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  • /***************************************************************************
    
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     *                                  _   _ ____  _     
     *  Project                     ___| | | |  _ \| |    
     *                             / __| | | | |_) | |    
     *                            | (__| |_| |  _ <| |___ 
     *                             \___|\___/|_| \_\_____|
     *
    
     * Copyright (C) 1998 - 2003, 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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     * The original SSL code for curl was written by
    
     * Linas Vepstas <linas@linas.org> and Sampo Kellomaki <sampo@iki.fi>
     */
    
    
    #include "setup.h"
    
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    #include <string.h>
    #include <stdlib.h>
    
    #ifdef HAVE_SYS_TYPES_H
    #include <sys/types.h>
    #endif
    
    #ifdef HAVE_SYS_SOCKET_H
    #include <sys/socket.h>
    #endif
    
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    #include "urldata.h"
    #include "sendf.h"
    
    #include "formdata.h" /* for the boundary function */
    
    #include "url.h" /* for the ssl config check function */
    
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    #ifdef USE_SSLEAY
    
    #include <openssl/rand.h>
    
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    /* The last #include file should be: */
    #ifdef MALLOCDEBUG
    #include "memdebug.h"
    #endif
    
    
    #if OPENSSL_VERSION_NUMBER >= 0x0090581fL
    #define HAVE_SSL_GET1_SESSION 1
    #else
    #undef HAVE_SSL_GET1_SESSION
    #endif
    
    
    #if OPENSSL_VERSION_NUMBER >= 0x00904100L
    #define HAVE_USERDATA_IN_PWD_CALLBACK 1
    #else
    #undef HAVE_USERDATA_IN_PWD_CALLBACK
    #endif
    
    
    #if OPENSSL_VERSION_NUMBER >= 0x00907001L
    /* ENGINE_load_private_key() takes four arguments */
    #define HAVE_ENGINE_LOAD_FOUR_ARGS
    #else
    /* ENGINE_load_private_key() takes three arguments */
    #undef HAVE_ENGINE_LOAD_FOUR_ARGS
    #endif
    
    
    
    #ifndef HAVE_USERDATA_IN_PWD_CALLBACK
    
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    static char global_passwd[64];
    
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    static int passwd_callback(char *buf, int num, int verify
    
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                               /* This was introduced in 0.9.4, we can set this
                                  using SSL_CTX_set_default_passwd_cb_userdata()
                                  */
    
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    #endif
                               )
    {
      if(verify)
        fprintf(stderr, "%s\n", buf);
      else {
    
        if(num > (int)strlen((char *)global_passwd)) {
    
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          strcpy(buf, global_passwd);
          return strlen(buf);
        }
      }  
      return 0;
    }
    
    
    {
    #ifdef HAVE_RAND_STATUS
    
      nread = 0; /* to prevent compiler warnings */
    
    
      /* only available in OpenSSL 0.9.5a and later */
      if(RAND_status())
        return TRUE;
    #else
      if(nread > 500)
        /* this is a very silly decision to make */
        return TRUE;
    #endif
      return FALSE; /* not enough */
    }
    
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    int random_the_seed(struct SessionHandle *data)
    
      char *buf = data->state.buffer; /* point to the big buffer */
    
      int nread=0;
    
      /* Q: should we add support for a random file name as a libcurl option?
    
         A: Yes, it is here */
    
    #ifndef RANDOM_FILE
      /* if RANDOM_FILE isn't defined, we only perform this if an option tells
         us to! */
    
    #define RANDOM_FILE "" /* doesn't matter won't be used */
    
      {
        /* let the option override the define */
    
        nread += RAND_load_file((data->set.ssl.random_file?
                                 data->set.ssl.random_file:RANDOM_FILE),
    
      /* only available in OpenSSL 0.9.5 and later */
    
      /* EGD_SOCKET is set at configure time or not at all */
    #ifndef EGD_SOCKET
      /* If we don't have the define set, we only do this if the egd-option
         is set */
    
    #define EGD_SOCKET "" /* doesn't matter won't be used */
    #endif
    
        /* If there's an option and a define, the option overrides the
           define */
    
        int ret = RAND_egd(data->set.ssl.egdsocket?
                           data->set.ssl.egdsocket:EGD_SOCKET);
    
        if(-1 != ret) {
          nread += ret;
    
      }
    #endif
    
      /* If we get here, it means we need to seed the PRNG using a "silly"
         approach! */
    #ifdef HAVE_RAND_SCREEN
      /* This one gets a random value by reading the currently shown screen */
      RAND_screen();
      nread = 100; /* just a value */
    #else
      {
        int len;
    
        char *area;
    
        /* Changed call to RAND_seed to use the underlying RAND_add implementation
         * directly.  Do this in a loop, with the amount of additional entropy
         * being dependent upon the algorithm used by Curl_FormBoundary(): N bytes
         * of a 7-bit ascii set. -- Richard Gorton, March 11 2003.
         */
    	
        do {
          area = Curl_FormBoundary();
          if(!area)
            return 3; /* out of memory */
    
          len = strlen(area);
          RAND_add(area, len, (len >> 1));
    
          free(area); /* now remove the random junk */
        } while (!RAND_status());
    
      /* generates a default path for the random seed file */
      buf[0]=0; /* blank it first */
      RAND_file_name(buf, BUFSIZE);
      if ( buf[0] ) {
        /* we got a file name to try */
        nread += RAND_load_file(buf, 16384);
    
      infof(data, "libcurl is now using a weak random seed!\n");
    
    #ifndef SSL_FILETYPE_ENGINE
    #define SSL_FILETYPE_ENGINE 42
    #endif
    static int do_file_type(const char *type)
    {
      if (!type || !type[0])
        return SSL_FILETYPE_PEM;
      if (curl_strequal(type, "PEM"))
        return SSL_FILETYPE_PEM;
      if (curl_strequal(type, "DER"))
        return SSL_FILETYPE_ASN1;
      if (curl_strequal(type, "ENG"))
        return SSL_FILETYPE_ENGINE;
      return -1;
    }
    
    
    static
    int cert_stuff(struct connectdata *conn,
    
                   const char *cert_type,
                   char *key_file,
                   const char *key_type)
    
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    {
    
      struct SessionHandle *data = conn->data;
    
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      if (cert_file != NULL) {
        SSL *ssl;
        X509 *x509;
    
    
        if(data->set.key_passwd) {
    
    #ifndef HAVE_USERDATA_IN_PWD_CALLBACK
    
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          /*
           * If password has been given, we store that in the global
           * area (*shudder*) for a while:
           */
    
          strcpy(global_passwd, data->set.key_passwd);
    
    #else
          /*
           * We set the password in the callback userdata
           */
    
          SSL_CTX_set_default_passwd_cb_userdata(conn->ssl.ctx,
                                                 data->set.key_passwd);
    
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          /* Set passwd callback: */
    
          SSL_CTX_set_default_passwd_cb(conn->ssl.ctx, passwd_callback);
    
        file_type = do_file_type(cert_type);
    
        switch(file_type) {
        case SSL_FILETYPE_PEM:
    
          /* SSL_CTX_use_certificate_chain_file() only works on PEM files */
    
          if (SSL_CTX_use_certificate_chain_file(conn->ssl.ctx,
                                                 cert_file) != 1) {
    
            failf(data, "unable to set certificate file (wrong password?)");
            return 0;
          }
          break;
    
    
        case SSL_FILETYPE_ASN1:
          /* SSL_CTX_use_certificate_file() works with either PEM or ASN1, but
             we use the case above for PEM so this can only be performed with
             ASN1 files. */
          if (SSL_CTX_use_certificate_file(conn->ssl.ctx,
                                           cert_file,
                                           file_type) != 1) {
            failf(data, "unable to set certificate file (wrong password?)");
            return 0;
          }
          break;
    
        case SSL_FILETYPE_ENGINE:
          failf(data, "file type ENG for certificate not implemented");
          return 0;
    
        default:
          failf(data, "not supported file type '%s' for certificate", cert_type);
          return 0;
        }
    
        file_type = do_file_type(key_type);
    
        switch(file_type) {
        case SSL_FILETYPE_PEM:
          if (key_file == NULL)
            /* cert & key can only be in PEM case in the same file */
            key_file=cert_file;
        case SSL_FILETYPE_ASN1:
          if (SSL_CTX_use_PrivateKey_file(conn->ssl.ctx,
                                          key_file,
                                          file_type) != 1) {
    
            failf(data, "unable to set private key file: '%s' type %s\n",
                  key_file, key_type?key_type:"PEM");
    
            return 0;
          }
          break;
        case SSL_FILETYPE_ENGINE:
    #ifdef HAVE_OPENSSL_ENGINE_H
          {                         /* XXXX still needs some work */
            EVP_PKEY *priv_key = NULL;
            if (conn && conn->data && conn->data->engine) {
    
    #ifdef HAVE_ENGINE_LOAD_FOUR_ARGS
              UI_METHOD *ui_method = UI_OpenSSL();
    #endif
    
              if (!key_file || !key_file[0]) {
                failf(data, "no key set to load from crypto engine\n");
                return 0;
              }
              priv_key = ENGINE_load_private_key(conn->data->engine,key_file,
    
    #ifdef HAVE_ENGINE_LOAD_FOUR_ARGS
                                                 ui_method,
    #endif
    
                                                 data->set.key_passwd);
              if (!priv_key) {
                failf(data, "failed to load private key from crypto engine\n");
                return 0;
              }
              if (SSL_CTX_use_PrivateKey(conn->ssl.ctx, priv_key) != 1) {
                failf(data, "unable to set private key\n");
                EVP_PKEY_free(priv_key);
                return 0;
              }
              EVP_PKEY_free(priv_key);  /* we don't need the handle any more... */
            }
            else {
              failf(data, "crypto engine not set, can't load private key\n");
              return 0;
            }
          }
    #else
          failf(data, "file type ENG for private key not supported\n");
          return 0;
    #endif
          break;
        default:
          failf(data, "not supported file type for private key\n");
          return 0;
        }
    
    
        ssl=SSL_new(conn->ssl.ctx);
    
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        x509=SSL_get_certificate(ssl);
    
    
        /* This version was provided by Evan Jordan and is supposed to not
           leak memory as the previous version: */
        if (x509 != NULL) {
          EVP_PKEY *pktmp = X509_get_pubkey(x509);
          EVP_PKEY_copy_parameters(pktmp,SSL_get_privatekey(ssl));
          EVP_PKEY_free(pktmp);
        }
    
    
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        SSL_free(ssl);
    
        /* If we are using DSA, we can copy the parameters from
         * the private key */
    		
        
        /* Now we know that a key and cert have been set against
         * the SSL context */
    
        if (!SSL_CTX_check_private_key(conn->ssl.ctx)) {
    
          failf(data, "Private key does not match the certificate public key");
    
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          return(0);
        }
    
    #ifndef HAVE_USERDATA_IN_PWD_CALLBACK    
    
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        /* erase it now */
        memset(global_passwd, 0, sizeof(global_passwd));
    
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      }
      return(1);
    }
    
    
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    int cert_verify_callback(int ok, X509_STORE_CTX *ctx)
    {
      X509 *err_cert;
      char buf[256];
    
      err_cert=X509_STORE_CTX_get_current_cert(ctx);
      X509_NAME_oneline(X509_get_subject_name(err_cert),buf,256);
    
    
    #ifdef USE_SSLEAY
    /* "global" init done? */
    static int init_ssl=0;
    
    
    /* we have the "SSL is seeded" boolean global for the application to
       prevent multiple time-consuming seedings in vain */
    static bool ssl_seeded = FALSE;
    
    /* Global init */
    void Curl_SSL_init(void)
    {
    #ifdef USE_SSLEAY
      /* make sure this is only done once */
    
      init_ssl++; /* never again */
    
    #ifdef HAVE_ENGINE_LOAD_BUILTIN_ENGINES
      ENGINE_load_builtin_engines();
    #endif
    
    
      /* Lets get nice error messages */
      SSL_load_error_strings();
    
      /* Setup all the global SSL stuff */
      SSLeay_add_ssl_algorithms();
    
    #else
      /* SSL disabled, do nothing */
    
    /* Global cleanup */
    void Curl_SSL_cleanup(void)
    {
    #ifdef USE_SSLEAY
      if(init_ssl) {
        /* only cleanup if we did a previous init */
    
        /* Free the SSL error strings */
        ERR_free_strings();
      
        /* EVP_cleanup() removes all ciphers and digests from the
           table. */
        EVP_cleanup();
    
    #ifdef HAVE_ENGINE_cleanup
        ENGINE_cleanup();
    #endif
    
    
      }
    #else
      /* SSL disabled, do nothing */
    #endif
    }
    
    #ifdef USE_SSLEAY
    
    
    /*
     * This function is called when an SSL connection is closed.
     */
    void Curl_SSL_Close(struct connectdata *conn)
    {
      if (conn->ssl.use) {
        /*
          ERR_remove_state() frees the error queue associated with
          thread pid.  If pid == 0, the current thread will have its
          error queue removed.
    
          Since error queue data structures are allocated
          automatically for new threads, they must be freed when
          threads are terminated in oder to avoid memory leaks.
        */
        ERR_remove_state(0);
    
        if(conn->ssl.handle) {
          (void)SSL_shutdown(conn->ssl.handle);
          SSL_set_connect_state(conn->ssl.handle);
    
          SSL_free (conn->ssl.handle);
          conn->ssl.handle = NULL;
        }
        if(conn->ssl.ctx) {
          SSL_CTX_free (conn->ssl.ctx);
          conn->ssl.ctx = NULL;
        }
        conn->ssl.use = FALSE; /* get back to ordinary socket usage */
      }
    }
    
    
    /*
     * This sets up a session cache to the specified size.
     */
    
    CURLcode Curl_SSL_InitSessions(struct SessionHandle *data, long amount)
    
        /* this is just a precaution to prevent multiple inits */
        return CURLE_OK;
    
      session = (struct curl_ssl_session *)
        malloc(amount * sizeof(struct curl_ssl_session));
      if(!session)
        return CURLE_OUT_OF_MEMORY;
    
      /* "blank out" the newly allocated memory */
      memset(session, 0, amount * sizeof(struct curl_ssl_session));
    
      /* store the info in the SSL section */
    
      data->state.session = session;
      data->state.sessionage = 1; /* this is brand new */
    
    
      return CURLE_OK;
    }
    
    /*
     * Check if there's a session ID for the given connection in the cache,
     * and if there's one suitable, it is returned.
     */
    static int Get_SSL_Session(struct connectdata *conn,
                               SSL_SESSION **ssl_sessionid)
    {
      struct curl_ssl_session *check;
    
      struct SessionHandle *data = conn->data;
    
      for(i=0; i< data->set.ssl.numsessions; i++) {
    
        if(!check->sessionid)
          /* not session ID means blank entry */
          continue;
    
        if(curl_strequal(conn->name, check->name) &&
    
           (conn->remote_port == check->remote_port) &&
           Curl_ssl_config_matches(&conn->ssl_config, &check->ssl_config)) {
    
          data->state.sessionage++;            /* increase general age */
          check->age = data->state.sessionage; /* set this as used in this age */
    
          *ssl_sessionid = check->sessionid;
          return FALSE;
        }
      }
      *ssl_sessionid = (SSL_SESSION *)NULL;
      return TRUE;
    }
    
    /*
     * Kill a single session ID entry in the cache.
     */
    static int Kill_Single_Session(struct curl_ssl_session *session)
    {
      if(session->sessionid) {
        /* defensive check */
    
        /* free the ID */
        SSL_SESSION_free(session->sessionid);
        session->sessionid=NULL;
        session->age = 0; /* fresh */
    
    
        Curl_free_ssl_config(&session->ssl_config);
    
    
        free(session->name);
        session->name = NULL; /* no name */
    
        return 0; /* ok */
      }
      else
        return 1;
    }
    
    /*
     * This function is called when the 'data' struct is going away. Close
     * down everything and free all resources!
     */
    
    int Curl_SSL_Close_All(struct SessionHandle *data)
    
        for(i=0; i< data->set.ssl.numsessions; i++)
          /* the single-killer function handles empty table slots */
    
          Kill_Single_Session(&data->state.session[i]);
    
    #ifdef HAVE_OPENSSL_ENGINE_H
      if (data->engine)
      {
        ENGINE_free(data->engine);
        data->engine = NULL;
      }
    #endif
    
      return 0;
    }
    
    /*
     * Extract the session id and store it in the session cache.
     */
    static int Store_SSL_Session(struct connectdata *conn)
    {
      SSL_SESSION *ssl_sessionid;
      int i;
    
      struct SessionHandle *data=conn->data; /* the mother of all structs */
    
      struct curl_ssl_session *store = &data->state.session[0];
    
      int oldest_age=data->state.session[0].age; /* zero if unused */
    
      ssl_sessionid = SSL_get1_session(conn->ssl.handle);
    
      /* SSL_get1_session() will increment the reference
         count and the session will stay in memory until explicitly freed with
    
         SSL_SESSION_free(3), regardless of its state. 
         This function was introduced in openssl 0.9.5a. */
    #else
      ssl_sessionid = SSL_get_session(conn->ssl.handle);
    
      /* if SSL_get1_session() is unavailable, use SSL_get_session().
         This is an inferior option because the session can be flushed
         at any time by openssl. It is included only so curl compiles
         under versions of openssl < 0.9.5a.
         
         WARNING: How curl behaves if it's session is flushed is
         untested. 
      */
    #endif
    
    
      /* Now we should add the session ID and the host name to the cache, (remove
         the oldest if necessary) */
    
      /* find an empty slot for us, or find the oldest */
    
      for(i=1; (i<data->set.ssl.numsessions) &&
            data->state.session[i].sessionid; i++) {
    
        if(data->state.session[i].age < oldest_age) {
          oldest_age = data->state.session[i].age;
          store = &data->state.session[i];
    
        /* cache is full, we must "kill" the oldest entry! */
        Kill_Single_Session(store);
      else
    
        store = &data->state.session[i]; /* use this slot */
    
      
      /* now init the session struct wisely */
      store->sessionid = ssl_sessionid;
    
      store->age = data->state.sessionage;      /* set current age */
    
      store->name = strdup(conn->name);       /* clone host name */
      store->remote_port = conn->remote_port; /* port number */
    
      Curl_clone_ssl_config(&conn->ssl_config, &store->ssl_config);
    
    
    static int Curl_ASN1_UTCTIME_output(struct connectdata *conn,
                                        const char *prefix,
                                        ASN1_UTCTIME *tm)
    {
      char *asn1_string;
      int gmt=FALSE;
      int i;
      int year=0,month=0,day=0,hour=0,minute=0,second=0;
      struct SessionHandle *data = conn->data;
    
      if(!data->set.verbose)
        return 0;
    
      i=tm->length;
      asn1_string=(char *)tm->data;
    
      if (i < 10)
        return 1;
      if (asn1_string[i-1] == 'Z')
        gmt=TRUE;
      for (i=0; i<10; i++)
        if ((asn1_string[i] > '9') || (asn1_string[i] < '0'))
          return 2;
    
      year= (asn1_string[0]-'0')*10+(asn1_string[1]-'0');
      if (year < 50)
        year+=100;
    
      month= (asn1_string[2]-'0')*10+(asn1_string[3]-'0');
      if ((month > 12) || (month < 1))
        return 3;
    
      day= (asn1_string[4]-'0')*10+(asn1_string[5]-'0');
      hour= (asn1_string[6]-'0')*10+(asn1_string[7]-'0');
      minute=  (asn1_string[8]-'0')*10+(asn1_string[9]-'0');
    
      if ( (asn1_string[10] >= '0') && (asn1_string[10] <= '9') &&
           (asn1_string[11] >= '0') && (asn1_string[11] <= '9'))
        second= (asn1_string[10]-'0')*10+(asn1_string[11]-'0');
      
      infof(data,
            "%s%04d-%02d-%02d %02d:%02d:%02d %s\n",
            prefix, year+1900, month, day, hour, minute, second, (gmt?"GMT":""));
    
      return 0;
    }
    
    
    /* ====================================================== */
    static int
    cert_hostcheck(const char *certname, const char *hostname)
    {
      char *tmp;
      const char *certdomain;
      
      if(!certname ||
         strlen(certname)<3 ||
         !hostname ||
         !strlen(hostname)) /* sanity check */
        return 0;
    
    
      if(curl_strequal(certname, hostname)) /* trivial case */
    
        return 1;
    
      certdomain = certname + 1;
    
      if((certname[0] != '*') || (certdomain[0] != '.'))
        return 0; /* not a wildcard certificate, check failed */
      
      if(!strchr(certdomain+1, '.'))
        return 0; /* the certificate must have at least another dot in its name */
    
      /* find 'certdomain' within 'hostname' */
      tmp = strstr(hostname, certdomain);
      if(tmp) {
        /* ok the certname's domain matches the hostname, let's check that it's a
           tail-match */
    
          /* looks like a match. Just check we havent swallowed a '.' */
          return tmp == strchr(hostname, '.');
        else
          return 0;
      }
      return 0;
    }
    
    
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    /* ====================================================== */
    
    Curl_SSLConnect(struct connectdata *conn)
    
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    {
    
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    #ifdef USE_SSLEAY
    
      struct SessionHandle *data = conn->data;
    
      char * str;
      SSL_METHOD *req_method;
    
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      /* mark this is being ssl enabled from here on out. */
      conn->ssl.use = TRUE;
    
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      if(!ssl_seeded || data->set.ssl.random_file || data->set.ssl.egdsocket) {
    
        /* Make funny stuff to get random input */
        random_the_seed(data);
    
        ssl_seeded = TRUE;
      }
    
    
      /* check to see if we've been told to use an explicit SSL/TLS version */
    
      case CURL_SSLVERSION_DEFAULT:
        /* we try to figure out version */
    
        req_method = SSLv23_client_method();
        break;
    
      case CURL_SSLVERSION_TLSv1:
        req_method = TLSv1_client_method();
        break;
      case CURL_SSLVERSION_SSLv2:
    
        req_method = SSLv2_client_method();
        break;
    
        req_method = SSLv3_client_method();
        break;
      }
    
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      conn->ssl.ctx = SSL_CTX_new(req_method);
    
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      if(!conn->ssl.ctx) {
        failf(data, "SSL: couldn't create a context!");
    
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        if (!cert_stuff(conn,
                        data->set.cert,
                        data->set.cert_type,
                        data->set.key,
                        data->set.key_type)) {
    
          /* failf() is already done in cert_stuff() */
    
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        }
    
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      if(data->set.ssl.cipher_list) {
        if (!SSL_CTX_set_cipher_list(conn->ssl.ctx,
                                     data->set.ssl.cipher_list)) {
    
          failf(data, "failed setting cipher list");
    
        SSL_CTX_set_verify(conn->ssl.ctx,
                           SSL_VERIFY_PEER|SSL_VERIFY_FAIL_IF_NO_PEER_CERT|
                           SSL_VERIFY_CLIENT_ONCE,
                           cert_verify_callback);
    
        if ((data->set.ssl.CAfile || data->set.ssl.CApath) &&
            !SSL_CTX_load_verify_locations(conn->ssl.ctx,
    
                                           data->set.ssl.CAfile,
                                           data->set.ssl.CApath)) {
    
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          failf(data,"error setting certificate verify locations");
    
      }
      else
        SSL_CTX_set_verify(conn->ssl.ctx, SSL_VERIFY_NONE, cert_verify_callback);
    
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      /* Lets make an SSL structure */
      conn->ssl.handle = SSL_new (conn->ssl.ctx);
      SSL_set_connect_state (conn->ssl.handle);
    
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      conn->ssl.server_cert = 0x0;
    
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      if(!conn->bits.reuse) {
        /* We're not re-using a connection, check if there's a cached ID we
           can/should use here! */
        if(!Get_SSL_Session(conn, &ssl_sessionid)) {
          /* we got a session id, use it! */
          SSL_set_session(conn->ssl.handle, ssl_sessionid);
          /* Informational message */
          infof (data, "SSL re-using session ID\n");
        }
      }
    
    
      /* pass the raw socket into the SSL layers */
    
      SSL_set_fd(conn->ssl.handle, conn->firstsocket);
    
      do {
        fd_set writefd;
        fd_set readfd;
        struct timeval interval;
        long timeout_ms;
    
        /* Find out if any timeout is set. If not, use 300 seconds.
           Otherwise, figure out the most strict timeout of the two possible one
           and then how much time that has elapsed to know how much time we
           allow for the connect call */
        if(data->set.timeout || data->set.connecttimeout) {
          double has_passed;
    
          /* Evaluate in milliseconds how much time that has passed */
          has_passed = Curl_tvdiff(Curl_tvnow(), data->progress.start);
    
    #ifndef min
    #define min(a, b)   ((a) < (b) ? (a) : (b))
    #endif
    
          /* get the most strict timeout of the ones converted to milliseconds */
          if(data->set.timeout &&
             (data->set.timeout>data->set.connecttimeout))
            timeout_ms = data->set.timeout*1000;
          else
            timeout_ms = data->set.connecttimeout*1000;
          
          /* subtract the passed time */
          timeout_ms -= (long)has_passed;
          
    
            /* a precaution, no need to continue if time already is up */
    
            failf(data, "SSL connection timeout");
            return CURLE_OPERATION_TIMEOUTED;
          }
    
        }
        else
          /* no particular time-out has been set */
          timeout_ms=300000; /* milliseconds, default to five minutes */
    
    
    
        FD_ZERO(&writefd);
        FD_ZERO(&readfd);
    
        err = SSL_connect(conn->ssl.handle);
    
        /* 1  is fine
           0  is "not successful but was shut down controlled"
           <0 is "handshake was not successful, because a fatal error occurred" */
        if(1 != err) {
          int detail = SSL_get_error(conn->ssl.handle, err);
    
          if(SSL_ERROR_WANT_READ == detail)
            FD_SET(conn->firstsocket, &readfd);
          else if(SSL_ERROR_WANT_WRITE == detail)
            FD_SET(conn->firstsocket, &writefd);
          else {
            /* untreated error */
            char error_buffer[120]; /* OpenSSL documents that this must be at least
                                       120 bytes long. */
    
    
            detail = ERR_get_error(); /* Gets the earliest error code from the
                                         thread's error queue and removes the
                                         entry. */
    
    
            switch(detail) {
            case 0x1407E086:
              /* 1407E086:
                 SSL routines:
                 SSL2_SET_CERTIFICATE:
                 certificate verify failed */
            case 0x14090086:
    
              /* 14090086:
                 SSL routines:
                 SSL3_GET_SERVER_CERTIFICATE:
                 certificate verify failed */
              failf(data,
                    "SSL certificate problem, verify that the CA cert is OK");
              return CURLE_SSL_CACERT;
    
              /* detail is already set to the SSL error above */
              failf(data, "SSL: %s", ERR_error_string(detail, error_buffer));
              /* OpenSSL 0.9.6 and later has a function named
                 ERRO_error_string_n() that takes the size of the buffer as a third
                 argument, and we should possibly switch to using that one in the
                 future. */
              return CURLE_SSL_CONNECT_ERROR;
            }
    
          }
        }
        else
          /* we have been connected fine, get out of the connect loop */
          break;
    
    
        interval.tv_sec = timeout_ms/1000;
        timeout_ms -= interval.tv_sec*1000;
    
        interval.tv_usec = timeout_ms*1000;
    
        what = select(conn->firstsocket+1, &readfd, &writefd, NULL, &interval);
        if(what > 0)
          /* reabable or writable, go loop yourself */
          continue;
        else if(0 == what) {
          /* timeout */
          failf(data, "SSL connection timeout");
          return CURLE_OPERATION_TIMEOUTED;
        }
        else
          break; /* get out of loop */
      } while(1);
    
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      /* Informational message */
      infof (data, "SSL connection using %s\n",
             SSL_get_cipher(conn->ssl.handle));
    
    
      if(!ssl_sessionid) {
        /* Since this is not a cached session ID, then we want to stach this one
           in the cache! */
        Store_SSL_Session(conn);
      }
    
    
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      /* Get server's certificate (note: beware of dynamic allocation) - opt */
      /* major serious hack alert -- we should check certificates
       * to authenticate the server; otherwise we risk man-in-the-middle
       * attack
       */
    
      conn->ssl.server_cert = SSL_get_peer_certificate (conn->ssl.handle);
      if(!conn->ssl.server_cert) {
        failf(data, "SSL: couldn't get peer certificate!");
    
      }
      infof (data, "Server certificate:\n");
    
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      str = X509_NAME_oneline (X509_get_subject_name (conn->ssl.server_cert),
                               NULL, 0);
      if(!str) {
        failf(data, "SSL: couldn't get X509-subject!");
    
      }
      infof(data, "\t subject: %s\n", str);
      CRYPTO_free(str);
    
    
      certdate = X509_get_notBefore(conn->ssl.server_cert);
      Curl_ASN1_UTCTIME_output(conn, "\t start date: ", certdate);
    
      certdate = X509_get_notAfter(conn->ssl.server_cert);
      Curl_ASN1_UTCTIME_output(conn, "\t expire date: ", certdate);
    
    
        if (X509_NAME_get_text_by_NID(X509_get_subject_name(conn->ssl.server_cert),
                                      NID_commonName,
                                      peer_CN,
                                      sizeof(peer_CN)) < 0) {