VFS+Ext2: many simplifications and filesystem initialisation
This commit is contained in:
parent
52cd72a949
commit
e766229b58
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@ -4,6 +4,7 @@
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* SPDX-License-Identifier: MPL-2.0
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*/
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#[derive(Copy, Clone, Debug)]
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pub enum FsError {
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EndOfFile,
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InodeNotFound,
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@ -4,16 +4,17 @@
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* SPDX-License-Identifier: MPL-2.0
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*/
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use alloc::sync::Weak;
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use alloc::sync::{Arc, Weak};
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use ext2::fs::{sync::Synced, Ext2};
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use ext2::sector::SectorSize;
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use ext2::sys::inode::TypePerm;
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use ext2::volume::Volume;
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use crate::handle::Handle;
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use crate::handle::{Handle, HandleResource};
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use super::errors::FsError;
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use super::{DirectoryEntry, FsFlags, FsNode, FsResult as Result, StorageDevice};
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use super::vfs::{add_fs_node, find_fs_node, DirectoryEntry, FsFlags};
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use super::{FsNode, FsResult as Result, StorageDevice};
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pub struct Ext2StorageDevice<S, V>
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where
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@ -22,6 +23,7 @@ where
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{
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fs: Synced<Ext2<S, V>>,
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device_handle: Handle,
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root: Arc<FsNode>,
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}
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impl<S, V> Ext2StorageDevice<S, V>
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@ -29,10 +31,24 @@ where
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S: SectorSize,
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V: Volume<u8, S>,
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{
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pub fn new(volume: V, device_handle: Handle) -> Result<Self> {
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Ok(Self {
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fs: Synced::new(volume).map_err(|e| e.into())?,
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pub fn new(volume: V) -> Result<Self> {
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let fs = Synced::new(volume).map_err(|e| e.into())?;
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let root_inode = fs.root_inode();
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let device_handle = Handle::new(HandleResource::StorageDevice);
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let root = Arc::new(FsNode::new(
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FsFlags::DIRECTORY,
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root_inode.size(),
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2,
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device_handle,
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Weak::new(),
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));
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add_fs_node(root.clone());
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Ok(Self {
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fs,
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device_handle,
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root,
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})
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}
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}
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@ -45,7 +61,7 @@ where
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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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.inode_nth(node.inode as usize)
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.inode_nth(node.inode() as usize)
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.ok_or_else(|| FsError::InodeNotFound)?;
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// FIXME: I don't really know how Ext2 works, so for now we don't
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@ -66,21 +82,38 @@ where
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fn read_dir(&self, node: &FsNode, index: usize) -> Result<DirectoryEntry> {
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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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.inode_nth(node.inode() as usize)
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.ok_or_else(|| FsError::InodeNotFound)?;
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let mut dir = inode.directory().ok_or_else(|| FsError::NotADirectory)?;
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let entry = dir
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.nth(index)
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.ok_or_else(|| FsError::InodeNotFound)?
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.map_err(|e| e.into())?;
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let entry_inode = self
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.fs
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.inode_nth(entry.inode)
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.ok_or_else(|| FsError::InodeNotFound)?;
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let entry_node_handle =
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find_fs_node(entry.inode, self.device_handle).unwrap_or_else(|| {
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add_fs_node(Arc::new(FsNode::new(
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ext2_type_to_fs_flags(entry_inode.type_perm()),
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inode.size(),
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entry.inode,
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self.device_handle,
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Weak::new(),
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)))
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});
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Ok(DirectoryEntry::new(entry.file_name_string(), entry.inode))
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Ok(DirectoryEntry::new(
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entry.file_name_string(),
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entry_node_handle,
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))
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}
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fn find_dir(&self, node: &FsNode, name: &str) -> Result<FsNode> {
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fn find_dir(&self, node: &FsNode, name: &str) -> Result<Handle> {
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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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.inode_nth(node.inode() as usize)
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.ok_or_else(|| FsError::InodeNotFound)?;
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let dir = inode.directory().ok_or_else(|| FsError::NotADirectory)?;
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let mut found_node = Err(FsError::NotFound);
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@ -91,23 +124,30 @@ where
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let entry = entry.unwrap();
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if entry.file_name_string() == name {
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let inode = self
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.fs
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.inode_nth(entry.inode as usize)
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.ok_or_else(|| FsError::InodeNotFound)?;
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let flags = ext2_type_to_fs_flags(inode.type_perm());
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found_node = Ok(FsNode::new(
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flags,
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found_node = Ok(
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find_fs_node(entry.inode, self.device_handle).unwrap_or_else(|| {
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add_fs_node(Arc::new(FsNode::new(
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ext2_type_to_fs_flags(inode.type_perm()),
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inode.size(),
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entry.inode,
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self.device_handle,
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Weak::new(),
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))
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)))
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}),
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);
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}
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}
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found_node
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}
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fn root_node(&self) -> Arc<FsNode> {
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self.root.clone()
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}
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fn device_handle(&self) -> Handle {
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self.device_handle
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}
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}
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fn ext2_type_to_fs_flags(type_perm: TypePerm) -> FsFlags {
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t | s
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}
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// fn load_fs() -> Arc<Mutex<Ext2<Size1024, Vec<u8>>>> {
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// let mut volume = Vec::new();
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// volume.extend_from_slice(include_bytes!("../../../userland/root_fs/ext2.img"));
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// Arc::<Ext2<Size1024, _>>::new(volume).unwrap()
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// }
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// pub fn walk<S: SectorSize, V: Volume<u8, S>>(
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// fs: &Synced<Ext2<S, V>>,
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// inode: Inode<S, V>,
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@ -6,15 +6,18 @@
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pub mod errors;
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pub mod ext2;
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pub mod vfs;
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use core::cmp;
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use alloc::sync::{Arc, Weak};
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use bitflags::bitflags;
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use ::ext2::sector::Size1024;
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use alloc::sync::Arc;
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use crate::{handle::Handle, KERNEL_STATE};
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use self::errors::FsError;
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use self::{
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errors::FsError,
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ext2::Ext2StorageDevice,
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vfs::{DirectoryEntry, FsNode},
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};
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use FsResult as Result;
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pub type FsResult<T> = core::result::Result<T, FsError>;
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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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fn find_dir(&self, node: &FsNode, name: &str) -> Result<Handle>;
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// TODO: flush to disk
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fn root_node(&self) -> Arc<FsNode>;
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fn device_handle(&self) -> Handle;
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}
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/// A VFS node, that can either be a file or a directory.
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///
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/// VFS nodes are created whenever a file that doesn't have an open VFS node is
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/// opened. When there are no open file descriptors to a file, the associated
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/// VFS node is dropped.
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#[derive(Debug)]
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pub struct FsNode {
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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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device_handle: Handle, // uniquely assigned device handle
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ptr: Weak<FsNode>, // used by mountpoints and symlinks
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// TODO: permissions mask
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// TODO: owning user/group
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}
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impl FsNode {
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pub fn new(
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flags: FsFlags,
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length: usize,
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inode: usize,
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device_handle: Handle,
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ptr: Weak<FsNode>,
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) -> Self {
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Self {
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flags,
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length,
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inode,
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device_handle,
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ptr,
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}
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}
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/// This method opens a new file descriptor for this VFS node.
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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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pub fn init() -> Result<()> {
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let mut state = KERNEL_STATE.lock();
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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 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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pub fn read(&self, offset: usize, size: usize, buffer: &mut Vec<u8>) -> Result<usize> {
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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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if self.is_dir() {
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Err(FsError::IsDirectory)?;
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}
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if offset > self.length {
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Err(FsError::EndOfFile)?;
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}
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let readable_size = cmp::min(size, self.length - offset);
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device.read(self, offset, readable_size, buffer)?;
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Ok(readable_size)
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}
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/// This method writes to 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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/// write to a file then you probably want to write to a file descriptor.
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pub fn write(&self, offset: usize, buffer: &[u8]) -> 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.write(self, offset, buffer)
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}
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pub fn read_dir(&self, index: usize) -> Result<DirectoryEntry> {
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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.read_dir(self, index)
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}
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pub fn find_dir(&self, name: &str) -> Result<FsNode> {
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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.find_dir(self, name)
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}
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pub fn is_dir(&self) -> bool {
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(self.flags & FsFlags::DIRECTORY) == FsFlags::DIRECTORY
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}
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state.add_storage_device(load_fs()?);
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Ok(())
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}
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impl Drop for FsNode {
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fn drop(&mut 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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fn load_fs() -> Result<Ext2StorageDevice<Size1024, Vec<u8>>> {
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let mut volume = Vec::new();
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volume.extend_from_slice(include_bytes!("../../../userland/root_fs/ext2.img"));
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bitflags! {
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/// Flags associated with VFS nodes and file descriptors
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///
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/// 0x00000MST \
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/// T is set to 0 for files, 1 for directories \
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/// S is set when the file is a symbolic link \
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/// M is set if the file is an active mount point
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pub struct FsFlags: u8 {
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const FILE = 0b00000000;
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const DIRECTORY = 0b00000001;
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const SYMBOLIC_LINK = 0b00000010;
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const MOUNT_POINT = 0b00000100;
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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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}
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impl DirectoryEntry {
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fn new(name: String, inode: usize) -> Self {
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Self { name, inode }
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}
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Ext2StorageDevice::new(volume)
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}
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@ -23,6 +23,7 @@ pub enum HandleResource {
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BinaryData,
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StorageDevice,
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FileDescriptor,
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FsNode,
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}
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#[derive(Debug, Eq, Hash, PartialEq, Clone, Copy)]
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@ -40,6 +41,7 @@ impl Display for Handle {
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HandleResource::Socket => write!(f, "-Socket")?,
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HandleResource::StorageDevice => write!(f, "-StorageDevice")?,
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HandleResource::FileDescriptor => write!(f, "-FileDescriptor")?,
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HandleResource::FsNode => write!(f, "-FsNode")?,
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}
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Ok(())
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@ -1,9 +1,15 @@
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/*
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* Copyright (c) 2022, Umut İnan Erdoğan <umutinanerdogan@pm.me>
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*
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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 hashbrown::HashMap;
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use spin::Lazy;
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use crate::{
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filesystem::{FsNode, StorageDevice},
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filesystem::{vfs::FsNode, StorageDevice},
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handle::{Handle, HandleResource},
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};
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@ -32,13 +38,12 @@ impl KernelInternalState {
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self.hostname = hostname;
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}
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pub fn add_storage_device(&mut self, device: impl StorageDevice + Send + 'static) -> Handle {
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let handle = Handle::new(HandleResource::StorageDevice);
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self.storage_devices.insert(handle, Box::new(device));
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handle
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pub fn add_storage_device(&mut self, device: impl StorageDevice + Send + 'static) {
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let device = Box::new(device);
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self.storage_devices.insert(device.device_handle(), device);
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}
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pub fn get_storage_device(&self, handle: Handle) -> Option<&dyn StorageDevice> {
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pub fn storage_device(&self, handle: Handle) -> Option<&dyn StorageDevice> {
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self.storage_devices.get(&handle).map(|d| &**d)
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}
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@ -49,7 +54,7 @@ impl KernelInternalState {
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handle
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}
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pub fn get_file_descriptor(&self, handle: Handle) -> Option<&FileTableEntry> {
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pub fn file_descriptor(&self, handle: Handle) -> Option<&FileTableEntry> {
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self.file_table.get(&handle)
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}
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@ -83,4 +88,8 @@ impl FileTableEntry {
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fn new(fs_node: Arc<FsNode>) -> Self {
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Self { fs_node }
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}
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pub fn fs_node(&self) -> Arc<FsNode> {
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self.fs_node.clone()
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}
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}
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|
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@ -1,13 +1,19 @@
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/*
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* Copyright (c) 2022, Umut İnan Erdoğan <umutinanerdogan@pm.me>
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*
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* SPDX-License-Identifier: MPL-2.0
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*/
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#![allow(clippy::empty_loop)]
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use core::sync::atomic::AtomicU64;
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use crate::arch::{drivers::sysinfo::master, init, sloop};
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use crate::hardware;
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use crate::relib::network::socket::{SimpleSock, Socket};
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use crate::{
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boot_conf::KernelConfig, scratchpad, systeminfo::RELEASE_TYPE, TERM,
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};
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use crate::{filesystem, hardware};
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use kernel::KERNEL_VERSION;
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use spin::Lazy;
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@ -36,6 +42,9 @@ pub fn kernel_main() -> ! {
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x86_64::instructions::interrupts::without_interrupts(|| {
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hardware::init_mouse();
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});
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filesystem::init().unwrap();
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/*
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// println!("abc");
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|
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@ -1,5 +1,6 @@
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/*
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* Copyright (c) 2022, Able <able@ablecorp.us>
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* Copyright (c) 2022, Umut İnan Erdoğan <umutinanerdogan@pm.me>
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*
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* SPDX-License-Identifier: MPL-2.0
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*/
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@ -25,6 +26,9 @@
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#[macro_use]
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pub extern crate log;
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#[macro_use]
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pub extern crate bitflags;
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pub extern crate alloc;
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pub extern crate externc_libm as libm;
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|
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|
@ -393,8 +393,6 @@ impl<S: SectorSize, V: Volume<u8, S>> Inode<S, V> {
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}
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/// Determine if an inode is a directory
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pub fn is_dir(&self) -> bool {
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use sys::inode::TypePerm;
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{ self.inner.type_perm }.contains(TypePerm::DIRECTORY)
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// self.inner.type_perm.contains(TypePerm::DIRECTORY)
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}
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