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cache.c revision 1.1.1.5
      1 /*	$NetBSD: cache.c,v 1.1.1.5 2017/02/09 01:47:03 christos Exp $	*/
      2 
      3 /* cache.c - routines to maintain an in-core cache of entries */
      4 /* $OpenLDAP$ */
      5 /* This work is part of OpenLDAP Software <http://www.openldap.org/>.
      6  *
      7  * Copyright 2001-2016 The OpenLDAP Foundation.
      8  * Portions Copyright 2001-2003 Pierangelo Masarati.
      9  * All rights reserved.
     10  *
     11  * Redistribution and use in source and binary forms, with or without
     12  * modification, are permitted only as authorized by the OpenLDAP
     13  * Public License.
     14  *
     15  * A copy of this license is available in file LICENSE in the
     16  * top-level directory of the distribution or, alternatively, at
     17  * <http://www.OpenLDAP.org/license.html>.
     18  */
     19 /* ACKNOWLEDGEMENTS:
     20  * This work was initially developed by Pierangelo Masarati for inclusion
     21  * in OpenLDAP Software.
     22  */
     23 
     24 #include <sys/cdefs.h>
     25 __RCSID("$NetBSD: cache.c,v 1.1.1.5 2017/02/09 01:47:03 christos Exp $");
     26 
     27 #include "portable.h"
     28 
     29 #include <stdio.h>
     30 #include "ac/string.h"
     31 
     32 #include "slap.h"
     33 
     34 #include "back-monitor.h"
     35 
     36 /*
     37  * The cache maps DNs to Entries.
     38  * Each entry, on turn, holds the list of its children in the e_private field.
     39  * This is used by search operation to perform onelevel and subtree candidate
     40  * selection.
     41  */
     42 typedef struct monitor_cache_t {
     43 	struct berval		mc_ndn;
     44 	Entry   		*mc_e;
     45 } monitor_cache_t;
     46 
     47 /*
     48  * compares entries based on the dn
     49  */
     50 int
     51 monitor_cache_cmp(
     52 	const void	*c1,
     53 	const void	*c2 )
     54 {
     55 	monitor_cache_t 	*cc1 = ( monitor_cache_t * )c1;
     56 	monitor_cache_t 	*cc2 = ( monitor_cache_t * )c2;
     57 
     58 	/*
     59 	 * case sensitive, because the dn MUST be normalized
     60 	 */
     61 	return ber_bvcmp( &cc1->mc_ndn, &cc2->mc_ndn );
     62 }
     63 
     64 /*
     65  * checks for duplicate entries
     66  */
     67 int
     68 monitor_cache_dup(
     69 	void		*c1,
     70 	void		*c2 )
     71 {
     72 	monitor_cache_t *cc1 = ( monitor_cache_t * )c1;
     73 	monitor_cache_t *cc2 = ( monitor_cache_t * )c2;
     74 
     75 	/*
     76 	 * case sensitive, because the dn MUST be normalized
     77 	 */
     78 	return ber_bvcmp( &cc1->mc_ndn, &cc2->mc_ndn ) == 0 ? -1 : 0;
     79 }
     80 
     81 /*
     82  * adds an entry to the cache and inits the mutex
     83  */
     84 int
     85 monitor_cache_add(
     86 	monitor_info_t	*mi,
     87 	Entry		*e )
     88 {
     89 	monitor_cache_t	*mc;
     90 	monitor_entry_t	*mp;
     91 	int		rc;
     92 
     93 	assert( mi != NULL );
     94 	assert( e != NULL );
     95 
     96 	mp = ( monitor_entry_t *)e->e_private;
     97 
     98 	mc = ( monitor_cache_t * )ch_malloc( sizeof( monitor_cache_t ) );
     99 	mc->mc_ndn = e->e_nname;
    100 	mc->mc_e = e;
    101 	ldap_pvt_thread_mutex_lock( &mi->mi_cache_mutex );
    102 	rc = avl_insert( &mi->mi_cache, ( caddr_t )mc,
    103 			monitor_cache_cmp, monitor_cache_dup );
    104 	ldap_pvt_thread_mutex_unlock( &mi->mi_cache_mutex );
    105 
    106 	return rc;
    107 }
    108 
    109 /*
    110  * locks the entry (no r/w)
    111  */
    112 int
    113 monitor_cache_lock(
    114 	Entry		*e )
    115 {
    116 	monitor_entry_t *mp;
    117 
    118 	assert( e != NULL );
    119 	assert( e->e_private != NULL );
    120 
    121 	mp = ( monitor_entry_t * )e->e_private;
    122 	ldap_pvt_thread_mutex_lock( &mp->mp_mutex );
    123 
    124 	return( 0 );
    125 }
    126 
    127 /*
    128  * tries to lock the entry (no r/w)
    129  */
    130 int
    131 monitor_cache_trylock(
    132 	Entry		*e )
    133 {
    134 	monitor_entry_t *mp;
    135 
    136 	assert( e != NULL );
    137 	assert( e->e_private != NULL );
    138 
    139 	mp = ( monitor_entry_t * )e->e_private;
    140 	return ldap_pvt_thread_mutex_trylock( &mp->mp_mutex );
    141 }
    142 
    143 /*
    144  * gets an entry from the cache based on the normalized dn
    145  * with mutex locked
    146  */
    147 int
    148 monitor_cache_get(
    149 	monitor_info_t	*mi,
    150 	struct berval	*ndn,
    151 	Entry		**ep )
    152 {
    153 	monitor_cache_t tmp_mc, *mc;
    154 
    155 	assert( mi != NULL );
    156 	assert( ndn != NULL );
    157 	assert( ep != NULL );
    158 
    159 	*ep = NULL;
    160 
    161 	tmp_mc.mc_ndn = *ndn;
    162 retry:;
    163 	ldap_pvt_thread_mutex_lock( &mi->mi_cache_mutex );
    164 	mc = ( monitor_cache_t * )avl_find( mi->mi_cache,
    165 			( caddr_t )&tmp_mc, monitor_cache_cmp );
    166 
    167 	if ( mc != NULL ) {
    168 		/* entry is returned with mutex locked */
    169 		if ( monitor_cache_trylock( mc->mc_e ) ) {
    170 			ldap_pvt_thread_mutex_unlock( &mi->mi_cache_mutex );
    171 			ldap_pvt_thread_yield();
    172 			goto retry;
    173 		}
    174 		*ep = mc->mc_e;
    175 	}
    176 
    177 	ldap_pvt_thread_mutex_unlock( &mi->mi_cache_mutex );
    178 
    179 	return ( *ep == NULL ? -1 : 0 );
    180 }
    181 
    182 /*
    183  * gets an entry from the cache based on the normalized dn
    184  * with mutex locked
    185  */
    186 int
    187 monitor_cache_remove(
    188 	monitor_info_t	*mi,
    189 	struct berval	*ndn,
    190 	Entry		**ep )
    191 {
    192 	monitor_cache_t tmp_mc, *mc;
    193 	struct berval	pndn;
    194 
    195 	assert( mi != NULL );
    196 	assert( ndn != NULL );
    197 	assert( ep != NULL );
    198 
    199 	*ep = NULL;
    200 
    201 	dnParent( ndn, &pndn );
    202 
    203 retry:;
    204 	ldap_pvt_thread_mutex_lock( &mi->mi_cache_mutex );
    205 
    206 	tmp_mc.mc_ndn = *ndn;
    207 	mc = ( monitor_cache_t * )avl_find( mi->mi_cache,
    208 			( caddr_t )&tmp_mc, monitor_cache_cmp );
    209 
    210 	if ( mc != NULL ) {
    211 		monitor_cache_t *pmc;
    212 
    213 		if ( monitor_cache_trylock( mc->mc_e ) ) {
    214 			ldap_pvt_thread_mutex_unlock( &mi->mi_cache_mutex );
    215 			goto retry;
    216 		}
    217 
    218 		tmp_mc.mc_ndn = pndn;
    219 		pmc = ( monitor_cache_t * )avl_find( mi->mi_cache,
    220 			( caddr_t )&tmp_mc, monitor_cache_cmp );
    221 		if ( pmc != NULL ) {
    222 			monitor_entry_t	*mp = (monitor_entry_t *)mc->mc_e->e_private,
    223 					*pmp = (monitor_entry_t *)pmc->mc_e->e_private;
    224 			Entry		**entryp;
    225 
    226 			if ( monitor_cache_trylock( pmc->mc_e ) ) {
    227 				monitor_cache_release( mi, mc->mc_e );
    228 				ldap_pvt_thread_mutex_unlock( &mi->mi_cache_mutex );
    229 				goto retry;
    230 			}
    231 
    232 			for ( entryp = &pmp->mp_children; *entryp != NULL;  ) {
    233 				monitor_entry_t	*next = (monitor_entry_t *)(*entryp)->e_private;
    234 				if ( next == mp ) {
    235 					*entryp = next->mp_next;
    236 					entryp = NULL;
    237 					break;
    238 				}
    239 
    240 				entryp = &next->mp_next;
    241 			}
    242 
    243 			if ( entryp != NULL ) {
    244 				Debug( LDAP_DEBUG_ANY,
    245 					"monitor_cache_remove(\"%s\"): "
    246 					"not in parent's list\n",
    247 					ndn->bv_val, 0, 0 );
    248 			}
    249 
    250 			/* either succeeded, and the entry is no longer
    251 			 * in its parent's list, or failed, and the
    252 			 * entry is neither mucked with nor returned */
    253 			monitor_cache_release( mi, pmc->mc_e );
    254 
    255 			if ( entryp == NULL ) {
    256 				monitor_cache_t *tmpmc;
    257 
    258 				tmp_mc.mc_ndn = *ndn;
    259 				tmpmc = avl_delete( &mi->mi_cache,
    260 					( caddr_t )&tmp_mc, monitor_cache_cmp );
    261 				assert( tmpmc == mc );
    262 
    263 				*ep = mc->mc_e;
    264 				ch_free( mc );
    265 				mc = NULL;
    266 
    267 				/* NOTE: we destroy the mutex, but otherwise
    268 				 * leave the private data around; specifically,
    269 				 * callbacks need be freed by someone else */
    270 
    271 				ldap_pvt_thread_mutex_destroy( &mp->mp_mutex );
    272 				mp->mp_next = NULL;
    273 				mp->mp_children = NULL;
    274 			}
    275 
    276 		}
    277 
    278 		if ( mc ) {
    279 			monitor_cache_release( mi, mc->mc_e );
    280 		}
    281 	}
    282 
    283 	ldap_pvt_thread_mutex_unlock( &mi->mi_cache_mutex );
    284 
    285 	return ( *ep == NULL ? -1 : 0 );
    286 }
    287 
    288 /*
    289  * If the entry exists in cache, it is returned in locked status;
    290  * otherwise, if the parent exists, if it may generate volatile
    291  * descendants an attempt to generate the required entry is
    292  * performed and, if successful, the entry is returned
    293  */
    294 int
    295 monitor_cache_dn2entry(
    296 	Operation		*op,
    297 	SlapReply		*rs,
    298 	struct berval		*ndn,
    299 	Entry			**ep,
    300 	Entry			**matched )
    301 {
    302 	monitor_info_t *mi = (monitor_info_t *)op->o_bd->be_private;
    303 	int 			rc;
    304 	struct berval		p_ndn = BER_BVNULL;
    305 	Entry 			*e_parent;
    306 	monitor_entry_t 	*mp;
    307 
    308 	assert( mi != NULL );
    309 	assert( ndn != NULL );
    310 	assert( ep != NULL );
    311 	assert( matched != NULL );
    312 
    313 	*matched = NULL;
    314 
    315 	if ( !dnIsSuffix( ndn, &op->o_bd->be_nsuffix[ 0 ] ) ) {
    316 		return( -1 );
    317 	}
    318 
    319 	rc = monitor_cache_get( mi, ndn, ep );
    320        	if ( !rc && *ep != NULL ) {
    321 		return( 0 );
    322 	}
    323 
    324 	/* try with parent/ancestors */
    325 	if ( BER_BVISNULL( ndn ) ) {
    326 		BER_BVSTR( &p_ndn, "" );
    327 
    328 	} else {
    329 		dnParent( ndn, &p_ndn );
    330 	}
    331 
    332 	rc = monitor_cache_dn2entry( op, rs, &p_ndn, &e_parent, matched );
    333 	if ( rc || e_parent == NULL ) {
    334 		return( -1 );
    335 	}
    336 
    337 	mp = ( monitor_entry_t * )e_parent->e_private;
    338 	rc = -1;
    339 	if ( mp->mp_flags & MONITOR_F_VOLATILE_CH ) {
    340 		/* parent entry generates volatile children */
    341 		rc = monitor_entry_create( op, rs, ndn, e_parent, ep );
    342 	}
    343 
    344 	if ( !rc ) {
    345 		monitor_cache_lock( *ep );
    346 		monitor_cache_release( mi, e_parent );
    347 
    348 	} else {
    349 		*matched = e_parent;
    350 	}
    351 
    352 	return( rc );
    353 }
    354 
    355 /*
    356  * releases the lock of the entry; if it is marked as volatile, it is
    357  * destroyed.
    358  */
    359 int
    360 monitor_cache_release(
    361 	monitor_info_t	*mi,
    362 	Entry		*e )
    363 {
    364 	monitor_entry_t *mp;
    365 
    366 	assert( mi != NULL );
    367 	assert( e != NULL );
    368 	assert( e->e_private != NULL );
    369 
    370 	mp = ( monitor_entry_t * )e->e_private;
    371 
    372 	if ( mp->mp_flags & MONITOR_F_VOLATILE ) {
    373 		monitor_cache_t	*mc, tmp_mc;
    374 
    375 		/* volatile entries do not return to cache */
    376 		ldap_pvt_thread_mutex_lock( &mi->mi_cache_mutex );
    377 		tmp_mc.mc_ndn = e->e_nname;
    378 		mc = avl_delete( &mi->mi_cache,
    379 				( caddr_t )&tmp_mc, monitor_cache_cmp );
    380 		ldap_pvt_thread_mutex_unlock( &mi->mi_cache_mutex );
    381 		if ( mc != NULL ) {
    382 			ch_free( mc );
    383 		}
    384 
    385 		ldap_pvt_thread_mutex_unlock( &mp->mp_mutex );
    386 		ldap_pvt_thread_mutex_destroy( &mp->mp_mutex );
    387 		ch_free( mp );
    388 		e->e_private = NULL;
    389 		entry_free( e );
    390 
    391 		return( 0 );
    392 	}
    393 
    394 	ldap_pvt_thread_mutex_unlock( &mp->mp_mutex );
    395 
    396 	return( 0 );
    397 }
    398 
    399 static void
    400 monitor_entry_destroy( void *v_mc )
    401 {
    402 	monitor_cache_t		*mc = (monitor_cache_t *)v_mc;
    403 
    404 	if ( mc->mc_e != NULL ) {
    405 		monitor_entry_t *mp;
    406 
    407 		assert( mc->mc_e->e_private != NULL );
    408 
    409 		mp = ( monitor_entry_t * )mc->mc_e->e_private;
    410 
    411 		if ( mp->mp_cb ) {
    412 			monitor_callback_t	*cb;
    413 
    414 			for ( cb = mp->mp_cb; cb != NULL; ) {
    415 				monitor_callback_t	*next = cb->mc_next;
    416 
    417 				if ( cb->mc_free ) {
    418 					(void)cb->mc_free( mc->mc_e, &cb->mc_private );
    419 				}
    420 				ch_free( mp->mp_cb );
    421 
    422 				cb = next;
    423 			}
    424 		}
    425 
    426 		ldap_pvt_thread_mutex_destroy( &mp->mp_mutex );
    427 
    428 		ch_free( mp );
    429 		mc->mc_e->e_private = NULL;
    430 		entry_free( mc->mc_e );
    431 	}
    432 
    433 	ch_free( mc );
    434 }
    435 
    436 int
    437 monitor_cache_destroy(
    438 	monitor_info_t	*mi )
    439 {
    440 	if ( mi->mi_cache ) {
    441 		avl_free( mi->mi_cache, monitor_entry_destroy );
    442 	}
    443 
    444 	return 0;
    445 }
    446 
    447 int monitor_back_release(
    448 	Operation *op,
    449 	Entry *e,
    450 	int rw )
    451 {
    452 	monitor_info_t	*mi = ( monitor_info_t * )op->o_bd->be_private;
    453 	return monitor_cache_release( mi, e );
    454 }
    455