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178 lines
6.5 KiB
C++
178 lines
6.5 KiB
C++
// Copyright (c) 2019-2020 The Bitcoin Core developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include <chainparams.h>
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#include <compressor.h>
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#include <core_io.h>
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#include <core_memusage.h>
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#include <policy/policy.h>
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#include <pubkey.h>
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#include <script/descriptor.h>
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#include <script/interpreter.h>
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#include <script/script.h>
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#include <script/script_error.h>
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#include <script/sign.h>
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#include <script/signingprovider.h>
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#include <script/standard.h>
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#include <streams.h>
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#include <test/fuzz/FuzzedDataProvider.h>
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#include <test/fuzz/fuzz.h>
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#include <test/fuzz/util.h>
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#include <univalue.h>
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#include <util/memory.h>
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#include <algorithm>
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#include <cassert>
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#include <cstdint>
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#include <optional>
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#include <string>
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#include <vector>
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void initialize_script()
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{
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// Fuzzers using pubkey must hold an ECCVerifyHandle.
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static const ECCVerifyHandle verify_handle;
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SelectParams(CBaseChainParams::REGTEST);
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}
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FUZZ_TARGET_INIT(script, initialize_script)
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{
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FuzzedDataProvider fuzzed_data_provider(buffer.data(), buffer.size());
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const std::optional<CScript> script_opt = ConsumeDeserializable<CScript>(fuzzed_data_provider);
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if (!script_opt) return;
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const CScript script{*script_opt};
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std::vector<unsigned char> compressed;
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if (CompressScript(script, compressed)) {
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const unsigned int size = compressed[0];
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compressed.erase(compressed.begin());
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assert(size <= 5);
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CScript decompressed_script;
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const bool ok = DecompressScript(decompressed_script, size, compressed);
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assert(ok);
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assert(script == decompressed_script);
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}
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CTxDestination address;
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(void)ExtractDestination(script, address);
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TxoutType type_ret;
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std::vector<CTxDestination> addresses;
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int required_ret;
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(void)ExtractDestinations(script, type_ret, addresses, required_ret);
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const FlatSigningProvider signing_provider;
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(void)InferDescriptor(script, signing_provider);
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(void)IsSegWitOutput(signing_provider, script);
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(void)IsSolvable(signing_provider, script);
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TxoutType which_type;
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bool is_standard_ret = IsStandard(script, which_type);
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if (!is_standard_ret) {
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assert(which_type == TxoutType::NONSTANDARD ||
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which_type == TxoutType::NULL_DATA ||
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which_type == TxoutType::MULTISIG);
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}
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if (which_type == TxoutType::NONSTANDARD) {
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assert(!is_standard_ret);
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}
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if (which_type == TxoutType::NULL_DATA) {
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assert(script.IsUnspendable());
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}
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if (script.IsUnspendable()) {
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assert(which_type == TxoutType::NULL_DATA ||
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which_type == TxoutType::NONSTANDARD);
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}
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(void)RecursiveDynamicUsage(script);
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std::vector<std::vector<unsigned char>> solutions;
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(void)Solver(script, solutions);
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(void)script.HasValidOps();
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(void)script.IsPayToScriptHash();
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(void)script.IsPayToWitnessScriptHash();
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(void)script.IsPushOnly();
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(void)script.GetSigOpCount(/* fAccurate= */ false);
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(void)FormatScript(script);
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(void)ScriptToAsmStr(script, false);
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(void)ScriptToAsmStr(script, true);
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UniValue o1(UniValue::VOBJ);
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ScriptPubKeyToUniv(script, o1, true);
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UniValue o2(UniValue::VOBJ);
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ScriptPubKeyToUniv(script, o2, false);
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UniValue o3(UniValue::VOBJ);
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ScriptToUniv(script, o3, true);
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UniValue o4(UniValue::VOBJ);
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ScriptToUniv(script, o4, false);
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{
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const std::vector<uint8_t> bytes = ConsumeRandomLengthByteVector(fuzzed_data_provider);
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// DecompressScript(..., ..., bytes) is not guaranteed to be defined if the bytes vector is too short
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if (bytes.size() >= 32) {
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CScript decompressed_script;
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DecompressScript(decompressed_script, fuzzed_data_provider.ConsumeIntegral<unsigned int>(), bytes);
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}
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}
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const std::optional<CScript> other_script = ConsumeDeserializable<CScript>(fuzzed_data_provider);
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if (other_script) {
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{
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CScript script_mut{script};
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(void)FindAndDelete(script_mut, *other_script);
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}
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const std::vector<std::string> random_string_vector = ConsumeRandomLengthStringVector(fuzzed_data_provider);
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const uint32_t u32{fuzzed_data_provider.ConsumeIntegral<uint32_t>()};
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const uint32_t flags{u32 | SCRIPT_VERIFY_P2SH};
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{
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CScriptWitness wit;
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for (const auto& s : random_string_vector) {
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wit.stack.emplace_back(s.begin(), s.end());
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}
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(void)CountWitnessSigOps(script, *other_script, &wit, flags);
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wit.SetNull();
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}
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}
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(void)GetOpName(ConsumeOpcodeType(fuzzed_data_provider));
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(void)ScriptErrorString(static_cast<ScriptError>(fuzzed_data_provider.ConsumeIntegralInRange<int>(0, SCRIPT_ERR_ERROR_COUNT)));
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{
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const std::vector<uint8_t> bytes = ConsumeRandomLengthByteVector(fuzzed_data_provider);
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CScript append_script{bytes.begin(), bytes.end()};
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append_script << fuzzed_data_provider.ConsumeIntegral<int64_t>();
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append_script << ConsumeOpcodeType(fuzzed_data_provider);
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append_script << CScriptNum{fuzzed_data_provider.ConsumeIntegral<int64_t>()};
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append_script << ConsumeRandomLengthByteVector(fuzzed_data_provider);
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}
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{
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WitnessUnknown witness_unknown_1{};
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witness_unknown_1.version = fuzzed_data_provider.ConsumeIntegral<int>();
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const std::vector<uint8_t> witness_unknown_program_1 = fuzzed_data_provider.ConsumeBytes<uint8_t>(40);
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witness_unknown_1.length = witness_unknown_program_1.size();
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std::copy(witness_unknown_program_1.begin(), witness_unknown_program_1.end(), witness_unknown_1.program);
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WitnessUnknown witness_unknown_2{};
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witness_unknown_2.version = fuzzed_data_provider.ConsumeIntegral<int>();
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const std::vector<uint8_t> witness_unknown_program_2 = fuzzed_data_provider.ConsumeBytes<uint8_t>(40);
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witness_unknown_2.length = witness_unknown_program_2.size();
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std::copy(witness_unknown_program_2.begin(), witness_unknown_program_2.end(), witness_unknown_2.program);
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(void)(witness_unknown_1 == witness_unknown_2);
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(void)(witness_unknown_1 < witness_unknown_2);
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}
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{
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const CTxDestination tx_destination_1 = ConsumeTxDestination(fuzzed_data_provider);
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const CTxDestination tx_destination_2 = ConsumeTxDestination(fuzzed_data_provider);
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(void)(tx_destination_1 == tx_destination_2);
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(void)(tx_destination_1 < tx_destination_2);
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}
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}
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