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/* -*- Mode: C++; c-file-style: "gnu"; indent-tabs-mode:nil; -*- */ |
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/* |
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* Copyright (c) 2010 Keio University |
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* |
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* This program is free software; you can redistribute it and/or modify |
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* it under the terms of the GNU General Public License version 2 as |
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* published by the Free Software Foundation; |
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* |
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* This program is distributed in the hope that it will be useful, |
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* but WITHOUT ANY WARRANTY; without even the implied warranty of |
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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* GNU General Public License for more details. |
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* |
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* You should have received a copy of the GNU General Public License |
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* along with this program; if not, write to the Free Software |
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA |
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* |
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* Author: Hajime Tazaki <tazaki@sfc.wide.ad.jp> |
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*/ |
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/** |
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* This is the test code for ipv4-raw-socket-impl.cc. |
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*/ |
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|
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#include "ns3/test.h" |
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#include "ns3/socket-factory.h" |
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#include "ns3/ipv4-raw-socket-factory.h" |
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#include "ns3/simulator.h" |
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#include "ns3/simple-channel.h" |
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#include "ns3/simple-net-device.h" |
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#include "ns3/drop-tail-queue.h" |
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#include "ns3/socket.h" |
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|
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#include "ns3/log.h" |
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#include "ns3/node.h" |
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#include "ns3/inet-socket-address.h" |
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|
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#include "arp-l3-protocol.h" |
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#include "ipv4-l3-protocol.h" |
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#include "icmpv4-l4-protocol.h" |
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#include "ns3/ipv4-list-routing.h" |
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#include "ns3/ipv4-static-routing.h" |
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|
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#include <string> |
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#include <limits> |
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namespace ns3 { |
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|
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static void |
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AddInternetStack (Ptr<Node> node) |
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{ |
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//ARP |
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Ptr<ArpL3Protocol> arp = CreateObject<ArpL3Protocol> (); |
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node->AggregateObject(arp); |
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//IPV4 |
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Ptr<Ipv4L3Protocol> ipv4 = CreateObject<Ipv4L3Protocol> (); |
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//Routing for Ipv4 |
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Ptr<Ipv4ListRouting> ipv4Routing = CreateObject<Ipv4ListRouting> (); |
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ipv4->SetRoutingProtocol (ipv4Routing); |
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Ptr<Ipv4StaticRouting> ipv4staticRouting = CreateObject<Ipv4StaticRouting> (); |
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ipv4Routing->AddRoutingProtocol (ipv4staticRouting, 0); |
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node->AggregateObject(ipv4); |
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//ICMP |
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Ptr<Icmpv4L4Protocol> icmp = CreateObject<Icmpv4L4Protocol> (); |
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node->AggregateObject(icmp); |
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// //Ipv4Raw |
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// Ptr<Ipv4UdpL4Protocol> udp = CreateObject<UdpL4Protocol> (); |
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// node->AggregateObject(udp); |
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} |
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|
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|
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class Ipv4RawSocketImplTest: public TestCase |
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{ |
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Ptr<Packet> m_receivedPacket; |
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Ptr<Packet> m_receivedPacket2; |
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void DoSendData (Ptr<Socket> socket, std::string to); |
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void SendData (Ptr<Socket> socket, std::string to); |
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|
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public: |
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virtual bool DoRun (void); |
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Ipv4RawSocketImplTest (); |
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|
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void ReceivePacket (Ptr<Socket> socket, Ptr<Packet> packet, const Address &from); |
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void ReceivePacket2 (Ptr<Socket> socket, Ptr<Packet> packet, const Address &from); |
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void ReceivePkt (Ptr<Socket> socket); |
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void ReceivePkt2 (Ptr<Socket> socket); |
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}; |
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|
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|
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Ipv4RawSocketImplTest::Ipv4RawSocketImplTest () |
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: TestCase ("IPv4 Raw socket implementation") |
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{ |
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} |
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|
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void Ipv4RawSocketImplTest::ReceivePacket (Ptr<Socket> socket, Ptr<Packet> packet, const Address &from) |
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{ |
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m_receivedPacket = packet; |
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} |
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|
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void Ipv4RawSocketImplTest::ReceivePacket2 (Ptr<Socket> socket, Ptr<Packet> packet, const Address &from) |
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{ |
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m_receivedPacket2 = packet; |
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} |
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|
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void Ipv4RawSocketImplTest::ReceivePkt (Ptr<Socket> socket) |
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{ |
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uint32_t availableData; |
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availableData = socket->GetRxAvailable (); |
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m_receivedPacket = socket->Recv (std::numeric_limits<uint32_t>::max(), 0); |
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NS_ASSERT (availableData == m_receivedPacket->GetSize ()); |
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} |
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|
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void Ipv4RawSocketImplTest::ReceivePkt2 (Ptr<Socket> socket) |
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{ |
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uint32_t availableData; |
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availableData = socket->GetRxAvailable (); |
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m_receivedPacket2 = socket->Recv (std::numeric_limits<uint32_t>::max(), 0); |
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NS_ASSERT (availableData == m_receivedPacket2->GetSize ()); |
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} |
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|
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void |
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Ipv4RawSocketImplTest::DoSendData (Ptr<Socket> socket, std::string to) |
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{ |
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Address realTo = InetSocketAddress (Ipv4Address(to.c_str()), 0); |
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NS_TEST_EXPECT_MSG_NE (socket->SendTo (Create<Packet> (123), 0, realTo), |
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-1, to); |
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} |
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|
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void |
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Ipv4RawSocketImplTest::SendData (Ptr<Socket> socket, std::string to) |
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{ |
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m_receivedPacket = Create<Packet> (); |
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m_receivedPacket2 = Create<Packet> (); |
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Simulator::ScheduleWithContext (socket->GetNode ()->GetId (), Seconds (0), |
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&Ipv4RawSocketImplTest::DoSendData, this, socket, to); |
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Simulator::Run (); |
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} |
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|
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bool |
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Ipv4RawSocketImplTest::DoRun (void) |
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{ |
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// Create topology |
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|
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// Receiver Node |
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Ptr<Node> rxNode = CreateObject<Node> (); |
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AddInternetStack (rxNode); |
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Ptr<SimpleNetDevice> rxDev1, rxDev2; |
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{ // first interface |
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rxDev1 = CreateObject<SimpleNetDevice> (); |
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rxDev1->SetAddress (Mac48Address::ConvertFrom (Mac48Address::Allocate ())); |
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rxNode->AddDevice (rxDev1); |
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Ptr<Ipv4> ipv4 = rxNode->GetObject<Ipv4> (); |
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uint32_t netdev_idx = ipv4->AddInterface (rxDev1); |
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Ipv4InterfaceAddress ipv4Addr = Ipv4InterfaceAddress (Ipv4Address ("10.0.0.1"), Ipv4Mask (0xffff0000U)); |
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ipv4->AddAddress (netdev_idx, ipv4Addr); |
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ipv4->SetUp (netdev_idx); |
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} |
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|
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{ // second interface |
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rxDev2 = CreateObject<SimpleNetDevice> (); |
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rxDev2->SetAddress (Mac48Address::ConvertFrom (Mac48Address::Allocate ())); |
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rxNode->AddDevice (rxDev2); |
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Ptr<Ipv4> ipv4 = rxNode->GetObject<Ipv4> (); |
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uint32_t netdev_idx = ipv4->AddInterface (rxDev2); |
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Ipv4InterfaceAddress ipv4Addr = Ipv4InterfaceAddress (Ipv4Address ("10.0.1.1"), Ipv4Mask (0xffff0000U)); |
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ipv4->AddAddress (netdev_idx, ipv4Addr); |
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ipv4->SetUp (netdev_idx); |
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} |
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|
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// Sender Node |
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Ptr<Node> txNode = CreateObject<Node> (); |
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AddInternetStack (txNode); |
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Ptr<SimpleNetDevice> txDev1; |
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{ |
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txDev1 = CreateObject<SimpleNetDevice> (); |
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txDev1->SetAddress (Mac48Address::ConvertFrom (Mac48Address::Allocate ())); |
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txNode->AddDevice (txDev1); |
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Ptr<Ipv4> ipv4 = txNode->GetObject<Ipv4> (); |
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uint32_t netdev_idx = ipv4->AddInterface (txDev1); |
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Ipv4InterfaceAddress ipv4Addr = Ipv4InterfaceAddress (Ipv4Address ("10.0.0.2"), Ipv4Mask (0xffff0000U)); |
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ipv4->AddAddress (netdev_idx, ipv4Addr); |
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ipv4->SetUp (netdev_idx); |
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} |
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Ptr<SimpleNetDevice> txDev2; |
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{ |
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txDev2 = CreateObject<SimpleNetDevice> (); |
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txDev2->SetAddress (Mac48Address::ConvertFrom (Mac48Address::Allocate ())); |
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txNode->AddDevice (txDev2); |
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Ptr<Ipv4> ipv4 = txNode->GetObject<Ipv4> (); |
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uint32_t netdev_idx = ipv4->AddInterface (txDev2); |
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Ipv4InterfaceAddress ipv4Addr = Ipv4InterfaceAddress (Ipv4Address ("10.0.1.2"), Ipv4Mask (0xffff0000U)); |
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ipv4->AddAddress (netdev_idx, ipv4Addr); |
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ipv4->SetUp (netdev_idx); |
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} |
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|
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// link the two nodes |
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Ptr<SimpleChannel> channel1 = CreateObject<SimpleChannel> (); |
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rxDev1->SetChannel (channel1); |
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txDev1->SetChannel (channel1); |
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|
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Ptr<SimpleChannel> channel2 = CreateObject<SimpleChannel> (); |
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rxDev2->SetChannel (channel2); |
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txDev2->SetChannel (channel2); |
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|
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|
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// Create the IPv4 Raw sockets |
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Ptr<SocketFactory> rxSocketFactory = rxNode->GetObject<Ipv4RawSocketFactory> (); |
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Ptr<Socket> rxSocket = rxSocketFactory->CreateSocket (); |
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NS_TEST_EXPECT_MSG_EQ (rxSocket->Bind (InetSocketAddress (Ipv4Address ("0.0.0.0.0"), 0)), 0, "trivial"); |
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rxSocket->SetRecvCallback (MakeCallback (&Ipv4RawSocketImplTest::ReceivePkt, this)); |
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|
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Ptr<Socket> rxSocket2 = rxSocketFactory->CreateSocket (); |
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rxSocket2->SetRecvCallback (MakeCallback (&Ipv4RawSocketImplTest::ReceivePkt2, this)); |
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NS_TEST_EXPECT_MSG_EQ (rxSocket2->Bind (InetSocketAddress (Ipv4Address ("10.0.1.1"), 0)), 0, "trivial"); |
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|
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Ptr<SocketFactory> txSocketFactory = txNode->GetObject<Ipv4RawSocketFactory> (); |
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Ptr<Socket> txSocket = txSocketFactory->CreateSocket (); |
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|
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// ------ Now the tests ------------ |
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|
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// Unicast test |
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SendData (txSocket, "10.0.0.1"); |
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NS_TEST_EXPECT_MSG_EQ (m_receivedPacket->GetSize (), 143, "recv: 10.0.0.1"); |
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NS_TEST_EXPECT_MSG_EQ (m_receivedPacket2->GetSize (), 0, "second interface should not receive it"); |
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|
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m_receivedPacket->RemoveAllByteTags (); |
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m_receivedPacket2->RemoveAllByteTags (); |
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|
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#if 0 |
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// Simple broadcast test |
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|
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SendData (txSocket, "255.255.255.255"); |
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NS_TEST_EXPECT_MSG_EQ (m_receivedPacket->GetSize (), 143, "recv: 255.255.255.255"); |
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NS_TEST_EXPECT_MSG_EQ (m_receivedPacket2->GetSize (), 143, "second socket should not receive it (it is bound specifically to the second interface's address"); |
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|
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m_receivedPacket->RemoveAllByteTags (); |
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m_receivedPacket2->RemoveAllByteTags (); |
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#endif |
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|
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// Simple Link-local multicast test |
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|
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txSocket->Bind (InetSocketAddress (Ipv4Address ("10.0.1.2"), 0)); |
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SendData (txSocket, "224.0.0.9"); |
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NS_TEST_EXPECT_MSG_EQ (m_receivedPacket->GetSize (), 143, "recv: 224.0.0.9"); |
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NS_TEST_EXPECT_MSG_EQ (m_receivedPacket2->GetSize (), 0, "second socket should not receive it (it is bound specifically to the second interface's address"); |
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|
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m_receivedPacket->RemoveAllByteTags (); |
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m_receivedPacket2->RemoveAllByteTags (); |
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|
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#if 0 |
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// Broadcast test with multiple receiving sockets |
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|
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// When receiving broadcast packets, all sockets sockets bound to |
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// the address/port should receive a copy of the same packet -- if |
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// the socket address matches. |
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rxSocket2->Dispose (); |
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rxSocket2 = rxSocketFactory->CreateSocket (); |
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rxSocket2->SetRecvCallback (MakeCallback (&Ipv4RawSocketImplTest::ReceivePkt2, this)); |
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NS_TEST_EXPECT_MSG_EQ (rxSocket2->Bind (InetSocketAddress (Ipv4Address ("0.0.0.0"), 0)), 0, "trivial"); |
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|
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SendData (txSocket, "255.255.255.255"); |
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NS_TEST_EXPECT_MSG_EQ (m_receivedPacket->GetSize (), 143, "recv: 255.255.255.255"); |
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NS_TEST_EXPECT_MSG_EQ (m_receivedPacket2->GetSize (), 143, "recv: 255.255.255.255"); |
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#endif |
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|
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m_receivedPacket = 0; |
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m_receivedPacket2 = 0; |
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|
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Simulator::Destroy (); |
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|
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return GetErrorStatus (); |
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} |
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//----------------------------------------------------------------------------- |
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class Ipv4RawTestSuite : public TestSuite |
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{ |
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public: |
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Ipv4RawTestSuite () : TestSuite ("ipv4-raw", UNIT) |
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{ |
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AddTestCase (new Ipv4RawSocketImplTest); |
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} |
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} g_ipv4rawTestSuite; |
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|
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}; // namespace ns3 |