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If we only need, say, 10 tuples in total, then we certainly don't need more than 10 tuples from any single process. Pushing down the limit lets workers exit early when possible. For Gather Merge, there is an additional benefit: a Sort immediately below the Gather Merge can be done as a bounded sort if there is an applicable limit. Robert Haas and Tom Lane Discussion: http://postgr.es/m/CA+TgmoYa3QKKrLj5rX7UvGqhH73G1Li4B-EKxrmASaca2tFu9Q@mail.gmail.com
562 lines
21 KiB
C
562 lines
21 KiB
C
/*-------------------------------------------------------------------------
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*
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* executor.h
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* support for the POSTGRES executor module
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*
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*
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* Portions Copyright (c) 1996-2017, 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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* src/include/executor/executor.h
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*
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*-------------------------------------------------------------------------
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*/
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#ifndef EXECUTOR_H
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#define EXECUTOR_H
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#include "catalog/partition.h"
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#include "executor/execdesc.h"
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#include "nodes/parsenodes.h"
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/*
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* The "eflags" argument to ExecutorStart and the various ExecInitNode
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* routines is a bitwise OR of the following flag bits, which tell the
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* called plan node what to expect. Note that the flags will get modified
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* as they are passed down the plan tree, since an upper node may require
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* functionality in its subnode not demanded of the plan as a whole
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* (example: MergeJoin requires mark/restore capability in its inner input),
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* or an upper node may shield its input from some functionality requirement
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* (example: Materialize shields its input from needing to do backward scan).
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*
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* EXPLAIN_ONLY indicates that the plan tree is being initialized just so
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* EXPLAIN can print it out; it will not be run. Hence, no side-effects
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* of startup should occur. However, error checks (such as permission checks)
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* should be performed.
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*
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* REWIND indicates that the plan node should try to efficiently support
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* rescans without parameter changes. (Nodes must support ExecReScan calls
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* in any case, but if this flag was not given, they are at liberty to do it
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* through complete recalculation. Note that a parameter change forces a
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* full recalculation in any case.)
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*
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* BACKWARD indicates that the plan node must respect the es_direction flag.
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* When this is not passed, the plan node will only be run forwards.
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*
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* MARK indicates that the plan node must support Mark/Restore calls.
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* When this is not passed, no Mark/Restore will occur.
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*
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* SKIP_TRIGGERS tells ExecutorStart/ExecutorFinish to skip calling
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* AfterTriggerBeginQuery/AfterTriggerEndQuery. This does not necessarily
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* mean that the plan can't queue any AFTER triggers; just that the caller
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* is responsible for there being a trigger context for them to be queued in.
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*
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* WITH/WITHOUT_OIDS tell the executor to emit tuples with or without space
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* for OIDs, respectively. These are currently used only for CREATE TABLE AS.
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* If neither is set, the plan may or may not produce tuples including OIDs.
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*/
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#define EXEC_FLAG_EXPLAIN_ONLY 0x0001 /* EXPLAIN, no ANALYZE */
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#define EXEC_FLAG_REWIND 0x0002 /* need efficient rescan */
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#define EXEC_FLAG_BACKWARD 0x0004 /* need backward scan */
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#define EXEC_FLAG_MARK 0x0008 /* need mark/restore */
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#define EXEC_FLAG_SKIP_TRIGGERS 0x0010 /* skip AfterTrigger calls */
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#define EXEC_FLAG_WITH_OIDS 0x0020 /* force OIDs in returned tuples */
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#define EXEC_FLAG_WITHOUT_OIDS 0x0040 /* force no OIDs in returned tuples */
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#define EXEC_FLAG_WITH_NO_DATA 0x0080 /* rel scannability doesn't matter */
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/* Hook for plugins to get control in ExecutorStart() */
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typedef void (*ExecutorStart_hook_type) (QueryDesc *queryDesc, int eflags);
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extern PGDLLIMPORT ExecutorStart_hook_type ExecutorStart_hook;
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/* Hook for plugins to get control in ExecutorRun() */
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typedef void (*ExecutorRun_hook_type) (QueryDesc *queryDesc,
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ScanDirection direction,
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uint64 count,
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bool execute_once);
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extern PGDLLIMPORT ExecutorRun_hook_type ExecutorRun_hook;
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/* Hook for plugins to get control in ExecutorFinish() */
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typedef void (*ExecutorFinish_hook_type) (QueryDesc *queryDesc);
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extern PGDLLIMPORT ExecutorFinish_hook_type ExecutorFinish_hook;
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/* Hook for plugins to get control in ExecutorEnd() */
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typedef void (*ExecutorEnd_hook_type) (QueryDesc *queryDesc);
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extern PGDLLIMPORT ExecutorEnd_hook_type ExecutorEnd_hook;
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/* Hook for plugins to get control in ExecCheckRTPerms() */
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typedef bool (*ExecutorCheckPerms_hook_type) (List *, bool);
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extern PGDLLIMPORT ExecutorCheckPerms_hook_type ExecutorCheckPerms_hook;
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/*
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* prototypes from functions in execAmi.c
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*/
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struct Path; /* avoid including relation.h here */
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extern void ExecReScan(PlanState *node);
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extern void ExecMarkPos(PlanState *node);
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extern void ExecRestrPos(PlanState *node);
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extern bool ExecSupportsMarkRestore(struct Path *pathnode);
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extern bool ExecSupportsBackwardScan(Plan *node);
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extern bool ExecMaterializesOutput(NodeTag plantype);
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/*
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* prototypes from functions in execCurrent.c
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*/
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extern bool execCurrentOf(CurrentOfExpr *cexpr,
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ExprContext *econtext,
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Oid table_oid,
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ItemPointer current_tid);
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/*
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* prototypes from functions in execGrouping.c
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*/
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extern bool execTuplesMatch(TupleTableSlot *slot1,
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TupleTableSlot *slot2,
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int numCols,
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AttrNumber *matchColIdx,
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FmgrInfo *eqfunctions,
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MemoryContext evalContext);
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extern bool execTuplesUnequal(TupleTableSlot *slot1,
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TupleTableSlot *slot2,
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int numCols,
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AttrNumber *matchColIdx,
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FmgrInfo *eqfunctions,
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MemoryContext evalContext);
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extern FmgrInfo *execTuplesMatchPrepare(int numCols,
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Oid *eqOperators);
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extern void execTuplesHashPrepare(int numCols,
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Oid *eqOperators,
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FmgrInfo **eqFunctions,
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FmgrInfo **hashFunctions);
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extern TupleHashTable BuildTupleHashTable(int numCols, AttrNumber *keyColIdx,
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FmgrInfo *eqfunctions,
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FmgrInfo *hashfunctions,
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long nbuckets, Size additionalsize,
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MemoryContext tablecxt,
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MemoryContext tempcxt, bool use_variable_hash_iv);
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extern TupleHashEntry LookupTupleHashEntry(TupleHashTable hashtable,
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TupleTableSlot *slot,
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bool *isnew);
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extern TupleHashEntry FindTupleHashEntry(TupleHashTable hashtable,
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TupleTableSlot *slot,
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FmgrInfo *eqfunctions,
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FmgrInfo *hashfunctions);
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/*
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* prototypes from functions in execJunk.c
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*/
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extern JunkFilter *ExecInitJunkFilter(List *targetList, bool hasoid,
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TupleTableSlot *slot);
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extern JunkFilter *ExecInitJunkFilterConversion(List *targetList,
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TupleDesc cleanTupType,
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TupleTableSlot *slot);
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extern AttrNumber ExecFindJunkAttribute(JunkFilter *junkfilter,
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const char *attrName);
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extern AttrNumber ExecFindJunkAttributeInTlist(List *targetlist,
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const char *attrName);
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extern Datum ExecGetJunkAttribute(TupleTableSlot *slot, AttrNumber attno,
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bool *isNull);
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extern TupleTableSlot *ExecFilterJunk(JunkFilter *junkfilter,
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TupleTableSlot *slot);
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/*
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* prototypes from functions in execMain.c
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*/
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extern void ExecutorStart(QueryDesc *queryDesc, int eflags);
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extern void standard_ExecutorStart(QueryDesc *queryDesc, int eflags);
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extern void ExecutorRun(QueryDesc *queryDesc,
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ScanDirection direction, uint64 count, bool execute_once);
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extern void standard_ExecutorRun(QueryDesc *queryDesc,
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ScanDirection direction, uint64 count, bool execute_once);
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extern void ExecutorFinish(QueryDesc *queryDesc);
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extern void standard_ExecutorFinish(QueryDesc *queryDesc);
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extern void ExecutorEnd(QueryDesc *queryDesc);
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extern void standard_ExecutorEnd(QueryDesc *queryDesc);
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extern void ExecutorRewind(QueryDesc *queryDesc);
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extern bool ExecCheckRTPerms(List *rangeTable, bool ereport_on_violation);
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extern void CheckValidResultRel(Relation resultRel, CmdType operation);
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extern void InitResultRelInfo(ResultRelInfo *resultRelInfo,
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Relation resultRelationDesc,
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Index resultRelationIndex,
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Relation partition_root,
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int instrument_options);
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extern ResultRelInfo *ExecGetTriggerResultRel(EState *estate, Oid relid);
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extern void ExecCleanUpTriggerState(EState *estate);
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extern bool ExecContextForcesOids(PlanState *planstate, bool *hasoids);
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extern void ExecConstraints(ResultRelInfo *resultRelInfo,
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TupleTableSlot *slot, EState *estate);
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extern void ExecWithCheckOptions(WCOKind kind, ResultRelInfo *resultRelInfo,
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TupleTableSlot *slot, EState *estate);
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extern LockTupleMode ExecUpdateLockMode(EState *estate, ResultRelInfo *relinfo);
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extern ExecRowMark *ExecFindRowMark(EState *estate, Index rti, bool missing_ok);
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extern ExecAuxRowMark *ExecBuildAuxRowMark(ExecRowMark *erm, List *targetlist);
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extern TupleTableSlot *EvalPlanQual(EState *estate, EPQState *epqstate,
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Relation relation, Index rti, int lockmode,
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ItemPointer tid, TransactionId priorXmax);
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extern HeapTuple EvalPlanQualFetch(EState *estate, Relation relation,
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int lockmode, LockWaitPolicy wait_policy, ItemPointer tid,
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TransactionId priorXmax);
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extern void EvalPlanQualInit(EPQState *epqstate, EState *estate,
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Plan *subplan, List *auxrowmarks, int epqParam);
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extern void EvalPlanQualSetPlan(EPQState *epqstate,
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Plan *subplan, List *auxrowmarks);
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extern void EvalPlanQualSetTuple(EPQState *epqstate, Index rti,
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HeapTuple tuple);
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extern HeapTuple EvalPlanQualGetTuple(EPQState *epqstate, Index rti);
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extern void ExecSetupPartitionTupleRouting(Relation rel,
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Index resultRTindex,
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EState *estate,
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PartitionDispatch **pd,
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ResultRelInfo **partitions,
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TupleConversionMap ***tup_conv_maps,
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TupleTableSlot **partition_tuple_slot,
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int *num_parted, int *num_partitions);
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extern int ExecFindPartition(ResultRelInfo *resultRelInfo,
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PartitionDispatch *pd,
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TupleTableSlot *slot,
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EState *estate);
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#define EvalPlanQualSetSlot(epqstate, slot) ((epqstate)->origslot = (slot))
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extern void EvalPlanQualFetchRowMarks(EPQState *epqstate);
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extern TupleTableSlot *EvalPlanQualNext(EPQState *epqstate);
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extern void EvalPlanQualBegin(EPQState *epqstate, EState *parentestate);
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extern void EvalPlanQualEnd(EPQState *epqstate);
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/*
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* functions in execProcnode.c
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*/
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extern PlanState *ExecInitNode(Plan *node, EState *estate, int eflags);
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extern Node *MultiExecProcNode(PlanState *node);
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extern void ExecEndNode(PlanState *node);
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extern bool ExecShutdownNode(PlanState *node);
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extern void ExecSetTupleBound(int64 tuples_needed, PlanState *child_node);
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/* ----------------------------------------------------------------
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* ExecProcNode
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*
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* Execute the given node to return a(nother) tuple.
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* ----------------------------------------------------------------
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*/
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#ifndef FRONTEND
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static inline TupleTableSlot *
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ExecProcNode(PlanState *node)
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{
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if (node->chgParam != NULL) /* something changed? */
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ExecReScan(node); /* let ReScan handle this */
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return node->ExecProcNode(node);
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}
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#endif
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/*
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* prototypes from functions in execExpr.c
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*/
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extern ExprState *ExecInitExpr(Expr *node, PlanState *parent);
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extern ExprState *ExecInitQual(List *qual, PlanState *parent);
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extern ExprState *ExecInitCheck(List *qual, PlanState *parent);
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extern List *ExecInitExprList(List *nodes, PlanState *parent);
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extern ProjectionInfo *ExecBuildProjectionInfo(List *targetList,
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ExprContext *econtext,
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TupleTableSlot *slot,
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PlanState *parent,
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TupleDesc inputDesc);
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extern ExprState *ExecPrepareExpr(Expr *node, EState *estate);
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extern ExprState *ExecPrepareQual(List *qual, EState *estate);
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extern ExprState *ExecPrepareCheck(List *qual, EState *estate);
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extern List *ExecPrepareExprList(List *nodes, EState *estate);
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/*
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* ExecEvalExpr
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*
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* Evaluate expression identified by "state" in the execution context
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* given by "econtext". *isNull is set to the is-null flag for the result,
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* and the Datum value is the function result.
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*
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* The caller should already have switched into the temporary memory
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* context econtext->ecxt_per_tuple_memory. The convenience entry point
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* ExecEvalExprSwitchContext() is provided for callers who don't prefer to
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* do the switch in an outer loop.
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*/
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#ifndef FRONTEND
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static inline Datum
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ExecEvalExpr(ExprState *state,
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ExprContext *econtext,
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bool *isNull)
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{
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return (*state->evalfunc) (state, econtext, isNull);
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}
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#endif
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/*
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* ExecEvalExprSwitchContext
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*
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* Same as ExecEvalExpr, but get into the right allocation context explicitly.
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*/
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#ifndef FRONTEND
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static inline Datum
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ExecEvalExprSwitchContext(ExprState *state,
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ExprContext *econtext,
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bool *isNull)
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{
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Datum retDatum;
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MemoryContext oldContext;
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oldContext = MemoryContextSwitchTo(econtext->ecxt_per_tuple_memory);
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retDatum = (*state->evalfunc) (state, econtext, isNull);
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MemoryContextSwitchTo(oldContext);
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return retDatum;
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}
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#endif
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/*
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* ExecProject
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*
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* Projects a tuple based on projection info and stores it in the slot passed
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* to ExecBuildProjectInfo().
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*
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* Note: the result is always a virtual tuple; therefore it may reference
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* the contents of the exprContext's scan tuples and/or temporary results
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* constructed in the exprContext. If the caller wishes the result to be
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* valid longer than that data will be valid, he must call ExecMaterializeSlot
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* on the result slot.
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*/
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#ifndef FRONTEND
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static inline TupleTableSlot *
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ExecProject(ProjectionInfo *projInfo)
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{
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ExprContext *econtext = projInfo->pi_exprContext;
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ExprState *state = &projInfo->pi_state;
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TupleTableSlot *slot = state->resultslot;
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bool isnull;
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/*
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* Clear any former contents of the result slot. This makes it safe for
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* us to use the slot's Datum/isnull arrays as workspace.
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*/
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ExecClearTuple(slot);
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/* Run the expression, discarding scalar result from the last column. */
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(void) ExecEvalExprSwitchContext(state, econtext, &isnull);
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/*
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* Successfully formed a result row. Mark the result slot as containing a
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* valid virtual tuple (inlined version of ExecStoreVirtualTuple()).
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*/
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slot->tts_isempty = false;
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slot->tts_nvalid = slot->tts_tupleDescriptor->natts;
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return slot;
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}
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#endif
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/*
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* ExecQual - evaluate a qual prepared with ExecInitQual (possibly via
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* ExecPrepareQual). Returns true if qual is satisfied, else false.
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*
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* Note: ExecQual used to have a third argument "resultForNull". The
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* behavior of this function now corresponds to resultForNull == false.
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* If you want the resultForNull == true behavior, see ExecCheck.
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*/
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#ifndef FRONTEND
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static inline bool
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ExecQual(ExprState *state, ExprContext *econtext)
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{
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Datum ret;
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bool isnull;
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/* short-circuit (here and in ExecInitQual) for empty restriction list */
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if (state == NULL)
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return true;
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/* verify that expression was compiled using ExecInitQual */
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Assert(state->flags & EEO_FLAG_IS_QUAL);
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ret = ExecEvalExprSwitchContext(state, econtext, &isnull);
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/* EEOP_QUAL should never return NULL */
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Assert(!isnull);
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return DatumGetBool(ret);
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}
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#endif
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extern bool ExecCheck(ExprState *state, ExprContext *context);
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/*
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* prototypes from functions in execSRF.c
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*/
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extern SetExprState *ExecInitTableFunctionResult(Expr *expr,
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ExprContext *econtext, PlanState *parent);
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extern Tuplestorestate *ExecMakeTableFunctionResult(SetExprState *setexpr,
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ExprContext *econtext,
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MemoryContext argContext,
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TupleDesc expectedDesc,
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bool randomAccess);
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extern SetExprState *ExecInitFunctionResultSet(Expr *expr,
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ExprContext *econtext, PlanState *parent);
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extern Datum ExecMakeFunctionResultSet(SetExprState *fcache,
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ExprContext *econtext,
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bool *isNull,
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ExprDoneCond *isDone);
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/*
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* prototypes from functions in execScan.c
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*/
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typedef TupleTableSlot *(*ExecScanAccessMtd) (ScanState *node);
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typedef bool (*ExecScanRecheckMtd) (ScanState *node, TupleTableSlot *slot);
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extern TupleTableSlot *ExecScan(ScanState *node, ExecScanAccessMtd accessMtd,
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ExecScanRecheckMtd recheckMtd);
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extern void ExecAssignScanProjectionInfo(ScanState *node);
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extern void ExecAssignScanProjectionInfoWithVarno(ScanState *node, Index varno);
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extern void ExecScanReScan(ScanState *node);
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/*
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* prototypes from functions in execTuples.c
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*/
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extern void ExecInitResultTupleSlot(EState *estate, PlanState *planstate);
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extern void ExecInitScanTupleSlot(EState *estate, ScanState *scanstate);
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extern TupleTableSlot *ExecInitExtraTupleSlot(EState *estate);
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extern TupleTableSlot *ExecInitNullTupleSlot(EState *estate,
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TupleDesc tupType);
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extern TupleDesc ExecTypeFromTL(List *targetList, bool hasoid);
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extern TupleDesc ExecCleanTypeFromTL(List *targetList, bool hasoid);
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extern TupleDesc ExecTypeFromExprList(List *exprList);
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extern void ExecTypeSetColNames(TupleDesc typeInfo, List *namesList);
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extern void UpdateChangedParamSet(PlanState *node, Bitmapset *newchg);
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typedef struct TupOutputState
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{
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TupleTableSlot *slot;
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DestReceiver *dest;
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} TupOutputState;
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extern TupOutputState *begin_tup_output_tupdesc(DestReceiver *dest,
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TupleDesc tupdesc);
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extern void do_tup_output(TupOutputState *tstate, Datum *values, bool *isnull);
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extern void do_text_output_multiline(TupOutputState *tstate, const char *txt);
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extern void end_tup_output(TupOutputState *tstate);
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/*
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* Write a single line of text given as a C string.
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*
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* Should only be used with a single-TEXT-attribute tupdesc.
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*/
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#define do_text_output_oneline(tstate, str_to_emit) \
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do { \
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Datum values_[1]; \
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bool isnull_[1]; \
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values_[0] = PointerGetDatum(cstring_to_text(str_to_emit)); \
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isnull_[0] = false; \
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do_tup_output(tstate, values_, isnull_); \
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pfree(DatumGetPointer(values_[0])); \
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} while (0)
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/*
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* prototypes from functions in execUtils.c
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*/
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extern EState *CreateExecutorState(void);
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extern void FreeExecutorState(EState *estate);
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extern ExprContext *CreateExprContext(EState *estate);
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extern ExprContext *CreateStandaloneExprContext(void);
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extern void FreeExprContext(ExprContext *econtext, bool isCommit);
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extern void ReScanExprContext(ExprContext *econtext);
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#define ResetExprContext(econtext) \
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MemoryContextReset((econtext)->ecxt_per_tuple_memory)
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extern ExprContext *MakePerTupleExprContext(EState *estate);
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/* Get an EState's per-output-tuple exprcontext, making it if first use */
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#define GetPerTupleExprContext(estate) \
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((estate)->es_per_tuple_exprcontext ? \
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(estate)->es_per_tuple_exprcontext : \
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MakePerTupleExprContext(estate))
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#define GetPerTupleMemoryContext(estate) \
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(GetPerTupleExprContext(estate)->ecxt_per_tuple_memory)
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/* Reset an EState's per-output-tuple exprcontext, if one's been created */
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#define ResetPerTupleExprContext(estate) \
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do { \
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if ((estate)->es_per_tuple_exprcontext) \
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ResetExprContext((estate)->es_per_tuple_exprcontext); \
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} while (0)
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extern void ExecAssignExprContext(EState *estate, PlanState *planstate);
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extern void ExecAssignResultType(PlanState *planstate, TupleDesc tupDesc);
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extern void ExecAssignResultTypeFromTL(PlanState *planstate);
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extern TupleDesc ExecGetResultType(PlanState *planstate);
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extern void ExecAssignProjectionInfo(PlanState *planstate,
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TupleDesc inputDesc);
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extern void ExecFreeExprContext(PlanState *planstate);
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extern void ExecAssignScanType(ScanState *scanstate, TupleDesc tupDesc);
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extern void ExecAssignScanTypeFromOuterPlan(ScanState *scanstate);
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extern bool ExecRelationIsTargetRelation(EState *estate, Index scanrelid);
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extern Relation ExecOpenScanRelation(EState *estate, Index scanrelid, int eflags);
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extern void ExecCloseScanRelation(Relation scanrel);
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extern int executor_errposition(EState *estate, int location);
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extern void RegisterExprContextCallback(ExprContext *econtext,
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ExprContextCallbackFunction function,
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Datum arg);
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extern void UnregisterExprContextCallback(ExprContext *econtext,
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ExprContextCallbackFunction function,
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Datum arg);
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extern void ExecLockNonLeafAppendTables(List *partitioned_rels, EState *estate);
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extern Datum GetAttributeByName(HeapTupleHeader tuple, const char *attname,
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bool *isNull);
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extern Datum GetAttributeByNum(HeapTupleHeader tuple, AttrNumber attrno,
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bool *isNull);
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extern int ExecTargetListLength(List *targetlist);
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extern int ExecCleanTargetListLength(List *targetlist);
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/*
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* prototypes from functions in execIndexing.c
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*/
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extern void ExecOpenIndices(ResultRelInfo *resultRelInfo, bool speculative);
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extern void ExecCloseIndices(ResultRelInfo *resultRelInfo);
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extern List *ExecInsertIndexTuples(TupleTableSlot *slot, ItemPointer tupleid,
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EState *estate, bool noDupErr, bool *specConflict,
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List *arbiterIndexes);
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extern bool ExecCheckIndexConstraints(TupleTableSlot *slot, EState *estate,
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ItemPointer conflictTid, List *arbiterIndexes);
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extern void check_exclusion_constraint(Relation heap, Relation index,
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IndexInfo *indexInfo,
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ItemPointer tupleid,
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Datum *values, bool *isnull,
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EState *estate, bool newIndex);
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/*
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* prototypes from functions in execReplication.c
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*/
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extern bool RelationFindReplTupleByIndex(Relation rel, Oid idxoid,
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LockTupleMode lockmode,
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TupleTableSlot *searchslot,
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TupleTableSlot *outslot);
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extern bool RelationFindReplTupleSeq(Relation rel, LockTupleMode lockmode,
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TupleTableSlot *searchslot, TupleTableSlot *outslot);
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extern void ExecSimpleRelationInsert(EState *estate, TupleTableSlot *slot);
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extern void ExecSimpleRelationUpdate(EState *estate, EPQState *epqstate,
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TupleTableSlot *searchslot, TupleTableSlot *slot);
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extern void ExecSimpleRelationDelete(EState *estate, EPQState *epqstate,
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TupleTableSlot *searchslot);
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extern void CheckCmdReplicaIdentity(Relation rel, CmdType cmd);
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extern void CheckSubscriptionRelkind(char relkind, const char *nspname,
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const char *relname);
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#endif /* EXECUTOR_H */
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