1 /*
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 #define DEBUG false // STOPSHIP if true
18 #include "Log.h"
19 #include "statslog.h"
20 
21 #include <android-base/file.h>
22 #include <dirent.h>
23 #include "StatsLogProcessor.h"
24 #include "stats_log_util.h"
25 #include "android-base/stringprintf.h"
26 #include "guardrail/StatsdStats.h"
27 #include "metrics/CountMetricProducer.h"
28 #include "external/StatsPullerManager.h"
29 #include "stats_util.h"
30 #include "storage/StorageManager.h"
31 
32 #include <log/log_event_list.h>
33 #include <utils/Errors.h>
34 #include <utils/SystemClock.h>
35 
36 using namespace android;
37 using android::base::StringPrintf;
38 using android::util::FIELD_COUNT_REPEATED;
39 using android::util::FIELD_TYPE_BOOL;
40 using android::util::FIELD_TYPE_FLOAT;
41 using android::util::FIELD_TYPE_INT32;
42 using android::util::FIELD_TYPE_INT64;
43 using android::util::FIELD_TYPE_MESSAGE;
44 using android::util::FIELD_TYPE_STRING;
45 using android::util::ProtoOutputStream;
46 using std::make_unique;
47 using std::unique_ptr;
48 using std::vector;
49 
50 namespace android {
51 namespace os {
52 namespace statsd {
53 
54 // for ConfigMetricsReportList
55 const int FIELD_ID_CONFIG_KEY = 1;
56 const int FIELD_ID_REPORTS = 2;
57 // for ConfigKey
58 const int FIELD_ID_UID = 1;
59 const int FIELD_ID_ID = 2;
60 // for ConfigMetricsReport
61 // const int FIELD_ID_METRICS = 1; // written in MetricsManager.cpp
62 const int FIELD_ID_UID_MAP = 2;
63 const int FIELD_ID_LAST_REPORT_ELAPSED_NANOS = 3;
64 const int FIELD_ID_CURRENT_REPORT_ELAPSED_NANOS = 4;
65 const int FIELD_ID_LAST_REPORT_WALL_CLOCK_NANOS = 5;
66 const int FIELD_ID_CURRENT_REPORT_WALL_CLOCK_NANOS = 6;
67 const int FIELD_ID_DUMP_REPORT_REASON = 8;
68 const int FIELD_ID_STRINGS = 9;
69 
70 #define NS_PER_HOUR 3600 * NS_PER_SEC
71 
72 #define STATS_DATA_DIR "/data/misc/stats-data"
73 
StatsLogProcessor(const sp<UidMap> & uidMap,const sp<AlarmMonitor> & anomalyAlarmMonitor,const sp<AlarmMonitor> & periodicAlarmMonitor,const int64_t timeBaseNs,const std::function<bool (const ConfigKey &)> & sendBroadcast)74 StatsLogProcessor::StatsLogProcessor(const sp<UidMap>& uidMap,
75                                      const sp<AlarmMonitor>& anomalyAlarmMonitor,
76                                      const sp<AlarmMonitor>& periodicAlarmMonitor,
77                                      const int64_t timeBaseNs,
78                                      const std::function<bool(const ConfigKey&)>& sendBroadcast)
79     : mUidMap(uidMap),
80       mAnomalyAlarmMonitor(anomalyAlarmMonitor),
81       mPeriodicAlarmMonitor(periodicAlarmMonitor),
82       mSendBroadcast(sendBroadcast),
83       mTimeBaseNs(timeBaseNs),
84       mLargestTimestampSeen(0),
85       mLastTimestampSeen(0) {
86     mStatsPullerManager.ForceClearPullerCache();
87 }
88 
~StatsLogProcessor()89 StatsLogProcessor::~StatsLogProcessor() {
90 }
91 
onAnomalyAlarmFired(const int64_t & timestampNs,unordered_set<sp<const InternalAlarm>,SpHash<InternalAlarm>> alarmSet)92 void StatsLogProcessor::onAnomalyAlarmFired(
93         const int64_t& timestampNs,
94         unordered_set<sp<const InternalAlarm>, SpHash<InternalAlarm>> alarmSet) {
95     std::lock_guard<std::mutex> lock(mMetricsMutex);
96     for (const auto& itr : mMetricsManagers) {
97         itr.second->onAnomalyAlarmFired(timestampNs, alarmSet);
98     }
99 }
onPeriodicAlarmFired(const int64_t & timestampNs,unordered_set<sp<const InternalAlarm>,SpHash<InternalAlarm>> alarmSet)100 void StatsLogProcessor::onPeriodicAlarmFired(
101         const int64_t& timestampNs,
102         unordered_set<sp<const InternalAlarm>, SpHash<InternalAlarm>> alarmSet) {
103 
104     std::lock_guard<std::mutex> lock(mMetricsMutex);
105     for (const auto& itr : mMetricsManagers) {
106         itr.second->onPeriodicAlarmFired(timestampNs, alarmSet);
107     }
108 }
109 
updateUid(Value * value,int hostUid)110 void updateUid(Value* value, int hostUid) {
111     int uid = value->int_value;
112     if (uid != hostUid) {
113         value->setInt(hostUid);
114     }
115 }
116 
mapIsolatedUidToHostUidIfNecessaryLocked(LogEvent * event) const117 void StatsLogProcessor::mapIsolatedUidToHostUidIfNecessaryLocked(LogEvent* event) const {
118     if (android::util::AtomsInfo::kAtomsWithAttributionChain.find(event->GetTagId()) !=
119         android::util::AtomsInfo::kAtomsWithAttributionChain.end()) {
120         for (auto& value : *(event->getMutableValues())) {
121             if (value.mField.getPosAtDepth(0) > kAttributionField) {
122                 break;
123             }
124             if (isAttributionUidField(value)) {
125                 const int hostUid = mUidMap->getHostUidOrSelf(value.mValue.int_value);
126                 updateUid(&value.mValue, hostUid);
127             }
128         }
129     } else {
130         auto it = android::util::AtomsInfo::kAtomsWithUidField.find(event->GetTagId());
131         if (it != android::util::AtomsInfo::kAtomsWithUidField.end()) {
132             int uidField = it->second;  // uidField is the field number in proto,
133                                         // starting from 1
134             if (uidField > 0 && (int)event->getValues().size() >= uidField &&
135                 (event->getValues())[uidField - 1].mValue.getType() == INT) {
136                 Value& value = (*event->getMutableValues())[uidField - 1].mValue;
137                 const int hostUid = mUidMap->getHostUidOrSelf(value.int_value);
138                 updateUid(&value, hostUid);
139             } else {
140                 ALOGE("Malformed log, uid not found. %s", event->ToString().c_str());
141             }
142         }
143     }
144 }
145 
onIsolatedUidChangedEventLocked(const LogEvent & event)146 void StatsLogProcessor::onIsolatedUidChangedEventLocked(const LogEvent& event) {
147     status_t err = NO_ERROR, err2 = NO_ERROR, err3 = NO_ERROR;
148     bool is_create = event.GetBool(3, &err);
149     auto parent_uid = int(event.GetLong(1, &err2));
150     auto isolated_uid = int(event.GetLong(2, &err3));
151     if (err == NO_ERROR && err2 == NO_ERROR && err3 == NO_ERROR) {
152         if (is_create) {
153             mUidMap->assignIsolatedUid(isolated_uid, parent_uid);
154         } else {
155             mUidMap->removeIsolatedUid(isolated_uid, parent_uid);
156         }
157     } else {
158         ALOGE("Failed to parse uid in the isolated uid change event.");
159     }
160 }
161 
OnLogEvent(LogEvent * event)162 void StatsLogProcessor::OnLogEvent(LogEvent* event) {
163     OnLogEvent(event, false);
164 }
165 
resetConfigs()166 void StatsLogProcessor::resetConfigs() {
167     std::lock_guard<std::mutex> lock(mMetricsMutex);
168     resetConfigsLocked(getElapsedRealtimeNs());
169 }
170 
resetConfigsLocked(const int64_t timestampNs)171 void StatsLogProcessor::resetConfigsLocked(const int64_t timestampNs) {
172     std::vector<ConfigKey> configKeys;
173     for (auto it = mMetricsManagers.begin(); it != mMetricsManagers.end(); it++) {
174         configKeys.push_back(it->first);
175     }
176     resetConfigsLocked(timestampNs, configKeys);
177 }
178 
OnLogEvent(LogEvent * event,bool reconnected)179 void StatsLogProcessor::OnLogEvent(LogEvent* event, bool reconnected) {
180     std::lock_guard<std::mutex> lock(mMetricsMutex);
181 
182 #ifdef VERY_VERBOSE_PRINTING
183     if (mPrintAllLogs) {
184         ALOGI("%s", event->ToString().c_str());
185     }
186 #endif
187     const int64_t currentTimestampNs = event->GetElapsedTimestampNs();
188 
189     if (reconnected && mLastTimestampSeen != 0) {
190         // LogReader tells us the connection has just been reset. Now we need
191         // to enter reconnection state to find the last CP.
192         mInReconnection = true;
193     }
194 
195     if (mInReconnection) {
196         // We see the checkpoint
197         if (currentTimestampNs == mLastTimestampSeen) {
198             mInReconnection = false;
199             // Found the CP. ignore this event, and we will start to read from next event.
200             return;
201         }
202         if (currentTimestampNs > mLargestTimestampSeen) {
203             // We see a new log but CP has not been found yet. Give up now.
204             mLogLossCount++;
205             mInReconnection = false;
206             StatsdStats::getInstance().noteLogLost(currentTimestampNs);
207             // Persist the data before we reset. Do we want this?
208             WriteDataToDiskLocked(CONFIG_RESET);
209             // We see fresher event before we see the checkpoint. We might have lost data.
210             // The best we can do is to reset.
211             resetConfigsLocked(currentTimestampNs);
212         } else {
213             // Still in search of the CP. Keep going.
214             return;
215         }
216     }
217 
218     mLogCount++;
219     mLastTimestampSeen = currentTimestampNs;
220     if (mLargestTimestampSeen < currentTimestampNs) {
221         mLargestTimestampSeen = currentTimestampNs;
222     }
223 
224     resetIfConfigTtlExpiredLocked(currentTimestampNs);
225 
226     StatsdStats::getInstance().noteAtomLogged(
227         event->GetTagId(), event->GetElapsedTimestampNs() / NS_PER_SEC);
228 
229     // Hard-coded logic to update the isolated uid's in the uid-map.
230     // The field numbers need to be currently updated by hand with atoms.proto
231     if (event->GetTagId() == android::util::ISOLATED_UID_CHANGED) {
232         onIsolatedUidChangedEventLocked(*event);
233     }
234 
235     if (mMetricsManagers.empty()) {
236         return;
237     }
238 
239     int64_t curTimeSec = getElapsedRealtimeSec();
240     if (curTimeSec - mLastPullerCacheClearTimeSec > StatsdStats::kPullerCacheClearIntervalSec) {
241         mStatsPullerManager.ClearPullerCacheIfNecessary(curTimeSec * NS_PER_SEC);
242         mLastPullerCacheClearTimeSec = curTimeSec;
243     }
244 
245 
246     if (event->GetTagId() != android::util::ISOLATED_UID_CHANGED) {
247         // Map the isolated uid to host uid if necessary.
248         mapIsolatedUidToHostUidIfNecessaryLocked(event);
249     }
250 
251     // pass the event to metrics managers.
252     for (auto& pair : mMetricsManagers) {
253         pair.second->onLogEvent(*event);
254         flushIfNecessaryLocked(event->GetElapsedTimestampNs(), pair.first, *(pair.second));
255     }
256 }
257 
OnConfigUpdated(const int64_t timestampNs,const ConfigKey & key,const StatsdConfig & config)258 void StatsLogProcessor::OnConfigUpdated(const int64_t timestampNs, const ConfigKey& key,
259                                         const StatsdConfig& config) {
260     std::lock_guard<std::mutex> lock(mMetricsMutex);
261     WriteDataToDiskLocked(key, timestampNs, CONFIG_UPDATED);
262     OnConfigUpdatedLocked(timestampNs, key, config);
263 }
264 
OnConfigUpdatedLocked(const int64_t timestampNs,const ConfigKey & key,const StatsdConfig & config)265 void StatsLogProcessor::OnConfigUpdatedLocked(
266         const int64_t timestampNs, const ConfigKey& key, const StatsdConfig& config) {
267     VLOG("Updated configuration for key %s", key.ToString().c_str());
268     sp<MetricsManager> newMetricsManager =
269         new MetricsManager(key, config, mTimeBaseNs, timestampNs, mUidMap,
270                            mAnomalyAlarmMonitor, mPeriodicAlarmMonitor);
271     if (newMetricsManager->isConfigValid()) {
272         mUidMap->OnConfigUpdated(key);
273         if (newMetricsManager->shouldAddUidMapListener()) {
274             // We have to add listener after the MetricsManager is constructed because it's
275             // not safe to create wp or sp from this pointer inside its constructor.
276             mUidMap->addListener(newMetricsManager.get());
277         }
278         newMetricsManager->refreshTtl(timestampNs);
279         mMetricsManagers[key] = newMetricsManager;
280         VLOG("StatsdConfig valid");
281     } else {
282         // If there is any error in the config, don't use it.
283         ALOGE("StatsdConfig NOT valid");
284     }
285 }
286 
GetMetricsSize(const ConfigKey & key) const287 size_t StatsLogProcessor::GetMetricsSize(const ConfigKey& key) const {
288     std::lock_guard<std::mutex> lock(mMetricsMutex);
289     auto it = mMetricsManagers.find(key);
290     if (it == mMetricsManagers.end()) {
291         ALOGW("Config source %s does not exist", key.ToString().c_str());
292         return 0;
293     }
294     return it->second->byteSize();
295 }
296 
dumpStates(FILE * out,bool verbose)297 void StatsLogProcessor::dumpStates(FILE* out, bool verbose) {
298     std::lock_guard<std::mutex> lock(mMetricsMutex);
299     fprintf(out, "MetricsManager count: %lu\n", (unsigned long)mMetricsManagers.size());
300     for (auto metricsManager : mMetricsManagers) {
301         metricsManager.second->dumpStates(out, verbose);
302     }
303 }
304 
305 /*
306  * onDumpReport dumps serialized ConfigMetricsReportList into outData.
307  */
onDumpReport(const ConfigKey & key,const int64_t dumpTimeStampNs,const bool include_current_partial_bucket,const DumpReportReason dumpReportReason,vector<uint8_t> * outData)308 void StatsLogProcessor::onDumpReport(const ConfigKey& key, const int64_t dumpTimeStampNs,
309                                      const bool include_current_partial_bucket,
310                                      const DumpReportReason dumpReportReason,
311                                      vector<uint8_t>* outData) {
312     std::lock_guard<std::mutex> lock(mMetricsMutex);
313 
314     ProtoOutputStream proto;
315 
316     // Start of ConfigKey.
317     uint64_t configKeyToken = proto.start(FIELD_TYPE_MESSAGE | FIELD_ID_CONFIG_KEY);
318     proto.write(FIELD_TYPE_INT32 | FIELD_ID_UID, key.GetUid());
319     proto.write(FIELD_TYPE_INT64 | FIELD_ID_ID, (long long)key.GetId());
320     proto.end(configKeyToken);
321     // End of ConfigKey.
322 
323     // Then, check stats-data directory to see there's any file containing
324     // ConfigMetricsReport from previous shutdowns to concatenate to reports.
325     StorageManager::appendConfigMetricsReport(key, &proto);
326 
327     auto it = mMetricsManagers.find(key);
328     if (it != mMetricsManagers.end()) {
329         // This allows another broadcast to be sent within the rate-limit period if we get close to
330         // filling the buffer again soon.
331         mLastBroadcastTimes.erase(key);
332 
333         // Start of ConfigMetricsReport (reports).
334         uint64_t reportsToken =
335                 proto.start(FIELD_TYPE_MESSAGE | FIELD_COUNT_REPEATED | FIELD_ID_REPORTS);
336         onConfigMetricsReportLocked(key, dumpTimeStampNs, include_current_partial_bucket,
337                                     dumpReportReason, &proto);
338         proto.end(reportsToken);
339         // End of ConfigMetricsReport (reports).
340     } else {
341         ALOGW("Config source %s does not exist", key.ToString().c_str());
342     }
343 
344     if (outData != nullptr) {
345         outData->clear();
346         outData->resize(proto.size());
347         size_t pos = 0;
348         auto iter = proto.data();
349         while (iter.readBuffer() != NULL) {
350             size_t toRead = iter.currentToRead();
351             std::memcpy(&((*outData)[pos]), iter.readBuffer(), toRead);
352             pos += toRead;
353             iter.rp()->move(toRead);
354         }
355     }
356 
357     StatsdStats::getInstance().noteMetricsReportSent(key, proto.size());
358 }
359 
360 /*
361  * onConfigMetricsReportLocked dumps serialized ConfigMetricsReport into outData.
362  */
onConfigMetricsReportLocked(const ConfigKey & key,const int64_t dumpTimeStampNs,const bool include_current_partial_bucket,const DumpReportReason dumpReportReason,ProtoOutputStream * proto)363 void StatsLogProcessor::onConfigMetricsReportLocked(const ConfigKey& key,
364                                                     const int64_t dumpTimeStampNs,
365                                                     const bool include_current_partial_bucket,
366                                                     const DumpReportReason dumpReportReason,
367                                                     ProtoOutputStream* proto) {
368     // We already checked whether key exists in mMetricsManagers in
369     // WriteDataToDisk.
370     auto it = mMetricsManagers.find(key);
371     if (it == mMetricsManagers.end()) {
372         return;
373     }
374     int64_t lastReportTimeNs = it->second->getLastReportTimeNs();
375     int64_t lastReportWallClockNs = it->second->getLastReportWallClockNs();
376 
377     std::set<string> str_set;
378 
379     // First, fill in ConfigMetricsReport using current data on memory, which
380     // starts from filling in StatsLogReport's.
381     it->second->onDumpReport(dumpTimeStampNs, include_current_partial_bucket,
382                              &str_set, proto);
383 
384     // Fill in UidMap if there is at least one metric to report.
385     // This skips the uid map if it's an empty config.
386     if (it->second->getNumMetrics() > 0) {
387         uint64_t uidMapToken = proto->start(FIELD_TYPE_MESSAGE | FIELD_ID_UID_MAP);
388         if (it->second->hashStringInReport()) {
389             mUidMap->appendUidMap(dumpTimeStampNs, key, &str_set, proto);
390         } else {
391             mUidMap->appendUidMap(dumpTimeStampNs, key, nullptr, proto);
392         }
393         proto->end(uidMapToken);
394     }
395 
396     // Fill in the timestamps.
397     proto->write(FIELD_TYPE_INT64 | FIELD_ID_LAST_REPORT_ELAPSED_NANOS,
398                 (long long)lastReportTimeNs);
399     proto->write(FIELD_TYPE_INT64 | FIELD_ID_CURRENT_REPORT_ELAPSED_NANOS,
400                 (long long)dumpTimeStampNs);
401     proto->write(FIELD_TYPE_INT64 | FIELD_ID_LAST_REPORT_WALL_CLOCK_NANOS,
402                 (long long)lastReportWallClockNs);
403     proto->write(FIELD_TYPE_INT64 | FIELD_ID_CURRENT_REPORT_WALL_CLOCK_NANOS,
404                 (long long)getWallClockNs());
405     // Dump report reason
406     proto->write(FIELD_TYPE_INT32 | FIELD_ID_DUMP_REPORT_REASON, dumpReportReason);
407 
408     for (const auto& str : str_set) {
409         proto->write(FIELD_TYPE_STRING | FIELD_COUNT_REPEATED | FIELD_ID_STRINGS, str);
410     }
411 }
412 
resetConfigsLocked(const int64_t timestampNs,const std::vector<ConfigKey> & configs)413 void StatsLogProcessor::resetConfigsLocked(const int64_t timestampNs,
414                                            const std::vector<ConfigKey>& configs) {
415     for (const auto& key : configs) {
416         StatsdConfig config;
417         if (StorageManager::readConfigFromDisk(key, &config)) {
418             OnConfigUpdatedLocked(timestampNs, key, config);
419             StatsdStats::getInstance().noteConfigReset(key);
420         } else {
421             ALOGE("Failed to read backup config from disk for : %s", key.ToString().c_str());
422             auto it = mMetricsManagers.find(key);
423             if (it != mMetricsManagers.end()) {
424                 it->second->refreshTtl(timestampNs);
425             }
426         }
427     }
428 }
429 
resetIfConfigTtlExpiredLocked(const int64_t timestampNs)430 void StatsLogProcessor::resetIfConfigTtlExpiredLocked(const int64_t timestampNs) {
431     std::vector<ConfigKey> configKeysTtlExpired;
432     for (auto it = mMetricsManagers.begin(); it != mMetricsManagers.end(); it++) {
433         if (it->second != nullptr && !it->second->isInTtl(timestampNs)) {
434             configKeysTtlExpired.push_back(it->first);
435         }
436     }
437     if (configKeysTtlExpired.size() > 0) {
438         WriteDataToDiskLocked(CONFIG_RESET);
439         resetConfigsLocked(timestampNs, configKeysTtlExpired);
440     }
441 }
442 
OnConfigRemoved(const ConfigKey & key)443 void StatsLogProcessor::OnConfigRemoved(const ConfigKey& key) {
444     std::lock_guard<std::mutex> lock(mMetricsMutex);
445     auto it = mMetricsManagers.find(key);
446     if (it != mMetricsManagers.end()) {
447         WriteDataToDiskLocked(key, getElapsedRealtimeNs(), CONFIG_REMOVED);
448         mMetricsManagers.erase(it);
449         mUidMap->OnConfigRemoved(key);
450     }
451     StatsdStats::getInstance().noteConfigRemoved(key);
452 
453     mLastBroadcastTimes.erase(key);
454 
455     if (mMetricsManagers.empty()) {
456         mStatsPullerManager.ForceClearPullerCache();
457     }
458 }
459 
flushIfNecessaryLocked(int64_t timestampNs,const ConfigKey & key,MetricsManager & metricsManager)460 void StatsLogProcessor::flushIfNecessaryLocked(
461     int64_t timestampNs, const ConfigKey& key, MetricsManager& metricsManager) {
462     auto lastCheckTime = mLastByteSizeTimes.find(key);
463     if (lastCheckTime != mLastByteSizeTimes.end()) {
464         if (timestampNs - lastCheckTime->second < StatsdStats::kMinByteSizeCheckPeriodNs) {
465             return;
466         }
467     }
468 
469     // We suspect that the byteSize() computation is expensive, so we set a rate limit.
470     size_t totalBytes = metricsManager.byteSize();
471     mLastByteSizeTimes[key] = timestampNs;
472     bool requestDump = false;
473     if (totalBytes >
474         StatsdStats::kMaxMetricsBytesPerConfig) {  // Too late. We need to start clearing data.
475         metricsManager.dropData(timestampNs);
476         StatsdStats::getInstance().noteDataDropped(key);
477         VLOG("StatsD had to toss out metrics for %s", key.ToString().c_str());
478     } else if ((totalBytes > StatsdStats::kBytesPerConfigTriggerGetData) ||
479                (mOnDiskDataConfigs.find(key) != mOnDiskDataConfigs.end())) {
480         // Request to send a broadcast if:
481         // 1. in memory data > threshold   OR
482         // 2. config has old data report on disk.
483         requestDump = true;
484     }
485 
486     if (requestDump) {
487         // Send broadcast so that receivers can pull data.
488         auto lastBroadcastTime = mLastBroadcastTimes.find(key);
489         if (lastBroadcastTime != mLastBroadcastTimes.end()) {
490             if (timestampNs - lastBroadcastTime->second < StatsdStats::kMinBroadcastPeriodNs) {
491                 VLOG("StatsD would've sent a broadcast but the rate limit stopped us.");
492                 return;
493             }
494         }
495         if (mSendBroadcast(key)) {
496             mOnDiskDataConfigs.erase(key);
497             VLOG("StatsD triggered data fetch for %s", key.ToString().c_str());
498             mLastBroadcastTimes[key] = timestampNs;
499             StatsdStats::getInstance().noteBroadcastSent(key);
500         }
501     }
502 }
503 
WriteDataToDiskLocked(const ConfigKey & key,const int64_t timestampNs,const DumpReportReason dumpReportReason)504 void StatsLogProcessor::WriteDataToDiskLocked(const ConfigKey& key,
505                                               const int64_t timestampNs,
506                                               const DumpReportReason dumpReportReason) {
507     if (mMetricsManagers.find(key) == mMetricsManagers.end() ||
508         !mMetricsManagers.find(key)->second->shouldWriteToDisk()) {
509         return;
510     }
511     ProtoOutputStream proto;
512     onConfigMetricsReportLocked(key, timestampNs, true /* include_current_partial_bucket*/,
513                                 dumpReportReason, &proto);
514     string file_name = StringPrintf("%s/%ld_%d_%lld", STATS_DATA_DIR,
515          (long)getWallClockSec(), key.GetUid(), (long long)key.GetId());
516     android::base::unique_fd fd(open(file_name.c_str(),
517                                 O_WRONLY | O_CREAT | O_CLOEXEC, S_IRUSR | S_IWUSR));
518     if (fd == -1) {
519         ALOGE("Attempt to write %s but failed", file_name.c_str());
520         return;
521     }
522     proto.flush(fd.get());
523     // We were able to write the ConfigMetricsReport to disk, so we should trigger collection ASAP.
524     mOnDiskDataConfigs.insert(key);
525 }
526 
WriteDataToDiskLocked(const DumpReportReason dumpReportReason)527 void StatsLogProcessor::WriteDataToDiskLocked(const DumpReportReason dumpReportReason) {
528     const int64_t timeNs = getElapsedRealtimeNs();
529     for (auto& pair : mMetricsManagers) {
530         WriteDataToDiskLocked(pair.first, timeNs, dumpReportReason);
531     }
532 }
533 
WriteDataToDisk(const DumpReportReason dumpReportReason)534 void StatsLogProcessor::WriteDataToDisk(const DumpReportReason dumpReportReason) {
535     std::lock_guard<std::mutex> lock(mMetricsMutex);
536     WriteDataToDiskLocked(dumpReportReason);
537 }
538 
informPullAlarmFired(const int64_t timestampNs)539 void StatsLogProcessor::informPullAlarmFired(const int64_t timestampNs) {
540     std::lock_guard<std::mutex> lock(mMetricsMutex);
541     mStatsPullerManager.OnAlarmFired(timestampNs);
542 }
543 
getLastReportTimeNs(const ConfigKey & key)544 int64_t StatsLogProcessor::getLastReportTimeNs(const ConfigKey& key) {
545     auto it = mMetricsManagers.find(key);
546     if (it == mMetricsManagers.end()) {
547         return 0;
548     } else {
549         return it->second->getLastReportTimeNs();
550     }
551 }
552 
noteOnDiskData(const ConfigKey & key)553 void StatsLogProcessor::noteOnDiskData(const ConfigKey& key) {
554     std::lock_guard<std::mutex> lock(mMetricsMutex);
555     mOnDiskDataConfigs.insert(key);
556 }
557 
558 }  // namespace statsd
559 }  // namespace os
560 }  // namespace android
561