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Issue 1860001: X64: Port inline transcendental cache to X64. (Closed)
Patch Set: Created 10 years, 7 months ago
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1 // Copyright 2009 the V8 project authors. All rights reserved. 1 // Copyright 2009 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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989 // These instructions may be affected by an 0x66, 0xF2, or 0xF3 prefix. 989 // These instructions may be affected by an 0x66, 0xF2, or 0xF3 prefix.
990 // We do not use any three-byte opcodes, which start with 0x0F38 or 0x0F3A. 990 // We do not use any three-byte opcodes, which start with 0x0F38 or 0x0F3A.
991 int DisassemblerX64::TwoByteOpcodeInstruction(byte* data) { 991 int DisassemblerX64::TwoByteOpcodeInstruction(byte* data) {
992 byte opcode = *(data + 1); 992 byte opcode = *(data + 1);
993 byte* current = data + 2; 993 byte* current = data + 2;
994 // At return, "current" points to the start of the next instruction. 994 // At return, "current" points to the start of the next instruction.
995 const char* mnemonic = TwoByteMnemonic(opcode); 995 const char* mnemonic = TwoByteMnemonic(opcode);
996 if (operand_size_ == 0x66) { 996 if (operand_size_ == 0x66) {
997 // 0x66 0x0F prefix. 997 // 0x66 0x0F prefix.
998 int mod, regop, rm; 998 int mod, regop, rm;
999 get_modrm(*current, &mod, &regop, &rm); 999 if (opcode == 0x3A) {
1000 if (opcode == 0x6E) { 1000 byte third_byte = *current;
1001 AppendToBuffer("movd %s,", NameOfXMMRegister(regop)); 1001 current = data + 3;
1002 current += PrintRightOperand(current); 1002 if (third_byte == 0x17) {
1003 } else { 1003 get_modrm(*current, &mod, &regop, &rm);
1004 const char* mnemonic = "?"; 1004 AppendToBuffer("extractps "); // reg/m32, xmm, imm8
1005 if (opcode == 0x57) { 1005 current += PrintRightOperand(current);
1006 mnemonic = "xorpd"; 1006 AppendToBuffer(", %s, %d", NameOfCPURegister(regop), (*current) & 3);
1007 } else if (opcode == 0x2E) { 1007 current += 1;
1008 mnemonic = "comisd";
1009 } else if (opcode == 0x2F) {
1010 mnemonic = "ucomisd";
1011 } else { 1008 } else {
1012 UnimplementedInstruction(); 1009 UnimplementedInstruction();
1013 } 1010 }
1014 AppendToBuffer("%s %s,", mnemonic, NameOfXMMRegister(regop)); 1011 } else {
1015 current += PrintRightXMMOperand(current); 1012 get_modrm(*current, &mod, &regop, &rm);
1013 if (opcode == 0x6E) {
1014 AppendToBuffer("mov%c %s,",
1015 rex_w() ? 'q' : 'd',
1016 NameOfXMMRegister(regop));
1017 current += PrintRightOperand(current);
1018 } else if (opcode == 0x7E) {
1019 AppendToBuffer("mov%c %s,",
1020 rex_w() ? 'q' : 'd',
1021 NameOfCPURegister(regop));
1022 current += PrintRightXMMOperand(current);
1023 } else {
1024 const char* mnemonic = "?";
1025 if (opcode == 0x57) {
1026 mnemonic = "xorpd";
1027 } else if (opcode == 0x2E) {
1028 mnemonic = "comisd";
1029 } else if (opcode == 0x2F) {
1030 mnemonic = "ucomisd";
1031 } else {
1032 UnimplementedInstruction();
1033 }
1034 AppendToBuffer("%s %s,", mnemonic, NameOfXMMRegister(regop));
1035 current += PrintRightXMMOperand(current);
1036 }
1016 } 1037 }
1017 } else if (group_1_prefix_ == 0xF2) { 1038 } else if (group_1_prefix_ == 0xF2) {
1018 // Beginning of instructions with prefix 0xF2. 1039 // Beginning of instructions with prefix 0xF2.
1019 1040
1020 if (opcode == 0x11 || opcode == 0x10) { 1041 if (opcode == 0x11 || opcode == 0x10) {
1021 // MOVSD: Move scalar double-precision fp to/from/between XMM registers. 1042 // MOVSD: Move scalar double-precision fp to/from/between XMM registers.
1022 AppendToBuffer("movsd "); 1043 AppendToBuffer("movsd ");
1023 int mod, regop, rm; 1044 int mod, regop, rm;
1024 get_modrm(*current, &mod, &regop, &rm); 1045 get_modrm(*current, &mod, &regop, &rm);
1025 if (opcode == 0x11) { 1046 if (opcode == 0x11) {
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1643 fprintf(f, "%02x", *bp); 1664 fprintf(f, "%02x", *bp);
1644 } 1665 }
1645 for (int i = 6 - static_cast<int>(pc - prev_pc); i >= 0; i--) { 1666 for (int i = 6 - static_cast<int>(pc - prev_pc); i >= 0; i--) {
1646 fprintf(f, " "); 1667 fprintf(f, " ");
1647 } 1668 }
1648 fprintf(f, " %s\n", buffer.start()); 1669 fprintf(f, " %s\n", buffer.start());
1649 } 1670 }
1650 } 1671 }
1651 1672
1652 } // namespace disasm 1673 } // namespace disasm
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