##// END OF EJS Templates
rhg: Don’t compare ambiguous files one byte at a time...
rhg: Don’t compare ambiguous files one byte at a time Even though the use of `BufReader` reduces the number of syscalls to read the file from disk, `.bytes()` yields a separate `Result` for every byte. Creating those results and dispatching on them is most likely costly. Instead, this commit opts for simplicity by reading the entire file into memory and comparing a single pair of byte strings. Note that memory already needs to contain the entire previous contents of the file, as read from the filelog. So with an extremely large file this doubles memory use but does not make it grow by orders of magnitude. At first I wrote code that still avoids reading the entire file into memory and compares one buffer at a time with `BufReader`. Find this code below for posterity. However its correctness is subtle. I ended up preferring the simplicity of the obviously-correct single comparison. ```rust let mut reader = BufReader::new(fobj); let mut expected = &contents_in_p1[..]; loop { let buf = reader.fill_buf().when_reading_file(&fs_path)?; if buf.is_empty() { // Found EOF return Ok(expected.is_empty()); } else if let Some(rest) = expected.drop_prefix(buf) { // What we read so far matches the expected content, continue reading let buf_len = buf.len(); reader.consume(buf_len); expected = rest } else { // Found different content return Ok(false); } } ``` Differential Revision: https://phab.mercurial-scm.org/D11412

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pybytes_deref.rs
56 lines | 1.5 KiB | application/rls-services+xml | RustLexer
use cpython::{PyBytes, Python};
use stable_deref_trait::StableDeref;
/// Safe abstraction over a `PyBytes` together with the `&[u8]` slice
/// that borrows it. Implements `Deref<Target = [u8]>`.
///
/// Calling `PyBytes::data` requires a GIL marker but we want to access the
/// data in a thread that (ideally) does not need to acquire the GIL.
/// This type allows separating the call an the use.
///
/// It also enables using a (wrapped) `PyBytes` in GIL-unaware generic code.
pub struct PyBytesDeref {
#[allow(unused)]
keep_alive: PyBytes,
/// Borrows the buffer inside `self.keep_alive`,
/// but the borrow-checker cannot express self-referential structs.
data: *const [u8],
}
impl PyBytesDeref {
pub fn new(py: Python, bytes: PyBytes) -> Self {
Self {
data: bytes.data(py),
keep_alive: bytes,
}
}
pub fn unwrap(self) -> PyBytes {
self.keep_alive
}
}
impl std::ops::Deref for PyBytesDeref {
type Target = [u8];
fn deref(&self) -> &[u8] {
// Safety: the raw pointer is valid as long as the PyBytes is still
// alive, and the returned slice borrows `self`.
unsafe { &*self.data }
}
}
unsafe impl StableDeref for PyBytesDeref {}
fn require_send<T: Send>() {}
#[allow(unused)]
fn static_assert_pybytes_is_send() {
require_send::<PyBytes>;
}
// Safety: PyBytes is Send. Raw pointers are not by default,
// but here sending one to another thread is fine since we ensure it stays
// valid.
unsafe impl Send for PyBytesDeref {}