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Venkatraman Govindarajudfcccc72014-01-06 08:08:58 +00001//===- SparcDisassembler.cpp - Disassembler for Sparc -----------*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file is part of the Sparc Disassembler.
11//
12//===----------------------------------------------------------------------===//
13
14#define DEBUG_TYPE "sparc-disassembler"
15
16#include "Sparc.h"
17#include "SparcRegisterInfo.h"
18#include "SparcSubtarget.h"
19#include "llvm/MC/MCDisassembler.h"
20#include "llvm/MC/MCFixedLenDisassembler.h"
21#include "llvm/Support/MemoryObject.h"
22#include "llvm/Support/TargetRegistry.h"
23
24using namespace llvm;
25
26typedef MCDisassembler::DecodeStatus DecodeStatus;
27
28namespace {
29
30/// SparcDisassembler - a disassembler class for Sparc.
31class SparcDisassembler : public MCDisassembler {
32public:
33 /// Constructor - Initializes the disassembler.
34 ///
35 SparcDisassembler(const MCSubtargetInfo &STI, const MCRegisterInfo *Info) :
36 MCDisassembler(STI), RegInfo(Info)
37 {}
38 virtual ~SparcDisassembler() {}
39
40 const MCRegisterInfo *getRegInfo() const { return RegInfo.get(); }
41
42 /// getInstruction - See MCDisassembler.
43 virtual DecodeStatus getInstruction(MCInst &instr,
44 uint64_t &size,
45 const MemoryObject &region,
46 uint64_t address,
47 raw_ostream &vStream,
48 raw_ostream &cStream) const;
49private:
50 OwningPtr<const MCRegisterInfo> RegInfo;
51};
52
53}
54
55namespace llvm {
56 extern Target TheSparcTarget, TheSparcV9Target;
57}
58
59static MCDisassembler *createSparcDisassembler(
60 const Target &T,
61 const MCSubtargetInfo &STI) {
62 return new SparcDisassembler(STI, T.createMCRegInfo(""));
63}
64
65
66extern "C" void LLVMInitializeSparcDisassembler() {
67 // Register the disassembler.
68 TargetRegistry::RegisterMCDisassembler(TheSparcTarget,
69 createSparcDisassembler);
70 TargetRegistry::RegisterMCDisassembler(TheSparcV9Target,
71 createSparcDisassembler);
72}
73
74
75
76static const unsigned IntRegDecoderTable[] = {
77 SP::G0, SP::G1, SP::G2, SP::G3,
78 SP::G4, SP::G5, SP::G6, SP::G7,
79 SP::O0, SP::O1, SP::O2, SP::O3,
80 SP::O4, SP::O5, SP::O6, SP::O7,
81 SP::L0, SP::L1, SP::L2, SP::L3,
82 SP::L4, SP::L5, SP::L6, SP::L7,
83 SP::I0, SP::I1, SP::I2, SP::I3,
84 SP::I4, SP::I5, SP::I6, SP::I7 };
85
86static const unsigned FPRegDecoderTable[] = {
87 SP::F0, SP::F1, SP::F2, SP::F3,
88 SP::F4, SP::F5, SP::F6, SP::F7,
89 SP::F8, SP::F9, SP::F10, SP::F11,
90 SP::F12, SP::F13, SP::F14, SP::F15,
91 SP::F16, SP::F17, SP::F18, SP::F19,
92 SP::F20, SP::F21, SP::F22, SP::F23,
93 SP::F24, SP::F25, SP::F26, SP::F27,
94 SP::F28, SP::F29, SP::F30, SP::F31 };
95
96static const unsigned DFPRegDecoderTable[] = {
97 SP::D0, SP::D16, SP::D1, SP::D17,
98 SP::D2, SP::D18, SP::D3, SP::D19,
99 SP::D4, SP::D20, SP::D5, SP::D21,
100 SP::D6, SP::D22, SP::D7, SP::D23,
101 SP::D8, SP::D24, SP::D9, SP::D25,
102 SP::D10, SP::D26, SP::D11, SP::D27,
103 SP::D12, SP::D28, SP::D13, SP::D29,
104 SP::D14, SP::D30, SP::D15, SP::D31 };
105
106static const unsigned QFPRegDecoderTable[] = {
Venkatraman Govindaraju0b9debf2014-01-12 04:34:31 +0000107 SP::Q0, SP::Q8, ~0U, ~0U,
108 SP::Q1, SP::Q9, ~0U, ~0U,
109 SP::Q2, SP::Q10, ~0U, ~0U,
110 SP::Q3, SP::Q11, ~0U, ~0U,
111 SP::Q4, SP::Q12, ~0U, ~0U,
112 SP::Q5, SP::Q13, ~0U, ~0U,
113 SP::Q6, SP::Q14, ~0U, ~0U,
114 SP::Q7, SP::Q15, ~0U, ~0U } ;
Venkatraman Govindarajudfcccc72014-01-06 08:08:58 +0000115
116static DecodeStatus DecodeIntRegsRegisterClass(MCInst &Inst,
117 unsigned RegNo,
118 uint64_t Address,
119 const void *Decoder) {
120 if (RegNo > 31)
121 return MCDisassembler::Fail;
122 unsigned Reg = IntRegDecoderTable[RegNo];
123 Inst.addOperand(MCOperand::CreateReg(Reg));
124 return MCDisassembler::Success;
125}
126
127static DecodeStatus DecodeI64RegsRegisterClass(MCInst &Inst,
128 unsigned RegNo,
129 uint64_t Address,
130 const void *Decoder) {
131 if (RegNo > 31)
132 return MCDisassembler::Fail;
133 unsigned Reg = IntRegDecoderTable[RegNo];
134 Inst.addOperand(MCOperand::CreateReg(Reg));
135 return MCDisassembler::Success;
136}
137
138
139static DecodeStatus DecodeFPRegsRegisterClass(MCInst &Inst,
140 unsigned RegNo,
141 uint64_t Address,
142 const void *Decoder) {
143 if (RegNo > 31)
144 return MCDisassembler::Fail;
145 unsigned Reg = FPRegDecoderTable[RegNo];
146 Inst.addOperand(MCOperand::CreateReg(Reg));
147 return MCDisassembler::Success;
148}
149
150
151static DecodeStatus DecodeDFPRegsRegisterClass(MCInst &Inst,
152 unsigned RegNo,
153 uint64_t Address,
154 const void *Decoder) {
155 if (RegNo > 31)
156 return MCDisassembler::Fail;
157 unsigned Reg = DFPRegDecoderTable[RegNo];
158 Inst.addOperand(MCOperand::CreateReg(Reg));
159 return MCDisassembler::Success;
160}
161
162
163static DecodeStatus DecodeQFPRegsRegisterClass(MCInst &Inst,
164 unsigned RegNo,
165 uint64_t Address,
166 const void *Decoder) {
167 if (RegNo > 31)
168 return MCDisassembler::Fail;
169
170 unsigned Reg = QFPRegDecoderTable[RegNo];
Venkatraman Govindaraju0b9debf2014-01-12 04:34:31 +0000171 if (Reg == ~0U)
Venkatraman Govindarajudfcccc72014-01-06 08:08:58 +0000172 return MCDisassembler::Fail;
173 Inst.addOperand(MCOperand::CreateReg(Reg));
174 return MCDisassembler::Success;
175}
176
177
178#include "SparcGenDisassemblerTables.inc"
179
180/// readInstruction - read four bytes from the MemoryObject
181/// and return 32 bit word.
182static DecodeStatus readInstruction32(const MemoryObject &region,
183 uint64_t address,
184 uint64_t &size,
185 uint32_t &insn) {
186 uint8_t Bytes[4];
187
188 // We want to read exactly 4 Bytes of data.
189 if (region.readBytes(address, 4, Bytes) == -1) {
190 size = 0;
191 return MCDisassembler::Fail;
192 }
193
194 // Encoded as a big-endian 32-bit word in the stream.
195 insn = (Bytes[3] << 0) |
196 (Bytes[2] << 8) |
197 (Bytes[1] << 16) |
198 (Bytes[0] << 24);
199
200 return MCDisassembler::Success;
201}
202
203
204DecodeStatus
205SparcDisassembler::getInstruction(MCInst &instr,
206 uint64_t &Size,
207 const MemoryObject &Region,
208 uint64_t Address,
209 raw_ostream &vStream,
210 raw_ostream &cStream) const {
211 uint32_t Insn;
212
213 DecodeStatus Result = readInstruction32(Region, Address, Size, Insn);
214 if (Result == MCDisassembler::Fail)
215 return MCDisassembler::Fail;
216
217
218 // Calling the auto-generated decoder function.
219 Result = decodeInstruction(DecoderTableSparc32, instr, Insn, Address,
220 this, STI);
221
222 if (Result != MCDisassembler::Fail) {
223 Size = 4;
224 return Result;
225 }
226
227 return MCDisassembler::Fail;
228}