1 /*
2  * Copyright (C) 2019 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 //#define LOG_NDEBUG 0
18 #define LOG_TAG "libprocessgroup"
19 
20 #include <fcntl.h>
21 #include <task_profiles.h>
22 #include <string>
23 
24 #include <android-base/file.h>
25 #include <android-base/logging.h>
26 #include <android-base/properties.h>
27 #include <android-base/stringprintf.h>
28 #include <android-base/strings.h>
29 #include <android-base/threads.h>
30 
31 #include <cutils/android_filesystem_config.h>
32 
33 #include <json/reader.h>
34 #include <json/value.h>
35 
36 // To avoid issues in sdk_mac build
37 #if defined(__ANDROID__)
38 #include <sys/prctl.h>
39 #endif
40 
41 using android::base::GetThreadId;
42 using android::base::GetUintProperty;
43 using android::base::StringPrintf;
44 using android::base::StringReplace;
45 using android::base::unique_fd;
46 using android::base::WriteStringToFile;
47 
48 static constexpr const char* TASK_PROFILE_DB_FILE = "/etc/task_profiles.json";
49 static constexpr const char* TASK_PROFILE_DB_VENDOR_FILE = "/vendor/etc/task_profiles.json";
50 
51 static constexpr const char* TEMPLATE_TASK_PROFILE_API_FILE =
52         "/etc/task_profiles/task_profiles_%u.json";
53 
Reset(const CgroupController & controller,const std::string & file_name)54 void ProfileAttribute::Reset(const CgroupController& controller, const std::string& file_name) {
55     controller_ = controller;
56     file_name_ = file_name;
57 }
58 
GetPathForTask(int tid,std::string * path) const59 bool ProfileAttribute::GetPathForTask(int tid, std::string* path) const {
60     std::string subgroup;
61     if (!controller()->GetTaskGroup(tid, &subgroup)) {
62         return false;
63     }
64 
65     if (path == nullptr) {
66         return true;
67     }
68 
69     if (subgroup.empty()) {
70         *path = StringPrintf("%s/%s", controller()->path(), file_name_.c_str());
71     } else {
72         *path = StringPrintf("%s/%s/%s", controller()->path(), subgroup.c_str(),
73                              file_name_.c_str());
74     }
75     return true;
76 }
77 
ExecuteForProcess(uid_t,pid_t) const78 bool SetClampsAction::ExecuteForProcess(uid_t, pid_t) const {
79     // TODO: add support when kernel supports util_clamp
80     LOG(WARNING) << "SetClampsAction::ExecuteForProcess is not supported";
81     return false;
82 }
83 
ExecuteForTask(int) const84 bool SetClampsAction::ExecuteForTask(int) const {
85     // TODO: add support when kernel supports util_clamp
86     LOG(WARNING) << "SetClampsAction::ExecuteForTask is not supported";
87     return false;
88 }
89 
90 // To avoid issues in sdk_mac build
91 #if defined(__ANDROID__)
92 
IsTimerSlackSupported(int tid)93 bool SetTimerSlackAction::IsTimerSlackSupported(int tid) {
94     auto file = StringPrintf("/proc/%d/timerslack_ns", tid);
95 
96     return (access(file.c_str(), W_OK) == 0);
97 }
98 
ExecuteForTask(int tid) const99 bool SetTimerSlackAction::ExecuteForTask(int tid) const {
100     static bool sys_supports_timerslack = IsTimerSlackSupported(tid);
101 
102     // v4.6+ kernels support the /proc/<tid>/timerslack_ns interface.
103     // TODO: once we've backported this, log if the open(2) fails.
104     if (sys_supports_timerslack) {
105         auto file = StringPrintf("/proc/%d/timerslack_ns", tid);
106         if (!WriteStringToFile(std::to_string(slack_), file)) {
107             if (errno == ENOENT) {
108                 // This happens when process is already dead
109                 return true;
110             }
111             PLOG(ERROR) << "set_timerslack_ns write failed";
112         }
113     }
114 
115     // TODO: Remove when /proc/<tid>/timerslack_ns interface is backported.
116     if (tid == 0 || tid == GetThreadId()) {
117         if (prctl(PR_SET_TIMERSLACK, slack_) == -1) {
118             PLOG(ERROR) << "set_timerslack_ns prctl failed";
119         }
120     }
121 
122     return true;
123 }
124 
125 #endif
126 
ExecuteForProcess(uid_t,pid_t pid) const127 bool SetAttributeAction::ExecuteForProcess(uid_t, pid_t pid) const {
128     return ExecuteForTask(pid);
129 }
130 
ExecuteForTask(int tid) const131 bool SetAttributeAction::ExecuteForTask(int tid) const {
132     std::string path;
133 
134     if (!attribute_->GetPathForTask(tid, &path)) {
135         LOG(ERROR) << "Failed to find cgroup for tid " << tid;
136         return false;
137     }
138 
139     if (!WriteStringToFile(value_, path)) {
140         PLOG(ERROR) << "Failed to write '" << value_ << "' to " << path;
141         return false;
142     }
143 
144     return true;
145 }
146 
EnableResourceCaching()147 void CachedFdProfileAction::EnableResourceCaching() {
148     std::lock_guard<std::mutex> lock(fd_mutex_);
149     if (fd_ != FDS_NOT_CACHED) {
150         return;
151     }
152 
153     std::string tasks_path = GetPath();
154 
155     if (access(tasks_path.c_str(), W_OK) != 0) {
156         // file is not accessible
157         fd_.reset(FDS_INACCESSIBLE);
158         return;
159     }
160 
161     unique_fd fd(TEMP_FAILURE_RETRY(open(tasks_path.c_str(), O_WRONLY | O_CLOEXEC)));
162     if (fd < 0) {
163         PLOG(ERROR) << "Failed to cache fd '" << tasks_path << "'";
164         fd_.reset(FDS_INACCESSIBLE);
165         return;
166     }
167 
168     fd_ = std::move(fd);
169 }
170 
DropResourceCaching()171 void CachedFdProfileAction::DropResourceCaching() {
172     std::lock_guard<std::mutex> lock(fd_mutex_);
173     if (fd_ == FDS_NOT_CACHED) {
174         return;
175     }
176 
177     fd_.reset(FDS_NOT_CACHED);
178 }
179 
IsAppDependentPath(const std::string & path)180 bool CachedFdProfileAction::IsAppDependentPath(const std::string& path) {
181     return path.find("<uid>", 0) != std::string::npos || path.find("<pid>", 0) != std::string::npos;
182 }
183 
InitFd(const std::string & path)184 void CachedFdProfileAction::InitFd(const std::string& path) {
185     // file descriptors for app-dependent paths can't be cached
186     if (IsAppDependentPath(path)) {
187         // file descriptor is not cached
188         fd_.reset(FDS_APP_DEPENDENT);
189         return;
190     }
191     // file descriptor can be cached later on request
192     fd_.reset(FDS_NOT_CACHED);
193 }
194 
SetCgroupAction(const CgroupController & c,const std::string & p)195 SetCgroupAction::SetCgroupAction(const CgroupController& c, const std::string& p)
196     : controller_(c), path_(p) {
197     InitFd(controller_.GetTasksFilePath(path_));
198 }
199 
AddTidToCgroup(int tid,int fd,const char * controller_name)200 bool SetCgroupAction::AddTidToCgroup(int tid, int fd, const char* controller_name) {
201     if (tid <= 0) {
202         return true;
203     }
204 
205     std::string value = std::to_string(tid);
206 
207     if (TEMP_FAILURE_RETRY(write(fd, value.c_str(), value.length())) == value.length()) {
208         return true;
209     }
210 
211     // If the thread is in the process of exiting, don't flag an error
212     if (errno == ESRCH) {
213         return true;
214     }
215 
216     // ENOSPC is returned when cpuset cgroup that we are joining has no online cpus
217     if (errno == ENOSPC && !strcmp(controller_name, "cpuset")) {
218         // This is an abnormal case happening only in testing, so report it only once
219         static bool empty_cpuset_reported = false;
220 
221         if (empty_cpuset_reported) {
222             return true;
223         }
224 
225         LOG(ERROR) << "Failed to add task '" << value
226                    << "' into cpuset because all cpus in that cpuset are offline";
227         empty_cpuset_reported = true;
228     } else {
229         PLOG(ERROR) << "AddTidToCgroup failed to write '" << value << "'; fd=" << fd;
230     }
231 
232     return false;
233 }
234 
ExecuteForProcess(uid_t uid,pid_t pid) const235 bool SetCgroupAction::ExecuteForProcess(uid_t uid, pid_t pid) const {
236     std::string procs_path = controller()->GetProcsFilePath(path_, uid, pid);
237     unique_fd tmp_fd(TEMP_FAILURE_RETRY(open(procs_path.c_str(), O_WRONLY | O_CLOEXEC)));
238     if (tmp_fd < 0) {
239         PLOG(WARNING) << "Failed to open " << procs_path;
240         return false;
241     }
242     if (!AddTidToCgroup(pid, tmp_fd, controller()->name())) {
243         LOG(ERROR) << "Failed to add task into cgroup";
244         return false;
245     }
246 
247     return true;
248 }
249 
ExecuteForTask(int tid) const250 bool SetCgroupAction::ExecuteForTask(int tid) const {
251     std::lock_guard<std::mutex> lock(fd_mutex_);
252     if (IsFdValid()) {
253         // fd is cached, reuse it
254         if (!AddTidToCgroup(tid, fd_, controller()->name())) {
255             LOG(ERROR) << "Failed to add task into cgroup";
256             return false;
257         }
258         return true;
259     }
260 
261     if (fd_ == FDS_INACCESSIBLE) {
262         // no permissions to access the file, ignore
263         return true;
264     }
265 
266     if (fd_ == FDS_APP_DEPENDENT) {
267         // application-dependent path can't be used with tid
268         PLOG(ERROR) << "Application profile can't be applied to a thread";
269         return false;
270     }
271 
272     // fd was not cached because cached fd can't be used
273     std::string tasks_path = controller()->GetTasksFilePath(path_);
274     unique_fd tmp_fd(TEMP_FAILURE_RETRY(open(tasks_path.c_str(), O_WRONLY | O_CLOEXEC)));
275     if (tmp_fd < 0) {
276         PLOG(WARNING) << "Failed to open " << tasks_path;
277         return false;
278     }
279     if (!AddTidToCgroup(tid, tmp_fd, controller()->name())) {
280         LOG(ERROR) << "Failed to add task into cgroup";
281         return false;
282     }
283 
284     return true;
285 }
286 
WriteFileAction(const std::string & path,const std::string & value,bool logfailures)287 WriteFileAction::WriteFileAction(const std::string& path, const std::string& value,
288                                  bool logfailures)
289     : path_(path), value_(value), logfailures_(logfailures) {
290     InitFd(path_);
291 }
292 
WriteValueToFile(const std::string & value,const std::string & path,bool logfailures)293 bool WriteFileAction::WriteValueToFile(const std::string& value, const std::string& path,
294                                        bool logfailures) {
295     // Use WriteStringToFd instead of WriteStringToFile because the latter will open file with
296     // O_TRUNC which causes kernfs_mutex contention
297     unique_fd tmp_fd(TEMP_FAILURE_RETRY(open(path.c_str(), O_WRONLY | O_CLOEXEC)));
298 
299     if (tmp_fd < 0) {
300         if (logfailures) PLOG(WARNING) << "Failed to open " << path;
301         return false;
302     }
303 
304     if (!WriteStringToFd(value, tmp_fd)) {
305         if (logfailures) PLOG(ERROR) << "Failed to write '" << value << "' to " << path;
306         return false;
307     }
308 
309     return true;
310 }
311 
ExecuteForProcess(uid_t uid,pid_t pid) const312 bool WriteFileAction::ExecuteForProcess(uid_t uid, pid_t pid) const {
313     std::lock_guard<std::mutex> lock(fd_mutex_);
314     std::string value(value_);
315     std::string path(path_);
316 
317     value = StringReplace(value, "<uid>", std::to_string(uid), true);
318     value = StringReplace(value, "<pid>", std::to_string(pid), true);
319     path = StringReplace(path, "<uid>", std::to_string(uid), true);
320     path = StringReplace(path, "<pid>", std::to_string(pid), true);
321 
322     return WriteValueToFile(value, path, logfailures_);
323 }
324 
ExecuteForTask(int tid) const325 bool WriteFileAction::ExecuteForTask(int tid) const {
326     std::lock_guard<std::mutex> lock(fd_mutex_);
327     std::string value(value_);
328     int uid = getuid();
329 
330     value = StringReplace(value, "<uid>", std::to_string(uid), true);
331     value = StringReplace(value, "<pid>", std::to_string(tid), true);
332 
333     if (IsFdValid()) {
334         // fd is cached, reuse it
335         if (!WriteStringToFd(value, fd_)) {
336             if (logfailures_) PLOG(ERROR) << "Failed to write '" << value << "' to " << path_;
337             return false;
338         }
339         return true;
340     }
341 
342     if (fd_ == FDS_INACCESSIBLE) {
343         // no permissions to access the file, ignore
344         return true;
345     }
346 
347     if (fd_ == FDS_APP_DEPENDENT) {
348         // application-dependent path can't be used with tid
349         PLOG(ERROR) << "Application profile can't be applied to a thread";
350         return false;
351     }
352 
353     return WriteValueToFile(value, path_, logfailures_);
354 }
355 
ExecuteForProcess(uid_t uid,pid_t pid) const356 bool ApplyProfileAction::ExecuteForProcess(uid_t uid, pid_t pid) const {
357     for (const auto& profile : profiles_) {
358         if (!profile->ExecuteForProcess(uid, pid)) {
359             PLOG(WARNING) << "ExecuteForProcess failed for aggregate profile";
360         }
361     }
362     return true;
363 }
364 
ExecuteForTask(int tid) const365 bool ApplyProfileAction::ExecuteForTask(int tid) const {
366     for (const auto& profile : profiles_) {
367         profile->ExecuteForTask(tid);
368     }
369     return true;
370 }
371 
EnableResourceCaching()372 void ApplyProfileAction::EnableResourceCaching() {
373     for (const auto& profile : profiles_) {
374         profile->EnableResourceCaching();
375     }
376 }
377 
DropResourceCaching()378 void ApplyProfileAction::DropResourceCaching() {
379     for (const auto& profile : profiles_) {
380         profile->DropResourceCaching();
381     }
382 }
383 
MoveTo(TaskProfile * profile)384 void TaskProfile::MoveTo(TaskProfile* profile) {
385     profile->elements_ = std::move(elements_);
386     profile->res_cached_ = res_cached_;
387 }
388 
ExecuteForProcess(uid_t uid,pid_t pid) const389 bool TaskProfile::ExecuteForProcess(uid_t uid, pid_t pid) const {
390     for (const auto& element : elements_) {
391         if (!element->ExecuteForProcess(uid, pid)) {
392             return false;
393         }
394     }
395     return true;
396 }
397 
ExecuteForTask(int tid) const398 bool TaskProfile::ExecuteForTask(int tid) const {
399     if (tid == 0) {
400         tid = GetThreadId();
401     }
402     for (const auto& element : elements_) {
403         if (!element->ExecuteForTask(tid)) {
404             return false;
405         }
406     }
407     return true;
408 }
409 
EnableResourceCaching()410 void TaskProfile::EnableResourceCaching() {
411     if (res_cached_) {
412         return;
413     }
414 
415     for (auto& element : elements_) {
416         element->EnableResourceCaching();
417     }
418 
419     res_cached_ = true;
420 }
421 
DropResourceCaching()422 void TaskProfile::DropResourceCaching() {
423     if (!res_cached_) {
424         return;
425     }
426 
427     for (auto& element : elements_) {
428         element->DropResourceCaching();
429     }
430 
431     res_cached_ = false;
432 }
433 
DropResourceCaching() const434 void TaskProfiles::DropResourceCaching() const {
435     for (auto& iter : profiles_) {
436         iter.second->DropResourceCaching();
437     }
438 }
439 
GetInstance()440 TaskProfiles& TaskProfiles::GetInstance() {
441     // Deliberately leak this object to avoid a race between destruction on
442     // process exit and concurrent access from another thread.
443     static auto* instance = new TaskProfiles;
444     return *instance;
445 }
446 
TaskProfiles()447 TaskProfiles::TaskProfiles() {
448     // load system task profiles
449     if (!Load(CgroupMap::GetInstance(), TASK_PROFILE_DB_FILE)) {
450         LOG(ERROR) << "Loading " << TASK_PROFILE_DB_FILE << " for [" << getpid() << "] failed";
451     }
452 
453     // load API-level specific system task profiles if available
454     unsigned int api_level = GetUintProperty<unsigned int>("ro.product.first_api_level", 0);
455     if (api_level > 0) {
456         std::string api_profiles_path =
457                 android::base::StringPrintf(TEMPLATE_TASK_PROFILE_API_FILE, api_level);
458         if (!access(api_profiles_path.c_str(), F_OK) || errno != ENOENT) {
459             if (!Load(CgroupMap::GetInstance(), api_profiles_path)) {
460                 LOG(ERROR) << "Loading " << api_profiles_path << " for [" << getpid()
461                            << "] failed";
462             }
463         }
464     }
465 
466     // load vendor task profiles if the file exists
467     if (!access(TASK_PROFILE_DB_VENDOR_FILE, F_OK) &&
468         !Load(CgroupMap::GetInstance(), TASK_PROFILE_DB_VENDOR_FILE)) {
469         LOG(ERROR) << "Loading " << TASK_PROFILE_DB_VENDOR_FILE << " for [" << getpid()
470                    << "] failed";
471     }
472 }
473 
Load(const CgroupMap & cg_map,const std::string & file_name)474 bool TaskProfiles::Load(const CgroupMap& cg_map, const std::string& file_name) {
475     std::string json_doc;
476 
477     if (!android::base::ReadFileToString(file_name, &json_doc)) {
478         LOG(ERROR) << "Failed to read task profiles from " << file_name;
479         return false;
480     }
481 
482     Json::CharReaderBuilder builder;
483     std::unique_ptr<Json::CharReader> reader(builder.newCharReader());
484     Json::Value root;
485     std::string errorMessage;
486     if (!reader->parse(&*json_doc.begin(), &*json_doc.end(), &root, &errorMessage)) {
487         LOG(ERROR) << "Failed to parse task profiles: " << errorMessage;
488         return false;
489     }
490 
491     const Json::Value& attr = root["Attributes"];
492     for (Json::Value::ArrayIndex i = 0; i < attr.size(); ++i) {
493         std::string name = attr[i]["Name"].asString();
494         std::string controller_name = attr[i]["Controller"].asString();
495         std::string file_attr = attr[i]["File"].asString();
496 
497         auto controller = cg_map.FindController(controller_name);
498         if (controller.HasValue()) {
499             auto iter = attributes_.find(name);
500             if (iter == attributes_.end()) {
501                 attributes_[name] = std::make_unique<ProfileAttribute>(controller, file_attr);
502             } else {
503                 iter->second->Reset(controller, file_attr);
504             }
505         } else {
506             LOG(WARNING) << "Controller " << controller_name << " is not found";
507         }
508     }
509 
510     const Json::Value& profiles_val = root["Profiles"];
511     for (Json::Value::ArrayIndex i = 0; i < profiles_val.size(); ++i) {
512         const Json::Value& profile_val = profiles_val[i];
513 
514         std::string profile_name = profile_val["Name"].asString();
515         const Json::Value& actions = profile_val["Actions"];
516         auto profile = std::make_shared<TaskProfile>();
517 
518         for (Json::Value::ArrayIndex act_idx = 0; act_idx < actions.size(); ++act_idx) {
519             const Json::Value& action_val = actions[act_idx];
520             std::string action_name = action_val["Name"].asString();
521             const Json::Value& params_val = action_val["Params"];
522             if (action_name == "JoinCgroup") {
523                 std::string controller_name = params_val["Controller"].asString();
524                 std::string path = params_val["Path"].asString();
525 
526                 auto controller = cg_map.FindController(controller_name);
527                 if (controller.HasValue()) {
528                     profile->Add(std::make_unique<SetCgroupAction>(controller, path));
529                 } else {
530                     LOG(WARNING) << "JoinCgroup: controller " << controller_name << " is not found";
531                 }
532             } else if (action_name == "SetTimerSlack") {
533                 std::string slack_value = params_val["Slack"].asString();
534                 char* end;
535                 unsigned long slack;
536 
537                 slack = strtoul(slack_value.c_str(), &end, 10);
538                 if (end > slack_value.c_str()) {
539                     profile->Add(std::make_unique<SetTimerSlackAction>(slack));
540                 } else {
541                     LOG(WARNING) << "SetTimerSlack: invalid parameter: " << slack_value;
542                 }
543             } else if (action_name == "SetAttribute") {
544                 std::string attr_name = params_val["Name"].asString();
545                 std::string attr_value = params_val["Value"].asString();
546 
547                 auto iter = attributes_.find(attr_name);
548                 if (iter != attributes_.end()) {
549                     profile->Add(
550                             std::make_unique<SetAttributeAction>(iter->second.get(), attr_value));
551                 } else {
552                     LOG(WARNING) << "SetAttribute: unknown attribute: " << attr_name;
553                 }
554             } else if (action_name == "SetClamps") {
555                 std::string boost_value = params_val["Boost"].asString();
556                 std::string clamp_value = params_val["Clamp"].asString();
557                 char* end;
558                 unsigned long boost;
559 
560                 boost = strtoul(boost_value.c_str(), &end, 10);
561                 if (end > boost_value.c_str()) {
562                     unsigned long clamp = strtoul(clamp_value.c_str(), &end, 10);
563                     if (end > clamp_value.c_str()) {
564                         profile->Add(std::make_unique<SetClampsAction>(boost, clamp));
565                     } else {
566                         LOG(WARNING) << "SetClamps: invalid parameter " << clamp_value;
567                     }
568                 } else {
569                     LOG(WARNING) << "SetClamps: invalid parameter: " << boost_value;
570                 }
571             } else if (action_name == "WriteFile") {
572                 std::string attr_filepath = params_val["FilePath"].asString();
573                 std::string attr_value = params_val["Value"].asString();
574                 if (!attr_filepath.empty() && !attr_value.empty()) {
575                     std::string attr_logfailures = params_val["LogFailures"].asString();
576                     bool logfailures = attr_logfailures.empty() || attr_logfailures == "true";
577                     profile->Add(std::make_unique<WriteFileAction>(attr_filepath, attr_value,
578                                                                    logfailures));
579                 } else if (attr_filepath.empty()) {
580                     LOG(WARNING) << "WriteFile: invalid parameter: "
581                                  << "empty filepath";
582                 } else if (attr_value.empty()) {
583                     LOG(WARNING) << "WriteFile: invalid parameter: "
584                                  << "empty value";
585                 }
586             } else {
587                 LOG(WARNING) << "Unknown profile action: " << action_name;
588             }
589         }
590         auto iter = profiles_.find(profile_name);
591         if (iter == profiles_.end()) {
592             profiles_[profile_name] = profile;
593         } else {
594             // Move the content rather that replace the profile because old profile might be
595             // referenced from an aggregate profile if vendor overrides task profiles
596             profile->MoveTo(iter->second.get());
597             profile.reset();
598         }
599     }
600 
601     const Json::Value& aggregateprofiles_val = root["AggregateProfiles"];
602     for (Json::Value::ArrayIndex i = 0; i < aggregateprofiles_val.size(); ++i) {
603         const Json::Value& aggregateprofile_val = aggregateprofiles_val[i];
604 
605         std::string aggregateprofile_name = aggregateprofile_val["Name"].asString();
606         const Json::Value& aggregateprofiles = aggregateprofile_val["Profiles"];
607         std::vector<std::shared_ptr<TaskProfile>> profiles;
608         bool ret = true;
609 
610         for (Json::Value::ArrayIndex pf_idx = 0; pf_idx < aggregateprofiles.size(); ++pf_idx) {
611             std::string profile_name = aggregateprofiles[pf_idx].asString();
612 
613             if (profile_name == aggregateprofile_name) {
614                 LOG(WARNING) << "AggregateProfiles: recursive profile name: " << profile_name;
615                 ret = false;
616                 break;
617             } else if (profiles_.find(profile_name) == profiles_.end()) {
618                 LOG(WARNING) << "AggregateProfiles: undefined profile name: " << profile_name;
619                 ret = false;
620                 break;
621             } else {
622                 profiles.push_back(profiles_[profile_name]);
623             }
624         }
625         if (ret) {
626             auto profile = std::make_shared<TaskProfile>();
627             profile->Add(std::make_unique<ApplyProfileAction>(profiles));
628             profiles_[aggregateprofile_name] = profile;
629         }
630     }
631 
632     return true;
633 }
634 
GetProfile(const std::string & name) const635 TaskProfile* TaskProfiles::GetProfile(const std::string& name) const {
636     auto iter = profiles_.find(name);
637 
638     if (iter != profiles_.end()) {
639         return iter->second.get();
640     }
641     return nullptr;
642 }
643 
GetAttribute(const std::string & name) const644 const ProfileAttribute* TaskProfiles::GetAttribute(const std::string& name) const {
645     auto iter = attributes_.find(name);
646 
647     if (iter != attributes_.end()) {
648         return iter->second.get();
649     }
650     return nullptr;
651 }
652 
SetProcessProfiles(uid_t uid,pid_t pid,const std::vector<std::string> & profiles)653 bool TaskProfiles::SetProcessProfiles(uid_t uid, pid_t pid,
654                                       const std::vector<std::string>& profiles) {
655     for (const auto& name : profiles) {
656         TaskProfile* profile = GetProfile(name);
657         if (profile != nullptr) {
658             if (!profile->ExecuteForProcess(uid, pid)) {
659                 PLOG(WARNING) << "Failed to apply " << name << " process profile";
660             }
661         } else {
662             PLOG(WARNING) << "Failed to find " << name << "process profile";
663         }
664     }
665     return true;
666 }
667 
SetTaskProfiles(int tid,const std::vector<std::string> & profiles,bool use_fd_cache)668 bool TaskProfiles::SetTaskProfiles(int tid, const std::vector<std::string>& profiles,
669                                    bool use_fd_cache) {
670     for (const auto& name : profiles) {
671         TaskProfile* profile = GetProfile(name);
672         if (profile != nullptr) {
673             if (use_fd_cache) {
674                 profile->EnableResourceCaching();
675             }
676             if (!profile->ExecuteForTask(tid)) {
677                 PLOG(WARNING) << "Failed to apply " << name << " task profile";
678             }
679         } else {
680             PLOG(WARNING) << "Failed to find " << name << "task profile";
681         }
682     }
683     return true;
684 }
685