Line discipline module now uses dynamically allocated data. Also
[u/mdw/putty] / ssh.h
... / ...
CommitLineData
1#include <string.h>
2
3#include "puttymem.h"
4#include "network.h"
5#include "int64.h"
6
7struct ssh_channel;
8
9extern void sshfwd_close(struct ssh_channel *c);
10extern int sshfwd_write(struct ssh_channel *c, char *, int);
11extern void sshfwd_unthrottle(struct ssh_channel *c, int bufsize);
12
13/*
14 * Useful thing.
15 */
16#ifndef lenof
17#define lenof(x) ( (sizeof((x))) / (sizeof(*(x))))
18#endif
19
20#define SSH_CIPHER_IDEA 1
21#define SSH_CIPHER_DES 2
22#define SSH_CIPHER_3DES 3
23#define SSH_CIPHER_BLOWFISH 6
24
25#ifdef MSCRYPTOAPI
26#define APIEXTRA 8
27#else
28#define APIEXTRA 0
29#endif
30
31#ifndef BIGNUM_INTERNAL
32typedef void *Bignum;
33#endif
34
35struct RSAKey {
36 int bits;
37 int bytes;
38#ifdef MSCRYPTOAPI
39 unsigned long exponent;
40 unsigned char *modulus;
41#else
42 Bignum modulus;
43 Bignum exponent;
44 Bignum private_exponent;
45 Bignum p;
46 Bignum q;
47 Bignum iqmp;
48#endif
49 char *comment;
50};
51
52struct dss_key {
53 Bignum p, q, g, y, x;
54};
55
56int makekey(unsigned char *data, struct RSAKey *result,
57 unsigned char **keystr, int order);
58int makeprivate(unsigned char *data, struct RSAKey *result);
59void rsaencrypt(unsigned char *data, int length, struct RSAKey *key);
60Bignum rsadecrypt(Bignum input, struct RSAKey *key);
61void rsasign(unsigned char *data, int length, struct RSAKey *key);
62void rsasanitise(struct RSAKey *key);
63int rsastr_len(struct RSAKey *key);
64void rsastr_fmt(char *str, struct RSAKey *key);
65void rsa_fingerprint(char *str, int len, struct RSAKey *key);
66int rsa_verify(struct RSAKey *key);
67unsigned char *rsa_public_blob(struct RSAKey *key, int *len);
68int rsa_public_blob_len(void *data);
69void freersakey(struct RSAKey *key);
70
71typedef unsigned int word32;
72typedef unsigned int uint32;
73
74unsigned long crc32(const void *s, size_t len);
75unsigned long crc32_update(unsigned long crc_input, const void *s, size_t len);
76
77/* SSH CRC compensation attack detector */
78void *crcda_make_context(void);
79void crcda_free_context(void *handle);
80int detect_attack(void *handle, unsigned char *buf, uint32 len,
81 unsigned char *IV);
82
83typedef struct {
84 uint32 h[4];
85} MD5_Core_State;
86
87struct MD5Context {
88#ifdef MSCRYPTOAPI
89 unsigned long hHash;
90#else
91 MD5_Core_State core;
92 unsigned char block[64];
93 int blkused;
94 uint32 lenhi, lenlo;
95#endif
96};
97
98void MD5Init(struct MD5Context *context);
99void MD5Update(struct MD5Context *context, unsigned char const *buf,
100 unsigned len);
101void MD5Final(unsigned char digest[16], struct MD5Context *context);
102
103typedef struct {
104 uint32 h[5];
105 unsigned char block[64];
106 int blkused;
107 uint32 lenhi, lenlo;
108} SHA_State;
109void SHA_Init(SHA_State * s);
110void SHA_Bytes(SHA_State * s, void *p, int len);
111void SHA_Final(SHA_State * s, unsigned char *output);
112void SHA_Simple(void *p, int len, unsigned char *output);
113
114void hmac_sha1_simple(void *key, int keylen, void *data, int datalen,
115 unsigned char *output);
116
117typedef struct {
118 uint64 h[8];
119 unsigned char block[128];
120 int blkused;
121 uint32 len[4];
122} SHA512_State;
123void SHA512_Init(SHA512_State * s);
124void SHA512_Bytes(SHA512_State * s, const void *p, int len);
125void SHA512_Final(SHA512_State * s, unsigned char *output);
126void SHA512_Simple(const void *p, int len, unsigned char *output);
127
128struct ssh_cipher {
129 void *(*make_context)(void);
130 void (*free_context)(void *);
131 void (*sesskey) (void *, unsigned char *key); /* for ssh 1 */
132 void (*encrypt) (void *, unsigned char *blk, int len);
133 void (*decrypt) (void *, unsigned char *blk, int len);
134 int blksize;
135 char *text_name;
136};
137
138struct ssh2_cipher {
139 void *(*make_context)(void);
140 void (*free_context)(void *);
141 void (*setiv) (void *, unsigned char *key); /* for ssh 2 */
142 void (*setkey) (void *, unsigned char *key);/* for ssh 2 */
143 void (*encrypt) (void *, unsigned char *blk, int len);
144 void (*decrypt) (void *, unsigned char *blk, int len);
145 char *name;
146 int blksize;
147 int keylen;
148 char *text_name;
149};
150
151struct ssh2_ciphers {
152 int nciphers;
153 const struct ssh2_cipher *const *list;
154};
155
156struct ssh_mac {
157 void *(*make_context)(void);
158 void (*free_context)(void *);
159 void (*setkey) (void *, unsigned char *key);
160 void (*generate) (void *, unsigned char *blk, int len, unsigned long seq);
161 int (*verify) (void *, unsigned char *blk, int len, unsigned long seq);
162 char *name;
163 int len;
164};
165
166struct ssh_kex {
167 /*
168 * Plugging in another KEX algorithm requires structural chaos,
169 * so it's hard to abstract them into nice little structures
170 * like this. Hence, for the moment, this is just a
171 * placeholder. I claim justification in the fact that OpenSSH
172 * does this too :-)
173 */
174 char *name;
175};
176
177struct ssh_signkey {
178 void *(*newkey) (char *data, int len);
179 void (*freekey) (void *key);
180 char *(*fmtkey) (void *key);
181 unsigned char *(*public_blob) (void *key, int *len);
182 unsigned char *(*private_blob) (void *key, int *len);
183 void *(*createkey) (unsigned char *pub_blob, int pub_len,
184 unsigned char *priv_blob, int priv_len);
185 void *(*openssh_createkey) (unsigned char **blob, int *len);
186 int (*openssh_fmtkey) (void *key, unsigned char *blob, int len);
187 char *(*fingerprint) (void *key);
188 int (*verifysig) (void *key, char *sig, int siglen,
189 char *data, int datalen);
190 unsigned char *(*sign) (void *key, char *data, int datalen,
191 int *siglen);
192 char *name;
193 char *keytype; /* for host key cache */
194};
195
196struct ssh_compress {
197 char *name;
198 void *(*compress_init) (void);
199 void (*compress_cleanup) (void *);
200 int (*compress) (void *, unsigned char *block, int len,
201 unsigned char **outblock, int *outlen);
202 void *(*decompress_init) (void);
203 void (*decompress_cleanup) (void *);
204 int (*decompress) (void *, unsigned char *block, int len,
205 unsigned char **outblock, int *outlen);
206 int (*disable_compression) (void *);
207 char *text_name;
208};
209
210struct ssh2_userkey {
211 const struct ssh_signkey *alg; /* the key algorithm */
212 void *data; /* the key data */
213 char *comment; /* the key comment */
214};
215
216extern const struct ssh_cipher ssh_3des;
217extern const struct ssh_cipher ssh_des;
218extern const struct ssh_cipher ssh_blowfish_ssh1;
219extern const struct ssh2_ciphers ssh2_3des;
220extern const struct ssh2_ciphers ssh2_des;
221extern const struct ssh2_ciphers ssh2_aes;
222extern const struct ssh2_ciphers ssh2_blowfish;
223extern const struct ssh_kex ssh_diffiehellman;
224extern const struct ssh_kex ssh_diffiehellman_gex;
225extern const struct ssh_signkey ssh_dss;
226extern const struct ssh_signkey ssh_rsa;
227extern const struct ssh_mac ssh_md5;
228extern const struct ssh_mac ssh_sha1;
229extern const struct ssh_mac ssh_sha1_buggy;
230
231/*
232 * PuTTY version number formatted as an SSH version string.
233 */
234extern char sshver[];
235
236/*
237 * Gross hack: pscp will try to start SFTP but fall back to scp1 if
238 * that fails. This variable is the means by which scp.c can reach
239 * into the SSH code and find out which one it got.
240 */
241extern int ssh_fallback_cmd(void *handle);
242
243#ifndef MSCRYPTOAPI
244void SHATransform(word32 * digest, word32 * data);
245#endif
246
247int random_byte(void);
248void random_add_noise(void *noise, int length);
249void random_add_heavynoise(void *noise, int length);
250
251void logevent(char *);
252
253/* Allocate and register a new channel for port forwarding */
254void *new_sock_channel(void *handle, Socket s);
255void ssh_send_port_open(void *handle, void *channel,
256 char *hostname, int port, char *org);
257
258Bignum copybn(Bignum b);
259Bignum bn_power_2(int n);
260void bn_restore_invariant(Bignum b);
261Bignum bignum_from_long(unsigned long n);
262void freebn(Bignum b);
263Bignum modpow(Bignum base, Bignum exp, Bignum mod);
264Bignum modmul(Bignum a, Bignum b, Bignum mod);
265void decbn(Bignum n);
266extern Bignum Zero, One;
267Bignum bignum_from_bytes(const unsigned char *data, int nbytes);
268int ssh1_read_bignum(const unsigned char *data, Bignum * result);
269int bignum_bitcount(Bignum bn);
270int ssh1_bignum_length(Bignum bn);
271int ssh2_bignum_length(Bignum bn);
272int bignum_byte(Bignum bn, int i);
273int bignum_bit(Bignum bn, int i);
274void bignum_set_bit(Bignum bn, int i, int value);
275int ssh1_write_bignum(void *data, Bignum bn);
276Bignum biggcd(Bignum a, Bignum b);
277unsigned short bignum_mod_short(Bignum number, unsigned short modulus);
278Bignum bignum_add_long(Bignum number, unsigned long addend);
279Bignum bigmul(Bignum a, Bignum b);
280Bignum bigmuladd(Bignum a, Bignum b, Bignum addend);
281Bignum bigdiv(Bignum a, Bignum b);
282Bignum bigmod(Bignum a, Bignum b);
283Bignum modinv(Bignum number, Bignum modulus);
284Bignum bignum_bitmask(Bignum number);
285Bignum bignum_rshift(Bignum number, int shift);
286int bignum_cmp(Bignum a, Bignum b);
287char *bignum_decimal(Bignum x);
288
289void *dh_setup_group1(void);
290void *dh_setup_group(Bignum pval, Bignum gval);
291void dh_cleanup(void *);
292Bignum dh_create_e(void *, int nbits);
293Bignum dh_find_K(void *, Bignum f);
294
295int loadrsakey(char *filename, struct RSAKey *key, char *passphrase);
296int rsakey_encrypted(char *filename, char **comment);
297int rsakey_pubblob(char *filename, void **blob, int *bloblen);
298
299int saversakey(char *filename, struct RSAKey *key, char *passphrase);
300
301void base64_encode_atom(unsigned char *data, int n, char *out);
302
303/* ssh2_load_userkey can return this as an error */
304extern struct ssh2_userkey ssh2_wrong_passphrase;
305#define SSH2_WRONG_PASSPHRASE (&ssh2_wrong_passphrase)
306
307int ssh2_userkey_encrypted(char *filename, char **comment);
308struct ssh2_userkey *ssh2_load_userkey(char *filename, char *passphrase);
309char *ssh2_userkey_loadpub(char *filename, char **algorithm,
310 int *pub_blob_len);
311int ssh2_save_userkey(char *filename, struct ssh2_userkey *key,
312 char *passphrase);
313
314enum {
315 SSH_KEYTYPE_UNOPENABLE,
316 SSH_KEYTYPE_UNKNOWN,
317 SSH_KEYTYPE_SSH1, SSH_KEYTYPE_SSH2,
318 SSH_KEYTYPE_OPENSSH, SSH_KEYTYPE_SSHCOM
319};
320int key_type(char *filename);
321char *key_type_to_str(int type);
322
323int import_possible(int type);
324int import_target_type(int type);
325int import_encrypted(char *filename, int type, char **comment);
326int import_ssh1(char *filename, int type, struct RSAKey *key,char *passphrase);
327struct ssh2_userkey *import_ssh2(char *filename, int type, char *passphrase);
328int export_ssh1(char *filename, int type, struct RSAKey *key,char *passphrase);
329int export_ssh2(char *filename, int type,
330 struct ssh2_userkey *key, char *passphrase);
331
332void des3_decrypt_pubkey(unsigned char *key, unsigned char *blk, int len);
333void des3_encrypt_pubkey(unsigned char *key, unsigned char *blk, int len);
334void des3_decrypt_pubkey_ossh(unsigned char *key, unsigned char *iv,
335 unsigned char *blk, int len);
336void des3_encrypt_pubkey_ossh(unsigned char *key, unsigned char *iv,
337 unsigned char *blk, int len);
338void aes256_encrypt_pubkey(unsigned char *key, unsigned char *blk,
339 int len);
340void aes256_decrypt_pubkey(unsigned char *key, unsigned char *blk,
341 int len);
342
343/*
344 * For progress updates in the key generation utility.
345 */
346#define PROGFN_INITIALISE 1
347#define PROGFN_LIN_PHASE 2
348#define PROGFN_EXP_PHASE 3
349#define PROGFN_PHASE_EXTENT 4
350#define PROGFN_READY 5
351#define PROGFN_PROGRESS 6
352typedef void (*progfn_t) (void *param, int action, int phase, int progress);
353
354int rsa_generate(struct RSAKey *key, int bits, progfn_t pfn,
355 void *pfnparam);
356int dsa_generate(struct dss_key *key, int bits, progfn_t pfn,
357 void *pfnparam);
358Bignum primegen(int bits, int modulus, int residue, Bignum factor,
359 int phase, progfn_t pfn, void *pfnparam);
360
361
362/*
363 * zlib compression.
364 */
365void *zlib_compress_init(void);
366void zlib_compress_cleanup(void *);
367void *zlib_decompress_init(void);
368void zlib_decompress_cleanup(void *);
369int zlib_compress_block(void *, unsigned char *block, int len,
370 unsigned char **outblock, int *outlen);
371int zlib_decompress_block(void *, unsigned char *block, int len,
372 unsigned char **outblock, int *outlen);
373
374/*
375 * SSH1 agent messages.
376 */
377#define SSH1_AGENTC_REQUEST_RSA_IDENTITIES 1
378#define SSH1_AGENT_RSA_IDENTITIES_ANSWER 2
379#define SSH1_AGENTC_RSA_CHALLENGE 3
380#define SSH1_AGENT_RSA_RESPONSE 4
381#define SSH1_AGENTC_ADD_RSA_IDENTITY 7
382#define SSH1_AGENTC_REMOVE_RSA_IDENTITY 8
383#define SSH1_AGENTC_REMOVE_ALL_RSA_IDENTITIES 9 /* openssh private? */
384
385/*
386 * Messages common to SSH1 and OpenSSH's SSH2.
387 */
388#define SSH_AGENT_FAILURE 5
389#define SSH_AGENT_SUCCESS 6
390
391/*
392 * OpenSSH's SSH2 agent messages.
393 */
394#define SSH2_AGENTC_REQUEST_IDENTITIES 11
395#define SSH2_AGENT_IDENTITIES_ANSWER 12
396#define SSH2_AGENTC_SIGN_REQUEST 13
397#define SSH2_AGENT_SIGN_RESPONSE 14
398#define SSH2_AGENTC_ADD_IDENTITY 17
399#define SSH2_AGENTC_REMOVE_IDENTITY 18
400#define SSH2_AGENTC_REMOVE_ALL_IDENTITIES 19
401
402/*
403 * Need this to warn about support for the original SSH2 keyfile
404 * format.
405 */
406void old_keyfile_warning(void);