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Issue 6529032: Merge 6168:6800 from bleeding_edge to experimental/gc branch. (Closed) Base URL: http://v8.googlecode.com/svn/branches/experimental/gc/
Patch Set: Created 9 years, 10 months ago
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1 // Copyright 2010 the V8 project authors. All rights reserved. 1 // Copyright 2011 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
11 // with the distribution. 11 // with the distribution.
(...skipping 18 matching lines...) Expand all
30 #include "codegen.h" 30 #include "codegen.h"
31 #include "deoptimizer.h" 31 #include "deoptimizer.h"
32 #include "full-codegen.h" 32 #include "full-codegen.h"
33 #include "safepoint-table.h" 33 #include "safepoint-table.h"
34 34
35 namespace v8 { 35 namespace v8 {
36 namespace internal { 36 namespace internal {
37 37
38 int Deoptimizer::table_entry_size_ = 16; 38 int Deoptimizer::table_entry_size_ = 16;
39 39
40
41 int Deoptimizer::patch_size() {
42 const int kCallInstructionSizeInWords = 3;
43 return kCallInstructionSizeInWords * Assembler::kInstrSize;
44 }
45
46
47
40 void Deoptimizer::DeoptimizeFunction(JSFunction* function) { 48 void Deoptimizer::DeoptimizeFunction(JSFunction* function) {
41 AssertNoAllocation no_allocation; 49 AssertNoAllocation no_allocation;
42 50
43 if (!function->IsOptimized()) return; 51 if (!function->IsOptimized()) return;
44 52
45 // Get the optimized code. 53 // Get the optimized code.
46 Code* code = function->code(); 54 Code* code = function->code();
47 55
48 // Invalidate the relocation information, as it will become invalid by the 56 // Invalidate the relocation information, as it will become invalid by the
49 // code patching below, and is not needed any more. 57 // code patching below, and is not needed any more.
50 code->InvalidateRelocation(); 58 code->InvalidateRelocation();
51 59
52 // For each return after a safepoint insert an absolute call to the 60 // For each return after a safepoint insert an absolute call to the
53 // corresponding deoptimization entry. 61 // corresponding deoptimization entry.
62 ASSERT(patch_size() % Assembler::kInstrSize == 0);
63 int call_size_in_words = patch_size() / Assembler::kInstrSize;
54 unsigned last_pc_offset = 0; 64 unsigned last_pc_offset = 0;
55 SafepointTable table(function->code()); 65 SafepointTable table(function->code());
56 for (unsigned i = 0; i < table.length(); i++) { 66 for (unsigned i = 0; i < table.length(); i++) {
57 unsigned pc_offset = table.GetPcOffset(i); 67 unsigned pc_offset = table.GetPcOffset(i);
58 int deoptimization_index = table.GetDeoptimizationIndex(i); 68 SafepointEntry safepoint_entry = table.GetEntry(i);
59 int gap_code_size = table.GetGapCodeSize(i); 69 int deoptimization_index = safepoint_entry.deoptimization_index();
70 int gap_code_size = safepoint_entry.gap_code_size();
60 // Check that we did not shoot past next safepoint. 71 // Check that we did not shoot past next safepoint.
61 // TODO(srdjan): How do we guarantee that safepoint code does not 72 // TODO(srdjan): How do we guarantee that safepoint code does not
62 // overlap other safepoint patching code? 73 // overlap other safepoint patching code?
63 CHECK(pc_offset >= last_pc_offset); 74 CHECK(pc_offset >= last_pc_offset);
64 #ifdef DEBUG 75 #ifdef DEBUG
65 // Destroy the code which is not supposed to be run again. 76 // Destroy the code which is not supposed to be run again.
66 int instructions = (pc_offset - last_pc_offset) / Assembler::kInstrSize; 77 int instructions = (pc_offset - last_pc_offset) / Assembler::kInstrSize;
67 CodePatcher destroyer(code->instruction_start() + last_pc_offset, 78 CodePatcher destroyer(code->instruction_start() + last_pc_offset,
68 instructions); 79 instructions);
69 for (int x = 0; x < instructions; x++) { 80 for (int x = 0; x < instructions; x++) {
70 destroyer.masm()->bkpt(0); 81 destroyer.masm()->bkpt(0);
71 } 82 }
72 #endif 83 #endif
73 last_pc_offset = pc_offset; 84 last_pc_offset = pc_offset;
74 if (deoptimization_index != Safepoint::kNoDeoptimizationIndex) { 85 if (deoptimization_index != Safepoint::kNoDeoptimizationIndex) {
75 const int kCallInstructionSizeInWords = 3; 86 last_pc_offset += gap_code_size;
76 CodePatcher patcher(code->instruction_start() + pc_offset + gap_code_size, 87 CodePatcher patcher(code->instruction_start() + last_pc_offset,
77 kCallInstructionSizeInWords); 88 call_size_in_words);
78 Address deoptimization_entry = Deoptimizer::GetDeoptimizationEntry( 89 Address deoptimization_entry = Deoptimizer::GetDeoptimizationEntry(
79 deoptimization_index, Deoptimizer::LAZY); 90 deoptimization_index, Deoptimizer::LAZY);
80 patcher.masm()->Call(deoptimization_entry, RelocInfo::NONE); 91 patcher.masm()->Call(deoptimization_entry, RelocInfo::NONE);
81 last_pc_offset += 92 last_pc_offset += patch_size();
82 gap_code_size + kCallInstructionSizeInWords * Assembler::kInstrSize;
83 } 93 }
84 } 94 }
85 95
86 96
87 #ifdef DEBUG 97 #ifdef DEBUG
88 // Destroy the code which is not supposed to be run again. 98 // Destroy the code which is not supposed to be run again.
89 int instructions = 99 int instructions =
90 (code->safepoint_table_start() - last_pc_offset) / Assembler::kInstrSize; 100 (code->safepoint_table_offset() - last_pc_offset) / Assembler::kInstrSize;
91 CodePatcher destroyer(code->instruction_start() + last_pc_offset, 101 CodePatcher destroyer(code->instruction_start() + last_pc_offset,
92 instructions); 102 instructions);
93 for (int x = 0; x < instructions; x++) { 103 for (int x = 0; x < instructions; x++) {
94 destroyer.masm()->bkpt(0); 104 destroyer.masm()->bkpt(0);
95 } 105 }
96 #endif 106 #endif
97 107
98 // Add the deoptimizing code to the list. 108 // Add the deoptimizing code to the list.
99 DeoptimizingCodeListNode* node = new DeoptimizingCodeListNode(code); 109 DeoptimizingCodeListNode* node = new DeoptimizingCodeListNode(code);
100 node->set_next(deoptimizing_code_list_); 110 node->set_next(deoptimizing_code_list_);
101 deoptimizing_code_list_ = node; 111 deoptimizing_code_list_ = node;
102 112
103 // Set the code for the function to non-optimized version. 113 // Set the code for the function to non-optimized version.
104 function->ReplaceCode(function->shared()->code()); 114 function->ReplaceCode(function->shared()->code());
105 115
106 if (FLAG_trace_deopt) { 116 if (FLAG_trace_deopt) {
107 PrintF("[forced deoptimization: "); 117 PrintF("[forced deoptimization: ");
108 function->PrintName(); 118 function->PrintName();
109 PrintF(" / %x]\n", reinterpret_cast<uint32_t>(function)); 119 PrintF(" / %x]\n", reinterpret_cast<uint32_t>(function));
110 } 120 }
111 } 121 }
112 122
113 123
114 void Deoptimizer::PatchStackCheckCode(RelocInfo* rinfo, 124 void Deoptimizer::PatchStackCheckCodeAt(Address pc_after,
115 Code* replacement_code) { 125 Code* check_code,
116 UNIMPLEMENTED(); 126 Code* replacement_code) {
117 } 127 const int kInstrSize = Assembler::kInstrSize;
118 128 // The call of the stack guard check has the following form:
119 129 // e1 5d 00 0c cmp sp, <limit>
120 void Deoptimizer::RevertStackCheckCode(RelocInfo* rinfo, Code* check_code) { 130 // 2a 00 00 01 bcs ok
121 UNIMPLEMENTED(); 131 // e5 9f c? ?? ldr ip, [pc, <stack guard address>]
132 // e1 2f ff 3c blx ip
133 ASSERT(Memory::int32_at(pc_after - kInstrSize) ==
134 (al | B24 | B21 | 15*B16 | 15*B12 | 15*B8 | BLX | ip.code()));
135 ASSERT(Assembler::IsLdrPcImmediateOffset(
136 Assembler::instr_at(pc_after - 2 * kInstrSize)));
137
138 // We patch the code to the following form:
139 // e1 5d 00 0c cmp sp, <limit>
140 // e1 a0 00 00 mov r0, r0 (NOP)
141 // e5 9f c? ?? ldr ip, [pc, <on-stack replacement address>]
142 // e1 2f ff 3c blx ip
143 // and overwrite the constant containing the
144 // address of the stack check stub.
145
146 // Replace conditional jump with NOP.
147 CodePatcher patcher(pc_after - 3 * kInstrSize, 1);
148 patcher.masm()->nop();
149
150 // Replace the stack check address in the constant pool
151 // with the entry address of the replacement code.
152 uint32_t stack_check_address_offset = Memory::uint16_at(pc_after -
153 2 * kInstrSize) & 0xfff;
154 Address stack_check_address_pointer = pc_after + stack_check_address_offset;
155 ASSERT(Memory::uint32_at(stack_check_address_pointer) ==
156 reinterpret_cast<uint32_t>(check_code->entry()));
157 Memory::uint32_at(stack_check_address_pointer) =
158 reinterpret_cast<uint32_t>(replacement_code->entry());
159 }
160
161
162 void Deoptimizer::RevertStackCheckCodeAt(Address pc_after,
163 Code* check_code,
164 Code* replacement_code) {
165 const int kInstrSize = Assembler::kInstrSize;
166 ASSERT(Memory::uint32_at(pc_after - kInstrSize) == 0xe12fff3c);
167 ASSERT(Memory::uint8_at(pc_after - kInstrSize - 1) == 0xe5);
168 ASSERT(Memory::uint8_at(pc_after - kInstrSize - 2) == 0x9f);
169
170 // Replace NOP with conditional jump.
171 CodePatcher patcher(pc_after - 3 * kInstrSize, 1);
172 patcher.masm()->b(+4, cs);
173
174 // Replace the stack check address in the constant pool
175 // with the entry address of the replacement code.
176 uint32_t stack_check_address_offset = Memory::uint16_at(pc_after -
177 2 * kInstrSize) & 0xfff;
178 Address stack_check_address_pointer = pc_after + stack_check_address_offset;
179 ASSERT(Memory::uint32_at(stack_check_address_pointer) ==
180 reinterpret_cast<uint32_t>(replacement_code->entry()));
181 Memory::uint32_at(stack_check_address_pointer) =
182 reinterpret_cast<uint32_t>(check_code->entry());
183 }
184
185
186 static int LookupBailoutId(DeoptimizationInputData* data, unsigned ast_id) {
187 ByteArray* translations = data->TranslationByteArray();
188 int length = data->DeoptCount();
189 for (int i = 0; i < length; i++) {
190 if (static_cast<unsigned>(data->AstId(i)->value()) == ast_id) {
191 TranslationIterator it(translations, data->TranslationIndex(i)->value());
192 int value = it.Next();
193 ASSERT(Translation::BEGIN == static_cast<Translation::Opcode>(value));
194 // Read the number of frames.
195 value = it.Next();
196 if (value == 1) return i;
197 }
198 }
199 UNREACHABLE();
200 return -1;
122 } 201 }
123 202
124 203
125 void Deoptimizer::DoComputeOsrOutputFrame() { 204 void Deoptimizer::DoComputeOsrOutputFrame() {
126 UNIMPLEMENTED(); 205 DeoptimizationInputData* data = DeoptimizationInputData::cast(
127 } 206 optimized_code_->deoptimization_data());
128 207 unsigned ast_id = data->OsrAstId()->value();
129 208
209 int bailout_id = LookupBailoutId(data, ast_id);
210 unsigned translation_index = data->TranslationIndex(bailout_id)->value();
211 ByteArray* translations = data->TranslationByteArray();
212
213 TranslationIterator iterator(translations, translation_index);
214 Translation::Opcode opcode =
215 static_cast<Translation::Opcode>(iterator.Next());
216 ASSERT(Translation::BEGIN == opcode);
217 USE(opcode);
218 int count = iterator.Next();
219 ASSERT(count == 1);
220 USE(count);
221
222 opcode = static_cast<Translation::Opcode>(iterator.Next());
223 USE(opcode);
224 ASSERT(Translation::FRAME == opcode);
225 unsigned node_id = iterator.Next();
226 USE(node_id);
227 ASSERT(node_id == ast_id);
228 JSFunction* function = JSFunction::cast(ComputeLiteral(iterator.Next()));
229 USE(function);
230 ASSERT(function == function_);
231 unsigned height = iterator.Next();
232 unsigned height_in_bytes = height * kPointerSize;
233 USE(height_in_bytes);
234
235 unsigned fixed_size = ComputeFixedSize(function_);
236 unsigned input_frame_size = input_->GetFrameSize();
237 ASSERT(fixed_size + height_in_bytes == input_frame_size);
238
239 unsigned stack_slot_size = optimized_code_->stack_slots() * kPointerSize;
240 unsigned outgoing_height = data->ArgumentsStackHeight(bailout_id)->value();
241 unsigned outgoing_size = outgoing_height * kPointerSize;
242 unsigned output_frame_size = fixed_size + stack_slot_size + outgoing_size;
243 ASSERT(outgoing_size == 0); // OSR does not happen in the middle of a call.
244
245 if (FLAG_trace_osr) {
246 PrintF("[on-stack replacement: begin 0x%08" V8PRIxPTR " ",
247 reinterpret_cast<intptr_t>(function_));
248 function_->PrintName();
249 PrintF(" => node=%u, frame=%d->%d]\n",
250 ast_id,
251 input_frame_size,
252 output_frame_size);
253 }
254
255 // There's only one output frame in the OSR case.
256 output_count_ = 1;
257 output_ = new FrameDescription*[1];
258 output_[0] = new(output_frame_size) FrameDescription(
259 output_frame_size, function_);
260
261 // Clear the incoming parameters in the optimized frame to avoid
262 // confusing the garbage collector.
263 unsigned output_offset = output_frame_size - kPointerSize;
264 int parameter_count = function_->shared()->formal_parameter_count() + 1;
265 for (int i = 0; i < parameter_count; ++i) {
266 output_[0]->SetFrameSlot(output_offset, 0);
267 output_offset -= kPointerSize;
268 }
269
270 // Translate the incoming parameters. This may overwrite some of the
271 // incoming argument slots we've just cleared.
272 int input_offset = input_frame_size - kPointerSize;
273 bool ok = true;
274 int limit = input_offset - (parameter_count * kPointerSize);
275 while (ok && input_offset > limit) {
276 ok = DoOsrTranslateCommand(&iterator, &input_offset);
277 }
278
279 // There are no translation commands for the caller's pc and fp, the
280 // context, and the function. Set them up explicitly.
281 for (int i = 0; ok && i < 4; i++) {
282 uint32_t input_value = input_->GetFrameSlot(input_offset);
283 if (FLAG_trace_osr) {
284 PrintF(" [sp + %d] <- 0x%08x ; [sp + %d] (fixed part)\n",
285 output_offset,
286 input_value,
287 input_offset);
288 }
289 output_[0]->SetFrameSlot(output_offset, input_->GetFrameSlot(input_offset));
290 input_offset -= kPointerSize;
291 output_offset -= kPointerSize;
292 }
293
294 // Translate the rest of the frame.
295 while (ok && input_offset >= 0) {
296 ok = DoOsrTranslateCommand(&iterator, &input_offset);
297 }
298
299 // If translation of any command failed, continue using the input frame.
300 if (!ok) {
301 delete output_[0];
302 output_[0] = input_;
303 output_[0]->SetPc(reinterpret_cast<uint32_t>(from_));
304 } else {
305 // Setup the frame pointer and the context pointer.
306 output_[0]->SetRegister(fp.code(), input_->GetRegister(fp.code()));
307 output_[0]->SetRegister(cp.code(), input_->GetRegister(cp.code()));
308
309 unsigned pc_offset = data->OsrPcOffset()->value();
310 uint32_t pc = reinterpret_cast<uint32_t>(
311 optimized_code_->entry() + pc_offset);
312 output_[0]->SetPc(pc);
313 }
314 Code* continuation = Builtins::builtin(Builtins::NotifyOSR);
315 output_[0]->SetContinuation(
316 reinterpret_cast<uint32_t>(continuation->entry()));
317
318 if (FLAG_trace_osr) {
319 PrintF("[on-stack replacement translation %s: 0x%08" V8PRIxPTR " ",
320 ok ? "finished" : "aborted",
321 reinterpret_cast<intptr_t>(function));
322 function->PrintName();
323 PrintF(" => pc=0x%0x]\n", output_[0]->GetPc());
324 }
325 }
326
327
130 // This code is very similar to ia32 code, but relies on register names (fp, sp) 328 // This code is very similar to ia32 code, but relies on register names (fp, sp)
131 // and how the frame is laid out. 329 // and how the frame is laid out.
132 void Deoptimizer::DoComputeFrame(TranslationIterator* iterator, 330 void Deoptimizer::DoComputeFrame(TranslationIterator* iterator,
133 int frame_index) { 331 int frame_index) {
134 // Read the ast node id, function, and frame height for this output frame. 332 // Read the ast node id, function, and frame height for this output frame.
135 Translation::Opcode opcode = 333 Translation::Opcode opcode =
136 static_cast<Translation::Opcode>(iterator->Next()); 334 static_cast<Translation::Opcode>(iterator->Next());
137 USE(opcode); 335 USE(opcode);
138 ASSERT(Translation::FRAME == opcode); 336 ASSERT(Translation::FRAME == opcode);
139 int node_id = iterator->Next(); 337 int node_id = iterator->Next();
(...skipping 158 matching lines...) Expand 10 before | Expand all | Expand 10 after
298 } 496 }
299 497
300 498
301 #define __ masm()-> 499 #define __ masm()->
302 500
303 501
304 // This code tries to be close to ia32 code so that any changes can be 502 // This code tries to be close to ia32 code so that any changes can be
305 // easily ported. 503 // easily ported.
306 void Deoptimizer::EntryGenerator::Generate() { 504 void Deoptimizer::EntryGenerator::Generate() {
307 GeneratePrologue(); 505 GeneratePrologue();
308 // TOS: bailout-id; TOS+1: return address if not EAGER.
309 CpuFeatures::Scope scope(VFP3); 506 CpuFeatures::Scope scope(VFP3);
310 // Save all general purpose registers before messing with them. 507 // Save all general purpose registers before messing with them.
311 const int kNumberOfRegisters = Register::kNumRegisters; 508 const int kNumberOfRegisters = Register::kNumRegisters;
312 509
313 // Everything but pc, lr and ip which will be saved but not restored. 510 // Everything but pc, lr and ip which will be saved but not restored.
314 RegList restored_regs = kJSCallerSaved | kCalleeSaved | ip.bit(); 511 RegList restored_regs = kJSCallerSaved | kCalleeSaved | ip.bit();
315 512
316 const int kDoubleRegsSize = 513 const int kDoubleRegsSize =
317 kDoubleSize * DwVfpRegister::kNumAllocatableRegisters; 514 kDoubleSize * DwVfpRegister::kNumAllocatableRegisters;
318 515
(...skipping 14 matching lines...) Expand all
333 // Get the bailout id from the stack. 530 // Get the bailout id from the stack.
334 __ ldr(r2, MemOperand(sp, kSavedRegistersAreaSize)); 531 __ ldr(r2, MemOperand(sp, kSavedRegistersAreaSize));
335 532
336 // Get the address of the location in the code object if possible (r3) (return 533 // Get the address of the location in the code object if possible (r3) (return
337 // address for lazy deoptimization) and compute the fp-to-sp delta in 534 // address for lazy deoptimization) and compute the fp-to-sp delta in
338 // register r4. 535 // register r4.
339 if (type() == EAGER) { 536 if (type() == EAGER) {
340 __ mov(r3, Operand(0)); 537 __ mov(r3, Operand(0));
341 // Correct one word for bailout id. 538 // Correct one word for bailout id.
342 __ add(r4, sp, Operand(kSavedRegistersAreaSize + (1 * kPointerSize))); 539 __ add(r4, sp, Operand(kSavedRegistersAreaSize + (1 * kPointerSize)));
540 } else if (type() == OSR) {
541 __ mov(r3, lr);
542 // Correct one word for bailout id.
543 __ add(r4, sp, Operand(kSavedRegistersAreaSize + (1 * kPointerSize)));
343 } else { 544 } else {
344 __ mov(r3, lr); 545 __ mov(r3, lr);
345 // Correct two words for bailout id and return address. 546 // Correct two words for bailout id and return address.
346 __ add(r4, sp, Operand(kSavedRegistersAreaSize + (2 * kPointerSize))); 547 __ add(r4, sp, Operand(kSavedRegistersAreaSize + (2 * kPointerSize)));
347 } 548 }
348 __ sub(r4, fp, r4); 549 __ sub(r4, fp, r4);
349 550
350 // Allocate a new deoptimizer object. 551 // Allocate a new deoptimizer object.
351 // Pass four arguments in r0 to r3 and fifth argument on stack. 552 // Pass four arguments in r0 to r3 and fifth argument on stack.
352 __ PrepareCallCFunction(5, r5); 553 __ PrepareCallCFunction(5, r5);
353 __ ldr(r0, MemOperand(fp, JavaScriptFrameConstants::kFunctionOffset)); 554 __ ldr(r0, MemOperand(fp, JavaScriptFrameConstants::kFunctionOffset));
354 __ mov(r1, Operand(type())); // bailout type, 555 __ mov(r1, Operand(type())); // bailout type,
355 // r2: bailout id already loaded. 556 // r2: bailout id already loaded.
356 // r3: code address or 0 already loaded. 557 // r3: code address or 0 already loaded.
357 __ str(r4, MemOperand(sp, 0 * kPointerSize)); // Fp-to-sp delta. 558 __ str(r4, MemOperand(sp, 0 * kPointerSize)); // Fp-to-sp delta.
358 // Call Deoptimizer::New(). 559 // Call Deoptimizer::New().
359 __ CallCFunction(ExternalReference::new_deoptimizer_function(), 5); 560 __ CallCFunction(ExternalReference::new_deoptimizer_function(), 5);
360 561
361 // Preserve "deoptimizer" object in register r0 and get the input 562 // Preserve "deoptimizer" object in register r0 and get the input
362 // frame descriptor pointer to r1 (deoptimizer->input_); 563 // frame descriptor pointer to r1 (deoptimizer->input_);
363 __ ldr(r1, MemOperand(r0, Deoptimizer::input_offset())); 564 __ ldr(r1, MemOperand(r0, Deoptimizer::input_offset()));
364 565
365
366 // Copy core registers into FrameDescription::registers_[kNumRegisters]. 566 // Copy core registers into FrameDescription::registers_[kNumRegisters].
367 ASSERT(Register::kNumRegisters == kNumberOfRegisters); 567 ASSERT(Register::kNumRegisters == kNumberOfRegisters);
368 for (int i = 0; i < kNumberOfRegisters; i++) { 568 for (int i = 0; i < kNumberOfRegisters; i++) {
369 int offset = (i * kIntSize) + FrameDescription::registers_offset(); 569 int offset = (i * kPointerSize) + FrameDescription::registers_offset();
370 __ ldr(r2, MemOperand(sp, i * kPointerSize)); 570 __ ldr(r2, MemOperand(sp, i * kPointerSize));
371 __ str(r2, MemOperand(r1, offset)); 571 __ str(r2, MemOperand(r1, offset));
372 } 572 }
373 573
374 // Copy VFP registers to 574 // Copy VFP registers to
375 // double_registers_[DoubleRegister::kNumAllocatableRegisters] 575 // double_registers_[DoubleRegister::kNumAllocatableRegisters]
376 int double_regs_offset = FrameDescription::double_registers_offset(); 576 int double_regs_offset = FrameDescription::double_registers_offset();
377 for (int i = 0; i < DwVfpRegister::kNumAllocatableRegisters; ++i) { 577 for (int i = 0; i < DwVfpRegister::kNumAllocatableRegisters; ++i) {
378 int dst_offset = i * kDoubleSize + double_regs_offset; 578 int dst_offset = i * kDoubleSize + double_regs_offset;
379 int src_offset = i * kDoubleSize + kNumberOfRegisters * kPointerSize; 579 int src_offset = i * kDoubleSize + kNumberOfRegisters * kPointerSize;
380 __ vldr(d0, sp, src_offset); 580 __ vldr(d0, sp, src_offset);
381 __ vstr(d0, r1, dst_offset); 581 __ vstr(d0, r1, dst_offset);
382 } 582 }
383 583
384 // Remove the bailout id, eventually return address, and the saved registers 584 // Remove the bailout id, eventually return address, and the saved registers
385 // from the stack. 585 // from the stack.
386 if (type() == EAGER) { 586 if (type() == EAGER || type() == OSR) {
387 __ add(sp, sp, Operand(kSavedRegistersAreaSize + (1 * kPointerSize))); 587 __ add(sp, sp, Operand(kSavedRegistersAreaSize + (1 * kPointerSize)));
388 } else { 588 } else {
389 __ add(sp, sp, Operand(kSavedRegistersAreaSize + (2 * kPointerSize))); 589 __ add(sp, sp, Operand(kSavedRegistersAreaSize + (2 * kPointerSize)));
390 } 590 }
391 591
392 // Compute a pointer to the unwinding limit in register r2; that is 592 // Compute a pointer to the unwinding limit in register r2; that is
393 // the first stack slot not part of the input frame. 593 // the first stack slot not part of the input frame.
394 __ ldr(r2, MemOperand(r1, FrameDescription::frame_size_offset())); 594 __ ldr(r2, MemOperand(r1, FrameDescription::frame_size_offset()));
395 __ add(r2, r2, sp); 595 __ add(r2, r2, sp);
396 596
(...skipping 33 matching lines...) Expand 10 before | Expand all | Expand 10 after
430 // __ add(r6, r2, Operand(r3, LSL, 1)); 630 // __ add(r6, r2, Operand(r3, LSL, 1));
431 __ add(r6, r2, Operand(r3)); 631 __ add(r6, r2, Operand(r3));
432 __ ldr(r7, MemOperand(r6, FrameDescription::frame_content_offset())); 632 __ ldr(r7, MemOperand(r6, FrameDescription::frame_content_offset()));
433 __ push(r7); 633 __ push(r7);
434 __ cmp(r3, Operand(0)); 634 __ cmp(r3, Operand(0));
435 __ b(ne, &inner_push_loop); // test for gt? 635 __ b(ne, &inner_push_loop); // test for gt?
436 __ add(r0, r0, Operand(kPointerSize)); 636 __ add(r0, r0, Operand(kPointerSize));
437 __ cmp(r0, r1); 637 __ cmp(r0, r1);
438 __ b(lt, &outer_push_loop); 638 __ b(lt, &outer_push_loop);
439 639
440 // In case of OSR, we have to restore the XMM registers.
441 if (type() == OSR) {
442 UNIMPLEMENTED();
443 }
444
445 // Push state, pc, and continuation from the last output frame. 640 // Push state, pc, and continuation from the last output frame.
446 if (type() != OSR) { 641 if (type() != OSR) {
447 __ ldr(r6, MemOperand(r2, FrameDescription::state_offset())); 642 __ ldr(r6, MemOperand(r2, FrameDescription::state_offset()));
448 __ push(r6); 643 __ push(r6);
449 } 644 }
450 645
451 __ ldr(r6, MemOperand(r2, FrameDescription::pc_offset())); 646 __ ldr(r6, MemOperand(r2, FrameDescription::pc_offset()));
452 __ push(r6); 647 __ push(r6);
453 __ ldr(r6, MemOperand(r2, FrameDescription::continuation_offset())); 648 __ ldr(r6, MemOperand(r2, FrameDescription::continuation_offset()));
454 __ push(r6); 649 __ push(r6);
455 650
456 // Push the registers from the last output frame. 651 // Push the registers from the last output frame.
457 for (int i = kNumberOfRegisters - 1; i >= 0; i--) { 652 for (int i = kNumberOfRegisters - 1; i >= 0; i--) {
458 int offset = (i * kIntSize) + FrameDescription::registers_offset(); 653 int offset = (i * kPointerSize) + FrameDescription::registers_offset();
459 __ ldr(r6, MemOperand(r2, offset)); 654 __ ldr(r6, MemOperand(r2, offset));
460 __ push(r6); 655 __ push(r6);
461 } 656 }
462 657
463 // Restore the registers from the stack. 658 // Restore the registers from the stack.
464 __ ldm(ia_w, sp, restored_regs); // all but pc registers. 659 __ ldm(ia_w, sp, restored_regs); // all but pc registers.
465 __ pop(ip); // remove sp 660 __ pop(ip); // remove sp
466 __ pop(ip); // remove lr 661 __ pop(ip); // remove lr
467 662
468 // Set up the roots register. 663 // Set up the roots register.
(...skipping 25 matching lines...) Expand all
494 __ push(ip); 689 __ push(ip);
495 __ b(&done); 690 __ b(&done);
496 ASSERT(masm()->pc_offset() - start == table_entry_size_); 691 ASSERT(masm()->pc_offset() - start == table_entry_size_);
497 } 692 }
498 __ bind(&done); 693 __ bind(&done);
499 } 694 }
500 695
501 #undef __ 696 #undef __
502 697
503 } } // namespace v8::internal 698 } } // namespace v8::internal
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