FileDescriptor.cpp 8.2 KB

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  1. #include "FileDescriptor.h"
  2. #include "FileSystem.h"
  3. #include "CharacterDevice.h"
  4. #include <LibC/errno_numbers.h>
  5. #include "UnixTypes.h"
  6. #include <AK/BufferStream.h>
  7. #include "FIFO.h"
  8. #include "TTY.h"
  9. #include "MasterPTY.h"
  10. #include <Kernel/Socket.h>
  11. RetainPtr<FileDescriptor> FileDescriptor::create(RetainPtr<Inode>&& inode)
  12. {
  13. return adopt(*new FileDescriptor(move(inode)));
  14. }
  15. RetainPtr<FileDescriptor> FileDescriptor::create(RetainPtr<CharacterDevice>&& device)
  16. {
  17. return adopt(*new FileDescriptor(move(device)));
  18. }
  19. RetainPtr<FileDescriptor> FileDescriptor::create(RetainPtr<Socket>&& socket, SocketRole role)
  20. {
  21. return adopt(*new FileDescriptor(move(socket), role));
  22. }
  23. RetainPtr<FileDescriptor> FileDescriptor::create_pipe_writer(FIFO& fifo)
  24. {
  25. return adopt(*new FileDescriptor(fifo, FIFO::Writer));
  26. }
  27. RetainPtr<FileDescriptor> FileDescriptor::create_pipe_reader(FIFO& fifo)
  28. {
  29. return adopt(*new FileDescriptor(fifo, FIFO::Reader));
  30. }
  31. FileDescriptor::FileDescriptor(RetainPtr<Inode>&& inode)
  32. : m_inode(move(inode))
  33. {
  34. }
  35. FileDescriptor::FileDescriptor(RetainPtr<CharacterDevice>&& device)
  36. : m_device(move(device))
  37. {
  38. }
  39. FileDescriptor::FileDescriptor(RetainPtr<Socket>&& socket, SocketRole role)
  40. : m_socket(move(socket))
  41. , m_socket_role(role)
  42. {
  43. }
  44. FileDescriptor::~FileDescriptor()
  45. {
  46. if (m_device) {
  47. m_device->close();
  48. m_device = nullptr;
  49. }
  50. if (m_fifo) {
  51. m_fifo->close(fifo_direction());
  52. m_fifo = nullptr;
  53. }
  54. m_inode = nullptr;
  55. }
  56. RetainPtr<FileDescriptor> FileDescriptor::clone()
  57. {
  58. RetainPtr<FileDescriptor> descriptor;
  59. if (is_fifo()) {
  60. descriptor = fifo_direction() == FIFO::Reader
  61. ? FileDescriptor::create_pipe_reader(*m_fifo)
  62. : FileDescriptor::create_pipe_writer(*m_fifo);
  63. } else {
  64. if (m_device) {
  65. descriptor = FileDescriptor::create(m_device.copy_ref());
  66. descriptor->m_inode = m_inode.copy_ref();
  67. } else {
  68. descriptor = FileDescriptor::create(m_inode.copy_ref());
  69. }
  70. }
  71. if (!descriptor)
  72. return nullptr;
  73. descriptor->m_current_offset = m_current_offset;
  74. descriptor->m_is_blocking = m_is_blocking;
  75. descriptor->m_file_flags = m_file_flags;
  76. return descriptor;
  77. }
  78. bool addition_would_overflow(off_t a, off_t b)
  79. {
  80. ASSERT(a > 0);
  81. uint64_t ua = a;
  82. return (ua + b) > maxFileOffset;
  83. }
  84. int FileDescriptor::fstat(stat* buffer)
  85. {
  86. ASSERT(!is_fifo());
  87. if (!m_inode && !m_device)
  88. return -EBADF;
  89. auto metadata = this->metadata();
  90. if (!metadata.is_valid())
  91. return -EIO;
  92. buffer->st_rdev = encoded_device(metadata.major_device, metadata.minor_device);
  93. buffer->st_ino = metadata.inode.index();
  94. buffer->st_mode = metadata.mode;
  95. buffer->st_nlink = metadata.link_count;
  96. buffer->st_uid = metadata.uid;
  97. buffer->st_gid = metadata.gid;
  98. buffer->st_dev = 0; // FIXME
  99. buffer->st_size = metadata.size;
  100. buffer->st_blksize = metadata.block_size;
  101. buffer->st_blocks = metadata.block_count;
  102. buffer->st_atime = metadata.atime;
  103. buffer->st_mtime = metadata.mtime;
  104. buffer->st_ctime = metadata.ctime;
  105. return 0;
  106. }
  107. off_t FileDescriptor::seek(off_t offset, int whence)
  108. {
  109. ASSERT(!is_fifo());
  110. if (!m_inode && !m_device)
  111. return -EBADF;
  112. // FIXME: The file type should be cached on the vnode.
  113. // It's silly that we have to do a full metadata lookup here.
  114. auto metadata = this->metadata();
  115. if (!metadata.is_valid())
  116. return -EIO;
  117. if (metadata.is_socket() || metadata.is_fifo())
  118. return -ESPIPE;
  119. off_t newOffset;
  120. switch (whence) {
  121. case SEEK_SET:
  122. newOffset = offset;
  123. break;
  124. case SEEK_CUR:
  125. newOffset = m_current_offset + offset;
  126. if (newOffset < 0)
  127. return -EINVAL;
  128. break;
  129. case SEEK_END:
  130. ASSERT(metadata.size); // FIXME: What do I do?
  131. newOffset = metadata.size;
  132. break;
  133. default:
  134. return -EINVAL;
  135. }
  136. m_current_offset = newOffset;
  137. return m_current_offset;
  138. }
  139. ssize_t FileDescriptor::read(Process& process, byte* buffer, size_t count)
  140. {
  141. if (is_fifo()) {
  142. ASSERT(fifo_direction() == FIFO::Reader);
  143. return m_fifo->read(buffer, count);
  144. }
  145. if (m_device) {
  146. // FIXME: What should happen to m_currentOffset?
  147. return m_device->read(process, buffer, count);
  148. }
  149. ASSERT(inode());
  150. ssize_t nread = inode()->read_bytes(m_current_offset, count, buffer, this);
  151. m_current_offset += nread;
  152. return nread;
  153. }
  154. ssize_t FileDescriptor::write(Process& process, const byte* data, size_t size)
  155. {
  156. if (is_fifo()) {
  157. ASSERT(fifo_direction() == FIFO::Writer);
  158. return m_fifo->write(data, size);
  159. }
  160. if (m_device) {
  161. // FIXME: What should happen to m_currentOffset?
  162. return m_device->write(process, data, size);
  163. }
  164. ASSERT(m_inode);
  165. ssize_t nwritten = m_inode->write_bytes(m_current_offset, size, data, this);
  166. m_current_offset += nwritten;
  167. return nwritten;
  168. }
  169. bool FileDescriptor::can_write(Process& process)
  170. {
  171. if (is_fifo()) {
  172. ASSERT(fifo_direction() == FIFO::Writer);
  173. return m_fifo->can_write();
  174. }
  175. if (m_device)
  176. return m_device->can_write(process);
  177. return true;
  178. }
  179. bool FileDescriptor::can_read(Process& process)
  180. {
  181. if (is_fifo()) {
  182. ASSERT(fifo_direction() == FIFO::Reader);
  183. return m_fifo->can_read();
  184. }
  185. if (m_device)
  186. return m_device->can_read(process);
  187. return true;
  188. }
  189. ByteBuffer FileDescriptor::read_entire_file(Process& process)
  190. {
  191. ASSERT(!is_fifo());
  192. if (m_device) {
  193. auto buffer = ByteBuffer::create_uninitialized(1024);
  194. ssize_t nread = m_device->read(process, buffer.pointer(), buffer.size());
  195. buffer.trim(nread);
  196. return buffer;
  197. }
  198. ASSERT(m_inode);
  199. return m_inode->read_entire(this);
  200. }
  201. bool FileDescriptor::is_directory() const
  202. {
  203. ASSERT(!is_fifo());
  204. return metadata().is_directory();
  205. }
  206. ssize_t FileDescriptor::get_dir_entries(byte* buffer, size_t size)
  207. {
  208. auto metadata = this->metadata();
  209. if (!metadata.is_valid())
  210. return -EIO;
  211. if (!metadata.is_directory())
  212. return -ENOTDIR;
  213. // FIXME: Compute the actual size needed.
  214. auto temp_buffer = ByteBuffer::create_uninitialized(2048);
  215. BufferStream stream(temp_buffer);
  216. VFS::the().traverse_directory_inode(*m_inode, [&stream] (auto& entry) {
  217. stream << (dword)entry.inode.index();
  218. stream << (byte)entry.file_type;
  219. stream << (dword)entry.name_length;
  220. stream << entry.name;
  221. return true;
  222. });
  223. if (size < stream.offset())
  224. return -1;
  225. memcpy(buffer, temp_buffer.pointer(), stream.offset());
  226. return stream.offset();
  227. }
  228. bool FileDescriptor::is_tty() const
  229. {
  230. return m_device && m_device->is_tty();
  231. }
  232. const TTY* FileDescriptor::tty() const
  233. {
  234. if (!is_tty())
  235. return nullptr;
  236. return static_cast<const TTY*>(m_device.ptr());
  237. }
  238. TTY* FileDescriptor::tty()
  239. {
  240. if (!is_tty())
  241. return nullptr;
  242. return static_cast<TTY*>(m_device.ptr());
  243. }
  244. bool FileDescriptor::is_master_pty() const
  245. {
  246. if (m_device)
  247. return m_device->is_master_pty();
  248. return false;
  249. }
  250. const MasterPTY* FileDescriptor::master_pty() const
  251. {
  252. if (!is_master_pty())
  253. return nullptr;
  254. return static_cast<const MasterPTY*>(m_device.ptr());
  255. }
  256. MasterPTY* FileDescriptor::master_pty()
  257. {
  258. if (!is_master_pty())
  259. return nullptr;
  260. return static_cast<MasterPTY*>(m_device.ptr());
  261. }
  262. int FileDescriptor::close()
  263. {
  264. return 0;
  265. }
  266. String FileDescriptor::absolute_path()
  267. {
  268. Stopwatch sw("absolute_path");
  269. if (is_tty())
  270. return tty()->tty_name();
  271. if (is_fifo())
  272. return String::format("fifo:%x", m_fifo.ptr());
  273. if (is_character_device())
  274. return String::format("device:%u,%u (%s)", m_device->major(), m_device->minor(), m_device->class_name());
  275. ASSERT(m_inode);
  276. return VFS::the().absolute_path(*m_inode);
  277. }
  278. FileDescriptor::FileDescriptor(FIFO& fifo, FIFO::Direction direction)
  279. : m_is_blocking(true)
  280. , m_fifo(fifo)
  281. , m_fifo_direction(direction)
  282. {
  283. m_fifo->open(direction);
  284. }
  285. InodeMetadata FileDescriptor::metadata() const
  286. {
  287. if (m_inode)
  288. return m_inode->metadata();
  289. return { };
  290. }