OneService.cpp 149 KB

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  1. /*
  2. * Copyright (c)2013-2020 ZeroTier, Inc.
  3. *
  4. * Use of this software is governed by the Business Source License included
  5. * in the LICENSE.TXT file in the project's root directory.
  6. *
  7. * Change Date: 2026-01-01
  8. *
  9. * On the date above, in accordance with the Business Source License, use
  10. * of this software will be governed by version 2.0 of the Apache License.
  11. */
  12. /****/
  13. #include <algorithm>
  14. #include <condition_variable>
  15. #include <exception>
  16. #include <list>
  17. #include <map>
  18. #include <mutex>
  19. #include <stdint.h>
  20. #include <stdio.h>
  21. #include <stdlib.h>
  22. #include <string.h>
  23. #include <string>
  24. #include <thread>
  25. #include <vector>
  26. #ifdef __FreeBSD__
  27. #include <pthread_np.h>
  28. #include <sched.h>
  29. #endif
  30. #include "../include/ZeroTierOne.h"
  31. #include "../node/Bond.hpp"
  32. #include "../node/Constants.hpp"
  33. #include "../node/Identity.hpp"
  34. #include "../node/InetAddress.hpp"
  35. #include "../node/MAC.hpp"
  36. #include "../node/Mutex.hpp"
  37. #include "../node/Node.hpp"
  38. #include "../node/PacketMultiplexer.hpp"
  39. #include "../node/Peer.hpp"
  40. #include "../node/Poly1305.hpp"
  41. #include "../node/SHA512.hpp"
  42. #include "../node/Salsa20.hpp"
  43. #include "../node/Utils.hpp"
  44. #include "../node/World.hpp"
  45. #include "../osdep/Binder.hpp"
  46. #include "../osdep/BlockingQueue.hpp"
  47. #include "../osdep/ExtOsdep.hpp"
  48. #include "../osdep/Http.hpp"
  49. #include "../osdep/ManagedRoute.hpp"
  50. #include "../osdep/OSUtils.hpp"
  51. #include "../osdep/Phy.hpp"
  52. #include "../osdep/PortMapper.hpp"
  53. #include "../version.h"
  54. #include "OneService.hpp"
  55. #include "SoftwareUpdater.hpp"
  56. #ifdef CMAKE_BUILD
  57. #include <httplib.h>
  58. #else
  59. #include <cpp-httplib/httplib.h>
  60. #endif
  61. #ifdef ZT_OPENTELEMETRY_ENABLED
  62. #include "opentelemetry/exporters/memory/in_memory_data.h"
  63. #include "opentelemetry/exporters/otlp/otlp_grpc_exporter.h"
  64. #include "opentelemetry/exporters/otlp/otlp_grpc_log_record_exporter.h"
  65. #include "opentelemetry/exporters/otlp/otlp_grpc_metric_exporter.h"
  66. #include "opentelemetry/logs/logger.h"
  67. #include "opentelemetry/metrics/provider.h"
  68. #include "opentelemetry/sdk/metrics/export/periodic_exporting_metric_reader.h"
  69. #include "opentelemetry/sdk/metrics/meter_provider.h"
  70. #include "opentelemetry/sdk/metrics/metric_reader.h"
  71. #include "opentelemetry/sdk/metrics/provider.h"
  72. #include "opentelemetry/sdk/resource/resource.h"
  73. #include "opentelemetry/sdk/trace/batch_span_processor.h"
  74. #include "opentelemetry/sdk/trace/batch_span_processor_options.h"
  75. #include "opentelemetry/sdk/trace/processor.h"
  76. #include "opentelemetry/sdk/trace/provider.h"
  77. #include "opentelemetry/sdk/trace/samplers/trace_id_ratio.h"
  78. #include "opentelemetry/sdk/trace/tracer.h"
  79. #include "opentelemetry/sdk/trace/tracer_context.h"
  80. #include "opentelemetry/sdk/trace/tracer_provider.h"
  81. #include "opentelemetry/trace/provider.h"
  82. namespace sdktrace = opentelemetry::v1::sdk::trace;
  83. namespace sdkmetrics = opentelemetry::v1::sdk::metrics;
  84. namespace sdklogs = opentelemetry::v1::sdk::logs;
  85. namespace sdkresource = opentelemetry::v1::sdk::resource;
  86. #else
  87. #include "opentelemetry/logs/logger.h"
  88. #include "opentelemetry/metrics/provider.h"
  89. #include "opentelemetry/trace/provider.h"
  90. #endif
  91. #if ZT_SSO_ENABLED
  92. #include <rustybits.h>
  93. #endif
  94. #ifdef __WINDOWS__
  95. #include <iphlpapi.h>
  96. #include <netioapi.h>
  97. #include <shlobj.h>
  98. #include <windows.h>
  99. #include <winsock2.h>
  100. // #include <unistd.h>
  101. #define stat _stat
  102. #else
  103. #include <ifaddrs.h>
  104. #include <sys/socket.h>
  105. #include <sys/stat.h>
  106. #include <sys/types.h>
  107. #include <sys/wait.h>
  108. #include <unistd.h>
  109. #endif
  110. #ifdef __APPLE__
  111. #include "../osdep/MacDNSHelper.hpp"
  112. #elif defined(__WINDOWS__)
  113. #include "../osdep/WinDNSHelper.hpp"
  114. #include "../osdep/WinFWHelper.hpp"
  115. #endif
  116. #ifdef ZT_USE_SYSTEM_HTTP_PARSER
  117. #include <http_parser.h>
  118. #else
  119. #include "../ext/http-parser/http_parser.h"
  120. #endif
  121. #include "../node/Metrics.hpp"
  122. #if ZT_VAULT_SUPPORT
  123. extern "C" {
  124. #include <curl/curl.h>
  125. }
  126. #endif
  127. #include <inja/inja.hpp>
  128. #include <nlohmann/json.hpp>
  129. using json = nlohmann::json;
  130. #include "../controller/EmbeddedNetworkController.hpp"
  131. #ifdef ZT_CONTROLLER_USE_LIBPQ
  132. #include "../controller/PostgreSQL.hpp"
  133. #include "../controller/Redis.hpp"
  134. #endif
  135. #include "../osdep/EthernetTap.hpp"
  136. #ifdef __WINDOWS__
  137. #include "../osdep/WindowsEthernetTap.hpp"
  138. #endif
  139. #ifndef ZT_SOFTWARE_UPDATE_DEFAULT
  140. #define ZT_SOFTWARE_UPDATE_DEFAULT "disable"
  141. #endif
  142. // Sanity limits for HTTP
  143. #define ZT_MAX_HTTP_MESSAGE_SIZE (1024 * 1024 * 64)
  144. #define ZT_MAX_HTTP_CONNECTIONS 65536
  145. // Interface metric for ZeroTier taps -- this ensures that if we are on WiFi and also
  146. // bridged via ZeroTier to the same LAN traffic will (if the OS is sane) prefer WiFi.
  147. #define ZT_IF_METRIC 5000
  148. // How often to check for new multicast subscriptions on a tap device
  149. #define ZT_TAP_CHECK_MULTICAST_INTERVAL 5000
  150. // TCP fallback relay (run by ZeroTier, Inc. -- this will eventually go away)
  151. #ifndef ZT_SDK
  152. #define ZT_TCP_FALLBACK_RELAY "204.80.128.1/443"
  153. #endif
  154. // Frequency at which we re-resolve the TCP fallback relay
  155. #define ZT_TCP_FALLBACK_RERESOLVE_DELAY 86400000
  156. // Attempt to engage TCP fallback after this many ms of no reply to packets sent to global-scope IPs
  157. #define ZT_TCP_FALLBACK_AFTER 60000
  158. // How often to check for local interface addresses
  159. #define ZT_LOCAL_INTERFACE_CHECK_INTERVAL 60000
  160. // Maximum write buffer size for outgoing TCP connections (sanity limit)
  161. #define ZT_TCP_MAX_WRITEQ_SIZE 33554432
  162. // TCP activity timeout
  163. #define ZT_TCP_ACTIVITY_TIMEOUT 60000
  164. #if ZT_VAULT_SUPPORT
  165. size_t curlResponseWrite(void* ptr, size_t size, size_t nmemb, std::string* data)
  166. {
  167. data->append((char*)ptr, size * nmemb);
  168. return size * nmemb;
  169. }
  170. #endif
  171. namespace ZeroTier {
  172. std::string ssoResponseTemplate = R"""(
  173. <!doctype html>
  174. <html class="no-js" lang="">
  175. <head>
  176. <meta charset="utf-8">
  177. <meta http-equiv="x-ua-compatible" content="ie=edge">
  178. <title>Network SSO Login {{ networkId }}</title>
  179. <meta name="description" content="">
  180. <meta name="viewport" content="width=device-width, initial-scale=1">
  181. <style type="text/css">
  182. html,body {
  183. background: #eeeeee;
  184. margin: 0;
  185. padding: 0;
  186. font-family: "System Sans Serif";
  187. font-weight: normal;
  188. font-size: 12pt;
  189. height: 100%;
  190. width: 100%;
  191. }
  192. .container {
  193. position: absolute;
  194. left: 50%;
  195. top: 50%;
  196. -webkit-transform: translate(-50%, -50%);
  197. transform: translate(-50%, -50%);
  198. }
  199. .iconwrapper {
  200. margin: 10px 10px 10px 10px;
  201. }
  202. </style>
  203. </head>
  204. <body>
  205. <div class="container">
  206. <div class="iconwrapper">
  207. <svg id="Layer_1" width="225px" height="225px" data-name="Layer 1" xmlns="http://www.w3.org/2000/svg" viewBox="0 0 225 225"><defs><style>.cls-1{fill:#fdb25d;}.cls-2{fill:none;stroke:#000;stroke-miterlimit:10;stroke-width:6.99px;}</style></defs><rect class="cls-1" width="225" height="225" rx="35.74"/><line class="cls-2" x1="25.65" y1="32.64" x2="199.35" y2="32.64"/><line class="cls-2" x1="112.5" y1="201.02" x2="112.5" y2="32.64"/><circle class="cls-2" cx="112.5" cy="115.22" r="56.54"/></svg>
  208. </div>
  209. <div class="text">{{ messageText }}</div>
  210. </div>
  211. </body>
  212. </html>
  213. )""";
  214. bool bearerTokenValid(const std::string authHeader, const std::string& checkToken)
  215. {
  216. std::vector<std::string> tokens = OSUtils::split(authHeader.c_str(), " ", NULL, NULL);
  217. if (tokens.size() != 2) {
  218. return false;
  219. }
  220. std::string bearer = tokens[0];
  221. std::string token = tokens[1];
  222. std::transform(bearer.begin(), bearer.end(), bearer.begin(), [](unsigned char c) { return std::tolower(c); });
  223. if (bearer != "bearer") {
  224. return false;
  225. }
  226. if (token != checkToken) {
  227. return false;
  228. }
  229. return true;
  230. }
  231. #if ZT_DEBUG == 1
  232. std::string dump_headers(const httplib::Headers& headers)
  233. {
  234. std::string s;
  235. char buf[BUFSIZ];
  236. for (auto it = headers.begin(); it != headers.end(); ++it) {
  237. const auto& x = *it;
  238. snprintf(buf, sizeof(buf), "%s: %s\n", x.first.c_str(), x.second.c_str());
  239. s += buf;
  240. }
  241. return s;
  242. }
  243. std::string http_log(const httplib::Request& req, const httplib::Response& res)
  244. {
  245. std::string s;
  246. char buf[BUFSIZ];
  247. s += "================================\n";
  248. snprintf(buf, sizeof(buf), "%s %s %s", req.method.c_str(), req.version.c_str(), req.path.c_str());
  249. s += buf;
  250. std::string query;
  251. for (auto it = req.params.begin(); it != req.params.end(); ++it) {
  252. const auto& x = *it;
  253. snprintf(buf, sizeof(buf), "%c%s=%s", (it == req.params.begin()) ? '?' : '&', x.first.c_str(), x.second.c_str());
  254. query += buf;
  255. }
  256. snprintf(buf, sizeof(buf), "%s\n", query.c_str());
  257. s += buf;
  258. s += dump_headers(req.headers);
  259. s += "--------------------------------\n";
  260. snprintf(buf, sizeof(buf), "%d %s\n", res.status, res.version.c_str());
  261. s += buf;
  262. s += dump_headers(res.headers);
  263. s += "\n";
  264. if (! res.body.empty()) {
  265. s += res.body;
  266. }
  267. s += "\n";
  268. return s;
  269. }
  270. #endif
  271. // Configured networks
  272. class NetworkState {
  273. public:
  274. NetworkState()
  275. : _webPort(9993)
  276. , _tap((EthernetTap*)0)
  277. #if ZT_SSO_ENABLED
  278. , _idc(nullptr)
  279. #endif
  280. {
  281. // Real defaults are in network 'up' code in network event handler
  282. _settings.allowManaged = true;
  283. _settings.allowGlobal = false;
  284. _settings.allowDefault = false;
  285. _settings.allowDNS = false;
  286. memset(&_config, 0, sizeof(ZT_VirtualNetworkConfig));
  287. }
  288. ~NetworkState()
  289. {
  290. this->_managedRoutes.clear();
  291. this->_tap.reset();
  292. #if ZT_SSO_ENABLED
  293. if (_idc) {
  294. rustybits::zeroidc_stop(_idc);
  295. rustybits::zeroidc_delete(_idc);
  296. _idc = nullptr;
  297. }
  298. #endif
  299. }
  300. void setWebPort(unsigned int port)
  301. {
  302. _webPort = port;
  303. }
  304. void setTap(std::shared_ptr<EthernetTap> tap)
  305. {
  306. this->_tap = tap;
  307. }
  308. std::shared_ptr<EthernetTap> tap() const
  309. {
  310. return _tap;
  311. }
  312. OneService::NetworkSettings settings() const
  313. {
  314. return _settings;
  315. }
  316. void setSettings(const OneService::NetworkSettings& settings)
  317. {
  318. _settings = settings;
  319. }
  320. void setAllowManaged(bool allow)
  321. {
  322. _settings.allowManaged = allow;
  323. }
  324. bool allowManaged() const
  325. {
  326. return _settings.allowManaged;
  327. }
  328. void setAllowGlobal(bool allow)
  329. {
  330. _settings.allowGlobal = allow;
  331. }
  332. bool allowGlobal() const
  333. {
  334. return _settings.allowGlobal;
  335. }
  336. void setAllowDefault(bool allow)
  337. {
  338. _settings.allowDefault = allow;
  339. }
  340. bool allowDefault() const
  341. {
  342. return _settings.allowDefault;
  343. }
  344. void setAllowDNS(bool allow)
  345. {
  346. _settings.allowDNS = allow;
  347. }
  348. bool allowDNS() const
  349. {
  350. return _settings.allowDNS;
  351. }
  352. std::vector<InetAddress> allowManagedWhitelist() const
  353. {
  354. return _settings.allowManagedWhitelist;
  355. }
  356. void addToAllowManagedWhiteList(const InetAddress& addr)
  357. {
  358. _settings.allowManagedWhitelist.push_back(addr);
  359. }
  360. const ZT_VirtualNetworkConfig& config()
  361. {
  362. return _config;
  363. }
  364. void setConfig(const ZT_VirtualNetworkConfig* nwc)
  365. {
  366. memcpy(&_config, nwc, sizeof(ZT_VirtualNetworkConfig));
  367. if (_config.ssoEnabled && _config.ssoVersion == 1) {
  368. #if ZT_SSO_ENABLED
  369. if (_idc == nullptr) {
  370. assert(_config.issuerURL != nullptr);
  371. assert(_config.ssoClientID != nullptr);
  372. assert(_config.centralAuthURL != nullptr);
  373. assert(_config.ssoProvider != nullptr);
  374. _idc = rustybits::zeroidc_new(_config.issuerURL, _config.ssoClientID, _config.centralAuthURL, _config.ssoProvider, _webPort);
  375. if (_idc == nullptr) {
  376. fprintf(stderr, "idc is null\n");
  377. return;
  378. }
  379. }
  380. rustybits::zeroidc_set_nonce_and_csrf(_idc, _config.ssoState, _config.ssoNonce);
  381. char* url = rustybits::zeroidc_get_auth_url(_idc);
  382. memcpy(_config.authenticationURL, url, strlen(url));
  383. _config.authenticationURL[strlen(url)] = 0;
  384. rustybits::free_cstr(url);
  385. if (rustybits::zeroidc_is_running(_idc) && nwc->status == ZT_NETWORK_STATUS_AUTHENTICATION_REQUIRED) {
  386. rustybits::zeroidc_kick_refresh_thread(_idc);
  387. }
  388. #endif
  389. }
  390. }
  391. std::vector<InetAddress>& managedIps()
  392. {
  393. return _managedIps;
  394. }
  395. void setManagedIps(const std::vector<InetAddress>& managedIps)
  396. {
  397. _managedIps = managedIps;
  398. }
  399. std::map<InetAddress, SharedPtr<ManagedRoute> >& managedRoutes()
  400. {
  401. return _managedRoutes;
  402. }
  403. char* doTokenExchange(const char* code)
  404. {
  405. char* ret = nullptr;
  406. #if ZT_SSO_ENABLED
  407. if (_idc == nullptr) {
  408. fprintf(stderr, "ainfo or idc null\n");
  409. return ret;
  410. }
  411. ret = rustybits::zeroidc_token_exchange(_idc, code);
  412. rustybits::zeroidc_set_nonce_and_csrf(_idc, _config.ssoState, _config.ssoNonce);
  413. char* url = rustybits::zeroidc_get_auth_url(_idc);
  414. memcpy(_config.authenticationURL, url, strlen(url));
  415. _config.authenticationURL[strlen(url)] = 0;
  416. rustybits::free_cstr(url);
  417. #endif
  418. return ret;
  419. }
  420. uint64_t getExpiryTime()
  421. {
  422. #if ZT_SSO_ENABLED
  423. if (_idc == nullptr) {
  424. fprintf(stderr, "idc is null\n");
  425. return 0;
  426. }
  427. return rustybits::zeroidc_get_exp_time(_idc);
  428. #else
  429. return 0;
  430. #endif
  431. }
  432. private:
  433. unsigned int _webPort;
  434. std::shared_ptr<EthernetTap> _tap;
  435. ZT_VirtualNetworkConfig _config; // memcpy() of raw config from core
  436. std::vector<InetAddress> _managedIps;
  437. std::map<InetAddress, SharedPtr<ManagedRoute> > _managedRoutes;
  438. OneService::NetworkSettings _settings;
  439. #if ZT_SSO_ENABLED
  440. rustybits::ZeroIDC* _idc;
  441. #endif
  442. };
  443. namespace {
  444. static const InetAddress NULL_INET_ADDR;
  445. // Fake TLS hello for TCP tunnel outgoing connections (TUNNELED mode)
  446. static const char ZT_TCP_TUNNEL_HELLO[9] = {
  447. 0x17, 0x03, 0x03, 0x00, 0x04, (char)ZEROTIER_ONE_VERSION_MAJOR, (char)ZEROTIER_ONE_VERSION_MINOR, (char)((ZEROTIER_ONE_VERSION_REVISION >> 8) & 0xff), (char)(ZEROTIER_ONE_VERSION_REVISION & 0xff)
  448. };
  449. static std::string _trimString(const std::string& s)
  450. {
  451. unsigned long end = (unsigned long)s.length();
  452. while (end) {
  453. char c = s[end - 1];
  454. if ((c == ' ') || (c == '\r') || (c == '\n') || (! c) || (c == '\t'))
  455. --end;
  456. else
  457. break;
  458. }
  459. unsigned long start = 0;
  460. while (start < end) {
  461. char c = s[start];
  462. if ((c == ' ') || (c == '\r') || (c == '\n') || (! c) || (c == '\t'))
  463. ++start;
  464. else
  465. break;
  466. }
  467. return s.substr(start, end - start);
  468. }
  469. static void _networkToJson(nlohmann::json& nj, NetworkState& ns)
  470. {
  471. char tmp[256];
  472. const char *nstatus = "", *ntype = "";
  473. switch (ns.config().status) {
  474. case ZT_NETWORK_STATUS_REQUESTING_CONFIGURATION:
  475. nstatus = "REQUESTING_CONFIGURATION";
  476. break;
  477. case ZT_NETWORK_STATUS_OK:
  478. nstatus = "OK";
  479. break;
  480. case ZT_NETWORK_STATUS_ACCESS_DENIED:
  481. nstatus = "ACCESS_DENIED";
  482. break;
  483. case ZT_NETWORK_STATUS_NOT_FOUND:
  484. nstatus = "NOT_FOUND";
  485. break;
  486. case ZT_NETWORK_STATUS_PORT_ERROR:
  487. nstatus = "PORT_ERROR";
  488. break;
  489. case ZT_NETWORK_STATUS_CLIENT_TOO_OLD:
  490. nstatus = "CLIENT_TOO_OLD";
  491. break;
  492. case ZT_NETWORK_STATUS_AUTHENTICATION_REQUIRED:
  493. nstatus = "AUTHENTICATION_REQUIRED";
  494. break;
  495. }
  496. switch (ns.config().type) {
  497. case ZT_NETWORK_TYPE_PRIVATE:
  498. ntype = "PRIVATE";
  499. break;
  500. case ZT_NETWORK_TYPE_PUBLIC:
  501. ntype = "PUBLIC";
  502. break;
  503. }
  504. OSUtils::ztsnprintf(tmp, sizeof(tmp), "%.16llx", ns.config().nwid);
  505. nj["id"] = tmp;
  506. nj["nwid"] = tmp;
  507. OSUtils::ztsnprintf(
  508. tmp,
  509. sizeof(tmp),
  510. "%.2x:%.2x:%.2x:%.2x:%.2x:%.2x",
  511. (unsigned int)((ns.config().mac >> 40) & 0xff),
  512. (unsigned int)((ns.config().mac >> 32) & 0xff),
  513. (unsigned int)((ns.config().mac >> 24) & 0xff),
  514. (unsigned int)((ns.config().mac >> 16) & 0xff),
  515. (unsigned int)((ns.config().mac >> 8) & 0xff),
  516. (unsigned int)(ns.config().mac & 0xff));
  517. nj["mac"] = tmp;
  518. nj["name"] = ns.config().name;
  519. nj["status"] = nstatus;
  520. nj["type"] = ntype;
  521. nj["mtu"] = ns.config().mtu;
  522. nj["dhcp"] = (bool)(ns.config().dhcp != 0);
  523. nj["bridge"] = (bool)(ns.config().bridge != 0);
  524. nj["broadcastEnabled"] = (bool)(ns.config().broadcastEnabled != 0);
  525. nj["portError"] = ns.config().portError;
  526. nj["netconfRevision"] = ns.config().netconfRevision;
  527. nj["portDeviceName"] = ns.tap()->deviceName();
  528. OneService::NetworkSettings localSettings = ns.settings();
  529. nj["allowManaged"] = localSettings.allowManaged;
  530. nj["allowGlobal"] = localSettings.allowGlobal;
  531. nj["allowDefault"] = localSettings.allowDefault;
  532. nj["allowDNS"] = localSettings.allowDNS;
  533. nlohmann::json aa = nlohmann::json::array();
  534. for (unsigned int i = 0; i < ns.config().assignedAddressCount; ++i) {
  535. aa.push_back(reinterpret_cast<const InetAddress*>(&(ns.config().assignedAddresses[i]))->toString(tmp));
  536. }
  537. nj["assignedAddresses"] = aa;
  538. nlohmann::json ra = nlohmann::json::array();
  539. for (unsigned int i = 0; i < ns.config().routeCount; ++i) {
  540. nlohmann::json rj;
  541. rj["target"] = reinterpret_cast<const InetAddress*>(&(ns.config().routes[i].target))->toString(tmp);
  542. if (ns.config().routes[i].via.ss_family == ns.config().routes[i].target.ss_family)
  543. rj["via"] = reinterpret_cast<const InetAddress*>(&(ns.config().routes[i].via))->toIpString(tmp);
  544. else
  545. rj["via"] = nlohmann::json();
  546. rj["flags"] = (int)ns.config().routes[i].flags;
  547. rj["metric"] = (int)ns.config().routes[i].metric;
  548. ra.push_back(rj);
  549. }
  550. nj["routes"] = ra;
  551. nlohmann::json mca = nlohmann::json::array();
  552. for (unsigned int i = 0; i < ns.config().multicastSubscriptionCount; ++i) {
  553. nlohmann::json m;
  554. m["mac"] = MAC(ns.config().multicastSubscriptions[i].mac).toString(tmp);
  555. m["adi"] = ns.config().multicastSubscriptions[i].adi;
  556. mca.push_back(m);
  557. }
  558. nj["multicastSubscriptions"] = mca;
  559. nlohmann::json m;
  560. m["domain"] = ns.config().dns.domain;
  561. m["servers"] = nlohmann::json::array();
  562. for (int j = 0; j < ZT_MAX_DNS_SERVERS; ++j) {
  563. InetAddress a(ns.config().dns.server_addr[j]);
  564. if (a.isV4() || a.isV6()) {
  565. char buf[256];
  566. m["servers"].push_back(a.toIpString(buf));
  567. }
  568. }
  569. nj["dns"] = m;
  570. if (ns.config().ssoEnabled) {
  571. const char* authURL = ns.config().authenticationURL;
  572. // fprintf(stderr, "Auth URL: %s\n", authURL);
  573. nj["authenticationURL"] = authURL;
  574. nj["authenticationExpiryTime"] = (ns.getExpiryTime() * 1000);
  575. nj["ssoEnabled"] = ns.config().ssoEnabled;
  576. }
  577. }
  578. static void _peerToJson(nlohmann::json& pj, const ZT_Peer* peer, SharedPtr<Bond>& bond, bool isTunneled)
  579. {
  580. char tmp[256];
  581. const char* prole = "";
  582. switch (peer->role) {
  583. case ZT_PEER_ROLE_LEAF:
  584. prole = "LEAF";
  585. break;
  586. case ZT_PEER_ROLE_MOON:
  587. prole = "MOON";
  588. break;
  589. case ZT_PEER_ROLE_PLANET:
  590. prole = "PLANET";
  591. break;
  592. }
  593. OSUtils::ztsnprintf(tmp, sizeof(tmp), "%.10llx", peer->address);
  594. pj["address"] = tmp;
  595. pj["versionMajor"] = peer->versionMajor;
  596. pj["versionMinor"] = peer->versionMinor;
  597. pj["versionRev"] = peer->versionRev;
  598. OSUtils::ztsnprintf(tmp, sizeof(tmp), "%d.%d.%d", peer->versionMajor, peer->versionMinor, peer->versionRev);
  599. pj["version"] = tmp;
  600. pj["latency"] = peer->latency;
  601. pj["role"] = prole;
  602. pj["isBonded"] = peer->isBonded;
  603. pj["tunneled"] = isTunneled;
  604. if (bond && peer->isBonded) {
  605. pj["bondingPolicyCode"] = peer->bondingPolicy;
  606. pj["bondingPolicyStr"] = Bond::getPolicyStrByCode(peer->bondingPolicy);
  607. pj["numAliveLinks"] = peer->numAliveLinks;
  608. pj["numTotalLinks"] = peer->numTotalLinks;
  609. pj["failoverInterval"] = bond->getFailoverInterval();
  610. pj["downDelay"] = bond->getDownDelay();
  611. pj["upDelay"] = bond->getUpDelay();
  612. pj["packetsPerLink"] = bond->getPacketsPerLink();
  613. }
  614. nlohmann::json pa = nlohmann::json::array();
  615. for (unsigned int i = 0; i < peer->pathCount; ++i) {
  616. int64_t lastSend = peer->paths[i].lastSend;
  617. int64_t lastReceive = peer->paths[i].lastReceive;
  618. nlohmann::json j;
  619. j["address"] = reinterpret_cast<const InetAddress*>(&(peer->paths[i].address))->toString(tmp);
  620. j["lastSend"] = (lastSend < 0) ? 0 : lastSend;
  621. j["lastReceive"] = (lastReceive < 0) ? 0 : lastReceive;
  622. j["trustedPathId"] = peer->paths[i].trustedPathId;
  623. j["active"] = (bool)(peer->paths[i].expired == 0);
  624. j["expired"] = (bool)(peer->paths[i].expired != 0);
  625. j["preferred"] = (bool)(peer->paths[i].preferred != 0);
  626. j["localSocket"] = peer->paths[i].localSocket;
  627. j["localPort"] = peer->paths[i].localPort;
  628. if (bond && peer->isBonded) {
  629. uint64_t now = OSUtils::now();
  630. j["ifname"] = std::string(peer->paths[i].ifname);
  631. j["latencyMean"] = peer->paths[i].latencyMean;
  632. j["latencyVariance"] = peer->paths[i].latencyVariance;
  633. j["packetLossRatio"] = peer->paths[i].packetLossRatio;
  634. j["packetErrorRatio"] = peer->paths[i].packetErrorRatio;
  635. j["assignedFlowCount"] = peer->paths[i].assignedFlowCount;
  636. j["lastInAge"] = (now - lastReceive);
  637. j["lastOutAge"] = (now - lastSend);
  638. j["bonded"] = peer->paths[i].bonded;
  639. j["eligible"] = peer->paths[i].eligible;
  640. j["givenLinkSpeed"] = peer->paths[i].linkSpeed;
  641. j["relativeQuality"] = peer->paths[i].relativeQuality;
  642. }
  643. pa.push_back(j);
  644. }
  645. pj["paths"] = pa;
  646. }
  647. static void _moonToJson(nlohmann::json& mj, const World& world)
  648. {
  649. char tmp[4096];
  650. OSUtils::ztsnprintf(tmp, sizeof(tmp), "%.16llx", world.id());
  651. mj["id"] = tmp;
  652. mj["timestamp"] = world.timestamp();
  653. mj["signature"] = Utils::hex(world.signature().data, ZT_ECC_SIGNATURE_LEN, tmp);
  654. mj["updatesMustBeSignedBy"] = Utils::hex(world.updatesMustBeSignedBy().data, ZT_ECC_PUBLIC_KEY_SET_LEN, tmp);
  655. nlohmann::json ra = nlohmann::json::array();
  656. for (std::vector<World::Root>::const_iterator r(world.roots().begin()); r != world.roots().end(); ++r) {
  657. nlohmann::json rj;
  658. rj["identity"] = r->identity.toString(false, tmp);
  659. nlohmann::json eps = nlohmann::json::array();
  660. for (std::vector<InetAddress>::const_iterator a(r->stableEndpoints.begin()); a != r->stableEndpoints.end(); ++a)
  661. eps.push_back(a->toString(tmp));
  662. rj["stableEndpoints"] = eps;
  663. ra.push_back(rj);
  664. }
  665. mj["roots"] = ra;
  666. mj["waiting"] = false;
  667. }
  668. class OneServiceImpl;
  669. static int SnodeVirtualNetworkConfigFunction(ZT_Node* node, void* uptr, void* tptr, uint64_t nwid, void** nuptr, enum ZT_VirtualNetworkConfigOperation op, const ZT_VirtualNetworkConfig* nwconf);
  670. static void SnodeEventCallback(ZT_Node* node, void* uptr, void* tptr, enum ZT_Event event, const void* metaData);
  671. static void SnodeStatePutFunction(ZT_Node* node, void* uptr, void* tptr, enum ZT_StateObjectType type, const uint64_t id[2], const void* data, int len);
  672. static int SnodeStateGetFunction(ZT_Node* node, void* uptr, void* tptr, enum ZT_StateObjectType type, const uint64_t id[2], void* data, unsigned int maxlen);
  673. static int SnodeWirePacketSendFunction(ZT_Node* node, void* uptr, void* tptr, int64_t localSocket, const struct sockaddr_storage* addr, const void* data, unsigned int len, unsigned int ttl);
  674. static void SnodeVirtualNetworkFrameFunction(ZT_Node* node, void* uptr, void* tptr, uint64_t nwid, void** nuptr, uint64_t sourceMac, uint64_t destMac, unsigned int etherType, unsigned int vlanId, const void* data, unsigned int len);
  675. static int SnodePathCheckFunction(ZT_Node* node, void* uptr, void* tptr, uint64_t ztaddr, int64_t localSocket, const struct sockaddr_storage* remoteAddr);
  676. static int SnodePathLookupFunction(ZT_Node* node, void* uptr, void* tptr, uint64_t ztaddr, int family, struct sockaddr_storage* result);
  677. static void StapFrameHandler(void* uptr, void* tptr, uint64_t nwid, const MAC& from, const MAC& to, unsigned int etherType, unsigned int vlanId, const void* data, unsigned int len);
  678. static int ShttpOnMessageBegin(http_parser* parser);
  679. static int ShttpOnUrl(http_parser* parser, const char* ptr, size_t length);
  680. #if (HTTP_PARSER_VERSION_MAJOR >= 2) && (HTTP_PARSER_VERSION_MINOR >= 2)
  681. static int ShttpOnStatus(http_parser* parser, const char* ptr, size_t length);
  682. #else
  683. static int ShttpOnStatus(http_parser* parser);
  684. #endif
  685. static int ShttpOnHeaderField(http_parser* parser, const char* ptr, size_t length);
  686. static int ShttpOnValue(http_parser* parser, const char* ptr, size_t length);
  687. static int ShttpOnHeadersComplete(http_parser* parser);
  688. static int ShttpOnBody(http_parser* parser, const char* ptr, size_t length);
  689. static int ShttpOnMessageComplete(http_parser* parser);
  690. #if (HTTP_PARSER_VERSION_MAJOR >= 2) && (HTTP_PARSER_VERSION_MINOR >= 1)
  691. static const struct http_parser_settings HTTP_PARSER_SETTINGS = { ShttpOnMessageBegin, ShttpOnUrl, ShttpOnStatus, ShttpOnHeaderField, ShttpOnValue, ShttpOnHeadersComplete, ShttpOnBody, ShttpOnMessageComplete };
  692. #else
  693. static const struct http_parser_settings HTTP_PARSER_SETTINGS = { ShttpOnMessageBegin, ShttpOnUrl, ShttpOnHeaderField, ShttpOnValue, ShttpOnHeadersComplete, ShttpOnBody, ShttpOnMessageComplete };
  694. #endif
  695. /**
  696. * A TCP connection and related state and buffers
  697. */
  698. struct TcpConnection {
  699. enum {
  700. TCP_UNCATEGORIZED_INCOMING, // uncategorized incoming connection
  701. TCP_HTTP_INCOMING,
  702. TCP_HTTP_OUTGOING,
  703. TCP_TUNNEL_OUTGOING // TUNNELED mode proxy outbound connection
  704. } type;
  705. OneServiceImpl* parent;
  706. PhySocket* sock;
  707. InetAddress remoteAddr;
  708. uint64_t lastReceive;
  709. // Used for inbound HTTP connections
  710. http_parser parser;
  711. unsigned long messageSize;
  712. std::string currentHeaderField;
  713. std::string currentHeaderValue;
  714. std::string url;
  715. std::string status;
  716. std::map<std::string, std::string> headers;
  717. std::string readq;
  718. std::string writeq;
  719. Mutex writeq_m;
  720. };
  721. struct PacketRecord {
  722. uint64_t now;
  723. int64_t sock;
  724. struct sockaddr_storage from;
  725. unsigned int size;
  726. uint8_t data[ZT_MAX_MTU];
  727. };
  728. class OneServiceImpl : public OneService {
  729. public:
  730. // begin member variables --------------------------------------------------
  731. const std::string _homePath;
  732. std::string _authToken;
  733. std::string _metricsToken;
  734. std::string _controllerDbPath;
  735. const std::string _networksPath;
  736. const std::string _moonsPath;
  737. EmbeddedNetworkController* _controller;
  738. Phy<OneServiceImpl*> _phy;
  739. Node* _node;
  740. SoftwareUpdater* _updater;
  741. bool _updateAutoApply;
  742. httplib::Server _controlPlane;
  743. httplib::Server _controlPlaneV6;
  744. std::thread _serverThread;
  745. std::thread _serverThreadV6;
  746. bool _serverThreadRunning;
  747. bool _serverThreadRunningV6;
  748. BlockingQueue<PacketRecord*> _rxPacketQueue;
  749. std::vector<PacketRecord*> _rxPacketVector;
  750. std::vector<std::thread> _rxPacketThreads;
  751. Mutex _rxPacketVector_m, _rxPacketThreads_m;
  752. bool _multicoreEnabled;
  753. bool _cpuPinningEnabled;
  754. unsigned int _concurrency;
  755. bool _allowTcpFallbackRelay;
  756. bool _forceTcpRelay;
  757. bool _allowSecondaryPort;
  758. bool _enableWebServer;
  759. unsigned int _primaryPort;
  760. unsigned int _secondaryPort;
  761. unsigned int _tertiaryPort;
  762. volatile unsigned int _udpPortPickerCounter;
  763. // Local configuration and memo-ized information from it
  764. json _localConfig;
  765. Hashtable<uint64_t, std::vector<InetAddress> > _v4Hints;
  766. Hashtable<uint64_t, std::vector<InetAddress> > _v6Hints;
  767. Hashtable<uint64_t, std::vector<InetAddress> > _v4Blacklists;
  768. Hashtable<uint64_t, std::vector<InetAddress> > _v6Blacklists;
  769. std::vector<InetAddress> _globalV4Blacklist;
  770. std::vector<InetAddress> _globalV6Blacklist;
  771. std::vector<InetAddress> _allowManagementFrom;
  772. std::vector<std::string> _interfacePrefixBlacklist;
  773. Mutex _localConfig_m;
  774. std::vector<InetAddress> explicitBind;
  775. /*
  776. * To attempt to handle NAT/gateway craziness we use three local UDP ports:
  777. *
  778. * [0] is the normal/default port, usually 9993
  779. * [1] is a port derived from our ZeroTier address
  780. * [2] is a port computed from the normal/default for use with uPnP/NAT-PMP mappings
  781. *
  782. * [2] exists because on some gateways trying to do regular NAT-t interferes
  783. * destructively with uPnP port mapping behavior in very weird buggy ways.
  784. * It's only used if uPnP/NAT-PMP is enabled in this build.
  785. */
  786. unsigned int _ports[3];
  787. Binder _binder;
  788. // Time we last received a packet from a global address
  789. uint64_t _lastDirectReceiveFromGlobal;
  790. #ifdef ZT_TCP_FALLBACK_RELAY
  791. InetAddress _fallbackRelayAddress;
  792. uint64_t _lastSendToGlobalV4;
  793. #endif
  794. // Last potential sleep/wake event
  795. uint64_t _lastRestart;
  796. // Deadline for the next background task service function
  797. volatile int64_t _nextBackgroundTaskDeadline;
  798. std::map<uint64_t, NetworkState> _nets;
  799. Mutex _nets_m;
  800. // Active TCP/IP connections
  801. std::vector<TcpConnection*> _tcpConnections;
  802. Mutex _tcpConnections_m;
  803. TcpConnection* _tcpFallbackTunnel;
  804. // Termination status information
  805. ReasonForTermination _termReason;
  806. std::string _fatalErrorMessage;
  807. Mutex _termReason_m;
  808. // uPnP/NAT-PMP port mapper if enabled
  809. bool _portMappingEnabled; // local.conf settings
  810. #ifdef ZT_USE_MINIUPNPC
  811. PortMapper* _portMapper;
  812. #endif
  813. // HashiCorp Vault Settings
  814. #if ZT_VAULT_SUPPORT
  815. bool _vaultEnabled;
  816. std::string _vaultURL;
  817. std::string _vaultToken;
  818. std::string _vaultPath; // defaults to cubbyhole/zerotier/identity.secret for per-access key storage
  819. #endif
  820. // Set to false to force service to stop
  821. volatile bool _run;
  822. Mutex _run_m;
  823. RedisConfig* _rc;
  824. std::string _ssoRedirectURL;
  825. #ifdef ZT_OPENTELEMETRY_ENABLED
  826. opentelemetry::nostd::shared_ptr<opentelemetry::v1::trace::TracerProvider> _traceProvider;
  827. std::string _exporterEndpoint;
  828. double _exporterSampleRate;
  829. #endif
  830. // end member variables ----------------------------------------------------
  831. OneServiceImpl(const char* hp, unsigned int port)
  832. : _homePath((hp) ? hp : ".")
  833. , _controllerDbPath(_homePath + ZT_PATH_SEPARATOR_S "controller.d")
  834. , _networksPath(_homePath + ZT_PATH_SEPARATOR_S "networks.d")
  835. , _moonsPath(_homePath + ZT_PATH_SEPARATOR_S "moons.d")
  836. , _controller((EmbeddedNetworkController*)0)
  837. , _phy(this, false, true)
  838. , _node((Node*)0)
  839. , _updater((SoftwareUpdater*)0)
  840. , _updateAutoApply(false)
  841. , _controlPlane()
  842. , _controlPlaneV6()
  843. , _serverThread()
  844. , _serverThreadV6()
  845. , _serverThreadRunning(false)
  846. , _serverThreadRunningV6(false)
  847. , _forceTcpRelay(false)
  848. , _primaryPort(port)
  849. , _udpPortPickerCounter(0)
  850. , _lastDirectReceiveFromGlobal(0)
  851. #ifdef ZT_TCP_FALLBACK_RELAY
  852. , _fallbackRelayAddress(ZT_TCP_FALLBACK_RELAY)
  853. , _lastSendToGlobalV4(0)
  854. #endif
  855. , _lastRestart(0)
  856. , _nextBackgroundTaskDeadline(0)
  857. , _tcpFallbackTunnel((TcpConnection*)0)
  858. , _termReason(ONE_STILL_RUNNING)
  859. , _portMappingEnabled(true)
  860. #ifdef ZT_USE_MINIUPNPC
  861. , _portMapper((PortMapper*)0)
  862. #endif
  863. #ifdef ZT_VAULT_SUPPORT
  864. , _vaultEnabled(false)
  865. , _vaultURL()
  866. , _vaultToken()
  867. , _vaultPath("cubbyhole/zerotier")
  868. #endif
  869. , _run(true)
  870. , _rc(NULL)
  871. , _ssoRedirectURL()
  872. #ifdef ZT_OPENTELEMETRY_ENABLED
  873. , _traceProvider(nullptr)
  874. , _exporterEndpoint()
  875. , _exporterSampleRate(1.0)
  876. #endif
  877. {
  878. _ports[0] = 0;
  879. _ports[1] = 0;
  880. _ports[2] = 0;
  881. prometheus::simpleapi::saver.set_registry(prometheus::simpleapi::registry_ptr);
  882. prometheus::simpleapi::saver.set_delay(std::chrono::seconds(5));
  883. prometheus::simpleapi::saver.set_out_file(_homePath + ZT_PATH_SEPARATOR + "metrics.prom");
  884. #if ZT_VAULT_SUPPORT
  885. curl_global_init(CURL_GLOBAL_DEFAULT);
  886. #endif
  887. }
  888. virtual ~OneServiceImpl()
  889. {
  890. #ifdef __WINDOWS__
  891. WinFWHelper::removeICMPRules();
  892. #endif
  893. _rxPacketQueue.stop();
  894. _rxPacketThreads_m.lock();
  895. for (auto t = _rxPacketThreads.begin(); t != _rxPacketThreads.end(); ++t) {
  896. t->join();
  897. }
  898. _rxPacketThreads_m.unlock();
  899. _binder.closeAll(_phy);
  900. #if ZT_VAULT_SUPPORT
  901. curl_global_cleanup();
  902. #endif
  903. _controlPlane.stop();
  904. if (_serverThreadRunning) {
  905. _serverThread.join();
  906. }
  907. _controlPlaneV6.stop();
  908. if (_serverThreadRunningV6) {
  909. _serverThreadV6.join();
  910. }
  911. _rxPacketVector_m.lock();
  912. while (! _rxPacketVector.empty()) {
  913. delete _rxPacketVector.back();
  914. _rxPacketVector.pop_back();
  915. }
  916. _rxPacketVector_m.unlock();
  917. #ifdef ZT_USE_MINIUPNPC
  918. delete _portMapper;
  919. #endif
  920. delete _controller;
  921. delete _rc;
  922. }
  923. void setUpMultithreading()
  924. {
  925. #if defined(__APPLE__) || defined(__OpenBSD__) || defined(__NetBSD__) || defined(__WINDOWS__)
  926. return;
  927. #endif
  928. _node->initMultithreading(_concurrency, _cpuPinningEnabled);
  929. bool pinning = _cpuPinningEnabled;
  930. }
  931. #ifdef ZT_OPENTELEMETRY_ENABLED
  932. void initTracing()
  933. {
  934. if (! _exporterEndpoint.empty() && _exporterSampleRate > 0.0) {
  935. fprintf(stderr, "OpenTelemetry tracing enabled with endpoint %s and sample rate %.2f\n", _exporterEndpoint.c_str(), _exporterSampleRate);
  936. // Set up OpenTelemetry exporter and tracer provider
  937. opentelemetry::v1::exporter::otlp::OtlpGrpcExporterOptions opts;
  938. opts.endpoint = _exporterEndpoint + "/v1/traces";
  939. auto exporter = std::unique_ptr<opentelemetry::exporter::otlp::OtlpGrpcExporter>(new opentelemetry::exporter::otlp::OtlpGrpcExporter(opts));
  940. sdktrace::BatchSpanProcessorOptions batch_options {};
  941. batch_options.schedule_delay_millis = std::chrono::milliseconds(5000); // 5 seconds
  942. auto processor = std::unique_ptr<sdktrace::SpanProcessor>(new sdktrace::BatchSpanProcessor(std::move(exporter), batch_options));
  943. auto processors = std::vector<std::unique_ptr<sdktrace::SpanProcessor> >();
  944. processors.push_back(std::move(processor));
  945. char buf[256];
  946. auto versionString = std::stringstream();
  947. versionString << ZEROTIER_ONE_VERSION_MAJOR << "." << ZEROTIER_ONE_VERSION_MINOR << "." << ZEROTIER_ONE_VERSION_REVISION;
  948. auto resource_attributes = sdkresource::ResourceAttributes { { "service.version", versionString.str() }, { "service.node_id", _node->identity().address().toString(buf) }, { "service.namespace", "com.zerotier.zerotier-one" } };
  949. auto resource = sdkresource::Resource::Create(resource_attributes);
  950. auto sampler = std::unique_ptr<sdktrace::Sampler>(new sdktrace::TraceIdRatioBasedSampler(_exporterSampleRate));
  951. auto tracer_context = std::make_unique<sdktrace::TracerContext>(std::move(processors), resource, std::move(sampler));
  952. _traceProvider = opentelemetry::nostd::shared_ptr<sdktrace::TracerProvider>(new sdktrace::TracerProvider(std::move(tracer_context)));
  953. sdktrace::Provider::SetTracerProvider(_traceProvider);
  954. }
  955. }
  956. void initMetrics()
  957. {
  958. if (! _exporterEndpoint.empty()) {
  959. // Set up OpenTelemetry metrics exporter
  960. // opentelemetry::exporter::otlp::OtlpGrpcExporterOptions opts;
  961. // opts.endpoint = _exporterEndpoint + "/v1/metrics";
  962. // auto exporter = std::unique_ptr<opentelemetry::exporter::otlp::OtlpGrpcExporter>(new opentelemetry::exporter::otlp::OtlpGrpcExporter(opts));
  963. // auto processor = std::unique_ptr<sdkmetrics::MetricReader>(new sdkmetrics::PeriodicExportingMetricReader(std::move(exporter)));
  964. // auto meter_provider = opentelemetry::v1::nostd::shared_ptr<sdkmetrics::MeterProvider>(new sdkmetrics::MeterProvider(std::move(processor)));
  965. // sdkmetrics::Provider::SetMeterProvider(meter_provider);
  966. }
  967. }
  968. void initLogging()
  969. {
  970. if (! _exporterEndpoint.empty()) {
  971. // Set up OpenTelemetry logging exporter
  972. // opentelemetry::exporter::otlp::OtlpGrpcExporterOptions opts;
  973. // opts.endpoint = _exporterEndpoint + "/v1/logs";
  974. // auto exporter = std::unique_ptr<opentelemetry::exporter::otlp::OtlpGrpcExporter>(new opentelemetry::exporter::otlp::OtlpGrpcExporter(opts));
  975. // auto processor = std::unique_ptr<opentelemetry::v1::sdk::logs::LogRecordProcessor>(new opentelemetry::v1::sdk::logs::SimpleLogRecordProcessor(std::move(exporter)));
  976. // auto logger_provider = opentelemetry::nostd::shared_ptr<opentelemetry::v1::sdk::logs::LoggerProvider>(new opentelemetry::v1::sdk::logs::LoggerProvider(std::move(processor)));
  977. // opentelemetry::logs::Provider::SetLoggerProvider(logger_provider);
  978. }
  979. }
  980. #endif
  981. virtual ReasonForTermination run()
  982. {
  983. try {
  984. {
  985. const std::string authTokenPath(_homePath + ZT_PATH_SEPARATOR_S "authtoken.secret");
  986. if (! OSUtils::readFile(authTokenPath.c_str(), _authToken)) {
  987. unsigned char foo[24];
  988. Utils::getSecureRandom(foo, sizeof(foo));
  989. _authToken = "";
  990. for (unsigned int i = 0; i < sizeof(foo); ++i)
  991. _authToken.push_back("abcdefghijklmnopqrstuvwxyz0123456789"[(unsigned long)foo[i] % 36]);
  992. if (! OSUtils::writeFile(authTokenPath.c_str(), _authToken)) {
  993. Mutex::Lock _l(_termReason_m);
  994. _termReason = ONE_UNRECOVERABLE_ERROR;
  995. _fatalErrorMessage = "authtoken.secret could not be written (try running with -U to prevent dropping of privileges)";
  996. return _termReason;
  997. }
  998. else {
  999. OSUtils::lockDownFile(authTokenPath.c_str(), false);
  1000. }
  1001. }
  1002. _authToken = _trimString(_authToken);
  1003. }
  1004. {
  1005. const std::string metricsTokenPath(_homePath + ZT_PATH_SEPARATOR_S "metricstoken.secret");
  1006. if (! OSUtils::readFile(metricsTokenPath.c_str(), _metricsToken)) {
  1007. unsigned char foo[24];
  1008. Utils::getSecureRandom(foo, sizeof(foo));
  1009. _metricsToken = "";
  1010. for (unsigned int i = 0; i < sizeof(foo); ++i)
  1011. _metricsToken.push_back("abcdefghijklmnopqrstuvwxyz0123456789"[(unsigned long)foo[i] % 36]);
  1012. if (! OSUtils::writeFile(metricsTokenPath.c_str(), _metricsToken)) {
  1013. Mutex::Lock _l(_termReason_m);
  1014. _termReason = ONE_UNRECOVERABLE_ERROR;
  1015. _fatalErrorMessage = "metricstoken.secret could not be written (try running with -U to prevent dropping of privileges)";
  1016. return _termReason;
  1017. }
  1018. else {
  1019. OSUtils::lockDownFile(metricsTokenPath.c_str(), false);
  1020. }
  1021. }
  1022. _metricsToken = _trimString(_metricsToken);
  1023. }
  1024. {
  1025. struct ZT_Node_Callbacks cb;
  1026. cb.version = 0;
  1027. cb.stateGetFunction = SnodeStateGetFunction;
  1028. cb.statePutFunction = SnodeStatePutFunction;
  1029. cb.wirePacketSendFunction = SnodeWirePacketSendFunction;
  1030. cb.virtualNetworkFrameFunction = SnodeVirtualNetworkFrameFunction;
  1031. cb.virtualNetworkConfigFunction = SnodeVirtualNetworkConfigFunction;
  1032. cb.eventCallback = SnodeEventCallback;
  1033. cb.pathCheckFunction = SnodePathCheckFunction;
  1034. cb.pathLookupFunction = SnodePathLookupFunction;
  1035. _node = new Node(this, (void*)0, &cb, OSUtils::now());
  1036. }
  1037. // local.conf
  1038. readLocalSettings();
  1039. applyLocalConfig();
  1040. #ifdef ZT_OPENTELEMETRY_ENABLED
  1041. fprintf(stderr, "OneServiceImpl::run: initializing OpenTelemetry...\n");
  1042. initTracing();
  1043. initMetrics();
  1044. initLogging();
  1045. #endif
  1046. // Save original port number to show it if bind error
  1047. const int _configuredPort = _primaryPort;
  1048. // Make sure we can use the primary port, and hunt for one if configured to do so
  1049. const int portTrials = (_primaryPort == 0) ? 256 : 1; // if port is 0, pick random
  1050. for (int k = 0; k < portTrials; ++k) {
  1051. if (_primaryPort == 0) {
  1052. unsigned int randp = 0;
  1053. Utils::getSecureRandom(&randp, sizeof(randp));
  1054. _primaryPort = 20000 + (randp % 45500);
  1055. }
  1056. if (_trialBind(_primaryPort)) {
  1057. _ports[0] = _primaryPort;
  1058. }
  1059. else {
  1060. _primaryPort = 0;
  1061. }
  1062. }
  1063. if (_ports[0] == 0) {
  1064. Mutex::Lock _l(_termReason_m);
  1065. _termReason = ONE_UNRECOVERABLE_ERROR;
  1066. _fatalErrorMessage = std::string("cannot bind to local control interface port ") + std::to_string(_configuredPort);
  1067. return _termReason;
  1068. }
  1069. // Save primary port to a file so CLIs and GUIs can learn it easily
  1070. char portstr[64];
  1071. OSUtils::ztsnprintf(portstr, sizeof(portstr), "%u", _ports[0]);
  1072. OSUtils::writeFile((_homePath + ZT_PATH_SEPARATOR_S "zerotier-one.port").c_str(), std::string(portstr));
  1073. // Attempt to bind to a secondary port.
  1074. // This exists because there are buggy NATs out there that fail if more
  1075. // than one device behind the same NAT tries to use the same internal
  1076. // private address port number. Buggy NATs are a running theme.
  1077. //
  1078. // This used to pick the secondary port based on the node ID until we
  1079. // discovered another problem: buggy routers and malicious traffic
  1080. // "detection". A lot of routers have such things built in these days
  1081. // and mis-detect ZeroTier traffic as malicious and block it resulting
  1082. // in a node that appears to be in a coma. Secondary ports are now
  1083. // randomized on startup.
  1084. if (_allowSecondaryPort) {
  1085. if (_secondaryPort) {
  1086. _ports[1] = _secondaryPort;
  1087. }
  1088. else {
  1089. _ports[1] = _getRandomPort();
  1090. }
  1091. }
  1092. #ifdef ZT_USE_MINIUPNPC
  1093. if (_portMappingEnabled) {
  1094. // If we're running uPnP/NAT-PMP, bind a *third* port for that. We can't
  1095. // use the other two ports for that because some NATs do really funky
  1096. // stuff with ports that are explicitly mapped that breaks things.
  1097. if (_tertiaryPort) {
  1098. _ports[2] = _tertiaryPort;
  1099. }
  1100. else {
  1101. _ports[2] = _tertiaryPort = _getRandomPort();
  1102. }
  1103. if (_ports[2]) {
  1104. char uniqueName[64];
  1105. OSUtils::ztsnprintf(uniqueName, sizeof(uniqueName), "ZeroTier/%.10llx@%u", _node->address(), _ports[2]);
  1106. _portMapper = new PortMapper(_ports[2], uniqueName);
  1107. }
  1108. }
  1109. #endif
  1110. #ifdef ZT_EXTOSDEP
  1111. {
  1112. int mgmtfd;
  1113. void* mgmtcookie;
  1114. ExtOsdep::started(&mgmtfd, &mgmtcookie);
  1115. _phy.wrapSocket(mgmtfd, mgmtcookie);
  1116. }
  1117. #endif
  1118. // Delete legacy iddb.d if present (cleanup)
  1119. OSUtils::rmDashRf((_homePath + ZT_PATH_SEPARATOR_S "iddb.d").c_str());
  1120. // Network controller is now enabled by default for desktop and server
  1121. _controller = new EmbeddedNetworkController(_node, _homePath.c_str(), _controllerDbPath.c_str(), _ports[0], _rc);
  1122. if (! _ssoRedirectURL.empty()) {
  1123. _controller->setSSORedirectURL(_ssoRedirectURL);
  1124. }
  1125. _node->setNetconfMaster((void*)_controller);
  1126. startHTTPControlPlane();
  1127. // Join existing networks in networks.d
  1128. {
  1129. std::vector<std::string> networksDotD(OSUtils::listDirectory((_homePath + ZT_PATH_SEPARATOR_S "networks.d").c_str()));
  1130. for (std::vector<std::string>::iterator f(networksDotD.begin()); f != networksDotD.end(); ++f) {
  1131. std::size_t dot = f->find_last_of('.');
  1132. if ((dot == 16) && (f->substr(16) == ".conf"))
  1133. _node->join(Utils::hexStrToU64(f->substr(0, dot).c_str()), (void*)0, (void*)0);
  1134. }
  1135. }
  1136. // Orbit existing moons in moons.d
  1137. {
  1138. std::vector<std::string> moonsDotD(OSUtils::listDirectory((_homePath + ZT_PATH_SEPARATOR_S "moons.d").c_str()));
  1139. for (std::vector<std::string>::iterator f(moonsDotD.begin()); f != moonsDotD.end(); ++f) {
  1140. std::size_t dot = f->find_last_of('.');
  1141. if ((dot == 16) && (f->substr(16) == ".moon"))
  1142. _node->orbit((void*)0, Utils::hexStrToU64(f->substr(0, dot).c_str()), 0);
  1143. }
  1144. }
  1145. // Main I/O loop
  1146. _nextBackgroundTaskDeadline = 0;
  1147. int64_t clockShouldBe = OSUtils::now();
  1148. _lastRestart = clockShouldBe;
  1149. int64_t lastTapMulticastGroupCheck = 0;
  1150. int64_t lastBindRefresh = 0;
  1151. int64_t lastUpdateCheck = clockShouldBe;
  1152. int64_t lastCleanedPeersDb = 0;
  1153. int64_t lastLocalConfFileCheck = OSUtils::now();
  1154. int64_t lastOnline = lastLocalConfFileCheck;
  1155. for (;;) {
  1156. _run_m.lock();
  1157. if (! _run) {
  1158. _run_m.unlock();
  1159. _termReason_m.lock();
  1160. _termReason = ONE_NORMAL_TERMINATION;
  1161. _termReason_m.unlock();
  1162. break;
  1163. }
  1164. else {
  1165. _run_m.unlock();
  1166. }
  1167. const int64_t now = OSUtils::now();
  1168. // Attempt to detect sleep/wake events by detecting delay overruns
  1169. bool restarted = false;
  1170. if ((now > clockShouldBe) && ((now - clockShouldBe) > 10000)) {
  1171. _lastRestart = now;
  1172. restarted = true;
  1173. }
  1174. // Check for updates (if enabled)
  1175. if ((_updater) && ((now - lastUpdateCheck) > 10000)) {
  1176. lastUpdateCheck = now;
  1177. if (_updater->check(now) && _updateAutoApply)
  1178. _updater->apply();
  1179. }
  1180. // Reload local.conf if anything changed recently
  1181. if ((now - lastLocalConfFileCheck) >= ZT_LOCAL_CONF_FILE_CHECK_INTERVAL) {
  1182. lastLocalConfFileCheck = now;
  1183. struct stat result;
  1184. if (stat((_homePath + ZT_PATH_SEPARATOR_S "local.conf").c_str(), &result) == 0) {
  1185. int64_t mod_time = result.st_mtime * 1000;
  1186. if ((now - mod_time) <= ZT_LOCAL_CONF_FILE_CHECK_INTERVAL) {
  1187. readLocalSettings();
  1188. applyLocalConfig();
  1189. }
  1190. }
  1191. }
  1192. // Refresh bindings in case device's interfaces have changed, and also sync routes to update any shadow routes (e.g. shadow default)
  1193. if (((now - lastBindRefresh) >= (_node->bondController()->inUse() ? ZT_BINDER_REFRESH_PERIOD / 4 : ZT_BINDER_REFRESH_PERIOD)) || restarted) {
  1194. // If secondary port is not configured to a constant value and we've been offline for a while,
  1195. // bind a new secondary port. This is a workaround for a "coma" issue caused by buggy NATs that stop
  1196. // working on one port after a while.
  1197. if (_secondaryPort == 0) {
  1198. if (_node->online()) {
  1199. lastOnline = now;
  1200. }
  1201. else if (now - lastOnline > (ZT_PEER_PING_PERIOD * 2) || restarted) {
  1202. lastOnline = now; // don't keep changing the port before we have a chance to connect
  1203. _ports[1] = _getRandomPort();
  1204. #if ZT_DEBUG == 1
  1205. fprintf(stderr, "Randomized secondary port. Now it's %d\n", _ports[1]);
  1206. #endif
  1207. }
  1208. }
  1209. unsigned int p[3];
  1210. unsigned int pc = 0;
  1211. for (int i = 0; i < 3; ++i) {
  1212. if (_ports[i])
  1213. p[pc++] = _ports[i];
  1214. }
  1215. if (! _forceTcpRelay) {
  1216. // Only bother binding UDP ports if we aren't forcing TCP-relay mode
  1217. _binder.refresh(_phy, p, pc, explicitBind, *this);
  1218. }
  1219. lastBindRefresh = now;
  1220. // Sync information about physical network interfaces
  1221. _node->clearLocalInterfaceAddresses();
  1222. #ifdef ZT_USE_MINIUPNPC
  1223. if (_portMapper) {
  1224. std::vector<InetAddress> mappedAddresses(_portMapper->get());
  1225. for (std::vector<InetAddress>::const_iterator ext(mappedAddresses.begin()); ext != mappedAddresses.end(); ++ext)
  1226. _node->addLocalInterfaceAddress(reinterpret_cast<const struct sockaddr_storage*>(&(*ext)));
  1227. }
  1228. #endif
  1229. std::vector<InetAddress> boundAddrs(_binder.allBoundLocalInterfaceAddresses());
  1230. for (std::vector<InetAddress>::const_iterator i(boundAddrs.begin()); i != boundAddrs.end(); ++i) {
  1231. _node->addLocalInterfaceAddress(reinterpret_cast<const struct sockaddr_storage*>(&(*i)));
  1232. }
  1233. {
  1234. Mutex::Lock _l(_nets_m);
  1235. for (std::map<uint64_t, NetworkState>::iterator n(_nets.begin()); n != _nets.end(); ++n) {
  1236. if (n->second.tap())
  1237. syncManagedStuff(n->second, false, true, false);
  1238. }
  1239. }
  1240. }
  1241. // Run background task processor in core if it's time to do so
  1242. int64_t dl = _nextBackgroundTaskDeadline;
  1243. if (dl <= now) {
  1244. _node->processBackgroundTasks((void*)0, now, &_nextBackgroundTaskDeadline);
  1245. dl = _nextBackgroundTaskDeadline;
  1246. }
  1247. // Close TCP fallback tunnel if we have direct UDP
  1248. if (! _forceTcpRelay && (_tcpFallbackTunnel) && ((now - _lastDirectReceiveFromGlobal) < (ZT_TCP_FALLBACK_AFTER / 2))) {
  1249. _phy.close(_tcpFallbackTunnel->sock);
  1250. }
  1251. // Sync multicast group memberships
  1252. if ((now - lastTapMulticastGroupCheck) >= ZT_TAP_CHECK_MULTICAST_INTERVAL) {
  1253. lastTapMulticastGroupCheck = now;
  1254. std::vector<std::pair<uint64_t, std::pair<std::vector<MulticastGroup>, std::vector<MulticastGroup> > > > mgChanges;
  1255. {
  1256. Mutex::Lock _l(_nets_m);
  1257. mgChanges.reserve(_nets.size() + 1);
  1258. for (std::map<uint64_t, NetworkState>::const_iterator n(_nets.begin()); n != _nets.end(); ++n) {
  1259. if (n->second.tap()) {
  1260. mgChanges.push_back(std::pair<uint64_t, std::pair<std::vector<MulticastGroup>, std::vector<MulticastGroup> > >(n->first, std::pair<std::vector<MulticastGroup>, std::vector<MulticastGroup> >()));
  1261. n->second.tap()->scanMulticastGroups(mgChanges.back().second.first, mgChanges.back().second.second);
  1262. }
  1263. }
  1264. }
  1265. for (std::vector<std::pair<uint64_t, std::pair<std::vector<MulticastGroup>, std::vector<MulticastGroup> > > >::iterator c(mgChanges.begin()); c != mgChanges.end(); ++c) {
  1266. for (std::vector<MulticastGroup>::iterator m(c->second.first.begin()); m != c->second.first.end(); ++m)
  1267. _node->multicastSubscribe((void*)0, c->first, m->mac().toInt(), m->adi());
  1268. for (std::vector<MulticastGroup>::iterator m(c->second.second.begin()); m != c->second.second.end(); ++m)
  1269. _node->multicastUnsubscribe(c->first, m->mac().toInt(), m->adi());
  1270. }
  1271. }
  1272. // Clean peers.d periodically
  1273. if ((now - lastCleanedPeersDb) >= 3600000) {
  1274. lastCleanedPeersDb = now;
  1275. OSUtils::cleanDirectory((_homePath + ZT_PATH_SEPARATOR_S "peers.d").c_str(), now - 2592000000LL); // delete older than 30 days
  1276. }
  1277. const unsigned long delay = (dl > now) ? (unsigned long)(dl - now) : 500;
  1278. clockShouldBe = now + (int64_t)delay;
  1279. _phy.poll(delay);
  1280. }
  1281. }
  1282. catch (std::exception& e) {
  1283. Mutex::Lock _l(_termReason_m);
  1284. _termReason = ONE_UNRECOVERABLE_ERROR;
  1285. _fatalErrorMessage = std::string("unexpected exception in main thread: ") + e.what();
  1286. }
  1287. catch (int e) {
  1288. Mutex::Lock _l(_termReason_m);
  1289. _termReason = ONE_UNRECOVERABLE_ERROR;
  1290. switch (e) {
  1291. case ZT_EXCEPTION_OUT_OF_BOUNDS: {
  1292. _fatalErrorMessage = "out of bounds exception";
  1293. break;
  1294. }
  1295. case ZT_EXCEPTION_OUT_OF_MEMORY: {
  1296. _fatalErrorMessage = "out of memory";
  1297. break;
  1298. }
  1299. case ZT_EXCEPTION_PRIVATE_KEY_REQUIRED: {
  1300. _fatalErrorMessage = "private key required";
  1301. break;
  1302. }
  1303. case ZT_EXCEPTION_INVALID_ARGUMENT: {
  1304. _fatalErrorMessage = "invalid argument";
  1305. break;
  1306. }
  1307. case ZT_EXCEPTION_INVALID_IDENTITY: {
  1308. _fatalErrorMessage = "invalid identity loaded from disk. Please remove identity.public and identity.secret from " + _homePath + " and try again";
  1309. break;
  1310. }
  1311. case ZT_EXCEPTION_INVALID_SERIALIZED_DATA_INVALID_TYPE: {
  1312. _fatalErrorMessage = "invalid serialized data: invalid type";
  1313. break;
  1314. }
  1315. case ZT_EXCEPTION_INVALID_SERIALIZED_DATA_OVERFLOW: {
  1316. _fatalErrorMessage = "invalid serialized data: overflow";
  1317. break;
  1318. }
  1319. case ZT_EXCEPTION_INVALID_SERIALIZED_DATA_INVALID_CRYPTOGRAPHIC_TOKEN: {
  1320. _fatalErrorMessage = "invalid serialized data: invalid cryptographic token";
  1321. break;
  1322. }
  1323. case ZT_EXCEPTION_INVALID_SERIALIZED_DATA_BAD_ENCODING: {
  1324. _fatalErrorMessage = "invalid serialized data: bad encoding";
  1325. break;
  1326. }
  1327. default: {
  1328. _fatalErrorMessage = "unexpected exception code: " + std::to_string(e);
  1329. break;
  1330. }
  1331. }
  1332. }
  1333. catch (...) {
  1334. Mutex::Lock _l(_termReason_m);
  1335. _termReason = ONE_UNRECOVERABLE_ERROR;
  1336. _fatalErrorMessage = "unexpected exception in main thread: unknown exception";
  1337. }
  1338. try {
  1339. Mutex::Lock _l(_tcpConnections_m);
  1340. while (! _tcpConnections.empty())
  1341. _phy.close((*_tcpConnections.begin())->sock);
  1342. }
  1343. catch (...) {
  1344. }
  1345. {
  1346. Mutex::Lock _l(_nets_m);
  1347. _nets.clear();
  1348. }
  1349. delete _updater;
  1350. _updater = (SoftwareUpdater*)0;
  1351. delete _node;
  1352. _node = (Node*)0;
  1353. return _termReason;
  1354. }
  1355. void readLocalSettings()
  1356. {
  1357. // Read local configuration
  1358. std::map<InetAddress, ZT_PhysicalPathConfiguration> ppc;
  1359. // LEGACY: support old "trustedpaths" flat file
  1360. FILE* trustpaths = fopen((_homePath + ZT_PATH_SEPARATOR_S "trustedpaths").c_str(), "r");
  1361. if (trustpaths) {
  1362. fprintf(stderr, "WARNING: 'trustedpaths' flat file format is deprecated in favor of path definitions in local.conf" ZT_EOL_S);
  1363. char buf[1024];
  1364. while (fgets(buf, sizeof(buf), trustpaths)) {
  1365. int fno = 0;
  1366. char* saveptr = (char*)0;
  1367. uint64_t trustedPathId = 0;
  1368. InetAddress trustedPathNetwork;
  1369. for (char* f = Utils::stok(buf, "=\r\n \t", &saveptr); (f); f = Utils::stok((char*)0, "=\r\n \t", &saveptr)) {
  1370. if (fno == 0) {
  1371. trustedPathId = Utils::hexStrToU64(f);
  1372. }
  1373. else if (fno == 1) {
  1374. trustedPathNetwork = InetAddress(f);
  1375. }
  1376. else
  1377. break;
  1378. ++fno;
  1379. }
  1380. if ((trustedPathId != 0) && ((trustedPathNetwork.ss_family == AF_INET) || (trustedPathNetwork.ss_family == AF_INET6)) && (trustedPathNetwork.netmaskBits() > 0)) {
  1381. ppc[trustedPathNetwork].trustedPathId = trustedPathId;
  1382. ppc[trustedPathNetwork].mtu = 0; // use default
  1383. }
  1384. }
  1385. fclose(trustpaths);
  1386. }
  1387. // Read local config file
  1388. Mutex::Lock _l2(_localConfig_m);
  1389. std::string lcbuf;
  1390. if (OSUtils::readFile((_homePath + ZT_PATH_SEPARATOR_S "local.conf").c_str(), lcbuf)) {
  1391. if (lcbuf.length() > 0) {
  1392. try {
  1393. _localConfig = OSUtils::jsonParse(lcbuf);
  1394. if (! _localConfig.is_object()) {
  1395. fprintf(stderr, "ERROR: unable to parse local.conf (root element is not a JSON object)" ZT_EOL_S);
  1396. exit(1);
  1397. }
  1398. }
  1399. catch (...) {
  1400. fprintf(stderr, "ERROR: unable to parse local.conf (invalid JSON)" ZT_EOL_S);
  1401. exit(1);
  1402. }
  1403. }
  1404. }
  1405. // Make a copy so lookups don't modify in place;
  1406. json lc(_localConfig);
  1407. // Get any trusted paths in local.conf (we'll parse the rest of physical[] elsewhere)
  1408. json& physical = lc["physical"];
  1409. if (physical.is_object()) {
  1410. for (json::iterator phy(physical.begin()); phy != physical.end(); ++phy) {
  1411. InetAddress net(OSUtils::jsonString(phy.key(), "").c_str());
  1412. if (net) {
  1413. if (phy.value().is_object()) {
  1414. uint64_t tpid;
  1415. if ((tpid = OSUtils::jsonInt(phy.value()["trustedPathId"], 0ULL)) != 0ULL) {
  1416. if ((net.ss_family == AF_INET) || (net.ss_family == AF_INET6))
  1417. ppc[net].trustedPathId = tpid;
  1418. }
  1419. ppc[net].mtu = (int)OSUtils::jsonInt(phy.value()["mtu"], 0ULL); // 0 means use default
  1420. }
  1421. }
  1422. }
  1423. }
  1424. json& settings = lc["settings"];
  1425. if (settings.is_object()) {
  1426. // Allow controller DB path to be put somewhere else
  1427. const std::string cdbp(OSUtils::jsonString(settings["controllerDbPath"], ""));
  1428. if (cdbp.length() > 0)
  1429. _controllerDbPath = cdbp;
  1430. _ssoRedirectURL = OSUtils::jsonString(settings["ssoRedirectURL"], "");
  1431. #ifdef ZT_CONTROLLER_USE_LIBPQ
  1432. // TODO: Redis config
  1433. json& redis = settings["redis"];
  1434. if (redis.is_object() && _rc == NULL) {
  1435. _rc = new RedisConfig;
  1436. _rc->hostname = OSUtils::jsonString(redis["hostname"], "");
  1437. _rc->port = OSUtils::jsonInt(redis["port"], 0);
  1438. _rc->password = OSUtils::jsonString(redis["password"], "");
  1439. _rc->clusterMode = OSUtils::jsonBool(redis["clusterMode"], false);
  1440. }
  1441. #endif
  1442. #ifdef ZT_OPENTELEMETRY_ENABLED
  1443. json& otel = settings["otel"];
  1444. if (otel.is_object()) {
  1445. _exporterEndpoint = OSUtils::jsonString(otel["exporterEndpoint"], "");
  1446. _exporterSampleRate = OSUtils::jsonDouble(otel["exporterSampleRate"], 1.0f);
  1447. if (_exporterEndpoint.empty()) {
  1448. fprintf(stderr, "WARNING: OpenTelemetry exporter endpoint is not set. Traces will not be exported." ZT_EOL_S);
  1449. }
  1450. if (_exporterSampleRate <= 0.0) {
  1451. fprintf(stderr, "WARNING: OpenTelemetry exporter sample rate is not set or invalid. Traces will not be exported." ZT_EOL_S);
  1452. }
  1453. }
  1454. else {
  1455. fprintf(stderr, "WARNING: OpenTelemetry exporter settings are not set. Traces will not be exported." ZT_EOL_S);
  1456. }
  1457. #else
  1458. fprintf(stderr, "WARNING: OpenTelemetry support is not enabled. Traces will not be exported." ZT_EOL_S);
  1459. #endif
  1460. // Bind to wildcard instead of to specific interfaces (disables full tunnel capability)
  1461. json& bind = settings["bind"];
  1462. if (bind.is_array()) {
  1463. for (unsigned long i = 0; i < bind.size(); ++i) {
  1464. const std::string ips(OSUtils::jsonString(bind[i], ""));
  1465. if (ips.length() > 0) {
  1466. InetAddress ip(ips.c_str());
  1467. if ((ip.ss_family == AF_INET) || (ip.ss_family == AF_INET6))
  1468. explicitBind.push_back(ip);
  1469. }
  1470. }
  1471. }
  1472. }
  1473. // Set trusted paths if there are any
  1474. if (! ppc.empty()) {
  1475. for (std::map<InetAddress, ZT_PhysicalPathConfiguration>::iterator i(ppc.begin()); i != ppc.end(); ++i)
  1476. _node->setPhysicalPathConfiguration(reinterpret_cast<const struct sockaddr_storage*>(&(i->first)), &(i->second));
  1477. }
  1478. }
  1479. virtual ReasonForTermination reasonForTermination() const
  1480. {
  1481. Mutex::Lock _l(_termReason_m);
  1482. return _termReason;
  1483. }
  1484. virtual std::string fatalErrorMessage() const
  1485. {
  1486. Mutex::Lock _l(_termReason_m);
  1487. return _fatalErrorMessage;
  1488. }
  1489. virtual std::string portDeviceName(uint64_t nwid) const
  1490. {
  1491. Mutex::Lock _l(_nets_m);
  1492. std::map<uint64_t, NetworkState>::const_iterator n(_nets.find(nwid));
  1493. if ((n != _nets.end()) && (n->second.tap()))
  1494. return n->second.tap()->deviceName();
  1495. else
  1496. return std::string();
  1497. }
  1498. #ifdef ZT_SDK
  1499. virtual std::string givenHomePath()
  1500. {
  1501. return _homePath;
  1502. }
  1503. void getRoutes(uint64_t nwid, void* routeArray, unsigned int* numRoutes)
  1504. {
  1505. Mutex::Lock _l(_nets_m);
  1506. NetworkState& n = _nets[nwid];
  1507. *numRoutes = *numRoutes < n.config().routeCount ? *numRoutes : n.config().routeCount;
  1508. for (unsigned int i = 0; i < *numRoutes; i++) {
  1509. ZT_VirtualNetworkRoute* vnr = (ZT_VirtualNetworkRoute*)routeArray;
  1510. memcpy(&vnr[i], &(n.config().routes[i]), sizeof(ZT_VirtualNetworkRoute));
  1511. }
  1512. }
  1513. virtual Node* getNode()
  1514. {
  1515. return _node;
  1516. }
  1517. #endif // ZT_SDK
  1518. virtual void terminate()
  1519. {
  1520. _run_m.lock();
  1521. _run = false;
  1522. _run_m.unlock();
  1523. _phy.whack();
  1524. }
  1525. virtual bool getNetworkSettings(const uint64_t nwid, NetworkSettings& settings) const
  1526. {
  1527. Mutex::Lock _l(_nets_m);
  1528. std::map<uint64_t, NetworkState>::const_iterator n(_nets.find(nwid));
  1529. if (n == _nets.end())
  1530. return false;
  1531. settings = n->second.settings();
  1532. return true;
  1533. }
  1534. virtual bool setNetworkSettings(const uint64_t nwid, const NetworkSettings& settings)
  1535. {
  1536. char nlcpath[4096];
  1537. OSUtils::ztsnprintf(nlcpath, sizeof(nlcpath), "%s" ZT_PATH_SEPARATOR_S "%.16llx.local.conf", _networksPath.c_str(), nwid);
  1538. FILE* out = fopen(nlcpath, "w");
  1539. if (out) {
  1540. fprintf(out, "allowManaged=%d\n", (int)settings.allowManaged);
  1541. fprintf(out, "allowGlobal=%d\n", (int)settings.allowGlobal);
  1542. fprintf(out, "allowDefault=%d\n", (int)settings.allowDefault);
  1543. fprintf(out, "allowDNS=%d\n", (int)settings.allowDNS);
  1544. fclose(out);
  1545. }
  1546. return true;
  1547. }
  1548. // Internal HTTP Control Plane
  1549. void startHTTPControlPlane()
  1550. {
  1551. // control plane endpoints
  1552. std::string bondShowPath = "/bond/show/([0-9a-fA-F]{10})";
  1553. std::string bondRotatePath = "/bond/rotate/([0-9a-fA-F]{10})";
  1554. std::string setBondMtuPath = "/bond/setmtu/([0-9]{1,6})/([a-zA-Z0-9_]{1,16})/([0-9a-fA-F\\.\\:]{1,39})";
  1555. std::string configPath = "/config";
  1556. std::string configPostPath = "/config/settings";
  1557. std::string healthPath = "/health";
  1558. std::string moonListPath = "/moon";
  1559. std::string moonPath = "/moon/([0-9a-fA-F]{10})";
  1560. std::string networkListPath = "/network";
  1561. std::string networkPath = "/network/([0-9a-fA-F]{16})";
  1562. std::string peerListPath = "/peer";
  1563. std::string peerPath = "/peer/([0-9a-fA-F]{10})";
  1564. std::string statusPath = "/status";
  1565. std::string metricsPath = "/metrics";
  1566. std::vector<std::string> noAuthEndpoints { "/sso", "/health" };
  1567. auto setContent = [=](const httplib::Request& req, httplib::Response& res, std::string content) {
  1568. if (req.has_param("jsonp")) {
  1569. if (content.length() > 0) {
  1570. res.set_content(req.get_param_value("jsonp") + "(" + content + ");", "application/javascript");
  1571. }
  1572. else {
  1573. res.set_content(req.get_param_value("jsonp") + "(null);", "application/javascript");
  1574. }
  1575. }
  1576. else {
  1577. if (content.length() > 0) {
  1578. res.set_content(content, "application/json");
  1579. }
  1580. else {
  1581. res.set_content("{}", "application/json");
  1582. }
  1583. }
  1584. };
  1585. //
  1586. // static file server for app ui'
  1587. //
  1588. if (_enableWebServer) {
  1589. static std::string appUiPath = "/app";
  1590. static char appUiDir[16384];
  1591. sprintf(appUiDir, "%s%s", _homePath.c_str(), appUiPath.c_str());
  1592. auto ret = _controlPlane.set_mount_point(appUiPath, appUiDir);
  1593. _controlPlaneV6.set_mount_point(appUiPath, appUiDir);
  1594. if (! ret) {
  1595. fprintf(stderr, "Mounting app directory failed. Creating it. Path: %s - Dir: %s\n", appUiPath.c_str(), appUiDir);
  1596. if (! OSUtils::mkdir(appUiDir)) {
  1597. fprintf(stderr, "Could not create app directory either. Path: %s - Dir: %s\n", appUiPath.c_str(), appUiDir);
  1598. }
  1599. else {
  1600. ret = _controlPlane.set_mount_point(appUiPath, appUiDir);
  1601. _controlPlaneV6.set_mount_point(appUiPath, appUiDir);
  1602. if (! ret) {
  1603. fprintf(stderr, "Really could not create and mount directory. Path: %s - Dir: %s\nWeb apps won't work.\n", appUiPath.c_str(), appUiDir);
  1604. }
  1605. }
  1606. }
  1607. if (ret) {
  1608. // fallback to /index.html for paths that don't exist for SPAs
  1609. auto indexFallbackGet = [](const httplib::Request& req, httplib::Response& res) {
  1610. // fprintf(stderr, "fallback \n");
  1611. auto match = req.matches[1];
  1612. if (match.matched) {
  1613. // fallback
  1614. char indexHtmlPath[16384];
  1615. sprintf(indexHtmlPath, "%s/%s/%s", appUiDir, match.str().c_str(), "index.html");
  1616. // fprintf(stderr, "fallback path %s\n", indexHtmlPath);
  1617. std::string indexHtml;
  1618. if (! OSUtils::readFile(indexHtmlPath, indexHtml)) {
  1619. res.status = 500;
  1620. return;
  1621. }
  1622. res.set_content(indexHtml.c_str(), "text/html");
  1623. }
  1624. else {
  1625. res.status = 500;
  1626. return;
  1627. }
  1628. };
  1629. auto slashRedirect = [](const httplib::Request& req, httplib::Response& res) {
  1630. // fprintf(stderr, "redirect \n");
  1631. // add .html
  1632. std::string htmlFile;
  1633. char htmlPath[16384];
  1634. sprintf(htmlPath, "%s%s%s", appUiDir, (req.path).substr(appUiPath.length()).c_str(), ".html");
  1635. // fprintf(stderr, "path: %s\n", htmlPath);
  1636. if (OSUtils::readFile(htmlPath, htmlFile)) {
  1637. res.set_content(htmlFile.c_str(), "text/html");
  1638. return;
  1639. }
  1640. else {
  1641. res.status = 301;
  1642. res.set_header("location", req.path + "/");
  1643. }
  1644. };
  1645. // auto missingAssetGet = [&, setContent](const httplib::Request &req, httplib::Response &res) {
  1646. // fprintf(stderr, "missing \n");
  1647. // res.status = 404;
  1648. // std::string html = "oops";
  1649. // res.set_content(html, "text/plain");
  1650. // res.set_header("Content-Type", "text/plain");
  1651. // return;
  1652. // };
  1653. // auto fix no trailing slash by adding .html or redirecting to path/
  1654. _controlPlane.Get(appUiPath + R"((/[\w|-]+)+$)", slashRedirect);
  1655. _controlPlaneV6.Get(appUiPath + R"((/[\w|-]+)+$)", slashRedirect);
  1656. // // 404 missing assets for *.ext paths
  1657. // s.Get(appUiPath + R"(/\.\w+$)", missingAssetGet);
  1658. // sv6.Get(appUiPath + R"(/\.\w+$)", missingAssetGet);
  1659. // fallback to index.html for unknown paths/files
  1660. _controlPlane.Get(appUiPath + R"((/[\w|-]+)(/[\w|-]+)*/$)", indexFallbackGet);
  1661. _controlPlaneV6.Get(appUiPath + R"((/[\w|-]+)(/[\w|-]+)*/$)", indexFallbackGet);
  1662. }
  1663. }
  1664. auto authCheck = [=](const httplib::Request& req, httplib::Response& res) {
  1665. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  1666. auto tracer = provider->GetTracer("http_control_plane");
  1667. auto span = tracer->StartSpan("http_control_plane::authCheck");
  1668. auto scope = tracer->WithActiveSpan(span);
  1669. if (req.path == "/metrics") {
  1670. auto mspan = tracer->StartSpan("http_control_plane::metricsAuth");
  1671. auto mscope = tracer->WithActiveSpan(mspan);
  1672. if (req.has_header("x-zt1-auth")) {
  1673. std::string token = req.get_header_value("x-zt1-auth");
  1674. if (token == _metricsToken || token == _authToken) {
  1675. return httplib::Server::HandlerResponse::Unhandled;
  1676. }
  1677. }
  1678. else if (req.has_param("auth")) {
  1679. std::string token = req.get_param_value("auth");
  1680. if (token == _metricsToken || token == _authToken) {
  1681. return httplib::Server::HandlerResponse::Unhandled;
  1682. }
  1683. }
  1684. else if (req.has_header("authorization")) {
  1685. std::string auth = req.get_header_value("authorization");
  1686. if (bearerTokenValid(auth, _metricsToken) || bearerTokenValid(auth, _authToken)) {
  1687. return httplib::Server::HandlerResponse::Unhandled;
  1688. }
  1689. }
  1690. span->SetAttribute("auth", "failed");
  1691. setContent(req, res, "{}");
  1692. res.status = 401;
  1693. return httplib::Server::HandlerResponse::Handled;
  1694. }
  1695. else {
  1696. std::string r = req.remote_addr;
  1697. InetAddress remoteAddr(r.c_str());
  1698. bool ipAllowed = false;
  1699. bool isAuth = false;
  1700. // If localhost, allow
  1701. if (remoteAddr.ipScope() == InetAddress::IP_SCOPE_LOOPBACK) {
  1702. ipAllowed = true;
  1703. }
  1704. if (! ipAllowed) {
  1705. for (auto i = _allowManagementFrom.begin(); i != _allowManagementFrom.end(); ++i) {
  1706. if (i->containsAddress(remoteAddr)) {
  1707. ipAllowed = true;
  1708. break;
  1709. }
  1710. }
  1711. }
  1712. if (ipAllowed) {
  1713. // auto-pass endpoints in `noAuthEndpoints`. No auth token required
  1714. if (std::find(noAuthEndpoints.begin(), noAuthEndpoints.end(), req.path) != noAuthEndpoints.end()) {
  1715. isAuth = true;
  1716. }
  1717. // Web Apps base path
  1718. if (req.path.rfind("/app", 0) == 0) { // starts with /app
  1719. isAuth = true;
  1720. }
  1721. if (! isAuth) {
  1722. // check auth token
  1723. if (req.has_header("x-zt1-auth")) {
  1724. std::string token = req.get_header_value("x-zt1-auth");
  1725. if (token == _authToken) {
  1726. isAuth = true;
  1727. }
  1728. }
  1729. else if (req.has_param("auth")) {
  1730. std::string token = req.get_param_value("auth");
  1731. if (token == _authToken) {
  1732. isAuth = true;
  1733. }
  1734. }
  1735. else if (req.has_header("authorization")) {
  1736. std::string auth = req.get_header_value("authorization");
  1737. isAuth = bearerTokenValid(auth, _authToken);
  1738. }
  1739. }
  1740. }
  1741. span->SetAttribute("ipAllowed", ipAllowed);
  1742. if (ipAllowed && isAuth) {
  1743. return httplib::Server::HandlerResponse::Unhandled;
  1744. }
  1745. span->SetAttribute("auth", "failed");
  1746. setContent(req, res, "{}");
  1747. res.status = 401;
  1748. return httplib::Server::HandlerResponse::Handled;
  1749. }
  1750. };
  1751. auto bondShow = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  1752. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  1753. auto tracer = provider->GetTracer("http_control_plane");
  1754. auto span = tracer->StartSpan("http_control_plane::bondShow");
  1755. auto scope = tracer->WithActiveSpan(span);
  1756. if (! _node->bondController()->inUse()) {
  1757. setContent(req, res, "");
  1758. res.status = 400;
  1759. return;
  1760. }
  1761. ZT_PeerList* pl = _node->peers();
  1762. if (pl) {
  1763. bool foundBond = false;
  1764. auto id = req.matches[1];
  1765. auto out = json::object();
  1766. uint64_t wantp = Utils::hexStrToU64(id.str().c_str());
  1767. for (unsigned long i = 0; i < pl->peerCount; ++i) {
  1768. if (pl->peers[i].address == wantp) {
  1769. SharedPtr<Bond> bond = _node->bondController()->getBondByPeerId(wantp);
  1770. if (bond) {
  1771. _peerToJson(out, &(pl->peers[i]), bond, (_tcpFallbackTunnel != (TcpConnection*)0));
  1772. setContent(req, res, out.dump());
  1773. foundBond = true;
  1774. }
  1775. else {
  1776. setContent(req, res, "");
  1777. res.status = 400;
  1778. }
  1779. break;
  1780. }
  1781. }
  1782. if (! foundBond) {
  1783. setContent(req, res, "");
  1784. res.status = 400;
  1785. }
  1786. }
  1787. _node->freeQueryResult((void*)pl);
  1788. };
  1789. _controlPlane.Get(bondShowPath, bondShow);
  1790. _controlPlaneV6.Get(bondShowPath, bondShow);
  1791. auto bondRotate = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  1792. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  1793. auto tracer = provider->GetTracer("http_control_plane");
  1794. auto span = tracer->StartSpan("http_control_plane::bondRotate");
  1795. auto scope = tracer->WithActiveSpan(span);
  1796. if (! _node->bondController()->inUse()) {
  1797. setContent(req, res, "");
  1798. res.status = 400;
  1799. return;
  1800. }
  1801. auto bondID = req.matches[1];
  1802. uint64_t id = Utils::hexStrToU64(bondID.str().c_str());
  1803. SharedPtr<Bond> bond = _node->bondController()->getBondByPeerId(id);
  1804. if (bond) {
  1805. if (bond->abForciblyRotateLink()) {
  1806. res.status = 200;
  1807. }
  1808. else {
  1809. res.status = 400;
  1810. }
  1811. }
  1812. else {
  1813. fprintf(stderr, "unable to find bond to peer %llx\n", (unsigned long long)id);
  1814. res.status = 400;
  1815. }
  1816. setContent(req, res, "{}");
  1817. };
  1818. _controlPlane.Post(bondRotatePath, bondRotate);
  1819. _controlPlane.Put(bondRotatePath, bondRotate);
  1820. _controlPlaneV6.Post(bondRotatePath, bondRotate);
  1821. _controlPlaneV6.Put(bondRotatePath, bondRotate);
  1822. auto setMtu = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  1823. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  1824. auto tracer = provider->GetTracer("http_control_plane");
  1825. auto span = tracer->StartSpan("http_control_plane::setMtu");
  1826. auto scope = tracer->WithActiveSpan(span);
  1827. if (! _node->bondController()->inUse()) {
  1828. setContent(req, res, "Bonding layer isn't active yet");
  1829. res.status = 400;
  1830. return;
  1831. }
  1832. uint32_t mtu = atoi(req.matches[1].str().c_str());
  1833. if (mtu < 68 || mtu > 65535) {
  1834. setContent(req, res, "Specified MTU is not reasonable");
  1835. res.status = 400;
  1836. return;
  1837. }
  1838. res.status = _node->bondController()->setAllMtuByTuple(mtu, req.matches[2].str().c_str(), req.matches[3].str().c_str()) ? 200 : 400;
  1839. if (res.status == 400) {
  1840. setContent(req, res, "Unable to find specified link");
  1841. return;
  1842. }
  1843. setContent(req, res, "{}");
  1844. };
  1845. _controlPlane.Post(setBondMtuPath, setMtu);
  1846. _controlPlane.Put(setBondMtuPath, setMtu);
  1847. _controlPlaneV6.Post(setBondMtuPath, setMtu);
  1848. _controlPlaneV6.Put(setBondMtuPath, setMtu);
  1849. auto getConfig = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  1850. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  1851. auto tracer = provider->GetTracer("http_control_plane");
  1852. auto span = tracer->StartSpan("http_control_plane::getConfig");
  1853. auto scope = tracer->WithActiveSpan(span);
  1854. std::string config;
  1855. {
  1856. Mutex::Lock lc(_localConfig_m);
  1857. config = _localConfig.dump();
  1858. }
  1859. if (config == "null") {
  1860. config = "{}";
  1861. }
  1862. setContent(req, res, config);
  1863. };
  1864. _controlPlane.Get(configPath, getConfig);
  1865. _controlPlaneV6.Get(configPath, getConfig);
  1866. auto configPost = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  1867. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  1868. auto tracer = provider->GetTracer("http_control_plane");
  1869. auto span = tracer->StartSpan("http_control_plane::configPost");
  1870. auto scope = tracer->WithActiveSpan(span);
  1871. json j(OSUtils::jsonParse(req.body));
  1872. if (j.is_object()) {
  1873. Mutex::Lock lcl(_localConfig_m);
  1874. json lc(_localConfig);
  1875. for (json::const_iterator s(j.begin()); s != j.end(); ++s) {
  1876. lc["settings"][s.key()] = s.value();
  1877. }
  1878. std::string lcStr = OSUtils::jsonDump(lc, 4);
  1879. if (OSUtils::writeFile((_homePath + ZT_PATH_SEPARATOR_S "local.conf").c_str(), lcStr)) {
  1880. _localConfig = lc;
  1881. }
  1882. }
  1883. setContent(req, res, "{}");
  1884. };
  1885. _controlPlane.Post(configPostPath, configPost);
  1886. _controlPlane.Put(configPostPath, configPost);
  1887. _controlPlaneV6.Post(configPostPath, configPost);
  1888. _controlPlaneV6.Put(configPostPath, configPost);
  1889. auto healthGet = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  1890. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  1891. auto tracer = provider->GetTracer("http_control_plane");
  1892. auto span = tracer->StartSpan("http_control_plane::healthGet");
  1893. auto scope = tracer->WithActiveSpan(span);
  1894. json out = json::object();
  1895. char tmp[256];
  1896. ZT_NodeStatus status;
  1897. _node->status(&status);
  1898. out["online"] = (bool)(status.online != 0);
  1899. out["versionMajor"] = ZEROTIER_ONE_VERSION_MAJOR;
  1900. out["versionMinor"] = ZEROTIER_ONE_VERSION_MINOR;
  1901. out["versionRev"] = ZEROTIER_ONE_VERSION_REVISION;
  1902. out["versionBuild"] = ZEROTIER_ONE_VERSION_BUILD;
  1903. OSUtils::ztsnprintf(tmp, sizeof(tmp), "%d.%d.%d", ZEROTIER_ONE_VERSION_MAJOR, ZEROTIER_ONE_VERSION_MINOR, ZEROTIER_ONE_VERSION_REVISION);
  1904. out["version"] = tmp;
  1905. out["clock"] = OSUtils::now();
  1906. setContent(req, res, out.dump());
  1907. };
  1908. _controlPlane.Get(healthPath, healthGet);
  1909. _controlPlaneV6.Get(healthPath, healthGet);
  1910. auto moonListGet = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  1911. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  1912. auto tracer = provider->GetTracer("http_control_plane");
  1913. auto span = tracer->StartSpan("http_control_plane::moonListGet");
  1914. auto scope = tracer->WithActiveSpan(span);
  1915. std::vector<World> moons(_node->moons());
  1916. auto out = json::array();
  1917. for (auto i = moons.begin(); i != moons.end(); ++i) {
  1918. json mj;
  1919. _moonToJson(mj, *i);
  1920. out.push_back(mj);
  1921. }
  1922. setContent(req, res, out.dump());
  1923. };
  1924. _controlPlane.Get(moonListPath, moonListGet);
  1925. _controlPlaneV6.Get(moonListPath, moonListGet);
  1926. auto moonGet = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  1927. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  1928. auto tracer = provider->GetTracer("http_control_plane");
  1929. auto span = tracer->StartSpan("http_control_plane::moonGet");
  1930. auto scope = tracer->WithActiveSpan(span);
  1931. std::vector<World> moons(_node->moons());
  1932. auto input = req.matches[1];
  1933. auto out = json::object();
  1934. const uint64_t id = Utils::hexStrToU64(input.str().c_str());
  1935. for (auto i = moons.begin(); i != moons.end(); ++i) {
  1936. if (i->id() == id) {
  1937. _moonToJson(out, *i);
  1938. break;
  1939. }
  1940. }
  1941. setContent(req, res, out.dump());
  1942. };
  1943. _controlPlane.Get(moonPath, moonGet);
  1944. _controlPlaneV6.Get(moonPath, moonGet);
  1945. auto moonPost = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  1946. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  1947. auto tracer = provider->GetTracer("http_control_plane");
  1948. auto span = tracer->StartSpan("http_control_plane::moonPost");
  1949. auto scope = tracer->WithActiveSpan(span);
  1950. auto input = req.matches[1];
  1951. uint64_t seed = 0;
  1952. try {
  1953. json j(OSUtils::jsonParse(req.body));
  1954. if (j.is_object()) {
  1955. seed = Utils::hexStrToU64(OSUtils::jsonString(j["seed"], "0").c_str());
  1956. }
  1957. }
  1958. catch (...) {
  1959. // discard invalid JSON
  1960. }
  1961. std::vector<World> moons(_node->moons());
  1962. const uint64_t id = Utils::hexStrToU64(input.str().c_str());
  1963. bool found = false;
  1964. auto out = json::object();
  1965. for (std::vector<World>::const_iterator m(moons.begin()); m != moons.end(); ++m) {
  1966. if (m->id() == id) {
  1967. _moonToJson(out, *m);
  1968. found = true;
  1969. break;
  1970. }
  1971. }
  1972. if (! found && seed != 0) {
  1973. char tmp[64];
  1974. OSUtils::ztsnprintf(tmp, sizeof(tmp), "%.16llx", id);
  1975. out["id"] = tmp;
  1976. out["roots"] = json::array();
  1977. out["timestamp"] = 0;
  1978. out["signature"] = json();
  1979. out["updatesMustBeSignedBy"] = json();
  1980. out["waiting"] = true;
  1981. _node->orbit((void*)0, id, seed);
  1982. }
  1983. setContent(req, res, out.dump());
  1984. };
  1985. _controlPlane.Post(moonPath, moonPost);
  1986. _controlPlane.Put(moonPath, moonPost);
  1987. _controlPlaneV6.Post(moonPath, moonPost);
  1988. _controlPlaneV6.Put(moonPath, moonPost);
  1989. auto moonDelete = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  1990. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  1991. auto tracer = provider->GetTracer("http_control_plane");
  1992. auto span = tracer->StartSpan("http_control_plane::moonDelete");
  1993. auto scope = tracer->WithActiveSpan(span);
  1994. auto input = req.matches[1];
  1995. uint64_t id = Utils::hexStrToU64(input.str().c_str());
  1996. auto out = json::object();
  1997. _node->deorbit((void*)0, id);
  1998. out["result"] = true;
  1999. setContent(req, res, out.dump());
  2000. };
  2001. _controlPlane.Delete(moonPath, moonDelete);
  2002. auto networkListGet = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  2003. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  2004. auto tracer = provider->GetTracer("http_control_plane");
  2005. auto span = tracer->StartSpan("http_control_plane::networkListGet");
  2006. auto scope = tracer->WithActiveSpan(span);
  2007. Mutex::Lock _l(_nets_m);
  2008. auto out = json::array();
  2009. for (auto it = _nets.begin(); it != _nets.end(); ++it) {
  2010. NetworkState& ns = it->second;
  2011. json nj;
  2012. _networkToJson(nj, ns);
  2013. out.push_back(nj);
  2014. }
  2015. setContent(req, res, out.dump());
  2016. };
  2017. _controlPlane.Get(networkListPath, networkListGet);
  2018. _controlPlaneV6.Get(networkListPath, networkListGet);
  2019. auto networkGet = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  2020. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  2021. auto tracer = provider->GetTracer("http_control_plane");
  2022. auto span = tracer->StartSpan("http_control_plane::networkGet");
  2023. auto scope = tracer->WithActiveSpan(span);
  2024. Mutex::Lock _l(_nets_m);
  2025. auto input = req.matches[1];
  2026. const uint64_t nwid = Utils::hexStrToU64(input.str().c_str());
  2027. if (_nets.find(nwid) != _nets.end()) {
  2028. auto out = json::object();
  2029. NetworkState& ns = _nets[nwid];
  2030. _networkToJson(out, ns);
  2031. setContent(req, res, out.dump());
  2032. return;
  2033. }
  2034. setContent(req, res, "");
  2035. res.status = 404;
  2036. };
  2037. _controlPlane.Get(networkPath, networkGet);
  2038. _controlPlaneV6.Get(networkPath, networkGet);
  2039. auto networkPost = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  2040. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  2041. auto tracer = provider->GetTracer("http_control_plane");
  2042. auto span = tracer->StartSpan("http_control_plane::networkPost");
  2043. auto scope = tracer->WithActiveSpan(span);
  2044. auto input = req.matches[1];
  2045. uint64_t wantnw = Utils::hexStrToU64(input.str().c_str());
  2046. _node->join(wantnw, (void*)0, (void*)0);
  2047. auto out = json::object();
  2048. Mutex::Lock l(_nets_m);
  2049. bool allowDefault = false;
  2050. if (! _nets.empty()) {
  2051. NetworkState& ns = _nets[wantnw];
  2052. try {
  2053. json j(OSUtils::jsonParse(req.body));
  2054. json& allowManaged = j["allowManaged"];
  2055. if (allowManaged.is_boolean()) {
  2056. ns.setAllowManaged((bool)allowManaged);
  2057. }
  2058. json& allowGlobal = j["allowGlobal"];
  2059. if (allowGlobal.is_boolean()) {
  2060. ns.setAllowGlobal((bool)allowGlobal);
  2061. }
  2062. json& _allowDefault = j["allowDefault"];
  2063. if (_allowDefault.is_boolean()) {
  2064. allowDefault = _allowDefault;
  2065. ns.setAllowDefault((bool)allowDefault);
  2066. }
  2067. json& allowDNS = j["allowDNS"];
  2068. if (allowDNS.is_boolean()) {
  2069. ns.setAllowDNS((bool)allowDNS);
  2070. }
  2071. }
  2072. catch (...) {
  2073. // discard invalid JSON
  2074. }
  2075. setNetworkSettings(wantnw, ns.settings());
  2076. if (ns.tap()) {
  2077. syncManagedStuff(ns, true, true, true);
  2078. }
  2079. _networkToJson(out, ns);
  2080. }
  2081. #ifdef __FreeBSD__
  2082. if (! ! allowDefault) {
  2083. res.status = 400;
  2084. setContent(req, res, "Allow Default does not work properly on FreeBSD. See #580");
  2085. }
  2086. else {
  2087. setContent(req, res, out.dump());
  2088. }
  2089. #else
  2090. setContent(req, res, out.dump());
  2091. #endif
  2092. };
  2093. _controlPlane.Post(networkPath, networkPost);
  2094. _controlPlane.Put(networkPath, networkPost);
  2095. _controlPlaneV6.Post(networkPath, networkPost);
  2096. _controlPlaneV6.Put(networkPath, networkPost);
  2097. auto networkDelete = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  2098. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  2099. auto tracer = provider->GetTracer("http_control_plane");
  2100. auto span = tracer->StartSpan("http_control_plane::networkDelete");
  2101. auto scope = tracer->WithActiveSpan(span);
  2102. auto input = req.matches[1];
  2103. auto out = json::object();
  2104. ZT_VirtualNetworkList* nws = _node->networks();
  2105. uint64_t wantnw = Utils::hexStrToU64(input.str().c_str());
  2106. for (unsigned long i = 0; i < nws->networkCount; ++i) {
  2107. if (nws->networks[i].nwid == wantnw) {
  2108. _node->leave(wantnw, (void**)0, (void*)0);
  2109. out["result"] = true;
  2110. }
  2111. }
  2112. _node->freeQueryResult((void*)nws);
  2113. setContent(req, res, out.dump());
  2114. };
  2115. _controlPlane.Delete(networkPath, networkDelete);
  2116. _controlPlaneV6.Delete(networkPath, networkDelete);
  2117. auto peerListGet = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  2118. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  2119. auto tracer = provider->GetTracer("http_control_plane");
  2120. auto span = tracer->StartSpan("http_control_plane::peerListGet");
  2121. auto scope = tracer->WithActiveSpan(span);
  2122. ZT_PeerList* pl = _node->peers();
  2123. auto out = nlohmann::json::array();
  2124. for (unsigned long i = 0; i < pl->peerCount; ++i) {
  2125. nlohmann::json pj;
  2126. SharedPtr<Bond> bond = SharedPtr<Bond>();
  2127. if (pl->peers[i].isBonded) {
  2128. const uint64_t id = pl->peers[i].address;
  2129. bond = _node->bondController()->getBondByPeerId(id);
  2130. }
  2131. _peerToJson(pj, &(pl->peers[i]), bond, (_tcpFallbackTunnel != (TcpConnection*)0));
  2132. out.push_back(pj);
  2133. }
  2134. _node->freeQueryResult((void*)pl);
  2135. setContent(req, res, out.dump());
  2136. };
  2137. _controlPlane.Get(peerListPath, peerListGet);
  2138. _controlPlaneV6.Get(peerListPath, peerListGet);
  2139. auto peerGet = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  2140. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  2141. auto tracer = provider->GetTracer("http_control_plane");
  2142. auto span = tracer->StartSpan("http_control_plane::peerGet");
  2143. auto scope = tracer->WithActiveSpan(span);
  2144. ZT_PeerList* pl = _node->peers();
  2145. auto input = req.matches[1];
  2146. uint64_t wantp = Utils::hexStrToU64(input.str().c_str());
  2147. auto out = json::object();
  2148. for (unsigned long i = 0; i < pl->peerCount; ++i) {
  2149. if (pl->peers[i].address == wantp) {
  2150. SharedPtr<Bond> bond = SharedPtr<Bond>();
  2151. if (pl->peers[i].isBonded) {
  2152. bond = _node->bondController()->getBondByPeerId(wantp);
  2153. }
  2154. _peerToJson(out, &(pl->peers[i]), bond, (_tcpFallbackTunnel != (TcpConnection*)0));
  2155. break;
  2156. }
  2157. }
  2158. _node->freeQueryResult((void*)pl);
  2159. setContent(req, res, out.dump());
  2160. };
  2161. _controlPlane.Get(peerPath, peerGet);
  2162. _controlPlaneV6.Get(peerPath, peerGet);
  2163. auto statusGet = [&, setContent](const httplib::Request& req, httplib::Response& res) {
  2164. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  2165. auto tracer = provider->GetTracer("http_control_plane");
  2166. auto span = tracer->StartSpan("http_control_plane::statusGet");
  2167. auto scope = tracer->WithActiveSpan(span);
  2168. ZT_NodeStatus status;
  2169. _node->status(&status);
  2170. auto out = json::object();
  2171. char tmp[256] = {};
  2172. OSUtils::ztsnprintf(tmp, sizeof(tmp), "%.10llx", status.address);
  2173. out["address"] = tmp;
  2174. out["publicIdentity"] = status.publicIdentity;
  2175. out["online"] = (bool)(status.online != 0);
  2176. out["tcpFallbackActive"] = (_tcpFallbackTunnel != (TcpConnection*)0);
  2177. out["versionMajor"] = ZEROTIER_ONE_VERSION_MAJOR;
  2178. out["versionMinor"] = ZEROTIER_ONE_VERSION_MINOR;
  2179. out["versionRev"] = ZEROTIER_ONE_VERSION_REVISION;
  2180. out["versionBuild"] = ZEROTIER_ONE_VERSION_BUILD;
  2181. OSUtils::ztsnprintf(tmp, sizeof(tmp), "%d.%d.%d", ZEROTIER_ONE_VERSION_MAJOR, ZEROTIER_ONE_VERSION_MINOR, ZEROTIER_ONE_VERSION_REVISION);
  2182. out["version"] = tmp;
  2183. out["clock"] = OSUtils::now();
  2184. {
  2185. Mutex::Lock _l(_localConfig_m);
  2186. out["config"] = _localConfig;
  2187. }
  2188. json& settings = out["config"]["settings"];
  2189. settings["allowTcpFallbackRelay"] = OSUtils::jsonBool(settings["allowTcpFallbackRelay"], _allowTcpFallbackRelay);
  2190. settings["forceTcpRelay"] = OSUtils::jsonBool(settings["forceTcpRelay"], _forceTcpRelay);
  2191. settings["primaryPort"] = OSUtils::jsonInt(settings["primaryPort"], (uint64_t)_primaryPort) & 0xffff;
  2192. settings["secondaryPort"] = OSUtils::jsonInt(settings["secondaryPort"], (uint64_t)_ports[1]) & 0xffff;
  2193. settings["tertiaryPort"] = OSUtils::jsonInt(settings["tertiaryPort"], (uint64_t)_tertiaryPort) & 0xffff;
  2194. settings["homeDir"] = _homePath;
  2195. // Enumerate all local address/port pairs that this node is listening on
  2196. std::vector<InetAddress> boundAddrs(_binder.allBoundLocalInterfaceAddresses());
  2197. auto boundAddrArray = json::array();
  2198. for (int i = 0; i < boundAddrs.size(); i++) {
  2199. char ipBuf[64] = { 0 };
  2200. boundAddrs[i].toString(ipBuf);
  2201. boundAddrArray.push_back(ipBuf);
  2202. }
  2203. settings["listeningOn"] = boundAddrArray;
  2204. // Enumerate all external address/port pairs that are reported for this node
  2205. std::vector<InetAddress> surfaceAddrs = _node->SurfaceAddresses();
  2206. auto surfaceAddrArray = json::array();
  2207. for (int i = 0; i < surfaceAddrs.size(); i++) {
  2208. char ipBuf[64] = { 0 };
  2209. surfaceAddrs[i].toString(ipBuf);
  2210. surfaceAddrArray.push_back(ipBuf);
  2211. }
  2212. settings["surfaceAddresses"] = surfaceAddrArray;
  2213. #ifdef ZT_USE_MINIUPNPC
  2214. settings["portMappingEnabled"] = OSUtils::jsonBool(settings["portMappingEnabled"], true);
  2215. #else
  2216. settings["portMappingEnabled"] = false; // not supported in build
  2217. #endif
  2218. #ifndef ZT_SDK
  2219. settings["softwareUpdate"] = OSUtils::jsonString(settings["softwareUpdate"], ZT_SOFTWARE_UPDATE_DEFAULT);
  2220. settings["softwareUpdateChannel"] = OSUtils::jsonString(settings["softwareUpdateChannel"], ZT_SOFTWARE_UPDATE_DEFAULT_CHANNEL);
  2221. #endif
  2222. const World planet(_node->planet());
  2223. out["planetWorldId"] = planet.id();
  2224. out["planetWorldTimestamp"] = planet.timestamp();
  2225. setContent(req, res, out.dump());
  2226. };
  2227. _controlPlane.Get(statusPath, statusGet);
  2228. _controlPlaneV6.Get(statusPath, statusGet);
  2229. #if ZT_SSO_ENABLED
  2230. std::string ssoPath = "/sso";
  2231. auto ssoGet = [this](const httplib::Request& req, httplib::Response& res) {
  2232. std::string htmlTemplatePath = _homePath + ZT_PATH_SEPARATOR + "sso-auth.template.html";
  2233. std::string htmlTemplate;
  2234. if (! OSUtils::readFile(htmlTemplatePath.c_str(), htmlTemplate)) {
  2235. htmlTemplate = ssoResponseTemplate;
  2236. }
  2237. std::string responseContentType = "text/html";
  2238. std::string responseBody = "";
  2239. json outData;
  2240. if (req.has_param("error")) {
  2241. std::string error = req.get_param_value("error");
  2242. std::string desc = req.get_param_value("error_description");
  2243. json data;
  2244. outData["isError"] = true;
  2245. outData["messageText"] = (std::string("ERROR ") + error + std::string(": ") + desc);
  2246. responseBody = inja::render(htmlTemplate, outData);
  2247. res.set_content(responseBody, responseContentType);
  2248. res.status = 500;
  2249. return;
  2250. }
  2251. // SSO redirect handling
  2252. std::string state = req.get_param_value("state");
  2253. char* nwid = rustybits::zeroidc_network_id_from_state(state.c_str());
  2254. outData["networkId"] = std::string(nwid);
  2255. const uint64_t id = Utils::hexStrToU64(nwid);
  2256. rustybits::free_cstr(nwid);
  2257. Mutex::Lock l(_nets_m);
  2258. if (_nets.find(id) != _nets.end()) {
  2259. NetworkState& ns = _nets[id];
  2260. std::string code = req.get_param_value("code");
  2261. char* ret = ns.doTokenExchange(code.c_str());
  2262. json ssoResult = json::parse(ret);
  2263. if (ssoResult.is_object()) {
  2264. if (ssoResult.contains("errorMessage")) {
  2265. outData["isError"] = true;
  2266. outData["messageText"] = ssoResult["errorMessage"];
  2267. responseBody = inja::render(htmlTemplate, outData);
  2268. res.set_content(responseBody, responseContentType);
  2269. res.status = 500;
  2270. }
  2271. else {
  2272. outData["isError"] = false;
  2273. outData["messageText"] = "Authentication Successful. You may now access the network.";
  2274. responseBody = inja::render(htmlTemplate, outData);
  2275. res.set_content(responseBody, responseContentType);
  2276. }
  2277. }
  2278. else {
  2279. // not an object? We got a problem
  2280. outData["isError"] = true;
  2281. outData["messageText"] = "ERROR: Unkown SSO response. Please contact your administrator.";
  2282. responseBody = inja::render(htmlTemplate, outData);
  2283. res.set_content(responseBody, responseContentType);
  2284. res.status = 500;
  2285. }
  2286. rustybits::free_cstr(ret);
  2287. }
  2288. };
  2289. _controlPlane.Get(ssoPath, ssoGet);
  2290. _controlPlaneV6.Get(ssoPath, ssoGet);
  2291. #endif
  2292. auto metricsGet = [this](const httplib::Request& req, httplib::Response& res) {
  2293. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  2294. auto tracer = provider->GetTracer("http_control_plane");
  2295. auto span = tracer->StartSpan("http_control_plane::metricsGet");
  2296. auto scope = tracer->WithActiveSpan(span);
  2297. std::string statspath = _homePath + ZT_PATH_SEPARATOR + "metrics.prom";
  2298. std::string metrics;
  2299. if (OSUtils::readFile(statspath.c_str(), metrics)) {
  2300. res.set_content(metrics, "text/plain");
  2301. }
  2302. else {
  2303. res.set_content("{}", "application/json");
  2304. res.status = 500;
  2305. }
  2306. };
  2307. _controlPlane.Get(metricsPath, metricsGet);
  2308. _controlPlaneV6.Get(metricsPath, metricsGet);
  2309. auto exceptionHandler = [&, setContent](const httplib::Request& req, httplib::Response& res, std::exception_ptr ep) {
  2310. auto provider = opentelemetry::trace::Provider::GetTracerProvider();
  2311. auto tracer = provider->GetTracer("http_control_plane");
  2312. auto span = tracer->StartSpan("http_control_plane::exceptionHandler");
  2313. auto scope = tracer->WithActiveSpan(span);
  2314. char buf[1024];
  2315. auto fmt = "{\"error\": %d, \"description\": \"%s\"}";
  2316. try {
  2317. std::rethrow_exception(ep);
  2318. }
  2319. catch (std::exception& e) {
  2320. snprintf(buf, sizeof(buf), fmt, 500, e.what());
  2321. }
  2322. catch (...) {
  2323. snprintf(buf, sizeof(buf), fmt, 500, "Unknown Exception");
  2324. }
  2325. setContent(req, res, buf);
  2326. res.status = 500;
  2327. };
  2328. _controlPlane.set_exception_handler(exceptionHandler);
  2329. _controlPlaneV6.set_exception_handler(exceptionHandler);
  2330. if (_controller) {
  2331. _controller->configureHTTPControlPlane(_controlPlane, _controlPlaneV6, setContent);
  2332. }
  2333. #ifndef ZT_EXTOSDEP
  2334. _controlPlane.set_pre_routing_handler(authCheck);
  2335. #endif // ZT_EXTOSDEP
  2336. _controlPlaneV6.set_pre_routing_handler(authCheck);
  2337. #if ZT_DEBUG == 1
  2338. _controlPlane.set_logger([](const httplib::Request& req, const httplib::Response& res) { fprintf(stderr, "%s", http_log(req, res).c_str()); });
  2339. _controlPlaneV6.set_logger([](const httplib::Request& req, const httplib::Response& res) { fprintf(stderr, "%s", http_log(req, res).c_str()); });
  2340. #endif
  2341. if (_primaryPort == 0) {
  2342. fprintf(stderr, "unable to determine local control port");
  2343. exit(-1);
  2344. }
  2345. #ifndef ZT_EXTOSDEP
  2346. bool v4controlPlaneBound = false;
  2347. _controlPlane.set_address_family(AF_INET);
  2348. if (_controlPlane.bind_to_port("0.0.0.0", _primaryPort)) {
  2349. _serverThread = std::thread([&] {
  2350. _serverThreadRunning = true;
  2351. fprintf(stderr, "Starting Control Plane...\n");
  2352. if (! _controlPlane.listen_after_bind()) {
  2353. fprintf(stderr, "Error on listen_after_bind()\n");
  2354. }
  2355. fprintf(stderr, "Control Plane Stopped\n");
  2356. _serverThreadRunning = false;
  2357. });
  2358. v4controlPlaneBound = true;
  2359. }
  2360. else {
  2361. fprintf(stderr, "Error binding control plane to 0.0.0.0:%d\n", _primaryPort);
  2362. v4controlPlaneBound = false;
  2363. }
  2364. bool v6controlPlaneBound = false;
  2365. _controlPlaneV6.set_address_family(AF_INET6);
  2366. if (_controlPlaneV6.bind_to_port("::", _primaryPort)) {
  2367. _serverThreadV6 = std::thread([&] {
  2368. _serverThreadRunningV6 = true;
  2369. fprintf(stderr, "Starting V6 Control Plane...\n");
  2370. if (! _controlPlaneV6.listen_after_bind()) {
  2371. fprintf(stderr, "Error on V6 listen_after_bind()\n");
  2372. }
  2373. fprintf(stderr, "V6 Control Plane Stopped\n");
  2374. _serverThreadRunningV6 = false;
  2375. });
  2376. v6controlPlaneBound = true;
  2377. }
  2378. else {
  2379. fprintf(stderr, "Error binding control plane to [::]:%d\n", _primaryPort);
  2380. v6controlPlaneBound = false;
  2381. }
  2382. if (! v4controlPlaneBound && ! v6controlPlaneBound) {
  2383. fprintf(stderr, "ERROR: Could not bind control plane. Exiting...\n");
  2384. exit(-1);
  2385. }
  2386. #endif // ZT_EXTOSDEP
  2387. }
  2388. // Must be called after _localConfig is read or modified
  2389. void applyLocalConfig()
  2390. {
  2391. Mutex::Lock _l(_localConfig_m);
  2392. json lc(_localConfig);
  2393. _v4Hints.clear();
  2394. _v6Hints.clear();
  2395. _v4Blacklists.clear();
  2396. _v6Blacklists.clear();
  2397. json& virt = lc["virtual"];
  2398. if (virt.is_object()) {
  2399. for (json::iterator v(virt.begin()); v != virt.end(); ++v) {
  2400. const std::string nstr = v.key();
  2401. if ((nstr.length() == ZT_ADDRESS_LENGTH_HEX) && (v.value().is_object())) {
  2402. const Address ztaddr(Utils::hexStrToU64(nstr.c_str()));
  2403. if (ztaddr) {
  2404. const uint64_t ztaddr2 = ztaddr.toInt();
  2405. std::vector<InetAddress>& v4h = _v4Hints[ztaddr2];
  2406. std::vector<InetAddress>& v6h = _v6Hints[ztaddr2];
  2407. std::vector<InetAddress>& v4b = _v4Blacklists[ztaddr2];
  2408. std::vector<InetAddress>& v6b = _v6Blacklists[ztaddr2];
  2409. json& tryAddrs = v.value()["try"];
  2410. if (tryAddrs.is_array()) {
  2411. for (unsigned long i = 0; i < tryAddrs.size(); ++i) {
  2412. const InetAddress ip(OSUtils::jsonString(tryAddrs[i], "").c_str());
  2413. if (ip.ss_family == AF_INET)
  2414. v4h.push_back(ip);
  2415. else if (ip.ss_family == AF_INET6)
  2416. v6h.push_back(ip);
  2417. }
  2418. }
  2419. json& blAddrs = v.value()["blacklist"];
  2420. if (blAddrs.is_array()) {
  2421. for (unsigned long i = 0; i < blAddrs.size(); ++i) {
  2422. const InetAddress ip(OSUtils::jsonString(blAddrs[i], "").c_str());
  2423. if (ip.ss_family == AF_INET)
  2424. v4b.push_back(ip);
  2425. else if (ip.ss_family == AF_INET6)
  2426. v6b.push_back(ip);
  2427. }
  2428. }
  2429. if (v4h.empty())
  2430. _v4Hints.erase(ztaddr2);
  2431. if (v6h.empty())
  2432. _v6Hints.erase(ztaddr2);
  2433. if (v4b.empty())
  2434. _v4Blacklists.erase(ztaddr2);
  2435. if (v6b.empty())
  2436. _v6Blacklists.erase(ztaddr2);
  2437. }
  2438. }
  2439. }
  2440. }
  2441. _globalV4Blacklist.clear();
  2442. _globalV6Blacklist.clear();
  2443. json& physical = lc["physical"];
  2444. if (physical.is_object()) {
  2445. for (json::iterator phy(physical.begin()); phy != physical.end(); ++phy) {
  2446. const InetAddress net(OSUtils::jsonString(phy.key(), "").c_str());
  2447. if ((net) && (net.netmaskBits() > 0)) {
  2448. if (phy.value().is_object()) {
  2449. if (OSUtils::jsonBool(phy.value()["blacklist"], false)) {
  2450. if (net.ss_family == AF_INET)
  2451. _globalV4Blacklist.push_back(net);
  2452. else if (net.ss_family == AF_INET6)
  2453. _globalV6Blacklist.push_back(net);
  2454. }
  2455. }
  2456. }
  2457. }
  2458. }
  2459. _allowManagementFrom.clear();
  2460. _interfacePrefixBlacklist.clear();
  2461. json& settings = lc["settings"];
  2462. if (! _node->bondController()->inUse()) {
  2463. _node->bondController()->setBinder(&_binder);
  2464. // defaultBondingPolicy
  2465. std::string defaultBondingPolicyStr(OSUtils::jsonString(settings["defaultBondingPolicy"], ""));
  2466. int defaultBondingPolicy = _node->bondController()->getPolicyCodeByStr(defaultBondingPolicyStr);
  2467. _node->bondController()->setBondingLayerDefaultPolicy(defaultBondingPolicy);
  2468. _node->bondController()->setBondingLayerDefaultPolicyStr(defaultBondingPolicyStr); // Used if custom policy
  2469. // Custom Policies
  2470. json& customBondingPolicies = settings["policies"];
  2471. for (json::iterator policyItr = customBondingPolicies.begin(); policyItr != customBondingPolicies.end(); ++policyItr) {
  2472. // Custom Policy
  2473. std::string customPolicyStr(policyItr.key());
  2474. json& customPolicy = policyItr.value();
  2475. std::string basePolicyStr(OSUtils::jsonString(customPolicy["basePolicy"], ""));
  2476. if (basePolicyStr.empty()) {
  2477. fprintf(stderr, "error: no base policy was specified for custom policy (%s)\n", customPolicyStr.c_str());
  2478. }
  2479. int basePolicyCode = _node->bondController()->getPolicyCodeByStr(basePolicyStr);
  2480. if (basePolicyCode == ZT_BOND_POLICY_NONE) {
  2481. fprintf(stderr, "error: custom policy (%s) is invalid, unknown base policy (%s).\n", customPolicyStr.c_str(), basePolicyStr.c_str());
  2482. continue;
  2483. }
  2484. if (_node->bondController()->getPolicyCodeByStr(customPolicyStr) != ZT_BOND_POLICY_NONE) {
  2485. fprintf(stderr, "error: custom policy (%s) will be ignored, cannot use standard policy names for custom policies.\n", customPolicyStr.c_str());
  2486. continue;
  2487. }
  2488. // New bond, used as a copy template for new instances
  2489. SharedPtr<Bond> newTemplateBond = new Bond(NULL, basePolicyStr, customPolicyStr, SharedPtr<Peer>());
  2490. newTemplateBond->setPolicy(basePolicyCode);
  2491. // Custom link quality spec
  2492. json& linkQualitySpec = customPolicy["linkQuality"];
  2493. if (linkQualitySpec.size() == ZT_QOS_PARAMETER_SIZE) {
  2494. float weights[ZT_QOS_PARAMETER_SIZE] = {};
  2495. weights[ZT_QOS_LAT_MAX_IDX] = (float)OSUtils::jsonDouble(linkQualitySpec["lat_max"], 0.0);
  2496. weights[ZT_QOS_PDV_MAX_IDX] = (float)OSUtils::jsonDouble(linkQualitySpec["pdv_max"], 0.0);
  2497. weights[ZT_QOS_PLR_MAX_IDX] = (float)OSUtils::jsonDouble(linkQualitySpec["plr_max"], 0.0);
  2498. weights[ZT_QOS_PER_MAX_IDX] = (float)OSUtils::jsonDouble(linkQualitySpec["per_max"], 0.0);
  2499. weights[ZT_QOS_LAT_WEIGHT_IDX] = (float)OSUtils::jsonDouble(linkQualitySpec["lat_weight"], 0.0);
  2500. weights[ZT_QOS_PDV_WEIGHT_IDX] = (float)OSUtils::jsonDouble(linkQualitySpec["pdv_weight"], 0.0);
  2501. weights[ZT_QOS_PLR_WEIGHT_IDX] = (float)OSUtils::jsonDouble(linkQualitySpec["plr_weight"], 0.0);
  2502. weights[ZT_QOS_PER_WEIGHT_IDX] = (float)OSUtils::jsonDouble(linkQualitySpec["per_weight"], 0.0);
  2503. newTemplateBond->setUserLinkQualitySpec(weights, ZT_QOS_PARAMETER_SIZE);
  2504. }
  2505. // Bond-specific properties
  2506. newTemplateBond->setUpDelay(OSUtils::jsonInt(customPolicy["upDelay"], -1));
  2507. newTemplateBond->setDownDelay(OSUtils::jsonInt(customPolicy["downDelay"], -1));
  2508. newTemplateBond->setFailoverInterval(OSUtils::jsonInt(customPolicy["failoverInterval"], ZT_BOND_FAILOVER_DEFAULT_INTERVAL));
  2509. newTemplateBond->setPacketsPerLink(OSUtils::jsonInt(customPolicy["packetsPerLink"], -1));
  2510. // Policy-Specific link set
  2511. json& links = customPolicy["links"];
  2512. for (json::iterator linkItr = links.begin(); linkItr != links.end(); ++linkItr) {
  2513. std::string linkNameStr(linkItr.key());
  2514. json& link = linkItr.value();
  2515. bool enabled = OSUtils::jsonInt(link["enabled"], true);
  2516. uint32_t capacity = OSUtils::jsonInt(link["capacity"], 0);
  2517. uint8_t ipvPref = OSUtils::jsonInt(link["ipvPref"], 0);
  2518. uint16_t mtu = OSUtils::jsonInt(link["mtu"], 0);
  2519. std::string failoverToStr(OSUtils::jsonString(link["failoverTo"], ""));
  2520. // Mode
  2521. std::string linkModeStr(OSUtils::jsonString(link["mode"], "spare"));
  2522. uint8_t linkMode = ZT_BOND_SLAVE_MODE_SPARE;
  2523. if (linkModeStr == "primary") {
  2524. linkMode = ZT_BOND_SLAVE_MODE_PRIMARY;
  2525. }
  2526. if (linkModeStr == "spare") {
  2527. linkMode = ZT_BOND_SLAVE_MODE_SPARE;
  2528. }
  2529. // ipvPref
  2530. if ((ipvPref != 0) && (ipvPref != 4) && (ipvPref != 6) && (ipvPref != 46) && (ipvPref != 64)) {
  2531. fprintf(stderr, "error: invalid ipvPref value (%d), link disabled.\n", ipvPref);
  2532. enabled = false;
  2533. }
  2534. if (linkMode == ZT_BOND_SLAVE_MODE_SPARE && failoverToStr.length()) {
  2535. fprintf(stderr, "error: cannot specify failover links for spares, link disabled.\n");
  2536. failoverToStr = "";
  2537. enabled = false;
  2538. }
  2539. _node->bondController()->addCustomLink(customPolicyStr, new Link(linkNameStr, ipvPref, mtu, capacity, enabled, linkMode, failoverToStr));
  2540. }
  2541. // Check for new field name first, fall back to legacy field name for backward compatibility
  2542. std::string linkSelectMethodStr;
  2543. if (customPolicy.contains("linkSelectMethod")) {
  2544. linkSelectMethodStr = OSUtils::jsonString(customPolicy["linkSelectMethod"], "always");
  2545. }
  2546. else {
  2547. linkSelectMethodStr = OSUtils::jsonString(customPolicy["activeReselect"], "always");
  2548. if (customPolicy.contains("activeReselect")) {
  2549. fprintf(stderr, "warning: 'activeReselect' is deprecated, please use 'linkSelectMethod' instead in policy '%s'\n", customPolicyStr.c_str());
  2550. }
  2551. }
  2552. if (linkSelectMethodStr == "always") {
  2553. newTemplateBond->setLinkSelectMethod(ZT_BOND_RESELECTION_POLICY_ALWAYS);
  2554. }
  2555. if (linkSelectMethodStr == "better") {
  2556. newTemplateBond->setLinkSelectMethod(ZT_BOND_RESELECTION_POLICY_BETTER);
  2557. }
  2558. if (linkSelectMethodStr == "failure") {
  2559. newTemplateBond->setLinkSelectMethod(ZT_BOND_RESELECTION_POLICY_FAILURE);
  2560. }
  2561. if (linkSelectMethodStr == "optimize") {
  2562. newTemplateBond->setLinkSelectMethod(ZT_BOND_RESELECTION_POLICY_OPTIMIZE);
  2563. }
  2564. if (newTemplateBond->getLinkSelectMethod() < 0 || newTemplateBond->getLinkSelectMethod() > 3) {
  2565. fprintf(stderr, "warning: invalid value (%s) for linkSelectMethod, assuming mode: always\n", linkSelectMethodStr.c_str());
  2566. }
  2567. if (! _node->bondController()->addCustomPolicy(newTemplateBond)) {
  2568. fprintf(stderr, "error: a custom policy of this name (%s) already exists.\n", customPolicyStr.c_str());
  2569. }
  2570. }
  2571. // Peer-specific bonding
  2572. json& peerSpecificBonds = settings["peerSpecificBonds"];
  2573. for (json::iterator peerItr = peerSpecificBonds.begin(); peerItr != peerSpecificBonds.end(); ++peerItr) {
  2574. _node->bondController()->assignBondingPolicyToPeer(std::stoull(peerItr.key(), 0, 16), peerItr.value());
  2575. }
  2576. // Check settings
  2577. if (defaultBondingPolicyStr.length() && ! defaultBondingPolicy && ! _node->bondController()->inUse()) {
  2578. fprintf(stderr, "error: unknown policy (%s) specified by defaultBondingPolicy, bond disabled.\n", defaultBondingPolicyStr.c_str());
  2579. }
  2580. }
  2581. // bondingPolicy cannot be used with allowTcpFallbackRelay
  2582. bool _forceTcpRelayTmp = (OSUtils::jsonBool(settings["forceTcpRelay"], false));
  2583. bool _bondInUse = _node->bondController()->inUse();
  2584. if (_forceTcpRelayTmp && _bondInUse) {
  2585. fprintf(stderr, "Warning: forceTcpRelay cannot be used with multipath. Disabling forceTcpRelay\n");
  2586. }
  2587. _allowTcpFallbackRelay = (OSUtils::jsonBool(settings["allowTcpFallbackRelay"], true) && ! _node->bondController()->inUse());
  2588. _forceTcpRelay = (_forceTcpRelayTmp && ! _node->bondController()->inUse());
  2589. _enableWebServer = (OSUtils::jsonBool(settings["enableWebServer"], false));
  2590. #ifdef ZT_TCP_FALLBACK_RELAY
  2591. _fallbackRelayAddress = InetAddress(OSUtils::jsonString(settings["tcpFallbackRelay"], ZT_TCP_FALLBACK_RELAY).c_str());
  2592. #endif
  2593. _primaryPort = (unsigned int)OSUtils::jsonInt(settings["primaryPort"], (uint64_t)_primaryPort) & 0xffff;
  2594. _allowSecondaryPort = OSUtils::jsonBool(settings["allowSecondaryPort"], true);
  2595. _secondaryPort = (unsigned int)OSUtils::jsonInt(settings["secondaryPort"], 0);
  2596. _tertiaryPort = (unsigned int)OSUtils::jsonInt(settings["tertiaryPort"], 0);
  2597. if (_secondaryPort != 0 || _tertiaryPort != 0) {
  2598. fprintf(stderr, "WARNING: using manually-specified secondary and/or tertiary ports. This can cause NAT issues." ZT_EOL_S);
  2599. }
  2600. _portMappingEnabled = OSUtils::jsonBool(settings["portMappingEnabled"], true);
  2601. _node->setLowBandwidthMode(OSUtils::jsonBool(settings["lowBandwidthMode"], false));
  2602. #if defined(__LINUX__) || defined(__FreeBSD__)
  2603. _multicoreEnabled = OSUtils::jsonBool(settings["multicoreEnabled"], false);
  2604. _concurrency = OSUtils::jsonInt(settings["concurrency"], 1);
  2605. _cpuPinningEnabled = OSUtils::jsonBool(settings["cpuPinningEnabled"], false);
  2606. if (_multicoreEnabled) {
  2607. unsigned int maxConcurrency = std::thread::hardware_concurrency();
  2608. if (_concurrency <= 1 || _concurrency >= maxConcurrency) {
  2609. unsigned int conservativeDefault = (std::thread::hardware_concurrency() >= 4 ? 2 : 1);
  2610. fprintf(stderr, "Concurrency level provided (%d) is invalid, assigning conservative default value of (%d)\n", _concurrency, conservativeDefault);
  2611. _concurrency = conservativeDefault;
  2612. }
  2613. setUpMultithreading();
  2614. }
  2615. else {
  2616. // Force values in case the user accidentally defined them with multicore disabled
  2617. _concurrency = 1;
  2618. _cpuPinningEnabled = false;
  2619. }
  2620. #else
  2621. _multicoreEnabled = false;
  2622. _concurrency = 1;
  2623. _cpuPinningEnabled = false;
  2624. #endif
  2625. #ifndef ZT_SDK
  2626. const std::string up(OSUtils::jsonString(settings["softwareUpdate"], ZT_SOFTWARE_UPDATE_DEFAULT));
  2627. const bool udist = OSUtils::jsonBool(settings["softwareUpdateDist"], false);
  2628. if (((up == "apply") || (up == "download")) || (udist)) {
  2629. if (! _updater)
  2630. _updater = new SoftwareUpdater(*_node, _homePath);
  2631. _updateAutoApply = (up == "apply");
  2632. _updater->setUpdateDistribution(udist);
  2633. _updater->setChannel(OSUtils::jsonString(settings["softwareUpdateChannel"], ZT_SOFTWARE_UPDATE_DEFAULT_CHANNEL));
  2634. }
  2635. else {
  2636. delete _updater;
  2637. _updater = (SoftwareUpdater*)0;
  2638. _updateAutoApply = false;
  2639. }
  2640. #endif
  2641. json& ignoreIfs = settings["interfacePrefixBlacklist"];
  2642. if (ignoreIfs.is_array()) {
  2643. for (unsigned long i = 0; i < ignoreIfs.size(); ++i) {
  2644. const std::string tmp(OSUtils::jsonString(ignoreIfs[i], ""));
  2645. if (tmp.length() > 0)
  2646. _interfacePrefixBlacklist.push_back(tmp);
  2647. }
  2648. }
  2649. json& amf = settings["allowManagementFrom"];
  2650. if (amf.is_array()) {
  2651. for (unsigned long i = 0; i < amf.size(); ++i) {
  2652. const InetAddress nw(OSUtils::jsonString(amf[i], "").c_str());
  2653. if (nw)
  2654. _allowManagementFrom.push_back(nw);
  2655. }
  2656. }
  2657. }
  2658. #if ZT_VAULT_SUPPORT
  2659. json& vault = settings["vault"];
  2660. if (vault.is_object()) {
  2661. const std::string url(OSUtils::jsonString(vault["vaultURL"], "").c_str());
  2662. if (! url.empty()) {
  2663. _vaultURL = url;
  2664. }
  2665. const std::string token(OSUtils::jsonString(vault["vaultToken"], "").c_str());
  2666. if (! token.empty()) {
  2667. _vaultToken = token;
  2668. }
  2669. const std::string path(OSUtils::jsonString(vault["vaultPath"], "").c_str());
  2670. if (! path.empty()) {
  2671. _vaultPath = path;
  2672. }
  2673. }
  2674. // also check environment variables for values. Environment variables
  2675. // will override local.conf variables
  2676. const std::string envURL(getenv("VAULT_ADDR"));
  2677. if (! envURL.empty()) {
  2678. _vaultURL = envURL;
  2679. }
  2680. const std::string envToken(getenv("VAULT_TOKEN"));
  2681. if (! envToken.empty()) {
  2682. _vaultToken = envToken;
  2683. }
  2684. const std::string envPath(getenv("VAULT_PATH"));
  2685. if (! envPath.empty()) {
  2686. _vaultPath = envPath;
  2687. }
  2688. if (! _vaultURL.empty() && ! _vaultToken.empty()) {
  2689. _vaultEnabled = true;
  2690. }
  2691. #endif
  2692. // Checks if a managed IP or route target is allowed
  2693. bool checkIfManagedIsAllowed(const NetworkState& n, const InetAddress& target)
  2694. {
  2695. if (! n.allowManaged())
  2696. return false;
  2697. if (! n.allowManagedWhitelist().empty()) {
  2698. bool allowed = false;
  2699. for (InetAddress addr : n.allowManagedWhitelist()) {
  2700. if (addr.containsAddress(target) && addr.netmaskBits() <= target.netmaskBits()) {
  2701. allowed = true;
  2702. break;
  2703. }
  2704. }
  2705. if (! allowed)
  2706. return false;
  2707. }
  2708. if (target.isDefaultRoute())
  2709. return n.allowDefault();
  2710. switch (target.ipScope()) {
  2711. case InetAddress::IP_SCOPE_NONE:
  2712. case InetAddress::IP_SCOPE_MULTICAST:
  2713. case InetAddress::IP_SCOPE_LOOPBACK:
  2714. case InetAddress::IP_SCOPE_LINK_LOCAL:
  2715. return false;
  2716. case InetAddress::IP_SCOPE_GLOBAL:
  2717. return n.allowGlobal();
  2718. default:
  2719. return true;
  2720. }
  2721. }
  2722. // Match only an IP from a vector of IPs -- used in syncManagedStuff()
  2723. inline bool matchIpOnly(const std::set<InetAddress>& ips, const InetAddress& ip) const
  2724. {
  2725. for (std::set<InetAddress>::const_iterator i(ips.begin()); i != ips.end(); ++i) {
  2726. if (i->ipsEqual(ip))
  2727. return true;
  2728. }
  2729. return false;
  2730. }
  2731. // Apply or update managed IPs for a configured network (be sure n.tap exists)
  2732. void syncManagedStuff(NetworkState& n, bool syncIps, bool syncRoutes, bool syncDns)
  2733. {
  2734. char ipbuf[64];
  2735. // assumes _nets_m is locked
  2736. if (syncIps) {
  2737. std::vector<InetAddress> newManagedIps;
  2738. newManagedIps.reserve(n.config().assignedAddressCount);
  2739. #ifdef __APPLE__
  2740. std::vector<InetAddress> newManagedIps2;
  2741. newManagedIps2.reserve(n.config().assignedAddressCount);
  2742. #endif
  2743. for (unsigned int i = 0; i < n.config().assignedAddressCount; ++i) {
  2744. const InetAddress* ii = reinterpret_cast<const InetAddress*>(&(n.config().assignedAddresses[i]));
  2745. if (checkIfManagedIsAllowed(n, *ii))
  2746. newManagedIps.push_back(*ii);
  2747. }
  2748. std::sort(newManagedIps.begin(), newManagedIps.end());
  2749. newManagedIps.erase(std::unique(newManagedIps.begin(), newManagedIps.end()), newManagedIps.end());
  2750. for (std::vector<InetAddress>::iterator ip(n.managedIps().begin()); ip != n.managedIps().end(); ++ip) {
  2751. if (std::find(newManagedIps.begin(), newManagedIps.end(), *ip) == newManagedIps.end()) {
  2752. if (! n.tap()->removeIp(*ip))
  2753. fprintf(stderr, "ERROR: unable to remove ip address %s" ZT_EOL_S, ip->toString(ipbuf));
  2754. #ifdef __WINDOWS__
  2755. WinFWHelper::removeICMPRule(*ip, n.config().nwid);
  2756. #endif
  2757. }
  2758. }
  2759. for (std::vector<InetAddress>::iterator ip(newManagedIps.begin()); ip != newManagedIps.end(); ++ip) {
  2760. #ifdef __APPLE__
  2761. // We can't add multiple addresses to an interface on macOs unless we futz with the netmask.
  2762. // see `man ifconfig`, alias section
  2763. // "If the address is on the same subnet as the first network address for this interface, a non-conflicting netmask must be given. Usually 0xffffffff is most appropriate."
  2764. auto same_subnet = [ip](InetAddress i) { return ip->network() == i.network(); };
  2765. #endif
  2766. if (std::find(n.managedIps().begin(), n.managedIps().end(), *ip) == n.managedIps().end()) {
  2767. #ifdef __APPLE__
  2768. // if same subnet as a previously added address
  2769. if (std::find_if(n.managedIps().begin(), n.managedIps().end(), same_subnet) != n.managedIps().end() || std::find_if(newManagedIps2.begin(), newManagedIps2.end(), same_subnet) != newManagedIps2.end()) {
  2770. if (ip->isV4()) {
  2771. ip->setPort(32);
  2772. }
  2773. else {
  2774. ip->setPort(128);
  2775. }
  2776. }
  2777. else {
  2778. newManagedIps2.push_back(*ip);
  2779. }
  2780. #endif
  2781. if (! n.tap()->addIp(*ip)) {
  2782. fprintf(stderr, "ERROR: unable to add ip address %s" ZT_EOL_S, ip->toString(ipbuf));
  2783. }
  2784. else {
  2785. #ifdef __WINDOWS__
  2786. WinFWHelper::newICMPRule(*ip, n.config().nwid);
  2787. #endif
  2788. }
  2789. }
  2790. }
  2791. #ifdef __APPLE__
  2792. if (! MacDNSHelper::addIps6(n.config().nwid, n.config().mac, n.tap()->deviceName().c_str(), newManagedIps)) {
  2793. fprintf(stderr, "ERROR: unable to add v6 addresses to system configuration" ZT_EOL_S);
  2794. }
  2795. if (! MacDNSHelper::addIps4(n.config().nwid, n.config().mac, n.tap()->deviceName().c_str(), newManagedIps)) {
  2796. fprintf(stderr, "ERROR: unable to add v4 addresses to system configuration" ZT_EOL_S);
  2797. }
  2798. #endif
  2799. n.setManagedIps(newManagedIps);
  2800. }
  2801. if (syncRoutes) {
  2802. // Get tap device name (use LUID in hex on Windows) and IP addresses.
  2803. #if defined(__WINDOWS__) && ! defined(ZT_SDK)
  2804. char tapdevbuf[64];
  2805. OSUtils::ztsnprintf(tapdevbuf, sizeof(tapdevbuf), "%.16llx", (unsigned long long)((WindowsEthernetTap*)(n.tap().get()))->luid().Value);
  2806. std::string tapdev(tapdevbuf);
  2807. #else
  2808. std::string tapdev(n.tap()->deviceName());
  2809. #endif
  2810. std::vector<InetAddress> tapIps(n.tap()->ips());
  2811. std::set<InetAddress> myIps(tapIps.begin(), tapIps.end());
  2812. for (unsigned int i = 0; i < n.config().assignedAddressCount; ++i)
  2813. myIps.insert(InetAddress(n.config().assignedAddresses[i]));
  2814. std::set<InetAddress> haveRouteTargets;
  2815. for (unsigned int i = 0; i < n.config().routeCount; ++i) {
  2816. const InetAddress* const target = reinterpret_cast<const InetAddress*>(&(n.config().routes[i].target));
  2817. const InetAddress* const via = reinterpret_cast<const InetAddress*>(&(n.config().routes[i].via));
  2818. // Make sure we are allowed to set this managed route, and that 'via' is not our IP. The latter
  2819. // avoids setting routes via the router on the router.
  2820. if ((! checkIfManagedIsAllowed(n, *target)) || ((via->ss_family == target->ss_family) && (matchIpOnly(myIps, *via))))
  2821. continue;
  2822. // Find an IP on the interface that can be a source IP, abort if no IPs assigned.
  2823. const InetAddress* src = nullptr;
  2824. unsigned int mostMatchingPrefixBits = 0;
  2825. for (std::set<InetAddress>::const_iterator i(myIps.begin()); i != myIps.end(); ++i) {
  2826. const unsigned int matchingPrefixBits = i->matchingPrefixBits(*target);
  2827. if (matchingPrefixBits >= mostMatchingPrefixBits && ((target->isV4() && i->isV4()) || (target->isV6() && i->isV6()))) {
  2828. mostMatchingPrefixBits = matchingPrefixBits;
  2829. src = &(*i);
  2830. }
  2831. }
  2832. if (! src)
  2833. continue;
  2834. // Ignore routes implied by local managed IPs since adding the IP adds the route.
  2835. // Apple on the other hand seems to need this at least on some versions.
  2836. #ifndef __APPLE__
  2837. bool haveRoute = false;
  2838. for (std::vector<InetAddress>::iterator ip(n.managedIps().begin()); ip != n.managedIps().end(); ++ip) {
  2839. if ((target->netmaskBits() == ip->netmaskBits()) && (target->containsAddress(*ip))) {
  2840. haveRoute = true;
  2841. break;
  2842. }
  2843. }
  2844. if (haveRoute)
  2845. continue;
  2846. #endif
  2847. haveRouteTargets.insert(*target);
  2848. #ifndef ZT_SDK
  2849. SharedPtr<ManagedRoute>& mr = n.managedRoutes()[*target];
  2850. if (! mr)
  2851. mr.set(new ManagedRoute(*target, *via, *src, tapdev.c_str()));
  2852. #endif
  2853. }
  2854. for (std::map<InetAddress, SharedPtr<ManagedRoute> >::iterator r(n.managedRoutes().begin()); r != n.managedRoutes().end();) {
  2855. if (haveRouteTargets.find(r->first) == haveRouteTargets.end())
  2856. n.managedRoutes().erase(r++);
  2857. else
  2858. ++r;
  2859. }
  2860. // Sync device-local managed routes first, then indirect results. That way
  2861. // we don't get destination unreachable for routes that are via things
  2862. // that do not yet have routes in the system.
  2863. for (std::map<InetAddress, SharedPtr<ManagedRoute> >::iterator r(n.managedRoutes().begin()); r != n.managedRoutes().end(); ++r) {
  2864. if (! r->second->via())
  2865. r->second->sync();
  2866. }
  2867. for (std::map<InetAddress, SharedPtr<ManagedRoute> >::iterator r(n.managedRoutes().begin()); r != n.managedRoutes().end(); ++r) {
  2868. if (r->second->via() && (! r->second->target().isDefaultRoute() || _node->online())) {
  2869. r->second->sync();
  2870. }
  2871. }
  2872. }
  2873. if (syncDns) {
  2874. if (n.allowDNS()) {
  2875. if (strlen(n.config().dns.domain) != 0) {
  2876. std::vector<InetAddress> servers;
  2877. for (int j = 0; j < ZT_MAX_DNS_SERVERS; ++j) {
  2878. InetAddress a(n.config().dns.server_addr[j]);
  2879. if (a.isV4() || a.isV6()) {
  2880. servers.push_back(a);
  2881. }
  2882. }
  2883. n.tap()->setDns(n.config().dns.domain, servers);
  2884. }
  2885. }
  2886. else {
  2887. #ifdef __APPLE__
  2888. MacDNSHelper::removeDNS(n.config().nwid);
  2889. #elif defined(__WINDOWS__)
  2890. WinDNSHelper::removeDNS(n.config().nwid);
  2891. #endif
  2892. }
  2893. }
  2894. }
  2895. // =========================================================================
  2896. // Handlers for Node and Phy<> callbacks
  2897. // =========================================================================
  2898. inline void phyOnDatagram(PhySocket* sock, void** uptr, const struct sockaddr* localAddr, const struct sockaddr* from, void* data, unsigned long len)
  2899. {
  2900. if (_forceTcpRelay) {
  2901. return;
  2902. }
  2903. Metrics::udp_recv += len;
  2904. const uint64_t now = OSUtils::now();
  2905. if ((len >= 16) && (reinterpret_cast<const InetAddress*>(from)->ipScope() == InetAddress::IP_SCOPE_GLOBAL)) {
  2906. _lastDirectReceiveFromGlobal = now;
  2907. }
  2908. const ZT_ResultCode rc = _node->processWirePacket(nullptr, now, reinterpret_cast<int64_t>(sock), reinterpret_cast<const struct sockaddr_storage*>(from), data, len, &_nextBackgroundTaskDeadline);
  2909. if (ZT_ResultCode_isFatal(rc)) {
  2910. char tmp[256];
  2911. OSUtils::ztsnprintf(tmp, sizeof(tmp), "fatal error code from processWirePacket: %d", (int)rc);
  2912. Mutex::Lock _l(_termReason_m);
  2913. _termReason = ONE_UNRECOVERABLE_ERROR;
  2914. _fatalErrorMessage = tmp;
  2915. this->terminate();
  2916. }
  2917. }
  2918. inline void phyOnTcpConnect(PhySocket* sock, void** uptr, bool success)
  2919. {
  2920. if (! success) {
  2921. phyOnTcpClose(sock, uptr);
  2922. return;
  2923. }
  2924. TcpConnection* const tc = reinterpret_cast<TcpConnection*>(*uptr);
  2925. if (! tc) { // sanity check
  2926. _phy.close(sock, true);
  2927. return;
  2928. }
  2929. tc->sock = sock;
  2930. if (tc->type == TcpConnection::TCP_TUNNEL_OUTGOING) {
  2931. if (_tcpFallbackTunnel)
  2932. _phy.close(_tcpFallbackTunnel->sock);
  2933. _tcpFallbackTunnel = tc;
  2934. _phy.streamSend(sock, ZT_TCP_TUNNEL_HELLO, sizeof(ZT_TCP_TUNNEL_HELLO));
  2935. }
  2936. else {
  2937. _phy.close(sock, true);
  2938. }
  2939. }
  2940. inline void phyOnTcpAccept(PhySocket* sockL, PhySocket* sockN, void** uptrL, void** uptrN, const struct sockaddr* from)
  2941. {
  2942. if (! from) {
  2943. _phy.close(sockN, false);
  2944. return;
  2945. }
  2946. else {
  2947. #ifdef ZT_SDK
  2948. // Immediately close new local connections. The intention is to prevent the backplane from being accessed when operating as libzt
  2949. if (! allowHttpBackplaneManagement && ((InetAddress*)from)->ipScope() == InetAddress::IP_SCOPE_LOOPBACK) {
  2950. _phy.close(sockN, false);
  2951. return;
  2952. }
  2953. #endif
  2954. TcpConnection* tc = new TcpConnection();
  2955. {
  2956. Mutex::Lock _l(_tcpConnections_m);
  2957. _tcpConnections.push_back(tc);
  2958. }
  2959. tc->type = TcpConnection::TCP_UNCATEGORIZED_INCOMING;
  2960. tc->parent = this;
  2961. tc->sock = sockN;
  2962. tc->remoteAddr = from;
  2963. tc->lastReceive = OSUtils::now();
  2964. http_parser_init(&(tc->parser), HTTP_REQUEST);
  2965. tc->parser.data = (void*)tc;
  2966. tc->messageSize = 0;
  2967. *uptrN = (void*)tc;
  2968. }
  2969. }
  2970. void phyOnTcpClose(PhySocket* sock, void** uptr)
  2971. {
  2972. TcpConnection* tc = (TcpConnection*)*uptr;
  2973. if (tc) {
  2974. if (tc == _tcpFallbackTunnel) {
  2975. _tcpFallbackTunnel = (TcpConnection*)0;
  2976. }
  2977. {
  2978. Mutex::Lock _l(_tcpConnections_m);
  2979. _tcpConnections.erase(std::remove(_tcpConnections.begin(), _tcpConnections.end(), tc), _tcpConnections.end());
  2980. }
  2981. delete tc;
  2982. }
  2983. }
  2984. void phyOnTcpData(PhySocket* sock, void** uptr, void* data, unsigned long len)
  2985. {
  2986. try {
  2987. if (! len)
  2988. return; // sanity check, should never happen
  2989. Metrics::tcp_recv += len;
  2990. TcpConnection* tc = reinterpret_cast<TcpConnection*>(*uptr);
  2991. tc->lastReceive = OSUtils::now();
  2992. switch (tc->type) {
  2993. case TcpConnection::TCP_UNCATEGORIZED_INCOMING:
  2994. return;
  2995. case TcpConnection::TCP_HTTP_INCOMING:
  2996. case TcpConnection::TCP_HTTP_OUTGOING:
  2997. http_parser_execute(&(tc->parser), &HTTP_PARSER_SETTINGS, (const char*)data, len);
  2998. if ((tc->parser.upgrade) || (tc->parser.http_errno != HPE_OK))
  2999. _phy.close(sock);
  3000. return;
  3001. case TcpConnection::TCP_TUNNEL_OUTGOING:
  3002. tc->readq.append((const char*)data, len);
  3003. while (tc->readq.length() >= 5) {
  3004. const char* data = tc->readq.data();
  3005. const unsigned long mlen = (((((unsigned long)data[3]) & 0xff) << 8) | (((unsigned long)data[4]) & 0xff));
  3006. if (tc->readq.length() >= (mlen + 5)) {
  3007. InetAddress from;
  3008. unsigned long plen = mlen; // payload length, modified if there's an IP header
  3009. data += 5; // skip forward past pseudo-TLS junk and mlen
  3010. if (plen == 4) {
  3011. // Hello message, which isn't sent by proxy and would be ignored by client
  3012. }
  3013. else if (plen) {
  3014. // Messages should contain IPv4 or IPv6 source IP address data
  3015. switch (data[0]) {
  3016. case 4: // IPv4
  3017. if (plen >= 7) {
  3018. from.set((const void*)(data + 1), 4, ((((unsigned int)data[5]) & 0xff) << 8) | (((unsigned int)data[6]) & 0xff));
  3019. data += 7; // type + 4 byte IP + 2 byte port
  3020. plen -= 7;
  3021. }
  3022. else {
  3023. _phy.close(sock);
  3024. return;
  3025. }
  3026. break;
  3027. case 6: // IPv6
  3028. if (plen >= 19) {
  3029. from.set((const void*)(data + 1), 16, ((((unsigned int)data[17]) & 0xff) << 8) | (((unsigned int)data[18]) & 0xff));
  3030. data += 19; // type + 16 byte IP + 2 byte port
  3031. plen -= 19;
  3032. }
  3033. else {
  3034. _phy.close(sock);
  3035. return;
  3036. }
  3037. break;
  3038. case 0: // none/omitted
  3039. ++data;
  3040. --plen;
  3041. break;
  3042. default: // invalid address type
  3043. _phy.close(sock);
  3044. return;
  3045. }
  3046. if (from) {
  3047. InetAddress fakeTcpLocalInterfaceAddress((uint32_t)0xffffffff, 0xffff);
  3048. const ZT_ResultCode rc = _node->processWirePacket((void*)0, OSUtils::now(), -1, reinterpret_cast<struct sockaddr_storage*>(&from), data, plen, &_nextBackgroundTaskDeadline);
  3049. if (ZT_ResultCode_isFatal(rc)) {
  3050. char tmp[256];
  3051. OSUtils::ztsnprintf(tmp, sizeof(tmp), "fatal error code from processWirePacket: %d", (int)rc);
  3052. Mutex::Lock _l(_termReason_m);
  3053. _termReason = ONE_UNRECOVERABLE_ERROR;
  3054. _fatalErrorMessage = tmp;
  3055. this->terminate();
  3056. _phy.close(sock);
  3057. return;
  3058. }
  3059. }
  3060. }
  3061. if (tc->readq.length() > (mlen + 5))
  3062. tc->readq.erase(tc->readq.begin(), tc->readq.begin() + (mlen + 5));
  3063. else
  3064. tc->readq.clear();
  3065. }
  3066. else
  3067. break;
  3068. }
  3069. return;
  3070. }
  3071. }
  3072. catch (...) {
  3073. _phy.close(sock);
  3074. }
  3075. }
  3076. inline void phyOnTcpWritable(PhySocket* sock, void** uptr)
  3077. {
  3078. TcpConnection* tc = reinterpret_cast<TcpConnection*>(*uptr);
  3079. bool closeit = false;
  3080. {
  3081. Mutex::Lock _l(tc->writeq_m);
  3082. if (tc->writeq.length() > 0) {
  3083. long sent = (long)_phy.streamSend(sock, tc->writeq.data(), (unsigned long)tc->writeq.length(), true);
  3084. Metrics::tcp_send += sent;
  3085. if (sent > 0) {
  3086. if ((unsigned long)sent >= (unsigned long)tc->writeq.length()) {
  3087. tc->writeq.clear();
  3088. _phy.setNotifyWritable(sock, false);
  3089. if (tc->type == TcpConnection::TCP_HTTP_INCOMING)
  3090. closeit = true; // HTTP keep alive not supported
  3091. }
  3092. else {
  3093. tc->writeq.erase(tc->writeq.begin(), tc->writeq.begin() + sent);
  3094. }
  3095. }
  3096. }
  3097. else {
  3098. _phy.setNotifyWritable(sock, false);
  3099. }
  3100. }
  3101. if (closeit)
  3102. _phy.close(sock);
  3103. }
  3104. inline void phyOnFileDescriptorActivity(PhySocket* sock, void** uptr, bool readable, bool writable)
  3105. {
  3106. }
  3107. inline void phyOnUnixAccept(PhySocket* sockL, PhySocket* sockN, void** uptrL, void** uptrN)
  3108. {
  3109. }
  3110. inline void phyOnUnixClose(PhySocket* sock, void** uptr)
  3111. {
  3112. }
  3113. inline void phyOnUnixData(PhySocket* sock, void** uptr, void* data, unsigned long len)
  3114. {
  3115. #ifdef ZT_EXTOSDEP
  3116. if (ExtOsdep::mgmtRecv(*uptr, data, len, [&](unsigned method, const std::string& path, const std::string& data, std::string& resp) {
  3117. // fprintf(stderr, "mgmtRecv: %u %s %s\n", method, path.c_str(), data.c_str());
  3118. httplib::Request req;
  3119. httplib::Response res;
  3120. req.path = "/" + path;
  3121. if (method == 1)
  3122. req.method = "GET";
  3123. else if (method == 3)
  3124. req.method = "POST";
  3125. else if (method == 0)
  3126. req.method = "DELETE";
  3127. struct S : public httplib::Stream {
  3128. const char* ptr;
  3129. unsigned size;
  3130. S(const std::string& s) : ptr(s.c_str()), size(s.size())
  3131. {
  3132. }
  3133. virtual bool is_readable() const
  3134. {
  3135. return true;
  3136. }
  3137. virtual bool is_writable() const
  3138. {
  3139. return true;
  3140. }
  3141. virtual ssize_t read(char* p, size_t sz)
  3142. {
  3143. // fprintf(stderr, "S::read %d\n", (int)size);
  3144. if (sz > (size_t)size)
  3145. sz = size;
  3146. memcpy(p, ptr, sz);
  3147. size -= (unsigned)sz;
  3148. ptr += sz;
  3149. return (ssize_t)sz;
  3150. }
  3151. virtual ssize_t write(const char* ptr, size_t size)
  3152. {
  3153. // fprintf(stderr, "S::write %d\n", (int)size);
  3154. return size;
  3155. }
  3156. virtual void get_remote_ip_and_port(std::string& ip, int& port) const
  3157. {
  3158. }
  3159. virtual void get_local_ip_and_port(std::string& ip, int& port) const {};
  3160. virtual socket_t socket() const
  3161. {
  3162. return 0;
  3163. }
  3164. };
  3165. S s(data);
  3166. bool x = _controlPlane.routing(req, res, s);
  3167. // fprintf(stderr, "mgmtRecv: done, x %d status %u body %s\n", x, res.status, res.body.c_str());
  3168. resp = res.body;
  3169. return res.status;
  3170. }))
  3171. _phy.setNotifyWritable(sock, true);
  3172. #endif
  3173. }
  3174. inline void phyOnUnixWritable(PhySocket* sock, void** uptr)
  3175. {
  3176. #ifdef ZT_EXTOSDEP
  3177. if (ExtOsdep::mgmtWritable(*uptr))
  3178. _phy.setNotifyWritable(sock, false);
  3179. #endif
  3180. }
  3181. inline int nodeVirtualNetworkConfigFunction(uint64_t nwid, void** nuptr, enum ZT_VirtualNetworkConfigOperation op, const ZT_VirtualNetworkConfig* nwc)
  3182. {
  3183. Mutex::Lock _l(_nets_m);
  3184. NetworkState& n = _nets[nwid];
  3185. n.setWebPort(_primaryPort);
  3186. switch (op) {
  3187. case ZT_VIRTUAL_NETWORK_CONFIG_OPERATION_UP:
  3188. if (! n.tap()) {
  3189. try {
  3190. char friendlyName[128];
  3191. OSUtils::ztsnprintf(friendlyName, sizeof(friendlyName), "ZeroTier One [%.16llx]", nwid);
  3192. n.setTap(EthernetTap::newInstance(nullptr, _concurrency, _cpuPinningEnabled, _homePath.c_str(), MAC(nwc->mac), nwc->mtu, (unsigned int)ZT_IF_METRIC, nwid, friendlyName, StapFrameHandler, (void*)this));
  3193. *nuptr = (void*)&n;
  3194. char nlcpath[256];
  3195. OSUtils::ztsnprintf(nlcpath, sizeof(nlcpath), "%s" ZT_PATH_SEPARATOR_S "networks.d" ZT_PATH_SEPARATOR_S "%.16llx.local.conf", _homePath.c_str(), nwid);
  3196. std::string nlcbuf;
  3197. if (OSUtils::readFile(nlcpath, nlcbuf)) {
  3198. Dictionary<4096> nc;
  3199. nc.load(nlcbuf.c_str());
  3200. Buffer<1024> allowManaged;
  3201. if (nc.get("allowManaged", allowManaged) && allowManaged.size() > 0) {
  3202. std::string addresses(allowManaged.begin(), allowManaged.size());
  3203. if (allowManaged.size() <= 5) { // untidy parsing for backward compatibility
  3204. if (allowManaged[0] == '1' || allowManaged[0] == 't' || allowManaged[0] == 'T') {
  3205. n.setAllowManaged(true);
  3206. }
  3207. else {
  3208. n.setAllowManaged(false);
  3209. }
  3210. }
  3211. else {
  3212. // this should be a list of IP addresses
  3213. n.setAllowManaged(true);
  3214. size_t pos = 0;
  3215. while (true) {
  3216. size_t nextPos = addresses.find(',', pos);
  3217. std::string address = addresses.substr(pos, (nextPos == std::string::npos ? addresses.size() : nextPos) - pos);
  3218. n.addToAllowManagedWhiteList(InetAddress(address.c_str()));
  3219. if (nextPos == std::string::npos)
  3220. break;
  3221. pos = nextPos + 1;
  3222. }
  3223. }
  3224. }
  3225. else {
  3226. n.setAllowManaged(true);
  3227. }
  3228. n.setAllowGlobal(nc.getB("allowGlobal", false));
  3229. n.setAllowDefault(nc.getB("allowDefault", false));
  3230. n.setAllowDNS(nc.getB("allowDNS", false));
  3231. }
  3232. }
  3233. catch (std::exception& exc) {
  3234. #ifdef __WINDOWS__
  3235. FILE* tapFailLog = fopen((_homePath + ZT_PATH_SEPARATOR_S "port_error_log.txt").c_str(), "a");
  3236. if (tapFailLog) {
  3237. fprintf(tapFailLog, "%.16llx: %s" ZT_EOL_S, (unsigned long long)nwid, exc.what());
  3238. fclose(tapFailLog);
  3239. }
  3240. #else
  3241. fprintf(stderr, "ERROR: unable to configure virtual network port: %s" ZT_EOL_S, exc.what());
  3242. #endif
  3243. _nets.erase(nwid);
  3244. return -999;
  3245. }
  3246. catch (...) {
  3247. return -999; // tap init failed
  3248. }
  3249. }
  3250. // After setting up tap, fall through to CONFIG_UPDATE since we also want to do this...
  3251. case ZT_VIRTUAL_NETWORK_CONFIG_OPERATION_CONFIG_UPDATE:
  3252. n.setConfig(nwc);
  3253. if (n.tap()) { // sanity check
  3254. #if defined(__WINDOWS__) && ! defined(ZT_SDK)
  3255. // wait for up to 5 seconds for the WindowsEthernetTap to actually be initialized
  3256. //
  3257. // without WindowsEthernetTap::isInitialized() returning true, the won't actually
  3258. // be online yet and setting managed routes on it will fail.
  3259. const int MAX_SLEEP_COUNT = 500;
  3260. for (int i = 0; ! ((WindowsEthernetTap*)(n.tap().get()))->isInitialized() && i < MAX_SLEEP_COUNT; i++) {
  3261. Sleep(10);
  3262. }
  3263. #endif
  3264. syncManagedStuff(n, true, true, true);
  3265. n.tap()->setMtu(nwc->mtu);
  3266. }
  3267. else {
  3268. _nets.erase(nwid);
  3269. return -999; // tap init failed
  3270. }
  3271. break;
  3272. case ZT_VIRTUAL_NETWORK_CONFIG_OPERATION_DOWN:
  3273. case ZT_VIRTUAL_NETWORK_CONFIG_OPERATION_DESTROY:
  3274. if (n.tap()) { // sanity check
  3275. #if defined(__WINDOWS__) && ! defined(ZT_SDK)
  3276. std::string winInstanceId(((WindowsEthernetTap*)(n.tap().get()))->instanceId());
  3277. #endif
  3278. *nuptr = (void*)0;
  3279. n.tap().reset();
  3280. _nets.erase(nwid);
  3281. #if defined(__WINDOWS__) && ! defined(ZT_SDK)
  3282. if ((op == ZT_VIRTUAL_NETWORK_CONFIG_OPERATION_DESTROY) && (winInstanceId.length() > 0)) {
  3283. WindowsEthernetTap::deletePersistentTapDevice(winInstanceId.c_str());
  3284. WinFWHelper::removeICMPRules(nwid);
  3285. }
  3286. #endif
  3287. if (op == ZT_VIRTUAL_NETWORK_CONFIG_OPERATION_DESTROY) {
  3288. char nlcpath[256];
  3289. OSUtils::ztsnprintf(nlcpath, sizeof(nlcpath), "%s" ZT_PATH_SEPARATOR_S "networks.d" ZT_PATH_SEPARATOR_S "%.16llx.local.conf", _homePath.c_str(), nwid);
  3290. OSUtils::rm(nlcpath);
  3291. }
  3292. }
  3293. else {
  3294. _nets.erase(nwid);
  3295. }
  3296. break;
  3297. }
  3298. return 0;
  3299. }
  3300. inline void nodeEventCallback(enum ZT_Event event, const void* metaData)
  3301. {
  3302. switch (event) {
  3303. case ZT_EVENT_FATAL_ERROR_IDENTITY_COLLISION: {
  3304. Mutex::Lock _l(_termReason_m);
  3305. _termReason = ONE_IDENTITY_COLLISION;
  3306. _fatalErrorMessage = "identity/address collision";
  3307. this->terminate();
  3308. } break;
  3309. case ZT_EVENT_TRACE: {
  3310. if (metaData) {
  3311. ::fprintf(stderr, "%s" ZT_EOL_S, (const char*)metaData);
  3312. ::fflush(stderr);
  3313. }
  3314. } break;
  3315. case ZT_EVENT_USER_MESSAGE: {
  3316. const ZT_UserMessage* um = reinterpret_cast<const ZT_UserMessage*>(metaData);
  3317. if ((um->typeId == ZT_SOFTWARE_UPDATE_USER_MESSAGE_TYPE) && (_updater)) {
  3318. _updater->handleSoftwareUpdateUserMessage(um->origin, um->data, um->length);
  3319. }
  3320. } break;
  3321. case ZT_EVENT_REMOTE_TRACE: {
  3322. const ZT_RemoteTrace* rt = reinterpret_cast<const ZT_RemoteTrace*>(metaData);
  3323. if ((rt) && (rt->len > 0) && (rt->len <= ZT_MAX_REMOTE_TRACE_SIZE) && (rt->data))
  3324. _controller->handleRemoteTrace(*rt);
  3325. }
  3326. default:
  3327. break;
  3328. }
  3329. }
  3330. #if ZT_VAULT_SUPPORT
  3331. inline bool nodeVaultPutIdentity(enum ZT_StateObjectType type, const void* data, int len)
  3332. {
  3333. bool retval = false;
  3334. if (type != ZT_STATE_OBJECT_IDENTITY_PUBLIC && type != ZT_STATE_OBJECT_IDENTITY_SECRET) {
  3335. return retval;
  3336. }
  3337. CURL* curl = curl_easy_init();
  3338. if (curl) {
  3339. char token[512] = { 0 };
  3340. snprintf(token, sizeof(token), "X-Vault-Token: %s", _vaultToken.c_str());
  3341. struct curl_slist* chunk = NULL;
  3342. chunk = curl_slist_append(chunk, token);
  3343. char content_type[512] = { 0 };
  3344. snprintf(content_type, sizeof(content_type), "Content-Type: application/json");
  3345. chunk = curl_slist_append(chunk, content_type);
  3346. curl_easy_setopt(curl, CURLOPT_HTTPHEADER, chunk);
  3347. char url[2048] = { 0 };
  3348. snprintf(url, sizeof(url), "%s/v1/%s", _vaultURL.c_str(), _vaultPath.c_str());
  3349. curl_easy_setopt(curl, CURLOPT_URL, url);
  3350. json d = json::object();
  3351. if (type == ZT_STATE_OBJECT_IDENTITY_PUBLIC) {
  3352. std::string key((const char*)data, len);
  3353. d["public"] = key;
  3354. }
  3355. else if (type == ZT_STATE_OBJECT_IDENTITY_SECRET) {
  3356. std::string key((const char*)data, len);
  3357. d["secret"] = key;
  3358. }
  3359. if (! d.empty()) {
  3360. std::string post = d.dump();
  3361. if (! post.empty()) {
  3362. curl_easy_setopt(curl, CURLOPT_POSTFIELDS, post.c_str());
  3363. curl_easy_setopt(curl, CURLOPT_POSTFIELDSIZE, post.length());
  3364. #ifndef NDEBUG
  3365. curl_easy_setopt(curl, CURLOPT_VERBOSE, 1L);
  3366. #endif
  3367. CURLcode res = curl_easy_perform(curl);
  3368. if (res == CURLE_OK) {
  3369. long response_code = 0;
  3370. curl_easy_getinfo(curl, CURLINFO_RESPONSE_CODE, &response_code);
  3371. if (response_code == 200 || response_code == 204) {
  3372. retval = true;
  3373. }
  3374. }
  3375. }
  3376. }
  3377. curl_easy_cleanup(curl);
  3378. curl = NULL;
  3379. curl_slist_free_all(chunk);
  3380. chunk = NULL;
  3381. }
  3382. return retval;
  3383. }
  3384. #endif
  3385. inline void nodeStatePutFunction(enum ZT_StateObjectType type, const uint64_t id[2], const void* data, int len)
  3386. {
  3387. #if ZT_VAULT_SUPPORT
  3388. if (_vaultEnabled && (type == ZT_STATE_OBJECT_IDENTITY_SECRET || type == ZT_STATE_OBJECT_IDENTITY_PUBLIC)) {
  3389. if (nodeVaultPutIdentity(type, data, len)) {
  3390. // value successfully written to Vault
  3391. return;
  3392. }
  3393. // else fallback to disk
  3394. }
  3395. #endif
  3396. char p[1024];
  3397. FILE* f;
  3398. bool secure = false;
  3399. char dirname[1024];
  3400. dirname[0] = 0;
  3401. switch (type) {
  3402. case ZT_STATE_OBJECT_IDENTITY_PUBLIC:
  3403. OSUtils::ztsnprintf(p, sizeof(p), "%s" ZT_PATH_SEPARATOR_S "identity.public", _homePath.c_str());
  3404. break;
  3405. case ZT_STATE_OBJECT_IDENTITY_SECRET:
  3406. OSUtils::ztsnprintf(p, sizeof(p), "%s" ZT_PATH_SEPARATOR_S "identity.secret", _homePath.c_str());
  3407. secure = true;
  3408. break;
  3409. case ZT_STATE_OBJECT_PLANET:
  3410. OSUtils::ztsnprintf(p, sizeof(p), "%s" ZT_PATH_SEPARATOR_S "planet", _homePath.c_str());
  3411. break;
  3412. case ZT_STATE_OBJECT_MOON:
  3413. OSUtils::ztsnprintf(dirname, sizeof(dirname), "%s" ZT_PATH_SEPARATOR_S "moons.d", _homePath.c_str());
  3414. OSUtils::ztsnprintf(p, sizeof(p), "%s" ZT_PATH_SEPARATOR_S "%.16llx.moon", dirname, (unsigned long long)id[0]);
  3415. break;
  3416. case ZT_STATE_OBJECT_NETWORK_CONFIG:
  3417. OSUtils::ztsnprintf(dirname, sizeof(dirname), "%s" ZT_PATH_SEPARATOR_S "networks.d", _homePath.c_str());
  3418. OSUtils::ztsnprintf(p, sizeof(p), "%s" ZT_PATH_SEPARATOR_S "%.16llx.conf", dirname, (unsigned long long)id[0]);
  3419. break;
  3420. case ZT_STATE_OBJECT_PEER:
  3421. OSUtils::ztsnprintf(dirname, sizeof(dirname), "%s" ZT_PATH_SEPARATOR_S "peers.d", _homePath.c_str());
  3422. OSUtils::ztsnprintf(p, sizeof(p), "%s" ZT_PATH_SEPARATOR_S "%.10llx.peer", dirname, (unsigned long long)id[0]);
  3423. break;
  3424. default:
  3425. return;
  3426. }
  3427. if ((len >= 0) && (data)) {
  3428. // Check to see if we've already written this first. This reduces
  3429. // redundant writes and I/O overhead on most platforms and has
  3430. // little effect on others.
  3431. f = fopen(p, "rb");
  3432. if (f) {
  3433. char* const buf = (char*)malloc(len * 4);
  3434. if (buf) {
  3435. long l = (long)fread(buf, 1, (size_t)(len * 4), f);
  3436. fclose(f);
  3437. if ((l == (long)len) && (memcmp(data, buf, l) == 0)) {
  3438. free(buf);
  3439. return;
  3440. }
  3441. free(buf);
  3442. }
  3443. }
  3444. f = fopen(p, "wb");
  3445. if ((! f) && (dirname[0])) { // create subdirectory if it does not exist
  3446. OSUtils::mkdir(dirname);
  3447. f = fopen(p, "wb");
  3448. }
  3449. if (f) {
  3450. if (fwrite(data, len, 1, f) != 1)
  3451. fprintf(stderr, "WARNING: unable to write to file: %s (I/O error)" ZT_EOL_S, p);
  3452. fclose(f);
  3453. if (secure)
  3454. OSUtils::lockDownFile(p, false);
  3455. }
  3456. else {
  3457. fprintf(stderr, "WARNING: unable to write to file: %s (unable to open)" ZT_EOL_S, p);
  3458. }
  3459. }
  3460. else {
  3461. OSUtils::rm(p);
  3462. }
  3463. }
  3464. #if ZT_VAULT_SUPPORT
  3465. inline int nodeVaultGetIdentity(enum ZT_StateObjectType type, void* data, unsigned int maxlen)
  3466. {
  3467. if (type != ZT_STATE_OBJECT_IDENTITY_SECRET && type != ZT_STATE_OBJECT_IDENTITY_PUBLIC) {
  3468. return -1;
  3469. }
  3470. int ret = -1;
  3471. CURL* curl = curl_easy_init();
  3472. if (curl) {
  3473. char token[512] = { 0 };
  3474. snprintf(token, sizeof(token), "X-Vault-Token: %s", _vaultToken.c_str());
  3475. struct curl_slist* chunk = NULL;
  3476. chunk = curl_slist_append(chunk, token);
  3477. curl_easy_setopt(curl, CURLOPT_HTTPHEADER, chunk);
  3478. char url[2048] = { 0 };
  3479. snprintf(url, sizeof(url), "%s/v1/%s", _vaultURL.c_str(), _vaultPath.c_str());
  3480. curl_easy_setopt(curl, CURLOPT_URL, url);
  3481. std::string response;
  3482. std::string res_headers;
  3483. curl_easy_setopt(curl, CURLOPT_WRITEFUNCTION, &curlResponseWrite);
  3484. curl_easy_setopt(curl, CURLOPT_WRITEDATA, &response);
  3485. curl_easy_setopt(curl, CURLOPT_HEADERDATA, &res_headers);
  3486. #ifndef NDEBUG
  3487. curl_easy_setopt(curl, CURLOPT_VERBOSE, 1L);
  3488. #endif
  3489. CURLcode res = curl_easy_perform(curl);
  3490. if (res == CURLE_OK) {
  3491. long response_code = 0;
  3492. curl_easy_getinfo(curl, CURLINFO_RESPONSE_CODE, &response_code);
  3493. if (response_code == 200) {
  3494. try {
  3495. json payload = json::parse(response);
  3496. if (! payload["data"].is_null()) {
  3497. json& d = payload["data"];
  3498. if (type == ZT_STATE_OBJECT_IDENTITY_SECRET) {
  3499. std::string secret = OSUtils::jsonString(d["secret"], "");
  3500. if (! secret.empty()) {
  3501. ret = (int)secret.length();
  3502. memcpy(data, secret.c_str(), ret);
  3503. }
  3504. }
  3505. else if (type == ZT_STATE_OBJECT_IDENTITY_PUBLIC) {
  3506. std::string pub = OSUtils::jsonString(d["public"], "");
  3507. if (! pub.empty()) {
  3508. ret = (int)pub.length();
  3509. memcpy(data, pub.c_str(), ret);
  3510. }
  3511. }
  3512. }
  3513. }
  3514. catch (...) {
  3515. ret = -1;
  3516. }
  3517. }
  3518. }
  3519. curl_easy_cleanup(curl);
  3520. curl = NULL;
  3521. curl_slist_free_all(chunk);
  3522. chunk = NULL;
  3523. }
  3524. return ret;
  3525. }
  3526. #endif
  3527. inline int nodeStateGetFunction(enum ZT_StateObjectType type, const uint64_t id[2], void* data, unsigned int maxlen)
  3528. {
  3529. #if ZT_VAULT_SUPPORT
  3530. if (_vaultEnabled && (type == ZT_STATE_OBJECT_IDENTITY_SECRET || type == ZT_STATE_OBJECT_IDENTITY_PUBLIC)) {
  3531. int retval = nodeVaultGetIdentity(type, data, maxlen);
  3532. if (retval >= 0)
  3533. return retval;
  3534. // else continue file based lookup
  3535. }
  3536. #endif
  3537. char p[4096];
  3538. switch (type) {
  3539. case ZT_STATE_OBJECT_IDENTITY_PUBLIC:
  3540. OSUtils::ztsnprintf(p, sizeof(p), "%s" ZT_PATH_SEPARATOR_S "identity.public", _homePath.c_str());
  3541. break;
  3542. case ZT_STATE_OBJECT_IDENTITY_SECRET:
  3543. OSUtils::ztsnprintf(p, sizeof(p), "%s" ZT_PATH_SEPARATOR_S "identity.secret", _homePath.c_str());
  3544. break;
  3545. case ZT_STATE_OBJECT_PLANET:
  3546. OSUtils::ztsnprintf(p, sizeof(p), "%s" ZT_PATH_SEPARATOR_S "planet", _homePath.c_str());
  3547. break;
  3548. case ZT_STATE_OBJECT_MOON:
  3549. OSUtils::ztsnprintf(p, sizeof(p), "%s" ZT_PATH_SEPARATOR_S "moons.d" ZT_PATH_SEPARATOR_S "%.16llx.moon", _homePath.c_str(), (unsigned long long)id[0]);
  3550. break;
  3551. case ZT_STATE_OBJECT_NETWORK_CONFIG:
  3552. OSUtils::ztsnprintf(p, sizeof(p), "%s" ZT_PATH_SEPARATOR_S "networks.d" ZT_PATH_SEPARATOR_S "%.16llx.conf", _homePath.c_str(), (unsigned long long)id[0]);
  3553. break;
  3554. case ZT_STATE_OBJECT_PEER:
  3555. OSUtils::ztsnprintf(p, sizeof(p), "%s" ZT_PATH_SEPARATOR_S "peers.d" ZT_PATH_SEPARATOR_S "%.10llx.peer", _homePath.c_str(), (unsigned long long)id[0]);
  3556. break;
  3557. default:
  3558. return -1;
  3559. }
  3560. FILE* f = fopen(p, "rb");
  3561. if (f) {
  3562. int n = (int)fread(data, 1, maxlen, f);
  3563. fclose(f);
  3564. #if ZT_VAULT_SUPPORT
  3565. if (_vaultEnabled && (type == ZT_STATE_OBJECT_IDENTITY_SECRET || type == ZT_STATE_OBJECT_IDENTITY_PUBLIC)) {
  3566. // If we've gotten here while Vault is enabled, Vault does not know the key and it's been
  3567. // read from disk instead.
  3568. //
  3569. // We should put the value in Vault and remove the local file.
  3570. if (nodeVaultPutIdentity(type, data, n)) {
  3571. unlink(p);
  3572. }
  3573. }
  3574. #endif
  3575. if (n >= 0)
  3576. return n;
  3577. }
  3578. return -1;
  3579. }
  3580. inline int nodeWirePacketSendFunction(const int64_t localSocket, const struct sockaddr_storage* addr, const void* data, unsigned int len, unsigned int ttl)
  3581. {
  3582. #ifdef ZT_TCP_FALLBACK_RELAY
  3583. if (_allowTcpFallbackRelay) {
  3584. if (addr->ss_family == AF_INET) {
  3585. // TCP fallback tunnel support, currently IPv4 only
  3586. if ((len >= 16) && (reinterpret_cast<const InetAddress*>(addr)->ipScope() == InetAddress::IP_SCOPE_GLOBAL)) {
  3587. // Engage TCP tunnel fallback if we haven't received anything valid from a global
  3588. // IP address in ZT_TCP_FALLBACK_AFTER milliseconds. If we do start getting
  3589. // valid direct traffic we'll stop using it and close the socket after a while.
  3590. const int64_t now = OSUtils::now();
  3591. if (_forceTcpRelay || (((now - _lastDirectReceiveFromGlobal) > ZT_TCP_FALLBACK_AFTER) && ((now - _lastRestart) > ZT_TCP_FALLBACK_AFTER))) {
  3592. if (_tcpFallbackTunnel) {
  3593. bool flushNow = false;
  3594. {
  3595. Mutex::Lock _l(_tcpFallbackTunnel->writeq_m);
  3596. if (_tcpFallbackTunnel->writeq.size() < (1024 * 64)) {
  3597. if (_tcpFallbackTunnel->writeq.length() == 0) {
  3598. _phy.setNotifyWritable(_tcpFallbackTunnel->sock, true);
  3599. flushNow = true;
  3600. }
  3601. const unsigned long mlen = len + 7;
  3602. _tcpFallbackTunnel->writeq.push_back((char)0x17);
  3603. _tcpFallbackTunnel->writeq.push_back((char)0x03);
  3604. _tcpFallbackTunnel->writeq.push_back((char)0x03); // fake TLS 1.2 header
  3605. _tcpFallbackTunnel->writeq.push_back((char)((mlen >> 8) & 0xff));
  3606. _tcpFallbackTunnel->writeq.push_back((char)(mlen & 0xff));
  3607. _tcpFallbackTunnel->writeq.push_back((char)4); // IPv4
  3608. _tcpFallbackTunnel->writeq.append(reinterpret_cast<const char*>(reinterpret_cast<const void*>(&(reinterpret_cast<const struct sockaddr_in*>(addr)->sin_addr.s_addr))), 4);
  3609. _tcpFallbackTunnel->writeq.append(reinterpret_cast<const char*>(reinterpret_cast<const void*>(&(reinterpret_cast<const struct sockaddr_in*>(addr)->sin_port))), 2);
  3610. _tcpFallbackTunnel->writeq.append((const char*)data, len);
  3611. }
  3612. }
  3613. if (flushNow) {
  3614. void* tmpptr = (void*)_tcpFallbackTunnel;
  3615. phyOnTcpWritable(_tcpFallbackTunnel->sock, &tmpptr);
  3616. }
  3617. }
  3618. else if (_forceTcpRelay || (((now - _lastSendToGlobalV4) < ZT_TCP_FALLBACK_AFTER) && ((now - _lastSendToGlobalV4) > (ZT_PING_CHECK_INTERVAL / 2)))) {
  3619. const InetAddress addr(_fallbackRelayAddress);
  3620. TcpConnection* tc = new TcpConnection();
  3621. {
  3622. Mutex::Lock _l(_tcpConnections_m);
  3623. _tcpConnections.push_back(tc);
  3624. }
  3625. tc->type = TcpConnection::TCP_TUNNEL_OUTGOING;
  3626. tc->remoteAddr = addr;
  3627. tc->lastReceive = OSUtils::now();
  3628. tc->parent = this;
  3629. tc->sock = (PhySocket*)0; // set in connect handler
  3630. tc->messageSize = 0;
  3631. bool connected = false;
  3632. _phy.tcpConnect(reinterpret_cast<const struct sockaddr*>(&addr), connected, (void*)tc, true);
  3633. }
  3634. }
  3635. _lastSendToGlobalV4 = now;
  3636. }
  3637. }
  3638. }
  3639. if (_forceTcpRelay) {
  3640. // Shortcut here so that we don't emit any UDP packets
  3641. return 0;
  3642. }
  3643. #endif // ZT_TCP_FALLBACK_RELAY
  3644. // Even when relaying we still send via UDP. This way if UDP starts
  3645. // working we can instantly "fail forward" to it and stop using TCP
  3646. // proxy fallback, which is slow.
  3647. if ((localSocket != -1) && (localSocket != 0) && (_binder.isUdpSocketValid((PhySocket*)((uintptr_t)localSocket)))) {
  3648. if ((ttl) && (addr->ss_family == AF_INET)) {
  3649. _phy.setIp4UdpTtl((PhySocket*)((uintptr_t)localSocket), ttl);
  3650. }
  3651. const bool r = _phy.udpSend((PhySocket*)((uintptr_t)localSocket), (const struct sockaddr*)addr, data, len);
  3652. if ((ttl) && (addr->ss_family == AF_INET)) {
  3653. _phy.setIp4UdpTtl((PhySocket*)((uintptr_t)localSocket), 255);
  3654. }
  3655. return ((r) ? 0 : -1);
  3656. }
  3657. else {
  3658. return ((_binder.udpSendAll(_phy, addr, data, len, ttl)) ? 0 : -1);
  3659. }
  3660. }
  3661. inline void nodeVirtualNetworkFrameFunction(uint64_t nwid, void** nuptr, uint64_t sourceMac, uint64_t destMac, unsigned int etherType, unsigned int vlanId, const void* data, unsigned int len)
  3662. {
  3663. NetworkState* n = reinterpret_cast<NetworkState*>(*nuptr);
  3664. if ((! n) || (! n->tap())) {
  3665. return;
  3666. }
  3667. n->tap()->put(MAC(sourceMac), MAC(destMac), etherType, data, len);
  3668. }
  3669. inline int nodePathCheckFunction(uint64_t ztaddr, const int64_t localSocket, const struct sockaddr_storage* remoteAddr)
  3670. {
  3671. // Make sure we're not trying to do ZeroTier-over-ZeroTier
  3672. {
  3673. Mutex::Lock _l(_nets_m);
  3674. for (std::map<uint64_t, NetworkState>::const_iterator n(_nets.begin()); n != _nets.end(); ++n) {
  3675. if (n->second.tap()) {
  3676. std::vector<InetAddress> ips(n->second.tap()->ips());
  3677. for (std::vector<InetAddress>::const_iterator i(ips.begin()); i != ips.end(); ++i) {
  3678. if (i->containsAddress(*(reinterpret_cast<const InetAddress*>(remoteAddr)))) {
  3679. return 0;
  3680. }
  3681. }
  3682. }
  3683. }
  3684. }
  3685. /* Note: I do not think we need to scan for overlap with managed routes
  3686. * because of the "route forking" and interface binding that we do. This
  3687. * ensures (we hope) that ZeroTier traffic will still take the physical
  3688. * path even if its managed routes override this for other traffic. Will
  3689. * revisit if we see recursion problems. */
  3690. // Check blacklists
  3691. const Hashtable<uint64_t, std::vector<InetAddress> >* blh = (const Hashtable<uint64_t, std::vector<InetAddress> >*)0;
  3692. const std::vector<InetAddress>* gbl = (const std::vector<InetAddress>*)0;
  3693. if (remoteAddr->ss_family == AF_INET) {
  3694. blh = &_v4Blacklists;
  3695. gbl = &_globalV4Blacklist;
  3696. }
  3697. else if (remoteAddr->ss_family == AF_INET6) {
  3698. blh = &_v6Blacklists;
  3699. gbl = &_globalV6Blacklist;
  3700. }
  3701. if (blh) {
  3702. Mutex::Lock _l(_localConfig_m);
  3703. const std::vector<InetAddress>* l = blh->get(ztaddr);
  3704. if (l) {
  3705. for (std::vector<InetAddress>::const_iterator a(l->begin()); a != l->end(); ++a) {
  3706. if (a->containsAddress(*reinterpret_cast<const InetAddress*>(remoteAddr)))
  3707. return 0;
  3708. }
  3709. }
  3710. }
  3711. if (gbl) {
  3712. for (std::vector<InetAddress>::const_iterator a(gbl->begin()); a != gbl->end(); ++a) {
  3713. if (a->containsAddress(*reinterpret_cast<const InetAddress*>(remoteAddr)))
  3714. return 0;
  3715. }
  3716. }
  3717. return 1;
  3718. }
  3719. inline int nodePathLookupFunction(uint64_t ztaddr, int family, struct sockaddr_storage* result)
  3720. {
  3721. const Hashtable<uint64_t, std::vector<InetAddress> >* lh = (const Hashtable<uint64_t, std::vector<InetAddress> >*)0;
  3722. if (family < 0)
  3723. lh = (_node->prng() & 1) ? &_v4Hints : &_v6Hints;
  3724. else if (family == AF_INET)
  3725. lh = &_v4Hints;
  3726. else if (family == AF_INET6)
  3727. lh = &_v6Hints;
  3728. else
  3729. return 0;
  3730. const std::vector<InetAddress>* l = lh->get(ztaddr);
  3731. if ((l) && (! l->empty())) {
  3732. memcpy(result, &((*l)[(unsigned long)_node->prng() % l->size()]), sizeof(struct sockaddr_storage));
  3733. return 1;
  3734. }
  3735. else
  3736. return 0;
  3737. }
  3738. inline void tapFrameHandler(uint64_t nwid, const MAC& from, const MAC& to, unsigned int etherType, unsigned int vlanId, const void* data, unsigned int len)
  3739. {
  3740. _node->processVirtualNetworkFrame((void*)0, OSUtils::now(), nwid, from.toInt(), to.toInt(), etherType, vlanId, data, len, &_nextBackgroundTaskDeadline);
  3741. }
  3742. inline void onHttpResponseFromClient(TcpConnection* tc)
  3743. {
  3744. _phy.close(tc->sock);
  3745. }
  3746. bool shouldBindInterface(const char* ifname, const InetAddress& ifaddr)
  3747. {
  3748. #if defined(__linux__) || defined(linux) || defined(__LINUX__) || defined(__linux)
  3749. if ((ifname[0] == 'l') && (ifname[1] == 'o'))
  3750. return false; // loopback
  3751. if ((ifname[0] == 'z') && (ifname[1] == 't'))
  3752. return false; // sanity check: zt#
  3753. if ((ifname[0] == 't') && (ifname[1] == 'u') && (ifname[2] == 'n'))
  3754. return false; // tun# is probably an OpenVPN tunnel or similar
  3755. if ((ifname[0] == 't') && (ifname[1] == 'a') && (ifname[2] == 'p'))
  3756. return false; // tap# is probably an OpenVPN tunnel or similar
  3757. #endif
  3758. #ifdef __APPLE__
  3759. if ((ifname[0] == 'f') && (ifname[1] == 'e') && (ifname[2] == 't') && (ifname[3] == 'h'))
  3760. return false; // ... as is feth#
  3761. if ((ifname[0] == 'l') && (ifname[1] == 'o'))
  3762. return false; // loopback
  3763. if ((ifname[0] == 'z') && (ifname[1] == 't'))
  3764. return false; // sanity check: zt#
  3765. if ((ifname[0] == 't') && (ifname[1] == 'u') && (ifname[2] == 'n'))
  3766. return false; // tun# is probably an OpenVPN tunnel or similar
  3767. if ((ifname[0] == 't') && (ifname[1] == 'a') && (ifname[2] == 'p'))
  3768. return false; // tap# is probably an OpenVPN tunnel or similar
  3769. if ((ifname[0] == 'u') && (ifname[1] == 't') && (ifname[2] == 'u') && (ifname[3] == 'n'))
  3770. return false; // ... as is utun#
  3771. #endif
  3772. #ifdef __FreeBSD__
  3773. if ((ifname[0] == 'l') && (ifname[1] == 'o'))
  3774. return false; // loopback
  3775. if ((ifname[0] == 'z') && (ifname[1] == 't'))
  3776. return false; // sanity check: zt#
  3777. #endif
  3778. {
  3779. Mutex::Lock _l(_localConfig_m);
  3780. for (std::vector<std::string>::const_iterator p(_interfacePrefixBlacklist.begin()); p != _interfacePrefixBlacklist.end(); ++p) {
  3781. if (! strncmp(p->c_str(), ifname, p->length()))
  3782. return false;
  3783. }
  3784. }
  3785. {
  3786. // Check global blacklists
  3787. const std::vector<InetAddress>* gbl = (const std::vector<InetAddress>*)0;
  3788. if (ifaddr.ss_family == AF_INET) {
  3789. gbl = &_globalV4Blacklist;
  3790. }
  3791. else if (ifaddr.ss_family == AF_INET6) {
  3792. gbl = &_globalV6Blacklist;
  3793. }
  3794. if (gbl) {
  3795. Mutex::Lock _l(_localConfig_m);
  3796. for (std::vector<InetAddress>::const_iterator a(gbl->begin()); a != gbl->end(); ++a) {
  3797. if (a->containsAddress(ifaddr))
  3798. return false;
  3799. }
  3800. }
  3801. }
  3802. {
  3803. Mutex::Lock _l(_nets_m);
  3804. for (std::map<uint64_t, NetworkState>::const_iterator n(_nets.begin()); n != _nets.end(); ++n) {
  3805. if (n->second.tap()) {
  3806. std::vector<InetAddress> ips(n->second.tap()->ips());
  3807. for (std::vector<InetAddress>::const_iterator i(ips.begin()); i != ips.end(); ++i) {
  3808. if (i->ipsEqual(ifaddr))
  3809. return false;
  3810. }
  3811. #ifdef _WIN32
  3812. if (n->second.tap()->friendlyName() == ifname)
  3813. return false;
  3814. #endif
  3815. }
  3816. }
  3817. }
  3818. return true;
  3819. }
  3820. unsigned int _getRandomPort()
  3821. {
  3822. unsigned int randp = 0;
  3823. Utils::getSecureRandom(&randp, sizeof(randp));
  3824. randp = 20000 + (randp % 45500);
  3825. for (int i = 0;; ++i) {
  3826. if (i > 1000) {
  3827. return 0;
  3828. }
  3829. else if (++randp >= 65536) {
  3830. randp = 20000;
  3831. }
  3832. if (_trialBind(randp))
  3833. break;
  3834. }
  3835. return randp;
  3836. }
  3837. bool _trialBind(unsigned int port)
  3838. {
  3839. struct sockaddr_in in4;
  3840. struct sockaddr_in6 in6;
  3841. PhySocket* tb;
  3842. memset(&in4, 0, sizeof(in4));
  3843. in4.sin_family = AF_INET;
  3844. in4.sin_port = Utils::hton((uint16_t)port);
  3845. tb = _phy.udpBind(reinterpret_cast<const struct sockaddr*>(&in4), (void*)0, 0);
  3846. if (tb) {
  3847. _phy.close(tb, false);
  3848. tb = _phy.tcpListen(reinterpret_cast<const struct sockaddr*>(&in4), (void*)0);
  3849. if (tb) {
  3850. _phy.close(tb, false);
  3851. return true;
  3852. }
  3853. }
  3854. memset(&in6, 0, sizeof(in6));
  3855. in6.sin6_family = AF_INET6;
  3856. in6.sin6_port = Utils::hton((uint16_t)port);
  3857. tb = _phy.udpBind(reinterpret_cast<const struct sockaddr*>(&in6), (void*)0, 0);
  3858. if (tb) {
  3859. _phy.close(tb, false);
  3860. tb = _phy.tcpListen(reinterpret_cast<const struct sockaddr*>(&in6), (void*)0);
  3861. if (tb) {
  3862. _phy.close(tb, false);
  3863. return true;
  3864. }
  3865. }
  3866. return false;
  3867. }
  3868. };
  3869. static int SnodeVirtualNetworkConfigFunction(ZT_Node* node, void* uptr, void* tptr, uint64_t nwid, void** nuptr, enum ZT_VirtualNetworkConfigOperation op, const ZT_VirtualNetworkConfig* nwconf)
  3870. {
  3871. return reinterpret_cast<OneServiceImpl*>(uptr)->nodeVirtualNetworkConfigFunction(nwid, nuptr, op, nwconf);
  3872. }
  3873. static void SnodeEventCallback(ZT_Node* node, void* uptr, void* tptr, enum ZT_Event event, const void* metaData)
  3874. {
  3875. reinterpret_cast<OneServiceImpl*>(uptr)->nodeEventCallback(event, metaData);
  3876. }
  3877. static void SnodeStatePutFunction(ZT_Node* node, void* uptr, void* tptr, enum ZT_StateObjectType type, const uint64_t id[2], const void* data, int len)
  3878. {
  3879. reinterpret_cast<OneServiceImpl*>(uptr)->nodeStatePutFunction(type, id, data, len);
  3880. }
  3881. static int SnodeStateGetFunction(ZT_Node* node, void* uptr, void* tptr, enum ZT_StateObjectType type, const uint64_t id[2], void* data, unsigned int maxlen)
  3882. {
  3883. return reinterpret_cast<OneServiceImpl*>(uptr)->nodeStateGetFunction(type, id, data, maxlen);
  3884. }
  3885. static int SnodeWirePacketSendFunction(ZT_Node* node, void* uptr, void* tptr, int64_t localSocket, const struct sockaddr_storage* addr, const void* data, unsigned int len, unsigned int ttl)
  3886. {
  3887. return reinterpret_cast<OneServiceImpl*>(uptr)->nodeWirePacketSendFunction(localSocket, addr, data, len, ttl);
  3888. }
  3889. static void SnodeVirtualNetworkFrameFunction(ZT_Node* node, void* uptr, void* tptr, uint64_t nwid, void** nuptr, uint64_t sourceMac, uint64_t destMac, unsigned int etherType, unsigned int vlanId, const void* data, unsigned int len)
  3890. {
  3891. reinterpret_cast<OneServiceImpl*>(uptr)->nodeVirtualNetworkFrameFunction(nwid, nuptr, sourceMac, destMac, etherType, vlanId, data, len);
  3892. }
  3893. static int SnodePathCheckFunction(ZT_Node* node, void* uptr, void* tptr, uint64_t ztaddr, int64_t localSocket, const struct sockaddr_storage* remoteAddr)
  3894. {
  3895. return reinterpret_cast<OneServiceImpl*>(uptr)->nodePathCheckFunction(ztaddr, localSocket, remoteAddr);
  3896. }
  3897. static int SnodePathLookupFunction(ZT_Node* node, void* uptr, void* tptr, uint64_t ztaddr, int family, struct sockaddr_storage* result)
  3898. {
  3899. return reinterpret_cast<OneServiceImpl*>(uptr)->nodePathLookupFunction(ztaddr, family, result);
  3900. }
  3901. static void StapFrameHandler(void* uptr, void* tptr, uint64_t nwid, const MAC& from, const MAC& to, unsigned int etherType, unsigned int vlanId, const void* data, unsigned int len)
  3902. {
  3903. reinterpret_cast<OneServiceImpl*>(uptr)->tapFrameHandler(nwid, from, to, etherType, vlanId, data, len);
  3904. }
  3905. static int ShttpOnMessageBegin(http_parser* parser)
  3906. {
  3907. TcpConnection* tc = reinterpret_cast<TcpConnection*>(parser->data);
  3908. tc->currentHeaderField = "";
  3909. tc->currentHeaderValue = "";
  3910. tc->messageSize = 0;
  3911. tc->url.clear();
  3912. tc->status.clear();
  3913. tc->headers.clear();
  3914. tc->readq.clear();
  3915. return 0;
  3916. }
  3917. static int ShttpOnUrl(http_parser* parser, const char* ptr, size_t length)
  3918. {
  3919. TcpConnection* tc = reinterpret_cast<TcpConnection*>(parser->data);
  3920. tc->messageSize += (unsigned long)length;
  3921. if (tc->messageSize > ZT_MAX_HTTP_MESSAGE_SIZE)
  3922. return -1;
  3923. tc->url.append(ptr, length);
  3924. return 0;
  3925. }
  3926. #if (HTTP_PARSER_VERSION_MAJOR >= 2) && (HTTP_PARSER_VERSION_MINOR >= 2)
  3927. static int ShttpOnStatus(http_parser* parser, const char* ptr, size_t length)
  3928. #else
  3929. static int ShttpOnStatus(http_parser* parser)
  3930. #endif
  3931. {
  3932. return 0;
  3933. }
  3934. static int ShttpOnHeaderField(http_parser* parser, const char* ptr, size_t length)
  3935. {
  3936. TcpConnection* tc = reinterpret_cast<TcpConnection*>(parser->data);
  3937. tc->messageSize += (unsigned long)length;
  3938. if (tc->messageSize > ZT_MAX_HTTP_MESSAGE_SIZE)
  3939. return -1;
  3940. if ((tc->currentHeaderField.length()) && (tc->currentHeaderValue.length())) {
  3941. tc->headers[tc->currentHeaderField] = tc->currentHeaderValue;
  3942. tc->currentHeaderField = "";
  3943. tc->currentHeaderValue = "";
  3944. }
  3945. for (size_t i = 0; i < length; ++i)
  3946. tc->currentHeaderField.push_back(OSUtils::toLower(ptr[i]));
  3947. return 0;
  3948. }
  3949. static int ShttpOnValue(http_parser* parser, const char* ptr, size_t length)
  3950. {
  3951. TcpConnection* tc = reinterpret_cast<TcpConnection*>(parser->data);
  3952. tc->messageSize += (unsigned long)length;
  3953. if (tc->messageSize > ZT_MAX_HTTP_MESSAGE_SIZE)
  3954. return -1;
  3955. tc->currentHeaderValue.append(ptr, length);
  3956. return 0;
  3957. }
  3958. static int ShttpOnHeadersComplete(http_parser* parser)
  3959. {
  3960. TcpConnection* tc = reinterpret_cast<TcpConnection*>(parser->data);
  3961. if ((tc->currentHeaderField.length()) && (tc->currentHeaderValue.length()))
  3962. tc->headers[tc->currentHeaderField] = tc->currentHeaderValue;
  3963. return 0;
  3964. }
  3965. static int ShttpOnBody(http_parser* parser, const char* ptr, size_t length)
  3966. {
  3967. TcpConnection* tc = reinterpret_cast<TcpConnection*>(parser->data);
  3968. tc->messageSize += (unsigned long)length;
  3969. if (tc->messageSize > ZT_MAX_HTTP_MESSAGE_SIZE)
  3970. return -1;
  3971. tc->readq.append(ptr, length);
  3972. return 0;
  3973. }
  3974. static int ShttpOnMessageComplete(http_parser* parser)
  3975. {
  3976. TcpConnection* tc = reinterpret_cast<TcpConnection*>(parser->data);
  3977. if (tc->type == TcpConnection::TCP_HTTP_INCOMING) {}
  3978. else {
  3979. tc->parent->onHttpResponseFromClient(tc);
  3980. }
  3981. return 0;
  3982. }
  3983. } // anonymous namespace
  3984. std::string OneService::platformDefaultHomePath()
  3985. {
  3986. return OSUtils::platformDefaultHomePath();
  3987. }
  3988. OneService* OneService::newInstance(const char* hp, unsigned int port)
  3989. {
  3990. return new OneServiceImpl(hp, port);
  3991. }
  3992. OneService::~OneService()
  3993. {
  3994. }
  3995. } // namespace ZeroTier