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henrike@webrtc.org28e20752013-07-10 00:45:36 +00001/*
2 * libjingle
3 * Copyright 2004--2005, Google Inc.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions are met:
7 *
8 * 1. Redistributions of source code must retain the above copyright notice,
9 * this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright notice,
11 * this list of conditions and the following disclaimer in the documentation
12 * and/or other materials provided with the distribution.
13 * 3. The name of the author may not be used to endorse or promote products
14 * derived from this software without specific prior written permission.
15 *
16 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
17 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
18 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
19 * EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
20 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
21 * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
22 * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
23 * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
24 * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
25 * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26 */
27
28#ifdef HAVE_CONFIG_H
29#include "config.h"
30#endif
31
32#include "talk/base/network.h"
33
34#ifdef POSIX
mallinath@webrtc.orga27be8e2013-09-27 23:04:10 +000035// linux/if.h can't be included at the same time as the posix sys/if.h, and
36// it's transitively required by linux/route.h, so include that version on
37// linux instead of the standard posix one.
38#if defined(ANDROID) || defined(LINUX)
39#include <linux/if.h>
40#include <linux/route.h>
41#else
42#include <net/if.h>
43#endif
henrike@webrtc.org28e20752013-07-10 00:45:36 +000044#include <sys/socket.h>
45#include <sys/utsname.h>
46#include <sys/ioctl.h>
henrike@webrtc.org28e20752013-07-10 00:45:36 +000047#include <unistd.h>
48#include <errno.h>
49#ifdef ANDROID
50#include "talk/base/ifaddrs-android.h"
51#else
52#include <ifaddrs.h>
53#endif
54#endif // POSIX
55
56#ifdef WIN32
57#include "talk/base/win32.h"
58#include <Iphlpapi.h>
59#endif
60
61#include <algorithm>
62#include <cstdio>
63
henrike@webrtc.org28e20752013-07-10 00:45:36 +000064#include "talk/base/logging.h"
65#include "talk/base/scoped_ptr.h"
66#include "talk/base/socket.h" // includes something that makes windows happy
67#include "talk/base/stream.h"
68#include "talk/base/stringencode.h"
69#include "talk/base/thread.h"
70
71namespace talk_base {
72namespace {
73
74const uint32 kUpdateNetworksMessage = 1;
75const uint32 kSignalNetworksMessage = 2;
76
77// Fetch list of networks every two seconds.
78const int kNetworksUpdateIntervalMs = 2000;
79
80
81// Makes a string key for this network. Used in the network manager's maps.
82// Network objects are keyed on interface name, network prefix and the
83// length of that prefix.
84std::string MakeNetworkKey(const std::string& name, const IPAddress& prefix,
85 int prefix_length) {
86 std::ostringstream ost;
87 ost << name << "%" << prefix.ToString() << "/" << prefix_length;
88 return ost.str();
89}
90
91bool CompareNetworks(const Network* a, const Network* b) {
92 if (a->prefix_length() == b->prefix_length()) {
93 if (a->name() == b->name()) {
94 return a->prefix() < b->prefix();
95 }
96 }
97 return a->name() < b->name();
98}
99
100
101} // namespace
102
103NetworkManager::NetworkManager() {
104}
105
106NetworkManager::~NetworkManager() {
107}
108
109NetworkManagerBase::NetworkManagerBase() : ipv6_enabled_(true) {
110}
111
112NetworkManagerBase::~NetworkManagerBase() {
113 for (NetworkMap::iterator i = networks_map_.begin();
114 i != networks_map_.end(); ++i) {
115 delete i->second;
116 }
117}
118
119void NetworkManagerBase::GetNetworks(NetworkList* result) const {
120 *result = networks_;
121}
122
123void NetworkManagerBase::MergeNetworkList(const NetworkList& new_networks,
124 bool* changed) {
125 // Sort the list so that we can detect when it changes.
126 typedef std::pair<Network*, std::vector<IPAddress> > address_list;
127 std::map<std::string, address_list> address_map;
128 NetworkList list(new_networks);
129 NetworkList merged_list;
130 std::sort(list.begin(), list.end(), CompareNetworks);
131
132 *changed = false;
133
134 if (networks_.size() != list.size())
135 *changed = true;
136
137 // First, build a set of network-keys to the ipaddresses.
138 for (uint32 i = 0; i < list.size(); ++i) {
139 bool might_add_to_merged_list = false;
140 std::string key = MakeNetworkKey(list[i]->name(),
141 list[i]->prefix(),
142 list[i]->prefix_length());
143 if (address_map.find(key) == address_map.end()) {
144 address_map[key] = address_list(list[i], std::vector<IPAddress>());
145 might_add_to_merged_list = true;
146 }
147 const std::vector<IPAddress>& addresses = list[i]->GetIPs();
148 address_list& current_list = address_map[key];
149 for (std::vector<IPAddress>::const_iterator it = addresses.begin();
150 it != addresses.end();
151 ++it) {
152 current_list.second.push_back(*it);
153 }
154 if (!might_add_to_merged_list) {
155 delete list[i];
156 }
157 }
158
159 // Next, look for existing network objects to re-use.
160 for (std::map<std::string, address_list >::iterator it = address_map.begin();
161 it != address_map.end();
162 ++it) {
163 const std::string& key = it->first;
164 Network* net = it->second.first;
165 NetworkMap::iterator existing = networks_map_.find(key);
166 if (existing == networks_map_.end()) {
167 // This network is new. Place it in the network map.
168 merged_list.push_back(net);
169 networks_map_[key] = net;
170 *changed = true;
171 } else {
172 // This network exists in the map already. Reset its IP addresses.
173 *changed = existing->second->SetIPs(it->second.second, *changed);
174 merged_list.push_back(existing->second);
175 if (existing->second != net) {
176 delete net;
177 }
178 }
179 }
180 networks_ = merged_list;
181}
182
183BasicNetworkManager::BasicNetworkManager()
mallinath@webrtc.orga27be8e2013-09-27 23:04:10 +0000184 : thread_(NULL), sent_first_update_(false), start_count_(0),
185 ignore_non_default_routes_(false) {
henrike@webrtc.org28e20752013-07-10 00:45:36 +0000186}
187
188BasicNetworkManager::~BasicNetworkManager() {
189}
190
191#if defined(POSIX)
192void BasicNetworkManager::ConvertIfAddrs(struct ifaddrs* interfaces,
193 bool include_ignored,
194 NetworkList* networks) const {
195 NetworkMap current_networks;
196 for (struct ifaddrs* cursor = interfaces;
197 cursor != NULL; cursor = cursor->ifa_next) {
198 IPAddress prefix;
199 IPAddress mask;
200 IPAddress ip;
201 int scope_id = 0;
202
203 // Some interfaces may not have address assigned.
204 if (!cursor->ifa_addr || !cursor->ifa_netmask)
205 continue;
206
207 switch (cursor->ifa_addr->sa_family) {
208 case AF_INET: {
209 ip = IPAddress(
210 reinterpret_cast<sockaddr_in*>(cursor->ifa_addr)->sin_addr);
211 mask = IPAddress(
212 reinterpret_cast<sockaddr_in*>(cursor->ifa_netmask)->sin_addr);
213 break;
214 }
215 case AF_INET6: {
216 if (ipv6_enabled()) {
217 ip = IPAddress(
218 reinterpret_cast<sockaddr_in6*>(cursor->ifa_addr)->sin6_addr);
219 mask = IPAddress(
220 reinterpret_cast<sockaddr_in6*>(cursor->ifa_netmask)->sin6_addr);
221 scope_id =
222 reinterpret_cast<sockaddr_in6*>(cursor->ifa_addr)->sin6_scope_id;
223 break;
224 } else {
225 continue;
226 }
227 }
228 default: {
229 continue;
230 }
231 }
232 int prefix_length = CountIPMaskBits(mask);
233 prefix = TruncateIP(ip, prefix_length);
234 std::string key = MakeNetworkKey(std::string(cursor->ifa_name),
235 prefix, prefix_length);
236 NetworkMap::iterator existing_network = current_networks.find(key);
237 if (existing_network == current_networks.end()) {
238 scoped_ptr<Network> network(new Network(cursor->ifa_name,
239 cursor->ifa_name,
240 prefix,
241 prefix_length));
242 network->set_scope_id(scope_id);
243 network->AddIP(ip);
244 bool ignored = ((cursor->ifa_flags & IFF_LOOPBACK) ||
245 IsIgnoredNetwork(*network));
246 network->set_ignored(ignored);
247 if (include_ignored || !network->ignored()) {
248 networks->push_back(network.release());
249 }
250 } else {
251 (*existing_network).second->AddIP(ip);
252 }
253 }
254}
255
256bool BasicNetworkManager::CreateNetworks(bool include_ignored,
257 NetworkList* networks) const {
258 struct ifaddrs* interfaces;
259 int error = getifaddrs(&interfaces);
260 if (error != 0) {
261 LOG_ERR(LERROR) << "getifaddrs failed to gather interface data: " << error;
262 return false;
263 }
264
265 ConvertIfAddrs(interfaces, include_ignored, networks);
266
267 freeifaddrs(interfaces);
268 return true;
269}
270
271#elif defined(WIN32)
272
273unsigned int GetPrefix(PIP_ADAPTER_PREFIX prefixlist,
274 const IPAddress& ip, IPAddress* prefix) {
275 IPAddress current_prefix;
276 IPAddress best_prefix;
277 unsigned int best_length = 0;
278 while (prefixlist) {
279 // Look for the longest matching prefix in the prefixlist.
280 if (prefixlist->Address.lpSockaddr == NULL ||
281 prefixlist->Address.lpSockaddr->sa_family != ip.family()) {
282 prefixlist = prefixlist->Next;
283 continue;
284 }
285 switch (prefixlist->Address.lpSockaddr->sa_family) {
286 case AF_INET: {
287 sockaddr_in* v4_addr =
288 reinterpret_cast<sockaddr_in*>(prefixlist->Address.lpSockaddr);
289 current_prefix = IPAddress(v4_addr->sin_addr);
290 break;
291 }
292 case AF_INET6: {
293 sockaddr_in6* v6_addr =
294 reinterpret_cast<sockaddr_in6*>(prefixlist->Address.lpSockaddr);
295 current_prefix = IPAddress(v6_addr->sin6_addr);
296 break;
297 }
298 default: {
299 prefixlist = prefixlist->Next;
300 continue;
301 }
302 }
303 if (TruncateIP(ip, prefixlist->PrefixLength) == current_prefix &&
304 prefixlist->PrefixLength > best_length) {
305 best_prefix = current_prefix;
306 best_length = prefixlist->PrefixLength;
307 }
308 prefixlist = prefixlist->Next;
309 }
310 *prefix = best_prefix;
311 return best_length;
312}
313
314bool BasicNetworkManager::CreateNetworks(bool include_ignored,
315 NetworkList* networks) const {
316 NetworkMap current_networks;
317 // MSDN recommends a 15KB buffer for the first try at GetAdaptersAddresses.
318 size_t buffer_size = 16384;
319 scoped_array<char> adapter_info(new char[buffer_size]);
320 PIP_ADAPTER_ADDRESSES adapter_addrs =
321 reinterpret_cast<PIP_ADAPTER_ADDRESSES>(adapter_info.get());
322 int adapter_flags = (GAA_FLAG_SKIP_DNS_SERVER | GAA_FLAG_SKIP_ANYCAST |
323 GAA_FLAG_SKIP_MULTICAST | GAA_FLAG_INCLUDE_PREFIX);
324 int ret = 0;
325 do {
326 adapter_info.reset(new char[buffer_size]);
327 adapter_addrs = reinterpret_cast<PIP_ADAPTER_ADDRESSES>(adapter_info.get());
328 ret = GetAdaptersAddresses(AF_UNSPEC, adapter_flags,
329 0, adapter_addrs,
330 reinterpret_cast<PULONG>(&buffer_size));
331 } while (ret == ERROR_BUFFER_OVERFLOW);
332 if (ret != ERROR_SUCCESS) {
333 return false;
334 }
335 int count = 0;
336 while (adapter_addrs) {
337 if (adapter_addrs->OperStatus == IfOperStatusUp) {
338 PIP_ADAPTER_UNICAST_ADDRESS address = adapter_addrs->FirstUnicastAddress;
339 PIP_ADAPTER_PREFIX prefixlist = adapter_addrs->FirstPrefix;
340 std::string name;
341 std::string description;
342#ifdef _DEBUG
343 name = ToUtf8(adapter_addrs->FriendlyName,
344 wcslen(adapter_addrs->FriendlyName));
345#endif
346 description = ToUtf8(adapter_addrs->Description,
347 wcslen(adapter_addrs->Description));
348 for (; address; address = address->Next) {
349#ifndef _DEBUG
350 name = talk_base::ToString(count);
351#endif
352
353 IPAddress ip;
354 int scope_id = 0;
355 scoped_ptr<Network> network;
356 switch (address->Address.lpSockaddr->sa_family) {
357 case AF_INET: {
358 sockaddr_in* v4_addr =
359 reinterpret_cast<sockaddr_in*>(address->Address.lpSockaddr);
360 ip = IPAddress(v4_addr->sin_addr);
361 break;
362 }
363 case AF_INET6: {
364 if (ipv6_enabled()) {
365 sockaddr_in6* v6_addr =
366 reinterpret_cast<sockaddr_in6*>(address->Address.lpSockaddr);
367 scope_id = v6_addr->sin6_scope_id;
368 ip = IPAddress(v6_addr->sin6_addr);
369 break;
370 } else {
371 continue;
372 }
373 }
374 default: {
375 continue;
376 }
377 }
378 IPAddress prefix;
379 int prefix_length = GetPrefix(prefixlist, ip, &prefix);
380 std::string key = MakeNetworkKey(name, prefix, prefix_length);
381 NetworkMap::iterator existing_network = current_networks.find(key);
382 if (existing_network == current_networks.end()) {
383 scoped_ptr<Network> network(new Network(name,
384 description,
385 prefix,
386 prefix_length));
387 network->set_scope_id(scope_id);
388 network->AddIP(ip);
389 bool ignore = ((adapter_addrs->IfType == IF_TYPE_SOFTWARE_LOOPBACK) ||
390 IsIgnoredNetwork(*network));
391 network->set_ignored(ignore);
392 if (include_ignored || !network->ignored()) {
393 networks->push_back(network.release());
394 }
395 } else {
396 (*existing_network).second->AddIP(ip);
397 }
398 }
399 // Count is per-adapter - all 'Networks' created from the same
400 // adapter need to have the same name.
401 ++count;
402 }
403 adapter_addrs = adapter_addrs->Next;
404 }
405 return true;
406}
407#endif // WIN32
408
mallinath@webrtc.orga27be8e2013-09-27 23:04:10 +0000409#if defined(ANDROID) || defined(LINUX)
410bool IsDefaultRoute(const std::string& network_name) {
411 FileStream fs;
412 if (!fs.Open("/proc/net/route", "r", NULL)) {
413 LOG(LS_WARNING) << "Couldn't read /proc/net/route, skipping default "
414 << "route check (assuming everything is a default route).";
415 return true;
416 } else {
417 std::string line;
418 while (fs.ReadLine(&line) == SR_SUCCESS) {
419 char iface_name[256];
420 unsigned int iface_ip, iface_gw, iface_mask, iface_flags;
421 if (sscanf(line.c_str(),
422 "%255s %8X %8X %4X %*d %*u %*d %8X",
423 iface_name, &iface_ip, &iface_gw,
424 &iface_flags, &iface_mask) == 5 &&
425 network_name == iface_name &&
426 iface_mask == 0 &&
427 (iface_flags & (RTF_UP | RTF_HOST)) == RTF_UP) {
428 return true;
429 }
430 }
431 }
432 return false;
433}
434#endif
435
436bool BasicNetworkManager::IsIgnoredNetwork(const Network& network) const {
437 // Ignore networks on the explicit ignore list.
438 for (size_t i = 0; i < network_ignore_list_.size(); ++i) {
439 if (network.name() == network_ignore_list_[i]) {
440 return true;
441 }
442 }
henrike@webrtc.org28e20752013-07-10 00:45:36 +0000443#ifdef POSIX
mallinath@webrtc.orga27be8e2013-09-27 23:04:10 +0000444 // Filter out VMware interfaces, typically named vmnet1 and vmnet8
henrike@webrtc.org28e20752013-07-10 00:45:36 +0000445 if (strncmp(network.name().c_str(), "vmnet", 5) == 0 ||
446 strncmp(network.name().c_str(), "vnic", 4) == 0) {
447 return true;
448 }
mallinath@webrtc.orga27be8e2013-09-27 23:04:10 +0000449#if defined(ANDROID) || defined(LINUX)
450 // Make sure this is a default route, if we're ignoring non-defaults.
451 if (ignore_non_default_routes_ && !IsDefaultRoute(network.name())) {
452 return true;
453 }
454#endif
henrike@webrtc.org28e20752013-07-10 00:45:36 +0000455#elif defined(WIN32)
456 // Ignore any HOST side vmware adapters with a description like:
457 // VMware Virtual Ethernet Adapter for VMnet1
458 // but don't ignore any GUEST side adapters with a description like:
459 // VMware Accelerated AMD PCNet Adapter #2
460 if (strstr(network.description().c_str(), "VMnet") != NULL) {
461 return true;
462 }
463#endif
464
465 // Ignore any networks with a 0.x.y.z IP
466 if (network.prefix().family() == AF_INET) {
467 return (network.prefix().v4AddressAsHostOrderInteger() < 0x01000000);
468 }
469 return false;
470}
471
472void BasicNetworkManager::StartUpdating() {
473 thread_ = Thread::Current();
474 if (start_count_) {
475 // If network interfaces are already discovered and signal is sent,
476 // we should trigger network signal immediately for the new clients
477 // to start allocating ports.
478 if (sent_first_update_)
479 thread_->Post(this, kSignalNetworksMessage);
480 } else {
481 thread_->Post(this, kUpdateNetworksMessage);
482 }
483 ++start_count_;
484}
485
486void BasicNetworkManager::StopUpdating() {
487 ASSERT(Thread::Current() == thread_);
488 if (!start_count_)
489 return;
490
491 --start_count_;
492 if (!start_count_) {
493 thread_->Clear(this);
494 sent_first_update_ = false;
495 }
496}
497
498void BasicNetworkManager::OnMessage(Message* msg) {
499 switch (msg->message_id) {
500 case kUpdateNetworksMessage: {
501 DoUpdateNetworks();
502 break;
503 }
504 case kSignalNetworksMessage: {
505 SignalNetworksChanged();
506 break;
507 }
508 default:
509 ASSERT(false);
510 }
511}
512
513void BasicNetworkManager::DoUpdateNetworks() {
514 if (!start_count_)
515 return;
516
517 ASSERT(Thread::Current() == thread_);
518
519 NetworkList list;
520 if (!CreateNetworks(false, &list)) {
521 SignalError();
522 } else {
523 bool changed;
524 MergeNetworkList(list, &changed);
525 if (changed || !sent_first_update_) {
526 SignalNetworksChanged();
527 sent_first_update_ = true;
528 }
529 }
530
531 thread_->PostDelayed(kNetworksUpdateIntervalMs, this, kUpdateNetworksMessage);
532}
533
534void BasicNetworkManager::DumpNetworks(bool include_ignored) {
535 NetworkList list;
536 CreateNetworks(include_ignored, &list);
537 LOG(LS_INFO) << "NetworkManager detected " << list.size() << " networks:";
538 for (size_t i = 0; i < list.size(); ++i) {
539 const Network* network = list[i];
540 if (!network->ignored() || include_ignored) {
541 LOG(LS_INFO) << network->ToString() << ": "
542 << network->description()
543 << ((network->ignored()) ? ", Ignored" : "");
544 }
545 }
henrike@webrtc.org723d6832013-07-12 16:04:50 +0000546 // Release the network list created previously.
547 // Do this in a seperated for loop for better readability.
548 for (size_t i = 0; i < list.size(); ++i) {
549 delete list[i];
550 }
henrike@webrtc.org28e20752013-07-10 00:45:36 +0000551}
552
553Network::Network(const std::string& name, const std::string& desc,
554 const IPAddress& prefix, int prefix_length)
555 : name_(name), description_(desc), prefix_(prefix),
556 prefix_length_(prefix_length), scope_id_(0), ignored_(false),
557 uniform_numerator_(0), uniform_denominator_(0), exponential_numerator_(0),
558 exponential_denominator_(0) {
559}
560
561std::string Network::ToString() const {
562 std::stringstream ss;
563 // Print out the first space-terminated token of the network desc, plus
564 // the IP address.
565 ss << "Net[" << description_.substr(0, description_.find(' '))
566 << ":" << prefix_.ToSensitiveString() << "/" << prefix_length_ << "]";
567 return ss.str();
568}
569
570// Sets the addresses of this network. Returns true if the address set changed.
571// Change detection is short circuited if the changed argument is true.
572bool Network::SetIPs(const std::vector<IPAddress>& ips, bool changed) {
573 changed = changed || ips.size() != ips_.size();
574 // Detect changes with a nested loop; n-squared but we expect on the order
575 // of 2-3 addresses per network.
576 for (std::vector<IPAddress>::const_iterator it = ips.begin();
577 !changed && it != ips.end();
578 ++it) {
579 bool found = false;
580 for (std::vector<IPAddress>::iterator inner_it = ips_.begin();
581 !found && inner_it != ips_.end();
582 ++inner_it) {
583 if (*it == *inner_it) {
584 found = true;
585 }
586 }
587 changed = !found;
588 }
589 ips_ = ips;
590 return changed;
591}
592} // namespace talk_base