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1 /*
2  * Copyright (C) 2014 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 
17 #include "FwmarkServer.h"
18 
19 #include <netinet/in.h>
20 #include <selinux/selinux.h>
21 #include <sys/socket.h>
22 #include <unistd.h>
23 #include <utils/String16.h>
24 
25 #include <android-base/cmsg.h>
26 #include <android-base/logging.h>
27 #include <android-base/properties.h>
28 #include <binder/IServiceManager.h>
29 #include <netd_resolv/resolv.h>  // NETID_UNSET
30 
31 #include "Fwmark.h"
32 #include "FwmarkCommand.h"
33 #include "NetdConstants.h"
34 #include "NetworkController.h"
35 
36 #include "NetdUpdatablePublic.h"
37 
38 using android::base::ReceiveFileDescriptorVector;
39 using android::base::unique_fd;
40 using android::net::metrics::INetdEventListener;
41 
42 namespace android {
43 namespace net {
44 
45 constexpr const char *SYSTEM_SERVER_CONTEXT = "u:r:system_server:s0";
46 
isSystemServer(SocketClient * client)47 bool isSystemServer(SocketClient* client) {
48     if (client->getUid() != AID_SYSTEM) {
49         return false;
50     }
51 
52     char *context;
53     if (getpeercon(client->getSocket(), &context)) {
54         return false;
55     }
56 
57     // We can't use context_new and context_type_get as they're private to libselinux. So just do
58     // a string match instead.
59     bool ret = !strcmp(context, SYSTEM_SERVER_CONTEXT);
60     freecon(context);
61 
62     return ret;
63 }
64 
FwmarkServer(NetworkController * networkController,EventReporter * eventReporter)65 FwmarkServer::FwmarkServer(NetworkController* networkController, EventReporter* eventReporter)
66     : SocketListener(SOCKET_NAME, true),
67       mNetworkController(networkController),
68       mEventReporter(eventReporter),
69       mRedirectSocketCalls(
70               android::base::GetBoolProperty("ro.vendor.redirect_socket_calls", false)) {}
71 
onDataAvailable(SocketClient * client)72 bool FwmarkServer::onDataAvailable(SocketClient* client) {
73     int socketFd = -1;
74     int error = processClient(client, &socketFd);
75     if (socketFd >= 0) {
76         close(socketFd);
77     }
78 
79     // Always send a response even if there were connection errors or read errors, so that we don't
80     // inadvertently cause the client to hang (which always waits for a response).
81     client->sendData(&error, sizeof(error));
82 
83     // Always close the client connection (by returning false). This prevents a DoS attack where
84     // the client issues multiple commands on the same connection, never reading the responses,
85     // causing its receive buffer to fill up, and thus causing our client->sendData() to block.
86     return false;
87 }
88 
hasDestinationAddress(FwmarkCommand::CmdId cmdId,bool redirectSocketCalls)89 static bool hasDestinationAddress(FwmarkCommand::CmdId cmdId, bool redirectSocketCalls) {
90     if (redirectSocketCalls) {
91         return (cmdId == FwmarkCommand::ON_SENDTO || cmdId == FwmarkCommand::ON_CONNECT ||
92                 cmdId == FwmarkCommand::ON_SENDMSG || cmdId == FwmarkCommand::ON_SENDMMSG ||
93                 cmdId == FwmarkCommand::ON_CONNECT_COMPLETE);
94     } else {
95         return (cmdId == FwmarkCommand::ON_CONNECT_COMPLETE);
96     }
97 }
98 
processClient(SocketClient * client,int * socketFd)99 int FwmarkServer::processClient(SocketClient* client, int* socketFd) {
100     FwmarkCommand command;
101     FwmarkConnectInfo connectInfo;
102 
103     char buf[sizeof(command) + sizeof(connectInfo)];
104     std::vector<unique_fd> received_fds;
105     ssize_t messageLength =
106             ReceiveFileDescriptorVector(client->getSocket(), buf, sizeof(buf), 1, &received_fds);
107 
108     if (messageLength < 0) {
109         return -errno;
110     } else if (messageLength == 0) {
111         return -ESHUTDOWN;
112     }
113 
114     memcpy(&command, buf, sizeof(command));
115     memcpy(&connectInfo, buf + sizeof(command), sizeof(connectInfo));
116 
117     size_t expectedLen = sizeof(command);
118     if (hasDestinationAddress(command.cmdId, mRedirectSocketCalls)) {
119         expectedLen += sizeof(connectInfo);
120     }
121 
122     if (messageLength != static_cast<ssize_t>(expectedLen)) {
123         return -EBADMSG;
124     }
125 
126     Permission permission = mNetworkController->getPermissionForUser(client->getUid());
127 
128     if (command.cmdId == FwmarkCommand::QUERY_USER_ACCESS) {
129         if ((permission & PERMISSION_SYSTEM) != PERMISSION_SYSTEM) {
130             return -EPERM;
131         }
132         return mNetworkController->checkUserNetworkAccess(command.uid, command.netId);
133     }
134 
135     if (received_fds.size() != 1) {
136         LOG(ERROR) << "FwmarkServer received " << received_fds.size() << " fds from client?";
137         return -EBADF;
138     } else if (received_fds[0] < 0) {
139         LOG(ERROR) << "FwmarkServer received fd -1 from ReceiveFileDescriptorVector?";
140         return -EBADF;
141     }
142 
143     *socketFd = received_fds[0].release();
144 
145     int family;
146     socklen_t familyLen = sizeof(family);
147     if (getsockopt(*socketFd, SOL_SOCKET, SO_DOMAIN, &family, &familyLen) == -1) {
148         return -errno;
149     }
150     if (!FwmarkCommand::isSupportedFamily(family)) {
151         return -EAFNOSUPPORT;
152     }
153 
154     Fwmark fwmark;
155     socklen_t fwmarkLen = sizeof(fwmark.intValue);
156     if (getsockopt(*socketFd, SOL_SOCKET, SO_MARK, &fwmark.intValue, &fwmarkLen) == -1) {
157         return -errno;
158     }
159 
160     switch (command.cmdId) {
161         case FwmarkCommand::ON_ACCEPT: {
162             // Called after a socket accept(). The kernel would've marked the NetId and necessary
163             // permissions bits, so we just add the rest of the user's permissions here.
164             permission = static_cast<Permission>(permission | fwmark.permission);
165             break;
166         }
167 
168         case FwmarkCommand::ON_CONNECT: {
169             // Called before a socket connect() happens. Set an appropriate NetId into the fwmark so
170             // that the socket routes consistently over that network. Do this even if the socket
171             // already has a NetId, so that calling connect() multiple times still works.
172             //
173             // But if the explicit bit was set, the existing NetId was explicitly preferred (and not
174             // a case of connect() being called multiple times). Don't reset the NetId in that case.
175             //
176             // An "appropriate" NetId is the NetId of a bypassable VPN that applies to the user, or
177             // failing that, the default network. We'll never set the NetId of a secure VPN here.
178             // See the comments in the implementation of getNetworkForConnect() for more details.
179             //
180             // If the protect bit is set, this could be either a system proxy (e.g.: the dns proxy
181             // or the download manager) acting on behalf of another user, or a VPN provider. If it's
182             // a proxy, we shouldn't reset the NetId. If it's a VPN provider, we should set the
183             // default network's NetId.
184             //
185             // There's no easy way to tell the difference between a proxy and a VPN app. We can't
186             // use PERMISSION_SYSTEM to identify the proxy because a VPN app may also have those
187             // permissions. So we use the following heuristic:
188             //
189             // If it's a proxy, but the existing NetId is not a VPN, that means the user (that the
190             // proxy is acting on behalf of) is not subject to a VPN, so the proxy must have picked
191             // the default network's NetId. So, it's okay to replace that with the current default
192             // network's NetId (which in all likelihood is the same).
193             //
194             // Conversely, if it's a VPN provider, the existing NetId cannot be a VPN. The only time
195             // we set a VPN's NetId into a socket without setting the explicit bit is here, in
196             // ON_CONNECT, but we won't do that if the socket has the protect bit set. If the VPN
197             // provider connect()ed (and got the VPN NetId set) and then called protect(), we
198             // would've unset the NetId in PROTECT_FROM_VPN below.
199             //
200             // So, overall (when the explicit bit is not set but the protect bit is set), if the
201             // existing NetId is a VPN, don't reset it. Else, set the default network's NetId.
202             if (!fwmark.explicitlySelected) {
203                 if (!fwmark.protectedFromVpn) {
204                     fwmark.netId = mNetworkController->getNetworkForConnect(client->getUid());
205                 } else if (!mNetworkController->isVirtualNetwork(fwmark.netId)) {
206                     fwmark.netId = mNetworkController->getDefaultNetwork();
207                 }
208             }
209             break;
210         }
211 
212         case FwmarkCommand::ON_CONNECT_COMPLETE: {
213             // Called after a socket connect() completes.
214             // This reports connect event including netId, destination IP address, destination port,
215             // uid, connect latency, and connect errno if any.
216 
217             // Skip reporting if connect() happened on a UDP socket.
218             int socketProto;
219             socklen_t intSize = sizeof(socketProto);
220             const int ret = getsockopt(*socketFd, SOL_SOCKET, SO_PROTOCOL, &socketProto, &intSize);
221             if ((ret != 0) || (socketProto == IPPROTO_UDP)) {
222                 break;
223             }
224 
225             android::sp<android::net::metrics::INetdEventListener> netdEventListener =
226                     mEventReporter->getNetdEventListener();
227 
228             if (netdEventListener != nullptr) {
229                 char addrstr[INET6_ADDRSTRLEN];
230                 char portstr[sizeof("65536")];
231                 const int ret = getnameinfo((sockaddr*) &connectInfo.addr, sizeof(connectInfo.addr),
232                         addrstr, sizeof(addrstr), portstr, sizeof(portstr),
233                         NI_NUMERICHOST | NI_NUMERICSERV);
234 
235                 netdEventListener->onConnectEvent(fwmark.netId, connectInfo.error,
236                         connectInfo.latencyMs,
237                         (ret == 0) ? String16(addrstr) : String16(""),
238                         (ret == 0) ? strtoul(portstr, nullptr, 10) : 0, client->getUid());
239             }
240             break;
241         }
242 
243         case FwmarkCommand::ON_SENDMMSG:
244         case FwmarkCommand::ON_SENDMSG:
245         case FwmarkCommand::ON_SENDTO: {
246             return 0;
247         }
248 
249         case FwmarkCommand::SELECT_NETWORK: {
250             fwmark.netId = command.netId;
251             if (command.netId == NETID_UNSET) {
252                 fwmark.explicitlySelected = false;
253                 fwmark.protectedFromVpn = false;
254                 permission = PERMISSION_NONE;
255             } else {
256                 if (int ret = mNetworkController->checkUserNetworkAccess(client->getUid(),
257                                                                          command.netId)) {
258                     return ret;
259                 }
260                 fwmark.explicitlySelected = true;
261                 fwmark.protectedFromVpn = mNetworkController->canProtect(client->getUid());
262             }
263             break;
264         }
265 
266         case FwmarkCommand::PROTECT_FROM_VPN: {
267             if (!mNetworkController->canProtect(client->getUid())) {
268                 return -EPERM;
269             }
270             // If a bypassable VPN's provider app calls connect() and then protect(), it will end up
271             // with a socket that looks like that of a system proxy but is not (see comments for
272             // ON_CONNECT above). So, reset the NetId.
273             //
274             // In any case, it's appropriate that if the socket has an implicit VPN NetId mark, the
275             // PROTECT_FROM_VPN command should unset it.
276             if (!fwmark.explicitlySelected && mNetworkController->isVirtualNetwork(fwmark.netId)) {
277                 fwmark.netId = mNetworkController->getDefaultNetwork();
278             }
279             fwmark.protectedFromVpn = true;
280             permission = static_cast<Permission>(permission | fwmark.permission);
281             break;
282         }
283 
284         case FwmarkCommand::SELECT_FOR_USER: {
285             if ((permission & PERMISSION_SYSTEM) != PERMISSION_SYSTEM) {
286                 return -EPERM;
287             }
288             fwmark.netId = mNetworkController->getNetworkForUser(command.uid);
289             fwmark.protectedFromVpn = true;
290             break;
291         }
292 
293         case FwmarkCommand::TAG_SOCKET: {
294             // If the UID is -1, tag as the caller's UID:
295             //  - TrafficStats and NetworkManagementSocketTagger use -1 to indicate "use the
296             //    caller's UID".
297             //  - xt_qtaguid will see -1 on the command line, fail to parse it as a uint32_t, and
298             //    fall back to current_fsuid().
299             if (static_cast<int>(command.uid) == -1) {
300                 command.uid = client->getUid();
301             }
302             return libnetd_updatable_tagSocket(*socketFd, command.trafficCtrlInfo, command.uid,
303                                                client->getUid());
304         }
305 
306         case FwmarkCommand::UNTAG_SOCKET: {
307             // Any process can untag a socket it has an fd for.
308             return libnetd_updatable_untagSocket(*socketFd);
309         }
310 
311         default: {
312             // unknown command
313             return -EPROTO;
314         }
315     }
316 
317     fwmark.permission = permission;
318 
319     if (setsockopt(*socketFd, SOL_SOCKET, SO_MARK, &fwmark.intValue,
320                    sizeof(fwmark.intValue)) == -1) {
321         return -errno;
322     }
323 
324     return 0;
325 }
326 
327 }  // namespace net
328 }  // namespace android
329