ethernet-factory.cpp
Go to the documentation of this file.
1 /* -*- Mode:C++; c-file-style:"gnu"; indent-tabs-mode:nil; -*- */
2 /*
3  * Copyright (c) 2014-2018, Regents of the University of California,
4  * Arizona Board of Regents,
5  * Colorado State University,
6  * University Pierre & Marie Curie, Sorbonne University,
7  * Washington University in St. Louis,
8  * Beijing Institute of Technology,
9  * The University of Memphis.
10  *
11  * This file is part of NFD (Named Data Networking Forwarding Daemon).
12  * See AUTHORS.md for complete list of NFD authors and contributors.
13  *
14  * NFD is free software: you can redistribute it and/or modify it under the terms
15  * of the GNU General Public License as published by the Free Software Foundation,
16  * either version 3 of the License, or (at your option) any later version.
17  *
18  * NFD is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
19  * without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
20  * PURPOSE. See the GNU General Public License for more details.
21  *
22  * You should have received a copy of the GNU General Public License along with
23  * NFD, e.g., in COPYING.md file. If not, see <http://www.gnu.org/licenses/>.
24  */
25 
26 #include "ethernet-factory.hpp"
27 #include "generic-link-service.hpp"
29 
30 #include <boost/range/adaptors.hpp>
31 #include <boost/range/algorithm/copy.hpp>
32 
33 namespace nfd {
34 namespace face {
35 
36 NFD_LOG_INIT(EthernetFactory);
37 NFD_REGISTER_PROTOCOL_FACTORY(EthernetFactory);
38 
39 const std::string&
41 {
42  static std::string id("ether");
43  return id;
44 }
45 
47  : ProtocolFactory(params)
48 {
49  m_netifAddConn = netmon->onInterfaceAdded.connect([this] (const auto& netif) {
50  this->applyUnicastConfigToNetif(netif);
51  this->applyMcastConfigToNetif(*netif);
52  });
53 }
54 
55 void
58 {
59  // ether
60  // {
61  // listen yes
62  // idle_timeout 600
63  // mcast yes
64  // mcast_group 01:00:5E:00:17:AA
65  // mcast_ad_hoc no
66  // whitelist
67  // {
68  // *
69  // }
70  // blacklist
71  // {
72  // }
73  // }
74 
75  UnicastConfig unicastConfig;
76  MulticastConfig mcastConfig;
77 
78  if (configSection) {
79  // listen and mcast default to 'yes' but only if face_system.ether section is present
80  unicastConfig.isEnabled = unicastConfig.wantListen = mcastConfig.isEnabled = true;
81 
82  for (const auto& pair : *configSection) {
83  const std::string& key = pair.first;
84  const ConfigSection& value = pair.second;
85 
86  if (key == "listen") {
87  unicastConfig.wantListen = ConfigFile::parseYesNo(pair, "face_system.ether");
88  }
89  else if (key == "idle_timeout") {
90  unicastConfig.idleTimeout = time::seconds(ConfigFile::parseNumber<uint32_t>(pair, "face_system.ether"));
91  }
92  else if (key == "mcast") {
93  mcastConfig.isEnabled = ConfigFile::parseYesNo(pair, "face_system.ether");
94  }
95  else if (key == "mcast_group") {
96  const std::string& valueStr = value.get_value<std::string>();
97  mcastConfig.group = ethernet::Address::fromString(valueStr);
98  if (mcastConfig.group.isNull()) {
99  BOOST_THROW_EXCEPTION(ConfigFile::Error("face_system.ether.mcast_group: '" +
100  valueStr + "' cannot be parsed as an Ethernet address"));
101  }
102  else if (!mcastConfig.group.isMulticast()) {
103  BOOST_THROW_EXCEPTION(ConfigFile::Error("face_system.ether.mcast_group: '" +
104  valueStr + "' is not a multicast address"));
105  }
106  }
107  else if (key == "mcast_ad_hoc") {
108  bool wantAdHoc = ConfigFile::parseYesNo(pair, "face_system.ether");
109  mcastConfig.linkType = wantAdHoc ? ndn::nfd::LINK_TYPE_AD_HOC : ndn::nfd::LINK_TYPE_MULTI_ACCESS;
110  }
111  else if (key == "whitelist") {
112  mcastConfig.netifPredicate.parseWhitelist(value);
113  }
114  else if (key == "blacklist") {
115  mcastConfig.netifPredicate.parseBlacklist(value);
116  }
117  else {
118  BOOST_THROW_EXCEPTION(ConfigFile::Error("Unrecognized option face_system.ether." + key));
119  }
120  }
121  }
122 
123  if (context.isDryRun) {
124  return;
125  }
126 
127  if (unicastConfig.isEnabled) {
128  if (m_unicastConfig.wantListen && !unicastConfig.wantListen && !m_channels.empty()) {
129  NFD_LOG_WARN("Cannot stop listening on Ethernet channels");
130  }
131  if (m_unicastConfig.idleTimeout != unicastConfig.idleTimeout && !m_channels.empty()) {
132  NFD_LOG_WARN("Idle timeout setting applies to new Ethernet channels only");
133  }
134  }
135  else if (m_unicastConfig.isEnabled && !m_channels.empty()) {
136  NFD_LOG_WARN("Cannot disable Ethernet channels after initialization");
137  }
138 
139  if (m_mcastConfig.isEnabled != mcastConfig.isEnabled) {
140  if (mcastConfig.isEnabled) {
141  NFD_LOG_INFO("enabling multicast on " << mcastConfig.group);
142  }
143  else {
144  NFD_LOG_INFO("disabling multicast");
145  }
146  }
147  else if (mcastConfig.isEnabled) {
148  if (m_mcastConfig.linkType != mcastConfig.linkType && !m_mcastFaces.empty()) {
149  NFD_LOG_WARN("Cannot change ad hoc setting on existing faces");
150  }
151  if (m_mcastConfig.group != mcastConfig.group) {
152  NFD_LOG_INFO("changing multicast group from " << m_mcastConfig.group <<
153  " to " << mcastConfig.group);
154  }
155  if (m_mcastConfig.netifPredicate != mcastConfig.netifPredicate) {
156  NFD_LOG_INFO("changing whitelist/blacklist");
157  }
158  }
159 
160  // Even if there's no configuration change, we still need to re-apply configuration because
161  // netifs may have changed.
162  m_unicastConfig = unicastConfig;
163  m_mcastConfig = mcastConfig;
164  this->applyConfig(context);
165 }
166 
167 void
169  const FaceCreatedCallback& onCreated,
170  const FaceCreationFailedCallback& onFailure)
171 {
172  BOOST_ASSERT(req.remoteUri.isCanonical());
173 
174  if (!req.localUri || req.localUri->getScheme() != "dev") {
175  NFD_LOG_TRACE("Cannot create unicast Ethernet face without dev:// LocalUri");
176  onFailure(406, "Creation of unicast Ethernet faces requires a LocalUri with dev:// scheme");
177  return;
178  }
179  BOOST_ASSERT(req.localUri->isCanonical());
180 
181  if (req.params.persistency == ndn::nfd::FACE_PERSISTENCY_ON_DEMAND) {
182  NFD_LOG_TRACE("createFace does not support FACE_PERSISTENCY_ON_DEMAND");
183  onFailure(406, "Outgoing Ethernet faces do not support on-demand persistency");
184  return;
185  }
186 
187  ethernet::Address remoteEndpoint(ethernet::Address::fromString(req.remoteUri.getHost()));
188  std::string localEndpoint(req.localUri->getHost());
189 
190  if (remoteEndpoint.isMulticast()) {
191  NFD_LOG_TRACE("createFace does not support multicast faces");
192  onFailure(406, "Cannot create multicast Ethernet faces");
193  return;
194  }
195 
196  if (req.params.wantLocalFields) {
197  // Ethernet faces are never local
198  NFD_LOG_TRACE("createFace cannot create non-local face with local fields enabled");
199  onFailure(406, "Local fields can only be enabled on faces with local scope");
200  return;
201  }
202 
203  if (req.params.mtu && *req.params.mtu < Transport::MIN_MTU) {
204  // The specified MTU must be greater than the minimum possible
205  NFD_LOG_TRACE("createFace cannot create a face with an MTU less than " << Transport::MIN_MTU);
206  onFailure(406, "MTU cannot be less than " + to_string(Transport::MIN_MTU));
207  return;
208  }
209 
210  for (const auto& i : m_channels) {
211  if (i.first == localEndpoint) {
212  i.second->connect(remoteEndpoint, req.params, onCreated, onFailure);
213  return;
214  }
215  }
216 
217  NFD_LOG_TRACE("No channels available to connect to " << remoteEndpoint);
218  onFailure(504, "No channels available to connect");
219 }
220 
221 shared_ptr<EthernetChannel>
222 EthernetFactory::createChannel(const shared_ptr<const ndn::net::NetworkInterface>& localEndpoint,
223  time::nanoseconds idleTimeout)
224 {
225  auto it = m_channels.find(localEndpoint->getName());
226  if (it != m_channels.end())
227  return it->second;
228 
229  auto channel = std::make_shared<EthernetChannel>(localEndpoint, idleTimeout);
230  m_channels[localEndpoint->getName()] = channel;
231 
232  return channel;
233 }
234 
235 std::vector<shared_ptr<const Channel>>
237 {
238  return getChannelsFromMap(m_channels);
239 }
240 
241 shared_ptr<Face>
242 EthernetFactory::createMulticastFace(const ndn::net::NetworkInterface& netif,
243  const ethernet::Address& address)
244 {
245  BOOST_ASSERT(address.isMulticast());
246 
247  auto key = std::make_pair(netif.getName(), address);
248  auto found = m_mcastFaces.find(key);
249  if (found != m_mcastFaces.end()) {
250  return found->second;
251  }
252 
254  opts.allowFragmentation = true;
255  opts.allowReassembly = true;
256 
257  auto linkService = make_unique<GenericLinkService>(opts);
258  auto transport = make_unique<MulticastEthernetTransport>(netif, address, m_mcastConfig.linkType);
259  auto face = make_shared<Face>(std::move(linkService), std::move(transport));
260 
261  m_mcastFaces[key] = face;
262  connectFaceClosedSignal(*face, [this, key] { m_mcastFaces.erase(key); });
263 
264  return face;
265 }
266 
267 shared_ptr<EthernetChannel>
268 EthernetFactory::applyUnicastConfigToNetif(const shared_ptr<const ndn::net::NetworkInterface>& netif)
269 {
270  if (!m_unicastConfig.isEnabled) {
271  return nullptr;
272  }
273 
274  if (netif->getType() != ndn::net::InterfaceType::ETHERNET) {
275  NFD_LOG_DEBUG("Not creating channel on " << netif->getName() << ": incompatible netif type");
276  return nullptr;
277  }
278 
279  if (!netif->isUp()) {
280  NFD_LOG_DEBUG("Not creating channel on " << netif->getName() << ": netif is down");
281  return nullptr;
282  }
283 
284  if (netif->getEthernetAddress().isNull()) {
285  NFD_LOG_DEBUG("Not creating channel on " << netif->getName() << ": invalid Ethernet address");
286  return nullptr;
287  }
288 
289  auto channel = this->createChannel(netif, m_unicastConfig.idleTimeout);
290  if (m_unicastConfig.wantListen && !channel->isListening()) {
291  try {
292  channel->listen(this->addFace, nullptr);
293  }
294  catch (const EthernetChannel::Error& e) {
295  NFD_LOG_WARN("Cannot listen on " << netif->getName() << ": " << e.what());
296  }
297  }
298  return channel;
299 }
300 
301 shared_ptr<Face>
302 EthernetFactory::applyMcastConfigToNetif(const ndn::net::NetworkInterface& netif)
303 {
304  if (!m_mcastConfig.isEnabled) {
305  return nullptr;
306  }
307 
308  if (netif.getType() != ndn::net::InterfaceType::ETHERNET) {
309  NFD_LOG_DEBUG("Not creating multicast face on " << netif.getName() << ": incompatible netif type");
310  return nullptr;
311  }
312 
313  if (!netif.isUp()) {
314  NFD_LOG_DEBUG("Not creating multicast face on " << netif.getName() << ": netif is down");
315  return nullptr;
316  }
317 
318  if (!netif.canMulticast()) {
319  NFD_LOG_DEBUG("Not creating multicast face on " << netif.getName() << ": netif cannot multicast");
320  return nullptr;
321  }
322 
323  if (netif.getEthernetAddress().isNull()) {
324  NFD_LOG_DEBUG("Not creating multicast face on " << netif.getName() << ": invalid Ethernet address");
325  return nullptr;
326  }
327 
328  if (!m_mcastConfig.netifPredicate(netif)) {
329  NFD_LOG_DEBUG("Not creating multicast face on " << netif.getName() << ": rejected by whitelist/blacklist");
330  return nullptr;
331  }
332 
333  NFD_LOG_DEBUG("Creating multicast face on " << netif.getName());
334  shared_ptr<Face> face;
335  try {
336  face = this->createMulticastFace(netif, m_mcastConfig.group);
337  }
338  catch (const EthernetTransport::Error& e) {
339  NFD_LOG_WARN("Cannot create multicast face on " << netif.getName() << ": " << e.what());
340  return nullptr;
341  }
342 
343  if (face->getId() == face::INVALID_FACEID) {
344  // new face: register with forwarding
345  this->addFace(face);
346  }
347  return face;
348 }
349 
350 void
351 EthernetFactory::applyConfig(const FaceSystem::ConfigContext& context)
352 {
353  if (m_unicastConfig.isEnabled) {
354  providedSchemes.insert("ether");
355  }
356  else {
357  providedSchemes.erase("ether");
358  }
359 
360  // collect old multicast faces
361  std::set<shared_ptr<Face>> oldFaces;
362  boost::copy(m_mcastFaces | boost::adaptors::map_values, std::inserter(oldFaces, oldFaces.end()));
363 
364  // create channels and multicast faces if requested by config
365  for (const auto& netif : netmon->listNetworkInterfaces()) {
366  this->applyUnicastConfigToNetif(netif);
367 
368  auto face = this->applyMcastConfigToNetif(*netif);
369  if (face != nullptr) {
370  // don't destroy face
371  oldFaces.erase(face);
372  }
373  }
374 
375  // destroy old multicast faces that are not needed in new configuration
376  for (const auto& face : oldFaces) {
377  face->close();
378  }
379 }
380 
381 } // namespace face
382 } // namespace nfd
FaceCreatedCallback addFace
callback when a new face is created
std::set< std::string > providedSchemes
FaceUri schemes provided by this ProtocolFactory.
std::vector< shared_ptr< const Channel > > getChannels() const override
#define NFD_LOG_TRACE
Definition: logger.hpp:37
std::function< void(uint32_t status, const std::string &reason)> FaceCreationFailedCallback
Prototype for the callback that is invoked when a face fails to be created.
Definition: channel.hpp:44
static bool parseYesNo(const ConfigSection &node, const std::string &key, const std::string &sectionName)
parse a config option that can be either "yes" or "no"
Definition: config-file.cpp:59
shared_ptr< ndn::net::NetworkMonitor > netmon
NetworkMonitor for listing available network interfaces and monitoring their changes.
boost::optional< const ConfigSection & > OptionalConfigSection
an optional config file section
Definition: config-file.hpp:41
std::function< void(const shared_ptr< Face > &face)> FaceCreatedCallback
Prototype for the callback that is invoked when a face is created (in response to an incoming connect...
Definition: channel.hpp:40
#define NFD_REGISTER_PROTOCOL_FACTORY(PF)
registers a protocol factory
void connectFaceClosedSignal(Face &face, const std::function< void()> &f)
invokes a callback when the face is closed
Definition: channel.cpp:40
EthernetChannel-related error.
context for processing a config section in ProtocolFactory
Definition: face-system.hpp:92
static std::vector< shared_ptr< const Channel > > getChannelsFromMap(const ChannelMap &channelMap)
boost::property_tree::ptree ConfigSection
a config file section
Definition: config-file.hpp:37
Copyright (c) 2014-2015, Regents of the University of California, Arizona Board of Regents...
Definition: algorithm.hpp:32
#define NFD_LOG_WARN
Definition: logger.hpp:40
static const std::string & getId()
optional< ssize_t > mtu
Definition: channel.hpp:92
ndn::nfd::FacePersistency persistency
Definition: channel.hpp:89
shared_ptr< EthernetChannel > createChannel(const shared_ptr< const ndn::net::NetworkInterface > &localEndpoint, time::nanoseconds idleTimeout)
Create Ethernet-based channel on the specified network interface.
Provides support for an underlying protocol.
#define NFD_LOG_INFO
Definition: logger.hpp:39
Parameters to ProtocolFactory constructor.
shared_ptr< Face > createMulticastFace(const ndn::net::NetworkInterface &localEndpoint, const ethernet::Address &group)
Create a face to communicate on the given Ethernet multicast group.
#define NFD_LOG_DEBUG
Definition: logger.hpp:38
#define NFD_LOG_INIT(name)
Definition: logger.hpp:31
void processConfig(OptionalConfigSection configSection, FaceSystem::ConfigContext &context) override
process face_system.ether config section
void createFace(const CreateFaceRequest &req, const FaceCreatedCallback &onCreated, const FaceCreationFailedCallback &onFailure) override
Try to create a unicast face using the supplied parameters.
EthernetFactory(const CtorParams &params)
static constexpr ssize_t MIN_MTU
minimum MTU that may be set on a transport
Definition: transport.hpp:374
const FaceId INVALID_FACEID
indicates an invalid FaceId
Definition: face.hpp:42
Encapsulates a face creation request and all its parameters.