indexes. Replace all heap_openr and index_openr calls by heap_open and index_open. Remove runtime lookups of catalog OID numbers in various places. Remove relcache's support for looking up system catalogs by name. Bulky but mostly very boring patch ...
550 lines
15 KiB
C
550 lines
15 KiB
C
/*-------------------------------------------------------------------------
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*
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* postinit.c
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* postgres initialization utilities
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*
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* Portions Copyright (c) 1996-2005, 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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*
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* IDENTIFICATION
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* $PostgreSQL: pgsql/src/backend/utils/init/postinit.c,v 1.145 2005/04/14 20:03:26 tgl Exp $
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*
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*
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*-------------------------------------------------------------------------
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*/
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#include "postgres.h"
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#include <fcntl.h>
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#include <sys/file.h>
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#include <math.h>
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#include <unistd.h>
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#include "catalog/catalog.h"
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#include "access/heapam.h"
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#include "catalog/namespace.h"
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#include "catalog/pg_database.h"
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#include "catalog/pg_shadow.h"
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#include "catalog/pg_tablespace.h"
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#include "libpq/hba.h"
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#include "mb/pg_wchar.h"
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#include "miscadmin.h"
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#include "postmaster/postmaster.h"
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#include "storage/fd.h"
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#include "storage/ipc.h"
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#include "storage/proc.h"
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#include "storage/sinval.h"
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#include "storage/smgr.h"
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#include "utils/flatfiles.h"
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#include "utils/fmgroids.h"
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#include "utils/guc.h"
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#include "utils/portal.h"
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#include "utils/relcache.h"
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#include "utils/syscache.h"
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static bool FindMyDatabase(const char *name, Oid *db_id, Oid *db_tablespace);
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static void ReverifyMyDatabase(const char *name);
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static void InitCommunication(void);
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static void ShutdownPostgres(int code, Datum arg);
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static bool ThereIsAtLeastOneUser(void);
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/*** InitPostgres support ***/
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/*
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* FindMyDatabase -- get the critical info needed to locate my database
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*
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* Find the named database in pg_database, return its database OID and the
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* OID of its default tablespace. Return TRUE if found, FALSE if not.
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*
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* Since we are not yet up and running as a backend, we cannot look directly
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* at pg_database (we can't obtain locks nor participate in transactions).
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* So to get the info we need before starting up, we must look at the "flat
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* file" copy of pg_database that is helpfully maintained by flatfiles.c.
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* This is subject to various race conditions, so after we have the
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* transaction infrastructure started, we have to recheck the information;
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* see ReverifyMyDatabase.
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*/
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static bool
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FindMyDatabase(const char *name, Oid *db_id, Oid *db_tablespace)
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{
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bool result = false;
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char *filename;
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FILE *db_file;
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char thisname[NAMEDATALEN];
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filename = database_getflatfilename();
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db_file = AllocateFile(filename, "r");
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if (db_file == NULL)
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ereport(FATAL,
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(errcode_for_file_access(),
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errmsg("could not open file \"%s\": %m", filename)));
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while (read_pg_database_line(db_file, thisname, db_id, db_tablespace))
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{
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if (strcmp(thisname, name) == 0)
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{
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result = true;
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break;
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}
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}
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FreeFile(db_file);
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pfree(filename);
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return result;
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}
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/*
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* ReverifyMyDatabase -- recheck info obtained by FindMyDatabase
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*
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* Since FindMyDatabase cannot lock pg_database, the information it read
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* could be stale; for example we might have attached to a database that's in
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* process of being destroyed by dropdb(). This routine is called after
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* we have all the locking and other infrastructure running --- now we can
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* check that we are really attached to a valid database.
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*
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* In reality, if dropdb() is running in parallel with our startup,
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* it's pretty likely that we will have failed before now, due to being
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* unable to read some of the system tables within the doomed database.
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* This routine just exists to make *sure* we have not started up in an
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* invalid database. If we quit now, we should have managed to avoid
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* creating any serious problems.
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*
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* This is also a handy place to fetch the database encoding info out
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* of pg_database.
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*
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* To avoid having to read pg_database more times than necessary
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* during session startup, this place is also fitting to set up any
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* database-specific configuration variables.
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*/
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static void
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ReverifyMyDatabase(const char *name)
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{
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Relation pgdbrel;
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HeapScanDesc pgdbscan;
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ScanKeyData key;
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HeapTuple tup;
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Form_pg_database dbform;
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/*
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* Because we grab RowShareLock here, we can be sure that dropdb()
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* is not running in parallel with us (any more).
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*/
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pgdbrel = heap_open(DatabaseRelationId, RowShareLock);
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ScanKeyInit(&key,
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Anum_pg_database_datname,
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BTEqualStrategyNumber, F_NAMEEQ,
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NameGetDatum(name));
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pgdbscan = heap_beginscan(pgdbrel, SnapshotNow, 1, &key);
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tup = heap_getnext(pgdbscan, ForwardScanDirection);
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if (!HeapTupleIsValid(tup) ||
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HeapTupleGetOid(tup) != MyDatabaseId)
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{
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/* OOPS */
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heap_close(pgdbrel, RowShareLock);
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/*
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* The only real problem I could have created is to load dirty
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* buffers for the dead database into shared buffer cache; if I
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* did, some other backend will eventually try to write them and
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* die in mdblindwrt. Flush any such pages to forestall trouble.
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*/
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DropBuffers(MyDatabaseId);
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/* Now I can commit hara-kiri with a clear conscience... */
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ereport(FATAL,
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(errcode(ERRCODE_UNDEFINED_DATABASE),
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errmsg("database \"%s\", OID %u, has disappeared from pg_database",
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name, MyDatabaseId)));
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}
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/*
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* Also check that the database is currently allowing connections.
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*/
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dbform = (Form_pg_database) GETSTRUCT(tup);
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if (!dbform->datallowconn)
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ereport(FATAL,
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(errcode(ERRCODE_OBJECT_NOT_IN_PREREQUISITE_STATE),
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errmsg("database \"%s\" is not currently accepting connections",
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name)));
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/*
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* OK, we're golden. Next to-do item is to save the encoding
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* info out of the pg_database tuple.
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*/
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SetDatabaseEncoding(dbform->encoding);
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/* Record it as a GUC internal option, too */
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SetConfigOption("server_encoding", GetDatabaseEncodingName(),
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PGC_INTERNAL, PGC_S_OVERRIDE);
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/* If we have no other source of client_encoding, use server encoding */
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SetConfigOption("client_encoding", GetDatabaseEncodingName(),
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PGC_BACKEND, PGC_S_DEFAULT);
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/*
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* Lastly, set up any database-specific configuration variables.
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*/
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if (IsUnderPostmaster)
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{
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Datum datum;
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bool isnull;
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datum = heap_getattr(tup, Anum_pg_database_datconfig,
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RelationGetDescr(pgdbrel), &isnull);
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if (!isnull)
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{
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ArrayType *a = DatumGetArrayTypeP(datum);
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ProcessGUCArray(a, PGC_S_DATABASE);
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}
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}
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heap_endscan(pgdbscan);
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heap_close(pgdbrel, RowShareLock);
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}
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/* --------------------------------
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* InitCommunication
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*
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* This routine initializes stuff needed for ipc, locking, etc.
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* it should be called something more informative.
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* --------------------------------
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*/
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static void
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InitCommunication(void)
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{
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/*
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* initialize shared memory and semaphores appropriately.
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*/
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if (!IsUnderPostmaster) /* postmaster already did this */
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{
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/*
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* We're running a postgres bootstrap process or a standalone
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* backend. Create private "shmem" and semaphores.
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*/
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CreateSharedMemoryAndSemaphores(true, MaxBackends, 0);
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}
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}
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/*
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* Early initialization of a backend (either standalone or under postmaster).
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* This happens even before InitPostgres.
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*
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* If you're wondering why this is separate from InitPostgres at all:
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* the critical distinction is that this stuff has to happen before we can
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* run XLOG-related initialization, which is done before InitPostgres --- in
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* fact, for cases such as checkpoint creation processes, InitPostgres may
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* never be done at all.
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*/
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void
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BaseInit(void)
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{
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/*
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* Attach to shared memory and semaphores, and initialize our
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* input/output/debugging file descriptors.
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*/
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InitCommunication();
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DebugFileOpen();
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/* Do local initialization of storage and buffer managers */
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smgrinit();
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InitBufferPoolAccess();
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}
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/* --------------------------------
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* InitPostgres
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* Initialize POSTGRES.
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*
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* In bootstrap mode neither of the parameters are used.
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*
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* The return value indicates whether the userID is a superuser. (That
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* can only be tested inside a transaction, so we want to do it during
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* the startup transaction rather than doing a separate one in postgres.c.)
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*
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* Note:
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* Be very careful with the order of calls in the InitPostgres function.
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* --------------------------------
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*/
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bool
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InitPostgres(const char *dbname, const char *username)
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{
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bool bootstrap = IsBootstrapProcessingMode();
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bool am_superuser;
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/*
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* Set up the global variables holding database id and path.
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*
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* We take a shortcut in the bootstrap case, otherwise we have to look up
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* the db name in pg_database.
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*/
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if (bootstrap)
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{
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MyDatabaseId = TemplateDbOid;
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MyDatabaseTableSpace = DEFAULTTABLESPACE_OID;
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SetDatabasePath(GetDatabasePath(MyDatabaseId, MyDatabaseTableSpace));
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}
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else
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{
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char *fullpath;
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/*
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* Formerly we validated DataDir here, but now that's done
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* earlier.
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*/
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/*
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* Find oid and tablespace of the database we're about to open.
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* Since we're not yet up and running we have to use the hackish
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* FindMyDatabase.
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*/
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if (!FindMyDatabase(dbname, &MyDatabaseId, &MyDatabaseTableSpace))
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ereport(FATAL,
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(errcode(ERRCODE_UNDEFINED_DATABASE),
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errmsg("database \"%s\" does not exist",
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dbname)));
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fullpath = GetDatabasePath(MyDatabaseId, MyDatabaseTableSpace);
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/* Verify the database path */
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if (access(fullpath, F_OK) == -1)
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{
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if (errno == ENOENT)
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ereport(FATAL,
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(errcode(ERRCODE_UNDEFINED_DATABASE),
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errmsg("database \"%s\" does not exist",
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dbname),
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errdetail("The database subdirectory \"%s\" is missing.",
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fullpath)));
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else
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ereport(FATAL,
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(errcode_for_file_access(),
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errmsg("could not access directory \"%s\": %m",
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fullpath)));
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}
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ValidatePgVersion(fullpath);
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if (chdir(fullpath) == -1)
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ereport(FATAL,
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(errcode_for_file_access(),
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errmsg("could not change directory to \"%s\": %m",
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fullpath)));
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SetDatabasePath(fullpath);
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}
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/*
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* Code after this point assumes we are in the proper directory!
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*/
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/*
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* Set up my per-backend PGPROC struct in shared memory. (We need
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* to know MyDatabaseId before we can do this, since it's entered into
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* the PGPROC struct.)
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*/
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InitProcess();
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/*
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* Initialize my entry in the shared-invalidation manager's array of
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* per-backend data. (Formerly this came before InitProcess, but now
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* it must happen after, because it uses MyProc.) Once I have done
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* this, I am visible to other backends!
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*
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* Sets up MyBackendId, a unique backend identifier.
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*/
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MyBackendId = InvalidBackendId;
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InitBackendSharedInvalidationState();
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if (MyBackendId > MaxBackends || MyBackendId <= 0)
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elog(FATAL, "bad backend id: %d", MyBackendId);
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/*
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* Initialize local process's access to XLOG. In bootstrap case we
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* may skip this since StartupXLOG() was run instead.
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*/
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if (!bootstrap)
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InitXLOGAccess();
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/*
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* Initialize the relation descriptor cache. This must create at
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* least the minimum set of "nailed-in" cache entries. No catalog
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* access happens here.
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*/
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RelationCacheInitialize();
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/*
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* Initialize all the system catalog caches. Note that no catalog
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* access happens here; we only set up the cache structure.
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*/
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InitCatalogCache();
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/* Initialize portal manager */
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EnablePortalManager();
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/* start a new transaction here before access to db */
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if (!bootstrap)
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StartTransactionCommand();
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/*
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* It's now possible to do real access to the system catalogs.
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*
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* Replace faked-up relcache entries with correct info.
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*/
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RelationCacheInitializePhase2();
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/*
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* Figure out our postgres user id. In standalone mode we use a fixed
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* id, otherwise we figure it out from the authenticated user name.
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*/
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if (bootstrap)
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InitializeSessionUserIdStandalone();
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else if (!IsUnderPostmaster)
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{
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InitializeSessionUserIdStandalone();
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if (!ThereIsAtLeastOneUser())
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ereport(WARNING,
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(errcode(ERRCODE_UNDEFINED_OBJECT),
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errmsg("no users are defined in this database system"),
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errhint("You should immediately run CREATE USER \"%s\" WITH SYSID %d CREATEUSER;.",
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username, BOOTSTRAP_USESYSID)));
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}
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else
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{
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/* normal multiuser case */
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InitializeSessionUserId(username);
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}
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/*
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* Unless we are bootstrapping, double-check that InitMyDatabaseInfo()
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* got a correct result. We can't do this until all the
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* database-access infrastructure is up.
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*/
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if (!bootstrap)
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ReverifyMyDatabase(dbname);
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/*
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* Final phase of relation cache startup: write a new cache file if
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* necessary. This is done after ReverifyMyDatabase to avoid writing
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* a cache file into a dead database.
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*/
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RelationCacheInitializePhase3();
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/*
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* Check if user is a superuser.
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*/
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if (bootstrap)
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am_superuser = true;
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else
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am_superuser = superuser();
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/*
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* Check a normal user hasn't connected to a superuser reserved slot.
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*/
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if (!am_superuser &&
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ReservedBackends > 0 &&
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CountEmptyBackendSlots() < ReservedBackends)
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ereport(FATAL,
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(errcode(ERRCODE_TOO_MANY_CONNECTIONS),
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errmsg("connection limit exceeded for non-superusers")));
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/*
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* Initialize various default states that can't be set up until we've
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* selected the active user and done ReverifyMyDatabase.
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*/
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/* set default namespace search path */
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InitializeSearchPath();
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/* initialize client encoding */
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InitializeClientEncoding();
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/*
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* Set up process-exit callback to do pre-shutdown cleanup. This
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* should be last because we want shmem_exit to call this routine
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* before the exit callbacks that are registered by buffer manager,
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* lock manager, etc. We need to run this code before we close down
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* database access!
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*/
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on_shmem_exit(ShutdownPostgres, 0);
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/* close the transaction we started above */
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if (!bootstrap)
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CommitTransactionCommand();
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return am_superuser;
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}
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/*
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* Backend-shutdown callback. Do cleanup that we want to be sure happens
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* before all the supporting modules begin to nail their doors shut via
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* their own callbacks. Note that because this has to be registered very
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* late in startup, it will not get called if we suffer a failure *during*
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* startup.
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*
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* User-level cleanup, such as temp-relation removal and UNLISTEN, happens
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* via separate callbacks that execute before this one. We don't combine the
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* callbacks because we still want this one to happen if the user-level
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* cleanup fails.
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*/
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static void
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ShutdownPostgres(int code, Datum arg)
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{
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/*
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* These operations are really just a minimal subset of
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* AbortTransaction(). We don't want to do any inessential cleanup,
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* since that just raises the odds of failure --- but there's some
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* stuff we need to do.
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*
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* Release any LW locks, buffer content locks, and buffer pins we might be
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* holding. This is a kluge to improve the odds that we won't get into a
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* self-made stuck-lock scenario while trying to shut down. We *must*
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* release buffer pins to make it safe to do file deletion, since we
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* might have some pins on pages of the target files.
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*/
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LWLockReleaseAll();
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AtProcExit_Buffers();
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AtProcExit_LocalBuffers();
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/*
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* In case a transaction is open, delete any files it created. This
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* has to happen before bufmgr shutdown, so having smgr register a
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* callback for it wouldn't work.
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*/
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smgrDoPendingDeletes(false); /* delete as though aborting xact */
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}
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/*
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* Returns true if at least one user is defined in this database cluster.
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*/
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static bool
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ThereIsAtLeastOneUser(void)
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{
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Relation pg_shadow_rel;
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TupleDesc pg_shadow_dsc;
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HeapScanDesc scan;
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bool result;
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pg_shadow_rel = heap_open(ShadowRelationId, AccessExclusiveLock);
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pg_shadow_dsc = RelationGetDescr(pg_shadow_rel);
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scan = heap_beginscan(pg_shadow_rel, SnapshotNow, 0, NULL);
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result = (heap_getnext(scan, ForwardScanDirection) != NULL);
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heap_endscan(scan);
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heap_close(pg_shadow_rel, AccessExclusiveLock);
|
|
|
|
return result;
|
|
}
|