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Colin Crossf83d0b92010-04-21 12:04:20 -07001/*
2 * Copyright (C) 2010 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
Tom Cherry3f5eaae52017-04-06 16:30:22 -070017#include "ueventd.h"
18
Colin Cross44b65d02010-04-20 14:32:50 -070019#include <ctype.h>
Bongkyu Kim5aa61972019-01-30 19:59:53 +090020#include <dirent.h>
Elliott Hughesda40c002015-03-27 23:20:44 -070021#include <fcntl.h>
Brian Swetland8d48c8e2011-03-24 15:45:30 -070022#include <signal.h>
Elliott Hughesda40c002015-03-27 23:20:44 -070023#include <stdio.h>
24#include <stdlib.h>
25#include <string.h>
Bongkyu Kim5aa61972019-01-30 19:59:53 +090026#include <sys/stat.h>
Tom Cherryc5833052017-05-16 15:35:41 -070027#include <sys/wait.h>
Bongkyu Kim5aa61972019-01-30 19:59:53 +090028#include <unistd.h>
Tom Cherryc5833052017-05-16 15:35:41 -070029
30#include <set>
31#include <thread>
Brian Swetland8d48c8e2011-03-24 15:45:30 -070032
Tom Cherryede0d532017-07-06 14:20:11 -070033#include <android-base/chrono_utils.h>
Tom Cherry3f5eaae52017-04-06 16:30:22 -070034#include <android-base/logging.h>
Tom Cherryccf23532017-03-28 16:40:41 -070035#include <android-base/properties.h>
Bowgo Tsai8eec38f2018-05-16 18:33:44 +080036#include <fstab/fstab.h>
Tom Cherryc5833052017-05-16 15:35:41 -070037#include <selinux/android.h>
Elliott Hughesda40c002015-03-27 23:20:44 -070038#include <selinux/selinux.h>
Colin Crossf83d0b92010-04-21 12:04:20 -070039
Colin Crossf83d0b92010-04-21 12:04:20 -070040#include "devices.h"
Tom Cherryed506f72017-05-25 15:58:59 -070041#include "firmware_handler.h"
Andrew F. Davis99638472018-07-09 13:12:00 -050042#include "modalias_handler.h"
Vic Yang92c236e2019-05-28 15:58:35 -070043#include "selabel.h"
Tom Cherryc3692b32017-08-10 12:22:44 -070044#include "selinux.h"
Tom Cherry457e28f2018-08-01 13:12:20 -070045#include "uevent_handler.h"
Tom Cherryed506f72017-05-25 15:58:59 -070046#include "uevent_listener.h"
47#include "ueventd_parser.h"
Tom Cherry3f5eaae52017-04-06 16:30:22 -070048#include "util.h"
Vladimir Chtchetkine2b995432011-09-28 09:55:31 -070049
Tom Cherryc5833052017-05-16 15:35:41 -070050// At a high level, ueventd listens for uevent messages generated by the kernel through a netlink
51// socket. When ueventd receives such a message it handles it by taking appropriate actions,
52// which can typically be creating a device node in /dev, setting file permissions, setting selinux
53// labels, etc.
54// Ueventd also handles loading of firmware that the kernel requests, and creates symlinks for block
55// and character devices.
56
57// When ueventd starts, it regenerates uevents for all currently registered devices by traversing
58// /sys and writing 'add' to each 'uevent' file that it finds. This causes the kernel to generate
59// and resend uevent messages for all of the currently registered devices. This is done, because
60// ueventd would not have been running when these devices were registered and therefore was unable
61// to receive their uevent messages and handle them appropriately. This process is known as
62// 'cold boot'.
63
64// 'init' currently waits synchronously on the cold boot process of ueventd before it continues
65// its boot process. For this reason, cold boot should be as quick as possible. One way to achieve
66// a speed up here is to parallelize the handling of ueventd messages, which consume the bulk of the
67// time during cold boot.
68
69// Handling of uevent messages has two unique properties:
70// 1) It can be done in isolation; it doesn't need to read or write any status once it is started.
71// 2) It uses setegid() and setfscreatecon() so either care (aka locking) must be taken to ensure
72// that no file system operations are done while the uevent process has an abnormal egid or
73// fscreatecon or this handling must happen in a separate process.
74// Given the above two properties, it is best to fork() subprocesses to handle the uevents. This
75// reduces the overhead and complexity that would be required in a solution with threads and locks.
76// In testing, a racy multithreaded solution has the same performance as the fork() solution, so
77// there is no reason to deal with the complexity of the former.
78
79// One other important caveat during the boot process is the handling of SELinux restorecon.
80// Since many devices have child devices, calling selinux_android_restorecon() recursively for each
81// device when its uevent is handled, results in multiple restorecon operations being done on a
82// given file. It is more efficient to simply do restorecon recursively on /sys during cold boot,
83// than to do restorecon on each device as its uevent is handled. This only applies to cold boot;
84// once that has completed, restorecon is done for each device as its uevent is handled.
85
86// With all of the above considered, the cold boot process has the below steps:
87// 1) ueventd regenerates uevents by doing the /sys traversal and listens to the netlink socket for
88// the generated uevents. It writes these uevents into a queue represented by a vector.
89//
90// 2) ueventd forks 'n' separate uevent handler subprocesses and has each of them to handle the
91// uevents in the queue based on a starting offset (their process number) and a stride (the total
92// number of processes). Note that no IPC happens at this point and only const functions from
93// DeviceHandler should be called from this context.
94//
95// 3) In parallel to the subprocesses handling the uevents, the main thread of ueventd calls
96// selinux_android_restorecon() recursively on /sys/class, /sys/block, and /sys/devices.
97//
98// 4) Once the restorecon operation finishes, the main thread calls waitpid() to wait for all
99// subprocess handlers to complete and exit. Once this happens, it marks coldboot as having
100// completed.
101//
102// At this point, ueventd is single threaded, poll()'s and then handles any future uevents.
103
104// Lastly, it should be noted that uevents that occur during the coldboot process are handled
105// without issue after the coldboot process completes. This is because the uevent listener is
106// paused while the uevent handler and restorecon actions take place. Once coldboot completes,
107// the uevent listener resumes in polling mode and will handle the uevents that occurred during
108// coldboot.
109
Tom Cherry81f5d3e2017-06-22 12:53:17 -0700110namespace android {
111namespace init {
112
Tom Cherryc5833052017-05-16 15:35:41 -0700113class ColdBoot {
114 public:
Tom Cherry457e28f2018-08-01 13:12:20 -0700115 ColdBoot(UeventListener& uevent_listener,
116 std::vector<std::unique_ptr<UeventHandler>>& uevent_handlers)
Tom Cherryc5833052017-05-16 15:35:41 -0700117 : uevent_listener_(uevent_listener),
Tom Cherry457e28f2018-08-01 13:12:20 -0700118 uevent_handlers_(uevent_handlers),
Tom Cherryc5833052017-05-16 15:35:41 -0700119 num_handler_subprocesses_(std::thread::hardware_concurrency() ?: 4) {}
120
121 void Run();
122
123 private:
124 void UeventHandlerMain(unsigned int process_num, unsigned int total_processes);
125 void RegenerateUevents();
126 void ForkSubProcesses();
Tom Cherryc5833052017-05-16 15:35:41 -0700127 void WaitForSubProcesses();
Bongkyu Kim5aa61972019-01-30 19:59:53 +0900128 void RestoreConHandler(unsigned int process_num, unsigned int total_processes);
129 void GenerateRestoreCon(const std::string& directory);
Tom Cherryc5833052017-05-16 15:35:41 -0700130
131 UeventListener& uevent_listener_;
Tom Cherry457e28f2018-08-01 13:12:20 -0700132 std::vector<std::unique_ptr<UeventHandler>>& uevent_handlers_;
Tom Cherryc5833052017-05-16 15:35:41 -0700133
134 unsigned int num_handler_subprocesses_;
135 std::vector<Uevent> uevent_queue_;
136
137 std::set<pid_t> subprocess_pids_;
Bongkyu Kim5aa61972019-01-30 19:59:53 +0900138
139 std::vector<std::string> restorecon_queue_;
Tom Cherryc5833052017-05-16 15:35:41 -0700140};
141
142void ColdBoot::UeventHandlerMain(unsigned int process_num, unsigned int total_processes) {
143 for (unsigned int i = process_num; i < uevent_queue_.size(); i += total_processes) {
144 auto& uevent = uevent_queue_[i];
Tom Cherry457e28f2018-08-01 13:12:20 -0700145
146 for (auto& uevent_handler : uevent_handlers_) {
147 uevent_handler->HandleUevent(uevent);
148 }
Tom Cherryc5833052017-05-16 15:35:41 -0700149 }
Bongkyu Kim5aa61972019-01-30 19:59:53 +0900150}
151
152void ColdBoot::RestoreConHandler(unsigned int process_num, unsigned int total_processes) {
153 for (unsigned int i = process_num; i < restorecon_queue_.size(); i += total_processes) {
154 auto& dir = restorecon_queue_[i];
155
156 selinux_android_restorecon(dir.c_str(), SELINUX_ANDROID_RESTORECON_RECURSE);
157 }
Tom Cherryc5833052017-05-16 15:35:41 -0700158 _exit(EXIT_SUCCESS);
159}
160
Bongkyu Kim5aa61972019-01-30 19:59:53 +0900161void ColdBoot::GenerateRestoreCon(const std::string& directory) {
162 std::unique_ptr<DIR, decltype(&closedir)> dir(opendir(directory.c_str()), &closedir);
163
164 if (!dir) return;
165
166 struct dirent* dent;
167 while ((dent = readdir(dir.get())) != NULL) {
168 if (strcmp(dent->d_name, ".") == 0 || strcmp(dent->d_name, "..") == 0) continue;
169
170 struct stat st;
171 if (fstatat(dirfd(dir.get()), dent->d_name, &st, 0) == -1) continue;
172
173 if (S_ISDIR(st.st_mode)) {
174 std::string fullpath = directory + "/" + dent->d_name;
175 if (fullpath != "/sys/devices") {
176 restorecon_queue_.emplace_back(fullpath);
177 }
178 }
179 }
180}
181
Tom Cherryc5833052017-05-16 15:35:41 -0700182void ColdBoot::RegenerateUevents() {
183 uevent_listener_.RegenerateUevents([this](const Uevent& uevent) {
Tom Cherry7c1d87e2019-07-10 11:18:24 -0700184 uevent_queue_.emplace_back(uevent);
Sandeep Patil4cbedee2017-06-21 13:02:57 -0700185 return ListenerAction::kContinue;
Tom Cherryc5833052017-05-16 15:35:41 -0700186 });
187}
188
189void ColdBoot::ForkSubProcesses() {
190 for (unsigned int i = 0; i < num_handler_subprocesses_; ++i) {
191 auto pid = fork();
192 if (pid < 0) {
193 PLOG(FATAL) << "fork() failed!";
194 }
195
196 if (pid == 0) {
197 UeventHandlerMain(i, num_handler_subprocesses_);
Bongkyu Kim5aa61972019-01-30 19:59:53 +0900198 RestoreConHandler(i, num_handler_subprocesses_);
Tom Cherryc5833052017-05-16 15:35:41 -0700199 }
200
201 subprocess_pids_.emplace(pid);
202 }
203}
204
Tom Cherryc5833052017-05-16 15:35:41 -0700205void ColdBoot::WaitForSubProcesses() {
206 // Treat subprocesses that crash or get stuck the same as if ueventd itself has crashed or gets
207 // stuck.
208 //
209 // When a subprocess crashes, we fatally abort from ueventd. init will restart ueventd when
210 // init reaps it, and the cold boot process will start again. If this continues to fail, then
Tom Cherryad9e7ea2018-10-15 17:21:48 -0700211 // since ueventd is marked as a critical service, init will reboot to bootloader.
Tom Cherryc5833052017-05-16 15:35:41 -0700212 //
213 // When a subprocess gets stuck, keep ueventd spinning waiting for it. init has a timeout for
214 // cold boot and will reboot to the bootloader if ueventd does not complete in time.
215 while (!subprocess_pids_.empty()) {
216 int status;
217 pid_t pid = TEMP_FAILURE_RETRY(waitpid(-1, &status, 0));
218 if (pid == -1) {
219 PLOG(ERROR) << "waitpid() failed";
220 continue;
221 }
222
223 auto it = std::find(subprocess_pids_.begin(), subprocess_pids_.end(), pid);
224 if (it == subprocess_pids_.end()) continue;
225
226 if (WIFEXITED(status)) {
227 if (WEXITSTATUS(status) == EXIT_SUCCESS) {
228 subprocess_pids_.erase(it);
229 } else {
230 LOG(FATAL) << "subprocess exited with status " << WEXITSTATUS(status);
231 }
232 } else if (WIFSIGNALED(status)) {
233 LOG(FATAL) << "subprocess killed by signal " << WTERMSIG(status);
234 }
235 }
236}
237
238void ColdBoot::Run() {
Tom Cherryede0d532017-07-06 14:20:11 -0700239 android::base::Timer cold_boot_timer;
Tom Cherryc5833052017-05-16 15:35:41 -0700240
241 RegenerateUevents();
242
Bongkyu Kim5aa61972019-01-30 19:59:53 +0900243 selinux_android_restorecon("/sys", 0);
244 selinux_android_restorecon("/sys/devices", 0);
245 GenerateRestoreCon("/sys");
246 // takes long time for /sys/devices, parallelize it
247 GenerateRestoreCon("/sys/devices");
Tom Cherryc5833052017-05-16 15:35:41 -0700248
Bongkyu Kim5aa61972019-01-30 19:59:53 +0900249 ForkSubProcesses();
Tom Cherryc5833052017-05-16 15:35:41 -0700250
251 WaitForSubProcesses();
252
Tom Cherry39fafed2019-06-10 17:49:59 -0700253 android::base::SetProperty(kColdBootDoneProp, "true");
Tom Cherryede0d532017-07-06 14:20:11 -0700254 LOG(INFO) << "Coldboot took " << cold_boot_timer.duration().count() / 1000.0f << " seconds";
Tom Cherryc5833052017-05-16 15:35:41 -0700255}
256
Tom Cherryc5833052017-05-16 15:35:41 -0700257int ueventd_main(int argc, char** argv) {
Nick Kralevich6ebf12f2012-03-26 09:09:11 -0700258 /*
259 * init sets the umask to 077 for forked processes. We need to
260 * create files with exact permissions, without modification by
261 * the umask.
262 */
263 umask(000);
264
Tom Cherry74069d12018-07-20 15:26:25 -0700265 android::base::InitLogging(argv, &android::base::KernelLogger);
Colin Crossf83d0b92010-04-21 12:04:20 -0700266
Elliott Hughesf86b5a62016-06-24 15:12:21 -0700267 LOG(INFO) << "ueventd started!";
Elliott Hughesda40c002015-03-27 23:20:44 -0700268
Tom Cherryc3692b32017-08-10 12:22:44 -0700269 SelinuxSetupKernelLogging();
270 SelabelInitialize();
Stephen Smalley439224e2014-06-24 13:45:43 -0400271
Tom Cherry457e28f2018-08-01 13:12:20 -0700272 std::vector<std::unique_ptr<UeventHandler>> uevent_handlers;
Sandeep Patilbf298e62017-02-03 07:18:36 -0800273
Tom Cherrye2910102018-12-06 13:29:30 -0800274 // Keep the current product name base configuration so we remain backwards compatible and
275 // allow it to override everything.
276 // TODO: cleanup platform ueventd.rc to remove vendor specific device node entries (b/34968103)
277 auto hardware = android::base::GetProperty("ro.hardware", "");
Tom Cherry7421fa12018-07-13 15:32:02 -0700278
Tom Cherrye2910102018-12-06 13:29:30 -0800279 auto ueventd_configuration = ParseConfig({"/ueventd.rc", "/vendor/ueventd.rc",
280 "/odm/ueventd.rc", "/ueventd." + hardware + ".rc"});
Tom Cherry7421fa12018-07-13 15:32:02 -0700281
Tom Cherrye2910102018-12-06 13:29:30 -0800282 uevent_handlers.emplace_back(std::make_unique<DeviceHandler>(
283 std::move(ueventd_configuration.dev_permissions),
284 std::move(ueventd_configuration.sysfs_permissions),
Tom Cherrya3530e62019-01-30 13:25:35 -0800285 std::move(ueventd_configuration.subsystems), android::fs_mgr::GetBootDevices(), true));
Tom Cherrye2910102018-12-06 13:29:30 -0800286 uevent_handlers.emplace_back(std::make_unique<FirmwareHandler>(
287 std::move(ueventd_configuration.firmware_directories)));
Tom Cherry7421fa12018-07-13 15:32:02 -0700288
Tom Cherrye2910102018-12-06 13:29:30 -0800289 if (ueventd_configuration.enable_modalias_handling) {
Steve Muckle18b981e2019-04-15 17:43:02 -0700290 std::vector<std::string> base_paths = {"/odm/lib/modules", "/vendor/lib/modules"};
291 uevent_handlers.emplace_back(std::make_unique<ModaliasHandler>(base_paths));
Tom Cherry7421fa12018-07-13 15:32:02 -0700292 }
Tom Cherrye2910102018-12-06 13:29:30 -0800293 UeventListener uevent_listener(ueventd_configuration.uevent_socket_rcvbuf_size);
Tom Cherry7421fa12018-07-13 15:32:02 -0700294
Tom Cherry39fafed2019-06-10 17:49:59 -0700295 if (!android::base::GetBoolProperty(kColdBootDoneProp, false)) {
Tom Cherry457e28f2018-08-01 13:12:20 -0700296 ColdBoot cold_boot(uevent_listener, uevent_handlers);
Tom Cherryc5833052017-05-16 15:35:41 -0700297 cold_boot.Run();
Colin Crossf83d0b92010-04-21 12:04:20 -0700298 }
Elliott Hughes21457792015-02-04 10:19:50 -0800299
Tom Cherry457e28f2018-08-01 13:12:20 -0700300 for (auto& uevent_handler : uevent_handlers) {
301 uevent_handler->ColdbootDone();
302 }
303
Tom Cherry0f296e02017-06-30 12:58:39 -0700304 // We use waitpid() in ColdBoot, so we can't ignore SIGCHLD until now.
305 signal(SIGCHLD, SIG_IGN);
306 // Reap and pending children that exited between the last call to waitpid() and setting SIG_IGN
307 // for SIGCHLD above.
308 while (waitpid(-1, nullptr, WNOHANG) > 0) {
309 }
310
Tom Cherry457e28f2018-08-01 13:12:20 -0700311 uevent_listener.Poll([&uevent_handlers](const Uevent& uevent) {
312 for (auto& uevent_handler : uevent_handlers) {
313 uevent_handler->HandleUevent(uevent);
314 }
Sandeep Patil4cbedee2017-06-21 13:02:57 -0700315 return ListenerAction::kContinue;
Tom Cherryed506f72017-05-25 15:58:59 -0700316 });
317
Elliott Hughes21457792015-02-04 10:19:50 -0800318 return 0;
Colin Crossf83d0b92010-04-21 12:04:20 -0700319}
Tom Cherry81f5d3e2017-06-22 12:53:17 -0700320
321} // namespace init
322} // namespace android