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that the types of untyped string-literal constants are deduced (ie, when coerce_type is applied to 'em, that's what the type must be). Remove the ancient hack of storing the input Param-types array as a global variable, and put the info into ParseState instead. This touches a lot of files because of adjustment of routine parameter lists, but it's really not a large patch. Note: PREPARE statement still insists on exact specification of parameter types, but that could easily be relaxed now, if we wanted to do so.
215 lines
5.5 KiB
C
215 lines
5.5 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) 1996-2002, 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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* $Header: /cvsroot/pgsql/src/backend/commands/schemacmds.c,v 1.8 2003/04/29 22:13:08 tgl 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/catname.h"
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#include "catalog/dependency.h"
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#include "catalog/namespace.h"
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#include "catalog/pg_namespace.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/lsyscache.h"
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#include "utils/syscache.h"
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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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List *parsetree_item;
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const char *owner_name;
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AclId owner_userid;
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AclId saved_userid;
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AclResult aclresult;
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saved_userid = GetUserId();
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/*
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* Figure out user identities.
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*/
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if (!authId)
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{
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owner_userid = saved_userid;
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owner_name = GetUserNameFromId(owner_userid);
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}
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else if (superuser())
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{
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owner_name = authId;
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/* The following will error out if user does not exist */
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owner_userid = get_usesysid(owner_name);
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/*
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* Set the current user to the requested authorization so that
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* objects created in the statement have the requested owner.
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* (This will revert to session user on error or at the end of
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* this routine.)
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*/
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SetUserId(owner_userid);
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}
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else
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/* not superuser */
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{
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owner_userid = saved_userid;
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owner_name = GetUserNameFromId(owner_userid);
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if (strcmp(authId, owner_name) != 0)
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elog(ERROR, "CREATE SCHEMA: permission denied"
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"\n\t\"%s\" is not a superuser, so cannot create a schema for \"%s\"",
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owner_name, authId);
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}
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/*
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* Permissions checks.
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*/
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aclresult = pg_database_aclcheck(MyDatabaseId, saved_userid, ACL_CREATE);
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if (aclresult != ACLCHECK_OK)
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aclcheck_error(aclresult, DatabaseName);
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if (!allowSystemTableMods && IsReservedName(schemaName))
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elog(ERROR, "CREATE SCHEMA: Illegal schema name: \"%s\" -- pg_ is reserved for system schemas",
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schemaName);
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/* Create the schema's namespace */
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namespaceId = NamespaceCreate(schemaName, owner_userid);
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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,
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* as well as the default creation target namespace. This will be
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* undone at 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,
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* and reorganize them into a sequentially executable order with no
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* forward references. Note that the result is still a list of raw
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* parsetrees in need of parse analysis --- we cannot, in general, run
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* analyze.c on one statement until we have actually executed the
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* 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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*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, None, 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_userid);
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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)
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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 (length(names) != 1)
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elog(ERROR, "Schema name may not be qualified");
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namespaceName = strVal(lfirst(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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elog(ERROR, "Schema \"%s\" does not exist", namespaceName);
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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, namespaceName);
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/*
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* Do the deletion. Objects contained in the schema are removed by
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* means of their dependency links to the schema.
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*
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* XXX currently, index opclasses don't have creation/deletion commands,
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* so they will not get removed when the containing schema is removed.
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* This is annoying but not fatal.
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*/
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object.classId = get_system_catalog_relid(NamespaceRelationName);
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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_openr(NamespaceRelationName, 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))
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elog(ERROR, "RemoveSchemaById: schema %u not found",
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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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