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Daniel Dunbar092a9dd2009-07-17 20:42:00 +00001//===-- X86AsmParser.cpp - Parse X86 assembly to MCInst instructions ------===//
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
Chris Lattner98986712010-01-14 22:21:20 +000010#include "llvm/Target/TargetAsmParser.h"
Daniel Dunbar4cb1e132009-07-18 23:03:22 +000011#include "X86.h"
Daniel Dunbar54074b52010-07-19 05:44:09 +000012#include "X86Subtarget.h"
Chris Lattner33d60d52010-09-22 04:11:10 +000013#include "llvm/Target/TargetRegistry.h"
14#include "llvm/Target/TargetAsmParser.h"
Kevin Enderby9c656452009-09-10 20:51:44 +000015#include "llvm/MC/MCStreamer.h"
Daniel Dunbar8c2eebe2009-08-31 08:08:38 +000016#include "llvm/MC/MCExpr.h"
Daniel Dunbara027d222009-07-31 02:32:59 +000017#include "llvm/MC/MCInst.h"
Chris Lattnerc6ef2772010-01-22 01:44:57 +000018#include "llvm/MC/MCParser/MCAsmLexer.h"
19#include "llvm/MC/MCParser/MCAsmParser.h"
20#include "llvm/MC/MCParser/MCParsedAsmOperand.h"
Chris Lattner33d60d52010-09-22 04:11:10 +000021#include "llvm/ADT/SmallString.h"
22#include "llvm/ADT/SmallVector.h"
23#include "llvm/ADT/StringExtras.h"
24#include "llvm/ADT/StringSwitch.h"
25#include "llvm/ADT/Twine.h"
Daniel Dunbar16cdcb32009-07-28 22:40:46 +000026#include "llvm/Support/SourceMgr.h"
Daniel Dunbar09062b12010-08-12 00:55:42 +000027#include "llvm/Support/raw_ostream.h"
Daniel Dunbar092a9dd2009-07-17 20:42:00 +000028using namespace llvm;
29
30namespace {
Benjamin Kramerc6b79ac2009-07-31 11:35:26 +000031struct X86Operand;
Daniel Dunbar16cdcb32009-07-28 22:40:46 +000032
33class X86ATTAsmParser : public TargetAsmParser {
34 MCAsmParser &Parser;
Daniel Dunbard73ada72010-07-19 00:33:49 +000035 TargetMachine &TM;
Daniel Dunbar16cdcb32009-07-28 22:40:46 +000036
Daniel Dunbarf98bc632010-03-18 20:06:02 +000037protected:
38 unsigned Is64Bit : 1;
Michael J. Spencerc0c8df32010-10-09 11:00:50 +000039
Daniel Dunbar16cdcb32009-07-28 22:40:46 +000040private:
Daniel Dunbar16cdcb32009-07-28 22:40:46 +000041 MCAsmParser &getParser() const { return Parser; }
42
43 MCAsmLexer &getLexer() const { return Parser.getLexer(); }
44
Daniel Dunbar16cdcb32009-07-28 22:40:46 +000045 bool Error(SMLoc L, const Twine &Msg) { return Parser.Error(L, Msg); }
46
Chris Lattner29ef9a22010-01-15 18:51:29 +000047 bool ParseRegister(unsigned &RegNo, SMLoc &StartLoc, SMLoc &EndLoc);
Daniel Dunbar16cdcb32009-07-28 22:40:46 +000048
Chris Lattner309264d2010-01-15 18:44:13 +000049 X86Operand *ParseOperand();
Chris Lattnereef6d782010-04-17 18:56:34 +000050 X86Operand *ParseMemOperand(unsigned SegReg, SMLoc StartLoc);
Kevin Enderby9c656452009-09-10 20:51:44 +000051
52 bool ParseDirectiveWord(unsigned Size, SMLoc L);
53
Chris Lattner7036f8b2010-09-29 01:42:58 +000054 bool MatchAndEmitInstruction(SMLoc IDLoc,
Chris Lattner7c51a312010-09-29 01:50:45 +000055 SmallVectorImpl<MCParsedAsmOperand*> &Operands,
Chris Lattner7036f8b2010-09-29 01:42:58 +000056 MCStreamer &Out);
Daniel Dunbar20927f22009-08-07 08:26:05 +000057
Daniel Dunbar54074b52010-07-19 05:44:09 +000058 /// @name Auto-generated Matcher Functions
59 /// {
Michael J. Spencerc0c8df32010-10-09 11:00:50 +000060
Chris Lattner0692ee62010-09-06 19:11:01 +000061#define GET_ASSEMBLER_HEADER
62#include "X86GenAsmMatcher.inc"
Michael J. Spencerc0c8df32010-10-09 11:00:50 +000063
Daniel Dunbar0e2771f2009-07-29 00:02:19 +000064 /// }
Daniel Dunbar16cdcb32009-07-28 22:40:46 +000065
66public:
Daniel Dunbard73ada72010-07-19 00:33:49 +000067 X86ATTAsmParser(const Target &T, MCAsmParser &_Parser, TargetMachine &TM)
Daniel Dunbar54074b52010-07-19 05:44:09 +000068 : TargetAsmParser(T), Parser(_Parser), TM(TM) {
Michael J. Spencerc0c8df32010-10-09 11:00:50 +000069
Daniel Dunbar54074b52010-07-19 05:44:09 +000070 // Initialize the set of available features.
71 setAvailableFeatures(ComputeAvailableFeatures(
72 &TM.getSubtarget<X86Subtarget>()));
73 }
Daniel Dunbar16cdcb32009-07-28 22:40:46 +000074
Benjamin Kramer38e59892010-07-14 22:38:02 +000075 virtual bool ParseInstruction(StringRef Name, SMLoc NameLoc,
Chris Lattner98986712010-01-14 22:21:20 +000076 SmallVectorImpl<MCParsedAsmOperand*> &Operands);
Kevin Enderby9c656452009-09-10 20:51:44 +000077
78 virtual bool ParseDirective(AsmToken DirectiveID);
Daniel Dunbar16cdcb32009-07-28 22:40:46 +000079};
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +000080
Daniel Dunbarf98bc632010-03-18 20:06:02 +000081class X86_32ATTAsmParser : public X86ATTAsmParser {
82public:
Daniel Dunbard73ada72010-07-19 00:33:49 +000083 X86_32ATTAsmParser(const Target &T, MCAsmParser &_Parser, TargetMachine &TM)
84 : X86ATTAsmParser(T, _Parser, TM) {
Daniel Dunbarf98bc632010-03-18 20:06:02 +000085 Is64Bit = false;
86 }
87};
88
89class X86_64ATTAsmParser : public X86ATTAsmParser {
90public:
Daniel Dunbard73ada72010-07-19 00:33:49 +000091 X86_64ATTAsmParser(const Target &T, MCAsmParser &_Parser, TargetMachine &TM)
92 : X86ATTAsmParser(T, _Parser, TM) {
Daniel Dunbarf98bc632010-03-18 20:06:02 +000093 Is64Bit = true;
94 }
95};
96
Chris Lattner37dfdec2009-07-29 06:33:53 +000097} // end anonymous namespace
98
Sean Callanane9b466d2010-01-23 00:40:33 +000099/// @name Auto-generated Match Functions
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000100/// {
Sean Callanane9b466d2010-01-23 00:40:33 +0000101
Chris Lattnerb8d6e982010-02-09 00:34:28 +0000102static unsigned MatchRegisterName(StringRef Name);
Sean Callanane9b466d2010-01-23 00:40:33 +0000103
104/// }
Chris Lattner37dfdec2009-07-29 06:33:53 +0000105
106namespace {
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000107
108/// X86Operand - Instances of this class represent a parsed X86 machine
109/// instruction.
Chris Lattner45220a82010-01-14 21:20:55 +0000110struct X86Operand : public MCParsedAsmOperand {
Chris Lattner1f19f0f2010-01-15 19:06:59 +0000111 enum KindTy {
Daniel Dunbar20927f22009-08-07 08:26:05 +0000112 Token,
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000113 Register,
114 Immediate,
115 Memory
116 } Kind;
117
Chris Lattner29ef9a22010-01-15 18:51:29 +0000118 SMLoc StartLoc, EndLoc;
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000119
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000120 union {
121 struct {
Daniel Dunbar20927f22009-08-07 08:26:05 +0000122 const char *Data;
123 unsigned Length;
124 } Tok;
125
126 struct {
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000127 unsigned RegNo;
128 } Reg;
129
130 struct {
Daniel Dunbar8c2eebe2009-08-31 08:08:38 +0000131 const MCExpr *Val;
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000132 } Imm;
133
134 struct {
135 unsigned SegReg;
Daniel Dunbar8c2eebe2009-08-31 08:08:38 +0000136 const MCExpr *Disp;
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000137 unsigned BaseReg;
138 unsigned IndexReg;
139 unsigned Scale;
140 } Mem;
Daniel Dunbardbd692a2009-07-20 20:01:54 +0000141 };
Daniel Dunbar092a9dd2009-07-17 20:42:00 +0000142
Chris Lattner0a3c5a52010-01-15 19:33:43 +0000143 X86Operand(KindTy K, SMLoc Start, SMLoc End)
Chris Lattner1f19f0f2010-01-15 19:06:59 +0000144 : Kind(K), StartLoc(Start), EndLoc(End) {}
Daniel Dunbarc918d602010-05-04 16:12:42 +0000145
Chris Lattner1f19f0f2010-01-15 19:06:59 +0000146 /// getStartLoc - Get the location of the first token of this operand.
147 SMLoc getStartLoc() const { return StartLoc; }
148 /// getEndLoc - Get the location of the last token of this operand.
149 SMLoc getEndLoc() const { return EndLoc; }
150
Daniel Dunbarb3cb6962010-08-11 06:37:04 +0000151 virtual void dump(raw_ostream &OS) const {}
152
Daniel Dunbar20927f22009-08-07 08:26:05 +0000153 StringRef getToken() const {
154 assert(Kind == Token && "Invalid access!");
155 return StringRef(Tok.Data, Tok.Length);
156 }
Daniel Dunbarc918d602010-05-04 16:12:42 +0000157 void setTokenValue(StringRef Value) {
158 assert(Kind == Token && "Invalid access!");
159 Tok.Data = Value.data();
160 Tok.Length = Value.size();
161 }
Daniel Dunbar20927f22009-08-07 08:26:05 +0000162
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000163 unsigned getReg() const {
164 assert(Kind == Register && "Invalid access!");
165 return Reg.RegNo;
166 }
Daniel Dunbara2edbab2009-07-28 20:47:52 +0000167
Daniel Dunbar8c2eebe2009-08-31 08:08:38 +0000168 const MCExpr *getImm() const {
Daniel Dunbar022e2a82009-07-31 20:53:16 +0000169 assert(Kind == Immediate && "Invalid access!");
170 return Imm.Val;
171 }
172
Daniel Dunbar8c2eebe2009-08-31 08:08:38 +0000173 const MCExpr *getMemDisp() const {
Daniel Dunbar022e2a82009-07-31 20:53:16 +0000174 assert(Kind == Memory && "Invalid access!");
175 return Mem.Disp;
176 }
177 unsigned getMemSegReg() const {
178 assert(Kind == Memory && "Invalid access!");
179 return Mem.SegReg;
180 }
181 unsigned getMemBaseReg() const {
182 assert(Kind == Memory && "Invalid access!");
183 return Mem.BaseReg;
184 }
185 unsigned getMemIndexReg() const {
186 assert(Kind == Memory && "Invalid access!");
187 return Mem.IndexReg;
188 }
189 unsigned getMemScale() const {
190 assert(Kind == Memory && "Invalid access!");
191 return Mem.Scale;
192 }
193
Daniel Dunbara3741fa2009-08-08 07:50:56 +0000194 bool isToken() const {return Kind == Token; }
Daniel Dunbar20927f22009-08-07 08:26:05 +0000195
196 bool isImm() const { return Kind == Immediate; }
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000197
Daniel Dunbar62e4c672010-05-22 21:02:33 +0000198 bool isImmSExti16i8() const {
Daniel Dunbar5fe63382009-08-09 07:20:21 +0000199 if (!isImm())
200 return false;
201
Daniel Dunbar62e4c672010-05-22 21:02:33 +0000202 // If this isn't a constant expr, just assume it fits and let relaxation
203 // handle it.
204 const MCConstantExpr *CE = dyn_cast<MCConstantExpr>(getImm());
205 if (!CE)
206 return true;
Daniel Dunbar5fe63382009-08-09 07:20:21 +0000207
Daniel Dunbar62e4c672010-05-22 21:02:33 +0000208 // Otherwise, check the value is in a range that makes sense for this
209 // extension.
210 uint64_t Value = CE->getValue();
211 return (( Value <= 0x000000000000007FULL)||
212 (0x000000000000FF80ULL <= Value && Value <= 0x000000000000FFFFULL)||
213 (0xFFFFFFFFFFFFFF80ULL <= Value && Value <= 0xFFFFFFFFFFFFFFFFULL));
Daniel Dunbar5fe63382009-08-09 07:20:21 +0000214 }
Daniel Dunbar62e4c672010-05-22 21:02:33 +0000215 bool isImmSExti32i8() const {
Daniel Dunbar1fe591d2010-05-20 20:20:39 +0000216 if (!isImm())
217 return false;
218
Daniel Dunbar62e4c672010-05-22 21:02:33 +0000219 // If this isn't a constant expr, just assume it fits and let relaxation
220 // handle it.
221 const MCConstantExpr *CE = dyn_cast<MCConstantExpr>(getImm());
222 if (!CE)
223 return true;
Daniel Dunbar1fe591d2010-05-20 20:20:39 +0000224
Daniel Dunbar62e4c672010-05-22 21:02:33 +0000225 // Otherwise, check the value is in a range that makes sense for this
226 // extension.
227 uint64_t Value = CE->getValue();
228 return (( Value <= 0x000000000000007FULL)||
229 (0x00000000FFFFFF80ULL <= Value && Value <= 0x00000000FFFFFFFFULL)||
230 (0xFFFFFFFFFFFFFF80ULL <= Value && Value <= 0xFFFFFFFFFFFFFFFFULL));
231 }
232 bool isImmSExti64i8() const {
233 if (!isImm())
234 return false;
235
236 // If this isn't a constant expr, just assume it fits and let relaxation
237 // handle it.
238 const MCConstantExpr *CE = dyn_cast<MCConstantExpr>(getImm());
239 if (!CE)
240 return true;
241
242 // Otherwise, check the value is in a range that makes sense for this
243 // extension.
244 uint64_t Value = CE->getValue();
245 return (( Value <= 0x000000000000007FULL)||
246 (0xFFFFFFFFFFFFFF80ULL <= Value && Value <= 0xFFFFFFFFFFFFFFFFULL));
247 }
248 bool isImmSExti64i32() const {
249 if (!isImm())
250 return false;
251
252 // If this isn't a constant expr, just assume it fits and let relaxation
253 // handle it.
254 const MCConstantExpr *CE = dyn_cast<MCConstantExpr>(getImm());
255 if (!CE)
256 return true;
257
258 // Otherwise, check the value is in a range that makes sense for this
259 // extension.
260 uint64_t Value = CE->getValue();
261 return (( Value <= 0x000000007FFFFFFFULL)||
262 (0xFFFFFFFF80000000ULL <= Value && Value <= 0xFFFFFFFFFFFFFFFFULL));
Daniel Dunbar1fe591d2010-05-20 20:20:39 +0000263 }
264
Daniel Dunbar20927f22009-08-07 08:26:05 +0000265 bool isMem() const { return Kind == Memory; }
266
Daniel Dunbarb834f5d2010-01-30 01:02:48 +0000267 bool isAbsMem() const {
268 return Kind == Memory && !getMemSegReg() && !getMemBaseReg() &&
Daniel Dunbar7b9147a2010-02-02 21:44:16 +0000269 !getMemIndexReg() && getMemScale() == 1;
Daniel Dunbarb834f5d2010-01-30 01:02:48 +0000270 }
271
Daniel Dunbar20927f22009-08-07 08:26:05 +0000272 bool isReg() const { return Kind == Register; }
273
Daniel Dunbar9c60f532010-02-13 00:17:21 +0000274 void addExpr(MCInst &Inst, const MCExpr *Expr) const {
275 // Add as immediates when possible.
276 if (const MCConstantExpr *CE = dyn_cast<MCConstantExpr>(Expr))
277 Inst.addOperand(MCOperand::CreateImm(CE->getValue()));
278 else
279 Inst.addOperand(MCOperand::CreateExpr(Expr));
280 }
281
Daniel Dunbar5c468e32009-08-10 21:00:45 +0000282 void addRegOperands(MCInst &Inst, unsigned N) const {
Daniel Dunbar20927f22009-08-07 08:26:05 +0000283 assert(N == 1 && "Invalid number of operands!");
284 Inst.addOperand(MCOperand::CreateReg(getReg()));
285 }
286
Daniel Dunbar5c468e32009-08-10 21:00:45 +0000287 void addImmOperands(MCInst &Inst, unsigned N) const {
Daniel Dunbar20927f22009-08-07 08:26:05 +0000288 assert(N == 1 && "Invalid number of operands!");
Daniel Dunbar9c60f532010-02-13 00:17:21 +0000289 addExpr(Inst, getImm());
Daniel Dunbar20927f22009-08-07 08:26:05 +0000290 }
291
Daniel Dunbar5c468e32009-08-10 21:00:45 +0000292 void addMemOperands(MCInst &Inst, unsigned N) const {
Daniel Dunbarec2b1f12010-01-30 00:24:00 +0000293 assert((N == 5) && "Invalid number of operands!");
Daniel Dunbar20927f22009-08-07 08:26:05 +0000294 Inst.addOperand(MCOperand::CreateReg(getMemBaseReg()));
295 Inst.addOperand(MCOperand::CreateImm(getMemScale()));
296 Inst.addOperand(MCOperand::CreateReg(getMemIndexReg()));
Daniel Dunbar9c60f532010-02-13 00:17:21 +0000297 addExpr(Inst, getMemDisp());
Daniel Dunbarec2b1f12010-01-30 00:24:00 +0000298 Inst.addOperand(MCOperand::CreateReg(getMemSegReg()));
299 }
Daniel Dunbar20927f22009-08-07 08:26:05 +0000300
Daniel Dunbarb834f5d2010-01-30 01:02:48 +0000301 void addAbsMemOperands(MCInst &Inst, unsigned N) const {
302 assert((N == 1) && "Invalid number of operands!");
303 Inst.addOperand(MCOperand::CreateExpr(getMemDisp()));
304 }
305
Chris Lattnerb4307b32010-01-15 19:28:38 +0000306 static X86Operand *CreateToken(StringRef Str, SMLoc Loc) {
307 X86Operand *Res = new X86Operand(Token, Loc, Loc);
Chris Lattner29ef9a22010-01-15 18:51:29 +0000308 Res->Tok.Data = Str.data();
309 Res->Tok.Length = Str.size();
Daniel Dunbar20927f22009-08-07 08:26:05 +0000310 return Res;
311 }
312
Chris Lattner29ef9a22010-01-15 18:51:29 +0000313 static X86Operand *CreateReg(unsigned RegNo, SMLoc StartLoc, SMLoc EndLoc) {
Chris Lattner1f19f0f2010-01-15 19:06:59 +0000314 X86Operand *Res = new X86Operand(Register, StartLoc, EndLoc);
Chris Lattner29ef9a22010-01-15 18:51:29 +0000315 Res->Reg.RegNo = RegNo;
Chris Lattner29ef9a22010-01-15 18:51:29 +0000316 return Res;
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000317 }
Daniel Dunbar20927f22009-08-07 08:26:05 +0000318
Chris Lattnerb4307b32010-01-15 19:28:38 +0000319 static X86Operand *CreateImm(const MCExpr *Val, SMLoc StartLoc, SMLoc EndLoc){
320 X86Operand *Res = new X86Operand(Immediate, StartLoc, EndLoc);
Chris Lattner29ef9a22010-01-15 18:51:29 +0000321 Res->Imm.Val = Val;
322 return Res;
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000323 }
Daniel Dunbar20927f22009-08-07 08:26:05 +0000324
Daniel Dunbarb834f5d2010-01-30 01:02:48 +0000325 /// Create an absolute memory operand.
326 static X86Operand *CreateMem(const MCExpr *Disp, SMLoc StartLoc,
327 SMLoc EndLoc) {
328 X86Operand *Res = new X86Operand(Memory, StartLoc, EndLoc);
329 Res->Mem.SegReg = 0;
330 Res->Mem.Disp = Disp;
331 Res->Mem.BaseReg = 0;
332 Res->Mem.IndexReg = 0;
Daniel Dunbar7b9147a2010-02-02 21:44:16 +0000333 Res->Mem.Scale = 1;
Daniel Dunbarb834f5d2010-01-30 01:02:48 +0000334 return Res;
335 }
336
337 /// Create a generalized memory operand.
Chris Lattner309264d2010-01-15 18:44:13 +0000338 static X86Operand *CreateMem(unsigned SegReg, const MCExpr *Disp,
339 unsigned BaseReg, unsigned IndexReg,
Chris Lattner0a3c5a52010-01-15 19:33:43 +0000340 unsigned Scale, SMLoc StartLoc, SMLoc EndLoc) {
Daniel Dunbarb834f5d2010-01-30 01:02:48 +0000341 // We should never just have a displacement, that should be parsed as an
342 // absolute memory operand.
Daniel Dunbarc09e4112009-07-31 22:22:54 +0000343 assert((SegReg || BaseReg || IndexReg) && "Invalid memory operand!");
344
Daniel Dunbar022e2a82009-07-31 20:53:16 +0000345 // The scale should always be one of {1,2,4,8}.
346 assert(((Scale == 1 || Scale == 2 || Scale == 4 || Scale == 8)) &&
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000347 "Invalid scale!");
Chris Lattner0a3c5a52010-01-15 19:33:43 +0000348 X86Operand *Res = new X86Operand(Memory, StartLoc, EndLoc);
Chris Lattner29ef9a22010-01-15 18:51:29 +0000349 Res->Mem.SegReg = SegReg;
350 Res->Mem.Disp = Disp;
351 Res->Mem.BaseReg = BaseReg;
352 Res->Mem.IndexReg = IndexReg;
353 Res->Mem.Scale = Scale;
354 return Res;
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000355 }
356};
Daniel Dunbara3af3702009-07-20 18:55:04 +0000357
Chris Lattner37dfdec2009-07-29 06:33:53 +0000358} // end anonymous namespace.
Daniel Dunbara2edbab2009-07-28 20:47:52 +0000359
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000360
Chris Lattner29ef9a22010-01-15 18:51:29 +0000361bool X86ATTAsmParser::ParseRegister(unsigned &RegNo,
362 SMLoc &StartLoc, SMLoc &EndLoc) {
Chris Lattner23075742010-01-15 18:27:19 +0000363 RegNo = 0;
Sean Callanan18b83232010-01-19 21:44:56 +0000364 const AsmToken &TokPercent = Parser.getTok();
Kevin Enderby7b4608d2009-09-03 17:15:07 +0000365 assert(TokPercent.is(AsmToken::Percent) && "Invalid token kind!");
Chris Lattner29ef9a22010-01-15 18:51:29 +0000366 StartLoc = TokPercent.getLoc();
Sean Callananb9a25b72010-01-19 20:27:46 +0000367 Parser.Lex(); // Eat percent token.
Kevin Enderby7b4608d2009-09-03 17:15:07 +0000368
Sean Callanan18b83232010-01-19 21:44:56 +0000369 const AsmToken &Tok = Parser.getTok();
Kevin Enderby0d6cd002009-09-16 17:18:29 +0000370 if (Tok.isNot(AsmToken::Identifier))
371 return Error(Tok.getLoc(), "invalid register name");
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000372
Daniel Dunbar0e2771f2009-07-29 00:02:19 +0000373 // FIXME: Validate register for the current architecture; we have to do
374 // validation later, so maybe there is no need for this here.
Kevin Enderby7b4608d2009-09-03 17:15:07 +0000375 RegNo = MatchRegisterName(Tok.getString());
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000376
Chris Lattner33d60d52010-09-22 04:11:10 +0000377 // If the match failed, try the register name as lowercase.
378 if (RegNo == 0)
379 RegNo = MatchRegisterName(LowercaseString(Tok.getString()));
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000380
Bruno Cardoso Lopes3c8e1be2010-07-24 00:06:39 +0000381 // FIXME: This should be done using Requires<In32BitMode> and
382 // Requires<In64BitMode> so "eiz" usage in 64-bit instructions
383 // can be also checked.
384 if (RegNo == X86::RIZ && !Is64Bit)
385 return Error(Tok.getLoc(), "riz register in 64-bit mode only");
386
Chris Lattner33d60d52010-09-22 04:11:10 +0000387 // Parse "%st" as "%st(0)" and "%st(1)", which is multiple tokens.
388 if (RegNo == 0 && (Tok.getString() == "st" || Tok.getString() == "ST")) {
Chris Lattnere16b0fc2010-02-09 00:49:22 +0000389 RegNo = X86::ST0;
390 EndLoc = Tok.getLoc();
391 Parser.Lex(); // Eat 'st'
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000392
Chris Lattnere16b0fc2010-02-09 00:49:22 +0000393 // Check to see if we have '(4)' after %st.
394 if (getLexer().isNot(AsmToken::LParen))
395 return false;
396 // Lex the paren.
397 getParser().Lex();
398
399 const AsmToken &IntTok = Parser.getTok();
400 if (IntTok.isNot(AsmToken::Integer))
401 return Error(IntTok.getLoc(), "expected stack index");
402 switch (IntTok.getIntVal()) {
403 case 0: RegNo = X86::ST0; break;
404 case 1: RegNo = X86::ST1; break;
405 case 2: RegNo = X86::ST2; break;
406 case 3: RegNo = X86::ST3; break;
407 case 4: RegNo = X86::ST4; break;
408 case 5: RegNo = X86::ST5; break;
409 case 6: RegNo = X86::ST6; break;
410 case 7: RegNo = X86::ST7; break;
411 default: return Error(IntTok.getLoc(), "invalid stack index");
412 }
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000413
Chris Lattnere16b0fc2010-02-09 00:49:22 +0000414 if (getParser().Lex().isNot(AsmToken::RParen))
415 return Error(Parser.getTok().getLoc(), "expected ')'");
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000416
Chris Lattnere16b0fc2010-02-09 00:49:22 +0000417 EndLoc = Tok.getLoc();
418 Parser.Lex(); // Eat ')'
419 return false;
420 }
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000421
Chris Lattner645b2092010-06-24 07:29:18 +0000422 // If this is "db[0-7]", match it as an alias
423 // for dr[0-7].
424 if (RegNo == 0 && Tok.getString().size() == 3 &&
425 Tok.getString().startswith("db")) {
426 switch (Tok.getString()[2]) {
427 case '0': RegNo = X86::DR0; break;
428 case '1': RegNo = X86::DR1; break;
429 case '2': RegNo = X86::DR2; break;
430 case '3': RegNo = X86::DR3; break;
431 case '4': RegNo = X86::DR4; break;
432 case '5': RegNo = X86::DR5; break;
433 case '6': RegNo = X86::DR6; break;
434 case '7': RegNo = X86::DR7; break;
435 }
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000436
Chris Lattner645b2092010-06-24 07:29:18 +0000437 if (RegNo != 0) {
438 EndLoc = Tok.getLoc();
439 Parser.Lex(); // Eat it.
440 return false;
441 }
442 }
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000443
Daniel Dunbar245f0582009-08-08 21:22:41 +0000444 if (RegNo == 0)
Daniel Dunbar0e2771f2009-07-29 00:02:19 +0000445 return Error(Tok.getLoc(), "invalid register name");
446
Chris Lattner29ef9a22010-01-15 18:51:29 +0000447 EndLoc = Tok.getLoc();
Sean Callananb9a25b72010-01-19 20:27:46 +0000448 Parser.Lex(); // Eat identifier token.
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000449 return false;
Daniel Dunbar092a9dd2009-07-17 20:42:00 +0000450}
451
Chris Lattner309264d2010-01-15 18:44:13 +0000452X86Operand *X86ATTAsmParser::ParseOperand() {
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000453 switch (getLexer().getKind()) {
454 default:
Chris Lattnereef6d782010-04-17 18:56:34 +0000455 // Parse a memory operand with no segment register.
456 return ParseMemOperand(0, Parser.getTok().getLoc());
Chris Lattner23075742010-01-15 18:27:19 +0000457 case AsmToken::Percent: {
Chris Lattnereef6d782010-04-17 18:56:34 +0000458 // Read the register.
Chris Lattner23075742010-01-15 18:27:19 +0000459 unsigned RegNo;
Chris Lattner29ef9a22010-01-15 18:51:29 +0000460 SMLoc Start, End;
461 if (ParseRegister(RegNo, Start, End)) return 0;
Bruno Cardoso Lopes3c8e1be2010-07-24 00:06:39 +0000462 if (RegNo == X86::EIZ || RegNo == X86::RIZ) {
463 Error(Start, "eiz and riz can only be used as index registers");
464 return 0;
465 }
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000466
Chris Lattnereef6d782010-04-17 18:56:34 +0000467 // If this is a segment register followed by a ':', then this is the start
468 // of a memory reference, otherwise this is a normal register reference.
469 if (getLexer().isNot(AsmToken::Colon))
470 return X86Operand::CreateReg(RegNo, Start, End);
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000471
472
Chris Lattnereef6d782010-04-17 18:56:34 +0000473 getParser().Lex(); // Eat the colon.
474 return ParseMemOperand(RegNo, Start);
Chris Lattner23075742010-01-15 18:27:19 +0000475 }
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000476 case AsmToken::Dollar: {
477 // $42 -> immediate.
Sean Callanan18b83232010-01-19 21:44:56 +0000478 SMLoc Start = Parser.getTok().getLoc(), End;
Sean Callananb9a25b72010-01-19 20:27:46 +0000479 Parser.Lex();
Daniel Dunbar8c2eebe2009-08-31 08:08:38 +0000480 const MCExpr *Val;
Chris Lattner54482b42010-01-15 19:39:23 +0000481 if (getParser().ParseExpression(Val, End))
Chris Lattner309264d2010-01-15 18:44:13 +0000482 return 0;
Chris Lattnerb4307b32010-01-15 19:28:38 +0000483 return X86Operand::CreateImm(Val, Start, End);
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000484 }
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000485 }
Daniel Dunbardbd692a2009-07-20 20:01:54 +0000486}
487
Chris Lattnereef6d782010-04-17 18:56:34 +0000488/// ParseMemOperand: segment: disp(basereg, indexreg, scale). The '%ds:' prefix
489/// has already been parsed if present.
490X86Operand *X86ATTAsmParser::ParseMemOperand(unsigned SegReg, SMLoc MemStart) {
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000491
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000492 // We have to disambiguate a parenthesized expression "(4+5)" from the start
493 // of a memory operand with a missing displacement "(%ebx)" or "(,%eax)". The
Chris Lattner75f265f2010-01-24 01:07:33 +0000494 // only way to do this without lookahead is to eat the '(' and see what is
495 // after it.
Daniel Dunbar8c2eebe2009-08-31 08:08:38 +0000496 const MCExpr *Disp = MCConstantExpr::Create(0, getParser().getContext());
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000497 if (getLexer().isNot(AsmToken::LParen)) {
Chris Lattner54482b42010-01-15 19:39:23 +0000498 SMLoc ExprEnd;
499 if (getParser().ParseExpression(Disp, ExprEnd)) return 0;
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000500
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000501 // After parsing the base expression we could either have a parenthesized
502 // memory address or not. If not, return now. If so, eat the (.
503 if (getLexer().isNot(AsmToken::LParen)) {
Daniel Dunbarc09e4112009-07-31 22:22:54 +0000504 // Unless we have a segment register, treat this as an immediate.
Chris Lattner309264d2010-01-15 18:44:13 +0000505 if (SegReg == 0)
Daniel Dunbarb834f5d2010-01-30 01:02:48 +0000506 return X86Operand::CreateMem(Disp, MemStart, ExprEnd);
Chris Lattner0a3c5a52010-01-15 19:33:43 +0000507 return X86Operand::CreateMem(SegReg, Disp, 0, 0, 1, MemStart, ExprEnd);
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000508 }
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000509
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000510 // Eat the '('.
Sean Callananb9a25b72010-01-19 20:27:46 +0000511 Parser.Lex();
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000512 } else {
513 // Okay, we have a '('. We don't know if this is an expression or not, but
514 // so we have to eat the ( to see beyond it.
Sean Callanan18b83232010-01-19 21:44:56 +0000515 SMLoc LParenLoc = Parser.getTok().getLoc();
Sean Callananb9a25b72010-01-19 20:27:46 +0000516 Parser.Lex(); // Eat the '('.
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000517
Kevin Enderby7b4608d2009-09-03 17:15:07 +0000518 if (getLexer().is(AsmToken::Percent) || getLexer().is(AsmToken::Comma)) {
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000519 // Nothing to do here, fall into the code below with the '(' part of the
520 // memory operand consumed.
521 } else {
Chris Lattnerb4307b32010-01-15 19:28:38 +0000522 SMLoc ExprEnd;
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000523
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000524 // It must be an parenthesized expression, parse it now.
Chris Lattnerb4307b32010-01-15 19:28:38 +0000525 if (getParser().ParseParenExpression(Disp, ExprEnd))
Chris Lattner309264d2010-01-15 18:44:13 +0000526 return 0;
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000527
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000528 // After parsing the base expression we could either have a parenthesized
529 // memory address or not. If not, return now. If so, eat the (.
530 if (getLexer().isNot(AsmToken::LParen)) {
Daniel Dunbarc09e4112009-07-31 22:22:54 +0000531 // Unless we have a segment register, treat this as an immediate.
Chris Lattner309264d2010-01-15 18:44:13 +0000532 if (SegReg == 0)
Daniel Dunbarb834f5d2010-01-30 01:02:48 +0000533 return X86Operand::CreateMem(Disp, LParenLoc, ExprEnd);
Chris Lattner0a3c5a52010-01-15 19:33:43 +0000534 return X86Operand::CreateMem(SegReg, Disp, 0, 0, 1, MemStart, ExprEnd);
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000535 }
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000536
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000537 // Eat the '('.
Sean Callananb9a25b72010-01-19 20:27:46 +0000538 Parser.Lex();
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000539 }
540 }
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000541
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000542 // If we reached here, then we just ate the ( of the memory operand. Process
543 // the rest of the memory operand.
Daniel Dunbar022e2a82009-07-31 20:53:16 +0000544 unsigned BaseReg = 0, IndexReg = 0, Scale = 1;
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000545
Chris Lattner29ef9a22010-01-15 18:51:29 +0000546 if (getLexer().is(AsmToken::Percent)) {
547 SMLoc L;
548 if (ParseRegister(BaseReg, L, L)) return 0;
Bruno Cardoso Lopes3c8e1be2010-07-24 00:06:39 +0000549 if (BaseReg == X86::EIZ || BaseReg == X86::RIZ) {
550 Error(L, "eiz and riz can only be used as index registers");
551 return 0;
552 }
Chris Lattner29ef9a22010-01-15 18:51:29 +0000553 }
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000554
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000555 if (getLexer().is(AsmToken::Comma)) {
Sean Callananb9a25b72010-01-19 20:27:46 +0000556 Parser.Lex(); // Eat the comma.
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000557
558 // Following the comma we should have either an index register, or a scale
559 // value. We don't support the later form, but we want to parse it
560 // correctly.
561 //
562 // Not that even though it would be completely consistent to support syntax
Bruno Cardoso Lopes3c8e1be2010-07-24 00:06:39 +0000563 // like "1(%eax,,1)", the assembler doesn't. Use "eiz" or "riz" for this.
Kevin Enderby7b4608d2009-09-03 17:15:07 +0000564 if (getLexer().is(AsmToken::Percent)) {
Chris Lattner29ef9a22010-01-15 18:51:29 +0000565 SMLoc L;
566 if (ParseRegister(IndexReg, L, L)) return 0;
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000567
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000568 if (getLexer().isNot(AsmToken::RParen)) {
569 // Parse the scale amount:
570 // ::= ',' [scale-expression]
Chris Lattner309264d2010-01-15 18:44:13 +0000571 if (getLexer().isNot(AsmToken::Comma)) {
Sean Callanan18b83232010-01-19 21:44:56 +0000572 Error(Parser.getTok().getLoc(),
Chris Lattner309264d2010-01-15 18:44:13 +0000573 "expected comma in scale expression");
574 return 0;
575 }
Sean Callananb9a25b72010-01-19 20:27:46 +0000576 Parser.Lex(); // Eat the comma.
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000577
578 if (getLexer().isNot(AsmToken::RParen)) {
Sean Callanan18b83232010-01-19 21:44:56 +0000579 SMLoc Loc = Parser.getTok().getLoc();
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000580
581 int64_t ScaleVal;
582 if (getParser().ParseAbsoluteExpression(ScaleVal))
Chris Lattner309264d2010-01-15 18:44:13 +0000583 return 0;
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000584
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000585 // Validate the scale amount.
Chris Lattner309264d2010-01-15 18:44:13 +0000586 if (ScaleVal != 1 && ScaleVal != 2 && ScaleVal != 4 && ScaleVal != 8){
587 Error(Loc, "scale factor in address must be 1, 2, 4 or 8");
588 return 0;
589 }
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000590 Scale = (unsigned)ScaleVal;
591 }
592 }
593 } else if (getLexer().isNot(AsmToken::RParen)) {
Daniel Dunbaree910252010-08-24 19:13:38 +0000594 // A scale amount without an index is ignored.
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000595 // index.
Sean Callanan18b83232010-01-19 21:44:56 +0000596 SMLoc Loc = Parser.getTok().getLoc();
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000597
598 int64_t Value;
599 if (getParser().ParseAbsoluteExpression(Value))
Chris Lattner309264d2010-01-15 18:44:13 +0000600 return 0;
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000601
Daniel Dunbaree910252010-08-24 19:13:38 +0000602 if (Value != 1)
603 Warning(Loc, "scale factor without index register is ignored");
604 Scale = 1;
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000605 }
606 }
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000607
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000608 // Ok, we've eaten the memory operand, verify we have a ')' and eat it too.
Chris Lattner309264d2010-01-15 18:44:13 +0000609 if (getLexer().isNot(AsmToken::RParen)) {
Sean Callanan18b83232010-01-19 21:44:56 +0000610 Error(Parser.getTok().getLoc(), "unexpected token in memory operand");
Chris Lattner309264d2010-01-15 18:44:13 +0000611 return 0;
612 }
Sean Callanan18b83232010-01-19 21:44:56 +0000613 SMLoc MemEnd = Parser.getTok().getLoc();
Sean Callananb9a25b72010-01-19 20:27:46 +0000614 Parser.Lex(); // Eat the ')'.
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +0000615
Chris Lattner0a3c5a52010-01-15 19:33:43 +0000616 return X86Operand::CreateMem(SegReg, Disp, BaseReg, IndexReg, Scale,
617 MemStart, MemEnd);
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000618}
619
Chris Lattner98986712010-01-14 22:21:20 +0000620bool X86ATTAsmParser::
Benjamin Kramer38e59892010-07-14 22:38:02 +0000621ParseInstruction(StringRef Name, SMLoc NameLoc,
Chris Lattner98986712010-01-14 22:21:20 +0000622 SmallVectorImpl<MCParsedAsmOperand*> &Operands) {
Daniel Dunbar1b6c0602010-02-10 21:19:28 +0000623 // FIXME: Hack to recognize "sal..." and "rep..." for now. We need a way to
624 // represent alternative syntaxes in the .td file, without requiring
625 // instruction duplication.
626 StringRef PatchedName = StringSwitch<StringRef>(Name)
627 .Case("sal", "shl")
628 .Case("salb", "shlb")
629 .Case("sall", "shll")
630 .Case("salq", "shlq")
631 .Case("salw", "shlw")
632 .Case("repe", "rep")
633 .Case("repz", "rep")
634 .Case("repnz", "repne")
Chris Lattnerba8cea42010-09-08 05:38:31 +0000635 .Case("iret", "iretl")
Chris Lattnerba8e81c2010-09-08 05:45:34 +0000636 .Case("sysret", "sysretl")
Chris Lattner29564622010-09-27 07:24:57 +0000637 .Case("cbw", "cbtw")
638 .Case("cwd", "cwtd")
639 .Case("cdq", "cltd")
Chris Lattnerb1162fc2010-09-27 07:21:41 +0000640 .Case("cwde", "cwtl")
641 .Case("cdqe", "cltq")
Chris Lattnerdf967d62010-09-27 07:11:53 +0000642 .Case("smovb", "movsb")
643 .Case("smovw", "movsw")
644 .Case("smovl", "movsl")
645 .Case("smovq", "movsq")
Chris Lattnerd68c4742010-09-06 23:40:56 +0000646 .Case("push", Is64Bit ? "pushq" : "pushl")
Chris Lattner373c4582010-09-08 22:13:08 +0000647 .Case("pop", Is64Bit ? "popq" : "popl")
Dan Gohmane5e4ff92010-05-20 16:16:00 +0000648 .Case("pushf", Is64Bit ? "pushfq" : "pushfl")
649 .Case("popf", Is64Bit ? "popfq" : "popfl")
Chris Lattnerdfa3c9d2010-09-11 16:39:16 +0000650 .Case("pushfd", "pushfl")
651 .Case("popfd", "popfl")
Kevin Enderby9d31d792010-05-21 23:01:38 +0000652 .Case("retl", Is64Bit ? "retl" : "ret")
653 .Case("retq", Is64Bit ? "ret" : "retq")
Chris Lattner697d37a2010-09-11 17:06:05 +0000654 .Case("setz", "sete") .Case("setnz", "setne")
655 .Case("setc", "setb") .Case("setna", "setbe")
656 .Case("setnae", "setb").Case("setnb", "setae")
657 .Case("setnbe", "seta").Case("setnc", "setae")
658 .Case("setng", "setle").Case("setnge", "setl")
659 .Case("setnl", "setge").Case("setnle", "setg")
660 .Case("setpe", "setp") .Case("setpo", "setnp")
661 .Case("jz", "je") .Case("jnz", "jne")
662 .Case("jc", "jb") .Case("jna", "jbe")
663 .Case("jnae", "jb").Case("jnb", "jae")
664 .Case("jnbe", "ja").Case("jnc", "jae")
665 .Case("jng", "jle").Case("jnge", "jl")
666 .Case("jnl", "jge").Case("jnle", "jg")
667 .Case("jpe", "jp") .Case("jpo", "jnp")
Chris Lattnere9e0fc52010-09-07 00:05:45 +0000668 // Condition code aliases for 16-bit, 32-bit, 64-bit and unspec operands.
669 .Case("cmovcw", "cmovbw") .Case("cmovcl", "cmovbl")
670 .Case("cmovcq", "cmovbq") .Case("cmovc", "cmovb")
Chris Lattner0989d292010-09-11 17:08:22 +0000671 .Case("cmovnaew","cmovbw") .Case("cmovnael","cmovbl")
672 .Case("cmovnaeq","cmovbq") .Case("cmovnae", "cmovb")
Chris Lattnere9e0fc52010-09-07 00:05:45 +0000673 .Case("cmovnaw", "cmovbew").Case("cmovnal", "cmovbel")
674 .Case("cmovnaq", "cmovbeq").Case("cmovna", "cmovbe")
675 .Case("cmovnbw", "cmovaew").Case("cmovnbl", "cmovael")
676 .Case("cmovnbq", "cmovaeq").Case("cmovnb", "cmovae")
677 .Case("cmovnbew","cmovaw") .Case("cmovnbel","cmoval")
678 .Case("cmovnbeq","cmovaq") .Case("cmovnbe", "cmova")
679 .Case("cmovncw", "cmovaew").Case("cmovncl", "cmovael")
680 .Case("cmovncq", "cmovaeq").Case("cmovnc", "cmovae")
681 .Case("cmovngw", "cmovlew").Case("cmovngl", "cmovlel")
682 .Case("cmovngq", "cmovleq").Case("cmovng", "cmovle")
683 .Case("cmovnw", "cmovgew").Case("cmovnl", "cmovgel")
684 .Case("cmovnq", "cmovgeq").Case("cmovn", "cmovge")
685 .Case("cmovngw", "cmovlew").Case("cmovngl", "cmovlel")
686 .Case("cmovngq", "cmovleq").Case("cmovng", "cmovle")
687 .Case("cmovngew","cmovlw") .Case("cmovngel","cmovll")
688 .Case("cmovngeq","cmovlq") .Case("cmovnge", "cmovl")
689 .Case("cmovnlw", "cmovgew").Case("cmovnll", "cmovgel")
690 .Case("cmovnlq", "cmovgeq").Case("cmovnl", "cmovge")
691 .Case("cmovnlew","cmovgw") .Case("cmovnlel","cmovgl")
692 .Case("cmovnleq","cmovgq") .Case("cmovnle", "cmovg")
693 .Case("cmovnzw", "cmovnew").Case("cmovnzl", "cmovnel")
694 .Case("cmovnzq", "cmovneq").Case("cmovnz", "cmovne")
695 .Case("cmovzw", "cmovew") .Case("cmovzl", "cmovel")
696 .Case("cmovzq", "cmoveq") .Case("cmovz", "cmove")
Chris Lattnerc2b942a2010-09-22 04:56:20 +0000697 // Floating point stack cmov aliases.
698 .Case("fcmovz", "fcmove")
699 .Case("fcmova", "fcmovnbe")
700 .Case("fcmovnae", "fcmovb")
701 .Case("fcmovna", "fcmovbe")
702 .Case("fcmovae", "fcmovnb")
Kevin Enderby5e394422010-05-28 20:59:10 +0000703 .Case("fwait", "wait")
Chris Lattner35aa94b2010-09-16 20:46:38 +0000704 .Case("movzx", "movzb") // FIXME: Not correct.
705 .Case("fildq", "fildll")
Daniel Dunbar1b6c0602010-02-10 21:19:28 +0000706 .Default(Name);
Daniel Dunbar39e2dd72010-05-25 19:49:32 +0000707
708 // FIXME: Hack to recognize cmp<comparison code>{ss,sd,ps,pd}.
709 const MCExpr *ExtraImmOp = 0;
Bruno Cardoso Lopes428256b2010-06-23 21:10:57 +0000710 if ((PatchedName.startswith("cmp") || PatchedName.startswith("vcmp")) &&
Daniel Dunbar39e2dd72010-05-25 19:49:32 +0000711 (PatchedName.endswith("ss") || PatchedName.endswith("sd") ||
712 PatchedName.endswith("ps") || PatchedName.endswith("pd"))) {
Bruno Cardoso Lopes428256b2010-06-23 21:10:57 +0000713 bool IsVCMP = PatchedName.startswith("vcmp");
714 unsigned SSECCIdx = IsVCMP ? 4 : 3;
Daniel Dunbar39e2dd72010-05-25 19:49:32 +0000715 unsigned SSEComparisonCode = StringSwitch<unsigned>(
Bruno Cardoso Lopes428256b2010-06-23 21:10:57 +0000716 PatchedName.slice(SSECCIdx, PatchedName.size() - 2))
Bruno Cardoso Lopescc69e132010-07-07 22:24:03 +0000717 .Case("eq", 0)
718 .Case("lt", 1)
719 .Case("le", 2)
720 .Case("unord", 3)
721 .Case("neq", 4)
722 .Case("nlt", 5)
723 .Case("nle", 6)
724 .Case("ord", 7)
725 .Case("eq_uq", 8)
726 .Case("nge", 9)
727 .Case("ngt", 0x0A)
728 .Case("false", 0x0B)
729 .Case("neq_oq", 0x0C)
730 .Case("ge", 0x0D)
731 .Case("gt", 0x0E)
732 .Case("true", 0x0F)
733 .Case("eq_os", 0x10)
734 .Case("lt_oq", 0x11)
735 .Case("le_oq", 0x12)
736 .Case("unord_s", 0x13)
737 .Case("neq_us", 0x14)
738 .Case("nlt_uq", 0x15)
739 .Case("nle_uq", 0x16)
740 .Case("ord_s", 0x17)
741 .Case("eq_us", 0x18)
742 .Case("nge_uq", 0x19)
743 .Case("ngt_uq", 0x1A)
744 .Case("false_os", 0x1B)
745 .Case("neq_os", 0x1C)
746 .Case("ge_oq", 0x1D)
747 .Case("gt_oq", 0x1E)
748 .Case("true_us", 0x1F)
Daniel Dunbar39e2dd72010-05-25 19:49:32 +0000749 .Default(~0U);
750 if (SSEComparisonCode != ~0U) {
751 ExtraImmOp = MCConstantExpr::Create(SSEComparisonCode,
752 getParser().getContext());
753 if (PatchedName.endswith("ss")) {
Bruno Cardoso Lopes428256b2010-06-23 21:10:57 +0000754 PatchedName = IsVCMP ? "vcmpss" : "cmpss";
Daniel Dunbar39e2dd72010-05-25 19:49:32 +0000755 } else if (PatchedName.endswith("sd")) {
Bruno Cardoso Lopes428256b2010-06-23 21:10:57 +0000756 PatchedName = IsVCMP ? "vcmpsd" : "cmpsd";
Daniel Dunbar39e2dd72010-05-25 19:49:32 +0000757 } else if (PatchedName.endswith("ps")) {
Bruno Cardoso Lopes428256b2010-06-23 21:10:57 +0000758 PatchedName = IsVCMP ? "vcmpps" : "cmpps";
Daniel Dunbar39e2dd72010-05-25 19:49:32 +0000759 } else {
760 assert(PatchedName.endswith("pd") && "Unexpected mnemonic!");
Bruno Cardoso Lopes428256b2010-06-23 21:10:57 +0000761 PatchedName = IsVCMP ? "vcmppd" : "cmppd";
Daniel Dunbar39e2dd72010-05-25 19:49:32 +0000762 }
763 }
764 }
Bruno Cardoso Lopesf528d2b2010-07-23 18:41:12 +0000765
766 // FIXME: Hack to recognize vpclmul<src1_quadword, src2_quadword>dq
767 if (PatchedName.startswith("vpclmul")) {
768 unsigned CLMULQuadWordSelect = StringSwitch<unsigned>(
769 PatchedName.slice(7, PatchedName.size() - 2))
770 .Case("lqlq", 0x00) // src1[63:0], src2[63:0]
771 .Case("hqlq", 0x01) // src1[127:64], src2[63:0]
772 .Case("lqhq", 0x10) // src1[63:0], src2[127:64]
773 .Case("hqhq", 0x11) // src1[127:64], src2[127:64]
774 .Default(~0U);
775 if (CLMULQuadWordSelect != ~0U) {
776 ExtraImmOp = MCConstantExpr::Create(CLMULQuadWordSelect,
777 getParser().getContext());
778 assert(PatchedName.endswith("dq") && "Unexpected mnemonic!");
779 PatchedName = "vpclmulqdq";
780 }
781 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000782
Daniel Dunbar1b6c0602010-02-10 21:19:28 +0000783 Operands.push_back(X86Operand::CreateToken(PatchedName, NameLoc));
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000784
Daniel Dunbar39e2dd72010-05-25 19:49:32 +0000785 if (ExtraImmOp)
786 Operands.push_back(X86Operand::CreateImm(ExtraImmOp, NameLoc, NameLoc));
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000787
788
Chris Lattner2544f422010-09-08 05:17:37 +0000789 // Determine whether this is an instruction prefix.
790 bool isPrefix =
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000791 PatchedName == "lock" || PatchedName == "rep" ||
Chris Lattner2544f422010-09-08 05:17:37 +0000792 PatchedName == "repne";
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000793
794
Chris Lattner2544f422010-09-08 05:17:37 +0000795 // This does the actual operand parsing. Don't parse any more if we have a
796 // prefix juxtaposed with an operation like "lock incl 4(%rax)", because we
797 // just want to parse the "lock" as the first instruction and the "incl" as
798 // the next one.
799 if (getLexer().isNot(AsmToken::EndOfStatement) && !isPrefix) {
Daniel Dunbar0db68f42009-08-11 05:00:25 +0000800
801 // Parse '*' modifier.
802 if (getLexer().is(AsmToken::Star)) {
Sean Callanan18b83232010-01-19 21:44:56 +0000803 SMLoc Loc = Parser.getTok().getLoc();
Chris Lattnerb4307b32010-01-15 19:28:38 +0000804 Operands.push_back(X86Operand::CreateToken("*", Loc));
Sean Callananb9a25b72010-01-19 20:27:46 +0000805 Parser.Lex(); // Eat the star.
Daniel Dunbar0db68f42009-08-11 05:00:25 +0000806 }
807
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000808 // Read the first operand.
Chris Lattner309264d2010-01-15 18:44:13 +0000809 if (X86Operand *Op = ParseOperand())
810 Operands.push_back(Op);
Chris Lattnercbf8a982010-09-11 16:18:25 +0000811 else {
812 Parser.EatToEndOfStatement();
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000813 return true;
Chris Lattnercbf8a982010-09-11 16:18:25 +0000814 }
Daniel Dunbar39e2dd72010-05-25 19:49:32 +0000815
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000816 while (getLexer().is(AsmToken::Comma)) {
Sean Callananb9a25b72010-01-19 20:27:46 +0000817 Parser.Lex(); // Eat the comma.
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000818
819 // Parse and remember the operand.
Chris Lattner309264d2010-01-15 18:44:13 +0000820 if (X86Operand *Op = ParseOperand())
821 Operands.push_back(Op);
Chris Lattnercbf8a982010-09-11 16:18:25 +0000822 else {
823 Parser.EatToEndOfStatement();
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000824 return true;
Chris Lattnercbf8a982010-09-11 16:18:25 +0000825 }
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000826 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000827
Chris Lattnercbf8a982010-09-11 16:18:25 +0000828 if (getLexer().isNot(AsmToken::EndOfStatement)) {
829 Parser.EatToEndOfStatement();
Chris Lattner2544f422010-09-08 05:17:37 +0000830 return TokError("unexpected token in argument list");
Chris Lattnercbf8a982010-09-11 16:18:25 +0000831 }
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000832 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000833
Chris Lattner2544f422010-09-08 05:17:37 +0000834 if (getLexer().is(AsmToken::EndOfStatement))
835 Parser.Lex(); // Consume the EndOfStatement
Daniel Dunbar16cdcb32009-07-28 22:40:46 +0000836
Chris Lattner508fc472010-10-05 21:09:45 +0000837 // Hack to allow 'movq <largeimm>, <reg>' as an alias for movabsq.
838 if ((Name == "movq" || Name == "mov") && Operands.size() == 3 &&
839 static_cast<X86Operand*>(Operands[2])->isReg() &&
840 static_cast<X86Operand*>(Operands[1])->isImm() &&
841 !static_cast<X86Operand*>(Operands[1])->isImmSExti64i32()) {
842 delete Operands[0];
843 Operands[0] = X86Operand::CreateToken("movabsq", NameLoc);
844 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000845
Chris Lattnere9e16a32010-09-15 04:33:27 +0000846 // FIXME: Hack to handle recognize s{hr,ar,hl} $1, <op>. Canonicalize to
Chris Lattneree211d02010-09-11 16:32:12 +0000847 // "shift <op>".
Daniel Dunbard5e77052010-03-13 00:47:29 +0000848 if ((Name.startswith("shr") || Name.startswith("sar") ||
849 Name.startswith("shl")) &&
Chris Lattner47ab90b2010-09-06 18:32:06 +0000850 Operands.size() == 3) {
851 X86Operand *Op1 = static_cast<X86Operand*>(Operands[1]);
852 if (Op1->isImm() && isa<MCConstantExpr>(Op1->getImm()) &&
853 cast<MCConstantExpr>(Op1->getImm())->getValue() == 1) {
854 delete Operands[1];
855 Operands.erase(Operands.begin() + 1);
856 }
Daniel Dunbarf2de13f2010-03-20 22:36:38 +0000857 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000858
Chris Lattnere9e16a32010-09-15 04:33:27 +0000859 // FIXME: Hack to handle recognize "rc[lr] <op>" -> "rcl $1, <op>".
860 if ((Name.startswith("rcl") || Name.startswith("rcr")) &&
861 Operands.size() == 2) {
862 const MCExpr *One = MCConstantExpr::Create(1, getParser().getContext());
863 Operands.push_back(X86Operand::CreateImm(One, NameLoc, NameLoc));
864 std::swap(Operands[1], Operands[2]);
865 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000866
Chris Lattnercfad5642010-09-15 04:37:18 +0000867 // FIXME: Hack to handle recognize "sh[lr]d op,op" -> "shld $1, op,op".
868 if ((Name.startswith("shld") || Name.startswith("shrd")) &&
869 Operands.size() == 3) {
870 const MCExpr *One = MCConstantExpr::Create(1, getParser().getContext());
871 Operands.insert(Operands.begin()+1,
872 X86Operand::CreateImm(One, NameLoc, NameLoc));
873 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000874
Daniel Dunbard5e77052010-03-13 00:47:29 +0000875
Chris Lattneree211d02010-09-11 16:32:12 +0000876 // FIXME: Hack to handle recognize "in[bwl] <op>". Canonicalize it to
877 // "inb <op>, %al".
878 if ((Name == "inb" || Name == "inw" || Name == "inl") &&
879 Operands.size() == 2) {
880 unsigned Reg;
881 if (Name[2] == 'b')
882 Reg = MatchRegisterName("al");
883 else if (Name[2] == 'w')
884 Reg = MatchRegisterName("ax");
885 else
886 Reg = MatchRegisterName("eax");
887 SMLoc Loc = Operands.back()->getEndLoc();
888 Operands.push_back(X86Operand::CreateReg(Reg, Loc, Loc));
889 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000890
Chris Lattneree211d02010-09-11 16:32:12 +0000891 // FIXME: Hack to handle recognize "out[bwl] <op>". Canonicalize it to
892 // "outb %al, <op>".
893 if ((Name == "outb" || Name == "outw" || Name == "outl") &&
894 Operands.size() == 2) {
895 unsigned Reg;
896 if (Name[3] == 'b')
897 Reg = MatchRegisterName("al");
898 else if (Name[3] == 'w')
899 Reg = MatchRegisterName("ax");
900 else
901 Reg = MatchRegisterName("eax");
902 SMLoc Loc = Operands.back()->getEndLoc();
903 Operands.push_back(X86Operand::CreateReg(Reg, Loc, Loc));
904 std::swap(Operands[1], Operands[2]);
905 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000906
Chris Lattneref63c9a2010-09-14 23:34:29 +0000907 // FIXME: Hack to handle "out[bwl]? %al, (%dx)" -> "outb %al, %dx".
908 if ((Name == "outb" || Name == "outw" || Name == "outl" || Name == "out") &&
909 Operands.size() == 3) {
910 X86Operand &Op = *(X86Operand*)Operands.back();
911 if (Op.isMem() && Op.Mem.SegReg == 0 &&
912 isa<MCConstantExpr>(Op.Mem.Disp) &&
913 cast<MCConstantExpr>(Op.Mem.Disp)->getValue() == 0 &&
914 Op.Mem.BaseReg == MatchRegisterName("dx") && Op.Mem.IndexReg == 0) {
915 SMLoc Loc = Op.getEndLoc();
916 Operands.back() = X86Operand::CreateReg(Op.Mem.BaseReg, Loc, Loc);
917 delete &Op;
918 }
919 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000920
Kevin Enderbycf50a532010-05-25 20:52:34 +0000921 // FIXME: Hack to handle "f{mul*,add*,sub*,div*} $op, st(0)" the same as
922 // "f{mul*,add*,sub*,div*} $op"
923 if ((Name.startswith("fmul") || Name.startswith("fadd") ||
924 Name.startswith("fsub") || Name.startswith("fdiv")) &&
925 Operands.size() == 3 &&
926 static_cast<X86Operand*>(Operands[2])->isReg() &&
927 static_cast<X86Operand*>(Operands[2])->getReg() == X86::ST0) {
928 delete Operands[2];
929 Operands.erase(Operands.begin() + 2);
930 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000931
Chris Lattnercb296ec2010-09-27 07:08:21 +0000932 // FIXME: Hack to handle "f{mulp,addp} st(0), $op" the same as
Chris Lattnera25f9332010-09-29 18:39:16 +0000933 // "f{mulp,addp} $op", since they commute. We also allow fdivrp/fsubrp even
934 // though they don't commute, solely because gas does support this.
935 if ((Name=="fmulp" || Name=="faddp" || Name=="fsubrp" || Name=="fdivrp") &&
936 Operands.size() == 3 &&
Chris Lattner2c5291b2010-09-22 06:26:39 +0000937 static_cast<X86Operand*>(Operands[1])->isReg() &&
938 static_cast<X86Operand*>(Operands[1])->getReg() == X86::ST0) {
939 delete Operands[1];
940 Operands.erase(Operands.begin() + 1);
941 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000942
Daniel Dunbarfba88d42010-08-24 19:37:56 +0000943 // FIXME: Hack to handle "imul <imm>, B" which is an alias for "imul <imm>, B,
944 // B".
Daniel Dunbarae528f62010-08-24 19:24:18 +0000945 if (Name.startswith("imul") && Operands.size() == 3 &&
Daniel Dunbarfba88d42010-08-24 19:37:56 +0000946 static_cast<X86Operand*>(Operands[1])->isImm() &&
Daniel Dunbarae528f62010-08-24 19:24:18 +0000947 static_cast<X86Operand*>(Operands.back())->isReg()) {
948 X86Operand *Op = static_cast<X86Operand*>(Operands.back());
949 Operands.push_back(X86Operand::CreateReg(Op->getReg(), Op->getStartLoc(),
950 Op->getEndLoc()));
951 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000952
Chris Lattnerc5cebeb2010-09-06 23:51:44 +0000953 // 'sldt <mem>' can be encoded with either sldtw or sldtq with the same
954 // effect (both store to a 16-bit mem). Force to sldtw to avoid ambiguity
955 // errors, since its encoding is the most compact.
956 if (Name == "sldt" && Operands.size() == 2 &&
Benjamin Krameraceeb3a2010-09-07 14:40:58 +0000957 static_cast<X86Operand*>(Operands[1])->isMem()) {
958 delete Operands[0];
Chris Lattnerc5cebeb2010-09-06 23:51:44 +0000959 Operands[0] = X86Operand::CreateToken("sldtw", NameLoc);
Benjamin Krameraceeb3a2010-09-07 14:40:58 +0000960 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000961
Chris Lattner9607c402010-09-08 04:53:27 +0000962 // The assembler accepts "xchgX <reg>, <mem>" and "xchgX <mem>, <reg>" as
963 // synonyms. Our tables only have the "<reg>, <mem>" form, so if we see the
964 // other operand order, swap them.
Chris Lattner90b54542010-09-08 22:27:05 +0000965 if (Name == "xchgb" || Name == "xchgw" || Name == "xchgl" || Name == "xchgq"||
966 Name == "xchg")
Chris Lattner9607c402010-09-08 04:53:27 +0000967 if (Operands.size() == 3 &&
968 static_cast<X86Operand*>(Operands[1])->isMem() &&
969 static_cast<X86Operand*>(Operands[2])->isReg()) {
970 std::swap(Operands[1], Operands[2]);
971 }
Daniel Dunbarae528f62010-08-24 19:24:18 +0000972
Chris Lattnerc8ae35a2010-09-08 05:51:12 +0000973 // The assembler accepts "testX <reg>, <mem>" and "testX <mem>, <reg>" as
974 // synonyms. Our tables only have the "<mem>, <reg>" form, so if we see the
975 // other operand order, swap them.
Chris Lattner90b54542010-09-08 22:27:05 +0000976 if (Name == "testb" || Name == "testw" || Name == "testl" || Name == "testq"||
977 Name == "test")
Chris Lattnerc8ae35a2010-09-08 05:51:12 +0000978 if (Operands.size() == 3 &&
979 static_cast<X86Operand*>(Operands[1])->isReg() &&
980 static_cast<X86Operand*>(Operands[2])->isMem()) {
981 std::swap(Operands[1], Operands[2]);
982 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000983
Chris Lattner2d592d12010-09-15 04:04:33 +0000984 // The assembler accepts these instructions with no operand as a synonym for
985 // an instruction acting on st(1). e.g. "fxch" -> "fxch %st(1)".
986 if ((Name == "fxch" || Name == "fucom" || Name == "fucomp" ||
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000987 Name == "faddp" || Name == "fsubp" || Name == "fsubrp" ||
Chris Lattner2d592d12010-09-15 04:04:33 +0000988 Name == "fmulp" || Name == "fdivp" || Name == "fdivrp") &&
989 Operands.size() == 1) {
990 Operands.push_back(X86Operand::CreateReg(MatchRegisterName("st(1)"),
991 NameLoc, NameLoc));
992 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +0000993
Chris Lattner8f777a22010-09-15 04:08:38 +0000994 // The assembler accepts these instructions with two few operands as a synonym
995 // for taking %st(1),%st(0) or X, %st(0).
996 if ((Name == "fcomi" || Name == "fucomi") && Operands.size() < 3) {
997 if (Operands.size() == 1)
998 Operands.push_back(X86Operand::CreateReg(MatchRegisterName("st(1)"),
999 NameLoc, NameLoc));
1000 Operands.push_back(X86Operand::CreateReg(MatchRegisterName("st(0)"),
1001 NameLoc, NameLoc));
1002 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001003
Chris Lattner84f362d2010-09-15 04:15:16 +00001004 // The assembler accepts various amounts of brokenness for fnstsw.
1005 if (Name == "fnstsw") {
1006 if (Operands.size() == 2 &&
1007 static_cast<X86Operand*>(Operands[1])->isReg()) {
1008 // "fnstsw al" and "fnstsw eax" -> "fnstw"
1009 unsigned Reg = static_cast<X86Operand*>(Operands[1])->Reg.RegNo;
1010 if (Reg == MatchRegisterName("eax") ||
1011 Reg == MatchRegisterName("al")) {
1012 delete Operands[1];
1013 Operands.pop_back();
1014 }
1015 }
1016
1017 // "fnstw" -> "fnstw %ax"
1018 if (Operands.size() == 1)
1019 Operands.push_back(X86Operand::CreateReg(MatchRegisterName("ax"),
1020 NameLoc, NameLoc));
1021 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001022
Chris Lattnercbb44262010-09-15 05:25:21 +00001023 // jmp $42,$5 -> ljmp, similarly for call.
1024 if ((Name.startswith("call") || Name.startswith("jmp")) &&
1025 Operands.size() == 3 &&
1026 static_cast<X86Operand*>(Operands[1])->isImm() &&
1027 static_cast<X86Operand*>(Operands[2])->isImm()) {
1028 const char *NewOpName = StringSwitch<const char *>(Name)
1029 .Case("jmp", "ljmp")
1030 .Case("jmpw", "ljmpw")
1031 .Case("jmpl", "ljmpl")
1032 .Case("jmpq", "ljmpq")
1033 .Case("call", "lcall")
1034 .Case("callw", "lcallw")
1035 .Case("calll", "lcalll")
1036 .Case("callq", "lcallq")
1037 .Default(0);
1038 if (NewOpName) {
1039 delete Operands[0];
1040 Operands[0] = X86Operand::CreateToken(NewOpName, NameLoc);
Chris Lattnerd0bcc9a2010-09-15 05:30:20 +00001041 Name = NewOpName;
Chris Lattnercbb44262010-09-15 05:25:21 +00001042 }
1043 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001044
Chris Lattnerd0bcc9a2010-09-15 05:30:20 +00001045 // lcall and ljmp -> lcalll and ljmpl
1046 if ((Name == "lcall" || Name == "ljmp") && Operands.size() == 3) {
1047 delete Operands[0];
1048 Operands[0] = X86Operand::CreateToken(Name == "lcall" ? "lcalll" : "ljmpl",
1049 NameLoc);
1050 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001051
Chris Lattner1eb1b682010-09-22 05:49:14 +00001052 // call foo is not ambiguous with callw.
1053 if (Name == "call" && Operands.size() == 2) {
1054 const char *NewName = Is64Bit ? "callq" : "calll";
1055 delete Operands[0];
1056 Operands[0] = X86Operand::CreateToken(NewName, NameLoc);
1057 Name = NewName;
1058 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001059
Chris Lattner61129252010-09-22 03:50:32 +00001060 // movsd -> movsl (when no operands are specified).
1061 if (Name == "movsd" && Operands.size() == 1) {
1062 delete Operands[0];
1063 Operands[0] = X86Operand::CreateToken("movsl", NameLoc);
1064 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001065
Chris Lattner0c289c12010-09-22 04:04:03 +00001066 // fstp <mem> -> fstps <mem>. Without this, we'll default to fstpl due to
1067 // suffix searching.
1068 if (Name == "fstp" && Operands.size() == 2 &&
1069 static_cast<X86Operand*>(Operands[1])->isMem()) {
1070 delete Operands[0];
1071 Operands[0] = X86Operand::CreateToken("fstps", NameLoc);
1072 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001073
1074
Chris Lattnerfd8fddd2010-09-27 04:23:03 +00001075 // "clr <reg>" -> "xor <reg>, <reg>".
1076 if ((Name == "clrb" || Name == "clrw" || Name == "clrl" || Name == "clrq" ||
1077 Name == "clr") && Operands.size() == 2 &&
1078 static_cast<X86Operand*>(Operands[1])->isReg()) {
1079 unsigned RegNo = static_cast<X86Operand*>(Operands[1])->getReg();
1080 Operands.push_back(X86Operand::CreateReg(RegNo, NameLoc, NameLoc));
1081 delete Operands[0];
1082 Operands[0] = X86Operand::CreateToken("xor", NameLoc);
1083 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001084
Kevin Enderby7aef62f2010-10-18 17:04:36 +00001085 // FIXME: Hack to handle recognize "aa[dm]" -> "aa[dm] $0xA".
1086 if ((Name.startswith("aad") || Name.startswith("aam")) &&
1087 Operands.size() == 1) {
1088 const MCExpr *A = MCConstantExpr::Create(0xA, getParser().getContext());
1089 Operands.push_back(X86Operand::CreateImm(A, NameLoc, NameLoc));
1090 }
1091
Chris Lattner98986712010-01-14 22:21:20 +00001092 return false;
Daniel Dunbara3af3702009-07-20 18:55:04 +00001093}
1094
Kevin Enderby9c656452009-09-10 20:51:44 +00001095bool X86ATTAsmParser::ParseDirective(AsmToken DirectiveID) {
1096 StringRef IDVal = DirectiveID.getIdentifier();
1097 if (IDVal == ".word")
1098 return ParseDirectiveWord(2, DirectiveID.getLoc());
1099 return true;
1100}
1101
1102/// ParseDirectiveWord
1103/// ::= .word [ expression (, expression)* ]
1104bool X86ATTAsmParser::ParseDirectiveWord(unsigned Size, SMLoc L) {
1105 if (getLexer().isNot(AsmToken::EndOfStatement)) {
1106 for (;;) {
1107 const MCExpr *Value;
1108 if (getParser().ParseExpression(Value))
1109 return true;
1110
Chris Lattneraaec2052010-01-19 19:46:13 +00001111 getParser().getStreamer().EmitValue(Value, Size, 0 /*addrspace*/);
Kevin Enderby9c656452009-09-10 20:51:44 +00001112
1113 if (getLexer().is(AsmToken::EndOfStatement))
1114 break;
Bruno Cardoso Lopesf64a7d42010-07-23 22:15:26 +00001115
Kevin Enderby9c656452009-09-10 20:51:44 +00001116 // FIXME: Improve diagnostic.
1117 if (getLexer().isNot(AsmToken::Comma))
1118 return Error(L, "unexpected token in directive");
Sean Callananb9a25b72010-01-19 20:27:46 +00001119 Parser.Lex();
Kevin Enderby9c656452009-09-10 20:51:44 +00001120 }
1121 }
1122
Sean Callananb9a25b72010-01-19 20:27:46 +00001123 Parser.Lex();
Kevin Enderby9c656452009-09-10 20:51:44 +00001124 return false;
1125}
1126
Daniel Dunbarf1e29d42010-08-12 00:55:38 +00001127
Chris Lattner2d592d12010-09-15 04:04:33 +00001128bool X86ATTAsmParser::
Chris Lattner7036f8b2010-09-29 01:42:58 +00001129MatchAndEmitInstruction(SMLoc IDLoc,
Chris Lattner7c51a312010-09-29 01:50:45 +00001130 SmallVectorImpl<MCParsedAsmOperand*> &Operands,
Chris Lattner7036f8b2010-09-29 01:42:58 +00001131 MCStreamer &Out) {
Daniel Dunbarf1e29d42010-08-12 00:55:38 +00001132 assert(!Operands.empty() && "Unexpect empty operand list!");
Chris Lattner7c51a312010-09-29 01:50:45 +00001133 X86Operand *Op = static_cast<X86Operand*>(Operands[0]);
1134 assert(Op->isToken() && "Leading operand should always be a mnemonic!");
Daniel Dunbarf1e29d42010-08-12 00:55:38 +00001135
Chris Lattner7c51a312010-09-29 01:50:45 +00001136 // First, handle aliases that expand to multiple instructions.
1137 // FIXME: This should be replaced with a real .td file alias mechanism.
Chris Lattner9ee4aed2010-09-30 16:42:53 +00001138 if (Op->getToken() == "fstsw" || Op->getToken() == "fstcw" ||
Chris Lattner905f2e02010-09-30 17:11:29 +00001139 Op->getToken() == "finit" || Op->getToken() == "fsave" ||
1140 Op->getToken() == "fstenv") {
Chris Lattner7c51a312010-09-29 01:50:45 +00001141 MCInst Inst;
1142 Inst.setOpcode(X86::WAIT);
1143 Out.EmitInstruction(Inst);
1144
Chris Lattner0bb83a82010-09-30 16:39:29 +00001145 const char *Repl =
1146 StringSwitch<const char*>(Op->getToken())
Chris Lattner9ee4aed2010-09-30 16:42:53 +00001147 .Case("finit", "fninit")
Chris Lattner905f2e02010-09-30 17:11:29 +00001148 .Case("fsave", "fnsave")
1149 .Case("fstcw", "fnstcw")
1150 .Case("fstenv", "fnstenv")
1151 .Case("fstsw", "fnstsw")
Chris Lattner0bb83a82010-09-30 16:39:29 +00001152 .Default(0);
1153 assert(Repl && "Unknown wait-prefixed instruction");
Benjamin Kramerb0f96fa2010-10-01 12:25:27 +00001154 delete Operands[0];
Chris Lattner0bb83a82010-09-30 16:39:29 +00001155 Operands[0] = X86Operand::CreateToken(Repl, IDLoc);
Chris Lattner7c51a312010-09-29 01:50:45 +00001156 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001157
Chris Lattnera008e8a2010-09-06 21:54:15 +00001158 bool WasOriginallyInvalidOperand = false;
Chris Lattnerce4a3352010-09-06 22:11:18 +00001159 unsigned OrigErrorInfo;
Chris Lattner7036f8b2010-09-29 01:42:58 +00001160 MCInst Inst;
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001161
Daniel Dunbarc918d602010-05-04 16:12:42 +00001162 // First, try a direct match.
Chris Lattnerce4a3352010-09-06 22:11:18 +00001163 switch (MatchInstructionImpl(Operands, Inst, OrigErrorInfo)) {
Chris Lattnerec6789f2010-09-06 20:08:02 +00001164 case Match_Success:
Chris Lattner7036f8b2010-09-29 01:42:58 +00001165 Out.EmitInstruction(Inst);
Daniel Dunbarc918d602010-05-04 16:12:42 +00001166 return false;
Chris Lattnerec6789f2010-09-06 20:08:02 +00001167 case Match_MissingFeature:
1168 Error(IDLoc, "instruction requires a CPU feature not currently enabled");
1169 return true;
Chris Lattnera008e8a2010-09-06 21:54:15 +00001170 case Match_InvalidOperand:
1171 WasOriginallyInvalidOperand = true;
1172 break;
1173 case Match_MnemonicFail:
Chris Lattnerec6789f2010-09-06 20:08:02 +00001174 break;
1175 }
Daniel Dunbarc918d602010-05-04 16:12:42 +00001176
Daniel Dunbarc918d602010-05-04 16:12:42 +00001177 // FIXME: Ideally, we would only attempt suffix matches for things which are
1178 // valid prefixes, and we could just infer the right unambiguous
1179 // type. However, that requires substantially more matcher support than the
1180 // following hack.
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001181
Daniel Dunbarc918d602010-05-04 16:12:42 +00001182 // Change the operand to point to a temporary token.
Daniel Dunbarc918d602010-05-04 16:12:42 +00001183 StringRef Base = Op->getToken();
Daniel Dunbarf1e29d42010-08-12 00:55:38 +00001184 SmallString<16> Tmp;
1185 Tmp += Base;
1186 Tmp += ' ';
1187 Op->setTokenValue(Tmp.str());
Daniel Dunbarc918d602010-05-04 16:12:42 +00001188
1189 // Check for the various suffix matches.
1190 Tmp[Base.size()] = 'b';
Chris Lattnerce4a3352010-09-06 22:11:18 +00001191 unsigned BErrorInfo, WErrorInfo, LErrorInfo, QErrorInfo;
1192 MatchResultTy MatchB = MatchInstructionImpl(Operands, Inst, BErrorInfo);
Daniel Dunbarc918d602010-05-04 16:12:42 +00001193 Tmp[Base.size()] = 'w';
Chris Lattnerce4a3352010-09-06 22:11:18 +00001194 MatchResultTy MatchW = MatchInstructionImpl(Operands, Inst, WErrorInfo);
Daniel Dunbarc918d602010-05-04 16:12:42 +00001195 Tmp[Base.size()] = 'l';
Chris Lattnerce4a3352010-09-06 22:11:18 +00001196 MatchResultTy MatchL = MatchInstructionImpl(Operands, Inst, LErrorInfo);
Daniel Dunbar04814492010-05-12 00:54:20 +00001197 Tmp[Base.size()] = 'q';
Chris Lattnerce4a3352010-09-06 22:11:18 +00001198 MatchResultTy MatchQ = MatchInstructionImpl(Operands, Inst, QErrorInfo);
Daniel Dunbarc918d602010-05-04 16:12:42 +00001199
1200 // Restore the old token.
1201 Op->setTokenValue(Base);
1202
1203 // If exactly one matched, then we treat that as a successful match (and the
1204 // instruction will already have been filled in correctly, since the failing
1205 // matches won't have modified it).
Chris Lattnerec6789f2010-09-06 20:08:02 +00001206 unsigned NumSuccessfulMatches =
1207 (MatchB == Match_Success) + (MatchW == Match_Success) +
1208 (MatchL == Match_Success) + (MatchQ == Match_Success);
Chris Lattner7036f8b2010-09-29 01:42:58 +00001209 if (NumSuccessfulMatches == 1) {
1210 Out.EmitInstruction(Inst);
Daniel Dunbarc918d602010-05-04 16:12:42 +00001211 return false;
Chris Lattner7036f8b2010-09-29 01:42:58 +00001212 }
Daniel Dunbarc918d602010-05-04 16:12:42 +00001213
Chris Lattnerec6789f2010-09-06 20:08:02 +00001214 // Otherwise, the match failed, try to produce a decent error message.
Daniel Dunbarf1e29d42010-08-12 00:55:38 +00001215
Daniel Dunbar09062b12010-08-12 00:55:42 +00001216 // If we had multiple suffix matches, then identify this as an ambiguous
1217 // match.
Chris Lattnerec6789f2010-09-06 20:08:02 +00001218 if (NumSuccessfulMatches > 1) {
Daniel Dunbar09062b12010-08-12 00:55:42 +00001219 char MatchChars[4];
1220 unsigned NumMatches = 0;
Chris Lattnerec6789f2010-09-06 20:08:02 +00001221 if (MatchB == Match_Success)
Daniel Dunbar09062b12010-08-12 00:55:42 +00001222 MatchChars[NumMatches++] = 'b';
Chris Lattnerec6789f2010-09-06 20:08:02 +00001223 if (MatchW == Match_Success)
Daniel Dunbar09062b12010-08-12 00:55:42 +00001224 MatchChars[NumMatches++] = 'w';
Chris Lattnerec6789f2010-09-06 20:08:02 +00001225 if (MatchL == Match_Success)
Daniel Dunbar09062b12010-08-12 00:55:42 +00001226 MatchChars[NumMatches++] = 'l';
Chris Lattnerec6789f2010-09-06 20:08:02 +00001227 if (MatchQ == Match_Success)
Daniel Dunbar09062b12010-08-12 00:55:42 +00001228 MatchChars[NumMatches++] = 'q';
1229
1230 SmallString<126> Msg;
1231 raw_svector_ostream OS(Msg);
1232 OS << "ambiguous instructions require an explicit suffix (could be ";
1233 for (unsigned i = 0; i != NumMatches; ++i) {
1234 if (i != 0)
1235 OS << ", ";
1236 if (i + 1 == NumMatches)
1237 OS << "or ";
1238 OS << "'" << Base << MatchChars[i] << "'";
1239 }
1240 OS << ")";
1241 Error(IDLoc, OS.str());
Chris Lattnerec6789f2010-09-06 20:08:02 +00001242 return true;
Daniel Dunbar09062b12010-08-12 00:55:42 +00001243 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001244
Chris Lattnera008e8a2010-09-06 21:54:15 +00001245 // Okay, we know that none of the variants matched successfully.
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001246
Chris Lattnera008e8a2010-09-06 21:54:15 +00001247 // If all of the instructions reported an invalid mnemonic, then the original
1248 // mnemonic was invalid.
1249 if ((MatchB == Match_MnemonicFail) && (MatchW == Match_MnemonicFail) &&
1250 (MatchL == Match_MnemonicFail) && (MatchQ == Match_MnemonicFail)) {
Chris Lattnerce4a3352010-09-06 22:11:18 +00001251 if (!WasOriginallyInvalidOperand) {
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001252 Error(IDLoc, "invalid instruction mnemonic '" + Base + "'");
Chris Lattnerce4a3352010-09-06 22:11:18 +00001253 return true;
1254 }
1255
1256 // Recover location info for the operand if we know which was the problem.
1257 SMLoc ErrorLoc = IDLoc;
1258 if (OrigErrorInfo != ~0U) {
Chris Lattnerf8840122010-09-15 03:50:11 +00001259 if (OrigErrorInfo >= Operands.size())
1260 return Error(IDLoc, "too few operands for instruction");
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001261
Chris Lattnerce4a3352010-09-06 22:11:18 +00001262 ErrorLoc = ((X86Operand*)Operands[OrigErrorInfo])->getStartLoc();
1263 if (ErrorLoc == SMLoc()) ErrorLoc = IDLoc;
1264 }
1265
Chris Lattnerf8840122010-09-15 03:50:11 +00001266 return Error(ErrorLoc, "invalid operand for instruction");
Chris Lattnera008e8a2010-09-06 21:54:15 +00001267 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001268
Chris Lattnerec6789f2010-09-06 20:08:02 +00001269 // If one instruction matched with a missing feature, report this as a
1270 // missing feature.
1271 if ((MatchB == Match_MissingFeature) + (MatchW == Match_MissingFeature) +
Chris Lattnera008e8a2010-09-06 21:54:15 +00001272 (MatchL == Match_MissingFeature) + (MatchQ == Match_MissingFeature) == 1){
Chris Lattnerec6789f2010-09-06 20:08:02 +00001273 Error(IDLoc, "instruction requires a CPU feature not currently enabled");
1274 return true;
1275 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001276
Chris Lattnera008e8a2010-09-06 21:54:15 +00001277 // If one instruction matched with an invalid operand, report this as an
1278 // operand failure.
1279 if ((MatchB == Match_InvalidOperand) + (MatchW == Match_InvalidOperand) +
1280 (MatchL == Match_InvalidOperand) + (MatchQ == Match_InvalidOperand) == 1){
1281 Error(IDLoc, "invalid operand for instruction");
1282 return true;
1283 }
Michael J. Spencerc0c8df32010-10-09 11:00:50 +00001284
Chris Lattnerec6789f2010-09-06 20:08:02 +00001285 // If all of these were an outright failure, report it in a useless way.
1286 // FIXME: We should give nicer diagnostics about the exact failure.
Chris Lattnera008e8a2010-09-06 21:54:15 +00001287 Error(IDLoc, "unknown use of instruction mnemonic without a size suffix");
Daniel Dunbarc918d602010-05-04 16:12:42 +00001288 return true;
1289}
1290
1291
Sean Callanane88f5522010-01-23 02:43:15 +00001292extern "C" void LLVMInitializeX86AsmLexer();
1293
Daniel Dunbar092a9dd2009-07-17 20:42:00 +00001294// Force static initialization.
1295extern "C" void LLVMInitializeX86AsmParser() {
Daniel Dunbarf98bc632010-03-18 20:06:02 +00001296 RegisterAsmParser<X86_32ATTAsmParser> X(TheX86_32Target);
1297 RegisterAsmParser<X86_64ATTAsmParser> Y(TheX86_64Target);
Sean Callanane88f5522010-01-23 02:43:15 +00001298 LLVMInitializeX86AsmLexer();
Daniel Dunbar092a9dd2009-07-17 20:42:00 +00001299}
Daniel Dunbar0e2771f2009-07-29 00:02:19 +00001300
Chris Lattner0692ee62010-09-06 19:11:01 +00001301#define GET_REGISTER_MATCHER
1302#define GET_MATCHER_IMPLEMENTATION
Daniel Dunbar0e2771f2009-07-29 00:02:19 +00001303#include "X86GenAsmMatcher.inc"