2016-10-06 15:17:10 +02:00
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/*
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This file is part of TALER
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Copyright (C) 2016 Inria
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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, see <http://www.gnu.org/licenses/>
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*/
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/**
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* @file auditor/taler-auditor.c
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* @brief audits an exchange database.
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* @author Christian Grothoff
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*/
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#include "platform.h"
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#include <gnunet/gnunet_util_lib.h>
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2016-10-08 19:04:21 +02:00
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#include "taler_auditordb_plugin.h"
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2016-10-06 15:17:10 +02:00
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#include "taler_exchangedb_plugin.h"
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/**
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* Return value from main().
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*/
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static int global_ret;
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/**
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* Handle to access the exchange's database.
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*/
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static struct TALER_EXCHANGEDB_Plugin *edb;
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2016-11-17 14:31:44 +01:00
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/**
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* Our session with the #edb.
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*/
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static struct TALER_EXCHANGEDB_Session *esession;
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2016-10-06 15:17:10 +02:00
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/**
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* Handle to access the auditor's database.
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*/
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static struct TALER_AUDITORDB_Plugin *adb;
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2016-11-17 14:31:44 +01:00
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/**
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* Last reserve_in serial ID seen.
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*/
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static uint64_t reserve_in_serial_id;
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/**
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* Last reserve_out serial ID seen.
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*/
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static uint64_t reserve_out_serial_id;
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/**
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* Summary data we keep per reserve.
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*/
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struct ReserveSummary
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{
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/**
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* Public key of the reserve.
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*/
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struct TALER_ReservePublicKeyP reserve_pub;
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/**
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* Sum of all incoming transfers.
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*/
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struct TALER_Amount total_in;
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/**
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* Sum of all outgoing transfers.
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*/
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struct TALER_Amount total_out;
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};
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/**
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* Map from hash of reserve's public key to a `struct ReserveSummary`.
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*/
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static struct GNUNET_CONTAINER_MultiHashMap *reserves;
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/**
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* Function called with details about incoming wire transfers.
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*
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* @param cls NULL
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* @param rowid unique serial ID for the refresh session in our DB
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* @param reserve_pub public key of the reserve (also the WTID)
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* @param credit amount that was received
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* @param sender_account_details information about the sender's bank account
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* @param transfer_details information that uniquely identifies the wire transfer
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* @param execution_date when did we receive the funds
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* @return #GNUNET_OK to continue to iterate, #GNUNET_SYSERR to stop
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*/
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static int
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handle_reserve_in (void *cls,
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uint64_t rowid,
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const struct TALER_ReservePublicKeyP *reserve_pub,
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const struct TALER_Amount *credit,
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const json_t *sender_account_details,
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const json_t *transfer_details,
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struct GNUNET_TIME_Absolute execution_date)
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{
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struct GNUNET_HashCode key;
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struct ReserveSummary *rs;
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/* TODO: somewhere we need to check that 'reserve_in' data actually
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matches wire transfers from the bank. Not sure if this should be
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done within the core auditor logic though... */
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2016-11-17 15:15:13 +01:00
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GNUNET_assert (rowid >= reserve_in_serial_id); /* should be monotonically increasing */
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2016-11-17 14:47:47 +01:00
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reserve_in_serial_id = rowid + 1;
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2016-11-17 14:31:44 +01:00
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GNUNET_CRYPTO_hash (reserve_pub,
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sizeof (*reserve_pub),
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&key);
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rs = GNUNET_CONTAINER_multihashmap_get (reserves,
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&key);
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if (NULL == rs)
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{
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rs = GNUNET_new (struct ReserveSummary);
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rs->reserve_pub = *reserve_pub;
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rs->total_in = *credit;
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GNUNET_assert (GNUNET_OK ==
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TALER_amount_get_zero (credit->currency,
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&rs->total_out));
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GNUNET_assert (GNUNET_OK ==
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GNUNET_CONTAINER_multihashmap_put (reserves,
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&key,
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rs,
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GNUNET_CONTAINER_MULTIHASHMAPOPTION_UNIQUE_ONLY));
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}
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else
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{
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GNUNET_assert (GNUNET_OK ==
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TALER_amount_add (&rs->total_in,
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&rs->total_in,
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credit));
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}
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return GNUNET_OK;
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}
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/**
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* Function called with details about withdraw operations.
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*
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* @param cls closure
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* @param rowid unique serial ID for the refresh session in our DB
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* @param h_blind_ev blinded hash of the coin's public key
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* @param denom_pub public denomination key of the deposited coin
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* @param denom_sig signature over the deposited coin
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* @param reserve_pub public key of the reserve
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* @param reserve_sig signature over the withdraw operation
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* @param execution_date when did the wallet withdraw the coin
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* @param amount_with_fee amount that was withdrawn
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* @return #GNUNET_OK to continue to iterate, #GNUNET_SYSERR to stop
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*/
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static int
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handle_reserve_out (void *cls,
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uint64_t rowid,
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const struct GNUNET_HashCode *h_blind_ev,
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const struct TALER_DenominationPublicKey *denom_pub,
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const struct TALER_DenominationSignature *denom_sig,
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const struct TALER_ReservePublicKeyP *reserve_pub,
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const struct TALER_ReserveSignatureP *reserve_sig,
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struct GNUNET_TIME_Absolute execution_date,
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const struct TALER_Amount *amount_with_fee)
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{
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struct GNUNET_HashCode key;
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struct ReserveSummary *rs;
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/* TODO: check signatures, in particluar the reserve_sig! */
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2016-11-17 15:15:13 +01:00
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GNUNET_assert (rowid >= reserve_out_serial_id); /* should be monotonically increasing */
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2016-11-17 15:12:51 +01:00
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reserve_out_serial_id = rowid + 1;
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2016-11-17 14:31:44 +01:00
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GNUNET_CRYPTO_hash (reserve_pub,
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sizeof (*reserve_pub),
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&key);
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rs = GNUNET_CONTAINER_multihashmap_get (reserves,
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&key);
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if (NULL == rs)
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{
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rs = GNUNET_new (struct ReserveSummary);
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rs->reserve_pub = *reserve_pub;
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rs->total_out = *amount_with_fee;
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GNUNET_assert (GNUNET_OK ==
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TALER_amount_get_zero (amount_with_fee->currency,
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&rs->total_in));
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GNUNET_assert (GNUNET_OK ==
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GNUNET_CONTAINER_multihashmap_put (reserves,
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&key,
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rs,
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GNUNET_CONTAINER_MULTIHASHMAPOPTION_UNIQUE_ONLY));
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}
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else
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{
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GNUNET_assert (GNUNET_OK ==
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TALER_amount_add (&rs->total_out,
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&rs->total_out,
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amount_with_fee));
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}
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return GNUNET_OK;
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}
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/**
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* Check that the reserve summary matches what the exchange database
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* thinks about the reserve, and update our own state of the reserve.
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*
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* Remove all reserves that we are happy with from the DB.
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*
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* @param cls NULL
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* @param key hash of the reserve public key
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* @param value a `struct ReserveSummary`
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* @return #GNUNET_OK to process more entries
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*/
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static int
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verify_reserve_balance (void *cls,
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const struct GNUNET_HashCode *key,
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void *value)
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{
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struct ReserveSummary *rs = value;
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struct TALER_EXCHANGEDB_Reserve reserve;
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struct TALER_Amount balance;
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2016-11-17 15:17:27 +01:00
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reserve.pub = rs->reserve_pub;
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2016-11-17 14:31:44 +01:00
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if (GNUNET_OK !=
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edb->reserve_get (edb->cls,
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esession,
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&reserve))
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{
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GNUNET_break (0);
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2016-11-17 15:17:27 +01:00
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GNUNET_log (GNUNET_ERROR_TYPE_ERROR,
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"Failed to find summary for reserve `%s'\n",
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TALER_B2S (&rs->reserve_pub));
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2016-11-17 14:31:44 +01:00
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return GNUNET_OK;
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}
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/* TODO: check reserve.expiry? */
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/* FIXME: get previous reserve state from auditor DB */
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/* FIXME: simplified computation as we have no previous reserve state yet */
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if (GNUNET_SYSERR ==
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TALER_amount_subtract (&balance,
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&rs->total_in,
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&rs->total_out))
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{
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GNUNET_break (0);
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return GNUNET_OK;
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}
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if (0 != TALER_amount_cmp (&balance,
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&reserve.balance))
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{
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GNUNET_break (0);
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return GNUNET_OK;
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}
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2016-11-17 15:19:14 +01:00
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GNUNET_log (GNUNET_ERROR_TYPE_DEBUG,
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2016-11-17 15:19:45 +01:00
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"Reserve balance `%s' OK\n",
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TALER_B2S (&rs->reserve_pub));
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2016-11-17 14:31:44 +01:00
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/* FIXME: commit new reserve state from auditor DB */
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GNUNET_assert (GNUNET_YES ==
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GNUNET_CONTAINER_multihashmap_remove (reserves,
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key,
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rs));
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GNUNET_free (rs);
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return GNUNET_OK;
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}
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/**
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* Analyze reserves for being well-formed.
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*
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* @return #GNUNET_OK on success, #GNUNET_SYSERR on invariant violation
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*/
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static int
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analyze_reserves ()
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{
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reserves = GNUNET_CONTAINER_multihashmap_create (512,
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GNUNET_NO);
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2016-11-17 15:02:22 +01:00
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2016-11-17 14:31:44 +01:00
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/* FIXME: check return values... */
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edb->select_reserves_in_above_serial_id (edb->cls,
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esession,
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reserve_in_serial_id,
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&handle_reserve_in,
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NULL);
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edb->select_reserves_out_above_serial_id (edb->cls,
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esession,
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reserve_out_serial_id,
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&handle_reserve_out,
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NULL);
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GNUNET_CONTAINER_multihashmap_iterate (reserves,
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&verify_reserve_balance,
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NULL);
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/* FIXME: any values left in #reserves indicate errors! */
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GNUNET_CONTAINER_multihashmap_destroy (reserves);
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return GNUNET_OK;
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}
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2016-10-06 15:17:10 +02:00
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/**
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* Main function that will be run.
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*
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* @param cls closure
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* @param args remaining command-line arguments
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* @param cfgfile name of the configuration file used (for saving, can be NULL!)
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* @param cfg configuration
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*/
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static void
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run (void *cls,
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char *const *args,
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const char *cfgfile,
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const struct GNUNET_CONFIGURATION_Handle *cfg)
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{
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if (NULL ==
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(edb = TALER_EXCHANGEDB_plugin_load (cfg)))
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{
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fprintf (stderr,
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"Failed to initialize exchange database plugin.\n");
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global_ret = 1;
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return;
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}
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if (NULL ==
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(adb = TALER_AUDITORDB_plugin_load (cfg)))
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{
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fprintf (stderr,
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"Failed to initialize auditor database plugin.\n");
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global_ret = 1;
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TALER_EXCHANGEDB_plugin_unload (edb);
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return;
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}
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2016-11-17 14:31:44 +01:00
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esession = edb->get_session (edb->cls);
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if (NULL == esession)
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{
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fprintf (stderr,
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"Failed to initialize exchange session.\n");
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global_ret = 1;
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TALER_AUDITORDB_plugin_unload (adb);
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TALER_EXCHANGEDB_plugin_unload (edb);
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return;
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}
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/* FIXME: init these from auditordb */
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2016-11-17 15:02:22 +01:00
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reserve_in_serial_id = 1;
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reserve_out_serial_id = 1;
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2016-10-08 19:04:21 +02:00
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2016-11-17 14:31:44 +01:00
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analyze_reserves ();
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2016-10-08 19:04:21 +02:00
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2016-10-06 15:17:10 +02:00
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TALER_AUDITORDB_plugin_unload (adb);
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TALER_EXCHANGEDB_plugin_unload (edb);
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}
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/**
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* The main function of the database initialization tool.
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* Used to initialize the Taler Exchange's database.
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*
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* @param argc number of arguments from the command line
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* @param argv command line arguments
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* @return 0 ok, 1 on error
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*/
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int
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main (int argc,
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char *const *argv)
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{
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const struct GNUNET_GETOPT_CommandLineOption options[] = {
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GNUNET_GETOPT_OPTION_END
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};
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/* force linker to link against libtalerutil; if we do
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not do this, the linker may "optimize" libtalerutil
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away and skip #TALER_OS_init(), which we do need */
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(void) TALER_project_data_default ();
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GNUNET_assert (GNUNET_OK ==
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GNUNET_log_setup ("taler-auditor",
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"INFO",
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NULL));
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if (GNUNET_OK !=
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GNUNET_PROGRAM_run (argc,
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argv,
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"taler-auditor",
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"Audit Taler exchange database",
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options,
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&run,
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NULL))
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return 1;
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return global_ret;
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}
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/* end of taler-auditor.c */
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