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Issue 40290: Experimental: Merge 1395:1441 from bleeding_edge branch to the... (Closed) Base URL: http://v8.googlecode.com/svn/branches/experimental/global/
Patch Set: Created 11 years, 9 months ago
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1 // Copyright 2006-2008 the V8 project authors. All rights reserved. 1 // Copyright 2006-2008 the V8 project authors. All rights reserved.
2 // Redistribution and use in source and binary forms, with or without 2 // Redistribution and use in source and binary forms, with or without
3 // modification, are permitted provided that the following conditions are 3 // modification, are permitted provided that the following conditions are
4 // met: 4 // met:
5 // 5 //
6 // * Redistributions of source code must retain the above copyright 6 // * Redistributions of source code must retain the above copyright
7 // notice, this list of conditions and the following disclaimer. 7 // notice, this list of conditions and the following disclaimer.
8 // * Redistributions in binary form must reproduce the above 8 // * Redistributions in binary form must reproduce the above
9 // copyright notice, this list of conditions and the following 9 // copyright notice, this list of conditions and the following
10 // disclaimer in the documentation and/or other materials provided 10 // disclaimer in the documentation and/or other materials provided
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124 return Factory::ObjectLiteralMapFromCache(context, keys); 124 return Factory::ObjectLiteralMapFromCache(context, keys);
125 } 125 }
126 } 126 }
127 *is_result_from_cache = false; 127 *is_result_from_cache = false;
128 return Factory::CopyMap( 128 return Factory::CopyMap(
129 Handle<Map>(context->object_function()->initial_map()), 129 Handle<Map>(context->object_function()->initial_map()),
130 number_of_properties); 130 number_of_properties);
131 } 131 }
132 132
133 133
134 static Object* Runtime_CreateObjectLiteralBoilerplate(Arguments args) { 134 static Handle<Object> CreateObjectLiteralBoilerplate(
135 HandleScope scope; 135 Handle<FixedArray> literals,
136 ASSERT(args.length() == 3); 136 Handle<FixedArray> constant_properties) {
137 // Copy the arguments.
138 Handle<FixedArray> literals = args.at<FixedArray>(0);
139 int literals_index = Smi::cast(args[1])->value();
140 Handle<FixedArray> constant_properties = args.at<FixedArray>(2);
141
142 // Get the global context from the literals array. This is the 137 // Get the global context from the literals array. This is the
143 // context in which the function was created and we use the object 138 // context in which the function was created and we use the object
144 // function from this context to create the object literal. We do 139 // function from this context to create the object literal. We do
145 // not use the object function from the current global context 140 // not use the object function from the current global context
146 // because this might be the object function from another context 141 // because this might be the object function from another context
147 // which we should not have access to. 142 // which we should not have access to.
148 Handle<Context> context = 143 Handle<Context> context =
149 Handle<Context>(JSFunction::GlobalContextFromLiterals(*literals)); 144 Handle<Context>(JSFunction::GlobalContextFromLiterals(*literals));
150 145
151 bool is_result_from_cache; 146 bool is_result_from_cache;
152 Handle<Map> map = ComputeObjectLiteralMap(context, 147 Handle<Map> map = ComputeObjectLiteralMap(context,
153 constant_properties, 148 constant_properties,
154 &is_result_from_cache); 149 &is_result_from_cache);
155 150
156 Handle<JSObject> boilerplate = Factory::NewJSObjectFromMap(map); 151 Handle<JSObject> boilerplate = Factory::NewJSObjectFromMap(map);
157 { // Add the constant properties to the boilerplate. 152 { // Add the constant properties to the boilerplate.
158 int length = constant_properties->length(); 153 int length = constant_properties->length();
159 OptimizedObjectForAddingMultipleProperties opt(boilerplate, 154 OptimizedObjectForAddingMultipleProperties opt(boilerplate,
160 !is_result_from_cache); 155 !is_result_from_cache);
161 for (int index = 0; index < length; index +=2) { 156 for (int index = 0; index < length; index +=2) {
162 Handle<Object> key(constant_properties->get(index+0)); 157 Handle<Object> key(constant_properties->get(index+0));
163 Handle<Object> value(constant_properties->get(index+1)); 158 Handle<Object> value(constant_properties->get(index+1));
159 if (value->IsFixedArray()) {
160 // The value contains the constant_properties of a
161 // simple object literal.
162 Handle<FixedArray> array = Handle<FixedArray>::cast(value);
163 value = CreateObjectLiteralBoilerplate(literals, array);
164 }
164 Handle<Object> result; 165 Handle<Object> result;
165 uint32_t element_index = 0; 166 uint32_t element_index = 0;
166 if (key->IsSymbol()) { 167 if (key->IsSymbol()) {
167 // If key is a symbol it is not an array element. 168 // If key is a symbol it is not an array element.
168 Handle<String> name(String::cast(*key)); 169 Handle<String> name(String::cast(*key));
169 ASSERT(!name->AsArrayIndex(&element_index)); 170 ASSERT(!name->AsArrayIndex(&element_index));
170 result = SetProperty(boilerplate, name, value, NONE); 171 result = SetProperty(boilerplate, name, value, NONE);
171 } else if (Array::IndexFromObject(*key, &element_index)) { 172 } else if (Array::IndexFromObject(*key, &element_index)) {
172 // Array index (uint32). 173 // Array index (uint32).
173 result = SetElement(boilerplate, element_index, value); 174 result = SetElement(boilerplate, element_index, value);
174 } else { 175 } else {
175 // Non-uint32 number. 176 // Non-uint32 number.
176 ASSERT(key->IsNumber()); 177 ASSERT(key->IsNumber());
177 double num = key->Number(); 178 double num = key->Number();
178 char arr[100]; 179 char arr[100];
179 Vector<char> buffer(arr, ARRAY_SIZE(arr)); 180 Vector<char> buffer(arr, ARRAY_SIZE(arr));
180 const char* str = DoubleToCString(num, buffer); 181 const char* str = DoubleToCString(num, buffer);
181 Handle<String> name = Factory::NewStringFromAscii(CStrVector(str)); 182 Handle<String> name = Factory::NewStringFromAscii(CStrVector(str));
182 result = SetProperty(boilerplate, name, value, NONE); 183 result = SetProperty(boilerplate, name, value, NONE);
183 } 184 }
184 // If setting the property on the boilerplate throws an 185 // If setting the property on the boilerplate throws an
185 // exception, the exception is converted to an empty handle in 186 // exception, the exception is converted to an empty handle in
186 // the handle based operations. In that case, we need to 187 // the handle based operations. In that case, we need to
187 // convert back to an exception. 188 // convert back to an exception.
188 if (result.is_null()) return Failure::Exception(); 189 if (result.is_null()) return result;
189 } 190 }
190 } 191 }
191 192
192 // Update the functions literal and return the boilerplate. 193 return boilerplate;
193 literals->set(literals_index, *boilerplate);
194
195 return *boilerplate;
196 } 194 }
197 195
198 196
197 static Object* Runtime_CreateObjectLiteralBoilerplate(Arguments args) {
198 HandleScope scope;
199 ASSERT(args.length() == 3);
200 // Copy the arguments.
201 Handle<FixedArray> literals = args.at<FixedArray>(0);
202 int literals_index = Smi::cast(args[1])->value();
203 Handle<FixedArray> constant_properties = args.at<FixedArray>(2);
204
205 Handle<Object> result =
206 CreateObjectLiteralBoilerplate(literals, constant_properties);
207
208 if (result.is_null()) return Failure::Exception();
209
210 // Update the functions literal and return the boilerplate.
211 literals->set(literals_index, *result);
212
213 return *result;
214 }
215
216
199 static Object* Runtime_CreateArrayLiteral(Arguments args) { 217 static Object* Runtime_CreateArrayLiteral(Arguments args) {
200 // Takes a FixedArray of elements containing the literal elements of 218 // Takes a FixedArray of elements containing the literal elements of
201 // the array literal and produces JSArray with those elements. 219 // the array literal and produces JSArray with those elements.
202 // Additionally takes the literals array of the surrounding function 220 // Additionally takes the literals array of the surrounding function
203 // which contains the context from which to get the Array function 221 // which contains the context from which to get the Array function
204 // to use for creating the array literal. 222 // to use for creating the array literal.
205 ASSERT(args.length() == 2); 223 ASSERT(args.length() == 2);
206 CONVERT_CHECKED(FixedArray, elements, args[0]); 224 CONVERT_CHECKED(FixedArray, elements, args[0]);
207 CONVERT_CHECKED(FixedArray, literals, args[1]); 225 CONVERT_CHECKED(FixedArray, literals, args[1]);
208 JSFunction* constructor = 226 JSFunction* constructor =
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844 } 862 }
845 } 863 }
846 } 864 }
847 865
848 return *value; 866 return *value;
849 } 867 }
850 868
851 869
852 static Object* Runtime_RegExpExec(Arguments args) { 870 static Object* Runtime_RegExpExec(Arguments args) {
853 HandleScope scope; 871 HandleScope scope;
854 ASSERT(args.length() == 4); 872 ASSERT(args.length() == 3);
855 CONVERT_CHECKED(JSRegExp, raw_regexp, args[0]); 873 CONVERT_CHECKED(JSRegExp, raw_regexp, args[0]);
856 Handle<JSRegExp> regexp(raw_regexp); 874 Handle<JSRegExp> regexp(raw_regexp);
857 CONVERT_CHECKED(String, raw_subject, args[1]); 875 CONVERT_CHECKED(String, raw_subject, args[1]);
858 Handle<String> subject(raw_subject); 876 Handle<String> subject(raw_subject);
859 // Due to the way the JS files are constructed this must be less than the 877 Handle<Object> index(args[2]);
860 // length of a string, i.e. it is always a Smi. We check anyway for security. 878 ASSERT(index->IsNumber());
861 CONVERT_CHECKED(Smi, index, args[2]); 879 Handle<Object> result = RegExpImpl::Exec(regexp, subject, index);
862 CONVERT_CHECKED(JSArray, raw_last_match_info, args[3]);
863 Handle<JSArray> last_match_info(raw_last_match_info);
864 CHECK(last_match_info->HasFastElements());
865 Handle<Object> result = RegExpImpl::Exec(regexp,
866 subject,
867 index->value(),
868 last_match_info);
869 if (result.is_null()) return Failure::Exception(); 880 if (result.is_null()) return Failure::Exception();
870 return *result; 881 return *result;
871 } 882 }
872 883
873 884
874 static Object* Runtime_RegExpExecGlobal(Arguments args) { 885 static Object* Runtime_RegExpExecGlobal(Arguments args) {
875 HandleScope scope; 886 HandleScope scope;
876 ASSERT(args.length() == 3); 887 ASSERT(args.length() == 2);
877 CONVERT_CHECKED(JSRegExp, raw_regexp, args[0]); 888 CONVERT_CHECKED(JSRegExp, raw_regexp, args[0]);
878 Handle<JSRegExp> regexp(raw_regexp); 889 Handle<JSRegExp> regexp(raw_regexp);
879 CONVERT_CHECKED(String, raw_subject, args[1]); 890 CONVERT_CHECKED(String, raw_subject, args[1]);
880 Handle<String> subject(raw_subject); 891 Handle<String> subject(raw_subject);
881 CONVERT_CHECKED(JSArray, raw_last_match_info, args[2]); 892 Handle<Object> result = RegExpImpl::ExecGlobal(regexp, subject);
882 Handle<JSArray> last_match_info(raw_last_match_info);
883 CHECK(last_match_info->HasFastElements());
884 Handle<Object> result =
885 RegExpImpl::ExecGlobal(regexp, subject, last_match_info);
886 if (result.is_null()) return Failure::Exception(); 893 if (result.is_null()) return Failure::Exception();
887 return *result; 894 return *result;
888 } 895 }
889 896
890 897
891 static Object* Runtime_MaterializeRegExpLiteral(Arguments args) { 898 static Object* Runtime_MaterializeRegExpLiteral(Arguments args) {
892 HandleScope scope; 899 HandleScope scope;
893 ASSERT(args.length() == 4); 900 ASSERT(args.length() == 4);
894 CONVERT_ARG_CHECKED(FixedArray, literals, 0); 901 CONVERT_ARG_CHECKED(FixedArray, literals, 0);
895 int index = Smi::cast(args[1])->value(); 902 int index = Smi::cast(args[1])->value();
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2154 if (key->Equals(Heap::length_symbol())) return Smi::FromInt(n); 2161 if (key->Equals(Heap::length_symbol())) return Smi::FromInt(n);
2155 if (key->Equals(Heap::callee_symbol())) return frame->function(); 2162 if (key->Equals(Heap::callee_symbol())) return frame->function();
2156 2163
2157 // Lookup in the initial Object.prototype object. 2164 // Lookup in the initial Object.prototype object.
2158 return Top::initial_object_prototype()->GetProperty(*key); 2165 return Top::initial_object_prototype()->GetProperty(*key);
2159 } 2166 }
2160 2167
2161 2168
2162 static Object* Runtime_ToFastProperties(Arguments args) { 2169 static Object* Runtime_ToFastProperties(Arguments args) {
2163 ASSERT(args.length() == 1); 2170 ASSERT(args.length() == 1);
2164 CONVERT_ARG_CHECKED(JSObject, object, 0); 2171 Handle<Object> object = args.at<Object>(0);
2165 object->TransformToFastProperties(0); 2172 if (object->IsJSObject()) {
2173 Handle<JSObject> js_object = Handle<JSObject>::cast(object);
2174 js_object->TransformToFastProperties(0);
2175 }
2166 return *object; 2176 return *object;
2167 } 2177 }
2168 2178
2169 2179
2170 static Object* Runtime_ToSlowProperties(Arguments args) { 2180 static Object* Runtime_ToSlowProperties(Arguments args) {
2171 ASSERT(args.length() == 1); 2181 ASSERT(args.length() == 1);
2172 CONVERT_ARG_CHECKED(JSObject, object, 0); 2182 Handle<Object> object = args.at<Object>(0);
2173 object->NormalizeProperties(CLEAR_INOBJECT_PROPERTIES); 2183 if (object->IsJSObject()) {
2184 Handle<JSObject> js_object = Handle<JSObject>::cast(object);
2185 js_object->NormalizeProperties(CLEAR_INOBJECT_PROPERTIES);
2186 }
2174 return *object; 2187 return *object;
2175 } 2188 }
2176 2189
2177 2190
2178 static Object* Runtime_ToBool(Arguments args) { 2191 static Object* Runtime_ToBool(Arguments args) {
2179 NoHandleAllocation ha; 2192 NoHandleAllocation ha;
2180 ASSERT(args.length() == 1); 2193 ASSERT(args.length() == 1);
2181 2194
2182 return args[0]->ToBoolean(); 2195 return args[0]->ToBoolean();
2183 } 2196 }
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4942 CONVERT_NUMBER_CHECKED(uint32_t, index, Uint32, args[1]); 4955 CONVERT_NUMBER_CHECKED(uint32_t, index, Uint32, args[1]);
4943 4956
4944 return obj->GetElementWithInterceptor(*obj, index); 4957 return obj->GetElementWithInterceptor(*obj, index);
4945 } 4958 }
4946 4959
4947 4960
4948 static Object* Runtime_CheckExecutionState(Arguments args) { 4961 static Object* Runtime_CheckExecutionState(Arguments args) {
4949 ASSERT(args.length() >= 1); 4962 ASSERT(args.length() >= 1);
4950 CONVERT_NUMBER_CHECKED(int, break_id, Int32, args[0]); 4963 CONVERT_NUMBER_CHECKED(int, break_id, Int32, args[0]);
4951 // Check that the break id is valid. 4964 // Check that the break id is valid.
4952 if (Top::break_id() == 0 || break_id != Top::break_id()) { 4965 if (Debug::break_id() == 0 || break_id != Debug::break_id()) {
4953 return Top::Throw(Heap::illegal_execution_state_symbol()); 4966 return Top::Throw(Heap::illegal_execution_state_symbol());
4954 } 4967 }
4955 4968
4956 return Heap::true_value(); 4969 return Heap::true_value();
4957 } 4970 }
4958 4971
4959 4972
4960 static Object* Runtime_GetFrameCount(Arguments args) { 4973 static Object* Runtime_GetFrameCount(Arguments args) {
4961 HandleScope scope; 4974 HandleScope scope;
4962 ASSERT(args.length() == 1); 4975 ASSERT(args.length() == 1);
4963 4976
4964 // Check arguments. 4977 // Check arguments.
4965 Object* result = Runtime_CheckExecutionState(args); 4978 Object* result = Runtime_CheckExecutionState(args);
4966 if (result->IsFailure()) return result; 4979 if (result->IsFailure()) return result;
4967 4980
4968 // Count all frames which are relevant to debugging stack trace. 4981 // Count all frames which are relevant to debugging stack trace.
4969 int n = 0; 4982 int n = 0;
4970 StackFrame::Id id = Top::break_frame_id(); 4983 StackFrame::Id id = Debug::break_frame_id();
4971 if (id == StackFrame::NO_ID) { 4984 if (id == StackFrame::NO_ID) {
4972 // If there is no JavaScript stack frame count is 0. 4985 // If there is no JavaScript stack frame count is 0.
4973 return Smi::FromInt(0); 4986 return Smi::FromInt(0);
4974 } 4987 }
4975 for (JavaScriptFrameIterator it(id); !it.done(); it.Advance()) n++; 4988 for (JavaScriptFrameIterator it(id); !it.done(); it.Advance()) n++;
4976 return Smi::FromInt(n); 4989 return Smi::FromInt(n);
4977 } 4990 }
4978 4991
4979 4992
4980 static const int kFrameDetailsFrameIdIndex = 0; 4993 static const int kFrameDetailsFrameIdIndex = 0;
(...skipping 24 matching lines...) Expand all
5005 static Object* Runtime_GetFrameDetails(Arguments args) { 5018 static Object* Runtime_GetFrameDetails(Arguments args) {
5006 HandleScope scope; 5019 HandleScope scope;
5007 ASSERT(args.length() == 2); 5020 ASSERT(args.length() == 2);
5008 5021
5009 // Check arguments. 5022 // Check arguments.
5010 Object* check = Runtime_CheckExecutionState(args); 5023 Object* check = Runtime_CheckExecutionState(args);
5011 if (check->IsFailure()) return check; 5024 if (check->IsFailure()) return check;
5012 CONVERT_NUMBER_CHECKED(int, index, Int32, args[1]); 5025 CONVERT_NUMBER_CHECKED(int, index, Int32, args[1]);
5013 5026
5014 // Find the relevant frame with the requested index. 5027 // Find the relevant frame with the requested index.
5015 StackFrame::Id id = Top::break_frame_id(); 5028 StackFrame::Id id = Debug::break_frame_id();
5016 if (id == StackFrame::NO_ID) { 5029 if (id == StackFrame::NO_ID) {
5017 // If there are no JavaScript stack frames return undefined. 5030 // If there are no JavaScript stack frames return undefined.
5018 return Heap::undefined_value(); 5031 return Heap::undefined_value();
5019 } 5032 }
5020 int count = 0; 5033 int count = 0;
5021 JavaScriptFrameIterator it(id); 5034 JavaScriptFrameIterator it(id);
5022 for (; !it.done(); it.Advance()) { 5035 for (; !it.done(); it.Advance()) {
5023 if (count == index) break; 5036 if (count == index) break;
5024 count++; 5037 count++;
5025 } 5038 }
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6118 } else { 6131 } else {
6119 // Handle last resort GC and make sure to allow future allocations 6132 // Handle last resort GC and make sure to allow future allocations
6120 // to grow the heap without causing GCs (if possible). 6133 // to grow the heap without causing GCs (if possible).
6121 Counters::gc_last_resort_from_js.Increment(); 6134 Counters::gc_last_resort_from_js.Increment();
6122 Heap::CollectAllGarbage(); 6135 Heap::CollectAllGarbage();
6123 } 6136 }
6124 } 6137 }
6125 6138
6126 6139
6127 } } // namespace v8::internal 6140 } } // namespace v8::internal
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