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/*****************************************************************************
* _ _ ____ _
* Project ___| | | | _ \| |
* / __| | | | |_) | |
* | (__| |_| | _ <| |___
* \___|\___/|_| \_\_____|
*
* Copyright (C) 2000, Daniel Stenberg, <daniel@haxx.se>, et al.
* In order to be useful for every potential user, curl and libcurl are
* dual-licensed under the MPL and the MIT/X-derivate licenses.
* 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 MPL or the MIT/X-derivate
* licenses. You may pick one of these licenses.
* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
* KIND, either express or implied.
* $Id$
*****************************************************************************/
#include <stdio.h>
#include <string.h>
#include <stdlib.h>
#include <ctype.h>
#include <errno.h>
#ifdef HAVE_UNISTD_H
#include <unistd.h>
#endif
#ifdef HAVE_SYS_SELECT_H
#include <sys/select.h>
#endif
#if defined(WIN32) && !defined(__GNUC__) || defined(__MINGW32__)
#include <winsock.h>
#else /* some kind of unix */
#ifdef HAVE_ARPA_INET_H
#include <arpa/inet.h>
#endif
#include <sys/utsname.h>
#ifdef VMS
#include <inet.h>
#endif
#if defined(WIN32) && defined(__GNUC__) || defined(__MINGW32__)
#include <errno.h>
#endif
#include <curl/curl.h>
#include "urldata.h"
#include "sendf.h"
#include "if2ip.h"
#include "hostip.h"
#include "progress.h"
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#include "transfer.h"
#include "http.h" /* for HTTP proxy tunnel stuff */
#include "ftp.h"
#ifdef KRB4
#include "security.h"
#include "krb4.h"
#define _MPRINTF_REPLACE /* use our functions only */
#include <curl/mprintf.h>
/* The last #include file should be: */
#ifdef MALLOCDEBUG
#include "memdebug.h"
#endif
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static CURLcode ftp_sendquote(struct connectdata *conn, struct curl_slist *quote);
static CURLcode ftp_cwd(struct connectdata *conn, char *path);
/* easy-to-use macro: */
#define ftpsendf Curl_ftpsendf
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static CURLcode AllowServerConnect(struct SessionHandle *data,
int sock)
{
fd_set rdset;
struct timeval dt;
FD_ZERO(&rdset);
FD_SET(sock, &rdset);
/* we give the server 10 seconds to connect to us */
dt.tv_sec = 10;
dt.tv_usec = 0;
case -1: /* error */
/* let's die here */
failf(data, "Error while waiting for server connect");
case 0: /* timeout */
/* let's die here */
failf(data, "Timeout while waiting for server connect");
default:
/* we have received data here */
{
int s;
size_t size = sizeof(struct sockaddr_in);
struct sockaddr_in add;
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getsockname(sock, (struct sockaddr *) &add, (socklen_t *)&size);
s=accept(sock, (struct sockaddr *) &add, (socklen_t *)&size);
sclose(sock); /* close the first socket */
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if (-1 == s) {
/* DIE! */
failf(data, "Error accept()ing server connect");
return CURLE_FTP_PORT_FAILED;
}
infof(data, "Connection accepted from server\n");
}
/* --- parse FTP server responses --- */
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/*
* Curl_GetFTPResponse() is supposed to be invoked after each command sent to
* a remote FTP server. This function will wait and read all lines of the
* response and extract the relevant return code for the invoking function.
*/
int Curl_GetFTPResponse(char *buf,
struct connectdata *conn,
int *ftpcode)
{
/* Brand new implementation.
* We cannot read just one byte per read() and then go back to select()
* as it seems that the OpenSSL read() stuff doesn't grok that properly.
*
* Alas, read as much as possible, split up into lines, use the ending
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* line in a response or continue reading. */
int sockfd = conn->firstsocket;
int nread; /* total size read */
int perline; /* count bytes per line */
bool keepon=TRUE;
ssize_t gotbytes;
char *ptr;
int timeout = 3600; /* default timeout in seconds */
struct timeval interval;
fd_set rkeepfd;
fd_set readfd;
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struct SessionHandle *data = conn->data;
char *line_start;
int code=0; /* default "error code" to return */
#define SELECT_OK 0
#define SELECT_ERROR 1
#define SELECT_TIMEOUT 2
int error = SELECT_OK;
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if (ftpcode)
*ftpcode = 0; /* 0 for errors */
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if(data->set.timeout) {
/* if timeout is requested, find out how much remaining time we have */
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timeout = data->set.timeout - /* timeout time */
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(Curl_tvlong(Curl_tvnow()) - Curl_tvlong(conn->now)); /* spent time */
if(timeout <=0 ) {
failf(data, "Transfer aborted due to timeout");
return -SELECT_TIMEOUT; /* already too little time */
}
}
FD_ZERO (&readfd); /* clear it */
FD_SET (sockfd, &readfd); /* read socket */
/* get this in a backup variable to be able to restore it on each lap in the
select() loop */
rkeepfd = readfd;
ptr=buf;
line_start = buf;
nread=0;
perline=0;
keepon=TRUE;
while((nread<BUFSIZE) && (keepon && !error)) {
readfd = rkeepfd; /* set every lap */
interval.tv_sec = timeout;
interval.tv_usec = 0;
switch (select (sockfd+1, &readfd, NULL, NULL, &interval)) {
case -1: /* select() error, stop reading */
error = SELECT_ERROR;
failf(data, "Transfer aborted due to select() error");
break;
case 0: /* timeout */
error = SELECT_TIMEOUT;
failf(data, "Transfer aborted due to timeout");
break;
default:
/*
* This code previously didn't use the kerberos sec_read() code
* to read, but when we use Curl_read() it may do so. Do confirm
* that this is still ok and then remove this comment!
*/
if(CURLE_OK != Curl_read(conn, sockfd, ptr, BUFSIZE-nread, &gotbytes))
keepon = FALSE;
else if(gotbytes <= 0) {
keepon = FALSE;
error = SELECT_ERROR;
failf(data, "Connection aborted");
}
else {
/* we got a whole chunk of data, which can be anything from one
* byte to a set of lines and possible just a piece of the last
* line */
int i;
nread += gotbytes;
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for(i = 0; i < gotbytes; ptr++, i++) {
perline++;
if(*ptr=='\n') {
/* a newline is CRLF in ftp-talk, so the CR is ignored as
the line isn't really terminated until the LF comes */
/* output debug output if that is requested */
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if(data->set.verbose) {
fputs("< ", data->set.err);
fwrite(line_start, perline, 1, data->set.err);
/* no need to output LF here, it is part of the data */
}
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#define lastline(line) (isdigit((int)line[0]) && isdigit((int)line[1]) && \
isdigit((int)line[2]) && (' ' == line[3]))
if(perline>3 && lastline(line_start)) {
/* This is the end of the last line, copy the last
* line to the start of the buffer and zero terminate,
* for old times sake (and krb4)! */
int i;
for(meow=line_start, i=0; meow<ptr; meow++, i++)
buf[i] = *meow;
meow[i]=0; /* zero terminate */
keepon=FALSE;
break;
}
perline=0; /* line starts over here */
line_start = ptr+1;
}
}
}
break;
} /* switch */
} /* while there's buffer left and loop is requested */
if(!error)
code = atoi(buf);
#if KRB4
/* handle the security-oriented responses 6xx ***/
/* FIXME: some errorchecking perhaps... ***/
switch(code) {
case 631:
Curl_sec_read_msg(conn, buf, prot_safe);
break;
case 632:
Curl_sec_read_msg(conn, buf, prot_private);
break;
case 633:
Curl_sec_read_msg(conn, buf, prot_confidential);
break;
default:
/* normal ftp stuff we pass through! */
break;
}
#endif
if(error)
return -error;
if(ftpcode)
*ftpcode=code; /* return the initial number like this */
return nread; /* total amount of bytes read */
}
#ifndef ENABLE_IPV6
/*
* This function is only used by code that works on IPv4. When we add proper
* support for that functionality with IPv6, this function can go in again.
*/
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static char *getmyhost(char *buf, int buf_size)
#if defined(HAVE_GETHOSTNAME)
gethostname(buf, buf_size);
#elif defined(HAVE_UNAME)
strncpy(buf, uname(&ugnm) < 0 ? "localhost" : ugnm.nodename, buf_size - 1);
buf[buf_size - 1] = '\0';
#else
/* We have no means of finding the local host name! */
strncpy(buf, "localhost", buf_size);
buf[buf_size - 1] = '\0';
#endif /* ipv4-only function */
/* ftp_connect() should do everything that is to be considered a part
of the connection phase. */
CURLcode Curl_ftp_connect(struct connectdata *conn)
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int nread;
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struct SessionHandle *data=conn->data;
char *buf = data->state.buffer; /* this is our buffer */
ftp = (struct FTP *)malloc(sizeof(struct FTP));
if(!ftp)
return CURLE_OUT_OF_MEMORY;
memset(ftp, 0, sizeof(struct FTP));
/* We always support persistant connections on ftp */
conn->bits.close = FALSE;
/* get some initial data into the ftp struct */
ftp->bytecountp = &conn->bytecount;
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/* no need to duplicate them, the data struct won't change */
ftp->user = data->state.user;
ftp->passwd = data->state.passwd;
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if (data->set.tunnel_thru_httpproxy) {
/* We want "seamless" FTP operations through HTTP proxy tunnel */
result = Curl_ConnectHTTPProxyTunnel(conn, conn->firstsocket,
conn->hostname, conn->remote_port);
if(CURLE_OK != result)
return result;
}
if(conn->protocol & PROT_FTPS) {
/* FTPS is simply ftp with SSL for the control channel */
/* now, perform the SSL initialization for this socket */
result = Curl_SSLConnect(conn);
if(result)
return result;
/* The first thing we do is wait for the "220*" line: */
nread = Curl_GetFTPResponse(buf, conn, &ftpcode);
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if(nread < 0)
return CURLE_OPERATION_TIMEOUTED;
if(ftpcode != 220) {
failf(data, "This doesn't seem like a nice ftp-server response");
return CURLE_FTP_WEIRD_SERVER_REPLY;
#ifdef KRB4
/* if not anonymous login, try a secure login */
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if(data->set.krb4) {
/* request data protection level (default is 'clear') */
Curl_sec_request_prot(conn, "private");
/* We set private first as default, in case the line below fails to
set a valid level */
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Curl_sec_request_prot(conn, data->set.krb4_level);
if(Curl_sec_login(conn) != 0)
infof(data, "Logging in with password in cleartext!\n");
else
infof(data, "Authentication successful\n");
}
#endif
ftpsendf(conn, "USER %s", ftp->user);
nread = Curl_GetFTPResponse(buf, conn, &ftpcode);
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if(nread < 0)
return CURLE_OPERATION_TIMEOUTED;
if(ftpcode == 530) {
/* 530 User ... access denied
(the server denies to log the specified user) */
failf(data, "Access denied: %s", &buf[4]);
else if(ftpcode == 331) {
/* 331 Password required for ...
(the server requires to send the user's password too) */
ftpsendf(conn, "PASS %s", ftp->passwd);
nread = Curl_GetFTPResponse(buf, conn, &ftpcode);
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if(nread < 0)
return CURLE_OPERATION_TIMEOUTED;
if(ftpcode == 530) {
/* 530 Login incorrect.
(the username and/or the password are incorrect) */
failf(data, "the username and/or the password are incorrect");
return CURLE_FTP_USER_PASSWORD_INCORRECT;
else if(ftpcode == 230) {
/* 230 User ... logged in.
(user successfully logged in) */
infof(data, "We have successfully logged in\n");
}
else {
failf(data, "Odd return code after PASS");
else if(buf[0] == '2') {
/* 230 User ... logged in.
(the user logged in without password) */
infof(data, "We have successfully logged in\n");
#ifdef KRB4
/* we are logged in (with Kerberos)
* now set the requested protection level
*/
if(conn->sec_complete)
Curl_sec_set_protection_level(conn);
/* we may need to issue a KAUTH here to have access to the files
* do it if user supplied a password
*/
Curl_krb_kauth(conn);
}
else {
failf(data, "Odd return code after USER");
return CURLE_FTP_WEIRD_USER_REPLY;
}
/* send PWD to discover our entry point */
ftpsendf(conn, "PWD");
nread = Curl_GetFTPResponse(buf, conn, &ftpcode);
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if(nread < 0)
return CURLE_OPERATION_TIMEOUTED;
if(ftpcode == 257) {
char *dir = (char *)malloc(nread+1);
char *store=dir;
char *ptr=&buf[4]; /* start on the first letter */
/* Reply format is like
257<space>"<directory-name>"<space><commentary> and the RFC959 says
The directory name can contain any character; embedded double-quotes
should be escaped by double-quotes (the "quote-doubling" convention).
*/
if('\"' == *ptr) {
/* it started good */
ptr++;
while(ptr && *ptr) {
if('\"' == *ptr) {
if('\"' == ptr[1]) {
/* "quote-doubling" */
*store = ptr[1];
ptr++;
}
else {
/* end of path */
*store = '\0'; /* zero terminate */
break; /* get out of this loop */
}
}
else
*store = *ptr;
store++;
ptr++;
}
ftp->entrypath =dir; /* remember this */
infof(data, "Entry path is '%s'\n", ftp->entrypath);
}
else {
/* couldn't get the path */
}
}
else {
/* We couldn't read the PWD response! */
}
return CURLE_OK;
}
/* argument is already checked for validity */
CURLcode Curl_ftp_done(struct connectdata *conn)
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struct SessionHandle *data = conn->data;
struct FTP *ftp = conn->proto.ftp;
ssize_t nread;
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char *buf = data->state.buffer; /* this is our buffer */
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if(data->set.upload) {
if((-1 != data->set.infilesize) && (data->set.infilesize != *ftp->bytecountp)) {
failf(data, "Wrote only partial file (%d out of %d bytes)",
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*ftp->bytecountp, data->set.infilesize);
return CURLE_PARTIAL_FILE;
}
}
else {
if((-1 != conn->size) && (conn->size != *ftp->bytecountp) &&
(conn->maxdownload != *ftp->bytecountp)) {
failf(data, "Received only partial file: %d bytes", *ftp->bytecountp);
else if(!conn->bits.resume_done &&
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!data->set.no_body &&
(0 == *ftp->bytecountp)) {
failf(data, "No data was received!");
return CURLE_FTP_COULDNT_RETR_FILE;
}
}
#ifdef KRB4
Curl_sec_fflush_fd(conn, conn->secondarysocket);
/* shut down the socket to inform the server we're done */
sclose(conn->secondarysocket);
conn->secondarysocket = -1;
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if(!data->set.no_body && !conn->bits.resume_done) {
/* now let's see what the server says about the transfer we
just performed: */
nread = Curl_GetFTPResponse(buf, conn, &ftpcode);
if(nread < 0)
return CURLE_OPERATION_TIMEOUTED;
/* 226 Transfer complete, 250 Requested file action okay, completed. */
if((ftpcode != 226) && (ftpcode != 250)) {
failf(data, "server did not report OK, got %d", ftpcode);
return CURLE_FTP_WRITE_ERROR;
}
conn->bits.resume_done = FALSE; /* clean this for next connection */
/* Send any post-transfer QUOTE strings? */
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if(data->set.postquote) {
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CURLcode result = ftp_sendquote(conn, data->set.postquote);
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CURLcode ftp_sendquote(struct connectdata *conn, struct curl_slist *quote)
{
struct curl_slist *item;
ssize_t nread;
int ftpcode;
item = quote;
while (item) {
if (item->data) {
ftpsendf(conn, "%s", item->data);
nread = Curl_GetFTPResponse(
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conn->data->state.buffer, conn, &ftpcode);
if (nread < 0)
return CURLE_OPERATION_TIMEOUTED;
if (ftpcode >= 400) {
failf(conn->data, "QUOT string not accepted: %s", item->data);
return CURLE_FTP_QUOTE_ERROR;
}
}
item = item->next;
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CURLcode ftp_cwd(struct connectdata *conn, char *path)
ftpsendf(conn, "CWD %s", path);
nread = Curl_GetFTPResponse(
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conn->data->state.buffer, conn, &ftpcode);
if (nread < 0)
return CURLE_OPERATION_TIMEOUTED;
if (ftpcode != 250) {
failf(conn->data, "Couldn't cd to %s", path);
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static
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CURLcode ftp_getfiletime(struct connectdata *conn, char *file)
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{
CURLcode result=CURLE_OK;
int ftpcode; /* for ftp status */
ssize_t nread;
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char *buf = conn->data->state.buffer;
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/* we have requested to get the modified-time of the file, this is yet
again a grey area as the MDTM is not kosher RFC959 */
ftpsendf(conn, "MDTM %s", file);
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nread = Curl_GetFTPResponse(buf, conn, &ftpcode);
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if(nread < 0)
return CURLE_OPERATION_TIMEOUTED;
if(ftpcode == 213) {
/* we got a time. Format should be: "YYYYMMDDHHMMSS[.sss]" where the
last .sss part is optional and means fractions of a second */
int year, month, day, hour, minute, second;
if(6 == sscanf(buf+4, "%04d%02d%02d%02d%02d%02d",
&year, &month, &day, &hour, &minute, &second)) {
/* we have a time, reformat it */
time_t secs=time(NULL);
sprintf(buf, "%04d%02d%02d %02d:%02d:%02d",
year, month, day, hour, minute, second);
/* now, convert this into a time() value: */
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conn->data->info.filetime = curl_getdate(buf, &secs);
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}
else {
infof(conn->data, "unsupported MDTM reply format\n");
}
}
return result;
}
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static CURLcode ftp_transfertype(struct connectdata *conn,
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bool ascii)
{
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struct SessionHandle *data = conn->data;
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int ftpcode;
ssize_t nread;
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char *buf=data->state.buffer;
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ftpsendf(conn, "TYPE %s", ascii?"A":"I");
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nread = Curl_GetFTPResponse(buf, conn, &ftpcode);
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if(nread < 0)
return CURLE_OPERATION_TIMEOUTED;
if(ftpcode != 200) {
failf(data, "Couldn't set %s mode",
ascii?"ASCII":"binary");
return ascii? CURLE_FTP_COULDNT_SET_ASCII:CURLE_FTP_COULDNT_SET_BINARY;
}
return CURLE_OK;
}
static
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CURLcode ftp_getsize(struct connectdata *conn, char *file,
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ssize_t *size)
{
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struct SessionHandle *data = conn->data;
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int ftpcode;
ssize_t nread;
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char *buf=data->state.buffer;
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ftpsendf(conn, "SIZE %s", file);
nread = Curl_GetFTPResponse(buf, conn, &ftpcode);
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if(nread < 0)
return CURLE_OPERATION_TIMEOUTED;
if(ftpcode == 213) {
/* get the size from the ascii string: */
*size = atoi(buf+4);
}
else
return CURLE_FTP_COULDNT_GET_SIZE;
return CURLE_OK;
}
/***************************************************************************
*
* ftp_pasv_verbose()
*
* This function only outputs some informationals about this second connection
* when we've issued a PASV command before and thus we have connected to a
* possibly new IP address.
*
*/
static void
ftp_pasv_verbose(struct connectdata *conn,
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char *newhost, /* ascii version */
int port)
{
#ifndef ENABLE_IPV6
/*****************************************************************
*
* IPv4-only code section
*/
struct in_addr in;
struct hostent * answer;
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#ifdef HAVE_INET_NTOA_R
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char ntoa_buf[64];
#endif
char hostent_buf[8192];
#if defined(HAVE_INET_ADDR)
unsigned long address;
# if defined(HAVE_GETHOSTBYADDR_R)
int h_errnop;
# endif
address = inet_addr(newhost);
# ifdef HAVE_GETHOSTBYADDR_R
# ifdef HAVE_GETHOSTBYADDR_R_5
/* AIX, Digital Unix style:
extern int gethostbyaddr_r(char *addr, size_t len, int type,
struct hostent *htent, struct hostent_data *ht_data); */
/* Fred Noz helped me try this out, now it at least compiles! */
if(gethostbyaddr_r((char *) &address,
sizeof(address), AF_INET,
(struct hostent *)hostent_buf,
hostent_buf + sizeof(*answer)))
answer=NULL;
# endif
# ifdef HAVE_GETHOSTBYADDR_R_7
/* Solaris and IRIX */
answer = gethostbyaddr_r((char *) &address, sizeof(address), AF_INET,
(struct hostent *)hostent_buf,
hostent_buf + sizeof(*answer),
sizeof(hostent_buf) - sizeof(*answer),
&h_errnop);
# endif
# ifdef HAVE_GETHOSTBYADDR_R_8
/* Linux style */
if(gethostbyaddr_r((char *) &address, sizeof(address), AF_INET,
(struct hostent *)hostent_buf,
hostent_buf + sizeof(*answer),
sizeof(hostent_buf) - sizeof(*answer),
&answer,
&h_errnop))
answer=NULL; /* error */
# endif
# else
answer = gethostbyaddr((char *) &address, sizeof(address), AF_INET);
# endif
#else
answer = NULL;
#endif
(void) memcpy(&in.s_addr, addr, sizeof (Curl_ipconnect));
infof(conn->data, "Connecting to %s (%s) port %u\n",
answer?answer->h_name:newhost,
#if defined(HAVE_INET_NTOA_R)
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inet_ntoa_r(in, ntoa_buf, sizeof(ntoa_buf)),
#else
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inet_ntoa(in),
#endif
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port);
#else
/*****************************************************************
*
* IPv6-only code section
*/
char hbuf[NI_MAXHOST]; /* ~1KB */
char nbuf[NI_MAXHOST]; /* ~1KB */
char sbuf[NI_MAXSERV]; /* around 32 */
#ifdef NI_WITHSCOPEID
const int niflags = NI_NUMERICHOST | NI_NUMERICSERV | NI_WITHSCOPEID;
#else
const int niflags = NI_NUMERICHOST | NI_NUMERICSERV;
#endif
port = 0; /* unused, prevent warning */
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if (getnameinfo(addr->ai_addr, addr->ai_addrlen,
nbuf, sizeof(nbuf), sbuf, sizeof(sbuf), niflags)) {
snprintf(nbuf, sizeof(nbuf), "?");
snprintf(sbuf, sizeof(sbuf), "?");
}
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if (getnameinfo(addr->ai_addr, addr->ai_addrlen,
hbuf, sizeof(hbuf), NULL, 0, 0)) {
infof(conn->data, "Connecting to %s (%s) port %s\n", nbuf, newhost, sbuf);
}
else {
infof(conn->data, "Connecting to %s (%s) port %s\n", hbuf, nbuf, sbuf);
}
#endif
}
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/**********
* PORT is the ftp client's way of telling the server that *WE* open a port
* that we listen on an awaits the server to connect to. This is the opposite
* of PASV.
*/
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CURLcode ftp_use_port(struct connectdata *conn)
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struct SessionHandle *data=conn->data;
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ssize_t nread;
char *buf = data->state.buffer; /* this is our buffer */
int ftpcode; /* receive FTP response codes in this */
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/******************************************************************
*
* Here's a piece of IPv6-specific code coming up
*
*/
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struct addrinfo hints, *res, *ai;
struct sockaddr_storage ss;
socklen_t sslen;
char hbuf[NI_MAXHOST];
struct sockaddr *sa=(struct sockaddr *)&ss;
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const int niflags = NI_NUMERICHOST | NI_NUMERICSERV | NI_WITHSCOPEID;
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const int niflags = NI_NUMERICHOST | NI_NUMERICSERV;
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unsigned char *ap;
unsigned char *pp;
int alen, plen;
char portmsgbuf[4096], tmp[4096];
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const char *mode[] = { "EPRT", "LPRT", "PORT", NULL };
char **modep;
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/*
* we should use Curl_if2ip? given pickiness of recent ftpd,
* I believe we should use the same address as the control connection.
*/
sslen = sizeof(ss);
if (getsockname(conn->firstsocket, (struct sockaddr *)&ss, &sslen) < 0)
return CURLE_FTP_PORT_FAILED;
if (getnameinfo((struct sockaddr *)&ss, sslen, hbuf, sizeof(hbuf), NULL, 0,
niflags))
return CURLE_FTP_PORT_FAILED;
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memset(&hints, 0, sizeof(hints));
hints.ai_family = sa->sa_family;
/*hints.ai_family = ss.ss_family;
this way can be used if sockaddr_storage is properly defined, as glibc
2.1.X doesn't do*/
hints.ai_socktype = SOCK_STREAM;
hints.ai_flags = AI_PASSIVE;
if (getaddrinfo(hbuf, (char *)"0", &hints, &res))
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return CURLE_FTP_PORT_FAILED;
portsock = -1;
for (ai = res; ai; ai = ai->ai_next) {
portsock = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol);
if (portsock < 0)
continue;
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if (bind(portsock, ai->ai_addr, ai->ai_addrlen) < 0) {
sclose(portsock);
portsock = -1;
continue;
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if (listen(portsock, 1) < 0) {
sclose(portsock);
portsock = -1;
continue;
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break;
}
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if (portsock < 0) {
failf(data, strerror(errno));
return CURLE_FTP_PORT_FAILED;
}
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sslen = sizeof(ss);
if (getsockname(portsock, sa, &sslen) < 0) {
failf(data, strerror(errno));
return CURLE_FTP_PORT_FAILED;
}
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for (modep = (char **)mode; modep && *modep; modep++) {
int lprtaf, eprtaf;
switch (sa->sa_family) {
case AF_INET:
ap = (unsigned char *)&((struct sockaddr_in *)&ss)->sin_addr;
alen = sizeof(((struct sockaddr_in *)&ss)->sin_addr);
pp = (unsigned char *)&((struct sockaddr_in *)&ss)->sin_port;
plen = sizeof(((struct sockaddr_in *)&ss)->sin_port);
lprtaf = 4;
eprtaf = 1;
break;
case AF_INET6:
ap = (unsigned char *)&((struct sockaddr_in6 *)&ss)->sin6_addr;
alen = sizeof(((struct sockaddr_in6 *)&ss)->sin6_addr);
pp = (unsigned char *)&((struct sockaddr_in6 *)&ss)->sin6_port;
plen = sizeof(((struct sockaddr_in6 *)&ss)->sin6_port);
lprtaf = 6;
eprtaf = 2;
break;
default:
ap = pp = NULL;
lprtaf = eprtaf = -1;
break;
}
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if (strcmp(*modep, "EPRT") == 0) {
if (eprtaf < 0)
continue;
if (getnameinfo((struct sockaddr *)&ss, sslen,
portmsgbuf, sizeof(portmsgbuf), tmp, sizeof(tmp), niflags))
continue;
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/* do not transmit IPv6 scope identifier to the wire */
if (sa->sa_family == AF_INET6) {
char *q = strchr(portmsgbuf, '%');
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if (q)
*q = '\0';
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}
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ftpsendf(conn, "%s |%d|%s|%s|", *modep, eprtaf,
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portmsgbuf, tmp);
} else if (strcmp(*modep, "LPRT") == 0 ||
strcmp(*modep, "PORT") == 0) {
int i;
if (strcmp(*modep, "LPRT") == 0 && lprtaf < 0)
continue;
if (strcmp(*modep, "PORT") == 0 && sa->sa_family != AF_INET)
continue;
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portmsgbuf[0] = '\0';
if (strcmp(*modep, "LPRT") == 0) {
snprintf(tmp, sizeof(tmp), "%d,%d", lprtaf, alen);
if (strlcat(portmsgbuf, tmp, sizeof(portmsgbuf)) >=
sizeof(portmsgbuf)) {