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/*
This file is part of TALER
Copyright (C) 2018-2022 Taler Systems SA
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 TALER; see the file COPYING. If not, see
<http://www.gnu.org/licenses/>
*/
/**
* @file testing/testing_api_cmd_batch_withdraw.c
* @brief implements the batch withdraw command
* @author Christian Grothoff
* @author Marcello Stanisci
*/
#include "platform.h"
#include "taler_exchange_service.h"
#include "taler_json_lib.h"
#include <microhttpd.h>
#include <gnunet/gnunet_curl_lib.h>
#include "taler_signatures.h"
#include "taler_extensions.h"
#include "taler_testing_lib.h"
/**
* Information we track per withdrawn coin.
*/
struct CoinState
{
/**
* String describing the denomination value we should withdraw.
* A corresponding denomination key must exist in the exchange's
* offerings. Can be NULL if @e pk is set instead.
*/
struct TALER_Amount amount;
/**
* If @e amount is NULL, this specifies the denomination key to
* use. Otherwise, this will be set (by the interpreter) to the
* denomination PK matching @e amount.
*/
struct TALER_EXCHANGE_DenomPublicKey *pk;
/**
* Private key of the coin.
*/
struct TALER_CoinSpendPrivateKeyP coin_priv;
/**
* Public key of the coin.
*/
struct TALER_CoinSpendPublicKeyP coin_pub;
/**
* Blinding key used during the operation.
*/
union GNUNET_CRYPTO_BlindingSecretP bks;
/**
* Values contributed from the exchange during the
* withdraw protocol.
*/
struct TALER_ExchangeWithdrawValues exchange_vals;
/**
* Set (by the interpreter) to the exchange's signature over the
* coin's public key.
*/
struct TALER_DenominationSignature sig;
/**
* Private key material of the coin, set by the interpreter.
*/
struct TALER_PlanchetMasterSecretP ps;
/**
* If age > 0, put here the corresponding age commitment with its proof and
* its hash, respectivelly.
*/
struct TALER_AgeCommitmentProof age_commitment_proof;
struct TALER_AgeCommitmentHash h_age_commitment;
/**
* Reserve history entry that corresponds to this coin.
* Will be of type #TALER_EXCHANGE_RTT_WITHDRAWAL.
*/
struct TALER_EXCHANGE_ReserveHistoryEntry reserve_history;
};
/**
* State for a "batch withdraw" CMD.
*/
struct BatchWithdrawState
{
/**
* Which reserve should we withdraw from?
*/
const char *reserve_reference;
/**
* Exchange base URL. Only used as offered trait.
*/
char *exchange_url;
/**
* URI if the reserve we are withdrawing from.
*/
char *reserve_payto_uri;
/**
* Private key of the reserve we are withdrawing from.
*/
struct TALER_ReservePrivateKeyP reserve_priv;
/**
* Public key of the reserve we are withdrawing from.
*/
struct TALER_ReservePublicKeyP reserve_pub;
/**
* Interpreter state (during command).
*/
struct TALER_TESTING_Interpreter *is;
/**
* Withdraw handle (while operation is running).
*/
struct TALER_EXCHANGE_BatchWithdrawHandle *wsh;
/**
* Array of coin states.
*/
struct CoinState *coins;
/**
* Set to the KYC requirement payto hash *if* the exchange replied with a
* request for KYC.
*/
struct TALER_PaytoHashP h_payto;
/**
* Set to the KYC requirement row *if* the exchange replied with
* a request for KYC.
*/
uint64_t requirement_row;
/**
* Length of the @e coins array.
*/
unsigned int num_coins;
/**
* Expected HTTP response code to the request.
*/
unsigned int expected_response_code;
/**
* An age > 0 signifies age restriction is required.
* Same for all coins in the batch.
*/
uint8_t age;
};
/**
* "batch withdraw" operation callback; checks that the
* response code is expected and store the exchange signature
* in the state.
*
* @param cls closure.
* @param wr withdraw response details
*/
static void
reserve_batch_withdraw_cb (void *cls,
const struct
TALER_EXCHANGE_BatchWithdrawResponse *wr)
{
struct BatchWithdrawState *ws = cls;
struct TALER_TESTING_Interpreter *is = ws->is;
ws->wsh = NULL;
if (ws->expected_response_code != wr->hr.http_status)
{
TALER_TESTING_unexpected_status (is,
wr->hr.http_status,
ws->expected_response_code);
return;
}
switch (wr->hr.http_status)
{
case MHD_HTTP_OK:
for (unsigned int i = 0; i<ws->num_coins; i++)
{
struct CoinState *cs = &ws->coins[i];
const struct TALER_EXCHANGE_PrivateCoinDetails *pcd
= &wr->details.ok.coins[i];
TALER_denom_sig_deep_copy (&cs->sig,
&pcd->sig);
cs->coin_priv = pcd->coin_priv;
GNUNET_CRYPTO_eddsa_key_get_public (&cs->coin_priv.eddsa_priv,
&cs->coin_pub.eddsa_pub);
cs->bks = pcd->bks;
cs->exchange_vals = pcd->exchange_vals;
}
break;
case MHD_HTTP_FORBIDDEN:
/* nothing to check */
break;
case MHD_HTTP_NOT_FOUND:
/* nothing to check */
break;
case MHD_HTTP_CONFLICT:
/* TODO[oec]: Check if age-requirement is the reason */
break;
case MHD_HTTP_GONE:
/* theoretically could check that the key was actually */
break;
case MHD_HTTP_UNAVAILABLE_FOR_LEGAL_REASONS:
/* nothing to check */
ws->requirement_row
= wr->details.unavailable_for_legal_reasons.requirement_row;
ws->h_payto
= wr->details.unavailable_for_legal_reasons.h_payto;
break;
default:
/* Unsupported status code (by test harness) */
GNUNET_log (GNUNET_ERROR_TYPE_WARNING,
"Batch withdraw test command does not support status code %u\n",
wr->hr.http_status);
GNUNET_break (0);
break;
}
TALER_TESTING_interpreter_next (is);
}
/**
* Run the command.
*/
static void
batch_withdraw_run (void *cls,
const struct TALER_TESTING_Command *cmd,
struct TALER_TESTING_Interpreter *is)
{
struct BatchWithdrawState *ws = cls;
const struct TALER_EXCHANGE_Keys *keys = TALER_TESTING_get_keys (is);
const struct TALER_ReservePrivateKeyP *rp;
const struct TALER_TESTING_Command *create_reserve;
const struct TALER_EXCHANGE_DenomPublicKey *dpk;
struct TALER_EXCHANGE_WithdrawCoinInput wcis[ws->num_coins];
(void) cmd;
ws->is = is;
create_reserve
= TALER_TESTING_interpreter_lookup_command (
is,
ws->reserve_reference);
if (NULL == create_reserve)
{
GNUNET_break (0);
TALER_TESTING_interpreter_fail (is);
return;
}
if (GNUNET_OK !=
TALER_TESTING_get_trait_reserve_priv (create_reserve,
&rp))
{
GNUNET_break (0);
TALER_TESTING_interpreter_fail (is);
return;
}
if (NULL == ws->exchange_url)
ws->exchange_url
= GNUNET_strdup (TALER_TESTING_get_exchange_url (is));
ws->reserve_priv = *rp;
GNUNET_CRYPTO_eddsa_key_get_public (&ws->reserve_priv.eddsa_priv,
&ws->reserve_pub.eddsa_pub);
ws->reserve_payto_uri
= TALER_reserve_make_payto (ws->exchange_url,
&ws->reserve_pub);
for (unsigned int i = 0; i<ws->num_coins; i++)
{
struct CoinState *cs = &ws->coins[i];
struct TALER_EXCHANGE_WithdrawCoinInput *wci = &wcis[i];
TALER_planchet_master_setup_random (&cs->ps);
dpk = TALER_TESTING_find_pk (keys,
&cs->amount,
ws->age > 0);
if (NULL == dpk)
{
GNUNET_log (GNUNET_ERROR_TYPE_ERROR,
"Failed to determine denomination key at %s\n",
(NULL != cmd) ? cmd->label : "<retried command>");
GNUNET_break (0);
TALER_TESTING_interpreter_fail (is);
return;
}
/* We copy the denomination key, as re-querying /keys
* would free the old one. */
cs->pk = TALER_EXCHANGE_copy_denomination_key (dpk);
cs->reserve_history.type = TALER_EXCHANGE_RTT_WITHDRAWAL;
GNUNET_assert (0 <=
TALER_amount_add (&cs->reserve_history.amount,
&cs->amount,
&cs->pk->fees.withdraw));
cs->reserve_history.details.withdraw.fee = cs->pk->fees.withdraw;
wci->pk = cs->pk;
wci->ps = &cs->ps;
wci->ach = &cs->h_age_commitment;
}
ws->wsh = TALER_EXCHANGE_batch_withdraw (
TALER_TESTING_interpreter_get_context (is),
TALER_TESTING_get_exchange_url (is),
keys,
rp,
ws->num_coins,
wcis,
&reserve_batch_withdraw_cb,
ws);
if (NULL == ws->wsh)
{
GNUNET_break (0);
TALER_TESTING_interpreter_fail (is);
return;
}
}
/**
* Free the state of a "withdraw" CMD, and possibly cancel
* a pending operation thereof.
*
* @param cls closure.
* @param cmd the command being freed.
*/
static void
batch_withdraw_cleanup (void *cls,
const struct TALER_TESTING_Command *cmd)
{
struct BatchWithdrawState *ws = cls;
if (NULL != ws->wsh)
{
TALER_TESTING_command_incomplete (ws->is,
cmd->label);
TALER_EXCHANGE_batch_withdraw_cancel (ws->wsh);
ws->wsh = NULL;
}
for (unsigned int i = 0; i<ws->num_coins; i++)
{
struct CoinState *cs = &ws->coins[i];
TALER_denom_sig_free (&cs->sig);
if (NULL != cs->pk)
{
TALER_EXCHANGE_destroy_denomination_key (cs->pk);
cs->pk = NULL;
}
if (0 < ws->age)
TALER_age_commitment_proof_free (&cs->age_commitment_proof);
}
GNUNET_free (ws->coins);
GNUNET_free (ws->exchange_url);
GNUNET_free (ws->reserve_payto_uri);
GNUNET_free (ws);
}
/**
* Offer internal data to a "withdraw" CMD state to other
* commands.
*
* @param cls closure
* @param[out] ret result (could be anything)
* @param trait name of the trait
* @param index index number of the object to offer.
* @return #GNUNET_OK on success
*/
static enum GNUNET_GenericReturnValue
batch_withdraw_traits (void *cls,
const void **ret,
const char *trait,
unsigned int index)
{
struct BatchWithdrawState *ws = cls;
struct CoinState *cs = &ws->coins[index];
struct TALER_TESTING_Trait traits[] = {
/* history entry MUST be first due to response code logic below! */
TALER_TESTING_make_trait_reserve_history (index,
&cs->reserve_history),
TALER_TESTING_make_trait_coin_priv (index,
&cs->coin_priv),
TALER_TESTING_make_trait_coin_pub (index,
&cs->coin_pub),
TALER_TESTING_make_trait_planchet_secrets (index,
&cs->ps),
TALER_TESTING_make_trait_blinding_key (index,
&cs->bks),
TALER_TESTING_make_trait_exchange_wd_value (index,
&cs->exchange_vals),
TALER_TESTING_make_trait_denom_pub (index,
cs->pk),
TALER_TESTING_make_trait_denom_sig (index,
&cs->sig),
TALER_TESTING_make_trait_reserve_priv (&ws->reserve_priv),
TALER_TESTING_make_trait_reserve_pub (&ws->reserve_pub),
TALER_TESTING_make_trait_amounts (index,
&cs->amount),
TALER_TESTING_make_trait_legi_requirement_row (&ws->requirement_row),
TALER_TESTING_make_trait_h_payto (&ws->h_payto),
TALER_TESTING_make_trait_payto_uri (ws->reserve_payto_uri),
TALER_TESTING_make_trait_exchange_url (ws->exchange_url),
TALER_TESTING_make_trait_age_commitment_proof (index,
ws->age > 0 ?
&cs->age_commitment_proof:
NULL),
TALER_TESTING_make_trait_h_age_commitment (index,
ws->age > 0 ?
&cs->h_age_commitment :
NULL),
TALER_TESTING_trait_end ()
};
if (index >= ws->num_coins)
return GNUNET_NO;
return TALER_TESTING_get_trait ((ws->expected_response_code == MHD_HTTP_OK)
? &traits[0] /* we have reserve history */
: &traits[1], /* skip reserve history */
ret,
trait,
index);
}
struct TALER_TESTING_Command
TALER_TESTING_cmd_batch_withdraw (const char *label,
const char *reserve_reference,
uint8_t age,
unsigned int expected_response_code,
const char *amount,
...)
{
struct BatchWithdrawState *ws;
unsigned int cnt;
va_list ap;
ws = GNUNET_new (struct BatchWithdrawState);
ws->age = age;
ws->reserve_reference = reserve_reference;
ws->expected_response_code = expected_response_code;
cnt = 1;
va_start (ap,
amount);
while (NULL != (va_arg (ap,
const char *)))
cnt++;
ws->num_coins = cnt;
ws->coins = GNUNET_new_array (cnt,
struct CoinState);
va_end (ap);
va_start (ap,
amount);
for (unsigned int i = 0; i<ws->num_coins; i++)
{
struct CoinState *cs = &ws->coins[i];
if (0 < age)
{
struct GNUNET_HashCode seed;
struct TALER_AgeMask mask;
mask = TALER_extensions_get_age_restriction_mask ();
GNUNET_CRYPTO_random_block (GNUNET_CRYPTO_QUALITY_WEAK,
&seed,
sizeof(seed));
TALER_age_restriction_commit (&mask,
age,
&seed,
&cs->age_commitment_proof);
TALER_age_commitment_hash (&cs->age_commitment_proof.commitment,
&cs->h_age_commitment);
}
if (GNUNET_OK !=
TALER_string_to_amount (amount,
&cs->amount))
{
GNUNET_log (GNUNET_ERROR_TYPE_ERROR,
"Failed to parse amount `%s' at %s\n",
amount,
label);
GNUNET_assert (0);
}
/* move on to next vararg! */
amount = va_arg (ap,
const char *);
}
GNUNET_assert (NULL == amount);
va_end (ap);
{
struct TALER_TESTING_Command cmd = {
.cls = ws,
.label = label,
.run = &batch_withdraw_run,
.cleanup = &batch_withdraw_cleanup,
.traits = &batch_withdraw_traits
};
return cmd;
}
}
/* end of testing_api_cmd_batch_withdraw.c */
|