AbstractCommand.cc 30 KB

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  1. /* <!-- copyright */
  2. /*
  3. * aria2 - The high speed download utility
  4. *
  5. * Copyright (C) 2006 Tatsuhiro Tsujikawa
  6. *
  7. * This program is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License as published by
  9. * the Free Software Foundation; either version 2 of the License, or
  10. * (at your option) any later version.
  11. *
  12. * This program is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  15. * GNU General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License
  18. * along with this program; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. *
  21. * In addition, as a special exception, the copyright holders give
  22. * permission to link the code of portions of this program with the
  23. * OpenSSL library under certain conditions as described in each
  24. * individual source file, and distribute linked combinations
  25. * including the two.
  26. * You must obey the GNU General Public License in all respects
  27. * for all of the code used other than OpenSSL. If you modify
  28. * file(s) with this exception, you may extend this exception to your
  29. * version of the file(s), but you are not obligated to do so. If you
  30. * do not wish to do so, delete this exception statement from your
  31. * version. If you delete this exception statement from all source
  32. * files in the program, then also delete it here.
  33. */
  34. /* copyright --> */
  35. #include "AbstractCommand.h"
  36. #include <algorithm>
  37. #include "Request.h"
  38. #include "DownloadEngine.h"
  39. #include "Option.h"
  40. #include "PeerStat.h"
  41. #include "SegmentMan.h"
  42. #include "Logger.h"
  43. #include "Segment.h"
  44. #include "DlAbortEx.h"
  45. #include "DlRetryEx.h"
  46. #include "DownloadFailureException.h"
  47. #include "CreateRequestCommand.h"
  48. #include "InitiateConnectionCommandFactory.h"
  49. #include "SleepCommand.h"
  50. #include "StreamCheckIntegrityEntry.h"
  51. #include "PieceStorage.h"
  52. #include "Socket.h"
  53. #include "message.h"
  54. #include "prefs.h"
  55. #include "fmt.h"
  56. #include "ServerStat.h"
  57. #include "RequestGroupMan.h"
  58. #include "A2STR.h"
  59. #include "util.h"
  60. #include "LogFactory.h"
  61. #include "DownloadContext.h"
  62. #include "wallclock.h"
  63. #include "NameResolver.h"
  64. #include "uri.h"
  65. #include "FileEntry.h"
  66. #include "error_code.h"
  67. #include "SocketRecvBuffer.h"
  68. #ifdef ENABLE_ASYNC_DNS
  69. #include "AsyncNameResolver.h"
  70. #endif // ENABLE_ASYNC_DNS
  71. #ifdef ENABLE_MESSAGE_DIGEST
  72. # include "ChecksumCheckIntegrityEntry.h"
  73. #endif // ENABLE_MESSAGE_DIGEST
  74. namespace aria2 {
  75. AbstractCommand::AbstractCommand
  76. (cuid_t cuid,
  77. const SharedHandle<Request>& req,
  78. const SharedHandle<FileEntry>& fileEntry,
  79. RequestGroup* requestGroup,
  80. DownloadEngine* e,
  81. const SocketHandle& s,
  82. const SharedHandle<SocketRecvBuffer>& socketRecvBuffer,
  83. bool incNumConnection)
  84. : Command(cuid), checkPoint_(global::wallclock()),
  85. timeout_(requestGroup->getTimeout()),
  86. requestGroup_(requestGroup),
  87. req_(req), fileEntry_(fileEntry), e_(e), socket_(s),
  88. socketRecvBuffer_(socketRecvBuffer),
  89. checkSocketIsReadable_(false), checkSocketIsWritable_(false),
  90. nameResolverCheck_(false),
  91. incNumConnection_(incNumConnection),
  92. serverStatTimer_(global::wallclock())
  93. {
  94. if(socket_ && socket_->isOpen()) {
  95. setReadCheckSocket(socket_);
  96. }
  97. if(incNumConnection_) {
  98. requestGroup->increaseStreamConnection();
  99. }
  100. requestGroup_->increaseStreamCommand();
  101. requestGroup_->increaseNumCommand();
  102. }
  103. AbstractCommand::~AbstractCommand() {
  104. disableReadCheckSocket();
  105. disableWriteCheckSocket();
  106. #ifdef ENABLE_ASYNC_DNS
  107. disableNameResolverCheck(asyncNameResolver_);
  108. #endif // ENABLE_ASYNC_DNS
  109. requestGroup_->decreaseNumCommand();
  110. requestGroup_->decreaseStreamCommand();
  111. if(incNumConnection_) {
  112. requestGroup_->decreaseStreamConnection();
  113. }
  114. }
  115. void AbstractCommand::useFasterRequest
  116. (const SharedHandle<Request>& fasterRequest)
  117. {
  118. A2_LOG_INFO(fmt("CUID#%lld - Use faster Request hostname=%s, port=%u",
  119. getCuid(),
  120. fasterRequest->getHost().c_str(),
  121. fasterRequest->getPort()));
  122. // Cancel current Request object and use faster one.
  123. fileEntry_->removeRequest(req_);
  124. Command* command =
  125. InitiateConnectionCommandFactory::createInitiateConnectionCommand
  126. (getCuid(), fasterRequest, fileEntry_, requestGroup_, e_);
  127. e_->setNoWait(true);
  128. e_->addCommand(command);
  129. }
  130. bool AbstractCommand::execute() {
  131. A2_LOG_DEBUG(fmt("CUID#%lld - socket: read:%d, write:%d, hup:%d, err:%d",
  132. getCuid(),
  133. readEventEnabled(),
  134. writeEventEnabled(),
  135. hupEventEnabled(),
  136. errorEventEnabled()));
  137. try {
  138. if(requestGroup_->downloadFinished() || requestGroup_->isHaltRequested()) {
  139. return true;
  140. }
  141. if(req_ && req_->removalRequested()) {
  142. A2_LOG_DEBUG(fmt("CUID#%lld - Discard original URI=%s because it is"
  143. " requested.",
  144. getCuid(), req_->getUri().c_str()));
  145. return prepareForRetry(0);
  146. }
  147. if(getPieceStorage()) {
  148. segments_.clear();
  149. getSegmentMan()->getInFlightSegment(segments_, getCuid());
  150. if(req_ && segments_.empty()) {
  151. // This command previously has assigned segments, but it is
  152. // canceled. So discard current request chain. Plus, if no
  153. // segment is available when http pipelining is used.
  154. A2_LOG_DEBUG(fmt("CUID#%lld - It seems previously assigned segments"
  155. " are canceled. Restart.",
  156. getCuid()));
  157. // Request::isPipeliningEnabled() == true means aria2
  158. // accessed the remote server and discovered that the server
  159. // supports pipelining.
  160. if(req_ && req_->isPipeliningEnabled()) {
  161. e_->poolSocket(req_, createProxyRequest(), socket_);
  162. }
  163. return prepareForRetry(0);
  164. }
  165. // TODO it is not needed to check other PeerStats every time.
  166. // Find faster Request when no segment is available.
  167. if(req_ && fileEntry_->countPooledRequest() > 0 &&
  168. !getPieceStorage()->hasMissingUnusedPiece()) {
  169. SharedHandle<Request> fasterRequest = fileEntry_->findFasterRequest(req_);
  170. if(fasterRequest) {
  171. useFasterRequest(fasterRequest);
  172. return true;
  173. }
  174. }
  175. // Don't use this feature if PREF_MAX_{OVERALL_}DOWNLOAD_LIMIT
  176. // is used or total length is unknown.
  177. if(req_ && fileEntry_->getLength() > 0 &&
  178. e_->getRequestGroupMan()->getMaxOverallDownloadSpeedLimit() == 0 &&
  179. requestGroup_->getMaxDownloadSpeedLimit() == 0 &&
  180. serverStatTimer_.difference(global::wallclock()) >= 10) {
  181. serverStatTimer_ = global::wallclock();
  182. std::vector<std::pair<size_t, std::string> > usedHosts;
  183. if(getOption()->getAsBool(PREF_SELECT_LEAST_USED_HOST)) {
  184. getDownloadEngine()->getRequestGroupMan()->getUsedHosts(usedHosts);
  185. }
  186. SharedHandle<Request> fasterRequest =
  187. fileEntry_->findFasterRequest
  188. (req_, usedHosts, e_->getRequestGroupMan()->getServerStatMan());
  189. if(fasterRequest) {
  190. useFasterRequest(fasterRequest);
  191. return true;
  192. }
  193. }
  194. }
  195. if((checkSocketIsReadable_ &&
  196. (readEventEnabled() ||
  197. (socketRecvBuffer_ && !socketRecvBuffer_->bufferEmpty()))) ||
  198. (checkSocketIsWritable_ && writeEventEnabled()) ||
  199. hupEventEnabled() ||
  200. #ifdef ENABLE_ASYNC_DNS
  201. (nameResolverCheck_ && nameResolveFinished()) ||
  202. #endif // ENABLE_ASYNC_DNS
  203. (!checkSocketIsReadable_ && !checkSocketIsWritable_ &&
  204. !nameResolverCheck_)) {
  205. checkPoint_ = global::wallclock();
  206. if(getPieceStorage()) {
  207. if(!req_ || req_->getMaxPipelinedRequest() == 1 ||
  208. // Why the following condition is necessary? That's because
  209. // For single file download, SegmentMan::getSegment(cuid)
  210. // is more efficient.
  211. getDownloadContext()->getFileEntries().size() == 1) {
  212. size_t maxSegments = req_?req_->getMaxPipelinedRequest():1;
  213. size_t minSplitSize = calculateMinSplitSize();
  214. while(segments_.size() < maxSegments) {
  215. SharedHandle<Segment> segment =
  216. getSegmentMan()->getSegment(getCuid(), minSplitSize);
  217. if(!segment) {
  218. break;
  219. } else {
  220. segments_.push_back(segment);
  221. }
  222. }
  223. if(segments_.empty()) {
  224. // TODO socket could be pooled here if pipelining is
  225. // enabled... Hmm, I don't think if pipelining is enabled
  226. // it does not go here.
  227. A2_LOG_INFO(fmt(MSG_NO_SEGMENT_AVAILABLE,
  228. getCuid()));
  229. // When all segments are ignored in SegmentMan, there are
  230. // no URIs available, so don't retry.
  231. if(getSegmentMan()->allSegmentsIgnored()) {
  232. A2_LOG_DEBUG("All segments are ignored.");
  233. // This will execute other idle Commands and let them
  234. // finish quickly.
  235. e_->setRefreshInterval(0);
  236. return true;
  237. } else {
  238. return prepareForRetry(1);
  239. }
  240. }
  241. } else {
  242. // For multi-file downloads
  243. size_t minSplitSize = calculateMinSplitSize();
  244. size_t maxSegments = req_->getMaxPipelinedRequest();
  245. if(segments_.size() < maxSegments) {
  246. getSegmentMan()->getSegment
  247. (segments_, getCuid(), minSplitSize, fileEntry_, maxSegments);
  248. }
  249. if(segments_.empty()) {
  250. return prepareForRetry(0);
  251. }
  252. }
  253. }
  254. return executeInternal();
  255. } else if(errorEventEnabled()) {
  256. throw DL_RETRY_EX(fmt(MSG_NETWORK_PROBLEM,
  257. socket_->getSocketError().c_str()));
  258. } else {
  259. if(checkPoint_.difference(global::wallclock()) >= timeout_) {
  260. // timeout triggers ServerStat error state.
  261. SharedHandle<ServerStat> ss =
  262. e_->getRequestGroupMan()->getOrCreateServerStat(req_->getHost(),
  263. req_->getProtocol());
  264. ss->setError();
  265. // When DNS query was timeout, req_->getConnectedAddr() is
  266. // empty.
  267. if(!req_->getConnectedAddr().empty()) {
  268. // Purging IP address cache to renew IP address.
  269. A2_LOG_DEBUG(fmt("CUID#%lld - Marking IP address %s as bad",
  270. getCuid(),
  271. req_->getConnectedAddr().c_str()));
  272. e_->markBadIPAddress(req_->getConnectedHostname(),
  273. req_->getConnectedAddr(),
  274. req_->getConnectedPort());
  275. }
  276. if(e_->findCachedIPAddress
  277. (req_->getConnectedHostname(), req_->getConnectedPort()).empty()) {
  278. A2_LOG_DEBUG(fmt("CUID#%lld - All IP addresses were marked bad."
  279. " Removing Entry.",
  280. getCuid()));
  281. e_->removeCachedIPAddress
  282. (req_->getConnectedHostname(), req_->getConnectedPort());
  283. }
  284. throw DL_RETRY_EX2(EX_TIME_OUT, error_code::TIME_OUT);
  285. }
  286. e_->addCommand(this);
  287. return false;
  288. }
  289. } catch(DlAbortEx& err) {
  290. requestGroup_->setLastErrorCode(err.getErrorCode());
  291. if(req_) {
  292. A2_LOG_ERROR_EX(fmt(MSG_DOWNLOAD_ABORTED,
  293. getCuid(),
  294. req_->getUri().c_str()),
  295. DL_ABORT_EX2(fmt("URI=%s", req_->getCurrentUri().c_str()),
  296. err));
  297. fileEntry_->addURIResult(req_->getUri(), err.getErrorCode());
  298. if(err.getErrorCode() == error_code::CANNOT_RESUME) {
  299. requestGroup_->increaseResumeFailureCount();
  300. }
  301. } else {
  302. A2_LOG_DEBUG_EX(EX_EXCEPTION_CAUGHT, err);
  303. }
  304. onAbort();
  305. tryReserved();
  306. return true;
  307. } catch(DlRetryEx& err) {
  308. assert(req_);
  309. A2_LOG_INFO_EX(fmt(MSG_RESTARTING_DOWNLOAD,
  310. getCuid(), req_->getUri().c_str()),
  311. DL_RETRY_EX2(fmt("URI=%s", req_->getCurrentUri().c_str()),
  312. err));
  313. req_->addTryCount();
  314. req_->resetRedirectCount();
  315. req_->resetUri();
  316. const unsigned int maxTries = getOption()->getAsInt(PREF_MAX_TRIES);
  317. bool isAbort = maxTries != 0 && req_->getTryCount() >= maxTries;
  318. if(isAbort) {
  319. A2_LOG_INFO(fmt(MSG_MAX_TRY,
  320. getCuid(),
  321. req_->getTryCount()));
  322. A2_LOG_ERROR_EX(fmt(MSG_DOWNLOAD_ABORTED,
  323. getCuid(),
  324. req_->getUri().c_str()),
  325. err);
  326. fileEntry_->addURIResult(req_->getUri(), err.getErrorCode());
  327. requestGroup_->setLastErrorCode(err.getErrorCode());
  328. if(err.getErrorCode() == error_code::CANNOT_RESUME) {
  329. requestGroup_->increaseResumeFailureCount();
  330. }
  331. onAbort();
  332. tryReserved();
  333. return true;
  334. } else {
  335. Timer wakeTime(global::wallclock());
  336. wakeTime.advance(getOption()->getAsInt(PREF_RETRY_WAIT));
  337. req_->setWakeTime(wakeTime);
  338. return prepareForRetry(0);
  339. }
  340. } catch(DownloadFailureException& err) {
  341. requestGroup_->setLastErrorCode(err.getErrorCode());
  342. if(req_) {
  343. A2_LOG_ERROR_EX(fmt(MSG_DOWNLOAD_ABORTED,
  344. getCuid(),
  345. req_->getUri().c_str()),
  346. DL_ABORT_EX2(fmt("URI=%s", req_->getCurrentUri().c_str()),
  347. err));
  348. fileEntry_->addURIResult(req_->getUri(), err.getErrorCode());
  349. } else {
  350. A2_LOG_ERROR_EX(EX_EXCEPTION_CAUGHT, err);
  351. }
  352. requestGroup_->setHaltRequested(true);
  353. getDownloadEngine()->setRefreshInterval(0);
  354. return true;
  355. }
  356. }
  357. void AbstractCommand::tryReserved() {
  358. if(getDownloadContext()->getFileEntries().size() == 1) {
  359. const SharedHandle<FileEntry>& entry =
  360. getDownloadContext()->getFirstFileEntry();
  361. // Don't create new command if currently file length is unknown
  362. // and there are no URI left. Because file length is unknown, we
  363. // can assume that there are no in-flight request object.
  364. if(entry->getLength() == 0 && entry->getRemainingUris().empty()) {
  365. A2_LOG_DEBUG(fmt("CUID#%lld - Not trying next request."
  366. " No reserved/pooled request is remaining and"
  367. " total length is still unknown.",
  368. getCuid()));
  369. return;
  370. }
  371. }
  372. A2_LOG_DEBUG(fmt("CUID#%lld - Trying reserved/pooled request.",
  373. getCuid()));
  374. std::vector<Command*> commands;
  375. requestGroup_->createNextCommand(commands, e_, 1);
  376. e_->setNoWait(true);
  377. e_->addCommand(commands);
  378. }
  379. bool AbstractCommand::prepareForRetry(time_t wait) {
  380. if(getPieceStorage()) {
  381. getSegmentMan()->cancelSegment(getCuid());
  382. }
  383. if(req_) {
  384. // Reset persistentConnection and maxPipelinedRequest to handle
  385. // the situation where remote server returns Connection: close
  386. // after several pipelined requests.
  387. req_->supportsPersistentConnection(true);
  388. req_->setMaxPipelinedRequest(1);
  389. fileEntry_->poolRequest(req_);
  390. A2_LOG_DEBUG(fmt("CUID#%lld - Pooling request URI=%s",
  391. getCuid(), req_->getUri().c_str()));
  392. if(getSegmentMan()) {
  393. getSegmentMan()->recognizeSegmentFor(fileEntry_);
  394. }
  395. }
  396. Command* command = new CreateRequestCommand(getCuid(), requestGroup_, e_);
  397. if(wait == 0) {
  398. e_->setNoWait(true);
  399. e_->addCommand(command);
  400. } else {
  401. // We don't use wait so that Command can be executed by
  402. // DownloadEngine::setRefreshInterval(0).
  403. command->setStatus(Command::STATUS_INACTIVE);
  404. e_->addCommand(command);
  405. }
  406. return true;
  407. }
  408. void AbstractCommand::onAbort() {
  409. if(req_) {
  410. fileEntry_->removeIdenticalURI(req_->getUri());
  411. fileEntry_->removeRequest(req_);
  412. }
  413. A2_LOG_DEBUG(fmt("CUID#%lld - Aborting download",
  414. getCuid()));
  415. if(getPieceStorage()) {
  416. getSegmentMan()->cancelSegment(getCuid());
  417. // Don't do following process if BitTorrent is involved or files
  418. // in DownloadContext is more than 1. The latter condition is
  419. // limitation of current implementation.
  420. if(!getOption()->getAsBool(PREF_ALWAYS_RESUME) &&
  421. fileEntry_ &&
  422. getSegmentMan()->calculateSessionDownloadLength() == 0 &&
  423. !requestGroup_->p2pInvolved() &&
  424. getDownloadContext()->getFileEntries().size() == 1) {
  425. const int maxTries = getOption()->getAsInt(PREF_MAX_RESUME_FAILURE_TRIES);
  426. if((maxTries > 0 && requestGroup_->getResumeFailureCount() >= maxTries)||
  427. fileEntry_->emptyRequestUri()) {
  428. // Local file exists, but given servers(or at least contacted
  429. // ones) doesn't support resume. Let's restart download from
  430. // scratch.
  431. A2_LOG_NOTICE(fmt("CUID#%lld - Failed to resume download."
  432. " Download from scratch.",
  433. getCuid()));
  434. A2_LOG_DEBUG(fmt("CUID#%lld - Gathering URIs that has CANNOT_RESUME"
  435. " error",
  436. getCuid()));
  437. // Set PREF_ALWAYS_RESUME to A2_V_TRUE to avoid repeating this
  438. // process.
  439. getOption()->put(PREF_ALWAYS_RESUME, A2_V_TRUE);
  440. std::deque<URIResult> res;
  441. fileEntry_->extractURIResult(res, error_code::CANNOT_RESUME);
  442. if(!res.empty()) {
  443. getSegmentMan()->cancelAllSegments();
  444. getSegmentMan()->eraseSegmentWrittenLengthMemo();
  445. getPieceStorage()->markPiecesDone(0);
  446. std::vector<std::string> uris;
  447. uris.reserve(res.size());
  448. std::transform(res.begin(), res.end(), std::back_inserter(uris),
  449. std::mem_fun_ref(&URIResult::getURI));
  450. A2_LOG_DEBUG(fmt("CUID#%lld - %lu URIs found.",
  451. getCuid(),
  452. static_cast<unsigned long int>(uris.size())));
  453. fileEntry_->addUris(uris.begin(), uris.end());
  454. getSegmentMan()->recognizeSegmentFor(fileEntry_);
  455. }
  456. }
  457. }
  458. }
  459. }
  460. void AbstractCommand::disableReadCheckSocket() {
  461. if(checkSocketIsReadable_) {
  462. e_->deleteSocketForReadCheck(readCheckTarget_, this);
  463. checkSocketIsReadable_ = false;
  464. readCheckTarget_.reset();
  465. }
  466. }
  467. void AbstractCommand::setReadCheckSocket(const SocketHandle& socket) {
  468. if(!socket->isOpen()) {
  469. disableReadCheckSocket();
  470. } else {
  471. if(checkSocketIsReadable_) {
  472. if(*readCheckTarget_ != *socket) {
  473. e_->deleteSocketForReadCheck(readCheckTarget_, this);
  474. e_->addSocketForReadCheck(socket, this);
  475. readCheckTarget_ = socket;
  476. }
  477. } else {
  478. e_->addSocketForReadCheck(socket, this);
  479. checkSocketIsReadable_ = true;
  480. readCheckTarget_ = socket;
  481. }
  482. }
  483. }
  484. void AbstractCommand::setReadCheckSocketIf
  485. (const SharedHandle<SocketCore>& socket, bool pred)
  486. {
  487. if(pred) {
  488. setReadCheckSocket(socket);
  489. } else {
  490. disableReadCheckSocket();
  491. }
  492. }
  493. void AbstractCommand::disableWriteCheckSocket() {
  494. if(checkSocketIsWritable_) {
  495. e_->deleteSocketForWriteCheck(writeCheckTarget_, this);
  496. checkSocketIsWritable_ = false;
  497. writeCheckTarget_.reset();
  498. }
  499. }
  500. void AbstractCommand::setWriteCheckSocket(const SocketHandle& socket) {
  501. if(!socket->isOpen()) {
  502. disableWriteCheckSocket();
  503. } else {
  504. if(checkSocketIsWritable_) {
  505. if(*writeCheckTarget_ != *socket) {
  506. e_->deleteSocketForWriteCheck(writeCheckTarget_, this);
  507. e_->addSocketForWriteCheck(socket, this);
  508. writeCheckTarget_ = socket;
  509. }
  510. } else {
  511. e_->addSocketForWriteCheck(socket, this);
  512. checkSocketIsWritable_ = true;
  513. writeCheckTarget_ = socket;
  514. }
  515. }
  516. }
  517. void AbstractCommand::setWriteCheckSocketIf
  518. (const SharedHandle<SocketCore>& socket, bool pred)
  519. {
  520. if(pred) {
  521. setWriteCheckSocket(socket);
  522. } else {
  523. disableWriteCheckSocket();
  524. }
  525. }
  526. namespace {
  527. // Returns proxy option value for the given protocol.
  528. const std::string& getProxyOptionFor
  529. (const Pref* proxyPref, const SharedHandle<Option>& option)
  530. {
  531. if(option->defined(proxyPref)) {
  532. return option->get(proxyPref);
  533. } else {
  534. return option->get(PREF_ALL_PROXY);
  535. }
  536. }
  537. } // namespace
  538. namespace {
  539. // Returns proxy URI for given protocol. If no proxy URI is defined,
  540. // then returns an empty string.
  541. const std::string& getProxyUri
  542. (const std::string& protocol, const SharedHandle<Option>& option)
  543. {
  544. if(protocol == Request::PROTO_HTTP) {
  545. return getProxyOptionFor(PREF_HTTP_PROXY, option);
  546. } else if(protocol == Request::PROTO_HTTPS) {
  547. return getProxyOptionFor(PREF_HTTPS_PROXY, option);
  548. } else if(protocol == Request::PROTO_FTP) {
  549. return getProxyOptionFor(PREF_FTP_PROXY, option);
  550. } else {
  551. return A2STR::NIL;
  552. }
  553. }
  554. } // namespace
  555. namespace {
  556. // Returns true if proxy is defined for the given protocol. Otherwise
  557. // returns false.
  558. bool isProxyRequest
  559. (const std::string& protocol, const SharedHandle<Option>& option)
  560. {
  561. const std::string& proxyUri = getProxyUri(protocol, option);
  562. uri::UriStruct us;
  563. return !proxyUri.empty() && uri::parse(us, proxyUri);
  564. }
  565. } // namespace
  566. namespace {
  567. bool inNoProxy(const SharedHandle<Request>& req,
  568. const std::string& noProxy)
  569. {
  570. std::vector<Scip> entries;
  571. util::splitIter(noProxy.begin(), noProxy.end(), std::back_inserter(entries),
  572. ',', true);
  573. if(entries.empty()) {
  574. return false;
  575. }
  576. for(std::vector<Scip>::const_iterator i = entries.begin(),
  577. eoi = entries.end(); i != eoi; ++i) {
  578. std::string::const_iterator slashpos =
  579. std::find((*i).first, (*i).second, '/');
  580. if(slashpos == (*i).second) {
  581. if(util::noProxyDomainMatch
  582. (req->getHost(), std::string((*i).first, (*i).second))) {
  583. return true;
  584. }
  585. } else {
  586. // TODO We don't resolve hostname here. More complete
  587. // implementation is that we should first resolve
  588. // hostname(which may result in several IP addresses) and
  589. // evaluates against all of them
  590. std::string ip((*i).first, slashpos);
  591. uint32_t bits;
  592. if(!util::parseUIntNoThrow(bits, slashpos+1, (*i).second)) {
  593. continue;
  594. }
  595. if(util::inSameCidrBlock(ip, req->getHost(), bits)) {
  596. return true;
  597. }
  598. }
  599. }
  600. return false;
  601. }
  602. } // namespace
  603. bool AbstractCommand::isProxyDefined() const
  604. {
  605. return isProxyRequest(req_->getProtocol(), getOption()) &&
  606. !inNoProxy(req_, getOption()->get(PREF_NO_PROXY));
  607. }
  608. SharedHandle<Request> AbstractCommand::createProxyRequest() const
  609. {
  610. SharedHandle<Request> proxyRequest;
  611. if(inNoProxy(req_, getOption()->get(PREF_NO_PROXY))) {
  612. return proxyRequest;
  613. }
  614. std::string proxy = getProxyUri(req_->getProtocol(), getOption());
  615. if(!proxy.empty()) {
  616. proxyRequest.reset(new Request());
  617. if(proxyRequest->setUri(proxy)) {
  618. A2_LOG_DEBUG(fmt("CUID#%lld - Using proxy", getCuid()));
  619. } else {
  620. A2_LOG_DEBUG(fmt("CUID#%lld - Failed to parse proxy string",
  621. getCuid()));
  622. proxyRequest.reset();
  623. }
  624. }
  625. return proxyRequest;
  626. }
  627. #ifdef ENABLE_ASYNC_DNS
  628. bool AbstractCommand::isAsyncNameResolverInitialized() const
  629. {
  630. return asyncNameResolver_;
  631. }
  632. void AbstractCommand::initAsyncNameResolver(const std::string& hostname)
  633. {
  634. int family;
  635. if(getOption()->getAsBool(PREF_ENABLE_ASYNC_DNS6)) {
  636. family = AF_UNSPEC;
  637. } else {
  638. family = AF_INET;
  639. }
  640. asyncNameResolver_.reset
  641. (new AsyncNameResolver(family
  642. #ifdef HAVE_ARES_ADDR_NODE
  643. ,
  644. e_->getAsyncDNSServers()
  645. #endif // HAVE_ARES_ADDR_NODE
  646. ));
  647. A2_LOG_INFO(fmt(MSG_RESOLVING_HOSTNAME,
  648. getCuid(),
  649. hostname.c_str()));
  650. asyncNameResolver_->resolve(hostname);
  651. setNameResolverCheck(asyncNameResolver_);
  652. }
  653. bool AbstractCommand::asyncResolveHostname()
  654. {
  655. switch(asyncNameResolver_->getStatus()) {
  656. case AsyncNameResolver::STATUS_SUCCESS:
  657. disableNameResolverCheck(asyncNameResolver_);
  658. return true;
  659. case AsyncNameResolver::STATUS_ERROR:
  660. disableNameResolverCheck(asyncNameResolver_);
  661. if(!isProxyRequest(req_->getProtocol(), getOption())) {
  662. e_->getRequestGroupMan()->getOrCreateServerStat
  663. (req_->getHost(), req_->getProtocol())->setError();
  664. }
  665. throw DL_ABORT_EX2
  666. (fmt(MSG_NAME_RESOLUTION_FAILED,
  667. getCuid(),
  668. asyncNameResolver_->getHostname().c_str(),
  669. asyncNameResolver_->getError().c_str()),
  670. error_code::NAME_RESOLVE_ERROR);
  671. default:
  672. return false;
  673. }
  674. }
  675. const std::vector<std::string>& AbstractCommand::getResolvedAddresses()
  676. {
  677. return asyncNameResolver_->getResolvedAddresses();
  678. }
  679. void AbstractCommand::setNameResolverCheck
  680. (const SharedHandle<AsyncNameResolver>& resolver) {
  681. if(resolver) {
  682. nameResolverCheck_ = true;
  683. e_->addNameResolverCheck(resolver, this);
  684. }
  685. }
  686. void AbstractCommand::disableNameResolverCheck
  687. (const SharedHandle<AsyncNameResolver>& resolver) {
  688. if(resolver) {
  689. nameResolverCheck_ = false;
  690. e_->deleteNameResolverCheck(resolver, this);
  691. }
  692. }
  693. bool AbstractCommand::nameResolveFinished() const {
  694. return
  695. asyncNameResolver_->getStatus() == AsyncNameResolver::STATUS_SUCCESS ||
  696. asyncNameResolver_->getStatus() == AsyncNameResolver::STATUS_ERROR;
  697. }
  698. #endif // ENABLE_ASYNC_DNS
  699. std::string AbstractCommand::resolveHostname
  700. (std::vector<std::string>& addrs, const std::string& hostname, uint16_t port)
  701. {
  702. if(util::isNumericHost(hostname)) {
  703. addrs.push_back(hostname);
  704. return hostname;
  705. }
  706. e_->findAllCachedIPAddresses(std::back_inserter(addrs), hostname, port);
  707. std::string ipaddr;
  708. if(addrs.empty()) {
  709. #ifdef ENABLE_ASYNC_DNS
  710. if(getOption()->getAsBool(PREF_ASYNC_DNS)) {
  711. if(!isAsyncNameResolverInitialized()) {
  712. initAsyncNameResolver(hostname);
  713. }
  714. if(asyncResolveHostname()) {
  715. addrs = getResolvedAddresses();
  716. } else {
  717. return A2STR::NIL;
  718. }
  719. } else
  720. #endif // ENABLE_ASYNC_DNS
  721. {
  722. NameResolver res;
  723. res.setSocktype(SOCK_STREAM);
  724. if(e_->getOption()->getAsBool(PREF_DISABLE_IPV6)) {
  725. res.setFamily(AF_INET);
  726. }
  727. res.resolve(addrs, hostname);
  728. }
  729. A2_LOG_INFO(fmt(MSG_NAME_RESOLUTION_COMPLETE,
  730. getCuid(),
  731. hostname.c_str(),
  732. strjoin(addrs.begin(), addrs.end(), ", ").c_str()));
  733. for(std::vector<std::string>::const_iterator i = addrs.begin(),
  734. eoi = addrs.end(); i != eoi; ++i) {
  735. e_->cacheIPAddress(hostname, *i, port);
  736. }
  737. ipaddr = e_->findCachedIPAddress(hostname, port);
  738. } else {
  739. ipaddr = addrs.front();
  740. A2_LOG_INFO(fmt(MSG_DNS_CACHE_HIT,
  741. getCuid(),
  742. hostname.c_str(),
  743. strjoin(addrs.begin(), addrs.end(), ", ").c_str()));
  744. }
  745. return ipaddr;
  746. }
  747. void AbstractCommand::prepareForNextAction
  748. (const SharedHandle<CheckIntegrityEntry>& checkEntry)
  749. {
  750. std::vector<Command*>* commands = new std::vector<Command*>();
  751. auto_delete_container<std::vector<Command*> > commandsDel(commands);
  752. requestGroup_->processCheckIntegrityEntry(*commands, checkEntry, e_);
  753. e_->addCommand(*commands);
  754. commands->clear();
  755. e_->setNoWait(true);
  756. }
  757. bool AbstractCommand::checkIfConnectionEstablished
  758. (const SharedHandle<SocketCore>& socket,
  759. const std::string& connectedHostname,
  760. const std::string& connectedAddr,
  761. uint16_t connectedPort)
  762. {
  763. if(socket->isReadable(0)) {
  764. std::string error = socket->getSocketError();
  765. if(!error.empty()) {
  766. // See also InitiateConnectionCommand::executeInternal()
  767. e_->markBadIPAddress(connectedHostname, connectedAddr, connectedPort);
  768. if(!e_->findCachedIPAddress(connectedHostname, connectedPort).empty()) {
  769. A2_LOG_INFO(fmt(MSG_CONNECT_FAILED_AND_RETRY,
  770. getCuid(),
  771. connectedAddr.c_str(), connectedPort));
  772. Command* command =
  773. InitiateConnectionCommandFactory::createInitiateConnectionCommand
  774. (getCuid(), req_, fileEntry_, requestGroup_, e_);
  775. e_->setNoWait(true);
  776. e_->addCommand(command);
  777. return false;
  778. }
  779. e_->removeCachedIPAddress(connectedHostname, connectedPort);
  780. // Don't set error if proxy server is used and its method is GET.
  781. if(resolveProxyMethod(req_->getProtocol()) != V_GET ||
  782. !isProxyRequest(req_->getProtocol(), getOption())) {
  783. e_->getRequestGroupMan()->getOrCreateServerStat
  784. (req_->getHost(), req_->getProtocol())->setError();
  785. }
  786. throw DL_RETRY_EX
  787. (fmt(MSG_ESTABLISHING_CONNECTION_FAILED, error.c_str()));
  788. }
  789. }
  790. return true;
  791. }
  792. const std::string& AbstractCommand::resolveProxyMethod
  793. (const std::string& protocol) const
  794. {
  795. if(getOption()->get(PREF_PROXY_METHOD) == V_TUNNEL ||
  796. Request::PROTO_HTTPS == protocol) {
  797. return V_TUNNEL;
  798. } else {
  799. return V_GET;
  800. }
  801. }
  802. const SharedHandle<Option>& AbstractCommand::getOption() const
  803. {
  804. return requestGroup_->getOption();
  805. }
  806. void AbstractCommand::createSocket()
  807. {
  808. socket_.reset(new SocketCore());
  809. }
  810. size_t AbstractCommand::calculateMinSplitSize() const
  811. {
  812. if(req_ && req_->isPipeliningEnabled()) {
  813. return getDownloadContext()->getPieceLength();
  814. } else {
  815. return getOption()->getAsInt(PREF_MIN_SPLIT_SIZE);
  816. }
  817. }
  818. void AbstractCommand::setRequest(const SharedHandle<Request>& request)
  819. {
  820. req_ = request;
  821. }
  822. void AbstractCommand::setFileEntry(const SharedHandle<FileEntry>& fileEntry)
  823. {
  824. fileEntry_ = fileEntry;
  825. }
  826. void AbstractCommand::setSocket(const SharedHandle<SocketCore>& s)
  827. {
  828. socket_ = s;
  829. }
  830. const SharedHandle<DownloadContext>& AbstractCommand::getDownloadContext() const
  831. {
  832. return requestGroup_->getDownloadContext();
  833. }
  834. const SharedHandle<SegmentMan>& AbstractCommand::getSegmentMan() const
  835. {
  836. return requestGroup_->getSegmentMan();
  837. }
  838. const SharedHandle<PieceStorage>& AbstractCommand::getPieceStorage() const
  839. {
  840. return requestGroup_->getPieceStorage();
  841. }
  842. void AbstractCommand::checkSocketRecvBuffer()
  843. {
  844. if(!socketRecvBuffer_->bufferEmpty()) {
  845. setStatus(Command::STATUS_ONESHOT_REALTIME);
  846. e_->setNoWait(true);
  847. }
  848. }
  849. } // namespace aria2