//------------------------------------------------------------------------------ /* This file is part of clio: https://github.com/XRPLF/clio Copyright (c) 2024, the clio developers. Permission to use, copy, modify, and distribute this software for any purpose with or without fee is hereby granted, provided that the above copyright notice and this permission notice appear in all copies. THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ //============================================================================== #include "data/Types.hpp" #include "rpc/Errors.hpp" #include "rpc/common/AnyHandler.hpp" #include "rpc/common/Types.hpp" #include "rpc/handlers/MPTHolders.hpp" #include "util/HandlerBaseTestFixture.hpp" #include "util/TestObject.hpp" #include #include #include #include #include #include #include #include #include #include #include #include #include using namespace rpc; using namespace data; namespace json = boost::json; using namespace testing; namespace { constexpr auto kHOLDE_R1_ACCOUNT = "rrnAZCqMahreZrKMcZU3t2DZ6yUndT4ubN"; constexpr auto kHOLDE_R2_ACCOUNT = "rEiNkzogdHEzUxPfsri5XSMqtXUixf2Yx"; constexpr auto kLEDGER_HASH = "4BC50C9B0D8515D3EAAE1E74B29A95804346C491EE1A95BF25E4AAB854A6A652"; constexpr auto kMPT_ID = "000004C463C52827307480341125DA0577DEFC38405B0E3E"; std::string const kMPT_OUT1 = R"({ "account": "rrnAZCqMahreZrKMcZU3t2DZ6yUndT4ubN", "flags": 0, "mpt_amount": "1", "mptoken_index": "D137F2E5A5767A06CB7A8F060ADE442A30CFF95028E1AF4B8767E3A56877205A" })"; std::string const kMPT_OUT2 = R"({ "account": "rEiNkzogdHEzUxPfsri5XSMqtXUixf2Yx", "flags": 0, "mpt_amount": "1", "mptoken_index": "36D91DEE5EFE4A93119A8B84C944A528F2B444329F3846E49FE921040DE17E65" })"; } // namespace struct RPCMPTHoldersHandlerTest : HandlerBaseTest { RPCMPTHoldersHandlerTest() { backend_->setRange(10, 30); } }; TEST_F(RPCMPTHoldersHandlerTest, NonHexLedgerHash) { runSpawn([this](boost::asio::yield_context yield) { auto const handler = AnyHandler{MPTHoldersHandler{backend_}}; auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "ledger_hash": "xxx" }})", kMPT_ID )); auto const output = handler.process(input, Context{.yield = std::ref(yield)}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "invalidParams"); EXPECT_EQ(err.at("error_message").as_string(), "ledger_hashMalformed"); }); } TEST_F(RPCMPTHoldersHandlerTest, NonStringLedgerHash) { runSpawn([this](boost::asio::yield_context yield) { auto const handler = AnyHandler{MPTHoldersHandler{backend_}}; auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "ledger_hash": 123 }})", kMPT_ID )); auto const output = handler.process(input, Context{.yield = std::ref(yield)}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "invalidParams"); EXPECT_EQ(err.at("error_message").as_string(), "ledger_hashNotString"); }); } TEST_F(RPCMPTHoldersHandlerTest, InvalidLedgerIndexString) { runSpawn([this](boost::asio::yield_context yield) { auto const handler = AnyHandler{MPTHoldersHandler{backend_}}; auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "ledger_index": "notvalidated" }})", kMPT_ID )); auto const output = handler.process(input, Context{.yield = std::ref(yield)}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "invalidParams"); EXPECT_EQ(err.at("error_message").as_string(), "ledgerIndexMalformed"); }); } // error case: issuer invalid format, length is incorrect TEST_F(RPCMPTHoldersHandlerTest, MPTIDInvalidFormat) { runSpawn([this](boost::asio::yield_context yield) { auto const handler = AnyHandler{MPTHoldersHandler{backend_}}; auto const input = json::parse(R"({ "mpt_issuance_id": "xxx" })"); auto const output = handler.process(input, Context{.yield = std::ref(yield)}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "invalidParams"); EXPECT_EQ(err.at("error_message").as_string(), "mpt_issuance_idMalformed"); }); } // error case: issuer missing TEST_F(RPCMPTHoldersHandlerTest, MPTIDMissing) { runSpawn([this](boost::asio::yield_context yield) { auto const handler = AnyHandler{MPTHoldersHandler{backend_}}; auto const input = json::parse(R"({})"); auto const output = handler.process(input, Context{.yield = std::ref(yield)}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "invalidParams"); EXPECT_EQ(err.at("error_message").as_string(), "Required field 'mpt_issuance_id' missing"); }); } // error case: issuer invalid format TEST_F(RPCMPTHoldersHandlerTest, MPTIDNotString) { runSpawn([this](boost::asio::yield_context yield) { auto const handler = AnyHandler{MPTHoldersHandler{backend_}}; auto const input = json::parse(R"({ "mpt_issuance_id": 12 })"); auto const output = handler.process(input, Context{.yield = std::ref(yield)}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "invalidParams"); EXPECT_EQ(err.at("error_message").as_string(), "mpt_issuance_idNotString"); }); } // error case: invalid marker format TEST_F(RPCMPTHoldersHandlerTest, MarkerInvalidFormat) { runSpawn([this](boost::asio::yield_context yield) { auto const handler = AnyHandler{MPTHoldersHandler{backend_}}; auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "marker": "xxx" }})", kMPT_ID )); auto const output = handler.process(input, Context{.yield = std::ref(yield)}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "invalidParams"); EXPECT_EQ(err.at("error_message").as_string(), "markerMalformed"); }); } // error case: invalid marker type TEST_F(RPCMPTHoldersHandlerTest, MarkerNotString) { runSpawn([this](boost::asio::yield_context yield) { auto const handler = AnyHandler{MPTHoldersHandler{backend_}}; auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "marker": 1 }})", kMPT_ID )); auto const output = handler.process(input, Context{.yield = std::ref(yield)}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "invalidParams"); EXPECT_EQ(err.at("error_message").as_string(), "markerNotString"); }); } // error case ledger non exist via hash TEST_F(RPCMPTHoldersHandlerTest, NonExistLedgerViaLedgerHash) { // mock fetchLedgerByHash return empty EXPECT_CALL(*backend_, fetchLedgerByHash).Times(1); ON_CALL(*backend_, fetchLedgerByHash(ripple::uint256{kLEDGER_HASH}, _)) .WillByDefault(Return(std::optional{})); auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "ledger_hash": "{}" }})", kMPT_ID, kLEDGER_HASH )); runSpawn([&, this](boost::asio::yield_context yield) { auto const handler = AnyHandler{MPTHoldersHandler{backend_}}; auto const output = handler.process(input, Context{.yield = std::ref(yield)}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "lgrNotFound"); EXPECT_EQ(err.at("error_message").as_string(), "ledgerNotFound"); }); } // error case ledger non exist via index TEST_F(RPCMPTHoldersHandlerTest, NonExistLedgerViaLedgerStringIndex) { // mock fetchLedgerBySequence return empty EXPECT_CALL(*backend_, fetchLedgerBySequence).WillOnce(Return(std::optional{})); auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "ledger_index": "4" }})", kMPT_ID )); runSpawn([&, this](boost::asio::yield_context yield) { auto const handler = AnyHandler{MPTHoldersHandler{backend_}}; auto const output = handler.process(input, Context{.yield = std::ref(yield)}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "lgrNotFound"); EXPECT_EQ(err.at("error_message").as_string(), "ledgerNotFound"); }); } TEST_F(RPCMPTHoldersHandlerTest, NonExistLedgerViaLedgerIntIndex) { // mock fetchLedgerBySequence return empty EXPECT_CALL(*backend_, fetchLedgerBySequence).WillOnce(Return(std::optional{})); auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "ledger_index": 4 }})", kMPT_ID )); runSpawn([&, this](boost::asio::yield_context yield) { auto const handler = AnyHandler{MPTHoldersHandler{backend_}}; auto const output = handler.process(input, Context{.yield = std::ref(yield)}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "lgrNotFound"); EXPECT_EQ(err.at("error_message").as_string(), "ledgerNotFound"); }); } // error case ledger > max seq via hash // idk why this case will happen in reality TEST_F(RPCMPTHoldersHandlerTest, NonExistLedgerViaLedgerHash2) { // mock fetchLedgerByHash return ledger but seq is 31 > 30 auto ledgerinfo = createLedgerHeader(kLEDGER_HASH, 31); ON_CALL(*backend_, fetchLedgerByHash(ripple::uint256{kLEDGER_HASH}, _)).WillByDefault(Return(ledgerinfo)); EXPECT_CALL(*backend_, fetchLedgerByHash).Times(1); auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "ledger_hash": "{}" }})", kMPT_ID, kLEDGER_HASH )); runSpawn([&, this](boost::asio::yield_context yield) { auto const handler = AnyHandler{MPTHoldersHandler{backend_}}; auto const output = handler.process(input, Context{.yield = std::ref(yield)}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "lgrNotFound"); EXPECT_EQ(err.at("error_message").as_string(), "ledgerNotFound"); }); } // error case ledger > max seq via index TEST_F(RPCMPTHoldersHandlerTest, NonExistLedgerViaLedgerIndex2) { // no need to check from db,call fetchLedgerBySequence 0 time // differ from previous logic EXPECT_CALL(*backend_, fetchLedgerBySequence).Times(0); auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "ledger_index": "31" }})", kMPT_ID )); runSpawn([&, this](boost::asio::yield_context yield) { auto const handler = AnyHandler{MPTHoldersHandler{backend_}}; auto const output = handler.process(input, Context{.yield = std::ref(yield)}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "lgrNotFound"); EXPECT_EQ(err.at("error_message").as_string(), "ledgerNotFound"); }); } // normal case when MPT does not exist TEST_F(RPCMPTHoldersHandlerTest, MPTNotFound) { auto ledgerinfo = createLedgerHeader(kLEDGER_HASH, 30); ON_CALL(*backend_, fetchLedgerByHash(ripple::uint256{kLEDGER_HASH}, _)).WillByDefault(Return(ledgerinfo)); EXPECT_CALL(*backend_, fetchLedgerByHash).Times(1); ON_CALL(*backend_, doFetchLedgerObject).WillByDefault(Return(std::optional{})); EXPECT_CALL(*backend_, doFetchLedgerObject).Times(1); auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "ledger_hash": "{}" }})", kMPT_ID, kLEDGER_HASH )); runSpawn([&, this](boost::asio::yield_context yield) { auto handler = AnyHandler{MPTHoldersHandler{this->backend_}}; auto const output = handler.process(input, Context{.yield = yield}); ASSERT_FALSE(output); auto const err = rpc::makeError(output.result.error()); EXPECT_EQ(err.at("error").as_string(), "objectNotFound"); EXPECT_EQ(err.at("error_message").as_string(), "objectNotFound"); }); } // normal case when mpt has one holder TEST_F(RPCMPTHoldersHandlerTest, DefaultParameters) { auto const currentOutput = fmt::format( R"({{ "mpt_issuance_id": "{}", "limit":50, "ledger_index": 30, "mptokens": [{}], "validated": true }})", kMPT_ID, kMPT_OUT1 ); auto ledgerInfo = createLedgerHeader(kLEDGER_HASH, 30); EXPECT_CALL(*backend_, fetchLedgerBySequence).WillOnce(Return(ledgerInfo)); auto const issuanceKk = ripple::keylet::mptIssuance(ripple::uint192(kMPT_ID)).key; ON_CALL(*backend_, doFetchLedgerObject(issuanceKk, 30, _)).WillByDefault(Return(Blob{'f', 'a', 'k', 'e'})); auto const mptoken = createMpTokenObject(kHOLDE_R1_ACCOUNT, ripple::uint192(kMPT_ID)); std::vector const mpts = {mptoken.getSerializer().peekData()}; ON_CALL(*backend_, fetchMPTHolders).WillByDefault(Return(MPTHoldersAndCursor{.mptokens = mpts, .cursor = {}})); EXPECT_CALL( *backend_, fetchMPTHolders(ripple::uint192(kMPT_ID), testing::_, testing::Eq(std::nullopt), Const(30), testing::_) ) .Times(1); auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}" }})", kMPT_ID )); runSpawn([&, this](auto& yield) { auto handler = AnyHandler{MPTHoldersHandler{this->backend_}}; auto const output = handler.process(input, Context{yield}); ASSERT_TRUE(output); EXPECT_EQ(json::parse(currentOutput), *output.result); }); } TEST_F(RPCMPTHoldersHandlerTest, CustomAmounts) { // it's not possible to have locked_amount to be greater than mpt_amount, // we are simply testing the response parsing of the api auto const currentOutput = fmt::format( R"({{ "mpt_issuance_id": "{}", "limit":50, "ledger_index": 30, "mptokens": [{{ "account": "rrnAZCqMahreZrKMcZU3t2DZ6yUndT4ubN", "flags": 0, "mpt_amount": "0", "mptoken_index": "D137F2E5A5767A06CB7A8F060ADE442A30CFF95028E1AF4B8767E3A56877205A" }}], "validated": true }})", kMPT_ID ); auto ledgerInfo = createLedgerHeader(kLEDGER_HASH, 30); EXPECT_CALL(*backend_, fetchLedgerBySequence).WillOnce(Return(ledgerInfo)); auto const issuanceKk = ripple::keylet::mptIssuance(ripple::uint192(kMPT_ID)).key; ON_CALL(*backend_, doFetchLedgerObject(issuanceKk, 30, _)).WillByDefault(Return(Blob{'f', 'a', 'k', 'e'})); auto const mptoken = createMpTokenObject(kHOLDE_R1_ACCOUNT, ripple::uint192(kMPT_ID), 0); std::vector const mpts = {mptoken.getSerializer().peekData()}; ON_CALL(*backend_, fetchMPTHolders).WillByDefault(Return(MPTHoldersAndCursor{.mptokens = mpts, .cursor = {}})); EXPECT_CALL( *backend_, fetchMPTHolders(ripple::uint192(kMPT_ID), testing::_, testing::Eq(std::nullopt), Const(30), testing::_) ) .Times(1); auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}" }})", kMPT_ID )); runSpawn([&, this](auto& yield) { auto handler = AnyHandler{MPTHoldersHandler{this->backend_}}; auto const output = handler.process(input, Context{yield}); ASSERT_TRUE(output); EXPECT_EQ(json::parse(currentOutput), *output.result); }); } TEST_F(RPCMPTHoldersHandlerTest, SpecificLedgerIndex) { auto const specificLedger = 20; auto const currentOutput = fmt::format( R"({{ "mpt_issuance_id": "{}", "limit":50, "ledger_index": {}, "mptokens": [{}], "validated": true }})", kMPT_ID, specificLedger, kMPT_OUT1 ); auto ledgerInfo = createLedgerHeader(kLEDGER_HASH, specificLedger); ON_CALL(*backend_, fetchLedgerBySequence(specificLedger, _)).WillByDefault(Return(ledgerInfo)); EXPECT_CALL(*backend_, fetchLedgerBySequence).Times(1); auto const issuanceKk = ripple::keylet::mptIssuance(ripple::uint192(kMPT_ID)).key; ON_CALL(*backend_, doFetchLedgerObject(issuanceKk, specificLedger, _)) .WillByDefault(Return(Blob{'f', 'a', 'k', 'e'})); auto const mptoken = createMpTokenObject(kHOLDE_R1_ACCOUNT, ripple::uint192(kMPT_ID)); std::vector const mpts = {mptoken.getSerializer().peekData()}; ON_CALL(*backend_, fetchMPTHolders).WillByDefault(Return(MPTHoldersAndCursor{.mptokens = mpts, .cursor = {}})); EXPECT_CALL( *backend_, fetchMPTHolders( ripple::uint192(kMPT_ID), testing::_, testing::Eq(std::nullopt), Const(specificLedger), testing::_ ) ) .Times(1); auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "ledger_index": {} }})", kMPT_ID, specificLedger )); runSpawn([&, this](auto& yield) { auto handler = AnyHandler{MPTHoldersHandler{this->backend_}}; auto const output = handler.process(input, Context{yield}); ASSERT_TRUE(output); EXPECT_EQ(json::parse(currentOutput), *output.result); }); } TEST_F(RPCMPTHoldersHandlerTest, MarkerParameter) { auto const currentOutput = fmt::format( R"({{ "mpt_issuance_id": "{}", "limit":50, "ledger_index": 30, "mptokens": [{}], "validated": true, "marker": "{}" }})", kMPT_ID, kMPT_OUT2, ripple::strHex(getAccountIdWithString(kHOLDE_R1_ACCOUNT)) ); auto ledgerInfo = createLedgerHeader(kLEDGER_HASH, 30); EXPECT_CALL(*backend_, fetchLedgerBySequence).WillOnce(Return(ledgerInfo)); auto const issuanceKk = ripple::keylet::mptIssuance(ripple::uint192(kMPT_ID)).key; ON_CALL(*backend_, doFetchLedgerObject(issuanceKk, 30, _)).WillByDefault(Return(Blob{'f', 'a', 'k', 'e'})); auto const mptoken = createMpTokenObject(kHOLDE_R2_ACCOUNT, ripple::uint192(kMPT_ID)); std::vector const mpts = {mptoken.getSerializer().peekData()}; auto const marker = getAccountIdWithString(kHOLDE_R1_ACCOUNT); ON_CALL(*backend_, fetchMPTHolders).WillByDefault(Return(MPTHoldersAndCursor{.mptokens = mpts, .cursor = marker})); EXPECT_CALL( *backend_, fetchMPTHolders(ripple::uint192(kMPT_ID), testing::_, testing::Eq(marker), Const(30), testing::_) ) .Times(1); auto const holder1AccountId = ripple::strHex(getAccountIdWithString(kHOLDE_R1_ACCOUNT)); auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "marker": "{}" }})", kMPT_ID, holder1AccountId )); runSpawn([&, this](auto& yield) { auto handler = AnyHandler{MPTHoldersHandler{this->backend_}}; auto const output = handler.process(input, Context{yield}); ASSERT_TRUE(output); EXPECT_EQ(json::parse(currentOutput), *output.result); }); } TEST_F(RPCMPTHoldersHandlerTest, MultipleMPTs) { auto const currentOutput = fmt::format( R"({{ "mpt_issuance_id": "{}", "limit":50, "ledger_index": 30, "mptokens": [{}, {}], "validated": true }})", kMPT_ID, kMPT_OUT1, kMPT_OUT2 ); auto ledgerInfo = createLedgerHeader(kLEDGER_HASH, 30); EXPECT_CALL(*backend_, fetchLedgerBySequence).WillOnce(Return(ledgerInfo)); auto const issuanceKk = ripple::keylet::mptIssuance(ripple::uint192(kMPT_ID)).key; ON_CALL(*backend_, doFetchLedgerObject(issuanceKk, 30, _)).WillByDefault(Return(Blob{'f', 'a', 'k', 'e'})); auto const mptoken1 = createMpTokenObject(kHOLDE_R1_ACCOUNT, ripple::uint192(kMPT_ID)); auto const mptoken2 = createMpTokenObject(kHOLDE_R2_ACCOUNT, ripple::uint192(kMPT_ID)); std::vector const mpts = {mptoken1.getSerializer().peekData(), mptoken2.getSerializer().peekData()}; ON_CALL(*backend_, fetchMPTHolders).WillByDefault(Return(MPTHoldersAndCursor{.mptokens = mpts, .cursor = {}})); EXPECT_CALL( *backend_, fetchMPTHolders(ripple::uint192(kMPT_ID), testing::_, testing::Eq(std::nullopt), Const(30), testing::_) ) .Times(1); auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}" }})", kMPT_ID )); runSpawn([&, this](auto& yield) { auto handler = AnyHandler{MPTHoldersHandler{this->backend_}}; auto const output = handler.process(input, Context{yield}); ASSERT_TRUE(output); EXPECT_EQ(json::parse(currentOutput), *output.result); }); } TEST_F(RPCMPTHoldersHandlerTest, LimitMoreThanMAx) { auto const currentOutput = fmt::format( R"({{ "mpt_issuance_id": "{}", "limit":100, "ledger_index": 30, "mptokens": [{}], "validated": true }})", kMPT_ID, kMPT_OUT1 ); auto ledgerInfo = createLedgerHeader(kLEDGER_HASH, 30); EXPECT_CALL(*backend_, fetchLedgerBySequence).WillOnce(Return(ledgerInfo)); auto const issuanceKk = ripple::keylet::mptIssuance(ripple::uint192(kMPT_ID)).key; ON_CALL(*backend_, doFetchLedgerObject(issuanceKk, 30, _)).WillByDefault(Return(Blob{'f', 'a', 'k', 'e'})); auto const mptoken = createMpTokenObject(kHOLDE_R1_ACCOUNT, ripple::uint192(kMPT_ID)); std::vector const mpts = {mptoken.getSerializer().peekData()}; ON_CALL(*backend_, fetchMPTHolders).WillByDefault(Return(MPTHoldersAndCursor{.mptokens = mpts, .cursor = {}})); EXPECT_CALL( *backend_, fetchMPTHolders( ripple::uint192(kMPT_ID), Const(MPTHoldersHandler::kLIMIT_MAX), testing::Eq(std::nullopt), Const(30), testing::_ ) ) .Times(1); auto const input = json::parse(fmt::format( R"({{ "mpt_issuance_id": "{}", "limit": {} }})", kMPT_ID, MPTHoldersHandler::kLIMIT_MAX + 1 )); runSpawn([&, this](auto& yield) { auto handler = AnyHandler{MPTHoldersHandler{this->backend_}}; auto const output = handler.process(input, Context{yield}); ASSERT_TRUE(output); EXPECT_EQ(json::parse(currentOutput), *output.result); }); }