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	- Add aligment for interval data types - Avoid floating point overflow in penalty functions Janko Richter <jankorichter@yahoo.de> and teodor
		
			
				
	
	
		
			252 lines
		
	
	
		
			6.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			252 lines
		
	
	
		
			6.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| #include "btree_gist.h"
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| #include "btree_utils_num.h"
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| #include "utils/date.h"
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| 
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| typedef struct
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| {
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|    TimeADT    lower;
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|    TimeADT    upper;
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| }  timeKEY;
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| 
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| /*
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| ** time ops
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| */
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| PG_FUNCTION_INFO_V1(gbt_time_compress);
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| PG_FUNCTION_INFO_V1(gbt_timetz_compress);
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| PG_FUNCTION_INFO_V1(gbt_time_union);
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| PG_FUNCTION_INFO_V1(gbt_time_picksplit);
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| PG_FUNCTION_INFO_V1(gbt_time_consistent);
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| PG_FUNCTION_INFO_V1(gbt_timetz_consistent);
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| PG_FUNCTION_INFO_V1(gbt_time_penalty);
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| PG_FUNCTION_INFO_V1(gbt_time_same);
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| 
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| Datum    gbt_time_compress(PG_FUNCTION_ARGS);
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| Datum    gbt_timetz_compress(PG_FUNCTION_ARGS);
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| Datum    gbt_time_union(PG_FUNCTION_ARGS);
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| Datum    gbt_time_picksplit(PG_FUNCTION_ARGS);
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| Datum    gbt_time_consistent(PG_FUNCTION_ARGS);
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| Datum    gbt_timetz_consistent(PG_FUNCTION_ARGS);
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| Datum    gbt_time_penalty(PG_FUNCTION_ARGS);
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| Datum    gbt_time_same(PG_FUNCTION_ARGS);
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| 
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| 
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| static bool     gbt_timegt     (const void *a, const void *b)
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| {
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|   return DatumGetBool( 
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|      DirectFunctionCall2(time_gt,TimeADTGetDatum( *((TimeADT*)a) ), TimeADTGetDatum( *((TimeADT*)b) ) )
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|   );
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| }
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| 
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| static bool     gbt_timege     (const void *a, const void *b)
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| {
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|   return DatumGetBool( 
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|      DirectFunctionCall2(time_ge,TimeADTGetDatum( *((TimeADT*)a) ), TimeADTGetDatum( *((TimeADT*)b) ) )
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|   );
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| }
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| 
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| static bool     gbt_timeeq     (const void *a, const void *b)
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| {
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|   return DatumGetBool( 
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|      DirectFunctionCall2(time_eq,TimeADTGetDatum( *((TimeADT*)a) ), TimeADTGetDatum( *((TimeADT*)b) ) )
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|   );
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| }
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| 
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| static bool     gbt_timele     (const void *a, const void *b)
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| {
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|   return DatumGetBool( 
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|      DirectFunctionCall2(time_le,TimeADTGetDatum( *((TimeADT*)a) ), TimeADTGetDatum( *((TimeADT*)b) ) )
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|   );
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| }
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| 
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| static bool     gbt_timelt     (const void *a, const void *b)
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| {
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|   return DatumGetBool( 
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|      DirectFunctionCall2(time_lt,TimeADTGetDatum( *((TimeADT*)a) ), TimeADTGetDatum( *((TimeADT*)b) ) )
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|   );
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| }
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| 
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| 
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| 
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| static int
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| gbt_timekey_cmp(const void *a, const void *b)
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| {
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|   if ( gbt_timegt( (void*)&(((Nsrt *) a)->t[0]) , (void*)&(((Nsrt *) b)->t[0]) ) ){
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|     return  1;
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|   } else
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|   if ( gbt_timelt( (void*)&(((Nsrt *) a)->t[0]) , (void*)&(((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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| 
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| 
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| static const gbtree_ninfo tinfo = 
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| {
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|   gbt_t_time,
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|   sizeof(TimeADT),
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|   gbt_timegt,
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|   gbt_timege,
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|   gbt_timeeq,
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|   gbt_timele,
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|   gbt_timelt,
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|   gbt_timekey_cmp
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| };
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| 
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| 
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| /**************************************************
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|  * time ops
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|  **************************************************/
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| 
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| 
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| 
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| Datum
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| gbt_time_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_num_compress( retval , entry , &tinfo ));
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| }
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| 
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| 
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| Datum
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| gbt_timetz_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;
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| 
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|   if (entry->leafkey)
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|   {
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|     timeKEY    *r  = (timeKEY   *) palloc(sizeof(timeKEY));
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|     TimeTzADT  *tz = DatumGetTimeTzADTP(entry->key);
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| 
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|     retval = palloc(sizeof(GISTENTRY));
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| 
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|     /* We are using the time + zone only to compress */
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|     r->lower = r->upper = ( tz->time + tz->zone ) ; 
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|     gistentryinit(*retval, PointerGetDatum(r),
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|             entry->rel, entry->page,
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|             entry->offset, sizeof(timeKEY), FALSE);
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|   }
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|   else
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|     retval = entry;
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|   PG_RETURN_POINTER(retval);
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| }
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| 
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| 
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| Datum
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| gbt_time_consistent(PG_FUNCTION_ARGS)
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| {
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|     GISTENTRY        *entry = (GISTENTRY *) PG_GETARG_POINTER(0);
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|     TimeADT          query  = PG_GETARG_TIMEADT( 1 );
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|     timeKEY            *kkk = (timeKEY*) DatumGetPointer(entry->key);
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|     GBT_NUMKEY_R        key ;
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|     StrategyNumber strategy = (StrategyNumber) PG_GETARG_UINT16(2);
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|  
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|     key.lower = (GBT_NUMKEY*) &kkk->lower ;
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|     key.upper = (GBT_NUMKEY*) &kkk->upper ;
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|         
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| 
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|     PG_RETURN_BOOL(
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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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| 
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| Datum
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| gbt_timetz_consistent(PG_FUNCTION_ARGS)
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| {
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|     GISTENTRY        *entry = (GISTENTRY *) PG_GETARG_POINTER(0);
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|     TimeTzADT        *query = PG_GETARG_TIMETZADT_P( 1 );
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|     TimeADT             qqq = query->time + query->zone ;
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|     timeKEY            *kkk = (timeKEY*) DatumGetPointer(entry->key);
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|     GBT_NUMKEY_R        key ;
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|     StrategyNumber strategy = (StrategyNumber) PG_GETARG_UINT16(2);
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|  
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|     key.lower = (GBT_NUMKEY*) &kkk->lower ;
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|     key.upper = (GBT_NUMKEY*) &kkk->upper ;
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| 
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|     PG_RETURN_BOOL(
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|       gbt_num_consistent( &key, (void*)&qqq, &strategy,GIST_LEAF(entry),&tinfo)
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|     );
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| }
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| 
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| 
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| Datum
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| gbt_time_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(timeKEY));
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|     *(int *) PG_GETARG_POINTER(1) = sizeof(timeKEY);
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|     PG_RETURN_POINTER( gbt_num_union ( (void*)out, entryvec, &tinfo ) );
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| }
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| 
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| 
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| Datum
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| gbt_time_penalty(PG_FUNCTION_ARGS)
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| {
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|         timeKEY      *origentry = (timeKEY *) DatumGetPointer(((GISTENTRY *) PG_GETARG_POINTER(0))->key);
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|         timeKEY      *newentry  = (timeKEY *) DatumGetPointer(((GISTENTRY *) PG_GETARG_POINTER(1))->key);
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|         float           *result = (float *)   PG_GETARG_POINTER(2);
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|         Interval   *intr;
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| #ifdef HAVE_INT64_TIMESTAMP
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|         int64      res;
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| #else
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|         double     res;
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| #endif
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| 
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|         intr = DatumGetIntervalP(DirectFunctionCall2(
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|                   time_mi_time,
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|                   TimeADTGetDatum(newentry->upper),
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|                   TimeADTGetDatum(origentry->upper)));
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| 
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|         /* see interval_larger */
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|         res   = Max(intr->time + intr->month * (30 * 86400), 0);
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|         pfree(intr);
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| 
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|         intr = DatumGetIntervalP(DirectFunctionCall2(
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|                   time_mi_time,
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|                   TimeADTGetDatum(origentry->lower),
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|                   TimeADTGetDatum(newentry->lower)));
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|    
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|         /* see interval_larger */
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|         res  += Max(intr->time + intr->month * (30 * 86400), 0);
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|         pfree(intr);
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| 
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|         *result = 0.0;
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| 
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|         if ( res > 0 ){
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|           intr = DatumGetIntervalP(DirectFunctionCall2(
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|                   time_mi_time,
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|                   TimeADTGetDatum(origentry->upper),
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|                   TimeADTGetDatum(origentry->lower)));
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|           *result += FLT_MIN ;
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|           *result += (float) ( res / ( (double) ( res + intr->time + intr->month * (30 * 86400) ) ) );
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|           *result *= ( FLT_MAX / ( ( (GISTENTRY *) PG_GETARG_POINTER(0))->rel->rd_att->natts + 1 ) );
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|           pfree ( intr );
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|         }
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| 
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|         PG_RETURN_POINTER(result);
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| }
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| 
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| 
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| Datum
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| gbt_time_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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| 
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| Datum
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| gbt_time_same(PG_FUNCTION_ARGS)
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| {
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|   timeKEY      *b1 = (timeKEY *) PG_GETARG_POINTER(0);
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|   timeKEY      *b2 = (timeKEY *) PG_GETARG_POINTER(1);
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|   bool     *result = (bool *) PG_GETARG_POINTER(2);
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| 
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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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| 
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