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Lorenzo Colitti7ef8c0f2019-01-11 22:34:58 +09001/*
2 * Copyright 2018 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 *
16 * ClatdControllerTest.cpp - unit tests for ClatdController.cpp
17 */
18
19#include <arpa/inet.h>
20#include <netinet/in.h>
21#include <string>
22
23#include <gtest/gtest.h>
24
25#include <android-base/stringprintf.h>
26#include <android-base/strings.h>
27#include <netutils/ifc.h>
28
29extern "C" {
30#include <netutils/checksum.h>
31}
32
33#include "ClatdController.h"
34#include "tun_interface.h"
35
36static const char kIPv4LocalAddr[] = "192.0.0.4";
37
38namespace android {
39namespace net {
40
41using android::base::StringPrintf;
42
43// Mock functions for isIpv4AddressFree.
44bool neverFree(in_addr_t /* addr */) {
45 return 0;
46}
47bool alwaysFree(in_addr_t /* addr */) {
48 return 1;
49}
50bool only2Free(in_addr_t addr) {
51 return (ntohl(addr) & 0xff) == 2;
52}
53bool over6Free(in_addr_t addr) {
54 return (ntohl(addr) & 0xff) >= 6;
55}
56bool only10Free(in_addr_t addr) {
57 return (ntohl(addr) & 0xff) == 10;
58}
59
60class ClatdControllerTest : public ::testing::Test {
61 public:
62 void SetUp() { resetIpv4AddressFreeFunc(); }
63
64 protected:
65 void setIpv4AddressFreeFunc(bool (*func)(in_addr_t)) {
66 ClatdController::isIpv4AddressFreeFunc = func;
67 }
68 void resetIpv4AddressFreeFunc() {
69 ClatdController::isIpv4AddressFreeFunc = ClatdController::isIpv4AddressFree;
70 }
71 in_addr_t selectIpv4Address(const in_addr a, int16_t b) {
72 return ClatdController::selectIpv4Address(a, b);
73 }
74 void makeChecksumNeutral(in6_addr* a, const in_addr b, const in6_addr& c) {
75 ClatdController::makeChecksumNeutral(a, b, c);
76 }
77};
78
79TEST_F(ClatdControllerTest, SelectIpv4Address) {
80 struct in_addr addr;
81
82 inet_pton(AF_INET, kIPv4LocalAddr, &addr);
83
84 // If no addresses are free, return INADDR_NONE.
85 setIpv4AddressFreeFunc(neverFree);
86 EXPECT_EQ(INADDR_NONE, selectIpv4Address(addr, 29));
87 EXPECT_EQ(INADDR_NONE, selectIpv4Address(addr, 16));
88
89 // If the configured address is free, pick that. But a prefix that's too big is invalid.
90 setIpv4AddressFreeFunc(alwaysFree);
91 EXPECT_EQ(inet_addr(kIPv4LocalAddr), selectIpv4Address(addr, 29));
92 EXPECT_EQ(inet_addr(kIPv4LocalAddr), selectIpv4Address(addr, 20));
93 EXPECT_EQ(INADDR_NONE, selectIpv4Address(addr, 15));
94
95 // A prefix length of 32 works, but anything above it is invalid.
96 EXPECT_EQ(inet_addr(kIPv4LocalAddr), selectIpv4Address(addr, 32));
97 EXPECT_EQ(INADDR_NONE, selectIpv4Address(addr, 33));
98
99 // If another address is free, pick it.
100 setIpv4AddressFreeFunc(over6Free);
101 EXPECT_EQ(inet_addr("192.0.0.6"), selectIpv4Address(addr, 29));
102
103 // Check that we wrap around to addresses that are lower than the first address.
104 setIpv4AddressFreeFunc(only2Free);
105 EXPECT_EQ(inet_addr("192.0.0.2"), selectIpv4Address(addr, 29));
106 EXPECT_EQ(INADDR_NONE, selectIpv4Address(addr, 30));
107
108 // If a free address exists outside the prefix, we don't pick it.
109 setIpv4AddressFreeFunc(only10Free);
110 EXPECT_EQ(INADDR_NONE, selectIpv4Address(addr, 29));
111 EXPECT_EQ(inet_addr("192.0.0.10"), selectIpv4Address(addr, 24));
112
113 // Now try using the real function which sees if IP addresses are free using bind().
114 // Assume that the machine running the test has the address 127.0.0.1, but not 8.8.8.8.
115 resetIpv4AddressFreeFunc();
116 addr.s_addr = inet_addr("8.8.8.8");
117 EXPECT_EQ(inet_addr("8.8.8.8"), selectIpv4Address(addr, 29));
118
119 addr.s_addr = inet_addr("127.0.0.1");
120 EXPECT_EQ(inet_addr("127.0.0.2"), selectIpv4Address(addr, 29));
121}
122
123TEST_F(ClatdControllerTest, MakeChecksumNeutral) {
124 // We can't test generateIPv6Address here since it requires manipulating routing, which we can't
125 // do without talking to the real netd on the system.
126 uint32_t rand = arc4random_uniform(0xffffffff);
127 uint16_t rand1 = rand & 0xffff;
128 uint16_t rand2 = (rand >> 16) & 0xffff;
129 std::string v6PrefixStr = StringPrintf("2001:db8:%x:%x", rand1, rand2);
130 std::string v6InterfaceAddrStr = StringPrintf("%s::%x:%x", v6PrefixStr.c_str(), rand2, rand1);
131 std::string nat64PrefixStr = StringPrintf("2001:db8:%x:%x::", rand2, rand1);
132
133 in_addr v4 = {inet_addr(kIPv4LocalAddr)};
134 in6_addr v6InterfaceAddr;
135 ASSERT_TRUE(inet_pton(AF_INET6, v6InterfaceAddrStr.c_str(), &v6InterfaceAddr));
136 in6_addr nat64Prefix;
137 ASSERT_TRUE(inet_pton(AF_INET6, nat64PrefixStr.c_str(), &nat64Prefix));
138
139 // Generate a boatload of random IIDs.
140 int onebits = 0;
141 uint64_t prev_iid = 0;
142 for (int i = 0; i < 100000; i++) {
143 in6_addr v6 = v6InterfaceAddr;
144 makeChecksumNeutral(&v6, v4, nat64Prefix);
145
146 // Check the generated IP address is in the same prefix as the interface IPv6 address.
147 EXPECT_EQ(0, memcmp(&v6, &v6InterfaceAddr, 8));
148
149 // Check that consecutive IIDs are not the same.
150 uint64_t iid = *(uint64_t*)(&v6.s6_addr[8]);
151 ASSERT_TRUE(iid != prev_iid)
152 << "Two consecutive random IIDs are the same: " << std::showbase << std::hex << iid
153 << "\n";
154 prev_iid = iid;
155
156 // Check that the IID is checksum-neutral with the NAT64 prefix and the
157 // local prefix.
158 uint16_t c1 = ip_checksum_finish(ip_checksum_add(0, &v4, sizeof(v4)));
159 uint16_t c2 = ip_checksum_finish(ip_checksum_add(0, &nat64Prefix, sizeof(nat64Prefix)) +
160 ip_checksum_add(0, &v6, sizeof(v6)));
161
162 if (c1 != c2) {
163 char v6Str[INET6_ADDRSTRLEN];
164 inet_ntop(AF_INET6, &v6, v6Str, sizeof(v6Str));
165 FAIL() << "Bad IID: " << v6Str << " not checksum-neutral with " << kIPv4LocalAddr
166 << " and " << nat64PrefixStr.c_str() << std::showbase << std::hex
167 << "\n IPv4 checksum: " << c1 << "\n IPv6 checksum: " << c2 << "\n";
168 }
169
170 // Check that IIDs are roughly random and use all the bits by counting the
171 // total number of bits set to 1 in a random sample of 100000 generated IIDs.
172 onebits += __builtin_popcountll(*(uint64_t*)&iid);
173 }
174 EXPECT_LE(3190000, onebits);
175 EXPECT_GE(3210000, onebits);
176}
177
178} // namespace net
179} // namespace android