pipe.rs 13 KB

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  1. use crate::{
  2. arch::CurrentIrqArch,
  3. exception::InterruptArch,
  4. filesystem::vfs::{
  5. core::generate_inode_id, file::FileMode, syscall::ModeType, FilePrivateData, FileSystem,
  6. FileType, IndexNode, Metadata,
  7. },
  8. libs::{
  9. spinlock::{SpinLock, SpinLockGuard},
  10. wait_queue::WaitQueue,
  11. },
  12. net::event_poll::{EPollEventType, EPollItem, EventPoll},
  13. process::ProcessState,
  14. sched::{schedule, SchedMode},
  15. time::TimeSpec,
  16. };
  17. use alloc::{
  18. collections::LinkedList,
  19. sync::{Arc, Weak},
  20. };
  21. use system_error::SystemError;
  22. /// 我们设定pipe_buff的总大小为1024字节
  23. const PIPE_BUFF_SIZE: usize = 1024;
  24. #[derive(Debug, Clone)]
  25. pub struct PipeFsPrivateData {
  26. mode: FileMode,
  27. }
  28. impl PipeFsPrivateData {
  29. pub fn new(mode: FileMode) -> Self {
  30. return PipeFsPrivateData { mode };
  31. }
  32. pub fn set_mode(&mut self, mode: FileMode) {
  33. self.mode = mode;
  34. }
  35. }
  36. /// @brief 管道文件i节点(锁)
  37. #[derive(Debug)]
  38. pub struct LockedPipeInode {
  39. inner: SpinLock<InnerPipeInode>,
  40. read_wait_queue: WaitQueue,
  41. write_wait_queue: WaitQueue,
  42. }
  43. /// @brief 管道文件i节点(无锁)
  44. #[derive(Debug)]
  45. pub struct InnerPipeInode {
  46. self_ref: Weak<LockedPipeInode>,
  47. /// 管道内可读的数据数
  48. valid_cnt: i32,
  49. read_pos: i32,
  50. write_pos: i32,
  51. data: [u8; PIPE_BUFF_SIZE],
  52. /// INode 元数据
  53. metadata: Metadata,
  54. reader: u32,
  55. writer: u32,
  56. epitems: SpinLock<LinkedList<Arc<EPollItem>>>,
  57. }
  58. impl InnerPipeInode {
  59. pub fn poll(&self, private_data: &FilePrivateData) -> Result<usize, SystemError> {
  60. let mut events = EPollEventType::empty();
  61. let mode = if let FilePrivateData::Pipefs(PipeFsPrivateData { mode }) = private_data {
  62. mode
  63. } else {
  64. return Err(SystemError::EBADFD);
  65. };
  66. if mode.contains(FileMode::O_RDONLY) {
  67. if self.valid_cnt != 0 {
  68. // 有数据可读
  69. events.insert(EPollEventType::EPOLLIN & EPollEventType::EPOLLRDNORM);
  70. }
  71. // 没有写者
  72. if self.writer == 0 {
  73. events.insert(EPollEventType::EPOLLHUP)
  74. }
  75. }
  76. if mode.contains(FileMode::O_WRONLY) {
  77. // 管道内数据未满
  78. if self.valid_cnt as usize != PIPE_BUFF_SIZE {
  79. events.insert(EPollEventType::EPOLLIN & EPollEventType::EPOLLWRNORM);
  80. }
  81. // 没有读者
  82. if self.reader == 0 {
  83. events.insert(EPollEventType::EPOLLERR);
  84. }
  85. }
  86. Ok(events.bits() as usize)
  87. }
  88. pub fn add_epoll(&mut self, epitem: Arc<EPollItem>) -> Result<(), SystemError> {
  89. self.epitems.lock().push_back(epitem);
  90. Ok(())
  91. }
  92. }
  93. impl LockedPipeInode {
  94. pub fn new() -> Arc<Self> {
  95. let inner = InnerPipeInode {
  96. self_ref: Weak::default(),
  97. valid_cnt: 0,
  98. read_pos: 0,
  99. write_pos: 0,
  100. data: [0; PIPE_BUFF_SIZE],
  101. metadata: Metadata {
  102. dev_id: 0,
  103. inode_id: generate_inode_id(),
  104. size: PIPE_BUFF_SIZE as i64,
  105. blk_size: 0,
  106. blocks: 0,
  107. atime: TimeSpec::default(),
  108. mtime: TimeSpec::default(),
  109. ctime: TimeSpec::default(),
  110. file_type: FileType::Pipe,
  111. mode: ModeType::from_bits_truncate(0o666),
  112. nlinks: 1,
  113. uid: 0,
  114. gid: 0,
  115. raw_dev: Default::default(),
  116. },
  117. reader: 0,
  118. writer: 0,
  119. epitems: SpinLock::new(LinkedList::new()),
  120. };
  121. let result = Arc::new(Self {
  122. inner: SpinLock::new(inner),
  123. read_wait_queue: WaitQueue::default(),
  124. write_wait_queue: WaitQueue::default(),
  125. });
  126. let mut guard = result.inner.lock();
  127. guard.self_ref = Arc::downgrade(&result);
  128. // 释放锁
  129. drop(guard); //这一步其实不需要,只要离开作用域,guard生命周期结束,自会解锁
  130. return result;
  131. }
  132. pub fn inner(&self) -> &SpinLock<InnerPipeInode> {
  133. &self.inner
  134. }
  135. }
  136. impl IndexNode for LockedPipeInode {
  137. fn read_at(
  138. &self,
  139. _offset: usize,
  140. len: usize,
  141. buf: &mut [u8],
  142. data: SpinLockGuard<FilePrivateData>,
  143. ) -> Result<usize, SystemError> {
  144. // 获取mode
  145. let mode: FileMode;
  146. if let FilePrivateData::Pipefs(pdata) = &*data {
  147. mode = pdata.mode;
  148. } else {
  149. return Err(SystemError::EBADF);
  150. }
  151. if buf.len() < len {
  152. return Err(SystemError::EINVAL);
  153. }
  154. // 加锁
  155. let mut inode = self.inner.lock();
  156. // 如果管道里面没有数据,则唤醒写端,
  157. while inode.valid_cnt == 0 {
  158. // 如果当前管道写者数为0,则返回EOF
  159. if inode.writer == 0 {
  160. return Ok(0);
  161. }
  162. self.write_wait_queue
  163. .wakeup(Some(ProcessState::Blocked(true)));
  164. // 如果为非阻塞管道,直接返回错误
  165. if mode.contains(FileMode::O_NONBLOCK) {
  166. drop(inode);
  167. return Err(SystemError::EAGAIN_OR_EWOULDBLOCK);
  168. }
  169. // 否则在读等待队列中睡眠,并释放锁
  170. unsafe {
  171. let irq_guard = CurrentIrqArch::save_and_disable_irq();
  172. drop(inode);
  173. self.read_wait_queue.sleep_without_schedule();
  174. drop(irq_guard);
  175. }
  176. schedule(SchedMode::SM_NONE);
  177. inode = self.inner.lock();
  178. }
  179. let mut num = inode.valid_cnt as usize;
  180. //决定要输出的字节
  181. let start = inode.read_pos as usize;
  182. //如果读端希望读取的字节数大于有效字节数,则输出有效字节
  183. let mut end = (inode.valid_cnt as usize + inode.read_pos as usize) % PIPE_BUFF_SIZE;
  184. //如果读端希望读取的字节数少于有效字节数,则输出希望读取的字节
  185. if len < inode.valid_cnt as usize {
  186. end = (len + inode.read_pos as usize) % PIPE_BUFF_SIZE;
  187. num = len;
  188. }
  189. // 从管道拷贝数据到用户的缓冲区
  190. if end < start {
  191. buf[0..(PIPE_BUFF_SIZE - start)].copy_from_slice(&inode.data[start..PIPE_BUFF_SIZE]);
  192. buf[(PIPE_BUFF_SIZE - start)..num].copy_from_slice(&inode.data[0..end]);
  193. } else {
  194. buf[0..num].copy_from_slice(&inode.data[start..end]);
  195. }
  196. //更新读位置以及valid_cnt
  197. inode.read_pos = (inode.read_pos + num as i32) % PIPE_BUFF_SIZE as i32;
  198. inode.valid_cnt -= num as i32;
  199. // 读完以后如果未读完,则唤醒下一个读者
  200. if inode.valid_cnt > 0 {
  201. self.read_wait_queue
  202. .wakeup(Some(ProcessState::Blocked(true)));
  203. }
  204. //读完后解锁并唤醒等待在写等待队列中的进程
  205. self.write_wait_queue
  206. .wakeup(Some(ProcessState::Blocked(true)));
  207. let pollflag = EPollEventType::from_bits_truncate(inode.poll(&data)? as u32);
  208. // 唤醒epoll中等待的进程
  209. EventPoll::wakeup_epoll(&inode.epitems, pollflag)?;
  210. //返回读取的字节数
  211. return Ok(num);
  212. }
  213. fn open(
  214. &self,
  215. mut data: SpinLockGuard<FilePrivateData>,
  216. mode: &crate::filesystem::vfs::file::FileMode,
  217. ) -> Result<(), SystemError> {
  218. let mut guard = self.inner.lock();
  219. // 不能以读写方式打开管道
  220. if mode.contains(FileMode::O_RDWR) {
  221. return Err(SystemError::EACCES);
  222. }
  223. if mode.contains(FileMode::O_RDONLY) {
  224. guard.reader += 1;
  225. }
  226. if mode.contains(FileMode::O_WRONLY) {
  227. guard.writer += 1;
  228. }
  229. // 设置mode
  230. *data = FilePrivateData::Pipefs(PipeFsPrivateData { mode: *mode });
  231. return Ok(());
  232. }
  233. fn metadata(&self) -> Result<crate::filesystem::vfs::Metadata, SystemError> {
  234. let inode = self.inner.lock();
  235. let mut metadata = inode.metadata.clone();
  236. metadata.size = inode.data.len() as i64;
  237. return Ok(metadata);
  238. }
  239. fn close(&self, data: SpinLockGuard<FilePrivateData>) -> Result<(), SystemError> {
  240. let mode: FileMode;
  241. if let FilePrivateData::Pipefs(pipe_data) = &*data {
  242. mode = pipe_data.mode;
  243. } else {
  244. return Err(SystemError::EBADF);
  245. }
  246. let mut guard = self.inner.lock();
  247. // 写端关闭
  248. if mode.contains(FileMode::O_WRONLY) {
  249. assert!(guard.writer > 0);
  250. guard.writer -= 1;
  251. // 如果已经没有写端了,则唤醒读端
  252. if guard.writer == 0 {
  253. self.read_wait_queue
  254. .wakeup_all(Some(ProcessState::Blocked(true)));
  255. }
  256. }
  257. // 读端关闭
  258. if mode.contains(FileMode::O_RDONLY) {
  259. assert!(guard.reader > 0);
  260. guard.reader -= 1;
  261. // 如果已经没有写端了,则唤醒读端
  262. if guard.reader == 0 {
  263. self.write_wait_queue
  264. .wakeup_all(Some(ProcessState::Blocked(true)));
  265. }
  266. }
  267. return Ok(());
  268. }
  269. fn write_at(
  270. &self,
  271. _offset: usize,
  272. len: usize,
  273. buf: &[u8],
  274. data: SpinLockGuard<FilePrivateData>,
  275. ) -> Result<usize, SystemError> {
  276. // 获取mode
  277. let mode: FileMode;
  278. if let FilePrivateData::Pipefs(pdata) = &*data {
  279. mode = pdata.mode;
  280. } else {
  281. return Err(SystemError::EBADF);
  282. }
  283. if buf.len() < len || len > PIPE_BUFF_SIZE {
  284. return Err(SystemError::EINVAL);
  285. }
  286. // 加锁
  287. let mut inode = self.inner.lock();
  288. if inode.reader == 0 {
  289. // TODO: 如果已经没有读端存在了,则向写端进程发送SIGPIPE信号
  290. }
  291. // 如果管道空间不够
  292. while len + inode.valid_cnt as usize > PIPE_BUFF_SIZE {
  293. // 唤醒读端
  294. self.read_wait_queue
  295. .wakeup(Some(ProcessState::Blocked(true)));
  296. // 如果为非阻塞管道,直接返回错误
  297. if mode.contains(FileMode::O_NONBLOCK) {
  298. drop(inode);
  299. return Err(SystemError::ENOMEM);
  300. }
  301. // 解锁并睡眠
  302. unsafe {
  303. let irq_guard = CurrentIrqArch::save_and_disable_irq();
  304. drop(inode);
  305. self.write_wait_queue.sleep_without_schedule();
  306. drop(irq_guard);
  307. }
  308. schedule(SchedMode::SM_NONE);
  309. inode = self.inner.lock();
  310. }
  311. // 决定要输入的字节
  312. let start = inode.write_pos as usize;
  313. let end = (inode.write_pos as usize + len) % PIPE_BUFF_SIZE;
  314. // 从用户的缓冲区拷贝数据到管道
  315. if end < start {
  316. inode.data[start..PIPE_BUFF_SIZE].copy_from_slice(&buf[0..(PIPE_BUFF_SIZE - start)]);
  317. inode.data[0..end].copy_from_slice(&buf[(PIPE_BUFF_SIZE - start)..len]);
  318. } else {
  319. inode.data[start..end].copy_from_slice(&buf[0..len]);
  320. }
  321. // 更新写位置以及valid_cnt
  322. inode.write_pos = (inode.write_pos + len as i32) % PIPE_BUFF_SIZE as i32;
  323. inode.valid_cnt += len as i32;
  324. // 写完后还有位置,则唤醒下一个写者
  325. if (inode.valid_cnt as usize) < PIPE_BUFF_SIZE {
  326. self.write_wait_queue
  327. .wakeup(Some(ProcessState::Blocked(true)));
  328. }
  329. // 读完后解锁并唤醒等待在读等待队列中的进程
  330. self.read_wait_queue
  331. .wakeup(Some(ProcessState::Blocked(true)));
  332. let pollflag = EPollEventType::from_bits_truncate(inode.poll(&data)? as u32);
  333. // 唤醒epoll中等待的进程
  334. EventPoll::wakeup_epoll(&inode.epitems, pollflag)?;
  335. // 返回写入的字节数
  336. return Ok(len);
  337. }
  338. fn as_any_ref(&self) -> &dyn core::any::Any {
  339. self
  340. }
  341. fn get_entry_name_and_metadata(
  342. &self,
  343. ino: crate::filesystem::vfs::InodeId,
  344. ) -> Result<(alloc::string::String, crate::filesystem::vfs::Metadata), SystemError> {
  345. // 如果有条件,请在文件系统中使用高效的方式实现本接口,而不是依赖这个低效率的默认实现。
  346. let name = self.get_entry_name(ino)?;
  347. let entry = self.find(&name)?;
  348. return Ok((name, entry.metadata()?));
  349. }
  350. fn fs(&self) -> Arc<(dyn FileSystem)> {
  351. todo!()
  352. }
  353. fn list(&self) -> Result<alloc::vec::Vec<alloc::string::String>, SystemError> {
  354. return Err(SystemError::EOPNOTSUPP_OR_ENOTSUP);
  355. }
  356. fn poll(&self, private_data: &FilePrivateData) -> Result<usize, SystemError> {
  357. return self.inner.lock().poll(private_data);
  358. }
  359. }