Harden more runtime functions
R=dslomov@chromium.org Review URL: https://codereview.chromium.org/255333004 git-svn-id: http://v8.googlecode.com/svn/branches/bleeding_edge@21090 ce2b1a6d-e550-0410-aec6-3dcde31c8c00
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@ -10213,20 +10213,25 @@ void JSFunction::SetPrototype(Handle<JSFunction> function,
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}
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}
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void JSFunction::RemovePrototype() {
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bool JSFunction::RemovePrototype() {
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Context* native_context = context()->native_context();
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Context* native_context = context()->native_context();
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Map* no_prototype_map = shared()->strict_mode() == SLOPPY
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Map* no_prototype_map = shared()->strict_mode() == SLOPPY
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? native_context->sloppy_function_without_prototype_map()
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? native_context->sloppy_function_without_prototype_map()
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: native_context->strict_function_without_prototype_map();
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: native_context->strict_function_without_prototype_map();
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if (map() == no_prototype_map) return;
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if (map() == no_prototype_map) return true;
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ASSERT(map() == (shared()->strict_mode() == SLOPPY
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#ifdef DEBUG
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if (map() != (shared()->strict_mode() == SLOPPY
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? native_context->sloppy_function_map()
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? native_context->sloppy_function_map()
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: native_context->strict_function_map()));
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: native_context->strict_function_map())) {
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return false;
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}
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#endif
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set_map(no_prototype_map);
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set_map(no_prototype_map);
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set_prototype_or_initial_map(no_prototype_map->GetHeap()->the_hole_value());
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set_prototype_or_initial_map(no_prototype_map->GetHeap()->the_hole_value());
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return true;
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}
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}
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@ -7596,7 +7596,7 @@ class JSFunction: public JSObject {
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// After prototype is removed, it will not be created when accessed, and
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// After prototype is removed, it will not be created when accessed, and
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// [[Construct]] from this function will not be allowed.
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// [[Construct]] from this function will not be allowed.
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void RemovePrototype();
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bool RemovePrototype();
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inline bool should_have_prototype();
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inline bool should_have_prototype();
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// Accessor for this function's initial map's [[class]]
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// Accessor for this function's initial map's [[class]]
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@ -957,6 +957,10 @@ RUNTIME_FUNCTION(Runtime_TypedArrayInitialize) {
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CONVERT_NUMBER_ARG_HANDLE_CHECKED(byte_offset_object, 3);
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CONVERT_NUMBER_ARG_HANDLE_CHECKED(byte_offset_object, 3);
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CONVERT_NUMBER_ARG_HANDLE_CHECKED(byte_length_object, 4);
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CONVERT_NUMBER_ARG_HANDLE_CHECKED(byte_length_object, 4);
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RUNTIME_ASSERT(arrayId >= Runtime::ARRAY_ID_FIRST &&
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arrayId <= Runtime::ARRAY_ID_LAST);
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RUNTIME_ASSERT(maybe_buffer->IsNull() || maybe_buffer->IsJSArrayBuffer());
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ASSERT(holder->GetInternalFieldCount() ==
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ASSERT(holder->GetInternalFieldCount() ==
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v8::ArrayBufferView::kInternalFieldCount);
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v8::ArrayBufferView::kInternalFieldCount);
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for (int i = 0; i < v8::ArrayBufferView::kInternalFieldCount; i++) {
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for (int i = 0; i < v8::ArrayBufferView::kInternalFieldCount; i++) {
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@ -998,8 +1002,8 @@ RUNTIME_FUNCTION(Runtime_TypedArrayInitialize) {
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size_t array_buffer_byte_length =
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size_t array_buffer_byte_length =
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NumberToSize(isolate, buffer->byte_length());
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NumberToSize(isolate, buffer->byte_length());
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CHECK(byte_offset <= array_buffer_byte_length);
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RUNTIME_ASSERT(byte_offset <= array_buffer_byte_length);
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CHECK(array_buffer_byte_length - byte_offset >= byte_length);
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RUNTIME_ASSERT(array_buffer_byte_length - byte_offset >= byte_length);
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holder->set_buffer(*buffer);
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holder->set_buffer(*buffer);
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holder->set_weak_next(buffer->weak_first_view());
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holder->set_weak_next(buffer->weak_first_view());
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@ -1038,6 +1042,9 @@ RUNTIME_FUNCTION(Runtime_TypedArrayInitializeFromArrayLike) {
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CONVERT_ARG_HANDLE_CHECKED(Object, source, 2);
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CONVERT_ARG_HANDLE_CHECKED(Object, source, 2);
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CONVERT_NUMBER_ARG_HANDLE_CHECKED(length_obj, 3);
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CONVERT_NUMBER_ARG_HANDLE_CHECKED(length_obj, 3);
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RUNTIME_ASSERT(arrayId >= Runtime::ARRAY_ID_FIRST &&
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arrayId <= Runtime::ARRAY_ID_LAST);
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ASSERT(holder->GetInternalFieldCount() ==
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ASSERT(holder->GetInternalFieldCount() ==
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v8::ArrayBufferView::kInternalFieldCount);
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v8::ArrayBufferView::kInternalFieldCount);
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for (int i = 0; i < v8::ArrayBufferView::kInternalFieldCount; i++) {
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for (int i = 0; i < v8::ArrayBufferView::kInternalFieldCount; i++) {
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@ -1186,7 +1193,8 @@ RUNTIME_FUNCTION(Runtime_TypedArraySetFastCases) {
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Handle<JSTypedArray> target(JSTypedArray::cast(*target_obj));
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Handle<JSTypedArray> target(JSTypedArray::cast(*target_obj));
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Handle<JSTypedArray> source(JSTypedArray::cast(*source_obj));
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Handle<JSTypedArray> source(JSTypedArray::cast(*source_obj));
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size_t offset = NumberToSize(isolate, *offset_obj);
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size_t offset = 0;
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RUNTIME_ASSERT(TryNumberToSize(isolate, *offset_obj, &offset));
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size_t target_length = NumberToSize(isolate, target->length());
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size_t target_length = NumberToSize(isolate, target->length());
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size_t source_length = NumberToSize(isolate, source->length());
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size_t source_length = NumberToSize(isolate, source->length());
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size_t target_byte_length = NumberToSize(isolate, target->byte_length());
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size_t target_byte_length = NumberToSize(isolate, target->byte_length());
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@ -1680,7 +1688,7 @@ RUNTIME_FUNCTION(Runtime_MapCreateIterator) {
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ASSERT(args.length() == 2);
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ASSERT(args.length() == 2);
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CONVERT_ARG_HANDLE_CHECKED(JSMap, holder, 0);
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CONVERT_ARG_HANDLE_CHECKED(JSMap, holder, 0);
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CONVERT_SMI_ARG_CHECKED(kind, 1)
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CONVERT_SMI_ARG_CHECKED(kind, 1)
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ASSERT(kind == JSMapIterator::kKindKeys
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RUNTIME_ASSERT(kind == JSMapIterator::kKindKeys
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|| kind == JSMapIterator::kKindValues
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|| kind == JSMapIterator::kKindValues
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|| kind == JSMapIterator::kKindEntries);
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|| kind == JSMapIterator::kKindEntries);
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Handle<OrderedHashMap> table(OrderedHashMap::cast(holder->table()));
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Handle<OrderedHashMap> table(OrderedHashMap::cast(holder->table()));
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@ -2207,6 +2215,8 @@ RUNTIME_FUNCTION(Runtime_SetAccessorProperty) {
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CONVERT_SMI_ARG_CHECKED(access_control, 5);
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CONVERT_SMI_ARG_CHECKED(access_control, 5);
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RUNTIME_ASSERT(getter->IsUndefined() || getter->IsFunctionTemplateInfo());
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RUNTIME_ASSERT(getter->IsUndefined() || getter->IsFunctionTemplateInfo());
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RUNTIME_ASSERT(setter->IsUndefined() || setter->IsFunctionTemplateInfo());
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RUNTIME_ASSERT(setter->IsUndefined() || setter->IsFunctionTemplateInfo());
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RUNTIME_ASSERT(PropertyDetails::AttributesField::is_valid(
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static_cast<PropertyAttributes>(attribute)));
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JSObject::DefineAccessor(object,
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JSObject::DefineAccessor(object,
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name,
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name,
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InstantiateAccessorComponent(isolate, getter),
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InstantiateAccessorComponent(isolate, getter),
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@ -2660,6 +2670,8 @@ RUNTIME_FUNCTION(Runtime_OptimizeObjectForAddingMultipleProperties) {
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ASSERT(args.length() == 2);
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ASSERT(args.length() == 2);
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CONVERT_ARG_HANDLE_CHECKED(JSObject, object, 0);
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CONVERT_ARG_HANDLE_CHECKED(JSObject, object, 0);
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CONVERT_SMI_ARG_CHECKED(properties, 1);
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CONVERT_SMI_ARG_CHECKED(properties, 1);
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// Conservative upper limit to prevent fuzz tests from going OOM.
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RUNTIME_ASSERT(properties <= 100000);
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if (object->HasFastProperties() && !object->IsJSGlobalProxy()) {
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if (object->HasFastProperties() && !object->IsJSGlobalProxy()) {
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JSObject::NormalizeProperties(object, KEEP_INOBJECT_PROPERTIES, properties);
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JSObject::NormalizeProperties(object, KEEP_INOBJECT_PROPERTIES, properties);
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}
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}
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@ -2941,7 +2953,7 @@ RUNTIME_FUNCTION(Runtime_FunctionRemovePrototype) {
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ASSERT(args.length() == 1);
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ASSERT(args.length() == 1);
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CONVERT_ARG_CHECKED(JSFunction, f, 0);
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CONVERT_ARG_CHECKED(JSFunction, f, 0);
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f->RemovePrototype();
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RUNTIME_ASSERT(f->RemovePrototype());
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return isolate->heap()->undefined_value();
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return isolate->heap()->undefined_value();
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}
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}
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@ -4632,6 +4644,8 @@ RUNTIME_FUNCTION(Runtime_StringMatch) {
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CONVERT_ARG_HANDLE_CHECKED(JSRegExp, regexp, 1);
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CONVERT_ARG_HANDLE_CHECKED(JSRegExp, regexp, 1);
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CONVERT_ARG_HANDLE_CHECKED(JSArray, regexp_info, 2);
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CONVERT_ARG_HANDLE_CHECKED(JSArray, regexp_info, 2);
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RUNTIME_ASSERT(regexp_info->HasFastObjectElements());
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RegExpImpl::GlobalCache global_cache(regexp, subject, true, isolate);
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RegExpImpl::GlobalCache global_cache(regexp, subject, true, isolate);
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if (global_cache.HasException()) return isolate->heap()->exception();
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if (global_cache.HasException()) return isolate->heap()->exception();
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@ -4896,7 +4910,8 @@ RUNTIME_FUNCTION(Runtime_NumberToFixed) {
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CONVERT_DOUBLE_ARG_CHECKED(value, 0);
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CONVERT_DOUBLE_ARG_CHECKED(value, 0);
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CONVERT_DOUBLE_ARG_CHECKED(f_number, 1);
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CONVERT_DOUBLE_ARG_CHECKED(f_number, 1);
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int f = FastD2IChecked(f_number);
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int f = FastD2IChecked(f_number);
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RUNTIME_ASSERT(f >= 0);
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// See DoubleToFixedCString for these constants:
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RUNTIME_ASSERT(f >= 0 && f <= 20);
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char* str = DoubleToFixedCString(value, f);
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char* str = DoubleToFixedCString(value, f);
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Handle<String> result = isolate->factory()->NewStringFromAsciiChecked(str);
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Handle<String> result = isolate->factory()->NewStringFromAsciiChecked(str);
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DeleteArray(str);
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DeleteArray(str);
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@ -7321,6 +7336,7 @@ RUNTIME_FUNCTION(Runtime_StringBuilderJoin) {
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}
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}
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int separator_length = separator->length();
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int separator_length = separator->length();
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RUNTIME_ASSERT(separator_length > 0);
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int max_nof_separators =
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int max_nof_separators =
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(String::kMaxLength + separator_length - 1) / separator_length;
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(String::kMaxLength + separator_length - 1) / separator_length;
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if (max_nof_separators < (array_length - 1)) {
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if (max_nof_separators < (array_length - 1)) {
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@ -7422,26 +7438,30 @@ RUNTIME_FUNCTION(Runtime_SparseJoinWithSeparator) {
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HandleScope scope(isolate);
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HandleScope scope(isolate);
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ASSERT(args.length() == 3);
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ASSERT(args.length() == 3);
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CONVERT_ARG_HANDLE_CHECKED(JSArray, elements_array, 0);
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CONVERT_ARG_HANDLE_CHECKED(JSArray, elements_array, 0);
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RUNTIME_ASSERT(elements_array->HasFastSmiOrObjectElements());
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CONVERT_NUMBER_CHECKED(uint32_t, array_length, Uint32, args[1]);
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CONVERT_NUMBER_CHECKED(uint32_t, array_length, Uint32, args[1]);
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CONVERT_ARG_HANDLE_CHECKED(String, separator, 2);
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CONVERT_ARG_HANDLE_CHECKED(String, separator, 2);
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// elements_array is fast-mode JSarray of alternating positions
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// elements_array is fast-mode JSarray of alternating positions
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// (increasing order) and strings.
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// (increasing order) and strings.
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RUNTIME_ASSERT(elements_array->HasFastSmiOrObjectElements());
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// array_length is length of original array (used to add separators);
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// array_length is length of original array (used to add separators);
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// separator is string to put between elements. Assumed to be non-empty.
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// separator is string to put between elements. Assumed to be non-empty.
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RUNTIME_ASSERT(array_length > 0);
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// Find total length of join result.
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// Find total length of join result.
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int string_length = 0;
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int string_length = 0;
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bool is_ascii = separator->IsOneByteRepresentation();
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bool is_ascii = separator->IsOneByteRepresentation();
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bool overflow = false;
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bool overflow = false;
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CONVERT_NUMBER_CHECKED(int, elements_length, Int32, elements_array->length());
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CONVERT_NUMBER_CHECKED(int, elements_length, Int32, elements_array->length());
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RUNTIME_ASSERT(elements_length <= elements_array->elements()->length());
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RUNTIME_ASSERT((elements_length & 1) == 0); // Even length.
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RUNTIME_ASSERT((elements_length & 1) == 0); // Even length.
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FixedArray* elements = FixedArray::cast(elements_array->elements());
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for (int i = 0; i < elements_length; i += 2) {
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RUNTIME_ASSERT(elements->get(i)->IsNumber());
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RUNTIME_ASSERT(elements->get(i + 1)->IsString());
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}
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{ DisallowHeapAllocation no_gc;
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{ DisallowHeapAllocation no_gc;
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FixedArray* elements = FixedArray::cast(elements_array->elements());
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for (int i = 0; i < elements_length; i += 2) {
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for (int i = 0; i < elements_length; i += 2) {
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RUNTIME_ASSERT(elements->get(i)->IsNumber());
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RUNTIME_ASSERT(elements->get(i + 1)->IsString());
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String* string = String::cast(elements->get(i + 1));
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String* string = String::cast(elements->get(i + 1));
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int length = string->length();
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int length = string->length();
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if (is_ascii && !string->IsOneByteRepresentation()) {
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if (is_ascii && !string->IsOneByteRepresentation()) {
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@ -7965,7 +7985,9 @@ RUNTIME_FUNCTION(Runtime_DateMakeDay) {
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CONVERT_SMI_ARG_CHECKED(year, 0);
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CONVERT_SMI_ARG_CHECKED(year, 0);
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CONVERT_SMI_ARG_CHECKED(month, 1);
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CONVERT_SMI_ARG_CHECKED(month, 1);
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return Smi::FromInt(isolate->date_cache()->DaysFromYearMonth(year, month));
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int days = isolate->date_cache()->DaysFromYearMonth(year, month);
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RUNTIME_ASSERT(Smi::IsValid(days));
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return Smi::FromInt(days);
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}
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}
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@ -8943,7 +8965,10 @@ RUNTIME_FUNCTION(Runtime_Apply) {
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CONVERT_SMI_ARG_CHECKED(offset, 3);
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CONVERT_SMI_ARG_CHECKED(offset, 3);
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CONVERT_SMI_ARG_CHECKED(argc, 4);
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CONVERT_SMI_ARG_CHECKED(argc, 4);
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RUNTIME_ASSERT(offset >= 0);
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RUNTIME_ASSERT(offset >= 0);
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RUNTIME_ASSERT(argc >= 0);
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// Loose upper bound to allow fuzzing. We'll most likely run out of
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// stack space before hitting this limit.
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static int kMaxArgc = 1000000;
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RUNTIME_ASSERT(argc >= 0 && argc <= kMaxArgc);
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// If there are too many arguments, allocate argv via malloc.
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// If there are too many arguments, allocate argv via malloc.
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const int argv_small_size = 10;
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const int argv_small_size = 10;
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@ -13522,6 +13547,15 @@ RUNTIME_FUNCTION(Runtime_LiveEditCheckAndDropActivations) {
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ASSERT(args.length() == 2);
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ASSERT(args.length() == 2);
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CONVERT_ARG_HANDLE_CHECKED(JSArray, shared_array, 0);
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CONVERT_ARG_HANDLE_CHECKED(JSArray, shared_array, 0);
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CONVERT_BOOLEAN_ARG_CHECKED(do_drop, 1);
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CONVERT_BOOLEAN_ARG_CHECKED(do_drop, 1);
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RUNTIME_ASSERT(shared_array->length()->IsSmi());
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int array_length = Smi::cast(shared_array->length())->value();
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for (int i = 0; i < array_length; i++) {
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Handle<Object> element =
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Object::GetElement(isolate, shared_array, i).ToHandleChecked();
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RUNTIME_ASSERT(
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element->IsJSValue() &&
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Handle<JSValue>::cast(element)->value()->IsSharedFunctionInfo());
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}
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return *LiveEdit::CheckAndDropActivations(shared_array, do_drop);
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return *LiveEdit::CheckAndDropActivations(shared_array, do_drop);
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}
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}
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@ -13791,6 +13825,9 @@ RUNTIME_FUNCTION(Runtime_GetLanguageTagVariants) {
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CONVERT_ARG_HANDLE_CHECKED(JSArray, input, 0);
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CONVERT_ARG_HANDLE_CHECKED(JSArray, input, 0);
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uint32_t length = static_cast<uint32_t>(input->length()->Number());
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uint32_t length = static_cast<uint32_t>(input->length()->Number());
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// Set some limit to prevent fuzz tests from going OOM.
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// Can be bumped when callers' requirements change.
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RUNTIME_ASSERT(length < 100);
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Handle<FixedArray> output = factory->NewFixedArray(length);
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Handle<FixedArray> output = factory->NewFixedArray(length);
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Handle<Name> maximized = factory->NewStringFromStaticAscii("maximized");
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Handle<Name> maximized = factory->NewStringFromStaticAscii("maximized");
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Handle<Name> base = factory->NewStringFromStaticAscii("base");
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Handle<Name> base = factory->NewStringFromStaticAscii("base");
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@ -14238,6 +14275,8 @@ RUNTIME_FUNCTION(Runtime_StringNormalize) {
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CONVERT_ARG_HANDLE_CHECKED(String, stringValue, 0);
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CONVERT_ARG_HANDLE_CHECKED(String, stringValue, 0);
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CONVERT_NUMBER_CHECKED(int, form_id, Int32, args[1]);
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CONVERT_NUMBER_CHECKED(int, form_id, Int32, args[1]);
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RUNTIME_ASSERT(form_id >= 0 &&
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static_cast<size_t>(form_id) < ARRAY_SIZE(normalizationForms));
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v8::String::Value string_value(v8::Utils::ToLocal(stringValue));
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v8::String::Value string_value(v8::Utils::ToLocal(stringValue));
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const UChar* u_value = reinterpret_cast<const UChar*>(*string_value);
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const UChar* u_value = reinterpret_cast<const UChar*>(*string_value);
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@ -865,7 +865,10 @@ class Runtime : public AllStatic {
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ARRAY_ID_INT32 = 6,
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ARRAY_ID_INT32 = 6,
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ARRAY_ID_FLOAT32 = 7,
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ARRAY_ID_FLOAT32 = 7,
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ARRAY_ID_FLOAT64 = 8,
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ARRAY_ID_FLOAT64 = 8,
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ARRAY_ID_UINT8_CLAMPED = 9
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ARRAY_ID_UINT8_CLAMPED = 9,
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ARRAY_ID_FIRST = ARRAY_ID_UINT8,
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ARRAY_ID_LAST = ARRAY_ID_UINT8_CLAMPED
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};
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};
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static void ArrayIdToTypeAndSize(int array_id,
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static void ArrayIdToTypeAndSize(int array_id,
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