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automation: support building Windows wheels for Python 3.7 and 3.8...
automation: support building Windows wheels for Python 3.7 and 3.8 The time has come to support Python 3 on Windows. Let's teach our automation code to produce Windows wheels for Python 3.7 and 3.8. We could theoretically support 3.5 and 3.6. But I don't think it is worth it. People on Windows generally use the Mercurial installers, not wheels. And I'd prefer we limit variability and not have to worry about supporting earlier Python versions if it can be helped. As part of this, we change the invocation of pip to `python.exe -m pip`, as this is what is being recommended in Python docs these days. And it seemed to be required to avoid a weird build error. Why, I'm not sure. But it looks like pip was having trouble finding a Visual Studio files when invoked as `pip.exe` but not when using `python.exe -m pip`. Who knows. Differential Revision: https://phab.mercurial-scm.org/D8478

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index.rs
95 lines | 2.4 KiB | application/rls-services+xml | RustLexer
// Copyright 2019-2020 Georges Racinet <georges.racinet@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.
//! Minimal `RevlogIndex`, readable from standard Mercurial file format
use hg::*;
use memmap::*;
use std::fs::File;
use std::ops::Deref;
use std::path::Path;
use std::slice;
pub struct Index {
data: Box<dyn Deref<Target = [IndexEntry]> + Send>,
}
/// A fixed sized index entry. All numbers are big endian
#[repr(C)]
pub struct IndexEntry {
not_used_yet: [u8; 24],
p1: Revision,
p2: Revision,
node: Node,
unused_node: [u8; 12],
}
pub const INDEX_ENTRY_SIZE: usize = 64;
impl IndexEntry {
fn parents(&self) -> [Revision; 2] {
[Revision::from_be(self.p1), Revision::from_be(self.p1)]
}
}
impl RevlogIndex for Index {
fn len(&self) -> usize {
self.data.len()
}
fn node(&self, rev: Revision) -> Option<&Node> {
if rev == NULL_REVISION {
return None;
}
let i = rev as usize;
if i >= self.len() {
None
} else {
Some(&self.data[i].node)
}
}
}
impl Graph for &Index {
fn parents(&self, rev: Revision) -> Result<[Revision; 2], GraphError> {
let [p1, p2] = (*self).data[rev as usize].parents();
let len = (*self).len();
if p1 < NULL_REVISION
|| p2 < NULL_REVISION
|| p1 as usize >= len
|| p2 as usize >= len
{
return Err(GraphError::ParentOutOfRange(rev));
}
Ok([p1, p2])
}
}
struct IndexMmap(Mmap);
impl Deref for IndexMmap {
type Target = [IndexEntry];
fn deref(&self) -> &[IndexEntry] {
let ptr = self.0.as_ptr() as *const IndexEntry;
// Any misaligned data will be ignored.
debug_assert_eq!(
self.0.len() % std::mem::align_of::<IndexEntry>(),
0,
"Misaligned data in mmap"
);
unsafe { slice::from_raw_parts(ptr, self.0.len() / INDEX_ENTRY_SIZE) }
}
}
impl Index {
pub fn load_mmap(path: impl AsRef<Path>) -> Self {
let file = File::open(path).unwrap();
let msg = "Index file is missing, or missing permission";
let mmap = unsafe { MmapOptions::new().map(&file) }.expect(msg);
Self {
data: Box::new(IndexMmap(mmap)),
}
}
}