Newer
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}
state(conn, SSH_SCP_UPLOAD_INIT);
}
else {
state(conn, SSH_SCP_DOWNLOAD_INIT);
}
break;
case SSH_SCP_UPLOAD_INIT:
/*
* libssh2 requires that the destination path is a full path that
* includes the destination file and name OR ends in a "/" . If this is
* not done the destination file will be named the same name as the last
* directory in the path.
*/
sshc->ssh_channel =
libssh2_scp_send_ex(sshc->ssh_session, sftp_scp->path,
data->set.new_file_perms,
if(!sshc->ssh_channel) {
if(libssh2_session_last_errno(sshc->ssh_session) ==
LIBSSH2_ERROR_EAGAIN) {
rc = LIBSSH2_ERROR_EAGAIN;
break;
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}
else {
int ssh_err;
char *err_msg;
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ssh_err = libssh2_session_last_error(sshc->ssh_session,
&err_msg, NULL, 0);
failf(conn->data, "%s", err_msg);
state(conn, SSH_SCP_CHANNEL_FREE);
sshc->actualcode = libssh2_session_error_to_CURLE(ssh_err);
break;
}
}
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/* upload data */
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result = Curl_setup_transfer(conn, -1, data->req.size, FALSE, NULL,
FIRSTSOCKET, NULL);
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/* not set by Curl_setup_transfer to preserve keepon bits */
conn->sockfd = conn->writesockfd;
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if(result) {
state(conn, SSH_SCP_CHANNEL_FREE);
sshc->actualcode = result;
}
else {
state(conn, SSH_STOP);
}
break;
case SSH_SCP_DOWNLOAD_INIT:
{
/*
* We must check the remote file; if it is a directory no values will
* be set in sb
*/
struct stat sb;
curl_off_t bytecount;
/* clear the struct scp recv will fill in */
memset(&sb, 0, sizeof(struct stat));
/* get a fresh new channel from the ssh layer */
sshc->ssh_channel = libssh2_scp_recv(sshc->ssh_session,
sftp_scp->path, &sb);
if(!sshc->ssh_channel) {
if(libssh2_session_last_errno(sshc->ssh_session) ==
LIBSSH2_ERROR_EAGAIN) {
rc = LIBSSH2_ERROR_EAGAIN;
break;
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}
else {
int ssh_err;
char *err_msg;
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ssh_err = libssh2_session_last_error(sshc->ssh_session,
&err_msg, NULL, 0);
failf(conn->data, "%s", err_msg);
state(conn, SSH_SCP_CHANNEL_FREE);
sshc->actualcode = libssh2_session_error_to_CURLE(ssh_err);
break;
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}
}
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/* download data */
bytecount = (curl_off_t)sb.st_size;
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data->req.maxdownload = (curl_off_t)sb.st_size;
result = Curl_setup_transfer(conn, FIRSTSOCKET,
bytecount, FALSE, NULL, -1, NULL);
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/* not set by Curl_setup_transfer to preserve keepon bits */
conn->writesockfd = conn->sockfd;
/* FIXME: here should be explained why we need it to start the download */
conn->cselect_bits = CURL_CSELECT_IN;
if(result) {
state(conn, SSH_SCP_CHANNEL_FREE);
sshc->actualcode = result;
}
else
state(conn, SSH_STOP);
}
break;
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case SSH_SCP_DONE:
if(data->set.upload)
state(conn, SSH_SCP_SEND_EOF);
else
state(conn, SSH_SCP_CHANNEL_FREE);
break;
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case SSH_SCP_SEND_EOF:
if(sshc->ssh_channel) {
rc = libssh2_channel_send_eof(sshc->ssh_channel);
if(rc == LIBSSH2_ERROR_EAGAIN) {
break;
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}
else if(rc) {
infof(data, "Failed to send libssh2 channel EOF\n");
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}
}
state(conn, SSH_SCP_WAIT_EOF);
break;
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case SSH_SCP_WAIT_EOF:
if(sshc->ssh_channel) {
rc = libssh2_channel_wait_eof(sshc->ssh_channel);
if(rc == LIBSSH2_ERROR_EAGAIN) {
break;
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}
else if(rc) {
infof(data, "Failed to get channel EOF: %d\n", rc);
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}
}
state(conn, SSH_SCP_WAIT_CLOSE);
break;
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case SSH_SCP_WAIT_CLOSE:
if(sshc->ssh_channel) {
rc = libssh2_channel_wait_closed(sshc->ssh_channel);
if(rc == LIBSSH2_ERROR_EAGAIN) {
break;
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}
else if(rc) {
infof(data, "Channel failed to close: %d\n", rc);
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}
}
state(conn, SSH_SCP_CHANNEL_FREE);
break;
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case SSH_SCP_CHANNEL_FREE:
if(sshc->ssh_channel) {
rc = libssh2_channel_free(sshc->ssh_channel);
if(rc == LIBSSH2_ERROR_EAGAIN) {
break;
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}
else if(rc < 0) {
infof(data, "Failed to free libssh2 scp subsystem\n");
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}
sshc->ssh_channel = NULL;
}
DEBUGF(infof(data, "SCP DONE phase complete\n"));
#if 0 /* PREV */
state(conn, SSH_SESSION_DISCONNECT);
#endif
state(conn, SSH_STOP);
result = sshc->actualcode;
break;
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case SSH_SESSION_DISCONNECT:
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/* during weird times when we've been prematurely aborted, the channel
is still alive when we reach this state and we MUST kill the channel
properly first */
if(sshc->ssh_channel) {
rc = libssh2_channel_free(sshc->ssh_channel);
if(rc == LIBSSH2_ERROR_EAGAIN) {
break;
}
else if(rc < 0) {
infof(data, "Failed to free libssh2 scp subsystem\n");
}
sshc->ssh_channel = NULL;
}
if(sshc->ssh_session) {
rc = libssh2_session_disconnect(sshc->ssh_session, "Shutdown");
if(rc == LIBSSH2_ERROR_EAGAIN) {
break;
}
else if(rc < 0) {
infof(data, "Failed to disconnect libssh2 session\n");
}
}
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Curl_safefree(sshc->homedir);
sshc->homedir = NULL;
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state(conn, SSH_SESSION_FREE);
break;
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case SSH_SESSION_FREE:
#ifdef HAVE_LIBSSH2_KNOWNHOST_API
if(sshc->kh) {
libssh2_knownhost_free(sshc->kh);
sshc->kh = NULL;
}
#endif
if(sshc->ssh_session) {
rc = libssh2_session_free(sshc->ssh_session);
if(rc == LIBSSH2_ERROR_EAGAIN) {
break;
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}
else if(rc < 0) {
infof(data, "Failed to free libssh2 session\n");
}
sshc->ssh_session = NULL;
}
sshc->nextstate = SSH_NO_STATE;
state(conn, SSH_STOP);
result = sshc->actualcode;
break;
case SSH_QUIT:
/* fallthrough, just stop! */
default:
/* internal error */
sshc->nextstate = SSH_NO_STATE;
state(conn, SSH_STOP);
break;
if(rc == LIBSSH2_ERROR_EAGAIN) {
/* we would block, we need to wait for the socket to be ready (in the
right direction too)! */
*block = TRUE;
}
return result;
}
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/* called by the multi interface to figure out what socket(s) to wait for and
for what actions in the DO_DONE, PERFORM and WAITPERFORM states */
static int ssh_perform_getsock(const struct connectdata *conn,
curl_socket_t *sock, /* points to numsocks
number of sockets */
int numsocks)
{
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#ifdef HAVE_LIBSSH2_SESSION_BLOCK_DIRECTION
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int bitmap = GETSOCK_BLANK;
(void)numsocks;
sock[0] = conn->sock[FIRSTSOCKET];
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if(conn->waitfor & KEEP_RECV)
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bitmap |= GETSOCK_READSOCK(FIRSTSOCKET);
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if(conn->waitfor & KEEP_SEND)
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bitmap |= GETSOCK_WRITESOCK(FIRSTSOCKET);
return bitmap;
#else
/* if we don't know the direction we can use the generic *_getsock()
function even for the protocol_connect and doing states */
return Curl_single_getsock(conn, sock, numsocks);
#endif
}
/* Generic function called by the multi interface to figure out what socket(s)
to wait for and for what actions during the DOING and PROTOCONNECT states*/
static int ssh_getsock(struct connectdata *conn,
curl_socket_t *sock, /* points to numsocks number
of sockets */
int numsocks)
{
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#ifndef HAVE_LIBSSH2_SESSION_BLOCK_DIRECTION
(void)conn;
(void)sock;
(void)numsocks;
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/* if we don't know any direction we can just play along as we used to and
not provide any sensible info */
return GETSOCK_BLANK;
#else
/* if we know the direction we can use the generic *_getsock() function even
for the protocol_connect and doing states */
return ssh_perform_getsock(conn, sock, numsocks);
#endif
}
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#ifdef HAVE_LIBSSH2_SESSION_BLOCK_DIRECTION
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/*
* When one of the libssh2 functions has returned LIBSSH2_ERROR_EAGAIN this
* function is used to figure out in what direction and stores this info so
* that the multi interface can take advantage of it. Make sure to call this
* function in all cases so that when it _doesn't_ return EAGAIN we can
* restore the default wait bits.
*/
static void ssh_block2waitfor(struct connectdata *conn, bool block)
{
struct ssh_conn *sshc = &conn->proto.sshc;
int dir;
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if(!block)
conn->waitfor = 0;
else if((dir = libssh2_session_block_directions(sshc->ssh_session))) {
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/* translate the libssh2 define bits into our own bit defines */
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conn->waitfor = ((dir&LIBSSH2_SESSION_BLOCK_INBOUND)?KEEP_RECV:0) |
((dir&LIBSSH2_SESSION_BLOCK_OUTBOUND)?KEEP_SEND:0);
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}
else
/* It didn't block or libssh2 didn't reveal in which direction, put back
the original set */
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conn->waitfor = sshc->orig_waitfor;
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}
#else
/* no libssh2 directional support so we simply don't know */
#define ssh_block2waitfor(x,y)
#endif
/* called repeatedly until done from multi.c */
static CURLcode ssh_multi_statemach(struct connectdata *conn, bool *done)
{
struct ssh_conn *sshc = &conn->proto.sshc;
CURLcode result = CURLE_OK;
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bool block; /* we store the status and use that to provide a ssh_getsock()
implementation */
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result = ssh_statemach_act(conn, &block);
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*done = (bool)(sshc->state == SSH_STOP);
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ssh_block2waitfor(conn, block);
return result;
}
static CURLcode ssh_easy_statemach(struct connectdata *conn)
{
struct ssh_conn *sshc = &conn->proto.sshc;
CURLcode result = CURLE_OK;
while((sshc->state != SSH_STOP) && !result) {
bool block;
result = ssh_statemach_act(conn, &block);
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#ifdef HAVE_LIBSSH2_SESSION_BLOCK_DIRECTION
if((CURLE_OK == result) && block) {
int dir = libssh2_session_block_directions(sshc->ssh_session);
curl_socket_t sock = conn->sock[FIRSTSOCKET];
curl_socket_t fd_read = CURL_SOCKET_BAD;
curl_socket_t fd_write = CURL_SOCKET_BAD;
if (LIBSSH2_SESSION_BLOCK_INBOUND & dir) {
fd_read = sock;
}
if (LIBSSH2_SESSION_BLOCK_OUTBOUND & dir) {
fd_write = sock;
}
/* wait for the socket to become ready */
Curl_socket_ready(fd_read, fd_write, 1000); /* ignore result */
}
#endif
}
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return result;
}
/*
* SSH setup and connection
*/
static CURLcode ssh_init(struct connectdata *conn)
{
struct SessionHandle *data = conn->data;
struct SSHPROTO *ssh;
struct ssh_conn *sshc = &conn->proto.sshc;
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sshc->actualcode = CURLE_OK; /* reset error code */
sshc->secondCreateDirs =0; /* reset the create dir attempt state variable */
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if(data->state.proto.ssh)
return CURLE_OK;
ssh = calloc(sizeof(struct SSHPROTO), 1);
if(!ssh)
return CURLE_OUT_OF_MEMORY;
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data->state.proto.ssh = ssh;
return CURLE_OK;
}
/*
* Curl_ssh_connect() gets called from Curl_protocol_connect() to allow us to
* do protocol-specific actions at connect-time.
*/
static CURLcode ssh_connect(struct connectdata *conn, bool *done)
CURLcode result;
struct SessionHandle *data = conn->data;
/* We default to persistent connections. We set this already in this connect
function to make the re-use checks properly be able to check this bit. */
conn->bits.close = FALSE;
/* If there already is a protocol-specific struct allocated for this
sessionhandle, deal with it */
Curl_reset_reqproto(conn);
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result = ssh_init(conn);
if(result)
ssh = &conn->proto.sshc;
#ifdef CURL_LIBSSH2_DEBUG
if(conn->user) {
infof(data, "User: %s\n", conn->user);
if(conn->passwd) {
infof(data, "Password: %s\n", conn->passwd);
}
sock = conn->sock[FIRSTSOCKET];
ssh->ssh_session = libssh2_session_init_ex(libssh2_malloc, libssh2_free,
libssh2_realloc, conn);
if(ssh->ssh_session == NULL) {
failf(data, "Failure initialising ssh session");
return CURLE_FAILED_INIT;
}
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#ifdef HAVE_LIBSSH2_KNOWNHOST_API
if(data->set.str[STRING_SSH_KNOWNHOSTS]) {
int rc;
ssh->kh = libssh2_knownhost_init(ssh->ssh_session);
if(!ssh->kh) {
/* eeek. TODO: free the ssh_session! */
return CURLE_FAILED_INIT;
}
/* read all known hosts from there */
rc = libssh2_knownhost_readfile(ssh->kh,
data->set.str[STRING_SSH_KNOWNHOSTS],
LIBSSH2_KNOWNHOST_FILE_OPENSSH);
if(rc) {
infof(data, "Failed to read known hosts from %s\n",
data->set.str[STRING_SSH_KNOWNHOSTS]);
}
}
#endif /* HAVE_LIBSSH2_KNOWNHOST_API */
#ifdef CURL_LIBSSH2_DEBUG
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libssh2_trace(ssh->ssh_session, ~0);
infof(data, "SSH socket: %d\n", sock);
#endif /* CURL_LIBSSH2_DEBUG */
state(conn, SSH_S_STARTUP);
if(data->state.used_interface == Curl_if_multi)
result = ssh_multi_statemach(conn, done);
else {
result = ssh_easy_statemach(conn);
if(!result)
*done = TRUE;
}
return result;
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/*
***********************************************************************
*
* scp_perform()
*
* This is the actual DO function for SCP. Get a file according to
* the options previously setup.
*/
static
CURLcode scp_perform(struct connectdata *conn,
bool *connected,
bool *dophase_done)
{
CURLcode result = CURLE_OK;
DEBUGF(infof(conn->data, "DO phase starts\n"));
*dophase_done = FALSE; /* not done yet */
/* start the first command in the DO phase */
state(conn, SSH_SCP_TRANS_INIT);
/* run the state-machine */
if(conn->data->state.used_interface == Curl_if_multi) {
result = ssh_multi_statemach(conn, dophase_done);
}
else {
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result = ssh_easy_statemach(conn);
*dophase_done = TRUE; /* with the easy interface we are done here */
}
*connected = conn->bits.tcpconnect;
if(*dophase_done) {
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DEBUGF(infof(conn->data, "DO phase is complete\n"));
}
return result;
}
/* called from multi.c while DOing */
static CURLcode scp_doing(struct connectdata *conn,
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bool *dophase_done)
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{
CURLcode result;
result = ssh_multi_statemach(conn, dophase_done);
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if(*dophase_done) {
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DEBUGF(infof(conn->data, "DO phase is complete\n"));
}
return result;
}
/*
* The DO function is generic for both protocols. There was previously two
* separate ones but this way means less duplicated code.
*/
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static CURLcode ssh_do(struct connectdata *conn, bool *done)
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CURLcode res;
bool connected = 0;
struct SessionHandle *data = conn->data;
*done = FALSE; /* default to false */
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/*
Since connections can be re-used between SessionHandles, this might be a
connection already existing but on a fresh SessionHandle struct so we must
make sure we have a good 'struct SSHPROTO' to play with. For new
connections, the struct SSHPROTO is allocated and setup in the
ssh_connect() function.
*/
Curl_reset_reqproto(conn);
res = ssh_init(conn);
if(res)
return res;
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data->req.size = -1; /* make sure this is unknown at this point */
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Curl_pgrsSetUploadCounter(data, 0);
Curl_pgrsSetDownloadCounter(data, 0);
Curl_pgrsSetUploadSize(data, 0);
Curl_pgrsSetDownloadSize(data, 0);
if(conn->protocol & PROT_SCP)
res = scp_perform(conn, &connected, done);
else
res = sftp_perform(conn, &connected, done);
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return res;
/* BLOCKING, but the function is using the state machine so the only reason this
is still blocking is that the multi interface code has no support for
disconnecting operations that takes a while */
static CURLcode scp_disconnect(struct connectdata *conn)
{
CURLcode result = CURLE_OK;
struct ssh_conn *ssh = &conn->proto.sshc;
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Curl_safefree(conn->data->state.proto.ssh);
conn->data->state.proto.ssh = NULL;
if(ssh->ssh_session) {
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/* only if there's a session still around to use! */
state(conn, SSH_SESSION_DISCONNECT);
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result = ssh_easy_statemach(conn);
}
return result;
}
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/* generic done function for both SCP and SFTP called from their specific
done functions */
static CURLcode ssh_done(struct connectdata *conn, CURLcode status)
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CURLcode result = CURLE_OK;
struct SSHPROTO *sftp_scp = conn->data->state.proto.ssh;
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if(status == CURLE_OK) {
/* run the state-machine
TODO: when the multi interface this _really_ should be using the
ssh_multi_statemach function but we have no general support for
non-blocking DONE operations, not in the multi state machine and with
Curl_done() invokes on several places in the code!
*/
result = ssh_easy_statemach(conn);
}
else
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result = status;
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Curl_safefree(sftp_scp->path);
sftp_scp->path = NULL;
Curl_pgrsDone(conn);
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conn->data->req.keepon = 0; /* clear all bits */
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return result;
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}
static CURLcode scp_done(struct connectdata *conn, CURLcode status,
bool premature)
{
(void)premature; /* not used */
if(status == CURLE_OK)
state(conn, SSH_SCP_DONE);
return ssh_done(conn, status);
}
/* return number of received (decrypted) bytes */
ssize_t Curl_scp_send(struct connectdata *conn, int sockindex,
const void *mem, size_t len)
{
ssize_t nwrite;
(void)sockindex; /* we only support SCP on the fixed known primary socket */
/* libssh2_channel_write() returns int! */
nwrite = (ssize_t)
libssh2_channel_write(conn->proto.sshc.ssh_channel, mem, len);
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ssh_block2waitfor(conn, (nwrite == LIBSSH2_ERROR_EAGAIN)?TRUE:FALSE);
if(nwrite == LIBSSH2_ERROR_EAGAIN)
return nwrite;
}
/*
* If the read would block (EWOULDBLOCK) we return -1. Otherwise we return
* a regular CURLcode value.
*/
ssize_t Curl_scp_recv(struct connectdata *conn, int sockindex,
char *mem, size_t len)
{
ssize_t nread;
(void)sockindex; /* we only support SCP on the fixed known primary socket */
/* libssh2_channel_read() returns int */
nread = (ssize_t)
libssh2_channel_read(conn->proto.sshc.ssh_channel, mem, len);
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ssh_block2waitfor(conn, (nread == LIBSSH2_ERROR_EAGAIN)?TRUE:FALSE);
return nread;
}
/*
* =============== SFTP ===============
*/
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/*
***********************************************************************
*
* sftp_perform()
*
* This is the actual DO function for SFTP. Get a file/directory according to
* the options previously setup.
*/
static
CURLcode sftp_perform(struct connectdata *conn,
bool *connected,
bool *dophase_done)
{
CURLcode result = CURLE_OK;
DEBUGF(infof(conn->data, "DO phase starts\n"));
*dophase_done = FALSE; /* not done yet */
/* start the first command in the DO phase */
state(conn, SSH_SFTP_QUOTE_INIT);
/* run the state-machine */
if(conn->data->state.used_interface == Curl_if_multi) {
result = ssh_multi_statemach(conn, dophase_done);
}
else {
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result = ssh_easy_statemach(conn);
*dophase_done = TRUE; /* with the easy interface we are done here */
}
*connected = conn->bits.tcpconnect;
if(*dophase_done) {
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DEBUGF(infof(conn->data, "DO phase is complete\n"));
}
return result;
}
/* called from multi.c while DOing */
static CURLcode sftp_doing(struct connectdata *conn,
bool *dophase_done)
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{
CURLcode result;
result = ssh_multi_statemach(conn, dophase_done);
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if(*dophase_done) {
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DEBUGF(infof(conn->data, "DO phase is complete\n"));
}
return result;
}
/* BLOCKING, but the function is using the state machine so the only reason this
is still blocking is that the multi interface code has no support for
disconnecting operations that takes a while */
static CURLcode sftp_disconnect(struct connectdata *conn)
CURLcode result = CURLE_OK;
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DEBUGF(infof(conn->data, "SSH DISCONNECT starts now\n"));
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Curl_safefree(conn->data->state.proto.ssh);
conn->data->state.proto.ssh = NULL;
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if(conn->proto.sshc.ssh_session) {
/* only if there's a session still around to use! */
state(conn, SSH_SFTP_SHUTDOWN);
result = ssh_easy_statemach(conn);
}
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DEBUGF(infof(conn->data, "SSH DISCONNECT is done\n"));
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return result;
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static CURLcode sftp_done(struct connectdata *conn, CURLcode status,
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bool premature)
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struct ssh_conn *sshc = &conn->proto.sshc;
if(status == CURLE_OK) {
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/* Before we shut down, see if there are any post-quote commands to send: */
if(!status && !premature && conn->data->set.postquote) {
sshc->nextstate = SSH_SFTP_CLOSE;
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state(conn, SSH_SFTP_POSTQUOTE_INIT);
}
else
state(conn, SSH_SFTP_CLOSE);
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}
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return ssh_done(conn, status);
/* return number of sent bytes */
ssize_t Curl_sftp_send(struct connectdata *conn, int sockindex,
const void *mem, size_t len)
ssize_t nwrite; /* libssh2_sftp_write() used to return size_t in 0.14
but is changed to ssize_t in 0.15. These days we don't
support libssh2 0.15*/
(void)sockindex;
nwrite = libssh2_sftp_write(conn->proto.sshc.sftp_handle, mem, len);
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ssh_block2waitfor(conn, (nwrite == LIBSSH2_ERROR_EAGAIN)?TRUE:FALSE);
if(nwrite == LIBSSH2_ERROR_EAGAIN)
return nwrite;
}
* Return number of received (decrypted) bytes
*/
ssize_t Curl_sftp_recv(struct connectdata *conn, int sockindex,
char *mem, size_t len)
{
ssize_t nread;
(void)sockindex;
nread = libssh2_sftp_read(conn->proto.sshc.sftp_handle, mem, len);
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ssh_block2waitfor(conn, (nread == LIBSSH2_ERROR_EAGAIN)?TRUE:FALSE);
return nread;
}
/* The get_pathname() function is being borrowed from OpenSSH sftp.c
version 4.6p1. */
/*
* Copyright (c) 2001-2004 Damien Miller <djm@openbsd.org>
*
* Permission to use, copy, modify, and distribute this software for any
* purpose with or without fee is hereby granted, provided that the above
* copyright notice and this permission notice appear in all copies.
*
* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
*/
get_pathname(const char **cpp, char **path)
{
const char *cp = *cpp, *end;
char quot;
static const char WHITESPACE[] = " \t\r\n";
cp += strspn(cp, WHITESPACE);
if(!*cp) {
*cpp = cp;
*path = NULL;
return CURLE_QUOTE_ERROR;
}
*path = malloc(strlen(cp) + 1);
if(*path == NULL)
return CURLE_OUT_OF_MEMORY;
/* Check for quoted filenames */
if(*cp == '\"' || *cp == '\'') {
quot = *cp++;
/* Search for terminating quote, unescape some chars */
for (i = j = 0; i <= strlen(cp); i++) {
if(cp[i] == quot) { /* Found quote */
i++;
(*path)[j] = '\0';
break;
}
if(cp[i] == '\0') { /* End of string */
/*error("Unterminated quote");*/
goto fail;
}
if(cp[i] == '\\') { /* Escaped characters */
if(cp[i] != '\'' && cp[i] != '\"' &&
cp[i] != '\\') {
/*error("Bad escaped character '\\%c'",
cp[i]);*/
goto fail;
}
}
(*path)[j++] = cp[i];
}
if(j == 0) {
/*error("Empty quotes");*/
goto fail;
}
*cpp = cp + i + strspn(cp + i, WHITESPACE);
}
else {
/* Read to end of filename */
end = strpbrk(cp, WHITESPACE);
if(end == NULL)
end = strchr(cp, '\0');
*cpp = end + strspn(end, WHITESPACE);
memcpy(*path, cp, end - cp);
(*path)[end - cp] = '\0';
}
fail:
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Curl_safefree(*path);
*path = NULL;
return CURLE_QUOTE_ERROR;
}
static const char *sftp_libssh2_strerror(unsigned long err)
{
switch (err) {
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case LIBSSH2_FX_NO_SUCH_FILE:
return "No such file or directory";
case LIBSSH2_FX_PERMISSION_DENIED:
return "Permission denied";
case LIBSSH2_FX_FAILURE:
return "Operation failed";
case LIBSSH2_FX_BAD_MESSAGE:
return "Bad message from SFTP server";
case LIBSSH2_FX_NO_CONNECTION:
return "Not connected to SFTP server";
case LIBSSH2_FX_CONNECTION_LOST:
return "Connection to SFTP server lost";
case LIBSSH2_FX_OP_UNSUPPORTED:
return "Operation not supported by SFTP server";
case LIBSSH2_FX_INVALID_HANDLE:
return "Invalid handle";
case LIBSSH2_FX_NO_SUCH_PATH:
return "No such file or directory";
case LIBSSH2_FX_FILE_ALREADY_EXISTS:
return "File already exists";
case LIBSSH2_FX_WRITE_PROTECT:
return "File is write protected";
case LIBSSH2_FX_NO_MEDIA:
return "No media";
case LIBSSH2_FX_NO_SPACE_ON_FILESYSTEM:
return "Disk full";
case LIBSSH2_FX_QUOTA_EXCEEDED:
return "User quota exceeded";
case LIBSSH2_FX_UNKNOWN_PRINCIPLE:
return "Unknown principle";
case LIBSSH2_FX_LOCK_CONFlICT:
return "File lock conflict";
case LIBSSH2_FX_DIR_NOT_EMPTY:
return "Directory not empty";
case LIBSSH2_FX_NOT_A_DIRECTORY:
return "Not a directory";
case LIBSSH2_FX_INVALID_FILENAME:
return "Invalid filename";
case LIBSSH2_FX_LINK_LOOP:
return "Link points to itself";
}
return "Unknown error in libssh2";
}
#endif /* USE_LIBSSH2 */