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561 lines
18 KiB
561 lines
18 KiB
use spin::Mutex;
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use bit_set::BitSet;
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use alloc::{boxed::Box, Vec, BTreeMap, rc::{Rc, Weak}};
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use core::cell::{RefCell, RefMut};
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use dirty::Dirty;
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use super::structs::*;
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use super::vfs;
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use core::mem::{uninitialized, size_of};
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use core::slice;
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use core::fmt::{Debug, Formatter, Error};
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/// Interface for SFS to read & write
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/// TODO: use std::io::{Read, Write}
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pub trait Device {
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fn read_at(&mut self, offset: usize, buf: &mut [u8]) -> Option<usize>;
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fn write_at(&mut self, offset: usize, buf: &[u8]) -> Option<usize>;
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// Helper functions
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fn read_block(&mut self, id: BlockId, offset: usize, buf: &mut [u8]) -> vfs::Result<()> {
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debug_assert!(offset + buf.len() <= BLKSIZE);
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match self.read_at(id * BLKSIZE + offset, buf) {
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Some(len) if len == buf.len() => Ok(()),
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_ => Err(()),
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}
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}
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fn write_block(&mut self, id: BlockId, offset: usize, buf: &[u8]) -> vfs::Result<()> {
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debug_assert!(offset + buf.len() <= BLKSIZE);
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match self.write_at(id * BLKSIZE + offset, buf) {
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Some(len) if len == buf.len() => Ok(()),
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_ => Err(()),
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}
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}
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}
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trait DeviceExt: Device {
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/// Load struct `T` from given block in device
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fn load_struct<T: AsBuf>(&mut self, id: BlockId) -> T {
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let mut s: T = unsafe { uninitialized() };
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self.read_block(id, 0, s.as_buf_mut()).unwrap();
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s
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}
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}
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impl DeviceExt for Device {}
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type Ptr<T> = Rc<RefCell<T>>;
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type WeakPtr<T> = Weak<RefCell<T>>;
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/// inode for sfs
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pub struct INode {
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/// on-disk inode
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disk_inode: Dirty<DiskINode>,
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/// inode number
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id: INodeId,
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/// Weak reference to SFS, used by almost all operations
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fs: WeakPtr<SimpleFileSystem>,
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}
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impl Debug for INode {
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fn fmt(&self, f: &mut Formatter) -> Result<(), Error> {
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write!(f, "{:?}", *self.disk_inode)
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}
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}
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impl INode {
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/// Map file block id to disk block id
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fn get_disk_block_id(&self, file_block_id: BlockId) -> Option<BlockId> {
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match file_block_id {
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id if id >= self.disk_inode.blocks as BlockId =>
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None,
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id if id < NDIRECT =>
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Some(self.disk_inode.direct[id] as BlockId),
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id if id < NDIRECT + BLK_NENTRY => {
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let mut disk_block_id: u32 = 0;
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let fs = self.fs.upgrade().unwrap();
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fs.borrow_mut().device.read_block(
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self.disk_inode.indirect as usize,
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ENTRY_SIZE * (id - NDIRECT),
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disk_block_id.as_buf_mut(),
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).unwrap();
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Some(disk_block_id as BlockId)
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}
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id => unimplemented!("double indirect blocks is not supported"),
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}
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}
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fn set_disk_block_id(&mut self, file_block_id: BlockId, disk_block_id: BlockId) -> vfs::Result<()> {
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match file_block_id {
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id if id >= self.disk_inode.blocks as BlockId =>
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Err(()),
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id if id < NDIRECT => {
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self.disk_inode.direct[id] = disk_block_id as u32;
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Ok(())
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},
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id if id < NDIRECT + BLK_NENTRY => {
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let disk_block_id = disk_block_id as u32;
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let fs = self.fs.upgrade().unwrap();
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fs.borrow_mut().device.write_block(
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self.disk_inode.indirect as usize,
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ENTRY_SIZE * (id - NDIRECT),
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disk_block_id.as_buf(),
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).unwrap();
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Ok(())
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}
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id => unimplemented!("double indirect blocks is not supported"),
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}
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}
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/// Only for Dir
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fn get_file_inode_id(&mut self, name: &'static str) -> Option<INodeId> {
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(0 .. self.disk_inode.blocks)
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.map(|i| {
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use vfs::INode;
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let mut entry: DiskEntry = unsafe {uninitialized()};
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self.read_at(i as usize * BLKSIZE, entry.as_buf_mut()).unwrap();
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entry
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})
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.find(|entry| entry.name.as_ref() == name)
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.map(|entry| entry.id as INodeId)
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}
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/// Init dir content. Insert 2 init entries.
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fn init_dir(&mut self, parent: INodeId) -> vfs::Result<()> {
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use vfs::INode;
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// Insert entries: '.' '..'
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self.resize(BLKSIZE * 2).unwrap();
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self.write_at(0, DiskEntry {
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id: parent as u32,
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name: Str256::from(".."),
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}.as_buf()).unwrap();
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let id = self.id as u32;
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self.write_at(0, DiskEntry {
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id,
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name: Str256::from("."),
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}.as_buf()).unwrap();
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Ok(())
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}
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fn clean_at(&mut self, begin: usize, end: usize) -> vfs::Result<()> {
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let fs = self.fs.upgrade().unwrap();
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let iter = BlockIter { begin, end };
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for BlockRange { block, begin, end } in iter {
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static ZEROS: [u8; BLKSIZE] = [0; BLKSIZE];
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let disk_block_id = self.get_disk_block_id(block).unwrap();
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fs.borrow_mut().device.write_block(disk_block_id, begin, &ZEROS[begin..end]).unwrap();
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}
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Ok(())
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}
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}
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impl vfs::INode for INode {
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fn open(&mut self, flags: u32) -> vfs::Result<()> {
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// Do nothing
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Ok(())
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}
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fn close(&mut self) -> vfs::Result<()> {
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self.sync()
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}
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fn read_at(&mut self, offset: usize, buf: &mut [u8]) -> vfs::Result<usize> {
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let fs = self.fs.upgrade().unwrap();
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let iter = BlockIter {
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begin: offset,
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end: offset + buf.len(),
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};
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// Read for each block
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let mut buf_offset = 0usize;
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for BlockRange { block, begin, end } in iter {
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let disk_block_id = self.get_disk_block_id(block).unwrap();
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let len = end - begin;
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fs.borrow_mut().device.read_block(disk_block_id, begin, &mut buf[buf_offset..buf_offset + len]).unwrap();
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buf_offset += len;
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}
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Ok(buf_offset)
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}
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fn write_at(&mut self, offset: usize, buf: &[u8]) -> vfs::Result<usize> {
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let fs = self.fs.upgrade().unwrap();
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let iter = BlockIter {
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begin: offset,
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end: offset + buf.len(),
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};
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// Write for each block
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let mut buf_offset = 0usize;
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for BlockRange { block, begin, end } in iter {
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let disk_block_id = self.get_disk_block_id(block).unwrap();
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let len = end - begin;
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fs.borrow_mut().device.write_block(disk_block_id, begin, &buf[buf_offset..buf_offset + len]).unwrap();
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buf_offset += len;
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}
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Ok(buf_offset)
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}
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fn info(&mut self) -> vfs::Result<vfs::FileInfo> {
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Ok(vfs::FileInfo {
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size: self.disk_inode.size as usize,
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mode: 0,
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type_: vfs::FileType::from(self.disk_inode.type_.clone()),
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})
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}
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fn sync(&mut self) -> vfs::Result<()> {
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if self.disk_inode.dirty() {
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let fs = self.fs.upgrade().unwrap();
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fs.borrow_mut().device.write_block(self.id, 0, self.disk_inode.as_buf()).unwrap();
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self.disk_inode.sync();
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}
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Ok(())
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}
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fn resize(&mut self, len: usize) -> vfs::Result<()> {
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if len > MAX_FILE_SIZE {
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return Err(());
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}
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let blocks = ((len + BLKSIZE - 1) / BLKSIZE) as u32;
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use core::cmp::{Ord, Ordering};
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match blocks.cmp(&self.disk_inode.blocks) {
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Ordering::Equal => {}, // Do nothing
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Ordering::Greater => {
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let fs = self.fs.upgrade().unwrap();
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let old_blocks = self.disk_inode.blocks;
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self.disk_inode.blocks = blocks;
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// allocate indirect block if need
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if old_blocks < NDIRECT as u32 && blocks >= NDIRECT as u32 {
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self.disk_inode.indirect = fs.borrow_mut().alloc_block().unwrap() as u32;
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}
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// allocate extra blocks
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for i in old_blocks .. blocks {
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let disk_block_id = fs.borrow_mut().alloc_block().expect("no more space");
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self.set_disk_block_id(i as usize, disk_block_id).unwrap();
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}
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// clean up
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let old_size = self.disk_inode.size as usize;
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self.clean_at(old_size, len).unwrap();
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},
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Ordering::Less => {
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let fs = self.fs.upgrade().unwrap();
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// free extra blocks
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for i in blocks .. self.disk_inode.blocks {
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let disk_block_id = self.get_disk_block_id(i as usize).unwrap();
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fs.borrow_mut().free_block(disk_block_id);
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}
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// free indirect block if need
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if blocks < NDIRECT as u32 && self.disk_inode.blocks >= NDIRECT as u32 {
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fs.borrow_mut().free_block(self.disk_inode.indirect as usize);
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self.disk_inode.indirect = 0;
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}
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self.disk_inode.blocks = blocks;
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},
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}
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self.disk_inode.size = len as u32;
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Ok(())
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}
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fn create(&mut self, name: &'static str) -> vfs::Result<Ptr<vfs::INode>> {
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let fs = self.fs.upgrade().unwrap();
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let info = self.info().unwrap();
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assert_eq!(info.type_, vfs::FileType::Dir);
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assert_eq!(info.size % BLKSIZE, 0);
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// Ensure the name is not exist
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assert!(self.get_file_inode_id(name).is_none(), "file name exist");
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// Create new INode
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let inode = fs.borrow_mut().new_inode_file().unwrap();
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// Write new entry
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let entry = DiskEntry {
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id: inode.borrow().id as u32,
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name: Str256::from(name),
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};
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self.resize(info.size + BLKSIZE).unwrap();
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self.write_at(info.size, entry.as_buf()).unwrap();
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Ok(inode)
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}
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fn loopup(&mut self, path: &'static str) -> vfs::Result<Ptr<vfs::INode>> {
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let fs = self.fs.upgrade().unwrap();
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let info = self.info().unwrap();
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assert_eq!(info.type_, vfs::FileType::Dir);
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assert_eq!(info.size % BLKSIZE, 0);
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let (name, rest_path) = match path.find('/') {
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None => (path, ""),
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Some(pos) => (&path[0..pos], &path[pos+1..]),
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};
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let inode_id = self.get_file_inode_id(name);
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if inode_id.is_none() {
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return Err(());
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}
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let inode = fs.borrow_mut().get_inode(inode_id.unwrap());
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let type_ = inode.borrow().disk_inode.type_;
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match type_ {
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FileType::File => if rest_path == "" {Ok(inode)} else {Err(())},
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FileType::Dir => inode.borrow_mut().loopup(rest_path),
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_ => unimplemented!(),
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}
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}
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}
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impl Drop for INode {
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/// Auto sync when drop
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fn drop(&mut self) {
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use vfs::INode;
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self.sync().expect("failed to sync");
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}
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}
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/// Given a range and iterate sub-range for each block
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struct BlockIter {
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begin: usize,
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end: usize,
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}
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#[derive(Debug)]
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struct BlockRange {
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block: BlockId,
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begin: usize,
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end: usize,
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}
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impl Iterator for BlockIter {
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type Item = BlockRange;
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fn next(&mut self) -> Option<<Self as Iterator>::Item> {
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if self.begin >= self.end {
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return None;
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}
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let block = self.begin / BLKSIZE;
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let begin = self.begin % BLKSIZE;
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let end = if block == self.end / BLKSIZE { self.end % BLKSIZE } else { BLKSIZE };
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self.begin += end - begin;
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Some(BlockRange { block, begin, end })
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}
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}
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/// filesystem for sfs
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pub struct SimpleFileSystem {
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/// on-disk superblock
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super_block: Dirty<SuperBlock>,
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/// blocks in use are mared 0
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free_map: Dirty<BitSet>,
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/// inode list
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inodes: BTreeMap<INodeId, Ptr<INode>>,
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/// device
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device: Box<Device>,
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/// Pointer to self, used by INodes
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self_ptr: WeakPtr<SimpleFileSystem>,
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}
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impl SimpleFileSystem {
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/// Load SFS from device
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pub fn open(mut device: Box<Device>) -> Option<Ptr<Self>> {
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let super_block = device.load_struct::<SuperBlock>(BLKN_SUPER);
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if super_block.check() == false {
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return None;
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}
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let free_map = device.load_struct::<[u8; BLKSIZE]>(BLKN_FREEMAP);
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Some(SimpleFileSystem {
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super_block: Dirty::new(super_block),
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free_map: Dirty::new(BitSet::from_bytes(&free_map)),
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inodes: BTreeMap::<INodeId, Ptr<INode>>::new(),
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device,
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self_ptr: Weak::default(),
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}.wrap())
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}
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/// Create a new SFS on blank disk
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pub fn create(mut device: Box<Device>, space: usize) -> Ptr<Self> {
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let blocks = (space / BLKSIZE).min(BLKBITS);
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assert!(blocks >= 16, "space too small");
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let super_block = SuperBlock {
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magic: MAGIC,
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blocks: blocks as u32,
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unused_blocks: blocks as u32 - 3,
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info: Str32::from("simple file system"),
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};
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let free_map = {
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let mut bitset = BitSet::with_capacity(BLKBITS);
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for i in 3 .. blocks {
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bitset.insert(i);
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}
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bitset
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};
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let sfs = SimpleFileSystem {
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super_block: Dirty::new_dirty(super_block),
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free_map: Dirty::new_dirty(free_map),
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inodes: BTreeMap::<INodeId, Ptr<INode>>::new(),
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device,
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self_ptr: Weak::default(),
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}.wrap();
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// Init root INode
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let inode = Rc::new(RefCell::new(INode {
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disk_inode: Dirty::new_dirty(DiskINode::new_dir()),
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id: BLKN_ROOT,
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fs: Rc::downgrade(&sfs),
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}));
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inode.borrow_mut().init_dir(BLKN_ROOT).unwrap();
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{
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use vfs::INode;
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inode.borrow_mut().sync().unwrap();
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}
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sfs.borrow_mut().inodes.insert(BLKN_ROOT, inode);
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sfs
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}
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/// Wrap pure SimpleFileSystem with Rc<RefCell<...>>
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/// Used in constructors
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fn wrap(self) -> Ptr<Self> {
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let mut fs = Rc::new(RefCell::new(self));
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fs.borrow_mut().self_ptr = Rc::downgrade(&fs);
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fs
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}
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/// Allocate a block, return block id
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fn alloc_block(&mut self) -> Option<usize> {
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let id = self.free_map.alloc();
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if id.is_some() {
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self.super_block.unused_blocks -= 1; // will panic if underflow
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}
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id
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}
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/// Free a block
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fn free_block(&mut self, block_id: usize) {
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assert!(!self.free_map.contains(block_id));
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self.free_map.insert(block_id);
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self.super_block.unused_blocks += 1;
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}
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|
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/// Get inode by id. Load if not in memory.
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/// ** Must ensure it's a valid INode **
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fn get_inode(&mut self, id: INodeId) -> Ptr<INode> {
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assert!(!self.free_map.contains(id));
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// Load if not in memory.
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if !self.inodes.contains_key(&id) {
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let disk_inode = self.device.load_struct::<DiskINode>(id);
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let inode = Rc::new(RefCell::new(INode {
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disk_inode: Dirty::new(disk_inode),
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id,
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fs: self.self_ptr.clone(),
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}));
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self.inodes.insert(id, inode.clone());
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inode
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} else {
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self.inodes.get(&id).unwrap().clone()
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}
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}
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|
/// Create a new INode file
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fn new_inode_file(&mut self) -> vfs::Result<Ptr<INode>> {
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let id = self.alloc_block().unwrap();
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Ok(Rc::new(RefCell::new(INode {
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disk_inode: Dirty::new_dirty(DiskINode::new_file()),
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id,
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fs: self.self_ptr.clone(),
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})))
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}
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/// Create a new INode dir
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|
fn new_inode_dir(&mut self, parent: INodeId) -> vfs::Result<Ptr<INode>> {
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let id = self.alloc_block().unwrap();
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let mut inode = INode {
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disk_inode: Dirty::new_dirty(DiskINode::new_dir()),
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id,
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fs: self.self_ptr.clone(),
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};
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inode.init_dir(parent).unwrap();
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Ok(Rc::new(RefCell::new(inode)))
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}
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}
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|
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impl vfs::FileSystem for SimpleFileSystem {
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type INode = INode;
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|
|
/// Write back super block if dirty
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|
fn sync(&mut self) -> vfs::Result<()> {
|
|
let SimpleFileSystem {
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ref mut super_block,
|
|
ref mut device,
|
|
ref mut free_map,
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|
ref mut inodes,
|
|
..
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|
} = self;
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|
|
if super_block.dirty() {
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device.write_at(BLKSIZE * BLKN_SUPER, super_block.as_buf()).unwrap();
|
|
super_block.sync();
|
|
}
|
|
if free_map.dirty() {
|
|
device.write_at(BLKSIZE * BLKN_FREEMAP, free_map.as_buf()).unwrap();
|
|
free_map.sync();
|
|
}
|
|
for inode in inodes.values() {
|
|
use vfs::INode;
|
|
inode.borrow_mut().sync().unwrap();
|
|
}
|
|
Ok(())
|
|
}
|
|
|
|
fn root_inode(&mut self) -> Ptr<INode> {
|
|
self.get_inode(BLKN_ROOT)
|
|
}
|
|
|
|
fn unmount(&mut self) -> vfs::Result<()> {
|
|
unimplemented!()
|
|
}
|
|
|
|
fn cleanup(&mut self) {
|
|
unimplemented!()
|
|
}
|
|
}
|
|
|
|
impl Drop for SimpleFileSystem {
|
|
/// Auto sync when drop
|
|
fn drop(&mut self) {
|
|
use vfs::FileSystem;
|
|
self.sync().expect("failed to sync");
|
|
}
|
|
}
|
|
|
|
trait BitsetAlloc {
|
|
fn alloc(&mut self) -> Option<usize>;
|
|
}
|
|
|
|
impl BitsetAlloc for BitSet {
|
|
fn alloc(&mut self) -> Option<usize> {
|
|
// TODO: more efficient
|
|
let id = (0..self.len()).find(|&i| self.contains(i));
|
|
if let Some(id) = id {
|
|
self.remove(id);
|
|
}
|
|
id
|
|
}
|
|
}
|
|
|
|
impl AsBuf for BitSet {
|
|
fn as_buf(&self) -> &[u8] {
|
|
let slice = self.get_ref().storage();
|
|
unsafe{ slice::from_raw_parts(slice as *const _ as *const u8, slice.len() * 4) }
|
|
}
|
|
fn as_buf_mut(&mut self) -> &mut [u8] {
|
|
let slice = self.get_ref().storage();
|
|
unsafe{ slice::from_raw_parts_mut(slice as *const _ as *mut u8, slice.len() * 4) }
|
|
}
|
|
}
|
|
|
|
impl AsBuf for [u8; BLKSIZE] {}
|
|
|
|
impl From<FileType> for vfs::FileType {
|
|
fn from(t: FileType) -> Self {
|
|
match t {
|
|
FileType::File => vfs::FileType::File,
|
|
FileType::Dir => vfs::FileType::Dir,
|
|
_ => panic!("unknown file type"),
|
|
}
|
|
}
|
|
}
|
|
|
|
#[cfg(test)]
|
|
mod test {
|
|
use super::*;
|
|
} |