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https://github.com/RPCS3/llvm-mirror.git
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1f6ecd860a
llvm-svn: 285049
146 lines
5.9 KiB
C++
146 lines
5.9 KiB
C++
//===- FuzzerMutate.h - Internal header for the Fuzzer ----------*- C++ -* ===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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// fuzzer::MutationDispatcher
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_FUZZER_MUTATE_H
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#define LLVM_FUZZER_MUTATE_H
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#include "FuzzerDefs.h"
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#include "FuzzerDictionary.h"
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#include "FuzzerRandom.h"
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namespace fuzzer {
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class MutationDispatcher {
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public:
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MutationDispatcher(Random &Rand, const FuzzingOptions &Options);
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~MutationDispatcher() {}
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/// Indicate that we are about to start a new sequence of mutations.
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void StartMutationSequence();
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/// Print the current sequence of mutations.
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void PrintMutationSequence();
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/// Indicate that the current sequence of mutations was successfull.
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void RecordSuccessfulMutationSequence();
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/// Mutates data by invoking user-provided mutator.
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size_t Mutate_Custom(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Mutates data by invoking user-provided crossover.
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size_t Mutate_CustomCrossOver(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Mutates data by shuffling bytes.
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size_t Mutate_ShuffleBytes(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Mutates data by erasing bytes.
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size_t Mutate_EraseBytes(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Mutates data by inserting a byte.
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size_t Mutate_InsertByte(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Mutates data by inserting several repeated bytes.
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size_t Mutate_InsertRepeatedBytes(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Mutates data by chanding one byte.
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size_t Mutate_ChangeByte(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Mutates data by chanding one bit.
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size_t Mutate_ChangeBit(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Mutates data by copying/inserting a part of data into a different place.
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size_t Mutate_CopyPart(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Mutates data by adding a word from the manual dictionary.
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size_t Mutate_AddWordFromManualDictionary(uint8_t *Data, size_t Size,
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size_t MaxSize);
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/// Mutates data by adding a word from the temporary automatic dictionary.
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size_t Mutate_AddWordFromTemporaryAutoDictionary(uint8_t *Data, size_t Size,
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size_t MaxSize);
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/// Mutates data by adding a word from the TORC.
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size_t Mutate_AddWordFromTORC(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Mutates data by adding a word from the persistent automatic dictionary.
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size_t Mutate_AddWordFromPersistentAutoDictionary(uint8_t *Data, size_t Size,
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size_t MaxSize);
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/// Tries to find an ASCII integer in Data, changes it to another ASCII int.
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size_t Mutate_ChangeASCIIInteger(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Change a 1-, 2-, 4-, or 8-byte integer in interesting ways.
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size_t Mutate_ChangeBinaryInteger(uint8_t *Data, size_t Size, size_t MaxSize);
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/// CrossOver Data with some other element of the corpus.
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size_t Mutate_CrossOver(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Applies one of the configured mutations.
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/// Returns the new size of data which could be up to MaxSize.
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size_t Mutate(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Applies one of the default mutations. Provided as a service
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/// to mutation authors.
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size_t DefaultMutate(uint8_t *Data, size_t Size, size_t MaxSize);
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/// Creates a cross-over of two pieces of Data, returns its size.
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size_t CrossOver(const uint8_t *Data1, size_t Size1, const uint8_t *Data2,
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size_t Size2, uint8_t *Out, size_t MaxOutSize);
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void AddWordToManualDictionary(const Word &W);
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void AddWordToAutoDictionary(DictionaryEntry DE);
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void ClearAutoDictionary();
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void PrintRecommendedDictionary();
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void SetCorpus(const InputCorpus *Corpus) { this->Corpus = Corpus; }
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Random &GetRand() { return Rand; }
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private:
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struct Mutator {
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size_t (MutationDispatcher::*Fn)(uint8_t *Data, size_t Size, size_t Max);
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const char *Name;
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};
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size_t AddWordFromDictionary(Dictionary &D, uint8_t *Data, size_t Size,
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size_t MaxSize);
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size_t MutateImpl(uint8_t *Data, size_t Size, size_t MaxSize,
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const std::vector<Mutator> &Mutators);
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size_t InsertPartOf(const uint8_t *From, size_t FromSize, uint8_t *To,
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size_t ToSize, size_t MaxToSize);
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size_t CopyPartOf(const uint8_t *From, size_t FromSize, uint8_t *To,
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size_t ToSize);
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size_t ApplyDictionaryEntry(uint8_t *Data, size_t Size, size_t MaxSize,
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DictionaryEntry &DE);
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template <class T>
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DictionaryEntry MakeDictionaryEntryFromCMP(T Arg1, T Arg2,
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const uint8_t *Data, size_t Size);
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Random &Rand;
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const FuzzingOptions &Options;
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// Dictionary provided by the user via -dict=DICT_FILE.
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Dictionary ManualDictionary;
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// Temporary dictionary modified by the fuzzer itself,
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// recreated periodically.
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Dictionary TempAutoDictionary;
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// Persistent dictionary modified by the fuzzer, consists of
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// entries that led to successfull discoveries in the past mutations.
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Dictionary PersistentAutoDictionary;
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std::vector<Mutator> CurrentMutatorSequence;
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std::vector<DictionaryEntry *> CurrentDictionaryEntrySequence;
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static const size_t kCmpDictionaryEntriesDequeSize = 16;
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DictionaryEntry CmpDictionaryEntriesDeque[kCmpDictionaryEntriesDequeSize];
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size_t CmpDictionaryEntriesDequeIdx = 0;
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const InputCorpus *Corpus = nullptr;
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std::vector<uint8_t> MutateInPlaceHere;
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std::vector<Mutator> Mutators;
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std::vector<Mutator> DefaultMutators;
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};
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} // namespace fuzzer
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#endif // LLVM_FUZZER_MUTATE_H
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