Commit Graph
1214 Commits
Author SHA1 Message Date
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
Özgür a4b5ab9df9 Reject unqualified private access to base members (#6521)
### Description
Currently, unqualified access to private members of the base class
compiles without error. This is due to `LookupUnqualifiedName` calling
`LookupQualifiedName` internally with `access_info` parameter set to
`std::nullopt`. This causes `IsAccessProhibited` to return `false`
immediately.
This PR fixes this issue.

### Changes
- Added a check where if the `access_info` is null and the current scope
we are looking is an extended scope (parent), initializes the
`access_info` with `highest_allowed_access` set to `Protected`.

Fixes #6239
2025-12-18 19:12:07 +00:00
Dana Jansens 7c1798d96d Format impl witness instructions as part of the impl (#6485)
The impl's body block has to end before we make its ImplDecl
instruction, and the witness instructions come later, so they don't end
up in the body block. Currently they just end up in the enclosing (file,
typically, or class) scope block.

Add a new InstBlockId to Impl for holding witness instructions, and
explicitly insert them into that block. Then include those instructions
into the scope of the Impl for naming, and format them into the Impl
right after the body block.

This is based on #6484
2025-12-17 15:46:30 +00:00
Burak EmirandDana Jansens fec6ce2f9f Implement "unused pattern bindings" p2022 - parsing (#6460)
This implements proposal #2022, with changes from #3763 and leads
answers on #6448

Detection of unusedness is happening in
~~`toolchain/check/dataflow_analysis.cpp`~~ next PR. See
[here](https://github.com/burakemir/carbon-lang/tree/unused_pattern_bindings_p2022_impl_part2)
for preview.

~~All test cases with unused bindings were updated in order to avoid
polluting test output.~~

---------

Co-authored-by: Dana Jansens <danakj@orodu.net>
2025-12-17 15:40:20 +00:00
Geoff Romer ad7ea755b0 Add Abstract enumerator to InitRepr::Kind (#6513)
This fixes a bug where `CheckFunctionReturnType` could sometimes fail to
diagnose an abstract return type.
2025-12-17 00:00:14 +00:00
Richard Smith 2e65d28a16 Support for passing C++ templates as arguments to template template parameters. (#6475)
Allow passing a C++ template as a template template argument to another
C++ template. Does not allow passing a Carbon generic as an argument.

Depends on #6474.
2025-12-16 19:00:49 +00:00
Dana Jansens efec4e4658 Move generic stack operations into handle_impl.cpp (Refactor Impl construction 8/7) (#6484)
Instead of burying operations to pop the generic stack in
`GetOrAddImpl`, we move them up to handle_impl.cpp in `BuildImplDecl`,
which puts them at the same level as other operations on the generic
stack, like `StartGenericDecl` or `FinishGenericDefinition`.

To do so, we split `GetOrAddImpl` into a few pieces:
- `FindImplId` finds an existing Impl that matches the declaration, or
returns a LookupBucketRef and whether an error was diagnosed instead.
- `AddImpl` takes a fully built `Impl`, makes an `ImplId` for it, and
does additional steps for a new `Impl` verifying it and applying
`extend`.
- `AddImplWitnessForDeclaration` constructs the `Impl`'s witness, which
must be done between two generic steps in order to use the generic's
self specific but also add the witness instruction to the generic.

We group the logic to build the initial table in the definition and to
complete it in the definition together in `impl.cpp`. And we save a
lookup into the ImplStore by passing Impl by reference to
`FinishImplWitness`, as we now do for other similar functions in
`impl.h`.

This is based on #6470.
2025-12-16 15:32:56 +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
Özgür 2a3d0b71bb Reject abstract types in var function parameters (#6499)
### Description
Fixes an issue where the toolchain accepted abstract types in function
parameters declared with `var`.

### Changes
- Implemented a check for abstract types for function parameters with
`var` binding pattern in `HandleAnyBindingPattern`.
- Added a test case to
`toolchain/check/testdata/class/fail_abstract.carbon`.

**Note:** I did not use `AsConcreteType` like used in `case
FullPatternStack::Kind::NameBindingDecl`. Using it enforces type
completion, thus causing valid signatures such as `fn F[var self: Self]`
to fail.

Also the pre-commit checks fail due to a diagnostic name collision with
`toolchain/check/type_completion.cpp`. Should I add a function that just
checks if the type is abstract to share the diagnostic?

Fixes #6402
2025-12-15 20:17:34 +00:00
Jon Ross-Perkins 25f63140e6 Refactor CppWitness as CustomWitness (#6491)
This is in anticipation of using the same construct for all
implementations of `Destroy`, as well as other similar use-cases with
language-defined interfaces.
2025-12-15 19:41:14 +00:00
Richard Smith 6b28213b36 Add interop support for naming and "calling" C++ templates. (#6474)
Expose C++ class templates, variable templates, alias templates, and
concepts as callable values in Carbon, and map calls to them into
template-id formation, mirroring how Carbon generics behave. For now,
only type template parameters are supported; non-type and template
template parameters produce a TODO error.
2025-12-15 17:45:01 +00:00
Richard SmithandJon Ross-Perkins a8eca2ece6 Delay finishing the C++ translation unit until we reach the real EOF. (#6489)
Instead of parsing a complete C++ translation unit and then interacting
with the translation unit further after the fact, delay finishing the
translation unit until we finish the Carbon check phase. This fixes some
issues where we would produce duplicated or incorrect diagnostics at the
end of the C++ translation unit, particularly for unused declarations.
Now we're in control of how we parse the translation unit, also disable
parsing of C++20 modules if the syntax appears within `import Cpp
inline` code.

Keep the same clang parser alive throughout check, and use it instead of
building a new one when parsing macros. This resolves issues where the
translation unit scope was destroyed too early, resulting in unqualified
lookup within macros being unable to find global scope entities.

---------

Co-authored-by: Jon Ross-Perkins <jperkins@google.com>
2025-12-13 00:56:30 +00:00
Dana Jansens fbcaf34494 Defer RequireCompleteType to impl definition (Refactor Impl construction 7/7) (#6470)
Explicitly run `RequireCompleteType` for an impl's facet type constraint
in two places:
- For a new `Impl` declaration that is `extend`
- At the start of the `Impl` definition

Stop trying to RequireCompleteType in the definition when constructing
the witness. If we have a rewrite of a name in `.Self`, then we can
construct a full witness, otherwise we defer to the definition.

Now GetOrAddImpl does not need to track `is_definition` anymore, so we
remove a lot of plumbing.

We inline the `AllocateFacetTypeImplWitness` since it has a single
caller and it is just 2 lines, to help improve understanding of the
steps and comments in setting up the impl definition.

Note that this puts the `RequreCompleteType` instruction into the
definition's generic eval block always, avoiding the issue of ensuring
that each generic redecl has the exact same instructions, and forcing
coordination to have `RequireCompleteType` inserted into every
declaration's eval block or none. The result also more closely matches
the design, with the complete type not being required until inside the
definition.

This is part of #6420 which is being split up into a chain of smaller
PRs. It is based on #6469.
2025-12-11 23:50:10 +00:00
Ammar AlassalandDana Jansens a848ae11e4 Added string indexing (#6329)
Implemented string indexing for Core.string
Handles references or struct values. No runtime checks as per
https://discord.com/channels/655572317891461132/655578254970716160/1431015866270748682
Part of #6270

---------

Co-authored-by: Dana Jansens <danakj@orodu.net>
2025-12-11 21:31:31 +00:00
Dana Jansens 35d505a985 Check the orphan rule for impls (#6488)
The orphan rule is defined here:
https://docs.carbon-lang.dev/docs/design/generics/details.html#orphan-rule

**Orphan rule:** Some name from the type structure of an `impl`
declaration must be defined in the same library as the `impl`, that is
some name must be *local*.

Update tests that were running afoul of the orphan rule unintentionally.
Add tests that do violate the rule intentionally and test edge cases.
2025-12-11 19:44:39 +00:00
Dana Jansens 14998d6045 Consolidate error handling behaviour for ApplyExtendImplAs (Refactor Impl construction 4/7) (#6468)
Propagate error state in an `extend impl` declaration out to the
enclosing scope. We can do this generically in `ApplyExtendImplAs` so we
don't have to do it explicitly in other places.

Collapse `DiagnoseExtendImplOutsideClass` into `ApplyExtendImplAs` as it
had only the one caller and is very small, so this simplifies the code,
making `ApplyExtendImplAs` a clear set of diagnostics. And push the
construction of the SpecificConstant down into `ApplyExtendImplAs` so it
is only constructed if it's needed, instead of constructing it and
throwing it away in error cases.

Ensure any error in the declaration results in the witness being an
ErrorInst so the impl will not be used in impl lookup. This simplifies
some branches by combining them into a single if statement.

This is part of #6420 which is being split up into a chain of smaller
PRs. It is based on #6467.
2025-12-11 19:05:17 +00:00
Geoff Romer a0d1e4b809 Handle SpecificImplFunction in GetCallee (#6487)
I need this in a forthcoming PR, to reliably get the `Function` that was
originally used to build a `Call` inst, but even as a stand-alone
change, it seems to nicely improve the textual SemIR.
2025-12-11 01:06:16 +00:00
Geoff Romer bf45b1cbf5 Refactor function return type representation (#6463)
This separates the return type from the return pattern, and replaces the
return pattern with a block of return patterns. This is a step toward
support for `ref` returns (where there's no corresponding return
pattern) and compund-form returns (where there may be multiple return
patterns).
2025-12-10 18:34:23 +00:00
Jon Ross-Perkins 77918d023b Make symbolic local bindings a TODO (#6449)
Per discussion, makes all symbolic local bindings a TODO. We should
implement them more correctly before making them operable. Right now
things partially work, but because constants behave mostly right in the
symbolic situations under tests. More broadly, it has incorrect behavior
and crashes, thus the TODO.

This converts most tests using `let` to instead using parameters, but
leaves some behind where a conversion either didn't make sense (e.g. in
`let` tests) or a conversion was unclear to me (multi-layer `let`, which
relies more on planned behavior that seems more bespoke to a local
`let`).

In let's `fail_generic.carbon`, there's a "// TODO: Should this be
valid?" that I'm removing because my understanding is the code in
question should be valid (the file is merged into let's
`generic.carbon`).

Refactoring `HandleAnyBindingPattern` a little because there's a TODO to
make it shorter, and it seemed like a reasonable drive-by change (let me
know if you think there's more I should do, or if I should remove said
TODO even though it's still a bit long).

Fixes #5982
2025-12-10 18:11:58 +00:00
Jon Ross-Perkins efbebdb7b3 Remove unused code paths in EndAssociatedConstantDeclRegion (#6481)
I think these are obsolete, at least as far as I can tell. The former
appears tested (adding to be sure), the latter looks like it may no
longer occur.
2025-12-09 23:21:21 +00:00
Dana JansensandJon Ross-Perkins 3c8417947b Propagate errors in extend require up to the containing scope (#6480)
Just as names from an `extend` scope get included in the containing
scope, so do errors. Apply this logic to `extend require impls`,
propagating any errors up.

This is based on #6465.

---------

Co-authored-by: Jon Ross-Perkins <jperkins@google.com>
2025-12-09 22:04:17 +00:00
Richard Smith c7cd24e1b2 Support for calling C++ destructors. (#6453)
Synthesize an impl of `Destroy` for C++ classes in response to impl
lookup.
2025-12-09 21:03:27 +00:00
Dana Jansens 2d38978756 Diagnose explicit Self in extend in the parse node handler (Refactor Impl construction 1/7) (#6465)
We encode the state of looking that the parent scope is a Class into a
type so that we can avoid extra lookups. Then use that in refactoring
where diagnostics are generated for an explicit `Self` in an `extend
impl` declaration.

We add tests that we don't double-diagnose the Self type when it's
already an error, and make the behaviour of `extend require` match that
of `extend impl as`.

This avoids some fragile/complex parse-node lookups (such as
`context.parse_tree_and_subtrees().ExtractAs<Parse::ImplTypeAs>`) by
using the parse node at the point where we are handling it instead of
much later.

This is part of #6420 which is being split up into a chain of smaller
PRs.
2025-12-09 20:38:50 +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
Richard Smith 7fd62ff58d Stop using ImplWitness[Table] for a C++ synthesized witness. (#6451)
Add a `CppWitness` and use it instead of using `ImplWitness` with an
`ImplId` and `SpecificId` of `None`. This witness can be substantially
simpler because we never need a `SpecificId`.
2025-12-05 21:07:07 +00:00
Jon Ross-Perkins 103c49a763 Canonicalize imported witness blocks on FacetValue (#6458)
The test has a more complete explanation of this; witnesses on the
FacetValue must have a canonical ordering.
2025-12-04 00:05:24 +00:00
Ivana Ivanovska 4ddff65e8e Add support for macros pointing to a constexpr integer (#6441)
Similarly to the enums, these are for the moment only available when
referenced with a global scope “::”. Only integer constexpr are
available for now.

Part of #6303
2025-12-03 15:31:37 +00:00
Ivana Ivanovska a2821be1be Dump SemIR for all passing macros tests (#6454)
Some of the macros tests were not printing the SemIR. Printing it can
help spot issues (as in PR #6440), so added that now for all passing
tests.

Part of #6303
2025-12-03 12:28:32 +00:00
Richard Smith c77eebd15e Cache final impl lookup results. (#6452)
If an impl lookup finds a final result, cache that and reuse it if we
perform the same lookup later.

In addition to reducing repeated work, this allows us to produce the
same result for repeated lookups that find a C++ operator. This isn't a
great solution to that problem, as it's not clear how to extend it to
behave correctly across import, but we don't have a solution for that
for C++ interop in general.
2025-12-02 22:51:25 +00:00
Dana Jansens e32190a228 Stringify specifics of named constraints (#6444) 2025-12-02 19:31:13 +00:00
Dana Jansens 73e6994d44 Add a diagnostic note for errors during identifying facet types (#6445)
Errors that occur while constructing a specific should be tied back to
the facet type being identified. We don't have an InstId for the facet
type during identify, so provide the means to Stringify a FacetTypeId.

Depends on https://github.com/carbon-language/carbon-lang/pull/6435
2025-12-02 17:21:53 +00:00
372f632d9d Implement support for copying C++ classes. (#6434)
When performing impl lookup for `Core.Copy` for a C++ class type, look
for a copy constructor. If we find one, synthesize an impl witness that
calls the constructor.

This adds initial support for impl lookup to delegate to the C++ interop
logic for queries involving C++ types. For now, we don't implement the
rules from #6166 that compare a synthesized type structure for the C++
impl against the best Carbon type structure, but the framework for
building that support is established here.

Currently there is no caching of the lookup here, and we build unique
`ImplWitnessTable`s for each lookup, which leads to each impl lookup
producing a distinct facet value. This results in some errors in generic
contexts; this will be addressed in follow-up changes. This PR aims only
to support the non-generic case.

---------

Co-authored-by: Dana Jansens <danakj@orodu.net>
Co-authored-by: Carbon Infra Bot <carbon-external-infra@google.com>
2025-12-02 02:52:23 +00:00
Dana Jansens 6a60b80508 Remove the FacetTypeId in RequireImpls (#6437)
The FacetTypeId should never be used directly, since the RequireImpls is
a generic and the facet type may be parameterized by generic bindings.
So instead, it should be accessed through GetConstantValueInSpecific,
which works with the facet type InstId that is also already present on
RequireImpls. This change to use GetConstantValueInSpecific was done in
#6435, so the FacetTypeId is now unused except in formatting. So we can
remove it.

This depends on #6435.
2025-12-01 20:34:43 +00:00
Dana Jansens 25536cab67 Avoid a crash when the type of Self in an interface or constraint is an error (#6443)
The RequireImpls handler needs to deal with this gracefully.
2025-12-01 19:09:14 +00:00
Dana Jansens 0cf2448505 Get specific interfaces with correct specific from named constraints (#6435)
When forming an IdentifiedFacetType, we collect interfaces named by
require decls in named constraints that the facet type refers to. These
interfaces come with a specific, but the require decl is inside an named
constraint which may be generic. So we need the specific being applied
to the containing named constraint to also be applied to the require
decl and its target interfaces.

This uncovered that the facet type in require decls was not being
imported correctly, as it was not being attached to the require decl's
generic. This is fixed by making import of RequireImplsDecl multiphase,
so that the decl instruction exists before we resolve the facet type
within it. And by pointing the generic importing machinery to the
RequireImplsDecl, and from there to the RequireImpls structure to get
the generic id.

Then `ImplStore::GetOrAddLookupBucket` can use an IdentifiedFacetType to
correctly get the interface being impl'd, both in the local and the
imported named constraint case. Which allows us to correctly diagnose
redeclarations in the impl file of an impl of an interface through a
named constraint. And to correctly _not_ diagnose them when the specific
in the generic named constraint differs from other decls.
2025-12-01 18:59:02 +00:00
Ivana Ivanovska 108e39e095 Fix SemIR printout for string literals in macros (#6440)
Added SemIR printout for string literals in macros in the tests. Removed
adding the inst in the imports to make the printout succeed.

Part of #6303
2025-11-28 16:34:25 +00:00
Boaz Brickner 2073594d8a C++ Interop: Add implicit casting between int literals and CppCompat integers (#6442)
Part of https://github.com/carbon-language/carbon-lang/issues/5263.
2025-11-28 08:49:47 +00:00
Boaz Brickner bef92cf881 Add CppCompat.ULong32, CppCompat.LongLong64 and CppCompat.ULongLong64 (#6386)
This extends #6364 to allow having:
* `Cpp.unsigned_long` as a distinct type when `unsigned long` is 32
bits.
* `Cpp.long_long` and `Cpp.unsigned_long_long` as distinct types when
`long` and `unsigned long` are 64 bits.

Similarly to #6364, we only support implicit conversions from the
matching literal type (`u32`, `i64` and `u64`).

See #6275 for rationale.

Part of #5263.
2025-11-26 16:51:22 +00:00
Ivana Ivanovska e7b71c031a Add a failing test for user-defined literals in macros (#6431)
These types of literals are not supported at the moment, adding a `todo`
test for it.

Part of #6303
2025-11-26 14:58:39 +00:00
0baa74d96f Type completeness in extend (#6395)
Define rules for `extend` declarations (`extend require`, `extend impl
as`, `extend base`, `extend adapt`) that say the target scope they name
must be complete at the point of the declaration. Define completeness
for a facet type to include all interfaces and named constraints that
provide unqualified name lookup through the facet type.

---------

Co-authored-by: Carbon Infra Bot <carbon-external-infra@google.com>
Co-authored-by: Richard Smith <richard@metafoo.co.uk>
2025-11-25 22:45:34 +00:00
Richard Smith ec8c999bb1 Support passing Carbon Optional(T*) to C++ T* parameter. (#6422)
We already did this translation in the other direction, but we had no
mapping from `Optional(T)` to anything, so round-tripping a nullable
pointer from C++ through Carbon and back to C++ was previously rejected.
2025-11-25 22:30:14 +00:00
Jon Ross-Perkins 93a8c5230c Ensure a symbolic final impl has a definition produced (#6236)
Right now, the impl lookup can both fail to resolve the specific
definition because it's symbolic, and return a "final" constant because
it's a `final impl`. This is adding an instruction to help ensure the
specific is resolved.

The constant evaluation is fully recursive, but I'm not adding a TODO
since that's a known issue with impl lookup in general.
2025-11-25 18:59:25 +00:00
Ivana Ivanovska cf2c66c1b2 Add support for macros evaluating to an enum constant (#6432)
Enum constants in a macro replacement list are recognized only when
prefixed with “::”.
There is a `todo` test to make explicit that this still needs to be
fixed.
When prefixed with a global scope “::”, they are correctly found and
evaluated to a const.


Part of #6303
2025-11-25 17:44:07 +00:00
Richard SmithandJon Ross-Perkins 054dfca685 Perform overload resolution immediately in C++ operator lookup. (#6416)
Don't attempt to defer overload resolution by creating a
`CppOverloadSet`; this was incorrect as we weren't saving the complete
clang::OverloadCandidateSet, resulting in template candidates not being
found. Moreover, saving the overload candidate set would be expensive,
as the representation is surprisingly large, and is unnecessary since
we're about to build a call.

In passing, improve the diagnostics for overload resolution failure to
use Clang's operator overload resolution messages rather than its call
overload resolution messages.

This fixes calls to templated operator overloads, which is the final
piece needed for us to successfully compile an iostream-based "Hello
world" program.

---------

Co-authored-by: Jon Ross-Perkins <jperkins@google.com>
2025-11-24 23:01:28 +00:00
Jon Ross-Perkins 167b45ca35 Rewrite pending specifics to use the work stack (#6415)
I was trying to figure out the right way to get specifics to be added to
the work.

Technically, we could keep the pending_specific list; this is taking a
different approach of inserting inside the work stack, which will do
extra work moving entries, although typically that should be expected to
be small. One challenge of `pending_specifics` is that if we would need
to shift them to work after both `Done` (for immediate processing) and
`Retry` (for processing after the current instruction is later revisited
and done). That feels kind of awkward as additional tracking to do.
Also, the common case is probably that there's either 0 or 1 specifics
being added, so an additional vector may be significant overhead. That's
why I leaned more in this direction of just inserting them in the vector
of work.
2025-11-24 21:52:29 +00:00
Ivana Ivanovska 109e39c75c Add support for nullptr literals in macros (#6426)
Adding support for macros that evaluate to nullptr literal.

Demo:

```c++
// macros.h
void foo(int a[2]);
#define MyNullPtr nullptr
```
```c++
// macros.cpp
void foo(int a[2]) {
  if (!a) {
    printf("array a is nullptr\n");
    return;
  }
  printf("a[0] = %d \n", a[0]);
}
```

```c++
// main.carbon

library "Main";

import Cpp library "macros.h";

fn Run() -> i32 {
  Cpp.foo(Cpp.MyNullPtr);
  return 0;
}
```

```
$ clang -c macros.cpp;
$ bazel-bin/toolchain/carbon compile main.carbon
$ bazel-bin/toolchain/carbon link macros.o main.o \--output=demo_carbon
$ ./demo_carbon
array a is nullptr
```

Part of #6303
2025-11-24 21:03:35 +00:00
Ivana Ivanovska 7be6538aec Add support for character literals in macros (#6419)
Adding support for macros with character literals.

Part of #6303
2025-11-24 13:54:17 +00:00
Ivana Ivanovska 093700b274 Add support for boolean literals in macros (#6418)
Adding support for macros with boolean literals.

Demo:

```c++
// main.carbon

library "Main";

import Core library "io";

import Cpp inline '''
  #define M_TRUE true
''';

fn Run() -> i32 {
  let a: bool = Cpp.M_TRUE;
  if (a) {
    Core.Print(1);
  } else {
    Core.Print(0);
  }
  return 0;
}
```

```
$ bazel-bin/toolchain/carbon compile main.carbon
$ bazel-bin/toolchain/carbon link main.o \--output=demo_carbon
$ ./demo_carbon
1
```

Part of #6303
2025-11-24 10:40:57 +00:00
Dana Jansens 201e408252 Type completion of facet types is separate from Identifying (#6385)
Identifying a facet type is an operation on a pair of (self type, facet
type). It substitutes that self in as the `Self` of any require
declarations in order to form the set of (self type, SpecificInterface)
pairs that constitute the requirements of the IdentifiedFacetType.
Currently we don't pass around any self type, and assume all require
declarations are written against `Self` but this will change in the
future.

By contrast, type completion is done in the abstract and does not form
specifics for the require declarations. The purpose of type completion
is to enumerate the scopes where name lookup can occur and ensure they
are completed.

With this change, type completion is:
- No longer built on top of identification for facet types.
- Recursively ensures all `extend` scopes are complete since name lookup
can find symbols in them.

We add some test cases that demonstrate consistency between a resolving
the specific of a generic class, and a generic interface/constraint,
both used in a type position. In all cases, an invalid specific is not
materialized for the type completion when the specific's arguments are
used in a non-extend context. But they specific is materialized and
checked for type completion when in an extend context (extend impl or
extend require).

Type completion itself does not need to recurse into named constraints
or interfaces as the `extend require` declarations require the type to
be complete immediately, just as for `extend impl` in a class.

We had a test (`fail_incomplete_where.carbon`) with `impl as J where
.Self impls K` and `J` is incomplete, which used to be diagnosed but no
longer is, because we don't require non-extend interfaces to be complete
in type completion, nor in identification. The test was trying to test
the presence of rewrite constraints though, which it didn't even use. So
we remove the diagnostic that we can't hit anymore and replaced it with
a TODO, and add a test that should reach that TODO once qualified
rewrite constraints work.
2025-11-21 22:28:08 +00:00
Richard Smith 13fbe3c1f3 Allow interop with classes with virtual base classes. (#6413)
For now, treat such classes as being final, since we can't correctly
derive from them.

This removes the last category of C++ class that we are entirely unable
to interop with, and is a prerequisite for interop with C++ iostreams
(which have a virtual base class).
2025-11-21 16:45:38 +00:00