//===- LookupResult.h -------------------------------------------*- C++ -*-===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// #ifndef LLVM_DEBUGINFO_GSYM_LOOKUPRESULT_H #define LLVM_DEBUGINFO_GSYM_LOOKUPRESULT_H #include "llvm/ADT/AddressRanges.h" #include "llvm/ADT/StringRef.h" #include "llvm/Support/Compiler.h" #include #include namespace llvm { class raw_ostream; namespace gsym { struct SourceLocation { StringRef Name; ///< Function or symbol name. StringRef Dir; ///< Line entry source file directory path. StringRef Base; ///< Line entry source file basename. uint32_t Line = 0; ///< Source file line number. uint32_t Offset = 0; ///< Byte size offset within the named function. }; inline bool operator==(const SourceLocation &LHS, const SourceLocation &RHS) { return LHS.Name == RHS.Name && LHS.Dir == RHS.Dir && LHS.Base == RHS.Base && LHS.Line == RHS.Line && LHS.Offset == RHS.Offset; } LLVM_ABI raw_ostream &operator<<(raw_ostream &OS, const SourceLocation &R); using SourceLocations = std::vector; struct LookupResult { uint64_t LookupAddr = 0; ///< The address that this lookup pertains to. AddressRange FuncRange; ///< The concrete function address range. StringRef FuncName; ///< The concrete function name that contains LookupAddr. /// The source locations that match this address. This information will only /// be filled in if the FunctionInfo contains a line table. If an address is /// for a concrete function with no inlined functions, this array will have /// one entry. If an address points to an inline function, there will be one /// SourceLocation for each inlined function with the last entry pointing to /// the concrete function itself. This allows one address to generate /// multiple locations and allows unwinding of inline call stacks. The /// deepest inline function will appear at index zero in the source locations /// array, and the concrete function will appear at the end of the array. SourceLocations Locations; /// Function name regex patterns associated with a call site at the lookup /// address. This vector will be populated when: /// 1. The lookup address matches a call site's return address in a function /// 2. The call site has associated regex patterns that describe what /// functions can be called from that location /// /// The regex patterns can be used to validate function calls during runtime /// checking or symbolication. For example: /// - Patterns like "^foo$" indicate the call site can only call function /// "foo" /// - Patterns like "^std::" indicate the call site can call any function in /// the std namespace /// - Multiple patterns allow matching against a set of allowed functions /// /// The patterns are stored as string references into the GSYM string table. /// This information is typically loaded from: /// - DWARF debug info call site entries /// - External YAML files specifying call site patterns /// - Other debug info formats that encode call site constraints /// /// The patterns will be empty if: /// - The lookup address is not at the return address of a call site /// - The call site has no associated function name constraints /// - Call site info was not included when creating the GSYM file std::vector CallSiteFuncRegex; LLVM_ABI std::string getSourceFile(uint32_t Index) const; }; inline bool operator==(const LookupResult &LHS, const LookupResult &RHS) { if (LHS.LookupAddr != RHS.LookupAddr) return false; if (LHS.FuncRange != RHS.FuncRange) return false; if (LHS.FuncName != RHS.FuncName) return false; if (LHS.CallSiteFuncRegex != RHS.CallSiteFuncRegex) return false; return LHS.Locations == RHS.Locations; } LLVM_ABI raw_ostream &operator<<(raw_ostream &OS, const LookupResult &R); } // namespace gsym } // namespace llvm #endif // LLVM_DEBUGINFO_GSYM_LOOKUPRESULT_H