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1 // Copyright 2016 The Chromium Authors. All rights reserved. | |
2 // Use of this source code is governed by a BSD-style license that can be | |
3 // found in the LICENSE file. | |
4 | |
5 #include "net/dns/fuzzed_host_resolver.h" | |
6 | |
7 #include <stdint.h> | |
8 | |
9 #include <limits> | |
10 #include <string> | |
11 | |
12 #include "base/bind.h" | |
13 #include "base/logging.h" | |
14 #include "base/macros.h" | |
15 #include "base/memory/ref_counted.h" | |
16 #include "base/single_thread_task_runner.h" | |
17 #include "base/thread_task_runner_handle.h" | |
18 #include "net/base/address_list.h" | |
19 #include "net/base/fuzzed_data_provider.h" | |
20 #include "net/base/ip_address.h" | |
21 #include "net/base/ip_endpoint.h" | |
22 #include "net/base/net_errors.h" | |
23 #include "net/dns/dns_client.h" | |
24 #include "net/dns/dns_config_service.h" | |
25 #include "net/dns/dns_hosts.h" | |
26 | |
27 namespace net { | |
28 | |
29 namespace { | |
30 | |
31 // Returns a fuzzed non-zero port number. | |
32 uint16_t FuzzPort(FuzzedDataProvider* data_provider) { | |
33 uint16_t port = data_provider->ConsumeUint16(); | |
34 // Port 0 is magic. | |
35 if (port == 0) | |
36 return 53; | |
37 return port; | |
38 } | |
39 | |
40 // Returns a fuzzed IPv4 address. Can return invalid / reserved addresses. | |
41 IPAddress FuzzIPv4Address(FuzzedDataProvider* data_provider) { | |
42 return IPAddress(data_provider->ConsumeUint8(), data_provider->ConsumeUint8(), | |
43 data_provider->ConsumeUint8(), | |
44 data_provider->ConsumeUint8()); | |
45 } | |
46 | |
47 // Returns a fuzzed IPv6 address. Can return invalid / reserved addresses. | |
48 IPAddress FuzzIPv6Address(FuzzedDataProvider* data_provider) { | |
49 return IPAddress(data_provider->ConsumeUint8(), data_provider->ConsumeUint8(), | |
50 data_provider->ConsumeUint8(), data_provider->ConsumeUint8(), | |
51 data_provider->ConsumeUint8(), data_provider->ConsumeUint8(), | |
52 data_provider->ConsumeUint8(), data_provider->ConsumeUint8(), | |
53 data_provider->ConsumeUint8(), data_provider->ConsumeUint8(), | |
54 data_provider->ConsumeUint8(), data_provider->ConsumeUint8(), | |
55 data_provider->ConsumeUint8(), data_provider->ConsumeUint8(), | |
56 data_provider->ConsumeUint8(), | |
57 data_provider->ConsumeUint8()); | |
58 } | |
59 | |
60 // Returns a fuzzed address, which can be either IPv4 or IPv6. Can return | |
61 // invalid / reserved addresses. | |
62 IPAddress FuzzIPAddress(FuzzedDataProvider* data_provider) { | |
63 if (data_provider->ConsumeBool()) | |
64 return FuzzIPv4Address(data_provider); | |
65 return FuzzIPv6Address(data_provider); | |
66 } | |
67 | |
68 // HostResolverProc that returns a random set of results, and can succeed or | |
69 // fail. Must only be run on the thread it's created on. | |
70 class FuzzedHostResolverProc : public HostResolverProc { | |
71 public: | |
72 // Can safely be used after the destruction of |data_provider|. This can | |
73 // happen if a request is issued but the code never waits for the result | |
74 // before the test ends. | |
75 explicit FuzzedHostResolverProc( | |
76 base::WeakPtr<FuzzedDataProvider> data_provider) | |
77 : HostResolverProc(nullptr), | |
78 data_provider_(data_provider), | |
79 network_task_runner_(base::ThreadTaskRunnerHandle::Get()) {} | |
80 | |
81 int Resolve(const std::string& host, | |
82 AddressFamily address_family, | |
83 HostResolverFlags host_resolver_flags, | |
84 AddressList* addrlist, | |
85 int* os_error) override { | |
86 DCHECK(network_task_runner_->BelongsToCurrentThread()); | |
87 | |
88 if (os_error) | |
89 *os_error = 0; | |
90 | |
91 // If the data provider is no longer avaiable, just fail. The HostResolver | |
92 // has already been deleted by this point, anyways. | |
93 if (!data_provider_) | |
94 return ERR_FAILED; | |
95 | |
96 AddressList result; | |
97 | |
98 // Put IPv6 addresses before IPv4 ones. This code doesn't sort addresses | |
99 // correctly, but when sorted according to spec, IPv6 addresses are | |
100 // generally before IPv4 ones. | |
101 if (address_family == ADDRESS_FAMILY_UNSPECIFIED || | |
102 address_family == ADDRESS_FAMILY_IPV6) { | |
103 while (data_provider_->ConsumeBool()) { | |
eroman
2016/05/17 23:01:34
Is consuming bools here the best approach? (as opp
mmenke
2016/05/19 19:09:45
I went with this pattern for three reasons:
1) M
| |
104 result.push_back( | |
105 net::IPEndPoint(FuzzIPv6Address(data_provider_.get()), 0)); | |
106 } | |
107 } | |
108 | |
109 if (address_family == ADDRESS_FAMILY_UNSPECIFIED || | |
110 address_family == ADDRESS_FAMILY_IPV4) { | |
111 while (data_provider_->ConsumeBool()) { | |
eroman
2016/05/17 23:01:33
same question
mmenke
2016/05/19 19:09:45
Done.
| |
112 result.push_back( | |
113 net::IPEndPoint(FuzzIPv4Address(data_provider_.get()), 0)); | |
114 } | |
115 } | |
116 | |
117 if (result.empty()) | |
118 return ERR_NAME_NOT_RESOLVED; | |
119 | |
120 if (host_resolver_flags & HOST_RESOLVER_CANONNAME) { | |
121 // Don't bother to fuzz this - almost nothing cares. | |
122 result.set_canonical_name("foo.com"); | |
123 } | |
124 | |
125 *addrlist = result; | |
126 return OK; | |
127 } | |
128 | |
129 private: | |
130 ~FuzzedHostResolverProc() override {} | |
131 | |
132 base::WeakPtr<FuzzedDataProvider> data_provider_; | |
133 | |
134 // Just used for thread-safety checks. | |
135 scoped_refptr<base::SingleThreadTaskRunner> network_task_runner_; | |
136 | |
137 DISALLOW_COPY_AND_ASSIGN(FuzzedHostResolverProc); | |
138 }; | |
139 | |
140 } // namespace | |
141 | |
142 FuzzedHostResolver::FuzzedHostResolver(const Options& options, | |
143 NetLog* net_log, | |
144 FuzzedDataProvider* data_provider) | |
145 : HostResolverImpl(options, net_log, base::ThreadTaskRunnerHandle::Get()), | |
146 data_provider_(data_provider), | |
147 socket_factory_(data_provider), | |
148 is_ipv6_reachable_(data_provider->ConsumeBool()), | |
149 net_log_(net_log), | |
150 data_provider_weak_factory_(data_provider) { | |
151 HostResolverImpl::ProcTaskParams proc_task_params( | |
152 new FuzzedHostResolverProc(data_provider_weak_factory_.GetWeakPtr()), | |
153 // Retries are only used when the original request hangs, which this class | |
154 // currently can't simulate. | |
155 0 /* max_retry_attempts */); | |
156 set_proc_params_for_test(proc_task_params); | |
157 } | |
158 | |
159 FuzzedHostResolver::~FuzzedHostResolver() {} | |
160 | |
161 void FuzzedHostResolver::SetDnsClientEnabled(bool enabled) { | |
162 if (!enabled) { | |
163 HostResolverImpl::SetDnsClientEnabled(false); | |
164 return; | |
165 } | |
166 | |
167 // Fuzz DNS configuration. | |
168 | |
169 DnsConfig config; | |
170 // Determine the number of name servers. | |
171 while (data_provider_->ConsumeBool()) { | |
eroman
2016/05/17 23:01:34
Same question throughout this file.
mmenke
2016/05/19 19:09:45
Done.
| |
172 config.nameservers.push_back( | |
173 IPEndPoint(FuzzIPAddress(data_provider_), FuzzPort(data_provider_))); | |
174 } | |
175 | |
176 // Determine the number of suffixes to try. Each case deliberately falls | |
177 // through. | |
178 switch (data_provider_->ConsumeValueInRange(0, 3)) { | |
179 case 3: | |
180 config.search.push_back("foo.com"); | |
181 case 2: | |
182 config.search.push_back("bar"); | |
183 case 1: | |
184 config.search.push_back("com"); | |
185 default: | |
186 break; | |
187 } | |
188 | |
189 net::DnsHosts hosts; | |
190 // Fuzz hosts file. | |
191 while (data_provider_->ConsumeBool()) { | |
192 const char* kHostnames[] = {"foo", "foo.com", "a.foo.com", | |
193 "bar", "localhost", "localhost6"}; | |
194 const char* hostname = kHostnames[data_provider_->ConsumeValueInRange( | |
195 0, arraysize(kHostnames) - 1)]; | |
196 if (data_provider_->ConsumeBool()) { | |
eroman
2016/05/17 23:01:34
nit: Suggest just calling FuzzIPAddress() instead.
mmenke
2016/05/19 19:09:45
Done. I hadn't realized there was such a method -
| |
197 config.hosts[net::DnsHostsKey(hostname, net::ADDRESS_FAMILY_IPV4)] = | |
198 FuzzIPv4Address(data_provider_); | |
199 } else { | |
200 config.hosts[net::DnsHostsKey(hostname, net::ADDRESS_FAMILY_IPV6)] = | |
201 FuzzIPv6Address(data_provider_); | |
202 } | |
203 } | |
204 | |
205 config.unhandled_options = data_provider_->ConsumeBool(); | |
206 config.append_to_multi_label_name = data_provider_->ConsumeBool(); | |
207 config.randomize_ports = data_provider_->ConsumeBool(); | |
208 config.attempts = data_provider_->ConsumeValueInRange(1, 3); | |
209 config.ndots = data_provider_->ConsumeValueInRange(0, 3); | |
210 | |
211 // Timeouts don't really work for fuzzing. Even a timeout of 0 milliseconds | |
212 // will be increased after the first timeout, resulting in inconsistent | |
213 // behavior. | |
214 config.timeout = base::TimeDelta::FromDays(10); | |
215 | |
216 config.rotate = data_provider_->ConsumeBool(); | |
217 | |
218 // Doesn't currently seem to do anything. | |
219 config.edns0 = false; | |
220 | |
221 config.use_local_ipv6 = data_provider_->ConsumeBool(); | |
222 | |
223 std::unique_ptr<DnsClient> dns_client = DnsClient::CreateClientForTesting( | |
224 net_log_, &socket_factory_, | |
225 base::Bind(&FuzzedDataProvider::ConsumeValueInRangeInt, | |
226 base::Unretained(data_provider_))); | |
227 dns_client->SetConfig(config); | |
228 SetDnsClient(std::move(dns_client)); | |
229 } | |
230 | |
231 bool FuzzedHostResolver::IsIPv6Reachable(const BoundNetLog& net_log) { | |
232 return is_ipv6_reachable_; | |
233 } | |
234 | |
235 void FuzzedHostResolver::RunLoopbackProbeJob() { | |
236 SetHaveOnlyLoopbackAddresses(data_provider_->ConsumeBool()); | |
237 } | |
238 | |
239 } // namespace net | |
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