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## Summary
Currently, `uv` refuses to install anything on GraalPy. This is
currently blocking GraalPy testing with cibuildwheel, since manylinux
includes both `uv` and `graalpy` (but doesn't test with `uv`), whereas
cibuildwheel defaults to `uv`. See e.g.
https://github.com/pypa/cibuildwheel/actions/runs/9956369360/job/27506182952?pr=1538
where it gives
```
+ python -m build /project/sample_proj --wheel --outdir=/tmp/cibuildwheel/built_wheel --installer=uv
* Creating isolated environment: venv+uv...
* Using external uv from /usr/local/bin/uv
* Installing packages in isolated environment:
- setuptools >= 40.8.0
> /usr/local/bin/uv pip install "setuptools >= 40.8.0"
< error: Unknown implementation: `graalpy`
```
## Test Plan
I simply based the GraalPy support on PyPy and added some small tests.
I'm open to discussing how to test this. GraalPy is available for
manylinux images and with setup-python, so we should be able to add
tests against it to the CI. I locally confirmed by installing `uv` into
a GraalPy venv and then trying things like `uv pip install Pillow` and
testing those extensions.
## Summary
This approach is based on https://github.com/PrefectHQ/docs. Rather than
publishing docs in the uv repo, we push to an independent repo that's
used solely to house the docs. In Prefect's case, this allows them to
publish versioned documentation (we should do that too). For us, though,
the benefit is that we can publish the Ruff and uv docs as a single site
(docs.astral.sh).
Prefect clones the source repo and builds the documentation from the
`docs` repo (i.e., the action runs in the `docs` repo). In our case,
I've instead set it up such that the action runs in `uv` (and later in
`ruff` too), clones the `docs` repo, and puts up a PR in that separate
repo. Because of these requirements, we have to use a PAT rather than a
deploy key (as PATs cannot do GitHub-specific things like create PRs --
they can only operate over the Git CLI).
See: https://github.com/astral-sh/docs/pull/2.
## Summary
We want to have consistency between the Ruff and uv documentation for
the upcoming release. We don't love the Ruff docs, but we'd rather have
consistency and then work towards improving them both, rather than have
two very-different documentation sites that both have weaknesses.
The setup here is simpler than in Ruff as: (1) we don't yet generate any
docs from Rust and (2) we don't try to reuse the README in the uv
documentation (which adds a lot of complexity in Ruff). So the change
here is mostly a 1-to-1 port to MkDocs.
## Test Plan

## Summary
This PR adds a new job to test that PyPy venvs are correctly created on
Windows and they contain all the expected binaries.
## Test Plan
Just let CI run.
## Summary
Should fix#2092.
This PR changes `uv venv` so it also creates symlinks to `pypy` on Unix
and copies executables on Windows when creating a new environment using
PyPy.
I found a bit of discrepancy between creation of a venv using `python`
and `uv`, as using `python` brings all the executables with it. While
`uv` brings only those without any version number, at least on Windows.
The behaviour is different on Unix as we take the versioned symlinks
too.
Some examples below.
`python -m venv` generates the following `Scripts` folder.
```
Mode LastWriteTime Length Name
---- ------------- ------ ----
-a---- 7/14/2024 15:41 2031 activate
-a---- 7/14/2024 15:41 1029 activate.bat
-a---- 7/14/2024 15:41 9033 Activate.ps1
-a---- 7/14/2024 15:41 393 deactivate.bat
-a---- 7/14/2024 15:40 27648 libffi-8.dll
-a---- 7/14/2024 15:41 44290560 libpypy3.10-c.dll
-a---- 7/14/2024 15:41 108424 pip.exe
-a---- 7/14/2024 15:41 108424 pip3.10.exe
-a---- 7/14/2024 15:41 108424 pip3.exe
-a---- 7/14/2024 15:41 79360 pypy.exe
-a---- 7/14/2024 15:41 79360 pypy3.10.exe
-a---- 7/14/2024 15:41 79360 pypy3.10w.exe
-a---- 7/14/2024 15:41 79360 pypy3.exe
-a---- 7/14/2024 15:41 79360 pypyw.exe
-a---- 7/14/2024 15:41 79360 python.exe
-a---- 7/14/2024 15:41 79360 python3.10.exe
-a---- 7/14/2024 15:41 79360 python3.exe
-a---- 7/14/2024 15:41 79360 pythonw.exe
```
`uv venv` instead generates this.
```
-a---- 7/14/2024 16:27 3360 activate
-a---- 7/14/2024 16:27 2251 activate.bat
-a---- 7/14/2024 16:27 2627 activate.csh
-a---- 7/14/2024 16:27 4191 activate.fish
-a---- 7/14/2024 16:27 3875 activate.nu
-a---- 7/14/2024 16:27 2766 activate.ps1
-a---- 7/14/2024 16:27 2378 activate_this.py
-a---- 7/14/2024 16:27 1728 deactivate.bat
-a---- 7/13/2024 19:19 27648 libffi-8.dll
-a---- 7/13/2024 19:19 44290560 libpypy3.10-c.dll
-a---- 7/14/2024 16:27 1215 pydoc.bat
-a---- 7/13/2024 19:19 79360 pypy.exe
-a---- 7/13/2024 19:19 79360 pypyw.exe
-a---- 7/13/2024 19:19 79360 python.exe
-a---- 7/13/2024 19:19 79360 pythonw.exe
```
## Test Plan
To verify the correct behaviour:
1. Download and install PyPy from [official
website](https://www.pypy.org/download.html)
2. Call `uv venv -p <path_to_pypy_>`
3. Run `.\.venv\Scripts\activate` on Windows or
`./.venv/Scripts/activate` on Unix
4. Run `pypy`
I thought of writing some automated tests but I couldn't rely on `uv
python install` command to install PyPy as it's not in the list of
installable Python builds.
## Summary
Move completely off tokio's multi-threaded runtime. We've slowly been
making changes to be smarter about scheduling in various places instead
of depending on tokio's general purpose work-stealing, notably
https://github.com/astral-sh/uv/pull/3627 and
https://github.com/astral-sh/uv/pull/4004. We now no longer benefit from
the multi-threaded runtime, as we run on all I/O on the main thread.
There's one remaining instance of `block_in_place` that can be swapped
for `rayon::spawn`.
This change is a small performance improvement due to removing some
unnecessary overhead of the multi-threaded runtime (e.g. spawning
threads), but nothing major. It also removes some noise from profiles.
## Test Plan
```
Benchmark 1: ./target/profiling/uv (resolve-warm)
Time (mean ± σ): 14.9 ms ± 0.3 ms [User: 3.0 ms, System: 17.3 ms]
Range (min … max): 14.1 ms … 15.8 ms 169 runs
Benchmark 2: ./target/profiling/baseline (resolve-warm)
Time (mean ± σ): 16.1 ms ± 0.3 ms [User: 3.9 ms, System: 18.7 ms]
Range (min … max): 15.1 ms … 17.3 ms 162 runs
Summary
./target/profiling/uv (resolve-warm) ran
1.08 ± 0.03 times faster than ./target/profiling/baseline (resolve-warm)
```
## Summary
Partially closes#1917
This PR picks up on some of the great work from #1864 and opted to keep
`panic_immediate_abort` (for size reasons). I split the PR in different
isolated commits in case we want to separate/cherry-pick them out.
1. The first commit ports mostly all std changes from that PR into this
PR. Binary sizes stayed the same ~16kb.
2. The second commit migrates our existing usage of windows-sys to
windows for a safer ffi calls with Results!. It also changes all large
unsafe blocks to be isolated to the actual unsafe calls, and switches
some areas to use std such as getenv port ( which seemed buggy! ) from
launcher.c. In addition, this also adds more error checking in order to
match some missing assertions from distlib's launcher.c. Note, due to
the additional .text data, the binary sizes increased to ~20.5kb, but we
can cut back on some of the added error msgs as needed.
3. The third commit switches to using xwin for building on all 3
supported trampoline targets for sanity, and adds a CI bloat check for
core::fmt and panic as a precaution. Sadly, this will invalidate the
xwin cache on the first run.
## Test Plan
Most changes were tested on a couple of local GUI apps and console apps,
also tested some of the error states manually by using SetLastError at
different points in the code and/or passing in invalid handles.
I'm not sure how far we can get with migrating some of the other calls
without increasing binary size substantially. An initial attempt at
using std::path didn't seem so bad size wise when I tried it (~1k). On
other cases, such as std::process::exit added ~10k to the total binary
size.
---------
Co-authored-by: konstin <konstin@mailbox.org>
Whew this is a lot.
The user-facing changes are:
- `uv toolchain` to `uv python` e.g. `uv python find`, `uv python
install`, ...
- `UV_TOOLCHAIN_DIR` to` UV_PYTHON_INSTALL_DIR`
- `<UV_STATE_DIR>/toolchains` to `<UV_STATE_DIR>/python` (with
[automatic
migration](https://github.com/astral-sh/uv/pull/4735/files#r1663029330))
- User-facing messages no longer refer to toolchains, instead using
"Python", "Python versions" or "Python installations"
The internal changes are:
- `uv-toolchain` crate to `uv-python`
- `Toolchain` no longer referenced in type names
- Dropped unused `SystemPython` type (previously replaced)
- Clarified the type names for "managed Python installations"
- (more little things)
## Summary
Updates default toolchain to
[1.79](https://blog.rust-lang.org/2024/06/13/Rust-1.79.0.html).
There didn't seem to be any breaking changes besides xwin now requiring
lld llvm linker.
## Test Plan
Existing tests.
## Summary
See: https://github.com/axodotdev/cargo-dist/releases/tag/v0.17.0.
Relevant:
> The only reason you might want to override this setting is if you're
using [dispatch-releases =
true](https://opensource.axo.dev/cargo-dist/book/reference/config.html#dispatch-releases)
and you really want your git tag to be the last operation in your
release process (because creating a GitHub Release necessarily creates
the git tag if it doesn't yet exist, and many organizations really don't
like when you delete/change git tags). In this case setting
github-release = "announce" will accomplish that, but the above race
conditions would then apply.
We _do_ use `dispatch-releases = true`, and we _do_ want the git tag to
be the last operation, so we need to set `github-release = "announce"`
to preserve our current behavior.
So we can skip them when there are not code changes and still enforce
our required checks (xref #4438)
Otherwise, the names are dynamic and they are forever expected (see
#4426 for example)
It was becoming problematic that the virtual environment test context
diverged from the other one i.e. we had to implement filtering twice.
This combines the contexts and tweaks the `TestContext` API and
filtering mechanisms for Python versions. Combined with my previous
changes to the test context at #4364 and
https://github.com/astral-sh/uv/pull/4368 this finally unblocks the
snapshots for test cases in #4360 and
https://github.com/astral-sh/uv/pull/4362.
This PR re-adds the `aarch64-unknown-linux-gnu` binary, which will also
add the `manylinux_2_28` wheel for `aarch64` (in addition to the now
dual-tagged `musllinux_1_1` and `manylinux_2_217` wheel for `aarch64`).
We can consider dropping that _wheel_, but in my assessment removing a
release asset should now be treated as a breaking change -- so removing
it in a patch release was incorrect.
Closes https://github.com/astral-sh/uv/issues/4122.
Extends #3726
Moves toolchain storage out of `UV_BOOTSTRAP_DIR` (`./bin`) into the
proper user data directory as defined by #3726.
Replaces `UV_BOOTSTRAP_DIR` with `UV_TOOLCHAIN_DIR` for customization.
Installed toolchains will be discovered without opt-in, but the idea is
still that these are not yet user-facing.
## Summary
This seems to be one of the most consistent benchmark cases we have in
terms of standard deviation:
```
➜ hyperfine "target/profiling/main pip compile scripts/requirements/airflow.in" --runs 200
Benchmark 1: target/profiling/main pip compile scripts/requirements/airflow.in
Time (mean ± σ): 292.6 ms ± 6.6 ms [User: 414.1 ms, System: 194.2 ms]
Range (min … max): 282.7 ms … 320.1 ms 200 runs
```
For smaller benchmarks, scispacy and dtlssocket seem to be a bit more
consistent than our current jupyter benchmark, but it hasn't given us
any problems so I'll leave it for now.