mirror of https://gitee.com/openkylin/gnupg2.git
355 lines
9.6 KiB
C
355 lines
9.6 KiB
C
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/* ssh-utils.c - Secure Shell helper functions
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* Copyright (C) 2011 Free Software Foundation, Inc.
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*
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* This file is part of GnuPG.
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*
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* This file is free software; you can redistribute it and/or modify
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* it under the terms of either
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*
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* - the GNU Lesser General Public License as published by the Free
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* Software Foundation; either version 3 of the License, or (at
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* your option) any later version.
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*
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* or
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*
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* - the GNU General Public License as published by the Free
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* Software Foundation; either version 2 of the License, or (at
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* your option) any later version.
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*
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* or both in parallel, as here.
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*
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* This file is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, see <https://www.gnu.org/licenses/>.
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*/
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#include <config.h>
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#include <stdlib.h>
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#include <errno.h>
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#include <ctype.h>
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#include <assert.h>
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#include "util.h"
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#include "ssh-utils.h"
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/* Return true if KEYPARMS holds an EdDSA key. */
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static int
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is_eddsa (gcry_sexp_t keyparms)
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{
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int result = 0;
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gcry_sexp_t list;
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const char *s;
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size_t n;
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int i;
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list = gcry_sexp_find_token (keyparms, "flags", 0);
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for (i = list ? gcry_sexp_length (list)-1 : 0; i > 0; i--)
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{
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s = gcry_sexp_nth_data (list, i, &n);
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if (!s)
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continue; /* Not a data element. */
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if (n == 5 && !memcmp (s, "eddsa", 5))
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{
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result = 1;
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break;
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}
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}
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gcry_sexp_release (list);
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return result;
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}
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/* Dummy functions for es_mopen. */
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static void *dummy_realloc (void *mem, size_t size) { (void) size; return mem; }
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static void dummy_free (void *mem) { (void) mem; }
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/* Return the Secure Shell type fingerprint for KEY using digest ALGO.
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The length of the fingerprint is returned at R_LEN and the
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fingerprint itself at R_FPR. In case of a error code is returned
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and NULL stored at R_FPR. */
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static gpg_error_t
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get_fingerprint (gcry_sexp_t key, int algo,
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void **r_fpr, size_t *r_len, int as_string)
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{
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gpg_error_t err;
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gcry_sexp_t list = NULL;
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gcry_sexp_t l2 = NULL;
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const char *s;
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char *name = NULL;
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int idx;
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const char *elems;
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gcry_md_hd_t md = NULL;
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int blobmode = 0;
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*r_fpr = NULL;
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*r_len = 0;
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/* Check that the first element is valid. */
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list = gcry_sexp_find_token (key, "public-key", 0);
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if (!list)
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list = gcry_sexp_find_token (key, "private-key", 0);
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if (!list)
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list = gcry_sexp_find_token (key, "protected-private-key", 0);
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if (!list)
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list = gcry_sexp_find_token (key, "shadowed-private-key", 0);
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if (!list)
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{
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err = gpg_err_make (default_errsource, GPG_ERR_UNKNOWN_SEXP);
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goto leave;
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}
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l2 = gcry_sexp_cadr (list);
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gcry_sexp_release (list);
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list = l2;
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l2 = NULL;
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name = gcry_sexp_nth_string (list, 0);
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if (!name)
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{
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err = gpg_err_make (default_errsource, GPG_ERR_INV_SEXP);
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goto leave;
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}
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err = gcry_md_open (&md, algo, 0);
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if (err)
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goto leave;
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switch (gcry_pk_map_name (name))
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{
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case GCRY_PK_RSA:
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elems = "en";
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gcry_md_write (md, "\0\0\0\x07ssh-rsa", 11);
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break;
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case GCRY_PK_DSA:
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elems = "pqgy";
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gcry_md_write (md, "\0\0\0\x07ssh-dss", 11);
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break;
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case GCRY_PK_ECC:
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if (is_eddsa (list))
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{
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elems = "q";
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blobmode = 1;
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/* For now there is just one curve, thus no need to switch
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on it. */
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gcry_md_write (md, "\0\0\0\x0b" "ssh-ed25519", 15);
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}
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else
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{
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/* We only support the 3 standard curves for now. It is
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just a quick hack. */
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elems = "q";
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gcry_md_write (md, "\0\0\0\x13" "ecdsa-sha2-nistp", 20);
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l2 = gcry_sexp_find_token (list, "curve", 0);
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if (!l2)
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elems = "";
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else
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{
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gcry_free (name);
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name = gcry_sexp_nth_string (l2, 1);
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gcry_sexp_release (l2);
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l2 = NULL;
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if (!name)
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elems = "";
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else if (!strcmp (name, "NIST P-256")||!strcmp (name, "nistp256"))
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gcry_md_write (md, "256\0\0\0\x08nistp256", 15);
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else if (!strcmp (name, "NIST P-384")||!strcmp (name, "nistp384"))
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gcry_md_write (md, "384\0\0\0\x08nistp384", 15);
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else if (!strcmp (name, "NIST P-521")||!strcmp (name, "nistp521"))
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gcry_md_write (md, "521\0\0\0\x08nistp521", 15);
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else
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elems = "";
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}
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if (!*elems)
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err = gpg_err_make (default_errsource, GPG_ERR_UNKNOWN_CURVE);
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}
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break;
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default:
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elems = "";
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err = gpg_err_make (default_errsource, GPG_ERR_PUBKEY_ALGO);
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break;
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}
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if (err)
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goto leave;
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for (idx = 0, s = elems; *s; s++, idx++)
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{
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l2 = gcry_sexp_find_token (list, s, 1);
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if (!l2)
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{
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err = gpg_err_make (default_errsource, GPG_ERR_INV_SEXP);
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goto leave;
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}
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if (blobmode)
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{
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const char *blob;
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size_t bloblen;
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unsigned char lenbuf[4];
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blob = gcry_sexp_nth_data (l2, 1, &bloblen);
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if (!blob)
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{
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err = gpg_err_make (default_errsource, GPG_ERR_INV_SEXP);
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goto leave;
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}
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blob++;
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bloblen--;
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lenbuf[0] = bloblen >> 24;
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lenbuf[1] = bloblen >> 16;
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lenbuf[2] = bloblen >> 8;
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lenbuf[3] = bloblen;
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gcry_md_write (md, lenbuf, 4);
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gcry_md_write (md, blob, bloblen);
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}
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else
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{
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gcry_mpi_t a;
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unsigned char *buf;
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size_t buflen;
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a = gcry_sexp_nth_mpi (l2, 1, GCRYMPI_FMT_USG);
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gcry_sexp_release (l2);
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l2 = NULL;
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if (!a)
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{
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err = gpg_err_make (default_errsource, GPG_ERR_INV_SEXP);
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goto leave;
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}
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err = gcry_mpi_aprint (GCRYMPI_FMT_SSH, &buf, &buflen, a);
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gcry_mpi_release (a);
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if (err)
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goto leave;
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gcry_md_write (md, buf, buflen);
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gcry_free (buf);
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}
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}
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if (as_string)
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{
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const char *algo_name;
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char *fpr;
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/* Prefix string with the algorithm name and a colon. */
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algo_name = gcry_md_algo_name (algo);
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*r_fpr = xtrymalloc (strlen (algo_name) + 1 + 3 * gcry_md_get_algo_dlen (algo) + 1);
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if (*r_fpr == NULL)
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{
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err = gpg_err_make (default_errsource, gpg_err_code_from_syserror ());
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goto leave;
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}
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memcpy (*r_fpr, algo_name, strlen (algo_name));
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fpr = (char *) *r_fpr + strlen (algo_name);
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*fpr++ = ':';
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if (algo == GCRY_MD_MD5)
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{
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bin2hexcolon (gcry_md_read (md, algo), gcry_md_get_algo_dlen (algo), fpr);
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strlwr (fpr);
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}
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else
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{
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struct b64state b64s;
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estream_t stream;
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char *p;
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long int len;
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/* Write the base64-encoded hash to fpr. */
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stream = es_mopen (fpr, 3 * gcry_md_get_algo_dlen (algo) + 1, 0,
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0, dummy_realloc, dummy_free, "w");
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if (stream == NULL)
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{
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err = gpg_err_make (default_errsource, gpg_err_code_from_syserror ());
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goto leave;
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}
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err = b64enc_start_es (&b64s, stream, "");
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if (err)
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{
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es_fclose (stream);
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goto leave;
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}
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err = b64enc_write (&b64s,
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gcry_md_read (md, algo), gcry_md_get_algo_dlen (algo));
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if (err)
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{
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es_fclose (stream);
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goto leave;
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}
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/* Finish, get the length, and close the stream. */
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err = b64enc_finish (&b64s);
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len = es_ftell (stream);
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es_fclose (stream);
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if (err)
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goto leave;
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/* Terminate. */
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fpr[len] = 0;
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/* Strip the trailing padding characters. */
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for (p = fpr + len - 1; p > fpr && *p == '='; p--)
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*p = 0;
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}
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*r_len = strlen (*r_fpr) + 1;
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}
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else
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{
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*r_len = gcry_md_get_algo_dlen (algo);
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*r_fpr = xtrymalloc (*r_len);
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if (!*r_fpr)
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{
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err = gpg_err_make (default_errsource, gpg_err_code_from_syserror ());
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goto leave;
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}
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memcpy (*r_fpr, gcry_md_read (md, algo), *r_len);
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}
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err = 0;
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leave:
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gcry_free (name);
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gcry_sexp_release (l2);
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gcry_md_close (md);
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gcry_sexp_release (list);
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return err;
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}
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/* Return the Secure Shell type fingerprint for KEY using digest ALGO.
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The length of the fingerprint is returned at R_LEN and the
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fingerprint itself at R_FPR. In case of an error an error code is
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returned and NULL stored at R_FPR. */
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gpg_error_t
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ssh_get_fingerprint (gcry_sexp_t key, int algo,
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void **r_fpr, size_t *r_len)
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{
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return get_fingerprint (key, algo, r_fpr, r_len, 0);
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}
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/* Return the Secure Shell type fingerprint for KEY using digest ALGO
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as a string. The fingerprint is mallcoed and stored at R_FPRSTR.
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In case of an error an error code is returned and NULL stored at
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R_FPRSTR. */
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gpg_error_t
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ssh_get_fingerprint_string (gcry_sexp_t key, int algo, char **r_fprstr)
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{
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gpg_error_t err;
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size_t dummy;
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void *string;
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err = get_fingerprint (key, algo, &string, &dummy, 1);
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*r_fprstr = string;
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return err;
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}
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