VFS: simplify everything
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91c1783b99
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@ -4,13 +4,12 @@
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* SPDX-License-Identifier: MPL-2.0
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*/
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use alloc::sync::Arc;
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use ext2::fs::{sync::Synced, Ext2};
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use ext2::sector::SectorSize;
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use ext2::volume::Volume;
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use super::errors::FsError;
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use super::{DirectoryEntry, FileDescriptor, FsNode, FsResult as Result, StorageDevice};
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use super::{DirectoryEntry, FsNode, FsResult as Result, StorageDevice};
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pub struct Ext2StorageDevice<S, V>
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where
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@ -37,20 +36,6 @@ where
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S: SectorSize + Send,
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V: Volume<u8, S> + Send,
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{
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fn open(&self, node: Arc<FsNode> /* TODO: flags */) -> Result<FileDescriptor> {
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let inode = self
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.fs
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.inode_nth(node.inode as usize)
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.ok_or_else(|| FsError::InodeNotFound)?;
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Ok(FileDescriptor::new(Arc::downgrade(&node), node.flags, inode.size(), node.inode))
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}
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fn release(&self, _node: FsNode) -> Result<()> {
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// TODO: flush to disk and whatnot
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Ok(())
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}
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fn read(&self, node: &FsNode, offset: usize, size: usize, buffer: &mut Vec<u8>) -> Result<()> {
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let inode = self
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.fs
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@ -24,12 +24,11 @@ pub trait StorageDevice
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where
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Self: Send,
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{
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fn open(&self, node: Arc<FsNode> /* TODO: flags */) -> Result<FileDescriptor>;
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fn release(&self, node: FsNode) -> Result<()>;
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fn read(&self, node: &FsNode, offset: usize, size: usize, buffer: &mut Vec<u8>) -> Result<()>;
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fn write(&self, node: &FsNode, offset: usize, buffer: &[u8]) -> Result<()>;
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fn read_dir(&self, node: &FsNode, index: usize) -> Result<DirectoryEntry>;
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fn find_dir(&self, node: &FsNode, name: &str) -> Result<FsNode>;
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// TODO: flush to disk
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}
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/// A VFS node, that can either be a file or a directory.
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@ -69,31 +68,11 @@ impl FsNode {
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// TODO: make this take flags
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pub fn open(self: Arc<Self>) -> Result<Handle> {
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let mut state = KERNEL_STATE.lock();
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let device = state
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.get_storage_device(self.device_handle)
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.ok_or_else(|| FsError::InvalidDevice)?;
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let fd = device.open(self)?;
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let handle = state.open_file_descriptor(fd);
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let handle = state.open_file_descriptor(self);
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Ok(handle)
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}
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/// This method is for closing the VFS node, which is usually done when no
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/// open file descriptors for this file are left. File descriptors have
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/// weak references to the VFS node, meaning it is okay to close the VFS
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/// node before all file descriptors are closed.
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pub fn release(self) -> Result<()> {
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let state = KERNEL_STATE.lock();
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let device = state
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.get_storage_device(self.device_handle)
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.ok_or_else(|| FsError::InvalidDevice)?;
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device.release(self)?;
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// self is moved into device.release, and at the end of it, self should
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// be dropped.
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Ok(())
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}
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/// This method reads from the VFS node without opening a new file
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/// descriptor. This is intended to be used internally, if you're trying to
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/// read a file then you probably want to read from a file descriptor.
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@ -153,7 +132,8 @@ impl FsNode {
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impl Drop for FsNode {
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fn drop(&mut self) {
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trace!("dropping: {self:#?}")
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trace!("dropping VFS node: {self:#?}");
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// TODO: flush to disk here
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}
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}
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@ -172,41 +152,6 @@ bitflags! {
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}
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}
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/// A file descriptor.
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#[derive(Debug)]
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pub struct FileDescriptor {
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vfs_node: Weak<FsNode>, // ptr to the associated VFS node
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flags: FsFlags,
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length: usize, // in bytes
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inode: usize, // implementation specific identifier for the node
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// TODO: permissions mask
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// TODO: owning user/group
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// TODO: read file position?
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}
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impl FileDescriptor {
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fn new(vfs_node: Weak<FsNode>, flags: FsFlags, length: usize, inode: usize) -> Self {
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Self {
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vfs_node,
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flags,
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length,
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inode,
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}
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}
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/// This method is for closing the file descriptor.
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pub fn close(fd_handle: Handle) {
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let mut state = KERNEL_STATE.lock();
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state.close_file_descriptor(fd_handle);
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}
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}
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impl Drop for FileDescriptor {
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fn drop(&mut self) {
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trace!("dropping: {self:#?}")
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}
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}
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pub struct DirectoryEntry {
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name: String,
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inode: usize,
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@ -1,8 +1,9 @@
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use alloc::sync::Arc;
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use hashbrown::HashMap;
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use spin::Lazy;
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use crate::{
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filesystem::{FileDescriptor, StorageDevice},
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filesystem::{StorageDevice, FsNode},
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handle::{Handle, HandleResource},
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};
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@ -12,7 +13,8 @@ pub static KERNEL_STATE: Lazy<spin::Mutex<KernelInternalState>> =
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pub struct KernelInternalState {
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pub hostname: String,
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storage_devices: HashMap<Handle, Box<dyn StorageDevice>>,
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fd_table: HashMap<Handle, FileDescriptor>,
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// FIXME: should this be per-process?
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file_table: HashMap<Handle, FileTableEntry>,
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should_shutdown: bool,
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}
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@ -21,7 +23,7 @@ impl KernelInternalState {
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Self {
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should_shutdown: false,
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storage_devices: HashMap::new(),
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fd_table: HashMap::new(),
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file_table: HashMap::new(),
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hostname: "".to_string(),
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}
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}
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@ -40,14 +42,19 @@ impl KernelInternalState {
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self.storage_devices.get(&handle).map(|d| &**d)
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}
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pub fn open_file_descriptor(&mut self, fd: FileDescriptor) -> Handle {
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// TODO: implement flags here
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pub fn open_file_descriptor(&mut self, fs_node: Arc<FsNode>) -> Handle {
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let handle = Handle::new(HandleResource::FileDescriptor);
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self.fd_table.insert(handle, fd);
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self.file_table.insert(handle, FileTableEntry::new(fs_node));
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handle
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}
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pub fn close_file_descriptor(&mut self, fd_handle: Handle) {
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self.fd_table.remove(&fd_handle);
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pub fn get_file_descriptor(&self, handle: Handle) -> Option<&FileTableEntry> {
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self.file_table.get(&handle)
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}
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pub fn close_file_descriptor(&mut self, handle: Handle) {
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self.file_table.remove(&handle);
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}
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pub fn shutdown(&mut self) {
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@ -66,3 +73,16 @@ impl Default for KernelInternalState {
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Self::new()
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}
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}
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pub struct FileTableEntry {
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fs_node: Arc<FsNode>,
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// TODO: permissions, flags, owner, maybe cache stuff here?
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}
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impl FileTableEntry {
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fn new(fs_node: Arc<FsNode>) -> Self {
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Self {
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fs_node
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}
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}
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}
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