1107 lines
41 KiB
C
1107 lines
41 KiB
C
/*
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This file is part of TALER
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Copyright (C) 2014, 2015, 2016 GNUnet e.V.
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TALER is free software; you can redistribute it and/or modify it under the
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terms of the GNU General Public License as published by the Free Software
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Foundation; either version 3, or (at your option) any later version.
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TALER is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR
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A PARTICULAR PURPOSE. See the GNU General Public License for more details.
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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, If not, see <http://www.gnu.org/licenses/>
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*/
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/**
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* @file exchangedb/test_exchangedb.c
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* @brief test cases for DB interaction functions
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* @author Sree Harsha Totakura
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* @author Christian Grothoff
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*/
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#include "platform.h"
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#include "taler_exchangedb_lib.h"
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#include "taler_json_lib.h"
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#include "taler_exchangedb_plugin.h"
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static int result;
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#define FAILIF(cond) \
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do { \
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if (!(cond)){ break;} \
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GNUNET_break (0); \
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goto drop; \
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} while (0)
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#define RND_BLK(ptr) \
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GNUNET_CRYPTO_random_block (GNUNET_CRYPTO_QUALITY_WEAK, ptr, sizeof (*ptr))
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#define ZR_BLK(ptr) \
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memset (ptr, 0, sizeof (*ptr))
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#define CURRENCY "EUR"
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static struct TALER_EXCHANGEDB_Plugin *plugin;
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/**
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* Checks if the given reserve has the given amount of balance and expiry
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*
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* @param session the database connection
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* @param pub the public key of the reserve
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* @param value balance value
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* @param fraction balance fraction
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* @param currency currency of the reserve
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* @return #GNUNET_OK if the given reserve has the same balance and expiration
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* as the given parameters; #GNUNET_SYSERR if not
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*/
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static int
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check_reserve (struct TALER_EXCHANGEDB_Session *session,
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const struct TALER_ReservePublicKeyP *pub,
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uint64_t value,
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uint32_t fraction,
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const char *currency)
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{
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struct TALER_EXCHANGEDB_Reserve reserve;
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reserve.pub = *pub;
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FAILIF (GNUNET_OK !=
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plugin->reserve_get (plugin->cls,
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session,
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&reserve));
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FAILIF (value != reserve.balance.value);
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FAILIF (fraction != reserve.balance.fraction);
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FAILIF (0 != strcmp (currency, reserve.balance.currency));
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return GNUNET_OK;
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drop:
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return GNUNET_SYSERR;
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}
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struct DenomKeyPair
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{
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struct TALER_DenominationPrivateKey priv;
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struct TALER_DenominationPublicKey pub;
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};
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/**
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* Destroy a denomination key pair. The key is not necessarily removed from the DB.
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*
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* @param dkp the keypair to destroy
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*/
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static void
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destroy_denom_key_pair (struct DenomKeyPair *dkp)
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{
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GNUNET_CRYPTO_rsa_public_key_free (dkp->pub.rsa_public_key);
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GNUNET_CRYPTO_rsa_private_key_free (dkp->priv.rsa_private_key);
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GNUNET_free (dkp);
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}
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/**
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* Create a denominaiton key pair by registering the denomination in the DB.
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*
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* @param size the size of the denomination key
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* @param session the DB session
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* @return the denominaiton key pair; NULL upon error
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*/
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static struct DenomKeyPair *
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create_denom_key_pair (unsigned int size,
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struct TALER_EXCHANGEDB_Session *session,
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const struct TALER_Amount *value,
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const struct TALER_Amount *fee_withdraw,
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const struct TALER_Amount *fee_deposit,
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const struct TALER_Amount *fee_refresh,
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const struct TALER_Amount *fee_refund)
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{
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struct DenomKeyPair *dkp;
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struct TALER_EXCHANGEDB_DenominationKeyIssueInformation dki;
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struct TALER_EXCHANGEDB_DenominationKeyInformationP issue2;
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struct GNUNET_TIME_Absolute now;
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dkp = GNUNET_new (struct DenomKeyPair);
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dkp->priv.rsa_private_key = GNUNET_CRYPTO_rsa_private_key_create (size);
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GNUNET_assert (NULL != dkp->priv.rsa_private_key);
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dkp->pub.rsa_public_key
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= GNUNET_CRYPTO_rsa_private_key_get_public (dkp->priv.rsa_private_key);
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/* Using memset() as fields like master key and signature
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are not properly initialized for this test. */
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memset (&dki,
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0,
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sizeof (struct TALER_EXCHANGEDB_DenominationKeyIssueInformation));
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dki.denom_pub = dkp->pub;
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now = GNUNET_TIME_absolute_get ();
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GNUNET_TIME_round_abs (&now);
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dki.issue.properties.start = GNUNET_TIME_absolute_hton (now);
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dki.issue.properties.expire_withdraw = GNUNET_TIME_absolute_hton
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(GNUNET_TIME_absolute_add (now,
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GNUNET_TIME_UNIT_HOURS));
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dki.issue.properties.expire_deposit = GNUNET_TIME_absolute_hton
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(GNUNET_TIME_absolute_add
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(now,
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GNUNET_TIME_relative_multiply (GNUNET_TIME_UNIT_HOURS, 2)));
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dki.issue.properties.expire_legal = GNUNET_TIME_absolute_hton
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(GNUNET_TIME_absolute_add
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(now,
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GNUNET_TIME_relative_multiply (GNUNET_TIME_UNIT_HOURS, 3)));
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TALER_amount_hton (&dki.issue.properties.value, value);
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TALER_amount_hton (&dki.issue.properties.fee_withdraw, fee_withdraw);
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TALER_amount_hton (&dki.issue.properties.fee_deposit, fee_deposit);
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TALER_amount_hton (&dki.issue.properties.fee_refresh, fee_refresh);
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TALER_amount_hton (&dki.issue.properties.fee_refund, fee_refund);
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GNUNET_CRYPTO_rsa_public_key_hash (dkp->pub.rsa_public_key,
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&dki.issue.properties.denom_hash);
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dki.issue.properties.purpose.size = htonl (sizeof (struct TALER_DenominationKeyValidityPS));
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dki.issue.properties.purpose.purpose = htonl (TALER_SIGNATURE_MASTER_DENOMINATION_KEY_VALIDITY);
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if (GNUNET_OK !=
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plugin->insert_denomination_info (plugin->cls,
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session,
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&dki.denom_pub,
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&dki.issue))
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{
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GNUNET_break(0);
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destroy_denom_key_pair (dkp);
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return NULL;
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}
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if (GNUNET_OK !=
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plugin->get_denomination_info (plugin->cls,
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session,
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&dki.denom_pub,
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&issue2))
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{
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GNUNET_break(0);
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destroy_denom_key_pair (dkp);
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return NULL;
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}
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if (0 != memcmp (&dki.issue,
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&issue2,
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sizeof (issue2)))
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{
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GNUNET_break(0);
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destroy_denom_key_pair (dkp);
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return NULL;
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}
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return dkp;
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}
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static struct TALER_Amount value;
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static struct TALER_Amount fee_withdraw;
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static struct TALER_Amount fee_deposit;
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static struct TALER_Amount fee_refresh;
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static struct TALER_Amount fee_refund;
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static struct TALER_Amount amount_with_fee;
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static void
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free_refresh_commit_coins_array (struct TALER_EXCHANGEDB_RefreshCommitCoin *commit_coins,
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unsigned int size)
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{
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unsigned int cnt;
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struct TALER_EXCHANGEDB_RefreshCommitCoin *ccoin;
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struct TALER_RefreshLinkEncrypted *rlink;
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for (cnt = 0; cnt < size; cnt++)
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{
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ccoin = &commit_coins[cnt];
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GNUNET_free_non_null (ccoin->coin_ev);
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rlink = (struct TALER_RefreshLinkEncrypted *) ccoin->refresh_link;
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GNUNET_free_non_null (rlink);
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}
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GNUNET_free (commit_coins);
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}
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#define MELT_NEW_COINS 5
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static int
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test_refresh_commit_coins (struct TALER_EXCHANGEDB_Session *session,
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struct TALER_EXCHANGEDB_RefreshSession *refresh_session,
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const struct GNUNET_HashCode *session_hash)
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{
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struct TALER_EXCHANGEDB_RefreshCommitCoin *commit_coins;
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struct TALER_EXCHANGEDB_RefreshCommitCoin *ret_commit_coins;
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struct TALER_EXCHANGEDB_RefreshCommitCoin *a_ccoin;
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struct TALER_RefreshLinkEncrypted *a_rlink;
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struct TALER_EXCHANGEDB_RefreshCommitCoin *b_ccoin;
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struct TALER_RefreshLinkEncrypted *b_rlink;
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size_t size;
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unsigned int cnt;
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uint16_t cnc_index;
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int ret;
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#define COIN_ENC_MAX_SIZE 512
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ret = GNUNET_SYSERR;
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ret_commit_coins = NULL;
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commit_coins = GNUNET_new_array (MELT_NEW_COINS,
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struct TALER_EXCHANGEDB_RefreshCommitCoin);
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cnc_index = (uint16_t) GNUNET_CRYPTO_random_u32
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(GNUNET_CRYPTO_QUALITY_WEAK, GNUNET_MIN (MELT_NEW_COINS, UINT16_MAX));
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for (cnt=0; cnt < MELT_NEW_COINS; cnt++)
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{
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struct TALER_EXCHANGEDB_RefreshCommitCoin *ccoin;
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struct TALER_RefreshLinkEncrypted *rlink;
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ccoin = &commit_coins[cnt];
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size = GNUNET_CRYPTO_random_u64 (GNUNET_CRYPTO_QUALITY_WEAK,
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COIN_ENC_MAX_SIZE);
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rlink = GNUNET_malloc (sizeof (struct TALER_RefreshLinkEncrypted) + size);
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ccoin->refresh_link = rlink;
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ccoin->coin_ev_size = GNUNET_CRYPTO_random_u64
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(GNUNET_CRYPTO_QUALITY_WEAK, COIN_ENC_MAX_SIZE);
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ccoin->coin_ev = GNUNET_malloc (ccoin->coin_ev_size);
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GNUNET_CRYPTO_random_block (GNUNET_CRYPTO_QUALITY_WEAK,
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ccoin->coin_ev,
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ccoin->coin_ev_size);
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rlink->blinding_key_enc_size = size;
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RND_BLK (&rlink->coin_priv_enc);
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rlink->blinding_key_enc = (const char *) &rlink[1];
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GNUNET_CRYPTO_random_block (GNUNET_CRYPTO_QUALITY_WEAK,
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(void *)rlink->blinding_key_enc,
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rlink->blinding_key_enc_size);
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}
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FAILIF (GNUNET_OK !=
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plugin->insert_refresh_commit_coins (plugin->cls,
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session,
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session_hash,
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cnc_index,
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MELT_NEW_COINS,
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commit_coins));
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ret_commit_coins = GNUNET_new_array (MELT_NEW_COINS,
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struct TALER_EXCHANGEDB_RefreshCommitCoin);
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FAILIF (GNUNET_OK !=
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plugin->get_refresh_commit_coins (plugin->cls,
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session,
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session_hash,
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cnc_index,
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MELT_NEW_COINS,
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ret_commit_coins));
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/* compare the refresh commit coin arrays */
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for (cnt = 0; cnt < MELT_NEW_COINS; cnt++)
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{
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a_ccoin = &commit_coins[cnt];
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b_ccoin = &ret_commit_coins[cnt];
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FAILIF (a_ccoin->coin_ev_size != b_ccoin->coin_ev_size);
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FAILIF (0 != memcmp (a_ccoin->coin_ev,
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a_ccoin->coin_ev,
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a_ccoin->coin_ev_size));
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a_rlink = a_ccoin->refresh_link;
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b_rlink = b_ccoin->refresh_link;
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FAILIF (a_rlink->blinding_key_enc_size != b_rlink->blinding_key_enc_size);
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FAILIF (0 != memcmp (a_rlink->blinding_key_enc,
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b_rlink->blinding_key_enc,
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a_rlink->blinding_key_enc_size));
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FAILIF (0 != memcmp (a_rlink->coin_priv_enc,
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b_rlink->coin_priv_enc,
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sizeof (a_rlink->coin_priv_enc)));
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}
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ret = GNUNET_OK;
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drop:
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if (NULL != ret_commit_coins)
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free_refresh_commit_coins_array (ret_commit_coins, MELT_NEW_COINS);
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if (NULL != commit_coins)
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free_refresh_commit_coins_array (commit_coins, MELT_NEW_COINS);
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return ret;
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}
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/**
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* Function to test melting of coins as part of a refresh session
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*
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* @param session the database session
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* @param refresh_session the refresh session
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* @return #GNUNET_OK if everything went well; #GNUNET_SYSERR if not
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*/
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static int
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test_melting (struct TALER_EXCHANGEDB_Session *session)
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{
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#define MELT_OLD_COINS 10
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struct TALER_EXCHANGEDB_RefreshSession refresh_session;
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struct TALER_EXCHANGEDB_RefreshSession ret_refresh_session;
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struct GNUNET_HashCode session_hash;
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struct DenomKeyPair *dkp;
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struct DenomKeyPair **new_dkp;
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/* struct TALER_CoinPublicInfo *coins; */
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struct TALER_EXCHANGEDB_RefreshMelt *melts;
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struct TALER_DenominationPublicKey *new_denom_pubs;
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struct TALER_DenominationPublicKey *ret_denom_pubs;
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unsigned int cnt;
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int ret;
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ret = GNUNET_SYSERR;
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RND_BLK (&refresh_session);
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RND_BLK (&session_hash);
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melts = NULL;
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dkp = NULL;
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new_dkp = NULL;
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new_denom_pubs = NULL;
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ret_denom_pubs = NULL;
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/* create and test a refresh session */
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refresh_session.num_oldcoins = MELT_OLD_COINS;
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refresh_session.num_newcoins = 1;
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refresh_session.noreveal_index = 1;
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FAILIF (GNUNET_OK != plugin->create_refresh_session (plugin->cls,
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session,
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&session_hash,
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&refresh_session));
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FAILIF (GNUNET_OK != plugin->get_refresh_session (plugin->cls,
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session,
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&session_hash,
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&ret_refresh_session));
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FAILIF (0 != memcmp (&ret_refresh_session,
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&refresh_session,
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sizeof (refresh_session)));
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/* create a denomination (value: 1; fraction: 100) */
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dkp = create_denom_key_pair (512, session,
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&value,
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&fee_withdraw,
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&fee_deposit,
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&fee_refresh,
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&fee_refund);
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/* create MELT_OLD_COINS number of refresh melts */
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melts = GNUNET_new_array (MELT_OLD_COINS, struct TALER_EXCHANGEDB_RefreshMelt);
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for (cnt=0; cnt < MELT_OLD_COINS; cnt++)
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{
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struct GNUNET_HashCode hc;
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RND_BLK (&melts[cnt].coin.coin_pub);
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GNUNET_CRYPTO_hash (&melts[cnt].coin.coin_pub,
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sizeof (melts[cnt].coin.coin_pub),
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&hc);
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melts[cnt].coin.denom_sig.rsa_signature =
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GNUNET_CRYPTO_rsa_sign_fdh (dkp->priv.rsa_private_key,
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&hc);
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melts[cnt].coin.denom_pub = dkp->pub;
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RND_BLK (&melts[cnt].coin_sig);
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melts[cnt].session_hash = session_hash;
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melts[cnt].amount_with_fee = amount_with_fee;
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melts[cnt].melt_fee = fee_refresh;
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FAILIF (GNUNET_OK != plugin->insert_refresh_melt (plugin->cls,
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session,
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cnt,
|
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&melts[cnt]));
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}
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for (cnt = 0; cnt < MELT_OLD_COINS; cnt++)
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{
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struct TALER_EXCHANGEDB_RefreshMelt ret_melt;
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FAILIF (GNUNET_OK != plugin->get_refresh_melt (plugin->cls,
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session,
|
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&session_hash,
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cnt,
|
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&ret_melt));
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FAILIF (0 != GNUNET_CRYPTO_rsa_signature_cmp
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(ret_melt.coin.denom_sig.rsa_signature,
|
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melts[cnt].coin.denom_sig.rsa_signature));
|
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FAILIF (0 != memcmp (&ret_melt.coin.coin_pub,
|
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&melts[cnt].coin.coin_pub,
|
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sizeof (ret_melt.coin.coin_pub)));
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FAILIF (0 != GNUNET_CRYPTO_rsa_public_key_cmp
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(ret_melt.coin.denom_pub.rsa_public_key,
|
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melts[cnt].coin.denom_pub.rsa_public_key));
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FAILIF (0 != memcmp (&ret_melt.coin_sig,
|
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&melts[cnt].coin_sig,
|
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sizeof (ret_melt.coin_sig)));
|
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FAILIF (0 != memcmp (&ret_melt.session_hash,
|
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&melts[cnt].session_hash,
|
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sizeof (ret_melt.session_hash)));
|
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FAILIF (0 != TALER_amount_cmp (&ret_melt.amount_with_fee,
|
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&melts[cnt].amount_with_fee));
|
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FAILIF (0 != TALER_amount_cmp (&ret_melt.melt_fee,
|
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&melts[cnt].melt_fee));
|
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GNUNET_CRYPTO_rsa_signature_free (ret_melt.coin.denom_sig.rsa_signature);
|
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GNUNET_CRYPTO_rsa_public_key_free (ret_melt.coin.denom_pub.rsa_public_key);
|
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}
|
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new_dkp = GNUNET_new_array (MELT_NEW_COINS, struct DenomKeyPair *);
|
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new_denom_pubs = GNUNET_new_array (MELT_NEW_COINS,
|
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struct TALER_DenominationPublicKey);
|
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for (cnt=0; cnt < MELT_NEW_COINS; cnt++)
|
|
{
|
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new_dkp[cnt] = create_denom_key_pair (128, session,
|
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&value,
|
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&fee_withdraw,
|
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&fee_deposit,
|
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&fee_refresh,
|
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&fee_refund);
|
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new_denom_pubs[cnt]=new_dkp[cnt]->pub;
|
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}
|
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FAILIF (GNUNET_OK != plugin->insert_refresh_order (plugin->cls,
|
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session,
|
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&session_hash,
|
|
MELT_NEW_COINS,
|
|
new_denom_pubs));
|
|
ret_denom_pubs = GNUNET_new_array (MELT_NEW_COINS,
|
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struct TALER_DenominationPublicKey);
|
|
FAILIF (GNUNET_OK != plugin->get_refresh_order (plugin->cls,
|
|
session,
|
|
&session_hash,
|
|
MELT_NEW_COINS,
|
|
ret_denom_pubs));
|
|
for (cnt=0; cnt < MELT_NEW_COINS; cnt++)
|
|
{
|
|
FAILIF (0 != GNUNET_CRYPTO_rsa_public_key_cmp
|
|
(ret_denom_pubs[cnt].rsa_public_key,
|
|
new_denom_pubs[cnt].rsa_public_key));
|
|
}
|
|
FAILIF (GNUNET_OK !=
|
|
test_refresh_commit_coins (session,
|
|
&refresh_session,
|
|
&session_hash));
|
|
|
|
ret = GNUNET_OK;
|
|
|
|
drop:
|
|
if (NULL != dkp)
|
|
destroy_denom_key_pair (dkp);
|
|
if (NULL != melts)
|
|
{
|
|
for (cnt = 0; cnt < MELT_OLD_COINS; cnt++)
|
|
GNUNET_CRYPTO_rsa_signature_free (melts[cnt].coin.denom_sig.rsa_signature);
|
|
GNUNET_free (melts);
|
|
}
|
|
for (cnt = 0;
|
|
(NULL != ret_denom_pubs) && (cnt < MELT_NEW_COINS)
|
|
&& (NULL != ret_denom_pubs[cnt].rsa_public_key);
|
|
cnt++)
|
|
GNUNET_CRYPTO_rsa_public_key_free (ret_denom_pubs[cnt].rsa_public_key);
|
|
GNUNET_free_non_null (ret_denom_pubs);
|
|
GNUNET_free_non_null (new_denom_pubs);
|
|
for (cnt = 0;
|
|
(NULL != new_dkp) && (cnt < MELT_NEW_COINS) && (NULL != new_dkp[cnt]);
|
|
cnt++)
|
|
destroy_denom_key_pair (new_dkp[cnt]);
|
|
GNUNET_free_non_null (new_dkp);
|
|
return ret;
|
|
}
|
|
|
|
|
|
/**
|
|
* Callback that should never be called.
|
|
*/
|
|
static void
|
|
cb_wt_never (void *cls,
|
|
const struct TALER_MerchantPublicKeyP *merchant_pub,
|
|
const struct GNUNET_HashCode *h_wire,
|
|
const struct GNUNET_HashCode *h_contract,
|
|
uint64_t transaction_id,
|
|
const struct TALER_CoinSpendPublicKeyP *coin_pub,
|
|
const struct TALER_Amount *coin_value,
|
|
const struct TALER_Amount *coin_fee)
|
|
{
|
|
GNUNET_assert (0); /* this statement should be unreachable */
|
|
}
|
|
|
|
|
|
/**
|
|
* Callback that should never be called.
|
|
*/
|
|
static void
|
|
cb_wtid_never (void *cls,
|
|
const struct TALER_WireTransferIdentifierRawP *wtid,
|
|
const struct TALER_Amount *coin_contribution,
|
|
const struct TALER_Amount *coin_fee,
|
|
struct GNUNET_TIME_Absolute execution_time)
|
|
{
|
|
GNUNET_assert (0);
|
|
}
|
|
|
|
|
|
static struct TALER_MerchantPublicKeyP merchant_pub_wt;
|
|
static struct GNUNET_HashCode h_wire_wt;
|
|
static struct GNUNET_HashCode h_contract_wt;
|
|
static uint64_t transaction_id_wt;
|
|
static struct TALER_CoinSpendPublicKeyP coin_pub_wt;
|
|
static struct TALER_Amount coin_value_wt;
|
|
static struct TALER_Amount coin_fee_wt;
|
|
static struct TALER_Amount transfer_value_wt;
|
|
static struct GNUNET_TIME_Absolute execution_time_wt;
|
|
static struct TALER_WireTransferIdentifierRawP wtid_wt;
|
|
|
|
|
|
/**
|
|
* Callback that should be called with the WT data.
|
|
*/
|
|
static void
|
|
cb_wt_check (void *cls,
|
|
const struct TALER_MerchantPublicKeyP *merchant_pub,
|
|
const struct GNUNET_HashCode *h_wire,
|
|
const struct GNUNET_HashCode *h_contract,
|
|
uint64_t transaction_id,
|
|
const struct TALER_CoinSpendPublicKeyP *coin_pub,
|
|
const struct TALER_Amount *coin_value,
|
|
const struct TALER_Amount *coin_fee)
|
|
{
|
|
GNUNET_assert (cls == &cb_wt_never);
|
|
GNUNET_assert (0 == memcmp (merchant_pub,
|
|
&merchant_pub_wt,
|
|
sizeof (struct TALER_MerchantPublicKeyP)));
|
|
GNUNET_assert (0 == memcmp (h_wire,
|
|
&h_wire_wt,
|
|
sizeof (struct GNUNET_HashCode)));
|
|
GNUNET_assert (0 == memcmp (h_contract,
|
|
&h_contract_wt,
|
|
sizeof (struct GNUNET_HashCode)));
|
|
GNUNET_assert (transaction_id == transaction_id_wt);
|
|
GNUNET_assert (0 == memcmp (coin_pub,
|
|
&coin_pub_wt,
|
|
sizeof (struct TALER_CoinSpendPublicKeyP)));
|
|
GNUNET_assert (0 == TALER_amount_cmp (coin_value,
|
|
&coin_value_wt));
|
|
GNUNET_assert (0 == TALER_amount_cmp (coin_fee,
|
|
&coin_fee_wt));
|
|
}
|
|
|
|
|
|
/**
|
|
* Callback that should be called with the WT data.
|
|
*/
|
|
static void
|
|
cb_wtid_check (void *cls,
|
|
const struct TALER_WireTransferIdentifierRawP *wtid,
|
|
const struct TALER_Amount *coin_contribution,
|
|
const struct TALER_Amount *coin_fee,
|
|
struct GNUNET_TIME_Absolute execution_time)
|
|
{
|
|
GNUNET_assert (cls == &cb_wtid_never);
|
|
GNUNET_assert (0 == memcmp (wtid,
|
|
&wtid_wt,
|
|
sizeof (struct TALER_WireTransferIdentifierRawP)));
|
|
GNUNET_assert (execution_time.abs_value_us ==
|
|
execution_time_wt.abs_value_us);
|
|
GNUNET_assert (0 == TALER_amount_cmp (coin_contribution,
|
|
&coin_value_wt));
|
|
GNUNET_assert (0 == TALER_amount_cmp (coin_fee,
|
|
&coin_fee_wt));
|
|
}
|
|
|
|
|
|
static unsigned long long deposit_rowid;
|
|
|
|
|
|
/**
|
|
* Function called with details about deposits that
|
|
* have been made. Called in the test on the
|
|
* deposit given in @a cls.
|
|
*
|
|
* @param cls closure a `struct TALER_EXCHANGEDB_Deposit *`
|
|
* @param rowid unique ID for the deposit in our DB, used for marking
|
|
* it as 'tiny' or 'done'
|
|
* @param merchant_pub public key of the merchant
|
|
* @param coin_pub public key of the coin
|
|
* @param amount_with_fee amount that was deposited including fee
|
|
* @param deposit_fee amount the exchange gets to keep as transaction fees
|
|
* @param transaction_id unique transaction ID chosen by the merchant
|
|
* @param h_contract hash of the contract between merchant and customer
|
|
* @param wire_deadline by which the merchant adviced that he would like the
|
|
* wire transfer to be executed
|
|
* @param wire wire details for the merchant, NULL from iterate_matching_deposits()
|
|
* @return #GNUNET_OK to continue to iterate, #GNUNET_SYSERR if deposit does
|
|
* not match our expectations
|
|
*/
|
|
static int
|
|
deposit_cb (void *cls,
|
|
unsigned long long rowid,
|
|
const struct TALER_MerchantPublicKeyP *merchant_pub,
|
|
const struct TALER_CoinSpendPublicKeyP *coin_pub,
|
|
const struct TALER_Amount *amount_with_fee,
|
|
const struct TALER_Amount *deposit_fee,
|
|
uint64_t transaction_id,
|
|
const struct GNUNET_HashCode *h_contract,
|
|
struct GNUNET_TIME_Absolute wire_deadline,
|
|
const json_t *wire)
|
|
{
|
|
struct TALER_EXCHANGEDB_Deposit *deposit = cls;
|
|
struct GNUNET_HashCode h_wire;
|
|
|
|
deposit_rowid = rowid;
|
|
if (NULL != wire)
|
|
TALER_JSON_hash (wire, &h_wire);
|
|
if ( (0 != memcmp (merchant_pub,
|
|
&deposit->merchant_pub,
|
|
sizeof (struct TALER_MerchantPublicKeyP))) ||
|
|
(0 != TALER_amount_cmp (amount_with_fee,
|
|
&deposit->amount_with_fee)) ||
|
|
(0 != TALER_amount_cmp (deposit_fee,
|
|
&deposit->deposit_fee)) ||
|
|
(0 != memcmp (h_contract,
|
|
&deposit->h_contract,
|
|
sizeof (struct GNUNET_HashCode))) ||
|
|
(0 != memcmp (coin_pub,
|
|
&deposit->coin.coin_pub,
|
|
sizeof (struct TALER_CoinSpendPublicKeyP))) ||
|
|
(transaction_id != deposit->transaction_id) ||
|
|
( (NULL != wire) &&
|
|
(0 != memcmp (&h_wire,
|
|
&deposit->h_wire,
|
|
sizeof (struct GNUNET_HashCode))) ) )
|
|
{
|
|
GNUNET_break (0);
|
|
return GNUNET_SYSERR;
|
|
}
|
|
|
|
return GNUNET_OK;
|
|
}
|
|
|
|
|
|
static struct TALER_EXCHANGEDB_Refund refund;
|
|
|
|
|
|
/**
|
|
* Main function that will be run by the scheduler.
|
|
*
|
|
* @param cls closure with config
|
|
*/
|
|
static void
|
|
run (void *cls)
|
|
{
|
|
struct GNUNET_CONFIGURATION_Handle *cfg = cls;
|
|
struct TALER_EXCHANGEDB_Session *session;
|
|
struct TALER_ReservePublicKeyP reserve_pub;
|
|
struct DenomKeyPair *dkp;
|
|
struct TALER_EXCHANGEDB_CollectableBlindcoin cbc;
|
|
struct TALER_EXCHANGEDB_CollectableBlindcoin cbc2;
|
|
struct TALER_EXCHANGEDB_ReserveHistory *rh;
|
|
struct TALER_EXCHANGEDB_ReserveHistory *rh_head;
|
|
struct TALER_EXCHANGEDB_BankTransfer *bt;
|
|
struct TALER_EXCHANGEDB_CollectableBlindcoin *withdraw;
|
|
struct TALER_EXCHANGEDB_Deposit deposit;
|
|
struct TALER_EXCHANGEDB_Deposit deposit2;
|
|
struct TALER_WireTransferIdentifierRawP wtid;
|
|
json_t *wire;
|
|
json_t *just;
|
|
const char * const json_wire_str =
|
|
"{ \"type\":\"SEPA\", \
|
|
\"IBAN\":\"DE67830654080004822650\", \
|
|
\"name\":\"GNUnet e.V.\", \
|
|
\"bic\":\"GENODEF1SLR\", \
|
|
\"edate\":\"1449930207000\", \
|
|
\"r\":123456789, \
|
|
\"address\": \"foobar\"}";
|
|
unsigned int cnt;
|
|
|
|
dkp = NULL;
|
|
rh = NULL;
|
|
wire = NULL;
|
|
session = NULL;
|
|
ZR_BLK (&cbc);
|
|
ZR_BLK (&cbc2);
|
|
if (NULL ==
|
|
(plugin = TALER_EXCHANGEDB_plugin_load (cfg)))
|
|
{
|
|
result = 77;
|
|
return;
|
|
}
|
|
if (GNUNET_OK !=
|
|
plugin->create_tables (plugin->cls))
|
|
{
|
|
result = 77;
|
|
goto drop;
|
|
}
|
|
if (NULL !=
|
|
(session = plugin->get_session (plugin->cls)))
|
|
{
|
|
if (GNUNET_OK !=
|
|
plugin->drop_tables (plugin->cls,
|
|
session))
|
|
{
|
|
result = 77;
|
|
goto drop;
|
|
}
|
|
}
|
|
if (GNUNET_OK !=
|
|
plugin->create_tables (plugin->cls))
|
|
{
|
|
result = 77;
|
|
goto drop;
|
|
}
|
|
if (NULL ==
|
|
(session = plugin->get_session (plugin->cls)))
|
|
{
|
|
result = 77;
|
|
goto drop;
|
|
}
|
|
RND_BLK (&reserve_pub);
|
|
GNUNET_assert (GNUNET_OK ==
|
|
TALER_string_to_amount (CURRENCY ":1.000010",
|
|
&value));
|
|
GNUNET_assert (GNUNET_OK ==
|
|
TALER_string_to_amount (CURRENCY ":0.000010",
|
|
&fee_withdraw));
|
|
GNUNET_assert (GNUNET_OK ==
|
|
TALER_string_to_amount (CURRENCY ":0.000010",
|
|
&fee_deposit));
|
|
GNUNET_assert (GNUNET_OK ==
|
|
TALER_string_to_amount (CURRENCY ":0.000010",
|
|
&fee_refresh));
|
|
GNUNET_assert (GNUNET_OK ==
|
|
TALER_string_to_amount (CURRENCY ":0.000010",
|
|
&fee_refund));
|
|
GNUNET_assert (GNUNET_OK ==
|
|
TALER_string_to_amount (CURRENCY ":1.000010",
|
|
&amount_with_fee));
|
|
|
|
result = 4;
|
|
just = json_loads ("{ \"justification\":\"1\" }", 0, NULL);
|
|
FAILIF (GNUNET_OK !=
|
|
plugin->reserves_in_insert (plugin->cls,
|
|
session,
|
|
&reserve_pub,
|
|
&value,
|
|
GNUNET_TIME_absolute_get (),
|
|
just));
|
|
json_decref (just);
|
|
FAILIF (GNUNET_OK !=
|
|
check_reserve (session,
|
|
&reserve_pub,
|
|
value.value,
|
|
value.fraction,
|
|
value.currency));
|
|
just = json_loads ("{ \"justification\":\"2\" }", 0, NULL);
|
|
FAILIF (GNUNET_OK !=
|
|
plugin->reserves_in_insert (plugin->cls,
|
|
session,
|
|
&reserve_pub,
|
|
&value,
|
|
GNUNET_TIME_absolute_get (),
|
|
just));
|
|
json_decref (just);
|
|
FAILIF (GNUNET_OK !=
|
|
check_reserve (session,
|
|
&reserve_pub,
|
|
value.value * 2,
|
|
value.fraction * 2,
|
|
value.currency));
|
|
result = 5;
|
|
dkp = create_denom_key_pair (1024, session,
|
|
&value,
|
|
&fee_withdraw,
|
|
&fee_deposit,
|
|
&fee_refresh,
|
|
&fee_refund);
|
|
RND_BLK(&cbc.h_coin_envelope);
|
|
RND_BLK(&cbc.reserve_sig);
|
|
cbc.denom_pub = dkp->pub;
|
|
cbc.sig.rsa_signature
|
|
= GNUNET_CRYPTO_rsa_sign_fdh (dkp->priv.rsa_private_key,
|
|
&cbc.h_coin_envelope);
|
|
cbc.reserve_pub = reserve_pub;
|
|
cbc.amount_with_fee = value;
|
|
GNUNET_assert (GNUNET_OK ==
|
|
TALER_amount_get_zero (CURRENCY, &cbc.withdraw_fee));
|
|
FAILIF (GNUNET_OK !=
|
|
plugin->insert_withdraw_info (plugin->cls,
|
|
session,
|
|
&cbc));
|
|
FAILIF (GNUNET_OK !=
|
|
check_reserve (session,
|
|
&reserve_pub,
|
|
value.value,
|
|
value.fraction,
|
|
value.currency));
|
|
FAILIF (GNUNET_YES !=
|
|
plugin->get_withdraw_info (plugin->cls,
|
|
session,
|
|
&cbc.h_coin_envelope,
|
|
&cbc2));
|
|
FAILIF (NULL == cbc2.denom_pub.rsa_public_key);
|
|
FAILIF (0 != memcmp (&cbc2.reserve_sig,
|
|
&cbc.reserve_sig,
|
|
sizeof (cbc2.reserve_sig)));
|
|
FAILIF (0 != memcmp (&cbc2.reserve_pub,
|
|
&cbc.reserve_pub,
|
|
sizeof (cbc2.reserve_pub)));
|
|
result = 6;
|
|
FAILIF (GNUNET_OK !=
|
|
GNUNET_CRYPTO_rsa_verify (&cbc.h_coin_envelope,
|
|
cbc2.sig.rsa_signature,
|
|
dkp->pub.rsa_public_key));
|
|
result = 7;
|
|
rh = plugin->get_reserve_history (plugin->cls,
|
|
session,
|
|
&reserve_pub);
|
|
FAILIF (NULL == rh);
|
|
rh_head = rh;
|
|
for (cnt=0; NULL != rh_head; rh_head=rh_head->next, cnt++)
|
|
{
|
|
switch (rh_head->type)
|
|
{
|
|
case TALER_EXCHANGEDB_RO_BANK_TO_EXCHANGE:
|
|
bt = rh_head->details.bank;
|
|
FAILIF (0 != memcmp (&bt->reserve_pub,
|
|
&reserve_pub,
|
|
sizeof (reserve_pub)));
|
|
/* this is the amount we trasferred twice*/
|
|
FAILIF (1 != bt->amount.value);
|
|
FAILIF (10 != bt->amount.fraction);
|
|
FAILIF (0 != strcmp (CURRENCY, bt->amount.currency));
|
|
FAILIF (NULL == bt->wire);
|
|
break;
|
|
case TALER_EXCHANGEDB_RO_WITHDRAW_COIN:
|
|
withdraw = rh_head->details.withdraw;
|
|
FAILIF (0 != memcmp (&withdraw->reserve_pub,
|
|
&reserve_pub,
|
|
sizeof (reserve_pub)));
|
|
FAILIF (0 != memcmp (&withdraw->h_coin_envelope,
|
|
&cbc.h_coin_envelope,
|
|
sizeof (cbc.h_coin_envelope)));
|
|
break;
|
|
}
|
|
}
|
|
FAILIF (3 != cnt);
|
|
/* Tests for deposits */
|
|
memset (&deposit, 0, sizeof (deposit));
|
|
RND_BLK (&deposit.coin.coin_pub);
|
|
deposit.coin.denom_pub = dkp->pub;
|
|
deposit.coin.denom_sig = cbc.sig;
|
|
RND_BLK (&deposit.csig);
|
|
RND_BLK (&deposit.merchant_pub);
|
|
RND_BLK (&deposit.h_contract);
|
|
wire = json_loads (json_wire_str, 0, NULL);
|
|
TALER_JSON_hash (wire,
|
|
&deposit.h_wire);
|
|
deposit.wire = wire;
|
|
deposit.transaction_id =
|
|
GNUNET_CRYPTO_random_u64 (GNUNET_CRYPTO_QUALITY_WEAK, UINT64_MAX);
|
|
deposit.amount_with_fee = value;
|
|
GNUNET_assert (GNUNET_OK ==
|
|
TALER_amount_get_zero (CURRENCY, &deposit.deposit_fee));
|
|
result = 8;
|
|
FAILIF (GNUNET_OK !=
|
|
plugin->insert_deposit (plugin->cls,
|
|
session, &deposit));
|
|
FAILIF (GNUNET_YES !=
|
|
plugin->have_deposit (plugin->cls,
|
|
session,
|
|
&deposit));
|
|
result = 9;
|
|
FAILIF (1 !=
|
|
plugin->iterate_matching_deposits (plugin->cls,
|
|
session,
|
|
&deposit.h_wire,
|
|
&deposit.merchant_pub,
|
|
&deposit_cb, &deposit,
|
|
2));
|
|
|
|
FAILIF (1 !=
|
|
plugin->get_ready_deposit (plugin->cls,
|
|
session,
|
|
&deposit_cb,
|
|
&deposit));
|
|
FAILIF (GNUNET_OK !=
|
|
plugin->start (plugin->cls,
|
|
session));
|
|
FAILIF (GNUNET_OK !=
|
|
plugin->mark_deposit_tiny (plugin->cls,
|
|
session,
|
|
deposit_rowid));
|
|
FAILIF (0 !=
|
|
plugin->get_ready_deposit (plugin->cls,
|
|
session,
|
|
&deposit_cb,
|
|
&deposit));
|
|
plugin->rollback (plugin->cls,
|
|
session);
|
|
FAILIF (1 !=
|
|
plugin->get_ready_deposit (plugin->cls,
|
|
session,
|
|
&deposit_cb,
|
|
&deposit));
|
|
FAILIF (GNUNET_OK !=
|
|
plugin->start (plugin->cls,
|
|
session));
|
|
FAILIF (GNUNET_NO !=
|
|
plugin->test_deposit_done (plugin->cls,
|
|
session,
|
|
&deposit));
|
|
FAILIF (GNUNET_OK !=
|
|
plugin->mark_deposit_done (plugin->cls,
|
|
session,
|
|
deposit_rowid));
|
|
FAILIF (GNUNET_OK !=
|
|
plugin->commit (plugin->cls,
|
|
session));
|
|
FAILIF (GNUNET_YES !=
|
|
plugin->test_deposit_done (plugin->cls,
|
|
session,
|
|
&deposit));
|
|
|
|
|
|
result = 10;
|
|
deposit2 = deposit;
|
|
deposit2.transaction_id++; /* should fail if transaction id is different */
|
|
FAILIF (GNUNET_NO !=
|
|
plugin->have_deposit (plugin->cls,
|
|
session,
|
|
&deposit2));
|
|
deposit2.transaction_id = deposit.transaction_id;
|
|
RND_BLK (&deposit2.merchant_pub); /* should fail if merchant is different */
|
|
FAILIF (GNUNET_NO !=
|
|
plugin->have_deposit (plugin->cls,
|
|
session,
|
|
&deposit2));
|
|
deposit2.merchant_pub = deposit.merchant_pub;
|
|
RND_BLK (&deposit2.coin.coin_pub); /* should fail if coin is different */
|
|
FAILIF (GNUNET_NO !=
|
|
plugin->have_deposit (plugin->cls,
|
|
session,
|
|
&deposit2));
|
|
FAILIF (GNUNET_OK != test_melting (session));
|
|
|
|
/* setup values for wire transfer aggregation data */
|
|
memset (&wtid, 42, sizeof (wtid));
|
|
memset (&merchant_pub_wt, 43, sizeof (merchant_pub_wt));
|
|
memset (&h_wire_wt, 44, sizeof (h_wire_wt));
|
|
memset (&h_contract_wt, 45, sizeof (h_contract_wt));
|
|
memset (&coin_pub_wt, 46, sizeof (coin_pub_wt));
|
|
transaction_id_wt = 47;
|
|
execution_time_wt = GNUNET_TIME_absolute_get ();
|
|
memset (&merchant_pub_wt, 48, sizeof (merchant_pub_wt));
|
|
GNUNET_assert (GNUNET_OK ==
|
|
TALER_string_to_amount (CURRENCY "KUDOS:1.000010",
|
|
&coin_value_wt));
|
|
GNUNET_assert (GNUNET_OK ==
|
|
TALER_string_to_amount (CURRENCY "KUDOS:0.000010",
|
|
&coin_fee_wt));
|
|
GNUNET_assert (GNUNET_OK ==
|
|
TALER_string_to_amount (CURRENCY "KUDOS:1.000000",
|
|
&transfer_value_wt));
|
|
#if 0
|
|
/* FIXME #4401: test insert_refund! */
|
|
refund.FOO = bar;
|
|
FAILIF (GNUNET_OK !=
|
|
plugin->insert_refund (plugin->cls,
|
|
session,
|
|
&refund));
|
|
#endif
|
|
/* FIXME #4401: test: insert_refresh_commit_links
|
|
FIXME #4401: test: get_refresh_commit_links
|
|
FIXME #4401: test: get_melt_commitment
|
|
FIXME #4401: test: free_melt_commitment
|
|
FIXME #4401: test: insert_refresh_out
|
|
FIXME #4401: test: get_link_data_list
|
|
FIXME #4401: test: free_link_data_list
|
|
FIXME #4401: test: get_transfer
|
|
FIXME #4401: test: get_coin_transactions
|
|
FIXME #4401: test: free_coin_transaction_list
|
|
FIXME #4401: test: wire_prepare_data_insert
|
|
FIXME #4401: test: wire_prepare_data_mark_finished
|
|
FIXME #4401: test: wire_prepare_data_get
|
|
|
|
*/
|
|
|
|
FAILIF (GNUNET_NO !=
|
|
plugin->lookup_wire_transfer (plugin->cls,
|
|
session,
|
|
&wtid_wt,
|
|
&cb_wt_never,
|
|
NULL));
|
|
FAILIF (GNUNET_NO !=
|
|
plugin->wire_lookup_deposit_wtid (plugin->cls,
|
|
session,
|
|
&h_contract_wt,
|
|
&h_wire_wt,
|
|
&coin_pub_wt,
|
|
&merchant_pub_wt,
|
|
transaction_id_wt,
|
|
&cb_wtid_never,
|
|
NULL));
|
|
/* insert WT data */
|
|
FAILIF (GNUNET_OK !=
|
|
plugin->insert_aggregation_tracking (plugin->cls,
|
|
session,
|
|
&wtid_wt,
|
|
&merchant_pub_wt,
|
|
&h_wire_wt,
|
|
&h_contract_wt,
|
|
transaction_id_wt,
|
|
execution_time_wt,
|
|
&coin_pub_wt,
|
|
&coin_value_wt,
|
|
&coin_fee_wt));
|
|
FAILIF (GNUNET_OK !=
|
|
plugin->lookup_wire_transfer (plugin->cls,
|
|
session,
|
|
&wtid_wt,
|
|
&cb_wt_check,
|
|
&cb_wt_never));
|
|
FAILIF (GNUNET_OK !=
|
|
plugin->wire_lookup_deposit_wtid (plugin->cls,
|
|
session,
|
|
&h_contract_wt,
|
|
&h_wire_wt,
|
|
&coin_pub_wt,
|
|
&merchant_pub_wt,
|
|
transaction_id_wt,
|
|
&cb_wtid_check,
|
|
&cb_wtid_never));
|
|
result = 0;
|
|
|
|
drop:
|
|
if (NULL != wire)
|
|
json_decref (wire);
|
|
if (NULL != rh)
|
|
plugin->free_reserve_history (plugin->cls,
|
|
rh);
|
|
rh = NULL;
|
|
if (NULL != session)
|
|
GNUNET_break (GNUNET_OK ==
|
|
plugin->drop_tables (plugin->cls,
|
|
session));
|
|
if (NULL != dkp)
|
|
destroy_denom_key_pair (dkp);
|
|
if (NULL != cbc.sig.rsa_signature)
|
|
GNUNET_CRYPTO_rsa_signature_free (cbc.sig.rsa_signature);
|
|
if (NULL != cbc2.denom_pub.rsa_public_key)
|
|
GNUNET_CRYPTO_rsa_public_key_free (cbc2.denom_pub.rsa_public_key);
|
|
if (NULL != cbc2.sig.rsa_signature)
|
|
GNUNET_CRYPTO_rsa_signature_free (cbc2.sig.rsa_signature);
|
|
dkp = NULL;
|
|
TALER_EXCHANGEDB_plugin_unload (plugin);
|
|
plugin = NULL;
|
|
}
|
|
|
|
|
|
int
|
|
main (int argc,
|
|
char *const argv[])
|
|
{
|
|
const char *plugin_name;
|
|
char *config_filename;
|
|
char *testname;
|
|
struct GNUNET_CONFIGURATION_Handle *cfg;
|
|
|
|
result = -1;
|
|
if (NULL == (plugin_name = strrchr (argv[0], (int) '-')))
|
|
{
|
|
GNUNET_break (0);
|
|
return -1;
|
|
}
|
|
GNUNET_log_setup (argv[0],
|
|
"WARNING",
|
|
NULL);
|
|
plugin_name++;
|
|
(void) GNUNET_asprintf (&testname,
|
|
"test-exchange-db-%s", plugin_name);
|
|
(void) GNUNET_asprintf (&config_filename,
|
|
"%s.conf", testname);
|
|
cfg = GNUNET_CONFIGURATION_create ();
|
|
if (GNUNET_OK !=
|
|
GNUNET_CONFIGURATION_parse (cfg,
|
|
config_filename))
|
|
{
|
|
GNUNET_break (0);
|
|
GNUNET_free (config_filename);
|
|
GNUNET_free (testname);
|
|
return 2;
|
|
}
|
|
GNUNET_SCHEDULER_run (&run, cfg);
|
|
GNUNET_CONFIGURATION_destroy (cfg);
|
|
GNUNET_free (config_filename);
|
|
GNUNET_free (testname);
|
|
return result;
|
|
}
|