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Isolating test execution time (no build time included): - Linux, `lit` test-per-file: Elapsed time: 28.214s, Critical Path: 13.97s - Linux, `cc_test`-per-file: Elapsed time: 11.534s, Critical Path: 6.05s - Linux, merged `cc_test` with 50 shards: Elapsed time: 11.677s, Critical Path: 11.17s - Mac, `lit` test-per-file: Elapsed time: 295.686s, Critical Path: 20.00s - Mac, `cc_test`-per-file: Elapsed time: 55.788s, Critical Path: 3.81s - Mac, merged `cc_test` with 50 shards: Elapsed time: 16.269s, Critical Path: 7.54s In GH actions: - [Before](https://github.com/carbon-language/carbon-lang/actions/runs/4866602695/jobs/8678306144?pr=2799): - test / test (ubuntu-22.04, fastbuild) (pull_request_target) Successful in 20m - test / test (ubuntu-22.04, opt) (pull_request_target) Successful in 15m - test / test (macos-12, fastbuild) (pull_request_target) Successful in 36m - test / test (macos-12, opt) (pull_request_target) Successful in 21m - [After](https://github.com/carbon-language/carbon-lang/actions/runs/4875154751/jobs/8697004066?pr=2811): - test / test (ubuntu-22.04, fastbuild) (pull_request_target) Successful in 10m - test / test (ubuntu-22.04, opt) (pull_request_target) Successful in 9m - test / test (macos-12, fastbuild) (pull_request_target) Successful in 12m - test / test (macos-12, opt) (pull_request_target) Successful in 9m I'm still leaving a handful of `lit` tests to test end-to-end binary execution. This is why testdata directories are split (`lit` tests next to the `explorer` binary, the `cc_test`s next to `ParseAndExecute`).
34 lines
894 B
Plaintext
34 lines
894 B
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:STDOUT: result: 1133
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package ExplorerTest api;
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interface I(T:! type) {
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fn F[self: Self](t: T, o: Self) -> Self;
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}
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class X(U:! type) {
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impl as I(U) {
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fn F[self: Self](u: U, o: Self) -> Self { return {.m = u, .n = self.n + o.n}; }
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}
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var m: U;
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var n: i32;
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}
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fn Run[V:! type](x: V) -> (V, V, i32, i32) {
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var v: X(V) = {.m = x, .n = 1};
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var w: X(V) = {.m = x, .n = 2};
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// OK, know that `X(V)` implements `I(V)` from the `impl` in the class.
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var call: X(V) = v.(X(V).(I(V).F))(x, w);
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return (call.(X(V).m), call.m, call.(X(V).n), call.n);
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}
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fn Main() -> i32 {
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var (a: i32, b: i32, c: i32, d: i32) = Run(1);
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return a * 1000 + b * 100 + c * 10 + d;
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}
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