cleanup: fix some trailing spaces
[idra/samba.git] / librpc / rpc / binding.c
1 /* 
2    Unix SMB/CIFS implementation.
3
4    dcerpc utility functions
5
6    Copyright (C) Andrew Tridgell 2003
7    Copyright (C) Jelmer Vernooij 2004
8    Copyright (C) Andrew Bartlett <abartlet@samba.org> 2005
9    Copyright (C) Rafal Szczesniak 2006
10
11    This program is free software; you can redistribute it and/or modify
12    it under the terms of the GNU General Public License as published by
13    the Free Software Foundation; either version 3 of the License, or
14    (at your option) any later version.
15
16    This program is distributed in the hope that it will be useful,
17    but WITHOUT ANY WARRANTY; without even the implied warranty of
18    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
19    GNU General Public License for more details.
20
21    You should have received a copy of the GNU General Public License
22    along with this program.  If not, see <http://www.gnu.org/licenses/>.
23 */
24
25 #include "includes.h"
26 #include "../../lib/util/util_net.h"
27 #include "librpc/gen_ndr/ndr_epmapper.h"
28 #include "librpc/gen_ndr/ndr_misc.h"
29 #include "librpc/rpc/dcerpc.h"
30 #include "rpc_common.h"
31
32 #undef strcasecmp
33 #undef strncasecmp
34
35 #define MAX_PROTSEQ             10
36
37 static const struct {
38         const char *name;
39         enum dcerpc_transport_t transport;
40         int num_protocols;
41         enum epm_protocol protseq[MAX_PROTSEQ];
42 } transports[] = {
43         { "ncacn_np",     NCACN_NP, 3, 
44                 { EPM_PROTOCOL_NCACN, EPM_PROTOCOL_SMB, EPM_PROTOCOL_NETBIOS }},
45         { "ncacn_ip_tcp", NCACN_IP_TCP, 3, 
46                 { EPM_PROTOCOL_NCACN, EPM_PROTOCOL_TCP, EPM_PROTOCOL_IP } }, 
47         { "ncacn_http", NCACN_HTTP, 3, 
48                 { EPM_PROTOCOL_NCACN, EPM_PROTOCOL_HTTP, EPM_PROTOCOL_IP } }, 
49         { "ncadg_ip_udp", NCACN_IP_UDP, 3, 
50                 { EPM_PROTOCOL_NCADG, EPM_PROTOCOL_UDP, EPM_PROTOCOL_IP } },
51         { "ncalrpc", NCALRPC, 2, 
52                 { EPM_PROTOCOL_NCALRPC, EPM_PROTOCOL_NAMED_PIPE } },
53         { "ncacn_unix_stream", NCACN_UNIX_STREAM, 2, 
54                 { EPM_PROTOCOL_NCACN, EPM_PROTOCOL_UNIX_DS } },
55         { "ncadg_unix_dgram", NCADG_UNIX_DGRAM, 2, 
56                 { EPM_PROTOCOL_NCADG, EPM_PROTOCOL_UNIX_DS } },
57         { "ncacn_at_dsp", NCACN_AT_DSP, 3, 
58                 { EPM_PROTOCOL_NCACN, EPM_PROTOCOL_APPLETALK, EPM_PROTOCOL_DSP } },
59         { "ncadg_at_ddp", NCADG_AT_DDP, 3, 
60                 { EPM_PROTOCOL_NCADG, EPM_PROTOCOL_APPLETALK, EPM_PROTOCOL_DDP } },
61         { "ncacn_vns_ssp", NCACN_VNS_SPP, 3, 
62                 { EPM_PROTOCOL_NCACN, EPM_PROTOCOL_STREETTALK, EPM_PROTOCOL_VINES_SPP } },
63         { "ncacn_vns_ipc", NCACN_VNS_IPC, 3, 
64                 { EPM_PROTOCOL_NCACN, EPM_PROTOCOL_STREETTALK, EPM_PROTOCOL_VINES_IPC }, },
65         { "ncadg_ipx", NCADG_IPX, 2,
66                 { EPM_PROTOCOL_NCADG, EPM_PROTOCOL_IPX },
67         },
68         { "ncacn_spx", NCACN_SPX, 3,
69                 /* I guess some MS programmer confused the identifier for 
70                  * EPM_PROTOCOL_UUID (0x0D or 13) with the one for 
71                  * EPM_PROTOCOL_SPX (0x13) here. -- jelmer*/
72                 { EPM_PROTOCOL_NCACN, EPM_PROTOCOL_NCALRPC, EPM_PROTOCOL_UUID },
73         },
74 };
75
76 static const struct {
77         const char *name;
78         uint32_t flag;
79 } ncacn_options[] = {
80         {"sign", DCERPC_SIGN},
81         {"seal", DCERPC_SEAL},
82         {"connect", DCERPC_CONNECT},
83         {"spnego", DCERPC_AUTH_SPNEGO},
84         {"ntlm", DCERPC_AUTH_NTLM},
85         {"krb5", DCERPC_AUTH_KRB5},
86         {"validate", DCERPC_DEBUG_VALIDATE_BOTH},
87         {"print", DCERPC_DEBUG_PRINT_BOTH},
88         {"padcheck", DCERPC_DEBUG_PAD_CHECK},
89         {"bigendian", DCERPC_PUSH_BIGENDIAN},
90         {"smb2", DCERPC_SMB2},
91         {"hdrsign", DCERPC_HEADER_SIGNING},
92         {"ndr64", DCERPC_NDR64},
93         {"localaddress", DCERPC_LOCALADDRESS}
94 };
95
96 const char *epm_floor_string(TALLOC_CTX *mem_ctx, struct epm_floor *epm_floor)
97 {
98         struct ndr_syntax_id syntax;
99         NTSTATUS status;
100
101         switch(epm_floor->lhs.protocol) {
102                 case EPM_PROTOCOL_UUID:
103                         status = dcerpc_floor_get_lhs_data(epm_floor, &syntax);
104                         if (NT_STATUS_IS_OK(status)) {
105                                 /* lhs is used: UUID */
106                                 char *uuidstr;
107
108                                 if (GUID_equal(&syntax.uuid, &ndr_transfer_syntax.uuid)) {
109                                         return "NDR";
110                                 } 
111
112                                 if (GUID_equal(&syntax.uuid, &ndr64_transfer_syntax.uuid)) {
113                                         return "NDR64";
114                                 } 
115
116                                 uuidstr = GUID_string(mem_ctx, &syntax.uuid);
117
118                                 return talloc_asprintf(mem_ctx, " uuid %s/0x%02x", uuidstr, syntax.if_version);
119                         } else { /* IPX */
120                                 return talloc_asprintf(mem_ctx, "IPX:%s", 
121                                                 data_blob_hex_string_upper(mem_ctx, &epm_floor->rhs.uuid.unknown));
122                         }
123
124                 case EPM_PROTOCOL_NCACN:
125                         return "RPC-C";
126
127                 case EPM_PROTOCOL_NCADG:
128                         return "RPC";
129
130                 case EPM_PROTOCOL_NCALRPC:
131                         return "NCALRPC";
132
133                 case EPM_PROTOCOL_DNET_NSP:
134                         return "DNET/NSP";
135
136                 case EPM_PROTOCOL_IP:
137                         return talloc_asprintf(mem_ctx, "IP:%s", epm_floor->rhs.ip.ipaddr);
138
139                 case EPM_PROTOCOL_NAMED_PIPE:
140                         return talloc_asprintf(mem_ctx, "NAMED-PIPE:%s", epm_floor->rhs.named_pipe.path);
141
142                 case EPM_PROTOCOL_SMB:
143                         return talloc_asprintf(mem_ctx, "SMB:%s", epm_floor->rhs.smb.unc);
144
145                 case EPM_PROTOCOL_UNIX_DS:
146                         return talloc_asprintf(mem_ctx, "Unix:%s", epm_floor->rhs.unix_ds.path);
147
148                 case EPM_PROTOCOL_NETBIOS:
149                         return talloc_asprintf(mem_ctx, "NetBIOS:%s", epm_floor->rhs.netbios.name);
150
151                 case EPM_PROTOCOL_NETBEUI:
152                         return "NETBeui";
153
154                 case EPM_PROTOCOL_SPX:
155                         return "SPX";
156
157                 case EPM_PROTOCOL_NB_IPX:
158                         return "NB_IPX";
159
160                 case EPM_PROTOCOL_HTTP:
161                         return talloc_asprintf(mem_ctx, "HTTP:%d", epm_floor->rhs.http.port);
162
163                 case EPM_PROTOCOL_TCP:
164                         return talloc_asprintf(mem_ctx, "TCP:%d", epm_floor->rhs.tcp.port);
165
166                 case EPM_PROTOCOL_UDP:
167                         return talloc_asprintf(mem_ctx, "UDP:%d", epm_floor->rhs.udp.port);
168
169                 default:
170                         return talloc_asprintf(mem_ctx, "UNK(%02x):", epm_floor->lhs.protocol);
171         }
172 }
173
174
175 /*
176   form a binding string from a binding structure
177 */
178 _PUBLIC_ char *dcerpc_binding_string(TALLOC_CTX *mem_ctx, const struct dcerpc_binding *b)
179 {
180         char *s = talloc_strdup(mem_ctx, "");
181         int i;
182         const char *t_name = NULL;
183
184         if (b->transport != NCA_UNKNOWN) {
185                 t_name = derpc_transport_string_by_transport(b->transport);
186                 if (!t_name) {
187                         return NULL;
188                 }
189         }
190
191         if (!GUID_all_zero(&b->object.uuid)) { 
192                 s = talloc_asprintf(s, "%s@",
193                                     GUID_string(mem_ctx, &b->object.uuid));
194         }
195
196         if (t_name != NULL) {
197                 s = talloc_asprintf_append_buffer(s, "%s:", t_name);
198                 if (s == NULL) {
199                         return NULL;
200                 }
201         }
202
203         if (b->host) {
204                 s = talloc_asprintf_append_buffer(s, "%s", b->host);
205         }
206
207         if (!b->endpoint && !b->options && !b->flags) {
208                 return s;
209         }
210
211         s = talloc_asprintf_append_buffer(s, "[");
212
213         if (b->endpoint) {
214                 s = talloc_asprintf_append_buffer(s, "%s", b->endpoint);
215         }
216
217         /* this is a *really* inefficent way of dealing with strings,
218            but this is rarely called and the strings are always short,
219            so I don't care */
220         for (i=0;b->options && b->options[i];i++) {
221                 s = talloc_asprintf_append_buffer(s, ",%s", b->options[i]);
222                 if (!s) return NULL;
223         }
224
225         for (i=0;i<ARRAY_SIZE(ncacn_options);i++) {
226                 if (b->flags & ncacn_options[i].flag) {
227                         if (ncacn_options[i].flag == DCERPC_LOCALADDRESS && b->localaddress) {
228                                 s = talloc_asprintf_append_buffer(s, ",%s=%s", ncacn_options[i].name,
229                                                                   b->localaddress);
230                         } else {
231                                 s = talloc_asprintf_append_buffer(s, ",%s", ncacn_options[i].name);
232                         }
233                         if (!s) return NULL;
234                 }
235         }
236
237         s = talloc_asprintf_append_buffer(s, "]");
238
239         return s;
240 }
241
242 /*
243   parse a binding string into a dcerpc_binding structure
244 */
245 _PUBLIC_ NTSTATUS dcerpc_parse_binding(TALLOC_CTX *mem_ctx, const char *s, struct dcerpc_binding **b_out)
246 {
247         struct dcerpc_binding *b;
248         char *options;
249         char *p;
250         int i, j, comma_count;
251
252         b = talloc_zero(mem_ctx, struct dcerpc_binding);
253         if (!b) {
254                 return NT_STATUS_NO_MEMORY;
255         }
256
257         p = strchr(s, '@');
258
259         if (p && PTR_DIFF(p, s) == 36) { /* 36 is the length of a UUID */
260                 NTSTATUS status;
261                 DATA_BLOB blob = data_blob(s, 36);
262                 status = GUID_from_data_blob(&blob, &b->object.uuid);
263
264                 if (NT_STATUS_IS_ERR(status)) {
265                         DEBUG(0, ("Failed parsing UUID\n"));
266                         return status;
267                 }
268
269                 s = p + 1;
270         } else {
271                 ZERO_STRUCT(b->object);
272         }
273
274         b->object.if_version = 0;
275
276         p = strchr(s, ':');
277
278         if (p == NULL) {
279                 b->transport = NCA_UNKNOWN;
280         } else {
281                 char *type = talloc_strndup(mem_ctx, s, PTR_DIFF(p, s));
282                 if (!type) {
283                         return NT_STATUS_NO_MEMORY;
284                 }
285
286                 for (i=0;i<ARRAY_SIZE(transports);i++) {
287                         if (strcasecmp(type, transports[i].name) == 0) {
288                                 b->transport = transports[i].transport;
289                                 break;
290                         }
291                 }
292
293                 if (i==ARRAY_SIZE(transports)) {
294                         DEBUG(0,("Unknown dcerpc transport '%s'\n", type));
295                         return NT_STATUS_INVALID_PARAMETER;
296                 }
297
298                 talloc_free(type);
299
300                 s = p+1;
301         }
302
303         p = strchr(s, '[');
304         if (p) {
305                 b->host = talloc_strndup(b, s, PTR_DIFF(p, s));
306                 options = talloc_strdup(mem_ctx, p+1);
307                 if (options[strlen(options)-1] != ']') {
308                         return NT_STATUS_INVALID_PARAMETER;
309                 }
310                 options[strlen(options)-1] = 0;
311         } else {
312                 b->host = talloc_strdup(b, s);
313                 options = NULL;
314         }
315         if (!b->host) {
316                 return NT_STATUS_NO_MEMORY;
317         }
318
319         b->target_hostname = b->host;
320
321         b->options = NULL;
322         b->flags = 0;
323         b->assoc_group_id = 0;
324         b->endpoint = NULL;
325         b->localaddress = NULL;
326
327         if (!options) {
328                 *b_out = b;
329                 return NT_STATUS_OK;
330         }
331
332         comma_count = count_chars(options, ',');
333
334         b->options = talloc_array(b, const char *, comma_count+2);
335         if (!b->options) {
336                 return NT_STATUS_NO_MEMORY;
337         }
338
339         for (i=0; (p = strchr(options, ',')); i++) {
340                 b->options[i] = talloc_strndup(b, options, PTR_DIFF(p, options));
341                 if (!b->options[i]) {
342                         return NT_STATUS_NO_MEMORY;
343                 }
344                 options = p+1;
345         }
346         b->options[i] = options;
347         b->options[i+1] = NULL;
348
349         /* some options are pre-parsed for convenience */
350         for (i=0;b->options[i];i++) {
351                 for (j=0;j<ARRAY_SIZE(ncacn_options);j++) {
352                         size_t opt_len = strlen(ncacn_options[j].name);
353                         if (strncasecmp(ncacn_options[j].name, b->options[i], opt_len) == 0) {
354                                 int k;
355                                 char c = b->options[i][opt_len];
356
357                                 if (ncacn_options[j].flag == DCERPC_LOCALADDRESS && c == '=') {
358                                         b->localaddress = talloc_strdup(b, &b->options[i][opt_len+1]);
359                                 } else if (c != 0) {
360                                         continue;
361                                 }
362
363                                 b->flags |= ncacn_options[j].flag;
364                                 for (k=i;b->options[k];k++) {
365                                         b->options[k] = b->options[k+1];
366                                 }
367                                 i--;
368                                 break;
369                         }
370                 }
371         }
372
373         if (b->options[0]) {
374                 /* Endpoint is first option */
375                 b->endpoint = b->options[0];
376                 if (strlen(b->endpoint) == 0) b->endpoint = NULL;
377
378                 for (i=0;b->options[i];i++) {
379                         b->options[i] = b->options[i+1];
380                 }
381         }
382
383         if (b->options[0] == NULL)
384                 b->options = NULL;
385
386         *b_out = b;
387         return NT_STATUS_OK;
388 }
389
390 _PUBLIC_ NTSTATUS dcerpc_floor_get_lhs_data(const struct epm_floor *epm_floor,
391                                             struct ndr_syntax_id *syntax)
392 {
393         TALLOC_CTX *mem_ctx = talloc_init("floor_get_lhs_data");
394         struct ndr_pull *ndr;
395         enum ndr_err_code ndr_err;
396         uint16_t if_version=0;
397
398         ndr = ndr_pull_init_blob(&epm_floor->lhs.lhs_data, mem_ctx);
399         if (ndr == NULL) {
400                 talloc_free(mem_ctx);
401                 return NT_STATUS_NO_MEMORY;
402         }
403         ndr->flags |= LIBNDR_FLAG_NOALIGN;
404
405         ndr_err = ndr_pull_GUID(ndr, NDR_SCALARS | NDR_BUFFERS, &syntax->uuid);
406         if (!NDR_ERR_CODE_IS_SUCCESS(ndr_err)) {
407                 talloc_free(mem_ctx);
408                 return ndr_map_error2ntstatus(ndr_err);
409         }
410
411         ndr_err = ndr_pull_uint16(ndr, NDR_SCALARS, &if_version);
412         if (!NDR_ERR_CODE_IS_SUCCESS(ndr_err)) {
413                 talloc_free(mem_ctx);
414                 return ndr_map_error2ntstatus(ndr_err);
415         }
416
417         syntax->if_version = if_version;
418
419         talloc_free(mem_ctx);
420
421         return NT_STATUS_OK;
422 }
423
424 static DATA_BLOB dcerpc_floor_pack_lhs_data(TALLOC_CTX *mem_ctx, const struct ndr_syntax_id *syntax)
425 {
426         DATA_BLOB blob;
427         struct ndr_push *ndr = ndr_push_init_ctx(mem_ctx);
428
429         ndr->flags |= LIBNDR_FLAG_NOALIGN;
430
431         ndr_push_GUID(ndr, NDR_SCALARS | NDR_BUFFERS, &syntax->uuid);
432         ndr_push_uint16(ndr, NDR_SCALARS, syntax->if_version);
433
434         blob = ndr_push_blob(ndr);
435         talloc_steal(mem_ctx, blob.data);
436         talloc_free(ndr);
437         return blob;
438 }
439
440 static DATA_BLOB dcerpc_floor_pack_rhs_if_version_data(TALLOC_CTX *mem_ctx, const struct ndr_syntax_id *syntax)
441 {
442         DATA_BLOB blob;
443         struct ndr_push *ndr = ndr_push_init_ctx(mem_ctx);
444
445         ndr->flags |= LIBNDR_FLAG_NOALIGN;
446
447         ndr_push_uint16(ndr, NDR_SCALARS, syntax->if_version >> 16);
448
449         blob = ndr_push_blob(ndr);
450         talloc_steal(mem_ctx, blob.data);
451         talloc_free(ndr);
452         return blob;
453 }
454
455 const char *dcerpc_floor_get_rhs_data(TALLOC_CTX *mem_ctx, struct epm_floor *epm_floor)
456 {
457         switch (epm_floor->lhs.protocol) {
458         case EPM_PROTOCOL_TCP:
459                 if (epm_floor->rhs.tcp.port == 0) return NULL;
460                 return talloc_asprintf(mem_ctx, "%d", epm_floor->rhs.tcp.port);
461
462         case EPM_PROTOCOL_UDP:
463                 if (epm_floor->rhs.udp.port == 0) return NULL;
464                 return talloc_asprintf(mem_ctx, "%d", epm_floor->rhs.udp.port);
465
466         case EPM_PROTOCOL_HTTP:
467                 if (epm_floor->rhs.http.port == 0) return NULL;
468                 return talloc_asprintf(mem_ctx, "%d", epm_floor->rhs.http.port);
469
470         case EPM_PROTOCOL_IP:
471                 return talloc_strdup(mem_ctx, epm_floor->rhs.ip.ipaddr);
472
473         case EPM_PROTOCOL_NCACN:
474                 return NULL;
475
476         case EPM_PROTOCOL_NCADG:
477                 return NULL;
478
479         case EPM_PROTOCOL_SMB:
480                 if (strlen(epm_floor->rhs.smb.unc) == 0) return NULL;
481                 return talloc_strdup(mem_ctx, epm_floor->rhs.smb.unc);
482
483         case EPM_PROTOCOL_NAMED_PIPE:
484                 if (strlen(epm_floor->rhs.named_pipe.path) == 0) return NULL;
485                 return talloc_strdup(mem_ctx, epm_floor->rhs.named_pipe.path);
486
487         case EPM_PROTOCOL_NETBIOS:
488                 if (strlen(epm_floor->rhs.netbios.name) == 0) return NULL;
489                 return talloc_strdup(mem_ctx, epm_floor->rhs.netbios.name);
490
491         case EPM_PROTOCOL_NCALRPC:
492                 return NULL;
493
494         case EPM_PROTOCOL_VINES_SPP:
495                 return talloc_asprintf(mem_ctx, "%d", epm_floor->rhs.vines_spp.port);
496
497         case EPM_PROTOCOL_VINES_IPC:
498                 return talloc_asprintf(mem_ctx, "%d", epm_floor->rhs.vines_ipc.port);
499
500         case EPM_PROTOCOL_STREETTALK:
501                 return talloc_strdup(mem_ctx, epm_floor->rhs.streettalk.streettalk);
502
503         case EPM_PROTOCOL_UNIX_DS:
504                 if (strlen(epm_floor->rhs.unix_ds.path) == 0) return NULL;
505                 return talloc_strdup(mem_ctx, epm_floor->rhs.unix_ds.path);
506
507         case EPM_PROTOCOL_NULL:
508                 return NULL;
509
510         default:
511                 DEBUG(0,("Unsupported lhs protocol %d\n", epm_floor->lhs.protocol));
512                 break;
513         }
514
515         return NULL;
516 }
517
518 static NTSTATUS dcerpc_floor_set_rhs_data(TALLOC_CTX *mem_ctx, 
519                                           struct epm_floor *epm_floor,  
520                                           const char *data)
521 {
522         switch (epm_floor->lhs.protocol) {
523         case EPM_PROTOCOL_TCP:
524                 epm_floor->rhs.tcp.port = atoi(data);
525                 return NT_STATUS_OK;
526
527         case EPM_PROTOCOL_UDP:
528                 epm_floor->rhs.udp.port = atoi(data);
529                 return NT_STATUS_OK;
530
531         case EPM_PROTOCOL_HTTP:
532                 epm_floor->rhs.http.port = atoi(data);
533                 return NT_STATUS_OK;
534
535         case EPM_PROTOCOL_IP:
536                 epm_floor->rhs.ip.ipaddr = talloc_strdup(mem_ctx, data);
537                 NT_STATUS_HAVE_NO_MEMORY(epm_floor->rhs.ip.ipaddr);
538                 return NT_STATUS_OK;
539
540         case EPM_PROTOCOL_NCACN:
541                 epm_floor->rhs.ncacn.minor_version = 0;
542                 return NT_STATUS_OK;
543
544         case EPM_PROTOCOL_NCADG:
545                 epm_floor->rhs.ncadg.minor_version = 0;
546                 return NT_STATUS_OK;
547
548         case EPM_PROTOCOL_SMB:
549                 epm_floor->rhs.smb.unc = talloc_strdup(mem_ctx, data);
550                 NT_STATUS_HAVE_NO_MEMORY(epm_floor->rhs.smb.unc);
551                 return NT_STATUS_OK;
552
553         case EPM_PROTOCOL_NAMED_PIPE:
554                 epm_floor->rhs.named_pipe.path = talloc_strdup(mem_ctx, data);
555                 NT_STATUS_HAVE_NO_MEMORY(epm_floor->rhs.named_pipe.path);
556                 return NT_STATUS_OK;
557
558         case EPM_PROTOCOL_NETBIOS:
559                 epm_floor->rhs.netbios.name = talloc_strdup(mem_ctx, data);
560                 NT_STATUS_HAVE_NO_MEMORY(epm_floor->rhs.netbios.name);
561                 return NT_STATUS_OK;
562
563         case EPM_PROTOCOL_NCALRPC:
564                 return NT_STATUS_OK;
565
566         case EPM_PROTOCOL_VINES_SPP:
567                 epm_floor->rhs.vines_spp.port = atoi(data);
568                 return NT_STATUS_OK;
569
570         case EPM_PROTOCOL_VINES_IPC:
571                 epm_floor->rhs.vines_ipc.port = atoi(data);
572                 return NT_STATUS_OK;
573
574         case EPM_PROTOCOL_STREETTALK:
575                 epm_floor->rhs.streettalk.streettalk = talloc_strdup(mem_ctx, data);
576                 NT_STATUS_HAVE_NO_MEMORY(epm_floor->rhs.streettalk.streettalk);
577                 return NT_STATUS_OK;
578
579         case EPM_PROTOCOL_UNIX_DS:
580                 epm_floor->rhs.unix_ds.path = talloc_strdup(mem_ctx, data);
581                 NT_STATUS_HAVE_NO_MEMORY(epm_floor->rhs.unix_ds.path);
582                 return NT_STATUS_OK;
583
584         case EPM_PROTOCOL_NULL:
585                 return NT_STATUS_OK;
586
587         default:
588                 DEBUG(0,("Unsupported lhs protocol %d\n", epm_floor->lhs.protocol));
589                 break;
590         }
591
592         return NT_STATUS_NOT_SUPPORTED;
593 }
594
595 enum dcerpc_transport_t dcerpc_transport_by_endpoint_protocol(int prot)
596 {
597         int i;
598
599         /* Find a transport that has 'prot' as 4th protocol */
600         for (i=0;i<ARRAY_SIZE(transports);i++) {
601                 if (transports[i].num_protocols >= 2 && 
602                         transports[i].protseq[1] == prot) {
603                         return transports[i].transport;
604                 }
605         }
606
607         /* Unknown transport */
608         return (unsigned int)-1;
609 }
610
611 _PUBLIC_ enum dcerpc_transport_t dcerpc_transport_by_tower(const struct epm_tower *tower)
612 {
613         int i;
614
615         /* Find a transport that matches this tower */
616         for (i=0;i<ARRAY_SIZE(transports);i++) {
617                 int j;
618                 if (transports[i].num_protocols != tower->num_floors - 2) {
619                         continue; 
620                 }
621
622                 for (j = 0; j < transports[i].num_protocols; j++) {
623                         if (transports[i].protseq[j] != tower->floors[j+2].lhs.protocol) {
624                                 break;
625                         }
626                 }
627
628                 if (j == transports[i].num_protocols) {
629                         return transports[i].transport;
630                 }
631         }
632
633         /* Unknown transport */
634         return (unsigned int)-1;
635 }
636
637 _PUBLIC_ const char *derpc_transport_string_by_transport(enum dcerpc_transport_t t)
638 {
639         int i;
640
641         for (i=0; i<ARRAY_SIZE(transports); i++) {
642                 if (t == transports[i].transport) {
643                         return transports[i].name;
644                 }
645         }
646         return NULL;
647 }
648
649 _PUBLIC_ NTSTATUS dcerpc_binding_from_tower(TALLOC_CTX *mem_ctx,
650                                             struct epm_tower *tower,
651                                             struct dcerpc_binding **b_out)
652 {
653         NTSTATUS status;
654         struct dcerpc_binding *binding;
655
656         binding = talloc_zero(mem_ctx, struct dcerpc_binding);
657         NT_STATUS_HAVE_NO_MEMORY(binding);
658
659         ZERO_STRUCT(binding->object);
660         binding->options = NULL;
661         binding->host = NULL;
662         binding->target_hostname = NULL;
663         binding->flags = 0;
664         binding->assoc_group_id = 0;
665
666         binding->transport = dcerpc_transport_by_tower(tower);
667
668         if (binding->transport == (unsigned int)-1) {
669                 return NT_STATUS_NOT_SUPPORTED;
670         }
671
672         if (tower->num_floors < 1) {
673                 return NT_STATUS_OK;
674         }
675
676         /* Set object uuid */
677         status = dcerpc_floor_get_lhs_data(&tower->floors[0], &binding->object);
678
679         if (!NT_STATUS_IS_OK(status)) {
680                 DEBUG(1, ("Error pulling object uuid and version: %s", nt_errstr(status)));
681                 return status;
682         }
683
684         /* Ignore floor 1, it contains the NDR version info */
685
686         binding->options = NULL;
687
688         /* Set endpoint */
689         if (tower->num_floors >= 4) {
690                 binding->endpoint = dcerpc_floor_get_rhs_data(binding, &tower->floors[3]);
691         } else {
692                 binding->endpoint = NULL;
693         }
694
695         /* Set network address */
696         if (tower->num_floors >= 5) {
697                 binding->host = dcerpc_floor_get_rhs_data(binding, &tower->floors[4]);
698                 NT_STATUS_HAVE_NO_MEMORY(binding->host);
699                 binding->target_hostname = binding->host;
700         }
701         *b_out = binding;
702         return NT_STATUS_OK;
703 }
704
705 _PUBLIC_ struct dcerpc_binding *dcerpc_binding_dup(TALLOC_CTX *mem_ctx,
706                                                    const struct dcerpc_binding *b)
707 {
708         struct dcerpc_binding *n;
709         uint32_t count;
710
711         n = talloc_zero(mem_ctx, struct dcerpc_binding);
712         if (n == NULL) {
713                 return NULL;
714         }
715
716         n->transport = b->transport;
717         n->object = b->object;
718         n->flags = b->flags;
719         n->assoc_group_id = b->assoc_group_id;
720
721         if (b->host != NULL) {
722                 n->host = talloc_strdup(n, b->host);
723                 if (n->host == NULL) {
724                         talloc_free(n);
725                         return NULL;
726                 }
727         }
728
729         if (b->target_hostname != NULL) {
730                 n->target_hostname = talloc_strdup(n, b->target_hostname);
731                 if (n->target_hostname == NULL) {
732                         talloc_free(n);
733                         return NULL;
734                 }
735         }
736
737         if (b->target_principal != NULL) {
738                 n->target_principal = talloc_strdup(n, b->target_principal);
739                 if (n->target_principal == NULL) {
740                         talloc_free(n);
741                         return NULL;
742                 }
743         }
744
745         if (b->localaddress != NULL) {
746                 n->localaddress = talloc_strdup(n, b->localaddress);
747                 if (n->localaddress == NULL) {
748                         talloc_free(n);
749                         return NULL;
750                 }
751         }
752
753         if (b->endpoint != NULL) {
754                 n->endpoint = talloc_strdup(n, b->endpoint);
755                 if (n->endpoint == NULL) {
756                         talloc_free(n);
757                         return NULL;
758                 }
759         }
760
761         for (count = 0; b->options && b->options[count]; count++);
762
763         if (count > 0) {
764                 uint32_t i;
765
766                 n->options = talloc_array(n, const char *, count + 1);
767                 if (n->options == NULL) {
768                         talloc_free(n);
769                         return NULL;
770                 }
771
772                 for (i = 0; i < count; i++) {
773                         n->options[i] = talloc_strdup(n->options, b->options[i]);
774                         if (n->options[i] == NULL) {
775                                 talloc_free(n);
776                                 return NULL;
777                         }
778                 }
779                 n->options[count] = NULL;
780         }
781
782         return n;
783 }
784
785 _PUBLIC_ NTSTATUS dcerpc_binding_build_tower(TALLOC_CTX *mem_ctx,
786                                              const struct dcerpc_binding *binding,
787                                              struct epm_tower *tower)
788 {
789         const enum epm_protocol *protseq = NULL;
790         int num_protocols = -1, i;
791         NTSTATUS status;
792
793         /* Find transport */
794         for (i=0;i<ARRAY_SIZE(transports);i++) {
795                 if (transports[i].transport == binding->transport) {
796                         protseq = transports[i].protseq;
797                         num_protocols = transports[i].num_protocols;
798                         break;
799                 }
800         }
801
802         if (num_protocols == -1) {
803                 DEBUG(0, ("Unable to find transport with id '%d'\n", binding->transport));
804                 return NT_STATUS_UNSUCCESSFUL;
805         }
806
807         tower->num_floors = 2 + num_protocols;
808         tower->floors = talloc_array(mem_ctx, struct epm_floor, tower->num_floors);
809
810         /* Floor 0 */
811         tower->floors[0].lhs.protocol = EPM_PROTOCOL_UUID;
812
813         tower->floors[0].lhs.lhs_data = dcerpc_floor_pack_lhs_data(tower->floors, &binding->object);
814
815         tower->floors[0].rhs.uuid.unknown = dcerpc_floor_pack_rhs_if_version_data(tower->floors, &binding->object);
816
817         /* Floor 1 */
818         tower->floors[1].lhs.protocol = EPM_PROTOCOL_UUID;
819
820         tower->floors[1].lhs.lhs_data = dcerpc_floor_pack_lhs_data(tower->floors, 
821                                                                 &ndr_transfer_syntax);
822
823         tower->floors[1].rhs.uuid.unknown = data_blob_talloc_zero(tower->floors, 2);
824
825         /* Floor 2 to num_protocols */
826         for (i = 0; i < num_protocols; i++) {
827                 tower->floors[2 + i].lhs.protocol = protseq[i];
828                 tower->floors[2 + i].lhs.lhs_data = data_blob_talloc(tower->floors, NULL, 0);
829                 ZERO_STRUCT(tower->floors[2 + i].rhs);
830                 dcerpc_floor_set_rhs_data(tower->floors, &tower->floors[2 + i], "");
831         }
832
833         /* The 4th floor contains the endpoint */
834         if (num_protocols >= 2 && binding->endpoint) {
835                 status = dcerpc_floor_set_rhs_data(tower->floors, &tower->floors[3], binding->endpoint);
836                 if (NT_STATUS_IS_ERR(status)) {
837                         return status;
838                 }
839         }
840
841         /* The 5th contains the network address */
842         if (num_protocols >= 3 && binding->host) {
843                 if (is_ipaddress(binding->host) ||
844                     (binding->host[0] == '\\' && binding->host[1] == '\\')) {
845                         status = dcerpc_floor_set_rhs_data(tower->floors, &tower->floors[4], 
846                                                            binding->host);
847                 } else {
848                         /* note that we don't attempt to resolve the
849                            name here - when we get a hostname here we
850                            are in the client code, and want to put in
851                            a wildcard all-zeros IP for the server to
852                            fill in */
853                         status = dcerpc_floor_set_rhs_data(tower->floors, &tower->floors[4], 
854                                                            "0.0.0.0");
855                 }
856                 if (NT_STATUS_IS_ERR(status)) {
857                         return status;
858                 }
859         }
860
861         return NT_STATUS_OK;
862 }