419adf41af
* src/engine-gpg.c (gpg_encrypt, gpg_encrypt_sign, gpg_sign): Pass file name set in data with --directory option to gpgtar. * tests/run-encrypt.c (show_usage): New option --directory. (main): Parse new option. Set file name of input data to option value. * tests/run-sign.c (show_usage): New option --directory. (main): Parse new option. Set file name of input data to option value. -- GnuPG-bug-id: 6342
441 lines
12 KiB
C
441 lines
12 KiB
C
/* run-encrypt.c - Helper to perform an encrypt operation
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* Copyright (C) 2016 g10 Code GmbH
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*
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* This file is part of GPGME.
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*
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* GPGME is free software; you can redistribute it and/or modify it
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* under the terms of the GNU Lesser General Public License as
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* published by the Free Software Foundation; either version 2.1 of
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* the License, or (at your option) any later version.
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*
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* GPGME is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this program; if not, see <https://gnu.org/licenses/>.
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* SPDX-License-Identifier: LGPL-2.1-or-later
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*/
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/* We need to include config.h so that we know whether we are building
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with large file system (LFS) support. */
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <gpgme.h>
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#define PGM "run-encrypt"
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#include "run-support.h"
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static int verbose;
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static char *
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xstrdup (const char *string)
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{
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char *p = strdup (string);
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if (!p)
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{
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fprintf (stderr, "strdup failed\n");
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exit (2);
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}
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return p;
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}
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static gpg_error_t
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status_cb (void *opaque, const char *keyword, const char *value)
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{
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(void)opaque;
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fprintf (stderr, "status_cb: %s %s\n", nonnull(keyword), nonnull(value));
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return 0;
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}
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static void
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progress_cb (void *opaque, const char *what, int type, int current, int total)
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{
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(void)opaque;
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(void)type;
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if (total)
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fprintf (stderr, "progress for '%s' %u%% (%d of %d)\n",
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nonnull (what),
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(unsigned)(((double)current / total) * 100), current, total);
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else
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fprintf (stderr, "progress for '%s' %d\n", nonnull(what), current);
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fflush (stderr);
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}
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static void
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print_encrypt_result (gpgme_encrypt_result_t result)
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{
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gpgme_invalid_key_t invkey;
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printf ("\nEncryption results\n");
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for (invkey = result->invalid_recipients; invkey; invkey = invkey->next)
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printf ("Encryption key `%s' not used: %s <%s>\n",
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nonnull (invkey->fpr),
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gpg_strerror (invkey->reason), gpg_strsource (invkey->reason));
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}
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static void
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print_sign_result (gpgme_sign_result_t result)
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{
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gpgme_invalid_key_t invkey;
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gpgme_new_signature_t sig;
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printf ("\nSigning results\n");
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for (invkey = result->invalid_signers; invkey; invkey = invkey->next)
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printf ("Signing key `%s' not used: %s <%s>\n",
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nonnull (invkey->fpr),
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gpg_strerror (invkey->reason), gpg_strsource (invkey->reason));
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for (sig = result->signatures; sig; sig = sig->next)
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{
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printf ("Key fingerprint: %s\n", nonnull (sig->fpr));
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printf ("Signature type : %d\n", sig->type);
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printf ("Public key algo: %d\n", sig->pubkey_algo);
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printf ("Hash algo .....: %d\n", sig->hash_algo);
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printf ("Creation time .: %ld\n", sig->timestamp);
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printf ("Sig class .....: 0x%u\n", sig->sig_class);
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}
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}
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static int
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show_usage (int ex)
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{
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fputs ("usage: " PGM " [options] FILE\n\n"
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"Options:\n"
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" --verbose run in verbose mode\n"
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" --sign sign data before encryption\n"
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" --status print status lines from the backend\n"
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" --progress print progress info\n"
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" --openpgp use the OpenPGP protocol (default)\n"
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" --cms use the CMS protocol\n"
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" --uiserver use the UI server\n"
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" --loopback use a loopback pinentry\n"
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" --key NAME encrypt to key NAME\n"
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" --keystring NAMES encrypt to ';' delimited NAMES\n"
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" --throw-keyids use this option\n"
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" --no-symkey-cache disable the use of that cache\n"
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" --wrap assume input is valid OpenPGP message\n"
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" --symmetric encrypt symmetric (OpenPGP only)\n"
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" --archive encrypt given file or directory into an archive\n"
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" --directory DIR switch to directory DIR before encrypting into an archive\n"
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" --diagnostics print diagnostics\n"
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, stderr);
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exit (ex);
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}
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int
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main (int argc, char **argv)
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{
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int last_argc = -1;
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gpgme_error_t err;
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gpgme_ctx_t ctx;
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gpgme_protocol_t protocol = GPGME_PROTOCOL_OpenPGP;
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gpgme_data_t in, out;
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gpgme_encrypt_result_t encrypt_result;
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gpgme_sign_result_t sign_result;
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int print_status = 0;
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int print_progress = 0;
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int use_loopback = 0;
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char *keyargs[10];
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gpgme_key_t keys[10+1];
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int keycount = 0;
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char *keystring = NULL;
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const char *directory = NULL;
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int i;
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gpgme_encrypt_flags_t flags = GPGME_ENCRYPT_ALWAYS_TRUST;
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gpgme_off_t offset;
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int no_symkey_cache = 0;
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int diagnostics = 0;
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int sign = 0;
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if (argc)
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{ argc--; argv++; }
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if (DIM(keys) != DIM(keyargs)+1)
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abort ();
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while (argc && last_argc != argc )
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{
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last_argc = argc;
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if (!strcmp (*argv, "--"))
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{
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argc--; argv++;
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break;
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}
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else if (!strcmp (*argv, "--help"))
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show_usage (0);
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else if (!strcmp (*argv, "--verbose"))
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{
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verbose = 1;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--sign"))
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{
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sign = 1;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--status"))
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{
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print_status = 1;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--progress"))
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{
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print_progress = 1;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--openpgp"))
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{
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protocol = GPGME_PROTOCOL_OpenPGP;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--cms"))
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{
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protocol = GPGME_PROTOCOL_CMS;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--uiserver"))
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{
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protocol = GPGME_PROTOCOL_UISERVER;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--key"))
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{
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argc--; argv++;
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if (!argc)
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show_usage (1);
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if (keycount == DIM (keyargs))
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show_usage (1);
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keyargs[keycount++] = *argv;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--keystring"))
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{
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argc--; argv++;
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if (!argc)
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show_usage (1);
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keystring = xstrdup (*argv);
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for (i=0; keystring[i]; i++)
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if (keystring[i] == ';')
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keystring[i] = '\n';
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--throw-keyids"))
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{
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flags |= GPGME_ENCRYPT_THROW_KEYIDS;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--wrap"))
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{
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flags |= GPGME_ENCRYPT_WRAP;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--loopback"))
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{
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use_loopback = 1;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--symmetric"))
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{
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flags |= GPGME_ENCRYPT_SYMMETRIC;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--no-symkey-cache"))
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{
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no_symkey_cache = 1;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--archive"))
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{
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flags |= GPGME_ENCRYPT_ARCHIVE;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--directory"))
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{
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argc--; argv++;
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if (!argc)
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show_usage (1);
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directory = *argv;
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argc--; argv++;
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}
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else if (!strcmp (*argv, "--diagnostics"))
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{
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diagnostics = 1;
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argc--; argv++;
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}
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else if (!strncmp (*argv, "--", 2))
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show_usage (1);
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}
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if (argc != 1)
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show_usage (1);
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init_gpgme (protocol);
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err = gpgme_new (&ctx);
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fail_if_err (err);
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gpgme_set_protocol (ctx, protocol);
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gpgme_set_armor (ctx, 1);
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if (print_status)
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{
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gpgme_set_status_cb (ctx, status_cb, NULL);
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gpgme_set_ctx_flag (ctx, "full-status", "1");
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}
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if (print_progress)
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gpgme_set_progress_cb (ctx, progress_cb, NULL);
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if (use_loopback)
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{
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gpgme_set_pinentry_mode (ctx, GPGME_PINENTRY_MODE_LOOPBACK);
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gpgme_set_passphrase_cb (ctx, passphrase_cb, NULL);
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}
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if (no_symkey_cache)
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{
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err = gpgme_set_ctx_flag (ctx, "no-symkey-cache", "1");
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if (err)
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{
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fprintf (stderr, PGM ": error setting no-symkey-cache: %s\n",
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gpgme_strerror (err));
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exit (1);
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}
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}
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for (i=0; i < keycount; i++)
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{
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err = gpgme_get_key (ctx, keyargs[i], &keys[i], 0);
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fail_if_err (err);
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}
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keys[i] = NULL;
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if (flags & GPGME_ENCRYPT_ARCHIVE)
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{
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const char *path = *argv;
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err = gpgme_data_new_from_mem (&in, path, strlen (path), 0);
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fail_if_err (err);
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if (directory)
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{
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err = gpgme_data_set_file_name (in, directory);
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fail_if_err (err);
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}
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}
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else
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{
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err = gpgme_data_new_from_file (&in, *argv, 1);
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if (err)
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{
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fprintf (stderr, PGM ": error reading `%s': %s\n",
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*argv, gpg_strerror (err));
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exit (1);
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}
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offset = gpgme_data_seek (in, 0, SEEK_END);
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if (offset == (gpgme_off_t)(-1))
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{
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err = gpg_error_from_syserror ();
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fprintf (stderr, PGM ": error seeking `%s': %s\n",
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*argv, gpg_strerror (err));
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exit (1);
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}
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if (gpgme_data_seek (in, 0, SEEK_SET) == (gpgme_off_t)(-1))
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{
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err = gpg_error_from_syserror ();
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fprintf (stderr, PGM ": error seeking `%s': %s\n",
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*argv, gpg_strerror (err));
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exit (1);
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}
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{
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char numbuf[50];
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char *p;
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p = numbuf + sizeof numbuf;
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*--p = 0;
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do
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{
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*--p = '0' + (offset % 10);
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offset /= 10;
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}
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while (offset);
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err = gpgme_data_set_flag (in, "size-hint", p);
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if (err)
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{
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fprintf (stderr, PGM ": error setting size-hint for `%s': %s\n",
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*argv, gpg_strerror (err));
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exit (1);
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}
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}
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}
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err = gpgme_data_new (&out);
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fail_if_err (err);
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if (sign)
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err = gpgme_op_encrypt_sign_ext (ctx, keycount ? keys : NULL, keystring,
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flags, in, out);
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else
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err = gpgme_op_encrypt_ext (ctx, keycount ? keys : NULL, keystring,
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flags, in, out);
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if (diagnostics)
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{
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gpgme_data_t diag;
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gpgme_error_t diag_err;
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gpgme_data_new (&diag);
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diag_err = gpgme_op_getauditlog (ctx, diag, GPGME_AUDITLOG_DIAG);
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if (diag_err)
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{
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fprintf (stderr, PGM ": getting diagnostics failed: %s\n",
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gpgme_strerror (diag_err));
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}
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else
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{
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fputs ("Begin Diagnostics:\n", stdout);
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print_data (diag);
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fputs ("End Diagnostics.\n", stdout);
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}
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gpgme_data_release (diag);
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}
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sign_result = gpgme_op_sign_result (ctx);
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if (sign_result)
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print_sign_result (sign_result);
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encrypt_result = gpgme_op_encrypt_result (ctx);
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if (encrypt_result)
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print_encrypt_result (encrypt_result);
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if (err)
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{
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fprintf (stderr, PGM ": encrypting failed: %s\n", gpg_strerror (err));
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exit (1);
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}
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fputs ("Begin Output:\n", stdout);
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print_data (out);
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fputs ("End Output.\n", stdout);
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gpgme_data_release (out);
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gpgme_data_release (in);
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for (i=0; i < keycount; i++)
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gpgme_key_unref (keys[i]);
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gpgme_release (ctx);
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free (keystring);
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return 0;
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}
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