0afa8e065e
git-subtree-dir: contrib/libfido2 git-subtree-mainline: d586c978b9b4216869e589daa5bbcc33225a0e35 git-subtree-split: a58dee945a5da64d0e97f35a508928e0d17c9cc7
193 lines
4.4 KiB
C
193 lines
4.4 KiB
C
/*
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* Copyright (c) 2018 Yubico AB. All rights reserved.
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* Use of this source code is governed by a BSD-style
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* license that can be found in the LICENSE file.
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*/
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#include <fido.h>
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#include <fido/es256.h>
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#include <fido/rs256.h>
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#include <fido/eddsa.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#ifdef HAVE_UNISTD_H
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#include <unistd.h>
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#endif
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#include "../openbsd-compat/openbsd-compat.h"
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#include "extern.h"
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static fido_assert_t *
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prepare_assert(FILE *in_f, int flags)
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{
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fido_assert_t *assert = NULL;
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struct blob cdh;
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struct blob authdata;
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struct blob sig;
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char *rpid = NULL;
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int r;
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memset(&cdh, 0, sizeof(cdh));
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memset(&authdata, 0, sizeof(authdata));
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memset(&sig, 0, sizeof(sig));
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r = base64_read(in_f, &cdh);
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r |= string_read(in_f, &rpid);
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r |= base64_read(in_f, &authdata);
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r |= base64_read(in_f, &sig);
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if (r < 0)
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errx(1, "input error");
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if (flags & FLAG_DEBUG) {
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fprintf(stderr, "client data hash:\n");
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xxd(cdh.ptr, cdh.len);
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fprintf(stderr, "relying party id: %s\n", rpid);
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fprintf(stderr, "authenticator data:\n");
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xxd(authdata.ptr, authdata.len);
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fprintf(stderr, "signature:\n");
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xxd(sig.ptr, sig.len);
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}
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if ((assert = fido_assert_new()) == NULL)
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errx(1, "fido_assert_new");
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if ((r = fido_assert_set_count(assert, 1)) != FIDO_OK)
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errx(1, "fido_assert_count: %s", fido_strerr(r));
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if ((r = fido_assert_set_clientdata_hash(assert, cdh.ptr,
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cdh.len)) != FIDO_OK ||
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(r = fido_assert_set_rp(assert, rpid)) != FIDO_OK ||
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(r = fido_assert_set_authdata(assert, 0, authdata.ptr,
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authdata.len)) != FIDO_OK ||
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(r = fido_assert_set_sig(assert, 0, sig.ptr, sig.len)) != FIDO_OK)
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errx(1, "fido_assert_set: %s", fido_strerr(r));
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if (flags & FLAG_UP) {
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if ((r = fido_assert_set_up(assert, FIDO_OPT_TRUE)) != FIDO_OK)
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errx(1, "fido_assert_set_up: %s", fido_strerr(r));
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}
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if (flags & FLAG_UV) {
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if ((r = fido_assert_set_uv(assert, FIDO_OPT_TRUE)) != FIDO_OK)
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errx(1, "fido_assert_set_uv: %s", fido_strerr(r));
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}
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if (flags & FLAG_HMAC) {
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if ((r = fido_assert_set_extensions(assert,
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FIDO_EXT_HMAC_SECRET)) != FIDO_OK)
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errx(1, "fido_assert_set_extensions: %s",
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fido_strerr(r));
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}
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free(cdh.ptr);
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free(authdata.ptr);
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free(sig.ptr);
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free(rpid);
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return (assert);
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}
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static void *
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load_pubkey(int type, const char *file)
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{
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EC_KEY *ec = NULL;
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RSA *rsa = NULL;
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EVP_PKEY *eddsa = NULL;
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es256_pk_t *es256_pk = NULL;
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rs256_pk_t *rs256_pk = NULL;
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eddsa_pk_t *eddsa_pk = NULL;
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void *pk = NULL;
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if (type == COSE_ES256) {
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if ((ec = read_ec_pubkey(file)) == NULL)
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errx(1, "read_ec_pubkey");
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if ((es256_pk = es256_pk_new()) == NULL)
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errx(1, "es256_pk_new");
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if (es256_pk_from_EC_KEY(es256_pk, ec) != FIDO_OK)
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errx(1, "es256_pk_from_EC_KEY");
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pk = es256_pk;
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EC_KEY_free(ec);
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} else if (type == COSE_RS256) {
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if ((rsa = read_rsa_pubkey(file)) == NULL)
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errx(1, "read_rsa_pubkey");
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if ((rs256_pk = rs256_pk_new()) == NULL)
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errx(1, "rs256_pk_new");
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if (rs256_pk_from_RSA(rs256_pk, rsa) != FIDO_OK)
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errx(1, "rs256_pk_from_RSA");
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pk = rs256_pk;
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RSA_free(rsa);
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} else if (type == COSE_EDDSA) {
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if ((eddsa = read_eddsa_pubkey(file)) == NULL)
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errx(1, "read_eddsa_pubkey");
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if ((eddsa_pk = eddsa_pk_new()) == NULL)
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errx(1, "eddsa_pk_new");
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if (eddsa_pk_from_EVP_PKEY(eddsa_pk, eddsa) != FIDO_OK)
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errx(1, "eddsa_pk_from_EVP_PKEY");
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pk = eddsa_pk;
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EVP_PKEY_free(eddsa);
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}
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return (pk);
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}
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int
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assert_verify(int argc, char **argv)
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{
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fido_assert_t *assert = NULL;
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void *pk = NULL;
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char *in_path = NULL;
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FILE *in_f = NULL;
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int type = COSE_ES256;
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int flags = 0;
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int ch;
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int r;
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while ((ch = getopt(argc, argv, "dhi:pv")) != -1) {
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switch (ch) {
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case 'd':
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flags |= FLAG_DEBUG;
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break;
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case 'h':
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flags |= FLAG_HMAC;
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break;
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case 'i':
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in_path = optarg;
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break;
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case 'p':
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flags |= FLAG_UP;
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break;
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case 'v':
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flags |= FLAG_UV;
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break;
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default:
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usage();
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}
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}
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argc -= optind;
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argv += optind;
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if (argc < 1 || argc > 2)
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usage();
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in_f = open_read(in_path);
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if (argc > 1 && cose_type(argv[1], &type) < 0)
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errx(1, "unknown type %s", argv[1]);
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fido_init((flags & FLAG_DEBUG) ? FIDO_DEBUG : 0);
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pk = load_pubkey(type, argv[0]);
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assert = prepare_assert(in_f, flags);
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if ((r = fido_assert_verify(assert, 0, type, pk)) != FIDO_OK)
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errx(1, "fido_assert_verify: %s", fido_strerr(r));
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fido_assert_free(&assert);
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fclose(in_f);
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in_f = NULL;
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exit(0);
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}
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