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Narayan Kamatha5ace892017-01-06 15:10:02 +00001/*
2 * Copyright (C) 2017 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 "IptablesRestoreController.h"
18
19#include <poll.h>
20#include <signal.h>
21#include <sys/wait.h>
22#include <unistd.h>
23
Lorenzo Colitti173da322017-02-05 01:56:40 +090024#define LOG_TAG "IptablesRestoreController"
Narayan Kamatha5ace892017-01-06 15:10:02 +000025#include <android-base/logging.h>
26#include <android-base/file.h>
Lorenzo Colitti2103b6b2017-08-14 11:38:18 +090027#include <netdutils/Syscalls.h>
Narayan Kamatha5ace892017-01-06 15:10:02 +000028
29#include "Controllers.h"
30
Lorenzo Colitti2103b6b2017-08-14 11:38:18 +090031using android::netdutils::StatusOr;
32using android::netdutils::sSyscalls;
33
Narayan Kamatha5ace892017-01-06 15:10:02 +000034constexpr char IPTABLES_RESTORE_PATH[] = "/system/bin/iptables-restore";
35constexpr char IP6TABLES_RESTORE_PATH[] = "/system/bin/ip6tables-restore";
36
37constexpr char PING[] = "#PING\n";
38
39constexpr size_t PING_SIZE = sizeof(PING) - 1;
40
Lorenzo Colittia701afb2017-02-28 01:47:11 +090041// Not compile-time constants because they are changed by the unit tests.
42int IptablesRestoreController::MAX_RETRIES = 50;
43int IptablesRestoreController::POLL_TIMEOUT_MS = 100;
Narayan Kamatha5ace892017-01-06 15:10:02 +000044
45class IptablesProcess {
46public:
47 IptablesProcess(pid_t pid, int stdIn, int stdOut, int stdErr) :
48 pid(pid),
49 stdIn(stdIn),
50 processTerminated(false) {
51
52 pollFds[STDOUT_IDX] = { .fd = stdOut, .events = POLLIN };
53 pollFds[STDERR_IDX] = { .fd = stdErr, .events = POLLIN };
54 }
55
56 ~IptablesProcess() {
57 close(stdIn);
58 close(pollFds[STDOUT_IDX].fd);
59 close(pollFds[STDERR_IDX].fd);
60 }
61
Lorenzo Colitti173da322017-02-05 01:56:40 +090062 bool outputReady() {
63 struct pollfd pollfd = { .fd = stdIn, .events = POLLOUT };
64 int ret = poll(&pollfd, 1, 0);
65 if (ret == -1) {
66 ALOGE("outputReady poll failed: %s", strerror(errno));
67 return false;
68 }
69 return (ret == 1) && !(pollfd.revents & POLLERR);
70 }
71
72 void stop() {
73 if (processTerminated) return;
74
75 // This can be called by drainAndWaitForAck (after a POLLHUP) or by sendCommand (if the
76 // process was killed by something else on the system). In both cases, it's safe to send the
77 // PID a SIGTERM, because the PID continues to exist until its parent (i.e., us) calls
78 // waitpid on it, so there's no risk that the PID is reused.
79 int err = kill(pid, SIGTERM);
80 if (err) {
81 err = errno;
82 }
83
84 if (err == ESRCH) {
85 // This means that someone else inside netd but outside this class called waitpid(),
86 // which is a programming error. There's no point in calling waitpid() here since we
87 // know that the process is gone.
88 ALOGE("iptables child process %d unexpectedly disappeared", pid);
89 processTerminated = true;
90 return;
91 }
92
93 if (err) {
94 ALOGE("Error killing iptables child process %d: %s", pid, strerror(err));
95 }
96
Lorenzo Colitti25091422017-02-03 16:05:28 +090097 int status;
98 if (waitpid(pid, &status, 0) == -1) {
Lorenzo Colitti173da322017-02-05 01:56:40 +090099 ALOGE("Error waiting for iptables child process %d: %s", pid, strerror(errno));
Lorenzo Colitti25091422017-02-03 16:05:28 +0900100 } else {
101 ALOGW("iptables-restore process %d terminated status=%d", pid, status);
Lorenzo Colitti173da322017-02-05 01:56:40 +0900102 }
103
104 processTerminated = true;
105 }
106
Narayan Kamatha5ace892017-01-06 15:10:02 +0000107 const pid_t pid;
108 const int stdIn;
109
110 struct pollfd pollFds[2];
111 std::string errBuf;
112
Lorenzo Colitti173da322017-02-05 01:56:40 +0900113 std::atomic_bool processTerminated;
Narayan Kamatha5ace892017-01-06 15:10:02 +0000114
115 static constexpr size_t STDOUT_IDX = 0;
116 static constexpr size_t STDERR_IDX = 1;
117};
118
Lorenzo Colitti4e9ffd62017-08-09 16:45:19 +0900119IptablesRestoreController::IptablesRestoreController() {
Lorenzo Colitti2103b6b2017-08-14 11:38:18 +0900120 Init();
121}
122
123IptablesRestoreController::~IptablesRestoreController() {
124}
125
126void IptablesRestoreController::Init() {
Lorenzo Colittif9bae842017-08-28 11:59:51 +0900127 // We cannot fork these in parallel or a child process could inherit the pipe fds intended for
128 // use by the other child process. see https://android-review.googlesource.com/469559 for what
129 // breaks. This does not cause a latency hit, because the parent only has to wait for
130 // forkAndExec, which is sub-millisecond, and the child processes then call exec() in parallel.
131 mIpRestore.reset(forkAndExec(IPTABLES_PROCESS));
132 mIp6Restore.reset(forkAndExec(IP6TABLES_PROCESS));
Narayan Kamatha5ace892017-01-06 15:10:02 +0000133}
134
Narayan Kamatha5ace892017-01-06 15:10:02 +0000135/* static */
136IptablesProcess* IptablesRestoreController::forkAndExec(const IptablesProcessType type) {
137 const char* const cmd = (type == IPTABLES_PROCESS) ?
138 IPTABLES_RESTORE_PATH : IP6TABLES_RESTORE_PATH;
139
140 // Create the pipes we'll use for communication with the child
141 // process. One each for the child's in, out and err files.
142 int stdin_pipe[2];
143 int stdout_pipe[2];
144 int stderr_pipe[2];
145
146 if (pipe2(stdin_pipe, 0) == -1 ||
Lorenzo Colitticd283772017-01-31 19:00:49 +0900147 pipe2(stdout_pipe, O_NONBLOCK) == -1 ||
148 pipe2(stderr_pipe, O_NONBLOCK) == -1) {
Narayan Kamatha5ace892017-01-06 15:10:02 +0000149
Lorenzo Colitti25091422017-02-03 16:05:28 +0900150 ALOGE("pipe2() failed: %s", strerror(errno));
Narayan Kamatha5ace892017-01-06 15:10:02 +0000151 return nullptr;
152 }
153
Lorenzo Colitti2103b6b2017-08-14 11:38:18 +0900154 const auto& sys = sSyscalls.get();
155 StatusOr<pid_t> child_pid = sys.fork();
156 if (!isOk(child_pid)) {
157 ALOGE("fork() failed: %s", strerror(child_pid.status().code()));
158 return nullptr;
159 }
160
161 if (child_pid.value() == 0) {
Narayan Kamatha5ace892017-01-06 15:10:02 +0000162 // The child process. Reads from stdin, writes to stderr and stdout.
163
164 // stdin_pipe[1] : The write end of the stdin pipe.
165 // stdout_pipe[0] : The read end of the stdout pipe.
166 // stderr_pipe[0] : The read end of the stderr pipe.
167 if (close(stdin_pipe[1]) == -1 ||
168 close(stdout_pipe[0]) == -1 ||
169 close(stderr_pipe[0]) == -1) {
170
Lorenzo Colitti25091422017-02-03 16:05:28 +0900171 ALOGW("close() failed: %s", strerror(errno));
Narayan Kamatha5ace892017-01-06 15:10:02 +0000172 }
173
174 // stdin_pipe[0] : The read end of the stdin pipe.
175 // stdout_pipe[1] : The write end of the stdout pipe.
176 // stderr_pipe[1] : The write end of the stderr pipe.
177 if (dup2(stdin_pipe[0], 0) == -1 ||
178 dup2(stdout_pipe[1], 1) == -1 ||
179 dup2(stderr_pipe[1], 2) == -1) {
Lorenzo Colitti25091422017-02-03 16:05:28 +0900180 ALOGE("dup2() failed: %s", strerror(errno));
Narayan Kamatha5ace892017-01-06 15:10:02 +0000181 abort();
182 }
183
184 if (execl(cmd,
185 cmd,
186 "--noflush", // Don't flush the whole table.
187 "-w", // Wait instead of failing if the lock is held.
188 "-v", // Verbose mode, to make sure our ping is echoed
189 // back to us.
190 nullptr) == -1) {
Lorenzo Colitti25091422017-02-03 16:05:28 +0900191 ALOGE("execl(%s, ...) failed: %s", cmd, strerror(errno));
Narayan Kamatha5ace892017-01-06 15:10:02 +0000192 abort();
193 }
194
195 // This statement is unreachable. We abort() upon error, and execl
196 // if everything goes well.
197 return nullptr;
198 }
199
200 // The parent process. Writes to stdout and stderr and reads from stdin.
Narayan Kamatha5ace892017-01-06 15:10:02 +0000201 // stdin_pipe[0] : The read end of the stdin pipe.
202 // stdout_pipe[1] : The write end of the stdout pipe.
203 // stderr_pipe[1] : The write end of the stderr pipe.
204 if (close(stdin_pipe[0]) == -1 ||
205 close(stdout_pipe[1]) == -1 ||
206 close(stderr_pipe[1]) == -1) {
Lorenzo Colitti25091422017-02-03 16:05:28 +0900207 ALOGW("close() failed: %s", strerror(errno));
Narayan Kamatha5ace892017-01-06 15:10:02 +0000208 }
209
Lorenzo Colitti2103b6b2017-08-14 11:38:18 +0900210 return new IptablesProcess(child_pid.value(), stdin_pipe[1], stdout_pipe[0], stderr_pipe[0]);
Narayan Kamatha5ace892017-01-06 15:10:02 +0000211}
212
Narayan Kamatha5ace892017-01-06 15:10:02 +0000213// TODO: Return -errno on failure instead of -1.
214// TODO: Maybe we should keep a rotating buffer of the last N commands
215// so that they can be dumped on dumpsys.
216int IptablesRestoreController::sendCommand(const IptablesProcessType type,
Lorenzo Colitticd283772017-01-31 19:00:49 +0900217 const std::string& command,
218 std::string *output) {
Narayan Kamatha5ace892017-01-06 15:10:02 +0000219 std::unique_ptr<IptablesProcess> *process =
220 (type == IPTABLES_PROCESS) ? &mIpRestore : &mIp6Restore;
221
Lorenzo Colitti173da322017-02-05 01:56:40 +0900222
Narayan Kamatha5ace892017-01-06 15:10:02 +0000223 // We might need to fork a new process if we haven't forked one yet, or
224 // if the forked process terminated.
225 //
226 // NOTE: For a given command, this is the last point at which we try to
227 // recover from a child death. If the child dies at some later point during
228 // the execution of this method, we will receive an EPIPE and return an
229 // error. The command will then need to be retried at a higher level.
Lorenzo Colitti173da322017-02-05 01:56:40 +0900230 IptablesProcess *existingProcess = process->get();
231 if (existingProcess != nullptr && !existingProcess->outputReady()) {
232 existingProcess->stop();
233 existingProcess = nullptr;
234 }
235
236 if (existingProcess == nullptr) {
Narayan Kamatha5ace892017-01-06 15:10:02 +0000237 // Fork a new iptables[6]-restore process.
238 IptablesProcess *newProcess = IptablesRestoreController::forkAndExec(type);
239 if (newProcess == nullptr) {
240 LOG(ERROR) << "Unable to fork ip[6]tables-restore, type: " << type;
241 return -1;
242 }
243
244 process->reset(newProcess);
245 }
246
Lorenzo Colitti20b128b2017-02-10 11:01:08 +0900247 if (!android::base::WriteFully((*process)->stdIn, command.data(), command.length())) {
Lorenzo Colitti25091422017-02-03 16:05:28 +0900248 ALOGE("Unable to send command: %s", strerror(errno));
Lorenzo Colitti173da322017-02-05 01:56:40 +0900249 return -1;
Narayan Kamatha5ace892017-01-06 15:10:02 +0000250 }
251
252 if (!android::base::WriteFully((*process)->stdIn, PING, PING_SIZE)) {
Lorenzo Colitti25091422017-02-03 16:05:28 +0900253 ALOGE("Unable to send ping command: %s", strerror(errno));
Narayan Kamatha5ace892017-01-06 15:10:02 +0000254 return -1;
255 }
256
Lorenzo Colitti20b128b2017-02-10 11:01:08 +0900257 if (!drainAndWaitForAck(*process, command, output)) {
Lorenzo Colitti173da322017-02-05 01:56:40 +0900258 // drainAndWaitForAck has already logged an error.
Narayan Kamatha5ace892017-01-06 15:10:02 +0000259 return -1;
260 }
261
262 return 0;
263}
264
Narayan Kamatha5ace892017-01-06 15:10:02 +0000265void IptablesRestoreController::maybeLogStderr(const std::unique_ptr<IptablesProcess> &process,
Lorenzo Colitti25091422017-02-03 16:05:28 +0900266 const std::string& command) {
267 if (process->errBuf.empty()) {
268 return;
Narayan Kamatha5ace892017-01-06 15:10:02 +0000269 }
270
Lorenzo Colitti25091422017-02-03 16:05:28 +0900271 ALOGE("iptables error:\n"
272 "------- COMMAND -------\n"
273 "%s\n"
274 "------- ERROR -------\n"
275 "%s"
276 "----------------------\n",
277 command.c_str(), process->errBuf.c_str());
278 process->errBuf.clear();
Narayan Kamatha5ace892017-01-06 15:10:02 +0000279}
280
Narayan Kamatha5ace892017-01-06 15:10:02 +0000281/* static */
Lorenzo Colitticd283772017-01-31 19:00:49 +0900282bool IptablesRestoreController::drainAndWaitForAck(const std::unique_ptr<IptablesProcess> &process,
Lorenzo Colitti25091422017-02-03 16:05:28 +0900283 const std::string& command,
Lorenzo Colitticd283772017-01-31 19:00:49 +0900284 std::string *output) {
Narayan Kamatha5ace892017-01-06 15:10:02 +0000285 bool receivedAck = false;
286 int timeout = 0;
Narayan Kamatha5ace892017-01-06 15:10:02 +0000287 while (!receivedAck && (timeout++ < MAX_RETRIES)) {
288 int numEvents = TEMP_FAILURE_RETRY(
289 poll(process->pollFds, ARRAY_SIZE(process->pollFds), POLL_TIMEOUT_MS));
290 if (numEvents == -1) {
Lorenzo Colitti25091422017-02-03 16:05:28 +0900291 ALOGE("Poll failed: %s", strerror(errno));
Narayan Kamatha5ace892017-01-06 15:10:02 +0000292 return false;
293 }
294
295 // We've timed out, which means something has gone wrong - we know that stdout should have
Lorenzo Colitti173da322017-02-05 01:56:40 +0900296 // become available to read with the ACK message, or that stderr should have been available
297 // to read with an error message.
Narayan Kamatha5ace892017-01-06 15:10:02 +0000298 if (numEvents == 0) {
299 continue;
300 }
301
Lorenzo Colitticd283772017-01-31 19:00:49 +0900302 char buffer[PIPE_BUF];
Narayan Kamatha5ace892017-01-06 15:10:02 +0000303 for (size_t i = 0; i < ARRAY_SIZE(process->pollFds); ++i) {
304 const struct pollfd &pollfd = process->pollFds[i];
305 if (pollfd.revents & POLLIN) {
Lorenzo Colitticd283772017-01-31 19:00:49 +0900306 ssize_t size;
307 do {
308 size = TEMP_FAILURE_RETRY(read(pollfd.fd, buffer, sizeof(buffer)));
Narayan Kamatha5ace892017-01-06 15:10:02 +0000309
Lorenzo Colitticd283772017-01-31 19:00:49 +0900310 if (size == -1) {
311 if (errno != EAGAIN) {
Lorenzo Colitti25091422017-02-03 16:05:28 +0900312 ALOGE("Unable to read from descriptor: %s", strerror(errno));
Lorenzo Colitticd283772017-01-31 19:00:49 +0900313 }
314 break;
Narayan Kamatha5ace892017-01-06 15:10:02 +0000315 }
Lorenzo Colitticd283772017-01-31 19:00:49 +0900316
317 if (i == IptablesProcess::STDOUT_IDX) {
318 // i == STDOUT_IDX: accumulate stdout into *output, and look
319 // for the ping response.
320 output->append(buffer, size);
321 size_t pos = output->find(PING);
322 if (pos != std::string::npos) {
323 if (output->size() > pos + PING_SIZE) {
324 size_t extra = output->size() - (pos + PING_SIZE);
325 ALOGW("%zd extra characters after iptables response: '%s...'",
326 extra, output->substr(pos + PING_SIZE, 128).c_str());
327 }
328 output->resize(pos);
329 receivedAck = true;
330 }
331 } else {
Lorenzo Colitti25091422017-02-03 16:05:28 +0900332 // i == STDERR_IDX: accumulate stderr into errBuf.
333 process->errBuf.append(buffer, size);
Lorenzo Colitticd283772017-01-31 19:00:49 +0900334 }
335 } while (size > 0);
Narayan Kamatha5ace892017-01-06 15:10:02 +0000336 }
Lorenzo Colitti173da322017-02-05 01:56:40 +0900337 if (pollfd.revents & POLLHUP) {
338 // The pipe was closed. This likely means the subprocess is exiting, since
339 // iptables-restore only closes stdin on error.
340 process->stop();
341 break;
342 }
Narayan Kamatha5ace892017-01-06 15:10:02 +0000343 }
344 }
345
Lorenzo Colitti25091422017-02-03 16:05:28 +0900346 if (!receivedAck && !process->processTerminated) {
347 ALOGE("Timed out waiting for response from iptables process %d", process->pid);
Lorenzo Colittia701afb2017-02-28 01:47:11 +0900348 // Kill the process so that if it eventually recovers, we don't misinterpret the ping
349 // response (or any output) of the command we just sent as coming from future commands.
350 process->stop();
Lorenzo Colitti173da322017-02-05 01:56:40 +0900351 }
352
Lorenzo Colitti25091422017-02-03 16:05:28 +0900353 maybeLogStderr(process, command);
354
Narayan Kamatha5ace892017-01-06 15:10:02 +0000355 return receivedAck;
356}
357
Lorenzo Colitticd283772017-01-31 19:00:49 +0900358int IptablesRestoreController::execute(const IptablesTarget target, const std::string& command,
359 std::string *output) {
Narayan Kamatha5ace892017-01-06 15:10:02 +0000360 std::lock_guard<std::mutex> lock(mLock);
361
Lorenzo Colitticd283772017-01-31 19:00:49 +0900362 std::string buffer;
363 if (output == nullptr) {
364 output = &buffer;
Lorenzo Colittia701afb2017-02-28 01:47:11 +0900365 } else {
366 output->clear();
Lorenzo Colitticd283772017-01-31 19:00:49 +0900367 }
368
Narayan Kamatha5ace892017-01-06 15:10:02 +0000369 int res = 0;
370 if (target == V4 || target == V4V6) {
Lorenzo Colitticd283772017-01-31 19:00:49 +0900371 res |= sendCommand(IPTABLES_PROCESS, command, output);
Narayan Kamatha5ace892017-01-06 15:10:02 +0000372 }
373 if (target == V6 || target == V4V6) {
Lorenzo Colitticd283772017-01-31 19:00:49 +0900374 res |= sendCommand(IP6TABLES_PROCESS, command, output);
Narayan Kamatha5ace892017-01-06 15:10:02 +0000375 }
376 return res;
377}
Lorenzo Colitti173da322017-02-05 01:56:40 +0900378
379int IptablesRestoreController::getIpRestorePid(const IptablesProcessType type) {
380 return type == IPTABLES_PROCESS ? mIpRestore->pid : mIp6Restore->pid;
381}