mirror of
https://github.com/postgres/postgres.git
synced 2025-04-21 12:05:57 +03:00
Now that list_nth is O(1), there's no good reason to maintain a separate array of RTE pointers rather than indexing into estate->es_range_table. Deleting the array doesn't save all that much either; but just on cleanliness grounds, it's better not to have duplicate representations of the identical information. Discussion: https://postgr.es/m/14960.1565384592@sss.pgh.pa.us
600 lines
22 KiB
C
600 lines
22 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) 1996-2019, 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 "executor/execdesc.h"
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#include "nodes/lockoptions.h"
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#include "nodes/parsenodes.h"
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#include "utils/memutils.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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#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_NO_DATA 0x0020 /* 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 pathnodes.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 ExprState *execTuplesMatchPrepare(TupleDesc desc,
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int numCols,
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const AttrNumber *keyColIdx,
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const Oid *eqOperators,
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const Oid *collations,
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PlanState *parent);
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extern void execTuplesHashPrepare(int numCols,
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const Oid *eqOperators,
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Oid **eqFuncOids,
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FmgrInfo **hashFunctions);
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extern TupleHashTable BuildTupleHashTable(PlanState *parent,
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TupleDesc inputDesc,
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int numCols, AttrNumber *keyColIdx,
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const Oid *eqfuncoids,
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FmgrInfo *hashfunctions,
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Oid *collations,
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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 TupleHashTable BuildTupleHashTableExt(PlanState *parent,
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TupleDesc inputDesc,
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int numCols, AttrNumber *keyColIdx,
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const Oid *eqfuncoids,
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FmgrInfo *hashfunctions,
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Oid *collations,
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long nbuckets, Size additionalsize,
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MemoryContext metacxt,
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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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ExprState *eqcomp,
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FmgrInfo *hashfunctions);
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extern void ResetTupleHashTable(TupleHashTable hashtable);
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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,
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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(ResultRelInfo *resultRelInfo, 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 void ExecConstraints(ResultRelInfo *resultRelInfo,
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TupleTableSlot *slot, EState *estate);
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extern bool ExecPartitionCheck(ResultRelInfo *resultRelInfo,
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TupleTableSlot *slot, EState *estate, bool emitError);
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extern void ExecPartitionCheckEmitError(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, TupleTableSlot *testslot);
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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 TupleTableSlot *EvalPlanQualSlot(EPQState *epqstate,
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Relation relation, Index rti);
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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 void ExecSetExecProcNode(PlanState *node, ExecProcNodeMtd function);
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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 *ExecInitExprWithParams(Expr *node, ParamListInfo ext_params);
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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 ExprState *ExecBuildAggTrans(AggState *aggstate, struct AggStatePerPhaseData *phase,
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bool doSort, bool doHash);
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extern ExprState *ExecBuildGroupingEqual(TupleDesc ldesc, TupleDesc rdesc,
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const TupleTableSlotOps *lops, const TupleTableSlotOps *rops,
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int numCols,
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const AttrNumber *keyColIdx,
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const Oid *eqfunctions,
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const Oid *collations,
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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 ExecBuildProjectionInfo().
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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_flags &= ~TTS_FLAG_EMPTY;
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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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/*
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* ExecQualAndReset() - evaluate qual with ExecQual() and reset expression
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* context.
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*/
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#ifndef FRONTEND
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static inline bool
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ExecQualAndReset(ExprState *state, ExprContext *econtext)
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{
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bool ret = ExecQual(state, econtext);
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/* inline ResetExprContext, to avoid ordering issue in this file */
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MemoryContextReset(econtext->ecxt_per_tuple_memory);
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return 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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MemoryContext argContext,
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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 ExecInitResultTypeTL(PlanState *planstate);
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extern void ExecInitResultSlot(PlanState *planstate,
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const TupleTableSlotOps *tts_ops);
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extern void ExecInitResultTupleSlotTL(PlanState *planstate,
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const TupleTableSlotOps *tts_ops);
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extern void ExecInitScanTupleSlot(EState *estate, ScanState *scanstate,
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TupleDesc tupleDesc,
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const TupleTableSlotOps *tts_ops);
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extern TupleTableSlot *ExecInitExtraTupleSlot(EState *estate,
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TupleDesc tupledesc,
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const TupleTableSlotOps *tts_ops);
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extern TupleTableSlot *ExecInitNullTupleSlot(EState *estate, TupleDesc tupType,
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const TupleTableSlotOps *tts_ops);
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extern TupleDesc ExecTypeFromTL(List *targetList);
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extern TupleDesc ExecCleanTypeFromTL(List *targetList);
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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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const TupleTableSlotOps *tts_ops);
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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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|
/*
|
|
* Write a single line of text given as a C string.
|
|
*
|
|
* Should only be used with a single-TEXT-attribute tupdesc.
|
|
*/
|
|
#define do_text_output_oneline(tstate, str_to_emit) \
|
|
do { \
|
|
Datum values_[1]; \
|
|
bool isnull_[1]; \
|
|
values_[0] = PointerGetDatum(cstring_to_text(str_to_emit)); \
|
|
isnull_[0] = false; \
|
|
do_tup_output(tstate, values_, isnull_); \
|
|
pfree(DatumGetPointer(values_[0])); \
|
|
} while (0)
|
|
|
|
|
|
/*
|
|
* prototypes from functions in execUtils.c
|
|
*/
|
|
extern EState *CreateExecutorState(void);
|
|
extern void FreeExecutorState(EState *estate);
|
|
extern ExprContext *CreateExprContext(EState *estate);
|
|
extern ExprContext *CreateStandaloneExprContext(void);
|
|
extern void FreeExprContext(ExprContext *econtext, bool isCommit);
|
|
extern void ReScanExprContext(ExprContext *econtext);
|
|
|
|
#define ResetExprContext(econtext) \
|
|
MemoryContextReset((econtext)->ecxt_per_tuple_memory)
|
|
|
|
extern ExprContext *MakePerTupleExprContext(EState *estate);
|
|
|
|
/* Get an EState's per-output-tuple exprcontext, making it if first use */
|
|
#define GetPerTupleExprContext(estate) \
|
|
((estate)->es_per_tuple_exprcontext ? \
|
|
(estate)->es_per_tuple_exprcontext : \
|
|
MakePerTupleExprContext(estate))
|
|
|
|
#define GetPerTupleMemoryContext(estate) \
|
|
(GetPerTupleExprContext(estate)->ecxt_per_tuple_memory)
|
|
|
|
/* Reset an EState's per-output-tuple exprcontext, if one's been created */
|
|
#define ResetPerTupleExprContext(estate) \
|
|
do { \
|
|
if ((estate)->es_per_tuple_exprcontext) \
|
|
ResetExprContext((estate)->es_per_tuple_exprcontext); \
|
|
} while (0)
|
|
|
|
extern void ExecAssignExprContext(EState *estate, PlanState *planstate);
|
|
extern TupleDesc ExecGetResultType(PlanState *planstate);
|
|
extern const TupleTableSlotOps *ExecGetResultSlotOps(PlanState *planstate,
|
|
bool *isfixed);
|
|
extern void ExecAssignProjectionInfo(PlanState *planstate,
|
|
TupleDesc inputDesc);
|
|
extern void ExecConditionalAssignProjectionInfo(PlanState *planstate,
|
|
TupleDesc inputDesc, Index varno);
|
|
extern void ExecFreeExprContext(PlanState *planstate);
|
|
extern void ExecAssignScanType(ScanState *scanstate, TupleDesc tupDesc);
|
|
extern void ExecCreateScanSlotFromOuterPlan(EState *estate,
|
|
ScanState *scanstate,
|
|
const TupleTableSlotOps *tts_ops);
|
|
|
|
extern bool ExecRelationIsTargetRelation(EState *estate, Index scanrelid);
|
|
|
|
extern Relation ExecOpenScanRelation(EState *estate, Index scanrelid, int eflags);
|
|
|
|
extern void ExecInitRangeTable(EState *estate, List *rangeTable);
|
|
|
|
static inline RangeTblEntry *
|
|
exec_rt_fetch(Index rti, EState *estate)
|
|
{
|
|
return (RangeTblEntry *) list_nth(estate->es_range_table, rti - 1);
|
|
}
|
|
|
|
extern Relation ExecGetRangeTableRelation(EState *estate, Index rti);
|
|
|
|
extern int executor_errposition(EState *estate, int location);
|
|
|
|
extern void RegisterExprContextCallback(ExprContext *econtext,
|
|
ExprContextCallbackFunction function,
|
|
Datum arg);
|
|
extern void UnregisterExprContextCallback(ExprContext *econtext,
|
|
ExprContextCallbackFunction function,
|
|
Datum arg);
|
|
|
|
extern Datum GetAttributeByName(HeapTupleHeader tuple, const char *attname,
|
|
bool *isNull);
|
|
extern Datum GetAttributeByNum(HeapTupleHeader tuple, AttrNumber attrno,
|
|
bool *isNull);
|
|
|
|
extern int ExecTargetListLength(List *targetlist);
|
|
extern int ExecCleanTargetListLength(List *targetlist);
|
|
|
|
extern TupleTableSlot *ExecGetTriggerOldSlot(EState *estate, ResultRelInfo *relInfo);
|
|
extern TupleTableSlot *ExecGetTriggerNewSlot(EState *estate, ResultRelInfo *relInfo);
|
|
extern TupleTableSlot *ExecGetReturningSlot(EState *estate, ResultRelInfo *relInfo);
|
|
|
|
/*
|
|
* prototypes from functions in execIndexing.c
|
|
*/
|
|
extern void ExecOpenIndices(ResultRelInfo *resultRelInfo, bool speculative);
|
|
extern void ExecCloseIndices(ResultRelInfo *resultRelInfo);
|
|
extern List *ExecInsertIndexTuples(TupleTableSlot *slot, EState *estate, bool noDupErr,
|
|
bool *specConflict, List *arbiterIndexes);
|
|
extern bool ExecCheckIndexConstraints(TupleTableSlot *slot, EState *estate,
|
|
ItemPointer conflictTid, List *arbiterIndexes);
|
|
extern void check_exclusion_constraint(Relation heap, Relation index,
|
|
IndexInfo *indexInfo,
|
|
ItemPointer tupleid,
|
|
Datum *values, bool *isnull,
|
|
EState *estate, bool newIndex);
|
|
|
|
/*
|
|
* prototypes from functions in execReplication.c
|
|
*/
|
|
extern bool RelationFindReplTupleByIndex(Relation rel, Oid idxoid,
|
|
LockTupleMode lockmode,
|
|
TupleTableSlot *searchslot,
|
|
TupleTableSlot *outslot);
|
|
extern bool RelationFindReplTupleSeq(Relation rel, LockTupleMode lockmode,
|
|
TupleTableSlot *searchslot, TupleTableSlot *outslot);
|
|
|
|
extern void ExecSimpleRelationInsert(EState *estate, TupleTableSlot *slot);
|
|
extern void ExecSimpleRelationUpdate(EState *estate, EPQState *epqstate,
|
|
TupleTableSlot *searchslot, TupleTableSlot *slot);
|
|
extern void ExecSimpleRelationDelete(EState *estate, EPQState *epqstate,
|
|
TupleTableSlot *searchslot);
|
|
extern void CheckCmdReplicaIdentity(Relation rel, CmdType cmd);
|
|
|
|
extern void CheckSubscriptionRelkind(char relkind, const char *nspname,
|
|
const char *relname);
|
|
|
|
#endif /* EXECUTOR_H */
|