##// END OF EJS Templates
typing: attempt to remove @overloads in the platform module for stdlib methods...
typing: attempt to remove @overloads in the platform module for stdlib methods This is mostly successful, as examining util.pyi, posix.pyi, and windows.pyi after a pytype run shows that the type overloads for `oslink`, `readlink`, `removedirs`, `rename`, `split`, and `unlink` have been removed. (Some of these still have an @overload, but the differences are the variable names, not the types.) However, @overloads remain for `abspath` and `normpath` for some reason. It's useful to redefine these methods for the type checking phase because in addition to excluding str and PathLike variants, some of these functions have optional args in stdlib that aren't implemented in the custom implementation on Windows, and we want the type checking to flag that instead of assuming it's an allowable overload everywhere. One last quirk I noticed that I can't explain- `pycompat.TYPE_CHECKING` is always False, so the conditionals need to check `typing.TYPE_CHECKING` directly. I tried dropping the custom code for assigning `pycompat.TYPE_CHECKING` and simply did `from typing import TYPE_CHECKING` directly in pycompat.py, and used `pycompat.TYPE_CHECKING` for the conditional here... and pytype complained that `pycompat` doesn't have the `TYPE_CHECKING` variable.

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lib.rs
139 lines | 4.1 KiB | application/rls-services+xml | RustLexer
// Copyright 2018-2020 Georges Racinet <georges.racinet@octobus.net>
// and Mercurial contributors
//
// This software may be used and distributed according to the terms of the
// GNU General Public License version 2 or any later version.
mod ancestors;
pub mod dagops;
pub mod errors;
pub mod narrow;
pub mod sparse;
pub use ancestors::{AncestorsIterator, MissingAncestors};
pub mod dirstate;
pub mod dirstate_tree;
pub mod discovery;
pub mod exit_codes;
pub mod requirements;
pub mod testing; // unconditionally built, for use from integration tests
pub use dirstate::{
dirs_multiset::{DirsMultiset, DirsMultisetIter},
status::{
BadMatch, BadType, DirstateStatus, HgPathCow, StatusError,
StatusOptions,
},
DirstateEntry, DirstateParents, EntryState,
};
pub mod copy_tracing;
mod filepatterns;
pub mod matchers;
pub mod repo;
pub mod revlog;
pub use revlog::*;
pub mod config;
pub mod lock;
pub mod logging;
pub mod operations;
pub mod revset;
pub mod utils;
pub mod vfs;
use crate::utils::hg_path::{HgPathBuf, HgPathError};
pub use filepatterns::{
parse_pattern_syntax, read_pattern_file, IgnorePattern,
PatternFileWarning, PatternSyntax,
};
use std::collections::HashMap;
use std::fmt;
use twox_hash::RandomXxHashBuilder64;
/// This is a contract between the `micro-timer` crate and us, to expose
/// the `log` crate as `crate::log`.
use log;
pub type LineNumber = usize;
/// Rust's default hasher is too slow because it tries to prevent collision
/// attacks. We are not concerned about those: if an ill-minded person has
/// write access to your repository, you have other issues.
pub type FastHashMap<K, V> = HashMap<K, V, RandomXxHashBuilder64>;
// TODO: should this be the default `FastHashMap` for all of hg-core, not just
// dirstate_tree? How does XxHash compare with AHash, hashbrown’s default?
pub type FastHashbrownMap<K, V> =
hashbrown::HashMap<K, V, RandomXxHashBuilder64>;
#[derive(Debug, PartialEq)]
pub enum DirstateMapError {
PathNotFound(HgPathBuf),
EmptyPath,
InvalidPath(HgPathError),
}
impl fmt::Display for DirstateMapError {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
match self {
DirstateMapError::PathNotFound(_) => {
f.write_str("expected a value, found none")
}
DirstateMapError::EmptyPath => {
f.write_str("Overflow in dirstate.")
}
DirstateMapError::InvalidPath(path_error) => path_error.fmt(f),
}
}
}
#[derive(Debug, derive_more::From)]
pub enum DirstateError {
Map(DirstateMapError),
Common(errors::HgError),
}
impl fmt::Display for DirstateError {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
match self {
DirstateError::Map(error) => error.fmt(f),
DirstateError::Common(error) => error.fmt(f),
}
}
}
#[derive(Debug, derive_more::From)]
pub enum PatternError {
#[from]
Path(HgPathError),
UnsupportedSyntax(String),
UnsupportedSyntaxInFile(String, String, usize),
TooLong(usize),
#[from]
IO(std::io::Error),
/// Needed a pattern that can be turned into a regex but got one that
/// can't. This should only happen through programmer error.
NonRegexPattern(IgnorePattern),
}
impl fmt::Display for PatternError {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
match self {
PatternError::UnsupportedSyntax(syntax) => {
write!(f, "Unsupported syntax {}", syntax)
}
PatternError::UnsupportedSyntaxInFile(syntax, file_path, line) => {
write!(
f,
"{}:{}: unsupported syntax {}",
file_path, line, syntax
)
}
PatternError::TooLong(size) => {
write!(f, "matcher pattern is too long ({} bytes)", size)
}
PatternError::IO(error) => error.fmt(f),
PatternError::Path(error) => error.fmt(f),
PatternError::NonRegexPattern(pattern) => {
write!(f, "'{:?}' cannot be turned into a regex", pattern)
}
}
}
}