#include "net/nqe/network_quality_store.h"
#include "base/functional/bind.h"
#include "base/location.h"
#include "base/observer_list.h"
#include "base/task/single_thread_task_runner.h"
#include "net/base/network_change_notifier.h"
namespace net::nqe::internal {
NetworkQualityStore::NetworkQualityStore() {
static_assert(kMaximumNetworkQualityCacheSize > 0,
"Size of the network quality cache must be > 0");
static_assert(kMaximumNetworkQualityCacheSize <= 20,
"Size of the network quality cache must <= 20");
}
NetworkQualityStore::~NetworkQualityStore() {
DCHECK_CALLED_ON_VALID_SEQUENCE(sequence_checker_);
}
void NetworkQualityStore::Add(
const nqe::internal::NetworkID& network_id,
const nqe::internal::CachedNetworkQuality& cached_network_quality) {
DCHECK_CALLED_ON_VALID_SEQUENCE(sequence_checker_);
DCHECK_LE(cached_network_qualities_.size(),
static_cast<size_t>(kMaximumNetworkQualityCacheSize));
if (cached_network_quality.effective_connection_type() ==
EFFECTIVE_CONNECTION_TYPE_UNKNOWN) {
return;
}
cached_network_qualities_.erase(network_id);
if (cached_network_qualities_.size() == kMaximumNetworkQualityCacheSize) {
auto oldest_entry_iterator = cached_network_qualities_.begin();
for (auto it = cached_network_qualities_.begin();
it != cached_network_qualities_.end(); ++it) {
if ((it->second).OlderThan(oldest_entry_iterator->second))
oldest_entry_iterator = it;
}
cached_network_qualities_.erase(oldest_entry_iterator);
}
cached_network_qualities_.emplace(network_id, cached_network_quality);
DCHECK_LE(cached_network_qualities_.size(),
static_cast<size_t>(kMaximumNetworkQualityCacheSize));
for (auto& observer : network_qualities_cache_observer_list_)
observer.OnChangeInCachedNetworkQuality(network_id, cached_network_quality);
}
bool NetworkQualityStore::GetById(
const nqe::internal::NetworkID& network_id,
nqe::internal::CachedNetworkQuality* cached_network_quality) const {
DCHECK_CALLED_ON_VALID_SEQUENCE(sequence_checker_);
for (const auto& cached_quality : cached_network_qualities_) {
if (network_id.type != cached_quality.first.type ||
network_id.id != cached_quality.first.id) {
continue;
}
if (network_id.signal_strength == cached_quality.first.signal_strength) {
*cached_network_quality = cached_quality.second;
return true;
}
}
if (network_id.signal_strength == INT32_MIN) {
auto matching_it = cached_network_qualities_.end();
for (auto it = cached_network_qualities_.begin();
it != cached_network_qualities_.end(); ++it) {
if (network_id.type != it->first.type || network_id.id != it->first.id) {
continue;
}
DCHECK_NE(INT32_MIN, it->first.signal_strength);
if (matching_it == cached_network_qualities_.end() ||
it->first.signal_strength > matching_it->first.signal_strength) {
matching_it = it;
}
}
if (matching_it == cached_network_qualities_.end())
return false;
*cached_network_quality = matching_it->second;
return true;
}
auto matching_it = cached_network_qualities_.end();
int matching_it_diff_signal_strength = INT32_MAX;
for (auto it = cached_network_qualities_.begin();
it != cached_network_qualities_.end(); ++it) {
if (network_id.type != it->first.type || network_id.id != it->first.id) {
continue;
}
DCHECK_LE(0, network_id.signal_strength);
int diff_signal_strength;
if (it->first.signal_strength == INT32_MIN) {
diff_signal_strength = INT32_MAX;
} else {
diff_signal_strength =
std::abs(network_id.signal_strength - it->first.signal_strength);
}
if (matching_it == cached_network_qualities_.end() ||
diff_signal_strength < matching_it_diff_signal_strength) {
matching_it = it;
matching_it_diff_signal_strength = diff_signal_strength;
}
}
if (matching_it == cached_network_qualities_.end())
return false;
*cached_network_quality = matching_it->second;
return true;
}
void NetworkQualityStore::AddNetworkQualitiesCacheObserver(
NetworkQualitiesCacheObserver* observer) {
DCHECK_CALLED_ON_VALID_SEQUENCE(sequence_checker_);
network_qualities_cache_observer_list_.AddObserver(observer);
base::SingleThreadTaskRunner::GetCurrentDefault()->PostTask(
FROM_HERE,
base::BindOnce(&NetworkQualityStore::NotifyCacheObserverIfPresent,
weak_ptr_factory_.GetWeakPtr(),
base::UnsafeDangling(observer)));
}
void NetworkQualityStore::RemoveNetworkQualitiesCacheObserver(
NetworkQualitiesCacheObserver* observer) {
DCHECK_CALLED_ON_VALID_SEQUENCE(sequence_checker_);
network_qualities_cache_observer_list_.RemoveObserver(observer);
}
void NetworkQualityStore::NotifyCacheObserverIfPresent(
MayBeDangling<NetworkQualitiesCacheObserver> observer) const {
DCHECK_CALLED_ON_VALID_SEQUENCE(sequence_checker_);
if (!network_qualities_cache_observer_list_.HasObserver(observer))
return;
for (const auto& it : cached_network_qualities_)
observer->OnChangeInCachedNetworkQuality(it.first, it.second);
}
}