202 lines
5.7 KiB
C++
202 lines
5.7 KiB
C++
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// Copyright 2015 The Chromium Authors
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "net/ssl/ssl_client_session_cache.h"
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#include <tuple>
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#include <utility>
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#include "base/containers/flat_set.h"
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#include "base/time/clock.h"
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#include "base/time/default_clock.h"
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#include "third_party/boringssl/src/include/openssl/ssl.h"
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namespace net {
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namespace {
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// Returns a tuple of references to fields of |key|, for comparison purposes.
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auto TieKeyFields(const SSLClientSessionCache::Key& key) {
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return std::tie(key.server, key.dest_ip_addr, key.network_anonymization_key,
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key.privacy_mode, key.disable_legacy_crypto);
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}
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} // namespace
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SSLClientSessionCache::Key::Key() = default;
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SSLClientSessionCache::Key::Key(const Key& other) = default;
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SSLClientSessionCache::Key::Key(Key&& other) = default;
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SSLClientSessionCache::Key::~Key() = default;
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SSLClientSessionCache::Key& SSLClientSessionCache::Key::operator=(
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const Key& other) = default;
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SSLClientSessionCache::Key& SSLClientSessionCache::Key::operator=(Key&& other) =
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default;
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bool SSLClientSessionCache::Key::operator==(const Key& other) const {
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return TieKeyFields(*this) == TieKeyFields(other);
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}
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bool SSLClientSessionCache::Key::operator<(const Key& other) const {
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return TieKeyFields(*this) < TieKeyFields(other);
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}
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SSLClientSessionCache::SSLClientSessionCache(const Config& config)
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: clock_(base::DefaultClock::GetInstance()),
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config_(config),
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cache_(config.max_entries) {
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memory_pressure_listener_ = std::make_unique<base::MemoryPressureListener>(
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FROM_HERE, base::BindRepeating(&SSLClientSessionCache::OnMemoryPressure,
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base::Unretained(this)));
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}
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SSLClientSessionCache::~SSLClientSessionCache() {
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Flush();
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}
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size_t SSLClientSessionCache::size() const {
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return cache_.size();
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}
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bssl::UniquePtr<SSL_SESSION> SSLClientSessionCache::Lookup(
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const Key& cache_key) {
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// Expire stale sessions.
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lookups_since_flush_++;
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if (lookups_since_flush_ >= config_.expiration_check_count) {
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lookups_since_flush_ = 0;
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FlushExpiredSessions();
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}
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auto iter = cache_.Get(cache_key);
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if (iter == cache_.end())
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return nullptr;
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time_t now = clock_->Now().ToTimeT();
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bssl::UniquePtr<SSL_SESSION> session = iter->second.Pop();
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if (iter->second.ExpireSessions(now))
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cache_.Erase(iter);
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if (IsExpired(session.get(), now))
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session = nullptr;
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return session;
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}
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void SSLClientSessionCache::Insert(const Key& cache_key,
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bssl::UniquePtr<SSL_SESSION> session) {
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auto iter = cache_.Get(cache_key);
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if (iter == cache_.end())
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iter = cache_.Put(cache_key, Entry());
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iter->second.Push(std::move(session));
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}
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void SSLClientSessionCache::ClearEarlyData(const Key& cache_key) {
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auto iter = cache_.Get(cache_key);
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if (iter != cache_.end()) {
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for (auto& session : iter->second.sessions) {
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if (session) {
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session.reset(SSL_SESSION_copy_without_early_data(session.get()));
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}
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}
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}
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}
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void SSLClientSessionCache::FlushForServer(const HostPortPair& server) {
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auto iter = cache_.begin();
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while (iter != cache_.end()) {
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if (iter->first.server == server) {
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iter = cache_.Erase(iter);
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} else {
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++iter;
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}
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}
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}
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void SSLClientSessionCache::Flush() {
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cache_.Clear();
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}
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void SSLClientSessionCache::SetClockForTesting(base::Clock* clock) {
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clock_ = clock;
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}
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bool SSLClientSessionCache::IsExpired(SSL_SESSION* session, time_t now) {
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if (now < 0)
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return true;
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uint64_t now_u64 = static_cast<uint64_t>(now);
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// now_u64 may be slightly behind because of differences in how
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// time is calculated at this layer versus BoringSSL.
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// Add a second of wiggle room to account for this.
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return now_u64 < SSL_SESSION_get_time(session) - 1 ||
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now_u64 >=
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SSL_SESSION_get_time(session) + SSL_SESSION_get_timeout(session);
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}
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SSLClientSessionCache::Entry::Entry() = default;
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SSLClientSessionCache::Entry::Entry(Entry&&) = default;
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SSLClientSessionCache::Entry::~Entry() = default;
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void SSLClientSessionCache::Entry::Push(bssl::UniquePtr<SSL_SESSION> session) {
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if (sessions[0] != nullptr &&
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SSL_SESSION_should_be_single_use(sessions[0].get())) {
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sessions[1] = std::move(sessions[0]);
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}
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sessions[0] = std::move(session);
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}
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bssl::UniquePtr<SSL_SESSION> SSLClientSessionCache::Entry::Pop() {
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if (sessions[0] == nullptr)
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return nullptr;
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bssl::UniquePtr<SSL_SESSION> session = bssl::UpRef(sessions[0]);
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if (SSL_SESSION_should_be_single_use(session.get())) {
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sessions[0] = std::move(sessions[1]);
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sessions[1] = nullptr;
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}
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return session;
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}
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bool SSLClientSessionCache::Entry::ExpireSessions(time_t now) {
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if (sessions[0] == nullptr)
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return true;
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if (SSLClientSessionCache::IsExpired(sessions[0].get(), now)) {
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return true;
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}
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if (sessions[1] != nullptr &&
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SSLClientSessionCache::IsExpired(sessions[1].get(), now)) {
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sessions[1] = nullptr;
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}
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return false;
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}
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void SSLClientSessionCache::FlushExpiredSessions() {
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time_t now = clock_->Now().ToTimeT();
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auto iter = cache_.begin();
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while (iter != cache_.end()) {
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if (iter->second.ExpireSessions(now)) {
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iter = cache_.Erase(iter);
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} else {
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++iter;
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}
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}
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}
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void SSLClientSessionCache::OnMemoryPressure(
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base::MemoryPressureListener::MemoryPressureLevel memory_pressure_level) {
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switch (memory_pressure_level) {
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case base::MemoryPressureListener::MEMORY_PRESSURE_LEVEL_NONE:
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break;
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case base::MemoryPressureListener::MEMORY_PRESSURE_LEVEL_MODERATE:
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FlushExpiredSessions();
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break;
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case base::MemoryPressureListener::MEMORY_PRESSURE_LEVEL_CRITICAL:
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Flush();
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break;
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}
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}
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} // namespace net
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