Fix recently-introduced memory leak in ssh2_msg_unexpected().
[u/mdw/putty] / ssh.c
1 /*
2 * SSH backend.
3 */
4
5 #include <stdio.h>
6 #include <stdlib.h>
7 #include <stdarg.h>
8 #include <assert.h>
9 #include <limits.h>
10 #include <signal.h>
11
12 #include "putty.h"
13 #include "tree234.h"
14 #include "ssh.h"
15 #ifndef NO_GSSAPI
16 #include "sshgssc.h"
17 #include "sshgss.h"
18 #endif
19
20 #ifndef FALSE
21 #define FALSE 0
22 #endif
23 #ifndef TRUE
24 #define TRUE 1
25 #endif
26
27 #define SSH1_MSG_DISCONNECT 1 /* 0x1 */
28 #define SSH1_SMSG_PUBLIC_KEY 2 /* 0x2 */
29 #define SSH1_CMSG_SESSION_KEY 3 /* 0x3 */
30 #define SSH1_CMSG_USER 4 /* 0x4 */
31 #define SSH1_CMSG_AUTH_RSA 6 /* 0x6 */
32 #define SSH1_SMSG_AUTH_RSA_CHALLENGE 7 /* 0x7 */
33 #define SSH1_CMSG_AUTH_RSA_RESPONSE 8 /* 0x8 */
34 #define SSH1_CMSG_AUTH_PASSWORD 9 /* 0x9 */
35 #define SSH1_CMSG_REQUEST_PTY 10 /* 0xa */
36 #define SSH1_CMSG_WINDOW_SIZE 11 /* 0xb */
37 #define SSH1_CMSG_EXEC_SHELL 12 /* 0xc */
38 #define SSH1_CMSG_EXEC_CMD 13 /* 0xd */
39 #define SSH1_SMSG_SUCCESS 14 /* 0xe */
40 #define SSH1_SMSG_FAILURE 15 /* 0xf */
41 #define SSH1_CMSG_STDIN_DATA 16 /* 0x10 */
42 #define SSH1_SMSG_STDOUT_DATA 17 /* 0x11 */
43 #define SSH1_SMSG_STDERR_DATA 18 /* 0x12 */
44 #define SSH1_CMSG_EOF 19 /* 0x13 */
45 #define SSH1_SMSG_EXIT_STATUS 20 /* 0x14 */
46 #define SSH1_MSG_CHANNEL_OPEN_CONFIRMATION 21 /* 0x15 */
47 #define SSH1_MSG_CHANNEL_OPEN_FAILURE 22 /* 0x16 */
48 #define SSH1_MSG_CHANNEL_DATA 23 /* 0x17 */
49 #define SSH1_MSG_CHANNEL_CLOSE 24 /* 0x18 */
50 #define SSH1_MSG_CHANNEL_CLOSE_CONFIRMATION 25 /* 0x19 */
51 #define SSH1_SMSG_X11_OPEN 27 /* 0x1b */
52 #define SSH1_CMSG_PORT_FORWARD_REQUEST 28 /* 0x1c */
53 #define SSH1_MSG_PORT_OPEN 29 /* 0x1d */
54 #define SSH1_CMSG_AGENT_REQUEST_FORWARDING 30 /* 0x1e */
55 #define SSH1_SMSG_AGENT_OPEN 31 /* 0x1f */
56 #define SSH1_MSG_IGNORE 32 /* 0x20 */
57 #define SSH1_CMSG_EXIT_CONFIRMATION 33 /* 0x21 */
58 #define SSH1_CMSG_X11_REQUEST_FORWARDING 34 /* 0x22 */
59 #define SSH1_CMSG_AUTH_RHOSTS_RSA 35 /* 0x23 */
60 #define SSH1_MSG_DEBUG 36 /* 0x24 */
61 #define SSH1_CMSG_REQUEST_COMPRESSION 37 /* 0x25 */
62 #define SSH1_CMSG_AUTH_TIS 39 /* 0x27 */
63 #define SSH1_SMSG_AUTH_TIS_CHALLENGE 40 /* 0x28 */
64 #define SSH1_CMSG_AUTH_TIS_RESPONSE 41 /* 0x29 */
65 #define SSH1_CMSG_AUTH_CCARD 70 /* 0x46 */
66 #define SSH1_SMSG_AUTH_CCARD_CHALLENGE 71 /* 0x47 */
67 #define SSH1_CMSG_AUTH_CCARD_RESPONSE 72 /* 0x48 */
68
69 #define SSH1_AUTH_RHOSTS 1 /* 0x1 */
70 #define SSH1_AUTH_RSA 2 /* 0x2 */
71 #define SSH1_AUTH_PASSWORD 3 /* 0x3 */
72 #define SSH1_AUTH_RHOSTS_RSA 4 /* 0x4 */
73 #define SSH1_AUTH_TIS 5 /* 0x5 */
74 #define SSH1_AUTH_CCARD 16 /* 0x10 */
75
76 #define SSH1_PROTOFLAG_SCREEN_NUMBER 1 /* 0x1 */
77 /* Mask for protoflags we will echo back to server if seen */
78 #define SSH1_PROTOFLAGS_SUPPORTED 0 /* 0x1 */
79
80 #define SSH2_MSG_DISCONNECT 1 /* 0x1 */
81 #define SSH2_MSG_IGNORE 2 /* 0x2 */
82 #define SSH2_MSG_UNIMPLEMENTED 3 /* 0x3 */
83 #define SSH2_MSG_DEBUG 4 /* 0x4 */
84 #define SSH2_MSG_SERVICE_REQUEST 5 /* 0x5 */
85 #define SSH2_MSG_SERVICE_ACCEPT 6 /* 0x6 */
86 #define SSH2_MSG_KEXINIT 20 /* 0x14 */
87 #define SSH2_MSG_NEWKEYS 21 /* 0x15 */
88 #define SSH2_MSG_KEXDH_INIT 30 /* 0x1e */
89 #define SSH2_MSG_KEXDH_REPLY 31 /* 0x1f */
90 #define SSH2_MSG_KEX_DH_GEX_REQUEST 30 /* 0x1e */
91 #define SSH2_MSG_KEX_DH_GEX_GROUP 31 /* 0x1f */
92 #define SSH2_MSG_KEX_DH_GEX_INIT 32 /* 0x20 */
93 #define SSH2_MSG_KEX_DH_GEX_REPLY 33 /* 0x21 */
94 #define SSH2_MSG_KEXRSA_PUBKEY 30 /* 0x1e */
95 #define SSH2_MSG_KEXRSA_SECRET 31 /* 0x1f */
96 #define SSH2_MSG_KEXRSA_DONE 32 /* 0x20 */
97 #define SSH2_MSG_USERAUTH_REQUEST 50 /* 0x32 */
98 #define SSH2_MSG_USERAUTH_FAILURE 51 /* 0x33 */
99 #define SSH2_MSG_USERAUTH_SUCCESS 52 /* 0x34 */
100 #define SSH2_MSG_USERAUTH_BANNER 53 /* 0x35 */
101 #define SSH2_MSG_USERAUTH_PK_OK 60 /* 0x3c */
102 #define SSH2_MSG_USERAUTH_PASSWD_CHANGEREQ 60 /* 0x3c */
103 #define SSH2_MSG_USERAUTH_INFO_REQUEST 60 /* 0x3c */
104 #define SSH2_MSG_USERAUTH_INFO_RESPONSE 61 /* 0x3d */
105 #define SSH2_MSG_GLOBAL_REQUEST 80 /* 0x50 */
106 #define SSH2_MSG_REQUEST_SUCCESS 81 /* 0x51 */
107 #define SSH2_MSG_REQUEST_FAILURE 82 /* 0x52 */
108 #define SSH2_MSG_CHANNEL_OPEN 90 /* 0x5a */
109 #define SSH2_MSG_CHANNEL_OPEN_CONFIRMATION 91 /* 0x5b */
110 #define SSH2_MSG_CHANNEL_OPEN_FAILURE 92 /* 0x5c */
111 #define SSH2_MSG_CHANNEL_WINDOW_ADJUST 93 /* 0x5d */
112 #define SSH2_MSG_CHANNEL_DATA 94 /* 0x5e */
113 #define SSH2_MSG_CHANNEL_EXTENDED_DATA 95 /* 0x5f */
114 #define SSH2_MSG_CHANNEL_EOF 96 /* 0x60 */
115 #define SSH2_MSG_CHANNEL_CLOSE 97 /* 0x61 */
116 #define SSH2_MSG_CHANNEL_REQUEST 98 /* 0x62 */
117 #define SSH2_MSG_CHANNEL_SUCCESS 99 /* 0x63 */
118 #define SSH2_MSG_CHANNEL_FAILURE 100 /* 0x64 */
119 #define SSH2_MSG_USERAUTH_GSSAPI_RESPONSE 60
120 #define SSH2_MSG_USERAUTH_GSSAPI_TOKEN 61
121 #define SSH2_MSG_USERAUTH_GSSAPI_EXCHANGE_COMPLETE 63
122 #define SSH2_MSG_USERAUTH_GSSAPI_ERROR 64
123 #define SSH2_MSG_USERAUTH_GSSAPI_ERRTOK 65
124 #define SSH2_MSG_USERAUTH_GSSAPI_MIC 66
125
126 /*
127 * Packet type contexts, so that ssh2_pkt_type can correctly decode
128 * the ambiguous type numbers back into the correct type strings.
129 */
130 typedef enum {
131 SSH2_PKTCTX_NOKEX,
132 SSH2_PKTCTX_DHGROUP,
133 SSH2_PKTCTX_DHGEX,
134 SSH2_PKTCTX_RSAKEX
135 } Pkt_KCtx;
136 typedef enum {
137 SSH2_PKTCTX_NOAUTH,
138 SSH2_PKTCTX_PUBLICKEY,
139 SSH2_PKTCTX_PASSWORD,
140 SSH2_PKTCTX_GSSAPI,
141 SSH2_PKTCTX_KBDINTER
142 } Pkt_ACtx;
143
144 #define SSH2_DISCONNECT_HOST_NOT_ALLOWED_TO_CONNECT 1 /* 0x1 */
145 #define SSH2_DISCONNECT_PROTOCOL_ERROR 2 /* 0x2 */
146 #define SSH2_DISCONNECT_KEY_EXCHANGE_FAILED 3 /* 0x3 */
147 #define SSH2_DISCONNECT_HOST_AUTHENTICATION_FAILED 4 /* 0x4 */
148 #define SSH2_DISCONNECT_MAC_ERROR 5 /* 0x5 */
149 #define SSH2_DISCONNECT_COMPRESSION_ERROR 6 /* 0x6 */
150 #define SSH2_DISCONNECT_SERVICE_NOT_AVAILABLE 7 /* 0x7 */
151 #define SSH2_DISCONNECT_PROTOCOL_VERSION_NOT_SUPPORTED 8 /* 0x8 */
152 #define SSH2_DISCONNECT_HOST_KEY_NOT_VERIFIABLE 9 /* 0x9 */
153 #define SSH2_DISCONNECT_CONNECTION_LOST 10 /* 0xa */
154 #define SSH2_DISCONNECT_BY_APPLICATION 11 /* 0xb */
155 #define SSH2_DISCONNECT_TOO_MANY_CONNECTIONS 12 /* 0xc */
156 #define SSH2_DISCONNECT_AUTH_CANCELLED_BY_USER 13 /* 0xd */
157 #define SSH2_DISCONNECT_NO_MORE_AUTH_METHODS_AVAILABLE 14 /* 0xe */
158 #define SSH2_DISCONNECT_ILLEGAL_USER_NAME 15 /* 0xf */
159
160 static const char *const ssh2_disconnect_reasons[] = {
161 NULL,
162 "host not allowed to connect",
163 "protocol error",
164 "key exchange failed",
165 "host authentication failed",
166 "MAC error",
167 "compression error",
168 "service not available",
169 "protocol version not supported",
170 "host key not verifiable",
171 "connection lost",
172 "by application",
173 "too many connections",
174 "auth cancelled by user",
175 "no more auth methods available",
176 "illegal user name",
177 };
178
179 #define SSH2_OPEN_ADMINISTRATIVELY_PROHIBITED 1 /* 0x1 */
180 #define SSH2_OPEN_CONNECT_FAILED 2 /* 0x2 */
181 #define SSH2_OPEN_UNKNOWN_CHANNEL_TYPE 3 /* 0x3 */
182 #define SSH2_OPEN_RESOURCE_SHORTAGE 4 /* 0x4 */
183
184 #define SSH2_EXTENDED_DATA_STDERR 1 /* 0x1 */
185
186 /*
187 * Various remote-bug flags.
188 */
189 #define BUG_CHOKES_ON_SSH1_IGNORE 1
190 #define BUG_SSH2_HMAC 2
191 #define BUG_NEEDS_SSH1_PLAIN_PASSWORD 4
192 #define BUG_CHOKES_ON_RSA 8
193 #define BUG_SSH2_RSA_PADDING 16
194 #define BUG_SSH2_DERIVEKEY 32
195 #define BUG_SSH2_REKEY 64
196 #define BUG_SSH2_PK_SESSIONID 128
197 #define BUG_SSH2_MAXPKT 256
198 #define BUG_CHOKES_ON_SSH2_IGNORE 512
199 #define BUG_CHOKES_ON_WINADJ 1024
200
201 /*
202 * Codes for terminal modes.
203 * Most of these are the same in SSH-1 and SSH-2.
204 * This list is derived from RFC 4254 and
205 * SSH-1 RFC-1.2.31.
206 */
207 static const struct {
208 const char* const mode;
209 int opcode;
210 enum { TTY_OP_CHAR, TTY_OP_BOOL } type;
211 } ssh_ttymodes[] = {
212 /* "V" prefix discarded for special characters relative to SSH specs */
213 { "INTR", 1, TTY_OP_CHAR },
214 { "QUIT", 2, TTY_OP_CHAR },
215 { "ERASE", 3, TTY_OP_CHAR },
216 { "KILL", 4, TTY_OP_CHAR },
217 { "EOF", 5, TTY_OP_CHAR },
218 { "EOL", 6, TTY_OP_CHAR },
219 { "EOL2", 7, TTY_OP_CHAR },
220 { "START", 8, TTY_OP_CHAR },
221 { "STOP", 9, TTY_OP_CHAR },
222 { "SUSP", 10, TTY_OP_CHAR },
223 { "DSUSP", 11, TTY_OP_CHAR },
224 { "REPRINT", 12, TTY_OP_CHAR },
225 { "WERASE", 13, TTY_OP_CHAR },
226 { "LNEXT", 14, TTY_OP_CHAR },
227 { "FLUSH", 15, TTY_OP_CHAR },
228 { "SWTCH", 16, TTY_OP_CHAR },
229 { "STATUS", 17, TTY_OP_CHAR },
230 { "DISCARD", 18, TTY_OP_CHAR },
231 { "IGNPAR", 30, TTY_OP_BOOL },
232 { "PARMRK", 31, TTY_OP_BOOL },
233 { "INPCK", 32, TTY_OP_BOOL },
234 { "ISTRIP", 33, TTY_OP_BOOL },
235 { "INLCR", 34, TTY_OP_BOOL },
236 { "IGNCR", 35, TTY_OP_BOOL },
237 { "ICRNL", 36, TTY_OP_BOOL },
238 { "IUCLC", 37, TTY_OP_BOOL },
239 { "IXON", 38, TTY_OP_BOOL },
240 { "IXANY", 39, TTY_OP_BOOL },
241 { "IXOFF", 40, TTY_OP_BOOL },
242 { "IMAXBEL", 41, TTY_OP_BOOL },
243 { "ISIG", 50, TTY_OP_BOOL },
244 { "ICANON", 51, TTY_OP_BOOL },
245 { "XCASE", 52, TTY_OP_BOOL },
246 { "ECHO", 53, TTY_OP_BOOL },
247 { "ECHOE", 54, TTY_OP_BOOL },
248 { "ECHOK", 55, TTY_OP_BOOL },
249 { "ECHONL", 56, TTY_OP_BOOL },
250 { "NOFLSH", 57, TTY_OP_BOOL },
251 { "TOSTOP", 58, TTY_OP_BOOL },
252 { "IEXTEN", 59, TTY_OP_BOOL },
253 { "ECHOCTL", 60, TTY_OP_BOOL },
254 { "ECHOKE", 61, TTY_OP_BOOL },
255 { "PENDIN", 62, TTY_OP_BOOL }, /* XXX is this a real mode? */
256 { "OPOST", 70, TTY_OP_BOOL },
257 { "OLCUC", 71, TTY_OP_BOOL },
258 { "ONLCR", 72, TTY_OP_BOOL },
259 { "OCRNL", 73, TTY_OP_BOOL },
260 { "ONOCR", 74, TTY_OP_BOOL },
261 { "ONLRET", 75, TTY_OP_BOOL },
262 { "CS7", 90, TTY_OP_BOOL },
263 { "CS8", 91, TTY_OP_BOOL },
264 { "PARENB", 92, TTY_OP_BOOL },
265 { "PARODD", 93, TTY_OP_BOOL }
266 };
267
268 /* Miscellaneous other tty-related constants. */
269 #define SSH_TTY_OP_END 0
270 /* The opcodes for ISPEED/OSPEED differ between SSH-1 and SSH-2. */
271 #define SSH1_TTY_OP_ISPEED 192
272 #define SSH1_TTY_OP_OSPEED 193
273 #define SSH2_TTY_OP_ISPEED 128
274 #define SSH2_TTY_OP_OSPEED 129
275
276 /* Helper functions for parsing tty-related config. */
277 static unsigned int ssh_tty_parse_specchar(char *s)
278 {
279 unsigned int ret;
280 if (*s) {
281 char *next = NULL;
282 ret = ctrlparse(s, &next);
283 if (!next) ret = s[0];
284 } else {
285 ret = 255; /* special value meaning "don't set" */
286 }
287 return ret;
288 }
289 static unsigned int ssh_tty_parse_boolean(char *s)
290 {
291 if (stricmp(s, "yes") == 0 ||
292 stricmp(s, "on") == 0 ||
293 stricmp(s, "true") == 0 ||
294 stricmp(s, "+") == 0)
295 return 1; /* true */
296 else if (stricmp(s, "no") == 0 ||
297 stricmp(s, "off") == 0 ||
298 stricmp(s, "false") == 0 ||
299 stricmp(s, "-") == 0)
300 return 0; /* false */
301 else
302 return (atoi(s) != 0);
303 }
304
305 #define translate(x) if (type == x) return #x
306 #define translatek(x,ctx) if (type == x && (pkt_kctx == ctx)) return #x
307 #define translatea(x,ctx) if (type == x && (pkt_actx == ctx)) return #x
308 static char *ssh1_pkt_type(int type)
309 {
310 translate(SSH1_MSG_DISCONNECT);
311 translate(SSH1_SMSG_PUBLIC_KEY);
312 translate(SSH1_CMSG_SESSION_KEY);
313 translate(SSH1_CMSG_USER);
314 translate(SSH1_CMSG_AUTH_RSA);
315 translate(SSH1_SMSG_AUTH_RSA_CHALLENGE);
316 translate(SSH1_CMSG_AUTH_RSA_RESPONSE);
317 translate(SSH1_CMSG_AUTH_PASSWORD);
318 translate(SSH1_CMSG_REQUEST_PTY);
319 translate(SSH1_CMSG_WINDOW_SIZE);
320 translate(SSH1_CMSG_EXEC_SHELL);
321 translate(SSH1_CMSG_EXEC_CMD);
322 translate(SSH1_SMSG_SUCCESS);
323 translate(SSH1_SMSG_FAILURE);
324 translate(SSH1_CMSG_STDIN_DATA);
325 translate(SSH1_SMSG_STDOUT_DATA);
326 translate(SSH1_SMSG_STDERR_DATA);
327 translate(SSH1_CMSG_EOF);
328 translate(SSH1_SMSG_EXIT_STATUS);
329 translate(SSH1_MSG_CHANNEL_OPEN_CONFIRMATION);
330 translate(SSH1_MSG_CHANNEL_OPEN_FAILURE);
331 translate(SSH1_MSG_CHANNEL_DATA);
332 translate(SSH1_MSG_CHANNEL_CLOSE);
333 translate(SSH1_MSG_CHANNEL_CLOSE_CONFIRMATION);
334 translate(SSH1_SMSG_X11_OPEN);
335 translate(SSH1_CMSG_PORT_FORWARD_REQUEST);
336 translate(SSH1_MSG_PORT_OPEN);
337 translate(SSH1_CMSG_AGENT_REQUEST_FORWARDING);
338 translate(SSH1_SMSG_AGENT_OPEN);
339 translate(SSH1_MSG_IGNORE);
340 translate(SSH1_CMSG_EXIT_CONFIRMATION);
341 translate(SSH1_CMSG_X11_REQUEST_FORWARDING);
342 translate(SSH1_CMSG_AUTH_RHOSTS_RSA);
343 translate(SSH1_MSG_DEBUG);
344 translate(SSH1_CMSG_REQUEST_COMPRESSION);
345 translate(SSH1_CMSG_AUTH_TIS);
346 translate(SSH1_SMSG_AUTH_TIS_CHALLENGE);
347 translate(SSH1_CMSG_AUTH_TIS_RESPONSE);
348 translate(SSH1_CMSG_AUTH_CCARD);
349 translate(SSH1_SMSG_AUTH_CCARD_CHALLENGE);
350 translate(SSH1_CMSG_AUTH_CCARD_RESPONSE);
351 return "unknown";
352 }
353 static char *ssh2_pkt_type(Pkt_KCtx pkt_kctx, Pkt_ACtx pkt_actx, int type)
354 {
355 translatea(SSH2_MSG_USERAUTH_GSSAPI_RESPONSE,SSH2_PKTCTX_GSSAPI);
356 translatea(SSH2_MSG_USERAUTH_GSSAPI_TOKEN,SSH2_PKTCTX_GSSAPI);
357 translatea(SSH2_MSG_USERAUTH_GSSAPI_EXCHANGE_COMPLETE,SSH2_PKTCTX_GSSAPI);
358 translatea(SSH2_MSG_USERAUTH_GSSAPI_ERROR,SSH2_PKTCTX_GSSAPI);
359 translatea(SSH2_MSG_USERAUTH_GSSAPI_ERRTOK,SSH2_PKTCTX_GSSAPI);
360 translatea(SSH2_MSG_USERAUTH_GSSAPI_MIC, SSH2_PKTCTX_GSSAPI);
361 translate(SSH2_MSG_DISCONNECT);
362 translate(SSH2_MSG_IGNORE);
363 translate(SSH2_MSG_UNIMPLEMENTED);
364 translate(SSH2_MSG_DEBUG);
365 translate(SSH2_MSG_SERVICE_REQUEST);
366 translate(SSH2_MSG_SERVICE_ACCEPT);
367 translate(SSH2_MSG_KEXINIT);
368 translate(SSH2_MSG_NEWKEYS);
369 translatek(SSH2_MSG_KEXDH_INIT, SSH2_PKTCTX_DHGROUP);
370 translatek(SSH2_MSG_KEXDH_REPLY, SSH2_PKTCTX_DHGROUP);
371 translatek(SSH2_MSG_KEX_DH_GEX_REQUEST, SSH2_PKTCTX_DHGEX);
372 translatek(SSH2_MSG_KEX_DH_GEX_GROUP, SSH2_PKTCTX_DHGEX);
373 translatek(SSH2_MSG_KEX_DH_GEX_INIT, SSH2_PKTCTX_DHGEX);
374 translatek(SSH2_MSG_KEX_DH_GEX_REPLY, SSH2_PKTCTX_DHGEX);
375 translatek(SSH2_MSG_KEXRSA_PUBKEY, SSH2_PKTCTX_RSAKEX);
376 translatek(SSH2_MSG_KEXRSA_SECRET, SSH2_PKTCTX_RSAKEX);
377 translatek(SSH2_MSG_KEXRSA_DONE, SSH2_PKTCTX_RSAKEX);
378 translate(SSH2_MSG_USERAUTH_REQUEST);
379 translate(SSH2_MSG_USERAUTH_FAILURE);
380 translate(SSH2_MSG_USERAUTH_SUCCESS);
381 translate(SSH2_MSG_USERAUTH_BANNER);
382 translatea(SSH2_MSG_USERAUTH_PK_OK, SSH2_PKTCTX_PUBLICKEY);
383 translatea(SSH2_MSG_USERAUTH_PASSWD_CHANGEREQ, SSH2_PKTCTX_PASSWORD);
384 translatea(SSH2_MSG_USERAUTH_INFO_REQUEST, SSH2_PKTCTX_KBDINTER);
385 translatea(SSH2_MSG_USERAUTH_INFO_RESPONSE, SSH2_PKTCTX_KBDINTER);
386 translate(SSH2_MSG_GLOBAL_REQUEST);
387 translate(SSH2_MSG_REQUEST_SUCCESS);
388 translate(SSH2_MSG_REQUEST_FAILURE);
389 translate(SSH2_MSG_CHANNEL_OPEN);
390 translate(SSH2_MSG_CHANNEL_OPEN_CONFIRMATION);
391 translate(SSH2_MSG_CHANNEL_OPEN_FAILURE);
392 translate(SSH2_MSG_CHANNEL_WINDOW_ADJUST);
393 translate(SSH2_MSG_CHANNEL_DATA);
394 translate(SSH2_MSG_CHANNEL_EXTENDED_DATA);
395 translate(SSH2_MSG_CHANNEL_EOF);
396 translate(SSH2_MSG_CHANNEL_CLOSE);
397 translate(SSH2_MSG_CHANNEL_REQUEST);
398 translate(SSH2_MSG_CHANNEL_SUCCESS);
399 translate(SSH2_MSG_CHANNEL_FAILURE);
400 return "unknown";
401 }
402 #undef translate
403 #undef translatec
404
405 /* Enumeration values for fields in SSH-1 packets */
406 enum {
407 PKT_END, PKT_INT, PKT_CHAR, PKT_DATA, PKT_STR, PKT_BIGNUM,
408 /* These values are for communicating relevant semantics of
409 * fields to the packet logging code. */
410 PKTT_OTHER, PKTT_PASSWORD, PKTT_DATA
411 };
412
413 /*
414 * Coroutine mechanics for the sillier bits of the code. If these
415 * macros look impenetrable to you, you might find it helpful to
416 * read
417 *
418 * http://www.chiark.greenend.org.uk/~sgtatham/coroutines.html
419 *
420 * which explains the theory behind these macros.
421 *
422 * In particular, if you are getting `case expression not constant'
423 * errors when building with MS Visual Studio, this is because MS's
424 * Edit and Continue debugging feature causes their compiler to
425 * violate ANSI C. To disable Edit and Continue debugging:
426 *
427 * - right-click ssh.c in the FileView
428 * - click Settings
429 * - select the C/C++ tab and the General category
430 * - under `Debug info:', select anything _other_ than `Program
431 * Database for Edit and Continue'.
432 */
433 #define crBegin(v) { int *crLine = &v; switch(v) { case 0:;
434 #define crBeginState crBegin(s->crLine)
435 #define crStateP(t, v) \
436 struct t *s; \
437 if (!(v)) { s = (v) = snew(struct t); s->crLine = 0; } \
438 s = (v);
439 #define crState(t) crStateP(t, ssh->t)
440 #define crFinish(z) } *crLine = 0; return (z); }
441 #define crFinishV } *crLine = 0; return; }
442 #define crReturn(z) \
443 do {\
444 *crLine =__LINE__; return (z); case __LINE__:;\
445 } while (0)
446 #define crReturnV \
447 do {\
448 *crLine=__LINE__; return; case __LINE__:;\
449 } while (0)
450 #define crStop(z) do{ *crLine = 0; return (z); }while(0)
451 #define crStopV do{ *crLine = 0; return; }while(0)
452 #define crWaitUntil(c) do { crReturn(0); } while (!(c))
453 #define crWaitUntilV(c) do { crReturnV; } while (!(c))
454
455 typedef struct ssh_tag *Ssh;
456 struct Packet;
457
458 static struct Packet *ssh1_pkt_init(int pkt_type);
459 static struct Packet *ssh2_pkt_init(int pkt_type);
460 static void ssh_pkt_ensure(struct Packet *, int length);
461 static void ssh_pkt_adddata(struct Packet *, void *data, int len);
462 static void ssh_pkt_addbyte(struct Packet *, unsigned char value);
463 static void ssh2_pkt_addbool(struct Packet *, unsigned char value);
464 static void ssh_pkt_adduint32(struct Packet *, unsigned long value);
465 static void ssh_pkt_addstring_start(struct Packet *);
466 static void ssh_pkt_addstring_str(struct Packet *, char *data);
467 static void ssh_pkt_addstring_data(struct Packet *, char *data, int len);
468 static void ssh_pkt_addstring(struct Packet *, char *data);
469 static unsigned char *ssh2_mpint_fmt(Bignum b, int *len);
470 static void ssh1_pkt_addmp(struct Packet *, Bignum b);
471 static void ssh2_pkt_addmp(struct Packet *, Bignum b);
472 static int ssh2_pkt_construct(Ssh, struct Packet *);
473 static void ssh2_pkt_send(Ssh, struct Packet *);
474 static void ssh2_pkt_send_noqueue(Ssh, struct Packet *);
475 static int do_ssh1_login(Ssh ssh, unsigned char *in, int inlen,
476 struct Packet *pktin);
477 static void do_ssh2_authconn(Ssh ssh, unsigned char *in, int inlen,
478 struct Packet *pktin);
479 static void ssh2_channel_check_close(struct ssh_channel *c);
480 static void ssh_channel_destroy(struct ssh_channel *c);
481
482 /*
483 * Buffer management constants. There are several of these for
484 * various different purposes:
485 *
486 * - SSH1_BUFFER_LIMIT is the amount of backlog that must build up
487 * on a local data stream before we throttle the whole SSH
488 * connection (in SSH-1 only). Throttling the whole connection is
489 * pretty drastic so we set this high in the hope it won't
490 * happen very often.
491 *
492 * - SSH_MAX_BACKLOG is the amount of backlog that must build up
493 * on the SSH connection itself before we defensively throttle
494 * _all_ local data streams. This is pretty drastic too (though
495 * thankfully unlikely in SSH-2 since the window mechanism should
496 * ensure that the server never has any need to throttle its end
497 * of the connection), so we set this high as well.
498 *
499 * - OUR_V2_WINSIZE is the maximum window size we present on SSH-2
500 * channels.
501 *
502 * - OUR_V2_BIGWIN is the window size we advertise for the only
503 * channel in a simple connection. It must be <= INT_MAX.
504 *
505 * - OUR_V2_MAXPKT is the official "maximum packet size" we send
506 * to the remote side. This actually has nothing to do with the
507 * size of the _packet_, but is instead a limit on the amount
508 * of data we're willing to receive in a single SSH2 channel
509 * data message.
510 *
511 * - OUR_V2_PACKETLIMIT is actually the maximum size of SSH
512 * _packet_ we're prepared to cope with. It must be a multiple
513 * of the cipher block size, and must be at least 35000.
514 */
515
516 #define SSH1_BUFFER_LIMIT 32768
517 #define SSH_MAX_BACKLOG 32768
518 #define OUR_V2_WINSIZE 16384
519 #define OUR_V2_BIGWIN 0x7fffffff
520 #define OUR_V2_MAXPKT 0x4000UL
521 #define OUR_V2_PACKETLIMIT 0x9000UL
522
523 const static struct ssh_signkey *hostkey_algs[] = { &ssh_rsa, &ssh_dss };
524
525 const static struct ssh_mac *macs[] = {
526 &ssh_hmac_sha1, &ssh_hmac_sha1_96, &ssh_hmac_md5
527 };
528 const static struct ssh_mac *buggymacs[] = {
529 &ssh_hmac_sha1_buggy, &ssh_hmac_sha1_96_buggy, &ssh_hmac_md5
530 };
531
532 static void *ssh_comp_none_init(void)
533 {
534 return NULL;
535 }
536 static void ssh_comp_none_cleanup(void *handle)
537 {
538 }
539 static int ssh_comp_none_block(void *handle, unsigned char *block, int len,
540 unsigned char **outblock, int *outlen)
541 {
542 return 0;
543 }
544 static int ssh_comp_none_disable(void *handle)
545 {
546 return 0;
547 }
548 const static struct ssh_compress ssh_comp_none = {
549 "none", NULL,
550 ssh_comp_none_init, ssh_comp_none_cleanup, ssh_comp_none_block,
551 ssh_comp_none_init, ssh_comp_none_cleanup, ssh_comp_none_block,
552 ssh_comp_none_disable, NULL
553 };
554 extern const struct ssh_compress ssh_zlib;
555 const static struct ssh_compress *compressions[] = {
556 &ssh_zlib, &ssh_comp_none
557 };
558
559 enum { /* channel types */
560 CHAN_MAINSESSION,
561 CHAN_X11,
562 CHAN_AGENT,
563 CHAN_SOCKDATA,
564 CHAN_SOCKDATA_DORMANT, /* one the remote hasn't confirmed */
565 /*
566 * CHAN_ZOMBIE is used to indicate a channel for which we've
567 * already destroyed the local data source: for instance, if a
568 * forwarded port experiences a socket error on the local side, we
569 * immediately destroy its local socket and turn the SSH channel
570 * into CHAN_ZOMBIE.
571 */
572 CHAN_ZOMBIE
573 };
574
575 /*
576 * little structure to keep track of outstanding WINDOW_ADJUSTs
577 */
578 struct winadj {
579 struct winadj *next;
580 unsigned size;
581 };
582
583 /*
584 * 2-3-4 tree storing channels.
585 */
586 struct ssh_channel {
587 Ssh ssh; /* pointer back to main context */
588 unsigned remoteid, localid;
589 int type;
590 /* True if we opened this channel but server hasn't confirmed. */
591 int halfopen;
592 /*
593 * In SSH-1, this value contains four bits:
594 *
595 * 1 We have sent SSH1_MSG_CHANNEL_CLOSE.
596 * 2 We have sent SSH1_MSG_CHANNEL_CLOSE_CONFIRMATION.
597 * 4 We have received SSH1_MSG_CHANNEL_CLOSE.
598 * 8 We have received SSH1_MSG_CHANNEL_CLOSE_CONFIRMATION.
599 *
600 * A channel is completely finished with when all four bits are set.
601 *
602 * In SSH-2, the four bits mean:
603 *
604 * 1 We have sent SSH2_MSG_CHANNEL_EOF.
605 * 2 We have sent SSH2_MSG_CHANNEL_CLOSE.
606 * 4 We have received SSH2_MSG_CHANNEL_EOF.
607 * 8 We have received SSH2_MSG_CHANNEL_CLOSE.
608 *
609 * A channel is completely finished with when we have both sent
610 * and received CLOSE.
611 *
612 * The symbolic constants below use the SSH-2 terminology, which
613 * is a bit confusing in SSH-1, but we have to use _something_.
614 */
615 #define CLOSES_SENT_EOF 1
616 #define CLOSES_SENT_CLOSE 2
617 #define CLOSES_RCVD_EOF 4
618 #define CLOSES_RCVD_CLOSE 8
619 int closes;
620
621 /*
622 * This flag indicates that an EOF is pending on the outgoing side
623 * of the channel: that is, wherever we're getting the data for
624 * this channel has sent us some data followed by EOF. We can't
625 * actually send the EOF until we've finished sending the data, so
626 * we set this flag instead to remind us to do so once our buffer
627 * is clear.
628 */
629 int pending_eof;
630
631 /*
632 * True if this channel is causing the underlying connection to be
633 * throttled.
634 */
635 int throttling_conn;
636 union {
637 struct ssh2_data_channel {
638 bufchain outbuffer;
639 unsigned remwindow, remmaxpkt;
640 /* locwindow is signed so we can cope with excess data. */
641 int locwindow, locmaxwin;
642 /*
643 * remlocwin is the amount of local window that we think
644 * the remote end had available to it after it sent the
645 * last data packet or window adjust ack.
646 */
647 int remlocwin;
648 /*
649 * These store the list of window adjusts that haven't
650 * been acked.
651 */
652 struct winadj *winadj_head, *winadj_tail;
653 enum { THROTTLED, UNTHROTTLING, UNTHROTTLED } throttle_state;
654 } v2;
655 } v;
656 union {
657 struct ssh_agent_channel {
658 unsigned char *message;
659 unsigned char msglen[4];
660 unsigned lensofar, totallen;
661 } a;
662 struct ssh_x11_channel {
663 Socket s;
664 } x11;
665 struct ssh_pfd_channel {
666 Socket s;
667 } pfd;
668 } u;
669 };
670
671 /*
672 * 2-3-4 tree storing remote->local port forwardings. SSH-1 and SSH-2
673 * use this structure in different ways, reflecting SSH-2's
674 * altogether saner approach to port forwarding.
675 *
676 * In SSH-1, you arrange a remote forwarding by sending the server
677 * the remote port number, and the local destination host:port.
678 * When a connection comes in, the server sends you back that
679 * host:port pair, and you connect to it. This is a ready-made
680 * security hole if you're not on the ball: a malicious server
681 * could send you back _any_ host:port pair, so if you trustingly
682 * connect to the address it gives you then you've just opened the
683 * entire inside of your corporate network just by connecting
684 * through it to a dodgy SSH server. Hence, we must store a list of
685 * host:port pairs we _are_ trying to forward to, and reject a
686 * connection request from the server if it's not in the list.
687 *
688 * In SSH-2, each side of the connection minds its own business and
689 * doesn't send unnecessary information to the other. You arrange a
690 * remote forwarding by sending the server just the remote port
691 * number. When a connection comes in, the server tells you which
692 * of its ports was connected to; and _you_ have to remember what
693 * local host:port pair went with that port number.
694 *
695 * Hence, in SSH-1 this structure is indexed by destination
696 * host:port pair, whereas in SSH-2 it is indexed by source port.
697 */
698 struct ssh_portfwd; /* forward declaration */
699
700 struct ssh_rportfwd {
701 unsigned sport, dport;
702 char dhost[256];
703 char *sportdesc;
704 struct ssh_portfwd *pfrec;
705 };
706 #define free_rportfwd(pf) ( \
707 ((pf) ? (sfree((pf)->sportdesc)) : (void)0 ), sfree(pf) )
708
709 /*
710 * Separately to the rportfwd tree (which is for looking up port
711 * open requests from the server), a tree of _these_ structures is
712 * used to keep track of all the currently open port forwardings,
713 * so that we can reconfigure in mid-session if the user requests
714 * it.
715 */
716 struct ssh_portfwd {
717 enum { DESTROY, KEEP, CREATE } status;
718 int type;
719 unsigned sport, dport;
720 char *saddr, *daddr;
721 char *sserv, *dserv;
722 struct ssh_rportfwd *remote;
723 int addressfamily;
724 void *local;
725 };
726 #define free_portfwd(pf) ( \
727 ((pf) ? (sfree((pf)->saddr), sfree((pf)->daddr), \
728 sfree((pf)->sserv), sfree((pf)->dserv)) : (void)0 ), sfree(pf) )
729
730 struct Packet {
731 long length; /* length of `data' actually used */
732 long forcepad; /* SSH-2: force padding to at least this length */
733 int type; /* only used for incoming packets */
734 unsigned long sequence; /* SSH-2 incoming sequence number */
735 unsigned char *data; /* allocated storage */
736 unsigned char *body; /* offset of payload within `data' */
737 long savedpos; /* temporary index into `data' (for strings) */
738 long maxlen; /* amount of storage allocated for `data' */
739 long encrypted_len; /* for SSH-2 total-size counting */
740
741 /*
742 * State associated with packet logging
743 */
744 int logmode;
745 int nblanks;
746 struct logblank_t *blanks;
747 };
748
749 static void ssh1_protocol(Ssh ssh, void *vin, int inlen,
750 struct Packet *pktin);
751 static void ssh2_protocol(Ssh ssh, void *vin, int inlen,
752 struct Packet *pktin);
753 static void ssh1_protocol_setup(Ssh ssh);
754 static void ssh2_protocol_setup(Ssh ssh);
755 static void ssh_size(void *handle, int width, int height);
756 static void ssh_special(void *handle, Telnet_Special);
757 static int ssh2_try_send(struct ssh_channel *c);
758 static void ssh2_add_channel_data(struct ssh_channel *c, char *buf, int len);
759 static void ssh_throttle_all(Ssh ssh, int enable, int bufsize);
760 static void ssh2_set_window(struct ssh_channel *c, int newwin);
761 static int ssh_sendbuffer(void *handle);
762 static int ssh_do_close(Ssh ssh, int notify_exit);
763 static unsigned long ssh_pkt_getuint32(struct Packet *pkt);
764 static int ssh2_pkt_getbool(struct Packet *pkt);
765 static void ssh_pkt_getstring(struct Packet *pkt, char **p, int *length);
766 static void ssh2_timer(void *ctx, long now);
767 static int do_ssh2_transport(Ssh ssh, void *vin, int inlen,
768 struct Packet *pktin);
769
770 struct rdpkt1_state_tag {
771 long len, pad, biglen, to_read;
772 unsigned long realcrc, gotcrc;
773 unsigned char *p;
774 int i;
775 int chunk;
776 struct Packet *pktin;
777 };
778
779 struct rdpkt2_state_tag {
780 long len, pad, payload, packetlen, maclen;
781 int i;
782 int cipherblk;
783 unsigned long incoming_sequence;
784 struct Packet *pktin;
785 };
786
787 typedef void (*handler_fn_t)(Ssh ssh, struct Packet *pktin);
788 typedef void (*chandler_fn_t)(Ssh ssh, struct Packet *pktin, void *ctx);
789
790 struct queued_handler;
791 struct queued_handler {
792 int msg1, msg2;
793 chandler_fn_t handler;
794 void *ctx;
795 struct queued_handler *next;
796 };
797
798 struct ssh_tag {
799 const struct plug_function_table *fn;
800 /* the above field _must_ be first in the structure */
801
802 char *v_c, *v_s;
803 void *exhash;
804
805 Socket s;
806
807 void *ldisc;
808 void *logctx;
809
810 unsigned char session_key[32];
811 int v1_compressing;
812 int v1_remote_protoflags;
813 int v1_local_protoflags;
814 int agentfwd_enabled;
815 int X11_fwd_enabled;
816 int remote_bugs;
817 const struct ssh_cipher *cipher;
818 void *v1_cipher_ctx;
819 void *crcda_ctx;
820 const struct ssh2_cipher *cscipher, *sccipher;
821 void *cs_cipher_ctx, *sc_cipher_ctx;
822 const struct ssh_mac *csmac, *scmac;
823 void *cs_mac_ctx, *sc_mac_ctx;
824 const struct ssh_compress *cscomp, *sccomp;
825 void *cs_comp_ctx, *sc_comp_ctx;
826 const struct ssh_kex *kex;
827 const struct ssh_signkey *hostkey;
828 unsigned char v2_session_id[SSH2_KEX_MAX_HASH_LEN];
829 int v2_session_id_len;
830 void *kex_ctx;
831
832 char *savedhost;
833 int savedport;
834 int send_ok;
835 int echoing, editing;
836
837 void *frontend;
838
839 int ospeed, ispeed; /* temporaries */
840 int term_width, term_height;
841
842 tree234 *channels; /* indexed by local id */
843 struct ssh_channel *mainchan; /* primary session channel */
844 int ncmode; /* is primary channel direct-tcpip? */
845 int exitcode;
846 int close_expected;
847 int clean_exit;
848
849 tree234 *rportfwds, *portfwds;
850
851 enum {
852 SSH_STATE_PREPACKET,
853 SSH_STATE_BEFORE_SIZE,
854 SSH_STATE_INTERMED,
855 SSH_STATE_SESSION,
856 SSH_STATE_CLOSED
857 } state;
858
859 int size_needed, eof_needed;
860 int sent_console_eof;
861 int got_pty; /* affects EOF behaviour on main channel */
862
863 struct Packet **queue;
864 int queuelen, queuesize;
865 int queueing;
866 unsigned char *deferred_send_data;
867 int deferred_len, deferred_size;
868
869 /*
870 * Gross hack: pscp will try to start SFTP but fall back to
871 * scp1 if that fails. This variable is the means by which
872 * scp.c can reach into the SSH code and find out which one it
873 * got.
874 */
875 int fallback_cmd;
876
877 bufchain banner; /* accumulates banners during do_ssh2_authconn */
878
879 Pkt_KCtx pkt_kctx;
880 Pkt_ACtx pkt_actx;
881
882 struct X11Display *x11disp;
883
884 int version;
885 int conn_throttle_count;
886 int overall_bufsize;
887 int throttled_all;
888 int v1_stdout_throttling;
889 unsigned long v2_outgoing_sequence;
890
891 int ssh1_rdpkt_crstate;
892 int ssh2_rdpkt_crstate;
893 int ssh_gotdata_crstate;
894 int do_ssh1_connection_crstate;
895
896 void *do_ssh_init_state;
897 void *do_ssh1_login_state;
898 void *do_ssh2_transport_state;
899 void *do_ssh2_authconn_state;
900
901 struct rdpkt1_state_tag rdpkt1_state;
902 struct rdpkt2_state_tag rdpkt2_state;
903
904 /* SSH-1 and SSH-2 use this for different things, but both use it */
905 int protocol_initial_phase_done;
906
907 void (*protocol) (Ssh ssh, void *vin, int inlen,
908 struct Packet *pkt);
909 struct Packet *(*s_rdpkt) (Ssh ssh, unsigned char **data, int *datalen);
910
911 /*
912 * We maintain our own copy of a Conf structure here. That way,
913 * when we're passed a new one for reconfiguration, we can check
914 * the differences and potentially reconfigure port forwardings
915 * etc in mid-session.
916 */
917 Conf *conf;
918
919 /*
920 * Values cached out of conf so as to avoid the tree234 lookup
921 * cost every time they're used.
922 */
923 int logomitdata;
924
925 /*
926 * Dynamically allocated username string created during SSH
927 * login. Stored in here rather than in the coroutine state so
928 * that it'll be reliably freed if we shut down the SSH session
929 * at some unexpected moment.
930 */
931 char *username;
932
933 /*
934 * Used to transfer data back from async callbacks.
935 */
936 void *agent_response;
937 int agent_response_len;
938 int user_response;
939
940 /*
941 * The SSH connection can be set as `frozen', meaning we are
942 * not currently accepting incoming data from the network. This
943 * is slightly more serious than setting the _socket_ as
944 * frozen, because we may already have had data passed to us
945 * from the network which we need to delay processing until
946 * after the freeze is lifted, so we also need a bufchain to
947 * store that data.
948 */
949 int frozen;
950 bufchain queued_incoming_data;
951
952 /*
953 * Dispatch table for packet types that we may have to deal
954 * with at any time.
955 */
956 handler_fn_t packet_dispatch[256];
957
958 /*
959 * Queues of one-off handler functions for success/failure
960 * indications from a request.
961 */
962 struct queued_handler *qhead, *qtail;
963 handler_fn_t q_saved_handler1, q_saved_handler2;
964
965 /*
966 * This module deals with sending keepalives.
967 */
968 Pinger pinger;
969
970 /*
971 * Track incoming and outgoing data sizes and time, for
972 * size-based rekeys.
973 */
974 unsigned long incoming_data_size, outgoing_data_size, deferred_data_size;
975 unsigned long max_data_size;
976 int kex_in_progress;
977 long next_rekey, last_rekey;
978 char *deferred_rekey_reason; /* points to STATIC string; don't free */
979
980 /*
981 * Fully qualified host name, which we need if doing GSSAPI.
982 */
983 char *fullhostname;
984
985 #ifndef NO_GSSAPI
986 /*
987 * GSSAPI libraries for this session.
988 */
989 struct ssh_gss_liblist *gsslibs;
990 #endif
991 };
992
993 #define logevent(s) logevent(ssh->frontend, s)
994
995 /* logevent, only printf-formatted. */
996 static void logeventf(Ssh ssh, const char *fmt, ...)
997 {
998 va_list ap;
999 char *buf;
1000
1001 va_start(ap, fmt);
1002 buf = dupvprintf(fmt, ap);
1003 va_end(ap);
1004 logevent(buf);
1005 sfree(buf);
1006 }
1007
1008 #define bombout(msg) \
1009 do { \
1010 char *text = dupprintf msg; \
1011 ssh_do_close(ssh, FALSE); \
1012 logevent(text); \
1013 connection_fatal(ssh->frontend, "%s", text); \
1014 sfree(text); \
1015 } while (0)
1016
1017 /* Functions to leave bits out of the SSH packet log file. */
1018
1019 static void dont_log_password(Ssh ssh, struct Packet *pkt, int blanktype)
1020 {
1021 if (conf_get_int(ssh->conf, CONF_logomitpass))
1022 pkt->logmode = blanktype;
1023 }
1024
1025 static void dont_log_data(Ssh ssh, struct Packet *pkt, int blanktype)
1026 {
1027 if (ssh->logomitdata)
1028 pkt->logmode = blanktype;
1029 }
1030
1031 static void end_log_omission(Ssh ssh, struct Packet *pkt)
1032 {
1033 pkt->logmode = PKTLOG_EMIT;
1034 }
1035
1036 /* Helper function for common bits of parsing ttymodes. */
1037 static void parse_ttymodes(Ssh ssh,
1038 void (*do_mode)(void *data, char *mode, char *val),
1039 void *data)
1040 {
1041 char *key, *val;
1042
1043 for (val = conf_get_str_strs(ssh->conf, CONF_ttymodes, NULL, &key);
1044 val != NULL;
1045 val = conf_get_str_strs(ssh->conf, CONF_ttymodes, key, &key)) {
1046 /*
1047 * val[0] is either 'V', indicating that an explicit value
1048 * follows it, or 'A' indicating that we should pass the
1049 * value through from the local environment via get_ttymode.
1050 */
1051 if (val[0] == 'A')
1052 val = get_ttymode(ssh->frontend, key);
1053 else
1054 val++; /* skip the 'V' */
1055 if (val)
1056 do_mode(data, key, val);
1057 }
1058 }
1059
1060 static int ssh_channelcmp(void *av, void *bv)
1061 {
1062 struct ssh_channel *a = (struct ssh_channel *) av;
1063 struct ssh_channel *b = (struct ssh_channel *) bv;
1064 if (a->localid < b->localid)
1065 return -1;
1066 if (a->localid > b->localid)
1067 return +1;
1068 return 0;
1069 }
1070 static int ssh_channelfind(void *av, void *bv)
1071 {
1072 unsigned *a = (unsigned *) av;
1073 struct ssh_channel *b = (struct ssh_channel *) bv;
1074 if (*a < b->localid)
1075 return -1;
1076 if (*a > b->localid)
1077 return +1;
1078 return 0;
1079 }
1080
1081 static int ssh_rportcmp_ssh1(void *av, void *bv)
1082 {
1083 struct ssh_rportfwd *a = (struct ssh_rportfwd *) av;
1084 struct ssh_rportfwd *b = (struct ssh_rportfwd *) bv;
1085 int i;
1086 if ( (i = strcmp(a->dhost, b->dhost)) != 0)
1087 return i < 0 ? -1 : +1;
1088 if (a->dport > b->dport)
1089 return +1;
1090 if (a->dport < b->dport)
1091 return -1;
1092 return 0;
1093 }
1094
1095 static int ssh_rportcmp_ssh2(void *av, void *bv)
1096 {
1097 struct ssh_rportfwd *a = (struct ssh_rportfwd *) av;
1098 struct ssh_rportfwd *b = (struct ssh_rportfwd *) bv;
1099
1100 if (a->sport > b->sport)
1101 return +1;
1102 if (a->sport < b->sport)
1103 return -1;
1104 return 0;
1105 }
1106
1107 /*
1108 * Special form of strcmp which can cope with NULL inputs. NULL is
1109 * defined to sort before even the empty string.
1110 */
1111 static int nullstrcmp(const char *a, const char *b)
1112 {
1113 if (a == NULL && b == NULL)
1114 return 0;
1115 if (a == NULL)
1116 return -1;
1117 if (b == NULL)
1118 return +1;
1119 return strcmp(a, b);
1120 }
1121
1122 static int ssh_portcmp(void *av, void *bv)
1123 {
1124 struct ssh_portfwd *a = (struct ssh_portfwd *) av;
1125 struct ssh_portfwd *b = (struct ssh_portfwd *) bv;
1126 int i;
1127 if (a->type > b->type)
1128 return +1;
1129 if (a->type < b->type)
1130 return -1;
1131 if (a->addressfamily > b->addressfamily)
1132 return +1;
1133 if (a->addressfamily < b->addressfamily)
1134 return -1;
1135 if ( (i = nullstrcmp(a->saddr, b->saddr)) != 0)
1136 return i < 0 ? -1 : +1;
1137 if (a->sport > b->sport)
1138 return +1;
1139 if (a->sport < b->sport)
1140 return -1;
1141 if (a->type != 'D') {
1142 if ( (i = nullstrcmp(a->daddr, b->daddr)) != 0)
1143 return i < 0 ? -1 : +1;
1144 if (a->dport > b->dport)
1145 return +1;
1146 if (a->dport < b->dport)
1147 return -1;
1148 }
1149 return 0;
1150 }
1151
1152 static int alloc_channel_id(Ssh ssh)
1153 {
1154 const unsigned CHANNEL_NUMBER_OFFSET = 256;
1155 unsigned low, high, mid;
1156 int tsize;
1157 struct ssh_channel *c;
1158
1159 /*
1160 * First-fit allocation of channel numbers: always pick the
1161 * lowest unused one. To do this, binary-search using the
1162 * counted B-tree to find the largest channel ID which is in a
1163 * contiguous sequence from the beginning. (Precisely
1164 * everything in that sequence must have ID equal to its tree
1165 * index plus CHANNEL_NUMBER_OFFSET.)
1166 */
1167 tsize = count234(ssh->channels);
1168
1169 low = -1;
1170 high = tsize;
1171 while (high - low > 1) {
1172 mid = (high + low) / 2;
1173 c = index234(ssh->channels, mid);
1174 if (c->localid == mid + CHANNEL_NUMBER_OFFSET)
1175 low = mid; /* this one is fine */
1176 else
1177 high = mid; /* this one is past it */
1178 }
1179 /*
1180 * Now low points to either -1, or the tree index of the
1181 * largest ID in the initial sequence.
1182 */
1183 {
1184 unsigned i = low + 1 + CHANNEL_NUMBER_OFFSET;
1185 assert(NULL == find234(ssh->channels, &i, ssh_channelfind));
1186 }
1187 return low + 1 + CHANNEL_NUMBER_OFFSET;
1188 }
1189
1190 static void c_write_stderr(int trusted, const char *buf, int len)
1191 {
1192 int i;
1193 for (i = 0; i < len; i++)
1194 if (buf[i] != '\r' && (trusted || buf[i] == '\n' || (buf[i] & 0x60)))
1195 fputc(buf[i], stderr);
1196 }
1197
1198 static void c_write(Ssh ssh, const char *buf, int len)
1199 {
1200 if (flags & FLAG_STDERR)
1201 c_write_stderr(1, buf, len);
1202 else
1203 from_backend(ssh->frontend, 1, buf, len);
1204 }
1205
1206 static void c_write_untrusted(Ssh ssh, const char *buf, int len)
1207 {
1208 if (flags & FLAG_STDERR)
1209 c_write_stderr(0, buf, len);
1210 else
1211 from_backend_untrusted(ssh->frontend, buf, len);
1212 }
1213
1214 static void c_write_str(Ssh ssh, const char *buf)
1215 {
1216 c_write(ssh, buf, strlen(buf));
1217 }
1218
1219 static void ssh_free_packet(struct Packet *pkt)
1220 {
1221 sfree(pkt->data);
1222 sfree(pkt);
1223 }
1224 static struct Packet *ssh_new_packet(void)
1225 {
1226 struct Packet *pkt = snew(struct Packet);
1227
1228 pkt->body = pkt->data = NULL;
1229 pkt->maxlen = 0;
1230 pkt->logmode = PKTLOG_EMIT;
1231 pkt->nblanks = 0;
1232 pkt->blanks = NULL;
1233
1234 return pkt;
1235 }
1236
1237 /*
1238 * Collect incoming data in the incoming packet buffer.
1239 * Decipher and verify the packet when it is completely read.
1240 * Drop SSH1_MSG_DEBUG and SSH1_MSG_IGNORE packets.
1241 * Update the *data and *datalen variables.
1242 * Return a Packet structure when a packet is completed.
1243 */
1244 static struct Packet *ssh1_rdpkt(Ssh ssh, unsigned char **data, int *datalen)
1245 {
1246 struct rdpkt1_state_tag *st = &ssh->rdpkt1_state;
1247
1248 crBegin(ssh->ssh1_rdpkt_crstate);
1249
1250 st->pktin = ssh_new_packet();
1251
1252 st->pktin->type = 0;
1253 st->pktin->length = 0;
1254
1255 for (st->i = st->len = 0; st->i < 4; st->i++) {
1256 while ((*datalen) == 0)
1257 crReturn(NULL);
1258 st->len = (st->len << 8) + **data;
1259 (*data)++, (*datalen)--;
1260 }
1261
1262 st->pad = 8 - (st->len % 8);
1263 st->biglen = st->len + st->pad;
1264 st->pktin->length = st->len - 5;
1265
1266 if (st->biglen < 0) {
1267 bombout(("Extremely large packet length from server suggests"
1268 " data stream corruption"));
1269 ssh_free_packet(st->pktin);
1270 crStop(NULL);
1271 }
1272
1273 st->pktin->maxlen = st->biglen;
1274 st->pktin->data = snewn(st->biglen + APIEXTRA, unsigned char);
1275
1276 st->to_read = st->biglen;
1277 st->p = st->pktin->data;
1278 while (st->to_read > 0) {
1279 st->chunk = st->to_read;
1280 while ((*datalen) == 0)
1281 crReturn(NULL);
1282 if (st->chunk > (*datalen))
1283 st->chunk = (*datalen);
1284 memcpy(st->p, *data, st->chunk);
1285 *data += st->chunk;
1286 *datalen -= st->chunk;
1287 st->p += st->chunk;
1288 st->to_read -= st->chunk;
1289 }
1290
1291 if (ssh->cipher && detect_attack(ssh->crcda_ctx, st->pktin->data,
1292 st->biglen, NULL)) {
1293 bombout(("Network attack (CRC compensation) detected!"));
1294 ssh_free_packet(st->pktin);
1295 crStop(NULL);
1296 }
1297
1298 if (ssh->cipher)
1299 ssh->cipher->decrypt(ssh->v1_cipher_ctx, st->pktin->data, st->biglen);
1300
1301 st->realcrc = crc32_compute(st->pktin->data, st->biglen - 4);
1302 st->gotcrc = GET_32BIT(st->pktin->data + st->biglen - 4);
1303 if (st->gotcrc != st->realcrc) {
1304 bombout(("Incorrect CRC received on packet"));
1305 ssh_free_packet(st->pktin);
1306 crStop(NULL);
1307 }
1308
1309 st->pktin->body = st->pktin->data + st->pad + 1;
1310 st->pktin->savedpos = 0;
1311
1312 if (ssh->v1_compressing) {
1313 unsigned char *decompblk;
1314 int decomplen;
1315 if (!zlib_decompress_block(ssh->sc_comp_ctx,
1316 st->pktin->body - 1, st->pktin->length + 1,
1317 &decompblk, &decomplen)) {
1318 bombout(("Zlib decompression encountered invalid data"));
1319 ssh_free_packet(st->pktin);
1320 crStop(NULL);
1321 }
1322
1323 if (st->pktin->maxlen < st->pad + decomplen) {
1324 st->pktin->maxlen = st->pad + decomplen;
1325 st->pktin->data = sresize(st->pktin->data,
1326 st->pktin->maxlen + APIEXTRA,
1327 unsigned char);
1328 st->pktin->body = st->pktin->data + st->pad + 1;
1329 }
1330
1331 memcpy(st->pktin->body - 1, decompblk, decomplen);
1332 sfree(decompblk);
1333 st->pktin->length = decomplen - 1;
1334 }
1335
1336 st->pktin->type = st->pktin->body[-1];
1337
1338 /*
1339 * Log incoming packet, possibly omitting sensitive fields.
1340 */
1341 if (ssh->logctx) {
1342 int nblanks = 0;
1343 struct logblank_t blank;
1344 if (ssh->logomitdata) {
1345 int do_blank = FALSE, blank_prefix = 0;
1346 /* "Session data" packets - omit the data field */
1347 if ((st->pktin->type == SSH1_SMSG_STDOUT_DATA) ||
1348 (st->pktin->type == SSH1_SMSG_STDERR_DATA)) {
1349 do_blank = TRUE; blank_prefix = 4;
1350 } else if (st->pktin->type == SSH1_MSG_CHANNEL_DATA) {
1351 do_blank = TRUE; blank_prefix = 8;
1352 }
1353 if (do_blank) {
1354 blank.offset = blank_prefix;
1355 blank.len = st->pktin->length;
1356 blank.type = PKTLOG_OMIT;
1357 nblanks = 1;
1358 }
1359 }
1360 log_packet(ssh->logctx,
1361 PKT_INCOMING, st->pktin->type,
1362 ssh1_pkt_type(st->pktin->type),
1363 st->pktin->body, st->pktin->length,
1364 nblanks, &blank, NULL);
1365 }
1366
1367 crFinish(st->pktin);
1368 }
1369
1370 static struct Packet *ssh2_rdpkt(Ssh ssh, unsigned char **data, int *datalen)
1371 {
1372 struct rdpkt2_state_tag *st = &ssh->rdpkt2_state;
1373
1374 crBegin(ssh->ssh2_rdpkt_crstate);
1375
1376 st->pktin = ssh_new_packet();
1377
1378 st->pktin->type = 0;
1379 st->pktin->length = 0;
1380 if (ssh->sccipher)
1381 st->cipherblk = ssh->sccipher->blksize;
1382 else
1383 st->cipherblk = 8;
1384 if (st->cipherblk < 8)
1385 st->cipherblk = 8;
1386 st->maclen = ssh->scmac ? ssh->scmac->len : 0;
1387
1388 if (ssh->sccipher && (ssh->sccipher->flags & SSH_CIPHER_IS_CBC) &&
1389 ssh->scmac) {
1390 /*
1391 * When dealing with a CBC-mode cipher, we want to avoid the
1392 * possibility of an attacker's tweaking the ciphertext stream
1393 * so as to cause us to feed the same block to the block
1394 * cipher more than once and thus leak information
1395 * (VU#958563). The way we do this is not to take any
1396 * decisions on the basis of anything we've decrypted until
1397 * we've verified it with a MAC. That includes the packet
1398 * length, so we just read data and check the MAC repeatedly,
1399 * and when the MAC passes, see if the length we've got is
1400 * plausible.
1401 */
1402
1403 /* May as well allocate the whole lot now. */
1404 st->pktin->data = snewn(OUR_V2_PACKETLIMIT + st->maclen + APIEXTRA,
1405 unsigned char);
1406
1407 /* Read an amount corresponding to the MAC. */
1408 for (st->i = 0; st->i < st->maclen; st->i++) {
1409 while ((*datalen) == 0)
1410 crReturn(NULL);
1411 st->pktin->data[st->i] = *(*data)++;
1412 (*datalen)--;
1413 }
1414
1415 st->packetlen = 0;
1416 {
1417 unsigned char seq[4];
1418 ssh->scmac->start(ssh->sc_mac_ctx);
1419 PUT_32BIT(seq, st->incoming_sequence);
1420 ssh->scmac->bytes(ssh->sc_mac_ctx, seq, 4);
1421 }
1422
1423 for (;;) { /* Once around this loop per cipher block. */
1424 /* Read another cipher-block's worth, and tack it onto the end. */
1425 for (st->i = 0; st->i < st->cipherblk; st->i++) {
1426 while ((*datalen) == 0)
1427 crReturn(NULL);
1428 st->pktin->data[st->packetlen+st->maclen+st->i] = *(*data)++;
1429 (*datalen)--;
1430 }
1431 /* Decrypt one more block (a little further back in the stream). */
1432 ssh->sccipher->decrypt(ssh->sc_cipher_ctx,
1433 st->pktin->data + st->packetlen,
1434 st->cipherblk);
1435 /* Feed that block to the MAC. */
1436 ssh->scmac->bytes(ssh->sc_mac_ctx,
1437 st->pktin->data + st->packetlen, st->cipherblk);
1438 st->packetlen += st->cipherblk;
1439 /* See if that gives us a valid packet. */
1440 if (ssh->scmac->verresult(ssh->sc_mac_ctx,
1441 st->pktin->data + st->packetlen) &&
1442 (st->len = GET_32BIT(st->pktin->data)) + 4 == st->packetlen)
1443 break;
1444 if (st->packetlen >= OUR_V2_PACKETLIMIT) {
1445 bombout(("No valid incoming packet found"));
1446 ssh_free_packet(st->pktin);
1447 crStop(NULL);
1448 }
1449 }
1450 st->pktin->maxlen = st->packetlen + st->maclen;
1451 st->pktin->data = sresize(st->pktin->data,
1452 st->pktin->maxlen + APIEXTRA,
1453 unsigned char);
1454 } else {
1455 st->pktin->data = snewn(st->cipherblk + APIEXTRA, unsigned char);
1456
1457 /*
1458 * Acquire and decrypt the first block of the packet. This will
1459 * contain the length and padding details.
1460 */
1461 for (st->i = st->len = 0; st->i < st->cipherblk; st->i++) {
1462 while ((*datalen) == 0)
1463 crReturn(NULL);
1464 st->pktin->data[st->i] = *(*data)++;
1465 (*datalen)--;
1466 }
1467
1468 if (ssh->sccipher)
1469 ssh->sccipher->decrypt(ssh->sc_cipher_ctx,
1470 st->pktin->data, st->cipherblk);
1471
1472 /*
1473 * Now get the length figure.
1474 */
1475 st->len = GET_32BIT(st->pktin->data);
1476
1477 /*
1478 * _Completely_ silly lengths should be stomped on before they
1479 * do us any more damage.
1480 */
1481 if (st->len < 0 || st->len > OUR_V2_PACKETLIMIT ||
1482 (st->len + 4) % st->cipherblk != 0) {
1483 bombout(("Incoming packet was garbled on decryption"));
1484 ssh_free_packet(st->pktin);
1485 crStop(NULL);
1486 }
1487
1488 /*
1489 * So now we can work out the total packet length.
1490 */
1491 st->packetlen = st->len + 4;
1492
1493 /*
1494 * Allocate memory for the rest of the packet.
1495 */
1496 st->pktin->maxlen = st->packetlen + st->maclen;
1497 st->pktin->data = sresize(st->pktin->data,
1498 st->pktin->maxlen + APIEXTRA,
1499 unsigned char);
1500
1501 /*
1502 * Read and decrypt the remainder of the packet.
1503 */
1504 for (st->i = st->cipherblk; st->i < st->packetlen + st->maclen;
1505 st->i++) {
1506 while ((*datalen) == 0)
1507 crReturn(NULL);
1508 st->pktin->data[st->i] = *(*data)++;
1509 (*datalen)--;
1510 }
1511 /* Decrypt everything _except_ the MAC. */
1512 if (ssh->sccipher)
1513 ssh->sccipher->decrypt(ssh->sc_cipher_ctx,
1514 st->pktin->data + st->cipherblk,
1515 st->packetlen - st->cipherblk);
1516
1517 /*
1518 * Check the MAC.
1519 */
1520 if (ssh->scmac
1521 && !ssh->scmac->verify(ssh->sc_mac_ctx, st->pktin->data,
1522 st->len + 4, st->incoming_sequence)) {
1523 bombout(("Incorrect MAC received on packet"));
1524 ssh_free_packet(st->pktin);
1525 crStop(NULL);
1526 }
1527 }
1528 /* Get and sanity-check the amount of random padding. */
1529 st->pad = st->pktin->data[4];
1530 if (st->pad < 4 || st->len - st->pad < 1) {
1531 bombout(("Invalid padding length on received packet"));
1532 ssh_free_packet(st->pktin);
1533 crStop(NULL);
1534 }
1535 /*
1536 * This enables us to deduce the payload length.
1537 */
1538 st->payload = st->len - st->pad - 1;
1539
1540 st->pktin->length = st->payload + 5;
1541 st->pktin->encrypted_len = st->packetlen;
1542
1543 st->pktin->sequence = st->incoming_sequence++;
1544
1545 /*
1546 * Decompress packet payload.
1547 */
1548 {
1549 unsigned char *newpayload;
1550 int newlen;
1551 if (ssh->sccomp &&
1552 ssh->sccomp->decompress(ssh->sc_comp_ctx,
1553 st->pktin->data + 5, st->pktin->length - 5,
1554 &newpayload, &newlen)) {
1555 if (st->pktin->maxlen < newlen + 5) {
1556 st->pktin->maxlen = newlen + 5;
1557 st->pktin->data = sresize(st->pktin->data,
1558 st->pktin->maxlen + APIEXTRA,
1559 unsigned char);
1560 }
1561 st->pktin->length = 5 + newlen;
1562 memcpy(st->pktin->data + 5, newpayload, newlen);
1563 sfree(newpayload);
1564 }
1565 }
1566
1567 st->pktin->savedpos = 6;
1568 st->pktin->body = st->pktin->data;
1569 st->pktin->type = st->pktin->data[5];
1570
1571 /*
1572 * Log incoming packet, possibly omitting sensitive fields.
1573 */
1574 if (ssh->logctx) {
1575 int nblanks = 0;
1576 struct logblank_t blank;
1577 if (ssh->logomitdata) {
1578 int do_blank = FALSE, blank_prefix = 0;
1579 /* "Session data" packets - omit the data field */
1580 if (st->pktin->type == SSH2_MSG_CHANNEL_DATA) {
1581 do_blank = TRUE; blank_prefix = 8;
1582 } else if (st->pktin->type == SSH2_MSG_CHANNEL_EXTENDED_DATA) {
1583 do_blank = TRUE; blank_prefix = 12;
1584 }
1585 if (do_blank) {
1586 blank.offset = blank_prefix;
1587 blank.len = (st->pktin->length-6) - blank_prefix;
1588 blank.type = PKTLOG_OMIT;
1589 nblanks = 1;
1590 }
1591 }
1592 log_packet(ssh->logctx, PKT_INCOMING, st->pktin->type,
1593 ssh2_pkt_type(ssh->pkt_kctx, ssh->pkt_actx,
1594 st->pktin->type),
1595 st->pktin->data+6, st->pktin->length-6,
1596 nblanks, &blank, &st->pktin->sequence);
1597 }
1598
1599 crFinish(st->pktin);
1600 }
1601
1602 static int s_wrpkt_prepare(Ssh ssh, struct Packet *pkt, int *offset_p)
1603 {
1604 int pad, biglen, i, pktoffs;
1605 unsigned long crc;
1606 #ifdef __SC__
1607 /*
1608 * XXX various versions of SC (including 8.8.4) screw up the
1609 * register allocation in this function and use the same register
1610 * (D6) for len and as a temporary, with predictable results. The
1611 * following sledgehammer prevents this.
1612 */
1613 volatile
1614 #endif
1615 int len;
1616
1617 if (ssh->logctx)
1618 log_packet(ssh->logctx, PKT_OUTGOING, pkt->data[12],
1619 ssh1_pkt_type(pkt->data[12]),
1620 pkt->body, pkt->length - (pkt->body - pkt->data),
1621 pkt->nblanks, pkt->blanks, NULL);
1622 sfree(pkt->blanks); pkt->blanks = NULL;
1623 pkt->nblanks = 0;
1624
1625 if (ssh->v1_compressing) {
1626 unsigned char *compblk;
1627 int complen;
1628 zlib_compress_block(ssh->cs_comp_ctx,
1629 pkt->data + 12, pkt->length - 12,
1630 &compblk, &complen);
1631 ssh_pkt_ensure(pkt, complen + 2); /* just in case it's got bigger */
1632 memcpy(pkt->data + 12, compblk, complen);
1633 sfree(compblk);
1634 pkt->length = complen + 12;
1635 }
1636
1637 ssh_pkt_ensure(pkt, pkt->length + 4); /* space for CRC */
1638 pkt->length += 4;
1639 len = pkt->length - 4 - 8; /* len(type+data+CRC) */
1640 pad = 8 - (len % 8);
1641 pktoffs = 8 - pad;
1642 biglen = len + pad; /* len(padding+type+data+CRC) */
1643
1644 for (i = pktoffs; i < 4+8; i++)
1645 pkt->data[i] = random_byte();
1646 crc = crc32_compute(pkt->data + pktoffs + 4, biglen - 4); /* all ex len */
1647 PUT_32BIT(pkt->data + pktoffs + 4 + biglen - 4, crc);
1648 PUT_32BIT(pkt->data + pktoffs, len);
1649
1650 if (ssh->cipher)
1651 ssh->cipher->encrypt(ssh->v1_cipher_ctx,
1652 pkt->data + pktoffs + 4, biglen);
1653
1654 if (offset_p) *offset_p = pktoffs;
1655 return biglen + 4; /* len(length+padding+type+data+CRC) */
1656 }
1657
1658 static int s_write(Ssh ssh, void *data, int len)
1659 {
1660 if (ssh->logctx)
1661 log_packet(ssh->logctx, PKT_OUTGOING, -1, NULL, data, len,
1662 0, NULL, NULL);
1663 return sk_write(ssh->s, (char *)data, len);
1664 }
1665
1666 static void s_wrpkt(Ssh ssh, struct Packet *pkt)
1667 {
1668 int len, backlog, offset;
1669 len = s_wrpkt_prepare(ssh, pkt, &offset);
1670 backlog = s_write(ssh, pkt->data + offset, len);
1671 if (backlog > SSH_MAX_BACKLOG)
1672 ssh_throttle_all(ssh, 1, backlog);
1673 ssh_free_packet(pkt);
1674 }
1675
1676 static void s_wrpkt_defer(Ssh ssh, struct Packet *pkt)
1677 {
1678 int len, offset;
1679 len = s_wrpkt_prepare(ssh, pkt, &offset);
1680 if (ssh->deferred_len + len > ssh->deferred_size) {
1681 ssh->deferred_size = ssh->deferred_len + len + 128;
1682 ssh->deferred_send_data = sresize(ssh->deferred_send_data,
1683 ssh->deferred_size,
1684 unsigned char);
1685 }
1686 memcpy(ssh->deferred_send_data + ssh->deferred_len,
1687 pkt->data + offset, len);
1688 ssh->deferred_len += len;
1689 ssh_free_packet(pkt);
1690 }
1691
1692 /*
1693 * Construct a SSH-1 packet with the specified contents.
1694 * (This all-at-once interface used to be the only one, but now SSH-1
1695 * packets can also be constructed incrementally.)
1696 */
1697 static struct Packet *construct_packet(Ssh ssh, int pkttype, va_list ap)
1698 {
1699 int argtype;
1700 Bignum bn;
1701 struct Packet *pkt;
1702
1703 pkt = ssh1_pkt_init(pkttype);
1704
1705 while ((argtype = va_arg(ap, int)) != PKT_END) {
1706 unsigned char *argp, argchar;
1707 char *sargp;
1708 unsigned long argint;
1709 int arglen;
1710 switch (argtype) {
1711 /* Actual fields in the packet */
1712 case PKT_INT:
1713 argint = va_arg(ap, int);
1714 ssh_pkt_adduint32(pkt, argint);
1715 break;
1716 case PKT_CHAR:
1717 argchar = (unsigned char) va_arg(ap, int);
1718 ssh_pkt_addbyte(pkt, argchar);
1719 break;
1720 case PKT_DATA:
1721 argp = va_arg(ap, unsigned char *);
1722 arglen = va_arg(ap, int);
1723 ssh_pkt_adddata(pkt, argp, arglen);
1724 break;
1725 case PKT_STR:
1726 sargp = va_arg(ap, char *);
1727 ssh_pkt_addstring(pkt, sargp);
1728 break;
1729 case PKT_BIGNUM:
1730 bn = va_arg(ap, Bignum);
1731 ssh1_pkt_addmp(pkt, bn);
1732 break;
1733 /* Tokens for modifications to packet logging */
1734 case PKTT_PASSWORD:
1735 dont_log_password(ssh, pkt, PKTLOG_BLANK);
1736 break;
1737 case PKTT_DATA:
1738 dont_log_data(ssh, pkt, PKTLOG_OMIT);
1739 break;
1740 case PKTT_OTHER:
1741 end_log_omission(ssh, pkt);
1742 break;
1743 }
1744 }
1745
1746 return pkt;
1747 }
1748
1749 static void send_packet(Ssh ssh, int pkttype, ...)
1750 {
1751 struct Packet *pkt;
1752 va_list ap;
1753 va_start(ap, pkttype);
1754 pkt = construct_packet(ssh, pkttype, ap);
1755 va_end(ap);
1756 s_wrpkt(ssh, pkt);
1757 }
1758
1759 static void defer_packet(Ssh ssh, int pkttype, ...)
1760 {
1761 struct Packet *pkt;
1762 va_list ap;
1763 va_start(ap, pkttype);
1764 pkt = construct_packet(ssh, pkttype, ap);
1765 va_end(ap);
1766 s_wrpkt_defer(ssh, pkt);
1767 }
1768
1769 static int ssh_versioncmp(char *a, char *b)
1770 {
1771 char *ae, *be;
1772 unsigned long av, bv;
1773
1774 av = strtoul(a, &ae, 10);
1775 bv = strtoul(b, &be, 10);
1776 if (av != bv)
1777 return (av < bv ? -1 : +1);
1778 if (*ae == '.')
1779 ae++;
1780 if (*be == '.')
1781 be++;
1782 av = strtoul(ae, &ae, 10);
1783 bv = strtoul(be, &be, 10);
1784 if (av != bv)
1785 return (av < bv ? -1 : +1);
1786 return 0;
1787 }
1788
1789 /*
1790 * Utility routines for putting an SSH-protocol `string' and
1791 * `uint32' into a hash state.
1792 */
1793 static void hash_string(const struct ssh_hash *h, void *s, void *str, int len)
1794 {
1795 unsigned char lenblk[4];
1796 PUT_32BIT(lenblk, len);
1797 h->bytes(s, lenblk, 4);
1798 h->bytes(s, str, len);
1799 }
1800
1801 static void hash_uint32(const struct ssh_hash *h, void *s, unsigned i)
1802 {
1803 unsigned char intblk[4];
1804 PUT_32BIT(intblk, i);
1805 h->bytes(s, intblk, 4);
1806 }
1807
1808 /*
1809 * Packet construction functions. Mostly shared between SSH-1 and SSH-2.
1810 */
1811 static void ssh_pkt_ensure(struct Packet *pkt, int length)
1812 {
1813 if (pkt->maxlen < length) {
1814 unsigned char *body = pkt->body;
1815 int offset = body ? body - pkt->data : 0;
1816 pkt->maxlen = length + 256;
1817 pkt->data = sresize(pkt->data, pkt->maxlen + APIEXTRA, unsigned char);
1818 if (body) pkt->body = pkt->data + offset;
1819 }
1820 }
1821 static void ssh_pkt_adddata(struct Packet *pkt, void *data, int len)
1822 {
1823 if (pkt->logmode != PKTLOG_EMIT) {
1824 pkt->nblanks++;
1825 pkt->blanks = sresize(pkt->blanks, pkt->nblanks, struct logblank_t);
1826 assert(pkt->body);
1827 pkt->blanks[pkt->nblanks-1].offset = pkt->length -
1828 (pkt->body - pkt->data);
1829 pkt->blanks[pkt->nblanks-1].len = len;
1830 pkt->blanks[pkt->nblanks-1].type = pkt->logmode;
1831 }
1832 pkt->length += len;
1833 ssh_pkt_ensure(pkt, pkt->length);
1834 memcpy(pkt->data + pkt->length - len, data, len);
1835 }
1836 static void ssh_pkt_addbyte(struct Packet *pkt, unsigned char byte)
1837 {
1838 ssh_pkt_adddata(pkt, &byte, 1);
1839 }
1840 static void ssh2_pkt_addbool(struct Packet *pkt, unsigned char value)
1841 {
1842 ssh_pkt_adddata(pkt, &value, 1);
1843 }
1844 static void ssh_pkt_adduint32(struct Packet *pkt, unsigned long value)
1845 {
1846 unsigned char x[4];
1847 PUT_32BIT(x, value);
1848 ssh_pkt_adddata(pkt, x, 4);
1849 }
1850 static void ssh_pkt_addstring_start(struct Packet *pkt)
1851 {
1852 ssh_pkt_adduint32(pkt, 0);
1853 pkt->savedpos = pkt->length;
1854 }
1855 static void ssh_pkt_addstring_str(struct Packet *pkt, char *data)
1856 {
1857 ssh_pkt_adddata(pkt, data, strlen(data));
1858 PUT_32BIT(pkt->data + pkt->savedpos - 4, pkt->length - pkt->savedpos);
1859 }
1860 static void ssh_pkt_addstring_data(struct Packet *pkt, char *data, int len)
1861 {
1862 ssh_pkt_adddata(pkt, data, len);
1863 PUT_32BIT(pkt->data + pkt->savedpos - 4, pkt->length - pkt->savedpos);
1864 }
1865 static void ssh_pkt_addstring(struct Packet *pkt, char *data)
1866 {
1867 ssh_pkt_addstring_start(pkt);
1868 ssh_pkt_addstring_str(pkt, data);
1869 }
1870 static void ssh1_pkt_addmp(struct Packet *pkt, Bignum b)
1871 {
1872 int len = ssh1_bignum_length(b);
1873 unsigned char *data = snewn(len, unsigned char);
1874 (void) ssh1_write_bignum(data, b);
1875 ssh_pkt_adddata(pkt, data, len);
1876 sfree(data);
1877 }
1878 static unsigned char *ssh2_mpint_fmt(Bignum b, int *len)
1879 {
1880 unsigned char *p;
1881 int i, n = (bignum_bitcount(b) + 7) / 8;
1882 p = snewn(n + 1, unsigned char);
1883 p[0] = 0;
1884 for (i = 1; i <= n; i++)
1885 p[i] = bignum_byte(b, n - i);
1886 i = 0;
1887 while (i <= n && p[i] == 0 && (p[i + 1] & 0x80) == 0)
1888 i++;
1889 memmove(p, p + i, n + 1 - i);
1890 *len = n + 1 - i;
1891 return p;
1892 }
1893 static void ssh2_pkt_addmp(struct Packet *pkt, Bignum b)
1894 {
1895 unsigned char *p;
1896 int len;
1897 p = ssh2_mpint_fmt(b, &len);
1898 ssh_pkt_addstring_start(pkt);
1899 ssh_pkt_addstring_data(pkt, (char *)p, len);
1900 sfree(p);
1901 }
1902
1903 static struct Packet *ssh1_pkt_init(int pkt_type)
1904 {
1905 struct Packet *pkt = ssh_new_packet();
1906 pkt->length = 4 + 8; /* space for length + max padding */
1907 ssh_pkt_addbyte(pkt, pkt_type);
1908 pkt->body = pkt->data + pkt->length;
1909 return pkt;
1910 }
1911
1912 /* For legacy code (SSH-1 and -2 packet construction used to be separate) */
1913 #define ssh2_pkt_ensure(pkt, length) ssh_pkt_ensure(pkt, length)
1914 #define ssh2_pkt_adddata(pkt, data, len) ssh_pkt_adddata(pkt, data, len)
1915 #define ssh2_pkt_addbyte(pkt, byte) ssh_pkt_addbyte(pkt, byte)
1916 #define ssh2_pkt_adduint32(pkt, value) ssh_pkt_adduint32(pkt, value)
1917 #define ssh2_pkt_addstring_start(pkt) ssh_pkt_addstring_start(pkt)
1918 #define ssh2_pkt_addstring_str(pkt, data) ssh_pkt_addstring_str(pkt, data)
1919 #define ssh2_pkt_addstring_data(pkt, data, len) ssh_pkt_addstring_data(pkt, data, len)
1920 #define ssh2_pkt_addstring(pkt, data) ssh_pkt_addstring(pkt, data)
1921
1922 static struct Packet *ssh2_pkt_init(int pkt_type)
1923 {
1924 struct Packet *pkt = ssh_new_packet();
1925 pkt->length = 5; /* space for packet length + padding length */
1926 pkt->forcepad = 0;
1927 ssh_pkt_addbyte(pkt, (unsigned char) pkt_type);
1928 pkt->body = pkt->data + pkt->length; /* after packet type */
1929 return pkt;
1930 }
1931
1932 /*
1933 * Construct an SSH-2 final-form packet: compress it, encrypt it,
1934 * put the MAC on it. Final packet, ready to be sent, is stored in
1935 * pkt->data. Total length is returned.
1936 */
1937 static int ssh2_pkt_construct(Ssh ssh, struct Packet *pkt)
1938 {
1939 int cipherblk, maclen, padding, i;
1940
1941 if (ssh->logctx)
1942 log_packet(ssh->logctx, PKT_OUTGOING, pkt->data[5],
1943 ssh2_pkt_type(ssh->pkt_kctx, ssh->pkt_actx, pkt->data[5]),
1944 pkt->body, pkt->length - (pkt->body - pkt->data),
1945 pkt->nblanks, pkt->blanks, &ssh->v2_outgoing_sequence);
1946 sfree(pkt->blanks); pkt->blanks = NULL;
1947 pkt->nblanks = 0;
1948
1949 /*
1950 * Compress packet payload.
1951 */
1952 {
1953 unsigned char *newpayload;
1954 int newlen;
1955 if (ssh->cscomp &&
1956 ssh->cscomp->compress(ssh->cs_comp_ctx, pkt->data + 5,
1957 pkt->length - 5,
1958 &newpayload, &newlen)) {
1959 pkt->length = 5;
1960 ssh2_pkt_adddata(pkt, newpayload, newlen);
1961 sfree(newpayload);
1962 }
1963 }
1964
1965 /*
1966 * Add padding. At least four bytes, and must also bring total
1967 * length (minus MAC) up to a multiple of the block size.
1968 * If pkt->forcepad is set, make sure the packet is at least that size
1969 * after padding.
1970 */
1971 cipherblk = ssh->cscipher ? ssh->cscipher->blksize : 8; /* block size */
1972 cipherblk = cipherblk < 8 ? 8 : cipherblk; /* or 8 if blksize < 8 */
1973 padding = 4;
1974 if (pkt->length + padding < pkt->forcepad)
1975 padding = pkt->forcepad - pkt->length;
1976 padding +=
1977 (cipherblk - (pkt->length + padding) % cipherblk) % cipherblk;
1978 assert(padding <= 255);
1979 maclen = ssh->csmac ? ssh->csmac->len : 0;
1980 ssh2_pkt_ensure(pkt, pkt->length + padding + maclen);
1981 pkt->data[4] = padding;
1982 for (i = 0; i < padding; i++)
1983 pkt->data[pkt->length + i] = random_byte();
1984 PUT_32BIT(pkt->data, pkt->length + padding - 4);
1985 if (ssh->csmac)
1986 ssh->csmac->generate(ssh->cs_mac_ctx, pkt->data,
1987 pkt->length + padding,
1988 ssh->v2_outgoing_sequence);
1989 ssh->v2_outgoing_sequence++; /* whether or not we MACed */
1990
1991 if (ssh->cscipher)
1992 ssh->cscipher->encrypt(ssh->cs_cipher_ctx,
1993 pkt->data, pkt->length + padding);
1994
1995 pkt->encrypted_len = pkt->length + padding;
1996
1997 /* Ready-to-send packet starts at pkt->data. We return length. */
1998 return pkt->length + padding + maclen;
1999 }
2000
2001 /*
2002 * Routines called from the main SSH code to send packets. There
2003 * are quite a few of these, because we have two separate
2004 * mechanisms for delaying the sending of packets:
2005 *
2006 * - In order to send an IGNORE message and a password message in
2007 * a single fixed-length blob, we require the ability to
2008 * concatenate the encrypted forms of those two packets _into_ a
2009 * single blob and then pass it to our <network.h> transport
2010 * layer in one go. Hence, there's a deferment mechanism which
2011 * works after packet encryption.
2012 *
2013 * - In order to avoid sending any connection-layer messages
2014 * during repeat key exchange, we have to queue up any such
2015 * outgoing messages _before_ they are encrypted (and in
2016 * particular before they're allocated sequence numbers), and
2017 * then send them once we've finished.
2018 *
2019 * I call these mechanisms `defer' and `queue' respectively, so as
2020 * to distinguish them reasonably easily.
2021 *
2022 * The functions send_noqueue() and defer_noqueue() free the packet
2023 * structure they are passed. Every outgoing packet goes through
2024 * precisely one of these functions in its life; packets passed to
2025 * ssh2_pkt_send() or ssh2_pkt_defer() either go straight to one of
2026 * these or get queued, and then when the queue is later emptied
2027 * the packets are all passed to defer_noqueue().
2028 *
2029 * When using a CBC-mode cipher, it's necessary to ensure that an
2030 * attacker can't provide data to be encrypted using an IV that they
2031 * know. We ensure this by prefixing each packet that might contain
2032 * user data with an SSH_MSG_IGNORE. This is done using the deferral
2033 * mechanism, so in this case send_noqueue() ends up redirecting to
2034 * defer_noqueue(). If you don't like this inefficiency, don't use
2035 * CBC.
2036 */
2037
2038 static void ssh2_pkt_defer_noqueue(Ssh, struct Packet *, int);
2039 static void ssh_pkt_defersend(Ssh);
2040
2041 /*
2042 * Send an SSH-2 packet immediately, without queuing or deferring.
2043 */
2044 static void ssh2_pkt_send_noqueue(Ssh ssh, struct Packet *pkt)
2045 {
2046 int len;
2047 int backlog;
2048 if (ssh->cscipher != NULL && (ssh->cscipher->flags & SSH_CIPHER_IS_CBC)) {
2049 /* We need to send two packets, so use the deferral mechanism. */
2050 ssh2_pkt_defer_noqueue(ssh, pkt, FALSE);
2051 ssh_pkt_defersend(ssh);
2052 return;
2053 }
2054 len = ssh2_pkt_construct(ssh, pkt);
2055 backlog = s_write(ssh, pkt->data, len);
2056 if (backlog > SSH_MAX_BACKLOG)
2057 ssh_throttle_all(ssh, 1, backlog);
2058
2059 ssh->outgoing_data_size += pkt->encrypted_len;
2060 if (!ssh->kex_in_progress &&
2061 ssh->max_data_size != 0 &&
2062 ssh->outgoing_data_size > ssh->max_data_size)
2063 do_ssh2_transport(ssh, "too much data sent", -1, NULL);
2064
2065 ssh_free_packet(pkt);
2066 }
2067
2068 /*
2069 * Defer an SSH-2 packet.
2070 */
2071 static void ssh2_pkt_defer_noqueue(Ssh ssh, struct Packet *pkt, int noignore)
2072 {
2073 int len;
2074 if (ssh->cscipher != NULL && (ssh->cscipher->flags & SSH_CIPHER_IS_CBC) &&
2075 ssh->deferred_len == 0 && !noignore &&
2076 !(ssh->remote_bugs & BUG_CHOKES_ON_SSH2_IGNORE)) {
2077 /*
2078 * Interpose an SSH_MSG_IGNORE to ensure that user data don't
2079 * get encrypted with a known IV.
2080 */
2081 struct Packet *ipkt = ssh2_pkt_init(SSH2_MSG_IGNORE);
2082 ssh2_pkt_addstring_start(ipkt);
2083 ssh2_pkt_defer_noqueue(ssh, ipkt, TRUE);
2084 }
2085 len = ssh2_pkt_construct(ssh, pkt);
2086 if (ssh->deferred_len + len > ssh->deferred_size) {
2087 ssh->deferred_size = ssh->deferred_len + len + 128;
2088 ssh->deferred_send_data = sresize(ssh->deferred_send_data,
2089 ssh->deferred_size,
2090 unsigned char);
2091 }
2092 memcpy(ssh->deferred_send_data + ssh->deferred_len, pkt->data, len);
2093 ssh->deferred_len += len;
2094 ssh->deferred_data_size += pkt->encrypted_len;
2095 ssh_free_packet(pkt);
2096 }
2097
2098 /*
2099 * Queue an SSH-2 packet.
2100 */
2101 static void ssh2_pkt_queue(Ssh ssh, struct Packet *pkt)
2102 {
2103 assert(ssh->queueing);
2104
2105 if (ssh->queuelen >= ssh->queuesize) {
2106 ssh->queuesize = ssh->queuelen + 32;
2107 ssh->queue = sresize(ssh->queue, ssh->queuesize, struct Packet *);
2108 }
2109
2110 ssh->queue[ssh->queuelen++] = pkt;
2111 }
2112
2113 /*
2114 * Either queue or send a packet, depending on whether queueing is
2115 * set.
2116 */
2117 static void ssh2_pkt_send(Ssh ssh, struct Packet *pkt)
2118 {
2119 if (ssh->queueing)
2120 ssh2_pkt_queue(ssh, pkt);
2121 else
2122 ssh2_pkt_send_noqueue(ssh, pkt);
2123 }
2124
2125 /*
2126 * Either queue or defer a packet, depending on whether queueing is
2127 * set.
2128 */
2129 static void ssh2_pkt_defer(Ssh ssh, struct Packet *pkt)
2130 {
2131 if (ssh->queueing)
2132 ssh2_pkt_queue(ssh, pkt);
2133 else
2134 ssh2_pkt_defer_noqueue(ssh, pkt, FALSE);
2135 }
2136
2137 /*
2138 * Send the whole deferred data block constructed by
2139 * ssh2_pkt_defer() or SSH-1's defer_packet().
2140 *
2141 * The expected use of the defer mechanism is that you call
2142 * ssh2_pkt_defer() a few times, then call ssh_pkt_defersend(). If
2143 * not currently queueing, this simply sets up deferred_send_data
2144 * and then sends it. If we _are_ currently queueing, the calls to
2145 * ssh2_pkt_defer() put the deferred packets on to the queue
2146 * instead, and therefore ssh_pkt_defersend() has no deferred data
2147 * to send. Hence, there's no need to make it conditional on
2148 * ssh->queueing.
2149 */
2150 static void ssh_pkt_defersend(Ssh ssh)
2151 {
2152 int backlog;
2153 backlog = s_write(ssh, ssh->deferred_send_data, ssh->deferred_len);
2154 ssh->deferred_len = ssh->deferred_size = 0;
2155 sfree(ssh->deferred_send_data);
2156 ssh->deferred_send_data = NULL;
2157 if (backlog > SSH_MAX_BACKLOG)
2158 ssh_throttle_all(ssh, 1, backlog);
2159
2160 ssh->outgoing_data_size += ssh->deferred_data_size;
2161 if (!ssh->kex_in_progress &&
2162 ssh->max_data_size != 0 &&
2163 ssh->outgoing_data_size > ssh->max_data_size)
2164 do_ssh2_transport(ssh, "too much data sent", -1, NULL);
2165 ssh->deferred_data_size = 0;
2166 }
2167
2168 /*
2169 * Send a packet whose length needs to be disguised (typically
2170 * passwords or keyboard-interactive responses).
2171 */
2172 static void ssh2_pkt_send_with_padding(Ssh ssh, struct Packet *pkt,
2173 int padsize)
2174 {
2175 #if 0
2176 if (0) {
2177 /*
2178 * The simplest way to do this is to adjust the
2179 * variable-length padding field in the outgoing packet.
2180 *
2181 * Currently compiled out, because some Cisco SSH servers
2182 * don't like excessively padded packets (bah, why's it
2183 * always Cisco?)
2184 */
2185 pkt->forcepad = padsize;
2186 ssh2_pkt_send(ssh, pkt);
2187 } else
2188 #endif
2189 {
2190 /*
2191 * If we can't do that, however, an alternative approach is
2192 * to use the pkt_defer mechanism to bundle the packet
2193 * tightly together with an SSH_MSG_IGNORE such that their
2194 * combined length is a constant. So first we construct the
2195 * final form of this packet and defer its sending.
2196 */
2197 ssh2_pkt_defer(ssh, pkt);
2198
2199 /*
2200 * Now construct an SSH_MSG_IGNORE which includes a string
2201 * that's an exact multiple of the cipher block size. (If
2202 * the cipher is NULL so that the block size is
2203 * unavailable, we don't do this trick at all, because we
2204 * gain nothing by it.)
2205 */
2206 if (ssh->cscipher &&
2207 !(ssh->remote_bugs & BUG_CHOKES_ON_SSH2_IGNORE)) {
2208 int stringlen, i;
2209
2210 stringlen = (256 - ssh->deferred_len);
2211 stringlen += ssh->cscipher->blksize - 1;
2212 stringlen -= (stringlen % ssh->cscipher->blksize);
2213 if (ssh->cscomp) {
2214 /*
2215 * Temporarily disable actual compression, so we
2216 * can guarantee to get this string exactly the
2217 * length we want it. The compression-disabling
2218 * routine should return an integer indicating how
2219 * many bytes we should adjust our string length
2220 * by.
2221 */
2222 stringlen -=
2223 ssh->cscomp->disable_compression(ssh->cs_comp_ctx);
2224 }
2225 pkt = ssh2_pkt_init(SSH2_MSG_IGNORE);
2226 ssh2_pkt_addstring_start(pkt);
2227 for (i = 0; i < stringlen; i++) {
2228 char c = (char) random_byte();
2229 ssh2_pkt_addstring_data(pkt, &c, 1);
2230 }
2231 ssh2_pkt_defer(ssh, pkt);
2232 }
2233 ssh_pkt_defersend(ssh);
2234 }
2235 }
2236
2237 /*
2238 * Send all queued SSH-2 packets. We send them by means of
2239 * ssh2_pkt_defer_noqueue(), in case they included a pair of
2240 * packets that needed to be lumped together.
2241 */
2242 static void ssh2_pkt_queuesend(Ssh ssh)
2243 {
2244 int i;
2245
2246 assert(!ssh->queueing);
2247
2248 for (i = 0; i < ssh->queuelen; i++)
2249 ssh2_pkt_defer_noqueue(ssh, ssh->queue[i], FALSE);
2250 ssh->queuelen = 0;
2251
2252 ssh_pkt_defersend(ssh);
2253 }
2254
2255 #if 0
2256 void bndebug(char *string, Bignum b)
2257 {
2258 unsigned char *p;
2259 int i, len;
2260 p = ssh2_mpint_fmt(b, &len);
2261 debug(("%s", string));
2262 for (i = 0; i < len; i++)
2263 debug((" %02x", p[i]));
2264 debug(("\n"));
2265 sfree(p);
2266 }
2267 #endif
2268
2269 static void hash_mpint(const struct ssh_hash *h, void *s, Bignum b)
2270 {
2271 unsigned char *p;
2272 int len;
2273 p = ssh2_mpint_fmt(b, &len);
2274 hash_string(h, s, p, len);
2275 sfree(p);
2276 }
2277
2278 /*
2279 * Packet decode functions for both SSH-1 and SSH-2.
2280 */
2281 static unsigned long ssh_pkt_getuint32(struct Packet *pkt)
2282 {
2283 unsigned long value;
2284 if (pkt->length - pkt->savedpos < 4)
2285 return 0; /* arrgh, no way to decline (FIXME?) */
2286 value = GET_32BIT(pkt->body + pkt->savedpos);
2287 pkt->savedpos += 4;
2288 return value;
2289 }
2290 static int ssh2_pkt_getbool(struct Packet *pkt)
2291 {
2292 unsigned long value;
2293 if (pkt->length - pkt->savedpos < 1)
2294 return 0; /* arrgh, no way to decline (FIXME?) */
2295 value = pkt->body[pkt->savedpos] != 0;
2296 pkt->savedpos++;
2297 return value;
2298 }
2299 static void ssh_pkt_getstring(struct Packet *pkt, char **p, int *length)
2300 {
2301 int len;
2302 *p = NULL;
2303 *length = 0;
2304 if (pkt->length - pkt->savedpos < 4)
2305 return;
2306 len = GET_32BIT(pkt->body + pkt->savedpos);
2307 if (len < 0)
2308 return;
2309 *length = len;
2310 pkt->savedpos += 4;
2311 if (pkt->length - pkt->savedpos < *length)
2312 return;
2313 *p = (char *)(pkt->body + pkt->savedpos);
2314 pkt->savedpos += *length;
2315 }
2316 static void *ssh_pkt_getdata(struct Packet *pkt, int length)
2317 {
2318 if (pkt->length - pkt->savedpos < length)
2319 return NULL;
2320 pkt->savedpos += length;
2321 return pkt->body + (pkt->savedpos - length);
2322 }
2323 static int ssh1_pkt_getrsakey(struct Packet *pkt, struct RSAKey *key,
2324 unsigned char **keystr)
2325 {
2326 int j;
2327
2328 j = makekey(pkt->body + pkt->savedpos,
2329 pkt->length - pkt->savedpos,
2330 key, keystr, 0);
2331
2332 if (j < 0)
2333 return FALSE;
2334
2335 pkt->savedpos += j;
2336 assert(pkt->savedpos < pkt->length);
2337
2338 return TRUE;
2339 }
2340 static Bignum ssh1_pkt_getmp(struct Packet *pkt)
2341 {
2342 int j;
2343 Bignum b;
2344
2345 j = ssh1_read_bignum(pkt->body + pkt->savedpos,
2346 pkt->length - pkt->savedpos, &b);
2347
2348 if (j < 0)
2349 return NULL;
2350
2351 pkt->savedpos += j;
2352 return b;
2353 }
2354 static Bignum ssh2_pkt_getmp(struct Packet *pkt)
2355 {
2356 char *p;
2357 int length;
2358 Bignum b;
2359
2360 ssh_pkt_getstring(pkt, &p, &length);
2361 if (!p)
2362 return NULL;
2363 if (p[0] & 0x80)
2364 return NULL;
2365 b = bignum_from_bytes((unsigned char *)p, length);
2366 return b;
2367 }
2368
2369 /*
2370 * Helper function to add an SSH-2 signature blob to a packet.
2371 * Expects to be shown the public key blob as well as the signature
2372 * blob. Normally works just like ssh2_pkt_addstring, but will
2373 * fiddle with the signature packet if necessary for
2374 * BUG_SSH2_RSA_PADDING.
2375 */
2376 static void ssh2_add_sigblob(Ssh ssh, struct Packet *pkt,
2377 void *pkblob_v, int pkblob_len,
2378 void *sigblob_v, int sigblob_len)
2379 {
2380 unsigned char *pkblob = (unsigned char *)pkblob_v;
2381 unsigned char *sigblob = (unsigned char *)sigblob_v;
2382
2383 /* dmemdump(pkblob, pkblob_len); */
2384 /* dmemdump(sigblob, sigblob_len); */
2385
2386 /*
2387 * See if this is in fact an ssh-rsa signature and a buggy
2388 * server; otherwise we can just do this the easy way.
2389 */
2390 if ((ssh->remote_bugs & BUG_SSH2_RSA_PADDING) &&
2391 (GET_32BIT(pkblob) == 7 && !memcmp(pkblob+4, "ssh-rsa", 7))) {
2392 int pos, len, siglen;
2393
2394 /*
2395 * Find the byte length of the modulus.
2396 */
2397
2398 pos = 4+7; /* skip over "ssh-rsa" */
2399 pos += 4 + GET_32BIT(pkblob+pos); /* skip over exponent */
2400 len = GET_32BIT(pkblob+pos); /* find length of modulus */
2401 pos += 4; /* find modulus itself */
2402 while (len > 0 && pkblob[pos] == 0)
2403 len--, pos++;
2404 /* debug(("modulus length is %d\n", len)); */
2405
2406 /*
2407 * Now find the signature integer.
2408 */
2409 pos = 4+7; /* skip over "ssh-rsa" */
2410 siglen = GET_32BIT(sigblob+pos);
2411 /* debug(("signature length is %d\n", siglen)); */
2412
2413 if (len != siglen) {
2414 unsigned char newlen[4];
2415 ssh2_pkt_addstring_start(pkt);
2416 ssh2_pkt_addstring_data(pkt, (char *)sigblob, pos);
2417 /* dmemdump(sigblob, pos); */
2418 pos += 4; /* point to start of actual sig */
2419 PUT_32BIT(newlen, len);
2420 ssh2_pkt_addstring_data(pkt, (char *)newlen, 4);
2421 /* dmemdump(newlen, 4); */
2422 newlen[0] = 0;
2423 while (len-- > siglen) {
2424 ssh2_pkt_addstring_data(pkt, (char *)newlen, 1);
2425 /* dmemdump(newlen, 1); */
2426 }
2427 ssh2_pkt_addstring_data(pkt, (char *)(sigblob+pos), siglen);
2428 /* dmemdump(sigblob+pos, siglen); */
2429 return;
2430 }
2431
2432 /* Otherwise fall through and do it the easy way. */
2433 }
2434
2435 ssh2_pkt_addstring_start(pkt);
2436 ssh2_pkt_addstring_data(pkt, (char *)sigblob, sigblob_len);
2437 }
2438
2439 /*
2440 * Examine the remote side's version string and compare it against
2441 * a list of known buggy implementations.
2442 */
2443 static void ssh_detect_bugs(Ssh ssh, char *vstring)
2444 {
2445 char *imp; /* pointer to implementation part */
2446 imp = vstring;
2447 imp += strcspn(imp, "-");
2448 if (*imp) imp++;
2449 imp += strcspn(imp, "-");
2450 if (*imp) imp++;
2451
2452 ssh->remote_bugs = 0;
2453
2454 /*
2455 * General notes on server version strings:
2456 * - Not all servers reporting "Cisco-1.25" have all the bugs listed
2457 * here -- in particular, we've heard of one that's perfectly happy
2458 * with SSH1_MSG_IGNOREs -- but this string never seems to change,
2459 * so we can't distinguish them.
2460 */
2461 if (conf_get_int(ssh->conf, CONF_sshbug_ignore1) == FORCE_ON ||
2462 (conf_get_int(ssh->conf, CONF_sshbug_ignore1) == AUTO &&
2463 (!strcmp(imp, "1.2.18") || !strcmp(imp, "1.2.19") ||
2464 !strcmp(imp, "1.2.20") || !strcmp(imp, "1.2.21") ||
2465 !strcmp(imp, "1.2.22") || !strcmp(imp, "Cisco-1.25") ||
2466 !strcmp(imp, "OSU_1.4alpha3") || !strcmp(imp, "OSU_1.5alpha4")))) {
2467 /*
2468 * These versions don't support SSH1_MSG_IGNORE, so we have
2469 * to use a different defence against password length
2470 * sniffing.
2471 */
2472 ssh->remote_bugs |= BUG_CHOKES_ON_SSH1_IGNORE;
2473 logevent("We believe remote version has SSH-1 ignore bug");
2474 }
2475
2476 if (conf_get_int(ssh->conf, CONF_sshbug_plainpw1) == FORCE_ON ||
2477 (conf_get_int(ssh->conf, CONF_sshbug_plainpw1) == AUTO &&
2478 (!strcmp(imp, "Cisco-1.25") || !strcmp(imp, "OSU_1.4alpha3")))) {
2479 /*
2480 * These versions need a plain password sent; they can't
2481 * handle having a null and a random length of data after
2482 * the password.
2483 */
2484 ssh->remote_bugs |= BUG_NEEDS_SSH1_PLAIN_PASSWORD;
2485 logevent("We believe remote version needs a plain SSH-1 password");
2486 }
2487
2488 if (conf_get_int(ssh->conf, CONF_sshbug_rsa1) == FORCE_ON ||
2489 (conf_get_int(ssh->conf, CONF_sshbug_rsa1) == AUTO &&
2490 (!strcmp(imp, "Cisco-1.25")))) {
2491 /*
2492 * These versions apparently have no clue whatever about
2493 * RSA authentication and will panic and die if they see
2494 * an AUTH_RSA message.
2495 */
2496 ssh->remote_bugs |= BUG_CHOKES_ON_RSA;
2497 logevent("We believe remote version can't handle SSH-1 RSA authentication");
2498 }
2499
2500 if (conf_get_int(ssh->conf, CONF_sshbug_hmac2) == FORCE_ON ||
2501 (conf_get_int(ssh->conf, CONF_sshbug_hmac2) == AUTO &&
2502 !wc_match("* VShell", imp) &&
2503 (wc_match("2.1.0*", imp) || wc_match("2.0.*", imp) ||
2504 wc_match("2.2.0*", imp) || wc_match("2.3.0*", imp) ||
2505 wc_match("2.1 *", imp)))) {
2506 /*
2507 * These versions have the HMAC bug.
2508 */
2509 ssh->remote_bugs |= BUG_SSH2_HMAC;
2510 logevent("We believe remote version has SSH-2 HMAC bug");
2511 }
2512
2513 if (conf_get_int(ssh->conf, CONF_sshbug_derivekey2) == FORCE_ON ||
2514 (conf_get_int(ssh->conf, CONF_sshbug_derivekey2) == AUTO &&
2515 !wc_match("* VShell", imp) &&
2516 (wc_match("2.0.0*", imp) || wc_match("2.0.10*", imp) ))) {
2517 /*
2518 * These versions have the key-derivation bug (failing to
2519 * include the literal shared secret in the hashes that
2520 * generate the keys).
2521 */
2522 ssh->remote_bugs |= BUG_SSH2_DERIVEKEY;
2523 logevent("We believe remote version has SSH-2 key-derivation bug");
2524 }
2525
2526 if (conf_get_int(ssh->conf, CONF_sshbug_rsapad2) == FORCE_ON ||
2527 (conf_get_int(ssh->conf, CONF_sshbug_rsapad2) == AUTO &&
2528 (wc_match("OpenSSH_2.[5-9]*", imp) ||
2529 wc_match("OpenSSH_3.[0-2]*", imp)))) {
2530 /*
2531 * These versions have the SSH-2 RSA padding bug.
2532 */
2533 ssh->remote_bugs |= BUG_SSH2_RSA_PADDING;
2534 logevent("We believe remote version has SSH-2 RSA padding bug");
2535 }
2536
2537 if (conf_get_int(ssh->conf, CONF_sshbug_pksessid2) == FORCE_ON ||
2538 (conf_get_int(ssh->conf, CONF_sshbug_pksessid2) == AUTO &&
2539 wc_match("OpenSSH_2.[0-2]*", imp))) {
2540 /*
2541 * These versions have the SSH-2 session-ID bug in
2542 * public-key authentication.
2543 */
2544 ssh->remote_bugs |= BUG_SSH2_PK_SESSIONID;
2545 logevent("We believe remote version has SSH-2 public-key-session-ID bug");
2546 }
2547
2548 if (conf_get_int(ssh->conf, CONF_sshbug_rekey2) == FORCE_ON ||
2549 (conf_get_int(ssh->conf, CONF_sshbug_rekey2) == AUTO &&
2550 (wc_match("DigiSSH_2.0", imp) ||
2551 wc_match("OpenSSH_2.[0-4]*", imp) ||
2552 wc_match("OpenSSH_2.5.[0-3]*", imp) ||
2553 wc_match("Sun_SSH_1.0", imp) ||
2554 wc_match("Sun_SSH_1.0.1", imp) ||
2555 /* All versions <= 1.2.6 (they changed their format in 1.2.7) */
2556 wc_match("WeOnlyDo-*", imp)))) {
2557 /*
2558 * These versions have the SSH-2 rekey bug.
2559 */
2560 ssh->remote_bugs |= BUG_SSH2_REKEY;
2561 logevent("We believe remote version has SSH-2 rekey bug");
2562 }
2563
2564 if (conf_get_int(ssh->conf, CONF_sshbug_maxpkt2) == FORCE_ON ||
2565 (conf_get_int(ssh->conf, CONF_sshbug_maxpkt2) == AUTO &&
2566 (wc_match("1.36_sshlib GlobalSCAPE", imp) ||
2567 wc_match("1.36 sshlib: GlobalScape", imp)))) {
2568 /*
2569 * This version ignores our makpkt and needs to be throttled.
2570 */
2571 ssh->remote_bugs |= BUG_SSH2_MAXPKT;
2572 logevent("We believe remote version ignores SSH-2 maximum packet size");
2573 }
2574
2575 if (conf_get_int(ssh->conf, CONF_sshbug_ignore2) == FORCE_ON) {
2576 /*
2577 * Servers that don't support SSH2_MSG_IGNORE. Currently,
2578 * none detected automatically.
2579 */
2580 ssh->remote_bugs |= BUG_CHOKES_ON_SSH2_IGNORE;
2581 logevent("We believe remote version has SSH-2 ignore bug");
2582 }
2583
2584 if (conf_get_int(ssh->conf, CONF_sshbug_winadj) == FORCE_ON) {
2585 /*
2586 * Servers that don't support our winadj request for one
2587 * reason or another. Currently, none detected automatically.
2588 */
2589 ssh->remote_bugs |= BUG_CHOKES_ON_WINADJ;
2590 logevent("We believe remote version has winadj bug");
2591 }
2592 }
2593
2594 /*
2595 * The `software version' part of an SSH version string is required
2596 * to contain no spaces or minus signs.
2597 */
2598 static void ssh_fix_verstring(char *str)
2599 {
2600 /* Eat "SSH-<protoversion>-". */
2601 assert(*str == 'S'); str++;
2602 assert(*str == 'S'); str++;
2603 assert(*str == 'H'); str++;
2604 assert(*str == '-'); str++;
2605 while (*str && *str != '-') str++;
2606 assert(*str == '-'); str++;
2607
2608 /* Convert minus signs and spaces in the remaining string into
2609 * underscores. */
2610 while (*str) {
2611 if (*str == '-' || *str == ' ')
2612 *str = '_';
2613 str++;
2614 }
2615 }
2616
2617 /*
2618 * Send an appropriate SSH version string.
2619 */
2620 static void ssh_send_verstring(Ssh ssh, char *svers)
2621 {
2622 char *verstring;
2623
2624 if (ssh->version == 2) {
2625 /*
2626 * Construct a v2 version string.
2627 */
2628 verstring = dupprintf("SSH-2.0-%s\015\012", sshver);
2629 } else {
2630 /*
2631 * Construct a v1 version string.
2632 */
2633 verstring = dupprintf("SSH-%s-%s\012",
2634 (ssh_versioncmp(svers, "1.5") <= 0 ?
2635 svers : "1.5"),
2636 sshver);
2637 }
2638
2639 ssh_fix_verstring(verstring);
2640
2641 if (ssh->version == 2) {
2642 size_t len;
2643 /*
2644 * Record our version string.
2645 */
2646 len = strcspn(verstring, "\015\012");
2647 ssh->v_c = snewn(len + 1, char);
2648 memcpy(ssh->v_c, verstring, len);
2649 ssh->v_c[len] = 0;
2650 }
2651
2652 logeventf(ssh, "We claim version: %.*s",
2653 strcspn(verstring, "\015\012"), verstring);
2654 s_write(ssh, verstring, strlen(verstring));
2655 sfree(verstring);
2656 }
2657
2658 static int do_ssh_init(Ssh ssh, unsigned char c)
2659 {
2660 struct do_ssh_init_state {
2661 int crLine;
2662 int vslen;
2663 char version[10];
2664 char *vstring;
2665 int vstrsize;
2666 int i;
2667 int proto1, proto2;
2668 };
2669 crState(do_ssh_init_state);
2670
2671 crBeginState;
2672
2673 /* Search for a line beginning with the string "SSH-" in the input. */
2674 for (;;) {
2675 if (c != 'S') goto no;
2676 crReturn(1);
2677 if (c != 'S') goto no;
2678 crReturn(1);
2679 if (c != 'H') goto no;
2680 crReturn(1);
2681 if (c != '-') goto no;
2682 break;
2683 no:
2684 while (c != '\012')
2685 crReturn(1);
2686 crReturn(1);
2687 }
2688
2689 s->vstrsize = 16;
2690 s->vstring = snewn(s->vstrsize, char);
2691 strcpy(s->vstring, "SSH-");
2692 s->vslen = 4;
2693 s->i = 0;
2694 while (1) {
2695 crReturn(1); /* get another char */
2696 if (s->vslen >= s->vstrsize - 1) {
2697 s->vstrsize += 16;
2698 s->vstring = sresize(s->vstring, s->vstrsize, char);
2699 }
2700 s->vstring[s->vslen++] = c;
2701 if (s->i >= 0) {
2702 if (c == '-') {
2703 s->version[s->i] = '\0';
2704 s->i = -1;
2705 } else if (s->i < sizeof(s->version) - 1)
2706 s->version[s->i++] = c;
2707 } else if (c == '\012')
2708 break;
2709 }
2710
2711 ssh->agentfwd_enabled = FALSE;
2712 ssh->rdpkt2_state.incoming_sequence = 0;
2713
2714 s->vstring[s->vslen] = 0;
2715 s->vstring[strcspn(s->vstring, "\015\012")] = '\0';/* remove EOL chars */
2716 logeventf(ssh, "Server version: %s", s->vstring);
2717 ssh_detect_bugs(ssh, s->vstring);
2718
2719 /*
2720 * Decide which SSH protocol version to support.
2721 */
2722
2723 /* Anything strictly below "2.0" means protocol 1 is supported. */
2724 s->proto1 = ssh_versioncmp(s->version, "2.0") < 0;
2725 /* Anything greater or equal to "1.99" means protocol 2 is supported. */
2726 s->proto2 = ssh_versioncmp(s->version, "1.99") >= 0;
2727
2728 if (conf_get_int(ssh->conf, CONF_sshprot) == 0 && !s->proto1) {
2729 bombout(("SSH protocol version 1 required by user but not provided by server"));
2730 crStop(0);
2731 }
2732 if (conf_get_int(ssh->conf, CONF_sshprot) == 3 && !s->proto2) {
2733 bombout(("SSH protocol version 2 required by user but not provided by server"));
2734 crStop(0);
2735 }
2736
2737 if (s->proto2 && (conf_get_int(ssh->conf, CONF_sshprot) >= 2 || !s->proto1))
2738 ssh->version = 2;
2739 else
2740 ssh->version = 1;
2741
2742 logeventf(ssh, "Using SSH protocol version %d", ssh->version);
2743
2744 /* Send the version string, if we haven't already */
2745 if (conf_get_int(ssh->conf, CONF_sshprot) != 3)
2746 ssh_send_verstring(ssh, s->version);
2747
2748 if (ssh->version == 2) {
2749 size_t len;
2750 /*
2751 * Record their version string.
2752 */
2753 len = strcspn(s->vstring, "\015\012");
2754 ssh->v_s = snewn(len + 1, char);
2755 memcpy(ssh->v_s, s->vstring, len);
2756 ssh->v_s[len] = 0;
2757
2758 /*
2759 * Initialise SSH-2 protocol.
2760 */
2761 ssh->protocol = ssh2_protocol;
2762 ssh2_protocol_setup(ssh);
2763 ssh->s_rdpkt = ssh2_rdpkt;
2764 } else {
2765 /*
2766 * Initialise SSH-1 protocol.
2767 */
2768 ssh->protocol = ssh1_protocol;
2769 ssh1_protocol_setup(ssh);
2770 ssh->s_rdpkt = ssh1_rdpkt;
2771 }
2772 if (ssh->version == 2)
2773 do_ssh2_transport(ssh, NULL, -1, NULL);
2774
2775 update_specials_menu(ssh->frontend);
2776 ssh->state = SSH_STATE_BEFORE_SIZE;
2777 ssh->pinger = pinger_new(ssh->conf, &ssh_backend, ssh);
2778
2779 sfree(s->vstring);
2780
2781 crFinish(0);
2782 }
2783
2784 static void ssh_process_incoming_data(Ssh ssh,
2785 unsigned char **data, int *datalen)
2786 {
2787 struct Packet *pktin;
2788
2789 pktin = ssh->s_rdpkt(ssh, data, datalen);
2790 if (pktin) {
2791 ssh->protocol(ssh, NULL, 0, pktin);
2792 ssh_free_packet(pktin);
2793 }
2794 }
2795
2796 static void ssh_queue_incoming_data(Ssh ssh,
2797 unsigned char **data, int *datalen)
2798 {
2799 bufchain_add(&ssh->queued_incoming_data, *data, *datalen);
2800 *data += *datalen;
2801 *datalen = 0;
2802 }
2803
2804 static void ssh_process_queued_incoming_data(Ssh ssh)
2805 {
2806 void *vdata;
2807 unsigned char *data;
2808 int len, origlen;
2809
2810 while (!ssh->frozen && bufchain_size(&ssh->queued_incoming_data)) {
2811 bufchain_prefix(&ssh->queued_incoming_data, &vdata, &len);
2812 data = vdata;
2813 origlen = len;
2814
2815 while (!ssh->frozen && len > 0)
2816 ssh_process_incoming_data(ssh, &data, &len);
2817
2818 if (origlen > len)
2819 bufchain_consume(&ssh->queued_incoming_data, origlen - len);
2820 }
2821 }
2822
2823 static void ssh_set_frozen(Ssh ssh, int frozen)
2824 {
2825 if (ssh->s)
2826 sk_set_frozen(ssh->s, frozen);
2827 ssh->frozen = frozen;
2828 }
2829
2830 static void ssh_gotdata(Ssh ssh, unsigned char *data, int datalen)
2831 {
2832 /* Log raw data, if we're in that mode. */
2833 if (ssh->logctx)
2834 log_packet(ssh->logctx, PKT_INCOMING, -1, NULL, data, datalen,
2835 0, NULL, NULL);
2836
2837 crBegin(ssh->ssh_gotdata_crstate);
2838
2839 /*
2840 * To begin with, feed the characters one by one to the
2841 * protocol initialisation / selection function do_ssh_init().
2842 * When that returns 0, we're done with the initial greeting
2843 * exchange and can move on to packet discipline.
2844 */
2845 while (1) {
2846 int ret; /* need not be kept across crReturn */
2847 if (datalen == 0)
2848 crReturnV; /* more data please */
2849 ret = do_ssh_init(ssh, *data);
2850 data++;
2851 datalen--;
2852 if (ret == 0)
2853 break;
2854 }
2855
2856 /*
2857 * We emerge from that loop when the initial negotiation is
2858 * over and we have selected an s_rdpkt function. Now pass
2859 * everything to s_rdpkt, and then pass the resulting packets
2860 * to the proper protocol handler.
2861 */
2862
2863 while (1) {
2864 while (bufchain_size(&ssh->queued_incoming_data) > 0 || datalen > 0) {
2865 if (ssh->frozen) {
2866 ssh_queue_incoming_data(ssh, &data, &datalen);
2867 /* This uses up all data and cannot cause anything interesting
2868 * to happen; indeed, for anything to happen at all, we must
2869 * return, so break out. */
2870 break;
2871 } else if (bufchain_size(&ssh->queued_incoming_data) > 0) {
2872 /* This uses up some or all data, and may freeze the
2873 * session. */
2874 ssh_process_queued_incoming_data(ssh);
2875 } else {
2876 /* This uses up some or all data, and may freeze the
2877 * session. */
2878 ssh_process_incoming_data(ssh, &data, &datalen);
2879 }
2880 /* FIXME this is probably EBW. */
2881 if (ssh->state == SSH_STATE_CLOSED)
2882 return;
2883 }
2884 /* We're out of data. Go and get some more. */
2885 crReturnV;
2886 }
2887 crFinishV;
2888 }
2889
2890 static int ssh_do_close(Ssh ssh, int notify_exit)
2891 {
2892 int ret = 0;
2893 struct ssh_channel *c;
2894
2895 ssh->state = SSH_STATE_CLOSED;
2896 expire_timer_context(ssh);
2897 if (ssh->s) {
2898 sk_close(ssh->s);
2899 ssh->s = NULL;
2900 if (notify_exit)
2901 notify_remote_exit(ssh->frontend);
2902 else
2903 ret = 1;
2904 }
2905 /*
2906 * Now we must shut down any port- and X-forwarded channels going
2907 * through this connection.
2908 */
2909 if (ssh->channels) {
2910 while (NULL != (c = index234(ssh->channels, 0))) {
2911 switch (c->type) {
2912 case CHAN_X11:
2913 x11_close(c->u.x11.s);
2914 break;
2915 case CHAN_SOCKDATA:
2916 case CHAN_SOCKDATA_DORMANT:
2917 pfd_close(c->u.pfd.s);
2918 break;
2919 }
2920 del234(ssh->channels, c); /* moving next one to index 0 */
2921 if (ssh->version == 2)
2922 bufchain_clear(&c->v.v2.outbuffer);
2923 sfree(c);
2924 }
2925 }
2926 /*
2927 * Go through port-forwardings, and close any associated
2928 * listening sockets.
2929 */
2930 if (ssh->portfwds) {
2931 struct ssh_portfwd *pf;
2932 while (NULL != (pf = index234(ssh->portfwds, 0))) {
2933 /* Dispose of any listening socket. */
2934 if (pf->local)
2935 pfd_terminate(pf->local);
2936 del234(ssh->portfwds, pf); /* moving next one to index 0 */
2937 free_portfwd(pf);
2938 }
2939 freetree234(ssh->portfwds);
2940 ssh->portfwds = NULL;
2941 }
2942
2943 return ret;
2944 }
2945
2946 static void ssh_log(Plug plug, int type, SockAddr addr, int port,
2947 const char *error_msg, int error_code)
2948 {
2949 Ssh ssh = (Ssh) plug;
2950 char addrbuf[256], *msg;
2951
2952 sk_getaddr(addr, addrbuf, lenof(addrbuf));
2953
2954 if (type == 0)
2955 msg = dupprintf("Connecting to %s port %d", addrbuf, port);
2956 else
2957 msg = dupprintf("Failed to connect to %s: %s", addrbuf, error_msg);
2958
2959 logevent(msg);
2960 sfree(msg);
2961 }
2962
2963 static int ssh_closing(Plug plug, const char *error_msg, int error_code,
2964 int calling_back)
2965 {
2966 Ssh ssh = (Ssh) plug;
2967 int need_notify = ssh_do_close(ssh, FALSE);
2968
2969 if (!error_msg) {
2970 if (!ssh->close_expected)
2971 error_msg = "Server unexpectedly closed network connection";
2972 else
2973 error_msg = "Server closed network connection";
2974 }
2975
2976 if (ssh->close_expected && ssh->clean_exit && ssh->exitcode < 0)
2977 ssh->exitcode = 0;
2978
2979 if (need_notify)
2980 notify_remote_exit(ssh->frontend);
2981
2982 if (error_msg)
2983 logevent(error_msg);
2984 if (!ssh->close_expected || !ssh->clean_exit)
2985 connection_fatal(ssh->frontend, "%s", error_msg);
2986 return 0;
2987 }
2988
2989 static int ssh_receive(Plug plug, int urgent, char *data, int len)
2990 {
2991 Ssh ssh = (Ssh) plug;
2992 ssh_gotdata(ssh, (unsigned char *)data, len);
2993 if (ssh->state == SSH_STATE_CLOSED) {
2994 ssh_do_close(ssh, TRUE);
2995 return 0;
2996 }
2997 return 1;
2998 }
2999
3000 static void ssh_sent(Plug plug, int bufsize)
3001 {
3002 Ssh ssh = (Ssh) plug;
3003 /*
3004 * If the send backlog on the SSH socket itself clears, we
3005 * should unthrottle the whole world if it was throttled.
3006 */
3007 if (bufsize < SSH_MAX_BACKLOG)
3008 ssh_throttle_all(ssh, 0, bufsize);
3009 }
3010
3011 /*
3012 * Connect to specified host and port.
3013 * Returns an error message, or NULL on success.
3014 * Also places the canonical host name into `realhost'. It must be
3015 * freed by the caller.
3016 */
3017 static const char *connect_to_host(Ssh ssh, char *host, int port,
3018 char **realhost, int nodelay, int keepalive)
3019 {
3020 static const struct plug_function_table fn_table = {
3021 ssh_log,
3022 ssh_closing,
3023 ssh_receive,
3024 ssh_sent,
3025 NULL
3026 };
3027
3028 SockAddr addr;
3029 const char *err;
3030 char *loghost;
3031 int addressfamily, sshprot;
3032
3033 loghost = conf_get_str(ssh->conf, CONF_loghost);
3034 if (*loghost) {
3035 char *colon;
3036
3037 ssh->savedhost = dupstr(loghost);
3038 ssh->savedport = 22; /* default ssh port */
3039
3040 /*
3041 * A colon suffix on savedhost also lets us affect
3042 * savedport.
3043 *
3044 * (FIXME: do something about IPv6 address literals here.)
3045 */
3046 colon = strrchr(ssh->savedhost, ':');
3047 if (colon) {
3048 *colon++ = '\0';
3049 if (*colon)
3050 ssh->savedport = atoi(colon);
3051 }
3052 } else {
3053 ssh->savedhost = dupstr(host);
3054 if (port < 0)
3055 port = 22; /* default ssh port */
3056 ssh->savedport = port;
3057 }
3058
3059 /*
3060 * Try to find host.
3061 */
3062 addressfamily = conf_get_int(ssh->conf, CONF_addressfamily);
3063 logeventf(ssh, "Looking up host \"%s\"%s", host,
3064 (addressfamily == ADDRTYPE_IPV4 ? " (IPv4)" :
3065 (addressfamily == ADDRTYPE_IPV6 ? " (IPv6)" : "")));
3066 addr = name_lookup(host, port, realhost, ssh->conf, addressfamily);
3067 if ((err = sk_addr_error(addr)) != NULL) {
3068 sk_addr_free(addr);
3069 return err;
3070 }
3071 ssh->fullhostname = dupstr(*realhost); /* save in case of GSSAPI */
3072
3073 /*
3074 * Open socket.
3075 */
3076 ssh->fn = &fn_table;
3077 ssh->s = new_connection(addr, *realhost, port,
3078 0, 1, nodelay, keepalive, (Plug) ssh, ssh->conf);
3079 if ((err = sk_socket_error(ssh->s)) != NULL) {
3080 ssh->s = NULL;
3081 notify_remote_exit(ssh->frontend);
3082 return err;
3083 }
3084
3085 /*
3086 * If the SSH version number's fixed, set it now, and if it's SSH-2,
3087 * send the version string too.
3088 */
3089 sshprot = conf_get_int(ssh->conf, CONF_sshprot);
3090 if (sshprot == 0)
3091 ssh->version = 1;
3092 if (sshprot == 3) {
3093 ssh->version = 2;
3094 ssh_send_verstring(ssh, NULL);
3095 }
3096
3097 /*
3098 * loghost, if configured, overrides realhost.
3099 */
3100 if (*loghost) {
3101 sfree(*realhost);
3102 *realhost = dupstr(loghost);
3103 }
3104
3105 return NULL;
3106 }
3107
3108 /*
3109 * Throttle or unthrottle the SSH connection.
3110 */
3111 static void ssh_throttle_conn(Ssh ssh, int adjust)
3112 {
3113 int old_count = ssh->conn_throttle_count;
3114 ssh->conn_throttle_count += adjust;
3115 assert(ssh->conn_throttle_count >= 0);
3116 if (ssh->conn_throttle_count && !old_count) {
3117 ssh_set_frozen(ssh, 1);
3118 } else if (!ssh->conn_throttle_count && old_count) {
3119 ssh_set_frozen(ssh, 0);
3120 }
3121 }
3122
3123 /*
3124 * Throttle or unthrottle _all_ local data streams (for when sends
3125 * on the SSH connection itself back up).
3126 */
3127 static void ssh_throttle_all(Ssh ssh, int enable, int bufsize)
3128 {
3129 int i;
3130 struct ssh_channel *c;
3131
3132 if (enable == ssh->throttled_all)
3133 return;
3134 ssh->throttled_all = enable;
3135 ssh->overall_bufsize = bufsize;
3136 if (!ssh->channels)
3137 return;
3138 for (i = 0; NULL != (c = index234(ssh->channels, i)); i++) {
3139 switch (c->type) {
3140 case CHAN_MAINSESSION:
3141 /*
3142 * This is treated separately, outside the switch.
3143 */
3144 break;
3145 case CHAN_X11:
3146 x11_override_throttle(c->u.x11.s, enable);
3147 break;
3148 case CHAN_AGENT:
3149 /* Agent channels require no buffer management. */
3150 break;
3151 case CHAN_SOCKDATA:
3152 pfd_override_throttle(c->u.pfd.s, enable);
3153 break;
3154 }
3155 }
3156 }
3157
3158 static void ssh_agent_callback(void *sshv, void *reply, int replylen)
3159 {
3160 Ssh ssh = (Ssh) sshv;
3161
3162 ssh->agent_response = reply;
3163 ssh->agent_response_len = replylen;
3164
3165 if (ssh->version == 1)
3166 do_ssh1_login(ssh, NULL, -1, NULL);
3167 else
3168 do_ssh2_authconn(ssh, NULL, -1, NULL);
3169 }
3170
3171 static void ssh_dialog_callback(void *sshv, int ret)
3172 {
3173 Ssh ssh = (Ssh) sshv;
3174
3175 ssh->user_response = ret;
3176
3177 if (ssh->version == 1)
3178 do_ssh1_login(ssh, NULL, -1, NULL);
3179 else
3180 do_ssh2_transport(ssh, NULL, -1, NULL);
3181
3182 /*
3183 * This may have unfrozen the SSH connection, so do a
3184 * queued-data run.
3185 */
3186 ssh_process_queued_incoming_data(ssh);
3187 }
3188
3189 static void ssh_agentf_callback(void *cv, void *reply, int replylen)
3190 {
3191 struct ssh_channel *c = (struct ssh_channel *)cv;
3192 Ssh ssh = c->ssh;
3193 void *sentreply = reply;
3194
3195 if (!sentreply) {
3196 /* Fake SSH_AGENT_FAILURE. */
3197 sentreply = "\0\0\0\1\5";
3198 replylen = 5;
3199 }
3200 if (ssh->version == 2) {
3201 ssh2_add_channel_data(c, sentreply, replylen);
3202 ssh2_try_send(c);
3203 } else {
3204 send_packet(ssh, SSH1_MSG_CHANNEL_DATA,
3205 PKT_INT, c->remoteid,
3206 PKT_INT, replylen,
3207 PKTT_DATA,
3208 PKT_DATA, sentreply, replylen,
3209 PKTT_OTHER,
3210 PKT_END);
3211 }
3212 if (reply)
3213 sfree(reply);
3214 }
3215
3216 /*
3217 * Client-initiated disconnection. Send a DISCONNECT if `wire_reason'
3218 * non-NULL, otherwise just close the connection. `client_reason' == NULL
3219 * => log `wire_reason'.
3220 */
3221 static void ssh_disconnect(Ssh ssh, char *client_reason, char *wire_reason,
3222 int code, int clean_exit)
3223 {
3224 char *error;
3225 if (!client_reason)
3226 client_reason = wire_reason;
3227 if (client_reason)
3228 error = dupprintf("Disconnected: %s", client_reason);
3229 else
3230 error = dupstr("Disconnected");
3231 if (wire_reason) {
3232 if (ssh->version == 1) {
3233 send_packet(ssh, SSH1_MSG_DISCONNECT, PKT_STR, wire_reason,
3234 PKT_END);
3235 } else if (ssh->version == 2) {
3236 struct Packet *pktout = ssh2_pkt_init(SSH2_MSG_DISCONNECT);
3237 ssh2_pkt_adduint32(pktout, code);
3238 ssh2_pkt_addstring(pktout, wire_reason);
3239 ssh2_pkt_addstring(pktout, "en"); /* language tag */
3240 ssh2_pkt_send_noqueue(ssh, pktout);
3241 }
3242 }
3243 ssh->close_expected = TRUE;
3244 ssh->clean_exit = clean_exit;
3245 ssh_closing((Plug)ssh, error, 0, 0);
3246 sfree(error);
3247 }
3248
3249 /*
3250 * Handle the key exchange and user authentication phases.
3251 */
3252 static int do_ssh1_login(Ssh ssh, unsigned char *in, int inlen,
3253 struct Packet *pktin)
3254 {
3255 int i, j, ret;
3256 unsigned char cookie[8], *ptr;
3257 struct RSAKey servkey, hostkey;
3258 struct MD5Context md5c;
3259 struct do_ssh1_login_state {
3260 int crLine;
3261 int len;
3262 unsigned char *rsabuf, *keystr1, *keystr2;
3263 unsigned long supported_ciphers_mask, supported_auths_mask;
3264 int tried_publickey, tried_agent;
3265 int tis_auth_refused, ccard_auth_refused;
3266 unsigned char session_id[16];
3267 int cipher_type;
3268 void *publickey_blob;
3269 int publickey_bloblen;
3270 char *publickey_comment;
3271 int publickey_encrypted;
3272 prompts_t *cur_prompt;
3273 char c;
3274 int pwpkt_type;
3275 unsigned char request[5], *response, *p;
3276 int responselen;
3277 int keyi, nkeys;
3278 int authed;
3279 struct RSAKey key;
3280 Bignum challenge;
3281 char *commentp;
3282 int commentlen;
3283 int dlgret;
3284 Filename *keyfile;
3285 };
3286 crState(do_ssh1_login_state);
3287
3288 crBeginState;
3289
3290 if (!pktin)
3291 crWaitUntil(pktin);
3292
3293 if (pktin->type != SSH1_SMSG_PUBLIC_KEY) {
3294 bombout(("Public key packet not received"));
3295 crStop(0);
3296 }
3297
3298 logevent("Received public keys");
3299
3300 ptr = ssh_pkt_getdata(pktin, 8);
3301 if (!ptr) {
3302 bombout(("SSH-1 public key packet stopped before random cookie"));
3303 crStop(0);
3304 }
3305 memcpy(cookie, ptr, 8);
3306
3307 if (!ssh1_pkt_getrsakey(pktin, &servkey, &s->keystr1) ||
3308 !ssh1_pkt_getrsakey(pktin, &hostkey, &s->keystr2)) {
3309 bombout(("Failed to read SSH-1 public keys from public key packet"));
3310 crStop(0);
3311 }
3312
3313 /*
3314 * Log the host key fingerprint.
3315 */
3316 {
3317 char logmsg[80];
3318 logevent("Host key fingerprint is:");
3319 strcpy(logmsg, " ");
3320 hostkey.comment = NULL;
3321 rsa_fingerprint(logmsg + strlen(logmsg),
3322 sizeof(logmsg) - strlen(logmsg), &hostkey);
3323 logevent(logmsg);
3324 }
3325
3326 ssh->v1_remote_protoflags = ssh_pkt_getuint32(pktin);
3327 s->supported_ciphers_mask = ssh_pkt_getuint32(pktin);
3328 s->supported_auths_mask = ssh_pkt_getuint32(pktin);
3329 if ((ssh->remote_bugs & BUG_CHOKES_ON_RSA))
3330 s->supported_auths_mask &= ~(1 << SSH1_AUTH_RSA);
3331
3332 ssh->v1_local_protoflags =
3333 ssh->v1_remote_protoflags & SSH1_PROTOFLAGS_SUPPORTED;
3334 ssh->v1_local_protoflags |= SSH1_PROTOFLAG_SCREEN_NUMBER;
3335
3336 MD5Init(&md5c);
3337 MD5Update(&md5c, s->keystr2, hostkey.bytes);
3338 MD5Update(&md5c, s->keystr1, servkey.bytes);
3339 MD5Update(&md5c, cookie, 8);
3340 MD5Final(s->session_id, &md5c);
3341
3342 for (i = 0; i < 32; i++)
3343 ssh->session_key[i] = random_byte();
3344
3345 /*
3346 * Verify that the `bits' and `bytes' parameters match.
3347 */
3348 if (hostkey.bits > hostkey.bytes * 8 ||
3349 servkey.bits > servkey.bytes * 8) {
3350 bombout(("SSH-1 public keys were badly formatted"));
3351 crStop(0);
3352 }
3353
3354 s->len = (hostkey.bytes > servkey.bytes ? hostkey.bytes : servkey.bytes);
3355
3356 s->rsabuf = snewn(s->len, unsigned char);
3357
3358 /*
3359 * Verify the host key.
3360 */
3361 {
3362 /*
3363 * First format the key into a string.
3364 */
3365 int len = rsastr_len(&hostkey);
3366 char fingerprint[100];
3367 char *keystr = snewn(len, char);
3368 rsastr_fmt(keystr, &hostkey);
3369 rsa_fingerprint(fingerprint, sizeof(fingerprint), &hostkey);
3370
3371 ssh_set_frozen(ssh, 1);
3372 s->dlgret = verify_ssh_host_key(ssh->frontend,
3373 ssh->savedhost, ssh->savedport,
3374 "rsa", keystr, fingerprint,
3375 ssh_dialog_callback, ssh);
3376 sfree(keystr);
3377 if (s->dlgret < 0) {
3378 do {
3379 crReturn(0);
3380 if (pktin) {
3381 bombout(("Unexpected data from server while waiting"
3382 " for user host key response"));
3383 crStop(0);
3384 }
3385 } while (pktin || inlen > 0);
3386 s->dlgret = ssh->user_response;
3387 }
3388 ssh_set_frozen(ssh, 0);
3389
3390 if (s->dlgret == 0) {
3391 ssh_disconnect(ssh, "User aborted at host key verification",
3392 NULL, 0, TRUE);
3393 crStop(0);
3394 }
3395 }
3396
3397 for (i = 0; i < 32; i++) {
3398 s->rsabuf[i] = ssh->session_key[i];
3399 if (i < 16)
3400 s->rsabuf[i] ^= s->session_id[i];
3401 }
3402
3403 if (hostkey.bytes > servkey.bytes) {
3404 ret = rsaencrypt(s->rsabuf, 32, &servkey);
3405 if (ret)
3406 ret = rsaencrypt(s->rsabuf, servkey.bytes, &hostkey);
3407 } else {
3408 ret = rsaencrypt(s->rsabuf, 32, &hostkey);
3409 if (ret)
3410 ret = rsaencrypt(s->rsabuf, hostkey.bytes, &servkey);
3411 }
3412 if (!ret) {
3413 bombout(("SSH-1 public key encryptions failed due to bad formatting"));
3414 crStop(0);
3415 }
3416
3417 logevent("Encrypted session key");
3418
3419 {
3420 int cipher_chosen = 0, warn = 0;
3421 char *cipher_string = NULL;
3422 int i;
3423 for (i = 0; !cipher_chosen && i < CIPHER_MAX; i++) {
3424 int next_cipher = conf_get_int_int(ssh->conf,
3425 CONF_ssh_cipherlist, i);
3426 if (next_cipher == CIPHER_WARN) {
3427 /* If/when we choose a cipher, warn about it */
3428 warn = 1;
3429 } else if (next_cipher == CIPHER_AES) {
3430 /* XXX Probably don't need to mention this. */
3431 logevent("AES not supported in SSH-1, skipping");
3432 } else {
3433 switch (next_cipher) {
3434 case CIPHER_3DES: s->cipher_type = SSH_CIPHER_3DES;
3435 cipher_string = "3DES"; break;
3436 case CIPHER_BLOWFISH: s->cipher_type = SSH_CIPHER_BLOWFISH;
3437 cipher_string = "Blowfish"; break;
3438 case CIPHER_DES: s->cipher_type = SSH_CIPHER_DES;
3439 cipher_string = "single-DES"; break;
3440 }
3441 if (s->supported_ciphers_mask & (1 << s->cipher_type))
3442 cipher_chosen = 1;
3443 }
3444 }
3445 if (!cipher_chosen) {
3446 if ((s->supported_ciphers_mask & (1 << SSH_CIPHER_3DES)) == 0)
3447 bombout(("Server violates SSH-1 protocol by not "
3448 "supporting 3DES encryption"));
3449 else
3450 /* shouldn't happen */
3451 bombout(("No supported ciphers found"));
3452 crStop(0);
3453 }
3454
3455 /* Warn about chosen cipher if necessary. */
3456 if (warn) {
3457 ssh_set_frozen(ssh, 1);
3458 s->dlgret = askalg(ssh->frontend, "cipher", cipher_string,
3459 ssh_dialog_callback, ssh);
3460 if (s->dlgret < 0) {
3461 do {
3462 crReturn(0);
3463 if (pktin) {
3464 bombout(("Unexpected data from server while waiting"
3465 " for user response"));
3466 crStop(0);
3467 }
3468 } while (pktin || inlen > 0);
3469 s->dlgret = ssh->user_response;
3470 }
3471 ssh_set_frozen(ssh, 0);
3472 if (s->dlgret == 0) {
3473 ssh_disconnect(ssh, "User aborted at cipher warning", NULL,
3474 0, TRUE);
3475 crStop(0);
3476 }
3477 }
3478 }
3479
3480 switch (s->cipher_type) {
3481 case SSH_CIPHER_3DES:
3482 logevent("Using 3DES encryption");
3483 break;
3484 case SSH_CIPHER_DES:
3485 logevent("Using single-DES encryption");
3486 break;
3487 case SSH_CIPHER_BLOWFISH:
3488 logevent("Using Blowfish encryption");
3489 break;
3490 }
3491
3492 send_packet(ssh, SSH1_CMSG_SESSION_KEY,
3493 PKT_CHAR, s->cipher_type,
3494 PKT_DATA, cookie, 8,
3495 PKT_CHAR, (s->len * 8) >> 8, PKT_CHAR, (s->len * 8) & 0xFF,
3496 PKT_DATA, s->rsabuf, s->len,
3497 PKT_INT, ssh->v1_local_protoflags, PKT_END);
3498
3499 logevent("Trying to enable encryption...");
3500
3501 sfree(s->rsabuf);
3502
3503 ssh->cipher = (s->cipher_type == SSH_CIPHER_BLOWFISH ? &ssh_blowfish_ssh1 :
3504 s->cipher_type == SSH_CIPHER_DES ? &ssh_des :
3505 &ssh_3des);
3506 ssh->v1_cipher_ctx = ssh->cipher->make_context();
3507 ssh->cipher->sesskey(ssh->v1_cipher_ctx, ssh->session_key);
3508 logeventf(ssh, "Initialised %s encryption", ssh->cipher->text_name);
3509
3510 ssh->crcda_ctx = crcda_make_context();
3511 logevent("Installing CRC compensation attack detector");
3512
3513 if (servkey.modulus) {
3514 sfree(servkey.modulus);
3515 servkey.modulus = NULL;
3516 }
3517 if (servkey.exponent) {
3518 sfree(servkey.exponent);
3519 servkey.exponent = NULL;
3520 }
3521 if (hostkey.modulus) {
3522 sfree(hostkey.modulus);
3523 hostkey.modulus = NULL;
3524 }
3525 if (hostkey.exponent) {
3526 sfree(hostkey.exponent);
3527 hostkey.exponent = NULL;
3528 }
3529 crWaitUntil(pktin);
3530
3531 if (pktin->type != SSH1_SMSG_SUCCESS) {
3532 bombout(("Encryption not successfully enabled"));
3533 crStop(0);
3534 }
3535
3536 logevent("Successfully started encryption");
3537
3538 fflush(stdout); /* FIXME eh? */
3539 {
3540 if ((ssh->username = get_remote_username(ssh->conf)) == NULL) {
3541 int ret; /* need not be kept over crReturn */
3542 s->cur_prompt = new_prompts(ssh->frontend);
3543 s->cur_prompt->to_server = TRUE;
3544 s->cur_prompt->name = dupstr("SSH login name");
3545 add_prompt(s->cur_prompt, dupstr("login as: "), TRUE);
3546 ret = get_userpass_input(s->cur_prompt, NULL, 0);
3547 while (ret < 0) {
3548 ssh->send_ok = 1;
3549 crWaitUntil(!pktin);
3550 ret = get_userpass_input(s->cur_prompt, in, inlen);
3551 ssh->send_ok = 0;
3552 }
3553 if (!ret) {
3554 /*
3555 * Failed to get a username. Terminate.
3556 */
3557 free_prompts(s->cur_prompt);
3558 ssh_disconnect(ssh, "No username provided", NULL, 0, TRUE);
3559 crStop(0);
3560 }
3561 ssh->username = dupstr(s->cur_prompt->prompts[0]->result);
3562 free_prompts(s->cur_prompt);
3563 }
3564
3565 send_packet(ssh, SSH1_CMSG_USER, PKT_STR, ssh->username, PKT_END);
3566 {
3567 char *userlog = dupprintf("Sent username \"%s\"", ssh->username);
3568 logevent(userlog);
3569 if (flags & FLAG_INTERACTIVE &&
3570 (!((flags & FLAG_STDERR) && (flags & FLAG_VERBOSE)))) {
3571 c_write_str(ssh, userlog);
3572 c_write_str(ssh, "\r\n");
3573 }
3574 sfree(userlog);
3575 }
3576 }
3577
3578 crWaitUntil(pktin);
3579
3580 if ((s->supported_auths_mask & (1 << SSH1_AUTH_RSA)) == 0) {
3581 /* We must not attempt PK auth. Pretend we've already tried it. */
3582 s->tried_publickey = s->tried_agent = 1;
3583 } else {
3584 s->tried_publickey = s->tried_agent = 0;
3585 }
3586 s->tis_auth_refused = s->ccard_auth_refused = 0;
3587 /*
3588 * Load the public half of any configured keyfile for later use.
3589 */
3590 s->keyfile = conf_get_filename(ssh->conf, CONF_keyfile);
3591 if (!filename_is_null(s->keyfile)) {
3592 int keytype;
3593 logeventf(ssh, "Reading private key file \"%.150s\"",
3594 filename_to_str(s->keyfile));
3595 keytype = key_type(s->keyfile);
3596 if (keytype == SSH_KEYTYPE_SSH1) {
3597 const char *error;
3598 if (rsakey_pubblob(s->keyfile,
3599 &s->publickey_blob, &s->publickey_bloblen,
3600 &s->publickey_comment, &error)) {
3601 s->publickey_encrypted = rsakey_encrypted(s->keyfile,
3602 NULL);
3603 } else {
3604 char *msgbuf;
3605 logeventf(ssh, "Unable to load private key (%s)", error);
3606 msgbuf = dupprintf("Unable to load private key file "
3607 "\"%.150s\" (%s)\r\n",
3608 filename_to_str(s->keyfile),
3609 error);
3610 c_write_str(ssh, msgbuf);
3611 sfree(msgbuf);
3612 s->publickey_blob = NULL;
3613 }
3614 } else {
3615 char *msgbuf;
3616 logeventf(ssh, "Unable to use this key file (%s)",
3617 key_type_to_str(keytype));
3618 msgbuf = dupprintf("Unable to use key file \"%.150s\""
3619 " (%s)\r\n",
3620 filename_to_str(s->keyfile),
3621 key_type_to_str(keytype));
3622 c_write_str(ssh, msgbuf);
3623 sfree(msgbuf);
3624 s->publickey_blob = NULL;
3625 }
3626 } else
3627 s->publickey_blob = NULL;
3628
3629 while (pktin->type == SSH1_SMSG_FAILURE) {
3630 s->pwpkt_type = SSH1_CMSG_AUTH_PASSWORD;
3631
3632 if (conf_get_int(ssh->conf, CONF_tryagent) && agent_exists() && !s->tried_agent) {
3633 /*
3634 * Attempt RSA authentication using Pageant.
3635 */
3636 void *r;
3637
3638 s->authed = FALSE;
3639 s->tried_agent = 1;
3640 logevent("Pageant is running. Requesting keys.");
3641
3642 /* Request the keys held by the agent. */
3643 PUT_32BIT(s->request, 1);
3644 s->request[4] = SSH1_AGENTC_REQUEST_RSA_IDENTITIES;
3645 if (!agent_query(s->request, 5, &r, &s->responselen,
3646 ssh_agent_callback, ssh)) {
3647 do {
3648 crReturn(0);
3649 if (pktin) {
3650 bombout(("Unexpected data from server while waiting"
3651 " for agent response"));
3652 crStop(0);
3653 }
3654 } while (pktin || inlen > 0);
3655 r = ssh->agent_response;
3656 s->responselen = ssh->agent_response_len;
3657 }
3658 s->response = (unsigned char *) r;
3659 if (s->response && s->responselen >= 5 &&
3660 s->response[4] == SSH1_AGENT_RSA_IDENTITIES_ANSWER) {
3661 s->p = s->response + 5;
3662 s->nkeys = GET_32BIT(s->p);
3663 s->p += 4;
3664 logeventf(ssh, "Pageant has %d SSH-1 keys", s->nkeys);
3665 for (s->keyi = 0; s->keyi < s->nkeys; s->keyi++) {
3666 unsigned char *pkblob = s->p;
3667 s->p += 4;
3668 {
3669 int n, ok = FALSE;
3670 do { /* do while (0) to make breaking easy */
3671 n = ssh1_read_bignum
3672 (s->p, s->responselen-(s->p-s->response),
3673 &s->key.exponent);
3674 if (n < 0)
3675 break;
3676 s->p += n;
3677 n = ssh1_read_bignum
3678 (s->p, s->responselen-(s->p-s->response),
3679 &s->key.modulus);
3680 if (n < 0)
3681 break;
3682 s->p += n;
3683 if (s->responselen - (s->p-s->response) < 4)
3684 break;
3685 s->commentlen = GET_32BIT(s->p);
3686 s->p += 4;
3687 if (s->responselen - (s->p-s->response) <
3688 s->commentlen)
3689 break;
3690 s->commentp = (char *)s->p;
3691 s->p += s->commentlen;
3692 ok = TRUE;
3693 } while (0);
3694 if (!ok) {
3695 logevent("Pageant key list packet was truncated");
3696 break;
3697 }
3698 }
3699 if (s->publickey_blob) {
3700 if (!memcmp(pkblob, s->publickey_blob,
3701 s->publickey_bloblen)) {
3702 logeventf(ssh, "Pageant key #%d matches "
3703 "configured key file", s->keyi);
3704 s->tried_publickey = 1;
3705 } else
3706 /* Skip non-configured key */
3707 continue;
3708 }
3709 logeventf(ssh, "Trying Pageant key #%d", s->keyi);
3710 send_packet(ssh, SSH1_CMSG_AUTH_RSA,
3711 PKT_BIGNUM, s->key.modulus, PKT_END);
3712 crWaitUntil(pktin);
3713 if (pktin->type != SSH1_SMSG_AUTH_RSA_CHALLENGE) {
3714 logevent("Key refused");
3715 continue;
3716 }
3717 logevent("Received RSA challenge");
3718 if ((s->challenge = ssh1_pkt_getmp(pktin)) == NULL) {
3719 bombout(("Server's RSA challenge was badly formatted"));
3720 crStop(0);
3721 }
3722
3723 {
3724 char *agentreq, *q, *ret;
3725 void *vret;
3726 int len, retlen;
3727 len = 1 + 4; /* message type, bit count */
3728 len += ssh1_bignum_length(s->key.exponent);
3729 len += ssh1_bignum_length(s->key.modulus);
3730 len += ssh1_bignum_length(s->challenge);
3731 len += 16; /* session id */
3732 len += 4; /* response format */
3733 agentreq = snewn(4 + len, char);
3734 PUT_32BIT(agentreq, len);
3735 q = agentreq + 4;
3736 *q++ = SSH1_AGENTC_RSA_CHALLENGE;
3737 PUT_32BIT(q, bignum_bitcount(s->key.modulus));
3738 q += 4;
3739 q += ssh1_write_bignum(q, s->key.exponent);
3740 q += ssh1_write_bignum(q, s->key.modulus);
3741 q += ssh1_write_bignum(q, s->challenge);
3742 memcpy(q, s->session_id, 16);
3743 q += 16;
3744 PUT_32BIT(q, 1); /* response format */
3745 if (!agent_query(agentreq, len + 4, &vret, &retlen,
3746 ssh_agent_callback, ssh)) {
3747 sfree(agentreq);
3748 do {
3749 crReturn(0);
3750 if (pktin) {
3751 bombout(("Unexpected data from server"
3752 " while waiting for agent"
3753 " response"));
3754 crStop(0);
3755 }
3756 } while (pktin || inlen > 0);
3757 vret = ssh->agent_response;
3758 retlen = ssh->agent_response_len;
3759 } else
3760 sfree(agentreq);
3761 ret = vret;
3762 if (ret) {
3763 if (ret[4] == SSH1_AGENT_RSA_RESPONSE) {
3764 logevent("Sending Pageant's response");
3765 send_packet(ssh, SSH1_CMSG_AUTH_RSA_RESPONSE,
3766 PKT_DATA, ret + 5, 16,
3767 PKT_END);
3768 sfree(ret);
3769 crWaitUntil(pktin);
3770 if (pktin->type == SSH1_SMSG_SUCCESS) {
3771 logevent
3772 ("Pageant's response accepted");
3773 if (flags & FLAG_VERBOSE) {
3774 c_write_str(ssh, "Authenticated using"
3775 " RSA key \"");
3776 c_write(ssh, s->commentp,
3777 s->commentlen);
3778 c_write_str(ssh, "\" from agent\r\n");
3779 }
3780 s->authed = TRUE;
3781 } else
3782 logevent
3783 ("Pageant's response not accepted");
3784 } else {
3785 logevent
3786 ("Pageant failed to answer challenge");
3787 sfree(ret);
3788 }
3789 } else {
3790 logevent("No reply received from Pageant");
3791 }
3792 }
3793 freebn(s->key.exponent);
3794 freebn(s->key.modulus);
3795 freebn(s->challenge);
3796 if (s->authed)
3797 break;
3798 }
3799 sfree(s->response);
3800 if (s->publickey_blob && !s->tried_publickey)
3801 logevent("Configured key file not in Pageant");
3802 } else {
3803 logevent("Failed to get reply from Pageant");
3804 }
3805 if (s->authed)
3806 break;
3807 }
3808 if (s->publickey_blob && !s->tried_publickey) {
3809 /*
3810 * Try public key authentication with the specified
3811 * key file.
3812 */
3813 int got_passphrase; /* need not be kept over crReturn */
3814 if (flags & FLAG_VERBOSE)
3815 c_write_str(ssh, "Trying public key authentication.\r\n");
3816 s->keyfile = conf_get_filename(ssh->conf, CONF_keyfile);
3817 logeventf(ssh, "Trying public key \"%s\"",
3818 filename_to_str(s->keyfile));
3819 s->tried_publickey = 1;
3820 got_passphrase = FALSE;
3821 while (!got_passphrase) {
3822 /*
3823 * Get a passphrase, if necessary.
3824 */
3825 char *passphrase = NULL; /* only written after crReturn */
3826 const char *error;
3827 if (!s->publickey_encrypted) {
3828 if (flags & FLAG_VERBOSE)
3829 c_write_str(ssh, "No passphrase required.\r\n");
3830 passphrase = NULL;
3831 } else {
3832 int ret; /* need not be kept over crReturn */
3833 s->cur_prompt = new_prompts(ssh->frontend);
3834 s->cur_prompt->to_server = FALSE;
3835 s->cur_prompt->name = dupstr("SSH key passphrase");
3836 add_prompt(s->cur_prompt,
3837 dupprintf("Passphrase for key \"%.100s\": ",
3838 s->publickey_comment), FALSE);
3839 ret = get_userpass_input(s->cur_prompt, NULL, 0);
3840 while (ret < 0) {
3841 ssh->send_ok = 1;
3842 crWaitUntil(!pktin);
3843 ret = get_userpass_input(s->cur_prompt, in, inlen);
3844 ssh->send_ok = 0;
3845 }
3846 if (!ret) {
3847 /* Failed to get a passphrase. Terminate. */
3848 free_prompts(s->cur_prompt);
3849 ssh_disconnect(ssh, NULL, "Unable to authenticate",
3850 0, TRUE);
3851 crStop(0);
3852 }
3853 passphrase = dupstr(s->cur_prompt->prompts[0]->result);
3854 free_prompts(s->cur_prompt);
3855 }
3856 /*
3857 * Try decrypting key with passphrase.
3858 */
3859 s->keyfile = conf_get_filename(ssh->conf, CONF_keyfile);
3860 ret = loadrsakey(s->keyfile, &s->key, passphrase,
3861 &error);
3862 if (passphrase) {
3863 smemclr(passphrase, strlen(passphrase));
3864 sfree(passphrase);
3865 }
3866 if (ret == 1) {
3867 /* Correct passphrase. */
3868 got_passphrase = TRUE;
3869 } else if (ret == 0) {
3870 c_write_str(ssh, "Couldn't load private key from ");
3871 c_write_str(ssh, filename_to_str(s->keyfile));
3872 c_write_str(ssh, " (");
3873 c_write_str(ssh, error);
3874 c_write_str(ssh, ").\r\n");
3875 got_passphrase = FALSE;
3876 break; /* go and try something else */
3877 } else if (ret == -1) {
3878 c_write_str(ssh, "Wrong passphrase.\r\n"); /* FIXME */
3879 got_passphrase = FALSE;
3880 /* and try again */
3881 } else {
3882 assert(0 && "unexpected return from loadrsakey()");
3883 got_passphrase = FALSE; /* placate optimisers */
3884 }
3885 }
3886
3887 if (got_passphrase) {
3888
3889 /*
3890 * Send a public key attempt.
3891 */
3892 send_packet(ssh, SSH1_CMSG_AUTH_RSA,
3893 PKT_BIGNUM, s->key.modulus, PKT_END);
3894
3895 crWaitUntil(pktin);
3896 if (pktin->type == SSH1_SMSG_FAILURE) {
3897 c_write_str(ssh, "Server refused our public key.\r\n");
3898 continue; /* go and try something else */
3899 }
3900 if (pktin->type != SSH1_SMSG_AUTH_RSA_CHALLENGE) {
3901 bombout(("Bizarre response to offer of public key"));
3902 crStop(0);
3903 }
3904
3905 {
3906 int i;
3907 unsigned char buffer[32];
3908 Bignum challenge, response;
3909
3910 if ((challenge = ssh1_pkt_getmp(pktin)) == NULL) {
3911 bombout(("Server's RSA challenge was badly formatted"));
3912 crStop(0);
3913 }
3914 response = rsadecrypt(challenge, &s->key);
3915 freebn(s->key.private_exponent);/* burn the evidence */
3916
3917 for (i = 0; i < 32; i++) {
3918 buffer[i] = bignum_byte(response, 31 - i);
3919 }
3920
3921 MD5Init(&md5c);
3922 MD5Update(&md5c, buffer, 32);
3923 MD5Update(&md5c, s->session_id, 16);
3924 MD5Final(buffer, &md5c);
3925
3926 send_packet(ssh, SSH1_CMSG_AUTH_RSA_RESPONSE,
3927 PKT_DATA, buffer, 16, PKT_END);
3928
3929 freebn(challenge);
3930 freebn(response);
3931 }
3932
3933 crWaitUntil(pktin);
3934 if (pktin->type == SSH1_SMSG_FAILURE) {
3935 if (flags & FLAG_VERBOSE)
3936 c_write_str(ssh, "Failed to authenticate with"
3937 " our public key.\r\n");
3938 continue; /* go and try something else */
3939 } else if (pktin->type != SSH1_SMSG_SUCCESS) {
3940 bombout(("Bizarre response to RSA authentication response"));
3941 crStop(0);
3942 }
3943
3944 break; /* we're through! */
3945 }
3946
3947 }
3948
3949 /*
3950 * Otherwise, try various forms of password-like authentication.
3951 */
3952 s->cur_prompt = new_prompts(ssh->frontend);
3953
3954 if (conf_get_int(ssh->conf, CONF_try_tis_auth) &&
3955 (s->supported_auths_mask & (1 << SSH1_AUTH_TIS)) &&
3956 !s->tis_auth_refused) {
3957 s->pwpkt_type = SSH1_CMSG_AUTH_TIS_RESPONSE;
3958 logevent("Requested TIS authentication");
3959 send_packet(ssh, SSH1_CMSG_AUTH_TIS, PKT_END);
3960 crWaitUntil(pktin);
3961 if (pktin->type != SSH1_SMSG_AUTH_TIS_CHALLENGE) {
3962 logevent("TIS authentication declined");
3963 if (flags & FLAG_INTERACTIVE)
3964 c_write_str(ssh, "TIS authentication refused.\r\n");
3965 s->tis_auth_refused = 1;
3966 continue;
3967 } else {
3968 char *challenge;
3969 int challengelen;
3970 char *instr_suf, *prompt;
3971
3972 ssh_pkt_getstring(pktin, &challenge, &challengelen);
3973 if (!challenge) {
3974 bombout(("TIS challenge packet was badly formed"));
3975 crStop(0);
3976 }
3977 logevent("Received TIS challenge");
3978 s->cur_prompt->to_server = TRUE;
3979 s->cur_prompt->name = dupstr("SSH TIS authentication");
3980 /* Prompt heuristic comes from OpenSSH */
3981 if (memchr(challenge, '\n', challengelen)) {
3982 instr_suf = dupstr("");
3983 prompt = dupprintf("%.*s", challengelen, challenge);
3984 } else {
3985 instr_suf = dupprintf("%.*s", challengelen, challenge);
3986 prompt = dupstr("Response: ");
3987 }
3988 s->cur_prompt->instruction =
3989 dupprintf("Using TIS authentication.%s%s",
3990 (*instr_suf) ? "\n" : "",
3991 instr_suf);
3992 s->cur_prompt->instr_reqd = TRUE;
3993 add_prompt(s->cur_prompt, prompt, FALSE);
3994 sfree(instr_suf);
3995 }
3996 }
3997 if (conf_get_int(ssh->conf, CONF_try_tis_auth) &&
3998 (s->supported_auths_mask & (1 << SSH1_AUTH_CCARD)) &&
3999 !s->ccard_auth_refused) {
4000 s->pwpkt_type = SSH1_CMSG_AUTH_CCARD_RESPONSE;
4001 logevent("Requested CryptoCard authentication");
4002 send_packet(ssh, SSH1_CMSG_AUTH_CCARD, PKT_END);
4003 crWaitUntil(pktin);
4004 if (pktin->type != SSH1_SMSG_AUTH_CCARD_CHALLENGE) {
4005 logevent("CryptoCard authentication declined");
4006 c_write_str(ssh, "CryptoCard authentication refused.\r\n");
4007 s->ccard_auth_refused = 1;
4008 continue;
4009 } else {
4010 char *challenge;
4011 int challengelen;
4012 char *instr_suf, *prompt;
4013
4014 ssh_pkt_getstring(pktin, &challenge, &challengelen);
4015 if (!challenge) {
4016 bombout(("CryptoCard challenge packet was badly formed"));
4017 crStop(0);
4018 }
4019 logevent("Received CryptoCard challenge");
4020 s->cur_prompt->to_server = TRUE;
4021 s->cur_prompt->name = dupstr("SSH CryptoCard authentication");
4022 s->cur_prompt->name_reqd = FALSE;
4023 /* Prompt heuristic comes from OpenSSH */
4024 if (memchr(challenge, '\n', challengelen)) {
4025 instr_suf = dupstr("");
4026 prompt = dupprintf("%.*s", challengelen, challenge);
4027 } else {
4028 instr_suf = dupprintf("%.*s", challengelen, challenge);
4029 prompt = dupstr("Response: ");
4030 }
4031 s->cur_prompt->instruction =
4032 dupprintf("Using CryptoCard authentication.%s%s",
4033 (*instr_suf) ? "\n" : "",
4034 instr_suf);
4035 s->cur_prompt->instr_reqd = TRUE;
4036 add_prompt(s->cur_prompt, prompt, FALSE);
4037 sfree(instr_suf);
4038 }
4039 }
4040 if (s->pwpkt_type == SSH1_CMSG_AUTH_PASSWORD) {
4041 if ((s->supported_auths_mask & (1 << SSH1_AUTH_PASSWORD)) == 0) {
4042 bombout(("No supported authentication methods available"));
4043 crStop(0);
4044 }
4045 s->cur_prompt->to_server = TRUE;
4046 s->cur_prompt->name = dupstr("SSH password");
4047 add_prompt(s->cur_prompt, dupprintf("%s@%s's password: ",
4048 ssh->username, ssh->savedhost),
4049 FALSE);
4050 }
4051
4052 /*
4053 * Show password prompt, having first obtained it via a TIS
4054 * or CryptoCard exchange if we're doing TIS or CryptoCard
4055 * authentication.
4056 */
4057 {
4058 int ret; /* need not be kept over crReturn */
4059 ret = get_userpass_input(s->cur_prompt, NULL, 0);
4060 while (ret < 0) {
4061 ssh->send_ok = 1;
4062 crWaitUntil(!pktin);
4063 ret = get_userpass_input(s->cur_prompt, in, inlen);
4064 ssh->send_ok = 0;
4065 }
4066 if (!ret) {
4067 /*
4068 * Failed to get a password (for example
4069 * because one was supplied on the command line
4070 * which has already failed to work). Terminate.
4071 */
4072 free_prompts(s->cur_prompt);
4073 ssh_disconnect(ssh, NULL, "Unable to authenticate", 0, TRUE);
4074 crStop(0);
4075 }
4076 }
4077
4078 if (s->pwpkt_type == SSH1_CMSG_AUTH_PASSWORD) {
4079 /*
4080 * Defence against traffic analysis: we send a
4081 * whole bunch of packets containing strings of
4082 * different lengths. One of these strings is the
4083 * password, in a SSH1_CMSG_AUTH_PASSWORD packet.
4084 * The others are all random data in
4085 * SSH1_MSG_IGNORE packets. This way a passive
4086 * listener can't tell which is the password, and
4087 * hence can't deduce the password length.
4088 *
4089 * Anybody with a password length greater than 16
4090 * bytes is going to have enough entropy in their
4091 * password that a listener won't find it _that_
4092 * much help to know how long it is. So what we'll
4093 * do is:
4094 *
4095 * - if password length < 16, we send 15 packets
4096 * containing string lengths 1 through 15
4097 *
4098 * - otherwise, we let N be the nearest multiple
4099 * of 8 below the password length, and send 8
4100 * packets containing string lengths N through
4101 * N+7. This won't obscure the order of
4102 * magnitude of the password length, but it will
4103 * introduce a bit of extra uncertainty.
4104 *
4105 * A few servers can't deal with SSH1_MSG_IGNORE, at
4106 * least in this context. For these servers, we need
4107 * an alternative defence. We make use of the fact
4108 * that the password is interpreted as a C string:
4109 * so we can append a NUL, then some random data.
4110 *
4111 * A few servers can deal with neither SSH1_MSG_IGNORE
4112 * here _nor_ a padded password string.
4113 * For these servers we are left with no defences
4114 * against password length sniffing.
4115 */
4116 if (!(ssh->remote_bugs & BUG_CHOKES_ON_SSH1_IGNORE) &&
4117 !(ssh->remote_bugs & BUG_NEEDS_SSH1_PLAIN_PASSWORD)) {
4118 /*
4119 * The server can deal with SSH1_MSG_IGNORE, so
4120 * we can use the primary defence.
4121 */
4122 int bottom, top, pwlen, i;
4123 char *randomstr;
4124
4125 pwlen = strlen(s->cur_prompt->prompts[0]->result);
4126 if (pwlen < 16) {
4127 bottom = 0; /* zero length passwords are OK! :-) */
4128 top = 15;
4129 } else {
4130 bottom = pwlen & ~7;
4131 top = bottom + 7;
4132 }
4133
4134 assert(pwlen >= bottom && pwlen <= top);
4135
4136 randomstr = snewn(top + 1, char);
4137
4138 for (i = bottom; i <= top; i++) {
4139 if (i == pwlen) {
4140 defer_packet(ssh, s->pwpkt_type,
4141 PKTT_PASSWORD, PKT_STR,
4142 s->cur_prompt->prompts[0]->result,
4143 PKTT_OTHER, PKT_END);
4144 } else {
4145 for (j = 0; j < i; j++) {
4146 do {
4147 randomstr[j] = random_byte();
4148 } while (randomstr[j] == '\0');
4149 }
4150 randomstr[i] = '\0';
4151 defer_packet(ssh, SSH1_MSG_IGNORE,
4152 PKT_STR, randomstr, PKT_END);
4153 }
4154 }
4155 logevent("Sending password with camouflage packets");
4156 ssh_pkt_defersend(ssh);
4157 sfree(randomstr);
4158 }
4159 else if (!(ssh->remote_bugs & BUG_NEEDS_SSH1_PLAIN_PASSWORD)) {
4160 /*
4161 * The server can't deal with SSH1_MSG_IGNORE
4162 * but can deal with padded passwords, so we
4163 * can use the secondary defence.
4164 */
4165 char string[64];
4166 char *ss;
4167 int len;
4168
4169 len = strlen(s->cur_prompt->prompts[0]->result);
4170 if (len < sizeof(string)) {
4171 ss = string;
4172 strcpy(string, s->cur_prompt->prompts[0]->result);
4173 len++; /* cover the zero byte */
4174 while (len < sizeof(string)) {
4175 string[len++] = (char) random_byte();
4176 }
4177 } else {
4178 ss = s->cur_prompt->prompts[0]->result;
4179 }
4180 logevent("Sending length-padded password");
4181 send_packet(ssh, s->pwpkt_type, PKTT_PASSWORD,
4182 PKT_INT, len, PKT_DATA, ss, len,
4183 PKTT_OTHER, PKT_END);
4184 } else {
4185 /*
4186 * The server is believed unable to cope with
4187 * any of our password camouflage methods.
4188 */
4189 int len;
4190 len = strlen(s->cur_prompt->prompts[0]->result);
4191 logevent("Sending unpadded password");
4192 send_packet(ssh, s->pwpkt_type,
4193 PKTT_PASSWORD, PKT_INT, len,
4194 PKT_DATA, s->cur_prompt->prompts[0]->result, len,
4195 PKTT_OTHER, PKT_END);
4196 }
4197 } else {
4198 send_packet(ssh, s->pwpkt_type, PKTT_PASSWORD,
4199 PKT_STR, s->cur_prompt->prompts[0]->result,
4200 PKTT_OTHER, PKT_END);
4201 }
4202 logevent("Sent password");
4203 free_prompts(s->cur_prompt);
4204 crWaitUntil(pktin);
4205 if (pktin->type == SSH1_SMSG_FAILURE) {
4206 if (flags & FLAG_VERBOSE)
4207 c_write_str(ssh, "Access denied\r\n");
4208 logevent("Authentication refused");
4209 } else if (pktin->type != SSH1_SMSG_SUCCESS) {
4210 bombout(("Strange packet received, type %d", pktin->type));
4211 crStop(0);
4212 }
4213 }
4214
4215 /* Clear up */
4216 if (s->publickey_blob) {
4217 sfree(s->publickey_blob);
4218 sfree(s->publickey_comment);
4219 }
4220
4221 logevent("Authentication successful");
4222
4223 crFinish(1);
4224 }
4225
4226 static void ssh_channel_try_eof(struct ssh_channel *c)
4227 {
4228 Ssh ssh = c->ssh;
4229 assert(c->pending_eof); /* precondition for calling us */
4230 if (c->halfopen)
4231 return; /* can't close: not even opened yet */
4232 if (ssh->version == 2 && bufchain_size(&c->v.v2.outbuffer) > 0)
4233 return; /* can't send EOF: pending outgoing data */
4234
4235 if (ssh->version == 1) {
4236 send_packet(ssh, SSH1_MSG_CHANNEL_CLOSE, PKT_INT, c->remoteid,
4237 PKT_END);
4238 c->closes |= CLOSES_SENT_EOF;
4239 } else {
4240 struct Packet *pktout;
4241 pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_EOF);
4242 ssh2_pkt_adduint32(pktout, c->remoteid);
4243 ssh2_pkt_send(ssh, pktout);
4244 c->closes |= CLOSES_SENT_EOF;
4245 if (!((CLOSES_SENT_EOF | CLOSES_RCVD_EOF) & ~c->closes)) {
4246 /*
4247 * Also send MSG_CLOSE.
4248 */
4249 pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_CLOSE);
4250 ssh2_pkt_adduint32(pktout, c->remoteid);
4251 ssh2_pkt_send(ssh, pktout);
4252 c->closes |= CLOSES_SENT_CLOSE;
4253 }
4254 }
4255 c->pending_eof = FALSE; /* we've sent it now */
4256 }
4257
4258 void sshfwd_write_eof(struct ssh_channel *c)
4259 {
4260 Ssh ssh = c->ssh;
4261
4262 if (ssh->state == SSH_STATE_CLOSED)
4263 return;
4264
4265 if (c->closes & CLOSES_SENT_EOF)
4266 return;
4267
4268 c->pending_eof = TRUE;
4269 ssh_channel_try_eof(c);
4270 }
4271
4272 void sshfwd_unclean_close(struct ssh_channel *c)
4273 {
4274 Ssh ssh = c->ssh;
4275 struct Packet *pktout;
4276
4277 if (ssh->state == SSH_STATE_CLOSED)
4278 return;
4279
4280 if (!(c->closes & CLOSES_SENT_CLOSE)) {
4281 pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_CLOSE);
4282 ssh2_pkt_adduint32(pktout, c->remoteid);
4283 ssh2_pkt_send(ssh, pktout);
4284 c->closes |= CLOSES_SENT_EOF | CLOSES_SENT_CLOSE;
4285 }
4286
4287 switch (c->type) {
4288 case CHAN_X11:
4289 x11_close(c->u.x11.s);
4290 break;
4291 case CHAN_SOCKDATA:
4292 case CHAN_SOCKDATA_DORMANT:
4293 pfd_close(c->u.pfd.s);
4294 break;
4295 }
4296 c->type = CHAN_ZOMBIE;
4297
4298 ssh2_channel_check_close(c);
4299 }
4300
4301 int sshfwd_write(struct ssh_channel *c, char *buf, int len)
4302 {
4303 Ssh ssh = c->ssh;
4304
4305 if (ssh->state == SSH_STATE_CLOSED)
4306 return 0;
4307
4308 if (ssh->version == 1) {
4309 send_packet(ssh, SSH1_MSG_CHANNEL_DATA,
4310 PKT_INT, c->remoteid,
4311 PKT_INT, len, PKTT_DATA, PKT_DATA, buf, len,
4312 PKTT_OTHER, PKT_END);
4313 /*
4314 * In SSH-1 we can return 0 here - implying that forwarded
4315 * connections are never individually throttled - because
4316 * the only circumstance that can cause throttling will be
4317 * the whole SSH connection backing up, in which case
4318 * _everything_ will be throttled as a whole.
4319 */
4320 return 0;
4321 } else {
4322 ssh2_add_channel_data(c, buf, len);
4323 return ssh2_try_send(c);
4324 }
4325 }
4326
4327 void sshfwd_unthrottle(struct ssh_channel *c, int bufsize)
4328 {
4329 Ssh ssh = c->ssh;
4330 int buflimit;
4331
4332 if (ssh->state == SSH_STATE_CLOSED)
4333 return;
4334
4335 if (ssh->version == 1) {
4336 buflimit = SSH1_BUFFER_LIMIT;
4337 } else {
4338 buflimit = c->v.v2.locmaxwin;
4339 ssh2_set_window(c, bufsize < buflimit ? buflimit - bufsize : 0);
4340 }
4341 if (c->throttling_conn && bufsize <= buflimit) {
4342 c->throttling_conn = 0;
4343 ssh_throttle_conn(ssh, -1);
4344 }
4345 }
4346
4347 static void ssh_queueing_handler(Ssh ssh, struct Packet *pktin)
4348 {
4349 struct queued_handler *qh = ssh->qhead;
4350
4351 assert(qh != NULL);
4352
4353 assert(pktin->type == qh->msg1 || pktin->type == qh->msg2);
4354
4355 if (qh->msg1 > 0) {
4356 assert(ssh->packet_dispatch[qh->msg1] == ssh_queueing_handler);
4357 ssh->packet_dispatch[qh->msg1] = ssh->q_saved_handler1;
4358 }
4359 if (qh->msg2 > 0) {
4360 assert(ssh->packet_dispatch[qh->msg2] == ssh_queueing_handler);
4361 ssh->packet_dispatch[qh->msg2] = ssh->q_saved_handler2;
4362 }
4363
4364 if (qh->next) {
4365 ssh->qhead = qh->next;
4366
4367 if (ssh->qhead->msg1 > 0) {
4368 ssh->q_saved_handler1 = ssh->packet_dispatch[ssh->qhead->msg1];
4369 ssh->packet_dispatch[ssh->qhead->msg1] = ssh_queueing_handler;
4370 }
4371 if (ssh->qhead->msg2 > 0) {
4372 ssh->q_saved_handler2 = ssh->packet_dispatch[ssh->qhead->msg2];
4373 ssh->packet_dispatch[ssh->qhead->msg2] = ssh_queueing_handler;
4374 }
4375 } else {
4376 ssh->qhead = ssh->qtail = NULL;
4377 }
4378
4379 qh->handler(ssh, pktin, qh->ctx);
4380
4381 sfree(qh);
4382 }
4383
4384 static void ssh_queue_handler(Ssh ssh, int msg1, int msg2,
4385 chandler_fn_t handler, void *ctx)
4386 {
4387 struct queued_handler *qh;
4388
4389 qh = snew(struct queued_handler);
4390 qh->msg1 = msg1;
4391 qh->msg2 = msg2;
4392 qh->handler = handler;
4393 qh->ctx = ctx;
4394 qh->next = NULL;
4395
4396 if (ssh->qtail == NULL) {
4397 ssh->qhead = qh;
4398
4399 if (qh->msg1 > 0) {
4400 ssh->q_saved_handler1 = ssh->packet_dispatch[ssh->qhead->msg1];
4401 ssh->packet_dispatch[qh->msg1] = ssh_queueing_handler;
4402 }
4403 if (qh->msg2 > 0) {
4404 ssh->q_saved_handler2 = ssh->packet_dispatch[ssh->qhead->msg2];
4405 ssh->packet_dispatch[qh->msg2] = ssh_queueing_handler;
4406 }
4407 } else {
4408 ssh->qtail->next = qh;
4409 }
4410 ssh->qtail = qh;
4411 }
4412
4413 static void ssh_rportfwd_succfail(Ssh ssh, struct Packet *pktin, void *ctx)
4414 {
4415 struct ssh_rportfwd *rpf, *pf = (struct ssh_rportfwd *)ctx;
4416
4417 if (pktin->type == (ssh->version == 1 ? SSH1_SMSG_SUCCESS :
4418 SSH2_MSG_REQUEST_SUCCESS)) {
4419 logeventf(ssh, "Remote port forwarding from %s enabled",
4420 pf->sportdesc);
4421 } else {
4422 logeventf(ssh, "Remote port forwarding from %s refused",
4423 pf->sportdesc);
4424
4425 rpf = del234(ssh->rportfwds, pf);
4426 assert(rpf == pf);
4427 pf->pfrec->remote = NULL;
4428 free_rportfwd(pf);
4429 }
4430 }
4431
4432 static void ssh_setup_portfwd(Ssh ssh, Conf *conf)
4433 {
4434 struct ssh_portfwd *epf;
4435 int i;
4436 char *key, *val;
4437
4438 if (!ssh->portfwds) {
4439 ssh->portfwds = newtree234(ssh_portcmp);
4440 } else {
4441 /*
4442 * Go through the existing port forwardings and tag them
4443 * with status==DESTROY. Any that we want to keep will be
4444 * re-enabled (status==KEEP) as we go through the
4445 * configuration and find out which bits are the same as
4446 * they were before.
4447 */
4448 struct ssh_portfwd *epf;
4449 int i;
4450 for (i = 0; (epf = index234(ssh->portfwds, i)) != NULL; i++)
4451 epf->status = DESTROY;
4452 }
4453
4454 for (val = conf_get_str_strs(conf, CONF_portfwd, NULL, &key);
4455 val != NULL;
4456 val = conf_get_str_strs(conf, CONF_portfwd, key, &key)) {
4457 char *kp, *kp2, *vp, *vp2;
4458 char address_family, type;
4459 int sport,dport,sserv,dserv;
4460 char *sports, *dports, *saddr, *host;
4461
4462 kp = key;
4463
4464 address_family = 'A';
4465 type = 'L';
4466 if (*kp == 'A' || *kp == '4' || *kp == '6')
4467 address_family = *kp++;
4468 if (*kp == 'L' || *kp == 'R')
4469 type = *kp++;
4470
4471 if ((kp2 = strchr(kp, ':')) != NULL) {
4472 /*
4473 * There's a colon in the middle of the source port
4474 * string, which means that the part before it is
4475 * actually a source address.
4476 */
4477 saddr = dupprintf("%.*s", (int)(kp2 - kp), kp);
4478 sports = kp2+1;
4479 } else {
4480 saddr = NULL;
4481 sports = kp;
4482 }
4483 sport = atoi(sports);
4484 sserv = 0;
4485 if (sport == 0) {
4486 sserv = 1;
4487 sport = net_service_lookup(sports);
4488 if (!sport) {
4489 logeventf(ssh, "Service lookup failed for source"
4490 " port \"%s\"", sports);
4491 }
4492 }
4493
4494 if (type == 'L' && !strcmp(val, "D")) {
4495 /* dynamic forwarding */
4496 host = NULL;
4497 dports = NULL;
4498 dport = -1;
4499 dserv = 0;
4500 type = 'D';
4501 } else {
4502 /* ordinary forwarding */
4503 vp = val;
4504 vp2 = vp + strcspn(vp, ":");
4505 host = dupprintf("%.*s", (int)(vp2 - vp), vp);
4506 if (vp2)
4507 vp2++;
4508 dports = vp2;
4509 dport = atoi(dports);
4510 dserv = 0;
4511 if (dport == 0) {
4512 dserv = 1;
4513 dport = net_service_lookup(dports);
4514 if (!dport) {
4515 logeventf(ssh, "Service lookup failed for destination"
4516 " port \"%s\"", dports);
4517 }
4518 }
4519 }
4520
4521 if (sport && dport) {
4522 /* Set up a description of the source port. */
4523 struct ssh_portfwd *pfrec, *epfrec;
4524
4525 pfrec = snew(struct ssh_portfwd);
4526 pfrec->type = type;
4527 pfrec->saddr = saddr;
4528 pfrec->sserv = sserv ? dupstr(sports) : NULL;
4529 pfrec->sport = sport;
4530 pfrec->daddr = host;
4531 pfrec->dserv = dserv ? dupstr(dports) : NULL;
4532 pfrec->dport = dport;
4533 pfrec->local = NULL;
4534 pfrec->remote = NULL;
4535 pfrec->addressfamily = (address_family == '4' ? ADDRTYPE_IPV4 :
4536 address_family == '6' ? ADDRTYPE_IPV6 :
4537 ADDRTYPE_UNSPEC);
4538
4539 epfrec = add234(ssh->portfwds, pfrec);
4540 if (epfrec != pfrec) {
4541 if (epfrec->status == DESTROY) {
4542 /*
4543 * We already have a port forwarding up and running
4544 * with precisely these parameters. Hence, no need
4545 * to do anything; simply re-tag the existing one
4546 * as KEEP.
4547 */
4548 epfrec->status = KEEP;
4549 }
4550 /*
4551 * Anything else indicates that there was a duplicate
4552 * in our input, which we'll silently ignore.
4553 */
4554 free_portfwd(pfrec);
4555 } else {
4556 pfrec->status = CREATE;
4557 }
4558 } else {
4559 sfree(saddr);
4560 sfree(host);
4561 }
4562 }
4563
4564 /*
4565 * Now go through and destroy any port forwardings which were
4566 * not re-enabled.
4567 */
4568 for (i = 0; (epf = index234(ssh->portfwds, i)) != NULL; i++)
4569 if (epf->status == DESTROY) {
4570 char *message;
4571
4572 message = dupprintf("%s port forwarding from %s%s%d",
4573 epf->type == 'L' ? "local" :
4574 epf->type == 'R' ? "remote" : "dynamic",
4575 epf->saddr ? epf->saddr : "",
4576 epf->saddr ? ":" : "",
4577 epf->sport);
4578
4579 if (epf->type != 'D') {
4580 char *msg2 = dupprintf("%s to %s:%d", message,
4581 epf->daddr, epf->dport);
4582 sfree(message);
4583 message = msg2;
4584 }
4585
4586 logeventf(ssh, "Cancelling %s", message);
4587 sfree(message);
4588
4589 /* epf->remote or epf->local may be NULL if setting up a
4590 * forwarding failed. */
4591 if (epf->remote) {
4592 struct ssh_rportfwd *rpf = epf->remote;
4593 struct Packet *pktout;
4594
4595 /*
4596 * Cancel the port forwarding at the server
4597 * end.
4598 */
4599 if (ssh->version == 1) {
4600 /*
4601 * We cannot cancel listening ports on the
4602 * server side in SSH-1! There's no message
4603 * to support it. Instead, we simply remove
4604 * the rportfwd record from the local end
4605 * so that any connections the server tries
4606 * to make on it are rejected.
4607 */
4608 } else {
4609 pktout = ssh2_pkt_init(SSH2_MSG_GLOBAL_REQUEST);
4610 ssh2_pkt_addstring(pktout, "cancel-tcpip-forward");
4611 ssh2_pkt_addbool(pktout, 0);/* _don't_ want reply */
4612 if (epf->saddr) {
4613 ssh2_pkt_addstring(pktout, epf->saddr);
4614 } else if (conf_get_int(conf, CONF_rport_acceptall)) {
4615 /* XXX: rport_acceptall may not represent
4616 * what was used to open the original connection,
4617 * since it's reconfigurable. */
4618 ssh2_pkt_addstring(pktout, "0.0.0.0");
4619 } else {
4620 ssh2_pkt_addstring(pktout, "127.0.0.1");
4621 }
4622 ssh2_pkt_adduint32(pktout, epf->sport);
4623 ssh2_pkt_send(ssh, pktout);
4624 }
4625
4626 del234(ssh->rportfwds, rpf);
4627 free_rportfwd(rpf);
4628 } else if (epf->local) {
4629 pfd_terminate(epf->local);
4630 }
4631
4632 delpos234(ssh->portfwds, i);
4633 free_portfwd(epf);
4634 i--; /* so we don't skip one in the list */
4635 }
4636
4637 /*
4638 * And finally, set up any new port forwardings (status==CREATE).
4639 */
4640 for (i = 0; (epf = index234(ssh->portfwds, i)) != NULL; i++)
4641 if (epf->status == CREATE) {
4642 char *sportdesc, *dportdesc;
4643 sportdesc = dupprintf("%s%s%s%s%d%s",
4644 epf->saddr ? epf->saddr : "",
4645 epf->saddr ? ":" : "",
4646 epf->sserv ? epf->sserv : "",
4647 epf->sserv ? "(" : "",
4648 epf->sport,
4649 epf->sserv ? ")" : "");
4650 if (epf->type == 'D') {
4651 dportdesc = NULL;
4652 } else {
4653 dportdesc = dupprintf("%s:%s%s%d%s",
4654 epf->daddr,
4655 epf->dserv ? epf->dserv : "",
4656 epf->dserv ? "(" : "",
4657 epf->dport,
4658 epf->dserv ? ")" : "");
4659 }
4660
4661 if (epf->type == 'L') {
4662 const char *err = pfd_addforward(epf->daddr, epf->dport,
4663 epf->saddr, epf->sport,
4664 ssh, conf,
4665 &epf->local,
4666 epf->addressfamily);
4667
4668 logeventf(ssh, "Local %sport %s forwarding to %s%s%s",
4669 epf->addressfamily == ADDRTYPE_IPV4 ? "IPv4 " :
4670 epf->addressfamily == ADDRTYPE_IPV6 ? "IPv6 " : "",
4671 sportdesc, dportdesc,
4672 err ? " failed: " : "", err ? err : "");
4673 } else if (epf->type == 'D') {
4674 const char *err = pfd_addforward(NULL, -1,
4675 epf->saddr, epf->sport,
4676 ssh, conf,
4677 &epf->local,
4678 epf->addressfamily);
4679
4680 logeventf(ssh, "Local %sport %s SOCKS dynamic forwarding%s%s",
4681 epf->addressfamily == ADDRTYPE_IPV4 ? "IPv4 " :
4682 epf->addressfamily == ADDRTYPE_IPV6 ? "IPv6 " : "",
4683 sportdesc,
4684 err ? " failed: " : "", err ? err : "");
4685 } else {
4686 struct ssh_rportfwd *pf;
4687
4688 /*
4689 * Ensure the remote port forwardings tree exists.
4690 */
4691 if (!ssh->rportfwds) {
4692 if (ssh->version == 1)
4693 ssh->rportfwds = newtree234(ssh_rportcmp_ssh1);
4694 else
4695 ssh->rportfwds = newtree234(ssh_rportcmp_ssh2);
4696 }
4697
4698 pf = snew(struct ssh_rportfwd);
4699 strncpy(pf->dhost, epf->daddr, lenof(pf->dhost)-1);
4700 pf->dhost[lenof(pf->dhost)-1] = '\0';
4701 pf->dport = epf->dport;
4702 pf->sport = epf->sport;
4703 if (add234(ssh->rportfwds, pf) != pf) {
4704 logeventf(ssh, "Duplicate remote port forwarding to %s:%d",
4705 epf->daddr, epf->dport);
4706 sfree(pf);
4707 } else {
4708 logeventf(ssh, "Requesting remote port %s"
4709 " forward to %s", sportdesc, dportdesc);
4710
4711 pf->sportdesc = sportdesc;
4712 sportdesc = NULL;
4713 epf->remote = pf;
4714 pf->pfrec = epf;
4715
4716 if (ssh->version == 1) {
4717 send_packet(ssh, SSH1_CMSG_PORT_FORWARD_REQUEST,
4718 PKT_INT, epf->sport,
4719 PKT_STR, epf->daddr,
4720 PKT_INT, epf->dport,
4721 PKT_END);
4722 ssh_queue_handler(ssh, SSH1_SMSG_SUCCESS,
4723 SSH1_SMSG_FAILURE,
4724 ssh_rportfwd_succfail, pf);
4725 } else {
4726 struct Packet *pktout;
4727 pktout = ssh2_pkt_init(SSH2_MSG_GLOBAL_REQUEST);
4728 ssh2_pkt_addstring(pktout, "tcpip-forward");
4729 ssh2_pkt_addbool(pktout, 1);/* want reply */
4730 if (epf->saddr) {
4731 ssh2_pkt_addstring(pktout, epf->saddr);
4732 } else if (conf_get_int(conf, CONF_rport_acceptall)) {
4733 ssh2_pkt_addstring(pktout, "0.0.0.0");
4734 } else {
4735 ssh2_pkt_addstring(pktout, "127.0.0.1");
4736 }
4737 ssh2_pkt_adduint32(pktout, epf->sport);
4738 ssh2_pkt_send(ssh, pktout);
4739
4740 ssh_queue_handler(ssh, SSH2_MSG_REQUEST_SUCCESS,
4741 SSH2_MSG_REQUEST_FAILURE,
4742 ssh_rportfwd_succfail, pf);
4743 }
4744 }
4745 }
4746 sfree(sportdesc);
4747 sfree(dportdesc);
4748 }
4749 }
4750
4751 static void ssh1_smsg_stdout_stderr_data(Ssh ssh, struct Packet *pktin)
4752 {
4753 char *string;
4754 int stringlen, bufsize;
4755
4756 ssh_pkt_getstring(pktin, &string, &stringlen);
4757 if (string == NULL) {
4758 bombout(("Incoming terminal data packet was badly formed"));
4759 return;
4760 }
4761
4762 bufsize = from_backend(ssh->frontend, pktin->type == SSH1_SMSG_STDERR_DATA,
4763 string, stringlen);
4764 if (!ssh->v1_stdout_throttling && bufsize > SSH1_BUFFER_LIMIT) {
4765 ssh->v1_stdout_throttling = 1;
4766 ssh_throttle_conn(ssh, +1);
4767 }
4768 }
4769
4770 static void ssh1_smsg_x11_open(Ssh ssh, struct Packet *pktin)
4771 {
4772 /* Remote side is trying to open a channel to talk to our
4773 * X-Server. Give them back a local channel number. */
4774 struct ssh_channel *c;
4775 int remoteid = ssh_pkt_getuint32(pktin);
4776
4777 logevent("Received X11 connect request");
4778 /* Refuse if X11 forwarding is disabled. */
4779 if (!ssh->X11_fwd_enabled) {
4780 send_packet(ssh, SSH1_MSG_CHANNEL_OPEN_FAILURE,
4781 PKT_INT, remoteid, PKT_END);
4782 logevent("Rejected X11 connect request");
4783 } else {
4784 c = snew(struct ssh_channel);
4785 c->ssh = ssh;
4786
4787 if (x11_init(&c->u.x11.s, ssh->x11disp, c,
4788 NULL, -1, ssh->conf) != NULL) {
4789 logevent("Opening X11 forward connection failed");
4790 sfree(c);
4791 send_packet(ssh, SSH1_MSG_CHANNEL_OPEN_FAILURE,
4792 PKT_INT, remoteid, PKT_END);
4793 } else {
4794 logevent
4795 ("Opening X11 forward connection succeeded");
4796 c->remoteid = remoteid;
4797 c->halfopen = FALSE;
4798 c->localid = alloc_channel_id(ssh);
4799 c->closes = 0;
4800 c->pending_eof = FALSE;
4801 c->throttling_conn = 0;
4802 c->type = CHAN_X11; /* identify channel type */
4803 add234(ssh->channels, c);
4804 send_packet(ssh, SSH1_MSG_CHANNEL_OPEN_CONFIRMATION,
4805 PKT_INT, c->remoteid, PKT_INT,
4806 c->localid, PKT_END);
4807 logevent("Opened X11 forward channel");
4808 }
4809 }
4810 }
4811
4812 static void ssh1_smsg_agent_open(Ssh ssh, struct Packet *pktin)
4813 {
4814 /* Remote side is trying to open a channel to talk to our
4815 * agent. Give them back a local channel number. */
4816 struct ssh_channel *c;
4817 int remoteid = ssh_pkt_getuint32(pktin);
4818
4819 /* Refuse if agent forwarding is disabled. */
4820 if (!ssh->agentfwd_enabled) {
4821 send_packet(ssh, SSH1_MSG_CHANNEL_OPEN_FAILURE,
4822 PKT_INT, remoteid, PKT_END);
4823 } else {
4824 c = snew(struct ssh_channel);
4825 c->ssh = ssh;
4826 c->remoteid = remoteid;
4827 c->halfopen = FALSE;
4828 c->localid = alloc_channel_id(ssh);
4829 c->closes = 0;
4830 c->pending_eof = FALSE;
4831 c->throttling_conn = 0;
4832 c->type = CHAN_AGENT; /* identify channel type */
4833 c->u.a.lensofar = 0;
4834 c->u.a.message = NULL;
4835 add234(ssh->channels, c);
4836 send_packet(ssh, SSH1_MSG_CHANNEL_OPEN_CONFIRMATION,
4837 PKT_INT, c->remoteid, PKT_INT, c->localid,
4838 PKT_END);
4839 }
4840 }
4841
4842 static void ssh1_msg_port_open(Ssh ssh, struct Packet *pktin)
4843 {
4844 /* Remote side is trying to open a channel to talk to a
4845 * forwarded port. Give them back a local channel number. */
4846 struct ssh_channel *c;
4847 struct ssh_rportfwd pf, *pfp;
4848 int remoteid;
4849 int hostsize, port;
4850 char *host;
4851 const char *e;
4852 c = snew(struct ssh_channel);
4853 c->ssh = ssh;
4854
4855 remoteid = ssh_pkt_getuint32(pktin);
4856 ssh_pkt_getstring(pktin, &host, &hostsize);
4857 port = ssh_pkt_getuint32(pktin);
4858
4859 if (hostsize >= lenof(pf.dhost))
4860 hostsize = lenof(pf.dhost)-1;
4861 memcpy(pf.dhost, host, hostsize);
4862 pf.dhost[hostsize] = '\0';
4863 pf.dport = port;
4864 pfp = find234(ssh->rportfwds, &pf, NULL);
4865
4866 if (pfp == NULL) {
4867 logeventf(ssh, "Rejected remote port open request for %s:%d",
4868 pf.dhost, port);
4869 send_packet(ssh, SSH1_MSG_CHANNEL_OPEN_FAILURE,
4870 PKT_INT, remoteid, PKT_END);
4871 } else {
4872 logeventf(ssh, "Received remote port open request for %s:%d",
4873 pf.dhost, port);
4874 e = pfd_newconnect(&c->u.pfd.s, pf.dhost, port,
4875 c, ssh->conf, pfp->pfrec->addressfamily);
4876 if (e != NULL) {
4877 logeventf(ssh, "Port open failed: %s", e);
4878 sfree(c);
4879 send_packet(ssh, SSH1_MSG_CHANNEL_OPEN_FAILURE,
4880 PKT_INT, remoteid, PKT_END);
4881 } else {
4882 c->remoteid = remoteid;
4883 c->halfopen = FALSE;
4884 c->localid = alloc_channel_id(ssh);
4885 c->closes = 0;
4886 c->pending_eof = FALSE;
4887 c->throttling_conn = 0;
4888 c->type = CHAN_SOCKDATA; /* identify channel type */
4889 add234(ssh->channels, c);
4890 send_packet(ssh, SSH1_MSG_CHANNEL_OPEN_CONFIRMATION,
4891 PKT_INT, c->remoteid, PKT_INT,
4892 c->localid, PKT_END);
4893 logevent("Forwarded port opened successfully");
4894 }
4895 }
4896 }
4897
4898 static void ssh1_msg_channel_open_confirmation(Ssh ssh, struct Packet *pktin)
4899 {
4900 unsigned int remoteid = ssh_pkt_getuint32(pktin);
4901 unsigned int localid = ssh_pkt_getuint32(pktin);
4902 struct ssh_channel *c;
4903
4904 c = find234(ssh->channels, &remoteid, ssh_channelfind);
4905 if (c && c->type == CHAN_SOCKDATA_DORMANT) {
4906 c->remoteid = localid;
4907 c->halfopen = FALSE;
4908 c->type = CHAN_SOCKDATA;
4909 c->throttling_conn = 0;
4910 pfd_confirm(c->u.pfd.s);
4911 }
4912
4913 if (c && c->pending_eof) {
4914 /*
4915 * We have a pending close on this channel,
4916 * which we decided on before the server acked
4917 * the channel open. So now we know the
4918 * remoteid, we can close it again.
4919 */
4920 ssh_channel_try_eof(c);
4921 }
4922 }
4923
4924 static void ssh1_msg_channel_open_failure(Ssh ssh, struct Packet *pktin)
4925 {
4926 unsigned int remoteid = ssh_pkt_getuint32(pktin);
4927 struct ssh_channel *c;
4928
4929 c = find234(ssh->channels, &remoteid, ssh_channelfind);
4930 if (c && c->type == CHAN_SOCKDATA_DORMANT) {
4931 logevent("Forwarded connection refused by server");
4932 pfd_close(c->u.pfd.s);
4933 del234(ssh->channels, c);
4934 sfree(c);
4935 }
4936 }
4937
4938 static void ssh1_msg_channel_close(Ssh ssh, struct Packet *pktin)
4939 {
4940 /* Remote side closes a channel. */
4941 unsigned i = ssh_pkt_getuint32(pktin);
4942 struct ssh_channel *c;
4943 c = find234(ssh->channels, &i, ssh_channelfind);
4944 if (c && !c->halfopen) {
4945
4946 if (pktin->type == SSH1_MSG_CHANNEL_CLOSE &&
4947 !(c->closes & CLOSES_RCVD_EOF)) {
4948 /*
4949 * Received CHANNEL_CLOSE, which we translate into
4950 * outgoing EOF.
4951 */
4952 int send_close = FALSE;
4953
4954 c->closes |= CLOSES_RCVD_EOF;
4955
4956 switch (c->type) {
4957 case CHAN_X11:
4958 if (c->u.x11.s)
4959 x11_send_eof(c->u.x11.s);
4960 else
4961 send_close = TRUE;
4962 break;
4963 case CHAN_SOCKDATA:
4964 if (c->u.pfd.s)
4965 pfd_send_eof(c->u.pfd.s);
4966 else
4967 send_close = TRUE;
4968 break;
4969 case CHAN_AGENT:
4970 send_close = TRUE;
4971 break;
4972 }
4973
4974 if (send_close && !(c->closes & CLOSES_SENT_EOF)) {
4975 send_packet(ssh, SSH1_MSG_CHANNEL_CLOSE, PKT_INT, c->remoteid,
4976 PKT_END);
4977 c->closes |= CLOSES_SENT_EOF;
4978 }
4979 }
4980
4981 if (pktin->type == SSH1_MSG_CHANNEL_CLOSE_CONFIRMATION &&
4982 !(c->closes & CLOSES_RCVD_CLOSE)) {
4983
4984 if (!(c->closes & CLOSES_SENT_EOF)) {
4985 bombout(("Received CHANNEL_CLOSE_CONFIRMATION for channel %d"
4986 " for which we never sent CHANNEL_CLOSE\n", i));
4987 }
4988
4989 c->closes |= CLOSES_RCVD_CLOSE;
4990 }
4991
4992 if (!((CLOSES_SENT_EOF | CLOSES_RCVD_EOF) & ~c->closes) &&
4993 !(c->closes & CLOSES_SENT_CLOSE)) {
4994 send_packet(ssh, SSH1_MSG_CHANNEL_CLOSE_CONFIRMATION,
4995 PKT_INT, c->remoteid, PKT_END);
4996 c->closes |= CLOSES_SENT_CLOSE;
4997 }
4998
4999 if (!((CLOSES_SENT_CLOSE | CLOSES_RCVD_CLOSE) & ~c->closes))
5000 ssh_channel_destroy(c);
5001 } else {
5002 bombout(("Received CHANNEL_CLOSE%s for %s channel %d\n",
5003 pktin->type == SSH1_MSG_CHANNEL_CLOSE ? "" :
5004 "_CONFIRMATION", c ? "half-open" : "nonexistent",
5005 i));
5006 }
5007 }
5008
5009 static void ssh1_msg_channel_data(Ssh ssh, struct Packet *pktin)
5010 {
5011 /* Data sent down one of our channels. */
5012 int i = ssh_pkt_getuint32(pktin);
5013 char *p;
5014 int len;
5015 struct ssh_channel *c;
5016
5017 ssh_pkt_getstring(pktin, &p, &len);
5018
5019 c = find234(ssh->channels, &i, ssh_channelfind);
5020 if (c) {
5021 int bufsize = 0;
5022 switch (c->type) {
5023 case CHAN_X11:
5024 bufsize = x11_send(c->u.x11.s, p, len);
5025 break;
5026 case CHAN_SOCKDATA:
5027 bufsize = pfd_send(c->u.pfd.s, p, len);
5028 break;
5029 case CHAN_AGENT:
5030 /* Data for an agent message. Buffer it. */
5031 while (len > 0) {
5032 if (c->u.a.lensofar < 4) {
5033 unsigned int l = min(4 - c->u.a.lensofar, (unsigned)len);
5034 memcpy(c->u.a.msglen + c->u.a.lensofar, p,
5035 l);
5036 p += l;
5037 len -= l;
5038 c->u.a.lensofar += l;
5039 }
5040 if (c->u.a.lensofar == 4) {
5041 c->u.a.totallen =
5042 4 + GET_32BIT(c->u.a.msglen);
5043 c->u.a.message = snewn(c->u.a.totallen,
5044 unsigned char);
5045 memcpy(c->u.a.message, c->u.a.msglen, 4);
5046 }
5047 if (c->u.a.lensofar >= 4 && len > 0) {
5048 unsigned int l =
5049 min(c->u.a.totallen - c->u.a.lensofar,
5050 (unsigned)len);
5051 memcpy(c->u.a.message + c->u.a.lensofar, p,
5052 l);
5053 p += l;
5054 len -= l;
5055 c->u.a.lensofar += l;
5056 }
5057 if (c->u.a.lensofar == c->u.a.totallen) {
5058 void *reply;
5059 int replylen;
5060 if (agent_query(c->u.a.message,
5061 c->u.a.totallen,
5062 &reply, &replylen,
5063 ssh_agentf_callback, c))
5064 ssh_agentf_callback(c, reply, replylen);
5065 sfree(c->u.a.message);
5066 c->u.a.lensofar = 0;
5067 }
5068 }
5069 bufsize = 0; /* agent channels never back up */
5070 break;
5071 }
5072 if (!c->throttling_conn && bufsize > SSH1_BUFFER_LIMIT) {
5073 c->throttling_conn = 1;
5074 ssh_throttle_conn(ssh, +1);
5075 }
5076 }
5077 }
5078
5079 static void ssh1_smsg_exit_status(Ssh ssh, struct Packet *pktin)
5080 {
5081 ssh->exitcode = ssh_pkt_getuint32(pktin);
5082 logeventf(ssh, "Server sent command exit status %d", ssh->exitcode);
5083 send_packet(ssh, SSH1_CMSG_EXIT_CONFIRMATION, PKT_END);
5084 /*
5085 * In case `helpful' firewalls or proxies tack
5086 * extra human-readable text on the end of the
5087 * session which we might mistake for another
5088 * encrypted packet, we close the session once
5089 * we've sent EXIT_CONFIRMATION.
5090 */
5091 ssh_disconnect(ssh, NULL, NULL, 0, TRUE);
5092 }
5093
5094 /* Helper function to deal with sending tty modes for REQUEST_PTY */
5095 static void ssh1_send_ttymode(void *data, char *mode, char *val)
5096 {
5097 struct Packet *pktout = (struct Packet *)data;
5098 int i = 0;
5099 unsigned int arg = 0;
5100 while (strcmp(mode, ssh_ttymodes[i].mode) != 0) i++;
5101 if (i == lenof(ssh_ttymodes)) return;
5102 switch (ssh_ttymodes[i].type) {
5103 case TTY_OP_CHAR:
5104 arg = ssh_tty_parse_specchar(val);
5105 break;
5106 case TTY_OP_BOOL:
5107 arg = ssh_tty_parse_boolean(val);
5108 break;
5109 }
5110 ssh2_pkt_addbyte(pktout, ssh_ttymodes[i].opcode);
5111 ssh2_pkt_addbyte(pktout, arg);
5112 }
5113
5114
5115 static void do_ssh1_connection(Ssh ssh, unsigned char *in, int inlen,
5116 struct Packet *pktin)
5117 {
5118 crBegin(ssh->do_ssh1_connection_crstate);
5119
5120 ssh->packet_dispatch[SSH1_SMSG_STDOUT_DATA] =
5121 ssh->packet_dispatch[SSH1_SMSG_STDERR_DATA] =
5122 ssh1_smsg_stdout_stderr_data;
5123
5124 ssh->packet_dispatch[SSH1_MSG_CHANNEL_OPEN_CONFIRMATION] =
5125 ssh1_msg_channel_open_confirmation;
5126 ssh->packet_dispatch[SSH1_MSG_CHANNEL_OPEN_FAILURE] =
5127 ssh1_msg_channel_open_failure;
5128 ssh->packet_dispatch[SSH1_MSG_CHANNEL_CLOSE] =
5129 ssh->packet_dispatch[SSH1_MSG_CHANNEL_CLOSE_CONFIRMATION] =
5130 ssh1_msg_channel_close;
5131 ssh->packet_dispatch[SSH1_MSG_CHANNEL_DATA] = ssh1_msg_channel_data;
5132 ssh->packet_dispatch[SSH1_SMSG_EXIT_STATUS] = ssh1_smsg_exit_status;
5133
5134 if (conf_get_int(ssh->conf, CONF_agentfwd) && agent_exists()) {
5135 logevent("Requesting agent forwarding");
5136 send_packet(ssh, SSH1_CMSG_AGENT_REQUEST_FORWARDING, PKT_END);
5137 do {
5138 crReturnV;
5139 } while (!pktin);
5140 if (pktin->type != SSH1_SMSG_SUCCESS
5141 && pktin->type != SSH1_SMSG_FAILURE) {
5142 bombout(("Protocol confusion"));
5143 crStopV;
5144 } else if (pktin->type == SSH1_SMSG_FAILURE) {
5145 logevent("Agent forwarding refused");
5146 } else {
5147 logevent("Agent forwarding enabled");
5148 ssh->agentfwd_enabled = TRUE;
5149 ssh->packet_dispatch[SSH1_SMSG_AGENT_OPEN] = ssh1_smsg_agent_open;
5150 }
5151 }
5152
5153 if (conf_get_int(ssh->conf, CONF_x11_forward) &&
5154 (ssh->x11disp = x11_setup_display(conf_get_str(ssh->conf, CONF_x11_display),
5155 conf_get_int(ssh->conf, CONF_x11_auth), ssh->conf))) {
5156 logevent("Requesting X11 forwarding");
5157 /*
5158 * Note that while we blank the X authentication data here, we don't
5159 * take any special action to blank the start of an X11 channel,
5160 * so using MIT-MAGIC-COOKIE-1 and actually opening an X connection
5161 * without having session blanking enabled is likely to leak your
5162 * cookie into the log.
5163 */
5164 if (ssh->v1_local_protoflags & SSH1_PROTOFLAG_SCREEN_NUMBER) {
5165 send_packet(ssh, SSH1_CMSG_X11_REQUEST_FORWARDING,
5166 PKT_STR, ssh->x11disp->remoteauthprotoname,
5167 PKTT_PASSWORD,
5168 PKT_STR, ssh->x11disp->remoteauthdatastring,
5169 PKTT_OTHER,
5170 PKT_INT, ssh->x11disp->screennum,
5171 PKT_END);
5172 } else {
5173 send_packet(ssh, SSH1_CMSG_X11_REQUEST_FORWARDING,
5174 PKT_STR, ssh->x11disp->remoteauthprotoname,
5175 PKTT_PASSWORD,
5176 PKT_STR, ssh->x11disp->remoteauthdatastring,
5177 PKTT_OTHER,
5178 PKT_END);
5179 }
5180 do {
5181 crReturnV;
5182 } while (!pktin);
5183 if (pktin->type != SSH1_SMSG_SUCCESS
5184 && pktin->type != SSH1_SMSG_FAILURE) {
5185 bombout(("Protocol confusion"));
5186 crStopV;
5187 } else if (pktin->type == SSH1_SMSG_FAILURE) {
5188 logevent("X11 forwarding refused");
5189 } else {
5190 logevent("X11 forwarding enabled");
5191 ssh->X11_fwd_enabled = TRUE;
5192 ssh->packet_dispatch[SSH1_SMSG_X11_OPEN] = ssh1_smsg_x11_open;
5193 }
5194 }
5195
5196 ssh_setup_portfwd(ssh, ssh->conf);
5197 ssh->packet_dispatch[SSH1_MSG_PORT_OPEN] = ssh1_msg_port_open;
5198
5199 if (!conf_get_int(ssh->conf, CONF_nopty)) {
5200 struct Packet *pkt;
5201 /* Unpick the terminal-speed string. */
5202 /* XXX perhaps we should allow no speeds to be sent. */
5203 ssh->ospeed = 38400; ssh->ispeed = 38400; /* last-resort defaults */
5204 sscanf(conf_get_str(ssh->conf, CONF_termspeed), "%d,%d", &ssh->ospeed, &ssh->ispeed);
5205 /* Send the pty request. */
5206 pkt = ssh1_pkt_init(SSH1_CMSG_REQUEST_PTY);
5207 ssh_pkt_addstring(pkt, conf_get_str(ssh->conf, CONF_termtype));
5208 ssh_pkt_adduint32(pkt, ssh->term_height);
5209 ssh_pkt_adduint32(pkt, ssh->term_width);
5210 ssh_pkt_adduint32(pkt, 0); /* width in pixels */
5211 ssh_pkt_adduint32(pkt, 0); /* height in pixels */
5212 parse_ttymodes(ssh, ssh1_send_ttymode, (void *)pkt);
5213 ssh_pkt_addbyte(pkt, SSH1_TTY_OP_ISPEED);
5214 ssh_pkt_adduint32(pkt, ssh->ispeed);
5215 ssh_pkt_addbyte(pkt, SSH1_TTY_OP_OSPEED);
5216 ssh_pkt_adduint32(pkt, ssh->ospeed);
5217 ssh_pkt_addbyte(pkt, SSH_TTY_OP_END);
5218 s_wrpkt(ssh, pkt);
5219 ssh->state = SSH_STATE_INTERMED;
5220 do {
5221 crReturnV;
5222 } while (!pktin);
5223 if (pktin->type != SSH1_SMSG_SUCCESS
5224 && pktin->type != SSH1_SMSG_FAILURE) {
5225 bombout(("Protocol confusion"));
5226 crStopV;
5227 } else if (pktin->type == SSH1_SMSG_FAILURE) {
5228 c_write_str(ssh, "Server refused to allocate pty\r\n");
5229 ssh->editing = ssh->echoing = 1;
5230 } else {
5231 logeventf(ssh, "Allocated pty (ospeed %dbps, ispeed %dbps)",
5232 ssh->ospeed, ssh->ispeed);
5233 ssh->got_pty = TRUE;
5234 }
5235 } else {
5236 ssh->editing = ssh->echoing = 1;
5237 }
5238
5239 if (conf_get_int(ssh->conf, CONF_compression)) {
5240 send_packet(ssh, SSH1_CMSG_REQUEST_COMPRESSION, PKT_INT, 6, PKT_END);
5241 do {
5242 crReturnV;
5243 } while (!pktin);
5244 if (pktin->type != SSH1_SMSG_SUCCESS
5245 && pktin->type != SSH1_SMSG_FAILURE) {
5246 bombout(("Protocol confusion"));
5247 crStopV;
5248 } else if (pktin->type == SSH1_SMSG_FAILURE) {
5249 c_write_str(ssh, "Server refused to compress\r\n");
5250 }
5251 logevent("Started compression");
5252 ssh->v1_compressing = TRUE;
5253 ssh->cs_comp_ctx = zlib_compress_init();
5254 logevent("Initialised zlib (RFC1950) compression");
5255 ssh->sc_comp_ctx = zlib_decompress_init();
5256 logevent("Initialised zlib (RFC1950) decompression");
5257 }
5258
5259 /*
5260 * Start the shell or command.
5261 *
5262 * Special case: if the first-choice command is an SSH-2
5263 * subsystem (hence not usable here) and the second choice
5264 * exists, we fall straight back to that.
5265 */
5266 {
5267 char *cmd = conf_get_str(ssh->conf, CONF_remote_cmd);
5268
5269 if (conf_get_int(ssh->conf, CONF_ssh_subsys) &&
5270 conf_get_str(ssh->conf, CONF_remote_cmd2)) {
5271 cmd = conf_get_str(ssh->conf, CONF_remote_cmd2);
5272 ssh->fallback_cmd = TRUE;
5273 }
5274 if (*cmd)
5275 send_packet(ssh, SSH1_CMSG_EXEC_CMD, PKT_STR, cmd, PKT_END);
5276 else
5277 send_packet(ssh, SSH1_CMSG_EXEC_SHELL, PKT_END);
5278 logevent("Started session");
5279 }
5280
5281 ssh->state = SSH_STATE_SESSION;
5282 if (ssh->size_needed)
5283 ssh_size(ssh, ssh->term_width, ssh->term_height);
5284 if (ssh->eof_needed)
5285 ssh_special(ssh, TS_EOF);
5286
5287 if (ssh->ldisc)
5288 ldisc_send(ssh->ldisc, NULL, 0, 0);/* cause ldisc to notice changes */
5289 ssh->send_ok = 1;
5290 ssh->channels = newtree234(ssh_channelcmp);
5291 while (1) {
5292
5293 /*
5294 * By this point, most incoming packets are already being
5295 * handled by the dispatch table, and we need only pay
5296 * attention to the unusual ones.
5297 */
5298
5299 crReturnV;
5300 if (pktin) {
5301 if (pktin->type == SSH1_SMSG_SUCCESS) {
5302 /* may be from EXEC_SHELL on some servers */
5303 } else if (pktin->type == SSH1_SMSG_FAILURE) {
5304 /* may be from EXEC_SHELL on some servers
5305 * if no pty is available or in other odd cases. Ignore */
5306 } else {
5307 bombout(("Strange packet received: type %d", pktin->type));
5308 crStopV;
5309 }
5310 } else {
5311 while (inlen > 0) {
5312 int len = min(inlen, 512);
5313 send_packet(ssh, SSH1_CMSG_STDIN_DATA,
5314 PKT_INT, len, PKTT_DATA, PKT_DATA, in, len,
5315 PKTT_OTHER, PKT_END);
5316 in += len;
5317 inlen -= len;
5318 }
5319 }
5320 }
5321
5322 crFinishV;
5323 }
5324
5325 /*
5326 * Handle the top-level SSH-2 protocol.
5327 */
5328 static void ssh1_msg_debug(Ssh ssh, struct Packet *pktin)
5329 {
5330 char *msg;
5331 int msglen;
5332
5333 ssh_pkt_getstring(pktin, &msg, &msglen);
5334 logeventf(ssh, "Remote debug message: %.*s", msglen, msg);
5335 }
5336
5337 static void ssh1_msg_disconnect(Ssh ssh, struct Packet *pktin)
5338 {
5339 /* log reason code in disconnect message */
5340 char *msg;
5341 int msglen;
5342
5343 ssh_pkt_getstring(pktin, &msg, &msglen);
5344 bombout(("Server sent disconnect message:\n\"%.*s\"", msglen, msg));
5345 }
5346
5347 static void ssh_msg_ignore(Ssh ssh, struct Packet *pktin)
5348 {
5349 /* Do nothing, because we're ignoring it! Duhh. */
5350 }
5351
5352 static void ssh1_protocol_setup(Ssh ssh)
5353 {
5354 int i;
5355
5356 /*
5357 * Most messages are handled by the coroutines.
5358 */
5359 for (i = 0; i < 256; i++)
5360 ssh->packet_dispatch[i] = NULL;
5361
5362 /*
5363 * These special message types we install handlers for.
5364 */
5365 ssh->packet_dispatch[SSH1_MSG_DISCONNECT] = ssh1_msg_disconnect;
5366 ssh->packet_dispatch[SSH1_MSG_IGNORE] = ssh_msg_ignore;
5367 ssh->packet_dispatch[SSH1_MSG_DEBUG] = ssh1_msg_debug;
5368 }
5369
5370 static void ssh1_protocol(Ssh ssh, void *vin, int inlen,
5371 struct Packet *pktin)
5372 {
5373 unsigned char *in=(unsigned char*)vin;
5374 if (ssh->state == SSH_STATE_CLOSED)
5375 return;
5376
5377 if (pktin && ssh->packet_dispatch[pktin->type]) {
5378 ssh->packet_dispatch[pktin->type](ssh, pktin);
5379 return;
5380 }
5381
5382 if (!ssh->protocol_initial_phase_done) {
5383 if (do_ssh1_login(ssh, in, inlen, pktin))
5384 ssh->protocol_initial_phase_done = TRUE;
5385 else
5386 return;
5387 }
5388
5389 do_ssh1_connection(ssh, in, inlen, pktin);
5390 }
5391
5392 /*
5393 * Utility routine for decoding comma-separated strings in KEXINIT.
5394 */
5395 static int in_commasep_string(char *needle, char *haystack, int haylen)
5396 {
5397 int needlen;
5398 if (!needle || !haystack) /* protect against null pointers */
5399 return 0;
5400 needlen = strlen(needle);
5401 while (1) {
5402 /*
5403 * Is it at the start of the string?
5404 */
5405 if (haylen >= needlen && /* haystack is long enough */
5406 !memcmp(needle, haystack, needlen) && /* initial match */
5407 (haylen == needlen || haystack[needlen] == ',')
5408 /* either , or EOS follows */
5409 )
5410 return 1;
5411 /*
5412 * If not, search for the next comma and resume after that.
5413 * If no comma found, terminate.
5414 */
5415 while (haylen > 0 && *haystack != ',')
5416 haylen--, haystack++;
5417 if (haylen == 0)
5418 return 0;
5419 haylen--, haystack++; /* skip over comma itself */
5420 }
5421 }
5422
5423 /*
5424 * Similar routine for checking whether we have the first string in a list.
5425 */
5426 static int first_in_commasep_string(char *needle, char *haystack, int haylen)
5427 {
5428 int needlen;
5429 if (!needle || !haystack) /* protect against null pointers */
5430 return 0;
5431 needlen = strlen(needle);
5432 /*
5433 * Is it at the start of the string?
5434 */
5435 if (haylen >= needlen && /* haystack is long enough */
5436 !memcmp(needle, haystack, needlen) && /* initial match */
5437 (haylen == needlen || haystack[needlen] == ',')
5438 /* either , or EOS follows */
5439 )
5440 return 1;
5441 return 0;
5442 }
5443
5444
5445 /*
5446 * SSH-2 key creation method.
5447 * (Currently assumes 2 lots of any hash are sufficient to generate
5448 * keys/IVs for any cipher/MAC. SSH2_MKKEY_ITERS documents this assumption.)
5449 */
5450 #define SSH2_MKKEY_ITERS (2)
5451 static void ssh2_mkkey(Ssh ssh, Bignum K, unsigned char *H, char chr,
5452 unsigned char *keyspace)
5453 {
5454 const struct ssh_hash *h = ssh->kex->hash;
5455 void *s;
5456 /* First hlen bytes. */
5457 s = h->init();
5458 if (!(ssh->remote_bugs & BUG_SSH2_DERIVEKEY))
5459 hash_mpint(h, s, K);
5460 h->bytes(s, H, h->hlen);
5461 h->bytes(s, &chr, 1);
5462 h->bytes(s, ssh->v2_session_id, ssh->v2_session_id_len);
5463 h->final(s, keyspace);
5464 /* Next hlen bytes. */
5465 s = h->init();
5466 if (!(ssh->remote_bugs & BUG_SSH2_DERIVEKEY))
5467 hash_mpint(h, s, K);
5468 h->bytes(s, H, h->hlen);
5469 h->bytes(s, keyspace, h->hlen);
5470 h->final(s, keyspace + h->hlen);
5471 }
5472
5473 /*
5474 * Handle the SSH-2 transport layer.
5475 */
5476 static int do_ssh2_transport(Ssh ssh, void *vin, int inlen,
5477 struct Packet *pktin)
5478 {
5479 unsigned char *in = (unsigned char *)vin;
5480 struct do_ssh2_transport_state {
5481 int crLine;
5482 int nbits, pbits, warn_kex, warn_cscipher, warn_sccipher;
5483 Bignum p, g, e, f, K;
5484 void *our_kexinit;
5485 int our_kexinitlen;
5486 int kex_init_value, kex_reply_value;
5487 const struct ssh_mac **maclist;
5488 int nmacs;
5489 const struct ssh2_cipher *cscipher_tobe;
5490 const struct ssh2_cipher *sccipher_tobe;
5491 const struct ssh_mac *csmac_tobe;
5492 const struct ssh_mac *scmac_tobe;
5493 const struct ssh_compress *cscomp_tobe;
5494 const struct ssh_compress *sccomp_tobe;
5495 char *hostkeydata, *sigdata, *rsakeydata, *keystr, *fingerprint;
5496 int hostkeylen, siglen, rsakeylen;
5497 void *hkey; /* actual host key */
5498 void *rsakey; /* for RSA kex */
5499 unsigned char exchange_hash[SSH2_KEX_MAX_HASH_LEN];
5500 int n_preferred_kex;
5501 const struct ssh_kexes *preferred_kex[KEX_MAX];
5502 int n_preferred_ciphers;
5503 const struct ssh2_ciphers *preferred_ciphers[CIPHER_MAX];
5504 const struct ssh_compress *preferred_comp;
5505 int userauth_succeeded; /* for delayed compression */
5506 int pending_compression;
5507 int got_session_id, activated_authconn;
5508 struct Packet *pktout;
5509 int dlgret;
5510 int guessok;
5511 int ignorepkt;
5512 };
5513 crState(do_ssh2_transport_state);
5514
5515 crBeginState;
5516
5517 s->cscipher_tobe = s->sccipher_tobe = NULL;
5518 s->csmac_tobe = s->scmac_tobe = NULL;
5519 s->cscomp_tobe = s->sccomp_tobe = NULL;
5520
5521 s->got_session_id = s->activated_authconn = FALSE;
5522 s->userauth_succeeded = FALSE;
5523 s->pending_compression = FALSE;
5524
5525 /*
5526 * Be prepared to work around the buggy MAC problem.
5527 */
5528 if (ssh->remote_bugs & BUG_SSH2_HMAC)
5529 s->maclist = buggymacs, s->nmacs = lenof(buggymacs);
5530 else
5531 s->maclist = macs, s->nmacs = lenof(macs);
5532
5533 begin_key_exchange:
5534 ssh->pkt_kctx = SSH2_PKTCTX_NOKEX;
5535 {
5536 int i, j, k, commalist_started;
5537
5538 /*
5539 * Set up the preferred key exchange. (NULL => warn below here)
5540 */
5541 s->n_preferred_kex = 0;
5542 for (i = 0; i < KEX_MAX; i++) {
5543 switch (conf_get_int_int(ssh->conf, CONF_ssh_kexlist, i)) {
5544 case KEX_DHGEX:
5545 s->preferred_kex[s->n_preferred_kex++] =
5546 &ssh_diffiehellman_gex;
5547 break;
5548 case KEX_DHGROUP14:
5549 s->preferred_kex[s->n_preferred_kex++] =
5550 &ssh_diffiehellman_group14;
5551 break;
5552 case KEX_DHGROUP1:
5553 s->preferred_kex[s->n_preferred_kex++] =
5554 &ssh_diffiehellman_group1;
5555 break;
5556 case KEX_RSA:
5557 s->preferred_kex[s->n_preferred_kex++] =
5558 &ssh_rsa_kex;
5559 break;
5560 case KEX_WARN:
5561 /* Flag for later. Don't bother if it's the last in
5562 * the list. */
5563 if (i < KEX_MAX - 1) {
5564 s->preferred_kex[s->n_preferred_kex++] = NULL;
5565 }
5566 break;
5567 }
5568 }
5569
5570 /*
5571 * Set up the preferred ciphers. (NULL => warn below here)
5572 */
5573 s->n_preferred_ciphers = 0;
5574 for (i = 0; i < CIPHER_MAX; i++) {
5575 switch (conf_get_int_int(ssh->conf, CONF_ssh_cipherlist, i)) {
5576 case CIPHER_BLOWFISH:
5577 s->preferred_ciphers[s->n_preferred_ciphers++] = &ssh2_blowfish;
5578 break;
5579 case CIPHER_DES:
5580 if (conf_get_int(ssh->conf, CONF_ssh2_des_cbc)) {
5581 s->preferred_ciphers[s->n_preferred_ciphers++] = &ssh2_des;
5582 }
5583 break;
5584 case CIPHER_3DES:
5585 s->preferred_ciphers[s->n_preferred_ciphers++] = &ssh2_3des;
5586 break;
5587 case CIPHER_AES:
5588 s->preferred_ciphers[s->n_preferred_ciphers++] = &ssh2_aes;
5589 break;
5590 case CIPHER_ARCFOUR:
5591 s->preferred_ciphers[s->n_preferred_ciphers++] = &ssh2_arcfour;
5592 break;
5593 case CIPHER_WARN:
5594 /* Flag for later. Don't bother if it's the last in
5595 * the list. */
5596 if (i < CIPHER_MAX - 1) {
5597 s->preferred_ciphers[s->n_preferred_ciphers++] = NULL;
5598 }
5599 break;
5600 }
5601 }
5602
5603 /*
5604 * Set up preferred compression.
5605 */
5606 if (conf_get_int(ssh->conf, CONF_compression))
5607 s->preferred_comp = &ssh_zlib;
5608 else
5609 s->preferred_comp = &ssh_comp_none;
5610
5611 /*
5612 * Enable queueing of outgoing auth- or connection-layer
5613 * packets while we are in the middle of a key exchange.
5614 */
5615 ssh->queueing = TRUE;
5616
5617 /*
5618 * Flag that KEX is in progress.
5619 */
5620 ssh->kex_in_progress = TRUE;
5621
5622 /*
5623 * Construct and send our key exchange packet.
5624 */
5625 s->pktout = ssh2_pkt_init(SSH2_MSG_KEXINIT);
5626 for (i = 0; i < 16; i++)
5627 ssh2_pkt_addbyte(s->pktout, (unsigned char) random_byte());
5628 /* List key exchange algorithms. */
5629 ssh2_pkt_addstring_start(s->pktout);
5630 commalist_started = 0;
5631 for (i = 0; i < s->n_preferred_kex; i++) {
5632 const struct ssh_kexes *k = s->preferred_kex[i];
5633 if (!k) continue; /* warning flag */
5634 for (j = 0; j < k->nkexes; j++) {
5635 if (commalist_started)
5636 ssh2_pkt_addstring_str(s->pktout, ",");
5637 ssh2_pkt_addstring_str(s->pktout, k->list[j]->name);
5638 commalist_started = 1;
5639 }
5640 }
5641 /* List server host key algorithms. */
5642 ssh2_pkt_addstring_start(s->pktout);
5643 for (i = 0; i < lenof(hostkey_algs); i++) {
5644 ssh2_pkt_addstring_str(s->pktout, hostkey_algs[i]->name);
5645 if (i < lenof(hostkey_algs) - 1)
5646 ssh2_pkt_addstring_str(s->pktout, ",");
5647 }
5648 /* List encryption algorithms (client->server then server->client). */
5649 for (k = 0; k < 2; k++) {
5650 ssh2_pkt_addstring_start(s->pktout);
5651 commalist_started = 0;
5652 for (i = 0; i < s->n_preferred_ciphers; i++) {
5653 const struct ssh2_ciphers *c = s->preferred_ciphers[i];
5654 if (!c) continue; /* warning flag */
5655 for (j = 0; j < c->nciphers; j++) {
5656 if (commalist_started)
5657 ssh2_pkt_addstring_str(s->pktout, ",");
5658 ssh2_pkt_addstring_str(s->pktout, c->list[j]->name);
5659 commalist_started = 1;
5660 }
5661 }
5662 }
5663 /* List MAC algorithms (client->server then server->client). */
5664 for (j = 0; j < 2; j++) {
5665 ssh2_pkt_addstring_start(s->pktout);
5666 for (i = 0; i < s->nmacs; i++) {
5667 ssh2_pkt_addstring_str(s->pktout, s->maclist[i]->name);
5668 if (i < s->nmacs - 1)
5669 ssh2_pkt_addstring_str(s->pktout, ",");
5670 }
5671 }
5672 /* List client->server compression algorithms,
5673 * then server->client compression algorithms. (We use the
5674 * same set twice.) */
5675 for (j = 0; j < 2; j++) {
5676 ssh2_pkt_addstring_start(s->pktout);
5677 assert(lenof(compressions) > 1);
5678 /* Prefer non-delayed versions */
5679 ssh2_pkt_addstring_str(s->pktout, s->preferred_comp->name);
5680 /* We don't even list delayed versions of algorithms until
5681 * they're allowed to be used, to avoid a race. See the end of
5682 * this function. */
5683 if (s->userauth_succeeded && s->preferred_comp->delayed_name) {
5684 ssh2_pkt_addstring_str(s->pktout, ",");
5685 ssh2_pkt_addstring_str(s->pktout,
5686 s->preferred_comp->delayed_name);
5687 }
5688 for (i = 0; i < lenof(compressions); i++) {
5689 const struct ssh_compress *c = compressions[i];
5690 if (c != s->preferred_comp) {
5691 ssh2_pkt_addstring_str(s->pktout, ",");
5692 ssh2_pkt_addstring_str(s->pktout, c->name);
5693 if (s->userauth_succeeded && c->delayed_name) {
5694 ssh2_pkt_addstring_str(s->pktout, ",");
5695 ssh2_pkt_addstring_str(s->pktout, c->delayed_name);
5696 }
5697 }
5698 }
5699 }
5700 /* List client->server languages. Empty list. */
5701 ssh2_pkt_addstring_start(s->pktout);
5702 /* List server->client languages. Empty list. */
5703 ssh2_pkt_addstring_start(s->pktout);
5704 /* First KEX packet does _not_ follow, because we're not that brave. */
5705 ssh2_pkt_addbool(s->pktout, FALSE);
5706 /* Reserved. */
5707 ssh2_pkt_adduint32(s->pktout, 0);
5708 }
5709
5710 s->our_kexinitlen = s->pktout->length - 5;
5711 s->our_kexinit = snewn(s->our_kexinitlen, unsigned char);
5712 memcpy(s->our_kexinit, s->pktout->data + 5, s->our_kexinitlen);
5713
5714 ssh2_pkt_send_noqueue(ssh, s->pktout);
5715
5716 if (!pktin)
5717 crWaitUntil(pktin);
5718
5719 /*
5720 * Now examine the other side's KEXINIT to see what we're up
5721 * to.
5722 */
5723 {
5724 char *str, *preferred;
5725 int i, j, len;
5726
5727 if (pktin->type != SSH2_MSG_KEXINIT) {
5728 bombout(("expected key exchange packet from server"));
5729 crStop(0);
5730 }
5731 ssh->kex = NULL;
5732 ssh->hostkey = NULL;
5733 s->cscipher_tobe = NULL;
5734 s->sccipher_tobe = NULL;
5735 s->csmac_tobe = NULL;
5736 s->scmac_tobe = NULL;
5737 s->cscomp_tobe = NULL;
5738 s->sccomp_tobe = NULL;
5739 s->warn_kex = s->warn_cscipher = s->warn_sccipher = FALSE;
5740
5741 pktin->savedpos += 16; /* skip garbage cookie */
5742 ssh_pkt_getstring(pktin, &str, &len); /* key exchange algorithms */
5743
5744 preferred = NULL;
5745 for (i = 0; i < s->n_preferred_kex; i++) {
5746 const struct ssh_kexes *k = s->preferred_kex[i];
5747 if (!k) {
5748 s->warn_kex = TRUE;
5749 } else {
5750 for (j = 0; j < k->nkexes; j++) {
5751 if (!preferred) preferred = k->list[j]->name;
5752 if (in_commasep_string(k->list[j]->name, str, len)) {
5753 ssh->kex = k->list[j];
5754 break;
5755 }
5756 }
5757 }
5758 if (ssh->kex)
5759 break;
5760 }
5761 if (!ssh->kex) {
5762 bombout(("Couldn't agree a key exchange algorithm (available: %s)",
5763 str ? str : "(null)"));
5764 crStop(0);
5765 }
5766 /*
5767 * Note that the server's guess is considered wrong if it doesn't match
5768 * the first algorithm in our list, even if it's still the algorithm
5769 * we end up using.
5770 */
5771 s->guessok = first_in_commasep_string(preferred, str, len);
5772 ssh_pkt_getstring(pktin, &str, &len); /* host key algorithms */
5773 for (i = 0; i < lenof(hostkey_algs); i++) {
5774 if (in_commasep_string(hostkey_algs[i]->name, str, len)) {
5775 ssh->hostkey = hostkey_algs[i];
5776 break;
5777 }
5778 }
5779 if (!ssh->hostkey) {
5780 bombout(("Couldn't agree a host key algorithm (available: %s)",
5781 str ? str : "(null)"));
5782 crStop(0);
5783 }
5784
5785 s->guessok = s->guessok &&
5786 first_in_commasep_string(hostkey_algs[0]->name, str, len);
5787 ssh_pkt_getstring(pktin, &str, &len); /* client->server cipher */
5788 for (i = 0; i < s->n_preferred_ciphers; i++) {
5789 const struct ssh2_ciphers *c = s->preferred_ciphers[i];
5790 if (!c) {
5791 s->warn_cscipher = TRUE;
5792 } else {
5793 for (j = 0; j < c->nciphers; j++) {
5794 if (in_commasep_string(c->list[j]->name, str, len)) {
5795 s->cscipher_tobe = c->list[j];
5796 break;
5797 }
5798 }
5799 }
5800 if (s->cscipher_tobe)
5801 break;
5802 }
5803 if (!s->cscipher_tobe) {
5804 bombout(("Couldn't agree a client-to-server cipher (available: %s)",
5805 str ? str : "(null)"));
5806 crStop(0);
5807 }
5808
5809 ssh_pkt_getstring(pktin, &str, &len); /* server->client cipher */
5810 for (i = 0; i < s->n_preferred_ciphers; i++) {
5811 const struct ssh2_ciphers *c = s->preferred_ciphers[i];
5812 if (!c) {
5813 s->warn_sccipher = TRUE;
5814 } else {
5815 for (j = 0; j < c->nciphers; j++) {
5816 if (in_commasep_string(c->list[j]->name, str, len)) {
5817 s->sccipher_tobe = c->list[j];
5818 break;
5819 }
5820 }
5821 }
5822 if (s->sccipher_tobe)
5823 break;
5824 }
5825 if (!s->sccipher_tobe) {
5826 bombout(("Couldn't agree a server-to-client cipher (available: %s)",
5827 str ? str : "(null)"));
5828 crStop(0);
5829 }
5830
5831 ssh_pkt_getstring(pktin, &str, &len); /* client->server mac */
5832 for (i = 0; i < s->nmacs; i++) {
5833 if (in_commasep_string(s->maclist[i]->name, str, len)) {
5834 s->csmac_tobe = s->maclist[i];
5835 break;
5836 }
5837 }
5838 ssh_pkt_getstring(pktin, &str, &len); /* server->client mac */
5839 for (i = 0; i < s->nmacs; i++) {
5840 if (in_commasep_string(s->maclist[i]->name, str, len)) {
5841 s->scmac_tobe = s->maclist[i];
5842 break;
5843 }
5844 }
5845 ssh_pkt_getstring(pktin, &str, &len); /* client->server compression */
5846 for (i = 0; i < lenof(compressions) + 1; i++) {
5847 const struct ssh_compress *c =
5848 i == 0 ? s->preferred_comp : compressions[i - 1];
5849 if (in_commasep_string(c->name, str, len)) {
5850 s->cscomp_tobe = c;
5851 break;
5852 } else if (in_commasep_string(c->delayed_name, str, len)) {
5853 if (s->userauth_succeeded) {
5854 s->cscomp_tobe = c;
5855 break;
5856 } else {
5857 s->pending_compression = TRUE; /* try this later */
5858 }
5859 }
5860 }
5861 ssh_pkt_getstring(pktin, &str, &len); /* server->client compression */
5862 for (i = 0; i < lenof(compressions) + 1; i++) {
5863 const struct ssh_compress *c =
5864 i == 0 ? s->preferred_comp : compressions[i - 1];
5865 if (in_commasep_string(c->name, str, len)) {
5866 s->sccomp_tobe = c;
5867 break;
5868 } else if (in_commasep_string(c->delayed_name, str, len)) {
5869 if (s->userauth_succeeded) {
5870 s->sccomp_tobe = c;
5871 break;
5872 } else {
5873 s->pending_compression = TRUE; /* try this later */
5874 }
5875 }
5876 }
5877 if (s->pending_compression) {
5878 logevent("Server supports delayed compression; "
5879 "will try this later");
5880 }
5881 ssh_pkt_getstring(pktin, &str, &len); /* client->server language */
5882 ssh_pkt_getstring(pktin, &str, &len); /* server->client language */
5883 s->ignorepkt = ssh2_pkt_getbool(pktin) && !s->guessok;
5884
5885 if (s->warn_kex) {
5886 ssh_set_frozen(ssh, 1);
5887 s->dlgret = askalg(ssh->frontend, "key-exchange algorithm",
5888 ssh->kex->name,
5889 ssh_dialog_callback, ssh);
5890 if (s->dlgret < 0) {
5891 do {
5892 crReturn(0);
5893 if (pktin) {
5894 bombout(("Unexpected data from server while"
5895 " waiting for user response"));
5896 crStop(0);
5897 }
5898 } while (pktin || inlen > 0);
5899 s->dlgret = ssh->user_response;
5900 }
5901 ssh_set_frozen(ssh, 0);
5902 if (s->dlgret == 0) {
5903 ssh_disconnect(ssh, "User aborted at kex warning", NULL,
5904 0, TRUE);
5905 crStop(0);
5906 }
5907 }
5908
5909 if (s->warn_cscipher) {
5910 ssh_set_frozen(ssh, 1);
5911 s->dlgret = askalg(ssh->frontend,
5912 "client-to-server cipher",
5913 s->cscipher_tobe->name,
5914 ssh_dialog_callback, ssh);
5915 if (s->dlgret < 0) {
5916 do {
5917 crReturn(0);
5918 if (pktin) {
5919 bombout(("Unexpected data from server while"
5920 " waiting for user response"));
5921 crStop(0);
5922 }
5923 } while (pktin || inlen > 0);
5924 s->dlgret = ssh->user_response;
5925 }
5926 ssh_set_frozen(ssh, 0);
5927 if (s->dlgret == 0) {
5928 ssh_disconnect(ssh, "User aborted at cipher warning", NULL,
5929 0, TRUE);
5930 crStop(0);
5931 }
5932 }
5933
5934 if (s->warn_sccipher) {
5935 ssh_set_frozen(ssh, 1);
5936 s->dlgret = askalg(ssh->frontend,
5937 "server-to-client cipher",
5938 s->sccipher_tobe->name,
5939 ssh_dialog_callback, ssh);
5940 if (s->dlgret < 0) {
5941 do {
5942 crReturn(0);
5943 if (pktin) {
5944 bombout(("Unexpected data from server while"
5945 " waiting for user response"));
5946 crStop(0);
5947 }
5948 } while (pktin || inlen > 0);
5949 s->dlgret = ssh->user_response;
5950 }
5951 ssh_set_frozen(ssh, 0);
5952 if (s->dlgret == 0) {
5953 ssh_disconnect(ssh, "User aborted at cipher warning", NULL,
5954 0, TRUE);
5955 crStop(0);
5956 }
5957 }
5958
5959 ssh->exhash = ssh->kex->hash->init();
5960 hash_string(ssh->kex->hash, ssh->exhash, ssh->v_c, strlen(ssh->v_c));
5961 hash_string(ssh->kex->hash, ssh->exhash, ssh->v_s, strlen(ssh->v_s));
5962 hash_string(ssh->kex->hash, ssh->exhash,
5963 s->our_kexinit, s->our_kexinitlen);
5964 sfree(s->our_kexinit);
5965 if (pktin->length > 5)
5966 hash_string(ssh->kex->hash, ssh->exhash,
5967 pktin->data + 5, pktin->length - 5);
5968
5969 if (s->ignorepkt) /* first_kex_packet_follows */
5970 crWaitUntil(pktin); /* Ignore packet */
5971 }
5972
5973 if (ssh->kex->main_type == KEXTYPE_DH) {
5974 /*
5975 * Work out the number of bits of key we will need from the
5976 * key exchange. We start with the maximum key length of
5977 * either cipher...
5978 */
5979 {
5980 int csbits, scbits;
5981
5982 csbits = s->cscipher_tobe->keylen;
5983 scbits = s->sccipher_tobe->keylen;
5984 s->nbits = (csbits > scbits ? csbits : scbits);
5985 }
5986 /* The keys only have hlen-bit entropy, since they're based on
5987 * a hash. So cap the key size at hlen bits. */
5988 if (s->nbits > ssh->kex->hash->hlen * 8)
5989 s->nbits = ssh->kex->hash->hlen * 8;
5990
5991 /*
5992 * If we're doing Diffie-Hellman group exchange, start by
5993 * requesting a group.
5994 */
5995 if (!ssh->kex->pdata) {
5996 logevent("Doing Diffie-Hellman group exchange");
5997 ssh->pkt_kctx = SSH2_PKTCTX_DHGEX;
5998 /*
5999 * Work out how big a DH group we will need to allow that
6000 * much data.
6001 */
6002 s->pbits = 512 << ((s->nbits - 1) / 64);
6003 s->pktout = ssh2_pkt_init(SSH2_MSG_KEX_DH_GEX_REQUEST);
6004 ssh2_pkt_adduint32(s->pktout, s->pbits);
6005 ssh2_pkt_send_noqueue(ssh, s->pktout);
6006
6007 crWaitUntil(pktin);
6008 if (pktin->type != SSH2_MSG_KEX_DH_GEX_GROUP) {
6009 bombout(("expected key exchange group packet from server"));
6010 crStop(0);
6011 }
6012 s->p = ssh2_pkt_getmp(pktin);
6013 s->g = ssh2_pkt_getmp(pktin);
6014 if (!s->p || !s->g) {
6015 bombout(("unable to read mp-ints from incoming group packet"));
6016 crStop(0);
6017 }
6018 ssh->kex_ctx = dh_setup_gex(s->p, s->g);
6019 s->kex_init_value = SSH2_MSG_KEX_DH_GEX_INIT;
6020 s->kex_reply_value = SSH2_MSG_KEX_DH_GEX_REPLY;
6021 } else {
6022 ssh->pkt_kctx = SSH2_PKTCTX_DHGROUP;
6023 ssh->kex_ctx = dh_setup_group(ssh->kex);
6024 s->kex_init_value = SSH2_MSG_KEXDH_INIT;
6025 s->kex_reply_value = SSH2_MSG_KEXDH_REPLY;
6026 logeventf(ssh, "Using Diffie-Hellman with standard group \"%s\"",
6027 ssh->kex->groupname);
6028 }
6029
6030 logeventf(ssh, "Doing Diffie-Hellman key exchange with hash %s",
6031 ssh->kex->hash->text_name);
6032 /*
6033 * Now generate and send e for Diffie-Hellman.
6034 */
6035 set_busy_status(ssh->frontend, BUSY_CPU); /* this can take a while */
6036 s->e = dh_create_e(ssh->kex_ctx, s->nbits * 2);
6037 s->pktout = ssh2_pkt_init(s->kex_init_value);
6038 ssh2_pkt_addmp(s->pktout, s->e);
6039 ssh2_pkt_send_noqueue(ssh, s->pktout);
6040
6041 set_busy_status(ssh->frontend, BUSY_WAITING); /* wait for server */
6042 crWaitUntil(pktin);
6043 if (pktin->type != s->kex_reply_value) {
6044 bombout(("expected key exchange reply packet from server"));
6045 crStop(0);
6046 }
6047 set_busy_status(ssh->frontend, BUSY_CPU); /* cogitate */
6048 ssh_pkt_getstring(pktin, &s->hostkeydata, &s->hostkeylen);
6049 s->hkey = ssh->hostkey->newkey(s->hostkeydata, s->hostkeylen);
6050 s->f = ssh2_pkt_getmp(pktin);
6051 if (!s->f) {
6052 bombout(("unable to parse key exchange reply packet"));
6053 crStop(0);
6054 }
6055 ssh_pkt_getstring(pktin, &s->sigdata, &s->siglen);
6056
6057 s->K = dh_find_K(ssh->kex_ctx, s->f);
6058
6059 /* We assume everything from now on will be quick, and it might
6060 * involve user interaction. */
6061 set_busy_status(ssh->frontend, BUSY_NOT);
6062
6063 hash_string(ssh->kex->hash, ssh->exhash, s->hostkeydata, s->hostkeylen);
6064 if (!ssh->kex->pdata) {
6065 hash_uint32(ssh->kex->hash, ssh->exhash, s->pbits);
6066 hash_mpint(ssh->kex->hash, ssh->exhash, s->p);
6067 hash_mpint(ssh->kex->hash, ssh->exhash, s->g);
6068 }
6069 hash_mpint(ssh->kex->hash, ssh->exhash, s->e);
6070 hash_mpint(ssh->kex->hash, ssh->exhash, s->f);
6071
6072 dh_cleanup(ssh->kex_ctx);
6073 freebn(s->f);
6074 if (!ssh->kex->pdata) {
6075 freebn(s->g);
6076 freebn(s->p);
6077 }
6078 } else {
6079 logeventf(ssh, "Doing RSA key exchange with hash %s",
6080 ssh->kex->hash->text_name);
6081 ssh->pkt_kctx = SSH2_PKTCTX_RSAKEX;
6082 /*
6083 * RSA key exchange. First expect a KEXRSA_PUBKEY packet
6084 * from the server.
6085 */
6086 crWaitUntil(pktin);
6087 if (pktin->type != SSH2_MSG_KEXRSA_PUBKEY) {
6088 bombout(("expected RSA public key packet from server"));
6089 crStop(0);
6090 }
6091
6092 ssh_pkt_getstring(pktin, &s->hostkeydata, &s->hostkeylen);
6093 hash_string(ssh->kex->hash, ssh->exhash,
6094 s->hostkeydata, s->hostkeylen);
6095 s->hkey = ssh->hostkey->newkey(s->hostkeydata, s->hostkeylen);
6096
6097 {
6098 char *keydata;
6099 ssh_pkt_getstring(pktin, &keydata, &s->rsakeylen);
6100 s->rsakeydata = snewn(s->rsakeylen, char);
6101 memcpy(s->rsakeydata, keydata, s->rsakeylen);
6102 }
6103
6104 s->rsakey = ssh_rsakex_newkey(s->rsakeydata, s->rsakeylen);
6105 if (!s->rsakey) {
6106 sfree(s->rsakeydata);
6107 bombout(("unable to parse RSA public key from server"));
6108 crStop(0);
6109 }
6110
6111 hash_string(ssh->kex->hash, ssh->exhash, s->rsakeydata, s->rsakeylen);
6112
6113 /*
6114 * Next, set up a shared secret K, of precisely KLEN -
6115 * 2*HLEN - 49 bits, where KLEN is the bit length of the
6116 * RSA key modulus and HLEN is the bit length of the hash
6117 * we're using.
6118 */
6119 {
6120 int klen = ssh_rsakex_klen(s->rsakey);
6121 int nbits = klen - (2*ssh->kex->hash->hlen*8 + 49);
6122 int i, byte = 0;
6123 unsigned char *kstr1, *kstr2, *outstr;
6124 int kstr1len, kstr2len, outstrlen;
6125
6126 s->K = bn_power_2(nbits - 1);
6127
6128 for (i = 0; i < nbits; i++) {
6129 if ((i & 7) == 0) {
6130 byte = random_byte();
6131 }
6132 bignum_set_bit(s->K, i, (byte >> (i & 7)) & 1);
6133 }
6134
6135 /*
6136 * Encode this as an mpint.
6137 */
6138 kstr1 = ssh2_mpint_fmt(s->K, &kstr1len);
6139 kstr2 = snewn(kstr2len = 4 + kstr1len, unsigned char);
6140 PUT_32BIT(kstr2, kstr1len);
6141 memcpy(kstr2 + 4, kstr1, kstr1len);
6142
6143 /*
6144 * Encrypt it with the given RSA key.
6145 */
6146 outstrlen = (klen + 7) / 8;
6147 outstr = snewn(outstrlen, unsigned char);
6148 ssh_rsakex_encrypt(ssh->kex->hash, kstr2, kstr2len,
6149 outstr, outstrlen, s->rsakey);
6150
6151 /*
6152 * And send it off in a return packet.
6153 */
6154 s->pktout = ssh2_pkt_init(SSH2_MSG_KEXRSA_SECRET);
6155 ssh2_pkt_addstring_start(s->pktout);
6156 ssh2_pkt_addstring_data(s->pktout, (char *)outstr, outstrlen);
6157 ssh2_pkt_send_noqueue(ssh, s->pktout);
6158
6159 hash_string(ssh->kex->hash, ssh->exhash, outstr, outstrlen);
6160
6161 sfree(kstr2);
6162 sfree(kstr1);
6163 sfree(outstr);
6164 }
6165
6166 ssh_rsakex_freekey(s->rsakey);
6167
6168 crWaitUntil(pktin);
6169 if (pktin->type != SSH2_MSG_KEXRSA_DONE) {
6170 sfree(s->rsakeydata);
6171 bombout(("expected signature packet from server"));
6172 crStop(0);
6173 }
6174
6175 ssh_pkt_getstring(pktin, &s->sigdata, &s->siglen);
6176
6177 sfree(s->rsakeydata);
6178 }
6179
6180 hash_mpint(ssh->kex->hash, ssh->exhash, s->K);
6181 assert(ssh->kex->hash->hlen <= sizeof(s->exchange_hash));
6182 ssh->kex->hash->final(ssh->exhash, s->exchange_hash);
6183
6184 ssh->kex_ctx = NULL;
6185
6186 #if 0
6187 debug(("Exchange hash is:\n"));
6188 dmemdump(s->exchange_hash, ssh->kex->hash->hlen);
6189 #endif
6190
6191 if (!s->hkey ||
6192 !ssh->hostkey->verifysig(s->hkey, s->sigdata, s->siglen,
6193 (char *)s->exchange_hash,
6194 ssh->kex->hash->hlen)) {
6195 bombout(("Server's host key did not match the signature supplied"));
6196 crStop(0);
6197 }
6198
6199 /*
6200 * Authenticate remote host: verify host key. (We've already
6201 * checked the signature of the exchange hash.)
6202 */
6203 s->keystr = ssh->hostkey->fmtkey(s->hkey);
6204 s->fingerprint = ssh->hostkey->fingerprint(s->hkey);
6205 ssh_set_frozen(ssh, 1);
6206 s->dlgret = verify_ssh_host_key(ssh->frontend,
6207 ssh->savedhost, ssh->savedport,
6208 ssh->hostkey->keytype, s->keystr,
6209 s->fingerprint,
6210 ssh_dialog_callback, ssh);
6211 if (s->dlgret < 0) {
6212 do {
6213 crReturn(0);
6214 if (pktin) {
6215 bombout(("Unexpected data from server while waiting"
6216 " for user host key response"));
6217 crStop(0);
6218 }
6219 } while (pktin || inlen > 0);
6220 s->dlgret = ssh->user_response;
6221 }
6222 ssh_set_frozen(ssh, 0);
6223 if (s->dlgret == 0) {
6224 ssh_disconnect(ssh, "User aborted at host key verification", NULL,
6225 0, TRUE);
6226 crStop(0);
6227 }
6228 if (!s->got_session_id) { /* don't bother logging this in rekeys */
6229 logevent("Host key fingerprint is:");
6230 logevent(s->fingerprint);
6231 }
6232 sfree(s->fingerprint);
6233 sfree(s->keystr);
6234 ssh->hostkey->freekey(s->hkey);
6235
6236 /*
6237 * The exchange hash from the very first key exchange is also
6238 * the session id, used in session key construction and
6239 * authentication.
6240 */
6241 if (!s->got_session_id) {
6242 assert(sizeof(s->exchange_hash) <= sizeof(ssh->v2_session_id));
6243 memcpy(ssh->v2_session_id, s->exchange_hash,
6244 sizeof(s->exchange_hash));
6245 ssh->v2_session_id_len = ssh->kex->hash->hlen;
6246 assert(ssh->v2_session_id_len <= sizeof(ssh->v2_session_id));
6247 s->got_session_id = TRUE;
6248 }
6249
6250 /*
6251 * Send SSH2_MSG_NEWKEYS.
6252 */
6253 s->pktout = ssh2_pkt_init(SSH2_MSG_NEWKEYS);
6254 ssh2_pkt_send_noqueue(ssh, s->pktout);
6255 ssh->outgoing_data_size = 0; /* start counting from here */
6256
6257 /*
6258 * We've sent client NEWKEYS, so create and initialise
6259 * client-to-server session keys.
6260 */
6261 if (ssh->cs_cipher_ctx)
6262 ssh->cscipher->free_context(ssh->cs_cipher_ctx);
6263 ssh->cscipher = s->cscipher_tobe;
6264 ssh->cs_cipher_ctx = ssh->cscipher->make_context();
6265
6266 if (ssh->cs_mac_ctx)
6267 ssh->csmac->free_context(ssh->cs_mac_ctx);
6268 ssh->csmac = s->csmac_tobe;
6269 ssh->cs_mac_ctx = ssh->csmac->make_context();
6270
6271 if (ssh->cs_comp_ctx)
6272 ssh->cscomp->compress_cleanup(ssh->cs_comp_ctx);
6273 ssh->cscomp = s->cscomp_tobe;
6274 ssh->cs_comp_ctx = ssh->cscomp->compress_init();
6275
6276 /*
6277 * Set IVs on client-to-server keys. Here we use the exchange
6278 * hash from the _first_ key exchange.
6279 */
6280 {
6281 unsigned char keyspace[SSH2_KEX_MAX_HASH_LEN * SSH2_MKKEY_ITERS];
6282 assert(sizeof(keyspace) >= ssh->kex->hash->hlen * SSH2_MKKEY_ITERS);
6283 ssh2_mkkey(ssh,s->K,s->exchange_hash,'C',keyspace);
6284 assert((ssh->cscipher->keylen+7) / 8 <=
6285 ssh->kex->hash->hlen * SSH2_MKKEY_ITERS);
6286 ssh->cscipher->setkey(ssh->cs_cipher_ctx, keyspace);
6287 ssh2_mkkey(ssh,s->K,s->exchange_hash,'A',keyspace);
6288 assert(ssh->cscipher->blksize <=
6289 ssh->kex->hash->hlen * SSH2_MKKEY_ITERS);
6290 ssh->cscipher->setiv(ssh->cs_cipher_ctx, keyspace);
6291 ssh2_mkkey(ssh,s->K,s->exchange_hash,'E',keyspace);
6292 assert(ssh->csmac->len <=
6293 ssh->kex->hash->hlen * SSH2_MKKEY_ITERS);
6294 ssh->csmac->setkey(ssh->cs_mac_ctx, keyspace);
6295 smemclr(keyspace, sizeof(keyspace));
6296 }
6297
6298 logeventf(ssh, "Initialised %.200s client->server encryption",
6299 ssh->cscipher->text_name);
6300 logeventf(ssh, "Initialised %.200s client->server MAC algorithm",
6301 ssh->csmac->text_name);
6302 if (ssh->cscomp->text_name)
6303 logeventf(ssh, "Initialised %s compression",
6304 ssh->cscomp->text_name);
6305
6306 /*
6307 * Now our end of the key exchange is complete, we can send all
6308 * our queued higher-layer packets.
6309 */
6310 ssh->queueing = FALSE;
6311 ssh2_pkt_queuesend(ssh);
6312
6313 /*
6314 * Expect SSH2_MSG_NEWKEYS from server.
6315 */
6316 crWaitUntil(pktin);
6317 if (pktin->type != SSH2_MSG_NEWKEYS) {
6318 bombout(("expected new-keys packet from server"));
6319 crStop(0);
6320 }
6321 ssh->incoming_data_size = 0; /* start counting from here */
6322
6323 /*
6324 * We've seen server NEWKEYS, so create and initialise
6325 * server-to-client session keys.
6326 */
6327 if (ssh->sc_cipher_ctx)
6328 ssh->sccipher->free_context(ssh->sc_cipher_ctx);
6329 ssh->sccipher = s->sccipher_tobe;
6330 ssh->sc_cipher_ctx = ssh->sccipher->make_context();
6331
6332 if (ssh->sc_mac_ctx)
6333 ssh->scmac->free_context(ssh->sc_mac_ctx);
6334 ssh->scmac = s->scmac_tobe;
6335 ssh->sc_mac_ctx = ssh->scmac->make_context();
6336
6337 if (ssh->sc_comp_ctx)
6338 ssh->sccomp->decompress_cleanup(ssh->sc_comp_ctx);
6339 ssh->sccomp = s->sccomp_tobe;
6340 ssh->sc_comp_ctx = ssh->sccomp->decompress_init();
6341
6342 /*
6343 * Set IVs on server-to-client keys. Here we use the exchange
6344 * hash from the _first_ key exchange.
6345 */
6346 {
6347 unsigned char keyspace[SSH2_KEX_MAX_HASH_LEN * SSH2_MKKEY_ITERS];
6348 assert(sizeof(keyspace) >= ssh->kex->hash->hlen * SSH2_MKKEY_ITERS);
6349 ssh2_mkkey(ssh,s->K,s->exchange_hash,'D',keyspace);
6350 assert((ssh->sccipher->keylen+7) / 8 <=
6351 ssh->kex->hash->hlen * SSH2_MKKEY_ITERS);
6352 ssh->sccipher->setkey(ssh->sc_cipher_ctx, keyspace);
6353 ssh2_mkkey(ssh,s->K,s->exchange_hash,'B',keyspace);
6354 assert(ssh->sccipher->blksize <=
6355 ssh->kex->hash->hlen * SSH2_MKKEY_ITERS);
6356 ssh->sccipher->setiv(ssh->sc_cipher_ctx, keyspace);
6357 ssh2_mkkey(ssh,s->K,s->exchange_hash,'F',keyspace);
6358 assert(ssh->scmac->len <=
6359 ssh->kex->hash->hlen * SSH2_MKKEY_ITERS);
6360 ssh->scmac->setkey(ssh->sc_mac_ctx, keyspace);
6361 smemclr(keyspace, sizeof(keyspace));
6362 }
6363 logeventf(ssh, "Initialised %.200s server->client encryption",
6364 ssh->sccipher->text_name);
6365 logeventf(ssh, "Initialised %.200s server->client MAC algorithm",
6366 ssh->scmac->text_name);
6367 if (ssh->sccomp->text_name)
6368 logeventf(ssh, "Initialised %s decompression",
6369 ssh->sccomp->text_name);
6370
6371 /*
6372 * Free shared secret.
6373 */
6374 freebn(s->K);
6375
6376 /*
6377 * Key exchange is over. Loop straight back round if we have a
6378 * deferred rekey reason.
6379 */
6380 if (ssh->deferred_rekey_reason) {
6381 logevent(ssh->deferred_rekey_reason);
6382 pktin = NULL;
6383 ssh->deferred_rekey_reason = NULL;
6384 goto begin_key_exchange;
6385 }
6386
6387 /*
6388 * Otherwise, schedule a timer for our next rekey.
6389 */
6390 ssh->kex_in_progress = FALSE;
6391 ssh->last_rekey = GETTICKCOUNT();
6392 if (conf_get_int(ssh->conf, CONF_ssh_rekey_time) != 0)
6393 ssh->next_rekey = schedule_timer(conf_get_int(ssh->conf, CONF_ssh_rekey_time)*60*TICKSPERSEC,
6394 ssh2_timer, ssh);
6395
6396 /*
6397 * Now we're encrypting. Begin returning 1 to the protocol main
6398 * function so that other things can run on top of the
6399 * transport. If we ever see a KEXINIT, we must go back to the
6400 * start.
6401 *
6402 * We _also_ go back to the start if we see pktin==NULL and
6403 * inlen negative, because this is a special signal meaning
6404 * `initiate client-driven rekey', and `in' contains a message
6405 * giving the reason for the rekey.
6406 *
6407 * inlen==-1 means always initiate a rekey;
6408 * inlen==-2 means that userauth has completed successfully and
6409 * we should consider rekeying (for delayed compression).
6410 */
6411 while (!((pktin && pktin->type == SSH2_MSG_KEXINIT) ||
6412 (!pktin && inlen < 0))) {
6413 wait_for_rekey:
6414 if (!ssh->protocol_initial_phase_done) {
6415 ssh->protocol_initial_phase_done = TRUE;
6416 /*
6417 * Allow authconn to initialise itself.
6418 */
6419 do_ssh2_authconn(ssh, NULL, 0, NULL);
6420 }
6421 crReturn(1);
6422 }
6423 if (pktin) {
6424 logevent("Server initiated key re-exchange");
6425 } else {
6426 if (inlen == -2) {
6427 /*
6428 * authconn has seen a USERAUTH_SUCCEEDED. Time to enable
6429 * delayed compression, if it's available.
6430 *
6431 * draft-miller-secsh-compression-delayed-00 says that you
6432 * negotiate delayed compression in the first key exchange, and
6433 * both sides start compressing when the server has sent
6434 * USERAUTH_SUCCESS. This has a race condition -- the server
6435 * can't know when the client has seen it, and thus which incoming
6436 * packets it should treat as compressed.
6437 *
6438 * Instead, we do the initial key exchange without offering the
6439 * delayed methods, but note if the server offers them; when we
6440 * get here, if a delayed method was available that was higher
6441 * on our list than what we got, we initiate a rekey in which we
6442 * _do_ list the delayed methods (and hopefully get it as a
6443 * result). Subsequent rekeys will do the same.
6444 */
6445 assert(!s->userauth_succeeded); /* should only happen once */
6446 s->userauth_succeeded = TRUE;
6447 if (!s->pending_compression)
6448 /* Can't see any point rekeying. */
6449 goto wait_for_rekey; /* this is utterly horrid */
6450 /* else fall through to rekey... */
6451 s->pending_compression = FALSE;
6452 }
6453 /*
6454 * Now we've decided to rekey.
6455 *
6456 * Special case: if the server bug is set that doesn't
6457 * allow rekeying, we give a different log message and
6458 * continue waiting. (If such a server _initiates_ a rekey,
6459 * we process it anyway!)
6460 */
6461 if ((ssh->remote_bugs & BUG_SSH2_REKEY)) {
6462 logeventf(ssh, "Server bug prevents key re-exchange (%s)",
6463 (char *)in);
6464 /* Reset the counters, so that at least this message doesn't
6465 * hit the event log _too_ often. */
6466 ssh->outgoing_data_size = 0;
6467 ssh->incoming_data_size = 0;
6468 if (conf_get_int(ssh->conf, CONF_ssh_rekey_time) != 0) {
6469 ssh->next_rekey =
6470 schedule_timer(conf_get_int(ssh->conf, CONF_ssh_rekey_time)*60*TICKSPERSEC,
6471 ssh2_timer, ssh);
6472 }
6473 goto wait_for_rekey; /* this is still utterly horrid */
6474 } else {
6475 logeventf(ssh, "Initiating key re-exchange (%s)", (char *)in);
6476 }
6477 }
6478 goto begin_key_exchange;
6479
6480 crFinish(1);
6481 }
6482
6483 /*
6484 * Add data to an SSH-2 channel output buffer.
6485 */
6486 static void ssh2_add_channel_data(struct ssh_channel *c, char *buf,
6487 int len)
6488 {
6489 bufchain_add(&c->v.v2.outbuffer, buf, len);
6490 }
6491
6492 /*
6493 * Attempt to send data on an SSH-2 channel.
6494 */
6495 static int ssh2_try_send(struct ssh_channel *c)
6496 {
6497 Ssh ssh = c->ssh;
6498 struct Packet *pktout;
6499 int ret;
6500
6501 while (c->v.v2.remwindow > 0 && bufchain_size(&c->v.v2.outbuffer) > 0) {
6502 int len;
6503 void *data;
6504 bufchain_prefix(&c->v.v2.outbuffer, &data, &len);
6505 if ((unsigned)len > c->v.v2.remwindow)
6506 len = c->v.v2.remwindow;
6507 if ((unsigned)len > c->v.v2.remmaxpkt)
6508 len = c->v.v2.remmaxpkt;
6509 pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_DATA);
6510 ssh2_pkt_adduint32(pktout, c->remoteid);
6511 ssh2_pkt_addstring_start(pktout);
6512 dont_log_data(ssh, pktout, PKTLOG_OMIT);
6513 ssh2_pkt_addstring_data(pktout, data, len);
6514 end_log_omission(ssh, pktout);
6515 ssh2_pkt_send(ssh, pktout);
6516 bufchain_consume(&c->v.v2.outbuffer, len);
6517 c->v.v2.remwindow -= len;
6518 }
6519
6520 /*
6521 * After having sent as much data as we can, return the amount
6522 * still buffered.
6523 */
6524 ret = bufchain_size(&c->v.v2.outbuffer);
6525
6526 /*
6527 * And if there's no data pending but we need to send an EOF, send
6528 * it.
6529 */
6530 if (!ret && c->pending_eof)
6531 ssh_channel_try_eof(c);
6532
6533 return ret;
6534 }
6535
6536 static void ssh2_try_send_and_unthrottle(Ssh ssh, struct ssh_channel *c)
6537 {
6538 int bufsize;
6539 if (c->closes & CLOSES_SENT_EOF)
6540 return; /* don't send on channels we've EOFed */
6541 bufsize = ssh2_try_send(c);
6542 if (bufsize == 0) {
6543 switch (c->type) {
6544 case CHAN_MAINSESSION:
6545 /* stdin need not receive an unthrottle
6546 * notification since it will be polled */
6547 break;
6548 case CHAN_X11:
6549 x11_unthrottle(c->u.x11.s);
6550 break;
6551 case CHAN_AGENT:
6552 /* agent sockets are request/response and need no
6553 * buffer management */
6554 break;
6555 case CHAN_SOCKDATA:
6556 pfd_unthrottle(c->u.pfd.s);
6557 break;
6558 }
6559 }
6560 }
6561
6562 /*
6563 * Set up most of a new ssh_channel for SSH-2.
6564 */
6565 static void ssh2_channel_init(struct ssh_channel *c)
6566 {
6567 Ssh ssh = c->ssh;
6568 c->localid = alloc_channel_id(ssh);
6569 c->closes = 0;
6570 c->pending_eof = FALSE;
6571 c->throttling_conn = FALSE;
6572 c->v.v2.locwindow = c->v.v2.locmaxwin = c->v.v2.remlocwin =
6573 conf_get_int(ssh->conf, CONF_ssh_simple) ? OUR_V2_BIGWIN : OUR_V2_WINSIZE;
6574 c->v.v2.winadj_head = c->v.v2.winadj_tail = NULL;
6575 c->v.v2.throttle_state = UNTHROTTLED;
6576 bufchain_init(&c->v.v2.outbuffer);
6577 }
6578
6579 /*
6580 * Potentially enlarge the window on an SSH-2 channel.
6581 */
6582 static void ssh2_set_window(struct ssh_channel *c, int newwin)
6583 {
6584 Ssh ssh = c->ssh;
6585
6586 /*
6587 * Never send WINDOW_ADJUST for a channel that the remote side has
6588 * already sent EOF on; there's no point, since it won't be
6589 * sending any more data anyway. Ditto if _we've_ already sent
6590 * CLOSE.
6591 */
6592 if (c->closes & (CLOSES_RCVD_EOF | CLOSES_SENT_CLOSE))
6593 return;
6594
6595 /*
6596 * If the remote end has a habit of ignoring maxpkt, limit the
6597 * window so that it has no choice (assuming it doesn't ignore the
6598 * window as well).
6599 */
6600 if ((ssh->remote_bugs & BUG_SSH2_MAXPKT) && newwin > OUR_V2_MAXPKT)
6601 newwin = OUR_V2_MAXPKT;
6602
6603 /*
6604 * Only send a WINDOW_ADJUST if there's significantly more window
6605 * available than the other end thinks there is. This saves us
6606 * sending a WINDOW_ADJUST for every character in a shell session.
6607 *
6608 * "Significant" is arbitrarily defined as half the window size.
6609 */
6610 if (newwin / 2 >= c->v.v2.locwindow) {
6611 struct Packet *pktout;
6612 struct winadj *wa;
6613
6614 /*
6615 * In order to keep track of how much window the client
6616 * actually has available, we'd like it to acknowledge each
6617 * WINDOW_ADJUST. We can't do that directly, so we accompany
6618 * it with a CHANNEL_REQUEST that has to be acknowledged.
6619 *
6620 * This is only necessary if we're opening the window wide.
6621 * If we're not, then throughput is being constrained by
6622 * something other than the maximum window size anyway.
6623 *
6624 * We also only send this if the main channel has finished its
6625 * initial CHANNEL_REQUESTs and installed the default
6626 * CHANNEL_FAILURE handler, so as not to risk giving it
6627 * unexpected CHANNEL_FAILUREs.
6628 */
6629 if (newwin == c->v.v2.locmaxwin &&
6630 ssh->packet_dispatch[SSH2_MSG_CHANNEL_FAILURE] &&
6631 !(ssh->remote_bugs & BUG_CHOKES_ON_WINADJ)) {
6632 pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_REQUEST);
6633 ssh2_pkt_adduint32(pktout, c->remoteid);
6634 ssh2_pkt_addstring(pktout, "winadj@putty.projects.tartarus.org");
6635 ssh2_pkt_addbool(pktout, TRUE);
6636 ssh2_pkt_send(ssh, pktout);
6637
6638 /*
6639 * CHANNEL_FAILURE doesn't come with any indication of
6640 * what message caused it, so we have to keep track of the
6641 * outstanding CHANNEL_REQUESTs ourselves.
6642 */
6643 wa = snew(struct winadj);
6644 wa->size = newwin - c->v.v2.locwindow;
6645 wa->next = NULL;
6646 if (!c->v.v2.winadj_head)
6647 c->v.v2.winadj_head = wa;
6648 else
6649 c->v.v2.winadj_tail->next = wa;
6650 c->v.v2.winadj_tail = wa;
6651 if (c->v.v2.throttle_state != UNTHROTTLED)
6652 c->v.v2.throttle_state = UNTHROTTLING;
6653 } else {
6654 /* Pretend the WINDOW_ADJUST was acked immediately. */
6655 c->v.v2.remlocwin = newwin;
6656 c->v.v2.throttle_state = THROTTLED;
6657 }
6658 pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_WINDOW_ADJUST);
6659 ssh2_pkt_adduint32(pktout, c->remoteid);
6660 ssh2_pkt_adduint32(pktout, newwin - c->v.v2.locwindow);
6661 ssh2_pkt_send(ssh, pktout);
6662 c->v.v2.locwindow = newwin;
6663 }
6664 }
6665
6666 /*
6667 * Find the channel associated with a message. If there's no channel,
6668 * or it's not properly open, make a noise about it and return NULL.
6669 */
6670 static struct ssh_channel *ssh2_channel_msg(Ssh ssh, struct Packet *pktin)
6671 {
6672 unsigned localid = ssh_pkt_getuint32(pktin);
6673 struct ssh_channel *c;
6674
6675 c = find234(ssh->channels, &localid, ssh_channelfind);
6676 if (!c ||
6677 (c->halfopen && pktin->type != SSH2_MSG_CHANNEL_OPEN_CONFIRMATION &&
6678 pktin->type != SSH2_MSG_CHANNEL_OPEN_FAILURE)) {
6679 char *buf = dupprintf("Received %s for %s channel %u",
6680 ssh2_pkt_type(ssh->pkt_kctx, ssh->pkt_actx,
6681 pktin->type),
6682 c ? "half-open" : "nonexistent", localid);
6683 ssh_disconnect(ssh, NULL, buf, SSH2_DISCONNECT_PROTOCOL_ERROR, FALSE);
6684 sfree(buf);
6685 return NULL;
6686 }
6687 return c;
6688 }
6689
6690 static int ssh2_handle_winadj_response(struct ssh_channel *c)
6691 {
6692 struct winadj *wa = c->v.v2.winadj_head;
6693 if (!wa)
6694 return FALSE;
6695 c->v.v2.winadj_head = wa->next;
6696 c->v.v2.remlocwin += wa->size;
6697 sfree(wa);
6698 /*
6699 * winadj messages are only sent when the window is fully open, so
6700 * if we get an ack of one, we know any pending unthrottle is
6701 * complete.
6702 */
6703 if (c->v.v2.throttle_state == UNTHROTTLING)
6704 c->v.v2.throttle_state = UNTHROTTLED;
6705 /*
6706 * We may now initiate channel-closing procedures, if that winadj
6707 * was the last thing outstanding before we send CHANNEL_CLOSE.
6708 */
6709 ssh2_channel_check_close(c);
6710 return TRUE;
6711 }
6712
6713 static void ssh2_msg_channel_success(Ssh ssh, struct Packet *pktin)
6714 {
6715 /*
6716 * This should never get called. All channel requests are either
6717 * sent with want_reply false, are sent before this handler gets
6718 * installed, or are "winadj@putty" requests, which servers should
6719 * never respond to with success.
6720 *
6721 * However, at least one server ("boks_sshd") is known to return
6722 * SUCCESS for channel requests it's never heard of, such as
6723 * "winadj@putty". Raised with foxt.com as bug 090916-090424, but
6724 * for the sake of a quiet life, we handle it just the same as the
6725 * expected FAILURE.
6726 */
6727 struct ssh_channel *c;
6728
6729 c = ssh2_channel_msg(ssh, pktin);
6730 if (!c)
6731 return;
6732 if (!ssh2_handle_winadj_response(c))
6733 ssh_disconnect(ssh, NULL,
6734 "Received unsolicited SSH_MSG_CHANNEL_SUCCESS",
6735 SSH2_DISCONNECT_PROTOCOL_ERROR, FALSE);
6736 }
6737
6738 static void ssh2_msg_channel_failure(Ssh ssh, struct Packet *pktin)
6739 {
6740 /*
6741 * The only time this should get called is for "winadj@putty"
6742 * messages sent above. All other channel requests are either
6743 * sent with want_reply false or are sent before this handler gets
6744 * installed.
6745 */
6746 struct ssh_channel *c;
6747
6748 c = ssh2_channel_msg(ssh, pktin);
6749 if (!c)
6750 return;
6751 if (!ssh2_handle_winadj_response(c))
6752 ssh_disconnect(ssh, NULL,
6753 "Received unsolicited SSH_MSG_CHANNEL_FAILURE",
6754 SSH2_DISCONNECT_PROTOCOL_ERROR, FALSE);
6755 }
6756
6757 static void ssh2_msg_channel_window_adjust(Ssh ssh, struct Packet *pktin)
6758 {
6759 struct ssh_channel *c;
6760 c = ssh2_channel_msg(ssh, pktin);
6761 if (!c)
6762 return;
6763 if (!(c->closes & CLOSES_SENT_EOF)) {
6764 c->v.v2.remwindow += ssh_pkt_getuint32(pktin);
6765 ssh2_try_send_and_unthrottle(ssh, c);
6766 }
6767 }
6768
6769 static void ssh2_msg_channel_data(Ssh ssh, struct Packet *pktin)
6770 {
6771 char *data;
6772 int length;
6773 struct ssh_channel *c;
6774 c = ssh2_channel_msg(ssh, pktin);
6775 if (!c)
6776 return;
6777 if (pktin->type == SSH2_MSG_CHANNEL_EXTENDED_DATA &&
6778 ssh_pkt_getuint32(pktin) != SSH2_EXTENDED_DATA_STDERR)
6779 return; /* extended but not stderr */
6780 ssh_pkt_getstring(pktin, &data, &length);
6781 if (data) {
6782 int bufsize = 0;
6783 c->v.v2.locwindow -= length;
6784 c->v.v2.remlocwin -= length;
6785 switch (c->type) {
6786 case CHAN_MAINSESSION:
6787 bufsize =
6788 from_backend(ssh->frontend, pktin->type ==
6789 SSH2_MSG_CHANNEL_EXTENDED_DATA,
6790 data, length);
6791 break;
6792 case CHAN_X11:
6793 bufsize = x11_send(c->u.x11.s, data, length);
6794 break;
6795 case CHAN_SOCKDATA:
6796 bufsize = pfd_send(c->u.pfd.s, data, length);
6797 break;
6798 case CHAN_AGENT:
6799 while (length > 0) {
6800 if (c->u.a.lensofar < 4) {
6801 unsigned int l = min(4 - c->u.a.lensofar,
6802 (unsigned)length);
6803 memcpy(c->u.a.msglen + c->u.a.lensofar,
6804 data, l);
6805 data += l;
6806 length -= l;
6807 c->u.a.lensofar += l;
6808 }
6809 if (c->u.a.lensofar == 4) {
6810 c->u.a.totallen =
6811 4 + GET_32BIT(c->u.a.msglen);
6812 c->u.a.message = snewn(c->u.a.totallen,
6813 unsigned char);
6814 memcpy(c->u.a.message, c->u.a.msglen, 4);
6815 }
6816 if (c->u.a.lensofar >= 4 && length > 0) {
6817 unsigned int l =
6818 min(c->u.a.totallen - c->u.a.lensofar,
6819 (unsigned)length);
6820 memcpy(c->u.a.message + c->u.a.lensofar,
6821 data, l);
6822 data += l;
6823 length -= l;
6824 c->u.a.lensofar += l;
6825 }
6826 if (c->u.a.lensofar == c->u.a.totallen) {
6827 void *reply;
6828 int replylen;
6829 if (agent_query(c->u.a.message,
6830 c->u.a.totallen,
6831 &reply, &replylen,
6832 ssh_agentf_callback, c))
6833 ssh_agentf_callback(c, reply, replylen);
6834 sfree(c->u.a.message);
6835 c->u.a.message = NULL;
6836 c->u.a.lensofar = 0;
6837 }
6838 }
6839 bufsize = 0;
6840 break;
6841 }
6842 /*
6843 * If it looks like the remote end hit the end of its window,
6844 * and we didn't want it to do that, think about using a
6845 * larger window.
6846 */
6847 if (c->v.v2.remlocwin <= 0 && c->v.v2.throttle_state == UNTHROTTLED &&
6848 c->v.v2.locmaxwin < 0x40000000)
6849 c->v.v2.locmaxwin += OUR_V2_WINSIZE;
6850 /*
6851 * If we are not buffering too much data,
6852 * enlarge the window again at the remote side.
6853 * If we are buffering too much, we may still
6854 * need to adjust the window if the server's
6855 * sent excess data.
6856 */
6857 ssh2_set_window(c, bufsize < c->v.v2.locmaxwin ?
6858 c->v.v2.locmaxwin - bufsize : 0);
6859 /*
6860 * If we're either buffering way too much data, or if we're
6861 * buffering anything at all and we're in "simple" mode,
6862 * throttle the whole channel.
6863 */
6864 if ((bufsize > c->v.v2.locmaxwin ||
6865 (conf_get_int(ssh->conf, CONF_ssh_simple) && bufsize > 0)) &&
6866 !c->throttling_conn) {
6867 c->throttling_conn = 1;
6868 ssh_throttle_conn(ssh, +1);
6869 }
6870 }
6871 }
6872
6873 static void ssh_channel_destroy(struct ssh_channel *c)
6874 {
6875 Ssh ssh = c->ssh;
6876
6877 switch (c->type) {
6878 case CHAN_MAINSESSION:
6879 ssh->mainchan = NULL;
6880 update_specials_menu(ssh->frontend);
6881 break;
6882 case CHAN_X11:
6883 if (c->u.x11.s != NULL)
6884 x11_close(c->u.x11.s);
6885 logevent("Forwarded X11 connection terminated");
6886 break;
6887 case CHAN_AGENT:
6888 sfree(c->u.a.message);
6889 break;
6890 case CHAN_SOCKDATA:
6891 if (c->u.pfd.s != NULL)
6892 pfd_close(c->u.pfd.s);
6893 logevent("Forwarded port closed");
6894 break;
6895 }
6896
6897 del234(ssh->channels, c);
6898 if (ssh->version == 2)
6899 bufchain_clear(&c->v.v2.outbuffer);
6900 sfree(c);
6901
6902 /*
6903 * See if that was the last channel left open.
6904 * (This is only our termination condition if we're
6905 * not running in -N mode.)
6906 */
6907 if (ssh->version == 2 &&
6908 !conf_get_int(ssh->conf, CONF_ssh_no_shell) &&
6909 count234(ssh->channels) == 0) {
6910 /*
6911 * We used to send SSH_MSG_DISCONNECT here,
6912 * because I'd believed that _every_ conforming
6913 * SSH-2 connection had to end with a disconnect
6914 * being sent by at least one side; apparently
6915 * I was wrong and it's perfectly OK to
6916 * unceremoniously slam the connection shut
6917 * when you're done, and indeed OpenSSH feels
6918 * this is more polite than sending a
6919 * DISCONNECT. So now we don't.
6920 */
6921 ssh_disconnect(ssh, "All channels closed", NULL, 0, TRUE);
6922 }
6923 }
6924
6925 static void ssh2_channel_check_close(struct ssh_channel *c)
6926 {
6927 Ssh ssh = c->ssh;
6928 struct Packet *pktout;
6929
6930 if ((c->closes & (CLOSES_SENT_EOF | CLOSES_RCVD_EOF | CLOSES_SENT_CLOSE))
6931 == (CLOSES_SENT_EOF | CLOSES_RCVD_EOF) && !c->v.v2.winadj_head) {
6932 /*
6933 * We have both sent and received EOF, and we have no
6934 * outstanding winadj channel requests, which means the
6935 * channel is in final wind-up. But we haven't sent CLOSE, so
6936 * let's do so now.
6937 */
6938 pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_CLOSE);
6939 ssh2_pkt_adduint32(pktout, c->remoteid);
6940 ssh2_pkt_send(ssh, pktout);
6941 c->closes |= CLOSES_SENT_CLOSE;
6942 }
6943
6944 if (!((CLOSES_SENT_CLOSE | CLOSES_RCVD_CLOSE) & ~c->closes)) {
6945 /*
6946 * We have both sent and received CLOSE, which means we're
6947 * completely done with the channel.
6948 */
6949 ssh_channel_destroy(c);
6950 }
6951 }
6952
6953 static void ssh2_channel_got_eof(struct ssh_channel *c)
6954 {
6955 if (c->closes & CLOSES_RCVD_EOF)
6956 return; /* already seen EOF */
6957 c->closes |= CLOSES_RCVD_EOF;
6958
6959 if (c->type == CHAN_X11) {
6960 x11_send_eof(c->u.x11.s);
6961 } else if (c->type == CHAN_AGENT) {
6962 /* Manufacture an outgoing EOF in response to the incoming one. */
6963 sshfwd_write_eof(c);
6964 } else if (c->type == CHAN_SOCKDATA) {
6965 pfd_send_eof(c->u.pfd.s);
6966 } else if (c->type == CHAN_MAINSESSION) {
6967 Ssh ssh = c->ssh;
6968
6969 if (!ssh->sent_console_eof &&
6970 (from_backend_eof(ssh->frontend) || ssh->got_pty)) {
6971 /*
6972 * Either from_backend_eof told us that the front end
6973 * wants us to close the outgoing side of the connection
6974 * as soon as we see EOF from the far end, or else we've
6975 * unilaterally decided to do that because we've allocated
6976 * a remote pty and hence EOF isn't a particularly
6977 * meaningful concept.
6978 */
6979 sshfwd_write_eof(c);
6980 }
6981 ssh->sent_console_eof = TRUE;
6982 }
6983
6984 ssh2_channel_check_close(c);
6985 }
6986
6987 static void ssh2_msg_channel_eof(Ssh ssh, struct Packet *pktin)
6988 {
6989 struct ssh_channel *c;
6990
6991 c = ssh2_channel_msg(ssh, pktin);
6992 if (!c)
6993 return;
6994 ssh2_channel_got_eof(c);
6995 }
6996
6997 static void ssh2_msg_channel_close(Ssh ssh, struct Packet *pktin)
6998 {
6999 struct ssh_channel *c;
7000
7001 c = ssh2_channel_msg(ssh, pktin);
7002 if (!c)
7003 return;
7004
7005 /*
7006 * When we receive CLOSE on a channel, we assume it comes with an
7007 * implied EOF if we haven't seen EOF yet.
7008 */
7009 ssh2_channel_got_eof(c);
7010
7011 /*
7012 * And we also send an outgoing EOF, if we haven't already, on the
7013 * assumption that CLOSE is a pretty forceful announcement that
7014 * the remote side is doing away with the entire channel. (If it
7015 * had wanted to send us EOF and continue receiving data from us,
7016 * it would have just sent CHANNEL_EOF.)
7017 */
7018 if (!(c->closes & CLOSES_SENT_EOF)) {
7019 /*
7020 * Make sure we don't read any more from whatever our local
7021 * data source is for this channel.
7022 */
7023 switch (c->type) {
7024 case CHAN_MAINSESSION:
7025 ssh->send_ok = 0; /* stop trying to read from stdin */
7026 break;
7027 case CHAN_X11:
7028 x11_override_throttle(c->u.x11.s, 1);
7029 break;
7030 case CHAN_SOCKDATA:
7031 pfd_override_throttle(c->u.pfd.s, 1);
7032 break;
7033 }
7034
7035 /*
7036 * Send outgoing EOF.
7037 */
7038 sshfwd_write_eof(c);
7039 }
7040
7041 /*
7042 * Now process the actual close.
7043 */
7044 if (!(c->closes & CLOSES_RCVD_CLOSE)) {
7045 c->closes |= CLOSES_RCVD_CLOSE;
7046 ssh2_channel_check_close(c);
7047 }
7048 }
7049
7050 static void ssh2_msg_channel_open_confirmation(Ssh ssh, struct Packet *pktin)
7051 {
7052 struct ssh_channel *c;
7053
7054 c = ssh2_channel_msg(ssh, pktin);
7055 if (!c)
7056 return;
7057 if (c->type != CHAN_SOCKDATA_DORMANT)
7058 return; /* dunno why they're confirming this */
7059 c->remoteid = ssh_pkt_getuint32(pktin);
7060 c->halfopen = FALSE;
7061 c->type = CHAN_SOCKDATA;
7062 c->v.v2.remwindow = ssh_pkt_getuint32(pktin);
7063 c->v.v2.remmaxpkt = ssh_pkt_getuint32(pktin);
7064 if (c->u.pfd.s)
7065 pfd_confirm(c->u.pfd.s);
7066 if (c->pending_eof)
7067 ssh_channel_try_eof(c);
7068 }
7069
7070 static void ssh2_msg_channel_open_failure(Ssh ssh, struct Packet *pktin)
7071 {
7072 static const char *const reasons[] = {
7073 "<unknown reason code>",
7074 "Administratively prohibited",
7075 "Connect failed",
7076 "Unknown channel type",
7077 "Resource shortage",
7078 };
7079 unsigned reason_code;
7080 char *reason_string;
7081 int reason_length;
7082 struct ssh_channel *c;
7083 c = ssh2_channel_msg(ssh, pktin);
7084 if (!c)
7085 return;
7086 if (c->type != CHAN_SOCKDATA_DORMANT)
7087 return; /* dunno why they're failing this */
7088
7089 reason_code = ssh_pkt_getuint32(pktin);
7090 if (reason_code >= lenof(reasons))
7091 reason_code = 0; /* ensure reasons[reason_code] in range */
7092 ssh_pkt_getstring(pktin, &reason_string, &reason_length);
7093 logeventf(ssh, "Forwarded connection refused by server: %s [%.*s]",
7094 reasons[reason_code], reason_length, reason_string);
7095
7096 pfd_close(c->u.pfd.s);
7097
7098 del234(ssh->channels, c);
7099 sfree(c);
7100 }
7101
7102 static void ssh2_msg_channel_request(Ssh ssh, struct Packet *pktin)
7103 {
7104 char *type;
7105 int typelen, want_reply;
7106 int reply = SSH2_MSG_CHANNEL_FAILURE; /* default */
7107 struct ssh_channel *c;
7108 struct Packet *pktout;
7109
7110 c = ssh2_channel_msg(ssh, pktin);
7111 if (!c)
7112 return;
7113 ssh_pkt_getstring(pktin, &type, &typelen);
7114 want_reply = ssh2_pkt_getbool(pktin);
7115
7116 /*
7117 * Having got the channel number, we now look at
7118 * the request type string to see if it's something
7119 * we recognise.
7120 */
7121 if (c == ssh->mainchan) {
7122 /*
7123 * We recognise "exit-status" and "exit-signal" on
7124 * the primary channel.
7125 */
7126 if (typelen == 11 &&
7127 !memcmp(type, "exit-status", 11)) {
7128
7129 ssh->exitcode = ssh_pkt_getuint32(pktin);
7130 logeventf(ssh, "Server sent command exit status %d",
7131 ssh->exitcode);
7132 reply = SSH2_MSG_CHANNEL_SUCCESS;
7133
7134 } else if (typelen == 11 &&
7135 !memcmp(type, "exit-signal", 11)) {
7136
7137 int is_plausible = TRUE, is_int = FALSE;
7138 char *fmt_sig = "", *fmt_msg = "";
7139 char *msg;
7140 int msglen = 0, core = FALSE;
7141 /* ICK: older versions of OpenSSH (e.g. 3.4p1)
7142 * provide an `int' for the signal, despite its
7143 * having been a `string' in the drafts of RFC 4254 since at
7144 * least 2001. (Fixed in session.c 1.147.) Try to
7145 * infer which we can safely parse it as. */
7146 {
7147 unsigned char *p = pktin->body +
7148 pktin->savedpos;
7149 long len = pktin->length - pktin->savedpos;
7150 unsigned long num = GET_32BIT(p); /* what is it? */
7151 /* If it's 0, it hardly matters; assume string */
7152 if (num == 0) {
7153 is_int = FALSE;
7154 } else {
7155 int maybe_int = FALSE, maybe_str = FALSE;
7156 #define CHECK_HYPOTHESIS(offset, result) \
7157 do { \
7158 long q = offset; \
7159 if (q >= 0 && q+4 <= len) { \
7160 q = q + 4 + GET_32BIT(p+q); \
7161 if (q >= 0 && q+4 <= len && \
7162 ((q = q + 4 + GET_32BIT(p+q))!= 0) && q == len) \
7163 result = TRUE; \
7164 } \
7165 } while(0)
7166 CHECK_HYPOTHESIS(4+1, maybe_int);
7167 CHECK_HYPOTHESIS(4+num+1, maybe_str);
7168 #undef CHECK_HYPOTHESIS
7169 if (maybe_int && !maybe_str)
7170 is_int = TRUE;
7171 else if (!maybe_int && maybe_str)
7172 is_int = FALSE;
7173 else
7174 /* Crikey. Either or neither. Panic. */
7175 is_plausible = FALSE;
7176 }
7177 }
7178 ssh->exitcode = 128; /* means `unknown signal' */
7179 if (is_plausible) {
7180 if (is_int) {
7181 /* Old non-standard OpenSSH. */
7182 int signum = ssh_pkt_getuint32(pktin);
7183 fmt_sig = dupprintf(" %d", signum);
7184 ssh->exitcode = 128 + signum;
7185 } else {
7186 /* As per RFC 4254. */
7187 char *sig;
7188 int siglen;
7189 ssh_pkt_getstring(pktin, &sig, &siglen);
7190 /* Signal name isn't supposed to be blank, but
7191 * let's cope gracefully if it is. */
7192 if (siglen) {
7193 fmt_sig = dupprintf(" \"%.*s\"",
7194 siglen, sig);
7195 }
7196
7197 /*
7198 * Really hideous method of translating the
7199 * signal description back into a locally
7200 * meaningful number.
7201 */
7202
7203 if (0)
7204 ;
7205 #define TRANSLATE_SIGNAL(s) \
7206 else if (siglen == lenof(#s)-1 && !memcmp(sig, #s, siglen)) \
7207 ssh->exitcode = 128 + SIG ## s
7208 #ifdef SIGABRT
7209 TRANSLATE_SIGNAL(ABRT);
7210 #endif
7211 #ifdef SIGALRM
7212 TRANSLATE_SIGNAL(ALRM);
7213 #endif
7214 #ifdef SIGFPE
7215 TRANSLATE_SIGNAL(FPE);
7216 #endif
7217 #ifdef SIGHUP
7218 TRANSLATE_SIGNAL(HUP);
7219 #endif
7220 #ifdef SIGILL
7221 TRANSLATE_SIGNAL(ILL);
7222 #endif
7223 #ifdef SIGINT
7224 TRANSLATE_SIGNAL(INT);
7225 #endif
7226 #ifdef SIGKILL
7227 TRANSLATE_SIGNAL(KILL);
7228 #endif
7229 #ifdef SIGPIPE
7230 TRANSLATE_SIGNAL(PIPE);
7231 #endif
7232 #ifdef SIGQUIT
7233 TRANSLATE_SIGNAL(QUIT);
7234 #endif
7235 #ifdef SIGSEGV
7236 TRANSLATE_SIGNAL(SEGV);
7237 #endif
7238 #ifdef SIGTERM
7239 TRANSLATE_SIGNAL(TERM);
7240 #endif
7241 #ifdef SIGUSR1
7242 TRANSLATE_SIGNAL(USR1);
7243 #endif
7244 #ifdef SIGUSR2
7245 TRANSLATE_SIGNAL(USR2);
7246 #endif
7247 #undef TRANSLATE_SIGNAL
7248 else
7249 ssh->exitcode = 128;
7250 }
7251 core = ssh2_pkt_getbool(pktin);
7252 ssh_pkt_getstring(pktin, &msg, &msglen);
7253 if (msglen) {
7254 fmt_msg = dupprintf(" (\"%.*s\")", msglen, msg);
7255 }
7256 /* ignore lang tag */
7257 } /* else don't attempt to parse */
7258 logeventf(ssh, "Server exited on signal%s%s%s",
7259 fmt_sig, core ? " (core dumped)" : "",
7260 fmt_msg);
7261 if (*fmt_sig) sfree(fmt_sig);
7262 if (*fmt_msg) sfree(fmt_msg);
7263 reply = SSH2_MSG_CHANNEL_SUCCESS;
7264
7265 }
7266 } else {
7267 /*
7268 * This is a channel request we don't know
7269 * about, so we now either ignore the request
7270 * or respond with CHANNEL_FAILURE, depending
7271 * on want_reply.
7272 */
7273 reply = SSH2_MSG_CHANNEL_FAILURE;
7274 }
7275 if (want_reply) {
7276 pktout = ssh2_pkt_init(reply);
7277 ssh2_pkt_adduint32(pktout, c->remoteid);
7278 ssh2_pkt_send(ssh, pktout);
7279 }
7280 }
7281
7282 static void ssh2_msg_global_request(Ssh ssh, struct Packet *pktin)
7283 {
7284 char *type;
7285 int typelen, want_reply;
7286 struct Packet *pktout;
7287
7288 ssh_pkt_getstring(pktin, &type, &typelen);
7289 want_reply = ssh2_pkt_getbool(pktin);
7290
7291 /*
7292 * We currently don't support any global requests
7293 * at all, so we either ignore the request or
7294 * respond with REQUEST_FAILURE, depending on
7295 * want_reply.
7296 */
7297 if (want_reply) {
7298 pktout = ssh2_pkt_init(SSH2_MSG_REQUEST_FAILURE);
7299 ssh2_pkt_send(ssh, pktout);
7300 }
7301 }
7302
7303 static void ssh2_msg_channel_open(Ssh ssh, struct Packet *pktin)
7304 {
7305 char *type;
7306 int typelen;
7307 char *peeraddr;
7308 int peeraddrlen;
7309 int peerport;
7310 char *error = NULL;
7311 struct ssh_channel *c;
7312 unsigned remid, winsize, pktsize;
7313 struct Packet *pktout;
7314
7315 ssh_pkt_getstring(pktin, &type, &typelen);
7316 c = snew(struct ssh_channel);
7317 c->ssh = ssh;
7318
7319 remid = ssh_pkt_getuint32(pktin);
7320 winsize = ssh_pkt_getuint32(pktin);
7321 pktsize = ssh_pkt_getuint32(pktin);
7322
7323 if (typelen == 3 && !memcmp(type, "x11", 3)) {
7324 char *addrstr;
7325 const char *x11err;
7326
7327 ssh_pkt_getstring(pktin, &peeraddr, &peeraddrlen);
7328 addrstr = snewn(peeraddrlen+1, char);
7329 memcpy(addrstr, peeraddr, peeraddrlen);
7330 addrstr[peeraddrlen] = '\0';
7331 peerport = ssh_pkt_getuint32(pktin);
7332
7333 logeventf(ssh, "Received X11 connect request from %s:%d",
7334 addrstr, peerport);
7335
7336 if (!ssh->X11_fwd_enabled)
7337 error = "X11 forwarding is not enabled";
7338 else if ((x11err = x11_init(&c->u.x11.s, ssh->x11disp, c,
7339 addrstr, peerport, ssh->conf)) != NULL) {
7340 logeventf(ssh, "Local X11 connection failed: %s", x11err);
7341 error = "Unable to open an X11 connection";
7342 } else {
7343 logevent("Opening X11 forward connection succeeded");
7344 c->type = CHAN_X11;
7345 }
7346
7347 sfree(addrstr);
7348 } else if (typelen == 15 &&
7349 !memcmp(type, "forwarded-tcpip", 15)) {
7350 struct ssh_rportfwd pf, *realpf;
7351 char *dummy;
7352 int dummylen;
7353 ssh_pkt_getstring(pktin, &dummy, &dummylen);/* skip address */
7354 pf.sport = ssh_pkt_getuint32(pktin);
7355 ssh_pkt_getstring(pktin, &peeraddr, &peeraddrlen);
7356 peerport = ssh_pkt_getuint32(pktin);
7357 realpf = find234(ssh->rportfwds, &pf, NULL);
7358 logeventf(ssh, "Received remote port %d open request "
7359 "from %s:%d", pf.sport, peeraddr, peerport);
7360 if (realpf == NULL) {
7361 error = "Remote port is not recognised";
7362 } else {
7363 const char *e = pfd_newconnect(&c->u.pfd.s,
7364 realpf->dhost,
7365 realpf->dport, c,
7366 ssh->conf,
7367 realpf->pfrec->addressfamily);
7368 logeventf(ssh, "Attempting to forward remote port to "
7369 "%s:%d", realpf->dhost, realpf->dport);
7370 if (e != NULL) {
7371 logeventf(ssh, "Port open failed: %s", e);
7372 error = "Port open failed";
7373 } else {
7374 logevent("Forwarded port opened successfully");
7375 c->type = CHAN_SOCKDATA;
7376 }
7377 }
7378 } else if (typelen == 22 &&
7379 !memcmp(type, "auth-agent@openssh.com", 22)) {
7380 if (!ssh->agentfwd_enabled)
7381 error = "Agent forwarding is not enabled";
7382 else {
7383 c->type = CHAN_AGENT; /* identify channel type */
7384 c->u.a.lensofar = 0;
7385 }
7386 } else {
7387 error = "Unsupported channel type requested";
7388 }
7389
7390 c->remoteid = remid;
7391 c->halfopen = FALSE;
7392 if (error) {
7393 pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_OPEN_FAILURE);
7394 ssh2_pkt_adduint32(pktout, c->remoteid);
7395 ssh2_pkt_adduint32(pktout, SSH2_OPEN_CONNECT_FAILED);
7396 ssh2_pkt_addstring(pktout, error);
7397 ssh2_pkt_addstring(pktout, "en"); /* language tag */
7398 ssh2_pkt_send(ssh, pktout);
7399 logeventf(ssh, "Rejected channel open: %s", error);
7400 sfree(c);
7401 } else {
7402 ssh2_channel_init(c);
7403 c->v.v2.remwindow = winsize;
7404 c->v.v2.remmaxpkt = pktsize;
7405 add234(ssh->channels, c);
7406 pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_OPEN_CONFIRMATION);
7407 ssh2_pkt_adduint32(pktout, c->remoteid);
7408 ssh2_pkt_adduint32(pktout, c->localid);
7409 ssh2_pkt_adduint32(pktout, c->v.v2.locwindow);
7410 ssh2_pkt_adduint32(pktout, OUR_V2_MAXPKT); /* our max pkt size */
7411 ssh2_pkt_send(ssh, pktout);
7412 }
7413 }
7414
7415 /*
7416 * Buffer banner messages for later display at some convenient point,
7417 * if we're going to display them.
7418 */
7419 static void ssh2_msg_userauth_banner(Ssh ssh, struct Packet *pktin)
7420 {
7421 /* Arbitrary limit to prevent unbounded inflation of buffer */
7422 if (conf_get_int(ssh->conf, CONF_ssh_show_banner) &&
7423 bufchain_size(&ssh->banner) <= 131072) {
7424 char *banner = NULL;
7425 int size = 0;
7426 ssh_pkt_getstring(pktin, &banner, &size);
7427 if (banner)
7428 bufchain_add(&ssh->banner, banner, size);
7429 }
7430 }
7431
7432 /* Helper function to deal with sending tty modes for "pty-req" */
7433 static void ssh2_send_ttymode(void *data, char *mode, char *val)
7434 {
7435 struct Packet *pktout = (struct Packet *)data;
7436 int i = 0;
7437 unsigned int arg = 0;
7438 while (strcmp(mode, ssh_ttymodes[i].mode) != 0) i++;
7439 if (i == lenof(ssh_ttymodes)) return;
7440 switch (ssh_ttymodes[i].type) {
7441 case TTY_OP_CHAR:
7442 arg = ssh_tty_parse_specchar(val);
7443 break;
7444 case TTY_OP_BOOL:
7445 arg = ssh_tty_parse_boolean(val);
7446 break;
7447 }
7448 ssh2_pkt_addbyte(pktout, ssh_ttymodes[i].opcode);
7449 ssh2_pkt_adduint32(pktout, arg);
7450 }
7451
7452 /*
7453 * Handle the SSH-2 userauth and connection layers.
7454 */
7455 static void ssh2_msg_authconn(Ssh ssh, struct Packet *pktin)
7456 {
7457 do_ssh2_authconn(ssh, NULL, 0, pktin);
7458 }
7459
7460 static void do_ssh2_authconn(Ssh ssh, unsigned char *in, int inlen,
7461 struct Packet *pktin)
7462 {
7463 struct do_ssh2_authconn_state {
7464 int crLine;
7465 enum {
7466 AUTH_TYPE_NONE,
7467 AUTH_TYPE_PUBLICKEY,
7468 AUTH_TYPE_PUBLICKEY_OFFER_LOUD,
7469 AUTH_TYPE_PUBLICKEY_OFFER_QUIET,
7470 AUTH_TYPE_PASSWORD,
7471 AUTH_TYPE_GSSAPI, /* always QUIET */
7472 AUTH_TYPE_KEYBOARD_INTERACTIVE,
7473 AUTH_TYPE_KEYBOARD_INTERACTIVE_QUIET
7474 } type;
7475 int done_service_req;
7476 int gotit, need_pw, can_pubkey, can_passwd, can_keyb_inter;
7477 int tried_pubkey_config, done_agent;
7478 #ifndef NO_GSSAPI
7479 int can_gssapi;
7480 int tried_gssapi;
7481 #endif
7482 int kbd_inter_refused;
7483 int we_are_in, userauth_success;
7484 prompts_t *cur_prompt;
7485 int num_prompts;
7486 char *username;
7487 char *password;
7488 int got_username;
7489 void *publickey_blob;
7490 int publickey_bloblen;
7491 int publickey_encrypted;
7492 char *publickey_algorithm;
7493 char *publickey_comment;
7494 unsigned char agent_request[5], *agent_response, *agentp;
7495 int agent_responselen;
7496 unsigned char *pkblob_in_agent;
7497 int keyi, nkeys;
7498 char *pkblob, *alg, *commentp;
7499 int pklen, alglen, commentlen;
7500 int siglen, retlen, len;
7501 char *q, *agentreq, *ret;
7502 int try_send;
7503 int requested_x11;
7504 int requested_agent;
7505 int requested_tty;
7506 int num_env, env_left, env_ok;
7507 struct Packet *pktout;
7508 Filename *keyfile;
7509 #ifndef NO_GSSAPI
7510 struct ssh_gss_library *gsslib;
7511 Ssh_gss_ctx gss_ctx;
7512 Ssh_gss_buf gss_buf;
7513 Ssh_gss_buf gss_rcvtok, gss_sndtok;
7514 Ssh_gss_name gss_srv_name;
7515 Ssh_gss_stat gss_stat;
7516 #endif
7517 };
7518 crState(do_ssh2_authconn_state);
7519
7520 crBeginState;
7521
7522 /* Register as a handler for all the messages this coroutine handles. */
7523 ssh->packet_dispatch[SSH2_MSG_SERVICE_ACCEPT] = ssh2_msg_authconn;
7524 ssh->packet_dispatch[SSH2_MSG_USERAUTH_REQUEST] = ssh2_msg_authconn;
7525 ssh->packet_dispatch[SSH2_MSG_USERAUTH_FAILURE] = ssh2_msg_authconn;
7526 ssh->packet_dispatch[SSH2_MSG_USERAUTH_SUCCESS] = ssh2_msg_authconn;
7527 ssh->packet_dispatch[SSH2_MSG_USERAUTH_BANNER] = ssh2_msg_authconn;
7528 ssh->packet_dispatch[SSH2_MSG_USERAUTH_PK_OK] = ssh2_msg_authconn;
7529 /* ssh->packet_dispatch[SSH2_MSG_USERAUTH_PASSWD_CHANGEREQ] = ssh2_msg_authconn; duplicate case value */
7530 /* ssh->packet_dispatch[SSH2_MSG_USERAUTH_INFO_REQUEST] = ssh2_msg_authconn; duplicate case value */
7531 ssh->packet_dispatch[SSH2_MSG_USERAUTH_INFO_RESPONSE] = ssh2_msg_authconn;
7532 ssh->packet_dispatch[SSH2_MSG_GLOBAL_REQUEST] = ssh2_msg_authconn;
7533 ssh->packet_dispatch[SSH2_MSG_REQUEST_SUCCESS] = ssh2_msg_authconn;
7534 ssh->packet_dispatch[SSH2_MSG_REQUEST_FAILURE] = ssh2_msg_authconn;
7535 ssh->packet_dispatch[SSH2_MSG_CHANNEL_OPEN] = ssh2_msg_authconn;
7536 ssh->packet_dispatch[SSH2_MSG_CHANNEL_OPEN_CONFIRMATION] = ssh2_msg_authconn;
7537 ssh->packet_dispatch[SSH2_MSG_CHANNEL_OPEN_FAILURE] = ssh2_msg_authconn;
7538 ssh->packet_dispatch[SSH2_MSG_CHANNEL_WINDOW_ADJUST] = ssh2_msg_authconn;
7539 ssh->packet_dispatch[SSH2_MSG_CHANNEL_DATA] = ssh2_msg_authconn;
7540 ssh->packet_dispatch[SSH2_MSG_CHANNEL_EXTENDED_DATA] = ssh2_msg_authconn;
7541 ssh->packet_dispatch[SSH2_MSG_CHANNEL_EOF] = ssh2_msg_authconn;
7542 ssh->packet_dispatch[SSH2_MSG_CHANNEL_CLOSE] = ssh2_msg_authconn;
7543 ssh->packet_dispatch[SSH2_MSG_CHANNEL_REQUEST] = ssh2_msg_authconn;
7544 ssh->packet_dispatch[SSH2_MSG_CHANNEL_SUCCESS] = ssh2_msg_authconn;
7545 ssh->packet_dispatch[SSH2_MSG_CHANNEL_FAILURE] = ssh2_msg_authconn;
7546
7547 s->done_service_req = FALSE;
7548 s->we_are_in = s->userauth_success = FALSE;
7549 #ifndef NO_GSSAPI
7550 s->tried_gssapi = FALSE;
7551 #endif
7552
7553 if (!conf_get_int(ssh->conf, CONF_ssh_no_userauth)) {
7554 /*
7555 * Request userauth protocol, and await a response to it.
7556 */
7557 s->pktout = ssh2_pkt_init(SSH2_MSG_SERVICE_REQUEST);
7558 ssh2_pkt_addstring(s->pktout, "ssh-userauth");
7559 ssh2_pkt_send(ssh, s->pktout);
7560 crWaitUntilV(pktin);
7561 if (pktin->type == SSH2_MSG_SERVICE_ACCEPT)
7562 s->done_service_req = TRUE;
7563 }
7564 if (!s->done_service_req) {
7565 /*
7566 * Request connection protocol directly, without authentication.
7567 */
7568 s->pktout = ssh2_pkt_init(SSH2_MSG_SERVICE_REQUEST);
7569 ssh2_pkt_addstring(s->pktout, "ssh-connection");
7570 ssh2_pkt_send(ssh, s->pktout);
7571 crWaitUntilV(pktin);
7572 if (pktin->type == SSH2_MSG_SERVICE_ACCEPT) {
7573 s->we_are_in = TRUE; /* no auth required */
7574 } else {
7575 bombout(("Server refused service request"));
7576 crStopV;
7577 }
7578 }
7579
7580 /* Arrange to be able to deal with any BANNERs that come in.
7581 * (We do this now as packets may come in during the next bit.) */
7582 bufchain_init(&ssh->banner);
7583 ssh->packet_dispatch[SSH2_MSG_USERAUTH_BANNER] =
7584 ssh2_msg_userauth_banner;
7585
7586 /*
7587 * Misc one-time setup for authentication.
7588 */
7589 s->publickey_blob = NULL;
7590 if (!s->we_are_in) {
7591
7592 /*
7593 * Load the public half of any configured public key file
7594 * for later use.
7595 */
7596 s->keyfile = conf_get_filename(ssh->conf, CONF_keyfile);
7597 if (!filename_is_null(s->keyfile)) {
7598 int keytype;
7599 logeventf(ssh, "Reading private key file \"%.150s\"",
7600 filename_to_str(s->keyfile));
7601 keytype = key_type(s->keyfile);
7602 if (keytype == SSH_KEYTYPE_SSH2) {
7603 const char *error;
7604 s->publickey_blob =
7605 ssh2_userkey_loadpub(s->keyfile,
7606 &s->publickey_algorithm,
7607 &s->publickey_bloblen,
7608 &s->publickey_comment, &error);
7609 if (s->publickey_blob) {
7610 s->publickey_encrypted =
7611 ssh2_userkey_encrypted(s->keyfile, NULL);
7612 } else {
7613 char *msgbuf;
7614 logeventf(ssh, "Unable to load private key (%s)",
7615 error);
7616 msgbuf = dupprintf("Unable to load private key file "
7617 "\"%.150s\" (%s)\r\n",
7618 filename_to_str(s->keyfile),
7619 error);
7620 c_write_str(ssh, msgbuf);
7621 sfree(msgbuf);
7622 }
7623 } else {
7624 char *msgbuf;
7625 logeventf(ssh, "Unable to use this key file (%s)",
7626 key_type_to_str(keytype));
7627 msgbuf = dupprintf("Unable to use key file \"%.150s\""
7628 " (%s)\r\n",
7629 filename_to_str(s->keyfile),
7630 key_type_to_str(keytype));
7631 c_write_str(ssh, msgbuf);
7632 sfree(msgbuf);
7633 s->publickey_blob = NULL;
7634 }
7635 }
7636
7637 /*
7638 * Find out about any keys Pageant has (but if there's a
7639 * public key configured, filter out all others).
7640 */
7641 s->nkeys = 0;
7642 s->agent_response = NULL;
7643 s->pkblob_in_agent = NULL;
7644 if (conf_get_int(ssh->conf, CONF_tryagent) && agent_exists()) {
7645
7646 void *r;
7647
7648 logevent("Pageant is running. Requesting keys.");
7649
7650 /* Request the keys held by the agent. */
7651 PUT_32BIT(s->agent_request, 1);
7652 s->agent_request[4] = SSH2_AGENTC_REQUEST_IDENTITIES;
7653 if (!agent_query(s->agent_request, 5, &r, &s->agent_responselen,
7654 ssh_agent_callback, ssh)) {
7655 do {
7656 crReturnV;
7657 if (pktin) {
7658 bombout(("Unexpected data from server while"
7659 " waiting for agent response"));
7660 crStopV;
7661 }
7662 } while (pktin || inlen > 0);
7663 r = ssh->agent_response;
7664 s->agent_responselen = ssh->agent_response_len;
7665 }
7666 s->agent_response = (unsigned char *) r;
7667 if (s->agent_response && s->agent_responselen >= 5 &&
7668 s->agent_response[4] == SSH2_AGENT_IDENTITIES_ANSWER) {
7669 int keyi;
7670 unsigned char *p;
7671 p = s->agent_response + 5;
7672 s->nkeys = GET_32BIT(p);
7673 p += 4;
7674 logeventf(ssh, "Pageant has %d SSH-2 keys", s->nkeys);
7675 if (s->publickey_blob) {
7676 /* See if configured key is in agent. */
7677 for (keyi = 0; keyi < s->nkeys; keyi++) {
7678 s->pklen = GET_32BIT(p);
7679 if (s->pklen == s->publickey_bloblen &&
7680 !memcmp(p+4, s->publickey_blob,
7681 s->publickey_bloblen)) {
7682 logeventf(ssh, "Pageant key #%d matches "
7683 "configured key file", keyi);
7684 s->keyi = keyi;
7685 s->pkblob_in_agent = p;
7686 break;
7687 }
7688 p += 4 + s->pklen;
7689 p += GET_32BIT(p) + 4; /* comment */
7690 }
7691 if (!s->pkblob_in_agent) {
7692 logevent("Configured key file not in Pageant");
7693 s->nkeys = 0;
7694 }
7695 }
7696 } else {
7697 logevent("Failed to get reply from Pageant");
7698 }
7699 }
7700
7701 }
7702
7703 /*
7704 * We repeat this whole loop, including the username prompt,
7705 * until we manage a successful authentication. If the user
7706 * types the wrong _password_, they can be sent back to the
7707 * beginning to try another username, if this is configured on.
7708 * (If they specify a username in the config, they are never
7709 * asked, even if they do give a wrong password.)
7710 *
7711 * I think this best serves the needs of
7712 *
7713 * - the people who have no configuration, no keys, and just
7714 * want to try repeated (username,password) pairs until they
7715 * type both correctly
7716 *
7717 * - people who have keys and configuration but occasionally
7718 * need to fall back to passwords
7719 *
7720 * - people with a key held in Pageant, who might not have
7721 * logged in to a particular machine before; so they want to
7722 * type a username, and then _either_ their key will be
7723 * accepted, _or_ they will type a password. If they mistype
7724 * the username they will want to be able to get back and
7725 * retype it!
7726 */
7727 s->got_username = FALSE;
7728 while (!s->we_are_in) {
7729 /*
7730 * Get a username.
7731 */
7732 if (s->got_username && !conf_get_int(ssh->conf, CONF_change_username)) {
7733 /*
7734 * We got a username last time round this loop, and
7735 * with change_username turned off we don't try to get
7736 * it again.
7737 */
7738 } else if ((ssh->username = get_remote_username(ssh->conf)) == NULL) {
7739 int ret; /* need not be kept over crReturn */
7740 s->cur_prompt = new_prompts(ssh->frontend);
7741 s->cur_prompt->to_server = TRUE;
7742 s->cur_prompt->name = dupstr("SSH login name");
7743 add_prompt(s->cur_prompt, dupstr("login as: "), TRUE);
7744 ret = get_userpass_input(s->cur_prompt, NULL, 0);
7745 while (ret < 0) {
7746 ssh->send_ok = 1;
7747 crWaitUntilV(!pktin);
7748 ret = get_userpass_input(s->cur_prompt, in, inlen);
7749 ssh->send_ok = 0;
7750 }
7751 if (!ret) {
7752 /*
7753 * get_userpass_input() failed to get a username.
7754 * Terminate.
7755 */
7756 free_prompts(s->cur_prompt);
7757 ssh_disconnect(ssh, "No username provided", NULL, 0, TRUE);
7758 crStopV;
7759 }
7760 ssh->username = dupstr(s->cur_prompt->prompts[0]->result);
7761 free_prompts(s->cur_prompt);
7762 } else {
7763 char *stuff;
7764 if ((flags & FLAG_VERBOSE) || (flags & FLAG_INTERACTIVE)) {
7765 stuff = dupprintf("Using username \"%s\".\r\n", ssh->username);
7766 c_write_str(ssh, stuff);
7767 sfree(stuff);
7768 }
7769 }
7770 s->got_username = TRUE;
7771
7772 /*
7773 * Send an authentication request using method "none": (a)
7774 * just in case it succeeds, and (b) so that we know what
7775 * authentication methods we can usefully try next.
7776 */
7777 ssh->pkt_actx = SSH2_PKTCTX_NOAUTH;
7778
7779 s->pktout = ssh2_pkt_init(SSH2_MSG_USERAUTH_REQUEST);
7780 ssh2_pkt_addstring(s->pktout, ssh->username);
7781 ssh2_pkt_addstring(s->pktout, "ssh-connection");/* service requested */
7782 ssh2_pkt_addstring(s->pktout, "none"); /* method */
7783 ssh2_pkt_send(ssh, s->pktout);
7784 s->type = AUTH_TYPE_NONE;
7785 s->gotit = FALSE;
7786 s->we_are_in = FALSE;
7787
7788 s->tried_pubkey_config = FALSE;
7789 s->kbd_inter_refused = FALSE;
7790
7791 /* Reset agent request state. */
7792 s->done_agent = FALSE;
7793 if (s->agent_response) {
7794 if (s->pkblob_in_agent) {
7795 s->agentp = s->pkblob_in_agent;
7796 } else {
7797 s->agentp = s->agent_response + 5 + 4;
7798 s->keyi = 0;
7799 }
7800 }
7801
7802 while (1) {
7803 char *methods = NULL;
7804 int methlen = 0;
7805
7806 /*
7807 * Wait for the result of the last authentication request.
7808 */
7809 if (!s->gotit)
7810 crWaitUntilV(pktin);
7811 /*
7812 * Now is a convenient point to spew any banner material
7813 * that we've accumulated. (This should ensure that when
7814 * we exit the auth loop, we haven't any left to deal
7815 * with.)
7816 */
7817 {
7818 int size = bufchain_size(&ssh->banner);
7819 /*
7820 * Don't show the banner if we're operating in
7821 * non-verbose non-interactive mode. (It's probably
7822 * a script, which means nobody will read the
7823 * banner _anyway_, and moreover the printing of
7824 * the banner will screw up processing on the
7825 * output of (say) plink.)
7826 */
7827 if (size && (flags & (FLAG_VERBOSE | FLAG_INTERACTIVE))) {
7828 char *banner = snewn(size, char);
7829 bufchain_fetch(&ssh->banner, banner, size);
7830 c_write_untrusted(ssh, banner, size);
7831 sfree(banner);
7832 }
7833 bufchain_clear(&ssh->banner);
7834 }
7835 if (pktin->type == SSH2_MSG_USERAUTH_SUCCESS) {
7836 logevent("Access granted");
7837 s->we_are_in = s->userauth_success = TRUE;
7838 break;
7839 }
7840
7841 if (pktin->type != SSH2_MSG_USERAUTH_FAILURE && s->type != AUTH_TYPE_GSSAPI) {
7842 bombout(("Strange packet received during authentication: "
7843 "type %d", pktin->type));
7844 crStopV;
7845 }
7846
7847 s->gotit = FALSE;
7848
7849 /*
7850 * OK, we're now sitting on a USERAUTH_FAILURE message, so
7851 * we can look at the string in it and know what we can
7852 * helpfully try next.
7853 */
7854 if (pktin->type == SSH2_MSG_USERAUTH_FAILURE) {
7855 ssh_pkt_getstring(pktin, &methods, &methlen);
7856 if (!ssh2_pkt_getbool(pktin)) {
7857 /*
7858 * We have received an unequivocal Access
7859 * Denied. This can translate to a variety of
7860 * messages, or no message at all.
7861 *
7862 * For forms of authentication which are attempted
7863 * implicitly, by which I mean without printing
7864 * anything in the window indicating that we're
7865 * trying them, we should never print 'Access
7866 * denied'.
7867 *
7868 * If we do print a message saying that we're
7869 * attempting some kind of authentication, it's OK
7870 * to print a followup message saying it failed -
7871 * but the message may sometimes be more specific
7872 * than simply 'Access denied'.
7873 *
7874 * Additionally, if we'd just tried password
7875 * authentication, we should break out of this
7876 * whole loop so as to go back to the username
7877 * prompt (iff we're configured to allow
7878 * username change attempts).
7879 */
7880 if (s->type == AUTH_TYPE_NONE) {
7881 /* do nothing */
7882 } else if (s->type == AUTH_TYPE_PUBLICKEY_OFFER_LOUD ||
7883 s->type == AUTH_TYPE_PUBLICKEY_OFFER_QUIET) {
7884 if (s->type == AUTH_TYPE_PUBLICKEY_OFFER_LOUD)
7885 c_write_str(ssh, "Server refused our key\r\n");
7886 logevent("Server refused our key");
7887 } else if (s->type == AUTH_TYPE_PUBLICKEY) {
7888 /* This _shouldn't_ happen except by a
7889 * protocol bug causing client and server to
7890 * disagree on what is a correct signature. */
7891 c_write_str(ssh, "Server refused public-key signature"
7892 " despite accepting key!\r\n");
7893 logevent("Server refused public-key signature"
7894 " despite accepting key!");
7895 } else if (s->type==AUTH_TYPE_KEYBOARD_INTERACTIVE_QUIET) {
7896 /* quiet, so no c_write */
7897 logevent("Server refused keyboard-interactive authentication");
7898 } else if (s->type==AUTH_TYPE_GSSAPI) {
7899 /* always quiet, so no c_write */
7900 /* also, the code down in the GSSAPI block has
7901 * already logged this in the Event Log */
7902 } else if (s->type == AUTH_TYPE_KEYBOARD_INTERACTIVE) {
7903 logevent("Keyboard-interactive authentication failed");
7904 c_write_str(ssh, "Access denied\r\n");
7905 } else {
7906 assert(s->type == AUTH_TYPE_PASSWORD);
7907 logevent("Password authentication failed");
7908 c_write_str(ssh, "Access denied\r\n");
7909
7910 if (conf_get_int(ssh->conf, CONF_change_username)) {
7911 /* XXX perhaps we should allow
7912 * keyboard-interactive to do this too? */
7913 s->we_are_in = FALSE;
7914 break;
7915 }
7916 }
7917 } else {
7918 c_write_str(ssh, "Further authentication required\r\n");
7919 logevent("Further authentication required");
7920 }
7921
7922 s->can_pubkey =
7923 in_commasep_string("publickey", methods, methlen);
7924 s->can_passwd =
7925 in_commasep_string("password", methods, methlen);
7926 s->can_keyb_inter = conf_get_int(ssh->conf, CONF_try_ki_auth) &&
7927 in_commasep_string("keyboard-interactive", methods, methlen);
7928 #ifndef NO_GSSAPI
7929 if (!ssh->gsslibs)
7930 ssh->gsslibs = ssh_gss_setup(ssh->conf);
7931 s->can_gssapi = conf_get_int(ssh->conf, CONF_try_gssapi_auth) &&
7932 in_commasep_string("gssapi-with-mic", methods, methlen) &&
7933 ssh->gsslibs->nlibraries > 0;
7934 #endif
7935 }
7936
7937 ssh->pkt_actx = SSH2_PKTCTX_NOAUTH;
7938
7939 if (s->can_pubkey && !s->done_agent && s->nkeys) {
7940
7941 /*
7942 * Attempt public-key authentication using a key from Pageant.
7943 */
7944
7945 ssh->pkt_actx = SSH2_PKTCTX_PUBLICKEY;
7946
7947 logeventf(ssh, "Trying Pageant key #%d", s->keyi);
7948
7949 /* Unpack key from agent response */
7950 s->pklen = GET_32BIT(s->agentp);
7951 s->agentp += 4;
7952 s->pkblob = (char *)s->agentp;
7953 s->agentp += s->pklen;
7954 s->alglen = GET_32BIT(s->pkblob);
7955 s->alg = s->pkblob + 4;
7956 s->commentlen = GET_32BIT(s->agentp);
7957 s->agentp += 4;
7958 s->commentp = (char *)s->agentp;
7959 s->agentp += s->commentlen;
7960 /* s->agentp now points at next key, if any */
7961
7962 /* See if server will accept it */
7963 s->pktout = ssh2_pkt_init(SSH2_MSG_USERAUTH_REQUEST);
7964 ssh2_pkt_addstring(s->pktout, ssh->username);
7965 ssh2_pkt_addstring(s->pktout, "ssh-connection");
7966 /* service requested */
7967 ssh2_pkt_addstring(s->pktout, "publickey");
7968 /* method */
7969 ssh2_pkt_addbool(s->pktout, FALSE); /* no signature included */
7970 ssh2_pkt_addstring_start(s->pktout);
7971 ssh2_pkt_addstring_data(s->pktout, s->alg, s->alglen);
7972 ssh2_pkt_addstring_start(s->pktout);
7973 ssh2_pkt_addstring_data(s->pktout, s->pkblob, s->pklen);
7974 ssh2_pkt_send(ssh, s->pktout);
7975 s->type = AUTH_TYPE_PUBLICKEY_OFFER_QUIET;
7976
7977 crWaitUntilV(pktin);
7978 if (pktin->type != SSH2_MSG_USERAUTH_PK_OK) {
7979
7980 /* Offer of key refused. */
7981 s->gotit = TRUE;
7982
7983 } else {
7984
7985 void *vret;
7986
7987 if (flags & FLAG_VERBOSE) {
7988 c_write_str(ssh, "Authenticating with "
7989 "public key \"");
7990 c_write(ssh, s->commentp, s->commentlen);
7991 c_write_str(ssh, "\" from agent\r\n");
7992 }
7993
7994 /*
7995 * Server is willing to accept the key.
7996 * Construct a SIGN_REQUEST.
7997 */
7998 s->pktout = ssh2_pkt_init(SSH2_MSG_USERAUTH_REQUEST);
7999 ssh2_pkt_addstring(s->pktout, ssh->username);
8000 ssh2_pkt_addstring(s->pktout, "ssh-connection");
8001 /* service requested */
8002 ssh2_pkt_addstring(s->pktout, "publickey");
8003 /* method */
8004 ssh2_pkt_addbool(s->pktout, TRUE); /* signature included */
8005 ssh2_pkt_addstring_start(s->pktout);
8006 ssh2_pkt_addstring_data(s->pktout, s->alg, s->alglen);
8007 ssh2_pkt_addstring_start(s->pktout);
8008 ssh2_pkt_addstring_data(s->pktout, s->pkblob, s->pklen);
8009
8010 /* Ask agent for signature. */
8011 s->siglen = s->pktout->length - 5 + 4 +
8012 ssh->v2_session_id_len;
8013 if (ssh->remote_bugs & BUG_SSH2_PK_SESSIONID)
8014 s->siglen -= 4;
8015 s->len = 1; /* message type */
8016 s->len += 4 + s->pklen; /* key blob */
8017 s->len += 4 + s->siglen; /* data to sign */
8018 s->len += 4; /* flags */
8019 s->agentreq = snewn(4 + s->len, char);
8020 PUT_32BIT(s->agentreq, s->len);
8021 s->q = s->agentreq + 4;
8022 *s->q++ = SSH2_AGENTC_SIGN_REQUEST;
8023 PUT_32BIT(s->q, s->pklen);
8024 s->q += 4;
8025 memcpy(s->q, s->pkblob, s->pklen);
8026 s->q += s->pklen;
8027 PUT_32BIT(s->q, s->siglen);
8028 s->q += 4;
8029 /* Now the data to be signed... */
8030 if (!(ssh->remote_bugs & BUG_SSH2_PK_SESSIONID)) {
8031 PUT_32BIT(s->q, ssh->v2_session_id_len);
8032 s->q += 4;
8033 }
8034 memcpy(s->q, ssh->v2_session_id,
8035 ssh->v2_session_id_len);
8036 s->q += ssh->v2_session_id_len;
8037 memcpy(s->q, s->pktout->data + 5,
8038 s->pktout->length - 5);
8039 s->q += s->pktout->length - 5;
8040 /* And finally the (zero) flags word. */
8041 PUT_32BIT(s->q, 0);
8042 if (!agent_query(s->agentreq, s->len + 4,
8043 &vret, &s->retlen,
8044 ssh_agent_callback, ssh)) {
8045 do {
8046 crReturnV;
8047 if (pktin) {
8048 bombout(("Unexpected data from server"
8049 " while waiting for agent"
8050 " response"));
8051 crStopV;
8052 }
8053 } while (pktin || inlen > 0);
8054 vret = ssh->agent_response;
8055 s->retlen = ssh->agent_response_len;
8056 }
8057 s->ret = vret;
8058 sfree(s->agentreq);
8059 if (s->ret) {
8060 if (s->ret[4] == SSH2_AGENT_SIGN_RESPONSE) {
8061 logevent("Sending Pageant's response");
8062 ssh2_add_sigblob(ssh, s->pktout,
8063 s->pkblob, s->pklen,
8064 s->ret + 9,
8065 GET_32BIT(s->ret + 5));
8066 ssh2_pkt_send(ssh, s->pktout);
8067 s->type = AUTH_TYPE_PUBLICKEY;
8068 } else {
8069 /* FIXME: less drastic response */
8070 bombout(("Pageant failed to answer challenge"));
8071 crStopV;
8072 }
8073 }
8074 }
8075
8076 /* Do we have any keys left to try? */
8077 if (s->pkblob_in_agent) {
8078 s->done_agent = TRUE;
8079 s->tried_pubkey_config = TRUE;
8080 } else {
8081 s->keyi++;
8082 if (s->keyi >= s->nkeys)
8083 s->done_agent = TRUE;
8084 }
8085
8086 } else if (s->can_pubkey && s->publickey_blob &&
8087 !s->tried_pubkey_config) {
8088
8089 struct ssh2_userkey *key; /* not live over crReturn */
8090 char *passphrase; /* not live over crReturn */
8091
8092 ssh->pkt_actx = SSH2_PKTCTX_PUBLICKEY;
8093
8094 s->tried_pubkey_config = TRUE;
8095
8096 /*
8097 * Try the public key supplied in the configuration.
8098 *
8099 * First, offer the public blob to see if the server is
8100 * willing to accept it.
8101 */
8102 s->pktout = ssh2_pkt_init(SSH2_MSG_USERAUTH_REQUEST);
8103 ssh2_pkt_addstring(s->pktout, ssh->username);
8104 ssh2_pkt_addstring(s->pktout, "ssh-connection");
8105 /* service requested */
8106 ssh2_pkt_addstring(s->pktout, "publickey"); /* method */
8107 ssh2_pkt_addbool(s->pktout, FALSE);
8108 /* no signature included */
8109 ssh2_pkt_addstring(s->pktout, s->publickey_algorithm);
8110 ssh2_pkt_addstring_start(s->pktout);
8111 ssh2_pkt_addstring_data(s->pktout,
8112 (char *)s->publickey_blob,
8113 s->publickey_bloblen);
8114 ssh2_pkt_send(ssh, s->pktout);
8115 logevent("Offered public key");
8116
8117 crWaitUntilV(pktin);
8118 if (pktin->type != SSH2_MSG_USERAUTH_PK_OK) {
8119 /* Key refused. Give up. */
8120 s->gotit = TRUE; /* reconsider message next loop */
8121 s->type = AUTH_TYPE_PUBLICKEY_OFFER_LOUD;
8122 continue; /* process this new message */
8123 }
8124 logevent("Offer of public key accepted");
8125
8126 /*
8127 * Actually attempt a serious authentication using
8128 * the key.
8129 */
8130 if (flags & FLAG_VERBOSE) {
8131 c_write_str(ssh, "Authenticating with public key \"");
8132 c_write_str(ssh, s->publickey_comment);
8133 c_write_str(ssh, "\"\r\n");
8134 }
8135 key = NULL;
8136 while (!key) {
8137 const char *error; /* not live over crReturn */
8138 if (s->publickey_encrypted) {
8139 /*
8140 * Get a passphrase from the user.
8141 */
8142 int ret; /* need not be kept over crReturn */
8143 s->cur_prompt = new_prompts(ssh->frontend);
8144 s->cur_prompt->to_server = FALSE;
8145 s->cur_prompt->name = dupstr("SSH key passphrase");
8146 add_prompt(s->cur_prompt,
8147 dupprintf("Passphrase for key \"%.100s\": ",
8148 s->publickey_comment),
8149 FALSE);
8150 ret = get_userpass_input(s->cur_prompt, NULL, 0);
8151 while (ret < 0) {
8152 ssh->send_ok = 1;
8153 crWaitUntilV(!pktin);
8154 ret = get_userpass_input(s->cur_prompt,
8155 in, inlen);
8156 ssh->send_ok = 0;
8157 }
8158 if (!ret) {
8159 /* Failed to get a passphrase. Terminate. */
8160 free_prompts(s->cur_prompt);
8161 ssh_disconnect(ssh, NULL,
8162 "Unable to authenticate",
8163 SSH2_DISCONNECT_AUTH_CANCELLED_BY_USER,
8164 TRUE);
8165 crStopV;
8166 }
8167 passphrase =
8168 dupstr(s->cur_prompt->prompts[0]->result);
8169 free_prompts(s->cur_prompt);
8170 } else {
8171 passphrase = NULL; /* no passphrase needed */
8172 }
8173
8174 /*
8175 * Try decrypting the key.
8176 */
8177 s->keyfile = conf_get_filename(ssh->conf, CONF_keyfile);
8178 key = ssh2_load_userkey(s->keyfile, passphrase, &error);
8179 if (passphrase) {
8180 /* burn the evidence */
8181 smemclr(passphrase, strlen(passphrase));
8182 sfree(passphrase);
8183 }
8184 if (key == SSH2_WRONG_PASSPHRASE || key == NULL) {
8185 if (passphrase &&
8186 (key == SSH2_WRONG_PASSPHRASE)) {
8187 c_write_str(ssh, "Wrong passphrase\r\n");
8188 key = NULL;
8189 /* and loop again */
8190 } else {
8191 c_write_str(ssh, "Unable to load private key (");
8192 c_write_str(ssh, error);
8193 c_write_str(ssh, ")\r\n");
8194 key = NULL;
8195 break; /* try something else */
8196 }
8197 }
8198 }
8199
8200 if (key) {
8201 unsigned char *pkblob, *sigblob, *sigdata;
8202 int pkblob_len, sigblob_len, sigdata_len;
8203 int p;
8204
8205 /*
8206 * We have loaded the private key and the server
8207 * has announced that it's willing to accept it.
8208 * Hallelujah. Generate a signature and send it.
8209 */
8210 s->pktout = ssh2_pkt_init(SSH2_MSG_USERAUTH_REQUEST);
8211 ssh2_pkt_addstring(s->pktout, ssh->username);
8212 ssh2_pkt_addstring(s->pktout, "ssh-connection");
8213 /* service requested */
8214 ssh2_pkt_addstring(s->pktout, "publickey");
8215 /* method */
8216 ssh2_pkt_addbool(s->pktout, TRUE);
8217 /* signature follows */
8218 ssh2_pkt_addstring(s->pktout, key->alg->name);
8219 pkblob = key->alg->public_blob(key->data,
8220 &pkblob_len);
8221 ssh2_pkt_addstring_start(s->pktout);
8222 ssh2_pkt_addstring_data(s->pktout, (char *)pkblob,
8223 pkblob_len);
8224
8225 /*
8226 * The data to be signed is:
8227 *
8228 * string session-id
8229 *
8230 * followed by everything so far placed in the
8231 * outgoing packet.
8232 */
8233 sigdata_len = s->pktout->length - 5 + 4 +
8234 ssh->v2_session_id_len;
8235 if (ssh->remote_bugs & BUG_SSH2_PK_SESSIONID)
8236 sigdata_len -= 4;
8237 sigdata = snewn(sigdata_len, unsigned char);
8238 p = 0;
8239 if (!(ssh->remote_bugs & BUG_SSH2_PK_SESSIONID)) {
8240 PUT_32BIT(sigdata+p, ssh->v2_session_id_len);
8241 p += 4;
8242 }
8243 memcpy(sigdata+p, ssh->v2_session_id,
8244 ssh->v2_session_id_len);
8245 p += ssh->v2_session_id_len;
8246 memcpy(sigdata+p, s->pktout->data + 5,
8247 s->pktout->length - 5);
8248 p += s->pktout->length - 5;
8249 assert(p == sigdata_len);
8250 sigblob = key->alg->sign(key->data, (char *)sigdata,
8251 sigdata_len, &sigblob_len);
8252 ssh2_add_sigblob(ssh, s->pktout, pkblob, pkblob_len,
8253 sigblob, sigblob_len);
8254 sfree(pkblob);
8255 sfree(sigblob);
8256 sfree(sigdata);
8257
8258 ssh2_pkt_send(ssh, s->pktout);
8259 logevent("Sent public key signature");
8260 s->type = AUTH_TYPE_PUBLICKEY;
8261 key->alg->freekey(key->data);
8262 }
8263
8264 #ifndef NO_GSSAPI
8265 } else if (s->can_gssapi && !s->tried_gssapi) {
8266
8267 /* GSSAPI Authentication */
8268
8269 int micoffset, len;
8270 char *data;
8271 Ssh_gss_buf mic;
8272 s->type = AUTH_TYPE_GSSAPI;
8273 s->tried_gssapi = TRUE;
8274 s->gotit = TRUE;
8275 ssh->pkt_actx = SSH2_PKTCTX_GSSAPI;
8276
8277 /*
8278 * Pick the highest GSS library on the preference
8279 * list.
8280 */
8281 {
8282 int i, j;
8283 s->gsslib = NULL;
8284 for (i = 0; i < ngsslibs; i++) {
8285 int want_id = conf_get_int_int(ssh->conf,
8286 CONF_ssh_gsslist, i);
8287 for (j = 0; j < ssh->gsslibs->nlibraries; j++)
8288 if (ssh->gsslibs->libraries[j].id == want_id) {
8289 s->gsslib = &ssh->gsslibs->libraries[j];
8290 goto got_gsslib; /* double break */
8291 }
8292 }
8293 got_gsslib:
8294 /*
8295 * We always expect to have found something in
8296 * the above loop: we only came here if there
8297 * was at least one viable GSS library, and the
8298 * preference list should always mention
8299 * everything and only change the order.
8300 */
8301 assert(s->gsslib);
8302 }
8303
8304 if (s->gsslib->gsslogmsg)
8305 logevent(s->gsslib->gsslogmsg);
8306
8307 /* Sending USERAUTH_REQUEST with "gssapi-with-mic" method */
8308 s->pktout = ssh2_pkt_init(SSH2_MSG_USERAUTH_REQUEST);
8309 ssh2_pkt_addstring(s->pktout, ssh->username);
8310 ssh2_pkt_addstring(s->pktout, "ssh-connection");
8311 ssh2_pkt_addstring(s->pktout, "gssapi-with-mic");
8312 logevent("Attempting GSSAPI authentication");
8313
8314 /* add mechanism info */
8315 s->gsslib->indicate_mech(s->gsslib, &s->gss_buf);
8316
8317 /* number of GSSAPI mechanisms */
8318 ssh2_pkt_adduint32(s->pktout,1);
8319
8320 /* length of OID + 2 */
8321 ssh2_pkt_adduint32(s->pktout, s->gss_buf.length + 2);
8322 ssh2_pkt_addbyte(s->pktout, SSH2_GSS_OIDTYPE);
8323
8324 /* length of OID */
8325 ssh2_pkt_addbyte(s->pktout, (unsigned char) s->gss_buf.length);
8326
8327 ssh_pkt_adddata(s->pktout, s->gss_buf.value,
8328 s->gss_buf.length);
8329 ssh2_pkt_send(ssh, s->pktout);
8330 crWaitUntilV(pktin);
8331 if (pktin->type != SSH2_MSG_USERAUTH_GSSAPI_RESPONSE) {
8332 logevent("GSSAPI authentication request refused");
8333 continue;
8334 }
8335
8336 /* check returned packet ... */
8337
8338 ssh_pkt_getstring(pktin, &data, &len);
8339 s->gss_rcvtok.value = data;
8340 s->gss_rcvtok.length = len;
8341 if (s->gss_rcvtok.length != s->gss_buf.length + 2 ||
8342 ((char *)s->gss_rcvtok.value)[0] != SSH2_GSS_OIDTYPE ||
8343 ((char *)s->gss_rcvtok.value)[1] != s->gss_buf.length ||
8344 memcmp((char *)s->gss_rcvtok.value + 2,
8345 s->gss_buf.value,s->gss_buf.length) ) {
8346 logevent("GSSAPI authentication - wrong response from server");
8347 continue;
8348 }
8349
8350 /* now start running */
8351 s->gss_stat = s->gsslib->import_name(s->gsslib,
8352 ssh->fullhostname,
8353 &s->gss_srv_name);
8354 if (s->gss_stat != SSH_GSS_OK) {
8355 if (s->gss_stat == SSH_GSS_BAD_HOST_NAME)
8356 logevent("GSSAPI import name failed - Bad service name");
8357 else
8358 logevent("GSSAPI import name failed");
8359 continue;
8360 }
8361
8362 /* fetch TGT into GSS engine */
8363 s->gss_stat = s->gsslib->acquire_cred(s->gsslib, &s->gss_ctx);
8364
8365 if (s->gss_stat != SSH_GSS_OK) {
8366 logevent("GSSAPI authentication failed to get credentials");
8367 s->gsslib->release_name(s->gsslib, &s->gss_srv_name);
8368 continue;
8369 }
8370
8371 /* initial tokens are empty */
8372 SSH_GSS_CLEAR_BUF(&s->gss_rcvtok);
8373 SSH_GSS_CLEAR_BUF(&s->gss_sndtok);
8374
8375 /* now enter the loop */
8376 do {
8377 s->gss_stat = s->gsslib->init_sec_context
8378 (s->gsslib,
8379 &s->gss_ctx,
8380 s->gss_srv_name,
8381 conf_get_int(ssh->conf, CONF_gssapifwd),
8382 &s->gss_rcvtok,
8383 &s->gss_sndtok);
8384
8385 if (s->gss_stat!=SSH_GSS_S_COMPLETE &&
8386 s->gss_stat!=SSH_GSS_S_CONTINUE_NEEDED) {
8387 logevent("GSSAPI authentication initialisation failed");
8388
8389 if (s->gsslib->display_status(s->gsslib, s->gss_ctx,
8390 &s->gss_buf) == SSH_GSS_OK) {
8391 logevent(s->gss_buf.value);
8392 sfree(s->gss_buf.value);
8393 }
8394
8395 break;
8396 }
8397 logevent("GSSAPI authentication initialised");
8398
8399 /* Client and server now exchange tokens until GSSAPI
8400 * no longer says CONTINUE_NEEDED */
8401
8402 if (s->gss_sndtok.length != 0) {
8403 s->pktout = ssh2_pkt_init(SSH2_MSG_USERAUTH_GSSAPI_TOKEN);
8404 ssh_pkt_addstring_start(s->pktout);
8405 ssh_pkt_addstring_data(s->pktout,s->gss_sndtok.value,s->gss_sndtok.length);
8406 ssh2_pkt_send(ssh, s->pktout);
8407 s->gsslib->free_tok(s->gsslib, &s->gss_sndtok);
8408 }
8409
8410 if (s->gss_stat == SSH_GSS_S_CONTINUE_NEEDED) {
8411 crWaitUntilV(pktin);
8412 if (pktin->type != SSH2_MSG_USERAUTH_GSSAPI_TOKEN) {
8413 logevent("GSSAPI authentication - bad server response");
8414 s->gss_stat = SSH_GSS_FAILURE;
8415 break;
8416 }
8417 ssh_pkt_getstring(pktin, &data, &len);
8418 s->gss_rcvtok.value = data;
8419 s->gss_rcvtok.length = len;
8420 }
8421 } while (s-> gss_stat == SSH_GSS_S_CONTINUE_NEEDED);
8422
8423 if (s->gss_stat != SSH_GSS_OK) {
8424 s->gsslib->release_name(s->gsslib, &s->gss_srv_name);
8425 s->gsslib->release_cred(s->gsslib, &s->gss_ctx);
8426 continue;
8427 }
8428 logevent("GSSAPI authentication loop finished OK");
8429
8430 /* Now send the MIC */
8431
8432 s->pktout = ssh2_pkt_init(0);
8433 micoffset = s->pktout->length;
8434 ssh_pkt_addstring_start(s->pktout);
8435 ssh_pkt_addstring_data(s->pktout, (char *)ssh->v2_session_id, ssh->v2_session_id_len);
8436 ssh_pkt_addbyte(s->pktout, SSH2_MSG_USERAUTH_REQUEST);
8437 ssh_pkt_addstring(s->pktout, ssh->username);
8438 ssh_pkt_addstring(s->pktout, "ssh-connection");
8439 ssh_pkt_addstring(s->pktout, "gssapi-with-mic");
8440
8441 s->gss_buf.value = (char *)s->pktout->data + micoffset;
8442 s->gss_buf.length = s->pktout->length - micoffset;
8443
8444 s->gsslib->get_mic(s->gsslib, s->gss_ctx, &s->gss_buf, &mic);
8445 s->pktout = ssh2_pkt_init(SSH2_MSG_USERAUTH_GSSAPI_MIC);
8446 ssh_pkt_addstring_start(s->pktout);
8447 ssh_pkt_addstring_data(s->pktout, mic.value, mic.length);
8448 ssh2_pkt_send(ssh, s->pktout);
8449 s->gsslib->free_mic(s->gsslib, &mic);
8450
8451 s->gotit = FALSE;
8452
8453 s->gsslib->release_name(s->gsslib, &s->gss_srv_name);
8454 s->gsslib->release_cred(s->gsslib, &s->gss_ctx);
8455 continue;
8456 #endif
8457 } else if (s->can_keyb_inter && !s->kbd_inter_refused) {
8458
8459 /*
8460 * Keyboard-interactive authentication.
8461 */
8462
8463 s->type = AUTH_TYPE_KEYBOARD_INTERACTIVE;
8464
8465 ssh->pkt_actx = SSH2_PKTCTX_KBDINTER;
8466
8467 s->pktout = ssh2_pkt_init(SSH2_MSG_USERAUTH_REQUEST);
8468 ssh2_pkt_addstring(s->pktout, ssh->username);
8469 ssh2_pkt_addstring(s->pktout, "ssh-connection");
8470 /* service requested */
8471 ssh2_pkt_addstring(s->pktout, "keyboard-interactive");
8472 /* method */
8473 ssh2_pkt_addstring(s->pktout, ""); /* lang */
8474 ssh2_pkt_addstring(s->pktout, ""); /* submethods */
8475 ssh2_pkt_send(ssh, s->pktout);
8476
8477 logevent("Attempting keyboard-interactive authentication");
8478
8479 crWaitUntilV(pktin);
8480 if (pktin->type != SSH2_MSG_USERAUTH_INFO_REQUEST) {
8481 /* Server is not willing to do keyboard-interactive
8482 * at all (or, bizarrely but legally, accepts the
8483 * user without actually issuing any prompts).
8484 * Give up on it entirely. */
8485 s->gotit = TRUE;
8486 s->type = AUTH_TYPE_KEYBOARD_INTERACTIVE_QUIET;
8487 s->kbd_inter_refused = TRUE; /* don't try it again */
8488 continue;
8489 }
8490
8491 /*
8492 * Loop while the server continues to send INFO_REQUESTs.
8493 */
8494 while (pktin->type == SSH2_MSG_USERAUTH_INFO_REQUEST) {
8495
8496 char *name, *inst, *lang;
8497 int name_len, inst_len, lang_len;
8498 int i;
8499
8500 /*
8501 * We've got a fresh USERAUTH_INFO_REQUEST.
8502 * Get the preamble and start building a prompt.
8503 */
8504 ssh_pkt_getstring(pktin, &name, &name_len);
8505 ssh_pkt_getstring(pktin, &inst, &inst_len);
8506 ssh_pkt_getstring(pktin, &lang, &lang_len);
8507 s->cur_prompt = new_prompts(ssh->frontend);
8508 s->cur_prompt->to_server = TRUE;
8509
8510 /*
8511 * Get any prompt(s) from the packet.
8512 */
8513 s->num_prompts = ssh_pkt_getuint32(pktin);
8514 for (i = 0; i < s->num_prompts; i++) {
8515 char *prompt;
8516 int prompt_len;
8517 int echo;
8518 static char noprompt[] =
8519 "<server failed to send prompt>: ";
8520
8521 ssh_pkt_getstring(pktin, &prompt, &prompt_len);
8522 echo = ssh2_pkt_getbool(pktin);
8523 if (!prompt_len) {
8524 prompt = noprompt;
8525 prompt_len = lenof(noprompt)-1;
8526 }
8527 add_prompt(s->cur_prompt,
8528 dupprintf("%.*s", prompt_len, prompt),
8529 echo);
8530 }
8531
8532 if (name_len) {
8533 /* FIXME: better prefix to distinguish from
8534 * local prompts? */
8535 s->cur_prompt->name =
8536 dupprintf("SSH server: %.*s", name_len, name);
8537 s->cur_prompt->name_reqd = TRUE;
8538 } else {
8539 s->cur_prompt->name =
8540 dupstr("SSH server authentication");
8541 s->cur_prompt->name_reqd = FALSE;
8542 }
8543 /* We add a prefix to try to make it clear that a prompt
8544 * has come from the server.
8545 * FIXME: ugly to print "Using..." in prompt _every_
8546 * time round. Can this be done more subtly? */
8547 /* Special case: for reasons best known to themselves,
8548 * some servers send k-i requests with no prompts and
8549 * nothing to display. Keep quiet in this case. */
8550 if (s->num_prompts || name_len || inst_len) {
8551 s->cur_prompt->instruction =
8552 dupprintf("Using keyboard-interactive authentication.%s%.*s",
8553 inst_len ? "\n" : "", inst_len, inst);
8554 s->cur_prompt->instr_reqd = TRUE;
8555 } else {
8556 s->cur_prompt->instr_reqd = FALSE;
8557 }
8558
8559 /*
8560 * Display any instructions, and get the user's
8561 * response(s).
8562 */
8563 {
8564 int ret; /* not live over crReturn */
8565 ret = get_userpass_input(s->cur_prompt, NULL, 0);
8566 while (ret < 0) {
8567 ssh->send_ok = 1;
8568 crWaitUntilV(!pktin);
8569 ret = get_userpass_input(s->cur_prompt, in, inlen);
8570 ssh->send_ok = 0;
8571 }
8572 if (!ret) {
8573 /*
8574 * Failed to get responses. Terminate.
8575 */
8576 free_prompts(s->cur_prompt);
8577 ssh_disconnect(ssh, NULL, "Unable to authenticate",
8578 SSH2_DISCONNECT_AUTH_CANCELLED_BY_USER,
8579 TRUE);
8580 crStopV;
8581 }
8582 }
8583
8584 /*
8585 * Send the response(s) to the server.
8586 */
8587 s->pktout = ssh2_pkt_init(SSH2_MSG_USERAUTH_INFO_RESPONSE);
8588 ssh2_pkt_adduint32(s->pktout, s->num_prompts);
8589 for (i=0; i < s->num_prompts; i++) {
8590 dont_log_password(ssh, s->pktout, PKTLOG_BLANK);
8591 ssh2_pkt_addstring(s->pktout,
8592 s->cur_prompt->prompts[i]->result);
8593 end_log_omission(ssh, s->pktout);
8594 }
8595 ssh2_pkt_send_with_padding(ssh, s->pktout, 256);
8596
8597 /*
8598 * Free the prompts structure from this iteration.
8599 * If there's another, a new one will be allocated
8600 * when we return to the top of this while loop.
8601 */
8602 free_prompts(s->cur_prompt);
8603
8604 /*
8605 * Get the next packet in case it's another
8606 * INFO_REQUEST.
8607 */
8608 crWaitUntilV(pktin);
8609
8610 }
8611
8612 /*
8613 * We should have SUCCESS or FAILURE now.
8614 */
8615 s->gotit = TRUE;
8616
8617 } else if (s->can_passwd) {
8618
8619 /*
8620 * Plain old password authentication.
8621 */
8622 int ret; /* not live over crReturn */
8623 int changereq_first_time; /* not live over crReturn */
8624
8625 ssh->pkt_actx = SSH2_PKTCTX_PASSWORD;
8626
8627 s->cur_prompt = new_prompts(ssh->frontend);
8628 s->cur_prompt->to_server = TRUE;
8629 s->cur_prompt->name = dupstr("SSH password");
8630 add_prompt(s->cur_prompt, dupprintf("%s@%s's password: ",
8631 ssh->username,
8632 ssh->savedhost),
8633 FALSE);
8634
8635 ret = get_userpass_input(s->cur_prompt, NULL, 0);
8636 while (ret < 0) {
8637 ssh->send_ok = 1;
8638 crWaitUntilV(!pktin);
8639 ret = get_userpass_input(s->cur_prompt, in, inlen);
8640 ssh->send_ok = 0;
8641 }
8642 if (!ret) {
8643 /*
8644 * Failed to get responses. Terminate.
8645 */
8646 free_prompts(s->cur_prompt);
8647 ssh_disconnect(ssh, NULL, "Unable to authenticate",
8648 SSH2_DISCONNECT_AUTH_CANCELLED_BY_USER,
8649 TRUE);
8650 crStopV;
8651 }
8652 /*
8653 * Squirrel away the password. (We may need it later if
8654 * asked to change it.)
8655 */
8656 s->password = dupstr(s->cur_prompt->prompts[0]->result);
8657 free_prompts(s->cur_prompt);
8658
8659 /*
8660 * Send the password packet.
8661 *
8662 * We pad out the password packet to 256 bytes to make
8663 * it harder for an attacker to find the length of the
8664 * user's password.
8665 *
8666 * Anyone using a password longer than 256 bytes
8667 * probably doesn't have much to worry about from
8668 * people who find out how long their password is!
8669 */
8670 s->pktout = ssh2_pkt_init(SSH2_MSG_USERAUTH_REQUEST);
8671 ssh2_pkt_addstring(s->pktout, ssh->username);
8672 ssh2_pkt_addstring(s->pktout, "ssh-connection");
8673 /* service requested */
8674 ssh2_pkt_addstring(s->pktout, "password");
8675 ssh2_pkt_addbool(s->pktout, FALSE);
8676 dont_log_password(ssh, s->pktout, PKTLOG_BLANK);
8677 ssh2_pkt_addstring(s->pktout, s->password);
8678 end_log_omission(ssh, s->pktout);
8679 ssh2_pkt_send_with_padding(ssh, s->pktout, 256);
8680 logevent("Sent password");
8681 s->type = AUTH_TYPE_PASSWORD;
8682
8683 /*
8684 * Wait for next packet, in case it's a password change
8685 * request.
8686 */
8687 crWaitUntilV(pktin);
8688 changereq_first_time = TRUE;
8689
8690 while (pktin->type == SSH2_MSG_USERAUTH_PASSWD_CHANGEREQ) {
8691
8692 /*
8693 * We're being asked for a new password
8694 * (perhaps not for the first time).
8695 * Loop until the server accepts it.
8696 */
8697
8698 int got_new = FALSE; /* not live over crReturn */
8699 char *prompt; /* not live over crReturn */
8700 int prompt_len; /* not live over crReturn */
8701
8702 {
8703 char *msg;
8704 if (changereq_first_time)
8705 msg = "Server requested password change";
8706 else
8707 msg = "Server rejected new password";
8708 logevent(msg);
8709 c_write_str(ssh, msg);
8710 c_write_str(ssh, "\r\n");
8711 }
8712
8713 ssh_pkt_getstring(pktin, &prompt, &prompt_len);
8714
8715 s->cur_prompt = new_prompts(ssh->frontend);
8716 s->cur_prompt->to_server = TRUE;
8717 s->cur_prompt->name = dupstr("New SSH password");
8718 s->cur_prompt->instruction =
8719 dupprintf("%.*s", prompt_len, prompt);
8720 s->cur_prompt->instr_reqd = TRUE;
8721 /*
8722 * There's no explicit requirement in the protocol
8723 * for the "old" passwords in the original and
8724 * password-change messages to be the same, and
8725 * apparently some Cisco kit supports password change
8726 * by the user entering a blank password originally
8727 * and the real password subsequently, so,
8728 * reluctantly, we prompt for the old password again.
8729 *
8730 * (On the other hand, some servers don't even bother
8731 * to check this field.)
8732 */
8733 add_prompt(s->cur_prompt,
8734 dupstr("Current password (blank for previously entered password): "),
8735 FALSE);
8736 add_prompt(s->cur_prompt, dupstr("Enter new password: "),
8737 FALSE);
8738 add_prompt(s->cur_prompt, dupstr("Confirm new password: "),
8739 FALSE);
8740
8741 /*
8742 * Loop until the user manages to enter the same
8743 * password twice.
8744 */
8745 while (!got_new) {
8746
8747 ret = get_userpass_input(s->cur_prompt, NULL, 0);
8748 while (ret < 0) {
8749 ssh->send_ok = 1;
8750 crWaitUntilV(!pktin);
8751 ret = get_userpass_input(s->cur_prompt, in, inlen);
8752 ssh->send_ok = 0;
8753 }
8754 if (!ret) {
8755 /*
8756 * Failed to get responses. Terminate.
8757 */
8758 /* burn the evidence */
8759 free_prompts(s->cur_prompt);
8760 smemclr(s->password, strlen(s->password));
8761 sfree(s->password);
8762 ssh_disconnect(ssh, NULL, "Unable to authenticate",
8763 SSH2_DISCONNECT_AUTH_CANCELLED_BY_USER,
8764 TRUE);
8765 crStopV;
8766 }
8767
8768 /*
8769 * If the user specified a new original password
8770 * (IYSWIM), overwrite any previously specified
8771 * one.
8772 * (A side effect is that the user doesn't have to
8773 * re-enter it if they louse up the new password.)
8774 */
8775 if (s->cur_prompt->prompts[0]->result[0]) {
8776 smemclr(s->password, strlen(s->password));
8777 /* burn the evidence */
8778 sfree(s->password);
8779 s->password =
8780 dupstr(s->cur_prompt->prompts[0]->result);
8781 }
8782
8783 /*
8784 * Check the two new passwords match.
8785 */
8786 got_new = (strcmp(s->cur_prompt->prompts[1]->result,
8787 s->cur_prompt->prompts[2]->result)
8788 == 0);
8789 if (!got_new)
8790 /* They don't. Silly user. */
8791 c_write_str(ssh, "Passwords do not match\r\n");
8792
8793 }
8794
8795 /*
8796 * Send the new password (along with the old one).
8797 * (see above for padding rationale)
8798 */
8799 s->pktout = ssh2_pkt_init(SSH2_MSG_USERAUTH_REQUEST);
8800 ssh2_pkt_addstring(s->pktout, ssh->username);
8801 ssh2_pkt_addstring(s->pktout, "ssh-connection");
8802 /* service requested */
8803 ssh2_pkt_addstring(s->pktout, "password");
8804 ssh2_pkt_addbool(s->pktout, TRUE);
8805 dont_log_password(ssh, s->pktout, PKTLOG_BLANK);
8806 ssh2_pkt_addstring(s->pktout, s->password);
8807 ssh2_pkt_addstring(s->pktout,
8808 s->cur_prompt->prompts[1]->result);
8809 free_prompts(s->cur_prompt);
8810 end_log_omission(ssh, s->pktout);
8811 ssh2_pkt_send_with_padding(ssh, s->pktout, 256);
8812 logevent("Sent new password");
8813
8814 /*
8815 * Now see what the server has to say about it.
8816 * (If it's CHANGEREQ again, it's not happy with the
8817 * new password.)
8818 */
8819 crWaitUntilV(pktin);
8820 changereq_first_time = FALSE;
8821
8822 }
8823
8824 /*
8825 * We need to reexamine the current pktin at the top
8826 * of the loop. Either:
8827 * - we weren't asked to change password at all, in
8828 * which case it's a SUCCESS or FAILURE with the
8829 * usual meaning
8830 * - we sent a new password, and the server was
8831 * either OK with it (SUCCESS or FAILURE w/partial
8832 * success) or unhappy with the _old_ password
8833 * (FAILURE w/o partial success)
8834 * In any of these cases, we go back to the top of
8835 * the loop and start again.
8836 */
8837 s->gotit = TRUE;
8838
8839 /*
8840 * We don't need the old password any more, in any
8841 * case. Burn the evidence.
8842 */
8843 smemclr(s->password, strlen(s->password));
8844 sfree(s->password);
8845
8846 } else {
8847 char *str = dupprintf("No supported authentication methods available"
8848 " (server sent: %.*s)",
8849 methlen, methods);
8850
8851 ssh_disconnect(ssh, str,
8852 "No supported authentication methods available",
8853 SSH2_DISCONNECT_NO_MORE_AUTH_METHODS_AVAILABLE,
8854 FALSE);
8855 sfree(str);
8856
8857 crStopV;
8858
8859 }
8860
8861 }
8862 }
8863 ssh->packet_dispatch[SSH2_MSG_USERAUTH_BANNER] = NULL;
8864
8865 /* Clear up various bits and pieces from authentication. */
8866 if (s->publickey_blob) {
8867 sfree(s->publickey_blob);
8868 sfree(s->publickey_comment);
8869 }
8870 if (s->agent_response)
8871 sfree(s->agent_response);
8872
8873 if (s->userauth_success) {
8874 /*
8875 * We've just received USERAUTH_SUCCESS, and we haven't sent any
8876 * packets since. Signal the transport layer to consider enacting
8877 * delayed compression.
8878 *
8879 * (Relying on we_are_in is not sufficient, as
8880 * draft-miller-secsh-compression-delayed is quite clear that it
8881 * triggers on USERAUTH_SUCCESS specifically, and we_are_in can
8882 * become set for other reasons.)
8883 */
8884 do_ssh2_transport(ssh, "enabling delayed compression", -2, NULL);
8885 }
8886
8887 /*
8888 * Now the connection protocol has started, one way or another.
8889 */
8890
8891 ssh->channels = newtree234(ssh_channelcmp);
8892
8893 /*
8894 * Set up handlers for some connection protocol messages, so we
8895 * don't have to handle them repeatedly in this coroutine.
8896 */
8897 ssh->packet_dispatch[SSH2_MSG_CHANNEL_WINDOW_ADJUST] =
8898 ssh2_msg_channel_window_adjust;
8899 ssh->packet_dispatch[SSH2_MSG_GLOBAL_REQUEST] =
8900 ssh2_msg_global_request;
8901
8902 /*
8903 * Create the main session channel.
8904 */
8905 if (conf_get_int(ssh->conf, CONF_ssh_no_shell)) {
8906 ssh->mainchan = NULL;
8907 } else if (*conf_get_str(ssh->conf, CONF_ssh_nc_host)) {
8908 /*
8909 * Just start a direct-tcpip channel and use it as the main
8910 * channel.
8911 */
8912 ssh->mainchan = snew(struct ssh_channel);
8913 ssh->mainchan->ssh = ssh;
8914 ssh2_channel_init(ssh->mainchan);
8915 logeventf(ssh,
8916 "Opening direct-tcpip channel to %s:%d in place of session",
8917 conf_get_str(ssh->conf, CONF_ssh_nc_host),
8918 conf_get_int(ssh->conf, CONF_ssh_nc_port));
8919 s->pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_OPEN);
8920 ssh2_pkt_addstring(s->pktout, "direct-tcpip");
8921 ssh2_pkt_adduint32(s->pktout, ssh->mainchan->localid);
8922 ssh2_pkt_adduint32(s->pktout, ssh->mainchan->v.v2.locwindow);/* our window size */
8923 ssh2_pkt_adduint32(s->pktout, OUR_V2_MAXPKT); /* our max pkt size */
8924 ssh2_pkt_addstring(s->pktout, conf_get_str(ssh->conf, CONF_ssh_nc_host));
8925 ssh2_pkt_adduint32(s->pktout, conf_get_int(ssh->conf, CONF_ssh_nc_port));
8926 /*
8927 * There's nothing meaningful to put in the originator
8928 * fields, but some servers insist on syntactically correct
8929 * information.
8930 */
8931 ssh2_pkt_addstring(s->pktout, "0.0.0.0");
8932 ssh2_pkt_adduint32(s->pktout, 0);
8933 ssh2_pkt_send(ssh, s->pktout);
8934
8935 crWaitUntilV(pktin);
8936 if (pktin->type != SSH2_MSG_CHANNEL_OPEN_CONFIRMATION) {
8937 bombout(("Server refused to open a direct-tcpip channel"));
8938 crStopV;
8939 /* FIXME: error data comes back in FAILURE packet */
8940 }
8941 if (ssh_pkt_getuint32(pktin) != ssh->mainchan->localid) {
8942 bombout(("Server's channel confirmation cited wrong channel"));
8943 crStopV;
8944 }
8945 ssh->mainchan->remoteid = ssh_pkt_getuint32(pktin);
8946 ssh->mainchan->halfopen = FALSE;
8947 ssh->mainchan->type = CHAN_MAINSESSION;
8948 ssh->mainchan->v.v2.remwindow = ssh_pkt_getuint32(pktin);
8949 ssh->mainchan->v.v2.remmaxpkt = ssh_pkt_getuint32(pktin);
8950 add234(ssh->channels, ssh->mainchan);
8951 update_specials_menu(ssh->frontend);
8952 logevent("Opened direct-tcpip channel");
8953 ssh->ncmode = TRUE;
8954 } else {
8955 ssh->mainchan = snew(struct ssh_channel);
8956 ssh->mainchan->ssh = ssh;
8957 ssh2_channel_init(ssh->mainchan);
8958 s->pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_OPEN);
8959 ssh2_pkt_addstring(s->pktout, "session");
8960 ssh2_pkt_adduint32(s->pktout, ssh->mainchan->localid);
8961 ssh2_pkt_adduint32(s->pktout, ssh->mainchan->v.v2.locwindow);/* our window size */
8962 ssh2_pkt_adduint32(s->pktout, OUR_V2_MAXPKT); /* our max pkt size */
8963 ssh2_pkt_send(ssh, s->pktout);
8964 crWaitUntilV(pktin);
8965 if (pktin->type != SSH2_MSG_CHANNEL_OPEN_CONFIRMATION) {
8966 bombout(("Server refused to open a session"));
8967 crStopV;
8968 /* FIXME: error data comes back in FAILURE packet */
8969 }
8970 if (ssh_pkt_getuint32(pktin) != ssh->mainchan->localid) {
8971 bombout(("Server's channel confirmation cited wrong channel"));
8972 crStopV;
8973 }
8974 ssh->mainchan->remoteid = ssh_pkt_getuint32(pktin);
8975 ssh->mainchan->halfopen = FALSE;
8976 ssh->mainchan->type = CHAN_MAINSESSION;
8977 ssh->mainchan->v.v2.remwindow = ssh_pkt_getuint32(pktin);
8978 ssh->mainchan->v.v2.remmaxpkt = ssh_pkt_getuint32(pktin);
8979 add234(ssh->channels, ssh->mainchan);
8980 update_specials_menu(ssh->frontend);
8981 logevent("Opened channel for session");
8982 ssh->ncmode = FALSE;
8983 }
8984
8985 /*
8986 * Now we have a channel, make dispatch table entries for
8987 * general channel-based messages.
8988 */
8989 ssh->packet_dispatch[SSH2_MSG_CHANNEL_DATA] =
8990 ssh->packet_dispatch[SSH2_MSG_CHANNEL_EXTENDED_DATA] =
8991 ssh2_msg_channel_data;
8992 ssh->packet_dispatch[SSH2_MSG_CHANNEL_EOF] = ssh2_msg_channel_eof;
8993 ssh->packet_dispatch[SSH2_MSG_CHANNEL_CLOSE] = ssh2_msg_channel_close;
8994 ssh->packet_dispatch[SSH2_MSG_CHANNEL_OPEN_CONFIRMATION] =
8995 ssh2_msg_channel_open_confirmation;
8996 ssh->packet_dispatch[SSH2_MSG_CHANNEL_OPEN_FAILURE] =
8997 ssh2_msg_channel_open_failure;
8998 ssh->packet_dispatch[SSH2_MSG_CHANNEL_REQUEST] =
8999 ssh2_msg_channel_request;
9000 ssh->packet_dispatch[SSH2_MSG_CHANNEL_OPEN] =
9001 ssh2_msg_channel_open;
9002
9003 if (ssh->mainchan && conf_get_int(ssh->conf, CONF_ssh_simple)) {
9004 /*
9005 * This message indicates to the server that we promise
9006 * not to try to run any other channel in parallel with
9007 * this one, so it's safe for it to advertise a very large
9008 * window and leave the flow control to TCP.
9009 */
9010 s->pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_REQUEST);
9011 ssh2_pkt_adduint32(s->pktout, ssh->mainchan->remoteid);
9012 ssh2_pkt_addstring(s->pktout, "simple@putty.projects.tartarus.org");
9013 ssh2_pkt_addbool(s->pktout, 0); /* no reply */
9014 ssh2_pkt_send(ssh, s->pktout);
9015 }
9016
9017 /*
9018 * Enable port forwardings.
9019 */
9020 ssh_setup_portfwd(ssh, ssh->conf);
9021
9022 /*
9023 * Send the CHANNEL_REQUESTS for the main channel. We send them all
9024 * and then start looking for responses, so it's important that the
9025 * sending and receiving code below it is kept in sync.
9026 */
9027
9028 /*
9029 * Potentially enable X11 forwarding.
9030 */
9031 if (ssh->mainchan && !ssh->ncmode && conf_get_int(ssh->conf, CONF_x11_forward) &&
9032 (ssh->x11disp = x11_setup_display(conf_get_str(ssh->conf, CONF_x11_display),
9033 conf_get_int(ssh->conf, CONF_x11_auth), ssh->conf))) {
9034 logevent("Requesting X11 forwarding");
9035 s->pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_REQUEST);
9036 ssh2_pkt_adduint32(s->pktout, ssh->mainchan->remoteid);
9037 ssh2_pkt_addstring(s->pktout, "x11-req");
9038 ssh2_pkt_addbool(s->pktout, 1); /* want reply */
9039 ssh2_pkt_addbool(s->pktout, 0); /* many connections */
9040 ssh2_pkt_addstring(s->pktout, ssh->x11disp->remoteauthprotoname);
9041 /*
9042 * Note that while we blank the X authentication data here, we don't
9043 * take any special action to blank the start of an X11 channel,
9044 * so using MIT-MAGIC-COOKIE-1 and actually opening an X connection
9045 * without having session blanking enabled is likely to leak your
9046 * cookie into the log.
9047 */
9048 dont_log_password(ssh, s->pktout, PKTLOG_BLANK);
9049 ssh2_pkt_addstring(s->pktout, ssh->x11disp->remoteauthdatastring);
9050 end_log_omission(ssh, s->pktout);
9051 ssh2_pkt_adduint32(s->pktout, ssh->x11disp->screennum);
9052 ssh2_pkt_send(ssh, s->pktout);
9053 s->requested_x11 = TRUE;
9054 } else
9055 s->requested_x11 = FALSE;
9056
9057 /*
9058 * Potentially enable agent forwarding.
9059 */
9060 if (ssh->mainchan && !ssh->ncmode && conf_get_int(ssh->conf, CONF_agentfwd) && agent_exists()) {
9061 logevent("Requesting OpenSSH-style agent forwarding");
9062 s->pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_REQUEST);
9063 ssh2_pkt_adduint32(s->pktout, ssh->mainchan->remoteid);
9064 ssh2_pkt_addstring(s->pktout, "auth-agent-req@openssh.com");
9065 ssh2_pkt_addbool(s->pktout, 1); /* want reply */
9066 ssh2_pkt_send(ssh, s->pktout);
9067 s->requested_agent = TRUE;
9068 } else
9069 s->requested_agent = FALSE;
9070
9071 /*
9072 * Now allocate a pty for the session.
9073 */
9074 if (ssh->mainchan && !ssh->ncmode && !conf_get_int(ssh->conf, CONF_nopty)) {
9075 /* Unpick the terminal-speed string. */
9076 /* XXX perhaps we should allow no speeds to be sent. */
9077 ssh->ospeed = 38400; ssh->ispeed = 38400; /* last-resort defaults */
9078 sscanf(conf_get_str(ssh->conf, CONF_termspeed), "%d,%d", &ssh->ospeed, &ssh->ispeed);
9079 /* Build the pty request. */
9080 s->pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_REQUEST);
9081 ssh2_pkt_adduint32(s->pktout, ssh->mainchan->remoteid); /* recipient channel */
9082 ssh2_pkt_addstring(s->pktout, "pty-req");
9083 ssh2_pkt_addbool(s->pktout, 1); /* want reply */
9084 ssh2_pkt_addstring(s->pktout, conf_get_str(ssh->conf, CONF_termtype));
9085 ssh2_pkt_adduint32(s->pktout, ssh->term_width);
9086 ssh2_pkt_adduint32(s->pktout, ssh->term_height);
9087 ssh2_pkt_adduint32(s->pktout, 0); /* pixel width */
9088 ssh2_pkt_adduint32(s->pktout, 0); /* pixel height */
9089 ssh2_pkt_addstring_start(s->pktout);
9090 parse_ttymodes(ssh, ssh2_send_ttymode, (void *)s->pktout);
9091 ssh2_pkt_addbyte(s->pktout, SSH2_TTY_OP_ISPEED);
9092 ssh2_pkt_adduint32(s->pktout, ssh->ispeed);
9093 ssh2_pkt_addbyte(s->pktout, SSH2_TTY_OP_OSPEED);
9094 ssh2_pkt_adduint32(s->pktout, ssh->ospeed);
9095 ssh2_pkt_addstring_data(s->pktout, "\0", 1); /* TTY_OP_END */
9096 ssh2_pkt_send(ssh, s->pktout);
9097 ssh->state = SSH_STATE_INTERMED;
9098 s->requested_tty = TRUE;
9099 } else
9100 s->requested_tty = FALSE;
9101
9102 /*
9103 * Send environment variables.
9104 *
9105 * Simplest thing here is to send all the requests at once, and
9106 * then wait for a whole bunch of successes or failures.
9107 */
9108 s->num_env = 0;
9109 if (ssh->mainchan && !ssh->ncmode) {
9110 char *key, *val;
9111
9112 for (val = conf_get_str_strs(ssh->conf, CONF_environmt, NULL, &key);
9113 val != NULL;
9114 val = conf_get_str_strs(ssh->conf, CONF_environmt, key, &key)) {
9115 s->pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_REQUEST);
9116 ssh2_pkt_adduint32(s->pktout, ssh->mainchan->remoteid);
9117 ssh2_pkt_addstring(s->pktout, "env");
9118 ssh2_pkt_addbool(s->pktout, 1); /* want reply */
9119 ssh2_pkt_addstring(s->pktout, key);
9120 ssh2_pkt_addstring(s->pktout, val);
9121 ssh2_pkt_send(ssh, s->pktout);
9122
9123 s->num_env++;
9124 }
9125 if (s->num_env)
9126 logeventf(ssh, "Sent %d environment variables", s->num_env);
9127 }
9128
9129 /*
9130 * All CHANNEL_REQUESTs sent. Now collect up the replies. These
9131 * must be in precisely the same order as the requests.
9132 */
9133
9134 if (s->requested_x11) {
9135 crWaitUntilV(pktin);
9136
9137 if (pktin->type != SSH2_MSG_CHANNEL_SUCCESS) {
9138 if (pktin->type != SSH2_MSG_CHANNEL_FAILURE) {
9139 bombout(("Unexpected response to X11 forwarding request:"
9140 " packet type %d", pktin->type));
9141 crStopV;
9142 }
9143 logevent("X11 forwarding refused");
9144 } else {
9145 logevent("X11 forwarding enabled");
9146 ssh->X11_fwd_enabled = TRUE;
9147 }
9148 }
9149
9150 if (s->requested_agent) {
9151 crWaitUntilV(pktin);
9152
9153 if (pktin->type != SSH2_MSG_CHANNEL_SUCCESS) {
9154 if (pktin->type != SSH2_MSG_CHANNEL_FAILURE) {
9155 bombout(("Unexpected response to agent forwarding request:"
9156 " packet type %d", pktin->type));
9157 crStopV;
9158 }
9159 logevent("Agent forwarding refused");
9160 } else {
9161 logevent("Agent forwarding enabled");
9162 ssh->agentfwd_enabled = TRUE;
9163 }
9164 }
9165
9166 if (s->requested_tty) {
9167 crWaitUntilV(pktin);
9168
9169 if (pktin->type != SSH2_MSG_CHANNEL_SUCCESS) {
9170 if (pktin->type != SSH2_MSG_CHANNEL_FAILURE) {
9171 bombout(("Unexpected response to pty request:"
9172 " packet type %d", pktin->type));
9173 crStopV;
9174 }
9175 c_write_str(ssh, "Server refused to allocate pty\r\n");
9176 ssh->editing = ssh->echoing = 1;
9177 } else {
9178 logeventf(ssh, "Allocated pty (ospeed %dbps, ispeed %dbps)",
9179 ssh->ospeed, ssh->ispeed);
9180 ssh->got_pty = TRUE;
9181 }
9182 } else {
9183 ssh->editing = ssh->echoing = 1;
9184 }
9185
9186 if (s->num_env) {
9187 s->env_ok = 0;
9188 s->env_left = s->num_env;
9189
9190 while (s->env_left > 0) {
9191 crWaitUntilV(pktin);
9192
9193 if (pktin->type != SSH2_MSG_CHANNEL_SUCCESS) {
9194 if (pktin->type != SSH2_MSG_CHANNEL_FAILURE) {
9195 bombout(("Unexpected response to environment request:"
9196 " packet type %d", pktin->type));
9197 crStopV;
9198 }
9199 } else {
9200 s->env_ok++;
9201 }
9202
9203 s->env_left--;
9204 }
9205
9206 if (s->env_ok == s->num_env) {
9207 logevent("All environment variables successfully set");
9208 } else if (s->env_ok == 0) {
9209 logevent("All environment variables refused");
9210 c_write_str(ssh, "Server refused to set environment variables\r\n");
9211 } else {
9212 logeventf(ssh, "%d environment variables refused",
9213 s->num_env - s->env_ok);
9214 c_write_str(ssh, "Server refused to set all environment variables\r\n");
9215 }
9216 }
9217
9218 /*
9219 * Start a shell or a remote command. We may have to attempt
9220 * this twice if the config data has provided a second choice
9221 * of command.
9222 */
9223 if (ssh->mainchan && !ssh->ncmode) while (1) {
9224 int subsys;
9225 char *cmd;
9226
9227 if (ssh->fallback_cmd) {
9228 subsys = conf_get_int(ssh->conf, CONF_ssh_subsys2);
9229 cmd = conf_get_str(ssh->conf, CONF_remote_cmd2);
9230 } else {
9231 subsys = conf_get_int(ssh->conf, CONF_ssh_subsys);
9232 cmd = conf_get_str(ssh->conf, CONF_remote_cmd);
9233 }
9234
9235 s->pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_REQUEST);
9236 ssh2_pkt_adduint32(s->pktout, ssh->mainchan->remoteid); /* recipient channel */
9237 if (subsys) {
9238 ssh2_pkt_addstring(s->pktout, "subsystem");
9239 ssh2_pkt_addbool(s->pktout, 1); /* want reply */
9240 ssh2_pkt_addstring(s->pktout, cmd);
9241 } else if (*cmd) {
9242 ssh2_pkt_addstring(s->pktout, "exec");
9243 ssh2_pkt_addbool(s->pktout, 1); /* want reply */
9244 ssh2_pkt_addstring(s->pktout, cmd);
9245 } else {
9246 ssh2_pkt_addstring(s->pktout, "shell");
9247 ssh2_pkt_addbool(s->pktout, 1); /* want reply */
9248 }
9249 ssh2_pkt_send(ssh, s->pktout);
9250
9251 crWaitUntilV(pktin);
9252
9253 if (pktin->type != SSH2_MSG_CHANNEL_SUCCESS) {
9254 if (pktin->type != SSH2_MSG_CHANNEL_FAILURE) {
9255 bombout(("Unexpected response to shell/command request:"
9256 " packet type %d", pktin->type));
9257 crStopV;
9258 }
9259 /*
9260 * We failed to start the command. If this is the
9261 * fallback command, we really are finished; if it's
9262 * not, and if the fallback command exists, try falling
9263 * back to it before complaining.
9264 */
9265 if (!ssh->fallback_cmd &&
9266 *conf_get_str(ssh->conf, CONF_remote_cmd2)) {
9267 logevent("Primary command failed; attempting fallback");
9268 ssh->fallback_cmd = TRUE;
9269 continue;
9270 }
9271 bombout(("Server refused to start a shell/command"));
9272 crStopV;
9273 } else {
9274 logevent("Started a shell/command");
9275 }
9276 break;
9277 }
9278
9279 ssh->state = SSH_STATE_SESSION;
9280 if (ssh->size_needed)
9281 ssh_size(ssh, ssh->term_width, ssh->term_height);
9282 if (ssh->eof_needed)
9283 ssh_special(ssh, TS_EOF);
9284
9285 /*
9286 * All the initial channel requests are done, so install the default
9287 * failure handler.
9288 */
9289 ssh->packet_dispatch[SSH2_MSG_CHANNEL_SUCCESS] = ssh2_msg_channel_success;
9290 ssh->packet_dispatch[SSH2_MSG_CHANNEL_FAILURE] = ssh2_msg_channel_failure;
9291
9292 /*
9293 * Transfer data!
9294 */
9295 if (ssh->ldisc)
9296 ldisc_send(ssh->ldisc, NULL, 0, 0);/* cause ldisc to notice changes */
9297 if (ssh->mainchan)
9298 ssh->send_ok = 1;
9299 while (1) {
9300 crReturnV;
9301 s->try_send = FALSE;
9302 if (pktin) {
9303
9304 /*
9305 * _All_ the connection-layer packets we expect to
9306 * receive are now handled by the dispatch table.
9307 * Anything that reaches here must be bogus.
9308 */
9309
9310 bombout(("Strange packet received: type %d", pktin->type));
9311 crStopV;
9312 } else if (ssh->mainchan) {
9313 /*
9314 * We have spare data. Add it to the channel buffer.
9315 */
9316 ssh2_add_channel_data(ssh->mainchan, (char *)in, inlen);
9317 s->try_send = TRUE;
9318 }
9319 if (s->try_send) {
9320 int i;
9321 struct ssh_channel *c;
9322 /*
9323 * Try to send data on all channels if we can.
9324 */
9325 for (i = 0; NULL != (c = index234(ssh->channels, i)); i++)
9326 ssh2_try_send_and_unthrottle(ssh, c);
9327 }
9328 }
9329
9330 crFinishV;
9331 }
9332
9333 /*
9334 * Handlers for SSH-2 messages that might arrive at any moment.
9335 */
9336 static void ssh2_msg_disconnect(Ssh ssh, struct Packet *pktin)
9337 {
9338 /* log reason code in disconnect message */
9339 char *buf, *msg;
9340 int reason, msglen;
9341
9342 reason = ssh_pkt_getuint32(pktin);
9343 ssh_pkt_getstring(pktin, &msg, &msglen);
9344
9345 if (reason > 0 && reason < lenof(ssh2_disconnect_reasons)) {
9346 buf = dupprintf("Received disconnect message (%s)",
9347 ssh2_disconnect_reasons[reason]);
9348 } else {
9349 buf = dupprintf("Received disconnect message (unknown"
9350 " type %d)", reason);
9351 }
9352 logevent(buf);
9353 sfree(buf);
9354 buf = dupprintf("Disconnection message text: %.*s",
9355 msglen, msg);
9356 logevent(buf);
9357 bombout(("Server sent disconnect message\ntype %d (%s):\n\"%.*s\"",
9358 reason,
9359 (reason > 0 && reason < lenof(ssh2_disconnect_reasons)) ?
9360 ssh2_disconnect_reasons[reason] : "unknown",
9361 msglen, msg));
9362 sfree(buf);
9363 }
9364
9365 static void ssh2_msg_debug(Ssh ssh, struct Packet *pktin)
9366 {
9367 /* log the debug message */
9368 char *msg;
9369 int msglen;
9370
9371 /* XXX maybe we should actually take notice of the return value */
9372 ssh2_pkt_getbool(pktin);
9373 ssh_pkt_getstring(pktin, &msg, &msglen);
9374
9375 logeventf(ssh, "Remote debug message: %.*s", msglen, msg);
9376 }
9377
9378 static void ssh2_msg_transport(Ssh ssh, struct Packet *pktin)
9379 {
9380 do_ssh2_transport(ssh, NULL, 0, pktin);
9381 }
9382
9383 /*
9384 * Called if we receive a packet that isn't allowed by the protocol.
9385 * This only applies to packets whose meaning PuTTY understands.
9386 * Entirely unknown packets are handled below.
9387 */
9388 static void ssh2_msg_unexpected(Ssh ssh, struct Packet *pktin)
9389 {
9390 char *buf = dupprintf("Server protocol violation: unexpected %s packet",
9391 ssh2_pkt_type(ssh->pkt_kctx, ssh->pkt_actx,
9392 pktin->type));
9393 ssh_disconnect(ssh, NULL, buf, SSH2_DISCONNECT_PROTOCOL_ERROR, FALSE);
9394 sfree(buf);
9395 }
9396
9397 static void ssh2_msg_something_unimplemented(Ssh ssh, struct Packet *pktin)
9398 {
9399 struct Packet *pktout;
9400 pktout = ssh2_pkt_init(SSH2_MSG_UNIMPLEMENTED);
9401 ssh2_pkt_adduint32(pktout, pktin->sequence);
9402 /*
9403 * UNIMPLEMENTED messages MUST appear in the same order as the
9404 * messages they respond to. Hence, never queue them.
9405 */
9406 ssh2_pkt_send_noqueue(ssh, pktout);
9407 }
9408
9409 /*
9410 * Handle the top-level SSH-2 protocol.
9411 */
9412 static void ssh2_protocol_setup(Ssh ssh)
9413 {
9414 int i;
9415
9416 /*
9417 * Most messages cause SSH2_MSG_UNIMPLEMENTED.
9418 */
9419 for (i = 0; i < 256; i++)
9420 ssh->packet_dispatch[i] = ssh2_msg_something_unimplemented;
9421
9422 /*
9423 * Initially, we only accept transport messages (and a few generic
9424 * ones). do_ssh2_authconn will add more when it starts.
9425 * Messages that are understood but not currently acceptable go to
9426 * ssh2_msg_unexpected.
9427 */
9428 ssh->packet_dispatch[SSH2_MSG_UNIMPLEMENTED] = ssh2_msg_unexpected;
9429 ssh->packet_dispatch[SSH2_MSG_SERVICE_REQUEST] = ssh2_msg_unexpected;
9430 ssh->packet_dispatch[SSH2_MSG_SERVICE_ACCEPT] = ssh2_msg_unexpected;
9431 ssh->packet_dispatch[SSH2_MSG_KEXINIT] = ssh2_msg_transport;
9432 ssh->packet_dispatch[SSH2_MSG_NEWKEYS] = ssh2_msg_transport;
9433 ssh->packet_dispatch[SSH2_MSG_KEXDH_INIT] = ssh2_msg_transport;
9434 ssh->packet_dispatch[SSH2_MSG_KEXDH_REPLY] = ssh2_msg_transport;
9435 /* ssh->packet_dispatch[SSH2_MSG_KEX_DH_GEX_REQUEST] = ssh2_msg_transport; duplicate case value */
9436 /* ssh->packet_dispatch[SSH2_MSG_KEX_DH_GEX_GROUP] = ssh2_msg_transport; duplicate case value */
9437 ssh->packet_dispatch[SSH2_MSG_KEX_DH_GEX_INIT] = ssh2_msg_transport;
9438 ssh->packet_dispatch[SSH2_MSG_KEX_DH_GEX_REPLY] = ssh2_msg_transport;
9439 ssh->packet_dispatch[SSH2_MSG_USERAUTH_REQUEST] = ssh2_msg_unexpected;
9440 ssh->packet_dispatch[SSH2_MSG_USERAUTH_FAILURE] = ssh2_msg_unexpected;
9441 ssh->packet_dispatch[SSH2_MSG_USERAUTH_SUCCESS] = ssh2_msg_unexpected;
9442 ssh->packet_dispatch[SSH2_MSG_USERAUTH_BANNER] = ssh2_msg_unexpected;
9443 ssh->packet_dispatch[SSH2_MSG_USERAUTH_PK_OK] = ssh2_msg_unexpected;
9444 /* ssh->packet_dispatch[SSH2_MSG_USERAUTH_PASSWD_CHANGEREQ] = ssh2_msg_unexpected; duplicate case value */
9445 /* ssh->packet_dispatch[SSH2_MSG_USERAUTH_INFO_REQUEST] = ssh2_msg_unexpected; duplicate case value */
9446 ssh->packet_dispatch[SSH2_MSG_USERAUTH_INFO_RESPONSE] = ssh2_msg_unexpected;
9447 ssh->packet_dispatch[SSH2_MSG_GLOBAL_REQUEST] = ssh2_msg_unexpected;
9448 ssh->packet_dispatch[SSH2_MSG_REQUEST_SUCCESS] = ssh2_msg_unexpected;
9449 ssh->packet_dispatch[SSH2_MSG_REQUEST_FAILURE] = ssh2_msg_unexpected;
9450 ssh->packet_dispatch[SSH2_MSG_CHANNEL_OPEN] = ssh2_msg_unexpected;
9451 ssh->packet_dispatch[SSH2_MSG_CHANNEL_OPEN_CONFIRMATION] = ssh2_msg_unexpected;
9452 ssh->packet_dispatch[SSH2_MSG_CHANNEL_OPEN_FAILURE] = ssh2_msg_unexpected;
9453 ssh->packet_dispatch[SSH2_MSG_CHANNEL_WINDOW_ADJUST] = ssh2_msg_unexpected;
9454 ssh->packet_dispatch[SSH2_MSG_CHANNEL_DATA] = ssh2_msg_unexpected;
9455 ssh->packet_dispatch[SSH2_MSG_CHANNEL_EXTENDED_DATA] = ssh2_msg_unexpected;
9456 ssh->packet_dispatch[SSH2_MSG_CHANNEL_EOF] = ssh2_msg_unexpected;
9457 ssh->packet_dispatch[SSH2_MSG_CHANNEL_CLOSE] = ssh2_msg_unexpected;
9458 ssh->packet_dispatch[SSH2_MSG_CHANNEL_REQUEST] = ssh2_msg_unexpected;
9459 ssh->packet_dispatch[SSH2_MSG_CHANNEL_SUCCESS] = ssh2_msg_unexpected;
9460 ssh->packet_dispatch[SSH2_MSG_CHANNEL_FAILURE] = ssh2_msg_unexpected;
9461
9462 /*
9463 * These messages have a special handler from the start.
9464 */
9465 ssh->packet_dispatch[SSH2_MSG_DISCONNECT] = ssh2_msg_disconnect;
9466 ssh->packet_dispatch[SSH2_MSG_IGNORE] = ssh_msg_ignore; /* shared with SSH-1 */
9467 ssh->packet_dispatch[SSH2_MSG_DEBUG] = ssh2_msg_debug;
9468 }
9469
9470 static void ssh2_timer(void *ctx, long now)
9471 {
9472 Ssh ssh = (Ssh)ctx;
9473
9474 if (ssh->state == SSH_STATE_CLOSED)
9475 return;
9476
9477 if (!ssh->kex_in_progress && conf_get_int(ssh->conf, CONF_ssh_rekey_time) != 0 &&
9478 now - ssh->next_rekey >= 0) {
9479 do_ssh2_transport(ssh, "timeout", -1, NULL);
9480 }
9481 }
9482
9483 static void ssh2_protocol(Ssh ssh, void *vin, int inlen,
9484 struct Packet *pktin)
9485 {
9486 unsigned char *in = (unsigned char *)vin;
9487 if (ssh->state == SSH_STATE_CLOSED)
9488 return;
9489
9490 if (pktin) {
9491 ssh->incoming_data_size += pktin->encrypted_len;
9492 if (!ssh->kex_in_progress &&
9493 ssh->max_data_size != 0 &&
9494 ssh->incoming_data_size > ssh->max_data_size)
9495 do_ssh2_transport(ssh, "too much data received", -1, NULL);
9496 }
9497
9498 if (pktin)
9499 ssh->packet_dispatch[pktin->type](ssh, pktin);
9500 else if (!ssh->protocol_initial_phase_done)
9501 do_ssh2_transport(ssh, in, inlen, pktin);
9502 else
9503 do_ssh2_authconn(ssh, in, inlen, pktin);
9504 }
9505
9506 static void ssh_cache_conf_values(Ssh ssh)
9507 {
9508 ssh->logomitdata = conf_get_int(ssh->conf, CONF_logomitdata);
9509 }
9510
9511 /*
9512 * Called to set up the connection.
9513 *
9514 * Returns an error message, or NULL on success.
9515 */
9516 static const char *ssh_init(void *frontend_handle, void **backend_handle,
9517 Conf *conf, char *host, int port, char **realhost,
9518 int nodelay, int keepalive)
9519 {
9520 const char *p;
9521 Ssh ssh;
9522
9523 ssh = snew(struct ssh_tag);
9524 ssh->conf = conf_copy(conf);
9525 ssh_cache_conf_values(ssh);
9526 ssh->version = 0; /* when not ready yet */
9527 ssh->s = NULL;
9528 ssh->cipher = NULL;
9529 ssh->v1_cipher_ctx = NULL;
9530 ssh->crcda_ctx = NULL;
9531 ssh->cscipher = NULL;
9532 ssh->cs_cipher_ctx = NULL;
9533 ssh->sccipher = NULL;
9534 ssh->sc_cipher_ctx = NULL;
9535 ssh->csmac = NULL;
9536 ssh->cs_mac_ctx = NULL;
9537 ssh->scmac = NULL;
9538 ssh->sc_mac_ctx = NULL;
9539 ssh->cscomp = NULL;
9540 ssh->cs_comp_ctx = NULL;
9541 ssh->sccomp = NULL;
9542 ssh->sc_comp_ctx = NULL;
9543 ssh->kex = NULL;
9544 ssh->kex_ctx = NULL;
9545 ssh->hostkey = NULL;
9546 ssh->exitcode = -1;
9547 ssh->close_expected = FALSE;
9548 ssh->clean_exit = FALSE;
9549 ssh->state = SSH_STATE_PREPACKET;
9550 ssh->size_needed = FALSE;
9551 ssh->eof_needed = FALSE;
9552 ssh->ldisc = NULL;
9553 ssh->logctx = NULL;
9554 ssh->deferred_send_data = NULL;
9555 ssh->deferred_len = 0;
9556 ssh->deferred_size = 0;
9557 ssh->fallback_cmd = 0;
9558 ssh->pkt_kctx = SSH2_PKTCTX_NOKEX;
9559 ssh->pkt_actx = SSH2_PKTCTX_NOAUTH;
9560 ssh->x11disp = NULL;
9561 ssh->v1_compressing = FALSE;
9562 ssh->v2_outgoing_sequence = 0;
9563 ssh->ssh1_rdpkt_crstate = 0;
9564 ssh->ssh2_rdpkt_crstate = 0;
9565 ssh->ssh_gotdata_crstate = 0;
9566 ssh->do_ssh1_connection_crstate = 0;
9567 ssh->do_ssh_init_state = NULL;
9568 ssh->do_ssh1_login_state = NULL;
9569 ssh->do_ssh2_transport_state = NULL;
9570 ssh->do_ssh2_authconn_state = NULL;
9571 ssh->v_c = NULL;
9572 ssh->v_s = NULL;
9573 ssh->mainchan = NULL;
9574 ssh->throttled_all = 0;
9575 ssh->v1_stdout_throttling = 0;
9576 ssh->queue = NULL;
9577 ssh->queuelen = ssh->queuesize = 0;
9578 ssh->queueing = FALSE;
9579 ssh->qhead = ssh->qtail = NULL;
9580 ssh->deferred_rekey_reason = NULL;
9581 bufchain_init(&ssh->queued_incoming_data);
9582 ssh->frozen = FALSE;
9583 ssh->username = NULL;
9584 ssh->sent_console_eof = FALSE;
9585 ssh->got_pty = FALSE;
9586
9587 *backend_handle = ssh;
9588
9589 #ifdef MSCRYPTOAPI
9590 if (crypto_startup() == 0)
9591 return "Microsoft high encryption pack not installed!";
9592 #endif
9593
9594 ssh->frontend = frontend_handle;
9595 ssh->term_width = conf_get_int(ssh->conf, CONF_width);
9596 ssh->term_height = conf_get_int(ssh->conf, CONF_height);
9597
9598 ssh->channels = NULL;
9599 ssh->rportfwds = NULL;
9600 ssh->portfwds = NULL;
9601
9602 ssh->send_ok = 0;
9603 ssh->editing = 0;
9604 ssh->echoing = 0;
9605 ssh->conn_throttle_count = 0;
9606 ssh->overall_bufsize = 0;
9607 ssh->fallback_cmd = 0;
9608
9609 ssh->protocol = NULL;
9610
9611 ssh->protocol_initial_phase_done = FALSE;
9612
9613 ssh->pinger = NULL;
9614
9615 ssh->incoming_data_size = ssh->outgoing_data_size =
9616 ssh->deferred_data_size = 0L;
9617 ssh->max_data_size = parse_blocksize(conf_get_str(ssh->conf,
9618 CONF_ssh_rekey_data));
9619 ssh->kex_in_progress = FALSE;
9620
9621 #ifndef NO_GSSAPI
9622 ssh->gsslibs = NULL;
9623 #endif
9624
9625 p = connect_to_host(ssh, host, port, realhost, nodelay, keepalive);
9626 if (p != NULL)
9627 return p;
9628
9629 random_ref();
9630
9631 return NULL;
9632 }
9633
9634 static void ssh_free(void *handle)
9635 {
9636 Ssh ssh = (Ssh) handle;
9637 struct ssh_channel *c;
9638 struct ssh_rportfwd *pf;
9639
9640 if (ssh->v1_cipher_ctx)
9641 ssh->cipher->free_context(ssh->v1_cipher_ctx);
9642 if (ssh->cs_cipher_ctx)
9643 ssh->cscipher->free_context(ssh->cs_cipher_ctx);
9644 if (ssh->sc_cipher_ctx)
9645 ssh->sccipher->free_context(ssh->sc_cipher_ctx);
9646 if (ssh->cs_mac_ctx)
9647 ssh->csmac->free_context(ssh->cs_mac_ctx);
9648 if (ssh->sc_mac_ctx)
9649 ssh->scmac->free_context(ssh->sc_mac_ctx);
9650 if (ssh->cs_comp_ctx) {
9651 if (ssh->cscomp)
9652 ssh->cscomp->compress_cleanup(ssh->cs_comp_ctx);
9653 else
9654 zlib_compress_cleanup(ssh->cs_comp_ctx);
9655 }
9656 if (ssh->sc_comp_ctx) {
9657 if (ssh->sccomp)
9658 ssh->sccomp->decompress_cleanup(ssh->sc_comp_ctx);
9659 else
9660 zlib_decompress_cleanup(ssh->sc_comp_ctx);
9661 }
9662 if (ssh->kex_ctx)
9663 dh_cleanup(ssh->kex_ctx);
9664 sfree(ssh->savedhost);
9665
9666 while (ssh->queuelen-- > 0)
9667 ssh_free_packet(ssh->queue[ssh->queuelen]);
9668 sfree(ssh->queue);
9669
9670 while (ssh->qhead) {
9671 struct queued_handler *qh = ssh->qhead;
9672 ssh->qhead = qh->next;
9673 sfree(ssh->qhead);
9674 }
9675 ssh->qhead = ssh->qtail = NULL;
9676
9677 if (ssh->channels) {
9678 while ((c = delpos234(ssh->channels, 0)) != NULL) {
9679 switch (c->type) {
9680 case CHAN_X11:
9681 if (c->u.x11.s != NULL)
9682 x11_close(c->u.x11.s);
9683 break;
9684 case CHAN_SOCKDATA:
9685 case CHAN_SOCKDATA_DORMANT:
9686 if (c->u.pfd.s != NULL)
9687 pfd_close(c->u.pfd.s);
9688 break;
9689 }
9690 sfree(c);
9691 }
9692 freetree234(ssh->channels);
9693 ssh->channels = NULL;
9694 }
9695
9696 if (ssh->rportfwds) {
9697 while ((pf = delpos234(ssh->rportfwds, 0)) != NULL)
9698 free_rportfwd(pf);
9699 freetree234(ssh->rportfwds);
9700 ssh->rportfwds = NULL;
9701 }
9702 sfree(ssh->deferred_send_data);
9703 if (ssh->x11disp)
9704 x11_free_display(ssh->x11disp);
9705 sfree(ssh->do_ssh_init_state);
9706 sfree(ssh->do_ssh1_login_state);
9707 sfree(ssh->do_ssh2_transport_state);
9708 sfree(ssh->do_ssh2_authconn_state);
9709 sfree(ssh->v_c);
9710 sfree(ssh->v_s);
9711 sfree(ssh->fullhostname);
9712 if (ssh->crcda_ctx) {
9713 crcda_free_context(ssh->crcda_ctx);
9714 ssh->crcda_ctx = NULL;
9715 }
9716 if (ssh->s)
9717 ssh_do_close(ssh, TRUE);
9718 expire_timer_context(ssh);
9719 if (ssh->pinger)
9720 pinger_free(ssh->pinger);
9721 bufchain_clear(&ssh->queued_incoming_data);
9722 sfree(ssh->username);
9723 conf_free(ssh->conf);
9724 #ifndef NO_GSSAPI
9725 if (ssh->gsslibs)
9726 ssh_gss_cleanup(ssh->gsslibs);
9727 #endif
9728 sfree(ssh);
9729
9730 random_unref();
9731 }
9732
9733 /*
9734 * Reconfigure the SSH backend.
9735 */
9736 static void ssh_reconfig(void *handle, Conf *conf)
9737 {
9738 Ssh ssh = (Ssh) handle;
9739 char *rekeying = NULL, rekey_mandatory = FALSE;
9740 unsigned long old_max_data_size;
9741 int i, rekey_time;
9742
9743 pinger_reconfig(ssh->pinger, ssh->conf, conf);
9744 if (ssh->portfwds)
9745 ssh_setup_portfwd(ssh, conf);
9746
9747 rekey_time = conf_get_int(conf, CONF_ssh_rekey_time);
9748 if (conf_get_int(ssh->conf, CONF_ssh_rekey_time) != rekey_time &&
9749 rekey_time != 0) {
9750 long new_next = ssh->last_rekey + rekey_time*60*TICKSPERSEC;
9751 long now = GETTICKCOUNT();
9752
9753 if (new_next - now < 0) {
9754 rekeying = "timeout shortened";
9755 } else {
9756 ssh->next_rekey = schedule_timer(new_next - now, ssh2_timer, ssh);
9757 }
9758 }
9759
9760 old_max_data_size = ssh->max_data_size;
9761 ssh->max_data_size = parse_blocksize(conf_get_str(ssh->conf,
9762 CONF_ssh_rekey_data));
9763 if (old_max_data_size != ssh->max_data_size &&
9764 ssh->max_data_size != 0) {
9765 if (ssh->outgoing_data_size > ssh->max_data_size ||
9766 ssh->incoming_data_size > ssh->max_data_size)
9767 rekeying = "data limit lowered";
9768 }
9769
9770 if (conf_get_int(ssh->conf, CONF_compression) !=
9771 conf_get_int(conf, CONF_compression)) {
9772 rekeying = "compression setting changed";
9773 rekey_mandatory = TRUE;
9774 }
9775
9776 for (i = 0; i < CIPHER_MAX; i++)
9777 if (conf_get_int_int(ssh->conf, CONF_ssh_cipherlist, i) !=
9778 conf_get_int_int(conf, CONF_ssh_cipherlist, i)) {
9779 rekeying = "cipher settings changed";
9780 rekey_mandatory = TRUE;
9781 }
9782 if (conf_get_int(ssh->conf, CONF_ssh2_des_cbc) !=
9783 conf_get_int(conf, CONF_ssh2_des_cbc)) {
9784 rekeying = "cipher settings changed";
9785 rekey_mandatory = TRUE;
9786 }
9787
9788 conf_free(ssh->conf);
9789 ssh->conf = conf_copy(conf);
9790 ssh_cache_conf_values(ssh);
9791
9792 if (rekeying) {
9793 if (!ssh->kex_in_progress) {
9794 do_ssh2_transport(ssh, rekeying, -1, NULL);
9795 } else if (rekey_mandatory) {
9796 ssh->deferred_rekey_reason = rekeying;
9797 }
9798 }
9799 }
9800
9801 /*
9802 * Called to send data down the SSH connection.
9803 */
9804 static int ssh_send(void *handle, char *buf, int len)
9805 {
9806 Ssh ssh = (Ssh) handle;
9807
9808 if (ssh == NULL || ssh->s == NULL || ssh->protocol == NULL)
9809 return 0;
9810
9811 ssh->protocol(ssh, (unsigned char *)buf, len, 0);
9812
9813 return ssh_sendbuffer(ssh);
9814 }
9815
9816 /*
9817 * Called to query the current amount of buffered stdin data.
9818 */
9819 static int ssh_sendbuffer(void *handle)
9820 {
9821 Ssh ssh = (Ssh) handle;
9822 int override_value;
9823
9824 if (ssh == NULL || ssh->s == NULL || ssh->protocol == NULL)
9825 return 0;
9826
9827 /*
9828 * If the SSH socket itself has backed up, add the total backup
9829 * size on that to any individual buffer on the stdin channel.
9830 */
9831 override_value = 0;
9832 if (ssh->throttled_all)
9833 override_value = ssh->overall_bufsize;
9834
9835 if (ssh->version == 1) {
9836 return override_value;
9837 } else if (ssh->version == 2) {
9838 if (!ssh->mainchan)
9839 return override_value;
9840 else
9841 return (override_value +
9842 bufchain_size(&ssh->mainchan->v.v2.outbuffer));
9843 }
9844
9845 return 0;
9846 }
9847
9848 /*
9849 * Called to set the size of the window from SSH's POV.
9850 */
9851 static void ssh_size(void *handle, int width, int height)
9852 {
9853 Ssh ssh = (Ssh) handle;
9854 struct Packet *pktout;
9855
9856 ssh->term_width = width;
9857 ssh->term_height = height;
9858
9859 switch (ssh->state) {
9860 case SSH_STATE_BEFORE_SIZE:
9861 case SSH_STATE_PREPACKET:
9862 case SSH_STATE_CLOSED:
9863 break; /* do nothing */
9864 case SSH_STATE_INTERMED:
9865 ssh->size_needed = TRUE; /* buffer for later */
9866 break;
9867 case SSH_STATE_SESSION:
9868 if (!conf_get_int(ssh->conf, CONF_nopty)) {
9869 if (ssh->version == 1) {
9870 send_packet(ssh, SSH1_CMSG_WINDOW_SIZE,
9871 PKT_INT, ssh->term_height,
9872 PKT_INT, ssh->term_width,
9873 PKT_INT, 0, PKT_INT, 0, PKT_END);
9874 } else if (ssh->mainchan) {
9875 pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_REQUEST);
9876 ssh2_pkt_adduint32(pktout, ssh->mainchan->remoteid);
9877 ssh2_pkt_addstring(pktout, "window-change");
9878 ssh2_pkt_addbool(pktout, 0);
9879 ssh2_pkt_adduint32(pktout, ssh->term_width);
9880 ssh2_pkt_adduint32(pktout, ssh->term_height);
9881 ssh2_pkt_adduint32(pktout, 0);
9882 ssh2_pkt_adduint32(pktout, 0);
9883 ssh2_pkt_send(ssh, pktout);
9884 }
9885 }
9886 break;
9887 }
9888 }
9889
9890 /*
9891 * Return a list of the special codes that make sense in this
9892 * protocol.
9893 */
9894 static const struct telnet_special *ssh_get_specials(void *handle)
9895 {
9896 static const struct telnet_special ssh1_ignore_special[] = {
9897 {"IGNORE message", TS_NOP}
9898 };
9899 static const struct telnet_special ssh2_ignore_special[] = {
9900 {"IGNORE message", TS_NOP},
9901 };
9902 static const struct telnet_special ssh2_rekey_special[] = {
9903 {"Repeat key exchange", TS_REKEY},
9904 };
9905 static const struct telnet_special ssh2_session_specials[] = {
9906 {NULL, TS_SEP},
9907 {"Break", TS_BRK},
9908 /* These are the signal names defined by RFC 4254.
9909 * They include all the ISO C signals, but are a subset of the POSIX
9910 * required signals. */
9911 {"SIGINT (Interrupt)", TS_SIGINT},
9912 {"SIGTERM (Terminate)", TS_SIGTERM},
9913 {"SIGKILL (Kill)", TS_SIGKILL},
9914 {"SIGQUIT (Quit)", TS_SIGQUIT},
9915 {"SIGHUP (Hangup)", TS_SIGHUP},
9916 {"More signals", TS_SUBMENU},
9917 {"SIGABRT", TS_SIGABRT}, {"SIGALRM", TS_SIGALRM},
9918 {"SIGFPE", TS_SIGFPE}, {"SIGILL", TS_SIGILL},
9919 {"SIGPIPE", TS_SIGPIPE}, {"SIGSEGV", TS_SIGSEGV},
9920 {"SIGUSR1", TS_SIGUSR1}, {"SIGUSR2", TS_SIGUSR2},
9921 {NULL, TS_EXITMENU}
9922 };
9923 static const struct telnet_special specials_end[] = {
9924 {NULL, TS_EXITMENU}
9925 };
9926 /* XXX review this length for any changes: */
9927 static struct telnet_special ssh_specials[lenof(ssh2_ignore_special) +
9928 lenof(ssh2_rekey_special) +
9929 lenof(ssh2_session_specials) +
9930 lenof(specials_end)];
9931 Ssh ssh = (Ssh) handle;
9932 int i = 0;
9933 #define ADD_SPECIALS(name) \
9934 do { \
9935 assert((i + lenof(name)) <= lenof(ssh_specials)); \
9936 memcpy(&ssh_specials[i], name, sizeof name); \
9937 i += lenof(name); \
9938 } while(0)
9939
9940 if (ssh->version == 1) {
9941 /* Don't bother offering IGNORE if we've decided the remote
9942 * won't cope with it, since we wouldn't bother sending it if
9943 * asked anyway. */
9944 if (!(ssh->remote_bugs & BUG_CHOKES_ON_SSH1_IGNORE))
9945 ADD_SPECIALS(ssh1_ignore_special);
9946 } else if (ssh->version == 2) {
9947 if (!(ssh->remote_bugs & BUG_CHOKES_ON_SSH2_IGNORE))
9948 ADD_SPECIALS(ssh2_ignore_special);
9949 if (!(ssh->remote_bugs & BUG_SSH2_REKEY))
9950 ADD_SPECIALS(ssh2_rekey_special);
9951 if (ssh->mainchan)
9952 ADD_SPECIALS(ssh2_session_specials);
9953 } /* else we're not ready yet */
9954
9955 if (i) {
9956 ADD_SPECIALS(specials_end);
9957 return ssh_specials;
9958 } else {
9959 return NULL;
9960 }
9961 #undef ADD_SPECIALS
9962 }
9963
9964 /*
9965 * Send special codes. TS_EOF is useful for `plink', so you
9966 * can send an EOF and collect resulting output (e.g. `plink
9967 * hostname sort').
9968 */
9969 static void ssh_special(void *handle, Telnet_Special code)
9970 {
9971 Ssh ssh = (Ssh) handle;
9972 struct Packet *pktout;
9973
9974 if (code == TS_EOF) {
9975 if (ssh->state != SSH_STATE_SESSION) {
9976 /*
9977 * Buffer the EOF in case we are pre-SESSION, so we can
9978 * send it as soon as we reach SESSION.
9979 */
9980 if (code == TS_EOF)
9981 ssh->eof_needed = TRUE;
9982 return;
9983 }
9984 if (ssh->version == 1) {
9985 send_packet(ssh, SSH1_CMSG_EOF, PKT_END);
9986 } else if (ssh->mainchan) {
9987 sshfwd_write_eof(ssh->mainchan);
9988 ssh->send_ok = 0; /* now stop trying to read from stdin */
9989 }
9990 logevent("Sent EOF message");
9991 } else if (code == TS_PING || code == TS_NOP) {
9992 if (ssh->state == SSH_STATE_CLOSED
9993 || ssh->state == SSH_STATE_PREPACKET) return;
9994 if (ssh->version == 1) {
9995 if (!(ssh->remote_bugs & BUG_CHOKES_ON_SSH1_IGNORE))
9996 send_packet(ssh, SSH1_MSG_IGNORE, PKT_STR, "", PKT_END);
9997 } else {
9998 if (!(ssh->remote_bugs & BUG_CHOKES_ON_SSH2_IGNORE)) {
9999 pktout = ssh2_pkt_init(SSH2_MSG_IGNORE);
10000 ssh2_pkt_addstring_start(pktout);
10001 ssh2_pkt_send_noqueue(ssh, pktout);
10002 }
10003 }
10004 } else if (code == TS_REKEY) {
10005 if (!ssh->kex_in_progress && ssh->version == 2) {
10006 do_ssh2_transport(ssh, "at user request", -1, NULL);
10007 }
10008 } else if (code == TS_BRK) {
10009 if (ssh->state == SSH_STATE_CLOSED
10010 || ssh->state == SSH_STATE_PREPACKET) return;
10011 if (ssh->version == 1) {
10012 logevent("Unable to send BREAK signal in SSH-1");
10013 } else if (ssh->mainchan) {
10014 pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_REQUEST);
10015 ssh2_pkt_adduint32(pktout, ssh->mainchan->remoteid);
10016 ssh2_pkt_addstring(pktout, "break");
10017 ssh2_pkt_addbool(pktout, 0);
10018 ssh2_pkt_adduint32(pktout, 0); /* default break length */
10019 ssh2_pkt_send(ssh, pktout);
10020 }
10021 } else {
10022 /* Is is a POSIX signal? */
10023 char *signame = NULL;
10024 if (code == TS_SIGABRT) signame = "ABRT";
10025 if (code == TS_SIGALRM) signame = "ALRM";
10026 if (code == TS_SIGFPE) signame = "FPE";
10027 if (code == TS_SIGHUP) signame = "HUP";
10028 if (code == TS_SIGILL) signame = "ILL";
10029 if (code == TS_SIGINT) signame = "INT";
10030 if (code == TS_SIGKILL) signame = "KILL";
10031 if (code == TS_SIGPIPE) signame = "PIPE";
10032 if (code == TS_SIGQUIT) signame = "QUIT";
10033 if (code == TS_SIGSEGV) signame = "SEGV";
10034 if (code == TS_SIGTERM) signame = "TERM";
10035 if (code == TS_SIGUSR1) signame = "USR1";
10036 if (code == TS_SIGUSR2) signame = "USR2";
10037 /* The SSH-2 protocol does in principle support arbitrary named
10038 * signals, including signame@domain, but we don't support those. */
10039 if (signame) {
10040 /* It's a signal. */
10041 if (ssh->version == 2 && ssh->mainchan) {
10042 pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_REQUEST);
10043 ssh2_pkt_adduint32(pktout, ssh->mainchan->remoteid);
10044 ssh2_pkt_addstring(pktout, "signal");
10045 ssh2_pkt_addbool(pktout, 0);
10046 ssh2_pkt_addstring(pktout, signame);
10047 ssh2_pkt_send(ssh, pktout);
10048 logeventf(ssh, "Sent signal SIG%s", signame);
10049 }
10050 } else {
10051 /* Never heard of it. Do nothing */
10052 }
10053 }
10054 }
10055
10056 void *new_sock_channel(void *handle, Socket s)
10057 {
10058 Ssh ssh = (Ssh) handle;
10059 struct ssh_channel *c;
10060 c = snew(struct ssh_channel);
10061
10062 c->ssh = ssh;
10063 ssh2_channel_init(c);
10064 c->halfopen = TRUE;
10065 c->type = CHAN_SOCKDATA_DORMANT;/* identify channel type */
10066 c->u.pfd.s = s;
10067 add234(ssh->channels, c);
10068 return c;
10069 }
10070
10071 /*
10072 * This is called when stdout/stderr (the entity to which
10073 * from_backend sends data) manages to clear some backlog.
10074 */
10075 static void ssh_unthrottle(void *handle, int bufsize)
10076 {
10077 Ssh ssh = (Ssh) handle;
10078 int buflimit;
10079
10080 if (ssh->version == 1) {
10081 if (ssh->v1_stdout_throttling && bufsize < SSH1_BUFFER_LIMIT) {
10082 ssh->v1_stdout_throttling = 0;
10083 ssh_throttle_conn(ssh, -1);
10084 }
10085 } else {
10086 if (ssh->mainchan) {
10087 ssh2_set_window(ssh->mainchan,
10088 bufsize < ssh->mainchan->v.v2.locmaxwin ?
10089 ssh->mainchan->v.v2.locmaxwin - bufsize : 0);
10090 if (conf_get_int(ssh->conf, CONF_ssh_simple))
10091 buflimit = 0;
10092 else
10093 buflimit = ssh->mainchan->v.v2.locmaxwin;
10094 if (ssh->mainchan->throttling_conn && bufsize <= buflimit) {
10095 ssh->mainchan->throttling_conn = 0;
10096 ssh_throttle_conn(ssh, -1);
10097 }
10098 }
10099 }
10100
10101 /*
10102 * Now process any SSH connection data that was stashed in our
10103 * queue while we were frozen.
10104 */
10105 ssh_process_queued_incoming_data(ssh);
10106 }
10107
10108 void ssh_send_port_open(void *channel, char *hostname, int port, char *org)
10109 {
10110 struct ssh_channel *c = (struct ssh_channel *)channel;
10111 Ssh ssh = c->ssh;
10112 struct Packet *pktout;
10113
10114 logeventf(ssh, "Opening forwarded connection to %s:%d", hostname, port);
10115
10116 if (ssh->version == 1) {
10117 send_packet(ssh, SSH1_MSG_PORT_OPEN,
10118 PKT_INT, c->localid,
10119 PKT_STR, hostname,
10120 PKT_INT, port,
10121 /* PKT_STR, <org:orgport>, */
10122 PKT_END);
10123 } else {
10124 pktout = ssh2_pkt_init(SSH2_MSG_CHANNEL_OPEN);
10125 ssh2_pkt_addstring(pktout, "direct-tcpip");
10126 ssh2_pkt_adduint32(pktout, c->localid);
10127 ssh2_pkt_adduint32(pktout, c->v.v2.locwindow);/* our window size */
10128 ssh2_pkt_adduint32(pktout, OUR_V2_MAXPKT); /* our max pkt size */
10129 ssh2_pkt_addstring(pktout, hostname);
10130 ssh2_pkt_adduint32(pktout, port);
10131 /*
10132 * We make up values for the originator data; partly it's
10133 * too much hassle to keep track, and partly I'm not
10134 * convinced the server should be told details like that
10135 * about my local network configuration.
10136 * The "originator IP address" is syntactically a numeric
10137 * IP address, and some servers (e.g., Tectia) get upset
10138 * if it doesn't match this syntax.
10139 */
10140 ssh2_pkt_addstring(pktout, "0.0.0.0");
10141 ssh2_pkt_adduint32(pktout, 0);
10142 ssh2_pkt_send(ssh, pktout);
10143 }
10144 }
10145
10146 static int ssh_connected(void *handle)
10147 {
10148 Ssh ssh = (Ssh) handle;
10149 return ssh->s != NULL;
10150 }
10151
10152 static int ssh_sendok(void *handle)
10153 {
10154 Ssh ssh = (Ssh) handle;
10155 return ssh->send_ok;
10156 }
10157
10158 static int ssh_ldisc(void *handle, int option)
10159 {
10160 Ssh ssh = (Ssh) handle;
10161 if (option == LD_ECHO)
10162 return ssh->echoing;
10163 if (option == LD_EDIT)
10164 return ssh->editing;
10165 return FALSE;
10166 }
10167
10168 static void ssh_provide_ldisc(void *handle, void *ldisc)
10169 {
10170 Ssh ssh = (Ssh) handle;
10171 ssh->ldisc = ldisc;
10172 }
10173
10174 static void ssh_provide_logctx(void *handle, void *logctx)
10175 {
10176 Ssh ssh = (Ssh) handle;
10177 ssh->logctx = logctx;
10178 }
10179
10180 static int ssh_return_exitcode(void *handle)
10181 {
10182 Ssh ssh = (Ssh) handle;
10183 if (ssh->s != NULL)
10184 return -1;
10185 else
10186 return (ssh->exitcode >= 0 ? ssh->exitcode : INT_MAX);
10187 }
10188
10189 /*
10190 * cfg_info for SSH is the currently running version of the
10191 * protocol. (1 for 1; 2 for 2; 0 for not-decided-yet.)
10192 */
10193 static int ssh_cfg_info(void *handle)
10194 {
10195 Ssh ssh = (Ssh) handle;
10196 return ssh->version;
10197 }
10198
10199 /*
10200 * Gross hack: pscp will try to start SFTP but fall back to scp1 if
10201 * that fails. This variable is the means by which scp.c can reach
10202 * into the SSH code and find out which one it got.
10203 */
10204 extern int ssh_fallback_cmd(void *handle)
10205 {
10206 Ssh ssh = (Ssh) handle;
10207 return ssh->fallback_cmd;
10208 }
10209
10210 Backend ssh_backend = {
10211 ssh_init,
10212 ssh_free,
10213 ssh_reconfig,
10214 ssh_send,
10215 ssh_sendbuffer,
10216 ssh_size,
10217 ssh_special,
10218 ssh_get_specials,
10219 ssh_connected,
10220 ssh_return_exitcode,
10221 ssh_sendok,
10222 ssh_ldisc,
10223 ssh_provide_ldisc,
10224 ssh_provide_logctx,
10225 ssh_unthrottle,
10226 ssh_cfg_info,
10227 "ssh",
10228 PROT_SSH,
10229 22
10230 };