mirror of
https://github.com/tc39/test262.git
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Add equivalent tests for non-strict fn bodies
These tests are based on the files introduced in the commit titled, "Add tests for Lexical Environment management."
This commit is contained in:
parent
3b3bd06819
commit
9c3ff83c00
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// Copyright (C) 2016 the V8 project authors. All rights reserved.
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// This code is governed by the BSD license found in the LICENSE file.
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/*---
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esid: sec-functiondeclarationinstantiation
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description: >
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Creation of new lexical environment (distinct from the variable
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environment) for the function body outside of strict mode
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info: |
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[...]
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29. If strict is false, then
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a. Let lexEnv be NewDeclarativeEnvironment(varEnv).
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b. NOTE: Non-strict functions use a separate lexical Environment Record
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for top-level lexical declarations so that a direct eval can
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determine whether any var scoped declarations introduced by the eval
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code conflict with pre-existing top-level lexically scoped
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declarations. This is not needed for strict functions because a
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strict direct eval always places all declarations into a new
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Environment Record.
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[...]
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18.2.1.3 Runtime Semantics: EvalDeclarationInstantiation
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[...]
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5. If strict is false, then
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[...]
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b. Let thisLex be lexEnv.
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c. Assert: The following loop will terminate.
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d. Repeat while thisLex is not the same as varEnv,
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i. Let thisEnvRec be thisLex's EnvironmentRecord.
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ii. If thisEnvRec is not an object Environment Record, then
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1. NOTE: The environment of with statements cannot contain any
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lexical declaration so it doesn't need to be checked for
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var/let hoisting conflicts.
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2. For each name in varNames, do
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a. If thisEnvRec.HasBinding(name) is true, then
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i. Throw a SyntaxError exception.
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ii. NOTE: Annex B.3.5 defines alternate semantics for the
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above step.
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b. NOTE: A direct eval will not hoist var declaration over a
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like-named lexical declaration.
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iii. Let thisLex be thisLex's outer environment reference.
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flags: [noStrict]
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features: [let]
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---*/
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var a = () => { let x; eval('var x;'); };
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assert.throws(SyntaxError, a);
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// Copyright (C) 2016 the V8 project authors. All rights reserved.
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// This code is governed by the BSD license found in the LICENSE file.
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/*---
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esid: sec-functiondeclarationinstantiation
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description: >
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Creation of new lexical environment (distinct from the variable
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environment) for the function body outside of strict mode
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info: |
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[...]
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29. If strict is false, then
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a. Let lexEnv be NewDeclarativeEnvironment(varEnv).
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b. NOTE: Non-strict functions use a separate lexical Environment Record
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for top-level lexical declarations so that a direct eval can
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determine whether any var scoped declarations introduced by the eval
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code conflict with pre-existing top-level lexically scoped
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declarations. This is not needed for strict functions because a
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strict direct eval always places all declarations into a new
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Environment Record.
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[...]
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18.2.1.3 Runtime Semantics: EvalDeclarationInstantiation
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[...]
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5. If strict is false, then
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[...]
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b. Let thisLex be lexEnv.
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c. Assert: The following loop will terminate.
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d. Repeat while thisLex is not the same as varEnv,
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i. Let thisEnvRec be thisLex's EnvironmentRecord.
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ii. If thisEnvRec is not an object Environment Record, then
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1. NOTE: The environment of with statements cannot contain any
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lexical declaration so it doesn't need to be checked for
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var/let hoisting conflicts.
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2. For each name in varNames, do
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a. If thisEnvRec.HasBinding(name) is true, then
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i. Throw a SyntaxError exception.
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ii. NOTE: Annex B.3.5 defines alternate semantics for the
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above step.
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b. NOTE: A direct eval will not hoist var declaration over a
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like-named lexical declaration.
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iii. Let thisLex be thisLex's outer environment reference.
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flags: [noStrict]
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features: [let]
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---*/
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var g = function*() {
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let x;
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eval('var x;');
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};
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var iter = g();
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assert.throws(SyntaxError, function() {
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iter.next();
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});
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// Copyright (C) 2016 the V8 project authors. All rights reserved.
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// This code is governed by the BSD license found in the LICENSE file.
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/*---
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esid: sec-functiondeclarationinstantiation
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description: >
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Creation of new lexical environment (distinct from the variable
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environment) for the function body outside of strict mode
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info: |
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[...]
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29. If strict is false, then
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a. Let lexEnv be NewDeclarativeEnvironment(varEnv).
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b. NOTE: Non-strict functions use a separate lexical Environment Record
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for top-level lexical declarations so that a direct eval can
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determine whether any var scoped declarations introduced by the eval
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code conflict with pre-existing top-level lexically scoped
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declarations. This is not needed for strict functions because a
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strict direct eval always places all declarations into a new
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Environment Record.
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[...]
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18.2.1.3 Runtime Semantics: EvalDeclarationInstantiation
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[...]
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5. If strict is false, then
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[...]
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b. Let thisLex be lexEnv.
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c. Assert: The following loop will terminate.
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d. Repeat while thisLex is not the same as varEnv,
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i. Let thisEnvRec be thisLex's EnvironmentRecord.
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ii. If thisEnvRec is not an object Environment Record, then
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1. NOTE: The environment of with statements cannot contain any
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lexical declaration so it doesn't need to be checked for
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var/let hoisting conflicts.
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2. For each name in varNames, do
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a. If thisEnvRec.HasBinding(name) is true, then
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i. Throw a SyntaxError exception.
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ii. NOTE: Annex B.3.5 defines alternate semantics for the
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above step.
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b. NOTE: A direct eval will not hoist var declaration over a
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like-named lexical declaration.
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iii. Let thisLex be thisLex's outer environment reference.
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flags: [noStrict]
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features: [let]
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---*/
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var o = {
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*m() {
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let x;
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eval('var x;');
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}
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};
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var iter = o.m();
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assert.throws(SyntaxError, function() {
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iter.next();
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});
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// Copyright (C) 2016 the V8 project authors. All rights reserved.
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// This code is governed by the BSD license found in the LICENSE file.
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/*---
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esid: sec-functiondeclarationinstantiation
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description: >
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Creation of new lexical environment (distinct from the variable
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environment) for the function body outside of strict mode
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info: |
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[...]
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29. If strict is false, then
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a. Let lexEnv be NewDeclarativeEnvironment(varEnv).
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b. NOTE: Non-strict functions use a separate lexical Environment Record
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for top-level lexical declarations so that a direct eval can
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determine whether any var scoped declarations introduced by the eval
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code conflict with pre-existing top-level lexically scoped
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declarations. This is not needed for strict functions because a
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strict direct eval always places all declarations into a new
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Environment Record.
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[...]
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18.2.1.3 Runtime Semantics: EvalDeclarationInstantiation
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[...]
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5. If strict is false, then
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[...]
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b. Let thisLex be lexEnv.
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c. Assert: The following loop will terminate.
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d. Repeat while thisLex is not the same as varEnv,
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i. Let thisEnvRec be thisLex's EnvironmentRecord.
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ii. If thisEnvRec is not an object Environment Record, then
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1. NOTE: The environment of with statements cannot contain any
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lexical declaration so it doesn't need to be checked for
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var/let hoisting conflicts.
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2. For each name in varNames, do
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a. If thisEnvRec.HasBinding(name) is true, then
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i. Throw a SyntaxError exception.
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ii. NOTE: Annex B.3.5 defines alternate semantics for the
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above step.
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b. NOTE: A direct eval will not hoist var declaration over a
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like-named lexical declaration.
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iii. Let thisLex be thisLex's outer environment reference.
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flags: [noStrict]
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features: [let]
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---*/
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var o = {
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get a() {
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let x;
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eval('var x;');
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}
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};
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assert.throws(SyntaxError, function() {
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o.a;
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});
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@ -0,0 +1,53 @@
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// Copyright (C) 2016 the V8 project authors. All rights reserved.
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// This code is governed by the BSD license found in the LICENSE file.
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/*---
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esid: sec-functiondeclarationinstantiation
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description: >
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Creation of new lexical environment (distinct from the variable
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environment) for the function body outside of strict mode
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info: |
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[...]
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29. If strict is false, then
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a. Let lexEnv be NewDeclarativeEnvironment(varEnv).
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b. NOTE: Non-strict functions use a separate lexical Environment Record
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for top-level lexical declarations so that a direct eval can
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determine whether any var scoped declarations introduced by the eval
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code conflict with pre-existing top-level lexically scoped
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declarations. This is not needed for strict functions because a
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strict direct eval always places all declarations into a new
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Environment Record.
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[...]
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18.2.1.3 Runtime Semantics: EvalDeclarationInstantiation
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[...]
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5. If strict is false, then
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[...]
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b. Let thisLex be lexEnv.
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c. Assert: The following loop will terminate.
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d. Repeat while thisLex is not the same as varEnv,
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i. Let thisEnvRec be thisLex's EnvironmentRecord.
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ii. If thisEnvRec is not an object Environment Record, then
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1. NOTE: The environment of with statements cannot contain any
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lexical declaration so it doesn't need to be checked for
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var/let hoisting conflicts.
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2. For each name in varNames, do
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a. If thisEnvRec.HasBinding(name) is true, then
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i. Throw a SyntaxError exception.
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ii. NOTE: Annex B.3.5 defines alternate semantics for the
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above step.
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b. NOTE: A direct eval will not hoist var declaration over a
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like-named lexical declaration.
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iii. Let thisLex be thisLex's outer environment reference.
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flags: [noStrict]
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features: [let]
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---*/
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var m = {
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m() {
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let x;
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eval('var x;');
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}
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}.m;
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assert.throws(SyntaxError, m);
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// Copyright (C) 2016 the V8 project authors. All rights reserved.
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// This code is governed by the BSD license found in the LICENSE file.
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/*---
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esid: sec-functiondeclarationinstantiation
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description: >
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Creation of new lexical environment (distinct from the variable
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environment) for the function body outside of strict mode
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info: |
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[...]
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29. If strict is false, then
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a. Let lexEnv be NewDeclarativeEnvironment(varEnv).
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b. NOTE: Non-strict functions use a separate lexical Environment Record
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for top-level lexical declarations so that a direct eval can
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|
determine whether any var scoped declarations introduced by the eval
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|
code conflict with pre-existing top-level lexically scoped
|
||||||
|
declarations. This is not needed for strict functions because a
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|
strict direct eval always places all declarations into a new
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Environment Record.
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[...]
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18.2.1.3 Runtime Semantics: EvalDeclarationInstantiation
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|
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[...]
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5. If strict is false, then
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[...]
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b. Let thisLex be lexEnv.
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c. Assert: The following loop will terminate.
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d. Repeat while thisLex is not the same as varEnv,
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i. Let thisEnvRec be thisLex's EnvironmentRecord.
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ii. If thisEnvRec is not an object Environment Record, then
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1. NOTE: The environment of with statements cannot contain any
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lexical declaration so it doesn't need to be checked for
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var/let hoisting conflicts.
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2. For each name in varNames, do
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a. If thisEnvRec.HasBinding(name) is true, then
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i. Throw a SyntaxError exception.
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ii. NOTE: Annex B.3.5 defines alternate semantics for the
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|
above step.
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|
b. NOTE: A direct eval will not hoist var declaration over a
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|
like-named lexical declaration.
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iii. Let thisLex be thisLex's outer environment reference.
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flags: [noStrict]
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features: [let]
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---*/
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var o = {
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set a(_) {
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let x;
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eval('var x;');
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}
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};
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assert.throws(SyntaxError, function() {
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o.a = null;
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});
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53
test/language/statements/function/scope-body-lex-distinct.js
Normal file
53
test/language/statements/function/scope-body-lex-distinct.js
Normal file
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// Copyright (C) 2016 the V8 project authors. All rights reserved.
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// This code is governed by the BSD license found in the LICENSE file.
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|
/*---
|
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|
esid: sec-functiondeclarationinstantiation
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|
description: >
|
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|
Creation of new lexical environment (distinct from the variable
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environment) for the function body outside of strict mode
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|
info: |
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|
[...]
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|
29. If strict is false, then
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|
a. Let lexEnv be NewDeclarativeEnvironment(varEnv).
|
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|
b. NOTE: Non-strict functions use a separate lexical Environment Record
|
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|
for top-level lexical declarations so that a direct eval can
|
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|
determine whether any var scoped declarations introduced by the eval
|
||||||
|
code conflict with pre-existing top-level lexically scoped
|
||||||
|
declarations. This is not needed for strict functions because a
|
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|
strict direct eval always places all declarations into a new
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|
Environment Record.
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|
[...]
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|
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|
18.2.1.3 Runtime Semantics: EvalDeclarationInstantiation
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|
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[...]
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5. If strict is false, then
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[...]
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b. Let thisLex be lexEnv.
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c. Assert: The following loop will terminate.
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d. Repeat while thisLex is not the same as varEnv,
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i. Let thisEnvRec be thisLex's EnvironmentRecord.
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ii. If thisEnvRec is not an object Environment Record, then
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1. NOTE: The environment of with statements cannot contain any
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lexical declaration so it doesn't need to be checked for
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|
var/let hoisting conflicts.
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|
2. For each name in varNames, do
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|
a. If thisEnvRec.HasBinding(name) is true, then
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|
i. Throw a SyntaxError exception.
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|
ii. NOTE: Annex B.3.5 defines alternate semantics for the
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|
above step.
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|
b. NOTE: A direct eval will not hoist var declaration over a
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|
like-named lexical declaration.
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|
iii. Let thisLex be thisLex's outer environment reference.
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|
flags: [noStrict]
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|
features: [let]
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|
---*/
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function f() {
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let x;
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eval('var x;');
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}
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assert.throws(SyntaxError, function() {
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f();
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});
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@ -0,0 +1,54 @@
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|
// Copyright (C) 2016 the V8 project authors. All rights reserved.
|
||||||
|
// This code is governed by the BSD license found in the LICENSE file.
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/*---
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||||||
|
esid: sec-functiondeclarationinstantiation
|
||||||
|
description: >
|
||||||
|
Creation of new lexical environment (distinct from the variable
|
||||||
|
environment) for the function body outside of strict mode
|
||||||
|
info: |
|
||||||
|
[...]
|
||||||
|
29. If strict is false, then
|
||||||
|
a. Let lexEnv be NewDeclarativeEnvironment(varEnv).
|
||||||
|
b. NOTE: Non-strict functions use a separate lexical Environment Record
|
||||||
|
for top-level lexical declarations so that a direct eval can
|
||||||
|
determine whether any var scoped declarations introduced by the eval
|
||||||
|
code conflict with pre-existing top-level lexically scoped
|
||||||
|
declarations. This is not needed for strict functions because a
|
||||||
|
strict direct eval always places all declarations into a new
|
||||||
|
Environment Record.
|
||||||
|
[...]
|
||||||
|
|
||||||
|
18.2.1.3 Runtime Semantics: EvalDeclarationInstantiation
|
||||||
|
|
||||||
|
[...]
|
||||||
|
5. If strict is false, then
|
||||||
|
[...]
|
||||||
|
b. Let thisLex be lexEnv.
|
||||||
|
c. Assert: The following loop will terminate.
|
||||||
|
d. Repeat while thisLex is not the same as varEnv,
|
||||||
|
i. Let thisEnvRec be thisLex's EnvironmentRecord.
|
||||||
|
ii. If thisEnvRec is not an object Environment Record, then
|
||||||
|
1. NOTE: The environment of with statements cannot contain any
|
||||||
|
lexical declaration so it doesn't need to be checked for
|
||||||
|
var/let hoisting conflicts.
|
||||||
|
2. For each name in varNames, do
|
||||||
|
a. If thisEnvRec.HasBinding(name) is true, then
|
||||||
|
i. Throw a SyntaxError exception.
|
||||||
|
ii. NOTE: Annex B.3.5 defines alternate semantics for the
|
||||||
|
above step.
|
||||||
|
b. NOTE: A direct eval will not hoist var declaration over a
|
||||||
|
like-named lexical declaration.
|
||||||
|
iii. Let thisLex be thisLex's outer environment reference.
|
||||||
|
flags: [noStrict]
|
||||||
|
features: [let]
|
||||||
|
---*/
|
||||||
|
|
||||||
|
function* g() {
|
||||||
|
let x;
|
||||||
|
eval('var x;');
|
||||||
|
}
|
||||||
|
var iter = g();
|
||||||
|
|
||||||
|
assert.throws(SyntaxError, function() {
|
||||||
|
iter.next();
|
||||||
|
});
|
Loading…
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Reference in New Issue
Block a user