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tests: dumping and minimizing of script assets data
This adds a --dumptests flag to the feature_taproot.py test, to dump all its generated test cases to files, in a format compatible with the script_assets_test unit test. A fuzzer for said format is added as well, whose primary purpose is coverage-based minimization of those dumps.
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4 changed files with 258 additions and 1 deletions
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@ -129,6 +129,7 @@ FUZZ_TARGETS = \
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test/fuzz/script_deserialize \
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test/fuzz/script_flags \
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test/fuzz/script_interpreter \
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test/fuzz/script_assets_test_minimizer \
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test/fuzz/script_ops \
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test/fuzz/script_sigcache \
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test/fuzz/script_sign \
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@ -1082,6 +1083,12 @@ test_fuzz_script_interpreter_LDADD = $(FUZZ_SUITE_LD_COMMON)
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test_fuzz_script_interpreter_LDFLAGS = $(FUZZ_SUITE_LDFLAGS_COMMON)
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test_fuzz_script_interpreter_SOURCES = test/fuzz/script_interpreter.cpp
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test_fuzz_script_assets_test_minimizer_CPPFLAGS = $(AM_CPPFLAGS) $(BITCOIN_INCLUDES)
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test_fuzz_script_assets_test_minimizer_CXXFLAGS = $(AM_CXXFLAGS) $(PIE_FLAGS)
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test_fuzz_script_assets_test_minimizer_LDADD = $(FUZZ_SUITE_LD_COMMON)
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test_fuzz_script_assets_test_minimizer_LDFLAGS = $(RELDFLAGS) $(AM_LDFLAGS) $(LIBTOOL_APP_LDFLAGS)
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test_fuzz_script_assets_test_minimizer_SOURCES = test/fuzz/script_assets_test_minimizer.cpp
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test_fuzz_script_ops_CPPFLAGS = $(AM_CPPFLAGS) $(BITCOIN_INCLUDES)
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test_fuzz_script_ops_CXXFLAGS = $(AM_CXXFLAGS) $(PIE_FLAGS)
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test_fuzz_script_ops_LDADD = $(FUZZ_SUITE_LD_COMMON)
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200
src/test/fuzz/script_assets_test_minimizer.cpp
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src/test/fuzz/script_assets_test_minimizer.cpp
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@ -0,0 +1,200 @@
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// Copyright (c) 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 <test/fuzz/fuzz.h>
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#include <primitives/transaction.h>
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#include <pubkey.h>
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#include <script/interpreter.h>
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#include <serialize.h>
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#include <streams.h>
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#include <univalue.h>
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#include <util/strencodings.h>
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#include <boost/algorithm/string.hpp>
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#include <cstdint>
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#include <string>
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#include <vector>
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// This fuzz "test" can be used to minimize test cases for script_assets_test in
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// src/test/script_tests.cpp. While it written as a fuzz test, and can be used as such,
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// fuzzing the inputs is unlikely to construct useful test cases.
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//
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// Instead, it is primarily intended to be run on a test set that was generated
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// externally, for example using test/functional/feature_taproot.py's --dumptests mode.
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// The minimized set can then be concatenated together, surrounded by '[' and ']',
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// and used as the script_assets_test.json input to the script_assets_test unit test:
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//
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// (normal build)
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// $ mkdir dump
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// $ for N in $(seq 1 10); do TEST_DUMP_DIR=dump test/functional/feature_taproot --dumptests; done
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// $ ...
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//
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// (fuzz test build)
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// $ mkdir dump-min
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// $ ./src/test/fuzz/script_assets_test_minimizer -merge=1 dump-min/ dump/
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// $ (echo -en '[\n'; cat dump-min/* | head -c -2; echo -en '\n]') >script_assets_test.json
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namespace {
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std::vector<unsigned char> CheckedParseHex(const std::string& str)
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{
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if (str.size() && !IsHex(str)) throw std::runtime_error("Non-hex input '" + str + "'");
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return ParseHex(str);
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}
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CScript ScriptFromHex(const std::string& str)
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{
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std::vector<unsigned char> data = CheckedParseHex(str);
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return CScript(data.begin(), data.end());
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}
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CMutableTransaction TxFromHex(const std::string& str)
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{
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CMutableTransaction tx;
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try {
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VectorReader(SER_DISK, SERIALIZE_TRANSACTION_NO_WITNESS, CheckedParseHex(str), 0) >> tx;
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} catch (const std::ios_base::failure&) {
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throw std::runtime_error("Tx deserialization failure");
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}
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return tx;
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}
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std::vector<CTxOut> TxOutsFromJSON(const UniValue& univalue)
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{
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if (!univalue.isArray()) throw std::runtime_error("Prevouts must be array");
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std::vector<CTxOut> prevouts;
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for (size_t i = 0; i < univalue.size(); ++i) {
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CTxOut txout;
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try {
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VectorReader(SER_DISK, 0, CheckedParseHex(univalue[i].get_str()), 0) >> txout;
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} catch (const std::ios_base::failure&) {
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throw std::runtime_error("Prevout invalid format");
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}
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prevouts.push_back(std::move(txout));
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}
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return prevouts;
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}
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CScriptWitness ScriptWitnessFromJSON(const UniValue& univalue)
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{
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if (!univalue.isArray()) throw std::runtime_error("Script witness is not array");
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CScriptWitness scriptwitness;
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for (size_t i = 0; i < univalue.size(); ++i) {
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auto bytes = CheckedParseHex(univalue[i].get_str());
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scriptwitness.stack.push_back(std::move(bytes));
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}
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return scriptwitness;
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}
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const std::map<std::string, unsigned int> FLAG_NAMES = {
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{std::string("P2SH"), (unsigned int)SCRIPT_VERIFY_P2SH},
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{std::string("DERSIG"), (unsigned int)SCRIPT_VERIFY_DERSIG},
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{std::string("NULLDUMMY"), (unsigned int)SCRIPT_VERIFY_NULLDUMMY},
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{std::string("CHECKLOCKTIMEVERIFY"), (unsigned int)SCRIPT_VERIFY_CHECKLOCKTIMEVERIFY},
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{std::string("CHECKSEQUENCEVERIFY"), (unsigned int)SCRIPT_VERIFY_CHECKSEQUENCEVERIFY},
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{std::string("WITNESS"), (unsigned int)SCRIPT_VERIFY_WITNESS},
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{std::string("TAPROOT"), (unsigned int)SCRIPT_VERIFY_TAPROOT},
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};
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std::vector<unsigned int> AllFlags()
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{
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std::vector<unsigned int> ret;
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for (unsigned int i = 0; i < 128; ++i) {
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unsigned int flag = 0;
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if (i & 1) flag |= SCRIPT_VERIFY_P2SH;
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if (i & 2) flag |= SCRIPT_VERIFY_DERSIG;
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if (i & 4) flag |= SCRIPT_VERIFY_NULLDUMMY;
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if (i & 8) flag |= SCRIPT_VERIFY_CHECKLOCKTIMEVERIFY;
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if (i & 16) flag |= SCRIPT_VERIFY_CHECKSEQUENCEVERIFY;
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if (i & 32) flag |= SCRIPT_VERIFY_WITNESS;
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if (i & 64) flag |= SCRIPT_VERIFY_TAPROOT;
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// SCRIPT_VERIFY_WITNESS requires SCRIPT_VERIFY_P2SH
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if (flag & SCRIPT_VERIFY_WITNESS && !(flag & SCRIPT_VERIFY_P2SH)) continue;
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// SCRIPT_VERIFY_TAPROOT requires SCRIPT_VERIFY_WITNESS
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if (flag & SCRIPT_VERIFY_TAPROOT && !(flag & SCRIPT_VERIFY_WITNESS)) continue;
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ret.push_back(flag);
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}
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return ret;
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}
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const std::vector<unsigned int> ALL_FLAGS = AllFlags();
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unsigned int ParseScriptFlags(const std::string& str)
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{
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if (str.empty()) return 0;
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unsigned int flags = 0;
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std::vector<std::string> words;
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boost::algorithm::split(words, str, boost::algorithm::is_any_of(","));
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for (const std::string& word : words)
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{
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auto it = FLAG_NAMES.find(word);
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if (it == FLAG_NAMES.end()) throw std::runtime_error("Unknown verification flag " + word);
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flags |= it->second;
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}
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return flags;
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}
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void Test(const std::string& str)
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{
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UniValue test;
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if (!test.read(str) || !test.isObject()) throw std::runtime_error("Non-object test input");
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CMutableTransaction tx = TxFromHex(test["tx"].get_str());
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const std::vector<CTxOut> prevouts = TxOutsFromJSON(test["prevouts"]);
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if (prevouts.size() != tx.vin.size()) throw std::runtime_error("Incorrect number of prevouts");
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size_t idx = test["index"].get_int64();
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if (idx >= tx.vin.size()) throw std::runtime_error("Invalid index");
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unsigned int test_flags = ParseScriptFlags(test["flags"].get_str());
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bool final = test.exists("final") && test["final"].get_bool();
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if (test.exists("success")) {
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tx.vin[idx].scriptSig = ScriptFromHex(test["success"]["scriptSig"].get_str());
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tx.vin[idx].scriptWitness = ScriptWitnessFromJSON(test["success"]["witness"]);
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PrecomputedTransactionData txdata;
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txdata.Init(tx, std::vector<CTxOut>(prevouts));
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MutableTransactionSignatureChecker txcheck(&tx, idx, prevouts[idx].nValue, txdata);
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for (const auto flags : ALL_FLAGS) {
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// "final": true tests are valid for all flags. Others are only valid with flags that are
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// a subset of test_flags.
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if (final || ((flags & test_flags) == flags)) {
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(void)VerifyScript(tx.vin[idx].scriptSig, prevouts[idx].scriptPubKey, &tx.vin[idx].scriptWitness, flags, txcheck, nullptr);
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}
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}
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}
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if (test.exists("failure")) {
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tx.vin[idx].scriptSig = ScriptFromHex(test["failure"]["scriptSig"].get_str());
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tx.vin[idx].scriptWitness = ScriptWitnessFromJSON(test["failure"]["witness"]);
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PrecomputedTransactionData txdata;
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txdata.Init(tx, std::vector<CTxOut>(prevouts));
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MutableTransactionSignatureChecker txcheck(&tx, idx, prevouts[idx].nValue, txdata);
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for (const auto flags : ALL_FLAGS) {
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// If a test is supposed to fail with test_flags, it should also fail with any superset thereof.
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if ((flags & test_flags) == test_flags) {
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(void)VerifyScript(tx.vin[idx].scriptSig, prevouts[idx].scriptPubKey, &tx.vin[idx].scriptWitness, flags, txcheck, nullptr);
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}
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}
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}
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}
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ECCVerifyHandle handle;
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}
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void test_one_input(const std::vector<uint8_t>& buffer)
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{
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if (buffer.size() < 2 || buffer.back() != '\n' || buffer[buffer.size() - 2] != ',') return;
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const std::string str((const char*)buffer.data(), buffer.size() - 2);
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try {
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Test(str);
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} catch (const std::runtime_error&) {}
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}
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@ -1715,6 +1715,9 @@ static void AssetTest(const UniValue& test)
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BOOST_AUTO_TEST_CASE(script_assets_test)
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{
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// See src/test/fuzz/script_assets_test_minimizer.cpp for information on how to generate
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// the script_assets_test.json file used by this test.
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const char* dir = std::getenv("DIR_UNIT_TEST_DATA");
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BOOST_WARN_MESSAGE(dir != nullptr, "Variable DIR_UNIT_TEST_DATA unset, skipping script_assets_test");
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if (dir == nullptr) return;
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@ -82,8 +82,11 @@ from test_framework.address import (
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hash160,
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sha256,
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)
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from collections import namedtuple
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from collections import OrderedDict, namedtuple
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from io import BytesIO
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import json
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import hashlib
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import os
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import random
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# === Framework for building spending transactions. ===
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return spenders
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# Consensus validation flags to use in dumps for tests with "legacy/" or "inactive/" prefix.
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LEGACY_FLAGS = "P2SH,DERSIG,CHECKLOCKTIMEVERIFY,CHECKSEQUENCEVERIFY,WITNESS,NULLDUMMY"
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# Consensus validation flags to use in dumps for all other tests.
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TAPROOT_FLAGS = "P2SH,DERSIG,CHECKLOCKTIMEVERIFY,CHECKSEQUENCEVERIFY,WITNESS,NULLDUMMY,TAPROOT"
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def dump_json_test(tx, input_utxos, idx, success, failure):
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spender = input_utxos[idx].spender
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# Determine flags to dump
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flags = LEGACY_FLAGS if spender.comment.startswith("legacy/") or spender.comment.startswith("inactive/") else TAPROOT_FLAGS
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fields = [
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("tx", tx.serialize().hex()),
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("prevouts", [x.output.serialize().hex() for x in input_utxos]),
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("index", idx),
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("flags", flags),
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("comment", spender.comment)
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]
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# The "final" field indicates that a spend should be always valid, even with more validation flags enabled
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# than the listed ones. Use standardness as a proxy for this (which gives a conservative underestimate).
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if spender.is_standard:
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fields.append(("final", True))
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def dump_witness(wit):
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return OrderedDict([("scriptSig", wit[0].hex()), ("witness", [x.hex() for x in wit[1]])])
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if success is not None:
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fields.append(("success", dump_witness(success)))
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if failure is not None:
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fields.append(("failure", dump_witness(failure)))
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# Write the dump to $TEST_DUMP_DIR/x/xyz... where x,y,z,... are the SHA1 sum of the dump (which makes the
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# file naming scheme compatible with fuzzing infrastructure).
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dump = json.dumps(OrderedDict(fields)) + ",\n"
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sha1 = hashlib.sha1(dump.encode("utf-8")).hexdigest()
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dirname = os.environ.get("TEST_DUMP_DIR", ".") + ("/%s" % sha1[0])
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os.makedirs(dirname, exist_ok=True)
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with open(dirname + ("/%s" % sha1), 'w', encoding="utf8") as f:
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f.write(dump)
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# Data type to keep track of UTXOs, where they were created, and how to spend them.
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UTXOData = namedtuple('UTXOData', 'outpoint,output,spender')
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class TaprootTest(BitcoinTestFramework):
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def add_options(self, parser):
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parser.add_argument("--dumptests", dest="dump_tests", default=False, action="store_true",
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help="Dump generated test cases to directory set by TEST_DUMP_DIR environment variable")
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def skip_test_if_missing_module(self):
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self.skip_if_no_wallet()
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if not input_utxos[i].spender.no_fail:
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fail = fn(tx, i, [utxo.output for utxo in input_utxos], False)
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input_data.append((fail, success))
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if self.options.dump_tests:
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dump_json_test(tx, input_utxos, i, success, fail)
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# Sign each input incorrectly once on each complete signing pass, except the very last.
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for fail_input in list(range(len(input_utxos))) + [None]:
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