cb55c1a3af
This change enables using multiple wire plugins at the same time. Also, we now distinguish between the wire plugin (i.e. EBICS or taler_bank) and the wire method (i.e. SEPA or x-taler-bank) that the wire plugin is implementing. The "taler-bank" wire method was renamed from "test" to "x-taler-bank". This also changes the format of the /wire response of the exchange, as we now need to return multiple accounts. Note that wire fees are specified per wire method, not per wire account. taler-exchange-keyup now automatically signs all of the /wire responses in the location specified by the configuration. Account identification in wire plugins was changed to use payto://-URLs instead of method-specific JSON fields. Signing and validation of /wire responses was moved from each wire plugin to a generic validation method in libtalerutil (crypto) or libtalerjson (for JSON-formatted inputs). Convenience methods were added to generate JSON for wire accounts (salting, signing). Various section and option names were adjusted to streamline the configuration and make it more consistent overall. Documentation was updated as well.
545 lines
19 KiB
C
545 lines
19 KiB
C
/*
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This file is part of TALER
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Copyright (C) 2014, 2015 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, see
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<http://www.gnu.org/licenses/>
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*/
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/**
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* @file exchange-lib/exchange_api_deposit.c
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* @brief Implementation of the /deposit request of the exchange's HTTP API
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* @author Sree Harsha Totakura <sreeharsha@totakura.in>
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* @author Christian Grothoff
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*/
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#include "platform.h"
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#include <curl/curl.h>
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#include <jansson.h>
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#include <microhttpd.h> /* just for HTTP status codes */
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#include <gnunet/gnunet_util_lib.h>
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#include <gnunet/gnunet_json_lib.h>
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#include <gnunet/gnunet_curl_lib.h>
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#include "taler_json_lib.h"
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#include "taler_exchange_service.h"
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#include "exchange_api_handle.h"
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#include "taler_signatures.h"
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/**
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* @brief A Deposit Handle
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*/
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struct TALER_EXCHANGE_DepositHandle
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{
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/**
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* The connection to exchange this request handle will use
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*/
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struct TALER_EXCHANGE_Handle *exchange;
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/**
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* The url for this request.
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*/
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char *url;
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/**
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* JSON encoding of the request to POST.
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*/
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char *json_enc;
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/**
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* Handle for the request.
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*/
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struct GNUNET_CURL_Job *job;
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/**
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* Function to call with the result.
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*/
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TALER_EXCHANGE_DepositResultCallback cb;
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/**
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* Closure for @a cb.
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*/
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void *cb_cls;
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/**
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* Information the exchange should sign in response.
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*/
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struct TALER_DepositConfirmationPS depconf;
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/**
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* Value of the /deposit transaction, including fee.
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*/
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struct TALER_Amount amount_with_fee;
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/**
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* Total value of the coin being transacted with.
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*/
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struct TALER_Amount coin_value;
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};
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/**
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* Verify that the signature on the "200 OK" response
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* from the exchange is valid.
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*
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* @param dh deposit handle
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* @param json json reply with the signature
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* @param exchange_pub set to the exchange's public key
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* @return #GNUNET_OK if the signature is valid, #GNUNET_SYSERR if not
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*/
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static int
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verify_deposit_signature_ok (const struct TALER_EXCHANGE_DepositHandle *dh,
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const json_t *json,
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struct TALER_ExchangePublicKeyP *exchange_pub)
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{
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struct TALER_ExchangeSignatureP exchange_sig;
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const struct TALER_EXCHANGE_Keys *key_state;
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struct GNUNET_JSON_Specification spec[] = {
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GNUNET_JSON_spec_fixed_auto ("sig", &exchange_sig),
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GNUNET_JSON_spec_fixed_auto ("pub", exchange_pub),
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GNUNET_JSON_spec_end()
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};
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if (GNUNET_OK !=
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GNUNET_JSON_parse (json,
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spec,
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NULL, NULL))
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{
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GNUNET_break_op (0);
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return GNUNET_SYSERR;
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}
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key_state = TALER_EXCHANGE_get_keys (dh->exchange);
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if (GNUNET_OK !=
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TALER_EXCHANGE_test_signing_key (key_state,
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exchange_pub))
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{
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GNUNET_break_op (0);
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return GNUNET_SYSERR;
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}
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if (GNUNET_OK !=
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GNUNET_CRYPTO_eddsa_verify (TALER_SIGNATURE_EXCHANGE_CONFIRM_DEPOSIT,
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&dh->depconf.purpose,
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&exchange_sig.eddsa_signature,
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&exchange_pub->eddsa_pub))
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{
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GNUNET_break_op (0);
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return GNUNET_SYSERR;
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}
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return GNUNET_OK;
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}
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/**
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* Verify that the signatures on the "403 FORBIDDEN" response from the
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* exchange demonstrating customer double-spending are valid.
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*
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* @param dh deposit handle
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* @param json json reply with the signature(s) and transaction history
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* @return #GNUNET_OK if the signature(s) is valid, #GNUNET_SYSERR if not
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*/
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static int
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verify_deposit_signature_forbidden (const struct TALER_EXCHANGE_DepositHandle *dh,
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const json_t *json)
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{
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json_t *history;
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struct TALER_Amount total;
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history = json_object_get (json,
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"history");
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if (GNUNET_OK !=
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TALER_EXCHANGE_verify_coin_history (dh->coin_value.currency,
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&dh->depconf.coin_pub,
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history,
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&total))
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{
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GNUNET_break_op (0);
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return GNUNET_SYSERR;
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}
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if (GNUNET_OK !=
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TALER_amount_add (&total,
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&total,
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&dh->amount_with_fee))
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{
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/* clearly not OK if our transaction would have caused
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the overflow... */
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return GNUNET_OK;
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}
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if (0 >= TALER_amount_cmp (&total,
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&dh->coin_value))
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{
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/* transaction should have still fit */
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GNUNET_break (0);
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return GNUNET_SYSERR;
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}
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/* everything OK, proof of double-spending was provided */
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return GNUNET_OK;
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}
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/**
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* Function called when we're done processing the
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* HTTP /deposit request.
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*
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* @param cls the `struct TALER_EXCHANGE_DepositHandle`
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* @param response_code HTTP response code, 0 on error
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* @param json parsed JSON result, NULL on error
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*/
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static void
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handle_deposit_finished (void *cls,
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long response_code,
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const json_t *json)
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{
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struct TALER_EXCHANGE_DepositHandle *dh = cls;
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struct TALER_ExchangePublicKeyP exchange_pub;
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struct TALER_ExchangePublicKeyP *ep = NULL;
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dh->job = NULL;
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switch (response_code)
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{
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case 0:
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break;
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case MHD_HTTP_OK:
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if (GNUNET_OK !=
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verify_deposit_signature_ok (dh,
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json,
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&exchange_pub))
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{
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GNUNET_break_op (0);
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response_code = 0;
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}
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else
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{
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ep = &exchange_pub;
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}
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break;
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case MHD_HTTP_BAD_REQUEST:
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/* This should never happen, either us or the exchange is buggy
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(or API version conflict); just pass JSON reply to the application */
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break;
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case MHD_HTTP_FORBIDDEN:
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/* Double spending; check signatures on transaction history */
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if (GNUNET_OK !=
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verify_deposit_signature_forbidden (dh,
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json))
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{
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GNUNET_break_op (0);
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response_code = 0;
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}
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break;
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case MHD_HTTP_UNAUTHORIZED:
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/* Nothing really to verify, exchange says one of the signatures is
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invalid; as we checked them, this should never happen, we
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should pass the JSON reply to the application */
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break;
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case MHD_HTTP_NOT_FOUND:
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/* Nothing really to verify, this should never
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happen, we should pass the JSON reply to the application */
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break;
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case MHD_HTTP_INTERNAL_SERVER_ERROR:
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/* Server had an internal issue; we should retry, but this API
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leaves this to the application */
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break;
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default:
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/* unexpected response code */
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GNUNET_log (GNUNET_ERROR_TYPE_ERROR,
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"Unexpected response code %u\n",
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(unsigned int) response_code);
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GNUNET_break (0);
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response_code = 0;
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break;
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}
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dh->cb (dh->cb_cls,
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response_code,
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TALER_JSON_get_error_code (json),
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ep,
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json);
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TALER_EXCHANGE_deposit_cancel (dh);
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}
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/**
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* Verify signature information about the deposit.
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*
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* @param dki public key information
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* @param amount the amount to be deposited
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* @param h_wire hash of the merchant’s account details
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* @param h_contract_terms hash of the contact of the merchant with the customer (further details are never disclosed to the exchange)
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* @param coin_pub coin’s public key
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* @param denom_pub denomination key with which the coin is signed
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* @param denom_sig exchange’s unblinded signature of the coin
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* @param timestamp timestamp when the deposit was finalized
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* @param merchant_pub the public key of the merchant (used to identify the merchant for refund requests)
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* @param refund_deadline date until which the merchant can issue a refund to the customer via the exchange (can be zero if refunds are not allowed)
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* @param coin_sig the signature made with purpose #TALER_SIGNATURE_WALLET_COIN_DEPOSIT made by the customer with the coin’s private key.
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* @return #GNUNET_OK if signatures are OK, #GNUNET_SYSERR if not
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*/
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static int
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verify_signatures (const struct TALER_EXCHANGE_DenomPublicKey *dki,
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const struct TALER_Amount *amount,
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const struct GNUNET_HashCode *h_wire,
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const struct GNUNET_HashCode *h_contract_terms,
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const struct TALER_CoinSpendPublicKeyP *coin_pub,
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const struct TALER_DenominationSignature *denom_sig,
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const struct TALER_DenominationPublicKey *denom_pub,
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struct GNUNET_TIME_Absolute timestamp,
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const struct TALER_MerchantPublicKeyP *merchant_pub,
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struct GNUNET_TIME_Absolute refund_deadline,
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const struct TALER_CoinSpendSignatureP *coin_sig)
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{
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struct TALER_DepositRequestPS dr;
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struct TALER_CoinPublicInfo coin_info;
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dr.purpose.purpose = htonl (TALER_SIGNATURE_WALLET_COIN_DEPOSIT);
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dr.purpose.size = htonl (sizeof (struct TALER_DepositRequestPS));
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dr.h_contract_terms = *h_contract_terms;
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dr.h_wire = *h_wire;
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dr.timestamp = GNUNET_TIME_absolute_hton (timestamp);
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dr.refund_deadline = GNUNET_TIME_absolute_hton (refund_deadline);
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TALER_amount_hton (&dr.amount_with_fee,
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amount);
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TALER_amount_hton (&dr.deposit_fee,
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&dki->fee_deposit);
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dr.merchant = *merchant_pub;
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dr.coin_pub = *coin_pub;
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if (GNUNET_OK !=
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GNUNET_CRYPTO_eddsa_verify (TALER_SIGNATURE_WALLET_COIN_DEPOSIT,
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&dr.purpose,
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&coin_sig->eddsa_signature,
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&coin_pub->eddsa_pub))
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{
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GNUNET_break_op (0);
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TALER_LOG_WARNING ("Invalid coin signature on /deposit request!\n");
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{
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TALER_LOG_DEBUG ("... amount_with_fee was %s\n",
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TALER_amount2s (amount));
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TALER_LOG_DEBUG ("... deposit_fee was %s\n",
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TALER_amount2s (&dki->fee_deposit));
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}
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return GNUNET_SYSERR;
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}
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/* check coin signature */
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coin_info.coin_pub = *coin_pub;
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coin_info.denom_pub = *denom_pub;
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coin_info.denom_sig = *denom_sig;
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if (GNUNET_YES !=
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TALER_test_coin_valid (&coin_info))
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{
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GNUNET_break_op (0);
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TALER_LOG_WARNING ("Invalid coin passed for /deposit\n");
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return GNUNET_SYSERR;
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}
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if (0 < TALER_amount_cmp (&dki->fee_deposit,
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amount))
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{
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GNUNET_break_op (0);
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TALER_LOG_WARNING ("Deposit amount smaller than fee\n");
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return GNUNET_SYSERR;
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}
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return GNUNET_OK;
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}
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/**
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* Submit a deposit permission to the exchange and get the exchange's response.
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* Note that while we return the response verbatim to the caller for
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* further processing, we do already verify that the response is
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* well-formed (i.e. that signatures included in the response are all
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* valid). If the exchange's reply is not well-formed, we return an
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* HTTP status code of zero to @a cb.
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*
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* We also verify that the @a coin_sig is valid for this deposit
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* request, and that the @a ub_sig is a valid signature for @a
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* coin_pub. Also, the @a exchange must be ready to operate (i.e. have
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* finished processing the /keys reply). If either check fails, we do
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* NOT initiate the transaction with the exchange and instead return NULL.
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*
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* @param exchange the exchange handle; the exchange must be ready to operate
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* @param amount the amount to be deposited
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* @param wire_deadline date until which the merchant would like the exchange to settle the balance (advisory, the exchange cannot be
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* forced to settle in the past or upon very short notice, but of course a well-behaved exchange will limit aggregation based on the advice received)
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* @param wire_details the merchant’s account details, in a format supported by the exchange
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* @param h_contract_terms hash of the contact of the merchant with the customer (further details are never disclosed to the exchange)
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* @param coin_pub coin’s public key
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* @param denom_pub denomination key with which the coin is signed
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* @param denom_sig exchange’s unblinded signature of the coin
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* @param timestamp timestamp when the contract was finalized, must not be too far in the future
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* @param merchant_pub the public key of the merchant (used to identify the merchant for refund requests)
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* @param refund_deadline date until which the merchant can issue a refund to the customer via the exchange (can be zero if refunds are not allowed); must not be after the @a wire_deadline
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* @param coin_sig the signature made with purpose #TALER_SIGNATURE_WALLET_COIN_DEPOSIT made by the customer with the coin’s private key.
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* @param cb the callback to call when a reply for this request is available
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* @param cb_cls closure for the above callback
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* @return a handle for this request; NULL if the inputs are invalid (i.e.
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* signatures fail to verify). In this case, the callback is not called.
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*/
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struct TALER_EXCHANGE_DepositHandle *
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TALER_EXCHANGE_deposit (struct TALER_EXCHANGE_Handle *exchange,
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const struct TALER_Amount *amount,
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struct GNUNET_TIME_Absolute wire_deadline,
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json_t *wire_details,
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const struct GNUNET_HashCode *h_contract_terms,
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const struct TALER_CoinSpendPublicKeyP *coin_pub,
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const struct TALER_DenominationSignature *denom_sig,
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const struct TALER_DenominationPublicKey *denom_pub,
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struct GNUNET_TIME_Absolute timestamp,
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const struct TALER_MerchantPublicKeyP *merchant_pub,
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struct GNUNET_TIME_Absolute refund_deadline,
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const struct TALER_CoinSpendSignatureP *coin_sig,
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TALER_EXCHANGE_DepositResultCallback cb,
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void *cb_cls)
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{
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const struct TALER_EXCHANGE_Keys *key_state;
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const struct TALER_EXCHANGE_DenomPublicKey *dki;
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struct TALER_EXCHANGE_DepositHandle *dh;
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struct GNUNET_CURL_Context *ctx;
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json_t *deposit_obj;
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CURL *eh;
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struct GNUNET_HashCode h_wire;
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struct TALER_Amount amount_without_fee;
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(void) GNUNET_TIME_round_abs (&wire_deadline);
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(void) GNUNET_TIME_round_abs (&refund_deadline);
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GNUNET_assert (refund_deadline.abs_value_us <= wire_deadline.abs_value_us);
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GNUNET_assert (GNUNET_YES ==
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MAH_handle_is_ready (exchange));
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/* initialize h_wire */
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if (GNUNET_OK !=
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TALER_JSON_wire_signature_hash (wire_details,
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&h_wire))
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{
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GNUNET_break (0);
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return NULL;
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}
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key_state = TALER_EXCHANGE_get_keys (exchange);
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dki = TALER_EXCHANGE_get_denomination_key (key_state,
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denom_pub);
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GNUNET_assert (NULL != dki);
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GNUNET_assert (GNUNET_SYSERR !=
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TALER_amount_subtract (&amount_without_fee,
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amount,
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&dki->fee_deposit));
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if (GNUNET_OK !=
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verify_signatures (dki,
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amount,
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&h_wire,
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h_contract_terms,
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coin_pub,
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denom_sig,
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denom_pub,
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timestamp,
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merchant_pub,
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refund_deadline,
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coin_sig))
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{
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GNUNET_break_op (0);
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return NULL;
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}
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deposit_obj = json_pack ("{s:o, s:O," /* f/wire */
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" s:o, s:o," /* H_wire, h_contract_terms */
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" s:o, s:o," /* coin_pub, denom_pub */
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" s:o, s:o," /* ub_sig, timestamp */
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" s:o," /* merchant_pub */
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" s:o, s:o," /* refund_deadline, wire_deadline */
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" s:o}", /* coin_sig */
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"contribution", TALER_JSON_from_amount (amount),
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"wire", wire_details,
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"H_wire", GNUNET_JSON_from_data_auto (&h_wire),
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"h_contract_terms", GNUNET_JSON_from_data_auto (h_contract_terms),
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"coin_pub", GNUNET_JSON_from_data_auto (coin_pub),
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"denom_pub", GNUNET_JSON_from_rsa_public_key (denom_pub->rsa_public_key),
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"ub_sig", GNUNET_JSON_from_rsa_signature (denom_sig->rsa_signature),
|
||
"timestamp", GNUNET_JSON_from_time_abs (timestamp),
|
||
"merchant_pub", GNUNET_JSON_from_data_auto (merchant_pub),
|
||
"refund_deadline", GNUNET_JSON_from_time_abs (refund_deadline),
|
||
"wire_transfer_deadline", GNUNET_JSON_from_time_abs (wire_deadline),
|
||
"coin_sig", GNUNET_JSON_from_data_auto (coin_sig)
|
||
);
|
||
if (NULL == deposit_obj)
|
||
{
|
||
GNUNET_break (0);
|
||
return NULL;
|
||
}
|
||
|
||
dh = GNUNET_new (struct TALER_EXCHANGE_DepositHandle);
|
||
dh->exchange = exchange;
|
||
dh->cb = cb;
|
||
dh->cb_cls = cb_cls;
|
||
dh->url = MAH_path_to_url (exchange, "/deposit");
|
||
dh->depconf.purpose.size = htonl (sizeof (struct TALER_DepositConfirmationPS));
|
||
dh->depconf.purpose.purpose = htonl (TALER_SIGNATURE_EXCHANGE_CONFIRM_DEPOSIT);
|
||
dh->depconf.h_contract_terms = *h_contract_terms;
|
||
dh->depconf.h_wire = h_wire;
|
||
dh->depconf.timestamp = GNUNET_TIME_absolute_hton (timestamp);
|
||
dh->depconf.refund_deadline = GNUNET_TIME_absolute_hton (refund_deadline);
|
||
TALER_amount_hton (&dh->depconf.amount_without_fee,
|
||
&amount_without_fee);
|
||
dh->depconf.coin_pub = *coin_pub;
|
||
dh->depconf.merchant = *merchant_pub;
|
||
dh->amount_with_fee = *amount;
|
||
dh->coin_value = dki->value;
|
||
|
||
eh = curl_easy_init ();
|
||
GNUNET_assert (NULL != (dh->json_enc =
|
||
json_dumps (deposit_obj,
|
||
JSON_COMPACT)));
|
||
json_decref (deposit_obj);
|
||
GNUNET_log (GNUNET_ERROR_TYPE_DEBUG,
|
||
"URL for deposit: `%s'\n",
|
||
dh->url);
|
||
GNUNET_assert (CURLE_OK ==
|
||
curl_easy_setopt (eh,
|
||
CURLOPT_URL,
|
||
dh->url));
|
||
GNUNET_assert (CURLE_OK ==
|
||
curl_easy_setopt (eh,
|
||
CURLOPT_POSTFIELDS,
|
||
dh->json_enc));
|
||
GNUNET_assert (CURLE_OK ==
|
||
curl_easy_setopt (eh,
|
||
CURLOPT_POSTFIELDSIZE,
|
||
strlen (dh->json_enc)));
|
||
ctx = MAH_handle_to_context (exchange);
|
||
dh->job = GNUNET_CURL_job_add (ctx,
|
||
eh,
|
||
GNUNET_YES,
|
||
&handle_deposit_finished,
|
||
dh);
|
||
return dh;
|
||
}
|
||
|
||
|
||
/**
|
||
* Cancel a deposit permission request. This function cannot be used
|
||
* on a request handle if a response is already served for it.
|
||
*
|
||
* @param deposit the deposit permission request handle
|
||
*/
|
||
void
|
||
TALER_EXCHANGE_deposit_cancel (struct TALER_EXCHANGE_DepositHandle *deposit)
|
||
{
|
||
if (NULL != deposit->job)
|
||
{
|
||
GNUNET_CURL_job_cancel (deposit->job);
|
||
deposit->job = NULL;
|
||
}
|
||
GNUNET_free (deposit->url);
|
||
GNUNET_free (deposit->json_enc);
|
||
GNUNET_free (deposit);
|
||
}
|
||
|
||
|
||
/* end of exchange_api_deposit.c */
|