##// END OF EJS Templates
rhg: add support for narrow clones and sparse checkouts...
rhg: add support for narrow clones and sparse checkouts This adds a minimal support that can be implemented without parsing the narrowspec. We can parse the narrowspec and add support for more operations later. The reason we need so few code changes is as follows: Most operations need no special treatment of sparse because some of them only read dirstate (`rhg files` without `-r`), which bakes in the filtering, some of them only read store (`rhg files -r`, `rhg cat`), and some of them read no data at all (`rhg root`, `rhg debugrequirements`). `status` is the command that might care about sparse, so we just disable rhg on it. For narrow clones, `rhg files` clearly needs the narrowspec to work correctly, so we fall back. `rhg cat` seems to work consistently with `hg cat` if the file exists. If the file is hidden by narrow spec, the error message is different and confusing, so that's something that we should improve in follow-up patches. Differential Revision: https://phab.mercurial-scm.org/D11764

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main.rs
39 lines | 1.4 KiB | application/rls-services+xml | RustLexer
use pyembed::MainPythonInterpreter;
// Include an auto-generated file containing the default
// `pyembed::PythonConfig` derived by the PyOxidizer configuration file.
//
// If you do not want to use PyOxidizer to generate this file, simply
// remove this line and instantiate your own instance of
// `pyembed::PythonConfig`.
include!(env!("PYOXIDIZER_DEFAULT_PYTHON_CONFIG_RS"));
fn main() {
// The following code is in a block so the MainPythonInterpreter is
// destroyed in an orderly manner, before process exit.
let code = {
// Load the default Python configuration as derived by the PyOxidizer
// config file used at build time.
let config = default_python_config();
// Construct a new Python interpreter using that config, handling any
// errors from construction.
match MainPythonInterpreter::new(config) {
Ok(mut interp) => {
// And run it using the default run configuration as specified
// by the configuration. If an uncaught Python
// exception is raised, handle it.
// This includes the special SystemExit, which is a request to
// terminate the process.
interp.run_as_main()
}
Err(msg) => {
eprintln!("{}", msg);
1
}
}
};
// And exit the process according to code execution results.
std::process::exit(code);
}