sshpubk.c 44 KB

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  1. /*
  2. * Generic SSH public-key handling operations. In particular,
  3. * reading of SSH public-key files, and also the generic `sign'
  4. * operation for SSH-2 (which checks the type of the key and
  5. * dispatches to the appropriate key-type specific function).
  6. */
  7. #include <stdio.h>
  8. #include <stdlib.h>
  9. #include <assert.h>
  10. #include "putty.h"
  11. #include "mpint.h"
  12. #include "ssh.h"
  13. #include "misc.h"
  14. #define rsa_signature "SSH PRIVATE KEY FILE FORMAT 1.1\n"
  15. #define BASE64_TOINT(x) ( (x)-'A'<26 ? (x)-'A'+0 :\
  16. (x)-'a'<26 ? (x)-'a'+26 :\
  17. (x)-'0'<10 ? (x)-'0'+52 :\
  18. (x)=='+' ? 62 : \
  19. (x)=='/' ? 63 : 0 )
  20. static int key_type_fp(FILE *fp);
  21. static int rsa_ssh1_load_main(FILE * fp, RSAKey *key, bool pub_only,
  22. char **commentptr, const char *passphrase,
  23. const char **error)
  24. {
  25. strbuf *buf;
  26. int ciphertype;
  27. int ret = 0;
  28. struct MD5Context md5c;
  29. ptrlen comment;
  30. BinarySource src[1];
  31. *error = NULL;
  32. /* Slurp the whole file (minus the header) into a buffer. */
  33. buf = strbuf_new();
  34. {
  35. int ch;
  36. while ((ch = fgetc(fp)) != EOF)
  37. put_byte(buf, ch);
  38. }
  39. fclose(fp);
  40. BinarySource_BARE_INIT(src, buf->u, buf->len);
  41. *error = "file format error";
  42. /*
  43. * A zero byte. (The signature includes a terminating NUL, which
  44. * we haven't gone past yet because we read it using fgets which
  45. * stopped after the \n.)
  46. */
  47. if (get_byte(src) != 0)
  48. goto end;
  49. /* One byte giving encryption type, and one reserved uint32. */
  50. ciphertype = get_byte(src);
  51. if (ciphertype != 0 && ciphertype != SSH_CIPHER_3DES)
  52. goto end;
  53. if (get_uint32(src) != 0)
  54. goto end; /* reserved field nonzero, panic! */
  55. /* Now the serious stuff. An ordinary SSH-1 public key. */
  56. get_rsa_ssh1_pub(src, key, RSA_SSH1_MODULUS_FIRST);
  57. /* Next, the comment field. */
  58. comment = get_string(src);
  59. if (commentptr)
  60. *commentptr = mkstr(comment);
  61. if (key)
  62. key->comment = mkstr(comment);
  63. if (pub_only) {
  64. ret = 1;
  65. goto end;
  66. }
  67. if (!key) {
  68. ret = ciphertype != 0;
  69. *error = NULL;
  70. goto end;
  71. }
  72. /*
  73. * Decrypt remainder of buffer.
  74. */
  75. if (ciphertype) {
  76. unsigned char keybuf[16];
  77. size_t enclen = buf->len - src->pos;
  78. if (enclen & 7)
  79. goto end;
  80. MD5Init(&md5c);
  81. put_data(&md5c, passphrase, strlen(passphrase));
  82. MD5Final(keybuf, &md5c);
  83. des3_decrypt_pubkey(keybuf, buf->u + src->pos, enclen);
  84. smemclr(keybuf, sizeof(keybuf)); /* burn the evidence */
  85. }
  86. /*
  87. * We are now in the secret part of the key. The first four
  88. * bytes should be of the form a, b, a, b.
  89. */
  90. {
  91. int b0a = get_byte(src);
  92. int b1a = get_byte(src);
  93. int b0b = get_byte(src);
  94. int b1b = get_byte(src);
  95. if (b0a != b0b || b1a != b1b) {
  96. *error = "wrong passphrase";
  97. ret = -1;
  98. goto end;
  99. }
  100. }
  101. /*
  102. * After that, we have one further bignum which is our
  103. * decryption exponent, and then the three auxiliary values
  104. * (iqmp, q, p).
  105. */
  106. get_rsa_ssh1_priv(src, key);
  107. key->iqmp = get_mp_ssh1(src);
  108. key->q = get_mp_ssh1(src);
  109. key->p = get_mp_ssh1(src);
  110. if (!rsa_verify(key)) {
  111. *error = "rsa_verify failed";
  112. freersakey(key);
  113. ret = 0;
  114. } else
  115. ret = 1;
  116. end:
  117. strbuf_free(buf);
  118. return ret;
  119. }
  120. int rsa_ssh1_loadkey(const Filename *filename, RSAKey *key,
  121. const char *passphrase, const char **errorstr)
  122. {
  123. FILE *fp;
  124. char buf[64];
  125. int ret = 0;
  126. const char *error = NULL;
  127. fp = f_open(filename, "rb", false);
  128. if (!fp) {
  129. error = "can't open file";
  130. goto end;
  131. }
  132. /*
  133. * Read the first line of the file and see if it's a v1 private
  134. * key file.
  135. */
  136. if (fgets(buf, sizeof(buf), fp) && !strcmp(buf, rsa_signature)) {
  137. /*
  138. * This routine will take care of calling fclose() for us.
  139. */
  140. ret = rsa_ssh1_load_main(fp, key, false, NULL, passphrase, &error);
  141. fp = NULL;
  142. goto end;
  143. }
  144. /*
  145. * Otherwise, we have nothing. Return empty-handed.
  146. */
  147. error = "not an SSH-1 RSA file";
  148. end:
  149. if (fp)
  150. fclose(fp);
  151. if ((ret != 1) && errorstr)
  152. *errorstr = error;
  153. return ret;
  154. }
  155. /*
  156. * See whether an RSA key is encrypted. Return its comment field as
  157. * well.
  158. */
  159. bool rsa_ssh1_encrypted(const Filename *filename, char **comment)
  160. {
  161. FILE *fp;
  162. char buf[64];
  163. fp = f_open(filename, "rb", false);
  164. if (!fp)
  165. return false; /* doesn't even exist */
  166. /*
  167. * Read the first line of the file and see if it's a v1 private
  168. * key file.
  169. */
  170. if (fgets(buf, sizeof(buf), fp) && !strcmp(buf, rsa_signature)) {
  171. const char *dummy;
  172. /*
  173. * This routine will take care of calling fclose() for us.
  174. */
  175. return rsa_ssh1_load_main(fp, NULL, false, comment, NULL, &dummy) == 1;
  176. }
  177. fclose(fp);
  178. return false; /* wasn't the right kind of file */
  179. }
  180. /*
  181. * Read the public part of an SSH-1 RSA key from a file (public or
  182. * private), and generate its public blob in exponent-first order.
  183. */
  184. int rsa_ssh1_loadpub(const Filename *filename, BinarySink *bs,
  185. char **commentptr, const char **errorstr)
  186. {
  187. FILE *fp;
  188. char buf[64];
  189. RSAKey key;
  190. int ret;
  191. const char *error = NULL;
  192. /* Default return if we fail. */
  193. ret = 0;
  194. fp = f_open(filename, "rb", false);
  195. if (!fp) {
  196. error = "can't open file";
  197. goto end;
  198. }
  199. /*
  200. * Read the first line of the file and see if it's a v1 private
  201. * key file.
  202. */
  203. if (fgets(buf, sizeof(buf), fp) && !strcmp(buf, rsa_signature)) {
  204. memset(&key, 0, sizeof(key));
  205. if (rsa_ssh1_load_main(fp, &key, true, commentptr, NULL, &error)) {
  206. rsa_ssh1_public_blob(bs, &key, RSA_SSH1_EXPONENT_FIRST);
  207. freersakey(&key);
  208. ret = 1;
  209. }
  210. fp = NULL; /* rsa_ssh1_load_main unconditionally closes fp */
  211. } else {
  212. /*
  213. * Try interpreting the file as an SSH-1 public key.
  214. */
  215. char *line, *p, *bitsp, *expp, *modp, *commentp;
  216. rewind(fp);
  217. line = chomp(fgetline(fp));
  218. p = line;
  219. bitsp = p;
  220. p += strspn(p, "0123456789");
  221. if (*p != ' ')
  222. goto not_public_either;
  223. *p++ = '\0';
  224. expp = p;
  225. p += strspn(p, "0123456789");
  226. if (*p != ' ')
  227. goto not_public_either;
  228. *p++ = '\0';
  229. modp = p;
  230. p += strspn(p, "0123456789");
  231. if (*p) {
  232. if (*p != ' ')
  233. goto not_public_either;
  234. *p++ = '\0';
  235. commentp = p;
  236. } else {
  237. commentp = NULL;
  238. }
  239. memset(&key, 0, sizeof(key));
  240. key.exponent = mp_from_decimal(expp);
  241. key.modulus = mp_from_decimal(modp);
  242. if (atoi(bitsp) != mp_get_nbits(key.modulus)) {
  243. mp_free(key.exponent);
  244. mp_free(key.modulus);
  245. sfree(line);
  246. error = "key bit count does not match in SSH-1 public key file";
  247. goto end;
  248. }
  249. if (commentptr)
  250. *commentptr = commentp ? dupstr(commentp) : NULL;
  251. rsa_ssh1_public_blob(bs, &key, RSA_SSH1_EXPONENT_FIRST);
  252. freersakey(&key);
  253. sfree(line);
  254. fclose(fp);
  255. return 1;
  256. not_public_either:
  257. sfree(line);
  258. error = "not an SSH-1 RSA file";
  259. }
  260. end:
  261. if (fp)
  262. fclose(fp);
  263. if ((ret != 1) && errorstr)
  264. *errorstr = error;
  265. return ret;
  266. }
  267. /*
  268. * Save an RSA key file. Return true on success.
  269. */
  270. bool rsa_ssh1_savekey(const Filename *filename, RSAKey *key,
  271. char *passphrase)
  272. {
  273. strbuf *buf = strbuf_new();
  274. int estart;
  275. FILE *fp;
  276. /*
  277. * The public part of the key.
  278. */
  279. put_data(buf, rsa_signature, sizeof(rsa_signature));
  280. put_byte(buf, passphrase ? SSH_CIPHER_3DES : 0); /* encryption type */
  281. put_uint32(buf, 0); /* reserved */
  282. rsa_ssh1_public_blob(BinarySink_UPCAST(buf), key,
  283. RSA_SSH1_MODULUS_FIRST);
  284. put_stringz(buf, NULLTOEMPTY(key->comment));
  285. /*
  286. * The encrypted portion starts here.
  287. */
  288. estart = buf->len;
  289. /*
  290. * Two bytes, then the same two bytes repeated.
  291. */
  292. {
  293. unsigned char b0 = random_byte();
  294. unsigned char b1 = random_byte();
  295. put_byte(buf, b0);
  296. put_byte(buf, b1);
  297. put_byte(buf, b0);
  298. put_byte(buf, b1);
  299. }
  300. /*
  301. * Four more bignums: the decryption exponent, then iqmp, then
  302. * q, then p.
  303. */
  304. put_mp_ssh1(buf, key->private_exponent);
  305. put_mp_ssh1(buf, key->iqmp);
  306. put_mp_ssh1(buf, key->q);
  307. put_mp_ssh1(buf, key->p);
  308. /*
  309. * Now write zeros until the encrypted portion is a multiple of
  310. * 8 bytes.
  311. */
  312. put_padding(buf, (estart - buf->len) & 7, 0);
  313. /*
  314. * Now encrypt the encrypted portion.
  315. */
  316. if (passphrase) {
  317. struct MD5Context md5c;
  318. unsigned char keybuf[16];
  319. MD5Init(&md5c);
  320. put_data(&md5c, passphrase, strlen(passphrase));
  321. MD5Final(keybuf, &md5c);
  322. des3_encrypt_pubkey(keybuf, buf->u + estart, buf->len - estart);
  323. smemclr(keybuf, sizeof(keybuf)); /* burn the evidence */
  324. }
  325. /*
  326. * Done. Write the result to the file.
  327. */
  328. fp = f_open(filename, "wb", true);
  329. if (fp) {
  330. bool ret = (fwrite(buf->u, 1, buf->len, fp) == (size_t) (buf->len));
  331. if (fclose(fp))
  332. ret = false;
  333. return ret;
  334. } else
  335. return false;
  336. }
  337. /* ----------------------------------------------------------------------
  338. * SSH-2 private key load/store functions.
  339. */
  340. /*
  341. * PuTTY's own format for SSH-2 keys is as follows:
  342. *
  343. * The file is text. Lines are terminated by CRLF, although CR-only
  344. * and LF-only are tolerated on input.
  345. *
  346. * The first line says "PuTTY-User-Key-File-2: " plus the name of the
  347. * algorithm ("ssh-dss", "ssh-rsa" etc).
  348. *
  349. * The next line says "Encryption: " plus an encryption type.
  350. * Currently the only supported encryption types are "aes256-cbc"
  351. * and "none".
  352. *
  353. * The next line says "Comment: " plus the comment string.
  354. *
  355. * Next there is a line saying "Public-Lines: " plus a number N.
  356. * The following N lines contain a base64 encoding of the public
  357. * part of the key. This is encoded as the standard SSH-2 public key
  358. * blob (with no initial length): so for RSA, for example, it will
  359. * read
  360. *
  361. * string "ssh-rsa"
  362. * mpint exponent
  363. * mpint modulus
  364. *
  365. * Next, there is a line saying "Private-Lines: " plus a number N,
  366. * and then N lines containing the (potentially encrypted) private
  367. * part of the key. For the key type "ssh-rsa", this will be
  368. * composed of
  369. *
  370. * mpint private_exponent
  371. * mpint p (the larger of the two primes)
  372. * mpint q (the smaller prime)
  373. * mpint iqmp (the inverse of q modulo p)
  374. * data padding (to reach a multiple of the cipher block size)
  375. *
  376. * And for "ssh-dss", it will be composed of
  377. *
  378. * mpint x (the private key parameter)
  379. * [ string hash 20-byte hash of mpints p || q || g only in old format ]
  380. *
  381. * Finally, there is a line saying "Private-MAC: " plus a hex
  382. * representation of a HMAC-SHA-1 of:
  383. *
  384. * string name of algorithm ("ssh-dss", "ssh-rsa")
  385. * string encryption type
  386. * string comment
  387. * string public-blob
  388. * string private-plaintext (the plaintext version of the
  389. * private part, including the final
  390. * padding)
  391. *
  392. * The key to the MAC is itself a SHA-1 hash of:
  393. *
  394. * data "putty-private-key-file-mac-key"
  395. * data passphrase
  396. *
  397. * (An empty passphrase is used for unencrypted keys.)
  398. *
  399. * If the key is encrypted, the encryption key is derived from the
  400. * passphrase by means of a succession of SHA-1 hashes. Each hash
  401. * is the hash of:
  402. *
  403. * uint32 sequence-number
  404. * data passphrase
  405. *
  406. * where the sequence-number increases from zero. As many of these
  407. * hashes are used as necessary.
  408. *
  409. * For backwards compatibility with snapshots between 0.51 and
  410. * 0.52, we also support the older key file format, which begins
  411. * with "PuTTY-User-Key-File-1" (version number differs). In this
  412. * format the Private-MAC: field only covers the private-plaintext
  413. * field and nothing else (and without the 4-byte string length on
  414. * the front too). Moreover, the Private-MAC: field can be replaced
  415. * with a Private-Hash: field which is a plain SHA-1 hash instead of
  416. * an HMAC (this was generated for unencrypted keys).
  417. */
  418. static bool read_header(FILE * fp, char *header)
  419. {
  420. int len = 39;
  421. int c;
  422. while (1) {
  423. c = fgetc(fp);
  424. if (c == '\n' || c == '\r' || c == EOF)
  425. return false; /* failure */
  426. if (c == ':') {
  427. c = fgetc(fp);
  428. if (c != ' ')
  429. return false;
  430. *header = '\0';
  431. return true; /* success! */
  432. }
  433. if (len == 0)
  434. return false; /* failure */
  435. *header++ = c;
  436. len--;
  437. }
  438. return false; /* failure */
  439. }
  440. static char *read_body(FILE * fp)
  441. {
  442. char *text;
  443. int len;
  444. int size;
  445. int c;
  446. size = 128;
  447. text = snewn(size, char);
  448. len = 0;
  449. text[len] = '\0';
  450. while (1) {
  451. c = fgetc(fp);
  452. if (c == '\r' || c == '\n' || c == EOF) {
  453. if (c != EOF) {
  454. c = fgetc(fp);
  455. if (c != '\r' && c != '\n')
  456. ungetc(c, fp);
  457. }
  458. return text;
  459. }
  460. if (len + 1 >= size) {
  461. size += 128;
  462. text = sresize(text, size, char);
  463. }
  464. text[len++] = c;
  465. text[len] = '\0';
  466. }
  467. }
  468. static bool read_blob(FILE *fp, int nlines, BinarySink *bs)
  469. {
  470. unsigned char *blob;
  471. char *line;
  472. int linelen;
  473. int i, j, k;
  474. /* We expect at most 64 base64 characters, ie 48 real bytes, per line. */
  475. blob = snewn(48 * nlines, unsigned char);
  476. for (i = 0; i < nlines; i++) {
  477. line = read_body(fp);
  478. if (!line) {
  479. sfree(blob);
  480. return false;
  481. }
  482. linelen = strlen(line);
  483. if (linelen % 4 != 0 || linelen > 64) {
  484. sfree(blob);
  485. sfree(line);
  486. return false;
  487. }
  488. for (j = 0; j < linelen; j += 4) {
  489. unsigned char decoded[3];
  490. k = base64_decode_atom(line + j, decoded);
  491. if (!k) {
  492. sfree(line);
  493. sfree(blob);
  494. return false;
  495. }
  496. put_data(bs, decoded, k);
  497. }
  498. sfree(line);
  499. }
  500. return true;
  501. }
  502. /*
  503. * Magic error return value for when the passphrase is wrong.
  504. */
  505. ssh2_userkey ssh2_wrong_passphrase = { NULL, NULL };
  506. const ssh_keyalg *find_pubkey_alg_len(ptrlen name)
  507. {
  508. if (ptrlen_eq_string(name, "ssh-rsa"))
  509. return &ssh_rsa;
  510. else if (ptrlen_eq_string(name, "ssh-dss"))
  511. return &ssh_dss;
  512. else if (ptrlen_eq_string(name, "ecdsa-sha2-nistp256"))
  513. return &ssh_ecdsa_nistp256;
  514. else if (ptrlen_eq_string(name, "ecdsa-sha2-nistp384"))
  515. return &ssh_ecdsa_nistp384;
  516. else if (ptrlen_eq_string(name, "ecdsa-sha2-nistp521"))
  517. return &ssh_ecdsa_nistp521;
  518. else if (ptrlen_eq_string(name, "ssh-ed25519"))
  519. return &ssh_ecdsa_ed25519;
  520. else
  521. return NULL;
  522. }
  523. const ssh_keyalg *find_pubkey_alg(const char *name)
  524. {
  525. return find_pubkey_alg_len(ptrlen_from_asciz(name));
  526. }
  527. ssh2_userkey *ssh2_load_userkey(
  528. const Filename *filename, const char *passphrase, const char **errorstr)
  529. {
  530. FILE *fp;
  531. char header[40], *b, *encryption, *comment, *mac;
  532. const ssh_keyalg *alg;
  533. ssh2_userkey *ret;
  534. int cipher, cipherblk;
  535. strbuf *public_blob, *private_blob;
  536. int i;
  537. bool is_mac, old_fmt;
  538. int passlen = passphrase ? strlen(passphrase) : 0;
  539. const char *error = NULL;
  540. ret = NULL; /* return NULL for most errors */
  541. encryption = comment = mac = NULL;
  542. public_blob = private_blob = NULL;
  543. fp = f_open(filename, "rb", false);
  544. if (!fp) {
  545. error = "can't open file";
  546. goto error;
  547. }
  548. /* Read the first header line which contains the key type. */
  549. if (!read_header(fp, header)) {
  550. error = "no header line found in key file";
  551. goto error;
  552. }
  553. if (0 == strcmp(header, "PuTTY-User-Key-File-2")) {
  554. old_fmt = false;
  555. } else if (0 == strcmp(header, "PuTTY-User-Key-File-1")) {
  556. /* this is an old key file; warn and then continue */
  557. old_keyfile_warning();
  558. old_fmt = true;
  559. } else if (0 == strncmp(header, "PuTTY-User-Key-File-", 20)) {
  560. /* this is a key file FROM THE FUTURE; refuse it, but with a
  561. * more specific error message than the generic one below */
  562. error = "PuTTY key format too new";
  563. goto error;
  564. } else {
  565. error = "not a PuTTY SSH-2 private key";
  566. goto error;
  567. }
  568. error = "file format error";
  569. if ((b = read_body(fp)) == NULL)
  570. goto error;
  571. /* Select key algorithm structure. */
  572. alg = find_pubkey_alg(b);
  573. if (!alg) {
  574. sfree(b);
  575. goto error;
  576. }
  577. sfree(b);
  578. /* Read the Encryption header line. */
  579. if (!read_header(fp, header) || 0 != strcmp(header, "Encryption"))
  580. goto error;
  581. if ((encryption = read_body(fp)) == NULL)
  582. goto error;
  583. if (!strcmp(encryption, "aes256-cbc")) {
  584. cipher = 1;
  585. cipherblk = 16;
  586. } else if (!strcmp(encryption, "none")) {
  587. cipher = 0;
  588. cipherblk = 1;
  589. } else {
  590. goto error;
  591. }
  592. /* Read the Comment header line. */
  593. if (!read_header(fp, header) || 0 != strcmp(header, "Comment"))
  594. goto error;
  595. if ((comment = read_body(fp)) == NULL)
  596. goto error;
  597. /* Read the Public-Lines header line and the public blob. */
  598. if (!read_header(fp, header) || 0 != strcmp(header, "Public-Lines"))
  599. goto error;
  600. if ((b = read_body(fp)) == NULL)
  601. goto error;
  602. i = atoi(b);
  603. sfree(b);
  604. public_blob = strbuf_new();
  605. if (!read_blob(fp, i, BinarySink_UPCAST(public_blob)))
  606. goto error;
  607. /* Read the Private-Lines header line and the Private blob. */
  608. if (!read_header(fp, header) || 0 != strcmp(header, "Private-Lines"))
  609. goto error;
  610. if ((b = read_body(fp)) == NULL)
  611. goto error;
  612. i = atoi(b);
  613. sfree(b);
  614. private_blob = strbuf_new();
  615. if (!read_blob(fp, i, BinarySink_UPCAST(private_blob)))
  616. goto error;
  617. /* Read the Private-MAC or Private-Hash header line. */
  618. if (!read_header(fp, header))
  619. goto error;
  620. if (0 == strcmp(header, "Private-MAC")) {
  621. if ((mac = read_body(fp)) == NULL)
  622. goto error;
  623. is_mac = true;
  624. } else if (0 == strcmp(header, "Private-Hash") && old_fmt) {
  625. if ((mac = read_body(fp)) == NULL)
  626. goto error;
  627. is_mac = false;
  628. } else
  629. goto error;
  630. fclose(fp);
  631. fp = NULL;
  632. /*
  633. * Decrypt the private blob.
  634. */
  635. if (cipher) {
  636. unsigned char key[40];
  637. SHA_State s;
  638. if (!passphrase)
  639. goto error;
  640. if (private_blob->len % cipherblk)
  641. goto error;
  642. SHA_Init(&s);
  643. put_uint32(&s, 0);
  644. put_data(&s, passphrase, passlen);
  645. SHA_Final(&s, key + 0);
  646. SHA_Init(&s);
  647. put_uint32(&s, 1);
  648. put_data(&s, passphrase, passlen);
  649. SHA_Final(&s, key + 20);
  650. aes256_decrypt_pubkey(key, private_blob->u, private_blob->len);
  651. }
  652. /*
  653. * Verify the MAC.
  654. */
  655. {
  656. char realmac[41];
  657. unsigned char binary[20];
  658. strbuf *macdata;
  659. bool free_macdata;
  660. if (old_fmt) {
  661. /* MAC (or hash) only covers the private blob. */
  662. macdata = private_blob;
  663. free_macdata = false;
  664. } else {
  665. macdata = strbuf_new();
  666. put_stringz(macdata, alg->ssh_id);
  667. put_stringz(macdata, encryption);
  668. put_stringz(macdata, comment);
  669. put_string(macdata, public_blob->s,
  670. public_blob->len);
  671. put_string(macdata, private_blob->s,
  672. private_blob->len);
  673. free_macdata = true;
  674. }
  675. if (is_mac) {
  676. SHA_State s;
  677. unsigned char mackey[20];
  678. char header[] = "putty-private-key-file-mac-key";
  679. SHA_Init(&s);
  680. put_data(&s, header, sizeof(header)-1);
  681. if (cipher && passphrase)
  682. put_data(&s, passphrase, passlen);
  683. SHA_Final(&s, mackey);
  684. hmac_sha1_simple(mackey, 20, macdata->s,
  685. macdata->len, binary);
  686. smemclr(mackey, sizeof(mackey));
  687. smemclr(&s, sizeof(s));
  688. } else {
  689. SHA_Simple(macdata->s, macdata->len, binary);
  690. }
  691. if (free_macdata)
  692. strbuf_free(macdata);
  693. for (i = 0; i < 20; i++)
  694. sprintf(realmac + 2 * i, "%02x", binary[i]);
  695. if (strcmp(mac, realmac)) {
  696. /* An incorrect MAC is an unconditional Error if the key is
  697. * unencrypted. Otherwise, it means Wrong Passphrase. */
  698. if (cipher) {
  699. error = "wrong passphrase";
  700. ret = SSH2_WRONG_PASSPHRASE;
  701. } else {
  702. error = "MAC failed";
  703. ret = NULL;
  704. }
  705. goto error;
  706. }
  707. }
  708. sfree(mac);
  709. mac = NULL;
  710. /*
  711. * Create and return the key.
  712. */
  713. ret = snew(ssh2_userkey);
  714. ret->comment = comment;
  715. ret->key = ssh_key_new_priv(
  716. alg, ptrlen_from_strbuf(public_blob),
  717. ptrlen_from_strbuf(private_blob));
  718. if (!ret->key) {
  719. sfree(ret);
  720. ret = NULL;
  721. error = "createkey failed";
  722. goto error;
  723. }
  724. strbuf_free(public_blob);
  725. strbuf_free(private_blob);
  726. sfree(encryption);
  727. if (errorstr)
  728. *errorstr = NULL;
  729. return ret;
  730. /*
  731. * Error processing.
  732. */
  733. error:
  734. if (fp)
  735. fclose(fp);
  736. if (comment)
  737. sfree(comment);
  738. if (encryption)
  739. sfree(encryption);
  740. if (mac)
  741. sfree(mac);
  742. if (public_blob)
  743. strbuf_free(public_blob);
  744. if (private_blob)
  745. strbuf_free(private_blob);
  746. if (errorstr)
  747. *errorstr = error;
  748. return ret;
  749. }
  750. bool rfc4716_loadpub(FILE *fp, char **algorithm,
  751. BinarySink *bs,
  752. char **commentptr, const char **errorstr)
  753. {
  754. const char *error;
  755. char *line, *colon, *value;
  756. char *comment = NULL;
  757. unsigned char *pubblob = NULL;
  758. int pubbloblen, pubblobsize;
  759. char base64in[4];
  760. unsigned char base64out[3];
  761. int base64bytes;
  762. int alglen;
  763. line = chomp(fgetline(fp));
  764. if (!line || 0 != strcmp(line, "---- BEGIN SSH2 PUBLIC KEY ----")) {
  765. error = "invalid begin line in SSH-2 public key file";
  766. goto error;
  767. }
  768. sfree(line); line = NULL;
  769. while (1) {
  770. line = chomp(fgetline(fp));
  771. if (!line) {
  772. error = "truncated SSH-2 public key file";
  773. goto error;
  774. }
  775. colon = strstr(line, ": ");
  776. if (!colon)
  777. break;
  778. *colon = '\0';
  779. value = colon + 2;
  780. if (!strcmp(line, "Comment")) {
  781. char *p, *q;
  782. /* Remove containing double quotes, if present */
  783. p = value;
  784. if (*p == '"' && p[strlen(p)-1] == '"') {
  785. p[strlen(p)-1] = '\0';
  786. p++;
  787. }
  788. /* Remove \-escaping, not in RFC4716 but seen in the wild
  789. * in practice. */
  790. for (q = line; *p; p++) {
  791. if (*p == '\\' && p[1])
  792. p++;
  793. *q++ = *p;
  794. }
  795. *q = '\0';
  796. sfree(comment); /* *just* in case of multiple Comment headers */
  797. comment = dupstr(line);
  798. } else if (!strcmp(line, "Subject") ||
  799. !strncmp(line, "x-", 2)) {
  800. /* Headers we recognise and ignore. Do nothing. */
  801. } else {
  802. error = "unrecognised header in SSH-2 public key file";
  803. goto error;
  804. }
  805. sfree(line); line = NULL;
  806. }
  807. /*
  808. * Now line contains the initial line of base64 data. Loop round
  809. * while it still does contain base64.
  810. */
  811. pubblobsize = 4096;
  812. pubblob = snewn(pubblobsize, unsigned char);
  813. pubbloblen = 0;
  814. base64bytes = 0;
  815. while (line && line[0] != '-') {
  816. char *p;
  817. for (p = line; *p; p++) {
  818. base64in[base64bytes++] = *p;
  819. if (base64bytes == 4) {
  820. int n = base64_decode_atom(base64in, base64out);
  821. if (pubbloblen + n > pubblobsize) {
  822. pubblobsize = (pubbloblen + n) * 5 / 4 + 1024;
  823. pubblob = sresize(pubblob, pubblobsize, unsigned char);
  824. }
  825. memcpy(pubblob + pubbloblen, base64out, n);
  826. pubbloblen += n;
  827. base64bytes = 0;
  828. }
  829. }
  830. sfree(line); line = NULL;
  831. line = chomp(fgetline(fp));
  832. }
  833. /*
  834. * Finally, check the END line makes sense.
  835. */
  836. if (!line || 0 != strcmp(line, "---- END SSH2 PUBLIC KEY ----")) {
  837. error = "invalid end line in SSH-2 public key file";
  838. goto error;
  839. }
  840. sfree(line); line = NULL;
  841. /*
  842. * OK, we now have a public blob and optionally a comment. We must
  843. * return the key algorithm string too, so look for that at the
  844. * start of the public blob.
  845. */
  846. if (pubbloblen < 4) {
  847. error = "not enough data in SSH-2 public key file";
  848. goto error;
  849. }
  850. alglen = toint(GET_32BIT(pubblob));
  851. if (alglen < 0 || alglen > pubbloblen-4) {
  852. error = "invalid algorithm prefix in SSH-2 public key file";
  853. goto error;
  854. }
  855. if (algorithm)
  856. *algorithm = dupprintf("%.*s", alglen, pubblob+4);
  857. if (commentptr)
  858. *commentptr = comment;
  859. else
  860. sfree(comment);
  861. put_data(bs, pubblob, pubbloblen);
  862. sfree(pubblob);
  863. return true;
  864. error:
  865. sfree(line);
  866. sfree(comment);
  867. sfree(pubblob);
  868. if (errorstr)
  869. *errorstr = error;
  870. return false;
  871. }
  872. bool openssh_loadpub(FILE *fp, char **algorithm,
  873. BinarySink *bs,
  874. char **commentptr, const char **errorstr)
  875. {
  876. const char *error;
  877. char *line, *base64;
  878. char *comment = NULL;
  879. unsigned char *pubblob = NULL;
  880. int pubbloblen, pubblobsize;
  881. int alglen;
  882. line = chomp(fgetline(fp));
  883. base64 = strchr(line, ' ');
  884. if (!base64) {
  885. error = "no key blob in OpenSSH public key file";
  886. goto error;
  887. }
  888. *base64++ = '\0';
  889. comment = strchr(base64, ' ');
  890. if (comment) {
  891. *comment++ = '\0';
  892. comment = dupstr(comment);
  893. }
  894. pubblobsize = strlen(base64) / 4 * 3;
  895. pubblob = snewn(pubblobsize, unsigned char);
  896. pubbloblen = 0;
  897. while (!memchr(base64, '\0', 4)) {
  898. assert(pubbloblen + 3 <= pubblobsize);
  899. pubbloblen += base64_decode_atom(base64, pubblob + pubbloblen);
  900. base64 += 4;
  901. }
  902. if (*base64) {
  903. error = "invalid length for base64 data in OpenSSH public key file";
  904. goto error;
  905. }
  906. /*
  907. * Sanity check: the first word on the line should be the key
  908. * algorithm, and should match the encoded string at the start of
  909. * the public blob.
  910. */
  911. alglen = strlen(line);
  912. if (pubbloblen < alglen + 4 ||
  913. GET_32BIT(pubblob) != alglen ||
  914. 0 != memcmp(pubblob + 4, line, alglen)) {
  915. error = "key algorithms do not match in OpenSSH public key file";
  916. goto error;
  917. }
  918. /*
  919. * Done.
  920. */
  921. if (algorithm)
  922. *algorithm = dupstr(line);
  923. if (commentptr)
  924. *commentptr = comment;
  925. else
  926. sfree(comment);
  927. sfree(line);
  928. put_data(bs, pubblob, pubbloblen);
  929. sfree(pubblob);
  930. return true;
  931. error:
  932. sfree(line);
  933. sfree(comment);
  934. sfree(pubblob);
  935. if (errorstr)
  936. *errorstr = error;
  937. return false;
  938. }
  939. bool ssh2_userkey_loadpub(const Filename *filename, char **algorithm,
  940. BinarySink *bs,
  941. char **commentptr, const char **errorstr)
  942. {
  943. FILE *fp;
  944. char header[40], *b;
  945. const ssh_keyalg *alg;
  946. int type, i;
  947. const char *error = NULL;
  948. char *comment = NULL;
  949. fp = f_open(filename, "rb", false);
  950. if (!fp) {
  951. error = "can't open file";
  952. goto error;
  953. }
  954. /* Initially, check if this is a public-only key file. Sometimes
  955. * we'll be asked to read a public blob from one of those. */
  956. type = key_type_fp(fp);
  957. if (type == SSH_KEYTYPE_SSH2_PUBLIC_RFC4716) {
  958. bool ret = rfc4716_loadpub(fp, algorithm, bs, commentptr, errorstr);
  959. fclose(fp);
  960. return ret;
  961. } else if (type == SSH_KEYTYPE_SSH2_PUBLIC_OPENSSH) {
  962. bool ret = openssh_loadpub(fp, algorithm, bs, commentptr, errorstr);
  963. fclose(fp);
  964. return ret;
  965. } else if (type != SSH_KEYTYPE_SSH2) {
  966. error = "not a PuTTY SSH-2 private key";
  967. goto error;
  968. }
  969. /* Read the first header line which contains the key type. */
  970. if (!read_header(fp, header)
  971. || (0 != strcmp(header, "PuTTY-User-Key-File-2") &&
  972. 0 != strcmp(header, "PuTTY-User-Key-File-1"))) {
  973. if (0 == strncmp(header, "PuTTY-User-Key-File-", 20))
  974. error = "PuTTY key format too new";
  975. else
  976. error = "not a PuTTY SSH-2 private key";
  977. goto error;
  978. }
  979. error = "file format error";
  980. if ((b = read_body(fp)) == NULL)
  981. goto error;
  982. /* Select key algorithm structure. */
  983. alg = find_pubkey_alg(b);
  984. sfree(b);
  985. if (!alg) {
  986. goto error;
  987. }
  988. /* Read the Encryption header line. */
  989. if (!read_header(fp, header) || 0 != strcmp(header, "Encryption"))
  990. goto error;
  991. if ((b = read_body(fp)) == NULL)
  992. goto error;
  993. sfree(b); /* we don't care */
  994. /* Read the Comment header line. */
  995. if (!read_header(fp, header) || 0 != strcmp(header, "Comment"))
  996. goto error;
  997. if ((comment = read_body(fp)) == NULL)
  998. goto error;
  999. if (commentptr)
  1000. *commentptr = comment;
  1001. else
  1002. sfree(comment);
  1003. /* Read the Public-Lines header line and the public blob. */
  1004. if (!read_header(fp, header) || 0 != strcmp(header, "Public-Lines"))
  1005. goto error;
  1006. if ((b = read_body(fp)) == NULL)
  1007. goto error;
  1008. i = atoi(b);
  1009. sfree(b);
  1010. if (!read_blob(fp, i, bs))
  1011. goto error;
  1012. fclose(fp);
  1013. if (algorithm)
  1014. *algorithm = dupstr(alg->ssh_id);
  1015. return true;
  1016. /*
  1017. * Error processing.
  1018. */
  1019. error:
  1020. if (fp)
  1021. fclose(fp);
  1022. if (errorstr)
  1023. *errorstr = error;
  1024. if (comment && commentptr) {
  1025. sfree(comment);
  1026. *commentptr = NULL;
  1027. }
  1028. return false;
  1029. }
  1030. bool ssh2_userkey_encrypted(const Filename *filename, char **commentptr)
  1031. {
  1032. FILE *fp;
  1033. char header[40], *b, *comment;
  1034. bool ret;
  1035. if (commentptr)
  1036. *commentptr = NULL;
  1037. fp = f_open(filename, "rb", false);
  1038. if (!fp)
  1039. return false;
  1040. if (!read_header(fp, header)
  1041. || (0 != strcmp(header, "PuTTY-User-Key-File-2") &&
  1042. 0 != strcmp(header, "PuTTY-User-Key-File-1"))) {
  1043. fclose(fp);
  1044. return false;
  1045. }
  1046. if ((b = read_body(fp)) == NULL) {
  1047. fclose(fp);
  1048. return false;
  1049. }
  1050. sfree(b); /* we don't care about key type here */
  1051. /* Read the Encryption header line. */
  1052. if (!read_header(fp, header) || 0 != strcmp(header, "Encryption")) {
  1053. fclose(fp);
  1054. return false;
  1055. }
  1056. if ((b = read_body(fp)) == NULL) {
  1057. fclose(fp);
  1058. return false;
  1059. }
  1060. /* Read the Comment header line. */
  1061. if (!read_header(fp, header) || 0 != strcmp(header, "Comment")) {
  1062. fclose(fp);
  1063. sfree(b);
  1064. return true;
  1065. }
  1066. if ((comment = read_body(fp)) == NULL) {
  1067. fclose(fp);
  1068. sfree(b);
  1069. return true;
  1070. }
  1071. if (commentptr)
  1072. *commentptr = comment;
  1073. else
  1074. sfree(comment);
  1075. fclose(fp);
  1076. if (!strcmp(b, "aes256-cbc"))
  1077. ret = true;
  1078. else
  1079. ret = false;
  1080. sfree(b);
  1081. return ret;
  1082. }
  1083. int base64_lines(int datalen)
  1084. {
  1085. /* When encoding, we use 64 chars/line, which equals 48 real chars. */
  1086. return (datalen + 47) / 48;
  1087. }
  1088. void base64_encode(FILE *fp, const unsigned char *data, int datalen, int cpl)
  1089. {
  1090. int linelen = 0;
  1091. char out[4];
  1092. int n, i;
  1093. while (datalen > 0) {
  1094. n = (datalen < 3 ? datalen : 3);
  1095. base64_encode_atom(data, n, out);
  1096. data += n;
  1097. datalen -= n;
  1098. for (i = 0; i < 4; i++) {
  1099. if (linelen >= cpl) {
  1100. linelen = 0;
  1101. fputc('\n', fp);
  1102. }
  1103. fputc(out[i], fp);
  1104. linelen++;
  1105. }
  1106. }
  1107. fputc('\n', fp);
  1108. }
  1109. bool ssh2_save_userkey(
  1110. const Filename *filename, ssh2_userkey *key, char *passphrase)
  1111. {
  1112. FILE *fp;
  1113. strbuf *pub_blob, *priv_blob;
  1114. unsigned char *priv_blob_encrypted;
  1115. int priv_encrypted_len;
  1116. int passlen;
  1117. int cipherblk;
  1118. int i;
  1119. const char *cipherstr;
  1120. unsigned char priv_mac[20];
  1121. /*
  1122. * Fetch the key component blobs.
  1123. */
  1124. pub_blob = strbuf_new();
  1125. ssh_key_public_blob(key->key, BinarySink_UPCAST(pub_blob));
  1126. priv_blob = strbuf_new();
  1127. ssh_key_private_blob(key->key, BinarySink_UPCAST(priv_blob));
  1128. /*
  1129. * Determine encryption details, and encrypt the private blob.
  1130. */
  1131. if (passphrase) {
  1132. cipherstr = "aes256-cbc";
  1133. cipherblk = 16;
  1134. } else {
  1135. cipherstr = "none";
  1136. cipherblk = 1;
  1137. }
  1138. priv_encrypted_len = priv_blob->len + cipherblk - 1;
  1139. priv_encrypted_len -= priv_encrypted_len % cipherblk;
  1140. priv_blob_encrypted = snewn(priv_encrypted_len, unsigned char);
  1141. memset(priv_blob_encrypted, 0, priv_encrypted_len);
  1142. memcpy(priv_blob_encrypted, priv_blob->u, priv_blob->len);
  1143. /* Create padding based on the SHA hash of the unpadded blob. This prevents
  1144. * too easy a known-plaintext attack on the last block. */
  1145. SHA_Simple(priv_blob->u, priv_blob->len, priv_mac);
  1146. assert(priv_encrypted_len - priv_blob->len < 20);
  1147. memcpy(priv_blob_encrypted + priv_blob->len, priv_mac,
  1148. priv_encrypted_len - priv_blob->len);
  1149. /* Now create the MAC. */
  1150. {
  1151. strbuf *macdata;
  1152. SHA_State s;
  1153. unsigned char mackey[20];
  1154. char header[] = "putty-private-key-file-mac-key";
  1155. macdata = strbuf_new();
  1156. put_stringz(macdata, ssh_key_ssh_id(key->key));
  1157. put_stringz(macdata, cipherstr);
  1158. put_stringz(macdata, key->comment);
  1159. put_string(macdata, pub_blob->s, pub_blob->len);
  1160. put_string(macdata, priv_blob_encrypted, priv_encrypted_len);
  1161. SHA_Init(&s);
  1162. put_data(&s, header, sizeof(header)-1);
  1163. if (passphrase)
  1164. put_data(&s, passphrase, strlen(passphrase));
  1165. SHA_Final(&s, mackey);
  1166. hmac_sha1_simple(mackey, 20, macdata->s,
  1167. macdata->len, priv_mac);
  1168. strbuf_free(macdata);
  1169. smemclr(mackey, sizeof(mackey));
  1170. smemclr(&s, sizeof(s));
  1171. }
  1172. if (passphrase) {
  1173. unsigned char key[40];
  1174. SHA_State s;
  1175. passlen = strlen(passphrase);
  1176. SHA_Init(&s);
  1177. put_uint32(&s, 0);
  1178. put_data(&s, passphrase, passlen);
  1179. SHA_Final(&s, key + 0);
  1180. SHA_Init(&s);
  1181. put_uint32(&s, 1);
  1182. put_data(&s, passphrase, passlen);
  1183. SHA_Final(&s, key + 20);
  1184. aes256_encrypt_pubkey(key, priv_blob_encrypted,
  1185. priv_encrypted_len);
  1186. smemclr(key, sizeof(key));
  1187. smemclr(&s, sizeof(s));
  1188. }
  1189. fp = f_open(filename, "w", true);
  1190. if (!fp) {
  1191. strbuf_free(pub_blob);
  1192. strbuf_free(priv_blob);
  1193. smemclr(priv_blob_encrypted, priv_encrypted_len);
  1194. sfree(priv_blob_encrypted);
  1195. return false;
  1196. }
  1197. fprintf(fp, "PuTTY-User-Key-File-2: %s\n", ssh_key_ssh_id(key->key));
  1198. fprintf(fp, "Encryption: %s\n", cipherstr);
  1199. fprintf(fp, "Comment: %s\n", key->comment);
  1200. fprintf(fp, "Public-Lines: %d\n", base64_lines(pub_blob->len));
  1201. base64_encode(fp, pub_blob->u, pub_blob->len, 64);
  1202. fprintf(fp, "Private-Lines: %d\n", base64_lines(priv_encrypted_len));
  1203. base64_encode(fp, priv_blob_encrypted, priv_encrypted_len, 64);
  1204. fprintf(fp, "Private-MAC: ");
  1205. for (i = 0; i < 20; i++)
  1206. fprintf(fp, "%02x", priv_mac[i]);
  1207. fprintf(fp, "\n");
  1208. fclose(fp);
  1209. strbuf_free(pub_blob);
  1210. strbuf_free(priv_blob);
  1211. smemclr(priv_blob_encrypted, priv_encrypted_len);
  1212. sfree(priv_blob_encrypted);
  1213. return true;
  1214. }
  1215. /* ----------------------------------------------------------------------
  1216. * Output public keys.
  1217. */
  1218. char *ssh1_pubkey_str(RSAKey *key)
  1219. {
  1220. char *buffer;
  1221. char *dec1, *dec2;
  1222. dec1 = mp_get_decimal(key->exponent);
  1223. dec2 = mp_get_decimal(key->modulus);
  1224. buffer = dupprintf("%zd %s %s%s%s", mp_get_nbits(key->modulus), dec1, dec2,
  1225. key->comment ? " " : "",
  1226. key->comment ? key->comment : "");
  1227. sfree(dec1);
  1228. sfree(dec2);
  1229. return buffer;
  1230. }
  1231. void ssh1_write_pubkey(FILE *fp, RSAKey *key)
  1232. {
  1233. char *buffer = ssh1_pubkey_str(key);
  1234. fprintf(fp, "%s\n", buffer);
  1235. sfree(buffer);
  1236. }
  1237. static char *ssh2_pubkey_openssh_str_internal(const char *comment,
  1238. const void *v_pub_blob,
  1239. int pub_len)
  1240. {
  1241. const unsigned char *ssh2blob = (const unsigned char *)v_pub_blob;
  1242. ptrlen alg;
  1243. char *buffer, *p;
  1244. int i;
  1245. {
  1246. BinarySource src[1];
  1247. BinarySource_BARE_INIT(src, ssh2blob, pub_len);
  1248. alg = get_string(src);
  1249. if (get_err(src)) {
  1250. const char *replacement_str = "INVALID-ALGORITHM";
  1251. alg.ptr = replacement_str;
  1252. alg.len = strlen(replacement_str);
  1253. }
  1254. }
  1255. buffer = snewn(alg.len +
  1256. 4 * ((pub_len+2) / 3) +
  1257. (comment ? strlen(comment) : 0) + 3, char);
  1258. p = buffer + sprintf(buffer, "%.*s ", PTRLEN_PRINTF(alg));
  1259. i = 0;
  1260. while (i < pub_len) {
  1261. int n = (pub_len - i < 3 ? pub_len - i : 3);
  1262. base64_encode_atom(ssh2blob + i, n, p);
  1263. i += n;
  1264. p += 4;
  1265. }
  1266. if (comment) {
  1267. *p++ = ' ';
  1268. strcpy(p, comment);
  1269. } else
  1270. *p++ = '\0';
  1271. return buffer;
  1272. }
  1273. char *ssh2_pubkey_openssh_str(ssh2_userkey *key)
  1274. {
  1275. strbuf *blob;
  1276. char *ret;
  1277. blob = strbuf_new();
  1278. ssh_key_public_blob(key->key, BinarySink_UPCAST(blob));
  1279. ret = ssh2_pubkey_openssh_str_internal(
  1280. key->comment, blob->s, blob->len);
  1281. strbuf_free(blob);
  1282. return ret;
  1283. }
  1284. void ssh2_write_pubkey(FILE *fp, const char *comment,
  1285. const void *v_pub_blob, int pub_len,
  1286. int keytype)
  1287. {
  1288. unsigned char *pub_blob = (unsigned char *)v_pub_blob;
  1289. if (keytype == SSH_KEYTYPE_SSH2_PUBLIC_RFC4716) {
  1290. const char *p;
  1291. int i, column;
  1292. fprintf(fp, "---- BEGIN SSH2 PUBLIC KEY ----\n");
  1293. if (comment) {
  1294. fprintf(fp, "Comment: \"");
  1295. for (p = comment; *p; p++) {
  1296. if (*p == '\\' || *p == '\"')
  1297. fputc('\\', fp);
  1298. fputc(*p, fp);
  1299. }
  1300. fprintf(fp, "\"\n");
  1301. }
  1302. i = 0;
  1303. column = 0;
  1304. while (i < pub_len) {
  1305. char buf[5];
  1306. int n = (pub_len - i < 3 ? pub_len - i : 3);
  1307. base64_encode_atom(pub_blob + i, n, buf);
  1308. i += n;
  1309. buf[4] = '\0';
  1310. fputs(buf, fp);
  1311. if (++column >= 16) {
  1312. fputc('\n', fp);
  1313. column = 0;
  1314. }
  1315. }
  1316. if (column > 0)
  1317. fputc('\n', fp);
  1318. fprintf(fp, "---- END SSH2 PUBLIC KEY ----\n");
  1319. } else if (keytype == SSH_KEYTYPE_SSH2_PUBLIC_OPENSSH) {
  1320. char *buffer = ssh2_pubkey_openssh_str_internal(comment,
  1321. v_pub_blob, pub_len);
  1322. fprintf(fp, "%s\n", buffer);
  1323. sfree(buffer);
  1324. } else {
  1325. unreachable("Bad key type in ssh2_write_pubkey");
  1326. }
  1327. }
  1328. /* ----------------------------------------------------------------------
  1329. * Utility functions to compute SSH-2 fingerprints in a uniform way.
  1330. */
  1331. char *ssh2_fingerprint_blob(const void *blob, int bloblen)
  1332. {
  1333. unsigned char digest[16];
  1334. char fingerprint_str[16*3];
  1335. ptrlen algname;
  1336. const ssh_keyalg *alg;
  1337. int i;
  1338. BinarySource src[1];
  1339. /*
  1340. * The fingerprint hash itself is always just the MD5 of the blob.
  1341. */
  1342. MD5Simple(blob, bloblen, digest);
  1343. for (i = 0; i < 16; i++)
  1344. sprintf(fingerprint_str + i*3, "%02x%s", digest[i], i==15 ? "" : ":");
  1345. /*
  1346. * Identify the key algorithm, if possible.
  1347. */
  1348. BinarySource_BARE_INIT(src, blob, bloblen);
  1349. algname = get_string(src);
  1350. if (!get_err(src)) {
  1351. alg = find_pubkey_alg_len(algname);
  1352. if (alg) {
  1353. int bits = ssh_key_public_bits(alg, make_ptrlen(blob, bloblen));
  1354. return dupprintf("%.*s %d %s", PTRLEN_PRINTF(algname),
  1355. bits, fingerprint_str);
  1356. } else {
  1357. return dupprintf("%.*s %s", PTRLEN_PRINTF(algname),
  1358. fingerprint_str);
  1359. }
  1360. } else {
  1361. /*
  1362. * No algorithm available (which means a seriously confused
  1363. * key blob, but there we go). Return only the hash.
  1364. */
  1365. return dupstr(fingerprint_str);
  1366. }
  1367. }
  1368. char *ssh2_fingerprint(ssh_key *data)
  1369. {
  1370. strbuf *blob = strbuf_new();
  1371. ssh_key_public_blob(data, BinarySink_UPCAST(blob));
  1372. char *ret = ssh2_fingerprint_blob(blob->s, blob->len);
  1373. strbuf_free(blob);
  1374. return ret;
  1375. }
  1376. /* ----------------------------------------------------------------------
  1377. * Determine the type of a private key file.
  1378. */
  1379. static int key_type_fp(FILE *fp)
  1380. {
  1381. char buf[1024];
  1382. const char public_std_sig[] = "---- BEGIN SSH2 PUBLIC KEY";
  1383. const char putty2_sig[] = "PuTTY-User-Key-File-";
  1384. const char sshcom_sig[] = "---- BEGIN SSH2 ENCRYPTED PRIVAT";
  1385. const char openssh_new_sig[] = "-----BEGIN OPENSSH PRIVATE KEY";
  1386. const char openssh_sig[] = "-----BEGIN ";
  1387. int i;
  1388. char *p;
  1389. i = fread(buf, 1, sizeof(buf)-1, fp);
  1390. rewind(fp);
  1391. if (i < 0)
  1392. return SSH_KEYTYPE_UNOPENABLE;
  1393. if (i < 32)
  1394. return SSH_KEYTYPE_UNKNOWN;
  1395. assert(i > 0 && i < sizeof(buf));
  1396. buf[i] = '\0';
  1397. if (!memcmp(buf, rsa_signature, sizeof(rsa_signature)-1))
  1398. return SSH_KEYTYPE_SSH1;
  1399. if (!memcmp(buf, public_std_sig, sizeof(public_std_sig)-1))
  1400. return SSH_KEYTYPE_SSH2_PUBLIC_RFC4716;
  1401. if (!memcmp(buf, putty2_sig, sizeof(putty2_sig)-1))
  1402. return SSH_KEYTYPE_SSH2;
  1403. if (!memcmp(buf, openssh_new_sig, sizeof(openssh_new_sig)-1))
  1404. return SSH_KEYTYPE_OPENSSH_NEW;
  1405. if (!memcmp(buf, openssh_sig, sizeof(openssh_sig)-1))
  1406. return SSH_KEYTYPE_OPENSSH_PEM;
  1407. if (!memcmp(buf, sshcom_sig, sizeof(sshcom_sig)-1))
  1408. return SSH_KEYTYPE_SSHCOM;
  1409. if ((p = buf + strspn(buf, "0123456789"), *p == ' ') &&
  1410. (p = p+1 + strspn(p+1, "0123456789"), *p == ' ') &&
  1411. (p = p+1 + strspn(p+1, "0123456789"), *p == ' ' || *p == '\n' || !*p))
  1412. return SSH_KEYTYPE_SSH1_PUBLIC;
  1413. if ((p = buf + strcspn(buf, " "),
  1414. find_pubkey_alg_len(make_ptrlen(buf, p-buf))) &&
  1415. (p = p+1 + strspn(p+1, "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghij"
  1416. "klmnopqrstuvwxyz+/="),
  1417. *p == ' ' || *p == '\n' || !*p))
  1418. return SSH_KEYTYPE_SSH2_PUBLIC_OPENSSH;
  1419. return SSH_KEYTYPE_UNKNOWN; /* unrecognised or EOF */
  1420. }
  1421. int key_type(const Filename *filename)
  1422. {
  1423. FILE *fp;
  1424. int ret;
  1425. fp = f_open(filename, "r", false);
  1426. if (!fp)
  1427. return SSH_KEYTYPE_UNOPENABLE;
  1428. ret = key_type_fp(fp);
  1429. fclose(fp);
  1430. return ret;
  1431. }
  1432. /*
  1433. * Convert the type word to a string, for `wrong type' error
  1434. * messages.
  1435. */
  1436. const char *key_type_to_str(int type)
  1437. {
  1438. switch (type) {
  1439. case SSH_KEYTYPE_UNOPENABLE: return "unable to open file"; break;
  1440. case SSH_KEYTYPE_UNKNOWN: return "not a recognised key file format"; break;
  1441. case SSH_KEYTYPE_SSH1_PUBLIC: return "SSH-1 public key"; break;
  1442. case SSH_KEYTYPE_SSH2_PUBLIC_RFC4716: return "SSH-2 public key (RFC 4716 format)"; break;
  1443. case SSH_KEYTYPE_SSH2_PUBLIC_OPENSSH: return "SSH-2 public key (OpenSSH format)"; break;
  1444. case SSH_KEYTYPE_SSH1: return "SSH-1 private key"; break;
  1445. case SSH_KEYTYPE_SSH2: return "PuTTY SSH-2 private key"; break;
  1446. case SSH_KEYTYPE_OPENSSH_PEM: return "OpenSSH SSH-2 private key (old PEM format)"; break;
  1447. case SSH_KEYTYPE_OPENSSH_NEW: return "OpenSSH SSH-2 private key (new format)"; break;
  1448. case SSH_KEYTYPE_SSHCOM: return "ssh.com SSH-2 private key"; break;
  1449. /*
  1450. * This function is called with a key type derived from
  1451. * looking at an actual key file, so the output-only type
  1452. * OPENSSH_AUTO should never get here, and is much an INTERNAL
  1453. * ERROR as a code we don't even understand.
  1454. */
  1455. case SSH_KEYTYPE_OPENSSH_AUTO: return "INTERNAL ERROR (OPENSSH_AUTO)"; break;
  1456. default: return "INTERNAL ERROR"; break;
  1457. }
  1458. }