Files
carbon-lang/toolchain/check/testdata/class/fail_self.carbon
T
Richard Smith b138c90c9e Use constant evaluation to determine the identity of types. (#3617)
Remove the type canonicalization mechanism and instead rely on constant
canonicalization to deduplicate types.

Rename the `Canonicalize*Type` functions to reflect that they're no
longer performing canonicalization. Switch code that creates types due
to semantic checking, rather than due to source syntax, to directly
create type constants through evaluation rather than creating an
instruction and evaluating it to produce a separate constant
representation.

The mapping from `const (const T)` that was previously performed by type
canonicalization is now implemented in expression evaluation instead.

The value `<error>` is now treated as a constant value, with a special
property that an instruction involving `<error>` that could possibly be
constant evaluates to `<error>`. This helps avoid producing follow-on
errors when an error occurs as a subexpression of an expression, such as
a type, that is intended to be constant.
2024-01-19 00:47:37 +00:00

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// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
// Exceptions. See /LICENSE for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
//
// AUTOUPDATE
class Class {
// CHECK:STDERR: fail_self.carbon:[[@LINE+3]]:8: ERROR: `self` can only be declared in an implicit parameter list.
// CHECK:STDERR: fn F(self: Class);
// CHECK:STDERR: ^~~~~~~~~~~
fn F(self: Class);
// CHECK:STDERR: fail_self.carbon:[[@LINE+6]]:10: ERROR: Function returns incomplete type `Class`.
// CHECK:STDERR: fn G() -> Class;
// CHECK:STDERR: ^~~~~~~~
// CHECK:STDERR: fail_self.carbon:[[@LINE-9]]:1: Class is incomplete within its definition.
// CHECK:STDERR: class Class {
// CHECK:STDERR: ^~~~~~~~~~~~~
fn G() -> Class;
}
// CHECK:STDERR: fail_self.carbon:[[@LINE+3]]:12: ERROR: `self` can only be declared in an implicit parameter list.
// CHECK:STDERR: fn Class.F(self: Class) {
// CHECK:STDERR: ^~~~~~~~~~~
fn Class.F(self: Class) {
}
fn Class.G() -> Class {
// CHECK:STDERR: fail_self.carbon:[[@LINE+3]]:7: ERROR: `self` can only be declared in an implicit parameter list.
// CHECK:STDERR: var self: Class;
// CHECK:STDERR: ^~~~~~~~~~~
var self: Class;
// CHECK:STDERR: fail_self.carbon:[[@LINE+3]]:10: ERROR: Cannot copy value of type `Class`.
// CHECK:STDERR: return self;
// CHECK:STDERR: ^~~~
return self;
}
class WrongSelf {
fn F[self: Class]();
}
fn CallWrongSelf(ws: WrongSelf) {
// CHECK:STDERR: fail_self.carbon:[[@LINE+6]]:3: ERROR: Cannot implicitly convert from `WrongSelf` to `Class`.
// CHECK:STDERR: ws.F();
// CHECK:STDERR: ^~~~~
// CHECK:STDERR: fail_self.carbon:[[@LINE-7]]:8: Initializing `self` parameter of method declared here.
// CHECK:STDERR: fn F[self: Class]();
// CHECK:STDERR: ^~~~
ws.F();
}
// CHECK:STDOUT: --- fail_self.carbon
// CHECK:STDOUT:
// CHECK:STDOUT: constants {
// CHECK:STDOUT: %Class: type = class_type @Class [template]
// CHECK:STDOUT: %.1: type = struct_type {} [template]
// CHECK:STDOUT: %.2: type = tuple_type () [template]
// CHECK:STDOUT: %.3: type = ptr_type {} [template]
// CHECK:STDOUT: %WrongSelf: type = class_type @WrongSelf [template]
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: file {
// CHECK:STDOUT: package: <namespace> = namespace package, {.Class = %Class.decl, .WrongSelf = %WrongSelf.decl, .CallWrongSelf = %CallWrongSelf} [template]
// CHECK:STDOUT: %Class.decl = class_decl @Class, ()
// CHECK:STDOUT: %F: <function> = fn_decl @F.1 [template]
// CHECK:STDOUT: %G: <function> = fn_decl @G [template]
// CHECK:STDOUT: %WrongSelf.decl = class_decl @WrongSelf, ()
// CHECK:STDOUT: %CallWrongSelf: <function> = fn_decl @CallWrongSelf [template]
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: class @Class {
// CHECK:STDOUT: %F: <function> = fn_decl @F.1 [template]
// CHECK:STDOUT: %G: <function> = fn_decl @G [template]
// CHECK:STDOUT:
// CHECK:STDOUT: !members:
// CHECK:STDOUT: .F = %F
// CHECK:STDOUT: .G = %G
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: class @WrongSelf {
// CHECK:STDOUT: %F: <function> = fn_decl @F.2 [template]
// CHECK:STDOUT:
// CHECK:STDOUT: !members:
// CHECK:STDOUT: .F = %F
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: fn @F.1(%self: Class) {
// CHECK:STDOUT: !entry:
// CHECK:STDOUT: return
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: fn @G() -> %return: Class {
// CHECK:STDOUT: !entry:
// CHECK:STDOUT: %Class.ref: type = name_ref Class, constants.%Class [template = constants.%Class]
// CHECK:STDOUT: %self.var: ref Class = var self
// CHECK:STDOUT: %self: ref Class = bind_name self, %self.var
// CHECK:STDOUT: %self.ref: ref Class = name_ref self, %self
// CHECK:STDOUT: %.loc36: Class = bind_value %self.ref
// CHECK:STDOUT: return <error>
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: fn @F.2[%self: Class]();
// CHECK:STDOUT:
// CHECK:STDOUT: fn @CallWrongSelf(%ws: WrongSelf) {
// CHECK:STDOUT: !entry:
// CHECK:STDOUT: %ws.ref: WrongSelf = name_ref ws, %ws
// CHECK:STDOUT: %.loc50_5: <bound method> = bound_method %ws.ref, @WrongSelf.%F
// CHECK:STDOUT: %.loc50_7: init () = call %.loc50_5(<invalid>)
// CHECK:STDOUT: return
// CHECK:STDOUT: }
// CHECK:STDOUT: