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socket connections. This was complicated by a few factors: - it meant moving the event context from clitransport to clisocket, so lots of structures changed - we need to asynchronously handle connection to lists of port numbers, not just one port number. The code internally tries each port in the list in turn, without ever blocking - the man page on how connect() is supposed to work asynchronously doesn't work in practice (now why doesn't this surprise me?). The getsockopt() for SOL_ERROR is supposed to retrieve the error, but in fact the next (unrelated) connect() call on the same socket also gets an error, though not the right error. To work around this I need to tear down the whole socket between each attempted port. I hate posix. Note that clisocket.c still does a blocking name resolution call in smbcli_sock_connect_byname(). That will be fixed when we add the async NBT resolution code. Also note that I arranged things so that every SMB connection is now async internally, so using plain smbclient or smbtorture tests all the async features of this new code. (This used to be commit 468f8ebbfdbdf37c757fdc4863626aa9946a8870)
447 lines
11 KiB
C
447 lines
11 KiB
C
/*
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Unix SMB/CIFS implementation.
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dcerpc over SMB transport
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Copyright (C) Tim Potter 2003
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Copyright (C) Andrew Tridgell 2003
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include "includes.h"
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#include "libcli/raw/libcliraw.h"
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#include "librpc/gen_ndr/ndr_security.h"
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/* transport private information used by SMB pipe transport */
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struct smb_private {
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uint16_t fnum;
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struct smbcli_tree *tree;
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};
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/*
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tell the dcerpc layer that the transport is dead
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*/
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static void pipe_dead(struct dcerpc_connection *c, NTSTATUS status)
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{
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c->transport.recv_data(c, NULL, status);
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}
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/*
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this holds the state of an in-flight call
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*/
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struct smb_read_state {
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struct dcerpc_connection *c;
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struct smbcli_request *req;
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size_t received;
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DATA_BLOB data;
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union smb_read *io;
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};
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/*
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called when a read request has completed
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*/
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static void smb_read_callback(struct smbcli_request *req)
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{
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struct smb_private *smb;
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struct smb_read_state *state;
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union smb_read *io;
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uint16_t frag_length;
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NTSTATUS status;
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state = req->async.private;
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smb = state->c->transport.private;
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io = state->io;
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status = smb_raw_read_recv(state->req, io);
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if (NT_STATUS_IS_ERR(status)) {
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pipe_dead(state->c, status);
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talloc_free(state);
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return;
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}
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state->received += io->readx.out.nread;
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if (state->received < 16) {
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DEBUG(0,("dcerpc_smb: short packet (length %d) in read callback!\n",
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state->received));
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pipe_dead(state->c, NT_STATUS_INFO_LENGTH_MISMATCH);
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talloc_free(state);
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return;
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}
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frag_length = dcerpc_get_frag_length(&state->data);
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if (frag_length <= state->received) {
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state->data.length = state->received;
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state->c->transport.recv_data(state->c, &state->data, NT_STATUS_OK);
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talloc_free(state);
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return;
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}
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/* initiate another read request, as we only got part of a fragment */
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state->data.data = talloc_realloc(state, state->data.data, uint8_t, frag_length);
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io->readx.in.mincnt = MIN(state->c->srv_max_xmit_frag,
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frag_length - state->received);
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io->readx.in.maxcnt = io->readx.in.mincnt;
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io->readx.out.data = state->data.data + state->received;
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state->req = smb_raw_read_send(smb->tree, io);
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if (state->req == NULL) {
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pipe_dead(state->c, NT_STATUS_NO_MEMORY);
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talloc_free(state);
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return;
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}
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state->req->async.fn = smb_read_callback;
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state->req->async.private = state;
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}
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/*
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trigger a read request from the server, possibly with some initial
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data in the read buffer
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*/
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static NTSTATUS send_read_request_continue(struct dcerpc_connection *c, DATA_BLOB *blob)
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{
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struct smb_private *smb = c->transport.private;
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union smb_read *io;
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struct smb_read_state *state;
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struct smbcli_request *req;
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state = talloc_p(smb, struct smb_read_state);
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if (state == NULL) {
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return NT_STATUS_NO_MEMORY;
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}
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state->c = c;
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if (blob == NULL) {
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state->received = 0;
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state->data = data_blob_talloc(state, NULL, 0x2000);
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} else {
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uint32_t frag_length = blob->length>=16?
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dcerpc_get_frag_length(blob):0x2000;
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state->received = blob->length;
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state->data = data_blob_talloc(state, NULL, frag_length);
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if (!state->data.data) {
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talloc_free(state);
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return NT_STATUS_NO_MEMORY;
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}
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memcpy(state->data.data, blob->data, blob->length);
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}
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state->io = talloc_p(state, union smb_read);
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io = state->io;
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io->generic.level = RAW_READ_READX;
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io->readx.in.fnum = smb->fnum;
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io->readx.in.mincnt = state->data.length - state->received;
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io->readx.in.maxcnt = io->readx.in.mincnt;
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io->readx.in.offset = 0;
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io->readx.in.remaining = 0;
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io->readx.out.data = state->data.data + state->received;
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req = smb_raw_read_send(smb->tree, io);
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if (req == NULL) {
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return NT_STATUS_NO_MEMORY;
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}
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req->async.fn = smb_read_callback;
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req->async.private = state;
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state->req = req;
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return NT_STATUS_OK;
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}
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/*
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trigger a read request from the server
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*/
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static NTSTATUS send_read_request(struct dcerpc_connection *c)
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{
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return send_read_request_continue(c, NULL);
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}
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/*
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this holds the state of an in-flight trans call
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*/
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struct smb_trans_state {
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struct dcerpc_connection *c;
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struct smbcli_request *req;
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struct smb_trans2 *trans;
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};
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/*
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called when a trans request has completed
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*/
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static void smb_trans_callback(struct smbcli_request *req)
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{
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struct smb_trans_state *state = req->async.private;
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struct dcerpc_connection *c = state->c;
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NTSTATUS status;
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status = smb_raw_trans_recv(req, state, state->trans);
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if (NT_STATUS_IS_ERR(status)) {
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pipe_dead(c, status);
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return;
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}
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if (!NT_STATUS_EQUAL(status, STATUS_BUFFER_OVERFLOW)) {
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c->transport.recv_data(c, &state->trans->out.data, NT_STATUS_OK);
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talloc_free(state);
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return;
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}
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/* there is more to receive - setup a readx */
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send_read_request_continue(c, &state->trans->out.data);
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talloc_free(state);
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}
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/*
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send a SMBtrans style request
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*/
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static NTSTATUS smb_send_trans_request(struct dcerpc_connection *c, DATA_BLOB *blob)
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{
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struct smb_private *smb = c->transport.private;
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struct smb_trans2 *trans;
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uint16 setup[2];
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struct smb_trans_state *state;
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state = talloc_p(smb, struct smb_trans_state);
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if (state == NULL) {
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return NT_STATUS_NO_MEMORY;
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}
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state->c = c;
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state->trans = talloc_p(state, struct smb_trans2);
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trans = state->trans;
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trans->in.data = *blob;
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trans->in.params = data_blob(NULL, 0);
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setup[0] = TRANSACT_DCERPCCMD;
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setup[1] = smb->fnum;
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trans->in.max_param = 0;
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trans->in.max_data = smb_raw_max_trans_data(smb->tree, 0);
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trans->in.max_setup = 0;
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trans->in.setup_count = 2;
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trans->in.flags = 0;
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trans->in.timeout = 0;
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trans->in.setup = setup;
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trans->in.trans_name = "\\PIPE\\";
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state->req = smb_raw_trans_send(smb->tree, trans);
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if (state->req == NULL) {
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talloc_free(state);
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return NT_STATUS_NO_MEMORY;
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}
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state->req->async.fn = smb_trans_callback;
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state->req->async.private = state;
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return NT_STATUS_OK;
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}
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/*
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called when a write request has completed
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*/
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static void smb_write_callback(struct smbcli_request *req)
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{
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struct dcerpc_connection *c = req->async.private;
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if (!NT_STATUS_IS_OK(req->status)) {
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DEBUG(0,("dcerpc_smb: write callback error\n"));
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pipe_dead(c, req->status);
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}
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smbcli_request_destroy(req);
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}
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/*
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send a packet to the server
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*/
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static NTSTATUS smb_send_request(struct dcerpc_connection *c, DATA_BLOB *blob, BOOL trigger_read)
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{
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struct smb_private *smb = c->transport.private;
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union smb_write io;
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struct smbcli_request *req;
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if (trigger_read) {
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return smb_send_trans_request(c, blob);
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}
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io.generic.level = RAW_WRITE_WRITEX;
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io.writex.in.fnum = smb->fnum;
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io.writex.in.offset = 0;
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io.writex.in.wmode = PIPE_START_MESSAGE;
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io.writex.in.remaining = blob->length;
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io.writex.in.count = blob->length;
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io.writex.in.data = blob->data;
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req = smb_raw_write_send(smb->tree, &io);
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if (req == NULL) {
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return NT_STATUS_NO_MEMORY;
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}
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req->async.fn = smb_write_callback;
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req->async.private = c;
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if (trigger_read) {
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send_read_request(c);
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}
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return NT_STATUS_OK;
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}
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/*
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return the event context for the pipe, so the caller can wait
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for events asynchronously
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*/
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static struct event_context *smb_event_context(struct dcerpc_connection *c)
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{
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struct smb_private *smb = c->transport.private;
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return smb->tree->session->transport->socket->event.ctx;
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}
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/*
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shutdown SMB pipe connection
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*/
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static NTSTATUS smb_shutdown_pipe(struct dcerpc_connection *c)
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{
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struct smb_private *smb = c->transport.private;
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union smb_close io;
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/* maybe we're still starting up */
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if (!smb) return NT_STATUS_OK;
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io.close.level = RAW_CLOSE_CLOSE;
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io.close.in.fnum = smb->fnum;
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io.close.in.write_time = 0;
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smb_raw_close(smb->tree, &io);
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talloc_free(smb);
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return NT_STATUS_OK;
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}
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/*
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return SMB server name
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*/
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static const char *smb_peer_name(struct dcerpc_connection *c)
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{
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struct smb_private *smb = c->transport.private;
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return smb->tree->session->transport->called.name;
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}
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/*
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fetch the user session key
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*/
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static NTSTATUS smb_session_key(struct dcerpc_connection *c, DATA_BLOB *session_key)
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{
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struct smb_private *smb = c->transport.private;
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if (smb->tree->session->user_session_key.data) {
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*session_key = smb->tree->session->user_session_key;
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return NT_STATUS_OK;
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}
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return NT_STATUS_NO_USER_SESSION_KEY;
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}
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/*
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open a rpc connection to a named pipe
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*/
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NTSTATUS dcerpc_pipe_open_smb(struct dcerpc_connection *c,
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struct smbcli_tree *tree,
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const char *pipe_name)
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{
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struct smb_private *smb;
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NTSTATUS status;
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union smb_open io;
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io.ntcreatex.level = RAW_OPEN_NTCREATEX;
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io.ntcreatex.in.flags = 0;
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io.ntcreatex.in.root_fid = 0;
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io.ntcreatex.in.access_mask =
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SEC_STD_READ_CONTROL |
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SEC_FILE_WRITE_ATTRIBUTE |
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SEC_FILE_WRITE_EA |
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SEC_FILE_READ_DATA |
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SEC_FILE_WRITE_DATA;
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io.ntcreatex.in.file_attr = 0;
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io.ntcreatex.in.alloc_size = 0;
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io.ntcreatex.in.share_access =
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NTCREATEX_SHARE_ACCESS_READ |
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NTCREATEX_SHARE_ACCESS_WRITE;
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io.ntcreatex.in.open_disposition = NTCREATEX_DISP_OPEN;
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io.ntcreatex.in.create_options = 0;
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io.ntcreatex.in.impersonation = NTCREATEX_IMPERSONATION_IMPERSONATION;
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io.ntcreatex.in.security_flags = 0;
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io.ntcreatex.in.fname = pipe_name;
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status = smb_raw_open(tree, tree, &io);
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if (!NT_STATUS_IS_OK(status)) {
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return status;
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}
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/*
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fill in the transport methods
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*/
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c->transport.transport = NCACN_NP;
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c->transport.private = NULL;
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c->transport.shutdown_pipe = smb_shutdown_pipe;
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c->transport.peer_name = smb_peer_name;
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c->transport.send_request = smb_send_request;
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c->transport.send_read = send_read_request;
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c->transport.event_context = smb_event_context;
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c->transport.recv_data = NULL;
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/* Over-ride the default session key with the SMB session key */
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c->security_state.session_key = smb_session_key;
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smb = talloc_p(c, struct smb_private);
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if (smb == NULL) {
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return NT_STATUS_NO_MEMORY;
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}
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smb->fnum = io.ntcreatex.out.fnum;
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smb->tree = tree;
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c->transport.private = smb;
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return NT_STATUS_OK;
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}
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/*
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return the SMB tree used for a dcerpc over SMB pipe
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*/
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struct smbcli_tree *dcerpc_smb_tree(struct dcerpc_connection *c)
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{
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struct smb_private *smb = c->transport.private;
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if (c->transport.transport != NCACN_NP) {
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return NULL;
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}
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return smb->tree;
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}
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