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realm / realm-core / 2361

31 May 2024 02:09AM UTC coverage: 90.843% (-0.003%) from 90.846%
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RCORE-1386 Track client reset reason in table that detects client reset cycles (#7649)

* Broke out the client reset error and action storage from PR #7542
* Removed client reset recovery_allowed flag and other updates from review
* Updated pending_client_reset store to use the schema metadata tables
* Fixed pausing a session does not hold the DB open test
* Moved ownership of reset store to SessionWrapper
* Fixed migration test crash - need to save client reset error in handle fresh realm downloaded
* Updated PendingResetStore to be static functions instead of an initialized object; updates from review
* Make ClientReset::error no longer optional; fixed subscriptions tests
* updated changelog after release
* updates from review

101670 of 179968 branches covered (56.49%)

598 of 636 new or added lines in 17 files covered. (94.03%)

83 existing lines in 17 files now uncovered.

214729 of 236374 relevant lines covered (90.84%)

5597564.14 hits per line

Source File
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82.57
/src/realm/sync/noinst/client_impl_base.cpp
1
#include <realm/sync/noinst/client_impl_base.hpp>
2

3
#include <realm/impl/simulated_failure.hpp>
4
#include <realm/sync/changeset_parser.hpp>
5
#include <realm/sync/impl/clock.hpp>
6
#include <realm/sync/network/http.hpp>
7
#include <realm/sync/network/websocket.hpp>
8
#include <realm/sync/noinst/client_history_impl.hpp>
9
#include <realm/sync/noinst/compact_changesets.hpp>
10
#include <realm/sync/noinst/client_reset_operation.hpp>
11
#include <realm/sync/noinst/sync_schema_migration.hpp>
12
#include <realm/sync/protocol.hpp>
13
#include <realm/util/assert.hpp>
14
#include <realm/util/basic_system_errors.hpp>
15
#include <realm/util/memory_stream.hpp>
16
#include <realm/util/platform_info.hpp>
17
#include <realm/util/random.hpp>
18
#include <realm/util/safe_int_ops.hpp>
19
#include <realm/util/scope_exit.hpp>
20
#include <realm/util/to_string.hpp>
21
#include <realm/util/uri.hpp>
22
#include <realm/version.hpp>
23

24
#include <realm/sync/network/websocket.hpp> // Only for websocket::Error TODO remove
25

26
#include <system_error>
27
#include <sstream>
28

29
// NOTE: The protocol specification is in `/doc/protocol.md`
30

31
using namespace realm;
32
using namespace _impl;
33
using namespace realm::util;
34
using namespace realm::sync;
35
using namespace realm::sync::websocket;
36

37
// clang-format off
38
using Connection      = ClientImpl::Connection;
39
using Session         = ClientImpl::Session;
40
using UploadChangeset = ClientHistory::UploadChangeset;
41

42
// These are a work-around for a bug in MSVC. It cannot find in-class types
43
// mentioned in signature of out-of-line member function definitions.
44
using ConnectionTerminationReason = ClientImpl::ConnectionTerminationReason;
45
using OutputBuffer                = ClientImpl::OutputBuffer;
46
using ReceivedChangesets          = ClientProtocol::ReceivedChangesets;
47
// clang-format on
48

49
void ClientImpl::ReconnectInfo::reset() noexcept
50
{
1,916✔
51
    m_backoff_state.reset();
1,916✔
52
    scheduled_reset = false;
1,916✔
53
}
1,916✔
54

55

56
void ClientImpl::ReconnectInfo::update(ConnectionTerminationReason new_reason,
57
                                       std::optional<ResumptionDelayInfo> new_delay_info)
58
{
3,730✔
59
    m_backoff_state.update(new_reason, new_delay_info);
3,730✔
60
}
3,730✔
61

62

63
std::chrono::milliseconds ClientImpl::ReconnectInfo::delay_interval()
64
{
6,008✔
65
    if (scheduled_reset) {
6,008✔
66
        reset();
4✔
67
    }
4✔
68

69
    if (!m_backoff_state.triggering_error) {
6,008✔
70
        return std::chrono::milliseconds::zero();
4,594✔
71
    }
4,594✔
72

73
    switch (*m_backoff_state.triggering_error) {
1,414✔
74
        case ConnectionTerminationReason::closed_voluntarily:
80✔
75
            return std::chrono::milliseconds::zero();
80✔
76
        case ConnectionTerminationReason::server_said_do_not_reconnect:
18✔
77
            return std::chrono::milliseconds::max();
18✔
78
        default:
1,314✔
79
            if (m_reconnect_mode == ReconnectMode::testing) {
1,314✔
80
                return std::chrono::milliseconds::max();
982✔
81
            }
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82

83
            REALM_ASSERT(m_reconnect_mode == ReconnectMode::normal);
332✔
84
            return m_backoff_state.delay_interval();
332✔
85
    }
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86
}
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87

88

89
bool ClientImpl::decompose_server_url(const std::string& url, ProtocolEnvelope& protocol, std::string& address,
90
                                      port_type& port, std::string& path) const
91
{
4,016✔
92
    util::Uri uri(url); // Throws
4,016✔
93
    uri.canonicalize(); // Throws
4,016✔
94
    std::string userinfo, address_2, port_2;
4,016✔
95
    bool realm_scheme = (uri.get_scheme() == "realm:" || uri.get_scheme() == "realms:");
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96
    bool ws_scheme = (uri.get_scheme() == "ws:" || uri.get_scheme() == "wss:");
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97
    bool good = ((realm_scheme || ws_scheme) && uri.get_auth(userinfo, address_2, port_2) && userinfo.empty() &&
4,016✔
98
                 !address_2.empty() && uri.get_query().empty() && uri.get_frag().empty()); // Throws
4,016✔
99
    if (REALM_UNLIKELY(!good))
4,016✔
100
        return false;
×
101
    ProtocolEnvelope protocol_2;
4,016✔
102
    port_type port_3;
4,016✔
103
    if (realm_scheme) {
4,016✔
104
        if (uri.get_scheme() == "realm:") {
×
105
            protocol_2 = ProtocolEnvelope::realm;
×
106
            port_3 = (m_enable_default_port_hack ? 80 : 7800);
×
107
        }
×
108
        else {
×
109
            protocol_2 = ProtocolEnvelope::realms;
×
110
            port_3 = (m_enable_default_port_hack ? 443 : 7801);
×
111
        }
×
112
    }
×
113
    else {
4,016✔
114
        REALM_ASSERT(ws_scheme);
4,016✔
115
        if (uri.get_scheme() == "ws:") {
4,016✔
116
            protocol_2 = ProtocolEnvelope::ws;
3,936✔
117
            port_3 = 80;
3,936✔
118
        }
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119
        else {
80✔
120
            protocol_2 = ProtocolEnvelope::wss;
80✔
121
            port_3 = 443;
80✔
122
        }
80✔
123
    }
4,016✔
124
    if (!port_2.empty()) {
4,016✔
125
        std::istringstream in(port_2);    // Throws
3,912✔
126
        in.imbue(std::locale::classic()); // Throws
3,912✔
127
        in >> port_3;
3,912✔
128
        if (REALM_UNLIKELY(!in || !in.eof() || port_3 < 1))
3,912✔
129
            return false;
×
130
    }
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131
    std::string path_2 = uri.get_path(); // Throws (copy)
4,016✔
132

133
    protocol = protocol_2;
4,016✔
134
    address = std::move(address_2);
4,016✔
135
    port = port_3;
4,016✔
136
    path = std::move(path_2);
4,016✔
137
    return true;
4,016✔
138
}
4,016✔
139

140
ClientImpl::ClientImpl(ClientConfig config)
141
    : logger_ptr{std::make_shared<util::CategoryLogger>(util::LogCategory::session, std::move(config.logger))}
4,890✔
142
    , logger{*logger_ptr}
4,890✔
143
    , m_reconnect_mode{config.reconnect_mode}
4,890✔
144
    , m_connect_timeout{config.connect_timeout}
4,890✔
145
    , m_connection_linger_time{config.one_connection_per_session ? 0 : config.connection_linger_time}
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146
    , m_ping_keepalive_period{config.ping_keepalive_period}
4,890✔
147
    , m_pong_keepalive_timeout{config.pong_keepalive_timeout}
4,890✔
148
    , m_fast_reconnect_limit{config.fast_reconnect_limit}
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149
    , m_reconnect_backoff_info{config.reconnect_backoff_info}
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150
    , m_disable_upload_activation_delay{config.disable_upload_activation_delay}
4,890✔
151
    , m_dry_run{config.dry_run}
4,890✔
152
    , m_enable_default_port_hack{config.enable_default_port_hack}
4,890✔
153
    , m_disable_upload_compaction{config.disable_upload_compaction}
4,890✔
154
    , m_fix_up_object_ids{config.fix_up_object_ids}
4,890✔
155
    , m_roundtrip_time_handler{std::move(config.roundtrip_time_handler)}
4,890✔
156
    , m_socket_provider{std::move(config.socket_provider)}
4,890✔
157
    , m_client_protocol{} // Throws
4,890✔
158
    , m_one_connection_per_session{config.one_connection_per_session}
4,890✔
159
    , m_random{}
4,890✔
160
{
9,918✔
161
    // FIXME: Would be better if seeding was up to the application.
162
    util::seed_prng_nondeterministically(m_random); // Throws
9,918✔
163

164
    logger.info("Realm sync client (%1)", REALM_VER_CHUNK); // Throws
9,918✔
165
    logger.debug("Supported protocol versions: %1-%2", get_oldest_supported_protocol_version(),
9,918✔
166
                 get_current_protocol_version()); // Throws
9,918✔
167
    logger.info("Platform: %1", util::get_platform_info());
9,918✔
168
    const char* build_mode;
9,918✔
169
#if REALM_DEBUG
9,918✔
170
    build_mode = "Debug";
9,918✔
171
#else
172
    build_mode = "Release";
173
#endif
174
    logger.debug("Build mode: %1", build_mode);
9,918✔
175
    logger.debug("Config param: one_connection_per_session = %1",
9,918✔
176
                 config.one_connection_per_session); // Throws
9,918✔
177
    logger.debug("Config param: connect_timeout = %1 ms",
9,918✔
178
                 config.connect_timeout); // Throws
9,918✔
179
    logger.debug("Config param: connection_linger_time = %1 ms",
9,918✔
180
                 config.connection_linger_time); // Throws
9,918✔
181
    logger.debug("Config param: ping_keepalive_period = %1 ms",
9,918✔
182
                 config.ping_keepalive_period); // Throws
9,918✔
183
    logger.debug("Config param: pong_keepalive_timeout = %1 ms",
9,918✔
184
                 config.pong_keepalive_timeout); // Throws
9,918✔
185
    logger.debug("Config param: fast_reconnect_limit = %1 ms",
9,918✔
186
                 config.fast_reconnect_limit); // Throws
9,918✔
187
    logger.debug("Config param: disable_upload_compaction = %1",
9,918✔
188
                 config.disable_upload_compaction); // Throws
9,918✔
189
    logger.debug("Config param: disable_sync_to_disk = %1",
9,918✔
190
                 config.disable_sync_to_disk); // Throws
9,918✔
191
    logger.debug(
9,918✔
192
        "Config param: reconnect backoff info: max_delay: %1 ms, initial_delay: %2 ms, multiplier: %3, jitter: 1/%4",
9,918✔
193
        m_reconnect_backoff_info.max_resumption_delay_interval.count(),
9,918✔
194
        m_reconnect_backoff_info.resumption_delay_interval.count(),
9,918✔
195
        m_reconnect_backoff_info.resumption_delay_backoff_multiplier, m_reconnect_backoff_info.delay_jitter_divisor);
9,918✔
196

197
    if (config.reconnect_mode != ReconnectMode::normal) {
9,918✔
198
        logger.warn("Testing/debugging feature 'nonnormal reconnect mode' enabled - "
772✔
199
                    "never do this in production!");
772✔
200
    }
772✔
201

202
    if (config.dry_run) {
9,918✔
203
        logger.warn("Testing/debugging feature 'dry run' enabled - "
×
204
                    "never do this in production!");
×
205
    }
×
206

207
    REALM_ASSERT_EX(m_socket_provider, "Must provide socket provider in sync Client config");
9,918✔
208

209
    if (m_one_connection_per_session) {
9,918✔
210
        logger.warn("Testing/debugging feature 'one connection per session' enabled - "
4✔
211
                    "never do this in production");
4✔
212
    }
4✔
213

214
    if (config.disable_upload_activation_delay) {
9,918✔
215
        logger.warn("Testing/debugging feature 'disable_upload_activation_delay' enabled - "
×
216
                    "never do this in production");
×
217
    }
×
218

219
    if (config.disable_sync_to_disk) {
9,918✔
220
        logger.warn("Testing/debugging feature 'disable_sync_to_disk' enabled - "
×
221
                    "never do this in production");
×
222
    }
×
223

224
    m_actualize_and_finalize = create_trigger([this](Status status) {
14,588✔
225
        if (status == ErrorCodes::OperationAborted)
14,588✔
226
            return;
×
227
        else if (!status.is_ok())
14,588✔
228
            throw Exception(status);
×
229
        actualize_and_finalize_session_wrappers(); // Throws
14,588✔
230
    });
14,588✔
231
}
9,918✔
232

233
void ClientImpl::incr_outstanding_posts()
234
{
198,166✔
235
    util::CheckedLockGuard lock(m_drain_mutex);
198,166✔
236
    ++m_outstanding_posts;
198,166✔
237
    m_drained = false;
198,166✔
238
}
198,166✔
239

240
void ClientImpl::decr_outstanding_posts()
241
{
198,136✔
242
    util::CheckedLockGuard lock(m_drain_mutex);
198,136✔
243
    REALM_ASSERT(m_outstanding_posts);
198,136✔
244
    if (--m_outstanding_posts <= 0) {
198,136✔
245
        // Notify must happen with lock held or another thread could destroy
246
        // ClientImpl between when we release the lock and when we call notify
247
        m_drain_cv.notify_all();
18,026✔
248
    }
18,026✔
249
}
198,136✔
250

251
void ClientImpl::post(SyncSocketProvider::FunctionHandler&& handler)
252
{
27,472✔
253
    REALM_ASSERT(m_socket_provider);
27,472✔
254
    incr_outstanding_posts();
27,472✔
255
    m_socket_provider->post([handler = std::move(handler), this](Status status) {
27,472✔
256
        auto decr_guard = util::make_scope_exit([&]() noexcept {
27,448✔
257
            decr_outstanding_posts();
27,446✔
258
        });
27,446✔
259
        handler(status);
27,446✔
260
    });
27,446✔
261
}
27,472✔
262

263
void ClientImpl::post(util::UniqueFunction<void()>&& handler)
264
{
153,646✔
265
    REALM_ASSERT(m_socket_provider);
153,646✔
266
    incr_outstanding_posts();
153,646✔
267
    m_socket_provider->post([handler = std::move(handler), this](Status status) {
153,652✔
268
        auto decr_guard = util::make_scope_exit([&]() noexcept {
153,654✔
269
            decr_outstanding_posts();
153,654✔
270
        });
153,654✔
271
        if (status == ErrorCodes::OperationAborted)
153,648✔
272
            return;
×
273
        if (!status.is_ok())
153,648✔
274
            throw Exception(status);
×
275
        handler();
153,648✔
276
    });
153,648✔
277
}
153,646✔
278

279

280
void ClientImpl::drain_connections()
281
{
9,898✔
282
    logger.debug("Draining connections during sync client shutdown");
9,898✔
283
    for (auto& server_slot_pair : m_server_slots) {
9,898✔
284
        auto& server_slot = server_slot_pair.second;
2,654✔
285

286
        if (server_slot.connection) {
2,654✔
287
            auto& conn = server_slot.connection;
2,428✔
288
            conn->force_close();
2,428✔
289
        }
2,428✔
290
        else {
226✔
291
            for (auto& conn_pair : server_slot.alt_connections) {
226✔
UNCOV
292
                conn_pair.second->force_close();
×
UNCOV
293
            }
×
294
        }
226✔
295
    }
2,654✔
296
}
9,898✔
297

298

299
SyncSocketProvider::SyncTimer ClientImpl::create_timer(std::chrono::milliseconds delay,
300
                                                       SyncSocketProvider::FunctionHandler&& handler)
301
{
17,060✔
302
    REALM_ASSERT(m_socket_provider);
17,060✔
303
    incr_outstanding_posts();
17,060✔
304
    return m_socket_provider->create_timer(delay, [handler = std::move(handler), this](Status status) {
17,060✔
305
        auto decr_guard = util::make_scope_exit([&]() noexcept {
17,044✔
306
            decr_outstanding_posts();
17,034✔
307
        });
17,034✔
308
        handler(status);
17,044✔
309
    });
17,044✔
310
}
17,060✔
311

312

313
ClientImpl::SyncTrigger ClientImpl::create_trigger(SyncSocketProvider::FunctionHandler&& handler)
314
{
12,694✔
315
    REALM_ASSERT(m_socket_provider);
12,694✔
316
    return std::make_unique<Trigger<ClientImpl>>(this, std::move(handler));
12,694✔
317
}
12,694✔
318

319
Connection::~Connection()
320
{
2,766✔
321
    if (m_websocket_sentinel) {
2,766✔
322
        m_websocket_sentinel->destroyed = true;
×
323
        m_websocket_sentinel.reset();
×
324
    }
×
325
}
2,766✔
326

327
void Connection::activate()
328
{
2,778✔
329
    REALM_ASSERT(m_on_idle);
2,778✔
330
    m_activated = true;
2,778✔
331
    if (m_num_active_sessions == 0)
2,778✔
332
        m_on_idle->trigger();
×
333
    // We cannot in general connect immediately, because a prior failure to
334
    // connect may require a delay before reconnecting (see `m_reconnect_info`).
335
    initiate_reconnect_wait(); // Throws
2,778✔
336
}
2,778✔
337

338

339
void Connection::activate_session(std::unique_ptr<Session> sess)
340
{
10,030✔
341
    REALM_ASSERT(sess);
10,030✔
342
    REALM_ASSERT(&sess->m_conn == this);
10,030✔
343
    REALM_ASSERT(!m_force_closed);
10,030✔
344
    Session& sess_2 = *sess;
10,030✔
345
    session_ident_type ident = sess->m_ident;
10,030✔
346
    auto p = m_sessions.emplace(ident, std::move(sess)); // Throws
10,030✔
347
    bool was_inserted = p.second;
10,030✔
348
    REALM_ASSERT(was_inserted);
10,030✔
349
    // Save the session ident to the historical list of session idents
350
    m_session_history.insert(ident);
10,030✔
351
    sess_2.activate(); // Throws
10,030✔
352
    if (m_state == ConnectionState::connected) {
10,030✔
353
        bool fast_reconnect = false;
6,908✔
354
        sess_2.connection_established(fast_reconnect); // Throws
6,908✔
355
    }
6,908✔
356
    ++m_num_active_sessions;
10,030✔
357
}
10,030✔
358

359

360
void Connection::initiate_session_deactivation(Session* sess)
361
{
10,018✔
362
    REALM_ASSERT(sess);
10,018✔
363
    REALM_ASSERT(&sess->m_conn == this);
10,018✔
364
    REALM_ASSERT(m_num_active_sessions);
10,018✔
365
    // Since the client may be waiting for m_num_active_sessions to reach 0
366
    // in stop_and_wait() (on a separate thread), deactivate Session before
367
    // decrementing the num active sessions value.
368
    sess->initiate_deactivation(); // Throws
10,018✔
369
    if (sess->m_state == Session::Deactivated) {
10,018✔
370
        finish_session_deactivation(sess);
930✔
371
    }
930✔
372
    if (REALM_UNLIKELY(--m_num_active_sessions == 0)) {
10,018✔
373
        if (m_activated && m_state == ConnectionState::disconnected)
4,316✔
374
            m_on_idle->trigger();
374✔
375
    }
4,316✔
376
}
10,018✔
377

378

379
void Connection::cancel_reconnect_delay()
380
{
2,128✔
381
    REALM_ASSERT(m_activated);
2,128✔
382

383
    if (m_reconnect_delay_in_progress) {
2,128✔
384
        if (m_nonzero_reconnect_delay)
1,908✔
385
            logger.detail("Canceling reconnect delay"); // Throws
952✔
386

387
        // Cancel the in-progress wait operation by destroying the timer
388
        // object. Destruction is needed in this case, because a new wait
389
        // operation might have to be initiated before the previous one
390
        // completes (its completion handler starts to execute), so the new wait
391
        // operation must be done on a new timer object.
392
        m_reconnect_disconnect_timer.reset();
1,908✔
393
        m_reconnect_delay_in_progress = false;
1,908✔
394
        m_reconnect_info.reset();
1,908✔
395
        initiate_reconnect_wait(); // Throws
1,908✔
396
        return;
1,908✔
397
    }
1,908✔
398

399
    // If we are not disconnected, then we need to make sure the next time we get disconnected
400
    // that we are allowed to re-connect as quickly as possible.
401
    //
402
    // Setting m_reconnect_info.scheduled_reset will cause initiate_reconnect_wait to reset the
403
    // backoff/delay state before calculating the next delay, unless a PONG message is received
404
    // for the urgent PING message we send below.
405
    //
406
    // If we get a PONG message for the urgent PING message sent below, then the connection is
407
    // healthy and we can calculate the next delay normally.
408
    if (m_state != ConnectionState::disconnected) {
220✔
409
        m_reconnect_info.scheduled_reset = true;
220✔
410
        m_ping_after_scheduled_reset_of_reconnect_info = false;
220✔
411

412
        schedule_urgent_ping(); // Throws
220✔
413
        return;
220✔
414
    }
220✔
415
    // Nothing to do in this case. The next reconnect attemp will be made as
416
    // soon as there are any sessions that are both active and unsuspended.
417
}
220✔
418

419
void Connection::finish_session_deactivation(Session* sess)
420
{
8,210✔
421
    REALM_ASSERT(sess->m_state == Session::Deactivated);
8,210✔
422
    auto ident = sess->m_ident;
8,210✔
423
    m_sessions.erase(ident);
8,210✔
424
    m_session_history.erase(ident);
8,210✔
425
}
8,210✔
426

427
void Connection::force_close()
428
{
2,432✔
429
    if (m_force_closed) {
2,432✔
430
        return;
×
431
    }
×
432

433
    m_force_closed = true;
2,432✔
434

435
    if (m_state != ConnectionState::disconnected) {
2,432✔
436
        voluntary_disconnect();
2,398✔
437
    }
2,398✔
438

439
    REALM_ASSERT_EX(m_state == ConnectionState::disconnected, m_state);
2,432✔
440
    if (m_reconnect_delay_in_progress || m_disconnect_delay_in_progress) {
2,432✔
441
        m_reconnect_disconnect_timer.reset();
32✔
442
        m_reconnect_delay_in_progress = false;
32✔
443
        m_disconnect_delay_in_progress = false;
32✔
444
    }
32✔
445

446
    // We must copy any session pointers we want to close to a vector because force_closing
447
    // the session may remove it from m_sessions and invalidate the iterator uses to loop
448
    // through the map. By copying to a separate vector we ensure our iterators remain valid.
449
    std::vector<Session*> to_close;
2,432✔
450
    for (auto& session_pair : m_sessions) {
2,432✔
451
        if (session_pair.second->m_state == Session::State::Active) {
100✔
452
            to_close.push_back(session_pair.second.get());
100✔
453
        }
100✔
454
    }
100✔
455

456
    for (auto& sess : to_close) {
2,432✔
457
        sess->force_close();
100✔
458
    }
100✔
459

460
    logger.debug("Force closed idle connection");
2,432✔
461
}
2,432✔
462

463

464
void Connection::websocket_connected_handler(const std::string& protocol)
465
{
3,532✔
466
    if (!protocol.empty()) {
3,532✔
467
        std::string_view expected_prefix =
3,532✔
468
            is_flx_sync_connection() ? get_flx_websocket_protocol_prefix() : get_pbs_websocket_protocol_prefix();
3,532✔
469
        // FIXME: Use std::string_view::begins_with() in C++20.
470
        auto prefix_matches = [&](std::string_view other) {
3,532✔
471
            return protocol.size() >= other.size() && (protocol.substr(0, other.size()) == other);
3,532✔
472
        };
3,532✔
473
        if (prefix_matches(expected_prefix)) {
3,532✔
474
            util::MemoryInputStream in;
3,532✔
475
            in.set_buffer(protocol.data() + expected_prefix.size(), protocol.data() + protocol.size());
3,532✔
476
            in.imbue(std::locale::classic());
3,532✔
477
            in.unsetf(std::ios_base::skipws);
3,532✔
478
            int value_2 = 0;
3,532✔
479
            in >> value_2;
3,532✔
480
            if (in && in.eof() && value_2 >= 0) {
3,532✔
481
                bool good_version =
3,532✔
482
                    (value_2 >= get_oldest_supported_protocol_version() && value_2 <= get_current_protocol_version());
3,532✔
483
                if (good_version) {
3,532✔
484
                    logger.detail("Negotiated protocol version: %1", value_2);
3,532✔
485
                    // For now, grab the connection ID from the websocket if it supports it. In the future, the server
486
                    // will provide the appservices connection ID via a log message.
487
                    // TODO: Remove once the server starts sending the connection ID
488
                    receive_appservices_request_id(m_websocket->get_appservices_request_id());
3,532✔
489
                    m_negotiated_protocol_version = value_2;
3,532✔
490
                    handle_connection_established(); // Throws
3,532✔
491
                    return;
3,532✔
492
                }
3,532✔
493
            }
3,532✔
494
        }
3,532✔
495
        close_due_to_client_side_error({ErrorCodes::SyncProtocolNegotiationFailed,
×
496
                                        util::format("Bad protocol info from server: '%1'", protocol)},
×
497
                                       IsFatal{true}, ConnectionTerminationReason::bad_headers_in_http_response);
×
498
    }
×
499
    else {
×
500
        close_due_to_client_side_error(
×
501
            {ErrorCodes::SyncProtocolNegotiationFailed, "Missing protocol info from server"}, IsFatal{true},
×
502
            ConnectionTerminationReason::bad_headers_in_http_response);
×
503
    }
×
504
}
3,532✔
505

506

507
bool Connection::websocket_binary_message_received(util::Span<const char> data)
508
{
80,038✔
509
    if (m_force_closed) {
80,038✔
510
        logger.debug("Received binary message after connection was force closed");
×
511
        return false;
×
512
    }
×
513

514
    using sf = SimulatedFailure;
80,038✔
515
    if (sf::check_trigger(sf::sync_client__read_head)) {
80,038✔
516
        close_due_to_client_side_error(
450✔
517
            {ErrorCodes::RuntimeError, "Simulated failure during sync client websocket read"}, IsFatal{false},
450✔
518
            ConnectionTerminationReason::read_or_write_error);
450✔
519
        return bool(m_websocket);
450✔
520
    }
450✔
521

522
    handle_message_received(data);
79,588✔
523
    return bool(m_websocket);
79,588✔
524
}
80,038✔
525

526

527
void Connection::websocket_error_handler()
528
{
696✔
529
    m_websocket_error_received = true;
696✔
530
}
696✔
531

532
bool Connection::websocket_closed_handler(bool was_clean, WebSocketError error_code, std::string_view msg)
533
{
800✔
534
    if (m_force_closed) {
800✔
535
        logger.debug("Received websocket close message after connection was force closed");
×
536
        return false;
×
537
    }
×
538
    logger.info("Closing the websocket with error code=%1, message='%2', was_clean=%3", error_code, msg, was_clean);
800✔
539

540
    switch (error_code) {
800✔
541
        case WebSocketError::websocket_ok:
56✔
542
            break;
56✔
543
        case WebSocketError::websocket_resolve_failed:
4✔
544
            [[fallthrough]];
4✔
545
        case WebSocketError::websocket_connection_failed: {
112✔
546
            SessionErrorInfo error_info(
112✔
547
                {ErrorCodes::SyncConnectFailed, util::format("Failed to connect to sync: %1", msg)}, IsFatal{false});
112✔
548
            // If the connection fails/times out and the server has not been contacted yet, refresh the location
549
            // to make sure the websocket URL is correct
550
            if (!m_server_endpoint.is_verified) {
112✔
551
                error_info.server_requests_action = ProtocolErrorInfo::Action::RefreshLocation;
84✔
552
            }
84✔
553
            involuntary_disconnect(std::move(error_info), ConnectionTerminationReason::connect_operation_failed);
112✔
554
            break;
112✔
555
        }
4✔
556
        case WebSocketError::websocket_read_error:
562✔
557
            [[fallthrough]];
562✔
558
        case WebSocketError::websocket_write_error: {
562✔
559
            close_due_to_transient_error({ErrorCodes::ConnectionClosed, msg},
562✔
560
                                         ConnectionTerminationReason::read_or_write_error);
562✔
561
            break;
562✔
562
        }
562✔
563
        case WebSocketError::websocket_going_away:
✔
564
            [[fallthrough]];
×
565
        case WebSocketError::websocket_protocol_error:
✔
566
            [[fallthrough]];
×
567
        case WebSocketError::websocket_unsupported_data:
✔
568
            [[fallthrough]];
×
569
        case WebSocketError::websocket_invalid_payload_data:
✔
570
            [[fallthrough]];
×
571
        case WebSocketError::websocket_policy_violation:
✔
572
            [[fallthrough]];
×
573
        case WebSocketError::websocket_reserved:
✔
574
            [[fallthrough]];
×
575
        case WebSocketError::websocket_no_status_received:
✔
576
            [[fallthrough]];
×
577
        case WebSocketError::websocket_invalid_extension: {
✔
578
            close_due_to_client_side_error({ErrorCodes::SyncProtocolInvariantFailed, msg}, IsFatal{false},
×
579
                                           ConnectionTerminationReason::websocket_protocol_violation); // Throws
×
580
            break;
×
581
        }
×
582
        case WebSocketError::websocket_message_too_big: {
4✔
583
            auto message = util::format(
4✔
584
                "Sync websocket closed because the server received a message that was too large: %1", msg);
4✔
585
            SessionErrorInfo error_info(Status(ErrorCodes::LimitExceeded, std::move(message)), IsFatal{false});
4✔
586
            error_info.server_requests_action = ProtocolErrorInfo::Action::ClientReset;
4✔
587
            involuntary_disconnect(std::move(error_info),
4✔
588
                                   ConnectionTerminationReason::websocket_protocol_violation); // Throws
4✔
589
            break;
4✔
590
        }
×
591
        case WebSocketError::websocket_tls_handshake_failed: {
10✔
592
            close_due_to_client_side_error(
10✔
593
                Status(ErrorCodes::TlsHandshakeFailed, util::format("TLS handshake failed: %1", msg)), IsFatal{false},
10✔
594
                ConnectionTerminationReason::ssl_certificate_rejected); // Throws
10✔
595
            break;
10✔
596
        }
×
597
        case WebSocketError::websocket_client_too_old:
✔
598
            [[fallthrough]];
×
599
        case WebSocketError::websocket_client_too_new:
✔
600
            [[fallthrough]];
×
601
        case WebSocketError::websocket_protocol_mismatch: {
✔
602
            close_due_to_client_side_error({ErrorCodes::SyncProtocolNegotiationFailed, msg}, IsFatal{true},
×
603
                                           ConnectionTerminationReason::http_response_says_fatal_error); // Throws
×
604
            break;
×
605
        }
×
606
        case WebSocketError::websocket_fatal_error: {
✔
607
            // Error is fatal if the sync_route has already been verified - if the sync_route has not
608
            // been verified, then use a non-fatal error and try to perform a location update.
609
            SessionErrorInfo error_info(
×
610
                {ErrorCodes::SyncConnectFailed, util::format("Failed to connect to sync: %1", msg)},
×
611
                IsFatal{m_server_endpoint.is_verified});
×
612
            ConnectionTerminationReason reason = ConnectionTerminationReason::http_response_says_fatal_error;
×
613
            // If the connection fails/times out and the server has not been contacted yet, refresh the location
614
            // to make sure the websocket URL is correct
615
            if (!m_server_endpoint.is_verified) {
×
616
                error_info.server_requests_action = ProtocolErrorInfo::Action::RefreshLocation;
×
617
                reason = ConnectionTerminationReason::connect_operation_failed;
×
618
            }
×
619
            involuntary_disconnect(std::move(error_info), reason);
×
620
            break;
×
621
        }
×
622
        case WebSocketError::websocket_forbidden: {
✔
623
            SessionErrorInfo error_info({ErrorCodes::AuthError, msg}, IsFatal{true});
×
624
            error_info.server_requests_action = ProtocolErrorInfo::Action::LogOutUser;
×
625
            involuntary_disconnect(std::move(error_info),
×
626
                                   ConnectionTerminationReason::http_response_says_fatal_error);
×
627
            break;
×
628
        }
×
629
        case WebSocketError::websocket_unauthorized: {
44✔
630
            SessionErrorInfo error_info(
44✔
631
                {ErrorCodes::AuthError,
44✔
632
                 util::format("Websocket was closed because of an authentication issue: %1", msg)},
44✔
633
                IsFatal{false});
44✔
634
            error_info.server_requests_action = ProtocolErrorInfo::Action::RefreshUser;
44✔
635
            involuntary_disconnect(std::move(error_info),
44✔
636
                                   ConnectionTerminationReason::http_response_says_nonfatal_error);
44✔
637
            break;
44✔
638
        }
×
639
        case WebSocketError::websocket_moved_permanently: {
12✔
640
            SessionErrorInfo error_info({ErrorCodes::ConnectionClosed, msg}, IsFatal{false});
12✔
641
            error_info.server_requests_action = ProtocolErrorInfo::Action::RefreshLocation;
12✔
642
            involuntary_disconnect(std::move(error_info),
12✔
643
                                   ConnectionTerminationReason::http_response_says_nonfatal_error);
12✔
644
            break;
12✔
645
        }
×
646
        case WebSocketError::websocket_abnormal_closure: {
✔
647
            SessionErrorInfo error_info({ErrorCodes::ConnectionClosed, msg}, IsFatal{false});
×
648
            error_info.server_requests_action = ProtocolErrorInfo::Action::RefreshUser;
×
649
            involuntary_disconnect(std::move(error_info),
×
650
                                   ConnectionTerminationReason::http_response_says_nonfatal_error);
×
651
            break;
×
652
        }
×
653
        case WebSocketError::websocket_internal_server_error:
✔
654
            [[fallthrough]];
×
655
        case WebSocketError::websocket_retry_error: {
✔
656
            involuntary_disconnect(SessionErrorInfo({ErrorCodes::ConnectionClosed, msg}, IsFatal{false}),
×
657
                                   ConnectionTerminationReason::http_response_says_nonfatal_error);
×
658
            break;
×
659
        }
×
660
    }
800✔
661

662
    return bool(m_websocket);
788✔
663
}
800✔
664

665
// Guarantees that handle_reconnect_wait() is never called from within the
666
// execution of initiate_reconnect_wait() (no callback reentrance).
667
void Connection::initiate_reconnect_wait()
668
{
8,412✔
669
    REALM_ASSERT(m_activated);
8,412✔
670
    REALM_ASSERT(!m_reconnect_delay_in_progress);
8,412✔
671
    REALM_ASSERT(!m_disconnect_delay_in_progress);
8,412✔
672

673
    // If we've been force closed then we don't need/want to reconnect. Just return early here.
674
    if (m_force_closed) {
8,412✔
675
        return;
2,400✔
676
    }
2,400✔
677

678
    m_reconnect_delay_in_progress = true;
6,012✔
679
    auto delay = m_reconnect_info.delay_interval();
6,012✔
680
    if (delay == std::chrono::milliseconds::max()) {
6,012✔
681
        logger.detail("Reconnection delayed indefinitely"); // Throws
1,000✔
682
        // Not actually starting a timer corresponds to an infinite wait
683
        m_nonzero_reconnect_delay = true;
1,000✔
684
        return;
1,000✔
685
    }
1,000✔
686

687
    if (delay == std::chrono::milliseconds::zero()) {
5,012✔
688
        m_nonzero_reconnect_delay = false;
4,672✔
689
    }
4,672✔
690
    else {
340✔
691
        logger.detail("Allowing reconnection in %1 milliseconds", delay.count()); // Throws
340✔
692
        m_nonzero_reconnect_delay = true;
340✔
693
    }
340✔
694

695
    // We create a timer for the reconnect_disconnect timer even if the delay is zero because
696
    // we need it to be cancelable in case the connection is terminated before the timer
697
    // callback is run.
698
    m_reconnect_disconnect_timer = m_client.create_timer(delay, [this](Status status) {
5,012✔
699
        // If the operation is aborted, the connection object may have been
700
        // destroyed.
701
        if (status != ErrorCodes::OperationAborted)
5,010✔
702
            handle_reconnect_wait(status); // Throws
3,738✔
703
    });                                    // Throws
5,010✔
704
}
5,012✔
705

706

707
void Connection::handle_reconnect_wait(Status status)
708
{
3,738✔
709
    if (!status.is_ok()) {
3,738✔
710
        REALM_ASSERT(status != ErrorCodes::OperationAborted);
×
711
        throw Exception(status);
×
712
    }
×
713

714
    REALM_ASSERT(m_reconnect_delay_in_progress);
3,738✔
715
    m_reconnect_delay_in_progress = false;
3,738✔
716

717
    if (m_num_active_unsuspended_sessions > 0)
3,738✔
718
        initiate_reconnect(); // Throws
3,732✔
719
}
3,738✔
720

721
struct Connection::WebSocketObserverShim : public sync::WebSocketObserver {
722
    explicit WebSocketObserverShim(Connection* conn)
723
        : conn(conn)
1,758✔
724
        , sentinel(conn->m_websocket_sentinel)
1,758✔
725
    {
3,738✔
726
    }
3,738✔
727

728
    Connection* conn;
729
    util::bind_ptr<LifecycleSentinel> sentinel;
730

731
    void websocket_connected_handler(const std::string& protocol) override
732
    {
3,532✔
733
        if (sentinel->destroyed) {
3,532✔
734
            return;
×
735
        }
×
736

737
        return conn->websocket_connected_handler(protocol);
3,532✔
738
    }
3,532✔
739

740
    void websocket_error_handler() override
741
    {
696✔
742
        if (sentinel->destroyed) {
696✔
743
            return;
×
744
        }
×
745

746
        conn->websocket_error_handler();
696✔
747
    }
696✔
748

749
    bool websocket_binary_message_received(util::Span<const char> data) override
750
    {
80,042✔
751
        if (sentinel->destroyed) {
80,042✔
752
            return false;
×
753
        }
×
754

755
        return conn->websocket_binary_message_received(data);
80,042✔
756
    }
80,042✔
757

758
    bool websocket_closed_handler(bool was_clean, WebSocketError error_code, std::string_view msg) override
759
    {
800✔
760
        if (sentinel->destroyed) {
800✔
761
            return true;
×
762
        }
×
763

764
        return conn->websocket_closed_handler(was_clean, error_code, msg);
800✔
765
    }
800✔
766
};
767

768
void Connection::initiate_reconnect()
769
{
3,738✔
770
    REALM_ASSERT(m_activated);
3,738✔
771

772
    m_state = ConnectionState::connecting;
3,738✔
773
    report_connection_state_change(ConnectionState::connecting); // Throws
3,738✔
774
    if (m_websocket_sentinel) {
3,738✔
775
        m_websocket_sentinel->destroyed = true;
×
776
    }
×
777
    m_websocket_sentinel = util::make_bind<LifecycleSentinel>();
3,738✔
778
    m_websocket.reset();
3,738✔
779

780
    // Watchdog
781
    initiate_connect_wait(); // Throws
3,738✔
782

783
    std::vector<std::string> sec_websocket_protocol;
3,738✔
784
    {
3,738✔
785
        auto protocol_prefix =
3,738✔
786
            is_flx_sync_connection() ? get_flx_websocket_protocol_prefix() : get_pbs_websocket_protocol_prefix();
3,738✔
787
        int min = get_oldest_supported_protocol_version();
3,738✔
788
        int max = get_current_protocol_version();
3,738✔
789
        REALM_ASSERT_3(min, <=, max);
3,738✔
790
        // List protocol version in descending order to ensure that the server
791
        // selects the highest possible version.
792
        for (int version = max; version >= min; --version) {
48,570✔
793
            sec_websocket_protocol.push_back(util::format("%1%2", protocol_prefix, version)); // Throws
44,832✔
794
        }
44,832✔
795
    }
3,738✔
796

797
    logger.info("Connecting to '%1%2:%3%4'", to_string(m_server_endpoint.envelope), m_server_endpoint.address,
3,738✔
798
                m_server_endpoint.port, m_http_request_path_prefix);
3,738✔
799

800
    m_websocket_error_received = false;
3,738✔
801
    m_websocket =
3,738✔
802
        m_client.m_socket_provider->connect(std::make_unique<WebSocketObserverShim>(this),
3,738✔
803
                                            WebSocketEndpoint{
3,738✔
804
                                                m_server_endpoint.address,
3,738✔
805
                                                m_server_endpoint.port,
3,738✔
806
                                                get_http_request_path(),
3,738✔
807
                                                std::move(sec_websocket_protocol),
3,738✔
808
                                                is_ssl(m_server_endpoint.envelope),
3,738✔
809
                                                /// DEPRECATED - The following will be removed in a future release
810
                                                {m_custom_http_headers.begin(), m_custom_http_headers.end()},
3,738✔
811
                                                m_verify_servers_ssl_certificate,
3,738✔
812
                                                m_ssl_trust_certificate_path,
3,738✔
813
                                                m_ssl_verify_callback,
3,738✔
814
                                                m_proxy_config,
3,738✔
815
                                            });
3,738✔
816
}
3,738✔
817

818

819
void Connection::initiate_connect_wait()
820
{
3,736✔
821
    // Deploy a watchdog to enforce an upper bound on the time it can take to
822
    // fully establish the connection (including SSL and WebSocket
823
    // handshakes). Without such a watchdog, connect operations could take very
824
    // long, or even indefinite time.
825
    milliseconds_type time = m_client.m_connect_timeout;
3,736✔
826

827
    m_connect_timer = m_client.create_timer(std::chrono::milliseconds(time), [this](Status status) {
3,736✔
828
        // If the operation is aborted, the connection object may have been
829
        // destroyed.
830
        if (status != ErrorCodes::OperationAborted)
3,726✔
831
            handle_connect_wait(status); // Throws
×
832
    });                                  // Throws
3,726✔
833
}
3,736✔
834

835

836
void Connection::handle_connect_wait(Status status)
837
{
×
838
    if (!status.is_ok()) {
×
839
        REALM_ASSERT(status != ErrorCodes::OperationAborted);
×
840
        throw Exception(status);
×
841
    }
×
842

843
    REALM_ASSERT_EX(m_state == ConnectionState::connecting, m_state);
×
844
    logger.info("Connect timeout"); // Throws
×
845
    SessionErrorInfo error_info({ErrorCodes::SyncConnectTimeout, "Sync connection was not fully established in time"},
×
846
                                IsFatal{false});
×
847
    // If the connection fails/times out and the server has not been contacted yet, refresh the location
848
    // to make sure the websocket URL is correct
849
    if (!m_server_endpoint.is_verified) {
×
850
        error_info.server_requests_action = ProtocolErrorInfo::Action::RefreshLocation;
×
851
    }
×
852
    involuntary_disconnect(std::move(error_info), ConnectionTerminationReason::sync_connect_timeout); // Throws
×
853
}
×
854

855

856
void Connection::handle_connection_established()
857
{
3,532✔
858
    // Cancel connect timeout watchdog
859
    m_connect_timer.reset();
3,532✔
860

861
    m_state = ConnectionState::connected;
3,532✔
862
    m_server_endpoint.is_verified = true; // sync route is valid since connection is successful
3,532✔
863

864
    milliseconds_type now = monotonic_clock_now();
3,532✔
865
    m_pong_wait_started_at = now; // Initially, no time was spent waiting for a PONG message
3,532✔
866
    initiate_ping_delay(now);     // Throws
3,532✔
867

868
    bool fast_reconnect = false;
3,532✔
869
    if (m_disconnect_has_occurred) {
3,532✔
870
        milliseconds_type time = now - m_disconnect_time;
1,024✔
871
        if (time <= m_client.m_fast_reconnect_limit)
1,024✔
872
            fast_reconnect = true;
1,024✔
873
    }
1,024✔
874

875
    for (auto& p : m_sessions) {
4,688✔
876
        Session& sess = *p.second;
4,688✔
877
        sess.connection_established(fast_reconnect); // Throws
4,688✔
878
    }
4,688✔
879

880
    report_connection_state_change(ConnectionState::connected); // Throws
3,532✔
881
}
3,532✔
882

883

884
void Connection::schedule_urgent_ping()
885
{
220✔
886
    REALM_ASSERT_EX(m_state != ConnectionState::disconnected, m_state);
220✔
887
    if (m_ping_delay_in_progress) {
220✔
888
        m_heartbeat_timer.reset();
126✔
889
        m_ping_delay_in_progress = false;
126✔
890
        m_minimize_next_ping_delay = true;
126✔
891
        milliseconds_type now = monotonic_clock_now();
126✔
892
        initiate_ping_delay(now); // Throws
126✔
893
        return;
126✔
894
    }
126✔
895
    REALM_ASSERT_EX(m_state == ConnectionState::connecting || m_waiting_for_pong, m_state);
94✔
896
    if (!m_send_ping)
94✔
897
        m_minimize_next_ping_delay = true;
94✔
898
}
94✔
899

900

901
void Connection::initiate_ping_delay(milliseconds_type now)
902
{
3,792✔
903
    REALM_ASSERT(!m_ping_delay_in_progress);
3,792✔
904
    REALM_ASSERT(!m_waiting_for_pong);
3,792✔
905
    REALM_ASSERT(!m_send_ping);
3,792✔
906

907
    milliseconds_type delay = 0;
3,792✔
908
    if (!m_minimize_next_ping_delay) {
3,792✔
909
        delay = m_client.m_ping_keepalive_period;
3,656✔
910
        // Make a randomized deduction of up to 10%, or up to 100% if this is
911
        // the first PING message to be sent since the connection was
912
        // established. The purpose of this randomized deduction is to reduce
913
        // the risk of many connections sending PING messages simultaneously to
914
        // the server.
915
        milliseconds_type max_deduction = (m_ping_sent ? delay / 10 : delay);
3,656✔
916
        auto distr = std::uniform_int_distribution<milliseconds_type>(0, max_deduction);
3,656✔
917
        milliseconds_type randomized_deduction = distr(m_client.get_random());
3,656✔
918
        delay -= randomized_deduction;
3,656✔
919
        // Deduct the time spent waiting for PONG
920
        REALM_ASSERT_3(now, >=, m_pong_wait_started_at);
3,656✔
921
        milliseconds_type spent_time = now - m_pong_wait_started_at;
3,656✔
922
        if (spent_time < delay) {
3,656✔
923
            delay -= spent_time;
3,648✔
924
        }
3,648✔
925
        else {
8✔
926
            delay = 0;
8✔
927
        }
8✔
928
    }
3,656✔
929
    else {
136✔
930
        m_minimize_next_ping_delay = false;
136✔
931
    }
136✔
932

933

934
    m_ping_delay_in_progress = true;
3,792✔
935

936
    m_heartbeat_timer = m_client.create_timer(std::chrono::milliseconds(delay), [this](Status status) {
3,792✔
937
        if (status == ErrorCodes::OperationAborted)
3,790✔
938
            return;
3,644✔
939
        else if (!status.is_ok())
146✔
940
            throw Exception(status);
×
941

942
        handle_ping_delay();                                    // Throws
146✔
943
    });                                                         // Throws
146✔
944
    logger.debug("Will emit a ping in %1 milliseconds", delay); // Throws
3,792✔
945
}
3,792✔
946

947

948
void Connection::handle_ping_delay()
949
{
148✔
950
    REALM_ASSERT(m_ping_delay_in_progress);
148✔
951
    m_ping_delay_in_progress = false;
148✔
952
    m_send_ping = true;
148✔
953

954
    initiate_pong_timeout(); // Throws
148✔
955

956
    if (m_state == ConnectionState::connected && !m_sending)
148✔
957
        send_next_message(); // Throws
110✔
958
}
148✔
959

960

961
void Connection::initiate_pong_timeout()
962
{
148✔
963
    REALM_ASSERT(!m_ping_delay_in_progress);
148✔
964
    REALM_ASSERT(!m_waiting_for_pong);
148✔
965
    REALM_ASSERT(m_send_ping);
148✔
966

967
    m_waiting_for_pong = true;
148✔
968
    m_pong_wait_started_at = monotonic_clock_now();
148✔
969

970
    milliseconds_type time = m_client.m_pong_keepalive_timeout;
148✔
971
    m_heartbeat_timer = m_client.create_timer(std::chrono::milliseconds(time), [this](Status status) {
148✔
972
        if (status == ErrorCodes::OperationAborted)
148✔
973
            return;
136✔
974
        else if (!status.is_ok())
12✔
975
            throw Exception(status);
×
976

977
        handle_pong_timeout(); // Throws
12✔
978
    });                        // Throws
12✔
979
}
148✔
980

981

982
void Connection::handle_pong_timeout()
983
{
12✔
984
    REALM_ASSERT(m_waiting_for_pong);
12✔
985
    logger.debug("Timeout on reception of PONG message"); // Throws
12✔
986
    close_due_to_transient_error({ErrorCodes::ConnectionClosed, "Timed out waiting for PONG response from server"},
12✔
987
                                 ConnectionTerminationReason::pong_timeout);
12✔
988
}
12✔
989

990

991
void Connection::initiate_write_message(const OutputBuffer& out, Session* sess)
992
{
99,462✔
993
    // Stop sending messages if an websocket error was received.
994
    if (m_websocket_error_received)
99,462✔
995
        return;
×
996

997
    m_websocket->async_write_binary(out.as_span(), [this, sentinel = m_websocket_sentinel](Status status) {
99,462✔
998
        if (sentinel->destroyed) {
99,412✔
999
            return;
1,462✔
1000
        }
1,462✔
1001
        if (!status.is_ok()) {
97,950✔
1002
            if (status != ErrorCodes::Error::OperationAborted) {
×
1003
                // Write errors will be handled by the websocket_write_error_handler() callback
1004
                logger.error("Connection: write failed %1: %2", status.code_string(), status.reason());
×
1005
            }
×
1006
            return;
×
1007
        }
×
1008
        handle_write_message(); // Throws
97,950✔
1009
    });                         // Throws
97,950✔
1010
    m_sending_session = sess;
99,462✔
1011
    m_sending = true;
99,462✔
1012
}
99,462✔
1013

1014

1015
void Connection::handle_write_message()
1016
{
97,950✔
1017
    m_sending_session->message_sent(); // Throws
97,950✔
1018
    if (m_sending_session->m_state == Session::Deactivated) {
97,950✔
1019
        finish_session_deactivation(m_sending_session);
128✔
1020
    }
128✔
1021
    m_sending_session = nullptr;
97,950✔
1022
    m_sending = false;
97,950✔
1023
    send_next_message(); // Throws
97,950✔
1024
}
97,950✔
1025

1026

1027
void Connection::send_next_message()
1028
{
160,410✔
1029
    REALM_ASSERT_EX(m_state == ConnectionState::connected, m_state);
160,410✔
1030
    REALM_ASSERT(!m_sending_session);
160,410✔
1031
    REALM_ASSERT(!m_sending);
160,410✔
1032
    if (m_send_ping) {
160,410✔
1033
        send_ping(); // Throws
136✔
1034
        return;
136✔
1035
    }
136✔
1036
    while (!m_sessions_enlisted_to_send.empty()) {
225,668✔
1037
        // The state of being connected is not supposed to be able to change
1038
        // across this loop thanks to the "no callback reentrance" guarantee
1039
        // provided by Websocket::async_write_text(), and friends.
1040
        REALM_ASSERT_EX(m_state == ConnectionState::connected, m_state);
165,118✔
1041

1042
        Session& sess = *m_sessions_enlisted_to_send.front();
165,118✔
1043
        m_sessions_enlisted_to_send.pop_front();
165,118✔
1044
        sess.send_message(); // Throws
165,118✔
1045

1046
        if (sess.m_state == Session::Deactivated) {
165,118✔
1047
            finish_session_deactivation(&sess);
2,788✔
1048
        }
2,788✔
1049

1050
        // An enlisted session may choose to not send a message. In that case,
1051
        // we should pass the opportunity to the next enlisted session.
1052
        if (m_sending)
165,118✔
1053
            break;
99,724✔
1054
    }
165,118✔
1055
}
160,274✔
1056

1057

1058
void Connection::send_ping()
1059
{
136✔
1060
    REALM_ASSERT(!m_ping_delay_in_progress);
136✔
1061
    REALM_ASSERT(m_waiting_for_pong);
136✔
1062
    REALM_ASSERT(m_send_ping);
136✔
1063

1064
    m_send_ping = false;
136✔
1065
    if (m_reconnect_info.scheduled_reset)
136✔
1066
        m_ping_after_scheduled_reset_of_reconnect_info = true;
112✔
1067

1068
    m_last_ping_sent_at = monotonic_clock_now();
136✔
1069
    logger.debug("Sending: PING(timestamp=%1, rtt=%2)", m_last_ping_sent_at,
136✔
1070
                 m_previous_ping_rtt); // Throws
136✔
1071

1072
    ClientProtocol& protocol = get_client_protocol();
136✔
1073
    OutputBuffer& out = get_output_buffer();
136✔
1074
    protocol.make_ping(out, m_last_ping_sent_at, m_previous_ping_rtt); // Throws
136✔
1075
    initiate_write_ping(out);                                          // Throws
136✔
1076
    m_ping_sent = true;
136✔
1077
}
136✔
1078

1079

1080
void Connection::initiate_write_ping(const OutputBuffer& out)
1081
{
136✔
1082
    m_websocket->async_write_binary(out.as_span(), [this, sentinel = m_websocket_sentinel](Status status) {
136✔
1083
        if (sentinel->destroyed) {
136✔
1084
            return;
×
1085
        }
×
1086
        if (!status.is_ok()) {
136✔
1087
            if (status != ErrorCodes::Error::OperationAborted) {
×
1088
                // Write errors will be handled by the websocket_write_error_handler() callback
1089
                logger.error("Connection: send ping failed %1: %2", status.code_string(), status.reason());
×
1090
            }
×
1091
            return;
×
1092
        }
×
1093
        handle_write_ping(); // Throws
136✔
1094
    });                      // Throws
136✔
1095
    m_sending = true;
136✔
1096
}
136✔
1097

1098

1099
void Connection::handle_write_ping()
1100
{
136✔
1101
    REALM_ASSERT(m_sending);
136✔
1102
    REALM_ASSERT(!m_sending_session);
136✔
1103
    m_sending = false;
136✔
1104
    send_next_message(); // Throws
136✔
1105
}
136✔
1106

1107

1108
void Connection::handle_message_received(util::Span<const char> data)
1109
{
79,594✔
1110
    // parse_message_received() parses the message and calls the proper handler
1111
    // on the Connection object (this).
1112
    get_client_protocol().parse_message_received<Connection>(*this, std::string_view(data.data(), data.size()));
79,594✔
1113
}
79,594✔
1114

1115

1116
void Connection::initiate_disconnect_wait()
1117
{
4,316✔
1118
    REALM_ASSERT(!m_reconnect_delay_in_progress);
4,316✔
1119

1120
    if (m_disconnect_delay_in_progress) {
4,316✔
1121
        m_reconnect_disconnect_timer.reset();
1,830✔
1122
        m_disconnect_delay_in_progress = false;
1,830✔
1123
    }
1,830✔
1124

1125
    milliseconds_type time = m_client.m_connection_linger_time;
4,316✔
1126

1127
    m_reconnect_disconnect_timer = m_client.create_timer(std::chrono::milliseconds(time), [this](Status status) {
4,316✔
1128
        // If the operation is aborted, the connection object may have been
1129
        // destroyed.
1130
        if (status != ErrorCodes::OperationAborted)
4,316✔
1131
            handle_disconnect_wait(status); // Throws
14✔
1132
    });                                     // Throws
4,316✔
1133
    m_disconnect_delay_in_progress = true;
4,316✔
1134
}
4,316✔
1135

1136

1137
void Connection::handle_disconnect_wait(Status status)
1138
{
14✔
1139
    if (!status.is_ok()) {
14✔
1140
        REALM_ASSERT(status != ErrorCodes::OperationAborted);
×
1141
        throw Exception(status);
×
1142
    }
×
1143

1144
    m_disconnect_delay_in_progress = false;
14✔
1145

1146
    REALM_ASSERT_EX(m_state != ConnectionState::disconnected, m_state);
14✔
1147
    if (m_num_active_unsuspended_sessions == 0) {
14✔
1148
        if (m_client.m_connection_linger_time > 0)
12✔
1149
            logger.detail("Linger time expired"); // Throws
×
1150
        voluntary_disconnect();                   // Throws
12✔
1151
        logger.info("Disconnected");              // Throws
12✔
1152
    }
12✔
1153
}
14✔
1154

1155

1156
void Connection::close_due_to_protocol_error(Status status)
1157
{
16✔
1158
    SessionErrorInfo error_info(std::move(status), IsFatal{true});
16✔
1159
    error_info.server_requests_action = ProtocolErrorInfo::Action::ProtocolViolation;
16✔
1160
    involuntary_disconnect(std::move(error_info),
16✔
1161
                           ConnectionTerminationReason::sync_protocol_violation); // Throws
16✔
1162
}
16✔
1163

1164

1165
void Connection::close_due_to_client_side_error(Status status, IsFatal is_fatal, ConnectionTerminationReason reason)
1166
{
460✔
1167
    logger.info("Connection closed due to error: %1", status); // Throws
460✔
1168

1169
    involuntary_disconnect(SessionErrorInfo{std::move(status), is_fatal}, reason); // Throw
460✔
1170
}
460✔
1171

1172

1173
void Connection::close_due_to_transient_error(Status status, ConnectionTerminationReason reason)
1174
{
574✔
1175
    logger.info("Connection closed due to transient error: %1", status); // Throws
574✔
1176
    SessionErrorInfo error_info{std::move(status), IsFatal{false}};
574✔
1177
    error_info.server_requests_action = ProtocolErrorInfo::Action::Transient;
574✔
1178

1179
    involuntary_disconnect(std::move(error_info), reason); // Throw
574✔
1180
}
574✔
1181

1182

1183
// Close connection due to error discovered on the server-side, and then
1184
// reported to the client by way of a connection-level ERROR message.
1185
void Connection::close_due_to_server_side_error(ProtocolError error_code, const ProtocolErrorInfo& info)
1186
{
66✔
1187
    logger.info("Connection closed due to error reported by server: %1 (%2)", info.message,
66✔
1188
                int(error_code)); // Throws
66✔
1189

1190
    const auto reason = info.is_fatal ? ConnectionTerminationReason::server_said_do_not_reconnect
66✔
1191
                                      : ConnectionTerminationReason::server_said_try_again_later;
66✔
1192
    involuntary_disconnect(SessionErrorInfo{info, protocol_error_to_status(error_code, info.message)},
66✔
1193
                           reason); // Throws
66✔
1194
}
66✔
1195

1196

1197
void Connection::disconnect(const SessionErrorInfo& info)
1198
{
3,736✔
1199
    // Cancel connect timeout watchdog
1200
    m_connect_timer.reset();
3,736✔
1201

1202
    if (m_state == ConnectionState::connected) {
3,736✔
1203
        m_disconnect_time = monotonic_clock_now();
3,526✔
1204
        m_disconnect_has_occurred = true;
3,526✔
1205

1206
        // Sessions that are in the Deactivating state at this time can be
1207
        // immediately discarded, in part because they are no longer enlisted to
1208
        // send. Such sessions will be taken to the Deactivated state by
1209
        // Session::connection_lost(), and then they will be removed from
1210
        // `m_sessions`.
1211
        auto i = m_sessions.begin(), end = m_sessions.end();
3,526✔
1212
        while (i != end) {
7,478✔
1213
            // Prevent invalidation of the main iterator when erasing elements
1214
            auto j = i++;
3,952✔
1215
            Session& sess = *j->second;
3,952✔
1216
            sess.connection_lost(); // Throws
3,952✔
1217
            if (sess.m_state == Session::Unactivated || sess.m_state == Session::Deactivated)
3,956✔
1218
                m_sessions.erase(j);
1,810✔
1219
        }
3,952✔
1220
    }
3,526✔
1221

1222
    change_state_to_disconnected();
3,736✔
1223

1224
    m_ping_delay_in_progress = false;
3,736✔
1225
    m_waiting_for_pong = false;
3,736✔
1226
    m_send_ping = false;
3,736✔
1227
    m_minimize_next_ping_delay = false;
3,736✔
1228
    m_ping_after_scheduled_reset_of_reconnect_info = false;
3,736✔
1229
    m_ping_sent = false;
3,736✔
1230
    m_heartbeat_timer.reset();
3,736✔
1231
    m_previous_ping_rtt = 0;
3,736✔
1232

1233
    m_websocket_sentinel->destroyed = true;
3,736✔
1234
    m_websocket_sentinel.reset();
3,736✔
1235
    m_websocket.reset();
3,736✔
1236
    m_input_body_buffer.reset();
3,736✔
1237
    m_sending_session = nullptr;
3,736✔
1238
    m_sessions_enlisted_to_send.clear();
3,736✔
1239
    m_sending = false;
3,736✔
1240

1241
    report_connection_state_change(ConnectionState::disconnected, info); // Throws
3,736✔
1242
    initiate_reconnect_wait();                                           // Throws
3,736✔
1243
}
3,736✔
1244

1245
bool Connection::is_flx_sync_connection() const noexcept
1246
{
113,386✔
1247
    return m_server_endpoint.server_mode != SyncServerMode::PBS;
113,386✔
1248
}
113,386✔
1249

1250
void Connection::receive_pong(milliseconds_type timestamp)
1251
{
134✔
1252
    logger.debug("Received: PONG(timestamp=%1)", timestamp);
134✔
1253

1254
    bool legal_at_this_time = (m_waiting_for_pong && !m_send_ping);
134✔
1255
    if (REALM_UNLIKELY(!legal_at_this_time)) {
134✔
1256
        close_due_to_protocol_error(
×
1257
            {ErrorCodes::SyncProtocolInvariantFailed, "Received PONG message when it was not valid"}); // Throws
×
1258
        return;
×
1259
    }
×
1260

1261
    if (REALM_UNLIKELY(timestamp != m_last_ping_sent_at)) {
134✔
1262
        close_due_to_protocol_error(
×
1263
            {ErrorCodes::SyncProtocolInvariantFailed,
×
1264
             util::format("Received PONG message with an invalid timestamp (expected %1, received %2)",
×
1265
                          m_last_ping_sent_at, timestamp)}); // Throws
×
1266
        return;
×
1267
    }
×
1268

1269
    milliseconds_type now = monotonic_clock_now();
134✔
1270
    milliseconds_type round_trip_time = now - timestamp;
134✔
1271
    logger.debug("Round trip time was %1 milliseconds", round_trip_time);
134✔
1272
    m_previous_ping_rtt = round_trip_time;
134✔
1273

1274
    // If this PONG message is a response to a PING mesage that was sent after
1275
    // the last invocation of cancel_reconnect_delay(), then the connection is
1276
    // still good, and we do not have to skip the next reconnect delay.
1277
    if (m_ping_after_scheduled_reset_of_reconnect_info) {
134✔
1278
        REALM_ASSERT(m_reconnect_info.scheduled_reset);
102✔
1279
        m_ping_after_scheduled_reset_of_reconnect_info = false;
102✔
1280
        m_reconnect_info.scheduled_reset = false;
102✔
1281
    }
102✔
1282

1283
    m_heartbeat_timer.reset();
134✔
1284
    m_waiting_for_pong = false;
134✔
1285

1286
    initiate_ping_delay(now); // Throws
134✔
1287

1288
    if (m_client.m_roundtrip_time_handler)
134✔
1289
        m_client.m_roundtrip_time_handler(m_previous_ping_rtt); // Throws
×
1290
}
134✔
1291

1292
Session* Connection::find_and_validate_session(session_ident_type session_ident, std::string_view message) noexcept
1293
{
73,566✔
1294
    if (session_ident == 0) {
73,566✔
1295
        return nullptr;
×
1296
    }
×
1297

1298
    auto* sess = get_session(session_ident);
73,566✔
1299
    if (REALM_LIKELY(sess)) {
73,566✔
1300
        return sess;
73,560✔
1301
    }
73,560✔
1302
    // Check the history to see if the message received was for a previous session
1303
    if (auto it = m_session_history.find(session_ident); it == m_session_history.end()) {
6✔
1304
        logger.error("Bad session identifier in %1 message, session_ident = %2", message, session_ident);
×
1305
        close_due_to_protocol_error(
×
1306
            {ErrorCodes::SyncProtocolInvariantFailed,
×
1307
             util::format("Received message %1 for session iden %2 when that session never existed", message,
×
1308
                          session_ident)});
×
1309
    }
×
1310
    else {
6✔
1311
        logger.error("Received %1 message for closed session, session_ident = %2", message,
6✔
1312
                     session_ident); // Throws
6✔
1313
    }
6✔
1314
    return nullptr;
6✔
1315
}
73,566✔
1316

1317
void Connection::receive_error_message(const ProtocolErrorInfo& info, session_ident_type session_ident)
1318
{
768✔
1319
    Session* sess = nullptr;
768✔
1320
    if (session_ident != 0) {
768✔
1321
        sess = find_and_validate_session(session_ident, "ERROR");
698✔
1322
        if (REALM_UNLIKELY(!sess)) {
698✔
1323
            return;
×
1324
        }
×
1325
        if (auto status = sess->receive_error_message(info); !status.is_ok()) {
698✔
1326
            close_due_to_protocol_error(std::move(status)); // Throws
×
1327
            return;
×
1328
        }
×
1329

1330
        if (sess->m_state == Session::Deactivated) {
698✔
1331
            finish_session_deactivation(sess);
2✔
1332
        }
2✔
1333
        return;
698✔
1334
    }
698✔
1335

1336
    logger.info("Received: ERROR \"%1\" (error_code=%2, is_fatal=%3, session_ident=%4, error_action=%5)",
70✔
1337
                info.message, info.raw_error_code, info.is_fatal, session_ident,
70✔
1338
                info.server_requests_action); // Throws
70✔
1339

1340
    bool known_error_code = bool(get_protocol_error_message(info.raw_error_code));
70✔
1341
    if (REALM_LIKELY(known_error_code)) {
70✔
1342
        ProtocolError error_code = ProtocolError(info.raw_error_code);
66✔
1343
        if (REALM_LIKELY(!is_session_level_error(error_code))) {
66✔
1344
            close_due_to_server_side_error(error_code, info); // Throws
66✔
1345
            return;
66✔
1346
        }
66✔
1347
        close_due_to_protocol_error(
×
1348
            {ErrorCodes::SyncProtocolInvariantFailed,
×
1349
             util::format("Received ERROR message with a non-connection-level error code %1 without a session ident",
×
1350
                          info.raw_error_code)});
×
1351
    }
×
1352
    else {
4✔
1353
        close_due_to_protocol_error(
4✔
1354
            {ErrorCodes::SyncProtocolInvariantFailed,
4✔
1355
             util::format("Received ERROR message with unknown error code %1", info.raw_error_code)});
4✔
1356
    }
4✔
1357
}
70✔
1358

1359

1360
void Connection::receive_query_error_message(int raw_error_code, std::string_view message, int64_t query_version,
1361
                                             session_ident_type session_ident)
1362
{
20✔
1363
    if (session_ident == 0) {
20✔
1364
        return close_due_to_protocol_error(
×
1365
            {ErrorCodes::SyncProtocolInvariantFailed, "Received query error message for session ident 0"});
×
1366
    }
×
1367

1368
    if (!is_flx_sync_connection()) {
20✔
1369
        return close_due_to_protocol_error({ErrorCodes::SyncProtocolInvariantFailed,
×
1370
                                            "Received a FLX query error message on a non-FLX sync connection"});
×
1371
    }
×
1372

1373
    Session* sess = find_and_validate_session(session_ident, "QUERY_ERROR");
20✔
1374
    if (REALM_UNLIKELY(!sess)) {
20✔
1375
        return;
×
1376
    }
×
1377

1378
    if (auto status = sess->receive_query_error_message(raw_error_code, message, query_version); !status.is_ok()) {
20✔
1379
        close_due_to_protocol_error(std::move(status));
×
1380
    }
×
1381
}
20✔
1382

1383

1384
void Connection::receive_ident_message(session_ident_type session_ident, SaltedFileIdent client_file_ident)
1385
{
3,756✔
1386
    Session* sess = find_and_validate_session(session_ident, "IDENT");
3,756✔
1387
    if (REALM_UNLIKELY(!sess)) {
3,756✔
1388
        return;
×
1389
    }
×
1390

1391
    if (auto status = sess->receive_ident_message(client_file_ident); !status.is_ok())
3,756✔
1392
        close_due_to_protocol_error(std::move(status)); // Throws
×
1393
}
3,756✔
1394

1395
void Connection::receive_download_message(session_ident_type session_ident, const DownloadMessage& message)
1396
{
48,324✔
1397
    Session* sess = find_and_validate_session(session_ident, "DOWNLOAD");
48,324✔
1398
    if (REALM_UNLIKELY(!sess)) {
48,324✔
1399
        return;
×
1400
    }
×
1401

1402
    if (auto status = sess->receive_download_message(message); !status.is_ok()) {
48,324✔
1403
        close_due_to_protocol_error(std::move(status));
4✔
1404
    }
4✔
1405
}
48,324✔
1406

1407
void Connection::receive_mark_message(session_ident_type session_ident, request_ident_type request_ident)
1408
{
16,356✔
1409
    Session* sess = find_and_validate_session(session_ident, "MARK");
16,356✔
1410
    if (REALM_UNLIKELY(!sess)) {
16,356✔
1411
        return;
×
1412
    }
×
1413

1414
    if (auto status = sess->receive_mark_message(request_ident); !status.is_ok())
16,356✔
1415
        close_due_to_protocol_error(std::move(status)); // Throws
8✔
1416
}
16,356✔
1417

1418

1419
void Connection::receive_unbound_message(session_ident_type session_ident)
1420
{
4,362✔
1421
    Session* sess = find_and_validate_session(session_ident, "UNBOUND");
4,362✔
1422
    if (REALM_UNLIKELY(!sess)) {
4,362✔
1423
        return;
×
1424
    }
×
1425

1426
    if (auto status = sess->receive_unbound_message(); !status.is_ok()) {
4,362✔
1427
        close_due_to_protocol_error(std::move(status)); // Throws
×
1428
        return;
×
1429
    }
×
1430

1431
    if (sess->m_state == Session::Deactivated) {
4,362✔
1432
        finish_session_deactivation(sess);
4,362✔
1433
    }
4,362✔
1434
}
4,362✔
1435

1436

1437
void Connection::receive_test_command_response(session_ident_type session_ident, request_ident_type request_ident,
1438
                                               std::string_view body)
1439
{
52✔
1440
    Session* sess = find_and_validate_session(session_ident, "TEST_COMMAND");
52✔
1441
    if (REALM_UNLIKELY(!sess)) {
52✔
1442
        return;
×
1443
    }
×
1444

1445
    if (auto status = sess->receive_test_command_response(request_ident, body); !status.is_ok()) {
52✔
1446
        close_due_to_protocol_error(std::move(status));
×
1447
    }
×
1448
}
52✔
1449

1450

1451
void Connection::receive_server_log_message(session_ident_type session_ident, util::Logger::Level level,
1452
                                            std::string_view message)
1453
{
5,826✔
1454
    std::string prefix;
5,826✔
1455
    if (REALM_LIKELY(!m_appservices_coid.empty())) {
5,826✔
1456
        prefix = util::format("Server[%1]", m_appservices_coid);
5,826✔
1457
    }
5,826✔
UNCOV
1458
    else {
×
UNCOV
1459
        prefix = "Server";
×
UNCOV
1460
    }
×
1461

1462
    if (session_ident != 0) {
5,826✔
1463
        if (auto sess = get_session(session_ident)) {
3,862✔
1464
            sess->logger.log(LogCategory::session, level, "%1 log: %2", prefix, message);
3,848✔
1465
            return;
3,848✔
1466
        }
3,848✔
1467

1468
        logger.log(util::LogCategory::session, level, "%1 log for unknown session %2: %3", prefix, session_ident,
14✔
1469
                   message);
14✔
1470
        return;
14✔
1471
    }
3,862✔
1472

1473
    logger.log(level, "%1 log: %2", prefix, message);
1,964✔
1474
}
1,964✔
1475

1476

1477
void Connection::receive_appservices_request_id(std::string_view coid)
1478
{
5,498✔
1479
    // Only set once per connection
1480
    if (!coid.empty() && m_appservices_coid.empty()) {
5,498✔
1481
        m_appservices_coid = coid;
2,490✔
1482
        logger.log(util::LogCategory::session, util::LogCategory::Level::info,
2,490✔
1483
                   "Connected to app services with request id: \"%1\"", m_appservices_coid);
2,490✔
1484
    }
2,490✔
1485
}
5,498✔
1486

1487

1488
void Connection::handle_protocol_error(Status status)
1489
{
×
1490
    close_due_to_protocol_error(std::move(status));
×
1491
}
×
1492

1493

1494
// Sessions are guaranteed to be granted the opportunity to send a message in
1495
// the order that they enlist. Note that this is important to ensure
1496
// nonoverlapping communication with the server for consecutive sessions
1497
// associated with the same Realm file.
1498
//
1499
// CAUTION: The specified session may get destroyed before this function
1500
// returns, but only if its Session::send_message() puts it into the Deactivated
1501
// state.
1502
void Connection::enlist_to_send(Session* sess)
1503
{
166,670✔
1504
    REALM_ASSERT_EX(m_state == ConnectionState::connected, m_state);
166,670✔
1505
    m_sessions_enlisted_to_send.push_back(sess); // Throws
166,670✔
1506
    if (!m_sending)
166,670✔
1507
        send_next_message(); // Throws
62,216✔
1508
}
166,670✔
1509

1510

1511
std::string Connection::get_active_appservices_connection_id()
1512
{
72✔
1513
    return m_appservices_coid;
72✔
1514
}
72✔
1515

1516
void Session::cancel_resumption_delay()
1517
{
4,064✔
1518
    REALM_ASSERT_EX(m_state == Active, m_state);
4,064✔
1519

1520
    if (!m_suspended)
4,064✔
1521
        return;
4,004✔
1522

1523
    m_suspended = false;
60✔
1524

1525
    logger.debug("Resumed"); // Throws
60✔
1526

1527
    if (unbind_process_complete())
60✔
1528
        initiate_rebind(); // Throws
34✔
1529

1530
    m_conn.one_more_active_unsuspended_session(); // Throws
60✔
1531
    if (m_try_again_activation_timer) {
60✔
1532
        m_try_again_activation_timer.reset();
8✔
1533
    }
8✔
1534

1535
    on_resumed(); // Throws
60✔
1536
}
60✔
1537

1538

1539
void Session::gather_pending_compensating_writes(util::Span<Changeset> changesets,
1540
                                                 std::vector<ProtocolErrorInfo>* out)
1541
{
23,624✔
1542
    if (m_pending_compensating_write_errors.empty() || changesets.empty()) {
23,624✔
1543
        return;
23,580✔
1544
    }
23,580✔
1545

1546
#ifdef REALM_DEBUG
44✔
1547
    REALM_ASSERT_DEBUG(
44✔
1548
        std::is_sorted(m_pending_compensating_write_errors.begin(), m_pending_compensating_write_errors.end(),
44✔
1549
                       [](const ProtocolErrorInfo& lhs, const ProtocolErrorInfo& rhs) {
44✔
1550
                           REALM_ASSERT_DEBUG(lhs.compensating_write_server_version.has_value());
44✔
1551
                           REALM_ASSERT_DEBUG(rhs.compensating_write_server_version.has_value());
44✔
1552
                           return *lhs.compensating_write_server_version < *rhs.compensating_write_server_version;
44✔
1553
                       }));
44✔
1554
#endif
44✔
1555

1556
    while (!m_pending_compensating_write_errors.empty() &&
88✔
1557
           *m_pending_compensating_write_errors.front().compensating_write_server_version <=
88✔
1558
               changesets.back().version) {
44✔
1559
        auto& cur_error = m_pending_compensating_write_errors.front();
44✔
1560
        REALM_ASSERT_3(*cur_error.compensating_write_server_version, >=, changesets.front().version);
44✔
1561
        out->push_back(std::move(cur_error));
44✔
1562
        m_pending_compensating_write_errors.pop_front();
44✔
1563
    }
44✔
1564
}
44✔
1565

1566

1567
void Session::integrate_changesets(const SyncProgress& progress, std::uint_fast64_t downloadable_bytes,
1568
                                   const ReceivedChangesets& received_changesets, VersionInfo& version_info,
1569
                                   DownloadBatchState download_batch_state)
1570
{
45,590✔
1571
    auto& history = get_history();
45,590✔
1572
    if (received_changesets.empty()) {
45,590✔
1573
        if (download_batch_state == DownloadBatchState::MoreToCome) {
21,942✔
1574
            throw IntegrationException(ErrorCodes::SyncProtocolInvariantFailed,
×
1575
                                       "received empty download message that was not the last in batch",
×
1576
                                       ProtocolError::bad_progress);
×
1577
        }
×
1578
        history.set_sync_progress(progress, &downloadable_bytes, version_info); // Throws
21,942✔
1579
        return;
21,942✔
1580
    }
21,942✔
1581

1582
    std::vector<ProtocolErrorInfo> pending_compensating_write_errors;
23,648✔
1583
    auto transact = get_db()->start_read();
23,648✔
1584
    history.integrate_server_changesets(
23,648✔
1585
        progress, &downloadable_bytes, received_changesets, version_info, download_batch_state, logger, transact,
23,648✔
1586
        [&](const TransactionRef&, util::Span<Changeset> changesets) {
23,648✔
1587
            gather_pending_compensating_writes(changesets, &pending_compensating_write_errors);
23,624✔
1588
        }); // Throws
23,624✔
1589
    if (received_changesets.size() == 1) {
23,648✔
1590
        logger.debug("1 remote changeset integrated, producing client version %1",
15,538✔
1591
                     version_info.sync_version.version); // Throws
15,538✔
1592
    }
15,538✔
1593
    else {
8,110✔
1594
        logger.debug("%2 remote changesets integrated, producing client version %1",
8,110✔
1595
                     version_info.sync_version.version, received_changesets.size()); // Throws
8,110✔
1596
    }
8,110✔
1597

1598
    for (const auto& pending_error : pending_compensating_write_errors) {
23,648✔
1599
        logger.info("Reporting compensating write for client version %1 in server version %2: %3",
44✔
1600
                    pending_error.compensating_write_rejected_client_version,
44✔
1601
                    *pending_error.compensating_write_server_version, pending_error.message);
44✔
1602
        try {
44✔
1603
            on_connection_state_changed(
44✔
1604
                m_conn.get_state(),
44✔
1605
                SessionErrorInfo{pending_error,
44✔
1606
                                 protocol_error_to_status(static_cast<ProtocolError>(pending_error.raw_error_code),
44✔
1607
                                                          pending_error.message)});
44✔
1608
        }
44✔
1609
        catch (...) {
44✔
1610
            logger.error("Exception thrown while reporting compensating write: %1", exception_to_status());
×
1611
        }
×
1612
    }
44✔
1613
}
23,648✔
1614

1615

1616
void Session::on_integration_failure(const IntegrationException& error)
1617
{
40✔
1618
    REALM_ASSERT_EX(m_state == Active, m_state);
40✔
1619
    REALM_ASSERT(!m_client_error && !m_error_to_send);
40✔
1620
    logger.error("Failed to integrate downloaded changesets: %1", error.to_status());
40✔
1621

1622
    m_client_error = util::make_optional<IntegrationException>(error);
40✔
1623
    m_error_to_send = true;
40✔
1624
    SessionErrorInfo error_info{error.to_status(), IsFatal{false}};
40✔
1625
    error_info.server_requests_action = ProtocolErrorInfo::Action::Warning;
40✔
1626
    // Surface the error to the user otherwise is lost.
1627
    on_connection_state_changed(m_conn.get_state(), std::move(error_info));
40✔
1628

1629
    // Since the deactivation process has not been initiated, the UNBIND
1630
    // message cannot have been sent unless an ERROR message was received.
1631
    REALM_ASSERT(m_suspended || m_error_message_received || !m_unbind_message_sent);
40✔
1632
    if (m_ident_message_sent && !m_error_message_received && !m_suspended) {
40✔
1633
        ensure_enlisted_to_send(); // Throws
36✔
1634
    }
36✔
1635
}
40✔
1636

1637
void Session::on_changesets_integrated(version_type client_version, const SyncProgress& progress,
1638
                                       bool changesets_integrated)
1639
{
47,490✔
1640
    REALM_ASSERT_EX(m_state == Active, m_state);
47,490✔
1641
    REALM_ASSERT_3(progress.download.server_version, >=, m_download_progress.server_version);
47,490✔
1642
    bool upload_progressed = (progress.upload.client_version > m_progress.upload.client_version);
47,490✔
1643

1644
    m_download_progress = progress.download;
47,490✔
1645
    m_progress = progress;
47,490✔
1646

1647
    if (upload_progressed) {
47,490✔
1648
        if (progress.upload.client_version > m_last_version_selected_for_upload) {
33,918✔
1649
            if (progress.upload.client_version > m_upload_progress.client_version)
13,862✔
1650
                m_upload_progress = progress.upload;
732✔
1651
            m_last_version_selected_for_upload = progress.upload.client_version;
13,862✔
1652
        }
13,862✔
1653

1654
        notify_upload_progress();
33,918✔
1655
        check_for_upload_completion();
33,918✔
1656
    }
33,918✔
1657

1658
    bool resume_upload = do_recognize_sync_version(client_version); // Allows upload process to resume
47,490✔
1659

1660
    // notify also when final DOWNLOAD received with no changesets
1661
    bool download_progressed = changesets_integrated || (!upload_progressed && resume_upload);
47,490✔
1662
    if (download_progressed)
47,490✔
1663
        notify_download_progress();
27,492✔
1664

1665
    check_for_download_completion(); // Throws
47,490✔
1666

1667
    // If the client migrated from PBS to FLX, create subscriptions when new tables are received from server.
1668
    if (auto migration_store = get_migration_store(); migration_store && m_is_flx_sync_session) {
47,490✔
1669
        auto& flx_subscription_store = *get_flx_subscription_store();
3,240✔
1670
        get_migration_store()->create_subscriptions(flx_subscription_store);
3,240✔
1671
    }
3,240✔
1672

1673
    // Since the deactivation process has not been initiated, the UNBIND
1674
    // message cannot have been sent unless an ERROR message was received.
1675
    REALM_ASSERT(m_suspended || m_error_message_received || !m_unbind_message_sent);
47,490✔
1676
    if (m_ident_message_sent && !m_error_message_received && !m_suspended) {
47,490✔
1677
        ensure_enlisted_to_send(); // Throws
47,478✔
1678
    }
47,478✔
1679
}
47,490✔
1680

1681

1682
Session::~Session()
1683
{
10,020✔
1684
    //    REALM_ASSERT_EX(m_state == Unactivated || m_state == Deactivated, m_state);
1685
}
10,020✔
1686

1687

1688
std::string Session::make_logger_prefix(session_ident_type ident)
1689
{
10,030✔
1690
    std::ostringstream out;
10,030✔
1691
    out.imbue(std::locale::classic());
10,030✔
1692
    out << "Session[" << ident << "]: "; // Throws
10,030✔
1693
    return out.str();                    // Throws
10,030✔
1694
}
10,030✔
1695

1696

1697
void Session::activate()
1698
{
10,030✔
1699
    REALM_ASSERT_EX(m_state == Unactivated, m_state);
10,030✔
1700

1701
    logger.debug("Activating"); // Throws
10,030✔
1702

1703
    if (REALM_LIKELY(!get_client().is_dry_run())) {
10,030✔
1704
        bool file_exists = util::File::exists(get_realm_path());
10,030✔
1705
        m_performing_client_reset = get_client_reset_config().has_value();
10,030✔
1706

1707
        logger.info("client_reset_config = %1, Realm exists = %2 ", m_performing_client_reset, file_exists);
10,030✔
1708
        if (!m_performing_client_reset) {
10,030✔
1709
            get_history().get_status(m_last_version_available, m_client_file_ident, m_progress); // Throws
9,656✔
1710
        }
9,656✔
1711
    }
10,030✔
1712
    logger.debug("client_file_ident = %1, client_file_ident_salt = %2", m_client_file_ident.ident,
10,030✔
1713
                 m_client_file_ident.salt); // Throws
10,030✔
1714
    m_upload_progress = m_progress.upload;
10,030✔
1715
    m_last_version_selected_for_upload = m_upload_progress.client_version;
10,030✔
1716
    m_download_progress = m_progress.download;
10,030✔
1717
    REALM_ASSERT_3(m_last_version_available, >=, m_progress.upload.client_version);
10,030✔
1718
    init_progress_handler();
10,030✔
1719

1720
    logger.debug("last_version_available  = %1", m_last_version_available);                    // Throws
10,030✔
1721
    logger.debug("progress_download_server_version = %1", m_progress.download.server_version); // Throws
10,030✔
1722
    logger.debug("progress_download_client_version = %1",
10,030✔
1723
                 m_progress.download.last_integrated_client_version);                                      // Throws
10,030✔
1724
    logger.debug("progress_upload_server_version = %1", m_progress.upload.last_integrated_server_version); // Throws
10,030✔
1725
    logger.debug("progress_upload_client_version = %1", m_progress.upload.client_version);                 // Throws
10,030✔
1726

1727
    reset_protocol_state();
10,030✔
1728
    m_state = Active;
10,030✔
1729

1730
    call_debug_hook(SyncClientHookEvent::SessionActivating, m_progress, m_last_sent_flx_query_version,
10,030✔
1731
                    DownloadBatchState::SteadyState, 0);
10,030✔
1732

1733
    REALM_ASSERT(!m_suspended);
10,030✔
1734
    m_conn.one_more_active_unsuspended_session(); // Throws
10,030✔
1735

1736
    try {
10,030✔
1737
        process_pending_flx_bootstrap();
10,030✔
1738
    }
10,030✔
1739
    catch (const IntegrationException& error) {
10,030✔
1740
        on_integration_failure(error);
×
1741
    }
×
1742
    catch (...) {
10,030✔
1743
        on_integration_failure(IntegrationException(exception_to_status()));
4✔
1744
    }
4✔
1745

1746
    // Checks if there is a pending client reset
1747
    handle_pending_client_reset_acknowledgement();
10,032✔
1748
}
10,032✔
1749

1750

1751
// The caller (Connection) must discard the session if the session has become
1752
// deactivated upon return.
1753
void Session::initiate_deactivation()
1754
{
10,018✔
1755
    REALM_ASSERT_EX(m_state == Active, m_state);
10,018✔
1756

1757
    logger.debug("Initiating deactivation"); // Throws
10,018✔
1758

1759
    m_state = Deactivating;
10,018✔
1760

1761
    if (!m_suspended)
10,018✔
1762
        m_conn.one_less_active_unsuspended_session(); // Throws
9,412✔
1763

1764
    if (m_enlisted_to_send) {
10,018✔
1765
        REALM_ASSERT(!unbind_process_complete());
5,184✔
1766
        return;
5,184✔
1767
    }
5,184✔
1768

1769
    // Deactivate immediately if the BIND message has not yet been sent and the
1770
    // session is not enlisted to send, or if the unbinding process has already
1771
    // completed.
1772
    if (!m_bind_message_sent || unbind_process_complete()) {
4,834✔
1773
        complete_deactivation(); // Throws
930✔
1774
        // Life cycle state is now Deactivated
1775
        return;
930✔
1776
    }
930✔
1777

1778
    // Ready to send the UNBIND message, if it has not already been sent
1779
    if (!m_unbind_message_sent) {
3,904✔
1780
        enlist_to_send(); // Throws
3,694✔
1781
        return;
3,694✔
1782
    }
3,694✔
1783
}
3,904✔
1784

1785

1786
void Session::complete_deactivation()
1787
{
10,018✔
1788
    REALM_ASSERT_EX(m_state == Deactivating, m_state);
10,018✔
1789
    m_state = Deactivated;
10,018✔
1790

1791
    logger.debug("Deactivation completed"); // Throws
10,018✔
1792
}
10,018✔
1793

1794

1795
// Called by the associated Connection object when this session is granted an
1796
// opportunity to send a message.
1797
//
1798
// The caller (Connection) must discard the session if the session has become
1799
// deactivated upon return.
1800
void Session::send_message()
1801
{
165,120✔
1802
    REALM_ASSERT_EX(m_state == Active || m_state == Deactivating, m_state);
165,120✔
1803
    REALM_ASSERT(m_enlisted_to_send);
165,120✔
1804
    m_enlisted_to_send = false;
165,120✔
1805
    if (m_state == Deactivating || m_error_message_received || m_suspended) {
165,120✔
1806
        // Deactivation has been initiated. If the UNBIND message has not been
1807
        // sent yet, there is no point in sending it. Instead, we can let the
1808
        // deactivation process complete.
1809
        if (!m_bind_message_sent) {
9,136✔
1810
            return complete_deactivation(); // Throws
2,788✔
1811
            // Life cycle state is now Deactivated
1812
        }
2,788✔
1813

1814
        // Session life cycle state is Deactivating or the unbinding process has
1815
        // been initiated by a session specific ERROR message
1816
        if (!m_unbind_message_sent)
6,348✔
1817
            send_unbind_message(); // Throws
6,346✔
1818
        return;
6,348✔
1819
    }
9,136✔
1820

1821
    // Session life cycle state is Active and the unbinding process has
1822
    // not been initiated
1823
    REALM_ASSERT(!m_unbind_message_sent);
155,984✔
1824

1825
    if (!m_bind_message_sent)
155,984✔
1826
        return send_bind_message(); // Throws
8,812✔
1827

1828
    if (!m_ident_message_sent) {
147,172✔
1829
        if (have_client_file_ident())
7,276✔
1830
            send_ident_message(); // Throws
7,276✔
1831
        return;
7,276✔
1832
    }
7,276✔
1833

1834
    const auto has_pending_test_command = std::any_of(m_pending_test_commands.begin(), m_pending_test_commands.end(),
139,896✔
1835
                                                      [](const PendingTestCommand& command) {
139,896✔
1836
                                                          return command.pending;
108✔
1837
                                                      });
108✔
1838
    if (has_pending_test_command) {
139,896✔
1839
        return send_test_command_message();
52✔
1840
    }
52✔
1841

1842
    if (m_error_to_send)
139,844✔
1843
        return send_json_error_message(); // Throws
32✔
1844

1845
    // Stop sending upload, mark and query messages when the client detects an error.
1846
    if (m_client_error) {
139,812✔
1847
        return;
12✔
1848
    }
12✔
1849

1850
    if (m_target_download_mark > m_last_download_mark_sent)
139,800✔
1851
        return send_mark_message(); // Throws
17,128✔
1852

1853
    auto is_upload_allowed = [&]() -> bool {
122,678✔
1854
        if (!m_is_flx_sync_session) {
122,672✔
1855
            return true;
107,514✔
1856
        }
107,514✔
1857

1858
        auto migration_store = get_migration_store();
15,158✔
1859
        if (!migration_store) {
15,158✔
1860
            return true;
×
1861
        }
×
1862

1863
        auto sentinel_query_version = migration_store->get_sentinel_subscription_set_version();
15,158✔
1864
        if (!sentinel_query_version) {
15,158✔
1865
            return true;
15,130✔
1866
        }
15,130✔
1867

1868
        // Do not allow upload if the last query sent is the sentinel one used by the migration store.
1869
        return m_last_sent_flx_query_version != *sentinel_query_version;
28✔
1870
    };
15,158✔
1871

1872
    if (!is_upload_allowed()) {
122,672✔
1873
        return;
16✔
1874
    }
16✔
1875

1876
    auto check_pending_flx_version = [&]() -> bool {
122,660✔
1877
        if (!m_is_flx_sync_session) {
122,656✔
1878
            return false;
107,516✔
1879
        }
107,516✔
1880

1881
        if (!m_allow_upload) {
15,140✔
1882
            return false;
3,090✔
1883
        }
3,090✔
1884

1885
        m_pending_flx_sub_set = get_flx_subscription_store()->get_next_pending_version(m_last_sent_flx_query_version);
12,050✔
1886

1887
        if (!m_pending_flx_sub_set) {
12,050✔
1888
            return false;
10,036✔
1889
        }
10,036✔
1890

1891
        return m_upload_progress.client_version >= m_pending_flx_sub_set->snapshot_version;
2,014✔
1892
    };
12,050✔
1893

1894
    if (check_pending_flx_version()) {
122,656✔
1895
        return send_query_change_message(); // throws
1,148✔
1896
    }
1,148✔
1897

1898
    if (m_allow_upload && (m_last_version_available > m_upload_progress.client_version)) {
121,508✔
1899
        return send_upload_message(); // Throws
58,938✔
1900
    }
58,938✔
1901
}
121,508✔
1902

1903

1904
void Session::send_bind_message()
1905
{
8,812✔
1906
    REALM_ASSERT_EX(m_state == Active, m_state);
8,812✔
1907

1908
    session_ident_type session_ident = m_ident;
8,812✔
1909
    bool need_client_file_ident = !have_client_file_ident();
8,812✔
1910
    const bool is_subserver = false;
8,812✔
1911

1912

1913
    ClientProtocol& protocol = m_conn.get_client_protocol();
8,812✔
1914
    int protocol_version = m_conn.get_negotiated_protocol_version();
8,812✔
1915
    OutputBuffer& out = m_conn.get_output_buffer();
8,812✔
1916
    // Discard the token since it's ignored by the server.
1917
    std::string empty_access_token;
8,812✔
1918
    if (m_is_flx_sync_session) {
8,812✔
1919
        nlohmann::json bind_json_data;
1,466✔
1920
        if (auto migrated_partition = get_migration_store()->get_migrated_partition()) {
1,466✔
1921
            bind_json_data["migratedPartition"] = *migrated_partition;
60✔
1922
        }
60✔
1923
        bind_json_data["sessionReason"] = static_cast<uint64_t>(get_session_reason());
1,466✔
1924
        auto schema_version = get_schema_version();
1,466✔
1925
        // Send 0 if schema is not versioned.
1926
        bind_json_data["schemaVersion"] = schema_version != uint64_t(-1) ? schema_version : 0;
1,466✔
1927
        if (logger.would_log(util::Logger::Level::debug)) {
1,466✔
1928
            std::string json_data_dump;
1,466✔
1929
            if (!bind_json_data.empty()) {
1,466✔
1930
                json_data_dump = bind_json_data.dump();
1,466✔
1931
            }
1,466✔
1932
            logger.debug(
1,466✔
1933
                "Sending: BIND(session_ident=%1, need_client_file_ident=%2, is_subserver=%3, json_data=\"%4\")",
1,466✔
1934
                session_ident, need_client_file_ident, is_subserver, json_data_dump);
1,466✔
1935
        }
1,466✔
1936
        protocol.make_flx_bind_message(protocol_version, out, session_ident, bind_json_data, empty_access_token,
1,466✔
1937
                                       need_client_file_ident, is_subserver); // Throws
1,466✔
1938
    }
1,466✔
1939
    else {
7,346✔
1940
        std::string server_path = get_virt_path();
7,346✔
1941
        logger.debug("Sending: BIND(session_ident=%1, need_client_file_ident=%2, is_subserver=%3, server_path=%4)",
7,346✔
1942
                     session_ident, need_client_file_ident, is_subserver, server_path);
7,346✔
1943
        protocol.make_pbs_bind_message(protocol_version, out, session_ident, server_path, empty_access_token,
7,346✔
1944
                                       need_client_file_ident, is_subserver); // Throws
7,346✔
1945
    }
7,346✔
1946
    m_conn.initiate_write_message(out, this); // Throws
8,812✔
1947

1948
    m_bind_message_sent = true;
8,812✔
1949
    call_debug_hook(SyncClientHookEvent::BindMessageSent, m_progress, m_last_sent_flx_query_version,
8,812✔
1950
                    DownloadBatchState::SteadyState, 0);
8,812✔
1951

1952
    // Ready to send the IDENT message if the file identifier pair is already
1953
    // available.
1954
    if (!need_client_file_ident)
8,812✔
1955
        enlist_to_send(); // Throws
3,720✔
1956
}
8,812✔
1957

1958

1959
void Session::send_ident_message()
1960
{
7,276✔
1961
    REALM_ASSERT_EX(m_state == Active, m_state);
7,276✔
1962
    REALM_ASSERT(m_bind_message_sent);
7,276✔
1963
    REALM_ASSERT(!m_unbind_message_sent);
7,276✔
1964
    REALM_ASSERT(have_client_file_ident());
7,276✔
1965

1966

1967
    ClientProtocol& protocol = m_conn.get_client_protocol();
7,276✔
1968
    OutputBuffer& out = m_conn.get_output_buffer();
7,276✔
1969
    session_ident_type session_ident = m_ident;
7,276✔
1970

1971
    if (m_is_flx_sync_session) {
7,276✔
1972
        const auto active_query_set = get_flx_subscription_store()->get_active();
1,386✔
1973
        const auto active_query_body = active_query_set.to_ext_json();
1,386✔
1974
        logger.debug("Sending: IDENT(client_file_ident=%1, client_file_ident_salt=%2, "
1,386✔
1975
                     "scan_server_version=%3, scan_client_version=%4, latest_server_version=%5, "
1,386✔
1976
                     "latest_server_version_salt=%6, query_version=%7, query_size=%8, query=\"%9\")",
1,386✔
1977
                     m_client_file_ident.ident, m_client_file_ident.salt, m_progress.download.server_version,
1,386✔
1978
                     m_progress.download.last_integrated_client_version, m_progress.latest_server_version.version,
1,386✔
1979
                     m_progress.latest_server_version.salt, active_query_set.version(), active_query_body.size(),
1,386✔
1980
                     active_query_body); // Throws
1,386✔
1981
        protocol.make_flx_ident_message(out, session_ident, m_client_file_ident, m_progress,
1,386✔
1982
                                        active_query_set.version(), active_query_body); // Throws
1,386✔
1983
        m_last_sent_flx_query_version = active_query_set.version();
1,386✔
1984
    }
1,386✔
1985
    else {
5,890✔
1986
        logger.debug("Sending: IDENT(client_file_ident=%1, client_file_ident_salt=%2, "
5,890✔
1987
                     "scan_server_version=%3, scan_client_version=%4, latest_server_version=%5, "
5,890✔
1988
                     "latest_server_version_salt=%6)",
5,890✔
1989
                     m_client_file_ident.ident, m_client_file_ident.salt, m_progress.download.server_version,
5,890✔
1990
                     m_progress.download.last_integrated_client_version, m_progress.latest_server_version.version,
5,890✔
1991
                     m_progress.latest_server_version.salt);                                  // Throws
5,890✔
1992
        protocol.make_pbs_ident_message(out, session_ident, m_client_file_ident, m_progress); // Throws
5,890✔
1993
    }
5,890✔
1994
    m_conn.initiate_write_message(out, this); // Throws
7,276✔
1995

1996
    m_ident_message_sent = true;
7,276✔
1997

1998
    // Other messages may be waiting to be sent
1999
    enlist_to_send(); // Throws
7,276✔
2000
}
7,276✔
2001

2002
void Session::send_query_change_message()
2003
{
1,148✔
2004
    REALM_ASSERT_EX(m_state == Active, m_state);
1,148✔
2005
    REALM_ASSERT(m_ident_message_sent);
1,148✔
2006
    REALM_ASSERT(!m_unbind_message_sent);
1,148✔
2007
    REALM_ASSERT(m_pending_flx_sub_set);
1,148✔
2008
    REALM_ASSERT_3(m_pending_flx_sub_set->query_version, >, m_last_sent_flx_query_version);
1,148✔
2009

2010
    if (REALM_UNLIKELY(get_client().is_dry_run())) {
1,148✔
2011
        return;
×
2012
    }
×
2013

2014
    auto sub_store = get_flx_subscription_store();
1,148✔
2015
    auto latest_sub_set = sub_store->get_by_version(m_pending_flx_sub_set->query_version);
1,148✔
2016
    auto latest_queries = latest_sub_set.to_ext_json();
1,148✔
2017
    logger.debug("Sending: QUERY(query_version=%1, query_size=%2, query=\"%3\", snapshot_version=%4)",
1,148✔
2018
                 latest_sub_set.version(), latest_queries.size(), latest_queries, latest_sub_set.snapshot_version());
1,148✔
2019

2020
    OutputBuffer& out = m_conn.get_output_buffer();
1,148✔
2021
    session_ident_type session_ident = get_ident();
1,148✔
2022
    ClientProtocol& protocol = m_conn.get_client_protocol();
1,148✔
2023
    protocol.make_query_change_message(out, session_ident, latest_sub_set.version(), latest_queries);
1,148✔
2024
    m_conn.initiate_write_message(out, this);
1,148✔
2025

2026
    m_last_sent_flx_query_version = latest_sub_set.version();
1,148✔
2027

2028
    request_download_completion_notification();
1,148✔
2029
}
1,148✔
2030

2031
void Session::send_upload_message()
2032
{
58,938✔
2033
    REALM_ASSERT_EX(m_state == Active, m_state);
58,938✔
2034
    REALM_ASSERT(m_ident_message_sent);
58,938✔
2035
    REALM_ASSERT(!m_unbind_message_sent);
58,938✔
2036

2037
    if (REALM_UNLIKELY(get_client().is_dry_run()))
58,938✔
2038
        return;
×
2039

2040
    version_type target_upload_version = m_last_version_available;
58,938✔
2041
    if (m_pending_flx_sub_set) {
58,938✔
2042
        REALM_ASSERT(m_is_flx_sync_session);
868✔
2043
        target_upload_version = m_pending_flx_sub_set->snapshot_version;
868✔
2044
    }
868✔
2045

2046
    std::vector<UploadChangeset> uploadable_changesets;
58,938✔
2047
    version_type locked_server_version = 0;
58,938✔
2048
    get_history().find_uploadable_changesets(m_upload_progress, target_upload_version, uploadable_changesets,
58,938✔
2049
                                             locked_server_version); // Throws
58,938✔
2050

2051
    if (uploadable_changesets.empty()) {
58,938✔
2052
        // Nothing more to upload right now
2053
        check_for_upload_completion(); // Throws
29,704✔
2054
        // If we need to limit upload up to some version other than the last client version available and there are no
2055
        // changes to upload, then there is no need to send an empty message.
2056
        if (m_pending_flx_sub_set) {
29,704✔
2057
            logger.debug("Empty UPLOAD was skipped (progress_client_version=%1, progress_server_version=%2)",
272✔
2058
                         m_upload_progress.client_version, m_upload_progress.last_integrated_server_version);
272✔
2059
            // Other messages may be waiting to be sent
2060
            return enlist_to_send(); // Throws
272✔
2061
        }
272✔
2062
    }
29,704✔
2063
    else {
29,234✔
2064
        m_last_version_selected_for_upload = uploadable_changesets.back().progress.client_version;
29,234✔
2065
    }
29,234✔
2066

2067
    if (m_pending_flx_sub_set && target_upload_version < m_last_version_available) {
58,666✔
2068
        logger.trace("Limiting UPLOAD message up to version %1 to send QUERY version %2",
596✔
2069
                     m_pending_flx_sub_set->snapshot_version, m_pending_flx_sub_set->query_version);
596✔
2070
    }
596✔
2071

2072
    version_type progress_client_version = m_upload_progress.client_version;
58,666✔
2073
    version_type progress_server_version = m_upload_progress.last_integrated_server_version;
58,666✔
2074

2075
    logger.debug("Sending: UPLOAD(progress_client_version=%1, progress_server_version=%2, "
58,666✔
2076
                 "locked_server_version=%3, num_changesets=%4)",
58,666✔
2077
                 progress_client_version, progress_server_version, locked_server_version,
58,666✔
2078
                 uploadable_changesets.size()); // Throws
58,666✔
2079

2080
    ClientProtocol& protocol = m_conn.get_client_protocol();
58,666✔
2081
    ClientProtocol::UploadMessageBuilder upload_message_builder = protocol.make_upload_message_builder(); // Throws
58,666✔
2082

2083
    for (const UploadChangeset& uc : uploadable_changesets) {
58,666✔
2084
        logger.debug(util::LogCategory::changeset,
42,946✔
2085
                     "Fetching changeset for upload (client_version=%1, server_version=%2, "
42,946✔
2086
                     "changeset_size=%3, origin_timestamp=%4, origin_file_ident=%5)",
42,946✔
2087
                     uc.progress.client_version, uc.progress.last_integrated_server_version, uc.changeset.size(),
42,946✔
2088
                     uc.origin_timestamp, uc.origin_file_ident); // Throws
42,946✔
2089
        if (logger.would_log(util::Logger::Level::trace)) {
42,946✔
2090
            BinaryData changeset_data = uc.changeset.get_first_chunk();
×
2091
            if (changeset_data.size() < 1024) {
×
2092
                logger.trace(util::LogCategory::changeset, "Changeset: %1",
×
2093
                             _impl::clamped_hex_dump(changeset_data)); // Throws
×
2094
            }
×
2095
            else {
×
2096
                logger.trace(util::LogCategory::changeset, "Changeset(comp): %1 %2", changeset_data.size(),
×
2097
                             protocol.compressed_hex_dump(changeset_data));
×
2098
            }
×
2099

2100
#if REALM_DEBUG
×
2101
            ChunkedBinaryInputStream in{changeset_data};
×
2102
            Changeset log;
×
2103
            try {
×
2104
                parse_changeset(in, log);
×
2105
                std::stringstream ss;
×
2106
                log.print(ss);
×
2107
                logger.trace(util::LogCategory::changeset, "Changeset (parsed):\n%1", ss.str());
×
2108
            }
×
2109
            catch (const BadChangesetError& err) {
×
2110
                logger.error(util::LogCategory::changeset, "Unable to parse changeset: %1", err.what());
×
2111
            }
×
2112
#endif
×
2113
        }
×
2114

2115
#if 0 // Upload log compaction is currently not implemented
2116
        if (!get_client().m_disable_upload_compaction) {
2117
            ChangesetEncoder::Buffer encode_buffer;
2118

2119
            {
2120
                // Upload compaction only takes place within single changesets to
2121
                // avoid another client seeing inconsistent snapshots.
2122
                ChunkedBinaryInputStream stream{uc.changeset};
2123
                Changeset changeset;
2124
                parse_changeset(stream, changeset); // Throws
2125
                // FIXME: What is the point of setting these? How can compaction care about them?
2126
                changeset.version = uc.progress.client_version;
2127
                changeset.last_integrated_remote_version = uc.progress.last_integrated_server_version;
2128
                changeset.origin_timestamp = uc.origin_timestamp;
2129
                changeset.origin_file_ident = uc.origin_file_ident;
2130

2131
                compact_changesets(&changeset, 1);
2132
                encode_changeset(changeset, encode_buffer);
2133

2134
                logger.debug(util::LogCategory::changeset, "Upload compaction: original size = %1, compacted size = %2", uc.changeset.size(),
2135
                             encode_buffer.size()); // Throws
2136
            }
2137

2138
            upload_message_builder.add_changeset(
2139
                uc.progress.client_version, uc.progress.last_integrated_server_version, uc.origin_timestamp,
2140
                uc.origin_file_ident, BinaryData{encode_buffer.data(), encode_buffer.size()}); // Throws
2141
        }
2142
        else
2143
#endif
2144
        {
42,946✔
2145
            upload_message_builder.add_changeset(uc.progress.client_version,
42,946✔
2146
                                                 uc.progress.last_integrated_server_version, uc.origin_timestamp,
42,946✔
2147
                                                 uc.origin_file_ident,
42,946✔
2148
                                                 uc.changeset); // Throws
42,946✔
2149
        }
42,946✔
2150
    }
42,946✔
2151

2152
    int protocol_version = m_conn.get_negotiated_protocol_version();
58,666✔
2153
    OutputBuffer& out = m_conn.get_output_buffer();
58,666✔
2154
    session_ident_type session_ident = get_ident();
58,666✔
2155
    upload_message_builder.make_upload_message(protocol_version, out, session_ident, progress_client_version,
58,666✔
2156
                                               progress_server_version,
58,666✔
2157
                                               locked_server_version); // Throws
58,666✔
2158
    m_conn.initiate_write_message(out, this);                          // Throws
58,666✔
2159

2160
    // Other messages may be waiting to be sent
2161
    enlist_to_send(); // Throws
58,666✔
2162
}
58,666✔
2163

2164

2165
void Session::send_mark_message()
2166
{
17,128✔
2167
    REALM_ASSERT_EX(m_state == Active, m_state);
17,128✔
2168
    REALM_ASSERT(m_ident_message_sent);
17,128✔
2169
    REALM_ASSERT(!m_unbind_message_sent);
17,128✔
2170
    REALM_ASSERT_3(m_target_download_mark, >, m_last_download_mark_sent);
17,128✔
2171

2172
    request_ident_type request_ident = m_target_download_mark;
17,128✔
2173
    logger.debug("Sending: MARK(request_ident=%1)", request_ident); // Throws
17,128✔
2174

2175
    ClientProtocol& protocol = m_conn.get_client_protocol();
17,128✔
2176
    OutputBuffer& out = m_conn.get_output_buffer();
17,128✔
2177
    session_ident_type session_ident = get_ident();
17,128✔
2178
    protocol.make_mark_message(out, session_ident, request_ident); // Throws
17,128✔
2179
    m_conn.initiate_write_message(out, this);                      // Throws
17,128✔
2180

2181
    m_last_download_mark_sent = request_ident;
17,128✔
2182

2183
    // Other messages may be waiting to be sent
2184
    enlist_to_send(); // Throws
17,128✔
2185
}
17,128✔
2186

2187

2188
void Session::send_unbind_message()
2189
{
6,346✔
2190
    REALM_ASSERT_EX(m_state == Deactivating || m_error_message_received || m_suspended, m_state);
6,346✔
2191
    REALM_ASSERT(m_bind_message_sent);
6,346✔
2192
    REALM_ASSERT(!m_unbind_message_sent);
6,346✔
2193

2194
    logger.debug("Sending: UNBIND"); // Throws
6,346✔
2195

2196
    ClientProtocol& protocol = m_conn.get_client_protocol();
6,346✔
2197
    OutputBuffer& out = m_conn.get_output_buffer();
6,346✔
2198
    session_ident_type session_ident = get_ident();
6,346✔
2199
    protocol.make_unbind_message(out, session_ident); // Throws
6,346✔
2200
    m_conn.initiate_write_message(out, this);         // Throws
6,346✔
2201

2202
    m_unbind_message_sent = true;
6,346✔
2203
}
6,346✔
2204

2205

2206
void Session::send_json_error_message()
2207
{
32✔
2208
    REALM_ASSERT_EX(m_state == Active, m_state);
32✔
2209
    REALM_ASSERT(m_ident_message_sent);
32✔
2210
    REALM_ASSERT(!m_unbind_message_sent);
32✔
2211
    REALM_ASSERT(m_error_to_send);
32✔
2212
    REALM_ASSERT(m_client_error);
32✔
2213

2214
    ClientProtocol& protocol = m_conn.get_client_protocol();
32✔
2215
    OutputBuffer& out = m_conn.get_output_buffer();
32✔
2216
    session_ident_type session_ident = get_ident();
32✔
2217
    auto protocol_error = m_client_error->error_for_server;
32✔
2218

2219
    auto message = util::format("%1", m_client_error->to_status());
32✔
2220
    logger.info("Sending: ERROR \"%1\" (error_code=%2, session_ident=%3)", message, static_cast<int>(protocol_error),
32✔
2221
                session_ident); // Throws
32✔
2222

2223
    nlohmann::json error_body_json;
32✔
2224
    error_body_json["message"] = std::move(message);
32✔
2225
    protocol.make_json_error_message(out, session_ident, static_cast<int>(protocol_error),
32✔
2226
                                     error_body_json.dump()); // Throws
32✔
2227
    m_conn.initiate_write_message(out, this);                 // Throws
32✔
2228

2229
    m_error_to_send = false;
32✔
2230
    enlist_to_send(); // Throws
32✔
2231
}
32✔
2232

2233

2234
void Session::send_test_command_message()
2235
{
52✔
2236
    REALM_ASSERT_EX(m_state == Active, m_state);
52✔
2237

2238
    auto it = std::find_if(m_pending_test_commands.begin(), m_pending_test_commands.end(),
52✔
2239
                           [](const PendingTestCommand& command) {
52✔
2240
                               return command.pending;
52✔
2241
                           });
52✔
2242
    REALM_ASSERT(it != m_pending_test_commands.end());
52✔
2243

2244
    ClientProtocol& protocol = m_conn.get_client_protocol();
52✔
2245
    OutputBuffer& out = m_conn.get_output_buffer();
52✔
2246
    auto session_ident = get_ident();
52✔
2247

2248
    logger.info("Sending: TEST_COMMAND \"%1\" (session_ident=%2, request_ident=%3)", it->body, session_ident, it->id);
52✔
2249
    protocol.make_test_command_message(out, session_ident, it->id, it->body);
52✔
2250

2251
    m_conn.initiate_write_message(out, this); // Throws;
52✔
2252
    it->pending = false;
52✔
2253

2254
    enlist_to_send();
52✔
2255
}
52✔
2256

2257
bool Session::client_reset_if_needed()
2258
{
3,664✔
2259
    // Regardless of what happens, once we return from this function we will
2260
    // no longer be in the middle of a client reset
2261
    m_performing_client_reset = false;
3,664✔
2262

2263
    // Even if we end up not actually performing a client reset, consume the
2264
    // config to ensure that the resources it holds are released
2265
    auto client_reset_config = std::exchange(get_client_reset_config(), std::nullopt);
3,664✔
2266
    if (!client_reset_config) {
3,664✔
2267
        return false;
3,288✔
2268
    }
3,288✔
2269

2270
    auto on_flx_version_complete = [this](int64_t version) {
376✔
2271
        this->on_flx_sync_version_complete(version);
300✔
2272
    };
300✔
2273
    bool did_reset =
376✔
2274
        client_reset::perform_client_reset(logger, *get_db(), std::move(*client_reset_config), m_client_file_ident,
376✔
2275
                                           get_flx_subscription_store(), on_flx_version_complete);
376✔
2276
    if (!did_reset) {
376✔
2277
        return false;
×
2278
    }
×
2279

2280
    // The fresh Realm has been used to reset the state
2281
    logger.debug("Client reset is completed, path=%1", get_realm_path()); // Throws
376✔
2282

2283
    SaltedFileIdent client_file_ident;
376✔
2284
    get_history().get_status(m_last_version_available, client_file_ident, m_progress); // Throws
376✔
2285
    REALM_ASSERT_3(m_client_file_ident.ident, ==, client_file_ident.ident);
376✔
2286
    REALM_ASSERT_3(m_client_file_ident.salt, ==, client_file_ident.salt);
376✔
2287
    REALM_ASSERT_EX(m_progress.download.last_integrated_client_version == 0,
376✔
2288
                    m_progress.download.last_integrated_client_version);
376✔
2289
    REALM_ASSERT_EX(m_progress.upload.client_version == 0, m_progress.upload.client_version);
376✔
2290
    logger.trace("last_version_available  = %1", m_last_version_available); // Throws
376✔
2291

2292
    m_upload_progress = m_progress.upload;
376✔
2293
    m_download_progress = m_progress.download;
376✔
2294
    init_progress_handler();
376✔
2295
    // In recovery mode, there may be new changesets to upload and nothing left to download.
2296
    // In FLX DiscardLocal mode, there may be new commits due to subscription handling.
2297
    // For both, we want to allow uploads again without needing external changes to download first.
2298
    m_allow_upload = true;
376✔
2299
    REALM_ASSERT_EX(m_last_version_selected_for_upload == 0, m_last_version_selected_for_upload);
376✔
2300

2301
    // Checks if there is a pending client reset
2302
    handle_pending_client_reset_acknowledgement();
376✔
2303

2304
    update_subscription_version_info();
376✔
2305

2306
    // If a migration or rollback is in progress, mark it complete when client reset is completed.
2307
    if (auto migration_store = get_migration_store()) {
376✔
2308
        migration_store->complete_migration_or_rollback();
268✔
2309
    }
268✔
2310

2311
    return true;
376✔
2312
}
376✔
2313

2314
Status Session::receive_ident_message(SaltedFileIdent client_file_ident)
2315
{
3,756✔
2316
    logger.debug("Received: IDENT(client_file_ident=%1, client_file_ident_salt=%2)", client_file_ident.ident,
3,756✔
2317
                 client_file_ident.salt); // Throws
3,756✔
2318

2319
    // Ignore the message if the deactivation process has been initiated,
2320
    // because in that case, the associated Realm and SessionWrapper must
2321
    // not be accessed any longer.
2322
    if (m_state != Active)
3,756✔
2323
        return Status::OK(); // Success
92✔
2324

2325
    bool legal_at_this_time = (m_bind_message_sent && !have_client_file_ident() && !m_error_message_received &&
3,664✔
2326
                               !m_unbound_message_received);
3,664✔
2327
    if (REALM_UNLIKELY(!legal_at_this_time)) {
3,664✔
2328
        return {ErrorCodes::SyncProtocolInvariantFailed, "Received IDENT message when it was not legal"};
×
2329
    }
×
2330
    if (REALM_UNLIKELY(client_file_ident.ident < 1)) {
3,664✔
2331
        return {ErrorCodes::SyncProtocolInvariantFailed, "Bad client file identifier in IDENT message"};
×
2332
    }
×
2333
    if (REALM_UNLIKELY(client_file_ident.salt == 0)) {
3,664✔
2334
        return {ErrorCodes::SyncProtocolInvariantFailed, "Bad client file identifier salt in IDENT message"};
×
2335
    }
×
2336

2337
    m_client_file_ident = client_file_ident;
3,664✔
2338

2339
    if (REALM_UNLIKELY(get_client().is_dry_run())) {
3,664✔
2340
        // Ready to send the IDENT message
2341
        ensure_enlisted_to_send(); // Throws
×
2342
        return Status::OK();       // Success
×
2343
    }
×
2344

2345
    // if a client reset happens, it will take care of setting the file ident
2346
    // and if not, we do it here
2347
    bool did_client_reset = false;
3,664✔
2348
    try {
3,664✔
2349
        did_client_reset = client_reset_if_needed();
3,664✔
2350
    }
3,664✔
2351
    catch (const std::exception& e) {
3,664✔
2352
        auto err_msg = util::format("A fatal error occurred during client reset: '%1'", e.what());
80✔
2353
        logger.error(err_msg.c_str());
80✔
2354
        SessionErrorInfo err_info(Status{ErrorCodes::AutoClientResetFailed, err_msg}, IsFatal{true});
80✔
2355
        suspend(err_info);
80✔
2356
        return Status::OK();
80✔
2357
    }
80✔
2358
    if (!did_client_reset) {
3,584✔
2359
        get_history().set_client_file_ident(client_file_ident,
3,288✔
2360
                                            m_fix_up_object_ids); // Throws
3,288✔
2361
        m_progress.download.last_integrated_client_version = 0;
3,288✔
2362
        m_progress.upload.client_version = 0;
3,288✔
2363
        m_last_version_selected_for_upload = 0;
3,288✔
2364
    }
3,288✔
2365

2366
    // Ready to send the IDENT message
2367
    ensure_enlisted_to_send(); // Throws
3,584✔
2368
    return Status::OK();       // Success
3,584✔
2369
}
3,664✔
2370

2371
Status Session::receive_download_message(const DownloadMessage& message)
2372
{
48,320✔
2373
    // Ignore the message if the deactivation process has been initiated,
2374
    // because in that case, the associated Realm and SessionWrapper must
2375
    // not be accessed any longer.
2376
    if (m_state != Active)
48,320✔
2377
        return Status::OK();
576✔
2378

2379
    bool is_flx = m_conn.is_flx_sync_connection();
47,744✔
2380
    int64_t query_version = is_flx ? *message.query_version : 0;
47,744✔
2381

2382
    if (!is_flx || query_version > 0)
47,744✔
2383
        enable_progress_notifications();
46,134✔
2384

2385
    // If this is a PBS connection, then every download message is its own complete batch.
2386
    bool last_in_batch = is_flx ? *message.last_in_batch : true;
47,744✔
2387
    auto batch_state = last_in_batch ? sync::DownloadBatchState::LastInBatch : sync::DownloadBatchState::MoreToCome;
47,744✔
2388
    if (is_steady_state_download_message(batch_state, query_version))
47,744✔
2389
        batch_state = DownloadBatchState::SteadyState;
45,592✔
2390

2391
    auto&& progress = message.progress;
47,744✔
2392
    if (is_flx) {
47,744✔
2393
        logger.debug("Received: DOWNLOAD(download_server_version=%1, download_client_version=%2, "
3,468✔
2394
                     "latest_server_version=%3, latest_server_version_salt=%4, "
3,468✔
2395
                     "upload_client_version=%5, upload_server_version=%6, progress_estimate=%7, "
3,468✔
2396
                     "last_in_batch=%8, query_version=%9, num_changesets=%10, ...)",
3,468✔
2397
                     progress.download.server_version, progress.download.last_integrated_client_version,
3,468✔
2398
                     progress.latest_server_version.version, progress.latest_server_version.salt,
3,468✔
2399
                     progress.upload.client_version, progress.upload.last_integrated_server_version,
3,468✔
2400
                     message.progress_estimate, last_in_batch, query_version, message.changesets.size()); // Throws
3,468✔
2401
    }
3,468✔
2402
    else {
44,276✔
2403
        logger.debug("Received: DOWNLOAD(download_server_version=%1, download_client_version=%2, "
44,276✔
2404
                     "latest_server_version=%3, latest_server_version_salt=%4, "
44,276✔
2405
                     "upload_client_version=%5, upload_server_version=%6, "
44,276✔
2406
                     "downloadable_bytes=%7, num_changesets=%8, ...)",
44,276✔
2407
                     progress.download.server_version, progress.download.last_integrated_client_version,
44,276✔
2408
                     progress.latest_server_version.version, progress.latest_server_version.salt,
44,276✔
2409
                     progress.upload.client_version, progress.upload.last_integrated_server_version,
44,276✔
2410
                     message.downloadable_bytes, message.changesets.size()); // Throws
44,276✔
2411
    }
44,276✔
2412

2413
    // Ignore download messages when the client detects an error. This is to prevent transforming the same bad
2414
    // changeset over and over again.
2415
    if (m_client_error) {
47,744✔
2416
        logger.debug("Ignoring download message because the client detected an integration error");
×
2417
        return Status::OK();
×
2418
    }
×
2419

2420
    bool legal_at_this_time = (m_ident_message_sent && !m_error_message_received && !m_unbound_message_received);
47,748✔
2421
    if (REALM_UNLIKELY(!legal_at_this_time)) {
47,744✔
2422
        return {ErrorCodes::SyncProtocolInvariantFailed, "Received DOWNLOAD message when it was not legal"};
4✔
2423
    }
4✔
2424
    if (auto status = check_received_sync_progress(progress); REALM_UNLIKELY(!status.is_ok())) {
47,740✔
2425
        logger.error("Bad sync progress received (%1)", status);
×
2426
        return status;
×
2427
    }
×
2428

2429
    version_type server_version = m_progress.download.server_version;
47,740✔
2430
    version_type last_integrated_client_version = m_progress.download.last_integrated_client_version;
47,740✔
2431
    for (const RemoteChangeset& changeset : message.changesets) {
48,580✔
2432
        // Check that per-changeset server version is strictly increasing, except in FLX sync where the server
2433
        // version must be increasing, but can stay the same during bootstraps.
2434
        bool good_server_version = m_is_flx_sync_session ? (changeset.remote_version >= server_version)
45,136✔
2435
                                                         : (changeset.remote_version > server_version);
45,136✔
2436
        // Each server version cannot be greater than the one in the header of the download message.
2437
        good_server_version = good_server_version && (changeset.remote_version <= progress.download.server_version);
45,136✔
2438
        if (!good_server_version) {
45,136✔
2439
            return {ErrorCodes::SyncProtocolInvariantFailed,
×
2440
                    util::format("Bad server version in changeset header (DOWNLOAD) (%1, %2, %3)",
×
2441
                                 changeset.remote_version, server_version, progress.download.server_version)};
×
2442
        }
×
2443
        server_version = changeset.remote_version;
45,136✔
2444
        // Check that per-changeset last integrated client version is "weakly"
2445
        // increasing.
2446
        bool good_client_version =
45,136✔
2447
            (changeset.last_integrated_local_version >= last_integrated_client_version &&
45,136✔
2448
             changeset.last_integrated_local_version <= progress.download.last_integrated_client_version);
45,136✔
2449
        if (!good_client_version) {
45,136✔
2450
            return {ErrorCodes::SyncProtocolInvariantFailed,
×
2451
                    util::format("Bad last integrated client version in changeset header (DOWNLOAD) "
×
2452
                                 "(%1, %2, %3)",
×
2453
                                 changeset.last_integrated_local_version, last_integrated_client_version,
×
2454
                                 progress.download.last_integrated_client_version)};
×
2455
        }
×
2456
        last_integrated_client_version = changeset.last_integrated_local_version;
45,136✔
2457
        // Server shouldn't send our own changes, and zero is not a valid client
2458
        // file identifier.
2459
        bool good_file_ident =
45,136✔
2460
            (changeset.origin_file_ident > 0 && changeset.origin_file_ident != m_client_file_ident.ident);
45,136✔
2461
        if (!good_file_ident) {
45,136✔
2462
            return {ErrorCodes::SyncProtocolInvariantFailed,
×
2463
                    util::format("Bad origin file identifier in changeset header (DOWNLOAD)",
×
2464
                                 changeset.origin_file_ident)};
×
2465
        }
×
2466
    }
45,136✔
2467

2468
    auto hook_action = call_debug_hook(SyncClientHookEvent::DownloadMessageReceived, progress, query_version,
47,740✔
2469
                                       batch_state, message.changesets.size());
47,740✔
2470
    if (hook_action == SyncClientHookAction::EarlyReturn) {
47,740✔
2471
        return Status::OK();
16✔
2472
    }
16✔
2473
    REALM_ASSERT_EX(hook_action == SyncClientHookAction::NoAction, hook_action);
47,724✔
2474

2475
    if (is_flx)
47,724✔
2476
        update_download_estimate(message.progress_estimate);
3,452✔
2477

2478
    if (process_flx_bootstrap_message(progress, batch_state, query_version, message.changesets)) {
47,724✔
2479
        clear_resumption_delay_state();
2,136✔
2480
        return Status::OK();
2,136✔
2481
    }
2,136✔
2482

2483
    uint64_t downloadable_bytes = is_flx ? 0 : message.downloadable_bytes;
45,588✔
2484
    initiate_integrate_changesets(downloadable_bytes, batch_state, progress, message.changesets); // Throws
45,588✔
2485

2486
    hook_action = call_debug_hook(SyncClientHookEvent::DownloadMessageIntegrated, progress, query_version,
45,588✔
2487
                                  batch_state, message.changesets.size());
45,588✔
2488
    if (hook_action == SyncClientHookAction::EarlyReturn) {
45,588✔
2489
        return Status::OK();
×
2490
    }
×
2491
    REALM_ASSERT_EX(hook_action == SyncClientHookAction::NoAction, hook_action);
45,588✔
2492

2493
    // When we receive a DOWNLOAD message successfully, we can clear the backoff timer value used to reconnect
2494
    // after a retryable session error.
2495
    clear_resumption_delay_state();
45,588✔
2496
    return Status::OK();
45,588✔
2497
}
45,588✔
2498

2499
Status Session::receive_mark_message(request_ident_type request_ident)
2500
{
16,356✔
2501
    logger.debug("Received: MARK(request_ident=%1)", request_ident); // Throws
16,356✔
2502

2503
    // Ignore the message if the deactivation process has been initiated,
2504
    // because in that case, the associated Realm and SessionWrapper must
2505
    // not be accessed any longer.
2506
    if (m_state != Active)
16,356✔
2507
        return Status::OK(); // Success
58✔
2508

2509
    bool legal_at_this_time = (m_ident_message_sent && !m_error_message_received && !m_unbound_message_received);
16,298✔
2510
    if (REALM_UNLIKELY(!legal_at_this_time)) {
16,298✔
2511
        return {ErrorCodes::SyncProtocolInvariantFailed, "Received MARK message when it was not legal"};
8✔
2512
    }
8✔
2513
    bool good_request_ident =
16,290✔
2514
        (request_ident <= m_last_download_mark_sent && request_ident > m_last_download_mark_received);
16,290✔
2515
    if (REALM_UNLIKELY(!good_request_ident)) {
16,290✔
2516
        return {
×
2517
            ErrorCodes::SyncProtocolInvariantFailed,
×
2518
            util::format(
×
2519
                "Received MARK message with invalid request identifer (last mark sent: %1 last mark received: %2)",
×
2520
                m_last_download_mark_sent, m_last_download_mark_received)};
×
2521
    }
×
2522

2523
    m_server_version_at_last_download_mark = m_progress.download.server_version;
16,290✔
2524
    m_last_download_mark_received = request_ident;
16,290✔
2525
    check_for_download_completion(); // Throws
16,290✔
2526

2527
    return Status::OK(); // Success
16,290✔
2528
}
16,290✔
2529

2530

2531
// The caller (Connection) must discard the session if the session has become
2532
// deactivated upon return.
2533
Status Session::receive_unbound_message()
2534
{
4,362✔
2535
    logger.debug("Received: UNBOUND");
4,362✔
2536

2537
    bool legal_at_this_time = (m_unbind_message_sent && !m_error_message_received && !m_unbound_message_received);
4,362✔
2538
    if (REALM_UNLIKELY(!legal_at_this_time)) {
4,362✔
2539
        return {ErrorCodes::SyncProtocolInvariantFailed, "Received UNBOUND message when it was not legal"};
×
2540
    }
×
2541

2542
    // The fact that the UNBIND message has been sent, but an ERROR message has
2543
    // not been received, implies that the deactivation process must have been
2544
    // initiated, so this session must be in the Deactivating state or the session
2545
    // has been suspended because of a client side error.
2546
    REALM_ASSERT_EX(m_state == Deactivating || m_suspended, m_state);
4,362!
2547

2548
    m_unbound_message_received = true;
4,362✔
2549

2550
    // Detect completion of the unbinding process
2551
    if (m_unbind_message_send_complete && m_state == Deactivating) {
4,362✔
2552
        // The deactivation process completes when the unbinding process
2553
        // completes.
2554
        complete_deactivation(); // Throws
4,362✔
2555
        // Life cycle state is now Deactivated
2556
    }
4,362✔
2557

2558
    return Status::OK(); // Success
4,362✔
2559
}
4,362✔
2560

2561

2562
Status Session::receive_query_error_message(int error_code, std::string_view message, int64_t query_version)
2563
{
20✔
2564
    logger.info("Received QUERY_ERROR \"%1\" (error_code=%2, query_version=%3)", message, error_code, query_version);
20✔
2565
    // Ignore the message if the deactivation process has been initiated,
2566
    // because in that case, the associated Realm and SessionWrapper must
2567
    // not be accessed any longer.
2568
    if (m_state == Active) {
20✔
2569
        on_flx_sync_error(query_version, message); // throws
20✔
2570
    }
20✔
2571
    return Status::OK();
20✔
2572
}
20✔
2573

2574
// The caller (Connection) must discard the session if the session has become
2575
// deactivated upon return.
2576
Status Session::receive_error_message(const ProtocolErrorInfo& info)
2577
{
710✔
2578
    logger.info("Received: ERROR \"%1\" (error_code=%2, is_fatal=%3, error_action=%4)", info.message,
710✔
2579
                info.raw_error_code, info.is_fatal, info.server_requests_action); // Throws
710✔
2580

2581
    bool legal_at_this_time = (m_bind_message_sent && !m_error_message_received && !m_unbound_message_received);
710✔
2582
    if (REALM_UNLIKELY(!legal_at_this_time)) {
710✔
2583
        return {ErrorCodes::SyncProtocolInvariantFailed, "Received ERROR message when it was not legal"};
×
2584
    }
×
2585

2586
    auto protocol_error = static_cast<ProtocolError>(info.raw_error_code);
710✔
2587
    auto status = protocol_error_to_status(protocol_error, info.message);
710✔
2588
    if (status != ErrorCodes::UnknownError && REALM_UNLIKELY(!is_session_level_error(protocol_error))) {
710✔
2589
        return {ErrorCodes::SyncProtocolInvariantFailed,
×
2590
                util::format("Received ERROR message for session with non-session-level error code %1",
×
2591
                             info.raw_error_code)};
×
2592
    }
×
2593

2594
    // Can't process debug hook actions once the Session is undergoing deactivation, since
2595
    // the SessionWrapper may not be available
2596
    if (m_state == Active) {
710✔
2597
        auto debug_action = call_debug_hook(SyncClientHookEvent::ErrorMessageReceived, info);
708✔
2598
        if (debug_action == SyncClientHookAction::EarlyReturn) {
708✔
2599
            return Status::OK();
8✔
2600
        }
8✔
2601
    }
708✔
2602

2603
    // For compensating write errors, we need to defer raising them to the SDK until after the server version
2604
    // containing the compensating write has appeared in a download message.
2605
    if (status == ErrorCodes::SyncCompensatingWrite) {
702✔
2606
        // If the client is not active, the compensating writes will not be processed now, but will be
2607
        // sent again the next time the client connects
2608
        if (m_state == Active) {
44✔
2609
            REALM_ASSERT(info.compensating_write_server_version.has_value());
44✔
2610
            m_pending_compensating_write_errors.push_back(info);
44✔
2611
        }
44✔
2612
        return Status::OK();
44✔
2613
    }
44✔
2614

2615
    if (protocol_error == ProtocolError::schema_version_changed) {
658✔
2616
        // Enable upload immediately if the session is still active.
2617
        if (m_state == Active) {
68✔
2618
            auto wt = get_db()->start_write();
68✔
2619
            _impl::sync_schema_migration::track_sync_schema_migration(*wt, *info.previous_schema_version);
68✔
2620
            wt->commit();
68✔
2621
            // Notify SyncSession a schema migration is required.
2622
            on_connection_state_changed(m_conn.get_state(), SessionErrorInfo{info});
68✔
2623
        }
68✔
2624
        // Keep the session active to upload any unsynced changes.
2625
        return Status::OK();
68✔
2626
    }
68✔
2627

2628
    m_error_message_received = true;
590✔
2629
    suspend(SessionErrorInfo{info, std::move(status)});
590✔
2630
    return Status::OK();
590✔
2631
}
658✔
2632

2633
void Session::suspend(const SessionErrorInfo& info)
2634
{
670✔
2635
    REALM_ASSERT(!m_suspended);
670✔
2636
    REALM_ASSERT_EX(m_state == Active || m_state == Deactivating, m_state);
670✔
2637
    logger.debug("Suspended"); // Throws
670✔
2638

2639
    m_suspended = true;
670✔
2640

2641
    // Detect completion of the unbinding process
2642
    if (m_unbind_message_send_complete && m_error_message_received) {
670✔
2643
        // The fact that the UNBIND message has been sent, but we are not being suspended because
2644
        // we received an ERROR message implies that the deactivation process must
2645
        // have been initiated, so this session must be in the Deactivating state.
2646
        REALM_ASSERT_EX(m_state == Deactivating, m_state);
2✔
2647

2648
        // The deactivation process completes when the unbinding process
2649
        // completes.
2650
        complete_deactivation(); // Throws
2✔
2651
        // Life cycle state is now Deactivated
2652
    }
2✔
2653

2654
    // Notify the application of the suspension of the session if the session is
2655
    // still in the Active state
2656
    if (m_state == Active) {
670✔
2657
        call_debug_hook(SyncClientHookEvent::SessionSuspended, info);
668✔
2658
        m_conn.one_less_active_unsuspended_session(); // Throws
668✔
2659
        on_suspended(info);                           // Throws
668✔
2660
    }
668✔
2661

2662
    if (!info.is_fatal) {
670✔
2663
        begin_resumption_delay(info);
56✔
2664
    }
56✔
2665

2666
    // Ready to send the UNBIND message, if it has not been sent already
2667
    if (!m_unbind_message_sent)
670✔
2668
        ensure_enlisted_to_send(); // Throws
668✔
2669
}
670✔
2670

2671
Status Session::receive_test_command_response(request_ident_type ident, std::string_view body)
2672
{
52✔
2673
    logger.info("Received: TEST_COMMAND \"%1\" (session_ident=%2, request_ident=%3)", body, m_ident, ident);
52✔
2674
    auto it = std::find_if(m_pending_test_commands.begin(), m_pending_test_commands.end(),
52✔
2675
                           [&](const PendingTestCommand& command) {
52✔
2676
                               return command.id == ident;
52✔
2677
                           });
52✔
2678
    if (it == m_pending_test_commands.end()) {
52✔
2679
        return {ErrorCodes::SyncProtocolInvariantFailed,
×
2680
                util::format("Received test command response for a non-existent ident %1", ident)};
×
2681
    }
×
2682

2683
    it->promise.emplace_value(std::string{body});
52✔
2684
    m_pending_test_commands.erase(it);
52✔
2685

2686
    return Status::OK();
52✔
2687
}
52✔
2688

2689
void Session::begin_resumption_delay(const ProtocolErrorInfo& error_info)
2690
{
56✔
2691
    REALM_ASSERT(!m_try_again_activation_timer);
56✔
2692

2693
    m_try_again_delay_info.update(static_cast<sync::ProtocolError>(error_info.raw_error_code),
56✔
2694
                                  error_info.resumption_delay_interval);
56✔
2695
    auto try_again_interval = m_try_again_delay_info.delay_interval();
56✔
2696
    if (ProtocolError(error_info.raw_error_code) == ProtocolError::session_closed) {
56✔
2697
        // FIXME With compensating writes the server sends this error after completing a bootstrap. Doing the
2698
        // normal backoff behavior would result in waiting up to 5 minutes in between each query change which is
2699
        // not acceptable latency. So for this error code alone, we hard-code a 1 second retry interval.
2700
        try_again_interval = std::chrono::milliseconds{1000};
24✔
2701
    }
24✔
2702
    logger.debug("Will attempt to resume session after %1 milliseconds", try_again_interval.count());
56✔
2703
    m_try_again_activation_timer = get_client().create_timer(try_again_interval, [this](Status status) {
56✔
2704
        if (status == ErrorCodes::OperationAborted)
56✔
2705
            return;
12✔
2706
        else if (!status.is_ok())
44✔
2707
            throw Exception(status);
×
2708

2709
        m_try_again_activation_timer.reset();
44✔
2710
        cancel_resumption_delay();
44✔
2711
    });
44✔
2712
}
56✔
2713

2714
void Session::clear_resumption_delay_state()
2715
{
47,724✔
2716
    if (m_try_again_activation_timer) {
47,724✔
2717
        logger.debug("Clearing resumption delay state after successful download");
×
2718
        m_try_again_delay_info.reset();
×
2719
    }
×
2720
}
47,724✔
2721

2722
Status Session::check_received_sync_progress(const SyncProgress& progress) noexcept
2723
{
47,744✔
2724
    const SyncProgress& a = m_progress;
47,744✔
2725
    const SyncProgress& b = progress;
47,744✔
2726
    std::string message;
47,744✔
2727
    if (b.latest_server_version.version < a.latest_server_version.version) {
47,744✔
2728
        message = util::format("Latest server version in download messages must be weakly increasing throughout a "
×
2729
                               "session (current: %1, received: %2)",
×
2730
                               a.latest_server_version.version, b.latest_server_version.version);
×
2731
    }
×
2732
    if (b.upload.client_version < a.upload.client_version) {
47,744✔
2733
        message = util::format("Last integrated client version in download messages must be weakly increasing "
×
2734
                               "throughout a session (current: %1, received: %2)",
×
2735
                               a.upload.client_version, b.upload.client_version);
×
2736
    }
×
2737
    if (b.upload.client_version > m_last_version_available) {
47,744✔
2738
        message = util::format("Last integrated client version on server cannot be greater than the latest client "
×
2739
                               "version in existence (current: %1, received: %2)",
×
2740
                               m_last_version_available, b.upload.client_version);
×
2741
    }
×
2742
    if (b.download.server_version < a.download.server_version) {
47,744✔
2743
        message =
×
2744
            util::format("Download cursor must be weakly increasing throughout a session (current: %1, received: %2)",
×
2745
                         a.download.server_version, b.download.server_version);
×
2746
    }
×
2747
    if (b.download.server_version > b.latest_server_version.version) {
47,744✔
2748
        message = util::format(
×
2749
            "Download cursor cannot be greater than the latest server version in existence (cursor: %1, latest: %2)",
×
2750
            b.download.server_version, b.latest_server_version.version);
×
2751
    }
×
2752
    if (b.download.last_integrated_client_version < a.download.last_integrated_client_version) {
47,744✔
2753
        message = util::format(
×
2754
            "Last integrated client version on the server at the position in the server's history of the download "
×
2755
            "cursor must be weakly increasing throughout a session (current: %1, received: %2)",
×
2756
            a.download.last_integrated_client_version, b.download.last_integrated_client_version);
×
2757
    }
×
2758
    if (b.download.last_integrated_client_version > b.upload.client_version) {
47,744✔
2759
        message = util::format("Last integrated client version on the server in the position at the server's history "
×
2760
                               "of the download cursor cannot be greater than the latest client version integrated "
×
2761
                               "on the server (download: %1, upload: %2)",
×
2762
                               b.download.last_integrated_client_version, b.upload.client_version);
×
2763
    }
×
2764
    if (b.download.server_version < b.upload.last_integrated_server_version) {
47,744✔
2765
        message = util::format(
×
2766
            "The server version of the download cursor cannot be less than the server version integrated in the "
×
2767
            "latest client version acknowledged by the server (download: %1, upload: %2)",
×
2768
            b.download.server_version, b.upload.last_integrated_server_version);
×
2769
    }
×
2770

2771
    if (message.empty()) {
47,744✔
2772
        return Status::OK();
47,740✔
2773
    }
47,740✔
2774
    return {ErrorCodes::SyncProtocolInvariantFailed, std::move(message)};
4✔
2775
}
47,744✔
2776

2777

2778
void Session::check_for_upload_completion()
2779
{
79,098✔
2780
    REALM_ASSERT_EX(m_state == Active, m_state);
79,098✔
2781
    if (!m_upload_completion_notification_requested) {
79,098✔
2782
        return;
47,646✔
2783
    }
47,646✔
2784

2785
    // during an ongoing client reset operation, we never upload anything
2786
    if (m_performing_client_reset)
31,452✔
2787
        return;
276✔
2788

2789
    // Upload process must have reached end of history
2790
    REALM_ASSERT_3(m_upload_progress.client_version, <=, m_last_version_available);
31,176✔
2791
    bool scan_complete = (m_upload_progress.client_version == m_last_version_available);
31,176✔
2792
    if (!scan_complete)
31,176✔
2793
        return;
5,076✔
2794

2795
    // All uploaded changesets must have been acknowledged by the server
2796
    REALM_ASSERT_3(m_progress.upload.client_version, <=, m_last_version_selected_for_upload);
26,100✔
2797
    bool all_uploads_accepted = (m_progress.upload.client_version == m_last_version_selected_for_upload);
26,100✔
2798
    if (!all_uploads_accepted)
26,100✔
2799
        return;
11,302✔
2800

2801
    m_upload_completion_notification_requested = false;
14,798✔
2802
    on_upload_completion(); // Throws
14,798✔
2803
}
14,798✔
2804

2805

2806
void Session::check_for_download_completion()
2807
{
63,776✔
2808
    REALM_ASSERT_3(m_target_download_mark, >=, m_last_download_mark_received);
63,776✔
2809
    REALM_ASSERT_3(m_last_download_mark_received, >=, m_last_triggering_download_mark);
63,776✔
2810
    if (m_last_download_mark_received == m_last_triggering_download_mark)
63,776✔
2811
        return;
47,250✔
2812
    if (m_last_download_mark_received < m_target_download_mark)
16,526✔
2813
        return;
402✔
2814
    if (m_download_progress.server_version < m_server_version_at_last_download_mark)
16,124✔
2815
        return;
×
2816
    m_last_triggering_download_mark = m_target_download_mark;
16,124✔
2817
    if (REALM_UNLIKELY(!m_allow_upload)) {
16,124✔
2818
        // Activate the upload process now, and enable immediate reactivation
2819
        // after a subsequent fast reconnect.
2820
        m_allow_upload = true;
4,498✔
2821
        ensure_enlisted_to_send(); // Throws
4,498✔
2822
    }
4,498✔
2823
    on_download_completion(); // Throws
16,124✔
2824
}
16,124✔
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