ssh.h 64 KB

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  1. #include <stdio.h>
  2. #include <string.h>
  3. #include "puttymem.h"
  4. #include "tree234.h"
  5. #include "network.h"
  6. #include "misc.h"
  7. struct ssh_channel;
  8. /*
  9. * Buffer management constants. There are several of these for
  10. * various different purposes:
  11. *
  12. * - SSH1_BUFFER_LIMIT is the amount of backlog that must build up
  13. * on a local data stream before we throttle the whole SSH
  14. * connection (in SSH-1 only). Throttling the whole connection is
  15. * pretty drastic so we set this high in the hope it won't
  16. * happen very often.
  17. *
  18. * - SSH_MAX_BACKLOG is the amount of backlog that must build up
  19. * on the SSH connection itself before we defensively throttle
  20. * _all_ local data streams. This is pretty drastic too (though
  21. * thankfully unlikely in SSH-2 since the window mechanism should
  22. * ensure that the server never has any need to throttle its end
  23. * of the connection), so we set this high as well.
  24. *
  25. * - OUR_V2_WINSIZE is the default window size we present on SSH-2
  26. * channels.
  27. *
  28. * - OUR_V2_BIGWIN is the window size we advertise for the only
  29. * channel in a simple connection. It must be <= INT_MAX.
  30. *
  31. * - OUR_V2_MAXPKT is the official "maximum packet size" we send
  32. * to the remote side. This actually has nothing to do with the
  33. * size of the _packet_, but is instead a limit on the amount
  34. * of data we're willing to receive in a single SSH2 channel
  35. * data message.
  36. *
  37. * - OUR_V2_PACKETLIMIT is actually the maximum size of SSH
  38. * _packet_ we're prepared to cope with. It must be a multiple
  39. * of the cipher block size, and must be at least 35000.
  40. */
  41. #define SSH1_BUFFER_LIMIT 32768
  42. #define SSH_MAX_BACKLOG 32768
  43. #define OUR_V2_WINSIZE 16384
  44. #define OUR_V2_BIGWIN 0x7fffffff
  45. #define OUR_V2_MAXPKT 0x4000UL
  46. #define OUR_V2_PACKETLIMIT 0x9000UL
  47. typedef struct PacketQueueNode PacketQueueNode;
  48. struct PacketQueueNode {
  49. PacketQueueNode *next, *prev;
  50. bool on_free_queue; /* is this packet scheduled for freeing? */
  51. };
  52. typedef struct PktIn {
  53. int type;
  54. unsigned long sequence; /* SSH-2 incoming sequence number */
  55. PacketQueueNode qnode; /* for linking this packet on to a queue */
  56. BinarySource_IMPLEMENTATION;
  57. } PktIn;
  58. typedef struct PktOut {
  59. long prefix; /* bytes up to and including type field */
  60. long length; /* total bytes, including prefix */
  61. int type;
  62. long minlen; /* SSH-2: ensure wire length is at least this */
  63. unsigned char *data; /* allocated storage */
  64. long maxlen; /* amount of storage allocated for `data' */
  65. /* Extra metadata used in SSH packet logging mode, allowing us to
  66. * log in the packet header line that the packet came from a
  67. * connection-sharing downstream and what if anything unusual was
  68. * done to it. The additional_log_text field is expected to be a
  69. * static string - it will not be freed. */
  70. unsigned downstream_id;
  71. const char *additional_log_text;
  72. PacketQueueNode qnode; /* for linking this packet on to a queue */
  73. BinarySink_IMPLEMENTATION;
  74. } PktOut;
  75. typedef struct PacketQueueBase {
  76. PacketQueueNode end;
  77. struct IdempotentCallback *ic;
  78. } PacketQueueBase;
  79. typedef struct PktInQueue {
  80. PacketQueueBase pqb;
  81. PktIn *(*after)(PacketQueueBase *, PacketQueueNode *prev, bool pop);
  82. } PktInQueue;
  83. typedef struct PktOutQueue {
  84. PacketQueueBase pqb;
  85. PktOut *(*after)(PacketQueueBase *, PacketQueueNode *prev, bool pop);
  86. } PktOutQueue;
  87. void pq_base_push(PacketQueueBase *pqb, PacketQueueNode *node);
  88. void pq_base_push_front(PacketQueueBase *pqb, PacketQueueNode *node);
  89. void pq_base_concatenate(PacketQueueBase *dest,
  90. PacketQueueBase *q1, PacketQueueBase *q2);
  91. void pq_in_init(PktInQueue *pq);
  92. void pq_out_init(PktOutQueue *pq);
  93. void pq_in_clear(PktInQueue *pq);
  94. void pq_out_clear(PktOutQueue *pq);
  95. #define pq_push(pq, pkt) \
  96. TYPECHECK((pq)->after(&(pq)->pqb, NULL, false) == pkt, \
  97. pq_base_push(&(pq)->pqb, &(pkt)->qnode))
  98. #define pq_push_front(pq, pkt) \
  99. TYPECHECK((pq)->after(&(pq)->pqb, NULL, false) == pkt, \
  100. pq_base_push_front(&(pq)->pqb, &(pkt)->qnode))
  101. #define pq_peek(pq) ((pq)->after(&(pq)->pqb, &(pq)->pqb.end, false))
  102. #define pq_pop(pq) ((pq)->after(&(pq)->pqb, &(pq)->pqb.end, true))
  103. #define pq_concatenate(dst, q1, q2) \
  104. TYPECHECK((q1)->after(&(q1)->pqb, NULL, false) == \
  105. (dst)->after(&(dst)->pqb, NULL, false) && \
  106. (q2)->after(&(q2)->pqb, NULL, false) == \
  107. (dst)->after(&(dst)->pqb, NULL, false), \
  108. pq_base_concatenate(&(dst)->pqb, &(q1)->pqb, &(q2)->pqb))
  109. #define pq_first(pq) pq_peek(pq)
  110. #define pq_next(pq, pkt) ((pq)->after(&(pq)->pqb, &(pkt)->qnode, false))
  111. /*
  112. * Packet type contexts, so that ssh2_pkt_type can correctly decode
  113. * the ambiguous type numbers back into the correct type strings.
  114. */
  115. typedef enum {
  116. SSH2_PKTCTX_NOKEX,
  117. SSH2_PKTCTX_DHGROUP,
  118. SSH2_PKTCTX_DHGEX,
  119. SSH2_PKTCTX_ECDHKEX,
  120. SSH2_PKTCTX_GSSKEX,
  121. SSH2_PKTCTX_RSAKEX
  122. } Pkt_KCtx;
  123. typedef enum {
  124. SSH2_PKTCTX_NOAUTH,
  125. SSH2_PKTCTX_PUBLICKEY,
  126. SSH2_PKTCTX_PASSWORD,
  127. SSH2_PKTCTX_GSSAPI,
  128. SSH2_PKTCTX_KBDINTER
  129. } Pkt_ACtx;
  130. typedef struct PacketLogSettings {
  131. bool omit_passwords, omit_data;
  132. Pkt_KCtx kctx;
  133. Pkt_ACtx actx;
  134. } PacketLogSettings;
  135. #define MAX_BLANKS 4 /* no packet needs more censored sections than this */
  136. int ssh1_censor_packet(
  137. const PacketLogSettings *pls, int type, bool sender_is_client,
  138. ptrlen pkt, logblank_t *blanks);
  139. int ssh2_censor_packet(
  140. const PacketLogSettings *pls, int type, bool sender_is_client,
  141. ptrlen pkt, logblank_t *blanks);
  142. PktOut *ssh_new_packet(void);
  143. void ssh_free_pktout(PktOut *pkt);
  144. Socket *ssh_connection_sharing_init(
  145. const char *host, int port, Conf *conf, LogContext *logctx,
  146. Plug *sshplug, ssh_sharing_state **state);
  147. void ssh_connshare_provide_connlayer(ssh_sharing_state *sharestate,
  148. ConnectionLayer *cl);
  149. bool ssh_share_test_for_upstream(const char *host, int port, Conf *conf);
  150. void share_got_pkt_from_server(ssh_sharing_connstate *ctx, int type,
  151. const void *pkt, int pktlen);
  152. void share_activate(ssh_sharing_state *sharestate,
  153. const char *server_verstring);
  154. void sharestate_free(ssh_sharing_state *state);
  155. int share_ndownstreams(ssh_sharing_state *state);
  156. void ssh_connshare_log(Ssh *ssh, int event, const char *logtext,
  157. const char *ds_err, const char *us_err);
  158. void share_setup_x11_channel(ssh_sharing_connstate *cs, share_channel *chan,
  159. unsigned upstream_id, unsigned server_id,
  160. unsigned server_currwin, unsigned server_maxpkt,
  161. unsigned client_adjusted_window,
  162. const char *peer_addr, int peer_port, int endian,
  163. int protomajor, int protominor,
  164. const void *initial_data, int initial_len);
  165. /* Per-application overrides for what roles we can take in connection
  166. * sharing, regardless of user configuration (e.g. pscp will never be
  167. * an upstream) */
  168. extern const bool share_can_be_downstream;
  169. extern const bool share_can_be_upstream;
  170. struct X11Display;
  171. struct X11FakeAuth;
  172. /* Structure definition centralised here because the SSH-1 and SSH-2
  173. * connection layers both use it. But the client module (portfwd.c)
  174. * should not try to look inside here. */
  175. struct ssh_rportfwd {
  176. unsigned sport, dport;
  177. char *shost, *dhost;
  178. int addressfamily;
  179. char *log_description; /* name of remote listening port, for logging */
  180. ssh_sharing_connstate *share_ctx;
  181. PortFwdRecord *pfr;
  182. };
  183. void free_rportfwd(struct ssh_rportfwd *rpf);
  184. struct ConnectionLayerVtable {
  185. /* Allocate and free remote-to-local port forwardings, called by
  186. * PortFwdManager or by connection sharing */
  187. struct ssh_rportfwd *(*rportfwd_alloc)(
  188. ConnectionLayer *cl,
  189. const char *shost, int sport, const char *dhost, int dport,
  190. int addressfamily, const char *log_description, PortFwdRecord *pfr,
  191. ssh_sharing_connstate *share_ctx);
  192. void (*rportfwd_remove)(ConnectionLayer *cl, struct ssh_rportfwd *rpf);
  193. /* Open a local-to-remote port forwarding channel, called by
  194. * PortFwdManager */
  195. SshChannel *(*lportfwd_open)(
  196. ConnectionLayer *cl, const char *hostname, int port,
  197. const char *description, const SocketPeerInfo *peerinfo,
  198. Channel *chan);
  199. /* Initiate opening of a 'session'-type channel */
  200. SshChannel *(*session_open)(ConnectionLayer *cl, Channel *chan);
  201. /* Open outgoing channels for X and agent forwarding. (Used in the
  202. * SSH server.) */
  203. SshChannel *(*serverside_x11_open)(ConnectionLayer *cl, Channel *chan,
  204. const SocketPeerInfo *pi);
  205. SshChannel *(*serverside_agent_open)(ConnectionLayer *cl, Channel *chan);
  206. /* Add an X11 display for ordinary X forwarding */
  207. struct X11FakeAuth *(*add_x11_display)(
  208. ConnectionLayer *cl, int authtype, struct X11Display *x11disp);
  209. /* Add and remove X11 displays for connection sharing downstreams */
  210. struct X11FakeAuth *(*add_sharing_x11_display)(
  211. ConnectionLayer *cl, int authtype, ssh_sharing_connstate *share_cs,
  212. share_channel *share_chan);
  213. void (*remove_sharing_x11_display)(
  214. ConnectionLayer *cl, struct X11FakeAuth *auth);
  215. /* Pass through an outgoing SSH packet from a downstream */
  216. void (*send_packet_from_downstream)(
  217. ConnectionLayer *cl, unsigned id, int type,
  218. const void *pkt, int pktlen, const char *additional_log_text);
  219. /* Allocate/free an upstream channel number associated with a
  220. * sharing downstream */
  221. unsigned (*alloc_sharing_channel)(ConnectionLayer *cl,
  222. ssh_sharing_connstate *connstate);
  223. void (*delete_sharing_channel)(ConnectionLayer *cl, unsigned localid);
  224. /* Indicate that a downstream has sent a global request with the
  225. * want-reply flag, so that when a reply arrives it will be passed
  226. * back to that downstrean */
  227. void (*sharing_queue_global_request)(
  228. ConnectionLayer *cl, ssh_sharing_connstate *connstate);
  229. /* Indicate that the last downstream has disconnected */
  230. void (*sharing_no_more_downstreams)(ConnectionLayer *cl);
  231. /* Query whether the connection layer is doing agent forwarding */
  232. bool (*agent_forwarding_permitted)(ConnectionLayer *cl);
  233. /* Set the size of the main terminal window (if any) */
  234. void (*terminal_size)(ConnectionLayer *cl, int width, int height);
  235. /* Indicate that the backlog on standard output has cleared */
  236. void (*stdout_unthrottle)(ConnectionLayer *cl, int bufsize);
  237. /* Query the size of the backlog on standard _input_ */
  238. int (*stdin_backlog)(ConnectionLayer *cl);
  239. /* Tell the connection layer that the SSH connection itself has
  240. * backed up, so it should tell all currently open channels to
  241. * cease reading from their local input sources if they can. (Or
  242. * tell it that that state of affairs has gone away again.) */
  243. void (*throttle_all_channels)(ConnectionLayer *cl, bool throttled);
  244. /* Ask the connection layer about its current preference for
  245. * line-discipline options. */
  246. bool (*ldisc_option)(ConnectionLayer *cl, int option);
  247. /* Communicate _to_ the connection layer (from the main session
  248. * channel) what its preference for line-discipline options is. */
  249. void (*set_ldisc_option)(ConnectionLayer *cl, int option, bool value);
  250. /* Communicate to the connection layer whether X and agent
  251. * forwarding were successfully enabled (for purposes of
  252. * knowing whether to accept subsequent channel-opens). */
  253. void (*enable_x_fwd)(ConnectionLayer *cl);
  254. void (*enable_agent_fwd)(ConnectionLayer *cl);
  255. /* Communicate to the connection layer whether the main session
  256. * channel currently wants user input. */
  257. void (*set_wants_user_input)(ConnectionLayer *cl, bool wanted);
  258. };
  259. struct ConnectionLayer {
  260. LogContext *logctx;
  261. const struct ConnectionLayerVtable *vt;
  262. };
  263. #define ssh_rportfwd_alloc(cl, sh, sp, dh, dp, af, ld, pfr, share) \
  264. ((cl)->vt->rportfwd_alloc(cl, sh, sp, dh, dp, af, ld, pfr, share))
  265. #define ssh_rportfwd_remove(cl, rpf) ((cl)->vt->rportfwd_remove(cl, rpf))
  266. #define ssh_lportfwd_open(cl, h, p, desc, pi, chan) \
  267. ((cl)->vt->lportfwd_open(cl, h, p, desc, pi, chan))
  268. #define ssh_serverside_x11_open(cl, chan, pi) \
  269. ((cl)->vt->serverside_x11_open(cl, chan, pi))
  270. #define ssh_serverside_agent_open(cl, chan) \
  271. ((cl)->vt->serverside_agent_open(cl, chan))
  272. #define ssh_session_open(cl, chan) \
  273. ((cl)->vt->session_open(cl, chan))
  274. #define ssh_add_x11_display(cl, auth, disp) \
  275. ((cl)->vt->add_x11_display(cl, auth, disp))
  276. #define ssh_add_sharing_x11_display(cl, auth, cs, ch) \
  277. ((cl)->vt->add_sharing_x11_display(cl, auth, cs, ch))
  278. #define ssh_remove_sharing_x11_display(cl, fa) \
  279. ((cl)->vt->remove_sharing_x11_display(cl, fa))
  280. #define ssh_send_packet_from_downstream(cl, id, type, pkt, len, log) \
  281. ((cl)->vt->send_packet_from_downstream(cl, id, type, pkt, len, log))
  282. #define ssh_alloc_sharing_channel(cl, cs) \
  283. ((cl)->vt->alloc_sharing_channel(cl, cs))
  284. #define ssh_delete_sharing_channel(cl, ch) \
  285. ((cl)->vt->delete_sharing_channel(cl, ch))
  286. #define ssh_sharing_queue_global_request(cl, cs) \
  287. ((cl)->vt->sharing_queue_global_request(cl, cs))
  288. #define ssh_sharing_no_more_downstreams(cl) \
  289. ((cl)->vt->sharing_no_more_downstreams(cl))
  290. #define ssh_agent_forwarding_permitted(cl) \
  291. ((cl)->vt->agent_forwarding_permitted(cl))
  292. #define ssh_terminal_size(cl, w, h) ((cl)->vt->terminal_size(cl, w, h))
  293. #define ssh_stdout_unthrottle(cl, bufsize) \
  294. ((cl)->vt->stdout_unthrottle(cl, bufsize))
  295. #define ssh_stdin_backlog(cl) ((cl)->vt->stdin_backlog(cl))
  296. #define ssh_throttle_all_channels(cl, throttled) \
  297. ((cl)->vt->throttle_all_channels(cl, throttled))
  298. #define ssh_ldisc_option(cl, option) ((cl)->vt->ldisc_option(cl, option))
  299. #define ssh_set_ldisc_option(cl, opt, val) \
  300. ((cl)->vt->set_ldisc_option(cl, opt, val))
  301. #define ssh_enable_x_fwd(cl) ((cl)->vt->enable_x_fwd(cl))
  302. #define ssh_enable_agent_fwd(cl) ((cl)->vt->enable_agent_fwd(cl))
  303. #define ssh_set_wants_user_input(cl, wanted) \
  304. ((cl)->vt->set_wants_user_input(cl, wanted))
  305. #define ssh_setup_server_x_forwarding(cl, conf, ap, ad, scr) \
  306. ((cl)->vt->setup_server_x_forwarding(cl, conf, ap, ad, scr))
  307. /* Exports from portfwd.c */
  308. PortFwdManager *portfwdmgr_new(ConnectionLayer *cl);
  309. void portfwdmgr_free(PortFwdManager *mgr);
  310. void portfwdmgr_config(PortFwdManager *mgr, Conf *conf);
  311. void portfwdmgr_close(PortFwdManager *mgr, PortFwdRecord *pfr);
  312. void portfwdmgr_close_all(PortFwdManager *mgr);
  313. char *portfwdmgr_connect(PortFwdManager *mgr, Channel **chan_ret,
  314. char *hostname, int port, SshChannel *c,
  315. int addressfamily);
  316. bool portfwdmgr_listen(PortFwdManager *mgr, const char *host, int port,
  317. const char *keyhost, int keyport, Conf *conf);
  318. bool portfwdmgr_unlisten(PortFwdManager *mgr, const char *host, int port);
  319. Channel *portfwd_raw_new(ConnectionLayer *cl, Plug **plug);
  320. void portfwd_raw_free(Channel *pfchan);
  321. void portfwd_raw_setup(Channel *pfchan, Socket *s, SshChannel *sc);
  322. Socket *platform_make_agent_socket(Plug *plug, const char *dirprefix,
  323. char **error, char **name);
  324. LogContext *ssh_get_logctx(Ssh *ssh);
  325. /* Communications back to ssh.c from connection layers */
  326. void ssh_throttle_conn(Ssh *ssh, int adjust);
  327. void ssh_got_exitcode(Ssh *ssh, int status);
  328. void ssh_ldisc_update(Ssh *ssh);
  329. void ssh_got_fallback_cmd(Ssh *ssh);
  330. /* Functions to abort the connection, for various reasons. */
  331. void ssh_remote_error(Ssh *ssh, const char *fmt, ...);
  332. void ssh_remote_eof(Ssh *ssh, const char *fmt, ...);
  333. void ssh_proto_error(Ssh *ssh, const char *fmt, ...);
  334. void ssh_sw_abort(Ssh *ssh, const char *fmt, ...);
  335. void ssh_user_close(Ssh *ssh, const char *fmt, ...);
  336. #define SSH_CIPHER_IDEA 1
  337. #define SSH_CIPHER_DES 2
  338. #define SSH_CIPHER_3DES 3
  339. #define SSH_CIPHER_BLOWFISH 6
  340. #ifndef BIGNUM_INTERNAL
  341. typedef void *Bignum;
  342. #endif
  343. typedef struct ssh_keyalg ssh_keyalg;
  344. typedef struct ssh_key {
  345. const struct ssh_keyalg *vt;
  346. } ssh_key;
  347. struct RSAKey {
  348. int bits;
  349. int bytes;
  350. Bignum modulus;
  351. Bignum exponent;
  352. Bignum private_exponent;
  353. Bignum p;
  354. Bignum q;
  355. Bignum iqmp;
  356. char *comment;
  357. ssh_key sshk;
  358. };
  359. struct dss_key {
  360. Bignum p, q, g, y, x;
  361. ssh_key sshk;
  362. };
  363. struct ec_curve;
  364. struct ec_point {
  365. const struct ec_curve *curve;
  366. Bignum x, y;
  367. Bignum z; /* Jacobian denominator */
  368. bool infinity;
  369. };
  370. /* A couple of ECC functions exported for use outside sshecc.c */
  371. struct ec_point *ecp_mul(const struct ec_point *a, const Bignum b);
  372. void ec_point_free(struct ec_point *point);
  373. /* Weierstrass form curve */
  374. struct ec_wcurve
  375. {
  376. Bignum a, b, n;
  377. struct ec_point G;
  378. };
  379. /* Montgomery form curve */
  380. struct ec_mcurve
  381. {
  382. Bignum a, b;
  383. struct ec_point G;
  384. };
  385. /* Edwards form curve */
  386. struct ec_ecurve
  387. {
  388. Bignum l, d;
  389. struct ec_point B;
  390. };
  391. struct ec_curve {
  392. enum { EC_WEIERSTRASS, EC_MONTGOMERY, EC_EDWARDS } type;
  393. /* 'name' is the identifier of the curve when it has to appear in
  394. * wire protocol encodings, as it does in e.g. the public key and
  395. * signature formats for NIST curves. Curves which do not format
  396. * their keys or signatures in this way just have name==NULL.
  397. *
  398. * 'textname' is non-NULL for all curves, and is a human-readable
  399. * identification suitable for putting in log messages. */
  400. const char *name, *textname;
  401. unsigned int fieldBits;
  402. Bignum p;
  403. union {
  404. struct ec_wcurve w;
  405. struct ec_mcurve m;
  406. struct ec_ecurve e;
  407. };
  408. };
  409. const ssh_keyalg *ec_alg_by_oid(int len, const void *oid,
  410. const struct ec_curve **curve);
  411. const unsigned char *ec_alg_oid(const ssh_keyalg *alg, int *oidlen);
  412. extern const int ec_nist_curve_lengths[], n_ec_nist_curve_lengths;
  413. bool ec_nist_alg_and_curve_by_bits(int bits,
  414. const struct ec_curve **curve,
  415. const ssh_keyalg **alg);
  416. bool ec_ed_alg_and_curve_by_bits(int bits,
  417. const struct ec_curve **curve,
  418. const ssh_keyalg **alg);
  419. struct ec_key {
  420. struct ec_point publicKey;
  421. Bignum privateKey;
  422. ssh_key sshk;
  423. };
  424. struct ec_point *ec_public(const Bignum privateKey, const struct ec_curve *curve);
  425. /*
  426. * SSH-1 never quite decided which order to store the two components
  427. * of an RSA key. During connection setup, the server sends its host
  428. * and server keys with the exponent first; private key files store
  429. * the modulus first. The agent protocol is even more confusing,
  430. * because the client specifies a key to the server in one order and
  431. * the server lists the keys it knows about in the other order!
  432. */
  433. typedef enum { RSA_SSH1_EXPONENT_FIRST, RSA_SSH1_MODULUS_FIRST } RsaSsh1Order;
  434. void BinarySource_get_rsa_ssh1_pub(
  435. BinarySource *src, struct RSAKey *result, RsaSsh1Order order);
  436. void BinarySource_get_rsa_ssh1_priv(
  437. BinarySource *src, struct RSAKey *rsa);
  438. bool rsa_ssh1_encrypt(unsigned char *data, int length, struct RSAKey *key);
  439. Bignum rsa_ssh1_decrypt(Bignum input, struct RSAKey *key);
  440. bool rsa_ssh1_decrypt_pkcs1(Bignum input, struct RSAKey *key, strbuf *outbuf);
  441. char *rsastr_fmt(struct RSAKey *key);
  442. char *rsa_ssh1_fingerprint(struct RSAKey *key);
  443. bool rsa_verify(struct RSAKey *key);
  444. void rsa_ssh1_public_blob(BinarySink *bs, struct RSAKey *key,
  445. RsaSsh1Order order);
  446. int rsa_ssh1_public_blob_len(void *data, int maxlen);
  447. void freersapriv(struct RSAKey *key);
  448. void freersakey(struct RSAKey *key);
  449. unsigned long crc32_compute(const void *s, size_t len);
  450. unsigned long crc32_update(unsigned long crc_input, const void *s, size_t len);
  451. /* SSH CRC compensation attack detector */
  452. struct crcda_ctx;
  453. struct crcda_ctx *crcda_make_context(void);
  454. void crcda_free_context(struct crcda_ctx *ctx);
  455. bool detect_attack(struct crcda_ctx *ctx, unsigned char *buf, uint32_t len,
  456. unsigned char *IV);
  457. /*
  458. * SSH2 RSA key exchange functions
  459. */
  460. struct ssh_hashalg;
  461. struct ssh_rsa_kex_extra {
  462. int minklen;
  463. };
  464. struct RSAKey *ssh_rsakex_newkey(const void *data, int len);
  465. void ssh_rsakex_freekey(struct RSAKey *key);
  466. int ssh_rsakex_klen(struct RSAKey *key);
  467. void ssh_rsakex_encrypt(const struct ssh_hashalg *h,
  468. unsigned char *in, int inlen,
  469. unsigned char *out, int outlen, struct RSAKey *key);
  470. Bignum ssh_rsakex_decrypt(const struct ssh_hashalg *h, ptrlen ciphertext,
  471. struct RSAKey *rsa);
  472. /*
  473. * SSH2 ECDH key exchange functions
  474. */
  475. struct ssh_kex;
  476. const char *ssh_ecdhkex_curve_textname(const struct ssh_kex *kex);
  477. struct ec_key *ssh_ecdhkex_newkey(const struct ssh_kex *kex);
  478. void ssh_ecdhkex_freekey(struct ec_key *key);
  479. void ssh_ecdhkex_getpublic(struct ec_key *key, BinarySink *bs);
  480. Bignum ssh_ecdhkex_getkey(struct ec_key *key,
  481. const void *remoteKey, int remoteKeyLen);
  482. /*
  483. * Helper function for k generation in DSA, reused in ECDSA
  484. */
  485. Bignum *dss_gen_k(const char *id_string, Bignum modulus, Bignum private_key,
  486. unsigned char *digest, int digest_len);
  487. struct ssh2_cipheralg;
  488. typedef struct ssh2_cipher {
  489. const struct ssh2_cipheralg *vt;
  490. } ssh2_cipher;
  491. typedef struct {
  492. uint32_t h[4];
  493. } MD5_Core_State;
  494. struct MD5Context {
  495. MD5_Core_State core;
  496. unsigned char block[64];
  497. int blkused;
  498. uint64_t len;
  499. BinarySink_IMPLEMENTATION;
  500. };
  501. void MD5Init(struct MD5Context *context);
  502. void MD5Final(unsigned char digest[16], struct MD5Context *context);
  503. void MD5Simple(void const *p, unsigned len, unsigned char output[16]);
  504. struct hmacmd5_context;
  505. struct hmacmd5_context *hmacmd5_make_context(void);
  506. void hmacmd5_free_context(struct hmacmd5_context *ctx);
  507. void hmacmd5_key(struct hmacmd5_context *ctx, void const *key, int len);
  508. void hmacmd5_do_hmac(struct hmacmd5_context *ctx,
  509. const void *blk, int len, unsigned char *hmac);
  510. bool supports_sha_ni(void);
  511. typedef struct SHA_State {
  512. uint32_t h[5];
  513. unsigned char block[64];
  514. int blkused;
  515. uint64_t len;
  516. void (*sha1)(struct SHA_State * s, const unsigned char *p, int len);
  517. BinarySink_IMPLEMENTATION;
  518. } SHA_State;
  519. void SHA_Init(SHA_State * s);
  520. void SHA_Final(SHA_State * s, unsigned char *output);
  521. void SHA_Simple(const void *p, int len, unsigned char *output);
  522. void hmac_sha1_simple(const void *key, int keylen,
  523. const void *data, int datalen,
  524. unsigned char *output);
  525. typedef struct SHA256_State {
  526. uint32_t h[8];
  527. unsigned char block[64];
  528. int blkused;
  529. uint64_t len;
  530. void (*sha256)(struct SHA256_State * s, const unsigned char *p, int len);
  531. BinarySink_IMPLEMENTATION;
  532. } SHA256_State;
  533. void SHA256_Init(SHA256_State * s);
  534. void SHA256_Final(SHA256_State * s, unsigned char *output);
  535. void SHA256_Simple(const void *p, int len, unsigned char *output);
  536. typedef struct {
  537. uint64_t h[8];
  538. unsigned char block[128];
  539. int blkused;
  540. uint64_t lenhi, lenlo;
  541. BinarySink_IMPLEMENTATION;
  542. } SHA512_State;
  543. #define SHA384_State SHA512_State
  544. void SHA512_Init(SHA512_State * s);
  545. void SHA512_Final(SHA512_State * s, unsigned char *output);
  546. void SHA512_Simple(const void *p, int len, unsigned char *output);
  547. void SHA384_Init(SHA384_State * s);
  548. void SHA384_Final(SHA384_State * s, unsigned char *output);
  549. void SHA384_Simple(const void *p, int len, unsigned char *output);
  550. struct ssh2_macalg;
  551. struct ssh1_cipheralg;
  552. typedef struct ssh1_cipher {
  553. const struct ssh1_cipheralg *vt;
  554. } ssh1_cipher;
  555. struct ssh1_cipheralg {
  556. ssh1_cipher *(*new)(void);
  557. void (*free)(ssh1_cipher *);
  558. void (*sesskey)(ssh1_cipher *, const void *key);
  559. void (*encrypt)(ssh1_cipher *, void *blk, int len);
  560. void (*decrypt)(ssh1_cipher *, void *blk, int len);
  561. int blksize;
  562. const char *text_name;
  563. };
  564. #define ssh1_cipher_new(alg) ((alg)->new())
  565. #define ssh1_cipher_free(ctx) ((ctx)->vt->free(ctx))
  566. #define ssh1_cipher_sesskey(ctx, key) ((ctx)->vt->sesskey(ctx, key))
  567. #define ssh1_cipher_encrypt(ctx, blk, len) ((ctx)->vt->encrypt(ctx, blk, len))
  568. #define ssh1_cipher_decrypt(ctx, blk, len) ((ctx)->vt->decrypt(ctx, blk, len))
  569. struct ssh2_cipheralg {
  570. ssh2_cipher *(*new)(const struct ssh2_cipheralg *alg);
  571. void (*free)(ssh2_cipher *);
  572. void (*setiv)(ssh2_cipher *, const void *iv);
  573. void (*setkey)(ssh2_cipher *, const void *key);
  574. void (*encrypt)(ssh2_cipher *, void *blk, int len);
  575. void (*decrypt)(ssh2_cipher *, void *blk, int len);
  576. /* Ignored unless SSH_CIPHER_SEPARATE_LENGTH flag set */
  577. void (*encrypt_length)(ssh2_cipher *, void *blk, int len,
  578. unsigned long seq);
  579. void (*decrypt_length)(ssh2_cipher *, void *blk, int len,
  580. unsigned long seq);
  581. const char *name;
  582. int blksize;
  583. /* real_keybits is the number of bits of entropy genuinely used by
  584. * the cipher scheme; it's used for deciding how big a
  585. * Diffie-Hellman group is needed to exchange a key for the
  586. * cipher. */
  587. int real_keybits;
  588. /* padded_keybytes is the number of bytes of key data expected as
  589. * input to the setkey function; it's used for deciding how much
  590. * data needs to be generated from the post-kex generation of key
  591. * material. In a sensible cipher which uses all its key bytes for
  592. * real work, this will just be real_keybits/8, but in DES-type
  593. * ciphers which ignore one bit in each byte, it'll be slightly
  594. * different. */
  595. int padded_keybytes;
  596. unsigned int flags;
  597. #define SSH_CIPHER_IS_CBC 1
  598. #define SSH_CIPHER_SEPARATE_LENGTH 2
  599. const char *text_name;
  600. /* If set, this takes priority over other MAC. */
  601. const struct ssh2_macalg *required_mac;
  602. };
  603. #define ssh2_cipher_new(alg) ((alg)->new(alg))
  604. #define ssh2_cipher_free(ctx) ((ctx)->vt->free(ctx))
  605. #define ssh2_cipher_setiv(ctx, iv) ((ctx)->vt->setiv(ctx, iv))
  606. #define ssh2_cipher_setkey(ctx, key) ((ctx)->vt->setkey(ctx, key))
  607. #define ssh2_cipher_encrypt(ctx, blk, len) ((ctx)->vt->encrypt(ctx, blk, len))
  608. #define ssh2_cipher_decrypt(ctx, blk, len) ((ctx)->vt->decrypt(ctx, blk, len))
  609. #define ssh2_cipher_encrypt_length(ctx, blk, len, seq) \
  610. ((ctx)->vt->encrypt_length(ctx, blk, len, seq))
  611. #define ssh2_cipher_decrypt_length(ctx, blk, len, seq) \
  612. ((ctx)->vt->decrypt_length(ctx, blk, len, seq))
  613. #define ssh2_cipher_alg(ctx) ((ctx)->vt)
  614. struct ssh2_ciphers {
  615. int nciphers;
  616. const struct ssh2_cipheralg *const *list;
  617. };
  618. struct ssh2_macalg;
  619. typedef struct ssh2_mac {
  620. const struct ssh2_macalg *vt;
  621. BinarySink_DELEGATE_IMPLEMENTATION;
  622. } ssh2_mac;
  623. struct ssh2_macalg {
  624. /* Passes in the cipher context */
  625. ssh2_mac *(*new)(const struct ssh2_macalg *alg, ssh2_cipher *cipher);
  626. void (*free)(ssh2_mac *);
  627. void (*setkey)(ssh2_mac *, const void *key);
  628. void (*start)(ssh2_mac *);
  629. void (*genresult)(ssh2_mac *, unsigned char *);
  630. const char *name, *etm_name;
  631. int len, keylen;
  632. const char *text_name;
  633. };
  634. #define ssh2_mac_new(alg, cipher) ((alg)->new(alg, cipher))
  635. #define ssh2_mac_free(ctx) ((ctx)->vt->free(ctx))
  636. #define ssh2_mac_setkey(ctx, key) ((ctx)->vt->free(ctx, key))
  637. #define ssh2_mac_start(ctx) ((ctx)->vt->start(ctx))
  638. #define ssh2_mac_genresult(ctx, out) ((ctx)->vt->genresult(ctx, out))
  639. #define ssh2_mac_alg(ctx) ((ctx)->vt)
  640. /* Centralised 'methods' for ssh2_mac, defined in sshmac.c */
  641. bool ssh2_mac_verresult(ssh2_mac *, const void *);
  642. void ssh2_mac_generate(ssh2_mac *, void *, int, unsigned long seq);
  643. bool ssh2_mac_verify(ssh2_mac *, const void *, int, unsigned long seq);
  644. typedef struct ssh_hash {
  645. const struct ssh_hashalg *vt;
  646. BinarySink_DELEGATE_IMPLEMENTATION;
  647. } ssh_hash;
  648. struct ssh_hashalg {
  649. ssh_hash *(*new)(const struct ssh_hashalg *alg);
  650. ssh_hash *(*copy)(ssh_hash *);
  651. void (*final)(ssh_hash *, unsigned char *); /* ALSO FREES THE ssh_hash! */
  652. void (*free)(ssh_hash *);
  653. int hlen; /* output length in bytes */
  654. const char *text_name;
  655. };
  656. #define ssh_hash_new(alg) ((alg)->new(alg))
  657. #define ssh_hash_copy(ctx) ((ctx)->vt->copy(ctx))
  658. #define ssh_hash_final(ctx, out) ((ctx)->vt->final(ctx, out))
  659. #define ssh_hash_free(ctx) ((ctx)->vt->free(ctx))
  660. #define ssh_hash_alg(ctx) ((ctx)->vt)
  661. struct ssh_kex {
  662. const char *name, *groupname;
  663. enum { KEXTYPE_DH, KEXTYPE_RSA, KEXTYPE_ECDH, KEXTYPE_GSS } main_type;
  664. const struct ssh_hashalg *hash;
  665. const void *extra; /* private to the kex methods */
  666. };
  667. struct ssh_kexes {
  668. int nkexes;
  669. const struct ssh_kex *const *list;
  670. };
  671. struct ssh_keyalg {
  672. /* Constructors that create an ssh_key */
  673. ssh_key *(*new_pub) (const ssh_keyalg *self, ptrlen pub);
  674. ssh_key *(*new_priv) (const ssh_keyalg *self, ptrlen pub, ptrlen priv);
  675. ssh_key *(*new_priv_openssh) (const ssh_keyalg *self, BinarySource *);
  676. /* Methods that operate on an existing ssh_key */
  677. void (*freekey) (ssh_key *key);
  678. void (*sign) (ssh_key *key, const void *data, int datalen,
  679. unsigned flags, BinarySink *);
  680. bool (*verify) (ssh_key *key, ptrlen sig, ptrlen data);
  681. void (*public_blob)(ssh_key *key, BinarySink *);
  682. void (*private_blob)(ssh_key *key, BinarySink *);
  683. void (*openssh_blob) (ssh_key *key, BinarySink *);
  684. char *(*cache_str) (ssh_key *key);
  685. /* 'Class methods' that don't deal with an ssh_key at all */
  686. int (*pubkey_bits) (const ssh_keyalg *self, ptrlen blob);
  687. /* Constant data fields giving information about the key type */
  688. const char *ssh_id; /* string identifier in the SSH protocol */
  689. const char *cache_id; /* identifier used in PuTTY's host key cache */
  690. const void *extra; /* private to the public key methods */
  691. const unsigned supported_flags; /* signature-type flags we understand */
  692. };
  693. #define ssh_key_new_pub(alg, data) ((alg)->new_pub(alg, data))
  694. #define ssh_key_new_priv(alg, pub, priv) ((alg)->new_priv(alg, pub, priv))
  695. #define ssh_key_new_priv_openssh(alg, bs) ((alg)->new_priv_openssh(alg, bs))
  696. #define ssh_key_free(key) ((key)->vt->freekey(key))
  697. #define ssh_key_sign(key, data, len, flags, bs) \
  698. ((key)->vt->sign(key, data, len, flags, bs))
  699. #define ssh_key_verify(key, sig, data) ((key)->vt->verify(key, sig, data))
  700. #define ssh_key_public_blob(key, bs) ((key)->vt->public_blob(key, bs))
  701. #define ssh_key_private_blob(key, bs) ((key)->vt->private_blob(key, bs))
  702. #define ssh_key_openssh_blob(key, bs) ((key)->vt->openssh_blob(key, bs))
  703. #define ssh_key_cache_str(key) ((key)->vt->cache_str(key))
  704. #define ssh_key_public_bits(alg, blob) ((alg)->pubkey_bits(alg, blob))
  705. #define ssh_key_alg(key) (key)->vt
  706. #define ssh_key_ssh_id(key) ((key)->vt->ssh_id)
  707. #define ssh_key_cache_id(key) ((key)->vt->cache_id)
  708. /*
  709. * Enumeration of signature flags from draft-miller-ssh-agent-02
  710. */
  711. #define SSH_AGENT_RSA_SHA2_256 2
  712. #define SSH_AGENT_RSA_SHA2_512 4
  713. typedef struct ssh_compressor {
  714. const struct ssh_compression_alg *vt;
  715. } ssh_compressor;
  716. typedef struct ssh_decompressor {
  717. const struct ssh_compression_alg *vt;
  718. } ssh_decompressor;
  719. struct ssh_compression_alg {
  720. const char *name;
  721. /* For [email protected]: if non-NULL, this name will be considered once
  722. * userauth has completed successfully. */
  723. const char *delayed_name;
  724. ssh_compressor *(*compress_new)(void);
  725. void (*compress_free)(ssh_compressor *);
  726. void (*compress)(ssh_compressor *, const unsigned char *block, int len,
  727. unsigned char **outblock, int *outlen,
  728. int minlen);
  729. ssh_decompressor *(*decompress_new)(void);
  730. void (*decompress_free)(ssh_decompressor *);
  731. bool (*decompress)(ssh_decompressor *, const unsigned char *block, int len,
  732. unsigned char **outblock, int *outlen);
  733. const char *text_name;
  734. };
  735. #define ssh_compressor_new(alg) ((alg)->compress_new())
  736. #define ssh_compressor_free(comp) ((comp)->vt->compress_free(comp))
  737. #define ssh_compressor_compress(comp, in, inlen, out, outlen, minlen) \
  738. ((comp)->vt->compress(comp, in, inlen, out, outlen, minlen))
  739. #define ssh_compressor_alg(comp) ((comp)->vt)
  740. #define ssh_decompressor_new(alg) ((alg)->decompress_new())
  741. #define ssh_decompressor_free(comp) ((comp)->vt->decompress_free(comp))
  742. #define ssh_decompressor_decompress(comp, in, inlen, out, outlen) \
  743. ((comp)->vt->decompress(comp, in, inlen, out, outlen))
  744. #define ssh_decompressor_alg(comp) ((comp)->vt)
  745. struct ssh2_userkey {
  746. ssh_key *key; /* the key itself */
  747. char *comment; /* the key comment */
  748. };
  749. /* The maximum length of any hash algorithm used in kex. (bytes) */
  750. #define SSH2_KEX_MAX_HASH_LEN (64) /* SHA-512 */
  751. extern const struct ssh1_cipheralg ssh1_3des;
  752. extern const struct ssh1_cipheralg ssh1_des;
  753. extern const struct ssh1_cipheralg ssh1_blowfish;
  754. extern const struct ssh2_ciphers ssh2_3des;
  755. extern const struct ssh2_ciphers ssh2_des;
  756. extern const struct ssh2_ciphers ssh2_aes;
  757. extern const struct ssh2_ciphers ssh2_blowfish;
  758. extern const struct ssh2_ciphers ssh2_arcfour;
  759. extern const struct ssh2_ciphers ssh2_ccp;
  760. extern const struct ssh_hashalg ssh_sha1;
  761. extern const struct ssh_hashalg ssh_sha256;
  762. extern const struct ssh_hashalg ssh_sha384;
  763. extern const struct ssh_hashalg ssh_sha512;
  764. extern const struct ssh_kexes ssh_diffiehellman_group1;
  765. extern const struct ssh_kexes ssh_diffiehellman_group14;
  766. extern const struct ssh_kexes ssh_diffiehellman_gex;
  767. extern const struct ssh_kexes ssh_gssk5_sha1_kex;
  768. extern const struct ssh_kexes ssh_rsa_kex;
  769. extern const struct ssh_kexes ssh_ecdh_kex;
  770. extern const ssh_keyalg ssh_dss;
  771. extern const ssh_keyalg ssh_rsa;
  772. extern const ssh_keyalg ssh_ecdsa_ed25519;
  773. extern const ssh_keyalg ssh_ecdsa_nistp256;
  774. extern const ssh_keyalg ssh_ecdsa_nistp384;
  775. extern const ssh_keyalg ssh_ecdsa_nistp521;
  776. extern const struct ssh2_macalg ssh_hmac_md5;
  777. extern const struct ssh2_macalg ssh_hmac_sha1;
  778. extern const struct ssh2_macalg ssh_hmac_sha1_buggy;
  779. extern const struct ssh2_macalg ssh_hmac_sha1_96;
  780. extern const struct ssh2_macalg ssh_hmac_sha1_96_buggy;
  781. extern const struct ssh2_macalg ssh_hmac_sha256;
  782. extern const struct ssh_compression_alg ssh_zlib;
  783. typedef struct AESContext AESContext;
  784. AESContext *aes_make_context(void);
  785. void aes_free_context(AESContext *ctx);
  786. void aes128_key(AESContext *ctx, const void *key);
  787. void aes192_key(AESContext *ctx, const void *key);
  788. void aes256_key(AESContext *ctx, const void *key);
  789. void aes_iv(AESContext *ctx, const void *iv);
  790. void aes_ssh2_encrypt_blk(AESContext *ctx, void *blk, int len);
  791. void aes_ssh2_decrypt_blk(AESContext *ctx, void *blk, int len);
  792. void aes_ssh2_sdctr(AESContext *ctx, void *blk, int len);
  793. /*
  794. * PuTTY version number formatted as an SSH version string.
  795. */
  796. extern const char sshver[];
  797. /*
  798. * Gross hack: pscp will try to start SFTP but fall back to scp1 if
  799. * that fails. This variable is the means by which scp.c can reach
  800. * into the SSH code and find out which one it got.
  801. */
  802. extern bool ssh_fallback_cmd(Backend *backend);
  803. void SHATransform(uint32_t *digest, uint32_t *data);
  804. /*
  805. * Check of compiler version
  806. */
  807. #ifdef _FORCE_SHA_NI
  808. # define COMPILER_SUPPORTS_SHA_NI
  809. #elif defined(__clang__)
  810. # if __has_attribute(target) && __has_include(<shaintrin.h>) && (defined(__x86_64__) || defined(__i386))
  811. # define COMPILER_SUPPORTS_SHA_NI
  812. # endif
  813. #elif defined(__GNUC__)
  814. # if ((__GNUC__ >= 5) && (defined(__x86_64__) || defined(__i386)))
  815. # define COMPILER_SUPPORTS_SHA_NI
  816. # endif
  817. #elif defined (_MSC_VER)
  818. # if (defined(_M_X64) || defined(_M_IX86)) && _MSC_VER >= 1900
  819. # define COMPILER_SUPPORTS_SHA_NI
  820. # endif
  821. #endif
  822. #ifdef _FORCE_SOFTWARE_SHA
  823. # undef COMPILER_SUPPORTS_SHA_NI
  824. #endif
  825. int random_byte(void);
  826. void random_add_noise(void *noise, int length);
  827. void random_add_heavynoise(void *noise, int length);
  828. /* Exports from x11fwd.c */
  829. enum {
  830. X11_TRANS_IPV4 = 0, X11_TRANS_IPV6 = 6, X11_TRANS_UNIX = 256
  831. };
  832. struct X11Display {
  833. /* Broken-down components of the display name itself */
  834. bool unixdomain;
  835. char *hostname;
  836. int displaynum;
  837. int screennum;
  838. /* OSX sometimes replaces all the above with a full Unix-socket pathname */
  839. char *unixsocketpath;
  840. /* PuTTY networking SockAddr to connect to the display, and associated
  841. * gubbins */
  842. SockAddr *addr;
  843. int port;
  844. char *realhost;
  845. /* Our local auth details for talking to the real X display. */
  846. int localauthproto;
  847. unsigned char *localauthdata;
  848. int localauthdatalen;
  849. };
  850. struct X11FakeAuth {
  851. /* Auth details we invented for a virtual display on the SSH server. */
  852. int proto;
  853. unsigned char *data;
  854. int datalen;
  855. char *protoname;
  856. char *datastring;
  857. /* The encrypted form of the first block, in XDM-AUTHORIZATION-1.
  858. * Used as part of the key when these structures are organised
  859. * into a tree. See x11_invent_fake_auth for explanation. */
  860. unsigned char *xa1_firstblock;
  861. /*
  862. * Used inside x11fwd.c to remember recently seen
  863. * XDM-AUTHORIZATION-1 strings, to avoid replay attacks.
  864. */
  865. tree234 *xdmseen;
  866. /*
  867. * What to do with an X connection matching this auth data.
  868. */
  869. struct X11Display *disp;
  870. ssh_sharing_connstate *share_cs;
  871. share_channel *share_chan;
  872. };
  873. void *x11_make_greeting(int endian, int protomajor, int protominor,
  874. int auth_proto, const void *auth_data, int auth_len,
  875. const char *peer_ip, int peer_port,
  876. int *outlen);
  877. int x11_authcmp(void *av, void *bv); /* for putting X11FakeAuth in a tree234 */
  878. /*
  879. * x11_setup_display() parses the display variable and fills in an
  880. * X11Display structure. Some remote auth details are invented;
  881. * the supplied authtype parameter configures the preferred
  882. * authorisation protocol to use at the remote end. The local auth
  883. * details are looked up by calling platform_get_x11_auth.
  884. *
  885. * If the returned pointer is NULL, then *error_msg will contain a
  886. * dynamically allocated error message string.
  887. */
  888. extern struct X11Display *x11_setup_display(const char *display, Conf *,
  889. char **error_msg);
  890. void x11_free_display(struct X11Display *disp);
  891. struct X11FakeAuth *x11_invent_fake_auth(tree234 *t, int authtype);
  892. void x11_free_fake_auth(struct X11FakeAuth *auth);
  893. Channel *x11_new_channel(tree234 *authtree, SshChannel *c,
  894. const char *peeraddr, int peerport,
  895. bool connection_sharing_possible);
  896. char *x11_display(const char *display);
  897. /* Platform-dependent X11 functions */
  898. extern void platform_get_x11_auth(struct X11Display *display, Conf *);
  899. /* examine a mostly-filled-in X11Display and fill in localauth* */
  900. extern const bool platform_uses_x11_unix_by_default;
  901. /* choose default X transport in the absence of a specified one */
  902. SockAddr *platform_get_x11_unix_address(const char *path, int displaynum);
  903. /* make up a SockAddr naming the address for displaynum */
  904. char *platform_get_x_display(void);
  905. /* allocated local X display string, if any */
  906. /* Callbacks in x11.c usable _by_ platform X11 functions */
  907. /*
  908. * This function does the job of platform_get_x11_auth, provided
  909. * it is told where to find a normally formatted .Xauthority file:
  910. * it opens that file, parses it to find an auth record which
  911. * matches the display details in "display", and fills in the
  912. * localauth fields.
  913. *
  914. * It is expected that most implementations of
  915. * platform_get_x11_auth() will work by finding their system's
  916. * .Xauthority file, adjusting the display details if necessary
  917. * for local oddities like Unix-domain socket transport, and
  918. * calling this function to do the rest of the work.
  919. */
  920. void x11_get_auth_from_authfile(struct X11Display *display,
  921. const char *authfilename);
  922. void x11_format_auth_for_authfile(
  923. BinarySink *bs, SockAddr *addr, int display_no,
  924. ptrlen authproto, ptrlen authdata);
  925. int x11_identify_auth_proto(ptrlen protoname);
  926. void *x11_dehexify(ptrlen hex, int *outlen);
  927. Channel *agentf_new(SshChannel *c);
  928. Bignum copybn(Bignum b);
  929. Bignum bn_power_2(int n);
  930. void bn_restore_invariant(Bignum b);
  931. Bignum bignum_from_long(unsigned long n);
  932. void freebn(Bignum b);
  933. Bignum modpow(Bignum base, Bignum exp, Bignum mod);
  934. Bignum modmul(Bignum a, Bignum b, Bignum mod);
  935. Bignum modsub(const Bignum a, const Bignum b, const Bignum n);
  936. void decbn(Bignum n);
  937. extern Bignum Zero, One;
  938. Bignum bignum_from_bytes(const void *data, int nbytes);
  939. Bignum bignum_from_bytes_le(const void *data, int nbytes);
  940. Bignum bignum_random_in_range(const Bignum lower, const Bignum upper);
  941. int bignum_bitcount(Bignum bn);
  942. int bignum_byte(Bignum bn, int i);
  943. int bignum_bit(Bignum bn, int i);
  944. void bignum_set_bit(Bignum bn, int i, int value);
  945. Bignum biggcd(Bignum a, Bignum b);
  946. unsigned short bignum_mod_short(Bignum number, unsigned short modulus);
  947. Bignum bignum_add_long(Bignum number, unsigned long addend);
  948. Bignum bigadd(Bignum a, Bignum b);
  949. Bignum bigsub(Bignum a, Bignum b);
  950. Bignum bigmul(Bignum a, Bignum b);
  951. Bignum bigmuladd(Bignum a, Bignum b, Bignum addend);
  952. Bignum bigdiv(Bignum a, Bignum b);
  953. Bignum bigmod(Bignum a, Bignum b);
  954. Bignum modinv(Bignum number, Bignum modulus);
  955. Bignum bignum_bitmask(Bignum number);
  956. Bignum bignum_rshift(Bignum number, int shift);
  957. Bignum bignum_lshift(Bignum number, int shift);
  958. int bignum_cmp(Bignum a, Bignum b);
  959. char *bignum_decimal(Bignum x);
  960. Bignum bignum_from_decimal(const char *decimal);
  961. void BinarySink_put_mp_ssh1(BinarySink *, Bignum);
  962. void BinarySink_put_mp_ssh2(BinarySink *, Bignum);
  963. Bignum BinarySource_get_mp_ssh1(BinarySource *);
  964. Bignum BinarySource_get_mp_ssh2(BinarySource *);
  965. #ifdef DEBUG
  966. void diagbn(char *prefix, Bignum md);
  967. #endif
  968. bool dh_is_gex(const struct ssh_kex *kex);
  969. struct dh_ctx;
  970. struct dh_ctx *dh_setup_group(const struct ssh_kex *kex);
  971. struct dh_ctx *dh_setup_gex(Bignum pval, Bignum gval);
  972. int dh_modulus_bit_size(const struct dh_ctx *ctx);
  973. void dh_cleanup(struct dh_ctx *);
  974. Bignum dh_create_e(struct dh_ctx *, int nbits);
  975. const char *dh_validate_f(struct dh_ctx *, Bignum f);
  976. Bignum dh_find_K(struct dh_ctx *, Bignum f);
  977. bool rsa_ssh1_encrypted(const Filename *filename, char **comment);
  978. int rsa_ssh1_loadpub(const Filename *filename, BinarySink *bs,
  979. char **commentptr, const char **errorstr);
  980. int rsa_ssh1_loadkey(const Filename *filename, struct RSAKey *key,
  981. const char *passphrase, const char **errorstr);
  982. bool rsa_ssh1_savekey(const Filename *filename, struct RSAKey *key,
  983. char *passphrase);
  984. extern int base64_decode_atom(const char *atom, unsigned char *out);
  985. extern int base64_lines(int datalen);
  986. extern void base64_encode_atom(const unsigned char *data, int n, char *out);
  987. extern void base64_encode(FILE *fp, const unsigned char *data, int datalen,
  988. int cpl);
  989. /* ssh2_load_userkey can return this as an error */
  990. extern struct ssh2_userkey ssh2_wrong_passphrase;
  991. #define SSH2_WRONG_PASSPHRASE (&ssh2_wrong_passphrase)
  992. bool ssh2_userkey_encrypted(const Filename *filename, char **comment);
  993. struct ssh2_userkey *ssh2_load_userkey(const Filename *filename,
  994. const char *passphrase,
  995. const char **errorstr);
  996. bool ssh2_userkey_loadpub(const Filename *filename, char **algorithm,
  997. BinarySink *bs,
  998. char **commentptr, const char **errorstr);
  999. bool ssh2_save_userkey(const Filename *filename, struct ssh2_userkey *key,
  1000. char *passphrase);
  1001. const ssh_keyalg *find_pubkey_alg(const char *name);
  1002. const ssh_keyalg *find_pubkey_alg_len(ptrlen name);
  1003. enum {
  1004. SSH_KEYTYPE_UNOPENABLE,
  1005. SSH_KEYTYPE_UNKNOWN,
  1006. SSH_KEYTYPE_SSH1, SSH_KEYTYPE_SSH2,
  1007. /*
  1008. * The OpenSSH key types deserve a little explanation. OpenSSH has
  1009. * two physical formats for private key storage: an old PEM-based
  1010. * one largely dictated by their use of OpenSSL and full of ASN.1,
  1011. * and a new one using the same private key formats used over the
  1012. * wire for talking to ssh-agent. The old format can only support
  1013. * a subset of the key types, because it needs redesign for each
  1014. * key type, and after a while they decided to move to the new
  1015. * format so as not to have to do that.
  1016. *
  1017. * On input, key files are identified as either
  1018. * SSH_KEYTYPE_OPENSSH_PEM or SSH_KEYTYPE_OPENSSH_NEW, describing
  1019. * accurately which actual format the keys are stored in.
  1020. *
  1021. * On output, however, we default to following OpenSSH's own
  1022. * policy of writing out PEM-style keys for maximum backwards
  1023. * compatibility if the key type supports it, and otherwise
  1024. * switching to the new format. So the formats you can select for
  1025. * output are SSH_KEYTYPE_OPENSSH_NEW (forcing the new format for
  1026. * any key type), and SSH_KEYTYPE_OPENSSH_AUTO to use the oldest
  1027. * format supported by whatever key type you're writing out.
  1028. *
  1029. * So we have three type codes, but only two of them usable in any
  1030. * given circumstance. An input key file will never be identified
  1031. * as AUTO, only PEM or NEW; key export UIs should not be able to
  1032. * select PEM, only AUTO or NEW.
  1033. */
  1034. SSH_KEYTYPE_OPENSSH_AUTO,
  1035. SSH_KEYTYPE_OPENSSH_PEM,
  1036. SSH_KEYTYPE_OPENSSH_NEW,
  1037. SSH_KEYTYPE_SSHCOM,
  1038. /*
  1039. * Public-key-only formats, which we still want to be able to read
  1040. * for various purposes.
  1041. */
  1042. SSH_KEYTYPE_SSH1_PUBLIC,
  1043. SSH_KEYTYPE_SSH2_PUBLIC_RFC4716,
  1044. SSH_KEYTYPE_SSH2_PUBLIC_OPENSSH
  1045. };
  1046. char *ssh1_pubkey_str(struct RSAKey *ssh1key);
  1047. void ssh1_write_pubkey(FILE *fp, struct RSAKey *ssh1key);
  1048. char *ssh2_pubkey_openssh_str(struct ssh2_userkey *key);
  1049. void ssh2_write_pubkey(FILE *fp, const char *comment,
  1050. const void *v_pub_blob, int pub_len,
  1051. int keytype);
  1052. char *ssh2_fingerprint_blob(const void *blob, int bloblen);
  1053. char *ssh2_fingerprint(ssh_key *key);
  1054. int key_type(const Filename *filename);
  1055. const char *key_type_to_str(int type);
  1056. bool import_possible(int type);
  1057. int import_target_type(int type);
  1058. bool import_encrypted(const Filename *filename, int type, char **comment);
  1059. int import_ssh1(const Filename *filename, int type,
  1060. struct RSAKey *key, char *passphrase, const char **errmsg_p);
  1061. struct ssh2_userkey *import_ssh2(const Filename *filename, int type,
  1062. char *passphrase, const char **errmsg_p);
  1063. bool export_ssh1(const Filename *filename, int type,
  1064. struct RSAKey *key, char *passphrase);
  1065. bool export_ssh2(const Filename *filename, int type,
  1066. struct ssh2_userkey *key, char *passphrase);
  1067. void des3_decrypt_pubkey(const void *key, void *blk, int len);
  1068. void des3_encrypt_pubkey(const void *key, void *blk, int len);
  1069. void des3_decrypt_pubkey_ossh(const void *key, const void *iv,
  1070. void *blk, int len);
  1071. void des3_encrypt_pubkey_ossh(const void *key, const void *iv,
  1072. void *blk, int len);
  1073. void aes256_encrypt_pubkey(const void *key, void *blk, int len);
  1074. void aes256_decrypt_pubkey(const void *key, void *blk, int len);
  1075. void des_encrypt_xdmauth(const void *key, void *blk, int len);
  1076. void des_decrypt_xdmauth(const void *key, void *blk, int len);
  1077. void openssh_bcrypt(const char *passphrase,
  1078. const unsigned char *salt, int saltbytes,
  1079. int rounds, unsigned char *out, int outbytes);
  1080. /*
  1081. * For progress updates in the key generation utility.
  1082. */
  1083. #define PROGFN_INITIALISE 1
  1084. #define PROGFN_LIN_PHASE 2
  1085. #define PROGFN_EXP_PHASE 3
  1086. #define PROGFN_PHASE_EXTENT 4
  1087. #define PROGFN_READY 5
  1088. #define PROGFN_PROGRESS 6
  1089. typedef void (*progfn_t) (void *param, int action, int phase, int progress);
  1090. int rsa_generate(struct RSAKey *key, int bits, progfn_t pfn,
  1091. void *pfnparam);
  1092. int dsa_generate(struct dss_key *key, int bits, progfn_t pfn,
  1093. void *pfnparam);
  1094. int ec_generate(struct ec_key *key, int bits, progfn_t pfn,
  1095. void *pfnparam);
  1096. int ec_edgenerate(struct ec_key *key, int bits, progfn_t pfn,
  1097. void *pfnparam);
  1098. Bignum primegen(int bits, int modulus, int residue, Bignum factor,
  1099. int phase, progfn_t pfn, void *pfnparam, unsigned firstbits);
  1100. void invent_firstbits(unsigned *one, unsigned *two);
  1101. /*
  1102. * Connection-sharing API provided by platforms. This function must
  1103. * either:
  1104. * - return SHARE_NONE and do nothing
  1105. * - return SHARE_DOWNSTREAM and set *sock to a Socket connected to
  1106. * downplug
  1107. * - return SHARE_UPSTREAM and set *sock to a Socket connected to
  1108. * upplug.
  1109. */
  1110. enum { SHARE_NONE, SHARE_DOWNSTREAM, SHARE_UPSTREAM };
  1111. int platform_ssh_share(const char *name, Conf *conf,
  1112. Plug *downplug, Plug *upplug, Socket **sock,
  1113. char **logtext, char **ds_err, char **us_err,
  1114. bool can_upstream, bool can_downstream);
  1115. void platform_ssh_share_cleanup(const char *name);
  1116. /*
  1117. * List macro defining the SSH-1 message type codes.
  1118. */
  1119. #define SSH1_MESSAGE_TYPES(X, y) \
  1120. X(y, SSH1_MSG_DISCONNECT, 1) \
  1121. X(y, SSH1_SMSG_PUBLIC_KEY, 2) \
  1122. X(y, SSH1_CMSG_SESSION_KEY, 3) \
  1123. X(y, SSH1_CMSG_USER, 4) \
  1124. X(y, SSH1_CMSG_AUTH_RSA, 6) \
  1125. X(y, SSH1_SMSG_AUTH_RSA_CHALLENGE, 7) \
  1126. X(y, SSH1_CMSG_AUTH_RSA_RESPONSE, 8) \
  1127. X(y, SSH1_CMSG_AUTH_PASSWORD, 9) \
  1128. X(y, SSH1_CMSG_REQUEST_PTY, 10) \
  1129. X(y, SSH1_CMSG_WINDOW_SIZE, 11) \
  1130. X(y, SSH1_CMSG_EXEC_SHELL, 12) \
  1131. X(y, SSH1_CMSG_EXEC_CMD, 13) \
  1132. X(y, SSH1_SMSG_SUCCESS, 14) \
  1133. X(y, SSH1_SMSG_FAILURE, 15) \
  1134. X(y, SSH1_CMSG_STDIN_DATA, 16) \
  1135. X(y, SSH1_SMSG_STDOUT_DATA, 17) \
  1136. X(y, SSH1_SMSG_STDERR_DATA, 18) \
  1137. X(y, SSH1_CMSG_EOF, 19) \
  1138. X(y, SSH1_SMSG_EXIT_STATUS, 20) \
  1139. X(y, SSH1_MSG_CHANNEL_OPEN_CONFIRMATION, 21) \
  1140. X(y, SSH1_MSG_CHANNEL_OPEN_FAILURE, 22) \
  1141. X(y, SSH1_MSG_CHANNEL_DATA, 23) \
  1142. X(y, SSH1_MSG_CHANNEL_CLOSE, 24) \
  1143. X(y, SSH1_MSG_CHANNEL_CLOSE_CONFIRMATION, 25) \
  1144. X(y, SSH1_SMSG_X11_OPEN, 27) \
  1145. X(y, SSH1_CMSG_PORT_FORWARD_REQUEST, 28) \
  1146. X(y, SSH1_MSG_PORT_OPEN, 29) \
  1147. X(y, SSH1_CMSG_AGENT_REQUEST_FORWARDING, 30) \
  1148. X(y, SSH1_SMSG_AGENT_OPEN, 31) \
  1149. X(y, SSH1_MSG_IGNORE, 32) \
  1150. X(y, SSH1_CMSG_EXIT_CONFIRMATION, 33) \
  1151. X(y, SSH1_CMSG_X11_REQUEST_FORWARDING, 34) \
  1152. X(y, SSH1_CMSG_AUTH_RHOSTS_RSA, 35) \
  1153. X(y, SSH1_MSG_DEBUG, 36) \
  1154. X(y, SSH1_CMSG_REQUEST_COMPRESSION, 37) \
  1155. X(y, SSH1_CMSG_AUTH_TIS, 39) \
  1156. X(y, SSH1_SMSG_AUTH_TIS_CHALLENGE, 40) \
  1157. X(y, SSH1_CMSG_AUTH_TIS_RESPONSE, 41) \
  1158. X(y, SSH1_CMSG_AUTH_CCARD, 70) \
  1159. X(y, SSH1_SMSG_AUTH_CCARD_CHALLENGE, 71) \
  1160. X(y, SSH1_CMSG_AUTH_CCARD_RESPONSE, 72) \
  1161. /* end of list */
  1162. #define SSH1_AUTH_RHOSTS 1 /* 0x1 */
  1163. #define SSH1_AUTH_RSA 2 /* 0x2 */
  1164. #define SSH1_AUTH_PASSWORD 3 /* 0x3 */
  1165. #define SSH1_AUTH_RHOSTS_RSA 4 /* 0x4 */
  1166. #define SSH1_AUTH_TIS 5 /* 0x5 */
  1167. #define SSH1_AUTH_CCARD 16 /* 0x10 */
  1168. #define SSH1_PROTOFLAG_SCREEN_NUMBER 1 /* 0x1 */
  1169. /* Mask for protoflags we will echo back to server if seen */
  1170. #define SSH1_PROTOFLAGS_SUPPORTED 0 /* 0x1 */
  1171. /*
  1172. * List macro defining SSH-2 message type codes. Some of these depend
  1173. * on particular contexts (i.e. a previously negotiated kex or auth
  1174. * method)
  1175. */
  1176. #define SSH2_MESSAGE_TYPES(X, K, A, y) \
  1177. X(y, SSH2_MSG_DISCONNECT, 1) \
  1178. X(y, SSH2_MSG_IGNORE, 2) \
  1179. X(y, SSH2_MSG_UNIMPLEMENTED, 3) \
  1180. X(y, SSH2_MSG_DEBUG, 4) \
  1181. X(y, SSH2_MSG_SERVICE_REQUEST, 5) \
  1182. X(y, SSH2_MSG_SERVICE_ACCEPT, 6) \
  1183. X(y, SSH2_MSG_KEXINIT, 20) \
  1184. X(y, SSH2_MSG_NEWKEYS, 21) \
  1185. K(y, SSH2_MSG_KEXDH_INIT, 30, SSH2_PKTCTX_DHGROUP) \
  1186. K(y, SSH2_MSG_KEXDH_REPLY, 31, SSH2_PKTCTX_DHGROUP) \
  1187. K(y, SSH2_MSG_KEX_DH_GEX_REQUEST_OLD, 30, SSH2_PKTCTX_DHGEX) \
  1188. K(y, SSH2_MSG_KEX_DH_GEX_REQUEST, 34, SSH2_PKTCTX_DHGEX) \
  1189. K(y, SSH2_MSG_KEX_DH_GEX_GROUP, 31, SSH2_PKTCTX_DHGEX) \
  1190. K(y, SSH2_MSG_KEX_DH_GEX_INIT, 32, SSH2_PKTCTX_DHGEX) \
  1191. K(y, SSH2_MSG_KEX_DH_GEX_REPLY, 33, SSH2_PKTCTX_DHGEX) \
  1192. K(y, SSH2_MSG_KEXGSS_INIT, 30, SSH2_PKTCTX_GSSKEX) \
  1193. K(y, SSH2_MSG_KEXGSS_CONTINUE, 31, SSH2_PKTCTX_GSSKEX) \
  1194. K(y, SSH2_MSG_KEXGSS_COMPLETE, 32, SSH2_PKTCTX_GSSKEX) \
  1195. K(y, SSH2_MSG_KEXGSS_HOSTKEY, 33, SSH2_PKTCTX_GSSKEX) \
  1196. K(y, SSH2_MSG_KEXGSS_ERROR, 34, SSH2_PKTCTX_GSSKEX) \
  1197. K(y, SSH2_MSG_KEXGSS_GROUPREQ, 40, SSH2_PKTCTX_GSSKEX) \
  1198. K(y, SSH2_MSG_KEXGSS_GROUP, 41, SSH2_PKTCTX_GSSKEX) \
  1199. K(y, SSH2_MSG_KEXRSA_PUBKEY, 30, SSH2_PKTCTX_RSAKEX) \
  1200. K(y, SSH2_MSG_KEXRSA_SECRET, 31, SSH2_PKTCTX_RSAKEX) \
  1201. K(y, SSH2_MSG_KEXRSA_DONE, 32, SSH2_PKTCTX_RSAKEX) \
  1202. K(y, SSH2_MSG_KEX_ECDH_INIT, 30, SSH2_PKTCTX_ECDHKEX) \
  1203. K(y, SSH2_MSG_KEX_ECDH_REPLY, 31, SSH2_PKTCTX_ECDHKEX) \
  1204. X(y, SSH2_MSG_USERAUTH_REQUEST, 50) \
  1205. X(y, SSH2_MSG_USERAUTH_FAILURE, 51) \
  1206. X(y, SSH2_MSG_USERAUTH_SUCCESS, 52) \
  1207. X(y, SSH2_MSG_USERAUTH_BANNER, 53) \
  1208. A(y, SSH2_MSG_USERAUTH_PK_OK, 60, SSH2_PKTCTX_PUBLICKEY) \
  1209. A(y, SSH2_MSG_USERAUTH_PASSWD_CHANGEREQ, 60, SSH2_PKTCTX_PASSWORD) \
  1210. A(y, SSH2_MSG_USERAUTH_INFO_REQUEST, 60, SSH2_PKTCTX_KBDINTER) \
  1211. A(y, SSH2_MSG_USERAUTH_INFO_RESPONSE, 61, SSH2_PKTCTX_KBDINTER) \
  1212. A(y, SSH2_MSG_USERAUTH_GSSAPI_RESPONSE, 60, SSH2_PKTCTX_GSSAPI) \
  1213. A(y, SSH2_MSG_USERAUTH_GSSAPI_TOKEN, 61, SSH2_PKTCTX_GSSAPI) \
  1214. A(y, SSH2_MSG_USERAUTH_GSSAPI_EXCHANGE_COMPLETE, 63, SSH2_PKTCTX_GSSAPI) \
  1215. A(y, SSH2_MSG_USERAUTH_GSSAPI_ERROR, 64, SSH2_PKTCTX_GSSAPI) \
  1216. A(y, SSH2_MSG_USERAUTH_GSSAPI_ERRTOK, 65, SSH2_PKTCTX_GSSAPI) \
  1217. A(y, SSH2_MSG_USERAUTH_GSSAPI_MIC, 66, SSH2_PKTCTX_GSSAPI) \
  1218. X(y, SSH2_MSG_GLOBAL_REQUEST, 80) \
  1219. X(y, SSH2_MSG_REQUEST_SUCCESS, 81) \
  1220. X(y, SSH2_MSG_REQUEST_FAILURE, 82) \
  1221. X(y, SSH2_MSG_CHANNEL_OPEN, 90) \
  1222. X(y, SSH2_MSG_CHANNEL_OPEN_CONFIRMATION, 91) \
  1223. X(y, SSH2_MSG_CHANNEL_OPEN_FAILURE, 92) \
  1224. X(y, SSH2_MSG_CHANNEL_WINDOW_ADJUST, 93) \
  1225. X(y, SSH2_MSG_CHANNEL_DATA, 94) \
  1226. X(y, SSH2_MSG_CHANNEL_EXTENDED_DATA, 95) \
  1227. X(y, SSH2_MSG_CHANNEL_EOF, 96) \
  1228. X(y, SSH2_MSG_CHANNEL_CLOSE, 97) \
  1229. X(y, SSH2_MSG_CHANNEL_REQUEST, 98) \
  1230. X(y, SSH2_MSG_CHANNEL_SUCCESS, 99) \
  1231. X(y, SSH2_MSG_CHANNEL_FAILURE, 100) \
  1232. /* end of list */
  1233. #define DEF_ENUM_UNIVERSAL(y, name, value) name = value,
  1234. #define DEF_ENUM_CONTEXTUAL(y, name, value, context) name = value,
  1235. enum {
  1236. SSH1_MESSAGE_TYPES(DEF_ENUM_UNIVERSAL, y)
  1237. SSH2_MESSAGE_TYPES(DEF_ENUM_UNIVERSAL,
  1238. DEF_ENUM_CONTEXTUAL, DEF_ENUM_CONTEXTUAL, y)
  1239. /* Virtual packet type, for packets too short to even have a type */
  1240. SSH_MSG_NO_TYPE_CODE = 256
  1241. };
  1242. #undef DEF_ENUM_UNIVERSAL
  1243. #undef DEF_ENUM_CONTEXTUAL
  1244. /*
  1245. * SSH-1 agent messages.
  1246. */
  1247. #define SSH1_AGENTC_REQUEST_RSA_IDENTITIES 1
  1248. #define SSH1_AGENT_RSA_IDENTITIES_ANSWER 2
  1249. #define SSH1_AGENTC_RSA_CHALLENGE 3
  1250. #define SSH1_AGENT_RSA_RESPONSE 4
  1251. #define SSH1_AGENTC_ADD_RSA_IDENTITY 7
  1252. #define SSH1_AGENTC_REMOVE_RSA_IDENTITY 8
  1253. #define SSH1_AGENTC_REMOVE_ALL_RSA_IDENTITIES 9 /* openssh private? */
  1254. /*
  1255. * Messages common to SSH-1 and OpenSSH's SSH-2.
  1256. */
  1257. #define SSH_AGENT_FAILURE 5
  1258. #define SSH_AGENT_SUCCESS 6
  1259. /*
  1260. * OpenSSH's SSH-2 agent messages.
  1261. */
  1262. #define SSH2_AGENTC_REQUEST_IDENTITIES 11
  1263. #define SSH2_AGENT_IDENTITIES_ANSWER 12
  1264. #define SSH2_AGENTC_SIGN_REQUEST 13
  1265. #define SSH2_AGENT_SIGN_RESPONSE 14
  1266. #define SSH2_AGENTC_ADD_IDENTITY 17
  1267. #define SSH2_AGENTC_REMOVE_IDENTITY 18
  1268. #define SSH2_AGENTC_REMOVE_ALL_IDENTITIES 19
  1269. /*
  1270. * Assorted other SSH-related enumerations.
  1271. */
  1272. #define SSH2_DISCONNECT_HOST_NOT_ALLOWED_TO_CONNECT 1 /* 0x1 */
  1273. #define SSH2_DISCONNECT_PROTOCOL_ERROR 2 /* 0x2 */
  1274. #define SSH2_DISCONNECT_KEY_EXCHANGE_FAILED 3 /* 0x3 */
  1275. #define SSH2_DISCONNECT_HOST_AUTHENTICATION_FAILED 4 /* 0x4 */
  1276. #define SSH2_DISCONNECT_MAC_ERROR 5 /* 0x5 */
  1277. #define SSH2_DISCONNECT_COMPRESSION_ERROR 6 /* 0x6 */
  1278. #define SSH2_DISCONNECT_SERVICE_NOT_AVAILABLE 7 /* 0x7 */
  1279. #define SSH2_DISCONNECT_PROTOCOL_VERSION_NOT_SUPPORTED 8 /* 0x8 */
  1280. #define SSH2_DISCONNECT_HOST_KEY_NOT_VERIFIABLE 9 /* 0x9 */
  1281. #define SSH2_DISCONNECT_CONNECTION_LOST 10 /* 0xa */
  1282. #define SSH2_DISCONNECT_BY_APPLICATION 11 /* 0xb */
  1283. #define SSH2_DISCONNECT_TOO_MANY_CONNECTIONS 12 /* 0xc */
  1284. #define SSH2_DISCONNECT_AUTH_CANCELLED_BY_USER 13 /* 0xd */
  1285. #define SSH2_DISCONNECT_NO_MORE_AUTH_METHODS_AVAILABLE 14 /* 0xe */
  1286. #define SSH2_DISCONNECT_ILLEGAL_USER_NAME 15 /* 0xf */
  1287. #define SSH2_OPEN_ADMINISTRATIVELY_PROHIBITED 1 /* 0x1 */
  1288. #define SSH2_OPEN_CONNECT_FAILED 2 /* 0x2 */
  1289. #define SSH2_OPEN_UNKNOWN_CHANNEL_TYPE 3 /* 0x3 */
  1290. #define SSH2_OPEN_RESOURCE_SHORTAGE 4 /* 0x4 */
  1291. #define SSH2_EXTENDED_DATA_STDERR 1 /* 0x1 */
  1292. enum {
  1293. /* TTY modes with opcodes defined consistently in the SSH specs. */
  1294. #define TTYMODE_CHAR(name, val, index) SSH_TTYMODE_##name = val,
  1295. #define TTYMODE_FLAG(name, val, field, mask) SSH_TTYMODE_##name = val,
  1296. #include "sshttymodes.h"
  1297. #undef TTYMODE_CHAR
  1298. #undef TTYMODE_FLAG
  1299. /* Modes encoded differently between SSH-1 and SSH-2, for which we
  1300. * make up our own dummy opcodes to avoid confusion. */
  1301. TTYMODE_dummy = 255,
  1302. TTYMODE_ISPEED, TTYMODE_OSPEED,
  1303. /* Limiting value that we can use as an array bound below */
  1304. TTYMODE_LIMIT,
  1305. /* The real opcodes for terminal speeds. */
  1306. TTYMODE_ISPEED_SSH1 = 192,
  1307. TTYMODE_OSPEED_SSH1 = 193,
  1308. TTYMODE_ISPEED_SSH2 = 128,
  1309. TTYMODE_OSPEED_SSH2 = 129,
  1310. /* And the opcode that ends a list. */
  1311. TTYMODE_END_OF_LIST = 0
  1312. };
  1313. struct ssh_ttymodes {
  1314. /* A boolean per mode, indicating whether it's set. */
  1315. bool have_mode[TTYMODE_LIMIT];
  1316. /* The actual value for each mode. */
  1317. unsigned mode_val[TTYMODE_LIMIT];
  1318. };
  1319. struct ssh_ttymodes get_ttymodes_from_conf(Seat *seat, Conf *conf);
  1320. struct ssh_ttymodes read_ttymodes_from_packet(
  1321. BinarySource *bs, int ssh_version);
  1322. void write_ttymodes_to_packet(BinarySink *bs, int ssh_version,
  1323. struct ssh_ttymodes modes);
  1324. const char *ssh1_pkt_type(int type);
  1325. const char *ssh2_pkt_type(Pkt_KCtx pkt_kctx, Pkt_ACtx pkt_actx, int type);
  1326. bool ssh2_pkt_type_code_valid(unsigned type);
  1327. /*
  1328. * Need this to warn about support for the original SSH-2 keyfile
  1329. * format.
  1330. */
  1331. void old_keyfile_warning(void);
  1332. /*
  1333. * Flags indicating implementation bugs that we know how to mitigate
  1334. * if we think the other end has them.
  1335. */
  1336. #define SSH_IMPL_BUG_LIST(X) \
  1337. X(BUG_CHOKES_ON_SSH1_IGNORE) \
  1338. X(BUG_SSH2_HMAC) \
  1339. X(BUG_NEEDS_SSH1_PLAIN_PASSWORD) \
  1340. X(BUG_CHOKES_ON_RSA) \
  1341. X(BUG_SSH2_RSA_PADDING) \
  1342. X(BUG_SSH2_DERIVEKEY) \
  1343. X(BUG_SSH2_REKEY) \
  1344. X(BUG_SSH2_PK_SESSIONID) \
  1345. X(BUG_SSH2_MAXPKT) \
  1346. X(BUG_CHOKES_ON_SSH2_IGNORE) \
  1347. X(BUG_CHOKES_ON_WINADJ) \
  1348. X(BUG_SENDS_LATE_REQUEST_REPLY) \
  1349. X(BUG_SSH2_OLDGEX) \
  1350. /* end of list */
  1351. #define TMP_DECLARE_LOG2_ENUM(thing) log2_##thing,
  1352. enum { SSH_IMPL_BUG_LIST(TMP_DECLARE_LOG2_ENUM) };
  1353. #undef TMP_DECLARE_LOG2_ENUM
  1354. #define TMP_DECLARE_REAL_ENUM(thing) thing = 1 << log2_##thing,
  1355. enum { SSH_IMPL_BUG_LIST(TMP_DECLARE_REAL_ENUM) };
  1356. #undef TMP_DECLARE_REAL_ENUM
  1357. /* Shared system for allocating local SSH channel ids. Expects to be
  1358. * passed a tree full of structs that have a field called 'localid' of
  1359. * type unsigned, and will check that! */
  1360. unsigned alloc_channel_id_general(tree234 *channels, size_t localid_offset);
  1361. #define alloc_channel_id(tree, type) \
  1362. TYPECHECK(&((type *)0)->localid == (unsigned *)0, \
  1363. alloc_channel_id_general(tree, offsetof(type, localid)))
  1364. void add_to_commasep(strbuf *buf, const char *data);
  1365. bool get_commasep_word(ptrlen *list, ptrlen *word);
  1366. int verify_ssh_manual_host_key(
  1367. Conf *conf, const char *fingerprint, ssh_key *key);
  1368. typedef struct ssh_transient_hostkey_cache ssh_transient_hostkey_cache;
  1369. ssh_transient_hostkey_cache *ssh_transient_hostkey_cache_new(void);
  1370. void ssh_transient_hostkey_cache_free(ssh_transient_hostkey_cache *thc);
  1371. void ssh_transient_hostkey_cache_add(
  1372. ssh_transient_hostkey_cache *thc, ssh_key *key);
  1373. bool ssh_transient_hostkey_cache_verify(
  1374. ssh_transient_hostkey_cache *thc, ssh_key *key);
  1375. bool ssh_transient_hostkey_cache_has(
  1376. ssh_transient_hostkey_cache *thc, const ssh_keyalg *alg);
  1377. bool ssh_transient_hostkey_cache_non_empty(ssh_transient_hostkey_cache *thc);