Initial vendor packages
Signed-off-by: Valentin Popov <valentin@popov.link>
This commit is contained in:
234
vendor/flate2/src/lib.rs
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234
vendor/flate2/src/lib.rs
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//! A DEFLATE-based stream compression/decompression library
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//!
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//! This library provides support for compression and decompression of
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//! DEFLATE-based streams:
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//!
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//! * the DEFLATE format itself
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//! * the zlib format
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//! * gzip
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//!
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//! These three formats are all closely related and largely only differ in their
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//! headers/footers. This crate has three types in each submodule for dealing
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//! with these three formats.
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//!
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//! # Implementation
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//!
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//! In addition to supporting three formats, this crate supports several different
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//! backends, controlled through this crate's features:
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//!
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//! * `default`, or `rust_backend` - this implementation uses the `miniz_oxide`
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//! crate which is a port of `miniz.c` (below) to Rust. This feature does not
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//! require a C compiler and only requires Rust code.
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//!
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//! * `zlib` - this feature will enable linking against the `libz` library, typically found on most
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//! Linux systems by default. If the library isn't found to already be on the system it will be
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//! compiled from source (this is a C library).
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//!
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//! There's various tradeoffs associated with each implementation, but in general you probably
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//! won't have to tweak the defaults. The default choice is selected to avoid the need for a C
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//! compiler at build time. `zlib-ng-compat` is useful if you're using zlib for compatibility but
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//! want performance via zlib-ng's zlib-compat mode. `zlib` is useful if something else in your
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//! dependencies links the original zlib so you cannot use zlib-ng-compat. The compression ratios
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//! and performance of each of these feature should be roughly comparable, but you'll likely want
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//! to run your own tests if you're curious about the performance.
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//!
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//! # Organization
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//!
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//! This crate consists mainly of three modules, [`read`], [`write`], and
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//! [`bufread`]. Each module contains a number of types used to encode and
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//! decode various streams of data.
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//!
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//! All types in the [`write`] module work on instances of [`Write`][write],
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//! whereas all types in the [`read`] module work on instances of
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//! [`Read`][read] and [`bufread`] works with [`BufRead`][bufread]. If you
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//! are decoding directly from a `&[u8]`, use the [`bufread`] types.
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//!
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//! ```
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//! use flate2::write::GzEncoder;
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//! use flate2::Compression;
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//! use std::io;
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//! use std::io::prelude::*;
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//!
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//! # fn main() { let _ = run(); }
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//! # fn run() -> io::Result<()> {
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//! let mut encoder = GzEncoder::new(Vec::new(), Compression::default());
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//! encoder.write_all(b"Example")?;
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//! # Ok(())
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//! # }
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//! ```
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//!
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//!
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//! Other various types are provided at the top-level of the crate for
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//! management and dealing with encoders/decoders. Also note that types which
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//! operate over a specific trait often implement the mirroring trait as well.
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//! For example a `flate2::read::DeflateDecoder<T>` *also* implements the
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//! `Write` trait if `T: Write`. That is, the "dual trait" is forwarded directly
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//! to the underlying object if available.
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//!
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//! # About multi-member Gzip files
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//!
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//! While most `gzip` files one encounters will have a single *member* that can be read
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//! with the [`GzDecoder`], there may be some files which have multiple members.
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//!
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//! A [`GzDecoder`] will only read the first member of gzip data, which may unexpectedly
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//! provide partial results when a multi-member gzip file is encountered. `GzDecoder` is appropriate
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//! for data that is designed to be read as single members from a multi-member file. `bufread::GzDecoder`
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//! and `write::GzDecoder` also allow non-gzip data following gzip data to be handled.
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//!
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//! The [`MultiGzDecoder`] on the other hand will decode all members of a `gzip` file
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//! into one consecutive stream of bytes, which hides the underlying *members* entirely.
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//! If a file contains contains non-gzip data after the gzip data, MultiGzDecoder will
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//! emit an error after decoding the gzip data. This behavior matches the `gzip`,
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//! `gunzip`, and `zcat` command line tools.
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//!
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//! [`read`]: read/index.html
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//! [`bufread`]: bufread/index.html
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//! [`write`]: write/index.html
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//! [read]: https://doc.rust-lang.org/std/io/trait.Read.html
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//! [write]: https://doc.rust-lang.org/std/io/trait.Write.html
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//! [bufread]: https://doc.rust-lang.org/std/io/trait.BufRead.html
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//! [`GzDecoder`]: read/struct.GzDecoder.html
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//! [`MultiGzDecoder`]: read/struct.MultiGzDecoder.html
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#![doc(html_root_url = "https://docs.rs/flate2/0.2")]
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#![deny(missing_docs)]
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#![deny(missing_debug_implementations)]
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#![allow(trivial_numeric_casts)]
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#![cfg_attr(test, deny(warnings))]
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#![cfg_attr(docsrs, feature(doc_auto_cfg))]
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#[cfg(not(feature = "any_impl",))]
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compile_error!("You need to choose a zlib backend");
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pub use crate::crc::{Crc, CrcReader, CrcWriter};
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pub use crate::gz::GzBuilder;
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pub use crate::gz::GzHeader;
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pub use crate::mem::{Compress, CompressError, Decompress, DecompressError, Status};
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pub use crate::mem::{FlushCompress, FlushDecompress};
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mod bufreader;
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mod crc;
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mod deflate;
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mod ffi;
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mod gz;
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mod mem;
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mod zio;
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mod zlib;
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/// Types which operate over [`Read`] streams, both encoders and decoders for
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/// various formats.
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///
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/// Note that the `read` decoder types may read past the end of the compressed
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/// data while decoding. If the caller requires subsequent reads to start
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/// immediately following the compressed data wrap the `Read` type in a
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/// [`BufReader`] and use the `BufReader` with the equivalent decoder from the
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/// `bufread` module and also for the subsequent reads.
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///
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/// [`Read`]: https://doc.rust-lang.org/std/io/trait.Read.html
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/// [`BufReader`]: https://doc.rust-lang.org/std/io/struct.BufReader.html
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pub mod read {
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pub use crate::deflate::read::DeflateDecoder;
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pub use crate::deflate::read::DeflateEncoder;
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pub use crate::gz::read::GzDecoder;
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pub use crate::gz::read::GzEncoder;
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pub use crate::gz::read::MultiGzDecoder;
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pub use crate::zlib::read::ZlibDecoder;
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pub use crate::zlib::read::ZlibEncoder;
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}
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/// Types which operate over [`Write`] streams, both encoders and decoders for
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/// various formats.
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///
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/// [`Write`]: https://doc.rust-lang.org/std/io/trait.Write.html
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pub mod write {
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pub use crate::deflate::write::DeflateDecoder;
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pub use crate::deflate::write::DeflateEncoder;
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pub use crate::gz::write::GzDecoder;
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pub use crate::gz::write::GzEncoder;
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pub use crate::gz::write::MultiGzDecoder;
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pub use crate::zlib::write::ZlibDecoder;
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pub use crate::zlib::write::ZlibEncoder;
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}
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/// Types which operate over [`BufRead`] streams, both encoders and decoders for
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/// various formats.
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///
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/// [`BufRead`]: https://doc.rust-lang.org/std/io/trait.BufRead.html
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pub mod bufread {
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pub use crate::deflate::bufread::DeflateDecoder;
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pub use crate::deflate::bufread::DeflateEncoder;
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pub use crate::gz::bufread::GzDecoder;
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pub use crate::gz::bufread::GzEncoder;
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pub use crate::gz::bufread::MultiGzDecoder;
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pub use crate::zlib::bufread::ZlibDecoder;
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pub use crate::zlib::bufread::ZlibEncoder;
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}
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fn _assert_send_sync() {
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fn _assert_send_sync<T: Send + Sync>() {}
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_assert_send_sync::<read::DeflateEncoder<&[u8]>>();
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_assert_send_sync::<read::DeflateDecoder<&[u8]>>();
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_assert_send_sync::<read::ZlibEncoder<&[u8]>>();
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_assert_send_sync::<read::ZlibDecoder<&[u8]>>();
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_assert_send_sync::<read::GzEncoder<&[u8]>>();
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_assert_send_sync::<read::GzDecoder<&[u8]>>();
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_assert_send_sync::<read::MultiGzDecoder<&[u8]>>();
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_assert_send_sync::<write::DeflateEncoder<Vec<u8>>>();
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_assert_send_sync::<write::DeflateDecoder<Vec<u8>>>();
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_assert_send_sync::<write::ZlibEncoder<Vec<u8>>>();
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_assert_send_sync::<write::ZlibDecoder<Vec<u8>>>();
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_assert_send_sync::<write::GzEncoder<Vec<u8>>>();
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_assert_send_sync::<write::GzDecoder<Vec<u8>>>();
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}
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/// When compressing data, the compression level can be specified by a value in
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/// this struct.
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#[derive(Copy, Clone, PartialEq, Eq, Debug)]
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pub struct Compression(u32);
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impl Compression {
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/// Creates a new description of the compression level with an explicitly
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/// specified integer.
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///
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/// The integer here is typically on a scale of 0-9 where 0 means "no
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/// compression" and 9 means "take as long as you'd like".
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pub const fn new(level: u32) -> Compression {
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Compression(level)
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}
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/// No compression is to be performed, this may actually inflate data
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/// slightly when encoding.
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pub const fn none() -> Compression {
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Compression(0)
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}
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/// Optimize for the best speed of encoding.
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pub const fn fast() -> Compression {
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Compression(1)
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}
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/// Optimize for the size of data being encoded.
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pub const fn best() -> Compression {
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Compression(9)
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}
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/// Returns an integer representing the compression level, typically on a
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/// scale of 0-9
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pub fn level(&self) -> u32 {
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self.0
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}
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}
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impl Default for Compression {
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fn default() -> Compression {
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Compression(6)
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}
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}
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#[cfg(test)]
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fn random_bytes() -> impl Iterator<Item = u8> {
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use rand::Rng;
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use std::iter;
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iter::repeat(()).map(|_| rand::thread_rng().gen())
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}
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