8e266c2244
Revert 17966, 17965 also as collateral damage: Embed trigonometric lookup table. Due to Heapcheck and valgrind failures that are not yet fixed. TBR=svenpanne@chromium.org Review URL: https://codereview.chromium.org/80513004 git-svn-id: http://v8.googlecode.com/svn/branches/bleeding_edge@17981 ce2b1a6d-e550-0410-aec6-3dcde31c8c00
531 lines
22 KiB
C++
531 lines
22 KiB
C++
// Copyright 2012 the V8 project authors. All rights reserved.
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are
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// met:
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//
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// * Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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// * Redistributions in binary form must reproduce the above
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// copyright notice, this list of conditions and the following
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// disclaimer in the documentation and/or other materials provided
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// with the distribution.
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// * Neither the name of Google Inc. nor the names of its
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// contributors may be used to endorse or promote products derived
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// from this software without specific prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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#ifndef V8_CONTEXTS_H_
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#define V8_CONTEXTS_H_
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#include "heap.h"
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#include "objects.h"
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namespace v8 {
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namespace internal {
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enum ContextLookupFlags {
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FOLLOW_CONTEXT_CHAIN = 1,
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FOLLOW_PROTOTYPE_CHAIN = 2,
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DONT_FOLLOW_CHAINS = 0,
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FOLLOW_CHAINS = FOLLOW_CONTEXT_CHAIN | FOLLOW_PROTOTYPE_CHAIN
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};
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// ES5 10.2 defines lexical environments with mutable and immutable bindings.
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// Immutable bindings have two states, initialized and uninitialized, and
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// their state is changed by the InitializeImmutableBinding method. The
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// BindingFlags enum represents information if a binding has definitely been
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// initialized. A mutable binding does not need to be checked and thus has
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// the BindingFlag MUTABLE_IS_INITIALIZED.
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//
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// There are two possibilities for immutable bindings
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// * 'const' declared variables. They are initialized when evaluating the
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// corresponding declaration statement. They need to be checked for being
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// initialized and thus get the flag IMMUTABLE_CHECK_INITIALIZED.
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// * The function name of a named function literal. The binding is immediately
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// initialized when entering the function and thus does not need to be
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// checked. it gets the BindingFlag IMMUTABLE_IS_INITIALIZED.
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// Accessing an uninitialized binding produces the undefined value.
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//
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// The harmony proposal for block scoped bindings also introduces the
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// uninitialized state for mutable bindings.
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// * A 'let' declared variable. They are initialized when evaluating the
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// corresponding declaration statement. They need to be checked for being
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// initialized and thus get the flag MUTABLE_CHECK_INITIALIZED.
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// * A 'var' declared variable. It is initialized immediately upon creation
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// and thus doesn't need to be checked. It gets the flag
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// MUTABLE_IS_INITIALIZED.
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// * Catch bound variables, function parameters and variables introduced by
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// function declarations are initialized immediately and do not need to be
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// checked. Thus they get the flag MUTABLE_IS_INITIALIZED.
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// Immutable bindings in harmony mode get the _HARMONY flag variants. Accessing
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// an uninitialized binding produces a reference error.
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//
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// In V8 uninitialized bindings are set to the hole value upon creation and set
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// to a different value upon initialization.
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enum BindingFlags {
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MUTABLE_IS_INITIALIZED,
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MUTABLE_CHECK_INITIALIZED,
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IMMUTABLE_IS_INITIALIZED,
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IMMUTABLE_CHECK_INITIALIZED,
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IMMUTABLE_IS_INITIALIZED_HARMONY,
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IMMUTABLE_CHECK_INITIALIZED_HARMONY,
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MISSING_BINDING
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};
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// Heap-allocated activation contexts.
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//
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// Contexts are implemented as FixedArray objects; the Context
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// class is a convenience interface casted on a FixedArray object.
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//
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// Note: Context must have no virtual functions and Context objects
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// must always be allocated via Heap::AllocateContext() or
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// Factory::NewContext.
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#define NATIVE_CONTEXT_FIELDS(V) \
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V(GLOBAL_PROXY_INDEX, JSObject, global_proxy_object) \
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V(SECURITY_TOKEN_INDEX, Object, security_token) \
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V(BOOLEAN_FUNCTION_INDEX, JSFunction, boolean_function) \
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V(NUMBER_FUNCTION_INDEX, JSFunction, number_function) \
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V(STRING_FUNCTION_INDEX, JSFunction, string_function) \
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V(STRING_FUNCTION_PROTOTYPE_MAP_INDEX, Map, string_function_prototype_map) \
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V(SYMBOL_FUNCTION_INDEX, JSFunction, symbol_function) \
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V(OBJECT_FUNCTION_INDEX, JSFunction, object_function) \
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V(INTERNAL_ARRAY_FUNCTION_INDEX, JSFunction, internal_array_function) \
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V(ARRAY_FUNCTION_INDEX, JSFunction, array_function) \
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V(JS_ARRAY_MAPS_INDEX, Object, js_array_maps) \
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V(DATE_FUNCTION_INDEX, JSFunction, date_function) \
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V(JSON_OBJECT_INDEX, JSObject, json_object) \
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V(REGEXP_FUNCTION_INDEX, JSFunction, regexp_function) \
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V(INITIAL_OBJECT_PROTOTYPE_INDEX, JSObject, initial_object_prototype) \
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V(INITIAL_ARRAY_PROTOTYPE_INDEX, JSObject, initial_array_prototype) \
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V(CREATE_DATE_FUN_INDEX, JSFunction, create_date_fun) \
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V(TO_NUMBER_FUN_INDEX, JSFunction, to_number_fun) \
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V(TO_STRING_FUN_INDEX, JSFunction, to_string_fun) \
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V(TO_DETAIL_STRING_FUN_INDEX, JSFunction, to_detail_string_fun) \
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V(TO_OBJECT_FUN_INDEX, JSFunction, to_object_fun) \
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V(TO_INTEGER_FUN_INDEX, JSFunction, to_integer_fun) \
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V(TO_UINT32_FUN_INDEX, JSFunction, to_uint32_fun) \
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V(TO_INT32_FUN_INDEX, JSFunction, to_int32_fun) \
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V(GLOBAL_EVAL_FUN_INDEX, JSFunction, global_eval_fun) \
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V(INSTANTIATE_FUN_INDEX, JSFunction, instantiate_fun) \
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V(CONFIGURE_INSTANCE_FUN_INDEX, JSFunction, configure_instance_fun) \
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V(ARRAY_BUFFER_FUN_INDEX, JSFunction, array_buffer_fun) \
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V(UINT8_ARRAY_FUN_INDEX, JSFunction, uint8_array_fun) \
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V(INT8_ARRAY_FUN_INDEX, JSFunction, int8_array_fun) \
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V(UINT16_ARRAY_FUN_INDEX, JSFunction, uint16_array_fun) \
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V(INT16_ARRAY_FUN_INDEX, JSFunction, int16_array_fun) \
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V(UINT32_ARRAY_FUN_INDEX, JSFunction, uint32_array_fun) \
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V(INT32_ARRAY_FUN_INDEX, JSFunction, int32_array_fun) \
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V(FLOAT_ARRAY_FUN_INDEX, JSFunction, float_array_fun) \
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V(DOUBLE_ARRAY_FUN_INDEX, JSFunction, double_array_fun) \
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V(UINT8C_ARRAY_FUN_INDEX, JSFunction, uint8c_array_fun) \
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V(DATA_VIEW_FUN_INDEX, JSFunction, data_view_fun) \
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V(FUNCTION_MAP_INDEX, Map, function_map) \
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V(STRICT_MODE_FUNCTION_MAP_INDEX, Map, strict_mode_function_map) \
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V(FUNCTION_WITHOUT_PROTOTYPE_MAP_INDEX, Map, function_without_prototype_map) \
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V(STRICT_MODE_FUNCTION_WITHOUT_PROTOTYPE_MAP_INDEX, Map, \
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strict_mode_function_without_prototype_map) \
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V(REGEXP_RESULT_MAP_INDEX, Map, regexp_result_map)\
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V(ARGUMENTS_BOILERPLATE_INDEX, JSObject, arguments_boilerplate) \
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V(ALIASED_ARGUMENTS_BOILERPLATE_INDEX, JSObject, \
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aliased_arguments_boilerplate) \
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V(STRICT_MODE_ARGUMENTS_BOILERPLATE_INDEX, JSObject, \
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strict_mode_arguments_boilerplate) \
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V(MESSAGE_LISTENERS_INDEX, JSObject, message_listeners) \
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V(MAKE_MESSAGE_FUN_INDEX, JSFunction, make_message_fun) \
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V(GET_STACK_TRACE_LINE_INDEX, JSFunction, get_stack_trace_line_fun) \
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V(CONFIGURE_GLOBAL_INDEX, JSFunction, configure_global_fun) \
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V(FUNCTION_CACHE_INDEX, JSObject, function_cache) \
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V(JSFUNCTION_RESULT_CACHES_INDEX, FixedArray, jsfunction_result_caches) \
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V(NORMALIZED_MAP_CACHE_INDEX, NormalizedMapCache, normalized_map_cache) \
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V(RUNTIME_CONTEXT_INDEX, Context, runtime_context) \
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V(CALL_AS_FUNCTION_DELEGATE_INDEX, JSFunction, call_as_function_delegate) \
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V(CALL_AS_CONSTRUCTOR_DELEGATE_INDEX, JSFunction, \
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call_as_constructor_delegate) \
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V(SCRIPT_FUNCTION_INDEX, JSFunction, script_function) \
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V(OPAQUE_REFERENCE_FUNCTION_INDEX, JSFunction, opaque_reference_function) \
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V(CONTEXT_EXTENSION_FUNCTION_INDEX, JSFunction, context_extension_function) \
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V(OUT_OF_MEMORY_INDEX, Object, out_of_memory) \
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V(MAP_CACHE_INDEX, Object, map_cache) \
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V(EMBEDDER_DATA_INDEX, FixedArray, embedder_data) \
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V(ALLOW_CODE_GEN_FROM_STRINGS_INDEX, Object, allow_code_gen_from_strings) \
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V(ERROR_MESSAGE_FOR_CODE_GEN_FROM_STRINGS_INDEX, Object, \
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error_message_for_code_gen_from_strings) \
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V(TO_COMPLETE_PROPERTY_DESCRIPTOR_INDEX, JSFunction, \
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to_complete_property_descriptor) \
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V(DERIVED_HAS_TRAP_INDEX, JSFunction, derived_has_trap) \
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V(DERIVED_GET_TRAP_INDEX, JSFunction, derived_get_trap) \
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V(DERIVED_SET_TRAP_INDEX, JSFunction, derived_set_trap) \
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V(PROXY_ENUMERATE_INDEX, JSFunction, proxy_enumerate) \
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V(OBSERVERS_NOTIFY_CHANGE_INDEX, JSFunction, observers_notify_change) \
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V(OBSERVERS_ENQUEUE_SPLICE_INDEX, JSFunction, observers_enqueue_splice) \
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V(OBSERVERS_BEGIN_SPLICE_INDEX, JSFunction, \
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observers_begin_perform_splice) \
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V(OBSERVERS_END_SPLICE_INDEX, JSFunction, \
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observers_end_perform_splice) \
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V(OBSERVERS_DELIVER_CHANGES_INDEX, JSFunction, observers_deliver_changes) \
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V(GENERATOR_FUNCTION_MAP_INDEX, Map, generator_function_map) \
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V(STRICT_MODE_GENERATOR_FUNCTION_MAP_INDEX, Map, \
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strict_mode_generator_function_map) \
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V(GENERATOR_OBJECT_PROTOTYPE_MAP_INDEX, Map, \
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generator_object_prototype_map) \
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V(GENERATOR_RESULT_MAP_INDEX, Map, generator_result_map) \
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V(RANDOM_SEED_INDEX, ByteArray, random_seed)
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// JSFunctions are pairs (context, function code), sometimes also called
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// closures. A Context object is used to represent function contexts and
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// dynamically pushed 'with' contexts (or 'scopes' in ECMA-262 speak).
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//
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// At runtime, the contexts build a stack in parallel to the execution
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// stack, with the top-most context being the current context. All contexts
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// have the following slots:
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//
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// [ closure ] This is the current function. It is the same for all
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// contexts inside a function. It provides access to the
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// incoming context (i.e., the outer context, which may
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// or may not become the current function's context), and
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// it provides access to the functions code and thus it's
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// scope information, which in turn contains the names of
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// statically allocated context slots. The names are needed
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// for dynamic lookups in the presence of 'with' or 'eval'.
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//
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// [ previous ] A pointer to the previous context. It is NULL for
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// function contexts, and non-NULL for 'with' contexts.
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// Used to implement the 'with' statement.
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//
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// [ extension ] A pointer to an extension JSObject, or NULL. Used to
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// implement 'with' statements and dynamic declarations
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// (through 'eval'). The object in a 'with' statement is
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// stored in the extension slot of a 'with' context.
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// Dynamically declared variables/functions are also added
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// to lazily allocated extension object. Context::Lookup
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// searches the extension object for properties.
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// For global and block contexts, contains the respective
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// ScopeInfo.
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// For module contexts, points back to the respective JSModule.
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//
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// [ global_object ] A pointer to the global object. Provided for quick
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// access to the global object from inside the code (since
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// we always have a context pointer).
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//
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// In addition, function contexts may have statically allocated context slots
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// to store local variables/functions that are accessed from inner functions
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// (via static context addresses) or through 'eval' (dynamic context lookups).
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// Finally, the native context contains additional slots for fast access to
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// native properties.
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class Context: public FixedArray {
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public:
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// Conversions.
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static Context* cast(Object* context) {
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ASSERT(context->IsContext());
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return reinterpret_cast<Context*>(context);
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}
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// The default context slot layout; indices are FixedArray slot indices.
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enum {
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// These slots are in all contexts.
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CLOSURE_INDEX,
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PREVIOUS_INDEX,
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// The extension slot is used for either the global object (in global
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// contexts), eval extension object (function contexts), subject of with
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// (with contexts), or the variable name (catch contexts), the serialized
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// scope info (block contexts), or the module instance (module contexts).
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EXTENSION_INDEX,
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GLOBAL_OBJECT_INDEX,
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MIN_CONTEXT_SLOTS,
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// This slot holds the thrown value in catch contexts.
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THROWN_OBJECT_INDEX = MIN_CONTEXT_SLOTS,
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// These slots are only in native contexts.
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GLOBAL_PROXY_INDEX = MIN_CONTEXT_SLOTS,
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SECURITY_TOKEN_INDEX,
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ARGUMENTS_BOILERPLATE_INDEX,
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ALIASED_ARGUMENTS_BOILERPLATE_INDEX,
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STRICT_MODE_ARGUMENTS_BOILERPLATE_INDEX,
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REGEXP_RESULT_MAP_INDEX,
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FUNCTION_MAP_INDEX,
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STRICT_MODE_FUNCTION_MAP_INDEX,
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FUNCTION_WITHOUT_PROTOTYPE_MAP_INDEX,
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STRICT_MODE_FUNCTION_WITHOUT_PROTOTYPE_MAP_INDEX,
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INITIAL_OBJECT_PROTOTYPE_INDEX,
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INITIAL_ARRAY_PROTOTYPE_INDEX,
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BOOLEAN_FUNCTION_INDEX,
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NUMBER_FUNCTION_INDEX,
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STRING_FUNCTION_INDEX,
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STRING_FUNCTION_PROTOTYPE_MAP_INDEX,
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SYMBOL_FUNCTION_INDEX,
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OBJECT_FUNCTION_INDEX,
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INTERNAL_ARRAY_FUNCTION_INDEX,
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ARRAY_FUNCTION_INDEX,
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JS_ARRAY_MAPS_INDEX,
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DATE_FUNCTION_INDEX,
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JSON_OBJECT_INDEX,
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REGEXP_FUNCTION_INDEX,
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CREATE_DATE_FUN_INDEX,
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TO_NUMBER_FUN_INDEX,
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TO_STRING_FUN_INDEX,
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TO_DETAIL_STRING_FUN_INDEX,
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TO_OBJECT_FUN_INDEX,
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TO_INTEGER_FUN_INDEX,
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TO_UINT32_FUN_INDEX,
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TO_INT32_FUN_INDEX,
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TO_BOOLEAN_FUN_INDEX,
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GLOBAL_EVAL_FUN_INDEX,
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INSTANTIATE_FUN_INDEX,
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CONFIGURE_INSTANCE_FUN_INDEX,
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ARRAY_BUFFER_FUN_INDEX,
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UINT8_ARRAY_FUN_INDEX,
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INT8_ARRAY_FUN_INDEX,
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UINT16_ARRAY_FUN_INDEX,
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INT16_ARRAY_FUN_INDEX,
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UINT32_ARRAY_FUN_INDEX,
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INT32_ARRAY_FUN_INDEX,
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FLOAT_ARRAY_FUN_INDEX,
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DOUBLE_ARRAY_FUN_INDEX,
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UINT8C_ARRAY_FUN_INDEX,
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DATA_VIEW_FUN_INDEX,
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MESSAGE_LISTENERS_INDEX,
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MAKE_MESSAGE_FUN_INDEX,
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GET_STACK_TRACE_LINE_INDEX,
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CONFIGURE_GLOBAL_INDEX,
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FUNCTION_CACHE_INDEX,
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JSFUNCTION_RESULT_CACHES_INDEX,
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NORMALIZED_MAP_CACHE_INDEX,
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RUNTIME_CONTEXT_INDEX,
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CALL_AS_FUNCTION_DELEGATE_INDEX,
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CALL_AS_CONSTRUCTOR_DELEGATE_INDEX,
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SCRIPT_FUNCTION_INDEX,
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OPAQUE_REFERENCE_FUNCTION_INDEX,
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CONTEXT_EXTENSION_FUNCTION_INDEX,
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OUT_OF_MEMORY_INDEX,
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EMBEDDER_DATA_INDEX,
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ALLOW_CODE_GEN_FROM_STRINGS_INDEX,
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ERROR_MESSAGE_FOR_CODE_GEN_FROM_STRINGS_INDEX,
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TO_COMPLETE_PROPERTY_DESCRIPTOR_INDEX,
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DERIVED_HAS_TRAP_INDEX,
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DERIVED_GET_TRAP_INDEX,
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DERIVED_SET_TRAP_INDEX,
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PROXY_ENUMERATE_INDEX,
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OBSERVERS_NOTIFY_CHANGE_INDEX,
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OBSERVERS_ENQUEUE_SPLICE_INDEX,
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OBSERVERS_BEGIN_SPLICE_INDEX,
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OBSERVERS_END_SPLICE_INDEX,
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OBSERVERS_DELIVER_CHANGES_INDEX,
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GENERATOR_FUNCTION_MAP_INDEX,
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STRICT_MODE_GENERATOR_FUNCTION_MAP_INDEX,
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GENERATOR_OBJECT_PROTOTYPE_MAP_INDEX,
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GENERATOR_RESULT_MAP_INDEX,
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RANDOM_SEED_INDEX,
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// Properties from here are treated as weak references by the full GC.
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// Scavenge treats them as strong references.
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OPTIMIZED_FUNCTIONS_LIST, // Weak.
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OPTIMIZED_CODE_LIST, // Weak.
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DEOPTIMIZED_CODE_LIST, // Weak.
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MAP_CACHE_INDEX, // Weak.
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NEXT_CONTEXT_LINK, // Weak.
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// Total number of slots.
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NATIVE_CONTEXT_SLOTS,
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FIRST_WEAK_SLOT = OPTIMIZED_FUNCTIONS_LIST
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};
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// Direct slot access.
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JSFunction* closure() { return JSFunction::cast(get(CLOSURE_INDEX)); }
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void set_closure(JSFunction* closure) { set(CLOSURE_INDEX, closure); }
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Context* previous() {
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Object* result = unchecked_previous();
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ASSERT(IsBootstrappingOrValidParentContext(result, this));
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return reinterpret_cast<Context*>(result);
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}
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void set_previous(Context* context) { set(PREVIOUS_INDEX, context); }
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bool has_extension() { return extension() != NULL; }
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Object* extension() { return get(EXTENSION_INDEX); }
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void set_extension(Object* object) { set(EXTENSION_INDEX, object); }
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JSModule* module() { return JSModule::cast(get(EXTENSION_INDEX)); }
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void set_module(JSModule* module) { set(EXTENSION_INDEX, module); }
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// Get the context where var declarations will be hoisted to, which
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// may be the context itself.
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Context* declaration_context();
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GlobalObject* global_object() {
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Object* result = get(GLOBAL_OBJECT_INDEX);
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ASSERT(IsBootstrappingOrGlobalObject(this->GetIsolate(), result));
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return reinterpret_cast<GlobalObject*>(result);
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}
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void set_global_object(GlobalObject* object) {
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set(GLOBAL_OBJECT_INDEX, object);
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}
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// Returns a JSGlobalProxy object or null.
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JSObject* global_proxy();
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void set_global_proxy(JSObject* global);
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// The builtins object.
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JSBuiltinsObject* builtins();
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// Get the innermost global context by traversing the context chain.
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Context* global_context();
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// Compute the native context by traversing the context chain.
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Context* native_context();
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// Predicates for context types. IsNativeContext is also defined on Object
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// because we frequently have to know if arbitrary objects are natives
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// contexts.
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bool IsNativeContext() {
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Map* map = this->map();
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return map == map->GetHeap()->native_context_map();
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}
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bool IsFunctionContext() {
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Map* map = this->map();
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return map == map->GetHeap()->function_context_map();
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}
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bool IsCatchContext() {
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Map* map = this->map();
|
|
return map == map->GetHeap()->catch_context_map();
|
|
}
|
|
bool IsWithContext() {
|
|
Map* map = this->map();
|
|
return map == map->GetHeap()->with_context_map();
|
|
}
|
|
bool IsBlockContext() {
|
|
Map* map = this->map();
|
|
return map == map->GetHeap()->block_context_map();
|
|
}
|
|
bool IsModuleContext() {
|
|
Map* map = this->map();
|
|
return map == map->GetHeap()->module_context_map();
|
|
}
|
|
bool IsGlobalContext() {
|
|
Map* map = this->map();
|
|
return map == map->GetHeap()->global_context_map();
|
|
}
|
|
|
|
// Tells whether the native context is marked with out of memory.
|
|
inline bool has_out_of_memory();
|
|
|
|
// Mark the native context with out of memory.
|
|
inline void mark_out_of_memory();
|
|
|
|
// A native context holds a list of all functions with optimized code.
|
|
void AddOptimizedFunction(JSFunction* function);
|
|
void RemoveOptimizedFunction(JSFunction* function);
|
|
void SetOptimizedFunctionsListHead(Object* head);
|
|
Object* OptimizedFunctionsListHead();
|
|
|
|
// The native context also stores a list of all optimized code and a
|
|
// list of all deoptimized code, which are needed by the deoptimizer.
|
|
void AddOptimizedCode(Code* code);
|
|
void SetOptimizedCodeListHead(Object* head);
|
|
Object* OptimizedCodeListHead();
|
|
void SetDeoptimizedCodeListHead(Object* head);
|
|
Object* DeoptimizedCodeListHead();
|
|
|
|
Handle<Object> ErrorMessageForCodeGenerationFromStrings();
|
|
|
|
#define NATIVE_CONTEXT_FIELD_ACCESSORS(index, type, name) \
|
|
void set_##name(type* value) { \
|
|
ASSERT(IsNativeContext()); \
|
|
set(index, value); \
|
|
} \
|
|
bool is_##name(type* value) { \
|
|
ASSERT(IsNativeContext()); \
|
|
return type::cast(get(index)) == value; \
|
|
} \
|
|
type* name() { \
|
|
ASSERT(IsNativeContext()); \
|
|
return type::cast(get(index)); \
|
|
}
|
|
NATIVE_CONTEXT_FIELDS(NATIVE_CONTEXT_FIELD_ACCESSORS)
|
|
#undef NATIVE_CONTEXT_FIELD_ACCESSORS
|
|
|
|
// Lookup the slot called name, starting with the current context.
|
|
// There are three possibilities:
|
|
//
|
|
// 1) result->IsContext():
|
|
// The binding was found in a context. *index is always the
|
|
// non-negative slot index. *attributes is NONE for var and let
|
|
// declarations, READ_ONLY for const declarations (never ABSENT).
|
|
//
|
|
// 2) result->IsJSObject():
|
|
// The binding was found as a named property in a context extension
|
|
// object (i.e., was introduced via eval), as a property on the subject
|
|
// of with, or as a property of the global object. *index is -1 and
|
|
// *attributes is not ABSENT.
|
|
//
|
|
// 3) result.is_null():
|
|
// There was no binding found, *index is always -1 and *attributes is
|
|
// always ABSENT.
|
|
Handle<Object> Lookup(Handle<String> name,
|
|
ContextLookupFlags flags,
|
|
int* index,
|
|
PropertyAttributes* attributes,
|
|
BindingFlags* binding_flags);
|
|
|
|
// Code generation support.
|
|
static int SlotOffset(int index) {
|
|
return kHeaderSize + index * kPointerSize - kHeapObjectTag;
|
|
}
|
|
|
|
static int FunctionMapIndex(LanguageMode language_mode, bool is_generator) {
|
|
return is_generator
|
|
? (language_mode == CLASSIC_MODE
|
|
? GENERATOR_FUNCTION_MAP_INDEX
|
|
: STRICT_MODE_GENERATOR_FUNCTION_MAP_INDEX)
|
|
: (language_mode == CLASSIC_MODE
|
|
? FUNCTION_MAP_INDEX
|
|
: STRICT_MODE_FUNCTION_MAP_INDEX);
|
|
}
|
|
|
|
static const int kSize = kHeaderSize + NATIVE_CONTEXT_SLOTS * kPointerSize;
|
|
|
|
// GC support.
|
|
typedef FixedBodyDescriptor<
|
|
kHeaderSize, kSize, kSize> ScavengeBodyDescriptor;
|
|
|
|
typedef FixedBodyDescriptor<
|
|
kHeaderSize,
|
|
kHeaderSize + FIRST_WEAK_SLOT * kPointerSize,
|
|
kSize> MarkCompactBodyDescriptor;
|
|
|
|
private:
|
|
// Unchecked access to the slots.
|
|
Object* unchecked_previous() { return get(PREVIOUS_INDEX); }
|
|
|
|
#ifdef DEBUG
|
|
// Bootstrapping-aware type checks.
|
|
static bool IsBootstrappingOrValidParentContext(Object* object, Context* kid);
|
|
static bool IsBootstrappingOrGlobalObject(Isolate* isolate, Object* object);
|
|
#endif
|
|
|
|
STATIC_CHECK(kHeaderSize == Internals::kContextHeaderSize);
|
|
STATIC_CHECK(EMBEDDER_DATA_INDEX == Internals::kContextEmbedderDataIndex);
|
|
};
|
|
|
|
} } // namespace v8::internal
|
|
|
|
#endif // V8_CONTEXTS_H_
|