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	It seems potentially useful to label our shared libraries with version information, now that a facility exists for retrieving that. This patch labels them with the PG_VERSION string. There was some discussion about using semantic versioning conventions, but that doesn't seem terribly helpful for modules with no SQL-level presence; and for those that do have SQL objects, we typically expect them to support multiple revisions of the SQL definitions, so it'd still not be very helpful. I did not label any of src/test/modules/. It seems unnecessary since we don't install those, and besides there ought to be someplace that still provides test coverage for the original PG_MODULE_MAGIC macro. Author: Tom Lane <tgl@sss.pgh.pa.us> Discussion: https://postgr.es/m/dd4d1b59-d0fe-49d5-b28f-1e463b68fa32@gmail.com
		
			
				
	
	
		
			208 lines
		
	
	
		
			5.8 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			208 lines
		
	
	
		
			5.8 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*-------------------------------------------------------------------------
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 *
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 * pg_logicalinspect.c
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 *		  Functions to inspect contents of PostgreSQL logical snapshots
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 *
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 * Copyright (c) 2024-2025, PostgreSQL Global Development Group
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 *
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 * IDENTIFICATION
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 *		  contrib/pg_logicalinspect/pg_logicalinspect.c
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 *
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 *-------------------------------------------------------------------------
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 */
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#include "postgres.h"
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#include "funcapi.h"
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#include "replication/snapbuild_internal.h"
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#include "utils/array.h"
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#include "utils/builtins.h"
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#include "utils/pg_lsn.h"
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PG_MODULE_MAGIC_EXT(
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					.name = "pg_logicalinspect",
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					.version = PG_VERSION
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);
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PG_FUNCTION_INFO_V1(pg_get_logical_snapshot_meta);
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PG_FUNCTION_INFO_V1(pg_get_logical_snapshot_info);
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/* Return the description of SnapBuildState */
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static const char *
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get_snapbuild_state_desc(SnapBuildState state)
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{
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	const char *stateDesc = "unknown state";
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	switch (state)
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	{
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		case SNAPBUILD_START:
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			stateDesc = "start";
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			break;
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		case SNAPBUILD_BUILDING_SNAPSHOT:
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			stateDesc = "building";
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			break;
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		case SNAPBUILD_FULL_SNAPSHOT:
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			stateDesc = "full";
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			break;
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		case SNAPBUILD_CONSISTENT:
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			stateDesc = "consistent";
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			break;
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	}
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	return stateDesc;
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}
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/*
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 * Extract the LSN from the given serialized snapshot file name.
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 */
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static XLogRecPtr
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parse_snapshot_filename(const char *filename)
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{
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	uint32		hi;
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	uint32		lo;
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	XLogRecPtr	lsn;
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	char		tmpfname[MAXPGPATH];
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	/*
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	 * Extract the values to build the LSN.
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	 *
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	 * Note: Including ".snap" doesn't mean that sscanf() also does the format
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	 * check including the suffix. The subsequent check validates if the given
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	 * filename has the expected suffix.
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	 */
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	if (sscanf(filename, "%X-%X.snap", &hi, &lo) != 2)
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		goto parse_error;
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	/*
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	 * Bring back the extracted LSN to the snapshot file format and compare it
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	 * to the given filename. This check strictly checks if the given filename
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	 * follows the format of the snapshot filename.
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	 */
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	sprintf(tmpfname, "%X-%X.snap", hi, lo);
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	if (strcmp(tmpfname, filename) != 0)
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		goto parse_error;
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	lsn = ((uint64) hi) << 32 | lo;
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	return lsn;
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parse_error:
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	ereport(ERROR,
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			errmsg("invalid snapshot file name \"%s\"", filename));
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	return InvalidXLogRecPtr;	/* keep compiler quiet */
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}
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/*
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 * Retrieve the logical snapshot file metadata.
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 */
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Datum
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pg_get_logical_snapshot_meta(PG_FUNCTION_ARGS)
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{
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#define PG_GET_LOGICAL_SNAPSHOT_META_COLS 3
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	SnapBuildOnDisk ondisk;
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	HeapTuple	tuple;
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	Datum		values[PG_GET_LOGICAL_SNAPSHOT_META_COLS] = {0};
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	bool		nulls[PG_GET_LOGICAL_SNAPSHOT_META_COLS] = {0};
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	TupleDesc	tupdesc;
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	XLogRecPtr	lsn;
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	int			i = 0;
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	text	   *filename_t = PG_GETARG_TEXT_PP(0);
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	/* Build a tuple descriptor for our result type */
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	if (get_call_result_type(fcinfo, NULL, &tupdesc) != TYPEFUNC_COMPOSITE)
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		elog(ERROR, "return type must be a row type");
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	lsn = parse_snapshot_filename(text_to_cstring(filename_t));
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	/* Validate and restore the snapshot to 'ondisk' */
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	SnapBuildRestoreSnapshot(&ondisk, lsn, CurrentMemoryContext, false);
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	values[i++] = UInt32GetDatum(ondisk.magic);
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	values[i++] = Int64GetDatum((int64) ondisk.checksum);
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	values[i++] = UInt32GetDatum(ondisk.version);
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	Assert(i == PG_GET_LOGICAL_SNAPSHOT_META_COLS);
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	tuple = heap_form_tuple(tupdesc, values, nulls);
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	PG_RETURN_DATUM(HeapTupleGetDatum(tuple));
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#undef PG_GET_LOGICAL_SNAPSHOT_META_COLS
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}
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Datum
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pg_get_logical_snapshot_info(PG_FUNCTION_ARGS)
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{
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#define PG_GET_LOGICAL_SNAPSHOT_INFO_COLS 14
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	SnapBuildOnDisk ondisk;
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	HeapTuple	tuple;
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	Datum		values[PG_GET_LOGICAL_SNAPSHOT_INFO_COLS] = {0};
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	bool		nulls[PG_GET_LOGICAL_SNAPSHOT_INFO_COLS] = {0};
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	TupleDesc	tupdesc;
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	XLogRecPtr	lsn;
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	int			i = 0;
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	text	   *filename_t = PG_GETARG_TEXT_PP(0);
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	/* Build a tuple descriptor for our result type */
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	if (get_call_result_type(fcinfo, NULL, &tupdesc) != TYPEFUNC_COMPOSITE)
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		elog(ERROR, "return type must be a row type");
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	lsn = parse_snapshot_filename(text_to_cstring(filename_t));
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	/* Validate and restore the snapshot to 'ondisk' */
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	SnapBuildRestoreSnapshot(&ondisk, lsn, CurrentMemoryContext, false);
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	values[i++] = CStringGetTextDatum(get_snapbuild_state_desc(ondisk.builder.state));
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	values[i++] = TransactionIdGetDatum(ondisk.builder.xmin);
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	values[i++] = TransactionIdGetDatum(ondisk.builder.xmax);
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	values[i++] = LSNGetDatum(ondisk.builder.start_decoding_at);
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	values[i++] = LSNGetDatum(ondisk.builder.two_phase_at);
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	values[i++] = TransactionIdGetDatum(ondisk.builder.initial_xmin_horizon);
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	values[i++] = BoolGetDatum(ondisk.builder.building_full_snapshot);
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	values[i++] = BoolGetDatum(ondisk.builder.in_slot_creation);
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	values[i++] = LSNGetDatum(ondisk.builder.last_serialized_snapshot);
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	values[i++] = TransactionIdGetDatum(ondisk.builder.next_phase_at);
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	values[i++] = UInt32GetDatum(ondisk.builder.committed.xcnt);
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	if (ondisk.builder.committed.xcnt > 0)
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	{
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		Datum	   *arrayelems;
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		arrayelems = (Datum *) palloc(ondisk.builder.committed.xcnt * sizeof(Datum));
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		for (int j = 0; j < ondisk.builder.committed.xcnt; j++)
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			arrayelems[j] = TransactionIdGetDatum(ondisk.builder.committed.xip[j]);
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		values[i++] = PointerGetDatum(construct_array_builtin(arrayelems,
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															  ondisk.builder.committed.xcnt,
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															  XIDOID));
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	}
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	else
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		nulls[i++] = true;
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	values[i++] = UInt32GetDatum(ondisk.builder.catchange.xcnt);
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	if (ondisk.builder.catchange.xcnt > 0)
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	{
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		Datum	   *arrayelems;
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		arrayelems = (Datum *) palloc(ondisk.builder.catchange.xcnt * sizeof(Datum));
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		for (int j = 0; j < ondisk.builder.catchange.xcnt; j++)
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			arrayelems[j] = TransactionIdGetDatum(ondisk.builder.catchange.xip[j]);
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		values[i++] = PointerGetDatum(construct_array_builtin(arrayelems,
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															  ondisk.builder.catchange.xcnt,
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															  XIDOID));
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	}
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	else
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		nulls[i++] = true;
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	Assert(i == PG_GET_LOGICAL_SNAPSHOT_INFO_COLS);
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	tuple = heap_form_tuple(tupdesc, values, nulls);
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	PG_RETURN_DATUM(HeapTupleGetDatum(tuple));
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#undef PG_GET_LOGICAL_SNAPSHOT_INFO_COLS
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}
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