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| 1 // Copyright 2010 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 "codegen.h" |
| 31 #include "deoptimizer.h" |
| 32 #include "full-codegen.h" |
| 33 #include "safepoint-table.h" |
| 34 |
| 35 namespace v8 { |
| 36 namespace internal { |
| 37 |
| 38 |
| 39 int Deoptimizer::table_entry_size_ = 10; |
| 40 |
| 41 void Deoptimizer::DeoptimizeFunction(JSFunction* function) { |
| 42 AssertNoAllocation no_allocation; |
| 43 |
| 44 if (!function->IsOptimized()) return; |
| 45 |
| 46 // Get the optimized code. |
| 47 Code* code = function->code(); |
| 48 |
| 49 // Invalidate the relocation information, as it will become invalid by the |
| 50 // code patching below, and is not needed any more. |
| 51 code->InvalidateRelocation(); |
| 52 |
| 53 // For each return after a safepoint insert a absolute call to the |
| 54 // corresponding deoptimization entry. |
| 55 unsigned last_pc_offset = 0; |
| 56 SafepointTable table(function->code()); |
| 57 for (unsigned i = 0; i < table.length(); i++) { |
| 58 unsigned pc_offset = table.GetPcOffset(i); |
| 59 int deoptimization_index = table.GetDeoptimizationIndex(i); |
| 60 int gap_code_size = table.GetGapCodeSize(i); |
| 61 #ifdef DEBUG |
| 62 // Destroy the code which is not supposed to run again. |
| 63 unsigned instructions = pc_offset - last_pc_offset; |
| 64 CodePatcher destroyer(code->instruction_start() + last_pc_offset, |
| 65 instructions); |
| 66 for (unsigned i = 0; i < instructions; i++) { |
| 67 destroyer.masm()->int3(); |
| 68 } |
| 69 #endif |
| 70 last_pc_offset = pc_offset; |
| 71 if (deoptimization_index != Safepoint::kNoDeoptimizationIndex) { |
| 72 CodePatcher patcher( |
| 73 code->instruction_start() + pc_offset + gap_code_size, |
| 74 Assembler::kCallInstructionLength); |
| 75 patcher.masm()->call(GetDeoptimizationEntry(deoptimization_index, LAZY), |
| 76 RelocInfo::NONE); |
| 77 last_pc_offset += gap_code_size + Assembler::kCallInstructionLength; |
| 78 } |
| 79 } |
| 80 #ifdef DEBUG |
| 81 // Destroy the code which is not supposed to run again. |
| 82 unsigned instructions = code->safepoint_table_start() - last_pc_offset; |
| 83 CodePatcher destroyer(code->instruction_start() + last_pc_offset, |
| 84 instructions); |
| 85 for (unsigned i = 0; i < instructions; i++) { |
| 86 destroyer.masm()->int3(); |
| 87 } |
| 88 #endif |
| 89 |
| 90 // Add the deoptimizing code to the list. |
| 91 DeoptimizingCodeListNode* node = new DeoptimizingCodeListNode(code); |
| 92 DeoptimizerData* data = Isolate::Current()->deoptimizer_data(); |
| 93 node->set_next(data->deoptimizing_code_list_); |
| 94 data->deoptimizing_code_list_ = node; |
| 95 |
| 96 // Set the code for the function to non-optimized version. |
| 97 function->ReplaceCode(function->shared()->code()); |
| 98 |
| 99 if (FLAG_trace_deopt) { |
| 100 PrintF("[forced deoptimization: "); |
| 101 function->PrintName(); |
| 102 PrintF(" / %x]\n", reinterpret_cast<uint32_t>(function)); |
| 103 } |
| 104 } |
| 105 |
| 106 |
| 107 void Deoptimizer::PatchStackCheckCode(RelocInfo* rinfo, |
| 108 Code* replacement_code) { |
| 109 // The stack check code matches the pattern (on ia32, for example): |
| 110 // |
| 111 // cmp esp, <limit> |
| 112 // jae ok |
| 113 // call <stack guard> |
| 114 // ok: ... |
| 115 // |
| 116 // We will patch the code to: |
| 117 // |
| 118 // cmp esp, <limit> ;; Not changed |
| 119 // nop |
| 120 // nop |
| 121 // call <on-stack replacment> |
| 122 // ok: |
| 123 Address call_target_address = rinfo->pc(); |
| 124 ASSERT(*(call_target_address - 3) == 0x73 && // jae |
| 125 *(call_target_address - 2) == 0x05 && // offset |
| 126 *(call_target_address - 1) == 0xe8); // call |
| 127 *(call_target_address - 3) = 0x90; // nop |
| 128 *(call_target_address - 2) = 0x90; // nop |
| 129 rinfo->set_target_address(replacement_code->entry()); |
| 130 } |
| 131 |
| 132 |
| 133 void Deoptimizer::RevertStackCheckCode(RelocInfo* rinfo, Code* check_code) { |
| 134 Address call_target_address = rinfo->pc(); |
| 135 ASSERT(*(call_target_address - 3) == 0x90 && // nop |
| 136 *(call_target_address - 2) == 0x90 && // nop |
| 137 *(call_target_address - 1) == 0xe8); // call |
| 138 *(call_target_address - 3) = 0x73; // jae |
| 139 *(call_target_address - 2) = 0x05; // offset |
| 140 rinfo->set_target_address(check_code->entry()); |
| 141 } |
| 142 |
| 143 |
| 144 static int LookupBailoutId(DeoptimizationInputData* data, unsigned ast_id) { |
| 145 ByteArray* translations = data->TranslationByteArray(); |
| 146 int length = data->DeoptCount(); |
| 147 for (int i = 0; i < length; i++) { |
| 148 if (static_cast<unsigned>(data->AstId(i)->value()) == ast_id) { |
| 149 TranslationIterator it(translations, data->TranslationIndex(i)->value()); |
| 150 int value = it.Next(); |
| 151 ASSERT(Translation::BEGIN == static_cast<Translation::Opcode>(value)); |
| 152 // Read the number of frames. |
| 153 value = it.Next(); |
| 154 if (value == 1) return i; |
| 155 } |
| 156 } |
| 157 UNREACHABLE(); |
| 158 return -1; |
| 159 } |
| 160 |
| 161 |
| 162 void Deoptimizer::DoComputeOsrOutputFrame() { |
| 163 DeoptimizationInputData* data = DeoptimizationInputData::cast( |
| 164 optimized_code_->deoptimization_data()); |
| 165 unsigned ast_id = data->OsrAstId()->value(); |
| 166 // TODO(kasperl): This should not be the bailout_id_. It should be |
| 167 // the ast id. Confusing. |
| 168 ASSERT(bailout_id_ == ast_id); |
| 169 |
| 170 int bailout_id = LookupBailoutId(data, ast_id); |
| 171 unsigned translation_index = data->TranslationIndex(bailout_id)->value(); |
| 172 ByteArray* translations = data->TranslationByteArray(); |
| 173 |
| 174 TranslationIterator iterator(translations, translation_index); |
| 175 Translation::Opcode opcode = |
| 176 static_cast<Translation::Opcode>(iterator.Next()); |
| 177 ASSERT(Translation::BEGIN == opcode); |
| 178 USE(opcode); |
| 179 int count = iterator.Next(); |
| 180 ASSERT(count == 1); |
| 181 USE(count); |
| 182 |
| 183 opcode = static_cast<Translation::Opcode>(iterator.Next()); |
| 184 USE(opcode); |
| 185 ASSERT(Translation::FRAME == opcode); |
| 186 unsigned node_id = iterator.Next(); |
| 187 USE(node_id); |
| 188 ASSERT(node_id == ast_id); |
| 189 JSFunction* function = JSFunction::cast(ComputeLiteral(iterator.Next())); |
| 190 USE(function); |
| 191 ASSERT(function == function_); |
| 192 unsigned height = iterator.Next(); |
| 193 unsigned height_in_bytes = height * kPointerSize; |
| 194 USE(height_in_bytes); |
| 195 |
| 196 unsigned fixed_size = ComputeFixedSize(function_); |
| 197 unsigned input_frame_size = input_->GetFrameSize(); |
| 198 ASSERT(fixed_size + height_in_bytes == input_frame_size); |
| 199 |
| 200 unsigned stack_slot_size = optimized_code_->stack_slots() * kPointerSize; |
| 201 unsigned outgoing_height = data->ArgumentsStackHeight(bailout_id)->value(); |
| 202 unsigned outgoing_size = outgoing_height * kPointerSize; |
| 203 unsigned output_frame_size = fixed_size + stack_slot_size + outgoing_size; |
| 204 ASSERT(outgoing_size == 0); // OSR does not happen in the middle of a call. |
| 205 |
| 206 if (FLAG_trace_osr) { |
| 207 PrintF("[on-stack replacement: begin 0x%08" V8PRIxPTR " ", |
| 208 reinterpret_cast<intptr_t>(function_)); |
| 209 function_->PrintName(); |
| 210 PrintF(" => node=%u, frame=%d->%d]\n", |
| 211 ast_id, |
| 212 input_frame_size, |
| 213 output_frame_size); |
| 214 } |
| 215 |
| 216 // There's only one output frame in the OSR case. |
| 217 output_count_ = 1; |
| 218 output_ = new FrameDescription*[1]; |
| 219 output_[0] = new(output_frame_size) FrameDescription( |
| 220 output_frame_size, function_); |
| 221 |
| 222 // Clear the incoming parameters in the optimized frame to avoid |
| 223 // confusing the garbage collector. |
| 224 unsigned output_offset = output_frame_size - kPointerSize; |
| 225 int parameter_count = function_->shared()->formal_parameter_count() + 1; |
| 226 for (int i = 0; i < parameter_count; ++i) { |
| 227 output_[0]->SetFrameSlot(output_offset, 0); |
| 228 output_offset -= kPointerSize; |
| 229 } |
| 230 |
| 231 // Translate the incoming parameters. This may overwrite some of the |
| 232 // incoming argument slots we've just cleared. |
| 233 int input_offset = input_frame_size - kPointerSize; |
| 234 bool ok = true; |
| 235 int limit = input_offset - (parameter_count * kPointerSize); |
| 236 while (ok && input_offset > limit) { |
| 237 ok = DoOsrTranslateCommand(&iterator, &input_offset); |
| 238 } |
| 239 |
| 240 // There are no translation commands for the caller's pc and fp, the |
| 241 // context, and the function. Set them up explicitly. |
| 242 for (int i = 0; ok && i < 4; i++) { |
| 243 uint32_t input_value = input_->GetFrameSlot(input_offset); |
| 244 if (FLAG_trace_osr) { |
| 245 PrintF(" [esp + %d] <- 0x%08x ; [esp + %d] (fixed part)\n", |
| 246 output_offset, |
| 247 input_value, |
| 248 input_offset); |
| 249 } |
| 250 output_[0]->SetFrameSlot(output_offset, input_->GetFrameSlot(input_offset)); |
| 251 input_offset -= kPointerSize; |
| 252 output_offset -= kPointerSize; |
| 253 } |
| 254 |
| 255 // Translate the rest of the frame. |
| 256 while (ok && input_offset >= 0) { |
| 257 ok = DoOsrTranslateCommand(&iterator, &input_offset); |
| 258 } |
| 259 |
| 260 // If translation of any command failed, continue using the input frame. |
| 261 if (!ok) { |
| 262 delete output_[0]; |
| 263 output_[0] = input_; |
| 264 output_[0]->SetPc(reinterpret_cast<uint32_t>(from_)); |
| 265 } else { |
| 266 // Setup the frame pointer and the context pointer. |
| 267 output_[0]->SetRegister(ebp.code(), input_->GetRegister(ebp.code())); |
| 268 output_[0]->SetRegister(esi.code(), input_->GetRegister(esi.code())); |
| 269 |
| 270 unsigned pc_offset = data->OsrPcOffset()->value(); |
| 271 uint32_t pc = reinterpret_cast<uint32_t>( |
| 272 optimized_code_->entry() + pc_offset); |
| 273 output_[0]->SetPc(pc); |
| 274 } |
| 275 Code* continuation = |
| 276 Isolate::Current()->builtins()->builtin(Builtins::NotifyOSR); |
| 277 output_[0]->SetContinuation( |
| 278 reinterpret_cast<uint32_t>(continuation->entry())); |
| 279 |
| 280 if (FLAG_trace_osr) { |
| 281 PrintF("[on-stack replacement translation %s: 0x%08" V8PRIxPTR " ", |
| 282 ok ? "finished" : "aborted", |
| 283 reinterpret_cast<intptr_t>(function)); |
| 284 function->PrintName(); |
| 285 PrintF(" => pc=0x%0x]\n", output_[0]->GetPc()); |
| 286 } |
| 287 } |
| 288 |
| 289 |
| 290 void Deoptimizer::DoComputeFrame(TranslationIterator* iterator, |
| 291 int frame_index) { |
| 292 // Read the ast node id, function, and frame height for this output frame. |
| 293 Translation::Opcode opcode = |
| 294 static_cast<Translation::Opcode>(iterator->Next()); |
| 295 USE(opcode); |
| 296 ASSERT(Translation::FRAME == opcode); |
| 297 int node_id = iterator->Next(); |
| 298 JSFunction* function = JSFunction::cast(ComputeLiteral(iterator->Next())); |
| 299 unsigned height = iterator->Next(); |
| 300 unsigned height_in_bytes = height * kPointerSize; |
| 301 if (FLAG_trace_deopt) { |
| 302 PrintF(" translating "); |
| 303 function->PrintName(); |
| 304 PrintF(" => node=%d, height=%d\n", node_id, height_in_bytes); |
| 305 } |
| 306 |
| 307 // The 'fixed' part of the frame consists of the incoming parameters and |
| 308 // the part described by JavaScriptFrameConstants. |
| 309 unsigned fixed_frame_size = ComputeFixedSize(function); |
| 310 unsigned input_frame_size = input_->GetFrameSize(); |
| 311 unsigned output_frame_size = height_in_bytes + fixed_frame_size; |
| 312 |
| 313 // Allocate and store the output frame description. |
| 314 FrameDescription* output_frame = |
| 315 new(output_frame_size) FrameDescription(output_frame_size, function); |
| 316 |
| 317 bool is_bottommost = (0 == frame_index); |
| 318 bool is_topmost = (output_count_ - 1 == frame_index); |
| 319 ASSERT(frame_index >= 0 && frame_index < output_count_); |
| 320 ASSERT(output_[frame_index] == NULL); |
| 321 output_[frame_index] = output_frame; |
| 322 |
| 323 // The top address for the bottommost output frame can be computed from |
| 324 // the input frame pointer and the output frame's height. For all |
| 325 // subsequent output frames, it can be computed from the previous one's |
| 326 // top address and the current frame's size. |
| 327 uint32_t top_address; |
| 328 if (is_bottommost) { |
| 329 // 2 = context and function in the frame. |
| 330 top_address = |
| 331 input_->GetRegister(ebp.code()) - (2 * kPointerSize) - height_in_bytes; |
| 332 } else { |
| 333 top_address = output_[frame_index - 1]->GetTop() - output_frame_size; |
| 334 } |
| 335 output_frame->SetTop(top_address); |
| 336 |
| 337 // Compute the incoming parameter translation. |
| 338 int parameter_count = function->shared()->formal_parameter_count() + 1; |
| 339 unsigned output_offset = output_frame_size; |
| 340 unsigned input_offset = input_frame_size; |
| 341 for (int i = 0; i < parameter_count; ++i) { |
| 342 output_offset -= kPointerSize; |
| 343 DoTranslateCommand(iterator, frame_index, output_offset); |
| 344 } |
| 345 input_offset -= (parameter_count * kPointerSize); |
| 346 |
| 347 // There are no translation commands for the caller's pc and fp, the |
| 348 // context, and the function. Synthesize their values and set them up |
| 349 // explicitly. |
| 350 // |
| 351 // The caller's pc for the bottommost output frame is the same as in the |
| 352 // input frame. For all subsequent output frames, it can be read from the |
| 353 // previous one. This frame's pc can be computed from the non-optimized |
| 354 // function code and AST id of the bailout. |
| 355 output_offset -= kPointerSize; |
| 356 input_offset -= kPointerSize; |
| 357 uint32_t value; |
| 358 if (is_bottommost) { |
| 359 value = input_->GetFrameSlot(input_offset); |
| 360 } else { |
| 361 value = output_[frame_index - 1]->GetPc(); |
| 362 } |
| 363 output_frame->SetFrameSlot(output_offset, value); |
| 364 if (FLAG_trace_deopt) { |
| 365 PrintF(" 0x%08x: [top + %d] <- 0x%08x ; caller's pc\n", |
| 366 top_address + output_offset, output_offset, value); |
| 367 } |
| 368 |
| 369 // The caller's frame pointer for the bottommost output frame is the same |
| 370 // as in the input frame. For all subsequent output frames, it can be |
| 371 // read from the previous one. Also compute and set this frame's frame |
| 372 // pointer. |
| 373 output_offset -= kPointerSize; |
| 374 input_offset -= kPointerSize; |
| 375 if (is_bottommost) { |
| 376 value = input_->GetFrameSlot(input_offset); |
| 377 } else { |
| 378 value = output_[frame_index - 1]->GetFp(); |
| 379 } |
| 380 output_frame->SetFrameSlot(output_offset, value); |
| 381 unsigned fp_value = top_address + output_offset; |
| 382 ASSERT(!is_bottommost || input_->GetRegister(ebp.code()) == fp_value); |
| 383 output_frame->SetFp(fp_value); |
| 384 if (is_topmost) output_frame->SetRegister(ebp.code(), fp_value); |
| 385 if (FLAG_trace_deopt) { |
| 386 PrintF(" 0x%08x: [top + %d] <- 0x%08x ; caller's fp\n", |
| 387 fp_value, output_offset, value); |
| 388 } |
| 389 |
| 390 // The context can be gotten from the function so long as we don't |
| 391 // optimize functions that need local contexts. |
| 392 output_offset -= kPointerSize; |
| 393 input_offset -= kPointerSize; |
| 394 value = reinterpret_cast<uint32_t>(function->context()); |
| 395 // The context for the bottommost output frame should also agree with the |
| 396 // input frame. |
| 397 ASSERT(!is_bottommost || input_->GetFrameSlot(input_offset) == value); |
| 398 output_frame->SetFrameSlot(output_offset, value); |
| 399 if (is_topmost) output_frame->SetRegister(esi.code(), value); |
| 400 if (FLAG_trace_deopt) { |
| 401 PrintF(" 0x%08x: [top + %d] <- 0x%08x ; context\n", |
| 402 top_address + output_offset, output_offset, value); |
| 403 } |
| 404 |
| 405 // The function was mentioned explicitly in the BEGIN_FRAME. |
| 406 output_offset -= kPointerSize; |
| 407 input_offset -= kPointerSize; |
| 408 value = reinterpret_cast<uint32_t>(function); |
| 409 // The function for the bottommost output frame should also agree with the |
| 410 // input frame. |
| 411 ASSERT(!is_bottommost || input_->GetFrameSlot(input_offset) == value); |
| 412 output_frame->SetFrameSlot(output_offset, value); |
| 413 if (FLAG_trace_deopt) { |
| 414 PrintF(" 0x%08x: [top + %d] <- 0x%08x ; function\n", |
| 415 top_address + output_offset, output_offset, value); |
| 416 } |
| 417 |
| 418 // Translate the rest of the frame. |
| 419 for (unsigned i = 0; i < height; ++i) { |
| 420 output_offset -= kPointerSize; |
| 421 DoTranslateCommand(iterator, frame_index, output_offset); |
| 422 } |
| 423 ASSERT(0 == output_offset); |
| 424 |
| 425 // Compute this frame's PC, state, and continuation. |
| 426 Code* non_optimized_code = function->shared()->code(); |
| 427 FixedArray* raw_data = non_optimized_code->deoptimization_data(); |
| 428 DeoptimizationOutputData* data = DeoptimizationOutputData::cast(raw_data); |
| 429 Address start = non_optimized_code->instruction_start(); |
| 430 unsigned pc_and_state = GetOutputInfo(data, node_id, function->shared()); |
| 431 unsigned pc_offset = FullCodeGenerator::PcField::decode(pc_and_state); |
| 432 uint32_t pc_value = reinterpret_cast<uint32_t>(start + pc_offset); |
| 433 output_frame->SetPc(pc_value); |
| 434 |
| 435 FullCodeGenerator::State state = |
| 436 FullCodeGenerator::StateField::decode(pc_and_state); |
| 437 output_frame->SetState(Smi::FromInt(state)); |
| 438 |
| 439 // Set the continuation for the topmost frame. |
| 440 if (is_topmost) { |
| 441 Builtins* builtins = isolate_->builtins(); |
| 442 Code* continuation = (bailout_type_ == EAGER) |
| 443 ? builtins->builtin(Builtins::NotifyDeoptimized) |
| 444 : builtins->builtin(Builtins::NotifyLazyDeoptimized); |
| 445 output_frame->SetContinuation( |
| 446 reinterpret_cast<uint32_t>(continuation->entry())); |
| 447 } |
| 448 |
| 449 if (output_count_ - 1 == frame_index) iterator->Done(); |
| 450 } |
| 451 |
| 452 |
| 453 #define __ masm()-> |
| 454 |
| 455 void Deoptimizer::EntryGenerator::Generate() { |
| 456 GeneratePrologue(); |
| 457 CpuFeatures::Scope scope(SSE2); |
| 458 |
| 459 // Save all general purpose registers before messing with them. |
| 460 const int kNumberOfRegisters = Register::kNumRegisters; |
| 461 |
| 462 const int kDoubleRegsSize = kDoubleSize * |
| 463 XMMRegister::kNumAllocatableRegisters; |
| 464 __ sub(Operand(esp), Immediate(kDoubleRegsSize)); |
| 465 for (int i = 0; i < XMMRegister::kNumAllocatableRegisters; ++i) { |
| 466 XMMRegister xmm_reg = XMMRegister::FromAllocationIndex(i); |
| 467 int offset = i * kDoubleSize; |
| 468 __ movdbl(Operand(esp, offset), xmm_reg); |
| 469 } |
| 470 |
| 471 __ pushad(); |
| 472 |
| 473 const int kSavedRegistersAreaSize = kNumberOfRegisters * kPointerSize + |
| 474 kDoubleRegsSize; |
| 475 |
| 476 // Get the bailout id from the stack. |
| 477 __ mov(ebx, Operand(esp, kSavedRegistersAreaSize)); |
| 478 |
| 479 // Get the address of the location in the code object if possible |
| 480 // and compute the fp-to-sp delta in register edx. |
| 481 if (type() == EAGER) { |
| 482 __ Set(ecx, Immediate(0)); |
| 483 __ lea(edx, Operand(esp, kSavedRegistersAreaSize + 1 * kPointerSize)); |
| 484 } else { |
| 485 __ mov(ecx, Operand(esp, kSavedRegistersAreaSize + 1 * kPointerSize)); |
| 486 __ lea(edx, Operand(esp, kSavedRegistersAreaSize + 2 * kPointerSize)); |
| 487 } |
| 488 __ sub(edx, Operand(ebp)); |
| 489 __ neg(edx); |
| 490 |
| 491 // Allocate a new deoptimizer object. |
| 492 __ PrepareCallCFunction(5, eax); |
| 493 __ mov(eax, Operand(ebp, JavaScriptFrameConstants::kFunctionOffset)); |
| 494 __ mov(Operand(esp, 0 * kPointerSize), eax); // Function. |
| 495 __ mov(Operand(esp, 1 * kPointerSize), Immediate(type())); // Bailout type. |
| 496 __ mov(Operand(esp, 2 * kPointerSize), ebx); // Bailout id. |
| 497 __ mov(Operand(esp, 3 * kPointerSize), ecx); // Code address or 0. |
| 498 __ mov(Operand(esp, 4 * kPointerSize), edx); // Fp-to-sp delta. |
| 499 __ CallCFunction(ExternalReference::new_deoptimizer_function(), 5); |
| 500 |
| 501 // Preserve deoptimizer object in register eax and get the input |
| 502 // frame descriptor pointer. |
| 503 __ mov(ebx, Operand(eax, Deoptimizer::input_offset())); |
| 504 |
| 505 // Fill in the input registers. |
| 506 for (int i = 0; i < kNumberOfRegisters; i++) { |
| 507 int offset = (i * kIntSize) + FrameDescription::registers_offset(); |
| 508 __ mov(ecx, Operand(esp, (kNumberOfRegisters - 1 - i) * kPointerSize)); |
| 509 __ mov(Operand(ebx, offset), ecx); |
| 510 } |
| 511 |
| 512 // Fill in the double input registers. |
| 513 int double_regs_offset = FrameDescription::double_registers_offset(); |
| 514 for (int i = 0; i < XMMRegister::kNumAllocatableRegisters; ++i) { |
| 515 int dst_offset = i * kDoubleSize + double_regs_offset; |
| 516 int src_offset = i * kDoubleSize + kNumberOfRegisters * kPointerSize; |
| 517 __ movdbl(xmm0, Operand(esp, src_offset)); |
| 518 __ movdbl(Operand(ebx, dst_offset), xmm0); |
| 519 } |
| 520 |
| 521 // Remove the bailout id and the general purpose registers from the stack. |
| 522 if (type() == EAGER) { |
| 523 __ add(Operand(esp), Immediate(kSavedRegistersAreaSize + kPointerSize)); |
| 524 } else { |
| 525 __ add(Operand(esp), Immediate(kSavedRegistersAreaSize + 2 * kPointerSize)); |
| 526 } |
| 527 |
| 528 // Compute a pointer to the unwinding limit in register ecx; that is |
| 529 // the first stack slot not part of the input frame. |
| 530 __ mov(ecx, Operand(ebx, FrameDescription::frame_size_offset())); |
| 531 __ add(ecx, Operand(esp)); |
| 532 |
| 533 // Unwind the stack down to - but not including - the unwinding |
| 534 // limit and copy the contents of the activation frame to the input |
| 535 // frame description. |
| 536 __ lea(edx, Operand(ebx, FrameDescription::frame_content_offset())); |
| 537 Label pop_loop; |
| 538 __ bind(&pop_loop); |
| 539 __ pop(Operand(edx, 0)); |
| 540 __ add(Operand(edx), Immediate(sizeof(uint32_t))); |
| 541 __ cmp(ecx, Operand(esp)); |
| 542 __ j(not_equal, &pop_loop); |
| 543 |
| 544 // Compute the output frame in the deoptimizer. |
| 545 __ push(eax); |
| 546 __ PrepareCallCFunction(1, ebx); |
| 547 __ mov(Operand(esp, 0 * kPointerSize), eax); |
| 548 __ CallCFunction(ExternalReference::compute_output_frames_function(), 1); |
| 549 __ pop(eax); |
| 550 |
| 551 // Replace the current frame with the output frames. |
| 552 Label outer_push_loop, inner_push_loop; |
| 553 // Outer loop state: eax = current FrameDescription**, edx = one past the |
| 554 // last FrameDescription**. |
| 555 __ mov(edx, Operand(eax, Deoptimizer::output_count_offset())); |
| 556 __ mov(eax, Operand(eax, Deoptimizer::output_offset())); |
| 557 __ lea(edx, Operand(eax, edx, times_4, 0)); |
| 558 __ bind(&outer_push_loop); |
| 559 // Inner loop state: ebx = current FrameDescription*, ecx = loop index. |
| 560 __ mov(ebx, Operand(eax, 0)); |
| 561 __ mov(ecx, Operand(ebx, FrameDescription::frame_size_offset())); |
| 562 __ bind(&inner_push_loop); |
| 563 __ sub(Operand(ecx), Immediate(sizeof(uint32_t))); |
| 564 __ push(Operand(ebx, ecx, times_1, FrameDescription::frame_content_offset())); |
| 565 __ test(ecx, Operand(ecx)); |
| 566 __ j(not_zero, &inner_push_loop); |
| 567 __ add(Operand(eax), Immediate(kPointerSize)); |
| 568 __ cmp(eax, Operand(edx)); |
| 569 __ j(below, &outer_push_loop); |
| 570 |
| 571 // In case of OSR, we have to restore the XMM registers. |
| 572 if (type() == OSR) { |
| 573 for (int i = 0; i < XMMRegister::kNumAllocatableRegisters; ++i) { |
| 574 XMMRegister xmm_reg = XMMRegister::FromAllocationIndex(i); |
| 575 int src_offset = i * kDoubleSize + double_regs_offset; |
| 576 __ movdbl(xmm_reg, Operand(ebx, src_offset)); |
| 577 } |
| 578 } |
| 579 |
| 580 // Push state, pc, and continuation from the last output frame. |
| 581 if (type() != OSR) { |
| 582 __ push(Operand(ebx, FrameDescription::state_offset())); |
| 583 } |
| 584 __ push(Operand(ebx, FrameDescription::pc_offset())); |
| 585 __ push(Operand(ebx, FrameDescription::continuation_offset())); |
| 586 |
| 587 |
| 588 // Push the registers from the last output frame. |
| 589 for (int i = 0; i < kNumberOfRegisters; i++) { |
| 590 int offset = (i * kIntSize) + FrameDescription::registers_offset(); |
| 591 __ push(Operand(ebx, offset)); |
| 592 } |
| 593 |
| 594 // Restore the registers from the stack. |
| 595 __ popad(); |
| 596 |
| 597 // Return to the continuation point. |
| 598 __ ret(0); |
| 599 } |
| 600 |
| 601 |
| 602 void Deoptimizer::TableEntryGenerator::GeneratePrologue() { |
| 603 // Create a sequence of deoptimization entries. |
| 604 Label done; |
| 605 for (int i = 0; i < count(); i++) { |
| 606 int start = masm()->pc_offset(); |
| 607 USE(start); |
| 608 __ push_imm32(i); |
| 609 __ jmp(&done); |
| 610 ASSERT(masm()->pc_offset() - start == table_entry_size_); |
| 611 } |
| 612 __ bind(&done); |
| 613 } |
| 614 |
| 615 #undef __ |
| 616 |
| 617 |
| 618 } } // namespace v8::internal |
| OLD | NEW |