mod.rs 24 KB

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  1. use core::intrinsics::size_of;
  2. use alloc::{
  3. borrow::ToOwned,
  4. collections::BTreeMap,
  5. format,
  6. string::String,
  7. sync::{Arc, Weak},
  8. vec::Vec,
  9. };
  10. use crate::{
  11. arch::mm::LockedFrameAllocator,
  12. filesystem::vfs::{
  13. core::{generate_inode_id, ROOT_INODE},
  14. FileType,
  15. },
  16. kerror, kinfo,
  17. libs::{
  18. once::Once,
  19. spinlock::{SpinLock, SpinLockGuard},
  20. },
  21. process::{Pid, ProcessManager},
  22. syscall::SystemError,
  23. time::TimeSpec,
  24. };
  25. use super::vfs::{
  26. file::{FileMode, FilePrivateData},
  27. syscall::ModeType,
  28. FileSystem, FsInfo, IndexNode, InodeId, Metadata, PollStatus,
  29. };
  30. /// @brief 进程文件类型
  31. /// @usage 用于定义进程文件夹下的各类文件类型
  32. #[derive(Debug)]
  33. #[repr(u8)]
  34. pub enum ProcFileType {
  35. ///展示进程状态信息
  36. ProcStatus = 0,
  37. /// meminfo
  38. ProcMeminfo = 1,
  39. //todo: 其他文件类型
  40. ///默认文件类型
  41. Default,
  42. }
  43. impl From<u8> for ProcFileType {
  44. fn from(value: u8) -> Self {
  45. match value {
  46. 0 => ProcFileType::ProcStatus,
  47. 1 => ProcFileType::ProcMeminfo,
  48. _ => ProcFileType::Default,
  49. }
  50. }
  51. }
  52. /// @brief 节点私有信息结构体
  53. /// @usage 用于传入各类文件所需的信息
  54. #[derive(Debug)]
  55. pub struct InodeInfo {
  56. ///进程的pid
  57. pid: Pid,
  58. ///文件类型
  59. ftype: ProcFileType,
  60. //其他需要传入的信息在此定义
  61. }
  62. /// @brief procfs的inode名称的最大长度
  63. const PROCFS_MAX_NAMELEN: usize = 64;
  64. /// @brief procfs文件系统的Inode结构体
  65. #[derive(Debug)]
  66. pub struct LockedProcFSInode(SpinLock<ProcFSInode>);
  67. /// @brief procfs文件系统结构体
  68. #[derive(Debug)]
  69. pub struct ProcFS {
  70. /// procfs的root inode
  71. root_inode: Arc<LockedProcFSInode>,
  72. }
  73. #[derive(Debug, Clone)]
  74. pub struct ProcfsFilePrivateData {
  75. data: Vec<u8>,
  76. }
  77. impl ProcfsFilePrivateData {
  78. pub fn new() -> Self {
  79. return ProcfsFilePrivateData { data: Vec::new() };
  80. }
  81. }
  82. /// @brief procfs文件系统的Inode结构体(不包含锁)
  83. #[derive(Debug)]
  84. pub struct ProcFSInode {
  85. /// 指向父Inode的弱引用
  86. parent: Weak<LockedProcFSInode>,
  87. /// 指向自身的弱引用
  88. self_ref: Weak<LockedProcFSInode>,
  89. /// 子Inode的B树
  90. children: BTreeMap<String, Arc<LockedProcFSInode>>,
  91. /// 当前inode的数据部分
  92. data: Vec<u8>,
  93. /// 当前inode的元数据
  94. metadata: Metadata,
  95. /// 指向inode所在的文件系统对象的指针
  96. fs: Weak<ProcFS>,
  97. /// 储存私有信息
  98. fdata: InodeInfo,
  99. }
  100. /// 对ProcFSInode实现获取各类文件信息的函数
  101. impl ProcFSInode {
  102. /// @brief 去除Vec中所有的\0,并在结尾添加\0
  103. #[inline]
  104. fn trim_string(&self, data: &mut Vec<u8>) {
  105. data.drain_filter(|x: &mut u8| *x == 0);
  106. data.push(0);
  107. }
  108. // todo:其他数据获取函数实现
  109. /// @brief 打开status文件
  110. ///
  111. fn open_status(&self, pdata: &mut ProcfsFilePrivateData) -> Result<i64, SystemError> {
  112. // 获取该pid对应的pcb结构体
  113. let pid = self.fdata.pid;
  114. let pcb = ProcessManager::find(pid);
  115. let pcb = if pcb.is_none() {
  116. kerror!(
  117. "ProcFS: Cannot find pcb for pid {:?} when opening its 'status' file.",
  118. pid
  119. );
  120. return Err(SystemError::ESRCH);
  121. } else {
  122. pcb.unwrap()
  123. };
  124. // 传入数据
  125. let pdata: &mut Vec<u8> = &mut pdata.data;
  126. pdata.append(
  127. &mut format!("Name:\t{}", pcb.basic().name())
  128. .as_bytes()
  129. .to_owned(),
  130. );
  131. let sched_info_guard = pcb.sched_info();
  132. let state = sched_info_guard.state();
  133. let cpu_id = sched_info_guard
  134. .on_cpu()
  135. .map(|cpu| cpu as i32)
  136. .unwrap_or(-1);
  137. let priority = sched_info_guard.priority();
  138. let vrtime = sched_info_guard.virtual_runtime();
  139. drop(sched_info_guard);
  140. pdata.append(&mut format!("\nState:\t{:?}", state).as_bytes().to_owned());
  141. pdata.append(
  142. &mut format!("\nPid:\t{}", pcb.pid().into())
  143. .as_bytes()
  144. .to_owned(),
  145. );
  146. pdata.append(
  147. &mut format!("\nPpid:\t{}", pcb.basic().ppid().into())
  148. .as_bytes()
  149. .to_owned(),
  150. );
  151. pdata.append(&mut format!("\ncpu_id:\t{}", cpu_id).as_bytes().to_owned());
  152. pdata.append(
  153. &mut format!("\npriority:\t{}", priority.data())
  154. .as_bytes()
  155. .to_owned(),
  156. );
  157. pdata.append(
  158. &mut format!("\npreempt:\t{}", pcb.preempt_count())
  159. .as_bytes()
  160. .to_owned(),
  161. );
  162. pdata.append(&mut format!("\nvrtime:\t{}", vrtime).as_bytes().to_owned());
  163. let binding = pcb.basic().user_vm().unwrap();
  164. let address_space_guard = binding.read();
  165. // todo: 当前进程运行过程中占用内存的峰值
  166. let hiwater_vm: u64 = 0;
  167. // 进程代码段的大小
  168. let text = (address_space_guard.end_code - address_space_guard.start_code) / 1024;
  169. // 进程数据段的大小
  170. let data = (address_space_guard.end_data - address_space_guard.start_data) / 1024;
  171. drop(address_space_guard);
  172. pdata.append(
  173. &mut format!("\nVmPeak:\t{} kB", hiwater_vm)
  174. .as_bytes()
  175. .to_owned(),
  176. );
  177. pdata.append(&mut format!("\nVmData:\t{} kB", data).as_bytes().to_owned());
  178. pdata.append(&mut format!("\nVmExe:\t{} kB", text).as_bytes().to_owned());
  179. pdata.append(
  180. &mut format!("\nflags: {:?}\n", pcb.flags().clone())
  181. .as_bytes()
  182. .to_owned(),
  183. );
  184. // 去除多余的\0
  185. self.trim_string(pdata);
  186. return Ok((pdata.len() * size_of::<u8>()) as i64);
  187. }
  188. /// 打开 meminfo 文件
  189. fn open_meminfo(&self, pdata: &mut ProcfsFilePrivateData) -> Result<i64, SystemError> {
  190. // 获取内存信息
  191. let usage = LockedFrameAllocator.get_usage();
  192. // 传入数据
  193. let data: &mut Vec<u8> = &mut pdata.data;
  194. data.append(
  195. &mut format!("MemTotal:\t{} kB\n", usage.total().bytes() >> 10)
  196. .as_bytes()
  197. .to_owned(),
  198. );
  199. data.append(
  200. &mut format!("MemFree:\t{} kB\n", usage.free().bytes() >> 10)
  201. .as_bytes()
  202. .to_owned(),
  203. );
  204. // 去除多余的\0
  205. self.trim_string(data);
  206. return Ok((data.len() * size_of::<u8>()) as i64);
  207. }
  208. /// proc文件系统读取函数
  209. fn proc_read(
  210. &self,
  211. offset: usize,
  212. len: usize,
  213. buf: &mut [u8],
  214. _pdata: &mut ProcfsFilePrivateData,
  215. ) -> Result<usize, SystemError> {
  216. let start = _pdata.data.len().min(offset);
  217. let end = _pdata.data.len().min(offset + len);
  218. // buffer空间不足
  219. if buf.len() < (end - start) {
  220. return Err(SystemError::ENOBUFS);
  221. }
  222. // 拷贝数据
  223. let src = &_pdata.data[start..end];
  224. buf[0..src.len()].copy_from_slice(src);
  225. return Ok(src.len());
  226. }
  227. }
  228. impl FileSystem for ProcFS {
  229. fn root_inode(&self) -> Arc<dyn super::vfs::IndexNode> {
  230. return self.root_inode.clone();
  231. }
  232. fn info(&self) -> FsInfo {
  233. return FsInfo {
  234. blk_dev_id: 0,
  235. max_name_len: PROCFS_MAX_NAMELEN,
  236. };
  237. }
  238. fn as_any_ref(&self) -> &dyn core::any::Any {
  239. self
  240. }
  241. }
  242. impl ProcFS {
  243. pub fn new() -> Arc<Self> {
  244. // 初始化root inode
  245. let root: Arc<LockedProcFSInode> =
  246. Arc::new(LockedProcFSInode(SpinLock::new(ProcFSInode {
  247. parent: Weak::default(),
  248. self_ref: Weak::default(),
  249. children: BTreeMap::new(),
  250. data: Vec::new(),
  251. metadata: Metadata {
  252. dev_id: 0,
  253. inode_id: generate_inode_id(),
  254. size: 0,
  255. blk_size: 0,
  256. blocks: 0,
  257. atime: TimeSpec::default(),
  258. mtime: TimeSpec::default(),
  259. ctime: TimeSpec::default(),
  260. file_type: FileType::Dir,
  261. mode: ModeType::from_bits_truncate(0o555),
  262. nlinks: 1,
  263. uid: 0,
  264. gid: 0,
  265. raw_dev: 0,
  266. },
  267. fs: Weak::default(),
  268. fdata: InodeInfo {
  269. pid: Pid::new(0),
  270. ftype: ProcFileType::Default,
  271. },
  272. })));
  273. let result: Arc<ProcFS> = Arc::new(ProcFS { root_inode: root });
  274. // 对root inode加锁,并继续完成初始化工作
  275. let mut root_guard: SpinLockGuard<ProcFSInode> = result.root_inode.0.lock();
  276. root_guard.parent = Arc::downgrade(&result.root_inode);
  277. root_guard.self_ref = Arc::downgrade(&result.root_inode);
  278. root_guard.fs = Arc::downgrade(&result);
  279. // 释放锁
  280. drop(root_guard);
  281. // 创建meminfo文件
  282. let inode = result.root_inode();
  283. let binding = inode.create(
  284. "meminfo",
  285. FileType::File,
  286. ModeType::from_bits_truncate(0o444),
  287. );
  288. if let Ok(meminfo) = binding {
  289. let meminfo_file = meminfo
  290. .as_any_ref()
  291. .downcast_ref::<LockedProcFSInode>()
  292. .unwrap();
  293. meminfo_file.0.lock().fdata.pid = Pid::new(0);
  294. meminfo_file.0.lock().fdata.ftype = ProcFileType::ProcMeminfo;
  295. } else {
  296. panic!("create meminfo error");
  297. }
  298. return result;
  299. }
  300. /// @brief 进程注册函数
  301. /// @usage 在进程中调用并创建进程对应文件
  302. pub fn register_pid(&self, pid: Pid) -> Result<(), SystemError> {
  303. // 获取当前inode
  304. let inode: Arc<dyn IndexNode> = self.root_inode();
  305. // 创建对应进程文件夹
  306. let pid_dir: Arc<dyn IndexNode> = inode.create(
  307. &pid.to_string(),
  308. FileType::Dir,
  309. ModeType::from_bits_truncate(0o555),
  310. )?;
  311. // 创建相关文件
  312. // status文件
  313. let binding: Arc<dyn IndexNode> = pid_dir.create(
  314. "status",
  315. FileType::File,
  316. ModeType::from_bits_truncate(0o444),
  317. )?;
  318. let status_file: &LockedProcFSInode = binding
  319. .as_any_ref()
  320. .downcast_ref::<LockedProcFSInode>()
  321. .unwrap();
  322. status_file.0.lock().fdata.pid = pid;
  323. status_file.0.lock().fdata.ftype = ProcFileType::ProcStatus;
  324. //todo: 创建其他文件
  325. return Ok(());
  326. }
  327. /// @brief 解除进程注册
  328. ///
  329. pub fn unregister_pid(&self, pid: Pid) -> Result<(), SystemError> {
  330. // 获取当前inode
  331. let proc: Arc<dyn IndexNode> = self.root_inode();
  332. // 获取进程文件夹
  333. let pid_dir: Arc<dyn IndexNode> = proc.find(&pid.to_string())?;
  334. // 删除进程文件夹下文件
  335. pid_dir.unlink("status")?;
  336. // 查看进程文件是否还存在
  337. // let pf= pid_dir.find("status").expect("Cannot find status");
  338. // 删除进程文件夹
  339. proc.unlink(&pid.to_string())?;
  340. return Ok(());
  341. }
  342. }
  343. impl IndexNode for LockedProcFSInode {
  344. fn open(&self, data: &mut FilePrivateData, _mode: &FileMode) -> Result<(), SystemError> {
  345. // 加锁
  346. let mut inode: SpinLockGuard<ProcFSInode> = self.0.lock();
  347. // 如果inode类型为文件夹,则直接返回成功
  348. if let FileType::Dir = inode.metadata.file_type {
  349. return Ok(());
  350. }
  351. let mut private_data = ProcfsFilePrivateData::new();
  352. // 根据文件类型获取相应数据
  353. let file_size = match inode.fdata.ftype {
  354. ProcFileType::ProcStatus => inode.open_status(&mut private_data)?,
  355. ProcFileType::ProcMeminfo => inode.open_meminfo(&mut private_data)?,
  356. _ => {
  357. todo!()
  358. }
  359. };
  360. *data = FilePrivateData::Procfs(private_data);
  361. // 更新metadata里面的文件大小数值
  362. inode.metadata.size = file_size;
  363. return Ok(());
  364. }
  365. fn close(&self, data: &mut FilePrivateData) -> Result<(), SystemError> {
  366. let guard: SpinLockGuard<ProcFSInode> = self.0.lock();
  367. // 如果inode类型为文件夹,则直接返回成功
  368. if let FileType::Dir = guard.metadata.file_type {
  369. return Ok(());
  370. }
  371. // 获取数据信息
  372. let private_data = match data {
  373. FilePrivateData::Procfs(p) => p,
  374. _ => {
  375. panic!("ProcFS: FilePrivateData mismatch!");
  376. }
  377. };
  378. // 释放资源
  379. drop(private_data);
  380. return Ok(());
  381. }
  382. fn read_at(
  383. &self,
  384. offset: usize,
  385. len: usize,
  386. buf: &mut [u8],
  387. data: &mut FilePrivateData,
  388. ) -> Result<usize, SystemError> {
  389. if buf.len() < len {
  390. return Err(SystemError::EINVAL);
  391. }
  392. // 加锁
  393. let inode: SpinLockGuard<ProcFSInode> = self.0.lock();
  394. // 检查当前inode是否为一个文件夹,如果是的话,就返回错误
  395. if inode.metadata.file_type == FileType::Dir {
  396. return Err(SystemError::EISDIR);
  397. }
  398. // 获取数据信息
  399. let private_data = match data {
  400. FilePrivateData::Procfs(p) => p,
  401. _ => {
  402. panic!("ProcFS: FilePrivateData mismatch!");
  403. }
  404. };
  405. // 根据文件类型读取相应数据
  406. match inode.fdata.ftype {
  407. ProcFileType::ProcStatus => return inode.proc_read(offset, len, buf, private_data),
  408. ProcFileType::ProcMeminfo => return inode.proc_read(offset, len, buf, private_data),
  409. ProcFileType::Default => (),
  410. };
  411. // 默认读取
  412. let start = inode.data.len().min(offset);
  413. let end = inode.data.len().min(offset + len);
  414. // buffer空间不足
  415. if buf.len() < (end - start) {
  416. return Err(SystemError::ENOBUFS);
  417. }
  418. // 拷贝数据
  419. let src = &inode.data[start..end];
  420. buf[0..src.len()].copy_from_slice(src);
  421. return Ok(src.len());
  422. }
  423. fn write_at(
  424. &self,
  425. _offset: usize,
  426. _len: usize,
  427. _buf: &[u8],
  428. _data: &mut FilePrivateData,
  429. ) -> Result<usize, SystemError> {
  430. return Err(SystemError::EOPNOTSUPP_OR_ENOTSUP);
  431. }
  432. fn poll(&self) -> Result<PollStatus, SystemError> {
  433. // 加锁
  434. let inode: SpinLockGuard<ProcFSInode> = self.0.lock();
  435. // 检查当前inode是否为一个文件夹,如果是的话,就返回错误
  436. if inode.metadata.file_type == FileType::Dir {
  437. return Err(SystemError::EISDIR);
  438. }
  439. return Ok(PollStatus::READ);
  440. }
  441. fn fs(&self) -> Arc<dyn FileSystem> {
  442. return self.0.lock().fs.upgrade().unwrap();
  443. }
  444. fn as_any_ref(&self) -> &dyn core::any::Any {
  445. self
  446. }
  447. fn metadata(&self) -> Result<Metadata, SystemError> {
  448. let inode = self.0.lock();
  449. let metadata = inode.metadata.clone();
  450. return Ok(metadata);
  451. }
  452. fn set_metadata(&self, metadata: &Metadata) -> Result<(), SystemError> {
  453. let mut inode = self.0.lock();
  454. inode.metadata.atime = metadata.atime;
  455. inode.metadata.mtime = metadata.mtime;
  456. inode.metadata.ctime = metadata.ctime;
  457. inode.metadata.mode = metadata.mode;
  458. inode.metadata.uid = metadata.uid;
  459. inode.metadata.gid = metadata.gid;
  460. return Ok(());
  461. }
  462. fn resize(&self, len: usize) -> Result<(), SystemError> {
  463. let mut inode = self.0.lock();
  464. if inode.metadata.file_type == FileType::File {
  465. inode.data.resize(len, 0);
  466. return Ok(());
  467. } else {
  468. return Err(SystemError::EINVAL);
  469. }
  470. }
  471. fn create_with_data(
  472. &self,
  473. name: &str,
  474. file_type: FileType,
  475. mode: ModeType,
  476. data: usize,
  477. ) -> Result<Arc<dyn IndexNode>, SystemError> {
  478. // 获取当前inode
  479. let mut inode = self.0.lock();
  480. // 如果当前inode不是文件夹,则返回
  481. if inode.metadata.file_type != FileType::Dir {
  482. return Err(SystemError::ENOTDIR);
  483. }
  484. // 如果有重名的,则返回
  485. if inode.children.contains_key(name) {
  486. return Err(SystemError::EEXIST);
  487. }
  488. // 创建inode
  489. let result: Arc<LockedProcFSInode> =
  490. Arc::new(LockedProcFSInode(SpinLock::new(ProcFSInode {
  491. parent: inode.self_ref.clone(),
  492. self_ref: Weak::default(),
  493. children: BTreeMap::new(),
  494. data: Vec::new(),
  495. metadata: Metadata {
  496. dev_id: 0,
  497. inode_id: generate_inode_id(),
  498. size: 0,
  499. blk_size: 0,
  500. blocks: 0,
  501. atime: TimeSpec::default(),
  502. mtime: TimeSpec::default(),
  503. ctime: TimeSpec::default(),
  504. file_type: file_type,
  505. mode: mode,
  506. nlinks: 1,
  507. uid: 0,
  508. gid: 0,
  509. raw_dev: data,
  510. },
  511. fs: inode.fs.clone(),
  512. fdata: InodeInfo {
  513. pid: Pid::new(0),
  514. ftype: ProcFileType::Default,
  515. },
  516. })));
  517. // 初始化inode的自引用的weak指针
  518. result.0.lock().self_ref = Arc::downgrade(&result);
  519. // 将子inode插入父inode的B树中
  520. inode.children.insert(String::from(name), result.clone());
  521. return Ok(result);
  522. }
  523. fn link(&self, name: &str, other: &Arc<dyn IndexNode>) -> Result<(), SystemError> {
  524. let other: &LockedProcFSInode = other
  525. .downcast_ref::<LockedProcFSInode>()
  526. .ok_or(SystemError::EPERM)?;
  527. let mut inode: SpinLockGuard<ProcFSInode> = self.0.lock();
  528. let mut other_locked: SpinLockGuard<ProcFSInode> = other.0.lock();
  529. // 如果当前inode不是文件夹,那么报错
  530. if inode.metadata.file_type != FileType::Dir {
  531. return Err(SystemError::ENOTDIR);
  532. }
  533. // 如果另一个inode是文件夹,那么也报错
  534. if other_locked.metadata.file_type == FileType::Dir {
  535. return Err(SystemError::EISDIR);
  536. }
  537. // 如果当前文件夹下已经有同名文件,也报错。
  538. if inode.children.contains_key(name) {
  539. return Err(SystemError::EEXIST);
  540. }
  541. inode
  542. .children
  543. .insert(String::from(name), other_locked.self_ref.upgrade().unwrap());
  544. // 增加硬链接计数
  545. other_locked.metadata.nlinks += 1;
  546. return Ok(());
  547. }
  548. fn unlink(&self, name: &str) -> Result<(), SystemError> {
  549. let mut inode: SpinLockGuard<ProcFSInode> = self.0.lock();
  550. // 如果当前inode不是目录,那么也没有子目录/文件的概念了,因此要求当前inode的类型是目录
  551. if inode.metadata.file_type != FileType::Dir {
  552. return Err(SystemError::ENOTDIR);
  553. }
  554. // 不允许删除当前文件夹,也不允许删除上一个目录
  555. if name == "." || name == ".." {
  556. return Err(SystemError::ENOTEMPTY);
  557. }
  558. // 获得要删除的文件的inode
  559. let to_delete = inode.children.get(name).ok_or(SystemError::ENOENT)?;
  560. // 减少硬链接计数
  561. to_delete.0.lock().metadata.nlinks -= 1;
  562. // 在当前目录中删除这个子目录项
  563. inode.children.remove(name);
  564. return Ok(());
  565. }
  566. fn move_(
  567. &self,
  568. _old_name: &str,
  569. _target: &Arc<dyn IndexNode>,
  570. _new_name: &str,
  571. ) -> Result<(), SystemError> {
  572. return Err(SystemError::EOPNOTSUPP_OR_ENOTSUP);
  573. }
  574. fn find(&self, name: &str) -> Result<Arc<dyn IndexNode>, SystemError> {
  575. let inode = self.0.lock();
  576. if inode.metadata.file_type != FileType::Dir {
  577. return Err(SystemError::ENOTDIR);
  578. }
  579. match name {
  580. "" | "." => {
  581. return Ok(inode.self_ref.upgrade().ok_or(SystemError::ENOENT)?);
  582. }
  583. ".." => {
  584. return Ok(inode.parent.upgrade().ok_or(SystemError::ENOENT)?);
  585. }
  586. name => {
  587. // 在子目录项中查找
  588. return Ok(inode.children.get(name).ok_or(SystemError::ENOENT)?.clone());
  589. }
  590. }
  591. }
  592. fn get_entry_name(&self, ino: InodeId) -> Result<String, SystemError> {
  593. let inode: SpinLockGuard<ProcFSInode> = self.0.lock();
  594. if inode.metadata.file_type != FileType::Dir {
  595. return Err(SystemError::ENOTDIR);
  596. }
  597. match ino.into() {
  598. 0 => {
  599. return Ok(String::from("."));
  600. }
  601. 1 => {
  602. return Ok(String::from(".."));
  603. }
  604. ino => {
  605. // 暴力遍历所有的children,判断inode id是否相同
  606. // TODO: 优化这里,这个地方性能很差!
  607. let mut key: Vec<String> = inode
  608. .children
  609. .keys()
  610. .filter(|k| {
  611. inode
  612. .children
  613. .get(*k)
  614. .unwrap()
  615. .0
  616. .lock()
  617. .metadata
  618. .inode_id
  619. .into()
  620. == ino
  621. })
  622. .cloned()
  623. .collect();
  624. match key.len() {
  625. 0=>{return Err(SystemError::ENOENT);}
  626. 1=>{return Ok(key.remove(0));}
  627. _ => panic!("Procfs get_entry_name: key.len()={key_len}>1, current inode_id={inode_id:?}, to find={to_find:?}", key_len=key.len(), inode_id = inode.metadata.inode_id, to_find=ino)
  628. }
  629. }
  630. }
  631. }
  632. fn list(&self) -> Result<Vec<String>, SystemError> {
  633. let info = self.metadata()?;
  634. if info.file_type != FileType::Dir {
  635. return Err(SystemError::ENOTDIR);
  636. }
  637. let mut keys: Vec<String> = Vec::new();
  638. keys.push(String::from("."));
  639. keys.push(String::from(".."));
  640. keys.append(&mut self.0.lock().children.keys().cloned().collect());
  641. return Ok(keys);
  642. }
  643. }
  644. /// @brief 向procfs注册进程
  645. pub fn procfs_register_pid(pid: Pid) -> Result<(), SystemError> {
  646. let procfs_inode = ROOT_INODE().find("proc")?;
  647. let procfs_inode = procfs_inode
  648. .downcast_ref::<LockedProcFSInode>()
  649. .expect("Failed to find procfs' root inode");
  650. let fs = procfs_inode.fs();
  651. let procfs: &ProcFS = fs.as_any_ref().downcast_ref::<ProcFS>().unwrap();
  652. // 调用注册函数
  653. procfs.register_pid(pid)?;
  654. return Ok(());
  655. }
  656. /// @brief 在ProcFS中,解除进程的注册
  657. pub fn procfs_unregister_pid(pid: Pid) -> Result<(), SystemError> {
  658. // 获取procfs实例
  659. let procfs_inode: Arc<dyn IndexNode> = ROOT_INODE().find("proc")?;
  660. let procfs_inode: &LockedProcFSInode = procfs_inode
  661. .downcast_ref::<LockedProcFSInode>()
  662. .expect("Failed to find procfs' root inode");
  663. let fs: Arc<dyn FileSystem> = procfs_inode.fs();
  664. let procfs: &ProcFS = fs.as_any_ref().downcast_ref::<ProcFS>().unwrap();
  665. // 调用解除注册函数
  666. return procfs.unregister_pid(pid);
  667. }
  668. pub fn procfs_init() -> Result<(), SystemError> {
  669. static INIT: Once = Once::new();
  670. let mut result = None;
  671. INIT.call_once(|| {
  672. kinfo!("Initializing ProcFS...");
  673. // 创建 procfs 实例
  674. let procfs: Arc<ProcFS> = ProcFS::new();
  675. // procfs 挂载
  676. let _t = ROOT_INODE()
  677. .find("proc")
  678. .expect("Cannot find /proc")
  679. .mount(procfs)
  680. .expect("Failed to mount proc");
  681. kinfo!("ProcFS mounted.");
  682. result = Some(Ok(()));
  683. });
  684. return result.unwrap();
  685. }