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| 1 // Copyright 2011 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 |
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| 34 #include "debug.h" | 34 #include "debug.h" |
| 35 #include "runtime.h" | 35 #include "runtime.h" |
| 36 #include "serialize.h" | 36 #include "serialize.h" |
| 37 | 37 |
| 38 namespace v8 { | 38 namespace v8 { |
| 39 namespace internal { | 39 namespace internal { |
| 40 | 40 |
| 41 // ------------------------------------------------------------------------- | 41 // ------------------------------------------------------------------------- |
| 42 // MacroAssembler implementation. | 42 // MacroAssembler implementation. |
| 43 | 43 |
| 44 MacroAssembler::MacroAssembler(Isolate* arg_isolate, void* buffer, int size) | 44 MacroAssembler::MacroAssembler(void* buffer, int size) |
| 45 : Assembler(arg_isolate, buffer, size), | 45 : Assembler(buffer, size), |
| 46 generating_stub_(false), | 46 generating_stub_(false), |
| 47 allow_stub_calls_(true) { | 47 allow_stub_calls_(true), |
| 48 if (isolate() != NULL) { | 48 code_object_(isolate()->heap()->undefined_value()) { |
| 49 code_object_ = Handle<Object>(isolate()->heap()->undefined_value(), | |
| 50 isolate()); | |
| 51 } | |
| 52 } | 49 } |
| 53 | 50 |
| 54 | 51 |
| 55 void MacroAssembler::RecordWriteHelper(Register object, | 52 void MacroAssembler::RecordWriteHelper(Register object, |
| 56 Register addr, | 53 Register addr, |
| 57 Register scratch) { | 54 Register scratch) { |
| 58 if (emit_debug_code()) { | 55 if (emit_debug_code()) { |
| 59 // Check that the object is not in new space. | 56 // Check that the object is not in new space. |
| 60 Label not_in_new_space; | 57 Label not_in_new_space; |
| 61 InNewSpace(object, scratch, not_equal, ¬_in_new_space); | 58 InNewSpace(object, scratch, not_equal, ¬_in_new_space); |
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| 227 Register scratch, | 224 Register scratch, |
| 228 Label* fail) { | 225 Label* fail) { |
| 229 movzx_b(scratch, FieldOperand(map, Map::kInstanceTypeOffset)); | 226 movzx_b(scratch, FieldOperand(map, Map::kInstanceTypeOffset)); |
| 230 sub(Operand(scratch), Immediate(FIRST_JS_OBJECT_TYPE)); | 227 sub(Operand(scratch), Immediate(FIRST_JS_OBJECT_TYPE)); |
| 231 cmp(scratch, LAST_JS_OBJECT_TYPE - FIRST_JS_OBJECT_TYPE); | 228 cmp(scratch, LAST_JS_OBJECT_TYPE - FIRST_JS_OBJECT_TYPE); |
| 232 j(above, fail); | 229 j(above, fail); |
| 233 } | 230 } |
| 234 | 231 |
| 235 | 232 |
| 236 void MacroAssembler::FCmp() { | 233 void MacroAssembler::FCmp() { |
| 237 if (CpuFeatures::IsSupported(CMOV)) { | 234 if (Isolate::Current()->cpu_features()->IsSupported(CMOV)) { |
| 238 fucomip(); | 235 fucomip(); |
| 239 ffree(0); | 236 ffree(0); |
| 240 fincstp(); | 237 fincstp(); |
| 241 } else { | 238 } else { |
| 242 fucompp(); | 239 fucompp(); |
| 243 push(eax); | 240 push(eax); |
| 244 fnstsw_ax(); | 241 fnstsw_ax(); |
| 245 sahf(); | 242 sahf(); |
| 246 pop(eax); | 243 pop(eax); |
| 247 } | 244 } |
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| 1984 ASSERT_EQ(0, kFlatAsciiStringMask & (kFlatAsciiStringMask << 3)); | 1981 ASSERT_EQ(0, kFlatAsciiStringMask & (kFlatAsciiStringMask << 3)); |
| 1985 and_(scratch1, kFlatAsciiStringMask); | 1982 and_(scratch1, kFlatAsciiStringMask); |
| 1986 and_(scratch2, kFlatAsciiStringMask); | 1983 and_(scratch2, kFlatAsciiStringMask); |
| 1987 lea(scratch1, Operand(scratch1, scratch2, times_8, 0)); | 1984 lea(scratch1, Operand(scratch1, scratch2, times_8, 0)); |
| 1988 cmp(scratch1, kFlatAsciiStringTag | (kFlatAsciiStringTag << 3)); | 1985 cmp(scratch1, kFlatAsciiStringTag | (kFlatAsciiStringTag << 3)); |
| 1989 j(not_equal, failure); | 1986 j(not_equal, failure); |
| 1990 } | 1987 } |
| 1991 | 1988 |
| 1992 | 1989 |
| 1993 void MacroAssembler::PrepareCallCFunction(int num_arguments, Register scratch) { | 1990 void MacroAssembler::PrepareCallCFunction(int num_arguments, Register scratch) { |
| 1994 int frame_alignment = OS::ActivationFrameAlignment(); | 1991 // Reserve space for Isolate address which is always passed as last parameter |
| 1995 if (frame_alignment != 0) { | 1992 num_arguments += 1; |
| 1993 |
| 1994 int frameAlignment = OS::ActivationFrameAlignment(); |
| 1995 if (frameAlignment != 0) { |
| 1996 // Make stack end at alignment and make room for num_arguments words | 1996 // Make stack end at alignment and make room for num_arguments words |
| 1997 // and the original value of esp. | 1997 // and the original value of esp. |
| 1998 mov(scratch, esp); | 1998 mov(scratch, esp); |
| 1999 sub(Operand(esp), Immediate((num_arguments + 1) * kPointerSize)); | 1999 sub(Operand(esp), Immediate((num_arguments + 1) * kPointerSize)); |
| 2000 ASSERT(IsPowerOf2(frame_alignment)); | 2000 ASSERT(IsPowerOf2(frameAlignment)); |
| 2001 and_(esp, -frame_alignment); | 2001 and_(esp, -frameAlignment); |
| 2002 mov(Operand(esp, num_arguments * kPointerSize), scratch); | 2002 mov(Operand(esp, num_arguments * kPointerSize), scratch); |
| 2003 } else { | 2003 } else { |
| 2004 sub(Operand(esp), Immediate(num_arguments * kPointerSize)); | 2004 sub(Operand(esp), Immediate(num_arguments * kPointerSize)); |
| 2005 } | 2005 } |
| 2006 } | 2006 } |
| 2007 | 2007 |
| 2008 | 2008 |
| 2009 void MacroAssembler::CallCFunction(ExternalReference function, | 2009 void MacroAssembler::CallCFunction(ExternalReference function, |
| 2010 int num_arguments) { | 2010 int num_arguments) { |
| 2011 // Trashing eax is ok as it will be the return value. | 2011 // Trashing eax is ok as it will be the return value. |
| 2012 mov(Operand(eax), Immediate(function)); | 2012 mov(Operand(eax), Immediate(function)); |
| 2013 CallCFunction(eax, num_arguments); | 2013 CallCFunction(eax, num_arguments); |
| 2014 } | 2014 } |
| 2015 | 2015 |
| 2016 | 2016 |
| 2017 void MacroAssembler::CallCFunction(Register function, | 2017 void MacroAssembler::CallCFunction(Register function, |
| 2018 int num_arguments) { | 2018 int num_arguments) { |
| 2019 // Pass current isolate address as additional parameter. |
| 2020 mov(Operand(esp, num_arguments * kPointerSize), |
| 2021 Immediate(ExternalReference::isolate_address())); |
| 2022 num_arguments += 1; |
| 2023 |
| 2019 // Check stack alignment. | 2024 // Check stack alignment. |
| 2020 if (emit_debug_code()) { | 2025 if (emit_debug_code()) { |
| 2021 CheckStackAlignment(); | 2026 CheckStackAlignment(); |
| 2022 } | 2027 } |
| 2023 | 2028 |
| 2024 call(Operand(function)); | 2029 call(Operand(function)); |
| 2025 if (OS::ActivationFrameAlignment() != 0) { | 2030 if (OS::ActivationFrameAlignment() != 0) { |
| 2026 mov(esp, Operand(esp, num_arguments * kPointerSize)); | 2031 mov(esp, Operand(esp, num_arguments * kPointerSize)); |
| 2027 } else { | 2032 } else { |
| 2028 add(Operand(esp), Immediate(num_arguments * kPointerSize)); | 2033 add(Operand(esp), Immediate(num_arguments * sizeof(int32_t))); |
| 2029 } | 2034 } |
| 2030 } | 2035 } |
| 2031 | 2036 |
| 2032 | 2037 |
| 2033 CodePatcher::CodePatcher(byte* address, int size) | 2038 CodePatcher::CodePatcher(byte* address, int size) |
| 2034 : address_(address), | 2039 : address_(address), size_(size), masm_(address, size + Assembler::kGap) { |
| 2035 size_(size), | |
| 2036 masm_(Isolate::Current(), address, size + Assembler::kGap) { | |
| 2037 // Create a new macro assembler pointing to the address of the code to patch. | 2040 // Create a new macro assembler pointing to the address of the code to patch. |
| 2038 // The size is adjusted with kGap on order for the assembler to generate size | 2041 // The size is adjusted with kGap on order for the assembler to generate size |
| 2039 // bytes of instructions without failing with buffer size constraints. | 2042 // bytes of instructions without failing with buffer size constraints. |
| 2040 ASSERT(masm_.reloc_info_writer.pos() == address_ + size_ + Assembler::kGap); | 2043 ASSERT(masm_.reloc_info_writer.pos() == address_ + size_ + Assembler::kGap); |
| 2041 } | 2044 } |
| 2042 | 2045 |
| 2043 | 2046 |
| 2044 CodePatcher::~CodePatcher() { | 2047 CodePatcher::~CodePatcher() { |
| 2045 // Indicate that code has changed. | 2048 // Indicate that code has changed. |
| 2046 CPU::FlushICache(address_, size_); | 2049 CPU::FlushICache(address_, size_); |
| 2047 | 2050 |
| 2048 // Check that the code was patched as expected. | 2051 // Check that the code was patched as expected. |
| 2049 ASSERT(masm_.pc_ == address_ + size_); | 2052 ASSERT(masm_.pc_ == address_ + size_); |
| 2050 ASSERT(masm_.reloc_info_writer.pos() == address_ + size_ + Assembler::kGap); | 2053 ASSERT(masm_.reloc_info_writer.pos() == address_ + size_ + Assembler::kGap); |
| 2051 } | 2054 } |
| 2052 | 2055 |
| 2053 | 2056 |
| 2054 } } // namespace v8::internal | 2057 } } // namespace v8::internal |
| 2055 | 2058 |
| 2056 #endif // V8_TARGET_ARCH_IA32 | 2059 #endif // V8_TARGET_ARCH_IA32 |
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