Multisig M/N functionality core tests added
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9f3963e823
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9acf42d371
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@ -544,6 +544,7 @@ inline bool do_replay_file(const std::string& filename)
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}
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return do_replay_events<t_test_class>(events);
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}
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//--------------------------------------------------------------------------
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#define GENERATE_ACCOUNT(account) \
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cryptonote::account_base account; \
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@ -556,47 +557,7 @@ inline bool do_replay_file(const std::string& filename)
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{ \
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for (size_t msidx = 0; msidx < total; ++msidx) \
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account[msidx].generate(); \
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std::unordered_set<crypto::public_key> all_multisig_keys; \
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std::vector<std::vector<crypto::secret_key>> view_keys(total); \
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std::vector<std::vector<crypto::public_key>> spend_keys(total); \
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for (size_t msidx = 0; msidx < total; ++msidx) \
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{ \
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for (size_t msidx_inner = 0; msidx_inner < total; ++msidx_inner) \
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{ \
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if (msidx_inner != msidx) \
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{ \
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crypto::secret_key vkh = cryptonote::get_multisig_blinded_secret_key(account[msidx_inner].get_keys().m_view_secret_key); \
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view_keys[msidx].push_back(vkh); \
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crypto::secret_key skh = cryptonote::get_multisig_blinded_secret_key(account[msidx_inner].get_keys().m_spend_secret_key); \
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crypto::public_key pskh; \
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crypto::secret_key_to_public_key(skh, pskh); \
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spend_keys[msidx].push_back(pskh); \
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} \
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} \
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} \
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for (size_t msidx = 0; msidx < total; ++msidx) \
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{ \
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std::vector<crypto::secret_key> multisig_keys; \
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crypto::secret_key spend_skey; \
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crypto::public_key spend_pkey; \
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if (threshold == total) \
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cryptonote::generate_multisig_N_N(account[msidx].get_keys(), spend_keys[msidx], multisig_keys, (rct::key&)spend_skey, (rct::key&)spend_pkey); \
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else \
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cryptonote::generate_multisig_N1_N(account[msidx].get_keys(), spend_keys[msidx], multisig_keys, (rct::key&)spend_skey, (rct::key&)spend_pkey); \
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crypto::secret_key view_skey = cryptonote::generate_multisig_view_secret_key(account[msidx].get_keys().m_view_secret_key, view_keys[msidx]); \
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account[msidx].make_multisig(view_skey, spend_skey, spend_pkey, multisig_keys); \
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for (const auto &k: multisig_keys) \
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all_multisig_keys.insert(rct::rct2pk(rct::scalarmultBase(rct::sk2rct(k)))); \
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} \
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if (threshold < total) \
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{ \
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std::vector<crypto::public_key> spend_public_keys; \
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for (const auto &k: all_multisig_keys) \
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spend_public_keys.push_back(k); \
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crypto::public_key spend_pkey = cryptonote::generate_multisig_M_N_spend_public_key(spend_public_keys); \
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for (size_t msidx = 0; msidx < total; ++msidx) \
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account[msidx].finalize_multisig(spend_pkey); \
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} \
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make_multisig_accounts(account, threshold); \
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} while(0)
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#define MAKE_ACCOUNT(VEC_EVENTS, account) \
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@ -223,6 +223,16 @@ int main(int argc, char* argv[])
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GENERATE_AND_PLAY(gen_multisig_tx_invalid_33_1__no_threshold);
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GENERATE_AND_PLAY(gen_multisig_tx_invalid_33_1_2_no_threshold);
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GENERATE_AND_PLAY(gen_multisig_tx_invalid_33_1_3_no_threshold);
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GENERATE_AND_PLAY(gen_multisig_tx_valid_24_1_2);
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GENERATE_AND_PLAY(gen_multisig_tx_valid_24_1_2_many_inputs);
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GENERATE_AND_PLAY(gen_multisig_tx_valid_25_1_2);
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GENERATE_AND_PLAY(gen_multisig_tx_valid_25_1_2_many_inputs);
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GENERATE_AND_PLAY(gen_multisig_tx_valid_48_1_234);
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GENERATE_AND_PLAY(gen_multisig_tx_valid_48_1_234_many_inputs);
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GENERATE_AND_PLAY(gen_multisig_tx_valid_24_1_no_signers);
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GENERATE_AND_PLAY(gen_multisig_tx_valid_25_1_no_signers);
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GENERATE_AND_PLAY(gen_multisig_tx_valid_48_1_no_signers);
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GENERATE_AND_PLAY(gen_multisig_tx_valid_48_1_23_no_threshold);
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GENERATE_AND_PLAY(gen_bp_tx_valid_1);
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GENERATE_AND_PLAY(gen_bp_tx_invalid_1_1);
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@ -41,6 +41,87 @@ using namespace cryptonote;
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//#define NO_MULTISIG
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void make_multisig_accounts(std::vector<cryptonote::account_base>& account, uint32_t threshold)
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{
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std::vector<crypto::secret_key> all_view_keys;
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std::vector<std::vector<crypto::public_key>> derivations(account.size());
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//storage for all set of multisig derivations and spend public key (in first round)
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std::unordered_set<crypto::public_key> exchanging_keys;
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for (size_t msidx = 0; msidx < account.size(); ++msidx)
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{
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crypto::secret_key vkh = cryptonote::get_multisig_blinded_secret_key(account[msidx].get_keys().m_view_secret_key);
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all_view_keys.push_back(vkh);
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crypto::secret_key skh = cryptonote::get_multisig_blinded_secret_key(account[msidx].get_keys().m_spend_secret_key);
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crypto::public_key pskh;
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crypto::secret_key_to_public_key(skh, pskh);
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derivations[msidx].push_back(pskh);
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exchanging_keys.insert(pskh);
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}
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uint32_t roundsTotal = 1;
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if (threshold < account.size())
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roundsTotal = account.size() - threshold;
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//secret multisig keys of every account
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std::vector<std::vector<crypto::secret_key>> multisig_keys(account.size());
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std::vector<crypto::secret_key> spend_skey(account.size());
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std::vector<crypto::public_key> spend_pkey(account.size());
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for (uint32_t round = 0; round < roundsTotal; ++round)
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{
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std::unordered_set<crypto::public_key> roundKeys;
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for (size_t msidx = 0; msidx < account.size(); ++msidx)
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{
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// subtracting one's keys from set of all unique keys is the same as key exchange
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auto myKeys = exchanging_keys;
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for (const auto& d: derivations[msidx])
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myKeys.erase(d);
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if (threshold == account.size())
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{
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cryptonote::generate_multisig_N_N(account[msidx].get_keys(), std::vector<crypto::public_key>(myKeys.begin(), myKeys.end()), multisig_keys[msidx], (rct::key&)spend_skey[msidx], (rct::key&)spend_pkey[msidx]);
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}
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else
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{
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derivations[msidx] = cryptonote::generate_multisig_derivations(account[msidx].get_keys(), std::vector<crypto::public_key>(myKeys.begin(), myKeys.end()));
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roundKeys.insert(derivations[msidx].begin(), derivations[msidx].end());
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}
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}
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exchanging_keys = roundKeys;
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roundKeys.clear();
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}
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std::unordered_set<crypto::public_key> all_multisig_keys;
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for (size_t msidx = 0; msidx < account.size(); ++msidx)
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{
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std::unordered_set<crypto::secret_key> view_keys(all_view_keys.begin(), all_view_keys.end());
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view_keys.erase(all_view_keys[msidx]);
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crypto::secret_key view_skey = cryptonote::generate_multisig_view_secret_key(account[msidx].get_keys().m_view_secret_key, std::vector<secret_key>(view_keys.begin(), view_keys.end()));
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if (threshold < account.size())
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{
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multisig_keys[msidx] = cryptonote::calculate_multisig_keys(derivations[msidx]);
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spend_skey[msidx] = cryptonote::calculate_multisig_signer_key(multisig_keys[msidx]);
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}
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account[msidx].make_multisig(view_skey, spend_skey[msidx], spend_pkey[msidx], multisig_keys[msidx]);
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for (const auto &k: multisig_keys[msidx]) {
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all_multisig_keys.insert(rct::rct2pk(rct::scalarmultBase(rct::sk2rct(k))));
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}
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}
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if (threshold < account.size())
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{
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std::vector<crypto::public_key> public_keys(std::vector<crypto::public_key>(all_multisig_keys.begin(), all_multisig_keys.end()));
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crypto::public_key spend_pkey = cryptonote::generate_multisig_M_N_spend_public_key(public_keys);
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for (size_t msidx = 0; msidx < account.size(); ++msidx)
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account[msidx].finalize_multisig(spend_pkey);
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}
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}
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//----------------------------------------------------------------------------------------------------------------------
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// Tests
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@ -55,7 +136,6 @@ bool gen_multisig_tx_validation_base::generate_with(std::vector<test_event_entry
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CHECK_AND_ASSERT_MES(total >= 2, false, "Bad scheme");
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CHECK_AND_ASSERT_MES(threshold <= total, false, "Bad scheme");
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CHECK_AND_ASSERT_MES(threshold >= total - 1, false, "Unsupported scheme");
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#ifdef NO_MULTISIG
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CHECK_AND_ASSERT_MES(total <= 5, false, "Unsupported scheme");
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#endif
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@ -480,6 +560,48 @@ bool gen_multisig_tx_valid_89_3_1245789::generate(std::vector<test_event_entry>&
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return generate_with(events, 2, mixin, amount_paid, true, 8, 9, 3, {1, 2, 4, 5, 7, 8, 9}, NULL, NULL);
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}
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bool gen_multisig_tx_valid_24_1_2::generate(std::vector<test_event_entry>& events) const
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{
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const size_t mixin = 4;
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const uint64_t amount_paid = 10000;
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return generate_with(events, 2, mixin, amount_paid, true, 2, 4, 1, {2}, NULL, NULL);
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}
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bool gen_multisig_tx_valid_24_1_2_many_inputs::generate(std::vector<test_event_entry>& events) const
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{
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const size_t mixin = 4;
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const uint64_t amount_paid = 10000;
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return generate_with(events, 4, mixin, amount_paid, true, 2, 4, 1, {2}, NULL, NULL);
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}
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bool gen_multisig_tx_valid_25_1_2::generate(std::vector<test_event_entry>& events) const
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{
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const size_t mixin = 4;
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const uint64_t amount_paid = 10000;
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return generate_with(events, 2, mixin, amount_paid, true, 2, 5, 1, {2}, NULL, NULL);
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}
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bool gen_multisig_tx_valid_25_1_2_many_inputs::generate(std::vector<test_event_entry>& events) const
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{
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const size_t mixin = 4;
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const uint64_t amount_paid = 10000;
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return generate_with(events, 4, mixin, amount_paid, true, 2, 5, 1, {2}, NULL, NULL);
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}
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bool gen_multisig_tx_valid_48_1_234::generate(std::vector<test_event_entry>& events) const
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{
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const size_t mixin = 4;
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const uint64_t amount_paid = 10000;
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return generate_with(events, 2, mixin, amount_paid, true, 4, 8, 1, {2, 3, 4}, NULL, NULL);
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}
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bool gen_multisig_tx_valid_48_1_234_many_inputs::generate(std::vector<test_event_entry>& events) const
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{
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const size_t mixin = 4;
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const uint64_t amount_paid = 10000;
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return generate_with(events, 4, mixin, amount_paid, true, 4, 8, 1, {2, 3, 4}, NULL, NULL);
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}
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bool gen_multisig_tx_invalid_22_1__no_threshold::generate(std::vector<test_event_entry>& events) const
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{
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const size_t mixin = 4;
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@ -521,3 +643,31 @@ bool gen_multisig_tx_invalid_45_5_23_no_threshold::generate(std::vector<test_eve
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const uint64_t amount_paid = 10000;
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return generate_with(events, 2, mixin, amount_paid, false, 4, 5, 5, {2, 3}, NULL, NULL);
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}
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bool gen_multisig_tx_valid_24_1_no_signers::generate(std::vector<test_event_entry>& events) const
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{
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const size_t mixin = 4;
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const uint64_t amount_paid = 10000;
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return generate_with(events, 2, mixin, amount_paid, false, 2, 4, 1, {}, NULL, NULL);
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}
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bool gen_multisig_tx_valid_25_1_no_signers::generate(std::vector<test_event_entry>& events) const
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{
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const size_t mixin = 4;
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const uint64_t amount_paid = 10000;
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return generate_with(events, 2, mixin, amount_paid, false, 2, 5, 1, {}, NULL, NULL);
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}
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bool gen_multisig_tx_valid_48_1_no_signers::generate(std::vector<test_event_entry>& events) const
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{
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const size_t mixin = 4;
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const uint64_t amount_paid = 10000;
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return generate_with(events, 2, mixin, amount_paid, false, 4, 8, 1, {}, NULL, NULL);
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}
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bool gen_multisig_tx_valid_48_1_23_no_threshold::generate(std::vector<test_event_entry>& events) const
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{
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const size_t mixin = 4;
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const uint64_t amount_paid = 10000;
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return generate_with(events, 2, mixin, amount_paid, false, 4, 8, 1, {2, 3}, NULL, NULL);
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}
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@ -161,6 +161,42 @@ struct gen_multisig_tx_valid_89_3_1245789: public gen_multisig_tx_validation_bas
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};
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template<> struct get_test_options<gen_multisig_tx_valid_89_3_1245789>: public get_test_options<gen_multisig_tx_validation_base> {};
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struct gen_multisig_tx_valid_24_1_2: public gen_multisig_tx_validation_base
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{
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bool generate(std::vector<test_event_entry>& events) const;
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};
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template<> struct get_test_options<gen_multisig_tx_valid_24_1_2>: public get_test_options<gen_multisig_tx_validation_base> {};
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struct gen_multisig_tx_valid_24_1_2_many_inputs: public gen_multisig_tx_validation_base
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{
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bool generate(std::vector<test_event_entry>& events) const;
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};
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template<> struct get_test_options<gen_multisig_tx_valid_24_1_2_many_inputs>: public get_test_options<gen_multisig_tx_validation_base> {};
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struct gen_multisig_tx_valid_25_1_2: public gen_multisig_tx_validation_base
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{
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bool generate(std::vector<test_event_entry>& events) const;
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};
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template<> struct get_test_options<gen_multisig_tx_valid_25_1_2>: public get_test_options<gen_multisig_tx_validation_base> {};
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struct gen_multisig_tx_valid_25_1_2_many_inputs: public gen_multisig_tx_validation_base
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{
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bool generate(std::vector<test_event_entry>& events) const;
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};
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template<> struct get_test_options<gen_multisig_tx_valid_25_1_2_many_inputs>: public get_test_options<gen_multisig_tx_validation_base> {};
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struct gen_multisig_tx_valid_48_1_234: public gen_multisig_tx_validation_base
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{
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bool generate(std::vector<test_event_entry>& events) const;
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};
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template<> struct get_test_options<gen_multisig_tx_valid_48_1_234>: public get_test_options<gen_multisig_tx_validation_base> {};
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struct gen_multisig_tx_valid_48_1_234_many_inputs: public gen_multisig_tx_validation_base
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{
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bool generate(std::vector<test_event_entry>& events) const;
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};
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template<> struct get_test_options<gen_multisig_tx_valid_48_1_234_many_inputs>: public get_test_options<gen_multisig_tx_validation_base> {};
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// invalid
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struct gen_multisig_tx_invalid_22_1__no_threshold: public gen_multisig_tx_validation_base
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{
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bool generate(std::vector<test_event_entry>& events) const;
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};
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template<> struct get_test_options<gen_multisig_tx_invalid_45_5_23_no_threshold>: public get_test_options<gen_multisig_tx_validation_base> {};
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struct gen_multisig_tx_valid_24_1_no_signers: public gen_multisig_tx_validation_base
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{
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bool generate(std::vector<test_event_entry>& events) const;
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};
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template<> struct get_test_options<gen_multisig_tx_valid_24_1_no_signers>: public get_test_options<gen_multisig_tx_validation_base> {};
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struct gen_multisig_tx_valid_25_1_no_signers: public gen_multisig_tx_validation_base
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{
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bool generate(std::vector<test_event_entry>& events) const;
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};
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template<> struct get_test_options<gen_multisig_tx_valid_25_1_no_signers>: public get_test_options<gen_multisig_tx_validation_base> {};
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struct gen_multisig_tx_valid_48_1_no_signers: public gen_multisig_tx_validation_base
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{
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bool generate(std::vector<test_event_entry>& events) const;
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};
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template<> struct get_test_options<gen_multisig_tx_valid_48_1_no_signers>: public get_test_options<gen_multisig_tx_validation_base> {};
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struct gen_multisig_tx_valid_48_1_23_no_threshold: public gen_multisig_tx_validation_base
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{
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bool generate(std::vector<test_event_entry>& events) const;
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};
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template<> struct get_test_options<gen_multisig_tx_valid_48_1_23_no_threshold>: public get_test_options<gen_multisig_tx_validation_base> {};
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