158 lines
4.1 KiB
C
158 lines
4.1 KiB
C
/*-------------------------------------------------------------------------
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*
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* execScan.c
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* This code provides support for generalized relation scans. ExecScan
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* is passed a node and a pointer to a function to "do the right thing"
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* and return a tuple from the relation. ExecScan then does the tedious
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* stuff - checking the qualification and projecting the tuple
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* appropriately.
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*
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* Copyright (c) 1994, Regents of the University of California
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*
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*
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* IDENTIFICATION
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* $Header: /cvsroot/pgsql/src/backend/executor/execScan.c,v 1.9 1999/02/13 23:15:18 momjian Exp $
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*
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*-------------------------------------------------------------------------
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*/
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#include <sys/types.h>
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#include <sys/file.h>
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#include "postgres.h"
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#include "executor/executor.h"
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/* ----------------------------------------------------------------
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* ExecScan
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*
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* Scans the relation using the 'access method' indicated and
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* returns the next qualifying tuple in the direction specified
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* in the global variable ExecDirection.
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* The access method returns the next tuple and execScan() is
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* responisble for checking the tuple returned against the qual-clause.
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*
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* Conditions:
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* -- the "cursor" maintained by the AMI is positioned at the tuple
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* returned previously.
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*
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* Initial States:
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* -- the relation indicated is opened for scanning so that the
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* "cursor" is positioned before the first qualifying tuple.
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*
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* May need to put startmmgr and endmmgr in here.
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* ----------------------------------------------------------------
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*/
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TupleTableSlot *
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ExecScan(Scan *node,
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TupleTableSlot *(*accessMtd) ()) /* function returning a
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* tuple */
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{
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CommonScanState *scanstate;
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EState *estate;
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List *qual;
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bool isDone;
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TupleTableSlot *slot;
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TupleTableSlot *resultSlot;
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HeapTuple newTuple;
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ExprContext *econtext;
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ProjectionInfo *projInfo;
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/* ----------------
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* initialize misc variables
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* ----------------
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*/
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newTuple = NULL;
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slot = NULL;
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estate = node->plan.state;
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scanstate = node->scanstate;
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/* ----------------
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* get the expression context
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* ----------------
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*/
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econtext = scanstate->cstate.cs_ExprContext;
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/* ----------------
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* initialize fields in ExprContext which don't change
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* in the course of the scan..
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* ----------------
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*/
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qual = node->plan.qual;
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econtext->ecxt_relation = scanstate->css_currentRelation;
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econtext->ecxt_relid = node->scanrelid;
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if (scanstate->cstate.cs_TupFromTlist)
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{
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projInfo = scanstate->cstate.cs_ProjInfo;
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resultSlot = ExecProject(projInfo, &isDone);
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if (!isDone)
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return resultSlot;
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}
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/*
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* get a tuple from the access method loop until we obtain a tuple
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* which passes the qualification.
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*/
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for (;;)
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{
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slot = (TupleTableSlot *) (*accessMtd) (node);
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/* ----------------
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* if the slot returned by the accessMtd contains
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* NULL, then it means there is nothing more to scan
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* so we just return the empty slot...
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*
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* ... with invalid TupleDesc (not the same as in
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* projInfo->pi_slot) and break upper MergeJoin node.
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* New code below do what ExecProject() does. - vadim 02/26/98
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* ----------------
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*/
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if (TupIsNull(slot))
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{
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scanstate->cstate.cs_TupFromTlist = false;
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resultSlot = scanstate->cstate.cs_ProjInfo->pi_slot;
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return (TupleTableSlot *)
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ExecStoreTuple(NULL,
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resultSlot,
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InvalidBuffer,
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true);
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}
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/* ----------------
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* place the current tuple into the expr context
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* ----------------
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*/
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econtext->ecxt_scantuple = slot;
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/* ----------------
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* check that the current tuple satisfies the qual-clause
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* if our qualification succeeds then we
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* leave the loop.
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* ----------------
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*/
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/*
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* add a check for non-nil qual here to avoid a function call to
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* ExecQual() when the qual is nil
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*/
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if (!qual || ExecQual(qual, econtext) == true)
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break;
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}
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/* ----------------
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* form a projection tuple, store it in the result tuple
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* slot and return it.
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* ----------------
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*/
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projInfo = scanstate->cstate.cs_ProjInfo;
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resultSlot = ExecProject(projInfo, &isDone);
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scanstate->cstate.cs_TupFromTlist = !isDone;
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return resultSlot;
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}
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