Commit graph

198 commits

Author SHA1 Message Date
David Peter
86fd9b634e
[ty] Format conflicting types as an enumeration (#18956)
## Summary

Format conflicting declared types as
```
`str`, `int` and `bytes`
```

Thanks to @AlexWaygood for the initial draft.

@dcreager, looking forward to your one-character follow-up PR.
2025-06-26 14:29:33 +02:00
David Peter
b01003f81d
[ty] Infer nonlocal types as unions of all reachable bindings (#18750)
## Summary

This PR includes a behavioral change to how we infer types for public
uses of symbols within a module. Where we would previously use the type
that a use at the end of the scope would see, we now consider all
reachable bindings and union the results:

```py
x = None

def f():
    reveal_type(x)  # previously `Unknown | Literal[1]`, now `Unknown | None | Literal[1]`

f()

x = 1

f()
```

This helps especially in cases where the the end of the scope is not
reachable:

```py
def outer(x: int):
    def inner():
        reveal_type(x)  # previously `Unknown`, now `int`

    raise ValueError
```

This PR also proposes to skip the boundness analysis of public uses.
This is consistent with the "all reachable bindings" strategy, because
the implicit `x = <unbound>` binding is also always reachable, and we
would have to emit "possibly-unresolved" diagnostics for every public
use otherwise. Changing this behavior allows common use-cases like the
following to type check without any errors:

```py
def outer(flag: bool):
    if flag:
        x = 1

        def inner():
            print(x)  # previously: possibly-unresolved-reference, now: no error
```

closes https://github.com/astral-sh/ty/issues/210
closes https://github.com/astral-sh/ty/issues/607
closes https://github.com/astral-sh/ty/issues/699

## Follow up

It is now possible to resolve the following TODO, but I would like to do
that as a follow-up, because it requires some changes to how we treat
implicit attribute assignments, which could result in ecosystem changes
that I'd like to see separately.


315fb0f3da/crates/ty_python_semantic/src/semantic_index/builder.rs (L1095-L1117)

## Ecosystem analysis

[**Full report**](https://shark.fish/diff-public-types.html)

* This change obviously removes a lot of `possibly-unresolved-reference`
diagnostics (7818) because we do not analyze boundness for public uses
of symbols inside modules anymore.
* As the primary goal here, this change also removes a lot of
false-positive `unresolved-reference` diagnostics (231) in scenarios
like this:
    ```py
    def _(flag: bool):
        if flag:
            x = 1
    
            def inner():
                x
    
            raise
    ```
* This change also introduces some new false positives for cases like:
    ```py
    def _():
        x = None
    
        x = "test"
    
        def inner():
x.upper() # Attribute `upper` on type `Unknown | None | Literal["test"]`
is possibly unbound
    ```
We have test cases for these situations and it's plausible that we can
improve this in a follow-up.


## Test Plan

New Markdown tests
2025-06-26 12:24:40 +02:00
Alex Waygood
c77e72ea1a
[ty] Add subdiagnostic about empty bodies in more cases (#18942) 2025-06-25 20:25:00 +01:00
David Peter
689797a984
[ty] Type narrowing in comprehensions (#18934)
## Summary

Add type narrowing inside comprehensions:

```py
def _(xs: list[int | None]):
    [reveal_type(x) for x in xs if x is not None]  # revealed: int
```

closes https://github.com/astral-sh/ty/issues/680

## Test Plan

* New Markdown tests
* Made sure the example from https://github.com/astral-sh/ty/issues/680
now checks without errors
* Made sure that all removed ecosystem diagnostics were actually false
positives
2025-06-25 11:30:28 +02:00
Carl Meyer
62975b3ab2
[ty] eliminate is_fully_static (#18799)
## Summary

Having a recursive type method to check whether a type is fully static
is inefficient, unnecessary, and makes us overly strict about subtyping
relations.

It's inefficient because we end up re-walking the same types many times
to check for fully-static-ness.

It's unnecessary because we can check relations involving the dynamic
type appropriately, depending whether the relation is subtyping or
assignability.

We use the subtyping relation to simplify unions and intersections. We
can usefully consider that `S <: T` for gradual types also, as long as
it remains true that `S | T` is equivalent to `T` and `S & T` is
equivalent to `S`.

One conservative definition (implemented here) that satisfies this
requirement is that we consider `S <: T` if, for every possible pair of
materializations `S'` and `T'`, `S' <: T'`. Or put differently the top
materialization of `S` (`S+` -- the union of all possible
materializations of `S`) is a subtype of the bottom materialization of
`T` (`T-` -- the intersection of all possible materializations of `T`).
In the most basic cases we can usefully say that `Any <: object` and
that `Never <: Any`, and we can handle more complex cases inductively
from there.

This definition of subtyping for gradual subtypes is not reflexive
(`Any` is not a subtype of `Any`).

As a corollary, we also remove `is_gradual_equivalent_to` --
`is_equivalent_to` now has the meaning that `is_gradual_equivalent_to`
used to have. If necessary, we could restore an
`is_fully_static_equivalent_to` or similar (which would not do an
`is_fully_static` pre-check of the types, but would instead pass a
relation-kind enum down through a recursive equivalence check, similar
to `has_relation_to`), but so far this doesn't appear to be necessary.

Credit to @JelleZijlstra for the observation that `is_fully_static` is
unnecessary and overly restrictive on subtyping.

There is another possible definition of gradual subtyping: instead of
requiring that `S+ <: T-`, we could instead require that `S+ <: T+` and
`S- <: T-`. In other words, instead of requiring all materializations of
`S` to be a subtype of every materialization of `T`, we just require
that every materialization of `S` be a subtype of _some_ materialization
of `T`, and that every materialization of `T` be a supertype of some
materialization of `S`. This definition also preserves the core
invariant that `S <: T` implies that `S | T = T` and `S & T = S`, and it
restores reflexivity: under this definition, `Any` is a subtype of
`Any`, and for any equivalent types `S` and `T`, `S <: T` and `T <: S`.
But unfortunately, this definition breaks transitivity of subtyping,
because nominal subclasses in Python use assignability ("consistent
subtyping") to define acceptable overrides. This means that we may have
a class `A` with `def method(self) -> Any` and a subtype `B(A)` with
`def method(self) -> int`, since `int` is assignable to `Any`. This
means that if we have a protocol `P` with `def method(self) -> Any`, we
would have `B <: A` (from nominal subtyping) and `A <: P` (`Any` is a
subtype of `Any`), but not `B <: P` (`int` is not a subtype of `Any`).
Breaking transitivity of subtyping is not tenable, so we don't use this
definition of subtyping.

## Test Plan

Existing tests (modified in some cases to account for updated
semantics.)

Stable property tests pass at a million iterations:
`QUICKCHECK_TESTS=1000000 cargo test -p ty_python_semantic -- --ignored
types::property_tests::stable`

### Changes to property test type generation

Since we no longer have a method of categorizing built types as
fully-static or not-fully-static, I had to add a previously-discussed
feature to the property tests so that some tests can build types that
are known by construction to be fully static, because there are still
properties that only apply to fully-static types (for example,
reflexiveness of subtyping.)

## Changes to handling of `*args, **kwargs` signatures

This PR "discovered" that, once we allow non-fully-static types to
participate in subtyping under the above definitions, `(*args: Any,
**kwargs: Any) -> Any` is now a subtype of `() -> object`. This is true,
if we take a literal interpretation of the former signature: all
materializations of the parameters `*args: Any, **kwargs: Any` can
accept zero arguments, making the former signature a subtype of the
latter. But the spec actually says that `*args: Any, **kwargs: Any`
should be interpreted as equivalent to `...`, and that makes a
difference here: `(...) -> Any` is not a subtype of `() -> object`,
because (unlike a literal reading of `(*args: Any, **kwargs: Any)`),
`...` can materialize to _any_ signature, including a signature with
required positional arguments.

This matters for this PR because it makes the "any two types are both
assignable to their union" property test fail if we don't implement the
equivalence to `...`. Because `FunctionType.__call__` has the signature
`(*args: Any, **kwargs: Any) -> Any`, and if we take that at face value
it's a subtype of `() -> object`, making `FunctionType` a subtype of `()
-> object)` -- but then a function with a required argument is also a
subtype of `FunctionType`, but not a subtype of `() -> object`. So I
went ahead and implemented the equivalence to `...` in this PR.

## Ecosystem analysis

* Most of the ecosystem report are cases of improved union/intersection
simplification. For example, we can now simplify a union like `bool |
(bool & Unknown) | Unknown` to simply `bool | Unknown`, because we can
now observe that every possible materialization of `bool & Unknown` is
still a subtype of `bool` (whereas before we would set aside `bool &
Unknown` as a not-fully-static type.) This is clearly an improvement.
* The `possibly-unresolved-reference` errors in sockeye, pymongo,
ignite, scrapy and others are true positives for conditional imports
that were formerly silenced by bogus conflicting-declarations (which we
currently don't issue a diagnostic for), because we considered two
different declarations of `Unknown` to be conflicting (we used
`is_equivalent_to` not `is_gradual_equivalent_to`). In this PR that
distinction disappears and all equivalence is gradual, so a declaration
of `Unknown` no longer conflicts with a declaration of `Unknown`, which
then results in us surfacing the possibly-unbound error.
* We will now issue "redundant cast" for casting from a typevar with a
gradual bound to the same typevar (the hydra-zen diagnostic). This seems
like an improvement.
* The new diagnostics in bandersnatch are interesting. For some reason
primer in CI seems to be checking bandersnatch on Python 3.10 (not yet
sure why; this doesn't happen when I run it locally). But bandersnatch
uses `enum.StrEnum`, which doesn't exist on 3.10. That makes the `class
SimpleDigest(StrEnum)` a class that inherits from `Unknown` (and
bypasses our current TODO handling for accessing attributes on enum
classes, since we don't recognize it as an enum class at all). This PR
improves our understanding of assignability to classes that inherit from
`Any` / `Unknown`, and we now recognize that a string literal is not
assignable to a class inheriting `Any` or `Unknown`.
2025-06-24 18:02:05 -07:00
Douglas Creager
66f50fb04b
[ty] Add property test generators for variable-length tuples (#18901)
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Add property test generators for the new variable-length tuples. This
covers homogeneous tuples as well.

The property tests did their job! This identified several fixes we
needed to make to various type property methods.

cf https://github.com/astral-sh/ruff/pull/18600#issuecomment-2993764471

---------

Co-authored-by: Alex Waygood <Alex.Waygood@Gmail.com>
2025-06-24 18:13:47 -04:00
Alex Waygood
9d8cba4e8b
[ty] Improve disjointness inference for NominalInstanceTypes and SubclassOfTypes (#18864)
Co-authored-by: Carl Meyer <carl@astral.sh>
2025-06-24 20:27:37 +00:00
Alex Waygood
e44c489273
[ty] Fix false positives when subscripting an object inferred as having an Intersection type (#18920) 2025-06-24 18:39:02 +00:00
Alex Waygood
27eee5a1a8
[ty] Support narrowing on isinstance()/issubclass() if the second argument is a dynamic, intersection, union or typevar type (#18900) 2025-06-24 10:55:26 +00:00
med1844
fd2cc37f90
[ty] Add decorator check for implicit attribute assignments (#18587)
## Summary

Previously, the checks for implicit attribute assignments didn't
properly account for method decorators. This PR fixes that by:

- Adding a decorator check in `implicit_instance_attribute`. This allows
it to filter out methods with mismatching decorators when analyzing
attribute assignments.
- Adding attribute search for implicit class attributes: if an attribute
can't be found directly in the class body, the
`ClassLiteral::own_class_member` function will now search in
classmethods.
- Adding `staticmethod`: it has been added into `KnownClass` and
together with the new decorator check, it will no longer expose
attributes when the assignment target name is the same as the first
method name.

If accepted, it should fix https://github.com/astral-sh/ty/issues/205
and https://github.com/astral-sh/ty/issues/207.

## Test Plan

This is tested with existing mdtest suites and is able to get most of
the TODO marks for implicit assignments in classmethods and
staticmethods removed.

However, there's one specific test case I failed to figure out how to
correctly resolve:


b279508bdc/crates/ty_python_semantic/resources/mdtest/attributes.md (L754-L755)

I tried to add `instance_member().is_unbound()` check in this [else
branch](b279508bdc/crates/ty_python_semantic/src/types/infer.rs (L3299-L3301))
but it causes tests with class attributes defined in class body to fail.
While it's possible to implicitly add `ClassVar` to qualifiers to make
this assignment fail and keep everything else passing, it doesn't feel
like the right solution.
2025-06-24 11:42:10 +02:00
Dhruv Manilawala
e474f36473
[ty] Avoid duplicate diagnostic in unpacking (#18897)
## Summary

This PR fixes astral-sh/ty#185 by avoiding to infer the value expression
for an unpacking.

This is done simply by only inferring the value expression in a
non-unpacking branch for assignment statement, for statement, with
statement and comprehensions.

This is a simpler alternative to
https://github.com/astral-sh/ruff/pull/18890 which I only realized in
hindsight! Ideally, the solution would to consider the "unpack" as it's
own region and do all of the inference of every expressions involved in
an unpacking inside the unpack query and then merge the results in the
outer query. This would require access to the `Unpack` ingredient which
is stored on the `Definition`. And, this would require create the said
`Definition`s for all attributes and subscript expressions. It does
simplify the target inference logic by streamlining it into a single
`infer_target` method instead of the `infer_target`/`infer_target_impl`
split.

Additionally, #18890 also solves a couple of TODOs around raising errors
around attribute / subscript assignment.

## Test Plan

Update the existing test, go through a couple of ecosystem diagnostic.
2025-06-24 07:49:44 +05:30
Suneet Tipirneni
ef8281b695
[ty] add support for mapped union and intersection subscript loads (#18846)
## Summary

Note this modifies the diagnostics a bit. Previously performing
subscript access on something like `NotSubscriptable1 |
NotSubscriptable2` would report the full type as not being
subscriptable:

```
[non-subscriptable] "Cannot subscript object of type `NotSubscriptable1 | NotSubscriptable2` with no `__getitem__` method"
```

Now each erroneous constituent has a separate error:

```
[non-subscriptable] "Cannot subscript object of type `NotSubscriptable2` with no `__getitem__` method"
[non-subscriptable] "Cannot subscript object of type `NotSubscriptable1` with no `__getitem__` method"
```

Closes https://github.com/astral-sh/ty/issues/625

## Test Plan

 mdtest

---------

Co-authored-by: Carl Meyer <carl@astral.sh>
2025-06-23 16:38:01 +00:00
David Peter
907c291877
[ty] Update mypy_primer, add two new projects (#18891)
## Summary

Pull in latest changes to mypy_primer:
01a7ca325f..e5f5544796
2025-06-23 13:08:11 +02:00
David Peter
21303d1a02
[ty] Minor change to builtins.md test (#18889)
## Summary

As far as I can tell, the two existing tests did the exact same thing.
Remove the redundant test, and add tests for all combinations of
declared/not-declared and local/"public" use of the name.

Proposing this as a separate PR before the behavior might change via
https://github.com/astral-sh/ruff/pull/18750
2025-06-23 12:32:50 +02:00
Carl Meyer
089f5152f6
[ty] Fix mixed tuple subtyping (#18852)
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## Summary

The code in the `Variable` branch of
`VariableLengthTupleSpec::has_relation_to` made the incorrect assumption
that if you zip two possibly-different-length iterators together and
iterate over the resulting zip iterator, the original two iterators will
only have their common elements consumed. But in fact, the zip iterator
detects that it is done when it receives a `None` from one iterator and
`Some()` element from the other iterator, which means that it consumes
one additional element from the longer iterator. This meant that we
failed to detect mismatched types on this extra consumed element,
because we never compared it to the variable type of the other tuple.

Use `zip_longest` from itertools as an alternative, which allows us to
combine all the handling into just two `zip_longest`, one for prefixes
and one for suffixes.

Marking this PR internal since it fixes a bug in a commit that wasn't
released yet.

## Test Plan

Added mdtests that failed before this fix and pass after it.
2025-06-21 13:09:23 -07:00
Douglas Creager
ea812d0813
[ty] Homogeneous and mixed tuples (#18600)
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We already had support for homogeneous tuples (`tuple[int, ...]`). This
PR extends this to also support mixed tuples (`tuple[str, str,
*tuple[int, ...], str str]`).

A mixed tuple consists of a fixed-length (possibly empty) prefix and
suffix, and a variable-length portion in the middle. Every element of
the variable-length portion must be of the same type. A homogeneous
tuple is then just a mixed tuple with an empty prefix and suffix.

The new data representation uses different Rust types for a fixed-length
(aka heterogeneous) tuple. Another option would have been to use the
`VariableLengthTuple` representation for all tuples, and to wrap the
"variable + suffix" portion in an `Option`. I don't think that would
simplify the method implementations much, though, since we would still
have a 2×2 case analysis for most of them.

One wrinkle is that the definition of the `tuple` class in the typeshed
has a single typevar, and canonically represents a homogeneous tuple.
When getting the class of a tuple instance, that means that we have to
summarize our detailed mixed tuple type information into its
"homogeneous supertype". (We were already doing this for heterogeneous
types.)

A similar thing happens when concatenating two mixed tuples: the
variable-length portion and suffix of the LHS, and the prefix and
variable-length portion of the RHS, all get unioned into the
variable-length portion of the result. The LHS prefix and RHS suffix
carry through unchanged.

---------

Co-authored-by: Alex Waygood <Alex.Waygood@Gmail.com>
2025-06-20 18:23:54 -04:00
Alex Waygood
dc160c4a49
[ty] Fix panics when pulling types for ClassVar or Final parameterized with >1 argument (#18824) 2025-06-20 18:06:40 +01:00
med1844
7982edac90
[ty] Add support for @staticmethods (#18809)
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## Summary

Add support for `@staticmethod`s. Overall, the changes are very similar
to #16305.

#18587 will be dependent on this PR for a potential fix of
https://github.com/astral-sh/ty/issues/207.

mypy_primer will look bad since the new code allows ty to check more
code.

## Test Plan

Added new markdown tests. Please comment if there's any missing tests
that I should add in, thank you.
2025-06-20 10:38:17 +02:00
Dhruv Manilawala
22177e6915
[ty] Surface matched overload diagnostic directly (#18452)
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## Summary

This PR resolves the way diagnostics are reported for an invalid call to
an overloaded function.

If any of the steps in the overload call evaluation algorithm yields a
matching overload but it's type checking that failed, the
`no-matching-overload` diagnostic is incorrect because there is a
matching overload, it's the arguments passed that are invalid as per the
signature. So, this PR improves that by surfacing the diagnostics on the
matching overload directly.

It also provides additional context, specifically the matching overload
where this error occurred and other non-matching overloads. Consider the
following example:

```py
from typing import overload


@overload
def f() -> None: ...
@overload
def f(x: int) -> int: ...
@overload
def f(x: int, y: int) -> int: ...
def f(x: int | None = None, y: int | None = None) -> int | None:
    return None


f("a")
```

We get:

<img width="857" alt="Screenshot 2025-06-18 at 11 07 10"
src="https://github.com/user-attachments/assets/8dbcaf13-2a74-4661-aa94-1225c9402ea6"
/>


## Test Plan

Update test cases, resolve existing todos and validate the updated
snapshots.
2025-06-20 08:36:49 +05:30
InSync
20d73dd41c
[ty] Report when a dataclass contains more than one KW_ONLY field (#18731)
## Summary

Part of [#111](https://github.com/astral-sh/ty/issues/111).

After this change, dataclasses with two or more `KW_ONLY` field will be
reported as invalid. The duplicate fields will simply be ignored when
computing `__init__`'s signature.

## Test Plan

Markdown tests.
2025-06-19 19:42:31 -07:00
Alperen Keleş
932f941d15
[ty] fix binary expression inference between boolean literals and bool instances (#18663) 2025-06-17 18:02:40 +01:00
Alex Waygood
685eac10e5
Revert "[ty] Offer "Did you mean...?" suggestions for unresolved from imports and unresolved attributes (#18705)" (#18721) 2025-06-17 15:48:09 +01:00
Alex Waygood
913f136d33
[ty] Offer "Did you mean...?" suggestions for unresolved from imports and unresolved attributes (#18705)
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Co-authored-by: Brent Westbrook <brentrwestbrook@gmail.com>
2025-06-17 11:10:34 +01:00
Dhruv Manilawala
c7e020df6b
[ty] Filter overloads based on Any / Unknown (#18607)
## Summary

Closes: astral-sh/ty#552

This PR adds support for step 5 of the overload call evaluation
algorithm which specifies:

> For all arguments, determine whether all possible materializations of
the argument’s type are
> assignable to the corresponding parameter type for each of the
remaining overloads. If so,
> eliminate all of the subsequent remaining overloads.

The algorithm works in two parts:

1. Find out the participating parameter indexes. These are the
parameters that aren't gradual equivalent to one or more parameter types
at the same index in other overloads.
2. Loop over each overload and check whether that would be the _final_
overload for the argument types i.e., the remaining overloads will never
be matched against these argument types

For step 1, the participating parameter indexes are computed by just
comparing whether all the parameter types at the corresponding index for
all the overloads are **gradual equivalent**.

The step 2 of the algorithm used is described in [this
comment](https://github.com/astral-sh/ty/issues/552#issuecomment-2969165421).

## Test Plan

Update the overload call tests.
2025-06-17 15:35:09 +05:30
Alex Waygood
1d458d4314
[ty] Fix panics when pulling types for various special forms that have the wrong number of parameters (#18642) 2025-06-17 10:40:50 +01:00
Shunsuke Shibayama
342b2665db
[ty] basic narrowing on attribute and subscript expressions (#17643)
## Summary

This PR closes astral-sh/ty#164.

This PR introduces a basic type narrowing mechanism for
attribute/subscript expressions.
Member accesses, int literal subscripts, string literal subscripts are
supported (same as mypy and pyright).

## Test Plan

New test cases are added to `mdtest/narrow/complex_target.md`.

---------

Co-authored-by: David Peter <mail@david-peter.de>
2025-06-17 11:07:46 +02:00
David Peter
a1c69ca460
[ty] Enable ecosystem check for 'pywin32' (#18716)
## Summary

Follow-up to #18621
2025-06-17 09:52:26 +02:00
David Peter
3a77768f79
[ty] Reachability constraints (#18621)
## Summary



* Completely removes the concept of visibility constraints. Reachability
constraints are now used to model the static visibility of bindings and
declarations. Reachability constraints are *much* easier to reason about
/ work with, since they are applied at the beginning of a branch, and
not applied retroactively. Removing the duplication between visibility
and reachability constraints also leads to major code simplifications
[^1]. For an overview of how the new constraint system works, see the
updated doc comment in `reachability_constraints.rs`.
* Fixes a [control-flow modeling bug
(panic)](https://github.com/astral-sh/ty/issues/365) involving `break`
statements in loops
* Fixes a [bug where](https://github.com/astral-sh/ty/issues/624) where
`elif` branches would have wrong reachability constraints
* Fixes a [bug where](https://github.com/astral-sh/ty/issues/648) code
after infinite loops would not be considered unreachble
* Fixes a panic on the `pywin32` ecosystem project, which we should be
able to move to `good.txt` once this has been merged.
* Removes some false positives in unreachable code because we infer
`Never` more often, due to the fact that reachability constraints now
apply retroactively to *all* active bindings, not just to bindings
inside a branch.
* As one example, this removes the `division-by-zero` diagnostic from
https://github.com/astral-sh/ty/issues/443 because we now infer `Never`
for the divisor.
* Supersedes and includes similar test changes as
https://github.com/astral-sh/ruff/pull/18392


closes https://github.com/astral-sh/ty/issues/365
closes https://github.com/astral-sh/ty/issues/624
closes https://github.com/astral-sh/ty/issues/642
closes https://github.com/astral-sh/ty/issues/648

## Benchmarks

Benchmarks on black, pandas, and sympy showed that this is neither a
performance improvement, nor a regression.

## Test Plan

Regression tests for:
- [x] https://github.com/astral-sh/ty/issues/365
- [x] https://github.com/astral-sh/ty/issues/624
- [x] https://github.com/astral-sh/ty/issues/642
- [x] https://github.com/astral-sh/ty/issues/648

[^1]: I'm afraid this is something that @carljm advocated for since the
beginning, and I'm not sure anymore why we have never seriously tried
this before. So I suggest we do *not* attempt to do a historical deep
dive to find out exactly why this ever became so complicated, and just
enjoy the fact that we eventually arrived here.

---------

Co-authored-by: Carl Meyer <carl@astral.sh>
2025-06-17 09:24:28 +02:00
Felix Scherz
373a3bfcd6
[ty] allow T: Never as subtype of Never (#18687) 2025-06-16 17:46:17 +00:00
Abhijeet Prasad Bodas
2b15f1d240
[ty] Support dataclasses.KW_ONLY (#18677) 2025-06-16 17:27:55 +00:00
InSync
6d56ee803e
[ty] Add partial support for TypeIs (#18589)
## Summary

Part of [#117](https://github.com/astral-sh/ty/issues/117).

`TypeIs[]` is a special form that allows users to define their own
narrowing functions. Despite the syntax, `TypeIs` is not a generic and,
on its own, it is meaningless as a type.
[Officially](https://typing.python.org/en/latest/spec/narrowing.html#typeis),
a function annotated as returning a `TypeIs[T]` is a <i>type narrowing
function</i>, where `T` is called the <i>`TypeIs` return type</i>.

A `TypeIs[T]` may or may not be bound to a symbol. Only bound types have
narrowing effect:

```python
def f(v: object = object()) -> TypeIs[int]: ...

a: str = returns_str()

if reveal_type(f()):   # Unbound: TypeIs[int]
	reveal_type(a)     # str

if reveal_type(f(a)):  # Bound:   TypeIs[a, int]
	reveal_type(a)     # str & int
```

Delayed usages of a bound type has no effect, however:

```python
b = f(a)

if b:
	reveal_type(a)     # str
```

A `TypeIs[T]` type:

* Is fully static when `T` is fully static.
* Is a singleton/single-valued when it is bound.
* Has exactly two runtime inhabitants when it is unbound: `True` and
`False`.
  In other words, an unbound type have ambiguous truthiness.
It is possible to infer more precise truthiness for bound types;
however, that is not part of this change.

`TypeIs[T]` is a subtype of or otherwise assignable to `bool`. `TypeIs`
is invariant with respect to the `TypeIs` return type: `TypeIs[int]` is
neither a subtype nor a supertype of `TypeIs[bool]`. When ty sees a
function marked as returning `TypeIs[T]`, its `return`s will be checked
against `bool` instead. ty will also report such functions if they don't
accept a positional argument. Addtionally, a type narrowing function
call with no positional arguments (e.g., `f()` in the example above)
will be considered invalid.

## Test Plan

Markdown tests.

---------

Co-authored-by: Carl Meyer <carl@astral.sh>
2025-06-13 15:27:45 -07:00
Shunsuke Shibayama
ef564094a9
[ty] support del statement and deletion of except handler names (#18593)
## Summary

This PR closes https://github.com/astral-sh/ty/issues/238.

Since `DefinitionState::Deleted` was introduced in #18041, support for
the `del` statement (and deletion of except handler names) is
straightforward.

However, it is difficult to determine whether references to attributes
or subscripts are unresolved after they are deleted. This PR only
invalidates narrowing by assignment if the attribute or subscript is
deleted.

## Test Plan

`mdtest/del.md` is added.

---------

Co-authored-by: Alex Waygood <Alex.Waygood@Gmail.com>
2025-06-12 07:44:42 -07:00
Alex Waygood
324e5cbc19
[ty] Pull types on synthesized Python files created by mdtest (#18539) 2025-06-12 10:32:17 +01:00
Dhruv Manilawala
ef4108af2a
[ty] Generate the top and bottom materialization of a type (#18594)
## Summary

This is to support https://github.com/astral-sh/ruff/pull/18607.

This PR adds support for generating the top materialization (or upper
bound materialization) and the bottom materialization (or lower bound
materialization) of a type. This is the most general and the most
specific form of the type which is fully static, respectively.
    
More concretely, `T'`, the top materialization of `T`, is the type `T`
with all occurrences
of dynamic type (`Any`, `Unknown`, `@Todo`) replaced as follows:

- In covariant position, it's replaced with `object`
- In contravariant position, it's replaced with `Never`
- In invariant position, it's replaced with an unresolved type variable

(For an invariant position, it should actually be replaced with an
existential type, but this is not currently representable in our type
system, so we use an unresolved type variable for now instead.)

The bottom materialization is implemented in the same way, except we
start out in "contravariant" position.

## Test Plan

Add test cases for various types.
2025-06-12 12:06:16 +05:30
Micha Reiser
5dcfc9f074
Move corpus tests to ty_python_semantic (#18609) 2025-06-11 08:55:30 +02:00
Carl Meyer
a2de81cb27
[ty] implement disjointness of Callable vs SpecialForm (#18503)
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## Summary

Fixes https://github.com/astral-sh/ty/issues/557

## Test Plan

Stable property tests succeed with a million iterations. Added mdtests.

---------

Co-authored-by: Alex Waygood <Alex.Waygood@Gmail.com>
2025-06-10 20:25:08 +00:00
Suneet Tipirneni
161446a47a
[ty] Add support for global __debug__ constant (#18540)
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## Summary

Closes https://github.com/astral-sh/ty/issues/577. Make global
`__debug__` a `bool` constant.

## Test Plan

Mdtest `global-constants.md` was created to check if resolved type was
`bool`.

---------

Co-authored-by: David Peter <mail@david-peter.de>
2025-06-10 06:48:59 +00:00
Alex Waygood
aa3c312f5f
[ty] Fix panic when trying to pull types for subscript expressions inside Callable type expressions (#18534) 2025-06-09 11:26:10 +01:00
Ben Bar-Or
1dc8f8f903
[ty] Add hints to invalid-type-form for common mistakes (#18543)
Co-authored-by: Ben Bar-Or <ben.baror@ridewithvia.com>
Co-authored-by: Alex Waygood <alex.waygood@gmail.com>
2025-06-09 00:40:05 +01:00
Alex Waygood
6e785867c3
[ty] Unify Type::is_subtype_of() and Type::is_assignable_to() (#18430)
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2025-06-06 17:28:55 +00:00
Shunsuke Shibayama
0858896bc4
[ty] type narrowing by attribute/subscript assignments (#18041)
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## Summary

This PR partially solves https://github.com/astral-sh/ty/issues/164
(derived from #17643).

Currently, the definitions we manage are limited to those for simple
name (symbol) targets, but we expand this to track definitions for
attribute and subscript targets as well.

This was originally planned as part of the work in #17643, but the
changes are significant, so I made it a separate PR.
After merging this PR, I will reflect this changes in #17643.

There is still some incomplete work remaining, but the basic features
have been implemented, so I am publishing it as a draft PR.
Here is the TODO list (there may be more to come):
* [x] Complete rewrite and refactoring of documentation (removing
`Symbol` and replacing it with `Place`)
* [x] More thorough testing
* [x] Consolidation of duplicated code (maybe we can consolidate the
handling related to name, attribute, and subscript)

This PR replaces the current `Symbol` API with the `Place` API, which is
a concept that includes attributes and subscripts (the term is borrowed
from Rust).

## Test Plan

`mdtest/narrow/assignment.md` is added.

---------

Co-authored-by: David Peter <sharkdp@users.noreply.github.com>
Co-authored-by: Carl Meyer <carl@astral.sh>
2025-06-04 17:24:27 -07:00
Alex Waygood
ce8b744f17
[ty] Only calculate information for unresolved-reference subdiagnostic if we know we'll emit the diagnostic (#18465)
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## Summary

This optimizes some of the logic added in
https://github.com/astral-sh/ruff/pull/18444. In general, we only
calculate information for subdiagnostics if we know we'll actually emit
the diagnostic. The check to see whether we'll emit the diagnostic is
work we'll definitely have to do whereas the the work to gather
information for a subdiagnostic isn't work we necessarily have to do if
the diagnostic isn't going to be emitted at all.

This PR makes us lazier about gathering the information we need for the
subdiagnostic, and moves all the subdiagnostic logic into one function
rather than having some `unresolved-reference` subdiagnostic logic in
`infer.rs` and some in `diagnostic.rs`.

## Test Plan

`cargo test -p ty_python_semantic`
2025-06-04 20:41:00 +01:00
Alex Waygood
5a8cdab771
[ty] Only consider a type T a subtype of a protocol P if all of P's members are fully bound on T (#18466)
## Summary

Fixes https://github.com/astral-sh/ty/issues/578

## Test Plan

mdtests
2025-06-04 19:39:14 +00:00
Alex Waygood
3a8191529c
[ty] Exclude members starting with _abc_ from a protocol interface (#18467)
## Summary

As well as excluding a hardcoded set of special attributes, CPython at
runtime also excludes any attributes or declarations starting with
`_abc_` from the set of members that make up a protocol interface. I
missed this in my initial implementation.

This is a bit of a CPython implementation detail, but I do think it's
important that we try to model the runtime as best we can here. The
closer we are to the runtime behaviour, the closer we come to sound
behaviour when narrowing types from `isinstance()` checks against
runtime-checkable protocols (for example)

## Test Plan

Extended an existing mdtest
2025-06-04 20:34:09 +01:00
lipefree
e658778ced
[ty] Add subdiagnostic suggestion to unresolved-reference diagnostic when variable exists on self (#18444)
## Summary

Closes https://github.com/astral-sh/ty/issues/502.

In the following example:
```py
class Foo:
    x: int

    def method(self):
        y = x
```
The user may intended to use `y = self.x` in `method`. 

This is now added as a subdiagnostic in the following form : 

`info: An attribute with the same name as 'x' is defined, consider using
'self.x'`

## Test Plan

Added mdtest with snapshot diagnostics.
2025-06-04 08:13:50 -07:00
David Peter
293d4ac388
[ty] Add meta-type tests for legavy TypeVars (#18453)
## Summary

Follow up to the comment by @dcreager
[here](https://github.com/astral-sh/ruff/pull/18439#discussion_r2123802784).
2025-06-04 07:44:44 +00:00
Dhruv Manilawala
453e5f5934
[ty] Add tests for empty list/tuple unpacking (#18451)
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## Summary

This PR is to address this comment:
https://github.com/astral-sh/ruff/pull/18438#issuecomment-2935344415

## Test Plan

Run mdtest
2025-06-04 02:40:26 +00:00
Dhruv Manilawala
7ea773daf2
[ty] Argument type expansion for overload call evaluation (#18382)
## Summary

Part of astral-sh/ty#104, closes: astral-sh/ty#468

This PR implements the argument type expansion which is step 3 of the
overload call evaluation algorithm.

Specifically, this step needs to be taken if type checking resolves to
no matching overload and there are argument types that can be expanded.

## Test Plan

Add new test cases.

## Ecosystem analysis

This PR removes 174 `no-matching-overload` false positives -- I looked
at a lot of them and they all are false positives.

One thing that I'm not able to understand is that in
2b7e3adf27/sphinx/ext/autodoc/preserve_defaults.py (L179)
the inferred type of `value` is `str | None` by ty and Pyright, which is
correct, but it's only ty that raises `invalid-argument-type` error
while Pyright doesn't. The constructor method of `DefaultValue` has
declared type of `str` which is invalid.

There are few cases of false positives resulting due to the fact that ty
doesn't implement narrowing on attribute expressions.
2025-06-04 02:12:00 +00:00
Matthew Mckee
e8ea40012a
[ty] Add generic inference for dataclasses (#18443)
## Summary

An issue seen here https://github.com/astral-sh/ty/issues/500

The `__init__` method of dataclasses had no inherited generic context,
so we could not infer the type of an instance from a constructor call
with generics

## Test Plan

Add tests to classes.md` in generics folder
2025-06-03 09:59:43 -07:00
Abhijeet Prasad Bodas
71d8a5da2a
[ty] dataclasses: Allow using dataclasses.dataclass as a function. (#18440)
## Summary

Part of https://github.com/astral-sh/ty/issues/111

Using `dataclass` as a function, instead of as a decorator did not work
as expected prior to this.
Fix that by modifying the dataclass overload's return type.

## Test Plan

New mdtests, fixing the existing TODO.
2025-06-03 09:50:29 -07:00