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290 lines
7.3 KiB
C
290 lines
7.3 KiB
C
/*-------------------------------------------------------------------------
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*
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* nodeResult.c
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* support for constant nodes needing special code.
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*
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* DESCRIPTION
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*
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* Result nodes are used in queries where no relations are scanned.
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* Examples of such queries are:
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*
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* retrieve (x = 1)
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* and
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* append emp (name = "mike", salary = 15000)
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*
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* Result nodes are also used to optimise queries with constant
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* qualifications (ie, quals that do not depend on the scanned data),
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* such as:
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*
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* retrieve (emp.all) where 2 > 1
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*
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* In this case, the plan generated is
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*
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* Result (with 2 > 1 qual)
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* /
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* SeqScan (emp.all)
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*
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* At runtime, the Result node evaluates the constant qual once.
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* If it's false, we can return an empty result set without running
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* the controlled plan at all. If it's true, we run the controlled
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* plan normally and pass back the results.
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*
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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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*
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* IDENTIFICATION
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* $Header: /cvsroot/pgsql/src/backend/executor/nodeResult.c,v 1.20 2001/10/25 05:49:29 momjian Exp $
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*
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*-------------------------------------------------------------------------
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*/
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#include "postgres.h"
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#include "executor/executor.h"
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#include "executor/nodeResult.h"
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#include "utils/memutils.h"
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/* ----------------------------------------------------------------
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* ExecResult(node)
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*
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* returns the tuples from the outer plan which satisfy the
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* qualification clause. Since result nodes with right
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* subtrees are never planned, we ignore the right subtree
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* entirely (for now).. -cim 10/7/89
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*
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* The qualification containing only constant clauses are
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* checked first before any processing is done. It always returns
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* 'nil' if the constant qualification is not satisfied.
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* ----------------------------------------------------------------
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*/
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TupleTableSlot *
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ExecResult(Result *node)
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{
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ResultState *resstate;
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TupleTableSlot *outerTupleSlot;
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TupleTableSlot *resultSlot;
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Plan *outerPlan;
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ExprContext *econtext;
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ExprDoneCond isDone;
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/*
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* initialize the result node's state
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*/
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resstate = node->resstate;
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econtext = resstate->cstate.cs_ExprContext;
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/*
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* check constant qualifications like (2 > 1), if not already done
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*/
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if (resstate->rs_checkqual)
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{
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bool qualResult = ExecQual((List *) node->resconstantqual,
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econtext,
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false);
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resstate->rs_checkqual = false;
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if (qualResult == false)
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{
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resstate->rs_done = true;
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return NULL;
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}
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}
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/*
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* Check to see if we're still projecting out tuples from a previous
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* scan tuple (because there is a function-returning-set in the
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* projection expressions). If so, try to project another one.
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*/
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if (resstate->cstate.cs_TupFromTlist)
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{
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resultSlot = ExecProject(resstate->cstate.cs_ProjInfo, &isDone);
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if (isDone == ExprMultipleResult)
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return resultSlot;
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/* Done with that source tuple... */
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resstate->cstate.cs_TupFromTlist = false;
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}
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/*
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* Reset per-tuple memory context to free any expression evaluation
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* storage allocated in the previous tuple cycle. Note this can't
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* happen until we're done projecting out tuples from a scan tuple.
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*/
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ResetExprContext(econtext);
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/*
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* if rs_done is true then it means that we were asked to return a
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* constant tuple and we already did the last time ExecResult() was
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* called, OR that we failed the constant qual check. Either way, now
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* we are through.
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*/
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while (!resstate->rs_done)
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{
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outerPlan = outerPlan(node);
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if (outerPlan != NULL)
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{
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/*
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* retrieve tuples from the outer plan until there are no
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* more.
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*/
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outerTupleSlot = ExecProcNode(outerPlan, (Plan *) node);
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if (TupIsNull(outerTupleSlot))
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return NULL;
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resstate->cstate.cs_OuterTupleSlot = outerTupleSlot;
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/*
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* XXX gross hack. use outer tuple as scan tuple for
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* projection
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*/
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econtext->ecxt_outertuple = outerTupleSlot;
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econtext->ecxt_scantuple = outerTupleSlot;
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}
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else
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{
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/*
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* if we don't have an outer plan, then we are just generating
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* the results from a constant target list. Do it only once.
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*/
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resstate->rs_done = true;
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}
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/*
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* form the result tuple using ExecProject(), and return it ---
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* unless the projection produces an empty set, in which case we
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* must loop back to see if there are more outerPlan tuples.
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*/
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resultSlot = ExecProject(resstate->cstate.cs_ProjInfo, &isDone);
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if (isDone != ExprEndResult)
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{
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resstate->cstate.cs_TupFromTlist = (isDone == ExprMultipleResult);
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return resultSlot;
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}
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}
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return NULL;
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}
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/* ----------------------------------------------------------------
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* ExecInitResult
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*
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* Creates the run-time state information for the result node
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* produced by the planner and initailizes outer relations
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* (child nodes).
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* ----------------------------------------------------------------
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*/
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bool
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ExecInitResult(Result *node, EState *estate, Plan *parent)
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{
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ResultState *resstate;
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/*
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* assign execution state to node
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*/
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node->plan.state = estate;
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/*
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* create new ResultState for node
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*/
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resstate = makeNode(ResultState);
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resstate->rs_done = false;
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resstate->rs_checkqual = (node->resconstantqual == NULL) ? false : true;
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node->resstate = resstate;
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/*
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* Miscellaneous initialization
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*
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* create expression context for node
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*/
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ExecAssignExprContext(estate, &resstate->cstate);
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#define RESULT_NSLOTS 1
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/*
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* tuple table initialization
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*/
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ExecInitResultTupleSlot(estate, &resstate->cstate);
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/*
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* then initialize children
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*/
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ExecInitNode(outerPlan(node), estate, (Plan *) node);
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/*
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* we don't use inner plan
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*/
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Assert(innerPlan(node) == NULL);
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/*
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* initialize tuple type and projection info
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*/
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ExecAssignResultTypeFromTL((Plan *) node, &resstate->cstate);
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ExecAssignProjectionInfo((Plan *) node, &resstate->cstate);
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return TRUE;
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}
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int
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ExecCountSlotsResult(Result *node)
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{
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return ExecCountSlotsNode(outerPlan(node)) + RESULT_NSLOTS;
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}
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/* ----------------------------------------------------------------
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* ExecEndResult
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*
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* frees up storage allocated through C routines
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* ----------------------------------------------------------------
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*/
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void
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ExecEndResult(Result *node)
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{
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ResultState *resstate;
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resstate = node->resstate;
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/*
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* Free the projection info
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*
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* Note: we don't ExecFreeResultType(resstate) because the rule manager
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* depends on the tupType returned by ExecMain(). So for now, this is
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* freed at end-transaction time. -cim 6/2/91
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*/
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ExecFreeProjectionInfo(&resstate->cstate);
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ExecFreeExprContext(&resstate->cstate);
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/*
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* shut down subplans
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*/
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ExecEndNode(outerPlan(node), (Plan *) node);
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/*
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* clean out the tuple table
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*/
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ExecClearTuple(resstate->cstate.cs_ResultTupleSlot);
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pfree(resstate);
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node->resstate = NULL; /* XXX - new for us - er1p */
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}
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void
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ExecReScanResult(Result *node, ExprContext *exprCtxt, Plan *parent)
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{
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ResultState *resstate = node->resstate;
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resstate->rs_done = false;
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resstate->cstate.cs_TupFromTlist = false;
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resstate->rs_checkqual = (node->resconstantqual == NULL) ? false : true;
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/*
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* if chgParam of subnode is not null then plan will be re-scanned by
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* first ExecProcNode.
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*/
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if (((Plan *) node)->lefttree &&
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((Plan *) node)->lefttree->chgParam == NULL)
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ExecReScan(((Plan *) node)->lefttree, exprCtxt, (Plan *) node);
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}
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