forked from OSchip/llvm-project
728 lines
30 KiB
C++
728 lines
30 KiB
C++
//===-- FileCheckImpl.h - Private FileCheck Interface ------------*- C++ -*-==//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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//
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// This file defines the private interfaces of FileCheck. Its purpose is to
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// allow unit testing of FileCheck and to separate the interface from the
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// implementation. It is only meant to be used by FileCheck.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_LIB_SUPPORT_FILECHECKIMPL_H
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#define LLVM_LIB_SUPPORT_FILECHECKIMPL_H
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#include "llvm/ADT/Optional.h"
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#include "llvm/ADT/StringMap.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/Support/Error.h"
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#include "llvm/Support/SourceMgr.h"
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#include <map>
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#include <string>
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#include <vector>
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namespace llvm {
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//===----------------------------------------------------------------------===//
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// Numeric substitution handling code.
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//===----------------------------------------------------------------------===//
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/// Type representing the format an expression value should be textualized into
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/// for matching. Used to represent both explicit format specifiers as well as
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/// implicit format from using numeric variables.
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struct ExpressionFormat {
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enum class Kind {
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/// Denote absence of format. Used for implicit format of literals and
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/// empty expressions.
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NoFormat,
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/// Used when there are several conflicting implicit formats in an
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/// expression.
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Conflict,
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/// Value is an unsigned integer and should be printed as a decimal number.
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Unsigned,
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/// Value should be printed as an uppercase hex number.
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HexUpper,
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/// Value should be printed as a lowercase hex number.
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HexLower
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};
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private:
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Kind Value;
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public:
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/// Evaluates a format to true if it can be used in a match.
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explicit operator bool() const {
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return Value != Kind::NoFormat && Value != Kind::Conflict;
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}
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/// Define format equality: formats are equal if neither is NoFormat and
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/// their kinds are the same.
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bool operator==(const ExpressionFormat &Other) const {
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return Value != Kind::NoFormat && Value == Other.Value;
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}
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bool operator!=(const ExpressionFormat &other) const {
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return !(*this == other);
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}
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bool operator==(Kind OtherValue) const { return Value == OtherValue; }
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bool operator!=(Kind OtherValue) const { return !(*this == OtherValue); }
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ExpressionFormat() : Value(Kind::NoFormat){};
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explicit ExpressionFormat(Kind Value) : Value(Value){};
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/// \returns a wildcard regular expression StringRef that matches any value
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/// in the format represented by this instance, or an error if the format is
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/// NoFormat or Conflict.
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Expected<StringRef> getWildcardRegex() const;
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/// \returns the string representation of \p Value in the format represented
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/// by this instance, or an error if the format is NoFormat or Conflict.
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Expected<std::string> getMatchingString(uint64_t Value) const;
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/// \returns the value corresponding to string representation \p StrVal
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/// according to the matching format represented by this instance or an error
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/// with diagnostic against \p SM if \p StrVal does not correspond to a valid
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/// and representable value.
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Expected<uint64_t> valueFromStringRepr(StringRef StrVal,
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const SourceMgr &SM) const;
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};
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/// Base class representing the AST of a given expression.
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class ExpressionAST {
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public:
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virtual ~ExpressionAST() = default;
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/// Evaluates and \returns the value of the expression represented by this
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/// AST or an error if evaluation fails.
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virtual Expected<uint64_t> eval() const = 0;
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/// \returns either the implicit format of this AST, FormatConflict if
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/// implicit formats of the AST's components conflict, or NoFormat if the AST
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/// has no implicit format (e.g. AST is made up of a single literal).
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virtual ExpressionFormat getImplicitFormat() const {
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return ExpressionFormat();
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}
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};
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/// Class representing an unsigned literal in the AST of an expression.
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class ExpressionLiteral : public ExpressionAST {
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private:
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/// Actual value of the literal.
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uint64_t Value;
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public:
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/// Constructs a literal with the specified value.
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ExpressionLiteral(uint64_t Val) : Value(Val) {}
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/// \returns the literal's value.
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Expected<uint64_t> eval() const override { return Value; }
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};
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/// Class to represent an undefined variable error, which quotes that
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/// variable's name when printed.
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class UndefVarError : public ErrorInfo<UndefVarError> {
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private:
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StringRef VarName;
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public:
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static char ID;
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UndefVarError(StringRef VarName) : VarName(VarName) {}
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StringRef getVarName() const { return VarName; }
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std::error_code convertToErrorCode() const override {
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return inconvertibleErrorCode();
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}
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/// Print name of variable associated with this error.
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void log(raw_ostream &OS) const override {
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OS << "\"";
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OS.write_escaped(VarName) << "\"";
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}
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};
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/// Class representing an expression and its matching format.
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class Expression {
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private:
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/// Pointer to AST of the expression.
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std::unique_ptr<ExpressionAST> AST;
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/// Format to use (e.g. hex upper case letters) when matching the value.
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ExpressionFormat Format;
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public:
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/// Generic constructor for an expression represented by the given \p AST and
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/// whose matching format is \p Format.
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Expression(std::unique_ptr<ExpressionAST> AST, ExpressionFormat Format)
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: AST(std::move(AST)), Format(Format) {}
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/// \returns pointer to AST of the expression. Pointer is guaranteed to be
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/// valid as long as this object is.
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ExpressionAST *getAST() const { return AST.get(); }
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ExpressionFormat getFormat() const { return Format; }
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};
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/// Class representing a numeric variable and its associated current value.
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class NumericVariable {
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private:
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/// Name of the numeric variable.
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StringRef Name;
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/// Format to use for expressions using this variable without an explicit
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/// format.
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ExpressionFormat ImplicitFormat;
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/// Value of numeric variable, if defined, or None otherwise.
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Optional<uint64_t> Value;
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/// Line number where this variable is defined, or None if defined before
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/// input is parsed. Used to determine whether a variable is defined on the
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/// same line as a given use.
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Optional<size_t> DefLineNumber;
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public:
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/// Constructor for a variable \p Name with implicit format \p ImplicitFormat
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/// defined at line \p DefLineNumber or defined before input is parsed if
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/// \p DefLineNumber is None.
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explicit NumericVariable(StringRef Name, ExpressionFormat ImplicitFormat,
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Optional<size_t> DefLineNumber = None)
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: Name(Name), ImplicitFormat(ImplicitFormat),
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DefLineNumber(DefLineNumber) {}
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/// \returns name of this numeric variable.
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StringRef getName() const { return Name; }
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/// \returns implicit format of this numeric variable.
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ExpressionFormat getImplicitFormat() const { return ImplicitFormat; }
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/// \returns this variable's value.
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Optional<uint64_t> getValue() const { return Value; }
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/// Sets value of this numeric variable to \p NewValue.
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void setValue(uint64_t NewValue) { Value = NewValue; }
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/// Clears value of this numeric variable, regardless of whether it is
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/// currently defined or not.
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void clearValue() { Value = None; }
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/// \returns the line number where this variable is defined, if any, or None
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/// if defined before input is parsed.
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Optional<size_t> getDefLineNumber() const { return DefLineNumber; }
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};
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/// Class representing the use of a numeric variable in the AST of an
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/// expression.
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class NumericVariableUse : public ExpressionAST {
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private:
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/// Name of the numeric variable.
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StringRef Name;
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/// Pointer to the class instance for the variable this use is about.
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NumericVariable *Variable;
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public:
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NumericVariableUse(StringRef Name, NumericVariable *Variable)
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: Name(Name), Variable(Variable) {}
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/// \returns the value of the variable referenced by this instance.
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Expected<uint64_t> eval() const override;
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/// \returns implicit format of this numeric variable.
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ExpressionFormat getImplicitFormat() const override {
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return Variable->getImplicitFormat();
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}
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};
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/// Type of functions evaluating a given binary operation.
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using binop_eval_t = uint64_t (*)(uint64_t, uint64_t);
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/// Class representing a single binary operation in the AST of an expression.
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class BinaryOperation : public ExpressionAST {
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private:
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/// Left operand.
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std::unique_ptr<ExpressionAST> LeftOperand;
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/// Right operand.
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std::unique_ptr<ExpressionAST> RightOperand;
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/// Pointer to function that can evaluate this binary operation.
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binop_eval_t EvalBinop;
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public:
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BinaryOperation(binop_eval_t EvalBinop, std::unique_ptr<ExpressionAST> LeftOp,
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std::unique_ptr<ExpressionAST> RightOp)
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: EvalBinop(EvalBinop) {
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LeftOperand = std::move(LeftOp);
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RightOperand = std::move(RightOp);
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}
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/// Evaluates the value of the binary operation represented by this AST,
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/// using EvalBinop on the result of recursively evaluating the operands.
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/// \returns the expression value or an error if an undefined numeric
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/// variable is used in one of the operands.
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Expected<uint64_t> eval() const override;
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/// \returns the implicit format of this AST, if any, a format conflict if
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/// the implicit formats of the AST's components conflict, or no format if
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/// the AST has no implicit format (e.g. AST is made of a single literal).
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ExpressionFormat getImplicitFormat() const override;
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};
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class FileCheckPatternContext;
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/// Class representing a substitution to perform in the RegExStr string.
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class Substitution {
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protected:
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/// Pointer to a class instance holding, among other things, the table with
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/// the values of live string variables at the start of any given CHECK line.
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/// Used for substituting string variables with the text they were defined
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/// as. Expressions are linked to the numeric variables they use at
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/// parse time and directly access the value of the numeric variable to
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/// evaluate their value.
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FileCheckPatternContext *Context;
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/// The string that needs to be substituted for something else. For a
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/// string variable this is its name, otherwise this is the whole expression.
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StringRef FromStr;
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// Index in RegExStr of where to do the substitution.
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size_t InsertIdx;
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public:
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Substitution(FileCheckPatternContext *Context, StringRef VarName,
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size_t InsertIdx)
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: Context(Context), FromStr(VarName), InsertIdx(InsertIdx) {}
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virtual ~Substitution() = default;
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/// \returns the string to be substituted for something else.
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StringRef getFromString() const { return FromStr; }
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/// \returns the index where the substitution is to be performed in RegExStr.
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size_t getIndex() const { return InsertIdx; }
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/// \returns a string containing the result of the substitution represented
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/// by this class instance or an error if substitution failed.
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virtual Expected<std::string> getResult() const = 0;
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};
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class StringSubstitution : public Substitution {
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public:
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StringSubstitution(FileCheckPatternContext *Context, StringRef VarName,
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size_t InsertIdx)
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: Substitution(Context, VarName, InsertIdx) {}
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/// \returns the text that the string variable in this substitution matched
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/// when defined, or an error if the variable is undefined.
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Expected<std::string> getResult() const override;
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};
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class NumericSubstitution : public Substitution {
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private:
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/// Pointer to the class representing the expression whose value is to be
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/// substituted.
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std::unique_ptr<Expression> ExpressionPointer;
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public:
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NumericSubstitution(FileCheckPatternContext *Context, StringRef ExpressionStr,
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std::unique_ptr<Expression> ExpressionPointer,
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size_t InsertIdx)
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: Substitution(Context, ExpressionStr, InsertIdx),
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ExpressionPointer(std::move(ExpressionPointer)) {}
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/// \returns a string containing the result of evaluating the expression in
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/// this substitution, or an error if evaluation failed.
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Expected<std::string> getResult() const override;
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};
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//===----------------------------------------------------------------------===//
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// Pattern handling code.
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//===----------------------------------------------------------------------===//
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struct FileCheckDiag;
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/// Class holding the Pattern global state, shared by all patterns: tables
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/// holding values of variables and whether they are defined or not at any
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/// given time in the matching process.
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class FileCheckPatternContext {
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friend class Pattern;
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private:
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/// When matching a given pattern, this holds the value of all the string
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/// variables defined in previous patterns. In a pattern, only the last
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/// definition for a given variable is recorded in this table.
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/// Back-references are used for uses after any the other definition.
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StringMap<StringRef> GlobalVariableTable;
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/// Map of all string variables defined so far. Used at parse time to detect
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/// a name conflict between a numeric variable and a string variable when
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/// the former is defined on a later line than the latter.
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StringMap<bool> DefinedVariableTable;
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/// When matching a given pattern, this holds the pointers to the classes
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/// representing the numeric variables defined in previous patterns. When
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/// matching a pattern all definitions for that pattern are recorded in the
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/// NumericVariableDefs table in the Pattern instance of that pattern.
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StringMap<NumericVariable *> GlobalNumericVariableTable;
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/// Pointer to the class instance representing the @LINE pseudo variable for
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/// easily updating its value.
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NumericVariable *LineVariable = nullptr;
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/// Vector holding pointers to all parsed numeric variables. Used to
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/// automatically free them once they are guaranteed to no longer be used.
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std::vector<std::unique_ptr<NumericVariable>> NumericVariables;
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/// Vector holding pointers to all parsed expressions. Used to automatically
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/// free the expressions once they are guaranteed to no longer be used.
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std::vector<std::unique_ptr<Expression>> Expressions;
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/// Vector holding pointers to all substitutions. Used to automatically free
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/// them once they are guaranteed to no longer be used.
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std::vector<std::unique_ptr<Substitution>> Substitutions;
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public:
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/// \returns the value of string variable \p VarName or an error if no such
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/// variable has been defined.
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Expected<StringRef> getPatternVarValue(StringRef VarName);
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/// Defines string and numeric variables from definitions given on the
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/// command line, passed as a vector of [#]VAR=VAL strings in
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/// \p CmdlineDefines. \returns an error list containing diagnostics against
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/// \p SM for all definition parsing failures, if any, or Success otherwise.
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Error defineCmdlineVariables(std::vector<std::string> &CmdlineDefines,
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SourceMgr &SM);
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/// Create @LINE pseudo variable. Value is set when pattern are being
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/// matched.
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void createLineVariable();
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/// Undefines local variables (variables whose name does not start with a '$'
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/// sign), i.e. removes them from GlobalVariableTable and from
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/// GlobalNumericVariableTable and also clears the value of numeric
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/// variables.
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void clearLocalVars();
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private:
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/// Makes a new numeric variable and registers it for destruction when the
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/// context is destroyed.
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template <class... Types> NumericVariable *makeNumericVariable(Types... args);
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/// Makes a new string substitution and registers it for destruction when the
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/// context is destroyed.
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Substitution *makeStringSubstitution(StringRef VarName, size_t InsertIdx);
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/// Makes a new numeric substitution and registers it for destruction when
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/// the context is destroyed.
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Substitution *makeNumericSubstitution(StringRef ExpressionStr,
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std::unique_ptr<Expression> Expression,
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size_t InsertIdx);
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};
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/// Class to represent an error holding a diagnostic with location information
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/// used when printing it.
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class ErrorDiagnostic : public ErrorInfo<ErrorDiagnostic> {
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private:
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SMDiagnostic Diagnostic;
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public:
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static char ID;
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ErrorDiagnostic(SMDiagnostic &&Diag) : Diagnostic(Diag) {}
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std::error_code convertToErrorCode() const override {
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return inconvertibleErrorCode();
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}
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/// Print diagnostic associated with this error when printing the error.
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void log(raw_ostream &OS) const override { Diagnostic.print(nullptr, OS); }
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static Error get(const SourceMgr &SM, SMLoc Loc, const Twine &ErrMsg) {
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return make_error<ErrorDiagnostic>(
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SM.GetMessage(Loc, SourceMgr::DK_Error, ErrMsg));
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}
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static Error get(const SourceMgr &SM, StringRef Buffer, const Twine &ErrMsg) {
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return get(SM, SMLoc::getFromPointer(Buffer.data()), ErrMsg);
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}
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};
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class NotFoundError : public ErrorInfo<NotFoundError> {
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public:
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static char ID;
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std::error_code convertToErrorCode() const override {
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return inconvertibleErrorCode();
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}
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/// Print diagnostic associated with this error when printing the error.
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void log(raw_ostream &OS) const override {
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OS << "String not found in input";
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}
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};
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class Pattern {
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SMLoc PatternLoc;
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/// A fixed string to match as the pattern or empty if this pattern requires
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/// a regex match.
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StringRef FixedStr;
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/// A regex string to match as the pattern or empty if this pattern requires
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/// a fixed string to match.
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std::string RegExStr;
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/// Entries in this vector represent a substitution of a string variable or
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/// an expression in the RegExStr regex at match time. For example, in the
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/// case of a CHECK directive with the pattern "foo[[bar]]baz[[#N+1]]",
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/// RegExStr will contain "foobaz" and we'll get two entries in this vector
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/// that tells us to insert the value of string variable "bar" at offset 3
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/// and the value of expression "N+1" at offset 6.
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std::vector<Substitution *> Substitutions;
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/// Maps names of string variables defined in a pattern to the number of
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/// their parenthesis group in RegExStr capturing their last definition.
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///
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/// E.g. for the pattern "foo[[bar:.*]]baz([[bar]][[QUUX]][[bar:.*]])",
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/// RegExStr will be "foo(.*)baz(\1<quux value>(.*))" where <quux value> is
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/// the value captured for QUUX on the earlier line where it was defined, and
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/// VariableDefs will map "bar" to the third parenthesis group which captures
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/// the second definition of "bar".
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///
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/// Note: uses std::map rather than StringMap to be able to get the key when
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/// iterating over values.
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std::map<StringRef, unsigned> VariableDefs;
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/// Structure representing the definition of a numeric variable in a pattern.
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/// It holds the pointer to the class instance holding the value and matching
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/// format of the numeric variable whose value is being defined and the
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/// number of the parenthesis group in RegExStr to capture that value.
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struct NumericVariableMatch {
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/// Pointer to class instance holding the value and matching format of the
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/// numeric variable being defined.
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NumericVariable *DefinedNumericVariable;
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/// Number of the parenthesis group in RegExStr that captures the value of
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/// this numeric variable definition.
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unsigned CaptureParenGroup;
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};
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/// Holds the number of the parenthesis group in RegExStr and pointer to the
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/// corresponding NumericVariable class instance of all numeric variable
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/// definitions. Used to set the matched value of all those variables.
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StringMap<NumericVariableMatch> NumericVariableDefs;
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/// Pointer to a class instance holding the global state shared by all
|
|
/// patterns:
|
|
/// - separate tables with the values of live string and numeric variables
|
|
/// respectively at the start of any given CHECK line;
|
|
/// - table holding whether a string variable has been defined at any given
|
|
/// point during the parsing phase.
|
|
FileCheckPatternContext *Context;
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|
|
|
Check::FileCheckType CheckTy;
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|
|
|
/// Line number for this CHECK pattern or None if it is an implicit pattern.
|
|
/// Used to determine whether a variable definition is made on an earlier
|
|
/// line to the one with this CHECK.
|
|
Optional<size_t> LineNumber;
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|
|
|
/// Ignore case while matching if set to true.
|
|
bool IgnoreCase = false;
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|
|
|
public:
|
|
Pattern(Check::FileCheckType Ty, FileCheckPatternContext *Context,
|
|
Optional<size_t> Line = None)
|
|
: Context(Context), CheckTy(Ty), LineNumber(Line) {}
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|
|
|
/// \returns the location in source code.
|
|
SMLoc getLoc() const { return PatternLoc; }
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|
|
|
/// \returns the pointer to the global state for all patterns in this
|
|
/// FileCheck instance.
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|
FileCheckPatternContext *getContext() const { return Context; }
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|
|
|
/// \returns whether \p C is a valid first character for a variable name.
|
|
static bool isValidVarNameStart(char C);
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|
|
|
/// Parsing information about a variable.
|
|
struct VariableProperties {
|
|
StringRef Name;
|
|
bool IsPseudo;
|
|
};
|
|
|
|
/// Parses the string at the start of \p Str for a variable name. \returns
|
|
/// a VariableProperties structure holding the variable name and whether it
|
|
/// is the name of a pseudo variable, or an error holding a diagnostic
|
|
/// against \p SM if parsing fail. If parsing was successful, also strips
|
|
/// \p Str from the variable name.
|
|
static Expected<VariableProperties> parseVariable(StringRef &Str,
|
|
const SourceMgr &SM);
|
|
/// Parses \p Expr for a numeric substitution block at line \p LineNumber,
|
|
/// or before input is parsed if \p LineNumber is None. Parameter
|
|
/// \p IsLegacyLineExpr indicates whether \p Expr should be a legacy @LINE
|
|
/// expression and \p Context points to the class instance holding the live
|
|
/// string and numeric variables. \returns a pointer to the class instance
|
|
/// representing the expression whose value must be substitued, or an error
|
|
/// holding a diagnostic against \p SM if parsing fails. If substitution was
|
|
/// successful, sets \p DefinedNumericVariable to point to the class
|
|
/// representing the numeric variable defined in this numeric substitution
|
|
/// block, or None if this block does not define any variable.
|
|
static Expected<std::unique_ptr<Expression>> parseNumericSubstitutionBlock(
|
|
StringRef Expr, Optional<NumericVariable *> &DefinedNumericVariable,
|
|
bool IsLegacyLineExpr, Optional<size_t> LineNumber,
|
|
FileCheckPatternContext *Context, const SourceMgr &SM);
|
|
/// Parses the pattern in \p PatternStr and initializes this Pattern instance
|
|
/// accordingly.
|
|
///
|
|
/// \p Prefix provides which prefix is being matched, \p Req describes the
|
|
/// global options that influence the parsing such as whitespace
|
|
/// canonicalization, \p SM provides the SourceMgr used for error reports.
|
|
/// \returns true in case of an error, false otherwise.
|
|
bool parsePattern(StringRef PatternStr, StringRef Prefix, SourceMgr &SM,
|
|
const FileCheckRequest &Req);
|
|
/// Matches the pattern string against the input buffer \p Buffer
|
|
///
|
|
/// \returns the position that is matched or an error indicating why matching
|
|
/// failed. If there is a match, updates \p MatchLen with the size of the
|
|
/// matched string.
|
|
///
|
|
/// The GlobalVariableTable StringMap in the FileCheckPatternContext class
|
|
/// instance provides the current values of FileCheck string variables and is
|
|
/// updated if this match defines new values. Likewise, the
|
|
/// GlobalNumericVariableTable StringMap in the same class provides the
|
|
/// current values of FileCheck numeric variables and is updated if this
|
|
/// match defines new numeric values.
|
|
Expected<size_t> match(StringRef Buffer, size_t &MatchLen,
|
|
const SourceMgr &SM) const;
|
|
/// Prints the value of successful substitutions or the name of the undefined
|
|
/// string or numeric variables preventing a successful substitution.
|
|
void printSubstitutions(const SourceMgr &SM, StringRef Buffer,
|
|
SMRange MatchRange = None) const;
|
|
void printFuzzyMatch(const SourceMgr &SM, StringRef Buffer,
|
|
std::vector<FileCheckDiag> *Diags) const;
|
|
|
|
bool hasVariable() const {
|
|
return !(Substitutions.empty() && VariableDefs.empty());
|
|
}
|
|
|
|
Check::FileCheckType getCheckTy() const { return CheckTy; }
|
|
|
|
int getCount() const { return CheckTy.getCount(); }
|
|
|
|
private:
|
|
bool AddRegExToRegEx(StringRef RS, unsigned &CurParen, SourceMgr &SM);
|
|
void AddBackrefToRegEx(unsigned BackrefNum);
|
|
/// Computes an arbitrary estimate for the quality of matching this pattern
|
|
/// at the start of \p Buffer; a distance of zero should correspond to a
|
|
/// perfect match.
|
|
unsigned computeMatchDistance(StringRef Buffer) const;
|
|
/// Finds the closing sequence of a regex variable usage or definition.
|
|
///
|
|
/// \p Str has to point in the beginning of the definition (right after the
|
|
/// opening sequence). \p SM holds the SourceMgr used for error reporting.
|
|
/// \returns the offset of the closing sequence within Str, or npos if it
|
|
/// was not found.
|
|
static size_t FindRegexVarEnd(StringRef Str, SourceMgr &SM);
|
|
|
|
/// Parses \p Expr for the name of a numeric variable to be defined at line
|
|
/// \p LineNumber, or before input is parsed if \p LineNumber is None.
|
|
/// \returns a pointer to the class instance representing that variable,
|
|
/// creating it if needed, or an error holding a diagnostic against \p SM
|
|
/// should defining such a variable be invalid.
|
|
static Expected<NumericVariable *> parseNumericVariableDefinition(
|
|
StringRef &Expr, FileCheckPatternContext *Context,
|
|
Optional<size_t> LineNumber, ExpressionFormat ImplicitFormat,
|
|
const SourceMgr &SM);
|
|
/// Parses \p Name as a (pseudo if \p IsPseudo is true) numeric variable use
|
|
/// at line \p LineNumber, or before input is parsed if \p LineNumber is
|
|
/// None. Parameter \p Context points to the class instance holding the live
|
|
/// string and numeric variables. \returns the pointer to the class instance
|
|
/// representing that variable if successful, or an error holding a
|
|
/// diagnostic against \p SM otherwise.
|
|
static Expected<std::unique_ptr<NumericVariableUse>> parseNumericVariableUse(
|
|
StringRef Name, bool IsPseudo, Optional<size_t> LineNumber,
|
|
FileCheckPatternContext *Context, const SourceMgr &SM);
|
|
enum class AllowedOperand { LineVar, LegacyLiteral, Any };
|
|
/// Parses \p Expr for use of a numeric operand at line \p LineNumber, or
|
|
/// before input is parsed if \p LineNumber is None. Accepts both literal
|
|
/// values and numeric variables, depending on the value of \p AO. Parameter
|
|
/// \p Context points to the class instance holding the live string and
|
|
/// numeric variables. \returns the class representing that operand in the
|
|
/// AST of the expression or an error holding a diagnostic against \p SM
|
|
/// otherwise.
|
|
static Expected<std::unique_ptr<ExpressionAST>>
|
|
parseNumericOperand(StringRef &Expr, AllowedOperand AO,
|
|
Optional<size_t> LineNumber,
|
|
FileCheckPatternContext *Context, const SourceMgr &SM);
|
|
/// Parses \p Expr for a binary operation at line \p LineNumber, or before
|
|
/// input is parsed if \p LineNumber is None. The left operand of this binary
|
|
/// operation is given in \p LeftOp and \p IsLegacyLineExpr indicates whether
|
|
/// we are parsing a legacy @LINE expression. Parameter \p Context points to
|
|
/// the class instance holding the live string and numeric variables.
|
|
/// \returns the class representing the binary operation in the AST of the
|
|
/// expression, or an error holding a diagnostic against \p SM otherwise.
|
|
static Expected<std::unique_ptr<ExpressionAST>>
|
|
parseBinop(StringRef &Expr, std::unique_ptr<ExpressionAST> LeftOp,
|
|
bool IsLegacyLineExpr, Optional<size_t> LineNumber,
|
|
FileCheckPatternContext *Context, const SourceMgr &SM);
|
|
};
|
|
|
|
//===----------------------------------------------------------------------===//
|
|
// Check Strings.
|
|
//===----------------------------------------------------------------------===//
|
|
|
|
/// A check that we found in the input file.
|
|
struct FileCheckString {
|
|
/// The pattern to match.
|
|
Pattern Pat;
|
|
|
|
/// Which prefix name this check matched.
|
|
StringRef Prefix;
|
|
|
|
/// The location in the match file that the check string was specified.
|
|
SMLoc Loc;
|
|
|
|
/// All of the strings that are disallowed from occurring between this match
|
|
/// string and the previous one (or start of file).
|
|
std::vector<Pattern> DagNotStrings;
|
|
|
|
FileCheckString(const Pattern &P, StringRef S, SMLoc L)
|
|
: Pat(P), Prefix(S), Loc(L) {}
|
|
|
|
/// Matches check string and its "not strings" and/or "dag strings".
|
|
size_t Check(const SourceMgr &SM, StringRef Buffer, bool IsLabelScanMode,
|
|
size_t &MatchLen, FileCheckRequest &Req,
|
|
std::vector<FileCheckDiag> *Diags) const;
|
|
|
|
/// Verifies that there is a single line in the given \p Buffer. Errors are
|
|
/// reported against \p SM.
|
|
bool CheckNext(const SourceMgr &SM, StringRef Buffer) const;
|
|
/// Verifies that there is no newline in the given \p Buffer. Errors are
|
|
/// reported against \p SM.
|
|
bool CheckSame(const SourceMgr &SM, StringRef Buffer) const;
|
|
/// Verifies that none of the strings in \p NotStrings are found in the given
|
|
/// \p Buffer. Errors are reported against \p SM and diagnostics recorded in
|
|
/// \p Diags according to the verbosity level set in \p Req.
|
|
bool CheckNot(const SourceMgr &SM, StringRef Buffer,
|
|
const std::vector<const Pattern *> &NotStrings,
|
|
const FileCheckRequest &Req,
|
|
std::vector<FileCheckDiag> *Diags) const;
|
|
/// Matches "dag strings" and their mixed "not strings".
|
|
size_t CheckDag(const SourceMgr &SM, StringRef Buffer,
|
|
std::vector<const Pattern *> &NotStrings,
|
|
const FileCheckRequest &Req,
|
|
std::vector<FileCheckDiag> *Diags) const;
|
|
};
|
|
|
|
} // namespace llvm
|
|
|
|
#endif
|