Commit Graph
37 Commits
Author SHA1 Message Date
Richard Smith c33fb9fc48 Support signature mismatch between virtual fn and override fn. (#7198)
For now, hide `override fn`s from name lookup, so that the base class
version is always used, as the derived-class version does not have its
own vptr entry and so would not do the right thing if a further-derived
class adds a new override. This is implemented via a new access kind of
`Hidden`.

When checking the overriding function, pass in the expected `Self` type
and check the `self` parameter against that; the signature that we
generate for the thunk in the derived class is the base class signature
with the `self` parameter's type changed to the derived class.

When we generate a thunk for a virtual function, the thunk is assigned a
`virtual_index`, and the virtual function itself is not. When the thunk
makes a direct call to the virtual function, recognize this situation by
checking for a `virtual_index`, and perform a non-virtual call if there
isn't one.

Assisted-by: Gemini via Antigravity
2026-05-13 17:40:45 +00:00
Chandler CarruthandDana Jansens b5a1688c85 Add check/dump.cpp functions for the new ones in sem_ir (#7126)
Also cleans up redundant code in the `sem_ir` dump methods that I missed
initially. Now we share as much logic as we can for dumping the non-ID
and ID components.

Assisted-by: Antigravity with Gemini

---------

Co-authored-by: Dana Jansens <danakj@orodu.net>
2026-05-11 18:22:31 +00:00
Geoff Romer 031ec0a140 Implement BundleStore (#7173)
See
[here](https://docs.google.com/document/d/1eWW8MTko3PIqxZ32-GhsdaRSYqoDicxMB1VeessMTOg/edit?tab=t.0#heading=h.igl2myxbaf58)
for the background and design. The only usage of `BundleStore` in this
PR is artificial, but I'm working on a PR involving an action inst with
3 arguments, which requires something like `BundleStore`.
2026-05-07 19:42:23 +00:00
Dana Jansens 63c1f1e44e Add a colon to the dump output for IdentifiedFacetType (#7150)
Put a colon after `impls` to make it a bit easier to read.

Before:
```
identified_facet_type50000000
  - self: concrete_constant(inst50000023): {kind: ClassType, arg0: class50000004, arg1: specific<none>, type: type(TypeType)}
    impls interface50000000: {name: name0, parent_scope: name_scope0, require_impls_block_id: require_block_empty} `Z`
```

After:
```
identified_facet_type50000000
  - self: concrete_constant(inst50000023): {kind: ClassType, arg0: class50000004, arg1: specific<none>, type: type(TypeType)}
    impls: interface50000000: {name: name0, parent_scope: name_scope0, require_impls_block_id: require_block_empty} `Z`
```
2026-05-01 18:48:59 +00:00
Chandler Carruth df6a5a50dc Remove the Dump method from Printable (#7118)
Because this is an `__attribute__((used))` method in a templated base
class it forces a _huge_ amount of template instantiation in every
translation unit.

Often this was just printing the members of the type, which is still
useful in some cases (such as test output), but adds no value in the
debugger.

A more successful pattern for dumping has been namespace level
functions, and particularly static ones that more transparently don't
expand the non-debugger API surface. Add the few missing functions there
that cover `Printable` types with more interesting contents.

For several of these, it just gives us a "dump the whole thing" function
as a compliment to "dump this entity in the thing". These probably
aren't especially high value, but moving them here they become cheap, so
I've left them in.

For a couple, this expands the rich dumping support of SemIR constructs,
which should be substantially more useful than the previous `Dump`
behavior.

This reduces `check` cumulative object file size by another 14%.

Assisted-by: Antigravity with Gemini
2026-04-26 16:21:07 +00:00
Dana Jansens 1fa7a64cd4 Add missing named constraints and self in facet type debugger dump (#7018) 2026-04-02 20:50:59 +00:00
Dana Jansens 562b423830 Always dump summaries (single line output) on bulleted details lines (#7017)
The debugger dump format looks something like

```
id: summary
 - detail 1
 - detail 2
```

But if the detail is a full Dump of some other id, then the details
start to combine and get confusing. For instance if you Dump an
interface id as the detail, you get

```
id: summary
  - interface id: summary
  - complete: yes  <-- about the interface
  - detail 2  <-- not about the interface
```

This mixes the contents of multiple Dumps and is super confusing. So
introduce DumpFooSummary for everything that is dumped on a bulleted
details line, and always use the summary version in that situation.
2026-04-02 20:19:57 +00:00
Jon Ross-Perkins a2ba7f1262 Have Specific track whether regions contain errors (#6982)
This removes some loops in type completion, but is motivated by the
thought that eval probably wants to query it.

Assisted-by: Google Antigravity with Gemini
2026-03-27 19:36:52 +00:00
Jon Ross-Perkins 2c6d9c7f66 Rename type's GetInstId to GetTypeInstId, reflecting returned type (#6708)
Discussed briefly [on
Discord](https://discord.com/channels/655572317891461132/655578254970716160/1470442830118912265),
done to reduce confusion.

Assisted-by: Google Antigravity with Gemini 3 Flash
2026-02-09 22:00:21 +00:00
Geoff Romer e78af4d745 Misc. improvements to raw/debug SemIR output (#6557)
- Distinguish attached vs. unattached constants.
- Add some missing value stores to the top-level output.
- Add missing fields to various Print methods.
2026-01-14 19:35:34 +00:00
Dana Jansens 32aa7cb1fa Make identifying a facet type an operation on a (self+facet type) pair (#6592)
Identifying a facet type takes both a self and facet type as a pair, and
then encode the self into the IdentifiedFacetType. This makes a
constraint that requires some _other_ type implements an interface
visible in the IdentifiedFacetType. And it will help to enable facet
types with `where T impls Z` for `T` that is not `.Self` in the future.

IdentifiedFacetTypes are now stored in a CanonicalValueStore instead of
a RelationalValueStore as they key is the combination of self and
(declared) facet type together now.

When the self-type is a facet value (has type FacetType) this is most
straightforward. But when it's a type we need to construct a FacetValue
to construct a specific for a require decl, to replace the generic
binding of the symbolic `Self`, which has type FacetType. To do so, we
make a FacetValue with an empty FacetType (equivalent to TypeType). This
prevents any looking for witnesses through the FacetType, which matches
what you can get from a type directly, requiring witnesses to come from
finding an `impl` decl.

Add additional InstNamer logic for such empty facet types so they print
as `<typename>.type.facet` if possible instead of as just `facet_value`.
2026-01-14 17:34:56 +00:00
Dana Jansens 54a1c8213c Add lldb dumping for RequireImplsId and RequireImplsBlockId (#6524)
The dump of a block looks like:
```
(lldb) dump context require_impls_block_id
require_block60000001
  - require0: {self_id: inst60000019, facet_type_inst_id: inst6000001D, extend_self: true, parent_scope: name_scope60000002}
```

The dump of an individual RequireImplsId is shown above for `require0`.
2025-12-19 18:48:20 +00:00
Dana Jansens f220359a9f Print special ids as their names and don't crash when dumping them (#6398) 2025-11-19 16:58:51 +00:00
Dana Jansens ce109708bf Add dumping for NamedConstraintId and shorten untagged id printing (#6319)
Adds support to the `dump` debugger command for named constraint ids,
which are printed as `constraint<number>`. While doing so, we print
whether the `constraint` is complete or not, and add the same to
`interface` to match.

And we noticed that the printing of name and name scope ids, which are
not tagged, are very verbose by adding 7 `0`s to them for no reason. So
make the dump output easier to read by dropping 0 prefixes.

Before:
```
name_scope00000000: {inst: inst0000000E, parent_scope: name_scope<none>, has_error: false, extended_scopes: [], names: {name00000000: inst6000000F, name00000001: inst60000011}} {kind: Namespace, arg0: name_scope00000000, arg1: inst<none>, type: type(inst(NamespaceType))} `package`
```

After:
```
name_scope0: {inst: instE, parent_scope: name_scope<none>, has_error: false, extended_scopes: [], names: {name0: inst6000000F, name1: inst60000011}} {kind: Namespace, arg0: name_scope0, arg1: inst<none>, type: type(inst(NamespaceType))} `package`
```
2025-11-05 21:36:42 +00:00
Jon Ross-Perkins ef1e47cd07 Remove redundant SemIR:: uses in SemIR (#6106)
Also cleaned up some in #6105, which is what got me looking for more.
2025-09-22 15:55:46 +00:00
Dana Jansens 896ef4da0e Include the Name when dumping an instruction with a name (#6051)
If the first argument is an EntityNameId, then dump the name from within
it. In particular this affects dumping BindName and BindSymbolicName.

```
(lldb) dump context non_canonical_query_self_inst_id
inst96: {kind: BindSymbolicName, arg0: entity_name4, arg1: inst<none>, type: type(symbolic_constant35)}
  - name: `T`
  - type: type(symbolic_constant35): I(.Self) where .Self.(I(.Self).X) = (); {kind: FacetType, arg0: facet_type4, type: type(TypeType)}
  - value: symbolic_constant36
  - loc: LocId(<none>)
```
2025-09-11 18:50:35 +00:00
Jon Ross-Perkins 61290fdee9 Make ConstantValueStore use ValueStore internally (#5811)
This changes ConstantValueStore to use ValueStore so that we get the
allocation flow that we're leaning towards there. This adds
`ConstantId::SymbolicId` to represent what was previously an int32
"symbolic_index" (although called an index, it's consistent with ID
usages).

I'm also changing Chunk::at/push to be consistent with the wrapping
Get/Add naming; the naming difference sticks out more with
UninitializedFill being added.
2025-07-17 20:44:15 +00:00
Dana Jansens 7878f6d70f Move LocId dumping to semir/ (#5656)
The `SemIR::File` has access to the `Parse::ParseTree` and
`Lex::TokenizedBuffer` now, so `semir/` can dump a friendly source
location for `LocId`. There were a few other Dump functions in `check/`
that added location info to things, and these can be consolidated into
`semir/` as well. Now `check/` dump functions all just forward over to
`SemIR`, `Parse` or `Lex`.
2025-06-12 20:37:27 +00:00
Thomas Köppe bf32da8dad Add missing standard library header inclusions (#5316)
Discovered by clang-tidy.
2025-04-17 15:37:57 +00:00
Richard Smith a74ca9071b Remove all remaining uses of TypeIds as instruction operands. (#5280)
In preparation for shifting from `TypeId`s potentially representing
attached types to always representing unattached types, using
[terminology suggested on
Discord](https://discord.com/channels/655572317891461132/963846118964350976/1359286326779973712).
This change causes us to track slightly more type spelling information
through SemIR.

One change that has significant impact on the SemIR output is that we
now build a `struct_type` instruction in each class representing the
types of the fields, including the spelling used for those types. This
is now no longer always identical to the corresponding canonical
`struct_type` for the object representation, so it's built separately
and owned by the class.

Also remove `TypeBlock` support entirely, as its only use was
representing `TupleType`s, which now use an `InstBlock`.
2025-04-10 20:53:42 +00:00
Richard Smith 47fa1b5991 Rename StringifyType to reflect that it can stringify non-type constants. (#5285)
Use it to stringify associated constant values in diagnostics. In
passing, add missing support for stringifying bool literals. Note that
there are some cases that it doesn't stringify properly, but that's not
new here; such cases could already be observed when stringifying generic
arguments.
2025-04-10 19:15:27 +00:00
Richard Smith a91752de60 Represent rewrite constraints in FacetTypeInfo with InstId not ConstantId. (#5281)
This follows the pattern used elsewhere, and allows facet types in eval
blocks to directly reference their operands instead of doing so
indirectly via a `ConstantId` attached to the generic. This prepares us
for making `ConstantId`s always be unattached.

In passing, add a stringified version of the `InstId` to diagnostics in
a couple of places where it seems useful.
2025-04-10 03:56:12 +00:00
4af0c8f8d1 Implement ...where .Self impls... (#5238)
* Also remove facet type deduction, since we decided against it on
[2025-04-02](https://docs.google.com/document/d/1Iut5f2TQBrtBNIduF4vJYOKfw7MbS8xH_J01_Q4e6Rk/edit?pli=1&resourcekey=0-mc_vh5UzrzXfU4kO-3tOjA&tab=t.0#heading=h.95phmuvxog9n).

---------

Co-authored-by: Josh L <josh11b@users.noreply.github.com>
Co-authored-by: Dana Jansens <danakj@orodu.net>
2025-04-07 20:45:45 +00:00
bc439ad092 Forward impl declarations of incomplete facet types (#5219)
Implements some of the changes from proposal #5168.

* The data structure for complete facet types has been repurposed for
identified facet types. Identified facet types are now a concept in the
toolchain, but without named constraint support they are not
substantially different from incomplete facet types.
* Identified facet types keep the list of required specific interfaces
in sorted order, for efficiency improvements in impl lookup. Found
another way to identify the interface to impl (or number of impls if not
1).
* Forward `impl` declarations of identified but incomplete facet types
are allowed unless the facet type has rewrites. An incomplete facet type
with rewrites is already either an error or has more than one interface
and so can't be implemented, so this case can't be exercised very well
yet.
* Forward `impl` declarations of interface without rewrites use a
placeholder inst block for the witness.
* Changed some machinery to use RequireIdentifiedFacetType to access the
interfaces of the facet type so we only need to add support for
expanding named constraints into interfaces in one place.

---------

Co-authored-by: Josh L <josh11b@users.noreply.github.com>
Co-authored-by: Dana Jansens <danakj@orodu.net>
2025-04-02 01:46:27 +00:00
0ebe031dac More Dump() output for constants, generics, specifics (#5222)
Example output:

Symbolic `constant_id`:

```
(std::string) $2 = "symbolic_constant36: {inst: inst74, generic: generic3, index: generic_inst_in_decl2, kind: checked}
inst74: {kind: FacetType, arg0: facet_type3, type: type(TypeType)}
  - type: type(TypeType): type; {kind: TypeType, type: type(TypeType)}
  - value: symbolic_constant26
generic3: {decl: inst75, bindings: inst_block41}
inst75: {kind: ImplDecl, arg0: impl0, arg1: inst_block39}
  - value: concrete_constant(inst75)"
```

`generic_id`:

```
(std::string) $3 = "generic3: {decl: inst75, bindings: inst_block41}
inst75: {kind: ImplDecl, arg0: impl0, arg1: inst_block39}
  - value: concrete_constant(inst75)
inst_block41:
  - inst60: {kind: BindSymbolicName, arg0: entity_name4, arg1: inst<none>, type: type(TypeType)}
generic decl block: inst_block46:
  - inst85: {kind: BindSymbolicName, arg0: entity_name4, arg1: inst<none>, type: type(TypeType)}
  - inst86: {kind: ClassType, arg0: class0, arg1: specific7, type: type(TypeType)}
  - inst87: {kind: FacetType, arg0: facet_type4, type: type(TypeType)}
  - inst88: {kind: RequireCompleteType, arg0: type(symbolic_constant36), type: type(inst(WitnessType))}
  - inst89: {kind: ImplWitness, arg0: inst_block42, arg1: specific9, type: type(inst(WitnessType))}"
```

`specific_id`:

```
(std::string) $1 = "specific8: {generic: generic0, args: inst_block67}
inst_block67:
  - inst255: {kind: BindSymbolicName, arg0: entity_name67, arg1: inst<none>, type: type(inst(IntLiteralType))}
generic0: {decl: inst51, bindings: inst_block7}
inst51: {kind: ClassDecl, arg0: class0, arg1: inst_block_empty, type: type(inst52)}
  - type: type(inst52): <type of Int>; {kind: GenericClassType, arg0: class0, arg1: specific<none>, type: type(TypeType)}
  - value: concrete_constant(inst54): {kind: StructValue, arg0: inst_block_empty, type: type(inst52)}
specific decl block: inst_block68:
  - inst255: {kind: BindSymbolicName, arg0: entity_name67, arg1: inst<none>, type: type(inst(IntLiteralType))}
  - inst255: {kind: BindSymbolicName, arg0: entity_name67, arg1: inst<none>, type: type(inst(IntLiteralType))}"
```

---------

Co-authored-by: Josh L <josh11b@users.noreply.github.com>
Co-authored-by: Dana Jansens <danakj@orodu.net>
2025-03-31 15:58:32 +00:00
Jon Ross-PerkinsandDana Jansens 3ae62f8130 Rewrite Dump calls to use std::string returns (#5195)
Thought this might be interesting for you to allow more continuous
stream use. Also eliminates the need for `DumpNoNewline`.

```
expr Dump(context, complete_type_id)
(std::string) $0 = "type(inst1553): <builtin i32>; {kind: IntType, arg0: signed, arg1: inst1508, type: type(TypeType)}"
complete_type_id.Dump()
(std::string) $1 = "type(inst1553)"
expr Dump(context, specific_id)
(std::string) $2 = "specific166: {generic: generic0, args: inst_block772}"
expr Dump(context, query_self_const_id)
(std::string) $3 = "concrete_constant(inst1510): {kind: ClassType, arg0: class0, arg1: specific166, type: type(TypeType)}"
expr Dump(context, MakeFacetTypeId(arg))
(std::string) $4 = "facet_type22: {impls interface: interface10}
  - interface10: {name: name26, parent_scope: name_scope0} `BitAnd`
complete: complete_facet_type22
  - interface10: {name: name26, parent_scope: name_scope0} `BitAnd` (to impl)"
```

---------

Co-authored-by: Dana Jansens <danakj@orodu.net>
2025-03-27 21:17:54 +00:00
Dana Jansens 1d7d78c6da Add more output in dump for generics, impls (#5190) 2025-03-26 22:59:32 +00:00
Dana JansensandJon Ross-Perkins 53c98a8619 Support specialization in impl lookup with a symbolic query/impl. (#5169)
Add a new instruction called ImplSymbolicWitness which represents a
search for an impl declaration given a self type and an interface to
find implemented for the self type. The self type is stored as a
constant instruction id, rather than as a ConstantId, as instructions
don't currently support holding ConstantId. The interface is stored as a
SpecificInterface but we can't fit all of it directly into the
instruction. So we add a new id to refer to the SpecificInterface as
follows.

Add a new SpecificInterfaceId which indexes into a canonical value store
on SemIR::File. This tracks all `SpecificInterface`s stored in an
instruction - specifically the ImplSymbolicWitness instruction.

The SpecificInterface on Impl is still stored there as a value, not as
an id, and no id is eagerly constructed for it. We wait until an id is
needed to make one. Since they are canonical, a new id is only create
when a new SpecificInterface value is seen.

When doing impl lookup, and the query is not concrete, and the impl is
not effectively final, the query needs to consider future impls that may
specialize either the self type or the constaint to make a more precise
match and replace the found impl declaration. Instead of returning the
ImplWitness instruction from the found impl, we generate a
ImplSymbolicWitness instruction, storing the query so that it can be
replayed later. This instruction is added to the generic eval block and
thus will be re-evaluated later with a SpecificId that may make the
query more concrete. When evaluating the instruction and replaying the
query, the lookup has the same conditions and if it does not decide to
use the found impl concretely, then the same instruction is returned
from eval, leaving it as symbolic.

--- Impl lookup changes ---

Impl lookup gets a little more interesting now. It continues to look in
the facet value for a witness if the self type is a facet value. Then
falls back to looking for an impl declaration. This step is no longer
done directly. Instead, we construct a ImplSymbolicWitness instruction
and evaluate it immediately for each interface that are in the query
facet type.

The ImplSymbolicWitness instruction, when evaluated, calls back to the
impl lookup code, with a query specific interface. There we resume back
into the same code path as from before, finding a witness in an impl
declaration. But we may return "found a non-final impl" instead of a
concrete witness. If eval receives this back, it evaluates to the
current ImplSymbolicWitness instruction as the resulting constant value.

To pass lookup failures back through eval, a result of InstId::None from
the second step of impl lookup will result in a non-constant value,
which is used as a signal back up the stack to the original impl lookup
function that the lookup failed. Using a non-constant value here would
break evaluation of the generic eval block if impl lookup could fail
there, however we know it will not since we only leave behind an
ImplSymbolicWitness instruction in the eval block if we found at least
one matching impl already, and we just want to look for a better match
with a more specific query.

We must take care to not store a reference into any value store across
computation in impl lookup, since impl lookup can recurse into itself
invalidate those stores. That includes the SpecificInterface obtained
from a SpecificInterfaceId, which impl lookup also inserts into the
store.

--- The long tail ---

Adding a new instruction and a new id type requires a myriad of changes
to support them:

We add Dump() support for SpecificInterfaceId. And fix a crash in Dump
for SpecificId::None. We also add MakeSpecificInterfaceId() for dumping
arbitrary ids.

The type of ImplSymbolicWitness is a new singleton builtin type
instruction called WitnessSymbolicType (like WitnessType is the type for
an ImplWitness).

Both ImplSymbolicWitness and WitnessSymbolicType are given `Value` as
their expression category as they are builtin constant values. And
BuildInfo() in TypeCompleter is taught about them both, returning a
`ValueRepr::Copy`.

WitnessSymbolicType is added to the set of SingletonInstKinds, so that
it can have a singleton instrution id as a static member.

Lower's BuildTypeForInst() is taught to make an empty struct for
WitnessSymbolicType, similar to WitnessType.

Instruction formatter (FormatterImpl) grows support for printing a
SpecificInterfaceId so that it can print both arguments of
ImplSymbolicWitness on the RHS when printing the SemIR instruction. To
print a SpecificInterfaceId, it prints both the interface id and the
specific id (if there is one). For example, for a query on a generic
interface `Z` with one parameter, the RHS includes the query, interface,
and specific:
```
%Z.impl_symbolic_witness: <symbolic witness> = impl_symbolic_witness %U, @Z, @Z(%U.as_type) [symbolic]
```

IdKind is extended to include SpecificInterfaceId.

InstFingerprinter is taught to look through SpecificInterfaceId and use
the interface and specific ids in the fingerprint.

InstNamer is taught about SpecificInterfaceId, counting the interfaces
when building an index. It is also tought about ImplSymbolicWitness,
using the name of the interface within and the `.impl_symbolic_witness`
suffix. For example, here the LHS is named after the interface in the
query:
```
%Z.impl_symbolic_witness: <symbolic witness> = impl_symbolic_witness %U, @Z, @Z(%U.as_type) [symbolic]
```

StringifyTypeExpr is taught about WitnessSymbolicType, which uses its IR
name since it's a singleton. And about ImplSymbolicWitness which uses
its constant value. The handling of ImplWitnessAccess also needed to be
adjusted, since it assumed that ImplWitnessAccess::witness_id would
always be a FacetAccessWitness, but it can now also be an
ImplSymbolicWitness. (It seems that the witness_id is also assigned
ImplWitness instructions, but those ImplWitnessAccess instructions don't
ever seem to get stringified in a diagnostic at this time.) At the
moment the ImplWitnessAccess with a symbolic witness is just stringified
as "<symbolic>", such as in:
```
x.carbon:1:2: error: cannot implicitly convert value of type `()` to `<symbolic>` [ConversionFailure]
  let a: C(D).(Z.X) = ();
                      ^~
```

There is a TODO left behind to include more information there.

The TypeStructure builder is made to handle WitnessSymbolicType and
WitnessType. These come up now in deduce where a generic impl will have
a ImplSymbolicWitness in a FacetValue for a generic self type. The query
may have a concrete ImplWitness in the same position. Since deduce tries
to deduce through the FacetValue, it tries to convert ImplWitness to
ImplSymbolicWitness, tries to do an impl lookup for `impl ImplWitness as
ImplicitAs(ImplSymbolicWitness)` and causes us to build type structures
with each of these.

Subst is updated to handle pushing and popping SpecificInterfaceId.
Without this, when finishing a generic's eval block, we would walk into
the ImplSymbolicWitness instruction, and its arguments, and fail to
recurse down into the SpecificInterfaceId. Then any specifics inside
would be left as "orphaned" without any generic id attached to them, and
we would never update the instructions in the SpecificInterface's
instructions (inside its own SpecificId) with new constant values when
evaluating the generic eval block against a specific. To do this we push
the specific_id inside the SpecificInterface, and when popping we pop
the specific_id then construct a new canonical SpecificInterface with it
and return that id.

We add support for importing ImplSymbolicWitness by importing its self
constant instruction and specific interface id. However we also had to
add import support for SpecificImplFunction, which can now appear in the
generic eval block for a generic impl declaration, and thus must be
imported with the declaration. This is done very similarly to
SpecificFunction, except the `type_id` is a singleton value.

---------

Co-authored-by: Jon Ross-Perkins <jperkins@google.com>
2025-03-26 15:10:23 +00:00
Dana Jansens e7493d9112 Dump the inst block with the specific (#5138)
Every time I dump a specific id, the next thing I do is dump the inst
block. This saves typing `SemIR::MakeInstBlockId(x)` all the time.
2025-03-18 19:43:49 +00:00
josh11bandJosh L 176f9f1cc4 Improve debug Dump for NameScopeIds (#5088)
Co-authored-by: Josh L <josh11b@users.noreply.github.com>
2025-03-10 15:38:56 +00:00
Dana Jansens d199ce327a Make FacetTypeInfo and CompleteFacetType stores share id indices (#4989)
The CompleteFacetType value store is now a RelationalValueStore. This
type of store uses some _other_ id as the key for insertion. It allows
checking if values of the _other_ id are present in the store, since
those ids are handed out by another store and will (necessarily) exist
before there is a matching value in the RelationalValueStore.

The lookup for precense of the _other_ id returns the id of a value in
the RelationalValueStore. That id can be used to get the value out of
the store.

For our use case, the RelationalValueStore maps from FacetTypeId to
CompleteFacetTypeId. So you add a CompleteFacetType to the store with a
FacetTypeId. Then you can query with a FacetTypeId to see if there
exists a CompleteFacetTypeId. And if there is, you can use that
CompleteFacetTypeId thereafter to get the CompleteFacetType value from
the store.

This removes the need for ValueStore::GetMutable() and removes the
method. FacetTypeInfo no longer has a field that needs to be carefully
excluded from hash and comparison.
2025-02-20 22:59:06 +00:00
eb69d7420e First iteration of completing and resolving facet types (#4920)
* Add `RequireCompleteFacetType` and `ResolveFacetTypeImplWitness` to
`check::Context`. Goal was to move code from `impl.cpp` (mostly) without
functional changes.
* Complete type information is cached with the facet type, and is stored
in a `complete_facet_types()` table.
* Main functional change is to diagnose attempts to use a rewrite
constraint on an associated function. Some existing diagnostics have
been updated.
* Remove `check::Context::RequireDefinedType`:
  * For class types, use `RequireCompleteType`
  * For facet types, use `RequireCompleteFacetType`
* Introduce a `SemIR::SpecificInterface` to hold an interface and
specific id pair.
* Keep the specific interface ids in the impl object.
* Avoid some extra copies in `Dump` functions.
* Future work missing from this PR:
  * Resolving for member access or actions that require impl lookup.
  * Resolving rewrites constraints that refer to non-concrete values.
* Any support for adding implied constraints that result from a `where`
clause (though TODOs have been added).

---------

Co-authored-by: Josh L <josh11b@users.noreply.github.com>
Co-authored-by: Richard Smith <richard@metafoo.co.uk>
Co-authored-by: Dana Jansens <danakj@orodu.net>
2025-02-19 22:10:11 +00:00
Richard Smith c6d35e1c4a Rename template constant -> concrete constant. (#4939)
This implements a direction decided in a
[recent
discussion](https://docs.google.com/document/d/1Iut5f2TQBrtBNIduF4vJYOKfw7MbS8xH_J01_Q4e6Rk/edit?resourcekey=0-mc_vh5UzrzXfU4kO-3tOjA&tab=t.0#heading=h.mas1g68xx9ct)
to switch away from "template constant" when naming a constant that
doesn't depend on any generic parameters, because that creates confusion
with template-dependent constant values that depend on a template
parameter.
2025-02-12 21:24:51 +00:00
Dana Jansens bb67c7dfb2 Add SemIR::MakeSymbolicConstantId(int) (#4862)
Symbolic constants are negative values (starting at -3 at the moment)
but instead of having to figure the correct integer value for
MakeConstantId, provide a function to make a symbolic constant directly.
2025-01-29 16:55:14 +00:00
Jon Ross-Perkins 6b5eb1a101 Id::Invalid -> Id::None (#4834)
High level, replacing `Id::Invalid` with `Id::None` and `Id::is_valid`
with `Id::has_value` for clarity, as discussed
[here](https://discord.com/channels/655572317891461132/655578254970716160/1331664574545395794).
The `IntId` refactoring is needed together with `AnyIdBase` because it's
also used with `ValueStore`.

Note, trying to be careful not to rewrite `EnumBase::InvalidIndex`, or
`is_valid` in general (e.g., `IdKind::is_valid`).

I've tried to sequence commits here:

1. Automatic replacements:

- `((?:Id|Index)(?: |::|\(|Base(?:\(|::)))Invalid((?:Index)?\W)` ->
`$1None$2`
  - `<invalid>` -> `<none>`
  - `InvalidNodeId` -> `NoneNodeId`
  - `/\*invalid\*/` -> `/*none*/`
  - `id((?:_|\(\))(?:\.|->))is_valid` -> `id$1has_value`

2. Manual edits:

  - In `int.h` and `int_test.cpp`
    - `IntT` has `is_value`, which I'm renaming to `is_embedded_value`.
    - Manual edits to comments in this file.
  - `AnyIdBase` and `IdBase`
- Declaration of `is_valid` -> `has_value`, `InvalidIndex` ->
`NoneIndex`.
  - In `ids.h` and `ids.cpp`
    - `is_valid` -> `has_value`
- `// An explicitly invalid ID.` -> `// An ID with no value.`; similar
for index
    - Various math on `InvalidIndex` -> `NoneIndex`
    - Various mentions of "valid" in comments
  - In `value_store.h`, for `IdT::Invalid`, plus one comment
- In `impl.h` and `tokenized_buffer.h`, we had different initialization
of `::None` values (versus `ids.h` syntax) that I fixed manually.
  - Spot checks to compile
- Particularly where `is_valid` replacements didn't catch spots due to
different naming.

3. Autoupdate tests

4. verbose.carbon (NOAUTOUPDATE)

5. Comment spot checks

Note there are probably other mentions of "Invalid" that should be swept
up, but I'd like to argue for merging and separating out remaining
cleanup since this is so sweeping (and likely to hit merge conflicts
from churn). We'll probably have lingering mentions of "invalid" for a
bit regardless, just because there are uses of "invalid" in non-Id APIs.
2025-01-22 23:15:00 +00:00
josh11bandJosh L fa9a07b6cc Add Make...Id functions for debugging (#4759)
In practice, I am unable to call constructors like `SemIR::InstId` from
a debugger. I first tried to use
https://clang.llvm.org/docs/AttributeReference.html#noinline to make
some non-inline calls to the constructor, but that didn't work:

```
toolchain/sem_ir/dump.cpp:245:23: error: 'noinline' attribute is ignored because there exists no call expression inside the statement [-Werror,-Wignored-attributes]
  245 |   [[clang::noinline]] return InstId(inst);
      |          
```

Co-authored-by: Josh L <josh11b@users.noreply.github.com>
2025-01-07 01:10:21 +00:00
josh11bandJosh L 7edb0b8f59 Add more Dump methods for debugging (#4747)
Follow-on to #4669 . Did some manual testing, but may have not exercised
all code paths.

---------

Co-authored-by: Josh L <josh11b@users.noreply.github.com>
2025-01-06 17:26:28 +00:00