blob: f5491159208de05dfd86d4315e3f2027e8beacf5 [file] [log] [blame]
henrike@webrtc.orgf0488722014-05-13 18:00:26 +00001/*
2 * Copyright 2004 The WebRTC Project Authors. All rights reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
11#include "webrtc/base/network.h"
12
13#include <vector>
14#if defined(WEBRTC_POSIX)
15#include <sys/types.h>
16#if !defined(WEBRTC_ANDROID)
17#include <ifaddrs.h>
18#else
19#include "webrtc/base/ifaddrs-android.h"
20#endif
21#endif
22#include "webrtc/base/gunit.h"
23#if defined(WEBRTC_WIN)
24#include "webrtc/base/logging.h" // For LOG_GLE
25#endif
26
27namespace rtc {
28
29class NetworkTest : public testing::Test, public sigslot::has_slots<> {
30 public:
31 NetworkTest() : callback_called_(false) {}
32
33 void OnNetworksChanged() {
34 callback_called_ = true;
35 }
36
guoweis@webrtc.orga094cac2015-01-28 19:34:05 +000037 NetworkManager::Stats MergeNetworkList(
38 BasicNetworkManager& network_manager,
39 const NetworkManager::NetworkList& list,
40 bool* changed) {
41 NetworkManager::Stats stats;
42 network_manager.MergeNetworkList(list, changed, &stats);
43 return stats;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000044 }
45
46 bool IsIgnoredNetwork(BasicNetworkManager& network_manager,
47 const Network& network) {
48 return network_manager.IsIgnoredNetwork(network);
49 }
50
51 NetworkManager::NetworkList GetNetworks(
52 const BasicNetworkManager& network_manager, bool include_ignored) {
53 NetworkManager::NetworkList list;
54 network_manager.CreateNetworks(include_ignored, &list);
55 return list;
56 }
57
58#if defined(WEBRTC_POSIX)
59 // Separated from CreateNetworks for tests.
60 static void CallConvertIfAddrs(const BasicNetworkManager& network_manager,
61 struct ifaddrs* interfaces,
62 bool include_ignored,
63 NetworkManager::NetworkList* networks) {
64 network_manager.ConvertIfAddrs(interfaces, include_ignored, networks);
65 }
66#endif // defined(WEBRTC_POSIX)
67
68 protected:
69 bool callback_called_;
70};
71
72// Test that the Network ctor works properly.
73TEST_F(NetworkTest, TestNetworkConstruct) {
74 Network ipv4_network1("test_eth0", "Test Network Adapter 1",
75 IPAddress(0x12345600U), 24);
76 EXPECT_EQ("test_eth0", ipv4_network1.name());
77 EXPECT_EQ("Test Network Adapter 1", ipv4_network1.description());
78 EXPECT_EQ(IPAddress(0x12345600U), ipv4_network1.prefix());
79 EXPECT_EQ(24, ipv4_network1.prefix_length());
80 EXPECT_FALSE(ipv4_network1.ignored());
81}
82
83// Tests that our ignore function works properly.
84TEST_F(NetworkTest, TestNetworkIgnore) {
85 Network ipv4_network1("test_eth0", "Test Network Adapter 1",
86 IPAddress(0x12345600U), 24);
87 Network ipv4_network2("test_eth1", "Test Network Adapter 2",
88 IPAddress(0x00010000U), 16);
89 BasicNetworkManager network_manager;
90 EXPECT_FALSE(IsIgnoredNetwork(network_manager, ipv4_network1));
91 EXPECT_TRUE(IsIgnoredNetwork(network_manager, ipv4_network2));
92}
93
94TEST_F(NetworkTest, TestIgnoreList) {
95 Network ignore_me("ignore_me", "Ignore me please!",
96 IPAddress(0x12345600U), 24);
97 Network include_me("include_me", "Include me please!",
98 IPAddress(0x12345600U), 24);
99 BasicNetworkManager network_manager;
100 EXPECT_FALSE(IsIgnoredNetwork(network_manager, ignore_me));
101 EXPECT_FALSE(IsIgnoredNetwork(network_manager, include_me));
102 std::vector<std::string> ignore_list;
103 ignore_list.push_back("ignore_me");
104 network_manager.set_network_ignore_list(ignore_list);
105 EXPECT_TRUE(IsIgnoredNetwork(network_manager, ignore_me));
106 EXPECT_FALSE(IsIgnoredNetwork(network_manager, include_me));
107}
108
109// Test is failing on Windows opt: b/11288214
110TEST_F(NetworkTest, DISABLED_TestCreateNetworks) {
111 BasicNetworkManager manager;
112 NetworkManager::NetworkList result = GetNetworks(manager, true);
113 // We should be able to bind to any addresses we find.
114 NetworkManager::NetworkList::iterator it;
115 for (it = result.begin();
116 it != result.end();
117 ++it) {
118 sockaddr_storage storage;
119 memset(&storage, 0, sizeof(storage));
guoweis@webrtc.org369a6372014-09-17 22:37:29 +0000120 IPAddress ip = (*it)->GetBestIP();
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000121 SocketAddress bindaddress(ip, 0);
122 bindaddress.SetScopeID((*it)->scope_id());
123 // TODO(thaloun): Use rtc::AsyncSocket once it supports IPv6.
124 int fd = static_cast<int>(socket(ip.family(), SOCK_STREAM, IPPROTO_TCP));
125 if (fd > 0) {
126 size_t ipsize = bindaddress.ToSockAddrStorage(&storage);
127 EXPECT_GE(ipsize, 0U);
128 int success = ::bind(fd,
129 reinterpret_cast<sockaddr*>(&storage),
130 static_cast<int>(ipsize));
131#if defined(WEBRTC_WIN)
132 if (success) LOG_GLE(LS_ERROR) << "Socket bind failed.";
133#endif
134 EXPECT_EQ(0, success);
135#if defined(WEBRTC_WIN)
136 closesocket(fd);
137#else
138 close(fd);
139#endif
140 }
141 delete (*it);
142 }
143}
144
145// Test that UpdateNetworks succeeds.
146TEST_F(NetworkTest, TestUpdateNetworks) {
147 BasicNetworkManager manager;
148 manager.SignalNetworksChanged.connect(
149 static_cast<NetworkTest*>(this), &NetworkTest::OnNetworksChanged);
150 manager.StartUpdating();
151 Thread::Current()->ProcessMessages(0);
152 EXPECT_TRUE(callback_called_);
153 callback_called_ = false;
154 // Callback should be triggered immediately when StartUpdating
155 // is called, after network update signal is already sent.
156 manager.StartUpdating();
157 EXPECT_TRUE(manager.started());
158 Thread::Current()->ProcessMessages(0);
159 EXPECT_TRUE(callback_called_);
160 manager.StopUpdating();
161 EXPECT_TRUE(manager.started());
162 manager.StopUpdating();
163 EXPECT_FALSE(manager.started());
164 manager.StopUpdating();
165 EXPECT_FALSE(manager.started());
166 callback_called_ = false;
167 // Callback should be triggered immediately after StartUpdating is called
168 // when start_count_ is reset to 0.
169 manager.StartUpdating();
170 Thread::Current()->ProcessMessages(0);
171 EXPECT_TRUE(callback_called_);
172}
173
174// Verify that MergeNetworkList() merges network lists properly.
175TEST_F(NetworkTest, TestBasicMergeNetworkList) {
176 Network ipv4_network1("test_eth0", "Test Network Adapter 1",
177 IPAddress(0x12345600U), 24);
178 Network ipv4_network2("test_eth1", "Test Network Adapter 2",
179 IPAddress(0x00010000U), 16);
180 ipv4_network1.AddIP(IPAddress(0x12345678));
181 ipv4_network2.AddIP(IPAddress(0x00010004));
182 BasicNetworkManager manager;
183
184 // Add ipv4_network1 to the list of networks.
185 NetworkManager::NetworkList list;
186 list.push_back(new Network(ipv4_network1));
187 bool changed;
guoweis@webrtc.orga094cac2015-01-28 19:34:05 +0000188 NetworkManager::Stats stats = MergeNetworkList(manager, list, &changed);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000189 EXPECT_TRUE(changed);
guoweis@webrtc.orga094cac2015-01-28 19:34:05 +0000190 EXPECT_EQ(stats.ipv6_network_count, 0);
191 EXPECT_EQ(stats.ipv4_network_count, 1);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000192 list.clear();
193
194 manager.GetNetworks(&list);
195 EXPECT_EQ(1U, list.size());
196 EXPECT_EQ(ipv4_network1.ToString(), list[0]->ToString());
197 Network* net1 = list[0];
198 list.clear();
199
200 // Replace ipv4_network1 with ipv4_network2.
201 list.push_back(new Network(ipv4_network2));
guoweis@webrtc.orga094cac2015-01-28 19:34:05 +0000202 stats = MergeNetworkList(manager, list, &changed);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000203 EXPECT_TRUE(changed);
guoweis@webrtc.orga094cac2015-01-28 19:34:05 +0000204 EXPECT_EQ(stats.ipv6_network_count, 0);
205 EXPECT_EQ(stats.ipv4_network_count, 1);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000206 list.clear();
207
208 manager.GetNetworks(&list);
209 EXPECT_EQ(1U, list.size());
210 EXPECT_EQ(ipv4_network2.ToString(), list[0]->ToString());
211 Network* net2 = list[0];
212 list.clear();
213
214 // Add Network2 back.
215 list.push_back(new Network(ipv4_network1));
216 list.push_back(new Network(ipv4_network2));
guoweis@webrtc.orga094cac2015-01-28 19:34:05 +0000217 stats = MergeNetworkList(manager, list, &changed);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000218 EXPECT_TRUE(changed);
guoweis@webrtc.orga094cac2015-01-28 19:34:05 +0000219 EXPECT_EQ(stats.ipv6_network_count, 0);
220 EXPECT_EQ(stats.ipv4_network_count, 2);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000221 list.clear();
222
223 // Verify that we get previous instances of Network objects.
224 manager.GetNetworks(&list);
225 EXPECT_EQ(2U, list.size());
226 EXPECT_TRUE((net1 == list[0] && net2 == list[1]) ||
227 (net1 == list[1] && net2 == list[0]));
228 list.clear();
229
230 // Call MergeNetworkList() again and verify that we don't get update
231 // notification.
232 list.push_back(new Network(ipv4_network2));
233 list.push_back(new Network(ipv4_network1));
guoweis@webrtc.orga094cac2015-01-28 19:34:05 +0000234 stats = MergeNetworkList(manager, list, &changed);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000235 EXPECT_FALSE(changed);
guoweis@webrtc.orga094cac2015-01-28 19:34:05 +0000236 EXPECT_EQ(stats.ipv6_network_count, 0);
237 EXPECT_EQ(stats.ipv4_network_count, 2);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000238 list.clear();
239
240 // Verify that we get previous instances of Network objects.
241 manager.GetNetworks(&list);
242 EXPECT_EQ(2U, list.size());
243 EXPECT_TRUE((net1 == list[0] && net2 == list[1]) ||
244 (net1 == list[1] && net2 == list[0]));
245 list.clear();
246}
247
248// Sets up some test IPv6 networks and appends them to list.
249// Four networks are added - public and link local, for two interfaces.
250void SetupNetworks(NetworkManager::NetworkList* list) {
251 IPAddress ip;
252 IPAddress prefix;
253 EXPECT_TRUE(IPFromString("fe80::1234:5678:abcd:ef12", &ip));
254 EXPECT_TRUE(IPFromString("fe80::", &prefix));
255 // First, fake link-locals.
256 Network ipv6_eth0_linklocalnetwork("test_eth0", "Test NetworkAdapter 1",
257 prefix, 64);
258 ipv6_eth0_linklocalnetwork.AddIP(ip);
259 EXPECT_TRUE(IPFromString("fe80::5678:abcd:ef12:3456", &ip));
260 Network ipv6_eth1_linklocalnetwork("test_eth1", "Test NetworkAdapter 2",
261 prefix, 64);
262 ipv6_eth1_linklocalnetwork.AddIP(ip);
263 // Public networks:
264 EXPECT_TRUE(IPFromString("2401:fa00:4:1000:be30:5bff:fee5:c3", &ip));
265 prefix = TruncateIP(ip, 64);
266 Network ipv6_eth0_publicnetwork1_ip1("test_eth0", "Test NetworkAdapter 1",
267 prefix, 64);
268 ipv6_eth0_publicnetwork1_ip1.AddIP(ip);
269 EXPECT_TRUE(IPFromString("2400:4030:1:2c00:be30:abcd:efab:cdef", &ip));
270 prefix = TruncateIP(ip, 64);
271 Network ipv6_eth1_publicnetwork1_ip1("test_eth1", "Test NetworkAdapter 1",
272 prefix, 64);
273 ipv6_eth1_publicnetwork1_ip1.AddIP(ip);
274 list->push_back(new Network(ipv6_eth0_linklocalnetwork));
275 list->push_back(new Network(ipv6_eth1_linklocalnetwork));
276 list->push_back(new Network(ipv6_eth0_publicnetwork1_ip1));
277 list->push_back(new Network(ipv6_eth1_publicnetwork1_ip1));
278}
279
280// Test that the basic network merging case works.
281TEST_F(NetworkTest, TestIPv6MergeNetworkList) {
282 BasicNetworkManager manager;
283 manager.SignalNetworksChanged.connect(
284 static_cast<NetworkTest*>(this), &NetworkTest::OnNetworksChanged);
285 NetworkManager::NetworkList original_list;
286 SetupNetworks(&original_list);
287 bool changed = false;
guoweis@webrtc.orga094cac2015-01-28 19:34:05 +0000288 NetworkManager::Stats stats =
289 MergeNetworkList(manager, original_list, &changed);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000290 EXPECT_TRUE(changed);
guoweis@webrtc.orga094cac2015-01-28 19:34:05 +0000291 EXPECT_EQ(stats.ipv6_network_count, 4);
292 EXPECT_EQ(stats.ipv4_network_count, 0);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000293 NetworkManager::NetworkList list;
294 manager.GetNetworks(&list);
295 EXPECT_EQ(original_list.size(), list.size());
296 // Verify that the original members are in the merged list.
297 for (NetworkManager::NetworkList::iterator it = original_list.begin();
298 it != original_list.end(); ++it) {
299 EXPECT_NE(list.end(), std::find(list.begin(), list.end(), *it));
300 }
301}
302
303// Tests that when two network lists that describe the same set of networks are
304// merged, that the changed callback is not called, and that the original
305// objects remain in the result list.
306TEST_F(NetworkTest, TestNoChangeMerge) {
307 BasicNetworkManager manager;
308 manager.SignalNetworksChanged.connect(
309 static_cast<NetworkTest*>(this), &NetworkTest::OnNetworksChanged);
310 NetworkManager::NetworkList original_list;
311 SetupNetworks(&original_list);
312 bool changed = false;
313 MergeNetworkList(manager, original_list, &changed);
314 EXPECT_TRUE(changed);
315 // Second list that describes the same networks but with new objects.
316 NetworkManager::NetworkList second_list;
317 SetupNetworks(&second_list);
318 changed = false;
319 MergeNetworkList(manager, second_list, &changed);
320 EXPECT_FALSE(changed);
321 NetworkManager::NetworkList resulting_list;
322 manager.GetNetworks(&resulting_list);
323 EXPECT_EQ(original_list.size(), resulting_list.size());
324 // Verify that the original members are in the merged list.
325 for (NetworkManager::NetworkList::iterator it = original_list.begin();
326 it != original_list.end(); ++it) {
327 EXPECT_NE(resulting_list.end(),
328 std::find(resulting_list.begin(), resulting_list.end(), *it));
329 }
330 // Doublecheck that the new networks aren't in the list.
331 for (NetworkManager::NetworkList::iterator it = second_list.begin();
332 it != second_list.end(); ++it) {
333 EXPECT_EQ(resulting_list.end(),
334 std::find(resulting_list.begin(), resulting_list.end(), *it));
335 }
336}
337
338// Test that we can merge a network that is the same as another network but with
339// a different IP. The original network should remain in the list, but have its
340// IP changed.
341TEST_F(NetworkTest, MergeWithChangedIP) {
342 BasicNetworkManager manager;
343 manager.SignalNetworksChanged.connect(
344 static_cast<NetworkTest*>(this), &NetworkTest::OnNetworksChanged);
345 NetworkManager::NetworkList original_list;
346 SetupNetworks(&original_list);
347 // Make a network that we're going to change.
348 IPAddress ip;
349 EXPECT_TRUE(IPFromString("2401:fa01:4:1000:be30:faa:fee:faa", &ip));
350 IPAddress prefix = TruncateIP(ip, 64);
351 Network* network_to_change = new Network("test_eth0",
352 "Test Network Adapter 1",
353 prefix, 64);
354 Network* changed_network = new Network(*network_to_change);
355 network_to_change->AddIP(ip);
356 IPAddress changed_ip;
357 EXPECT_TRUE(IPFromString("2401:fa01:4:1000:be30:f00:f00:f00", &changed_ip));
358 changed_network->AddIP(changed_ip);
359 original_list.push_back(network_to_change);
360 bool changed = false;
361 MergeNetworkList(manager, original_list, &changed);
362 NetworkManager::NetworkList second_list;
363 SetupNetworks(&second_list);
364 second_list.push_back(changed_network);
365 changed = false;
366 MergeNetworkList(manager, second_list, &changed);
367 EXPECT_TRUE(changed);
368 NetworkManager::NetworkList list;
369 manager.GetNetworks(&list);
370 EXPECT_EQ(original_list.size(), list.size());
371 // Make sure the original network is still in the merged list.
372 EXPECT_NE(list.end(),
373 std::find(list.begin(), list.end(), network_to_change));
374 EXPECT_EQ(changed_ip, network_to_change->GetIPs().at(0));
375}
376
377// Testing a similar case to above, but checking that a network can be updated
378// with additional IPs (not just a replacement).
379TEST_F(NetworkTest, TestMultipleIPMergeNetworkList) {
380 BasicNetworkManager manager;
381 manager.SignalNetworksChanged.connect(
382 static_cast<NetworkTest*>(this), &NetworkTest::OnNetworksChanged);
383 NetworkManager::NetworkList original_list;
384 SetupNetworks(&original_list);
385 bool changed = false;
386 MergeNetworkList(manager, original_list, &changed);
387 EXPECT_TRUE(changed);
388 IPAddress ip;
389 IPAddress check_ip;
390 IPAddress prefix;
391 // Add a second IP to the public network on eth0 (2401:fa00:4:1000/64).
392 EXPECT_TRUE(IPFromString("2401:fa00:4:1000:be30:5bff:fee5:c6", &ip));
393 prefix = TruncateIP(ip, 64);
394 Network ipv6_eth0_publicnetwork1_ip2("test_eth0", "Test NetworkAdapter 1",
395 prefix, 64);
396 // This is the IP that already existed in the public network on eth0.
397 EXPECT_TRUE(IPFromString("2401:fa00:4:1000:be30:5bff:fee5:c3", &check_ip));
398 ipv6_eth0_publicnetwork1_ip2.AddIP(ip);
399 original_list.push_back(new Network(ipv6_eth0_publicnetwork1_ip2));
400 changed = false;
401 MergeNetworkList(manager, original_list, &changed);
402 EXPECT_TRUE(changed);
403 // There should still be four networks.
404 NetworkManager::NetworkList list;
405 manager.GetNetworks(&list);
406 EXPECT_EQ(4U, list.size());
407 // Check the gathered IPs.
408 int matchcount = 0;
409 for (NetworkManager::NetworkList::iterator it = list.begin();
410 it != list.end(); ++it) {
411 if ((*it)->ToString() == original_list[2]->ToString()) {
412 ++matchcount;
413 EXPECT_EQ(1, matchcount);
414 // This should be the same network object as before.
415 EXPECT_EQ((*it), original_list[2]);
416 // But with two addresses now.
417 EXPECT_EQ(2U, (*it)->GetIPs().size());
418 EXPECT_NE((*it)->GetIPs().end(),
419 std::find((*it)->GetIPs().begin(),
420 (*it)->GetIPs().end(),
421 check_ip));
422 EXPECT_NE((*it)->GetIPs().end(),
423 std::find((*it)->GetIPs().begin(),
424 (*it)->GetIPs().end(),
425 ip));
426 } else {
427 // Check the IP didn't get added anywhere it wasn't supposed to.
428 EXPECT_EQ((*it)->GetIPs().end(),
429 std::find((*it)->GetIPs().begin(),
430 (*it)->GetIPs().end(),
431 ip));
432 }
433 }
434}
435
436// Test that merge correctly distinguishes multiple networks on an interface.
437TEST_F(NetworkTest, TestMultiplePublicNetworksOnOneInterfaceMerge) {
438 BasicNetworkManager manager;
439 manager.SignalNetworksChanged.connect(
440 static_cast<NetworkTest*>(this), &NetworkTest::OnNetworksChanged);
441 NetworkManager::NetworkList original_list;
442 SetupNetworks(&original_list);
443 bool changed = false;
444 MergeNetworkList(manager, original_list, &changed);
445 EXPECT_TRUE(changed);
446 IPAddress ip;
447 IPAddress prefix;
448 // A second network for eth0.
449 EXPECT_TRUE(IPFromString("2400:4030:1:2c00:be30:5bff:fee5:c3", &ip));
450 prefix = TruncateIP(ip, 64);
451 Network ipv6_eth0_publicnetwork2_ip1("test_eth0", "Test NetworkAdapter 1",
452 prefix, 64);
453 ipv6_eth0_publicnetwork2_ip1.AddIP(ip);
454 original_list.push_back(new Network(ipv6_eth0_publicnetwork2_ip1));
455 changed = false;
456 MergeNetworkList(manager, original_list, &changed);
457 EXPECT_TRUE(changed);
458 // There should be five networks now.
459 NetworkManager::NetworkList list;
460 manager.GetNetworks(&list);
461 EXPECT_EQ(5U, list.size());
462 // Check the resulting addresses.
463 for (NetworkManager::NetworkList::iterator it = list.begin();
464 it != list.end(); ++it) {
465 if ((*it)->prefix() == ipv6_eth0_publicnetwork2_ip1.prefix() &&
466 (*it)->name() == ipv6_eth0_publicnetwork2_ip1.name()) {
467 // Check the new network has 1 IP and that it's the correct one.
468 EXPECT_EQ(1U, (*it)->GetIPs().size());
469 EXPECT_EQ(ip, (*it)->GetIPs().at(0));
470 } else {
471 // Check the IP didn't get added anywhere it wasn't supposed to.
472 EXPECT_EQ((*it)->GetIPs().end(),
473 std::find((*it)->GetIPs().begin(),
474 (*it)->GetIPs().end(),
475 ip));
476 }
477 }
478}
479
480// Test that DumpNetworks works.
481TEST_F(NetworkTest, TestDumpNetworks) {
482 BasicNetworkManager manager;
483 manager.DumpNetworks(true);
484}
485
486// Test that we can toggle IPv6 on and off.
487TEST_F(NetworkTest, TestIPv6Toggle) {
488 BasicNetworkManager manager;
489 bool ipv6_found = false;
490 NetworkManager::NetworkList list;
491#if !defined(WEBRTC_WIN)
492 // There should be at least one IPv6 network (fe80::/64 should be in there).
493 // TODO(thaloun): Disabling this test on windows for the moment as the test
494 // machines don't seem to have IPv6 installed on them at all.
495 manager.set_ipv6_enabled(true);
496 list = GetNetworks(manager, true);
497 for (NetworkManager::NetworkList::iterator it = list.begin();
498 it != list.end(); ++it) {
499 if ((*it)->prefix().family() == AF_INET6) {
500 ipv6_found = true;
501 break;
502 }
503 }
504 EXPECT_TRUE(ipv6_found);
505 for (NetworkManager::NetworkList::iterator it = list.begin();
506 it != list.end(); ++it) {
507 delete (*it);
508 }
509#endif
510 ipv6_found = false;
511 manager.set_ipv6_enabled(false);
512 list = GetNetworks(manager, true);
513 for (NetworkManager::NetworkList::iterator it = list.begin();
514 it != list.end(); ++it) {
515 if ((*it)->prefix().family() == AF_INET6) {
516 ipv6_found = true;
517 break;
518 }
519 }
520 EXPECT_FALSE(ipv6_found);
521 for (NetworkManager::NetworkList::iterator it = list.begin();
522 it != list.end(); ++it) {
523 delete (*it);
524 }
525}
526
527TEST_F(NetworkTest, TestNetworkListSorting) {
528 BasicNetworkManager manager;
529 Network ipv4_network1("test_eth0", "Test Network Adapter 1",
530 IPAddress(0x12345600U), 24);
531 ipv4_network1.AddIP(IPAddress(0x12345600U));
532
533 IPAddress ip;
534 IPAddress prefix;
535 EXPECT_TRUE(IPFromString("2400:4030:1:2c00:be30:abcd:efab:cdef", &ip));
536 prefix = TruncateIP(ip, 64);
537 Network ipv6_eth1_publicnetwork1_ip1("test_eth1", "Test NetworkAdapter 2",
538 prefix, 64);
539 ipv6_eth1_publicnetwork1_ip1.AddIP(ip);
540
541 NetworkManager::NetworkList list;
542 list.push_back(new Network(ipv4_network1));
543 list.push_back(new Network(ipv6_eth1_publicnetwork1_ip1));
544 Network* net1 = list[0];
545 Network* net2 = list[1];
546
547 bool changed = false;
548 MergeNetworkList(manager, list, &changed);
549 ASSERT_TRUE(changed);
550 // After sorting IPv6 network should be higher order than IPv4 networks.
551 EXPECT_TRUE(net1->preference() < net2->preference());
552}
553
554TEST_F(NetworkTest, TestNetworkAdapterTypes) {
555 Network wifi("wlan0", "Wireless Adapter", IPAddress(0x12345600U), 24,
556 ADAPTER_TYPE_WIFI);
557 EXPECT_EQ(ADAPTER_TYPE_WIFI, wifi.type());
558 Network ethernet("eth0", "Ethernet", IPAddress(0x12345600U), 24,
559 ADAPTER_TYPE_ETHERNET);
560 EXPECT_EQ(ADAPTER_TYPE_ETHERNET, ethernet.type());
561 Network cellular("test_cell", "Cellular Adapter", IPAddress(0x12345600U), 24,
562 ADAPTER_TYPE_CELLULAR);
563 EXPECT_EQ(ADAPTER_TYPE_CELLULAR, cellular.type());
564 Network vpn("bridge_test", "VPN Adapter", IPAddress(0x12345600U), 24,
565 ADAPTER_TYPE_VPN);
566 EXPECT_EQ(ADAPTER_TYPE_VPN, vpn.type());
567 Network unknown("test", "Test Adapter", IPAddress(0x12345600U), 24,
568 ADAPTER_TYPE_UNKNOWN);
569 EXPECT_EQ(ADAPTER_TYPE_UNKNOWN, unknown.type());
570}
571
572#if defined(WEBRTC_POSIX)
573// Verify that we correctly handle interfaces with no address.
574TEST_F(NetworkTest, TestConvertIfAddrsNoAddress) {
575 ifaddrs list;
576 memset(&list, 0, sizeof(list));
577 list.ifa_name = const_cast<char*>("test_iface");
578
579 NetworkManager::NetworkList result;
580 BasicNetworkManager manager;
581 CallConvertIfAddrs(manager, &list, true, &result);
582 EXPECT_TRUE(result.empty());
583}
584#endif // defined(WEBRTC_POSIX)
585
586#if defined(WEBRTC_LINUX) && !defined(WEBRTC_ANDROID)
587// If you want to test non-default routes, you can do the following on a linux
588// machine:
589// 1) Load the dummy network driver:
590// sudo modprobe dummy
591// sudo ifconfig dummy0 127.0.0.1
592// 2) Run this test and confirm the output says it found a dummy route (and
593// passes).
594// 3) When done:
595// sudo rmmmod dummy
596TEST_F(NetworkTest, TestIgnoreNonDefaultRoutes) {
597 BasicNetworkManager manager;
598 NetworkManager::NetworkList list;
599 list = GetNetworks(manager, false);
600 bool found_dummy = false;
601 LOG(LS_INFO) << "Looking for dummy network: ";
602 for (NetworkManager::NetworkList::iterator it = list.begin();
603 it != list.end(); ++it) {
604 LOG(LS_INFO) << " Network name: " << (*it)->name();
605 found_dummy |= (*it)->name().find("dummy0") != std::string::npos;
606 }
607 for (NetworkManager::NetworkList::iterator it = list.begin();
608 it != list.end(); ++it) {
609 delete (*it);
610 }
611 if (!found_dummy) {
612 LOG(LS_INFO) << "No dummy found, quitting.";
613 return;
614 }
615 LOG(LS_INFO) << "Found dummy, running again while ignoring non-default "
616 << "routes.";
617 manager.set_ignore_non_default_routes(true);
618 list = GetNetworks(manager, false);
619 for (NetworkManager::NetworkList::iterator it = list.begin();
620 it != list.end(); ++it) {
621 LOG(LS_INFO) << " Network name: " << (*it)->name();
622 EXPECT_TRUE((*it)->name().find("dummy0") == std::string::npos);
623 }
624 for (NetworkManager::NetworkList::iterator it = list.begin();
625 it != list.end(); ++it) {
626 delete (*it);
627 }
628}
629#endif
630
guoweis@webrtc.org4bbd3c82014-09-09 13:54:45 +0000631// Test MergeNetworkList successfully combines all IPs for the same
632// prefix/length into a single Network.
633TEST_F(NetworkTest, TestMergeNetworkList) {
634 BasicNetworkManager manager;
635 NetworkManager::NetworkList list;
636
637 // Create 2 IPAddress classes with only last digit different.
638 IPAddress ip1, ip2;
639 EXPECT_TRUE(IPFromString("2400:4030:1:2c00:be30:0:0:1", &ip1));
640 EXPECT_TRUE(IPFromString("2400:4030:1:2c00:be30:0:0:2", &ip2));
641
642 // Create 2 networks with the same prefix and length.
643 Network* net1 = new Network("em1", "em1", TruncateIP(ip1, 64), 64);
644 Network* net2 = new Network("em1", "em1", TruncateIP(ip1, 64), 64);
645
646 // Add different IP into each.
647 net1->AddIP(ip1);
648 net2->AddIP(ip2);
649
650 list.push_back(net1);
651 list.push_back(net2);
652 bool changed;
653 MergeNetworkList(manager, list, &changed);
654 EXPECT_TRUE(changed);
655
656 NetworkManager::NetworkList list2;
657 manager.GetNetworks(&list2);
658
659 // Make sure the resulted networklist has only 1 element and 2
660 // IPAddresses.
661 EXPECT_EQ(list2.size(), 1uL);
662 EXPECT_EQ(list2[0]->GetIPs().size(), 2uL);
663 EXPECT_EQ(list2[0]->GetIPs()[0], ip1);
664 EXPECT_EQ(list2[0]->GetIPs()[1], ip2);
665}
666
guoweis@webrtc.org369a6372014-09-17 22:37:29 +0000667// Test that the filtering logic follows the defined ruleset in network.h.
668TEST_F(NetworkTest, TestIPv6Selection) {
669 InterfaceAddress ip;
670 std::string ipstr;
671
672 ipstr = "2401:fa00:4:1000:be30:5bff:fee5:c3";
673 ASSERT_TRUE(IPFromString(ipstr, IPV6_ADDRESS_FLAG_DEPRECATED, &ip));
674
675 // Create a network with this prefix.
676 Network ipv6_network(
677 "test_eth0", "Test NetworkAdapter", TruncateIP(ip, 64), 64);
678
679 // When there is no address added, it should return an unspecified
680 // address.
681 EXPECT_EQ(ipv6_network.GetBestIP(), IPAddress());
682 EXPECT_TRUE(IPIsUnspec(ipv6_network.GetBestIP()));
683
684 // Deprecated one should not be returned.
685 ipv6_network.AddIP(ip);
686 EXPECT_EQ(ipv6_network.GetBestIP(), IPAddress());
687
688 // Add ULA one. ULA is unique local address which is starting either
689 // with 0xfc or 0xfd.
690 ipstr = "fd00:fa00:4:1000:be30:5bff:fee5:c4";
691 ASSERT_TRUE(IPFromString(ipstr, IPV6_ADDRESS_FLAG_NONE, &ip));
692 ipv6_network.AddIP(ip);
693 EXPECT_EQ(ipv6_network.GetBestIP(), static_cast<IPAddress>(ip));
694
695 // Add global one.
696 ipstr = "2401:fa00:4:1000:be30:5bff:fee5:c5";
697 ASSERT_TRUE(IPFromString(ipstr, IPV6_ADDRESS_FLAG_NONE, &ip));
698 ipv6_network.AddIP(ip);
699 EXPECT_EQ(ipv6_network.GetBestIP(), static_cast<IPAddress>(ip));
700
701 // Add global dynamic temporary one.
702 ipstr = "2401:fa00:4:1000:be30:5bff:fee5:c6";
703 ASSERT_TRUE(IPFromString(ipstr, IPV6_ADDRESS_FLAG_TEMPORARY, &ip));
704 ipv6_network.AddIP(ip);
705 EXPECT_EQ(ipv6_network.GetBestIP(), static_cast<IPAddress>(ip));
706}
707
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000708} // namespace rtc