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905
unittests/rpc/handlers/AccountLinesTest.cpp
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905
unittests/rpc/handlers/AccountLinesTest.cpp
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@@ -0,0 +1,905 @@
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//------------------------------------------------------------------------------
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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/ngHandlers/AccountLines.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 RPCng;
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namespace json = boost::json;
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using namespace testing;
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constexpr static auto LEDGERHASH =
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"4BC50C9B0D8515D3EAAE1E74B29A95804346C491EE1A95BF25E4AAB854A6A652";
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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 ACCOUNT3 = "rB9BMzh27F3Q6a5FtGPDayQoCCEdiRdqcK";
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constexpr static auto INDEX1 =
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"E6DBAFC99223B42257915A63DFC6B0C032D4070F9A574B255AD97466726FC321";
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constexpr static auto INDEX2 =
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"E6DBAFC99223B42257915A63DFC6B0C032D4070F9A574B255AD97466726FC322";
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constexpr static auto TXNID =
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"05FB0EB4B899F056FA095537C5817163801F544BAFCEA39C995D76DB4D16F9DD";
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class RPCAccountLinesHandlerTest : public HandlerBaseTest
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{
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};
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// TODO: a lot of the tests are copy-pasted from AccountChannelsTest
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// because the logic is mostly the same but currently implemented in
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// a separate handler class. We should eventually use some sort of
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// base class or common component to these `account_*` rpcs.
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TEST_F(RPCAccountLinesHandlerTest, NonHexLedgerHash)
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{
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runSpawn([this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const input = json::parse(fmt::format(
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R"({{
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"account": "{}",
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"limit": 10,
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"ledger_hash": "xxx"
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}})",
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ACCOUNT));
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auto const output = handler.process(input, 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(), "ledger_hashMalformed");
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});
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}
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TEST_F(RPCAccountLinesHandlerTest, NonStringLedgerHash)
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{
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runSpawn([this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const input = json::parse(fmt::format(
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R"({{
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"account": "{}",
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"limit": 10,
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"ledger_hash": 123
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}})",
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ACCOUNT));
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auto const output = handler.process(input, 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(), "ledger_hashNotString");
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});
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}
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TEST_F(RPCAccountLinesHandlerTest, InvalidLedgerIndexString)
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{
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runSpawn([this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const input = json::parse(fmt::format(
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R"({{
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"account": "{}",
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"limit": 10,
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"ledger_index": "notvalidated"
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}})",
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ACCOUNT));
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auto const output = handler.process(input, 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(), "ledgerIndexMalformed");
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});
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}
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TEST_F(RPCAccountLinesHandlerTest, MarkerNotString)
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{
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runSpawn([this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const input = json::parse(fmt::format(
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R"({{
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"account": "{}",
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"marker": 9
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}})",
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ACCOUNT));
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auto const output = handler.process(input, 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(), "markerNotString");
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});
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}
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// error case : invalid marker
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// marker format is composed of a comma separated index and start hint. The
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// former will be read as hex, and the latter using boost lexical cast.
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TEST_F(RPCAccountLinesHandlerTest, InvalidMarker)
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{
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runSpawn([this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const input = json::parse(fmt::format(
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R"({{
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"account": "{}",
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"marker": "123invalid"
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}})",
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ACCOUNT));
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auto const output = handler.process(input, 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(), "Malformed cursor");
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});
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runSpawn([this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const input = json::parse(fmt::format(
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R"({{
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"account": "{}",
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"marker": 401
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}})",
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ACCOUNT));
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auto const output = handler.process(input, 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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});
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}
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// the limit is between 10 400
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TEST_F(RPCAccountLinesHandlerTest, IncorrectLimit)
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{
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runSpawn([this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const input = json::parse(fmt::format(
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R"({{
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"account": "{}",
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"limit": 9
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}})",
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ACCOUNT));
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auto const output = handler.process(input, 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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});
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runSpawn([this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const input = json::parse(fmt::format(
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R"({{
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"account": "{}",
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"limit": 401
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}})",
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ACCOUNT));
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auto const output = handler.process(input, 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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});
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}
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// error case: account invalid format, length is incorrect
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TEST_F(RPCAccountLinesHandlerTest, AccountInvalidFormat)
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{
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runSpawn([this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const input = json::parse(
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R"({
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"account": "rf1BiGeXwwQoi8Z2ueFYTEXSwuJYfV2Jp"
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})");
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auto const output = handler.process(input, 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(), "accountMalformed");
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});
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}
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// error case: account invalid format
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TEST_F(RPCAccountLinesHandlerTest, AccountNotString)
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{
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runSpawn([this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const input = json::parse(
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R"({
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"account": 12
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})");
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auto const output = handler.process(input, 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(), "accountNotString");
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});
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}
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// error case ledger non exist via hash
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TEST_F(RPCAccountLinesHandlerTest, NonExistLedgerViaLedgerHash)
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{
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MockBackend* rawBackendPtr =
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static_cast<MockBackend*>(mockBackendPtr.get());
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// mock fetchLedgerByHash return empty
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ON_CALL(*rawBackendPtr, fetchLedgerByHash(ripple::uint256{LEDGERHASH}, _))
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.WillByDefault(Return(std::optional<ripple::LedgerInfo>{}));
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EXPECT_CALL(*rawBackendPtr, fetchLedgerByHash).Times(1);
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auto const input = json::parse(fmt::format(
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R"({{
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"account": "{}",
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"ledger_hash": "{}"
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}})",
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ACCOUNT,
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LEDGERHASH));
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runSpawn([&, this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const output = handler.process(input, 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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// error case ledger non exist via index
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TEST_F(RPCAccountLinesHandlerTest, NonExistLedgerViaLedgerIndex)
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{
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MockBackend* rawBackendPtr =
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static_cast<MockBackend*>(mockBackendPtr.get());
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mockBackendPtr->updateRange(10); // min
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mockBackendPtr->updateRange(30); // max
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// mock fetchLedgerBySequence return empty
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ON_CALL(*rawBackendPtr, fetchLedgerBySequence)
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.WillByDefault(Return(std::optional<ripple::LedgerInfo>{}));
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EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
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auto const input = json::parse(fmt::format(
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R"({{
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"account": "{}",
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"ledger_index": "4"
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}})",
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ACCOUNT));
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runSpawn([&, this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const output = handler.process(input, 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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// error case ledger > max seq via hash
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// idk why this case will happen in reality
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TEST_F(RPCAccountLinesHandlerTest, NonExistLedgerViaLedgerHash2)
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{
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MockBackend* rawBackendPtr =
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static_cast<MockBackend*>(mockBackendPtr.get());
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mockBackendPtr->updateRange(10); // min
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mockBackendPtr->updateRange(30); // max
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// mock fetchLedgerByHash return ledger but seq is 31 > 30
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auto ledgerinfo = CreateLedgerInfo(LEDGERHASH, 31);
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ON_CALL(*rawBackendPtr, fetchLedgerByHash(ripple::uint256{LEDGERHASH}, _))
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.WillByDefault(Return(ledgerinfo));
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EXPECT_CALL(*rawBackendPtr, fetchLedgerByHash).Times(1);
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auto const input = json::parse(fmt::format(
|
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R"({{
|
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"account": "{}",
|
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"ledger_hash": "{}"
|
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}})",
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ACCOUNT,
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LEDGERHASH));
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runSpawn([&, this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const output = handler.process(input, 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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// error case ledger > max seq via index
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TEST_F(RPCAccountLinesHandlerTest, NonExistLedgerViaLedgerIndex2)
|
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{
|
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MockBackend* rawBackendPtr =
|
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static_cast<MockBackend*>(mockBackendPtr.get());
|
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mockBackendPtr->updateRange(10); // min
|
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mockBackendPtr->updateRange(30); // max
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// no need to check from db, call fetchLedgerBySequence 0 time
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// differ from previous logic
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EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(0);
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auto const input = json::parse(fmt::format(
|
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R"({{
|
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"account": "{}",
|
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"ledger_index": "31"
|
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}})",
|
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ACCOUNT));
|
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runSpawn([&, this](auto& yield) {
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auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
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auto const output = handler.process(input, 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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||||
|
||||
// error case account not exist
|
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TEST_F(RPCAccountLinesHandlerTest, NonExistAccount)
|
||||
{
|
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MockBackend* rawBackendPtr =
|
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static_cast<MockBackend*>(mockBackendPtr.get());
|
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mockBackendPtr->updateRange(10); // min
|
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mockBackendPtr->updateRange(30); // max
|
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auto ledgerinfo = CreateLedgerInfo(LEDGERHASH, 30);
|
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ON_CALL(*rawBackendPtr, fetchLedgerByHash(ripple::uint256{LEDGERHASH}, _))
|
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.WillByDefault(Return(ledgerinfo));
|
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EXPECT_CALL(*rawBackendPtr, fetchLedgerByHash).Times(1);
|
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// fetch account object return emtpy
|
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ON_CALL(*rawBackendPtr, doFetchLedgerObject)
|
||||
.WillByDefault(Return(std::optional<Blob>{}));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObject).Times(1);
|
||||
auto const input = json::parse(fmt::format(
|
||||
R"({{
|
||||
"account": "{}",
|
||||
"ledger_hash": "{}"
|
||||
}})",
|
||||
ACCOUNT,
|
||||
LEDGERHASH));
|
||||
runSpawn([&, this](auto& yield) {
|
||||
auto const handler = AnyHandler{AccountLinesHandler{mockBackendPtr}};
|
||||
auto const output = handler.process(input, yield);
|
||||
ASSERT_FALSE(output);
|
||||
auto const err = RPC::makeError(output.error());
|
||||
EXPECT_EQ(err.at("error").as_string(), "actNotFound");
|
||||
EXPECT_EQ(err.at("error_message").as_string(), "accountNotFound");
|
||||
});
|
||||
}
|
||||
|
||||
// normal case when only provide account
|
||||
TEST_F(RPCAccountLinesHandlerTest, DefaultParameterTest)
|
||||
{
|
||||
MockBackend* rawBackendPtr =
|
||||
static_cast<MockBackend*>(mockBackendPtr.get());
|
||||
mockBackendPtr->updateRange(10); // min
|
||||
mockBackendPtr->updateRange(30); // max
|
||||
auto ledgerinfo = CreateLedgerInfo(LEDGERHASH, 30);
|
||||
ON_CALL(*rawBackendPtr, fetchLedgerBySequence)
|
||||
.WillByDefault(Return(ledgerinfo));
|
||||
EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
|
||||
// fetch account object return something
|
||||
auto account = GetAccountIDWithString(ACCOUNT);
|
||||
auto accountKk = ripple::keylet::account(account).key;
|
||||
auto owneDirKk = ripple::keylet::ownerDir(account).key;
|
||||
auto fake = Blob{'f', 'a', 'k', 'e'};
|
||||
// return a non empty account
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(accountKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(fake));
|
||||
|
||||
// return owner index containing 2 indexes
|
||||
ripple::STObject ownerDir = CreateOwnerDirLedgerObject(
|
||||
{ripple::uint256{INDEX1}, ripple::uint256{INDEX2}}, INDEX1);
|
||||
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(owneDirKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(ownerDir.getSerializer().peekData()));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObject).Times(2);
|
||||
|
||||
// return two trust lines
|
||||
std::vector<Blob> bbs;
|
||||
auto const line1 = CreateRippleStateLedgerObject(
|
||||
ACCOUNT, "USD", ACCOUNT2, 10, ACCOUNT, 100, ACCOUNT2, 200, TXNID, 123);
|
||||
auto const line2 = CreateRippleStateLedgerObject(
|
||||
ACCOUNT2, "USD", ACCOUNT, 10, ACCOUNT2, 100, ACCOUNT, 200, TXNID, 123);
|
||||
bbs.push_back(line1.getSerializer().peekData());
|
||||
bbs.push_back(line2.getSerializer().peekData());
|
||||
ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
|
||||
|
||||
runSpawn([this](auto& yield) {
|
||||
auto const input = json::parse(fmt::format(
|
||||
R"({{
|
||||
"account": "{}"
|
||||
}})",
|
||||
ACCOUNT));
|
||||
auto const correctOutput =
|
||||
R"({
|
||||
"ledger_hash": "4BC50C9B0D8515D3EAAE1E74B29A95804346C491EE1A95BF25E4AAB854A6A652",
|
||||
"ledger_index": 30,
|
||||
"validated": true,
|
||||
"limit": 50,
|
||||
"lines": [
|
||||
{
|
||||
"account": "rLEsXccBGNR3UPuPu2hUXPjziKC3qKSBun",
|
||||
"balance": "10",
|
||||
"currency": "USD",
|
||||
"limit": "100",
|
||||
"limit_peer": "200",
|
||||
"quality_in": 0,
|
||||
"quality_out": 0,
|
||||
"no_ripple": false,
|
||||
"no_ripple_peer": false
|
||||
},
|
||||
{
|
||||
"account": "rLEsXccBGNR3UPuPu2hUXPjziKC3qKSBun",
|
||||
"balance": "-10",
|
||||
"currency": "USD",
|
||||
"limit": "200",
|
||||
"limit_peer": "100",
|
||||
"quality_in": 0,
|
||||
"quality_out": 0,
|
||||
"no_ripple": false,
|
||||
"no_ripple_peer": false
|
||||
}
|
||||
]
|
||||
})";
|
||||
|
||||
auto handler = AnyHandler{AccountLinesHandler{this->mockBackendPtr}};
|
||||
auto const output = handler.process(input, yield);
|
||||
ASSERT_TRUE(output);
|
||||
EXPECT_EQ(json::parse(correctOutput), *output);
|
||||
});
|
||||
}
|
||||
|
||||
// normal case : limit is used
|
||||
TEST_F(RPCAccountLinesHandlerTest, UseLimit)
|
||||
{
|
||||
MockBackend* rawBackendPtr =
|
||||
static_cast<MockBackend*>(mockBackendPtr.get());
|
||||
mockBackendPtr->updateRange(10); // min
|
||||
mockBackendPtr->updateRange(30); // max
|
||||
auto ledgerinfo = CreateLedgerInfo(LEDGERHASH, 30);
|
||||
ON_CALL(*rawBackendPtr, fetchLedgerBySequence)
|
||||
.WillByDefault(Return(ledgerinfo));
|
||||
EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
|
||||
// fetch account object return something
|
||||
auto account = GetAccountIDWithString(ACCOUNT);
|
||||
auto accountKk = ripple::keylet::account(account).key;
|
||||
auto owneDirKk = ripple::keylet::ownerDir(account).key;
|
||||
auto fake = Blob{'f', 'a', 'k', 'e'};
|
||||
// return a non empty account
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(accountKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(fake));
|
||||
|
||||
// return owner index
|
||||
std::vector<ripple::uint256> indexes;
|
||||
std::vector<Blob> bbs;
|
||||
|
||||
auto repetitions = 50;
|
||||
while (repetitions--)
|
||||
{
|
||||
indexes.push_back(ripple::uint256{INDEX1});
|
||||
auto const line = CreateRippleStateLedgerObject(
|
||||
ACCOUNT,
|
||||
"USD",
|
||||
ACCOUNT2,
|
||||
10,
|
||||
ACCOUNT,
|
||||
100,
|
||||
ACCOUNT2,
|
||||
200,
|
||||
TXNID,
|
||||
123);
|
||||
bbs.push_back(line.getSerializer().peekData());
|
||||
}
|
||||
ripple::STObject ownerDir = CreateOwnerDirLedgerObject(indexes, INDEX1);
|
||||
// it should not appear in return marker,marker is the current page
|
||||
ownerDir.setFieldU64(ripple::sfIndexNext, 99);
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(owneDirKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(ownerDir.getSerializer().peekData()));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObject).Times(2);
|
||||
|
||||
ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
|
||||
auto const input = json::parse(fmt::format(
|
||||
R"({{
|
||||
"account": "{}",
|
||||
"limit": 20
|
||||
}})",
|
||||
ACCOUNT));
|
||||
runSpawn([&, this](auto& yield) {
|
||||
auto handler = AnyHandler{AccountLinesHandler{this->mockBackendPtr}};
|
||||
auto const output = handler.process(input, yield);
|
||||
ASSERT_TRUE(output);
|
||||
|
||||
EXPECT_EQ((*output).as_object().at("lines").as_array().size(), 20);
|
||||
EXPECT_THAT(
|
||||
(*output).as_object().at("marker").as_string().c_str(),
|
||||
EndsWith(",0"));
|
||||
});
|
||||
}
|
||||
|
||||
// normal case : destination is used
|
||||
TEST_F(RPCAccountLinesHandlerTest, UseDestination)
|
||||
{
|
||||
MockBackend* rawBackendPtr =
|
||||
static_cast<MockBackend*>(mockBackendPtr.get());
|
||||
mockBackendPtr->updateRange(10); // min
|
||||
mockBackendPtr->updateRange(30); // max
|
||||
auto ledgerinfo = CreateLedgerInfo(LEDGERHASH, 30);
|
||||
ON_CALL(*rawBackendPtr, fetchLedgerBySequence)
|
||||
.WillByDefault(Return(ledgerinfo));
|
||||
EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
|
||||
// fetch account object return something
|
||||
auto account = GetAccountIDWithString(ACCOUNT);
|
||||
auto accountKk = ripple::keylet::account(account).key;
|
||||
auto owneDirKk = ripple::keylet::ownerDir(account).key;
|
||||
auto fake = Blob{'f', 'a', 'k', 'e'};
|
||||
// return a non empty account
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(accountKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(fake));
|
||||
|
||||
// return owner index
|
||||
std::vector<ripple::uint256> indexes;
|
||||
std::vector<Blob> bbs;
|
||||
|
||||
// 10 lines to ACCOUNT2
|
||||
auto repetitions = 10;
|
||||
while (repetitions--)
|
||||
{
|
||||
indexes.push_back(ripple::uint256{INDEX1});
|
||||
auto const line = CreateRippleStateLedgerObject(
|
||||
ACCOUNT,
|
||||
"USD",
|
||||
ACCOUNT2,
|
||||
10,
|
||||
ACCOUNT,
|
||||
100,
|
||||
ACCOUNT2,
|
||||
200,
|
||||
TXNID,
|
||||
123);
|
||||
bbs.push_back(line.getSerializer().peekData());
|
||||
}
|
||||
|
||||
// 20 lines to ACCOUNT3
|
||||
repetitions = 20;
|
||||
while (repetitions--)
|
||||
{
|
||||
indexes.push_back(ripple::uint256{INDEX1});
|
||||
auto const line = CreateRippleStateLedgerObject(
|
||||
ACCOUNT,
|
||||
"USD",
|
||||
ACCOUNT3,
|
||||
10,
|
||||
ACCOUNT,
|
||||
100,
|
||||
ACCOUNT3,
|
||||
200,
|
||||
TXNID,
|
||||
123);
|
||||
bbs.push_back(line.getSerializer().peekData());
|
||||
}
|
||||
|
||||
ripple::STObject ownerDir = CreateOwnerDirLedgerObject(indexes, INDEX1);
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(owneDirKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(ownerDir.getSerializer().peekData()));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObject).Times(2);
|
||||
|
||||
ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
|
||||
|
||||
auto const input = json::parse(fmt::format(
|
||||
R"({{
|
||||
"account": "{}",
|
||||
"limit": 30,
|
||||
"peer": "{}"
|
||||
}})",
|
||||
ACCOUNT,
|
||||
ACCOUNT3));
|
||||
runSpawn([&, this](auto& yield) {
|
||||
auto handler = AnyHandler{AccountLinesHandler{this->mockBackendPtr}};
|
||||
auto const output = handler.process(input, yield);
|
||||
ASSERT_TRUE(output);
|
||||
EXPECT_EQ((*output).as_object().at("lines").as_array().size(), 20);
|
||||
});
|
||||
}
|
||||
|
||||
// normal case : but the lines is emtpy
|
||||
TEST_F(RPCAccountLinesHandlerTest, EmptyChannel)
|
||||
{
|
||||
MockBackend* rawBackendPtr =
|
||||
static_cast<MockBackend*>(mockBackendPtr.get());
|
||||
mockBackendPtr->updateRange(10); // min
|
||||
mockBackendPtr->updateRange(30); // max
|
||||
auto ledgerinfo = CreateLedgerInfo(LEDGERHASH, 30);
|
||||
ON_CALL(*rawBackendPtr, fetchLedgerBySequence)
|
||||
.WillByDefault(Return(ledgerinfo));
|
||||
EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
|
||||
// fetch account object return something
|
||||
auto account = GetAccountIDWithString(ACCOUNT);
|
||||
auto accountKk = ripple::keylet::account(account).key;
|
||||
auto owneDirKk = ripple::keylet::ownerDir(account).key;
|
||||
auto fake = Blob{'f', 'a', 'k', 'e'};
|
||||
// return a non empty account
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(accountKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(fake));
|
||||
|
||||
// return owner index
|
||||
ripple::STObject ownerDir = CreateOwnerDirLedgerObject({}, INDEX1);
|
||||
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(owneDirKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(ownerDir.getSerializer().peekData()));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObject).Times(2);
|
||||
auto const input = json::parse(fmt::format(
|
||||
R"({{
|
||||
"account": "{}"
|
||||
}})",
|
||||
ACCOUNT));
|
||||
runSpawn([&, this](auto& yield) {
|
||||
auto handler = AnyHandler{AccountLinesHandler{this->mockBackendPtr}};
|
||||
auto const output = handler.process(input, yield);
|
||||
ASSERT_TRUE(output);
|
||||
EXPECT_EQ((*output).as_object().at("lines").as_array().size(), 0);
|
||||
});
|
||||
}
|
||||
|
||||
TEST_F(RPCAccountLinesHandlerTest, OptionalResponseField)
|
||||
{
|
||||
constexpr static auto correctOutput = R"({
|
||||
"ledger_hash": "4BC50C9B0D8515D3EAAE1E74B29A95804346C491EE1A95BF25E4AAB854A6A652",
|
||||
"ledger_index": 30,
|
||||
"validated": true,
|
||||
"limit": 50,
|
||||
"lines": [
|
||||
{
|
||||
"account": "rLEsXccBGNR3UPuPu2hUXPjziKC3qKSBun",
|
||||
"balance": "10",
|
||||
"currency": "USD",
|
||||
"limit": "100",
|
||||
"limit_peer": "200",
|
||||
"quality_in": 0,
|
||||
"quality_out": 0,
|
||||
"no_ripple": false,
|
||||
"no_ripple_peer": true,
|
||||
"peer_authorized": true,
|
||||
"freeze_peer": true
|
||||
},
|
||||
{
|
||||
"account": "rLEsXccBGNR3UPuPu2hUXPjziKC3qKSBun",
|
||||
"balance": "20",
|
||||
"currency": "USD",
|
||||
"limit": "200",
|
||||
"limit_peer": "400",
|
||||
"quality_in": 0,
|
||||
"quality_out": 0,
|
||||
"no_ripple": true,
|
||||
"no_ripple_peer": false,
|
||||
"authorized": true,
|
||||
"freeze": true
|
||||
}
|
||||
]
|
||||
})";
|
||||
MockBackend* rawBackendPtr =
|
||||
static_cast<MockBackend*>(mockBackendPtr.get());
|
||||
mockBackendPtr->updateRange(10); // min
|
||||
mockBackendPtr->updateRange(30); // max
|
||||
auto ledgerinfo = CreateLedgerInfo(LEDGERHASH, 30);
|
||||
ON_CALL(*rawBackendPtr, fetchLedgerBySequence)
|
||||
.WillByDefault(Return(ledgerinfo));
|
||||
EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
|
||||
// fetch account object return something
|
||||
auto account = GetAccountIDWithString(ACCOUNT);
|
||||
auto accountKk = ripple::keylet::account(account).key;
|
||||
auto owneDirKk = ripple::keylet::ownerDir(account).key;
|
||||
auto fake = Blob{'f', 'a', 'k', 'e'};
|
||||
|
||||
// return a non empty account
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(accountKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(fake));
|
||||
|
||||
// return owner index
|
||||
ripple::STObject ownerDir = CreateOwnerDirLedgerObject(
|
||||
{ripple::uint256{INDEX1}, ripple::uint256{INDEX2}}, INDEX1);
|
||||
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(owneDirKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(ownerDir.getSerializer().peekData()));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObject).Times(2);
|
||||
|
||||
// return few trust lines
|
||||
std::vector<Blob> bbs;
|
||||
auto line1 = CreateRippleStateLedgerObject(
|
||||
ACCOUNT, "USD", ACCOUNT2, 10, ACCOUNT, 100, ACCOUNT2, 200, TXNID, 0);
|
||||
line1.setFlag(ripple::lsfHighAuth);
|
||||
line1.setFlag(ripple::lsfHighNoRipple);
|
||||
line1.setFlag(ripple::lsfHighFreeze);
|
||||
bbs.push_back(line1.getSerializer().peekData());
|
||||
|
||||
auto line2 = CreateRippleStateLedgerObject(
|
||||
ACCOUNT, "USD", ACCOUNT2, 20, ACCOUNT, 200, ACCOUNT2, 400, TXNID, 0);
|
||||
line2.setFlag(ripple::lsfLowAuth);
|
||||
line2.setFlag(ripple::lsfLowNoRipple);
|
||||
line2.setFlag(ripple::lsfLowFreeze);
|
||||
bbs.push_back(line2.getSerializer().peekData());
|
||||
|
||||
ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
|
||||
auto const input = json::parse(fmt::format(
|
||||
R"({{
|
||||
"account": "{}"
|
||||
}})",
|
||||
ACCOUNT));
|
||||
runSpawn([&, this](auto& yield) {
|
||||
auto handler = AnyHandler{AccountLinesHandler{this->mockBackendPtr}};
|
||||
auto const output = handler.process(input, yield);
|
||||
ASSERT_TRUE(output);
|
||||
EXPECT_EQ(json::parse(correctOutput), *output);
|
||||
});
|
||||
}
|
||||
|
||||
// normal case : test marker output correct
|
||||
TEST_F(RPCAccountLinesHandlerTest, MarkerOutput)
|
||||
{
|
||||
MockBackend* rawBackendPtr =
|
||||
static_cast<MockBackend*>(mockBackendPtr.get());
|
||||
mockBackendPtr->updateRange(10); // min
|
||||
mockBackendPtr->updateRange(30); // max
|
||||
auto account = GetAccountIDWithString(ACCOUNT);
|
||||
auto accountKk = ripple::keylet::account(account).key;
|
||||
auto ownerDirKk = ripple::keylet::ownerDir(account).key;
|
||||
constexpr static auto nextPage = 99;
|
||||
constexpr static auto limit = 15;
|
||||
auto ownerDir2Kk =
|
||||
ripple::keylet::page(ripple::keylet::ownerDir(account), nextPage).key;
|
||||
auto ledgerinfo = CreateLedgerInfo(LEDGERHASH, 30);
|
||||
ON_CALL(*rawBackendPtr, fetchLedgerBySequence)
|
||||
.WillByDefault(Return(ledgerinfo));
|
||||
EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
|
||||
// fetch account object return something
|
||||
auto fake = Blob{'f', 'a', 'k', 'e'};
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(accountKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(fake));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObject).Times(3);
|
||||
|
||||
std::vector<Blob> bbs;
|
||||
auto line = CreateRippleStateLedgerObject(
|
||||
ACCOUNT, "USD", ACCOUNT2, 10, ACCOUNT, 100, ACCOUNT2, 200, TXNID, 0);
|
||||
|
||||
// owner dir contains 10 indexes
|
||||
int objectsCount = 10;
|
||||
std::vector<ripple::uint256> indexes;
|
||||
while (objectsCount != 0)
|
||||
{
|
||||
// return owner index
|
||||
indexes.push_back(ripple::uint256{INDEX1});
|
||||
objectsCount--;
|
||||
}
|
||||
// return 15 objects
|
||||
objectsCount = 15;
|
||||
while (objectsCount != 0)
|
||||
{
|
||||
bbs.push_back(line.getSerializer().peekData());
|
||||
objectsCount--;
|
||||
}
|
||||
|
||||
ripple::STObject ownerDir = CreateOwnerDirLedgerObject(indexes, INDEX1);
|
||||
ownerDir.setFieldU64(ripple::sfIndexNext, nextPage);
|
||||
// first page's next page is 99
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(ownerDirKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(ownerDir.getSerializer().peekData()));
|
||||
ripple::STObject ownerDir2 = CreateOwnerDirLedgerObject(indexes, INDEX1);
|
||||
// second page's next page is 0
|
||||
ownerDir2.setFieldU64(ripple::sfIndexNext, 0);
|
||||
ON_CALL(
|
||||
*rawBackendPtr,
|
||||
doFetchLedgerObject(ownerDir2Kk, testing::_, testing::_))
|
||||
.WillByDefault(Return(ownerDir2.getSerializer().peekData()));
|
||||
|
||||
ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
|
||||
|
||||
auto const input = json::parse(fmt::format(
|
||||
R"({{
|
||||
"account": "{}",
|
||||
"limit": {}
|
||||
}})",
|
||||
ACCOUNT,
|
||||
limit));
|
||||
runSpawn([&, this](auto& yield) {
|
||||
auto handler = AnyHandler{AccountLinesHandler{this->mockBackendPtr}};
|
||||
auto const output = handler.process(input, yield);
|
||||
ASSERT_TRUE(output);
|
||||
EXPECT_EQ(
|
||||
(*output).as_object().at("marker").as_string().c_str(),
|
||||
fmt::format("{},{}", INDEX1, nextPage));
|
||||
EXPECT_EQ((*output).as_object().at("lines").as_array().size(), 15);
|
||||
});
|
||||
}
|
||||
|
||||
// normal case : handler marker correctly
|
||||
TEST_F(RPCAccountLinesHandlerTest, MarkerInput)
|
||||
{
|
||||
MockBackend* rawBackendPtr =
|
||||
static_cast<MockBackend*>(mockBackendPtr.get());
|
||||
mockBackendPtr->updateRange(10); // min
|
||||
mockBackendPtr->updateRange(30); // max
|
||||
auto account = GetAccountIDWithString(ACCOUNT);
|
||||
auto accountKk = ripple::keylet::account(account).key;
|
||||
constexpr static auto nextPage = 99;
|
||||
constexpr static auto limit = 15;
|
||||
auto ownerDirKk =
|
||||
ripple::keylet::page(ripple::keylet::ownerDir(account), nextPage).key;
|
||||
auto ledgerinfo = CreateLedgerInfo(LEDGERHASH, 30);
|
||||
ON_CALL(*rawBackendPtr, fetchLedgerBySequence)
|
||||
.WillByDefault(Return(ledgerinfo));
|
||||
EXPECT_CALL(*rawBackendPtr, fetchLedgerBySequence).Times(1);
|
||||
// fetch account object return something
|
||||
auto fake = Blob{'f', 'a', 'k', 'e'};
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(accountKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(fake));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObject).Times(3);
|
||||
|
||||
std::vector<Blob> bbs;
|
||||
auto const line = CreateRippleStateLedgerObject(
|
||||
ACCOUNT, "USD", ACCOUNT2, 10, ACCOUNT, 100, ACCOUNT2, 200, TXNID, 0);
|
||||
int objectsCount = limit;
|
||||
std::vector<ripple::uint256> indexes;
|
||||
while (objectsCount != 0)
|
||||
{
|
||||
// return owner index
|
||||
indexes.push_back(ripple::uint256{INDEX1});
|
||||
bbs.push_back(line.getSerializer().peekData());
|
||||
objectsCount--;
|
||||
}
|
||||
|
||||
ripple::STObject ownerDir = CreateOwnerDirLedgerObject(indexes, INDEX1);
|
||||
ownerDir.setFieldU64(ripple::sfIndexNext, 0);
|
||||
ON_CALL(
|
||||
*rawBackendPtr, doFetchLedgerObject(ownerDirKk, testing::_, testing::_))
|
||||
.WillByDefault(Return(ownerDir.getSerializer().peekData()));
|
||||
|
||||
ON_CALL(*rawBackendPtr, doFetchLedgerObjects).WillByDefault(Return(bbs));
|
||||
EXPECT_CALL(*rawBackendPtr, doFetchLedgerObjects).Times(1);
|
||||
|
||||
auto const input = json::parse(fmt::format(
|
||||
R"({{
|
||||
"account": "{}",
|
||||
"limit": {},
|
||||
"marker": "{},{}"
|
||||
}})",
|
||||
ACCOUNT,
|
||||
limit,
|
||||
INDEX1,
|
||||
nextPage));
|
||||
runSpawn([&, this](auto& yield) {
|
||||
auto handler = AnyHandler{AccountLinesHandler{this->mockBackendPtr}};
|
||||
auto const output = handler.process(input, yield);
|
||||
ASSERT_TRUE(output);
|
||||
EXPECT_TRUE((*output).as_object().if_contains("marker") == nullptr);
|
||||
// the first item is the marker itself, so the result will have limit-1
|
||||
// items
|
||||
EXPECT_EQ(
|
||||
(*output).as_object().at("lines").as_array().size(), limit - 1);
|
||||
});
|
||||
}
|
||||
Reference in New Issue
Block a user