1 /*
2 * Copyright 2014 Google, Inc
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 //#define LOG_NDEBUG 0
18 #define LOG_TAG "libprocessgroup"
19
20 #include <assert.h>
21 #include <dirent.h>
22 #include <errno.h>
23 #include <fcntl.h>
24 #include <inttypes.h>
25 #include <signal.h>
26 #include <stdio.h>
27 #include <stdlib.h>
28 #include <sys/stat.h>
29 #include <sys/types.h>
30 #include <unistd.h>
31
32 #include <chrono>
33 #include <map>
34 #include <memory>
35 #include <mutex>
36 #include <set>
37 #include <string>
38 #include <thread>
39
40 #include <android-base/file.h>
41 #include <android-base/logging.h>
42 #include <android-base/properties.h>
43 #include <android-base/stringprintf.h>
44 #include <android-base/strings.h>
45 #include <cutils/android_filesystem_config.h>
46 #include <processgroup/processgroup.h>
47 #include <task_profiles.h>
48
49 using android::base::GetBoolProperty;
50 using android::base::StartsWith;
51 using android::base::StringPrintf;
52 using android::base::WriteStringToFile;
53
54 using namespace std::chrono_literals;
55
56 #define PROCESSGROUP_CGROUP_PROCS_FILE "/cgroup.procs"
57
CgroupGetControllerPath(const std::string & cgroup_name,std::string * path)58 bool CgroupGetControllerPath(const std::string& cgroup_name, std::string* path) {
59 auto controller = CgroupMap::GetInstance().FindController(cgroup_name);
60
61 if (!controller.HasValue()) {
62 return false;
63 }
64
65 if (path) {
66 *path = controller.path();
67 }
68
69 return true;
70 }
71
CgroupGetAttributePath(const std::string & attr_name,std::string * path)72 bool CgroupGetAttributePath(const std::string& attr_name, std::string* path) {
73 const TaskProfiles& tp = TaskProfiles::GetInstance();
74 const ProfileAttribute* attr = tp.GetAttribute(attr_name);
75
76 if (attr == nullptr) {
77 return false;
78 }
79
80 if (path) {
81 *path = StringPrintf("%s/%s", attr->controller()->path(), attr->file_name().c_str());
82 }
83
84 return true;
85 }
86
CgroupGetAttributePathForTask(const std::string & attr_name,int tid,std::string * path)87 bool CgroupGetAttributePathForTask(const std::string& attr_name, int tid, std::string* path) {
88 const TaskProfiles& tp = TaskProfiles::GetInstance();
89 const ProfileAttribute* attr = tp.GetAttribute(attr_name);
90
91 if (attr == nullptr) {
92 return false;
93 }
94
95 if (!attr->GetPathForTask(tid, path)) {
96 PLOG(ERROR) << "Failed to find cgroup for tid " << tid;
97 return false;
98 }
99
100 return true;
101 }
102
UsePerAppMemcg()103 bool UsePerAppMemcg() {
104 bool low_ram_device = GetBoolProperty("ro.config.low_ram", false);
105 return GetBoolProperty("ro.config.per_app_memcg", low_ram_device);
106 }
107
isMemoryCgroupSupported()108 static bool isMemoryCgroupSupported() {
109 static bool memcg_supported = CgroupMap::GetInstance().FindController("memory").IsUsable();
110
111 return memcg_supported;
112 }
113
DropTaskProfilesResourceCaching()114 void DropTaskProfilesResourceCaching() {
115 TaskProfiles::GetInstance().DropResourceCaching();
116 }
117
SetProcessProfiles(uid_t uid,pid_t pid,const std::vector<std::string> & profiles)118 bool SetProcessProfiles(uid_t uid, pid_t pid, const std::vector<std::string>& profiles) {
119 return TaskProfiles::GetInstance().SetProcessProfiles(uid, pid, profiles);
120 }
121
SetTaskProfiles(int tid,const std::vector<std::string> & profiles,bool use_fd_cache)122 bool SetTaskProfiles(int tid, const std::vector<std::string>& profiles, bool use_fd_cache) {
123 return TaskProfiles::GetInstance().SetTaskProfiles(tid, profiles, use_fd_cache);
124 }
125
ConvertUidToPath(const char * cgroup,uid_t uid)126 static std::string ConvertUidToPath(const char* cgroup, uid_t uid) {
127 return StringPrintf("%s/uid_%d", cgroup, uid);
128 }
129
ConvertUidPidToPath(const char * cgroup,uid_t uid,int pid)130 static std::string ConvertUidPidToPath(const char* cgroup, uid_t uid, int pid) {
131 return StringPrintf("%s/uid_%d/pid_%d", cgroup, uid, pid);
132 }
133
RemoveProcessGroup(const char * cgroup,uid_t uid,int pid)134 static int RemoveProcessGroup(const char* cgroup, uid_t uid, int pid) {
135 int ret;
136
137 auto uid_pid_path = ConvertUidPidToPath(cgroup, uid, pid);
138 ret = rmdir(uid_pid_path.c_str());
139
140 auto uid_path = ConvertUidToPath(cgroup, uid);
141 rmdir(uid_path.c_str());
142
143 return ret;
144 }
145
RemoveUidProcessGroups(const std::string & uid_path)146 static bool RemoveUidProcessGroups(const std::string& uid_path) {
147 std::unique_ptr<DIR, decltype(&closedir)> uid(opendir(uid_path.c_str()), closedir);
148 bool empty = true;
149 if (uid != NULL) {
150 dirent* dir;
151 while ((dir = readdir(uid.get())) != nullptr) {
152 if (dir->d_type != DT_DIR) {
153 continue;
154 }
155
156 if (!StartsWith(dir->d_name, "pid_")) {
157 continue;
158 }
159
160 auto path = StringPrintf("%s/%s", uid_path.c_str(), dir->d_name);
161 LOG(VERBOSE) << "Removing " << path;
162 if (rmdir(path.c_str()) == -1) {
163 if (errno != EBUSY) {
164 PLOG(WARNING) << "Failed to remove " << path;
165 }
166 empty = false;
167 }
168 }
169 }
170 return empty;
171 }
172
removeAllProcessGroups()173 void removeAllProcessGroups() {
174 LOG(VERBOSE) << "removeAllProcessGroups()";
175
176 std::vector<std::string> cgroups;
177 std::string path;
178
179 if (CgroupGetControllerPath("cpuacct", &path)) {
180 cgroups.push_back(path);
181 }
182 if (CgroupGetControllerPath("memory", &path)) {
183 cgroups.push_back(path + "/apps");
184 }
185
186 for (std::string cgroup_root_path : cgroups) {
187 std::unique_ptr<DIR, decltype(&closedir)> root(opendir(cgroup_root_path.c_str()), closedir);
188 if (root == NULL) {
189 PLOG(ERROR) << "Failed to open " << cgroup_root_path;
190 } else {
191 dirent* dir;
192 while ((dir = readdir(root.get())) != nullptr) {
193 if (dir->d_type != DT_DIR) {
194 continue;
195 }
196
197 if (!StartsWith(dir->d_name, "uid_")) {
198 continue;
199 }
200
201 auto path = StringPrintf("%s/%s", cgroup_root_path.c_str(), dir->d_name);
202 if (!RemoveUidProcessGroups(path)) {
203 LOG(VERBOSE) << "Skip removing " << path;
204 continue;
205 }
206 LOG(VERBOSE) << "Removing " << path;
207 if (rmdir(path.c_str()) == -1 && errno != EBUSY) {
208 PLOG(WARNING) << "Failed to remove " << path;
209 }
210 }
211 }
212 }
213 }
214
MkdirAndChown(const std::string & path,mode_t mode,uid_t uid,gid_t gid)215 static bool MkdirAndChown(const std::string& path, mode_t mode, uid_t uid, gid_t gid) {
216 if (mkdir(path.c_str(), mode) == -1 && errno != EEXIST) {
217 return false;
218 }
219
220 if (chown(path.c_str(), uid, gid) == -1) {
221 int saved_errno = errno;
222 rmdir(path.c_str());
223 errno = saved_errno;
224 return false;
225 }
226
227 return true;
228 }
229
230 // Returns number of processes killed on success
231 // Returns 0 if there are no processes in the process cgroup left to kill
232 // Returns -1 on error
DoKillProcessGroupOnce(const char * cgroup,uid_t uid,int initialPid,int signal)233 static int DoKillProcessGroupOnce(const char* cgroup, uid_t uid, int initialPid, int signal) {
234 auto path = ConvertUidPidToPath(cgroup, uid, initialPid) + PROCESSGROUP_CGROUP_PROCS_FILE;
235 std::unique_ptr<FILE, decltype(&fclose)> fd(fopen(path.c_str(), "re"), fclose);
236 if (!fd) {
237 if (errno == ENOENT) {
238 // This happens when process is already dead
239 return 0;
240 }
241 PLOG(WARNING) << "Failed to open process cgroup uid " << uid << " pid " << initialPid;
242 return -1;
243 }
244
245 // We separate all of the pids in the cgroup into those pids that are also the leaders of
246 // process groups (stored in the pgids set) and those that are not (stored in the pids set).
247 std::set<pid_t> pgids;
248 pgids.emplace(initialPid);
249 std::set<pid_t> pids;
250
251 pid_t pid;
252 int processes = 0;
253 while (fscanf(fd.get(), "%d\n", &pid) == 1 && pid >= 0) {
254 processes++;
255 if (pid == 0) {
256 // Should never happen... but if it does, trying to kill this
257 // will boomerang right back and kill us! Let's not let that happen.
258 LOG(WARNING) << "Yikes, we've been told to kill pid 0! How about we don't do that?";
259 continue;
260 }
261 pid_t pgid = getpgid(pid);
262 if (pgid == -1) PLOG(ERROR) << "getpgid(" << pid << ") failed";
263 if (pgid == pid) {
264 pgids.emplace(pid);
265 } else {
266 pids.emplace(pid);
267 }
268 }
269
270 // Erase all pids that will be killed when we kill the process groups.
271 for (auto it = pids.begin(); it != pids.end();) {
272 pid_t pgid = getpgid(*it);
273 if (pgids.count(pgid) == 1) {
274 it = pids.erase(it);
275 } else {
276 ++it;
277 }
278 }
279
280 // Kill all process groups.
281 for (const auto pgid : pgids) {
282 LOG(VERBOSE) << "Killing process group " << -pgid << " in uid " << uid
283 << " as part of process cgroup " << initialPid;
284
285 if (kill(-pgid, signal) == -1 && errno != ESRCH) {
286 PLOG(WARNING) << "kill(" << -pgid << ", " << signal << ") failed";
287 }
288 }
289
290 // Kill remaining pids.
291 for (const auto pid : pids) {
292 LOG(VERBOSE) << "Killing pid " << pid << " in uid " << uid << " as part of process cgroup "
293 << initialPid;
294
295 if (kill(pid, signal) == -1 && errno != ESRCH) {
296 PLOG(WARNING) << "kill(" << pid << ", " << signal << ") failed";
297 }
298 }
299
300 return feof(fd.get()) ? processes : -1;
301 }
302
KillProcessGroup(uid_t uid,int initialPid,int signal,int retries,int * max_processes)303 static int KillProcessGroup(uid_t uid, int initialPid, int signal, int retries,
304 int* max_processes) {
305 std::string cpuacct_path;
306 std::string memory_path;
307
308 CgroupGetControllerPath("cpuacct", &cpuacct_path);
309 CgroupGetControllerPath("memory", &memory_path);
310 memory_path += "/apps";
311
312 const char* cgroup =
313 (!access(ConvertUidPidToPath(cpuacct_path.c_str(), uid, initialPid).c_str(), F_OK))
314 ? cpuacct_path.c_str()
315 : memory_path.c_str();
316
317 std::chrono::steady_clock::time_point start = std::chrono::steady_clock::now();
318
319 if (max_processes != nullptr) {
320 *max_processes = 0;
321 }
322
323 int retry = retries;
324 int processes;
325 while ((processes = DoKillProcessGroupOnce(cgroup, uid, initialPid, signal)) > 0) {
326 if (max_processes != nullptr && processes > *max_processes) {
327 *max_processes = processes;
328 }
329 LOG(VERBOSE) << "Killed " << processes << " processes for processgroup " << initialPid;
330 if (retry > 0) {
331 std::this_thread::sleep_for(5ms);
332 --retry;
333 } else {
334 break;
335 }
336 }
337
338 if (processes < 0) {
339 PLOG(ERROR) << "Error encountered killing process cgroup uid " << uid << " pid "
340 << initialPid;
341 return -1;
342 }
343
344 std::chrono::steady_clock::time_point end = std::chrono::steady_clock::now();
345 auto ms = std::chrono::duration_cast<std::chrono::milliseconds>(end - start).count();
346
347 // We only calculate the number of 'processes' when killing the processes.
348 // In the retries == 0 case, we only kill the processes once and therefore
349 // will not have waited then recalculated how many processes are remaining
350 // after the first signals have been sent.
351 // Logging anything regarding the number of 'processes' here does not make sense.
352
353 if (processes == 0) {
354 if (retries > 0) {
355 LOG(INFO) << "Successfully killed process cgroup uid " << uid << " pid " << initialPid
356 << " in " << static_cast<int>(ms) << "ms";
357 }
358 return RemoveProcessGroup(cgroup, uid, initialPid);
359 } else {
360 if (retries > 0) {
361 LOG(ERROR) << "Failed to kill process cgroup uid " << uid << " pid " << initialPid
362 << " in " << static_cast<int>(ms) << "ms, " << processes
363 << " processes remain";
364 }
365 return -1;
366 }
367 }
368
killProcessGroup(uid_t uid,int initialPid,int signal,int * max_processes)369 int killProcessGroup(uid_t uid, int initialPid, int signal, int* max_processes) {
370 return KillProcessGroup(uid, initialPid, signal, 40 /*retries*/, max_processes);
371 }
372
killProcessGroupOnce(uid_t uid,int initialPid,int signal,int * max_processes)373 int killProcessGroupOnce(uid_t uid, int initialPid, int signal, int* max_processes) {
374 return KillProcessGroup(uid, initialPid, signal, 0 /*retries*/, max_processes);
375 }
376
createProcessGroup(uid_t uid,int initialPid,bool memControl)377 int createProcessGroup(uid_t uid, int initialPid, bool memControl) {
378 std::string cgroup;
379 if (isMemoryCgroupSupported() && (memControl || UsePerAppMemcg())) {
380 CgroupGetControllerPath("memory", &cgroup);
381 cgroup += "/apps";
382 } else {
383 CgroupGetControllerPath("cpuacct", &cgroup);
384 }
385
386 auto uid_path = ConvertUidToPath(cgroup.c_str(), uid);
387
388 if (!MkdirAndChown(uid_path, 0750, AID_SYSTEM, AID_SYSTEM)) {
389 PLOG(ERROR) << "Failed to make and chown " << uid_path;
390 return -errno;
391 }
392
393 auto uid_pid_path = ConvertUidPidToPath(cgroup.c_str(), uid, initialPid);
394
395 if (!MkdirAndChown(uid_pid_path, 0750, AID_SYSTEM, AID_SYSTEM)) {
396 PLOG(ERROR) << "Failed to make and chown " << uid_pid_path;
397 return -errno;
398 }
399
400 auto uid_pid_procs_file = uid_pid_path + PROCESSGROUP_CGROUP_PROCS_FILE;
401
402 int ret = 0;
403 if (!WriteStringToFile(std::to_string(initialPid), uid_pid_procs_file)) {
404 ret = -errno;
405 PLOG(ERROR) << "Failed to write '" << initialPid << "' to " << uid_pid_procs_file;
406 }
407
408 return ret;
409 }
410
SetProcessGroupValue(int tid,const std::string & attr_name,int64_t value)411 static bool SetProcessGroupValue(int tid, const std::string& attr_name, int64_t value) {
412 if (!isMemoryCgroupSupported()) {
413 PLOG(ERROR) << "Memcg is not mounted.";
414 return false;
415 }
416
417 std::string path;
418 if (!CgroupGetAttributePathForTask(attr_name, tid, &path)) {
419 PLOG(ERROR) << "Failed to find attribute '" << attr_name << "'";
420 return false;
421 }
422
423 if (!WriteStringToFile(std::to_string(value), path)) {
424 PLOG(ERROR) << "Failed to write '" << value << "' to " << path;
425 return false;
426 }
427 return true;
428 }
429
setProcessGroupSwappiness(uid_t,int pid,int swappiness)430 bool setProcessGroupSwappiness(uid_t, int pid, int swappiness) {
431 return SetProcessGroupValue(pid, "MemSwappiness", swappiness);
432 }
433
setProcessGroupSoftLimit(uid_t,int pid,int64_t soft_limit_in_bytes)434 bool setProcessGroupSoftLimit(uid_t, int pid, int64_t soft_limit_in_bytes) {
435 return SetProcessGroupValue(pid, "MemSoftLimit", soft_limit_in_bytes);
436 }
437
setProcessGroupLimit(uid_t,int pid,int64_t limit_in_bytes)438 bool setProcessGroupLimit(uid_t, int pid, int64_t limit_in_bytes) {
439 return SetProcessGroupValue(pid, "MemLimit", limit_in_bytes);
440 }
441