#include "ns3/core-module.h"
#include "ns3/node.h"
-#include "ns3/ns3_simulator.h"
#include "network_ns3.hpp"
+#include "ns3/ns3_simulator.hpp"
-#include "src/instr/instr_private.h" // TRACE_is_enabled(). FIXME: remove by subscribing tracing to the surf signals
+#include "src/instr/instr_private.hpp" // TRACE_is_enabled(). FIXME: remove by subscribing tracing to the surf signals
#include "src/kernel/routing/NetPoint.hpp"
#include "simgrid/s4u/Engine.hpp"
* Callbacks *
*************/
-static void clusterCreation_cb(sg_platf_cluster_cbarg_t cluster)
+static void clusterCreation_cb(ClusterCreationArgs* cluster)
{
- char* lat = bprintf("%fs", cluster->lat);
- char* bw = bprintf("%fBps", cluster->bw);
-
- for (int i : *cluster->radicals) {
+ for (int const& i : *cluster->radicals) {
// Routers don't create a router on the other end of the private link by themselves.
// We just need this router to be given an ID so we create a temporary NetPointNS3 so that it gets one
NetPointNs3* host_dst = new NetPointNs3();
// Create private link
- char* host_id = bprintf("%s%d%s", cluster->prefix, i, cluster->suffix);
- NetPointNs3* host_src = sg_host_by_name(host_id)->pimpl_netpoint->extension<NetPointNs3>();
- xbt_assert(host_src, "Cannot find a NS3 host of name %s", host_id);
+ std::string host_id = cluster->prefix + std::to_string(i) + cluster->suffix;
+ NetPointNs3* host_src = sg_host_by_name(host_id.c_str())->pimpl_netpoint->extension<NetPointNs3>();
+ xbt_assert(host_src, "Cannot find a NS3 host of name %s", host_id.c_str());
- ns3_add_link(host_src, host_dst, bw, lat);
+ // Any NS3 route is symmetrical
+ ns3_add_link(host_src, host_dst, cluster->bw, cluster->lat);
delete host_dst;
- free(host_id);
}
- xbt_free(lat);
- xbt_free(bw);
//Create link backbone
- lat = bprintf("%fs", cluster->bb_lat);
- bw = bprintf("%fBps", cluster->bb_bw);
- ns3_add_cluster(cluster->id, bw, lat);
- xbt_free(lat);
- xbt_free(bw);
+ ns3_add_cluster(cluster->id.c_str(), cluster->bb_bw, cluster->bb_lat);
}
static void routeCreation_cb(bool symmetrical, simgrid::kernel::routing::NetPoint* src,
XBT_DEBUG("Route from '%s' to '%s' with link '%s' %s", src->cname(), dst->cname(), link->cname(),
(symmetrical ? "(symmetrical)" : "(not symmetrical)"));
- char* link_bdw = bprintf("%fBps", link->bandwidth());
- char* link_lat = bprintf("%fs", link->latency());
// XBT_DEBUG("src (%s), dst (%s), src_id = %d, dst_id = %d",src,dst, src_id, dst_id);
- XBT_DEBUG("\tLink (%s) bdw:%s lat:%s", link->cname(), link_bdw, link_lat);
+ XBT_DEBUG("\tLink (%s) bw:%fbps lat:%fs", link->cname(), link->bandwidth(),
+ link->latency());
// create link ns3
NetPointNs3* host_src = src->extension<NetPointNs3>();
xbt_assert(host_src != nullptr, "Network element %s does not seem to be NS3-ready", src->cname());
xbt_assert(host_dst != nullptr, "Network element %s does not seem to be NS3-ready", dst->cname());
- ns3_add_link(host_src, host_dst, link_bdw, link_lat);
- if (symmetrical)
- ns3_add_link(host_dst, host_src, link_bdw, link_lat);
-
- xbt_free(link_bdw);
- xbt_free(link_lat);
+ ns3_add_link(host_src, host_dst, link->bandwidth(), link->latency());
} else {
static bool warned_about_long_routes = false;
}
/* Create the ns3 topology based on routing strategy */
-static void postparse_cb(void)
+static void postparse_cb()
{
IPV4addr.shrink_to_fit();
}
static simgrid::config::Flag<std::string> ns3_tcp_model("ns3/TcpModel",
- "The ns3 tcp model can be : NewReno or Reno or Tahoe",
- "default");
+ "The ns3 tcp model can be : NewReno or Reno or Tahoe", "NewReno");
namespace simgrid {
namespace surf {
NetworkNS3Model::NetworkNS3Model() : NetworkModel() {
NetPointNs3::EXTENSION_ID = simgrid::kernel::routing::NetPoint::extension_create<NetPointNs3>();
+ flowFromSock = xbt_dict_new_homogeneous([](void* p) { delete static_cast<SgFlow*>(p); });
ns3_initialize(ns3_tcp_model.get().c_str());
simgrid::kernel::routing::NetPoint::onCreation.connect([](simgrid::kernel::routing::NetPoint* pt) {
pt->extension_set<NetPointNs3>(new NetPointNs3());
-
+ XBT_VERB("SimGrid's %s is known as node %d within NS3", pt->cname(), pt->extension<NetPointNs3>()->node_num);
});
simgrid::surf::on_cluster.connect(&clusterCreation_cb);
simgrid::s4u::onPlatformCreated.connect(&postparse_cb);
simgrid::s4u::NetZone::onRouteCreation.connect(&routeCreation_cb);
+ LogComponentEnable("PacketSink", ns3::LOG_LEVEL_INFO);
LogComponentEnable("UdpEchoClientApplication", ns3::LOG_LEVEL_INFO);
LogComponentEnable("UdpEchoServerApplication", ns3::LOG_LEVEL_INFO);
}
NetworkNS3Model::~NetworkNS3Model() {
- for (auto addr : IPV4addr)
+ for (auto const& addr : IPV4addr)
free(addr);
IPV4addr.clear();
xbt_dict_free(&flowFromSock);
}
-LinkImpl* NetworkNS3Model::createLink(const char* name, double bandwidth, double latency,
+LinkImpl* NetworkNS3Model::createLink(const std::string& name, double bandwidth, double latency,
e_surf_link_sharing_policy_t policy)
{
return new LinkNS3(this, name, bandwidth, latency);
XBT_DEBUG("ns3_next_occuring_event");
//get the first relevant value from the running_actions list
- if (!getRunningActionSet()->size() || now == 0.0)
+ if (not getRunningActionSet()->size() || now == 0.0)
return -1.0;
else
do {
std::vector<LinkImpl*> route = std::vector<LinkImpl*>();
action->src_->routeTo(action->dst_, &route, nullptr);
- for (auto link : route)
+ for (auto const& link : route)
TRACE_surf_link_set_utilization(link->cname(), action->getCategory(), (data_delta_sent) / delta, now - delta,
delta);
if(sgFlow->finished_){
xbt_dynar_push(socket_to_destroy,&ns3Socket);
XBT_DEBUG("Destroy socket %p of action %p", ns3Socket, action);
- action->finish();
- action->setState(Action::State::done);
+ action->finish(Action::State::done);
}
}
- while (!xbt_dynar_is_empty(socket_to_destroy)){
+ while (not xbt_dynar_is_empty(socket_to_destroy)) {
xbt_dynar_pop(socket_to_destroy,&ns3Socket);
if (XBT_LOG_ISENABLED(ns3, xbt_log_priority_debug)) {
- SgFlow *flow = (SgFlow*)xbt_dict_get (flowFromSock, ns3Socket);
+ SgFlow* flow = static_cast<SgFlow*>(xbt_dict_get(flowFromSock, ns3Socket));
XBT_DEBUG ("Removing socket %p of action %p", ns3Socket, flow->action_);
}
xbt_dict_remove(flowFromSock, ns3Socket);
* Resource *
************/
-LinkNS3::LinkNS3(NetworkNS3Model* model, const char* name, double bandwidth, double latency)
+LinkNS3::LinkNS3(NetworkNS3Model* model, const std::string& name, double bandwidth, double latency)
: LinkImpl(model, name, nullptr)
{
bandwidth_.peak = bandwidth;
NetworkNS3Action::NetworkNS3Action(Model* model, double size, s4u::Host* src, s4u::Host* dst)
: NetworkAction(model, size, false)
{
- XBT_DEBUG("Communicate from %s to %s", src->cname(), dst->cname());
+ XBT_DEBUG("Communicate from %s to %s", src->getCname(), dst->getCname());
src_ = src;
dst_ = dst;
- ns3_create_flow(src, dst, surf_get_clock(), size, this);
+ ns3_create_flow(src, dst, size, this);
s4u::Link::onCommunicate(this, src, dst);
}
THROW_UNIMPLEMENTED;
}
- /* Test whether a flow is suspended */
+std::list<LinkImpl*> NetworkNS3Action::links()
+{
+ THROW_UNIMPLEMENTED;
+}
+
+/* Test whether a flow is suspended */
bool NetworkNS3Action::isSuspended()
{
return false;
int NetworkNS3Action::unref()
{
refcount_--;
- if (!refcount_) {
+ if (not refcount_) {
if (action_hook.is_linked())
stateSet_->erase(stateSet_->iterator_to(*this));
XBT_DEBUG ("Removing action %p", this);
ns3::Simulator::Run ();
}
-void ns3_create_flow(simgrid::s4u::Host* src, simgrid::s4u::Host* dst, double startTime, u_int32_t TotalBytes,
- simgrid::surf::NetworkNS3Action* action)
-{
+void ns3_create_flow(simgrid::s4u::Host* src, simgrid::s4u::Host* dst,
+ u_int32_t TotalBytes,
+ simgrid::surf::NetworkNS3Action* action) {
unsigned int node1 = src->pimpl_netpoint->extension<NetPointNs3>()->node_num;
unsigned int node2 = dst->pimpl_netpoint->extension<NetPointNs3>()->node_num;
xbt_assert(addr != nullptr, "Element %s is unknown to NS3. Is it connected to any one-hop link?",
dst->pimpl_netpoint->cname());
- XBT_DEBUG("ns3_create_flow %d Bytes from %d to %d with Interface %s",TotalBytes, node1, node2,addr);
+ XBT_DEBUG("ns3_create_flow %u Bytes from %u to %u with Interface %s", TotalBytes, node1, node2, addr);
ns3::PacketSinkHelper sink("ns3::TcpSocketFactory", ns3::InetSocketAddress (ns3::Ipv4Address::GetAny(), port_number));
sink.Install (dst_node);
- ns3::Ptr<ns3::Socket> sock = ns3::Socket::CreateSocket (src_node, ns3::TcpSocketFactory::GetTypeId());
+ ns3::Ptr<ns3::Socket> sock = ns3::Socket::CreateSocket(src_node, ns3::TcpSocketFactory::GetTypeId());
xbt_dict_set(flowFromSock, transformSocketPtr(sock), new SgFlow(TotalBytes, action), nullptr);
sock->Bind(ns3::InetSocketAddress(port_number));
- XBT_DEBUG("Create flow starting to %fs + %fs = %fs",
- startTime-ns3::Simulator::Now().GetSeconds(), ns3::Simulator::Now().GetSeconds(), startTime);
- ns3::Simulator::Schedule (ns3::Seconds(startTime-ns3::Simulator::Now().GetSeconds()),
- &StartFlow, sock, addr, port_number);
+ ns3::Simulator::ScheduleNow(&StartFlow, sock, addr, port_number);
port_number++;
xbt_assert(port_number <= 65000, "Too many connections! Port number is saturated.");
// "ns3::TcpReno"
// "ns3::TcpTahoe"
- ns3::Config::SetDefault ("ns3::TcpSocket::SegmentSize", ns3::UintegerValue (1024)); // 1024-byte packet for easier reading
+ ns3::Config::SetDefault ("ns3::TcpSocket::SegmentSize", ns3::UintegerValue (1000));
ns3::Config::SetDefault ("ns3::TcpSocket::DelAckCount", ns3::UintegerValue (1));
+ ns3::Config::SetDefault ("ns3::TcpSocketBase::Timestamp", ns3::BooleanValue (false));
- if (!strcmp(TcpProtocol,"default"))
+ if (not strcmp(TcpProtocol, "default"))
return;
- if (!strcmp(TcpProtocol,"Reno")) {
+ if (not strcmp(TcpProtocol, "Reno")) {
XBT_INFO("Switching Tcp protocol to '%s'",TcpProtocol);
ns3::Config::SetDefault ("ns3::TcpL4Protocol::SocketType", ns3::StringValue("ns3::TcpReno"));
return;
}
- if (!strcmp(TcpProtocol,"NewReno")) {
+ if (not strcmp(TcpProtocol, "NewReno")) {
XBT_INFO("Switching Tcp protocol to '%s'",TcpProtocol);
ns3::Config::SetDefault ("ns3::TcpL4Protocol::SocketType", ns3::StringValue("ns3::TcpNewReno"));
return;
}
- if(!strcmp(TcpProtocol,"Tahoe")){
+ if (not strcmp(TcpProtocol, "Tahoe")) {
XBT_INFO("Switching Tcp protocol to '%s'",TcpProtocol);
ns3::Config::SetDefault ("ns3::TcpL4Protocol::SocketType", ns3::StringValue("ns3::TcpTahoe"));
return;
xbt_die("The ns3/TcpModel must be : NewReno or Reno or Tahoe");
}
-void ns3_add_cluster(const char* id, char* bw, char* lat)
-{
+void ns3_add_cluster(const char* id, double bw, double lat) {
ns3::NodeContainer Nodes;
for (unsigned int i = number_of_clusters_nodes; i < Cluster_nodes.GetN(); i++) {
Nodes.Add(Cluster_nodes.Get(i));
- XBT_DEBUG("Add node %d to cluster",i);
+ XBT_DEBUG("Add node %u to cluster", i);
}
number_of_clusters_nodes = Cluster_nodes.GetN();
- XBT_DEBUG("Add router %d to cluster",nodes.GetN()-Nodes.GetN()-1);
+ XBT_DEBUG("Add router %u to cluster", nodes.GetN() - Nodes.GetN() - 1);
Nodes.Add(nodes.Get(nodes.GetN()-Nodes.GetN()-1));
xbt_assert(Nodes.GetN() <= 65000, "Cluster with NS3 is limited to 65000 nodes");
ns3::CsmaHelper csma;
- csma.SetChannelAttribute ("DataRate", ns3::StringValue (bw));
- csma.SetChannelAttribute ("Delay", ns3::StringValue (lat));
- ns3::NetDeviceContainer devices = csma.Install (Nodes);
+ csma.SetDeviceAttribute("DataRate", ns3::DataRateValue(ns3::DataRate(bw*8)));// NS3 takes bps, but we provide Bps
+ csma.SetChannelAttribute("Delay", ns3::TimeValue(ns3::Seconds(lat)));
+ ns3::NetDeviceContainer devices = csma.Install(Nodes);
XBT_DEBUG("Create CSMA");
char * adr = bprintf("%d.%d.0.0",number_of_networks,number_of_links);
}else{
number_of_links++;
}
- XBT_DEBUG("Number of nodes in Cluster_nodes: %d",Cluster_nodes.GetN());
+ XBT_DEBUG("Number of nodes in Cluster_nodes: %u", Cluster_nodes.GetN());
}
static char* transformIpv4Address (ns3::Ipv4Address from){
return bprintf("%s",s.c_str());
}
-void ns3_add_link(NetPointNs3* src, NetPointNs3* dst, char* bw, char* lat)
-{
+void ns3_add_link(NetPointNs3* src, NetPointNs3* dst, double bw, double lat) {
ns3::PointToPointHelper pointToPoint;
- ns3::NetDeviceContainer netA;
ns3::Ipv4AddressHelper address;
int srcNum = src->node_num;
ns3::Ptr<ns3::Node> a = nodes.Get(srcNum);
ns3::Ptr<ns3::Node> b = nodes.Get(dstNum);
- XBT_DEBUG("\tAdd PTP from %d to %d bw:'%s' lat:'%s'", srcNum, dstNum, bw, lat);
- pointToPoint.SetDeviceAttribute ("DataRate", ns3::StringValue (bw));
- pointToPoint.SetChannelAttribute ("Delay", ns3::StringValue (lat));
+ XBT_DEBUG("\tAdd PTP from %d to %d bw:'%f Bps' lat:'%fs'", srcNum, dstNum, bw, lat);
+ pointToPoint.SetDeviceAttribute("DataRate", ns3::DataRateValue(ns3::DataRate(bw*8)));// NS3 takes bps, but we provide Bps
+ pointToPoint.SetChannelAttribute("Delay", ns3::TimeValue(ns3::Seconds(lat)));
+
+ char *filename = bprintf("link-%d-%d.tr", srcNum, dstNum);
+ ns3::AsciiTraceHelper ascii;
+ pointToPoint.EnableAsciiAll (ascii.CreateFileStream (filename));
+ pointToPoint.EnablePcapAll ("tcp-bulk-send", false);
+ xbt_free(filename);
+ ns3::NetDeviceContainer netA;
netA.Add(pointToPoint.Install (a, b));
char * adr = bprintf("%d.%d.0.0",number_of_networks,number_of_links);