mirror of
https://github.com/denoland/deno.git
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472a370640
Embedders may have special requirements around file opening, so we add a new `check_open` permission check that is called as part of the file open process.
374 lines
9.1 KiB
Rust
374 lines
9.1 KiB
Rust
// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
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use std::borrow::Cow;
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use std::io;
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use std::rc::Rc;
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use std::time::SystemTime;
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use std::time::UNIX_EPOCH;
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use deno_core::error::custom_error;
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use deno_core::error::not_supported;
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use deno_core::error::resource_unavailable;
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use deno_core::error::AnyError;
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use deno_core::BufMutView;
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use deno_core::BufView;
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use deno_core::OpState;
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use deno_core::ResourceHandleFd;
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use deno_core::ResourceId;
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use tokio::task::JoinError;
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#[derive(Debug)]
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pub enum FsError {
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Io(io::Error),
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FileBusy,
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NotSupported,
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PermissionDenied(&'static str),
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}
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impl FsError {
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pub fn kind(&self) -> io::ErrorKind {
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match self {
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Self::Io(err) => err.kind(),
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Self::FileBusy => io::ErrorKind::Other,
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Self::NotSupported => io::ErrorKind::Other,
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Self::PermissionDenied(_) => io::ErrorKind::PermissionDenied,
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}
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}
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pub fn into_io_error(self) -> io::Error {
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match self {
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FsError::Io(err) => err,
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FsError::FileBusy => io::Error::new(self.kind(), "file busy"),
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FsError::NotSupported => io::Error::new(self.kind(), "not supported"),
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FsError::PermissionDenied(err) => {
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io::Error::new(self.kind(), format!("requires {err} access"))
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}
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}
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}
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}
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impl From<io::Error> for FsError {
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fn from(err: io::Error) -> Self {
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Self::Io(err)
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}
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}
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impl From<io::ErrorKind> for FsError {
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fn from(err: io::ErrorKind) -> Self {
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Self::Io(err.into())
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}
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}
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impl From<FsError> for AnyError {
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fn from(err: FsError) -> Self {
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match err {
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FsError::Io(err) => AnyError::from(err),
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FsError::FileBusy => resource_unavailable(),
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FsError::NotSupported => not_supported(),
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FsError::PermissionDenied(err) => {
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custom_error("PermissionDenied", format!("permission denied: {err}"))
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}
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}
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}
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}
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impl From<JoinError> for FsError {
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fn from(err: JoinError) -> Self {
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if err.is_cancelled() {
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todo!("async tasks must not be cancelled")
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}
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if err.is_panic() {
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std::panic::resume_unwind(err.into_panic()); // resume the panic on the main thread
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}
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unreachable!()
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}
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}
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pub type FsResult<T> = Result<T, FsError>;
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pub struct FsStat {
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pub is_file: bool,
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pub is_directory: bool,
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pub is_symlink: bool,
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pub size: u64,
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pub mtime: Option<u64>,
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pub atime: Option<u64>,
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pub birthtime: Option<u64>,
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pub dev: u64,
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pub ino: u64,
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pub mode: u32,
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pub nlink: u64,
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pub uid: u32,
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pub gid: u32,
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pub rdev: u64,
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pub blksize: u64,
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pub blocks: u64,
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pub is_block_device: bool,
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pub is_char_device: bool,
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pub is_fifo: bool,
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pub is_socket: bool,
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}
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impl FsStat {
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pub fn from_std(metadata: std::fs::Metadata) -> Self {
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macro_rules! unix_or_zero {
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($member:ident) => {{
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#[cfg(unix)]
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{
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use std::os::unix::fs::MetadataExt;
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metadata.$member()
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}
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#[cfg(not(unix))]
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{
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0
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}
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}};
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}
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macro_rules! unix_or_false {
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($member:ident) => {{
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#[cfg(unix)]
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{
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use std::os::unix::fs::FileTypeExt;
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metadata.file_type().$member()
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}
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#[cfg(not(unix))]
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{
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false
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}
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}};
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}
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#[inline(always)]
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fn to_msec(maybe_time: Result<SystemTime, io::Error>) -> Option<u64> {
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match maybe_time {
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Ok(time) => Some(
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time
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.duration_since(UNIX_EPOCH)
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.map(|t| t.as_millis() as u64)
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.unwrap_or_else(|err| err.duration().as_millis() as u64),
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),
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Err(_) => None,
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}
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}
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Self {
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is_file: metadata.is_file(),
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is_directory: metadata.is_dir(),
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is_symlink: metadata.file_type().is_symlink(),
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size: metadata.len(),
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mtime: to_msec(metadata.modified()),
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atime: to_msec(metadata.accessed()),
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birthtime: to_msec(metadata.created()),
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dev: unix_or_zero!(dev),
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ino: unix_or_zero!(ino),
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mode: unix_or_zero!(mode),
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nlink: unix_or_zero!(nlink),
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uid: unix_or_zero!(uid),
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gid: unix_or_zero!(gid),
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rdev: unix_or_zero!(rdev),
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blksize: unix_or_zero!(blksize),
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blocks: unix_or_zero!(blocks),
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is_block_device: unix_or_false!(is_block_device),
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is_char_device: unix_or_false!(is_char_device),
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is_fifo: unix_or_false!(is_fifo),
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is_socket: unix_or_false!(is_socket),
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}
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}
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}
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#[async_trait::async_trait(?Send)]
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pub trait File {
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fn read_sync(self: Rc<Self>, buf: &mut [u8]) -> FsResult<usize>;
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async fn read(self: Rc<Self>, limit: usize) -> FsResult<BufView> {
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let buf = BufMutView::new(limit);
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let (nread, mut buf) = self.read_byob(buf).await?;
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buf.truncate(nread);
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Ok(buf.into_view())
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}
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async fn read_byob(
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self: Rc<Self>,
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buf: BufMutView,
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) -> FsResult<(usize, BufMutView)>;
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fn write_sync(self: Rc<Self>, buf: &[u8]) -> FsResult<usize>;
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async fn write(
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self: Rc<Self>,
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buf: BufView,
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) -> FsResult<deno_core::WriteOutcome>;
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fn write_all_sync(self: Rc<Self>, buf: &[u8]) -> FsResult<()>;
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async fn write_all(self: Rc<Self>, buf: BufView) -> FsResult<()>;
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fn read_all_sync(self: Rc<Self>) -> FsResult<Vec<u8>>;
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async fn read_all_async(self: Rc<Self>) -> FsResult<Vec<u8>>;
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fn chmod_sync(self: Rc<Self>, pathmode: u32) -> FsResult<()>;
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async fn chmod_async(self: Rc<Self>, mode: u32) -> FsResult<()>;
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fn seek_sync(self: Rc<Self>, pos: io::SeekFrom) -> FsResult<u64>;
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async fn seek_async(self: Rc<Self>, pos: io::SeekFrom) -> FsResult<u64>;
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fn datasync_sync(self: Rc<Self>) -> FsResult<()>;
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async fn datasync_async(self: Rc<Self>) -> FsResult<()>;
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fn sync_sync(self: Rc<Self>) -> FsResult<()>;
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async fn sync_async(self: Rc<Self>) -> FsResult<()>;
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fn stat_sync(self: Rc<Self>) -> FsResult<FsStat>;
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async fn stat_async(self: Rc<Self>) -> FsResult<FsStat>;
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fn lock_sync(self: Rc<Self>, exclusive: bool) -> FsResult<()>;
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async fn lock_async(self: Rc<Self>, exclusive: bool) -> FsResult<()>;
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fn unlock_sync(self: Rc<Self>) -> FsResult<()>;
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async fn unlock_async(self: Rc<Self>) -> FsResult<()>;
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fn truncate_sync(self: Rc<Self>, len: u64) -> FsResult<()>;
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async fn truncate_async(self: Rc<Self>, len: u64) -> FsResult<()>;
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fn utime_sync(
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self: Rc<Self>,
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atime_secs: i64,
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atime_nanos: u32,
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mtime_secs: i64,
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mtime_nanos: u32,
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) -> FsResult<()>;
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async fn utime_async(
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self: Rc<Self>,
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atime_secs: i64,
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atime_nanos: u32,
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mtime_secs: i64,
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mtime_nanos: u32,
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) -> FsResult<()>;
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// lower level functionality
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fn as_stdio(self: Rc<Self>) -> FsResult<std::process::Stdio>;
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fn backing_fd(self: Rc<Self>) -> Option<ResourceHandleFd>;
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fn try_clone_inner(self: Rc<Self>) -> FsResult<Rc<dyn File>>;
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}
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pub struct FileResource {
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name: String,
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file: Rc<dyn File>,
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}
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impl FileResource {
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pub fn new(file: Rc<dyn File>, name: String) -> Self {
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Self { name, file }
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}
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fn with_resource<F, R>(
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state: &OpState,
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rid: ResourceId,
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f: F,
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) -> Result<R, AnyError>
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where
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F: FnOnce(Rc<FileResource>) -> Result<R, AnyError>,
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{
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let resource = state.resource_table.get::<FileResource>(rid)?;
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f(resource)
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}
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pub fn get_file(
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state: &OpState,
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rid: ResourceId,
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) -> Result<Rc<dyn File>, AnyError> {
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let resource = state.resource_table.get::<FileResource>(rid)?;
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Ok(resource.file())
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}
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pub fn with_file<F, R>(
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state: &OpState,
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rid: ResourceId,
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f: F,
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) -> Result<R, AnyError>
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where
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F: FnOnce(Rc<dyn File>) -> Result<R, AnyError>,
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{
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Self::with_resource(state, rid, |r| f(r.file.clone()))
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}
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pub fn file(&self) -> Rc<dyn File> {
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self.file.clone()
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}
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}
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impl deno_core::Resource for FileResource {
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fn name(&self) -> Cow<str> {
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Cow::Borrowed(&self.name)
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}
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fn read(
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self: Rc<Self>,
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limit: usize,
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) -> deno_core::AsyncResult<deno_core::BufView> {
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Box::pin(async move {
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self
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.file
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.clone()
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.read(limit)
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.await
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.map_err(|err| err.into())
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})
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}
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fn read_byob(
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self: Rc<Self>,
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buf: deno_core::BufMutView,
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) -> deno_core::AsyncResult<(usize, deno_core::BufMutView)> {
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Box::pin(async move {
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self
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.file
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.clone()
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.read_byob(buf)
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.await
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.map_err(|err| err.into())
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})
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}
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fn write(
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self: Rc<Self>,
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buf: deno_core::BufView,
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) -> deno_core::AsyncResult<deno_core::WriteOutcome> {
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Box::pin(async move {
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self.file.clone().write(buf).await.map_err(|err| err.into())
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})
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}
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fn write_all(
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self: Rc<Self>,
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buf: deno_core::BufView,
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) -> deno_core::AsyncResult<()> {
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Box::pin(async move {
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self
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.file
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.clone()
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.write_all(buf)
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.await
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.map_err(|err| err.into())
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})
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}
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fn read_byob_sync(
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self: Rc<Self>,
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data: &mut [u8],
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) -> Result<usize, deno_core::anyhow::Error> {
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self.file.clone().read_sync(data).map_err(|err| err.into())
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}
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fn write_sync(
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self: Rc<Self>,
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data: &[u8],
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) -> Result<usize, deno_core::anyhow::Error> {
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self.file.clone().write_sync(data).map_err(|err| err.into())
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}
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fn backing_fd(self: Rc<Self>) -> Option<ResourceHandleFd> {
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self.file.clone().backing_fd()
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}
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}
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