etlegacy-libs/curl/lib/smtp.c

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/***************************************************************************
* _ _ ____ _
* Project ___| | | | _ \| |
* / __| | | | |_) | |
* | (__| |_| | _ <| |___
* \___|\___/|_| \_\_____|
*
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* Copyright (C) 1998 - 2018, 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
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* are also available at https://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.
*
* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
* KIND, either express or implied.
*
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* RFC1870 SMTP Service Extension for Message Size
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* RFC2195 CRAM-MD5 authentication
* RFC2831 DIGEST-MD5 authentication
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* RFC3207 SMTP over TLS
* RFC4422 Simple Authentication and Security Layer (SASL)
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* RFC4616 PLAIN authentication
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* RFC4752 The Kerberos V5 ("GSSAPI") SASL Mechanism
* RFC4954 SMTP Authentication
* RFC5321 SMTP protocol
* RFC6749 OAuth 2.0 Authorization Framework
* Draft SMTP URL Interface <draft-earhart-url-smtp-00.txt>
* Draft LOGIN SASL Mechanism <draft-murchison-sasl-login-00.txt>
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*
***************************************************************************/
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#include "curl_setup.h"
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#ifndef CURL_DISABLE_SMTP
#ifdef HAVE_NETINET_IN_H
#include <netinet/in.h>
#endif
#ifdef HAVE_ARPA_INET_H
#include <arpa/inet.h>
#endif
#ifdef HAVE_UTSNAME_H
#include <sys/utsname.h>
#endif
#ifdef HAVE_NETDB_H
#include <netdb.h>
#endif
#ifdef __VMS
#include <in.h>
#include <inet.h>
#endif
#if (defined(NETWARE) && defined(__NOVELL_LIBC__))
#undef in_addr_t
#define in_addr_t unsigned long
#endif
#include <curl/curl.h>
#include "urldata.h"
#include "sendf.h"
#include "hostip.h"
#include "progress.h"
#include "transfer.h"
#include "escape.h"
#include "http.h" /* for HTTP proxy tunnel stuff */
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#include "mime.h"
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#include "socks.h"
#include "smtp.h"
#include "strtoofft.h"
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#include "strcase.h"
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#include "vtls/vtls.h"
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#include "connect.h"
#include "strerror.h"
#include "select.h"
#include "multiif.h"
#include "url.h"
#include "curl_gethostname.h"
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#include "curl_sasl.h"
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#include "warnless.h"
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/* The last 3 #include files should be in this order */
#include "curl_printf.h"
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#include "curl_memory.h"
#include "memdebug.h"
/* Local API functions */
static CURLcode smtp_regular_transfer(struct connectdata *conn, bool *done);
static CURLcode smtp_do(struct connectdata *conn, bool *done);
static CURLcode smtp_done(struct connectdata *conn, CURLcode status,
bool premature);
static CURLcode smtp_connect(struct connectdata *conn, bool *done);
static CURLcode smtp_disconnect(struct connectdata *conn, bool dead);
static CURLcode smtp_multi_statemach(struct connectdata *conn, bool *done);
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static int smtp_getsock(struct connectdata *conn, curl_socket_t *socks,
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int numsocks);
static CURLcode smtp_doing(struct connectdata *conn, bool *dophase_done);
static CURLcode smtp_setup_connection(struct connectdata *conn);
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static CURLcode smtp_parse_url_options(struct connectdata *conn);
static CURLcode smtp_parse_url_path(struct connectdata *conn);
static CURLcode smtp_parse_custom_request(struct connectdata *conn);
static CURLcode smtp_perform_auth(struct connectdata *conn, const char *mech,
const char *initresp);
static CURLcode smtp_continue_auth(struct connectdata *conn, const char *resp);
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static void smtp_get_message(char *buffer, char **outptr);
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/*
* SMTP protocol handler.
*/
const struct Curl_handler Curl_handler_smtp = {
"SMTP", /* scheme */
smtp_setup_connection, /* setup_connection */
smtp_do, /* do_it */
smtp_done, /* done */
ZERO_NULL, /* do_more */
smtp_connect, /* connect_it */
smtp_multi_statemach, /* connecting */
smtp_doing, /* doing */
smtp_getsock, /* proto_getsock */
smtp_getsock, /* doing_getsock */
ZERO_NULL, /* domore_getsock */
ZERO_NULL, /* perform_getsock */
smtp_disconnect, /* disconnect */
ZERO_NULL, /* readwrite */
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ZERO_NULL, /* connection_check */
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PORT_SMTP, /* defport */
CURLPROTO_SMTP, /* protocol */
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PROTOPT_CLOSEACTION | PROTOPT_NOURLQUERY | /* flags */
PROTOPT_URLOPTIONS
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};
#ifdef USE_SSL
/*
* SMTPS protocol handler.
*/
const struct Curl_handler Curl_handler_smtps = {
"SMTPS", /* scheme */
smtp_setup_connection, /* setup_connection */
smtp_do, /* do_it */
smtp_done, /* done */
ZERO_NULL, /* do_more */
smtp_connect, /* connect_it */
smtp_multi_statemach, /* connecting */
smtp_doing, /* doing */
smtp_getsock, /* proto_getsock */
smtp_getsock, /* doing_getsock */
ZERO_NULL, /* domore_getsock */
ZERO_NULL, /* perform_getsock */
smtp_disconnect, /* disconnect */
ZERO_NULL, /* readwrite */
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ZERO_NULL, /* connection_check */
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PORT_SMTPS, /* defport */
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CURLPROTO_SMTPS, /* protocol */
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PROTOPT_CLOSEACTION | PROTOPT_SSL
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| PROTOPT_NOURLQUERY | PROTOPT_URLOPTIONS /* flags */
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};
#endif
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/* SASL parameters for the smtp protocol */
static const struct SASLproto saslsmtp = {
"smtp", /* The service name */
334, /* Code received when continuation is expected */
235, /* Code to receive upon authentication success */
512 - 8, /* Maximum initial response length (no max) */
smtp_perform_auth, /* Send authentication command */
smtp_continue_auth, /* Send authentication continuation */
smtp_get_message /* Get SASL response message */
};
#ifdef USE_SSL
static void smtp_to_smtps(struct connectdata *conn)
{
/* Change the connection handler */
conn->handler = &Curl_handler_smtps;
/* Set the connection's upgraded to TLS flag */
conn->tls_upgraded = TRUE;
}
#else
#define smtp_to_smtps(x) Curl_nop_stmt
#endif
/***********************************************************************
*
* smtp_endofresp()
*
* Checks for an ending SMTP status code at the start of the given string, but
* also detects various capabilities from the EHLO response including the
* supported authentication mechanisms.
*/
static bool smtp_endofresp(struct connectdata *conn, char *line, size_t len,
int *resp)
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{
struct smtp_conn *smtpc = &conn->proto.smtpc;
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bool result = FALSE;
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/* Nothing for us */
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if(len < 4 || !ISDIGIT(line[0]) || !ISDIGIT(line[1]) || !ISDIGIT(line[2]))
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return FALSE;
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/* Do we have a command response? This should be the response code followed
by a space and optionally some text as per RFC-5321 and as outlined in
Section 4. Examples of RFC-4954 but some e-mail servers ignore this and
only send the response code instead as per Section 4.2. */
if(line[3] == ' ' || len == 5) {
result = TRUE;
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*resp = curlx_sltosi(strtol(line, NULL, 10));
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/* Make sure real server never sends internal value */
if(*resp == 1)
*resp = 0;
}
/* Do we have a multiline (continuation) response? */
else if(line[3] == '-' &&
(smtpc->state == SMTP_EHLO || smtpc->state == SMTP_COMMAND)) {
result = TRUE;
*resp = 1; /* Internal response code */
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}
return result;
}
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/***********************************************************************
*
* smtp_get_message()
*
* Gets the authentication message from the response buffer.
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*/
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static void smtp_get_message(char *buffer, char **outptr)
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{
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size_t len = strlen(buffer);
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char *message = NULL;
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if(len > 4) {
/* Find the start of the message */
len -= 4;
for(message = buffer + 4; *message == ' ' || *message == '\t';
message++, len--)
;
/* Find the end of the message */
for(; len--;)
if(message[len] != '\r' && message[len] != '\n' && message[len] != ' ' &&
message[len] != '\t')
break;
/* Terminate the message */
if(++len) {
message[len] = '\0';
}
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}
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else
/* junk input => zero length output */
message = &buffer[len];
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*outptr = message;
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}
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/***********************************************************************
*
* state()
*
* This is the ONLY way to change SMTP state!
*/
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static void state(struct connectdata *conn, smtpstate newstate)
{
struct smtp_conn *smtpc = &conn->proto.smtpc;
#if defined(DEBUGBUILD) && !defined(CURL_DISABLE_VERBOSE_STRINGS)
/* for debug purposes */
static const char * const names[] = {
"STOP",
"SERVERGREET",
"EHLO",
"HELO",
"STARTTLS",
"UPGRADETLS",
"AUTH",
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"COMMAND",
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"MAIL",
"RCPT",
"DATA",
"POSTDATA",
"QUIT",
/* LAST */
};
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if(smtpc->state != newstate)
infof(conn->data, "SMTP %p state change from %s to %s\n",
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(void *)smtpc, names[smtpc->state], names[newstate]);
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#endif
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smtpc->state = newstate;
}
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/***********************************************************************
*
* smtp_perform_ehlo()
*
* Sends the EHLO command to not only initialise communication with the ESMTP
* server but to also obtain a list of server side supported capabilities.
*/
static CURLcode smtp_perform_ehlo(struct connectdata *conn)
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{
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CURLcode result = CURLE_OK;
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struct smtp_conn *smtpc = &conn->proto.smtpc;
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smtpc->sasl.authmechs = SASL_AUTH_NONE; /* No known auth. mechanism yet */
smtpc->sasl.authused = SASL_AUTH_NONE; /* Clear the authentication mechanism
used for esmtp connections */
smtpc->tls_supported = FALSE; /* Clear the TLS capability */
smtpc->auth_supported = FALSE; /* Clear the AUTH capability */
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/* Send the EHLO command */
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result = Curl_pp_sendf(&smtpc->pp, "EHLO %s", smtpc->domain);
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if(!result)
state(conn, SMTP_EHLO);
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return result;
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}
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/***********************************************************************
*
* smtp_perform_helo()
*
* Sends the HELO command to initialise communication with the SMTP server.
*/
static CURLcode smtp_perform_helo(struct connectdata *conn)
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{
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CURLcode result = CURLE_OK;
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struct smtp_conn *smtpc = &conn->proto.smtpc;
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smtpc->sasl.authused = SASL_AUTH_NONE; /* No authentication mechanism used
in smtp connections */
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/* Send the HELO command */
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result = Curl_pp_sendf(&smtpc->pp, "HELO %s", smtpc->domain);
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if(!result)
state(conn, SMTP_HELO);
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return result;
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}
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/***********************************************************************
*
* smtp_perform_starttls()
*
* Sends the STLS command to start the upgrade to TLS.
*/
static CURLcode smtp_perform_starttls(struct connectdata *conn)
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{
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CURLcode result = CURLE_OK;
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/* Send the STARTTLS command */
result = Curl_pp_sendf(&conn->proto.smtpc.pp, "%s", "STARTTLS");
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if(!result)
state(conn, SMTP_STARTTLS);
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return result;
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}
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/***********************************************************************
*
* smtp_perform_upgrade_tls()
*
* Performs the upgrade to TLS.
*/
static CURLcode smtp_perform_upgrade_tls(struct connectdata *conn)
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{
CURLcode result = CURLE_OK;
struct smtp_conn *smtpc = &conn->proto.smtpc;
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/* Start the SSL connection */
result = Curl_ssl_connect_nonblocking(conn, FIRSTSOCKET, &smtpc->ssldone);
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if(!result) {
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if(smtpc->state != SMTP_UPGRADETLS)
state(conn, SMTP_UPGRADETLS);
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if(smtpc->ssldone) {
smtp_to_smtps(conn);
result = smtp_perform_ehlo(conn);
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}
}
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return result;
}
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/***********************************************************************
*
* smtp_perform_auth()
*
* Sends an AUTH command allowing the client to login with the given SASL
* authentication mechanism.
*/
static CURLcode smtp_perform_auth(struct connectdata *conn,
const char *mech,
const char *initresp)
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{
CURLcode result = CURLE_OK;
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struct smtp_conn *smtpc = &conn->proto.smtpc;
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if(initresp) { /* AUTH <mech> ...<crlf> */
/* Send the AUTH command with the initial response */
result = Curl_pp_sendf(&smtpc->pp, "AUTH %s %s", mech, initresp);
}
else {
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/* Send the AUTH command */
result = Curl_pp_sendf(&smtpc->pp, "AUTH %s", mech);
}
return result;
}
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/***********************************************************************
*
* smtp_continue_auth()
*
* Sends SASL continuation data or cancellation.
*/
static CURLcode smtp_continue_auth(struct connectdata *conn, const char *resp)
{
struct smtp_conn *smtpc = &conn->proto.smtpc;
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return Curl_pp_sendf(&smtpc->pp, "%s", resp);
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}
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/***********************************************************************
*
* smtp_perform_authentication()
*
* Initiates the authentication sequence, with the appropriate SASL
* authentication mechanism.
*/
static CURLcode smtp_perform_authentication(struct connectdata *conn)
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{
CURLcode result = CURLE_OK;
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struct smtp_conn *smtpc = &conn->proto.smtpc;
saslprogress progress;
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/* Check we have enough data to authenticate with, and the
server supports authentiation, and end the connect phase if not */
if(!smtpc->auth_supported ||
!Curl_sasl_can_authenticate(&smtpc->sasl, conn)) {
state(conn, SMTP_STOP);
return result;
}
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/* Calculate the SASL login details */
result = Curl_sasl_start(&smtpc->sasl, conn, FALSE, &progress);
if(!result) {
if(progress == SASL_INPROGRESS)
state(conn, SMTP_AUTH);
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else {
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/* Other mechanisms not supported */
infof(conn->data, "No known authentication mechanisms supported!\n");
result = CURLE_LOGIN_DENIED;
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}
}
return result;
}
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/***********************************************************************
*
* smtp_perform_command()
*
* Sends a SMTP based command.
*/
static CURLcode smtp_perform_command(struct connectdata *conn)
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{
CURLcode result = CURLE_OK;
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struct Curl_easy *data = conn->data;
struct SMTP *smtp = data->req.protop;
/* Send the command */
if(smtp->rcpt)
result = Curl_pp_sendf(&conn->proto.smtpc.pp, "%s %s",
smtp->custom && smtp->custom[0] != '\0' ?
smtp->custom : "VRFY",
smtp->rcpt->data);
else
result = Curl_pp_sendf(&conn->proto.smtpc.pp, "%s",
smtp->custom && smtp->custom[0] != '\0' ?
smtp->custom : "HELP");
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if(!result)
state(conn, SMTP_COMMAND);
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return result;
}
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/***********************************************************************
*
* smtp_perform_mail()
*
* Sends an MAIL command to initiate the upload of a message.
*/
static CURLcode smtp_perform_mail(struct connectdata *conn)
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{
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char *from = NULL;
char *auth = NULL;
char *size = NULL;
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CURLcode result = CURLE_OK;
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struct Curl_easy *data = conn->data;
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/* Calculate the FROM parameter */
if(!data->set.str[STRING_MAIL_FROM])
/* Null reverse-path, RFC-5321, sect. 3.6.3 */
from = strdup("<>");
else if(data->set.str[STRING_MAIL_FROM][0] == '<')
from = aprintf("%s", data->set.str[STRING_MAIL_FROM]);
else
from = aprintf("<%s>", data->set.str[STRING_MAIL_FROM]);
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if(!from)
return CURLE_OUT_OF_MEMORY;
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/* Calculate the optional AUTH parameter */
if(data->set.str[STRING_MAIL_AUTH] && conn->proto.smtpc.sasl.authused) {
if(data->set.str[STRING_MAIL_AUTH][0] != '\0')
auth = aprintf("%s", data->set.str[STRING_MAIL_AUTH]);
else
/* Empty AUTH, RFC-2554, sect. 5 */
auth = strdup("<>");
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if(!auth) {
free(from);
return CURLE_OUT_OF_MEMORY;
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}
}
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/* Prepare the mime data if some. */
if(data->set.mimepost.kind != MIMEKIND_NONE) {
/* Use the whole structure as data. */
data->set.mimepost.flags &= ~MIME_BODY_ONLY;
/* Add external headers and mime version. */
curl_mime_headers(&data->set.mimepost, data->set.headers, 0);
result = Curl_mime_prepare_headers(&data->set.mimepost, NULL,
NULL, MIMESTRATEGY_MAIL);
if(!result)
if(!Curl_checkheaders(conn, "Mime-Version"))
result = Curl_mime_add_header(&data->set.mimepost.curlheaders,
"Mime-Version: 1.0");
/* Make sure we will read the entire mime structure. */
if(!result)
result = Curl_mime_rewind(&data->set.mimepost);
if(result) {
free(from);
free(auth);
return result;
}
data->state.infilesize = Curl_mime_size(&data->set.mimepost);
/* Read from mime structure. */
data->state.fread_func = (curl_read_callback) Curl_mime_read;
data->state.in = (void *) &data->set.mimepost;
}
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/* Calculate the optional SIZE parameter */
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if(conn->proto.smtpc.size_supported && data->state.infilesize > 0) {
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size = aprintf("%" CURL_FORMAT_CURL_OFF_T, data->state.infilesize);
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if(!size) {
free(from);
free(auth);
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return CURLE_OUT_OF_MEMORY;
}
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}
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/* Send the MAIL command */
if(!auth && !size)
result = Curl_pp_sendf(&conn->proto.smtpc.pp,
"MAIL FROM:%s", from);
else if(auth && !size)
result = Curl_pp_sendf(&conn->proto.smtpc.pp,
"MAIL FROM:%s AUTH=%s", from, auth);
else if(auth && size)
result = Curl_pp_sendf(&conn->proto.smtpc.pp,
"MAIL FROM:%s AUTH=%s SIZE=%s", from, auth, size);
else
result = Curl_pp_sendf(&conn->proto.smtpc.pp,
"MAIL FROM:%s SIZE=%s", from, size);
free(from);
free(auth);
free(size);
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if(!result)
state(conn, SMTP_MAIL);
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return result;
}
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/***********************************************************************
*
* smtp_perform_rcpt_to()
*
* Sends a RCPT TO command for a given recipient as part of the message upload
* process.
*/
static CURLcode smtp_perform_rcpt_to(struct connectdata *conn)
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{
CURLcode result = CURLE_OK;
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struct Curl_easy *data = conn->data;
struct SMTP *smtp = data->req.protop;
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/* Send the RCPT TO command */
if(smtp->rcpt->data[0] == '<')
result = Curl_pp_sendf(&conn->proto.smtpc.pp, "RCPT TO:%s",
smtp->rcpt->data);
else
result = Curl_pp_sendf(&conn->proto.smtpc.pp, "RCPT TO:<%s>",
smtp->rcpt->data);
if(!result)
state(conn, SMTP_RCPT);
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return result;
}
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/***********************************************************************
*
* smtp_perform_quit()
*
* Performs the quit action prior to sclose() being called.
*/
static CURLcode smtp_perform_quit(struct connectdata *conn)
{
CURLcode result = CURLE_OK;
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/* Send the QUIT command */
result = Curl_pp_sendf(&conn->proto.smtpc.pp, "%s", "QUIT");
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if(!result)
state(conn, SMTP_QUIT);
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return result;
}
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/* For the initial server greeting */
static CURLcode smtp_state_servergreet_resp(struct connectdata *conn,
int smtpcode,
smtpstate instate)
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{
CURLcode result = CURLE_OK;
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struct Curl_easy *data = conn->data;
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(void)instate; /* no use for this yet */
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if(smtpcode/100 != 2) {
failf(data, "Got unexpected smtp-server response: %d", smtpcode);
result = CURLE_WEIRD_SERVER_REPLY;
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}
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else
result = smtp_perform_ehlo(conn);
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return result;
}
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/* For STARTTLS responses */
static CURLcode smtp_state_starttls_resp(struct connectdata *conn,
int smtpcode,
smtpstate instate)
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{
CURLcode result = CURLE_OK;
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struct Curl_easy *data = conn->data;
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(void)instate; /* no use for this yet */
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if(smtpcode != 220) {
if(data->set.use_ssl != CURLUSESSL_TRY) {
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failf(data, "STARTTLS denied, code %d", smtpcode);
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result = CURLE_USE_SSL_FAILED;
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}
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else
result = smtp_perform_authentication(conn);
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}
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else
result = smtp_perform_upgrade_tls(conn);
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return result;
}
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/* For EHLO responses */
static CURLcode smtp_state_ehlo_resp(struct connectdata *conn, int smtpcode,
smtpstate instate)
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{
CURLcode result = CURLE_OK;
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struct Curl_easy *data = conn->data;
struct smtp_conn *smtpc = &conn->proto.smtpc;
const char *line = data->state.buffer;
size_t len = strlen(line);
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(void)instate; /* no use for this yet */
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if(smtpcode/100 != 2 && smtpcode != 1) {
if(data->set.use_ssl <= CURLUSESSL_TRY || conn->ssl[FIRSTSOCKET].use)
result = smtp_perform_helo(conn);
else {
failf(data, "Remote access denied: %d", smtpcode);
result = CURLE_REMOTE_ACCESS_DENIED;
}
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}
else {
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line += 4;
len -= 4;
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/* Does the server support the STARTTLS capability? */
if(len >= 8 && !memcmp(line, "STARTTLS", 8))
smtpc->tls_supported = TRUE;
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/* Does the server support the SIZE capability? */
else if(len >= 4 && !memcmp(line, "SIZE", 4))
smtpc->size_supported = TRUE;
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/* Does the server support authentication? */
else if(len >= 5 && !memcmp(line, "AUTH ", 5)) {
smtpc->auth_supported = TRUE;
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/* Advance past the AUTH keyword */
line += 5;
len -= 5;
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/* Loop through the data line */
for(;;) {
size_t llen;
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size_t wordlen;
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unsigned int mechbit;
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while(len &&
(*line == ' ' || *line == '\t' ||
*line == '\r' || *line == '\n')) {
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line++;
len--;
}
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if(!len)
break;
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/* Extract the word */
for(wordlen = 0; wordlen < len && line[wordlen] != ' ' &&
line[wordlen] != '\t' && line[wordlen] != '\r' &&
line[wordlen] != '\n';)
wordlen++;
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/* Test the word for a matching authentication mechanism */
mechbit = Curl_sasl_decode_mech(line, wordlen, &llen);
if(mechbit && llen == wordlen)
smtpc->sasl.authmechs |= mechbit;
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line += wordlen;
len -= wordlen;
}
}
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if(smtpcode != 1) {
if(data->set.use_ssl && !conn->ssl[FIRSTSOCKET].use) {
/* We don't have a SSL/TLS connection yet, but SSL is requested */
if(smtpc->tls_supported)
/* Switch to TLS connection now */
result = smtp_perform_starttls(conn);
else if(data->set.use_ssl == CURLUSESSL_TRY)
/* Fallback and carry on with authentication */
result = smtp_perform_authentication(conn);
else {
failf(data, "STARTTLS not supported.");
result = CURLE_USE_SSL_FAILED;
}
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}
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else
result = smtp_perform_authentication(conn);
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}
}
return result;
}
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/* For HELO responses */
static CURLcode smtp_state_helo_resp(struct connectdata *conn, int smtpcode,
smtpstate instate)
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{
CURLcode result = CURLE_OK;
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struct Curl_easy *data = conn->data;
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(void)instate; /* no use for this yet */
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if(smtpcode/100 != 2) {
failf(data, "Remote access denied: %d", smtpcode);
result = CURLE_REMOTE_ACCESS_DENIED;
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}
else
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/* End of connect phase */
state(conn, SMTP_STOP);
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return result;
}
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/* For SASL authentication responses */
static CURLcode smtp_state_auth_resp(struct connectdata *conn,
int smtpcode,
smtpstate instate)
{
CURLcode result = CURLE_OK;
struct Curl_easy *data = conn->data;
struct smtp_conn *smtpc = &conn->proto.smtpc;
saslprogress progress;
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(void)instate; /* no use for this yet */
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result = Curl_sasl_continue(&smtpc->sasl, conn, smtpcode, &progress);
if(!result)
switch(progress) {
case SASL_DONE:
state(conn, SMTP_STOP); /* Authenticated */
break;
case SASL_IDLE: /* No mechanism left after cancellation */
failf(data, "Authentication cancelled");
result = CURLE_LOGIN_DENIED;
break;
default:
break;
}
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return result;
}
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/* For command responses */
static CURLcode smtp_state_command_resp(struct connectdata *conn, int smtpcode,
smtpstate instate)
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{
CURLcode result = CURLE_OK;
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struct Curl_easy *data = conn->data;
struct SMTP *smtp = data->req.protop;
char *line = data->state.buffer;
size_t len = strlen(line);
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(void)instate; /* no use for this yet */
if((smtp->rcpt && smtpcode/100 != 2 && smtpcode != 553 && smtpcode != 1) ||
(!smtp->rcpt && smtpcode/100 != 2 && smtpcode != 1)) {
failf(data, "Command failed: %d", smtpcode);
result = CURLE_RECV_ERROR;
}
else {
/* Temporarily add the LF character back and send as body to the client */
if(!data->set.opt_no_body) {
line[len] = '\n';
result = Curl_client_write(conn, CLIENTWRITE_BODY, line, len + 1);
line[len] = '\0';
}
if(smtpcode != 1) {
if(smtp->rcpt) {
smtp->rcpt = smtp->rcpt->next;
if(smtp->rcpt) {
/* Send the next command */
result = smtp_perform_command(conn);
}
else
/* End of DO phase */
state(conn, SMTP_STOP);
}
else
/* End of DO phase */
state(conn, SMTP_STOP);
}
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}
return result;
}
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/* For MAIL responses */
static CURLcode smtp_state_mail_resp(struct connectdata *conn, int smtpcode,
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smtpstate instate)
{
CURLcode result = CURLE_OK;
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struct Curl_easy *data = conn->data;
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(void)instate; /* no use for this yet */
if(smtpcode/100 != 2) {
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failf(data, "MAIL failed: %d", smtpcode);
result = CURLE_SEND_ERROR;
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}
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else
/* Start the RCPT TO command */
result = smtp_perform_rcpt_to(conn);
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return result;
}
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/* For RCPT responses */
static CURLcode smtp_state_rcpt_resp(struct connectdata *conn, int smtpcode,
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smtpstate instate)
{
CURLcode result = CURLE_OK;
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struct Curl_easy *data = conn->data;
struct SMTP *smtp = data->req.protop;
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(void)instate; /* no use for this yet */
if(smtpcode/100 != 2) {
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failf(data, "RCPT failed: %d", smtpcode);
result = CURLE_SEND_ERROR;
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}
else {
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smtp->rcpt = smtp->rcpt->next;
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if(smtp->rcpt)
/* Send the next RCPT TO command */
result = smtp_perform_rcpt_to(conn);
else {
/* Send the DATA command */
result = Curl_pp_sendf(&conn->proto.smtpc.pp, "%s", "DATA");
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if(!result)
state(conn, SMTP_DATA);
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}
}
return result;
}
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/* For DATA response */
static CURLcode smtp_state_data_resp(struct connectdata *conn, int smtpcode,
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smtpstate instate)
{
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CURLcode result = CURLE_OK;
struct Curl_easy *data = conn->data;
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(void)instate; /* no use for this yet */
if(smtpcode != 354) {
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failf(data, "DATA failed: %d", smtpcode);
result = CURLE_SEND_ERROR;
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}
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else {
/* Set the progress upload size */
Curl_pgrsSetUploadSize(data, data->state.infilesize);
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/* SMTP upload */
Curl_setup_transfer(conn, -1, -1, FALSE, NULL, FIRSTSOCKET, NULL);
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/* End of DO phase */
state(conn, SMTP_STOP);
}
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return result;
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}
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/* For POSTDATA responses, which are received after the entire DATA
part has been sent to the server */
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static CURLcode smtp_state_postdata_resp(struct connectdata *conn,
int smtpcode,
smtpstate instate)
{
CURLcode result = CURLE_OK;
(void)instate; /* no use for this yet */
if(smtpcode != 250)
result = CURLE_RECV_ERROR;
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/* End of DONE phase */
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state(conn, SMTP_STOP);
return result;
}
static CURLcode smtp_statemach_act(struct connectdata *conn)
{
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CURLcode result = CURLE_OK;
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curl_socket_t sock = conn->sock[FIRSTSOCKET];
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struct Curl_easy *data = conn->data;
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int smtpcode;
struct smtp_conn *smtpc = &conn->proto.smtpc;
struct pingpong *pp = &smtpc->pp;
size_t nread = 0;
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/* Busy upgrading the connection; right now all I/O is SSL/TLS, not SMTP */
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if(smtpc->state == SMTP_UPGRADETLS)
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return smtp_perform_upgrade_tls(conn);
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/* Flush any data that needs to be sent */
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if(pp->sendleft)
return Curl_pp_flushsend(pp);
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do {
/* Read the response from the server */
result = Curl_pp_readresp(sock, pp, &smtpcode, &nread);
if(result)
return result;
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/* Store the latest response for later retrieval if necessary */
if(smtpc->state != SMTP_QUIT && smtpcode != 1)
data->info.httpcode = smtpcode;
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if(!smtpcode)
break;
/* We have now received a full SMTP server response */
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switch(smtpc->state) {
case SMTP_SERVERGREET:
result = smtp_state_servergreet_resp(conn, smtpcode, smtpc->state);
break;
case SMTP_EHLO:
result = smtp_state_ehlo_resp(conn, smtpcode, smtpc->state);
break;
case SMTP_HELO:
result = smtp_state_helo_resp(conn, smtpcode, smtpc->state);
break;
case SMTP_STARTTLS:
result = smtp_state_starttls_resp(conn, smtpcode, smtpc->state);
break;
case SMTP_AUTH:
result = smtp_state_auth_resp(conn, smtpcode, smtpc->state);
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break;
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case SMTP_COMMAND:
result = smtp_state_command_resp(conn, smtpcode, smtpc->state);
break;
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case SMTP_MAIL:
result = smtp_state_mail_resp(conn, smtpcode, smtpc->state);
break;
case SMTP_RCPT:
result = smtp_state_rcpt_resp(conn, smtpcode, smtpc->state);
break;
case SMTP_DATA:
result = smtp_state_data_resp(conn, smtpcode, smtpc->state);
break;
case SMTP_POSTDATA:
result = smtp_state_postdata_resp(conn, smtpcode, smtpc->state);
break;
case SMTP_QUIT:
/* fallthrough, just stop! */
default:
/* internal error */
state(conn, SMTP_STOP);
break;
}
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} while(!result && smtpc->state != SMTP_STOP && Curl_pp_moredata(pp));
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return result;
}
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/* Called repeatedly until done from multi.c */
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static CURLcode smtp_multi_statemach(struct connectdata *conn, bool *done)
{
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CURLcode result = CURLE_OK;
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struct smtp_conn *smtpc = &conn->proto.smtpc;
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if((conn->handler->flags & PROTOPT_SSL) && !smtpc->ssldone) {
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result = Curl_ssl_connect_nonblocking(conn, FIRSTSOCKET, &smtpc->ssldone);
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if(result || !smtpc->ssldone)
return result;
}
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result = Curl_pp_statemach(&smtpc->pp, FALSE);
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*done = (smtpc->state == SMTP_STOP) ? TRUE : FALSE;
return result;
}
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static CURLcode smtp_block_statemach(struct connectdata *conn)
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{
CURLcode result = CURLE_OK;
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struct smtp_conn *smtpc = &conn->proto.smtpc;
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while(smtpc->state != SMTP_STOP && !result)
result = Curl_pp_statemach(&smtpc->pp, TRUE);
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return result;
}
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/* Allocate and initialize the SMTP struct for the current Curl_easy if
required */
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static CURLcode smtp_init(struct connectdata *conn)
{
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CURLcode result = CURLE_OK;
struct Curl_easy *data = conn->data;
struct SMTP *smtp;
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smtp = data->req.protop = calloc(sizeof(struct SMTP), 1);
if(!smtp)
result = CURLE_OUT_OF_MEMORY;
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return result;
}
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/* For the SMTP "protocol connect" and "doing" phases only */
static int smtp_getsock(struct connectdata *conn, curl_socket_t *socks,
int numsocks)
{
return Curl_pp_getsock(&conn->proto.smtpc.pp, socks, numsocks);
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}
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/***********************************************************************
*
* smtp_connect()
*
* This function should do everything that is to be considered a part of
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* the connection phase.
*
* The variable pointed to by 'done' will be TRUE if the protocol-layer
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* connect phase is done when this function returns, or FALSE if not.
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*/
static CURLcode smtp_connect(struct connectdata *conn, bool *done)
{
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CURLcode result = CURLE_OK;
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struct smtp_conn *smtpc = &conn->proto.smtpc;
struct pingpong *pp = &smtpc->pp;
*done = FALSE; /* default to not done yet */
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/* We always support persistent connections in SMTP */
connkeep(conn, "SMTP default");
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/* Set the default response time-out */
pp->response_time = RESP_TIMEOUT;
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pp->statemach_act = smtp_statemach_act;
pp->endofresp = smtp_endofresp;
pp->conn = conn;
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/* Initialize the SASL storage */
Curl_sasl_init(&smtpc->sasl, &saslsmtp);
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/* Initialise the pingpong layer */
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Curl_pp_init(pp);
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/* Parse the URL options */
result = smtp_parse_url_options(conn);
if(result)
return result;
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/* Parse the URL path */
result = smtp_parse_url_path(conn);
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if(result)
return result;
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/* Start off waiting for the server greeting response */
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state(conn, SMTP_SERVERGREET);
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result = smtp_multi_statemach(conn, done);
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return result;
}
/***********************************************************************
*
* smtp_done()
*
* The DONE function. This does what needs to be done after a single DO has
* performed.
*
* Input argument is already checked for validity.
*/
static CURLcode smtp_done(struct connectdata *conn, CURLcode status,
bool premature)
{
CURLcode result = CURLE_OK;
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struct Curl_easy *data = conn->data;
struct SMTP *smtp = data->req.protop;
struct pingpong *pp = &conn->proto.smtpc.pp;
char *eob;
ssize_t len;
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ssize_t bytes_written;
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(void)premature;
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if(!smtp || !pp->conn)
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return CURLE_OK;
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/* Cleanup our per-request based variables */
Curl_safefree(smtp->custom);
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if(status) {
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connclose(conn, "SMTP done with bad status"); /* marked for closure */
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result = status; /* use the already set error code */
}
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else if(!data->set.connect_only && data->set.mail_rcpt &&
(data->set.upload || data->set.mimepost.kind)) {
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/* Calculate the EOB taking into account any terminating CRLF from the
previous line of the email or the CRLF of the DATA command when there
is "no mail data". RFC-5321, sect. 4.1.1.4.
Note: As some SSL backends, such as OpenSSL, will cause Curl_write() to
fail when using a different pointer following a previous write, that
returned CURLE_AGAIN, we duplicate the EOB now rather than when the
bytes written doesn't equal len. */
if(smtp->trailing_crlf || !conn->data->state.infilesize) {
eob = strdup(SMTP_EOB + 2);
len = SMTP_EOB_LEN - 2;
}
else {
eob = strdup(SMTP_EOB);
len = SMTP_EOB_LEN;
}
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if(!eob)
return CURLE_OUT_OF_MEMORY;
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/* Send the end of block data */
result = Curl_write(conn, conn->writesockfd, eob, len, &bytes_written);
if(result) {
free(eob);
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return result;
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}
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if(bytes_written != len) {
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/* The whole chunk was not sent so keep it around and adjust the
pingpong structure accordingly */
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pp->sendthis = eob;
pp->sendsize = len;
pp->sendleft = len - bytes_written;
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}
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else {
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/* Successfully sent so adjust the response timeout relative to now */
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pp->response = Curl_now();
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free(eob);
}
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state(conn, SMTP_POSTDATA);
/* Run the state-machine
TODO: when the multi interface is used, this _really_ should be using
the smtp_multi_statemach function but we have no general support for
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non-blocking DONE operations!
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*/
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result = smtp_block_statemach(conn);
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}
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/* Clear the transfer mode for the next request */
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smtp->transfer = FTPTRANSFER_BODY;
return result;
}
/***********************************************************************
*
* smtp_perform()
*
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* This is the actual DO function for SMTP. Transfer a mail, send a command
* or get some data according to the options previously setup.
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*/
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static CURLcode smtp_perform(struct connectdata *conn, bool *connected,
bool *dophase_done)
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{
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/* This is SMTP and no proxy */
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CURLcode result = CURLE_OK;
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struct Curl_easy *data = conn->data;
struct SMTP *smtp = data->req.protop;
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DEBUGF(infof(conn->data, "DO phase starts\n"));
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if(data->set.opt_no_body) {
/* Requested no body means no transfer */
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smtp->transfer = FTPTRANSFER_INFO;
}
*dophase_done = FALSE; /* not done yet */
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/* Store the first recipient (or NULL if not specified) */
smtp->rcpt = data->set.mail_rcpt;
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/* Initial data character is the first character in line: it is implicitly
preceded by a virtual CRLF. */
smtp->trailing_crlf = TRUE;
smtp->eob = 2;
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/* Start the first command in the DO phase */
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if((data->set.upload || data->set.mimepost.kind) && data->set.mail_rcpt)
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/* MAIL transfer */
result = smtp_perform_mail(conn);
else
/* SMTP based command (VRFY, EXPN, NOOP, RSET or HELP) */
result = smtp_perform_command(conn);
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if(result)
return result;
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/* Run the state-machine */
result = smtp_multi_statemach(conn, dophase_done);
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*connected = conn->bits.tcpconnect[FIRSTSOCKET];
if(*dophase_done)
DEBUGF(infof(conn->data, "DO phase is complete\n"));
return result;
}
/***********************************************************************
*
* smtp_do()
*
* This function is registered as 'curl_do' function. It decodes the path
* parts etc as a wrapper to the actual DO function (smtp_perform).
*
* The input argument is already checked for validity.
*/
static CURLcode smtp_do(struct connectdata *conn, bool *done)
{
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CURLcode result = CURLE_OK;
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*done = FALSE; /* default to false */
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/* Parse the custom request */
result = smtp_parse_custom_request(conn);
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if(result)
return result;
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result = smtp_regular_transfer(conn, done);
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return result;
}
/***********************************************************************
*
* smtp_disconnect()
*
* Disconnect from an SMTP server. Cleanup protocol-specific per-connection
* resources. BLOCKING.
*/
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static CURLcode smtp_disconnect(struct connectdata *conn, bool dead_connection)
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{
struct smtp_conn *smtpc = &conn->proto.smtpc;
/* We cannot send quit unconditionally. If this connection is stale or
bad in any way, sending quit and waiting around here will make the
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disconnect wait in vain and cause more problems than we need to. */
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/* The SMTP session may or may not have been allocated/setup at this
point! */
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if(!dead_connection && smtpc->pp.conn && smtpc->pp.conn->bits.protoconnstart)
if(!smtp_perform_quit(conn))
(void)smtp_block_statemach(conn); /* ignore errors on QUIT */
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/* Disconnect from the server */
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Curl_pp_disconnect(&smtpc->pp);
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/* Cleanup the SASL module */
Curl_sasl_cleanup(conn, smtpc->sasl.authused);
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/* Cleanup our connection based variables */
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Curl_safefree(smtpc->domain);
return CURLE_OK;
}
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/* Call this when the DO phase has completed */
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static CURLcode smtp_dophase_done(struct connectdata *conn, bool connected)
{
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struct SMTP *smtp = conn->data->req.protop;
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(void)connected;
if(smtp->transfer != FTPTRANSFER_BODY)
/* no data to transfer */
Curl_setup_transfer(conn, -1, -1, FALSE, NULL, -1, NULL);
return CURLE_OK;
}
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/* Called from multi.c while DOing */
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static CURLcode smtp_doing(struct connectdata *conn, bool *dophase_done)
{
CURLcode result = smtp_multi_statemach(conn, dophase_done);
if(result)
DEBUGF(infof(conn->data, "DO phase failed\n"));
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else if(*dophase_done) {
result = smtp_dophase_done(conn, FALSE /* not connected */);
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DEBUGF(infof(conn->data, "DO phase is complete\n"));
}
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return result;
}
/***********************************************************************
*
* smtp_regular_transfer()
*
* The input argument is already checked for validity.
*
* Performs all commands done before a regular transfer between a local and a
* remote host.
*/
static CURLcode smtp_regular_transfer(struct connectdata *conn,
bool *dophase_done)
{
CURLcode result = CURLE_OK;
bool connected = FALSE;
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struct Curl_easy *data = conn->data;
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/* Make sure size is unknown at this point */
data->req.size = -1;
/* Set the progress data */
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Curl_pgrsSetUploadCounter(data, 0);
Curl_pgrsSetDownloadCounter(data, 0);
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Curl_pgrsSetUploadSize(data, -1);
Curl_pgrsSetDownloadSize(data, -1);
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/* Carry out the perform */
result = smtp_perform(conn, &connected, dophase_done);
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/* Perform post DO phase operations if necessary */
if(!result && *dophase_done)
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result = smtp_dophase_done(conn, connected);
return result;
}
static CURLcode smtp_setup_connection(struct connectdata *conn)
{
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CURLcode result;
/* Clear the TLS upgraded flag */
conn->tls_upgraded = FALSE;
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/* Initialise the SMTP layer */
result = smtp_init(conn);
if(result)
return result;
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return CURLE_OK;
}
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/***********************************************************************
*
* smtp_parse_url_options()
*
* Parse the URL login options.
*/
static CURLcode smtp_parse_url_options(struct connectdata *conn)
{
CURLcode result = CURLE_OK;
struct smtp_conn *smtpc = &conn->proto.smtpc;
const char *ptr = conn->options;
smtpc->sasl.resetprefs = TRUE;
while(!result && ptr && *ptr) {
const char *key = ptr;
const char *value;
while(*ptr && *ptr != '=')
ptr++;
value = ptr + 1;
while(*ptr && *ptr != ';')
ptr++;
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if(strncasecompare(key, "AUTH=", 5))
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result = Curl_sasl_parse_url_auth_option(&smtpc->sasl,
value, ptr - value);
else
result = CURLE_URL_MALFORMAT;
if(*ptr == ';')
ptr++;
}
return result;
}
/***********************************************************************
*
* smtp_parse_url_path()
*
* Parse the URL path into separate path components.
*/
static CURLcode smtp_parse_url_path(struct connectdata *conn)
{
/* The SMTP struct is already initialised in smtp_connect() */
struct Curl_easy *data = conn->data;
struct smtp_conn *smtpc = &conn->proto.smtpc;
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const char *path = &data->state.up.path[1]; /* skip leading path */
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char localhost[HOSTNAME_MAX + 1];
/* Calculate the path if necessary */
if(!*path) {
if(!Curl_gethostname(localhost, sizeof(localhost)))
path = localhost;
else
path = "localhost";
}
/* URL decode the path and use it as the domain in our EHLO */
return Curl_urldecode(conn->data, path, 0, &smtpc->domain, NULL, TRUE);
}
/***********************************************************************
*
* smtp_parse_custom_request()
*
* Parse the custom request.
*/
static CURLcode smtp_parse_custom_request(struct connectdata *conn)
{
CURLcode result = CURLE_OK;
struct Curl_easy *data = conn->data;
struct SMTP *smtp = data->req.protop;
const char *custom = data->set.str[STRING_CUSTOMREQUEST];
/* URL decode the custom request */
if(custom)
result = Curl_urldecode(data, custom, 0, &smtp->custom, NULL, TRUE);
return result;
}
CURLcode Curl_smtp_escape_eob(struct connectdata *conn, const ssize_t nread)
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{
/* When sending a SMTP payload we must detect CRLF. sequences making sure
they are sent as CRLF.. instead, as a . on the beginning of a line will
be deleted by the server when not part of an EOB terminator and a
genuine CRLF.CRLF which isn't escaped will wrongly be detected as end of
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data by the server
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*/
ssize_t i;
ssize_t si;
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struct Curl_easy *data = conn->data;
struct SMTP *smtp = data->req.protop;
char *scratch = data->state.scratch;
char *newscratch = NULL;
char *oldscratch = NULL;
size_t eob_sent;
/* Do we need to allocate a scratch buffer? */
if(!scratch || data->set.crlf) {
oldscratch = scratch;
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scratch = newscratch = malloc(2 * data->set.upload_buffer_size);
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if(!newscratch) {
failf(data, "Failed to alloc scratch buffer!");
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return CURLE_OUT_OF_MEMORY;
}
}
2019-01-03 15:09:10 +00:00
DEBUGASSERT(data->set.upload_buffer_size >= (size_t)nread);
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/* Have we already sent part of the EOB? */
eob_sent = smtp->eob;
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/* This loop can be improved by some kind of Boyer-Moore style of
approach but that is saved for later... */
for(i = 0, si = 0; i < nread; i++) {
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if(SMTP_EOB[smtp->eob] == data->req.upload_fromhere[i]) {
smtp->eob++;
/* Is the EOB potentially the terminating CRLF? */
if(2 == smtp->eob || SMTP_EOB_LEN == smtp->eob)
smtp->trailing_crlf = TRUE;
else
smtp->trailing_crlf = FALSE;
}
else if(smtp->eob) {
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/* A previous substring matched so output that first */
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memcpy(&scratch[si], &SMTP_EOB[eob_sent], smtp->eob - eob_sent);
si += smtp->eob - eob_sent;
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/* Then compare the first byte */
if(SMTP_EOB[0] == data->req.upload_fromhere[i])
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smtp->eob = 1;
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else
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smtp->eob = 0;
eob_sent = 0;
/* Reset the trailing CRLF flag as there was more data */
smtp->trailing_crlf = FALSE;
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}
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/* Do we have a match for CRLF. as per RFC-5321, sect. 4.5.2 */
if(SMTP_EOB_FIND_LEN == smtp->eob) {
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/* Copy the replacement data to the target buffer */
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memcpy(&scratch[si], &SMTP_EOB_REPL[eob_sent],
SMTP_EOB_REPL_LEN - eob_sent);
si += SMTP_EOB_REPL_LEN - eob_sent;
smtp->eob = 0;
eob_sent = 0;
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}
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else if(!smtp->eob)
scratch[si++] = data->req.upload_fromhere[i];
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}
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if(smtp->eob - eob_sent) {
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/* A substring matched before processing ended so output that now */
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memcpy(&scratch[si], &SMTP_EOB[eob_sent], smtp->eob - eob_sent);
si += smtp->eob - eob_sent;
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}
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/* Only use the new buffer if we replaced something */
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if(si != nread) {
/* Upload from the new (replaced) buffer instead */
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data->req.upload_fromhere = scratch;
/* Save the buffer so it can be freed later */
data->state.scratch = scratch;
/* Free the old scratch buffer */
free(oldscratch);
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/* Set the new amount too */
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data->req.upload_present = si;
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}
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else
free(newscratch);
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return CURLE_OK;
}
#endif /* CURL_DISABLE_SMTP */