1 // Copyright 2006-2008 the V8 project authors. All rights reserved. 2 // Redistribution and use in source and binary forms, with or without 3 // modification, are permitted provided that the following conditions are 4 // met: 5 // 6 // * Redistributions of source code must retain the above copyright 7 // notice, this list of conditions and the following disclaimer. 8 // * Redistributions in binary form must reproduce the above 9 // copyright notice, this list of conditions and the following 10 // disclaimer in the documentation and/or other materials provided 11 // with the distribution. 12 // * Neither the name of Google Inc. nor the names of its 13 // contributors may be used to endorse or promote products derived 14 // from this software without specific prior written permission. 15 // 16 // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 17 // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 18 // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 19 // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 20 // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 21 // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 22 // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 23 // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 24 // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 25 // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 26 // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 27 28 #include "v8.h" 29 30 #include "bootstrapper.h" 31 #include "debug.h" 32 #include "scopeinfo.h" 33 34 namespace v8 { 35 namespace internal { 36 37 JSBuiltinsObject* Context::builtins() { 38 GlobalObject* object = global(); 39 if (object->IsJSGlobalObject()) { 40 return JSGlobalObject::cast(object)->builtins(); 41 } else { 42 ASSERT(object->IsJSBuiltinsObject()); 43 return JSBuiltinsObject::cast(object); 44 } 45 } 46 47 48 Context* Context::global_context() { 49 // Fast case: the global object for this context has been set. In 50 // that case, the global object has a direct pointer to the global 51 // context. 52 if (global()->IsGlobalObject()) { 53 return global()->global_context(); 54 } 55 56 // During bootstrapping, the global object might not be set and we 57 // have to search the context chain to find the global context. 58 ASSERT(Isolate::Current()->bootstrapper()->IsActive()); 59 Context* current = this; 60 while (!current->IsGlobalContext()) { 61 JSFunction* closure = JSFunction::cast(current->closure()); 62 current = Context::cast(closure->context()); 63 } 64 return current; 65 } 66 67 68 JSObject* Context::global_proxy() { 69 return global_context()->global_proxy_object(); 70 } 71 72 void Context::set_global_proxy(JSObject* object) { 73 global_context()->set_global_proxy_object(object); 74 } 75 76 77 Handle<Object> Context::Lookup(Handle<String> name, ContextLookupFlags flags, 78 int* index_, PropertyAttributes* attributes) { 79 Isolate* isolate = GetIsolate(); 80 Handle<Context> context(this, isolate); 81 82 bool follow_context_chain = (flags & FOLLOW_CONTEXT_CHAIN) != 0; 83 *index_ = -1; 84 *attributes = ABSENT; 85 86 if (FLAG_trace_contexts) { 87 PrintF("Context::Lookup("); 88 name->ShortPrint(); 89 PrintF(")\n"); 90 } 91 92 do { 93 if (FLAG_trace_contexts) { 94 PrintF(" - looking in context %p", reinterpret_cast<void*>(*context)); 95 if (context->IsGlobalContext()) PrintF(" (global context)"); 96 PrintF("\n"); 97 } 98 99 // check extension/with object 100 if (context->has_extension()) { 101 Handle<JSObject> extension = Handle<JSObject>(context->extension(), 102 isolate); 103 // Context extension objects needs to behave as if they have no 104 // prototype. So even if we want to follow prototype chains, we 105 // need to only do a local lookup for context extension objects. 106 if ((flags & FOLLOW_PROTOTYPE_CHAIN) == 0 || 107 extension->IsJSContextExtensionObject()) { 108 *attributes = extension->GetLocalPropertyAttribute(*name); 109 } else { 110 *attributes = extension->GetPropertyAttribute(*name); 111 } 112 if (*attributes != ABSENT) { 113 // property found 114 if (FLAG_trace_contexts) { 115 PrintF("=> found property in context object %p\n", 116 reinterpret_cast<void*>(*extension)); 117 } 118 return extension; 119 } 120 } 121 122 if (context->is_function_context()) { 123 // we have context-local slots 124 125 // check non-parameter locals in context 126 Handle<SerializedScopeInfo> scope_info( 127 context->closure()->shared()->scope_info(), isolate); 128 Variable::Mode mode; 129 int index = scope_info->ContextSlotIndex(*name, &mode); 130 ASSERT(index < 0 || index >= MIN_CONTEXT_SLOTS); 131 if (index >= 0) { 132 // slot found 133 if (FLAG_trace_contexts) { 134 PrintF("=> found local in context slot %d (mode = %d)\n", 135 index, mode); 136 } 137 *index_ = index; 138 // Note: Fixed context slots are statically allocated by the compiler. 139 // Statically allocated variables always have a statically known mode, 140 // which is the mode with which they were declared when added to the 141 // scope. Thus, the DYNAMIC mode (which corresponds to dynamically 142 // declared variables that were introduced through declaration nodes) 143 // must not appear here. 144 switch (mode) { 145 case Variable::INTERNAL: // fall through 146 case Variable::VAR: *attributes = NONE; break; 147 case Variable::CONST: *attributes = READ_ONLY; break; 148 case Variable::DYNAMIC: UNREACHABLE(); break; 149 case Variable::DYNAMIC_GLOBAL: UNREACHABLE(); break; 150 case Variable::DYNAMIC_LOCAL: UNREACHABLE(); break; 151 case Variable::TEMPORARY: UNREACHABLE(); break; 152 } 153 return context; 154 } 155 156 // check parameter locals in context 157 int param_index = scope_info->ParameterIndex(*name); 158 if (param_index >= 0) { 159 // slot found. 160 int index = scope_info->ContextSlotIndex( 161 isolate->heap()->arguments_shadow_symbol(), NULL); 162 ASSERT(index >= 0); // arguments must exist and be in the heap context 163 Handle<JSObject> arguments(JSObject::cast(context->get(index)), 164 isolate); 165 ASSERT(arguments->HasLocalProperty(isolate->heap()->length_symbol())); 166 if (FLAG_trace_contexts) { 167 PrintF("=> found parameter %d in arguments object\n", param_index); 168 } 169 *index_ = param_index; 170 *attributes = NONE; 171 return arguments; 172 } 173 174 // check intermediate context (holding only the function name variable) 175 if (follow_context_chain) { 176 int index = scope_info->FunctionContextSlotIndex(*name); 177 if (index >= 0) { 178 // slot found 179 if (FLAG_trace_contexts) { 180 PrintF("=> found intermediate function in context slot %d\n", 181 index); 182 } 183 *index_ = index; 184 *attributes = READ_ONLY; 185 return context; 186 } 187 } 188 } 189 190 // proceed with enclosing context 191 if (context->IsGlobalContext()) { 192 follow_context_chain = false; 193 } else if (context->is_function_context()) { 194 context = Handle<Context>(Context::cast(context->closure()->context()), 195 isolate); 196 } else { 197 context = Handle<Context>(context->previous(), isolate); 198 } 199 } while (follow_context_chain); 200 201 // slot not found 202 if (FLAG_trace_contexts) { 203 PrintF("=> no property/slot found\n"); 204 } 205 return Handle<Object>::null(); 206 } 207 208 209 bool Context::GlobalIfNotShadowedByEval(Handle<String> name) { 210 Context* context = this; 211 212 // Check that there is no local with the given name in contexts 213 // before the global context and check that there are no context 214 // extension objects (conservative check for with statements). 215 while (!context->IsGlobalContext()) { 216 // Check if the context is a potentially a with context. 217 if (context->has_extension()) return false; 218 219 // Not a with context so it must be a function context. 220 ASSERT(context->is_function_context()); 221 222 // Check non-parameter locals. 223 Handle<SerializedScopeInfo> scope_info( 224 context->closure()->shared()->scope_info()); 225 Variable::Mode mode; 226 int index = scope_info->ContextSlotIndex(*name, &mode); 227 ASSERT(index < 0 || index >= MIN_CONTEXT_SLOTS); 228 if (index >= 0) return false; 229 230 // Check parameter locals. 231 int param_index = scope_info->ParameterIndex(*name); 232 if (param_index >= 0) return false; 233 234 // Check context only holding the function name variable. 235 index = scope_info->FunctionContextSlotIndex(*name); 236 if (index >= 0) return false; 237 context = Context::cast(context->closure()->context()); 238 } 239 240 // No local or potential with statement found so the variable is 241 // global unless it is shadowed by an eval-introduced variable. 242 return true; 243 } 244 245 246 void Context::AddOptimizedFunction(JSFunction* function) { 247 ASSERT(IsGlobalContext()); 248 #ifdef DEBUG 249 Object* element = get(OPTIMIZED_FUNCTIONS_LIST); 250 while (!element->IsUndefined()) { 251 CHECK(element != function); 252 element = JSFunction::cast(element)->next_function_link(); 253 } 254 255 CHECK(function->next_function_link()->IsUndefined()); 256 257 // Check that the context belongs to the weak global contexts list. 258 bool found = false; 259 Object* context = GetHeap()->global_contexts_list(); 260 while (!context->IsUndefined()) { 261 if (context == this) { 262 found = true; 263 break; 264 } 265 context = Context::cast(context)->get(Context::NEXT_CONTEXT_LINK); 266 } 267 CHECK(found); 268 #endif 269 function->set_next_function_link(get(OPTIMIZED_FUNCTIONS_LIST)); 270 set(OPTIMIZED_FUNCTIONS_LIST, function); 271 } 272 273 274 void Context::RemoveOptimizedFunction(JSFunction* function) { 275 ASSERT(IsGlobalContext()); 276 Object* element = get(OPTIMIZED_FUNCTIONS_LIST); 277 JSFunction* prev = NULL; 278 while (!element->IsUndefined()) { 279 JSFunction* element_function = JSFunction::cast(element); 280 ASSERT(element_function->next_function_link()->IsUndefined() || 281 element_function->next_function_link()->IsJSFunction()); 282 if (element_function == function) { 283 if (prev == NULL) { 284 set(OPTIMIZED_FUNCTIONS_LIST, element_function->next_function_link()); 285 } else { 286 prev->set_next_function_link(element_function->next_function_link()); 287 } 288 element_function->set_next_function_link(GetHeap()->undefined_value()); 289 return; 290 } 291 prev = element_function; 292 element = element_function->next_function_link(); 293 } 294 UNREACHABLE(); 295 } 296 297 298 Object* Context::OptimizedFunctionsListHead() { 299 ASSERT(IsGlobalContext()); 300 return get(OPTIMIZED_FUNCTIONS_LIST); 301 } 302 303 304 void Context::ClearOptimizedFunctions() { 305 set(OPTIMIZED_FUNCTIONS_LIST, GetHeap()->undefined_value()); 306 } 307 308 309 #ifdef DEBUG 310 bool Context::IsBootstrappingOrContext(Object* object) { 311 // During bootstrapping we allow all objects to pass as 312 // contexts. This is necessary to fix circular dependencies. 313 return Isolate::Current()->bootstrapper()->IsActive() || object->IsContext(); 314 } 315 316 317 bool Context::IsBootstrappingOrGlobalObject(Object* object) { 318 // During bootstrapping we allow all objects to pass as global 319 // objects. This is necessary to fix circular dependencies. 320 Isolate* isolate = Isolate::Current(); 321 return isolate->heap()->gc_state() != Heap::NOT_IN_GC || 322 isolate->bootstrapper()->IsActive() || 323 object->IsGlobalObject(); 324 } 325 #endif 326 327 } } // namespace v8::internal 328