#include "base/debug/dump_without_crashing.h"
#include "base/check.h"
#include "base/metrics/histogram_functions.h"
#include "base/no_destructor.h"
#include "base/synchronization/lock.h"
#include "base/trace_event/base_tracing.h"
namespace {
void(CDECL* dump_without_crashing_function_)() = nullptr;
template <typename Map, typename Key>
bool ShouldDump(Map& map, Key& key, base::TimeDelta time_between_dumps) {
static base::NoDestructor<base::Lock> lock;
base::AutoLock auto_lock(*lock);
base::TimeTicks now = base::TimeTicks::Now();
auto [it, inserted] = map.emplace(key, now);
if (inserted) {
return true;
}
if (now - it->second >= time_between_dumps) {
it->second = now;
return true;
}
return false;
}
std::map<base::Location, base::TimeTicks>& LocationToTimestampMap() {
static base::NoDestructor<std::map<base::Location, base::TimeTicks>>
location_to_timestamp;
return *location_to_timestamp;
}
std::map<std::pair<base::Location, size_t>, base::TimeTicks>&
LocationAndUniqueIdentifierToTimestampMap() {
static base::NoDestructor<
std::map<std::pair<base::Location, size_t>, base::TimeTicks>>
location_and_unique_identifier_to_timestamp;
return *location_and_unique_identifier_to_timestamp;
}
bool ShouldDumpWithoutCrashWithLocation(const base::Location& location,
base::TimeDelta time_between_dumps) {
return ShouldDump(LocationToTimestampMap(), location, time_between_dumps);
}
bool ShouldDumpWithoutCrashWithLocationAndUniqueId(
size_t unique_identifier,
const base::Location& location,
base::TimeDelta time_between_dumps) {
std::pair<base::Location, size_t> key(location, unique_identifier);
return ShouldDump(LocationAndUniqueIdentifierToTimestampMap(), key,
time_between_dumps);
}
}
namespace base {
namespace debug {
bool DumpWithoutCrashingUnthrottled() {
TRACE_EVENT0("base", "DumpWithoutCrashingUnthrottled");
if (dump_without_crashing_function_) {
(*dump_without_crashing_function_)();
return true;
}
return false;
}
bool DumpWithoutCrashing(const base::Location& location,
base::TimeDelta time_between_dumps) {
TRACE_EVENT0("base", "DumpWithoutCrashing");
if (dump_without_crashing_function_ &&
ShouldDumpWithoutCrashWithLocation(location, time_between_dumps)) {
(*dump_without_crashing_function_)();
base::UmaHistogramEnumeration("Stability.DumpWithoutCrashingStatus",
DumpWithoutCrashingStatus::kUploaded);
return true;
}
base::UmaHistogramEnumeration("Stability.DumpWithoutCrashingStatus",
DumpWithoutCrashingStatus::kThrottled);
return false;
}
bool DumpWithoutCrashingWithUniqueId(size_t unique_identifier,
const base::Location& location,
base::TimeDelta time_between_dumps) {
TRACE_EVENT0("base", "DumpWithoutCrashingWithUniqueId");
if (dump_without_crashing_function_ &&
ShouldDumpWithoutCrashWithLocationAndUniqueId(unique_identifier, location,
time_between_dumps)) {
(*dump_without_crashing_function_)();
base::UmaHistogramEnumeration("Stability.DumpWithoutCrashingStatus",
DumpWithoutCrashingStatus::kUploaded);
return true;
}
base::UmaHistogramEnumeration("Stability.DumpWithoutCrashingStatus",
DumpWithoutCrashingStatus::kThrottled);
return false;
}
void SetDumpWithoutCrashingFunction(void (CDECL *function)()) {
#if !defined(COMPONENT_BUILD)
DCHECK(!dump_without_crashing_function_ || !function);
#endif
dump_without_crashing_function_ = function;
}
void ClearMapsForTesting() {
LocationToTimestampMap().clear();
LocationAndUniqueIdentifierToTimestampMap().clear();
}
}
}