494 lines
18 KiB
C++
494 lines
18 KiB
C++
/*
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* Copyright (c) 2016-present The ZLMediaKit project authors. All Rights Reserved.
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*
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* This file is part of ZLMediaKit(https://github.com/ZLMediaKit/ZLMediaKit).
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*
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* Use of this source code is governed by MIT-like license that can be found in the
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* LICENSE file in the root of the source tree. All contributing project authors
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* may be found in the AUTHORS file in the root of the source tree.
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*/
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#include <cstdlib>
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#include "Util/base64.h"
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#include "HttpClient.h"
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#include "Common/config.h"
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using namespace std;
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using namespace toolkit;
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namespace mediakit {
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void HttpClient::sendRequest(const string &url) {
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clearResponse();
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_url = url;
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auto protocol = findSubString(url.data(), NULL, "://");
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uint16_t port;
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bool is_https;
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if (strcasecmp(protocol.data(), "http") == 0) {
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port = 80;
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is_https = false;
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} else if (strcasecmp(protocol.data(), "https") == 0) {
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port = 443;
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is_https = true;
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} else {
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auto strErr = StrPrinter << "非法的http url:" << url << endl;
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throw std::invalid_argument(strErr);
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}
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auto host = findSubString(url.data(), "://", "/");
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if (host.empty()) {
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host = findSubString(url.data(), "://", NULL);
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}
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_path = findSubString(url.data(), host.data(), NULL);
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if (_path.empty()) {
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_path = "/";
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}
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// 重新设置header,防止上次请求的header干扰 [AUTO-TRANSLATED:d8d06841]
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// Reset the header to prevent interference from the previous request's header
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_header = _user_set_header;
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auto pos = host.find('@');
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if (pos != string::npos) {
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// 去除?后面的字符串 [AUTO-TRANSLATED:0ccb41c2]
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// Remove the string after the "?"
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auto authStr = host.substr(0, pos);
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host = host.substr(pos + 1, host.size());
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_header.emplace("Authorization", "Basic " + encodeBase64(authStr));
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}
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auto host_header = host;
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splitUrl(host, host, port);
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_header.emplace("Host", host_header);
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_header.emplace("User-Agent", kServerName);
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_header.emplace("Accept", "*/*");
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_header.emplace("Accept-Language", "zh-CN,zh;q=0.8");
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if (_http_persistent) {
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_header.emplace("Connection", "keep-alive");
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} else {
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_header.emplace("Connection", "close");
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}
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_http_persistent = true;
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if (_body && _body->remainSize()) {
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_header.emplace("Content-Length", to_string(_body->remainSize()));
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GET_CONFIG(string, charSet, Http::kCharSet);
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_header.emplace("Content-Type", "application/x-www-form-urlencoded; charset=" + charSet);
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}
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bool host_changed = (_last_host != host + ":" + to_string(port)) || (_is_https != is_https);
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_last_host = host + ":" + to_string(port);
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_is_https = is_https;
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auto cookies = HttpCookieStorage::Instance().get(_last_host, _path);
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_StrPrinter printer;
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for (auto &cookie : cookies) {
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printer << cookie->getKey() << "=" << cookie->getVal() << ";";
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}
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if (!printer.empty()) {
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printer.pop_back();
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_header.emplace("Cookie", printer);
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}
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if (!alive() || host_changed || !_http_persistent) {
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if (isUsedProxy()) {
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_proxy_connected = false;
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startConnect(_proxy_host, _proxy_port, _wait_header_ms / 1000.0f);
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} else {
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startConnect(host, port, _wait_header_ms / 1000.0f);
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}
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} else {
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SockException ex;
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onConnect_l(ex);
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}
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}
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void HttpClient::clear() {
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_url.clear();
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_user_set_header.clear();
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_body.reset();
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_method.clear();
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clearResponse();
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}
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void HttpClient::clearResponse() {
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_complete = false;
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_header_recved = false;
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_recved_body_size = 0;
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_total_body_size = 0;
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_parser.clear();
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_chunked_splitter = nullptr;
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_wait_header.resetTime();
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_wait_body.resetTime();
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_wait_complete.resetTime();
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HttpRequestSplitter::reset();
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}
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void HttpClient::setMethod(string method) {
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_method = std::move(method);
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}
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void HttpClient::setHeader(HttpHeader header) {
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_user_set_header = std::move(header);
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}
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HttpClient &HttpClient::addHeader(string key, string val, bool force) {
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if (!force) {
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_user_set_header.emplace(std::move(key), std::move(val));
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} else {
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_user_set_header[std::move(key)] = std::move(val);
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}
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return *this;
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}
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void HttpClient::setBody(string body) {
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_body.reset(new HttpStringBody(std::move(body)));
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}
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void HttpClient::setBody(HttpBody::Ptr body) {
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_body = std::move(body);
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}
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const Parser &HttpClient::response() const {
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return _parser;
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}
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ssize_t HttpClient::responseBodyTotalSize() const {
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return _total_body_size;
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}
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size_t HttpClient::responseBodySize() const {
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return _recved_body_size;
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}
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const string &HttpClient::getUrl() const {
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return _url;
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}
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void HttpClient::onConnect(const SockException &ex) {
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onConnect_l(ex);
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}
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void HttpClient::onConnect_l(const SockException &ex) {
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if (ex) {
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onResponseCompleted_l(ex);
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return;
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}
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_StrPrinter printer;
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// 不使用代理或者代理服务器已经连接成功 [AUTO-TRANSLATED:e051567c]
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// No proxy is used or the proxy server has connected successfully
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if (_proxy_connected || !isUsedProxy()) {
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printer << _method + " " << _path + " HTTP/1.1\r\n";
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for (auto &pr : _header) {
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printer << pr.first + ": ";
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printer << pr.second + "\r\n";
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}
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_header.clear();
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_path.clear();
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} else {
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printer << "CONNECT " << _last_host << " HTTP/1.1\r\n";
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printer << "Proxy-Connection: keep-alive\r\n";
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if (!_proxy_auth.empty()) {
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printer << "Proxy-Authorization: Basic " << _proxy_auth << "\r\n";
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}
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}
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SockSender::send(printer << "\r\n");
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onFlush();
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}
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void HttpClient::onRecv(const Buffer::Ptr &pBuf) {
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_wait_body.resetTime();
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HttpRequestSplitter::input(pBuf->data(), pBuf->size());
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}
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void HttpClient::onError(const SockException &ex) {
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if (ex.getErrCode() == Err_reset && _allow_resend_request && _http_persistent && _recved_body_size == 0 && !_header_recved) {
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// 连接被重置,可能是服务器主动断开了连接, 或者服务器内核参数或防火墙的持久连接空闲时间超时或不一致. [AUTO-TRANSLATED:8a78f452]
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// The connection was reset, possibly because the server actively closed the connection, or the server kernel parameters or firewall's persistent connection idle timeout or inconsistency.
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// 如果是持久化连接,那么我们可以通过重连来解决这个问题 [AUTO-TRANSLATED:6c113e17]
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// If it is a persistent connection, we can solve this problem by reconnecting
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// The connection was reset, possibly because the server actively disconnected the connection,
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// or the persistent connection idle time of the server kernel parameters or firewall timed out or inconsistent.
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// If it is a persistent connection, then we can solve this problem by reconnecting
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WarnL << "http persistent connect reset, try reconnect";
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_http_persistent = false;
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sendRequest(_url);
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return;
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}
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onResponseCompleted_l(ex);
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}
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ssize_t HttpClient::onRecvHeader(const char *data, size_t len) {
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_parser.parse(data, len);
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if (_parser.status() == "302" || _parser.status() == "301" || _parser.status() == "303") {
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auto new_url = Parser::mergeUrl(_url, _parser["Location"]);
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if (new_url.empty()) {
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throw invalid_argument("未找到Location字段(跳转url)");
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}
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if (onRedirectUrl(new_url, _parser.status() == "302")) {
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HttpClient::sendRequest(new_url);
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return 0;
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}
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}
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checkCookie(_parser.getHeader());
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onResponseHeader(_parser.status(), _parser.getHeader());
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_header_recved = true;
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if (_parser["Transfer-Encoding"] == "chunked") {
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// 如果Transfer-Encoding字段等于chunked,则认为后续的content是不限制长度的 [AUTO-TRANSLATED:ebbcb35c]
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// If the Transfer-Encoding field is equal to chunked, it is considered that the subsequent content is unlimited in length
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_total_body_size = -1;
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_chunked_splitter = std::make_shared<HttpChunkedSplitter>([this](const char *data, size_t len) {
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if (len > 0) {
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_recved_body_size += len;
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onResponseBody(data, len);
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} else {
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_total_body_size = _recved_body_size;
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if (_recved_body_size > 0) {
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onResponseCompleted_l(SockException(Err_success, "success"));
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} else {
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onResponseCompleted_l(SockException(Err_other, "no body"));
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}
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}
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});
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// 后续为源源不断的body [AUTO-TRANSLATED:bf551bbd]
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// The following is a continuous body
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return -1;
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}
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if (!_parser["Content-Length"].empty()) {
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// 有Content-Length字段时忽略onResponseHeader的返回值 [AUTO-TRANSLATED:50380ba8]
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// Ignore the return value of onResponseHeader when there is a Content-Length field
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_total_body_size = atoll(_parser["Content-Length"].data());
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} else {
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_total_body_size = -1;
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}
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if (_total_body_size == 0) {
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// 后续没content,本次http请求结束 [AUTO-TRANSLATED:8532172f]
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// There is no content afterwards, this http request ends
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onResponseCompleted_l(SockException(Err_success, "The request is successful but has no body"));
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return 0;
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}
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// 当_total_body_size != 0时到达这里,代表后续有content [AUTO-TRANSLATED:3a55b268]
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// When _total_body_size != 0, it means there is content afterwards
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// 虽然我们在_total_body_size >0 时知道content的确切大小, [AUTO-TRANSLATED:af91f74f]
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// Although we know the exact size of the content when _total_body_size > 0,
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// 但是由于我们没必要等content接收完毕才回调onRecvContent(因为这样浪费内存并且要多次拷贝数据) [AUTO-TRANSLATED:fd71692c]
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// But because we don't need to wait for the content to be received before calling onRecvContent (because this wastes memory and requires multiple data copies)
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// 所以返回-1代表我们接下来分段接收content [AUTO-TRANSLATED:388756f6]
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// So returning -1 means we will receive the content in segments next
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_recved_body_size = 0;
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return -1;
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}
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void HttpClient::onRecvContent(const char *data, size_t len) {
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if (_chunked_splitter) {
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_chunked_splitter->input(data, len);
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return;
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}
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_recved_body_size += len;
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if (_total_body_size < 0) {
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// 不限长度的content [AUTO-TRANSLATED:325a9dbc]
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// Unlimited length content
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onResponseBody(data, len);
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return;
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}
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// 固定长度的content [AUTO-TRANSLATED:4d169746]
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// Fixed length content
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if (_recved_body_size < (size_t) _total_body_size) {
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// content还未接收完毕 [AUTO-TRANSLATED:b30ca92c]
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// Content has not been received yet
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onResponseBody(data, len);
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return;
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}
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if (_recved_body_size == (size_t)_total_body_size) {
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// content接收完毕 [AUTO-TRANSLATED:e730ea8c]
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// Content received
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onResponseBody(data, len);
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onResponseCompleted_l(SockException(Err_success, "completed"));
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return;
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}
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// 声明的content数据比真实的小,断开链接 [AUTO-TRANSLATED:38204302]
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// The declared content data is smaller than the real one, disconnect
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onResponseBody(data, len);
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throw invalid_argument("http response content size bigger than expected");
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}
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void HttpClient::onFlush() {
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GET_CONFIG(uint32_t, send_buf_size, Http::kSendBufSize);
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while (_body && _body->remainSize() && !isSocketBusy()) {
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auto buffer = _body->readData(send_buf_size);
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if (!buffer) {
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// 数据发送结束或读取数据异常 [AUTO-TRANSLATED:75179972]
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// Data transmission ends or data reading exception
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break;
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}
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if (send(buffer) <= 0) {
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// 发送数据失败,不需要回滚数据,因为发送前已经通过isSocketBusy()判断socket可写 [AUTO-TRANSLATED:30762202]
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// Data transmission failed, no need to roll back data, because the socket is writable before sending
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// 所以发送缓存区肯定未满,该buffer肯定已经写入socket [AUTO-TRANSLATED:769fff52]
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// So the send buffer is definitely not full, this buffer must have been written to the socket
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break;
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}
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}
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}
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void HttpClient::onManager() {
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// onManager回调在连接中或已连接状态才会调用 [AUTO-TRANSLATED:acf86dce]
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// The onManager callback is only called when the connection is in progress or connected
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if (_wait_complete_ms > 0) {
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// 设置了总超时时间 [AUTO-TRANSLATED:ac47c234]
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// Total timeout is set
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if (!_complete && _wait_complete.elapsedTime() > _wait_complete_ms) {
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// 等待http回复完毕超时 [AUTO-TRANSLATED:711ebc7b]
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// Timeout waiting for http reply to finish
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shutdown(SockException(Err_timeout, "wait http response complete timeout"));
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return;
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}
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return;
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}
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// 未设置总超时时间 [AUTO-TRANSLATED:a936338f]
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// Total timeout is not set
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if (!_header_recved) {
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// 等待header中 [AUTO-TRANSLATED:f8635de6]
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// Waiting for header
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if (_wait_header.elapsedTime() > _wait_header_ms) {
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// 等待header中超时 [AUTO-TRANSLATED:860d3a16]
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// Timeout waiting for header
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shutdown(SockException(Err_timeout, "wait http response header timeout"));
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return;
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}
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} else if (_wait_body_ms > 0 && _wait_body.elapsedTime() > _wait_body_ms) {
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// 等待body中,等待超时 [AUTO-TRANSLATED:f9bb1d66]
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// Waiting for body, timeout
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shutdown(SockException(Err_timeout, "wait http response body timeout"));
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return;
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}
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}
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void HttpClient::onResponseCompleted_l(const SockException &ex) {
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if (_complete) {
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return;
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}
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_complete = true;
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_wait_complete.resetTime();
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if (!ex) {
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// 确认无疑的成功 [AUTO-TRANSLATED:e1db8ce2]
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// Confirmed success
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onResponseCompleted(ex);
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return;
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}
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// 可疑的失败 [AUTO-TRANSLATED:1258a436]
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// Suspicious failure
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if (_total_body_size > 0 && _recved_body_size >= (size_t)_total_body_size) {
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// 回复header中有content-length信息,那么收到的body大于等于声明值则认为成功 [AUTO-TRANSLATED:2f813650]
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// If the response header contains content-length information, then the received body is considered successful if it is greater than or equal to the declared value
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onResponseCompleted(SockException(Err_success, "read body completed"));
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return;
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}
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if (_total_body_size == -1 && _recved_body_size > 0) {
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// 回复header中无content-length信息,那么收到一点body也认为成功 [AUTO-TRANSLATED:6c0e87fc]
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// If the response header does not contain content-length information, then receiving any body is considered successful
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onResponseCompleted(SockException(Err_success, ex.what()));
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return;
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}
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// 确认无疑的失败 [AUTO-TRANSLATED:33b216d9]
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// Confirmed failure
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onResponseCompleted(ex);
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}
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bool HttpClient::waitResponse() const {
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return !_complete && alive();
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}
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bool HttpClient::isHttps() const {
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return _is_https;
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}
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void HttpClient::checkCookie(HttpClient::HttpHeader &headers) {
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//Set-Cookie: IPTV_SERVER=8E03927B-CC8C-4389-BC00-31DBA7EC7B49;expires=Sun, Sep 23 2018 15:07:31 GMT;path=/index/api/
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for (auto it_set_cookie = headers.find("Set-Cookie"); it_set_cookie != headers.end(); ++it_set_cookie) {
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auto key_val = Parser::parseArgs(it_set_cookie->second, ";", "=");
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HttpCookie::Ptr cookie = std::make_shared<HttpCookie>();
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cookie->setHost(_last_host);
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int index = 0;
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auto arg_vec = split(it_set_cookie->second, ";");
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for (string &key_val : arg_vec) {
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auto key = findSubString(key_val.data(), NULL, "=");
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auto val = findSubString(key_val.data(), "=", NULL);
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if (index++ == 0) {
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cookie->setKeyVal(key, val);
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continue;
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}
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if (key == "path") {
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cookie->setPath(val);
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continue;
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}
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if (key == "expires") {
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cookie->setExpires(val, headers["Date"]);
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continue;
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}
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}
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if (!(*cookie)) {
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// 无效的cookie [AUTO-TRANSLATED:5f06aec8]
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// Invalid cookie
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continue;
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}
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HttpCookieStorage::Instance().set(cookie);
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}
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}
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void HttpClient::setHeaderTimeout(size_t timeout_ms) {
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||
CHECK(timeout_ms > 0);
|
||
_wait_header_ms = timeout_ms;
|
||
}
|
||
|
||
void HttpClient::setBodyTimeout(size_t timeout_ms) {
|
||
_wait_body_ms = timeout_ms;
|
||
}
|
||
|
||
void HttpClient::setCompleteTimeout(size_t timeout_ms) {
|
||
_wait_complete_ms = timeout_ms;
|
||
}
|
||
|
||
bool HttpClient::isUsedProxy() const {
|
||
return _used_proxy;
|
||
}
|
||
|
||
bool HttpClient::isProxyConnected() const {
|
||
return _proxy_connected;
|
||
}
|
||
|
||
void HttpClient::setProxyUrl(string proxy_url) {
|
||
_proxy_url = std::move(proxy_url);
|
||
if (!_proxy_url.empty()) {
|
||
parseProxyUrl(_proxy_url, _proxy_host, _proxy_port, _proxy_auth);
|
||
_used_proxy = true;
|
||
} else {
|
||
_used_proxy = false;
|
||
}
|
||
}
|
||
|
||
bool HttpClient::checkProxyConnected(const char *data, size_t len) {
|
||
auto ret = strstr(data, "HTTP/1.1 200 Connection established");
|
||
_proxy_connected = ret != nullptr;
|
||
return _proxy_connected;
|
||
}
|
||
|
||
void HttpClient::setAllowResendRequest(bool allow) {
|
||
_allow_resend_request = allow;
|
||
}
|
||
} /* namespace mediakit */
|