Previously, uv-auth would fail to compile due to a missing process
feature. I chose to make all tokio features we use top level features,
so we can share the tokio cache between all test invocations.
## Summary
Source distributions in the .tar.bz2 format are still relatively common
within the existing code-bases, namely, the most common examples are the
Twisted source distributions up to the version 20.3.0. As quite so often
the ability to upgrade Twisted to a more recent version is not available
for a given project, we add the support for .tar.bz2 here to still allow
`uv` to be a drop-in replacement for `pip` in these projects.
## Test Plan
The feature was tested both by adding the corresponding test coverage,
and by directly installing a package of interest under a Python version
that doesn't have the corresponding wheel:
```sh
cargo run venv -p python3.8
cargo run pip install Twisted==20.3.0 --no-cache
```
The `--no-cache` argument in the example above serves the purpose of
cleaning the cached information regarding the unsatisfiability of the
requirements, as it may have been cached during some previous attempt to
install this package by `uv` version that didn't implement this feature
yet.
## Summary
This PR adds support for hash-checking mode in `pip install` and `pip
sync`. It's a large change, both in terms of the size of the diff and
the modifications in behavior, but it's also one that's hard to merge in
pieces (at least, with any test coverage) since it needs to work
end-to-end to be useful and testable.
Here are some of the most important highlights:
- We store hashes in the cache. Where we previously stored pointers to
unzipped wheels in the `archives` directory, we now store pointers with
a set of known hashes. So every pointer to an unzipped wheel also
includes its known hashes.
- By default, we don't compute any hashes. If the user runs with
`--require-hashes`, and the cache doesn't contain those hashes, we
invalidate the cache, redownload the wheel, and compute the hashes as we
go. For users that don't run with `--require-hashes`, there will be no
change in performance. For users that _do_, the only change will be if
they don't run with `--generate-hashes` -- then they may see some
repeated work between resolution and installation, if they use `pip
compile` then `pip sync`.
- Many of the distribution types now include a `hashes` field, like
`CachedDist` and `LocalWheel`.
- Our behavior is similar to pip, in that we enforce hashes when pulling
any remote distributions, and when pulling from our own cache. Like pip,
though, we _don't_ enforce hashes if a distribution is _already_
installed.
- Hash validity is enforced in a few different places:
1. During resolution, we enforce hash validity based on the hashes
reported by the registry. If we need to access a source distribution,
though, we then enforce hash validity at that point too, prior to
running any untrusted code. (This is enforced in the distribution
database.)
2. In the install plan, we _only_ add cached distributions that have
matching hashes. If a cached distribution is missing any hashes, or the
hashes don't match, we don't return them from the install plan.
3. In the downloader, we _only_ return distributions with matching
hashes.
4. The final combination of "things we install" are: (1) the wheels from
the cache, and (2) the downloaded wheels. So this ensures that we never
install any mismatching distributions.
- Like pip, if `--require-hashes` is provided, we require that _all_
distributions are pinned with either `==` or a direct URL. We also
require that _all_ distributions have hashes.
There are a few notable TODOs:
- We don't support hash-checking mode for unnamed requirements. These
should be _somewhat_ rare, though? Since `pip compile` never outputs
unnamed requirements. I can fix this, it's just some additional work.
- We don't automatically enable `--require-hashes` with a hash exists in
the requirements file. We require `--require-hashes`.
Closes#474.
## Test Plan
I'd like to add some tests for registries that report incorrect hashes,
but otherwise: `cargo test`
## Summary
I tried out `cargo shear` to see if there are any unused dependencies
that `cargo udeps` isn't reporting. It turned out, there are a few. This
PR removes those dependencies.
## Test Plan
`cargo build`
## Summary
For context, we have three extraction paths:
- untar (async) - used for any `.tar.gz`, local or remote.
- unzip (async) - used to unzip remote wheels, or local or remote source
distributions.
- unzip (sync) - used to untar locally-available wheels into the cache.
We use three different crates for these:
- [`tokio-tar`](https://github.com/vorot93/tokio-tar)
- [`async-zip`](https://github.com/Majored/rs-async-zip)
- [`zip-rs`](https://github.com/zip-rs/zip)
These all seem to have different support for symlinks:
- `tokio-tar` tries to create a symlink (which works fine on Unix but
errors on Windows, since we typically don't have elevated permissions).
- `async-zip` _seems_ to write the target contents directly to the file
(which is what we want).
- `zip-rs` _apparently_ writes the _name_ of the target to the file
(which isn't what we want).
Thankfully, symlinks are not allowed in wheels
(https://github.com/pypa/pip/issues/5919,
https://discuss.python.org/t/symbolic-links-in-wheels/1945), so we can
ignore `zip-rs`.
For `tokio-tar`, we now _skip_ (and warn) if we see a symlink on
Windows. We could do what pip does, and recursively copy, but it's
difficult because we don't have `Seek` on the file. (Alternatively, we
could use hard links and junctions, though those also might need to
exist already.) Let's see how far this gets us.
(We also no longer attempt to set permissions on symlinks on Unix, which
caused another failure.)
Closes https://github.com/astral-sh/uv/issues/1858.
## Summary
We currently maintain separate untar methods for sync and async, but we
only use the sync version when the user provides a local source
distribution. (Otherwise, we untar as we download the distribution.) In
my testing, this is actually slower anyway:
```
❯ python -m scripts.bench \
--uv-path ./target/release/main \
--uv-path ./target/release/uv \
./requirements.in --benchmark resolve-cold --min-runs 50
Benchmark 1: ./target/release/main (resolve-cold)
Time (mean ± σ): 835.2 ms ± 107.4 ms [User: 346.0 ms, System: 151.3 ms]
Range (min … max): 639.2 ms … 1051.0 ms 50 runs
Benchmark 2: ./target/release/uv (resolve-cold)
Time (mean ± σ): 750.7 ms ± 91.9 ms [User: 345.7 ms, System: 149.4 ms]
Range (min … max): 637.9 ms … 905.7 ms 50 runs
Summary
'./target/release/uv (resolve-cold)' ran
1.11 ± 0.20 times faster than './target/release/main (resolve-cold)'
```
First, replace all usages in files in-place. I used my editor for this.
If someone wants to add a one-liner that'd be fun.
Then, update directory and file names:
```
# Run twice for nested directories
find . -type d -print0 | xargs -0 rename s/puffin/uv/g
find . -type d -print0 | xargs -0 rename s/puffin/uv/g
# Update files
find . -type f -print0 | xargs -0 rename s/puffin/uv/g
```
Then add all the files again
```
# Add all the files again
git add crates
git add python/uv
# This one needs a force-add
git add -f crates/uv-trampoline
```