xref: /llvm-project/llvm/lib/FileCheck/FileCheck.cpp (revision b743c19360a67af4a709bd839e8c80ad17f71a1c)
1 //===- FileCheck.cpp - Check that File's Contents match what is expected --===//
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 // FileCheck does a line-by line check of a file that validates whether it
10 // contains the expected content.  This is useful for regression tests etc.
11 //
12 // This file implements most of the API that will be used by the FileCheck utility
13 // as well as various unittests.
14 //===----------------------------------------------------------------------===//
15 
16 #include "llvm/FileCheck/FileCheck.h"
17 #include "FileCheckImpl.h"
18 #include "llvm/ADT/STLExtras.h"
19 #include "llvm/ADT/StringExtras.h"
20 #include "llvm/ADT/StringSet.h"
21 #include "llvm/ADT/Twine.h"
22 #include "llvm/Support/CheckedArithmetic.h"
23 #include "llvm/Support/FormatVariadic.h"
24 #include <cstdint>
25 #include <list>
26 #include <set>
27 #include <tuple>
28 #include <utility>
29 
30 using namespace llvm;
31 
32 StringRef ExpressionFormat::toString() const {
33   switch (Value) {
34   case Kind::NoFormat:
35     return StringRef("<none>");
36   case Kind::Unsigned:
37     return StringRef("%u");
38   case Kind::Signed:
39     return StringRef("%d");
40   case Kind::HexUpper:
41     return StringRef("%X");
42   case Kind::HexLower:
43     return StringRef("%x");
44   }
45   llvm_unreachable("unknown expression format");
46 }
47 
48 Expected<std::string> ExpressionFormat::getWildcardRegex() const {
49   StringRef AlternateFormPrefix = AlternateForm ? StringRef("0x") : StringRef();
50 
51   auto CreatePrecisionRegex = [&](StringRef S) {
52     return (Twine(AlternateFormPrefix) + S + Twine('{') + Twine(Precision) +
53             "}")
54         .str();
55   };
56 
57   switch (Value) {
58   case Kind::Unsigned:
59     if (Precision)
60       return CreatePrecisionRegex("([1-9][0-9]*)?[0-9]");
61     return std::string("[0-9]+");
62   case Kind::Signed:
63     if (Precision)
64       return CreatePrecisionRegex("-?([1-9][0-9]*)?[0-9]");
65     return std::string("-?[0-9]+");
66   case Kind::HexUpper:
67     if (Precision)
68       return CreatePrecisionRegex("([1-9A-F][0-9A-F]*)?[0-9A-F]");
69     return (Twine(AlternateFormPrefix) + Twine("[0-9A-F]+")).str();
70   case Kind::HexLower:
71     if (Precision)
72       return CreatePrecisionRegex("([1-9a-f][0-9a-f]*)?[0-9a-f]");
73     return (Twine(AlternateFormPrefix) + Twine("[0-9a-f]+")).str();
74   default:
75     return createStringError(std::errc::invalid_argument,
76                              "trying to match value with invalid format");
77   }
78 }
79 
80 Expected<std::string>
81 ExpressionFormat::getMatchingString(APInt IntValue) const {
82   if (Value != Kind::Signed && IntValue.isNegative())
83     return make_error<OverflowError>();
84 
85   unsigned Radix;
86   bool UpperCase = false;
87   SmallString<8> AbsoluteValueStr;
88   StringRef SignPrefix = IntValue.isNegative() ? "-" : "";
89   switch (Value) {
90   case Kind::Unsigned:
91   case Kind::Signed:
92     Radix = 10;
93     break;
94   case Kind::HexUpper:
95     UpperCase = true;
96     Radix = 16;
97     break;
98   case Kind::HexLower:
99     Radix = 16;
100     UpperCase = false;
101     break;
102   default:
103     return createStringError(std::errc::invalid_argument,
104                              "trying to match value with invalid format");
105   }
106   IntValue.abs().toString(AbsoluteValueStr, Radix, /*Signed=*/false,
107                           /*formatAsCLiteral=*/false,
108                           /*UpperCase=*/UpperCase);
109 
110   StringRef AlternateFormPrefix = AlternateForm ? StringRef("0x") : StringRef();
111 
112   if (Precision > AbsoluteValueStr.size()) {
113     unsigned LeadingZeros = Precision - AbsoluteValueStr.size();
114     return (Twine(SignPrefix) + Twine(AlternateFormPrefix) +
115             std::string(LeadingZeros, '0') + AbsoluteValueStr)
116         .str();
117   }
118 
119   return (Twine(SignPrefix) + Twine(AlternateFormPrefix) + AbsoluteValueStr)
120       .str();
121 }
122 
123 static unsigned nextAPIntBitWidth(unsigned BitWidth) {
124   return (BitWidth < APInt::APINT_BITS_PER_WORD) ? APInt::APINT_BITS_PER_WORD
125                                                  : BitWidth * 2;
126 }
127 
128 static APInt toSigned(APInt AbsVal, bool Negative) {
129   if (AbsVal.isSignBitSet())
130     AbsVal = AbsVal.zext(nextAPIntBitWidth(AbsVal.getBitWidth()));
131   APInt Result = AbsVal;
132   if (Negative)
133     Result.negate();
134   return Result;
135 }
136 
137 APInt ExpressionFormat::valueFromStringRepr(StringRef StrVal,
138                                             const SourceMgr &SM) const {
139   bool ValueIsSigned = Value == Kind::Signed;
140   bool Negative = StrVal.consume_front("-");
141   bool Hex = Value == Kind::HexUpper || Value == Kind::HexLower;
142   bool MissingFormPrefix =
143       !ValueIsSigned && AlternateForm && !StrVal.consume_front("0x");
144   (void)MissingFormPrefix;
145   assert(!MissingFormPrefix && "missing alternate form prefix");
146   APInt ResultValue;
147   [[maybe_unused]] bool ParseFailure =
148       StrVal.getAsInteger(Hex ? 16 : 10, ResultValue);
149   // Both the FileCheck utility and library only call this method with a valid
150   // value in StrVal. This is guaranteed by the regex returned by
151   // getWildcardRegex() above.
152   assert(!ParseFailure && "unable to represent numeric value");
153   return toSigned(ResultValue, Negative);
154 }
155 
156 Expected<APInt> llvm::exprAdd(const APInt &LeftOperand,
157                               const APInt &RightOperand, bool &Overflow) {
158   return LeftOperand.sadd_ov(RightOperand, Overflow);
159 }
160 
161 Expected<APInt> llvm::exprSub(const APInt &LeftOperand,
162                               const APInt &RightOperand, bool &Overflow) {
163   return LeftOperand.ssub_ov(RightOperand, Overflow);
164 }
165 
166 Expected<APInt> llvm::exprMul(const APInt &LeftOperand,
167                               const APInt &RightOperand, bool &Overflow) {
168   return LeftOperand.smul_ov(RightOperand, Overflow);
169 }
170 
171 Expected<APInt> llvm::exprDiv(const APInt &LeftOperand,
172                               const APInt &RightOperand, bool &Overflow) {
173   // Check for division by zero.
174   if (RightOperand.isZero())
175     return make_error<OverflowError>();
176 
177   return LeftOperand.sdiv_ov(RightOperand, Overflow);
178 }
179 
180 Expected<APInt> llvm::exprMax(const APInt &LeftOperand,
181                               const APInt &RightOperand, bool &Overflow) {
182   Overflow = false;
183   return LeftOperand.slt(RightOperand) ? RightOperand : LeftOperand;
184 }
185 
186 Expected<APInt> llvm::exprMin(const APInt &LeftOperand,
187                               const APInt &RightOperand, bool &Overflow) {
188   Overflow = false;
189   if (cantFail(exprMax(LeftOperand, RightOperand, Overflow)) == LeftOperand)
190     return RightOperand;
191 
192   return LeftOperand;
193 }
194 
195 Expected<APInt> NumericVariableUse::eval() const {
196   std::optional<APInt> Value = Variable->getValue();
197   if (Value)
198     return *Value;
199 
200   return make_error<UndefVarError>(getExpressionStr());
201 }
202 
203 Expected<APInt> BinaryOperation::eval() const {
204   Expected<APInt> MaybeLeftOp = LeftOperand->eval();
205   Expected<APInt> MaybeRightOp = RightOperand->eval();
206 
207   // Bubble up any error (e.g. undefined variables) in the recursive
208   // evaluation.
209   if (!MaybeLeftOp || !MaybeRightOp) {
210     Error Err = Error::success();
211     if (!MaybeLeftOp)
212       Err = joinErrors(std::move(Err), MaybeLeftOp.takeError());
213     if (!MaybeRightOp)
214       Err = joinErrors(std::move(Err), MaybeRightOp.takeError());
215     return std::move(Err);
216   }
217 
218   APInt LeftOp = *MaybeLeftOp;
219   APInt RightOp = *MaybeRightOp;
220   bool Overflow;
221   // Ensure both operands have the same bitwidth.
222   unsigned LeftBitWidth = LeftOp.getBitWidth();
223   unsigned RightBitWidth = RightOp.getBitWidth();
224   unsigned NewBitWidth = std::max(LeftBitWidth, RightBitWidth);
225   LeftOp = LeftOp.sext(NewBitWidth);
226   RightOp = RightOp.sext(NewBitWidth);
227   do {
228     Expected<APInt> MaybeResult = EvalBinop(LeftOp, RightOp, Overflow);
229     if (!MaybeResult)
230       return MaybeResult.takeError();
231 
232     if (!Overflow)
233       return MaybeResult;
234 
235     NewBitWidth = nextAPIntBitWidth(NewBitWidth);
236     LeftOp = LeftOp.sext(NewBitWidth);
237     RightOp = RightOp.sext(NewBitWidth);
238   } while (true);
239 }
240 
241 Expected<ExpressionFormat>
242 BinaryOperation::getImplicitFormat(const SourceMgr &SM) const {
243   Expected<ExpressionFormat> LeftFormat = LeftOperand->getImplicitFormat(SM);
244   Expected<ExpressionFormat> RightFormat = RightOperand->getImplicitFormat(SM);
245   if (!LeftFormat || !RightFormat) {
246     Error Err = Error::success();
247     if (!LeftFormat)
248       Err = joinErrors(std::move(Err), LeftFormat.takeError());
249     if (!RightFormat)
250       Err = joinErrors(std::move(Err), RightFormat.takeError());
251     return std::move(Err);
252   }
253 
254   if (*LeftFormat != ExpressionFormat::Kind::NoFormat &&
255       *RightFormat != ExpressionFormat::Kind::NoFormat &&
256       *LeftFormat != *RightFormat)
257     return ErrorDiagnostic::get(
258         SM, getExpressionStr(),
259         "implicit format conflict between '" + LeftOperand->getExpressionStr() +
260             "' (" + LeftFormat->toString() + ") and '" +
261             RightOperand->getExpressionStr() + "' (" + RightFormat->toString() +
262             "), need an explicit format specifier");
263 
264   return *LeftFormat != ExpressionFormat::Kind::NoFormat ? *LeftFormat
265                                                          : *RightFormat;
266 }
267 
268 Expected<std::string> NumericSubstitution::getResult() const {
269   assert(ExpressionPointer->getAST() != nullptr &&
270          "Substituting empty expression");
271   Expected<APInt> EvaluatedValue = ExpressionPointer->getAST()->eval();
272   if (!EvaluatedValue)
273     return EvaluatedValue.takeError();
274   ExpressionFormat Format = ExpressionPointer->getFormat();
275   return Format.getMatchingString(*EvaluatedValue);
276 }
277 
278 Expected<std::string> StringSubstitution::getResult() const {
279   // Look up the value and escape it so that we can put it into the regex.
280   Expected<StringRef> VarVal = Context->getPatternVarValue(FromStr);
281   if (!VarVal)
282     return VarVal.takeError();
283   return Regex::escape(*VarVal);
284 }
285 
286 bool Pattern::isValidVarNameStart(char C) { return C == '_' || isAlpha(C); }
287 
288 Expected<Pattern::VariableProperties>
289 Pattern::parseVariable(StringRef &Str, const SourceMgr &SM) {
290   if (Str.empty())
291     return ErrorDiagnostic::get(SM, Str, "empty variable name");
292 
293   size_t I = 0;
294   bool IsPseudo = Str[0] == '@';
295 
296   // Global vars start with '$'.
297   if (Str[0] == '$' || IsPseudo)
298     ++I;
299 
300   if (!isValidVarNameStart(Str[I++]))
301     return ErrorDiagnostic::get(SM, Str, "invalid variable name");
302 
303   for (size_t E = Str.size(); I != E; ++I)
304     // Variable names are composed of alphanumeric characters and underscores.
305     if (Str[I] != '_' && !isAlnum(Str[I]))
306       break;
307 
308   StringRef Name = Str.take_front(I);
309   Str = Str.substr(I);
310   return VariableProperties {Name, IsPseudo};
311 }
312 
313 // StringRef holding all characters considered as horizontal whitespaces by
314 // FileCheck input canonicalization.
315 constexpr StringLiteral SpaceChars = " \t";
316 
317 // Parsing helper function that strips the first character in S and returns it.
318 static char popFront(StringRef &S) {
319   char C = S.front();
320   S = S.drop_front();
321   return C;
322 }
323 
324 char OverflowError::ID = 0;
325 char UndefVarError::ID = 0;
326 char ErrorDiagnostic::ID = 0;
327 char NotFoundError::ID = 0;
328 char ErrorReported::ID = 0;
329 
330 Expected<NumericVariable *> Pattern::parseNumericVariableDefinition(
331     StringRef &Expr, FileCheckPatternContext *Context,
332     std::optional<size_t> LineNumber, ExpressionFormat ImplicitFormat,
333     const SourceMgr &SM) {
334   Expected<VariableProperties> ParseVarResult = parseVariable(Expr, SM);
335   if (!ParseVarResult)
336     return ParseVarResult.takeError();
337   StringRef Name = ParseVarResult->Name;
338 
339   if (ParseVarResult->IsPseudo)
340     return ErrorDiagnostic::get(
341         SM, Name, "definition of pseudo numeric variable unsupported");
342 
343   // Detect collisions between string and numeric variables when the latter
344   // is created later than the former.
345   if (Context->DefinedVariableTable.contains(Name))
346     return ErrorDiagnostic::get(
347         SM, Name, "string variable with name '" + Name + "' already exists");
348 
349   Expr = Expr.ltrim(SpaceChars);
350   if (!Expr.empty())
351     return ErrorDiagnostic::get(
352         SM, Expr, "unexpected characters after numeric variable name");
353 
354   NumericVariable *DefinedNumericVariable;
355   auto VarTableIter = Context->GlobalNumericVariableTable.find(Name);
356   if (VarTableIter != Context->GlobalNumericVariableTable.end()) {
357     DefinedNumericVariable = VarTableIter->second;
358     if (DefinedNumericVariable->getImplicitFormat() != ImplicitFormat)
359       return ErrorDiagnostic::get(
360           SM, Expr, "format different from previous variable definition");
361   } else
362     DefinedNumericVariable =
363         Context->makeNumericVariable(Name, ImplicitFormat, LineNumber);
364 
365   return DefinedNumericVariable;
366 }
367 
368 Expected<std::unique_ptr<NumericVariableUse>> Pattern::parseNumericVariableUse(
369     StringRef Name, bool IsPseudo, std::optional<size_t> LineNumber,
370     FileCheckPatternContext *Context, const SourceMgr &SM) {
371   if (IsPseudo && !Name.equals("@LINE"))
372     return ErrorDiagnostic::get(
373         SM, Name, "invalid pseudo numeric variable '" + Name + "'");
374 
375   // Numeric variable definitions and uses are parsed in the order in which
376   // they appear in the CHECK patterns. For each definition, the pointer to the
377   // class instance of the corresponding numeric variable definition is stored
378   // in GlobalNumericVariableTable in parsePattern. Therefore, if the pointer
379   // we get below is null, it means no such variable was defined before. When
380   // that happens, we create a dummy variable so that parsing can continue. All
381   // uses of undefined variables, whether string or numeric, are then diagnosed
382   // in printNoMatch() after failing to match.
383   auto VarTableIter = Context->GlobalNumericVariableTable.find(Name);
384   NumericVariable *NumericVariable;
385   if (VarTableIter != Context->GlobalNumericVariableTable.end())
386     NumericVariable = VarTableIter->second;
387   else {
388     NumericVariable = Context->makeNumericVariable(
389         Name, ExpressionFormat(ExpressionFormat::Kind::Unsigned));
390     Context->GlobalNumericVariableTable[Name] = NumericVariable;
391   }
392 
393   std::optional<size_t> DefLineNumber = NumericVariable->getDefLineNumber();
394   if (DefLineNumber && LineNumber && *DefLineNumber == *LineNumber)
395     return ErrorDiagnostic::get(
396         SM, Name,
397         "numeric variable '" + Name +
398             "' defined earlier in the same CHECK directive");
399 
400   return std::make_unique<NumericVariableUse>(Name, NumericVariable);
401 }
402 
403 Expected<std::unique_ptr<ExpressionAST>> Pattern::parseNumericOperand(
404     StringRef &Expr, AllowedOperand AO, bool MaybeInvalidConstraint,
405     std::optional<size_t> LineNumber, FileCheckPatternContext *Context,
406     const SourceMgr &SM) {
407   if (Expr.startswith("(")) {
408     if (AO != AllowedOperand::Any)
409       return ErrorDiagnostic::get(
410           SM, Expr, "parenthesized expression not permitted here");
411     return parseParenExpr(Expr, LineNumber, Context, SM);
412   }
413 
414   if (AO == AllowedOperand::LineVar || AO == AllowedOperand::Any) {
415     // Try to parse as a numeric variable use.
416     Expected<Pattern::VariableProperties> ParseVarResult =
417         parseVariable(Expr, SM);
418     if (ParseVarResult) {
419       // Try to parse a function call.
420       if (Expr.ltrim(SpaceChars).startswith("(")) {
421         if (AO != AllowedOperand::Any)
422           return ErrorDiagnostic::get(SM, ParseVarResult->Name,
423                                       "unexpected function call");
424 
425         return parseCallExpr(Expr, ParseVarResult->Name, LineNumber, Context,
426                              SM);
427       }
428 
429       return parseNumericVariableUse(ParseVarResult->Name,
430                                      ParseVarResult->IsPseudo, LineNumber,
431                                      Context, SM);
432     }
433 
434     if (AO == AllowedOperand::LineVar)
435       return ParseVarResult.takeError();
436     // Ignore the error and retry parsing as a literal.
437     consumeError(ParseVarResult.takeError());
438   }
439 
440   // Otherwise, parse it as a literal.
441   APInt LiteralValue;
442   StringRef SaveExpr = Expr;
443   bool Negative = Expr.consume_front("-");
444   if (!Expr.consumeInteger((AO == AllowedOperand::LegacyLiteral) ? 10 : 0,
445                            LiteralValue)) {
446     LiteralValue = toSigned(LiteralValue, Negative);
447     return std::make_unique<ExpressionLiteral>(SaveExpr.drop_back(Expr.size()),
448                                                LiteralValue);
449   }
450   return ErrorDiagnostic::get(
451       SM, SaveExpr,
452       Twine("invalid ") +
453           (MaybeInvalidConstraint ? "matching constraint or " : "") +
454           "operand format");
455 }
456 
457 Expected<std::unique_ptr<ExpressionAST>>
458 Pattern::parseParenExpr(StringRef &Expr, std::optional<size_t> LineNumber,
459                         FileCheckPatternContext *Context, const SourceMgr &SM) {
460   Expr = Expr.ltrim(SpaceChars);
461   assert(Expr.startswith("("));
462 
463   // Parse right operand.
464   Expr.consume_front("(");
465   Expr = Expr.ltrim(SpaceChars);
466   if (Expr.empty())
467     return ErrorDiagnostic::get(SM, Expr, "missing operand in expression");
468 
469   // Note: parseNumericOperand handles nested opening parentheses.
470   Expected<std::unique_ptr<ExpressionAST>> SubExprResult = parseNumericOperand(
471       Expr, AllowedOperand::Any, /*MaybeInvalidConstraint=*/false, LineNumber,
472       Context, SM);
473   Expr = Expr.ltrim(SpaceChars);
474   while (SubExprResult && !Expr.empty() && !Expr.startswith(")")) {
475     StringRef OrigExpr = Expr;
476     SubExprResult = parseBinop(OrigExpr, Expr, std::move(*SubExprResult), false,
477                                LineNumber, Context, SM);
478     Expr = Expr.ltrim(SpaceChars);
479   }
480   if (!SubExprResult)
481     return SubExprResult;
482 
483   if (!Expr.consume_front(")")) {
484     return ErrorDiagnostic::get(SM, Expr,
485                                 "missing ')' at end of nested expression");
486   }
487   return SubExprResult;
488 }
489 
490 Expected<std::unique_ptr<ExpressionAST>>
491 Pattern::parseBinop(StringRef Expr, StringRef &RemainingExpr,
492                     std::unique_ptr<ExpressionAST> LeftOp,
493                     bool IsLegacyLineExpr, std::optional<size_t> LineNumber,
494                     FileCheckPatternContext *Context, const SourceMgr &SM) {
495   RemainingExpr = RemainingExpr.ltrim(SpaceChars);
496   if (RemainingExpr.empty())
497     return std::move(LeftOp);
498 
499   // Check if this is a supported operation and select a function to perform
500   // it.
501   SMLoc OpLoc = SMLoc::getFromPointer(RemainingExpr.data());
502   char Operator = popFront(RemainingExpr);
503   binop_eval_t EvalBinop;
504   switch (Operator) {
505   case '+':
506     EvalBinop = exprAdd;
507     break;
508   case '-':
509     EvalBinop = exprSub;
510     break;
511   default:
512     return ErrorDiagnostic::get(
513         SM, OpLoc, Twine("unsupported operation '") + Twine(Operator) + "'");
514   }
515 
516   // Parse right operand.
517   RemainingExpr = RemainingExpr.ltrim(SpaceChars);
518   if (RemainingExpr.empty())
519     return ErrorDiagnostic::get(SM, RemainingExpr,
520                                 "missing operand in expression");
521   // The second operand in a legacy @LINE expression is always a literal.
522   AllowedOperand AO =
523       IsLegacyLineExpr ? AllowedOperand::LegacyLiteral : AllowedOperand::Any;
524   Expected<std::unique_ptr<ExpressionAST>> RightOpResult =
525       parseNumericOperand(RemainingExpr, AO, /*MaybeInvalidConstraint=*/false,
526                           LineNumber, Context, SM);
527   if (!RightOpResult)
528     return RightOpResult;
529 
530   Expr = Expr.drop_back(RemainingExpr.size());
531   return std::make_unique<BinaryOperation>(Expr, EvalBinop, std::move(LeftOp),
532                                            std::move(*RightOpResult));
533 }
534 
535 Expected<std::unique_ptr<ExpressionAST>>
536 Pattern::parseCallExpr(StringRef &Expr, StringRef FuncName,
537                        std::optional<size_t> LineNumber,
538                        FileCheckPatternContext *Context, const SourceMgr &SM) {
539   Expr = Expr.ltrim(SpaceChars);
540   assert(Expr.startswith("("));
541 
542   auto OptFunc = StringSwitch<binop_eval_t>(FuncName)
543                      .Case("add", exprAdd)
544                      .Case("div", exprDiv)
545                      .Case("max", exprMax)
546                      .Case("min", exprMin)
547                      .Case("mul", exprMul)
548                      .Case("sub", exprSub)
549                      .Default(nullptr);
550 
551   if (!OptFunc)
552     return ErrorDiagnostic::get(
553         SM, FuncName, Twine("call to undefined function '") + FuncName + "'");
554 
555   Expr.consume_front("(");
556   Expr = Expr.ltrim(SpaceChars);
557 
558   // Parse call arguments, which are comma separated.
559   SmallVector<std::unique_ptr<ExpressionAST>, 4> Args;
560   while (!Expr.empty() && !Expr.startswith(")")) {
561     if (Expr.startswith(","))
562       return ErrorDiagnostic::get(SM, Expr, "missing argument");
563 
564     // Parse the argument, which is an arbitary expression.
565     StringRef OuterBinOpExpr = Expr;
566     Expected<std::unique_ptr<ExpressionAST>> Arg = parseNumericOperand(
567         Expr, AllowedOperand::Any, /*MaybeInvalidConstraint=*/false, LineNumber,
568         Context, SM);
569     while (Arg && !Expr.empty()) {
570       Expr = Expr.ltrim(SpaceChars);
571       // Have we reached an argument terminator?
572       if (Expr.startswith(",") || Expr.startswith(")"))
573         break;
574 
575       // Arg = Arg <op> <expr>
576       Arg = parseBinop(OuterBinOpExpr, Expr, std::move(*Arg), false, LineNumber,
577                        Context, SM);
578     }
579 
580     // Prefer an expression error over a generic invalid argument message.
581     if (!Arg)
582       return Arg.takeError();
583     Args.push_back(std::move(*Arg));
584 
585     // Have we parsed all available arguments?
586     Expr = Expr.ltrim(SpaceChars);
587     if (!Expr.consume_front(","))
588       break;
589 
590     Expr = Expr.ltrim(SpaceChars);
591     if (Expr.startswith(")"))
592       return ErrorDiagnostic::get(SM, Expr, "missing argument");
593   }
594 
595   if (!Expr.consume_front(")"))
596     return ErrorDiagnostic::get(SM, Expr,
597                                 "missing ')' at end of call expression");
598 
599   const unsigned NumArgs = Args.size();
600   if (NumArgs == 2)
601     return std::make_unique<BinaryOperation>(Expr, *OptFunc, std::move(Args[0]),
602                                              std::move(Args[1]));
603 
604   // TODO: Support more than binop_eval_t.
605   return ErrorDiagnostic::get(SM, FuncName,
606                               Twine("function '") + FuncName +
607                                   Twine("' takes 2 arguments but ") +
608                                   Twine(NumArgs) + " given");
609 }
610 
611 Expected<std::unique_ptr<Expression>> Pattern::parseNumericSubstitutionBlock(
612     StringRef Expr, std::optional<NumericVariable *> &DefinedNumericVariable,
613     bool IsLegacyLineExpr, std::optional<size_t> LineNumber,
614     FileCheckPatternContext *Context, const SourceMgr &SM) {
615   std::unique_ptr<ExpressionAST> ExpressionASTPointer = nullptr;
616   StringRef DefExpr = StringRef();
617   DefinedNumericVariable = std::nullopt;
618   ExpressionFormat ExplicitFormat = ExpressionFormat();
619   unsigned Precision = 0;
620 
621   // Parse format specifier (NOTE: ',' is also an argument seperator).
622   size_t FormatSpecEnd = Expr.find(',');
623   size_t FunctionStart = Expr.find('(');
624   if (FormatSpecEnd != StringRef::npos && FormatSpecEnd < FunctionStart) {
625     StringRef FormatExpr = Expr.take_front(FormatSpecEnd);
626     Expr = Expr.drop_front(FormatSpecEnd + 1);
627     FormatExpr = FormatExpr.trim(SpaceChars);
628     if (!FormatExpr.consume_front("%"))
629       return ErrorDiagnostic::get(
630           SM, FormatExpr,
631           "invalid matching format specification in expression");
632 
633     // Parse alternate form flag.
634     SMLoc AlternateFormFlagLoc = SMLoc::getFromPointer(FormatExpr.data());
635     bool AlternateForm = FormatExpr.consume_front("#");
636 
637     // Parse precision.
638     if (FormatExpr.consume_front(".")) {
639       if (FormatExpr.consumeInteger(10, Precision))
640         return ErrorDiagnostic::get(SM, FormatExpr,
641                                     "invalid precision in format specifier");
642     }
643 
644     if (!FormatExpr.empty()) {
645       // Check for unknown matching format specifier and set matching format in
646       // class instance representing this expression.
647       SMLoc FmtLoc = SMLoc::getFromPointer(FormatExpr.data());
648       switch (popFront(FormatExpr)) {
649       case 'u':
650         ExplicitFormat =
651             ExpressionFormat(ExpressionFormat::Kind::Unsigned, Precision);
652         break;
653       case 'd':
654         ExplicitFormat =
655             ExpressionFormat(ExpressionFormat::Kind::Signed, Precision);
656         break;
657       case 'x':
658         ExplicitFormat = ExpressionFormat(ExpressionFormat::Kind::HexLower,
659                                           Precision, AlternateForm);
660         break;
661       case 'X':
662         ExplicitFormat = ExpressionFormat(ExpressionFormat::Kind::HexUpper,
663                                           Precision, AlternateForm);
664         break;
665       default:
666         return ErrorDiagnostic::get(SM, FmtLoc,
667                                     "invalid format specifier in expression");
668       }
669     }
670 
671     if (AlternateForm && ExplicitFormat != ExpressionFormat::Kind::HexLower &&
672         ExplicitFormat != ExpressionFormat::Kind::HexUpper)
673       return ErrorDiagnostic::get(
674           SM, AlternateFormFlagLoc,
675           "alternate form only supported for hex values");
676 
677     FormatExpr = FormatExpr.ltrim(SpaceChars);
678     if (!FormatExpr.empty())
679       return ErrorDiagnostic::get(
680           SM, FormatExpr,
681           "invalid matching format specification in expression");
682   }
683 
684   // Save variable definition expression if any.
685   size_t DefEnd = Expr.find(':');
686   if (DefEnd != StringRef::npos) {
687     DefExpr = Expr.substr(0, DefEnd);
688     Expr = Expr.substr(DefEnd + 1);
689   }
690 
691   // Parse matching constraint.
692   Expr = Expr.ltrim(SpaceChars);
693   bool HasParsedValidConstraint = false;
694   if (Expr.consume_front("=="))
695     HasParsedValidConstraint = true;
696 
697   // Parse the expression itself.
698   Expr = Expr.ltrim(SpaceChars);
699   if (Expr.empty()) {
700     if (HasParsedValidConstraint)
701       return ErrorDiagnostic::get(
702           SM, Expr, "empty numeric expression should not have a constraint");
703   } else {
704     Expr = Expr.rtrim(SpaceChars);
705     StringRef OuterBinOpExpr = Expr;
706     // The first operand in a legacy @LINE expression is always the @LINE
707     // pseudo variable.
708     AllowedOperand AO =
709         IsLegacyLineExpr ? AllowedOperand::LineVar : AllowedOperand::Any;
710     Expected<std::unique_ptr<ExpressionAST>> ParseResult = parseNumericOperand(
711         Expr, AO, !HasParsedValidConstraint, LineNumber, Context, SM);
712     while (ParseResult && !Expr.empty()) {
713       ParseResult = parseBinop(OuterBinOpExpr, Expr, std::move(*ParseResult),
714                                IsLegacyLineExpr, LineNumber, Context, SM);
715       // Legacy @LINE expressions only allow 2 operands.
716       if (ParseResult && IsLegacyLineExpr && !Expr.empty())
717         return ErrorDiagnostic::get(
718             SM, Expr,
719             "unexpected characters at end of expression '" + Expr + "'");
720     }
721     if (!ParseResult)
722       return ParseResult.takeError();
723     ExpressionASTPointer = std::move(*ParseResult);
724   }
725 
726   // Select format of the expression, i.e. (i) its explicit format, if any,
727   // otherwise (ii) its implicit format, if any, otherwise (iii) the default
728   // format (unsigned). Error out in case of conflicting implicit format
729   // without explicit format.
730   ExpressionFormat Format;
731   if (ExplicitFormat)
732     Format = ExplicitFormat;
733   else if (ExpressionASTPointer) {
734     Expected<ExpressionFormat> ImplicitFormat =
735         ExpressionASTPointer->getImplicitFormat(SM);
736     if (!ImplicitFormat)
737       return ImplicitFormat.takeError();
738     Format = *ImplicitFormat;
739   }
740   if (!Format)
741     Format = ExpressionFormat(ExpressionFormat::Kind::Unsigned, Precision);
742 
743   std::unique_ptr<Expression> ExpressionPointer =
744       std::make_unique<Expression>(std::move(ExpressionASTPointer), Format);
745 
746   // Parse the numeric variable definition.
747   if (DefEnd != StringRef::npos) {
748     DefExpr = DefExpr.ltrim(SpaceChars);
749     Expected<NumericVariable *> ParseResult = parseNumericVariableDefinition(
750         DefExpr, Context, LineNumber, ExpressionPointer->getFormat(), SM);
751 
752     if (!ParseResult)
753       return ParseResult.takeError();
754     DefinedNumericVariable = *ParseResult;
755   }
756 
757   return std::move(ExpressionPointer);
758 }
759 
760 bool Pattern::parsePattern(StringRef PatternStr, StringRef Prefix,
761                            SourceMgr &SM, const FileCheckRequest &Req) {
762   bool MatchFullLinesHere = Req.MatchFullLines && CheckTy != Check::CheckNot;
763   IgnoreCase = Req.IgnoreCase;
764 
765   PatternLoc = SMLoc::getFromPointer(PatternStr.data());
766 
767   if (!(Req.NoCanonicalizeWhiteSpace && Req.MatchFullLines))
768     // Ignore trailing whitespace.
769     while (!PatternStr.empty() &&
770            (PatternStr.back() == ' ' || PatternStr.back() == '\t'))
771       PatternStr = PatternStr.substr(0, PatternStr.size() - 1);
772 
773   // Check that there is something on the line.
774   if (PatternStr.empty() && CheckTy != Check::CheckEmpty) {
775     SM.PrintMessage(PatternLoc, SourceMgr::DK_Error,
776                     "found empty check string with prefix '" + Prefix + ":'");
777     return true;
778   }
779 
780   if (!PatternStr.empty() && CheckTy == Check::CheckEmpty) {
781     SM.PrintMessage(
782         PatternLoc, SourceMgr::DK_Error,
783         "found non-empty check string for empty check with prefix '" + Prefix +
784             ":'");
785     return true;
786   }
787 
788   if (CheckTy == Check::CheckEmpty) {
789     RegExStr = "(\n$)";
790     return false;
791   }
792 
793   // If literal check, set fixed string.
794   if (CheckTy.isLiteralMatch()) {
795     FixedStr = PatternStr;
796     return false;
797   }
798 
799   // Check to see if this is a fixed string, or if it has regex pieces.
800   if (!MatchFullLinesHere &&
801       (PatternStr.size() < 2 ||
802        (!PatternStr.contains("{{") && !PatternStr.contains("[[")))) {
803     FixedStr = PatternStr;
804     return false;
805   }
806 
807   if (MatchFullLinesHere) {
808     RegExStr += '^';
809     if (!Req.NoCanonicalizeWhiteSpace)
810       RegExStr += " *";
811   }
812 
813   // Paren value #0 is for the fully matched string.  Any new parenthesized
814   // values add from there.
815   unsigned CurParen = 1;
816 
817   // Otherwise, there is at least one regex piece.  Build up the regex pattern
818   // by escaping scary characters in fixed strings, building up one big regex.
819   while (!PatternStr.empty()) {
820     // RegEx matches.
821     if (PatternStr.startswith("{{")) {
822       // This is the start of a regex match.  Scan for the }}.
823       size_t End = PatternStr.find("}}");
824       if (End == StringRef::npos) {
825         SM.PrintMessage(SMLoc::getFromPointer(PatternStr.data()),
826                         SourceMgr::DK_Error,
827                         "found start of regex string with no end '}}'");
828         return true;
829       }
830 
831       // Enclose {{}} patterns in parens just like [[]] even though we're not
832       // capturing the result for any purpose.  This is required in case the
833       // expression contains an alternation like: CHECK:  abc{{x|z}}def.  We
834       // want this to turn into: "abc(x|z)def" not "abcx|zdef".
835       RegExStr += '(';
836       ++CurParen;
837 
838       if (AddRegExToRegEx(PatternStr.substr(2, End - 2), CurParen, SM))
839         return true;
840       RegExStr += ')';
841 
842       PatternStr = PatternStr.substr(End + 2);
843       continue;
844     }
845 
846     // String and numeric substitution blocks. Pattern substitution blocks come
847     // in two forms: [[foo:.*]] and [[foo]]. The former matches .* (or some
848     // other regex) and assigns it to the string variable 'foo'. The latter
849     // substitutes foo's value. Numeric substitution blocks recognize the same
850     // form as string ones, but start with a '#' sign after the double
851     // brackets. They also accept a combined form which sets a numeric variable
852     // to the evaluation of an expression. Both string and numeric variable
853     // names must satisfy the regular expression "[a-zA-Z_][0-9a-zA-Z_]*" to be
854     // valid, as this helps catch some common errors. If there are extra '['s
855     // before the "[[", treat them literally.
856     if (PatternStr.startswith("[[") && !PatternStr.startswith("[[[")) {
857       StringRef UnparsedPatternStr = PatternStr.substr(2);
858       // Find the closing bracket pair ending the match.  End is going to be an
859       // offset relative to the beginning of the match string.
860       size_t End = FindRegexVarEnd(UnparsedPatternStr, SM);
861       StringRef MatchStr = UnparsedPatternStr.substr(0, End);
862       bool IsNumBlock = MatchStr.consume_front("#");
863 
864       if (End == StringRef::npos) {
865         SM.PrintMessage(SMLoc::getFromPointer(PatternStr.data()),
866                         SourceMgr::DK_Error,
867                         "Invalid substitution block, no ]] found");
868         return true;
869       }
870       // Strip the substitution block we are parsing. End points to the start
871       // of the "]]" closing the expression so account for it in computing the
872       // index of the first unparsed character.
873       PatternStr = UnparsedPatternStr.substr(End + 2);
874 
875       bool IsDefinition = false;
876       bool SubstNeeded = false;
877       // Whether the substitution block is a legacy use of @LINE with string
878       // substitution block syntax.
879       bool IsLegacyLineExpr = false;
880       StringRef DefName;
881       StringRef SubstStr;
882       StringRef MatchRegexp;
883       std::string WildcardRegexp;
884       size_t SubstInsertIdx = RegExStr.size();
885 
886       // Parse string variable or legacy @LINE expression.
887       if (!IsNumBlock) {
888         size_t VarEndIdx = MatchStr.find(':');
889         size_t SpacePos = MatchStr.substr(0, VarEndIdx).find_first_of(" \t");
890         if (SpacePos != StringRef::npos) {
891           SM.PrintMessage(SMLoc::getFromPointer(MatchStr.data() + SpacePos),
892                           SourceMgr::DK_Error, "unexpected whitespace");
893           return true;
894         }
895 
896         // Get the name (e.g. "foo") and verify it is well formed.
897         StringRef OrigMatchStr = MatchStr;
898         Expected<Pattern::VariableProperties> ParseVarResult =
899             parseVariable(MatchStr, SM);
900         if (!ParseVarResult) {
901           logAllUnhandledErrors(ParseVarResult.takeError(), errs());
902           return true;
903         }
904         StringRef Name = ParseVarResult->Name;
905         bool IsPseudo = ParseVarResult->IsPseudo;
906 
907         IsDefinition = (VarEndIdx != StringRef::npos);
908         SubstNeeded = !IsDefinition;
909         if (IsDefinition) {
910           if ((IsPseudo || !MatchStr.consume_front(":"))) {
911             SM.PrintMessage(SMLoc::getFromPointer(Name.data()),
912                             SourceMgr::DK_Error,
913                             "invalid name in string variable definition");
914             return true;
915           }
916 
917           // Detect collisions between string and numeric variables when the
918           // former is created later than the latter.
919           if (Context->GlobalNumericVariableTable.contains(Name)) {
920             SM.PrintMessage(
921                 SMLoc::getFromPointer(Name.data()), SourceMgr::DK_Error,
922                 "numeric variable with name '" + Name + "' already exists");
923             return true;
924           }
925           DefName = Name;
926           MatchRegexp = MatchStr;
927         } else {
928           if (IsPseudo) {
929             MatchStr = OrigMatchStr;
930             IsLegacyLineExpr = IsNumBlock = true;
931           } else {
932             if (!MatchStr.empty()) {
933               SM.PrintMessage(SMLoc::getFromPointer(Name.data()),
934                               SourceMgr::DK_Error,
935                               "invalid name in string variable use");
936               return true;
937             }
938             SubstStr = Name;
939           }
940         }
941       }
942 
943       // Parse numeric substitution block.
944       std::unique_ptr<Expression> ExpressionPointer;
945       std::optional<NumericVariable *> DefinedNumericVariable;
946       if (IsNumBlock) {
947         Expected<std::unique_ptr<Expression>> ParseResult =
948             parseNumericSubstitutionBlock(MatchStr, DefinedNumericVariable,
949                                           IsLegacyLineExpr, LineNumber, Context,
950                                           SM);
951         if (!ParseResult) {
952           logAllUnhandledErrors(ParseResult.takeError(), errs());
953           return true;
954         }
955         ExpressionPointer = std::move(*ParseResult);
956         SubstNeeded = ExpressionPointer->getAST() != nullptr;
957         if (DefinedNumericVariable) {
958           IsDefinition = true;
959           DefName = (*DefinedNumericVariable)->getName();
960         }
961         if (SubstNeeded)
962           SubstStr = MatchStr;
963         else {
964           ExpressionFormat Format = ExpressionPointer->getFormat();
965           WildcardRegexp = cantFail(Format.getWildcardRegex());
966           MatchRegexp = WildcardRegexp;
967         }
968       }
969 
970       // Handle variable definition: [[<def>:(...)]] and [[#(...)<def>:(...)]].
971       if (IsDefinition) {
972         RegExStr += '(';
973         ++SubstInsertIdx;
974 
975         if (IsNumBlock) {
976           NumericVariableMatch NumericVariableDefinition = {
977               *DefinedNumericVariable, CurParen};
978           NumericVariableDefs[DefName] = NumericVariableDefinition;
979           // This store is done here rather than in match() to allow
980           // parseNumericVariableUse() to get the pointer to the class instance
981           // of the right variable definition corresponding to a given numeric
982           // variable use.
983           Context->GlobalNumericVariableTable[DefName] =
984               *DefinedNumericVariable;
985         } else {
986           VariableDefs[DefName] = CurParen;
987           // Mark string variable as defined to detect collisions between
988           // string and numeric variables in parseNumericVariableUse() and
989           // defineCmdlineVariables() when the latter is created later than the
990           // former. We cannot reuse GlobalVariableTable for this by populating
991           // it with an empty string since we would then lose the ability to
992           // detect the use of an undefined variable in match().
993           Context->DefinedVariableTable[DefName] = true;
994         }
995 
996         ++CurParen;
997       }
998 
999       if (!MatchRegexp.empty() && AddRegExToRegEx(MatchRegexp, CurParen, SM))
1000         return true;
1001 
1002       if (IsDefinition)
1003         RegExStr += ')';
1004 
1005       // Handle substitutions: [[foo]] and [[#<foo expr>]].
1006       if (SubstNeeded) {
1007         // Handle substitution of string variables that were defined earlier on
1008         // the same line by emitting a backreference. Expressions do not
1009         // support substituting a numeric variable defined on the same line.
1010         if (!IsNumBlock && VariableDefs.find(SubstStr) != VariableDefs.end()) {
1011           unsigned CaptureParenGroup = VariableDefs[SubstStr];
1012           if (CaptureParenGroup < 1 || CaptureParenGroup > 9) {
1013             SM.PrintMessage(SMLoc::getFromPointer(SubstStr.data()),
1014                             SourceMgr::DK_Error,
1015                             "Can't back-reference more than 9 variables");
1016             return true;
1017           }
1018           AddBackrefToRegEx(CaptureParenGroup);
1019         } else {
1020           // Handle substitution of string variables ([[<var>]]) defined in
1021           // previous CHECK patterns, and substitution of expressions.
1022           Substitution *Substitution =
1023               IsNumBlock
1024                   ? Context->makeNumericSubstitution(
1025                         SubstStr, std::move(ExpressionPointer), SubstInsertIdx)
1026                   : Context->makeStringSubstitution(SubstStr, SubstInsertIdx);
1027           Substitutions.push_back(Substitution);
1028         }
1029       }
1030 
1031       continue;
1032     }
1033 
1034     // Handle fixed string matches.
1035     // Find the end, which is the start of the next regex.
1036     size_t FixedMatchEnd =
1037         std::min(PatternStr.find("{{", 1), PatternStr.find("[[", 1));
1038     RegExStr += Regex::escape(PatternStr.substr(0, FixedMatchEnd));
1039     PatternStr = PatternStr.substr(FixedMatchEnd);
1040   }
1041 
1042   if (MatchFullLinesHere) {
1043     if (!Req.NoCanonicalizeWhiteSpace)
1044       RegExStr += " *";
1045     RegExStr += '$';
1046   }
1047 
1048   return false;
1049 }
1050 
1051 bool Pattern::AddRegExToRegEx(StringRef RS, unsigned &CurParen, SourceMgr &SM) {
1052   Regex R(RS);
1053   std::string Error;
1054   if (!R.isValid(Error)) {
1055     SM.PrintMessage(SMLoc::getFromPointer(RS.data()), SourceMgr::DK_Error,
1056                     "invalid regex: " + Error);
1057     return true;
1058   }
1059 
1060   RegExStr += RS.str();
1061   CurParen += R.getNumMatches();
1062   return false;
1063 }
1064 
1065 void Pattern::AddBackrefToRegEx(unsigned BackrefNum) {
1066   assert(BackrefNum >= 1 && BackrefNum <= 9 && "Invalid backref number");
1067   std::string Backref = std::string("\\") + std::string(1, '0' + BackrefNum);
1068   RegExStr += Backref;
1069 }
1070 
1071 Pattern::MatchResult Pattern::match(StringRef Buffer,
1072                                     const SourceMgr &SM) const {
1073   // If this is the EOF pattern, match it immediately.
1074   if (CheckTy == Check::CheckEOF)
1075     return MatchResult(Buffer.size(), 0, Error::success());
1076 
1077   // If this is a fixed string pattern, just match it now.
1078   if (!FixedStr.empty()) {
1079     size_t Pos =
1080         IgnoreCase ? Buffer.find_insensitive(FixedStr) : Buffer.find(FixedStr);
1081     if (Pos == StringRef::npos)
1082       return make_error<NotFoundError>();
1083     return MatchResult(Pos, /*MatchLen=*/FixedStr.size(), Error::success());
1084   }
1085 
1086   // Regex match.
1087 
1088   // If there are substitutions, we need to create a temporary string with the
1089   // actual value.
1090   StringRef RegExToMatch = RegExStr;
1091   std::string TmpStr;
1092   if (!Substitutions.empty()) {
1093     TmpStr = RegExStr;
1094     if (LineNumber)
1095       Context->LineVariable->setValue(
1096           APInt(sizeof(*LineNumber) * 8, *LineNumber));
1097 
1098     size_t InsertOffset = 0;
1099     // Substitute all string variables and expressions whose values are only
1100     // now known. Use of string variables defined on the same line are handled
1101     // by back-references.
1102     Error Errs = Error::success();
1103     for (const auto &Substitution : Substitutions) {
1104       // Substitute and check for failure (e.g. use of undefined variable).
1105       Expected<std::string> Value = Substitution->getResult();
1106       if (!Value) {
1107         // Convert to an ErrorDiagnostic to get location information. This is
1108         // done here rather than printMatch/printNoMatch since now we know which
1109         // substitution block caused the overflow.
1110         Errs = joinErrors(std::move(Errs),
1111                           handleErrors(
1112                               Value.takeError(),
1113                               [&](const OverflowError &E) {
1114                                 return ErrorDiagnostic::get(
1115                                     SM, Substitution->getFromString(),
1116                                     "unable to substitute variable or "
1117                                     "numeric expression: overflow error");
1118                               },
1119                               [&SM](const UndefVarError &E) {
1120                                 return ErrorDiagnostic::get(SM, E.getVarName(),
1121                                                             E.message());
1122                               }));
1123         continue;
1124       }
1125 
1126       // Plop it into the regex at the adjusted offset.
1127       TmpStr.insert(TmpStr.begin() + Substitution->getIndex() + InsertOffset,
1128                     Value->begin(), Value->end());
1129       InsertOffset += Value->size();
1130     }
1131     if (Errs)
1132       return std::move(Errs);
1133 
1134     // Match the newly constructed regex.
1135     RegExToMatch = TmpStr;
1136   }
1137 
1138   SmallVector<StringRef, 4> MatchInfo;
1139   unsigned int Flags = Regex::Newline;
1140   if (IgnoreCase)
1141     Flags |= Regex::IgnoreCase;
1142   if (!Regex(RegExToMatch, Flags).match(Buffer, &MatchInfo))
1143     return make_error<NotFoundError>();
1144 
1145   // Successful regex match.
1146   assert(!MatchInfo.empty() && "Didn't get any match");
1147   StringRef FullMatch = MatchInfo[0];
1148 
1149   // If this defines any string variables, remember their values.
1150   for (const auto &VariableDef : VariableDefs) {
1151     assert(VariableDef.second < MatchInfo.size() && "Internal paren error");
1152     Context->GlobalVariableTable[VariableDef.first] =
1153         MatchInfo[VariableDef.second];
1154   }
1155 
1156   // Like CHECK-NEXT, CHECK-EMPTY's match range is considered to start after
1157   // the required preceding newline, which is consumed by the pattern in the
1158   // case of CHECK-EMPTY but not CHECK-NEXT.
1159   size_t MatchStartSkip = CheckTy == Check::CheckEmpty;
1160   Match TheMatch;
1161   TheMatch.Pos = FullMatch.data() - Buffer.data() + MatchStartSkip;
1162   TheMatch.Len = FullMatch.size() - MatchStartSkip;
1163 
1164   // If this defines any numeric variables, remember their values.
1165   for (const auto &NumericVariableDef : NumericVariableDefs) {
1166     const NumericVariableMatch &NumericVariableMatch =
1167         NumericVariableDef.getValue();
1168     unsigned CaptureParenGroup = NumericVariableMatch.CaptureParenGroup;
1169     assert(CaptureParenGroup < MatchInfo.size() && "Internal paren error");
1170     NumericVariable *DefinedNumericVariable =
1171         NumericVariableMatch.DefinedNumericVariable;
1172 
1173     StringRef MatchedValue = MatchInfo[CaptureParenGroup];
1174     ExpressionFormat Format = DefinedNumericVariable->getImplicitFormat();
1175     APInt Value = Format.valueFromStringRepr(MatchedValue, SM);
1176     DefinedNumericVariable->setValue(Value, MatchedValue);
1177   }
1178 
1179   return MatchResult(TheMatch, Error::success());
1180 }
1181 
1182 unsigned Pattern::computeMatchDistance(StringRef Buffer) const {
1183   // Just compute the number of matching characters. For regular expressions, we
1184   // just compare against the regex itself and hope for the best.
1185   //
1186   // FIXME: One easy improvement here is have the regex lib generate a single
1187   // example regular expression which matches, and use that as the example
1188   // string.
1189   StringRef ExampleString(FixedStr);
1190   if (ExampleString.empty())
1191     ExampleString = RegExStr;
1192 
1193   // Only compare up to the first line in the buffer, or the string size.
1194   StringRef BufferPrefix = Buffer.substr(0, ExampleString.size());
1195   BufferPrefix = BufferPrefix.split('\n').first;
1196   return BufferPrefix.edit_distance(ExampleString);
1197 }
1198 
1199 void Pattern::printSubstitutions(const SourceMgr &SM, StringRef Buffer,
1200                                  SMRange Range,
1201                                  FileCheckDiag::MatchType MatchTy,
1202                                  std::vector<FileCheckDiag> *Diags) const {
1203   // Print what we know about substitutions.
1204   if (!Substitutions.empty()) {
1205     for (const auto &Substitution : Substitutions) {
1206       SmallString<256> Msg;
1207       raw_svector_ostream OS(Msg);
1208 
1209       Expected<std::string> MatchedValue = Substitution->getResult();
1210       // Substitution failures are handled in printNoMatch().
1211       if (!MatchedValue) {
1212         consumeError(MatchedValue.takeError());
1213         continue;
1214       }
1215 
1216       OS << "with \"";
1217       OS.write_escaped(Substitution->getFromString()) << "\" equal to \"";
1218       OS.write_escaped(*MatchedValue) << "\"";
1219 
1220       // We report only the start of the match/search range to suggest we are
1221       // reporting the substitutions as set at the start of the match/search.
1222       // Indicating a non-zero-length range might instead seem to imply that the
1223       // substitution matches or was captured from exactly that range.
1224       if (Diags)
1225         Diags->emplace_back(SM, CheckTy, getLoc(), MatchTy,
1226                             SMRange(Range.Start, Range.Start), OS.str());
1227       else
1228         SM.PrintMessage(Range.Start, SourceMgr::DK_Note, OS.str());
1229     }
1230   }
1231 }
1232 
1233 void Pattern::printVariableDefs(const SourceMgr &SM,
1234                                 FileCheckDiag::MatchType MatchTy,
1235                                 std::vector<FileCheckDiag> *Diags) const {
1236   if (VariableDefs.empty() && NumericVariableDefs.empty())
1237     return;
1238   // Build list of variable captures.
1239   struct VarCapture {
1240     StringRef Name;
1241     SMRange Range;
1242   };
1243   SmallVector<VarCapture, 2> VarCaptures;
1244   for (const auto &VariableDef : VariableDefs) {
1245     VarCapture VC;
1246     VC.Name = VariableDef.first;
1247     StringRef Value = Context->GlobalVariableTable[VC.Name];
1248     SMLoc Start = SMLoc::getFromPointer(Value.data());
1249     SMLoc End = SMLoc::getFromPointer(Value.data() + Value.size());
1250     VC.Range = SMRange(Start, End);
1251     VarCaptures.push_back(VC);
1252   }
1253   for (const auto &VariableDef : NumericVariableDefs) {
1254     VarCapture VC;
1255     VC.Name = VariableDef.getKey();
1256     std::optional<StringRef> StrValue =
1257         VariableDef.getValue().DefinedNumericVariable->getStringValue();
1258     if (!StrValue)
1259       continue;
1260     SMLoc Start = SMLoc::getFromPointer(StrValue->data());
1261     SMLoc End = SMLoc::getFromPointer(StrValue->data() + StrValue->size());
1262     VC.Range = SMRange(Start, End);
1263     VarCaptures.push_back(VC);
1264   }
1265   // Sort variable captures by the order in which they matched the input.
1266   // Ranges shouldn't be overlapping, so we can just compare the start.
1267   llvm::sort(VarCaptures, [](const VarCapture &A, const VarCapture &B) {
1268     if (&A == &B)
1269       return false;
1270     assert(A.Range.Start != B.Range.Start &&
1271            "unexpected overlapping variable captures");
1272     return A.Range.Start.getPointer() < B.Range.Start.getPointer();
1273   });
1274   // Create notes for the sorted captures.
1275   for (const VarCapture &VC : VarCaptures) {
1276     SmallString<256> Msg;
1277     raw_svector_ostream OS(Msg);
1278     OS << "captured var \"" << VC.Name << "\"";
1279     if (Diags)
1280       Diags->emplace_back(SM, CheckTy, getLoc(), MatchTy, VC.Range, OS.str());
1281     else
1282       SM.PrintMessage(VC.Range.Start, SourceMgr::DK_Note, OS.str(), VC.Range);
1283   }
1284 }
1285 
1286 static SMRange ProcessMatchResult(FileCheckDiag::MatchType MatchTy,
1287                                   const SourceMgr &SM, SMLoc Loc,
1288                                   Check::FileCheckType CheckTy,
1289                                   StringRef Buffer, size_t Pos, size_t Len,
1290                                   std::vector<FileCheckDiag> *Diags,
1291                                   bool AdjustPrevDiags = false) {
1292   SMLoc Start = SMLoc::getFromPointer(Buffer.data() + Pos);
1293   SMLoc End = SMLoc::getFromPointer(Buffer.data() + Pos + Len);
1294   SMRange Range(Start, End);
1295   if (Diags) {
1296     if (AdjustPrevDiags) {
1297       SMLoc CheckLoc = Diags->rbegin()->CheckLoc;
1298       for (auto I = Diags->rbegin(), E = Diags->rend();
1299            I != E && I->CheckLoc == CheckLoc; ++I)
1300         I->MatchTy = MatchTy;
1301     } else
1302       Diags->emplace_back(SM, CheckTy, Loc, MatchTy, Range);
1303   }
1304   return Range;
1305 }
1306 
1307 void Pattern::printFuzzyMatch(const SourceMgr &SM, StringRef Buffer,
1308                               std::vector<FileCheckDiag> *Diags) const {
1309   // Attempt to find the closest/best fuzzy match.  Usually an error happens
1310   // because some string in the output didn't exactly match. In these cases, we
1311   // would like to show the user a best guess at what "should have" matched, to
1312   // save them having to actually check the input manually.
1313   size_t NumLinesForward = 0;
1314   size_t Best = StringRef::npos;
1315   double BestQuality = 0;
1316 
1317   // Use an arbitrary 4k limit on how far we will search.
1318   for (size_t i = 0, e = std::min(size_t(4096), Buffer.size()); i != e; ++i) {
1319     if (Buffer[i] == '\n')
1320       ++NumLinesForward;
1321 
1322     // Patterns have leading whitespace stripped, so skip whitespace when
1323     // looking for something which looks like a pattern.
1324     if (Buffer[i] == ' ' || Buffer[i] == '\t')
1325       continue;
1326 
1327     // Compute the "quality" of this match as an arbitrary combination of the
1328     // match distance and the number of lines skipped to get to this match.
1329     unsigned Distance = computeMatchDistance(Buffer.substr(i));
1330     double Quality = Distance + (NumLinesForward / 100.);
1331 
1332     if (Quality < BestQuality || Best == StringRef::npos) {
1333       Best = i;
1334       BestQuality = Quality;
1335     }
1336   }
1337 
1338   // Print the "possible intended match here" line if we found something
1339   // reasonable and not equal to what we showed in the "scanning from here"
1340   // line.
1341   if (Best && Best != StringRef::npos && BestQuality < 50) {
1342     SMRange MatchRange =
1343         ProcessMatchResult(FileCheckDiag::MatchFuzzy, SM, getLoc(),
1344                            getCheckTy(), Buffer, Best, 0, Diags);
1345     SM.PrintMessage(MatchRange.Start, SourceMgr::DK_Note,
1346                     "possible intended match here");
1347 
1348     // FIXME: If we wanted to be really friendly we would show why the match
1349     // failed, as it can be hard to spot simple one character differences.
1350   }
1351 }
1352 
1353 Expected<StringRef>
1354 FileCheckPatternContext::getPatternVarValue(StringRef VarName) {
1355   auto VarIter = GlobalVariableTable.find(VarName);
1356   if (VarIter == GlobalVariableTable.end())
1357     return make_error<UndefVarError>(VarName);
1358 
1359   return VarIter->second;
1360 }
1361 
1362 template <class... Types>
1363 NumericVariable *FileCheckPatternContext::makeNumericVariable(Types... args) {
1364   NumericVariables.push_back(std::make_unique<NumericVariable>(args...));
1365   return NumericVariables.back().get();
1366 }
1367 
1368 Substitution *
1369 FileCheckPatternContext::makeStringSubstitution(StringRef VarName,
1370                                                 size_t InsertIdx) {
1371   Substitutions.push_back(
1372       std::make_unique<StringSubstitution>(this, VarName, InsertIdx));
1373   return Substitutions.back().get();
1374 }
1375 
1376 Substitution *FileCheckPatternContext::makeNumericSubstitution(
1377     StringRef ExpressionStr, std::unique_ptr<Expression> Expression,
1378     size_t InsertIdx) {
1379   Substitutions.push_back(std::make_unique<NumericSubstitution>(
1380       this, ExpressionStr, std::move(Expression), InsertIdx));
1381   return Substitutions.back().get();
1382 }
1383 
1384 size_t Pattern::FindRegexVarEnd(StringRef Str, SourceMgr &SM) {
1385   // Offset keeps track of the current offset within the input Str
1386   size_t Offset = 0;
1387   // [...] Nesting depth
1388   size_t BracketDepth = 0;
1389 
1390   while (!Str.empty()) {
1391     if (Str.startswith("]]") && BracketDepth == 0)
1392       return Offset;
1393     if (Str[0] == '\\') {
1394       // Backslash escapes the next char within regexes, so skip them both.
1395       Str = Str.substr(2);
1396       Offset += 2;
1397     } else {
1398       switch (Str[0]) {
1399       default:
1400         break;
1401       case '[':
1402         BracketDepth++;
1403         break;
1404       case ']':
1405         if (BracketDepth == 0) {
1406           SM.PrintMessage(SMLoc::getFromPointer(Str.data()),
1407                           SourceMgr::DK_Error,
1408                           "missing closing \"]\" for regex variable");
1409           exit(1);
1410         }
1411         BracketDepth--;
1412         break;
1413       }
1414       Str = Str.substr(1);
1415       Offset++;
1416     }
1417   }
1418 
1419   return StringRef::npos;
1420 }
1421 
1422 StringRef FileCheck::CanonicalizeFile(MemoryBuffer &MB,
1423                                       SmallVectorImpl<char> &OutputBuffer) {
1424   OutputBuffer.reserve(MB.getBufferSize());
1425 
1426   for (const char *Ptr = MB.getBufferStart(), *End = MB.getBufferEnd();
1427        Ptr != End; ++Ptr) {
1428     // Eliminate trailing dosish \r.
1429     if (Ptr <= End - 2 && Ptr[0] == '\r' && Ptr[1] == '\n') {
1430       continue;
1431     }
1432 
1433     // If current char is not a horizontal whitespace or if horizontal
1434     // whitespace canonicalization is disabled, dump it to output as is.
1435     if (Req.NoCanonicalizeWhiteSpace || (*Ptr != ' ' && *Ptr != '\t')) {
1436       OutputBuffer.push_back(*Ptr);
1437       continue;
1438     }
1439 
1440     // Otherwise, add one space and advance over neighboring space.
1441     OutputBuffer.push_back(' ');
1442     while (Ptr + 1 != End && (Ptr[1] == ' ' || Ptr[1] == '\t'))
1443       ++Ptr;
1444   }
1445 
1446   // Add a null byte and then return all but that byte.
1447   OutputBuffer.push_back('\0');
1448   return StringRef(OutputBuffer.data(), OutputBuffer.size() - 1);
1449 }
1450 
1451 FileCheckDiag::FileCheckDiag(const SourceMgr &SM,
1452                              const Check::FileCheckType &CheckTy,
1453                              SMLoc CheckLoc, MatchType MatchTy,
1454                              SMRange InputRange, StringRef Note)
1455     : CheckTy(CheckTy), CheckLoc(CheckLoc), MatchTy(MatchTy), Note(Note) {
1456   auto Start = SM.getLineAndColumn(InputRange.Start);
1457   auto End = SM.getLineAndColumn(InputRange.End);
1458   InputStartLine = Start.first;
1459   InputStartCol = Start.second;
1460   InputEndLine = End.first;
1461   InputEndCol = End.second;
1462 }
1463 
1464 static bool IsPartOfWord(char c) {
1465   return (isAlnum(c) || c == '-' || c == '_');
1466 }
1467 
1468 Check::FileCheckType &Check::FileCheckType::setCount(int C) {
1469   assert(Count > 0 && "zero and negative counts are not supported");
1470   assert((C == 1 || Kind == CheckPlain) &&
1471          "count supported only for plain CHECK directives");
1472   Count = C;
1473   return *this;
1474 }
1475 
1476 std::string Check::FileCheckType::getModifiersDescription() const {
1477   if (Modifiers.none())
1478     return "";
1479   std::string Ret;
1480   raw_string_ostream OS(Ret);
1481   OS << '{';
1482   if (isLiteralMatch())
1483     OS << "LITERAL";
1484   OS << '}';
1485   return OS.str();
1486 }
1487 
1488 std::string Check::FileCheckType::getDescription(StringRef Prefix) const {
1489   // Append directive modifiers.
1490   auto WithModifiers = [this, Prefix](StringRef Str) -> std::string {
1491     return (Prefix + Str + getModifiersDescription()).str();
1492   };
1493 
1494   switch (Kind) {
1495   case Check::CheckNone:
1496     return "invalid";
1497   case Check::CheckMisspelled:
1498     return "misspelled";
1499   case Check::CheckPlain:
1500     if (Count > 1)
1501       return WithModifiers("-COUNT");
1502     return WithModifiers("");
1503   case Check::CheckNext:
1504     return WithModifiers("-NEXT");
1505   case Check::CheckSame:
1506     return WithModifiers("-SAME");
1507   case Check::CheckNot:
1508     return WithModifiers("-NOT");
1509   case Check::CheckDAG:
1510     return WithModifiers("-DAG");
1511   case Check::CheckLabel:
1512     return WithModifiers("-LABEL");
1513   case Check::CheckEmpty:
1514     return WithModifiers("-EMPTY");
1515   case Check::CheckComment:
1516     return std::string(Prefix);
1517   case Check::CheckEOF:
1518     return "implicit EOF";
1519   case Check::CheckBadNot:
1520     return "bad NOT";
1521   case Check::CheckBadCount:
1522     return "bad COUNT";
1523   }
1524   llvm_unreachable("unknown FileCheckType");
1525 }
1526 
1527 static std::pair<Check::FileCheckType, StringRef>
1528 FindCheckType(const FileCheckRequest &Req, StringRef Buffer, StringRef Prefix,
1529               bool &Misspelled) {
1530   if (Buffer.size() <= Prefix.size())
1531     return {Check::CheckNone, StringRef()};
1532 
1533   StringRef Rest = Buffer.drop_front(Prefix.size());
1534   // Check for comment.
1535   if (llvm::is_contained(Req.CommentPrefixes, Prefix)) {
1536     if (Rest.consume_front(":"))
1537       return {Check::CheckComment, Rest};
1538     // Ignore a comment prefix if it has a suffix like "-NOT".
1539     return {Check::CheckNone, StringRef()};
1540   }
1541 
1542   auto ConsumeModifiers = [&](Check::FileCheckType Ret)
1543       -> std::pair<Check::FileCheckType, StringRef> {
1544     if (Rest.consume_front(":"))
1545       return {Ret, Rest};
1546     if (!Rest.consume_front("{"))
1547       return {Check::CheckNone, StringRef()};
1548 
1549     // Parse the modifiers, speparated by commas.
1550     do {
1551       // Allow whitespace in modifiers list.
1552       Rest = Rest.ltrim();
1553       if (Rest.consume_front("LITERAL"))
1554         Ret.setLiteralMatch();
1555       else
1556         return {Check::CheckNone, Rest};
1557       // Allow whitespace in modifiers list.
1558       Rest = Rest.ltrim();
1559     } while (Rest.consume_front(","));
1560     if (!Rest.consume_front("}:"))
1561       return {Check::CheckNone, Rest};
1562     return {Ret, Rest};
1563   };
1564 
1565   // Verify that the prefix is followed by directive modifiers or a colon.
1566   if (Rest.consume_front(":"))
1567     return {Check::CheckPlain, Rest};
1568   if (Rest.front() == '{')
1569     return ConsumeModifiers(Check::CheckPlain);
1570 
1571   if (Rest.consume_front("_"))
1572     Misspelled = true;
1573   else if (!Rest.consume_front("-"))
1574     return {Check::CheckNone, StringRef()};
1575 
1576   if (Rest.consume_front("COUNT-")) {
1577     int64_t Count;
1578     if (Rest.consumeInteger(10, Count))
1579       // Error happened in parsing integer.
1580       return {Check::CheckBadCount, Rest};
1581     if (Count <= 0 || Count > INT32_MAX)
1582       return {Check::CheckBadCount, Rest};
1583     if (Rest.front() != ':' && Rest.front() != '{')
1584       return {Check::CheckBadCount, Rest};
1585     return ConsumeModifiers(
1586         Check::FileCheckType(Check::CheckPlain).setCount(Count));
1587   }
1588 
1589   // You can't combine -NOT with another suffix.
1590   if (Rest.startswith("DAG-NOT:") || Rest.startswith("NOT-DAG:") ||
1591       Rest.startswith("NEXT-NOT:") || Rest.startswith("NOT-NEXT:") ||
1592       Rest.startswith("SAME-NOT:") || Rest.startswith("NOT-SAME:") ||
1593       Rest.startswith("EMPTY-NOT:") || Rest.startswith("NOT-EMPTY:"))
1594     return {Check::CheckBadNot, Rest};
1595 
1596   if (Rest.consume_front("NEXT"))
1597     return ConsumeModifiers(Check::CheckNext);
1598 
1599   if (Rest.consume_front("SAME"))
1600     return ConsumeModifiers(Check::CheckSame);
1601 
1602   if (Rest.consume_front("NOT"))
1603     return ConsumeModifiers(Check::CheckNot);
1604 
1605   if (Rest.consume_front("DAG"))
1606     return ConsumeModifiers(Check::CheckDAG);
1607 
1608   if (Rest.consume_front("LABEL"))
1609     return ConsumeModifiers(Check::CheckLabel);
1610 
1611   if (Rest.consume_front("EMPTY"))
1612     return ConsumeModifiers(Check::CheckEmpty);
1613 
1614   return {Check::CheckNone, Rest};
1615 }
1616 
1617 static std::pair<Check::FileCheckType, StringRef>
1618 FindCheckType(const FileCheckRequest &Req, StringRef Buffer, StringRef Prefix) {
1619   bool Misspelled = false;
1620   auto Res = FindCheckType(Req, Buffer, Prefix, Misspelled);
1621   if (Res.first != Check::CheckNone && Misspelled)
1622     return {Check::CheckMisspelled, Res.second};
1623   return Res;
1624 }
1625 
1626 // From the given position, find the next character after the word.
1627 static size_t SkipWord(StringRef Str, size_t Loc) {
1628   while (Loc < Str.size() && IsPartOfWord(Str[Loc]))
1629     ++Loc;
1630   return Loc;
1631 }
1632 
1633 /// Searches the buffer for the first prefix in the prefix regular expression.
1634 ///
1635 /// This searches the buffer using the provided regular expression, however it
1636 /// enforces constraints beyond that:
1637 /// 1) The found prefix must not be a suffix of something that looks like
1638 ///    a valid prefix.
1639 /// 2) The found prefix must be followed by a valid check type suffix using \c
1640 ///    FindCheckType above.
1641 ///
1642 /// \returns a pair of StringRefs into the Buffer, which combines:
1643 ///   - the first match of the regular expression to satisfy these two is
1644 ///   returned,
1645 ///     otherwise an empty StringRef is returned to indicate failure.
1646 ///   - buffer rewound to the location right after parsed suffix, for parsing
1647 ///     to continue from
1648 ///
1649 /// If this routine returns a valid prefix, it will also shrink \p Buffer to
1650 /// start at the beginning of the returned prefix, increment \p LineNumber for
1651 /// each new line consumed from \p Buffer, and set \p CheckTy to the type of
1652 /// check found by examining the suffix.
1653 ///
1654 /// If no valid prefix is found, the state of Buffer, LineNumber, and CheckTy
1655 /// is unspecified.
1656 static std::pair<StringRef, StringRef>
1657 FindFirstMatchingPrefix(const FileCheckRequest &Req, Regex &PrefixRE,
1658                         StringRef &Buffer, unsigned &LineNumber,
1659                         Check::FileCheckType &CheckTy) {
1660   SmallVector<StringRef, 2> Matches;
1661 
1662   while (!Buffer.empty()) {
1663     // Find the first (longest) match using the RE.
1664     if (!PrefixRE.match(Buffer, &Matches))
1665       // No match at all, bail.
1666       return {StringRef(), StringRef()};
1667 
1668     StringRef Prefix = Matches[0];
1669     Matches.clear();
1670 
1671     assert(Prefix.data() >= Buffer.data() &&
1672            Prefix.data() < Buffer.data() + Buffer.size() &&
1673            "Prefix doesn't start inside of buffer!");
1674     size_t Loc = Prefix.data() - Buffer.data();
1675     StringRef Skipped = Buffer.substr(0, Loc);
1676     Buffer = Buffer.drop_front(Loc);
1677     LineNumber += Skipped.count('\n');
1678 
1679     // Check that the matched prefix isn't a suffix of some other check-like
1680     // word.
1681     // FIXME: This is a very ad-hoc check. it would be better handled in some
1682     // other way. Among other things it seems hard to distinguish between
1683     // intentional and unintentional uses of this feature.
1684     if (Skipped.empty() || !IsPartOfWord(Skipped.back())) {
1685       // Now extract the type.
1686       StringRef AfterSuffix;
1687       std::tie(CheckTy, AfterSuffix) = FindCheckType(Req, Buffer, Prefix);
1688 
1689       // If we've found a valid check type for this prefix, we're done.
1690       if (CheckTy != Check::CheckNone)
1691         return {Prefix, AfterSuffix};
1692     }
1693 
1694     // If we didn't successfully find a prefix, we need to skip this invalid
1695     // prefix and continue scanning. We directly skip the prefix that was
1696     // matched and any additional parts of that check-like word.
1697     Buffer = Buffer.drop_front(SkipWord(Buffer, Prefix.size()));
1698   }
1699 
1700   // We ran out of buffer while skipping partial matches so give up.
1701   return {StringRef(), StringRef()};
1702 }
1703 
1704 void FileCheckPatternContext::createLineVariable() {
1705   assert(!LineVariable && "@LINE pseudo numeric variable already created");
1706   StringRef LineName = "@LINE";
1707   LineVariable = makeNumericVariable(
1708       LineName, ExpressionFormat(ExpressionFormat::Kind::Unsigned));
1709   GlobalNumericVariableTable[LineName] = LineVariable;
1710 }
1711 
1712 FileCheck::FileCheck(FileCheckRequest Req)
1713     : Req(Req), PatternContext(std::make_unique<FileCheckPatternContext>()),
1714       CheckStrings(std::make_unique<std::vector<FileCheckString>>()) {}
1715 
1716 FileCheck::~FileCheck() = default;
1717 
1718 bool FileCheck::readCheckFile(
1719     SourceMgr &SM, StringRef Buffer, Regex &PrefixRE,
1720     std::pair<unsigned, unsigned> *ImpPatBufferIDRange) {
1721   if (ImpPatBufferIDRange)
1722     ImpPatBufferIDRange->first = ImpPatBufferIDRange->second = 0;
1723 
1724   Error DefineError =
1725       PatternContext->defineCmdlineVariables(Req.GlobalDefines, SM);
1726   if (DefineError) {
1727     logAllUnhandledErrors(std::move(DefineError), errs());
1728     return true;
1729   }
1730 
1731   PatternContext->createLineVariable();
1732 
1733   std::vector<Pattern> ImplicitNegativeChecks;
1734   for (StringRef PatternString : Req.ImplicitCheckNot) {
1735     // Create a buffer with fake command line content in order to display the
1736     // command line option responsible for the specific implicit CHECK-NOT.
1737     std::string Prefix = "-implicit-check-not='";
1738     std::string Suffix = "'";
1739     std::unique_ptr<MemoryBuffer> CmdLine = MemoryBuffer::getMemBufferCopy(
1740         (Prefix + PatternString + Suffix).str(), "command line");
1741 
1742     StringRef PatternInBuffer =
1743         CmdLine->getBuffer().substr(Prefix.size(), PatternString.size());
1744     unsigned BufferID = SM.AddNewSourceBuffer(std::move(CmdLine), SMLoc());
1745     if (ImpPatBufferIDRange) {
1746       if (ImpPatBufferIDRange->first == ImpPatBufferIDRange->second) {
1747         ImpPatBufferIDRange->first = BufferID;
1748         ImpPatBufferIDRange->second = BufferID + 1;
1749       } else {
1750         assert(BufferID == ImpPatBufferIDRange->second &&
1751                "expected consecutive source buffer IDs");
1752         ++ImpPatBufferIDRange->second;
1753       }
1754     }
1755 
1756     ImplicitNegativeChecks.push_back(
1757         Pattern(Check::CheckNot, PatternContext.get()));
1758     ImplicitNegativeChecks.back().parsePattern(PatternInBuffer,
1759                                                "IMPLICIT-CHECK", SM, Req);
1760   }
1761 
1762   std::vector<Pattern> DagNotMatches = ImplicitNegativeChecks;
1763 
1764   // LineNumber keeps track of the line on which CheckPrefix instances are
1765   // found.
1766   unsigned LineNumber = 1;
1767 
1768   std::set<StringRef> PrefixesNotFound(Req.CheckPrefixes.begin(),
1769                                        Req.CheckPrefixes.end());
1770   const size_t DistinctPrefixes = PrefixesNotFound.size();
1771   while (true) {
1772     Check::FileCheckType CheckTy;
1773 
1774     // See if a prefix occurs in the memory buffer.
1775     StringRef UsedPrefix;
1776     StringRef AfterSuffix;
1777     std::tie(UsedPrefix, AfterSuffix) =
1778         FindFirstMatchingPrefix(Req, PrefixRE, Buffer, LineNumber, CheckTy);
1779     if (UsedPrefix.empty())
1780       break;
1781     if (CheckTy != Check::CheckComment)
1782       PrefixesNotFound.erase(UsedPrefix);
1783 
1784     assert(UsedPrefix.data() == Buffer.data() &&
1785            "Failed to move Buffer's start forward, or pointed prefix outside "
1786            "of the buffer!");
1787     assert(AfterSuffix.data() >= Buffer.data() &&
1788            AfterSuffix.data() < Buffer.data() + Buffer.size() &&
1789            "Parsing after suffix doesn't start inside of buffer!");
1790 
1791     // Location to use for error messages.
1792     const char *UsedPrefixStart = UsedPrefix.data();
1793 
1794     // Skip the buffer to the end of parsed suffix (or just prefix, if no good
1795     // suffix was processed).
1796     Buffer = AfterSuffix.empty() ? Buffer.drop_front(UsedPrefix.size())
1797                                  : AfterSuffix;
1798 
1799     // Complain about misspelled directives.
1800     if (CheckTy == Check::CheckMisspelled) {
1801       StringRef UsedDirective(UsedPrefix.data(),
1802                               AfterSuffix.data() - UsedPrefix.data());
1803       SM.PrintMessage(SMLoc::getFromPointer(UsedDirective.data()),
1804                       SourceMgr::DK_Error,
1805                       "misspelled directive '" + UsedDirective + "'");
1806       return true;
1807     }
1808 
1809     // Complain about useful-looking but unsupported suffixes.
1810     if (CheckTy == Check::CheckBadNot) {
1811       SM.PrintMessage(SMLoc::getFromPointer(Buffer.data()), SourceMgr::DK_Error,
1812                       "unsupported -NOT combo on prefix '" + UsedPrefix + "'");
1813       return true;
1814     }
1815 
1816     // Complain about invalid count specification.
1817     if (CheckTy == Check::CheckBadCount) {
1818       SM.PrintMessage(SMLoc::getFromPointer(Buffer.data()), SourceMgr::DK_Error,
1819                       "invalid count in -COUNT specification on prefix '" +
1820                           UsedPrefix + "'");
1821       return true;
1822     }
1823 
1824     // Okay, we found the prefix, yay. Remember the rest of the line, but ignore
1825     // leading whitespace.
1826     if (!(Req.NoCanonicalizeWhiteSpace && Req.MatchFullLines))
1827       Buffer = Buffer.substr(Buffer.find_first_not_of(" \t"));
1828 
1829     // Scan ahead to the end of line.
1830     size_t EOL = Buffer.find_first_of("\n\r");
1831 
1832     // Remember the location of the start of the pattern, for diagnostics.
1833     SMLoc PatternLoc = SMLoc::getFromPointer(Buffer.data());
1834 
1835     // Extract the pattern from the buffer.
1836     StringRef PatternBuffer = Buffer.substr(0, EOL);
1837     Buffer = Buffer.substr(EOL);
1838 
1839     // If this is a comment, we're done.
1840     if (CheckTy == Check::CheckComment)
1841       continue;
1842 
1843     // Parse the pattern.
1844     Pattern P(CheckTy, PatternContext.get(), LineNumber);
1845     if (P.parsePattern(PatternBuffer, UsedPrefix, SM, Req))
1846       return true;
1847 
1848     // Verify that CHECK-LABEL lines do not define or use variables
1849     if ((CheckTy == Check::CheckLabel) && P.hasVariable()) {
1850       SM.PrintMessage(
1851           SMLoc::getFromPointer(UsedPrefixStart), SourceMgr::DK_Error,
1852           "found '" + UsedPrefix + "-LABEL:'"
1853                                    " with variable definition or use");
1854       return true;
1855     }
1856 
1857     // Verify that CHECK-NEXT/SAME/EMPTY lines have at least one CHECK line before them.
1858     if ((CheckTy == Check::CheckNext || CheckTy == Check::CheckSame ||
1859          CheckTy == Check::CheckEmpty) &&
1860         CheckStrings->empty()) {
1861       StringRef Type = CheckTy == Check::CheckNext
1862                            ? "NEXT"
1863                            : CheckTy == Check::CheckEmpty ? "EMPTY" : "SAME";
1864       SM.PrintMessage(SMLoc::getFromPointer(UsedPrefixStart),
1865                       SourceMgr::DK_Error,
1866                       "found '" + UsedPrefix + "-" + Type +
1867                           "' without previous '" + UsedPrefix + ": line");
1868       return true;
1869     }
1870 
1871     // Handle CHECK-DAG/-NOT.
1872     if (CheckTy == Check::CheckDAG || CheckTy == Check::CheckNot) {
1873       DagNotMatches.push_back(P);
1874       continue;
1875     }
1876 
1877     // Okay, add the string we captured to the output vector and move on.
1878     CheckStrings->emplace_back(P, UsedPrefix, PatternLoc);
1879     std::swap(DagNotMatches, CheckStrings->back().DagNotStrings);
1880     DagNotMatches = ImplicitNegativeChecks;
1881   }
1882 
1883   // When there are no used prefixes we report an error except in the case that
1884   // no prefix is specified explicitly but -implicit-check-not is specified.
1885   const bool NoPrefixesFound = PrefixesNotFound.size() == DistinctPrefixes;
1886   const bool SomePrefixesUnexpectedlyNotUsed =
1887       !Req.AllowUnusedPrefixes && !PrefixesNotFound.empty();
1888   if ((NoPrefixesFound || SomePrefixesUnexpectedlyNotUsed) &&
1889       (ImplicitNegativeChecks.empty() || !Req.IsDefaultCheckPrefix)) {
1890     errs() << "error: no check strings found with prefix"
1891            << (PrefixesNotFound.size() > 1 ? "es " : " ");
1892     bool First = true;
1893     for (StringRef MissingPrefix : PrefixesNotFound) {
1894       if (!First)
1895         errs() << ", ";
1896       errs() << "\'" << MissingPrefix << ":'";
1897       First = false;
1898     }
1899     errs() << '\n';
1900     return true;
1901   }
1902 
1903   // Add an EOF pattern for any trailing --implicit-check-not/CHECK-DAG/-NOTs,
1904   // and use the first prefix as a filler for the error message.
1905   if (!DagNotMatches.empty()) {
1906     CheckStrings->emplace_back(
1907         Pattern(Check::CheckEOF, PatternContext.get(), LineNumber + 1),
1908         *Req.CheckPrefixes.begin(), SMLoc::getFromPointer(Buffer.data()));
1909     std::swap(DagNotMatches, CheckStrings->back().DagNotStrings);
1910   }
1911 
1912   return false;
1913 }
1914 
1915 /// Returns either (1) \c ErrorSuccess if there was no error or (2)
1916 /// \c ErrorReported if an error was reported, such as an unexpected match.
1917 static Error printMatch(bool ExpectedMatch, const SourceMgr &SM,
1918                         StringRef Prefix, SMLoc Loc, const Pattern &Pat,
1919                         int MatchedCount, StringRef Buffer,
1920                         Pattern::MatchResult MatchResult,
1921                         const FileCheckRequest &Req,
1922                         std::vector<FileCheckDiag> *Diags) {
1923   // Suppress some verbosity if there's no error.
1924   bool HasError = !ExpectedMatch || MatchResult.TheError;
1925   bool PrintDiag = true;
1926   if (!HasError) {
1927     if (!Req.Verbose)
1928       return ErrorReported::reportedOrSuccess(HasError);
1929     if (!Req.VerboseVerbose && Pat.getCheckTy() == Check::CheckEOF)
1930       return ErrorReported::reportedOrSuccess(HasError);
1931     // Due to their verbosity, we don't print verbose diagnostics here if we're
1932     // gathering them for Diags to be rendered elsewhere, but we always print
1933     // other diagnostics.
1934     PrintDiag = !Diags;
1935   }
1936 
1937   // Add "found" diagnostic, substitutions, and variable definitions to Diags.
1938   FileCheckDiag::MatchType MatchTy = ExpectedMatch
1939                                          ? FileCheckDiag::MatchFoundAndExpected
1940                                          : FileCheckDiag::MatchFoundButExcluded;
1941   SMRange MatchRange = ProcessMatchResult(MatchTy, SM, Loc, Pat.getCheckTy(),
1942                                           Buffer, MatchResult.TheMatch->Pos,
1943                                           MatchResult.TheMatch->Len, Diags);
1944   if (Diags) {
1945     Pat.printSubstitutions(SM, Buffer, MatchRange, MatchTy, Diags);
1946     Pat.printVariableDefs(SM, MatchTy, Diags);
1947   }
1948   if (!PrintDiag) {
1949     assert(!HasError && "expected to report more diagnostics for error");
1950     return ErrorReported::reportedOrSuccess(HasError);
1951   }
1952 
1953   // Print the match.
1954   std::string Message = formatv("{0}: {1} string found in input",
1955                                 Pat.getCheckTy().getDescription(Prefix),
1956                                 (ExpectedMatch ? "expected" : "excluded"))
1957                             .str();
1958   if (Pat.getCount() > 1)
1959     Message += formatv(" ({0} out of {1})", MatchedCount, Pat.getCount()).str();
1960   SM.PrintMessage(
1961       Loc, ExpectedMatch ? SourceMgr::DK_Remark : SourceMgr::DK_Error, Message);
1962   SM.PrintMessage(MatchRange.Start, SourceMgr::DK_Note, "found here",
1963                   {MatchRange});
1964 
1965   // Print additional information, which can be useful even if there are errors.
1966   Pat.printSubstitutions(SM, Buffer, MatchRange, MatchTy, nullptr);
1967   Pat.printVariableDefs(SM, MatchTy, nullptr);
1968 
1969   // Print errors and add them to Diags.  We report these errors after the match
1970   // itself because we found them after the match.  If we had found them before
1971   // the match, we'd be in printNoMatch.
1972   handleAllErrors(std::move(MatchResult.TheError),
1973                   [&](const ErrorDiagnostic &E) {
1974                     E.log(errs());
1975                     if (Diags) {
1976                       Diags->emplace_back(SM, Pat.getCheckTy(), Loc,
1977                                           FileCheckDiag::MatchFoundErrorNote,
1978                                           E.getRange(), E.getMessage().str());
1979                     }
1980                   });
1981   return ErrorReported::reportedOrSuccess(HasError);
1982 }
1983 
1984 /// Returns either (1) \c ErrorSuccess if there was no error, or (2)
1985 /// \c ErrorReported if an error was reported, such as an expected match not
1986 /// found.
1987 static Error printNoMatch(bool ExpectedMatch, const SourceMgr &SM,
1988                           StringRef Prefix, SMLoc Loc, const Pattern &Pat,
1989                           int MatchedCount, StringRef Buffer, Error MatchError,
1990                           bool VerboseVerbose,
1991                           std::vector<FileCheckDiag> *Diags) {
1992   // Print any pattern errors, and record them to be added to Diags later.
1993   bool HasError = ExpectedMatch;
1994   bool HasPatternError = false;
1995   FileCheckDiag::MatchType MatchTy = ExpectedMatch
1996                                          ? FileCheckDiag::MatchNoneButExpected
1997                                          : FileCheckDiag::MatchNoneAndExcluded;
1998   SmallVector<std::string, 4> ErrorMsgs;
1999   handleAllErrors(
2000       std::move(MatchError),
2001       [&](const ErrorDiagnostic &E) {
2002         HasError = HasPatternError = true;
2003         MatchTy = FileCheckDiag::MatchNoneForInvalidPattern;
2004         E.log(errs());
2005         if (Diags)
2006           ErrorMsgs.push_back(E.getMessage().str());
2007       },
2008       // NotFoundError is why printNoMatch was invoked.
2009       [](const NotFoundError &E) {});
2010 
2011   // Suppress some verbosity if there's no error.
2012   bool PrintDiag = true;
2013   if (!HasError) {
2014     if (!VerboseVerbose)
2015       return ErrorReported::reportedOrSuccess(HasError);
2016     // Due to their verbosity, we don't print verbose diagnostics here if we're
2017     // gathering them for Diags to be rendered elsewhere, but we always print
2018     // other diagnostics.
2019     PrintDiag = !Diags;
2020   }
2021 
2022   // Add "not found" diagnostic, substitutions, and pattern errors to Diags.
2023   //
2024   // We handle Diags a little differently than the errors we print directly:
2025   // we add the "not found" diagnostic to Diags even if there are pattern
2026   // errors.  The reason is that we need to attach pattern errors as notes
2027   // somewhere in the input, and the input search range from the "not found"
2028   // diagnostic is all we have to anchor them.
2029   SMRange SearchRange = ProcessMatchResult(MatchTy, SM, Loc, Pat.getCheckTy(),
2030                                            Buffer, 0, Buffer.size(), Diags);
2031   if (Diags) {
2032     SMRange NoteRange = SMRange(SearchRange.Start, SearchRange.Start);
2033     for (StringRef ErrorMsg : ErrorMsgs)
2034       Diags->emplace_back(SM, Pat.getCheckTy(), Loc, MatchTy, NoteRange,
2035                           ErrorMsg);
2036     Pat.printSubstitutions(SM, Buffer, SearchRange, MatchTy, Diags);
2037   }
2038   if (!PrintDiag) {
2039     assert(!HasError && "expected to report more diagnostics for error");
2040     return ErrorReported::reportedOrSuccess(HasError);
2041   }
2042 
2043   // Print "not found" diagnostic, except that's implied if we already printed a
2044   // pattern error.
2045   if (!HasPatternError) {
2046     std::string Message = formatv("{0}: {1} string not found in input",
2047                                   Pat.getCheckTy().getDescription(Prefix),
2048                                   (ExpectedMatch ? "expected" : "excluded"))
2049                               .str();
2050     if (Pat.getCount() > 1)
2051       Message +=
2052           formatv(" ({0} out of {1})", MatchedCount, Pat.getCount()).str();
2053     SM.PrintMessage(Loc,
2054                     ExpectedMatch ? SourceMgr::DK_Error : SourceMgr::DK_Remark,
2055                     Message);
2056     SM.PrintMessage(SearchRange.Start, SourceMgr::DK_Note,
2057                     "scanning from here");
2058   }
2059 
2060   // Print additional information, which can be useful even after a pattern
2061   // error.
2062   Pat.printSubstitutions(SM, Buffer, SearchRange, MatchTy, nullptr);
2063   if (ExpectedMatch)
2064     Pat.printFuzzyMatch(SM, Buffer, Diags);
2065   return ErrorReported::reportedOrSuccess(HasError);
2066 }
2067 
2068 /// Returns either (1) \c ErrorSuccess if there was no error, or (2)
2069 /// \c ErrorReported if an error was reported.
2070 static Error reportMatchResult(bool ExpectedMatch, const SourceMgr &SM,
2071                                StringRef Prefix, SMLoc Loc, const Pattern &Pat,
2072                                int MatchedCount, StringRef Buffer,
2073                                Pattern::MatchResult MatchResult,
2074                                const FileCheckRequest &Req,
2075                                std::vector<FileCheckDiag> *Diags) {
2076   if (MatchResult.TheMatch)
2077     return printMatch(ExpectedMatch, SM, Prefix, Loc, Pat, MatchedCount, Buffer,
2078                       std::move(MatchResult), Req, Diags);
2079   return printNoMatch(ExpectedMatch, SM, Prefix, Loc, Pat, MatchedCount, Buffer,
2080                       std::move(MatchResult.TheError), Req.VerboseVerbose,
2081                       Diags);
2082 }
2083 
2084 /// Counts the number of newlines in the specified range.
2085 static unsigned CountNumNewlinesBetween(StringRef Range,
2086                                         const char *&FirstNewLine) {
2087   unsigned NumNewLines = 0;
2088   while (true) {
2089     // Scan for newline.
2090     Range = Range.substr(Range.find_first_of("\n\r"));
2091     if (Range.empty())
2092       return NumNewLines;
2093 
2094     ++NumNewLines;
2095 
2096     // Handle \n\r and \r\n as a single newline.
2097     if (Range.size() > 1 && (Range[1] == '\n' || Range[1] == '\r') &&
2098         (Range[0] != Range[1]))
2099       Range = Range.substr(1);
2100     Range = Range.substr(1);
2101 
2102     if (NumNewLines == 1)
2103       FirstNewLine = Range.begin();
2104   }
2105 }
2106 
2107 size_t FileCheckString::Check(const SourceMgr &SM, StringRef Buffer,
2108                               bool IsLabelScanMode, size_t &MatchLen,
2109                               FileCheckRequest &Req,
2110                               std::vector<FileCheckDiag> *Diags) const {
2111   size_t LastPos = 0;
2112   std::vector<const Pattern *> NotStrings;
2113 
2114   // IsLabelScanMode is true when we are scanning forward to find CHECK-LABEL
2115   // bounds; we have not processed variable definitions within the bounded block
2116   // yet so cannot handle any final CHECK-DAG yet; this is handled when going
2117   // over the block again (including the last CHECK-LABEL) in normal mode.
2118   if (!IsLabelScanMode) {
2119     // Match "dag strings" (with mixed "not strings" if any).
2120     LastPos = CheckDag(SM, Buffer, NotStrings, Req, Diags);
2121     if (LastPos == StringRef::npos)
2122       return StringRef::npos;
2123   }
2124 
2125   // Match itself from the last position after matching CHECK-DAG.
2126   size_t LastMatchEnd = LastPos;
2127   size_t FirstMatchPos = 0;
2128   // Go match the pattern Count times. Majority of patterns only match with
2129   // count 1 though.
2130   assert(Pat.getCount() != 0 && "pattern count can not be zero");
2131   for (int i = 1; i <= Pat.getCount(); i++) {
2132     StringRef MatchBuffer = Buffer.substr(LastMatchEnd);
2133     // get a match at current start point
2134     Pattern::MatchResult MatchResult = Pat.match(MatchBuffer, SM);
2135 
2136     // report
2137     if (Error Err = reportMatchResult(/*ExpectedMatch=*/true, SM, Prefix, Loc,
2138                                       Pat, i, MatchBuffer,
2139                                       std::move(MatchResult), Req, Diags)) {
2140       cantFail(handleErrors(std::move(Err), [&](const ErrorReported &E) {}));
2141       return StringRef::npos;
2142     }
2143 
2144     size_t MatchPos = MatchResult.TheMatch->Pos;
2145     if (i == 1)
2146       FirstMatchPos = LastPos + MatchPos;
2147 
2148     // move start point after the match
2149     LastMatchEnd += MatchPos + MatchResult.TheMatch->Len;
2150   }
2151   // Full match len counts from first match pos.
2152   MatchLen = LastMatchEnd - FirstMatchPos;
2153 
2154   // Similar to the above, in "label-scan mode" we can't yet handle CHECK-NEXT
2155   // or CHECK-NOT
2156   if (!IsLabelScanMode) {
2157     size_t MatchPos = FirstMatchPos - LastPos;
2158     StringRef MatchBuffer = Buffer.substr(LastPos);
2159     StringRef SkippedRegion = Buffer.substr(LastPos, MatchPos);
2160 
2161     // If this check is a "CHECK-NEXT", verify that the previous match was on
2162     // the previous line (i.e. that there is one newline between them).
2163     if (CheckNext(SM, SkippedRegion)) {
2164       ProcessMatchResult(FileCheckDiag::MatchFoundButWrongLine, SM, Loc,
2165                          Pat.getCheckTy(), MatchBuffer, MatchPos, MatchLen,
2166                          Diags, Req.Verbose);
2167       return StringRef::npos;
2168     }
2169 
2170     // If this check is a "CHECK-SAME", verify that the previous match was on
2171     // the same line (i.e. that there is no newline between them).
2172     if (CheckSame(SM, SkippedRegion)) {
2173       ProcessMatchResult(FileCheckDiag::MatchFoundButWrongLine, SM, Loc,
2174                          Pat.getCheckTy(), MatchBuffer, MatchPos, MatchLen,
2175                          Diags, Req.Verbose);
2176       return StringRef::npos;
2177     }
2178 
2179     // If this match had "not strings", verify that they don't exist in the
2180     // skipped region.
2181     if (CheckNot(SM, SkippedRegion, NotStrings, Req, Diags))
2182       return StringRef::npos;
2183   }
2184 
2185   return FirstMatchPos;
2186 }
2187 
2188 bool FileCheckString::CheckNext(const SourceMgr &SM, StringRef Buffer) const {
2189   if (Pat.getCheckTy() != Check::CheckNext &&
2190       Pat.getCheckTy() != Check::CheckEmpty)
2191     return false;
2192 
2193   Twine CheckName =
2194       Prefix +
2195       Twine(Pat.getCheckTy() == Check::CheckEmpty ? "-EMPTY" : "-NEXT");
2196 
2197   // Count the number of newlines between the previous match and this one.
2198   const char *FirstNewLine = nullptr;
2199   unsigned NumNewLines = CountNumNewlinesBetween(Buffer, FirstNewLine);
2200 
2201   if (NumNewLines == 0) {
2202     SM.PrintMessage(Loc, SourceMgr::DK_Error,
2203                     CheckName + ": is on the same line as previous match");
2204     SM.PrintMessage(SMLoc::getFromPointer(Buffer.end()), SourceMgr::DK_Note,
2205                     "'next' match was here");
2206     SM.PrintMessage(SMLoc::getFromPointer(Buffer.data()), SourceMgr::DK_Note,
2207                     "previous match ended here");
2208     return true;
2209   }
2210 
2211   if (NumNewLines != 1) {
2212     SM.PrintMessage(Loc, SourceMgr::DK_Error,
2213                     CheckName +
2214                         ": is not on the line after the previous match");
2215     SM.PrintMessage(SMLoc::getFromPointer(Buffer.end()), SourceMgr::DK_Note,
2216                     "'next' match was here");
2217     SM.PrintMessage(SMLoc::getFromPointer(Buffer.data()), SourceMgr::DK_Note,
2218                     "previous match ended here");
2219     SM.PrintMessage(SMLoc::getFromPointer(FirstNewLine), SourceMgr::DK_Note,
2220                     "non-matching line after previous match is here");
2221     return true;
2222   }
2223 
2224   return false;
2225 }
2226 
2227 bool FileCheckString::CheckSame(const SourceMgr &SM, StringRef Buffer) const {
2228   if (Pat.getCheckTy() != Check::CheckSame)
2229     return false;
2230 
2231   // Count the number of newlines between the previous match and this one.
2232   const char *FirstNewLine = nullptr;
2233   unsigned NumNewLines = CountNumNewlinesBetween(Buffer, FirstNewLine);
2234 
2235   if (NumNewLines != 0) {
2236     SM.PrintMessage(Loc, SourceMgr::DK_Error,
2237                     Prefix +
2238                         "-SAME: is not on the same line as the previous match");
2239     SM.PrintMessage(SMLoc::getFromPointer(Buffer.end()), SourceMgr::DK_Note,
2240                     "'next' match was here");
2241     SM.PrintMessage(SMLoc::getFromPointer(Buffer.data()), SourceMgr::DK_Note,
2242                     "previous match ended here");
2243     return true;
2244   }
2245 
2246   return false;
2247 }
2248 
2249 bool FileCheckString::CheckNot(const SourceMgr &SM, StringRef Buffer,
2250                                const std::vector<const Pattern *> &NotStrings,
2251                                const FileCheckRequest &Req,
2252                                std::vector<FileCheckDiag> *Diags) const {
2253   bool DirectiveFail = false;
2254   for (const Pattern *Pat : NotStrings) {
2255     assert((Pat->getCheckTy() == Check::CheckNot) && "Expect CHECK-NOT!");
2256     Pattern::MatchResult MatchResult = Pat->match(Buffer, SM);
2257     if (Error Err = reportMatchResult(/*ExpectedMatch=*/false, SM, Prefix,
2258                                       Pat->getLoc(), *Pat, 1, Buffer,
2259                                       std::move(MatchResult), Req, Diags)) {
2260       cantFail(handleErrors(std::move(Err), [&](const ErrorReported &E) {}));
2261       DirectiveFail = true;
2262       continue;
2263     }
2264   }
2265   return DirectiveFail;
2266 }
2267 
2268 size_t FileCheckString::CheckDag(const SourceMgr &SM, StringRef Buffer,
2269                                  std::vector<const Pattern *> &NotStrings,
2270                                  const FileCheckRequest &Req,
2271                                  std::vector<FileCheckDiag> *Diags) const {
2272   if (DagNotStrings.empty())
2273     return 0;
2274 
2275   // The start of the search range.
2276   size_t StartPos = 0;
2277 
2278   struct MatchRange {
2279     size_t Pos;
2280     size_t End;
2281   };
2282   // A sorted list of ranges for non-overlapping CHECK-DAG matches.  Match
2283   // ranges are erased from this list once they are no longer in the search
2284   // range.
2285   std::list<MatchRange> MatchRanges;
2286 
2287   // We need PatItr and PatEnd later for detecting the end of a CHECK-DAG
2288   // group, so we don't use a range-based for loop here.
2289   for (auto PatItr = DagNotStrings.begin(), PatEnd = DagNotStrings.end();
2290        PatItr != PatEnd; ++PatItr) {
2291     const Pattern &Pat = *PatItr;
2292     assert((Pat.getCheckTy() == Check::CheckDAG ||
2293             Pat.getCheckTy() == Check::CheckNot) &&
2294            "Invalid CHECK-DAG or CHECK-NOT!");
2295 
2296     if (Pat.getCheckTy() == Check::CheckNot) {
2297       NotStrings.push_back(&Pat);
2298       continue;
2299     }
2300 
2301     assert((Pat.getCheckTy() == Check::CheckDAG) && "Expect CHECK-DAG!");
2302 
2303     // CHECK-DAG always matches from the start.
2304     size_t MatchLen = 0, MatchPos = StartPos;
2305 
2306     // Search for a match that doesn't overlap a previous match in this
2307     // CHECK-DAG group.
2308     for (auto MI = MatchRanges.begin(), ME = MatchRanges.end(); true; ++MI) {
2309       StringRef MatchBuffer = Buffer.substr(MatchPos);
2310       Pattern::MatchResult MatchResult = Pat.match(MatchBuffer, SM);
2311       // With a group of CHECK-DAGs, a single mismatching means the match on
2312       // that group of CHECK-DAGs fails immediately.
2313       if (MatchResult.TheError || Req.VerboseVerbose) {
2314         if (Error Err = reportMatchResult(/*ExpectedMatch=*/true, SM, Prefix,
2315                                           Pat.getLoc(), Pat, 1, MatchBuffer,
2316                                           std::move(MatchResult), Req, Diags)) {
2317           cantFail(
2318               handleErrors(std::move(Err), [&](const ErrorReported &E) {}));
2319           return StringRef::npos;
2320         }
2321       }
2322       MatchLen = MatchResult.TheMatch->Len;
2323       // Re-calc it as the offset relative to the start of the original
2324       // string.
2325       MatchPos += MatchResult.TheMatch->Pos;
2326       MatchRange M{MatchPos, MatchPos + MatchLen};
2327       if (Req.AllowDeprecatedDagOverlap) {
2328         // We don't need to track all matches in this mode, so we just maintain
2329         // one match range that encompasses the current CHECK-DAG group's
2330         // matches.
2331         if (MatchRanges.empty())
2332           MatchRanges.insert(MatchRanges.end(), M);
2333         else {
2334           auto Block = MatchRanges.begin();
2335           Block->Pos = std::min(Block->Pos, M.Pos);
2336           Block->End = std::max(Block->End, M.End);
2337         }
2338         break;
2339       }
2340       // Iterate previous matches until overlapping match or insertion point.
2341       bool Overlap = false;
2342       for (; MI != ME; ++MI) {
2343         if (M.Pos < MI->End) {
2344           // !Overlap => New match has no overlap and is before this old match.
2345           // Overlap => New match overlaps this old match.
2346           Overlap = MI->Pos < M.End;
2347           break;
2348         }
2349       }
2350       if (!Overlap) {
2351         // Insert non-overlapping match into list.
2352         MatchRanges.insert(MI, M);
2353         break;
2354       }
2355       if (Req.VerboseVerbose) {
2356         // Due to their verbosity, we don't print verbose diagnostics here if
2357         // we're gathering them for a different rendering, but we always print
2358         // other diagnostics.
2359         if (!Diags) {
2360           SMLoc OldStart = SMLoc::getFromPointer(Buffer.data() + MI->Pos);
2361           SMLoc OldEnd = SMLoc::getFromPointer(Buffer.data() + MI->End);
2362           SMRange OldRange(OldStart, OldEnd);
2363           SM.PrintMessage(OldStart, SourceMgr::DK_Note,
2364                           "match discarded, overlaps earlier DAG match here",
2365                           {OldRange});
2366         } else {
2367           SMLoc CheckLoc = Diags->rbegin()->CheckLoc;
2368           for (auto I = Diags->rbegin(), E = Diags->rend();
2369                I != E && I->CheckLoc == CheckLoc; ++I)
2370             I->MatchTy = FileCheckDiag::MatchFoundButDiscarded;
2371         }
2372       }
2373       MatchPos = MI->End;
2374     }
2375     if (!Req.VerboseVerbose)
2376       cantFail(printMatch(
2377           /*ExpectedMatch=*/true, SM, Prefix, Pat.getLoc(), Pat, 1, Buffer,
2378           Pattern::MatchResult(MatchPos, MatchLen, Error::success()), Req,
2379           Diags));
2380 
2381     // Handle the end of a CHECK-DAG group.
2382     if (std::next(PatItr) == PatEnd ||
2383         std::next(PatItr)->getCheckTy() == Check::CheckNot) {
2384       if (!NotStrings.empty()) {
2385         // If there are CHECK-NOTs between two CHECK-DAGs or from CHECK to
2386         // CHECK-DAG, verify that there are no 'not' strings occurred in that
2387         // region.
2388         StringRef SkippedRegion =
2389             Buffer.slice(StartPos, MatchRanges.begin()->Pos);
2390         if (CheckNot(SM, SkippedRegion, NotStrings, Req, Diags))
2391           return StringRef::npos;
2392         // Clear "not strings".
2393         NotStrings.clear();
2394       }
2395       // All subsequent CHECK-DAGs and CHECK-NOTs should be matched from the
2396       // end of this CHECK-DAG group's match range.
2397       StartPos = MatchRanges.rbegin()->End;
2398       // Don't waste time checking for (impossible) overlaps before that.
2399       MatchRanges.clear();
2400     }
2401   }
2402 
2403   return StartPos;
2404 }
2405 
2406 static bool ValidatePrefixes(StringRef Kind, StringSet<> &UniquePrefixes,
2407                              ArrayRef<StringRef> SuppliedPrefixes) {
2408   for (StringRef Prefix : SuppliedPrefixes) {
2409     if (Prefix.empty()) {
2410       errs() << "error: supplied " << Kind << " prefix must not be the empty "
2411              << "string\n";
2412       return false;
2413     }
2414     static const Regex Validator("^[a-zA-Z0-9_-]*$");
2415     if (!Validator.match(Prefix)) {
2416       errs() << "error: supplied " << Kind << " prefix must start with a "
2417              << "letter and contain only alphanumeric characters, hyphens, and "
2418              << "underscores: '" << Prefix << "'\n";
2419       return false;
2420     }
2421     if (!UniquePrefixes.insert(Prefix).second) {
2422       errs() << "error: supplied " << Kind << " prefix must be unique among "
2423              << "check and comment prefixes: '" << Prefix << "'\n";
2424       return false;
2425     }
2426   }
2427   return true;
2428 }
2429 
2430 static const char *DefaultCheckPrefixes[] = {"CHECK"};
2431 static const char *DefaultCommentPrefixes[] = {"COM", "RUN"};
2432 
2433 bool FileCheck::ValidateCheckPrefixes() {
2434   StringSet<> UniquePrefixes;
2435   // Add default prefixes to catch user-supplied duplicates of them below.
2436   if (Req.CheckPrefixes.empty()) {
2437     for (const char *Prefix : DefaultCheckPrefixes)
2438       UniquePrefixes.insert(Prefix);
2439   }
2440   if (Req.CommentPrefixes.empty()) {
2441     for (const char *Prefix : DefaultCommentPrefixes)
2442       UniquePrefixes.insert(Prefix);
2443   }
2444   // Do not validate the default prefixes, or diagnostics about duplicates might
2445   // incorrectly indicate that they were supplied by the user.
2446   if (!ValidatePrefixes("check", UniquePrefixes, Req.CheckPrefixes))
2447     return false;
2448   if (!ValidatePrefixes("comment", UniquePrefixes, Req.CommentPrefixes))
2449     return false;
2450   return true;
2451 }
2452 
2453 Regex FileCheck::buildCheckPrefixRegex() {
2454   if (Req.CheckPrefixes.empty()) {
2455     for (const char *Prefix : DefaultCheckPrefixes)
2456       Req.CheckPrefixes.push_back(Prefix);
2457     Req.IsDefaultCheckPrefix = true;
2458   }
2459   if (Req.CommentPrefixes.empty()) {
2460     for (const char *Prefix : DefaultCommentPrefixes)
2461       Req.CommentPrefixes.push_back(Prefix);
2462   }
2463 
2464   // We already validated the contents of CheckPrefixes and CommentPrefixes so
2465   // just concatenate them as alternatives.
2466   SmallString<32> PrefixRegexStr;
2467   for (size_t I = 0, E = Req.CheckPrefixes.size(); I != E; ++I) {
2468     if (I != 0)
2469       PrefixRegexStr.push_back('|');
2470     PrefixRegexStr.append(Req.CheckPrefixes[I]);
2471   }
2472   for (StringRef Prefix : Req.CommentPrefixes) {
2473     PrefixRegexStr.push_back('|');
2474     PrefixRegexStr.append(Prefix);
2475   }
2476 
2477   return Regex(PrefixRegexStr);
2478 }
2479 
2480 Error FileCheckPatternContext::defineCmdlineVariables(
2481     ArrayRef<StringRef> CmdlineDefines, SourceMgr &SM) {
2482   assert(GlobalVariableTable.empty() && GlobalNumericVariableTable.empty() &&
2483          "Overriding defined variable with command-line variable definitions");
2484 
2485   if (CmdlineDefines.empty())
2486     return Error::success();
2487 
2488   // Create a string representing the vector of command-line definitions. Each
2489   // definition is on its own line and prefixed with a definition number to
2490   // clarify which definition a given diagnostic corresponds to.
2491   unsigned I = 0;
2492   Error Errs = Error::success();
2493   std::string CmdlineDefsDiag;
2494   SmallVector<std::pair<size_t, size_t>, 4> CmdlineDefsIndices;
2495   for (StringRef CmdlineDef : CmdlineDefines) {
2496     std::string DefPrefix = ("Global define #" + Twine(++I) + ": ").str();
2497     size_t EqIdx = CmdlineDef.find('=');
2498     if (EqIdx == StringRef::npos) {
2499       CmdlineDefsIndices.push_back(std::make_pair(CmdlineDefsDiag.size(), 0));
2500       continue;
2501     }
2502     // Numeric variable definition.
2503     if (CmdlineDef[0] == '#') {
2504       // Append a copy of the command-line definition adapted to use the same
2505       // format as in the input file to be able to reuse
2506       // parseNumericSubstitutionBlock.
2507       CmdlineDefsDiag += (DefPrefix + CmdlineDef + " (parsed as: [[").str();
2508       std::string SubstitutionStr = std::string(CmdlineDef);
2509       SubstitutionStr[EqIdx] = ':';
2510       CmdlineDefsIndices.push_back(
2511           std::make_pair(CmdlineDefsDiag.size(), SubstitutionStr.size()));
2512       CmdlineDefsDiag += (SubstitutionStr + Twine("]])\n")).str();
2513     } else {
2514       CmdlineDefsDiag += DefPrefix;
2515       CmdlineDefsIndices.push_back(
2516           std::make_pair(CmdlineDefsDiag.size(), CmdlineDef.size()));
2517       CmdlineDefsDiag += (CmdlineDef + "\n").str();
2518     }
2519   }
2520 
2521   // Create a buffer with fake command line content in order to display
2522   // parsing diagnostic with location information and point to the
2523   // global definition with invalid syntax.
2524   std::unique_ptr<MemoryBuffer> CmdLineDefsDiagBuffer =
2525       MemoryBuffer::getMemBufferCopy(CmdlineDefsDiag, "Global defines");
2526   StringRef CmdlineDefsDiagRef = CmdLineDefsDiagBuffer->getBuffer();
2527   SM.AddNewSourceBuffer(std::move(CmdLineDefsDiagBuffer), SMLoc());
2528 
2529   for (std::pair<size_t, size_t> CmdlineDefIndices : CmdlineDefsIndices) {
2530     StringRef CmdlineDef = CmdlineDefsDiagRef.substr(CmdlineDefIndices.first,
2531                                                      CmdlineDefIndices.second);
2532     if (CmdlineDef.empty()) {
2533       Errs = joinErrors(
2534           std::move(Errs),
2535           ErrorDiagnostic::get(SM, CmdlineDef,
2536                                "missing equal sign in global definition"));
2537       continue;
2538     }
2539 
2540     // Numeric variable definition.
2541     if (CmdlineDef[0] == '#') {
2542       // Now parse the definition both to check that the syntax is correct and
2543       // to create the necessary class instance.
2544       StringRef CmdlineDefExpr = CmdlineDef.substr(1);
2545       std::optional<NumericVariable *> DefinedNumericVariable;
2546       Expected<std::unique_ptr<Expression>> ExpressionResult =
2547           Pattern::parseNumericSubstitutionBlock(CmdlineDefExpr,
2548                                                  DefinedNumericVariable, false,
2549                                                  std::nullopt, this, SM);
2550       if (!ExpressionResult) {
2551         Errs = joinErrors(std::move(Errs), ExpressionResult.takeError());
2552         continue;
2553       }
2554       std::unique_ptr<Expression> Expression = std::move(*ExpressionResult);
2555       // Now evaluate the expression whose value this variable should be set
2556       // to, since the expression of a command-line variable definition should
2557       // only use variables defined earlier on the command-line. If not, this
2558       // is an error and we report it.
2559       Expected<APInt> Value = Expression->getAST()->eval();
2560       if (!Value) {
2561         Errs = joinErrors(std::move(Errs), Value.takeError());
2562         continue;
2563       }
2564 
2565       assert(DefinedNumericVariable && "No variable defined");
2566       (*DefinedNumericVariable)->setValue(*Value);
2567 
2568       // Record this variable definition.
2569       GlobalNumericVariableTable[(*DefinedNumericVariable)->getName()] =
2570           *DefinedNumericVariable;
2571     } else {
2572       // String variable definition.
2573       std::pair<StringRef, StringRef> CmdlineNameVal = CmdlineDef.split('=');
2574       StringRef CmdlineName = CmdlineNameVal.first;
2575       StringRef OrigCmdlineName = CmdlineName;
2576       Expected<Pattern::VariableProperties> ParseVarResult =
2577           Pattern::parseVariable(CmdlineName, SM);
2578       if (!ParseVarResult) {
2579         Errs = joinErrors(std::move(Errs), ParseVarResult.takeError());
2580         continue;
2581       }
2582       // Check that CmdlineName does not denote a pseudo variable is only
2583       // composed of the parsed numeric variable. This catches cases like
2584       // "FOO+2" in a "FOO+2=10" definition.
2585       if (ParseVarResult->IsPseudo || !CmdlineName.empty()) {
2586         Errs = joinErrors(std::move(Errs),
2587                           ErrorDiagnostic::get(
2588                               SM, OrigCmdlineName,
2589                               "invalid name in string variable definition '" +
2590                                   OrigCmdlineName + "'"));
2591         continue;
2592       }
2593       StringRef Name = ParseVarResult->Name;
2594 
2595       // Detect collisions between string and numeric variables when the former
2596       // is created later than the latter.
2597       if (GlobalNumericVariableTable.contains(Name)) {
2598         Errs = joinErrors(std::move(Errs),
2599                           ErrorDiagnostic::get(SM, Name,
2600                                                "numeric variable with name '" +
2601                                                    Name + "' already exists"));
2602         continue;
2603       }
2604       GlobalVariableTable.insert(CmdlineNameVal);
2605       // Mark the string variable as defined to detect collisions between
2606       // string and numeric variables in defineCmdlineVariables when the latter
2607       // is created later than the former. We cannot reuse GlobalVariableTable
2608       // for this by populating it with an empty string since we would then
2609       // lose the ability to detect the use of an undefined variable in
2610       // match().
2611       DefinedVariableTable[Name] = true;
2612     }
2613   }
2614 
2615   return Errs;
2616 }
2617 
2618 void FileCheckPatternContext::clearLocalVars() {
2619   SmallVector<StringRef, 16> LocalPatternVars, LocalNumericVars;
2620   for (const StringMapEntry<StringRef> &Var : GlobalVariableTable)
2621     if (Var.first()[0] != '$')
2622       LocalPatternVars.push_back(Var.first());
2623 
2624   // Numeric substitution reads the value of a variable directly, not via
2625   // GlobalNumericVariableTable. Therefore, we clear local variables by
2626   // clearing their value which will lead to a numeric substitution failure. We
2627   // also mark the variable for removal from GlobalNumericVariableTable since
2628   // this is what defineCmdlineVariables checks to decide that no global
2629   // variable has been defined.
2630   for (const auto &Var : GlobalNumericVariableTable)
2631     if (Var.first()[0] != '$') {
2632       Var.getValue()->clearValue();
2633       LocalNumericVars.push_back(Var.first());
2634     }
2635 
2636   for (const auto &Var : LocalPatternVars)
2637     GlobalVariableTable.erase(Var);
2638   for (const auto &Var : LocalNumericVars)
2639     GlobalNumericVariableTable.erase(Var);
2640 }
2641 
2642 bool FileCheck::checkInput(SourceMgr &SM, StringRef Buffer,
2643                            std::vector<FileCheckDiag> *Diags) {
2644   bool ChecksFailed = false;
2645 
2646   unsigned i = 0, j = 0, e = CheckStrings->size();
2647   while (true) {
2648     StringRef CheckRegion;
2649     if (j == e) {
2650       CheckRegion = Buffer;
2651     } else {
2652       const FileCheckString &CheckLabelStr = (*CheckStrings)[j];
2653       if (CheckLabelStr.Pat.getCheckTy() != Check::CheckLabel) {
2654         ++j;
2655         continue;
2656       }
2657 
2658       // Scan to next CHECK-LABEL match, ignoring CHECK-NOT and CHECK-DAG
2659       size_t MatchLabelLen = 0;
2660       size_t MatchLabelPos =
2661           CheckLabelStr.Check(SM, Buffer, true, MatchLabelLen, Req, Diags);
2662       if (MatchLabelPos == StringRef::npos)
2663         // Immediately bail if CHECK-LABEL fails, nothing else we can do.
2664         return false;
2665 
2666       CheckRegion = Buffer.substr(0, MatchLabelPos + MatchLabelLen);
2667       Buffer = Buffer.substr(MatchLabelPos + MatchLabelLen);
2668       ++j;
2669     }
2670 
2671     // Do not clear the first region as it's the one before the first
2672     // CHECK-LABEL and it would clear variables defined on the command-line
2673     // before they get used.
2674     if (i != 0 && Req.EnableVarScope)
2675       PatternContext->clearLocalVars();
2676 
2677     for (; i != j; ++i) {
2678       const FileCheckString &CheckStr = (*CheckStrings)[i];
2679 
2680       // Check each string within the scanned region, including a second check
2681       // of any final CHECK-LABEL (to verify CHECK-NOT and CHECK-DAG)
2682       size_t MatchLen = 0;
2683       size_t MatchPos =
2684           CheckStr.Check(SM, CheckRegion, false, MatchLen, Req, Diags);
2685 
2686       if (MatchPos == StringRef::npos) {
2687         ChecksFailed = true;
2688         i = j;
2689         break;
2690       }
2691 
2692       CheckRegion = CheckRegion.substr(MatchPos + MatchLen);
2693     }
2694 
2695     if (j == e)
2696       break;
2697   }
2698 
2699   // Success if no checks failed.
2700   return !ChecksFailed;
2701 }
2702