smbd: Fix cached dos attributes
[Samba.git] / source3 / winbindd / winbindd_dual.c
blobfdb66d0e1c7b4ab11ee3bd97b7a6de7312143547
1 /*
2 Unix SMB/CIFS implementation.
4 Winbind child daemons
6 Copyright (C) Andrew Tridgell 2002
7 Copyright (C) Volker Lendecke 2004,2005
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/>.
24 * We fork a child per domain to be able to act non-blocking in the main
25 * winbind daemon. A domain controller thousands of miles away being being
26 * slow replying with a 10.000 user list should not hold up netlogon calls
27 * that can be handled locally.
30 #include "includes.h"
31 #include "winbindd.h"
32 #include "rpc_client/rpc_client.h"
33 #include "nsswitch/wb_reqtrans.h"
34 #include "secrets.h"
35 #include "../lib/util/select.h"
36 #include "winbindd_traceid.h"
37 #include "../libcli/security/security.h"
38 #include "system/select.h"
39 #include "messages.h"
40 #include "../lib/util/tevent_unix.h"
41 #include "lib/param/loadparm.h"
42 #include "lib/util/sys_rw.h"
43 #include "lib/util/sys_rw_data.h"
44 #include "passdb.h"
45 #include "lib/util/string_wrappers.h"
46 #include "lib/global_contexts.h"
47 #include "idmap.h"
48 #include "libcli/auth/netlogon_creds_cli.h"
49 #include "../lib/util/pidfile.h"
50 #include "librpc/gen_ndr/ndr_winbind_c.h"
51 #include "lib/util/util_process.h"
53 #undef DBGC_CLASS
54 #define DBGC_CLASS DBGC_WINBIND
56 static void forall_domain_children(bool (*fn)(struct winbindd_child *c,
57 void *private_data),
58 void *private_data)
60 struct winbindd_domain *d;
62 for (d = domain_list(); d != NULL; d = d->next) {
63 int i;
65 for (i = 0; i < talloc_array_length(d->children); i++) {
66 struct winbindd_child *c = &d->children[i];
67 bool ok;
69 if (c->pid == 0) {
70 continue;
73 ok = fn(c, private_data);
74 if (!ok) {
75 return;
81 static void forall_children(bool (*fn)(struct winbindd_child *c,
82 void *private_data),
83 void *private_data)
85 struct winbindd_child *c;
86 bool ok;
88 c = idmap_child();
89 if (c->pid != 0) {
90 ok = fn(c, private_data);
91 if (!ok) {
92 return;
96 c = locator_child();
97 if (c->pid != 0) {
98 ok = fn(c, private_data);
99 if (!ok) {
100 return;
104 forall_domain_children(fn, private_data);
107 /* Read some data from a client connection */
109 static NTSTATUS child_read_request(int sock, struct winbindd_request *wreq)
111 NTSTATUS status;
113 status = read_data_ntstatus(sock, (char *)wreq, sizeof(*wreq));
114 if (!NT_STATUS_IS_OK(status)) {
115 DEBUG(3, ("child_read_request: read_data failed: %s\n",
116 nt_errstr(status)));
117 return status;
120 if (wreq->extra_len == 0) {
121 wreq->extra_data.data = NULL;
122 return NT_STATUS_OK;
125 DEBUG(10, ("Need to read %d extra bytes\n", (int)wreq->extra_len));
127 wreq->extra_data.data = SMB_MALLOC_ARRAY(char, wreq->extra_len + 1);
128 if (wreq->extra_data.data == NULL) {
129 DEBUG(0, ("malloc failed\n"));
130 return NT_STATUS_NO_MEMORY;
133 /* Ensure null termination */
134 wreq->extra_data.data[wreq->extra_len] = '\0';
136 status = read_data_ntstatus(sock, wreq->extra_data.data,
137 wreq->extra_len);
138 if (!NT_STATUS_IS_OK(status)) {
139 DEBUG(0, ("Could not read extra data: %s\n",
140 nt_errstr(status)));
142 return status;
145 static NTSTATUS child_write_response(int sock, struct winbindd_response *wrsp)
147 struct iovec iov[2];
148 int iov_count;
150 iov[0].iov_base = (void *)wrsp;
151 iov[0].iov_len = sizeof(struct winbindd_response);
152 iov_count = 1;
154 if (wrsp->length > sizeof(struct winbindd_response)) {
155 iov[1].iov_base = (void *)wrsp->extra_data.data;
156 iov[1].iov_len = wrsp->length-iov[0].iov_len;
157 iov_count = 2;
160 DEBUG(10, ("Writing %d bytes to parent\n", (int)wrsp->length));
162 if (write_data_iov(sock, iov, iov_count) != wrsp->length) {
163 DEBUG(0, ("Could not write result\n"));
164 return NT_STATUS_INVALID_HANDLE;
167 return NT_STATUS_OK;
171 * Do winbind child async request. This is not simply wb_simple_trans. We have
172 * to do the queueing ourselves because while a request is queued, the child
173 * might have crashed, and we have to re-fork it in the _trigger function.
176 struct wb_child_request_state {
177 struct tevent_context *ev;
178 struct tevent_req *queue_subreq;
179 struct tevent_req *subreq;
180 struct winbindd_child *child;
181 struct winbindd_request *request;
182 struct winbindd_response *response;
185 static bool fork_domain_child(struct winbindd_child *child);
187 static void wb_child_request_waited(struct tevent_req *subreq);
188 static void wb_child_request_done(struct tevent_req *subreq);
189 static void wb_child_request_orphaned(struct tevent_req *subreq);
191 static void wb_child_request_cleanup(struct tevent_req *req,
192 enum tevent_req_state req_state);
194 struct tevent_req *wb_child_request_send(TALLOC_CTX *mem_ctx,
195 struct tevent_context *ev,
196 struct winbindd_child *child,
197 struct winbindd_request *request)
199 struct tevent_req *req;
200 struct wb_child_request_state *state;
201 struct tevent_req *subreq;
203 req = tevent_req_create(mem_ctx, &state,
204 struct wb_child_request_state);
205 if (req == NULL) {
206 return NULL;
209 state->ev = ev;
210 state->child = child;
213 * We have to make a copy of "request", because our caller
214 * might drop us via talloc_free().
216 * The talloc_move() magic in wb_child_request_cleanup() keeps
217 * all the requests, but if we are sitting deep within
218 * writev_send() down to the client, we have given it the
219 * pointer to "request". As our caller lost interest, it will
220 * just free "request", while writev_send still references it.
223 state->request = talloc_memdup(state, request, sizeof(*request));
224 if (tevent_req_nomem(state->request, req)) {
225 return tevent_req_post(req, ev);
228 state->request->traceid = debug_traceid_get();
230 if (request->extra_data.data != NULL) {
231 state->request->extra_data.data = talloc_memdup(
232 state->request,
233 request->extra_data.data,
234 request->extra_len);
235 if (tevent_req_nomem(state->request->extra_data.data, req)) {
236 return tevent_req_post(req, ev);
240 subreq = tevent_queue_wait_send(state, ev, child->queue);
241 if (tevent_req_nomem(subreq, req)) {
242 return tevent_req_post(req, ev);
244 tevent_req_set_callback(subreq, wb_child_request_waited, req);
245 state->queue_subreq = subreq;
247 tevent_req_set_cleanup_fn(req, wb_child_request_cleanup);
249 return req;
252 static void wb_child_request_waited(struct tevent_req *subreq)
254 struct tevent_req *req = tevent_req_callback_data(
255 subreq, struct tevent_req);
256 struct wb_child_request_state *state = tevent_req_data(
257 req, struct wb_child_request_state);
258 bool ok;
260 ok = tevent_queue_wait_recv(subreq);
261 if (!ok) {
262 tevent_req_oom(req);
263 return;
266 * We need to keep state->queue_subreq
267 * in order to block the queue.
269 subreq = NULL;
271 if ((state->child->sock == -1) && (!fork_domain_child(state->child))) {
272 tevent_req_error(req, errno);
273 return;
276 tevent_fd_set_flags(state->child->monitor_fde, 0);
278 subreq = wb_simple_trans_send(state, global_event_context(), NULL,
279 state->child->sock, state->request);
280 if (tevent_req_nomem(subreq, req)) {
281 return;
284 state->subreq = subreq;
285 tevent_req_set_callback(subreq, wb_child_request_done, req);
286 tevent_req_set_endtime(req, state->ev, timeval_current_ofs(300, 0));
289 static void wb_child_request_done(struct tevent_req *subreq)
291 struct tevent_req *req = tevent_req_callback_data(
292 subreq, struct tevent_req);
293 struct wb_child_request_state *state = tevent_req_data(
294 req, struct wb_child_request_state);
295 int ret, err;
297 ret = wb_simple_trans_recv(subreq, state, &state->response, &err);
298 /* Freeing the subrequest is deferred until the cleanup function,
299 * which has to know whether a subrequest exists, and consequently
300 * decide whether to shut down the pipe to the child process.
302 if (ret == -1) {
303 tevent_req_error(req, err);
304 return;
306 tevent_req_done(req);
309 static void wb_child_request_orphaned(struct tevent_req *subreq)
311 struct winbindd_child *child =
312 (struct winbindd_child *)tevent_req_callback_data_void(subreq);
314 DBG_WARNING("cleanup orphaned subreq[%p]\n", subreq);
315 TALLOC_FREE(subreq);
317 if (child->domain != NULL) {
319 * If the child is attached to a domain,
320 * we need to make sure the domain queue
321 * can move forward, after the orphaned
322 * request is done.
324 tevent_queue_start(child->domain->queue);
328 int wb_child_request_recv(struct tevent_req *req, TALLOC_CTX *mem_ctx,
329 struct winbindd_response **presponse, int *err)
331 struct wb_child_request_state *state = tevent_req_data(
332 req, struct wb_child_request_state);
334 if (tevent_req_is_unix_error(req, err)) {
335 return -1;
337 *presponse = talloc_move(mem_ctx, &state->response);
338 return 0;
341 static void wb_child_request_cleanup(struct tevent_req *req,
342 enum tevent_req_state req_state)
344 struct wb_child_request_state *state =
345 tevent_req_data(req, struct wb_child_request_state);
347 if (state->subreq == NULL) {
348 /* nothing to cleanup */
349 return;
352 if (req_state == TEVENT_REQ_RECEIVED) {
353 struct tevent_req *subreq = NULL;
356 * Our caller gave up, but we need to keep
357 * the low level request (wb_simple_trans)
358 * in order to maintain the parent child protocol.
360 * We also need to keep the child queue blocked
361 * until we got the response from the child.
364 subreq = talloc_move(state->child->queue, &state->subreq);
365 talloc_move(subreq, &state->queue_subreq);
366 talloc_move(subreq, &state->request);
367 tevent_req_set_callback(subreq,
368 wb_child_request_orphaned,
369 state->child);
371 DBG_WARNING("keep orphaned subreq[%p]\n", subreq);
372 return;
375 TALLOC_FREE(state->subreq);
376 TALLOC_FREE(state->queue_subreq);
378 tevent_fd_set_flags(state->child->monitor_fde, TEVENT_FD_READ);
380 if (state->child->domain != NULL) {
382 * If the child is attached to a domain,
383 * we need to make sure the domain queue
384 * can move forward, after the request
385 * is done.
387 tevent_queue_start(state->child->domain->queue);
390 if (req_state == TEVENT_REQ_DONE) {
391 /* transmitted request and got response */
392 return;
396 * Failed to transmit and receive response, or request
397 * cancelled while being serviced.
398 * The basic parent/child communication broke, close
399 * our socket
401 TALLOC_FREE(state->child->monitor_fde);
402 close(state->child->sock);
403 state->child->sock = -1;
406 static void child_socket_readable(struct tevent_context *ev,
407 struct tevent_fd *fde,
408 uint16_t flags,
409 void *private_data)
411 struct winbindd_child *child = private_data;
413 if ((flags & TEVENT_FD_READ) == 0) {
414 return;
417 TALLOC_FREE(child->monitor_fde);
420 * We're only active when there is no outstanding child
421 * request. Arriving here means the child closed its socket,
422 * it died. Do the same here.
425 SMB_ASSERT(child->sock != -1);
427 close(child->sock);
428 child->sock = -1;
431 static struct winbindd_child *choose_domain_child(struct winbindd_domain *domain)
433 struct winbindd_child *shortest = &domain->children[0];
434 struct winbindd_child *current;
435 int i;
437 for (i=0; i<talloc_array_length(domain->children); i++) {
438 size_t shortest_len, current_len;
440 current = &domain->children[i];
441 current_len = tevent_queue_length(current->queue);
443 if (current_len == 0) {
444 /* idle child */
445 return current;
448 shortest_len = tevent_queue_length(shortest->queue);
450 if (current_len < shortest_len) {
451 shortest = current;
455 return shortest;
458 struct dcerpc_binding_handle *dom_child_handle(struct winbindd_domain *domain)
460 return domain->binding_handle;
463 struct wb_domain_request_state {
464 struct tevent_context *ev;
465 struct tevent_queue_entry *queue_entry;
466 struct winbindd_domain *domain;
467 struct winbindd_child *child;
468 struct winbindd_request *request;
469 struct winbindd_request *init_req;
470 struct winbindd_response *response;
471 struct tevent_req *pending_subreq;
472 struct wbint_InitConnection r;
475 static void wb_domain_request_cleanup(struct tevent_req *req,
476 enum tevent_req_state req_state)
478 struct wb_domain_request_state *state = tevent_req_data(
479 req, struct wb_domain_request_state);
482 * If we're completely done or got a failure.
483 * we should remove ourself from the domain queue,
484 * after removing the child subreq from the child queue
485 * and give the next one in the queue the chance
486 * to check for an idle child.
488 TALLOC_FREE(state->pending_subreq);
489 TALLOC_FREE(state->queue_entry);
490 tevent_queue_start(state->domain->queue);
493 static void wb_domain_request_trigger(struct tevent_req *req,
494 void *private_data);
495 static void wb_domain_request_gotdc(struct tevent_req *subreq);
496 static void wb_domain_request_initialized(struct tevent_req *subreq);
497 static void wb_domain_request_done(struct tevent_req *subreq);
499 struct tevent_req *wb_domain_request_send(TALLOC_CTX *mem_ctx,
500 struct tevent_context *ev,
501 struct winbindd_domain *domain,
502 struct winbindd_request *request)
504 struct tevent_req *req;
505 struct wb_domain_request_state *state;
507 req = tevent_req_create(mem_ctx, &state,
508 struct wb_domain_request_state);
509 if (req == NULL) {
510 return NULL;
513 state->domain = domain;
514 state->ev = ev;
515 state->request = request;
517 tevent_req_set_cleanup_fn(req, wb_domain_request_cleanup);
519 state->queue_entry = tevent_queue_add_entry(
520 domain->queue, state->ev, req,
521 wb_domain_request_trigger, NULL);
522 if (tevent_req_nomem(state->queue_entry, req)) {
523 return tevent_req_post(req, ev);
526 return req;
529 static void wb_domain_request_trigger(struct tevent_req *req,
530 void *private_data)
532 struct wb_domain_request_state *state = tevent_req_data(
533 req, struct wb_domain_request_state);
534 struct winbindd_domain *domain = state->domain;
535 struct tevent_req *subreq = NULL;
536 size_t shortest_queue_length;
538 state->child = choose_domain_child(domain);
539 shortest_queue_length = tevent_queue_length(state->child->queue);
540 if (shortest_queue_length > 0) {
542 * All children are busy, we need to stop
543 * the queue and untrigger our own queue
544 * entry. Once a pending request
545 * is done it calls tevent_queue_start
546 * and we get retriggered.
548 state->child = NULL;
549 tevent_queue_stop(state->domain->queue);
550 tevent_queue_entry_untrigger(state->queue_entry);
551 return;
554 if (domain->initialized) {
555 subreq = wb_child_request_send(state, state->ev, state->child,
556 state->request);
557 if (tevent_req_nomem(subreq, req)) {
558 return;
560 tevent_req_set_callback(subreq, wb_domain_request_done, req);
561 state->pending_subreq = subreq;
564 * Once the domain is initialized and
565 * once we placed our real request into the child queue,
566 * we can remove ourself from the domain queue
567 * and give the next one in the queue the chance
568 * to check for an idle child.
570 TALLOC_FREE(state->queue_entry);
571 return;
574 state->init_req = talloc_zero(state, struct winbindd_request);
575 if (tevent_req_nomem(state->init_req, req)) {
576 return;
579 if (IS_DC || domain->primary || domain->internal) {
580 /* The primary domain has to find the DC name itself */
581 state->r.in.dcname = talloc_strdup(state, "");
582 if (tevent_req_nomem(state->r.in.dcname, req)) {
583 return;
586 subreq = dcerpc_wbint_InitConnection_r_send(state,
587 state->ev,
588 state->child->binding_handle,
589 &state->r);
590 if (tevent_req_nomem(subreq, req)) {
591 return;
593 tevent_req_set_callback(subreq, wb_domain_request_initialized,
594 req);
595 state->pending_subreq = subreq;
596 return;
600 * This is *not* the primary domain,
601 * let's ask our DC about a DC name.
603 * We prefer getting a dns name in dc_unc,
604 * which is indicated by DS_RETURN_DNS_NAME.
605 * For NT4 domains we still get the netbios name.
607 subreq = wb_dsgetdcname_send(state, state->ev,
608 state->domain->name,
609 NULL, /* domain_guid */
610 NULL, /* site_name */
611 DS_RETURN_DNS_NAME); /* flags */
612 if (tevent_req_nomem(subreq, req)) {
613 return;
615 tevent_req_set_callback(subreq, wb_domain_request_gotdc, req);
616 state->pending_subreq = subreq;
617 return;
620 static void wb_domain_request_gotdc(struct tevent_req *subreq)
622 struct tevent_req *req = tevent_req_callback_data(
623 subreq, struct tevent_req);
624 struct wb_domain_request_state *state = tevent_req_data(
625 req, struct wb_domain_request_state);
626 struct netr_DsRGetDCNameInfo *dcinfo = NULL;
627 NTSTATUS status;
628 const char *dcname = NULL;
630 state->pending_subreq = NULL;
632 status = wb_dsgetdcname_recv(subreq, state, &dcinfo);
633 TALLOC_FREE(subreq);
634 if (tevent_req_nterror(req, status)) {
635 return;
637 dcname = dcinfo->dc_unc;
638 while (dcname != NULL && *dcname == '\\') {
639 dcname++;
642 state->r.in.dcname = talloc_strdup(state, dcname);
643 if (tevent_req_nomem(state->r.in.dcname, req)) {
644 return;
647 TALLOC_FREE(dcinfo);
649 subreq = dcerpc_wbint_InitConnection_r_send(state,
650 state->ev,
651 state->child->binding_handle,
652 &state->r);
653 if (tevent_req_nomem(subreq, req)) {
654 return;
656 tevent_req_set_callback(subreq, wb_domain_request_initialized, req);
657 state->pending_subreq = subreq;
660 static void wb_domain_request_initialized(struct tevent_req *subreq)
662 struct tevent_req *req = tevent_req_callback_data(
663 subreq, struct tevent_req);
664 struct wb_domain_request_state *state = tevent_req_data(
665 req, struct wb_domain_request_state);
666 NTSTATUS status;
668 state->pending_subreq = NULL;
670 status = dcerpc_wbint_InitConnection_r_recv(subreq, state);
671 TALLOC_FREE(subreq);
672 if (NT_STATUS_IS_ERR(status)) {
673 tevent_req_error(req, map_errno_from_nt_status(status));
674 return;
677 status = state->r.out.result;
678 if (NT_STATUS_IS_ERR(status)) {
679 tevent_req_error(req, map_errno_from_nt_status(status));
680 return;
683 state->domain->sid = *state->r.out.sid;
685 talloc_free(state->domain->name);
686 state->domain->name = talloc_strdup(state->domain, *state->r.out.name);
687 if (state->domain->name == NULL) {
688 tevent_req_error(req, ENOMEM);
689 return;
692 if (*state->r.out.alt_name != NULL &&
693 strlen(*state->r.out.alt_name) > 0) {
694 talloc_free(state->domain->alt_name);
696 state->domain->alt_name = talloc_strdup(state->domain,
697 *state->r.out.alt_name);
698 if (state->domain->alt_name == NULL) {
699 tevent_req_error(req, ENOMEM);
700 return;
704 state->domain->native_mode =
705 (*state->r.out.flags & WB_DOMINFO_DOMAIN_NATIVE);
706 state->domain->active_directory =
707 (*state->r.out.flags & WB_DOMINFO_DOMAIN_AD);
708 state->domain->initialized = true;
710 subreq = wb_child_request_send(state, state->ev, state->child,
711 state->request);
712 if (tevent_req_nomem(subreq, req)) {
713 return;
715 tevent_req_set_callback(subreq, wb_domain_request_done, req);
716 state->pending_subreq = subreq;
719 * Once the domain is initialized and
720 * once we placed our real request into the child queue,
721 * we can remove ourself from the domain queue
722 * and give the next one in the queue the chance
723 * to check for an idle child.
725 TALLOC_FREE(state->queue_entry);
728 static void wb_domain_request_done(struct tevent_req *subreq)
730 struct tevent_req *req = tevent_req_callback_data(
731 subreq, struct tevent_req);
732 struct wb_domain_request_state *state = tevent_req_data(
733 req, struct wb_domain_request_state);
734 int ret, err;
736 state->pending_subreq = NULL;
738 ret = wb_child_request_recv(subreq, talloc_tos(), &state->response,
739 &err);
740 TALLOC_FREE(subreq);
741 if (ret == -1) {
742 tevent_req_error(req, err);
743 return;
745 tevent_req_done(req);
748 int wb_domain_request_recv(struct tevent_req *req, TALLOC_CTX *mem_ctx,
749 struct winbindd_response **presponse, int *err)
751 struct wb_domain_request_state *state = tevent_req_data(
752 req, struct wb_domain_request_state);
754 if (tevent_req_is_unix_error(req, err)) {
755 return -1;
757 *presponse = talloc_move(mem_ctx, &state->response);
758 return 0;
761 static void child_process_request(struct winbindd_child *child,
762 struct winbindd_cli_state *state)
764 struct winbindd_domain *domain = child->domain;
766 /* Free response data - we may be interrupted and receive another
767 command before being able to send this data off. */
769 state->response->result = WINBINDD_ERROR;
770 state->response->length = sizeof(struct winbindd_response);
772 /* as all requests in the child are sync, we can use talloc_tos() */
773 state->mem_ctx = talloc_tos();
775 /* Process command */
776 state->response->result = winbindd_dual_ndrcmd(domain, state);
779 void setup_child(struct winbindd_domain *domain, struct winbindd_child *child,
780 const char *logprefix,
781 const char *logname)
783 const struct loadparm_substitution *lp_sub =
784 loadparm_s3_global_substitution();
786 if (logprefix && logname) {
787 char *logbase = NULL;
789 if (*lp_logfile(talloc_tos(), lp_sub)) {
790 char *end = NULL;
792 if (asprintf(&logbase, "%s", lp_logfile(talloc_tos(), lp_sub)) < 0) {
793 smb_panic("Internal error: asprintf failed");
796 if ((end = strrchr_m(logbase, '/'))) {
797 *end = '\0';
799 } else {
800 if (asprintf(&logbase, "%s", get_dyn_LOGFILEBASE()) < 0) {
801 smb_panic("Internal error: asprintf failed");
805 if (asprintf(&child->logfilename, "%s/%s-%s",
806 logbase, logprefix, logname) < 0) {
807 SAFE_FREE(logbase);
808 smb_panic("Internal error: asprintf failed");
811 SAFE_FREE(logbase);
812 } else {
813 smb_panic("Internal error: logprefix == NULL && "
814 "logname == NULL");
817 child->pid = 0;
818 child->sock = -1;
819 child->domain = domain;
820 child->queue = tevent_queue_create(NULL, "winbind_child");
821 SMB_ASSERT(child->queue != NULL);
823 child->binding_handle = wbint_binding_handle(NULL, NULL, child);
824 SMB_ASSERT(child->binding_handle != NULL);
827 struct winbind_child_died_state {
828 pid_t pid;
829 struct winbindd_child *child;
832 static bool winbind_child_died_fn(struct winbindd_child *child,
833 void *private_data)
835 struct winbind_child_died_state *state = private_data;
837 if (child->pid == state->pid) {
838 state->child = child;
839 return false;
841 return true;
844 void winbind_child_died(pid_t pid)
846 struct winbind_child_died_state state = { .pid = pid };
848 forall_children(winbind_child_died_fn, &state);
850 if (state.child == NULL) {
851 DEBUG(5, ("Already reaped child %u died\n", (unsigned int)pid));
852 return;
855 state.child->pid = 0;
858 /* Ensure any negative cache entries with the netbios or realm names are removed. */
860 void winbindd_flush_negative_conn_cache(struct winbindd_domain *domain)
862 flush_negative_conn_cache_for_domain(domain->name);
863 if (domain->alt_name != NULL) {
864 flush_negative_conn_cache_for_domain(domain->alt_name);
869 * Parent winbindd process sets its own debug level first and then
870 * sends a message to all the winbindd children to adjust their debug
871 * level to that of parents.
874 struct winbind_msg_relay_state {
875 struct messaging_context *msg_ctx;
876 uint32_t msg_type;
877 DATA_BLOB *data;
880 static bool winbind_msg_relay_fn(struct winbindd_child *child,
881 void *private_data)
883 struct winbind_msg_relay_state *state = private_data;
885 DBG_DEBUG("sending message to pid %u.\n",
886 (unsigned int)child->pid);
888 messaging_send(state->msg_ctx, pid_to_procid(child->pid),
889 state->msg_type, state->data);
890 return true;
893 void winbind_msg_debug(struct messaging_context *msg_ctx,
894 void *private_data,
895 uint32_t msg_type,
896 struct server_id server_id,
897 DATA_BLOB *data)
899 struct winbind_msg_relay_state state = {
900 .msg_ctx = msg_ctx, .msg_type = msg_type, .data = data
903 DEBUG(10,("winbind_msg_debug: got debug message.\n"));
905 debug_message(msg_ctx, private_data, MSG_DEBUG, server_id, data);
907 forall_children(winbind_msg_relay_fn, &state);
910 void winbind_disconnect_dc_parent(struct messaging_context *msg_ctx,
911 void *private_data,
912 uint32_t msg_type,
913 struct server_id server_id,
914 DATA_BLOB *data)
916 struct winbind_msg_relay_state state = {
917 .msg_ctx = msg_ctx, .msg_type = msg_type, .data = data
920 DBG_DEBUG("Got disconnect_dc message\n");
922 forall_children(winbind_msg_relay_fn, &state);
925 static bool winbindd_child_msg_filter(struct messaging_rec *rec,
926 void *private_data)
928 struct winbindd_child *child = talloc_get_type_abort(private_data,
929 struct winbindd_child);
931 if (rec->msg_type == MSG_SMB_CONF_UPDATED) {
932 DBG_DEBUG("Got reload-config message\n");
933 winbindd_reload_services_file(child->logfilename);
936 return false;
939 /* React on 'smbcontrol winbindd reload-config' in the same way as on SIGHUP*/
940 void winbindd_msg_reload_services_parent(struct messaging_context *msg,
941 void *private_data,
942 uint32_t msg_type,
943 struct server_id server_id,
944 DATA_BLOB *data)
946 struct winbind_msg_relay_state state = {
947 .msg_ctx = msg,
948 .msg_type = msg_type,
949 .data = data,
951 bool ok;
953 DBG_DEBUG("Got reload-config message\n");
955 /* Flush various caches */
956 winbindd_flush_caches();
958 winbindd_reload_services_file((const char *)private_data);
960 /* Set tevent_thread_call_depth_set_callback according to debug level */
961 if (lp_winbind_debug_traceid() && debuglevel_get() > 1) {
962 tevent_thread_call_depth_set_callback(winbind_call_flow, NULL);
963 } else {
964 tevent_thread_call_depth_set_callback(NULL, NULL);
967 ok = add_trusted_domains_dc();
968 if (!ok) {
969 DBG_ERR("add_trusted_domains_dc() failed\n");
972 forall_children(winbind_msg_relay_fn, &state);
975 /* Set our domains as offline and forward the offline message to our children. */
977 struct winbind_msg_on_offline_state {
978 struct messaging_context *msg_ctx;
979 uint32_t msg_type;
982 static bool winbind_msg_on_offline_fn(struct winbindd_child *child,
983 void *private_data)
985 struct winbind_msg_on_offline_state *state = private_data;
987 if (child->domain->internal) {
988 return true;
992 * Each winbindd child should only process requests for one
993 * domain - make sure we only set it online / offline for that
994 * domain.
996 DBG_DEBUG("sending message to pid %u for domain %s.\n",
997 (unsigned int)child->pid, child->domain->name);
999 messaging_send_buf(state->msg_ctx,
1000 pid_to_procid(child->pid),
1001 state->msg_type,
1002 (const uint8_t *)child->domain->name,
1003 strlen(child->domain->name)+1);
1005 return true;
1008 void winbind_msg_offline(struct messaging_context *msg_ctx,
1009 void *private_data,
1010 uint32_t msg_type,
1011 struct server_id server_id,
1012 DATA_BLOB *data)
1014 struct winbind_msg_on_offline_state state = {
1015 .msg_ctx = msg_ctx,
1016 .msg_type = MSG_WINBIND_OFFLINE,
1018 struct winbindd_domain *domain;
1020 DEBUG(10,("winbind_msg_offline: got offline message.\n"));
1022 if (!lp_winbind_offline_logon()) {
1023 DEBUG(10,("winbind_msg_offline: rejecting offline message.\n"));
1024 return;
1027 /* Set our global state as offline. */
1028 if (!set_global_winbindd_state_offline()) {
1029 DEBUG(10,("winbind_msg_offline: offline request failed.\n"));
1030 return;
1033 /* Set all our domains as offline. */
1034 for (domain = domain_list(); domain; domain = domain->next) {
1035 if (domain->internal) {
1036 continue;
1038 DEBUG(5,("winbind_msg_offline: marking %s offline.\n", domain->name));
1039 domain->online = false;
1042 forall_domain_children(winbind_msg_on_offline_fn, &state);
1045 /* Set our domains as online and forward the online message to our children. */
1047 void winbind_msg_online(struct messaging_context *msg_ctx,
1048 void *private_data,
1049 uint32_t msg_type,
1050 struct server_id server_id,
1051 DATA_BLOB *data)
1053 struct winbind_msg_on_offline_state state = {
1054 .msg_ctx = msg_ctx,
1055 .msg_type = MSG_WINBIND_ONLINE,
1058 DEBUG(10,("winbind_msg_online: got online message.\n"));
1060 if (!lp_winbind_offline_logon()) {
1061 DEBUG(10,("winbind_msg_online: rejecting online message.\n"));
1062 return;
1065 /* Set our global state as online. */
1066 set_global_winbindd_state_online();
1068 smb_nscd_flush_user_cache();
1069 smb_nscd_flush_group_cache();
1071 /* Tell all our child domains to go online online. */
1072 forall_domain_children(winbind_msg_on_offline_fn, &state);
1075 static const char *collect_onlinestatus(TALLOC_CTX *mem_ctx)
1077 struct winbindd_domain *domain;
1078 char *buf = NULL;
1080 if ((buf = talloc_asprintf(mem_ctx, "global:%s ",
1081 get_global_winbindd_state_offline() ?
1082 "Offline":"Online")) == NULL) {
1083 return NULL;
1086 for (domain = domain_list(); domain; domain = domain->next) {
1087 if ((buf = talloc_asprintf_append_buffer(buf, "%s:%s ",
1088 domain->name,
1089 domain->online ?
1090 "Online":"Offline")) == NULL) {
1091 return NULL;
1095 buf = talloc_asprintf_append_buffer(buf, "\n");
1097 DEBUG(5,("collect_onlinestatus: %s", buf));
1099 return buf;
1102 void winbind_msg_onlinestatus(struct messaging_context *msg_ctx,
1103 void *private_data,
1104 uint32_t msg_type,
1105 struct server_id server_id,
1106 DATA_BLOB *data)
1108 TALLOC_CTX *mem_ctx;
1109 const char *message;
1111 DEBUG(5,("winbind_msg_onlinestatus received.\n"));
1113 mem_ctx = talloc_init("winbind_msg_onlinestatus");
1114 if (mem_ctx == NULL) {
1115 return;
1118 message = collect_onlinestatus(mem_ctx);
1119 if (message == NULL) {
1120 talloc_destroy(mem_ctx);
1121 return;
1124 messaging_send_buf(msg_ctx, server_id, MSG_WINBIND_ONLINESTATUS,
1125 (const uint8_t *)message, strlen(message) + 1);
1127 talloc_destroy(mem_ctx);
1130 void winbind_msg_dump_domain_list(struct messaging_context *msg_ctx,
1131 void *private_data,
1132 uint32_t msg_type,
1133 struct server_id server_id,
1134 DATA_BLOB *data)
1136 TALLOC_CTX *mem_ctx;
1137 const char *message = NULL;
1138 const char *domain = NULL;
1139 char *s = NULL;
1140 NTSTATUS status;
1141 struct winbindd_domain *dom = NULL;
1143 DEBUG(5,("winbind_msg_dump_domain_list received.\n"));
1145 mem_ctx = talloc_init("winbind_msg_dump_domain_list");
1146 if (!mem_ctx) {
1147 return;
1150 if (data->length > 0) {
1151 domain = (const char *)data->data;
1154 if (domain) {
1156 DEBUG(5,("winbind_msg_dump_domain_list for domain: %s\n",
1157 domain));
1159 message = NDR_PRINT_STRUCT_STRING(mem_ctx, winbindd_domain,
1160 find_domain_from_name_noinit(domain));
1161 if (!message) {
1162 talloc_destroy(mem_ctx);
1163 return;
1166 messaging_send_buf(msg_ctx, server_id,
1167 MSG_WINBIND_DUMP_DOMAIN_LIST,
1168 (const uint8_t *)message, strlen(message) + 1);
1170 talloc_destroy(mem_ctx);
1172 return;
1175 DEBUG(5,("winbind_msg_dump_domain_list all domains\n"));
1177 for (dom = domain_list(); dom; dom=dom->next) {
1178 message = NDR_PRINT_STRUCT_STRING(mem_ctx, winbindd_domain, dom);
1179 if (!message) {
1180 talloc_destroy(mem_ctx);
1181 return;
1184 s = talloc_asprintf_append(s, "%s\n", message);
1185 if (!s) {
1186 talloc_destroy(mem_ctx);
1187 return;
1191 status = messaging_send_buf(msg_ctx, server_id,
1192 MSG_WINBIND_DUMP_DOMAIN_LIST,
1193 (uint8_t *)s, strlen(s) + 1);
1194 if (!NT_STATUS_IS_OK(status)) {
1195 DEBUG(0,("failed to send message: %s\n",
1196 nt_errstr(status)));
1199 talloc_destroy(mem_ctx);
1202 static void account_lockout_policy_handler(struct tevent_context *ctx,
1203 struct tevent_timer *te,
1204 struct timeval now,
1205 void *private_data)
1207 struct winbindd_child *child =
1208 (struct winbindd_child *)private_data;
1209 TALLOC_CTX *mem_ctx = NULL;
1210 struct samr_DomInfo12 lockout_policy;
1211 NTSTATUS result;
1213 DEBUG(10,("account_lockout_policy_handler called\n"));
1215 TALLOC_FREE(child->lockout_policy_event);
1217 if ( !winbindd_can_contact_domain( child->domain ) ) {
1218 DEBUG(10,("account_lockout_policy_handler: Removing myself since I "
1219 "do not have an incoming trust to domain %s\n",
1220 child->domain->name));
1222 return;
1225 mem_ctx = talloc_init("account_lockout_policy_handler ctx");
1226 if (!mem_ctx) {
1227 result = NT_STATUS_NO_MEMORY;
1228 } else {
1229 result = wb_cache_lockout_policy(child->domain, mem_ctx,
1230 &lockout_policy);
1232 TALLOC_FREE(mem_ctx);
1234 if (!NT_STATUS_IS_OK(result)) {
1235 DEBUG(10,("account_lockout_policy_handler: lockout_policy failed error %s\n",
1236 nt_errstr(result)));
1239 child->lockout_policy_event = tevent_add_timer(global_event_context(), NULL,
1240 timeval_current_ofs(3600, 0),
1241 account_lockout_policy_handler,
1242 child);
1245 static time_t get_machine_password_timeout(void)
1247 /* until we have gpo support use lp setting */
1248 return lp_machine_password_timeout();
1251 static bool calculate_next_machine_pwd_change(const char *domain,
1252 struct timeval *t)
1254 time_t pass_last_set_time;
1255 time_t timeout;
1256 time_t next_change;
1257 struct timeval tv;
1258 char *pw;
1260 pw = secrets_fetch_machine_password(domain,
1261 &pass_last_set_time,
1262 NULL);
1264 if (pw == NULL) {
1265 DEBUG(0,("cannot fetch own machine password ????\n"));
1266 return false;
1269 SAFE_FREE(pw);
1271 timeout = get_machine_password_timeout();
1272 if (timeout == 0) {
1273 DEBUG(10,("machine password never expires\n"));
1274 return false;
1277 tv.tv_sec = pass_last_set_time;
1278 DEBUG(10, ("password last changed %s\n",
1279 timeval_string(talloc_tos(), &tv, false)));
1280 tv.tv_sec += timeout;
1281 DEBUGADD(10, ("password valid until %s\n",
1282 timeval_string(talloc_tos(), &tv, false)));
1284 if (time(NULL) < (pass_last_set_time + timeout)) {
1285 next_change = pass_last_set_time + timeout;
1286 DEBUG(10,("machine password still valid until: %s\n",
1287 http_timestring(talloc_tos(), next_change)));
1288 *t = tevent_timeval_set(next_change, 0);
1290 if (lp_clustering()) {
1291 uint8_t randbuf;
1293 * When having a cluster, we have several
1294 * winbinds racing for the password change. In
1295 * the machine_password_change_handler()
1296 * function we check if someone else was
1297 * faster when the event triggers. We add a
1298 * 255-second random delay here, so that we
1299 * don't run to change the password at the
1300 * exact same moment.
1302 generate_random_buffer(&randbuf, sizeof(randbuf));
1303 DEBUG(10, ("adding %d seconds randomness\n",
1304 (int)randbuf));
1305 t->tv_sec += randbuf;
1307 return true;
1310 DEBUG(10,("machine password expired, needs immediate change\n"));
1312 *t = timeval_zero();
1314 return true;
1317 static void machine_password_change_handler(struct tevent_context *ctx,
1318 struct tevent_timer *te,
1319 struct timeval now,
1320 void *private_data)
1322 struct messaging_context *msg_ctx = global_messaging_context();
1323 struct winbindd_child *child =
1324 (struct winbindd_child *)private_data;
1325 struct rpc_pipe_client *netlogon_pipe = NULL;
1326 struct netlogon_creds_cli_context *netlogon_creds_ctx = NULL;
1327 NTSTATUS result;
1328 struct timeval next_change;
1330 DEBUG(10,("machine_password_change_handler called\n"));
1332 TALLOC_FREE(child->machine_password_change_event);
1334 if (!calculate_next_machine_pwd_change(child->domain->name,
1335 &next_change)) {
1336 DEBUG(10, ("calculate_next_machine_pwd_change failed\n"));
1337 return;
1340 DEBUG(10, ("calculate_next_machine_pwd_change returned %s\n",
1341 timeval_string(talloc_tos(), &next_change, false)));
1343 if (!timeval_expired(&next_change)) {
1344 DEBUG(10, ("Someone else has already changed the pw\n"));
1345 goto done;
1348 if (!winbindd_can_contact_domain(child->domain)) {
1349 DEBUG(10,("machine_password_change_handler: Removing myself since I "
1350 "do not have an incoming trust to domain %s\n",
1351 child->domain->name));
1352 return;
1355 result = cm_connect_netlogon_secure(child->domain,
1356 &netlogon_pipe,
1357 &netlogon_creds_ctx);
1358 if (!NT_STATUS_IS_OK(result)) {
1359 DEBUG(10,("machine_password_change_handler: "
1360 "failed to connect netlogon pipe: %s\n",
1361 nt_errstr(result)));
1362 return;
1365 result = trust_pw_change(netlogon_creds_ctx,
1366 msg_ctx,
1367 netlogon_pipe->binding_handle,
1368 child->domain->name,
1369 child->domain->dcname,
1370 false); /* force */
1372 DEBUG(10, ("machine_password_change_handler: "
1373 "trust_pw_change returned %s\n",
1374 nt_errstr(result)));
1376 if (NT_STATUS_EQUAL(result, NT_STATUS_ACCESS_DENIED) ) {
1377 DEBUG(3,("machine_password_change_handler: password set returned "
1378 "ACCESS_DENIED. Maybe the trust account "
1379 "password was changed and we didn't know it. "
1380 "Killing connections to domain %s\n",
1381 child->domain->name));
1382 invalidate_cm_connection(child->domain);
1385 if (!calculate_next_machine_pwd_change(child->domain->name,
1386 &next_change)) {
1387 DEBUG(10, ("calculate_next_machine_pwd_change failed\n"));
1388 return;
1391 DEBUG(10, ("calculate_next_machine_pwd_change returned %s\n",
1392 timeval_string(talloc_tos(), &next_change, false)));
1394 if (!NT_STATUS_IS_OK(result)) {
1395 struct timeval tmp;
1397 * In case of failure, give the DC a minute to recover
1399 tmp = timeval_current_ofs(60, 0);
1400 next_change = timeval_max(&next_change, &tmp);
1403 done:
1404 child->machine_password_change_event = tevent_add_timer(global_event_context(), NULL,
1405 next_change,
1406 machine_password_change_handler,
1407 child);
1410 /* Deal with a request to go offline. */
1412 static void child_msg_offline(struct messaging_context *msg,
1413 void *private_data,
1414 uint32_t msg_type,
1415 struct server_id server_id,
1416 DATA_BLOB *data)
1418 struct winbindd_domain *domain;
1419 struct winbindd_domain *primary_domain = NULL;
1420 const char *domainname = (const char *)data->data;
1422 if (data->data == NULL || data->length == 0) {
1423 return;
1426 DEBUG(5,("child_msg_offline received for domain %s.\n", domainname));
1428 if (!lp_winbind_offline_logon()) {
1429 DEBUG(10,("child_msg_offline: rejecting offline message.\n"));
1430 return;
1433 primary_domain = find_our_domain();
1435 /* Mark the requested domain offline. */
1437 for (domain = domain_list(); domain; domain = domain->next) {
1438 if (domain->internal) {
1439 continue;
1441 if (strequal(domain->name, domainname)) {
1442 DEBUG(5,("child_msg_offline: marking %s offline.\n", domain->name));
1443 set_domain_offline(domain);
1444 /* we are in the trusted domain, set the primary domain
1445 * offline too */
1446 if (domain != primary_domain) {
1447 set_domain_offline(primary_domain);
1453 /* Deal with a request to go online. */
1455 static void child_msg_online(struct messaging_context *msg,
1456 void *private_data,
1457 uint32_t msg_type,
1458 struct server_id server_id,
1459 DATA_BLOB *data)
1461 struct winbindd_domain *domain;
1462 struct winbindd_domain *primary_domain = NULL;
1463 const char *domainname = (const char *)data->data;
1465 if (data->data == NULL || data->length == 0) {
1466 return;
1469 DEBUG(5,("child_msg_online received for domain %s.\n", domainname));
1471 if (!lp_winbind_offline_logon()) {
1472 DEBUG(10,("child_msg_online: rejecting online message.\n"));
1473 return;
1476 primary_domain = find_our_domain();
1478 /* Set our global state as online. */
1479 set_global_winbindd_state_online();
1481 /* Try and mark everything online - delete any negative cache entries
1482 to force a reconnect now. */
1484 for (domain = domain_list(); domain; domain = domain->next) {
1485 if (domain->internal) {
1486 continue;
1488 if (strequal(domain->name, domainname)) {
1489 DEBUG(5,("child_msg_online: requesting %s to go online.\n", domain->name));
1490 winbindd_flush_negative_conn_cache(domain);
1491 set_domain_online_request(domain);
1493 /* we can be in trusted domain, which will contact primary domain
1494 * we have to bring primary domain online in trusted domain process
1495 * see, winbindd_dual_pam_auth() --> winbindd_dual_pam_auth_samlogon()
1496 * --> contact_domain = find_our_domain()
1497 * */
1498 if (domain != primary_domain) {
1499 winbindd_flush_negative_conn_cache(primary_domain);
1500 set_domain_online_request(primary_domain);
1506 struct winbindd_reinit_after_fork_state {
1507 const struct winbindd_child *myself;
1510 static bool winbindd_reinit_after_fork_fn(struct winbindd_child *child,
1511 void *private_data)
1513 struct winbindd_reinit_after_fork_state *state = private_data;
1515 if (child == state->myself) {
1516 return true;
1519 /* Destroy all possible events in child list. */
1520 TALLOC_FREE(child->lockout_policy_event);
1521 TALLOC_FREE(child->machine_password_change_event);
1524 * Children should never be able to send each other messages,
1525 * all messages must go through the parent.
1527 child->pid = (pid_t)0;
1530 * Close service sockets to all other children
1532 if (child->sock != -1) {
1533 close(child->sock);
1534 child->sock = -1;
1537 return true;
1540 NTSTATUS winbindd_reinit_after_fork(const struct winbindd_child *myself,
1541 const char *logfilename)
1543 struct winbindd_reinit_after_fork_state state = { .myself = myself };
1544 struct winbindd_domain *domain;
1545 NTSTATUS status;
1547 status = reinit_after_fork(
1548 global_messaging_context(),
1549 global_event_context(),
1550 true);
1551 if (!NT_STATUS_IS_OK(status)) {
1552 DEBUG(0,("reinit_after_fork() failed\n"));
1553 return status;
1555 initialize_password_db(true, global_event_context());
1557 close_conns_after_fork();
1559 if (logfilename != NULL) {
1560 lp_set_logfile(logfilename);
1561 reopen_logs();
1564 if (!winbindd_setup_sig_term_handler(false)) {
1565 return NT_STATUS_NO_MEMORY;
1568 if (!winbindd_setup_sig_hup_handler(logfilename)) {
1569 return NT_STATUS_NO_MEMORY;
1572 /* Stop zombies in children */
1573 CatchChild();
1575 /* Don't handle the same messages as our parent. */
1576 messaging_deregister(global_messaging_context(),
1577 MSG_SMB_CONF_UPDATED, NULL);
1578 messaging_deregister(global_messaging_context(),
1579 MSG_SHUTDOWN, NULL);
1580 messaging_deregister(global_messaging_context(),
1581 MSG_WINBIND_OFFLINE, NULL);
1582 messaging_deregister(global_messaging_context(),
1583 MSG_WINBIND_ONLINE, NULL);
1584 messaging_deregister(global_messaging_context(),
1585 MSG_WINBIND_ONLINESTATUS, NULL);
1586 messaging_deregister(global_messaging_context(),
1587 MSG_WINBIND_DUMP_DOMAIN_LIST, NULL);
1588 messaging_deregister(global_messaging_context(),
1589 MSG_DEBUG, NULL);
1591 messaging_deregister(global_messaging_context(),
1592 MSG_WINBIND_DOMAIN_OFFLINE, NULL);
1593 messaging_deregister(global_messaging_context(),
1594 MSG_WINBIND_DOMAIN_ONLINE, NULL);
1596 /* We have destroyed all events in the winbindd_event_context
1597 * in reinit_after_fork(), so clean out all possible pending
1598 * event pointers. */
1600 /* Deal with check_online_events. */
1602 for (domain = domain_list(); domain; domain = domain->next) {
1603 TALLOC_FREE(domain->check_online_event);
1606 /* Ensure we're not handling a credential cache event inherited
1607 * from our parent. */
1609 ccache_remove_all_after_fork();
1611 forall_children(winbindd_reinit_after_fork_fn, &state);
1613 return NT_STATUS_OK;
1617 * In a child there will be only one domain, reference that here.
1619 static struct winbindd_domain *child_domain;
1621 struct winbindd_domain *wb_child_domain(void)
1623 return child_domain;
1626 struct child_handler_state {
1627 struct winbindd_child *child;
1628 struct winbindd_cli_state cli;
1631 static void child_handler(struct tevent_context *ev, struct tevent_fd *fde,
1632 uint16_t flags, void *private_data)
1634 struct child_handler_state *state =
1635 (struct child_handler_state *)private_data;
1636 NTSTATUS status;
1637 uint64_t parent_traceid;
1639 /* fetch a request from the main daemon */
1640 status = child_read_request(state->cli.sock, state->cli.request);
1642 if (!NT_STATUS_IS_OK(status)) {
1643 /* we lost contact with our parent */
1644 _exit(0);
1647 /* read traceid from request */
1648 parent_traceid = state->cli.request->traceid;
1649 debug_traceid_set(parent_traceid);
1651 DEBUG(4,("child daemon request %d\n",
1652 (int)state->cli.request->cmd));
1654 ZERO_STRUCTP(state->cli.response);
1655 state->cli.request->null_term = '\0';
1656 state->cli.mem_ctx = talloc_tos();
1657 child_process_request(state->child, &state->cli);
1659 DEBUG(4, ("Finished processing child request %d\n",
1660 (int)state->cli.request->cmd));
1662 SAFE_FREE(state->cli.request->extra_data.data);
1664 status = child_write_response(state->cli.sock, state->cli.response);
1665 if (!NT_STATUS_IS_OK(status)) {
1666 exit(1);
1670 static bool fork_domain_child(struct winbindd_child *child)
1672 int fdpair[2];
1673 struct child_handler_state state;
1674 struct winbindd_request request;
1675 struct winbindd_response response;
1676 struct winbindd_domain *primary_domain = NULL;
1677 NTSTATUS status;
1678 ssize_t nwritten;
1679 struct tevent_fd *fde;
1680 struct tevent_req *req = NULL;
1682 if (child->domain) {
1683 DEBUG(10, ("fork_domain_child called for domain '%s'\n",
1684 child->domain->name));
1685 } else {
1686 DEBUG(10, ("fork_domain_child called without domain.\n"));
1689 if (socketpair(AF_UNIX, SOCK_STREAM, 0, fdpair) != 0) {
1690 DEBUG(0, ("Could not open child pipe: %s\n",
1691 strerror(errno)));
1692 return False;
1695 ZERO_STRUCT(state);
1696 state.child = child;
1697 state.cli.pid = getpid();
1698 state.cli.request = &request;
1699 state.cli.response = &response;
1701 child->pid = fork();
1703 if (child->pid == -1) {
1704 DEBUG(0, ("Could not fork: %s\n", strerror(errno)));
1705 close(fdpair[0]);
1706 close(fdpair[1]);
1707 return False;
1710 if (child->pid != 0) {
1711 /* Parent */
1712 ssize_t nread;
1713 int rc;
1715 close(fdpair[0]);
1717 nread = sys_read(fdpair[1], &status, sizeof(status));
1718 if (nread != sizeof(status)) {
1719 DEBUG(1, ("fork_domain_child: Could not read child status: "
1720 "nread=%d, error=%s\n", (int)nread,
1721 strerror(errno)));
1722 close(fdpair[1]);
1723 return false;
1725 if (!NT_STATUS_IS_OK(status)) {
1726 DEBUG(1, ("fork_domain_child: Child status is %s\n",
1727 nt_errstr(status)));
1728 close(fdpair[1]);
1729 return false;
1732 child->monitor_fde = tevent_add_fd(global_event_context(),
1733 global_event_context(),
1734 fdpair[1],
1735 TEVENT_FD_READ,
1736 child_socket_readable,
1737 child);
1738 if (child->monitor_fde == NULL) {
1739 DBG_WARNING("tevent_add_fd failed\n");
1740 close(fdpair[1]);
1741 return false;
1744 rc = set_blocking(fdpair[1], false);
1745 if (rc < 0) {
1746 close(fdpair[1]);
1747 return false;
1750 child->sock = fdpair[1];
1752 return true;
1755 /* Child */
1756 child_domain = child->domain;
1758 DEBUG(10, ("Child process %d\n", (int)getpid()));
1760 state.cli.sock = fdpair[0];
1761 close(fdpair[1]);
1763 /* Reset traceid and deactivate call_depth tracking */
1764 if (lp_winbind_debug_traceid()) {
1765 debug_traceid_set(1);
1766 tevent_thread_call_depth_set_callback(NULL, NULL);
1769 status = winbindd_reinit_after_fork(child, child->logfilename);
1771 /* setup callbacks again, one of them is removed in reinit_after_fork */
1772 if (lp_winbind_debug_traceid()) {
1773 winbind_debug_traceid_setup(global_event_context());
1776 nwritten = sys_write(state.cli.sock, &status, sizeof(status));
1777 if (nwritten != sizeof(status)) {
1778 DEBUG(1, ("fork_domain_child: Could not write status: "
1779 "nwritten=%d, error=%s\n", (int)nwritten,
1780 strerror(errno)));
1781 _exit(0);
1783 if (!NT_STATUS_IS_OK(status)) {
1784 DEBUG(1, ("winbindd_reinit_after_fork failed: %s\n",
1785 nt_errstr(status)));
1786 _exit(0);
1789 if (child_domain != NULL) {
1790 process_set_title("wb[%s]", "domain child [%s]", child_domain->name);
1791 } else if (is_idmap_child(child)) {
1792 process_set_title("wb-idmap", "idmap child");
1795 /* Handle online/offline messages. */
1796 messaging_register(global_messaging_context(), NULL,
1797 MSG_WINBIND_OFFLINE, child_msg_offline);
1798 messaging_register(global_messaging_context(), NULL,
1799 MSG_WINBIND_ONLINE, child_msg_online);
1800 messaging_register(global_messaging_context(), NULL,
1801 MSG_DEBUG, debug_message);
1802 messaging_register(global_messaging_context(), NULL,
1803 MSG_WINBIND_IP_DROPPED,
1804 winbind_msg_ip_dropped);
1805 messaging_register(global_messaging_context(), NULL,
1806 MSG_WINBIND_DISCONNECT_DC,
1807 winbind_msg_disconnect_dc);
1809 req = messaging_filtered_read_send(global_event_context(),
1810 global_event_context(),
1811 global_messaging_context(),
1812 winbindd_child_msg_filter,
1813 child);
1814 if (req == NULL) {
1815 DBG_ERR("messaging_filtered_read_send failed\n");
1816 _exit(1);
1819 primary_domain = find_our_domain();
1821 if (primary_domain == NULL) {
1822 smb_panic("no primary domain found");
1825 /* It doesn't matter if we allow cache login,
1826 * try to bring domain online after fork. */
1827 if ( child->domain ) {
1828 child->domain->startup = True;
1829 child->domain->startup_time = time_mono(NULL);
1830 /* we can be in primary domain or in trusted domain
1831 * If we are in trusted domain, set the primary domain
1832 * in start-up mode */
1833 if (!(child->domain->internal)) {
1834 set_domain_online_request(child->domain);
1835 if (!(child->domain->primary)) {
1836 primary_domain->startup = True;
1837 primary_domain->startup_time = time_mono(NULL);
1838 set_domain_online_request(primary_domain);
1843 /* We might be in the idmap child...*/
1844 if (child->domain && !(child->domain->internal) &&
1845 lp_winbind_offline_logon()) {
1847 set_domain_online_request(child->domain);
1849 if (primary_domain && (primary_domain != child->domain)) {
1850 /* We need to talk to the primary
1851 * domain as well as the trusted
1852 * domain inside a trusted domain
1853 * child.
1854 * See the code in :
1855 * set_dc_type_and_flags_trustinfo()
1856 * for details.
1858 set_domain_online_request(primary_domain);
1861 child->lockout_policy_event = tevent_add_timer(
1862 global_event_context(), NULL, timeval_zero(),
1863 account_lockout_policy_handler,
1864 child);
1867 if (child->domain && child->domain->primary &&
1868 !USE_KERBEROS_KEYTAB &&
1869 lp_server_role() == ROLE_DOMAIN_MEMBER) {
1871 struct timeval next_change;
1873 if (calculate_next_machine_pwd_change(child->domain->name,
1874 &next_change)) {
1875 child->machine_password_change_event = tevent_add_timer(
1876 global_event_context(), NULL, next_change,
1877 machine_password_change_handler,
1878 child);
1882 fde = tevent_add_fd(global_event_context(), NULL, state.cli.sock,
1883 TEVENT_FD_READ, child_handler, &state);
1884 if (fde == NULL) {
1885 DEBUG(1, ("tevent_add_fd failed\n"));
1886 _exit(1);
1889 while (1) {
1891 int ret;
1892 TALLOC_CTX *frame = talloc_stackframe();
1894 ret = tevent_loop_once(global_event_context());
1895 if (ret != 0) {
1896 DEBUG(1, ("tevent_loop_once failed: %s\n",
1897 strerror(errno)));
1898 _exit(1);
1901 if (child->domain && child->domain->startup &&
1902 (time_mono(NULL) > child->domain->startup_time + 30)) {
1903 /* No longer in "startup" mode. */
1904 DEBUG(10,("fork_domain_child: domain %s no longer in 'startup' mode.\n",
1905 child->domain->name ));
1906 child->domain->startup = False;
1909 TALLOC_FREE(frame);
1913 void winbind_msg_ip_dropped_parent(struct messaging_context *msg_ctx,
1914 void *private_data,
1915 uint32_t msg_type,
1916 struct server_id server_id,
1917 DATA_BLOB *data)
1919 struct winbind_msg_relay_state state = {
1920 .msg_ctx = msg_ctx,
1921 .msg_type = msg_type,
1922 .data = data,
1925 winbind_msg_ip_dropped(msg_ctx, private_data, msg_type,
1926 server_id, data);
1928 forall_children(winbind_msg_relay_fn, &state);
1931 void winbindd_terminate(bool is_parent)
1933 if (is_parent) {
1934 /* When parent goes away we should
1935 * remove the socket file. Not so
1936 * when children terminate.
1938 char *path = NULL;
1940 if (asprintf(&path, "%s/%s",
1941 lp_winbindd_socket_directory(), WINBINDD_SOCKET_NAME) > 0) {
1942 unlink(path);
1943 SAFE_FREE(path);
1947 idmap_close();
1949 netlogon_creds_cli_close_global_db();
1951 #if 0
1952 if (interactive) {
1953 TALLOC_CTX *mem_ctx = talloc_init("end_description");
1954 char *description = talloc_describe_all(mem_ctx);
1956 DEBUG(3, ("tallocs left:\n%s\n", description));
1957 talloc_destroy(mem_ctx);
1959 #endif
1961 if (is_parent) {
1962 pidfile_unlink(lp_pid_directory(), "winbindd");
1965 exit(0);
1968 static void winbindd_sig_term_handler(struct tevent_context *ev,
1969 struct tevent_signal *se,
1970 int signum,
1971 int count,
1972 void *siginfo,
1973 void *private_data)
1975 bool *p = talloc_get_type_abort(private_data, bool);
1976 bool is_parent = *p;
1978 TALLOC_FREE(p);
1980 DEBUG(0,("Got sig[%d] terminate (is_parent=%d)\n",
1981 signum, is_parent));
1982 winbindd_terminate(is_parent);
1985 bool winbindd_setup_sig_term_handler(bool parent)
1987 struct tevent_signal *se;
1988 bool *is_parent;
1990 is_parent = talloc(global_event_context(), bool);
1991 if (!is_parent) {
1992 return false;
1995 *is_parent = parent;
1997 se = tevent_add_signal(global_event_context(),
1998 is_parent,
1999 SIGTERM, 0,
2000 winbindd_sig_term_handler,
2001 is_parent);
2002 if (!se) {
2003 DEBUG(0,("failed to setup SIGTERM handler\n"));
2004 talloc_free(is_parent);
2005 return false;
2008 se = tevent_add_signal(global_event_context(),
2009 is_parent,
2010 SIGINT, 0,
2011 winbindd_sig_term_handler,
2012 is_parent);
2013 if (!se) {
2014 DEBUG(0,("failed to setup SIGINT handler\n"));
2015 talloc_free(is_parent);
2016 return false;
2019 se = tevent_add_signal(global_event_context(),
2020 is_parent,
2021 SIGQUIT, 0,
2022 winbindd_sig_term_handler,
2023 is_parent);
2024 if (!se) {
2025 DEBUG(0,("failed to setup SIGINT handler\n"));
2026 talloc_free(is_parent);
2027 return false;
2030 return true;
2033 static void flush_caches_noinit(void)
2036 * We need to invalidate cached user list entries on a SIGHUP
2037 * otherwise cached access denied errors due to restrict anonymous
2038 * hang around until the sequence number changes.
2039 * NB
2040 * Skip uninitialized domains when flush cache.
2041 * If domain is not initialized, it means it is never
2042 * used or never become online. look, wcache_invalidate_cache()
2043 * -> get_cache() -> init_dc_connection(). It causes a lot of traffic
2044 * for unused domains and large traffic for primary domain's DC if there
2045 * are many domains..
2048 if (!wcache_invalidate_cache_noinit()) {
2049 DEBUG(0, ("invalidating the cache failed; revalidate the cache\n"));
2050 if (!winbindd_cache_validate_and_initialize()) {
2051 exit(1);
2056 static void winbindd_sig_hup_handler(struct tevent_context *ev,
2057 struct tevent_signal *se,
2058 int signum,
2059 int count,
2060 void *siginfo,
2061 void *private_data)
2063 const char *file = (const char *)private_data;
2065 DEBUG(1,("Reloading services after SIGHUP\n"));
2066 flush_caches_noinit();
2067 winbindd_reload_services_file(file);
2070 bool winbindd_setup_sig_hup_handler(const char *lfile)
2072 struct tevent_signal *se;
2073 char *file = NULL;
2075 if (lfile) {
2076 file = talloc_strdup(global_event_context(),
2077 lfile);
2078 if (!file) {
2079 return false;
2083 se = tevent_add_signal(global_event_context(),
2084 global_event_context(),
2085 SIGHUP, 0,
2086 winbindd_sig_hup_handler,
2087 file);
2088 if (!se) {
2089 return false;
2092 return true;