execMain.c 50.1 KB
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/*-------------------------------------------------------------------------
 *
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 * execMain.c
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 *	  top level executor interface routines
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 *
 * INTERFACE ROUTINES
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 *	ExecutorStart()
 *	ExecutorRun()
 *	ExecutorEnd()
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 *
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 *	The old ExecutorMain() has been replaced by ExecutorStart(),
 *	ExecutorRun() and ExecutorEnd()
 *
 *	These three procedures are the external interfaces to the executor.
 *	In each case, the query descriptor and the execution state is required
 *	 as arguments
 *
 *	ExecutorStart() must be called at the beginning of any execution of any
 *	query plan and ExecutorEnd() should always be called at the end of
 *	execution of a plan.
 *
 *	ExecutorRun accepts 'feature' and 'count' arguments that specify whether
 *	the plan is to be executed forwards, backwards, and for how many tuples.
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 *
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 * Portions Copyright (c) 1996-2001, PostgreSQL Global Development Group
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 * Portions Copyright (c) 1994, Regents of the University of California
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 *
 *
 * IDENTIFICATION
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 *	  $Header: /cvsroot/pgsql/src/backend/executor/execMain.c,v 1.148 2001/09/18 01:59:06 tgl Exp $
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 *
 *-------------------------------------------------------------------------
 */
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#include "postgres.h"

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#include "access/heapam.h"
#include "catalog/heap.h"
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#include "commands/command.h"
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#include "commands/trigger.h"
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#include "executor/execdebug.h"
#include "executor/execdefs.h"
#include "miscadmin.h"
#include "optimizer/var.h"
#include "parser/parsetree.h"
#include "utils/acl.h"
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/* decls for local routines only used within this module */
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static TupleDesc InitPlan(CmdType operation,
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		 Query *parseTree,
		 Plan *plan,
		 EState *estate);
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static void initResultRelInfo(ResultRelInfo *resultRelInfo,
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				  Index resultRelationIndex,
				  List *rangeTable,
				  CmdType operation);
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static void EndPlan(Plan *plan, EState *estate);
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static TupleTableSlot *ExecutePlan(EState *estate, Plan *plan,
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			CmdType operation,
			long numberTuples,
			ScanDirection direction,
			DestReceiver *destfunc);
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static void ExecRetrieve(TupleTableSlot *slot,
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			 DestReceiver *destfunc,
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			 EState *estate);
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static void ExecAppend(TupleTableSlot *slot, ItemPointer tupleid,
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		   EState *estate);
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static void ExecDelete(TupleTableSlot *slot, ItemPointer tupleid,
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		   EState *estate);
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static void ExecReplace(TupleTableSlot *slot, ItemPointer tupleid,
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			EState *estate);
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static TupleTableSlot *EvalPlanQualNext(EState *estate);
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static void EndEvalPlanQual(EState *estate);
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static void ExecCheckQueryPerms(CmdType operation, Query *parseTree,
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					Plan *plan);
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static void ExecCheckPlanPerms(Plan *plan, List *rangeTable,
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				   CmdType operation);
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static void ExecCheckRTPerms(List *rangeTable, CmdType operation);
static void ExecCheckRTEPerms(RangeTblEntry *rte, CmdType operation);
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/* end of local decls */

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/* ----------------------------------------------------------------
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 *		ExecutorStart
 *
 *		This routine must be called at the beginning of any execution of any
 *		query plan
 *
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 *		returns a TupleDesc which describes the attributes of the tuples to
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 *		be returned by the query.
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 *
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 * NB: the CurrentMemoryContext when this is called must be the context
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 * to be used as the per-query context for the query plan.	ExecutorRun()
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 * and ExecutorEnd() must be called in this same memory context.
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 * ----------------------------------------------------------------
 */
TupleDesc
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ExecutorStart(QueryDesc *queryDesc, EState *estate)
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{
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	TupleDesc	result;
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	/* sanity checks */
	Assert(queryDesc != NULL);
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	if (queryDesc->plantree->nParamExec > 0)
	{
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		estate->es_param_exec_vals = (ParamExecData *)
			palloc(queryDesc->plantree->nParamExec * sizeof(ParamExecData));
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		MemSet(estate->es_param_exec_vals, 0,
			   queryDesc->plantree->nParamExec * sizeof(ParamExecData));
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	}
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	/*
	 * Make our own private copy of the current queries snapshot data
	 */
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	if (QuerySnapshot == NULL)
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		estate->es_snapshot = NULL;
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	else
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	{
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		estate->es_snapshot = (Snapshot) palloc(sizeof(SnapshotData));
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		memcpy(estate->es_snapshot, QuerySnapshot, sizeof(SnapshotData));
		if (estate->es_snapshot->xcnt > 0)
		{
			estate->es_snapshot->xip = (TransactionId *)
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				palloc(estate->es_snapshot->xcnt * sizeof(TransactionId));
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			memcpy(estate->es_snapshot->xip, QuerySnapshot->xip,
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				   estate->es_snapshot->xcnt * sizeof(TransactionId));
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		}
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	}
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	/*
	 * Initialize the plan
	 */
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	result = InitPlan(queryDesc->operation,
					  queryDesc->parsetree,
					  queryDesc->plantree,
					  estate);

	return result;
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}

/* ----------------------------------------------------------------
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 *		ExecutorRun
 *
 *		This is the main routine of the executor module. It accepts
 *		the query descriptor from the traffic cop and executes the
 *		query plan.
 *
 *		ExecutorStart must have been called already.
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 *
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 *		the different features supported are:
 *			 EXEC_RUN:	retrieve all tuples in the forward direction
 *			 EXEC_FOR:	retrieve 'count' number of tuples in the forward dir
 *			 EXEC_BACK: retrieve 'count' number of tuples in the backward dir
 *			 EXEC_RETONE: return one tuple but don't 'retrieve' it
 *						   used in postquel function processing
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 *
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 *		Note: count = 0 is interpreted as "no limit".
 *
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 * ----------------------------------------------------------------
 */
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TupleTableSlot *
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ExecutorRun(QueryDesc *queryDesc, EState *estate, int feature, long count)
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{
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	CmdType		operation;
	Plan	   *plan;
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	TupleTableSlot *result;
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	CommandDest dest;
	DestReceiver *destfunc;
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	/*
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	 * sanity checks
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	 */
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	Assert(queryDesc != NULL);

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	/*
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	 * extract information from the query descriptor and the query
	 * feature.
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	 */
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	operation = queryDesc->operation;
	plan = queryDesc->plantree;
	dest = queryDesc->dest;
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	destfunc = DestToFunction(dest);
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	estate->es_processed = 0;
	estate->es_lastoid = InvalidOid;

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	/*
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	 * FIXME: the dest setup function ought to be handed the tuple desc
	 * for the tuples to be output, but I'm not quite sure how to get that
	 * info at this point.	For now, passing NULL is OK because no
	 * existing dest setup function actually uses the pointer.
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	 */
	(*destfunc->setup) (destfunc, (TupleDesc) NULL);

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	switch (feature)
	{
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		case EXEC_RUN:
			result = ExecutePlan(estate,
								 plan,
								 operation,
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								 count,
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								 ForwardScanDirection,
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								 destfunc);
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			break;
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		case EXEC_FOR:
			result = ExecutePlan(estate,
								 plan,
								 operation,
								 count,
								 ForwardScanDirection,
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								 destfunc);
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			break;
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			/*
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			 * retrieve next n "backward" tuples
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			 */
		case EXEC_BACK:
			result = ExecutePlan(estate,
								 plan,
								 operation,
								 count,
								 BackwardScanDirection,
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								 destfunc);
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			break;
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			/*
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			 * return one tuple but don't "retrieve" it. (this is used by
			 * the rule manager..) -cim 9/14/89
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			 */
		case EXEC_RETONE:
			result = ExecutePlan(estate,
								 plan,
								 operation,
								 ONE_TUPLE,
								 ForwardScanDirection,
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								 destfunc);
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			break;
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		default:
			elog(DEBUG, "ExecutorRun: Unknown feature %d", feature);
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			result = NULL;
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			break;
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	}

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	(*destfunc->cleanup) (destfunc);

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	return result;
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}

/* ----------------------------------------------------------------
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 *		ExecutorEnd
 *
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 *		This routine must be called at the end of execution of any
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 *		query plan
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 * ----------------------------------------------------------------
 */
void
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ExecutorEnd(QueryDesc *queryDesc, EState *estate)
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{
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	/* sanity checks */
	Assert(queryDesc != NULL);
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	EndPlan(queryDesc->plantree, estate);
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	if (estate->es_snapshot != NULL)
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	{
		if (estate->es_snapshot->xcnt > 0)
			pfree(estate->es_snapshot->xip);
		pfree(estate->es_snapshot);
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		estate->es_snapshot = NULL;
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	}

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	if (estate->es_param_exec_vals != NULL)
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	{
		pfree(estate->es_param_exec_vals);
		estate->es_param_exec_vals = NULL;
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	}
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}

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/*
 * ExecCheckQueryPerms
 *		Check access permissions for all relations referenced in a query.
 */
static void
ExecCheckQueryPerms(CmdType operation, Query *parseTree, Plan *plan)
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{
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	/*
	 * Check RTEs in the query's primary rangetable.
	 */
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	ExecCheckRTPerms(parseTree->rtable, operation);
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	/*
	 * Search for subplans and APPEND nodes to check their rangetables.
	 */
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	ExecCheckPlanPerms(plan, parseTree->rtable, operation);
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}

/*
 * ExecCheckPlanPerms
 *		Recursively scan the plan tree to check access permissions in
 *		subplans.
 */
static void
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ExecCheckPlanPerms(Plan *plan, List *rangeTable, CmdType operation)
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{
	List	   *subp;

	if (plan == NULL)
		return;

	/* Check subplans, which we assume are plain SELECT queries */

	foreach(subp, plan->initPlan)
	{
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		SubPlan    *subplan = (SubPlan *) lfirst(subp);
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		ExecCheckRTPerms(subplan->rtable, CMD_SELECT);
		ExecCheckPlanPerms(subplan->plan, subplan->rtable, CMD_SELECT);
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	}
	foreach(subp, plan->subPlan)
	{
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		SubPlan    *subplan = (SubPlan *) lfirst(subp);
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		ExecCheckRTPerms(subplan->rtable, CMD_SELECT);
		ExecCheckPlanPerms(subplan->plan, subplan->rtable, CMD_SELECT);
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	}

	/* Check lower plan nodes */

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	ExecCheckPlanPerms(plan->lefttree, rangeTable, operation);
	ExecCheckPlanPerms(plan->righttree, rangeTable, operation);
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	/* Do node-type-specific checks */

	switch (nodeTag(plan))
	{
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		case T_SubqueryScan:
			{
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				SubqueryScan *scan = (SubqueryScan *) plan;
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				RangeTblEntry *rte;

				/* Recursively check the subquery */
				rte = rt_fetch(scan->scan.scanrelid, rangeTable);
				Assert(rte->subquery != NULL);
				ExecCheckQueryPerms(operation, rte->subquery, scan->subplan);
				break;
			}
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		case T_Append:
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			{
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				Append	   *app = (Append *) plan;
				List	   *appendplans;
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				foreach(appendplans, app->appendplans)
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				{
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					ExecCheckPlanPerms((Plan *) lfirst(appendplans),
									   rangeTable,
									   operation);
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				}
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				break;
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			}

		default:
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			break;
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	}
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}
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/*
 * ExecCheckRTPerms
 *		Check access permissions for all relations listed in a range table.
 */
static void
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ExecCheckRTPerms(List *rangeTable, CmdType operation)
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{
	List	   *lp;

	foreach(lp, rangeTable)
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	{
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		RangeTblEntry *rte = lfirst(lp);

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		ExecCheckRTEPerms(rte, operation);
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	}
}

/*
 * ExecCheckRTEPerms
 *		Check access permissions for a single RTE.
 */
static void
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ExecCheckRTEPerms(RangeTblEntry *rte, CmdType operation)
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{
	char	   *relName;
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	Oid			userid;
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	int32		aclcheck_result;

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	/*
	 * If it's a subquery RTE, ignore it --- it will be checked when
	 * ExecCheckPlanPerms finds the SubqueryScan node for it.
	 */
	if (rte->subquery)
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		return;

	relName = rte->relname;

	/*
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	 * userid to check as: current user unless we have a setuid
	 * indication.
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	 *
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	 * Note: GetUserId() is presently fast enough that there's no harm in
	 * calling it separately for each RTE.	If that stops being true, we
	 * could call it once in ExecCheckQueryPerms and pass the userid down
	 * from there.	But for now, no need for the extra clutter.
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	 */
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	userid = rte->checkAsUser ? rte->checkAsUser : GetUserId();
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#define CHECK(MODE)		pg_aclcheck(relName, userid, MODE)
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	if (rte->checkForRead)
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	{
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		aclcheck_result = CHECK(ACL_SELECT);
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		if (aclcheck_result != ACLCHECK_OK)
			elog(ERROR, "%s: %s",
				 relName, aclcheck_error_strings[aclcheck_result]);
	}

	if (rte->checkForWrite)
	{
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		/*
		 * Note: write access in a SELECT context means SELECT FOR UPDATE.
		 * Right now we don't distinguish that from true update as far as
		 * permissions checks are concerned.
		 */
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		switch (operation)
		{
			case CMD_INSERT:
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				aclcheck_result = CHECK(ACL_INSERT);
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				break;
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			case CMD_SELECT:
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			case CMD_UPDATE:
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				aclcheck_result = CHECK(ACL_UPDATE);
				break;
			case CMD_DELETE:
				aclcheck_result = CHECK(ACL_DELETE);
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				break;
			default:
				elog(ERROR, "ExecCheckRTEPerms: bogus operation %d",
					 operation);
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				aclcheck_result = ACLCHECK_OK;	/* keep compiler quiet */
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				break;
		}
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		if (aclcheck_result != ACLCHECK_OK)
			elog(ERROR, "%s: %s",
				 relName, aclcheck_error_strings[aclcheck_result]);
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	}
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}

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/* ===============================================================
 * ===============================================================
						 static routines follow
 * ===============================================================
 * ===============================================================
 */

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typedef struct execRowMark
{
	Relation	relation;
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	Index		rti;
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	char		resname[32];
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} execRowMark;
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typedef struct evalPlanQual
{
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	Plan	   *plan;
	Index		rti;
	EState		estate;
	struct evalPlanQual *free;
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} evalPlanQual;
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/* ----------------------------------------------------------------
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 *		InitPlan
 *
 *		Initializes the query plan: open files, allocate storage
 *		and start up the rule manager
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 * ----------------------------------------------------------------
 */
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static TupleDesc
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InitPlan(CmdType operation, Query *parseTree, Plan *plan, EState *estate)
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{
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	List	   *rangeTable;
	Relation	intoRelationDesc;
	TupleDesc	tupType;
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	/*
	 * Do permissions checks.
	 */
	ExecCheckQueryPerms(operation, parseTree, plan);

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	/*
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	 * get information from query descriptor
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	 */
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	rangeTable = parseTree->rtable;
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	/*
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	 * initialize the node's execution state
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	 */
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	estate->es_range_table = rangeTable;

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	/*
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	 * if there is a result relation, initialize result relation stuff
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	 */
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	if (parseTree->resultRelation != 0 && operation != CMD_SELECT)
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	{
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		List	   *resultRelations = parseTree->resultRelations;
		int			numResultRelations;
		ResultRelInfo *resultRelInfos;
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		if (resultRelations != NIL)
		{
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			/*
			 * Multiple result relations (due to inheritance)
			 * parseTree->resultRelations identifies them all
			 */
			ResultRelInfo *resultRelInfo;
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			numResultRelations = length(resultRelations);
			resultRelInfos = (ResultRelInfo *)
				palloc(numResultRelations * sizeof(ResultRelInfo));
			resultRelInfo = resultRelInfos;
			while (resultRelations != NIL)
			{
				initResultRelInfo(resultRelInfo,
								  lfirsti(resultRelations),
								  rangeTable,
								  operation);
				resultRelInfo++;
				resultRelations = lnext(resultRelations);
			}
		}
		else
		{
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			/*
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			 * Single result relation identified by
			 * parseTree->resultRelation
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			 */
			numResultRelations = 1;
			resultRelInfos = (ResultRelInfo *) palloc(sizeof(ResultRelInfo));
			initResultRelInfo(resultRelInfos,
							  parseTree->resultRelation,
							  rangeTable,
							  operation);
		}
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		estate->es_result_relations = resultRelInfos;
		estate->es_num_result_relations = numResultRelations;
		/* Initialize to first or only result rel */
		estate->es_result_relation_info = resultRelInfos;
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	}
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	else
	{
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		/*
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		 * if no result relation, then set state appropriately
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		 */
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		estate->es_result_relations = NULL;
		estate->es_num_result_relations = 0;
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		estate->es_result_relation_info = NULL;
	}

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	/*
	 * Have to lock relations selected for update
	 */
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	estate->es_rowMark = NIL;
	if (parseTree->rowMarks != NIL)
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	{
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		List	   *l;
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		foreach(l, parseTree->rowMarks)
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		{
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			Index		rti = lfirsti(l);
			Oid			relid = getrelid(rti, rangeTable);
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			Relation	relation;
			execRowMark *erm;

			relation = heap_open(relid, RowShareLock);
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			erm = (execRowMark *) palloc(sizeof(execRowMark));
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			erm->relation = relation;
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			erm->rti = rti;
			sprintf(erm->resname, "ctid%u", rti);
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			estate->es_rowMark = lappend(estate->es_rowMark, erm);
		}
	}
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	/*
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	 * initialize the executor "tuple" table.  We need slots for all the
	 * plan nodes, plus possibly output slots for the junkfilter(s).
	 * At this point we aren't sure if we need junkfilters, so just add
	 * slots for them unconditionally.
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	 */
	{
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		int			nSlots = ExecCountSlotsNode(plan);
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		if (parseTree->resultRelations != NIL)
			nSlots += length(parseTree->resultRelations);
		else
			nSlots += 1;
		estate->es_tupleTable = ExecCreateTupleTable(nSlots);
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	}
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	/* mark EvalPlanQual not active */
	estate->es_origPlan = plan;
	estate->es_evalPlanQual = NULL;
	estate->es_evTuple = NULL;
	estate->es_evTupleNull = NULL;
	estate->es_useEvalPlan = false;

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	/*
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	 * initialize the private state information for all the nodes in the
	 * query tree.	This opens files, allocates storage and leaves us
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	 * ready to start processing tuples.
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	 */
	ExecInitNode(plan, estate, NULL);

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	/*
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	 * Get the tuple descriptor describing the type of tuples to return.
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	 * (this is especially important if we are creating a relation with
	 * "retrieve into")
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	 */
	tupType = ExecGetTupType(plan);		/* tuple descriptor */

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	/*
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	 * Initialize the junk filter if needed. SELECT and INSERT queries
	 * need a filter if there are any junk attrs in the tlist.	UPDATE and
	 * DELETE always need one, since there's always a junk 'ctid'
	 * attribute present --- no need to look first.
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	 */
	{
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		bool		junk_filter_needed = false;
		List	   *tlist;

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		switch (operation)
648
		{
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			case CMD_SELECT:
			case CMD_INSERT:
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				foreach(tlist, plan->targetlist)
652
				{
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					TargetEntry *tle = (TargetEntry *) lfirst(tlist);

					if (tle->resdom->resjunk)
					{
						junk_filter_needed = true;
						break;
					}
660
				}
661 662 663 664 665 666 667
				break;
			case CMD_UPDATE:
			case CMD_DELETE:
				junk_filter_needed = true;
				break;
			default:
				break;
668 669
		}

670
		if (junk_filter_needed)
671
		{
B
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672

673
			/*
B
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674 675 676 677
			 * If there are multiple result relations, each one needs its
			 * own junk filter.  Note this is only possible for
			 * UPDATE/DELETE, so we can't be fooled by some needing a
			 * filter and some not.
678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695
			 */
			if (parseTree->resultRelations != NIL)
			{
				List	   *subplans;
				ResultRelInfo *resultRelInfo;

				/* Top plan had better be an Append here. */
				Assert(IsA(plan, Append));
				Assert(((Append *) plan)->isTarget);
				subplans = ((Append *) plan)->appendplans;
				Assert(length(subplans) == estate->es_num_result_relations);
				resultRelInfo = estate->es_result_relations;
				while (subplans != NIL)
				{
					Plan	   *subplan = (Plan *) lfirst(subplans);
					JunkFilter *j;

					j = ExecInitJunkFilter(subplan->targetlist,
696 697
										   ExecGetTupType(subplan),
										   ExecAllocTableSlot(estate->es_tupleTable));
698 699 700 701
					resultRelInfo->ri_junkFilter = j;
					resultRelInfo++;
					subplans = lnext(subplans);
				}
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702

703 704 705 706 707 708 709 710 711 712
				/*
				 * Set active junkfilter too; at this point ExecInitAppend
				 * has already selected an active result relation...
				 */
				estate->es_junkFilter =
					estate->es_result_relation_info->ri_junkFilter;
			}
			else
			{
				/* Normal case with just one JunkFilter */
713
				JunkFilter *j;
714

715 716 717
				j = ExecInitJunkFilter(plan->targetlist,
									   tupType,
									   ExecAllocTableSlot(estate->es_tupleTable));
718 719 720
				estate->es_junkFilter = j;
				if (estate->es_result_relation_info)
					estate->es_result_relation_info->ri_junkFilter = j;
721

722 723 724 725
				/* For SELECT, want to return the cleaned tuple type */
				if (operation == CMD_SELECT)
					tupType = j->jf_cleanTupType;
			}
726 727 728 729
		}
		else
			estate->es_junkFilter = NULL;
	}
730

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731
	/*
B
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732
	 * initialize the "into" relation
733 734 735 736 737
	 */
	intoRelationDesc = (Relation) NULL;

	if (operation == CMD_SELECT)
	{
738 739 740
		char	   *intoName;
		Oid			intoRelationId;
		TupleDesc	tupdesc;
741 742 743 744 745 746 747 748 749

		if (!parseTree->isPortal)
		{

			/*
			 * a select into table
			 */
			if (parseTree->into != NULL)
			{
B
Bruce Momjian 已提交
750

B
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751
				/*
B
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752
				 * create the "into" relation
753 754 755 756 757 758 759 760
				 */
				intoName = parseTree->into;

				/*
				 * have to copy tupType to get rid of constraints
				 */
				tupdesc = CreateTupleDescCopy(tupType);

761 762 763
				intoRelationId =
					heap_create_with_catalog(intoName,
											 tupdesc,
764
											 RELKIND_RELATION, true,
765 766
											 parseTree->isTemp,
											 allowSystemTableMods);
767

768 769
				FreeTupleDesc(tupdesc);

B
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770
				/*
771 772
				 * Advance command counter so that the newly-created
				 * relation's catalog tuples will be visible to heap_open.
773
				 */
774
				CommandCounterIncrement();
775

776
				/*
B
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777 778 779 780
				 * If necessary, create a TOAST table for the into
				 * relation. Note that AlterTableCreateToastTable ends
				 * with CommandCounterIncrement(), so that the TOAST table
				 * will be visible for insertion.
781 782 783
				 */
				AlterTableCreateToastTable(intoName, true);

784 785
				intoRelationDesc = heap_open(intoRelationId,
											 AccessExclusiveLock);
786 787 788 789 790 791 792
			}
		}
	}

	estate->es_into_relation_descriptor = intoRelationDesc;

	return tupType;
793 794
}

795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832
/*
 * Initialize ResultRelInfo data for one result relation
 */
static void
initResultRelInfo(ResultRelInfo *resultRelInfo,
				  Index resultRelationIndex,
				  List *rangeTable,
				  CmdType operation)
{
	Oid			resultRelationOid;
	Relation	resultRelationDesc;

	resultRelationOid = getrelid(resultRelationIndex, rangeTable);
	resultRelationDesc = heap_open(resultRelationOid, RowExclusiveLock);

	switch (resultRelationDesc->rd_rel->relkind)
	{
		case RELKIND_SEQUENCE:
			elog(ERROR, "You can't change sequence relation %s",
				 RelationGetRelationName(resultRelationDesc));
			break;
		case RELKIND_TOASTVALUE:
			elog(ERROR, "You can't change toast relation %s",
				 RelationGetRelationName(resultRelationDesc));
			break;
		case RELKIND_VIEW:
			elog(ERROR, "You can't change view relation %s",
				 RelationGetRelationName(resultRelationDesc));
			break;
	}

	MemSet(resultRelInfo, 0, sizeof(ResultRelInfo));
	resultRelInfo->type = T_ResultRelInfo;
	resultRelInfo->ri_RangeTableIndex = resultRelationIndex;
	resultRelInfo->ri_RelationDesc = resultRelationDesc;
	resultRelInfo->ri_NumIndices = 0;
	resultRelInfo->ri_IndexRelationDescs = NULL;
	resultRelInfo->ri_IndexRelationInfo = NULL;
833 834
	resultRelInfo->ri_TrigDesc = resultRelationDesc->trigdesc;
	resultRelInfo->ri_TrigFunctions = NULL;
835 836 837 838 839 840
	resultRelInfo->ri_ConstraintExprs = NULL;
	resultRelInfo->ri_junkFilter = NULL;

	/*
	 * If there are indices on the result relation, open them and save
	 * descriptors in the result relation info, so that we can add new
B
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841 842
	 * index entries for the tuples we add/update.	We need not do this
	 * for a DELETE, however, since deletion doesn't affect indexes.
843 844 845 846 847 848
	 */
	if (resultRelationDesc->rd_rel->relhasindex &&
		operation != CMD_DELETE)
		ExecOpenIndices(resultRelInfo);
}

849
/* ----------------------------------------------------------------
850 851 852
 *		EndPlan
 *
 *		Cleans up the query plan -- closes files and free up storages
853 854 855
 * ----------------------------------------------------------------
 */
static void
856
EndPlan(Plan *plan, EState *estate)
857
{
858 859
	ResultRelInfo *resultRelInfo;
	int			i;
860
	List	   *l;
861

862 863 864 865 866 867
	/*
	 * shut down any PlanQual processing we were doing
	 */
	if (estate->es_evalPlanQual != NULL)
		EndEvalPlanQual(estate);

B
Bruce Momjian 已提交
868
	/*
869
	 * shut down the node-type-specific query processing
870
	 */
871
	ExecEndNode(plan, NULL);
872

B
Bruce Momjian 已提交
873
	/*
B
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874
	 * destroy the executor "tuple" table.
875
	 */
876 877
	ExecDropTupleTable(estate->es_tupleTable, true);
	estate->es_tupleTable = NULL;
878

B
Bruce Momjian 已提交
879
	/*
B
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880 881
	 * close the result relation(s) if any, but hold locks until xact
	 * commit.	Also clean up junkfilters if present.
882
	 */
883 884
	resultRelInfo = estate->es_result_relations;
	for (i = estate->es_num_result_relations; i > 0; i--)
885
	{
886 887 888
		/* Close indices and then the relation itself */
		ExecCloseIndices(resultRelInfo);
		heap_close(resultRelInfo->ri_RelationDesc, NoLock);
889 890 891
		/* Delete the junkfilter if any */
		if (resultRelInfo->ri_junkFilter != NULL)
			ExecFreeJunkFilter(resultRelInfo->ri_junkFilter);
892
		resultRelInfo++;
893 894
	}

B
Bruce Momjian 已提交
895
	/*
896
	 * close the "into" relation if necessary, again keeping lock
897
	 */
898 899
	if (estate->es_into_relation_descriptor != NULL)
		heap_close(estate->es_into_relation_descriptor, NoLock);
900

901 902 903 904 905 906 907 908 909 910
	/*
	 * There might be a junkfilter without a result relation.
	 */
	if (estate->es_num_result_relations == 0 &&
		estate->es_junkFilter != NULL)
	{
		ExecFreeJunkFilter(estate->es_junkFilter);
		estate->es_junkFilter = NULL;
	}

911 912 913 914 915 916 917 918 919
	/*
	 * close any relations selected FOR UPDATE, again keeping locks
	 */
	foreach(l, estate->es_rowMark)
	{
		execRowMark *erm = lfirst(l);

		heap_close(erm->relation, NoLock);
	}
920 921 922
}

/* ----------------------------------------------------------------
923 924
 *		ExecutePlan
 *
925
 *		processes the query plan to retrieve 'numberTuples' tuples in the
926 927 928
 *		direction specified.
 *		Retrieves all tuples if tupleCount is 0
 *
929
 *		result is either a slot containing the last tuple in the case
930
 *		of a RETRIEVE or NULL otherwise.
931
 *
932 933
 * Note: the ctid attribute is a 'junk' attribute that is removed before the
 * user can see it
934 935 936
 * ----------------------------------------------------------------
 */
static TupleTableSlot *
937 938
ExecutePlan(EState *estate,
			Plan *plan,
939
			CmdType operation,
940
			long numberTuples,
941
			ScanDirection direction,
942
			DestReceiver *destfunc)
943
{
944
	JunkFilter *junkfilter;
945
	TupleTableSlot *slot;
946
	ItemPointer tupleid = NULL;
947
	ItemPointerData tuple_ctid;
948
	long		current_tuple_count;
949 950
	TupleTableSlot *result;

B
Bruce Momjian 已提交
951
	/*
B
Bruce Momjian 已提交
952
	 * initialize local variables
953
	 */
954 955 956 957
	slot = NULL;
	current_tuple_count = 0;
	result = NULL;

B
Bruce Momjian 已提交
958 959
	/*
	 * Set the direction.
960
	 */
961 962
	estate->es_direction = direction;

B
Bruce Momjian 已提交
963
	/*
B
Bruce Momjian 已提交
964
	 * Loop until we've processed the proper number of tuples from the
965
	 * plan.
966 967 968 969
	 */

	for (;;)
	{
970 971
		/* Reset the per-output-tuple exprcontext */
		ResetPerTupleExprContext(estate);
B
Bruce Momjian 已提交
972

B
Bruce Momjian 已提交
973
		/*
B
Bruce Momjian 已提交
974
		 * Execute the plan and obtain a tuple
975
		 */
B
Bruce Momjian 已提交
976
lnext:	;
977 978 979 980
		if (estate->es_useEvalPlan)
		{
			slot = EvalPlanQualNext(estate);
			if (TupIsNull(slot))
981
				slot = ExecProcNode(plan, NULL);
982 983
		}
		else
984
			slot = ExecProcNode(plan, NULL);
985

B
Bruce Momjian 已提交
986
		/*
B
Bruce Momjian 已提交
987 988
		 * if the tuple is null, then we assume there is nothing more to
		 * process so we just return null...
989 990 991 992 993
		 */
		if (TupIsNull(slot))
		{
			result = NULL;
			break;
994 995
		}

B
Bruce Momjian 已提交
996
		/*
B
Bruce Momjian 已提交
997 998
		 * if we have a junk filter, then project a new tuple with the
		 * junk removed.
999
		 *
1000 1001 1002
		 * Store this new "clean" tuple in the junkfilter's resultSlot.
		 * (Formerly, we stored it back over the "dirty" tuple, which is
		 * WRONG because that tuple slot has the wrong descriptor.)
1003
		 *
B
Bruce Momjian 已提交
1004
		 * Also, extract all the junk information we need.
1005 1006 1007
		 */
		if ((junkfilter = estate->es_junkFilter) != (JunkFilter *) NULL)
		{
1008 1009 1010
			Datum		datum;
			HeapTuple	newTuple;
			bool		isNull;
1011

B
Bruce Momjian 已提交
1012
			/*
1013 1014 1015 1016 1017 1018 1019 1020 1021
			 * extract the 'ctid' junk attribute.
			 */
			if (operation == CMD_UPDATE || operation == CMD_DELETE)
			{
				if (!ExecGetJunkAttribute(junkfilter,
										  slot,
										  "ctid",
										  &datum,
										  &isNull))
1022
					elog(ERROR, "ExecutePlan: NO (junk) `ctid' was found!");
1023

1024
				/* shouldn't ever get a null result... */
1025
				if (isNull)
1026
					elog(ERROR, "ExecutePlan: (junk) `ctid' is NULL!");
1027 1028 1029 1030 1031 1032

				tupleid = (ItemPointer) DatumGetPointer(datum);
				tuple_ctid = *tupleid;	/* make sure we don't free the
										 * ctid!! */
				tupleid = &tuple_ctid;
			}
1033
			else if (estate->es_rowMark != NIL)
1034
			{
B
Bruce Momjian 已提交
1035
				List	   *l;
1036

B
Bruce Momjian 已提交
1037 1038
		lmark:	;
				foreach(l, estate->es_rowMark)
1039
				{
1040 1041 1042 1043 1044 1045
					execRowMark *erm = lfirst(l);
					Buffer		buffer;
					HeapTupleData tuple;
					TupleTableSlot *newSlot;
					int			test;

1046 1047 1048 1049 1050
					if (!ExecGetJunkAttribute(junkfilter,
											  slot,
											  erm->resname,
											  &datum,
											  &isNull))
1051 1052
						elog(ERROR, "ExecutePlan: NO (junk) `%s' was found!",
							 erm->resname);
1053

1054
					/* shouldn't ever get a null result... */
1055
					if (isNull)
1056 1057
						elog(ERROR, "ExecutePlan: (junk) `%s' is NULL!",
							 erm->resname);
1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070

					tuple.t_self = *((ItemPointer) DatumGetPointer(datum));
					test = heap_mark4update(erm->relation, &tuple, &buffer);
					ReleaseBuffer(buffer);
					switch (test)
					{
						case HeapTupleSelfUpdated:
						case HeapTupleMayBeUpdated:
							break;

						case HeapTupleUpdated:
							if (XactIsoLevel == XACT_SERIALIZABLE)
								elog(ERROR, "Can't serialize access due to concurrent update");
1071
							if (!(ItemPointerEquals(&(tuple.t_self),
B
Bruce Momjian 已提交
1072
								  (ItemPointer) DatumGetPointer(datum))))
1073
							{
B
Bruce Momjian 已提交
1074
								newSlot = EvalPlanQual(estate, erm->rti, &(tuple.t_self));
1075 1076 1077 1078 1079 1080 1081
								if (!(TupIsNull(newSlot)))
								{
									slot = newSlot;
									estate->es_useEvalPlan = true;
									goto lmark;
								}
							}
B
Bruce Momjian 已提交
1082 1083 1084

							/*
							 * if tuple was deleted or PlanQual failed for
1085
							 * updated tuple - we must not return this
B
Bruce Momjian 已提交
1086
							 * tuple!
1087 1088
							 */
							goto lnext;
1089 1090 1091

						default:
							elog(ERROR, "Unknown status %u from heap_mark4update", test);
B
Bruce Momjian 已提交
1092
							return (NULL);
1093 1094 1095
					}
				}
			}
1096

B
Bruce Momjian 已提交
1097
			/*
1098 1099 1100 1101 1102 1103
			 * Finally create a new "clean" tuple with all junk attributes
			 * removed
			 */
			newTuple = ExecRemoveJunk(junkfilter, slot);

			slot = ExecStoreTuple(newTuple,		/* tuple to store */
1104
								  junkfilter->jf_resultSlot, /* dest slot */
1105 1106 1107 1108 1109
								  InvalidBuffer,		/* this tuple has no
														 * buffer */
								  true);		/* tuple should be pfreed */
		}						/* if (junkfilter... */

B
Bruce Momjian 已提交
1110
		/*
B
Bruce Momjian 已提交
1111 1112
		 * now that we have a tuple, do the appropriate thing with it..
		 * either return it to the user, add it to a relation someplace,
B
Bruce Momjian 已提交
1113
		 * delete it from a relation, or modify some of its attributes.
1114 1115 1116 1117
		 */

		switch (operation)
		{
1118 1119
			case CMD_SELECT:
				ExecRetrieve(slot,		/* slot containing tuple */
B
Bruce Momjian 已提交
1120 1121
							 destfunc,	/* destination's tuple-receiver
										 * obj */
1122 1123 1124
							 estate);	/* */
				result = slot;
				break;
1125

1126 1127 1128 1129
			case CMD_INSERT:
				ExecAppend(slot, tupleid, estate);
				result = NULL;
				break;
1130

1131 1132 1133 1134
			case CMD_DELETE:
				ExecDelete(slot, tupleid, estate);
				result = NULL;
				break;
1135

1136
			case CMD_UPDATE:
1137
				ExecReplace(slot, tupleid, estate);
1138 1139
				result = NULL;
				break;
1140

1141 1142
			default:
				elog(DEBUG, "ExecutePlan: unknown operation in queryDesc");
1143
				result = NULL;
1144
				break;
1145
		}
B
Bruce Momjian 已提交
1146

B
Bruce Momjian 已提交
1147
		/*
1148 1149
		 * check our tuple count.. if we've processed the proper number
		 * then quit, else loop again and process more tuples..
1150
		 */
1151
		current_tuple_count++;
1152 1153
		if (numberTuples == current_tuple_count)
			break;
1154
	}
1155

B
Bruce Momjian 已提交
1156
	/*
B
Bruce Momjian 已提交
1157 1158
	 * here, result is either a slot containing a tuple in the case of a
	 * RETRIEVE or NULL otherwise.
1159
	 */
1160
	return result;
1161 1162 1163
}

/* ----------------------------------------------------------------
1164
 *		ExecRetrieve
1165
 *
1166 1167 1168 1169 1170
 *		RETRIEVEs are easy.. we just pass the tuple to the appropriate
 *		print function.  The only complexity is when we do a
 *		"retrieve into", in which case we insert the tuple into
 *		the appropriate relation (note: this is a newly created relation
 *		so we don't need to worry about indices or locks.)
1171 1172 1173
 * ----------------------------------------------------------------
 */
static void
1174
ExecRetrieve(TupleTableSlot *slot,
1175
			 DestReceiver *destfunc,
1176
			 EState *estate)
1177
{
1178 1179
	HeapTuple	tuple;
	TupleDesc	attrtype;
1180

B
Bruce Momjian 已提交
1181
	/*
B
Bruce Momjian 已提交
1182
	 * get the heap tuple out of the tuple table slot
1183 1184 1185 1186
	 */
	tuple = slot->val;
	attrtype = slot->ttc_tupleDescriptor;

B
Bruce Momjian 已提交
1187
	/*
B
Bruce Momjian 已提交
1188
	 * insert the tuple into the "into relation"
1189 1190 1191 1192 1193 1194 1195
	 */
	if (estate->es_into_relation_descriptor != NULL)
	{
		heap_insert(estate->es_into_relation_descriptor, tuple);
		IncrAppended();
	}

B
Bruce Momjian 已提交
1196
	/*
B
Bruce Momjian 已提交
1197
	 * send the tuple to the front end (or the screen)
1198
	 */
1199
	(*destfunc->receiveTuple) (tuple, attrtype, destfunc);
1200 1201
	IncrRetrieved();
	(estate->es_processed)++;
1202 1203 1204
}

/* ----------------------------------------------------------------
1205
 *		ExecAppend
1206
 *
1207 1208 1209
 *		APPENDs are trickier.. we have to insert the tuple into
 *		the base relation and insert appropriate tuples into the
 *		index relations.
1210 1211 1212 1213
 * ----------------------------------------------------------------
 */

static void
1214
ExecAppend(TupleTableSlot *slot,
1215
		   ItemPointer tupleid,
1216
		   EState *estate)
1217
{
1218
	HeapTuple	tuple;
1219
	ResultRelInfo *resultRelInfo;
1220 1221 1222
	Relation	resultRelationDesc;
	int			numIndices;
	Oid			newId;
1223

B
Bruce Momjian 已提交
1224
	/*
B
Bruce Momjian 已提交
1225
	 * get the heap tuple out of the tuple table slot
1226 1227 1228
	 */
	tuple = slot->val;

B
Bruce Momjian 已提交
1229
	/*
1230
	 * get information on the (current) result relation
1231
	 */
1232 1233
	resultRelInfo = estate->es_result_relation_info;
	resultRelationDesc = resultRelInfo->ri_RelationDesc;
1234 1235

	/* BEFORE ROW INSERT Triggers */
1236 1237
	if (resultRelInfo->ri_TrigDesc &&
		resultRelInfo->ri_TrigDesc->n_before_row[TRIGGER_EVENT_INSERT] > 0)
1238
	{
1239
		HeapTuple	newtuple;
1240

1241
		newtuple = ExecBRInsertTriggers(estate, resultRelInfo, tuple);
1242 1243 1244 1245 1246 1247

		if (newtuple == NULL)	/* "do nothing" */
			return;

		if (newtuple != tuple)	/* modified by Trigger(s) */
		{
B
Bruce Momjian 已提交
1248

1249 1250 1251
			/*
			 * Insert modified tuple into tuple table slot, replacing the
			 * original.  We assume that it was allocated in per-tuple
B
Bruce Momjian 已提交
1252 1253
			 * memory context, and therefore will go away by itself. The
			 * tuple table slot should not try to clear it.
1254 1255 1256
			 */
			ExecStoreTuple(newtuple, slot, InvalidBuffer, false);
			tuple = newtuple;
1257 1258 1259
		}
	}

B
Bruce Momjian 已提交
1260
	/*
1261
	 * Check the constraints of the tuple
1262 1263
	 */
	if (resultRelationDesc->rd_att->constr)
1264
		ExecConstraints("ExecAppend", resultRelInfo, slot, estate);
1265

B
Bruce Momjian 已提交
1266
	/*
B
Bruce Momjian 已提交
1267
	 * insert the tuple
1268
	 */
1269 1270
	newId = heap_insert(resultRelationDesc, tuple);

1271
	IncrAppended();
1272 1273
	(estate->es_processed)++;
	estate->es_lastoid = newId;
T
Tom Lane 已提交
1274
	setLastTid(&(tuple->t_self));
1275

B
Bruce Momjian 已提交
1276
	/*
B
Bruce Momjian 已提交
1277
	 * process indices
1278
	 *
B
Bruce Momjian 已提交
1279 1280 1281
	 * Note: heap_insert adds a new tuple to a relation.  As a side effect,
	 * the tupleid of the new tuple is placed in the new tuple's t_ctid
	 * field.
1282
	 */
1283
	numIndices = resultRelInfo->ri_NumIndices;
1284
	if (numIndices > 0)
1285
		ExecInsertIndexTuples(slot, &(tuple->t_self), estate, false);
1286 1287

	/* AFTER ROW INSERT Triggers */
1288 1289
	if (resultRelInfo->ri_TrigDesc)
		ExecARInsertTriggers(estate, resultRelInfo, tuple);
1290 1291 1292
}

/* ----------------------------------------------------------------
1293
 *		ExecDelete
1294
 *
1295 1296
 *		DELETE is like append, we delete the tuple and its
 *		index tuples.
1297 1298 1299
 * ----------------------------------------------------------------
 */
static void
1300
ExecDelete(TupleTableSlot *slot,
1301
		   ItemPointer tupleid,
1302
		   EState *estate)
1303
{
1304
	ResultRelInfo *resultRelInfo;
B
Bruce Momjian 已提交
1305 1306 1307
	Relation	resultRelationDesc;
	ItemPointerData ctid;
	int			result;
1308

B
Bruce Momjian 已提交
1309
	/*
1310
	 * get information on the (current) result relation
1311
	 */
1312 1313
	resultRelInfo = estate->es_result_relation_info;
	resultRelationDesc = resultRelInfo->ri_RelationDesc;
1314 1315

	/* BEFORE ROW DELETE Triggers */
1316 1317
	if (resultRelInfo->ri_TrigDesc &&
		resultRelInfo->ri_TrigDesc->n_before_row[TRIGGER_EVENT_DELETE] > 0)
1318
	{
1319
		bool		dodelete;
1320

1321
		dodelete = ExecBRDeleteTriggers(estate, resultRelInfo, tupleid);
1322 1323 1324 1325 1326

		if (!dodelete)			/* "do nothing" */
			return;
	}

V
Vadim B. Mikheev 已提交
1327
	/*
B
Bruce Momjian 已提交
1328
	 * delete the tuple
1329
	 */
1330
ldelete:;
V
Vadim B. Mikheev 已提交
1331 1332 1333 1334 1335 1336 1337 1338 1339 1340
	result = heap_delete(resultRelationDesc, tupleid, &ctid);
	switch (result)
	{
		case HeapTupleSelfUpdated:
			return;

		case HeapTupleMayBeUpdated:
			break;

		case HeapTupleUpdated:
1341 1342
			if (XactIsoLevel == XACT_SERIALIZABLE)
				elog(ERROR, "Can't serialize access due to concurrent update");
1343 1344
			else if (!(ItemPointerEquals(tupleid, &ctid)))
			{
B
Bruce Momjian 已提交
1345
				TupleTableSlot *epqslot = EvalPlanQual(estate,
B
Bruce Momjian 已提交
1346
							   resultRelInfo->ri_RangeTableIndex, &ctid);
1347

V
Vadim B. Mikheev 已提交
1348
				if (!TupIsNull(epqslot))
1349 1350 1351 1352 1353
				{
					*tupleid = ctid;
					goto ldelete;
				}
			}
1354
			/* tuple already deleted; nothing to do */
V
Vadim B. Mikheev 已提交
1355 1356 1357 1358 1359 1360
			return;

		default:
			elog(ERROR, "Unknown status %u from heap_delete", result);
			return;
	}
1361 1362 1363 1364

	IncrDeleted();
	(estate->es_processed)++;

B
Bruce Momjian 已提交
1365
	/*
B
Bruce Momjian 已提交
1366 1367
	 * Note: Normally one would think that we have to delete index tuples
	 * associated with the heap tuple now..
1368
	 *
B
Bruce Momjian 已提交
1369 1370 1371
	 * ... but in POSTGRES, we have no need to do this because the vacuum
	 * daemon automatically opens an index scan and deletes index tuples
	 * when it finds deleted heap tuples. -cim 9/27/89
1372 1373 1374
	 */

	/* AFTER ROW DELETE Triggers */
1375 1376
	if (resultRelInfo->ri_TrigDesc)
		ExecARDeleteTriggers(estate, resultRelInfo, tupleid);
1377 1378 1379
}

/* ----------------------------------------------------------------
1380
 *		ExecReplace
1381
 *
1382 1383 1384 1385 1386 1387
 *		note: we can't run replace queries with transactions
 *		off because replaces are actually appends and our
 *		scan will mistakenly loop forever, replacing the tuple
 *		it just appended..	This should be fixed but until it
 *		is, we don't want to get stuck in an infinite loop
 *		which corrupts your database..
1388 1389 1390
 * ----------------------------------------------------------------
 */
static void
1391
ExecReplace(TupleTableSlot *slot,
1392
			ItemPointer tupleid,
1393
			EState *estate)
1394
{
B
Bruce Momjian 已提交
1395
	HeapTuple	tuple;
1396
	ResultRelInfo *resultRelInfo;
B
Bruce Momjian 已提交
1397 1398 1399 1400
	Relation	resultRelationDesc;
	ItemPointerData ctid;
	int			result;
	int			numIndices;
1401

B
Bruce Momjian 已提交
1402
	/*
B
Bruce Momjian 已提交
1403
	 * abort the operation if not running transactions
1404 1405 1406
	 */
	if (IsBootstrapProcessingMode())
	{
1407
		elog(NOTICE, "ExecReplace: replace can't run without transactions");
1408 1409 1410
		return;
	}

B
Bruce Momjian 已提交
1411
	/*
B
Bruce Momjian 已提交
1412
	 * get the heap tuple out of the tuple table slot
1413 1414 1415
	 */
	tuple = slot->val;

B
Bruce Momjian 已提交
1416
	/*
1417
	 * get information on the (current) result relation
1418
	 */
1419 1420
	resultRelInfo = estate->es_result_relation_info;
	resultRelationDesc = resultRelInfo->ri_RelationDesc;
1421 1422

	/* BEFORE ROW UPDATE Triggers */
1423 1424
	if (resultRelInfo->ri_TrigDesc &&
		resultRelInfo->ri_TrigDesc->n_before_row[TRIGGER_EVENT_UPDATE] > 0)
1425
	{
1426
		HeapTuple	newtuple;
1427

1428 1429
		newtuple = ExecBRUpdateTriggers(estate, resultRelInfo,
										tupleid, tuple);
1430 1431 1432 1433 1434 1435

		if (newtuple == NULL)	/* "do nothing" */
			return;

		if (newtuple != tuple)	/* modified by Trigger(s) */
		{
B
Bruce Momjian 已提交
1436

1437 1438 1439
			/*
			 * Insert modified tuple into tuple table slot, replacing the
			 * original.  We assume that it was allocated in per-tuple
B
Bruce Momjian 已提交
1440 1441
			 * memory context, and therefore will go away by itself. The
			 * tuple table slot should not try to clear it.
1442 1443 1444
			 */
			ExecStoreTuple(newtuple, slot, InvalidBuffer, false);
			tuple = newtuple;
1445 1446 1447
		}
	}

B
Bruce Momjian 已提交
1448
	/*
1449
	 * Check the constraints of the tuple
1450 1451 1452 1453 1454 1455
	 *
	 * If we generate a new candidate tuple after EvalPlanQual testing,
	 * we must loop back here and recheck constraints.  (We don't need to
	 * redo triggers, however.  If there are any BEFORE triggers then
	 * trigger.c will have done mark4update to lock the correct tuple,
	 * so there's no need to do them again.)
1456
	 */
1457
lreplace:;
1458
	if (resultRelationDesc->rd_att->constr)
1459
		ExecConstraints("ExecReplace", resultRelInfo, slot, estate);
1460

V
Vadim B. Mikheev 已提交
1461
	/*
B
Bruce Momjian 已提交
1462
	 * replace the heap tuple
1463
	 */
1464
	result = heap_update(resultRelationDesc, tupleid, tuple, &ctid);
V
Vadim B. Mikheev 已提交
1465 1466 1467 1468 1469 1470 1471 1472 1473
	switch (result)
	{
		case HeapTupleSelfUpdated:
			return;

		case HeapTupleMayBeUpdated:
			break;

		case HeapTupleUpdated:
1474 1475
			if (XactIsoLevel == XACT_SERIALIZABLE)
				elog(ERROR, "Can't serialize access due to concurrent update");
1476 1477
			else if (!(ItemPointerEquals(tupleid, &ctid)))
			{
B
Bruce Momjian 已提交
1478
				TupleTableSlot *epqslot = EvalPlanQual(estate,
B
Bruce Momjian 已提交
1479
							   resultRelInfo->ri_RangeTableIndex, &ctid);
1480

V
Vadim B. Mikheev 已提交
1481
				if (!TupIsNull(epqslot))
1482 1483
				{
					*tupleid = ctid;
V
Vadim B. Mikheev 已提交
1484
					tuple = ExecRemoveJunk(estate->es_junkFilter, epqslot);
1485 1486 1487
					slot = ExecStoreTuple(tuple,
										  estate->es_junkFilter->jf_resultSlot,
										  InvalidBuffer, true);
1488 1489 1490
					goto lreplace;
				}
			}
1491
			/* tuple already deleted; nothing to do */
V
Vadim B. Mikheev 已提交
1492 1493 1494
			return;

		default:
1495
			elog(ERROR, "Unknown status %u from heap_update", result);
V
Vadim B. Mikheev 已提交
1496
			return;
1497 1498 1499 1500 1501
	}

	IncrReplaced();
	(estate->es_processed)++;

B
Bruce Momjian 已提交
1502
	/*
B
Bruce Momjian 已提交
1503
	 * Note: instead of having to update the old index tuples associated
B
Bruce Momjian 已提交
1504 1505 1506 1507
	 * with the heap tuple, all we do is form and insert new index tuples.
	 * This is because replaces are actually deletes and inserts and index
	 * tuple deletion is done automagically by the vacuum daemon. All we
	 * do is insert new index tuples.  -cim 9/27/89
1508 1509
	 */

B
Bruce Momjian 已提交
1510
	/*
B
Bruce Momjian 已提交
1511
	 * process indices
1512
	 *
1513
	 * heap_update updates a tuple in the base relation by invalidating it
B
Bruce Momjian 已提交
1514 1515 1516 1517
	 * and then appending a new tuple to the relation.	As a side effect,
	 * the tupleid of the new tuple is placed in the new tuple's t_ctid
	 * field.  So we now insert index tuples using the new tupleid stored
	 * there.
1518 1519
	 */

1520
	numIndices = resultRelInfo->ri_NumIndices;
1521
	if (numIndices > 0)
1522
		ExecInsertIndexTuples(slot, &(tuple->t_self), estate, true);
1523 1524

	/* AFTER ROW UPDATE Triggers */
1525 1526
	if (resultRelInfo->ri_TrigDesc)
		ExecARUpdateTriggers(estate, resultRelInfo, tupleid, tuple);
1527
}
V
Vadim B. Mikheev 已提交
1528

1529
static char *
1530 1531
ExecRelCheck(ResultRelInfo *resultRelInfo,
			 TupleTableSlot *slot, EState *estate)
V
Vadim B. Mikheev 已提交
1532
{
1533
	Relation	rel = resultRelInfo->ri_RelationDesc;
1534 1535
	int			ncheck = rel->rd_att->constr->num_check;
	ConstrCheck *check = rel->rd_att->constr->check;
1536
	ExprContext *econtext;
1537
	MemoryContext oldContext;
1538 1539
	List	   *qual;
	int			i;
1540

1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558
	/*
	 * If first time through for this result relation, build expression
	 * nodetrees for rel's constraint expressions.  Keep them in the
	 * per-query memory context so they'll survive throughout the query.
	 */
	if (resultRelInfo->ri_ConstraintExprs == NULL)
	{
		oldContext = MemoryContextSwitchTo(estate->es_query_cxt);
		resultRelInfo->ri_ConstraintExprs =
			(List **) palloc(ncheck * sizeof(List *));
		for (i = 0; i < ncheck; i++)
		{
			qual = (List *) stringToNode(check[i].ccbin);
			resultRelInfo->ri_ConstraintExprs[i] = qual;
		}
		MemoryContextSwitchTo(oldContext);
	}

1559
	/*
B
Bruce Momjian 已提交
1560 1561
	 * We will use the EState's per-tuple context for evaluating
	 * constraint expressions (creating it if it's not already there).
1562
	 */
1563
	econtext = GetPerTupleExprContext(estate);
1564

1565 1566 1567 1568
	/* Arrange for econtext's scan tuple to be the tuple under test */
	econtext->ecxt_scantuple = slot;

	/* And evaluate the constraints */
1569 1570
	for (i = 0; i < ncheck; i++)
	{
1571
		qual = resultRelInfo->ri_ConstraintExprs[i];
1572

1573 1574
		/*
		 * NOTE: SQL92 specifies that a NULL result from a constraint
1575 1576
		 * expression is not to be treated as a failure.  Therefore, tell
		 * ExecQual to return TRUE for NULL.
1577
		 */
1578
		if (!ExecQual(qual, econtext, true))
1579
			return check[i].ccname;
1580 1581
	}

1582
	/* NULL result means no error */
1583
	return (char *) NULL;
V
Vadim B. Mikheev 已提交
1584 1585
}

1586
void
1587
ExecConstraints(char *caller, ResultRelInfo *resultRelInfo,
1588
				TupleTableSlot *slot, EState *estate)
V
Vadim B. Mikheev 已提交
1589
{
1590
	Relation	rel = resultRelInfo->ri_RelationDesc;
1591 1592 1593 1594
	HeapTuple	tuple = slot->val;
	TupleConstr *constr = rel->rd_att->constr;

	Assert(constr);
1595

1596
	if (constr->has_not_null)
V
Vadim B. Mikheev 已提交
1597
	{
1598
		int			natts = rel->rd_att->natts;
1599
		int			attrChk;
1600

1601
		for (attrChk = 1; attrChk <= natts; attrChk++)
1602
		{
B
Bruce Momjian 已提交
1603
			if (rel->rd_att->attrs[attrChk - 1]->attnotnull &&
1604
				heap_attisnull(tuple, attrChk))
1605
				elog(ERROR, "%s: Fail to add null value in not null attribute %s",
B
Bruce Momjian 已提交
1606
					 caller, NameStr(rel->rd_att->attrs[attrChk - 1]->attname));
1607 1608 1609
		}
	}

1610
	if (constr->num_check > 0)
1611
	{
1612
		char	   *failed;
1613

1614
		if ((failed = ExecRelCheck(resultRelInfo, slot, estate)) != NULL)
1615 1616
			elog(ERROR, "%s: rejected due to CHECK constraint %s",
				 caller, failed);
1617
	}
V
Vadim B. Mikheev 已提交
1618
}
1619

1620 1621 1622 1623 1624 1625
/*
 * Check a modified tuple to see if we want to process its updated version
 * under READ COMMITTED rules.
 *
 * See backend/executor/README for some info about how this works.
 */
B
Bruce Momjian 已提交
1626
TupleTableSlot *
1627 1628
EvalPlanQual(EState *estate, Index rti, ItemPointer tid)
{
1629 1630
	evalPlanQual *epq;
	EState	   *epqstate;
B
Bruce Momjian 已提交
1631 1632
	Relation	relation;
	HeapTupleData tuple;
1633 1634 1635
	HeapTuple	copyTuple = NULL;
	int			rtsize;
	bool		endNode;
1636 1637 1638

	Assert(rti != 0);

1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673
	/*
	 * find relation containing target tuple
	 */
	if (estate->es_result_relation_info != NULL &&
		estate->es_result_relation_info->ri_RangeTableIndex == rti)
	{
		relation = estate->es_result_relation_info->ri_RelationDesc;
	}
	else
	{
		List	   *l;

		relation = NULL;
		foreach(l, estate->es_rowMark)
		{
			if (((execRowMark *) lfirst(l))->rti == rti)
			{
				relation = ((execRowMark *) lfirst(l))->relation;
				break;
			}
		}
		if (relation == NULL)
			elog(ERROR, "EvalPlanQual: can't find RTE %d", (int) rti);
	}

	/*
	 * fetch tid tuple
	 *
	 * Loop here to deal with updated or busy tuples
	 */
	tuple.t_self = *tid;
	for (;;)
	{
		Buffer		buffer;

1674
		heap_fetch(relation, SnapshotDirty, &tuple, &buffer, NULL);
1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732
		if (tuple.t_data != NULL)
		{
			TransactionId xwait = SnapshotDirty->xmax;

			if (TransactionIdIsValid(SnapshotDirty->xmin))
				elog(ERROR, "EvalPlanQual: t_xmin is uncommitted ?!");

			/*
			 * If tuple is being updated by other transaction then we have
			 * to wait for its commit/abort.
			 */
			if (TransactionIdIsValid(xwait))
			{
				ReleaseBuffer(buffer);
				XactLockTableWait(xwait);
				continue;
			}

			/*
			 * We got tuple - now copy it for use by recheck query.
			 */
			copyTuple = heap_copytuple(&tuple);
			ReleaseBuffer(buffer);
			break;
		}

		/*
		 * Oops! Invalid tuple. Have to check is it updated or deleted.
		 * Note that it's possible to get invalid SnapshotDirty->tid if
		 * tuple updated by this transaction. Have we to check this ?
		 */
		if (ItemPointerIsValid(&(SnapshotDirty->tid)) &&
			!(ItemPointerEquals(&(tuple.t_self), &(SnapshotDirty->tid))))
		{
			/* updated, so look at the updated copy */
			tuple.t_self = SnapshotDirty->tid;
			continue;
		}

		/*
		 * Deleted or updated by this transaction; forget it.
		 */
		return NULL;
	}

	/*
	 * For UPDATE/DELETE we have to return tid of actual row we're
	 * executing PQ for.
	 */
	*tid = tuple.t_self;

	/*
	 * Need to run a recheck subquery.  Find or create a PQ stack entry.
	 */
	epq = (evalPlanQual *) estate->es_evalPlanQual;
	rtsize = length(estate->es_range_table);
	endNode = true;

1733 1734
	if (epq != NULL && epq->rti == 0)
	{
1735
		/* Top PQ stack entry is idle, so re-use it */
B
Bruce Momjian 已提交
1736 1737
		Assert(!(estate->es_useEvalPlan) &&
			   epq->estate.es_evalPlanQual == NULL);
1738 1739 1740 1741 1742 1743
		epq->rti = rti;
		endNode = false;
	}

	/*
	 * If this is request for another RTE - Ra, - then we have to check
B
Bruce Momjian 已提交
1744 1745 1746
	 * wasn't PlanQual requested for Ra already and if so then Ra' row was
	 * updated again and we have to re-start old execution for Ra and
	 * forget all what we done after Ra was suspended. Cool? -:))
1747
	 */
B
Bruce Momjian 已提交
1748
	if (epq != NULL && epq->rti != rti &&
1749 1750 1751 1752
		epq->estate.es_evTuple[rti - 1] != NULL)
	{
		do
		{
1753 1754
			evalPlanQual *oldepq;

1755 1756
			/* pop previous PlanQual from the stack */
			epqstate = &(epq->estate);
B
Bruce Momjian 已提交
1757
			oldepq = (evalPlanQual *) epqstate->es_evalPlanQual;
1758 1759
			Assert(oldepq->rti != 0);
			/* stop execution */
1760
			ExecEndNode(epq->plan, NULL);
1761 1762
			ExecDropTupleTable(epqstate->es_tupleTable, true);
			epqstate->es_tupleTable = NULL;
1763
			heap_freetuple(epqstate->es_evTuple[epq->rti - 1]);
1764 1765 1766 1767
			epqstate->es_evTuple[epq->rti - 1] = NULL;
			/* push current PQ to freePQ stack */
			oldepq->free = epq;
			epq = oldepq;
1768
			estate->es_evalPlanQual = (Pointer) epq;
1769 1770 1771
		} while (epq->rti != rti);
	}

B
Bruce Momjian 已提交
1772
	/*
1773 1774 1775 1776 1777 1778
	 * If we are requested for another RTE then we have to suspend
	 * execution of current PlanQual and start execution for new one.
	 */
	if (epq == NULL || epq->rti != rti)
	{
		/* try to reuse plan used previously */
B
Bruce Momjian 已提交
1779
		evalPlanQual *newepq = (epq != NULL) ? epq->free : NULL;
1780

1781
		if (newepq == NULL)		/* first call or freePQ stack is empty */
1782
		{
B
Bruce Momjian 已提交
1783
			newepq = (evalPlanQual *) palloc(sizeof(evalPlanQual));
1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798
			newepq->free = NULL;
			/*
			 * Each stack level has its own copy of the plan tree.  This
			 * is wasteful, but necessary as long as plan nodes point to
			 * exec state nodes rather than vice versa.  Note that copyfuncs.c
			 * doesn't attempt to copy the exec state nodes, which is a good
			 * thing in this situation.
			 */
			newepq->plan = copyObject(estate->es_origPlan);
			/*
			 * Init stack level's EState.  We share top level's copy of
			 * es_result_relations array and other non-changing status.
			 * We need our own tupletable, es_param_exec_vals, and other
			 * changeable state.
			 */
1799
			epqstate = &(newepq->estate);
1800
			memcpy(epqstate, estate, sizeof(EState));
1801 1802 1803
			epqstate->es_direction = ForwardScanDirection;
			if (estate->es_origPlan->nParamExec > 0)
				epqstate->es_param_exec_vals = (ParamExecData *)
B
Bruce Momjian 已提交
1804 1805
					palloc(estate->es_origPlan->nParamExec *
						   sizeof(ParamExecData));
1806 1807 1808 1809 1810 1811 1812 1813 1814 1815
			epqstate->es_tupleTable = NULL;
			epqstate->es_per_tuple_exprcontext = NULL;
			/*
			 * Each epqstate must have its own es_evTupleNull state,
			 * but all the stack entries share es_evTuple state.  This
			 * allows sub-rechecks to inherit the value being examined by
			 * an outer recheck.
			 */
			epqstate->es_evTupleNull = (bool *) palloc(rtsize * sizeof(bool));
			if (epq == NULL)
1816
			{
1817
				/* first PQ stack entry */
B
Bruce Momjian 已提交
1818
				epqstate->es_evTuple = (HeapTuple *)
1819 1820
					palloc(rtsize * sizeof(HeapTuple));
				memset(epqstate->es_evTuple, 0, rtsize * sizeof(HeapTuple));
1821 1822
			}
			else
1823 1824
			{
				/* later stack entries share the same storage */
1825
				epqstate->es_evTuple = epq->estate.es_evTuple;
1826
			}
1827 1828
		}
		else
1829 1830
		{
			/* recycle previously used EState */
1831
			epqstate = &(newepq->estate);
1832
		}
1833 1834
		/* push current PQ to the stack */
		epqstate->es_evalPlanQual = (Pointer) epq;
1835 1836
		epq = newepq;
		estate->es_evalPlanQual = (Pointer) epq;
1837 1838 1839 1840
		epq->rti = rti;
		endNode = false;
	}

1841
	Assert(epq->rti == rti);
1842 1843 1844
	epqstate = &(epq->estate);

	/*
1845 1846 1847 1848 1849 1850
	 * Ok - we're requested for the same RTE.  Unfortunately we still
	 * have to end and restart execution of the plan, because ExecReScan
	 * wouldn't ensure that upper plan nodes would reset themselves.  We
	 * could make that work if insertion of the target tuple were integrated
	 * with the Param mechanism somehow, so that the upper plan nodes know
	 * that their children's outputs have changed.
1851 1852
	 */
	if (endNode)
1853
	{
1854
		/* stop execution */
1855
		ExecEndNode(epq->plan, NULL);
1856 1857
		ExecDropTupleTable(epqstate->es_tupleTable, true);
		epqstate->es_tupleTable = NULL;
1858
	}
1859

1860 1861 1862 1863 1864 1865 1866
	/*
	 * free old RTE' tuple, if any, and store target tuple where relation's
	 * scan node will see it
	 */
	if (epqstate->es_evTuple[rti - 1] != NULL)
		heap_freetuple(epqstate->es_evTuple[rti - 1]);
	epqstate->es_evTuple[rti - 1] = copyTuple;
1867

1868 1869 1870 1871 1872 1873
	/*
	 * Initialize for new recheck query; be careful to copy down state
	 * that might have changed in top EState.
	 */
	epqstate->es_result_relation_info = estate->es_result_relation_info;
	epqstate->es_junkFilter = estate->es_junkFilter;
1874
	if (estate->es_origPlan->nParamExec > 0)
B
Bruce Momjian 已提交
1875 1876
		memset(epqstate->es_param_exec_vals, 0,
			   estate->es_origPlan->nParamExec * sizeof(ParamExecData));
1877 1878 1879 1880 1881
	memset(epqstate->es_evTupleNull, false, rtsize * sizeof(bool));
	epqstate->es_useEvalPlan = false;
	Assert(epqstate->es_tupleTable == NULL);
	epqstate->es_tupleTable =
		ExecCreateTupleTable(estate->es_tupleTable->size);
1882

1883
	ExecInitNode(epq->plan, epqstate, NULL);
1884

1885
	return EvalPlanQualNext(estate);
1886 1887
}

B
Bruce Momjian 已提交
1888
static TupleTableSlot *
1889 1890
EvalPlanQualNext(EState *estate)
{
B
Bruce Momjian 已提交
1891 1892 1893 1894
	evalPlanQual *epq = (evalPlanQual *) estate->es_evalPlanQual;
	EState	   *epqstate = &(epq->estate);
	evalPlanQual *oldepq;
	TupleTableSlot *slot;
1895 1896 1897 1898

	Assert(epq->rti != 0);

lpqnext:;
1899
	slot = ExecProcNode(epq->plan, NULL);
1900 1901 1902 1903 1904 1905

	/*
	 * No more tuples for this PQ. Continue previous one.
	 */
	if (TupIsNull(slot))
	{
1906
		/* stop execution */
1907
		ExecEndNode(epq->plan, NULL);
1908 1909
		ExecDropTupleTable(epqstate->es_tupleTable, true);
		epqstate->es_tupleTable = NULL;
1910
		heap_freetuple(epqstate->es_evTuple[epq->rti - 1]);
1911 1912
		epqstate->es_evTuple[epq->rti - 1] = NULL;
		/* pop old PQ from the stack */
B
Bruce Momjian 已提交
1913 1914
		oldepq = (evalPlanQual *) epqstate->es_evalPlanQual;
		if (oldepq == (evalPlanQual *) NULL)
1915
		{
1916 1917 1918
			epq->rti = 0;		/* this is the first (oldest) */
			estate->es_useEvalPlan = false;		/* PQ - mark as free and	  */
			return (NULL);		/* continue Query execution   */
1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930
		}
		Assert(oldepq->rti != 0);
		/* push current PQ to freePQ stack */
		oldepq->free = epq;
		epq = oldepq;
		epqstate = &(epq->estate);
		estate->es_evalPlanQual = (Pointer) epq;
		goto lpqnext;
	}

	return (slot);
}
1931 1932 1933 1934 1935 1936 1937 1938

static void
EndEvalPlanQual(EState *estate)
{
	evalPlanQual *epq = (evalPlanQual *) estate->es_evalPlanQual;
	EState	   *epqstate = &(epq->estate);
	evalPlanQual *oldepq;

1939 1940 1941
	if (epq->rti == 0)			/* plans already shutdowned */
	{
		Assert(epq->estate.es_evalPlanQual == NULL);
1942
		return;
1943
	}
1944 1945 1946

	for (;;)
	{
1947
		/* stop execution */
1948
		ExecEndNode(epq->plan, NULL);
1949 1950
		ExecDropTupleTable(epqstate->es_tupleTable, true);
		epqstate->es_tupleTable = NULL;
1951 1952 1953 1954 1955
		if (epqstate->es_evTuple[epq->rti - 1] != NULL)
		{
			heap_freetuple(epqstate->es_evTuple[epq->rti - 1]);
			epqstate->es_evTuple[epq->rti - 1] = NULL;
		}
1956 1957 1958 1959
		/* pop old PQ from the stack */
		oldepq = (evalPlanQual *) epqstate->es_evalPlanQual;
		if (oldepq == (evalPlanQual *) NULL)
		{
1960 1961
			epq->rti = 0;		/* this is the first (oldest) */
			estate->es_useEvalPlan = false;		/* PQ - mark as free */
1962 1963 1964 1965 1966 1967 1968 1969 1970 1971
			break;
		}
		Assert(oldepq->rti != 0);
		/* push current PQ to freePQ stack */
		oldepq->free = epq;
		epq = oldepq;
		epqstate = &(epq->estate);
		estate->es_evalPlanQual = (Pointer) epq;
	}
}