v8/test/mjsunit/es6/block-scoping.js
jarin 5c53481233 Revert of [turbofan] Initial support for monomorphic/polymorphic property loads. (patchset #3 id:100001 of https://codereview.chromium.org/1396333010/ )
Reason for revert:
Waterfall redness.

Original issue's description:
> [turbofan] Initial support for monomorphic/polymorphic property loads.
>
> Native context specialization now lowers monomorphic and
> polymorphic accesses to data and constant data properties on
> object and/or prototype chain. We don't deal with accessors
> yet, and we also completely ignore proxies (which is compatible
> with what Crankshaft does).
>
> The code is more or less the straightforward implementation. We
> will need to refactor that and extract common patterns once the
> remaining bits for full load/store support is in.
>
> CQ_INCLUDE_TRYBOTS=tryserver.v8:v8_linux_nosnap_rel
> R=jarin@chromium.org
> BUG=v8:4470
> LOG=n
>
> Committed: https://crrev.com/3a0bf860b7177f7abef01ff308a53603389d958e
> Cr-Commit-Position: refs/heads/master@{#31340}

TBR=bmeurer@chromium.org
NOPRESUBMIT=true
NOTREECHECKS=true
NOTRY=true
BUG=v8:4470

Review URL: https://codereview.chromium.org/1408123002

Cr-Commit-Position: refs/heads/master@{#31341}
2015-10-16 14:56:25 +00:00

313 lines
7.8 KiB
JavaScript

// Copyright 2011 the V8 project authors. All rights reserved.
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are
// met:
//
// * Redistributions of source code must retain the above copyright
// notice, this list of conditions and the following disclaimer.
// * Redistributions in binary form must reproduce the above
// copyright notice, this list of conditions and the following
// disclaimer in the documentation and/or other materials provided
// with the distribution.
// * Neither the name of Google Inc. nor the names of its
// contributors may be used to endorse or promote products derived
// from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
// Flags: --allow-natives-syntax
// Test functionality of block scopes.
"use strict";
// Hoisting of var declarations.
function f1() {
{
var x = 1;
var y;
}
assertEquals(1, x)
assertEquals(undefined, y)
}
for (var j = 0; j < 5; ++j) f1();
%OptimizeFunctionOnNextCall(f1);
f1();
assertTrue(%GetOptimizationStatus(f1) != 2);
// Dynamic lookup in and through block contexts.
function f2(one) {
var x = one + 1;
let y = one + 2;
const u = one + 4;
class a { static foo() { return one + 6; } }
{
let z = one + 3;
const v = one + 5;
class b { static foo() { return one + 7; } }
assertEquals(1, eval('one'));
assertEquals(2, eval('x'));
assertEquals(3, eval('y'));
assertEquals(4, eval('z'));
assertEquals(5, eval('u'));
assertEquals(6, eval('v'));
assertEquals(7, eval('a.foo()'));
assertEquals(8, eval('b.foo()'));
}
}
f2(1);
// Lookup in and through block contexts.
function f3(one) {
var x = one + 1;
let y = one + 2;
const u = one + 4;
class a { static foo() { return one + 6; } }
{
let z = one + 3;
const v = one + 5;
class b { static foo() { return one + 7; } }
assertEquals(1, one);
assertEquals(2, x);
assertEquals(3, y);
assertEquals(4, z);
assertEquals(5, u);
assertEquals(6, v);
assertEquals(7, a.foo());
assertEquals(8, b.foo());
}
}
for (var j = 0; j < 5; ++j) f3(1);
%OptimizeFunctionOnNextCall(f3);
f3(1);
assertTrue(%GetOptimizationStatus(f3) != 2);
// Dynamic lookup from closure.
function f4(one) {
var x = one + 1;
let y = one + 2;
const u = one + 4;
class a { static foo() { return one + 6; } }
{
let z = one + 3;
const v = one + 5;
class b { static foo() { return one + 7; } }
function f() {
assertEquals(1, eval('one'));
assertEquals(2, eval('x'));
assertEquals(3, eval('y'));
assertEquals(4, eval('z'));
assertEquals(5, eval('u'));
assertEquals(6, eval('v'));
assertEquals(7, eval('a.foo()'));
assertEquals(8, eval('b.foo()'));
}
f();
}
}
f4(1);
// Lookup from closure.
function f5(one) {
var x = one + 1;
let y = one + 2;
const u = one + 4;
class a { static foo() { return one + 6; } }
{
let z = one + 3;
const v = one + 5;
class b { static foo() { return one + 7; } }
function f() {
assertEquals(1, one);
assertEquals(2, x);
assertEquals(3, y);
assertEquals(4, z);
assertEquals(5, u);
assertEquals(6, v);
assertEquals(7, a.foo());
assertEquals(8, b.foo());
}
f();
}
}
f5(1);
// Return from block.
function f6() {
let x = 1;
const u = 3;
{
let y = 2;
const v = 4;
return x + y;
}
}
assertEquals(3, f6(6));
// Variable shadowing and lookup.
function f7(a) {
let b = 1;
var c = 1;
var d = 1;
const e = 1;
class f { static foo() { return 1; } }
{ // let variables shadowing argument, let, const, class and var variables
let a = 2;
let b = 2;
let c = 2;
let e = 2;
let f = 2;
assertEquals(2,a);
assertEquals(2,b);
assertEquals(2,c);
assertEquals(2,e);
assertEquals(2,f);
}
{ // const variables shadowing argument, let, const and var variables
const a = 2;
const b = 2;
const c = 2;
const e = 2;
const f = 2;
assertEquals(2,a);
assertEquals(2,b);
assertEquals(2,c);
assertEquals(2,e);
assertEquals(2,f);
}
{ // class variables shadowing argument, let, const and var variables
class a { static foo() { return 2; } }
class b { static foo() { return 2; } }
class c { static foo() { return 2; } }
class d { static foo() { return 2; } }
class e { static foo() { return 2; } }
class f { static foo() { return 2; } }
assertEquals(2,a.foo());
assertEquals(2,b.foo());
assertEquals(2,c.foo());
assertEquals(2,e.foo());
assertEquals(2,f.foo());
}
try {
throw 'stuff1';
} catch (a) {
assertEquals('stuff1',a);
// catch variable shadowing argument
a = 2;
assertEquals(2,a);
{
// let variable shadowing catch variable
let a = 3;
assertEquals(3,a);
try {
throw 'stuff2';
} catch (a) {
assertEquals('stuff2',a);
// catch variable shadowing let variable
a = 4;
assertEquals(4,a);
}
assertEquals(3,a);
}
assertEquals(2,a);
}
try {
throw 'stuff3';
} catch (c) {
// catch variable shadowing var variable
assertEquals('stuff3',c);
{
// const variable shadowing catch variable
const c = 3;
assertEquals(3,c);
}
assertEquals('stuff3',c);
try {
throw 'stuff4';
} catch(c) {
assertEquals('stuff4',c);
// catch variable shadowing catch variable
c = 3;
assertEquals(3,c);
}
(function(c) {
// argument shadowing catch variable
c = 3;
assertEquals(3,c);
})();
assertEquals('stuff3', c);
(function() {
// var variable shadowing catch variable
var c = 3;
})();
assertEquals('stuff3', c);
c = 2;
}
assertEquals(1,c);
(function(a,b,c,e,f) {
// arguments shadowing argument, let, const, class and var variable
a = 2;
b = 2;
c = 2;
e = 2;
f = 2;
assertEquals(2,a);
assertEquals(2,b);
assertEquals(2,c);
assertEquals(2,e);
assertEquals(2,f);
// var variable shadowing var variable
var d = 2;
})(1,1);
assertEquals(1,a);
assertEquals(1,b);
assertEquals(1,c);
assertEquals(1,d);
assertEquals(1,e);
assertEquals(1,f.foo());
}
f7(1);
// Ensure let and const variables are block local
// and var variables function local.
function f8() {
var let_accessors = [];
var var_accessors = [];
var const_accessors = [];
var class_accessors = [];
for (var i = 0; i < 10; i++) {
let x = i;
var y = i;
const z = i;
class a { static foo() { return x; } }
let_accessors[i] = function() { return x; }
var_accessors[i] = function() { return y; }
const_accessors[i] = function() { return z; }
class_accessors[i] = function() { return a; }
}
for (var j = 0; j < 10; j++) {
y = j + 10;
assertEquals(j, let_accessors[j]());
assertEquals(y, var_accessors[j]());
assertEquals(j, const_accessors[j]());
assertEquals(j, class_accessors[j]().foo());
}
}
f8();