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comment line where output as too long, and update typedefs for /lib directory. Also fix case where identifiers were used as variable names in the backend, but as typedefs in ecpg (favor the backend for indenting). Backpatch to 8.1.X.
412 lines
11 KiB
C
412 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) 1996-2005, 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/commands/schemacmds.c,v 1.38 2005/11/22 18:17:09 momjian Exp $
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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/heapam.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/analyze.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/lsyscache.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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void
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CreateSchemaCommand(CreateSchemaStmt *stmt)
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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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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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AclResult aclresult;
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saved_uid = GetUserId();
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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_roleid_checked(authId);
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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 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 revert to session user on error or at the end of this
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* routine.)
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*/
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if (saved_uid != owner_uid)
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SetUserId(owner_uid);
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/* Create the schema's namespace */
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namespaceId = NamespaceCreate(schemaName, owner_uid);
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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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PushSpecialNamespace(namespaceId);
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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 in
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* need of parse analysis --- we cannot, in general, run analyze.c on one
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* statement until we have actually executed the prior ones.
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*/
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parsetree_list = analyzeCreateSchemaStmt(stmt);
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/*
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* Analyze and execute each command contained in the CREATE SCHEMA
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*/
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foreach(parsetree_item, parsetree_list)
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{
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Node *parsetree = (Node *) lfirst(parsetree_item);
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List *querytree_list;
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ListCell *querytree_item;
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querytree_list = parse_analyze(parsetree, NULL, 0);
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foreach(querytree_item, querytree_list)
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{
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Query *querytree = (Query *) lfirst(querytree_item);
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/* schemas should contain only utility stmts */
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Assert(querytree->commandType == CMD_UTILITY);
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/* do this step */
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ProcessUtility(querytree->utilityStmt, NULL, None_Receiver, NULL);
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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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}
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/* Reset search path to normal state */
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PopSpecialNamespace(namespaceId);
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/* Reset current user */
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SetUserId(saved_uid);
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}
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/*
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* RemoveSchema
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* Removes a schema.
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*/
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void
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RemoveSchema(List *names, DropBehavior behavior, bool missing_ok)
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{
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char *namespaceName;
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Oid namespaceId;
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ObjectAddress object;
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if (list_length(names) != 1)
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ereport(ERROR,
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(errcode(ERRCODE_SYNTAX_ERROR),
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errmsg("schema name may not be qualified")));
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namespaceName = strVal(linitial(names));
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namespaceId = GetSysCacheOid(NAMESPACENAME,
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CStringGetDatum(namespaceName),
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0, 0, 0);
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if (!OidIsValid(namespaceId))
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{
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if (!missing_ok)
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{
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ereport(ERROR,
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(errcode(ERRCODE_UNDEFINED_SCHEMA),
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errmsg("schema \"%s\" does not exist", namespaceName)));
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}
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else
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{
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ereport(NOTICE,
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(errmsg("schema \"%s\" does not exist, skipping",
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namespaceName)));
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}
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return;
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}
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/* Permission check */
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if (!pg_namespace_ownercheck(namespaceId, GetUserId()))
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aclcheck_error(ACLCHECK_NOT_OWNER, ACL_KIND_NAMESPACE,
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namespaceName);
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/*
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* Do the deletion. Objects contained in the schema are removed by means
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* of their dependency links to the schema.
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*/
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object.classId = NamespaceRelationId;
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object.objectId = namespaceId;
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object.objectSubId = 0;
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performDeletion(&object, behavior);
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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 = SearchSysCache(NAMESPACEOID,
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ObjectIdGetDatum(schemaOid),
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0, 0, 0);
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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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void
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RenameSchema(const char *oldname, const char *newname)
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{
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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 = SearchSysCacheCopy(NAMESPACENAME,
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CStringGetDatum(oldname),
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0, 0, 0);
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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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/* make sure the new name doesn't exist */
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if (HeapTupleIsValid(
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SearchSysCache(NAMESPACENAME,
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CStringGetDatum(newname),
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0, 0, 0)))
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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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}
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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 = SearchSysCache(NAMESPACEOID,
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ObjectIdGetDatum(oid),
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0, 0, 0);
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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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void
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AlterSchemaOwner(const char *name, 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 = SearchSysCache(NAMESPACENAME,
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CStringGetDatum(name),
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0, 0, 0);
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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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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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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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char repl_null[Natts_pg_namespace];
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char 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, ' ', sizeof(repl_null));
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memset(repl_repl, ' ', sizeof(repl_repl));
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repl_repl[Anum_pg_namespace_nspowner - 1] = 'r';
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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] = 'r';
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repl_val[Anum_pg_namespace_nspacl - 1] = PointerGetDatum(newAcl);
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}
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newtuple = heap_modifytuple(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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