blob: 7ff6c095fab439eec2c26643fbbc3997effb0184 [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/gunit.h"
12#include "webrtc/base/ipaddress.h"
13
14namespace rtc {
15
16static const unsigned int kIPv4AddrSize = 4;
17static const unsigned int kIPv6AddrSize = 16;
18static const unsigned int kIPv4RFC1918Addr = 0xC0A80701;
19static const unsigned int kIPv4PublicAddr = 0x01020304;
20static const in6_addr kIPv6LinkLocalAddr = {{{0xfe, 0x80, 0x00, 0x00,
21 0x00, 0x00, 0x00, 0x00,
22 0xbe, 0x30, 0x5b, 0xff,
23 0xfe, 0xe5, 0x00, 0xc3}}};
24static const in6_addr kIPv6PublicAddr = {{{0x24, 0x01, 0xfa, 0x00,
25 0x00, 0x04, 0x10, 0x00,
26 0xbe, 0x30, 0x5b, 0xff,
27 0xfe, 0xe5, 0x00, 0xc3}}};
28static const in6_addr kIPv4MappedAnyAddr = {{{0x00, 0x00, 0x00, 0x00,
29 0x00, 0x00, 0x00, 0x00,
30 0x00, 0x00, 0xff, 0xff,
31 0x00, 0x00, 0x00, 0x00}}};
32static const in6_addr kIPv4MappedRFC1918Addr = {{{0x00, 0x00, 0x00, 0x00,
33 0x00, 0x00, 0x00, 0x00,
34 0x00, 0x00, 0xff, 0xff,
35 0xc0, 0xa8, 0x07, 0x01}}};
36static const in6_addr kIPv4MappedPublicAddr = {{{0x00, 0x00, 0x00, 0x00,
37 0x00, 0x00, 0x00, 0x00,
38 0x00, 0x00, 0xff, 0xff,
39 0x01, 0x02, 0x03, 0x04}}};
40
41static const std::string kIPv4AnyAddrString = "0.0.0.0";
42static const std::string kIPv4LoopbackAddrString = "127.0.0.1";
43static const std::string kIPv4RFC1918AddrString = "192.168.7.1";
44static const std::string kIPv4PublicAddrString = "1.2.3.4";
45static const std::string kIPv4PublicAddrAnonymizedString = "1.2.3.x";
46static const std::string kIPv6AnyAddrString = "::";
47static const std::string kIPv6LoopbackAddrString = "::1";
48static const std::string kIPv6LinkLocalAddrString = "fe80::be30:5bff:fee5:c3";
49static const std::string kIPv6PublicAddrString =
50 "2401:fa00:4:1000:be30:5bff:fee5:c3";
51static const std::string kIPv6PublicAddrAnonymizedString = "2401:fa00:4::";
52static const std::string kIPv4MappedAnyAddrString = "::ffff:0:0";
53static const std::string kIPv4MappedRFC1918AddrString = "::ffff:c0a8:701";
54static const std::string kIPv4MappedLoopbackAddrString = "::ffff:7f00:1";
55static const std::string kIPv4MappedPublicAddrString = "::ffff:102:0304";
56static const std::string kIPv4MappedV4StyleAddrString = "::ffff:192.168.7.1";
57
58static const std::string kIPv4BrokenString1 = "192.168.7.";
59static const std::string kIPv4BrokenString2 = "192.168.7.1.1";
60static const std::string kIPv4BrokenString3 = "192.168.7.1:80";
61static const std::string kIPv4BrokenString4 = "192.168.7.ONE";
62static const std::string kIPv4BrokenString5 = "-192.168.7.1";
63static const std::string kIPv4BrokenString6 = "256.168.7.1";
64static const std::string kIPv6BrokenString1 = "2401:fa00:4:1000:be30";
65static const std::string kIPv6BrokenString2 =
66 "2401:fa00:4:1000:be30:5bff:fee5:c3:1";
67static const std::string kIPv6BrokenString3 =
68 "[2401:fa00:4:1000:be30:5bff:fee5:c3]:1";
69static const std::string kIPv6BrokenString4 =
70 "2401::4::be30";
71static const std::string kIPv6BrokenString5 =
72 "2401:::4:fee5:be30";
73static const std::string kIPv6BrokenString6 =
74 "2401f:fa00:4:1000:be30:5bff:fee5:c3";
75static const std::string kIPv6BrokenString7 =
76 "2401:ga00:4:1000:be30:5bff:fee5:c3";
77static const std::string kIPv6BrokenString8 =
78 "2401:fa000:4:1000:be30:5bff:fee5:c3";
79static const std::string kIPv6BrokenString9 =
80 "2401:fal0:4:1000:be30:5bff:fee5:c3";
81static const std::string kIPv6BrokenString10 =
82 "::ffff:192.168.7.";
83static const std::string kIPv6BrokenString11 =
84 "::ffff:192.168.7.1.1.1";
85static const std::string kIPv6BrokenString12 =
86 "::fffe:192.168.7.1";
87static const std::string kIPv6BrokenString13 =
88 "::ffff:192.168.7.ff";
89static const std::string kIPv6BrokenString14 =
90 "0x2401:fa00:4:1000:be30:5bff:fee5:c3";
91
92bool AreEqual(const IPAddress& addr,
93 const IPAddress& addr2) {
94 if ((IPIsAny(addr) != IPIsAny(addr2)) ||
95 (IPIsLoopback(addr) != IPIsLoopback(addr2)) ||
96 (IPIsPrivate(addr) != IPIsPrivate(addr2)) ||
97 (HashIP(addr) != HashIP(addr2)) ||
98 (addr.Size() != addr2.Size()) ||
99 (addr.family() != addr2.family()) ||
100 (addr.ToString() != addr2.ToString())) {
101 return false;
102 }
103 in_addr v4addr, v4addr2;
104 v4addr = addr.ipv4_address();
105 v4addr2 = addr2.ipv4_address();
106 if (0 != memcmp(&v4addr, &v4addr2, sizeof(v4addr))) {
107 return false;
108 }
109 in6_addr v6addr, v6addr2;
110 v6addr = addr.ipv6_address();
111 v6addr2 = addr2.ipv6_address();
112 if (0 != memcmp(&v6addr, &v6addr2, sizeof(v6addr))) {
113 return false;
114 }
115 return true;
116}
117
118bool BrokenIPStringFails(const std::string& broken) {
119 IPAddress addr(0); // Intentionally make it v4.
120 if (IPFromString(kIPv4BrokenString1, &addr)) {
121 return false;
122 }
123 return addr.family() == AF_UNSPEC;
124}
125
126bool CheckMaskCount(const std::string& mask, int expected_length) {
127 IPAddress addr;
128 return IPFromString(mask, &addr) &&
129 (expected_length == CountIPMaskBits(addr));
130}
131
132bool TryInvalidMaskCount(const std::string& mask) {
133 // We don't care about the result at all, but we do want to know if
134 // CountIPMaskBits is going to crash or infinite loop or something.
135 IPAddress addr;
136 if (!IPFromString(mask, &addr)) {
137 return false;
138 }
139 CountIPMaskBits(addr);
140 return true;
141}
142
143bool CheckTruncateIP(const std::string& initial, int truncate_length,
144 const std::string& expected_result) {
145 IPAddress addr, expected;
146 IPFromString(initial, &addr);
147 IPFromString(expected_result, &expected);
148 IPAddress truncated = TruncateIP(addr, truncate_length);
149 return truncated == expected;
150}
151
152TEST(IPAddressTest, TestDefaultCtor) {
153 IPAddress addr;
154 EXPECT_FALSE(IPIsAny(addr));
155 EXPECT_FALSE(IPIsLoopback(addr));
156 EXPECT_FALSE(IPIsPrivate(addr));
157
158 EXPECT_EQ(0U, addr.Size());
159 EXPECT_EQ(AF_UNSPEC, addr.family());
160 EXPECT_EQ("", addr.ToString());
161}
162
163TEST(IPAddressTest, TestInAddrCtor) {
164 in_addr v4addr;
165
166 // Test V4 Any address.
167 v4addr.s_addr = INADDR_ANY;
168 IPAddress addr(v4addr);
169 EXPECT_TRUE(IPIsAny(addr));
170 EXPECT_FALSE(IPIsLoopback(addr));
171 EXPECT_FALSE(IPIsPrivate(addr));
172 EXPECT_EQ(kIPv4AddrSize, addr.Size());
173 EXPECT_EQ(kIPv4AnyAddrString, addr.ToString());
174
175 // Test a V4 loopback address.
176 v4addr.s_addr = htonl(INADDR_LOOPBACK);
177 addr = IPAddress(v4addr);
178 EXPECT_FALSE(IPIsAny(addr));
179 EXPECT_TRUE(IPIsLoopback(addr));
180 EXPECT_TRUE(IPIsPrivate(addr));
181 EXPECT_EQ(kIPv4AddrSize, addr.Size());
182 EXPECT_EQ(kIPv4LoopbackAddrString, addr.ToString());
183
184 // Test an RFC1918 address.
185 v4addr.s_addr = htonl(kIPv4RFC1918Addr);
186 addr = IPAddress(v4addr);
187 EXPECT_FALSE(IPIsAny(addr));
188 EXPECT_FALSE(IPIsLoopback(addr));
189 EXPECT_TRUE(IPIsPrivate(addr));
190 EXPECT_EQ(kIPv4AddrSize, addr.Size());
191 EXPECT_EQ(kIPv4RFC1918AddrString, addr.ToString());
192
193 // Test a 'normal' v4 address.
194 v4addr.s_addr = htonl(kIPv4PublicAddr);
195 addr = IPAddress(v4addr);
196 EXPECT_FALSE(IPIsAny(addr));
197 EXPECT_FALSE(IPIsLoopback(addr));
198 EXPECT_FALSE(IPIsPrivate(addr));
199 EXPECT_EQ(kIPv4AddrSize, addr.Size());
200 EXPECT_EQ(kIPv4PublicAddrString, addr.ToString());
201}
202
203TEST(IPAddressTest, TestInAddr6Ctor) {
204 // Test v6 empty.
205 IPAddress addr(in6addr_any);
206 EXPECT_TRUE(IPIsAny(addr));
207 EXPECT_FALSE(IPIsLoopback(addr));
208 EXPECT_FALSE(IPIsPrivate(addr));
209 EXPECT_EQ(kIPv6AddrSize, addr.Size());
210 EXPECT_EQ(kIPv6AnyAddrString, addr.ToString());
211
212 // Test v6 loopback.
213 addr = IPAddress(in6addr_loopback);
214 EXPECT_FALSE(IPIsAny(addr));
215 EXPECT_TRUE(IPIsLoopback(addr));
216 EXPECT_TRUE(IPIsPrivate(addr));
217 EXPECT_EQ(kIPv6AddrSize, addr.Size());
218 EXPECT_EQ(kIPv6LoopbackAddrString, addr.ToString());
219
220 // Test v6 link-local.
221 addr = IPAddress(kIPv6LinkLocalAddr);
222 EXPECT_FALSE(IPIsAny(addr));
223 EXPECT_FALSE(IPIsLoopback(addr));
224 EXPECT_TRUE(IPIsPrivate(addr));
225 EXPECT_EQ(kIPv6AddrSize, addr.Size());
226 EXPECT_EQ(kIPv6LinkLocalAddrString, addr.ToString());
227
228 // Test v6 global address.
229 addr = IPAddress(kIPv6PublicAddr);
230 EXPECT_FALSE(IPIsAny(addr));
231 EXPECT_FALSE(IPIsLoopback(addr));
232 EXPECT_FALSE(IPIsPrivate(addr));
233 EXPECT_EQ(kIPv6AddrSize, addr.Size());
234 EXPECT_EQ(kIPv6PublicAddrString, addr.ToString());
235}
236
237TEST(IPAddressTest, TestUint32Ctor) {
238 // Test V4 Any address.
239 IPAddress addr(0);
240 EXPECT_TRUE(IPIsAny(addr));
241 EXPECT_FALSE(IPIsLoopback(addr));
242 EXPECT_FALSE(IPIsPrivate(addr));
243 EXPECT_EQ(kIPv4AddrSize, addr.Size());
244 EXPECT_EQ(kIPv4AnyAddrString, addr.ToString());
245
246 // Test a V4 loopback address.
247 addr = IPAddress(INADDR_LOOPBACK);
248 EXPECT_FALSE(IPIsAny(addr));
249 EXPECT_TRUE(IPIsLoopback(addr));
250 EXPECT_TRUE(IPIsPrivate(addr));
251 EXPECT_EQ(kIPv4AddrSize, addr.Size());
252 EXPECT_EQ(kIPv4LoopbackAddrString, addr.ToString());
253
254 // Test an RFC1918 address.
255 addr = IPAddress(kIPv4RFC1918Addr);
256 EXPECT_FALSE(IPIsAny(addr));
257 EXPECT_FALSE(IPIsLoopback(addr));
258 EXPECT_TRUE(IPIsPrivate(addr));
259 EXPECT_EQ(kIPv4AddrSize, addr.Size());
260 EXPECT_EQ(kIPv4RFC1918AddrString, addr.ToString());
261
262 // Test a 'normal' v4 address.
263 addr = IPAddress(kIPv4PublicAddr);
264 EXPECT_FALSE(IPIsAny(addr));
265 EXPECT_FALSE(IPIsLoopback(addr));
266 EXPECT_FALSE(IPIsPrivate(addr));
267 EXPECT_EQ(kIPv4AddrSize, addr.Size());
268 EXPECT_EQ(kIPv4PublicAddrString, addr.ToString());
269}
270
271TEST(IPAddressTest, TestCopyCtor) {
272 in_addr v4addr;
273 v4addr.s_addr = htonl(kIPv4PublicAddr);
274 IPAddress addr(v4addr);
275 IPAddress addr2(addr);
276
277 EXPECT_PRED2(AreEqual, addr, addr2);
278
279 addr = IPAddress(INADDR_ANY);
280 addr2 = IPAddress(addr);
281 EXPECT_PRED2(AreEqual, addr, addr2);
282
283 addr = IPAddress(INADDR_LOOPBACK);
284 addr2 = IPAddress(addr);
285 EXPECT_PRED2(AreEqual, addr, addr2);
286
287 addr = IPAddress(kIPv4PublicAddr);
288 addr2 = IPAddress(addr);
289 EXPECT_PRED2(AreEqual, addr, addr2);
290
291 addr = IPAddress(kIPv4RFC1918Addr);
292 addr2 = IPAddress(addr);
293 EXPECT_PRED2(AreEqual, addr, addr2);
294
295 addr = IPAddress(in6addr_any);
296 addr2 = IPAddress(addr);
297 EXPECT_PRED2(AreEqual, addr, addr2);
298
299 addr = IPAddress(in6addr_loopback);
300 addr2 = IPAddress(addr);
301 EXPECT_PRED2(AreEqual, addr, addr2);
302
303 addr = IPAddress(kIPv6LinkLocalAddr);
304 addr2 = IPAddress(addr);
305 EXPECT_PRED2(AreEqual, addr, addr2);
306
307 addr = IPAddress(kIPv6PublicAddr);
308 addr2 = IPAddress(addr);
309 EXPECT_PRED2(AreEqual, addr, addr2);
310}
311
312TEST(IPAddressTest, TestEquality) {
313 // Check v4 equality
314 in_addr v4addr, v4addr2;
315 v4addr.s_addr = htonl(kIPv4PublicAddr);
316 v4addr2.s_addr = htonl(kIPv4PublicAddr + 1);
317 IPAddress addr(v4addr);
318 IPAddress addr2(v4addr2);
319 IPAddress addr3(v4addr);
320
321 EXPECT_TRUE(addr == addr);
322 EXPECT_TRUE(addr2 == addr2);
323 EXPECT_TRUE(addr3 == addr3);
324 EXPECT_TRUE(addr == addr3);
325 EXPECT_TRUE(addr3 == addr);
326 EXPECT_FALSE(addr2 == addr);
327 EXPECT_FALSE(addr2 == addr3);
328 EXPECT_FALSE(addr == addr2);
329 EXPECT_FALSE(addr3 == addr2);
330
331 // Check v6 equality
332 IPAddress addr4(kIPv6PublicAddr);
333 IPAddress addr5(kIPv6LinkLocalAddr);
334 IPAddress addr6(kIPv6PublicAddr);
335
336 EXPECT_TRUE(addr4 == addr4);
337 EXPECT_TRUE(addr5 == addr5);
338 EXPECT_TRUE(addr4 == addr6);
339 EXPECT_TRUE(addr6 == addr4);
340 EXPECT_FALSE(addr4 == addr5);
341 EXPECT_FALSE(addr5 == addr4);
342 EXPECT_FALSE(addr6 == addr5);
343 EXPECT_FALSE(addr5 == addr6);
344
345 // Check v4/v6 cross-equality
346 EXPECT_FALSE(addr == addr4);
347 EXPECT_FALSE(addr == addr5);
348 EXPECT_FALSE(addr == addr6);
349 EXPECT_FALSE(addr4 == addr);
350 EXPECT_FALSE(addr5 == addr);
351 EXPECT_FALSE(addr6 == addr);
352 EXPECT_FALSE(addr2 == addr4);
353 EXPECT_FALSE(addr2 == addr5);
354 EXPECT_FALSE(addr2 == addr6);
355 EXPECT_FALSE(addr4 == addr2);
356 EXPECT_FALSE(addr5 == addr2);
357 EXPECT_FALSE(addr6 == addr2);
358 EXPECT_FALSE(addr3 == addr4);
359 EXPECT_FALSE(addr3 == addr5);
360 EXPECT_FALSE(addr3 == addr6);
361 EXPECT_FALSE(addr4 == addr3);
362 EXPECT_FALSE(addr5 == addr3);
363 EXPECT_FALSE(addr6 == addr3);
364
365 // Special cases: loopback and any.
366 // They're special but they're still not equal.
367 IPAddress v4loopback(htonl(INADDR_LOOPBACK));
368 IPAddress v6loopback(in6addr_loopback);
369 EXPECT_FALSE(v4loopback == v6loopback);
370
371 IPAddress v4any(0);
372 IPAddress v6any(in6addr_any);
373 EXPECT_FALSE(v4any == v6any);
374}
375
376TEST(IPAddressTest, TestComparison) {
377 // Defined in 'ascending' order.
378 // v6 > v4, and intra-family sorting is purely numerical
379 IPAddress addr0; // AF_UNSPEC
380 IPAddress addr1(INADDR_ANY); // 0.0.0.0
381 IPAddress addr2(kIPv4PublicAddr); // 1.2.3.4
382 IPAddress addr3(INADDR_LOOPBACK); // 127.0.0.1
383 IPAddress addr4(kIPv4RFC1918Addr); // 192.168.7.1.
384 IPAddress addr5(in6addr_any); // ::
385 IPAddress addr6(in6addr_loopback); // ::1
386 IPAddress addr7(kIPv6PublicAddr); // 2401....
387 IPAddress addr8(kIPv6LinkLocalAddr); // fe80....
388
389 EXPECT_TRUE(addr0 < addr1);
390 EXPECT_TRUE(addr1 < addr2);
391 EXPECT_TRUE(addr2 < addr3);
392 EXPECT_TRUE(addr3 < addr4);
393 EXPECT_TRUE(addr4 < addr5);
394 EXPECT_TRUE(addr5 < addr6);
395 EXPECT_TRUE(addr6 < addr7);
396 EXPECT_TRUE(addr7 < addr8);
397
398 EXPECT_FALSE(addr0 > addr1);
399 EXPECT_FALSE(addr1 > addr2);
400 EXPECT_FALSE(addr2 > addr3);
401 EXPECT_FALSE(addr3 > addr4);
402 EXPECT_FALSE(addr4 > addr5);
403 EXPECT_FALSE(addr5 > addr6);
404 EXPECT_FALSE(addr6 > addr7);
405 EXPECT_FALSE(addr7 > addr8);
406
407 EXPECT_FALSE(addr0 > addr0);
408 EXPECT_FALSE(addr1 > addr1);
409 EXPECT_FALSE(addr2 > addr2);
410 EXPECT_FALSE(addr3 > addr3);
411 EXPECT_FALSE(addr4 > addr4);
412 EXPECT_FALSE(addr5 > addr5);
413 EXPECT_FALSE(addr6 > addr6);
414 EXPECT_FALSE(addr7 > addr7);
415 EXPECT_FALSE(addr8 > addr8);
416
417 EXPECT_FALSE(addr0 < addr0);
418 EXPECT_FALSE(addr1 < addr1);
419 EXPECT_FALSE(addr2 < addr2);
420 EXPECT_FALSE(addr3 < addr3);
421 EXPECT_FALSE(addr4 < addr4);
422 EXPECT_FALSE(addr5 < addr5);
423 EXPECT_FALSE(addr6 < addr6);
424 EXPECT_FALSE(addr7 < addr7);
425 EXPECT_FALSE(addr8 < addr8);
426}
427
428TEST(IPAddressTest, TestFromString) {
429 IPAddress addr;
430 IPAddress addr2;
431 addr2 = IPAddress(INADDR_ANY);
432
433 EXPECT_TRUE(IPFromString(kIPv4AnyAddrString, &addr));
434 EXPECT_EQ(addr.ToString(), kIPv4AnyAddrString);
435 EXPECT_PRED2(AreEqual, addr, addr2);
436
437 addr2 = IPAddress(INADDR_LOOPBACK);
438 EXPECT_TRUE(IPFromString(kIPv4LoopbackAddrString, &addr));
439 EXPECT_EQ(addr.ToString(), kIPv4LoopbackAddrString);
440 EXPECT_PRED2(AreEqual, addr, addr2);
441
442 addr2 = IPAddress(kIPv4RFC1918Addr);
443 EXPECT_TRUE(IPFromString(kIPv4RFC1918AddrString, &addr));
444 EXPECT_EQ(addr.ToString(), kIPv4RFC1918AddrString);
445 EXPECT_PRED2(AreEqual, addr, addr2);
446
447 addr2 = IPAddress(kIPv4PublicAddr);
448 EXPECT_TRUE(IPFromString(kIPv4PublicAddrString, &addr));
449 EXPECT_EQ(addr.ToString(), kIPv4PublicAddrString);
450 EXPECT_PRED2(AreEqual, addr, addr2);
451
452 addr2 = IPAddress(in6addr_any);
453 EXPECT_TRUE(IPFromString(kIPv6AnyAddrString, &addr));
454 EXPECT_EQ(addr.ToString(), kIPv6AnyAddrString);
455 EXPECT_PRED2(AreEqual, addr, addr2);
456
457 addr2 = IPAddress(in6addr_loopback);
458 EXPECT_TRUE(IPFromString(kIPv6LoopbackAddrString, &addr));
459 EXPECT_EQ(addr.ToString(), kIPv6LoopbackAddrString);
460 EXPECT_PRED2(AreEqual, addr, addr2);
461
462 addr2 = IPAddress(kIPv6LinkLocalAddr);
463 EXPECT_TRUE(IPFromString(kIPv6LinkLocalAddrString, &addr));
464 EXPECT_EQ(addr.ToString(), kIPv6LinkLocalAddrString);
465 EXPECT_PRED2(AreEqual, addr, addr2);
466
467 addr2 = IPAddress(kIPv6PublicAddr);
468 EXPECT_TRUE(IPFromString(kIPv6PublicAddrString, &addr));
469 EXPECT_EQ(addr.ToString(), kIPv6PublicAddrString);
470 EXPECT_PRED2(AreEqual, addr, addr2);
471
472 addr2 = IPAddress(kIPv4MappedRFC1918Addr);
473 EXPECT_TRUE(IPFromString(kIPv4MappedV4StyleAddrString, &addr));
474 EXPECT_PRED2(AreEqual, addr, addr2);
475
476 // Broken cases, should set addr to AF_UNSPEC.
477 EXPECT_PRED1(BrokenIPStringFails, kIPv4BrokenString1);
478 EXPECT_PRED1(BrokenIPStringFails, kIPv4BrokenString2);
479 EXPECT_PRED1(BrokenIPStringFails, kIPv4BrokenString3);
480 EXPECT_PRED1(BrokenIPStringFails, kIPv4BrokenString4);
481 EXPECT_PRED1(BrokenIPStringFails, kIPv4BrokenString5);
482 EXPECT_PRED1(BrokenIPStringFails, kIPv4BrokenString6);
483 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString1);
484 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString2);
485 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString3);
486 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString4);
487 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString5);
488 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString6);
489 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString7);
490 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString8);
491 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString9);
492 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString10);
493 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString11);
494 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString12);
495 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString13);
496 EXPECT_PRED1(BrokenIPStringFails, kIPv6BrokenString14);
497}
498
499TEST(IPAddressTest, TestIPFromAddrInfo) {
500 struct sockaddr_in expected4;
501 struct sockaddr_in6 expected6;
502 struct addrinfo test_info;
503 struct addrinfo next_info;
504 memset(&next_info, 'A', sizeof(next_info));
505 test_info.ai_next = &next_info;
506 // Check that we can get an IPv4 address out.
507 test_info.ai_addr = reinterpret_cast<struct sockaddr*>(&expected4);
508 expected4.sin_addr.s_addr = HostToNetwork32(kIPv4PublicAddr);
509 expected4.sin_family = AF_INET;
510 IPAddress expected(kIPv4PublicAddr);
511 IPAddress addr;
512 EXPECT_TRUE(IPFromAddrInfo(&test_info, &addr));
513 EXPECT_EQ(expected, addr);
514 // Check that we can get an IPv6 address out.
515 expected6.sin6_addr = kIPv6PublicAddr;
516 expected6.sin6_family = AF_INET6;
517 expected = IPAddress(kIPv6PublicAddr);
518 test_info.ai_addr = reinterpret_cast<struct sockaddr*>(&expected6);
519 EXPECT_TRUE(IPFromAddrInfo(&test_info, &addr));
520 EXPECT_EQ(expected, addr);
521 // Check that unspec fails.
522 expected6.sin6_family = AF_UNSPEC;
523 EXPECT_FALSE(IPFromAddrInfo(&test_info, &addr));
524 // Check a zeroed out addrinfo doesn't crash us.
525 memset(&next_info, 0, sizeof(next_info));
526 EXPECT_FALSE(IPFromAddrInfo(&next_info, &addr));
527}
528
529TEST(IPAddressTest, TestIsPrivate) {
530 EXPECT_FALSE(IPIsPrivate(IPAddress(INADDR_ANY)));
531 EXPECT_FALSE(IPIsPrivate(IPAddress(kIPv4PublicAddr)));
532 EXPECT_FALSE(IPIsPrivate(IPAddress(in6addr_any)));
533 EXPECT_FALSE(IPIsPrivate(IPAddress(kIPv6PublicAddr)));
534 EXPECT_FALSE(IPIsPrivate(IPAddress(kIPv4MappedAnyAddr)));
535 EXPECT_FALSE(IPIsPrivate(IPAddress(kIPv4MappedPublicAddr)));
536
537 EXPECT_TRUE(IPIsPrivate(IPAddress(kIPv4RFC1918Addr)));
538 EXPECT_TRUE(IPIsPrivate(IPAddress(INADDR_LOOPBACK)));
539 EXPECT_TRUE(IPIsPrivate(IPAddress(in6addr_loopback)));
540 EXPECT_TRUE(IPIsPrivate(IPAddress(kIPv6LinkLocalAddr)));
541}
542
543TEST(IPAddressTest, TestIsLoopback) {
544 EXPECT_FALSE(IPIsLoopback(IPAddress(INADDR_ANY)));
545 EXPECT_FALSE(IPIsLoopback(IPAddress(kIPv4PublicAddr)));
546 EXPECT_FALSE(IPIsLoopback(IPAddress(in6addr_any)));
547 EXPECT_FALSE(IPIsLoopback(IPAddress(kIPv6PublicAddr)));
548 EXPECT_FALSE(IPIsLoopback(IPAddress(kIPv4MappedAnyAddr)));
549 EXPECT_FALSE(IPIsLoopback(IPAddress(kIPv4MappedPublicAddr)));
550
551 EXPECT_TRUE(IPIsLoopback(IPAddress(INADDR_LOOPBACK)));
552 EXPECT_TRUE(IPIsLoopback(IPAddress(in6addr_loopback)));
553}
554
guoweis@webrtc.org59ae5ff2015-03-01 23:45:16 +0000555// Verify that IPIsAny catches all cases of "any" address.
556TEST(IPAddressTest, TestIsAny) {
557 IPAddress addr;
558
559 EXPECT_TRUE(IPFromString(kIPv6AnyAddrString, &addr));
560 EXPECT_TRUE(IPIsAny(addr));
561
562 EXPECT_TRUE(IPFromString(kIPv4AnyAddrString, &addr));
563 EXPECT_TRUE(IPIsAny(addr));
564
565 EXPECT_TRUE(IPIsAny(IPAddress(kIPv4MappedAnyAddr)));
566}
567
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000568TEST(IPAddressTest, TestNormalized) {
569 // Check normalizing a ::ffff:a.b.c.d address.
570 IPAddress addr;
571 EXPECT_TRUE(IPFromString(kIPv4MappedV4StyleAddrString, &addr));
572 IPAddress addr2(kIPv4RFC1918Addr);
573 addr = addr.Normalized();
574 EXPECT_EQ(addr2, addr);
575
576 // Check normalizing a ::ffff:aabb:ccdd address.
577 addr = IPAddress(kIPv4MappedPublicAddr);
578 addr2 = IPAddress(kIPv4PublicAddr);
579 addr = addr.Normalized();
580 EXPECT_EQ(addr, addr2);
581
582 // Check that a non-mapped v6 addresses isn't altered.
583 addr = IPAddress(kIPv6PublicAddr);
584 addr2 = IPAddress(kIPv6PublicAddr);
585 addr = addr.Normalized();
586 EXPECT_EQ(addr, addr2);
587
588 // Check that addresses that look a bit like mapped addresses aren't altered
589 EXPECT_TRUE(IPFromString("fe80::ffff:0102:0304", &addr));
590 addr2 = addr;
591 addr = addr.Normalized();
592 EXPECT_EQ(addr, addr2);
593 EXPECT_TRUE(IPFromString("::0102:0304", &addr));
594 addr2 = addr;
595 addr = addr.Normalized();
596 EXPECT_EQ(addr, addr2);
597 // This string should 'work' as an IP address but is not a mapped address,
598 // so it shouldn't change on normalization.
599 EXPECT_TRUE(IPFromString("::192.168.7.1", &addr));
600 addr2 = addr;
601 addr = addr.Normalized();
602 EXPECT_EQ(addr, addr2);
603
604 // Check that v4 addresses aren't altered.
605 addr = IPAddress(htonl(kIPv4PublicAddr));
606 addr2 = IPAddress(htonl(kIPv4PublicAddr));
607 addr = addr.Normalized();
608 EXPECT_EQ(addr, addr2);
609}
610
611TEST(IPAddressTest, TestAsIPv6Address) {
612 IPAddress addr(kIPv4PublicAddr);
613 IPAddress addr2(kIPv4MappedPublicAddr);
614 addr = addr.AsIPv6Address();
615 EXPECT_EQ(addr, addr2);
616
617 addr = IPAddress(kIPv4MappedPublicAddr);
618 addr2 = IPAddress(kIPv4MappedPublicAddr);
619 addr = addr.AsIPv6Address();
620 EXPECT_EQ(addr, addr2);
621
622 addr = IPAddress(kIPv6PublicAddr);
623 addr2 = IPAddress(kIPv6PublicAddr);
624 addr = addr.AsIPv6Address();
625 EXPECT_EQ(addr, addr2);
626}
627
628TEST(IPAddressTest, TestCountIPMaskBits) {
629 IPAddress mask;
630 // IPv4 on byte boundaries
631 EXPECT_PRED2(CheckMaskCount, "255.255.255.255", 32);
632 EXPECT_PRED2(CheckMaskCount, "255.255.255.0", 24);
633 EXPECT_PRED2(CheckMaskCount, "255.255.0.0", 16);
634 EXPECT_PRED2(CheckMaskCount, "255.0.0.0", 8);
635 EXPECT_PRED2(CheckMaskCount, "0.0.0.0", 0);
636
637 // IPv4 not on byte boundaries
638 EXPECT_PRED2(CheckMaskCount, "128.0.0.0", 1);
639 EXPECT_PRED2(CheckMaskCount, "224.0.0.0", 3);
640 EXPECT_PRED2(CheckMaskCount, "255.248.0.0", 13);
641 EXPECT_PRED2(CheckMaskCount, "255.255.224.0", 19);
642 EXPECT_PRED2(CheckMaskCount, "255.255.255.252", 30);
643
644 // V6 on byte boundaries
645 EXPECT_PRED2(CheckMaskCount, "::", 0);
646 EXPECT_PRED2(CheckMaskCount, "ff00::", 8);
647 EXPECT_PRED2(CheckMaskCount, "ffff::", 16);
648 EXPECT_PRED2(CheckMaskCount, "ffff:ff00::", 24);
649 EXPECT_PRED2(CheckMaskCount, "ffff:ffff::", 32);
650 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ff00::", 40);
651 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff::", 48);
652 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ff00::", 56);
653 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff::", 64);
654 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ff00::", 72);
655 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ffff::", 80);
656 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ffff:ff00::", 88);
657 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ffff:ffff::", 96);
658 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ffff:ffff:ff00:0000", 104);
659 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ffff:ffff:ffff:0000", 112);
660 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ffff:ffff:ffff:ff00", 120);
661 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ffff:ffff:ffff:ffff", 128);
662
663 // V6 not on byte boundaries.
664 EXPECT_PRED2(CheckMaskCount, "8000::", 1);
665 EXPECT_PRED2(CheckMaskCount, "ff80::", 9);
666 EXPECT_PRED2(CheckMaskCount, "ffff:fe00::", 23);
667 EXPECT_PRED2(CheckMaskCount, "ffff:fffe::", 31);
668 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:e000::", 35);
669 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffe0::", 43);
670 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:f800::", 53);
671 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:fff8::", 61);
672 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:fc00::", 70);
673 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:fffc::", 78);
674 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ffff:8000::", 81);
675 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ffff:ff80::", 89);
676 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ffff:ffff:fe00::", 103);
677 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ffff:ffff:fffe:0000", 111);
678 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ffff:ffff:ffff:fc00", 118);
679 EXPECT_PRED2(CheckMaskCount, "ffff:ffff:ffff:ffff:ffff:ffff:ffff:fffc", 126);
680
681 // Non-contiguous ranges. These are invalid but lets test them
682 // to make sure they don't crash anything or infinite loop or something.
683 EXPECT_PRED1(TryInvalidMaskCount, "217.0.0.0");
684 EXPECT_PRED1(TryInvalidMaskCount, "255.185.0.0");
685 EXPECT_PRED1(TryInvalidMaskCount, "255.255.251.0");
686 EXPECT_PRED1(TryInvalidMaskCount, "255.255.251.255");
687 EXPECT_PRED1(TryInvalidMaskCount, "255.255.254.201");
688 EXPECT_PRED1(TryInvalidMaskCount, "::1");
689 EXPECT_PRED1(TryInvalidMaskCount, "fe80::1");
690 EXPECT_PRED1(TryInvalidMaskCount, "ff80::1");
691 EXPECT_PRED1(TryInvalidMaskCount, "ffff::1");
692 EXPECT_PRED1(TryInvalidMaskCount, "ffff:ff00:1::1");
693 EXPECT_PRED1(TryInvalidMaskCount, "ffff:ffff::ffff:1");
694 EXPECT_PRED1(TryInvalidMaskCount, "ffff:ffff:ff00:1::");
695 EXPECT_PRED1(TryInvalidMaskCount, "ffff:ffff:ffff::ff00");
696 EXPECT_PRED1(TryInvalidMaskCount, "ffff:ffff:ffff:ff00:1234::");
697 EXPECT_PRED1(TryInvalidMaskCount, "ffff:ffff:ffff:ffff:0012::ffff");
698 EXPECT_PRED1(TryInvalidMaskCount, "ffff:ffff:ffff:ffff:ff01::");
699 EXPECT_PRED1(TryInvalidMaskCount, "ffff:ffff:ffff:ffff:ffff:7f00::");
700 EXPECT_PRED1(TryInvalidMaskCount, "ffff:ffff:ffff:ffff:ffff:ff7a::");
701 EXPECT_PRED1(TryInvalidMaskCount, "ffff:ffff:ffff:ffff:ffff:ffff:7f00:0000");
702 EXPECT_PRED1(TryInvalidMaskCount, "ffff:ffff:ffff:ffff:ffff:ffff:ff70:0000");
703 EXPECT_PRED1(TryInvalidMaskCount, "ffff:ffff:ffff:ffff:ffff:ffff:ffff:0211");
704 EXPECT_PRED1(TryInvalidMaskCount, "ffff:ffff:ffff:ffff:ffff:ffff:ffff:ff7f");
705}
706
707TEST(IPAddressTest, TestTruncateIP) {
708 EXPECT_PRED3(CheckTruncateIP, "255.255.255.255", 24, "255.255.255.0");
709 EXPECT_PRED3(CheckTruncateIP, "255.255.255.255", 16, "255.255.0.0");
710 EXPECT_PRED3(CheckTruncateIP, "255.255.255.255", 8, "255.0.0.0");
711 EXPECT_PRED3(CheckTruncateIP, "202.67.7.255", 24, "202.67.7.0");
712 EXPECT_PRED3(CheckTruncateIP, "202.129.65.205", 16, "202.129.0.0");
713 EXPECT_PRED3(CheckTruncateIP, "55.25.2.77", 8, "55.0.0.0");
714 EXPECT_PRED3(CheckTruncateIP, "74.128.99.254", 1, "0.0.0.0");
715 EXPECT_PRED3(CheckTruncateIP, "106.55.99.254", 3, "96.0.0.0");
716 EXPECT_PRED3(CheckTruncateIP, "172.167.53.222", 13, "172.160.0.0");
717 EXPECT_PRED3(CheckTruncateIP, "255.255.224.0", 18, "255.255.192.0");
718 EXPECT_PRED3(CheckTruncateIP, "255.255.255.252", 28, "255.255.255.240");
719
720 EXPECT_PRED3(CheckTruncateIP, "fe80:1111:2222:3333:4444:5555:6666:7777", 1,
721 "8000::");
722 EXPECT_PRED3(CheckTruncateIP, "fff0:1111:2222:3333:4444:5555:6666:7777", 9,
723 "ff80::");
724 EXPECT_PRED3(CheckTruncateIP, "ffff:ff80:1111:2222:3333:4444:5555:6666", 23,
725 "ffff:fe00::");
726 EXPECT_PRED3(CheckTruncateIP, "ffff:ff80:1111:2222:3333:4444:5555:6666", 32,
727 "ffff:ff80::");
728 EXPECT_PRED3(CheckTruncateIP, "2400:f9af:e456:1111:2222:3333:4444:5555", 35,
729 "2400:f9af:e000::");
730 EXPECT_PRED3(CheckTruncateIP, "9999:1111:2233:4444:5555:6666:7777:8888", 53,
731 "9999:1111:2233:4000::");
732 EXPECT_PRED3(CheckTruncateIP, "9999:1111:2233:4567:5555:6666:7777:8888", 64,
733 "9999:1111:2233:4567::");
734 EXPECT_PRED3(CheckTruncateIP, "1111:2222:3333:4444:5555:6666:7777:8888", 68,
735 "1111:2222:3333:4444:5000::");
736 EXPECT_PRED3(CheckTruncateIP, "1111:2222:3333:4444:5555:6666:7777:8888", 92,
737 "1111:2222:3333:4444:5555:6660::");
738 EXPECT_PRED3(CheckTruncateIP, "1111:2222:3333:4444:5555:6666:7777:8888", 96,
739 "1111:2222:3333:4444:5555:6666::");
740 EXPECT_PRED3(CheckTruncateIP, "1111:2222:3333:4444:5555:6666:7777:8888", 105,
741 "1111:2222:3333:4444:5555:6666:7700::");
742 EXPECT_PRED3(CheckTruncateIP, "1111:2222:3333:4444:5555:6666:7777:8888", 124,
743 "1111:2222:3333:4444:5555:6666:7777:8880");
744
745 // Slightly degenerate cases
746 EXPECT_PRED3(CheckTruncateIP, "202.165.33.127", 32, "202.165.33.127");
747 EXPECT_PRED3(CheckTruncateIP, "235.105.77.12", 0, "0.0.0.0");
748 EXPECT_PRED3(CheckTruncateIP, "1111:2222:3333:4444:5555:6666:7777:8888", 128,
749 "1111:2222:3333:4444:5555:6666:7777:8888");
750 EXPECT_PRED3(CheckTruncateIP, "1111:2222:3333:4444:5555:6666:7777:8888", 0,
751 "::");
752}
753
754TEST(IPAddressTest, TestCategorizeIPv6) {
755 // Test determining if an IPAddress is 6Bone/6To4/Teredo/etc.
756 // IPv4 address, should be none of these (not even v4compat/v4mapped).
757 IPAddress v4_addr(kIPv4PublicAddr);
758 EXPECT_FALSE(IPIs6Bone(v4_addr));
759 EXPECT_FALSE(IPIs6To4(v4_addr));
760 EXPECT_FALSE(IPIsSiteLocal(v4_addr));
761 EXPECT_FALSE(IPIsTeredo(v4_addr));
762 EXPECT_FALSE(IPIsULA(v4_addr));
763 EXPECT_FALSE(IPIsV4Compatibility(v4_addr));
764 EXPECT_FALSE(IPIsV4Mapped(v4_addr));
765 // Linklocal (fe80::/16) adddress; should be none of these.
766 IPAddress linklocal_addr(kIPv6LinkLocalAddr);
767 EXPECT_FALSE(IPIs6Bone(linklocal_addr));
768 EXPECT_FALSE(IPIs6To4(linklocal_addr));
769 EXPECT_FALSE(IPIsSiteLocal(linklocal_addr));
770 EXPECT_FALSE(IPIsTeredo(linklocal_addr));
771 EXPECT_FALSE(IPIsULA(linklocal_addr));
772 EXPECT_FALSE(IPIsV4Compatibility(linklocal_addr));
773 EXPECT_FALSE(IPIsV4Mapped(linklocal_addr));
774 // 'Normal' IPv6 address, should also be none of these.
775 IPAddress normal_addr(kIPv6PublicAddr);
776 EXPECT_FALSE(IPIs6Bone(normal_addr));
777 EXPECT_FALSE(IPIs6To4(normal_addr));
778 EXPECT_FALSE(IPIsSiteLocal(normal_addr));
779 EXPECT_FALSE(IPIsTeredo(normal_addr));
780 EXPECT_FALSE(IPIsULA(normal_addr));
781 EXPECT_FALSE(IPIsV4Compatibility(normal_addr));
782 EXPECT_FALSE(IPIsV4Mapped(normal_addr));
783 // IPv4 mapped address (::ffff:123.123.123.123)
784 IPAddress v4mapped_addr(kIPv4MappedPublicAddr);
785 EXPECT_TRUE(IPIsV4Mapped(v4mapped_addr));
786 EXPECT_FALSE(IPIsV4Compatibility(v4mapped_addr));
787 EXPECT_FALSE(IPIs6Bone(v4mapped_addr));
788 EXPECT_FALSE(IPIs6To4(v4mapped_addr));
789 EXPECT_FALSE(IPIsSiteLocal(v4mapped_addr));
790 EXPECT_FALSE(IPIsTeredo(v4mapped_addr));
791 EXPECT_FALSE(IPIsULA(v4mapped_addr));
792 // IPv4 compatibility address (::123.123.123.123)
793 IPAddress v4compat_addr;
794 IPFromString("::192.168.7.1", &v4compat_addr);
795 EXPECT_TRUE(IPIsV4Compatibility(v4compat_addr));
796 EXPECT_FALSE(IPIs6Bone(v4compat_addr));
797 EXPECT_FALSE(IPIs6To4(v4compat_addr));
798 EXPECT_FALSE(IPIsSiteLocal(v4compat_addr));
799 EXPECT_FALSE(IPIsTeredo(v4compat_addr));
800 EXPECT_FALSE(IPIsULA(v4compat_addr));
801 EXPECT_FALSE(IPIsV4Mapped(v4compat_addr));
802 // 6Bone address (3FFE::/16)
803 IPAddress sixbone_addr;
804 IPFromString("3FFE:123:456::789:123", &sixbone_addr);
805 EXPECT_TRUE(IPIs6Bone(sixbone_addr));
806 EXPECT_FALSE(IPIs6To4(sixbone_addr));
807 EXPECT_FALSE(IPIsSiteLocal(sixbone_addr));
808 EXPECT_FALSE(IPIsTeredo(sixbone_addr));
809 EXPECT_FALSE(IPIsULA(sixbone_addr));
810 EXPECT_FALSE(IPIsV4Mapped(sixbone_addr));
811 EXPECT_FALSE(IPIsV4Compatibility(sixbone_addr));
812 // Unique Local Address (FC::/7)
813 IPAddress ula_addr;
814 IPFromString("FC00:123:456::789:123", &ula_addr);
815 EXPECT_TRUE(IPIsULA(ula_addr));
816 EXPECT_FALSE(IPIs6Bone(ula_addr));
817 EXPECT_FALSE(IPIs6To4(ula_addr));
818 EXPECT_FALSE(IPIsSiteLocal(ula_addr));
819 EXPECT_FALSE(IPIsTeredo(ula_addr));
820 EXPECT_FALSE(IPIsV4Mapped(ula_addr));
821 EXPECT_FALSE(IPIsV4Compatibility(ula_addr));
822 // 6To4 Address (2002::/16)
823 IPAddress sixtofour_addr;
824 IPFromString("2002:123:456::789:123", &sixtofour_addr);
825 EXPECT_TRUE(IPIs6To4(sixtofour_addr));
826 EXPECT_FALSE(IPIs6Bone(sixtofour_addr));
827 EXPECT_FALSE(IPIsSiteLocal(sixtofour_addr));
828 EXPECT_FALSE(IPIsTeredo(sixtofour_addr));
829 EXPECT_FALSE(IPIsULA(sixtofour_addr));
830 EXPECT_FALSE(IPIsV4Compatibility(sixtofour_addr));
831 EXPECT_FALSE(IPIsV4Mapped(sixtofour_addr));
832 // Site Local address (FEC0::/10)
833 IPAddress sitelocal_addr;
834 IPFromString("FEC0:123:456::789:123", &sitelocal_addr);
835 EXPECT_TRUE(IPIsSiteLocal(sitelocal_addr));
836 EXPECT_FALSE(IPIs6Bone(sitelocal_addr));
837 EXPECT_FALSE(IPIs6To4(sitelocal_addr));
838 EXPECT_FALSE(IPIsTeredo(sitelocal_addr));
839 EXPECT_FALSE(IPIsULA(sitelocal_addr));
840 EXPECT_FALSE(IPIsV4Compatibility(sitelocal_addr));
841 EXPECT_FALSE(IPIsV4Mapped(sitelocal_addr));
842 // Teredo Address (2001:0000::/32)
843 IPAddress teredo_addr;
844 IPFromString("2001:0000:123:456::789:123", &teredo_addr);
845 EXPECT_TRUE(IPIsTeredo(teredo_addr));
846 EXPECT_FALSE(IPIsSiteLocal(teredo_addr));
847 EXPECT_FALSE(IPIs6Bone(teredo_addr));
848 EXPECT_FALSE(IPIs6To4(teredo_addr));
849 EXPECT_FALSE(IPIsULA(teredo_addr));
850 EXPECT_FALSE(IPIsV4Compatibility(teredo_addr));
851 EXPECT_FALSE(IPIsV4Mapped(teredo_addr));
852}
853
854TEST(IPAddressTest, TestToSensitiveString) {
855 IPAddress addr_v4 = IPAddress(kIPv4PublicAddr);
856 EXPECT_EQ(kIPv4PublicAddrString, addr_v4.ToString());
857 EXPECT_EQ(kIPv4PublicAddrString, addr_v4.ToSensitiveString());
858 IPAddress::set_strip_sensitive(true);
859 EXPECT_EQ(kIPv4PublicAddrString, addr_v4.ToString());
860 EXPECT_EQ(kIPv4PublicAddrAnonymizedString, addr_v4.ToSensitiveString());
861 IPAddress::set_strip_sensitive(false);
862
863 IPAddress addr_v6 = IPAddress(kIPv6PublicAddr);
864 EXPECT_EQ(kIPv6PublicAddrString, addr_v6.ToString());
865 EXPECT_EQ(kIPv6PublicAddrString, addr_v6.ToSensitiveString());
866 IPAddress::set_strip_sensitive(true);
867 EXPECT_EQ(kIPv6PublicAddrString, addr_v6.ToString());
868 EXPECT_EQ(kIPv6PublicAddrAnonymizedString, addr_v6.ToSensitiveString());
869 IPAddress::set_strip_sensitive(false);
870}
871
guoweis@webrtc.orgfa603982014-09-09 23:42:40 +0000872TEST(IPAddressTest, TestInterfaceAddress) {
873 in6_addr addr;
874 InterfaceAddress addr1(kIPv6PublicAddr,
875 IPV6_ADDRESS_FLAG_TEMPORARY);
876 EXPECT_EQ(addr1.ipv6_flags(), IPV6_ADDRESS_FLAG_TEMPORARY);
877 EXPECT_EQ(addr1.family(), AF_INET6);
878
879 addr = addr1.ipv6_address();
880 EXPECT_TRUE(IN6_ARE_ADDR_EQUAL(&addr, &kIPv6PublicAddr));
881
882 InterfaceAddress addr2 = addr1;
883 EXPECT_EQ(addr1, addr2);
884 EXPECT_EQ(addr2.ipv6_flags(), IPV6_ADDRESS_FLAG_TEMPORARY);
885 addr = addr2.ipv6_address();
886 EXPECT_TRUE(IN6_ARE_ADDR_EQUAL(&addr, &kIPv6PublicAddr));
887
888 InterfaceAddress addr3(addr1);
889 EXPECT_EQ(addr1, addr3);
890 EXPECT_EQ(addr3.ipv6_flags(), IPV6_ADDRESS_FLAG_TEMPORARY);
891 addr = addr3.ipv6_address();
892 EXPECT_TRUE(IN6_ARE_ADDR_EQUAL(&addr, &kIPv6PublicAddr));
893
894 InterfaceAddress addr4(kIPv6PublicAddr,
895 IPV6_ADDRESS_FLAG_DEPRECATED);
896 EXPECT_NE(addr1, addr4);
897
898 // When you compare them as IPAddress, since operator==
899 // is not virtual, it'll be equal.
900 IPAddress *paddr1 = &addr1;
901 IPAddress *paddr4 = &addr4;
902 EXPECT_EQ(*paddr1, *paddr4);
903
904 InterfaceAddress addr5(kIPv6LinkLocalAddr,
905 IPV6_ADDRESS_FLAG_TEMPORARY);
906 EXPECT_NE(addr1, addr5);
907}
908
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000909} // namespace rtc