8d91c0f4cd
-- Signed-off-by: Werner Koch <wk@gnupg.org>
367 lines
11 KiB
C
367 lines
11 KiB
C
/* t-verify.c - Regression test.
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* Copyright (C) 2000 Werner Koch (dd9jn)
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* Copyright (C) 2001, 2002, 2003, 2004 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 "t-verify"
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#include "t-support.h"
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static const char test_text1[] = "Just GNU it!\n";
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static const char test_text1f[]= "Just GNU it?\n";
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static const char test_sig1[] =
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"-----BEGIN PGP SIGNATURE-----\n"
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"\n"
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"iN0EABECAJ0FAjoS+i9FFIAAAAAAAwA5YmFyw7bDpMO8w58gZGFzIHdhcmVuIFVt\n"
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"bGF1dGUgdW5kIGpldHp0IGVpbiBwcm96ZW50JS1aZWljaGVuNRSAAAAAAAgAJGZv\n"
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"b2Jhci4xdGhpcyBpcyBhIG5vdGF0aW9uIGRhdGEgd2l0aCAyIGxpbmVzGhpodHRw\n"
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"Oi8vd3d3Lmd1Lm9yZy9wb2xpY3kvAAoJEC1yfMdoaXc0JBIAoIiLlUsvpMDOyGEc\n"
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"dADGKXF/Hcb+AKCJWPphZCphduxSvrzH0hgzHdeQaA==\n"
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"=nts1\n"
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"-----END PGP SIGNATURE-----\n";
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/* The same as test_sig1 but with a second signature for which we do
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* not have the public key (deleted after signature creation). */
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static const char test_sig1_plus_unknown_key[] =
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"-----BEGIN PGP SIGNATURE-----\n"
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"\n"
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"iN0EABECAJ0FAjoS+i9FFIAAAAAAAwA5YmFyw7bDpMO8w58gZGFzIHdhcmVuIFVt\n"
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"bGF1dGUgdW5kIGpldHp0IGVpbiBwcm96ZW50JS1aZWljaGVuNRSAAAAAAAgAJGZv\n"
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"b2Jhci4xdGhpcyBpcyBhIG5vdGF0aW9uIGRhdGEgd2l0aCAyIGxpbmVzGhpodHRw\n"
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"Oi8vd3d3Lmd1Lm9yZy9wb2xpY3kvAAoJEC1yfMdoaXc0JBIAoIiLlUsvpMDOyGEc\n"
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"dADGKXF/Hcb+AKCJWPphZCphduxSvrzH0hgzHdeQaIh1BAAWCAAdFiEENuwqcMZC\n"
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"brD85btN+RyY8EnUIEwFAlrPR4cACgkQ+RyY8EnUIEyiuAEAm41LJTGUFDzhavRm\n"
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"jNwqUZxGGOySduW+u/X1lEfV+MYA/2lJOo75rHtD1EG+tkFVWt4Ukj0rjhR132vZ\n"
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"IOtrYAcG\n"
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"=yYwZ\n"
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"-----END PGP SIGNATURE-----\n";
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static const char test_sig2[] =
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"-----BEGIN PGP MESSAGE-----\n"
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"\n"
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"owGbwMvMwCSoW1RzPCOz3IRxjXQSR0lqcYleSUWJTZOvjVdpcYmCu1+oQmaJIleH\n"
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"GwuDIBMDGysTSIqBi1MApi+nlGGuwDeHao53HBr+FoVGP3xX+kvuu9fCMJvl6IOf\n"
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"y1kvP4y+8D5a11ang0udywsA\n"
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"=Crq6\n"
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"-----END PGP MESSAGE-----\n";
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/* A message with a prepended but unsigned plaintext packet. */
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static const char double_plaintext_sig[] =
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"-----BEGIN PGP MESSAGE-----\n"
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"\n"
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"rDRiCmZvb2Jhci50eHRF4pxNVGhpcyBpcyBteSBzbmVha3kgcGxhaW50ZXh0IG1l\n"
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"c3NhZ2UKowGbwMvMwCSoW1RzPCOz3IRxTWISa6JebnG666MFD1wzSzJSixQ81XMV\n"
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"UlITUxTyixRyKxXKE0uSMxQyEosVikvyCwpSU/S4FNCArq6Ce1F+aXJGvoJvYlGF\n"
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"erFCTmJxiUJ5flFKMVeHGwuDIBMDGysTyA4GLk4BmO036xgWzMgzt9V85jCtfDFn\n"
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"UqVooWlGXHwNw/xg/fVzt9VNbtjtJ/fhUqYo0/LyCGEA\n"
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"=6+AK\n"
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"-----END PGP MESSAGE-----\n";
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/* NO_OF_SIGS is the expected number of signatures. SKIP_SKIPS is
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* which of these signatures to check (0 based). */
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static void
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check_result (gpgme_verify_result_t result, int no_of_sigs, int skip_sigs,
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unsigned int summary, const char *fpr,
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gpgme_error_t status, int notation)
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{
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gpgme_signature_t sig;
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int n;
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sig = result->signatures;
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for (n=0; sig; sig = sig->next)
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n++;
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if (n != no_of_sigs)
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{
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fprintf (stderr, "%s:%i: Unexpected number of signatures"
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" (got %d expected %d)\n", PGM, __LINE__, n, no_of_sigs);
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exit (1);
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}
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if (skip_sigs >= n)
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{
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fprintf (stderr, "%s:%i: oops SKIPP_SIGS to high\n", PGM, __LINE__);
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exit (1);
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}
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for (n=0, sig = result->signatures; n < skip_sigs; sig = sig->next, n++)
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;
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if (sig->summary != summary)
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{
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fprintf (stderr, "%s:%i:sig-%d: Unexpected signature summary: "
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"want=0x%x have=0x%x\n",
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PGM, __LINE__, skip_sigs, summary, sig->summary);
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exit (1);
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}
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if (strcmp (sig->fpr, fpr))
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{
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if (strlen (sig->fpr) == 16 && strlen (fpr) == 40
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&& !strncmp (sig->fpr, fpr + 24, 16))
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; /* okay because gnupg < 2.2.6 only shows the keyid. */
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else
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{
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fprintf (stderr, "%s:%i:sig-%d: Unexpected fingerprint: %s\n",
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PGM, __LINE__, skip_sigs, sig->fpr);
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exit (1);
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}
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}
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if (gpgme_err_code (sig->status) != status)
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{
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fprintf (stderr, "%s:%i:sig-%d: Unexpected signature status: %s\n",
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PGM, __LINE__, skip_sigs, gpgme_strerror (sig->status));
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exit (1);
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}
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if (notation)
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{
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static struct {
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const char *name;
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const char *value;
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int seen;
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} expected_notations[] = {
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{ "bar",
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"\xc3\xb6\xc3\xa4\xc3\xbc\xc3\x9f"
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" das waren Umlaute und jetzt ein prozent%-Zeichen" },
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{ "foobar.1",
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"this is a notation data with 2 lines" },
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{ NULL,
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"http://www.gu.org/policy/" }
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};
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int i;
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gpgme_sig_notation_t r;
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for (i=0; i < DIM(expected_notations); i++ )
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expected_notations[i].seen = 0;
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for (r = sig->notations; r; r = r->next)
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{
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int any = 0;
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for (i=0; i < DIM(expected_notations); i++)
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{
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if ( ((r->name && expected_notations[i].name
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&& !strcmp (r->name, expected_notations[i].name)
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&& r->name_len
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== strlen (expected_notations[i].name))
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|| (!r->name && !expected_notations[i].name
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&& r->name_len == 0))
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&& r->value
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&& !strcmp (r->value, expected_notations[i].value)
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&& r->value_len == strlen (expected_notations[i].value))
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{
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expected_notations[i].seen++;
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any++;
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}
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}
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if (!any)
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{
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fprintf (stderr, "%s:%i:sig-%d: Unexpected notation data\n",
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PGM, __LINE__, skip_sigs);
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exit (1);
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}
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}
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for (i=0; i < DIM(expected_notations); i++ )
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{
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if (expected_notations[i].seen != 1)
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{
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fprintf (stderr, "%s:%i:sig-%d: "
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"Missing or duplicate notation data\n",
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PGM, __LINE__, skip_sigs);
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exit (1);
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}
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}
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}
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if (sig->wrong_key_usage)
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{
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fprintf (stderr, "%s:%i:sig-%d: Unexpectedly wrong key usage\n",
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PGM, __LINE__, skip_sigs);
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exit (1);
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}
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if (sig->validity != GPGME_VALIDITY_UNKNOWN)
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{
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fprintf (stderr, "%s:%i:sig-%d: Unexpected validity: %i\n",
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PGM, __LINE__, skip_sigs, sig->validity);
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exit (1);
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}
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if (gpgme_err_code (sig->validity_reason) != GPG_ERR_NO_ERROR)
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{
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fprintf (stderr, "%s:%i:sig-%d: Unexpected validity reason: %s\n",
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PGM, __LINE__, skip_sigs,
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gpgme_strerror (sig->validity_reason));
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exit (1);
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}
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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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gpgme_ctx_t ctx;
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gpgme_error_t err;
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gpgme_data_t sig, text;
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gpgme_verify_result_t result;
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const char *s;
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(void)argc;
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(void)argv;
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init_gpgme (GPGME_PROTOCOL_OpenPGP);
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err = gpgme_new (&ctx);
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fail_if_err (err);
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/* Checking a valid message. */
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err = gpgme_data_new_from_mem (&text, test_text1, strlen (test_text1), 0);
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fail_if_err (err);
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err = gpgme_data_new_from_mem (&sig, test_sig1, strlen (test_sig1), 0);
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fail_if_err (err);
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err = gpgme_op_verify (ctx, sig, text, NULL);
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fail_if_err (err);
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result = gpgme_op_verify_result (ctx);
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check_result (result, 1, 0, 0, "A0FF4590BB6122EDEF6E3C542D727CC768697734",
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GPG_ERR_NO_ERROR, 1);
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/* Checking a manipulated message. */
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gpgme_data_release (text);
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err = gpgme_data_new_from_mem (&text, test_text1f, strlen (test_text1f), 0);
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fail_if_err (err);
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gpgme_data_seek (sig, 0, SEEK_SET);
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err = gpgme_op_verify (ctx, sig, text, NULL);
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fail_if_err (err);
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result = gpgme_op_verify_result (ctx);
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check_result (result, 1, 0, GPGME_SIGSUM_RED, "2D727CC768697734",
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GPG_ERR_BAD_SIGNATURE, 0);
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/* Checking a valid message. Bu that one has a second signature
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* made by an unknown key. */
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gpgme_data_release (text);
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gpgme_data_release (sig);
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err = gpgme_data_new_from_mem (&text, test_text1, strlen (test_text1), 0);
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fail_if_err (err);
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err = gpgme_data_new_from_mem (&sig, test_sig1_plus_unknown_key,
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strlen (test_sig1_plus_unknown_key), 0);
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fail_if_err (err);
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err = gpgme_op_verify (ctx, sig, text, NULL);
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fail_if_err (err);
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result = gpgme_op_verify_result (ctx);
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check_result (result, 2, 0, 0,
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"A0FF4590BB6122EDEF6E3C542D727CC768697734",
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GPG_ERR_NO_ERROR, 1);
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check_result (result, 2, 1, GPGME_SIGSUM_KEY_MISSING,
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"36EC2A70C6426EB0FCE5BB4DF91C98F049D4204C",
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GPG_ERR_NO_PUBKEY, 0);
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/* Checking a normal signature. */
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gpgme_data_release (sig);
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gpgme_data_release (text);
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err = gpgme_data_new_from_mem (&sig, test_sig2, strlen (test_sig2), 0);
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fail_if_err (err);
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err = gpgme_data_new (&text);
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fail_if_err (err);
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err = gpgme_op_verify (ctx, sig, NULL, text);
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fail_if_err (err);
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result = gpgme_op_verify_result (ctx);
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check_result (result, 1, 0, 0, "A0FF4590BB6122EDEF6E3C542D727CC768697734",
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GPG_ERR_NO_ERROR, 0);
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/* Checking an invalid message. */
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gpgme_data_release (sig);
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gpgme_data_release (text);
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err = gpgme_data_new_from_mem (&sig, double_plaintext_sig,
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strlen (double_plaintext_sig), 0);
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fail_if_err (err);
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err = gpgme_data_new (&text);
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fail_if_err (err);
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err = gpgme_op_verify (ctx, sig, NULL, text);
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if (gpgme_err_code (err) != GPG_ERR_BAD_DATA)
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{
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fprintf (stderr, "%s:%i: Double plaintext message not detected\n",
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PGM, __LINE__);
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exit (1);
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}
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/* Checking that set/get_sernder works. */
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err = gpgme_set_sender (ctx, "foo@example.org");
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fail_if_err (err);
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s = gpgme_get_sender (ctx);
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if (!s || strcmp (s, "foo@example.org"))
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{
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fprintf (stderr, "%s:%i: gpgme_{set,get}_sender mismatch\n",
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PGM, __LINE__);
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exit (1);
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}
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err = gpgme_set_sender (ctx, "<bar@example.org>");
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fail_if_err (err);
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s = gpgme_get_sender (ctx);
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if (!s || strcmp (s, "bar@example.org"))
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{
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fprintf (stderr, "%s:%i: gpgme_{set,get}_sender mismatch\n",
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PGM, __LINE__);
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exit (1);
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}
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err = gpgme_set_sender (ctx, "Foo bar (comment) <foo@example.org>");
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fail_if_err (err);
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s = gpgme_get_sender (ctx);
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if (!s || strcmp (s, "foo@example.org"))
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{
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fprintf (stderr, "%s:%i: gpgme_{set,get}_sender mismatch\n",
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PGM, __LINE__);
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exit (1);
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}
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err = gpgme_set_sender (ctx, "foo");
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if (gpgme_err_code (err) != GPG_ERR_INV_VALUE)
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{
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fprintf (stderr, "%s:%i: gpgme_set_sender didn't detect bogus address\n",
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PGM, __LINE__);
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exit (1);
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}
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/* (the former address should still be there.) */
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s = gpgme_get_sender (ctx);
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if (!s || strcmp (s, "foo@example.org"))
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{
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fprintf (stderr, "%s:%i: gpgme_{set,get}_sender mismatch\n",
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PGM, __LINE__);
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exit (1);
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}
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gpgme_data_release (sig);
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gpgme_data_release (text);
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gpgme_release (ctx);
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return 0;
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}
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