Files
rippled/src/test/app/Transaction_ordering_test.cpp
Mark Travis 002893f280 Apply transaction batches in periodic intervals (#4504)
Add new transaction submission API field, "sync", which
determines behavior of the server while submitting transactions:
1) sync (default): Process transactions in a batch immediately,
   and return only once the transaction has been processed.
2) async: Put transaction into the batch for the next processing
   interval and return immediately.
3) wait: Put transaction into the batch for the next processing
   interval and return only after it is processed.
2023-09-11 15:47:40 -07:00

177 lines
5.4 KiB
C++

//------------------------------------------------------------------------------
/*
This file is part of rippled: https://github.com/ripple/rippled
Copyright (c) 2012, 2013 Ripple Labs Inc.
Permission to use, copy, modify, and/or distribute this software for any
purpose with or without fee is hereby granted, provided that the above
copyright notice and this permission notice appear in all copies.
THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
ANY SPECIAL , DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
*/
//==============================================================================
#include <ripple/app/misc/NetworkOPs.h>
#include <ripple/core/JobQueue.h>
#include <ripple/protocol/ErrorCodes.h>
#include <test/jtx.h>
namespace ripple {
namespace test {
struct Transaction_ordering_test : public beast::unit_test::suite
{
void
testCorrectOrder()
{
using namespace jtx;
testcase("Correct Order");
Env env(*this);
auto const alice = Account("alice");
env.fund(XRP(1000), noripple(alice));
auto const aliceSequence = env.seq(alice);
auto const tx1 = env.jt(noop(alice), seq(aliceSequence));
auto const tx2 = env.jt(
noop(alice),
seq(aliceSequence + 1),
json(R"({"LastLedgerSequence":7})"));
env(tx1);
env.close();
BEAST_EXPECT(env.seq(alice) == aliceSequence + 1);
env(tx2);
env.close();
BEAST_EXPECT(env.seq(alice) == aliceSequence + 2);
env.close();
{
auto const result =
env.rpc("tx", to_string(tx1.stx->getTransactionID()));
BEAST_EXPECT(
result["result"]["meta"]["TransactionResult"] == "tesSUCCESS");
}
{
auto const result =
env.rpc("tx", to_string(tx2.stx->getTransactionID()));
BEAST_EXPECT(
result["result"]["meta"]["TransactionResult"] == "tesSUCCESS");
}
}
void
testIncorrectOrder()
{
using namespace jtx;
testcase("Incorrect order");
Env env(*this, envconfig([](std::unique_ptr<Config> cfg) {
cfg->FORCE_MULTI_THREAD = false;
return cfg;
}));
auto const alice = Account("alice");
env.fund(XRP(1000), noripple(alice));
auto const aliceSequence = env.seq(alice);
auto const tx1 = env.jt(noop(alice), seq(aliceSequence));
auto const tx2 = env.jt(
noop(alice),
seq(aliceSequence + 1),
json(R"({"LastLedgerSequence":7})"));
env(tx2, ter(terPRE_SEQ));
BEAST_EXPECT(env.seq(alice) == aliceSequence);
env(tx1);
BEAST_EXPECT(env.app().getOPs().transactionBatch(false));
env.app().getJobQueue().rendezvous();
BEAST_EXPECT(env.seq(alice) == aliceSequence + 2);
env.close();
{
auto const result =
env.rpc("tx", to_string(tx1.stx->getTransactionID()));
BEAST_EXPECT(
result["result"]["meta"]["TransactionResult"] == "tesSUCCESS");
}
{
auto const result =
env.rpc("tx", to_string(tx2.stx->getTransactionID()));
BEAST_EXPECT(
result["result"]["meta"]["TransactionResult"] == "tesSUCCESS");
}
}
void
testIncorrectOrderMultipleIntermediaries()
{
using namespace jtx;
testcase("Incorrect order multiple intermediaries");
Env env(*this, envconfig([](std::unique_ptr<Config> cfg) {
cfg->FORCE_MULTI_THREAD = true;
return cfg;
}));
auto const alice = Account("alice");
env.fund(XRP(1000), noripple(alice));
auto const aliceSequence = env.seq(alice);
std::vector<JTx> tx;
for (auto i = 0; i < 5; ++i)
{
tx.emplace_back(env.jt(
noop(alice),
seq(aliceSequence + i),
json(R"({"LastLedgerSequence":7})")));
}
for (auto i = 1; i < 5; ++i)
{
env(tx[i], ter(terPRE_SEQ));
BEAST_EXPECT(env.seq(alice) == aliceSequence);
}
env(tx[0]);
// Apply until no more deferred/held transactions.
BEAST_EXPECT(env.app().getOPs().transactionBatch(true));
env.app().getJobQueue().rendezvous();
BEAST_EXPECT(env.seq(alice) == aliceSequence + 5);
env.close();
for (auto i = 0; i < 5; ++i)
{
auto const result =
env.rpc("tx", to_string(tx[i].stx->getTransactionID()));
BEAST_EXPECT(
result["result"]["meta"]["TransactionResult"] == "tesSUCCESS");
}
}
void
run() override
{
testCorrectOrder();
testIncorrectOrder();
testIncorrectOrderMultipleIntermediaries();
}
};
BEAST_DEFINE_TESTSUITE(Transaction_ordering, app, ripple);
} // namespace test
} // namespace ripple