file.rs 26 KB

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  1. use core::sync::atomic::{AtomicUsize, Ordering};
  2. use alloc::{
  3. string::String,
  4. sync::{Arc, Weak},
  5. vec::Vec,
  6. };
  7. use kdepends::xarray::XArray;
  8. use log::error;
  9. use system_error::SystemError;
  10. use super::{Dirent, FileType, IndexNode, InodeId, Metadata, SpecialNodeData};
  11. use crate::filesystem::eventfd::EventFdInode;
  12. use crate::libs::lazy_init::Lazy;
  13. use crate::perf::PerfEventInode;
  14. use crate::{
  15. arch::MMArch,
  16. driver::{
  17. base::{block::SeekFrom, device::DevicePrivateData},
  18. tty::tty_device::TtyFilePrivateData,
  19. },
  20. filesystem::procfs::ProcfsFilePrivateData,
  21. ipc::pipe::{LockedPipeInode, PipeFsPrivateData},
  22. libs::{rwlock::RwLock, spinlock::SpinLock},
  23. mm::{page::Page, MemoryManagementArch},
  24. net::{
  25. event_poll::{EPollItem, EPollPrivateData, EventPoll},
  26. socket::SocketInode,
  27. },
  28. process::{cred::Cred, ProcessManager},
  29. };
  30. /// 文件私有信息的枚举类型
  31. #[derive(Debug, Clone)]
  32. #[allow(dead_code)]
  33. pub enum FilePrivateData {
  34. /// 管道文件私有信息
  35. Pipefs(PipeFsPrivateData),
  36. /// procfs文件私有信息
  37. Procfs(ProcfsFilePrivateData),
  38. /// 设备文件的私有信息
  39. DevFS(DevicePrivateData),
  40. /// tty设备文件的私有信息
  41. Tty(TtyFilePrivateData),
  42. /// epoll私有信息
  43. EPoll(EPollPrivateData),
  44. /// 不需要文件私有信息
  45. Unused,
  46. }
  47. impl Default for FilePrivateData {
  48. fn default() -> Self {
  49. return Self::Unused;
  50. }
  51. }
  52. impl FilePrivateData {
  53. pub fn update_mode(&mut self, mode: FileMode) {
  54. if let FilePrivateData::Pipefs(pdata) = self {
  55. pdata.set_mode(mode);
  56. }
  57. }
  58. }
  59. bitflags! {
  60. /// @brief 文件打开模式
  61. /// 其中,低2bit组合而成的数字的值,用于表示访问权限。其他的bit,才支持通过按位或的方式来表示参数
  62. ///
  63. /// 与Linux 5.19.10的uapi/asm-generic/fcntl.h相同
  64. /// https://code.dragonos.org.cn/xref/linux-5.19.10/tools/include/uapi/asm-generic/fcntl.h#19
  65. #[allow(clippy::bad_bit_mask)]
  66. pub struct FileMode: u32{
  67. /* File access modes for `open' and `fcntl'. */
  68. /// Open Read-only
  69. const O_RDONLY = 0o0;
  70. /// Open Write-only
  71. const O_WRONLY = 0o1;
  72. /// Open read/write
  73. const O_RDWR = 0o2;
  74. /// Mask for file access modes
  75. const O_ACCMODE = 0o00000003;
  76. /* Bits OR'd into the second argument to open. */
  77. /// Create file if it does not exist
  78. const O_CREAT = 0o00000100;
  79. /// Fail if file already exists
  80. const O_EXCL = 0o00000200;
  81. /// Do not assign controlling terminal
  82. const O_NOCTTY = 0o00000400;
  83. /// 文件存在且是普通文件,并以O_RDWR或O_WRONLY打开,则它会被清空
  84. const O_TRUNC = 0o00001000;
  85. /// 文件指针会被移动到文件末尾
  86. const O_APPEND = 0o00002000;
  87. /// 非阻塞式IO模式
  88. const O_NONBLOCK = 0o00004000;
  89. /// 每次write都等待物理I/O完成,但是如果写操作不影响读取刚写入的数据,则不等待文件属性更新
  90. const O_DSYNC = 0o00010000;
  91. /// fcntl, for BSD compatibility
  92. const FASYNC = 0o00020000;
  93. /* direct disk access hint */
  94. const O_DIRECT = 0o00040000;
  95. const O_LARGEFILE = 0o00100000;
  96. /// 打开的必须是一个目录
  97. const O_DIRECTORY = 0o00200000;
  98. /// Do not follow symbolic links
  99. const O_NOFOLLOW = 0o00400000;
  100. const O_NOATIME = 0o01000000;
  101. /// set close_on_exec
  102. const O_CLOEXEC = 0o02000000;
  103. /// 每次write都等到物理I/O完成,包括write引起的文件属性的更新
  104. const O_SYNC = 0o04000000;
  105. const O_PATH = 0o10000000;
  106. const O_PATH_FLAGS = Self::O_DIRECTORY.bits|Self::O_NOFOLLOW.bits|Self::O_CLOEXEC.bits|Self::O_PATH.bits;
  107. }
  108. }
  109. impl FileMode {
  110. /// @brief 获取文件的访问模式的值
  111. #[inline]
  112. pub fn accmode(&self) -> u32 {
  113. return self.bits() & FileMode::O_ACCMODE.bits();
  114. }
  115. }
  116. /// 页面缓存
  117. pub struct PageCache {
  118. xarray: SpinLock<XArray<Arc<Page>>>,
  119. inode: Lazy<Weak<dyn IndexNode>>,
  120. }
  121. impl core::fmt::Debug for PageCache {
  122. fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
  123. f.debug_struct("PageCache")
  124. .field(
  125. "xarray",
  126. &self
  127. .xarray
  128. .lock()
  129. .range(0..((MMArch::PAGE_ADDRESS_SIZE >> MMArch::PAGE_SHIFT) as u64))
  130. .map(|(_, r)| (*r).clone())
  131. .collect::<Vec<Arc<Page>>>(),
  132. )
  133. .finish()
  134. }
  135. }
  136. impl PageCache {
  137. pub fn new(inode: Option<Weak<dyn IndexNode>>) -> Arc<PageCache> {
  138. let page_cache = Self {
  139. xarray: SpinLock::new(XArray::new()),
  140. inode: {
  141. let v: Lazy<Weak<dyn IndexNode>> = Lazy::new();
  142. if let Some(inode) = inode {
  143. v.init(inode);
  144. }
  145. v
  146. },
  147. };
  148. Arc::new(page_cache)
  149. }
  150. pub fn inode(&self) -> Option<Weak<dyn IndexNode>> {
  151. self.inode.try_get().cloned()
  152. }
  153. pub fn add_page(&self, offset: usize, page: &Arc<Page>) {
  154. let mut guard = self.xarray.lock();
  155. let mut cursor = guard.cursor_mut(offset as u64);
  156. cursor.store(page.clone());
  157. }
  158. pub fn get_page(&self, offset: usize) -> Option<Arc<Page>> {
  159. let mut guard = self.xarray.lock();
  160. let mut cursor = guard.cursor_mut(offset as u64);
  161. let page = cursor.load().map(|r| (*r).clone());
  162. page
  163. }
  164. pub fn remove_page(&self, offset: usize) {
  165. let mut guard = self.xarray.lock();
  166. let mut cursor = guard.cursor_mut(offset as u64);
  167. cursor.remove();
  168. }
  169. pub fn set_inode(&self, inode: Weak<dyn IndexNode>) -> Result<(), SystemError> {
  170. if self.inode.initialized() {
  171. return Err(SystemError::EINVAL);
  172. }
  173. self.inode.init(inode);
  174. Ok(())
  175. }
  176. }
  177. /// @brief 抽象文件结构体
  178. #[derive(Debug)]
  179. pub struct File {
  180. inode: Arc<dyn IndexNode>,
  181. /// 对于文件,表示字节偏移量;对于文件夹,表示当前操作的子目录项偏移量
  182. offset: AtomicUsize,
  183. /// 文件的打开模式
  184. mode: RwLock<FileMode>,
  185. /// 文件类型
  186. file_type: FileType,
  187. /// readdir时候用的,暂存的本次循环中,所有子目录项的名字的数组
  188. readdir_subdirs_name: SpinLock<Vec<String>>,
  189. pub private_data: SpinLock<FilePrivateData>,
  190. /// 文件的凭证
  191. cred: Cred,
  192. }
  193. impl File {
  194. /// @brief 创建一个新的文件对象
  195. ///
  196. /// @param inode 文件对象对应的inode
  197. /// @param mode 文件的打开模式
  198. pub fn new(inode: Arc<dyn IndexNode>, mode: FileMode) -> Result<Self, SystemError> {
  199. let mut inode = inode;
  200. let file_type = inode.metadata()?.file_type;
  201. if file_type == FileType::Pipe {
  202. if let Some(SpecialNodeData::Pipe(pipe_inode)) = inode.special_node() {
  203. inode = pipe_inode;
  204. }
  205. }
  206. let f = File {
  207. inode,
  208. offset: AtomicUsize::new(0),
  209. mode: RwLock::new(mode),
  210. file_type,
  211. readdir_subdirs_name: SpinLock::new(Vec::default()),
  212. private_data: SpinLock::new(FilePrivateData::default()),
  213. cred: ProcessManager::current_pcb().cred(),
  214. };
  215. f.inode.open(f.private_data.lock(), &mode)?;
  216. return Ok(f);
  217. }
  218. /// @brief 从文件中读取指定的字节数到buffer中
  219. ///
  220. /// @param len 要读取的字节数
  221. /// @param buf 目标buffer
  222. ///
  223. /// @return Ok(usize) 成功读取的字节数
  224. /// @return Err(SystemError) 错误码
  225. pub fn read(&self, len: usize, buf: &mut [u8]) -> Result<usize, SystemError> {
  226. self.do_read(
  227. self.offset.load(core::sync::atomic::Ordering::SeqCst),
  228. len,
  229. buf,
  230. true,
  231. )
  232. }
  233. /// @brief 从buffer向文件写入指定的字节数的数据
  234. ///
  235. /// @param len 要写入的字节数
  236. /// @param buf 源数据buffer
  237. ///
  238. /// @return Ok(usize) 成功写入的字节数
  239. /// @return Err(SystemError) 错误码
  240. pub fn write(&self, len: usize, buf: &[u8]) -> Result<usize, SystemError> {
  241. self.do_write(
  242. self.offset.load(core::sync::atomic::Ordering::SeqCst),
  243. len,
  244. buf,
  245. true,
  246. )
  247. }
  248. /// ## 从文件中指定的偏移处读取指定的字节数到buf中
  249. ///
  250. /// ### 参数
  251. /// - `offset`: 文件偏移量
  252. /// - `len`: 要读取的字节数
  253. /// - `buf`: 读出缓冲区
  254. ///
  255. /// ### 返回值
  256. /// - `Ok(usize)`: 成功读取的字节数
  257. pub fn pread(&self, offset: usize, len: usize, buf: &mut [u8]) -> Result<usize, SystemError> {
  258. self.do_read(offset, len, buf, false)
  259. }
  260. /// ## 从buf向文件中指定的偏移处写入指定的字节数的数据
  261. ///
  262. /// ### 参数
  263. /// - `offset`: 文件偏移量
  264. /// - `len`: 要写入的字节数
  265. /// - `buf`: 写入缓冲区
  266. ///
  267. /// ### 返回值
  268. /// - `Ok(usize)`: 成功写入的字节数
  269. pub fn pwrite(&self, offset: usize, len: usize, buf: &[u8]) -> Result<usize, SystemError> {
  270. self.do_write(offset, len, buf, false)
  271. }
  272. fn do_read(
  273. &self,
  274. offset: usize,
  275. len: usize,
  276. buf: &mut [u8],
  277. update_offset: bool,
  278. ) -> Result<usize, SystemError> {
  279. // 先检查本文件在权限等规则下,是否可读取。
  280. self.readable()?;
  281. if buf.len() < len {
  282. return Err(SystemError::ENOBUFS);
  283. }
  284. let len = self
  285. .inode
  286. .read_at(offset, len, buf, self.private_data.lock())
  287. .map_err(|e| {
  288. if e == SystemError::ERESTARTSYS {
  289. SystemError::EINTR
  290. } else {
  291. e
  292. }
  293. })?;
  294. if update_offset {
  295. self.offset
  296. .fetch_add(len, core::sync::atomic::Ordering::SeqCst);
  297. }
  298. Ok(len)
  299. }
  300. fn do_write(
  301. &self,
  302. offset: usize,
  303. len: usize,
  304. buf: &[u8],
  305. update_offset: bool,
  306. ) -> Result<usize, SystemError> {
  307. // 先检查本文件在权限等规则下,是否可写入。
  308. self.writeable()?;
  309. if buf.len() < len {
  310. return Err(SystemError::ENOBUFS);
  311. }
  312. // 如果文件指针已经超过了文件大小,则需要扩展文件大小
  313. if offset > self.inode.metadata()?.size as usize {
  314. self.inode.resize(offset).map_err(|e| {
  315. if e == SystemError::ERESTARTSYS {
  316. SystemError::EINTR
  317. } else {
  318. e
  319. }
  320. })?;
  321. }
  322. let len = self
  323. .inode
  324. .write_at(offset, len, buf, self.private_data.lock())
  325. .map_err(|e| {
  326. if e == SystemError::ERESTARTSYS {
  327. SystemError::EINTR
  328. } else {
  329. e
  330. }
  331. })?;
  332. if update_offset {
  333. self.offset
  334. .fetch_add(len, core::sync::atomic::Ordering::SeqCst);
  335. }
  336. Ok(len)
  337. }
  338. /// @brief 获取文件的元数据
  339. pub fn metadata(&self) -> Result<Metadata, SystemError> {
  340. return self.inode.metadata();
  341. }
  342. /// @brief 根据inode号获取子目录项的名字
  343. #[allow(dead_code)]
  344. pub fn get_entry_name(&self, ino: InodeId) -> Result<String, SystemError> {
  345. return self.inode.get_entry_name(ino);
  346. }
  347. /// @brief 调整文件操作指针的位置
  348. ///
  349. /// @param origin 调整的起始位置
  350. pub fn lseek(&self, origin: SeekFrom) -> Result<usize, SystemError> {
  351. let file_type = self.inode.metadata()?.file_type;
  352. match file_type {
  353. FileType::Pipe | FileType::CharDevice => {
  354. return Err(SystemError::ESPIPE);
  355. }
  356. _ => {}
  357. }
  358. let pos: i64 = match origin {
  359. SeekFrom::SeekSet(offset) => offset,
  360. SeekFrom::SeekCurrent(offset) => self.offset.load(Ordering::SeqCst) as i64 + offset,
  361. SeekFrom::SeekEnd(offset) => {
  362. let metadata = self.metadata()?;
  363. metadata.size + offset
  364. }
  365. SeekFrom::Invalid => {
  366. return Err(SystemError::EINVAL);
  367. }
  368. };
  369. // 根据linux man page, lseek允许超出文件末尾,并且不改变文件大小
  370. // 当pos超出文件末尾时,read返回0。直到开始写入数据时,才会改变文件大小
  371. if pos < 0 {
  372. return Err(SystemError::EOVERFLOW);
  373. }
  374. self.offset.store(pos as usize, Ordering::SeqCst);
  375. return Ok(pos as usize);
  376. }
  377. /// @brief 判断当前文件是否可读
  378. #[inline]
  379. pub fn readable(&self) -> Result<(), SystemError> {
  380. // 暂时认为只要不是write only, 就可读
  381. if *self.mode.read() == FileMode::O_WRONLY {
  382. return Err(SystemError::EPERM);
  383. }
  384. return Ok(());
  385. }
  386. /// @brief 判断当前文件是否可写
  387. #[inline]
  388. pub fn writeable(&self) -> Result<(), SystemError> {
  389. // 暂时认为只要不是read only, 就可写
  390. if *self.mode.read() == FileMode::O_RDONLY {
  391. return Err(SystemError::EPERM);
  392. }
  393. return Ok(());
  394. }
  395. /// @biref 充填dirent结构体
  396. /// @return 返回dirent结构体的大小
  397. pub fn readdir(&self, dirent: &mut Dirent) -> Result<u64, SystemError> {
  398. let inode: &Arc<dyn IndexNode> = &self.inode;
  399. let mut readdir_subdirs_name = self.readdir_subdirs_name.lock();
  400. let offset = self.offset.load(Ordering::SeqCst);
  401. // 如果偏移量为0
  402. if offset == 0 {
  403. // 通过list更新readdir_subdirs_name
  404. *readdir_subdirs_name = inode.list()?;
  405. readdir_subdirs_name.sort();
  406. }
  407. // debug!("sub_entries={sub_entries:?}");
  408. // 已经读到末尾
  409. if offset == readdir_subdirs_name.len() {
  410. self.offset.store(0, Ordering::SeqCst);
  411. return Ok(0);
  412. }
  413. let name = &readdir_subdirs_name[offset];
  414. let sub_inode: Arc<dyn IndexNode> = match inode.find(name) {
  415. Ok(i) => i,
  416. Err(e) => {
  417. error!(
  418. "Readdir error: Failed to find sub inode:{name:?}, file={self:?}, error={e:?}"
  419. );
  420. return Err(e);
  421. }
  422. };
  423. let name_bytes: &[u8] = name.as_bytes();
  424. // 根据posix的规定,dirent中的d_name是一个不定长的数组,因此需要unsafe来拷贝数据
  425. unsafe {
  426. let ptr = &mut dirent.d_name as *mut u8;
  427. let buf: &mut [u8] =
  428. ::core::slice::from_raw_parts_mut::<'static, u8>(ptr, name_bytes.len() + 1);
  429. buf[0..name_bytes.len()].copy_from_slice(name_bytes);
  430. buf[name_bytes.len()] = 0;
  431. }
  432. self.offset.fetch_add(1, Ordering::SeqCst);
  433. dirent.d_ino = sub_inode.metadata().unwrap().inode_id.into() as u64;
  434. dirent.d_type = sub_inode.metadata().unwrap().file_type.get_file_type_num() as u8;
  435. // 计算dirent结构体的大小
  436. let size = (name_bytes.len() + ::core::mem::size_of::<Dirent>()
  437. - ::core::mem::size_of_val(&dirent.d_name)) as u64;
  438. dirent.d_reclen = size as u16;
  439. dirent.d_off += dirent.d_reclen as i64;
  440. return Ok(size);
  441. }
  442. pub fn inode(&self) -> Arc<dyn IndexNode> {
  443. return self.inode.clone();
  444. }
  445. /// @brief 尝试克隆一个文件
  446. ///
  447. /// @return Option<File> 克隆后的文件结构体。如果克隆失败,返回None
  448. pub fn try_clone(&self) -> Option<File> {
  449. let res = Self {
  450. inode: self.inode.clone(),
  451. offset: AtomicUsize::new(self.offset.load(Ordering::SeqCst)),
  452. mode: RwLock::new(self.mode()),
  453. file_type: self.file_type,
  454. readdir_subdirs_name: SpinLock::new(self.readdir_subdirs_name.lock().clone()),
  455. private_data: SpinLock::new(self.private_data.lock().clone()),
  456. cred: self.cred.clone(),
  457. };
  458. // 调用inode的open方法,让inode知道有新的文件打开了这个inode
  459. if self
  460. .inode
  461. .open(res.private_data.lock(), &res.mode())
  462. .is_err()
  463. {
  464. return None;
  465. }
  466. return Some(res);
  467. }
  468. /// @brief 获取文件的类型
  469. #[inline]
  470. pub fn file_type(&self) -> FileType {
  471. return self.file_type;
  472. }
  473. /// @brief 获取文件的打开模式
  474. #[inline]
  475. pub fn mode(&self) -> FileMode {
  476. return *self.mode.read();
  477. }
  478. /// 获取文件是否在execve时关闭
  479. #[inline]
  480. pub fn close_on_exec(&self) -> bool {
  481. return self.mode().contains(FileMode::O_CLOEXEC);
  482. }
  483. /// 设置文件是否在execve时关闭
  484. #[inline]
  485. pub fn set_close_on_exec(&self, close_on_exec: bool) {
  486. let mut mode_guard = self.mode.write();
  487. if close_on_exec {
  488. mode_guard.insert(FileMode::O_CLOEXEC);
  489. } else {
  490. mode_guard.remove(FileMode::O_CLOEXEC);
  491. }
  492. }
  493. pub fn set_mode(&self, mode: FileMode) -> Result<(), SystemError> {
  494. // todo: 是否需要调用inode的open方法,以更新private data(假如它与mode有关的话)?
  495. // 也许需要加个更好的设计,让inode知晓文件的打开模式发生了变化,让它自己决定是否需要更新private data
  496. // 直接修改文件的打开模式
  497. *self.mode.write() = mode;
  498. self.private_data.lock().update_mode(mode);
  499. return Ok(());
  500. }
  501. /// @brief 重新设置文件的大小
  502. ///
  503. /// 如果文件大小增加,则文件内容不变,但是文件的空洞部分会被填充为0
  504. /// 如果文件大小减小,则文件内容会被截断
  505. ///
  506. /// @return 成功:Ok()
  507. /// 失败:Err(错误码)
  508. pub fn ftruncate(&self, len: usize) -> Result<(), SystemError> {
  509. // 如果文件不可写,返回错误
  510. self.writeable()?;
  511. // 调用inode的truncate方法
  512. self.inode.resize(len)?;
  513. return Ok(());
  514. }
  515. /// ## 向该文件添加一个EPollItem对象
  516. ///
  517. /// 在文件状态发生变化时,需要向epoll通知
  518. pub fn add_epoll(&self, epitem: Arc<EPollItem>) -> Result<(), SystemError> {
  519. match self.file_type {
  520. FileType::Socket => {
  521. let inode = self.inode.downcast_ref::<SocketInode>().unwrap();
  522. let mut socket = inode.inner();
  523. return socket.add_epoll(epitem);
  524. }
  525. FileType::Pipe => {
  526. let inode = self.inode.downcast_ref::<LockedPipeInode>().unwrap();
  527. return inode.inner().lock().add_epoll(epitem);
  528. }
  529. _ => {
  530. let r = self.inode.kernel_ioctl(epitem, &self.private_data.lock());
  531. if r.is_err() {
  532. return Err(SystemError::ENOSYS);
  533. }
  534. Ok(())
  535. }
  536. }
  537. }
  538. /// ## 删除一个绑定的epoll
  539. pub fn remove_epoll(&self, epoll: &Weak<SpinLock<EventPoll>>) -> Result<(), SystemError> {
  540. match self.file_type {
  541. FileType::Socket => {
  542. let inode = self.inode.downcast_ref::<SocketInode>().unwrap();
  543. let mut socket = inode.inner();
  544. socket.remove_epoll(epoll)
  545. }
  546. FileType::Pipe => {
  547. let inode = self.inode.downcast_ref::<LockedPipeInode>().unwrap();
  548. inode.inner().lock().remove_epoll(epoll)
  549. }
  550. _ => {
  551. let inode = self.inode.downcast_ref::<EventFdInode>();
  552. if let Some(inode) = inode {
  553. return inode.remove_epoll(epoll);
  554. }
  555. let inode = self
  556. .inode
  557. .downcast_ref::<PerfEventInode>()
  558. .ok_or(SystemError::ENOSYS)?;
  559. return inode.remove_epoll(epoll);
  560. }
  561. }
  562. }
  563. pub fn poll(&self) -> Result<usize, SystemError> {
  564. self.inode.poll(&self.private_data.lock())
  565. }
  566. }
  567. impl Drop for File {
  568. fn drop(&mut self) {
  569. let r: Result<(), SystemError> = self.inode.close(self.private_data.lock());
  570. // 打印错误信息
  571. if r.is_err() {
  572. error!(
  573. "pid: {:?} failed to close file: {:?}, errno={:?}",
  574. ProcessManager::current_pcb().pid(),
  575. self,
  576. r.as_ref().unwrap_err()
  577. );
  578. }
  579. }
  580. }
  581. /// @brief pcb里面的文件描述符数组
  582. #[derive(Debug)]
  583. pub struct FileDescriptorVec {
  584. /// 当前进程打开的文件描述符
  585. fds: Vec<Option<Arc<File>>>,
  586. }
  587. impl Default for FileDescriptorVec {
  588. fn default() -> Self {
  589. Self::new()
  590. }
  591. }
  592. impl FileDescriptorVec {
  593. pub const PROCESS_MAX_FD: usize = 1024;
  594. #[inline(never)]
  595. pub fn new() -> FileDescriptorVec {
  596. let mut data = Vec::with_capacity(FileDescriptorVec::PROCESS_MAX_FD);
  597. data.resize(FileDescriptorVec::PROCESS_MAX_FD, None);
  598. // 初始化文件描述符数组结构体
  599. return FileDescriptorVec { fds: data };
  600. }
  601. /// @brief 克隆一个文件描述符数组
  602. ///
  603. /// @return FileDescriptorVec 克隆后的文件描述符数组
  604. pub fn clone(&self) -> FileDescriptorVec {
  605. let mut res = FileDescriptorVec::new();
  606. for i in 0..FileDescriptorVec::PROCESS_MAX_FD {
  607. if let Some(file) = &self.fds[i] {
  608. if let Some(file) = file.try_clone() {
  609. res.fds[i] = Some(Arc::new(file));
  610. }
  611. }
  612. }
  613. return res;
  614. }
  615. /// 返回 `已经打开的` 文件描述符的数量
  616. pub fn fd_open_count(&self) -> usize {
  617. let mut size = 0;
  618. for fd in &self.fds {
  619. if fd.is_some() {
  620. size += 1;
  621. }
  622. }
  623. return size;
  624. }
  625. /// @brief 判断文件描述符序号是否合法
  626. ///
  627. /// @return true 合法
  628. ///
  629. /// @return false 不合法
  630. #[inline]
  631. pub fn validate_fd(fd: i32) -> bool {
  632. return !(fd < 0 || fd as usize > FileDescriptorVec::PROCESS_MAX_FD);
  633. }
  634. /// 申请文件描述符,并把文件对象存入其中。
  635. ///
  636. /// ## 参数
  637. ///
  638. /// - `file` 要存放的文件对象
  639. /// - `fd` 如果为Some(i32),表示指定要申请这个文件描述符,如果这个文件描述符已经被使用,那么返回EBADF
  640. ///
  641. /// ## 返回值
  642. ///
  643. /// - `Ok(i32)` 申请成功,返回申请到的文件描述符
  644. /// - `Err(SystemError)` 申请失败,返回错误码,并且,file对象将被drop掉
  645. pub fn alloc_fd(&mut self, file: File, fd: Option<i32>) -> Result<i32, SystemError> {
  646. if let Some(new_fd) = fd {
  647. let x = &mut self.fds[new_fd as usize];
  648. if x.is_none() {
  649. *x = Some(Arc::new(file));
  650. return Ok(new_fd);
  651. } else {
  652. return Err(SystemError::EBADF);
  653. }
  654. } else {
  655. // 没有指定要申请的文件描述符编号
  656. for i in 0..FileDescriptorVec::PROCESS_MAX_FD {
  657. if self.fds[i].is_none() {
  658. self.fds[i] = Some(Arc::new(file));
  659. return Ok(i as i32);
  660. }
  661. }
  662. return Err(SystemError::EMFILE);
  663. }
  664. }
  665. /// 根据文件描述符序号,获取文件结构体的Arc指针
  666. ///
  667. /// ## 参数
  668. ///
  669. /// - `fd` 文件描述符序号
  670. pub fn get_file_by_fd(&self, fd: i32) -> Option<Arc<File>> {
  671. if !FileDescriptorVec::validate_fd(fd) {
  672. return None;
  673. }
  674. self.fds[fd as usize].clone()
  675. }
  676. /// 释放文件描述符,同时关闭文件。
  677. ///
  678. /// ## 参数
  679. ///
  680. /// - `fd` 文件描述符序号
  681. pub fn drop_fd(&mut self, fd: i32) -> Result<Arc<File>, SystemError> {
  682. self.get_file_by_fd(fd).ok_or(SystemError::EBADF)?;
  683. // 把文件描述符数组对应位置设置为空
  684. let file = self.fds[fd as usize].take().unwrap();
  685. return Ok(file);
  686. }
  687. #[allow(dead_code)]
  688. pub fn iter(&self) -> FileDescriptorIterator {
  689. return FileDescriptorIterator::new(self);
  690. }
  691. pub fn close_on_exec(&mut self) {
  692. for i in 0..FileDescriptorVec::PROCESS_MAX_FD {
  693. if let Some(file) = &self.fds[i] {
  694. let to_drop = file.close_on_exec();
  695. if to_drop {
  696. if let Err(r) = self.drop_fd(i as i32) {
  697. error!(
  698. "Failed to close file: pid = {:?}, fd = {}, error = {:?}",
  699. ProcessManager::current_pcb().pid(),
  700. i,
  701. r
  702. );
  703. }
  704. }
  705. }
  706. }
  707. }
  708. }
  709. #[derive(Debug)]
  710. pub struct FileDescriptorIterator<'a> {
  711. fds: &'a FileDescriptorVec,
  712. index: usize,
  713. }
  714. impl<'a> FileDescriptorIterator<'a> {
  715. pub fn new(fds: &'a FileDescriptorVec) -> Self {
  716. return Self { fds, index: 0 };
  717. }
  718. }
  719. impl Iterator for FileDescriptorIterator<'_> {
  720. type Item = (i32, Arc<File>);
  721. fn next(&mut self) -> Option<Self::Item> {
  722. while self.index < FileDescriptorVec::PROCESS_MAX_FD {
  723. let fd = self.index as i32;
  724. self.index += 1;
  725. if let Some(file) = self.fds.get_file_by_fd(fd) {
  726. return Some((fd, file));
  727. }
  728. }
  729. return None;
  730. }
  731. }