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The purpose of the newline is to make it clearer where a given diagnostic begins and ends, particularly as the first message of a diagnostic may not be the error. This is a trivial code change, but ripples edits through test files.
72 lines
3.2 KiB
Plaintext
72 lines
3.2 KiB
Plaintext
// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
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// Exceptions. See /LICENSE for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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// AUTOUPDATE
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// CHECK:STDERR: fail_todo_generic_method.carbon:[[@LINE+4]]:1: ERROR: Semantics TODO: `generic class`.
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// CHECK:STDERR: class Class(T:! type) {
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// CHECK:STDERR: ^~~~~~~~~~~~~~~~~~~~~~~
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// CHECK:STDERR:
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class Class(T:! type) {
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var a: T;
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fn F[self: Self](n: T);
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}
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// CHECK:STDERR: fail_todo_generic_method.carbon:[[@LINE+10]]:1: ERROR: Duplicate name being declared in the same scope.
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// CHECK:STDERR: fn Class(T:! type).F[self: Self](n: T) {}
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// CHECK:STDERR: ^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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// CHECK:STDERR: fail_todo_generic_method.carbon:[[@LINE-8]]:1: Name is previously declared here.
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// CHECK:STDERR: class Class(T:! type) {
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// CHECK:STDERR: ^~~~~~~~~~~~~~~~~~~~~~~
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// CHECK:STDERR:
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// CHECK:STDERR: fail_todo_generic_method.carbon:[[@LINE+3]]:19: ERROR: `fn` declarations must either end with a `;` or have a `{ ... }` block for a definition.
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// CHECK:STDERR: fn Class(T:! type).F[self: Self](n: T) {}
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// CHECK:STDERR: ^
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fn Class(T:! type).F[self: Self](n: T) {}
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// CHECK:STDOUT: --- fail_todo_generic_method.carbon
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// CHECK:STDOUT:
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// CHECK:STDOUT: constants {
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// CHECK:STDOUT: %Class: type = class_type @Class [template]
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// CHECK:STDOUT: %.1: type = unbound_element_type Class, T [symbolic]
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// CHECK:STDOUT: %.2: type = struct_type {.a: T} [symbolic]
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// CHECK:STDOUT: }
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// CHECK:STDOUT:
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// CHECK:STDOUT: file {
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// CHECK:STDOUT: package: <namespace> = namespace [template] {
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// CHECK:STDOUT: .Class = %Class.decl
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// CHECK:STDOUT: }
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// CHECK:STDOUT: %Class.decl: type = class_decl @Class [template = constants.%Class] {
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// CHECK:STDOUT: %T.loc11_13.1: type = param T
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// CHECK:STDOUT: %T.loc11_13.2: type = bind_symbolic_name T, %T.loc11_13.1 [symbolic]
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// CHECK:STDOUT: }
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// CHECK:STDOUT: %.loc26: <function> = fn_decl @.1 [template] {
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// CHECK:STDOUT: %T.loc26_10.1: type = param T
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// CHECK:STDOUT: @.1.%T: type = bind_symbolic_name T, %T.loc26_10.1 [symbolic]
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// CHECK:STDOUT: }
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// CHECK:STDOUT: }
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// CHECK:STDOUT:
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// CHECK:STDOUT: class @Class {
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// CHECK:STDOUT: %T.ref.loc12: type = name_ref T, file.%T.loc11_13.2 [symbolic = file.%T.loc11_13.2]
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// CHECK:STDOUT: %.loc12: <unbound element of class Class> = field_decl a, element0 [template]
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// CHECK:STDOUT: %F: <function> = fn_decl @F [template] {
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// CHECK:STDOUT: %Self.ref: type = name_ref Self, constants.%Class [template = constants.%Class]
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// CHECK:STDOUT: %self.loc13_8.1: Class = param self
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// CHECK:STDOUT: %self.loc13_8.2: Class = bind_name self, %self.loc13_8.1
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// CHECK:STDOUT: %T.ref.loc13: type = name_ref T, file.%T.loc11_13.2 [symbolic = file.%T.loc11_13.2]
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// CHECK:STDOUT: %n.loc13_20.1: T = param n
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// CHECK:STDOUT: %n.loc13_20.2: T = bind_name n, %n.loc13_20.1
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// CHECK:STDOUT: }
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// CHECK:STDOUT:
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// CHECK:STDOUT: !members:
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// CHECK:STDOUT: .Self = constants.%Class
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// CHECK:STDOUT: .a = %.loc12
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// CHECK:STDOUT: .F = %F
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// CHECK:STDOUT: }
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// CHECK:STDOUT:
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// CHECK:STDOUT: fn @F[@Class.%self.loc13_8.2: Class](@Class.%n.loc13_20.2: T);
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// CHECK:STDOUT:
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// CHECK:STDOUT: fn @.1(%T: type);
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// CHECK:STDOUT:
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