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|
/*
This file is part of TALER
(C) 2014 GNUnet e.V.
TALER is free software; you can redistribute it and/or modify it under the
terms of the GNU Affero 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 Affero General Public License for more details.
You should have received a copy of the GNU Affero General Public License along with
TALER; see the file COPYING. If not, If not, see <http://www.gnu.org/licenses/>
*/
/**
* @file taler-mint-httpd_refresh.c
* @brief Handle /refresh/ requests
* @author Florian Dold
* @author Benedikt Mueller
* @author Christian Grothoff
*
* TODO:
* - split /refresh/reveal properly into parsing, DB-ops and response generation
* - error handling
* - document functions properly
*/
#include "platform.h"
#include <gnunet/gnunet_util_lib.h>
#include <jansson.h>
#include <microhttpd.h>
#include <libpq-fe.h>
#include <pthread.h>
#include "mint.h"
#include "mint_db.h"
#include "taler_signatures.h"
#include "taler_json_lib.h"
#include "taler-mint-httpd_parsing.h"
#include "taler-mint-httpd_keys.h"
#include "taler-mint-httpd_mhd.h"
#include "taler-mint-httpd_refresh.h"
#include "taler-mint-httpd_responses.h"
static int
check_confirm_signature (struct MHD_Connection *connection,
json_t *coin_info,
const struct GNUNET_CRYPTO_EcdsaPublicKey *coin_pub,
const struct GNUNET_CRYPTO_EddsaPublicKey *session_pub)
{
struct RefreshMeltConfirmSignRequestBody body;
struct GNUNET_CRYPTO_EcdsaSignature sig;
int res;
body.purpose.size = htonl (sizeof (struct RefreshMeltConfirmSignRequestBody));
body.purpose.purpose = htonl (TALER_SIGNATURE_REFRESH_MELT_CONFIRM);
body.session_pub = *session_pub;
res = GNUNET_MINT_parse_navigate_json (connection, coin_info,
JNAV_FIELD, "confirm_sig",
JNAV_RET_DATA,
&sig,
sizeof (struct GNUNET_CRYPTO_EcdsaSignature));
if (GNUNET_OK != res)
{
GNUNET_break (GNUNET_SYSERR != res);
return res;
}
if (GNUNET_OK !=
GNUNET_CRYPTO_ecdsa_verify (TALER_SIGNATURE_REFRESH_MELT_CONFIRM,
&body.purpose,
&sig,
coin_pub))
{
if (MHD_YES !=
TALER_MINT_reply_json_pack (connection,
MHD_HTTP_UNAUTHORIZED,
"{s:s}",
"error", "signature invalid"))
return GNUNET_SYSERR;
return GNUNET_NO;
}
return GNUNET_OK;
}
/**
* Extract public coin information from a JSON object.
*
* @param connection the connection to send error responses to
* @param root the JSON object to extract the coin info from
* @return #GNUNET_YES if coin public info in JSON was valid
* #GNUNET_NO JSON was invalid, response was generated
* #GNUNET_SYSERR on internal error
*/
static int
request_json_require_coin_public_info (struct MHD_Connection *connection,
json_t *root,
struct TALER_CoinPublicInfo *r_public_info)
{
int ret;
struct GNUNET_CRYPTO_rsa_Signature *sig;
struct GNUNET_CRYPTO_rsa_PublicKey *pk;
struct GNUNET_MINT_ParseFieldSpec spec[] =
{
TALER_MINT_PARSE_FIXED("coin_pub", &r_public_info->coin_pub),
TALER_MINT_PARSE_VARIABLE("denom_sig"),
TALER_MINT_PARSE_VARIABLE("denom_pub"),
TALER_MINT_PARSE_END
};
ret = TALER_MINT_parse_json_data (connection,
root,
spec);
if (GNUNET_OK != ret)
return ret;
sig = GNUNET_CRYPTO_rsa_signature_decode (spec[1].destination,
spec[1].destination_size_out);
pk = GNUNET_CRYPTO_rsa_public_key_decode (spec[2].destination,
spec[2].destination_size_out);
TALER_MINT_release_parsed_data (spec);
if ( (NULL == pk) ||
(NULL == sig) )
{
if (NULL != sig)
GNUNET_CRYPTO_rsa_signature_free (sig);
if (NULL != pk)
GNUNET_CRYPTO_rsa_public_key_free (pk);
// FIXME: send error reply...
return GNUNET_NO;
}
r_public_info->denom_sig = sig;
r_public_info->denom_pub = pk;
return GNUNET_OK;
}
/**
* Verify a signature that is encoded in a JSON object
*
* @param connection the connection to send errors to
* @param root the JSON object with the signature
* @param the public key that the signature was created with
* @param purpose the signed message
* @return #GNUNET_YES if the signature was valid
* #GNUNET_NO if the signature was invalid
* #GNUNET_SYSERR on internal error
*/
static int
request_json_check_signature (struct MHD_Connection *connection,
json_t *root,
struct GNUNET_CRYPTO_EddsaPublicKey *pub,
struct GNUNET_CRYPTO_EccSignaturePurpose *purpose)
{
struct GNUNET_CRYPTO_EddsaSignature signature;
int size;
uint32_t purpose_num;
int res;
json_t *el;
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "sig",
JNAV_RET_DATA,
&signature,
sizeof (struct GNUNET_CRYPTO_EddsaSignature));
if (GNUNET_OK != res)
return res;
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "purpose",
JNAV_RET_TYPED_JSON,
JSON_INTEGER,
&el);
if (GNUNET_OK != res)
return res;
purpose_num = json_integer_value (el);
if (purpose_num != ntohl (purpose->purpose))
{
GNUNET_log (GNUNET_ERROR_TYPE_WARNING, "signature invalid (purpose wrong)\n");
return TALER_MINT_reply_json_pack (connection,
MHD_HTTP_BAD_REQUEST,
"{s:s}",
"error", "signature invalid (purpose)");
}
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "size",
JNAV_RET_TYPED_JSON,
JSON_INTEGER,
&el);
if (GNUNET_OK != res)
return res;
size = json_integer_value (el);
if (size != ntohl (purpose->size))
{
GNUNET_log (GNUNET_ERROR_TYPE_WARNING, "signature invalid (size wrong)\n");
return TALER_MINT_reply_json_pack (connection,
MHD_HTTP_BAD_REQUEST,
GNUNET_NO, GNUNET_SYSERR,
"{s:s}",
"error", "signature invalid (size)");
}
if (GNUNET_OK != GNUNET_CRYPTO_eddsa_verify (purpose_num,
purpose,
&signature,
pub))
{
GNUNET_log (GNUNET_ERROR_TYPE_WARNING, "signature invalid (did not verify)\n");
return TALER_MINT_reply_json_pack (connection,
MHD_HTTP_UNAUTHORIZED,
"{s:s}",
"error",
"invalid signature (verification)");
}
return GNUNET_OK;
}
/**
* Handle a "/refresh/melt" request
*
* @param rh context of the handler
* @param connection the MHD connection to handle
* @param[IN|OUT] connection_cls the connection's closure (can be updated)
* @param upload_data upload data
* @param[IN|OUT] upload_data_size number of bytes (left) in @a upload_data
* @return MHD result code
*/
int
TALER_MINT_handler_refresh_melt (struct RequestHandler *rh,
struct MHD_Connection *connection,
void **connection_cls,
const char *upload_data,
size_t *upload_data_size)
{
json_t *root;
struct GNUNET_CRYPTO_EddsaPublicKey refresh_session_pub;
int res;
json_t *new_denoms;
unsigned int num_new_denoms;
unsigned int i;
struct GNUNET_CRYPTO_rsa_PublicKey **denom_pubs;
json_t *melt_coins;
struct TALER_CoinPublicInfo *coin_public_infos;
unsigned int coin_count;
struct GNUNET_HashContext *hash_context;
struct GNUNET_HashCode melt_hash;
struct MintKeyState *key_state;
struct RefreshMeltSignatureBody body;
json_t *melt_sig_json;
char *buf;
size_t buf_size;
res = TALER_MINT_parse_post_json (connection,
connection_cls,
upload_data,
upload_data_size,
&root);
if (GNUNET_SYSERR == res)
return MHD_NO;
if ( (GNUNET_NO == res) || (NULL == root) )
return MHD_YES;
/* session_pub field must always be present */
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "session_pub",
JNAV_RET_DATA,
&refresh_session_pub,
sizeof (struct GNUNET_CRYPTO_EddsaPublicKey));
if (GNUNET_OK != res)
{
// FIXME: return 'internal error'?
GNUNET_break (0);
return MHD_NO;
}
if (GNUNET_NO == res)
return MHD_YES;
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "new_denoms",
JNAV_RET_TYPED_JSON,
JSON_ARRAY,
&new_denoms);
if (GNUNET_OK != res)
return res;
num_new_denoms = json_array_size (new_denoms);
denom_pubs = GNUNET_malloc (num_new_denoms *
sizeof (struct GNUNET_CRYPTO_rsa_PublicKey *));
for (i=0;i<num_new_denoms;i++)
{
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "new_denoms",
JNAV_INDEX, (int) i,
JNAV_RET_DATA_VAR,
&buf,
&buf_size);
if (GNUNET_OK != res)
{
GNUNET_free (denom_pubs);
/* FIXME: proper cleanup! */
return res;
}
denom_pubs[i] = GNUNET_CRYPTO_rsa_public_key_decode (buf, buf_size);
GNUNET_free (buf);
if (NULL == denom_pubs[i])
{
GNUNET_free (denom_pubs);
/* FIXME: proper cleanup! */
/* FIXME: generate error reply */
return GNUNET_SYSERR;
}
}
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "melt_coins",
JNAV_RET_TYPED_JSON,
JSON_ARRAY,
&melt_coins);
if (GNUNET_OK != res)
{
// FIXME: leaks!
return res;
}
melt_sig_json = json_object_get (root,
"melt_signature");
if (NULL == melt_sig_json)
{
return TALER_MINT_reply_json_pack (connection,
MHD_HTTP_BAD_REQUEST,
"{s:s}",
"error",
"melt_signature missing");
}
coin_count = json_array_size (melt_coins);
coin_public_infos = GNUNET_malloc (coin_count *
sizeof (struct TALER_CoinPublicInfo));
key_state = TALER_MINT_key_state_acquire ();
for (i = 0; i < coin_count; i++)
{
/* decode JSON data on coin to melt */
res = request_json_require_coin_public_info (connection,
json_array_get (melt_coins, i),
&coin_public_infos[i]);
if (GNUNET_OK != res)
{
GNUNET_break (GNUNET_SYSERR != res);
// FIXME: leaks!
return res;
}
/* check that this coin's private key was used to sign that
we should melt it */
if (GNUNET_OK != (res = check_confirm_signature (connection,
json_array_get (melt_coins, i),
&coin_public_infos[i].coin_pub,
&refresh_session_pub)))
{
GNUNET_break (GNUNET_SYSERR != res);
// FIXME: leaks!
return res;
}
/* check mint signature on the coin */
if (GNUNET_OK != TALER_MINT_test_coin_valid (key_state,
&coin_public_infos[i]))
{
// FIXME: leaks!
return (MHD_YES ==
TALER_MINT_reply_json_pack (connection,
MHD_HTTP_NOT_FOUND,
"{s:s}",
"error", "coin invalid"))
? GNUNET_NO : GNUNET_SYSERR;
}
}
TALER_MINT_key_state_release (key_state);
/* check that signature from the session public key is ok */
hash_context = GNUNET_CRYPTO_hash_context_start ();
for (i = 0; i < num_new_denoms; i++)
{
buf_size = GNUNET_CRYPTO_rsa_public_key_encode (denom_pubs[i],
&buf);
GNUNET_CRYPTO_hash_context_read (hash_context,
buf,
buf_size);
GNUNET_free (buf);
}
for (i = 0; i < coin_count; i++)
GNUNET_CRYPTO_hash_context_read (hash_context,
&coin_public_infos[i].coin_pub,
sizeof (struct GNUNET_CRYPTO_EddsaPublicKey));
GNUNET_CRYPTO_hash_context_finish (hash_context,
&melt_hash);
body.melt_hash = melt_hash;
body.purpose.purpose = htonl (TALER_SIGNATURE_REFRESH_MELT);
body.purpose.size = htonl (sizeof (struct RefreshMeltSignatureBody));
if (GNUNET_OK !=
(res = request_json_check_signature (connection,
melt_sig_json,
&refresh_session_pub,
&body.purpose)))
{
// FIXME: generate proper error reply
return (GNUNET_SYSERR == res) ? MHD_NO : MHD_YES;
}
res = TALER_MINT_db_execute_refresh_melt (connection,
&refresh_session_pub,
num_new_denoms,
denom_pubs,
coin_count,
coin_public_infos);
// FIXME: free memory
return res;
}
/**
* Handle a "/refresh/commit" request
*
* @param rh context of the handler
* @param connection the MHD connection to handle
* @param[IN|OUT] connection_cls the connection's closure (can be updated)
* @param upload_data upload data
* @param[IN|OUT] upload_data_size number of bytes (left) in @a upload_data
* @return MHD result code
*/
int
TALER_MINT_handler_refresh_commit (struct RequestHandler *rh,
struct MHD_Connection *connection,
void **connection_cls,
const char *upload_data,
size_t *upload_data_size)
{
struct GNUNET_CRYPTO_EddsaPublicKey refresh_session_pub;
int res;
unsigned int i;
unsigned int j;
unsigned int kappa;
unsigned int num_oldcoins;
unsigned int num_newcoins;
struct GNUNET_HashCode commit_hash;
struct GNUNET_HashContext *hash_context;
json_t *root;
struct RefreshCommitSignatureBody body;
json_t *commit_sig_json;
struct RefreshCommitCoin **commit_coin;
struct RefreshCommitLink **commit_link;
json_t *coin_evs;
json_t *transfer_pubs;
json_t *coin_detail;
res = TALER_MINT_parse_post_json (connection,
connection_cls,
upload_data,
upload_data_size,
&root);
if (GNUNET_SYSERR == res)
return MHD_NO;
if ( (GNUNET_NO == res) || (NULL == root) )
return MHD_YES;
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "session_pub",
JNAV_RET_DATA,
&refresh_session_pub,
sizeof (struct GNUNET_CRYPTO_EddsaPublicKey));
if (GNUNET_OK != res)
{
GNUNET_break (GNUNET_SYSERR != res);
return (GNUNET_SYSERR == res) ? MHD_NO : MHD_YES;
}
/* Determine dimensionality of the request (kappa, #old and #new coins) */
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "coin_evs",
JNAV_RET_TYPED_JSON, JSON_ARRAY, &coin_evs);
if (GNUNET_OK != res)
return res;
kappa = json_array_size (coin_evs);
if (3 > kappa)
{
GNUNET_break_op (0);
// FIXME: generate error message
return MHD_NO;
}
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "coin_evs",
JNAV_INDEX, (int) 0,
JNAV_RET_DATA,
JSON_ARRAY, &coin_detail);
if (GNUNET_OK != res)
return res;
num_newcoins = json_array_size (coin_detail);
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "transfer_pubs",
JNAV_RET_TYPED_JSON, JSON_ARRAY, &transfer_pubs);
if (GNUNET_OK != res)
return res;
if (json_array_size (transfer_pubs) != kappa)
{
GNUNET_break_op (0);
// FIXME: generate error message
return MHD_NO;
}
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "transfer_pubs",
JNAV_INDEX, (int) 0,
JNAV_RET_DATA,
JSON_ARRAY, &coin_detail);
if (GNUNET_OK != res)
return res;
num_oldcoins = json_array_size (coin_detail);
hash_context = GNUNET_CRYPTO_hash_context_start ();
commit_coin = GNUNET_malloc (kappa *
sizeof (struct RefreshCommitCoin *));
for (i = 0; i < kappa; i++)
{
commit_coin[i] = GNUNET_malloc (num_newcoins *
sizeof (struct RefreshCommitCoin));
for (j = 0; j < num_newcoins; j++)
{
char *link_enc;
size_t link_enc_size;
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "coin_evs",
JNAV_INDEX, (int) i,
JNAV_INDEX, (int) j,
JNAV_RET_DATA_VAR,
&commit_coin[i][j].coin_ev,
&commit_coin[i][j].coin_ev_size);
if (GNUNET_OK != res)
{
// FIXME: return 'internal error'?
GNUNET_break (0);
GNUNET_CRYPTO_hash_context_abort (hash_context);
return (GNUNET_SYSERR == res) ? MHD_NO : MHD_YES;
}
GNUNET_CRYPTO_hash_context_read (hash_context,
commit_coin[i][j].coin_ev,
commit_coin[i][j].coin_ev_size);
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "link_encs",
JNAV_INDEX, (int) i,
JNAV_INDEX, (int) j,
JNAV_RET_DATA_VAR,
&link_enc,
&link_enc_size);
if (GNUNET_OK != res)
{
// FIXME: return 'internal error'?
GNUNET_break (0);
GNUNET_CRYPTO_hash_context_abort (hash_context);
return (GNUNET_SYSERR == res) ? MHD_NO : MHD_YES;
}
// FIXME: convert link_enc / link_enc_size to
// commit_coin[i][j].refresh_link!
GNUNET_CRYPTO_hash_context_read (hash_context,
link_enc,
link_enc_size);
}
}
commit_link = GNUNET_malloc (kappa *
sizeof (struct RefreshCommitLink *));
for (i = 0; i < kappa; i++)
{
commit_link[i] = GNUNET_malloc (num_oldcoins *
sizeof (struct RefreshCommitLink));
for (j = 0; j < num_oldcoins; j++)
{
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "transfer_pubs",
JNAV_INDEX, (int) i,
JNAV_INDEX, (int) j,
JNAV_RET_DATA,
&commit_link[i][j].transfer_pub,
sizeof (struct GNUNET_CRYPTO_EcdsaPublicKey));
if (GNUNET_OK != res)
{
GNUNET_break (GNUNET_SYSERR != res);
GNUNET_CRYPTO_hash_context_abort (hash_context);
return (GNUNET_SYSERR == res) ? MHD_NO : MHD_YES;
}
GNUNET_CRYPTO_hash_context_read (hash_context,
&commit_link[i][j].transfer_pub,
sizeof (struct GNUNET_CRYPTO_EcdsaPublicKey));
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "secret_encs",
JNAV_INDEX, (int) i,
JNAV_INDEX, (int) j,
JNAV_RET_DATA,
&commit_link[i][j].shared_secret_enc,
sizeof (struct GNUNET_HashCode));
if (GNUNET_OK != res)
{
GNUNET_break (GNUNET_SYSERR != res);
GNUNET_CRYPTO_hash_context_abort (hash_context);
return (GNUNET_SYSERR == res) ? MHD_NO : MHD_YES;
}
GNUNET_CRYPTO_hash_context_read (hash_context,
&commit_link[i][j].shared_secret_enc,
sizeof (struct GNUNET_HashCode));
}
}
GNUNET_CRYPTO_hash_context_finish (hash_context, &commit_hash);
commit_sig_json = json_object_get (root, "commit_signature");
if (NULL == commit_sig_json)
{
return TALER_MINT_reply_json_pack (connection,
MHD_HTTP_BAD_REQUEST,
"{s:s}",
"error",
"commit_signature missing");
}
body.commit_hash = commit_hash;
body.purpose.purpose = htonl (TALER_SIGNATURE_REFRESH_COMMIT);
body.purpose.size = htonl (sizeof (struct RefreshCommitSignatureBody));
if (GNUNET_OK != (res = request_json_check_signature (connection,
commit_sig_json,
&refresh_session_pub,
&body.purpose)))
{
return (GNUNET_SYSERR == res) ? MHD_NO : MHD_YES;
}
res = TALER_MINT_db_execute_refresh_commit (connection,
&refresh_session_pub,
kappa,
num_oldcoins,
num_newcoins,
commit_coin,
commit_link);
// FIXME: free memory
return res;
}
/**
* Handle a "/refresh/reveal" request
*
* @param rh context of the handler
* @param connection the MHD connection to handle
* @param[IN|OUT] connection_cls the connection's closure (can be updated)
* @param upload_data upload data
* @param[IN|OUT] upload_data_size number of bytes (left) in @a upload_data
* @return MHD result code
*/
int
TALER_MINT_handler_refresh_reveal (struct RequestHandler *rh,
struct MHD_Connection *connection,
void **connection_cls,
const char *upload_data,
size_t *upload_data_size)
{
struct GNUNET_CRYPTO_EddsaPublicKey refresh_session_pub;
int res;
unsigned int kappa;
unsigned int num_oldcoins;
json_t *transfer_p;
json_t *reveal_detail;
unsigned int i;
unsigned int j;
json_t *root;
struct GNUNET_CRYPTO_EcdsaPrivateKey **transfer_privs;
res = TALER_MINT_parse_post_json (connection,
connection_cls,
upload_data,
upload_data_size,
&root);
if (GNUNET_SYSERR == res)
return MHD_NO;
if ( (GNUNET_NO == res) || (NULL == root) )
return MHD_YES;
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "session_pub",
JNAV_RET_DATA,
&refresh_session_pub,
sizeof (struct GNUNET_CRYPTO_EddsaPublicKey));
if (GNUNET_OK != res)
{
GNUNET_break (GNUNET_SYSERR != res);
return res;
}
/* Determine dimensionality of the request (kappa and #old coins) */
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "transfer_privs",
JNAV_RET_TYPED_JSON, JSON_ARRAY, &transfer_p);
if (GNUNET_OK != res)
return res;
kappa = json_array_size (transfer_p) + 1; /* 1 row is missing */
if (3 > kappa)
{
GNUNET_break_op (0);
// FIXME: generate error message
return MHD_NO;
}
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "transfer_privs",
JNAV_INDEX, 0,
JNAV_RET_TYPED_JSON, JSON_ARRAY, &reveal_detail);
if (GNUNET_OK != res)
return res;
num_oldcoins = json_array_size (reveal_detail);
transfer_privs = GNUNET_malloc ((kappa - 1) *
sizeof (struct GNUNET_CRYPTO_EcdsaPrivateKey *));
for (i = 0; i < kappa - 1; i++)
{
transfer_privs[i] = GNUNET_malloc (num_oldcoins *
sizeof (struct GNUNET_CRYPTO_EcdsaPrivateKey));
for (j = 0; j < num_oldcoins; j++)
{
res = GNUNET_MINT_parse_navigate_json (connection, root,
JNAV_FIELD, "transfer_privs",
JNAV_INDEX, (int) i,
JNAV_INDEX, (int) j,
JNAV_RET_DATA,
&transfer_privs[i][j],
sizeof (struct GNUNET_CRYPTO_EddsaPrivateKey));
if (GNUNET_OK != res)
{
GNUNET_break (0);
// FIXME: return 'internal error'?
return MHD_NO;
}
}
}
res = TALER_MINT_db_execute_refresh_reveal (connection,
&refresh_session_pub,
kappa,
num_oldcoins,
transfer_privs);
// FIXME: free memory
return res;
}
/**
* Handle a "/refresh/link" request
*
* @param rh context of the handler
* @param connection the MHD connection to handle
* @param[IN|OUT] connection_cls the connection's closure (can be updated)
* @param upload_data upload data
* @param[IN|OUT] upload_data_size number of bytes (left) in @a upload_data
* @return MHD result code
*/
int
TALER_MINT_handler_refresh_link (struct RequestHandler *rh,
struct MHD_Connection *connection,
void **connection_cls,
const char *upload_data,
size_t *upload_data_size)
{
struct GNUNET_CRYPTO_EcdsaPublicKey coin_pub;
int res;
res = TALER_MINT_mhd_request_arg_data (connection,
"coin_pub",
&coin_pub,
sizeof (struct GNUNET_CRYPTO_EcdsaPublicKey));
if (GNUNET_SYSERR == res)
{
// FIXME: return 'internal error'
GNUNET_break (0);
return MHD_NO;
}
if (GNUNET_OK != res)
return MHD_YES;
return TALER_MINT_db_execute_refresh_link (connection,
&coin_pub);
}
/* end of taler-mint-httpd_refresh.c */
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