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 #include "src/traced/probes/ftrace/proto_translation_table.h"
18
19 #include <regex.h>
20 #include <sys/utsname.h>
21
22 #include <algorithm>
23
24 #include "perfetto/base/string_utils.h"
25 #include "perfetto/protozero/proto_utils.h"
26 #include "src/traced/probes/ftrace/event_info.h"
27 #include "src/traced/probes/ftrace/ftrace_procfs.h"
28
29 #include "perfetto/trace/ftrace/ftrace_event.pbzero.h"
30 #include "perfetto/trace/ftrace/ftrace_event_bundle.pbzero.h"
31 #include "perfetto/trace/ftrace/generic.pbzero.h"
32
33 namespace perfetto {
34
35 namespace {
36
37 using protozero::proto_utils::ProtoSchemaType;
38 using protos::pbzero::GenericFtraceEvent;
39
MakeFtracePageHeaderSpec(const std::vector<FtraceEvent::Field> & fields)40 ProtoTranslationTable::FtracePageHeaderSpec MakeFtracePageHeaderSpec(
41 const std::vector<FtraceEvent::Field>& fields) {
42 ProtoTranslationTable::FtracePageHeaderSpec spec;
43 for (const FtraceEvent::Field& field : fields) {
44 std::string name = GetNameFromTypeAndName(field.type_and_name);
45 if (name == "timestamp")
46 spec.timestamp = field;
47 else if (name == "commit")
48 spec.size = field;
49 else if (name == "overwrite")
50 spec.overwrite = field;
51 else if (name != "data")
52 PERFETTO_DFATAL("Invalid field in header spec: %s", name.c_str());
53 }
54 return spec;
55 }
56
57 // Fallback used when the "header_page" is not readable.
58 // It uses a hard-coded header_page. The only caveat is that the size of the
59 // |commit| field depends on the kernel bit-ness. This function tries to infer
60 // that from the uname() and if that fails assumes that the kernel bitness
61 // matches the userspace bitness.
GuessFtracePageHeaderSpec()62 ProtoTranslationTable::FtracePageHeaderSpec GuessFtracePageHeaderSpec() {
63 ProtoTranslationTable::FtracePageHeaderSpec spec{};
64 #if PERFETTO_BUILDFLAG(PERFETTO_OS_ANDROID) && __i386__
65 // local_t is arch-specific and models the largest size of an integer that is
66 // still atomic across bus transactions, exceptions and IRQ. On android x86
67 // this is always size 8
68 uint16_t commit_size = 8;
69 #else
70 uint16_t commit_size = sizeof(long);
71
72 struct utsname sysinfo;
73 // If user space is 32-bit check the kernel to verify.
74 if (commit_size < 8 && uname(&sysinfo) == 0) {
75 // Arm returns armv# for its machine type. The first (and only currently)
76 // arm processor that supports 64bit is the armv8 series.
77 commit_size = strstr(sysinfo.machine, "64") ||
78 strstr(sysinfo.machine, "armv8") ? 8 : 4;
79 }
80 #endif
81
82 // header_page typically looks as follows on a 64-bit kernel:
83 // field: u64 timestamp; offset:0; size:8; signed:0;
84 // field: local_t commit; offset:8; size:8; signed:1;
85 // field: int overwrite; offset:8; size:1; signed:1;
86 // field: char data; offset:16; size:4080; signed:0;
87 //
88 // On a 32-bit kernel local_t is 32-bit wide and data starts @ offset 12.
89
90 spec.timestamp = FtraceEvent::Field{"u64 timestamp", 0, 8, 0};
91 spec.size = FtraceEvent::Field{"local_t commit", 8, commit_size, 1};
92 spec.overwrite = FtraceEvent::Field{"int overwrite", 8, 1, 1};
93 return spec;
94 }
95
BuildEventsVector(const std::vector<Event> & events)96 const std::vector<Event> BuildEventsVector(const std::vector<Event>& events) {
97 size_t largest_id = 0;
98 for (const Event& event : events) {
99 if (event.ftrace_event_id > largest_id)
100 largest_id = event.ftrace_event_id;
101 }
102 std::vector<Event> events_by_id;
103 events_by_id.resize(largest_id + 1);
104 for (const Event& event : events) {
105 events_by_id[event.ftrace_event_id] = event;
106 }
107 events_by_id.shrink_to_fit();
108 return events_by_id;
109 }
110
111 // Merge the information from |ftrace_field| into |field| (mutating it).
112 // We should set the following fields: offset, size, ftrace field type and
113 // translation strategy.
MergeFieldInfo(const FtraceEvent::Field & ftrace_field,Field * field,const char * event_name_for_debug)114 bool MergeFieldInfo(const FtraceEvent::Field& ftrace_field,
115 Field* field,
116 const char* event_name_for_debug) {
117 PERFETTO_DCHECK(field->ftrace_name);
118 PERFETTO_DCHECK(field->proto_field_id);
119 PERFETTO_DCHECK(static_cast<int>(field->proto_field_type));
120 PERFETTO_DCHECK(!field->ftrace_offset);
121 PERFETTO_DCHECK(!field->ftrace_size);
122 PERFETTO_DCHECK(!field->ftrace_type);
123
124 if (!InferFtraceType(ftrace_field.type_and_name, ftrace_field.size,
125 ftrace_field.is_signed, &field->ftrace_type)) {
126 PERFETTO_FATAL(
127 "Failed to infer ftrace field type for \"%s.%s\" (type:\"%s\" "
128 "size:%d "
129 "signed:%d)",
130 event_name_for_debug, field->ftrace_name,
131 ftrace_field.type_and_name.c_str(), ftrace_field.size,
132 ftrace_field.is_signed);
133 return false;
134 }
135
136 field->ftrace_offset = ftrace_field.offset;
137 field->ftrace_size = ftrace_field.size;
138
139 if (!SetTranslationStrategy(field->ftrace_type, field->proto_field_type,
140 &field->strategy)) {
141 PERFETTO_DLOG(
142 "Failed to find translation strategy for ftrace field \"%s.%s\" (%s -> "
143 "%s)",
144 event_name_for_debug, field->ftrace_name, ToString(field->ftrace_type),
145 protozero::proto_utils::ProtoSchemaToString(field->proto_field_type));
146 // TODO(hjd): Uncomment DCHECK when proto generation is fixed.
147 // PERFETTO_DFATAL("Failed to find translation strategy");
148 return false;
149 }
150
151 return true;
152 }
153
154 // For each field in |fields| find the matching field from |ftrace_fields| (by
155 // comparing ftrace_name) and copy the information from the FtraceEvent::Field
156 // into the Field (mutating it). If there is no matching field in
157 // |ftrace_fields| remove the Field from |fields|. Return the maximum observed
158 // 'field end' (offset + size).
MergeFields(const std::vector<FtraceEvent::Field> & ftrace_fields,std::vector<Field> * fields,const char * event_name_for_debug)159 uint16_t MergeFields(const std::vector<FtraceEvent::Field>& ftrace_fields,
160 std::vector<Field>* fields,
161 const char* event_name_for_debug) {
162 uint16_t fields_end = 0;
163
164 // Loop over each Field in |fields| modifiying it with information from the
165 // matching |ftrace_fields| field or removing it.
166 auto field = fields->begin();
167 while (field != fields->end()) {
168 bool success = false;
169 for (const FtraceEvent::Field& ftrace_field : ftrace_fields) {
170 if (GetNameFromTypeAndName(ftrace_field.type_and_name) !=
171 field->ftrace_name)
172 continue;
173
174 success = MergeFieldInfo(ftrace_field, &*field, event_name_for_debug);
175
176 uint16_t field_end = field->ftrace_offset + field->ftrace_size;
177 fields_end = std::max<uint16_t>(fields_end, field_end);
178
179 break;
180 }
181 if (success) {
182 ++field;
183 } else {
184 field = fields->erase(field);
185 }
186 }
187 return fields_end;
188 }
189
Contains(const std::string & haystack,const std::string & needle)190 bool Contains(const std::string& haystack, const std::string& needle) {
191 return haystack.find(needle) != std::string::npos;
192 }
193
RegexError(int errcode,const regex_t * preg)194 std::string RegexError(int errcode, const regex_t* preg) {
195 char buf[64];
196 regerror(errcode, preg, buf, sizeof(buf));
197 return {buf, sizeof(buf)};
198 }
199
Match(const char * string,const char * pattern)200 bool Match(const char* string, const char* pattern) {
201 regex_t re;
202 int ret = regcomp(&re, pattern, REG_EXTENDED | REG_NOSUB);
203 if (ret != 0) {
204 PERFETTO_FATAL("regcomp: %s", RegexError(ret, &re).c_str());
205 }
206 ret = regexec(&re, string, 0, nullptr, 0);
207 regfree(&re);
208 return ret != REG_NOMATCH;
209 }
210
211 // Set proto field type and id based on the ftrace type.
SetProtoType(FtraceFieldType ftrace_type,ProtoSchemaType * proto_type,uint32_t * proto_field_id)212 void SetProtoType(FtraceFieldType ftrace_type,
213 ProtoSchemaType* proto_type,
214 uint32_t* proto_field_id) {
215 switch (ftrace_type) {
216 case kFtraceCString:
217 case kFtraceFixedCString:
218 case kFtraceStringPtr:
219 case kFtraceDataLoc:
220 *proto_type = ProtoSchemaType::kString;
221 *proto_field_id = GenericFtraceEvent::Field::kStrValueFieldNumber;
222 break;
223 case kFtraceInt8:
224 case kFtraceInt16:
225 case kFtraceInt32:
226 case kFtracePid32:
227 case kFtraceCommonPid32:
228 case kFtraceInt64:
229 *proto_type = ProtoSchemaType::kInt64;
230 *proto_field_id = GenericFtraceEvent::Field::kIntValueFieldNumber;
231 break;
232 case kFtraceUint8:
233 case kFtraceUint16:
234 case kFtraceUint32:
235 case kFtraceBool:
236 case kFtraceDevId32:
237 case kFtraceDevId64:
238 case kFtraceUint64:
239 case kFtraceInode32:
240 case kFtraceInode64:
241 *proto_type = ProtoSchemaType::kUint64;
242 *proto_field_id = GenericFtraceEvent::Field::kUintValueFieldNumber;
243 break;
244 }
245 }
246
247 } // namespace
248
249 // This is similar but different from InferProtoType (see format_parser.cc).
250 // TODO(hjd): Fold FtraceEvent(::Field) into Event.
InferFtraceType(const std::string & type_and_name,size_t size,bool is_signed,FtraceFieldType * out)251 bool InferFtraceType(const std::string& type_and_name,
252 size_t size,
253 bool is_signed,
254 FtraceFieldType* out) {
255 // Fixed length strings: e.g. "char foo[16]" we don't care about the number
256 // since we get the size as it's own field. Somewhat awkwardly these fields
257 // are both fixed size and null terminated meaning that we can't just drop
258 // them directly into the protobuf (since if the string is shorter than 15
259 // characters we want only the bit up to the null terminator).
260 if (Match(type_and_name.c_str(), R"(char [a-zA-Z_]+\[[0-9]+\])")) {
261 *out = kFtraceFixedCString;
262 return true;
263 }
264
265 // String pointers: "__data_loc char[] foo" (as in
266 // 'cpufreq_interactive_boost').
267 // TODO(fmayer): Handle u32[], u8[], __u8[] as well.
268 if (Contains(type_and_name, "__data_loc char[] ")) {
269 if (size != 4) {
270 PERFETTO_ELOG("__data_loc with incorrect size: %s (%zd)",
271 type_and_name.c_str(), size);
272 return false;
273 }
274 *out = kFtraceDataLoc;
275 return true;
276 }
277
278 if (Contains(type_and_name, "char[] ")) {
279 *out = kFtraceStringPtr;
280 return true;
281 }
282 if (Contains(type_and_name, "char * ")) {
283 *out = kFtraceStringPtr;
284 return true;
285 }
286
287 // Variable length strings: "char foo" + size: 0 (as in 'print').
288 if (base::StartsWith(type_and_name, "char ") && size == 0) {
289 *out = kFtraceCString;
290 return true;
291 }
292
293 if (base::StartsWith(type_and_name, "bool ")) {
294 *out = kFtraceBool;
295 return true;
296 }
297
298 if (base::StartsWith(type_and_name, "ino_t ") ||
299 base::StartsWith(type_and_name, "i_ino ")) {
300 if (size == 4) {
301 *out = kFtraceInode32;
302 return true;
303 } else if (size == 8) {
304 *out = kFtraceInode64;
305 return true;
306 }
307 }
308
309 if (base::StartsWith(type_and_name, "dev_t ")) {
310 if (size == 4) {
311 *out = kFtraceDevId32;
312 return true;
313 } else if (size == 8) {
314 *out = kFtraceDevId64;
315 return true;
316 }
317 }
318
319 // Pids (as in 'sched_switch').
320 if (base::StartsWith(type_and_name, "pid_t ") && size == 4) {
321 *out = kFtracePid32;
322 return true;
323 }
324
325 if (Contains(type_and_name, "common_pid") && size == 4) {
326 *out = kFtraceCommonPid32;
327 return true;
328 }
329
330 // Ints of various sizes:
331 if (size == 1 && is_signed) {
332 *out = kFtraceInt8;
333 return true;
334 } else if (size == 1 && !is_signed) {
335 *out = kFtraceUint8;
336 return true;
337 } else if (size == 2 && is_signed) {
338 *out = kFtraceInt16;
339 return true;
340 } else if (size == 2 && !is_signed) {
341 *out = kFtraceUint16;
342 return true;
343 } else if (size == 4 && is_signed) {
344 *out = kFtraceInt32;
345 return true;
346 } else if (size == 4 && !is_signed) {
347 *out = kFtraceUint32;
348 return true;
349 } else if (size == 8 && is_signed) {
350 *out = kFtraceInt64;
351 return true;
352 } else if (size == 8 && !is_signed) {
353 *out = kFtraceUint64;
354 return true;
355 }
356
357 PERFETTO_DLOG("Could not infer ftrace type for '%s'", type_and_name.c_str());
358 return false;
359 }
360
361 // static
362 ProtoTranslationTable::FtracePageHeaderSpec
DefaultPageHeaderSpecForTesting()363 ProtoTranslationTable::DefaultPageHeaderSpecForTesting() {
364 std::string page_header =
365 R"( field: u64 timestamp; offset:0; size:8; signed:0;
366 field: local_t commit; offset:8; size:8; signed:1;
367 field: int overwrite; offset:8; size:1; signed:1;
368 field: char data; offset:16; size:4080; signed:0;)";
369 std::vector<FtraceEvent::Field> page_header_fields;
370 PERFETTO_CHECK(ParseFtraceEventBody(std::move(page_header), nullptr,
371 &page_header_fields));
372 return MakeFtracePageHeaderSpec(page_header_fields);
373 }
374
375 // static
Create(const FtraceProcfs * ftrace_procfs,std::vector<Event> events,std::vector<Field> common_fields)376 std::unique_ptr<ProtoTranslationTable> ProtoTranslationTable::Create(
377 const FtraceProcfs* ftrace_procfs,
378 std::vector<Event> events,
379 std::vector<Field> common_fields) {
380 bool common_fields_processed = false;
381 uint16_t common_fields_end = 0;
382
383 std::string page_header = ftrace_procfs->ReadPageHeaderFormat();
384 bool ftrace_header_parsed = false;
385 FtracePageHeaderSpec header_spec{};
386 if (!page_header.empty()) {
387 std::vector<FtraceEvent::Field> page_header_fields;
388 ftrace_header_parsed = ParseFtraceEventBody(std::move(page_header), nullptr,
389 &page_header_fields);
390 header_spec = MakeFtracePageHeaderSpec(page_header_fields);
391 }
392
393 if (!ftrace_header_parsed) {
394 PERFETTO_LOG("Failed to parse ftrace page header, using fallback layout");
395 header_spec = GuessFtracePageHeaderSpec();
396 }
397
398 for (Event& event : events) {
399 if (event.proto_field_id ==
400 protos::pbzero::FtraceEvent::kGenericFieldNumber) {
401 continue;
402 }
403 PERFETTO_DCHECK(event.name);
404 PERFETTO_DCHECK(event.group);
405 PERFETTO_DCHECK(event.proto_field_id);
406 PERFETTO_DCHECK(!event.ftrace_event_id);
407
408 std::string contents =
409 ftrace_procfs->ReadEventFormat(event.group, event.name);
410 FtraceEvent ftrace_event;
411 if (contents.empty() || !ParseFtraceEvent(contents, &ftrace_event)) {
412 if (!strcmp(event.group, "ftrace") && !strcmp(event.name, "print")) {
413 // On some "user" builds of Android <P the ftrace/print event is not
414 // selinux-whitelisted. Thankfully this event is an always-on built-in
415 // so we don't need to write to its 'enable' file. However we need to
416 // know its binary layout to decode it, so we hardcode it.
417 ftrace_event.id = 5; // Seems quite stable across kernels.
418 ftrace_event.name = "print";
419 // The only field we care about is:
420 // field:char buf; offset:16; size:0; signed:0;
421 ftrace_event.fields.emplace_back(
422 FtraceEvent::Field{"char buf", 16, 0, 0});
423 } else {
424 continue;
425 }
426 }
427
428 event.ftrace_event_id = ftrace_event.id;
429
430 if (!common_fields_processed) {
431 common_fields_end =
432 MergeFields(ftrace_event.common_fields, &common_fields, event.name);
433 common_fields_processed = true;
434 }
435
436 uint16_t fields_end =
437 MergeFields(ftrace_event.fields, &event.fields, event.name);
438
439 event.size = std::max<uint16_t>(fields_end, common_fields_end);
440 }
441
442 events.erase(std::remove_if(events.begin(), events.end(),
443 [](const Event& event) {
444 return event.proto_field_id == 0 ||
445 event.ftrace_event_id == 0;
446 }),
447 events.end());
448
449 auto table = std::unique_ptr<ProtoTranslationTable>(new ProtoTranslationTable(
450 ftrace_procfs, events, std::move(common_fields), header_spec));
451 return table;
452 }
453
ProtoTranslationTable(const FtraceProcfs * ftrace_procfs,const std::vector<Event> & events,std::vector<Field> common_fields,FtracePageHeaderSpec ftrace_page_header_spec)454 ProtoTranslationTable::ProtoTranslationTable(
455 const FtraceProcfs* ftrace_procfs,
456 const std::vector<Event>& events,
457 std::vector<Field> common_fields,
458 FtracePageHeaderSpec ftrace_page_header_spec)
459 : ftrace_procfs_(ftrace_procfs),
460 events_(BuildEventsVector(events)),
461 largest_id_(events_.size() - 1),
462 common_fields_(std::move(common_fields)),
463 ftrace_page_header_spec_(ftrace_page_header_spec) {
464 for (const Event& event : events) {
465 group_and_name_to_event_[GroupAndName(event.group, event.name)] =
466 &events_.at(event.ftrace_event_id);
467 name_to_events_[event.name].push_back(&events_.at(event.ftrace_event_id));
468 group_to_events_[event.group].push_back(&events_.at(event.ftrace_event_id));
469 }
470 }
471
GetOrCreateEvent(const GroupAndName & group_and_name)472 const Event* ProtoTranslationTable::GetOrCreateEvent(
473 const GroupAndName& group_and_name) {
474 const Event* event = GetEvent(group_and_name);
475 if (event)
476 return event;
477 // The ftrace event does not already exist so a new one will be created
478 // by parsing the format file.
479 std::string contents = ftrace_procfs_->ReadEventFormat(group_and_name.group(),
480 group_and_name.name());
481 if (contents.empty())
482 return nullptr;
483 FtraceEvent ftrace_event = {};
484 ParseFtraceEvent(contents, &ftrace_event);
485
486 // Ensure events vector is large enough
487 if (ftrace_event.id > largest_id_) {
488 events_.resize(ftrace_event.id + 1);
489 largest_id_ = ftrace_event.id;
490 }
491
492 // Set known event variables
493 Event* e = &events_.at(ftrace_event.id);
494 e->ftrace_event_id = ftrace_event.id;
495 e->proto_field_id = protos::pbzero::FtraceEvent::kGenericFieldNumber;
496 e->name = InternString(group_and_name.name());
497 e->group = InternString(group_and_name.group());
498
499 // Calculate size of common fields.
500 for (const FtraceEvent::Field& ftrace_field : ftrace_event.common_fields) {
501 uint16_t field_end = ftrace_field.offset + ftrace_field.size;
502 e->size = std::max(field_end, e->size);
503 }
504
505 // For every field in the ftrace event, make a field in the generic event.
506 for (const FtraceEvent::Field& ftrace_field : ftrace_event.fields)
507 e->size = std::max(CreateGenericEventField(ftrace_field, *e), e->size);
508
509 group_and_name_to_event_[group_and_name] = &events_.at(e->ftrace_event_id);
510 name_to_events_[e->name].push_back(&events_.at(e->ftrace_event_id));
511 group_to_events_[e->group].push_back(&events_.at(e->ftrace_event_id));
512
513 return e;
514 };
515
InternString(const std::string & str)516 const char* ProtoTranslationTable::InternString(const std::string& str) {
517 auto it_and_inserted = interned_strings_.insert(str);
518 return it_and_inserted.first->c_str();
519 };
520
CreateGenericEventField(const FtraceEvent::Field & ftrace_field,Event & event)521 uint16_t ProtoTranslationTable::CreateGenericEventField(
522 const FtraceEvent::Field& ftrace_field,
523 Event& event) {
524 uint16_t field_end = ftrace_field.offset + ftrace_field.size;
525 std::string field_name = GetNameFromTypeAndName(ftrace_field.type_and_name);
526 if (field_name.empty()) {
527 PERFETTO_DLOG("Field: %s could not be added to the generic event.",
528 ftrace_field.type_and_name.c_str());
529 return field_end;
530 }
531 event.fields.emplace_back();
532 Field* field = &event.fields.back();
533 field->ftrace_name = InternString(field_name);
534 if (!InferFtraceType(ftrace_field.type_and_name, ftrace_field.size,
535 ftrace_field.is_signed, &field->ftrace_type)) {
536 PERFETTO_DLOG(
537 "Failed to infer ftrace field type for \"%s.%s\" (type:\"%s\" "
538 "size:%d "
539 "signed:%d)",
540 event.name, field->ftrace_name, ftrace_field.type_and_name.c_str(),
541 ftrace_field.size, ftrace_field.is_signed);
542 event.fields.pop_back();
543 return field_end;
544 }
545 SetProtoType(field->ftrace_type, &field->proto_field_type,
546 &field->proto_field_id);
547 field->ftrace_offset = ftrace_field.offset;
548 field->ftrace_size = ftrace_field.size;
549 // Proto type is set based on ftrace type so all fields should have a
550 // translation strategy.
551 bool success = SetTranslationStrategy(
552 field->ftrace_type, field->proto_field_type, &field->strategy);
553 PERFETTO_DCHECK(success);
554 return field_end;
555 }
556
557 EventFilter::EventFilter() = default;
558 EventFilter::~EventFilter() = default;
559
AddEnabledEvent(size_t ftrace_event_id)560 void EventFilter::AddEnabledEvent(size_t ftrace_event_id) {
561 if (ftrace_event_id >= enabled_ids_.size())
562 enabled_ids_.resize(ftrace_event_id + 1);
563 enabled_ids_[ftrace_event_id] = true;
564 }
565
DisableEvent(size_t ftrace_event_id)566 void EventFilter::DisableEvent(size_t ftrace_event_id) {
567 if (ftrace_event_id >= enabled_ids_.size())
568 return;
569 enabled_ids_[ftrace_event_id] = false;
570 }
571
IsEventEnabled(size_t ftrace_event_id) const572 bool EventFilter::IsEventEnabled(size_t ftrace_event_id) const {
573 if (ftrace_event_id == 0 || ftrace_event_id >= enabled_ids_.size())
574 return false;
575 return enabled_ids_[ftrace_event_id];
576 }
577
GetEnabledEvents() const578 std::set<size_t> EventFilter::GetEnabledEvents() const {
579 std::set<size_t> enabled;
580 for (size_t i = 0; i < enabled_ids_.size(); i++) {
581 if (enabled_ids_[i]) {
582 enabled.insert(i);
583 }
584 }
585 return enabled;
586 }
587
EnableEventsFrom(const EventFilter & other)588 void EventFilter::EnableEventsFrom(const EventFilter& other) {
589 size_t max_length = std::max(enabled_ids_.size(), other.enabled_ids_.size());
590 enabled_ids_.resize(max_length);
591 for (size_t i = 0; i < other.enabled_ids_.size(); i++) {
592 if (other.enabled_ids_[i])
593 enabled_ids_[i] = true;
594 }
595 }
596
597 ProtoTranslationTable::~ProtoTranslationTable() = default;
598
599 } // namespace perfetto
600