## Summary
- Move parsing `UV_CONCURRENT_INSTALLS`, `UV_CONCURRENT_BUILDS` and
`UV_CONCURRENT_DOWNLOADS` to `EnvironmentOptions`
Relates https://github.com/astral-sh/uv/issues/14720
## Test Plan
- Tests with existing tests
- Add test with invalid parsing
## Summary
- Move parsing `UV_HTTP_TIMEOUT`, `UV_REQUEST_TIMEOUT` and
`HTTP_TIMEOUT` to `EnvironmentOptions`
- Add new env varialbe `UV_UPLOAD_HTTP_TIMEOUT`
Relates https://github.com/astral-sh/uv/issues/14720
## Test Plan
Tests with existing tests
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## Summary
<!-- What's the purpose of the change? What does it do, and why? -->
Fixes a part of #14720
Add `TRACING_DURATIONS_FILE` to EnvironmentOptions.
## Test Plan
<!-- How was it tested? -->
## Summary
This was fixed in https://github.com/astral-sh/uv/pull/15161, then
reverted as it regressed the error handling. I've re-applied the change
here, but moved the error handling to the runtime, rather than
parse-time. I think this is slightly worse in that we no longer include
the originating source code snippet, but it at least gives us the
expected behavior :(
Closes https://github.com/astral-sh/uv/issues/15124.
## Summary
After #15395, I realized that we didn't actually need a separate struct
for this since we now pass it around as an `Option`. (The key change
from #15395 is that when combining, we treat the options as a single
unit.)
## Summary
Right now, if you put `upgrade = false` in a `uv.toml`, then pass
`--upgrade-package numpy` on the CLI, we won't upgrade NumPy. This PR
fixes that interaction by ensuring that when we "combine", we look at
those arguments holistically (i.e., we bundle `upgrade` and
`upgrade-package` into a single struct, which then goes through the
`.combine` logic), rather than combining `upgrade` and `upgrade-package`
independently.
If approved, I then need to add the same thing for `no-build-isolation`,
`reinstall`, `no-build`, and `no-binary`.
Correct typo. "uv cache clear" is not a command.
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## Summary
<!-- What's the purpose of the change? What does it do, and why? -->
## Test Plan
<!-- How was it tested? -->
## Summary
This breaks up a cycle I'm running into in incorporating the build
configuration into our cache keys. This is actually a type that ends up
in the frontend build system, etc., so I think it makes more sense here
anyway (as opposed to `uv-configuration` which tend to be our own
user-facing types).
## Summary
It would be nice if this rendered as
`[tool.uv.extra-build-dependencies]` and `[extra-build-dependencies]`
(in `uv.toml`), but this is at least correct.
Closes https://github.com/astral-sh/uv/issues/15124.
## Summary
Make the use of `Self` consistent. Mostly done by running `cargo clippy
--fix -- -A clippy::all -W clippy::use_self`.
## Test Plan
<!-- How was it tested? -->
No need.
Replaces https://github.com/astral-sh/uv/pull/14092
Adds `tool.uv.extra-build-dependencies = {package = [dependency, ...]}`
which extends `build-system.requires` during package builds.
These are lowered via workspace sources, are applied to transitive
dependencies, and are included in the wheel cache shard hash.
There are some features we need to follow-up on, but are out of scope
here:
- Preferring locked versions for build dependencies
- Settings for requiring locked versions for build depencies
There are some quality of life follow-ups we should also do:
- Warn on `extra-build-dependencies` that do not apply to any packages
- Add test cases and improve error messaging when the
`extra-build-dependencies` resolve fails
-------
There ~are~ were a few open decisions to be made here
1. Should we resolve these dependencies alongside the
`build-system.requires` dependencies? Or should we resolve separately?
(I think the latter is more powerful? because you can override things?
but it opens the door to breaking your build)
2. Should we install these dependencies into the same environment? Or
should we layer it on top as we do elsewhere? (I think it's fine to
install into the same environment)
3. Should we respect sources defined in the parent project? (I think
yes, but then we need to lower the dependencies earlier — I don't think
that's a big deal, but it's not implemented)
4. Should we respect sources defined in the child project? (I think no,
this gets really complicated and seems weird to allow)
5. Should we apply this to transitive dependencies? (I think so)
---------
Co-authored-by: Aria Desires <aria.desires@gmail.com>
Co-authored-by: konstin <konstin@mailbox.org>
Adds `exclude-newer-package = { package = timestamp, ... } ` and
`--exclude-newer-package package=timestamp`. These take precedence over
`exclude-newer` for a given package.
This does need to be serialized to the lockfile, so the revision is
bumped to 3. I tested a previous version and we can read a lockfile with
this information just fine.
Closes https://github.com/astral-sh/uv/issues/14394
We weren't following our usual "destructure all the options" pattern in
this function, and several "this isn't actually read from uv.toml"
fields slipped through the cracks over time since folks forgot it
existed.
Fixes part of #14308, although we could still try to make the warning in
FilesystemOptions more accurate?
You could argue this is a breaking change, but I think it ultimately
isn't really, because we were already silently ignoring these fields.
Now we properly error.
Adds environment variables for
https://github.com/astral-sh/uv/pull/14612 and
https://github.com/astral-sh/uv/pull/14614
We can't use the Clap `BoolishValueParser` here, and the reasoning is a
little hard to explain. If we used `UV_PYTHON_INSTALL_NO_BIN`, as is our
typical pattern, it'd work, but here we allow opt-in to hard errors with
`UV_PYTHON_INSTALL_BIN=1` and I don't think we should have both
`UV_PYTHON_INSTALL_BIN` and `UV_PYTHON_INSTALL_NO_BIN`.
Consequently, this pull request introduces a new `EnvironmentOptions`
abstraction which allows us to express semantics that Clap cannot —
which we probably want anyway because we have an increasing number of
environment variables we're parsing downstream, e.g., #14544 and #14369.
## Summary
We validate the `uv.toml` when it's discovered automatically, but not
when provided via `--config-file`. The same limitations exist, though --
I think the lack of enforcement is just an oversight.
Closes https://github.com/astral-sh/uv/issues/14650.
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## Summary
Update [schemars
0.9.0](https://github.com/GREsau/schemars/releases/tag/v0.9.0)
There are differences in the generated JSON Schema and I will [contact
the author](https://github.com/GREsau/schemars/issues/407).
## Test Plan
---------
Co-authored-by: konstin <konstin@mailbox.org>
This allows you to specify requires-python on individual dependency-groups,
with the intended usecase being "oh my dev-dependencies have a higher
requires-python than my actual project".
This includes a large driveby move of the RequiresPython type to
uv-distribution-types to allow us to generate the appropriate markers at
this point in the code. It also migrates RequiresPython from
pubgrub::Range to version_ranges::Ranges, and makes several pub(crate)
items pub, as it's no longer defined in uv_resolver.
Fixes#11606
By default, uv uses only a lower bound in `uv add`, which avoids
dependency conflicts due to upper bounds. With this PR, this cna be
changed by setting a different bound kind. The bound kind can be
configured in `uv.toml`, as a user preference, in `pyproject.toml`, as a
project preference, or on the CLI, when adding a specific project.
We add two options that add an upper bound on the constraint, one for
SemVer (`>=1.2.3,<2.0.0`, dubbed "major", modeled after the SemVer
caret) and another one for dependencies that make breaking changes in
minor version (`>=1.2.3,<1.3.0`, dubbed "minor", modeled after the
SemVer tilde). Intuitively, the major option bumps the most significant
version component, while the minor option bumps the second most
significant version component. There is also an exact bounds option
(`==1.2.3`), though generally we recommend setting a wider bound and
using the lockfile for pinning.
Versions can have leading zeroes, such as `0.1` or `0.0.1`. For a single
leading 0, we shift the the meaning of major and minor similar to cargo.
For two or more leading zeroes, the difference between major and minor
becomes inapplicable, instead both bump the most significant component:
- major: `0.1` -> `>=0.1,<0.2`
- major: `0.0.1` -> `>=0.0.1,<0.0.2`
- major: `0.0.1.1` -> `>=0.0.1.1,<0.0.2.0`
- major: `0.0.0.1` -> `>=0.0.0.1,<0.0.0.2`
- minor: `0.1` -> `>=0.1,<0.1.1`
- minor: `0.0.1` -> `>=0.0.1,<0.0.2`
- minor: `0.0.1.1` -> `>=0.0.1.1,<0.0.2.0`
- minor: `0.0.0.1` -> `>=0.0.0.1,<0.0.0.2`
For a consistent appearance, we try to preserve the number of components
in the upper bound. For example, adding a version `2.17` with the major
option is stored as `>=2.17,<3.0`. If a version uses three components
and is greater than 0, both bounds will also use three components
(SemVer versions always have three components). Of the top 100 PyPI
packages, 8 use a non-three-component version (docutils, idna, pycparser
and soupsieve with two components, packaging, pytz and tzdata with two
component, CalVer and trove-classifiers with four component CalVer).
Example `pyproject.toml` files with the top 100 packages: [`--bounds
major`](https://gist.github.com/konstin/0aaffa9ea53c4834c22759e8865409f4)
and [`--bounds
minor`](https://gist.github.com/konstin/e77f5e990a7efe8a3c8a97c5c5b76964).
While many projects follow version scheme that roughly or directly
matches the major or minor options, these compatibility ranges are
usually not applicable for the also popular CalVer versioning.
For pre-release versions, there are two framings we could take: One is
that pre-releases generally make no guarantees about compatibility
between them and are used to introduce breaking changes, so we should
pin them exactly. In many cases however, pre-release specifiers are used
because a project needs a bugfix or a feature that hasn't made it into a
stable release, or because a project is compatible with the next version
before a final version for that release is published. In those cases,
compatibility with other packages that depend on the same library is
more important, so the desired bound is the same as it would be for the
stable release, except with the lower bound lowered to include
pre-release.
The names of the bounds and the name of the flag is up for bikeshedding.
Currently, the option is call `tool.uv.bounds`, but we could also move
it under `tool.uv.edit.bounds`, where it would be the first/only entry.
Fixes#6783
---------
Co-authored-by: Zanie Blue <contact@zanie.dev>
Prior to this PR, there were numerous places where uv would leak
credentials in logs. We had a way to mask credentials by calling methods
or a recently-added `redact_url` function, but this was not secure by
default. There were a number of other types (like `GitUrl`) that would
leak credentials on display.
This PR adds a `DisplaySafeUrl` newtype to prevent leaking credentials
when logging by default. It takes a maximalist approach, replacing the
use of `Url` almost everywhere. This includes when first parsing config
files, when storing URLs in types like `GitUrl`, and also when storing
URLs in types that in practice will never contain credentials (like
`DirectorySourceUrl`). The idea is to make it easy for developers to do
the right thing and for the compiler to support this (and to minimize
ever having to manually convert back and forth). Displaying credentials
now requires an active step. Note that despite this maximalist approach,
the use of the newtype should be zero cost.
One conspicuous place this PR does not use `DisplaySafeUrl` is in the
`uv-auth` crate. That would require new clones since there are calls to
`request.url()` that return a `&Url`. One option would have been to make
`DisplaySafeUrl` wrap a `Cow`, but this would lead to lifetime
annotations all over the codebase. I've created a separate PR based on
this one (#13576) that updates `uv-auth` to use `DisplaySafeUrl` with
one new clone. We can discuss the tradeoffs there.
Most of this PR just replaces `Url` with `DisplaySafeUrl`. The core is
`uv_redacted/lib.rs`, where the newtype is implemented. To make it
easier to review the rest, here are some points of note:
* `DisplaySafeUrl` has a `Display` implementation that masks
credentials. Currently, it will still display the username when there is
both a username and password. If we think is the wrong choice, it can
now be changed in one place.
* `DisplaySafeUrl` has a `remove_credentials()` method and also a
`.to_string_with_credentials()` method. This allows us to use it in a
variety of scenarios.
* `IndexUrl::redacted()` was renamed to
`IndexUrl::removed_credentials()` to make it clearer that we are not
masking.
* We convert from a `DisplaySafeUrl` to a `Url` when calling `reqwest`
methods like `.get()` and `.head()`.
* We convert from a `DisplaySafeUrl` to a `Url` when creating a
`uv_auth::Index`. That is because, as mentioned above, I will be
updating the `uv_auth` crate to use this newtype in a separate PR.
* A number of tests (e.g., in `pip_install.rs`) that formerly used
filters to mask tokens in the test output no longer need those filters
since tokens in URLs are now masked automatically.
* The one place we are still knowingly writing credentials to
`pyproject.toml` is when a URL with credentials is passed to `uv add`
with `--raw`. Since displaying credentials is no longer automatic, I
have added a `to_string_with_credentials()` method to the `Pep508Url`
trait. This is used when `--raw` is passed. Adding it to that trait is a
bit weird, but it's the simplest way to achieve the goal. I'm open to
suggestions on how to improve this, but note that because of the way
we're using generic bounds, it's not as simple as just creating a
separate trait for that method.
## Summary
Part of #12838. Allow users to configure `python-downloads-json-url` in
`uv.toml` and not just from env.
I followed similar PR #8695, so same as there it's also available in the
CLI (I think maybe it's better not to be configurable from the CLI, but
since the mirror parameters are, I think it's better to do the same)
## Test Plan
<!-- How was it tested? -->
## Summary
I think the lack of enforcement here is an oversight. We _do_ already
enforce this for user-level configuration files (contrary to the issue
-- at least, in my testing and from reading the code).
Closes https://github.com/astral-sh/uv/issues/12753.
## Summary
We tend not to run tests for individual crates, which can lead to weird
situations like this, where crates are missing optional features that
are otherwise installed globally.
## Test Plan
Run `cargo test --profile fast-build -p uv-scripts`, which otherwise
fails to compile.
## Summary
This is a prototype that I'm considering shipping under `--preview`,
based on [`light-the-torch`](https://github.com/pmeier/light-the-torch).
`light-the-torch` patches pip to pull PyTorch packages from the PyTorch
indexes automatically. And, in particular, `light-the-torch` will query
the installed CUDA drivers to determine which indexes are compatible
with your system.
This PR implements equivalent behavior under `--torch-backend auto`,
though you can also set `--torch-backend cpu`, etc. for convenience.
When enabled, the registry client will fetch from the appropriate
PyTorch index when it sees a package from the PyTorch ecosystem (and
ignore any other configured indexes, _unless_ the package is explicitly
pinned to a different index).
Right now, this is only implemented in the `uv pip` CLI, since it
doesn't quite fit into the lockfile APIs given that it relies on feature
detection on the currently-running machine.
## Test Plan
On macOS, you can test this with (e.g.):
```shell
UV_TORCH_BACKEND=auto UV_CUDA_DRIVER_VERSION=450.80.2 cargo run \
pip install torch --python-platform linux --python-version 3.12
```
On a GPU-enabled EC2 machine:
```shell
ubuntu@ip-172-31-47-149:~/uv$ UV_TORCH_BACKEND=auto cargo run pip install torch -v
Finished `dev` profile [unoptimized + debuginfo] target(s) in 0.31s
Running `target/debug/uv pip install torch -v`
DEBUG uv 0.6.6 (e95ca063b 2025-03-14)
DEBUG Searching for default Python interpreter in virtual environments
DEBUG Found `cpython-3.13.0-linux-x86_64-gnu` at `/home/ubuntu/uv/.venv/bin/python3` (virtual environment)
DEBUG Using Python 3.13.0 environment at: .venv
DEBUG Acquired lock for `.venv`
DEBUG At least one requirement is not satisfied: torch
warning: The `--torch-backend` setting is experimental and may change without warning. Pass `--preview` to disable this warning.
DEBUG Detected CUDA driver version from `/sys/module/nvidia/version`: 550.144.3
...
```
## Summary
This has come up a few times, so it seems worth addressing. If you
migrate from a flat layout to a `src` layout or vice versa, we now
invalidate the package metadata.
Closes https://github.com/astral-sh/uv/issues/12047
This is a minimal redux of #10861 to be compatible with `uv pip`.
This implements the interface described in:
https://github.com/pypa/pip/pull/13065#issuecomment-2544000876 for `uv
pip install` and `uv pip compile`. Namely `--group <[path:]name>`, where
`path` when not defined defaults to `pyproject.toml`.
In that interface they add `--group` to `pip install`, `pip download`,
and `pip wheel`. Notably we do not define `uv pip download` and `uv pip
wheel`, so for parity we only need to implement `uv pip install`.
However, we also support `uv pip compile` which is not part of pip
itself, and `--group` makes sense there too.
----
The behaviour of `--group` for `uv pip` commands makes sense for the
cases upstream pip supports, but has confusing meanings in cases that
only we support (because reading pyproject.tomls is New Tech to them but
heavily supported by us). **Specifically case (h) below is a concerning
footgun, and case (e) below may get complaints from people who aren't
well-versed in dependency-groups-as-they-pertain-to-wheels.**
## Only Group Flags
Group flags on their own work reasonably and uncontroversially, except
perhaps that they don't do very clever automatic project discovery.
a) `uv pip install --group path/to/pyproject.toml:mygroup` pulls up
`path/to/project.toml` and installs all the packages listed by its
`mygroup` dependency-group (essentially treating it like another kind of
requirements.txt). In this regard it functions similarly to
`--only-group` in the rest of uv's interface.
b) `uv pip install --group mygroup` is just sugar for `uv pip install
--group pyproject.toml:mygroup` (**note that no project discovery
occurs**, upstream pip simply hardcodes the path "pyproject.toml" here
and we reproduce that.)
c) `uv pip install --group a/pyproject.toml:groupx --group
b/pyproject.toml:groupy`, and any other instance of multiple `--group`
flags, can be understood as completely independent requests for the
given groups at the given files.
## Groups With Named Packages
Groups being mixed with named packages also work in a fairly
unsurprising way, especially if you understand that things like
dependency-groups are not really supposed to exist on pypi, they're just
for local development.
d) `uv pip install mypackage --group path/to/pyproject.toml:mygroup`
much like multiple instances of `--group` the two requests here are
essentially completely independent: pleases install `mypackage`, and
please also install `path/to/pyproject.toml:mygroup`.
e) `uv pip install mypackage --group mygroup` is exactly the same, but
this is where it becomes possible for someone to be a little confused,
as you might think `mygroup` is supposed to refer to `mypackage` in some
way (it can't). But no, it's sourcing `pyproject.toml:mygroup` from the
current working directory.
## Groups With Requirements/Sourcetrees/Editables
Requirements and sourcetrees are where I expect users to get confused.
It behaves *exactly* the same as it does in the previous sections but
you would absolutely be forgiven for expecting a different behaviour.
*Especially* because `--group` with the rest of uv *does* do something
different.
f) `uv pip install -r a/pyproject.toml --group b/pyproject.toml:mygroup`
is again just two independent requests (install `a/pyproject.toml`'s
dependencies, and `b/pyproject.toml`'s `mygroup`).
g) `uv pip install -r pyproject.toml --group mygroup` is exactly like
the previous case but *incidentally* the two requests refer to the same
file. What the user wanted to happen is almost certainly happening, but
they are likely getting "lucky" here that they're requesting something
simple.
h) `uv pip install -r a/pyproject.toml --group mygroup` is again exactly
the same but the user is likely to get surprised and upset as this
invocation actually sources two different files (install
`a/pyproject.toml`'s dependencies, and `pyproject.toml`'s `mygroup`)! I
would expect most people to assume the `--group` flag here is covering
all applicable requirements/sourcetrees/editables, but no, it continues
to be a totally independent reference to a file with a hardcoded
relative path.
------
Fixes https://github.com/astral-sh/uv/issues/8590
Fixes https://github.com/astral-sh/uv/issues/8969
This PR moves functions for finding user- and system-level config
directories to public functions in `uv_fs::config`. This will allow them
to be used in future work without duplicating code.