1 // Copyright 2012 the V8 project authors. All rights reserved. 2 // Use of this source code is governed by a BSD-style license that can be 3 // found in the LICENSE file. 4 5 #ifndef V8_FRAMES_INL_H_ 6 #define V8_FRAMES_INL_H_ 7 8 #include "src/frames.h" 9 #include "src/isolate.h" 10 #include "src/v8memory.h" 11 12 #if V8_TARGET_ARCH_IA32 13 #include "src/ia32/frames-ia32.h" 14 #elif V8_TARGET_ARCH_X64 15 #include "src/x64/frames-x64.h" 16 #elif V8_TARGET_ARCH_ARM64 17 #include "src/arm64/frames-arm64.h" 18 #elif V8_TARGET_ARCH_ARM 19 #include "src/arm/frames-arm.h" 20 #elif V8_TARGET_ARCH_MIPS 21 #include "src/mips/frames-mips.h" 22 #elif V8_TARGET_ARCH_X87 23 #include "src/x87/frames-x87.h" 24 #else 25 #error Unsupported target architecture. 26 #endif 27 28 namespace v8 { 29 namespace internal { 30 31 32 inline Address StackHandler::address() const { 33 return reinterpret_cast<Address>(const_cast<StackHandler*>(this)); 34 } 35 36 37 inline StackHandler* StackHandler::next() const { 38 const int offset = StackHandlerConstants::kNextOffset; 39 return FromAddress(Memory::Address_at(address() + offset)); 40 } 41 42 43 inline bool StackHandler::includes(Address address) const { 44 Address start = this->address(); 45 Address end = start + StackHandlerConstants::kSize; 46 return start <= address && address <= end; 47 } 48 49 50 inline void StackHandler::Iterate(ObjectVisitor* v, Code* holder) const { 51 v->VisitPointer(context_address()); 52 v->VisitPointer(code_address()); 53 } 54 55 56 inline StackHandler* StackHandler::FromAddress(Address address) { 57 return reinterpret_cast<StackHandler*>(address); 58 } 59 60 61 inline bool StackHandler::is_js_entry() const { 62 return kind() == JS_ENTRY; 63 } 64 65 66 inline bool StackHandler::is_catch() const { 67 return kind() == CATCH; 68 } 69 70 71 inline bool StackHandler::is_finally() const { 72 return kind() == FINALLY; 73 } 74 75 76 inline StackHandler::Kind StackHandler::kind() const { 77 const int offset = StackHandlerConstants::kStateOffset; 78 return KindField::decode(Memory::unsigned_at(address() + offset)); 79 } 80 81 82 inline unsigned StackHandler::index() const { 83 const int offset = StackHandlerConstants::kStateOffset; 84 return IndexField::decode(Memory::unsigned_at(address() + offset)); 85 } 86 87 88 inline Object** StackHandler::context_address() const { 89 const int offset = StackHandlerConstants::kContextOffset; 90 return reinterpret_cast<Object**>(address() + offset); 91 } 92 93 94 inline Object** StackHandler::code_address() const { 95 const int offset = StackHandlerConstants::kCodeOffset; 96 return reinterpret_cast<Object**>(address() + offset); 97 } 98 99 100 inline StackFrame::StackFrame(StackFrameIteratorBase* iterator) 101 : iterator_(iterator), isolate_(iterator_->isolate()) { 102 } 103 104 105 inline StackHandler* StackFrame::top_handler() const { 106 return iterator_->handler(); 107 } 108 109 110 inline Code* StackFrame::LookupCode() const { 111 return GetContainingCode(isolate(), pc()); 112 } 113 114 115 inline Code* StackFrame::GetContainingCode(Isolate* isolate, Address pc) { 116 return isolate->inner_pointer_to_code_cache()->GetCacheEntry(pc)->code; 117 } 118 119 120 inline Address* StackFrame::ResolveReturnAddressLocation(Address* pc_address) { 121 if (return_address_location_resolver_ == NULL) { 122 return pc_address; 123 } else { 124 return reinterpret_cast<Address*>( 125 return_address_location_resolver_( 126 reinterpret_cast<uintptr_t>(pc_address))); 127 } 128 } 129 130 131 inline EntryFrame::EntryFrame(StackFrameIteratorBase* iterator) 132 : StackFrame(iterator) { 133 } 134 135 136 inline EntryConstructFrame::EntryConstructFrame( 137 StackFrameIteratorBase* iterator) 138 : EntryFrame(iterator) { 139 } 140 141 142 inline ExitFrame::ExitFrame(StackFrameIteratorBase* iterator) 143 : StackFrame(iterator) { 144 } 145 146 147 inline StandardFrame::StandardFrame(StackFrameIteratorBase* iterator) 148 : StackFrame(iterator) { 149 } 150 151 152 inline Object* StandardFrame::GetExpression(int index) const { 153 return Memory::Object_at(GetExpressionAddress(index)); 154 } 155 156 157 inline void StandardFrame::SetExpression(int index, Object* value) { 158 Memory::Object_at(GetExpressionAddress(index)) = value; 159 } 160 161 162 inline Object* StandardFrame::context() const { 163 const int offset = StandardFrameConstants::kContextOffset; 164 return Memory::Object_at(fp() + offset); 165 } 166 167 168 inline Address StandardFrame::caller_fp() const { 169 return Memory::Address_at(fp() + StandardFrameConstants::kCallerFPOffset); 170 } 171 172 173 inline Address StandardFrame::caller_pc() const { 174 return Memory::Address_at(ComputePCAddress(fp())); 175 } 176 177 178 inline Address StandardFrame::ComputePCAddress(Address fp) { 179 return fp + StandardFrameConstants::kCallerPCOffset; 180 } 181 182 183 inline Address StandardFrame::ComputeConstantPoolAddress(Address fp) { 184 return fp + StandardFrameConstants::kConstantPoolOffset; 185 } 186 187 188 inline bool StandardFrame::IsArgumentsAdaptorFrame(Address fp) { 189 Object* marker = 190 Memory::Object_at(fp + StandardFrameConstants::kContextOffset); 191 return marker == Smi::FromInt(StackFrame::ARGUMENTS_ADAPTOR); 192 } 193 194 195 inline bool StandardFrame::IsConstructFrame(Address fp) { 196 Object* marker = 197 Memory::Object_at(fp + StandardFrameConstants::kMarkerOffset); 198 return marker == Smi::FromInt(StackFrame::CONSTRUCT); 199 } 200 201 202 inline JavaScriptFrame::JavaScriptFrame(StackFrameIteratorBase* iterator) 203 : StandardFrame(iterator) { 204 } 205 206 207 Address JavaScriptFrame::GetParameterSlot(int index) const { 208 int param_count = ComputeParametersCount(); 209 ASSERT(-1 <= index && index < param_count); 210 int parameter_offset = (param_count - index - 1) * kPointerSize; 211 return caller_sp() + parameter_offset; 212 } 213 214 215 Object* JavaScriptFrame::GetParameter(int index) const { 216 return Memory::Object_at(GetParameterSlot(index)); 217 } 218 219 220 inline Address JavaScriptFrame::GetOperandSlot(int index) const { 221 Address base = fp() + JavaScriptFrameConstants::kLocal0Offset; 222 ASSERT(IsAddressAligned(base, kPointerSize)); 223 ASSERT_EQ(type(), JAVA_SCRIPT); 224 ASSERT_LT(index, ComputeOperandsCount()); 225 ASSERT_LE(0, index); 226 // Operand stack grows down. 227 return base - index * kPointerSize; 228 } 229 230 231 inline Object* JavaScriptFrame::GetOperand(int index) const { 232 return Memory::Object_at(GetOperandSlot(index)); 233 } 234 235 236 inline int JavaScriptFrame::ComputeOperandsCount() const { 237 Address base = fp() + JavaScriptFrameConstants::kLocal0Offset; 238 // Base points to low address of first operand and stack grows down, so add 239 // kPointerSize to get the actual stack size. 240 intptr_t stack_size_in_bytes = (base + kPointerSize) - sp(); 241 ASSERT(IsAligned(stack_size_in_bytes, kPointerSize)); 242 ASSERT(type() == JAVA_SCRIPT); 243 ASSERT(stack_size_in_bytes >= 0); 244 return static_cast<int>(stack_size_in_bytes >> kPointerSizeLog2); 245 } 246 247 248 inline Object* JavaScriptFrame::receiver() const { 249 return GetParameter(-1); 250 } 251 252 253 inline void JavaScriptFrame::set_receiver(Object* value) { 254 Memory::Object_at(GetParameterSlot(-1)) = value; 255 } 256 257 258 inline bool JavaScriptFrame::has_adapted_arguments() const { 259 return IsArgumentsAdaptorFrame(caller_fp()); 260 } 261 262 263 inline JSFunction* JavaScriptFrame::function() const { 264 return JSFunction::cast(function_slot_object()); 265 } 266 267 268 inline StubFrame::StubFrame(StackFrameIteratorBase* iterator) 269 : StandardFrame(iterator) { 270 } 271 272 273 inline OptimizedFrame::OptimizedFrame(StackFrameIteratorBase* iterator) 274 : JavaScriptFrame(iterator) { 275 } 276 277 278 inline ArgumentsAdaptorFrame::ArgumentsAdaptorFrame( 279 StackFrameIteratorBase* iterator) : JavaScriptFrame(iterator) { 280 } 281 282 283 inline InternalFrame::InternalFrame(StackFrameIteratorBase* iterator) 284 : StandardFrame(iterator) { 285 } 286 287 288 inline StubFailureTrampolineFrame::StubFailureTrampolineFrame( 289 StackFrameIteratorBase* iterator) : StandardFrame(iterator) { 290 } 291 292 293 inline ConstructFrame::ConstructFrame(StackFrameIteratorBase* iterator) 294 : InternalFrame(iterator) { 295 } 296 297 298 inline JavaScriptFrameIterator::JavaScriptFrameIterator( 299 Isolate* isolate) 300 : iterator_(isolate) { 301 if (!done()) Advance(); 302 } 303 304 305 inline JavaScriptFrameIterator::JavaScriptFrameIterator( 306 Isolate* isolate, ThreadLocalTop* top) 307 : iterator_(isolate, top) { 308 if (!done()) Advance(); 309 } 310 311 312 inline JavaScriptFrame* JavaScriptFrameIterator::frame() const { 313 // TODO(1233797): The frame hierarchy needs to change. It's 314 // problematic that we can't use the safe-cast operator to cast to 315 // the JavaScript frame type, because we may encounter arguments 316 // adaptor frames. 317 StackFrame* frame = iterator_.frame(); 318 ASSERT(frame->is_java_script() || frame->is_arguments_adaptor()); 319 return static_cast<JavaScriptFrame*>(frame); 320 } 321 322 323 inline StackFrame* SafeStackFrameIterator::frame() const { 324 ASSERT(!done()); 325 ASSERT(frame_->is_java_script() || frame_->is_exit()); 326 return frame_; 327 } 328 329 330 } } // namespace v8::internal 331 332 #endif // V8_FRAMES_INL_H_ 333