exchange/src/mintdb/perf_taler_mintdb_interpreter.c

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/*
This file is part of TALER
Copyright (C) 2014, 2015 Christian Grothoff (and other contributing authors)
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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.
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You should have received a copy of the GNU General Public License along with
TALER; see the file COPYING. If not, If not, see <http://www.gnu.org/licenses/>
*/
/**
* @file mintdb/perf_taler_mintdb_interpreter.c
* @brief Interpreter library for mint database performance analysis
* @author Nicolas Fournier
*/
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#include "platform.h"
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#include "perf_taler_mintdb_interpreter.h"
#include "perf_taler_mintdb_init.h"
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#include "gauger.h"
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/**
* Represents the state of the interpreter
*/
struct PERF_TALER_MINTDB_interpreter_state
{
/**
* State of the commands
*/
struct PERF_TALER_MINTDB_Cmd *cmd;
/**
* Database plugin
*/
struct TALER_MINTDB_Plugin *plugin;
/**
* Current database session
*/
struct TALER_MINTDB_Session *session;
/**
* The current index of the interpreter
*/
unsigned int i;
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};
/**
* Free the memory of @a data, with data of type @a type
*/
static void
data_free (union PERF_TALER_MINTDB_Data *data, enum PERF_TALER_MINTDB_Type type)
{
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switch (type)
{
case PERF_TALER_MINTDB_DEPOSIT:
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PERF_TALER_MINTDB_deposit_free (data->deposit);
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data->deposit = NULL;
return;
case PERF_TALER_MINTDB_BLINDCOIN:
PERF_TALER_MINTDB_collectable_blindcoin_free (data->blindcoin);
data->blindcoin = NULL;
return;
case PERF_TALER_MINTDB_RESERVE:
PERF_TALER_MINTDB_reserve_free (data->reserve);
data->reserve = NULL;
return;
case PERF_TALER_MINTDB_DENOMINATION_INFO:
PERF_TALER_MINTDB_denomination_free (data->dki);
data->dki = NULL;
return;
case PERF_TALER_MINTDB_COIN_INFO:
PERF_TALER_MINTDB_coin_public_info_free (data->cpi);
data->cpi = NULL;
return;
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default:
return;
}
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}
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/**
* Finds the first command in cmd with the name search
*
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* @return the index of the first command with name search
* GNUNET_SYSERR if none found
*/
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static int
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cmd_find (const struct PERF_TALER_MINTDB_Cmd *cmd, const char *search)
{
unsigned int i;
for (i=0; PERF_TALER_MINTDB_CMD_END != cmd[i].command; i++)
if (0 == strcmp (cmd[i].label, search))
return i;
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return GNUNET_SYSERR;
}
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/**
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* Initialization of a command array
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*/
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static int
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cmd_init (struct PERF_TALER_MINTDB_Cmd cmd[])
{
unsigned int i = 0;
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for (i=0; PERF_TALER_MINTDB_CMD_END != cmd[i].command; i++)
{
switch (cmd[i].command)
{
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case PERF_TALER_MINTDB_CMD_SAVE_ARRAY:
// Allocation of memory for saving data
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cmd[i].details.save_array.data_saved =
GNUNET_new_array (cmd[i].details.save_array.nb_saved,
union PERF_TALER_MINTDB_Data);
break;
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case PERF_TALER_MINTDB_CMD_LOAD_ARRAY:
// Creating the permutation array to randomize the data order
{
int save_index ;
GNUNET_assert (GNUNET_SYSERR !=
(save_index = cmd_find (
cmd,
cmd[i].details.load_array.label_save)));
GNUNET_assert (NULL !=
(cmd[i].details.load_array.permutation =
GNUNET_CRYPTO_random_permute (
GNUNET_CRYPTO_QUALITY_WEAK,
cmd[save_index].details.save_array.nb_saved)));
// Initializing the type based on the type of the saved array
cmd[i].exposed_type = cmd[save_index].details.save_array.type_saved;
}
break;
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default:
break;
}
}
return GNUNET_OK;
}
/**
* Free the memory of the command chain
*/
static int
cmd_clean (struct PERF_TALER_MINTDB_Cmd cmd[])
{
unsigned int i = 0;
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for (i = 0; PERF_TALER_MINTDB_CMD_END != cmd[i].command; i++)
{
switch (cmd[i].command)
{
case PERF_TALER_MINTDB_CMD_SAVE_ARRAY:
{
unsigned int j;
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for (j = 0; j < cmd[i].details.save_array.nb_saved; j++)
{
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data_free (&cmd[i].details.save_array.data_saved[j],
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cmd[i].details.save_array.type_saved);
}
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GNUNET_free (cmd[i].details.save_array.data_saved);
cmd[i].details.save_array.data_saved = NULL;
}
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break;
case PERF_TALER_MINTDB_CMD_LOAD_ARRAY:
GNUNET_free (cmd[i].details.load_array.permutation);
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cmd[i].details.load_array.permutation = NULL;
break;
default:
data_free (&cmd[i].exposed, cmd[i].exposed_type);
break;
}
}
return GNUNET_OK;
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};
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/**
* Handles the command END_LOOP for the interpreter
*/
static void
interpret_end_loop (struct PERF_TALER_MINTDB_interpreter_state *state)
{
unsigned int i;
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union PERF_TALER_MINTDB_Data zero = {0};
unsigned int jump;
GNUNET_assert (GNUNET_SYSERR !=
(jump = cmd_find (state->cmd,
state->cmd[state->i]
.details.end_loop.label_loop)));
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// Cleaning up the memory in the loop
for (i = jump; i < state->i; i++)
{
data_free (&state->cmd[i].exposed, state->cmd[i].exposed_type);
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state->cmd[i].exposed = zero;
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}
state->cmd[jump].details.loop.curr_iteration++;
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// If the loop is not finished
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if (state->cmd[jump].details.loop.max_iterations >
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state->cmd[jump].details.loop.curr_iteration)
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{
// jump back to the start
state->i = jump;
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}else{
// Reset the loop counter and continue running
state->cmd[jump].details.loop.curr_iteration = 0;
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}
}
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/**
* Saves the data exposed by another command into
* an array in the command specific struct.
*/
static void
interpret_save_array (struct PERF_TALER_MINTDB_interpreter_state *state)
{
unsigned int loop_index, save_index;
unsigned int selection_chance;
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// Array initialization on first loop iteration
// Alows for nested loops
GNUNET_assert (GNUNET_SYSERR !=
(loop_index = cmd_find (state->cmd,
state->cmd[state->i]
.details.save_array.label_loop)));
GNUNET_assert (GNUNET_SYSERR !=
(save_index = cmd_find (state->cmd,
state->cmd[state->i]
.details.save_array.label_save)));
if (0 == state->cmd[loop_index].details.loop.curr_iteration)
{
state->cmd[state->i].details.save_array.index = 0;
}
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// The probobility distribution of the saved items will be a little biased
// against the few last items but it should not be a big problem.
selection_chance = state->cmd[loop_index].details.loop.max_iterations /
state->cmd[state->i].details.save_array.nb_saved;
/*
* If the remaining sapce is equal to the remaining number of
* iterations, the item is automaticly saved.
*
* Else it is saved only if rdn is 0
*/
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if ((0 < (state->cmd[state->i].details.save_array.nb_saved -
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state->cmd[state->i].details.save_array.index)) &&
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(((state->cmd[loop_index].details.loop.max_iterations -
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state->cmd[loop_index].details.loop.curr_iteration) ==
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(state->cmd[state->i].details.save_array.nb_saved -
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state->cmd[state->i].details.save_array.index))
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|| (0 == GNUNET_CRYPTO_random_u32 (GNUNET_CRYPTO_QUALITY_WEAK,
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selection_chance))))
{
union PERF_TALER_MINTDB_Data *save_location;
union PERF_TALER_MINTDB_Data *item_saved;
save_location = &state->cmd[state->i].details.save_array
.data_saved[state->cmd[state->i].details.save_array.index];
item_saved = &state->cmd[save_index].exposed;
switch (state->cmd[state->i].details.save_array.type_saved)
{
case PERF_TALER_MINTDB_TIME:
save_location->time = item_saved->time;
break;
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case PERF_TALER_MINTDB_DEPOSIT:
save_location->deposit = PERF_TALER_MINTDB_deposit_copy (item_saved->deposit);
break;
case PERF_TALER_MINTDB_BLINDCOIN:
save_location->blindcoin = PERF_TALER_MINTDB_collectable_blindcoin_copy (item_saved->blindcoin);
break;
case PERF_TALER_MINTDB_RESERVE:
save_location->reserve = PERF_TALER_MINTDB_reserve_copy (item_saved->reserve);
break;
case PERF_TALER_MINTDB_DENOMINATION_INFO:
save_location->dki = PERF_TALER_MINTDB_denomination_copy (item_saved->dki);
break;
case PERF_TALER_MINTDB_COIN_INFO:
save_location->cpi = item_saved->cpi;
break;
default:
break;
}
state->cmd[state->i].details.save_array.index++;
}
}
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static void
interpret_load_array (struct PERF_TALER_MINTDB_interpreter_state *state)
{
unsigned int loop_index, save_index, loop_iter, permut_index;
union PERF_TALER_MINTDB_Data zero = {0};
union PERF_TALER_MINTDB_Data *loaded_data;
GNUNET_assert (GNUNET_SYSERR !=
(loop_index = cmd_find (state->cmd,
state->cmd[state->i]
.details.load_array.label_loop)));
GNUNET_assert (GNUNET_SYSERR !=
(save_index = cmd_find (state->cmd,
state->cmd[state->i]
.details.load_array.label_save)));
loop_iter = state->cmd[loop_index].details.loop.curr_iteration;
permut_index = state->cmd[state->i].details.load_array.permutation[loop_iter];
/* Extracting the data from the loop_indexth indice in save_index
* array.
*/
loaded_data = &state->cmd[save_index].details.save_array.data_saved[permut_index];
switch (state->cmd[state->i].exposed_type)
{
case PERF_TALER_MINTDB_TIME:
state->cmd[state->i].exposed.time = loaded_data->time;
break;
case PERF_TALER_MINTDB_DEPOSIT:
state->cmd[state->i].exposed.deposit = loaded_data->deposit;
break;
case PERF_TALER_MINTDB_BLINDCOIN:
state->cmd[state->i].exposed.blindcoin = loaded_data->blindcoin;
break;
case PERF_TALER_MINTDB_RESERVE:
state->cmd[state->i].exposed.reserve = loaded_data->reserve;
break;
case PERF_TALER_MINTDB_DENOMINATION_INFO:
state->cmd[state->i].exposed.dki = loaded_data->dki;
case PERF_TALER_MINTDB_COIN_INFO:
state->cmd[state->i].exposed.cpi = loaded_data->cpi;
default:
break;
}
*loaded_data = zero;
}
/**
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* Main interpreter loop.
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*
*/
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static int
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interpret (struct PERF_TALER_MINTDB_interpreter_state *state)
{
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for (state->i=0; PERF_TALER_MINTDB_CMD_END != state->cmd[state->i].command; state->i++)
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{
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switch (state->cmd[state->i].command)
{
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case PERF_TALER_MINTDB_CMD_END:
return GNUNET_YES;
case PERF_TALER_MINTDB_CMD_DEBUG:
printf ("%s\n", state->cmd[state->i].label);
break;
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case PERF_TALER_MINTDB_CMD_LOOP:
break;
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case PERF_TALER_MINTDB_CMD_END_LOOP:
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interpret_end_loop (state);
break;
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case PERF_TALER_MINTDB_CMD_GET_TIME:
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clock_gettime (CLOCK_MONOTONIC, &state->cmd[state->i].exposed.time);
break;
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case PERF_TALER_MINTDB_CMD_GAUGER:
{
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unsigned int start_index, stop_index;
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struct timespec start, stop;
unsigned long elapsed_ms;
GNUNET_assert (GNUNET_SYSERR !=
(start_index = cmd_find (state->cmd,
state->cmd[state->i]
.details.gauger.label_start)));
GNUNET_assert (GNUNET_SYSERR !=
(stop_index = cmd_find (state->cmd,
state->cmd[state->i]
.details.gauger.label_stop)));
start = state->cmd[start_index].exposed.time;
stop = state->cmd[stop_index].exposed.time;
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elapsed_ms = (start.tv_sec - stop.tv_sec) * 1000 +
(start.tv_nsec - stop.tv_nsec) / 1000000;
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GAUGER ("MINTDB",
state->cmd[state->i].details.gauger.description,
elapsed_ms / state->cmd[state->i].details.gauger.divide,
"milliseconds");
}
break;
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case PERF_TALER_MINTDB_CMD_NEW_SESSION:
state->session = state->plugin->get_session (state->plugin->cls, GNUNET_YES);
break;
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case PERF_TALER_MINTDB_CMD_START_TRANSACTION:
state->plugin->start (state->plugin->cls, state->session);
break;
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case PERF_TALER_MINTDB_CMD_COMMIT_TRANSACTION:
state->plugin->commit (state->plugin->cls, state->session);
break;
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case PERF_TALER_MINTDB_CMD_ABORT_TRANSACTION:
state->plugin->rollback (state->plugin->cls, state->session);
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case PERF_TALER_MINTDB_CMD_SAVE_ARRAY:
interpret_save_array (state);
break;
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case PERF_TALER_MINTDB_CMD_LOAD_ARRAY:
interpret_load_array (state);
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break;
case PERF_TALER_MINTDB_CMD_INSERT_DEPOSIT:
{
int dki_index;
struct TALER_MINTDB_Deposit *deposit;
GNUNET_assert (GNUNET_SYSERR !=
(dki_index = cmd_find(state->cmd,
state->cmd[state->i]
.details.insert_deposit.label_dki)));
GNUNET_assert (NULL !=
(deposit = PERF_TALER_MINTDB_deposit_init (
state->cmd[dki_index].exposed.dki)));
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GNUNET_assert (
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state->plugin->insert_deposit (state->plugin->cls,
state->session,
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deposit));
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state->cmd[state->i].exposed.deposit = deposit;
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}
break;
case PERF_TALER_MINTDB_CMD_GET_DEPOSIT:
{
int source_index;
struct TALER_MINTDB_Deposit *deposit;
GNUNET_assert (GNUNET_SYSERR !=
(source_index = cmd_find (state->cmd,
state->cmd[state->i]
.details.get_deposit.label_source)));
GNUNET_assert (NULL !=
(deposit = state->cmd[source_index].exposed.deposit));
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state->plugin->have_deposit (state->plugin->cls,
state->session,
deposit);
}
break;
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case PERF_TALER_MINTDB_CMD_INSERT_RESERVE:
{
struct TALER_MINTDB_Reserve *reserve;
json_t *details = NULL;
GNUNET_assert (NULL !=
(details = json_pack ("{s:i}","justification",
GNUNET_CRYPTO_random_u32 (
GNUNET_CRYPTO_QUALITY_WEAK,
UINT32_MAX))));
reserve = PERF_TALER_MINTDB_reserve_init ();
state->plugin->reserves_in_insert (
state->plugin->cls,
state->session,
&reserve->pub,
&reserve->balance,
details
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);
json_decref (details);
state->cmd[state->i].exposed.reserve = reserve;
}
break;
case PERF_TALER_MINTDB_CMD_GET_RESERVE:
{
int source_index;
struct TALER_MINTDB_Reserve *reserve;
GNUNET_assert (GNUNET_SYSERR !=
(source_index = cmd_find (state->cmd,
state->cmd[state->i]
.details.get_reserve.label_source)));
GNUNET_assert (NULL !=
(reserve = state->cmd[source_index].exposed.reserve));
GNUNET_assert (GNUNET_OK ==
(state->plugin->reserve_get (state->plugin->cls,
state->session,
reserve)));
}
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break;
case PERF_TALER_MINTDB_CMD_INSERT_DENOMINATION:
{
struct TALER_MINTDB_DenominationKeyIssueInformation *dki =
PERF_TALER_MINTDB_denomination_init ();
state->plugin->insert_denomination_info (state->plugin->cls,
state->session,
&dki->denom_pub,
&dki->issue);
state->cmd[state->i].exposed.dki = dki;
}
break;
case PERF_TALER_MINTDB_CMD_GET_DENOMINATION:
{
int source_index;
struct TALER_MINTDB_DenominationKeyIssueInformation *dki;
GNUNET_assert (GNUNET_SYSERR !=
(source_index = cmd_find (state->cmd,
state->cmd[state->i]
.details.get_denomination.label_source)));
GNUNET_assert (NULL !=
(dki = state->cmd[source_index].exposed.dki));
state->plugin->get_denomination_info (state->plugin->cls,
state->session,
&dki->denom_pub,
&dki->issue);
}
break;
case PERF_TALER_MINTDB_CMD_INSERT_WITHDRAW:
{
int dki_index, reserve_index;
struct TALER_MINTDB_CollectableBlindcoin *blindcoin ;
GNUNET_assert (GNUNET_SYSERR !=
(dki_index = cmd_find (
state->cmd,
state->cmd[state->i].details.insert_withdraw.label_dki)));
GNUNET_assert (GNUNET_SYSERR !=
(reserve_index = cmd_find (
state->cmd,
state->cmd[state->i].details.insert_withdraw.label_reserve)));
GNUNET_assert (NULL !=
(blindcoin =
PERF_TALER_MINTDB_collectable_blindcoin_init (
state->cmd[dki_index].exposed.dki,
state->cmd[reserve_index].exposed.reserve)));
state->plugin->insert_withdraw_info (state->plugin->cls,
state->session,
blindcoin);
state->cmd[state->i].exposed.blindcoin = blindcoin;
}
break;
case PERF_TALER_MINTDB_CMD_GET_WITHDRAW:
{
int source_index;
struct TALER_MINTDB_CollectableBlindcoin *blindcoin ;
GNUNET_assert (GNUNET_SYSERR !=
(source_index = cmd_find (state->cmd,
state->cmd[state->i]
.details.get_denomination.label_source)));
GNUNET_assert (NULL !=
(blindcoin = state->cmd[source_index].exposed.blindcoin));
state->plugin->get_withdraw_info (state->plugin->cls,
state->session,
&blindcoin->h_coin_envelope,
blindcoin);
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}
break;
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default :
break;
}
}
return GNUNET_OK;
}
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/**
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* Runs the commands given in @a cmd, working with
* the database referenced by @a db_plugin
*/
int
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PERF_TALER_MINTDB_interpret (struct TALER_MINTDB_Plugin *db_plugin,
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struct PERF_TALER_MINTDB_Cmd cmd[])
{
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struct PERF_TALER_MINTDB_interpreter_state state =
{.i = 0, .cmd = cmd, .plugin = db_plugin};
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// Initializing commands
cmd_init (state.cmd);
// Running the interpreter
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GNUNET_assert (NULL !=
(state.session = db_plugin->get_session (db_plugin->cls, GNUNET_YES)));
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interpret (&state);
// Cleaning the memory
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cmd_clean (cmd);
return GNUNET_YES;
}