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Unified Diff: runtime/vm/assembler_x64.cc

Issue 8747023: Initial revision of assembler for x64. (Closed) Base URL: http://dart.googlecode.com/svn/branches/bleeding_edge/dart/
Patch Set: '' Created 9 years, 1 month ago
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Index: runtime/vm/assembler_x64.cc
===================================================================
--- runtime/vm/assembler_x64.cc (revision 0)
+++ runtime/vm/assembler_x64.cc (revision 0)
@@ -0,0 +1,1312 @@
+// Copyright (c) 2011, the Dart project authors. Please see the AUTHORS file
+// for details. All rights reserved. Use of this source code is governed by a
+// BSD-style license that can be found in the LICENSE file.
+
+#include "vm/globals.h"
+#if defined(TARGET_ARCH_X64)
+
+#include "vm/assembler.h"
+#include "vm/heap.h"
+#include "vm/memory_region.h"
+#include "vm/runtime_entry.h"
+
+namespace dart {
+
+void Assembler::InitializeMemoryWithBreakpoints(uword data, int length) {
+ memset(reinterpret_cast<void*>(data), Instr::kBreakPointInstruction, length);
+}
+
+
+void Assembler::call(Register reg) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(reg);
+ EmitOperandREX(2, operand, REX_NONE);
+ EmitUint8(0xFF);
+ EmitOperand(2, operand);
+}
+
+
+void Assembler::call(const Address& address) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(2, address, REX_NONE);
+ EmitUint8(0xFF);
+ EmitOperand(2, address);
+}
+
+
+void Assembler::call(Label* label) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ static const int kSize = 5;
+ EmitUint8(0xE8);
+ EmitLabel(label, kSize);
+}
+
+
+void Assembler::call(const ExternalLabel* label) {
+ movq(R11, Immediate(label->address()));
+ call(R11);
+}
+
+
+void Assembler::pushq(Register reg) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(reg, REX_NONE);
+ EmitUint8(0x50 | (reg & 7));
+}
+
+
+void Assembler::pushq(const Address& address) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(6, address, REX_NONE);
+ EmitUint8(0xFF);
+ EmitOperand(6, address);
+}
+
+
+void Assembler::popq(Register reg) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(reg, REX_NONE);
+ EmitUint8(0x58 | (reg & 7));
+}
+
+
+void Assembler::popq(const Address& address) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(0, address, REX_NONE);
+ EmitUint8(0x8F);
+ EmitOperand(0, address);
+}
+
+
+void Assembler::movl(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_NONE);
+ EmitUint8(0x8B);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::movl(Register dst, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(dst);
+ EmitOperandREX(0, operand, REX_NONE);
+ EmitUint8(0xC7);
+ EmitOperand(0, operand);
+ ASSERT(imm.is_int32());
+ EmitImmediate(imm);
+}
+
+
+void Assembler::movl(Register dst, const Address& src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(dst, src, REX_NONE);
+ EmitUint8(0x8B);
+ EmitOperand(dst & 7, src);
+}
+
+
+void Assembler::movl(const Address& dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(src, dst, REX_NONE);
+ EmitUint8(0x89);
+ EmitOperand(src & 7, dst);
+}
+
+
+void Assembler::movzxb(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_W);
+ EmitUint8(0x0F);
+ EmitUint8(0xB6);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::movzxb(Register dst, const Address& src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(dst, src, REX_W);
+ EmitUint8(0x0F);
+ EmitUint8(0xB6);
+ EmitOperand(dst & 7, src);
+}
+
+
+void Assembler::movsxb(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_W);
+ EmitUint8(0x0F);
+ EmitUint8(0xBE);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::movsxb(Register dst, const Address& src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(dst, src, REX_W);
+ EmitUint8(0x0F);
+ EmitUint8(0xBE);
+ EmitOperand(dst & 7, src);
+}
+
+
+void Assembler::movb(Register dst, const Address& src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(dst, src, REX_NONE);
+ EmitUint8(0x8A);
+ EmitOperand(dst & 7, src);
+}
+
+
+void Assembler::movb(const Address& dst, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(0, dst, REX_NONE);
+ EmitUint8(0xC6);
+ EmitOperand(0, dst);
+ ASSERT(imm.is_int8());
+ EmitUint8(imm.value() & 0xFF);
+}
+
+
+void Assembler::movb(const Address& dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(src, dst, REX_NONE);
+ EmitUint8(0x88);
+ EmitOperand(src & 7, dst);
+}
+
+
+void Assembler::movzxw(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_W);
+ EmitUint8(0x0F);
+ EmitUint8(0xB7);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::movzxw(Register dst, const Address& src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(dst, src, REX_W);
+ EmitUint8(0x0F);
+ EmitUint8(0xB7);
+ EmitOperand(dst & 7, src);
+}
+
+
+void Assembler::movsxw(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_W);
+ EmitUint8(0x0F);
+ EmitUint8(0xBF);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::movsxw(Register dst, const Address& src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(dst, src, REX_W);
+ EmitUint8(0x0F);
+ EmitUint8(0xBF);
+ EmitOperand(dst & 7, src);
+}
+
+
+void Assembler::movw(Register dst, const Address& src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(dst, src, REX_NONE);
+ EmitOperandSizeOverride();
+ EmitUint8(0x8B);
+ EmitOperand(dst & 7, src);
+}
+
+
+void Assembler::movw(const Address& dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(src, dst, REX_NONE);
+ EmitOperandSizeOverride();
+ EmitUint8(0x89);
+ EmitOperand(src & 7, dst);
+}
+
+
+void Assembler::movq(Register dst, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ if (imm.is_int32()) {
+ Operand operand(dst);
+ EmitOperandREX(0, operand, REX_W);
+ EmitUint8(0xC7);
+ EmitOperand(0, operand);
+ } else {
+ EmitRegisterREX(dst, REX_W);
+ EmitUint8(0xB8 | (dst & 7));
+ }
+ EmitImmediate(imm);
+}
+
+
+void Assembler::movq(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_W);
+ EmitUint8(0x8B);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::movq(Register dst, const Address& src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(dst, src, REX_W);
+ EmitUint8(0x8B);
+ EmitOperand(dst & 7, src);
+}
+
+
+void Assembler::movq(const Address& dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(src, dst, REX_W);
+ EmitUint8(0x89);
+ EmitOperand(src & 7, dst);
+}
+
+
+void Assembler::movq(const Address& dst, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ ASSERT(imm.is_int32());
+ Operand operand(dst);
+ EmitOperandREX(0, operand, REX_W);
+ EmitUint8(0xC7);
+ EmitOperand(0, operand);
+ EmitImmediate(imm);
+}
+
+
+void Assembler::movsxl(Register dst, const Address& src) {
+ UNIMPLEMENTED();
+}
+
+
+void Assembler::leaq(Register dst, const Address& src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(dst, src, REX_W);
+ EmitUint8(0x8D);
+ EmitOperand(dst & 7, src);
+}
+
+
+void Assembler::movss(XmmRegister dst, const Address& src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(dst <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF3);
+ EmitOperandREX(0, src, REX_NONE);
+ EmitUint8(0x0F);
+ EmitUint8(0x10);
+ EmitOperand(dst & 7, src);
+}
+
+
+void Assembler::movss(const Address& dst, XmmRegister src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(src <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF3);
+ EmitOperandREX(0, dst, REX_NONE);
+ EmitUint8(0x0F);
+ EmitUint8(0x11);
+ EmitOperand(src & 7, dst);
+}
+
+
+void Assembler::movss(XmmRegister dst, XmmRegister src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(src <= XMM7);
+ ASSERT(dst <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF3);
+ EmitUint8(0x0F);
+ EmitUint8(0x11);
+ EmitXmmRegisterOperand(src & 7, dst);
+}
+
+
+void Assembler::movd(XmmRegister dst, Register src) {
+ ASSERT(dst <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0x66);
+ EmitUint8(0x0F);
+ EmitUint8(0x6E);
+ EmitOperand(dst, Operand(src));
+}
+
+
+void Assembler::movd(Register dst, XmmRegister src) {
+ ASSERT(src <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0x66);
+ EmitUint8(0x0F);
+ EmitUint8(0x7E);
+ EmitOperand(src, Operand(dst));
+}
+
+
+void Assembler::addss(XmmRegister dst, XmmRegister src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(src <= XMM7);
+ ASSERT(dst <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF3);
+ EmitUint8(0x0F);
+ EmitUint8(0x58);
+ EmitXmmRegisterOperand(dst, src);
+}
+
+
+void Assembler::subss(XmmRegister dst, XmmRegister src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(src <= XMM7);
+ ASSERT(dst <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF3);
+ EmitUint8(0x0F);
+ EmitUint8(0x5C);
+ EmitXmmRegisterOperand(dst, src);
+}
+
+
+void Assembler::mulss(XmmRegister dst, XmmRegister src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(src <= XMM7);
+ ASSERT(dst <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF3);
+ EmitUint8(0x0F);
+ EmitUint8(0x59);
+ EmitXmmRegisterOperand(dst, src);
+}
+
+
+void Assembler::divss(XmmRegister dst, XmmRegister src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(src <= XMM7);
+ ASSERT(dst <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF3);
+ EmitUint8(0x0F);
+ EmitUint8(0x5E);
+ EmitXmmRegisterOperand(dst, src);
+}
+
+
+void Assembler::movsd(XmmRegister dst, const Address& src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(dst <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF2);
+ EmitOperandREX(0, src, REX_NONE);
+ EmitUint8(0x0F);
+ EmitUint8(0x10);
+ EmitOperand(dst & 7, src);
+}
+
+
+void Assembler::movsd(const Address& dst, XmmRegister src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(src <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF2);
+ EmitOperandREX(0, dst, REX_NONE);
+ EmitUint8(0x0F);
+ EmitUint8(0x11);
+ EmitOperand(src & 7, dst);
+}
+
+
+void Assembler::movsd(XmmRegister dst, XmmRegister src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(src <= XMM7);
+ ASSERT(dst <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF2);
+ EmitUint8(0x0F);
+ EmitUint8(0x11);
+ EmitXmmRegisterOperand(src & 7, dst);
+}
+
+
+void Assembler::addsd(XmmRegister dst, XmmRegister src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(src <= XMM7);
+ ASSERT(dst <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF2);
+ EmitUint8(0x0F);
+ EmitUint8(0x58);
+ EmitXmmRegisterOperand(dst, src);
+}
+
+
+void Assembler::subsd(XmmRegister dst, XmmRegister src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(src <= XMM7);
+ ASSERT(dst <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF2);
+ EmitUint8(0x0F);
+ EmitUint8(0x5C);
+ EmitXmmRegisterOperand(dst, src);
+}
+
+
+void Assembler::mulsd(XmmRegister dst, XmmRegister src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(src <= XMM7);
+ ASSERT(dst <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF2);
+ EmitUint8(0x0F);
+ EmitUint8(0x59);
+ EmitXmmRegisterOperand(dst, src);
+}
+
+
+void Assembler::divsd(XmmRegister dst, XmmRegister src) {
+ // TODO(srdjan): implement and test XMM8 - XMM15.
+ ASSERT(src <= XMM7);
+ ASSERT(dst <= XMM7);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF2);
+ EmitUint8(0x0F);
+ EmitUint8(0x5E);
+ EmitXmmRegisterOperand(dst, src);
+}
+
+
+void Assembler::xchgl(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_NONE);
+ EmitUint8(0x87);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::xchgq(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_W);
+ EmitUint8(0x87);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::cmpl(Register reg, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(reg, REX_NONE);
+ EmitComplex(7, Operand(reg), imm);
+}
+
+
+void Assembler::cmpl(Register reg0, Register reg1) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(reg1);
+ EmitOperandREX(reg0, operand, REX_NONE);
+ EmitUint8(0x3B);
+ EmitOperand(reg0 & 7, operand);
+}
+
+
+void Assembler::cmpl(Register reg, const Address& address) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(reg, address, REX_NONE);
+ EmitUint8(0x3B);
+ EmitOperand(reg & 7, address);
+}
+
+
+void Assembler::cmpl(const Address& address, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(address);
+ EmitOperandREX(7, operand, REX_NONE);
+ EmitComplex(7, operand, imm);
+}
+
+
+void Assembler::cmpq(const Address& address, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(address);
+ EmitOperandREX(7, operand, REX_W);
+ EmitComplex(7, operand, imm);
+}
+
+
+void Assembler::cmpq(Register reg, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(reg, REX_W);
+ EmitComplex(7, Operand(reg), imm);
+}
+
+
+void Assembler::cmpq(Register reg0, Register reg1) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(reg1);
+ EmitOperandREX(reg0, operand, REX_W);
+ EmitUint8(0x3B);
+ EmitOperand(reg0 & 7, operand);
+}
+
+
+void Assembler::cmpq(Register reg, const Address& address) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(reg, address, REX_W);
+ EmitUint8(0x3B);
+ EmitOperand(reg & 7, address);
+}
+
+
+void Assembler::testl(Register reg1, Register reg2) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(reg2);
+ EmitOperandREX(reg1, operand, REX_NONE);
+ EmitUint8(0x85);
+ EmitOperand(reg1 & 7, operand);
+}
+
+
+void Assembler::testl(Register reg, const Immediate& imm) {
+ // TODO(kasperl): Deal with registers r8-r15 using the short
+ // encoding form of the immediate?
+
+ // We are using RBP for the exception marker. See testl(Label*).
+ ASSERT(reg != RBP);
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ // For registers that have a byte variant (RAX, RBX, RCX, and RDX)
+ // we only test the byte register to keep the encoding short.
+ if (imm.is_uint8() && reg < 4) {
+ // Use zero-extended 8-bit immediate.
+ if (reg == RAX) {
+ EmitUint8(0xA8);
+ } else {
+ EmitUint8(0xF6);
+ EmitUint8(0xC0 + reg);
+ }
+ EmitUint8(imm.value() & 0xFF);
+ } else {
+ ASSERT(imm.is_int32());
+ if (reg == RAX) {
+ EmitUint8(0xA9);
+ } else {
+ EmitRegisterREX(reg, REX_NONE);
+ EmitUint8(0xF7);
+ EmitUint8(0xC0 | (reg & 7));
+ }
+ EmitImmediate(imm);
+ }
+}
+
+
+void Assembler::testq(Register reg1, Register reg2) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(reg2);
+ EmitOperandREX(reg1, operand, REX_W);
+ EmitUint8(0x85);
+ EmitOperand(reg1 & 7, operand);
+}
+
+
+void Assembler::testq(Register reg, const Immediate& imm) {
+ // TODO(kasperl): Deal with registers r8-r15 using the short
+ // encoding form of the immediate?
+
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ // For registers that have a byte variant (RAX, RBX, RCX, and RDX)
+ // we only test the byte register to keep the encoding short.
+ if (imm.is_uint8() && reg < 4) {
+ // Use zero-extended 8-bit immediate.
+ if (reg == RAX) {
+ EmitUint8(0xA8);
+ } else {
+ EmitUint8(0xF6);
+ EmitUint8(0xC0 + reg);
+ }
+ EmitUint8(imm.value() & 0xFF);
+ } else {
+ ASSERT(imm.is_int32());
+ if (reg == RAX) {
+ EmitUint8(0xA9 | REX_W);
+ } else {
+ EmitRegisterREX(reg, REX_W);
+ EmitUint8(0xF7);
+ EmitUint8(0xC0 | (reg & 7));
+ }
+ EmitImmediate(imm);
+ }
+}
+
+
+void Assembler::andl(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_NONE);
+ EmitUint8(0x23);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::andl(Register dst, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(dst, REX_NONE);
+ EmitComplex(4, Operand(dst), imm);
+}
+
+
+void Assembler::orl(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_NONE);
+ EmitUint8(0x0B);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::orl(Register dst, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(dst, REX_NONE);
+ EmitComplex(1, Operand(dst), imm);
+}
+
+
+void Assembler::xorl(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_NONE);
+ EmitUint8(0x33);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::andq(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_W);
+ EmitUint8(0x23);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::andq(Register dst, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(dst, REX_W);
+ EmitComplex(4, Operand(dst), imm);
+}
+
+
+void Assembler::orq(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_W);
+ EmitUint8(0x0B);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::orq(Register dst, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(dst, REX_W);
+ EmitComplex(1, Operand(dst), imm);
+}
+
+
+void Assembler::xorq(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_W);
+ EmitUint8(0x33);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::addl(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_NONE);
+ EmitUint8(0x03);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::addq(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_W);
+ EmitUint8(0x03);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::addl(const Address& address, const Immediate& imm) {
+ UNIMPLEMENTED();
+}
+
+
+void Assembler::addq(Register reg, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(reg, REX_W);
+ EmitComplex(0, Operand(reg), imm);
+}
+
+
+void Assembler::addq(const Address& address, const Immediate& imm) {
+ UNIMPLEMENTED();
+}
+
+
+void Assembler::subl(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_NONE);
+ EmitUint8(0x2B);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::cdq() {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0x99);
+}
+
+
+void Assembler::cqo() {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(RAX, REX_W);
+ EmitUint8(0x99);
+}
+
+
+void Assembler::idivl(Register reg) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(reg, REX_NONE);
+ EmitUint8(0xF7);
+ EmitUint8(0xF8 | (reg & 7));
+}
+
+
+void Assembler::idivq(Register reg) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(reg, REX_W);
+ EmitUint8(0xF7);
+ EmitUint8(0xF8 | (reg & 7));
+}
+
+
+void Assembler::imull(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0x0F);
+ EmitUint8(0xAF);
+ EmitOperand(dst, Operand(src));
+}
+
+
+void Assembler::imull(Register reg, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0x69);
+ EmitOperand(reg, Operand(reg));
+ EmitImmediate(imm);
+}
+
+
+void Assembler::imulq(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_W);
+ EmitUint8(0x0F);
+ EmitUint8(0xAF);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::subq(Register dst, Register src) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(src);
+ EmitOperandREX(dst, operand, REX_W);
+ EmitUint8(0x2B);
+ EmitOperand(dst & 7, operand);
+}
+
+
+void Assembler::subq(Register reg, const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(reg, REX_W);
+ EmitComplex(5, Operand(reg), imm);
+}
+
+
+void Assembler::shll(Register reg, const Immediate& imm) {
+ EmitGenericShift(false, 4, reg, imm);
+}
+
+
+void Assembler::shll(Register operand, Register shifter) {
+ EmitGenericShift(false, 4, operand, shifter);
+}
+
+
+void Assembler::shrl(Register reg, const Immediate& imm) {
+ EmitGenericShift(false, 5, reg, imm);
+}
+
+
+void Assembler::shrl(Register operand, Register shifter) {
+ EmitGenericShift(false, 5, operand, shifter);
+}
+
+
+void Assembler::sarl(Register reg, const Immediate& imm) {
+ EmitGenericShift(false, 7, reg, imm);
+}
+
+
+void Assembler::sarl(Register operand, Register shifter) {
+ EmitGenericShift(false, 7, operand, shifter);
+}
+
+
+void Assembler::shlq(Register reg, const Immediate& imm) {
+ EmitGenericShift(true, 4, reg, imm);
+}
+
+
+void Assembler::shlq(Register operand, Register shifter) {
+ EmitGenericShift(true, 4, operand, shifter);
+}
+
+
+void Assembler::shrq(Register reg, const Immediate& imm) {
+ EmitGenericShift(true, 5, reg, imm);
+}
+
+
+void Assembler::shrq(Register operand, Register shifter) {
+ EmitGenericShift(true, 5, operand, shifter);
+}
+
+
+void Assembler::sarq(Register reg, const Immediate& imm) {
+ EmitGenericShift(true, 7, reg, imm);
+}
+
+
+void Assembler::sarq(Register operand, Register shifter) {
+ EmitGenericShift(true, 7, operand, shifter);
+}
+
+
+void Assembler::incl(const Address& address) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(address);
+ EmitOperandREX(0, operand, REX_NONE);
+ EmitUint8(0xFF);
+ EmitOperand(0, operand);
+}
+
+
+void Assembler::decl(const Address& address) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(address);
+ EmitOperandREX(1, operand, REX_NONE);
+ EmitUint8(0xFF);
+ EmitOperand(1, operand);
+}
+
+
+void Assembler::incq(Register reg) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(reg);
+ EmitOperandREX(0, operand, REX_W);
+ EmitUint8(0xFF);
+ EmitOperand(0, operand);
+}
+
+
+void Assembler::incq(const Address& address) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(address);
+ EmitOperandREX(0, operand, REX_W);
+ EmitUint8(0xFF);
+ EmitOperand(0, operand);
+}
+
+
+void Assembler::decq(Register reg) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(reg);
+ EmitOperandREX(1, operand, REX_W);
+ EmitUint8(0xFF);
+ EmitOperand(1, operand);
+}
+
+
+void Assembler::decq(const Address& address) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(address);
+ EmitOperandREX(1, operand, REX_W);
+ EmitUint8(0xFF);
+ EmitOperand(1, operand);
+}
+
+
+void Assembler::negl(Register reg) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(reg, REX_NONE);
+ EmitUint8(0xF7);
+ EmitOperand(3, Operand(reg));
+}
+
+
+void Assembler::negq(Register reg) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitRegisterREX(reg, REX_W);
+ EmitUint8(0xF7);
+ EmitOperand(3, Operand(reg));
+}
+
+
+void Assembler::enter(const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xC8);
+ ASSERT(imm.is_uint16());
+ EmitUint8(imm.value() & 0xFF);
+ EmitUint8((imm.value() >> 8) & 0xFF);
+ EmitUint8(0x00);
+}
+
+
+void Assembler::leave() {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xC9);
+}
+
+
+void Assembler::ret() {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xC3);
+}
+
+
+void Assembler::nop() {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0x90);
+}
+
+
+void Assembler::int3() {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xCC);
+}
+
+
+void Assembler::hlt() {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF4);
+}
+
+
+void Assembler::j(Condition condition, Label* label, bool near) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ if (label->IsBound()) {
+ static const int kShortSize = 2;
+ static const int kLongSize = 6;
+ int offset = label->Position() - buffer_.Size();
+ ASSERT(offset <= 0);
+ if (Utils::IsInt(8, offset - kShortSize)) {
+ EmitUint8(0x70 + condition);
+ EmitUint8((offset - kShortSize) & 0xFF);
+ } else {
+ EmitUint8(0x0F);
+ EmitUint8(0x80 + condition);
+ EmitInt32(offset - kLongSize);
+ }
+ } else if (near) {
+ EmitUint8(0x70 + condition);
+ EmitNearLabelLink(label);
+ } else {
+ EmitUint8(0x0F);
+ EmitUint8(0x80 + condition);
+ EmitLabelLink(label);
+ }
+}
+
+
+void Assembler::jmp(Register reg) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ Operand operand(reg);
+ EmitOperandREX(4, operand, REX_NONE);
+ EmitUint8(0xFF);
+ EmitOperand(4, operand);
+}
+
+
+void Assembler::jmp(Label* label, bool near) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ if (label->IsBound()) {
+ static const int kShortSize = 2;
+ static const int kLongSize = 5;
+ int offset = label->Position() - buffer_.Size();
+ ASSERT(offset <= 0);
+ if (Utils::IsInt(8, offset - kShortSize)) {
+ EmitUint8(0xEB);
+ EmitUint8((offset - kShortSize) & 0xFF);
+ } else {
+ EmitUint8(0xE9);
+ EmitInt32(offset - kLongSize);
+ }
+ } else if (near) {
+ EmitUint8(0xEB);
+ EmitNearLabelLink(label);
+ } else {
+ EmitUint8(0xE9);
+ EmitLabelLink(label);
+ }
+}
+
+
+void Assembler::jmp(const ExternalLabel* label) {
+ movq(R11, Immediate(label->address()));
+ jmp(R11);
+}
+
+
+void Assembler::lock() {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xF0);
+}
+
+
+void Assembler::cmpxchgl(const Address& address, Register reg) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(reg, address, REX_NONE);
+ EmitUint8(0x0F);
+ EmitUint8(0xB1);
+ EmitOperand(reg & 7, address);
+}
+
+
+void Assembler::cmpxchgq(const Address& address, Register reg) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitOperandREX(reg, address, REX_W);
+ EmitUint8(0x0F);
+ EmitUint8(0xB1);
+ EmitOperand(reg & 7, address);
+}
+
+
+void Assembler::AddImmediate(Register reg, const Immediate& imm) {
+ int64_t value = imm.value();
+ if (value > 0) {
+ if (value == 1) {
+ incq(reg);
+ } else if (value != 0) {
+ addq(reg, imm);
+ }
+ } else if (value < 0) {
+ value = -value;
+ if (value == 1) {
+ decq(reg);
+ } else if (value != 0) {
+ subq(reg, Immediate(value));
+ }
+ }
+}
+
+
+void Assembler::LoadObject(Register dst, const Object& object) {
+ UNIMPLEMENTED();
+ ASSERT(object.IsZoneHandle());
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0xB8 + dst);
+ buffer_.EmitObject(object);
+}
+
+
+void Assembler::PushObject(const Object& object) {
+ UNIMPLEMENTED();
+ ASSERT(object.IsZoneHandle());
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ EmitUint8(0x68);
+ buffer_.EmitObject(object);
+}
+
+
+void Assembler::CompareObject(Register reg, const Object& object) {
+ UNIMPLEMENTED();
+ ASSERT(object.IsZoneHandle());
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ if (reg == RAX) {
+ EmitUint8(0x05 + (7 << 3));
+ buffer_.EmitObject(object);
+ } else {
+ EmitUint8(0x81);
+ EmitOperand(7, Operand(reg));
+ buffer_.EmitObject(object);
+ }
+}
+
+
+void Assembler::Stop(const char* message) {
+ // Emit the lower half and the higher half of the message address as immediate
+ // operands in the test rax instructions, followed by the int3 instruction.
+ // Execution can be resumed with the 'cont' command in gdb.
+ int64_t message_address = reinterpret_cast<int64_t>(message);
+ testl(RAX, Immediate(Utils::Low32Bits(message_address)));
+ testl(RAX, Immediate(Utils::High32Bits(message_address)));
+ int3();
+}
+
+
+void Assembler::Bind(Label* label) {
+ int bound = buffer_.Size();
+ ASSERT(!label->IsBound()); // Labels can only be bound once.
+ while (label->IsLinked()) {
+ int position = label->LinkPosition();
+ int next = buffer_.Load<int32_t>(position);
+ buffer_.Store<int32_t>(position, bound - (position + 4));
+ label->position_ = next;
+ }
+ while (label->HasNear()) {
+ int position = label->NearPosition();
+ int offset = bound - (position + 1);
+ ASSERT(Utils::IsInt(8, offset));
+ buffer_.Store<int8_t>(position, offset);
+ }
+ label->BindTo(bound);
+}
+
+
+void Assembler::Align(int alignment, int offset) {
+ UNIMPLEMENTED();
+}
+
+
+void Assembler::EmitOperand(int rm, const Operand& operand) {
+ ASSERT(rm >= 0 && rm < 8);
+ const int length = operand.length_;
+ ASSERT(length > 0);
+ // Emit the ModRM byte updated with the given RM value.
+ ASSERT((operand.encoding_[0] & 0x38) == 0);
+ EmitUint8(operand.encoding_[0] + (rm << 3));
+ // Emit the rest of the encoded operand.
+ for (int i = 1; i < length; i++) {
+ EmitUint8(operand.encoding_[i]);
+ }
+}
+
+
+void Assembler::EmitXmmRegisterOperand(int rm, XmmRegister xmm_reg) {
+ Operand operand;
+ operand.SetModRM(3, static_cast<Register>(xmm_reg));
+ EmitOperand(rm, operand);
+}
+
+
+void Assembler::EmitImmediate(const Immediate& imm) {
+ if (imm.is_int32()) {
+ EmitInt32(static_cast<int32_t>(imm.value()));
+ } else {
+ EmitInt64(imm.value());
+ }
+}
+
+
+void Assembler::EmitComplex(int rm,
+ const Operand& operand,
+ const Immediate& immediate) {
+ ASSERT(rm >= 0 && rm < 8);
+ ASSERT(immediate.is_int32());
+ if (immediate.is_int8()) {
+ // Use sign-extended 8-bit immediate.
+ EmitUint8(0x83);
+ EmitOperand(rm, operand);
+ EmitUint8(immediate.value() & 0xFF);
+ } else if (operand.IsRegister(RAX)) {
+ // Use short form if the destination is rax.
+ EmitUint8(0x05 + (rm << 3));
+ EmitImmediate(immediate);
+ } else {
+ EmitUint8(0x81);
+ EmitOperand(rm, operand);
+ EmitImmediate(immediate);
+ }
+}
+
+
+void Assembler::EmitLabel(Label* label, int instruction_size) {
+ if (label->IsBound()) {
+ int offset = label->Position() - buffer_.Size();
+ ASSERT(offset <= 0);
+ EmitInt32(offset - instruction_size);
+ } else {
+ EmitLabelLink(label);
+ }
+}
+
+
+void Assembler::EmitLabelLink(Label* label) {
+ ASSERT(!label->IsBound());
+ int position = buffer_.Size();
+ EmitInt32(label->position_);
+ label->LinkTo(position);
+}
+
+
+void Assembler::EmitNearLabelLink(Label* label) {
+ ASSERT(!label->IsBound());
+ int position = buffer_.Size();
+ EmitUint8(0);
+ label->NearLinkTo(position);
+}
+
+
+void Assembler::EmitGenericShift(bool wide,
+ int rm,
+ Register reg,
+ const Immediate& imm) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ ASSERT(imm.is_int8());
+ if (wide) {
+ EmitRegisterREX(reg, REX_W);
+ } else {
+ EmitRegisterREX(reg, REX_NONE);
+ }
+ if (imm.value() == 1) {
+ EmitUint8(0xD1);
+ EmitOperand(rm, Operand(reg));
+ } else {
+ EmitUint8(0xC1);
+ EmitOperand(rm, Operand(reg));
+ EmitUint8(imm.value() & 0xFF);
+ }
+}
+
+
+void Assembler::EmitGenericShift(bool wide,
+ int rm,
+ Register operand,
+ Register shifter) {
+ AssemblerBuffer::EnsureCapacity ensured(&buffer_);
+ ASSERT(shifter == RCX);
+ if (wide) {
+ EmitRegisterREX(operand, REX_W);
+ } else {
+ EmitRegisterREX(operand, REX_NONE);
+ }
+ EmitUint8(0xD3);
+ EmitOperand(rm, Operand(operand));
+}
+
+} // namespace dart
+
+#endif // defined TARGET_ARCH_X64
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