postgresql/contrib/btree_gin/btree_gin.c
Stephen Frost c7a9fa399d Add support for EUI-64 MAC addresses as macaddr8
This adds in support for EUI-64 MAC addresses by adding a new data type
called 'macaddr8' (using our usual convention of indicating the number
of bytes stored).

This was largely a copy-and-paste from the macaddr data type, with
appropriate adjustments for having 8 bytes instead of 6 and adding
support for converting a provided EUI-48 (6 byte format) to the EUI-64
format.  Conversion from EUI-48 to EUI-64 inserts FFFE as the 4th and
5th bytes but does not perform the IPv6 modified EUI-64 action of
flipping the 7th bit, but we add a function to perform that specific
action for the user as it may be commonly done by users who wish to
calculate their IPv6 address based on their network prefix and 48-bit
MAC address.

Author: Haribabu Kommi, with a good bit of rework of macaddr8_in by me.
Reviewed by: Vitaly Burovoy, Kuntal Ghosh

Discussion: https://postgr.es/m/CAJrrPGcUi8ZH+KkK+=TctNQ+EfkeCEHtMU_yo1mvX8hsk_ghNQ@mail.gmail.com
2017-03-15 11:16:25 -04:00

429 lines
9.5 KiB
C

/*
* contrib/btree_gin/btree_gin.c
*/
#include "postgres.h"
#include <limits.h>
#include "access/stratnum.h"
#include "utils/builtins.h"
#include "utils/bytea.h"
#include "utils/cash.h"
#include "utils/date.h"
#include "utils/inet.h"
#include "utils/numeric.h"
#include "utils/timestamp.h"
#include "utils/varbit.h"
PG_MODULE_MAGIC;
typedef struct QueryInfo
{
StrategyNumber strategy;
Datum datum;
bool is_varlena;
Datum (*typecmp) (FunctionCallInfo);
} QueryInfo;
/*** GIN support functions shared by all datatypes ***/
static Datum
gin_btree_extract_value(FunctionCallInfo fcinfo, bool is_varlena)
{
Datum datum = PG_GETARG_DATUM(0);
int32 *nentries = (int32 *) PG_GETARG_POINTER(1);
Datum *entries = (Datum *) palloc(sizeof(Datum));
if (is_varlena)
datum = PointerGetDatum(PG_DETOAST_DATUM(datum));
entries[0] = datum;
*nentries = 1;
PG_RETURN_POINTER(entries);
}
/*
* For BTGreaterEqualStrategyNumber, BTGreaterStrategyNumber, and
* BTEqualStrategyNumber we want to start the index scan at the
* supplied query datum, and work forward. For BTLessStrategyNumber
* and BTLessEqualStrategyNumber, we need to start at the leftmost
* key, and work forward until the supplied query datum (which must be
* sent along inside the QueryInfo structure).
*/
static Datum
gin_btree_extract_query(FunctionCallInfo fcinfo,
bool is_varlena,
Datum (*leftmostvalue) (void),
Datum (*typecmp) (FunctionCallInfo))
{
Datum datum = PG_GETARG_DATUM(0);
int32 *nentries = (int32 *) PG_GETARG_POINTER(1);
StrategyNumber strategy = PG_GETARG_UINT16(2);
bool **partialmatch = (bool **) PG_GETARG_POINTER(3);
Pointer **extra_data = (Pointer **) PG_GETARG_POINTER(4);
Datum *entries = (Datum *) palloc(sizeof(Datum));
QueryInfo *data = (QueryInfo *) palloc(sizeof(QueryInfo));
bool *ptr_partialmatch;
*nentries = 1;
ptr_partialmatch = *partialmatch = (bool *) palloc(sizeof(bool));
*ptr_partialmatch = false;
if (is_varlena)
datum = PointerGetDatum(PG_DETOAST_DATUM(datum));
data->strategy = strategy;
data->datum = datum;
data->is_varlena = is_varlena;
data->typecmp = typecmp;
*extra_data = (Pointer *) palloc(sizeof(Pointer));
**extra_data = (Pointer) data;
switch (strategy)
{
case BTLessStrategyNumber:
case BTLessEqualStrategyNumber:
entries[0] = leftmostvalue();
*ptr_partialmatch = true;
break;
case BTGreaterEqualStrategyNumber:
case BTGreaterStrategyNumber:
*ptr_partialmatch = true;
case BTEqualStrategyNumber:
entries[0] = datum;
break;
default:
elog(ERROR, "unrecognized strategy number: %d", strategy);
}
PG_RETURN_POINTER(entries);
}
/*
* Datum a is a value from extract_query method and for BTLess*
* strategy it is a left-most value. So, use original datum from QueryInfo
* to decide to stop scanning or not. Datum b is always from index.
*/
static Datum
gin_btree_compare_prefix(FunctionCallInfo fcinfo)
{
Datum a = PG_GETARG_DATUM(0);
Datum b = PG_GETARG_DATUM(1);
QueryInfo *data = (QueryInfo *) PG_GETARG_POINTER(3);
int32 res,
cmp;
cmp = DatumGetInt32(DirectFunctionCall2Coll(
data->typecmp,
PG_GET_COLLATION(),
(data->strategy == BTLessStrategyNumber ||
data->strategy == BTLessEqualStrategyNumber)
? data->datum : a,
b));
switch (data->strategy)
{
case BTLessStrategyNumber:
/* If original datum > indexed one then return match */
if (cmp > 0)
res = 0;
else
res = 1;
break;
case BTLessEqualStrategyNumber:
/* The same except equality */
if (cmp >= 0)
res = 0;
else
res = 1;
break;
case BTEqualStrategyNumber:
if (cmp != 0)
res = 1;
else
res = 0;
break;
case BTGreaterEqualStrategyNumber:
/* If original datum <= indexed one then return match */
if (cmp <= 0)
res = 0;
else
res = 1;
break;
case BTGreaterStrategyNumber:
/* If original datum <= indexed one then return match */
/* If original datum == indexed one then continue scan */
if (cmp < 0)
res = 0;
else if (cmp == 0)
res = -1;
else
res = 1;
break;
default:
elog(ERROR, "unrecognized strategy number: %d",
data->strategy);
res = 0;
}
PG_RETURN_INT32(res);
}
PG_FUNCTION_INFO_V1(gin_btree_consistent);
Datum
gin_btree_consistent(PG_FUNCTION_ARGS)
{
bool *recheck = (bool *) PG_GETARG_POINTER(5);
*recheck = false;
PG_RETURN_BOOL(true);
}
/*** GIN_SUPPORT macro defines the datatype specific functions ***/
#define GIN_SUPPORT(type, is_varlena, leftmostvalue, typecmp) \
PG_FUNCTION_INFO_V1(gin_extract_value_##type); \
Datum \
gin_extract_value_##type(PG_FUNCTION_ARGS) \
{ \
return gin_btree_extract_value(fcinfo, is_varlena); \
} \
PG_FUNCTION_INFO_V1(gin_extract_query_##type); \
Datum \
gin_extract_query_##type(PG_FUNCTION_ARGS) \
{ \
return gin_btree_extract_query(fcinfo, \
is_varlena, leftmostvalue, typecmp); \
} \
PG_FUNCTION_INFO_V1(gin_compare_prefix_##type); \
Datum \
gin_compare_prefix_##type(PG_FUNCTION_ARGS) \
{ \
return gin_btree_compare_prefix(fcinfo); \
}
/*** Datatype specifications ***/
static Datum
leftmostvalue_int2(void)
{
return Int16GetDatum(SHRT_MIN);
}
GIN_SUPPORT(int2, false, leftmostvalue_int2, btint2cmp)
static Datum
leftmostvalue_int4(void)
{
return Int32GetDatum(INT_MIN);
}
GIN_SUPPORT(int4, false, leftmostvalue_int4, btint4cmp)
static Datum
leftmostvalue_int8(void)
{
return Int64GetDatum(PG_INT64_MIN);
}
GIN_SUPPORT(int8, false, leftmostvalue_int8, btint8cmp)
static Datum
leftmostvalue_float4(void)
{
return Float4GetDatum(-get_float4_infinity());
}
GIN_SUPPORT(float4, false, leftmostvalue_float4, btfloat4cmp)
static Datum
leftmostvalue_float8(void)
{
return Float8GetDatum(-get_float8_infinity());
}
GIN_SUPPORT(float8, false, leftmostvalue_float8, btfloat8cmp)
static Datum
leftmostvalue_money(void)
{
return Int64GetDatum(PG_INT64_MIN);
}
GIN_SUPPORT(money, false, leftmostvalue_money, cash_cmp)
static Datum
leftmostvalue_oid(void)
{
return ObjectIdGetDatum(0);
}
GIN_SUPPORT(oid, false, leftmostvalue_oid, btoidcmp)
static Datum
leftmostvalue_timestamp(void)
{
return TimestampGetDatum(DT_NOBEGIN);
}
GIN_SUPPORT(timestamp, false, leftmostvalue_timestamp, timestamp_cmp)
GIN_SUPPORT(timestamptz, false, leftmostvalue_timestamp, timestamp_cmp)
static Datum
leftmostvalue_time(void)
{
return TimeADTGetDatum(0);
}
GIN_SUPPORT(time, false, leftmostvalue_time, time_cmp)
static Datum
leftmostvalue_timetz(void)
{
TimeTzADT *v = palloc(sizeof(TimeTzADT));
v->time = 0;
v->zone = -24 * 3600; /* XXX is that true? */
return TimeTzADTPGetDatum(v);
}
GIN_SUPPORT(timetz, false, leftmostvalue_timetz, timetz_cmp)
static Datum
leftmostvalue_date(void)
{
return DateADTGetDatum(DATEVAL_NOBEGIN);
}
GIN_SUPPORT(date, false, leftmostvalue_date, date_cmp)
static Datum
leftmostvalue_interval(void)
{
Interval *v = palloc(sizeof(Interval));
v->time = DT_NOBEGIN;
v->day = 0;
v->month = 0;
return IntervalPGetDatum(v);
}
GIN_SUPPORT(interval, false, leftmostvalue_interval, interval_cmp)
static Datum
leftmostvalue_macaddr(void)
{
macaddr *v = palloc0(sizeof(macaddr));
return MacaddrPGetDatum(v);
}
GIN_SUPPORT(macaddr, false, leftmostvalue_macaddr, macaddr_cmp)
static Datum
leftmostvalue_macaddr8(void)
{
macaddr8 *v = palloc0(sizeof(macaddr8));
return Macaddr8PGetDatum(v);
}
GIN_SUPPORT(macaddr8, false, leftmostvalue_macaddr8, macaddr8_cmp)
static Datum
leftmostvalue_inet(void)
{
return DirectFunctionCall1(inet_in, CStringGetDatum("0.0.0.0/0"));
}
GIN_SUPPORT(inet, true, leftmostvalue_inet, network_cmp)
GIN_SUPPORT(cidr, true, leftmostvalue_inet, network_cmp)
static Datum
leftmostvalue_text(void)
{
return PointerGetDatum(cstring_to_text_with_len("", 0));
}
GIN_SUPPORT(text, true, leftmostvalue_text, bttextcmp)
static Datum
leftmostvalue_char(void)
{
return CharGetDatum(SCHAR_MIN);
}
GIN_SUPPORT(char, false, leftmostvalue_char, btcharcmp)
GIN_SUPPORT(bytea, true, leftmostvalue_text, byteacmp)
static Datum
leftmostvalue_bit(void)
{
return DirectFunctionCall3(bit_in,
CStringGetDatum(""),
ObjectIdGetDatum(0),
Int32GetDatum(-1));
}
GIN_SUPPORT(bit, true, leftmostvalue_bit, bitcmp)
static Datum
leftmostvalue_varbit(void)
{
return DirectFunctionCall3(varbit_in,
CStringGetDatum(""),
ObjectIdGetDatum(0),
Int32GetDatum(-1));
}
GIN_SUPPORT(varbit, true, leftmostvalue_varbit, bitcmp)
/*
* Numeric type hasn't a real left-most value, so we use PointerGetDatum(NULL)
* (*not* a SQL NULL) to represent that. We can get away with that because
* the value returned by our leftmostvalue function will never be stored in
* the index nor passed to anything except our compare and prefix-comparison
* functions. The same trick could be used for other pass-by-reference types.
*/
#define NUMERIC_IS_LEFTMOST(x) ((x) == NULL)
PG_FUNCTION_INFO_V1(gin_numeric_cmp);
Datum
gin_numeric_cmp(PG_FUNCTION_ARGS)
{
Numeric a = (Numeric) PG_GETARG_POINTER(0);
Numeric b = (Numeric) PG_GETARG_POINTER(1);
int res = 0;
if (NUMERIC_IS_LEFTMOST(a))
{
res = (NUMERIC_IS_LEFTMOST(b)) ? 0 : -1;
}
else if (NUMERIC_IS_LEFTMOST(b))
{
res = 1;
}
else
{
res = DatumGetInt32(DirectFunctionCall2(numeric_cmp,
NumericGetDatum(a),
NumericGetDatum(b)));
}
PG_RETURN_INT32(res);
}
static Datum
leftmostvalue_numeric(void)
{
return PointerGetDatum(NULL);
}
GIN_SUPPORT(numeric, true, leftmostvalue_numeric, gin_numeric_cmp)