openldap/servers/slapd/mr.c

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/* mr.c - routines to manage matching rule definitions */
/* $OpenLDAP$ */
/*
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* Copyright 1998-2002 The OpenLDAP Foundation, All Rights Reserved.
* COPYING RESTRICTIONS APPLY, see COPYRIGHT file
*/
#include "portable.h"
#include <stdio.h>
#include <ac/ctype.h>
#include <ac/string.h>
#include <ac/socket.h>
#include "slap.h"
#include "ldap_pvt.h"
struct mindexrec {
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struct berval mir_name;
MatchingRule *mir_mr;
};
static Avlnode *mr_index = NULL;
static MatchingRule *mr_list = NULL;
static MatchingRuleUse *mru_list = NULL;
static int
mr_index_cmp(
struct mindexrec *mir1,
struct mindexrec *mir2
)
{
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int i = mir1->mir_name.bv_len - mir2->mir_name.bv_len;
if (i) return i;
return (strcmp( mir1->mir_name.bv_val, mir2->mir_name.bv_val ));
}
static int
mr_index_name_cmp(
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struct berval *name,
struct mindexrec *mir
)
{
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int i = name->bv_len - mir->mir_name.bv_len;
if (i) return i;
return (strncmp( name->bv_val, mir->mir_name.bv_val, name->bv_len ));
}
MatchingRule *
mr_find( const char *mrname )
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{
struct berval bv;
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bv.bv_val = (char *)mrname;
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bv.bv_len = strlen( mrname );
return mr_bvfind( &bv );
}
MatchingRule *
mr_bvfind( struct berval *mrname )
{
struct mindexrec *mir = NULL;
if ( (mir = (struct mindexrec *) avl_find( mr_index, mrname,
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(AVL_CMP) mr_index_name_cmp )) != NULL ) {
return( mir->mir_mr );
}
return( NULL );
}
void
mr_destroy( void )
{
MatchingRule *m, *n;
avl_free(mr_index, ldap_memfree);
for (m=mr_list; m; m=n) {
n = m->smr_next;
ch_free( m->smr_str.bv_val );
ldap_matchingrule_free((LDAPMatchingRule *)m);
}
}
static int
mr_insert(
MatchingRule *smr,
const char **err
)
{
MatchingRule **mrp;
struct mindexrec *mir;
char **names;
mrp = &mr_list;
while ( *mrp != NULL ) {
mrp = &(*mrp)->smr_next;
}
*mrp = smr;
if ( smr->smr_oid ) {
mir = (struct mindexrec *)
ch_calloc( 1, sizeof(struct mindexrec) );
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mir->mir_name.bv_val = smr->smr_oid;
mir->mir_name.bv_len = strlen( smr->smr_oid );
mir->mir_mr = smr;
if ( avl_insert( &mr_index, (caddr_t) mir,
(AVL_CMP) mr_index_cmp,
(AVL_DUP) avl_dup_error ) ) {
*err = smr->smr_oid;
ldap_memfree(mir);
return SLAP_SCHERR_MR_DUP;
}
/* FIX: temporal consistency check */
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mr_bvfind(&mir->mir_name);
}
if ( (names = smr->smr_names) ) {
while ( *names ) {
mir = (struct mindexrec *)
ch_calloc( 1, sizeof(struct mindexrec) );
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mir->mir_name.bv_val = *names;
mir->mir_name.bv_len = strlen( *names );
mir->mir_mr = smr;
if ( avl_insert( &mr_index, (caddr_t) mir,
(AVL_CMP) mr_index_cmp,
(AVL_DUP) avl_dup_error ) ) {
*err = *names;
ldap_memfree(mir);
return SLAP_SCHERR_MR_DUP;
}
/* FIX: temporal consistency check */
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mr_bvfind(&mir->mir_name);
names++;
}
}
return 0;
}
int
mr_add(
LDAPMatchingRule *mr,
slap_mrule_defs_rec *def,
MatchingRule *amr,
const char **err
)
{
MatchingRule *smr;
Syntax *syn;
int code;
smr = (MatchingRule *) ch_calloc( 1, sizeof(MatchingRule) );
AC_MEMCPY( &smr->smr_mrule, mr, sizeof(LDAPMatchingRule));
/*
* note: smr_bvoid uses the same memory of smr_mrule.mr_oid;
* smr_oidlen is #defined as smr_bvoid.bv_len
*/
smr->smr_bvoid.bv_val = smr->smr_mrule.mr_oid;
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smr->smr_oidlen = strlen( mr->mr_oid );
smr->smr_usage = def->mrd_usage;
smr->smr_convert = def->mrd_convert;
smr->smr_normalize = def->mrd_normalize;
smr->smr_match = def->mrd_match;
smr->smr_indexer = def->mrd_indexer;
smr->smr_filter = def->mrd_filter;
smr->smr_associated = amr;
if ( smr->smr_syntax_oid ) {
if ( (syn = syn_find(smr->smr_syntax_oid)) ) {
smr->smr_syntax = syn;
} else {
*err = smr->smr_syntax_oid;
return SLAP_SCHERR_SYN_NOT_FOUND;
}
} else {
*err = "";
return SLAP_SCHERR_MR_INCOMPLETE;
}
code = mr_insert(smr,err);
return code;
}
int
register_matching_rule(
slap_mrule_defs_rec *def )
{
LDAPMatchingRule *mr;
MatchingRule *amr = NULL;
int code;
const char *err;
if( def->mrd_usage == SLAP_MR_NONE ) {
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, ERR,
"register_matching_rule: %s not usable\n", def->mrd_desc, 0, 0 );
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#else
Debug( LDAP_DEBUG_ANY, "register_matching_rule: not usable %s\n",
def->mrd_desc, 0, 0 );
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#endif
return -1;
}
if( def->mrd_associated != NULL ) {
amr = mr_find( def->mrd_associated );
#if 0
/* ignore for now */
if( amr == NULL ) {
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, ERR,
"register_matching_rule: could not locate associated "
"matching rule %s for %s\n", def->mrd_associated, def->mrd_desc, 0 );
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#else
Debug( LDAP_DEBUG_ANY, "register_matching_rule: could not locate "
"associated matching rule %s for %s\n",
def->mrd_associated, def->mrd_desc, 0 );
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#endif
return -1;
}
#endif
}
mr = ldap_str2matchingrule( def->mrd_desc, &code, &err, LDAP_SCHEMA_ALLOW_ALL);
if ( !mr ) {
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, ERR,
"register_matching_rule: %s before %s in %s.\n",
ldap_scherr2str(code), err, def->mrd_desc );
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#else
Debug( LDAP_DEBUG_ANY, "Error in register_matching_rule: %s before %s in %s\n",
ldap_scherr2str(code), err, def->mrd_desc );
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#endif
return( -1 );
}
code = mr_add( mr, def, amr, &err );
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ldap_memfree( mr );
if ( code ) {
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#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, ERR,
"register_matching_rule: %s for %s in %s.\n",
scherr2str(code), err, def->mrd_desc );
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#else
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Debug( LDAP_DEBUG_ANY, "Error in register_matching_rule: %s for %s in %s\n",
scherr2str(code), err, def->mrd_desc );
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#endif
return( -1 );
}
return( 0 );
}
void
mru_destroy( void )
{
MatchingRuleUse *m, *n;
for (m=mru_list; m; m=n) {
n = m->smru_next;
if ( m->smru_str.bv_val ) {
ch_free( m->smru_str.bv_val );
}
/* memory borrowed from m->smru_mr */
m->smru_oid = NULL;
m->smru_names = NULL;
m->smru_desc = NULL;
/* free what's left (basically
* smru_mruleuse.mru_applies_oids) */
ldap_matchingruleuse_free((LDAPMatchingRuleUse *)m);
}
}
int
matching_rule_use_init( void )
{
MatchingRule *mr;
MatchingRuleUse **mru_ptr = &mru_list;
#define MR_TYPE_MASK ( SLAP_MR_TYPE_MASK & ~SLAP_MR_EXT )
#define MR_TYPE_SUBTYPE_MASK ( MR_TYPE_MASK | SLAP_MR_SUBTYPE_MASK )
#if 0 /* all types regardless of EXT */
#define MR_TYPE(x) ( (x) & MR_TYPE_MASK )
#define MR_TYPE_SUBTYPE(x) ( (x) & MR_TYPE_SUBTYPE_MASK )
#else /* only those marked as EXT (as per RFC 2252) */
#define MR_TYPE(x) ( ( (x) & SLAP_MR_EXT ) ? ( (x) & MR_TYPE_MASK ) : SLAP_MR_NONE )
#define MR_TYPE_SUBTYPE(x) ( ( (x) & SLAP_MR_EXT ) ? ( (x) & MR_TYPE_SUBTYPE_MASK ) : SLAP_MR_NONE )
#endif
#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, INFO, "matching_rule_use_init\n", 0, 0, 0 );
#else
Debug( LDAP_DEBUG_TRACE, "matching_rule_use_init\n", 0, 0, 0 );
#endif
for ( mr = mr_list; mr; mr = mr->smr_next ) {
slap_mask_t um = MR_TYPE( mr->smr_usage );
slap_mask_t usm = MR_TYPE_SUBTYPE( mr->smr_usage );
AttributeType *at;
MatchingRuleUse _mru, *mru = &_mru;
char **applies_oids = NULL;
mr->smr_mru = NULL;
/* hide rules marked as HIDE */
if ( mr->smr_usage & SLAP_MR_HIDE ) {
continue;
}
/* hide rules not marked as designed for extensibility */
/* MR_EXT means can be used any attribute type whose
* syntax is same as the assertion syntax.
* Another mechanism is needed where rule can be used
* with attribute of other syntaxes.
* Framework doesn't support this (yet).
*/
if (!( mr->smr_usage & SLAP_MR_EXT )) {
continue;
}
memset( mru, 0, sizeof( MatchingRuleUse ) );
/*
* Note: we're using the same values of the corresponding
* MatchingRule structure; maybe we'd copy them ...
*/
mru->smru_mr = mr;
mru->smru_obsolete = mr->smr_obsolete;
mru->smru_applies_oids = NULL;
mru->smru_next = NULL;
mru->smru_oid = mr->smr_oid;
mru->smru_names = mr->smr_names;
mru->smru_desc = mr->smr_desc;
#ifdef NEW_LOGGING
LDAP_LOG( OPERATION, INFO, " %s (%s): ",
mru->smru_oid,
mru->smru_names ? mru->smru_names[ 0 ] : "", 0 );
#else
Debug( LDAP_DEBUG_TRACE, " %s (%s): ",
mru->smru_oid,
mru->smru_names ? mru->smru_names[ 0 ] : "", 0 );
#endif
at = NULL;
for ( at_start( &at ); at; at_next( &at ) ) {
if( mr->smr_syntax == at->sat_syntax ||
mr == at->sat_equality ||
mr == at->sat_approx )
{
ldap_charray_add( &applies_oids, at->sat_cname.bv_val );
}
}
/*
* Note: the matchingRules that are not used
* by any attributeType are not listed as
* matchingRuleUse
*/
if ( applies_oids != NULL ) {
mru->smru_applies_oids = applies_oids;
#ifdef NEW_LOGGING
{
char *str = ldap_matchingruleuse2str( &mru->smru_mruleuse );
LDAP_LOG( OPERATION, INFO, "matchingRuleUse: %s\n", str, 0, 0 );
ldap_memfree( str );
}
#else
{
char *str = ldap_matchingruleuse2str( &mru->smru_mruleuse );
Debug( LDAP_DEBUG_TRACE, "matchingRuleUse: %s\n", str, 0, 0 );
ldap_memfree( str );
}
#endif
mru = (MatchingRuleUse *)ber_memalloc( sizeof( MatchingRuleUse ) );
/* call-forward from MatchingRule to MatchingRuleUse */
mr->smr_mru = mru;
/* copy static data to newly allocated struct */
*mru = _mru;
/* append the struct pointer to the end of the list */
*mru_ptr = mru;
/* update the list head pointer */
mru_ptr = &mru->smru_next;
}
}
return( 0 );
}
#if defined( SLAPD_SCHEMA_DN )
int mr_schema_info( Entry *e )
{
MatchingRule *mr;
AttributeDescription *ad_matchingRules = slap_schema.si_ad_matchingRules;
for ( mr = mr_list; mr; mr = mr->smr_next ) {
if ( mr->smr_usage & SLAP_MR_HIDE ) {
/* skip hidden rules */
continue;
}
if ( ! mr->smr_match ) {
/* skip rules without matching functions */
continue;
}
if ( mr->smr_str.bv_val == NULL ) {
if ( ldap_matchingrule2bv( &mr->smr_mrule, &mr->smr_str ) == NULL ) {
return -1;
}
}
#if 0
Debug( LDAP_DEBUG_TRACE, "Merging mr [%lu] %s\n",
mr->smr_str.bv_len, mr->smr_str.bv_val, 0 );
#endif
attr_merge_one( e, ad_matchingRules, &mr->smr_str );
}
return 0;
}
int mru_schema_info( Entry *e )
{
MatchingRuleUse *mru;
AttributeDescription *ad_matchingRuleUse
= slap_schema.si_ad_matchingRuleUse;
for ( mru = mru_list; mru; mru = mru->smru_next ) {
assert( !( mru->smru_usage & SLAP_MR_HIDE ) );
if ( mru->smru_str.bv_val == NULL ) {
if ( ldap_matchingruleuse2bv( &mru->smru_mruleuse, &mru->smru_str )
== NULL ) {
return -1;
}
}
#if 0
Debug( LDAP_DEBUG_TRACE, "Merging mru [%lu] %s\n",
mru->smru_str.bv_len, mru->smru_str.bv_val, 0 );
#endif
attr_merge_one( e, ad_matchingRuleUse, &mru->smru_str );
}
return 0;
}
#endif