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realm / realm-core / 1730

04 Oct 2023 01:46PM UTC coverage: 91.575% (-0.04%) from 91.615%
1730

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Initial ObjectStore Class class (#6521)

94264 of 173446 branches covered (0.0%)

30 of 70 new or added lines in 10 files covered. (42.86%)

96 existing lines in 17 files now uncovered.

230350 of 251543 relevant lines covered (91.57%)

6843633.6 hits per line

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75.26
/src/realm/sync/network/websocket.cpp
1
#include <cctype>
2

3
#include <realm/sync/network/network.hpp>
4
#include <realm/sync/network/websocket.hpp>
5
#include <realm/util/buffer.hpp>
6
#include <realm/util/base64.hpp>
7
#include <realm/util/sha_crypto.hpp>
8

9
using namespace realm;
10
using namespace realm::sync;
11
using HttpError = websocket::HttpError;
12
using WebSocketError = websocket::WebSocketError;
13

14

15
namespace {
16

17
// case_insensitive_equal is used to compare, ignoring case, certain HTTP
18
// header values with their expected values.
19
bool case_insensitive_equal(StringData str1, StringData str2)
20
{
4,044✔
21
    if (str1.size() != str2.size())
4,044✔
22
        return false;
×
23

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24
    for (size_t i = 0; i < str1.size(); ++i)
36,396✔
25
        if (std::tolower(str1[i], std::locale::classic()) != std::tolower(str2[i], std::locale::classic()))
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26
            return false;
×
27

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28
    return true;
4,044✔
29
}
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30

31
// The WebSocket version is always 13 according to the standard.
32
const StringData sec_websocket_version = "13";
33

34
// The magic string is specified in the WebSocket protocol. It is used in the handshake.
35
const StringData websocket_magic_string = "258EAFA5-E914-47DA-95CA-C5AB0DC85B11";
36

37
// The Sec-WebSocket-Key is a header in the client HTTP request.
38
// It is the base64 encoding of 16 random bytes.
39
std::string make_random_sec_websocket_key(std::mt19937_64& random)
40
{
3,384✔
41
    char random_bytes[16];
3,384✔
42
    std::uniform_int_distribution<> dis(std::numeric_limits<char>::min(), std::numeric_limits<char>::max());
3,384✔
43
    for (int i = 0; i < 16; ++i) {
57,518✔
44
        random_bytes[i] = dis(random);
54,134✔
45
    }
54,134✔
46

1,634✔
47
    char out_buffer[24];
3,384✔
48
    size_t encoded_size = util::base64_encode(random_bytes, 16, out_buffer, 24);
3,384✔
49
    REALM_ASSERT(encoded_size == 24);
3,384✔
50

1,634✔
51
    return std::string{out_buffer, 24};
3,384✔
52
}
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53

54
// Sec-WebSocket-Accept is a header in the server's HTTP response.
55
// It is calculated from the Sec-WebSocket-Key in the client's HHTP request
56
// as the base64 encoding of the sha1 of the concatenation of the
57
// Sec-Websocket-Key and the magic string.
58
std::string make_sec_websocket_accept(StringData sec_websocket_key)
59
{
5,312✔
60
    std::string sha1_input;
5,312✔
61
    sha1_input.reserve(sec_websocket_key.size() + websocket_magic_string.size());
5,312✔
62
    sha1_input.append(sec_websocket_key.data(), sec_websocket_key.size());
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63
    sha1_input.append(websocket_magic_string.data(), websocket_magic_string.size());
5,312✔
64

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65
    unsigned char sha1_output[20];
5,312✔
66
    util::sha1(sha1_input.data(), sha1_input.length(), sha1_output);
5,312✔
67

2,558✔
68
    char base64_output[28];
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69
    size_t base64_output_size = util::base64_encode(reinterpret_cast<char*>(sha1_output), 20, base64_output, 28);
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70
    REALM_ASSERT(base64_output_size == 28);
5,312✔
71

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72
    return std::string(base64_output, 28);
5,312✔
73
}
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74

75
// find_http_header_value() returns the value of the header \param header in the
76
// HTTP message \param message if present. If the header is absent, the function returns
77
// None.
78
util::Optional<StringData> find_http_header_value(const HTTPHeaders& headers, StringData header)
79
{
13,400✔
80
    auto it = headers.find(header);
13,400✔
81

6,430✔
82
    if (it != headers.end()) {
13,400✔
83
        return StringData(it->second);
13,400✔
84
    }
13,400✔
UNCOV
85
    return none;
×
UNCOV
86
}
×
87

88
// validate_websocket_upgrade() returns true if the HTTP \a headers
89
// contain the line
90
// Upgrade: websocket
91
bool validate_websocket_upgrade(const HTTPHeaders& headers)
92
{
2,022✔
93
    util::Optional<StringData> header_value_upgrade = find_http_header_value(headers, "Upgrade");
2,022✔
94

968✔
95
    return (header_value_upgrade && case_insensitive_equal(*header_value_upgrade, "websocket"));
2,022✔
96
}
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97

98
// validate_websocket_connection() returns true if the HTTP \a headers
99
// contains the line:
100
// Connection: Upgrade
101
bool validate_websocket_connection(const HTTPHeaders& headers)
102
{
2,022✔
103
    util::Optional<StringData> header_value_connection = find_http_header_value(headers, "Connection");
2,022✔
104

968✔
105
    return (header_value_connection && case_insensitive_equal(*header_value_connection, "Upgrade"));
2,022✔
106
}
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107

108
// validate_sec_websocket_version() returns true if the
109
// \param http_message contains a header with the
110
// correct sec_websocket_version.
111
bool validate_sec_websocket_version(const HTTPHeaders& headers)
112
{
2,022✔
113
    return find_http_header_value(headers, "Sec-WebSocket-Version") == sec_websocket_version;
2,022✔
114
}
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115

116
// find_sec_websocket_key() returns true if the
117
// \param headers contains a Sec-Websocket-Key
118
// header, false otherwise. If the header is found, the
119
// argument sec_websocket_key is set to its value.
120
bool find_sec_websocket_key(const HTTPHeaders& headers, std::string& sec_websocket_key)
121
{
2,022✔
122
    util::Optional<StringData> header_value = find_http_header_value(headers, "Sec-WebSocket-Key");
2,022✔
123

968✔
124
    if (!header_value)
2,022✔
125
        return false;
×
126

968✔
127
    sec_websocket_key = *header_value;
2,022✔
128

968✔
129
    return true;
2,022✔
130
}
2,022✔
131

132
util::Optional<HTTPResponse> do_make_http_response(const HTTPRequest& request,
133
                                                   const std::string& sec_websocket_protocol, std::error_code& ec)
134
{
2,022✔
135
    std::string sec_websocket_key;
2,022✔
136

968✔
137
    if (!validate_websocket_upgrade(request.headers)) {
2,022✔
138
        ec = HttpError::bad_request_header_upgrade;
×
139
        return util::none;
×
140
    }
×
141

968✔
142
    if (!validate_websocket_connection(request.headers)) {
2,022✔
143
        ec = HttpError::bad_request_header_connection;
×
144
        return util::none;
×
145
    }
×
146

968✔
147
    if (!validate_sec_websocket_version(request.headers)) {
2,022✔
148
        ec = HttpError::bad_request_header_websocket_version;
×
149
        return util::none;
×
150
    }
×
151

968✔
152
    if (!find_sec_websocket_key(request.headers, sec_websocket_key)) {
2,022✔
153
        ec = HttpError::bad_request_header_websocket_key;
×
154
        return util::none;
×
155
    }
×
156

968✔
157
    std::string sec_websocket_accept = make_sec_websocket_accept(sec_websocket_key);
2,022✔
158

968✔
159
    HTTPResponse response;
2,022✔
160
    response.status = HTTPStatus::SwitchingProtocols;
2,022✔
161
    response.headers["Upgrade"] = "websocket";
2,022✔
162
    response.headers["Connection"] = "Upgrade";
2,022✔
163
    response.headers["Sec-WebSocket-Accept"] = sec_websocket_accept;
2,022✔
164
    response.headers["Sec-WebSocket-Protocol"] = sec_websocket_protocol;
2,022✔
165

968✔
166
    return response;
2,022✔
167
}
2,022✔
168

169
// mask_payload masks (and demasks) the payload sent from the client to the server.
170
void mask_payload(char* masking_key, const char* payload, size_t payload_len, char* output)
171
{
179,924✔
172
    for (size_t i = 0; i < payload_len; ++i) {
217,194,094✔
173
        output[i] = payload[i] ^ masking_key[i % 4];
217,014,170✔
174
    }
217,014,170✔
175
}
179,924✔
176

177
// make_frame() creates a WebSocket frame according to the WebSocket standard.
178
// \param fin indicates whether the frame is the final fragment in a message.
179
// Sync clients and servers will only send unfragmented messages, but they must be
180
// prepared to receive fragmented messages.
181
// \param opcode must be one of six values:
182
// 0  = continuation frame
183
// 1  = text frame
184
// 2  = binary frame
185
// 8  = ping frame
186
// 9  = pong frame
187
// 10 = close frame.
188
// Sync clients and server will only send the last four, but must be prepared to
189
// receive all.
190
// \param mask indicates whether the payload of the frame should be masked. Frames
191
// are masked if and only if they originate from the client.
192
// The payload is located in the buffer \param payload, and has size \param payload_size.
193
// \param output is the output buffer. It must be large enough to contain the frame.
194
// The frame size can at most be payload_size + 14.
195
// \param random is used to create a random masking key.
196
// The return value is the size of the frame.
197
size_t make_frame(bool fin, int opcode, bool mask, const char* payload, size_t payload_size, char* output,
198
                  std::mt19937_64& random)
199
{
171,084✔
200
    int index = 0; // used to keep track of position within the header.
171,084✔
201
    using uchar = unsigned char;
171,084✔
202
    output[0] = (fin ? char(uchar(128)) : 0) + opcode; // fin and opcode in the first byte.
171,072✔
203
    output[1] = (mask ? char(uchar(128)) : 0);         // First bit of the second byte is mask.
134,008✔
204
    if (payload_size <= 125) {                         // The payload length is contained in the second byte.
171,084✔
205
        output[1] += static_cast<char>(payload_size);
146,552✔
206
        index = 2;
146,552✔
207
    }
146,552✔
208
    else if (payload_size < 65536) { // The payload length is contained bytes 3-4.
24,532✔
209
        output[1] += 126;
24,328✔
210
        // FIXME: Verify that this code works even if one sync-client is on a platform where
12,644✔
211
        // a 'char' is signed by default and the other client is on a platform where char is
12,644✔
212
        // unsigned. Note that the result of payload_size / 256 may not fit in a signed char.
12,644✔
213
        output[2] = static_cast<char>(payload_size / 256);
24,328✔
214

12,644✔
215
        // FIXME: Verify that the modulo arithmetic is well defined
12,644✔
216
        output[3] = payload_size % 256;
24,328✔
217
        index = 4;
24,328✔
218
    }
24,328✔
219
    else { // The payload length is contained in bytes 3-10.
204✔
220
        output[1] += 127;
204✔
221
        size_t fraction = payload_size;
204✔
222
        int remainder = 0;
204✔
223
        for (int i = 0; i < 8; ++i) {
1,836✔
224
            remainder = fraction % 256;
1,632✔
225
            fraction /= 256;
1,632✔
226
            output[9 - i] = remainder;
1,632✔
227
        }
1,632✔
228
        index = 10;
204✔
229
    }
204✔
230
    if (mask) {
171,084✔
231
        char masking_key[4];
101,464✔
232
        std::uniform_int_distribution<> dis(0, 255);
101,464✔
233
        for (int i = 0; i < 4; ++i) {
507,292✔
234
            masking_key[i] = dis(random);
405,828✔
235
        }
405,828✔
236
        output[index++] = masking_key[0];
101,464✔
237
        output[index++] = masking_key[1];
101,464✔
238
        output[index++] = masking_key[2];
101,464✔
239
        output[index++] = masking_key[3];
101,464✔
240
        mask_payload(masking_key, payload, payload_size, output + index);
101,464✔
241
    }
101,464✔
242
    else {
69,620✔
243
        std::copy(payload, payload + payload_size, output + index);
69,620✔
244
    }
69,620✔
245

78,432✔
246
    return payload_size + index;
171,084✔
247
}
171,084✔
248

249
// class FrameReader takes care of parsing the incoming bytes and
250
// constructing the received WebSocket messages. FrameReader manages
251
// read buffers internally. FrameReader handles fragmented messages as
252
// well. FrameRader is used in the following way:
253
//
254
// After constructing a FrameReader, the user runs in a loop.
255
//
256
// Loop start:
257
//
258
// Call frame_reader.next().
259
// if (frame_reader.protocol_error) {
260
//      // report a protocol error and
261
//      // break out of this loop
262
// }
263
// else if (frame_reader.delivery_ready) {
264
//     // use the message
265
//     // in frame_reader.delivery_buffer
266
//     // of size
267
//     // frame_reader.delivery_size
268
//     // with opcode (type)
269
//     // frame_reader.delivery_opcode
270
// }
271
// else {
272
//    // read frame_reader.read_size
273
//    // bytes into the buffer
274
//    // frame_reader.read_buffer
275
// }
276
// Goto Loop start.
277
//
278
class FrameReader {
279
public:
280
    // FrameReader is owned by a websocket, so a shared_ptr is not needed
281
    util::Logger& logger;
282

283
    char* delivery_buffer = nullptr;
284
    size_t delivery_size = 0;
285
    size_t read_size = 0;
286
    char* read_buffer = nullptr;
287
    bool protocol_error = false;
288
    bool delivery_ready = false;
289
    websocket::Opcode delivery_opcode = websocket::Opcode::continuation;
290

291
    FrameReader(util::Logger& logger, bool& is_client)
292
        : logger(logger)
293
        , m_is_client(is_client)
294
    {
5,424✔
295
    }
5,424✔
296

297
    // reset() resets the frame reader such that it is ready to work on
298
    // a new WebSocket connection.
299
    void reset()
300
    {
7,916✔
301
        m_stage = Stage::init;
7,916✔
302
    }
7,916✔
303

304
    // next() parses the new information and moves
305
    // one stage forward.
306
    void next()
307
    {
580,802✔
308
        switch (m_stage) {
580,802✔
309
            case Stage::init:
5,310✔
310
                stage_init();
5,310✔
311
                break;
5,310✔
312
            case Stage::header_beginning:
160,752✔
313
                stage_header_beginning();
160,752✔
314
                break;
160,752✔
315
            case Stage::header_end:
94,568✔
316
                stage_header_end();
94,568✔
317
                break;
94,568✔
318
            case Stage::payload:
160,814✔
319
                stage_payload();
160,814✔
320
                break;
160,814✔
321
            case Stage::delivery:
159,768✔
322
                stage_delivery();
159,768✔
323
                break;
159,768✔
324
            default:
✔
325
                break;
×
326
        }
580,802✔
327
    }
580,802✔
328

329
private:
330
    bool& m_is_client;
331

332
    char header_buffer[14];
333
    char* m_masking_key;
334
    size_t m_payload_size;
335
    websocket::Opcode m_opcode = websocket::Opcode::continuation;
336
    bool m_fin = false;
337
    bool m_mask = false;
338
    char m_short_payload_size = 0;
339

340
    char control_buffer[125]; // close, ping, pong.
341

342
    // A text or binary message can be fragmented. The
343
    // message is built up in m_message_buffer.
344
    std::vector<char> m_message_buffer;
345

346
    // The opcode of the message.
347
    websocket::Opcode m_message_opcode = websocket::Opcode::continuation;
348

349
    // The size of the stored Websocket message.
350
    // This size is not the same as the size of the buffer.
351
    size_t m_message_size = 0;
352

353
    // The message buffer has a minimum size,
354
    // and is extended when a large message arrives.
355
    // The message_buffer is resized to this value after
356
    // a larger message has been delivered.
357
    static const size_t s_message_buffer_min_size = 2048;
358

359
    enum class Stage { init, header_beginning, header_end, payload, delivery };
360
    Stage m_stage = Stage::init;
361

362
    void set_protocol_error()
363
    {
×
364
        protocol_error = true;
×
365
    }
×
366

367
    void set_payload_buffer()
368
    {
160,710✔
369
        read_size = m_payload_size;
160,710✔
370

73,062✔
371
        if (m_opcode == websocket::Opcode::close || m_opcode == websocket::Opcode::ping ||
160,710✔
372
            m_opcode == websocket::Opcode::pong) {
160,660✔
373
            read_buffer = control_buffer;
102✔
374
        }
102✔
375
        else {
160,608✔
376
            size_t required_size = m_message_size + m_payload_size;
160,608✔
377
            if (m_message_buffer.size() < required_size)
160,608✔
378
                m_message_buffer.resize(required_size);
368✔
379

73,012✔
380
            read_buffer = m_message_buffer.data() + m_message_size;
160,608✔
381
        }
160,608✔
382
    }
160,710✔
383

384
    void reset_message_buffer()
385
    {
164,984✔
386
        if (m_message_buffer.size() != s_message_buffer_min_size)
164,984✔
387
            m_message_buffer.resize(s_message_buffer_min_size);
5,670✔
388
        m_message_opcode = websocket::Opcode::continuation;
164,984✔
389
        m_message_size = 0;
164,984✔
390
    }
164,984✔
391

392

393
    // stage_init() is only called once for a FrameReader.
394
    // It just moves the stage to header_beginning and
395
    // asks for two bytes to be read into the header_buffer.
396
    void stage_init()
397
    {
5,312✔
398
        protocol_error = false;
5,312✔
399
        delivery_ready = false;
5,312✔
400
        delivery_buffer = nullptr;
5,312✔
401
        delivery_size = 0;
5,312✔
402
        delivery_opcode = websocket::Opcode::continuation;
5,312✔
403
        m_stage = Stage::header_beginning;
5,312✔
404
        reset_message_buffer();
5,312✔
405
        read_buffer = header_buffer;
5,312✔
406
        read_size = 2;
5,312✔
407
    }
5,312✔
408

409
    // When stage_header_beginning() is called, the
410
    // first two bytes in the header_buffer are
411
    // the first two bytes of an incoming WebSocket frame.
412
    void stage_header_beginning()
413
    {
160,748✔
414
        // bit 1.
73,116✔
415
        m_fin = ((header_buffer[0] & 128) == 128);
160,748✔
416

73,116✔
417
        // bit 2,3, and 4.
73,116✔
418
        char rsv = (header_buffer[0] & 112) >> 4;
160,748✔
419
        if (rsv != 0)
160,748✔
420
            return set_protocol_error();
×
421

73,116✔
422
        // bit 5, 6, 7, and 8.
73,116✔
423
        char op = (header_buffer[0] & 15);
160,748✔
424

73,116✔
425
        if (op != 0 && op != 1 && op != 2 && op != 8 && op != 9 && op != 10)
160,748✔
426
            return set_protocol_error();
×
427

73,116✔
428
        m_opcode = websocket::Opcode(op);
160,748✔
429

73,116✔
430
        // bit 9.
73,116✔
431
        m_mask = ((header_buffer[1] & 128) == 128);
160,748✔
432
        if ((m_mask && m_is_client) || (!m_mask && !m_is_client))
160,770✔
433
            return set_protocol_error();
×
434

73,116✔
435
        // Remainder of second byte.
73,116✔
436
        m_short_payload_size = (header_buffer[1] & 127);
160,748✔
437

73,116✔
438
        if (m_opcode == websocket::Opcode::continuation) {
160,748✔
439
            if (m_message_opcode == websocket::Opcode::continuation)
24✔
440
                return set_protocol_error();
×
441
        }
160,724✔
442
        else if (m_opcode == websocket::Opcode::text || m_opcode == websocket::Opcode::binary) {
160,740✔
443
            if (m_message_opcode != websocket::Opcode::continuation)
160,638✔
444
                return set_protocol_error();
×
445

73,076✔
446
            m_message_opcode = m_opcode;
160,638✔
447
        }
160,638✔
448
        else { // close, ping, pong.
86✔
449
            if (!m_fin || m_short_payload_size > 125)
108✔
450
                return set_protocol_error();
×
451
        }
160,748✔
452

73,116✔
453
        if (m_short_payload_size <= 125 && m_mask) {
160,748✔
454
            m_stage = Stage::header_end;
69,260✔
455
            m_payload_size = m_short_payload_size;
69,260✔
456
            read_size = 4;
69,260✔
457
            read_buffer = header_buffer + 2;
69,260✔
458
        }
69,260✔
459
        else if (m_short_payload_size <= 125 && !m_mask) {
91,488✔
460
            m_stage = Stage::payload;
66,262✔
461
            m_payload_size = m_short_payload_size;
66,262✔
462
            set_payload_buffer();
66,262✔
463
        }
66,262✔
464
        else if (m_short_payload_size == 126 && m_mask) {
25,274✔
465
            m_stage = Stage::header_end;
9,208✔
466
            read_size = 6;
9,208✔
467
            read_buffer = header_buffer + 2;
9,208✔
468
        }
9,208✔
469
        else if (m_short_payload_size == 126 && !m_mask) {
16,066✔
470
            m_stage = Stage::header_end;
16,054✔
471
            read_size = 2;
16,054✔
472
            read_buffer = header_buffer + 2;
16,054✔
473
        }
16,054✔
474
        else if (m_short_payload_size == 127 && m_mask) {
2,147,483,685✔
475
            m_stage = Stage::header_end;
32✔
476
            read_size = 12;
32✔
477
            read_buffer = header_buffer + 2;
32✔
478
        }
32✔
479
        else if (m_short_payload_size == 127 && !m_mask) {
4,294,967,294✔
480
            m_stage = Stage::header_end;
44✔
481
            read_size = 8;
44✔
482
            read_buffer = header_buffer + 2;
44✔
483
        }
44✔
484
    }
160,748✔
485

486
    void stage_header_end()
487
    {
94,560✔
488
        if (m_short_payload_size <= 125) {
94,560✔
489
            m_masking_key = header_buffer + 2;
69,262✔
490
        }
69,262✔
491
        else if (m_short_payload_size == 126) {
25,298✔
492
            const unsigned char* bytes = reinterpret_cast<unsigned char*>(header_buffer + 2);
25,262✔
493
            m_payload_size = bytes[0] * 256 + bytes[1];
25,262✔
494

13,168✔
495
            if (m_mask)
25,262✔
496
                m_masking_key = header_buffer + 4;
9,208✔
497
        }
25,262✔
498
        else if (m_short_payload_size == 127) {
76✔
499
            if (header_buffer[2] != 0 || header_buffer[3] != 0 || header_buffer[4] != 0 || header_buffer[5] != 0) {
76✔
500
                // Message should be smaller than 4GB
501
                // FIXME: We should introduce a maximum size for messages.
502
                set_protocol_error();
×
503
                return;
×
504
            }
×
505

38✔
506
            // Assume size_t is at least 4 bytes wide.
38✔
507
            const unsigned char* bytes = reinterpret_cast<unsigned char*>(header_buffer + 6);
76✔
508
            m_payload_size = bytes[0];
76✔
509
            m_payload_size = 256 * m_payload_size + bytes[1];
76✔
510
            m_payload_size = 256 * m_payload_size + bytes[2];
76✔
511
            m_payload_size = 256 * m_payload_size + bytes[3];
76✔
512

38✔
513
            if (m_mask)
76✔
514
                m_masking_key = header_buffer + 10;
32✔
515
        }
76✔
516

43,104✔
517
        m_stage = Stage::payload;
94,560✔
518
        set_payload_buffer();
94,560✔
519
    }
94,560✔
520

521
    void stage_payload()
522
    {
160,796✔
523
        if (m_mask)
160,796✔
524
            mask_payload(m_masking_key, read_buffer, m_payload_size, read_buffer);
78,490✔
525

73,148✔
526
        if (m_opcode == websocket::Opcode::close || m_opcode == websocket::Opcode::ping ||
160,796✔
527
            m_opcode == websocket::Opcode::pong) {
160,744✔
528
            m_stage = Stage::delivery;
102✔
529
            delivery_ready = true;
102✔
530
            delivery_opcode = m_opcode;
102✔
531
            delivery_buffer = control_buffer;
102✔
532
            delivery_size = m_payload_size;
102✔
533
        }
102✔
534
        else {
160,694✔
535
            m_message_size += m_payload_size;
160,694✔
536
            if (m_fin) {
160,726✔
537
                m_stage = Stage::delivery;
160,716✔
538
                delivery_ready = true;
160,716✔
539
                delivery_opcode = m_message_opcode;
160,716✔
540
                delivery_buffer = m_message_buffer.data();
160,716✔
541
                delivery_size = m_message_size;
160,716✔
542
            }
160,716✔
543
            else {
2,147,483,657✔
544
                m_stage = Stage::header_beginning;
2,147,483,657✔
545
                read_buffer = header_buffer;
2,147,483,657✔
546
                read_size = 2;
2,147,483,657✔
547
            }
2,147,483,657✔
548
        }
160,694✔
549
    }
160,796✔
550

551
    void stage_delivery()
552
    {
159,766✔
553
        m_stage = Stage::header_beginning;
159,766✔
554
        read_buffer = header_buffer;
159,766✔
555
        read_size = 2;
159,766✔
556
        delivery_ready = false;
159,766✔
557
        delivery_buffer = nullptr;
159,766✔
558
        delivery_size = 0;
159,766✔
559
        delivery_opcode = websocket::Opcode::continuation;
159,766✔
560

72,634✔
561
        if (m_opcode == websocket::Opcode::continuation || m_opcode == websocket::Opcode::text ||
159,766✔
562
            m_opcode == websocket::Opcode::binary)
159,760✔
563
            reset_message_buffer();
159,670✔
564
    }
159,766✔
565
};
566

567

568
class WebSocket {
569
public:
570
    WebSocket(websocket::Config& config)
571
        : m_config(config)
572
        , m_logger_ptr(config.websocket_get_logger())
573
        , m_logger{*m_logger_ptr}
574
        , m_frame_reader(m_logger, m_is_client)
575
    {
5,428✔
576
        m_logger.debug("WebSocket::Websocket()");
5,428✔
577
    }
5,428✔
578

579
    void initiate_client_handshake(const std::string& request_uri, const std::string& host,
580
                                   const std::string& sec_websocket_protocol, HTTPHeaders headers)
581
    {
3,382✔
582
        m_logger.debug("WebSocket::initiate_client_handshake()");
3,382✔
583

1,634✔
584
        m_stopped = false;
3,382✔
585
        m_is_client = true;
3,382✔
586

1,634✔
587
        m_sec_websocket_key = make_random_sec_websocket_key(m_config.websocket_get_random());
3,382✔
588

1,634✔
589
        m_http_client.reset(new HTTPClient<websocket::Config>(m_config, m_logger_ptr));
3,382✔
590
        m_frame_reader.reset();
3,382✔
591
        HTTPRequest req;
3,382✔
592
        req.method = HTTPMethod::Get;
3,382✔
593
        req.path = std::move(request_uri);
3,382✔
594
        req.headers = std::move(headers);
3,382✔
595
        req.headers["Host"] = std::move(host);
3,382✔
596
        req.headers["Upgrade"] = "websocket";
3,382✔
597
        req.headers["Connection"] = "Upgrade";
3,382✔
598
        req.headers["Sec-WebSocket-Key"] = m_sec_websocket_key;
3,382✔
599
        req.headers["Sec-WebSocket-Version"] = sec_websocket_version;
3,382✔
600
        req.headers["Sec-WebSocket-Protocol"] = sec_websocket_protocol;
3,382✔
601

1,634✔
602
        m_logger.trace("HTTP request =\n%1", req);
3,382✔
603

1,634✔
604
        auto handler = [this](HTTPResponse response, std::error_code ec) {
3,358✔
605
            // If the operation is aborted, the WebSocket object may have been destroyed.
1,614✔
606
            if (ec != util::error::operation_aborted) {
3,338✔
607
                if (ec == HTTPParserError::MalformedResponse) {
3,338✔
608
                    error_client_malformed_response();
×
609
                    return;
×
610
                }
×
611
                if (ec) {
3,338✔
612
                    stop();
×
613

614
                    // FIXME: Should be read instaed of write???
615
                    m_config.websocket_write_error_handler(ec);
×
616

617
                    return;
×
618
                }
×
619
                if (m_stopped)
3,338✔
620
                    return;
×
621
                handle_http_response_received(std::move(response)); // Throws
3,338✔
622
            }
3,338✔
623
        };
3,338✔
624

1,634✔
625
        m_http_client->async_request(req, std::move(handler));
3,382✔
626
    }
3,382✔
627

628
    void initiate_server_websocket_after_handshake()
629
    {
2,010✔
630
        m_stopped = false;
2,010✔
631
        m_is_client = false;
2,010✔
632
        m_frame_reader.reset();
2,010✔
633
        frame_reader_loop(); // Throws
2,010✔
634
    }
2,010✔
635

636
    void initiate_server_handshake()
637
    {
12✔
638
        m_logger.debug("WebSocket::initiate_server_handshake()");
12✔
639

6✔
640
        m_stopped = false;
12✔
641
        m_is_client = false;
12✔
642
        m_http_server.reset(new HTTPServer<websocket::Config>(m_config, m_logger_ptr));
12✔
643
        m_frame_reader.reset();
12✔
644

6✔
645
        auto handler = [this](HTTPRequest request, std::error_code ec) {
12✔
646
            if (ec != util::error::operation_aborted) {
12✔
647
                if (ec == HTTPParserError::MalformedRequest) {
12✔
648
                    error_server_malformed_request();
×
649
                    return;
×
650
                }
×
651
                if (ec) {
12✔
652
                    stop();
×
653
                    m_config.websocket_read_error_handler(ec);
×
654
                    return;
×
655
                }
×
656
                if (m_stopped)
12✔
657
                    return;
×
658
                handle_http_request_received(std::move(request));
12✔
659
            }
12✔
660
        };
12✔
661

6✔
662
        m_http_server->async_receive_request(std::move(handler));
12✔
663
    }
12✔
664

665
    void async_write_frame(bool fin, int opcode, const char* data, size_t size,
666
                           util::UniqueFunction<void()> write_completion_handler)
667
    {
171,072✔
668
        REALM_ASSERT(!m_stopped);
171,072✔
669

78,422✔
670
        m_write_completion_handler = std::move(write_completion_handler);
171,072✔
671

78,422✔
672
        bool mask = m_is_client;
171,072✔
673

78,422✔
674
        // 14 is the maximum header length of a Websocket frame.
78,422✔
675
        size_t required_size = size + 14;
171,072✔
676
        if (m_write_buffer.size() < required_size)
171,072✔
677
            m_write_buffer.resize(required_size);
14,060✔
678

78,422✔
679
        size_t message_size =
171,072✔
680
            make_frame(fin, opcode, mask, data, size, m_write_buffer.data(), m_config.websocket_get_random());
171,072✔
681

78,422✔
682
        auto handler = [this](std::error_code ec, size_t) {
171,026✔
683
            // If the operation is aborted, then the write operation was canceled and we should ignore this callback.
78,426✔
684
            if (ec == util::error::operation_aborted) {
171,026✔
685
                return;
1,620✔
686
            }
1,620✔
687

77,432✔
688
            auto is_socket_closed_err = (ec == util::error::make_error_code(util::error::connection_reset) ||
169,406✔
689
                                         ec == util::error::make_error_code(util::error::broken_pipe) ||
169,424✔
690
                                         ec == util::make_error_code(util::MiscExtErrors::end_of_input));
169,306✔
691
            // If the socket has been closed then we should continue to read from it until we've drained
77,432✔
692
            // the receive buffer. Eventually we will either receive an in-band error message from the
77,432✔
693
            // server about why we got disconnected or we'll receive ECONNRESET on the receive side as well.
77,432✔
694
            if (is_socket_closed_err) {
169,406✔
695
                return;
118✔
696
            }
118✔
697

77,432✔
698
            // Otherwise we've got some other I/O error that we should surface to the sync client.
77,432✔
699
            if (ec) {
169,288✔
700
                stop();
×
701
                return m_config.websocket_write_error_handler(ec);
×
702
            }
×
703

77,432✔
704
            handle_write_message();
169,288✔
705
        };
169,288✔
706

78,422✔
707
        m_config.async_write(m_write_buffer.data(), message_size, handler);
171,072✔
708
    }
171,072✔
709

710
    void handle_write_message()
711
    {
169,286✔
712
        if (m_write_buffer.size() > s_write_buffer_stable_size) {
169,286✔
713
            m_write_buffer.resize(s_write_buffer_stable_size);
332✔
714
            m_write_buffer.shrink_to_fit();
332✔
715
        }
332✔
716

77,442✔
717
        auto handler = std::move(m_write_completion_handler);
169,286✔
718
        m_write_completion_handler = nullptr;
169,286✔
719
        handler();
169,286✔
720
    }
169,286✔
721

722
    void stop() noexcept
723
    {
2,510✔
724
        m_stopped = true;
2,510✔
725
        m_frame_reader.reset();
2,510✔
726
    }
2,510✔
727

728
    void force_handshake_response_for_testing(int status_code, std::string body)
729
    {
12✔
730
        m_test_handshake_response.emplace(status_code);
12✔
731
        m_test_handshake_response_body = body;
12✔
732
    }
12✔
733

734
private:
735
    websocket::Config& m_config;
736
    const std::shared_ptr<util::Logger> m_logger_ptr;
737
    util::Logger& m_logger;
738
    FrameReader m_frame_reader;
739

740
    bool m_stopped = false;
741
    bool m_is_client;
742

743
    // Allocated on demand.
744
    std::unique_ptr<HTTPClient<websocket::Config>> m_http_client;
745
    std::unique_ptr<HTTPServer<websocket::Config>> m_http_server;
746

747
    std::string m_sec_websocket_key;
748
    std::string m_sec_websocket_accept;
749

750
    std::vector<char> m_write_buffer;
751
    static const size_t s_write_buffer_stable_size = 2048;
752

753
    util::UniqueFunction<void()> m_write_completion_handler;
754

755
    std::optional<int> m_test_handshake_response;
756
    std::string m_test_handshake_response_body;
757

758
    void error_client_malformed_response()
759
    {
×
760
        m_stopped = true;
×
761
        m_logger.error("WebSocket: Received malformed HTTP response");
×
762
        std::error_code ec = HttpError::bad_response_invalid_http;
×
763
        m_config.websocket_handshake_error_handler(ec, nullptr, nullptr); // Throws
×
764
    }
×
765

766
    void error_client_response_not_101(const HTTPResponse& response)
767
    {
48✔
768
        m_stopped = true;
48✔
769

24✔
770
        m_logger.error("Websocket: Expected HTTP response 101 Switching Protocols, "
48✔
771
                       "but received:\n%1",
48✔
772
                       response);
48✔
773

24✔
774
        int status_code = int(response.status);
48✔
775
        std::error_code ec;
48✔
776

24✔
777
        if (m_test_handshake_response)
48✔
778
            status_code = *m_test_handshake_response;
12✔
779

24✔
780
        if (status_code == 200)
48✔
781
            ec = HttpError::bad_response_200_ok;
×
782
        else if (status_code >= 200 && status_code < 300)
48✔
783
            ec = HttpError::bad_response_2xx_successful;
×
784
        else if (status_code == 301)
48✔
785
            ec = HttpError::bad_response_301_moved_permanently;
8✔
786
        else if (status_code == 308)
40✔
787
            ec = HttpError::bad_response_308_permanent_redirect;
4✔
788
        else if (status_code >= 300 && status_code < 400)
36✔
789
            ec = HttpError::bad_response_3xx_redirection;
×
790
        else if (status_code == 401)
36✔
791
            ec = HttpError::bad_response_401_unauthorized;
36✔
792
        else if (status_code == 403)
×
793
            ec = HttpError::bad_response_403_forbidden;
×
794
        else if (status_code == 404)
×
795
            ec = HttpError::bad_response_404_not_found;
×
796
        else if (status_code == 410)
×
797
            ec = HttpError::bad_response_410_gone;
×
798
        else if (status_code >= 400 && status_code < 500)
×
799
            ec = HttpError::bad_response_4xx_client_errors;
×
800
        else if (status_code == 500)
×
801
            ec = HttpError::bad_response_500_internal_server_error;
×
802
        else if (status_code == 502)
×
803
            ec = HttpError::bad_response_502_bad_gateway;
×
804
        else if (status_code == 503)
×
805
            ec = HttpError::bad_response_503_service_unavailable;
×
806
        else if (status_code == 504)
×
807
            ec = HttpError::bad_response_504_gateway_timeout;
×
808
        else if (status_code >= 500 && status_code < 600)
×
809
            ec = HttpError::bad_response_5xx_server_error;
×
810
        else
×
811
            ec = HttpError::bad_response_unexpected_status_code;
×
812

24✔
813
        std::string_view body;
48✔
814
        std::string_view* body_ptr = nullptr;
48✔
815
        if (m_test_handshake_response) {
48✔
816
            body = m_test_handshake_response_body;
12✔
817
            body_ptr = &body;
12✔
818
        }
12✔
819
        else if (response.body) {
36✔
820
            body = *response.body;
36✔
821
            body_ptr = &body;
36✔
822
        }
36✔
823
        m_config.websocket_handshake_error_handler(ec, &response.headers, body_ptr); // Throws
48✔
824
    }
48✔
825

826
    void error_client_response_websocket_headers_invalid(const HTTPResponse& response)
827
    {
×
828
        m_stopped = true;
×
829

830
        m_logger.error("Websocket: HTTP response has invalid websocket headers."
×
831
                       "HTTP response = \n%1",
×
832
                       response);
×
833
        std::error_code ec = HttpError::bad_response_header_protocol_violation;
×
834
        std::string_view body;
×
835
        std::string_view* body_ptr = nullptr;
×
836
        if (response.body) {
×
837
            body = *response.body;
×
838
            body_ptr = &body;
×
839
        }
×
840
        m_config.websocket_handshake_error_handler(ec, &response.headers, body_ptr); // Throws
×
841
    }
×
842

843
    void error_server_malformed_request()
844
    {
×
845
        m_stopped = true;
×
846
        m_logger.error("WebSocket: Received malformed HTTP request");
×
847
        std::error_code ec = HttpError::bad_request_malformed_http;
×
848
        m_config.websocket_handshake_error_handler(ec, nullptr, nullptr); // Throws
×
849
    }
×
850

851
    void error_server_request_header_protocol_violation(std::error_code ec, const HTTPRequest& request)
852
    {
×
853
        m_stopped = true;
×
854

855
        m_logger.error("Websocket: HTTP request has invalid websocket headers."
×
856
                       "HTTP request = \n%1",
×
857
                       request);
×
858
        m_config.websocket_handshake_error_handler(ec, &request.headers, nullptr); // Throws
×
859
    }
×
860

861
    void protocol_error(std::error_code ec)
862
    {
×
863
        m_stopped = true;
×
864
        m_config.websocket_protocol_error_handler(ec);
×
865
    }
×
866

867
    // The client receives the HTTP response.
868
    void handle_http_response_received(HTTPResponse response)
869
    {
3,338✔
870
        m_logger.debug("WebSocket::handle_http_response_received()");
3,338✔
871
        m_logger.trace("HTTP response = %1", response);
3,338✔
872

1,614✔
873
        if (response.status != HTTPStatus::SwitchingProtocols ||
3,338✔
874
            (m_test_handshake_response && *m_test_handshake_response != 101)) {
3,320✔
875
            error_client_response_not_101(response);
48✔
876
            return;
48✔
877
        }
48✔
878

1,590✔
879
        bool valid = (find_sec_websocket_accept(response.headers) &&
3,290✔
880
                      m_sec_websocket_accept == make_sec_websocket_accept(m_sec_websocket_key));
3,290✔
881
        if (!valid) {
3,290✔
882
            error_client_response_websocket_headers_invalid(response);
×
883
            return;
×
884
        }
×
885

1,590✔
886
        m_config.websocket_handshake_completion_handler(response.headers);
3,290✔
887

1,590✔
888
        if (m_stopped)
3,290✔
889
            return;
×
890

1,590✔
891
        frame_reader_loop();
3,290✔
892
    }
3,290✔
893

894
    void handle_http_request_received(HTTPRequest request)
895
    {
12✔
896
        m_logger.trace("WebSocket::handle_http_request_received()");
12✔
897

6✔
898
        util::Optional<std::string> sec_websocket_protocol = websocket::read_sec_websocket_protocol(request);
12✔
899

6✔
900
        std::error_code ec;
12✔
901
        util::Optional<HTTPResponse> response =
12✔
902
            do_make_http_response(request, sec_websocket_protocol ? *sec_websocket_protocol : "realm.io", ec);
12✔
903

6✔
904
        if (ec) {
12✔
905
            error_server_request_header_protocol_violation(ec, request);
×
906
            return;
×
907
        }
×
908
        REALM_ASSERT(response);
12✔
909

6✔
910
        auto handler = [request, this](std::error_code ec) {
12✔
911
            // If the operation is aborted, the socket object may have been destroyed.
6✔
912
            if (ec != util::error::operation_aborted) {
12✔
913
                if (ec) {
12✔
914
                    stop();
×
915
                    m_config.websocket_write_error_handler(ec);
×
916
                    return;
×
917
                }
×
918

6✔
919
                if (m_stopped)
12✔
920
                    return;
×
921

6✔
922
                m_config.websocket_handshake_completion_handler(request.headers);
12✔
923

6✔
924
                if (m_stopped)
12✔
925
                    return;
×
926

6✔
927
                frame_reader_loop(); // Throws
12✔
928
            }
12✔
929
        };
12✔
930
        m_http_server->async_send_response(*response, std::move(handler));
12✔
931
    }
12✔
932

933
    // find_sec_websocket_accept is similar to
934
    // find_sec_websockey_key.
935
    bool find_sec_websocket_accept(const HTTPHeaders& headers)
936
    {
3,290✔
937
        util::Optional<StringData> header_value = find_http_header_value(headers, "Sec-WebSocket-Accept");
3,290✔
938

1,590✔
939
        if (!header_value)
3,290✔
940
            return false;
×
941

1,590✔
942
        m_sec_websocket_accept = *header_value;
3,290✔
943

1,590✔
944
        return true;
3,290✔
945
    }
3,290✔
946

947
    std::pair<WebSocketError, std::string_view> parse_close_message(const char* data, size_t size)
948
    {
86✔
949
        uint16_t error_code;
86✔
950
        std::string_view error_message;
86✔
951
        if (size < 2) {
86✔
952
            // Error code 1005 is defined as
953
            //     1005 is a reserved value and MUST NOT be set as a status code in a
954
            //     Close control frame by an endpoint.  It is designated for use in
955
            //     applications expecting a status code to indicate that no status
956
            //     code was actually present.
957
            // See https://tools.ietf.org/html/rfc6455#section-7.4.1 for more details
958
            error_code = 1005;
×
959
        }
×
960
        else {
86✔
961
            // Otherwise, the error code is the first two bytes of the body as a uint16_t in
42✔
962
            // network byte order. See https://tools.ietf.org/html/rfc6455#section-5.5.1 for more
42✔
963
            // details.
42✔
964
            error_code = ntohs((uint8_t(data[1]) << 8) | uint8_t(data[0]));
86✔
965
            error_message = std::string_view(data + 2, size - 2);
86✔
966
        }
86✔
967

42✔
968
        switch (static_cast<WebSocketError>(error_code)) {
86✔
969
            case WebSocketError::websocket_ok:
84✔
970
            case WebSocketError::websocket_going_away:
84✔
971
            case WebSocketError::websocket_protocol_error:
84✔
972
            case WebSocketError::websocket_unsupported_data:
84✔
973
            case WebSocketError::websocket_reserved:
84✔
974
            case WebSocketError::websocket_no_status_received:
84✔
975
            case WebSocketError::websocket_abnormal_closure:
84✔
976
            case WebSocketError::websocket_invalid_payload_data:
84✔
977
            case WebSocketError::websocket_policy_violation:
84✔
978
            case WebSocketError::websocket_message_too_big:
86✔
979
            case WebSocketError::websocket_invalid_extension:
86✔
980
            case WebSocketError::websocket_internal_server_error:
86✔
981
            case WebSocketError::websocket_tls_handshake_failed:
86✔
982

42✔
983
            case WebSocketError::websocket_unauthorized:
86✔
984
            case WebSocketError::websocket_forbidden:
86✔
985
            case WebSocketError::websocket_moved_permanently:
86✔
986
            case WebSocketError::websocket_client_too_old:
86✔
987
            case WebSocketError::websocket_client_too_new:
86✔
988
            case WebSocketError::websocket_protocol_mismatch:
86✔
989
                break;
86✔
990
            default:
42✔
991
                error_code = 1008;
×
992
        }
86✔
993

42✔
994
        return std::make_pair(static_cast<WebSocketError>(error_code), error_message);
86✔
995
    }
86✔
996

997
    // frame_reader_loop() uses the frame_reader to read and process the incoming
998
    // WebSocket messages.
999
    void frame_reader_loop()
1000
    {
580,810✔
1001
        // Advance parsing stage.
264,398✔
1002
        m_frame_reader.next();
580,810✔
1003

264,398✔
1004
        if (m_frame_reader.protocol_error) {
580,810✔
1005
            protocol_error(HttpError::bad_message);
×
1006
            return;
×
1007
        }
×
1008

264,398✔
1009
        if (m_frame_reader.delivery_ready) {
580,810✔
1010
            bool should_continue = true;
160,798✔
1011

73,172✔
1012
            switch (m_frame_reader.delivery_opcode) {
160,798✔
1013
                case websocket::Opcode::text:
4✔
1014
                    should_continue = m_config.websocket_text_message_received(m_frame_reader.delivery_buffer,
4✔
1015
                                                                               m_frame_reader.delivery_size);
4✔
1016
                    break;
4✔
1017
                case websocket::Opcode::binary:
160,682✔
1018
                    should_continue = m_config.websocket_binary_message_received(m_frame_reader.delivery_buffer,
160,682✔
1019
                                                                                 m_frame_reader.delivery_size);
160,682✔
1020
                    break;
160,682✔
1021
                case websocket::Opcode::close: {
86✔
1022
                    auto [error_code, error_message] =
86✔
1023
                        parse_close_message(m_frame_reader.delivery_buffer, m_frame_reader.delivery_size);
86✔
1024
                    should_continue = m_config.websocket_close_message_received(error_code, error_message);
86✔
1025
                    break;
86✔
1026
                }
×
1027
                case websocket::Opcode::ping:
12✔
1028
                    should_continue = m_config.websocket_ping_message_received(m_frame_reader.delivery_buffer,
12✔
1029
                                                                               m_frame_reader.delivery_size);
12✔
1030
                    break;
12✔
1031
                case websocket::Opcode::pong:
4✔
1032
                    should_continue = m_config.websocket_pong_message_received(m_frame_reader.delivery_buffer,
4✔
1033
                                                                               m_frame_reader.delivery_size);
4✔
1034
                    break;
4✔
1035
                default:
✔
1036
                    break;
×
1037
            }
160,816✔
1038

73,174✔
1039
            // The websocket object might not even exist anymore
73,174✔
1040
            if (!should_continue)
160,816✔
1041
                return;
1,056✔
1042

72,632✔
1043
            if (m_stopped)
159,760✔
1044
                return;
×
1045

72,632✔
1046
            // recursion is harmless, since the depth will be at most 2.
72,632✔
1047
            frame_reader_loop();
159,760✔
1048
            return;
159,760✔
1049
        }
159,760✔
1050

191,226✔
1051
        auto handler = [this](std::error_code ec, size_t) {
420,012✔
1052
            // If the operation is aborted, the socket object may have been destroyed.
190,680✔
1053
            if (ec != util::error::operation_aborted) {
419,094✔
1054
                if (ec) {
417,262✔
1055
                    stop();
1,294✔
1056
                    m_config.websocket_read_error_handler(ec);
1,294✔
1057
                    return;
1,294✔
1058
                }
1,294✔
1059

189,354✔
1060
                if (m_stopped)
415,968✔
1061
                    return;
×
1062

189,354✔
1063
                frame_reader_loop();
415,968✔
1064
            }
415,968✔
1065
        };
419,094✔
1066

191,226✔
1067
        m_config.async_read(m_frame_reader.read_buffer, m_frame_reader.read_size, std::move(handler));
420,012✔
1068
    }
420,012✔
1069
};
1070

1071

1072
const char* get_error_message(HttpError error_code)
1073
{
48✔
1074
    switch (error_code) {
48✔
1075
        case HttpError::bad_request_malformed_http:
✔
1076
            return "Bad WebSocket request malformed HTTP";
×
1077
        case HttpError::bad_request_header_upgrade:
✔
1078
            return "Bad WebSocket request header: Upgrade";
×
1079
        case HttpError::bad_request_header_connection:
✔
1080
            return "Bad WebSocket request header: Connection";
×
1081
        case HttpError::bad_request_header_websocket_version:
✔
1082
            return "Bad WebSocket request header: Sec-Websocket-Version";
×
1083
        case HttpError::bad_request_header_websocket_key:
✔
1084
            return "Bad WebSocket request header: Sec-Websocket-Key";
×
1085
        case HttpError::bad_response_invalid_http:
✔
1086
            return "Bad WebSocket response invalid HTTP";
×
1087
        case HttpError::bad_response_2xx_successful:
✔
1088
            return "Bad WebSocket response 2xx successful";
×
1089
        case HttpError::bad_response_200_ok:
✔
1090
            return "Bad WebSocket response 200 ok";
×
1091
        case HttpError::bad_response_3xx_redirection:
✔
1092
            return "Bad WebSocket response 3xx redirection";
×
1093
        case HttpError::bad_response_301_moved_permanently:
8✔
1094
            return "Bad WebSocket response 301 moved permanently";
8✔
1095
        case HttpError::bad_response_308_permanent_redirect:
4✔
1096
            return "Bad WebSocket response 308 permanent redirect";
4✔
1097
        case HttpError::bad_response_4xx_client_errors:
✔
1098
            return "Bad WebSocket response 4xx client errors";
×
1099
        case HttpError::bad_response_401_unauthorized:
36✔
1100
            return "Bad WebSocket response 401 unauthorized";
36✔
1101
        case HttpError::bad_response_403_forbidden:
✔
1102
            return "Bad WebSocket response 403 forbidden";
×
1103
        case HttpError::bad_response_404_not_found:
✔
1104
            return "Bad WebSocket response 404 not found";
×
1105
        case HttpError::bad_response_410_gone:
✔
1106
            return "Bad WebSocket response 410 gone";
×
1107
        case HttpError::bad_response_5xx_server_error:
✔
1108
            return "Bad WebSocket response 5xx server error";
×
1109
        case HttpError::bad_response_500_internal_server_error:
✔
1110
            return "Bad WebSocket response 500 internal server error";
×
1111
        case HttpError::bad_response_502_bad_gateway:
✔
1112
            return "Bad WebSocket response 502 bad gateway";
×
1113
        case HttpError::bad_response_503_service_unavailable:
✔
1114
            return "Bad WebSocket response 503 service unavailable";
×
1115
        case HttpError::bad_response_504_gateway_timeout:
✔
1116
            return "Bad WebSocket response 504 gateway timeout";
×
1117
        case HttpError::bad_response_unexpected_status_code:
✔
1118
            return "Bad Websocket response unexpected status code";
×
1119
        case HttpError::bad_response_header_protocol_violation:
✔
1120
            return "Bad WebSocket response header protocol violation";
×
1121
        case HttpError::bad_message:
✔
1122
            return "Ill-formed WebSocket message";
×
1123
    }
×
1124
    return nullptr;
×
1125
}
×
1126

1127

1128
class HttpErrorCategory : public std::error_category {
1129
public:
1130
    const char* name() const noexcept override final
1131
    {
×
1132
        return "realm::sync::websocket::HttpError";
×
1133
    }
×
1134
    std::string message(int error_code) const override final
1135
    {
48✔
1136
        const char* msg = get_error_message(HttpError(error_code));
48✔
1137
        if (!msg)
48✔
1138
            msg = "Unknown error";
×
1139
        std::string msg_2{msg}; // Throws (copy)
48✔
1140
        return msg_2;
48✔
1141
    }
48✔
1142
};
1143

1144
} // unnamed namespace
1145

1146
namespace realm::sync::websocket {
1147

1148
std::ostream& operator<<(std::ostream& os, WebSocketError code)
1149
{
752✔
1150
    /// WebSocket error codes
354✔
1151
    auto str = [&]() -> const char* {
752✔
1152
        switch (code) {
752✔
1153
            case WebSocketError::websocket_ok:
78✔
1154
                return "WebSocket: OK";
78✔
1155
            case WebSocketError::websocket_going_away:
✔
1156
                return "WebSocket: Going Away";
×
1157
            case WebSocketError::websocket_protocol_error:
✔
1158
                return "WebSocket: Protocol Error";
×
1159
            case WebSocketError::websocket_unsupported_data:
✔
1160
                return "WebSocket: Unsupported Data";
×
1161
            case WebSocketError::websocket_reserved:
✔
1162
                return "WebSocket: Reserved";
×
1163
            case WebSocketError::websocket_no_status_received:
✔
1164
                return "WebSocket: No Status Received";
×
1165
            case WebSocketError::websocket_abnormal_closure:
✔
1166
                return "WebSocket: Abnormal Closure";
×
1167
            case WebSocketError::websocket_invalid_payload_data:
✔
1168
                return "WebSocket: Invalid Payload Data";
×
1169
            case WebSocketError::websocket_policy_violation:
✔
1170
                return "WebSocket: Policy Violation";
×
1171
            case WebSocketError::websocket_message_too_big:
4✔
1172
                return "WebSocket: Message Too Big";
4✔
1173
            case WebSocketError::websocket_invalid_extension:
✔
1174
                return "WebSocket: Invalid Extension";
×
1175
            case WebSocketError::websocket_internal_server_error:
✔
1176
                return "WebSocket: Internal Server Error";
×
1177
            case WebSocketError::websocket_tls_handshake_failed:
10✔
1178
                return "WebSocket: TLS Handshake Failed";
10✔
1179

1180
            /// WebSocket Errors - reported by server
1181
            case WebSocketError::websocket_unauthorized:
36✔
1182
                return "WebSocket: Unauthorized";
36✔
1183
            case WebSocketError::websocket_forbidden:
✔
1184
                return "WebSocket: Forbidden";
×
1185
            case WebSocketError::websocket_moved_permanently:
12✔
1186
                return "WebSocket: Moved Permanently";
12✔
1187
            case WebSocketError::websocket_client_too_old:
✔
1188
                return "WebSocket: Client Too Old";
×
1189
            case WebSocketError::websocket_client_too_new:
✔
1190
                return "WebSocket: Client Too New";
×
1191
            case WebSocketError::websocket_protocol_mismatch:
✔
1192
                return "WebSocket: Protocol Mismatch";
×
1193

1194
            case WebSocketError::websocket_resolve_failed:
4✔
1195
                return "WebSocket: Resolve Failed";
4✔
UNCOV
1196
            case WebSocketError::websocket_connection_failed:
✔
UNCOV
1197
                return "WebSocket: Connection Failed";
×
1198
            case WebSocketError::websocket_read_error:
608✔
1199
                return "WebSocket: Read Error";
608✔
1200
            case WebSocketError::websocket_write_error:
✔
1201
                return "WebSocket: Write Error";
×
1202
            case WebSocketError::websocket_retry_error:
✔
1203
                return "WebSocket: Retry Error";
×
1204
            case WebSocketError::websocket_fatal_error:
✔
1205
                return "WebSocket: Fatal Error";
×
1206
        }
×
1207
        return nullptr;
×
1208
    }();
×
1209

354✔
1210
    if (str == nullptr) {
752✔
1211
        os << "WebSocket: Unknown Error (" << static_cast<std::underlying_type_t<WebSocketError>>(code) << ")";
×
1212
    }
×
1213
    else {
752✔
1214
        os << str;
752✔
1215
    }
752✔
1216
    return os;
752✔
1217
}
752✔
1218

1219
} // namespace realm::sync::websocket
1220

1221
bool websocket::Config::websocket_text_message_received(const char*, size_t)
1222
{
×
1223
    return true;
×
1224
}
×
1225

1226
bool websocket::Config::websocket_binary_message_received(const char*, size_t)
1227
{
×
1228
    return true;
×
1229
}
×
1230

1231
bool websocket::Config::websocket_close_message_received(WebSocketError, std::string_view)
1232
{
×
1233
    return true;
×
1234
}
×
1235

1236
bool websocket::Config::websocket_ping_message_received(const char*, size_t)
1237
{
×
1238
    return true;
×
1239
}
×
1240

1241
bool websocket::Config::websocket_pong_message_received(const char*, size_t)
1242
{
×
1243
    return true;
×
1244
}
×
1245

1246

1247
class websocket::Socket::Impl : public WebSocket {
1248
public:
1249
    Impl(Config& config)
1250
        : WebSocket(config) // Throws
1251
    {
5,428✔
1252
    }
5,428✔
1253
};
1254

1255
websocket::Socket::Socket(Config& config)
1256
    : m_impl(new Impl{config})
1257
{
5,428✔
1258
}
5,428✔
1259

1260
websocket::Socket::Socket(Socket&& socket) noexcept
1261
    : m_impl(std::move(socket.m_impl))
1262
{
×
1263
}
×
1264

1265
websocket::Socket::~Socket() noexcept {}
5,428✔
1266

1267
void websocket::Socket::initiate_client_handshake(const std::string& request_uri, const std::string& host,
1268
                                                  const std::string& sec_websocket_protocol, HTTPHeaders headers)
1269
{
3,384✔
1270
    m_impl->initiate_client_handshake(request_uri, host, sec_websocket_protocol, std::move(headers));
3,384✔
1271
}
3,384✔
1272

1273
void websocket::Socket::initiate_server_handshake()
1274
{
12✔
1275
    m_impl->initiate_server_handshake();
12✔
1276
}
12✔
1277

1278
void websocket::Socket::initiate_server_websocket_after_handshake()
1279
{
2,010✔
1280
    m_impl->initiate_server_websocket_after_handshake();
2,010✔
1281
}
2,010✔
1282

1283
void websocket::Socket::async_write_frame(bool fin, Opcode opcode, const char* data, size_t size,
1284
                                          util::UniqueFunction<void()> handler)
1285
{
171,078✔
1286
    m_impl->async_write_frame(fin, int(opcode), data, size, std::move(handler));
171,078✔
1287
}
171,078✔
1288

1289
void websocket::Socket::async_write_text(const char* data, size_t size, util::UniqueFunction<void()> handler)
1290
{
4✔
1291
    async_write_frame(true, Opcode::text, data, size, std::move(handler));
4✔
1292
}
4✔
1293

1294
void websocket::Socket::async_write_binary(const char* data, size_t size, util::UniqueFunction<void()> handler)
1295
{
171,034✔
1296
    async_write_frame(true, Opcode::binary, data, size, std::move(handler));
171,034✔
1297
}
171,034✔
1298

1299
void websocket::Socket::async_write_close(const char* data, size_t size, util::UniqueFunction<void()> handler)
1300
{
4✔
1301
    async_write_frame(true, Opcode::close, data, size, std::move(handler));
4✔
1302
}
4✔
1303

1304
void websocket::Socket::async_write_ping(const char* data, size_t size, util::UniqueFunction<void()> handler)
1305
{
12✔
1306
    async_write_frame(true, Opcode::ping, data, size, std::move(handler));
12✔
1307
}
12✔
1308

1309
void websocket::Socket::async_write_pong(const char* data, size_t size, util::UniqueFunction<void()> handler)
1310
{
4✔
1311
    async_write_frame(true, Opcode::pong, data, size, std::move(handler));
4✔
1312
}
4✔
1313

1314
void websocket::Socket::stop() noexcept
1315
{
1,216✔
1316
    m_impl->stop();
1,216✔
1317
}
1,216✔
1318

1319
void websocket::Socket::force_handshake_response_for_testing(int status_code, std::string body)
1320
{
12✔
1321
    m_impl->force_handshake_response_for_testing(status_code, body);
12✔
1322
}
12✔
1323

1324
util::Optional<std::string> websocket::read_sec_websocket_protocol(const HTTPRequest& request)
1325
{
2,022✔
1326
    const HTTPHeaders& headers = request.headers;
2,022✔
1327
    const StringData header = "Sec-WebSocket-Protocol";
2,022✔
1328
    util::Optional<StringData> value = find_http_header_value(headers, header);
2,022✔
1329
    return value ? util::Optional<std::string>(std::string(*value)) : util::none;
2,022✔
1330
}
2,022✔
1331

1332
util::Optional<HTTPResponse> websocket::make_http_response(const HTTPRequest& request,
1333
                                                           const std::string& sec_websocket_protocol,
1334
                                                           std::error_code& ec)
1335
{
2,010✔
1336
    return do_make_http_response(request, sec_websocket_protocol, ec);
2,010✔
1337
}
2,010✔
1338

1339
const std::error_category& websocket::http_error_category() noexcept
1340
{
208✔
1341
    static const HttpErrorCategory category = {};
208✔
1342
    return category;
208✔
1343
}
208✔
1344

1345
std::error_code websocket::make_error_code(HttpError error_code) noexcept
1346
{
208✔
1347
    return std::error_code{int(error_code), http_error_category()};
208✔
1348
}
208✔
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