exchange/src/util/test_crypto.c

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/*
This file is part of TALER
(C) 2015, 2020, 2021 Taler Systems SA
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TALER is free software; you can redistribute it and/or modify it under the
terms of the GNU General Public License as published by the Free Software
Foundation; either version 3, or (at your option) any later version.
TALER is distributed in the hope that it will be useful, but WITHOUT ANY
WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR
A PARTICULAR PURPOSE. See the GNU General Public License for more details.
You should have received a copy of the GNU General Public License along with
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TALER; see the file COPYING. If not, see <http://www.gnu.org/licenses/>
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*/
/**
* @file util/test_crypto.c
* @brief Tests for Taler-specific crypto logic
* @author Christian Grothoff <christian@grothoff.org>
*/
#include "platform.h"
#include "taler_util.h"
#include "taler_crypto_lib.h"
/**
* Test high-level link encryption/decryption API.
*
* @return 0 on success
*/
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static int
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test_high_level (void)
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{
struct TALER_CoinSpendPrivateKeyP coin_priv;
struct TALER_CoinSpendPublicKeyP coin_pub;
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struct TALER_TransferPrivateKeyP trans_priv;
struct TALER_TransferPublicKeyP trans_pub;
struct TALER_TransferSecretP secret;
struct TALER_TransferSecretP secret2;
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union TALER_DenominationBlindingKeyP bks1;
union TALER_DenominationBlindingKeyP bks2;
struct TALER_CoinSpendPrivateKeyP coin_priv1;
struct TALER_CoinSpendPrivateKeyP coin_priv2;
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struct TALER_PlanchetSecretsP ps1;
struct TALER_PlanchetSecretsP ps2;
struct TALER_ExchangeWithdrawValues alg1;
struct TALER_ExchangeWithdrawValues alg2;
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GNUNET_CRYPTO_eddsa_key_create (&coin_priv.eddsa_priv);
GNUNET_CRYPTO_eddsa_key_get_public (&coin_priv.eddsa_priv,
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&coin_pub.eddsa_pub);
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GNUNET_CRYPTO_ecdhe_key_create (&trans_priv.ecdhe_priv);
GNUNET_CRYPTO_ecdhe_key_get_public (&trans_priv.ecdhe_priv,
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&trans_pub.ecdhe_pub);
TALER_link_derive_transfer_secret (&coin_priv,
&trans_priv,
&secret);
TALER_link_reveal_transfer_secret (&trans_priv,
&coin_pub,
&secret2);
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GNUNET_assert (0 ==
GNUNET_memcmp (&secret,
&secret2));
TALER_link_recover_transfer_secret (&trans_pub,
&coin_priv,
&secret2);
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GNUNET_assert (0 ==
GNUNET_memcmp (&secret,
&secret2));
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TALER_transfer_secret_to_planchet_secret (&secret,
0,
&ps1);
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alg1.cipher = TALER_DENOMINATION_RSA;
TALER_planchet_setup_coin_priv (&ps1,
&alg1,
&coin_priv1);
TALER_planchet_blinding_secret_create (&ps1,
&alg1,
&bks1);
alg2.cipher = TALER_DENOMINATION_RSA;
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TALER_transfer_secret_to_planchet_secret (&secret,
1,
&ps2);
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TALER_planchet_setup_coin_priv (&ps2,
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&alg2,
&coin_priv2);
TALER_planchet_blinding_secret_create (&ps2,
&alg2,
&bks2);
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GNUNET_assert (0 !=
GNUNET_memcmp (&ps1,
&ps2));
GNUNET_assert (0 !=
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GNUNET_memcmp (&coin_priv1,
&coin_priv2));
GNUNET_assert (0 !=
GNUNET_memcmp (&bks1,
&bks2));
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return 0;
}
/**
* Test the basic planchet functionality of creating a fresh planchet
* and extracting the respective signature.
*
* @return 0 on success
*/
static int
test_planchets_rsa (void)
{
struct TALER_PlanchetSecretsP ps;
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struct TALER_CoinSpendPrivateKeyP coin_priv;
union TALER_DenominationBlindingKeyP bks;
struct TALER_DenominationPrivateKey dk_priv;
struct TALER_DenominationPublicKey dk_pub;
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struct TALER_ExchangeWithdrawValues alg_values;
struct TALER_PlanchetDetail pd;
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struct TALER_BlindedDenominationSignature blind_sig;
struct TALER_FreshCoin coin;
struct TALER_CoinPubHash c_hash;
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GNUNET_CRYPTO_random_block (GNUNET_CRYPTO_QUALITY_STRONG,
&ps,
sizeof (ps));
GNUNET_assert (GNUNET_SYSERR ==
TALER_denom_priv_create (&dk_priv,
&dk_pub,
TALER_DENOMINATION_INVALID));
GNUNET_assert (GNUNET_SYSERR ==
TALER_denom_priv_create (&dk_priv,
&dk_pub,
42));
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GNUNET_assert (GNUNET_OK ==
TALER_denom_priv_create (&dk_priv,
&dk_pub,
TALER_DENOMINATION_RSA,
1024));
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alg_values.cipher = TALER_DENOMINATION_RSA;
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TALER_planchet_setup_coin_priv (&ps,
&alg_values,
&coin_priv);
TALER_planchet_blinding_secret_create (&ps,
&alg_values,
&bks);
GNUNET_assert (GNUNET_OK ==
TALER_planchet_prepare (&dk_pub,
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&alg_values,
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&bks,
&coin_priv,
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&c_hash,
&pd));
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GNUNET_assert (GNUNET_OK ==
TALER_denom_sign_blinded (&blind_sig,
&dk_priv,
&pd.blinded_planchet));
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TALER_planchet_detail_free (&pd);
GNUNET_assert (GNUNET_OK ==
TALER_planchet_to_coin (&dk_pub,
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&blind_sig,
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&bks,
&coin_priv,
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&c_hash,
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&alg_values,
&coin));
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TALER_blinded_denom_sig_free (&blind_sig);
TALER_denom_sig_free (&coin.sig);
TALER_denom_priv_free (&dk_priv);
TALER_denom_pub_free (&dk_pub);
return 0;
}
/**
* Test the basic planchet functionality of creating a fresh planchet with CS denomination
* and extracting the respective signature.
*
* @return 0 on success
*/
static int
test_planchets_cs (void)
{
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struct TALER_PlanchetSecretsP ps;
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struct TALER_CoinSpendPrivateKeyP coin_priv;
union TALER_DenominationBlindingKeyP bks;
struct TALER_DenominationPrivateKey dk_priv;
struct TALER_DenominationPublicKey dk_pub;
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struct TALER_PlanchetDetail pd;
struct TALER_CoinPubHash c_hash;
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struct TALER_BlindedDenominationSignature blind_sig;
struct TALER_FreshCoin coin;
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struct TALER_ExchangeWithdrawValues alg_values;
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GNUNET_CRYPTO_random_block (GNUNET_CRYPTO_QUALITY_STRONG,
&ps,
sizeof (ps));
GNUNET_assert (GNUNET_OK ==
TALER_denom_priv_create (&dk_priv,
&dk_pub,
TALER_DENOMINATION_CS));
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alg_values.cipher = TALER_DENOMINATION_CS;
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TALER_cs_withdraw_nonce_derive (
&ps,
&pd.blinded_planchet.details.cs_blinded_planchet.nonce);
GNUNET_assert (GNUNET_OK ==
TALER_denom_cs_derive_r_public (
&pd.blinded_planchet.details.cs_blinded_planchet.nonce,
&dk_priv,
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&alg_values.details.cs_values.r_pub_pair));
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TALER_planchet_setup_coin_priv (&ps,
&alg_values,
&coin_priv);
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TALER_planchet_blinding_secret_create (&ps,
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&alg_values,
&bks);
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GNUNET_assert (GNUNET_OK ==
TALER_planchet_prepare (&dk_pub,
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&alg_values,
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&bks,
&coin_priv,
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&c_hash,
&pd));
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GNUNET_assert (GNUNET_OK ==
TALER_denom_sign_blinded (&blind_sig,
&dk_priv,
&pd.blinded_planchet));
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TALER_planchet_detail_free (&pd);
GNUNET_assert (GNUNET_OK ==
TALER_planchet_to_coin (&dk_pub,
&blind_sig,
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&bks,
&coin_priv,
&c_hash,
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&alg_values,
&coin));
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TALER_blinded_denom_sig_free (&blind_sig);
TALER_denom_sig_free (&coin.sig);
TALER_denom_priv_free (&dk_priv);
TALER_denom_pub_free (&dk_pub);
return 0;
}
/**
* Test the basic planchet functionality of creating a fresh planchet
* and extracting the respective signature.
* Calls test_planchets_rsa and test_planchets_cs
*
* @return 0 on success
*/
static int
test_planchets (void)
{
if (0 != test_planchets_rsa ())
return -1;
return test_planchets_cs ();
}
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static int
test_exchange_sigs (void)
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{
const char *pt = "payto://x-taler-bank/localhost/Account";
struct TALER_MasterPrivateKeyP priv;
struct TALER_MasterPublicKeyP pub;
struct TALER_MasterSignatureP sig;
GNUNET_CRYPTO_eddsa_key_create (&priv.eddsa_priv);
TALER_exchange_wire_signature_make (pt,
&priv,
&sig);
GNUNET_CRYPTO_eddsa_key_get_public (&priv.eddsa_priv,
&pub.eddsa_pub);
if (GNUNET_OK !=
TALER_exchange_wire_signature_check (pt,
&pub,
&sig))
{
GNUNET_break (0);
return 1;
}
if (GNUNET_OK ==
TALER_exchange_wire_signature_check (
"payto://x-taler-bank/localhost/Other",
&pub,
&sig))
{
GNUNET_break (0);
return 1;
}
return 0;
}
static int
test_merchant_sigs (void)
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{
const char *pt = "payto://x-taler-bank/localhost/Account";
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struct TALER_WireSaltP salt;
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struct TALER_MerchantPrivateKeyP priv;
struct TALER_MerchantPublicKeyP pub;
struct TALER_MerchantSignatureP sig;
GNUNET_CRYPTO_eddsa_key_create (&priv.eddsa_priv);
memset (&salt,
42,
sizeof (salt));
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TALER_merchant_wire_signature_make (pt,
&salt,
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&priv,
&sig);
GNUNET_CRYPTO_eddsa_key_get_public (&priv.eddsa_priv,
&pub.eddsa_pub);
if (GNUNET_OK !=
TALER_merchant_wire_signature_check (pt,
&salt,
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&pub,
&sig))
{
GNUNET_break (0);
return 1;
}
if (GNUNET_OK ==
TALER_merchant_wire_signature_check (
"payto://x-taler-bank/localhost/Other",
&salt,
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&pub,
&sig))
{
GNUNET_break (0);
return 1;
}
memset (&salt,
43,
sizeof (salt));
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if (GNUNET_OK ==
TALER_merchant_wire_signature_check (pt,
&salt,
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&pub,
&sig))
{
GNUNET_break (0);
return 1;
}
return 0;
}
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int
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main (int argc,
const char *const argv[])
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{
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(void) argc;
(void) argv;
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if (0 != test_high_level ())
return 1;
if (0 != test_planchets ())
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return 2;
if (0 != test_exchange_sigs ())
return 3;
if (0 != test_merchant_sigs ())
return 4;
return 0;
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}
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/* end of test_crypto.c */