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Add import/ and export/ under function/. Move most top-level tests to a new basics/ with subdirectories for `import` directives and `inline Cpp`. Add subdirectory for primitive type handling. Move all `reverse/` tests to somewhere else, typically under an `export/` directory. I split two test files up: constexpr.carbon got split into var/ and function/ pieces, and reverse/simple.carbon was inlined into namespace/export.carbon. The rest are just simple renames.
150 lines
4.0 KiB
Plaintext
150 lines
4.0 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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// INCLUDE-FILE: toolchain/testing/testdata/min_prelude/primitives.carbon
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//
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// AUTOUPDATE
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// TIP: To test this file alone, run:
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// TIP: bazel test //toolchain/testing:file_test --test_arg=--file_tests=toolchain/check/testdata/interop/cpp/function/import/template.carbon
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// TIP: To dump output, run:
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// TIP: bazel run //toolchain/testing:file_test -- --dump_output --file_tests=toolchain/check/testdata/interop/cpp/function/import/template.carbon
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// --- deduced_or_explicit.carbon
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library "[[@TEST_NAME]]";
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import Cpp inline '''
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template<typename T> T min(T a, T b) { return a < b ? a : b; }
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''';
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let a: i32 = 1;
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let b: i32 = 2;
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let min_implicit: i32 = Cpp.min(a, b);
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let min_explicit: i32 = Cpp.min(i32, a, b);
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let min_explicit_literal: i32 = Cpp.min(i32, 1, 2);
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// --- template_template_arg.carbon
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library "[[@TEST_NAME]]";
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import Cpp inline '''
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template<typename> struct X;
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template<typename> struct Y;
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template<template<typename> typename... TT, typename... T> void f(T ...a) {}
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''';
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fn Call() {
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let a: i32 = 0;
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let b: i32 = 0;
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// `a` and `b` are not classified as template arguments, so are passed as the
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// function parameter pack `a...`.
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Cpp.f(a, b);
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// `Cpp.X` and `Cpp.Y` are classified as template template arguments, so they
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// are passed as the template parameter pack `TT...`.
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Cpp.f(Cpp.X, Cpp.Y);
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// Pass some template arguments followed by some function arguments.
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Cpp.f(Cpp.X, Cpp.Y, a, b);
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Cpp.f(Cpp.X, a, b, a);
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}
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// --- nontype_template_arg.carbon
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library "[[@TEST_NAME]]";
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import Cpp inline '''
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template<int... I, typename... T> void f(T ...a) {}
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template<int I = 0, int J = 0, typename = void, typename... T> void g(T ...a) {}
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''';
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fn Call() {
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let a: i32 = 0;
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let b: i32 = 0;
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Cpp.f(a, b);
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// TODO: There should be a way to indicate that the arguments are template
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// arguments, not function arguments, when calling `f`.
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Cpp.f(1, 2);
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// Two function arguments.
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Cpp.g(1, 2);
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// Three template arguments.
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Cpp.g(1, 2, i32);
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// Three template arguments and two function arguments.
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Cpp.g(1, 2, i32, 3, 4);
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}
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// --- fail_function_arg_not_template_arg.carbon
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library "[[@TEST_NAME]]";
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import Cpp inline '''
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template<int N> void f();
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''';
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fn Call() {
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// We treat this as a function argument, even though that makes the call fail.
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// CHECK:STDERR: fail_function_arg_not_template_arg.carbon:[[@LINE+7]]:10: error: no matching function for call to 'f' [CppInteropParseError]
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// CHECK:STDERR: 17 | Cpp.f(1);
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// CHECK:STDERR: | ^
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// CHECK:STDERR: fail_function_arg_not_template_arg.carbon:[[@LINE-8]]:22: note: candidate function template not viable: requires 0 arguments, but 1 was provided [CppInteropParseNote]
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// CHECK:STDERR: 5 | template<int N> void f();
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// CHECK:STDERR: | ^
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// CHECK:STDERR:
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Cpp.f(1);
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}
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// --- function_arg_not_template_arg_overloaded.carbon
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library "[[@TEST_NAME]]";
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import Cpp inline '''
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template<int N> void f();
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void f(int n);
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''';
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fn Call() {
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Cpp.f(1);
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}
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// --- overloaded_with_different_template_params.carbon
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library "[[@TEST_NAME]]";
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import Cpp inline '''
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template<typename T> struct X;
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struct Y;
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template<int N, typename T> void f();
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template<typename T> void f();
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template<template<typename> typename T> void f();
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''';
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fn Call() {
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Cpp.f(1, i32);
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Cpp.f(Cpp.X);
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Cpp.f(Cpp.Y);
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}
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// --- only_call_templates_when_given_template_args.carbon
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library "[[@TEST_NAME]]";
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import Cpp inline '''
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struct NonTemplate {};
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struct Template {};
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NonTemplate f(unsigned char, unsigned char);
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template<typename = void> Template f(unsigned char, int = 0);
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''';
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// Prefers the non-template because it has a better match for the second parameter.
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let x: Cpp.NonTemplate = Cpp.f(1 as u8, 2 as u8);
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// Calls the template; the non-template is not considered due to the template
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// argument `i32`.
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let y: Cpp.Template = Cpp.f(i32, 1 as u8);
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