1 /*
2 * Copyright (C) 2016 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 // The bootstat command provides options to persist boot events with the current
18 // timestamp, dump the persisted events, and log all events to EventLog to be
19 // uploaded to Android log storage via Tron.
20
21 #include <getopt.h>
22 #include <unistd.h>
23
24 #include <chrono>
25 #include <cmath>
26 #include <cstddef>
27 #include <cstdio>
28 #include <ctime>
29 #include <map>
30 #include <memory>
31 #include <string>
32 #include <vector>
33
34 #include <android-base/chrono_utils.h>
35 #include <android-base/logging.h>
36 #include <android-base/parseint.h>
37 #include <android-base/strings.h>
38 #include <android/log.h>
39 #include <cutils/properties.h>
40 #include <metricslogger/metrics_logger.h>
41
42 #include "boot_event_record_store.h"
43
44 namespace {
45
46 // Scans the boot event record store for record files and logs each boot event
47 // via EventLog.
LogBootEvents()48 void LogBootEvents() {
49 BootEventRecordStore boot_event_store;
50
51 auto events = boot_event_store.GetAllBootEvents();
52 for (auto i = events.cbegin(); i != events.cend(); ++i) {
53 android::metricslogger::LogHistogram(i->first, i->second);
54 }
55 }
56
57 // Records the named boot |event| to the record store. If |value| is non-empty
58 // and is a proper string representation of an integer value, the converted
59 // integer value is associated with the boot event.
RecordBootEventFromCommandLine(const std::string & event,const std::string & value_str)60 void RecordBootEventFromCommandLine(
61 const std::string& event, const std::string& value_str) {
62 BootEventRecordStore boot_event_store;
63 if (!value_str.empty()) {
64 int32_t value = 0;
65 if (android::base::ParseInt(value_str, &value)) {
66 boot_event_store.AddBootEventWithValue(event, value);
67 }
68 } else {
69 boot_event_store.AddBootEvent(event);
70 }
71 }
72
PrintBootEvents()73 void PrintBootEvents() {
74 printf("Boot events:\n");
75 printf("------------\n");
76
77 BootEventRecordStore boot_event_store;
78 auto events = boot_event_store.GetAllBootEvents();
79 for (auto i = events.cbegin(); i != events.cend(); ++i) {
80 printf("%s\t%d\n", i->first.c_str(), i->second);
81 }
82 }
83
ShowHelp(const char * cmd)84 void ShowHelp(const char *cmd) {
85 fprintf(stderr, "Usage: %s [options]\n", cmd);
86 fprintf(stderr,
87 "options include:\n"
88 " -h, --help Show this help\n"
89 " -l, --log Log all metrics to logstorage\n"
90 " -p, --print Dump the boot event records to the console\n"
91 " -r, --record Record the timestamp of a named boot event\n"
92 " --value Optional value to associate with the boot event\n"
93 " --record_boot_complete Record metrics related to the time for the device boot\n"
94 " --record_boot_reason Record the reason why the device booted\n"
95 " --record_time_since_factory_reset Record the time since the device was reset\n");
96 }
97
98 // Constructs a readable, printable string from the givencommand line
99 // arguments.
GetCommandLine(int argc,char ** argv)100 std::string GetCommandLine(int argc, char **argv) {
101 std::string cmd;
102 for (int i = 0; i < argc; ++i) {
103 cmd += argv[i];
104 cmd += " ";
105 }
106
107 return cmd;
108 }
109
110 // Convenience wrapper over the property API that returns an
111 // std::string.
GetProperty(const char * key)112 std::string GetProperty(const char* key) {
113 std::vector<char> temp(PROPERTY_VALUE_MAX);
114 const int len = property_get(key, &temp[0], nullptr);
115 if (len < 0) {
116 return "";
117 }
118 return std::string(&temp[0], len);
119 }
120
121 constexpr int32_t kUnknownBootReason = 1;
122
123 // A mapping from boot reason string, as read from the ro.boot.bootreason
124 // system property, to a unique integer ID. Viewers of log data dashboards for
125 // the boot_reason metric may refer to this mapping to discern the histogram
126 // values.
127 const std::map<std::string, int32_t> kBootReasonMap = {
128 {"unknown", kUnknownBootReason},
129 {"normal", 2},
130 {"recovery", 3},
131 {"reboot", 4},
132 {"PowerKey", 5},
133 {"hard_reset", 6},
134 {"kernel_panic", 7},
135 {"rpm_err", 8},
136 {"hw_reset", 9},
137 {"tz_err", 10},
138 {"adsp_err", 11},
139 {"modem_err", 12},
140 {"mba_err", 13},
141 {"Watchdog", 14},
142 {"Panic", 15},
143 {"power_key", 16},
144 {"power_on", 17},
145 {"Reboot", 18},
146 {"rtc", 19},
147 {"edl", 20},
148 {"oem_pon1", 21},
149 {"oem_powerkey", 22},
150 {"oem_unknown_reset", 23},
151 {"srto: HWWDT reset SC", 24},
152 {"srto: HWWDT reset platform", 25},
153 {"srto: bootloader", 26},
154 {"srto: kernel panic", 27},
155 {"srto: kernel watchdog reset", 28},
156 {"srto: normal", 29},
157 {"srto: reboot", 30},
158 {"srto: reboot-bootloader", 31},
159 {"srto: security watchdog reset", 32},
160 {"srto: wakesrc", 33},
161 {"srto: watchdog", 34},
162 {"srto:1-1", 35},
163 {"srto:omap_hsmm", 36},
164 {"srto:phy0", 37},
165 {"srto:rtc0", 38},
166 {"srto:touchpad", 39},
167 {"watchdog", 40},
168 {"watchdogr", 41},
169 {"wdog_bark", 42},
170 {"wdog_bite", 43},
171 {"wdog_reset", 44},
172 {"shutdown,", 45}, // Trailing comma is intentional.
173 {"shutdown,userrequested", 46},
174 {"reboot,bootloader", 47},
175 {"reboot,cold", 48},
176 {"reboot,recovery", 49},
177 {"thermal_shutdown", 50},
178 {"s3_wakeup", 51}
179 };
180
181 // Converts a string value representing the reason the system booted to an
182 // integer representation. This is necessary for logging the boot_reason metric
183 // via Tron, which does not accept non-integer buckets in histograms.
BootReasonStrToEnum(const std::string & boot_reason)184 int32_t BootReasonStrToEnum(const std::string& boot_reason) {
185 auto mapping = kBootReasonMap.find(boot_reason);
186 if (mapping != kBootReasonMap.end()) {
187 return mapping->second;
188 }
189
190 LOG(INFO) << "Unknown boot reason: " << boot_reason;
191 return kUnknownBootReason;
192 }
193
194 // Returns the appropriate metric key prefix for the boot_complete metric such
195 // that boot metrics after a system update are labeled as ota_boot_complete;
196 // otherwise, they are labeled as boot_complete. This method encapsulates the
197 // bookkeeping required to track when a system update has occurred by storing
198 // the UTC timestamp of the system build date and comparing against the current
199 // system build date.
CalculateBootCompletePrefix()200 std::string CalculateBootCompletePrefix() {
201 static const std::string kBuildDateKey = "build_date";
202 std::string boot_complete_prefix = "boot_complete";
203
204 std::string build_date_str = GetProperty("ro.build.date.utc");
205 int32_t build_date;
206 if (!android::base::ParseInt(build_date_str, &build_date)) {
207 return std::string();
208 }
209
210 BootEventRecordStore boot_event_store;
211 BootEventRecordStore::BootEventRecord record;
212 if (!boot_event_store.GetBootEvent(kBuildDateKey, &record)) {
213 boot_complete_prefix = "factory_reset_" + boot_complete_prefix;
214 boot_event_store.AddBootEventWithValue(kBuildDateKey, build_date);
215 } else if (build_date != record.second) {
216 boot_complete_prefix = "ota_" + boot_complete_prefix;
217 boot_event_store.AddBootEventWithValue(kBuildDateKey, build_date);
218 }
219
220 return boot_complete_prefix;
221 }
222
223 // Records the value of a given ro.boottime.init property in milliseconds.
RecordInitBootTimeProp(BootEventRecordStore * boot_event_store,const char * property)224 void RecordInitBootTimeProp(
225 BootEventRecordStore* boot_event_store, const char* property) {
226 std::string value = GetProperty(property);
227
228 int32_t time_in_ms;
229 if (android::base::ParseInt(value, &time_in_ms)) {
230 boot_event_store->AddBootEventWithValue(property, time_in_ms);
231 }
232 }
233
234 // A map from bootloader timing stage to the time that stage took during boot.
235 typedef std::map<std::string, int32_t> BootloaderTimingMap;
236
237 // Returns a mapping from bootloader stage names to the time those stages
238 // took to boot.
GetBootLoaderTimings()239 const BootloaderTimingMap GetBootLoaderTimings() {
240 BootloaderTimingMap timings;
241
242 // |ro.boot.boottime| is of the form 'stage1:time1,...,stageN:timeN',
243 // where timeN is in milliseconds.
244 std::string value = GetProperty("ro.boot.boottime");
245 if (value.empty()) {
246 // ro.boot.boottime is not reported on all devices.
247 return BootloaderTimingMap();
248 }
249
250 auto stages = android::base::Split(value, ",");
251 for (const auto& stageTiming : stages) {
252 // |stageTiming| is of the form 'stage:time'.
253 auto stageTimingValues = android::base::Split(stageTiming, ":");
254 DCHECK_EQ(2U, stageTimingValues.size());
255
256 std::string stageName = stageTimingValues[0];
257 int32_t time_ms;
258 if (android::base::ParseInt(stageTimingValues[1], &time_ms)) {
259 timings[stageName] = time_ms;
260 }
261 }
262
263 return timings;
264 }
265
266 // Parses and records the set of bootloader stages and associated boot times
267 // from the ro.boot.boottime system property.
RecordBootloaderTimings(BootEventRecordStore * boot_event_store,const BootloaderTimingMap & bootloader_timings)268 void RecordBootloaderTimings(BootEventRecordStore* boot_event_store,
269 const BootloaderTimingMap& bootloader_timings) {
270 int32_t total_time = 0;
271 for (const auto& timing : bootloader_timings) {
272 total_time += timing.second;
273 boot_event_store->AddBootEventWithValue("boottime.bootloader." + timing.first, timing.second);
274 }
275
276 boot_event_store->AddBootEventWithValue("boottime.bootloader.total", total_time);
277 }
278
279 // Records the closest estimation to the absolute device boot time, i.e.,
280 // from power on to boot_complete, including bootloader times.
RecordAbsoluteBootTime(BootEventRecordStore * boot_event_store,const BootloaderTimingMap & bootloader_timings,std::chrono::milliseconds uptime)281 void RecordAbsoluteBootTime(BootEventRecordStore* boot_event_store,
282 const BootloaderTimingMap& bootloader_timings,
283 std::chrono::milliseconds uptime) {
284 int32_t bootloader_time_ms = 0;
285
286 for (const auto& timing : bootloader_timings) {
287 if (timing.first.compare("SW") != 0) {
288 bootloader_time_ms += timing.second;
289 }
290 }
291
292 auto bootloader_duration = std::chrono::milliseconds(bootloader_time_ms);
293 auto absolute_total =
294 std::chrono::duration_cast<std::chrono::seconds>(bootloader_duration + uptime);
295 boot_event_store->AddBootEventWithValue("absolute_boot_time", absolute_total.count());
296 }
297
298 // Records several metrics related to the time it takes to boot the device,
299 // including disambiguating boot time on encrypted or non-encrypted devices.
RecordBootComplete()300 void RecordBootComplete() {
301 BootEventRecordStore boot_event_store;
302 BootEventRecordStore::BootEventRecord record;
303
304 auto time_since_epoch = android::base::boot_clock::now().time_since_epoch();
305 auto uptime = std::chrono::duration_cast<std::chrono::seconds>(time_since_epoch);
306 time_t current_time_utc = time(nullptr);
307
308 if (boot_event_store.GetBootEvent("last_boot_time_utc", &record)) {
309 time_t last_boot_time_utc = record.second;
310 time_t time_since_last_boot = difftime(current_time_utc,
311 last_boot_time_utc);
312 boot_event_store.AddBootEventWithValue("time_since_last_boot",
313 time_since_last_boot);
314 }
315
316 boot_event_store.AddBootEventWithValue("last_boot_time_utc", current_time_utc);
317
318 // The boot_complete metric has two variants: boot_complete and
319 // ota_boot_complete. The latter signifies that the device is booting after
320 // a system update.
321 std::string boot_complete_prefix = CalculateBootCompletePrefix();
322 if (boot_complete_prefix.empty()) {
323 // The system is hosed because the build date property could not be read.
324 return;
325 }
326
327 // post_decrypt_time_elapsed is only logged on encrypted devices.
328 if (boot_event_store.GetBootEvent("post_decrypt_time_elapsed", &record)) {
329 // Log the amount of time elapsed until the device is decrypted, which
330 // includes the variable amount of time the user takes to enter the
331 // decryption password.
332 boot_event_store.AddBootEventWithValue("boot_decryption_complete", uptime.count());
333
334 // Subtract the decryption time to normalize the boot cycle timing.
335 std::chrono::seconds boot_complete = std::chrono::seconds(uptime.count() - record.second);
336 boot_event_store.AddBootEventWithValue(boot_complete_prefix + "_post_decrypt",
337 boot_complete.count());
338 } else {
339 boot_event_store.AddBootEventWithValue(boot_complete_prefix + "_no_encryption",
340 uptime.count());
341 }
342
343 // Record the total time from device startup to boot complete, regardless of
344 // encryption state.
345 boot_event_store.AddBootEventWithValue(boot_complete_prefix, uptime.count());
346
347 RecordInitBootTimeProp(&boot_event_store, "ro.boottime.init");
348 RecordInitBootTimeProp(&boot_event_store, "ro.boottime.init.selinux");
349 RecordInitBootTimeProp(&boot_event_store, "ro.boottime.init.cold_boot_wait");
350
351 const BootloaderTimingMap bootloader_timings = GetBootLoaderTimings();
352 RecordBootloaderTimings(&boot_event_store, bootloader_timings);
353
354 auto uptime_ms = std::chrono::duration_cast<std::chrono::milliseconds>(time_since_epoch);
355 RecordAbsoluteBootTime(&boot_event_store, bootloader_timings, uptime_ms);
356 }
357
358 // Records the boot_reason metric by querying the ro.boot.bootreason system
359 // property.
RecordBootReason()360 void RecordBootReason() {
361 std::string boot_reason_str = GetProperty("ro.boot.bootreason");
362 android::metricslogger::LogMultiAction(android::metricslogger::ACTION_BOOT,
363 android::metricslogger::FIELD_PLATFORM_REASON,
364 boot_reason_str);
365
366 int32_t boot_reason = BootReasonStrToEnum(boot_reason_str);
367 BootEventRecordStore boot_event_store;
368 boot_event_store.AddBootEventWithValue("boot_reason", boot_reason);
369 }
370
371 // Records two metrics related to the user resetting a device: the time at
372 // which the device is reset, and the time since the user last reset the
373 // device. The former is only set once per-factory reset.
RecordFactoryReset()374 void RecordFactoryReset() {
375 BootEventRecordStore boot_event_store;
376 BootEventRecordStore::BootEventRecord record;
377
378 time_t current_time_utc = time(nullptr);
379
380 if (current_time_utc < 0) {
381 // UMA does not display negative values in buckets, so convert to positive.
382 android::metricslogger::LogHistogram(
383 "factory_reset_current_time_failure", std::abs(current_time_utc));
384
385 // Logging via BootEventRecordStore to see if using android::metricslogger::LogHistogram
386 // is losing records somehow.
387 boot_event_store.AddBootEventWithValue(
388 "factory_reset_current_time_failure", std::abs(current_time_utc));
389 return;
390 } else {
391 android::metricslogger::LogHistogram("factory_reset_current_time", current_time_utc);
392
393 // Logging via BootEventRecordStore to see if using android::metricslogger::LogHistogram
394 // is losing records somehow.
395 boot_event_store.AddBootEventWithValue(
396 "factory_reset_current_time", current_time_utc);
397 }
398
399 // The factory_reset boot event does not exist after the device is reset, so
400 // use this signal to mark the time of the factory reset.
401 if (!boot_event_store.GetBootEvent("factory_reset", &record)) {
402 boot_event_store.AddBootEventWithValue("factory_reset", current_time_utc);
403
404 // Don't log the time_since_factory_reset until some time has elapsed.
405 // The data is not meaningful yet and skews the histogram buckets.
406 return;
407 }
408
409 // Calculate and record the difference in time between now and the
410 // factory_reset time.
411 time_t factory_reset_utc = record.second;
412 android::metricslogger::LogHistogram("factory_reset_record_value", factory_reset_utc);
413
414 // Logging via BootEventRecordStore to see if using android::metricslogger::LogHistogram
415 // is losing records somehow.
416 boot_event_store.AddBootEventWithValue(
417 "factory_reset_record_value", factory_reset_utc);
418
419 time_t time_since_factory_reset = difftime(current_time_utc,
420 factory_reset_utc);
421 boot_event_store.AddBootEventWithValue("time_since_factory_reset",
422 time_since_factory_reset);
423 }
424
425 } // namespace
426
main(int argc,char ** argv)427 int main(int argc, char **argv) {
428 android::base::InitLogging(argv);
429
430 const std::string cmd_line = GetCommandLine(argc, argv);
431 LOG(INFO) << "Service started: " << cmd_line;
432
433 int option_index = 0;
434 static const char value_str[] = "value";
435 static const char boot_complete_str[] = "record_boot_complete";
436 static const char boot_reason_str[] = "record_boot_reason";
437 static const char factory_reset_str[] = "record_time_since_factory_reset";
438 static const struct option long_options[] = {
439 { "help", no_argument, NULL, 'h' },
440 { "log", no_argument, NULL, 'l' },
441 { "print", no_argument, NULL, 'p' },
442 { "record", required_argument, NULL, 'r' },
443 { value_str, required_argument, NULL, 0 },
444 { boot_complete_str, no_argument, NULL, 0 },
445 { boot_reason_str, no_argument, NULL, 0 },
446 { factory_reset_str, no_argument, NULL, 0 },
447 { NULL, 0, NULL, 0 }
448 };
449
450 std::string boot_event;
451 std::string value;
452 int opt = 0;
453 while ((opt = getopt_long(argc, argv, "hlpr:", long_options, &option_index)) != -1) {
454 switch (opt) {
455 // This case handles long options which have no single-character mapping.
456 case 0: {
457 const std::string option_name = long_options[option_index].name;
458 if (option_name == value_str) {
459 // |optarg| is an external variable set by getopt representing
460 // the option argument.
461 value = optarg;
462 } else if (option_name == boot_complete_str) {
463 RecordBootComplete();
464 } else if (option_name == boot_reason_str) {
465 RecordBootReason();
466 } else if (option_name == factory_reset_str) {
467 RecordFactoryReset();
468 } else {
469 LOG(ERROR) << "Invalid option: " << option_name;
470 }
471 break;
472 }
473
474 case 'h': {
475 ShowHelp(argv[0]);
476 break;
477 }
478
479 case 'l': {
480 LogBootEvents();
481 break;
482 }
483
484 case 'p': {
485 PrintBootEvents();
486 break;
487 }
488
489 case 'r': {
490 // |optarg| is an external variable set by getopt representing
491 // the option argument.
492 boot_event = optarg;
493 break;
494 }
495
496 default: {
497 DCHECK_EQ(opt, '?');
498
499 // |optopt| is an external variable set by getopt representing
500 // the value of the invalid option.
501 LOG(ERROR) << "Invalid option: " << optopt;
502 ShowHelp(argv[0]);
503 return EXIT_FAILURE;
504 }
505 }
506 }
507
508 if (!boot_event.empty()) {
509 RecordBootEventFromCommandLine(boot_event, value);
510 }
511
512 return 0;
513 }
514