v8/test/mjsunit/compiler/call-with-arraylike-or-spread-3.js
Shu-yu Guo 4fb132b855 Add no bytecode flush flags to call-with-arraylike-or-spread tests
These tests depend on predictable optimize/deoptimize movements.
--no-stress-flush-bytecode and --no-flush-bytecode ensure the feedback
vector is not flushed, causing unexpected deoptimizations.

Bug: v8:12328, v8:12311
Change-Id: I2eb7575e8c943a92c907831d4d66d2b0c9716869
Reviewed-on: https://chromium-review.googlesource.com/c/v8/v8/+/3232825
Reviewed-by: Leszek Swirski <leszeks@chromium.org>
Commit-Queue: Shu-yu Guo <syg@chromium.org>
Cr-Commit-Position: refs/heads/main@{#77478}
2021-10-20 15:34:51 +00:00

57 lines
1.9 KiB
JavaScript

// Copyright 2021 the V8 project authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
// Flags: --allow-natives-syntax --turbo-optimize-apply --opt
// These tests do not work well if this script is run more than once (e.g.
// --stress-opt); after a few runs the whole function is immediately compiled
// and assertions would fail. We prevent re-runs.
// Flags: --nostress-opt --no-always-opt
// These tests do not work well if we flush the feedback vector, which causes
// deoptimization.
// Flags: --no-stress-flush-bytecode --no-flush-bytecode
// The test relies on optimizing/deoptimizing at predictable moments, so
// it's not suitable for deoptimization fuzzing.
// Flags: --deopt-every-n-times=0
// Tests for optimization of CallWithSpread and CallWithArrayLike.
// This test is in a separate file because it invalidates protectors.
// Test with array prototype modified after compilation.
(function () {
"use strict";
var sum_js_got_interpreted = true;
function sum_js(a, b, c, d) {
sum_js_got_interpreted = %IsBeingInterpreted();
return a + b + c + d;
}
function foo(x, y) {
return sum_js.apply(null, ["", x, ,y]);
}
%PrepareFunctionForOptimization(sum_js);
%PrepareFunctionForOptimization(foo);
assertEquals('AundefinedB', foo('A', 'B'));
assertTrue(sum_js_got_interpreted);
%OptimizeFunctionForTopTier(foo);
assertEquals('AundefinedB', foo('A', 'B'));
assertFalse(sum_js_got_interpreted);
assertOptimized(foo);
// Modify the array prototype, define a default value for element [1].
Array.prototype[2] = 'x';
assertUnoptimized(foo);
// Now the call will not be inlined.
%PrepareFunctionForOptimization(foo);
%OptimizeFunctionForTopTier(foo);
assertEquals('AxB', foo('A', 'B'));
assertTrue(sum_js_got_interpreted);
assertOptimized(foo);
})();