1 //===- MILexer.cpp - Machine instructions lexer implementation ------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 // This file implements the lexing of machine instructions.
10 //
11 //===----------------------------------------------------------------------===//
12
13 #include "MILexer.h"
14 #include "llvm/ADT/StringExtras.h"
15 #include "llvm/ADT/StringSwitch.h"
16 #include "llvm/ADT/Twine.h"
17 #include <cassert>
18 #include <cctype>
19 #include <string>
20
21 using namespace llvm;
22
23 namespace {
24
25 using ErrorCallbackType =
26 function_ref<void(StringRef::iterator Loc, const Twine &)>;
27
28 /// This class provides a way to iterate and get characters from the source
29 /// string.
30 class Cursor {
31 const char *Ptr = nullptr;
32 const char *End = nullptr;
33
34 public:
Cursor(std::nullopt_t)35 Cursor(std::nullopt_t) {}
36
Cursor(StringRef Str)37 explicit Cursor(StringRef Str) {
38 Ptr = Str.data();
39 End = Ptr + Str.size();
40 }
41
isEOF() const42 bool isEOF() const { return Ptr == End; }
43
peek(int I=0) const44 char peek(int I = 0) const { return End - Ptr <= I ? 0 : Ptr[I]; }
45
advance(unsigned I=1)46 void advance(unsigned I = 1) { Ptr += I; }
47
remaining() const48 StringRef remaining() const { return StringRef(Ptr, End - Ptr); }
49
upto(Cursor C) const50 StringRef upto(Cursor C) const {
51 assert(C.Ptr >= Ptr && C.Ptr <= End);
52 return StringRef(Ptr, C.Ptr - Ptr);
53 }
54
location() const55 StringRef::iterator location() const { return Ptr; }
56
operator bool() const57 operator bool() const { return Ptr != nullptr; }
58 };
59
60 } // end anonymous namespace
61
reset(TokenKind Kind,StringRef Range)62 MIToken &MIToken::reset(TokenKind Kind, StringRef Range) {
63 this->Kind = Kind;
64 this->Range = Range;
65 return *this;
66 }
67
setStringValue(StringRef StrVal)68 MIToken &MIToken::setStringValue(StringRef StrVal) {
69 StringValue = StrVal;
70 return *this;
71 }
72
setOwnedStringValue(std::string StrVal)73 MIToken &MIToken::setOwnedStringValue(std::string StrVal) {
74 StringValueStorage = std::move(StrVal);
75 StringValue = StringValueStorage;
76 return *this;
77 }
78
setIntegerValue(APSInt IntVal)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.
skipWhitespace(Cursor C)85 static Cursor skipWhitespace(Cursor C) {
86 while (isblank(C.peek()))
87 C.advance();
88 return C;
89 }
90
isNewlineChar(char C)91 static bool isNewlineChar(char C) { return C == '\n' || C == '\r'; }
92
93 /// Skip a line comment and return the updated cursor.
skipComment(Cursor C)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 /// Machine operands can have comments, enclosed between /* and */.
103 /// This eats up all tokens, including /* and */.
skipMachineOperandComment(Cursor C)104 static Cursor skipMachineOperandComment(Cursor C) {
105 if (C.peek() != '/' || C.peek(1) != '*')
106 return C;
107
108 while (C.peek() != '*' || C.peek(1) != '/')
109 C.advance();
110
111 C.advance();
112 C.advance();
113 return C;
114 }
115
116 /// Return true if the given character satisfies the following regular
117 /// expression: [-a-zA-Z$._0-9]
isIdentifierChar(char C)118 static bool isIdentifierChar(char C) {
119 return isalpha(C) || isdigit(C) || C == '_' || C == '-' || C == '.' ||
120 C == '$';
121 }
122
123 /// Unescapes the given string value.
124 ///
125 /// Expects the string value to be quoted.
unescapeQuotedString(StringRef Value)126 static std::string unescapeQuotedString(StringRef Value) {
127 assert(Value.front() == '"' && Value.back() == '"');
128 Cursor C = Cursor(Value.substr(1, Value.size() - 2));
129
130 std::string Str;
131 Str.reserve(C.remaining().size());
132 while (!C.isEOF()) {
133 char Char = C.peek();
134 if (Char == '\\') {
135 if (C.peek(1) == '\\') {
136 // Two '\' become one
137 Str += '\\';
138 C.advance(2);
139 continue;
140 }
141 if (isxdigit(C.peek(1)) && isxdigit(C.peek(2))) {
142 Str += hexDigitValue(C.peek(1)) * 16 + hexDigitValue(C.peek(2));
143 C.advance(3);
144 continue;
145 }
146 }
147 Str += Char;
148 C.advance();
149 }
150 return Str;
151 }
152
153 /// Lex a string constant using the following regular expression: \"[^\"]*\"
lexStringConstant(Cursor C,ErrorCallbackType ErrorCallback)154 static Cursor lexStringConstant(Cursor C, ErrorCallbackType ErrorCallback) {
155 assert(C.peek() == '"');
156 for (C.advance(); C.peek() != '"'; C.advance()) {
157 if (C.isEOF() || isNewlineChar(C.peek())) {
158 ErrorCallback(
159 C.location(),
160 "end of machine instruction reached before the closing '\"'");
161 return std::nullopt;
162 }
163 }
164 C.advance();
165 return C;
166 }
167
lexName(Cursor C,MIToken & Token,MIToken::TokenKind Type,unsigned PrefixLength,ErrorCallbackType ErrorCallback)168 static Cursor lexName(Cursor C, MIToken &Token, MIToken::TokenKind Type,
169 unsigned PrefixLength, ErrorCallbackType ErrorCallback) {
170 auto Range = C;
171 C.advance(PrefixLength);
172 if (C.peek() == '"') {
173 if (Cursor R = lexStringConstant(C, ErrorCallback)) {
174 StringRef String = Range.upto(R);
175 Token.reset(Type, String)
176 .setOwnedStringValue(
177 unescapeQuotedString(String.drop_front(PrefixLength)));
178 return R;
179 }
180 Token.reset(MIToken::Error, Range.remaining());
181 return Range;
182 }
183 while (isIdentifierChar(C.peek()))
184 C.advance();
185 Token.reset(Type, Range.upto(C))
186 .setStringValue(Range.upto(C).drop_front(PrefixLength));
187 return C;
188 }
189
getIdentifierKind(StringRef Identifier)190 static MIToken::TokenKind getIdentifierKind(StringRef Identifier) {
191 return StringSwitch<MIToken::TokenKind>(Identifier)
192 .Case("_", MIToken::underscore)
193 .Case("implicit", MIToken::kw_implicit)
194 .Case("implicit-def", MIToken::kw_implicit_define)
195 .Case("def", MIToken::kw_def)
196 .Case("dead", MIToken::kw_dead)
197 .Case("killed", MIToken::kw_killed)
198 .Case("undef", MIToken::kw_undef)
199 .Case("internal", MIToken::kw_internal)
200 .Case("early-clobber", MIToken::kw_early_clobber)
201 .Case("debug-use", MIToken::kw_debug_use)
202 .Case("renamable", MIToken::kw_renamable)
203 .Case("tied-def", MIToken::kw_tied_def)
204 .Case("frame-setup", MIToken::kw_frame_setup)
205 .Case("frame-destroy", MIToken::kw_frame_destroy)
206 .Case("nnan", MIToken::kw_nnan)
207 .Case("ninf", MIToken::kw_ninf)
208 .Case("nsz", MIToken::kw_nsz)
209 .Case("arcp", MIToken::kw_arcp)
210 .Case("contract", MIToken::kw_contract)
211 .Case("afn", MIToken::kw_afn)
212 .Case("reassoc", MIToken::kw_reassoc)
213 .Case("nuw", MIToken::kw_nuw)
214 .Case("nsw", MIToken::kw_nsw)
215 .Case("nusw", MIToken::kw_nusw)
216 .Case("exact", MIToken::kw_exact)
217 .Case("nneg", MIToken::kw_nneg)
218 .Case("disjoint", MIToken::kw_disjoint)
219 .Case("nofpexcept", MIToken::kw_nofpexcept)
220 .Case("unpredictable", MIToken::kw_unpredictable)
221 .Case("debug-location", MIToken::kw_debug_location)
222 .Case("debug-instr-number", MIToken::kw_debug_instr_number)
223 .Case("dbg-instr-ref", MIToken::kw_dbg_instr_ref)
224 .Case("same_value", MIToken::kw_cfi_same_value)
225 .Case("offset", MIToken::kw_cfi_offset)
226 .Case("rel_offset", MIToken::kw_cfi_rel_offset)
227 .Case("def_cfa_register", MIToken::kw_cfi_def_cfa_register)
228 .Case("def_cfa_offset", MIToken::kw_cfi_def_cfa_offset)
229 .Case("adjust_cfa_offset", MIToken::kw_cfi_adjust_cfa_offset)
230 .Case("escape", MIToken::kw_cfi_escape)
231 .Case("def_cfa", MIToken::kw_cfi_def_cfa)
232 .Case("llvm_def_aspace_cfa", MIToken::kw_cfi_llvm_def_aspace_cfa)
233 .Case("remember_state", MIToken::kw_cfi_remember_state)
234 .Case("restore", MIToken::kw_cfi_restore)
235 .Case("restore_state", MIToken::kw_cfi_restore_state)
236 .Case("undefined", MIToken::kw_cfi_undefined)
237 .Case("register", MIToken::kw_cfi_register)
238 .Case("window_save", MIToken::kw_cfi_window_save)
239 .Case("negate_ra_sign_state",
240 MIToken::kw_cfi_aarch64_negate_ra_sign_state)
241 .Case("blockaddress", MIToken::kw_blockaddress)
242 .Case("intrinsic", MIToken::kw_intrinsic)
243 .Case("target-index", MIToken::kw_target_index)
244 .Case("half", MIToken::kw_half)
245 .Case("bfloat", MIToken::kw_bfloat)
246 .Case("float", MIToken::kw_float)
247 .Case("double", MIToken::kw_double)
248 .Case("x86_fp80", MIToken::kw_x86_fp80)
249 .Case("fp128", MIToken::kw_fp128)
250 .Case("ppc_fp128", MIToken::kw_ppc_fp128)
251 .Case("target-flags", MIToken::kw_target_flags)
252 .Case("volatile", MIToken::kw_volatile)
253 .Case("non-temporal", MIToken::kw_non_temporal)
254 .Case("dereferenceable", MIToken::kw_dereferenceable)
255 .Case("invariant", MIToken::kw_invariant)
256 .Case("align", MIToken::kw_align)
257 .Case("basealign", MIToken::kw_basealign)
258 .Case("addrspace", MIToken::kw_addrspace)
259 .Case("stack", MIToken::kw_stack)
260 .Case("got", MIToken::kw_got)
261 .Case("jump-table", MIToken::kw_jump_table)
262 .Case("constant-pool", MIToken::kw_constant_pool)
263 .Case("call-entry", MIToken::kw_call_entry)
264 .Case("custom", MIToken::kw_custom)
265 .Case("liveout", MIToken::kw_liveout)
266 .Case("landing-pad", MIToken::kw_landing_pad)
267 .Case("inlineasm-br-indirect-target",
268 MIToken::kw_inlineasm_br_indirect_target)
269 .Case("ehfunclet-entry", MIToken::kw_ehfunclet_entry)
270 .Case("liveins", MIToken::kw_liveins)
271 .Case("successors", MIToken::kw_successors)
272 .Case("floatpred", MIToken::kw_floatpred)
273 .Case("intpred", MIToken::kw_intpred)
274 .Case("shufflemask", MIToken::kw_shufflemask)
275 .Case("pre-instr-symbol", MIToken::kw_pre_instr_symbol)
276 .Case("post-instr-symbol", MIToken::kw_post_instr_symbol)
277 .Case("heap-alloc-marker", MIToken::kw_heap_alloc_marker)
278 .Case("pcsections", MIToken::kw_pcsections)
279 .Case("cfi-type", MIToken::kw_cfi_type)
280 .Case("bbsections", MIToken::kw_bbsections)
281 .Case("bb_id", MIToken::kw_bb_id)
282 .Case("unknown-size", MIToken::kw_unknown_size)
283 .Case("unknown-address", MIToken::kw_unknown_address)
284 .Case("distinct", MIToken::kw_distinct)
285 .Case("ir-block-address-taken", MIToken::kw_ir_block_address_taken)
286 .Case("machine-block-address-taken",
287 MIToken::kw_machine_block_address_taken)
288 .Case("call-frame-size", MIToken::kw_call_frame_size)
289 .Case("noconvergent", MIToken::kw_noconvergent)
290 .Default(MIToken::Identifier);
291 }
292
maybeLexIdentifier(Cursor C,MIToken & Token)293 static Cursor maybeLexIdentifier(Cursor C, MIToken &Token) {
294 if (!isalpha(C.peek()) && C.peek() != '_')
295 return std::nullopt;
296 auto Range = C;
297 while (isIdentifierChar(C.peek()))
298 C.advance();
299 auto Identifier = Range.upto(C);
300 Token.reset(getIdentifierKind(Identifier), Identifier)
301 .setStringValue(Identifier);
302 return C;
303 }
304
maybeLexMachineBasicBlock(Cursor C,MIToken & Token,ErrorCallbackType ErrorCallback)305 static Cursor maybeLexMachineBasicBlock(Cursor C, MIToken &Token,
306 ErrorCallbackType ErrorCallback) {
307 bool IsReference = C.remaining().starts_with("%bb.");
308 if (!IsReference && !C.remaining().starts_with("bb."))
309 return std::nullopt;
310 auto Range = C;
311 unsigned PrefixLength = IsReference ? 4 : 3;
312 C.advance(PrefixLength); // Skip '%bb.' or 'bb.'
313 if (!isdigit(C.peek())) {
314 Token.reset(MIToken::Error, C.remaining());
315 ErrorCallback(C.location(), "expected a number after '%bb.'");
316 return C;
317 }
318 auto NumberRange = C;
319 while (isdigit(C.peek()))
320 C.advance();
321 StringRef Number = NumberRange.upto(C);
322 unsigned StringOffset = PrefixLength + Number.size(); // Drop '%bb.<id>'
323 // TODO: The format bb.<id>.<irname> is supported only when it's not a
324 // reference. Once we deprecate the format where the irname shows up, we
325 // should only lex forward if it is a reference.
326 if (C.peek() == '.') {
327 C.advance(); // Skip '.'
328 ++StringOffset;
329 while (isIdentifierChar(C.peek()))
330 C.advance();
331 }
332 Token.reset(IsReference ? MIToken::MachineBasicBlock
333 : MIToken::MachineBasicBlockLabel,
334 Range.upto(C))
335 .setIntegerValue(APSInt(Number))
336 .setStringValue(Range.upto(C).drop_front(StringOffset));
337 return C;
338 }
339
maybeLexIndex(Cursor C,MIToken & Token,StringRef Rule,MIToken::TokenKind Kind)340 static Cursor maybeLexIndex(Cursor C, MIToken &Token, StringRef Rule,
341 MIToken::TokenKind Kind) {
342 if (!C.remaining().starts_with(Rule) || !isdigit(C.peek(Rule.size())))
343 return std::nullopt;
344 auto Range = C;
345 C.advance(Rule.size());
346 auto NumberRange = C;
347 while (isdigit(C.peek()))
348 C.advance();
349 Token.reset(Kind, Range.upto(C)).setIntegerValue(APSInt(NumberRange.upto(C)));
350 return C;
351 }
352
maybeLexIndexAndName(Cursor C,MIToken & Token,StringRef Rule,MIToken::TokenKind Kind)353 static Cursor maybeLexIndexAndName(Cursor C, MIToken &Token, StringRef Rule,
354 MIToken::TokenKind Kind) {
355 if (!C.remaining().starts_with(Rule) || !isdigit(C.peek(Rule.size())))
356 return std::nullopt;
357 auto Range = C;
358 C.advance(Rule.size());
359 auto NumberRange = C;
360 while (isdigit(C.peek()))
361 C.advance();
362 StringRef Number = NumberRange.upto(C);
363 unsigned StringOffset = Rule.size() + Number.size();
364 if (C.peek() == '.') {
365 C.advance();
366 ++StringOffset;
367 while (isIdentifierChar(C.peek()))
368 C.advance();
369 }
370 Token.reset(Kind, Range.upto(C))
371 .setIntegerValue(APSInt(Number))
372 .setStringValue(Range.upto(C).drop_front(StringOffset));
373 return C;
374 }
375
maybeLexJumpTableIndex(Cursor C,MIToken & Token)376 static Cursor maybeLexJumpTableIndex(Cursor C, MIToken &Token) {
377 return maybeLexIndex(C, Token, "%jump-table.", MIToken::JumpTableIndex);
378 }
379
maybeLexStackObject(Cursor C,MIToken & Token)380 static Cursor maybeLexStackObject(Cursor C, MIToken &Token) {
381 return maybeLexIndexAndName(C, Token, "%stack.", MIToken::StackObject);
382 }
383
maybeLexFixedStackObject(Cursor C,MIToken & Token)384 static Cursor maybeLexFixedStackObject(Cursor C, MIToken &Token) {
385 return maybeLexIndex(C, Token, "%fixed-stack.", MIToken::FixedStackObject);
386 }
387
maybeLexConstantPoolItem(Cursor C,MIToken & Token)388 static Cursor maybeLexConstantPoolItem(Cursor C, MIToken &Token) {
389 return maybeLexIndex(C, Token, "%const.", MIToken::ConstantPoolItem);
390 }
391
maybeLexSubRegisterIndex(Cursor C,MIToken & Token,ErrorCallbackType ErrorCallback)392 static Cursor maybeLexSubRegisterIndex(Cursor C, MIToken &Token,
393 ErrorCallbackType ErrorCallback) {
394 const StringRef Rule = "%subreg.";
395 if (!C.remaining().starts_with(Rule))
396 return std::nullopt;
397 return lexName(C, Token, MIToken::SubRegisterIndex, Rule.size(),
398 ErrorCallback);
399 }
400
maybeLexIRBlock(Cursor C,MIToken & Token,ErrorCallbackType ErrorCallback)401 static Cursor maybeLexIRBlock(Cursor C, MIToken &Token,
402 ErrorCallbackType ErrorCallback) {
403 const StringRef Rule = "%ir-block.";
404 if (!C.remaining().starts_with(Rule))
405 return std::nullopt;
406 if (isdigit(C.peek(Rule.size())))
407 return maybeLexIndex(C, Token, Rule, MIToken::IRBlock);
408 return lexName(C, Token, MIToken::NamedIRBlock, Rule.size(), ErrorCallback);
409 }
410
maybeLexIRValue(Cursor C,MIToken & Token,ErrorCallbackType ErrorCallback)411 static Cursor maybeLexIRValue(Cursor C, MIToken &Token,
412 ErrorCallbackType ErrorCallback) {
413 const StringRef Rule = "%ir.";
414 if (!C.remaining().starts_with(Rule))
415 return std::nullopt;
416 if (isdigit(C.peek(Rule.size())))
417 return maybeLexIndex(C, Token, Rule, MIToken::IRValue);
418 return lexName(C, Token, MIToken::NamedIRValue, Rule.size(), ErrorCallback);
419 }
420
maybeLexStringConstant(Cursor C,MIToken & Token,ErrorCallbackType ErrorCallback)421 static Cursor maybeLexStringConstant(Cursor C, MIToken &Token,
422 ErrorCallbackType ErrorCallback) {
423 if (C.peek() != '"')
424 return std::nullopt;
425 return lexName(C, Token, MIToken::StringConstant, /*PrefixLength=*/0,
426 ErrorCallback);
427 }
428
lexVirtualRegister(Cursor C,MIToken & Token)429 static Cursor lexVirtualRegister(Cursor C, MIToken &Token) {
430 auto Range = C;
431 C.advance(); // Skip '%'
432 auto NumberRange = C;
433 while (isdigit(C.peek()))
434 C.advance();
435 Token.reset(MIToken::VirtualRegister, Range.upto(C))
436 .setIntegerValue(APSInt(NumberRange.upto(C)));
437 return C;
438 }
439
440 /// Returns true for a character allowed in a register name.
isRegisterChar(char C)441 static bool isRegisterChar(char C) {
442 return isIdentifierChar(C) && C != '.';
443 }
444
lexNamedVirtualRegister(Cursor C,MIToken & Token)445 static Cursor lexNamedVirtualRegister(Cursor C, MIToken &Token) {
446 Cursor Range = C;
447 C.advance(); // Skip '%'
448 while (isRegisterChar(C.peek()))
449 C.advance();
450 Token.reset(MIToken::NamedVirtualRegister, Range.upto(C))
451 .setStringValue(Range.upto(C).drop_front(1)); // Drop the '%'
452 return C;
453 }
454
maybeLexRegister(Cursor C,MIToken & Token,ErrorCallbackType ErrorCallback)455 static Cursor maybeLexRegister(Cursor C, MIToken &Token,
456 ErrorCallbackType ErrorCallback) {
457 if (C.peek() != '%' && C.peek() != '$')
458 return std::nullopt;
459
460 if (C.peek() == '%') {
461 if (isdigit(C.peek(1)))
462 return lexVirtualRegister(C, Token);
463
464 if (isRegisterChar(C.peek(1)))
465 return lexNamedVirtualRegister(C, Token);
466
467 return std::nullopt;
468 }
469
470 assert(C.peek() == '$');
471 auto Range = C;
472 C.advance(); // Skip '$'
473 while (isRegisterChar(C.peek()))
474 C.advance();
475 Token.reset(MIToken::NamedRegister, Range.upto(C))
476 .setStringValue(Range.upto(C).drop_front(1)); // Drop the '$'
477 return C;
478 }
479
maybeLexGlobalValue(Cursor C,MIToken & Token,ErrorCallbackType ErrorCallback)480 static Cursor maybeLexGlobalValue(Cursor C, MIToken &Token,
481 ErrorCallbackType ErrorCallback) {
482 if (C.peek() != '@')
483 return std::nullopt;
484 if (!isdigit(C.peek(1)))
485 return lexName(C, Token, MIToken::NamedGlobalValue, /*PrefixLength=*/1,
486 ErrorCallback);
487 auto Range = C;
488 C.advance(1); // Skip the '@'
489 auto NumberRange = C;
490 while (isdigit(C.peek()))
491 C.advance();
492 Token.reset(MIToken::GlobalValue, Range.upto(C))
493 .setIntegerValue(APSInt(NumberRange.upto(C)));
494 return C;
495 }
496
maybeLexExternalSymbol(Cursor C,MIToken & Token,ErrorCallbackType ErrorCallback)497 static Cursor maybeLexExternalSymbol(Cursor C, MIToken &Token,
498 ErrorCallbackType ErrorCallback) {
499 if (C.peek() != '&')
500 return std::nullopt;
501 return lexName(C, Token, MIToken::ExternalSymbol, /*PrefixLength=*/1,
502 ErrorCallback);
503 }
504
maybeLexMCSymbol(Cursor C,MIToken & Token,ErrorCallbackType ErrorCallback)505 static Cursor maybeLexMCSymbol(Cursor C, MIToken &Token,
506 ErrorCallbackType ErrorCallback) {
507 const StringRef Rule = "<mcsymbol ";
508 if (!C.remaining().starts_with(Rule))
509 return std::nullopt;
510 auto Start = C;
511 C.advance(Rule.size());
512
513 // Try a simple unquoted name.
514 if (C.peek() != '"') {
515 while (isIdentifierChar(C.peek()))
516 C.advance();
517 StringRef String = Start.upto(C).drop_front(Rule.size());
518 if (C.peek() != '>') {
519 ErrorCallback(C.location(),
520 "expected the '<mcsymbol ...' to be closed by a '>'");
521 Token.reset(MIToken::Error, Start.remaining());
522 return Start;
523 }
524 C.advance();
525
526 Token.reset(MIToken::MCSymbol, Start.upto(C)).setStringValue(String);
527 return C;
528 }
529
530 // Otherwise lex out a quoted name.
531 Cursor R = lexStringConstant(C, ErrorCallback);
532 if (!R) {
533 ErrorCallback(C.location(),
534 "unable to parse quoted string from opening quote");
535 Token.reset(MIToken::Error, Start.remaining());
536 return Start;
537 }
538 StringRef String = Start.upto(R).drop_front(Rule.size());
539 if (R.peek() != '>') {
540 ErrorCallback(R.location(),
541 "expected the '<mcsymbol ...' to be closed by a '>'");
542 Token.reset(MIToken::Error, Start.remaining());
543 return Start;
544 }
545 R.advance();
546
547 Token.reset(MIToken::MCSymbol, Start.upto(R))
548 .setOwnedStringValue(unescapeQuotedString(String));
549 return R;
550 }
551
isValidHexFloatingPointPrefix(char C)552 static bool isValidHexFloatingPointPrefix(char C) {
553 return C == 'H' || C == 'K' || C == 'L' || C == 'M' || C == 'R';
554 }
555
lexFloatingPointLiteral(Cursor Range,Cursor C,MIToken & Token)556 static Cursor lexFloatingPointLiteral(Cursor Range, Cursor C, MIToken &Token) {
557 C.advance();
558 // Skip over [0-9]*([eE][-+]?[0-9]+)?
559 while (isdigit(C.peek()))
560 C.advance();
561 if ((C.peek() == 'e' || C.peek() == 'E') &&
562 (isdigit(C.peek(1)) ||
563 ((C.peek(1) == '-' || C.peek(1) == '+') && isdigit(C.peek(2))))) {
564 C.advance(2);
565 while (isdigit(C.peek()))
566 C.advance();
567 }
568 Token.reset(MIToken::FloatingPointLiteral, Range.upto(C));
569 return C;
570 }
571
maybeLexHexadecimalLiteral(Cursor C,MIToken & Token)572 static Cursor maybeLexHexadecimalLiteral(Cursor C, MIToken &Token) {
573 if (C.peek() != '0' || (C.peek(1) != 'x' && C.peek(1) != 'X'))
574 return std::nullopt;
575 Cursor Range = C;
576 C.advance(2);
577 unsigned PrefLen = 2;
578 if (isValidHexFloatingPointPrefix(C.peek())) {
579 C.advance();
580 PrefLen++;
581 }
582 while (isxdigit(C.peek()))
583 C.advance();
584 StringRef StrVal = Range.upto(C);
585 if (StrVal.size() <= PrefLen)
586 return std::nullopt;
587 if (PrefLen == 2)
588 Token.reset(MIToken::HexLiteral, Range.upto(C));
589 else // It must be 3, which means that there was a floating-point prefix.
590 Token.reset(MIToken::FloatingPointLiteral, Range.upto(C));
591 return C;
592 }
593
maybeLexNumericalLiteral(Cursor C,MIToken & Token)594 static Cursor maybeLexNumericalLiteral(Cursor C, MIToken &Token) {
595 if (!isdigit(C.peek()) && (C.peek() != '-' || !isdigit(C.peek(1))))
596 return std::nullopt;
597 auto Range = C;
598 C.advance();
599 while (isdigit(C.peek()))
600 C.advance();
601 if (C.peek() == '.')
602 return lexFloatingPointLiteral(Range, C, Token);
603 StringRef StrVal = Range.upto(C);
604 Token.reset(MIToken::IntegerLiteral, StrVal).setIntegerValue(APSInt(StrVal));
605 return C;
606 }
607
getMetadataKeywordKind(StringRef Identifier)608 static MIToken::TokenKind getMetadataKeywordKind(StringRef Identifier) {
609 return StringSwitch<MIToken::TokenKind>(Identifier)
610 .Case("!tbaa", MIToken::md_tbaa)
611 .Case("!alias.scope", MIToken::md_alias_scope)
612 .Case("!noalias", MIToken::md_noalias)
613 .Case("!range", MIToken::md_range)
614 .Case("!DIExpression", MIToken::md_diexpr)
615 .Case("!DILocation", MIToken::md_dilocation)
616 .Default(MIToken::Error);
617 }
618
maybeLexExclaim(Cursor C,MIToken & Token,ErrorCallbackType ErrorCallback)619 static Cursor maybeLexExclaim(Cursor C, MIToken &Token,
620 ErrorCallbackType ErrorCallback) {
621 if (C.peek() != '!')
622 return std::nullopt;
623 auto Range = C;
624 C.advance(1);
625 if (isdigit(C.peek()) || !isIdentifierChar(C.peek())) {
626 Token.reset(MIToken::exclaim, Range.upto(C));
627 return C;
628 }
629 while (isIdentifierChar(C.peek()))
630 C.advance();
631 StringRef StrVal = Range.upto(C);
632 Token.reset(getMetadataKeywordKind(StrVal), StrVal);
633 if (Token.isError())
634 ErrorCallback(Token.location(),
635 "use of unknown metadata keyword '" + StrVal + "'");
636 return C;
637 }
638
symbolToken(char C)639 static MIToken::TokenKind symbolToken(char C) {
640 switch (C) {
641 case ',':
642 return MIToken::comma;
643 case '.':
644 return MIToken::dot;
645 case '=':
646 return MIToken::equal;
647 case ':':
648 return MIToken::colon;
649 case '(':
650 return MIToken::lparen;
651 case ')':
652 return MIToken::rparen;
653 case '{':
654 return MIToken::lbrace;
655 case '}':
656 return MIToken::rbrace;
657 case '+':
658 return MIToken::plus;
659 case '-':
660 return MIToken::minus;
661 case '<':
662 return MIToken::less;
663 case '>':
664 return MIToken::greater;
665 default:
666 return MIToken::Error;
667 }
668 }
669
maybeLexSymbol(Cursor C,MIToken & Token)670 static Cursor maybeLexSymbol(Cursor C, MIToken &Token) {
671 MIToken::TokenKind Kind;
672 unsigned Length = 1;
673 if (C.peek() == ':' && C.peek(1) == ':') {
674 Kind = MIToken::coloncolon;
675 Length = 2;
676 } else
677 Kind = symbolToken(C.peek());
678 if (Kind == MIToken::Error)
679 return std::nullopt;
680 auto Range = C;
681 C.advance(Length);
682 Token.reset(Kind, Range.upto(C));
683 return C;
684 }
685
maybeLexNewline(Cursor C,MIToken & Token)686 static Cursor maybeLexNewline(Cursor C, MIToken &Token) {
687 if (!isNewlineChar(C.peek()))
688 return std::nullopt;
689 auto Range = C;
690 C.advance();
691 Token.reset(MIToken::Newline, Range.upto(C));
692 return C;
693 }
694
maybeLexEscapedIRValue(Cursor C,MIToken & Token,ErrorCallbackType ErrorCallback)695 static Cursor maybeLexEscapedIRValue(Cursor C, MIToken &Token,
696 ErrorCallbackType ErrorCallback) {
697 if (C.peek() != '`')
698 return std::nullopt;
699 auto Range = C;
700 C.advance();
701 auto StrRange = C;
702 while (C.peek() != '`') {
703 if (C.isEOF() || isNewlineChar(C.peek())) {
704 ErrorCallback(
705 C.location(),
706 "end of machine instruction reached before the closing '`'");
707 Token.reset(MIToken::Error, Range.remaining());
708 return C;
709 }
710 C.advance();
711 }
712 StringRef Value = StrRange.upto(C);
713 C.advance();
714 Token.reset(MIToken::QuotedIRValue, Range.upto(C)).setStringValue(Value);
715 return C;
716 }
717
lexMIToken(StringRef Source,MIToken & Token,ErrorCallbackType ErrorCallback)718 StringRef llvm::lexMIToken(StringRef Source, MIToken &Token,
719 ErrorCallbackType ErrorCallback) {
720 auto C = skipComment(skipWhitespace(Cursor(Source)));
721 if (C.isEOF()) {
722 Token.reset(MIToken::Eof, C.remaining());
723 return C.remaining();
724 }
725
726 C = skipMachineOperandComment(C);
727
728 if (Cursor R = maybeLexMachineBasicBlock(C, Token, ErrorCallback))
729 return R.remaining();
730 if (Cursor R = maybeLexIdentifier(C, Token))
731 return R.remaining();
732 if (Cursor R = maybeLexJumpTableIndex(C, Token))
733 return R.remaining();
734 if (Cursor R = maybeLexStackObject(C, Token))
735 return R.remaining();
736 if (Cursor R = maybeLexFixedStackObject(C, Token))
737 return R.remaining();
738 if (Cursor R = maybeLexConstantPoolItem(C, Token))
739 return R.remaining();
740 if (Cursor R = maybeLexSubRegisterIndex(C, Token, ErrorCallback))
741 return R.remaining();
742 if (Cursor R = maybeLexIRBlock(C, Token, ErrorCallback))
743 return R.remaining();
744 if (Cursor R = maybeLexIRValue(C, Token, ErrorCallback))
745 return R.remaining();
746 if (Cursor R = maybeLexRegister(C, Token, ErrorCallback))
747 return R.remaining();
748 if (Cursor R = maybeLexGlobalValue(C, Token, ErrorCallback))
749 return R.remaining();
750 if (Cursor R = maybeLexExternalSymbol(C, Token, ErrorCallback))
751 return R.remaining();
752 if (Cursor R = maybeLexMCSymbol(C, Token, ErrorCallback))
753 return R.remaining();
754 if (Cursor R = maybeLexHexadecimalLiteral(C, Token))
755 return R.remaining();
756 if (Cursor R = maybeLexNumericalLiteral(C, Token))
757 return R.remaining();
758 if (Cursor R = maybeLexExclaim(C, Token, ErrorCallback))
759 return R.remaining();
760 if (Cursor R = maybeLexSymbol(C, Token))
761 return R.remaining();
762 if (Cursor R = maybeLexNewline(C, Token))
763 return R.remaining();
764 if (Cursor R = maybeLexEscapedIRValue(C, Token, ErrorCallback))
765 return R.remaining();
766 if (Cursor R = maybeLexStringConstant(C, Token, ErrorCallback))
767 return R.remaining();
768
769 Token.reset(MIToken::Error, C.remaining());
770 ErrorCallback(C.location(),
771 Twine("unexpected character '") + Twine(C.peek()) + "'");
772 return C.remaining();
773 }
774