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Only initialize the c-ares channel when we start resolving and not alreads when the application sets `CURLOPT_DNS_SERVERS` and friends. Creating an ares channel takes considerable time and when we have the DNS information for a transfer already cached, we do not need it. Closes #17167
953 lines
29 KiB
C
953 lines
29 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 CURLRES_ARES
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/***********************************************************************
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* Only for ares-enabled builds
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* And only for functions that fulfill the asynch resolver backend API
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* as defined in asyn.h, nothing else belongs in this file!
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**********************************************************************/
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#include <limits.h>
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#ifdef HAVE_NETINET_IN_H
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#include <netinet/in.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 "hostip.h"
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#include "hash.h"
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#include "share.h"
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#include "url.h"
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#include "multiif.h"
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#include "inet_pton.h"
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#include "connect.h"
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#include "select.h"
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#include "progress.h"
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#include "timediff.h"
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#include "httpsrr.h"
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#include "strdup.h"
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#include <ares.h>
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#include <ares_version.h> /* really old c-ares did not include this by
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itself */
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#if ARES_VERSION >= 0x010601
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/* IPv6 supported since 1.6.1 */
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#define HAVE_CARES_IPV6 1
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#endif
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#if ARES_VERSION >= 0x010704
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#define HAVE_CARES_SERVERS_CSV 1
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#define HAVE_CARES_LOCAL_DEV 1
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#define HAVE_CARES_SET_LOCAL 1
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#endif
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#if ARES_VERSION >= 0x010b00
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#define HAVE_CARES_PORTS_CSV 1
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#endif
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#if ARES_VERSION >= 0x011000
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/* 1.16.0 or later has ares_getaddrinfo */
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#define HAVE_CARES_GETADDRINFO 1
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#endif
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#ifdef USE_HTTPSRR
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#if ARES_VERSION < 0x011c00
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#error "requires c-ares 1.28.0 or newer for HTTPSRR"
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#endif
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#define HTTPSRR_WORKS
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#endif
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/* The last 3 #include files should be in this order */
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#include "curl_printf.h"
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#include "curl_memory.h"
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#include "memdebug.h"
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/* How long we are willing to wait for additional parallel responses after
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obtaining a "definitive" one. For old c-ares without getaddrinfo.
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This is intended to equal the c-ares default timeout. cURL always uses that
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default value. Unfortunately, c-ares does not expose its default timeout in
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its API, but it is officially documented as 5 seconds.
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See query_completed_cb() for an explanation of how this is used.
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*/
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#define HAPPY_EYEBALLS_DNS_TIMEOUT 5000
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#define CARES_TIMEOUT_PER_ATTEMPT 2000
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static int ares_ver = 0;
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static CURLcode async_ares_set_dns_servers(struct Curl_easy *data,
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bool reset_on_null);
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/*
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* Curl_async_global_init() - the generic low-level asynchronous name
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* resolve API. Called from curl_global_init() to initialize global resolver
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* environment. Initializes ares library.
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*/
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int Curl_async_global_init(void)
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{
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#ifdef CARES_HAVE_ARES_LIBRARY_INIT
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if(ares_library_init(ARES_LIB_INIT_ALL)) {
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return CURLE_FAILED_INIT;
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}
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#endif
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ares_version(&ares_ver);
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return CURLE_OK;
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}
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/*
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* Curl_async_global_cleanup()
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*
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* Called from curl_global_cleanup() to destroy global resolver environment.
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* Deinitializes ares library.
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*/
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void Curl_async_global_cleanup(void)
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{
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#ifdef CARES_HAVE_ARES_LIBRARY_CLEANUP
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ares_library_cleanup();
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#endif
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}
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static void sock_state_cb(void *data, ares_socket_t socket_fd,
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int readable, int writable)
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{
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struct Curl_easy *easy = data;
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if(!readable && !writable) {
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DEBUGASSERT(easy);
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Curl_multi_will_close(easy, socket_fd);
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}
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}
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static CURLcode async_ares_init(struct Curl_easy *data)
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{
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struct async_ares_ctx *ares = &data->state.async.ares;
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int status;
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struct ares_options options;
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int optmask = ARES_OPT_SOCK_STATE_CB;
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CURLcode rc = CURLE_OK;
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options.sock_state_cb = sock_state_cb;
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options.sock_state_cb_data = data;
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DEBUGASSERT(!ares->channel);
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/*
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if c ares < 1.20.0: curl set timeout to CARES_TIMEOUT_PER_ATTEMPT (2s)
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if c-ares >= 1.20.0 it already has the timeout to 2s, curl does not need
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to set the timeout value;
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if c-ares >= 1.24.0, user can set the timeout via /etc/resolv.conf to
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overwrite c-ares' timeout.
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*/
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DEBUGASSERT(ares_ver);
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if(ares_ver < 0x011400) {
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options.timeout = CARES_TIMEOUT_PER_ATTEMPT;
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optmask |= ARES_OPT_TIMEOUTMS;
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}
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status = ares_init_options(&ares->channel, &options, optmask);
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if(status != ARES_SUCCESS) {
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ares->channel = NULL;
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rc = (status == ARES_ENOMEM) ?
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CURLE_OUT_OF_MEMORY : CURLE_FAILED_INIT;
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goto out;
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}
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rc = async_ares_set_dns_servers(data, FALSE);
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if(rc && rc != CURLE_NOT_BUILT_IN)
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goto out;
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rc = Curl_async_ares_set_dns_interface(data);
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if(rc && rc != CURLE_NOT_BUILT_IN)
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goto out;
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rc = Curl_async_ares_set_dns_local_ip4(data);
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if(rc && rc != CURLE_NOT_BUILT_IN)
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goto out;
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rc = Curl_async_ares_set_dns_local_ip6(data);
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if(rc && rc != CURLE_NOT_BUILT_IN)
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goto out;
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rc = CURLE_OK;
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out:
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if(rc && ares->channel) {
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ares_destroy(ares->channel);
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ares->channel = NULL;
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}
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return rc;
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}
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static CURLcode async_ares_init_lazy(struct Curl_easy *data)
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{
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struct async_ares_ctx *ares = &data->state.async.ares;
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if(!ares->channel)
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return async_ares_init(data);
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return CURLE_OK;
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}
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CURLcode Curl_async_get_impl(struct Curl_easy *data, void **impl)
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{
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struct async_ares_ctx *ares = &data->state.async.ares;
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CURLcode result = CURLE_OK;
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if(!ares->channel) {
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result = async_ares_init(data);
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}
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*impl = ares->channel;
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return result;
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}
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static void async_ares_cleanup(struct Curl_easy *data);
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void Curl_async_ares_shutdown(struct Curl_easy *data)
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{
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struct async_ares_ctx *ares = &data->state.async.ares;
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if(ares->channel)
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ares_cancel(ares->channel);
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async_ares_cleanup(data);
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}
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void Curl_async_ares_destroy(struct Curl_easy *data)
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{
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struct async_ares_ctx *ares = &data->state.async.ares;
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Curl_async_ares_shutdown(data);
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if(ares->channel) {
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ares_destroy(ares->channel);
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ares->channel = NULL;
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}
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}
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/*
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* async_ares_cleanup() cleans up async resolver data.
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*/
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static void async_ares_cleanup(struct Curl_easy *data)
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{
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struct async_ares_ctx *ares = &data->state.async.ares;
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if(ares->temp_ai) {
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Curl_freeaddrinfo(ares->temp_ai);
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ares->temp_ai = NULL;
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}
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#ifdef USE_HTTPSRR
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Curl_httpsrr_cleanup(&ares->hinfo);
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#endif
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}
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/*
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* Curl_async_getsock() is called when someone from the outside world
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* (using curl_multi_fdset()) wants to get our fd_set setup.
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*/
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int Curl_async_getsock(struct Curl_easy *data, curl_socket_t *socks)
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{
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struct async_ares_ctx *ares = &data->state.async.ares;
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DEBUGASSERT(ares->channel);
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return Curl_ares_getsock(data, ares->channel, socks);
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}
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/*
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* Curl_async_is_resolved() is called repeatedly to check if a previous
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* name resolve request has completed. It should also make sure to time-out if
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* the operation seems to take too long.
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*
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* Returns normal CURLcode errors.
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*/
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CURLcode Curl_async_is_resolved(struct Curl_easy *data,
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struct Curl_dns_entry **dns)
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{
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struct async_ares_ctx *ares = &data->state.async.ares;
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CURLcode result = CURLE_OK;
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DEBUGASSERT(dns);
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*dns = NULL;
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if(data->state.async.done) {
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*dns = data->state.async.dns;
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return CURLE_OK;
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}
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if(Curl_ares_perform(ares->channel, 0) < 0)
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return CURLE_UNRECOVERABLE_POLL;
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#ifndef HAVE_CARES_GETADDRINFO
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/* Now that we have checked for any last minute results above, see if there
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are any responses still pending when the EXPIRE_HAPPY_EYEBALLS_DNS timer
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expires. */
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if(ares->num_pending
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/* This is only set to non-zero if the timer was started. */
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&& (ares->happy_eyeballs_dns_time.tv_sec
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|| ares->happy_eyeballs_dns_time.tv_usec)
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&& (Curl_timediff(Curl_now(), ares->happy_eyeballs_dns_time)
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>= HAPPY_EYEBALLS_DNS_TIMEOUT)) {
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/* Remember that the EXPIRE_HAPPY_EYEBALLS_DNS timer is no longer
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running. */
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memset(&ares->happy_eyeballs_dns_time, 0,
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sizeof(ares->happy_eyeballs_dns_time));
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/* Cancel the raw c-ares request, which will fire query_completed_cb() with
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ARES_ECANCELLED synchronously for all pending responses. This will
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leave us with res->num_pending == 0, which is perfect for the next
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block. */
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ares_cancel(ares->channel);
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DEBUGASSERT(ares->num_pending == 0);
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}
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#endif
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if(!ares->num_pending) {
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/* all c-ares operations done, what is the result to report? */
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Curl_resolv_unlink(data, &data->state.async.dns);
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data->state.async.done = TRUE;
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result = ares->result;
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if(ares->last_status == CURL_ASYNC_SUCCESS && !result) {
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data->state.async.dns =
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Curl_dnscache_mk_entry(data, ares->temp_ai,
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data->state.async.hostname, 0,
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data->state.async.port, FALSE);
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ares->temp_ai = NULL; /* temp_ai now owned by entry */
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#ifdef HTTPSRR_WORKS
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if(data->state.async.dns) {
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struct Curl_https_rrinfo *lhrr = Curl_httpsrr_dup_move(&ares->hinfo);
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if(!lhrr)
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result = CURLE_OUT_OF_MEMORY;
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else
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data->state.async.dns->hinfo = lhrr;
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}
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#endif
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if(!result && data->state.async.dns)
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result = Curl_dnscache_add(data, data->state.async.dns);
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}
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/* if we have not found anything, report the proper
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* CURLE_COULDNT_RESOLVE_* code */
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if(!result && !data->state.async.dns)
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result = Curl_resolver_error(data);
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if(result)
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Curl_resolv_unlink(data, &data->state.async.dns);
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*dns = data->state.async.dns;
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CURL_TRC_DNS(data, "is_resolved() result=%d, dns=%sfound",
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result, *dns ? "" : "not ");
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async_ares_cleanup(data);
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}
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return result;
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}
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/*
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* Curl_async_await()
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*
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* Waits for a resolve to finish. This function should be avoided since using
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* this risk getting the multi interface to "hang".
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*
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* 'entry' MUST be non-NULL.
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*
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* Returns CURLE_COULDNT_RESOLVE_HOST if the host was not resolved,
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* CURLE_OPERATION_TIMEDOUT if a time-out occurred, or other errors.
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*/
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CURLcode Curl_async_await(struct Curl_easy *data,
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struct Curl_dns_entry **entry)
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{
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struct async_ares_ctx *ares = &data->state.async.ares;
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CURLcode result = CURLE_OK;
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timediff_t timeout;
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struct curltime now = Curl_now();
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DEBUGASSERT(entry);
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*entry = NULL; /* clear on entry */
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timeout = Curl_timeleft(data, &now, TRUE);
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if(timeout < 0) {
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/* already expired! */
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connclose(data->conn, "Timed out before name resolve started");
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return CURLE_OPERATION_TIMEDOUT;
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}
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if(!timeout)
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timeout = CURL_TIMEOUT_RESOLVE * 1000; /* default name resolve timeout */
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/* Wait for the name resolve query to complete. */
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while(!result) {
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struct timeval *tvp, tv, store;
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int itimeout;
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timediff_t timeout_ms;
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#if TIMEDIFF_T_MAX > INT_MAX
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itimeout = (timeout > INT_MAX) ? INT_MAX : (int)timeout;
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#else
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itimeout = (int)timeout;
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#endif
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store.tv_sec = itimeout/1000;
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store.tv_usec = (itimeout%1000)*1000;
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tvp = ares_timeout(ares->channel, &store, &tv);
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/* use the timeout period ares returned to us above if less than one
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second is left, otherwise just use 1000ms to make sure the progress
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callback gets called frequent enough */
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if(!tvp->tv_sec)
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timeout_ms = (timediff_t)(tvp->tv_usec/1000);
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else
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timeout_ms = 1000;
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if(Curl_ares_perform(ares->channel, timeout_ms) < 0)
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return CURLE_UNRECOVERABLE_POLL;
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result = Curl_async_is_resolved(data, entry);
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if(result || data->state.async.done)
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break;
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if(Curl_pgrsUpdate(data))
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result = CURLE_ABORTED_BY_CALLBACK;
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else {
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struct curltime now2 = Curl_now();
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timediff_t timediff = Curl_timediff(now2, now); /* spent time */
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if(timediff <= 0)
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timeout -= 1; /* always deduct at least 1 */
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else if(timediff > timeout)
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timeout = -1;
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else
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timeout -= timediff;
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now = now2; /* for next loop */
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}
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if(timeout < 0)
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result = CURLE_OPERATION_TIMEDOUT;
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}
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|
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/* Operation complete, if the lookup was successful we now have the entry
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in the cache. */
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data->state.async.done = TRUE;
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if(entry)
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*entry = data->state.async.dns;
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if(result)
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ares_cancel(ares->channel);
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return result;
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}
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#ifndef HAVE_CARES_GETADDRINFO
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/* Connects results to the list */
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static void async_addr_concat(struct Curl_addrinfo **pbase,
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struct Curl_addrinfo *ai)
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{
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if(!ai)
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return;
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/* When adding `ai` to an existing address list, we prefer ipv6
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* to be in front. */
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#ifdef USE_IPV6 /* CURLRES_IPV6 */
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if(*pbase && (*pbase)->ai_family == PF_INET6) {
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/* ipv6 already in front, append `ai` */
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struct Curl_addrinfo *tail = *pbase;
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while(tail->ai_next)
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tail = tail->ai_next;
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tail->ai_next = ai;
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}
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else
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#endif /* CURLRES_IPV6 */
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{
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/* prepend to the (possibly) existing list. */
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struct Curl_addrinfo *tail = ai;
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while(tail->ai_next)
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tail = tail->ai_next;
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tail->ai_next = *pbase;
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*pbase = ai;
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}
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}
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|
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/*
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* ares_query_completed_cb() is the callback that ares will call when
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* the host query initiated by ares_gethostbyname() from
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* Curl_async_getaddrinfo(), when using ares, is completed either
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* successfully or with failure.
|
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*/
|
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static void async_ares_hostbyname_cb(void *user_data,
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int status,
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int timeouts,
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struct hostent *hostent)
|
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{
|
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struct Curl_easy *data = (struct Curl_easy *)user_data;
|
||
struct async_ares_ctx *ares = &data->state.async.ares;
|
||
|
||
(void)timeouts; /* ignored */
|
||
|
||
if(ARES_EDESTRUCTION == status)
|
||
/* when this ares handle is getting destroyed, the 'arg' pointer may not
|
||
be valid so only defer it when we know the 'status' says its fine! */
|
||
return;
|
||
|
||
if(CURL_ASYNC_SUCCESS == status) {
|
||
ares->last_status = status; /* one success overrules any error */
|
||
async_addr_concat(&ares->temp_ai,
|
||
Curl_he2ai(hostent, data->state.async.port));
|
||
}
|
||
else if(ares->last_status != ARES_SUCCESS) {
|
||
/* no success so far, remember error */
|
||
ares->last_status = status;
|
||
}
|
||
|
||
ares->num_pending--;
|
||
|
||
CURL_TRC_DNS(data, "ares: hostbyname done, status=%d, pending=%d, "
|
||
"addr=%sfound",
|
||
status, ares->num_pending, ares->temp_ai ? "" : "not ");
|
||
/* If there are responses still pending, we presume they must be the
|
||
complementary IPv4 or IPv6 lookups that we started in parallel in
|
||
Curl_async_getaddrinfo() (for Happy Eyeballs). If we have got a
|
||
"definitive" response from one of a set of parallel queries, we need to
|
||
think about how long we are willing to wait for more responses. */
|
||
if(ares->num_pending
|
||
/* Only these c-ares status values count as "definitive" for these
|
||
purposes. For example, ARES_ENODATA is what we expect when there is
|
||
no IPv6 entry for a domain name, and that is not a reason to get more
|
||
aggressive in our timeouts for the other response. Other errors are
|
||
either a result of bad input (which should affect all parallel
|
||
requests), local or network conditions, non-definitive server
|
||
responses, or us cancelling the request. */
|
||
&& (status == ARES_SUCCESS || status == ARES_ENOTFOUND)) {
|
||
/* Right now, there can only be up to two parallel queries, so do not
|
||
bother handling any other cases. */
|
||
DEBUGASSERT(ares->num_pending == 1);
|
||
|
||
/* it is possible that one of these parallel queries could succeed
|
||
quickly, but the other could always fail or timeout (when we are
|
||
talking to a pool of DNS servers that can only successfully resolve
|
||
IPv4 address, for example).
|
||
|
||
it is also possible that the other request could always just take
|
||
longer because it needs more time or only the second DNS server can
|
||
fulfill it successfully. But, to align with the philosophy of Happy
|
||
Eyeballs, we do not want to wait _too_ long or users will think
|
||
requests are slow when IPv6 lookups do not actually work (but IPv4
|
||
ones do).
|
||
|
||
So, now that we have a usable answer (some IPv4 addresses, some IPv6
|
||
addresses, or "no such domain"), we start a timeout for the remaining
|
||
pending responses. Even though it is typical that this resolved
|
||
request came back quickly, that needn't be the case. It might be that
|
||
this completing request did not get a result from the first DNS
|
||
server or even the first round of the whole DNS server pool. So it
|
||
could already be quite some time after we issued the DNS queries in
|
||
the first place. Without modifying c-ares, we cannot know exactly
|
||
where in its retry cycle we are. We could guess based on how much
|
||
time has gone by, but it does not really matter. Happy Eyeballs tells
|
||
us that, given usable information in hand, we simply do not want to
|
||
wait "too much longer" after we get a result.
|
||
|
||
We simply wait an additional amount of time equal to the default
|
||
c-ares query timeout. That is enough time for a typical parallel
|
||
response to arrive without being "too long". Even on a network
|
||
where one of the two types of queries is failing or timing out
|
||
constantly, this will usually mean we wait a total of the default
|
||
c-ares timeout (5 seconds) plus the round trip time for the successful
|
||
request, which seems bearable. The downside is that c-ares might race
|
||
with us to issue one more retry just before we give up, but it seems
|
||
better to "waste" that request instead of trying to guess the perfect
|
||
timeout to prevent it. After all, we do not even know where in the
|
||
c-ares retry cycle each request is.
|
||
*/
|
||
ares->happy_eyeballs_dns_time = Curl_now();
|
||
Curl_expire(data, HAPPY_EYEBALLS_DNS_TIMEOUT,
|
||
EXPIRE_HAPPY_EYEBALLS_DNS);
|
||
}
|
||
}
|
||
|
||
#else
|
||
/* c-ares 1.16.0 or later */
|
||
|
||
/*
|
||
* async_ares_node2addr() converts an address list provided by c-ares
|
||
* to an internal libcurl compatible list.
|
||
*/
|
||
static struct Curl_addrinfo *
|
||
async_ares_node2addr(struct ares_addrinfo_node *node)
|
||
{
|
||
/* traverse the ares_addrinfo_node list */
|
||
struct ares_addrinfo_node *ai;
|
||
struct Curl_addrinfo *cafirst = NULL;
|
||
struct Curl_addrinfo *calast = NULL;
|
||
int error = 0;
|
||
|
||
for(ai = node; ai != NULL; ai = ai->ai_next) {
|
||
size_t ss_size;
|
||
struct Curl_addrinfo *ca;
|
||
/* ignore elements with unsupported address family, */
|
||
/* settle family-specific sockaddr structure size. */
|
||
if(ai->ai_family == AF_INET)
|
||
ss_size = sizeof(struct sockaddr_in);
|
||
#ifdef USE_IPV6
|
||
else if(ai->ai_family == AF_INET6)
|
||
ss_size = sizeof(struct sockaddr_in6);
|
||
#endif
|
||
else
|
||
continue;
|
||
|
||
/* ignore elements without required address info */
|
||
if(!ai->ai_addr || !(ai->ai_addrlen > 0))
|
||
continue;
|
||
|
||
/* ignore elements with bogus address size */
|
||
if((size_t)ai->ai_addrlen < ss_size)
|
||
continue;
|
||
|
||
ca = malloc(sizeof(struct Curl_addrinfo) + ss_size);
|
||
if(!ca) {
|
||
error = EAI_MEMORY;
|
||
break;
|
||
}
|
||
|
||
/* copy each structure member individually, member ordering, */
|
||
/* size, or padding might be different for each platform. */
|
||
|
||
ca->ai_flags = ai->ai_flags;
|
||
ca->ai_family = ai->ai_family;
|
||
ca->ai_socktype = ai->ai_socktype;
|
||
ca->ai_protocol = ai->ai_protocol;
|
||
ca->ai_addrlen = (curl_socklen_t)ss_size;
|
||
ca->ai_addr = NULL;
|
||
ca->ai_canonname = NULL;
|
||
ca->ai_next = NULL;
|
||
|
||
ca->ai_addr = (void *)((char *)ca + sizeof(struct Curl_addrinfo));
|
||
memcpy(ca->ai_addr, ai->ai_addr, ss_size);
|
||
|
||
/* if the return list is empty, this becomes the first element */
|
||
if(!cafirst)
|
||
cafirst = ca;
|
||
|
||
/* add this element last in the return list */
|
||
if(calast)
|
||
calast->ai_next = ca;
|
||
calast = ca;
|
||
}
|
||
|
||
/* if we failed, destroy the Curl_addrinfo list */
|
||
if(error) {
|
||
Curl_freeaddrinfo(cafirst);
|
||
cafirst = NULL;
|
||
}
|
||
|
||
return cafirst;
|
||
}
|
||
|
||
static void async_ares_addrinfo_cb(void *user_data, int status, int timeouts,
|
||
struct ares_addrinfo *result)
|
||
{
|
||
struct Curl_easy *data = (struct Curl_easy *)user_data;
|
||
struct async_ares_ctx *ares = &data->state.async.ares;
|
||
(void)timeouts;
|
||
CURL_TRC_DNS(data, "asyn-ares: addrinfo callback, status=%d", status);
|
||
if(ARES_SUCCESS == status) {
|
||
ares->temp_ai = async_ares_node2addr(result->nodes);
|
||
ares->last_status = CURL_ASYNC_SUCCESS;
|
||
ares_freeaddrinfo(result);
|
||
}
|
||
ares->num_pending--;
|
||
CURL_TRC_DNS(data, "ares: addrinfo done, status=%d, pending=%d, "
|
||
"addr=%sfound",
|
||
status, ares->num_pending, ares->temp_ai ? "" : "not ");
|
||
}
|
||
|
||
#endif
|
||
|
||
#ifdef USE_HTTPSRR
|
||
static void async_ares_rr_done(void *user_data, ares_status_t status,
|
||
size_t timeouts,
|
||
const ares_dns_record_t *dnsrec)
|
||
{
|
||
struct Curl_easy *data = user_data;
|
||
struct async_ares_ctx *ares = &data->state.async.ares;
|
||
|
||
(void)timeouts;
|
||
--ares->num_pending;
|
||
CURL_TRC_DNS(data, "ares: httpsrr done, status=%d, pending=%d, "
|
||
"dnsres=%sfound",
|
||
status, ares->num_pending,
|
||
(dnsrec &&
|
||
ares_dns_record_rr_cnt(dnsrec, ARES_SECTION_ANSWER)) ?
|
||
"" : "not ");
|
||
if((ARES_SUCCESS != status) || !dnsrec)
|
||
return;
|
||
ares->result = Curl_httpsrr_from_ares(data, dnsrec, &ares->hinfo);
|
||
}
|
||
#endif /* USE_HTTPSRR */
|
||
|
||
/*
|
||
* Curl_async_getaddrinfo() - when using ares
|
||
*
|
||
* Returns name information about the given hostname and port number. If
|
||
* successful, the 'hostent' is returned and the fourth argument will point to
|
||
* memory we need to free after use. That memory *MUST* be freed with
|
||
* Curl_freeaddrinfo(), nothing else.
|
||
*/
|
||
struct Curl_addrinfo *Curl_async_getaddrinfo(struct Curl_easy *data,
|
||
const char *hostname,
|
||
int port,
|
||
int ip_version,
|
||
int *waitp)
|
||
{
|
||
struct async_ares_ctx *ares = &data->state.async.ares;
|
||
*waitp = 0; /* default to synchronous response */
|
||
|
||
if(async_ares_init_lazy(data))
|
||
return NULL;
|
||
|
||
data->state.async.done = FALSE; /* not done */
|
||
data->state.async.dns = NULL; /* clear */
|
||
data->state.async.port = port;
|
||
data->state.async.ip_version = ip_version;
|
||
data->state.async.hostname = strdup(hostname);
|
||
if(!data->state.async.hostname)
|
||
return NULL;
|
||
|
||
/* initial status - failed */
|
||
ares->last_status = ARES_ENOTFOUND;
|
||
|
||
#ifdef HAVE_CARES_GETADDRINFO
|
||
{
|
||
struct ares_addrinfo_hints hints;
|
||
char service[12];
|
||
int pf = PF_INET;
|
||
memset(&hints, 0, sizeof(hints));
|
||
#ifdef CURLRES_IPV6
|
||
if((ip_version != CURL_IPRESOLVE_V4) &&
|
||
Curl_ipv6works(data)) {
|
||
/* The stack seems to be IPv6-enabled */
|
||
if(ip_version == CURL_IPRESOLVE_V6)
|
||
pf = PF_INET6;
|
||
else
|
||
pf = PF_UNSPEC;
|
||
}
|
||
#endif /* CURLRES_IPV6 */
|
||
CURL_TRC_DNS(data, "asyn-ares: fire off getaddrinfo for %s",
|
||
(pf == PF_UNSPEC) ? "A+AAAA" :
|
||
((pf == PF_INET) ? "A" : "AAAA"));
|
||
hints.ai_family = pf;
|
||
hints.ai_socktype = (data->conn->transport == TRNSPRT_TCP) ?
|
||
SOCK_STREAM : SOCK_DGRAM;
|
||
/* Since the service is a numerical one, set the hint flags
|
||
* accordingly to save a call to getservbyname in inside C-Ares
|
||
*/
|
||
hints.ai_flags = ARES_AI_NUMERICSERV;
|
||
msnprintf(service, sizeof(service), "%d", port);
|
||
ares->num_pending = 1;
|
||
ares_getaddrinfo(ares->channel, data->state.async.hostname,
|
||
service, &hints, async_ares_addrinfo_cb, data);
|
||
}
|
||
#else
|
||
|
||
#ifdef HAVE_CARES_IPV6
|
||
if((ip_version != CURL_IPRESOLVE_V4) && Curl_ipv6works(data)) {
|
||
/* The stack seems to be IPv6-enabled */
|
||
/* areschannel is already setup in the Curl_open() function */
|
||
CURL_TRC_DNS(data, "asyn-ares: fire off query for A");
|
||
ares_gethostbyname(ares->channel, hostname, PF_INET,
|
||
async_ares_hostbyname_cb, data);
|
||
CURL_TRC_DNS(data, "asyn-ares: fire off query for AAAA");
|
||
ares->num_pending = 2;
|
||
ares_gethostbyname(ares->channel, data->state.async.hostname, PF_INET6,
|
||
async_ares_hostbyname_cb, data);
|
||
}
|
||
else
|
||
#endif
|
||
{
|
||
/* areschannel is already setup in the Curl_open() function */
|
||
CURL_TRC_DNS(data, "asyn-ares: fire off query for A");
|
||
ares->num_pending = 1;
|
||
ares_gethostbyname(ares->channel, data->state.async.hostname, PF_INET,
|
||
async_ares_hostbyname_cb, data);
|
||
}
|
||
#endif
|
||
#ifdef USE_HTTPSRR
|
||
{
|
||
CURL_TRC_DNS(data, "asyn-ares: fire off query for HTTPSRR");
|
||
memset(&ares->hinfo, 0, sizeof(ares->hinfo));
|
||
ares->hinfo.port = -1;
|
||
ares->num_pending++; /* one more */
|
||
ares_query_dnsrec(ares->channel, data->state.async.hostname,
|
||
ARES_CLASS_IN, ARES_REC_TYPE_HTTPS,
|
||
async_ares_rr_done, data, NULL);
|
||
}
|
||
#endif
|
||
*waitp = 1; /* expect asynchronous response */
|
||
|
||
return NULL; /* no struct yet */
|
||
}
|
||
|
||
/* Set what DNS server are is to use. This is called in 2 situations:
|
||
* 1. when the application does `CURLOPT_DNS_SERVERS´ and passing NULL
|
||
* means any previous set value should be unset. Which means
|
||
* we need to destroy and create the are channel anew, if there is one.
|
||
* 2. When we lazy init the ares channel and NULL means that there
|
||
* are no preferences and we do not reset any existing channel. */
|
||
static CURLcode async_ares_set_dns_servers(struct Curl_easy *data,
|
||
bool reset_on_null)
|
||
{
|
||
struct async_ares_ctx *ares = &data->state.async.ares;
|
||
CURLcode result = CURLE_NOT_BUILT_IN;
|
||
const char *servers = data->set.str[STRING_DNS_SERVERS];
|
||
int ares_result = ARES_SUCCESS;
|
||
|
||
#if defined(CURLDEBUG) && defined(HAVE_CARES_SERVERS_CSV)
|
||
if(getenv("CURL_DNS_SERVER"))
|
||
servers = getenv("CURL_DNS_SERVER");
|
||
#endif
|
||
|
||
if(!servers) {
|
||
if(reset_on_null) {
|
||
Curl_async_destroy(data);
|
||
}
|
||
return CURLE_OK;
|
||
}
|
||
|
||
#ifdef HAVE_CARES_SERVERS_CSV
|
||
/* if channel is not there, this is just a parameter check */
|
||
if(ares->channel)
|
||
#ifdef HAVE_CARES_PORTS_CSV
|
||
ares_result = ares_set_servers_ports_csv(ares->channel, servers);
|
||
#else
|
||
ares_result = ares_set_servers_csv(ares->channel, servers);
|
||
#endif
|
||
switch(ares_result) {
|
||
case ARES_SUCCESS:
|
||
result = CURLE_OK;
|
||
break;
|
||
case ARES_ENOMEM:
|
||
result = CURLE_OUT_OF_MEMORY;
|
||
break;
|
||
case ARES_ENOTINITIALIZED:
|
||
case ARES_ENODATA:
|
||
case ARES_EBADSTR:
|
||
default:
|
||
DEBUGF(infof(data, "bad servers set"));
|
||
result = CURLE_BAD_FUNCTION_ARGUMENT;
|
||
break;
|
||
}
|
||
#else /* too old c-ares version! */
|
||
(void)data;
|
||
(void)(ares_result);
|
||
#endif
|
||
return result;
|
||
}
|
||
|
||
CURLcode Curl_async_ares_set_dns_servers(struct Curl_easy *data)
|
||
{
|
||
return async_ares_set_dns_servers(data, TRUE);
|
||
}
|
||
|
||
CURLcode Curl_async_ares_set_dns_interface(struct Curl_easy *data)
|
||
{
|
||
#ifdef HAVE_CARES_LOCAL_DEV
|
||
struct async_ares_ctx *ares = &data->state.async.ares;
|
||
const char *interf = data->set.str[STRING_DNS_INTERFACE];
|
||
|
||
if(!interf)
|
||
interf = "";
|
||
|
||
/* if channel is not there, this is just a parameter check */
|
||
if(ares->channel)
|
||
ares_set_local_dev(ares->channel, interf);
|
||
|
||
return CURLE_OK;
|
||
#else /* c-ares version too old! */
|
||
(void)data;
|
||
(void)interf;
|
||
return CURLE_NOT_BUILT_IN;
|
||
#endif
|
||
}
|
||
|
||
CURLcode Curl_async_ares_set_dns_local_ip4(struct Curl_easy *data)
|
||
{
|
||
#ifdef HAVE_CARES_SET_LOCAL
|
||
struct async_ares_ctx *ares = &data->state.async.ares;
|
||
struct in_addr a4;
|
||
const char *local_ip4 = data->set.str[STRING_DNS_LOCAL_IP4];
|
||
|
||
if((!local_ip4) || (local_ip4[0] == 0)) {
|
||
a4.s_addr = 0; /* disabled: do not bind to a specific address */
|
||
}
|
||
else {
|
||
if(curlx_inet_pton(AF_INET, local_ip4, &a4) != 1) {
|
||
DEBUGF(infof(data, "bad DNS IPv4 address"));
|
||
return CURLE_BAD_FUNCTION_ARGUMENT;
|
||
}
|
||
}
|
||
|
||
/* if channel is not there yet, this is just a parameter check */
|
||
if(ares->channel)
|
||
ares_set_local_ip4(ares->channel, ntohl(a4.s_addr));
|
||
|
||
return CURLE_OK;
|
||
#else /* c-ares version too old! */
|
||
(void)data;
|
||
(void)local_ip4;
|
||
return CURLE_NOT_BUILT_IN;
|
||
#endif
|
||
}
|
||
|
||
CURLcode Curl_async_ares_set_dns_local_ip6(struct Curl_easy *data)
|
||
{
|
||
#if defined(HAVE_CARES_SET_LOCAL) && defined(USE_IPV6)
|
||
struct async_ares_ctx *ares = &data->state.async.ares;
|
||
unsigned char a6[INET6_ADDRSTRLEN];
|
||
const char *local_ip6 = data->set.str[STRING_DNS_LOCAL_IP6];
|
||
|
||
if((!local_ip6) || (local_ip6[0] == 0)) {
|
||
/* disabled: do not bind to a specific address */
|
||
memset(a6, 0, sizeof(a6));
|
||
}
|
||
else {
|
||
if(curlx_inet_pton(AF_INET6, local_ip6, a6) != 1) {
|
||
DEBUGF(infof(data, "bad DNS IPv6 address"));
|
||
return CURLE_BAD_FUNCTION_ARGUMENT;
|
||
}
|
||
}
|
||
|
||
/* if channel is not there, this is just a parameter check */
|
||
if(ares->channel)
|
||
ares_set_local_ip6(ares->channel, a6);
|
||
|
||
return CURLE_OK;
|
||
#else /* c-ares version too old! */
|
||
(void)data;
|
||
(void)local_ip6;
|
||
return CURLE_NOT_BUILT_IN;
|
||
#endif
|
||
}
|
||
|
||
#endif /* CURLRES_ARES */
|