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configure
configure.in
- Add aligment for interval data types - Avoid floating point overflow in penalty functions Janko Richter <jankorichter@yahoo.de> and teodor
225 lines
5.5 KiB
C
225 lines
5.5 KiB
C
#include "btree_gist.h"
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#include "btree_utils_num.h"
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#include "utils/builtins.h"
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#include "utils/inet.h"
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#include "catalog/pg_type.h"
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typedef struct inetkey
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{
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double lower;
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double upper;
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} inetKEY;
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/*
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** inet ops
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*/
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PG_FUNCTION_INFO_V1(gbt_inet_compress);
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PG_FUNCTION_INFO_V1(gbt_cidr_compress);
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PG_FUNCTION_INFO_V1(gbt_inet_union);
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PG_FUNCTION_INFO_V1(gbt_inet_picksplit);
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PG_FUNCTION_INFO_V1(gbt_inet_consistent);
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PG_FUNCTION_INFO_V1(gbt_cidr_consistent);
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PG_FUNCTION_INFO_V1(gbt_inet_penalty);
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PG_FUNCTION_INFO_V1(gbt_inet_same);
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Datum gbt_inet_compress(PG_FUNCTION_ARGS);
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Datum gbt_cidr_compress(PG_FUNCTION_ARGS);
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Datum gbt_inet_union(PG_FUNCTION_ARGS);
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Datum gbt_inet_picksplit(PG_FUNCTION_ARGS);
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Datum gbt_inet_consistent(PG_FUNCTION_ARGS);
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Datum gbt_cidr_consistent(PG_FUNCTION_ARGS);
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Datum gbt_inet_penalty(PG_FUNCTION_ARGS);
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Datum gbt_inet_same(PG_FUNCTION_ARGS);
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static bool gbt_inetgt (const void *a, const void *b)
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{
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return ( *((double*)a) > *((double*)b) );
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}
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static bool gbt_inetge (const void *a, const void *b)
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{
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return ( *((double*)a) >= *((double*)b) );
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}
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static bool gbt_ineteq (const void *a, const void *b)
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{
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return ( *((double*)a) == *((double*)b) );
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}
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static bool gbt_inetle (const void *a, const void *b)
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{
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return ( *((double*)a) <= *((double*)b) );
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}
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static bool gbt_inetlt (const void *a, const void *b)
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{
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return ( *((double*)a) < *((double*)b) );
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}
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static int
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gbt_inetkey_cmp(const void *a, const void *b)
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{
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if ( *(double*)(&((Nsrt *) a)->t[0]) > *(double*)(&((Nsrt *) b)->t[0]) ){
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return 1;
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} else
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if ( *(double*)(&((Nsrt *) a)->t[0]) < *(double*)(&((Nsrt *) b)->t[0]) ){
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return -1;
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}
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return 0;
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}
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static const gbtree_ninfo tinfo =
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{
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gbt_t_inet,
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sizeof(double),
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gbt_inetgt,
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gbt_inetge,
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gbt_ineteq,
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gbt_inetle,
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gbt_inetlt,
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gbt_inetkey_cmp
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};
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/**************************************************
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* inet ops
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**************************************************/
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static GISTENTRY *
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gbt_inet_compress_inetrnal(GISTENTRY *retval , GISTENTRY *entry , Oid typid)
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{
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if (entry->leafkey)
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{
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inetKEY *r = (inetKEY *) palloc(sizeof(inetKEY));
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retval = palloc(sizeof(GISTENTRY));
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r->lower = convert_network_to_scalar(entry->key, typid );
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r->upper = r->lower ;
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gistentryinit(*retval, PointerGetDatum(r),
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entry->rel, entry->page,
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entry->offset, sizeof(inetKEY), FALSE);
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}
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else
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retval = entry;
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return ( retval );
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}
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Datum
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gbt_inet_compress(PG_FUNCTION_ARGS)
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{
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GISTENTRY *entry = (GISTENTRY *) PG_GETARG_POINTER(0);
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GISTENTRY *retval = NULL;
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PG_RETURN_POINTER( gbt_inet_compress_inetrnal(retval ,entry ,INETOID ) );
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}
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Datum
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gbt_cidr_compress(PG_FUNCTION_ARGS)
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{
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GISTENTRY *entry = (GISTENTRY *) PG_GETARG_POINTER(0);
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GISTENTRY *retval = NULL;
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PG_RETURN_POINTER( gbt_inet_compress_inetrnal(retval ,entry ,CIDROID ) );
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}
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static bool
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gbt_inet_consistent_internal (
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const GISTENTRY * entry,
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const double * query,
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const StrategyNumber * strategy
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){
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inetKEY *kkk = (inetKEY *) DatumGetPointer(entry->key);
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GBT_NUMKEY_R key ;
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key.lower = (GBT_NUMKEY*) &kkk->lower ;
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key.upper = (GBT_NUMKEY*) &kkk->upper ;
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return (
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gbt_num_consistent( &key, (void*)query,strategy,GIST_LEAF(entry),&tinfo)
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);
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}
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Datum
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gbt_inet_consistent(PG_FUNCTION_ARGS)
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{
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GISTENTRY *entry = (GISTENTRY *) PG_GETARG_POINTER(0);
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double query = convert_network_to_scalar( PG_GETARG_DATUM(1) ,INETOID );
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StrategyNumber strategy = (StrategyNumber) PG_GETARG_UINT16(2);
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PG_RETURN_BOOL(
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gbt_inet_consistent_internal ( entry, &query, &strategy )
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);
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}
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Datum
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gbt_cidr_consistent(PG_FUNCTION_ARGS)
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{
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GISTENTRY *entry = (GISTENTRY *) PG_GETARG_POINTER(0);
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double query = convert_network_to_scalar( PG_GETARG_DATUM(1) ,CIDROID );
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StrategyNumber strategy = (StrategyNumber) PG_GETARG_UINT16(2);
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PG_RETURN_BOOL(
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gbt_inet_consistent_internal ( entry, &query, &strategy )
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);
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}
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Datum
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gbt_inet_union(PG_FUNCTION_ARGS)
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{
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GistEntryVector *entryvec = (GistEntryVector *) PG_GETARG_POINTER(0);
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void *out = palloc(sizeof(inetKEY));
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*(int *) PG_GETARG_POINTER(1) = sizeof(inetKEY);
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PG_RETURN_POINTER( gbt_num_union ( (void*)out, entryvec, &tinfo ) );
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}
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Datum
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gbt_inet_penalty(PG_FUNCTION_ARGS)
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{
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inetKEY *origentry = (inetKEY *) DatumGetPointer(((GISTENTRY *) PG_GETARG_POINTER(0))->key);
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inetKEY *newentry = (inetKEY *) DatumGetPointer(((GISTENTRY *) PG_GETARG_POINTER(1))->key);
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float *result = (float *) PG_GETARG_POINTER(2);
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double res ;
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*result = 0.0;
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penalty_range_enlarge ( origentry->lower, origentry->upper, newentry->lower, newentry->upper );
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if ( res > 0 ){
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*result += FLT_MIN ;
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*result += (float) ( res / ( (double) ( res + origentry->upper - origentry->lower ) ) );
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*result *= ( FLT_MAX / ( ( (GISTENTRY *) PG_GETARG_POINTER(0))->rel->rd_att->natts + 1 ) );
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}
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PG_RETURN_POINTER(result);
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}
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Datum
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gbt_inet_picksplit(PG_FUNCTION_ARGS)
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{
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PG_RETURN_POINTER(gbt_num_picksplit(
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(GistEntryVector *) PG_GETARG_POINTER(0),
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(GIST_SPLITVEC *) PG_GETARG_POINTER(1),
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&tinfo
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));
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}
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Datum
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gbt_inet_same(PG_FUNCTION_ARGS)
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{
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inetKEY *b1 = (inetKEY *) PG_GETARG_POINTER(0);
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inetKEY *b2 = (inetKEY *) PG_GETARG_POINTER(1);
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bool *result = (bool *) PG_GETARG_POINTER(2);
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*result = gbt_num_same ( (void*)b1, (void*)b2, &tinfo );
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PG_RETURN_POINTER(result);
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}
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