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/* -*- Mode:C++; c-file-style:"gnu"; indent-tabs-mode:nil; -*- */
/**
* Copyright (c) 2014-2016, Regents of the University of California,
* Arizona Board of Regents,
* Colorado State University,
* University Pierre & Marie Curie, Sorbonne University,
* Washington University in St. Louis,
* Beijing Institute of Technology,
* The University of Memphis.
*
* This file is part of NFD (Named Data Networking Forwarding Daemon).
* See AUTHORS.md for complete list of NFD authors and contributors.
*
* NFD is free software: you can redistribute it and/or modify it under the terms
* of the GNU General Public License as published by the Free Software Foundation,
* either version 3 of the License, or (at your option) any later version.
*
* NFD is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
* without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
* PURPOSE. See the GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License along with
* NFD, e.g., in COPYING.md file. If not, see <http://www.gnu.org/licenses/>.
*/
#include "fw/forwarder.hpp"
#include "tests/daemon/face/dummy-face.hpp"
#include "dummy-strategy.hpp"
#include "install-strategy.hpp"
#include <ndn-cxx/lp/tags.hpp>
#include "tests/test-common.hpp"
namespace nfd {
namespace tests {
BOOST_AUTO_TEST_SUITE(Fw)
BOOST_FIXTURE_TEST_SUITE(TestForwarder, UnitTestTimeFixture)
BOOST_AUTO_TEST_CASE(SimpleExchange)
{
Forwarder forwarder;
shared_ptr<Interest> interestAB = makeInterest("/A/B");
interestAB->setInterestLifetime(time::seconds(4));
shared_ptr<Data> dataABC = makeData("/A/B/C");
auto face1 = make_shared<DummyFace>();
auto face2 = make_shared<DummyFace>();
forwarder.addFace(face1);
forwarder.addFace(face2);
Fib& fib = forwarder.getFib();
fib.insert("/A").first->addNextHop(*face2, 0);
BOOST_CHECK_EQUAL(forwarder.getCounters().nInInterests, 0);
BOOST_CHECK_EQUAL(forwarder.getCounters().nOutInterests, 0);
face1->receiveInterest(*interestAB);
this->advanceClocks(time::milliseconds(100), time::seconds(1));
BOOST_REQUIRE_EQUAL(face2->sentInterests.size(), 1);
BOOST_CHECK_EQUAL(face2->sentInterests[0].getName(), "/A/B");
BOOST_REQUIRE(face2->sentInterests[0].getTag<lp::IncomingFaceIdTag>() != nullptr);
BOOST_CHECK_EQUAL(*face2->sentInterests[0].getTag<lp::IncomingFaceIdTag>(), face1->getId());
BOOST_CHECK_EQUAL(forwarder.getCounters().nInInterests, 1);
BOOST_CHECK_EQUAL(forwarder.getCounters().nOutInterests, 1);
BOOST_CHECK_EQUAL(forwarder.getCounters().nInData, 0);
BOOST_CHECK_EQUAL(forwarder.getCounters().nOutData, 0);
face2->receiveData(*dataABC);
this->advanceClocks(time::milliseconds(100), time::seconds(1));
BOOST_REQUIRE_EQUAL(face1->sentData.size(), 1);
BOOST_CHECK_EQUAL(face1->sentData[0].getName(), "/A/B/C");
BOOST_REQUIRE(face1->sentData[0].getTag<lp::IncomingFaceIdTag>() != nullptr);
BOOST_CHECK_EQUAL(*face1->sentData[0].getTag<lp::IncomingFaceIdTag>(), face2->getId());
BOOST_CHECK_EQUAL(forwarder.getCounters().nInData, 1);
BOOST_CHECK_EQUAL(forwarder.getCounters().nOutData, 1);
}
BOOST_AUTO_TEST_CASE(CsMatched)
{
Forwarder forwarder;
auto face1 = make_shared<DummyFace>();
auto face2 = make_shared<DummyFace>();
auto face3 = make_shared<DummyFace>();
forwarder.addFace(face1);
forwarder.addFace(face2);
forwarder.addFace(face3);
shared_ptr<Interest> interestA = makeInterest("/A");
interestA->setInterestLifetime(time::seconds(4));
shared_ptr<Data> dataA = makeData("/A");
dataA->setTag(make_shared<lp::IncomingFaceIdTag>(face3->getId()));
Fib& fib = forwarder.getFib();
fib.insert("/A").first->addNextHop(*face2, 0);
Pit& pit = forwarder.getPit();
BOOST_CHECK_EQUAL(pit.size(), 0);
Cs& cs = forwarder.getCs();
cs.insert(*dataA);
face1->receiveInterest(*interestA);
this->advanceClocks(time::milliseconds(1), time::milliseconds(5));
// Interest matching ContentStore should not be forwarded
BOOST_REQUIRE_EQUAL(face2->sentInterests.size(), 0);
BOOST_REQUIRE_EQUAL(face1->sentData.size(), 1);
// IncomingFaceId field should be reset to represent CS
BOOST_REQUIRE(face1->sentData[0].getTag<lp::IncomingFaceIdTag>() != nullptr);
BOOST_CHECK_EQUAL(*face1->sentData[0].getTag<lp::IncomingFaceIdTag>(), face::FACEID_CONTENT_STORE);
this->advanceClocks(time::milliseconds(100), time::milliseconds(500));
// PIT entry should not be left behind
BOOST_CHECK_EQUAL(pit.size(), 0);
}
BOOST_AUTO_TEST_CASE(OutgoingInterest)
{
Forwarder forwarder;
auto face1 = make_shared<DummyFace>();
auto face2 = make_shared<DummyFace>();
forwarder.addFace(face1);
forwarder.addFace(face2);
Pit& pit = forwarder.getPit();
auto interestA1 = makeInterest("/A");
interestA1->setNonce(8378);
shared_ptr<pit::Entry> pitA = pit.insert(*interestA1).first;
pitA->insertOrUpdateInRecord(*face1, *interestA1);
auto interestA2 = makeInterest("/A");
interestA2->setNonce(1698);
forwarder.onOutgoingInterest(pitA, *face2, *interestA2);
pit::OutRecordCollection::iterator outA2 = pitA->getOutRecord(*face2);
BOOST_REQUIRE(outA2 != pitA->out_end());
BOOST_CHECK_EQUAL(outA2->getLastNonce(), 1698);
BOOST_REQUIRE_EQUAL(face2->sentInterests.size(), 1);
BOOST_CHECK_EQUAL(face2->sentInterests.back().getNonce(), 1698);
}
BOOST_AUTO_TEST_CASE(NextHopFaceId)
{
Forwarder forwarder;
auto face1 = make_shared<DummyFace>();
auto face2 = make_shared<DummyFace>();
auto face3 = make_shared<DummyFace>();
forwarder.addFace(face1);
forwarder.addFace(face2);
forwarder.addFace(face3);
Fib& fib = forwarder.getFib();
fib.insert("/A").first->addNextHop(*face3, 0);
shared_ptr<Interest> interest = makeInterest("/A/B");
interest->setTag(make_shared<lp::NextHopFaceIdTag>(face2->getId()));
face1->receiveInterest(*interest);
this->advanceClocks(time::milliseconds(100), time::seconds(1));
BOOST_CHECK_EQUAL(face3->sentInterests.size(), 0);
BOOST_REQUIRE_EQUAL(face2->sentInterests.size(), 1);
BOOST_CHECK_EQUAL(face2->sentInterests.front().getName(), "/A/B");
}
class ScopeLocalhostIncomingTestForwarder : public Forwarder
{
public:
ScopeLocalhostIncomingTestForwarder()
{
}
virtual void
onDataUnsolicited(Face& inFace, const Data& data) override
{
++onDataUnsolicited_count;
}
protected:
virtual void
dispatchToStrategy(pit::Entry& pitEntry, function<void(fw::Strategy&)> trigger) override
{
++dispatchToStrategy_count;
}
public:
int dispatchToStrategy_count;
int onDataUnsolicited_count;
};
BOOST_AUTO_TEST_CASE(ScopeLocalhostIncoming)
{
ScopeLocalhostIncomingTestForwarder forwarder;
auto face1 = make_shared<DummyFace>("dummy://", "dummy://", ndn::nfd::FACE_SCOPE_LOCAL);
auto face2 = make_shared<DummyFace>();
forwarder.addFace(face1);
forwarder.addFace(face2);
// local face, /localhost: OK
forwarder.dispatchToStrategy_count = 0;
shared_ptr<Interest> i1 = makeInterest("/localhost/A1");
forwarder.onIncomingInterest(*face1, *i1);
BOOST_CHECK_EQUAL(forwarder.dispatchToStrategy_count, 1);
// non-local face, /localhost: violate
forwarder.dispatchToStrategy_count = 0;
shared_ptr<Interest> i2 = makeInterest("/localhost/A2");
forwarder.onIncomingInterest(*face2, *i2);
BOOST_CHECK_EQUAL(forwarder.dispatchToStrategy_count, 0);
// local face, non-/localhost: OK
forwarder.dispatchToStrategy_count = 0;
shared_ptr<Interest> i3 = makeInterest("/A3");
forwarder.onIncomingInterest(*face1, *i3);
BOOST_CHECK_EQUAL(forwarder.dispatchToStrategy_count, 1);
// non-local face, non-/localhost: OK
forwarder.dispatchToStrategy_count = 0;
shared_ptr<Interest> i4 = makeInterest("/A4");
forwarder.onIncomingInterest(*face2, *i4);
BOOST_CHECK_EQUAL(forwarder.dispatchToStrategy_count, 1);
// local face, /localhost: OK
forwarder.onDataUnsolicited_count = 0;
shared_ptr<Data> d1 = makeData("/localhost/B1");
forwarder.onIncomingData(*face1, *d1);
BOOST_CHECK_EQUAL(forwarder.onDataUnsolicited_count, 1);
// non-local face, /localhost: OK
forwarder.onDataUnsolicited_count = 0;
shared_ptr<Data> d2 = makeData("/localhost/B2");
forwarder.onIncomingData(*face2, *d2);
BOOST_CHECK_EQUAL(forwarder.onDataUnsolicited_count, 0);
// local face, non-/localhost: OK
forwarder.onDataUnsolicited_count = 0;
shared_ptr<Data> d3 = makeData("/B3");
forwarder.onIncomingData(*face1, *d3);
BOOST_CHECK_EQUAL(forwarder.onDataUnsolicited_count, 1);
// non-local face, non-/localhost: OK
forwarder.onDataUnsolicited_count = 0;
shared_ptr<Data> d4 = makeData("/B4");
forwarder.onIncomingData(*face2, *d4);
BOOST_CHECK_EQUAL(forwarder.onDataUnsolicited_count, 1);
}
BOOST_AUTO_TEST_CASE(IncomingInterestStrategyDispatch)
{
Forwarder forwarder;
auto face1 = make_shared<DummyFace>();
auto face2 = make_shared<DummyFace>();
forwarder.addFace(face1);
forwarder.addFace(face2);
DummyStrategy& strategyP = choose<DummyStrategy>(forwarder, "ndn:/", "ndn:/strategyP");
DummyStrategy& strategyQ = choose<DummyStrategy>(forwarder, "ndn:/B", "ndn:/strategyQ");
shared_ptr<Interest> interest1 = makeInterest("ndn:/A/1");
strategyP.afterReceiveInterest_count = 0;
strategyP.interestOutFace = face2;
forwarder.startProcessInterest(*face1, *interest1);
BOOST_CHECK_EQUAL(strategyP.afterReceiveInterest_count, 1);
shared_ptr<Interest> interest2 = makeInterest("ndn:/B/2");
strategyQ.afterReceiveInterest_count = 0;
strategyQ.interestOutFace = face2;
forwarder.startProcessInterest(*face1, *interest2);
BOOST_CHECK_EQUAL(strategyQ.afterReceiveInterest_count, 1);
this->advanceClocks(time::milliseconds(1), time::milliseconds(5));
shared_ptr<Data> data1 = makeData("ndn:/A/1/a");
strategyP.beforeSatisfyInterest_count = 0;
forwarder.startProcessData(*face2, *data1);
BOOST_CHECK_EQUAL(strategyP.beforeSatisfyInterest_count, 1);
shared_ptr<Data> data2 = makeData("ndn:/B/2/b");
strategyQ.beforeSatisfyInterest_count = 0;
forwarder.startProcessData(*face2, *data2);
BOOST_CHECK_EQUAL(strategyQ.beforeSatisfyInterest_count, 1);
shared_ptr<Interest> interest3 = makeInterest("ndn:/A/3");
interest3->setInterestLifetime(time::milliseconds(30));
forwarder.startProcessInterest(*face1, *interest3);
shared_ptr<Interest> interest4 = makeInterest("ndn:/B/4");
interest4->setInterestLifetime(time::milliseconds(5000));
forwarder.startProcessInterest(*face1, *interest4);
strategyP.beforeExpirePendingInterest_count = 0;
strategyQ.beforeExpirePendingInterest_count = 0;
this->advanceClocks(time::milliseconds(10), time::milliseconds(100));
BOOST_CHECK_EQUAL(strategyP.beforeExpirePendingInterest_count, 1);
BOOST_CHECK_EQUAL(strategyQ.beforeExpirePendingInterest_count, 0);
}
BOOST_AUTO_TEST_CASE(IncomingData)
{
Forwarder forwarder;
auto face1 = make_shared<DummyFace>();
auto face2 = make_shared<DummyFace>();
auto face3 = make_shared<DummyFace>();
auto face4 = make_shared<DummyFace>();
forwarder.addFace(face1);
forwarder.addFace(face2);
forwarder.addFace(face3);
forwarder.addFace(face4);
Pit& pit = forwarder.getPit();
shared_ptr<Interest> interest0 = makeInterest("ndn:/");
shared_ptr<pit::Entry> pit0 = pit.insert(*interest0).first;
pit0->insertOrUpdateInRecord(*face1, *interest0);
shared_ptr<Interest> interestA = makeInterest("ndn:/A");
shared_ptr<pit::Entry> pitA = pit.insert(*interestA).first;
pitA->insertOrUpdateInRecord(*face1, *interestA);
pitA->insertOrUpdateInRecord(*face2, *interestA);
shared_ptr<Interest> interestC = makeInterest("ndn:/A/B/C");
shared_ptr<pit::Entry> pitC = pit.insert(*interestC).first;
pitC->insertOrUpdateInRecord(*face3, *interestC);
pitC->insertOrUpdateInRecord(*face4, *interestC);
shared_ptr<Data> dataD = makeData("ndn:/A/B/C/D");
forwarder.onIncomingData(*face3, *dataD);
this->advanceClocks(time::milliseconds(1), time::milliseconds(5));
BOOST_CHECK_EQUAL(face1->sentData.size(), 1);
BOOST_CHECK_EQUAL(face2->sentData.size(), 1);
BOOST_CHECK_EQUAL(face3->sentData.size(), 0);
BOOST_CHECK_EQUAL(face4->sentData.size(), 1);
}
BOOST_AUTO_TEST_CASE(IncomingNack)
{
Forwarder forwarder;
auto face1 = make_shared<DummyFace>();
auto face2 = make_shared<DummyFace>();
auto face3 = make_shared<DummyFace>("dummy://", "dummy://",
ndn::nfd::FACE_SCOPE_NON_LOCAL,
ndn::nfd::FACE_PERSISTENCY_PERSISTENT,
ndn::nfd::LINK_TYPE_MULTI_ACCESS);
forwarder.addFace(face1);
forwarder.addFace(face2);
forwarder.addFace(face3);
DummyStrategy& strategyP = choose<DummyStrategy>(forwarder, "ndn:/", "ndn:/strategyP");
DummyStrategy& strategyQ = choose<DummyStrategy>(forwarder, "ndn:/B", "ndn:/strategyQ");
Pit& pit = forwarder.getPit();
// dispatch to the correct strategy
shared_ptr<Interest> interest1 = makeInterest("/A/AYJqayrzF", 562);
shared_ptr<pit::Entry> pit1 = pit.insert(*interest1).first;
pit1->insertOrUpdateOutRecord(*face1, *interest1);
shared_ptr<Interest> interest2 = makeInterest("/B/EVyP73ru", 221);
shared_ptr<pit::Entry> pit2 = pit.insert(*interest2).first;
pit2->insertOrUpdateOutRecord(*face1, *interest2);
lp::Nack nack1 = makeNack("/A/AYJqayrzF", 562, lp::NackReason::CONGESTION);
strategyP.afterReceiveNack_count = 0;
strategyQ.afterReceiveNack_count = 0;
forwarder.onIncomingNack(*face1, nack1);
BOOST_CHECK_EQUAL(strategyP.afterReceiveNack_count, 1);
BOOST_CHECK_EQUAL(strategyQ.afterReceiveNack_count, 0);
lp::Nack nack2 = makeNack("/B/EVyP73ru", 221, lp::NackReason::CONGESTION);
strategyP.afterReceiveNack_count = 0;
strategyQ.afterReceiveNack_count = 0;
forwarder.onIncomingNack(*face1, nack2);
BOOST_CHECK_EQUAL(strategyP.afterReceiveNack_count, 0);
BOOST_CHECK_EQUAL(strategyQ.afterReceiveNack_count, 1);
// record Nack on PIT out-record
pit::OutRecordCollection::iterator outRecord1 = pit1->getOutRecord(*face1);
BOOST_REQUIRE(outRecord1 != pit1->out_end());
BOOST_REQUIRE(outRecord1->getIncomingNack() != nullptr);
BOOST_CHECK_EQUAL(outRecord1->getIncomingNack()->getReason(), lp::NackReason::CONGESTION);
// drop if no PIT entry
lp::Nack nack3 = makeNack("/yEcw5HhdM", 243, lp::NackReason::CONGESTION);
strategyP.afterReceiveNack_count = 0;
strategyQ.afterReceiveNack_count = 0;
forwarder.onIncomingNack(*face1, nack3);
BOOST_CHECK_EQUAL(strategyP.afterReceiveNack_count, 0);
BOOST_CHECK_EQUAL(strategyQ.afterReceiveNack_count, 0);
// drop if no out-record
shared_ptr<Interest> interest4 = makeInterest("/Etab4KpY", 157);
shared_ptr<pit::Entry> pit4 = pit.insert(*interest4).first;
pit4->insertOrUpdateOutRecord(*face1, *interest4);
lp::Nack nack4a = makeNack("/Etab4KpY", 157, lp::NackReason::CONGESTION);
strategyP.afterReceiveNack_count = 0;
strategyQ.afterReceiveNack_count = 0;
forwarder.onIncomingNack(*face2, nack4a);
BOOST_CHECK_EQUAL(strategyP.afterReceiveNack_count, 0);
BOOST_CHECK_EQUAL(strategyQ.afterReceiveNack_count, 0);
// drop if Nonce does not match out-record
lp::Nack nack4b = makeNack("/Etab4KpY", 294, lp::NackReason::CONGESTION);
strategyP.afterReceiveNack_count = 0;
strategyQ.afterReceiveNack_count = 0;
forwarder.onIncomingNack(*face1, nack4b);
BOOST_CHECK_EQUAL(strategyP.afterReceiveNack_count, 0);
BOOST_CHECK_EQUAL(strategyQ.afterReceiveNack_count, 0);
// drop if inFace is multi-access
pit4->insertOrUpdateOutRecord(*face3, *interest4);
strategyP.afterReceiveNack_count = 0;
strategyQ.afterReceiveNack_count = 0;
forwarder.onIncomingNack(*face3, nack4a);
BOOST_CHECK_EQUAL(strategyP.afterReceiveNack_count, 0);
BOOST_CHECK_EQUAL(strategyQ.afterReceiveNack_count, 0);
}
BOOST_AUTO_TEST_CASE(OutgoingNack)
{
Forwarder forwarder;
auto face1 = make_shared<DummyFace>();
auto face2 = make_shared<DummyFace>();
auto face3 = make_shared<DummyFace>("dummy://", "dummy://",
ndn::nfd::FACE_SCOPE_NON_LOCAL,
ndn::nfd::FACE_PERSISTENCY_PERSISTENT,
ndn::nfd::LINK_TYPE_MULTI_ACCESS);
forwarder.addFace(face1);
forwarder.addFace(face2);
forwarder.addFace(face3);
Pit& pit = forwarder.getPit();
lp::NackHeader nackHeader;
nackHeader.setReason(lp::NackReason::CONGESTION);
// don't send Nack if there's no in-record
shared_ptr<Interest> interest1 = makeInterest("/fM5IVEtC", 719);
shared_ptr<pit::Entry> pit1 = pit.insert(*interest1).first;
pit1->insertOrUpdateInRecord(*face1, *interest1);
face2->sentNacks.clear();
forwarder.onOutgoingNack(pit1, *face2, nackHeader);
BOOST_CHECK_EQUAL(face2->sentNacks.size(), 0);
// send Nack with correct Nonce
shared_ptr<Interest> interest2a = makeInterest("/Vi8tRm9MG3", 152);
shared_ptr<pit::Entry> pit2 = pit.insert(*interest2a).first;
pit2->insertOrUpdateInRecord(*face1, *interest2a);
shared_ptr<Interest> interest2b = makeInterest("/Vi8tRm9MG3", 808);
pit2->insertOrUpdateInRecord(*face2, *interest2b);
face1->sentNacks.clear();
forwarder.onOutgoingNack(pit2, *face1, nackHeader);
BOOST_REQUIRE_EQUAL(face1->sentNacks.size(), 1);
BOOST_CHECK_EQUAL(face1->sentNacks.back().getReason(), lp::NackReason::CONGESTION);
BOOST_CHECK_EQUAL(face1->sentNacks.back().getInterest().getNonce(), 152);
// erase in-record
pit::InRecordCollection::iterator inRecord2a = pit2->getInRecord(*face1);
BOOST_CHECK(inRecord2a == pit2->in_end());
// send Nack with correct Nonce
face2->sentNacks.clear();
forwarder.onOutgoingNack(pit2, *face2, nackHeader);
BOOST_REQUIRE_EQUAL(face2->sentNacks.size(), 1);
BOOST_CHECK_EQUAL(face2->sentNacks.back().getReason(), lp::NackReason::CONGESTION);
BOOST_CHECK_EQUAL(face2->sentNacks.back().getInterest().getNonce(), 808);
// erase in-record
pit::InRecordCollection::iterator inRecord2b = pit2->getInRecord(*face1);
BOOST_CHECK(inRecord2b == pit2->in_end());
// don't send Nack to multi-access face
shared_ptr<Interest> interest2c = makeInterest("/Vi8tRm9MG3", 228);
pit2->insertOrUpdateInRecord(*face3, *interest2c);
face3->sentNacks.clear();
forwarder.onOutgoingNack(pit1, *face3, nackHeader);
BOOST_CHECK_EQUAL(face3->sentNacks.size(), 0);
}
BOOST_AUTO_TEST_CASE(InterestLoopNack)
{
Forwarder forwarder;
auto face1 = make_shared<DummyFace>();
auto face2 = make_shared<DummyFace>();
auto face3 = make_shared<DummyFace>("dummy://", "dummy://",
ndn::nfd::FACE_SCOPE_NON_LOCAL,
ndn::nfd::FACE_PERSISTENCY_PERSISTENT,
ndn::nfd::LINK_TYPE_MULTI_ACCESS);
auto face4 = make_shared<DummyFace>();
forwarder.addFace(face1);
forwarder.addFace(face2);
forwarder.addFace(face3);
forwarder.addFace(face4);
Fib& fib = forwarder.getFib();
fib.insert("/zT4XwK0Hnx").first->addNextHop(*face4, 0);
// receive Interest on face1
face1->sentNacks.clear();
shared_ptr<Interest> interest1a = makeInterest("/zT4XwK0Hnx/28JBUvbEzc", 732);
face1->receiveInterest(*interest1a);
BOOST_CHECK(face1->sentNacks.empty());
// receive Interest with duplicate Nonce on face1
face1->sentNacks.clear();
shared_ptr<Interest> interest1b = makeInterest("/zT4XwK0Hnx/28JBUvbEzc", 732);
face1->receiveInterest(*interest1b);
BOOST_REQUIRE_EQUAL(face1->sentNacks.size(), 1);
BOOST_CHECK_EQUAL(face1->sentNacks.back().getInterest(), *interest1b);
BOOST_CHECK_EQUAL(face1->sentNacks.back().getReason(), lp::NackReason::DUPLICATE);
// receive Interest with duplicate Nonce on face2
face2->sentNacks.clear();
shared_ptr<Interest> interest2a = makeInterest("/zT4XwK0Hnx/28JBUvbEzc", 732);
face2->receiveInterest(*interest2a);
BOOST_REQUIRE_EQUAL(face2->sentNacks.size(), 1);
BOOST_CHECK_EQUAL(face2->sentNacks.back().getInterest(), *interest2a);
BOOST_CHECK_EQUAL(face2->sentNacks.back().getReason(), lp::NackReason::DUPLICATE);
// receive Interest with new Nonce on face2
face2->sentNacks.clear();
shared_ptr<Interest> interest2b = makeInterest("/zT4XwK0Hnx/28JBUvbEzc", 944);
face2->receiveInterest(*interest2b);
BOOST_CHECK(face2->sentNacks.empty());
// receive Interest with duplicate Nonce on face3, don't send Nack to multi-access face
face3->sentNacks.clear();
shared_ptr<Interest> interest3a = makeInterest("/zT4XwK0Hnx/28JBUvbEzc", 732);
face3->receiveInterest(*interest3a);
BOOST_CHECK(face3->sentNacks.empty());
}
BOOST_FIXTURE_TEST_CASE(InterestLoopWithShortLifetime, UnitTestTimeFixture) // Bug 1953
{
Forwarder forwarder;
auto face1 = make_shared<DummyFace>();
auto face2 = make_shared<DummyFace>();
forwarder.addFace(face1);
forwarder.addFace(face2);
// cause an Interest sent out of face2 to loop back into face1 after a delay
face2->afterSend.connect([face1, face2] (uint32_t pktType) {
if (pktType == tlv::Interest) {
auto interest = make_shared<Interest>(face2->sentInterests.back());
scheduler::schedule(time::milliseconds(170), [face1, interest] { face1->receiveInterest(*interest); });
}
});
Fib& fib = forwarder.getFib();
fib.insert("/A").first->addNextHop(*face2, 0);
// receive an Interest
shared_ptr<Interest> interest = makeInterest("ndn:/A/1");
interest->setNonce(82101183);
interest->setInterestLifetime(time::milliseconds(50));
face1->receiveInterest(*interest);
// interest should be forwarded only once, as long as Nonce is in Dead Nonce List
BOOST_ASSERT(time::milliseconds(25) * 40 < forwarder.getDeadNonceList().getLifetime());
this->advanceClocks(time::milliseconds(25), 40);
BOOST_CHECK_EQUAL(face2->sentInterests.size(), 1);
// It's unnecessary to check that Interest with duplicate Nonce can be forwarded again
// after it's gone from Dead Nonce List, because the entry lifetime of Dead Nonce List
// is an implementation decision. NDN protocol requires Name+Nonce to be unique,
// without specifying when Name+Nonce could repeat. Forwarder is permitted to suppress
// an Interest if its Name+Nonce has appeared any point in the past.
}
BOOST_AUTO_TEST_CASE(PitLeak) // Bug 3484
{
Forwarder forwarder;
shared_ptr<Face> face1 = make_shared<DummyFace>();
forwarder.addFace(face1);
shared_ptr<Interest> interest = makeInterest("ndn:/hcLSAsQ9A");
interest->setNonce(61883075);
interest->setInterestLifetime(time::seconds(2));
DeadNonceList& dnl = forwarder.getDeadNonceList();
dnl.add(interest->getName(), interest->getNonce());
Pit& pit = forwarder.getPit();
BOOST_REQUIRE_EQUAL(pit.size(), 0);
forwarder.startProcessInterest(*face1, *interest);
this->advanceClocks(time::milliseconds(100), time::seconds(20));
BOOST_CHECK_EQUAL(pit.size(), 0);
}
class MalformedPacketFixture : public UnitTestTimeFixture
{
protected:
MalformedPacketFixture()
: face1(make_shared<DummyFace>())
, face2(make_shared<DummyFace>())
{
forwarder.addFace(face1);
forwarder.addFace(face2);
}
void
processInterest(shared_ptr<Interest> badInterest)
{
forwarder.startProcessInterest(*face1, *badInterest);
this->continueProcessPacket();
}
// processData
// processNack
private:
void
continueProcessPacket()
{
this->advanceClocks(time::milliseconds(10), time::seconds(6));
}
protected:
Forwarder forwarder;
shared_ptr<DummyFace> face1; // face of incoming bad packet
shared_ptr<DummyFace> face2; // another face for setting up states
};
BOOST_FIXTURE_TEST_SUITE(MalformedPacket, MalformedPacketFixture)
BOOST_AUTO_TEST_CASE(BadLink)
{
shared_ptr<Interest> goodInterest = makeInterest("ndn:/");
Block wire = goodInterest->wireEncode();
wire.push_back(ndn::encoding::makeEmptyBlock(tlv::Data)); // bad Link
wire.encode();
auto badInterest = make_shared<Interest>();
BOOST_REQUIRE_NO_THROW(badInterest->wireDecode(wire));
BOOST_REQUIRE(badInterest->hasLink());
BOOST_REQUIRE_THROW(badInterest->getLink(), tlv::Error);
BOOST_CHECK_NO_THROW(this->processInterest(badInterest));
}
BOOST_AUTO_TEST_SUITE_END() // MalformedPacket
BOOST_AUTO_TEST_SUITE_END()
BOOST_AUTO_TEST_SUITE_END()
} // namespace tests
} // namespace nfd