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mendersoftware / mender / 2372958650

09 Mar 2026 12:59PM UTC coverage: 81.684% (+0.003%) from 81.681%
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Merge pull request #1909 from danielskinstad/revert-extra-timeouts

fix: Revert "fix: ensure tcp_stream object doesn't hang"

8995 of 11012 relevant lines covered (81.68%)

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88.33
/src/common/http/platform/beast/http.cpp
1
// Copyright 2023 Northern.tech AS
2
//
3
//    Licensed under the Apache License, Version 2.0 (the "License");
4
//    you may not use this file except in compliance with the License.
5
//    You may obtain a copy of the License at
6
//
7
//        http://www.apache.org/licenses/LICENSE-2.0
8
//
9
//    Unless required by applicable law or agreed to in writing, software
10
//    distributed under the License is distributed on an "AS IS" BASIS,
11
//    WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12
//    See the License for the specific language governing permissions and
13
//    limitations under the License.
14

15
#include <common/http.hpp>
16

17
#include <algorithm>
18

19
#include <boost/asio.hpp>
20
#include <boost/asio/ip/tcp.hpp>
21
#include <boost/asio/ssl/host_name_verification.hpp>
22
#include <boost/asio/ssl/verify_mode.hpp>
23

24
#include <common/common.hpp>
25
#include <common/crypto.hpp>
26

27
#include <mender-version.h>
28

29
namespace mender {
30
namespace common {
31
namespace http {
32

33
namespace common = mender::common;
34
namespace crypto = mender::common::crypto;
35

36
// At the time of writing, Beast only supports HTTP/1.1, and is unlikely to support HTTP/2
37
// according to this discussion: https://github.com/boostorg/beast/issues/1302.
38
const unsigned int BeastHttpVersion = 11;
39

40
namespace asio = boost::asio;
41
namespace http = boost::beast::http;
42

43
const int HTTP_BEAST_BUFFER_SIZE = MENDER_BUFSIZE;
44

45
static http::verb MethodToBeastVerb(Method method) {
306✔
46
        switch (method) {
306✔
47
        case Method::GET:
48
                return http::verb::get;
49
        case Method::HEAD:
50
                return http::verb::head;
51
        case Method::POST:
52
                return http::verb::post;
53
        case Method::PUT:
54
                return http::verb::put;
55
        case Method::PATCH:
56
                return http::verb::patch;
57
        case Method::CONNECT:
58
                return http::verb::connect;
59
        case Method::Invalid:
60
                // Fallthrough to end (no-op).
61
                break;
62
        }
63
        // Don't use "default" case. This should generate a warning if we ever add any methods. But
64
        // still assert here for safety.
65
        assert(false);
66
        return http::verb::get;
67
}
68

69
static expected::expected<Method, error::Error> BeastVerbToMethod(
285✔
70
        http::verb verb, const string &verb_string) {
71
        switch (verb) {
285✔
72
        case http::verb::get:
245✔
73
                return Method::GET;
74
        case http::verb::head:
×
75
                return Method::HEAD;
76
        case http::verb::post:
16✔
77
                return Method::POST;
78
        case http::verb::put:
24✔
79
                return Method::PUT;
80
        case http::verb::patch:
×
81
                return Method::PATCH;
82
        case http::verb::connect:
×
83
                return Method::CONNECT;
84
        default:
×
85
                return expected::unexpected(MakeError(UnsupportedMethodError, verb_string));
×
86
        }
87
}
88

89
template <typename StreamType>
90
class BodyAsyncReader : virtual public io::AsyncReader {
91
public:
92
        BodyAsyncReader(StreamType &stream, shared_ptr<bool> cancelled) :
510✔
93
                stream_ {stream},
255✔
94
                cancelled_ {cancelled} {
255✔
95
        }
510✔
96
        ~BodyAsyncReader() {
510✔
97
                Cancel();
255✔
98
        }
765✔
99

100
        error::Error AsyncRead(
7,004✔
101
                vector<uint8_t>::iterator start,
102
                vector<uint8_t>::iterator end,
103
                io::AsyncIoHandler handler) override {
104
                if (eof_) {
7,004✔
105
                        handler(0);
×
106
                        return error::NoError;
×
107
                }
108

109
                if (*cancelled_) {
7,004✔
110
                        return error::MakeError(
×
111
                                error::ProgrammingError,
112
                                "BodyAsyncReader::AsyncRead called after stream is destroyed");
×
113
                }
114
                stream_.AsyncReadNextBodyPart(start, end, [this, handler](io::ExpectedSize size) {
28,494✔
115
                        if (size && size.value() == 0) {
7,003✔
116
                                eof_ = true;
137✔
117
                        }
118
                        handler(size);
14,006✔
119
                });
120
                return error::NoError;
7,004✔
121
        }
122

123
        void Cancel() override {
256✔
124
                if (!*cancelled_) {
256✔
125
                        stream_.Cancel();
9✔
126
                }
127
        }
256✔
128

129
private:
130
        StreamType &stream_;
131
        shared_ptr<bool> cancelled_;
132
        bool eof_ {false};
133

134
        friend class Client;
135
        friend class Server;
136
};
137

138
template <typename StreamType>
139
class RawSocket : virtual public io::AsyncReadWriter {
140
public:
141
        RawSocket(shared_ptr<StreamType> stream, shared_ptr<beast::flat_buffer> buffered) :
30✔
142
                destroying_ {make_shared<bool>(false)},
15✔
143
                stream_ {stream},
144
                buffered_ {buffered} {
15✔
145
                // If there are no buffered bytes, then we don't need it.
146
                if (buffered_ && buffered_->size() == 0) {
15✔
147
                        buffered_.reset();
11✔
148
                }
149
        }
30✔
150

151
        ~RawSocket() {
30✔
152
                *destroying_ = true;
15✔
153
                Cancel();
15✔
154
        }
45✔
155

156
        error::Error AsyncRead(
320✔
157
                vector<uint8_t>::iterator start,
158
                vector<uint8_t>::iterator end,
159
                io::AsyncIoHandler handler) override {
160
                // If we have prebuffered bytes, which can happen if the HTTP parser read the
161
                // header and parts of the body in one block, return those first.
162
                if (buffered_) {
320✔
163
                        return DrainPrebufferedData(start, end, handler);
8✔
164
                }
165

166
                read_buffer_ = asio::buffer(&*start, end - start);
316✔
167
                auto &destroying = destroying_;
168
                stream_->async_read_some(
316✔
169
                        read_buffer_,
316✔
170
                        [destroying, handler](const boost::system::error_code &ec, size_t num_read) {
945✔
171
                                if (*destroying) {
313✔
172
                                        return;
173
                                }
174

175
                                if (ec == asio::error::operation_aborted) {
313✔
176
                                        handler(expected::unexpected(error::Error(
9✔
177
                                                make_error_condition(errc::operation_canceled),
6✔
178
                                                "Could not read from socket")));
179
                                } else if (ec) {
310✔
180
                                        handler(expected::unexpected(
6✔
181
                                                error::Error(ec.default_error_condition(), "Could not read from socket")));
12✔
182
                                } else {
183
                                        handler(num_read);
608✔
184
                                }
185
                        });
186
                return error::NoError;
316✔
187
        }
188

189
        error::Error AsyncWrite(
309✔
190
                vector<uint8_t>::const_iterator start,
191
                vector<uint8_t>::const_iterator end,
192
                io::AsyncIoHandler handler) override {
193
                write_buffer_ = asio::buffer(&*start, end - start);
309✔
194
                auto &destroying = destroying_;
195
                stream_->async_write_some(
309✔
196
                        write_buffer_,
309✔
197
                        [destroying, handler](const boost::system::error_code &ec, size_t num_written) {
924✔
198
                                if (*destroying) {
306✔
199
                                        return;
200
                                }
201

202
                                if (ec == asio::error::operation_aborted) {
306✔
203
                                        handler(expected::unexpected(error::Error(
×
204
                                                make_error_condition(errc::operation_canceled),
×
205
                                                "Could not write to socket")));
206
                                } else if (ec) {
306✔
207
                                        handler(expected::unexpected(
×
208
                                                error::Error(ec.default_error_condition(), "Could not write to socket")));
×
209
                                } else {
210
                                        handler(num_written);
612✔
211
                                }
212
                        });
213
                return error::NoError;
309✔
214
        }
215

216
        void Cancel() override {
28✔
217
                // close() is sufficient:
218
                // https://www.boost.org/doc/libs/latest/doc/html/boost_asio/reference/basic_stream_socket/close/overload1.html
219
                beast::close_socket(beast::get_lowest_layer(*stream_));
220
        }
28✔
221

222
private:
223
        error::Error DrainPrebufferedData(
4✔
224
                vector<uint8_t>::iterator start,
225
                vector<uint8_t>::iterator end,
226
                io::AsyncIoHandler handler) {
227
                size_t to_copy = min(static_cast<size_t>(end - start), buffered_->size());
4✔
228

229
                // These two lines are equivalent to:
230
                //   copy_n(static_cast<const uint8_t *>(buffered_->cdata().data()), to_copy, start);
231
                // but compatible with Boost 1.67.
232
                const beast::flat_buffer &cbuffered = *buffered_;
233
                copy_n(static_cast<const uint8_t *>(cbuffered.data().data()), to_copy, start);
4✔
234
                buffered_->consume(to_copy);
4✔
235
                if (buffered_->size() == 0) {
4✔
236
                        // We don't need it anymore.
237
                        buffered_.reset();
4✔
238
                }
239
                handler(to_copy);
4✔
240
                return error::NoError;
4✔
241
        }
242

243
        shared_ptr<bool> destroying_;
244
        shared_ptr<StreamType> stream_;
245
        shared_ptr<beast::flat_buffer> buffered_;
246
        asio::mutable_buffer read_buffer_;
247
        asio::const_buffer write_buffer_;
248
};
249

250
template <typename PARSER>
251
int64_t GetContentLength(const PARSER &parser) {
864✔
252
        auto content_length = parser.content_length();
864✔
253
        if (content_length) {
864✔
254
                return content_length.value();
553✔
255
        } else {
256
                return 0;
257
        }
258
}
259

260
expected::ExpectedBool HasBody(
567✔
261
        const expected::ExpectedString &content_length,
262
        const expected::ExpectedString &transfer_encoding) {
263
        if (transfer_encoding) {
567✔
264
                if (transfer_encoding.value() != "chunked") {
4✔
265
                        return expected::unexpected(error::Error(
×
266
                                make_error_condition(errc::not_supported),
×
267
                                "Unsupported Transfer-Encoding: " + transfer_encoding.value()));
×
268
                }
269
                return true;
270
        }
271

272
        if (content_length) {
563✔
273
                auto length = common::StringToLongLong(content_length.value());
281✔
274
                if (!length || length.value() < 0) {
281✔
275
                        return expected::unexpected(error::Error(
×
276
                                length.error().code,
277
                                "Content-Length contains invalid number: " + content_length.value()));
×
278
                }
279
                return length.value() > 0;
281✔
280
        }
281

282
        return false;
283
}
284

285
Client::Client(
784✔
286
        const ClientConfig &client, events::EventLoop &event_loop, const string &logger_name) :
392✔
287
        event_loop_ {event_loop},
392✔
288
        logger_name_ {logger_name},
392✔
289
        client_config_ {client},
392✔
290
        http_proxy_ {client.http_proxy},
392✔
291
        https_proxy_ {client.https_proxy},
392✔
292
        no_proxy_ {client.no_proxy},
392✔
293
        cancelled_ {make_shared<bool>(true)},
392✔
294
        resolver_(GetAsioIoContext(event_loop)),
392✔
295
        body_buffer_(HTTP_BEAST_BUFFER_SIZE) {
1,568✔
296
}
784✔
297

298
Client::~Client() {
1,960✔
299
        if (!*cancelled_) {
392✔
300
                logger_.Warning("Client destroyed while request is still active!");
30✔
301
        }
302
        DoCancel();
392✔
303
}
2,352✔
304

305
error::Error Client::Initialize() {
342✔
306
        if (initialized_) {
342✔
307
                return error::NoError;
119✔
308
        }
309

310
        for (auto i = 0; i < MENDER_BOOST_BEAST_SSL_CTX_COUNT; i++) {
661✔
311
                ssl_ctx_[i].set_verify_mode(
882✔
312
                        client_config_.skip_verify ? ssl::verify_none : ssl::verify_peer);
313

314
                beast::error_code ec {};
442✔
315
                if (client_config_.client_cert_path != "" and client_config_.client_cert_key_path != "") {
442✔
316
                        ssl_ctx_[i].set_options(boost::asio::ssl::context::default_workarounds);
4✔
317
                        ssl_ctx_[i].use_certificate_file(
4✔
318
                                client_config_.client_cert_path, boost::asio::ssl::context_base::pem, ec);
319
                        if (ec) {
4✔
320
                                return error::Error(
321
                                        ec.default_error_condition(), "Could not load client certificate");
2✔
322
                        }
323
                        auto exp_key = crypto::PrivateKey::Load(
324
                                {client_config_.client_cert_key_path, "", client_config_.ssl_engine});
3✔
325
                        if (!exp_key) {
3✔
326
                                return exp_key.error().WithContext(
327
                                        "Error loading private key from " + client_config_.client_cert_key_path);
2✔
328
                        }
329

330
                        const int ret =
331
                                SSL_CTX_use_PrivateKey(ssl_ctx_[i].native_handle(), exp_key.value()->Get());
2✔
332
                        if (ret != 1) {
2✔
333
                                return MakeError(
334
                                        HTTPInitError,
335
                                        "Failed to add the PrivateKey: " + client_config_.client_cert_key_path
×
336
                                                + " to the SSL CTX");
×
337
                        }
338
                } else if (
339
                        client_config_.client_cert_path != "" or client_config_.client_cert_key_path != "") {
438✔
340
                        return error::Error(
341
                                make_error_condition(errc::invalid_argument),
4✔
342
                                "Cannot set only one of client certificate, and client certificate private key");
4✔
343
                }
344

345
                bool cert_loaded = true;
346
                ssl_ctx_[i].set_default_verify_paths(ec); // Load the default CAs
438✔
347
                if (ec) {
438✔
348
                        auto err = error::Error(
349
                                ec.default_error_condition(), "Failed to load the SSL default directory");
×
350
                        if (client_config_.server_cert_path == "") {
×
351
                                // We aren't going to have any valid certificates then.
352
                                return err;
×
353
                        } else {
354
                                // We have a dedicated certificate, so this is not fatal.
355
                                log::Info(err.String());
×
356
                                cert_loaded = false;
357
                        }
358
                }
359
                if (client_config_.server_cert_path != "") {
438✔
360
                        ssl_ctx_[i].load_verify_file(client_config_.server_cert_path, ec);
52✔
361
                        if (ec) {
52✔
362
                                log::Warning("Failed to load the server certificate! Falling back to the CA store");
2✔
363
                                if (!cert_loaded) {
2✔
364
                                        return error::Error(
365
                                                ec.default_error_condition(),
×
366
                                                "Failed to load SSL default directory and server certificate");
×
367
                                }
368
                        }
369
                }
370
        }
371

372
        initialized_ = true;
219✔
373

374
        return error::NoError;
219✔
375
}
3✔
376

377
// Create the HOST header according to:
378
// https://www.w3.org/Protocols/rfc2616/rfc2616-sec14.html#sec14.23
379
// In short: Add the port-number if it is non-standard HTTP
380
static string CreateHOSTAddress(OutgoingRequestPtr req) {
343✔
381
        if (req->GetPort() == 80 || req->GetPort() == 443) {
343✔
382
                return req->GetHost();
4✔
383
        }
384
        return req->GetHost() + ":" + to_string(req->GetPort());
678✔
385
}
386

387
error::Error Client::AsyncCall(
342✔
388
        OutgoingRequestPtr req, ResponseHandler header_handler, ResponseHandler body_handler) {
389
        auto err = Initialize();
342✔
390
        if (err != error::NoError) {
342✔
391
                return err;
4✔
392
        }
393

394
        if (!*cancelled_ && status_ != TransactionStatus::Done) {
338✔
395
                return error::Error(
396
                        make_error_condition(errc::operation_in_progress), "HTTP call already ongoing");
×
397
        }
398

399
        if (req->address_.protocol == "" || req->address_.host == "" || req->address_.port < 0) {
338✔
400
                return error::MakeError(error::ProgrammingError, "Request is not ready");
4✔
401
        }
402

403
        if (!header_handler || !body_handler) {
336✔
404
                return error::MakeError(
2✔
405
                        error::ProgrammingError, "header_handler and body_handler can not be nullptr");
1✔
406
        }
407

408
        if (req->address_.protocol != "http" && req->address_.protocol != "https") {
335✔
409
                return error::Error(
410
                        make_error_condition(errc::protocol_not_supported), req->address_.protocol);
2✔
411
        }
412

413
        logger_ = log::Logger(logger_name_).WithFields(log::LogField("url", req->orig_address_));
668✔
414

415
        request_ = req;
416

417
        err = HandleProxySetup();
334✔
418
        if (err != error::NoError) {
334✔
419
                return err;
4✔
420
        }
421

422
        // NOTE: The AWS loadbalancer requires that the HOST header always be set, in order for the
423
        // request to route to our k8s cluster. Set this in all cases.
424
        const string header_url = CreateHOSTAddress(req);
660✔
425
        req->SetHeader("HOST", header_url);
330✔
426

427
        log::Trace("Setting HOST address: " + header_url);
660✔
428

429
        // Add User-Agent header for all requests
430
        req->SetHeader("User-Agent", "Mender/" MENDER_VERSION);
660✔
431

432
        header_handler_ = header_handler;
330✔
433
        body_handler_ = body_handler;
330✔
434
        status_ = TransactionStatus::None;
330✔
435

436
        cancelled_ = make_shared<bool>(false);
330✔
437

438
        auto &cancelled = cancelled_;
439

440
        resolver_.async_resolve(
330✔
441
                request_->address_.host,
442
                to_string(request_->address_.port),
660✔
443
                [this, cancelled](
986✔
444
                        const error_code &ec, const asio::ip::tcp::resolver::results_type &results) {
445
                        if (!*cancelled) {
326✔
446
                                ResolveHandler(ec, results);
325✔
447
                        }
448
                });
326✔
449

450
        return error::NoError;
330✔
451
}
452

453
static inline error::Error AddProxyAuthHeader(OutgoingRequest &req, BrokenDownUrl &proxy_address) {
22✔
454
        if (proxy_address.username == "") {
22✔
455
                // nothing to do
456
                return error::NoError;
19✔
457
        }
458
        auto ex_dec_username = URLDecode(proxy_address.username);
3✔
459
        auto ex_dec_password = URLDecode(proxy_address.password);
3✔
460
        if (!ex_dec_username) {
3✔
461
                return ex_dec_username.error();
×
462
        }
463
        if (!ex_dec_password) {
3✔
464
                return ex_dec_password.error();
×
465
        }
466
        auto creds = ex_dec_username.value() + ":" + ex_dec_password.value();
3✔
467
        auto ex_encoded_creds = crypto::EncodeBase64(common::ByteVectorFromString(creds));
6✔
468
        if (!ex_encoded_creds) {
3✔
469
                return ex_encoded_creds.error();
×
470
        }
471
        req.SetHeader("Proxy-Authorization", "Basic " + ex_encoded_creds.value());
6✔
472
        log::Warning(
3✔
473
                "Avoid using basic authentication if possible, and make sure if it's used, it's through HTTPS");
474

475
        return error::NoError;
3✔
476
}
477

478
error::Error Client::HandleProxySetup() {
334✔
479
        secondary_req_.reset();
334✔
480

481
        if (request_->address_.protocol == "http") {
334✔
482
                socket_mode_ = SocketMode::Plain;
308✔
483

484
                if (http_proxy_ != "" && !HostNameMatchesNoProxy(request_->address_.host, no_proxy_)) {
308✔
485
                        // Make a modified proxy request.
486
                        BrokenDownUrl proxy_address;
11✔
487
                        auto err = BreakDownUrl(http_proxy_, proxy_address, true);
11✔
488
                        if (err != error::NoError) {
11✔
489
                                return err.WithContext("HTTP proxy URL is invalid");
2✔
490
                        }
491
                        if (proxy_address.path != "" && proxy_address.path != "/") {
10✔
492
                                return MakeError(
2✔
493
                                        InvalidUrlError, "A URL with a path is not legal for a proxy address");
1✔
494
                        }
495

496
                        request_->address_.path = request_->address_.protocol + "://" + request_->address_.host
9✔
497
                                                                          + ":" + to_string(request_->address_.port)
18✔
498
                                                                          + request_->address_.path;
27✔
499
                        request_->address_.host = proxy_address.host;
9✔
500
                        request_->address_.port = proxy_address.port;
9✔
501
                        request_->address_.protocol = proxy_address.protocol;
9✔
502

503
                        err = AddProxyAuthHeader(*request_, proxy_address);
9✔
504
                        if (err != error::NoError) {
9✔
505
                                return err;
×
506
                        }
507

508
                        if (proxy_address.protocol == "https") {
9✔
509
                                socket_mode_ = SocketMode::Tls;
5✔
510
                        } else if (proxy_address.protocol == "http") {
4✔
511
                                socket_mode_ = SocketMode::Plain;
4✔
512
                        } else {
513
                                // Should never get here.
514
                                assert(false);
515
                        }
516
                }
11✔
517
        } else if (request_->address_.protocol == "https") {
26✔
518
                socket_mode_ = SocketMode::Tls;
26✔
519

520
                if (https_proxy_ != "" && !HostNameMatchesNoProxy(request_->address_.host, no_proxy_)) {
26✔
521
                        // Save the original request for later, so that we can make a new request
522
                        // over the channel established by CONNECT.
523
                        secondary_req_ = std::move(request_);
524

525
                        request_ = make_shared<OutgoingRequest>();
30✔
526
                        request_->SetMethod(Method::CONNECT);
15✔
527
                        BrokenDownUrl proxy_address;
15✔
528
                        auto err = BreakDownUrl(https_proxy_, proxy_address, true);
15✔
529
                        if (err != error::NoError) {
15✔
530
                                return err.WithContext("HTTPS proxy URL is invalid");
2✔
531
                        }
532
                        if (proxy_address.path != "" && proxy_address.path != "/") {
14✔
533
                                return MakeError(
2✔
534
                                        InvalidUrlError, "A URL with a path is not legal for a proxy address");
1✔
535
                        }
536

537
                        request_->address_.path =
538
                                secondary_req_->address_.host + ":" + to_string(secondary_req_->address_.port);
26✔
539
                        request_->address_.host = proxy_address.host;
13✔
540
                        request_->address_.port = proxy_address.port;
13✔
541
                        request_->address_.protocol = proxy_address.protocol;
13✔
542

543
                        // Set Host header for CONNECT request - required by some proxies (RFC 7230)
544
                        const string header_url = CreateHOSTAddress(request_);
26✔
545
                        request_->SetHeader("HOST", header_url);
26✔
546

547
                        err = AddProxyAuthHeader(*request_, proxy_address);
13✔
548
                        if (err != error::NoError) {
13✔
549
                                return err;
×
550
                        }
551

552
                        if (proxy_address.protocol == "https") {
13✔
553
                                socket_mode_ = SocketMode::Tls;
7✔
554
                        } else if (proxy_address.protocol == "http") {
6✔
555
                                socket_mode_ = SocketMode::Plain;
6✔
556
                        } else {
557
                                // Should never get here.
558
                                assert(false);
559
                        }
560
                }
15✔
561
        } else {
562
                // Should never get here
563
                assert(false);
564
        }
565

566
        return error::NoError;
330✔
567
}
568

569
io::ExpectedAsyncReaderPtr Client::MakeBodyAsyncReader(IncomingResponsePtr resp) {
244✔
570
        if (status_ != TransactionStatus::HeaderHandlerCalled) {
244✔
571
                return expected::unexpected(error::Error(
14✔
572
                        make_error_condition(errc::operation_in_progress),
28✔
573
                        "MakeBodyAsyncReader called while reading is in progress"));
42✔
574
        }
575

576
        if (GetContentLength(*response_data_.http_response_parser_) == 0
230✔
577
                && !response_data_.http_response_parser_->chunked()) {
230✔
578
                return expected::unexpected(
18✔
579
                        MakeError(BodyMissingError, "Response does not contain a body"));
54✔
580
        }
581

582
        status_ = TransactionStatus::ReaderCreated;
212✔
583
        return make_shared<BodyAsyncReader<Client>>(resp->client_.GetHttpClient(), resp->cancelled_);
424✔
584
}
585

586
io::ExpectedAsyncReadWriterPtr Client::SwitchProtocol(IncomingResponsePtr req) {
7✔
587
        if (*cancelled_) {
7✔
588
                return expected::unexpected(error::Error(
×
589
                        make_error_condition(errc::not_connected),
×
590
                        "Cannot switch protocols if endpoint is not connected"));
×
591
        }
592

593
        // Rest of the connection is done directly on the socket, we are done here.
594
        status_ = TransactionStatus::Done;
7✔
595
        *cancelled_ = true;
7✔
596
        cancelled_ = make_shared<bool>(false);
14✔
597

598
        auto stream = stream_;
599
        // This no longer belongs to us.
600
        stream_.reset();
7✔
601

602
        switch (socket_mode_) {
7✔
603
        case SocketMode::TlsTls:
×
604
                return make_shared<RawSocket<ssl::stream<ssl::stream<beast::tcp_stream>>>>(
×
605
                        stream, response_data_.response_buffer_);
×
606
        case SocketMode::Tls:
×
607
                return make_shared<RawSocket<ssl::stream<beast::tcp_stream>>>(
×
608
                        make_shared<ssl::stream<beast::tcp_stream>>(std::move(stream->next_layer())),
×
609
                        response_data_.response_buffer_);
×
610
        case SocketMode::Plain:
7✔
611
                return make_shared<RawSocket<beast::tcp_stream>>(
7✔
612
                        make_shared<beast::tcp_stream>(std::move(stream->next_layer().next_layer())),
14✔
613
                        response_data_.response_buffer_);
14✔
614
        }
615

616
        AssertOrReturnUnexpected(false);
×
617
        // This should not happen. It's here to silence compiler warnings.
618
        return expected::unexpected(MakeError(error::ProgrammingError, "Invalid socket mode"));
619
}
620

621
void Client::CallHandler(ResponseHandler handler) {
425✔
622
        // This function exists to make sure we have a copy of the handler we're calling (in the
623
        // argument list). This is important in case the handler owns the client instance through a
624
        // capture, and it replaces the handler with a different one (using `AsyncCall`). If it
625
        // does, then it destroys the final copy of the handler, and therefore also the client,
626
        // which is why we need to make a copy here, before calling it.
627
        handler(response_);
425✔
628
}
425✔
629

630
void Client::CallErrorHandler(
132✔
631
        const error_code &ec, const OutgoingRequestPtr &req, ResponseHandler handler) {
632
        CallErrorHandler(error::Error(ec.default_error_condition(), ""), req, handler);
396✔
633
}
132✔
634

635
void Client::CallErrorHandler(
174✔
636
        const error::Error &err, const OutgoingRequestPtr &req, ResponseHandler handler) {
637
        status_ = TransactionStatus::Done;
174✔
638
        DoCancel();
174✔
639
        handler(expected::unexpected(
174✔
640
                err.WithContext(MethodToString(req->method_) + " " + req->orig_address_)));
174✔
641
}
174✔
642

643
void Client::ResolveHandler(
325✔
644
        const error_code &ec, const asio::ip::tcp::resolver::results_type &results) {
645
        if (ec) {
325✔
646
                CallErrorHandler(ec, request_, header_handler_);
×
647
                return;
×
648
        }
649

650
        if (logger_.Level() >= log::LogLevel::Debug) {
325✔
651
                string ips = "[";
300✔
652
                string sep;
653
                for (auto r : results) {
932✔
654
                        ips += sep;
332✔
655
                        ips += r.endpoint().address().to_string();
332✔
656
                        sep = ", ";
332✔
657
                }
332✔
658
                ips += "]";
300✔
659
                logger_.Debug("Hostname " + request_->address_.host + " resolved to " + ips);
600✔
660
        }
661

662
        resolver_results_ = results;
663

664
        stream_ = make_shared<ssl::stream<ssl::stream<beast::tcp_stream>>>(
325✔
665
                ssl::stream<beast::tcp_stream>(
325✔
666
                        beast::tcp_stream(GetAsioIoContext(event_loop_)), ssl_ctx_[0]),
650✔
667
                ssl_ctx_[1]);
325✔
668

669
        if (response_data_.response_buffer_) {
325✔
670
                // We can reuse this if preexisting, just make sure we start with a
671
                // clean state (while avoiding shrinking/discarding the buffer, see
672
                // https://www.boost.org/doc/libs/1_70_0/libs/beast/doc/html/beast/ref/boost__beast__basic_flat_buffer/clear.html
673
                // for details).
674
                // Since there should be no leftover bytes from previous responses, we
675
                // log if there are some, but let's not bother all users with a warning,
676
                // there is nothing they could do about it. However, for
677
                // testing/debugging/CI, it can be useful to have this information.
678
                if (response_data_.response_buffer_->size() > 0) {
117✔
679
                        logger_.Debug(
1✔
680
                                "Leftover data from the previous response! ("
681
                                + to_string(response_data_.response_buffer_->size()) + " bytes)");
2✔
682
                }
683
                response_data_.response_buffer_->clear();
684
        } else {
685
                response_data_.response_buffer_ = make_shared<beast::flat_buffer>();
416✔
686

687
                // This is equivalent to:
688
                //   response_data_.response_buffer_.reserve(body_buffer_.size());
689
                // but compatible with Boost 1.67.
690
                response_data_.response_buffer_->prepare(
208✔
691
                        body_buffer_.size() - response_data_.response_buffer_->size());
692
        }
693

694
        auto &cancelled = cancelled_;
695

696
        asio::async_connect(
325✔
697
                stream_->lowest_layer(),
698
                resolver_results_,
325✔
699
                [this, cancelled](const error_code &ec, const asio::ip::tcp::endpoint &endpoint) {
975✔
700
                        if (!*cancelled) {
325✔
701
                                switch (socket_mode_) {
325✔
702
                                case SocketMode::TlsTls:
×
703
                                        // Should never happen because we always need to handshake
704
                                        // the innermost Tls first, then the outermost, but the
705
                                        // latter doesn't happen here.
706
                                        assert(false);
707
                                        CallErrorHandler(
×
708
                                                error::MakeError(
×
709
                                                        error::ProgrammingError, "TlsTls mode is invalid in ResolveHandler"),
710
                                                request_,
×
711
                                                header_handler_);
×
712
                                case SocketMode::Tls:
21✔
713
                                        return HandshakeHandler(stream_->next_layer(), ec, endpoint);
21✔
714
                                case SocketMode::Plain:
304✔
715
                                        return ConnectHandler(ec, endpoint);
304✔
716
                                }
717
                        }
718
                });
719
}
720

721
template <typename StreamType>
722
void Client::HandshakeHandler(
28✔
723
        StreamType &stream, const error_code &ec, const asio::ip::tcp::endpoint &endpoint) {
724
        if (ec) {
28✔
725
                CallErrorHandler(ec, request_, header_handler_);
2✔
726
                return;
2✔
727
        }
728

729
        // Enable TCP keepalive
730
        boost::asio::socket_base::keep_alive option(true);
731
        stream_->lowest_layer().set_option(option);
26✔
732

733
        // We can't avoid a C style cast on this next line. The usual method by which system headers
734
        // are excluded from warnings doesn't work, because `SSL_set_tlsext_host_name` is a macro,
735
        // containing a cast, which expands here, not in the original file. So just disable the
736
        // warning here.
737
#ifdef __clang__
738
#pragma clang diagnostic push
739
#pragma clang diagnostic ignored "-Wold-style-cast"
740
#else
741
#pragma GCC diagnostic push
742
#pragma GCC diagnostic ignored "-Wold-style-cast"
743
#endif
744
        // Set SNI Hostname (many hosts need this to handshake successfully)
745
        if (!SSL_set_tlsext_host_name(stream.native_handle(), request_->address_.host.c_str())) {
26✔
746
#ifdef __clang__
747
#pragma clang diagnostic pop
748
#else
749
#pragma GCC diagnostic pop
750
#endif
751
                beast::error_code ec2 {
×
752
                        static_cast<int>(::ERR_get_error()), asio::error::get_ssl_category()};
×
753
                logger_.Error("Failed to set SNI host name: " + ec2.message());
×
754
        }
755

756
        // Enable host name verification (not done automatically and we don't have
757
        // enough access to the TLS internals to use X509_VERIFY_PARAM_set1_host(),
758
        // hence the callback that boost provides).
759
        boost::system::error_code b_ec;
26✔
760
        stream.set_verify_callback(ssl::host_name_verification(request_->address_.host), b_ec);
52✔
761
        if (b_ec) {
26✔
762
                logger_.Error("Failed to enable host name verification: " + b_ec.message());
×
763
                CallErrorHandler(b_ec, request_, header_handler_);
×
764
                return;
×
765
        }
766

767
        auto &cancelled = cancelled_;
768

769
        stream.async_handshake(
26✔
770
                ssl::stream_base::client, [this, cancelled, endpoint](const error_code &ec) {
78✔
771
                        if (*cancelled) {
26✔
772
                                return;
773
                        }
774
                        if (ec) {
26✔
775
                                logger_.Error("https: Failed to perform the SSL handshake: " + ec.message());
10✔
776
                                CallErrorHandler(ec, request_, header_handler_);
10✔
777
                                return;
10✔
778
                        }
779
                        logger_.Debug("https: Successful SSL handshake");
16✔
780
                        ConnectHandler(ec, endpoint);
16✔
781
                });
782
}
783

784

785
void Client::ConnectHandler(const error_code &ec, const asio::ip::tcp::endpoint &endpoint) {
320✔
786
        if (ec) {
320✔
787
                CallErrorHandler(ec, request_, header_handler_);
14✔
788
                return;
14✔
789
        }
790

791
        // Enable TCP keepalive
792
        boost::asio::socket_base::keep_alive option(true);
793
        stream_->lowest_layer().set_option(option);
306✔
794

795
        logger_.Debug("Connected to " + endpoint.address().to_string());
612✔
796

797
        request_data_.http_request_ = make_shared<http::request<http::buffer_body>>(
612✔
798
                MethodToBeastVerb(request_->method_), request_->address_.path, BeastHttpVersion);
612✔
799

800
        for (const auto &header : request_->headers_) {
1,139✔
801
                request_data_.http_request_->set(header.first, header.second);
833✔
802
        }
803

804
        request_data_.http_request_serializer_ =
805
                make_shared<http::request_serializer<http::buffer_body>>(*request_data_.http_request_);
306✔
806

807
        response_data_.http_response_parser_ = make_shared<http::response_parser<http::buffer_body>>();
612✔
808

809
        // Don't enforce limits. Since we stream everything, limits don't generally apply, and
810
        // if they do, they should be handled higher up in the application logic.
811
        //
812
        // Note: There is a bug in Beast here (tested on 1.74): One is supposed to be able to
813
        // pass an uninitialized `optional` to mean unlimited, but they do not check for
814
        // `has_value()` in their code, causing their subsequent comparison operation to
815
        // misbehave. So pass highest possible value instead.
816
        response_data_.http_response_parser_->body_limit(numeric_limits<uint64_t>::max());
817

818
        auto &cancelled = cancelled_;
819
        auto &request_data = request_data_;
306✔
820

821
        auto handler = [this, cancelled, request_data](const error_code &ec, size_t num_written) {
306✔
822
                if (!*cancelled) {
306✔
823
                        WriteHeaderHandler(ec, num_written);
306✔
824
                }
825
        };
306✔
826

827
        switch (socket_mode_) {
306✔
828
        case SocketMode::TlsTls:
2✔
829
                http::async_write_header(*stream_, *request_data_.http_request_serializer_, handler);
2✔
830
                break;
831
        case SocketMode::Tls:
14✔
832
                http::async_write_header(
14✔
833
                        stream_->next_layer(), *request_data_.http_request_serializer_, handler);
834
                break;
835
        case SocketMode::Plain:
290✔
836
                http::async_write_header(
290✔
837
                        stream_->next_layer().next_layer(), *request_data_.http_request_serializer_, handler);
838
                break;
839
        }
840
}
306✔
841

842
void Client::WriteHeaderHandler(const error_code &ec, size_t num_written) {
306✔
843
        if (num_written > 0) {
306✔
844
                logger_.Trace("Wrote " + to_string(num_written) + " bytes of header data to stream.");
612✔
845
        }
846

847
        if (ec) {
306✔
848
                CallErrorHandler(ec, request_, header_handler_);
×
849
                return;
262✔
850
        }
851

852
        auto exp_has_body =
853
                HasBody(request_->GetHeader("Content-Length"), request_->GetHeader("Transfer-Encoding"));
918✔
854
        if (!exp_has_body) {
306✔
855
                CallErrorHandler(exp_has_body.error(), request_, header_handler_);
×
856
                return;
×
857
        }
858
        if (!exp_has_body.value()) {
306✔
859
                ReadHeader();
261✔
860
                return;
861
        }
862

863
        if (!request_->body_gen_ && !request_->async_body_gen_) {
45✔
864
                auto err = MakeError(BodyMissingError, "No body generator");
1✔
865
                CallErrorHandler(err, request_, header_handler_);
2✔
866
                return;
867
        }
868

869
        assert(!(request_->body_gen_ && request_->async_body_gen_));
870

871
        if (request_->body_gen_) {
44✔
872
                auto body_reader = request_->body_gen_();
38✔
873
                if (!body_reader) {
38✔
874
                        CallErrorHandler(body_reader.error(), request_, header_handler_);
×
875
                        return;
876
                }
877
                request_->body_reader_ = body_reader.value();
38✔
878
        } else {
879
                auto body_reader = request_->async_body_gen_();
6✔
880
                if (!body_reader) {
6✔
881
                        CallErrorHandler(body_reader.error(), request_, header_handler_);
×
882
                        return;
883
                }
884
                request_->async_body_reader_ = body_reader.value();
6✔
885
        }
886

887
        PrepareAndWriteNewBodyBuffer();
44✔
888
}
889

890
void Client::WriteBodyHandler(const error_code &ec, size_t num_written) {
2,292✔
891
        if (num_written > 0) {
2,292✔
892
                logger_.Trace("Wrote " + to_string(num_written) + " bytes of body data to stream.");
2,252✔
893
        }
894

895
        if (ec == http::make_error_code(http::error::need_buffer)) {
2,292✔
896
                // Write next block of the body.
897
                PrepareAndWriteNewBodyBuffer();
1,125✔
898
        } else if (ec) {
1,167✔
899
                CallErrorHandler(ec, request_, header_handler_);
8✔
900
        } else if (num_written > 0) {
1,163✔
901
                // We are still writing the body.
902
                WriteBody();
1,126✔
903
        } else {
904
                // We are ready to receive the response.
905
                ReadHeader();
37✔
906
        }
907
}
2,292✔
908

909
void Client::PrepareAndWriteNewBodyBuffer() {
1,169✔
910
        // request_->body_reader_ XOR request_->async_body_reader_
911
        assert(
912
                (request_->body_reader_ || request_->async_body_reader_)
913
                && !(request_->body_reader_ && request_->async_body_reader_));
914

915
        auto cancelled = cancelled_;
916
        auto read_handler = [this, cancelled](io::ExpectedSize read) {
3,610✔
917
                if (!*cancelled) {
1,169✔
918
                        if (!read) {
1,168✔
919
                                CallErrorHandler(read.error(), request_, header_handler_);
2✔
920
                                return;
2✔
921
                        }
922
                        WriteNewBodyBuffer(read.value());
1,166✔
923
                }
924
        };
1,169✔
925

926

927
        if (request_->body_reader_) {
1,169✔
928
                read_handler(request_->body_reader_->Read(body_buffer_.begin(), body_buffer_.end()));
1,488✔
929
        } else {
930
                auto err = request_->async_body_reader_->AsyncRead(
425✔
931
                        body_buffer_.begin(), body_buffer_.end(), read_handler);
425✔
932
                if (err != error::NoError) {
425✔
933
                        CallErrorHandler(err, request_, header_handler_);
×
934
                }
935
        }
936
}
1,169✔
937

938
void Client::WriteNewBodyBuffer(size_t size) {
1,166✔
939
        request_data_.http_request_->body().data = body_buffer_.data();
1,166✔
940
        request_data_.http_request_->body().size = size;
1,166✔
941

942
        if (size > 0) {
1,166✔
943
                request_data_.http_request_->body().more = true;
1,129✔
944
        } else {
945
                // Release ownership of Body reader.
946
                request_->body_reader_.reset();
37✔
947
                request_->async_body_reader_.reset();
37✔
948
                request_data_.http_request_->body().more = false;
37✔
949
        }
950

951
        WriteBody();
1,166✔
952
}
1,166✔
953

954
void Client::WriteBody() {
2,292✔
955
        auto &cancelled = cancelled_;
956
        auto &request_data = request_data_;
2,292✔
957

958
        auto handler = [this, cancelled, request_data](const error_code &ec, size_t num_written) {
2,292✔
959
                if (!*cancelled) {
2,292✔
960
                        WriteBodyHandler(ec, num_written);
2,292✔
961
                }
962
        };
2,292✔
963

964
        switch (socket_mode_) {
2,292✔
965
        case SocketMode::TlsTls:
×
966
                http::async_write_some(*stream_, *request_data_.http_request_serializer_, handler);
967
                break;
968
        case SocketMode::Tls:
×
969
                http::async_write_some(
970
                        stream_->next_layer(), *request_data_.http_request_serializer_, handler);
971
                break;
972
        case SocketMode::Plain:
2,292✔
973
                http::async_write_some(
974
                        stream_->next_layer().next_layer(), *request_data_.http_request_serializer_, handler);
975
                break;
976
        }
977
}
2,292✔
978

979
void Client::ReadHeader() {
298✔
980
        auto &cancelled = cancelled_;
981
        auto &response_data = response_data_;
298✔
982

983
        auto handler = [this, cancelled, response_data](const error_code &ec, size_t num_read) {
295✔
984
                if (!*cancelled) {
295✔
985
                        ReadHeaderHandler(ec, num_read);
295✔
986
                }
987
        };
298✔
988

989
        switch (socket_mode_) {
298✔
990
        case SocketMode::TlsTls:
2✔
991
                http::async_read_some(
2✔
992
                        *stream_,
993
                        *response_data_.response_buffer_,
994
                        *response_data_.http_response_parser_,
995
                        handler);
996
                break;
997
        case SocketMode::Tls:
14✔
998
                http::async_read_some(
14✔
999
                        stream_->next_layer(),
1000
                        *response_data_.response_buffer_,
1001
                        *response_data_.http_response_parser_,
1002
                        handler);
1003
                break;
1004
        case SocketMode::Plain:
282✔
1005
                http::async_read_some(
282✔
1006
                        stream_->next_layer().next_layer(),
1007
                        *response_data_.response_buffer_,
1008
                        *response_data_.http_response_parser_,
1009
                        handler);
1010
                break;
1011
        }
1012
}
298✔
1013

1014
void Client::ReadHeaderHandler(const error_code &ec, size_t num_read) {
295✔
1015
        if (num_read > 0) {
295✔
1016
                logger_.Trace("Read " + to_string(num_read) + " bytes of header data from stream.");
580✔
1017
        }
1018

1019
        if (ec) {
295✔
1020
                CallErrorHandler(ec, request_, header_handler_);
5✔
1021
                return;
66✔
1022
        }
1023

1024
        if (!response_data_.http_response_parser_->is_header_done()) {
290✔
1025
                ReadHeader();
×
1026
                return;
×
1027
        }
1028

1029
        if (secondary_req_) {
290✔
1030
                HandleSecondaryRequest();
9✔
1031
                return;
9✔
1032
        }
1033

1034
        response_.reset(new IncomingResponse(*this, cancelled_));
843✔
1035
        response_->status_code_ = response_data_.http_response_parser_->get().result_int();
281✔
1036
        response_->status_message_ = string {response_data_.http_response_parser_->get().reason()};
281✔
1037

1038
        logger_.Debug(
562✔
1039
                "Received response: " + to_string(response_->status_code_) + " "
281✔
1040
                + response_->status_message_);
843✔
1041

1042
        string debug_str;
1043
        for (auto header = response_data_.http_response_parser_->get().cbegin();
1044
                 header != response_data_.http_response_parser_->get().cend();
646✔
1045
                 header++) {
1046
                response_->headers_[string {header->name_string()}] = string {header->value()};
1,095✔
1047
                if (logger_.Level() >= log::LogLevel::Debug) {
365✔
1048
                        debug_str += string {header->name_string()};
347✔
1049
                        debug_str += ": ";
347✔
1050
                        debug_str += string {header->value()};
347✔
1051
                        debug_str += "\n";
347✔
1052
                }
1053
        }
1054

1055
        logger_.Debug("Received headers:\n" + debug_str);
562✔
1056
        debug_str.clear();
1057

1058
        if (GetContentLength(*response_data_.http_response_parser_) == 0
281✔
1059
                && !response_data_.http_response_parser_->chunked()) {
281✔
1060
                auto cancelled = cancelled_;
1061
                status_ = TransactionStatus::HeaderHandlerCalled;
49✔
1062
                CallHandler(header_handler_);
98✔
1063
                if (!*cancelled) {
49✔
1064
                        status_ = TransactionStatus::Done;
44✔
1065
                        if (response_->status_code_ != StatusCode::StatusSwitchingProtocols) {
44✔
1066
                                // Make an exception for 101 Switching Protocols response, where the TCP connection
1067
                                // is meant to be reused.
1068
                                DoCancel();
40✔
1069
                        }
1070
                        CallHandler(body_handler_);
88✔
1071
                }
1072
                return;
1073
        }
1074

1075
        auto cancelled = cancelled_;
1076
        status_ = TransactionStatus::HeaderHandlerCalled;
232✔
1077
        CallHandler(header_handler_);
464✔
1078
        if (*cancelled) {
232✔
1079
                return;
1080
        }
1081

1082
        // We know that a body reader is required here, because of the check for body above.
1083
        if (status_ == TransactionStatus::HeaderHandlerCalled) {
229✔
1084
                CallErrorHandler(MakeError(BodyIgnoredError, ""), request_, body_handler_);
36✔
1085
        }
1086
}
1087

1088
void Client::HandleSecondaryRequest() {
9✔
1089
        logger_.Debug(
18✔
1090
                "Received proxy response: "
1091
                + to_string(response_data_.http_response_parser_->get().result_int()) + " "
18✔
1092
                + string {response_data_.http_response_parser_->get().reason()});
27✔
1093

1094
        request_ = std::move(secondary_req_);
1095

1096
        if (response_data_.http_response_parser_->get().result_int() != StatusOK) {
9✔
1097
                auto err = MakeError(
1098
                        ProxyError,
1099
                        "Proxy returned unexpected response: "
1100
                                + to_string(response_data_.http_response_parser_->get().result_int()) + " "
4✔
1101
                                + string {response_data_.http_response_parser_->get().reason()});
4✔
1102
                CallErrorHandler(err, request_, header_handler_);
4✔
1103
                return;
1104
        }
1105

1106
        if (GetContentLength(*response_data_.http_response_parser_) != 0
7✔
1107
                || response_data_.http_response_parser_->chunked()) {
7✔
1108
                auto err = MakeError(ProxyError, "Body not allowed in proxy response");
×
1109
                CallErrorHandler(err, request_, header_handler_);
×
1110
                return;
1111
        }
1112

1113
        // We are connected. Now repeat the request cycle with the original request. Pretend
1114
        // we were just connected.
1115

1116
        assert(request_->GetProtocol() == "https");
1117

1118
        // Make sure that no data is "lost" inside the buffering mechanism, since when switching to
1119
        // a different layer, this will get out of sync.
1120
        assert(response_data_.response_buffer_->size() == 0);
1121

1122
        switch (socket_mode_) {
7✔
1123
        case SocketMode::TlsTls:
×
1124
                // Should never get here, because this is the only place where TlsTls mode
1125
                // is supposed to be turned on.
1126
                assert(false);
1127
                CallErrorHandler(
×
1128
                        error::MakeError(
×
1129
                                error::ProgrammingError,
1130
                                "Any other mode than Tls is not valid when handling secondary request"),
1131
                        request_,
×
1132
                        header_handler_);
×
1133
                break;
×
1134
        case SocketMode::Tls:
3✔
1135
                // Upgrade to TLS inside TLS.
1136
                socket_mode_ = SocketMode::TlsTls;
3✔
1137
                HandshakeHandler(*stream_, error_code {}, stream_->lowest_layer().remote_endpoint());
3✔
1138
                break;
3✔
1139
        case SocketMode::Plain:
4✔
1140
                // Upgrade to TLS.
1141
                socket_mode_ = SocketMode::Tls;
4✔
1142
                HandshakeHandler(
4✔
1143
                        stream_->next_layer(), error_code {}, stream_->lowest_layer().remote_endpoint());
4✔
1144
                break;
4✔
1145
        }
1146
}
1147

1148
void Client::AsyncReadNextBodyPart(
5,040✔
1149
        vector<uint8_t>::iterator start, vector<uint8_t>::iterator end, io::AsyncIoHandler handler) {
1150
        assert(AtLeast(status_, TransactionStatus::ReaderCreated));
1151

1152
        if (status_ == TransactionStatus::ReaderCreated) {
5,040✔
1153
                status_ = TransactionStatus::BodyReadingInProgress;
210✔
1154
        }
1155

1156
        if (AtLeast(status_, TransactionStatus::BodyReadingFinished)) {
5,040✔
1157
                auto cancelled = cancelled_;
1158
                handler(0);
200✔
1159
                if (!*cancelled && status_ == TransactionStatus::BodyReadingFinished) {
100✔
1160
                        status_ = TransactionStatus::Done;
100✔
1161
                        DoCancel();
100✔
1162
                        CallHandler(body_handler_);
200✔
1163
                }
1164
                return;
1165
        }
1166

1167
        reader_buf_start_ = start;
4,940✔
1168
        reader_buf_end_ = end;
4,940✔
1169
        reader_handler_ = handler;
4,940✔
1170
        size_t read_size = end - start;
4,940✔
1171
        size_t smallest = min(body_buffer_.size(), read_size);
1172

1173
        response_data_.http_response_parser_->get().body().data = body_buffer_.data();
4,940✔
1174
        response_data_.http_response_parser_->get().body().size = smallest;
4,940✔
1175
        response_data_.last_buffer_size_ = smallest;
4,940✔
1176

1177
        auto &cancelled = cancelled_;
1178
        auto &response_data = response_data_;
4,940✔
1179

1180
        // Set timeout to 5 minutes to ensure we don't hang during async read
1181
        // `next_layer().next_layer()` accesses the `beast::tcp_stream` from
1182
        // `ssl::stream<ssl::stream<beast::tcp_stream>>`
1183
        stream_->next_layer().next_layer().expires_after(chrono::minutes(5));
4,940✔
1184

1185
        auto async_handler = [this, cancelled, response_data](const error_code &ec, size_t num_read) {
4,939✔
1186
                if (!*cancelled) {
4,939✔
1187
                        ReadBodyHandler(ec, num_read);
4,939✔
1188
                }
1189
        };
4,940✔
1190

1191
        switch (socket_mode_) {
4,940✔
1192
        case SocketMode::TlsTls:
2✔
1193
                http::async_read_some(
2✔
1194
                        *stream_,
1195
                        *response_data_.response_buffer_,
1196
                        *response_data_.http_response_parser_,
1197
                        async_handler);
1198
                break;
1199
        case SocketMode::Tls:
4✔
1200
                http::async_read_some(
4✔
1201
                        stream_->next_layer(),
1202
                        *response_data_.response_buffer_,
1203
                        *response_data_.http_response_parser_,
1204
                        async_handler);
1205
                break;
1206
        case SocketMode::Plain:
4,934✔
1207
                http::async_read_some(
4,934✔
1208
                        stream_->next_layer().next_layer(),
1209
                        *response_data_.response_buffer_,
1210
                        *response_data_.http_response_parser_,
1211
                        async_handler);
1212
                break;
1213
        }
1214
}
4,940✔
1215

1216
void Client::ReadBodyHandler(error_code ec, size_t num_read) {
4,939✔
1217
        if (num_read > 0) {
4,939✔
1218
                logger_.Trace("Read " + to_string(num_read) + " bytes of body data from stream.");
9,676✔
1219
        }
1220

1221
        if (ec == http::make_error_code(http::error::need_buffer)) {
4,939✔
1222
                // This can be ignored. We always reset the buffer between reads anyway.
1223
                ec = error_code();
1,958✔
1224
        }
1225

1226
        assert(reader_handler_);
1227

1228
        if (response_data_.http_response_parser_->is_done()) {
4,939✔
1229
                status_ = TransactionStatus::BodyReadingFinished;
106✔
1230
        }
1231

1232
        auto cancelled = cancelled_;
1233

1234
        if (ec) {
4,939✔
1235
                auto err = error::Error(ec.default_error_condition(), "Could not read body");
202✔
1236
                reader_handler_(expected::unexpected(err));
303✔
1237
                if (!*cancelled) {
101✔
1238
                        CallErrorHandler(ec, request_, body_handler_);
194✔
1239
                }
1240
                return;
1241
        }
1242

1243
        // The num_read from above includes out of band payload data, such as chunk headers, which
1244
        // we are not interested in. So we need to calculate the payload size from the remaining
1245
        // buffer space.
1246
        size_t payload_read =
1247
                response_data_.last_buffer_size_ - response_data_.http_response_parser_->get().body().size;
4,838✔
1248

1249
        size_t buf_size = reader_buf_end_ - reader_buf_start_;
4,838✔
1250
        size_t smallest = min(payload_read, buf_size);
1251

1252
        if (smallest == 0) {
4,838✔
1253
                // We read nothing, which can happen if all we read was a chunk header. We cannot
1254
                // return 0 to the handler however, because in `io::Reader` context this means
1255
                // EOF. So just repeat the request instead, until we get actual payload data.
1256
                AsyncReadNextBodyPart(reader_buf_start_, reader_buf_end_, reader_handler_);
462✔
1257
        } else {
1258
                copy_n(body_buffer_.begin(), smallest, reader_buf_start_);
4,607✔
1259
                reader_handler_(smallest);
9,214✔
1260
        }
1261
}
1262

1263
void Client::Cancel() {
267✔
1264
        auto cancelled = cancelled_;
1265

1266
        if (!*cancelled) {
267✔
1267
                auto err =
1268
                        error::Error(make_error_condition(errc::operation_canceled), "HTTP request cancelled");
40✔
1269
                switch (status_) {
20✔
1270
                case TransactionStatus::None:
3✔
1271
                        CallErrorHandler(err, request_, header_handler_);
3✔
1272
                        break;
3✔
1273
                case TransactionStatus::HeaderHandlerCalled:
16✔
1274
                case TransactionStatus::ReaderCreated:
1275
                case TransactionStatus::BodyReadingInProgress:
1276
                case TransactionStatus::BodyReadingFinished:
1277
                        CallErrorHandler(err, request_, body_handler_);
16✔
1278
                        break;
16✔
1279
                case TransactionStatus::Replying:
1280
                case TransactionStatus::SwitchingProtocol:
1281
                        // Not used by client.
1282
                        assert(false);
1283
                        break;
1284
                case TransactionStatus::BodyHandlerCalled:
1285
                case TransactionStatus::Done:
1286
                        break;
1287
                }
1288
        }
1289

1290
        if (!*cancelled) {
267✔
1291
                DoCancel();
1✔
1292
        }
1293
}
267✔
1294

1295
void Client::DoCancel() {
707✔
1296
        resolver_.cancel();
707✔
1297
        if (stream_) {
707✔
1298
                beast::error_code ec;
318✔
1299
                stream_->lowest_layer().cancel(ec);
318✔
1300
                stream_->lowest_layer().close(ec);
318✔
1301
                stream_.reset();
318✔
1302
        }
1303

1304
        // Reset logger to no connection.
1305
        logger_ = log::Logger(logger_name_);
707✔
1306

1307
        // Set cancel state and then make a new one. Those who are interested should have their own
1308
        // pointer to the old one.
1309
        *cancelled_ = true;
707✔
1310
        cancelled_ = make_shared<bool>(true);
707✔
1311
}
707✔
1312

1313
Stream::Stream(Server &server) :
553✔
1314
        server_ {server},
553✔
1315
        logger_ {"http"},
1,106✔
1316
        cancelled_(make_shared<bool>(true)),
553✔
1317
        socket_(server_.GetAsioIoContext(server_.event_loop_)),
553✔
1318
        body_buffer_(HTTP_BEAST_BUFFER_SIZE) {
1,106✔
1319
        request_data_.request_buffer_ = make_shared<beast::flat_buffer>();
1,106✔
1320

1321
        // This is equivalent to:
1322
        //   request_data_.request_buffer_.reserve(body_buffer_.size());
1323
        // but compatible with Boost 1.67.
1324
        request_data_.request_buffer_->prepare(
553✔
1325
                body_buffer_.size() - request_data_.request_buffer_->size());
1326

1327
        request_data_.http_request_parser_ = make_shared<http::request_parser<http::buffer_body>>();
1,106✔
1328

1329
        // Don't enforce limits. Since we stream everything, limits don't generally apply, and if
1330
        // they do, they should be handled higher up in the application logic.
1331
        //
1332
        // Note: There is a bug in Beast here (tested on 1.74): One is supposed to be able to pass
1333
        // an uninitialized `optional` to mean unlimited, but they do not check for `has_value()` in
1334
        // their code, causing their subsequent comparison operation to misbehave. So pass highest
1335
        // possible value instead.
1336
        request_data_.http_request_parser_->body_limit(numeric_limits<uint64_t>::max());
1337
}
553✔
1338

1339
Stream::~Stream() {
553✔
1340
        DoCancel();
553✔
1341
}
1,659✔
1342

1343
void Stream::Cancel() {
7✔
1344
        auto cancelled = cancelled_;
1345

1346
        if (!*cancelled) {
7✔
1347
                auto err =
1348
                        error::Error(make_error_condition(errc::operation_canceled), "HTTP response cancelled");
14✔
1349
                switch (status_) {
7✔
1350
                case TransactionStatus::None:
×
1351
                        CallErrorHandler(err, request_, server_.header_handler_);
×
1352
                        break;
×
1353
                case TransactionStatus::HeaderHandlerCalled:
5✔
1354
                case TransactionStatus::ReaderCreated:
1355
                case TransactionStatus::BodyReadingInProgress:
1356
                case TransactionStatus::BodyReadingFinished:
1357
                        CallErrorHandler(err, request_, server_.body_handler_);
5✔
1358
                        break;
5✔
1359
                case TransactionStatus::BodyHandlerCalled:
×
1360
                        // In between body handler and reply finished. No one to handle the status
1361
                        // here.
1362
                        server_.RemoveStream(shared_from_this());
×
1363
                        break;
×
1364
                case TransactionStatus::Replying:
1✔
1365
                        CallErrorHandler(err, request_, reply_finished_handler_);
3✔
1366
                        break;
1✔
1367
                case TransactionStatus::SwitchingProtocol:
1✔
1368
                        CallErrorHandler(err, request_, switch_protocol_handler_);
3✔
1369
                        break;
1✔
1370
                case TransactionStatus::Done:
1371
                        break;
1372
                }
1373
        }
1374

1375
        if (!*cancelled) {
7✔
1376
                DoCancel();
×
1377
        }
1378
}
7✔
1379

1380
void Stream::DoCancel() {
999✔
1381
        if (socket_.is_open()) {
999✔
1382
                socket_.cancel();
277✔
1383
                socket_.close();
277✔
1384
        }
1385

1386
        // Set cancel state and then make a new one. Those who are interested should have their own
1387
        // pointer to the old one.
1388
        *cancelled_ = true;
999✔
1389
        cancelled_ = make_shared<bool>(true);
999✔
1390
}
999✔
1391

1392
void Stream::CallErrorHandler(const error_code &ec, const RequestPtr &req, RequestHandler handler) {
×
1393
        CallErrorHandler(error::Error(ec.default_error_condition(), ""), req, handler);
×
1394
}
×
1395

1396
void Stream::CallErrorHandler(
×
1397
        const error::Error &err, const RequestPtr &req, RequestHandler handler) {
1398
        status_ = TransactionStatus::Done;
×
1399
        DoCancel();
×
1400
        handler(expected::unexpected(err.WithContext(
×
1401
                req->address_.host + ": " + MethodToString(req->method_) + " " + request_->GetPath())));
×
1402

1403
        server_.RemoveStream(shared_from_this());
×
1404
}
×
1405

1406
void Stream::CallErrorHandler(
2✔
1407
        const error_code &ec, const IncomingRequestPtr &req, IdentifiedRequestHandler handler) {
1408
        CallErrorHandler(error::Error(ec.default_error_condition(), ""), req, handler);
6✔
1409
}
2✔
1410

1411
void Stream::CallErrorHandler(
8✔
1412
        const error::Error &err, const IncomingRequestPtr &req, IdentifiedRequestHandler handler) {
1413
        status_ = TransactionStatus::Done;
8✔
1414
        DoCancel();
8✔
1415
        handler(
16✔
1416
                req,
1417
                err.WithContext(
8✔
1418
                        req->address_.host + ": " + MethodToString(req->method_) + " " + request_->GetPath()));
16✔
1419

1420
        server_.RemoveStream(shared_from_this());
8✔
1421
}
8✔
1422

1423
void Stream::CallErrorHandler(
4✔
1424
        const error_code &ec, const RequestPtr &req, ReplyFinishedHandler handler) {
1425
        CallErrorHandler(error::Error(ec.default_error_condition(), ""), req, handler);
12✔
1426
}
4✔
1427

1428
void Stream::CallErrorHandler(
7✔
1429
        const error::Error &err, const RequestPtr &req, ReplyFinishedHandler handler) {
1430
        status_ = TransactionStatus::Done;
7✔
1431
        DoCancel();
7✔
1432
        handler(err.WithContext(
7✔
1433
                req->address_.host + ": " + MethodToString(req->method_) + " " + request_->GetPath()));
14✔
1434

1435
        server_.RemoveStream(shared_from_this());
7✔
1436
}
7✔
1437

1438
void Stream::CallErrorHandler(
×
1439
        const error_code &ec, const RequestPtr &req, SwitchProtocolHandler handler) {
1440
        CallErrorHandler(error::Error(ec.default_error_condition(), ""), req, handler);
×
1441
}
×
1442

1443
void Stream::CallErrorHandler(
1✔
1444
        const error::Error &err, const RequestPtr &req, SwitchProtocolHandler handler) {
1445
        status_ = TransactionStatus::Done;
1✔
1446
        DoCancel();
1✔
1447
        handler(expected::unexpected(err.WithContext(
2✔
1448
                req->address_.host + ": " + MethodToString(req->method_) + " " + request_->GetPath())));
2✔
1449

1450
        server_.RemoveStream(shared_from_this());
1✔
1451
}
1✔
1452

1453
void Stream::AcceptHandler(const error_code &ec) {
285✔
1454
        if (ec) {
285✔
1455
                log::Error("Error while accepting HTTP connection: " + ec.message());
×
1456
                return;
×
1457
        }
1458

1459
        auto ip = socket_.remote_endpoint().address().to_string();
285✔
1460

1461
        // Use IP as context for logging.
1462
        logger_ = log::Logger("http_server").WithFields(log::LogField("ip", ip));
570✔
1463

1464
        logger_.Debug("Accepted connection.");
285✔
1465

1466
        request_.reset(new IncomingRequest(*this, cancelled_));
855✔
1467

1468
        request_->address_.host = ip;
285✔
1469

1470
        *cancelled_ = false;
285✔
1471

1472
        ReadHeader();
285✔
1473
}
1474

1475
void Stream::ReadHeader() {
285✔
1476
        auto &cancelled = cancelled_;
1477
        auto &request_data = request_data_;
285✔
1478

1479
        http::async_read_some(
285✔
1480
                socket_,
285✔
1481
                *request_data_.request_buffer_,
1482
                *request_data_.http_request_parser_,
1483
                [this, cancelled, request_data](const error_code &ec, size_t num_read) {
855✔
1484
                        if (!*cancelled) {
285✔
1485
                                ReadHeaderHandler(ec, num_read);
285✔
1486
                        }
1487
                });
285✔
1488
}
285✔
1489

1490
void Stream::ReadHeaderHandler(const error_code &ec, size_t num_read) {
285✔
1491
        if (num_read > 0) {
285✔
1492
                logger_.Trace("Read " + to_string(num_read) + " bytes of header data from stream.");
570✔
1493
        }
1494

1495
        if (ec) {
285✔
1496
                CallErrorHandler(ec, request_, server_.header_handler_);
×
1497
                return;
241✔
1498
        }
1499

1500
        if (!request_data_.http_request_parser_->is_header_done()) {
285✔
1501
                ReadHeader();
×
1502
                return;
×
1503
        }
1504

1505
        auto method_result = BeastVerbToMethod(
1506
                request_data_.http_request_parser_->get().base().method(),
1507
                string {request_data_.http_request_parser_->get().base().method_string()});
570✔
1508
        if (!method_result) {
285✔
1509
                CallErrorHandler(method_result.error(), request_, server_.header_handler_);
×
1510
                return;
×
1511
        }
1512
        request_->method_ = method_result.value();
285✔
1513
        request_->address_.path = string(request_data_.http_request_parser_->get().base().target());
285✔
1514

1515
        logger_ = logger_.WithFields(log::LogField("path", request_->address_.path));
570✔
1516

1517
        string debug_str;
1518
        for (auto header = request_data_.http_request_parser_->get().cbegin();
1519
                 header != request_data_.http_request_parser_->get().cend();
1,088✔
1520
                 header++) {
1521
                request_->headers_[string {header->name_string()}] = string {header->value()};
2,409✔
1522
                if (logger_.Level() >= log::LogLevel::Debug) {
803✔
1523
                        debug_str += string {header->name_string()};
697✔
1524
                        debug_str += ": ";
697✔
1525
                        debug_str += string {header->value()};
697✔
1526
                        debug_str += "\n";
697✔
1527
                }
1528
        }
1529

1530
        logger_.Debug("Received headers:\n" + debug_str);
570✔
1531
        debug_str.clear();
1532

1533
        if (GetContentLength(*request_data_.http_request_parser_) == 0
285✔
1534
                && !request_data_.http_request_parser_->chunked()) {
285✔
1535
                auto cancelled = cancelled_;
1536
                status_ = TransactionStatus::HeaderHandlerCalled;
240✔
1537
                server_.header_handler_(request_);
480✔
1538
                if (!*cancelled) {
240✔
1539
                        status_ = TransactionStatus::BodyHandlerCalled;
240✔
1540
                        CallBodyHandler();
240✔
1541
                }
1542
                return;
1543
        }
1544

1545
        assert(!request_data_.http_request_parser_->is_done());
1546

1547
        auto cancelled = cancelled_;
1548
        status_ = TransactionStatus::HeaderHandlerCalled;
45✔
1549
        server_.header_handler_(request_);
90✔
1550
        if (*cancelled) {
45✔
1551
                return;
1552
        }
1553

1554
        // We know that a body reader is required here, because of the check for body above.
1555
        if (status_ == TransactionStatus::HeaderHandlerCalled) {
44✔
1556
                CallErrorHandler(MakeError(BodyIgnoredError, ""), request_, server_.body_handler_);
2✔
1557
        }
1558
}
1559

1560
void Stream::AsyncReadNextBodyPart(
2,272✔
1561
        vector<uint8_t>::iterator start, vector<uint8_t>::iterator end, io::AsyncIoHandler handler) {
1562
        assert(AtLeast(status_, TransactionStatus::ReaderCreated));
1563

1564
        if (status_ == TransactionStatus::ReaderCreated) {
2,272✔
1565
                status_ = TransactionStatus::BodyReadingInProgress;
43✔
1566
        }
1567

1568
        if (status_ != TransactionStatus::BodyReadingInProgress) {
2,272✔
1569
                auto cancelled = cancelled_;
1570
                handler(0);
74✔
1571
                if (!*cancelled && status_ == TransactionStatus::BodyReadingFinished) {
37✔
1572
                        status_ = TransactionStatus::BodyHandlerCalled;
37✔
1573
                        CallBodyHandler();
37✔
1574
                }
1575
                return;
1576
        }
1577

1578
        reader_buf_start_ = start;
2,235✔
1579
        reader_buf_end_ = end;
2,235✔
1580
        reader_handler_ = handler;
2,235✔
1581
        size_t read_size = end - start;
2,235✔
1582
        size_t smallest = min(body_buffer_.size(), read_size);
1583

1584
        request_data_.http_request_parser_->get().body().data = body_buffer_.data();
2,235✔
1585
        request_data_.http_request_parser_->get().body().size = smallest;
2,235✔
1586
        request_data_.last_buffer_size_ = smallest;
2,235✔
1587

1588
        auto &cancelled = cancelled_;
1589
        auto &request_data = request_data_;
2,235✔
1590

1591
        http::async_read_some(
2,235✔
1592
                socket_,
2,235✔
1593
                *request_data_.request_buffer_,
1594
                *request_data_.http_request_parser_,
1595
                [this, cancelled, request_data](const error_code &ec, size_t num_read) {
6,705✔
1596
                        if (!*cancelled) {
2,235✔
1597
                                ReadBodyHandler(ec, num_read);
2,235✔
1598
                        }
1599
                });
2,235✔
1600
}
1601

1602
void Stream::ReadBodyHandler(error_code ec, size_t num_read) {
2,235✔
1603
        if (num_read > 0) {
2,235✔
1604
                logger_.Trace("Read " + to_string(num_read) + " bytes of body data from stream.");
4,462✔
1605
        }
1606

1607
        if (ec == http::make_error_code(http::error::need_buffer)) {
2,235✔
1608
                // This can be ignored. We always reset the buffer between reads anyway.
1609
                ec = error_code();
979✔
1610
        }
1611

1612
        assert(reader_handler_);
1613

1614
        if (request_data_.http_request_parser_->is_done()) {
2,235✔
1615
                status_ = TransactionStatus::BodyReadingFinished;
37✔
1616
        }
1617

1618
        auto cancelled = cancelled_;
1619

1620
        if (ec) {
2,235✔
1621
                auto err = error::Error(ec.default_error_condition(), "Could not read body");
8✔
1622
                reader_handler_(expected::unexpected(err));
12✔
1623
                if (!*cancelled) {
4✔
1624
                        CallErrorHandler(ec, request_, server_.body_handler_);
4✔
1625
                }
1626
                return;
1627
        }
1628

1629
        // The num_read from above includes out of band payload data, such as chunk headers, which
1630
        // we are not interested in. So we need to calculate the payload size from the remaining
1631
        // buffer space.
1632
        size_t payload_read =
1633
                request_data_.last_buffer_size_ - request_data_.http_request_parser_->get().body().size;
2,231✔
1634

1635
        size_t buf_size = reader_buf_end_ - reader_buf_start_;
2,231✔
1636
        size_t smallest = min(payload_read, buf_size);
1637

1638
        if (smallest == 0) {
2,231✔
1639
                // We read nothing, which can happen if all we read was a chunk header. We cannot
1640
                // return 0 to the handler however, because in `io::Reader` context this means
1641
                // EOF. So just repeat the request instead, until we get actual payload data.
1642
                AsyncReadNextBodyPart(reader_buf_start_, reader_buf_end_, reader_handler_);
154✔
1643
        } else {
1644
                copy_n(body_buffer_.begin(), smallest, reader_buf_start_);
2,154✔
1645
                reader_handler_(smallest);
4,308✔
1646
        }
1647
}
1648

1649
void Stream::AsyncReply(ReplyFinishedHandler reply_finished_handler) {
262✔
1650
        SetupResponse();
262✔
1651

1652
        reply_finished_handler_ = reply_finished_handler;
262✔
1653

1654
        auto &cancelled = cancelled_;
1655
        auto &response_data = response_data_;
262✔
1656

1657
        http::async_write_header(
262✔
1658
                socket_,
262✔
1659
                *response_data_.http_response_serializer_,
1660
                [this, cancelled, response_data](const error_code &ec, size_t num_written) {
786✔
1661
                        if (!*cancelled) {
262✔
1662
                                WriteHeaderHandler(ec, num_written);
261✔
1663
                        }
1664
                });
262✔
1665
}
262✔
1666

1667
void Stream::SetupResponse() {
271✔
1668
        auto response = maybe_response_.lock();
271✔
1669
        // Only called from existing responses, so this should always be true.
1670
        assert(response);
1671

1672
        assert(status_ == TransactionStatus::BodyHandlerCalled);
1673
        status_ = TransactionStatus::Replying;
271✔
1674

1675
        // From here on we take shared ownership.
1676
        response_ = response;
1677

1678
        response_data_.http_response_ = make_shared<http::response<http::buffer_body>>();
542✔
1679

1680
        for (const auto &header : response->headers_) {
607✔
1681
                response_data_.http_response_->base().set(header.first, header.second);
336✔
1682
        }
1683

1684
        response_data_.http_response_->result(response->GetStatusCode());
271✔
1685
        response_data_.http_response_->reason(response->GetStatusMessage());
542✔
1686

1687
        response_data_.http_response_serializer_ =
1688
                make_shared<http::response_serializer<http::buffer_body>>(*response_data_.http_response_);
542✔
1689
}
271✔
1690

1691
void Stream::WriteHeaderHandler(const error_code &ec, size_t num_written) {
261✔
1692
        if (num_written > 0) {
261✔
1693
                logger_.Trace("Wrote " + to_string(num_written) + " bytes of header data to stream.");
522✔
1694
        }
1695

1696
        if (ec) {
261✔
1697
                CallErrorHandler(ec, request_, reply_finished_handler_);
×
1698
                return;
38✔
1699
        }
1700

1701
        auto exp_has_body =
1702
                HasBody(response_->GetHeader("Content-Length"), response_->GetHeader("Transfer-Encoding"));
783✔
1703
        if (!exp_has_body) {
261✔
1704
                CallErrorHandler(exp_has_body.error(), request_, reply_finished_handler_);
×
1705
                return;
×
1706
        }
1707
        if (!exp_has_body.value()) {
261✔
1708
                FinishReply();
37✔
1709
                return;
1710
        }
1711

1712
        if (!response_->body_reader_ && !response_->async_body_reader_) {
224✔
1713
                auto err = MakeError(BodyMissingError, "No body reader");
1✔
1714
                CallErrorHandler(err, request_, reply_finished_handler_);
3✔
1715
                return;
1716
        }
1717

1718
        PrepareAndWriteNewBodyBuffer();
223✔
1719
}
1720

1721
void Stream::PrepareAndWriteNewBodyBuffer() {
2,541✔
1722
        // response_->body_reader_ XOR response_->async_body_reader_
1723
        assert(
1724
                (response_->body_reader_ || response_->async_body_reader_)
1725
                && !(response_->body_reader_ && response_->async_body_reader_));
1726

1727
        auto read_handler = [this](io::ExpectedSize read) {
2,541✔
1728
                if (!read) {
2,541✔
1729
                        CallErrorHandler(read.error(), request_, reply_finished_handler_);
2✔
1730
                        return;
1✔
1731
                }
1732
                WriteNewBodyBuffer(read.value());
2,540✔
1733
        };
2,541✔
1734

1735
        if (response_->body_reader_) {
2,541✔
1736
                read_handler(response_->body_reader_->Read(body_buffer_.begin(), body_buffer_.end()));
4,534✔
1737
        } else {
1738
                auto err = response_->async_body_reader_->AsyncRead(
274✔
1739
                        body_buffer_.begin(), body_buffer_.end(), read_handler);
274✔
1740
                if (err != error::NoError) {
274✔
1741
                        CallErrorHandler(err, request_, reply_finished_handler_);
×
1742
                }
1743
        }
1744
}
2,541✔
1745

1746
void Stream::WriteNewBodyBuffer(size_t size) {
2,540✔
1747
        response_data_.http_response_->body().data = body_buffer_.data();
2,540✔
1748
        response_data_.http_response_->body().size = size;
2,540✔
1749

1750
        if (size > 0) {
2,540✔
1751
                response_data_.http_response_->body().more = true;
2,366✔
1752
        } else {
1753
                response_data_.http_response_->body().more = false;
174✔
1754
        }
1755

1756
        WriteBody();
2,540✔
1757
}
2,540✔
1758

1759
void Stream::WriteBody() {
4,878✔
1760
        auto &cancelled = cancelled_;
1761
        auto &response_data = response_data_;
4,878✔
1762

1763
        http::async_write_some(
1764
                socket_,
4,878✔
1765
                *response_data_.http_response_serializer_,
1766
                [this, cancelled, response_data](const error_code &ec, size_t num_written) {
14,588✔
1767
                        if (!*cancelled) {
4,832✔
1768
                                WriteBodyHandler(ec, num_written);
4,822✔
1769
                        }
1770
                });
4,832✔
1771
}
4,878✔
1772

1773
void Stream::WriteBodyHandler(const error_code &ec, size_t num_written) {
4,822✔
1774
        if (num_written > 0) {
4,822✔
1775
                logger_.Trace("Wrote " + to_string(num_written) + " bytes of body data to stream.");
4,676✔
1776
        }
1777

1778
        if (ec == http::make_error_code(http::error::need_buffer)) {
4,822✔
1779
                // Write next body block.
1780
                PrepareAndWriteNewBodyBuffer();
2,318✔
1781
        } else if (ec) {
2,504✔
1782
                CallErrorHandler(ec, request_, reply_finished_handler_);
12✔
1783
        } else if (num_written > 0) {
2,500✔
1784
                // We are still writing the body.
1785
                WriteBody();
2,338✔
1786
        } else {
1787
                // We are finished.
1788
                FinishReply();
162✔
1789
        }
1790
}
4,822✔
1791

1792
void Stream::FinishReply() {
199✔
1793
        // We are done.
1794
        status_ = TransactionStatus::Done;
199✔
1795
        DoCancel();
199✔
1796
        // Release ownership of Body reader.
1797
        response_->body_reader_.reset();
199✔
1798
        response_->async_body_reader_.reset();
199✔
1799
        reply_finished_handler_(error::NoError);
199✔
1800
        server_.RemoveStream(shared_from_this());
199✔
1801
}
199✔
1802

1803
error::Error Stream::AsyncSwitchProtocol(SwitchProtocolHandler handler) {
9✔
1804
        SetupResponse();
9✔
1805

1806
        switch_protocol_handler_ = handler;
9✔
1807
        status_ = TransactionStatus::SwitchingProtocol;
9✔
1808

1809
        auto &cancelled = cancelled_;
1810
        auto &response_data = response_data_;
9✔
1811

1812
        http::async_write_header(
9✔
1813
                socket_,
9✔
1814
                *response_data_.http_response_serializer_,
1815
                [this, cancelled, response_data](const error_code &ec, size_t num_written) {
27✔
1816
                        if (!*cancelled) {
9✔
1817
                                SwitchingProtocolHandler(ec, num_written);
8✔
1818
                        }
1819
                });
9✔
1820

1821
        return error::NoError;
9✔
1822
}
1823

1824
void Stream::SwitchingProtocolHandler(error_code ec, size_t num_written) {
8✔
1825
        if (num_written > 0) {
8✔
1826
                logger_.Trace("Wrote " + to_string(num_written) + " bytes of header data to stream.");
16✔
1827
        }
1828

1829
        if (ec) {
8✔
1830
                CallErrorHandler(ec, request_, switch_protocol_handler_);
×
1831
                return;
×
1832
        }
1833

1834
        auto socket = make_shared<RawSocket<tcp::socket>>(
1835
                make_shared<tcp::socket>(std::move(socket_)), request_data_.request_buffer_);
8✔
1836

1837
        auto switch_protocol_handler = switch_protocol_handler_;
8✔
1838

1839
        // Rest of the connection is done directly on the socket, set cancelled_ but don't close it.
1840
        *cancelled_ = true;
8✔
1841
        cancelled_ = make_shared<bool>(true);
8✔
1842
        server_.RemoveStream(shared_from_this());
16✔
1843

1844
        switch_protocol_handler(socket);
16✔
1845
}
1846

1847
void Stream::CallBodyHandler() {
277✔
1848
        // Get a pointer to ourselves. This is just in case the body handler make a response, which
1849
        // it immediately destroys, which would destroy this stream as well. At the end of this
1850
        // function, it's ok to destroy it.
1851
        auto stream_ref = shared_from_this();
1852

1853
        server_.body_handler_(request_, error::NoError);
831✔
1854

1855
        // MakeResponse() should have been called inside body handler. It can use this to generate a
1856
        // response, either immediately, or later. Therefore it should still exist, otherwise the
1857
        // request has not been handled correctly.
1858
        auto response = maybe_response_.lock();
277✔
1859
        if (!response) {
277✔
1860
                logger_.Error("Handler produced no response. Closing stream prematurely.");
6✔
1861
                *cancelled_ = true;
3✔
1862
                cancelled_ = make_shared<bool>(true);
3✔
1863
                server_.RemoveStream(shared_from_this());
9✔
1864
        }
1865
}
277✔
1866

1867
Server::Server(const ServerConfig &server, events::EventLoop &event_loop) :
504✔
1868
        event_loop_ {event_loop},
252✔
1869
        acceptor_(GetAsioIoContext(event_loop_)) {
252✔
1870
}
504✔
1871

1872
Server::~Server() {
515✔
1873
        Cancel();
252✔
1874
}
515✔
1875

1876
error::Error Server::AsyncServeUrl(
263✔
1877
        const string &url, RequestHandler header_handler, RequestHandler body_handler) {
1878
        return AsyncServeUrl(
526✔
1879
                url, header_handler, [body_handler](IncomingRequestPtr req, error::Error err) {
1,311✔
1880
                        if (err != error::NoError) {
272✔
1881
                                body_handler(expected::unexpected(err));
12✔
1882
                        } else {
1883
                                body_handler(req);
532✔
1884
                        }
1885
                });
798✔
1886
}
1887

1888
error::Error Server::AsyncServeUrl(
278✔
1889
        const string &url, RequestHandler header_handler, IdentifiedRequestHandler body_handler) {
1890
        auto err = BreakDownUrl(url, address_);
278✔
1891
        if (error::NoError != err) {
278✔
1892
                return MakeError(InvalidUrlError, "Could not parse URL " + url + ": " + err.String());
×
1893
        }
1894

1895
        if (address_.protocol != "http") {
278✔
1896
                return error::Error(make_error_condition(errc::protocol_not_supported), address_.protocol);
×
1897
        }
1898

1899
        if (address_.path.size() > 0 && address_.path != "/") {
278✔
1900
                return MakeError(InvalidUrlError, "URLs with paths are not supported when listening.");
2✔
1901
        }
1902

1903
        boost::system::error_code ec;
277✔
1904
        auto address = asio::ip::make_address(address_.host, ec);
277✔
1905
        if (ec) {
277✔
1906
                return error::Error(
1907
                        ec.default_error_condition(),
×
1908
                        "Could not construct endpoint from address " + address_.host);
×
1909
        }
1910

1911
        asio::ip::tcp::endpoint endpoint(address, address_.port);
277✔
1912

1913
        ec.clear();
1914
        acceptor_.open(endpoint.protocol(), ec);
277✔
1915
        if (ec) {
277✔
1916
                return error::Error(ec.default_error_condition(), "Could not open acceptor");
18✔
1917
        }
1918

1919
        // Allow address reuse, otherwise we can't re-bind later.
1920
        ec.clear();
1921
        acceptor_.set_option(asio::socket_base::reuse_address(true), ec);
268✔
1922
        if (ec) {
268✔
1923
                return error::Error(ec.default_error_condition(), "Could not set socket options");
×
1924
        }
1925

1926
        ec.clear();
1927
        acceptor_.bind(endpoint, ec);
268✔
1928
        if (ec) {
268✔
1929
                return error::Error(ec.default_error_condition(), "Could not bind socket");
×
1930
        }
1931

1932
        ec.clear();
1933
        acceptor_.listen(asio::socket_base::max_listen_connections, ec);
268✔
1934
        if (ec) {
268✔
1935
                return error::Error(ec.default_error_condition(), "Could not start listening");
×
1936
        }
1937

1938
        header_handler_ = header_handler;
268✔
1939
        body_handler_ = body_handler;
268✔
1940

1941
        PrepareNewStream();
268✔
1942

1943
        return error::NoError;
268✔
1944
}
1945

1946
void Server::Cancel() {
323✔
1947
        if (acceptor_.is_open()) {
323✔
1948
                acceptor_.cancel();
268✔
1949
                acceptor_.close();
268✔
1950
        }
1951
        streams_.clear();
1952
}
323✔
1953

1954
uint16_t Server::GetPort() const {
17✔
1955
        return acceptor_.local_endpoint().port();
17✔
1956
}
1957

1958
string Server::GetUrl() const {
16✔
1959
        return "http://127.0.0.1:" + to_string(GetPort());
32✔
1960
}
1961

1962
ExpectedOutgoingResponsePtr Server::MakeResponse(IncomingRequestPtr req) {
276✔
1963
        if (*req->cancelled_) {
276✔
1964
                return expected::unexpected(MakeError(StreamCancelledError, "Cannot make response"));
×
1965
        }
1966
        OutgoingResponsePtr response {new OutgoingResponse(req->stream_, req->cancelled_)};
828✔
1967
        req->stream_.maybe_response_ = response;
276✔
1968
        return response;
276✔
1969
}
1970

1971
error::Error Server::AsyncReply(
262✔
1972
        OutgoingResponsePtr resp, ReplyFinishedHandler reply_finished_handler) {
1973
        if (*resp->cancelled_) {
262✔
1974
                return MakeError(StreamCancelledError, "Cannot send response");
×
1975
        }
1976

1977
        resp->stream_.AsyncReply(reply_finished_handler);
262✔
1978
        return error::NoError;
262✔
1979
}
1980

1981
io::ExpectedAsyncReaderPtr Server::MakeBodyAsyncReader(IncomingRequestPtr req) {
62✔
1982
        if (*req->cancelled_) {
62✔
1983
                return expected::unexpected(MakeError(StreamCancelledError, "Cannot make body reader"));
×
1984
        }
1985

1986
        auto &stream = req->stream_;
62✔
1987
        if (stream.status_ != TransactionStatus::HeaderHandlerCalled) {
62✔
1988
                return expected::unexpected(error::Error(
1✔
1989
                        make_error_condition(errc::operation_in_progress),
2✔
1990
                        "MakeBodyAsyncReader called while reading is in progress"));
3✔
1991
        }
1992

1993
        if (GetContentLength(*stream.request_data_.http_request_parser_) == 0
61✔
1994
                && !stream.request_data_.http_request_parser_->chunked()) {
61✔
1995
                return expected::unexpected(MakeError(BodyMissingError, "Request does not contain a body"));
54✔
1996
        }
1997

1998
        stream.status_ = TransactionStatus::ReaderCreated;
43✔
1999
        return make_shared<BodyAsyncReader<Stream>>(stream, req->cancelled_);
86✔
2000
}
2001

2002
error::Error Server::AsyncSwitchProtocol(OutgoingResponsePtr resp, SwitchProtocolHandler handler) {
9✔
2003
        return resp->stream_.AsyncSwitchProtocol(handler);
18✔
2004
}
2005

2006
void Server::PrepareNewStream() {
553✔
2007
        StreamPtr new_stream {new Stream(*this)};
553✔
2008
        streams_.insert(new_stream);
2009
        AsyncAccept(new_stream);
1,106✔
2010
}
553✔
2011

2012
void Server::AsyncAccept(StreamPtr stream) {
553✔
2013
        acceptor_.async_accept(stream->socket_, [this, stream](const error_code &ec) {
882✔
2014
                if (ec) {
329✔
2015
                        if (ec != errc::operation_canceled) {
44✔
2016
                                log::Error("Could not accept connection: " + ec.message());
×
2017
                        }
2018
                        return;
44✔
2019
                }
2020

2021
                stream->AcceptHandler(ec);
285✔
2022

2023
                this->PrepareNewStream();
285✔
2024
        });
2025
}
553✔
2026

2027
void Server::RemoveStream(StreamPtr stream) {
231✔
2028
        streams_.erase(stream);
231✔
2029

2030
        stream->DoCancel();
231✔
2031
}
231✔
2032

2033
} // namespace http
2034
} // namespace common
2035
} // namespace mender
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