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Previously, relation range table entries used a single Bitmapset field representing which columns required either UPDATE or INSERT privileges, despite the fact that INSERT and UPDATE privileges are separately cataloged, and may be independently held. As statements so far required either insert or update privileges but never both, that was sufficient. The required permission could be inferred from the top level statement run. The upcoming INSERT ... ON CONFLICT UPDATE feature needs to independently check for both privileges in one statement though, so that is not sufficient anymore. Bumps catversion as stored rules change. Author: Peter Geoghegan Reviewed-By: Andres Freund
369 lines
9.1 KiB
C
369 lines
9.1 KiB
C
/* -------------------------------------------------------------------------
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*
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* contrib/sepgsql/dml.c
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*
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* Routines to handle DML permission checks
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*
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* Copyright (c) 2010-2015, PostgreSQL Global Development Group
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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/sysattr.h"
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#include "access/tupdesc.h"
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#include "catalog/catalog.h"
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#include "catalog/heap.h"
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#include "catalog/dependency.h"
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#include "catalog/pg_attribute.h"
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#include "catalog/pg_class.h"
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#include "catalog/pg_inherits_fn.h"
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#include "commands/seclabel.h"
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#include "commands/tablecmds.h"
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#include "executor/executor.h"
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#include "nodes/bitmapset.h"
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#include "utils/lsyscache.h"
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#include "utils/syscache.h"
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#include "sepgsql.h"
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/*
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* fixup_whole_row_references
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*
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* When user reference a whole of row, it is equivalent to reference to
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* all the user columns (not system columns). So, we need to fix up the
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* given bitmapset, if it contains a whole of the row reference.
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*/
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static Bitmapset *
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fixup_whole_row_references(Oid relOid, Bitmapset *columns)
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{
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Bitmapset *result;
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HeapTuple tuple;
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AttrNumber natts;
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AttrNumber attno;
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int index;
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/* if no whole of row references, do not anything */
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index = InvalidAttrNumber - FirstLowInvalidHeapAttributeNumber;
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if (!bms_is_member(index, columns))
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return columns;
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/* obtain number of attributes */
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tuple = SearchSysCache1(RELOID, ObjectIdGetDatum(relOid));
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if (!HeapTupleIsValid(tuple))
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elog(ERROR, "cache lookup failed for relation %u", relOid);
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natts = ((Form_pg_class) GETSTRUCT(tuple))->relnatts;
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ReleaseSysCache(tuple);
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/* fix up the given columns */
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result = bms_copy(columns);
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result = bms_del_member(result, index);
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for (attno = 1; attno <= natts; attno++)
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{
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tuple = SearchSysCache2(ATTNUM,
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ObjectIdGetDatum(relOid),
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Int16GetDatum(attno));
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if (!HeapTupleIsValid(tuple))
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continue;
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if (((Form_pg_attribute) GETSTRUCT(tuple))->attisdropped)
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continue;
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index = attno - FirstLowInvalidHeapAttributeNumber;
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result = bms_add_member(result, index);
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ReleaseSysCache(tuple);
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}
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return result;
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}
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/*
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* fixup_inherited_columns
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*
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* When user is querying on a table with children, it implicitly accesses
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* child tables also. So, we also need to check security label of child
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* tables and columns, but here is no guarantee attribute numbers are
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* same between the parent ans children.
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* It returns a bitmapset which contains attribute number of the child
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* table based on the given bitmapset of the parent.
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*/
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static Bitmapset *
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fixup_inherited_columns(Oid parentId, Oid childId, Bitmapset *columns)
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{
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Bitmapset *result = NULL;
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int index;
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/*
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* obviously, no need to do anything here
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*/
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if (parentId == childId)
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return columns;
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index = -1;
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while ((index = bms_next_member(columns, index)) >= 0)
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{
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/* bit numbers are offset by FirstLowInvalidHeapAttributeNumber */
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AttrNumber attno = index + FirstLowInvalidHeapAttributeNumber;
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char *attname;
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/*
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* whole-row-reference shall be fixed-up later
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*/
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if (attno == InvalidAttrNumber)
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{
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result = bms_add_member(result, index);
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continue;
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}
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attname = get_attname(parentId, attno);
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if (!attname)
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elog(ERROR, "cache lookup failed for attribute %d of relation %u",
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attno, parentId);
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attno = get_attnum(childId, attname);
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if (attno == InvalidAttrNumber)
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elog(ERROR, "cache lookup failed for attribute %s of relation %u",
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attname, childId);
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result = bms_add_member(result,
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attno - FirstLowInvalidHeapAttributeNumber);
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pfree(attname);
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}
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return result;
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}
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/*
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* check_relation_privileges
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*
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* It actually checks required permissions on a certain relation
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* and its columns.
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*/
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static bool
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check_relation_privileges(Oid relOid,
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Bitmapset *selected,
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Bitmapset *inserted,
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Bitmapset *updated,
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uint32 required,
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bool abort_on_violation)
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{
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ObjectAddress object;
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char *audit_name;
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Bitmapset *columns;
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int index;
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char relkind = get_rel_relkind(relOid);
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bool result = true;
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/*
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* Hardwired Policies: SE-PostgreSQL enforces - clients cannot modify
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* system catalogs using DMLs - clients cannot reference/modify toast
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* relations using DMLs
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*/
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if (sepgsql_getenforce() > 0)
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{
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Oid relnamespace = get_rel_namespace(relOid);
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if (IsSystemNamespace(relnamespace) &&
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(required & (SEPG_DB_TABLE__UPDATE |
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SEPG_DB_TABLE__INSERT |
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SEPG_DB_TABLE__DELETE)) != 0)
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ereport(ERROR,
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(errcode(ERRCODE_INSUFFICIENT_PRIVILEGE),
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errmsg("SELinux: hardwired security policy violation")));
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if (relkind == RELKIND_TOASTVALUE)
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ereport(ERROR,
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(errcode(ERRCODE_INSUFFICIENT_PRIVILEGE),
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errmsg("SELinux: hardwired security policy violation")));
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}
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/*
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* Check permissions on the relation
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*/
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object.classId = RelationRelationId;
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object.objectId = relOid;
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object.objectSubId = 0;
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audit_name = getObjectIdentity(&object);
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switch (relkind)
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{
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case RELKIND_RELATION:
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result = sepgsql_avc_check_perms(&object,
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SEPG_CLASS_DB_TABLE,
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required,
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audit_name,
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abort_on_violation);
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break;
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case RELKIND_SEQUENCE:
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Assert((required & ~SEPG_DB_TABLE__SELECT) == 0);
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if (required & SEPG_DB_TABLE__SELECT)
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result = sepgsql_avc_check_perms(&object,
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SEPG_CLASS_DB_SEQUENCE,
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SEPG_DB_SEQUENCE__GET_VALUE,
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audit_name,
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abort_on_violation);
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break;
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case RELKIND_VIEW:
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result = sepgsql_avc_check_perms(&object,
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SEPG_CLASS_DB_VIEW,
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SEPG_DB_VIEW__EXPAND,
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audit_name,
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abort_on_violation);
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break;
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default:
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/* nothing to be checked */
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break;
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}
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pfree(audit_name);
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/*
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* Only columns owned by relations shall be checked
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*/
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if (relkind != RELKIND_RELATION)
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return true;
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/*
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* Check permissions on the columns
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*/
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selected = fixup_whole_row_references(relOid, selected);
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inserted = fixup_whole_row_references(relOid, inserted);
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updated = fixup_whole_row_references(relOid, updated);
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columns = bms_union(selected, bms_union(inserted, updated));
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while ((index = bms_first_member(columns)) >= 0)
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{
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AttrNumber attnum;
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uint32 column_perms = 0;
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if (bms_is_member(index, selected))
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column_perms |= SEPG_DB_COLUMN__SELECT;
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if (bms_is_member(index, inserted))
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{
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if (required & SEPG_DB_TABLE__INSERT)
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column_perms |= SEPG_DB_COLUMN__INSERT;
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}
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if (bms_is_member(index, updated))
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{
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if (required & SEPG_DB_TABLE__UPDATE)
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column_perms |= SEPG_DB_COLUMN__UPDATE;
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}
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if (column_perms == 0)
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continue;
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/* obtain column's permission */
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attnum = index + FirstLowInvalidHeapAttributeNumber;
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object.classId = RelationRelationId;
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object.objectId = relOid;
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object.objectSubId = attnum;
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audit_name = getObjectDescription(&object);
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result = sepgsql_avc_check_perms(&object,
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SEPG_CLASS_DB_COLUMN,
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column_perms,
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audit_name,
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abort_on_violation);
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pfree(audit_name);
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if (!result)
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return result;
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}
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return true;
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}
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/*
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* sepgsql_dml_privileges
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*
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* Entrypoint of the DML permission checks
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*/
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bool
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sepgsql_dml_privileges(List *rangeTabls, bool abort_on_violation)
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{
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ListCell *lr;
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foreach(lr, rangeTabls)
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{
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RangeTblEntry *rte = lfirst(lr);
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uint32 required = 0;
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List *tableIds;
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ListCell *li;
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/*
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* Only regular relations shall be checked
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*/
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if (rte->rtekind != RTE_RELATION)
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continue;
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/*
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* Find out required permissions
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*/
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if (rte->requiredPerms & ACL_SELECT)
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required |= SEPG_DB_TABLE__SELECT;
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if (rte->requiredPerms & ACL_INSERT)
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required |= SEPG_DB_TABLE__INSERT;
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if (rte->requiredPerms & ACL_UPDATE)
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{
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if (!bms_is_empty(rte->updatedCols))
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required |= SEPG_DB_TABLE__UPDATE;
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else
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required |= SEPG_DB_TABLE__LOCK;
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}
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if (rte->requiredPerms & ACL_DELETE)
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required |= SEPG_DB_TABLE__DELETE;
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/*
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* Skip, if nothing to be checked
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*/
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if (required == 0)
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continue;
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/*
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* If this RangeTblEntry is also supposed to reference inherited
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* tables, we need to check security label of the child tables. So, we
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* expand rte->relid into list of OIDs of inheritance hierarchy, then
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* checker routine will be invoked for each relations.
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*/
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if (!rte->inh)
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tableIds = list_make1_oid(rte->relid);
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else
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tableIds = find_all_inheritors(rte->relid, NoLock, NULL);
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foreach(li, tableIds)
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{
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Oid tableOid = lfirst_oid(li);
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Bitmapset *selectedCols;
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Bitmapset *insertedCols;
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Bitmapset *updatedCols;
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/*
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* child table has different attribute numbers, so we need to fix
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* up them.
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*/
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selectedCols = fixup_inherited_columns(rte->relid, tableOid,
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rte->selectedCols);
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insertedCols = fixup_inherited_columns(rte->relid, tableOid,
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rte->insertedCols);
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updatedCols = fixup_inherited_columns(rte->relid, tableOid,
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rte->updatedCols);
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/*
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* check permissions on individual tables
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*/
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if (!check_relation_privileges(tableOid,
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selectedCols,
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insertedCols,
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updatedCols,
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required, abort_on_violation))
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return false;
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}
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list_free(tableIds);
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}
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return true;
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}
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