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f0ae3ce9b9
Fixed compile-pentium64 scripts Fixed wrong estimate of update_with_key_prefix in sql-bench Merge bk-internal.mysql.com:/home/bk/mysql-5.1 into mysql.com:/home/my/mysql-5.1 Fixed unsafe define of uint4korr() Fixed that --extern works with mysql-test-run.pl Small trivial cleanups This also fixes a bug in counting number of rows that are updated when we have many simultanous queries Move all connection handling and command exectuion main loop from sql_parse.cc to sql_connection.cc Split handle_one_connection() into reusable sub functions. Split create_new_thread() into reusable sub functions. Added thread_scheduler; Preliminary interface code for future thread_handling code. Use 'my_thread_id' for internal thread id's Make thr_alarm_kill() to depend on thread_id instead of thread Make thr_abort_locks_for_thread() depend on thread_id instead of thread In store_globals(), set my_thread_var->id to be thd->thread_id. Use my_thread_var->id as basis for my_thread_name() The above changes makes the connection we have between THD and threads more soft. Added a lot of DBUG_PRINT() and DBUG_ASSERT() functions Fixed compiler warnings Fixed core dumps when running with --debug Removed setting of signal masks (was never used) Made event code call pthread_exit() (portability fix) Fixed that event code doesn't call DBUG_xxx functions before my_thread_init() is called. Made handling of thread_id and thd->variables.pseudo_thread_id uniform. Removed one common 'not freed memory' warning from mysqltest Fixed a couple of usage of not initialized warnings (unlikely cases) Suppress compiler warnings from bdb and (for the moment) warnings from ndb
278 lines
5.6 KiB
C
278 lines
5.6 KiB
C
/******************************************************
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Executes SQL stored procedures and their control structures
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(c) 1998 Innobase Oy
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Created 1/20/1998 Heikki Tuuri
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*******************************************************/
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#include "eval0proc.h"
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#ifdef UNIV_NONINL
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#include "eval0proc.ic"
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#endif
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/**************************************************************************
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Performs an execution step of an if-statement node. */
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que_thr_t*
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if_step(
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/*====*/
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/* out: query thread to run next or NULL */
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que_thr_t* thr) /* in: query thread */
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{
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if_node_t* node;
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elsif_node_t* elsif_node;
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ut_ad(thr);
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node = thr->run_node;
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ut_ad(que_node_get_type(node) == QUE_NODE_IF);
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if (thr->prev_node == que_node_get_parent(node)) {
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/* Evaluate the condition */
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eval_exp(node->cond);
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if (eval_node_get_ibool_val(node->cond)) {
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/* The condition evaluated to TRUE: start execution
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from the first statement in the statement list */
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thr->run_node = node->stat_list;
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} else if (node->else_part) {
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thr->run_node = node->else_part;
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} else if (node->elsif_list) {
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elsif_node = node->elsif_list;
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for (;;) {
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eval_exp(elsif_node->cond);
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if (eval_node_get_ibool_val(
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elsif_node->cond)) {
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/* The condition evaluated to TRUE:
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start execution from the first
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statement in the statement list */
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thr->run_node = elsif_node->stat_list;
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break;
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}
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elsif_node = que_node_get_next(elsif_node);
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if (elsif_node == NULL) {
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thr->run_node = NULL;
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break;
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}
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}
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} else {
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thr->run_node = NULL;
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}
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} else {
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/* Move to the next statement */
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ut_ad(que_node_get_next(thr->prev_node) == NULL);
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thr->run_node = NULL;
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}
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if (thr->run_node == NULL) {
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thr->run_node = que_node_get_parent(node);
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}
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return(thr);
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}
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/**************************************************************************
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Performs an execution step of a while-statement node. */
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que_thr_t*
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while_step(
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/*=======*/
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/* out: query thread to run next or NULL */
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que_thr_t* thr) /* in: query thread */
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{
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while_node_t* node;
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ut_ad(thr);
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node = thr->run_node;
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ut_ad(que_node_get_type(node) == QUE_NODE_WHILE);
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ut_ad((thr->prev_node == que_node_get_parent(node))
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|| (que_node_get_next(thr->prev_node) == NULL));
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/* Evaluate the condition */
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eval_exp(node->cond);
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if (eval_node_get_ibool_val(node->cond)) {
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/* The condition evaluated to TRUE: start execution
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from the first statement in the statement list */
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thr->run_node = node->stat_list;
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} else {
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thr->run_node = que_node_get_parent(node);
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}
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return(thr);
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}
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/**************************************************************************
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Performs an execution step of an assignment statement node. */
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que_thr_t*
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assign_step(
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/*========*/
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/* out: query thread to run next or NULL */
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que_thr_t* thr) /* in: query thread */
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{
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assign_node_t* node;
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ut_ad(thr);
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node = thr->run_node;
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ut_ad(que_node_get_type(node) == QUE_NODE_ASSIGNMENT);
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/* Evaluate the value to assign */
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eval_exp(node->val);
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eval_node_copy_val(node->var->alias, node->val);
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thr->run_node = que_node_get_parent(node);
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return(thr);
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}
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/**************************************************************************
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Performs an execution step of a for-loop node. */
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que_thr_t*
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for_step(
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/*=====*/
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/* out: query thread to run next or NULL */
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que_thr_t* thr) /* in: query thread */
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{
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for_node_t* node;
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que_node_t* parent;
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lint loop_var_value;
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ut_ad(thr);
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node = thr->run_node;
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ut_ad(que_node_get_type(node) == QUE_NODE_FOR);
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parent = que_node_get_parent(node);
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if (thr->prev_node != parent) {
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/* Move to the next statement */
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thr->run_node = que_node_get_next(thr->prev_node);
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if (thr->run_node != NULL) {
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return(thr);
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}
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/* Increment the value of loop_var */
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loop_var_value = 1 + eval_node_get_int_val(node->loop_var);
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} else {
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/* Initialize the loop */
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eval_exp(node->loop_start_limit);
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eval_exp(node->loop_end_limit);
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loop_var_value = eval_node_get_int_val(node->loop_start_limit);
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node->loop_end_value
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= (int) eval_node_get_int_val(node->loop_end_limit);
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}
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/* Check if we should do another loop */
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if (loop_var_value > node->loop_end_value) {
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/* Enough loops done */
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thr->run_node = parent;
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} else {
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eval_node_set_int_val(node->loop_var, loop_var_value);
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thr->run_node = node->stat_list;
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}
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return(thr);
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}
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/**************************************************************************
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Performs an execution step of an exit statement node. */
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que_thr_t*
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exit_step(
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/*======*/
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/* out: query thread to run next or NULL */
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que_thr_t* thr) /* in: query thread */
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{
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exit_node_t* node;
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que_node_t* loop_node;
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ut_ad(thr);
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node = thr->run_node;
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ut_ad(que_node_get_type(node) == QUE_NODE_EXIT);
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/* Loops exit by setting thr->run_node as the loop node's parent, so
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find our containing loop node and get its parent. */
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loop_node = que_node_get_containing_loop_node(node);
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/* If someone uses an EXIT statement outside of a loop, this will
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trigger. */
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ut_a(loop_node);
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thr->run_node = que_node_get_parent(loop_node);
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return(thr);
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}
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/**************************************************************************
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Performs an execution step of a return-statement node. */
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que_thr_t*
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return_step(
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/*========*/
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/* out: query thread to run next or NULL */
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que_thr_t* thr) /* in: query thread */
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{
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return_node_t* node;
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que_node_t* parent;
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ut_ad(thr);
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node = thr->run_node;
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ut_ad(que_node_get_type(node) == QUE_NODE_RETURN);
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parent = node;
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while (que_node_get_type(parent) != QUE_NODE_PROC) {
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parent = que_node_get_parent(parent);
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}
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ut_a(parent);
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thr->run_node = que_node_get_parent(parent);
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return(thr);
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}
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