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380 lines
11 KiB
C
380 lines
11 KiB
C
/*-------------------------------------------------------------------------
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*
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* schemacmds.c
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* schema creation/manipulation commands
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*
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* Portions Copyright (c) 1996-2013, 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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* src/backend/commands/schemacmds.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 "access/htup_details.h"
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#include "access/heapam.h"
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#include "access/xact.h"
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#include "catalog/catalog.h"
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#include "catalog/dependency.h"
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#include "catalog/indexing.h"
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#include "catalog/namespace.h"
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#include "catalog/pg_namespace.h"
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#include "commands/dbcommands.h"
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#include "commands/schemacmds.h"
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#include "miscadmin.h"
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#include "parser/parse_utilcmd.h"
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#include "tcop/utility.h"
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#include "utils/acl.h"
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#include "utils/builtins.h"
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#include "utils/rel.h"
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#include "utils/syscache.h"
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static void AlterSchemaOwner_internal(HeapTuple tup, Relation rel, Oid newOwnerId);
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/*
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* CREATE SCHEMA
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*/
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Oid
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CreateSchemaCommand(CreateSchemaStmt *stmt, const char *queryString)
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{
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const char *schemaName = stmt->schemaname;
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const char *authId = stmt->authid;
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Oid namespaceId;
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OverrideSearchPath *overridePath;
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List *parsetree_list;
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ListCell *parsetree_item;
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Oid owner_uid;
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Oid saved_uid;
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int save_sec_context;
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AclResult aclresult;
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GetUserIdAndSecContext(&saved_uid, &save_sec_context);
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/*
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* Who is supposed to own the new schema?
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*/
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if (authId)
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owner_uid = get_role_oid(authId, false);
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else
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owner_uid = saved_uid;
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/*
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* To create a schema, must have schema-create privilege on the current
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* database and must be able to become the target role (this does not
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* imply that the target role itself must have create-schema privilege).
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* The latter provision guards against "giveaway" attacks. Note that a
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* superuser will always have both of these privileges a fortiori.
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*/
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aclresult = pg_database_aclcheck(MyDatabaseId, saved_uid, ACL_CREATE);
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if (aclresult != ACLCHECK_OK)
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aclcheck_error(aclresult, ACL_KIND_DATABASE,
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get_database_name(MyDatabaseId));
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check_is_member_of_role(saved_uid, owner_uid);
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/* Additional check to protect reserved schema names */
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if (!allowSystemTableMods && IsReservedName(schemaName))
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ereport(ERROR,
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(errcode(ERRCODE_RESERVED_NAME),
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errmsg("unacceptable schema name \"%s\"", schemaName),
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errdetail("The prefix \"pg_\" is reserved for system schemas.")));
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/*
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* If if_not_exists was given and the schema already exists, bail out.
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* (Note: we needn't check this when not if_not_exists, because
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* NamespaceCreate will complain anyway.) We could do this before making
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* the permissions checks, but since CREATE TABLE IF NOT EXISTS makes its
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* creation-permission check first, we do likewise.
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*/
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if (stmt->if_not_exists &&
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SearchSysCacheExists1(NAMESPACENAME, PointerGetDatum(schemaName)))
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{
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ereport(NOTICE,
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(errcode(ERRCODE_DUPLICATE_SCHEMA),
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errmsg("schema \"%s\" already exists, skipping",
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schemaName)));
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return InvalidOid;
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}
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/*
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* If the requested authorization is different from the current user,
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* temporarily set the current user so that the object(s) will be created
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* with the correct ownership.
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*
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* (The setting will be restored at the end of this routine, or in case of
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* error, transaction abort will clean things up.)
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*/
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if (saved_uid != owner_uid)
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SetUserIdAndSecContext(owner_uid,
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save_sec_context | SECURITY_LOCAL_USERID_CHANGE);
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/* Create the schema's namespace */
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namespaceId = NamespaceCreate(schemaName, owner_uid, false);
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/* Advance cmd counter to make the namespace visible */
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CommandCounterIncrement();
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/*
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* Temporarily make the new namespace be the front of the search path, as
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* well as the default creation target namespace. This will be undone at
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* the end of this routine, or upon error.
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*/
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overridePath = GetOverrideSearchPath(CurrentMemoryContext);
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overridePath->schemas = lcons_oid(namespaceId, overridePath->schemas);
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/* XXX should we clear overridePath->useTemp? */
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PushOverrideSearchPath(overridePath);
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/*
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* Examine the list of commands embedded in the CREATE SCHEMA command, and
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* reorganize them into a sequentially executable order with no forward
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* references. Note that the result is still a list of raw parsetrees ---
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* we cannot, in general, run parse analysis on one statement until we
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* have actually executed the prior ones.
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*/
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parsetree_list = transformCreateSchemaStmt(stmt);
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/*
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* Execute each command contained in the CREATE SCHEMA. Since the grammar
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* allows only utility commands in CREATE SCHEMA, there is no need to pass
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* them through parse_analyze() or the rewriter; we can just hand them
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* straight to ProcessUtility.
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*/
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foreach(parsetree_item, parsetree_list)
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{
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Node *stmt = (Node *) lfirst(parsetree_item);
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/* do this step */
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ProcessUtility(stmt,
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queryString,
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NULL,
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None_Receiver,
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NULL,
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PROCESS_UTILITY_SUBCOMMAND);
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/* make sure later steps can see the object created here */
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CommandCounterIncrement();
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}
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/* Reset search path to normal state */
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PopOverrideSearchPath();
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/* Reset current user and security context */
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SetUserIdAndSecContext(saved_uid, save_sec_context);
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return namespaceId;
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}
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/*
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* Guts of schema deletion.
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*/
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void
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RemoveSchemaById(Oid schemaOid)
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{
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Relation relation;
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HeapTuple tup;
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relation = heap_open(NamespaceRelationId, RowExclusiveLock);
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tup = SearchSysCache1(NAMESPACEOID,
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ObjectIdGetDatum(schemaOid));
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if (!HeapTupleIsValid(tup)) /* should not happen */
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elog(ERROR, "cache lookup failed for namespace %u", schemaOid);
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simple_heap_delete(relation, &tup->t_self);
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ReleaseSysCache(tup);
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heap_close(relation, RowExclusiveLock);
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}
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/*
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* Rename schema
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*/
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Oid
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RenameSchema(const char *oldname, const char *newname)
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{
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Oid nspOid;
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HeapTuple tup;
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Relation rel;
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AclResult aclresult;
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rel = heap_open(NamespaceRelationId, RowExclusiveLock);
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tup = SearchSysCacheCopy1(NAMESPACENAME, CStringGetDatum(oldname));
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if (!HeapTupleIsValid(tup))
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ereport(ERROR,
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(errcode(ERRCODE_UNDEFINED_SCHEMA),
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errmsg("schema \"%s\" does not exist", oldname)));
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nspOid = HeapTupleGetOid(tup);
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/* make sure the new name doesn't exist */
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if (OidIsValid(get_namespace_oid(newname, true)))
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ereport(ERROR,
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(errcode(ERRCODE_DUPLICATE_SCHEMA),
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errmsg("schema \"%s\" already exists", newname)));
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/* must be owner */
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if (!pg_namespace_ownercheck(HeapTupleGetOid(tup), GetUserId()))
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aclcheck_error(ACLCHECK_NOT_OWNER, ACL_KIND_NAMESPACE,
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oldname);
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/* must have CREATE privilege on database */
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aclresult = pg_database_aclcheck(MyDatabaseId, GetUserId(), ACL_CREATE);
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if (aclresult != ACLCHECK_OK)
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aclcheck_error(aclresult, ACL_KIND_DATABASE,
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get_database_name(MyDatabaseId));
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if (!allowSystemTableMods && IsReservedName(newname))
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ereport(ERROR,
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(errcode(ERRCODE_RESERVED_NAME),
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errmsg("unacceptable schema name \"%s\"", newname),
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errdetail("The prefix \"pg_\" is reserved for system schemas.")));
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/* rename */
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namestrcpy(&(((Form_pg_namespace) GETSTRUCT(tup))->nspname), newname);
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simple_heap_update(rel, &tup->t_self, tup);
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CatalogUpdateIndexes(rel, tup);
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heap_close(rel, NoLock);
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heap_freetuple(tup);
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return nspOid;
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}
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void
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AlterSchemaOwner_oid(Oid oid, Oid newOwnerId)
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{
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HeapTuple tup;
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Relation rel;
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rel = heap_open(NamespaceRelationId, RowExclusiveLock);
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tup = SearchSysCache1(NAMESPACEOID, ObjectIdGetDatum(oid));
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if (!HeapTupleIsValid(tup))
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elog(ERROR, "cache lookup failed for schema %u", oid);
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AlterSchemaOwner_internal(tup, rel, newOwnerId);
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ReleaseSysCache(tup);
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heap_close(rel, RowExclusiveLock);
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}
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/*
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* Change schema owner
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*/
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Oid
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AlterSchemaOwner(const char *name, Oid newOwnerId)
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{
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Oid nspOid;
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HeapTuple tup;
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Relation rel;
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rel = heap_open(NamespaceRelationId, RowExclusiveLock);
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tup = SearchSysCache1(NAMESPACENAME, CStringGetDatum(name));
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if (!HeapTupleIsValid(tup))
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ereport(ERROR,
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(errcode(ERRCODE_UNDEFINED_SCHEMA),
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errmsg("schema \"%s\" does not exist", name)));
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nspOid = HeapTupleGetOid(tup);
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AlterSchemaOwner_internal(tup, rel, newOwnerId);
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ReleaseSysCache(tup);
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heap_close(rel, RowExclusiveLock);
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return nspOid;
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}
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static void
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AlterSchemaOwner_internal(HeapTuple tup, Relation rel, Oid newOwnerId)
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{
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Form_pg_namespace nspForm;
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Assert(tup->t_tableOid == NamespaceRelationId);
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Assert(RelationGetRelid(rel) == NamespaceRelationId);
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nspForm = (Form_pg_namespace) GETSTRUCT(tup);
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/*
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* If the new owner is the same as the existing owner, consider the
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* command to have succeeded. This is for dump restoration purposes.
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*/
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if (nspForm->nspowner != newOwnerId)
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{
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Datum repl_val[Natts_pg_namespace];
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bool repl_null[Natts_pg_namespace];
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bool repl_repl[Natts_pg_namespace];
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Acl *newAcl;
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Datum aclDatum;
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bool isNull;
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HeapTuple newtuple;
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AclResult aclresult;
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/* Otherwise, must be owner of the existing object */
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if (!pg_namespace_ownercheck(HeapTupleGetOid(tup), GetUserId()))
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aclcheck_error(ACLCHECK_NOT_OWNER, ACL_KIND_NAMESPACE,
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NameStr(nspForm->nspname));
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/* Must be able to become new owner */
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check_is_member_of_role(GetUserId(), newOwnerId);
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/*
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* must have create-schema rights
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*
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* NOTE: This is different from other alter-owner checks in that the
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* current user is checked for create privileges instead of the
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* destination owner. This is consistent with the CREATE case for
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* schemas. Because superusers will always have this right, we need
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* no special case for them.
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*/
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aclresult = pg_database_aclcheck(MyDatabaseId, GetUserId(),
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ACL_CREATE);
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if (aclresult != ACLCHECK_OK)
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aclcheck_error(aclresult, ACL_KIND_DATABASE,
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get_database_name(MyDatabaseId));
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memset(repl_null, false, sizeof(repl_null));
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memset(repl_repl, false, sizeof(repl_repl));
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repl_repl[Anum_pg_namespace_nspowner - 1] = true;
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repl_val[Anum_pg_namespace_nspowner - 1] = ObjectIdGetDatum(newOwnerId);
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/*
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* Determine the modified ACL for the new owner. This is only
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* necessary when the ACL is non-null.
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*/
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aclDatum = SysCacheGetAttr(NAMESPACENAME, tup,
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Anum_pg_namespace_nspacl,
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&isNull);
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if (!isNull)
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{
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newAcl = aclnewowner(DatumGetAclP(aclDatum),
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nspForm->nspowner, newOwnerId);
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repl_repl[Anum_pg_namespace_nspacl - 1] = true;
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repl_val[Anum_pg_namespace_nspacl - 1] = PointerGetDatum(newAcl);
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}
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newtuple = heap_modify_tuple(tup, RelationGetDescr(rel), repl_val, repl_null, repl_repl);
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simple_heap_update(rel, &newtuple->t_self, newtuple);
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CatalogUpdateIndexes(rel, newtuple);
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heap_freetuple(newtuple);
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/* Update owner dependency reference */
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changeDependencyOnOwner(NamespaceRelationId, HeapTupleGetOid(tup),
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newOwnerId);
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}
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}
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