Coverage Report

Created: 2026-07-29 23:27

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/tmp/bitcoin/src/torcontrol.cpp
Line
Count
Source
1
// Copyright (c) 2015-present The Bitcoin Core developers
2
// Copyright (c) 2017 The Zcash developers
3
// Distributed under the MIT software license, see the accompanying
4
// file COPYING or http://www.opensource.org/licenses/mit-license.php.
5
6
#include <torcontrol.h>
7
8
#include <chainparams.h>
9
#include <chainparamsbase.h>
10
#include <common/args.h>
11
#include <compat/compat.h>
12
#include <crypto/hmac_sha256.h>
13
#include <net.h>
14
#include <netaddress.h>
15
#include <netbase.h>
16
#include <random.h>
17
#include <tinyformat.h>
18
#include <util/check.h>
19
#include <util/fs.h>
20
#include <util/log.h>
21
#include <util/readwritefile.h>
22
#include <util/strencodings.h>
23
#include <util/string.h>
24
#include <util/thread.h>
25
#include <util/time.h>
26
27
#include <algorithm>
28
#include <cassert>
29
#include <chrono>
30
#include <cstdint>
31
#include <cstdlib>
32
#include <deque>
33
#include <functional>
34
#include <map>
35
#include <optional>
36
#include <set>
37
#include <thread>
38
#include <utility>
39
#include <vector>
40
41
using util::ReplaceAll;
42
using util::SplitString;
43
using util::ToString;
44
45
/** Default control ip and port */
46
const std::string DEFAULT_TOR_CONTROL = "127.0.0.1:" + ToString(DEFAULT_TOR_CONTROL_PORT);
47
/** Tor cookie size (from control-spec.txt) */
48
constexpr int TOR_COOKIE_SIZE = 32;
49
/** Size of client/server nonce for SAFECOOKIE */
50
constexpr int TOR_NONCE_SIZE = 32;
51
/** For computing server_hash in SAFECOOKIE */
52
static const std::string TOR_SAFE_SERVERKEY = "Tor safe cookie authentication server-to-controller hash";
53
/** For computing clientHash in SAFECOOKIE */
54
static const std::string TOR_SAFE_CLIENTKEY = "Tor safe cookie authentication controller-to-server hash";
55
/** Exponential backoff configuration - initial timeout in seconds */
56
constexpr std::chrono::duration<double> RECONNECT_TIMEOUT_START{1.0};
57
/** Exponential backoff configuration - growth factor */
58
constexpr double RECONNECT_TIMEOUT_EXP = 1.5;
59
/** Maximum reconnect timeout in seconds to prevent excessive delays */
60
constexpr std::chrono::duration<double> RECONNECT_TIMEOUT_MAX{600.0};
61
/** Maximum length for lines received on TorControlConnection.
62
 * tor-control-spec.txt mentions that there is explicitly no limit defined to line length,
63
 * this is belt-and-suspenders sanity limit to prevent memory exhaustion.
64
 */
65
constexpr int MAX_LINE_LENGTH = 100000;
66
/** Maximum number of lines received on TorControlConnection per reply to avoid
67
 * memory exhaustion. The largest expected now is 5 (PROTOCOLINFO), but future
68
 * changes to this file might need to re-evaluate MAX_LINE_COUNT.
69
 */
70
constexpr int MAX_LINE_COUNT = 1000;
71
/** Timeout for socket operations */
72
constexpr auto SOCKET_SEND_TIMEOUT = 10s;
73
74
/****** Low-level TorControlConnection ********/
75
76
TorControlConnection::TorControlConnection(CThreadInterrupt& interrupt)
77
8
    : m_interrupt(interrupt)
78
8
{
79
8
}
80
81
TorControlConnection::~TorControlConnection()
82
8
{
83
8
    Disconnect();
84
8
}
85
86
bool TorControlConnection::Connect(const std::string& tor_control_center)
87
14
{
88
14
    if (m_sock) {
89
0
        Disconnect();
90
0
    }
91
92
14
    std::optional<CService> control_service = Lookup(tor_control_center, DEFAULT_TOR_CONTROL_PORT, fNameLookup);
93
14
    if (!control_service.has_value()) {
94
0
        LogWarning("tor: Failed to look up control center %s", tor_control_center);
95
0
        return false;
96
0
    }
97
98
14
    m_sock = ConnectDirectly(control_service.value(), /*manual_connection=*/true);
99
14
    if (!m_sock) {
100
7
        LogWarning("tor: Error connecting to address %s", tor_control_center);
101
7
        return false;
102
7
    }
103
104
7
    m_recv_buffer.clear();
105
7
    m_message.Clear();
106
7
    m_reply_handlers.clear();
107
108
7
    LogDebug(BCLog::TOR, "Successfully connected to Tor control port");
109
7
    return true;
110
14
}
111
112
void TorControlConnection::Disconnect()
113
15
{
114
15
    m_sock.reset();
115
15
    m_recv_buffer.clear();
116
15
    m_message.Clear();
117
15
    m_reply_handlers.clear();
118
15
}
119
120
bool TorControlConnection::IsConnected() const
121
255
{
122
255
    if (!m_sock) return false;
123
241
    std::string errmsg;
124
241
    const bool connected{m_sock->IsConnected(errmsg)};
125
241
    if (!connected && !errmsg.empty()) {
126
1
        LogDebug(BCLog::TOR, "Connection check failed: %s", errmsg);
127
1
    }
128
241
    return connected;
129
255
}
130
131
bool TorControlConnection::WaitForData(std::chrono::milliseconds timeout)
132
242
{
133
242
    if (!m_sock) return false;
134
135
242
    Sock::Event event{0};
136
242
    if (!m_sock->Wait(timeout, Sock::RecvEvent, &event)) {
137
0
        return false;
138
0
    }
139
242
    if (event & Sock::ErrorEvent) {
140
0
        LogDebug(BCLog::TOR, "Socket error detected");
141
0
        Disconnect();
142
0
        return false;
143
0
    }
144
145
242
    return (event & Sock::RecvEvent);
146
242
}
147
148
bool TorControlConnection::ReceiveAndProcess()
149
236
{
150
236
    if (!m_sock) return false;
151
152
236
    char buf[4096];
153
236
    ssize_t nread = m_sock->Recv(buf, sizeof(buf), MSG_DONTWAIT);
154
155
236
    if (nread < 0) {
156
0
        int err = WSAGetLastError();
157
0
        if (err == WSAEWOULDBLOCK || err == WSAEINTR || err == WSAEINPROGRESS) {
158
            // No data available currently
159
0
            return true;
160
0
        }
161
0
        LogWarning("tor: Error reading from socket: %s", NetworkErrorString(err));
162
0
        return false;
163
0
    }
164
165
236
    if (nread == 0) {
166
4
        LogDebug(BCLog::TOR, "End of stream");
167
4
        return false;
168
4
    }
169
170
232
    m_recv_buffer.insert(m_recv_buffer.end(), buf, buf + nread);
171
232
    try {
172
232
        return ProcessBuffer();
173
232
    } catch (const std::runtime_error& e) {
174
2
        LogWarning("tor: Error processing receive buffer: %s", e.what());
175
2
        return false;
176
2
    }
177
232
}
178
179
bool TorControlConnection::ProcessBuffer()
180
232
{
181
232
    util::LineReader reader(m_recv_buffer, MAX_LINE_LENGTH);
182
183
2.25k
    while (auto line = reader.ReadLine()) {
184
2.02k
        if (m_message.lines.size() == MAX_LINE_COUNT) {
185
1
            throw std::runtime_error(strprintf("Control port reply exceeded %d lines, disconnecting", MAX_LINE_COUNT));
186
1
        }
187
        // Skip short lines
188
2.02k
        if (line->size() < 4) continue;
189
190
        // Parse: <code><separator><data>
191
        // <status>(-|+| )<data>
192
2.02k
        m_message.code = ToIntegral<int>(line->substr(0, 3)).value_or(0);
193
2.02k
        m_message.lines.emplace_back(line->substr(4));
194
2.02k
        char separator = (*line)[3]; // '-', '+', or ' '
195
196
2.02k
        if (separator == ' ') {
197
11
            if (m_message.code >= 600) {
198
                // Async notifications are currently unused
199
                // Synchronous and asynchronous messages are never interleaved
200
0
                LogDebug(BCLog::TOR, "Received async notification %i", m_message.code);
201
11
            } else if (!m_reply_handlers.empty()) {
202
                // Invoke reply handler with message
203
11
                m_reply_handlers.front()(*this, m_message);
204
11
                m_reply_handlers.pop_front();
205
11
            } else {
206
0
                LogDebug(BCLog::TOR, "Received unexpected sync reply %i", m_message.code);
207
0
            }
208
11
            m_message.Clear();
209
11
        }
210
2.02k
    }
211
212
231
    m_recv_buffer.erase(m_recv_buffer.begin(), m_recv_buffer.begin() + reader.Consumed());
213
231
    return true;
214
232
}
215
216
bool TorControlConnection::Command(const std::string &cmd, const ReplyHandlerCB& reply_handler)
217
15
{
218
15
    if (!m_sock) return false;
219
220
15
    std::string command = cmd + "\r\n";
221
15
    try {
222
15
        m_sock->SendComplete(std::span<const char>{command}, SOCKET_SEND_TIMEOUT, m_interrupt);
223
15
    } catch (const std::runtime_error& e) {
224
0
        LogWarning("tor: Error sending command: %s", e.what());
225
0
        return false;
226
0
    }
227
228
15
    m_reply_handlers.push_back(reply_handler);
229
15
    return true;
230
15
}
231
232
/****** General parsing utilities ********/
233
234
/* Split reply line in the form 'AUTH METHODS=...' into a type
235
 * 'AUTH' and arguments 'METHODS=...'.
236
 * Grammar is implicitly defined in https://spec.torproject.org/control-spec by
237
 * the server reply formats for PROTOCOLINFO (S3.21) and AUTHCHALLENGE (S3.24).
238
 */
239
std::pair<std::string,std::string> SplitTorReplyLine(const std::string &s)
240
1.02k
{
241
1.02k
    size_t ptr=0;
242
1.02k
    std::string type;
243
11.1k
    while (ptr < s.size() && s[ptr] != ' ') {
244
10.1k
        type.push_back(s[ptr]);
245
10.1k
        ++ptr;
246
10.1k
    }
247
1.02k
    if (ptr < s.size())
248
17
        ++ptr; // skip ' '
249
1.02k
    return make_pair(type, s.substr(ptr));
250
1.02k
}
251
252
/** Parse reply arguments in the form 'METHODS=COOKIE,SAFECOOKIE COOKIEFILE=".../control_auth_cookie"'.
253
 * Returns a map of keys to values, or an empty map if there was an error.
254
 * Grammar is implicitly defined in https://spec.torproject.org/control-spec by
255
 * the server reply formats for PROTOCOLINFO (S3.21), AUTHCHALLENGE (S3.24),
256
 * and ADD_ONION (S3.27). See also sections 2.1 and 2.3.
257
 */
258
std::map<std::string,std::string> ParseTorReplyMapping(const std::string &s)
259
36
{
260
36
    std::map<std::string,std::string> mapping;
261
36
    size_t ptr=0;
262
74
    while (ptr < s.size()) {
263
47
        std::string key, value;
264
304
        while (ptr < s.size() && s[ptr] != '=' && s[ptr] != ' ') {
265
257
            key.push_back(s[ptr]);
266
257
            ++ptr;
267
257
        }
268
47
        if (ptr == s.size()) // unexpected end of line
269
3
            return std::map<std::string,std::string>();
270
44
        if (s[ptr] == ' ') // The remaining string is an OptArguments
271
5
            break;
272
39
        ++ptr; // skip '='
273
39
        if (ptr < s.size() && s[ptr] == '"') { // Quoted string
274
20
            ++ptr; // skip opening '"'
275
20
            bool escape_next = false;
276
240
            while (ptr < s.size() && (escape_next || s[ptr] != '"')) {
277
                // Repeated backslashes must be interpreted as pairs
278
220
                escape_next = (s[ptr] == '\\' && !escape_next);
279
220
                value.push_back(s[ptr]);
280
220
                ++ptr;
281
220
            }
282
20
            if (ptr == s.size()) // unexpected end of line
283
1
                return std::map<std::string,std::string>();
284
19
            ++ptr; // skip closing '"'
285
            /**
286
             * Unescape value. Per https://spec.torproject.org/control-spec section 2.1.1:
287
             *
288
             *   For future-proofing, controller implementers MAY use the following
289
             *   rules to be compatible with buggy Tor implementations and with
290
             *   future ones that implement the spec as intended:
291
             *
292
             *     Read \n \t \r and \0 ... \377 as C escapes.
293
             *     Treat a backslash followed by any other character as that character.
294
             */
295
19
            std::string escaped_value;
296
199
            for (size_t i = 0; i < value.size(); ++i) {
297
180
                if (value[i] == '\\') {
298
                    // This will always be valid, because if the QuotedString
299
                    // ended in an odd number of backslashes, then the parser
300
                    // would already have returned above, due to a missing
301
                    // terminating double-quote.
302
23
                    ++i;
303
23
                    if (value[i] == 'n') {
304
1
                        escaped_value.push_back('\n');
305
22
                    } else if (value[i] == 't') {
306
1
                        escaped_value.push_back('\t');
307
21
                    } else if (value[i] == 'r') {
308
1
                        escaped_value.push_back('\r');
309
20
                    } else if ('0' <= value[i] && value[i] <= '7') {
310
11
                        size_t j;
311
                        // Octal escape sequences have a limit of three octal digits,
312
                        // but terminate at the first character that is not a valid
313
                        // octal digit if encountered sooner.
314
21
                        for (j = 1; j < 3 && (i+j) < value.size() && '0' <= value[i+j] && value[i+j] <= '7'; ++j) {}
315
                        // Tor restricts first digit to 0-3 for three-digit octals.
316
                        // A leading digit of 4-7 would therefore be interpreted as
317
                        // a two-digit octal.
318
11
                        if (j == 3 && value[i] > '3') {
319
1
                            j--;
320
1
                        }
321
11
                        const auto end{i + j};
322
11
                        uint8_t val{0};
323
31
                        while (i < end) {
324
20
                            val *= 8;
325
20
                            val += value[i++] - '0';
326
20
                        }
327
11
                        escaped_value.push_back(char(val));
328
                        // Account for automatic incrementing at loop end
329
11
                        --i;
330
11
                    } else {
331
9
                        escaped_value.push_back(value[i]);
332
9
                    }
333
157
                } else {
334
157
                    escaped_value.push_back(value[i]);
335
157
                }
336
180
            }
337
19
            value = escaped_value;
338
19
        } else { // Unquoted value. Note that values can contain '=' at will, just no spaces
339
267
            while (ptr < s.size() && s[ptr] != ' ') {
340
248
                value.push_back(s[ptr]);
341
248
                ++ptr;
342
248
            }
343
19
        }
344
38
        if (ptr < s.size() && s[ptr] == ' ')
345
11
            ++ptr; // skip ' ' after key=value
346
38
        mapping[key] = value;
347
38
    }
348
32
    return mapping;
349
36
}
350
351
TorController::TorController(const std::string& tor_control_center, const CService& target)
352
8
    : m_tor_control_center(tor_control_center),
353
8
      m_conn(m_interrupt),
354
8
      m_reconnect(true),
355
8
      m_reconnect_timeout(RECONNECT_TIMEOUT_START),
356
8
      m_target(target)
357
8
{
358
    // Read service private key if cached
359
8
    std::pair<bool,std::string> pkf = ReadBinaryFile(GetPrivateKeyFile());
360
8
    if (pkf.first) {
361
4
        LogDebug(BCLog::TOR, "Reading cached private key from %s", fs::PathToString(GetPrivateKeyFile()));
362
4
        m_private_key = pkf.second;
363
4
    }
364
8
    m_thread = std::thread(&util::TraceThread, "torcontrol", [this] { ThreadControl(); });
365
8
}
366
367
TorController::~TorController()
368
8
{
369
8
    Interrupt();
370
8
    Join();
371
8
    if (m_service.IsValid()) {
372
0
        RemoveLocal(m_service);
373
0
    }
374
8
}
375
376
void TorController::Interrupt()
377
16
{
378
16
    m_reconnect = false;
379
16
    m_interrupt();
380
16
}
381
382
void TorController::Join()
383
16
{
384
16
    if (m_thread.joinable()) {
385
8
        m_thread.join();
386
8
    }
387
16
}
388
389
void TorController::ThreadControl()
390
8
{
391
8
    LogDebug(BCLog::TOR, "Entering Tor control thread");
392
393
250
    while (!m_interrupt) {
394
        // Try to connect if not connected already
395
249
        if (!m_conn.IsConnected()) {
396
14
            LogDebug(BCLog::TOR, "Attempting to connect to Tor control port %s", m_tor_control_center);
397
398
14
            if (!m_conn.Connect(m_tor_control_center)) {
399
7
                LogWarning("tor: Initiating connection to Tor control port %s failed", m_tor_control_center);
400
7
                if (!m_reconnect) {
401
0
                    break;
402
0
                }
403
                // Wait before retrying with exponential backoff
404
7
                LogDebug(BCLog::TOR, "Retrying in %.1f seconds", m_reconnect_timeout.count());
405
7
                if (!m_interrupt.sleep_for(std::chrono::duration_cast<std::chrono::milliseconds>(m_reconnect_timeout))) {
406
7
                    break;
407
7
                }
408
0
                m_reconnect_timeout = std::min(m_reconnect_timeout * RECONNECT_TIMEOUT_EXP, RECONNECT_TIMEOUT_MAX);
409
0
                continue;
410
7
            }
411
            // Successfully connected, reset timeout and trigger connected callback
412
7
            m_reconnect_timeout = RECONNECT_TIMEOUT_START;
413
7
            connected_cb(m_conn);
414
7
        }
415
        // Wait for data with a timeout
416
242
        if (!m_conn.WaitForData(std::chrono::seconds(1))) {
417
            // Check if still connected
418
6
            if (!m_conn.IsConnected()) {
419
1
                LogDebug(BCLog::TOR, "Lost connection to Tor control port");
420
1
                disconnected_cb(m_conn);
421
1
                continue;
422
1
            }
423
            // Just a timeout, continue waiting
424
5
            continue;
425
6
        }
426
        // Process incoming data
427
236
        if (!m_conn.ReceiveAndProcess()) {
428
6
            disconnected_cb(m_conn);
429
6
        }
430
236
    }
431
8
    LogDebug(BCLog::TOR, "Exited Tor control thread");
432
8
}
433
434
void TorController::get_socks_cb(TorControlConnection& _conn, const TorControlReply& reply)
435
2
{
436
    // NOTE: We can only get here if -onion is unset
437
2
    std::string socks_location;
438
2
    if (reply.code == TOR_REPLY_OK) {
439
4
        for (const auto& line : reply.lines) {
440
4
            if (line.starts_with("net/listeners/socks=")) {
441
2
                const std::string port_list_str = line.substr(20);
442
2
                std::vector<std::string> port_list = SplitString(port_list_str, ' ');
443
444
2
                for (auto& portstr : port_list) {
445
2
                    if (portstr.empty()) continue;
446
2
                    if ((portstr[0] == '"' || portstr[0] == '\'') && portstr.size() >= 2 && (*portstr.rbegin() == portstr[0])) {
447
2
                        portstr = portstr.substr(1, portstr.size() - 2);
448
2
                        if (portstr.empty()) continue;
449
2
                    }
450
2
                    socks_location = portstr;
451
2
                    if (portstr.starts_with("127.0.0.1:")) {
452
                        // Prefer localhost - ignore other ports
453
2
                        break;
454
2
                    }
455
2
                }
456
2
            }
457
4
        }
458
2
        if (!socks_location.empty()) {
459
2
            LogDebug(BCLog::TOR, "Get SOCKS port command yielded %s", socks_location);
460
2
        } else {
461
0
            LogWarning("tor: Get SOCKS port command returned nothing");
462
0
        }
463
2
    } else if (reply.code == TOR_REPLY_UNRECOGNIZED) {
464
0
        LogWarning("tor: Get SOCKS port command failed with unrecognized command (You probably should upgrade Tor)");
465
0
    } else {
466
0
        LogWarning("tor: Get SOCKS port command failed; error code %d", reply.code);
467
0
    }
468
469
2
    CService resolved;
470
2
    Assume(!resolved.IsValid());
471
2
    if (!socks_location.empty()) {
472
2
        resolved = LookupNumeric(socks_location, DEFAULT_TOR_SOCKS_PORT);
473
2
    }
474
2
    if (!resolved.IsValid()) {
475
        // Fallback to old behaviour
476
0
        resolved = LookupNumeric("127.0.0.1", DEFAULT_TOR_SOCKS_PORT);
477
0
    }
478
479
2
    Assume(resolved.IsValid());
480
2
    LogDebug(BCLog::TOR, "Configuring onion proxy for %s", resolved.ToStringAddrPort());
481
482
    // Add Tor as proxy for .onion addresses.
483
    // Enable stream isolation to prevent connection correlation and enhance privacy, by forcing a different Tor circuit for every connection.
484
    // For this to work, the IsolateSOCKSAuth flag must be enabled on SOCKSPort (which is the default, see the IsolateSOCKSAuth section of Tor's manual page).
485
2
    Proxy addrOnion = Proxy(resolved, /*tor_stream_isolation=*/ true);
486
2
    SetProxy(NET_ONION, addrOnion);
487
488
2
    const auto onlynets = gArgs.GetArgs("-onlynet");
489
490
2
    const bool onion_allowed_by_onlynet{
491
2
        onlynets.empty() ||
492
2
        std::any_of(onlynets.begin(), onlynets.end(), [](const auto& n) {
493
0
            return ParseNetwork(n) == NET_ONION;
494
0
        })};
495
496
2
    if (onion_allowed_by_onlynet) {
497
        // If NET_ONION is reachable, then the below is a noop.
498
        //
499
        // If NET_ONION is not reachable, then none of -proxy or -onion was given.
500
        // Since we are here, then -torcontrol and -torpassword were given.
501
2
        g_reachable_nets.Add(NET_ONION);
502
2
    }
503
2
}
504
505
static std::string MakeAddOnionCmd(const std::string& private_key, const std::string& target, bool enable_pow)
506
3
{
507
    // Note that the 'virtual' port is always the default port to avoid decloaking nodes using other ports.
508
3
    return strprintf("ADD_ONION %s%s Port=%i,%s",
509
3
                     private_key,
510
3
                     enable_pow ? " PoWDefensesEnabled=1" : "",
511
3
                     Params().GetDefaultPort(),
512
3
                     target);
513
3
}
514
515
void TorController::add_onion_cb(TorControlConnection& _conn, const TorControlReply& reply, bool pow_was_enabled)
516
3
{
517
3
    if (reply.code == TOR_REPLY_OK) {
518
2
        LogDebug(BCLog::TOR, "ADD_ONION successful (PoW defenses %s)", pow_was_enabled ? "enabled" : "disabled");
519
4
        for (const std::string &s : reply.lines) {
520
4
            std::map<std::string,std::string> m = ParseTorReplyMapping(s);
521
4
            std::map<std::string,std::string>::iterator i;
522
4
            if ((i = m.find("ServiceID")) != m.end())
523
2
                m_service_id = i->second;
524
4
            if ((i = m.find("PrivateKey")) != m.end())
525
0
                m_private_key = i->second;
526
4
        }
527
2
        if (m_service_id.empty()) {
528
0
            LogWarning("tor: Error parsing ADD_ONION parameters:");
529
0
            for (const std::string &s : reply.lines) {
530
0
                LogWarning("    %s", SanitizeString(s));
531
0
            }
532
0
            return;
533
0
        }
534
2
        m_service = LookupNumeric(std::string(m_service_id+".onion"), Params().GetDefaultPort());
535
2
        LogInfo("Got tor service ID %s, advertising service %s", m_service_id, m_service.ToStringAddrPort());
536
2
        if (WriteBinaryFile(GetPrivateKeyFile(), m_private_key)) {
537
2
            LogDebug(BCLog::TOR, "Cached service private key to %s", fs::PathToString(GetPrivateKeyFile()));
538
2
        } else {
539
0
            LogWarning("tor: Error writing service private key to %s", fs::PathToString(GetPrivateKeyFile()));
540
0
        }
541
2
        AddLocal(m_service, LOCAL_MANUAL);
542
        // ... onion requested - keep connection open
543
2
    } else if (reply.code == TOR_REPLY_UNRECOGNIZED) {
544
0
        LogWarning("tor: Add onion failed with unrecognized command (You probably need to upgrade Tor)");
545
1
    } else if (pow_was_enabled && reply.code == TOR_REPLY_SYNTAX_ERROR) {
546
1
        LogDebug(BCLog::TOR, "ADD_ONION failed with PoW defenses, retrying without");
547
1
        _conn.Command(MakeAddOnionCmd(m_private_key, m_target.ToStringAddrPort(), /*enable_pow=*/false),
548
1
                      [this](TorControlConnection& conn, const TorControlReply& reply) {
549
1
                          add_onion_cb(conn, reply, /*pow_was_enabled=*/false);
550
1
                      });
551
1
    } else {
552
0
        LogWarning("tor: Add onion failed; error code %d", reply.code);
553
0
    }
554
3
}
555
556
void TorController::auth_cb(TorControlConnection& _conn, const TorControlReply& reply)
557
2
{
558
2
    if (reply.code == TOR_REPLY_OK) {
559
2
        LogDebug(BCLog::TOR, "Authentication successful");
560
561
        // Now that we know Tor is running setup the proxy for onion addresses
562
        // if -onion isn't set to something else.
563
2
        if (gArgs.GetArg("-onion", "") == "") {
564
2
            _conn.Command("GETINFO net/listeners/socks", std::bind_front(&TorController::get_socks_cb, this));
565
2
        }
566
567
        // Finally - now create the service
568
2
        if (m_private_key.empty()) { // No private key, generate one
569
1
            m_private_key = "NEW:ED25519-V3"; // Explicitly request key type - see issue #9214
570
1
        }
571
        // Request onion service, redirect port.
572
2
        _conn.Command(MakeAddOnionCmd(m_private_key, m_target.ToStringAddrPort(), /*enable_pow=*/true),
573
2
                      [this](TorControlConnection& conn, const TorControlReply& reply) {
574
2
                          add_onion_cb(conn, reply, /*pow_was_enabled=*/true);
575
2
                      });
576
2
    } else {
577
0
        LogWarning("tor: Authentication failed");
578
0
    }
579
2
}
580
581
/** Compute Tor SAFECOOKIE response.
582
 *
583
 *    ServerHash is computed as:
584
 *      HMAC-SHA256("Tor safe cookie authentication server-to-controller hash",
585
 *                  CookieString | ClientNonce | ServerNonce)
586
 *    (with the HMAC key as its first argument)
587
 *
588
 *    After a controller sends a successful AUTHCHALLENGE command, the
589
 *    next command sent on the connection must be an AUTHENTICATE command,
590
 *    and the only authentication string which that AUTHENTICATE command
591
 *    will accept is:
592
 *
593
 *      HMAC-SHA256("Tor safe cookie authentication controller-to-server hash",
594
 *                  CookieString | ClientNonce | ServerNonce)
595
 *
596
 */
597
static std::vector<uint8_t> ComputeResponse(std::string_view key, std::span<const uint8_t> cookie, std::span<const uint8_t> client_nonce, std::span<const uint8_t> server_nonce)
598
0
{
599
0
    CHMAC_SHA256 computeHash((const uint8_t*)key.data(), key.size());
600
0
    std::vector<uint8_t> computedHash(CHMAC_SHA256::OUTPUT_SIZE, 0);
601
0
    computeHash.Write(cookie.data(), cookie.size());
602
0
    computeHash.Write(client_nonce.data(), client_nonce.size());
603
0
    computeHash.Write(server_nonce.data(), server_nonce.size());
604
0
    computeHash.Finalize(computedHash.data());
605
0
    return computedHash;
606
0
}
607
608
void TorController::authchallenge_cb(TorControlConnection& _conn, const TorControlReply& reply)
609
0
{
610
0
    if (reply.code == TOR_REPLY_OK) {
611
0
        LogDebug(BCLog::TOR, "SAFECOOKIE authentication challenge successful");
612
0
        if (reply.lines.empty()) {
613
0
            LogWarning("tor: AUTHCHALLENGE reply was empty");
614
0
            return;
615
0
        }
616
0
        std::pair<std::string,std::string> l = SplitTorReplyLine(reply.lines[0]);
617
0
        if (l.first == "AUTHCHALLENGE") {
618
0
            std::map<std::string,std::string> m = ParseTorReplyMapping(l.second);
619
0
            if (m.empty()) {
620
0
                LogWarning("tor: Error parsing AUTHCHALLENGE parameters: %s", SanitizeString(l.second));
621
0
                return;
622
0
            }
623
0
            std::vector<uint8_t> server_hash = ParseHex(m["SERVERHASH"]);
624
0
            std::vector<uint8_t> server_nonce = ParseHex(m["SERVERNONCE"]);
625
0
            LogDebug(BCLog::TOR, "AUTHCHALLENGE ServerHash %s ServerNonce %s", HexStr(server_hash), HexStr(server_nonce));
626
0
            if (server_nonce.size() != 32) {
627
0
                LogWarning("tor: ServerNonce is not 32 bytes, as required by spec");
628
0
                return;
629
0
            }
630
631
0
            std::vector<uint8_t> computed_server_hash = ComputeResponse(TOR_SAFE_SERVERKEY, m_cookie, m_client_nonce, server_nonce);
632
0
            if (computed_server_hash != server_hash) {
633
0
                LogWarning("tor: ServerHash %s does not match expected ServerHash %s", HexStr(server_hash), HexStr(computed_server_hash));
634
0
                return;
635
0
            }
636
637
0
            std::vector<uint8_t> computedClientHash = ComputeResponse(TOR_SAFE_CLIENTKEY, m_cookie, m_client_nonce, server_nonce);
638
0
            _conn.Command("AUTHENTICATE " + HexStr(computedClientHash), std::bind_front(&TorController::auth_cb, this));
639
0
        } else {
640
0
            LogWarning("tor: Invalid reply to AUTHCHALLENGE");
641
0
        }
642
0
    } else {
643
0
        LogWarning("tor: SAFECOOKIE authentication challenge failed");
644
0
    }
645
0
}
646
647
void TorController::protocolinfo_cb(TorControlConnection& _conn, const TorControlReply& reply)
648
4
{
649
4
    if (reply.code == TOR_REPLY_OK) {
650
4
        std::set<std::string> methods;
651
4
        std::string cookiefile;
652
        /*
653
         * 250-AUTH METHODS=COOKIE,SAFECOOKIE COOKIEFILE="/home/x/.tor/control_auth_cookie"
654
         * 250-AUTH METHODS=NULL
655
         * 250-AUTH METHODS=HASHEDPASSWORD
656
         */
657
1.01k
        for (const std::string &s : reply.lines) {
658
1.01k
            std::pair<std::string,std::string> l = SplitTorReplyLine(s);
659
1.01k
            if (l.first == "AUTH") {
660
3
                std::map<std::string,std::string> m = ParseTorReplyMapping(l.second);
661
3
                std::map<std::string,std::string>::iterator i;
662
3
                if ((i = m.find("METHODS")) != m.end()) {
663
3
                    std::vector<std::string> m_vec = SplitString(i->second, ',');
664
3
                    methods = std::set<std::string>(m_vec.begin(), m_vec.end());
665
3
                }
666
3
                if ((i = m.find("COOKIEFILE")) != m.end())
667
0
                    cookiefile = i->second;
668
1.00k
            } else if (l.first == "VERSION") {
669
2
                std::map<std::string,std::string> m = ParseTorReplyMapping(l.second);
670
2
                std::map<std::string,std::string>::iterator i;
671
2
                if ((i = m.find("Tor")) != m.end()) {
672
2
                    LogDebug(BCLog::TOR, "Connected to Tor version %s", i->second);
673
2
                }
674
2
            }
675
1.01k
        }
676
4
        for (const std::string &s : methods) {
677
3
            LogDebug(BCLog::TOR, "Supported authentication method: %s", s);
678
3
        }
679
        // Prefer NULL, otherwise SAFECOOKIE. If a password is provided, use HASHEDPASSWORD
680
        /* Authentication:
681
         *   cookie:   hex-encoded ~/.tor/control_auth_cookie
682
         *   password: "password"
683
         */
684
4
        std::string torpassword = gArgs.GetArg("-torpassword", "");
685
4
        if (!torpassword.empty()) {
686
0
            if (methods.contains("HASHEDPASSWORD")) {
687
0
                LogDebug(BCLog::TOR, "Using HASHEDPASSWORD authentication");
688
0
                ReplaceAll(torpassword, "\"", "\\\"");
689
0
                _conn.Command("AUTHENTICATE \"" + torpassword + "\"", std::bind_front(&TorController::auth_cb, this));
690
0
            } else {
691
0
                LogWarning("tor: Password provided with -torpassword, but HASHEDPASSWORD authentication is not available");
692
0
            }
693
4
        } else if (methods.contains("NULL")) {
694
3
            LogDebug(BCLog::TOR, "Using NULL authentication");
695
3
            _conn.Command("AUTHENTICATE", std::bind_front(&TorController::auth_cb, this));
696
3
        } else if (methods.contains("SAFECOOKIE")) {
697
            // Cookie: hexdump -e '32/1 "%02x""\n"'  ~/.tor/control_auth_cookie
698
0
            LogDebug(BCLog::TOR, "Using SAFECOOKIE authentication, reading cookie authentication from %s", cookiefile);
699
0
            std::pair<bool,std::string> status_cookie = ReadBinaryFile(fs::PathFromString(cookiefile), TOR_COOKIE_SIZE);
700
0
            if (status_cookie.first && status_cookie.second.size() == TOR_COOKIE_SIZE) {
701
                // _conn.Command("AUTHENTICATE " + HexStr(status_cookie.second), std::bind_front(&TorController::auth_cb, this));
702
0
                m_cookie = std::vector<uint8_t>(status_cookie.second.begin(), status_cookie.second.end());
703
0
                m_client_nonce = std::vector<uint8_t>(TOR_NONCE_SIZE, 0);
704
0
                GetRandBytes(m_client_nonce);
705
0
                _conn.Command("AUTHCHALLENGE SAFECOOKIE " + HexStr(m_client_nonce), std::bind_front(&TorController::authchallenge_cb, this));
706
0
            } else {
707
0
                if (status_cookie.first) {
708
0
                    LogWarning("tor: Authentication cookie %s is not exactly %i bytes, as is required by the spec", cookiefile, TOR_COOKIE_SIZE);
709
0
                } else {
710
0
                    LogWarning("tor: Authentication cookie %s could not be opened (check permissions)", cookiefile);
711
0
                }
712
0
            }
713
1
        } else if (methods.contains("HASHEDPASSWORD")) {
714
0
            LogWarning("tor: The only supported authentication mechanism left is password, but no password provided with -torpassword");
715
1
        } else {
716
1
            LogWarning("tor: No supported authentication method");
717
1
        }
718
4
    } else {
719
0
        LogWarning("tor: Requesting protocol info failed");
720
0
    }
721
4
}
722
723
void TorController::connected_cb(TorControlConnection& _conn)
724
7
{
725
7
    m_reconnect_timeout = RECONNECT_TIMEOUT_START;
726
    // First send a PROTOCOLINFO command to figure out what authentication is expected
727
7
    if (!_conn.Command("PROTOCOLINFO 1", std::bind_front(&TorController::protocolinfo_cb, this)))
728
7
        LogWarning("tor: Error sending initial protocolinfo command");
729
7
}
730
731
void TorController::disconnected_cb(TorControlConnection& _conn)
732
7
{
733
    // Stop advertising service when disconnected
734
7
    if (m_service.IsValid())
735
0
        RemoveLocal(m_service);
736
7
    m_service = CService();
737
7
    if (!m_reconnect)
738
0
        return;
739
740
7
    LogDebug(BCLog::TOR, "Not connected to Tor control port %s, will retry", m_tor_control_center);
741
7
    _conn.Disconnect();
742
7
}
743
744
fs::path TorController::GetPrivateKeyFile()
745
16
{
746
16
    return gArgs.GetDataDirNet() / "onion_v3_private_key";
747
16
}
748
749
CService DefaultOnionServiceTarget(uint16_t port)
750
23
{
751
23
    struct in_addr onion_service_target;
752
    onion_service_target.s_addr = htonl(INADDR_LOOPBACK);
753
23
    return {onion_service_target, port};
754
23
}