// 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 // TIP: To test this file alone, run: // TIP: bazel test //toolchain/testing:file_test --test_arg=--file_tests=toolchain/check/testdata/function/generic/redeclare.carbon // TIP: To dump output, run: // TIP: bazel run //toolchain/testing:file_test -- --dump_output --file_tests=toolchain/check/testdata/function/generic/redeclare.carbon // --- redeclare.carbon library "redeclare"; fn F(T:! type) -> T*; fn F(T:! type) -> T* { return F(T); } // --- fail_different_return_type.carbon library "fail_different_return_type"; fn F(T:! type, U:! type) -> T*; // CHECK:STDERR: fail_different_return_type.carbon:[[@LINE+7]]:1: ERROR: Function redeclaration differs because return type is `U*`. // CHECK:STDERR: fn F(T:! type, U:! type) -> U* { // CHECK:STDERR: ^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ // CHECK:STDERR: fail_different_return_type.carbon:[[@LINE-5]]:1: Previously declared with return type `T*`. // CHECK:STDERR: fn F(T:! type, U:! type) -> T*; // CHECK:STDERR: ^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ // CHECK:STDERR: fn F(T:! type, U:! type) -> U* { // TODO: This diagnostic is not very good. We should check the arity in a // function call before, or as part of, deduction. // CHECK:STDERR: fail_different_return_type.carbon:[[@LINE+7]]:10: ERROR: Cannot deduce value for generic parameter `T`. // CHECK:STDERR: return F(T); // CHECK:STDERR: ^~ // CHECK:STDERR: fail_different_return_type.carbon:[[@LINE-15]]:1: While deducing parameters of generic declared here. // CHECK:STDERR: fn F(T:! type, U:! type) -> T*; // CHECK:STDERR: ^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ // CHECK:STDERR: return F(T); } // --- fail_reorder.carbon library "fail_reorder"; fn F(T:! type, U:! type) -> T*; // CHECK:STDERR: fail_reorder.carbon:[[@LINE+7]]:6: ERROR: Redeclaration differs at parameter 1. // CHECK:STDERR: fn F(U:! type, T:! type) -> T* { // CHECK:STDERR: ^ // CHECK:STDERR: fail_reorder.carbon:[[@LINE-5]]:6: Previous declaration's corresponding parameter here. // CHECK:STDERR: fn F(T:! type, U:! type) -> T*; // CHECK:STDERR: ^ // CHECK:STDERR: fn F(U:! type, T:! type) -> T* { // CHECK:STDERR: fail_reorder.carbon:[[@LINE+7]]:10: ERROR: Cannot deduce value for generic parameter `T`. // CHECK:STDERR: return F(T); // CHECK:STDERR: ^~ // CHECK:STDERR: fail_reorder.carbon:[[@LINE-13]]:1: While deducing parameters of generic declared here. // CHECK:STDERR: fn F(T:! type, U:! type) -> T*; // CHECK:STDERR: ^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ // CHECK:STDERR: return F(T); } // --- fail_rename.carbon library "fail_rename"; fn F(T:! type, U:! type) -> T*; // CHECK:STDERR: fail_rename.carbon:[[@LINE+7]]:6: ERROR: Redeclaration differs at parameter 1. // CHECK:STDERR: fn F(U:! type, T:! type) -> U* { // CHECK:STDERR: ^ // CHECK:STDERR: fail_rename.carbon:[[@LINE-5]]:6: Previous declaration's corresponding parameter here. // CHECK:STDERR: fn F(T:! type, U:! type) -> T*; // CHECK:STDERR: ^ // CHECK:STDERR: fn F(U:! type, T:! type) -> U* { // CHECK:STDERR: fail_rename.carbon:[[@LINE+6]]:10: ERROR: Cannot deduce value for generic parameter `T`. // CHECK:STDERR: return F(T); // CHECK:STDERR: ^~ // CHECK:STDERR: fail_rename.carbon:[[@LINE-13]]:1: While deducing parameters of generic declared here. // CHECK:STDERR: fn F(T:! type, U:! type) -> T*; // CHECK:STDERR: ^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ return F(T); } // CHECK:STDOUT: --- redeclare.carbon // CHECK:STDOUT: // CHECK:STDOUT: constants { // CHECK:STDOUT: %T: type = bind_symbolic_name T 0 [symbolic] // CHECK:STDOUT: %.1: type = ptr_type %T [symbolic] // CHECK:STDOUT: %F.type: type = fn_type @F [template] // CHECK:STDOUT: %.2: type = tuple_type () [template] // CHECK:STDOUT: %F: %F.type = struct_value () [template] // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: imports { // CHECK:STDOUT: %Core: = namespace file.%Core.import, [template] { // CHECK:STDOUT: import Core//prelude // CHECK:STDOUT: import Core//prelude/operators // CHECK:STDOUT: import Core//prelude/types // CHECK:STDOUT: import Core//prelude/operators/arithmetic // CHECK:STDOUT: import Core//prelude/operators/bitwise // CHECK:STDOUT: import Core//prelude/operators/comparison // CHECK:STDOUT: import Core//prelude/types/bool // CHECK:STDOUT: } // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: file { // CHECK:STDOUT: package: = namespace [template] { // CHECK:STDOUT: .Core = imports.%Core // CHECK:STDOUT: .F = %F.decl.loc4 // CHECK:STDOUT: } // CHECK:STDOUT: %Core.import = import Core // CHECK:STDOUT: %F.decl.loc4: %F.type = fn_decl @F [template = constants.%F] { // CHECK:STDOUT: %T.loc4_6.1: type = param T // CHECK:STDOUT: %T.loc4_6.2: type = bind_symbolic_name T 0, %T.loc4_6.1 [symbolic = @F.%T.1 (constants.%T)] // CHECK:STDOUT: %T.ref.loc4: type = name_ref T, %T.loc4_6.2 [symbolic = @F.%T.1 (constants.%T)] // CHECK:STDOUT: %.loc4: type = ptr_type %T [symbolic = @F.%.1 (constants.%.1)] // CHECK:STDOUT: %return.var.loc4: ref @F.%.1 (%.1) = var // CHECK:STDOUT: } // CHECK:STDOUT: %F.decl.loc6: %F.type = fn_decl @F [template = constants.%F] { // CHECK:STDOUT: %T.loc6_6.1: type = param T // CHECK:STDOUT: @F.%T.loc6: type = bind_symbolic_name T 0, %T.loc6_6.1 [symbolic = constants.%T] // CHECK:STDOUT: %T.ref.loc6: type = name_ref T, @F.%T.loc6 [symbolic = constants.%T] // CHECK:STDOUT: %.loc6: type = ptr_type %T [symbolic = constants.%.1] // CHECK:STDOUT: @F.%return: ref %.1 = var // CHECK:STDOUT: } // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: generic fn @F(file.%T.loc4_6.2: type) { // CHECK:STDOUT: %T.1: type = bind_symbolic_name T 0 [symbolic = %T.1 (constants.%T)] // CHECK:STDOUT: %.1: type = ptr_type @F.%T.1 (%T) [symbolic = %.1 (constants.%.1)] // CHECK:STDOUT: // CHECK:STDOUT: !definition: // CHECK:STDOUT: // CHECK:STDOUT: fn(%T.loc6: type) -> %.1 { // CHECK:STDOUT: !entry: // CHECK:STDOUT: %F.ref: %F.type = name_ref F, file.%F.decl.loc4 [template = constants.%F] // CHECK:STDOUT: %T.ref: type = name_ref T, %T.loc6 [symbolic = %T.1 (constants.%T)] // CHECK:STDOUT: %F.call: init @F.%.1 (%.1) = call %F.ref(%T.ref) // CHECK:STDOUT: %.loc7_14.1: @F.%.1 (%.1) = value_of_initializer %F.call // CHECK:STDOUT: %.loc7_14.2: @F.%.1 (%.1) = converted %F.call, %.loc7_14.1 // CHECK:STDOUT: return %.loc7_14.2 // CHECK:STDOUT: } // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: specific @F(constants.%T) { // CHECK:STDOUT: %T.1 => constants.%T // CHECK:STDOUT: %.1 => constants.%.1 // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: --- fail_different_return_type.carbon // CHECK:STDOUT: // CHECK:STDOUT: constants { // CHECK:STDOUT: %T: type = bind_symbolic_name T 0 [symbolic] // CHECK:STDOUT: %U: type = bind_symbolic_name U 1 [symbolic] // CHECK:STDOUT: %.1: type = ptr_type %T [symbolic] // CHECK:STDOUT: %F.type: type = fn_type @F [template] // CHECK:STDOUT: %.2: type = tuple_type () [template] // CHECK:STDOUT: %F: %F.type = struct_value () [template] // CHECK:STDOUT: %.3: type = ptr_type %U [symbolic] // CHECK:STDOUT: %.type: type = fn_type @.1 [template] // CHECK:STDOUT: %.4: %.type = struct_value () [template] // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: imports { // CHECK:STDOUT: %Core: = namespace file.%Core.import, [template] { // CHECK:STDOUT: import Core//prelude // CHECK:STDOUT: import Core//prelude/operators // CHECK:STDOUT: import Core//prelude/types // CHECK:STDOUT: import Core//prelude/operators/arithmetic // CHECK:STDOUT: import Core//prelude/operators/bitwise // CHECK:STDOUT: import Core//prelude/operators/comparison // CHECK:STDOUT: import Core//prelude/types/bool // CHECK:STDOUT: } // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: file { // CHECK:STDOUT: package: = namespace [template] { // CHECK:STDOUT: .Core = imports.%Core // CHECK:STDOUT: .F = %F.decl // CHECK:STDOUT: } // CHECK:STDOUT: %Core.import = import Core // CHECK:STDOUT: %F.decl: %F.type = fn_decl @F [template = constants.%F] { // CHECK:STDOUT: %T.loc4_6.1: type = param T // CHECK:STDOUT: @F.%T.loc4: type = bind_symbolic_name T 0, %T.loc4_6.1 [symbolic = @F.%T.1 (constants.%T)] // CHECK:STDOUT: %U.loc4_16.1: type = param U // CHECK:STDOUT: @F.%U.loc4: type = bind_symbolic_name U 1, %U.loc4_16.1 [symbolic = @F.%U.1 (constants.%U)] // CHECK:STDOUT: %T.ref: type = name_ref T, @F.%T.loc4 [symbolic = @F.%T.1 (constants.%T)] // CHECK:STDOUT: %.loc4: type = ptr_type %T [symbolic = @F.%.1 (constants.%.1)] // CHECK:STDOUT: @F.%return: ref @F.%.1 (%.1) = var // CHECK:STDOUT: } // CHECK:STDOUT: %.decl: %.type = fn_decl @.1 [template = constants.%.4] { // CHECK:STDOUT: %T.loc13_6.1: type = param T // CHECK:STDOUT: @.1.%T.loc13: type = bind_symbolic_name T 0, %T.loc13_6.1 [symbolic = @.1.%T.1 (constants.%T)] // CHECK:STDOUT: %U.loc13_16.1: type = param U // CHECK:STDOUT: @.1.%U.loc13: type = bind_symbolic_name U 1, %U.loc13_16.1 [symbolic = @.1.%U.1 (constants.%U)] // CHECK:STDOUT: %U.ref: type = name_ref U, @.1.%U.loc13 [symbolic = @.1.%U.1 (constants.%U)] // CHECK:STDOUT: %.loc13: type = ptr_type %U [symbolic = @.1.%.1 (constants.%.3)] // CHECK:STDOUT: @.1.%return: ref @.1.%.1 (%.3) = var // CHECK:STDOUT: } // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: generic fn @F(%T.loc4: type, %U.loc4: type) { // CHECK:STDOUT: %T.1: type = bind_symbolic_name T 0 [symbolic = %T.1 (constants.%T)] // CHECK:STDOUT: %U.1: type = bind_symbolic_name U 1 [symbolic = %U.1 (constants.%U)] // CHECK:STDOUT: %.1: type = ptr_type @F.%T.1 (%T) [symbolic = %.1 (constants.%.1)] // CHECK:STDOUT: // CHECK:STDOUT: fn(%T.loc4: type, %U.loc4: type) -> @F.%.1 (%.1); // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: generic fn @.1(%T.loc13: type, %U.loc13: type) { // CHECK:STDOUT: %T.1: type = bind_symbolic_name T 0 [symbolic = %T.1 (constants.%T)] // CHECK:STDOUT: %U.1: type = bind_symbolic_name U 1 [symbolic = %U.1 (constants.%U)] // CHECK:STDOUT: %.1: type = ptr_type @.1.%U.1 (%U) [symbolic = %.1 (constants.%.3)] // CHECK:STDOUT: // CHECK:STDOUT: !definition: // CHECK:STDOUT: // CHECK:STDOUT: fn(%T.loc13: type, %U.loc13: type) -> @.1.%.1 (%.3) { // CHECK:STDOUT: !entry: // CHECK:STDOUT: %F.ref: %F.type = name_ref F, file.%F.decl [template = constants.%F] // CHECK:STDOUT: %T.ref: type = name_ref T, %T.loc13 [symbolic = %T.1 (constants.%T)] // CHECK:STDOUT: return // CHECK:STDOUT: } // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: specific @F(constants.%T, constants.%U) { // CHECK:STDOUT: %T.1 => constants.%T // CHECK:STDOUT: %U.1 => constants.%U // CHECK:STDOUT: %.1 => constants.%.1 // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: specific @.1(constants.%T, constants.%U) { // CHECK:STDOUT: %T.1 => constants.%T // CHECK:STDOUT: %U.1 => constants.%U // CHECK:STDOUT: %.1 => constants.%.3 // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: --- fail_reorder.carbon // CHECK:STDOUT: // CHECK:STDOUT: constants { // CHECK:STDOUT: %T.1: type = bind_symbolic_name T 0 [symbolic] // CHECK:STDOUT: %U.1: type = bind_symbolic_name U 1 [symbolic] // CHECK:STDOUT: %.1: type = ptr_type %T.1 [symbolic] // CHECK:STDOUT: %F.type: type = fn_type @F [template] // CHECK:STDOUT: %.2: type = tuple_type () [template] // CHECK:STDOUT: %F: %F.type = struct_value () [template] // CHECK:STDOUT: %U.2: type = bind_symbolic_name U 0 [symbolic] // CHECK:STDOUT: %T.2: type = bind_symbolic_name T 1 [symbolic] // CHECK:STDOUT: %.3: type = ptr_type %T.2 [symbolic] // CHECK:STDOUT: %.type: type = fn_type @.1 [template] // CHECK:STDOUT: %.4: %.type = struct_value () [template] // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: imports { // CHECK:STDOUT: %Core: = namespace file.%Core.import, [template] { // CHECK:STDOUT: import Core//prelude // CHECK:STDOUT: import Core//prelude/operators // CHECK:STDOUT: import Core//prelude/types // CHECK:STDOUT: import Core//prelude/operators/arithmetic // CHECK:STDOUT: import Core//prelude/operators/bitwise // CHECK:STDOUT: import Core//prelude/operators/comparison // CHECK:STDOUT: import Core//prelude/types/bool // CHECK:STDOUT: } // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: file { // CHECK:STDOUT: package: = namespace [template] { // CHECK:STDOUT: .Core = imports.%Core // CHECK:STDOUT: .F = %F.decl // CHECK:STDOUT: } // CHECK:STDOUT: %Core.import = import Core // CHECK:STDOUT: %F.decl: %F.type = fn_decl @F [template = constants.%F] { // CHECK:STDOUT: %T.loc4_6.1: type = param T // CHECK:STDOUT: @F.%T.loc4: type = bind_symbolic_name T 0, %T.loc4_6.1 [symbolic = @F.%T.1 (constants.%T.1)] // CHECK:STDOUT: %U.loc4_16.1: type = param U // CHECK:STDOUT: @F.%U.loc4: type = bind_symbolic_name U 1, %U.loc4_16.1 [symbolic = @F.%U.1 (constants.%U.1)] // CHECK:STDOUT: %T.ref.loc4: type = name_ref T, @F.%T.loc4 [symbolic = @F.%T.1 (constants.%T.1)] // CHECK:STDOUT: %.loc4: type = ptr_type %T.1 [symbolic = @F.%.1 (constants.%.1)] // CHECK:STDOUT: @F.%return: ref @F.%.1 (%.1) = var // CHECK:STDOUT: } // CHECK:STDOUT: %.decl: %.type = fn_decl @.1 [template = constants.%.4] { // CHECK:STDOUT: %U.loc13_6.1: type = param U // CHECK:STDOUT: @.1.%U.loc13: type = bind_symbolic_name U 0, %U.loc13_6.1 [symbolic = @.1.%U.1 (constants.%U.2)] // CHECK:STDOUT: %T.loc13_16.1: type = param T // CHECK:STDOUT: @.1.%T.loc13: type = bind_symbolic_name T 1, %T.loc13_16.1 [symbolic = @.1.%T.1 (constants.%T.2)] // CHECK:STDOUT: %T.ref.loc13: type = name_ref T, @.1.%T.loc13 [symbolic = @.1.%T.1 (constants.%T.2)] // CHECK:STDOUT: %.loc13: type = ptr_type %T.2 [symbolic = @.1.%.1 (constants.%.3)] // CHECK:STDOUT: @.1.%return: ref @.1.%.1 (%.3) = var // CHECK:STDOUT: } // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: generic fn @F(%T.loc4: type, %U.loc4: type) { // CHECK:STDOUT: %T.1: type = bind_symbolic_name T 0 [symbolic = %T.1 (constants.%T.1)] // CHECK:STDOUT: %U.1: type = bind_symbolic_name U 1 [symbolic = %U.1 (constants.%U.1)] // CHECK:STDOUT: %.1: type = ptr_type @F.%T.1 (%T.1) [symbolic = %.1 (constants.%.1)] // CHECK:STDOUT: // CHECK:STDOUT: fn(%T.loc4: type, %U.loc4: type) -> @F.%.1 (%.1); // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: generic fn @.1(%U.loc13: type, %T.loc13: type) { // CHECK:STDOUT: %U.1: type = bind_symbolic_name U 0 [symbolic = %U.1 (constants.%U.2)] // CHECK:STDOUT: %T.1: type = bind_symbolic_name T 1 [symbolic = %T.1 (constants.%T.2)] // CHECK:STDOUT: %.1: type = ptr_type @.1.%T.1 (%T.2) [symbolic = %.1 (constants.%.3)] // CHECK:STDOUT: // CHECK:STDOUT: !definition: // CHECK:STDOUT: // CHECK:STDOUT: fn(%U.loc13: type, %T.loc13: type) -> @.1.%.1 (%.3) { // CHECK:STDOUT: !entry: // CHECK:STDOUT: %F.ref: %F.type = name_ref F, file.%F.decl [template = constants.%F] // CHECK:STDOUT: %T.ref: type = name_ref T, %T.loc13 [symbolic = %T.1 (constants.%T.2)] // CHECK:STDOUT: return // CHECK:STDOUT: } // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: specific @F(constants.%T.1, constants.%U.1) { // CHECK:STDOUT: %T.1 => constants.%T.1 // CHECK:STDOUT: %U.1 => constants.%U.1 // CHECK:STDOUT: %.1 => constants.%.1 // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: specific @.1(constants.%U.2, constants.%T.2) { // CHECK:STDOUT: %U.1 => constants.%U.2 // CHECK:STDOUT: %T.1 => constants.%T.2 // CHECK:STDOUT: %.1 => constants.%.3 // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: --- fail_rename.carbon // CHECK:STDOUT: // CHECK:STDOUT: constants { // CHECK:STDOUT: %T.1: type = bind_symbolic_name T 0 [symbolic] // CHECK:STDOUT: %U.1: type = bind_symbolic_name U 1 [symbolic] // CHECK:STDOUT: %.1: type = ptr_type %T.1 [symbolic] // CHECK:STDOUT: %F.type: type = fn_type @F [template] // CHECK:STDOUT: %.2: type = tuple_type () [template] // CHECK:STDOUT: %F: %F.type = struct_value () [template] // CHECK:STDOUT: %U.2: type = bind_symbolic_name U 0 [symbolic] // CHECK:STDOUT: %T.2: type = bind_symbolic_name T 1 [symbolic] // CHECK:STDOUT: %.3: type = ptr_type %U.2 [symbolic] // CHECK:STDOUT: %.type: type = fn_type @.1 [template] // CHECK:STDOUT: %.4: %.type = struct_value () [template] // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: imports { // CHECK:STDOUT: %Core: = namespace file.%Core.import, [template] { // CHECK:STDOUT: import Core//prelude // CHECK:STDOUT: import Core//prelude/operators // CHECK:STDOUT: import Core//prelude/types // CHECK:STDOUT: import Core//prelude/operators/arithmetic // CHECK:STDOUT: import Core//prelude/operators/bitwise // CHECK:STDOUT: import Core//prelude/operators/comparison // CHECK:STDOUT: import Core//prelude/types/bool // CHECK:STDOUT: } // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: file { // CHECK:STDOUT: package: = namespace [template] { // CHECK:STDOUT: .Core = imports.%Core // CHECK:STDOUT: .F = %F.decl // CHECK:STDOUT: } // CHECK:STDOUT: %Core.import = import Core // CHECK:STDOUT: %F.decl: %F.type = fn_decl @F [template = constants.%F] { // CHECK:STDOUT: %T.loc4_6.1: type = param T // CHECK:STDOUT: @F.%T.loc4: type = bind_symbolic_name T 0, %T.loc4_6.1 [symbolic = @F.%T.1 (constants.%T.1)] // CHECK:STDOUT: %U.loc4_16.1: type = param U // CHECK:STDOUT: @F.%U.loc4: type = bind_symbolic_name U 1, %U.loc4_16.1 [symbolic = @F.%U.1 (constants.%U.1)] // CHECK:STDOUT: %T.ref: type = name_ref T, @F.%T.loc4 [symbolic = @F.%T.1 (constants.%T.1)] // CHECK:STDOUT: %.loc4: type = ptr_type %T.1 [symbolic = @F.%.1 (constants.%.1)] // CHECK:STDOUT: @F.%return: ref @F.%.1 (%.1) = var // CHECK:STDOUT: } // CHECK:STDOUT: %.decl: %.type = fn_decl @.1 [template = constants.%.4] { // CHECK:STDOUT: %U.loc13_6.1: type = param U // CHECK:STDOUT: @.1.%U.loc13: type = bind_symbolic_name U 0, %U.loc13_6.1 [symbolic = @.1.%U.1 (constants.%U.2)] // CHECK:STDOUT: %T.loc13_16.1: type = param T // CHECK:STDOUT: @.1.%T.loc13: type = bind_symbolic_name T 1, %T.loc13_16.1 [symbolic = @.1.%T.1 (constants.%T.2)] // CHECK:STDOUT: %U.ref: type = name_ref U, @.1.%U.loc13 [symbolic = @.1.%U.1 (constants.%U.2)] // CHECK:STDOUT: %.loc13: type = ptr_type %U.2 [symbolic = @.1.%.1 (constants.%.3)] // CHECK:STDOUT: @.1.%return: ref @.1.%.1 (%.3) = var // CHECK:STDOUT: } // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: generic fn @F(%T.loc4: type, %U.loc4: type) { // CHECK:STDOUT: %T.1: type = bind_symbolic_name T 0 [symbolic = %T.1 (constants.%T.1)] // CHECK:STDOUT: %U.1: type = bind_symbolic_name U 1 [symbolic = %U.1 (constants.%U.1)] // CHECK:STDOUT: %.1: type = ptr_type @F.%T.1 (%T.1) [symbolic = %.1 (constants.%.1)] // CHECK:STDOUT: // CHECK:STDOUT: fn(%T.loc4: type, %U.loc4: type) -> @F.%.1 (%.1); // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: generic fn @.1(%U.loc13: type, %T.loc13: type) { // CHECK:STDOUT: %U.1: type = bind_symbolic_name U 0 [symbolic = %U.1 (constants.%U.2)] // CHECK:STDOUT: %T.1: type = bind_symbolic_name T 1 [symbolic = %T.1 (constants.%T.2)] // CHECK:STDOUT: %.1: type = ptr_type @.1.%U.1 (%U.2) [symbolic = %.1 (constants.%.3)] // CHECK:STDOUT: // CHECK:STDOUT: !definition: // CHECK:STDOUT: // CHECK:STDOUT: fn(%U.loc13: type, %T.loc13: type) -> @.1.%.1 (%.3) { // CHECK:STDOUT: !entry: // CHECK:STDOUT: %F.ref: %F.type = name_ref F, file.%F.decl [template = constants.%F] // CHECK:STDOUT: %T.ref: type = name_ref T, %T.loc13 [symbolic = %T.1 (constants.%T.2)] // CHECK:STDOUT: return // CHECK:STDOUT: } // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: specific @F(constants.%T.1, constants.%U.1) { // CHECK:STDOUT: %T.1 => constants.%T.1 // CHECK:STDOUT: %U.1 => constants.%U.1 // CHECK:STDOUT: %.1 => constants.%.1 // CHECK:STDOUT: } // CHECK:STDOUT: // CHECK:STDOUT: specific @.1(constants.%U.2, constants.%T.2) { // CHECK:STDOUT: %U.1 => constants.%U.2 // CHECK:STDOUT: %T.1 => constants.%T.2 // CHECK:STDOUT: %.1 => constants.%.3 // CHECK:STDOUT: } // CHECK:STDOUT: