##// END OF EJS Templates
rust-changelog: introducing an intermediate `ChangelogEntry`...
rust-changelog: introducing an intermediate `ChangelogEntry` Before this change, client code needing to extract, e.g, the Node ID and the description from a changeset had no other choice than calling both `entry_for_rev()` and `data_for_rev()`. This duplicates some (limited) computation, and more importantly imposes bad hygiene for client code: at some point of developement, the client code would have to pass over both entry and data in its internal layers, which at some point of development would raise the question whether they are consistent. We introduce the intermediate `ChangelogEntry` from which both conversion to the generic `RevlogEntry` and extraction of `ChangelogRevisionData` are possible. It might grow some convenience methods in the future. We keep the `data_for_rev()` method of `Changelog` for compatibility, pointing users at the more powerful alternative.

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copymap.rs
122 lines | 3.3 KiB | application/rls-services+xml | RustLexer
// copymap.rs
//
// Copyright 2019 Raphaël Gomès <rgomes@octobus.net>
//
// This software may be used and distributed according to the terms of the
// GNU General Public License version 2 or any later version.
//! Bindings for `hg::dirstate::dirstate_map::CopyMap` provided by the
//! `hg-core` package.
use cpython::{
PyBytes, PyClone, PyDict, PyObject, PyResult, Python, UnsafePyLeaked,
};
use std::cell::RefCell;
use crate::dirstate::dirstate_map::v2_error;
use crate::dirstate::dirstate_map::DirstateMap;
use hg::dirstate::CopyMapIter;
use hg::dirstate_tree::on_disk::DirstateV2ParseError;
use hg::utils::hg_path::HgPath;
py_class!(pub class CopyMap |py| {
data dirstate_map: DirstateMap;
def __getitem__(&self, key: PyObject) -> PyResult<PyBytes> {
(*self.dirstate_map(py)).copymapgetitem(py, key)
}
def __len__(&self) -> PyResult<usize> {
self.dirstate_map(py).copymaplen(py)
}
def __contains__(&self, key: PyObject) -> PyResult<bool> {
self.dirstate_map(py).copymapcontains(py, key)
}
def get(
&self,
key: PyObject,
default: Option<PyObject> = None
) -> PyResult<Option<PyObject>> {
self.dirstate_map(py).copymapget(py, key, default)
}
def pop(
&self,
key: PyObject,
default: Option<PyObject> = None
) -> PyResult<Option<PyObject>> {
self.dirstate_map(py).copymappop(py, key, default)
}
def __iter__(&self) -> PyResult<CopyMapKeysIterator> {
self.dirstate_map(py).copymapiter(py)
}
// Python's `dict()` builtin works with either a subclass of dict
// or an abstract mapping. Said mapping needs to implement `__getitem__`
// and `keys`.
def keys(&self) -> PyResult<CopyMapKeysIterator> {
self.dirstate_map(py).copymapiter(py)
}
def items(&self) -> PyResult<CopyMapItemsIterator> {
self.dirstate_map(py).copymapitemsiter(py)
}
def iteritems(&self) -> PyResult<CopyMapItemsIterator> {
self.dirstate_map(py).copymapitemsiter(py)
}
def __setitem__(
&self,
key: PyObject,
item: PyObject
) -> PyResult<()> {
self.dirstate_map(py).copymapsetitem(py, key, item)?;
Ok(())
}
def copy(&self) -> PyResult<PyDict> {
self.dirstate_map(py).copymapcopy(py)
}
});
impl CopyMap {
pub fn from_inner(py: Python, dm: DirstateMap) -> PyResult<Self> {
Self::create_instance(py, dm)
}
fn translate_key(
py: Python,
res: Result<(&HgPath, &HgPath), DirstateV2ParseError>,
) -> PyResult<Option<PyBytes>> {
let (k, _v) = res.map_err(|e| v2_error(py, e))?;
Ok(Some(PyBytes::new(py, k.as_bytes())))
}
fn translate_key_value(
py: Python,
res: Result<(&HgPath, &HgPath), DirstateV2ParseError>,
) -> PyResult<Option<(PyBytes, PyBytes)>> {
let (k, v) = res.map_err(|e| v2_error(py, e))?;
Ok(Some((
PyBytes::new(py, k.as_bytes()),
PyBytes::new(py, v.as_bytes()),
)))
}
}
py_shared_iterator!(
CopyMapKeysIterator,
UnsafePyLeaked<CopyMapIter<'static>>,
CopyMap::translate_key,
Option<PyBytes>
);
py_shared_iterator!(
CopyMapItemsIterator,
UnsafePyLeaked<CopyMapIter<'static>>,
CopyMap::translate_key_value,
Option<(PyBytes, PyBytes)>
);