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AsyncHttpClient.cpp 5.5 KB

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  1. #include "AsyncHttpClient.h"
  2. namespace hv {
  3. // createsocket => startConnect =>
  4. // onconnect => sendRequest => startRead =>
  5. // onread => HttpParser => resp_cb
  6. int AsyncHttpClient::doTask(const HttpClientTaskPtr& task) {
  7. const HttpRequestPtr& req = task->req;
  8. // queueInLoop timeout?
  9. uint64_t now_hrtime = hloop_now_hrtime(EventLoopThread::hloop());
  10. int elapsed_ms = (now_hrtime - task->start_time) / 1000;
  11. int timeout_ms = req->timeout * 1000;
  12. if (timeout_ms > 0 && elapsed_ms >= timeout_ms) {
  13. hlogw("%s queueInLoop timeout!", req->url.c_str());
  14. return -10;
  15. }
  16. req->ParseUrl();
  17. sockaddr_u peeraddr;
  18. memset(&peeraddr, 0, sizeof(peeraddr));
  19. const char* host = req->host.c_str();
  20. int ret = sockaddr_set_ipport(&peeraddr, host, req->port);
  21. if (ret != 0) {
  22. hloge("unknown host %s", host);
  23. return -20;
  24. }
  25. int connfd = -1;
  26. // first get from conn_pools
  27. char strAddr[SOCKADDR_STRLEN] = {0};
  28. SOCKADDR_STR(&peeraddr, strAddr);
  29. auto iter = conn_pools.find(strAddr);
  30. if (iter != conn_pools.end()) {
  31. // hlogd("get from conn_pools");
  32. iter->second.get(connfd);
  33. }
  34. if (connfd < 0) {
  35. // create socket
  36. connfd = socket(peeraddr.sa.sa_family, SOCK_STREAM, 0);
  37. if (connfd < 0) {
  38. perror("socket");
  39. return -30;
  40. }
  41. hio_t* connio = hio_get(EventLoopThread::hloop(), connfd);
  42. assert(connio != NULL);
  43. hio_set_peeraddr(connio, &peeraddr.sa, sockaddr_len(&peeraddr));
  44. addChannel(connio);
  45. // https
  46. if (req->IsHttps() && !req->IsProxy()) {
  47. hio_enable_ssl(connio);
  48. if (!is_ipaddr(host)) {
  49. hio_set_hostname(connio, host);
  50. }
  51. }
  52. }
  53. const SocketChannelPtr& channel = getChannel(connfd);
  54. assert(channel != NULL);
  55. HttpClientContext* ctx = channel->getContext<HttpClientContext>();
  56. ctx->task = task;
  57. channel->onconnect = [&channel]() {
  58. sendRequest(channel);
  59. };
  60. channel->onread = [this, &channel](Buffer* buf) {
  61. HttpClientContext* ctx = channel->getContext<HttpClientContext>();
  62. if (ctx->task == NULL) return;
  63. const char* data = (const char*)buf->data();
  64. int len = buf->size();
  65. int nparse = ctx->parser->FeedRecvData(data, len);
  66. if (nparse != len) {
  67. ctx->errorCallback();
  68. channel->close();
  69. return;
  70. }
  71. if (ctx->parser->IsComplete()) {
  72. bool keepalive = ctx->task->req->IsKeepAlive() && ctx->resp->IsKeepAlive();
  73. ctx->successCallback();
  74. if (keepalive) {
  75. // NOTE: add into conn_pools to reuse
  76. // hlogd("add into conn_pools");
  77. conn_pools[channel->peeraddr()].add(channel->fd());
  78. } else {
  79. channel->close();
  80. }
  81. }
  82. };
  83. channel->onclose = [this, &channel]() {
  84. HttpClientContext* ctx = channel->getContext<HttpClientContext>();
  85. // NOTE: remove from conn_pools
  86. // hlogd("remove from conn_pools");
  87. auto iter = conn_pools.find(channel->peeraddr());
  88. if (iter != conn_pools.end()) {
  89. iter->second.remove(channel->fd());
  90. }
  91. const HttpClientTaskPtr& task = ctx->task;
  92. if (task && task->req && task->req->retry_count-- > 0) {
  93. if (task->req->retry_delay > 0) {
  94. // try again after delay
  95. setTimeout(task->req->retry_delay, [this, task](TimerID timerID){
  96. hlogi("retry %s %s", http_method_str(task->req->method), task->req->url.c_str());
  97. sendInLoop(task);
  98. });
  99. } else {
  100. send(task);
  101. }
  102. } else {
  103. ctx->errorCallback();
  104. }
  105. removeChannel(channel);
  106. };
  107. // timer
  108. if (timeout_ms > 0) {
  109. ctx->timerID = setTimeout(timeout_ms - elapsed_ms, [&channel](TimerID timerID){
  110. HttpClientContext* ctx = channel->getContext<HttpClientContext>();
  111. assert(ctx->task != NULL);
  112. hlogw("%s timeout!", ctx->task->req->url.c_str());
  113. if (channel) {
  114. channel->close();
  115. }
  116. });
  117. }
  118. if (channel->isConnected()) {
  119. // sendRequest
  120. sendRequest(channel);
  121. } else {
  122. // startConnect
  123. if (req->connect_timeout > 0) {
  124. channel->setConnectTimeout(req->connect_timeout * 1000);
  125. }
  126. channel->startConnect();
  127. }
  128. return 0;
  129. }
  130. // InitResponse => SubmitRequest => while(GetSendData) write => startRead
  131. int AsyncHttpClient::sendRequest(const SocketChannelPtr& channel) {
  132. HttpClientContext* ctx = (HttpClientContext*)channel->context();
  133. assert(ctx != NULL && ctx->task != NULL);
  134. HttpRequest* req = ctx->task->req.get();
  135. HttpResponse* resp = ctx->resp.get();
  136. if (ctx->parser == NULL) {
  137. ctx->parser.reset(HttpParser::New(HTTP_CLIENT, (http_version)req->http_major));
  138. }
  139. if (resp == NULL) {
  140. resp = new HttpResponse;
  141. ctx->resp.reset(resp);
  142. }
  143. if (req->http_cb) resp->http_cb = std::move(req->http_cb);
  144. ctx->parser->InitResponse(resp);
  145. ctx->parser->SubmitRequest(req);
  146. char* data = NULL;
  147. size_t len = 0;
  148. while (ctx->parser->GetSendData(&data, &len)) {
  149. // NOTE: ensure write buffer size is enough
  150. if (len > (1 << 22) /* 4M */) {
  151. channel->setMaxWriteBufsize(len);
  152. }
  153. channel->write(data, len);
  154. }
  155. channel->startRead();
  156. return 0;
  157. }
  158. }