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https://github.com/samba-team/samba.git
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da737f2447
metze
597 lines
16 KiB
C
597 lines
16 KiB
C
/*
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Unix SMB/CIFS implementation.
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SMB2 client transport context management functions
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Copyright (C) Andrew Tridgell 2005
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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 3 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, see <http://www.gnu.org/licenses/>.
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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 "libcli/raw/raw_proto.h"
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#include "libcli/smb2/smb2.h"
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#include "libcli/smb2/smb2_calls.h"
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#include "lib/socket/socket.h"
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#include "lib/events/events.h"
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#include "lib/stream/packet.h"
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#include "../lib/util/dlinklist.h"
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/*
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an event has happened on the socket
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*/
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static void smb2_transport_event_handler(struct tevent_context *ev,
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struct tevent_fd *fde,
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uint16_t flags, void *private_data)
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{
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struct smb2_transport *transport = talloc_get_type(private_data,
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struct smb2_transport);
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if (flags & EVENT_FD_READ) {
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packet_recv(transport->packet);
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return;
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}
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if (flags & EVENT_FD_WRITE) {
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packet_queue_run(transport->packet);
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}
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}
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/*
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destroy a transport
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*/
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static int transport_destructor(struct smb2_transport *transport)
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{
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smb2_transport_dead(transport, NT_STATUS_LOCAL_DISCONNECT);
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return 0;
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}
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/*
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handle receive errors
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*/
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static void smb2_transport_error(void *private_data, NTSTATUS status)
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{
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struct smb2_transport *transport = talloc_get_type(private_data,
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struct smb2_transport);
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smb2_transport_dead(transport, status);
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}
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static NTSTATUS smb2_transport_finish_recv(void *private_data, DATA_BLOB blob);
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/*
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create a transport structure based on an established socket
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*/
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struct smb2_transport *smb2_transport_init(struct smbcli_socket *sock,
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TALLOC_CTX *parent_ctx,
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struct smbcli_options *options)
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{
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struct smb2_transport *transport;
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transport = talloc_zero(parent_ctx, struct smb2_transport);
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if (!transport) return NULL;
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transport->socket = talloc_steal(transport, sock);
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transport->options = *options;
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transport->credits.charge = 0;
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transport->credits.ask_num = 1;
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/* setup the stream -> packet parser */
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transport->packet = packet_init(transport);
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if (transport->packet == NULL) {
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talloc_free(transport);
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return NULL;
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}
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packet_set_private(transport->packet, transport);
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packet_set_socket(transport->packet, transport->socket->sock);
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packet_set_callback(transport->packet, smb2_transport_finish_recv);
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packet_set_full_request(transport->packet, packet_full_request_nbt);
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packet_set_error_handler(transport->packet, smb2_transport_error);
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packet_set_event_context(transport->packet, transport->socket->event.ctx);
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packet_set_nofree(transport->packet);
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/* take over event handling from the socket layer - it only
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handles events up until we are connected */
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talloc_free(transport->socket->event.fde);
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transport->socket->event.fde = event_add_fd(transport->socket->event.ctx,
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transport->socket,
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socket_get_fd(transport->socket->sock),
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EVENT_FD_READ,
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smb2_transport_event_handler,
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transport);
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packet_set_fde(transport->packet, transport->socket->event.fde);
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packet_set_serialise(transport->packet);
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talloc_set_destructor(transport, transport_destructor);
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return transport;
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}
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/*
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mark the transport as dead
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*/
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void smb2_transport_dead(struct smb2_transport *transport, NTSTATUS status)
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{
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smbcli_sock_dead(transport->socket);
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if (NT_STATUS_EQUAL(NT_STATUS_UNSUCCESSFUL, status)) {
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status = NT_STATUS_UNEXPECTED_NETWORK_ERROR;
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}
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/* kill all pending receives */
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while (transport->pending_recv) {
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struct smb2_request *req = transport->pending_recv;
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req->state = SMB2_REQUEST_ERROR;
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req->status = status;
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DLIST_REMOVE(transport->pending_recv, req);
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if (req->async.fn) {
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req->async.fn(req);
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}
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}
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}
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static NTSTATUS smb2_handle_oplock_break(struct smb2_transport *transport,
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const DATA_BLOB *blob)
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{
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uint8_t *hdr;
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uint8_t *body;
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uint16_t len, bloblen;
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bool lease;
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hdr = blob->data+NBT_HDR_SIZE;
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body = hdr+SMB2_HDR_BODY;
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bloblen = blob->length - SMB2_HDR_BODY;
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if (bloblen < 2) {
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DEBUG(1,("Discarding smb2 oplock reply of size %u\n",
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(unsigned)blob->length));
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return NT_STATUS_INVALID_NETWORK_RESPONSE;
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}
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len = CVAL(body, 0x00);
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if (len > bloblen) {
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DEBUG(1,("Discarding smb2 oplock reply,"
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"packet claims %u byte body, only %u bytes seen\n",
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len, bloblen));
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return NT_STATUS_INVALID_NETWORK_RESPONSE;
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}
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if (len == 24) {
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lease = false;
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} else if (len == 44) {
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lease = true;
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} else {
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DEBUG(1,("Discarding smb2 oplock reply of invalid size %u\n",
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(unsigned)blob->length));
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return NT_STATUS_INVALID_NETWORK_RESPONSE;
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}
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if (!lease && transport->oplock.handler) {
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struct smb2_handle h;
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uint8_t level;
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level = CVAL(body, 0x02);
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smb2_pull_handle(body+0x08, &h);
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transport->oplock.handler(transport, &h, level,
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transport->oplock.private_data);
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} else if (lease && transport->lease.handler) {
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struct smb2_lease_break lb;
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ZERO_STRUCT(lb);
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lb.break_flags = SVAL(body, 0x4);
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memcpy(&lb.current_lease.lease_key, body+0x8,
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sizeof(struct smb2_lease_key));
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lb.current_lease.lease_state = SVAL(body, 0x18);
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lb.new_lease_state = SVAL(body, 0x1C);
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lb.break_reason = SVAL(body, 0x20);
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lb.access_mask_hint = SVAL(body, 0x24);
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lb.share_mask_hint = SVAL(body, 0x28);
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transport->lease.handler(transport, &lb,
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transport->lease.private_data);
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} else {
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DEBUG(5,("Got SMB2 %s break with no handler\n",
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lease ? "lease" : "oplock"));
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}
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return NT_STATUS_OK;
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}
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struct smb2_transport_compount_response_state {
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struct smb2_transport *transport;
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DATA_BLOB blob;
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};
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static void smb2_transport_compound_response_handler(struct tevent_context *ctx,
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struct tevent_immediate *im,
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void *private_data)
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{
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struct smb2_transport_compount_response_state *state =
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talloc_get_type_abort(private_data,
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struct smb2_transport_compount_response_state);
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struct smb2_transport *transport = state->transport;
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NTSTATUS status;
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status = smb2_transport_finish_recv(transport, state->blob);
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TALLOC_FREE(state);
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if (!NT_STATUS_IS_OK(status)) {
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smb2_transport_error(transport, status);
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}
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}
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/*
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we have a full request in our receive buffer - match it to a pending request
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and process
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*/
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static NTSTATUS smb2_transport_finish_recv(void *private_data, DATA_BLOB blob)
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{
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struct smb2_transport *transport = talloc_get_type(private_data,
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struct smb2_transport);
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uint8_t *buffer, *hdr;
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int len;
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struct smb2_request *req = NULL;
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uint64_t seqnum;
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uint32_t flags;
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uint16_t buffer_code;
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uint32_t dynamic_size;
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uint32_t i;
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uint16_t opcode;
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NTSTATUS status;
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uint32_t next_ofs;
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buffer = blob.data;
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len = blob.length;
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hdr = buffer+NBT_HDR_SIZE;
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if (len < SMB2_MIN_SIZE) {
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DEBUG(1,("Discarding smb2 reply of size %d\n", len));
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goto error;
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}
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flags = IVAL(hdr, SMB2_HDR_FLAGS);
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seqnum = BVAL(hdr, SMB2_HDR_MESSAGE_ID);
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opcode = SVAL(hdr, SMB2_HDR_OPCODE);
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/* see MS-SMB2 3.2.5.19 */
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if (seqnum == UINT64_MAX) {
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if (opcode != SMB2_OP_BREAK) {
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DEBUG(1,("Discarding packet with invalid seqnum, "
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"opcode %u\n", opcode));
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return NT_STATUS_INVALID_NETWORK_RESPONSE;
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}
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return smb2_handle_oplock_break(transport, &blob);
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}
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/* match the incoming request against the list of pending requests */
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for (req=transport->pending_recv; req; req=req->next) {
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if (req->seqnum == seqnum) break;
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}
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if (!req) {
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DEBUG(1,("Discarding unmatched reply with seqnum 0x%llx op %d\n",
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(long long)seqnum, SVAL(hdr, SMB2_HDR_OPCODE)));
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goto error;
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}
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/* fill in the 'in' portion of the matching request */
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req->in.buffer = buffer;
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talloc_steal(req, buffer);
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req->in.size = len;
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req->in.allocated = req->in.size;
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req->in.hdr = hdr;
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req->in.body = hdr+SMB2_HDR_BODY;
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req->in.body_size = req->in.size - (SMB2_HDR_BODY+NBT_HDR_SIZE);
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req->status = NT_STATUS(IVAL(hdr, SMB2_HDR_STATUS));
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if ((flags & SMB2_HDR_FLAG_ASYNC) &&
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NT_STATUS_EQUAL(req->status, STATUS_PENDING)) {
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req->cancel.can_cancel = true;
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req->cancel.pending_id = IVAL(hdr, SMB2_HDR_PID);
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for (i=0; i< req->cancel.do_cancel; i++) {
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smb2_cancel(req);
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}
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talloc_free(buffer);
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return NT_STATUS_OK;
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}
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next_ofs = IVAL(req->in.hdr, SMB2_HDR_NEXT_COMMAND);
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if (next_ofs > 0) {
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if (smb2_oob(&req->in, req->in.hdr + next_ofs, SMB2_HDR_BODY + 2)) {
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DEBUG(1,("SMB2 request invalid next offset 0x%x\n",
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next_ofs));
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goto error;
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}
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req->in.size = NBT_HDR_SIZE + next_ofs;
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req->in.body_size = req->in.size - (SMB2_HDR_BODY+NBT_HDR_SIZE);
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}
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if (req->session && req->session->signing_active) {
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status = smb2_check_signature(&req->in,
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req->session->session_key);
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if (!NT_STATUS_IS_OK(status)) {
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/* the spec says to ignore packets with a bad signature */
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talloc_free(buffer);
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return status;
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}
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}
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buffer_code = SVAL(req->in.body, 0);
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req->in.body_fixed = (buffer_code & ~1);
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req->in.dynamic = NULL;
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dynamic_size = req->in.body_size - req->in.body_fixed;
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if (dynamic_size != 0 && (buffer_code & 1)) {
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req->in.dynamic = req->in.body + req->in.body_fixed;
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if (smb2_oob(&req->in, req->in.dynamic, dynamic_size)) {
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DEBUG(1,("SMB2 request invalid dynamic size 0x%x\n",
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dynamic_size));
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goto error;
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}
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}
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smb2_setup_bufinfo(req);
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DEBUG(2, ("SMB2 RECV seqnum=0x%llx\n", (long long)req->seqnum));
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dump_data(5, req->in.body, req->in.body_size);
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if (next_ofs > 0) {
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struct tevent_immediate *im;
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struct smb2_transport_compount_response_state *state;
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state = talloc(transport,
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struct smb2_transport_compount_response_state);
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if (!state) {
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goto error;
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}
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state->transport = transport;
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state->blob = data_blob_talloc(state, NULL,
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blob.length - next_ofs);
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if (!state->blob.data) {
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goto error;
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}
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im = tevent_create_immediate(state);
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if (!im) {
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TALLOC_FREE(state);
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goto error;
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}
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_smb2_setlen(state->blob.data, state->blob.length - NBT_HDR_SIZE);
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memcpy(state->blob.data + NBT_HDR_SIZE,
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req->in.hdr + next_ofs,
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req->in.allocated - req->in.size);
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tevent_schedule_immediate(im, transport->socket->event.ctx,
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smb2_transport_compound_response_handler,
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state);
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}
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/* if this request has an async handler then call that to
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notify that the reply has been received. This might destroy
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the request so it must happen last */
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DLIST_REMOVE(transport->pending_recv, req);
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req->state = SMB2_REQUEST_DONE;
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if (req->async.fn) {
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req->async.fn(req);
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}
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return NT_STATUS_OK;
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error:
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dump_data(5, buffer, len);
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if (req) {
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DLIST_REMOVE(transport->pending_recv, req);
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req->state = SMB2_REQUEST_ERROR;
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if (req->async.fn) {
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req->async.fn(req);
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}
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} else {
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talloc_free(buffer);
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}
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return NT_STATUS_UNSUCCESSFUL;
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}
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/*
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handle timeouts of individual smb requests
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*/
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static void smb2_timeout_handler(struct tevent_context *ev, struct tevent_timer *te,
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struct timeval t, void *private_data)
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{
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struct smb2_request *req = talloc_get_type(private_data, struct smb2_request);
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if (req->state == SMB2_REQUEST_RECV) {
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DLIST_REMOVE(req->transport->pending_recv, req);
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}
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req->status = NT_STATUS_IO_TIMEOUT;
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req->state = SMB2_REQUEST_ERROR;
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if (req->async.fn) {
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req->async.fn(req);
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}
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}
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/*
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destroy a request
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*/
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static int smb2_request_destructor(struct smb2_request *req)
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{
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if (req->state == SMB2_REQUEST_RECV) {
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DLIST_REMOVE(req->transport->pending_recv, req);
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}
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return 0;
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}
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static NTSTATUS smb2_transport_raw_send(struct smb2_transport *transport,
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struct smb2_request_buffer *buffer)
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{
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DATA_BLOB blob;
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NTSTATUS status;
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/* check if the transport is dead */
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if (transport->socket->sock == NULL) {
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return NT_STATUS_NET_WRITE_FAULT;
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}
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_smb2_setlen(buffer->buffer, buffer->size - NBT_HDR_SIZE);
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blob = data_blob_const(buffer->buffer, buffer->size);
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status = packet_send(transport->packet, blob);
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if (!NT_STATUS_IS_OK(status)) {
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return status;
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}
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return NT_STATUS_OK;
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}
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/*
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put a request into the send queue
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*/
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void smb2_transport_send(struct smb2_request *req)
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{
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NTSTATUS status;
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DEBUG(2, ("SMB2 send seqnum=0x%llx\n", (long long)req->seqnum));
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dump_data(5, req->out.body, req->out.body_size);
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if (req->transport->compound.missing > 0) {
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off_t next_ofs;
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size_t pad = 0;
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uint8_t *end;
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end = req->out.buffer + req->out.size;
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/*
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* we need to set dynamic otherwise
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* smb2_grow_buffer segfaults
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*/
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if (req->out.dynamic == NULL) {
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req->out.dynamic = end;
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}
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next_ofs = end - req->out.hdr;
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if ((next_ofs % 8) > 0) {
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pad = 8 - (next_ofs % 8);
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}
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next_ofs += pad;
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status = smb2_grow_buffer(&req->out, pad);
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if (!NT_STATUS_IS_OK(status)) {
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req->state = SMB2_REQUEST_ERROR;
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req->status = status;
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return;
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}
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req->out.size += pad;
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SIVAL(req->out.hdr, SMB2_HDR_NEXT_COMMAND, next_ofs);
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}
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/* possibly sign the message */
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if (req->session && req->session->signing_active) {
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status = smb2_sign_message(&req->out, req->session->session_key);
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if (!NT_STATUS_IS_OK(status)) {
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req->state = SMB2_REQUEST_ERROR;
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req->status = status;
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return;
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}
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}
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if (req->transport->compound.missing > 0) {
|
|
req->transport->compound.buffer = req->out;
|
|
} else {
|
|
status = smb2_transport_raw_send(req->transport,
|
|
&req->out);
|
|
if (!NT_STATUS_IS_OK(status)) {
|
|
req->state = SMB2_REQUEST_ERROR;
|
|
req->status = status;
|
|
return;
|
|
}
|
|
}
|
|
ZERO_STRUCT(req->out);
|
|
|
|
req->state = SMB2_REQUEST_RECV;
|
|
DLIST_ADD(req->transport->pending_recv, req);
|
|
|
|
/* add a timeout */
|
|
if (req->transport->options.request_timeout) {
|
|
event_add_timed(req->transport->socket->event.ctx, req,
|
|
timeval_current_ofs(req->transport->options.request_timeout, 0),
|
|
smb2_timeout_handler, req);
|
|
}
|
|
|
|
talloc_set_destructor(req, smb2_request_destructor);
|
|
}
|
|
|
|
NTSTATUS smb2_transport_compound_start(struct smb2_transport *transport,
|
|
uint32_t num)
|
|
{
|
|
ZERO_STRUCT(transport->compound);
|
|
transport->compound.missing = num;
|
|
return NT_STATUS_OK;
|
|
}
|
|
|
|
void smb2_transport_compound_set_related(struct smb2_transport *transport,
|
|
bool related)
|
|
{
|
|
transport->compound.related = related;
|
|
}
|
|
|
|
void smb2_transport_credits_ask_num(struct smb2_transport *transport,
|
|
uint16_t ask_num)
|
|
{
|
|
transport->credits.ask_num = ask_num;
|
|
}
|
|
|
|
void smb2_transport_credits_set_charge(struct smb2_transport *transport,
|
|
uint16_t charge)
|
|
{
|
|
transport->credits.charge = charge;
|
|
}
|
|
|
|
static void idle_handler(struct tevent_context *ev,
|
|
struct tevent_timer *te, struct timeval t, void *private_data)
|
|
{
|
|
struct smb2_transport *transport = talloc_get_type(private_data,
|
|
struct smb2_transport);
|
|
struct timeval next = timeval_add(&t, 0, transport->idle.period);
|
|
transport->socket->event.te = event_add_timed(transport->socket->event.ctx,
|
|
transport,
|
|
next,
|
|
idle_handler, transport);
|
|
transport->idle.func(transport, transport->idle.private_data);
|
|
}
|
|
|
|
/*
|
|
setup the idle handler for a transport
|
|
the period is in microseconds
|
|
*/
|
|
void smb2_transport_idle_handler(struct smb2_transport *transport,
|
|
void (*idle_func)(struct smb2_transport *, void *),
|
|
uint64_t period,
|
|
void *private_data)
|
|
{
|
|
transport->idle.func = idle_func;
|
|
transport->idle.private_data = private_data;
|
|
transport->idle.period = period;
|
|
|
|
if (transport->socket->event.te != NULL) {
|
|
talloc_free(transport->socket->event.te);
|
|
}
|
|
|
|
transport->socket->event.te = event_add_timed(transport->socket->event.ctx,
|
|
transport,
|
|
timeval_current_ofs(0, period),
|
|
idle_handler, transport);
|
|
}
|