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Chris Lattner32eecb02006-02-14 05:14:46 +00001/*===-- Lexer.l - Scanner for llvm assembly files --------------*- C++ -*--===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements the flex scanner for LLVM assembly languages files.
11//
12//===----------------------------------------------------------------------===*/
13
14%option prefix="llvmAsm"
15%option yylineno
16%option nostdinit
17%option never-interactive
18%option batch
19%option noyywrap
20%option nodefault
21%option 8bit
22%option outfile="Lexer.cpp"
23%option ecs
24%option noreject
25%option noyymore
26
27%{
28#include "ParserInternals.h"
29#include "llvm/Module.h"
30#include <list>
31#include "llvmAsmParser.h"
32#include <cctype>
33#include <cstdlib>
34
35void set_scan_file(FILE * F){
36 yy_switch_to_buffer(yy_create_buffer( F, YY_BUF_SIZE ) );
37}
38void set_scan_string (const char * str) {
39 yy_scan_string (str);
40}
41
Reid Spencer3ed469c2006-11-02 20:25:50 +000042// Construct a token value for a non-obsolete token
Chris Lattner32eecb02006-02-14 05:14:46 +000043#define RET_TOK(type, Enum, sym) \
Reid Spencera132e042006-12-03 05:46:11 +000044 llvmAsmlval.type = Instruction::Enum; \
45 return sym
46
Reid Spencer3ed469c2006-11-02 20:25:50 +000047// Construct a token value for an obsolete token
Reid Spencera132e042006-12-03 05:46:11 +000048#define RET_TY(CTYPE, SYM) \
49 llvmAsmlval.PrimType = CTYPE;\
Reid Spencer481169e2006-12-01 00:33:46 +000050 return SYM
Chris Lattner32eecb02006-02-14 05:14:46 +000051
52namespace llvm {
53
54// TODO: All of the static identifiers are figured out by the lexer,
55// these should be hashed to reduce the lexer size
56
57
58// atoull - Convert an ascii string of decimal digits into the unsigned long
59// long representation... this does not have to do input error checking,
60// because we know that the input will be matched by a suitable regex...
61//
62static uint64_t atoull(const char *Buffer) {
63 uint64_t Result = 0;
64 for (; *Buffer; Buffer++) {
65 uint64_t OldRes = Result;
66 Result *= 10;
67 Result += *Buffer-'0';
68 if (Result < OldRes) // Uh, oh, overflow detected!!!
Reid Spencer61c83e02006-08-18 08:43:06 +000069 GenerateError("constant bigger than 64 bits detected!");
Chris Lattner32eecb02006-02-14 05:14:46 +000070 }
71 return Result;
72}
73
74static uint64_t HexIntToVal(const char *Buffer) {
75 uint64_t Result = 0;
76 for (; *Buffer; ++Buffer) {
77 uint64_t OldRes = Result;
78 Result *= 16;
79 char C = *Buffer;
80 if (C >= '0' && C <= '9')
81 Result += C-'0';
82 else if (C >= 'A' && C <= 'F')
83 Result += C-'A'+10;
84 else if (C >= 'a' && C <= 'f')
85 Result += C-'a'+10;
86
87 if (Result < OldRes) // Uh, oh, overflow detected!!!
Reid Spencer61c83e02006-08-18 08:43:06 +000088 GenerateError("constant bigger than 64 bits detected!");
Chris Lattner32eecb02006-02-14 05:14:46 +000089 }
90 return Result;
91}
92
93
94// HexToFP - Convert the ascii string in hexidecimal format to the floating
95// point representation of it.
96//
97static double HexToFP(const char *Buffer) {
98 // Behave nicely in the face of C TBAA rules... see:
99 // http://www.nullstone.com/htmls/category/aliastyp.htm
100 union {
101 uint64_t UI;
102 double FP;
103 } UIntToFP;
104 UIntToFP.UI = HexIntToVal(Buffer);
105
106 assert(sizeof(double) == sizeof(uint64_t) &&
107 "Data sizes incompatible on this target!");
108 return UIntToFP.FP; // Cast Hex constant to double
109}
110
111
112// UnEscapeLexed - Run through the specified buffer and change \xx codes to the
113// appropriate character. If AllowNull is set to false, a \00 value will cause
114// an exception to be thrown.
115//
116// If AllowNull is set to true, the return value of the function points to the
117// last character of the string in memory.
118//
119char *UnEscapeLexed(char *Buffer, bool AllowNull) {
120 char *BOut = Buffer;
121 for (char *BIn = Buffer; *BIn; ) {
122 if (BIn[0] == '\\' && isxdigit(BIn[1]) && isxdigit(BIn[2])) {
123 char Tmp = BIn[3]; BIn[3] = 0; // Terminate string
124 *BOut = (char)strtol(BIn+1, 0, 16); // Convert to number
125 if (!AllowNull && !*BOut)
Reid Spencer61c83e02006-08-18 08:43:06 +0000126 GenerateError("String literal cannot accept \\00 escape!");
Chris Lattner32eecb02006-02-14 05:14:46 +0000127
128 BIn[3] = Tmp; // Restore character
129 BIn += 3; // Skip over handled chars
130 ++BOut;
131 } else {
132 *BOut++ = *BIn++;
133 }
134 }
135
136 return BOut;
137}
138
139} // End llvm namespace
140
141using namespace llvm;
142
143#define YY_NEVER_INTERACTIVE 1
144%}
145
146
147
148/* Comments start with a ; and go till end of line */
149Comment ;.*
150
151/* Variable(Value) identifiers start with a % sign */
152VarID %[-a-zA-Z$._][-a-zA-Z$._0-9]*
153
154/* Label identifiers end with a colon */
155Label [-a-zA-Z$._0-9]+:
156QuoteLabel \"[^\"]+\":
157
158/* Quoted names can contain any character except " and \ */
159StringConstant \"[^\"]*\"
160
161
162/* [PN]Integer: match positive and negative literal integer values that
163 * are preceeded by a '%' character. These represent unnamed variable slots.
164 */
165EPInteger %[0-9]+
166ENInteger %-[0-9]+
167
168
169/* E[PN]Integer: match positive and negative literal integer values */
170PInteger [0-9]+
171NInteger -[0-9]+
172
173/* FPConstant - A Floating point constant.
174 */
175FPConstant [-+]?[0-9]+[.][0-9]*([eE][-+]?[0-9]+)?
176
177/* HexFPConstant - Floating point constant represented in IEEE format as a
178 * hexadecimal number for when exponential notation is not precise enough.
179 */
180HexFPConstant 0x[0-9A-Fa-f]+
181
182/* HexIntConstant - Hexadecimal constant generated by the CFE to avoid forcing
183 * it to deal with 64 bit numbers.
184 */
185HexIntConstant [us]0x[0-9A-Fa-f]+
186%%
187
188{Comment} { /* Ignore comments for now */ }
189
190begin { return BEGINTOK; }
191end { return ENDTOK; }
192true { return TRUETOK; }
193false { return FALSETOK; }
194declare { return DECLARE; }
Reid Spencer6fd36ab2006-12-29 20:35:03 +0000195define { return DEFINE; }
Chris Lattner32eecb02006-02-14 05:14:46 +0000196global { return GLOBAL; }
197constant { return CONSTANT; }
198internal { return INTERNAL; }
199linkonce { return LINKONCE; }
200weak { return WEAK; }
201appending { return APPENDING; }
Anton Korobeynikovb74ed072006-09-14 18:23:27 +0000202dllimport { return DLLIMPORT; }
203dllexport { return DLLEXPORT; }
204extern_weak { return EXTERN_WEAK; }
Chris Lattner32eecb02006-02-14 05:14:46 +0000205external { return EXTERNAL; }
206implementation { return IMPLEMENTATION; }
207zeroinitializer { return ZEROINITIALIZER; }
208\.\.\. { return DOTDOTDOT; }
209undef { return UNDEF; }
210null { return NULL_TOK; }
211to { return TO; }
Chris Lattner32eecb02006-02-14 05:14:46 +0000212tail { return TAIL; }
213target { return TARGET; }
214triple { return TRIPLE; }
215deplibs { return DEPLIBS; }
216endian { return ENDIAN; }
217pointersize { return POINTERSIZE; }
Chris Lattner1ae022f2006-10-22 06:08:13 +0000218datalayout { return DATALAYOUT; }
Chris Lattner32eecb02006-02-14 05:14:46 +0000219little { return LITTLE; }
220big { return BIG; }
221volatile { return VOLATILE; }
222align { return ALIGN; }
223section { return SECTION; }
224module { return MODULE; }
225asm { return ASM_TOK; }
226sideeffect { return SIDEEFFECT; }
227
228cc { return CC_TOK; }
229ccc { return CCC_TOK; }
Chris Lattner75466192006-05-19 21:28:53 +0000230csretcc { return CSRETCC_TOK; }
Chris Lattner32eecb02006-02-14 05:14:46 +0000231fastcc { return FASTCC_TOK; }
232coldcc { return COLDCC_TOK; }
Anton Korobeynikovbcb97702006-09-17 20:25:45 +0000233x86_stdcallcc { return X86_STDCALLCC_TOK; }
234x86_fastcallcc { return X86_FASTCALLCC_TOK; }
Chris Lattner32eecb02006-02-14 05:14:46 +0000235
Reid Spencera132e042006-12-03 05:46:11 +0000236void { RET_TY(Type::VoidTy, VOID); }
Reid Spencer4fe16d62007-01-11 18:21:29 +0000237bool { RET_TY(Type::Int1Ty, BOOL); }
Reid Spencer14310612006-12-31 05:40:51 +0000238i8 { RET_TY(Type::Int8Ty, INT8); }
239i16 { RET_TY(Type::Int16Ty, INT16); }
240i32 { RET_TY(Type::Int32Ty, INT32); }
241i64 { RET_TY(Type::Int64Ty, INT64); }
Reid Spencera132e042006-12-03 05:46:11 +0000242float { RET_TY(Type::FloatTy, FLOAT); }
243double { RET_TY(Type::DoubleTy,DOUBLE);}
244label { RET_TY(Type::LabelTy, LABEL); }
Chris Lattner32eecb02006-02-14 05:14:46 +0000245type { return TYPE; }
246opaque { return OPAQUE; }
247
248add { RET_TOK(BinaryOpVal, Add, ADD); }
249sub { RET_TOK(BinaryOpVal, Sub, SUB); }
250mul { RET_TOK(BinaryOpVal, Mul, MUL); }
Reid Spencer3ed469c2006-11-02 20:25:50 +0000251udiv { RET_TOK(BinaryOpVal, UDiv, UDIV); }
252sdiv { RET_TOK(BinaryOpVal, SDiv, SDIV); }
253fdiv { RET_TOK(BinaryOpVal, FDiv, FDIV); }
Reid Spencer3ed469c2006-11-02 20:25:50 +0000254urem { RET_TOK(BinaryOpVal, URem, UREM); }
255srem { RET_TOK(BinaryOpVal, SRem, SREM); }
256frem { RET_TOK(BinaryOpVal, FRem, FREM); }
Chris Lattner32eecb02006-02-14 05:14:46 +0000257and { RET_TOK(BinaryOpVal, And, AND); }
258or { RET_TOK(BinaryOpVal, Or , OR ); }
259xor { RET_TOK(BinaryOpVal, Xor, XOR); }
Reid Spencera132e042006-12-03 05:46:11 +0000260icmp { RET_TOK(OtherOpVal, ICmp, ICMP); }
261fcmp { RET_TOK(OtherOpVal, FCmp, FCMP); }
Reid Spencer6e18b7d2006-12-03 06:59:29 +0000262eq { return EQ; }
263ne { return NE; }
264slt { return SLT; }
265sgt { return SGT; }
266sle { return SLE; }
267sge { return SGE; }
268ult { return ULT; }
269ugt { return UGT; }
270ule { return ULE; }
271uge { return UGE; }
272oeq { return OEQ; }
273one { return ONE; }
274olt { return OLT; }
275ogt { return OGT; }
276ole { return OLE; }
277oge { return OGE; }
278ord { return ORD; }
279uno { return UNO; }
280ueq { return UEQ; }
281une { return UNE; }
Chris Lattner32eecb02006-02-14 05:14:46 +0000282
283phi { RET_TOK(OtherOpVal, PHI, PHI_TOK); }
284call { RET_TOK(OtherOpVal, Call, CALL); }
Reid Spencer3da59db2006-11-27 01:05:10 +0000285trunc { RET_TOK(CastOpVal, Trunc, TRUNC); }
286zext { RET_TOK(CastOpVal, ZExt, ZEXT); }
287sext { RET_TOK(CastOpVal, SExt, SEXT); }
288fptrunc { RET_TOK(CastOpVal, FPTrunc, FPTRUNC); }
289fpext { RET_TOK(CastOpVal, FPExt, FPEXT); }
290uitofp { RET_TOK(CastOpVal, UIToFP, UITOFP); }
291sitofp { RET_TOK(CastOpVal, SIToFP, SITOFP); }
292fptoui { RET_TOK(CastOpVal, FPToUI, FPTOUI); }
293fptosi { RET_TOK(CastOpVal, FPToSI, FPTOSI); }
294inttoptr { RET_TOK(CastOpVal, IntToPtr, INTTOPTR); }
295ptrtoint { RET_TOK(CastOpVal, PtrToInt, PTRTOINT); }
296bitcast { RET_TOK(CastOpVal, BitCast, BITCAST); }
Chris Lattner32eecb02006-02-14 05:14:46 +0000297select { RET_TOK(OtherOpVal, Select, SELECT); }
298shl { RET_TOK(OtherOpVal, Shl, SHL); }
Reid Spencer3da59db2006-11-27 01:05:10 +0000299lshr { RET_TOK(OtherOpVal, LShr, LSHR); }
300ashr { RET_TOK(OtherOpVal, AShr, ASHR); }
Chris Lattner32eecb02006-02-14 05:14:46 +0000301va_arg { RET_TOK(OtherOpVal, VAArg , VAARG); }
302ret { RET_TOK(TermOpVal, Ret, RET); }
303br { RET_TOK(TermOpVal, Br, BR); }
304switch { RET_TOK(TermOpVal, Switch, SWITCH); }
305invoke { RET_TOK(TermOpVal, Invoke, INVOKE); }
306unwind { RET_TOK(TermOpVal, Unwind, UNWIND); }
307unreachable { RET_TOK(TermOpVal, Unreachable, UNREACHABLE); }
308
309malloc { RET_TOK(MemOpVal, Malloc, MALLOC); }
310alloca { RET_TOK(MemOpVal, Alloca, ALLOCA); }
311free { RET_TOK(MemOpVal, Free, FREE); }
312load { RET_TOK(MemOpVal, Load, LOAD); }
313store { RET_TOK(MemOpVal, Store, STORE); }
314getelementptr { RET_TOK(MemOpVal, GetElementPtr, GETELEMENTPTR); }
315
316extractelement { RET_TOK(OtherOpVal, ExtractElement, EXTRACTELEMENT); }
317insertelement { RET_TOK(OtherOpVal, InsertElement, INSERTELEMENT); }
Chris Lattnerd5efe842006-04-08 01:18:56 +0000318shufflevector { RET_TOK(OtherOpVal, ShuffleVector, SHUFFLEVECTOR); }
Chris Lattner32eecb02006-02-14 05:14:46 +0000319
320
321{VarID} {
322 UnEscapeLexed(yytext+1);
323 llvmAsmlval.StrVal = strdup(yytext+1); // Skip %
324 return VAR_ID;
325 }
326{Label} {
327 yytext[strlen(yytext)-1] = 0; // nuke colon
328 UnEscapeLexed(yytext);
329 llvmAsmlval.StrVal = strdup(yytext);
330 return LABELSTR;
331 }
332{QuoteLabel} {
333 yytext[strlen(yytext)-2] = 0; // nuke colon, end quote
334 UnEscapeLexed(yytext+1);
335 llvmAsmlval.StrVal = strdup(yytext+1);
336 return LABELSTR;
337 }
338
339{StringConstant} { // Note that we cannot unescape a string constant here! The
340 // string constant might contain a \00 which would not be
341 // understood by the string stuff. It is valid to make a
342 // [sbyte] c"Hello World\00" constant, for example.
343 //
344 yytext[strlen(yytext)-1] = 0; // nuke end quote
345 llvmAsmlval.StrVal = strdup(yytext+1); // Nuke start quote
346 return STRINGCONSTANT;
347 }
348
349
350{PInteger} { llvmAsmlval.UInt64Val = atoull(yytext); return EUINT64VAL; }
351{NInteger} {
352 uint64_t Val = atoull(yytext+1);
353 // +1: we have bigger negative range
354 if (Val > (uint64_t)INT64_MAX+1)
Reid Spencer61c83e02006-08-18 08:43:06 +0000355 GenerateError("Constant too large for signed 64 bits!");
Chris Lattner32eecb02006-02-14 05:14:46 +0000356 llvmAsmlval.SInt64Val = -Val;
357 return ESINT64VAL;
358 }
359{HexIntConstant} {
360 llvmAsmlval.UInt64Val = HexIntToVal(yytext+3);
361 return yytext[0] == 's' ? ESINT64VAL : EUINT64VAL;
362 }
363
364{EPInteger} {
365 uint64_t Val = atoull(yytext+1);
366 if ((unsigned)Val != Val)
Reid Spencer61c83e02006-08-18 08:43:06 +0000367 GenerateError("Invalid value number (too large)!");
Chris Lattner32eecb02006-02-14 05:14:46 +0000368 llvmAsmlval.UIntVal = unsigned(Val);
369 return UINTVAL;
370 }
371{ENInteger} {
372 uint64_t Val = atoull(yytext+2);
373 // +1: we have bigger negative range
374 if (Val > (uint64_t)INT32_MAX+1)
Reid Spencer61c83e02006-08-18 08:43:06 +0000375 GenerateError("Constant too large for signed 32 bits!");
Chris Lattner32eecb02006-02-14 05:14:46 +0000376 llvmAsmlval.SIntVal = (int)-Val;
377 return SINTVAL;
378 }
379
380{FPConstant} { llvmAsmlval.FPVal = atof(yytext); return FPVAL; }
381{HexFPConstant} { llvmAsmlval.FPVal = HexToFP(yytext); return FPVAL; }
382
383<<EOF>> {
384 /* Make sure to free the internal buffers for flex when we are
385 * done reading our input!
386 */
387 yy_delete_buffer(YY_CURRENT_BUFFER);
388 return EOF;
389 }
390
391[ \r\t\n] { /* Ignore whitespace */ }
392. { return yytext[0]; }
393
394%%