/* Unix SMB/CIFS implementation. WINS Replication server Copyright (C) Stefan Metzmacher 2005 This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */ #include "includes.h" #include "dlinklist.h" #include "lib/events/events.h" #include "lib/socket/socket.h" #include "smbd/service_task.h" #include "smbd/service_stream.h" #include "lib/messaging/irpc.h" #include "librpc/gen_ndr/ndr_winsrepl.h" struct wreplsrv_service; struct wreplsrv_in_connection; struct wreplsrv_out_connection; struct wreplsrv_partner; struct wreplsrv_pull_partner_item; struct wreplsrv_push_partner_item; /* state of an incoming wrepl call */ struct wreplsrv_in_call { struct wreplsrv_in_connection *wreplconn; struct wrepl_packet req_packet; struct wrepl_packet rep_packet; }; /* state of an incoming wrepl connection */ struct wreplsrv_in_connection { struct wreplsrv_in_connection *prev,*next; struct stream_connection *conn; /* our global service context */ struct wreplsrv_service *service; /* * the partner that connects us, * can be NULL, when we got a connection * from an unknown address */ struct wreplsrv_partner *partner; /* * we need to take care of our own ip address, * as this is the WINS-Owner ID the peer expect * from us. */ const char *our_ip; /* the partial input on the connection */ DATA_BLOB partial; size_t partial_read; /* * are we currently processing a request? * this prevents loops, with half async code */ BOOL processing; /* the list of outgoing DATA_BLOB's that needs to be send */ struct data_blob_list_item *send_queue; }; /* state of an outcoming wrepl connection */ struct wreplsrv_out_connection { struct wreplsrv_partner *partner; }; /* state of the whole wrepl service */ struct wreplsrv_service { /* the whole wrepl service is in one task */ struct task_server *task; /* all incoming connections */ struct wreplsrv_in_connection *in_connections; /* all partners (pull and push) */ struct wreplsrv_partner *partners; /* all pull partners */ struct wreplsrv_pull_partner *pull_partners; /* all push partners */ struct wreplsrv_push_partner *push_partners; }; static void wreplsrv_terminate_connection(struct wreplsrv_in_connection *wreplconn, const char *reason) { stream_terminate_connection(wreplconn->conn, reason); } static NTSTATUS wreplsrv_in_start_association(struct wreplsrv_in_call *call) { struct wrepl_stop *stop; call->rep_packet.opcode = WREPL_OPCODE_BITS; call->rep_packet.assoc_ctx = 0; call->rep_packet.mess_type = WREPL_STOP_ASSOCIATION; stop = &call->rep_packet.message.stop; stop->reason = 4; return NT_STATUS_OK; } static NTSTATUS wreplsrv_in_replication(struct wreplsrv_in_call *call) { struct wrepl_replication *repl_in = &call->req_packet.message.replication; struct wrepl_stop *stop_out; switch (repl_in->command) { case WREPL_REPL_TABLE_QUERY: break; case WREPL_REPL_TABLE_REPLY: break; case WREPL_REPL_SEND_REQUEST: break; case WREPL_REPL_SEND_REPLY: break; case WREPL_REPL_UPDATE: break; case WREPL_REPL_INFORM: break; } call->rep_packet.opcode = WREPL_OPCODE_BITS; call->rep_packet.assoc_ctx = 0; call->rep_packet.mess_type = WREPL_STOP_ASSOCIATION; stop_out = &call->rep_packet.message.stop; stop_out->reason = 4; return NT_STATUS_OK; } static NTSTATUS wreplsrv_in_call(struct wreplsrv_in_call *call) { struct wrepl_stop *stop_out; /* TODO: check opcode and assoc_ctx */ switch (call->req_packet.mess_type) { case WREPL_START_ASSOCIATION: return wreplsrv_in_start_association(call); case WREPL_START_ASSOCIATION_REPLY: /* this is not valid here */ break; case WREPL_STOP_ASSOCIATION: /* this is not valid here */ break; case WREPL_REPLICATION: return wreplsrv_in_replication(call); } call->rep_packet.opcode = WREPL_OPCODE_BITS; call->rep_packet.assoc_ctx = 0; call->rep_packet.mess_type = WREPL_STOP_ASSOCIATION; call->rep_packet.padding = data_blob(NULL, 0); stop_out = &call->rep_packet.message.stop; stop_out->reason = 4; return NT_STATUS_OK; } /* called when we get a new connection */ static void wreplsrv_accept(struct stream_connection *conn) { struct wreplsrv_service *service = talloc_get_type(conn->private, struct wreplsrv_service); struct wreplsrv_in_connection *wreplconn; wreplconn = talloc_zero(conn, struct wreplsrv_in_connection); if (!wreplconn) { stream_terminate_connection(conn, "wreplsrv_accept: out of memory"); return; } wreplconn->conn = conn; wreplconn->service = service; wreplconn->our_ip = socket_get_my_addr(conn->socket, wreplconn); if (!wreplconn->our_ip) { wreplsrv_terminate_connection(wreplconn, "wreplsrv_accept: out of memory"); return; } conn->private = wreplconn; irpc_add_name(conn->msg_ctx, "wreplsrv_connection"); } /* receive some data on a WREPL connection */ static void wreplsrv_recv(struct stream_connection *conn, uint16_t flags) { struct wreplsrv_in_connection *wreplconn = talloc_get_type(conn->private, struct wreplsrv_in_connection); struct wreplsrv_in_call *call; DATA_BLOB packet_in_blob; DATA_BLOB packet_out_blob; struct wrepl_wrap packet_out_wrap; struct data_blob_list_item *rep; NTSTATUS status = NT_STATUS_UNSUCCESSFUL; size_t nread; /* avoid recursion, because of half async code */ if (wreplconn->processing) { EVENT_FD_NOT_READABLE(conn->event.fde); return; } if (wreplconn->partial.length == 0) { wreplconn->partial = data_blob_talloc(wreplconn, NULL, 4); if (wreplconn->partial.data == NULL) { status = NT_STATUS_NO_MEMORY; goto failed; } wreplconn->partial_read = 0; } /* read in the packet length */ if (wreplconn->partial_read < 4) { uint32_t packet_length; status = socket_recv(conn->socket, wreplconn->partial.data + wreplconn->partial_read, 4 - wreplconn->partial_read, &nread, 0); if (NT_STATUS_IS_ERR(status)) goto failed; if (!NT_STATUS_IS_OK(status)) return; wreplconn->partial_read += nread; if (wreplconn->partial_read != 4) return; packet_length = RIVAL(wreplconn->partial.data, 0) + 4; wreplconn->partial.data = talloc_realloc(wreplconn, wreplconn->partial.data, uint8_t, packet_length); if (wreplconn->partial.data == NULL) { status = NT_STATUS_NO_MEMORY; goto failed; } wreplconn->partial.length = packet_length; } /* read in the body */ status = socket_recv(conn->socket, wreplconn->partial.data + wreplconn->partial_read, wreplconn->partial.length - wreplconn->partial_read, &nread, 0); if (NT_STATUS_IS_ERR(status)) goto failed; if (!NT_STATUS_IS_OK(status)) return; wreplconn->partial_read += nread; if (wreplconn->partial_read != wreplconn->partial.length) return; packet_in_blob.data = wreplconn->partial.data + 4; packet_in_blob.length = wreplconn->partial.length - 4; call = talloc(wreplconn, struct wreplsrv_in_call); if (!call) { status = NT_STATUS_NO_MEMORY; goto failed; } call->wreplconn = wreplconn; /* we have a full request - parse it */ status = ndr_pull_struct_blob(&packet_in_blob, call, &call->req_packet, (ndr_pull_flags_fn_t)ndr_pull_wrepl_packet); if (!NT_STATUS_IS_OK(status)) { DEBUG(2,("Failed to parse incoming WINS-Replication packet - %s\n", nt_errstr(status))); DEBUG(10,("packet length %u\n", wreplconn->partial.length)); NDR_PRINT_DEBUG(wrepl_packet, &call->req_packet); goto failed; } /* * we have parsed the request, so we can reset the wreplconn->partial_read, * maybe we could also free wreplconn->partial, but for now we keep it, * and overwrite it the next time */ wreplconn->partial_read = 0; if (DEBUGLVL(10)) { DEBUG(10,("Received WINS-Replication packet of length %u\n", wreplconn->partial.length)); NDR_PRINT_DEBUG(wrepl_packet, &call->req_packet); } /* actually process the request */ wreplconn->processing = True; status = wreplsrv_in_call(call); wreplconn->processing = False; if (!NT_STATUS_IS_OK(status)) goto failed; /* and now encode the reply */ packet_out_wrap.packet = call->rep_packet; status = ndr_push_struct_blob(&packet_out_blob, call, &packet_out_wrap, (ndr_push_flags_fn_t)ndr_push_wrepl_wrap); if (!NT_STATUS_IS_OK(status)) goto failed; if (DEBUGLVL(10)) { DEBUG(10,("Sending WINS-Replication packet of length %d\n", (int)packet_out_blob.length)); NDR_PRINT_DEBUG(wrepl_packet, &call->rep_packet); } rep = talloc(wreplconn, struct data_blob_list_item); if (!rep) { status = NT_STATUS_NO_MEMORY; goto failed; } rep->blob = packet_out_blob; talloc_steal(rep, packet_out_blob.data); /* we don't need the call anymore */ talloc_free(call); if (!wreplconn->send_queue) { EVENT_FD_WRITEABLE(conn->event.fde); } DLIST_ADD_END(wreplconn->send_queue, rep, struct data_blob_list_item *); EVENT_FD_READABLE(conn->event.fde); return; failed: wreplsrv_terminate_connection(wreplconn, nt_errstr(status)); } /* called when we can write to a connection */ static void wreplsrv_send(struct stream_connection *conn, uint16_t flags) { struct wreplsrv_in_connection *wreplconn = talloc_get_type(conn->private, struct wreplsrv_in_connection); NTSTATUS status; while (wreplconn->send_queue) { struct data_blob_list_item *rep = wreplconn->send_queue; size_t sendlen; status = socket_send(conn->socket, &rep->blob, &sendlen, 0); if (NT_STATUS_IS_ERR(status)) goto failed; if (!NT_STATUS_IS_OK(status)) return; rep->blob.length -= sendlen; rep->blob.data += sendlen; if (rep->blob.length == 0) { DLIST_REMOVE(wreplconn->send_queue, rep); talloc_free(rep); } } EVENT_FD_NOT_WRITEABLE(conn->event.fde); return; failed: wreplsrv_terminate_connection(wreplconn, nt_errstr(status)); } static const struct stream_server_ops wreplsrv_stream_ops = { .name = "wreplsrv", .accept_connection = wreplsrv_accept, .recv_handler = wreplsrv_recv, .send_handler = wreplsrv_send, }; /* startup the wrepl port 42 server sockets */ static NTSTATUS wreplsrv_setup_sockets(struct wreplsrv_service *service) { NTSTATUS status; struct task_server *task = service->task; const struct model_ops *model_ops; const char *address; uint16_t port = WINS_REPLICATION_PORT; /* within the wrepl task we want to be a single process, so ask for the single process model ops and pass these to the stream_setup_socket() call. */ model_ops = process_model_byname("single"); if (!model_ops) { DEBUG(0,("Can't find 'single' process model_ops")); return NT_STATUS_INTERNAL_ERROR; } if (lp_interfaces() && lp_bind_interfaces_only()) { int num_interfaces = iface_count(); int i; /* We have been given an interfaces line, and been told to only bind to those interfaces. Create a socket per interface and bind to only these. */ for(i = 0; i < num_interfaces; i++) { address = iface_n_ip(i); status = stream_setup_socket(task->event_ctx, model_ops, &wreplsrv_stream_ops, "ipv4", address, &port, NULL); if (!NT_STATUS_IS_OK(status)) { DEBUG(0,("stream_setup_socket(address=%s,port=%u) failed - %s\n", address, port, nt_errstr(status))); return status; } } } else { address = lp_socket_address(); status = stream_setup_socket(task->event_ctx, model_ops, &wreplsrv_stream_ops, "ipv4", address, &port, NULL); if (!NT_STATUS_IS_OK(status)) { DEBUG(0,("stream_setup_socket(address=%s,port=%u) failed - %s\n", address, port, nt_errstr(status))); return status; } } return NT_STATUS_OK; } /* startup the wrepl task */ static void wreplsrv_task_init(struct task_server *task) { NTSTATUS status; struct wreplsrv_service *service; service = talloc_zero(task, struct wreplsrv_service); if (!service) { task_server_terminate(task, "wreplsrv_task_init: out of memory"); return; } service->task = task; task->private = service; /* * TODO: setup up all partners, and open the winsdb */ /* * setup listen sockets, so we can anwser requests from our partners, * which pull from us */ status = wreplsrv_setup_sockets(service); if (!NT_STATUS_IS_OK(status)) { task_server_terminate(task, "wreplsrv_task_init: wreplsrv_setup_sockets() failed"); return; } /* * TODO: setup timed events for each partner we want to pull from */ irpc_add_name(task->msg_ctx, "wrepl_server"); } /* initialise the WREPL server */ static NTSTATUS wreplsrv_init(struct event_context *event_ctx, const struct model_ops *model_ops) { return task_server_startup(event_ctx, model_ops, wreplsrv_task_init); } /* register ourselves as a available server */ NTSTATUS server_service_wrepl_init(void) { return register_server_service("wrepl", wreplsrv_init); }