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rust-pyo3: retrieving the InnerRevlog of hg-cpython...
rust-pyo3: retrieving the InnerRevlog of hg-cpython This allows PyO3-based code to use the InnerRevlog, access its shared data (core InnerRevlog), which will then allow, e.g., to retrieve references on the core Index. On the `hg-cpython` (`rusthg` crate, `rustext` Python extension module), we had to also build as a Rust library, and open up some accesses (see notably the public accessor for `inner`, the core `InnerRevlog`). Retrieving the Rust struct underlying a Python object defined by another extension module written in Rust is tricky because the Python type objects are duplicated in the extension modules, leading to failure of the normal type checking. See the doc-comment of `convert_cpython::extract_inner_revlog` for a complete explanation. To solve this, we import the Python type object of `rustext` (defined by `hg-cpython`) and perform a manual check. Checking the Python type is necessary, as PyO3 documentation clearly state that downcasting an object that has not the proper type is Undefined Behaviour. At this point, we do not have conversion facilities for exceptions (`PyErr` on both sides), hence the remaining unwraps).

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bdiff.py
104 lines | 2.8 KiB | text/x-python | PythonLexer
# bdiff.py - CFFI implementation of bdiff.c
#
# Copyright 2016 Maciej Fijalkowski <fijall@gmail.com>
#
# This software may be used and distributed according to the terms of the
# GNU General Public License version 2 or any later version.
from __future__ import annotations
import struct
import typing
from typing import (
List,
Optional,
Tuple,
)
from ..pure.bdiff import *
from ..interfaces import (
modules as intmod,
)
from . import _bdiff # pytype: disable=import-error
ffi = _bdiff.ffi
lib = _bdiff.lib
def blocks(sa: bytes, sb: bytes) -> List[Tuple[int, int, int, int]]:
a = ffi.new("struct bdiff_line**")
b = ffi.new("struct bdiff_line**")
ac = ffi.new("char[]", bytes(sa))
bc = ffi.new("char[]", bytes(sb))
l = ffi.new("struct bdiff_hunk*")
try:
an = lib.bdiff_splitlines(ac, len(sa), a)
bn = lib.bdiff_splitlines(bc, len(sb), b)
if not a[0] or not b[0]:
raise MemoryError
count = lib.bdiff_diff(a[0], an, b[0], bn, l)
if count < 0:
raise MemoryError
rl = [(0, 0, 0, 0)] * count
h = l.next
i = 0
while h:
rl[i] = (h.a1, h.a2, h.b1, h.b2)
h = h.next
i += 1
finally:
lib.free(a[0])
lib.free(b[0])
lib.bdiff_freehunks(l.next)
return rl
def bdiff(sa: bytes, sb: bytes) -> bytes:
a = ffi.new("struct bdiff_line**")
b = ffi.new("struct bdiff_line**")
ac = ffi.new("char[]", bytes(sa))
bc = ffi.new("char[]", bytes(sb))
l = ffi.new("struct bdiff_hunk*")
try:
an = lib.bdiff_splitlines(ac, len(sa), a)
bn = lib.bdiff_splitlines(bc, len(sb), b)
if not a[0] or not b[0]:
raise MemoryError
count = lib.bdiff_diff(a[0], an, b[0], bn, l)
if count < 0:
raise MemoryError
rl = []
h = l.next
la = lb = 0
while h:
if h.a1 != la or h.b1 != lb:
lgt = (b[0] + h.b1).l - (b[0] + lb).l
rl.append(
struct.pack(
b">lll",
(a[0] + la).l - a[0].l,
(a[0] + h.a1).l - a[0].l,
lgt,
)
)
rl.append(bytes(ffi.buffer((b[0] + lb).l, lgt)))
la = h.a2
lb = h.b2
h = h.next
finally:
lib.free(a[0])
lib.free(b[0])
lib.bdiff_freehunks(l.next)
return b"".join(rl)
# In order to adhere to the module protocol, these functions must be visible to
# the type checker, though they aren't actually implemented by this
# implementation of the module protocol. Callers are responsible for
# checking that the implementation is available before using them.
if typing.TYPE_CHECKING:
xdiffblocks: Optional[intmod.BDiffBlocksFnc] = None