Summary
--
Inspired by #20859, this PR adds the version a rule was added, and the
file and line where it was defined, to `ViolationMetadata`. The file and
line just use the standard `file!` and `line!` macros, while the more
interesting version field uses a new `violation_metadata` attribute
parsed by our `ViolationMetadata` derive macro.
I moved the commit modifying all of the rule files to the end, so it
should be a lot easier to review by omitting that one.
As a curiosity and a bit of a sanity check, I also plotted the rule
numbers over time:
<img width="640" height="480" alt="image"
src="https://github.com/user-attachments/assets/75b0b5cc-3521-4d40-a395-8807e6f4925f"
/>
I think this looks pretty reasonable and avoids some of the artifacts
the earlier versions of the script ran into, such as the `rule`
sub-command not being available or `--explain` requiring a file
argument.
<details><summary>Script and summary data</summary>
```shell
gawk --csv '
NR > 1 {
split($2, a, ".")
major = a[1]; minor = a[2]; micro = a[3]
# sum the number of rules added per minor version
versions[minor] += 1
}
END {
tot = 0
for (i = 0; i <= 14; i++) {
tot += versions[i]
print i, tot
}
}
' ruff_rules_metadata.csv > summary.dat
```
```
0 696
1 768
2 778
3 803
4 822
5 848
6 855
7 865
8 893
9 915
10 916
11 924
12 929
13 932
14 933
```
</details>
Test Plan
--
I built and viewed the documentation locally, and it looks pretty good!
<img width="1466" height="676" alt="image"
src="https://github.com/user-attachments/assets/5e227df4-7294-4d12-bdaa-31cac4e9ad5c"
/>
The spacing seems a bit awkward following the `h1` at the top, so I'm
wondering if this might look nicer as a footer in Ruff. The links work
well too:
- [v0.0.271](https://github.com/astral-sh/ruff/releases/tag/v0.0.271)
- [Related
issues](https://github.com/astral-sh/ruff/issues?q=sort%3Aupdated-desc%20is%3Aissue%20is%3Aopen%20airflow-variable-name-task-id-mismatch)
- [View
source](https://github.com/astral-sh/ruff/blob/main/crates%2Fruff_linter%2Fsrc%2Frules%2Fairflow%2Frules%2Ftask_variable_name.rs#L34)
The last one even works on `main` now since it points to the
`derive(ViolationMetadata)` line.
In terms of binary size, this branch is a bit bigger than main with
38,654,520 bytes compared to 38,635,728 (+20 KB). I guess that's not
_too_ much of an increase, but I wanted to check since we're generating
a lot more code with macros.
---------
Co-authored-by: GiGaGon <107241144+MeGaGiGaGon@users.noreply.github.com>
## Summary
I spun this off from #19919 to separate the rendering code change and
snapshot updates from the (much smaller) changes to expose this in the
CLI. I grouped all of the `ruff_linter` snapshot changes in the final
commit in an effort to make this easier to review. The code changes are
in [this
range](619395eb41).
I went through all of the snapshots, albeit fairly quickly, and they all
looked correct to me. In the last few commits I was trying to resolve an
existing issue in the alignment of the line number separator:
73720c73be/crates/ruff_linter/src/rules/flake8_comprehensions/snapshots/ruff_linter__rules__flake8_comprehensions__tests__C409_C409.py.snap (L87-L89)
In the snapshot above on `main`, you can see that a double-digit line
number at the end of the context lines for a snippet was causing a
misalignment with the other separators. That's now resolved. The one
downside is that this can lead to a mismatch with the diagnostic above:
```
C409 [*] Unnecessary list literal passed to `tuple()` (rewrite as a tuple literal)
--> C409.py:4:6
|
2 | t2 = tuple([1, 2])
3 | t3 = tuple((1, 2))
4 | t4 = tuple([
| ______^
5 | | 1,
6 | | 2
7 | | ])
| |__^
8 | t5 = tuple(
9 | (1, 2)
|
help: Rewrite as a tuple literal
1 | t1 = tuple([])
2 | t2 = tuple([1, 2])
3 | t3 = tuple((1, 2))
- t4 = tuple([
4 + t4 = (
5 | 1,
6 | 2
- ])
7 + )
8 | t5 = tuple(
9 | (1, 2)
10 | )
note: This is an unsafe fix and may remove comments or change runtime behavior
```
But I don't think we can avoid that without really reworking this
rendering to make the diagnostic and diff rendering aware of each other.
Anyway, this should only happen in relatively rare cases where the
diagnostic is near a digit boundary and also near a context boundary.
Most of our diagnostics line up nicely.
Another potential downside of the new rendering format is its handling
of long stretches of `+` or `-` lines:
```
help: Replace with `Literal[...] | None`
21 | ...
22 |
23 |
- def func6(arg1: Literal[
- "hello",
- None # Comment 1
- , "world"
- ]):
24 + def func6(arg1: Literal["hello", "world"] | None):
25 | ...
26 |
27 |
note: This is an unsafe fix and may remove comments or change runtime behavior
```
To me it just seems a little hard to tell what's going on with just a
long streak of `-`-prefixed lines. I saw an even more exaggerated
example at some point, but I think this is also fairly rare. Most of the
snapshots seem more like the examples we looked at on Discord with
plenty of `|` lines and pairs of `+` and `-` lines.
## Test Plan
Existing tests plus one new test in `ruff_db` to isolate a line
separator alignment issue
## Summary
This PR switches the `full` output format in Ruff over to use the
rendering code
in `ruff_db`. As proposed in the design doc, this involves a lot of
changes to the snapshot output.
I also had to comment out this assertion with a TODO to replace it after
https://github.com/astral-sh/ruff/issues/19688 because many of Ruff's
"file-level" annotations aren't actually file-level. They just happen to
occur at the start of the file, especially in tests with very short
snippets.
529d81daca/crates/ruff_annotate_snippets/src/renderer/display_list.rs (L1204-L1208)
I broke up the snapshot commits at the end into several blocks, but I
don't think it's enough to help with review. The first few (notebooks,
syntax errors, and test rules) are small enough to look at, but I
couldn't really think of other categories beyond that. I'm happy to
break those up or pick out specific examples beyond what I have below,
if that would help.
The minimal code changes are in this
[range](abd28f1e77),
with the snapshot commits following. Moving the `FullRenderer` and
updating the `EmitterFlags` aren't strictly necessary either. I even
dropped the renderer commit this morning but figured it made sense to
keep it since we have the `full` module for tests. I don't feel strongly
either way.
## Test Plan
I did actually click through all 1700 snapshots individually instead of
accepting them all at once, although I moved through them quickly. There
are a
few main categories:
### Lint diagnostics
```diff
-unused.py:8:19: F401 [*] `pathlib` imported but unused
+F401 [*] `pathlib` imported but unused
+ --> unused.py:8:19
|
7 | # Unused, _not_ marked as required (due to the alias).
8 | import pathlib as non_alias
- | ^^^^^^^^^ F401
+ | ^^^^^^^^^
9 |
10 | # Unused, marked as required.
|
- = help: Remove unused import: `pathlib`
+help: Remove unused import: `pathlib`
```
- The filename and line numbers are moved to the second line
- The second noqa code next to the underline is removed
### Syntax errors
These are much like the above.
```diff
- -:1:16: invalid-syntax: Expected one or more symbol names after import
+ invalid-syntax: Expected one or more symbol names after import
+ --> -:1:16
|
1 | from foo import
| ^
```
One thing I noticed while reviewing some of these, but I don't think is
strictly syntax-error-related, is that some of the new diagnostics have
a little less context after the error. I don't think this is a problem,
but it's one small discrepancy I hadn't noticed before. Here's a minor
example:
```diff
-syntax_errors.py:1:15: invalid-syntax: Expected one or more symbol names after import
+invalid-syntax: Expected one or more symbol names after import
+ --> syntax_errors.py:1:15
|
1 | from os import
| ^
2 |
3 | if call(foo
-4 | def bar():
|
```
And one of the biggest examples:
```diff
-E30_syntax_error.py:18:11: invalid-syntax: Expected ')', found newline
+invalid-syntax: Expected ')', found newline
+ --> E30_syntax_error.py:18:11
|
16 | pass
17 |
18 | foo = Foo(
| ^
-19 |
-20 |
-21 | def top(
|
```
Similarly, a few of the lint diagnostics showed that the cut indicator
calculation for overly long lines is also slightly different, but I
think that's okay too.
### Full-file diagnostics
```diff
-comment.py:1:1: I002 [*] Missing required import: `from __future__ import annotations`
+I002 [*] Missing required import: `from __future__ import annotations`
+--> comment.py:1:1
+help: Insert required import: `from __future__ import annotations`
+
```
As noted above, these will be much more rare after #19688 too. This case
isn't a true full-file diagnostic and will render a snippet in the
future, but you can see that we're now rendering the help message that
would have been discarded before. In contrast, this is a true full-file
diagnostic and should still look like this after #19688:
```diff
-__init__.py:1:1: A005 Module `logging` shadows a Python standard-library module
+A005 Module `logging` shadows a Python standard-library module
+--> __init__.py:1:1
```
### Jupyter notebooks
There's nothing particularly different about these, just showing off the
cell index again.
```diff
- Jupyter.ipynb:cell 3:1:7: F821 Undefined name `x`
+ F821 Undefined name `x`
+ --> Jupyter.ipynb:cell 3:1:7
|
1 | print(x)
- | ^ F821
+ | ^
|
```
## Summary
This PR avoids one of the three calls to `NoqaCode::rule` from
https://github.com/astral-sh/ruff/pull/18391 by applying per-file
ignores in the `LintContext`. To help with this, it also replaces all
direct uses of `LinterSettings.rules.enabled` with a
`LintContext::enabled` (or `Checker::enabled`, which defers to its
context) method. There are still some direct accesses to
`settings.rules`, but as far as I can tell these are not in a part of
the code where we can really access a `LintContext`. I believe all of
the code reachable from `check_path`, where the replaced per-file ignore
code was, should be converted to the new methods.
## Test Plan
Existing tests, with a single snapshot updated for RUF100, which I think
actually shows a more accurate diagnostic message now.
Summary
--
This PR unifies the remaining differences between `OldDiagnostic` and
`Message` (`OldDiagnostic` was only missing an optional `noqa_offset`
field) and
replaces `Message` with `OldDiagnostic`.
The biggest functional difference is that the combined `OldDiagnostic`
kind no
longer implements `AsRule` for an infallible conversion to `Rule`. This
was
pretty easy to work around with `is_some_and` and `is_none_or` in the
few places
it was needed. In `LintContext::report_diagnostic_if_enabled` we can
just use
the new `Violation::rule` method, which takes care of most cases.
Most of the interesting changes are in [this
range](8156992540)
before I started renaming.
Test Plan
--
Existing tests
Future Work
--
I think it's time to start shifting some of these fields to the new
`Diagnostic`
kind. I believe we want `Fix` for sure, but I'm less sure about the
others. We
may want to keep a thin wrapper type here anyway to implement a `rule`
method,
so we could leave some of these fields on that too.
## Summary
This PR avoids the `Vec::retain` call in `check_tokens` by checking if
rules are enabled as their diagnostics are constructed.
2a425e43fd/crates/ruff_linter/src/checkers/tokens.rs (L174-L176)
Since `LintContext::report_diagnostic_if_enabled` required a
`LinterSettings`, I added a `settings` field to the context itself
instead of trying to pass it everywhere. This also turned
`LogicalLinesContext` into a trivial wrapper around `LintContext`, so I
just removed it in favor of using `LintContext` directly too.
The diff is a bit smaller with whitespace hidden since many blocks got
moved into something like this:
```rust
if let Some(mut diagnostic) = context.report_diagnostic.enabled(...) {
// old code
}
```
## Test Plan
Existing tests
Summary
--
This is the last main difference between the `OldDiagnostic` and
`Message`
types, so attaching a `SourceFile` to `OldDiagnostic` should make
combining the
two types almost trivial.
Initially I updated the remaining rules without access to a `Checker` to
take a
`&SourceFile` directly, but after Micha's suggestion in
https://github.com/astral-sh/ruff/pull/18356#discussion_r2113281552, I
updated all of these calls to take a
`LintContext` instead. This new type is a thin wrapper around a
`RefCell<Vec<OldDiagnostic>>`
and a `SourceFile` and now has the `report_diagnostic` method returning
a `DiagnosticGuard` instead of `Checker`.
This allows the same `Drop`-based implementation to be used in cases
without a `Checker` and also avoids a lot of intermediate allocations of
`Vec<OldDiagnostic>`s.
`Checker` now also contains a `LintContext`, which it defers to for its
`report_diagnostic` methods, which I preserved for convenience.
Test Plan
--
Existing tests
Summary
--
It's a bit late in the refactoring process, but I think there are still
a couple of PRs left before getting rid of this type entirely, so I
thought it would still be worth doing.
This PR is just a quick rename with no other changes.
Test Plan
--
Existing tests
These snapshot changes should *all* only be a result of changes to
trailing whitespace in the output. I checked a psuedo random sample of
these, and the whitespace found in the previous snapshots seems to be an
artifact of the rendering and _not_ of the source data. So this seems
like a strict bug fix to me.
There are other snapshots with whitespace changes, but they also have
other changes that we split out into separate commits. Basically, we're
going to do approximately one commit per category of change.
This represents, by far, the biggest chunk of changes to snapshots as a
result of the `annotate-snippets` upgrade.
## Summary
Closes https://github.com/astral-sh/ruff/issues/12291.
## Test Plan
```shell
❯ cargo run check ../uv/foo --select INP
/Users/crmarsh/workspace/uv/foo/bar/baz.py:1:1: INP001 File `/Users/crmarsh/workspace/uv/foo/bar/baz.py` is part of an implicit namespace package. Add an `__init__.py`.
Found 1 error.
```
## Summary
This PR updates the entire parser stack in multiple ways:
### Make the lexer lazy
* https://github.com/astral-sh/ruff/pull/11244
* https://github.com/astral-sh/ruff/pull/11473
Previously, Ruff's lexer would act as an iterator. The parser would
collect all the tokens in a vector first and then process the tokens to
create the syntax tree.
The first task in this project is to update the entire parsing flow to
make the lexer lazy. This includes the `Lexer`, `TokenSource`, and
`Parser`. For context, the `TokenSource` is a wrapper around the `Lexer`
to filter out the trivia tokens[^1]. Now, the parser will ask the token
source to get the next token and only then the lexer will continue and
emit the token. This means that the lexer needs to be aware of the
"current" token. When the `next_token` is called, the current token will
be updated with the newly lexed token.
The main motivation to make the lexer lazy is to allow re-lexing a token
in a different context. This is going to be really useful to make the
parser error resilience. For example, currently the emitted tokens
remains the same even if the parser can recover from an unclosed
parenthesis. This is important because the lexer emits a
`NonLogicalNewline` in parenthesized context while a normal `Newline` in
non-parenthesized context. This different kinds of newline is also used
to emit the indentation tokens which is important for the parser as it's
used to determine the start and end of a block.
Additionally, this allows us to implement the following functionalities:
1. Checkpoint - rewind infrastructure: The idea here is to create a
checkpoint and continue lexing. At a later point, this checkpoint can be
used to rewind the lexer back to the provided checkpoint.
2. Remove the `SoftKeywordTransformer` and instead use lookahead or
speculative parsing to determine whether a soft keyword is a keyword or
an identifier
3. Remove the `Tok` enum. The `Tok` enum represents the tokens emitted
by the lexer but it contains owned data which makes it expensive to
clone. The new `TokenKind` enum just represents the type of token which
is very cheap.
This brings up a question as to how will the parser get the owned value
which was stored on `Tok`. This will be solved by introducing a new
`TokenValue` enum which only contains a subset of token kinds which has
the owned value. This is stored on the lexer and is requested by the
parser when it wants to process the data. For example:
8196720f80/crates/ruff_python_parser/src/parser/expression.rs (L1260-L1262)
[^1]: Trivia tokens are `NonLogicalNewline` and `Comment`
### Remove `SoftKeywordTransformer`
* https://github.com/astral-sh/ruff/pull/11441
* https://github.com/astral-sh/ruff/pull/11459
* https://github.com/astral-sh/ruff/pull/11442
* https://github.com/astral-sh/ruff/pull/11443
* https://github.com/astral-sh/ruff/pull/11474
For context,
https://github.com/RustPython/RustPython/pull/4519/files#diff-5de40045e78e794aa5ab0b8aacf531aa477daf826d31ca129467703855408220
added support for soft keywords in the parser which uses infinite
lookahead to classify a soft keyword as a keyword or an identifier. This
is a brilliant idea as it basically wraps the existing Lexer and works
on top of it which means that the logic for lexing and re-lexing a soft
keyword remains separate. The change here is to remove
`SoftKeywordTransformer` and let the parser determine this based on
context, lookahead and speculative parsing.
* **Context:** The transformer needs to know the position of the lexer
between it being at a statement position or a simple statement position.
This is because a `match` token starts a compound statement while a
`type` token starts a simple statement. **The parser already knows
this.**
* **Lookahead:** Now that the parser knows the context it can perform
lookahead of up to two tokens to classify the soft keyword. The logic
for this is mentioned in the PR implementing it for `type` and `match
soft keyword.
* **Speculative parsing:** This is where the checkpoint - rewind
infrastructure helps. For `match` soft keyword, there are certain cases
for which we can't classify based on lookahead. The idea here is to
create a checkpoint and keep parsing. Based on whether the parsing was
successful and what tokens are ahead we can classify the remaining
cases. Refer to #11443 for more details.
If the soft keyword is being parsed in an identifier context, it'll be
converted to an identifier and the emitted token will be updated as
well. Refer
8196720f80/crates/ruff_python_parser/src/parser/expression.rs (L487-L491).
The `case` soft keyword doesn't require any special handling because
it'll be a keyword only in the context of a match statement.
### Update the parser API
* https://github.com/astral-sh/ruff/pull/11494
* https://github.com/astral-sh/ruff/pull/11505
Now that the lexer is in sync with the parser, and the parser helps to
determine whether a soft keyword is a keyword or an identifier, the
lexer cannot be used on its own. The reason being that it's not
sensitive to the context (which is correct). This means that the parser
API needs to be updated to not allow any access to the lexer.
Previously, there were multiple ways to parse the source code:
1. Passing the source code itself
2. Or, passing the tokens
Now that the lexer and parser are working together, the API
corresponding to (2) cannot exists. The final API is mentioned in this
PR description: https://github.com/astral-sh/ruff/pull/11494.
### Refactor the downstream tools (linter and formatter)
* https://github.com/astral-sh/ruff/pull/11511
* https://github.com/astral-sh/ruff/pull/11515
* https://github.com/astral-sh/ruff/pull/11529
* https://github.com/astral-sh/ruff/pull/11562
* https://github.com/astral-sh/ruff/pull/11592
And, the final set of changes involves updating all references of the
lexer and `Tok` enum. This was done in two-parts:
1. Update all the references in a way that doesn't require any changes
from this PR i.e., it can be done independently
* https://github.com/astral-sh/ruff/pull/11402
* https://github.com/astral-sh/ruff/pull/11406
* https://github.com/astral-sh/ruff/pull/11418
* https://github.com/astral-sh/ruff/pull/11419
* https://github.com/astral-sh/ruff/pull/11420
* https://github.com/astral-sh/ruff/pull/11424
2. Update all the remaining references to use the changes made in this
PR
For (2), there were various strategies used:
1. Introduce a new `Tokens` struct which wraps the token vector and add
methods to query a certain subset of tokens. These includes:
1. `up_to_first_unknown` which replaces the `tokenize` function
2. `in_range` and `after` which replaces the `lex_starts_at` function
where the former returns the tokens within the given range while the
latter returns all the tokens after the given offset
2. Introduce a new `TokenFlags` which is a set of flags to query certain
information from a token. Currently, this information is only limited to
any string type token but can be expanded to include other information
in the future as needed. https://github.com/astral-sh/ruff/pull/11578
3. Move the `CommentRanges` to the parsed output because this
information is common to both the linter and the formatter. This removes
the need for `tokens_and_ranges` function.
## Test Plan
- [x] Update and verify the test snapshots
- [x] Make sure the entire test suite is passing
- [x] Make sure there are no changes in the ecosystem checks
- [x] Run the fuzzer on the parser
- [x] Run this change on dozens of open-source projects
### Running this change on dozens of open-source projects
Refer to the PR description to get the list of open source projects used
for testing.
Now, the following tests were done between `main` and this branch:
1. Compare the output of `--select=E999` (syntax errors)
2. Compare the output of default rule selection
3. Compare the output of `--select=ALL`
**Conclusion: all output were same**
## What's next?
The next step is to introduce re-lexing logic and update the parser to
feed the recovery information to the lexer so that it can emit the
correct token. This moves us one step closer to having error resilience
in the parser and provides Ruff the possibility to lint even if the
source code contains syntax errors.
## Summary
Checks for unnecessary `dict` comprehension when creating a new
dictionary from iterable. Suggest to replace with
`dict.fromkeys(iterable)`
See: https://github.com/astral-sh/ruff/issues/9592
## Test Plan
```bash
cargo test
```
The "wsl" crate was last touched in 2019, whereas the "is-wsl" crate was
last updated in 2023. Additionally, it is unclear whether the "wsl"
crate supports both WSL1 and WSL2 (which was announced in 2019), whereas
the "is-wsl" crate explicitly supports both WSL1 and WSL2.
The required code changes are minimal, since both crates provide only a
`is_wsl() -> bool` function.
## Summary
I think it's reasonable to avoid raising `INP001` for scripts, and
shebangs are one sufficient way to detect scripts.
Closes https://github.com/astral-sh/ruff/issues/8690.
These names are only ever displayed internally right now and we could be
clearer in our test snapshots.
The diff is kind of scary because all of the tests fixtures are updated.
## Summary
Throughout the codebase, we have this pattern:
```rust
let mut diagnostic = ...
if checker.patch(Rule::UnusedVariable) {
// Do the fix.
}
diagnostics.push(diagnostic)
```
This was helpful when we computed fixes lazily; however, we now compute
fixes eagerly, and this is _only_ used to ensure that we don't generate
fixes for rules marked as unfixable.
We often forget to add this, and it leads to bugs in enforcing
`--unfixable`.
This PR instead removes all of these checks, moving the responsibility
of enforcing `--unfixable` up to `check_path`. This is similar to how
@zanieb handled the `--extend-unsafe` logic: we post-process the
diagnostics to remove any fixes that should be ignored.
After working with the previous change in
https://github.com/astral-sh/ruff/pull/7821 I found the names a bit
unclear and their relationship with the user-facing API muddied. Since
the applicability is exposed to the user directly in our JSON output, I
think it's important that these names align with our configuration
options. I've replaced `Manual` or `Never` with `Display` which captures
our intent for these fixes (only for display). Here, we create room for
future levels, such as `HasPlaceholders`, which wouldn't fit into the
`Always`/`Sometimes`/`Never` levels.
Unlike https://github.com/astral-sh/ruff/pull/7819, this retains the
flat enum structure which is easier to work with.
## Stack Summary
This stack splits `Settings` into `FormatterSettings` and `LinterSettings` and moves it into `ruff_workspace`. This change is necessary to add the `FormatterSettings` to `Settings` without adding `ruff_python_formatter` as a dependency to `ruff_linter` (and the linter should not contain the formatter settings).
A quick overview of our settings struct at play:
* `Options`: 1:1 representation of the options in the `pyproject.toml` or `ruff.toml`. Used for deserialization.
* `Configuration`: Resolved `Options`, potentially merged from multiple configurations (when using `extend`). The representation is very close if not identical to the `Options`.
* `Settings`: The resolved configuration that uses a data format optimized for reading. Optional fields are initialized with their default values. Initialized by `Configuration::into_settings` .
The goal of this stack is to split `Settings` into tool-specific resolved `Settings` that are independent of each other. This comes at the advantage that the individual crates don't need to know anything about the other tools. The downside is that information gets duplicated between `Settings`. Right now the duplication is minimal (`line-length`, `tab-width`) but we may need to come up with a solution if more expensive data needs sharing.
This stack focuses on `Settings`. Splitting `Configuration` into some smaller structs is something I'll follow up on later.
## PR Summary
This PR extracts the linter-specific settings into a new `LinterSettings` struct and adds it as a `linter` field to the `Settings` struct. This is in preparation for moving `Settings` from `ruff_linter` to `ruff_workspace`
## Test Plan
`cargo test`