1 //===- MILexer.cpp - Machine instructions lexer implementation ----------===// 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 implements the lexing of machine instructions. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "MILexer.h" 15 #include "llvm/ADT/None.h" 16 #include "llvm/ADT/StringExtras.h" 17 #include "llvm/ADT/StringSwitch.h" 18 #include "llvm/ADT/Twine.h" 19 #include <cctype> 20 21 using namespace llvm; 22 23 namespace { 24 25 typedef function_ref<void(StringRef::iterator Loc, const Twine &)> 26 ErrorCallbackType; 27 28 /// This class provides a way to iterate and get characters from the source 29 /// string. 30 class Cursor { 31 const char *Ptr; 32 const char *End; 33 34 public: 35 Cursor(NoneType) : Ptr(nullptr), End(nullptr) {} 36 37 explicit Cursor(StringRef Str) { 38 Ptr = Str.data(); 39 End = Ptr + Str.size(); 40 } 41 42 bool isEOF() const { return Ptr == End; } 43 44 char peek(int I = 0) const { return End - Ptr <= I ? 0 : Ptr[I]; } 45 46 void advance(unsigned I = 1) { Ptr += I; } 47 48 StringRef remaining() const { return StringRef(Ptr, End - Ptr); } 49 50 StringRef upto(Cursor C) const { 51 assert(C.Ptr >= Ptr && C.Ptr <= End); 52 return StringRef(Ptr, C.Ptr - Ptr); 53 } 54 55 StringRef::iterator location() const { return Ptr; } 56 57 operator bool() const { return Ptr != nullptr; } 58 }; 59 60 } // end anonymous namespace 61 62 MIToken &MIToken::reset(TokenKind Kind, StringRef Range) { 63 this->Kind = Kind; 64 this->Range = Range; 65 return *this; 66 } 67 68 MIToken &MIToken::setStringValue(StringRef StrVal) { 69 StringValue = StrVal; 70 return *this; 71 } 72 73 MIToken &MIToken::setOwnedStringValue(std::string StrVal) { 74 StringValueStorage = std::move(StrVal); 75 StringValue = StringValueStorage; 76 return *this; 77 } 78 79 MIToken &MIToken::setIntegerValue(APSInt IntVal) { 80 this->IntVal = std::move(IntVal); 81 return *this; 82 } 83 84 /// Skip the leading whitespace characters and return the updated cursor. 85 static Cursor skipWhitespace(Cursor C) { 86 while (isblank(C.peek())) 87 C.advance(); 88 return C; 89 } 90 91 static bool isNewlineChar(char C) { return C == '\n' || C == '\r'; } 92 93 /// Skip a line comment and return the updated cursor. 94 static Cursor skipComment(Cursor C) { 95 if (C.peek() != ';') 96 return C; 97 while (!isNewlineChar(C.peek()) && !C.isEOF()) 98 C.advance(); 99 return C; 100 } 101 102 /// Return true if the given character satisfies the following regular 103 /// expression: [-a-zA-Z$._0-9] 104 static bool isIdentifierChar(char C) { 105 return isalpha(C) || isdigit(C) || C == '_' || C == '-' || C == '.' || 106 C == '$'; 107 } 108 109 /// Unescapes the given string value. 110 /// 111 /// Expects the string value to be quoted. 112 static std::string unescapeQuotedString(StringRef Value) { 113 assert(Value.front() == '"' && Value.back() == '"'); 114 Cursor C = Cursor(Value.substr(1, Value.size() - 2)); 115 116 std::string Str; 117 Str.reserve(C.remaining().size()); 118 while (!C.isEOF()) { 119 char Char = C.peek(); 120 if (Char == '\\') { 121 if (C.peek(1) == '\\') { 122 // Two '\' become one 123 Str += '\\'; 124 C.advance(2); 125 continue; 126 } 127 if (isxdigit(C.peek(1)) && isxdigit(C.peek(2))) { 128 Str += hexDigitValue(C.peek(1)) * 16 + hexDigitValue(C.peek(2)); 129 C.advance(3); 130 continue; 131 } 132 } 133 Str += Char; 134 C.advance(); 135 } 136 return Str; 137 } 138 139 /// Lex a string constant using the following regular expression: \"[^\"]*\" 140 static Cursor lexStringConstant(Cursor C, ErrorCallbackType ErrorCallback) { 141 assert(C.peek() == '"'); 142 for (C.advance(); C.peek() != '"'; C.advance()) { 143 if (C.isEOF() || isNewlineChar(C.peek())) { 144 ErrorCallback( 145 C.location(), 146 "end of machine instruction reached before the closing '\"'"); 147 return None; 148 } 149 } 150 C.advance(); 151 return C; 152 } 153 154 static Cursor lexName(Cursor C, MIToken &Token, MIToken::TokenKind Type, 155 unsigned PrefixLength, ErrorCallbackType ErrorCallback) { 156 auto Range = C; 157 C.advance(PrefixLength); 158 if (C.peek() == '"') { 159 if (Cursor R = lexStringConstant(C, ErrorCallback)) { 160 StringRef String = Range.upto(R); 161 Token.reset(Type, String) 162 .setOwnedStringValue( 163 unescapeQuotedString(String.drop_front(PrefixLength))); 164 return R; 165 } 166 Token.reset(MIToken::Error, Range.remaining()); 167 return Range; 168 } 169 while (isIdentifierChar(C.peek())) 170 C.advance(); 171 Token.reset(Type, Range.upto(C)) 172 .setStringValue(Range.upto(C).drop_front(PrefixLength)); 173 return C; 174 } 175 176 static Cursor maybeLexIntegerOrScalarType(Cursor C, MIToken &Token) { 177 if ((C.peek() != 'i' && C.peek() != 's' && C.peek() != 'p') || 178 !isdigit(C.peek(1))) 179 return None; 180 char Kind = C.peek(); 181 auto Range = C; 182 C.advance(); // Skip 'i', 's', or 'p' 183 while (isdigit(C.peek())) 184 C.advance(); 185 186 Token.reset(Kind == 'i' 187 ? MIToken::IntegerType 188 : (Kind == 's' ? MIToken::ScalarType : MIToken::PointerType), 189 Range.upto(C)); 190 return C; 191 } 192 193 static MIToken::TokenKind getIdentifierKind(StringRef Identifier) { 194 return StringSwitch<MIToken::TokenKind>(Identifier) 195 .Case("_", MIToken::underscore) 196 .Case("implicit", MIToken::kw_implicit) 197 .Case("implicit-def", MIToken::kw_implicit_define) 198 .Case("def", MIToken::kw_def) 199 .Case("dead", MIToken::kw_dead) 200 .Case("killed", MIToken::kw_killed) 201 .Case("undef", MIToken::kw_undef) 202 .Case("internal", MIToken::kw_internal) 203 .Case("early-clobber", MIToken::kw_early_clobber) 204 .Case("debug-use", MIToken::kw_debug_use) 205 .Case("tied-def", MIToken::kw_tied_def) 206 .Case("frame-setup", MIToken::kw_frame_setup) 207 .Case("debug-location", MIToken::kw_debug_location) 208 .Case("same_value", MIToken::kw_cfi_same_value) 209 .Case("offset", MIToken::kw_cfi_offset) 210 .Case("def_cfa_register", MIToken::kw_cfi_def_cfa_register) 211 .Case("def_cfa_offset", MIToken::kw_cfi_def_cfa_offset) 212 .Case("def_cfa", MIToken::kw_cfi_def_cfa) 213 .Case("blockaddress", MIToken::kw_blockaddress) 214 .Case("intrinsic", MIToken::kw_intrinsic) 215 .Case("target-index", MIToken::kw_target_index) 216 .Case("half", MIToken::kw_half) 217 .Case("float", MIToken::kw_float) 218 .Case("double", MIToken::kw_double) 219 .Case("x86_fp80", MIToken::kw_x86_fp80) 220 .Case("fp128", MIToken::kw_fp128) 221 .Case("ppc_fp128", MIToken::kw_ppc_fp128) 222 .Case("target-flags", MIToken::kw_target_flags) 223 .Case("volatile", MIToken::kw_volatile) 224 .Case("non-temporal", MIToken::kw_non_temporal) 225 .Case("dereferenceable", MIToken::kw_dereferenceable) 226 .Case("invariant", MIToken::kw_invariant) 227 .Case("align", MIToken::kw_align) 228 .Case("stack", MIToken::kw_stack) 229 .Case("got", MIToken::kw_got) 230 .Case("jump-table", MIToken::kw_jump_table) 231 .Case("constant-pool", MIToken::kw_constant_pool) 232 .Case("call-entry", MIToken::kw_call_entry) 233 .Case("liveout", MIToken::kw_liveout) 234 .Case("address-taken", MIToken::kw_address_taken) 235 .Case("landing-pad", MIToken::kw_landing_pad) 236 .Case("liveins", MIToken::kw_liveins) 237 .Case("successors", MIToken::kw_successors) 238 .Case("floatpred", MIToken::kw_floatpred) 239 .Case("intpred", MIToken::kw_intpred) 240 .Default(MIToken::Identifier); 241 } 242 243 static Cursor maybeLexIdentifier(Cursor C, MIToken &Token) { 244 if (!isalpha(C.peek()) && C.peek() != '_') 245 return None; 246 auto Range = C; 247 while (isIdentifierChar(C.peek())) 248 C.advance(); 249 auto Identifier = Range.upto(C); 250 Token.reset(getIdentifierKind(Identifier), Identifier) 251 .setStringValue(Identifier); 252 return C; 253 } 254 255 static Cursor maybeLexMachineBasicBlock(Cursor C, MIToken &Token, 256 ErrorCallbackType ErrorCallback) { 257 bool IsReference = C.remaining().startswith("%bb."); 258 if (!IsReference && !C.remaining().startswith("bb.")) 259 return None; 260 auto Range = C; 261 unsigned PrefixLength = IsReference ? 4 : 3; 262 C.advance(PrefixLength); // Skip '%bb.' or 'bb.' 263 if (!isdigit(C.peek())) { 264 Token.reset(MIToken::Error, C.remaining()); 265 ErrorCallback(C.location(), "expected a number after '%bb.'"); 266 return C; 267 } 268 auto NumberRange = C; 269 while (isdigit(C.peek())) 270 C.advance(); 271 StringRef Number = NumberRange.upto(C); 272 unsigned StringOffset = PrefixLength + Number.size(); // Drop '%bb.<id>' 273 if (C.peek() == '.') { 274 C.advance(); // Skip '.' 275 ++StringOffset; 276 while (isIdentifierChar(C.peek())) 277 C.advance(); 278 } 279 Token.reset(IsReference ? MIToken::MachineBasicBlock 280 : MIToken::MachineBasicBlockLabel, 281 Range.upto(C)) 282 .setIntegerValue(APSInt(Number)) 283 .setStringValue(Range.upto(C).drop_front(StringOffset)); 284 return C; 285 } 286 287 static Cursor maybeLexIndex(Cursor C, MIToken &Token, StringRef Rule, 288 MIToken::TokenKind Kind) { 289 if (!C.remaining().startswith(Rule) || !isdigit(C.peek(Rule.size()))) 290 return None; 291 auto Range = C; 292 C.advance(Rule.size()); 293 auto NumberRange = C; 294 while (isdigit(C.peek())) 295 C.advance(); 296 Token.reset(Kind, Range.upto(C)).setIntegerValue(APSInt(NumberRange.upto(C))); 297 return C; 298 } 299 300 static Cursor maybeLexIndexAndName(Cursor C, MIToken &Token, StringRef Rule, 301 MIToken::TokenKind Kind) { 302 if (!C.remaining().startswith(Rule) || !isdigit(C.peek(Rule.size()))) 303 return None; 304 auto Range = C; 305 C.advance(Rule.size()); 306 auto NumberRange = C; 307 while (isdigit(C.peek())) 308 C.advance(); 309 StringRef Number = NumberRange.upto(C); 310 unsigned StringOffset = Rule.size() + Number.size(); 311 if (C.peek() == '.') { 312 C.advance(); 313 ++StringOffset; 314 while (isIdentifierChar(C.peek())) 315 C.advance(); 316 } 317 Token.reset(Kind, Range.upto(C)) 318 .setIntegerValue(APSInt(Number)) 319 .setStringValue(Range.upto(C).drop_front(StringOffset)); 320 return C; 321 } 322 323 static Cursor maybeLexJumpTableIndex(Cursor C, MIToken &Token) { 324 return maybeLexIndex(C, Token, "%jump-table.", MIToken::JumpTableIndex); 325 } 326 327 static Cursor maybeLexStackObject(Cursor C, MIToken &Token) { 328 return maybeLexIndexAndName(C, Token, "%stack.", MIToken::StackObject); 329 } 330 331 static Cursor maybeLexFixedStackObject(Cursor C, MIToken &Token) { 332 return maybeLexIndex(C, Token, "%fixed-stack.", MIToken::FixedStackObject); 333 } 334 335 static Cursor maybeLexConstantPoolItem(Cursor C, MIToken &Token) { 336 return maybeLexIndex(C, Token, "%const.", MIToken::ConstantPoolItem); 337 } 338 339 static Cursor maybeLexSubRegisterIndex(Cursor C, MIToken &Token, 340 ErrorCallbackType ErrorCallback) { 341 const StringRef Rule = "%subreg."; 342 if (!C.remaining().startswith(Rule)) 343 return None; 344 return lexName(C, Token, MIToken::SubRegisterIndex, Rule.size(), 345 ErrorCallback); 346 } 347 348 static Cursor maybeLexIRBlock(Cursor C, MIToken &Token, 349 ErrorCallbackType ErrorCallback) { 350 const StringRef Rule = "%ir-block."; 351 if (!C.remaining().startswith(Rule)) 352 return None; 353 if (isdigit(C.peek(Rule.size()))) 354 return maybeLexIndex(C, Token, Rule, MIToken::IRBlock); 355 return lexName(C, Token, MIToken::NamedIRBlock, Rule.size(), ErrorCallback); 356 } 357 358 static Cursor maybeLexIRValue(Cursor C, MIToken &Token, 359 ErrorCallbackType ErrorCallback) { 360 const StringRef Rule = "%ir."; 361 if (!C.remaining().startswith(Rule)) 362 return None; 363 if (isdigit(C.peek(Rule.size()))) 364 return maybeLexIndex(C, Token, Rule, MIToken::IRValue); 365 return lexName(C, Token, MIToken::NamedIRValue, Rule.size(), ErrorCallback); 366 } 367 368 static Cursor lexVirtualRegister(Cursor C, MIToken &Token) { 369 auto Range = C; 370 C.advance(); // Skip '%' 371 auto NumberRange = C; 372 while (isdigit(C.peek())) 373 C.advance(); 374 Token.reset(MIToken::VirtualRegister, Range.upto(C)) 375 .setIntegerValue(APSInt(NumberRange.upto(C))); 376 return C; 377 } 378 379 /// Returns true for a character allowed in a register name. 380 static bool isRegisterChar(char C) { 381 return isIdentifierChar(C) && C != '.'; 382 } 383 384 static Cursor maybeLexRegister(Cursor C, MIToken &Token) { 385 if (C.peek() != '%') 386 return None; 387 if (isdigit(C.peek(1))) 388 return lexVirtualRegister(C, Token); 389 auto Range = C; 390 C.advance(); // Skip '%' 391 while (isRegisterChar(C.peek())) 392 C.advance(); 393 Token.reset(MIToken::NamedRegister, Range.upto(C)) 394 .setStringValue(Range.upto(C).drop_front(1)); // Drop the '%' 395 return C; 396 } 397 398 static Cursor maybeLexGlobalValue(Cursor C, MIToken &Token, 399 ErrorCallbackType ErrorCallback) { 400 if (C.peek() != '@') 401 return None; 402 if (!isdigit(C.peek(1))) 403 return lexName(C, Token, MIToken::NamedGlobalValue, /*PrefixLength=*/1, 404 ErrorCallback); 405 auto Range = C; 406 C.advance(1); // Skip the '@' 407 auto NumberRange = C; 408 while (isdigit(C.peek())) 409 C.advance(); 410 Token.reset(MIToken::GlobalValue, Range.upto(C)) 411 .setIntegerValue(APSInt(NumberRange.upto(C))); 412 return C; 413 } 414 415 static Cursor maybeLexExternalSymbol(Cursor C, MIToken &Token, 416 ErrorCallbackType ErrorCallback) { 417 if (C.peek() != '$') 418 return None; 419 return lexName(C, Token, MIToken::ExternalSymbol, /*PrefixLength=*/1, 420 ErrorCallback); 421 } 422 423 static bool isValidHexFloatingPointPrefix(char C) { 424 return C == 'H' || C == 'K' || C == 'L' || C == 'M'; 425 } 426 427 static Cursor maybeLexHexFloatingPointLiteral(Cursor C, MIToken &Token) { 428 if (C.peek() != '0' || C.peek(1) != 'x') 429 return None; 430 Cursor Range = C; 431 C.advance(2); // Skip '0x' 432 if (isValidHexFloatingPointPrefix(C.peek())) 433 C.advance(); 434 while (isxdigit(C.peek())) 435 C.advance(); 436 Token.reset(MIToken::FloatingPointLiteral, Range.upto(C)); 437 return C; 438 } 439 440 static Cursor lexFloatingPointLiteral(Cursor Range, Cursor C, MIToken &Token) { 441 C.advance(); 442 // Skip over [0-9]*([eE][-+]?[0-9]+)? 443 while (isdigit(C.peek())) 444 C.advance(); 445 if ((C.peek() == 'e' || C.peek() == 'E') && 446 (isdigit(C.peek(1)) || 447 ((C.peek(1) == '-' || C.peek(1) == '+') && isdigit(C.peek(2))))) { 448 C.advance(2); 449 while (isdigit(C.peek())) 450 C.advance(); 451 } 452 Token.reset(MIToken::FloatingPointLiteral, Range.upto(C)); 453 return C; 454 } 455 456 static Cursor maybeLexNumericalLiteral(Cursor C, MIToken &Token) { 457 if (!isdigit(C.peek()) && (C.peek() != '-' || !isdigit(C.peek(1)))) 458 return None; 459 auto Range = C; 460 C.advance(); 461 while (isdigit(C.peek())) 462 C.advance(); 463 if (C.peek() == '.') 464 return lexFloatingPointLiteral(Range, C, Token); 465 StringRef StrVal = Range.upto(C); 466 Token.reset(MIToken::IntegerLiteral, StrVal).setIntegerValue(APSInt(StrVal)); 467 return C; 468 } 469 470 static MIToken::TokenKind getMetadataKeywordKind(StringRef Identifier) { 471 return StringSwitch<MIToken::TokenKind>(Identifier) 472 .Case("!tbaa", MIToken::md_tbaa) 473 .Case("!alias.scope", MIToken::md_alias_scope) 474 .Case("!noalias", MIToken::md_noalias) 475 .Case("!range", MIToken::md_range) 476 .Default(MIToken::Error); 477 } 478 479 static Cursor maybeLexExlaim(Cursor C, MIToken &Token, 480 ErrorCallbackType ErrorCallback) { 481 if (C.peek() != '!') 482 return None; 483 auto Range = C; 484 C.advance(1); 485 if (isdigit(C.peek()) || !isIdentifierChar(C.peek())) { 486 Token.reset(MIToken::exclaim, Range.upto(C)); 487 return C; 488 } 489 while (isIdentifierChar(C.peek())) 490 C.advance(); 491 StringRef StrVal = Range.upto(C); 492 Token.reset(getMetadataKeywordKind(StrVal), StrVal); 493 if (Token.isError()) 494 ErrorCallback(Token.location(), 495 "use of unknown metadata keyword '" + StrVal + "'"); 496 return C; 497 } 498 499 static MIToken::TokenKind symbolToken(char C) { 500 switch (C) { 501 case ',': 502 return MIToken::comma; 503 case '.': 504 return MIToken::dot; 505 case '=': 506 return MIToken::equal; 507 case ':': 508 return MIToken::colon; 509 case '(': 510 return MIToken::lparen; 511 case ')': 512 return MIToken::rparen; 513 case '{': 514 return MIToken::lbrace; 515 case '}': 516 return MIToken::rbrace; 517 case '+': 518 return MIToken::plus; 519 case '-': 520 return MIToken::minus; 521 case '<': 522 return MIToken::less; 523 case '>': 524 return MIToken::greater; 525 default: 526 return MIToken::Error; 527 } 528 } 529 530 static Cursor maybeLexSymbol(Cursor C, MIToken &Token) { 531 MIToken::TokenKind Kind; 532 unsigned Length = 1; 533 if (C.peek() == ':' && C.peek(1) == ':') { 534 Kind = MIToken::coloncolon; 535 Length = 2; 536 } else 537 Kind = symbolToken(C.peek()); 538 if (Kind == MIToken::Error) 539 return None; 540 auto Range = C; 541 C.advance(Length); 542 Token.reset(Kind, Range.upto(C)); 543 return C; 544 } 545 546 static Cursor maybeLexNewline(Cursor C, MIToken &Token) { 547 if (!isNewlineChar(C.peek())) 548 return None; 549 auto Range = C; 550 C.advance(); 551 Token.reset(MIToken::Newline, Range.upto(C)); 552 return C; 553 } 554 555 static Cursor maybeLexEscapedIRValue(Cursor C, MIToken &Token, 556 ErrorCallbackType ErrorCallback) { 557 if (C.peek() != '`') 558 return None; 559 auto Range = C; 560 C.advance(); 561 auto StrRange = C; 562 while (C.peek() != '`') { 563 if (C.isEOF() || isNewlineChar(C.peek())) { 564 ErrorCallback( 565 C.location(), 566 "end of machine instruction reached before the closing '`'"); 567 Token.reset(MIToken::Error, Range.remaining()); 568 return C; 569 } 570 C.advance(); 571 } 572 StringRef Value = StrRange.upto(C); 573 C.advance(); 574 Token.reset(MIToken::QuotedIRValue, Range.upto(C)).setStringValue(Value); 575 return C; 576 } 577 578 StringRef llvm::lexMIToken(StringRef Source, MIToken &Token, 579 ErrorCallbackType ErrorCallback) { 580 auto C = skipComment(skipWhitespace(Cursor(Source))); 581 if (C.isEOF()) { 582 Token.reset(MIToken::Eof, C.remaining()); 583 return C.remaining(); 584 } 585 586 if (Cursor R = maybeLexIntegerOrScalarType(C, Token)) 587 return R.remaining(); 588 if (Cursor R = maybeLexMachineBasicBlock(C, Token, ErrorCallback)) 589 return R.remaining(); 590 if (Cursor R = maybeLexIdentifier(C, Token)) 591 return R.remaining(); 592 if (Cursor R = maybeLexJumpTableIndex(C, Token)) 593 return R.remaining(); 594 if (Cursor R = maybeLexStackObject(C, Token)) 595 return R.remaining(); 596 if (Cursor R = maybeLexFixedStackObject(C, Token)) 597 return R.remaining(); 598 if (Cursor R = maybeLexConstantPoolItem(C, Token)) 599 return R.remaining(); 600 if (Cursor R = maybeLexSubRegisterIndex(C, Token, ErrorCallback)) 601 return R.remaining(); 602 if (Cursor R = maybeLexIRBlock(C, Token, ErrorCallback)) 603 return R.remaining(); 604 if (Cursor R = maybeLexIRValue(C, Token, ErrorCallback)) 605 return R.remaining(); 606 if (Cursor R = maybeLexRegister(C, Token)) 607 return R.remaining(); 608 if (Cursor R = maybeLexGlobalValue(C, Token, ErrorCallback)) 609 return R.remaining(); 610 if (Cursor R = maybeLexExternalSymbol(C, Token, ErrorCallback)) 611 return R.remaining(); 612 if (Cursor R = maybeLexHexFloatingPointLiteral(C, Token)) 613 return R.remaining(); 614 if (Cursor R = maybeLexNumericalLiteral(C, Token)) 615 return R.remaining(); 616 if (Cursor R = maybeLexExlaim(C, Token, ErrorCallback)) 617 return R.remaining(); 618 if (Cursor R = maybeLexSymbol(C, Token)) 619 return R.remaining(); 620 if (Cursor R = maybeLexNewline(C, Token)) 621 return R.remaining(); 622 if (Cursor R = maybeLexEscapedIRValue(C, Token, ErrorCallback)) 623 return R.remaining(); 624 625 Token.reset(MIToken::Error, C.remaining()); 626 ErrorCallback(C.location(), 627 Twine("unexpected character '") + Twine(C.peek()) + "'"); 628 return C.remaining(); 629 } 630