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XrdClHttp::CurlWorker Class Reference

#include <XrdClHttpWorker.hh>

Collaboration diagram for XrdClHttp::CurlWorker:

Public Member Functions

 CurlWorker (const CurlWorker &)=delete
 CurlWorker (std::shared_ptr< HandlerQueue > queue, VerbsCache &cache, XrdCl::Log *logger)
std::tuple< std::string, std::string > ClientX509CertKeyFile () const
void Run ()
void Start (std::unique_ptr< XrdClHttp::CurlWorker > self, std::thread tid)

Static Public Member Functions

static std::string GetMonitoringJson ()
static void RunStatic (CurlWorker *myself)
static void SetMaintenancePeriod (unsigned maint)

Detailed Description

Definition at line 52 of file XrdClHttpWorker.hh.

Constructor & Destructor Documentation

◆ CurlWorker() [1/2]

CurlWorker::CurlWorker ( std::shared_ptr< HandlerQueue > queue,
VerbsCache & cache,
XrdCl::Log * logger )

Definition at line 1027 of file XrdClHttpUtil.cc.

1027 :
1028 m_cache(cache),
1029 m_queue(queue),
1030 m_logger(logger)
1031{
1032 {
1033 std::unique_lock lk(m_worker_stats_mutex);
1034 m_stats_offset = m_workers_last_completed_cycle.size();
1035 m_workers_last_completed_cycle.push_back(&m_last_completed_cycle);
1036 m_workers_oldest_op.push_back(&m_oldest_op);
1037 }
1038 int pipeInfo[2];
1039 if ((pipe(pipeInfo) == -1) || (fcntl(pipeInfo[0], F_SETFD, FD_CLOEXEC)) || (fcntl(pipeInfo[1], F_SETFD, FD_CLOEXEC))) {
1040 throw std::runtime_error("Failed to create shutdown monitoring pipe for curl worker");
1041 }
1042 m_shutdown_pipe_r = pipeInfo[0];
1043 m_shutdown_pipe_w = pipeInfo[1];
1044
1045 // Handle setup of the X509 authentication
1046 auto env = XrdCl::DefaultEnv::GetEnv();
1047 env->GetString("HttpClientCertFile", m_x509_client_cert_file);
1048 env->GetString("HttpClientKeyFile", m_x509_client_key_file);
1049}
static Env * GetEnv()
Get default client environment.

References XrdCl::DefaultEnv::GetEnv().

Referenced by CurlWorker(), and RunStatic().

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◆ CurlWorker() [2/2]

XrdClHttp::CurlWorker::CurlWorker ( const CurlWorker & )
delete

References CurlWorker(), ClientX509CertKeyFile(), Run(), RunStatic(), and Start().

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Member Function Documentation

◆ ClientX509CertKeyFile()

std::tuple< std::string, std::string > CurlWorker::ClientX509CertKeyFile ( ) const

Definition at line 1051 of file XrdClHttpUtil.cc.

1052{
1053 return std::make_tuple(m_x509_client_cert_file, m_x509_client_key_file);
1054}

Referenced by CurlWorker(), and XrdClHttp::CurlOperation::Setup().

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◆ GetMonitoringJson()

std::string CurlWorker::GetMonitoringJson ( )
static

Definition at line 1057 of file XrdClHttpUtil.cc.

1058{
1059 auto now = std::chrono::system_clock::now().time_since_epoch().count();
1060 auto oldest_op = now;
1061 auto oldest_cycle = now;
1062 {
1063 std::unique_lock lk(m_worker_stats_mutex);
1064 for (const auto &entry : m_workers_last_completed_cycle) {
1065 if (!entry) {continue;}
1066 auto cycle = entry->load(std::memory_order_relaxed);
1067 if (cycle < oldest_cycle) oldest_cycle = cycle;
1068 }
1069 for (const auto &entry : m_workers_oldest_op) {
1070 if (!entry) {continue;}
1071 auto op = entry->load(std::memory_order_relaxed);
1072 if (op < oldest_op) oldest_op = op;
1073 }
1074 }
1075 auto oldest_op_dbl = std::chrono::duration<double>(std::chrono::system_clock::time_point(std::chrono::system_clock::duration(oldest_op)).time_since_epoch()).count();
1076 auto oldest_cycle_dbl = std::chrono::duration<double>(std::chrono::system_clock::time_point(std::chrono::system_clock::duration(oldest_cycle)).time_since_epoch()).count();
1077 std::string retval = "{"
1078 "\"oldest_op\":" + std::to_string(oldest_op_dbl) + ","
1079 "\"oldest_cycle\":" + std::to_string(oldest_cycle_dbl) + ","
1080 ;
1081
1082 for (size_t verb_idx = 0; verb_idx < static_cast<int>(XrdClHttp::CurlOperation::HttpVerb::Count); verb_idx++) {
1083 const auto &verb_str = XrdClHttp::CurlOperation::GetVerbString(static_cast<XrdClHttp::CurlOperation::HttpVerb>(verb_idx));
1084 for (size_t op_idx = 0; op_idx < 402; op_idx++) {
1085 if (op_idx == 401) continue;
1086
1087 auto &op_stats = m_ops[verb_idx][op_idx];
1088 auto duration = op_stats.m_duration.load(std::memory_order_relaxed);
1089 if (duration == 0) continue;
1090
1091 std::string prefix = "http_" + verb_str + "_" + ((op_idx == 402) ? "invalid" : std::to_string(200 + op_idx)) + "_";
1092
1093 auto duration_dbl = std::chrono::duration<double>(std::chrono::steady_clock::duration(duration)).count();
1094 retval += "\"" + prefix + "duration\":" + std::to_string(duration_dbl) + ",";
1095
1096 duration = op_stats.m_pause_duration.load(std::memory_order_relaxed);
1097 if (duration > 0) {
1098 duration_dbl = std::chrono::duration<double>(std::chrono::steady_clock::duration(duration)).count();
1099 retval += "\"" + prefix + "pause_duration\":" + std::to_string(duration_dbl) + ",";
1100 }
1101
1102 auto count = op_stats.m_bytes.load(std::memory_order_relaxed);
1103 if (count) retval += "\"" + prefix + "bytes\":" + std::to_string(count) + ",";
1104 count = op_stats.m_error.load(std::memory_order_relaxed);
1105 if (count) retval += "\"" + prefix + "error\":" + std::to_string(count) + ",";
1106 count = op_stats.m_finished.load(std::memory_order_relaxed);
1107 if (count) retval += "\"" + prefix + "finished\":" + std::to_string(count) + ",";
1108 count = op_stats.m_client_timeout.load(std::memory_order_relaxed);
1109 if (count) retval += "\"" + prefix + "client_timeout\":" + std::to_string(count) + ",";
1110 count = op_stats.m_server_timeout.load(std::memory_order_relaxed);
1111 if (count) retval += "\"" + prefix + "server_timeout\":" + std::to_string(count) + ",";
1112 }
1113 {
1114 auto &op_stats = m_ops[verb_idx][401];
1115 auto duration = op_stats.m_duration.load(std::memory_order_relaxed);
1116 if (duration == 0) continue;
1117
1118 std::string prefix = "http_" + verb_str + "_";
1119
1120 auto duration_dbl = std::chrono::duration<double>(std::chrono::steady_clock::duration(duration)).count();
1121 retval += "\"" + prefix + "preheader_duration\":" + std::to_string(duration_dbl) + ",";
1122
1123 auto count = op_stats.m_started.load(std::memory_order_relaxed);
1124 if (count) retval += "\"" + prefix + "started\":" + std::to_string(count) + ",";
1125 count = op_stats.m_error.load(std::memory_order_relaxed);
1126 if (count) retval += "\"" + prefix + "preheader_error\":" + std::to_string(count) + ",";
1127 count = op_stats.m_finished.load(std::memory_order_relaxed);
1128 if (count) retval += "\"" + prefix + "preheader_finished\":" + std::to_string(count) + ",";
1129 count = op_stats.m_server_timeout.load(std::memory_order_relaxed);
1130 if (count) retval += "\"" + prefix + "preheader_timeout\":" + std::to_string(count) + ",";
1131 count = op_stats.m_conncall_timeout.load(std::memory_order_relaxed);
1132 if (count) retval += "\"" + prefix + "conncall_timeout\":" + std::to_string(count) + ",";
1133 }
1134 }
1135
1136 retval +=
1137 "\"conncall_error\":" + std::to_string(m_conncall_errors.load(std::memory_order_relaxed)) + ","
1138 "\"conncall_started\":" + std::to_string(m_conncall_req.load(std::memory_order_relaxed)) + ","
1139 "\"conncall_success\":" + std::to_string(m_conncall_success.load(std::memory_order_relaxed)) + ","
1140 "\"conncall_timeout\":" + std::to_string(m_conncall_timeout.load(std::memory_order_relaxed)) +
1141 "}";
1142
1143 return retval;
1144}
static const std::string GetVerbString(HttpVerb)
XrdClHttp::HttpVerb HttpVerb

References XrdClHttp::CurlOperation::GetVerbString().

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◆ Run()

void CurlWorker::Run ( )

Definition at line 1226 of file XrdClHttpUtil.cc.

1226 {
1227 int max_pending = 50;
1228 XrdCl::DefaultEnv::GetEnv()->GetInt("HttpMaxPendingOps", max_pending);
1229 m_continue_queue.reset(new HandlerQueue(max_pending));
1230 auto &queue = *m_queue.get();
1231 m_logger->Debug(kLogXrdClHttp, "Started a curl worker");
1232
1233 CURLM *multi_handle = curl_multi_init();
1234 if (multi_handle == nullptr) {
1235 throw std::runtime_error("Failed to create curl multi-handle");
1236 }
1237
1238 int running_handles = 0;
1239 time_t last_maintenance = time(NULL);
1240 CURLMcode mres = CURLM_OK;
1241
1242 // Map from a file descriptor that has an outstanding broker request
1243 // to the corresponding CURL handle.
1244 std::unordered_map<int, WaitingForBroker> broker_reqs;
1245 std::vector<struct curl_waitfd> waitfds;
1246
1247 bool want_shutdown = false;
1248 while (!want_shutdown) {
1249 m_last_completed_cycle.store(std::chrono::system_clock::now().time_since_epoch().count());
1250 auto oldest_op = std::chrono::system_clock::now();
1251 for (const auto &entry : m_op_map) {
1252 OpRecord(*entry.second.first, OpKind::Update);
1253 if (entry.second.second < oldest_op) {
1254 oldest_op = entry.second.second;
1255 }
1256 }
1257 m_oldest_op.store(oldest_op.time_since_epoch().count());
1258
1259 // Try continuing any available handles that have more data
1260 while (true) {
1261 auto op = m_continue_queue->TryConsume();
1262 if (!op) {
1263 break;
1264 }
1265 // Avoid race condition where external thread added a continue operation to queue
1266 // while the curl worker thread failed the transfer.
1267 if (op->IsDone()) {
1268 m_logger->Debug(kLogXrdClHttp, "Ignoring continuation of operation that has already completed");
1269 continue;
1270 }
1271 m_logger->Debug(kLogXrdClHttp, "Continuing the curl handle from op %p on thread %d", op.get(), getthreadid());
1272 auto curl = op->GetCurlHandle();
1273 if (!op->ContinueHandle()) {
1274 op->Fail(XrdCl::errInternal, 0, "Failed to continue the curl handle for the operation");
1275 OpRecord(*op, OpKind::Error);
1276 op->ReleaseHandle();
1277 if (curl) {
1278 curl_multi_remove_handle(multi_handle, curl);
1279 curl_easy_cleanup(curl);
1280 m_op_map.erase(curl);
1281 }
1282 running_handles -= 1;
1283 continue;
1284 } else {
1285 auto iter = m_op_map.find(curl);
1286 if (iter != m_op_map.end()) iter->second.second = std::chrono::system_clock::now();
1287 }
1288 }
1289 // Consume from the shared new operation queue
1290 while (running_handles < static_cast<int>(m_max_ops)) {
1291 auto op = running_handles == 0 ? queue.Consume(std::chrono::seconds(1)) : queue.TryConsume();
1292 if (!op) {
1293 break;
1294 }
1295 auto curl = queue.GetHandle();
1296 if (curl == nullptr) {
1297 m_logger->Debug(kLogXrdClHttp, "Unable to allocate a curl handle");
1298 op->Fail(XrdCl::errInternal, ENOMEM, "Unable to get allocate a curl handle");
1299 continue;
1300 }
1301 try {
1302 auto rv = op->Setup(curl, *this);
1303 if (!rv) {
1304 m_logger->Debug(kLogXrdClHttp, "Failed to setup the curl handle");
1305 op->Fail(XrdCl::errInternal, ENOMEM, "Failed to setup the curl handle for the operation");
1306 continue;
1307 }
1308 if (!op->FinishSetup(curl)) {
1309 m_logger->Debug(kLogXrdClHttp, "Failed to finish setup of the curl handle");
1310 op->Fail(XrdCl::errInternal, ENOMEM, "Failed to finish setup of the curl handle for the operation");
1311 continue;
1312 }
1313 } catch (...) {
1314 m_logger->Debug(kLogXrdClHttp, "Unable to setup the curl handle");
1315 op->Fail(XrdCl::errInternal, ENOMEM, "Failed to setup the curl handle for the operation");
1316 continue;
1317 }
1318 op->SetContinueQueue(m_continue_queue);
1319
1320 if (op->IsDone()) {
1321 op->ReleaseHandle();
1322 queue.RecycleHandle(curl);
1323 continue;
1324 }
1325 m_op_map[curl] = {op, std::chrono::system_clock::now()};
1326
1327 // If the operation requires the result of the OPTIONS verb to function, then
1328 // we add that to the multi-handle instead, chaining the two calls together.
1329 if (op->RequiresOptions()) {
1330 std::string modified_url;
1331 std::shared_ptr<CurlOptionsOp> options_op(
1332 new CurlOptionsOp(
1333 curl, op,
1334 std::string(
1335 VerbsCache::GetUrlKey(op->GetUrl(), modified_url)
1336 ),
1337 m_logger, op->GetConnCalloutFunc()
1338 )
1339 );
1340 // Note this `curl` variable is not local to the conditional; it is the curl handle of the
1341 // CurlOptionsOp and will be added below to the multi-handle, causing it - not the parent's
1342 // curl handle - to be executed.
1343 curl = queue.GetHandle();
1344 if (curl == nullptr) {
1345 m_logger->Debug(kLogXrdClHttp, "Unable to allocate a curl handle");
1346 op->Fail(XrdCl::errInternal, ENOMEM, "Unable to get allocate a curl handle");
1347 OpRecord(*op, OpKind::Error);
1348 continue;
1349 }
1350 auto rv = options_op->Setup(curl, *this);
1351 if (!rv) {
1352 m_logger->Debug(kLogXrdClHttp, "Failed to allocate a curl handle for OPTIONS");
1353 continue;
1354 }
1355 m_op_map[curl] = {options_op, std::chrono::system_clock::now()};
1356 OpRecord(*options_op, OpKind::Start);
1357 running_handles += 1;
1358 } else {
1359 OpRecord(*op, OpKind::Start);
1360 }
1361
1362 auto mres = curl_multi_add_handle(multi_handle, curl);
1363 if (mres != CURLM_OK) {
1364 m_logger->Debug(kLogXrdClHttp, "Unable to add operation to the curl multi-handle");
1365 op->Fail(XrdCl::errInternal, mres, "Unable to add operation to the curl multi-handle");
1366 OpRecord(*op, OpKind::Error);
1367 continue;
1368 }
1369 m_logger->Debug(kLogXrdClHttp, "Added request for URL %s to worker thread for processing", op->GetUrl().c_str());
1370 running_handles += 1;
1371 }
1372
1373 // Maintain the periodic reporting of thread activity and fail any operations
1374 // that have expired / timed out.
1375 time_t now = time(NULL);
1376 time_t next_maintenance = last_maintenance + m_maintenance_period.load(std::memory_order_relaxed);
1377 if (now >= next_maintenance) {
1378 m_queue->Expire();
1379 m_continue_queue->Expire();
1380 m_logger->Debug(kLogXrdClHttp, "Curl worker thread %d is running %d operations",
1381 getthreadid(), running_handles);
1382 last_maintenance = now;
1383
1384 // Timeout all the pending broker requests.
1385 std::vector<std::pair<int, CURL *>> expired_ops;
1386 for (const auto &entry : broker_reqs) {
1387 if (entry.second.expiry < now) {
1388 expired_ops.emplace_back(entry.first, entry.second.curl);
1389 }
1390 }
1391 for (const auto &entry : expired_ops) {
1392 auto iter = m_op_map.find(entry.second);
1393 if (iter == m_op_map.end()) {
1394 m_logger->Warning(kLogXrdClHttp, "Found an expired curl handle with no corresponding operation!");
1395 } else {
1396
1397 CurlOptionsOp *options_op = nullptr;
1398 if ((options_op = dynamic_cast<CurlOptionsOp*>(iter->second.first.get())) != nullptr) {
1399 auto parent_op = options_op->GetOperation();
1400 bool parent_op_failed = false;
1401 if (parent_op->IsRedirect()) {
1402 std::string target;
1403 if (parent_op->Redirect(target) == CurlOperation::RedirectAction::Fail) {
1404 auto iter = m_op_map.find(options_op->GetParentCurlHandle());
1405 if (iter != m_op_map.end()) {
1406 OpRecord(*iter->second.first, OpKind::Error);
1407 iter->second.first->Fail(XrdCl::errErrorResponse, 0, "Failed to send OPTIONS to redirect target");
1408 m_op_map.erase(iter);
1409 running_handles -= 1;
1410 }
1411 parent_op_failed = true;
1412 } else {
1413 OpRecord(*parent_op, OpKind::Start);
1414 }
1415 } else {
1416 OpRecord(*parent_op, OpKind::Start);
1417 }
1418 if (!parent_op_failed){
1419 curl_multi_add_handle(multi_handle, options_op->GetParentCurlHandle());
1420 }
1421 }
1422
1423 iter->second.first->Fail(XrdCl::errConnectionError, 1, "Timeout: connection never provided for request");
1424 iter->second.first->ReleaseHandle();
1425 OpRecord(*(iter->second.first), OpKind::ConncallTimeout);
1426 m_op_map.erase(entry.second);
1427 curl_easy_cleanup(entry.second);
1428 running_handles -= 1;
1429 }
1430 broker_reqs.erase(entry.first);
1431 m_conncall_timeout.fetch_add(1, std::memory_order_relaxed);
1432 }
1433
1434 // Cleanup the fake connection cache entries.
1436 }
1437
1438 waitfds.clear();
1439 waitfds.resize(3 + broker_reqs.size());
1440
1441 waitfds[0].fd = queue.PollFD();
1442 waitfds[0].events = CURL_WAIT_POLLIN;
1443 waitfds[0].revents = 0;
1444 waitfds[1].fd = m_continue_queue->PollFD();
1445 waitfds[1].events = CURL_WAIT_POLLIN;
1446 waitfds[1].revents = 0;
1447 waitfds[2].fd = m_shutdown_pipe_r;
1448 waitfds[2].revents = 0;
1449 waitfds[2].events = CURL_WAIT_POLLIN | CURL_WAIT_POLLPRI;
1450
1451 int idx = 3;
1452 for (const auto &entry : broker_reqs) {
1453 waitfds[idx].fd = entry.first;
1454 waitfds[idx].events = CURL_WAIT_POLLIN|CURL_WAIT_POLLPRI;
1455 waitfds[idx].revents = 0;
1456 idx += 1;
1457 }
1458
1459 long timeo;
1460 curl_multi_timeout(multi_handle, &timeo);
1461 // These commented-out lines are purposely left; will need to revisit after the 0.9.1 release;
1462 // for now, they are too verbose on RHEL7.
1463 //m_logger->Debug(kLogXrdClHttp, "Curl advises a timeout of %ld ms", timeo);
1464 if (running_handles && timeo == -1) {
1465 // Bug workaround: we've seen RHEL7 libcurl have a race condition where it'll not
1466 // set a timeout while doing the DNS lookup; assume that if there are running handles
1467 // but no timeout, we've hit this bug.
1468 //m_logger->Debug(kLogXrdClHttp, "Will sleep for up to 50ms");
1469 mres = curl_multi_wait(multi_handle, &waitfds[0], waitfds.size(), 50, nullptr);
1470 } else {
1471 //m_logger->Debug(kLogXrdClHttp, "Will sleep for up to %d seconds", max_sleep_time);
1472 //mres = curl_multi_wait(multi_handle, &waitfds[0], waitfds.size(), max_sleep_time*1000, nullptr);
1473 // Temporary test: we've been seeing DNS lookups timeout on additional platforms. Switch to always
1474 // poll as curl_multi_wait doesn't seem to get notified when DNS lookups are done.
1475 mres = curl_multi_wait(multi_handle, &waitfds[0], waitfds.size(), 50, nullptr);
1476 }
1477 if (mres != CURLM_OK) {
1478 m_logger->Warning(kLogXrdClHttp, "Failed to wait on multi-handle: %d", mres);
1479 }
1480
1481 // Iterate through the waiting broker callbacks.
1482 for (const auto &entry : waitfds) {
1483 // Ignore the queue's poll fd.
1484 if (waitfds[0].fd == entry.fd || waitfds[1].fd == entry.fd) {
1485 continue;
1486 }
1487 // Handle shutdown requests
1488 if ((waitfds[2].fd == entry.fd) && entry.revents) {
1489 want_shutdown = true;
1490 break;
1491 }
1492 if ((entry.revents & CURL_WAIT_POLLIN) != CURL_WAIT_POLLIN) {
1493 continue;
1494 }
1495 auto handle = broker_reqs[entry.fd].curl;
1496 auto iter = m_op_map.find(handle);
1497 if (iter == m_op_map.end()) {
1498 m_logger->Warning(kLogXrdClHttp, "Internal error: broker responded on FD %d but no corresponding curl operation", entry.fd);
1499 broker_reqs.erase(entry.fd);
1500 m_conncall_errors.fetch_add(1, std::memory_order_relaxed);
1501 continue;
1502 }
1503 std::string err;
1504 auto result = iter->second.first->WaitSocketCallback(err);
1505 if (result == -1) {
1506 m_logger->Warning(kLogXrdClHttp, "Error when invoking the broker callback: %s", err.c_str());
1507
1508 CurlOptionsOp *options_op = nullptr;
1509 if ((options_op = dynamic_cast<CurlOptionsOp*>(iter->second.first.get())) != nullptr) {
1510 auto parent_op = options_op->GetOperation();
1511 bool parent_op_failed = false;
1512 if (parent_op->IsRedirect()) {
1513 std::string target;
1514 if (parent_op->Redirect(target) == CurlOperation::RedirectAction::Fail) {
1515 auto iter = m_op_map.find(options_op->GetParentCurlHandle());
1516 if (iter != m_op_map.end()) {
1517 OpRecord(*iter->second.first, OpKind::Error);
1518 iter->second.first->Fail(XrdCl::errErrorResponse, 0, "Failed to send OPTIONS to redirect target");
1519 m_op_map.erase(iter);
1520 running_handles -= 1;
1521 }
1522 parent_op_failed = true;
1523 } else {
1524 OpRecord(*parent_op, OpKind::Start);
1525 }
1526 } else {
1527 OpRecord(*parent_op, OpKind::Start);
1528 }
1529 if (!parent_op_failed){
1530 curl_multi_add_handle(multi_handle, options_op->GetParentCurlHandle());
1531 }
1532 }
1533
1534 iter->second.first->Fail(XrdCl::errErrorResponse, 1, err);
1535 OpRecord(*iter->second.first, OpKind::Error);
1536 m_op_map.erase(handle);
1537 broker_reqs.erase(entry.fd);
1538 m_conncall_errors.fetch_add(1, std::memory_order_relaxed);
1539 running_handles -= 1;
1540 } else {
1541 broker_reqs.erase(entry.fd);
1542 curl_multi_add_handle(multi_handle, handle);
1543 m_conncall_success.fetch_add(1, std::memory_order_relaxed);
1544 }
1545 }
1546
1547 // Do maintenance on the multi-handle
1548 int still_running;
1549 auto mres = curl_multi_perform(multi_handle, &still_running);
1550 if (mres == CURLM_CALL_MULTI_PERFORM) {
1551 continue;
1552 } else if (mres != CURLM_OK) {
1553 m_logger->Warning(kLogXrdClHttp, "Failed to perform multi-handle operation: %d", mres);
1554 break;
1555 }
1556
1557 CURLMsg *msg;
1558 do {
1559 int msgq = 0;
1560 msg = curl_multi_info_read(multi_handle, &msgq);
1561 if (msg && (msg->msg == CURLMSG_DONE)) {
1562 if (!msg->easy_handle) {
1563 m_logger->Warning(kLogXrdClHttp, "Logic error: got a callback for a null handle");
1564 mres = CURLM_BAD_EASY_HANDLE;
1565 break;
1566 }
1567 auto iter = m_op_map.find(msg->easy_handle);
1568 if (iter == m_op_map.end()) {
1569 m_logger->Error(kLogXrdClHttp, "Logic error: got a callback for an entry that doesn't exist");
1570 mres = CURLM_BAD_EASY_HANDLE;
1571 break;
1572 }
1573 auto op = iter->second.first;
1574 auto res = msg->data.result;
1575 bool keep_handle = false;
1576 bool waiting_on_callout = false;
1577 if (res == CURLE_OK) {
1578 auto sc = op->GetStatusCode();
1579 OpRecord(*op, OpKind::Finish);
1580 if (HTTPStatusIsError(sc)) {
1581 auto httpErr = HTTPStatusConvert(sc);
1582 op->Fail(httpErr.first, httpErr.second, op->GetStatusMessage());
1583 op->ReleaseHandle();
1584 // If this was a failed CurlOptionsOp, then we re-activate the parent handle.
1585 // If the parent handle was stopped at a redirect that now returns failure, then
1586 // we'll clean it up.
1587 CurlOptionsOp *options_op = nullptr;
1588 if ((options_op = dynamic_cast<CurlOptionsOp*>(op.get())) != nullptr) {
1589 auto parent_op = options_op->GetOperation();
1590 bool parent_op_failed = false;
1591 if (parent_op->IsRedirect()) {
1592 std::string target;
1593 if (parent_op->Redirect(target) == CurlOperation::RedirectAction::Fail) {
1594 OpRecord(*parent_op, OpKind::Error);
1595 m_op_map.erase(options_op->GetParentCurlHandle());
1596 running_handles -= 1;
1597 parent_op_failed = true;
1598 } else {
1599 OpRecord(*parent_op, OpKind::Start);
1600 }
1601 } else {
1602 OpRecord(*parent_op, OpKind::Start);
1603 }
1604 // Have curl execute the parent operation
1605 if (!parent_op_failed) {
1606 curl_multi_add_handle(multi_handle, options_op->GetParentCurlHandle());
1607 }
1608 }
1609 // The curl operation was successful, it's just the HTTP request failed; recycle the handle.
1610 queue.RecycleHandle(iter->first);
1611 } else {
1612 CurlOptionsOp *options_op = nullptr;
1613 // If this was a successful OPTIONS op, invoke the parent operation.
1614 if ((options_op = dynamic_cast<CurlOptionsOp*>(op.get()))) {
1615 options_op->Success();
1616 options_op->ReleaseHandle();
1617 // Note: op is scoped external to the conditional block
1618 op = options_op->GetOperation();
1619 op->OptionsDone();
1620 OpRecord(*op, OpKind::Start);
1621 curl_multi_add_handle(multi_handle, options_op->GetParentCurlHandle());
1622 curl_multi_remove_handle(multi_handle, iter->first);
1623 queue.RecycleHandle(iter->first);
1624 }
1625 // Check to see if the operation ended in a redirect (note: this might)
1626 // be invoked a second time if this was the parent operation of an OPTIONS
1627 // op.
1628 if (op->IsRedirect()) {
1629 std::string target;
1630 switch (op->Redirect(target)) {
1632 if (options_op) {
1633 // In this case, we failed immediately after an OPTIONS finished.
1634 // Since there's a Start recorded after the OPTIONS processing, we
1635 // must record an error.
1636 // In the non-OPTIONS case, we never recorded a second start and
1637 // don't need a matching failure.
1638 OpRecord(*op, OpKind::Error);
1639 }
1640 keep_handle = false;
1641 break;
1643 if (!options_op) {
1644 // In this case, the redirect occurred without any prior
1645 // OPTIONS call. This implies that `op` is the original call
1646 // and we need to restart it later and record another op start.
1647 keep_handle = true;
1648 OpRecord(*op, OpKind::Start);
1649 }
1650 break;
1652 {
1653 // The redirect resulted in a new endpoint where the cache lookup failed;
1654 // we need to know what HTTP verbs are in the server's Allow list before this
1655 // operation can continue. Inject a new CurlOptionsOp and chain it to the one
1656 // being processed. Once the OPTIONS request is done, then we'll restart this
1657 // operation.
1658 std::string modified_url;
1659 target = VerbsCache::GetUrlKey(target, modified_url);
1660 options_op = new CurlOptionsOp(iter->first, op, target, m_logger, op->GetConnCalloutFunc());
1661 std::shared_ptr<CurlOperation> new_op(options_op);
1662 auto curl = queue.GetHandle();
1663 if (curl == nullptr) {
1664 m_logger->Debug(kLogXrdClHttp, "Unable to allocate a curl handle");
1665 op->Fail(XrdCl::errInternal, ENOMEM, "Unable to get allocate a curl handle");
1666 keep_handle = false;
1667 options_op = nullptr;
1668 break;
1669 }
1670 OpRecord(*new_op, OpKind::Start);
1671 try {
1672 auto rv = new_op->Setup(curl, *this);
1673 if (!rv) {
1674 m_logger->Debug(kLogXrdClHttp, "Unable to configure a curl handle for OPTIONS");
1675 keep_handle = false;
1676 options_op = nullptr;
1677 break;
1678 }
1679 } catch (...) {
1680 m_logger->Debug(kLogXrdClHttp, "Unable to setup the curl handle for the OPTIONS operation");
1681 new_op->Fail(XrdCl::errInternal, ENOMEM, "Failed to setup the curl handle for the OPTIONS operation");
1682 OpRecord(*new_op, OpKind::Error);
1683 keep_handle = false;
1684 break;
1685 }
1686 new_op->SetContinueQueue(m_continue_queue);
1687 m_op_map[curl] = {new_op, std::chrono::system_clock::now()};
1688 auto mres = curl_multi_add_handle(multi_handle, curl);
1689 if (mres != CURLM_OK) {
1690 m_logger->Debug(kLogXrdClHttp, "Unable to add OPTIONS operation to the curl multi-handle: %s", curl_multi_strerror(mres));
1691 op->Fail(XrdCl::errInternal, mres, "Unable to add OPTIONS operation to the curl multi-handle");
1692 OpRecord(*new_op, OpKind::Error);
1693 break;
1694 }
1695 running_handles += 1;
1696 m_logger->Debug(kLogXrdClHttp, "Invoking the OPTIONS operation before redirect to %s", target.c_str());
1697 // The original curl operation needs to be kept around. Note that because options_op
1698 // is non-nil, we won't re-add the handle to the multi-handle.
1699 keep_handle = true;
1700 }
1701 }
1702 int callout_socket = op->WaitSocket();
1703 if ((waiting_on_callout = callout_socket >= 0)) {
1704 auto expiry = time(nullptr) + 20;
1705 m_logger->Debug(kLogXrdClHttp, "Creating a callout wait request on socket %d", callout_socket);
1706 broker_reqs[callout_socket] = {iter->first, expiry};
1707 m_conncall_req.fetch_add(1, std::memory_order_relaxed);
1708 }
1709 } else if (options_op) {
1710 // In this case, the OPTIONS call happened before the parent operation was started.
1711 curl_multi_add_handle(multi_handle, options_op->GetParentCurlHandle());
1712 }
1713 if (keep_handle) {
1714 curl_multi_remove_handle(multi_handle, iter->first);
1715 if (!waiting_on_callout && !options_op) {
1716 curl_multi_add_handle(multi_handle, iter->first);
1717 }
1718 } else if (!options_op) {
1719 // A multi-step operation may reset and reconfigure its
1720 // easy handle from Success(). Remove the completed
1721 // request before invoking it so libcurl no longer owns
1722 // the request configuration being replaced.
1723 curl_multi_remove_handle(multi_handle, iter->first);
1724 op->Success();
1725 if (op->IsDone()) {
1726 op->ReleaseHandle();
1727 // If the handle was successful, then we can recycle it.
1728 queue.RecycleHandle(iter->first);
1729 } else {
1730 // Multi-step operations may configure their easy handle
1731 // for another request from Success(). Keep ownership of
1732 // the handle and run the next request through this worker's
1733 // multi-handle like any other operation.
1734 auto next_res = curl_multi_add_handle(multi_handle, iter->first);
1735 if (next_res == CURLM_OK) {
1736 keep_handle = true;
1737 OpRecord(*op, OpKind::Start);
1738 } else {
1739 op->Fail(XrdCl::errInternal, next_res,
1740 "Unable to add the next operation request to the curl multi-handle");
1741 OpRecord(*op, OpKind::Error);
1742 op->ReleaseHandle();
1743 queue.RecycleHandle(iter->first);
1744 }
1745 }
1746 }
1747 }
1748 } else if (res == CURLE_COULDNT_CONNECT && op->UseConnectionCallout() && !op->GetTriedBoker()) {
1749 // In this case, we need to use the broker and the curl handle couldn't reuse
1750 // an existing socket.
1751 keep_handle = true;
1752 op->SetTriedBoker(); // Flag to ensure we try a connection only once per operation.
1753 std::string err;
1754 int wait_socket = -1;
1755 if (!op->StartConnectionCallout(err) || (wait_socket=op->WaitSocket()) == -1) {
1756 m_logger->Error(kLogXrdClHttp, "Failed to start broker-based connection: %s", err.c_str());
1757 op->ReleaseHandle();
1758 keep_handle = false;
1759 } else {
1760 curl_multi_remove_handle(multi_handle, iter->first);
1761 auto expiry = time(nullptr) + 20;
1762 m_logger->Debug(kLogXrdClHttp, "Curl operation requires a new TCP socket; waiting for callout to respond on socket %d", wait_socket);
1763 broker_reqs[wait_socket] = {iter->first, expiry};
1764 m_conncall_req.fetch_add(1, std::memory_order_relaxed);
1765 }
1766 } else {
1767 if (res == CURLE_ABORTED_BY_CALLBACK || res == CURLE_WRITE_ERROR) {
1768 // We cannot invoke the failure from within a callback as the curl thread and
1769 // original thread of execution may fight over the ownership of the handle memory.
1770 switch (op->GetError()) {
1772#ifdef HAVE_XPROTOCOL_TIMEREXPIRED
1773 op->Fail(XrdCl::errOperationExpired, 0, "Origin did not respond with headers within timeout");
1774#else
1775 op->Fail(XrdCl::errOperationExpired, 0, "Origin did not respond within timeout");
1776#endif
1777 OpRecord(*op, OpKind::Error);
1778 break;
1780 auto [ecode, emsg] = op->GetCallbackError();
1781 op->Fail(XrdCl::errErrorResponse, ecode, emsg);
1782 OpRecord(*op, OpKind::Error);
1783 break;
1784 }
1786 op->Fail(XrdCl::errOperationExpired, 0, "Operation timed out");
1787 OpRecord(*op, op->IsPaused() ? OpKind::ClientTimeout : OpKind::ServerTimeout);
1788 break;
1790 op->Fail(XrdCl::errOperationExpired, 0, "Transfer speed below minimum threshold");
1791 OpRecord(*op, OpKind::ServerTimeout);
1792 break;
1794 op->Fail(XrdCl::errOperationExpired, 0, "Transfer stalled for too long");
1795 OpRecord(*op, OpKind::ClientTimeout);
1796 break;
1798 op->Fail(XrdCl::errOperationExpired, 0, "Transfer stalled for too long");
1799 OpRecord(*op, OpKind::ServerTimeout);
1800 break;
1802 op->Fail(XrdCl::errInternal, 0, "Operation was aborted without recording an abort reason");
1803 OpRecord(*op, OpKind::Error);
1804 break;
1805 };
1806 CurlOptionsOp *options_op = nullptr;
1807 if ((options_op = dynamic_cast<CurlOptionsOp*>(op.get())) != nullptr) {
1808 auto parent_op = options_op->GetOperation();
1809 bool parent_op_failed = false;
1810 if (parent_op->IsRedirect()) {
1811 std::string target;
1812 if (parent_op->Redirect(target) == CurlOperation::RedirectAction::Fail) {
1813 auto iter = m_op_map.find(options_op->GetParentCurlHandle());
1814 if (iter != m_op_map.end()) {
1815 OpRecord(*iter->second.first, OpKind::Error);
1816 iter->second.first->Fail(XrdCl::errErrorResponse, 0, "Failed to send OPTIONS to redirect target");
1817 m_op_map.erase(iter);
1818 running_handles -= 1;
1819 }
1820 parent_op_failed = true;
1821 } else {
1822 OpRecord(*parent_op, OpKind::Start);
1823 }
1824 } else {
1825 OpRecord(*parent_op, OpKind::Start);
1826 }
1827 if (!parent_op_failed){
1828 curl_multi_add_handle(multi_handle, options_op->GetParentCurlHandle());
1829 }
1830 }
1831 } else {
1832 auto xrdCode = CurlCodeConvert(res);
1833 const auto curl_err = op->GetCurlErrorMessage();
1834 const char *curl_easy_err = curl_easy_strerror(res);
1835 const std::string fail_err = !curl_err.empty() ? curl_err : curl_easy_err;
1836 m_logger->Debug(kLogXrdClHttp, "Curl generated an error: %s (%d)", fail_err.c_str(), res);
1837 op->Fail(xrdCode.first, xrdCode.second, fail_err);
1838 OpRecord(*op, OpKind::Error);
1839 CurlOptionsOp *options_op = nullptr;
1840 if ((options_op = dynamic_cast<CurlOptionsOp*>(op.get())) != nullptr) {
1841 auto parent_op = options_op->GetOperation();
1842 bool parent_op_failed = false;
1843 if (parent_op->IsRedirect()) {
1844 std::string target;
1845 if (parent_op->Redirect(target) == CurlOperation::RedirectAction::Fail) {
1846 auto iter = m_op_map.find(options_op->GetParentCurlHandle());
1847 if (iter != m_op_map.end()) {
1848 OpRecord(*iter->second.first, OpKind::Error);
1849 iter->second.first->Fail(XrdCl::errErrorResponse, 0, "Failed to send OPTIONS to redirect target");
1850 m_op_map.erase(iter);
1851 running_handles -= 1;
1852 }
1853 parent_op_failed = true;
1854 }
1855 }
1856 if (!parent_op_failed){
1857 curl_multi_add_handle(multi_handle, options_op->GetParentCurlHandle());
1858 }
1859 }
1860 }
1861 op->ReleaseHandle();
1862 }
1863 if (!keep_handle) {
1864 curl_multi_remove_handle(multi_handle, iter->first);
1865 if (res != CURLE_OK) {
1866 curl_easy_cleanup(iter->first);
1867 }
1868 for (auto &req : broker_reqs) {
1869 if (req.second.curl == iter->first) {
1870 m_logger->Warning(kLogXrdClHttp, "Curl handle finished while a broker operation was outstanding");
1871 m_conncall_errors.fetch_add(1, std::memory_order_relaxed);
1872 }
1873 }
1874 m_op_map.erase(iter);
1875 running_handles -= 1;
1876 }
1877 }
1878 } while (msg);
1879 }
1880
1881 for (auto map_entry : m_op_map) {
1882 if (mres) {
1883 map_entry.second.first->Fail(XrdCl::errInternal, mres, curl_multi_strerror(mres));
1884 OpRecord(*map_entry.second.first, OpKind::Error);
1885 }
1886 if (multi_handle && map_entry.first) curl_multi_remove_handle(multi_handle, map_entry.first);
1887 }
1888
1889 m_queue->ReleaseHandles();
1890 curl_multi_cleanup(multi_handle);
1891}
std::pair< uint16_t, uint32_t > CurlCodeConvert(CURLcode res)
int emsg(int rc, char *msg)
static void CleanupDnsCache()
CurlOptionsOp(CURL *curl, std::shared_ptr< CurlOperation > op, const std::string &url, XrdCl::Log *log, CreateConnCalloutType callout)
std::shared_ptr< CurlOperation > GetOperation() const
CURL * GetParentCurlHandle() const
void Fail(uint16_t errCode, uint32_t errNum, const std::string &) override
HandlerQueue(unsigned max_pending_ops)
static std::string_view GetUrlKey(const std::string &url, std::string &modified_url)
bool GetInt(const std::string &key, int &value)
Definition XrdClEnv.cc:115
std::pair< uint16_t, uint32_t > HTTPStatusConvert(unsigned status)
bool HTTPStatusIsError(unsigned status)
const uint64_t kLogXrdClHttp
const uint16_t errErrorResponse
const uint16_t errOperationExpired
const uint16_t errInternal
Internal error.
const uint16_t errConnectionError

References XrdClHttp::CurlOptionsOp::CurlOptionsOp(), XrdClHttp::HandlerQueue::HandlerQueue(), XrdClHttp::CurlOperation::CleanupDnsCache(), XrdClHttp::CurlOperation::ContinueHandle(), CurlCodeConvert(), emsg(), XrdClHttp::CurlOperation::ErrCallback, XrdCl::errConnectionError, XrdCl::errErrorResponse, XrdClHttp::CurlOperation::ErrHeaderTimeout, XrdCl::errInternal, XrdClHttp::CurlOperation::ErrNone, XrdCl::errOperationExpired, XrdClHttp::CurlOperation::ErrOperationTimeout, XrdClHttp::CurlOperation::ErrTransferClientStall, XrdClHttp::CurlOperation::ErrTransferSlow, XrdClHttp::CurlOperation::ErrTransferStall, XrdClHttp::CurlOperation::Fail(), XrdClHttp::CurlOperation::Fail, XrdClHttp::CurlOptionsOp::Fail(), XrdClHttp::CurlOperation::FinishSetup(), XrdClHttp::CurlOperation::GetCallbackError(), XrdClHttp::CurlOperation::GetConnCalloutFunc(), XrdClHttp::CurlOperation::GetCurlErrorMessage(), XrdClHttp::CurlOperation::GetCurlHandle(), XrdCl::DefaultEnv::GetEnv(), XrdClHttp::CurlOperation::GetError(), XrdCl::Env::GetInt(), XrdClHttp::CurlOptionsOp::GetOperation(), XrdClHttp::CurlOptionsOp::GetParentCurlHandle(), XrdClHttp::CurlOperation::GetStatusCode(), XrdClHttp::CurlOperation::GetStatusMessage(), XrdClHttp::CurlOperation::GetTriedBoker(), XrdClHttp::CurlOperation::GetUrl(), XrdClHttp::VerbsCache::GetUrlKey(), XrdClHttp::HTTPStatusConvert(), XrdClHttp::HTTPStatusIsError(), XrdClHttp::CurlOperation::IsDone(), XrdClHttp::CurlOperation::IsPaused(), XrdClHttp::CurlOperation::IsRedirect(), XrdClHttp::kLogXrdClHttp, XrdClHttp::CurlOperation::OptionsDone(), XrdClHttp::CurlOperation::Redirect(), XrdClHttp::CurlOperation::Reinvoke, XrdClHttp::CurlOperation::ReinvokeAfterAllow, XrdClHttp::CurlOperation::ReleaseHandle(), XrdClHttp::CurlOptionsOp::ReleaseHandle(), XrdClHttp::CurlOperation::RequiresOptions(), XrdClHttp::CurlOperation::SetContinueQueue(), XrdClHttp::CurlOperation::SetTriedBoker(), XrdClHttp::CurlOperation::Setup(), XrdClHttp::CurlOperation::StartConnectionCallout(), XrdClHttp::CurlOperation::Success(), XrdClHttp::CurlOptionsOp::Success(), XrdClHttp::CurlOperation::UseConnectionCallout(), and XrdClHttp::CurlOperation::WaitSocket().

Referenced by CurlWorker(), and RunStatic().

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◆ RunStatic()

void CurlWorker::RunStatic ( CurlWorker * myself)
static

Definition at line 1207 of file XrdClHttpUtil.cc.

1208{
1209 {
1210 std::unique_lock lock(myself->m_start_lock);
1211 myself->m_start_complete_cv.wait(lock, [&]{return myself->m_start_complete;});
1212 }
1213 try {
1214 myself->Run();
1215 } catch (...) {
1216 myself->m_logger->Warning(kLogXrdClHttp, "Curl worker got an exception");
1217 {
1218 std::unique_lock lock(m_workers_mutex);
1219 auto iter = std::remove_if(m_workers.begin(), m_workers.end(), [&](std::unique_ptr<XrdClHttp::CurlWorker> &worker){return worker.get() == myself;});
1220 m_workers.erase(iter);
1221 }
1222 }
1223}
void Warning(uint64_t topic, const char *format,...)
Report a warning.
Definition XrdClLog.cc:248

References CurlWorker(), XrdClHttp::kLogXrdClHttp, Run(), and XrdCl::Log::Warning().

Referenced by CurlWorker().

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◆ SetMaintenancePeriod()

void XrdClHttp::CurlWorker::SetMaintenancePeriod ( unsigned maint)
inlinestatic

Definition at line 70 of file XrdClHttpWorker.hh.

70 {
71 m_maintenance_period.store(maint, std::memory_order_relaxed);
72 }

Referenced by XrdClHttp::File::SetProperty().

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◆ Start()

void CurlWorker::Start ( std::unique_ptr< XrdClHttp::CurlWorker > self,
std::thread tid )

Definition at line 1194 of file XrdClHttpUtil.cc.

1195{
1196 {
1197 std::unique_lock lock(m_workers_mutex);
1198 m_workers.emplace_back(std::move(self));
1199 m_self_tid = std::move(tid);
1200 }
1201 std::unique_lock lock(m_start_lock);
1202 m_start_complete = true;
1203 m_start_complete_cv.notify_one();
1204}

Referenced by CurlWorker().

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The documentation for this class was generated from the following files: