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Copy pathmod.rs
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229 lines (226 loc) · 7.12 KB
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//! Traits, helpers, and type definitions for core I/O functionality.
//!
//! The `io` module contains a number of common things you'll need
//! when doing input and output. The most core part of this module is
//! the [`Read`] and [`Write`] traits, which provide the
//! most general interface for reading and writing input and output.
//!
//! ## Read and Write
//!
//! Because they are traits, [`Read`] and [`Write`] are implemented by a number
//! of other types, and you can implement them for your types too. As such,
//! you'll see a few different types of I/O throughout the documentation in
//! this module: [`File`]s, [`TcpStream`]s, and sometimes even [`Vec<T>`]s. For
//! example, [`Read`] adds a [`read`][`Read::read`] method, which we can use on
//! [`File`]s:
//!
//! ```no_run
//! use std::io;
//! use std::io::prelude::*;
//! use std::fs::File;
//!
//! fn main() -> io::Result<()> {
//! let mut f = File::open("foo.txt")?;
//! let mut buffer = [0; 10];
//!
//! // read up to 10 bytes
//! let n = f.read(&mut buffer)?;
//!
//! println!("The bytes: {:?}", &buffer[..n]);
//! Ok(())
//! }
//! ```
//!
//! [`Read`] and [`Write`] are so important, implementors of the two traits have a
//! nickname: readers and writers. So you'll sometimes see 'a reader' instead
//! of 'a type that implements the [`Read`] trait'. Much easier!
//!
//! ## Seek and BufRead
//!
//! Beyond that, there are two important traits that are provided: [`Seek`]
//! and [`BufRead`]. Both of these build on top of a reader to control
//! how the reading happens. [`Seek`] lets you control where the next byte is
//! coming from:
//!
//! ```no_run
//! use std::io;
//! use std::io::prelude::*;
//! use std::io::SeekFrom;
//! use std::fs::File;
//!
//! fn main() -> io::Result<()> {
//! let mut f = File::open("foo.txt")?;
//! let mut buffer = [0; 10];
//!
//! // skip to the last 10 bytes of the file
//! f.seek(SeekFrom::End(-10))?;
//!
//! // read up to 10 bytes
//! let n = f.read(&mut buffer)?;
//!
//! println!("The bytes: {:?}", &buffer[..n]);
//! Ok(())
//! }
//! ```
//!
//! [`BufRead`] uses an internal buffer to provide a number of other ways to read, but
//! to show it off, we'll need to talk about buffers in general. Keep reading!
//!
//! ## BufReader and BufWriter
//!
//! Byte-based interfaces are unwieldy and can be inefficient, as we'd need to be
//! making near-constant calls to the operating system. To help with this,
//! `std::io` comes with two structs, [`BufReader`] and [`BufWriter`], which wrap
//! readers and writers. The wrapper uses a buffer, reducing the number of
//! calls and providing nicer methods for accessing exactly what you want.
//!
//! For example, [`BufReader`] works with the [`BufRead`] trait to add extra
//! methods to any reader:
//!
//! ```no_run
//! use std::io;
//! use std::io::prelude::*;
//! use std::io::BufReader;
//! use std::fs::File;
//!
//! fn main() -> io::Result<()> {
//! let f = File::open("foo.txt")?;
//! let mut reader = BufReader::new(f);
//! let mut buffer = String::new();
//!
//! // read a line into buffer
//! reader.read_line(&mut buffer)?;
//!
//! println!("{buffer}");
//! Ok(())
//! }
//! ```
//!
//! [`BufWriter`] doesn't add any new ways of writing; it just buffers every call
//! to [`write`][`Write::write`]:
//!
//! ```no_run
//! use std::io;
//! use std::io::prelude::*;
//! use std::io::BufWriter;
//! use std::fs::File;
//!
//! fn main() -> io::Result<()> {
//! let f = File::create("foo.txt")?;
//! {
//! let mut writer = BufWriter::new(f);
//!
//! // write a byte to the buffer
//! writer.write(&[42])?;
//!
//! } // the buffer is flushed once writer goes out of scope
//!
//! Ok(())
//! }
//! ```
//!
//! ## Iterator types
//!
//! A large number of the structures provided by `std::io` are for various
//! ways of iterating over I/O. For example, [`Lines`] is used to split over
//! lines:
//!
//! ```no_run
//! use std::io;
//! use std::io::prelude::*;
//! use std::io::BufReader;
//! use std::fs::File;
//!
//! fn main() -> io::Result<()> {
//! let f = File::open("foo.txt")?;
//! let reader = BufReader::new(f);
//!
//! for line in reader.lines() {
//! println!("{}", line?);
//! }
//! Ok(())
//! }
//! ```
//!
//! ## io::Result
//!
//! Last, but certainly not least, is [`io::Result`]. This type is used
//! as the return type of many `std::io` functions that can cause an error, and
//! can be returned from your own functions as well. Many of the examples in this
//! module use the [`?` operator]:
//!
//! ```no_run
//! use std::io;
//!
//! # #[allow(dead_code)]
//! fn read_input() -> io::Result<()> {
//! let mut input = String::new();
//!
//! io::stdin().read_line(&mut input)?;
//!
//! println!("You typed: {}", input.trim());
//!
//! Ok(())
//! }
//! ```
//!
//! The return type of `read_input()`, [`io::Result<()>`][`io::Result`], is a very
//! common type for functions which don't have a 'real' return value, but do want to
//! return errors if they happen. In this case, the only purpose of this function is
//! to read the line and print it, so we use `()`.
//!
//! [`File`]: ../../std/fs/struct.File.html
//! [`TcpStream`]: ../../std/net/struct.TcpStream.html
//! [`Vec<T>`]: crate::vec::Vec
//! [`io::Result`]: self::Result
//! [`?` operator]: ../../book/appendix-02-operators.html
mod buf_read;
mod buffered;
mod copy;
mod cursor;
mod error;
mod impls;
#[unstable(feature = "alloc_io", issue = "154046")]
pub mod prelude;
mod read;
mod util;
#[unstable(feature = "raw_os_error_ty", issue = "107792")]
pub use core::io::RawOsError;
#[unstable(feature = "io_const_error_internals", issue = "none")]
pub use core::io::SimpleMessage;
#[unstable(feature = "io_const_error", issue = "133448")]
pub use core::io::const_error;
#[unstable(feature = "core_io_borrowed_buf", issue = "117693")]
pub use core::io::{BorrowedBuf, BorrowedCursor};
#[unstable(feature = "alloc_io", issue = "154046")]
pub use core::io::{
Chain, Cursor, Empty, Error, ErrorKind, IoSlice, IoSliceMut, Repeat, Result, Seek, SeekFrom,
Sink, Take, Write, empty, repeat, sink,
};
#[doc(hidden)]
#[unstable(feature = "core_io_internals", reason = "exposed only for libstd", issue = "none")]
pub use core::io::{IoHandle, OsFunctions, default_write_vectored, stream_len_default};
use core::io::{
SizeHint, WriteThroughCursor, chain, slice_write, slice_write_all, slice_write_all_vectored,
slice_write_vectored, take,
};
use self::read::{append_to_string, default_read_buf_exact, default_read_exact};
use self::util::{bytes, lines, split, uninlined_slow_read_byte};
#[unstable(feature = "alloc_io", issue = "154046")]
pub use self::{
buf_read::BufRead,
buffered::{BufReader, BufWriter, IntoInnerError, LineWriter, WriterPanicked},
copy::copy,
read::{Read, read_to_string},
util::{Bytes, Lines, Split},
};
#[doc(hidden)]
#[unstable(feature = "core_io_internals", reason = "exposed only for libstd", issue = "none")]
pub use self::{
copy::{CopyState, SpecCopy},
read::{
DEFAULT_BUF_SIZE, default_read_buf, default_read_to_end, default_read_to_string,
default_read_vectored,
},
util::SpecReadByte,
};