mirror of
https://github.com/XRPLF/clio.git
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638 lines
27 KiB
C++
638 lines
27 KiB
C++
//------------------------------------------------------------------------------
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/*
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This file is part of clio: https://github.com/XRPLF/clio
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Copyright (c) 2023, the clio developers.
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Permission to use, copy, modify, and distribute this software for any
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purpose with or without fee is hereby granted, provided that the above
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copyright notice and this permission notice appear in all copies.
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THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
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OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*/
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//==============================================================================
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#include <rpc/common/AnyHandler.h>
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#include <rpc/handlers/LedgerData.h>
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#include <util/Fixtures.h>
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#include <util/TestObject.h>
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#include <fmt/core.h>
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using namespace RPC;
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namespace json = boost::json;
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using namespace testing;
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constexpr static auto RANGEMIN = 10;
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constexpr static auto RANGEMAX = 30;
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constexpr static auto ACCOUNT = "rf1BiGeXwwQoi8Z2ueFYTEXSwuJYfV2Jpn";
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constexpr static auto ACCOUNT2 = "rLEsXccBGNR3UPuPu2hUXPjziKC3qKSBun";
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constexpr static auto LEDGERHASH = "4BC50C9B0D8515D3EAAE1E74B29A95804346C491EE1A95BF25E4AAB854A6A652";
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constexpr static auto INDEX1 = "05FB0EB4B899F056FA095537C5817163801F544BAFCEA39C995D76DB4D16F9DD";
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constexpr static auto INDEX2 = "E6DBAFC99223B42257915A63DFC6B0C032D4070F9A574B255AD97466726FC322";
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constexpr static auto TXNID = "05FB0EB4B899F056FA095537C5817163801F544BAFCEA39C995D76DB4D16F0DD";
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class RPCLedgerDataHandlerTest : public HandlerBaseTest
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{
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};
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struct LedgerDataParamTestCaseBundle
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{
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std::string testName;
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std::string testJson;
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std::string expectedError;
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std::string expectedErrorMessage;
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};
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// parameterized test cases for parameters check
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struct LedgerDataParameterTest : public RPCLedgerDataHandlerTest,
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public WithParamInterface<LedgerDataParamTestCaseBundle>
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{
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struct NameGenerator
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{
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template <class ParamType>
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std::string
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operator()(const testing::TestParamInfo<ParamType>& info) const
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{
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auto bundle = static_cast<LedgerDataParamTestCaseBundle>(info.param);
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return bundle.testName;
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}
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};
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};
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static auto
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generateTestValuesForParametersTest()
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{
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return std::vector<LedgerDataParamTestCaseBundle>{
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LedgerDataParamTestCaseBundle{
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"ledger_indexInvalid", R"({"ledger_index": "x"})", "invalidParams", "ledgerIndexMalformed"},
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LedgerDataParamTestCaseBundle{
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"ledger_hashInvalid", R"({"ledger_hash": "x"})", "invalidParams", "ledger_hashMalformed"},
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LedgerDataParamTestCaseBundle{
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"ledger_hashNotString", R"({"ledger_hash": 123})", "invalidParams", "ledger_hashNotString"},
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LedgerDataParamTestCaseBundle{"binaryNotBool", R"({"binary": 123})", "invalidParams", "Invalid parameters."},
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LedgerDataParamTestCaseBundle{"limitNotInt", R"({"limit": "xxx"})", "invalidParams", "Invalid parameters."},
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LedgerDataParamTestCaseBundle{"limitNagetive", R"({"limit": -1})", "invalidParams", "Invalid parameters."},
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LedgerDataParamTestCaseBundle{"limitZero", R"({"limit": 0})", "invalidParams", "Invalid parameters."},
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LedgerDataParamTestCaseBundle{"markerInvalid", R"({"marker": "xxx"})", "invalidParams", "markerMalformed"},
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LedgerDataParamTestCaseBundle{
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"markerOutOfOrder",
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R"({
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"marker": "4BC50C9B0D8515D3EAAE1E74B29A95804346C491EE1A95BF25E4AAB854A6A652",
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"out_of_order": true
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})",
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"invalidParams",
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"outOfOrderMarkerNotInt"},
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LedgerDataParamTestCaseBundle{"markerNotString", R"({"marker": 123})", "invalidParams", "markerNotString"},
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LedgerDataParamTestCaseBundle{
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"typeNotString", R"({"type": 123})", "invalidParams", "Invalid field 'type', not string."},
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LedgerDataParamTestCaseBundle{"typeNotValid", R"({"type": "xxx"})", "invalidParams", "Invalid field 'type'."},
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};
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}
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INSTANTIATE_TEST_CASE_P(
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RPCLedgerDataGroup1,
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LedgerDataParameterTest,
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ValuesIn(generateTestValuesForParametersTest()),
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LedgerDataParameterTest::NameGenerator{});
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TEST_P(LedgerDataParameterTest, InvalidParams)
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{
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mockBackendPtr->updateRange(RANGEMIN); // min
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mockBackendPtr->updateRange(RANGEMAX); // max
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auto const testBundle = GetParam();
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runSpawn([&, this](auto yield) {
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auto const handler = AnyHandler{LedgerDataHandler{mockBackendPtr}};
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auto const req = json::parse(testBundle.testJson);
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auto const output = handler.process(req, Context{yield});
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ASSERT_FALSE(output);
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auto const err = RPC::makeError(output.error());
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EXPECT_EQ(err.at("error").as_string(), testBundle.expectedError);
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EXPECT_EQ(err.at("error_message").as_string(), testBundle.expectedErrorMessage);
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});
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}
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TEST_F(RPCLedgerDataHandlerTest, LedgerNotExistViaIntSequence)
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{
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auto const rawBackendPtr = static_cast<MockBackend*>(mockBackendPtr.get());
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mockBackendPtr->updateRange(RANGEMIN); // min
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mockBackendPtr->updateRange(RANGEMAX); // max
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EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
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ON_CALL(*rawBackendPtr, fetchLedgerBySequence(RANGEMAX, _)).WillByDefault(Return(std::nullopt));
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runSpawn([&, this](auto yield) {
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auto const handler = AnyHandler{LedgerDataHandler{mockBackendPtr}};
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auto const req = json::parse(fmt::format(
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R"({{
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"ledger_index": {}
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}})",
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RANGEMAX));
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auto const output = handler.process(req, Context{yield});
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ASSERT_FALSE(output);
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auto const err = RPC::makeError(output.error());
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EXPECT_EQ(err.at("error").as_string(), "lgrNotFound");
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EXPECT_EQ(err.at("error_message").as_string(), "ledgerNotFound");
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});
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}
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TEST_F(RPCLedgerDataHandlerTest, LedgerNotExistViaStringSequence)
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{
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auto const rawBackendPtr = static_cast<MockBackend*>(mockBackendPtr.get());
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mockBackendPtr->updateRange(RANGEMIN); // min
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mockBackendPtr->updateRange(RANGEMAX); // max
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EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
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ON_CALL(*rawBackendPtr, fetchLedgerBySequence(RANGEMAX, _)).WillByDefault(Return(std::nullopt));
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runSpawn([&, this](auto yield) {
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auto const handler = AnyHandler{LedgerDataHandler{mockBackendPtr}};
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auto const req = json::parse(fmt::format(
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R"({{
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"ledger_index": "{}"
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}})",
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RANGEMAX));
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auto const output = handler.process(req, Context{yield});
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ASSERT_FALSE(output);
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auto const err = RPC::makeError(output.error());
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EXPECT_EQ(err.at("error").as_string(), "lgrNotFound");
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EXPECT_EQ(err.at("error_message").as_string(), "ledgerNotFound");
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});
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}
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TEST_F(RPCLedgerDataHandlerTest, LedgerNotExistViaHash)
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{
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auto const rawBackendPtr = static_cast<MockBackend*>(mockBackendPtr.get());
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mockBackendPtr->updateRange(RANGEMIN); // min
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mockBackendPtr->updateRange(RANGEMAX); // max
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EXPECT_CALL(*rawBackendPtr, fetchLedgerByHash).Times(1);
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ON_CALL(*rawBackendPtr, fetchLedgerByHash(ripple::uint256{LEDGERHASH}, _)).WillByDefault(Return(std::nullopt));
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runSpawn([&, this](auto yield) {
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auto const handler = AnyHandler{LedgerDataHandler{mockBackendPtr}};
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auto const req = json::parse(fmt::format(
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R"({{
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"ledger_hash": "{}"
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}})",
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LEDGERHASH));
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auto const output = handler.process(req, Context{yield});
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ASSERT_FALSE(output);
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auto const err = RPC::makeError(output.error());
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EXPECT_EQ(err.at("error").as_string(), "lgrNotFound");
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EXPECT_EQ(err.at("error_message").as_string(), "ledgerNotFound");
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});
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}
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TEST_F(RPCLedgerDataHandlerTest, MarkerNotExist)
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{
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auto const rawBackendPtr = static_cast<MockBackend*>(mockBackendPtr.get());
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mockBackendPtr->updateRange(RANGEMIN); // min
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mockBackendPtr->updateRange(RANGEMAX); // max
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EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
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ON_CALL(*rawBackendPtr, fetchLedgerBySequence(RANGEMAX, _))
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.WillByDefault(Return(CreateLedgerInfo(LEDGERHASH, RANGEMAX)));
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EXPECT_CALL(*rawBackendPtr, doFetchLedgerObject).Times(1);
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ON_CALL(*rawBackendPtr, doFetchLedgerObject(ripple::uint256{INDEX1}, RANGEMAX, _))
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.WillByDefault(Return(std::nullopt));
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runSpawn([&, this](auto yield) {
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auto const handler = AnyHandler{LedgerDataHandler{mockBackendPtr}};
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auto const req = json::parse(fmt::format(
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R"({{
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"marker": "{}"
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}})",
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INDEX1));
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auto const output = handler.process(req, Context{yield});
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ASSERT_FALSE(output);
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auto const err = RPC::makeError(output.error());
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EXPECT_EQ(err.at("error").as_string(), "invalidParams");
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EXPECT_EQ(err.at("error_message").as_string(), "markerDoesNotExist");
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});
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}
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TEST_F(RPCLedgerDataHandlerTest, NoMarker)
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{
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static auto const ledgerExpected = R"({
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"account_hash":"0000000000000000000000000000000000000000000000000000000000000000",
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"close_flags":0,
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"close_time":0,
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"close_time_resolution":0,
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"ledger_hash":"4BC50C9B0D8515D3EAAE1E74B29A95804346C491EE1A95BF25E4AAB854A6A652",
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"ledger_index":"30",
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"parent_close_time":0,
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"parent_hash":"0000000000000000000000000000000000000000000000000000000000000000",
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"total_coins":"0",
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"transaction_hash":"0000000000000000000000000000000000000000000000000000000000000000",
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"closed":true
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})";
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auto const rawBackendPtr = static_cast<MockBackend*>(mockBackendPtr.get());
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mockBackendPtr->updateRange(RANGEMIN); // min
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mockBackendPtr->updateRange(RANGEMAX); // max
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EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
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ON_CALL(*rawBackendPtr, fetchLedgerBySequence(RANGEMAX, _))
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.WillByDefault(Return(CreateLedgerInfo(LEDGERHASH, RANGEMAX)));
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// when 'type' not specified, default to all the types
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auto limitLine = 5;
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auto limitTicket = 5;
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std::vector<Blob> bbs;
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EXPECT_CALL(*rawBackendPtr, doFetchSuccessorKey).Times(limitLine + limitTicket);
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ON_CALL(*rawBackendPtr, doFetchSuccessorKey(_, RANGEMAX, _)).WillByDefault(Return(ripple::uint256{INDEX2}));
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while (limitLine--)
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{
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auto const line =
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CreateRippleStateLedgerObject(ACCOUNT, "USD", ACCOUNT2, 10, ACCOUNT, 100, ACCOUNT2, 200, TXNID, 123);
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bbs.push_back(line.getSerializer().peekData());
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}
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while (limitTicket--)
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{
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auto const ticket = CreateTicketLedgerObject(ACCOUNT, limitTicket);
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bbs.push_back(ticket.getSerializer().peekData());
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}
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ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
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EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
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runSpawn([&, this](auto yield) {
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auto const handler = AnyHandler{LedgerDataHandler{mockBackendPtr}};
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auto const req = json::parse(R"({"limit":10})");
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auto output = handler.process(req, Context{yield});
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ASSERT_TRUE(output);
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EXPECT_TRUE(output->as_object().contains("ledger"));
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//"close_time_human" 's format depends on platform, might be sightly different
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EXPECT_EQ(output->as_object().at("ledger").as_object().erase("close_time_human"), 1);
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EXPECT_EQ(output->as_object().at("ledger"), json::parse(ledgerExpected));
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EXPECT_EQ(output->as_object().at("marker").as_string(), INDEX2);
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EXPECT_EQ(output->as_object().at("state").as_array().size(), 10);
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EXPECT_EQ(output->as_object().at("ledger_hash").as_string(), LEDGERHASH);
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EXPECT_EQ(output->as_object().at("ledger_index").as_uint64(), RANGEMAX);
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});
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}
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TEST_F(RPCLedgerDataHandlerTest, TypeFilter)
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{
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static auto const ledgerExpected = R"({
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"account_hash":"0000000000000000000000000000000000000000000000000000000000000000",
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"close_flags":0,
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"close_time":0,
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"close_time_resolution":0,
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"ledger_hash":"4BC50C9B0D8515D3EAAE1E74B29A95804346C491EE1A95BF25E4AAB854A6A652",
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"ledger_index":"30",
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"parent_close_time":0,
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"parent_hash":"0000000000000000000000000000000000000000000000000000000000000000",
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"total_coins":"0",
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"transaction_hash":"0000000000000000000000000000000000000000000000000000000000000000",
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"closed":true
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})";
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auto const rawBackendPtr = static_cast<MockBackend*>(mockBackendPtr.get());
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mockBackendPtr->updateRange(RANGEMIN); // min
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mockBackendPtr->updateRange(RANGEMAX); // max
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EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
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ON_CALL(*rawBackendPtr, fetchLedgerBySequence(RANGEMAX, _))
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.WillByDefault(Return(CreateLedgerInfo(LEDGERHASH, RANGEMAX)));
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auto limitLine = 5;
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auto limitTicket = 5;
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std::vector<Blob> bbs;
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EXPECT_CALL(*rawBackendPtr, doFetchSuccessorKey).Times(limitLine + limitTicket);
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ON_CALL(*rawBackendPtr, doFetchSuccessorKey(_, RANGEMAX, _)).WillByDefault(Return(ripple::uint256{INDEX2}));
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while (limitLine--)
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{
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auto const line =
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CreateRippleStateLedgerObject(ACCOUNT, "USD", ACCOUNT2, 10, ACCOUNT, 100, ACCOUNT2, 200, TXNID, 123);
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bbs.push_back(line.getSerializer().peekData());
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}
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while (limitTicket--)
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{
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auto const ticket = CreateTicketLedgerObject(ACCOUNT, limitTicket);
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bbs.push_back(ticket.getSerializer().peekData());
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}
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ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
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EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
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runSpawn([&, this](auto yield) {
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auto const handler = AnyHandler{LedgerDataHandler{mockBackendPtr}};
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auto const req = json::parse(R"({
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"limit":10,
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"type":"state"
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})");
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auto output = handler.process(req, Context{yield});
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ASSERT_TRUE(output);
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EXPECT_TRUE(output->as_object().contains("ledger"));
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//"close_time_human" 's format depends on platform, might be sightly different
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EXPECT_EQ(output->as_object().at("ledger").as_object().erase("close_time_human"), 1);
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EXPECT_EQ(output->as_object().at("ledger"), json::parse(ledgerExpected));
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EXPECT_EQ(output->as_object().at("marker").as_string(), INDEX2);
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EXPECT_EQ(output->as_object().at("state").as_array().size(), 5);
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EXPECT_EQ(output->as_object().at("ledger_hash").as_string(), LEDGERHASH);
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EXPECT_EQ(output->as_object().at("ledger_index").as_uint64(), RANGEMAX);
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});
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}
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TEST_F(RPCLedgerDataHandlerTest, OutOfOrder)
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{
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static auto const ledgerExpected = R"({
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"account_hash":"0000000000000000000000000000000000000000000000000000000000000000",
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"close_flags":0,
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"close_time":0,
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"close_time_resolution":0,
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"ledger_hash":"4BC50C9B0D8515D3EAAE1E74B29A95804346C491EE1A95BF25E4AAB854A6A652",
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"ledger_index":"30",
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"parent_close_time":0,
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"parent_hash":"0000000000000000000000000000000000000000000000000000000000000000",
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"total_coins":"0",
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"transaction_hash":"0000000000000000000000000000000000000000000000000000000000000000",
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"closed":true
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})";
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auto const rawBackendPtr = static_cast<MockBackend*>(mockBackendPtr.get());
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mockBackendPtr->updateRange(RANGEMIN); // min
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mockBackendPtr->updateRange(RANGEMAX); // max
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EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
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ON_CALL(*rawBackendPtr, fetchLedgerBySequence(RANGEMAX, _))
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.WillByDefault(Return(CreateLedgerInfo(LEDGERHASH, RANGEMAX)));
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// page end
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// marker return seq
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std::vector<Blob> bbs;
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EXPECT_CALL(*rawBackendPtr, doFetchSuccessorKey).Times(2);
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ON_CALL(*rawBackendPtr, doFetchSuccessorKey(firstKey, RANGEMAX, _)).WillByDefault(Return(ripple::uint256{INDEX2}));
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ON_CALL(*rawBackendPtr, doFetchSuccessorKey(ripple::uint256{INDEX2}, RANGEMAX, _))
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.WillByDefault(Return(std::nullopt));
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auto const line =
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CreateRippleStateLedgerObject(ACCOUNT, "USD", ACCOUNT2, 10, ACCOUNT, 100, ACCOUNT2, 200, TXNID, 123);
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bbs.push_back(line.getSerializer().peekData());
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ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
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EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
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runSpawn([&, this](auto yield) {
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auto const handler = AnyHandler{LedgerDataHandler{mockBackendPtr}};
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auto const req = json::parse(R"({"limit":10, "out_of_order":true})");
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auto output = handler.process(req, Context{yield});
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ASSERT_TRUE(output);
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EXPECT_TRUE(output->as_object().contains("ledger"));
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EXPECT_EQ(output->as_object().at("ledger").as_object().erase("close_time_human"), 1);
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EXPECT_EQ(output->as_object().at("ledger"), json::parse(ledgerExpected));
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EXPECT_EQ(output->as_object().at("marker").as_uint64(), RANGEMAX);
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EXPECT_EQ(output->as_object().at("state").as_array().size(), 1);
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EXPECT_EQ(output->as_object().at("ledger_hash").as_string(), LEDGERHASH);
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EXPECT_EQ(output->as_object().at("ledger_index").as_uint64(), RANGEMAX);
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});
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}
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TEST_F(RPCLedgerDataHandlerTest, Marker)
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{
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auto const rawBackendPtr = static_cast<MockBackend*>(mockBackendPtr.get());
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mockBackendPtr->updateRange(RANGEMIN); // min
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mockBackendPtr->updateRange(RANGEMAX); // max
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EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
|
|
ON_CALL(*rawBackendPtr, fetchLedgerBySequence(RANGEMAX, _))
|
|
.WillByDefault(Return(CreateLedgerInfo(LEDGERHASH, RANGEMAX)));
|
|
|
|
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObject).Times(1);
|
|
ON_CALL(*rawBackendPtr, doFetchLedgerObject(ripple::uint256{INDEX1}, RANGEMAX, _))
|
|
.WillByDefault(
|
|
Return(CreateRippleStateLedgerObject(ACCOUNT, "USD", ACCOUNT2, 10, ACCOUNT, 100, ACCOUNT2, 200, TXNID, 123)
|
|
.getSerializer()
|
|
.peekData()));
|
|
|
|
auto limit = 10;
|
|
std::vector<Blob> bbs;
|
|
EXPECT_CALL(*rawBackendPtr, doFetchSuccessorKey).Times(limit);
|
|
ON_CALL(*rawBackendPtr, doFetchSuccessorKey(ripple::uint256{INDEX1}, RANGEMAX, _))
|
|
.WillByDefault(Return(ripple::uint256{INDEX2}));
|
|
ON_CALL(*rawBackendPtr, doFetchSuccessorKey(ripple::uint256{INDEX2}, RANGEMAX, _))
|
|
.WillByDefault(Return(ripple::uint256{INDEX2}));
|
|
|
|
while (limit--)
|
|
{
|
|
auto const line =
|
|
CreateRippleStateLedgerObject(ACCOUNT, "USD", ACCOUNT2, 10, ACCOUNT, 100, ACCOUNT2, 200, TXNID, 123);
|
|
bbs.push_back(line.getSerializer().peekData());
|
|
}
|
|
|
|
ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
|
|
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
|
|
|
|
runSpawn([&, this](auto yield) {
|
|
auto const handler = AnyHandler{LedgerDataHandler{mockBackendPtr}};
|
|
auto const req = json::parse(fmt::format(
|
|
R"({{
|
|
"limit":10,
|
|
"marker": "{}"
|
|
}})",
|
|
INDEX1));
|
|
auto const output = handler.process(req, Context{yield});
|
|
ASSERT_TRUE(output);
|
|
EXPECT_FALSE(output->as_object().contains("ledger"));
|
|
EXPECT_EQ(output->as_object().at("marker").as_string(), INDEX2);
|
|
EXPECT_EQ(output->as_object().at("state").as_array().size(), 10);
|
|
EXPECT_EQ(output->as_object().at("ledger_hash").as_string(), LEDGERHASH);
|
|
EXPECT_EQ(output->as_object().at("ledger_index").as_uint64(), RANGEMAX);
|
|
});
|
|
}
|
|
|
|
TEST_F(RPCLedgerDataHandlerTest, DiffMarker)
|
|
{
|
|
auto const rawBackendPtr = static_cast<MockBackend*>(mockBackendPtr.get());
|
|
mockBackendPtr->updateRange(RANGEMIN); // min
|
|
mockBackendPtr->updateRange(RANGEMAX); // max
|
|
|
|
EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
|
|
ON_CALL(*rawBackendPtr, fetchLedgerBySequence(RANGEMAX, _))
|
|
.WillByDefault(Return(CreateLedgerInfo(LEDGERHASH, RANGEMAX)));
|
|
|
|
auto limit = 10;
|
|
std::vector<LedgerObject> los;
|
|
std::vector<Blob> bbs;
|
|
|
|
EXPECT_CALL(*rawBackendPtr, fetchLedgerDiff).Times(1);
|
|
|
|
while (limit--)
|
|
{
|
|
auto const line =
|
|
CreateRippleStateLedgerObject(ACCOUNT, "USD", ACCOUNT2, 10, ACCOUNT, 100, ACCOUNT2, 200, TXNID, 123);
|
|
bbs.push_back(line.getSerializer().peekData());
|
|
los.push_back(LedgerObject{ripple::uint256{INDEX2}, Blob{}});
|
|
}
|
|
ON_CALL(*rawBackendPtr, fetchLedgerDiff(RANGEMAX, _)).WillByDefault(Return(los));
|
|
|
|
ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
|
|
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
|
|
|
|
runSpawn([&, this](auto yield) {
|
|
auto const handler = AnyHandler{LedgerDataHandler{mockBackendPtr}};
|
|
auto const req = json::parse(fmt::format(
|
|
R"({{
|
|
"limit":10,
|
|
"marker": {},
|
|
"out_of_order": true
|
|
}})",
|
|
RANGEMAX));
|
|
auto const output = handler.process(req, Context{yield});
|
|
ASSERT_TRUE(output);
|
|
EXPECT_FALSE(output->as_object().contains("ledger"));
|
|
EXPECT_EQ(output->as_object().at("state").as_array().size(), 10);
|
|
EXPECT_EQ(output->as_object().at("ledger_hash").as_string(), LEDGERHASH);
|
|
EXPECT_EQ(output->as_object().at("ledger_index").as_uint64(), RANGEMAX);
|
|
EXPECT_FALSE(output->as_object().at("cache_full").as_bool());
|
|
});
|
|
}
|
|
|
|
TEST_F(RPCLedgerDataHandlerTest, Binary)
|
|
{
|
|
auto const rawBackendPtr = static_cast<MockBackend*>(mockBackendPtr.get());
|
|
mockBackendPtr->updateRange(RANGEMIN); // min
|
|
mockBackendPtr->updateRange(RANGEMAX); // max
|
|
|
|
EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
|
|
ON_CALL(*rawBackendPtr, fetchLedgerBySequence(RANGEMAX, _))
|
|
.WillByDefault(Return(CreateLedgerInfo(LEDGERHASH, RANGEMAX)));
|
|
|
|
auto limit = 10;
|
|
std::vector<Blob> bbs;
|
|
|
|
EXPECT_CALL(*rawBackendPtr, doFetchSuccessorKey).Times(limit);
|
|
ON_CALL(*rawBackendPtr, doFetchSuccessorKey(_, RANGEMAX, _)).WillByDefault(Return(ripple::uint256{INDEX2}));
|
|
|
|
while (limit--)
|
|
{
|
|
auto const line =
|
|
CreateRippleStateLedgerObject(ACCOUNT, "USD", ACCOUNT2, 10, ACCOUNT, 100, ACCOUNT2, 200, TXNID, 123);
|
|
bbs.push_back(line.getSerializer().peekData());
|
|
}
|
|
|
|
ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
|
|
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
|
|
|
|
runSpawn([&, this](auto yield) {
|
|
auto const handler = AnyHandler{LedgerDataHandler{mockBackendPtr}};
|
|
auto const req = json::parse(
|
|
R"({
|
|
"limit":10,
|
|
"binary": true
|
|
})");
|
|
auto const output = handler.process(req, Context{yield});
|
|
ASSERT_TRUE(output);
|
|
EXPECT_TRUE(output->as_object().contains("ledger"));
|
|
EXPECT_TRUE(output->as_object().at("ledger").as_object().contains("ledger_data"));
|
|
EXPECT_TRUE(output->as_object().at("ledger").as_object().at("closed").as_bool());
|
|
EXPECT_EQ(output->as_object().at("state").as_array().size(), 10);
|
|
EXPECT_EQ(output->as_object().at("ledger_hash").as_string(), LEDGERHASH);
|
|
EXPECT_EQ(output->as_object().at("ledger_index").as_uint64(), RANGEMAX);
|
|
});
|
|
}
|
|
|
|
TEST_F(RPCLedgerDataHandlerTest, BinaryLimitMoreThanMax)
|
|
{
|
|
auto const rawBackendPtr = static_cast<MockBackend*>(mockBackendPtr.get());
|
|
mockBackendPtr->updateRange(RANGEMIN); // min
|
|
mockBackendPtr->updateRange(RANGEMAX); // max
|
|
|
|
EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
|
|
ON_CALL(*rawBackendPtr, fetchLedgerBySequence(RANGEMAX, _))
|
|
.WillByDefault(Return(CreateLedgerInfo(LEDGERHASH, RANGEMAX)));
|
|
|
|
auto limit = LedgerDataHandler::LIMITBINARY + 1;
|
|
std::vector<Blob> bbs;
|
|
|
|
EXPECT_CALL(*rawBackendPtr, doFetchSuccessorKey).Times(LedgerDataHandler::LIMITBINARY);
|
|
ON_CALL(*rawBackendPtr, doFetchSuccessorKey(_, RANGEMAX, _)).WillByDefault(Return(ripple::uint256{INDEX2}));
|
|
|
|
while (limit--)
|
|
{
|
|
auto const line =
|
|
CreateRippleStateLedgerObject(ACCOUNT, "USD", ACCOUNT2, 10, ACCOUNT, 100, ACCOUNT2, 200, TXNID, 123);
|
|
bbs.push_back(line.getSerializer().peekData());
|
|
}
|
|
|
|
ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
|
|
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
|
|
|
|
runSpawn([&, this](auto yield) {
|
|
auto const handler = AnyHandler{LedgerDataHandler{mockBackendPtr}};
|
|
auto const req = json::parse(fmt::format(
|
|
R"({{
|
|
"limit":{},
|
|
"binary": true
|
|
}})",
|
|
LedgerDataHandler::LIMITBINARY + 1));
|
|
auto const output = handler.process(req, Context{yield});
|
|
ASSERT_TRUE(output);
|
|
EXPECT_TRUE(output->as_object().contains("ledger"));
|
|
EXPECT_TRUE(output->as_object().at("ledger").as_object().contains("ledger_data"));
|
|
EXPECT_TRUE(output->as_object().at("ledger").as_object().at("closed").as_bool());
|
|
EXPECT_EQ(output->as_object().at("state").as_array().size(), LedgerDataHandler::LIMITBINARY);
|
|
EXPECT_EQ(output->as_object().at("ledger_hash").as_string(), LEDGERHASH);
|
|
EXPECT_EQ(output->as_object().at("ledger_index").as_uint64(), RANGEMAX);
|
|
});
|
|
}
|
|
|
|
TEST_F(RPCLedgerDataHandlerTest, JsonLimitMoreThanMax)
|
|
{
|
|
auto const rawBackendPtr = static_cast<MockBackend*>(mockBackendPtr.get());
|
|
mockBackendPtr->updateRange(RANGEMIN); // min
|
|
mockBackendPtr->updateRange(RANGEMAX); // max
|
|
|
|
EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
|
|
ON_CALL(*rawBackendPtr, fetchLedgerBySequence(RANGEMAX, _))
|
|
.WillByDefault(Return(CreateLedgerInfo(LEDGERHASH, RANGEMAX)));
|
|
|
|
auto limit = LedgerDataHandler::LIMITJSON + 1;
|
|
std::vector<Blob> bbs;
|
|
|
|
EXPECT_CALL(*rawBackendPtr, doFetchSuccessorKey).Times(LedgerDataHandler::LIMITJSON);
|
|
ON_CALL(*rawBackendPtr, doFetchSuccessorKey(_, RANGEMAX, _)).WillByDefault(Return(ripple::uint256{INDEX2}));
|
|
|
|
while (limit--)
|
|
{
|
|
auto const line =
|
|
CreateRippleStateLedgerObject(ACCOUNT, "USD", ACCOUNT2, 10, ACCOUNT, 100, ACCOUNT2, 200, TXNID, 123);
|
|
bbs.push_back(line.getSerializer().peekData());
|
|
}
|
|
|
|
ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
|
|
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
|
|
|
|
runSpawn([&, this](auto yield) {
|
|
auto const handler = AnyHandler{LedgerDataHandler{mockBackendPtr}};
|
|
auto const req = json::parse(fmt::format(
|
|
R"({{
|
|
"limit":{},
|
|
"binary": false
|
|
}})",
|
|
LedgerDataHandler::LIMITJSON + 1));
|
|
auto const output = handler.process(req, Context{yield});
|
|
ASSERT_TRUE(output);
|
|
EXPECT_TRUE(output->as_object().contains("ledger"));
|
|
EXPECT_TRUE(output->as_object().at("ledger").as_object().at("closed").as_bool());
|
|
EXPECT_EQ(output->as_object().at("state").as_array().size(), LedgerDataHandler::LIMITJSON);
|
|
EXPECT_EQ(output->as_object().at("ledger_hash").as_string(), LEDGERHASH);
|
|
EXPECT_EQ(output->as_object().at("ledger_index").as_uint64(), RANGEMAX);
|
|
});
|
|
}
|