631 lines
17 KiB
C
631 lines
17 KiB
C
/***************************************************************************
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* _ _ ____ _
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* Project ___| | | | _ \| |
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* / __| | | | |_) | |
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* | (__| |_| | _ <| |___
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* \___|\___/|_| \_\_____|
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*
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* Copyright (C) Daniel Stenberg, <daniel@haxx.se>, et al.
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*
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* This software is licensed as described in the file COPYING, which
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* you should have received as part of this distribution. The terms
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* are also available at https://curl.se/docs/copyright.html.
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*
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* You may opt to use, copy, modify, merge, publish, distribute and/or sell
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* copies of the Software, and permit persons to whom the Software is
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* furnished to do so, under the terms of the COPYING file.
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*
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* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
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* KIND, either express or implied.
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*
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* SPDX-License-Identifier: curl
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*
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***************************************************************************/
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#include "curl_setup.h"
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#ifdef HAVE_NETINET_IN_H
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#include <netinet/in.h> /* <netinet/tcp.h> may need it */
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#endif
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#ifdef HAVE_SYS_UN_H
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#include <sys/un.h> /* for sockaddr_un */
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#endif
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#ifdef HAVE_LINUX_TCP_H
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#include <linux/tcp.h>
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#elif defined(HAVE_NETINET_TCP_H)
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#include <netinet/tcp.h>
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#endif
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#ifdef HAVE_SYS_IOCTL_H
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#include <sys/ioctl.h>
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#endif
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#ifdef HAVE_NETDB_H
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#include <netdb.h>
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#endif
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#ifdef HAVE_ARPA_INET_H
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#include <arpa/inet.h>
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#endif
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#ifdef __VMS
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#include <in.h>
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#include <inet.h>
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#endif
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#include "urldata.h"
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#include "sendf.h"
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#include "if2ip.h"
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#include "strerror.h"
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#include "cfilters.h"
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#include "connect.h"
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#include "cf-haproxy.h"
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#include "cf-https-connect.h"
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#include "cf-ip-happy.h"
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#include "cf-socket.h"
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#include "select.h"
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#include "url.h" /* for Curl_safefree() */
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#include "multiif.h"
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#include "sockaddr.h" /* required for Curl_sockaddr_storage */
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#include "curlx/inet_ntop.h"
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#include "curlx/inet_pton.h"
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#include "vtls/vtls.h" /* for vtsl cfilters */
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#include "progress.h"
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#include "curlx/warnless.h"
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#include "conncache.h"
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#include "multihandle.h"
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#include "share.h"
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#include "http_proxy.h"
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#include "socks.h"
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/* The last 2 #include files should be in this order */
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#include "curl_memory.h"
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#include "memdebug.h"
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#if !defined(CURL_DISABLE_ALTSVC) || defined(USE_HTTPSRR)
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enum alpnid Curl_alpn2alpnid(const char *name, size_t len)
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{
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if(len == 2) {
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if(curl_strnequal(name, "h1", 2))
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return ALPN_h1;
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if(curl_strnequal(name, "h2", 2))
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return ALPN_h2;
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if(curl_strnequal(name, "h3", 2))
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return ALPN_h3;
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}
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else if(len == 8) {
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if(curl_strnequal(name, "http/1.1", 8))
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return ALPN_h1;
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}
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return ALPN_none; /* unknown, probably rubbish input */
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}
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#endif
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/*
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* Curl_timeleft() returns the amount of milliseconds left allowed for the
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* transfer/connection. If the value is 0, there is no timeout (ie there is
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* infinite time left). If the value is negative, the timeout time has already
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* elapsed.
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* @param data the transfer to check on
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* @param nowp timestamp to use for calculation, NULL to use curlx_now()
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* @param duringconnect TRUE iff connect timeout is also taken into account.
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* @unittest: 1303
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*/
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timediff_t Curl_timeleft(struct Curl_easy *data,
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struct curltime *nowp,
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bool duringconnect)
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{
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timediff_t timeleft_ms = 0;
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timediff_t ctimeleft_ms = 0;
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struct curltime now;
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/* The duration of a connect and the total transfer are calculated from two
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different time-stamps. It can end up with the total timeout being reached
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before the connect timeout expires and we must acknowledge whichever
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timeout that is reached first. The total timeout is set per entire
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operation, while the connect timeout is set per connect. */
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if((!data->set.timeout || data->set.connect_only) && !duringconnect)
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return 0; /* no timeout in place or checked, return "no limit" */
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if(!nowp) {
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now = curlx_now();
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nowp = &now;
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}
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if(data->set.timeout) {
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timeleft_ms = data->set.timeout -
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curlx_timediff(*nowp, data->progress.t_startop);
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if(!timeleft_ms)
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timeleft_ms = -1; /* 0 is "no limit", fake 1 ms expiry */
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if(!duringconnect)
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return timeleft_ms; /* no connect check, this is it */
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}
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if(duringconnect) {
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timediff_t ctimeout_ms = (data->set.connecttimeout > 0) ?
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data->set.connecttimeout : DEFAULT_CONNECT_TIMEOUT;
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ctimeleft_ms = ctimeout_ms -
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curlx_timediff(*nowp, data->progress.t_startsingle);
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if(!ctimeleft_ms)
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ctimeleft_ms = -1; /* 0 is "no limit", fake 1 ms expiry */
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if(!timeleft_ms)
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return ctimeleft_ms; /* no general timeout, this is it */
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}
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/* return minimal time left or max amount already expired */
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return (ctimeleft_ms < timeleft_ms) ? ctimeleft_ms : timeleft_ms;
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}
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void Curl_shutdown_start(struct Curl_easy *data, int sockindex,
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int timeout_ms, struct curltime *nowp)
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{
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struct curltime now;
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struct connectdata *conn = data->conn;
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DEBUGASSERT(conn);
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if(!nowp) {
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now = curlx_now();
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nowp = &now;
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}
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conn->shutdown.start[sockindex] = *nowp;
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conn->shutdown.timeout_ms = (timeout_ms > 0) ?
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(timediff_t)timeout_ms :
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((data->set.shutdowntimeout > 0) ?
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data->set.shutdowntimeout : DEFAULT_SHUTDOWN_TIMEOUT_MS);
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/* Set a timer, unless we operate on the admin handle */
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if(data->mid)
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Curl_expire_ex(data, nowp, conn->shutdown.timeout_ms,
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EXPIRE_SHUTDOWN);
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}
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timediff_t Curl_shutdown_timeleft(struct connectdata *conn, int sockindex,
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struct curltime *nowp)
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{
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struct curltime now;
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timediff_t left_ms;
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if(!conn->shutdown.start[sockindex].tv_sec ||
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(conn->shutdown.timeout_ms <= 0))
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return 0; /* not started or no limits */
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if(!nowp) {
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now = curlx_now();
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nowp = &now;
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}
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left_ms = conn->shutdown.timeout_ms -
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curlx_timediff(*nowp, conn->shutdown.start[sockindex]);
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return left_ms ? left_ms : -1;
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}
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timediff_t Curl_conn_shutdown_timeleft(struct connectdata *conn,
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struct curltime *nowp)
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{
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timediff_t left_ms = 0, ms;
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struct curltime now;
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int i;
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for(i = 0; conn->shutdown.timeout_ms && (i < 2); ++i) {
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if(!conn->shutdown.start[i].tv_sec)
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continue;
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if(!nowp) {
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now = curlx_now();
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nowp = &now;
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}
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ms = Curl_shutdown_timeleft(conn, i, nowp);
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if(ms && (!left_ms || ms < left_ms))
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left_ms = ms;
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}
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return left_ms;
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}
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void Curl_shutdown_clear(struct Curl_easy *data, int sockindex)
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{
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struct curltime *pt = &data->conn->shutdown.start[sockindex];
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memset(pt, 0, sizeof(*pt));
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}
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bool Curl_shutdown_started(struct Curl_easy *data, int sockindex)
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{
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struct curltime *pt = &data->conn->shutdown.start[sockindex];
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return (pt->tv_sec > 0) || (pt->tv_usec > 0);
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}
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/* retrieves ip address and port from a sockaddr structure. note it calls
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curlx_inet_ntop which sets errno on fail, not SOCKERRNO. */
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bool Curl_addr2string(struct sockaddr *sa, curl_socklen_t salen,
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char *addr, int *port)
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{
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struct sockaddr_in *si = NULL;
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#ifdef USE_IPV6
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struct sockaddr_in6 *si6 = NULL;
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#endif
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#if (defined(HAVE_SYS_UN_H) || defined(WIN32_SOCKADDR_UN)) && defined(AF_UNIX)
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struct sockaddr_un *su = NULL;
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#else
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(void)salen;
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#endif
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switch(sa->sa_family) {
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case AF_INET:
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si = (struct sockaddr_in *)(void *) sa;
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if(curlx_inet_ntop(sa->sa_family, &si->sin_addr, addr, MAX_IPADR_LEN)) {
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unsigned short us_port = ntohs(si->sin_port);
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*port = us_port;
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return TRUE;
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}
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break;
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#ifdef USE_IPV6
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case AF_INET6:
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si6 = (struct sockaddr_in6 *)(void *) sa;
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if(curlx_inet_ntop(sa->sa_family, &si6->sin6_addr, addr,
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MAX_IPADR_LEN)) {
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unsigned short us_port = ntohs(si6->sin6_port);
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*port = us_port;
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return TRUE;
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}
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break;
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#endif
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#if (defined(HAVE_SYS_UN_H) || defined(WIN32_SOCKADDR_UN)) && defined(AF_UNIX)
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case AF_UNIX:
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if(salen > (curl_socklen_t)sizeof(CURL_SA_FAMILY_T)) {
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su = (struct sockaddr_un*)sa;
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curl_msnprintf(addr, MAX_IPADR_LEN, "%s", su->sun_path);
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}
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else
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addr[0] = 0; /* socket with no name */
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*port = 0;
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return TRUE;
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#endif
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default:
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break;
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}
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addr[0] = '\0';
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*port = 0;
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CURL_SETERRNO(SOCKEAFNOSUPPORT);
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return FALSE;
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}
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/*
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* Used to extract socket and connectdata struct for the most recent
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* transfer on the given Curl_easy.
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*
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* The returned socket will be CURL_SOCKET_BAD in case of failure!
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*/
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curl_socket_t Curl_getconnectinfo(struct Curl_easy *data,
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struct connectdata **connp)
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{
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DEBUGASSERT(data);
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/* this works for an easy handle:
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* - that has been used for curl_easy_perform()
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* - that is associated with a multi handle, and whose connection
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* was detached with CURLOPT_CONNECT_ONLY
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*/
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if(data->state.lastconnect_id != -1) {
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struct connectdata *conn;
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conn = Curl_cpool_get_conn(data, data->state.lastconnect_id);
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if(!conn) {
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data->state.lastconnect_id = -1;
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return CURL_SOCKET_BAD;
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}
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if(connp)
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/* only store this if the caller cares for it */
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*connp = conn;
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return conn->sock[FIRSTSOCKET];
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}
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return CURL_SOCKET_BAD;
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}
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/*
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* Curl_conncontrol() marks streams or connection for closure.
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*/
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void Curl_conncontrol(struct connectdata *conn,
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int ctrl /* see defines in header */
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#if defined(DEBUGBUILD) && !defined(CURL_DISABLE_VERBOSE_STRINGS)
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, const char *reason
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#endif
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)
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{
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/* close if a connection, or a stream that is not multiplexed. */
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/* This function will be called both before and after this connection is
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associated with a transfer. */
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bool closeit, is_multiplex;
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DEBUGASSERT(conn);
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#if defined(DEBUGBUILD) && !defined(CURL_DISABLE_VERBOSE_STRINGS)
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(void)reason; /* useful for debugging */
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#endif
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is_multiplex = Curl_conn_is_multiplex(conn, FIRSTSOCKET);
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closeit = (ctrl == CONNCTRL_CONNECTION) ||
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((ctrl == CONNCTRL_STREAM) && !is_multiplex);
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if((ctrl == CONNCTRL_STREAM) && is_multiplex)
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; /* stream signal on multiplex conn never affects close state */
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else if((bit)closeit != conn->bits.close) {
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conn->bits.close = closeit; /* the only place in the source code that
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should assign this bit */
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}
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}
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typedef enum {
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CF_SETUP_INIT,
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CF_SETUP_CNNCT_EYEBALLS,
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CF_SETUP_CNNCT_SOCKS,
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CF_SETUP_CNNCT_HTTP_PROXY,
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CF_SETUP_CNNCT_HAPROXY,
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CF_SETUP_CNNCT_SSL,
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CF_SETUP_DONE
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} cf_setup_state;
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struct cf_setup_ctx {
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cf_setup_state state;
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int ssl_mode;
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int transport;
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};
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static CURLcode cf_setup_connect(struct Curl_cfilter *cf,
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struct Curl_easy *data,
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bool *done)
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{
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struct cf_setup_ctx *ctx = cf->ctx;
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CURLcode result = CURLE_OK;
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struct Curl_dns_entry *dns = data->state.dns[cf->sockindex];
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if(cf->connected) {
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*done = TRUE;
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return CURLE_OK;
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}
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/* connect current sub-chain */
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connect_sub_chain:
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if(!dns)
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return CURLE_FAILED_INIT;
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if(cf->next && !cf->next->connected) {
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result = Curl_conn_cf_connect(cf->next, data, done);
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if(result || !*done)
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return result;
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}
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if(ctx->state < CF_SETUP_CNNCT_EYEBALLS) {
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result = cf_ip_happy_insert_after(cf, data, ctx->transport);
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if(result)
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return result;
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ctx->state = CF_SETUP_CNNCT_EYEBALLS;
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if(!cf->next || !cf->next->connected)
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goto connect_sub_chain;
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}
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/* sub-chain connected, do we need to add more? */
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#ifndef CURL_DISABLE_PROXY
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if(ctx->state < CF_SETUP_CNNCT_SOCKS && cf->conn->bits.socksproxy) {
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result = Curl_cf_socks_proxy_insert_after(cf, data);
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if(result)
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return result;
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ctx->state = CF_SETUP_CNNCT_SOCKS;
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if(!cf->next || !cf->next->connected)
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goto connect_sub_chain;
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}
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if(ctx->state < CF_SETUP_CNNCT_HTTP_PROXY && cf->conn->bits.httpproxy) {
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#ifdef USE_SSL
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if(IS_HTTPS_PROXY(cf->conn->http_proxy.proxytype)
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&& !Curl_conn_is_ssl(cf->conn, cf->sockindex)) {
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result = Curl_cf_ssl_proxy_insert_after(cf, data);
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if(result)
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return result;
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}
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#endif /* USE_SSL */
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|
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#ifndef CURL_DISABLE_HTTP
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if(cf->conn->bits.tunnel_proxy) {
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result = Curl_cf_http_proxy_insert_after(cf, data);
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if(result)
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return result;
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}
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#endif /* !CURL_DISABLE_HTTP */
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ctx->state = CF_SETUP_CNNCT_HTTP_PROXY;
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if(!cf->next || !cf->next->connected)
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goto connect_sub_chain;
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}
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#endif /* !CURL_DISABLE_PROXY */
|
|
|
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if(ctx->state < CF_SETUP_CNNCT_HAPROXY) {
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#ifndef CURL_DISABLE_PROXY
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if(data->set.haproxyprotocol) {
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if(Curl_conn_is_ssl(cf->conn, cf->sockindex)) {
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failf(data, "haproxy protocol not support with SSL "
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"encryption in place (QUIC?)");
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return CURLE_UNSUPPORTED_PROTOCOL;
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}
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result = Curl_cf_haproxy_insert_after(cf, data);
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if(result)
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return result;
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}
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#endif /* !CURL_DISABLE_PROXY */
|
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ctx->state = CF_SETUP_CNNCT_HAPROXY;
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if(!cf->next || !cf->next->connected)
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goto connect_sub_chain;
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}
|
|
|
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if(ctx->state < CF_SETUP_CNNCT_SSL) {
|
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#ifdef USE_SSL
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if((ctx->ssl_mode == CURL_CF_SSL_ENABLE
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|| (ctx->ssl_mode != CURL_CF_SSL_DISABLE
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&& cf->conn->handler->flags & PROTOPT_SSL)) /* we want SSL */
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&& !Curl_conn_is_ssl(cf->conn, cf->sockindex)) { /* it is missing */
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result = Curl_cf_ssl_insert_after(cf, data);
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if(result)
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return result;
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}
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#endif /* USE_SSL */
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ctx->state = CF_SETUP_CNNCT_SSL;
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if(!cf->next || !cf->next->connected)
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goto connect_sub_chain;
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}
|
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|
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ctx->state = CF_SETUP_DONE;
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cf->connected = TRUE;
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*done = TRUE;
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return CURLE_OK;
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}
|
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|
|
static void cf_setup_close(struct Curl_cfilter *cf,
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struct Curl_easy *data)
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{
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struct cf_setup_ctx *ctx = cf->ctx;
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|
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CURL_TRC_CF(data, cf, "close");
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cf->connected = FALSE;
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ctx->state = CF_SETUP_INIT;
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|
|
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if(cf->next) {
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cf->next->cft->do_close(cf->next, data);
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Curl_conn_cf_discard_chain(&cf->next, data);
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}
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}
|
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|
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static void cf_setup_destroy(struct Curl_cfilter *cf, struct Curl_easy *data)
|
|
{
|
|
struct cf_setup_ctx *ctx = cf->ctx;
|
|
|
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(void)data;
|
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CURL_TRC_CF(data, cf, "destroy");
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Curl_safefree(ctx);
|
|
}
|
|
|
|
|
|
struct Curl_cftype Curl_cft_setup = {
|
|
"SETUP",
|
|
0,
|
|
CURL_LOG_LVL_NONE,
|
|
cf_setup_destroy,
|
|
cf_setup_connect,
|
|
cf_setup_close,
|
|
Curl_cf_def_shutdown,
|
|
Curl_cf_def_adjust_pollset,
|
|
Curl_cf_def_data_pending,
|
|
Curl_cf_def_send,
|
|
Curl_cf_def_recv,
|
|
Curl_cf_def_cntrl,
|
|
Curl_cf_def_conn_is_alive,
|
|
Curl_cf_def_conn_keep_alive,
|
|
Curl_cf_def_query,
|
|
};
|
|
|
|
static CURLcode cf_setup_create(struct Curl_cfilter **pcf,
|
|
struct Curl_easy *data,
|
|
int transport,
|
|
int ssl_mode)
|
|
{
|
|
struct Curl_cfilter *cf = NULL;
|
|
struct cf_setup_ctx *ctx;
|
|
CURLcode result = CURLE_OK;
|
|
|
|
(void)data;
|
|
ctx = calloc(1, sizeof(*ctx));
|
|
if(!ctx) {
|
|
result = CURLE_OUT_OF_MEMORY;
|
|
goto out;
|
|
}
|
|
ctx->state = CF_SETUP_INIT;
|
|
ctx->ssl_mode = ssl_mode;
|
|
ctx->transport = transport;
|
|
|
|
result = Curl_cf_create(&cf, &Curl_cft_setup, ctx);
|
|
if(result)
|
|
goto out;
|
|
ctx = NULL;
|
|
|
|
out:
|
|
*pcf = result ? NULL : cf;
|
|
if(ctx) {
|
|
free(ctx);
|
|
}
|
|
return result;
|
|
}
|
|
|
|
static CURLcode cf_setup_add(struct Curl_easy *data,
|
|
struct connectdata *conn,
|
|
int sockindex,
|
|
int transport,
|
|
int ssl_mode)
|
|
{
|
|
struct Curl_cfilter *cf;
|
|
CURLcode result = CURLE_OK;
|
|
|
|
DEBUGASSERT(data);
|
|
result = cf_setup_create(&cf, data, transport, ssl_mode);
|
|
if(result)
|
|
goto out;
|
|
Curl_conn_cf_add(data, conn, sockindex, cf);
|
|
out:
|
|
return result;
|
|
}
|
|
|
|
CURLcode Curl_cf_setup_insert_after(struct Curl_cfilter *cf_at,
|
|
struct Curl_easy *data,
|
|
int transport,
|
|
int ssl_mode)
|
|
{
|
|
struct Curl_cfilter *cf;
|
|
CURLcode result;
|
|
|
|
DEBUGASSERT(data);
|
|
result = cf_setup_create(&cf, data, transport, ssl_mode);
|
|
if(result)
|
|
goto out;
|
|
Curl_conn_cf_insert_after(cf_at, cf);
|
|
out:
|
|
return result;
|
|
}
|
|
|
|
CURLcode Curl_conn_setup(struct Curl_easy *data,
|
|
struct connectdata *conn,
|
|
int sockindex,
|
|
struct Curl_dns_entry *dns,
|
|
int ssl_mode)
|
|
{
|
|
CURLcode result = CURLE_OK;
|
|
|
|
DEBUGASSERT(data);
|
|
DEBUGASSERT(conn->handler);
|
|
DEBUGASSERT(dns);
|
|
|
|
Curl_resolv_unlink(data, &data->state.dns[sockindex]);
|
|
data->state.dns[sockindex] = dns;
|
|
|
|
#ifndef CURL_DISABLE_HTTP
|
|
if(!conn->cfilter[sockindex] &&
|
|
conn->handler->protocol == CURLPROTO_HTTPS) {
|
|
DEBUGASSERT(ssl_mode != CURL_CF_SSL_DISABLE);
|
|
result = Curl_cf_https_setup(data, conn, sockindex);
|
|
if(result)
|
|
goto out;
|
|
}
|
|
#endif /* !CURL_DISABLE_HTTP */
|
|
|
|
/* Still no cfilter set, apply default. */
|
|
if(!conn->cfilter[sockindex]) {
|
|
result = cf_setup_add(data, conn, sockindex,
|
|
conn->transport_wanted, ssl_mode);
|
|
if(result)
|
|
goto out;
|
|
}
|
|
|
|
DEBUGASSERT(conn->cfilter[sockindex]);
|
|
out:
|
|
if(result)
|
|
Curl_resolv_unlink(data, &data->state.dns[sockindex]);
|
|
return result;
|
|
}
|
|
|
|
void Curl_conn_set_multiplex(struct connectdata *conn)
|
|
{
|
|
if(!conn->bits.multiplex) {
|
|
conn->bits.multiplex = TRUE;
|
|
if(conn->attached_multi) {
|
|
Curl_multi_connchanged(conn->attached_multi);
|
|
}
|
|
}
|
|
}
|