v8/test/mjsunit/es6/block-scoping.js
bmeurer e1088b27b5 [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}

Review URL: https://codereview.chromium.org/1396333010

Cr-Commit-Position: refs/heads/master@{#31352}
2015-10-19 05:24:51 +00:00

312 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);
// 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();