inode.rs 9.7 KB

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  1. use super::{dentry::Dentry, s_isblk, s_ischr, vfs::Vfs, DevId};
  2. use crate::io::Stream;
  3. use crate::kernel::constants::{
  4. EINVAL, EISDIR, ENOTDIR, EPERM, STATX_ATIME, STATX_BLOCKS, STATX_CTIME, STATX_GID, STATX_INO,
  5. STATX_MODE, STATX_MTIME, STATX_NLINK, STATX_SIZE, STATX_TYPE, STATX_UID, S_IFDIR, S_IFMT,
  6. };
  7. use crate::kernel::timer::Instant;
  8. use crate::{io::Buffer, prelude::*};
  9. use alloc::sync::{Arc, Weak};
  10. use core::{
  11. mem::MaybeUninit,
  12. ops::ControlFlow,
  13. ptr::addr_of_mut,
  14. sync::atomic::{AtomicU32, AtomicU64, Ordering},
  15. };
  16. use eonix_runtime::task::Task;
  17. use eonix_sync::RwLock;
  18. use posix_types::namei::RenameFlags;
  19. use posix_types::stat::StatX;
  20. pub type Ino = u64;
  21. pub type AtomicIno = AtomicU64;
  22. #[allow(dead_code)]
  23. pub type ISize = u64;
  24. pub type AtomicISize = AtomicU64;
  25. #[allow(dead_code)]
  26. pub type Nlink = u64;
  27. pub type AtomicNlink = AtomicU64;
  28. #[allow(dead_code)]
  29. pub type Uid = u32;
  30. pub type AtomicUid = AtomicU32;
  31. #[allow(dead_code)]
  32. pub type Gid = u32;
  33. pub type AtomicGid = AtomicU32;
  34. pub type Mode = u32;
  35. pub type AtomicMode = AtomicU32;
  36. pub struct InodeData {
  37. pub ino: Ino,
  38. pub size: AtomicISize,
  39. pub nlink: AtomicNlink,
  40. pub uid: AtomicUid,
  41. pub gid: AtomicGid,
  42. pub mode: AtomicMode,
  43. pub atime: Spin<Instant>,
  44. pub ctime: Spin<Instant>,
  45. pub mtime: Spin<Instant>,
  46. pub rwsem: RwLock<()>,
  47. pub vfs: Weak<dyn Vfs>,
  48. }
  49. impl InodeData {
  50. pub const fn new(ino: Ino, vfs: Weak<dyn Vfs>) -> Self {
  51. Self {
  52. ino,
  53. vfs,
  54. atime: Spin::new(Instant::default()),
  55. ctime: Spin::new(Instant::default()),
  56. mtime: Spin::new(Instant::default()),
  57. rwsem: RwLock::new(()),
  58. size: AtomicU64::new(0),
  59. nlink: AtomicNlink::new(0),
  60. uid: AtomicUid::new(0),
  61. gid: AtomicGid::new(0),
  62. mode: AtomicMode::new(0),
  63. }
  64. }
  65. }
  66. #[allow(dead_code)]
  67. pub trait InodeInner:
  68. Send + Sync + core::ops::Deref<Target = InodeData> + core::ops::DerefMut
  69. {
  70. fn data(&self) -> &InodeData;
  71. fn data_mut(&mut self) -> &mut InodeData;
  72. }
  73. pub enum WriteOffset<'end> {
  74. Position(usize),
  75. End(&'end mut usize),
  76. }
  77. pub struct RenameData<'a, 'b> {
  78. pub old_dentry: &'a Arc<Dentry>,
  79. pub new_dentry: &'b Arc<Dentry>,
  80. pub new_parent: Arc<dyn Inode>,
  81. pub vfs: Arc<dyn Vfs>,
  82. pub is_exchange: bool,
  83. pub no_replace: bool,
  84. }
  85. #[allow(unused_variables)]
  86. pub trait Inode: Send + Sync + InodeInner + Any {
  87. fn is_dir(&self) -> bool {
  88. self.mode.load(Ordering::SeqCst) & S_IFDIR != 0
  89. }
  90. fn lookup(&self, dentry: &Arc<Dentry>) -> KResult<Option<Arc<dyn Inode>>> {
  91. Err(if !self.is_dir() { ENOTDIR } else { EPERM })
  92. }
  93. fn creat(&self, at: &Arc<Dentry>, mode: Mode) -> KResult<()> {
  94. Err(if !self.is_dir() { ENOTDIR } else { EPERM })
  95. }
  96. fn mkdir(&self, at: &Dentry, mode: Mode) -> KResult<()> {
  97. Err(if !self.is_dir() { ENOTDIR } else { EPERM })
  98. }
  99. fn mknod(&self, at: &Dentry, mode: Mode, dev: DevId) -> KResult<()> {
  100. Err(if !self.is_dir() { ENOTDIR } else { EPERM })
  101. }
  102. fn unlink(&self, at: &Arc<Dentry>) -> KResult<()> {
  103. Err(if !self.is_dir() { ENOTDIR } else { EPERM })
  104. }
  105. fn symlink(&self, at: &Arc<Dentry>, target: &[u8]) -> KResult<()> {
  106. Err(if !self.is_dir() { ENOTDIR } else { EPERM })
  107. }
  108. fn read(&self, buffer: &mut dyn Buffer, offset: usize) -> KResult<usize> {
  109. Err(if self.is_dir() { EISDIR } else { EINVAL })
  110. }
  111. fn write(&self, stream: &mut dyn Stream, offset: WriteOffset) -> KResult<usize> {
  112. Err(if self.is_dir() { EISDIR } else { EINVAL })
  113. }
  114. fn devid(&self) -> KResult<DevId> {
  115. Err(if self.is_dir() { EISDIR } else { EINVAL })
  116. }
  117. fn readlink(&self, buffer: &mut dyn Buffer) -> KResult<usize> {
  118. Err(if self.is_dir() { EISDIR } else { EINVAL })
  119. }
  120. fn truncate(&self, length: usize) -> KResult<()> {
  121. Err(if self.is_dir() { EISDIR } else { EPERM })
  122. }
  123. fn rename(&self, rename_data: RenameData) -> KResult<()> {
  124. Err(if !self.is_dir() { ENOTDIR } else { EPERM })
  125. }
  126. fn do_readdir(
  127. &self,
  128. offset: usize,
  129. callback: &mut dyn FnMut(&[u8], Ino) -> KResult<ControlFlow<(), ()>>,
  130. ) -> KResult<usize> {
  131. Err(if !self.is_dir() { ENOTDIR } else { EPERM })
  132. }
  133. fn chmod(&self, mode: Mode) -> KResult<()> {
  134. Err(EPERM)
  135. }
  136. fn chown(&self, uid: u32, gid: u32) -> KResult<()> {
  137. Err(EPERM)
  138. }
  139. fn statx(&self, stat: &mut StatX, mask: u32) -> KResult<()> {
  140. // Safety: ffi should have checked reference
  141. let vfs = self.vfs.upgrade().expect("Vfs is dropped");
  142. let size = self.size.load(Ordering::Relaxed);
  143. let mode = self.mode.load(Ordering::Relaxed);
  144. if mask & STATX_NLINK != 0 {
  145. stat.stx_nlink = self.nlink.load(Ordering::Acquire) as _;
  146. stat.stx_mask |= STATX_NLINK;
  147. }
  148. if mask & STATX_ATIME != 0 {
  149. let atime = *self.atime.lock();
  150. stat.stx_atime = atime.into();
  151. stat.stx_mask |= STATX_ATIME;
  152. }
  153. if mask & STATX_MTIME != 0 {
  154. let mtime = *self.mtime.lock();
  155. stat.stx_mtime = mtime.into();
  156. stat.stx_mask |= STATX_MTIME;
  157. }
  158. if mask & STATX_CTIME != 0 {
  159. let ctime = *self.ctime.lock();
  160. stat.stx_ctime = ctime.into();
  161. stat.stx_mask |= STATX_CTIME;
  162. }
  163. if mask & STATX_SIZE != 0 {
  164. stat.stx_size = self.size.load(Ordering::Relaxed) as _;
  165. stat.stx_mask |= STATX_SIZE;
  166. }
  167. stat.stx_mode = 0;
  168. if mask & STATX_MODE != 0 {
  169. stat.stx_mode |= (mode & !S_IFMT) as u16;
  170. stat.stx_mask |= STATX_MODE;
  171. }
  172. if mask & STATX_TYPE != 0 {
  173. stat.stx_mode |= (mode & S_IFMT) as u16;
  174. if s_isblk(mode) || s_ischr(mode) {
  175. let devid = self.devid();
  176. stat.stx_rdev_major = (devid? >> 8) & 0xff;
  177. stat.stx_rdev_minor = devid? & 0xff;
  178. }
  179. stat.stx_mask |= STATX_TYPE;
  180. }
  181. if mask & STATX_INO != 0 {
  182. stat.stx_ino = self.ino as _;
  183. stat.stx_mask |= STATX_INO;
  184. }
  185. if mask & STATX_BLOCKS != 0 {
  186. stat.stx_blocks = (size + 512 - 1) / 512;
  187. stat.stx_blksize = vfs.io_blksize() as _;
  188. stat.stx_mask |= STATX_BLOCKS;
  189. }
  190. if mask & STATX_UID != 0 {
  191. stat.stx_uid = self.uid.load(Ordering::Relaxed) as _;
  192. stat.stx_mask |= STATX_UID;
  193. }
  194. if mask & STATX_GID != 0 {
  195. stat.stx_gid = self.gid.load(Ordering::Relaxed) as _;
  196. stat.stx_mask |= STATX_GID;
  197. }
  198. let fsdev = vfs.fs_devid();
  199. stat.stx_dev_major = (fsdev >> 8) & 0xff;
  200. stat.stx_dev_minor = fsdev & 0xff;
  201. // TODO: support more attributes
  202. stat.stx_attributes_mask = 0;
  203. Ok(())
  204. }
  205. fn new_locked<F>(ino: Ino, vfs: Weak<dyn Vfs>, f: F) -> Arc<Self>
  206. where
  207. Self: Sized,
  208. F: FnOnce(*mut Self, &()),
  209. {
  210. let mut uninit = Arc::<Self>::new_uninit();
  211. let uninit_mut = Arc::get_mut(&mut uninit).unwrap();
  212. // Safety: `idata` is owned by `uninit`
  213. let idata = unsafe {
  214. addr_of_mut!(*(*uninit_mut.as_mut_ptr()).data_mut())
  215. .cast::<MaybeUninit<InodeData>>()
  216. .as_mut()
  217. .unwrap()
  218. };
  219. idata.write(InodeData::new(ino, vfs));
  220. f(
  221. uninit_mut.as_mut_ptr(),
  222. // SAFETY: `idata` is initialized and we will never move the lock.
  223. &Task::block_on(unsafe { idata.assume_init_ref() }.rwsem.read()),
  224. );
  225. // Safety: `uninit` is initialized
  226. unsafe { uninit.assume_init() }
  227. }
  228. }
  229. // TODO: define multiple inode structs a time
  230. macro_rules! define_struct_inode {
  231. ($v:vis struct $inode_t:ident;) => {
  232. $v struct $inode_t {
  233. /// Do not use this directly
  234. idata: $crate::kernel::vfs::inode::InodeData,
  235. }
  236. impl core::ops::Deref for $inode_t {
  237. type Target = $crate::kernel::vfs::inode::InodeData;
  238. fn deref(&self) -> &Self::Target {
  239. &self.idata
  240. }
  241. }
  242. impl core::ops::DerefMut for $inode_t {
  243. fn deref_mut(&mut self) -> &mut Self::Target {
  244. &mut self.idata
  245. }
  246. }
  247. impl $crate::kernel::vfs::inode::InodeInner for $inode_t {
  248. fn data(&self) -> &$crate::kernel::vfs::inode::InodeData {
  249. &self.idata
  250. }
  251. fn data_mut(&mut self) -> &mut $crate::kernel::vfs::inode::InodeData {
  252. &mut self.idata
  253. }
  254. }
  255. };
  256. ($v:vis struct $inode_t:ident { $($vis:vis $name:ident: $type:ty,)* }) => {
  257. $v struct $inode_t {
  258. /// Do not use this directly
  259. idata: $crate::kernel::vfs::inode::InodeData,
  260. $($vis $name: $type,)*
  261. }
  262. impl core::ops::Deref for $inode_t {
  263. type Target = $crate::kernel::vfs::inode::InodeData;
  264. fn deref(&self) -> &Self::Target {
  265. &self.idata
  266. }
  267. }
  268. impl core::ops::DerefMut for $inode_t {
  269. fn deref_mut(&mut self) -> &mut Self::Target {
  270. &mut self.idata
  271. }
  272. }
  273. impl $crate::kernel::vfs::inode::InodeInner for $inode_t {
  274. fn data(&self) -> &$crate::kernel::vfs::inode::InodeData {
  275. &self.idata
  276. }
  277. fn data_mut(&mut self) -> &mut $crate::kernel::vfs::inode::InodeData {
  278. &mut self.idata
  279. }
  280. }
  281. };
  282. }
  283. pub(crate) use define_struct_inode;