInode(inode, blockIndex, offset);
  660. if (!block)
  661. return false;
  662. memcpy(reinterpret_cast<ext2_inode*>(block.offsetPointer(offset)), &e2inode, inodeSize());
  663. writeBlock(blockIndex, block);
  664. return true;
  665. }
  666. bool Ext2FileSystem::isDirectoryInode(unsigned inode) const
  667. {
  668. if (auto e2inode = lookupExt2Inode(inode))
  669. return isDirectory(e2inode->i_mode);
  670. return false;
  671. }
  672. Vector<Ext2FileSystem::BlockIndex> Ext2FileSystem::allocateBlocks(unsigned group, unsigned count)
  673. {
  674. kprintf("ext2fs: allocateBlocks(group: %u, count: %u)\n", group, count);
  675. auto& bgd = blockGroupDescriptor(group);
  676. if (bgd.bg_free_blocks_count < count) {
  677. kprintf("ext2fs: allocateBlocks can't allocate out of group %u, wanted %u but only %u available\n", group, count, bgd.bg_free_blocks_count);
  678. return { };
  679. }
  680. // FIXME: Implement a scan that finds consecutive blocks if possible.
  681. Vector<BlockIndex> blocks;
  682. traverseBlockBitmap(group, [&blocks, count] (unsigned firstBlockInBitmap, const Bitmap& bitmap) {
  683. for (unsigned i = 0; i < bitmap.size(); ++i) {
  684. if (!bitmap.get(i)) {
  685. blocks.append(firstBlockInBitmap + i);
  686. if (blocks.size() == count)
  687. return false;
  688. }
  689. }
  690. return true;
  691. });
  692. kprintf("ext2fs: allocateBlock found these blocks:\n");
  693. for (auto& bi : blocks) {
  694. kprintf(" > %u\n", bi);
  695. }
  696. return blocks;
  697. }
  698. unsigned Ext2FileSystem::allocateInode(unsigned preferredGroup, unsigned expectedSize)
  699. {
  700. kprintf("ext2fs: allocateInode(preferredGroup: %u, expectedSize: %u)\n", preferredGroup, expectedSize);
  701. unsigned neededBlocks = ceilDiv(expectedSize, blockSize());
  702. kprintf("ext2fs: minimum needed blocks: %u\n", neededBlocks);
  703. unsigned groupIndex = 0;
  704. auto isSuitableGroup = [this, neededBlocks] (unsigned groupIndex) {
  705. auto& bgd = blockGroupDescriptor(groupIndex);
  706. return bgd.bg_free_inodes_count && bgd.bg_free_blocks_count >= neededBlocks;
  707. };
  708. if (preferredGroup && isSuitableGroup(preferredGroup)) {
  709. groupIndex = preferredGroup;
  710. } else {
  711. for (unsigned i = 1; i <= m_blockGroupCount; ++i) {
  712. if (isSuitableGroup(i))
  713. groupIndex = i;
  714. }
  715. }
  716. if (!groupIndex) {
  717. kprintf("ext2fs: allocateInode: no suitable group found for new inode with %u blocks needed :(\n", neededBlocks);
  718. return 0;
  719. }
  720. kprintf("ext2fs: allocateInode: found suitable group [%u] for new inode with %u blocks needed :^)\n", groupIndex, neededBlocks);
  721. unsigned firstFreeInodeInGroup = 0;
  722. traverseInodeBitmap(groupIndex, [&firstFreeInodeInGroup] (unsigned firstInodeInBitmap, const Bitmap& bitmap) {
  723. for (unsigned i = 0; i < bitmap.size(); ++i) {
  724. if (!bitmap.get(i)) {
  725. firstFreeInodeInGroup = firstInodeInBitmap + i;
  726. return false;
  727. }
  728. }
  729. return true;
  730. });
  731. if (!firstFreeInodeInGroup) {
  732. kprintf("ext2fs: firstFreeInodeInGroup returned no inode, despite bgd claiming there are inodes :(\n");
  733. return 0;
  734. }
  735. unsigned inode = firstFreeInodeInGroup;
  736. kprintf("ext2fs: found suitable inode %u\n", inode);
  737. // FIXME: allocate blocks if needed!
  738. return inode;
  739. }
  740. unsigned Ext2FileSystem::groupIndexFromInode(unsigned inode) const
  741. {
  742. if (!inode)
  743. return 0;
  744. return (inode - 1) / inodesPerGroup() + 1;
  745. }
  746. bool Ext2FileSystem::setInodeAllocationState(unsigned inode, bool newState)
  747. {
  748. auto& bgd = blockGroupDescriptor(groupIndexFromInode(inode));
  749. // Update inode bitmap
  750. unsigned inodesPerBitmapBlock = blockSize() * 8;
  751. unsigned bitmapBlockIndex = (inode - 1) / inodesPerBitmapBlock;
  752. unsigned bitIndex = (inode - 1) % inodesPerBitmapBlock;
  753. auto block = readBlock(bgd.bg_inode_bitmap + bitmapBlockIndex);
  754. ASSERT(block);
  755. auto bitmap = Bitmap::wrap(block.pointer(), block.size());
  756. bool currentState = bitmap.get(bitIndex);
  757. kprintf("ext2fs: setInodeAllocationState(%u) %u -> %u\n", inode, currentState, newState);
  758. if (currentState == newState)
  759. return true;
  760. bitmap.set(bitIndex, newState);
  761. writeBlock(bgd.bg_inode_bitmap + bitmapBlockIndex, block);
  762. // Update superblock
  763. auto& sb = *reinterpret_cast<ext2_super_block*>(m_cachedSuperBlock.pointer());
  764. kprintf("ext2fs: superblock free inode count %u -> %u\n", sb.s_free_inodes_count, sb.s_free_inodes_count - 1);
  765. if (newState)
  766. --sb.s_free_inodes_count;
  767. else
  768. ++sb.s_free_inodes_count;
  769. writeSuperBlock(sb);
  770. // Update BGD
  771. auto& mutableBGD = const_cast<ext2_group_desc&>(bgd);
  772. if (newState)
  773. --mutableBGD.bg_free_inodes_count;
  774. else
  775. ++mutableBGD.bg_free_inodes_count;
  776. kprintf("ext2fs: group free inode count %u -> %u\n", bgd.bg_free_inodes_count, bgd.bg_free_inodes_count - 1);
  777. unsigned blocksToWrite = ceilDiv(m_blockGroupCount * (unsigned)sizeof(ext2_group_desc), blockSize());
  778. unsigned firstBlockOfBGDT = blockSize() == 1024 ? 2 : 1;
  779. writeBlocks(firstBlockOfBGDT, blocksToWrite, m_cachedBlockGroupDescriptorTable);
  780. return true;
  781. }
  782. bool Ext2FileSystem::setBlockAllocationState(GroupIndex group, BlockIndex bi, bool newState)
  783. {
  784. auto& bgd = blockGroupDescriptor(group);
  785. // Update block bitmap
  786. unsigned blocksPerBitmapBlock = blockSize() * 8;
  787. unsigned bitmapBlockIndex = (bi - 1) / blocksPerBitmapBlock;
  788. unsigned bitIndex = (bi - 1) % blocksPerBitmapBlock;
  789. auto block = readBlock(bgd.bg_block_bitmap + bitmapBlockIndex);
  790. ASSERT(block);
  791. auto bitmap = Bitmap::wrap(block.pointer(), block.size());
  792. bool currentState = bitmap.get(bitIndex);
  793. kprintf("ext2fs: setBlockAllocationState(%u) %u -> %u\n", bi, currentState, newState);
  794. if (currentState == newState)
  795. return true;
  796. bitmap.set(bitIndex, newState);
  797. writeBlock(bgd.bg_block_bitmap + bitmapBlockIndex, block);
  798. // Update superblock
  799. auto& sb = *reinterpret_cast<ext2_super_block*>(m_cachedSuperBlock.pointer());
  800. kprintf("ext2fs: superblock free block count %u -> %u\n", sb.s_free_blocks_count, sb.s_free_blocks_count - 1);
  801. if (newState)
  802. --sb.s_free_blocks_count;
  803. else
  804. ++sb.s_free_blocks_count;
  805. writeSuperBlock(sb);
  806. // Update BGD
  807. auto& mutableBGD = const_cast<ext2_group_desc&>(bgd);
  808. if (newState)
  809. --mutableBGD.bg_free_blocks_count;
  810. else
  811. ++mutableBGD.bg_free_blocks_count;
  812. kprintf("ext2fs: group free block count %u -> %u\n", bgd.bg_free_blocks_count, bgd.bg_free_blocks_count - 1);
  813. unsigned blocksToWrite = ceilDiv(m_blockGroupCount * (unsigned)sizeof(ext2_group_desc), blockSize());
  814. unsigned firstBlockOfBGDT = blockSize() == 1024 ? 2 : 1;
  815. writeBlocks(firstBlockOfBGDT, blocksToWrite, m_cachedBlockGroupDescriptorTable);
  816. return true;
  817. }
  818. InodeIdentifier Ext2FileSystem::makeDirectory(InodeIdentifier parentInode, const String& name, Unix::mode_t mode)
  819. {
  820. ASSERT(parentInode.fileSystemID() == id());
  821. ASSERT(isDirectoryInode(parentInode.index()));
  822. // Fix up the mode to definitely be a directory.
  823. // FIXME: This is a bit on the hackish side.
  824. mode &= ~0170000;
  825. mode |= 0040000;
  826. // NOTE: When creating a new directory, make the size 1 block.
  827. // There's probably a better strategy here, but this works for now.
  828. auto inode = createInode(parentInode, name, mode, blockSize());
  829. if (!inode.isValid())
  830. return { };
  831. kprintf("ext2fs: makeDirectory: created new directory named '%s' with inode %u\n", name.characters(), inode.index());
  832. Vector<DirectoryEntry> entries;
  833. entries.append({ ".", inode, EXT2_FT_DIR });
  834. entries.append({ "..", parentInode, EXT2_FT_DIR });
  835. bool success = writeDirectoryInode(inode.index(), move(entries));
  836. ASSERT(success);
  837. success = modifyLinkCount(parentInode.index(), 1);
  838. ASSERT(success);
  839. auto& bgd = const_cast<ext2_group_desc&>(blockGroupDescriptor(groupIndexFromInode(inode.index())));
  840. ++bgd.bg_used_dirs_count;
  841. kprintf("ext2fs: incremented bg_used_dirs_count %u -> %u\n", bgd.bg_used_dirs_count - 1, bgd.bg_used_dirs_count);
  842. unsigned blocksToWrite = ceilDiv(m_blockGroupCount * (unsigned)sizeof(ext2_group_desc), blockSize());
  843. unsigned firstBlockOfBGDT = blockSize() == 1024 ? 2 : 1;
  844. writeBlocks(firstBlockOfBGDT, blocksToWrite, m_cachedBlockGroupDescriptorTable);
  845. return inode;
  846. }
  847. InodeIdentifier Ext2FileSystem::createInode(InodeIdentifier parentInode, const String& name, Unix::mode_t mode, unsigned size)
  848. {
  849. ASSERT(parentInode.fileSystemID() == id());
  850. ASSERT(isDirectoryInode(parentInode.index()));
  851. //#ifdef EXT2_DEBUG
  852. kprintf("ext2fs: Adding inode '%s' (mode %o) to parent directory %u:\n", name.characters(), mode, parentInode.index());
  853. //#endif
  854. // NOTE: This doesn't commit the inode allocation just yet!
  855. auto inode = allocateInode(0, 0);
  856. if (!inode) {
  857. kprintf("ext2fs: createInode: allocateInode failed\n");
  858. return { };
  859. }
  860. auto blocks = allocateBlocks(groupIndexFromInode(inode), ceilDiv(size, blockSize()));
  861. if (blocks.isEmpty()) {
  862. kprintf("ext2fs: createInode: allocateBlocks failed\n");
  863. return { };
  864. }
  865. byte fileType = 0;
  866. if (isRegularFile(mode))
  867. fileType = EXT2_FT_REG_FILE;
  868. else if (isDirectory(mode))
  869. fileType = EXT2_FT_DIR;
  870. else if (isCharacterDevice(mode))
  871. fileType = EXT2_FT_CHRDEV;
  872. else if (isBlockDevice(mode))
  873. fileType = EXT2_FT_BLKDEV;
  874. else if (isFIFO(mode))
  875. fileType = EXT2_FT_FIFO;
  876. else if (isSocket(mode))
  877. fileType = EXT2_FT_SOCK;
  878. else if (isSymbolicLink(mode))
  879. fileType = EXT2_FT_SYMLINK;
  880. // Try adding it to the directory first, in case the name is already in use.
  881. bool success = addInodeToDirectory(parentInode.index(), inode, name, fileType);
  882. if (!success) {
  883. kprintf("ext2fs: failed to add inode to directory :(\n");
  884. return { };
  885. }
  886. // Looks like we're good, time to update the inode bitmap and group+global inode counters.
  887. success = setInodeAllocationState(inode, true);
  888. ASSERT(success);
  889. for (auto bi : blocks) {
  890. success = setBlockAllocationState(groupIndexFromInode(inode), bi, true);
  891. ASSERT(success);
  892. }
  893. unsigned initialLinksCount;
  894. if (isDirectory(mode))
  895. initialLinksCount = 2; // (parent directory + "." entry in self)
  896. else
  897. initialLinksCount = 1;
  898. auto timestamp = ktime(nullptr);
  899. auto e2inode = make<ext2_inode>();
  900. memset(e2inode.ptr(), 0, sizeof(ext2_inode));
  901. e2inode->i_mode = mode;
  902. e2inode->i_uid = 0;
  903. e2inode->i_size = size;
  904. e2inode->i_atime = timestamp;
  905. e2inode->i_ctime = timestamp;
  906. e2inode->i_mtime = timestamp;
  907. e2inode->i_dtime = 0;
  908. e2inode->i_gid = 0;
  909. e2inode->i_links_count = initialLinksCount;
  910. e2inode->i_blocks = blocks.size() * (blockSize() / 512);
  911. // FIXME: Implement writing out indirect blocks!
  912. ASSERT(blocks.size() < EXT2_NDIR_BLOCKS);
  913. kprintf("[XXX] writing %zu blocks to i_block array\n", min((size_t)EXT2_NDIR_BLOCKS, blocks.size()));
  914. for (unsigned i = 0; i < min((size_t)EXT2_NDIR_BLOCKS, blocks.size()); ++i) {
  915. e2inode->i_block[i] = blocks[i];
  916. }
  917. e2inode->i_flags = 0;
  918. success = writeExt2Inode(inode, *e2inode);
  919. ASSERT(success);
  920. return { id(), inode };
  921. }
  922. InodeIdentifier Ext2FileSystem::findParentOfInode(InodeIdentifier inode_id) const
  923. {
  924. auto inode = get_inode(inode_id);
  925. ASSERT(inode);
  926. unsigned groupIndex = groupIndexFromInode(inode->index());
  927. unsigned firstInodeInGroup = inodesPerGroup() * (groupIndex - 1);
  928. Vector<RetainPtr<Ext2Inode>> directories_in_group;
  929. for (unsigned i = 0; i < inodesPerGroup(); ++i) {
  930. auto group_member = get_inode({ id(), firstInodeInGroup + i });
  931. if (!group_member)
  932. continue;
  933. if (group_member->is_directory())
  934. directories_in_group.append(move(group_member));
  935. }
  936. InodeIdentifier foundParent;
  937. for (auto& directory : directories_in_group) {
  938. directory->traverse_as_directory([inode, directory, &foundParent] (auto& entry) {
  939. if (entry.inode == inode->identifier()) {
  940. foundParent = directory->identifier();
  941. return false;
  942. }
  943. return true;
  944. });
  945. if (foundParent.isValid())
  946. break;
  947. }
  948. return foundParent;
  949. }