572 lines
13 KiB
C
572 lines
13 KiB
C
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/* $OpenBSD: pkeyutl.c,v 1.20 2023/07/23 11:39:29 tb Exp $ */
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/* Written by Dr Stephen N Henson (steve@openssl.org) for the OpenSSL
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* project 2006.
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*/
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/* ====================================================================
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* Copyright (c) 2006 The OpenSSL Project. All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in
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* the documentation and/or other materials provided with the
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* distribution.
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*
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* 3. All advertising materials mentioning features or use of this
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* software must display the following acknowledgment:
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* "This product includes software developed by the OpenSSL Project
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* for use in the OpenSSL Toolkit. (http://www.OpenSSL.org/)"
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*
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* 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
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* endorse or promote products derived from this software without
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* prior written permission. For written permission, please contact
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* licensing@OpenSSL.org.
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*
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* 5. Products derived from this software may not be called "OpenSSL"
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* nor may "OpenSSL" appear in their names without prior written
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* permission of the OpenSSL Project.
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*
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* 6. Redistributions of any form whatsoever must retain the following
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* acknowledgment:
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* "This product includes software developed by the OpenSSL Project
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* for use in the OpenSSL Toolkit (http://www.OpenSSL.org/)"
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*
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* THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
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* EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE OpenSSL PROJECT OR
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* ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
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* STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
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* OF THE POSSIBILITY OF SUCH DAMAGE.
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* ====================================================================
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*
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* This product includes cryptographic software written by Eric Young
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* (eay@cryptsoft.com). This product includes software written by Tim
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* Hudson (tjh@cryptsoft.com).
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*
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*/
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#include <string.h>
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#include "apps.h"
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#include <openssl/err.h>
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#include <openssl/evp.h>
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#include <openssl/pem.h>
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#define KEY_PRIVKEY 1
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#define KEY_PUBKEY 2
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#define KEY_CERT 3
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static struct {
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int asn1parse;
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EVP_PKEY_CTX *ctx;
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int hexdump;
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char *infile;
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int key_type;
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int keyform;
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int keysize;
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char *outfile;
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char *passargin;
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int peerform;
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int pkey_op;
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int rev;
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char *sigfile;
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} cfg;
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static void pkeyutl_usage(void);
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static int init_ctx(char *keyfile);
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static int setup_peer(char *file);
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static int pkeyutl_pkeyopt(char *pkeyopt);
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static int do_keyop(EVP_PKEY_CTX * ctx, int pkey_op,
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unsigned char *out, size_t * poutlen,
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unsigned char *in, size_t inlen);
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static const struct option pkeyutl_options[] = {
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{
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.name = "asn1parse",
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.desc = "ASN.1 parse the output data",
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.type = OPTION_FLAG,
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.opt.flag = &cfg.asn1parse,
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},
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{
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.name = "certin",
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.desc = "Input is a certificate containing a public key",
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.type = OPTION_VALUE,
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.value = KEY_CERT,
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.opt.value = &cfg.key_type,
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},
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{
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.name = "decrypt",
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.desc = "Decrypt the input data using a private key",
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.type = OPTION_VALUE,
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.value = EVP_PKEY_OP_DECRYPT,
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.opt.value = &cfg.pkey_op,
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},
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{
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.name = "derive",
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.desc = "Derive a shared secret using the peer key",
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.type = OPTION_VALUE,
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.value = EVP_PKEY_OP_DERIVE,
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.opt.value = &cfg.pkey_op,
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},
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{
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.name = "encrypt",
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.desc = "Encrypt the input data using a public key",
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.type = OPTION_VALUE,
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.value = EVP_PKEY_OP_ENCRYPT,
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.opt.value = &cfg.pkey_op,
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},
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{
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.name = "hexdump",
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.desc = "Hex dump the output data",
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.type = OPTION_FLAG,
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.opt.flag = &cfg.hexdump,
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},
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{
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.name = "in",
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.argname = "file",
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.desc = "Input file (default stdin)",
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.type = OPTION_ARG,
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.opt.arg = &cfg.infile,
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},
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{
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.name = "inkey",
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.argname = "file",
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.desc = "Input key file",
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.type = OPTION_ARG_FUNC,
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.opt.argfunc = init_ctx,
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},
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{
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.name = "keyform",
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.argname = "fmt",
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.desc = "Input key format (DER or PEM (default))",
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.type = OPTION_ARG_FORMAT,
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.opt.value = &cfg.keyform,
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},
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{
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.name = "out",
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.argname = "file",
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.desc = "Output file (default stdout)",
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.type = OPTION_ARG,
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.opt.arg = &cfg.outfile,
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},
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{
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.name = "passin",
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.argname = "arg",
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.desc = "Key password source",
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.type = OPTION_ARG,
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.opt.arg = &cfg.passargin,
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},
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{
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.name = "peerform",
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.argname = "fmt",
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.desc = "Input key format (DER or PEM (default))",
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.type = OPTION_ARG_FORMAT,
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.opt.value = &cfg.peerform,
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},
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{
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.name = "peerkey",
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.argname = "file",
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.desc = "Peer key file",
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.type = OPTION_ARG_FUNC,
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.opt.argfunc = setup_peer,
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},
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{
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.name = "pkeyopt",
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.argname = "opt:value",
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.desc = "Public key options",
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.type = OPTION_ARG_FUNC,
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.opt.argfunc = pkeyutl_pkeyopt,
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},
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{
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.name = "pubin",
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.desc = "Input is a public key",
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.type = OPTION_VALUE,
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.value = KEY_PUBKEY,
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.opt.value = &cfg.key_type,
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},
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{
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.name = "rev",
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.desc = "Reverse the input data",
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.type = OPTION_FLAG,
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.opt.flag = &cfg.rev,
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},
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{
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.name = "sigfile",
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.argname = "file",
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.desc = "Signature file (verify operation only)",
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.type = OPTION_ARG,
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.opt.arg = &cfg.sigfile,
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},
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{
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.name = "sign",
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.desc = "Sign the input data using private key",
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.type = OPTION_VALUE,
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.value = EVP_PKEY_OP_SIGN,
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.opt.value = &cfg.pkey_op,
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},
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{
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.name = "verify",
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.desc = "Verify the input data using public key",
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.type = OPTION_VALUE,
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.value = EVP_PKEY_OP_VERIFY,
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.opt.value = &cfg.pkey_op,
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},
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{
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.name = "verifyrecover",
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.desc = "Verify with public key, recover original data",
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.type = OPTION_VALUE,
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.value = EVP_PKEY_OP_VERIFYRECOVER,
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.opt.value = &cfg.pkey_op,
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},
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{NULL},
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};
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static void
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pkeyutl_usage(void)
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{
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fprintf(stderr,
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"usage: pkeyutl [-asn1parse] [-certin] [-decrypt] [-derive] "
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"[-encrypt]\n"
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" [-hexdump] [-in file] [-inkey file] [-keyform fmt]\n"
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" [-out file] [-passin arg] [-peerform fmt]\n"
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" [-peerkey file] [-pkeyopt opt:value] [-pubin] [-rev]\n"
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" [-sigfile file] [-sign] [-verify] [-verifyrecover]\n\n");
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options_usage(pkeyutl_options);
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fprintf(stderr, "\n");
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}
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int
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pkeyutl_main(int argc, char **argv)
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{
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BIO *in = NULL, *out = NULL;
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unsigned char *buf_in = NULL, *buf_out = NULL, *sig = NULL;
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size_t buf_outlen = 0;
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int buf_inlen = 0, siglen = -1;
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int ret = 1, rv = -1;
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if (pledge("stdio cpath wpath rpath tty", NULL) == -1) {
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perror("pledge");
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exit(1);
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}
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memset(&cfg, 0, sizeof(cfg));
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cfg.pkey_op = EVP_PKEY_OP_SIGN;
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cfg.key_type = KEY_PRIVKEY;
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cfg.keyform = FORMAT_PEM;
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cfg.peerform = FORMAT_PEM;
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cfg.keysize = -1;
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if (options_parse(argc, argv, pkeyutl_options, NULL, NULL) != 0) {
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pkeyutl_usage();
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goto end;
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}
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if (!cfg.ctx) {
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pkeyutl_usage();
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goto end;
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}
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if (cfg.sigfile &&
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(cfg.pkey_op != EVP_PKEY_OP_VERIFY)) {
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BIO_puts(bio_err, "Signature file specified for non verify\n");
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goto end;
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}
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if (!cfg.sigfile &&
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(cfg.pkey_op == EVP_PKEY_OP_VERIFY)) {
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BIO_puts(bio_err, "No signature file specified for verify\n");
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goto end;
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}
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if (cfg.pkey_op != EVP_PKEY_OP_DERIVE) {
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if (cfg.infile) {
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if (!(in = BIO_new_file(cfg.infile, "rb"))) {
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BIO_puts(bio_err,
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"Error Opening Input File\n");
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ERR_print_errors(bio_err);
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goto end;
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}
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} else
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in = BIO_new_fp(stdin, BIO_NOCLOSE);
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}
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if (cfg.outfile) {
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if (!(out = BIO_new_file(cfg.outfile, "wb"))) {
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BIO_printf(bio_err, "Error Creating Output File\n");
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ERR_print_errors(bio_err);
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goto end;
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}
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} else {
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out = BIO_new_fp(stdout, BIO_NOCLOSE);
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}
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if (cfg.sigfile) {
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BIO *sigbio = BIO_new_file(cfg.sigfile, "rb");
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if (!sigbio) {
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BIO_printf(bio_err, "Can't open signature file %s\n",
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cfg.sigfile);
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goto end;
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}
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siglen = bio_to_mem(&sig, cfg.keysize * 10, sigbio);
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BIO_free(sigbio);
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if (siglen <= 0) {
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BIO_printf(bio_err, "Error reading signature data\n");
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goto end;
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}
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}
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if (in) {
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/* Read the input data */
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buf_inlen = bio_to_mem(&buf_in, cfg.keysize * 10, in);
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if (buf_inlen <= 0) {
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BIO_printf(bio_err, "Error reading input Data\n");
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exit(1);
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}
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if (cfg.rev) {
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size_t i;
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unsigned char ctmp;
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size_t l = (size_t) buf_inlen;
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for (i = 0; i < l / 2; i++) {
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ctmp = buf_in[i];
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buf_in[i] = buf_in[l - 1 - i];
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buf_in[l - 1 - i] = ctmp;
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}
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}
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}
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if (cfg.pkey_op == EVP_PKEY_OP_VERIFY) {
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rv = EVP_PKEY_verify(cfg.ctx, sig, (size_t) siglen,
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buf_in, (size_t) buf_inlen);
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if (rv == 1) {
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BIO_puts(out, "Signature Verified Successfully\n");
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ret = 0;
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} else
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BIO_puts(out, "Signature Verification Failure\n");
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if (rv >= 0)
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goto end;
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} else {
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rv = do_keyop(cfg.ctx, cfg.pkey_op, NULL,
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(size_t *)&buf_outlen, buf_in, (size_t) buf_inlen);
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if (rv > 0) {
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buf_out = malloc(buf_outlen);
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if (!buf_out)
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rv = -1;
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else
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rv = do_keyop(cfg.ctx,
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cfg.pkey_op,
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buf_out, (size_t *) & buf_outlen,
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buf_in, (size_t) buf_inlen);
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}
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}
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if (rv <= 0) {
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BIO_printf(bio_err, "Public Key operation error\n");
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ERR_print_errors(bio_err);
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goto end;
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}
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ret = 0;
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if (cfg.asn1parse) {
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if (!ASN1_parse_dump(out, buf_out, buf_outlen, 1, -1))
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ERR_print_errors(bio_err);
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} else if (cfg.hexdump)
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BIO_dump(out, (char *) buf_out, buf_outlen);
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else
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BIO_write(out, buf_out, buf_outlen);
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end:
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EVP_PKEY_CTX_free(cfg.ctx);
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BIO_free(in);
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BIO_free_all(out);
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free(buf_in);
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free(buf_out);
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free(sig);
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return ret;
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}
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static int
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init_ctx(char *keyfile)
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{
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EVP_PKEY *pkey = NULL;
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char *passin = NULL;
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int rv = -1;
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X509 *x;
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if (((cfg.pkey_op == EVP_PKEY_OP_SIGN)
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|| (cfg.pkey_op == EVP_PKEY_OP_DECRYPT)
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|| (cfg.pkey_op == EVP_PKEY_OP_DERIVE))
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&& (cfg.key_type != KEY_PRIVKEY)) {
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BIO_printf(bio_err,
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"A private key is needed for this operation\n");
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goto end;
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}
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if (!app_passwd(bio_err, cfg.passargin, NULL, &passin,
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NULL)) {
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BIO_printf(bio_err, "Error getting password\n");
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goto end;
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}
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switch (cfg.key_type) {
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case KEY_PRIVKEY:
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pkey = load_key(bio_err, keyfile, cfg.keyform, 0,
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passin, "Private Key");
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break;
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case KEY_PUBKEY:
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pkey = load_pubkey(bio_err, keyfile, cfg.keyform, 0,
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NULL, "Public Key");
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break;
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case KEY_CERT:
|
||
|
x = load_cert(bio_err, keyfile, cfg.keyform,
|
||
|
NULL, "Certificate");
|
||
|
if (x) {
|
||
|
pkey = X509_get_pubkey(x);
|
||
|
X509_free(x);
|
||
|
}
|
||
|
break;
|
||
|
}
|
||
|
|
||
|
cfg.keysize = EVP_PKEY_size(pkey);
|
||
|
|
||
|
if (!pkey)
|
||
|
goto end;
|
||
|
|
||
|
cfg.ctx = EVP_PKEY_CTX_new(pkey, NULL);
|
||
|
|
||
|
EVP_PKEY_free(pkey);
|
||
|
|
||
|
if (!cfg.ctx)
|
||
|
goto end;
|
||
|
|
||
|
switch (cfg.pkey_op) {
|
||
|
case EVP_PKEY_OP_SIGN:
|
||
|
rv = EVP_PKEY_sign_init(cfg.ctx);
|
||
|
break;
|
||
|
|
||
|
case EVP_PKEY_OP_VERIFY:
|
||
|
rv = EVP_PKEY_verify_init(cfg.ctx);
|
||
|
break;
|
||
|
|
||
|
case EVP_PKEY_OP_VERIFYRECOVER:
|
||
|
rv = EVP_PKEY_verify_recover_init(cfg.ctx);
|
||
|
break;
|
||
|
|
||
|
case EVP_PKEY_OP_ENCRYPT:
|
||
|
rv = EVP_PKEY_encrypt_init(cfg.ctx);
|
||
|
break;
|
||
|
|
||
|
case EVP_PKEY_OP_DECRYPT:
|
||
|
rv = EVP_PKEY_decrypt_init(cfg.ctx);
|
||
|
break;
|
||
|
|
||
|
case EVP_PKEY_OP_DERIVE:
|
||
|
rv = EVP_PKEY_derive_init(cfg.ctx);
|
||
|
break;
|
||
|
}
|
||
|
|
||
|
if (rv <= 0) {
|
||
|
EVP_PKEY_CTX_free(cfg.ctx);
|
||
|
cfg.ctx = NULL;
|
||
|
}
|
||
|
|
||
|
end:
|
||
|
free(passin);
|
||
|
|
||
|
if (!cfg.ctx) {
|
||
|
BIO_puts(bio_err, "Error initializing context\n");
|
||
|
ERR_print_errors(bio_err);
|
||
|
return (1);
|
||
|
}
|
||
|
|
||
|
return (0);
|
||
|
}
|
||
|
|
||
|
static int
|
||
|
setup_peer(char *file)
|
||
|
{
|
||
|
EVP_PKEY *peer = NULL;
|
||
|
int ret;
|
||
|
|
||
|
if (!cfg.ctx) {
|
||
|
BIO_puts(bio_err, "-peerkey command before -inkey\n");
|
||
|
return (1);
|
||
|
}
|
||
|
peer = load_pubkey(bio_err, file, cfg.peerform, 0, NULL,
|
||
|
"Peer Key");
|
||
|
|
||
|
if (!peer) {
|
||
|
BIO_printf(bio_err, "Error reading peer key %s\n", file);
|
||
|
ERR_print_errors(bio_err);
|
||
|
return (1);
|
||
|
}
|
||
|
ret = EVP_PKEY_derive_set_peer(cfg.ctx, peer);
|
||
|
|
||
|
EVP_PKEY_free(peer);
|
||
|
if (ret <= 0) {
|
||
|
ERR_print_errors(bio_err);
|
||
|
return (1);
|
||
|
}
|
||
|
|
||
|
return (0);
|
||
|
}
|
||
|
|
||
|
static int
|
||
|
pkeyutl_pkeyopt(char *pkeyopt)
|
||
|
{
|
||
|
if (!cfg.ctx) {
|
||
|
BIO_puts(bio_err, "-pkeyopt command before -inkey\n");
|
||
|
return (1);
|
||
|
} else if (pkey_ctrl_string(cfg.ctx, pkeyopt) <= 0) {
|
||
|
BIO_puts(bio_err, "parameter setting error\n");
|
||
|
ERR_print_errors(bio_err);
|
||
|
return (1);
|
||
|
}
|
||
|
|
||
|
return (0);
|
||
|
}
|
||
|
|
||
|
static int
|
||
|
do_keyop(EVP_PKEY_CTX * ctx, int pkey_op,
|
||
|
unsigned char *out, size_t * poutlen,
|
||
|
unsigned char *in, size_t inlen)
|
||
|
{
|
||
|
int rv = 0;
|
||
|
switch (pkey_op) {
|
||
|
case EVP_PKEY_OP_VERIFYRECOVER:
|
||
|
rv = EVP_PKEY_verify_recover(ctx, out, poutlen, in, inlen);
|
||
|
break;
|
||
|
|
||
|
case EVP_PKEY_OP_SIGN:
|
||
|
rv = EVP_PKEY_sign(ctx, out, poutlen, in, inlen);
|
||
|
break;
|
||
|
|
||
|
case EVP_PKEY_OP_ENCRYPT:
|
||
|
rv = EVP_PKEY_encrypt(ctx, out, poutlen, in, inlen);
|
||
|
break;
|
||
|
|
||
|
case EVP_PKEY_OP_DECRYPT:
|
||
|
rv = EVP_PKEY_decrypt(ctx, out, poutlen, in, inlen);
|
||
|
break;
|
||
|
|
||
|
case EVP_PKEY_OP_DERIVE:
|
||
|
rv = EVP_PKEY_derive(ctx, out, poutlen);
|
||
|
break;
|
||
|
|
||
|
}
|
||
|
return rv;
|
||
|
}
|