s4:Descriptor tests clean-up.
[Samba/gebeck_regimport.git] / source4 / smbd / service_stream.c
blob8c38f27d74697b696817d95366e418cb14e02eeb
1 /*
2 Unix SMB/CIFS implementation.
4 helper functions for stream based servers
6 Copyright (C) Andrew Tridgell 2003-2005
7 Copyright (C) Stefan (metze) Metzmacher 2004
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 3 of the License, or
12 (at your option) any later version.
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
19 You should have received a copy of the GNU General Public License
20 along with this program. If not, see <http://www.gnu.org/licenses/>.
23 #include "includes.h"
24 #include <tevent.h>
25 #include "process_model.h"
26 #include "lib/messaging/irpc.h"
27 #include "cluster/cluster.h"
28 #include "param/param.h"
29 #include "../lib/tsocket/tsocket.h"
31 /* the range of ports to try for dcerpc over tcp endpoints */
32 #define SERVER_TCP_LOW_PORT 1024
33 #define SERVER_TCP_HIGH_PORT 1300
35 /* size of listen() backlog in smbd */
36 #define SERVER_LISTEN_BACKLOG 10
40 private structure for a single listening stream socket
42 struct stream_socket {
43 const struct stream_server_ops *ops;
44 struct loadparm_context *lp_ctx;
45 struct tevent_context *event_ctx;
46 const struct model_ops *model_ops;
47 struct socket_context *sock;
48 void *private_data;
53 close the socket and shutdown a stream_connection
55 void stream_terminate_connection(struct stream_connection *srv_conn, const char *reason)
57 struct tevent_context *event_ctx = srv_conn->event.ctx;
58 const struct model_ops *model_ops = srv_conn->model_ops;
60 if (!reason) reason = "unknown reason";
62 DEBUG(3,("Terminating connection - '%s'\n", reason));
64 srv_conn->terminate = reason;
66 if (srv_conn->processing) {
67 /*
68 * if we're currently inside the stream_io_handler(),
69 * defer the termination to the end of stream_io_hendler()
71 * and we don't want to read or write to the connection...
73 tevent_fd_set_flags(srv_conn->event.fde, 0);
74 return;
77 talloc_free(srv_conn->event.fde);
78 srv_conn->event.fde = NULL;
79 model_ops->terminate(event_ctx, srv_conn->lp_ctx, reason);
80 talloc_free(srv_conn);
83 /**
84 the select loop has indicated that a stream is ready for IO
86 static void stream_io_handler(struct stream_connection *conn, uint16_t flags)
88 conn->processing++;
89 if (flags & TEVENT_FD_WRITE) {
90 conn->ops->send_handler(conn, flags);
91 } else if (flags & TEVENT_FD_READ) {
92 conn->ops->recv_handler(conn, flags);
94 conn->processing--;
96 if (conn->terminate) {
97 stream_terminate_connection(conn, conn->terminate);
101 void stream_io_handler_fde(struct tevent_context *ev, struct tevent_fd *fde,
102 uint16_t flags, void *private_data)
104 struct stream_connection *conn = talloc_get_type(private_data,
105 struct stream_connection);
106 stream_io_handler(conn, flags);
109 void stream_io_handler_callback(void *private_data, uint16_t flags)
111 struct stream_connection *conn = talloc_get_type(private_data,
112 struct stream_connection);
113 stream_io_handler(conn, flags);
117 this creates a stream_connection from an already existing connection,
118 used for protocols, where a client connection needs to switched into
119 a server connection
121 NTSTATUS stream_new_connection_merge(struct tevent_context *ev,
122 struct loadparm_context *lp_ctx,
123 const struct model_ops *model_ops,
124 const struct stream_server_ops *stream_ops,
125 struct messaging_context *msg_ctx,
126 void *private_data,
127 struct stream_connection **_srv_conn)
129 struct stream_connection *srv_conn;
131 srv_conn = talloc_zero(ev, struct stream_connection);
132 NT_STATUS_HAVE_NO_MEMORY(srv_conn);
134 srv_conn->private_data = private_data;
135 srv_conn->model_ops = model_ops;
136 srv_conn->socket = NULL;
137 srv_conn->server_id = cluster_id(0, 0);
138 srv_conn->ops = stream_ops;
139 srv_conn->msg_ctx = msg_ctx;
140 srv_conn->event.ctx = ev;
141 srv_conn->lp_ctx = lp_ctx;
142 srv_conn->event.fde = NULL;
144 *_srv_conn = srv_conn;
145 return NT_STATUS_OK;
149 called when a new socket connection has been established. This is called in the process
150 context of the new process (if appropriate)
152 static void stream_new_connection(struct tevent_context *ev,
153 struct loadparm_context *lp_ctx,
154 struct socket_context *sock,
155 struct server_id server_id, void *private_data)
157 struct stream_socket *stream_socket = talloc_get_type(private_data, struct stream_socket);
158 struct stream_connection *srv_conn;
160 srv_conn = talloc_zero(ev, struct stream_connection);
161 if (!srv_conn) {
162 DEBUG(0,("talloc(mem_ctx, struct stream_connection) failed\n"));
163 return;
166 talloc_steal(srv_conn, sock);
168 srv_conn->private_data = stream_socket->private_data;
169 srv_conn->model_ops = stream_socket->model_ops;
170 srv_conn->socket = sock;
171 srv_conn->server_id = server_id;
172 srv_conn->ops = stream_socket->ops;
173 srv_conn->event.ctx = ev;
174 srv_conn->lp_ctx = lp_ctx;
176 if (!socket_check_access(sock, "smbd", lp_hostsallow(NULL, lp_default_service(lp_ctx)), lp_hostsdeny(NULL, lp_default_service(lp_ctx)))) {
177 stream_terminate_connection(srv_conn, "denied by access rules");
178 return;
181 srv_conn->event.fde = tevent_add_fd(ev, srv_conn, socket_get_fd(sock),
182 0, stream_io_handler_fde, srv_conn);
183 if (!srv_conn->event.fde) {
184 stream_terminate_connection(srv_conn, "tevent_add_fd() failed");
185 return;
188 /* setup to receive internal messages on this connection */
189 srv_conn->msg_ctx = messaging_init(srv_conn,
190 lp_messaging_path(srv_conn, lp_ctx),
191 srv_conn->server_id, ev);
192 if (!srv_conn->msg_ctx) {
193 stream_terminate_connection(srv_conn, "messaging_init() failed");
194 return;
197 srv_conn->remote_address = socket_get_remote_addr(srv_conn->socket, srv_conn);
198 if (!srv_conn->remote_address) {
199 stream_terminate_connection(srv_conn, "socket_get_remote_addr() failed");
200 return;
203 srv_conn->local_address = socket_get_local_addr(srv_conn->socket, srv_conn);
204 if (!srv_conn->local_address) {
205 stream_terminate_connection(srv_conn, "socket_get_local_addr() failed");
206 return;
210 TALLOC_CTX *tmp_ctx;
211 const char *title;
213 tmp_ctx = talloc_new(srv_conn);
215 title = talloc_asprintf(tmp_ctx, "conn[%s] c[%s] s[%s] server_id[%s]",
216 stream_socket->ops->name,
217 tsocket_address_string(srv_conn->remote_address, tmp_ctx),
218 tsocket_address_string(srv_conn->local_address, tmp_ctx),
219 cluster_id_string(tmp_ctx, server_id));
220 if (title) {
221 stream_connection_set_title(srv_conn, title);
223 talloc_free(tmp_ctx);
226 /* we're now ready to start receiving events on this stream */
227 TEVENT_FD_READABLE(srv_conn->event.fde);
229 /* call the server specific accept code */
230 stream_socket->ops->accept_connection(srv_conn);
235 called when someone opens a connection to one of our listening ports
237 static void stream_accept_handler(struct tevent_context *ev, struct tevent_fd *fde,
238 uint16_t flags, void *private_data)
240 struct stream_socket *stream_socket = talloc_get_type(private_data, struct stream_socket);
242 /* ask the process model to create us a process for this new
243 connection. When done, it calls stream_new_connection()
244 with the newly created socket */
245 stream_socket->model_ops->accept_connection(ev, stream_socket->lp_ctx,
246 stream_socket->sock,
247 stream_new_connection, stream_socket);
251 setup a listen stream socket
252 if you pass *port == 0, then a port > 1024 is used
254 FIXME: This function is TCP/IP specific - uses an int rather than
255 a string for the port. Should leave allocating a port nr
256 to the socket implementation - JRV20070903
258 NTSTATUS stream_setup_socket(struct tevent_context *event_context,
259 struct loadparm_context *lp_ctx,
260 const struct model_ops *model_ops,
261 const struct stream_server_ops *stream_ops,
262 const char *family,
263 const char *sock_addr,
264 uint16_t *port,
265 const char *socket_options,
266 void *private_data)
268 NTSTATUS status;
269 struct stream_socket *stream_socket;
270 struct socket_address *socket_address;
271 struct tevent_fd *fde;
272 int i;
274 stream_socket = talloc_zero(event_context, struct stream_socket);
275 NT_STATUS_HAVE_NO_MEMORY(stream_socket);
277 status = socket_create(family, SOCKET_TYPE_STREAM, &stream_socket->sock, 0);
278 NT_STATUS_NOT_OK_RETURN(status);
280 talloc_steal(stream_socket, stream_socket->sock);
282 stream_socket->lp_ctx = talloc_reference(stream_socket, lp_ctx);
284 /* ready to listen */
285 status = socket_set_option(stream_socket->sock, "SO_KEEPALIVE", NULL);
286 NT_STATUS_NOT_OK_RETURN(status);
288 if (socket_options != NULL) {
289 status = socket_set_option(stream_socket->sock, socket_options, NULL);
290 NT_STATUS_NOT_OK_RETURN(status);
293 /* TODO: set socket ACL's (host allow etc) here when they're
294 * implemented */
296 /* Some sockets don't have a port, or are just described from
297 * the string. We are indicating this by having port == NULL */
298 if (!port) {
299 socket_address = socket_address_from_strings(stream_socket,
300 stream_socket->sock->backend_name,
301 sock_addr, 0);
302 NT_STATUS_HAVE_NO_MEMORY(socket_address);
303 status = socket_listen(stream_socket->sock, socket_address, SERVER_LISTEN_BACKLOG, 0);
304 talloc_free(socket_address);
306 } else if (*port == 0) {
307 for (i=SERVER_TCP_LOW_PORT;i<= SERVER_TCP_HIGH_PORT;i++) {
308 socket_address = socket_address_from_strings(stream_socket,
309 stream_socket->sock->backend_name,
310 sock_addr, i);
311 NT_STATUS_HAVE_NO_MEMORY(socket_address);
312 status = socket_listen(stream_socket->sock, socket_address,
313 SERVER_LISTEN_BACKLOG, 0);
314 talloc_free(socket_address);
315 if (NT_STATUS_IS_OK(status)) {
316 *port = i;
317 break;
320 } else {
321 socket_address = socket_address_from_strings(stream_socket,
322 stream_socket->sock->backend_name,
323 sock_addr, *port);
324 NT_STATUS_HAVE_NO_MEMORY(socket_address);
325 status = socket_listen(stream_socket->sock, socket_address, SERVER_LISTEN_BACKLOG, 0);
326 talloc_free(socket_address);
329 if (!NT_STATUS_IS_OK(status)) {
330 DEBUG(0,("Failed to listen on %s:%u - %s\n",
331 sock_addr, port ? (unsigned int)(*port) : 0,
332 nt_errstr(status)));
333 talloc_free(stream_socket);
334 return status;
337 /* Add the FD from the newly created socket into the event
338 * subsystem. it will call the accept handler whenever we get
339 * new connections */
341 fde = tevent_add_fd(event_context, stream_socket->sock,
342 socket_get_fd(stream_socket->sock),
343 TEVENT_FD_READ,
344 stream_accept_handler, stream_socket);
345 if (!fde) {
346 DEBUG(0,("Failed to setup fd event\n"));
347 talloc_free(stream_socket);
348 return NT_STATUS_NO_MEMORY;
351 /* we let events system to the close on the socket. This avoids
352 * nasty interactions with waiting for talloc to close the socket. */
353 tevent_fd_set_close_fn(fde, socket_tevent_fd_close_fn);
354 socket_set_flags(stream_socket->sock, SOCKET_FLAG_NOCLOSE);
356 stream_socket->private_data = talloc_reference(stream_socket, private_data);
357 stream_socket->ops = stream_ops;
358 stream_socket->event_ctx = event_context;
359 stream_socket->model_ops = model_ops;
361 return NT_STATUS_OK;
365 setup a connection title
367 void stream_connection_set_title(struct stream_connection *conn, const char *title)
369 conn->model_ops->set_title(conn->event.ctx, title);