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  • /***************************************************************************
    
     *                                  _   _ ____  _
     *  Project                     ___| | | |  _ \| |
     *                             / __| | | | |_) | |
     *                            | (__| |_| |  _ <| |___
    
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     *                             \___|\___/|_| \_\_____|
     *
    
     * Copyright (C) 1998 - 2008, Daniel Stenberg, <daniel@haxx.se>, et al.
    
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     *
    
     * This software is licensed as described in the file COPYING, which
     * you should have received as part of this distribution. The terms
     * are also available at http://curl.haxx.se/docs/copyright.html.
    
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     * You may opt to use, copy, modify, merge, publish, distribute and/or sell
     * copies of the Software, and permit persons to whom the Software is
    
     * 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
     * KIND, either express or implied.
    
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     *
    
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     * $Id$
    
     ***************************************************************************/
    
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    /* -- WIN32 approved -- */
    
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    #include <stdio.h>
    #include <string.h>
    #include <stdarg.h>
    #include <stdlib.h>
    #include <ctype.h>
    #include <errno.h>
    
    
    #ifdef WIN32
    
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    #include <time.h>
    #include <io.h>
    #else
    #ifdef HAVE_SYS_SOCKET_H
    #include <sys/socket.h>
    #endif
    
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    #include <netinet/in.h>
    
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    #include <sys/time.h>
    
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    #endif
    
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    #ifdef HAVE_UNISTD_H
    #include <unistd.h>
    #endif
    
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    #include <netdb.h>
    
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    #ifdef HAVE_ARPA_INET_H
    #include <arpa/inet.h>
    #endif
    #ifdef HAVE_NET_IF_H
    #include <net/if.h>
    #endif
    
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    #include <sys/ioctl.h>
    
    #ifdef HAVE_SIGNAL_H
    
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    #include <signal.h>
    
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    #ifdef HAVE_SYS_PARAM_H
    #include <sys/param.h>
    #endif
    
    
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    #ifdef VMS
    
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    #include <in.h>
    #include <inet.h>
    #endif
    
    
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    #ifndef HAVE_SOCKET
    #error "We can't compile without socket() support!"
    #endif
    
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    #include <tld.h>
    
    #ifdef HAVE_IDN_FREE_H
    #include <idn-free.h>
    #else
    
    void idn_free (void *ptr); /* prototype from idn-free.h, not provided by
                                  libidn 0.4.5's make install! */
    
    #ifndef HAVE_IDN_FREE
    /* if idn_free() was not found in this version of libidn, use plain free()
       instead */
    #define idn_free(x) (free)(x)
    #endif
    
    #endif  /* USE_LIBIDN */
    
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    #include "urldata.h"
    #include "netrc.h"
    
    #include "formdata.h"
    
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    #include "hostip.h"
    
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    #include "sendf.h"
    #include "progress.h"
    #include "cookie.h"
    
    #include "strequal.h"
    
    #include "strtok.h"
    
    #include "share.h"
    
    #include "http_digest.h"
    
    #include "select.h"
    
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    /* And now for the protocols */
    #include "ftp.h"
    #include "dict.h"
    #include "telnet.h"
    
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    #include "http.h"
    #include "file.h"
    
    #include "connect.h"
    
    #include "http_ntlm.h"
    
    #if defined(HAVE_INET_NTOA_R) && !defined(HAVE_INET_NTOA_R_DECL)
    #include "inet_ntoa_r.h"
    #endif
    
    
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    #define _MPRINTF_REPLACE /* use our functions only */
    #include <curl/mprintf.h>
    
    
    /* The last #include file should be: */
    #include "memdebug.h"
    
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    /* Local static prototypes */
    
    static long ConnectionKillOne(struct SessionHandle *data);
    
    static bool ConnectionExists(struct SessionHandle *data,
    
                                 struct connectdata *needle,
                                 struct connectdata **usethis);
    
    static long ConnectionStore(struct SessionHandle *data,
                                struct connectdata *conn);
    
    static bool IsPipeliningPossible(const struct SessionHandle *handle);
    static bool IsPipeliningEnabled(const struct SessionHandle *handle);
    
    static void conn_free(struct connectdata *conn);
    
    
    static void signalPipeClose(struct curl_llist *pipeline);
    
    static struct SessionHandle* gethandleathead(struct curl_llist *pipeline);
    
    static CURLcode do_init(struct connectdata *conn);
    static void do_complete(struct connectdata *conn);
    
    #if !defined(CURL_DISABLE_HTTP) && !defined(CURL_DISABLE_COOKIES)
    static void flush_cookies(struct SessionHandle *data, int cleanup);
    #endif
    
    
    #ifdef CURL_DISABLE_VERBOSE_STRINGS
    #define verboseconnect(x)  do { } while (0)
    #endif
    
    
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    /* not for ares builds */
    
    #ifndef WIN32
    /* not for WIN32 builds */
    
    extern sigjmp_buf curl_jmpenv;
    
    #ifdef SIGALRM
    static
    RETSIGTYPE alarmfunc(int sig)
    {
      /* this is for "-ansi -Wall -pedantic" to stop complaining!   (rabe) */
      (void)sig;
    #ifdef HAVE_SIGSETJMP
      siglongjmp(curl_jmpenv, 1);
    #endif
      return;
    }
    #endif /* SIGALRM */
    #endif /* WIN32 */
    #endif /* USE_ARES */
    
    static const struct Curl_handler * const protocols[] = {
    
    
    #ifndef CURL_DISABLE_HTTP
      &Curl_handler_http,
    #endif
    
    #if defined(USE_SSL) && !defined(CURL_DISABLE_HTTP)
      &Curl_handler_https,
    #endif
    
    #ifndef CURL_DISABLE_FTP
      &Curl_handler_ftp,
    #endif
    
    #if defined(USE_SSL) && !defined(CURL_DISABLE_FTP)
      &Curl_handler_ftps,
    #endif
    
    #ifndef CURL_DISABLE_TELNET
      &Curl_handler_telnet,
    #endif
    
    #ifndef CURL_DISABLE_DICT
      &Curl_handler_dict,
    #endif
    
    #ifndef CURL_DISABLE_LDAP
      &Curl_handler_ldap,
    #endif
    
    
    #if !defined(CURL_DISABLE_LDAP) && defined(HAVE_LDAP_SSL)
    
      &Curl_handler_ldaps,
    #endif
    
    #ifndef CURL_DISABLE_FILE
      &Curl_handler_file,
    #endif
    
    #ifndef CURL_DISABLE_TFTP
      &Curl_handler_tftp,
    #endif
    
    #ifdef USE_LIBSSH2
      &Curl_handler_scp,
      &Curl_handler_sftp,
    #endif
    
      (struct Curl_handler *) NULL
    };
    
    /*
     * Dummy handler for undefined protocol schemes.
     */
    
    
    static const struct Curl_handler Curl_handler_dummy = {
    
      ZERO_NULL,                            /* setup_connection */
      ZERO_NULL,                            /* do_it */
      ZERO_NULL,                            /* done */
      ZERO_NULL,                            /* do_more */
      ZERO_NULL,                            /* connect_it */
      ZERO_NULL,                            /* connecting */
      ZERO_NULL,                            /* doing */
      ZERO_NULL,                            /* proto_getsock */
      ZERO_NULL,                            /* doing_getsock */
      ZERO_NULL,                            /* disconnect */
    
    static void close_connections(struct SessionHandle *data)
    {
      /* Loop through all open connections and kill them one by one */
      while(-1 != ConnectionKillOne(data))
        ; /* empty loop */
    }
    
    
    void Curl_freeset(struct SessionHandle * data)
    {
      /* Free all dynamic strings stored in the data->set substructure. */
      enum dupstring i;
    
      for(i=(enum dupstring)0; i < STRING_LAST; i++)
    
    static CURLcode setstropt(char **charp, char * s)
    
    {
      /* Release the previous storage at `charp' and replace by a dynamic storage
         copy of `s'. Return CURLE_OK or CURLE_OUT_OF_MEMORY. */
    
    
          return CURLE_OUT_OF_MEMORY;
    
        *charp = s;
      }
    
      return CURLE_OK;
    }
    
    CURLcode Curl_dupset(struct SessionHandle * dst, struct SessionHandle * src)
    {
    
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      CURLcode r = CURLE_OK;
    
      enum dupstring i;
    
      /* Copy src->set into dst->set first, then deal with the strings
         afterwards */
      dst->set = src->set;
    
      /* clear all string pointers first */
      memset(dst->set.str, 0, STRING_LAST * sizeof(char *));
    
      /* duplicate all strings */
    
      for(i=(enum dupstring)0; i< STRING_LAST; i++) {
    
        r = setstropt(&dst->set.str[i], src->set.str[i]);
    
          break;
      }
    
      /* If a failure occurred, freeing has to be performed externally. */
      return r;
    }
    
    
    #if !defined(CURL_DISABLE_HTTP) && !defined(CURL_DISABLE_COOKIES)
    static void flush_cookies(struct SessionHandle *data, int cleanup)
    {
      Curl_share_lock(data, CURL_LOCK_DATA_COOKIE, CURL_LOCK_ACCESS_SINGLE);
      if(data->set.str[STRING_COOKIEJAR]) {
        if(data->change.cookielist) {
          /* If there is a list of cookie files to read, do it first so that
             we have all the told files read before we write the new jar */
          Curl_cookie_loadfiles(data);
        }
    
    
        /* if we have a destination file for all the cookies to get dumped to */
    
        if(Curl_cookie_output(data->cookies, data->set.str[STRING_COOKIEJAR]))
          infof(data, "WARNING: failed to save cookies in %s\n",
                data->set.str[STRING_COOKIEJAR]);
      }
      else {
        if(cleanup && data->change.cookielist)
          /* since nothing is written, we can just free the list of cookie file
             names */
          curl_slist_free_all(data->change.cookielist); /* clean up list */
      }
    
      if(cleanup && (!data->share || (data->cookies != data->share->cookies))) {
        Curl_cookie_cleanup(data->cookies);
      }
      Curl_share_unlock(data, CURL_LOCK_DATA_COOKIE);
    }
    #endif
    
    
    /*
     * This is the internal function curl_easy_cleanup() calls. This should
     * cleanup and free all resources associated with this sessionhandle.
     *
     * NOTE: if we ever add something that attempts to write to a socket or
     * similar here, we must ignore SIGPIPE first. It is currently only done
     * when curl_easy_perform() is invoked.
     */
    
    
    CURLcode Curl_close(struct SessionHandle *data)
    
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    {
    
    #ifdef CURLDEBUG
      /* only for debugging, scan through all connections and see if there's a
         pipe reference still identifying this handle */
    
      if(data->state.is_in_pipeline)
        fprintf(stderr, "CLOSED when in pipeline!\n");
    
      if(data->state.connc && data->state.connc->type == CONNCACHE_MULTI) {
        struct conncache *c = data->state.connc;
    
        struct curl_llist_element *curr;
        struct connectdata *connptr;
    
        for(i=0; i< c->num; i++) {
          connptr = c->connects[i];
          if(!connptr)
            continue;
    
    
          pipeline = connptr->send_pipe;
          if(pipeline) {
            for (curr = pipeline->head; curr; curr=curr->next) {
    
              if(data == (struct SessionHandle *) curr->ptr) {
                fprintf(stderr,
                        "MAJOR problem we %p are still in send pipe for %p done %d\n",
                        data, connptr, connptr->bits.done);
              }
            }
          }
    
          pipeline = connptr->recv_pipe;
          if(pipeline) {
            for (curr = pipeline->head; curr; curr=curr->next) {
    
              if(data == (struct SessionHandle *) curr->ptr) {
                fprintf(stderr,
                        "MAJOR problem we %p are still in recv pipe for %p done %d\n",
                        data, connptr, connptr->bits.done);
              }
            }
          }
        }
      }
    #endif
    
    
      if(m)
        /* This handle is still part of a multi handle, take care of this first
           and detach this handle from there. */
    
      data->magic = 0; /* force a clear AFTER the possibly enforced removal from
                          the multi handle, since that function uses the magic
                          field! */
    
    
        if(data->state.connc->type == CONNCACHE_PRIVATE) {
          /* close all connections still alive that are in the private connection
             cache, as we no longer have the pointer left to the shared one. */
          close_connections(data);
    
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          /* free the connection cache if allocated privately */
          Curl_rm_connc(data->state.connc);
    
        /* marked to be used by a pending connection so we can't kill this handle
           just yet */
        data->state.closed = TRUE;
    
      if( ! (data->share && data->share->hostcache) ) {
        if( !Curl_global_host_cache_use(data)) {
    
      if(data->state.rangestringalloc)
        free(data->state.range);
    
      Curl_safefree(data->state.pathbuffer);
      Curl_safefree(data->state.proto.generic);
    
      /* Close down all open SSL info and sessions */
    
      if(data->change.referer_alloc)
        free(data->change.referer);
    
      if(data->change.url_alloc)
        free(data->change.url);
    
      Curl_safefree(data->state.headerbuff);
    
    #if !defined(CURL_DISABLE_HTTP) && !defined(CURL_DISABLE_COOKIES)
    
      Curl_safefree(data->info.contenttype);
    
      /* this destroys the channel and we cannot use it anymore after this */
      ares_destroy(data->state.areschannel);
    
    
    #if defined(CURL_DOES_CONVERSIONS) && defined(HAVE_ICONV)
      /* close iconv conversion descriptors */
    
         iconv_close(data->inbound_cd);
      }
    
         iconv_close(data->outbound_cd);
      }
    
         iconv_close(data->utf8_cd);
      }
    #endif /* CURL_DOES_CONVERSIONS && HAVE_ICONV */
    
    
      /* No longer a dirty share, if it exists */
    
        Curl_share_lock(data, CURL_LOCK_DATA_SHARE, CURL_LOCK_ACCESS_SINGLE);
    
        Curl_share_unlock(data, CURL_LOCK_DATA_SHARE);
      }
    
      return CURLE_OK;
    }
    
    /* create a connection cache of a private or multi type */
    
    struct conncache *Curl_mk_connc(int type,
    
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                                    long amount) /* set -1 to use default */
    
    {
      /* It is subject for debate how many default connections to have for a multi
         connection cache... */
    
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      long default_amount;
    
    
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        default_amount = (amount < 0) ? 5 : amount;
      }
      else {
        default_amount = (amount < 0) ? 10 : amount;
      }
    
    
      c= calloc(sizeof(struct conncache), 1);
      if(!c)
        return NULL;
    
    
      if((size_t)(default_amount) > ((size_t)-1) / sizeof(struct connectdata *))
    
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        default_amount = ((size_t)-1) / sizeof(struct connectdata *);
    
      c->connects = calloc(sizeof(struct connectdata *), (size_t)default_amount);
    
      if(!c->connects) {
        free(c);
        return NULL;
      }
    
      c->num = default_amount;
    
      return c;
    }
    
    
    /* Change number of entries of a connection cache */
    CURLcode Curl_ch_connc(struct SessionHandle *data,
                           struct conncache *c,
                           long newamount)
    {
    
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      long i;
    
      if(newamount < 1)
        newamount = 1; /* we better have at least one entry */
    
      if(!c) {
        /* we get a NULL pointer passed in as connection cache, which means that
           there is no cache created for this SessionHandle just yet, we create a
           brand new with the requested size.
        */
        data->state.connc = Curl_mk_connc(CONNCACHE_PRIVATE, newamount);
        if(!data->state.connc)
          return CURLE_OUT_OF_MEMORY;
        return CURLE_OK;
      }
    
    
      if(newamount < c->num) {
        /* Since this number is *decreased* from the existing number, we must
           close the possibly open connections that live on the indexes that
           are being removed!
    
           NOTE: for conncache_multi cases we must make sure that we only
           close handles not in use.
        */
        for(i=newamount; i< c->num; i++)
          Curl_disconnect(c->connects[i]);
    
        /* If the most recent connection is no longer valid, mark it
           invalid. */
        if(data->state.lastconnect <= newamount)
          data->state.lastconnect = -1;
      }
      if(newamount > 0) {
        newptr= (struct connectdata **)
          realloc(c->connects, sizeof(struct connectdata *) * newamount);
        if(!newptr)
          /* we closed a few connections in vain, but so what? */
          return CURLE_OUT_OF_MEMORY;
    
        /* nullify the newly added pointers */
        for(i=c->num; i<newamount; i++)
          newptr[i] = NULL;
    
        c->connects = newptr;
        c->num = newamount;
      }
      /* we no longer support less than 1 as size for the connection cache, and
         I'm not sure it ever worked to set it to zero */
      return CURLE_OK;
    }
    
    
    /* Free a connection cache. This is called from Curl_close() and
       curl_multi_cleanup(). */
    void Curl_rm_connc(struct conncache *c)
    {
      if(c->connects) {
    
        for(i = 0; i < c->num; ++i)
          conn_free(c->connects[i]);
    
        free(c->connects);
      }
    
      free(c);
    }
    
    
    /**
     * Curl_open()
     *
     * @param curl is a pointer to a sessionhandle pointer that gets set by this
     * function.
     * @return CURLcode
     */
    
    
    CURLcode Curl_open(struct SessionHandle **curl)
    
    #ifdef USE_ARES
      int status;
    #endif
    
      /* Very simple start-up: alloc the struct, init it with zeroes and return */
    
      data = (struct SessionHandle *)calloc(1, sizeof(struct SessionHandle));
    
        DEBUGF(fprintf(stderr, "Error: calloc of SessionHandle failed\n"));
    
      if((status = ares_init(&data->state.areschannel)) != ARES_SUCCESS) {
    
        DEBUGF(fprintf(stderr, "Error: ares_init failed\n"));
    
          return CURLE_OUT_OF_MEMORY;
        else
          return CURLE_FAILED_INIT;
    
      }
      /* make sure that all other returns from this function should destroy the
         ares channel before returning error! */
    #endif
    
    
      /* We do some initial setup here, all those fields that can't be just 0 */
    
      data->state.headerbuff=(char*)malloc(HEADERSIZE);
    
      if(!data->state.headerbuff) {
        DEBUGF(fprintf(stderr, "Error: malloc of headerbuff failed\n"));
    
      else {
        data->state.headersize=HEADERSIZE;
    
        data->set.out = stdout; /* default output to stdout */
        data->set.in  = stdin;  /* default input from stdin */
        data->set.err  = stderr;  /* default stderr to stderr */
    
        /* use fwrite as default function to store output */
    
        data->set.fwrite_func = (curl_write_callback)fwrite;
    
        /* use fread as default function to read input */
    
        data->set.fread_func = (curl_read_callback)fread;
    
        /* conversion callbacks for non-ASCII hosts */
    
        data->set.convfromnetwork = ZERO_NULL;
        data->set.convtonetwork   = ZERO_NULL;
        data->set.convfromutf8    = ZERO_NULL;
    
    
    #if defined(CURL_DOES_CONVERSIONS) && defined(HAVE_ICONV)
        /* conversion descriptors for iconv calls */
        data->outbound_cd = (iconv_t)-1;
        data->inbound_cd  = (iconv_t)-1;
        data->utf8_cd     = (iconv_t)-1;
    #endif /* CURL_DOES_CONVERSIONS && HAVE_ICONV */
    
    
        data->set.infilesize = -1; /* we don't know any size */
    
        data->set.maxredirs = -1; /* allow any amount by default */
    
        data->state.current_speed = -1; /* init to negative == impossible */
    
        data->set.httpreq = HTTPREQ_GET; /* Default HTTP request */
        data->set.ftp_use_epsv = TRUE;   /* FTP defaults to EPSV operations */
        data->set.ftp_use_eprt = TRUE;   /* FTP defaults to EPRT operations */
    
        data->set.ftp_filemethod = FTPFILE_MULTICWD;
    
        data->set.dns_cache_timeout = 60; /* Timeout every 60 seconds by default */
    
        /* make libcurl quiet by default: */
        data->set.hide_progress = TRUE;  /* CURLOPT_NOPROGRESS changes these */
        data->progress.flags |= PGRS_HIDE;
    
        /* Set the default size of the SSL session ID cache */
        data->set.ssl.numsessions = 5;
    
        data->set.proxyport = 1080;
        data->set.proxytype = CURLPROXY_HTTP; /* defaults to HTTP proxy */
        data->set.httpauth = CURLAUTH_BASIC;  /* defaults to basic */
        data->set.proxyauth = CURLAUTH_BASIC; /* defaults to basic */
    
        /* This no longer creates a connection cache here. It is instead made on
           the first call to curl_easy_perform() or when the handle is added to a
           multi stack. */
    
        data->set.ssh_auth_types = CURLSSH_AUTH_DEFAULT; /* defaults to any auth
                                                            type */
    
        data->set.new_file_perms = 0644;    /* Default permissions */
        data->set.new_directory_perms = 0755; /* Default permissions */
    
        /* most recent connection is not yet defined */
        data->state.lastconnect = -1;
    
    
        /*
         * libcurl 7.10 introduced SSL verification *by default*! This needs to be
         * switched off unless wanted.
         */
        data->set.ssl.verifypeer = TRUE;
        data->set.ssl.verifyhost = 2;
    
        data->set.ssl.sessionid = TRUE; /* session ID caching enabled by default */
    
        /* This is our preferred CA cert bundle since install time */
    
        res = setstropt(&data->set.str[STRING_SSL_CAFILE],
    
      if(res) {
        ares_destroy(data->state.areschannel);
        if(data->state.headerbuff)
          free(data->state.headerbuff);
    
    CURLcode Curl_setopt(struct SessionHandle *data, CURLoption option,
                         va_list param)
    
    #ifndef CURL_DISABLE_HTTP
      curl_off_t bigsize;
    #endif
    
        data->set.dns_cache_timeout = va_arg(param, long);
    
      case CURLOPT_DNS_USE_GLOBAL_CACHE:
    
          long use_cache = va_arg(param, long);
    
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          data->set.global_dns_cache = (bool)(0 != use_cache);
    
      case CURLOPT_SSL_CIPHER_LIST:
        /* set a list of cipher we want to use in the SSL connection */
    
        result = setstropt(&data->set.str[STRING_SSL_CIPHER_LIST],
    
      case CURLOPT_RANDOM_FILE:
        /*
         * This is the path name to a file that contains random data to seed
         * the random SSL stuff with. The file is only used for reading.
         */
    
        result = setstropt(&data->set.str[STRING_SSL_RANDOM_FILE],
    
        break;
      case CURLOPT_EGDSOCKET:
        /*
         * The Entropy Gathering Daemon socket pathname
         */
    
        result = setstropt(&data->set.str[STRING_SSL_EGDSOCKET],
    
      case CURLOPT_MAXCONNECTS:
        /*
         * Set the absolute number of maximum simultaneous alive connection that
         * libcurl is allowed to have.
         */
    
        result = Curl_ch_connc(data, data->state.connc, va_arg(param, long));
    
        break;
      case CURLOPT_FORBID_REUSE:
        /*
         * When this transfer is done, it must not be left to be reused by a
         * subsequent transfer but shall be closed immediately.
         */
    
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        data->set.reuse_forbid = (bool)(0 != va_arg(param, long));
    
        break;
      case CURLOPT_FRESH_CONNECT:
        /*
         * This transfer shall not use a previously cached connection but
         * should be made with a fresh new connect!
         */
    
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        data->set.reuse_fresh = (bool)(0 != va_arg(param, long));
    
      case CURLOPT_VERBOSE:
    
        /*
         * Verbose means infof() calls that give a lot of information about
         * the connection and transfer procedures as well as internal choices.
         */
    
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        data->set.verbose = (bool)(0 != va_arg(param, long));
    
        break;
      case CURLOPT_HEADER:
    
        /*
         * Set to include the header in the general data output stream.
         */
    
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        data->set.include_header = (bool)(0 != va_arg(param, long));
    
        break;
      case CURLOPT_NOPROGRESS:
    
        /*
         * Shut off the internal supported progress meter
         */
    
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        data->set.hide_progress = (bool)(0 != va_arg(param, long));
    
          data->progress.flags |= PGRS_HIDE;
    
        else
          data->progress.flags &= ~PGRS_HIDE;
    
        break;
      case CURLOPT_NOBODY:
    
        /*
         * Do not include the body part in the output data stream.
         */
    
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        data->set.opt_no_body = (bool)(0 != va_arg(param, long));
    
        if(data->set.opt_no_body)
          /* in HTTP lingo, this means using the HEAD request */
          data->set.httpreq = HTTPREQ_HEAD;
    
        break;
      case CURLOPT_FAILONERROR:
    
        /*
         * Don't output the >=300 error code HTML-page, but instead only
         * return error.
         */
    
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        data->set.http_fail_on_error = (bool)(0 != va_arg(param, long));
    
        break;
      case CURLOPT_UPLOAD:
    
         * We want to sent data to the remote host. If this is HTTP, that equals
         * using the PUT request.
    
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        data->set.upload = (bool)(0 != va_arg(param, long));
    
          /* If this is HTTP, PUT is what's needed to "upload" */
    
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      case CURLOPT_FILETIME:
    
        /*
         * Try to get the file time of the remote document. The time will
         * later (possibly) become available using curl_easy_getinfo().
         */
    
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        data->set.get_filetime = (bool)(0 != va_arg(param, long));
    
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        break;
    
      case CURLOPT_FTP_CREATE_MISSING_DIRS:
        /*
         * An FTP option that modifies an upload to create missing directories on
         * the server.
    
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        data->set.ftp_create_missing_dirs = (bool)(0 != va_arg(param, long));
    
      case CURLOPT_FTP_RESPONSE_TIMEOUT:
        /*
    
         * An FTP option that specifies how quickly an FTP response must be
    
         * obtained before it is considered failure.
         */
    
        data->set.ftp_response_timeout = va_arg( param , long ) * 1000;
    
         * An option that changes the command to one that asks for a list
    
         * only, no file info details.
         */
    
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        data->set.ftp_list_only = (bool)(0 != va_arg(param, long));
    
         * We want to upload and append to an existing file.
    
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        data->set.ftp_append = (bool)(0 != va_arg(param, long));
    
      case CURLOPT_FTP_FILEMETHOD:
        /*
         * How do access files over FTP.
         */
    
        data->set.ftp_filemethod = (curl_ftpfile)va_arg(param, long);
    
      case CURLOPT_NETRC:
    
        /*
         * Parse the $HOME/.netrc file
         */
    
        data->set.use_netrc = (enum CURL_NETRC_OPTION)va_arg(param, long);
    
      case CURLOPT_NETRC_FILE:
        /*
         * Use this file instead of the $HOME/.netrc file
         */
    
        result = setstropt(&data->set.str[STRING_NETRC_FILE],
    
        break;
    
         * This option was previously named 'FTPASCII'. Renamed to work with
         * more protocols than merely FTP.
         *
         * Transfer using ASCII (instead of BINARY).
    
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        data->set.prefer_ascii = (bool)(0 != va_arg(param, long));
    
        break;
      case CURLOPT_TIMECONDITION:
    
        /*
         * Set HTTP time condition. This must be one of the defines in the
         * curl/curl.h header file.
         */
    
        data->set.timecondition = (curl_TimeCond)va_arg(param, long);
    
      case CURLOPT_TIMEVALUE:
    
        /*
         * This is the value to compare with the remote document with the
         * method set with CURLOPT_TIMECONDITION
         */
    
        data->set.timevalue = (time_t)va_arg(param, long);
    
      case CURLOPT_SSLVERSION:
    
        /*
         * Set explicit SSL version to try to connect with, as some SSL
         * implementations are lame.
         */
    
        data->set.ssl.version = va_arg(param, long);
    
         * Switch on automatic referer that gets set if curl follows locations.
    
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        data->set.http_auto_referer = (bool)(0 != va_arg(param, long));
    
         * String to use at the value of Accept-Encoding header.
         *
         * If the encoding is set to "" we use an Accept-Encoding header that
         * encompasses all the encodings we support.
         * If the encoding is set to NULL we don't send an Accept-Encoding header
         * and ignore an received Content-Encoding header.
         *
    
        result = setstropt(&data->set.str[STRING_ENCODING],
    
                                (argptr && !*argptr)?
                                (char *) ALL_CONTENT_ENCODINGS: argptr);
    
         * Follow Location: header hints on a HTTP-server.
    
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        data->set.http_follow_location = (bool)(0 != va_arg(param, long));
    
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        break;
    
         * Send authentication (user+password) when following locations, even when
         * hostname changed.
    
        data->set.http_disable_hostname_check_before_authentication =
    
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          (bool)(0 != va_arg(param, long));