Commit Graph
49 Commits
Author SHA1 Message Date
Geoff Romer 18f87e4f79 Include the type in the location of binding insts (#6963) 2026-03-26 18:43:29 +00:00
Geoff Romer e0c6800ab3 Reverse nesting structure of parameter patterns (#6930)
See
[here](https://docs.google.com/document/d/1rWcueFwIfZox6GKVGxiUG4cBzjrZ6djXiIDGyJDtrE4/edit?tab=t.0#heading=h.7mi143mdhr2h)
for an overview of the changes and their rationale.

Assisted-by: Gemini 3.1 Pro via Antigravity
2026-03-23 20:38:20 +00:00
Geoff Romer 08148f3a3a Refactor AddBindingPattern into composable pieces (#6927)
This is part of some bigger changes in pattern matching, factored out
because it causes some test churn.

Assisted-by: Gemini 3.1 Pro via Antigravity
2026-03-19 19:20:03 +00:00
Jon Ross-Perkins c5761d2d16 Improve parsing large integers (#6908)
Though I started this thinking about performance of parse of large
decimal integers, I extended it to generally improve performance of
integer values (TBH I hadn't expected such a difference for binary/hex,
but I'll take it).

Note I think tests change because I'm making subtle changes to bit
widths. The changes themselves appear harmless to me, but happy to make
changes if it'd help.

Bumping up the number of digits by 10x because it's not really a
performance issue anymore (eh, maybe somebody will want to specify a
256-byte value in binary). But, at a certain point it still seems like a
mistake if somebody has that many digits in a row.

Fixes #980

Highlighting benchmark differences:
```diff
- BM_ComputeValue_IntDecimalN/1           37.1 ns         37.1 ns     18887116
+ BM_ComputeValue_IntDecimalN/1           21.9 ns         21.9 ns     31902433
- BM_ComputeValue_IntDecimalN/10000 1251228680 ns   1250457559 ns            1
+ BM_ComputeValue_IntDecimalN/10000     458818 ns       458626 ns         1523
- BM_ComputeValue_IntBinaryN/1            29.0 ns         29.0 ns     24058533
+ BM_ComputeValue_IntBinaryN/1            22.2 ns         22.1 ns     31566949
- BM_ComputeValue_IntBinaryN/10000     1390557 ns      1389782 ns          506
+ BM_ComputeValue_IntBinaryN/10000       16402 ns        16396 ns        42744
- BM_ComputeValue_IntHexN/1               34.0 ns         34.0 ns     20562432
+ BM_ComputeValue_IntHexN/1               22.4 ns         22.4 ns     31238055
- BM_ComputeValue_IntHexN/10000        5387942 ns      5385262 ns          130
+ BM_ComputeValue_IntHexN/10000          39249 ns        39233 ns        17859
```

Benchmark before:
```
----------------------------------------------------------------------------
Benchmark                                  Time             CPU   Iterations
----------------------------------------------------------------------------
BM_Lex_Float                            10.6 ns         10.6 ns     66138191
BM_Lex_Int                              15.5 ns         15.4 ns     45149703
BM_Lex_IntDecimalN/1                    3.11 ns         3.11 ns    225524908
BM_Lex_IntDecimalN/10                   11.8 ns         11.8 ns     56719805
BM_Lex_IntDecimalN/100                   102 ns          102 ns      6867468
BM_Lex_IntDecimalN/1000                  943 ns          942 ns       745313
BM_Lex_IntDecimalN/10000                9465 ns         9461 ns        73970
BM_ComputeValue_Float                   61.6 ns         61.6 ns     11377463
BM_ComputeValue_Int                      106 ns          106 ns      6587381
BM_ComputeValue_IntDecimalN/1           37.1 ns         37.1 ns     18887116
BM_ComputeValue_IntDecimalN/10          87.7 ns         87.7 ns      7960837
BM_ComputeValue_IntDecimalN/100         7963 ns         7956 ns        88858
BM_ComputeValue_IntDecimalN/1000     1212577 ns      1211906 ns          578
BM_ComputeValue_IntDecimalN/10000 1251228680 ns   1250457559 ns            1
BM_ComputeValue_IntBinaryN/1            29.0 ns         29.0 ns     24058533
BM_ComputeValue_IntBinaryN/10           69.4 ns         69.4 ns     10108642
BM_ComputeValue_IntBinaryN/100           963 ns          962 ns       726982
BM_ComputeValue_IntBinaryN/1000        21562 ns        21551 ns        32506
BM_ComputeValue_IntBinaryN/10000     1390557 ns      1389782 ns          506
BM_ComputeValue_IntHexN/1               34.0 ns         34.0 ns     20562432
BM_ComputeValue_IntHexN/10              70.4 ns         70.4 ns      9953165
BM_ComputeValue_IntHexN/100             1474 ns         1473 ns       472776
BM_ComputeValue_IntHexN/1000           61818 ns        61762 ns        11363
BM_ComputeValue_IntHexN/10000        5387942 ns      5385262 ns          130
```

Benchmark after:
```
----------------------------------------------------------------------------
Benchmark                                  Time             CPU   Iterations
----------------------------------------------------------------------------
BM_Lex_Float                            10.9 ns         10.9 ns     63993114
BM_Lex_Int                              15.1 ns         15.1 ns     46869766
BM_Lex_IntDecimalN/1                    3.16 ns         3.16 ns    220923300
BM_Lex_IntDecimalN/10                   12.2 ns         12.2 ns     57731654
BM_Lex_IntDecimalN/100                   102 ns          102 ns      6875516
BM_Lex_IntDecimalN/1000                  942 ns          942 ns       742359
BM_Lex_IntDecimalN/10000                9353 ns         9350 ns        75096
BM_ComputeValue_Float                   44.9 ns         44.9 ns     15619691
BM_ComputeValue_Int                     48.9 ns         48.9 ns     14361507
BM_ComputeValue_IntDecimalN/1           21.9 ns         21.9 ns     31902433
BM_ComputeValue_IntDecimalN/10          30.3 ns         30.3 ns     23134117
BM_ComputeValue_IntDecimalN/100          224 ns          223 ns      3092567
BM_ComputeValue_IntDecimalN/1000        5834 ns         5830 ns       117469
BM_ComputeValue_IntDecimalN/10000     458818 ns       458626 ns         1523
BM_ComputeValue_IntBinaryN/1            22.2 ns         22.1 ns     31566949
BM_ComputeValue_IntBinaryN/10           32.9 ns         32.9 ns     21306927
BM_ComputeValue_IntBinaryN/100           198 ns          198 ns      3545277
BM_ComputeValue_IntBinaryN/1000         1671 ns         1669 ns       419656
BM_ComputeValue_IntBinaryN/10000       16402 ns        16396 ns        42744
BM_ComputeValue_IntHexN/1               22.4 ns         22.4 ns     31238055
BM_ComputeValue_IntHexN/10              47.8 ns         47.7 ns     14694407
BM_ComputeValue_IntHexN/100              436 ns          436 ns      1609794
BM_ComputeValue_IntHexN/1000            3966 ns         3962 ns       177109
BM_ComputeValue_IntHexN/10000          39249 ns        39233 ns        17859
```

Assisted-by: Google Antigravity with Gemini
2026-03-16 20:00:51 +00:00
Richard Smith 2e5b195813 Make {} as Class an initializing expression. (#6882)
Previously we forced a temporary materialization, resulting in it being
treated as an ephemeral reference expression. This change allows

```carbon
var x: Class = {} as Class;
```

even when `Class` is not copyable.
2026-03-11 20:21:21 +00:00
21291b4cc3 Remove InitForm::index (#6817)
This ensures that equal forms always have equal representations (because
the index depends on how the form is used, not on the value of the form
itself).

As a byproduct, also remove `NextCallParamIndex`.

---------

Signed-off-by: dependabot[bot] <support@github.com>
Co-authored-by: dependabot[bot] <49699333+dependabot[bot]@users.noreply.github.com>
Co-authored-by: Nicholas Bishop <nicholasbishop@google.com>
Co-authored-by: Jon Ross-Perkins <jperkins@google.com>
Co-authored-by: Dana Jansens <danakj@orodu.net>
Co-authored-by: Boaz Brickner <brickner@google.com>
Co-authored-by: Richard Smith <richard@metafoo.co.uk>
Co-authored-by: Carbon Infra Bot <carbon-external-infra@google.com>
Co-authored-by: MK4070 <60286678+MK4070@users.noreply.github.com>
Co-authored-by: Christopher Di Bella <cjdb@google.com>
2026-03-06 17:35:48 +00:00
Geoff RomerandJon Ross-Perkins 6dba8ee111 Remove index fields from ParamPatterns (#6815)
This is a step toward removing the index from `InitForm`, so that equal
form values always have equal representations.

---------

Co-authored-by: Jon Ross-Perkins <jperkins@google.com>
2026-03-03 00:19:47 +00:00
Jon Ross-Perkins b14015602b Make Destroy.Op functions able to have a body (#6729)
This is iterating on how `Destroy.Op` generates, to start adding body
capabilities. This changes the way the signature is created, and adds a
`CoreWitness` function kind so that mangling can prevent name
collisions. The result is that what _was_ `DestroyOp` is now
`Core.Destroy.Op` or, as can be seen in
toolchain/lower/testdata/interop/cpp/nullptr.carbon,
`_COp.<hash>:core.Destroy.Core` where `:core` is indicating that it's a
core witness (taking a note from `:thunk`).

Assisted-by: Google Antigravity with Gemini 3 Flash
2026-03-02 17:57:31 +00:00
Dana Jansens cea52ad2d8 Format the InterfaceWithSelf and NamedConstraintWithSelf generic name with its ".WithSelf" suffix (#6798)
We used the ".WithSelf" suffix when formatting a parent scope, but
missed the suffix when formatting the scope name on its own.
2026-02-27 13:50:56 +00:00
Richard Smith f9ab963bd6 Add a type_literal instruction to represent syntactic type literals. (#6781)
This allows us to capture the location at which a type literal was used,
even in the cases where we don't otherwise need to create a new
instruction to represent the type such as for `char` or `str`.

The logic used to build the underlying type is now marked as desugaring.
For cases such as `iN`, this causes the call to `Core.Int` to no longer
be added as a dedicated IR instruction, and instead its constant value
is used directly as the value of the `type_literal`. This results in
this being on balance a reduction in the size of the IR.

This also fixes a crash in C++ interop when using a `char` literal as a
template argument. The crash was caused by the template argument not
having an associated location when mapping to a C++ location. See
changes to check/testdata/interop/cpp/template/type_param.carbon for an
example that used to crash before this change.

Update alias handling to allow an alias to point at any type literal,
reinstating support for aliases for type literals such as `bool` and
`i32` that had previously worked but stopped working when we
transitioned those types to being defined in the prelude. See changes to
toolchain/check/testdata/alias/builtins.carbon.

All the test changes other than the two mentioned above are mechanical
autoupdate changes switching to the new instruction.
2026-02-26 20:10:50 +00:00
Dana Jansens fbc8d59d32 Introduce Diagnostics::ContextScope and remove diagnoser callbacks in type completion (#6761)
Introduces `Context` and `SoftContext` messages, which can be introduced
through a `ContextBuilder`:
- The `Context` messages come before the diagnostic in the output.
- The first `Context` message steals the diagnostic level from the main
diagnostic, and turns the main diagnostic into a Note attached to the
context.
- A `SoftContext` message works similarly, but if it's preceeded by a
`Context` or `SoftContext` message, then it is dropped. This can be used
as a default/backup scope when nothing more interesting is provided up
the stack, such as in `TryEvalBlockForSpecific`.

The `ContextBuilder` is provided to a callback through
`Diagnostics::ContextScope`, an RAII type `AnnotationScope` but for
context messages.

This allows a high level operation to provide a context message like
"failed to identify facet type {0}" which will then be used as the error
if a diagnostic is produced during identification, with the latter
diagnostic attached as a note to explain why the contextual operation
failed.

In particular, this allows monomorphization errors (such as an array
bound being negative) to be attached to a higher lever operation instead
of being top-level diagnostics themselves, with the monomorphization
site being a note. This inverts the source code locations that appear in
the diagnostic, so that the top-level diagnostic points to the "user
code" which causes the monomorphization.

This is presented as an alternative strategy to #6753, which plumbed
diagnoser callbacks around to achieve the same goals.

We replace the diagnoser callbacks in type completion and operators with
ContextScope callbacks instead, which now provide better diagnostics for
monomorphization errors. Other callers to MakeSpecific do not yet have
ContextScopes introduced in order to turn monomorphization errors into
more interesting diagnostics.
2026-02-25 15:15:29 +00:00
fdb188ccfd Implement unused pattern bindings, continued (#6518)
Implementation of unused pattern bindings #2022, continued.

Whereas previous PR #6460 took care of parsing, and PR #6479 prepared
the stage by using _ in some test cases, this PR has the the actual
implementation, using a simple dataflow analysis.

---------

Co-authored-by: Burak Emir <bqe@google.com>
Co-authored-by: jonmeow <jperkins@google.com>
2026-02-19 23:33:36 +00:00
Dana Jansens 917a6ea971 Add an interface-with-self generic to each interface and same for constraints (#6667)
Currently each interface has a `Self` facet internally that becomes a
binding to every entity inside the interface: associated constants,
functions, and require decls. Each of these has to be independently
generic as a result. This makes is challenging in extended name lookup
to move into an extended scope of an interface, as we have a specific
for the interface, but the names within require a different specific
that includes a `Self` facet value.

We generalize this relationship by adding a second generic to Interface,
called `generic_with_self`. When we want to work with entities inside
the interface, we move from the interface-without-specific to the
interface-with-self specific by adding a Self to the specific. This is
done independently of any particular entity inside the Interface, as
those entities are now all members of the interface-with-self generic.

Associated constants no longer need a generic of their own, as they do
not have separate generic bindings. Functions retain a generic, but if
the function has no generic arguments, it will have no bindings of its
own now.

Require decls retain a generic so that their specific can be
instantiated separately from the interface. Requiring the interface to
be complete does not require the types in a require decl to be complete
unless it is modified by `extend`. So we allow them to be completed
later by keeping them in a separate generic.

Named constraints look like interfaces and gain the additional inner
generic-with-self, with the same relationship to require decls.

This removes the need for name lookup to perform Substitution of a Self
facet into the extended scope instruction. Instead, the
`SpecificConstant` instruction inserted by a `require` decl is part of
the interface-with-self generic. When looking through a FacetType for
extended scopes, for each interface, we push the scope with the specific
for the interface-with-self. Then the constant value of the
`SpecificConstant` is correctly modified by the provided self
automatically through applying that specific.
2026-02-19 16:24:07 +00:00
Jon Ross-Perkins 64e3fab43a Skip C++ types when generating Destroy witnesses (#6732)
This TODO had been written before C++ types were generating destroy
implementations, which is resolved now.

Assisted-by: Google Antigravity with Gemini 3 Flash
2026-02-14 00:43:11 +00:00
Geoff Romer 3c324e4877 Add category to parameter format, and share some code. (#6730) 2026-02-13 22:20:05 +00:00
Geoff Romer 1c885a629e Format FormType as "Core.Form" (#6734) 2026-02-13 19:44:21 +00:00
Geoff RomerandRichard Smith e5b05a1fac ExprCategory for guaranteed-in-place initializing expressions (#6623)
The primary change in this PR is to split the `Initializing` expression
category into separate `ReprInitializing` and `InPlaceInitializing`
categories, depending on whether initialization uses the types
initializing representation, or is guaranteed to be in place. It also
rationalizes and documents the SemIR-level semantics of those categories
(including where #5545's "ephemeral entire reference" category will
fit), and introduces two new inst kinds to close gaps exposed in the
process.

Some additional secondary changes:
- Consistently format the storage arguments of initializers with `to`,
regardless of whether initialization is in-place, and document the `to`
notation.
- Rename some inst kinds and functions, and restructure some of the
code, for clarity and consistency with the new documentation.
- Resolve a TODO to handle more category conversions in
`CategoryConverter`, in order to make it easier to reason about category
conversions.

See #6588 and the review history of this PR for background.

---------

Co-authored-by: Richard Smith <richard@metafoo.co.uk>
2026-02-04 02:27:12 +00:00
Richard Smith c0b24047dd Interop support for initialization via std::initializer_list. (#6672)
Add a new builtin function `cpp.std.initializer_list.make` that takes an
array and returns a `std::initializer_list`, initialized to refer to
that array. When C++ initialization wants to perform a
`std::initializer_list`-from-array construction, synthesize a
declaration of a matching builtin function and use that to perform the
initialization.

Ideally we would specify this conversion as an impl of `ImplicitAs` in
the prelude instead of hardcoding it in the interop layer, but
unfortunately that's not currently possible, for various reasons -- we
can't make the conversion form-generic, we can't deduce the array length
from the initializer, and we can't deduce against the arguments of
imported C++ class templates yet -- so for now synthesizing a builtin
function on demand is the best we can do.

Assisted-by: Gemini 3 Pro via Antigravity
2026-01-30 22:24:18 +00:00
Richard Smith e69c3fd978 Support list initialization of C++ classes that is performed via a constructor call. (#6660)
The general strategy here is to import the constructor with a signature
that directly matches the argument. The intent is that the imported
function will eventually be usable directly as the `ImplicitAs.Convert`
function in a generated `impl`.

For initialization from a tuple, for example `(1, 2)`, we import the
selected constructor with a signature that takes a tuple pattern:

  `fn Class.Class((a: i32, b: i32)) -> Class;`

In order to support that, this PR also adds support in general for tuple
patterns in function signatures. It turns out the implementation was
already very close to allowing this.

Assisted-by: Gemini 3 Pro via Antigravity
2026-01-27 22:04:21 +00:00
Richard Smith 093d5072db Add support for using C++ user-defined conversions via interop (#6646)
When performing an implicit conversion to or from a C++ class type, look
for a C++ implicit conversion, and if that conversion involves a
function call (to a constructor or conversion function), call that
function to perform the conversion.

Note that this is just a first pass at supporting implicit conversions.
There are a lot of other things that can happen in a C++ implicit
conversion, such as aggregate initialization or `std::initializer_list`
initialization that aren't handled here. In addition, we intentionally
leave all standard conversions to Carbon to perform, so that we will
reject conversions such as `i32 -> unsigned` that C++ would select but
Carbon considers to be invalid.

Also support `as` conversions. These are treated analogously, but
perform direct-initialization instead of copy-initialization, so they
also find `explicit` constructors and conversion functions.

In order to give good diagnostics, also track the original C++ source
location for imported C++ functions on the imported version of the
function.

Assisted-by: Gemini 3 Pro via Antigravity
2026-01-25 04:51:25 +00:00
05ea0e77d9 Map structs and tuples to initializer lists in C++ overload resolution. (#6620)
When performing C++ overload resolution with an argument that is of
Carbon struct or tuple type, form a braced initializer list as the
placeholder argument. Note that this only affects overload resolution;
no new support for actually converting structs or tuples to C++ types is
added. In particular, while this does allow an empty class to be
initialized from `{}`, it does not allow a non-empty C++ class to be
initialized from a struct, as that is not yet supported in general.

---------

Co-authored-by: Carbon Infra Bot <carbon-external-infra@google.com>
Co-authored-by: Geoff Romer <gromer@google.com>
2026-01-21 19:10:10 +00:00
Geoff Romer 4329a83e4c Form-aware textual format for return parameters and arguments (#6588)
The key changes are:
- Function output parameters are now prefixed with `out`, and more
consistently formatted as named parameters.
- Function and inst output arguments are now written as part of the inst
form, rather than as one of the inst arguments.

As a drive-by fix, this also changes `Temporary::storage_id` from
`DestInstId` to `InstId`, because it doesn't represent an output
parameter of the `Temporary` inst itself.

See the review of
[#6532](https://github.com/carbon-language/carbon-lang/pull/6532) and
[this Discord
discussion](https://discord.com/channels/655572317891461132/999638000126394370/1458268977020141589)
for additional background.
2026-01-14 23:27:21 +00:00
Jon Ross-Perkins c5eba90317 Change Destroy to use a CustomWitness instead of a blanket impl (#6512)
Pursuant to recent decisions on #6124, switch `Destroy` to use a
`CustomWitness` for its implementation. Right now this is manufacturing
no-op implementation functions on each lookup, which obviously isn't
ideal but is intended as a first pass. I'm mostly trying to find the
right balance between updating the approach to reflect new decisions,
while still breaking apart work in a way.

The `CoreInterface` logic is intended to build on `CoreIdentifier`
support. We have a number of additional interfaces that require
specialized logic, and that'll extend pretty far with C++ interop, so it
seemed easiest to have a generic function for it. That's what's
replacing the logic inside C++ interop that was doing string comparisons
(which could have already been moved to `CoreIdentifier`, I just missed
it in my first pass).

This adds `CustomWitness` support because the `Destroy` witnesses can be
imported cross-file. `CustomWitness` was previously only used for C++
types, which don't yet support import, which is why that wasn't
previously an issue. The addition of `query_specific_interface_id` is
similarly needed in order to get correct sorting of witness blocks when
imported.

This PR also removes builtin constraint logic (note this is in a
separate commit to help review; it's not a separate PR because it's
difficult to split apart without tests breaking). This had been made
generic with the expectation that destroy, copy, move, and conversions
would all need related support. Under the new decision, we are not going
to do blanket impls and will instead just manufacture a `CustomWitness`
for everything.

A lot of SemIR fingerprints change, but that's probably because the
addition of `Destroy` on core classes is yielding structural changes.
2025-12-19 18:36:06 +00:00
Jon Ross-Perkins 47e551141f Change the package namespace to use the package name (#6495)
Instead of naming the root namespace `package` (because it's accessed by
the `package` keyword), change it to use the current package name. Note,
buried in the checksum changes,
`toolchain/check/testdata/package_expr/fail_not_found.carbon`:

```
-  // CHECK:STDERR: fail_not_found.carbon:[[@LINE+4]]:16: error: member name `x` not found in `package` [MemberNameNotFoundInInstScope]
+  // CHECK:STDERR: fail_not_found.carbon:[[@LINE+4]]:16: error: member name `x` not found in `Main` [MemberNameNotFoundInInstScope]
```

for:

```
  // CHECK:STDERR:   var y: i32 = package.x;
  // CHECK:STDERR:                ^~~~~~~~~
```

I'll leave it to you if you prefer this; the alternative I see is to
just rename `IsCorePackage` to `IsImportedCorePackage`, and/or change it
to a helper that takes a `Context` and does the right thing with
`parse_tree` (which, I need for `Destroy`-related reasons and was my
default approach).
2025-12-16 01:33:53 +00:00
Richard Smith 154e4012c4 Include the parent scope when fingerprinting an entity name. (#6473)
This is a prerequisite for support for interop with C++ template names.
No behavior change here, except that it sadly changes the fingerprinting
for a lot of tests.
2025-12-08 15:31:13 +00:00
Geoff Romer 2b8fdf3417 Switch the prelude to use ref instead of addr (#6359) 2025-11-14 00:40:26 +00:00
Dana Jansens 5ae5170421 Allow deduction of tuple and struct literals as symbolic generic facet types (#6365)
Give TupleLiteral and StructLiteral a constant value, if their contents
have constant values. Their constant values are TupleValue and
StructValue respectively. This supports their ability to convert to a
constant type (or facet type).

This way when deduce finds a TupleLiteral as the argument to a
_symbolic_ facet type, it can also find a constant value to use for that
argument. This allows deduction to move onto step two, where it can
substitute into the symbolic parameter from previous deduced arguments,
and then perform the conversion from the TupleValue to the desired facet
type.

Allow `PerformBuiltinConversion()` to convert from a canonical
TupleValue or StructValue to `type` instead of only from literals. Then,
also support conversion from a symbolic binding of type TupleType or
StructType to `type`.
2025-11-13 20:17:44 +00:00
Dana JansensandJon Ross-Perkins ff0cea55f6 Add require decls to Interface and NamedConstraint (#6321)
They are not used for impl lookup or verifying anything yet, but now
they appear in the textual semir.

---------

Co-authored-by: Jon Ross-Perkins <jperkins@google.com>
2025-11-11 16:36:15 +00:00
Geoff Romer 0811d996e1 Finish renaming BindName and related insts. (#6281)
Resolves the TODO from #6235
2025-10-28 17:17:38 +00:00
Ivana Ivanovska 5e0201e5c8 Fix big integer literals type (#6234)
Following the C++ standard rules for assigning a type to a decimal
integer literal, when a Carbon integer literal is passed as a call
argument to a C++ function and it is too big to fit to `int`, `long` or
`long long`, it is assigned an extended integer type (`_int128`).
Discussed in the [interop
meeting](https://docs.google.com/document/d/1YlxEOJ0r-o19o19TCJbFl4Ln1U88yn_Vj23y1Hr5vTk/edit?tab=t.0#heading=h.zdrwb1soj9ms)
and documented in this [design
doc](https://docs.google.com/document/d/18u8z9UEuGH73XzXlDynTgyNK76q1Efl8YYWbpM5LX7o/edit?tab=t.0#heading=h.vxmw1gfg49f2).

Part of #5915
2025-10-28 15:01:43 +00:00
Geoff Romer 09710d102f Separate binding insts for refs and values (#6235)
This resolves a TODO in `expr_info.cpp` by using the inst kind rather
than the bound value to track the binding's category.

Since we're churning all the `bind_name` insts in testdata anyway, I'm
also taking this opportunity to align the inst naming with the design's
terminology, by calling these insts "bindings" (this aspect of the PR is
dependent on #6231 resolving an ambiguity in that terminology). For
consistency we'll need to rename several other insts as well (see the
TODO on `RefBinding`); I'm deferring that to a separate PR to minimize
the review load, but I think those name changes are in-scope for this
review.
2025-10-23 01:46:24 +00:00
Ivana Ivanovska 2a96b52780 Remove big float literals TODO (#6220)
A Carbon floating-point literal passed as a call argument to a C++
function is mapped to `double`. If the value is too large to fit in
`double`, an error is reported. This follows the C++ rules for assigning
types to floating-point literals, as discussed in the [interop
meeting](https://docs.google.com/document/d/1YlxEOJ0r-o19o19TCJbFl4Ln1U88yn_Vj23y1Hr5vTk/edit?tab=t.0#heading=h.9zzqn7n3o8lm)
and documented in this [design
doc](https://docs.google.com/document/d/18u8z9UEuGH73XzXlDynTgyNK76q1Efl8YYWbpM5LX7o/edit?tab=t.0#heading=h.6hkga1yq1f3o).

Added missing tests for this as well.

Part of #5915
2025-10-16 16:24:28 +00:00
Boaz Brickner f713964db4 C++ Interop: Set location when creating param patterns (#6184)
Follow up of #5197.
Part of #5064.
2025-10-10 09:00:00 +00:00
Dana Jansens e682a6660d Avoid adding extraneous local instructions while importing witness table entries (#6180)
When deducing arguments for generic parameters of an `impl`, the
deduction calls `Convert` on the input arguments. Often, the input
argument is a facet, and needs to be converted to a type via
FacetAccessType in order to produce a different facet. These
instructions end up being added to the semir, but only their constant
values are needed for the resulting specific returned from Deduce.

In the best case, these extra instructions are just noise in the semir,
or they just cause instruction names to get differentiated with larger
suffixes.

In the worst case, these extra instructions contain references to
instructions from a generic context, and leak them out of that generic
context and into another. In particular, when importing a
LookupImplWitness instruction, the re-evaluation of it can do deduce
(when the lookup is against a generic `impl`). The instructions created
in Deduce are not part of the import, and end up referring to imported
instructions from the local context, which leads to confusion in the
toolchain, and can crash.

The `import_self_specific.carbon` test demonstrates this. It causes the
`I.F` function to be imported from the `I` interface when building the
witness table for the `impl`. Doing so imports the specific of `C` which
includes a LookupImplWitness for `Self.Accoc` in `I`. The `Self` is a
BindSymbolicName with generic binding index 0, in `I`. When Convert
creates instructions in the generic `impl forall D`, however, they end
up referencing and including this BindSymbolicName into its eval block.
But the generic binding 0 in the `impl` is a very different thing (a
value of type `E`). This confusion leads to crashes.
2025-10-09 16:07:30 +00:00
Dana Jansens fe020ee08b Make FacetAccessType evaluate to SymbolicBindingType for type-of a BindSymbolicName (#6115)
The SymbolicBindingType refers to the type value that will be
substituted in for the BindSymbolicName, but holds onto the EntityNameId
from the BindSymbolicName instead of (or in addition to, for now) the
instruction.

The EntityNameId will be used to look in the ScopeStack to find the
witnesses either from the BindSymbolicName instruction, or other
instructions that specify `impls` constraints against the EntityName.

This will allow us to have the `T` in `I(T)` resolve to a `.Self`
reference in the type so that we get type equality with the binding's
type: `T:! I(.Self)`.
2025-10-06 18:56:43 +00:00
Boaz Brickner 5f561282eb Properly set the name for C++ overload set instructions in SemIR (#6156)
This is a followup of #5891.
Part of #5915.
2025-10-06 07:36:28 +00:00
Boaz Brickner 16999a79cc Fix a crash caused by a bug introduced in C++ overloads support in GetScopeIdOffset() (#6151)
After this change, we correctly increment the offset by the next switch
case type.
Before this change, we accidentally incremented the offset by
`functions()` size instead of `cpp_overload_sets()` size and vice versa.
Also sorted the switch cases according to the order of the enum, for
consistency. This might help prevent a future similar incident.

This fix prevents crashing in the newly introduced test
`multiple_too_few_args_calls`.

This also has the side effect of showing `null name` for
`cpp_overload_set_type` and `cpp_overload_set_value`, instead of having
an arbitrary name.
Examples that demonstrate the old name is arbitrary can easily be seen
in tests like `cpp_namespace.carbon` and `decayed_param.carbon`, but
careful review would show that all old names are arbitrary, though often
luckily almost make sense.

We might want to have a proper name for these, but it's beyond the scope
of this crash fixing change.
See #6156.

Part of #5915.
2025-10-02 14:34:34 +00:00
Ivana Ivanovska a24598f069 Lower CppOverloadSetValue (#6101)
Following up on comments from
[#5891](https://github.com/carbon-language/carbon-lang/pull/5891) ([
1](https://github.com/carbon-language/carbon-lang/pull/5891#discussion_r2317244981),
[2](https://github.com/carbon-language/carbon-lang/pull/5891#discussion_r2317266756)).

Lowering `CppOverloadSetValue` as an empty struct value, using
`context.GetLiteralAsValue()`. Also changed its constant kind to
`InstConstantKind::Always`.

Part of https://github.com/carbon-language/carbon-lang/issues/5915
2025-10-01 16:25:05 +00:00
Jon Ross-Perkins 4a6376cf59 Rename/restructure Destroy logic to better reflect #6124 (#6144)
This also does a little restructuring in the same direction, following
#6124.

Leads want `Destroy` to work similarly now for all types. As a
consequence, there doesn't seem to be as much benefit to splitting off
aggregate destruction. In this PR, the `type.destroy` function can now
be expected to destroy anything that's destructible; that means it'll be
usable for the `final fn` once that support is available.

Similarly, this gets rid of the impls other than the single blanket
impl, now using `type.can_destroy`. Since they all need to use the same
function, there's no benefit to splitting approaches. Also, now it can
just be a `final impl` since there should be no need for people to
create specializations -- if this blanket impl applies, it means the
`final fn` is the same.

This also slips in `partial` support since there's no reason to have it
diverge anymore. Also `abstract`, which I'm not sure is broadly testable
since most cases it'd come up, the `abstract` keyword is explicitly
detected/rejected.

Note though that this doesn't make any really big changes. It's just
realigning on the leads decision. I'm going this way to try to reduce
name-related churn for other changes.
2025-09-30 20:43:36 +00:00
Jon Ross-Perkins 47081be67a Reduce test sensitivity to small import loc changes (#6145)
Locations are similarly fragile, because adding a comment changes them.
This has made me pause when making prelude changes in #6144, so dropping
them for those cases.

Instruction ids aren't actually that interesting outside debugging, and
can be churny when doing other structural changes. I've seen this in
particular when doing singleton changes, which bump every instruction
id.

Note there are still other ways fragility from locations can crop up.
This shouldn't be considered a complete fix, but hopefully a small
improvement.
2025-09-30 17:20:14 +00:00
Jon Ross-Perkins 49ba8cf3e1 Switch class to use a blanket impl for Destroy (#6125)
Right now, the class destroy impl is incorrectly generated (first
discussed [in
Discord](https://discord.com/channels/655572317891461132/941071822756143115/1418614787449032826)).
If we want it to be correct, deferred definition logic would need to be
added, and the declaration would need to be moved inside the `class`
scope (along with whatever generic logic that needs).

This instead switches to a blanket impl, to avoid creating latent bugs
with generating the `impl` and function body in the wrong scope. This
approach uses the same blanket impl as aggregate destruction that was
added by #6098.

The intent here is to allow progress on other parts of `Destroy`. For
example, under this model the implementation of the function body could
be done as part of lowering the specific.
2025-09-29 16:05:06 +00:00
Richard SmithandDana Jansens 3b6d202730 Implement support for mixed-access overload sets. (#6137)
This turns out to be quite important, as several important standard
library types (such as `std::string`) have mixed-access overload sets
for their constructors as an implementation detail. The overall approach
here is:

- Use the most permissive access to determine the access of the overload
set itself. This affects whether name lookup finds the member name at
all.
- After overload resolution, re-check the access of the selected member,
if it's protected or private.

---------

Co-authored-by: Dana Jansens <danakj@orodu.net>
2025-09-26 23:18:16 +00:00
Richard SmithandJon Ross-Perkins 1e7b7e53ae C++ interop: support for default arguments. (#6108)
The general strategy here is to force use of a thunk when we want to use
default arguments, and have Clang generate uses of the default arguments
on its side of the thunk.

To support this, change the key type used in `clang_decls` from being
just a `Decl*` to being a pair of `Decl*` and number of parameters in
the case of function decls. Import distinct `SemIR::Function`s for each
number of parameters that's used, and corresponding distinct thunks.

---------

Co-authored-by: Jon Ross-Perkins <jperkins@google.com>
2025-09-24 01:07:59 +00:00
Dana JansensandRichard Smith 82679e6689 Make BindSymbolicName the canonical form of a FacetValue wrapping the BindSymbolicName (#6107)
If a `BindSymbolicName` is converted to `type` and then to its exact
`FacetType`, we get a `FacetValue` wrapping the `BindSymbolicName` but
providing no different information: it has the same witnesses and
`FacetType` as the original `BindSymbolicName`. Yet it is a different
constant value, creating multiple canonical forms with the same meaning.
Now we make that `FacetValue` with the same `FacetType` as the
`BindSymbolicName` it wraps evaluate back to the `BindSymbolicName`,
making it the unique canonical form.

This makes the "shortcut" in convert for avoiding impl lookup when
converting from `FacetAccessType` to `FacetType` in this exact scenario
work the same as doing the full impl lookup.

---------

Co-authored-by: Richard Smith <richard@metafoo.co.uk>
2025-09-23 22:11:11 +00:00
Richard SmithandJon Ross-Perkins 925250f8f9 Improve diagnostics for overload resolution failure. (#6091)
Include notes listing the candidates and explaining why they didn't
work. Rather than duplicating the (substantial) logic for this, use the
Clang machinery to generate these diagnostics.

In order to support this, add a mechanism to map `SemIR::LocId`s to
`clang::SourceLocation`s. This works by creating source buffers in Clang
that refer into the Carbon source file so that `SourceLocation`s can
point into them.

---------

Co-authored-by: Jon Ross-Perkins <jperkins@google.com>
2025-09-19 20:22:47 +00:00
Richard Smith b054e3d2b0 Overload resolution support for more kinds of candidate. (#6071)
* Add support for template candidates by calling the suitable
`AddCandidate` function for them.
* Add support for overloading on `*this` qualifiers by calling
`AddMethodCandidate` when appropriate.
* Make mapping from Carbon arguments to Clang arguments a little more
faithful by mapping the Carbon expression category into the Clang value
kind.
2025-09-16 21:57:32 +00:00
Richard Smith b44ba47cf3 Don't treat dependent types as having a copy value representation. (#6055)
Add `Dependent` value and initializing representations for types whose
representations are unknown because they are dependent. When generating
SemIR in such cases, use a worst-case initializing representation that
both provides a destination address and also propagates a potential
result value.

Use this to fix incorrect lowering and lowering crashes for specific
functions involving generic types that don't use a copy value
representation.

In lowering, be careful to distinguish between whether the initializing
representation for the generic return type uses a return slot (which
affects whether the SemIR declaration and call have one) and whether the
initializing representation for the specific return type uses a return
slot (which affects whether the LLVM IR declaration and call have one).
2025-09-15 23:59:00 +00:00
Jon Ross-PerkinsandDana Jansens 5e3bb523f8 Add builtin functions for destroy, with special requirements in facet types (#6035)
This is in support of a goal of changing the blanket `destroy` impl to
use (roughly):

```
private fn CanAggregateDestroy() -> type = "type.can_aggregate_destroy";

// Handles aggregate type destruction.
impl forall [AggregateDestroyT:! CanAggregateDestroy()] AggregateDestroyT as Destroy {
  fn Op[addr self: Self*]() = "type.aggregate_destroy";
}
```

That isn't done here because there's still other issues that migrating
raises. What this *does* do is add the builtin functions, and in
particular, support to `FacetTypeInfo` to make `CanAggregateDestroy`
work.

The "special requirement" approach in `FacetTypeInfo` allows us to
support restricting a blanket impl under the current approach of impls.
Maybe we'll find a cleaner approach that can work in the future, but
this fits into the current model by propagating similar to other
requirements. I'm using an enum mask because we have a number of similar
things to add (e.g. copy, move) but I'm not sure we need a full vector.

A few alternatives considered were:

- Supporting syntax more like `where .Self impls
TypeCanAggregateDestroy(.Self, SupportedInterface,
UnsupportedInterface)`. I think it'd be a little cleaner, but requires
better compile-time evaluation in order to assess the type of the call.
Right now it's expected to be a `FacetType` too early to make this work,
and I was concerned about pouring too much more time down this route.
- Providing an actual interface, in particular doing name lookup back
into `Core.` for an interface. This would've added name lookup overhead,
and the question of whether an `impl` exists.
- Generating an interface. This avoids the name lookup, but would still
raise the question of whether an `impl` should also be generated. Work
I've previously done generating interfaces for class destruction also
feels complex to both write and understand (an unfortunate issue).
- Still modeling as an `ImplsConstraint`, for example by defining a
special `InterfaceId::CanAggregateDestroy = -2` similar to what we do on
other ids. I was hesitant because of how this expands the number of
modes of `InterfaceId`, and things for consuming code to watch out for,
for what feels like a relatively niche set of use-cases that are only
interface-like.

---------

Co-authored-by: Dana Jansens <danakj@orodu.net>
2025-09-15 17:03:43 +00:00
Ivana Ivanovska 12ddfb9c7c [Carbon/C++ interop] Add support for C++ overloaded functions (#5891)
As proposed in [Carbon: C++ interop for overloaded functions and
function
templates](https://docs.google.com/document/d/1KUxumZtNe3mY3TsjW2s_ZADOlAaFlrtsLKHVILtqIaM/edit?tab=t.0),
Clang is used to perform the overload resolution using C++ rules, when
an overloaded C++ set is called from Carbon. Once a function is
selected, it's converted into a Carbon function and called using the
Carbon rules including argument conversions.

A single non-templated function is treated the same way as an overload
set and the same rules apply for its call.
Template functions are not supported yet.

Demo:

a) Non-templated function calls:

```c++
// --- overloads.h

auto foo(int a, short b) -> void;
auto foo(double a) -> void;
auto foo(int a) -> void;
```

```c++
// overloads.cpp

#include "overloads.h"
#include <cstdio>

auto foo(int a, short b) -> void {
  printf("hello from foo_int_short(%d, %d) \n", a, b);
}
auto foo(double a) -> void { printf("hello from foo_double(%f) \n", a); }
auto foo(int a) -> void { printf("hello from foo_int(%d) \n", a); }
```
```c++
library "Main";

import Cpp library "overloads.h";

fn Run() -> i32 {
  Cpp.foo(1.1 as f64);
  return 0;
}
```
```
$ clang -c overloads.cpp 
$ bazel-bin/toolchain/carbon compile main.carbon
$ bazel-bin/toolchain/carbon link overloads.o main.o --output=demo
$ ./demo
hello from foo_double(1.100000) 
```

b) Constructors:
```c++
// --- constructor_overloads.h
class C {
 public:
  C();
  C(int a, int b);
};
```

```c++
// constructor_overloads.cpp
#include "constructor_overloads.h"
#include <cstdio>

C::C() { printf("hello from C() \n"); }
C::C(int a, int b) { printf("hello from C(%d, %d) \n", a, b); }
```
```c++
library "Main";

import Cpp library "constructor_overloads.h";

fn Run() -> i32 {
  let c1: Cpp.C = Cpp.C.C();
  let c2: Cpp.C = Cpp.C.C(1, 2);
  return 0;
}
```

```
$ clang -c constructor_overloads.cpp 
$ bazel-bin/toolchain/carbon compile main.carbon
$ bazel-bin/toolchain/carbon link constructor_overloads.o main.o \--output=demo
$ ./demo
hello from C() 
hello from C(1, 2) 
```


Follow-ups:

- `Cpp.foo({})` - proper handling of struct literals as call args.
- Fix access for overloaded sets.
- Fix tests:
- Method calls: `error: missing object argument in method call
[MissingObjectInMethodCall]` in tests.
    - Fix `toolchain/check/testdata/interop/cpp/import.carbon` test.
    - Fix `enums` support.
    - Fix `str` -> `std::string_view` mapping.


Part of #5915
2025-09-15 12:29:49 +00:00