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npf_tableset.c revision 1.22.4.2
      1  1.22.4.2   skrll /*	$NetBSD: npf_tableset.c,v 1.22.4.2 2017/02/05 13:40:58 skrll Exp $	*/
      2       1.1   rmind 
      3       1.1   rmind /*-
      4  1.22.4.2   skrll  * Copyright (c) 2009-2016 The NetBSD Foundation, Inc.
      5       1.1   rmind  * All rights reserved.
      6       1.1   rmind  *
      7       1.1   rmind  * This material is based upon work partially supported by The
      8       1.1   rmind  * NetBSD Foundation under a contract with Mindaugas Rasiukevicius.
      9       1.1   rmind  *
     10       1.1   rmind  * Redistribution and use in source and binary forms, with or without
     11       1.1   rmind  * modification, are permitted provided that the following conditions
     12       1.1   rmind  * are met:
     13       1.1   rmind  * 1. Redistributions of source code must retain the above copyright
     14       1.1   rmind  *    notice, this list of conditions and the following disclaimer.
     15       1.1   rmind  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.1   rmind  *    notice, this list of conditions and the following disclaimer in the
     17       1.1   rmind  *    documentation and/or other materials provided with the distribution.
     18       1.1   rmind  *
     19       1.1   rmind  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.1   rmind  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.1   rmind  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.1   rmind  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.1   rmind  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.1   rmind  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.1   rmind  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.1   rmind  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.1   rmind  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.1   rmind  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.1   rmind  * POSSIBILITY OF SUCH DAMAGE.
     30       1.1   rmind  */
     31       1.1   rmind 
     32       1.1   rmind /*
     33       1.4   rmind  * NPF tableset module.
     34       1.1   rmind  *
     35      1.15   rmind  * Notes
     36      1.15   rmind  *
     37      1.15   rmind  *	The tableset is an array of tables.  After the creation, the array
     38      1.15   rmind  *	is immutable.  The caller is responsible to synchronise the access
     39      1.15   rmind  *	to the tableset.  The table can either be a hash or a tree.  Its
     40      1.15   rmind  *	entries are protected by a read-write lock.
     41       1.1   rmind  */
     42       1.1   rmind 
     43  1.22.4.2   skrll #ifdef _KERNEL
     44       1.1   rmind #include <sys/cdefs.h>
     45  1.22.4.2   skrll __KERNEL_RCSID(0, "$NetBSD: npf_tableset.c,v 1.22.4.2 2017/02/05 13:40:58 skrll Exp $");
     46       1.1   rmind 
     47       1.1   rmind #include <sys/param.h>
     48      1.10   rmind #include <sys/types.h>
     49       1.1   rmind 
     50       1.1   rmind #include <sys/atomic.h>
     51       1.1   rmind #include <sys/hash.h>
     52      1.21   rmind #include <sys/cdbr.h>
     53       1.1   rmind #include <sys/kmem.h>
     54      1.21   rmind #include <sys/malloc.h>
     55       1.1   rmind #include <sys/pool.h>
     56       1.1   rmind #include <sys/queue.h>
     57       1.1   rmind #include <sys/rwlock.h>
     58       1.1   rmind #include <sys/systm.h>
     59       1.1   rmind #include <sys/types.h>
     60       1.1   rmind 
     61  1.22.4.2   skrll #include "lpm.h"
     62  1.22.4.2   skrll #endif
     63  1.22.4.2   skrll 
     64       1.1   rmind #include "npf_impl.h"
     65       1.1   rmind 
     66      1.15   rmind typedef struct npf_tblent {
     67  1.22.4.2   skrll 	LIST_ENTRY(npf_tblent)	te_listent;
     68  1.22.4.2   skrll 	uint16_t		te_preflen;
     69  1.22.4.2   skrll 	uint16_t		te_alen;
     70      1.13   rmind 	npf_addr_t		te_addr;
     71      1.15   rmind } npf_tblent_t;
     72       1.1   rmind 
     73       1.1   rmind LIST_HEAD(npf_hashl, npf_tblent);
     74       1.1   rmind 
     75       1.1   rmind struct npf_table {
     76      1.19   rmind 	/*
     77      1.21   rmind 	 * The storage type can be: a) hash b) tree c) cdb.
     78      1.19   rmind 	 * There are separate trees for IPv4 and IPv6.
     79      1.19   rmind 	 */
     80      1.21   rmind 	union {
     81      1.21   rmind 		struct {
     82      1.21   rmind 			struct npf_hashl *t_hashl;
     83      1.21   rmind 			u_long		t_hashmask;
     84      1.21   rmind 		};
     85      1.21   rmind 		struct {
     86  1.22.4.2   skrll 			lpm_t *		t_lpm;
     87  1.22.4.2   skrll 			LIST_HEAD(, npf_tblent) t_list;
     88      1.21   rmind 		};
     89      1.21   rmind 		struct {
     90      1.21   rmind 			void *		t_blob;
     91      1.21   rmind 			size_t		t_bsize;
     92      1.21   rmind 			struct cdbr *	t_cdb;
     93      1.21   rmind 		};
     94      1.21   rmind 	} /* C11 */;
     95      1.19   rmind 
     96      1.19   rmind 	/*
     97      1.19   rmind 	 * Table ID, type and lock.  The ID may change during the
     98      1.19   rmind 	 * config reload, it is protected by the npf_config_lock.
     99      1.19   rmind 	 */
    100      1.19   rmind 	int			t_type;
    101      1.19   rmind 	u_int			t_id;
    102      1.19   rmind 	krwlock_t		t_lock;
    103      1.19   rmind 
    104      1.19   rmind 	/* The number of items, reference count and table name. */
    105      1.19   rmind 	u_int			t_nitems;
    106      1.19   rmind 	u_int			t_refcnt;
    107      1.19   rmind 	char			t_name[NPF_TABLE_MAXNAMELEN];
    108      1.19   rmind };
    109      1.19   rmind 
    110      1.19   rmind struct npf_tableset {
    111      1.19   rmind 	u_int			ts_nitems;
    112      1.19   rmind 	npf_table_t *		ts_map[];
    113       1.1   rmind };
    114       1.1   rmind 
    115      1.19   rmind #define	NPF_TABLESET_SIZE(n)	\
    116      1.19   rmind     (offsetof(npf_tableset_t, ts_map[n]) * sizeof(npf_table_t *))
    117      1.19   rmind 
    118      1.13   rmind #define	NPF_ADDRLEN2TREE(alen)	((alen) >> 4)
    119      1.13   rmind 
    120      1.13   rmind static pool_cache_t		tblent_cache	__read_mostly;
    121       1.1   rmind 
    122       1.1   rmind /*
    123       1.1   rmind  * npf_table_sysinit: initialise tableset structures.
    124       1.1   rmind  */
    125       1.4   rmind void
    126       1.1   rmind npf_tableset_sysinit(void)
    127       1.1   rmind {
    128       1.1   rmind 	tblent_cache = pool_cache_init(sizeof(npf_tblent_t), coherency_unit,
    129      1.14   rmind 	    0, 0, "npftblpl", NULL, IPL_NONE, NULL, NULL, NULL);
    130       1.1   rmind }
    131       1.1   rmind 
    132       1.1   rmind void
    133       1.1   rmind npf_tableset_sysfini(void)
    134       1.1   rmind {
    135       1.1   rmind 	pool_cache_destroy(tblent_cache);
    136       1.1   rmind }
    137       1.1   rmind 
    138       1.1   rmind npf_tableset_t *
    139      1.19   rmind npf_tableset_create(u_int nitems)
    140       1.1   rmind {
    141      1.19   rmind 	npf_tableset_t *ts = kmem_zalloc(NPF_TABLESET_SIZE(nitems), KM_SLEEP);
    142      1.19   rmind 	ts->ts_nitems = nitems;
    143      1.19   rmind 	return ts;
    144       1.1   rmind }
    145       1.1   rmind 
    146       1.1   rmind void
    147      1.19   rmind npf_tableset_destroy(npf_tableset_t *ts)
    148       1.1   rmind {
    149       1.1   rmind 	/*
    150      1.19   rmind 	 * Destroy all tables (no references should be held, since the
    151      1.19   rmind 	 * ruleset should be destroyed before).
    152       1.1   rmind 	 */
    153      1.19   rmind 	for (u_int tid = 0; tid < ts->ts_nitems; tid++) {
    154      1.19   rmind 		npf_table_t *t = ts->ts_map[tid];
    155      1.19   rmind 
    156      1.17   rmind 		if (t && atomic_dec_uint_nv(&t->t_refcnt) == 0) {
    157       1.1   rmind 			npf_table_destroy(t);
    158       1.1   rmind 		}
    159       1.1   rmind 	}
    160      1.19   rmind 	kmem_free(ts, NPF_TABLESET_SIZE(ts->ts_nitems));
    161       1.1   rmind }
    162       1.1   rmind 
    163       1.1   rmind /*
    164       1.1   rmind  * npf_tableset_insert: insert the table into the specified tableset.
    165       1.1   rmind  *
    166      1.13   rmind  * => Returns 0 on success.  Fails and returns error if ID is already used.
    167       1.1   rmind  */
    168       1.1   rmind int
    169      1.19   rmind npf_tableset_insert(npf_tableset_t *ts, npf_table_t *t)
    170       1.1   rmind {
    171       1.1   rmind 	const u_int tid = t->t_id;
    172       1.1   rmind 	int error;
    173       1.1   rmind 
    174      1.19   rmind 	KASSERT((u_int)tid < ts->ts_nitems);
    175       1.1   rmind 
    176      1.19   rmind 	if (ts->ts_map[tid] == NULL) {
    177      1.17   rmind 		atomic_inc_uint(&t->t_refcnt);
    178      1.19   rmind 		ts->ts_map[tid] = t;
    179       1.1   rmind 		error = 0;
    180       1.1   rmind 	} else {
    181       1.1   rmind 		error = EEXIST;
    182       1.1   rmind 	}
    183       1.1   rmind 	return error;
    184       1.1   rmind }
    185       1.1   rmind 
    186  1.22.4.2   skrll npf_table_t *
    187  1.22.4.2   skrll npf_tableset_swap(npf_tableset_t *ts, npf_table_t *newt)
    188  1.22.4.2   skrll {
    189  1.22.4.2   skrll 	const u_int tid = newt->t_id;
    190  1.22.4.2   skrll 	npf_table_t *oldt = ts->ts_map[tid];
    191  1.22.4.2   skrll 
    192  1.22.4.2   skrll 	KASSERT(tid < ts->ts_nitems);
    193  1.22.4.2   skrll 	KASSERT(oldt->t_id == newt->t_id);
    194  1.22.4.2   skrll 
    195  1.22.4.2   skrll 	newt->t_refcnt = oldt->t_refcnt;
    196  1.22.4.2   skrll 	oldt->t_refcnt = 0;
    197  1.22.4.2   skrll 
    198  1.22.4.2   skrll 	return atomic_swap_ptr(&ts->ts_map[tid], newt);
    199  1.22.4.2   skrll }
    200  1.22.4.2   skrll 
    201       1.1   rmind /*
    202      1.19   rmind  * npf_tableset_getbyname: look for a table in the set given the name.
    203      1.19   rmind  */
    204      1.19   rmind npf_table_t *
    205      1.19   rmind npf_tableset_getbyname(npf_tableset_t *ts, const char *name)
    206      1.19   rmind {
    207      1.19   rmind 	npf_table_t *t;
    208      1.19   rmind 
    209      1.19   rmind 	for (u_int tid = 0; tid < ts->ts_nitems; tid++) {
    210      1.19   rmind 		if ((t = ts->ts_map[tid]) == NULL)
    211      1.19   rmind 			continue;
    212      1.19   rmind 		if (strcmp(name, t->t_name) == 0)
    213      1.19   rmind 			return t;
    214      1.19   rmind 	}
    215      1.19   rmind 	return NULL;
    216      1.19   rmind }
    217      1.19   rmind 
    218      1.19   rmind npf_table_t *
    219      1.19   rmind npf_tableset_getbyid(npf_tableset_t *ts, u_int tid)
    220      1.19   rmind {
    221      1.19   rmind 	if (__predict_true(tid < ts->ts_nitems)) {
    222      1.19   rmind 		return ts->ts_map[tid];
    223      1.19   rmind 	}
    224      1.19   rmind 	return NULL;
    225      1.19   rmind }
    226      1.19   rmind 
    227      1.19   rmind /*
    228      1.15   rmind  * npf_tableset_reload: iterate all tables and if the new table is of the
    229      1.15   rmind  * same type and has no items, then we preserve the old one and its entries.
    230      1.15   rmind  *
    231      1.15   rmind  * => The caller is responsible for providing synchronisation.
    232      1.15   rmind  */
    233      1.15   rmind void
    234  1.22.4.2   skrll npf_tableset_reload(npf_t *npf, npf_tableset_t *nts, npf_tableset_t *ots)
    235      1.15   rmind {
    236      1.19   rmind 	for (u_int tid = 0; tid < nts->ts_nitems; tid++) {
    237      1.19   rmind 		npf_table_t *t, *ot;
    238      1.19   rmind 
    239      1.19   rmind 		if ((t = nts->ts_map[tid]) == NULL) {
    240      1.19   rmind 			continue;
    241      1.19   rmind 		}
    242      1.15   rmind 
    243      1.19   rmind 		/* If our table has entries, just load it. */
    244      1.19   rmind 		if (t->t_nitems) {
    245      1.15   rmind 			continue;
    246      1.15   rmind 		}
    247      1.19   rmind 
    248      1.19   rmind 		/* Look for a currently existing table with such name. */
    249      1.19   rmind 		ot = npf_tableset_getbyname(ots, t->t_name);
    250      1.19   rmind 		if (ot == NULL) {
    251      1.19   rmind 			/* Not found: we have a new table. */
    252      1.19   rmind 			continue;
    253      1.19   rmind 		}
    254      1.19   rmind 
    255      1.19   rmind 		/* Found.  Did the type change? */
    256      1.19   rmind 		if (t->t_type != ot->t_type) {
    257      1.19   rmind 			/* Yes, load the new. */
    258      1.15   rmind 			continue;
    259      1.15   rmind 		}
    260      1.17   rmind 
    261      1.17   rmind 		/*
    262      1.19   rmind 		 * Preserve the current table.  Acquire a reference since
    263      1.19   rmind 		 * we are keeping it in the old table set.  Update its ID.
    264      1.17   rmind 		 */
    265      1.17   rmind 		atomic_inc_uint(&ot->t_refcnt);
    266      1.19   rmind 		nts->ts_map[tid] = ot;
    267      1.19   rmind 
    268  1.22.4.2   skrll 		KASSERT(npf_config_locked_p(npf));
    269      1.19   rmind 		ot->t_id = tid;
    270      1.17   rmind 
    271      1.21   rmind 		/* Destroy the new table (we hold the only reference). */
    272      1.17   rmind 		t->t_refcnt--;
    273      1.15   rmind 		npf_table_destroy(t);
    274      1.15   rmind 	}
    275      1.15   rmind }
    276      1.15   rmind 
    277      1.22   rmind int
    278  1.22.4.2   skrll npf_tableset_export(npf_t *npf, const npf_tableset_t *ts, prop_array_t tables)
    279      1.20   rmind {
    280      1.20   rmind 	const npf_table_t *t;
    281      1.20   rmind 
    282  1.22.4.2   skrll 	KASSERT(npf_config_locked_p(npf));
    283      1.20   rmind 
    284      1.20   rmind 	for (u_int tid = 0; tid < ts->ts_nitems; tid++) {
    285      1.20   rmind 		if ((t = ts->ts_map[tid]) == NULL) {
    286      1.20   rmind 			continue;
    287      1.20   rmind 		}
    288      1.20   rmind 		prop_dictionary_t tdict = prop_dictionary_create();
    289      1.20   rmind 		prop_dictionary_set_cstring(tdict, "name", t->t_name);
    290      1.20   rmind 		prop_dictionary_set_uint32(tdict, "type", t->t_type);
    291      1.20   rmind 		prop_dictionary_set_uint32(tdict, "id", tid);
    292      1.20   rmind 
    293      1.20   rmind 		prop_array_add(tables, tdict);
    294      1.20   rmind 		prop_object_release(tdict);
    295      1.20   rmind 	}
    296      1.22   rmind 	return 0;
    297      1.20   rmind }
    298      1.20   rmind 
    299      1.15   rmind /*
    300      1.13   rmind  * Few helper routines.
    301       1.1   rmind  */
    302       1.1   rmind 
    303      1.13   rmind static npf_tblent_t *
    304      1.13   rmind table_hash_lookup(const npf_table_t *t, const npf_addr_t *addr,
    305      1.13   rmind     const int alen, struct npf_hashl **rhtbl)
    306       1.1   rmind {
    307      1.13   rmind 	const uint32_t hidx = hash32_buf(addr, alen, HASH32_BUF_INIT);
    308      1.13   rmind 	struct npf_hashl *htbl = &t->t_hashl[hidx & t->t_hashmask];
    309      1.13   rmind 	npf_tblent_t *ent;
    310       1.1   rmind 
    311      1.13   rmind 	/*
    312      1.13   rmind 	 * Lookup the hash table and check for duplicates.
    313      1.13   rmind 	 * Note: mask is ignored for the hash storage.
    314      1.13   rmind 	 */
    315  1.22.4.2   skrll 	LIST_FOREACH(ent, htbl, te_listent) {
    316      1.13   rmind 		if (ent->te_alen != alen) {
    317      1.13   rmind 			continue;
    318      1.13   rmind 		}
    319      1.13   rmind 		if (memcmp(&ent->te_addr, addr, alen) == 0) {
    320      1.13   rmind 			break;
    321      1.13   rmind 		}
    322      1.13   rmind 	}
    323      1.13   rmind 	*rhtbl = htbl;
    324      1.13   rmind 	return ent;
    325       1.1   rmind }
    326       1.1   rmind 
    327      1.13   rmind static void
    328  1.22.4.2   skrll table_hash_flush(npf_table_t *t)
    329      1.18   rmind {
    330      1.18   rmind 	for (unsigned n = 0; n <= t->t_hashmask; n++) {
    331      1.18   rmind 		npf_tblent_t *ent;
    332      1.18   rmind 
    333      1.18   rmind 		while ((ent = LIST_FIRST(&t->t_hashl[n])) != NULL) {
    334  1.22.4.2   skrll 			LIST_REMOVE(ent, te_listent);
    335      1.18   rmind 			pool_cache_put(tblent_cache, ent);
    336      1.18   rmind 		}
    337      1.18   rmind 	}
    338      1.18   rmind }
    339      1.18   rmind 
    340      1.18   rmind static void
    341  1.22.4.2   skrll table_tree_flush(npf_table_t *t)
    342       1.1   rmind {
    343      1.13   rmind 	npf_tblent_t *ent;
    344       1.1   rmind 
    345  1.22.4.2   skrll 	while ((ent = LIST_FIRST(&t->t_list)) != NULL) {
    346  1.22.4.2   skrll 		LIST_REMOVE(ent, te_listent);
    347      1.13   rmind 		pool_cache_put(tblent_cache, ent);
    348      1.13   rmind 	}
    349  1.22.4.2   skrll 	lpm_clear(t->t_lpm, NULL, NULL);
    350       1.1   rmind }
    351       1.1   rmind 
    352       1.1   rmind /*
    353       1.1   rmind  * npf_table_create: create table with a specified ID.
    354       1.1   rmind  */
    355       1.1   rmind npf_table_t *
    356      1.21   rmind npf_table_create(const char *name, u_int tid, int type,
    357      1.21   rmind     void *blob, size_t size)
    358       1.1   rmind {
    359       1.1   rmind 	npf_table_t *t;
    360       1.1   rmind 
    361      1.19   rmind 	t = kmem_zalloc(sizeof(npf_table_t), KM_SLEEP);
    362      1.19   rmind 	strlcpy(t->t_name, name, NPF_TABLE_MAXNAMELEN);
    363       1.1   rmind 
    364       1.1   rmind 	switch (type) {
    365       1.9   rmind 	case NPF_TABLE_TREE:
    366  1.22.4.2   skrll 		if ((t->t_lpm = lpm_create()) == NULL) {
    367  1.22.4.2   skrll 			goto out;
    368  1.22.4.2   skrll 		}
    369  1.22.4.2   skrll 		LIST_INIT(&t->t_list);
    370       1.1   rmind 		break;
    371       1.1   rmind 	case NPF_TABLE_HASH:
    372  1.22.4.2   skrll 		size = MIN(size, 128);
    373  1.22.4.2   skrll 		t->t_hashl = hashinit(size, HASH_LIST, true, &t->t_hashmask);
    374       1.1   rmind 		if (t->t_hashl == NULL) {
    375  1.22.4.2   skrll 			goto out;
    376       1.1   rmind 		}
    377       1.1   rmind 		break;
    378      1.21   rmind 	case NPF_TABLE_CDB:
    379      1.21   rmind 		t->t_blob = blob;
    380      1.21   rmind 		t->t_bsize = size;
    381      1.21   rmind 		t->t_cdb = cdbr_open_mem(blob, size, CDBR_DEFAULT, NULL, NULL);
    382      1.21   rmind 		if (t->t_cdb == NULL) {
    383      1.21   rmind 			free(blob, M_TEMP);
    384  1.22.4.2   skrll 			goto out;
    385      1.21   rmind 		}
    386      1.21   rmind 		t->t_nitems = cdbr_entries(t->t_cdb);
    387      1.21   rmind 		break;
    388       1.1   rmind 	default:
    389       1.1   rmind 		KASSERT(false);
    390       1.1   rmind 	}
    391       1.1   rmind 	rw_init(&t->t_lock);
    392       1.1   rmind 	t->t_type = type;
    393       1.1   rmind 	t->t_id = tid;
    394       1.1   rmind 	return t;
    395  1.22.4.2   skrll out:
    396  1.22.4.2   skrll 	kmem_free(t, sizeof(npf_table_t));
    397  1.22.4.2   skrll 	return NULL;
    398       1.1   rmind }
    399       1.1   rmind 
    400       1.1   rmind /*
    401       1.1   rmind  * npf_table_destroy: free all table entries and table itself.
    402       1.1   rmind  */
    403       1.1   rmind void
    404       1.1   rmind npf_table_destroy(npf_table_t *t)
    405       1.1   rmind {
    406      1.17   rmind 	KASSERT(t->t_refcnt == 0);
    407       1.1   rmind 
    408       1.1   rmind 	switch (t->t_type) {
    409      1.15   rmind 	case NPF_TABLE_HASH:
    410  1.22.4.2   skrll 		table_hash_flush(t);
    411       1.1   rmind 		hashdone(t->t_hashl, HASH_LIST, t->t_hashmask);
    412       1.1   rmind 		break;
    413      1.15   rmind 	case NPF_TABLE_TREE:
    414  1.22.4.2   skrll 		table_tree_flush(t);
    415  1.22.4.2   skrll 		lpm_destroy(t->t_lpm);
    416       1.1   rmind 		break;
    417      1.21   rmind 	case NPF_TABLE_CDB:
    418      1.21   rmind 		cdbr_close(t->t_cdb);
    419      1.21   rmind 		free(t->t_blob, M_TEMP);
    420      1.21   rmind 		break;
    421       1.1   rmind 	default:
    422       1.1   rmind 		KASSERT(false);
    423       1.1   rmind 	}
    424       1.1   rmind 	rw_destroy(&t->t_lock);
    425       1.1   rmind 	kmem_free(t, sizeof(npf_table_t));
    426       1.1   rmind }
    427       1.1   rmind 
    428  1.22.4.2   skrll u_int
    429  1.22.4.2   skrll npf_table_getid(npf_table_t *t)
    430  1.22.4.2   skrll {
    431  1.22.4.2   skrll 	return t->t_id;
    432  1.22.4.2   skrll }
    433  1.22.4.2   skrll 
    434       1.1   rmind /*
    435      1.19   rmind  * npf_table_check: validate the name, ID and type.
    436      1.13   rmind  */
    437       1.1   rmind int
    438      1.19   rmind npf_table_check(npf_tableset_t *ts, const char *name, u_int tid, int type)
    439       1.1   rmind {
    440      1.19   rmind 	if ((u_int)tid >= ts->ts_nitems) {
    441       1.1   rmind 		return EINVAL;
    442       1.1   rmind 	}
    443      1.19   rmind 	if (ts->ts_map[tid] != NULL) {
    444       1.1   rmind 		return EEXIST;
    445       1.1   rmind 	}
    446      1.21   rmind 	switch (type) {
    447      1.21   rmind 	case NPF_TABLE_TREE:
    448      1.21   rmind 	case NPF_TABLE_HASH:
    449      1.21   rmind 	case NPF_TABLE_CDB:
    450      1.21   rmind 		break;
    451      1.21   rmind 	default:
    452       1.1   rmind 		return EINVAL;
    453       1.1   rmind 	}
    454      1.19   rmind 	if (strlen(name) >= NPF_TABLE_MAXNAMELEN) {
    455      1.19   rmind 		return ENAMETOOLONG;
    456      1.19   rmind 	}
    457      1.19   rmind 	if (npf_tableset_getbyname(ts, name)) {
    458      1.20   rmind 		return EEXIST;
    459      1.19   rmind 	}
    460       1.1   rmind 	return 0;
    461       1.1   rmind }
    462       1.1   rmind 
    463      1.13   rmind static int
    464      1.15   rmind table_cidr_check(const u_int aidx, const npf_addr_t *addr,
    465      1.13   rmind     const npf_netmask_t mask)
    466      1.13   rmind {
    467      1.19   rmind 	if (aidx > 1) {
    468      1.13   rmind 		return EINVAL;
    469      1.13   rmind 	}
    470      1.19   rmind 	if (mask > NPF_MAX_NETMASK && mask != NPF_NO_NETMASK) {
    471      1.13   rmind 		return EINVAL;
    472      1.13   rmind 	}
    473      1.13   rmind 
    474      1.13   rmind 	/*
    475      1.13   rmind 	 * For IPv4 (aidx = 0) - 32 and for IPv6 (aidx = 1) - 128.
    476      1.13   rmind 	 * If it is a host - shall use NPF_NO_NETMASK.
    477      1.13   rmind 	 */
    478  1.22.4.1   skrll 	if (mask > (aidx ? 128 : 32) && mask != NPF_NO_NETMASK) {
    479      1.13   rmind 		return EINVAL;
    480      1.13   rmind 	}
    481      1.13   rmind 	return 0;
    482      1.13   rmind }
    483      1.13   rmind 
    484       1.1   rmind /*
    485      1.13   rmind  * npf_table_insert: add an IP CIDR entry into the table.
    486       1.1   rmind  */
    487       1.1   rmind int
    488      1.19   rmind npf_table_insert(npf_table_t *t, const int alen,
    489       1.6  zoltan     const npf_addr_t *addr, const npf_netmask_t mask)
    490       1.1   rmind {
    491      1.13   rmind 	const u_int aidx = NPF_ADDRLEN2TREE(alen);
    492      1.13   rmind 	npf_tblent_t *ent;
    493      1.13   rmind 	int error;
    494       1.1   rmind 
    495      1.15   rmind 	error = table_cidr_check(aidx, addr, mask);
    496      1.13   rmind 	if (error) {
    497      1.13   rmind 		return error;
    498       1.8   rmind 	}
    499      1.12   rmind 	ent = pool_cache_get(tblent_cache, PR_WAITOK);
    500      1.13   rmind 	memcpy(&ent->te_addr, addr, alen);
    501      1.13   rmind 	ent->te_alen = alen;
    502       1.1   rmind 
    503      1.13   rmind 	/*
    504      1.13   rmind 	 * Insert the entry.  Return an error on duplicate.
    505      1.13   rmind 	 */
    506      1.15   rmind 	rw_enter(&t->t_lock, RW_WRITER);
    507       1.1   rmind 	switch (t->t_type) {
    508      1.13   rmind 	case NPF_TABLE_HASH: {
    509      1.13   rmind 		struct npf_hashl *htbl;
    510      1.13   rmind 
    511      1.13   rmind 		/*
    512      1.13   rmind 		 * Hash tables by the concept support only IPs.
    513      1.13   rmind 		 */
    514      1.13   rmind 		if (mask != NPF_NO_NETMASK) {
    515      1.13   rmind 			error = EINVAL;
    516      1.13   rmind 			break;
    517       1.1   rmind 		}
    518      1.13   rmind 		if (!table_hash_lookup(t, addr, alen, &htbl)) {
    519  1.22.4.2   skrll 			LIST_INSERT_HEAD(htbl, ent, te_listent);
    520      1.15   rmind 			t->t_nitems++;
    521       1.1   rmind 		} else {
    522       1.1   rmind 			error = EEXIST;
    523       1.1   rmind 		}
    524       1.1   rmind 		break;
    525      1.13   rmind 	}
    526      1.13   rmind 	case NPF_TABLE_TREE: {
    527  1.22.4.2   skrll 		const unsigned preflen =
    528  1.22.4.2   skrll 		    (mask == NPF_NO_NETMASK) ? (alen * 8) : mask;
    529  1.22.4.2   skrll 		if (lpm_lookup(t->t_lpm, addr, alen) == NULL &&
    530  1.22.4.2   skrll 		    lpm_insert(t->t_lpm, addr, alen, preflen, ent) == 0) {
    531  1.22.4.2   skrll 			LIST_INSERT_HEAD(&t->t_list, ent, te_listent);
    532  1.22.4.2   skrll 			ent->te_preflen = preflen;
    533      1.15   rmind 			t->t_nitems++;
    534      1.15   rmind 			error = 0;
    535      1.13   rmind 		} else {
    536      1.15   rmind 			error = EEXIST;
    537       1.1   rmind 		}
    538       1.1   rmind 		break;
    539      1.13   rmind 	}
    540      1.21   rmind 	case NPF_TABLE_CDB:
    541      1.21   rmind 		error = EINVAL;
    542      1.21   rmind 		break;
    543       1.1   rmind 	default:
    544       1.1   rmind 		KASSERT(false);
    545       1.1   rmind 	}
    546      1.15   rmind 	rw_exit(&t->t_lock);
    547       1.1   rmind 
    548       1.8   rmind 	if (error) {
    549      1.12   rmind 		pool_cache_put(tblent_cache, ent);
    550       1.1   rmind 	}
    551       1.1   rmind 	return error;
    552       1.1   rmind }
    553       1.1   rmind 
    554       1.1   rmind /*
    555      1.13   rmind  * npf_table_remove: remove the IP CIDR entry from the table.
    556       1.1   rmind  */
    557       1.1   rmind int
    558      1.19   rmind npf_table_remove(npf_table_t *t, const int alen,
    559       1.6  zoltan     const npf_addr_t *addr, const npf_netmask_t mask)
    560       1.1   rmind {
    561      1.13   rmind 	const u_int aidx = NPF_ADDRLEN2TREE(alen);
    562      1.21   rmind 	npf_tblent_t *ent = NULL;
    563      1.21   rmind 	int error = ENOENT;
    564       1.1   rmind 
    565      1.15   rmind 	error = table_cidr_check(aidx, addr, mask);
    566      1.13   rmind 	if (error) {
    567      1.13   rmind 		return error;
    568       1.8   rmind 	}
    569      1.15   rmind 
    570      1.15   rmind 	rw_enter(&t->t_lock, RW_WRITER);
    571      1.13   rmind 	switch (t->t_type) {
    572      1.13   rmind 	case NPF_TABLE_HASH: {
    573      1.13   rmind 		struct npf_hashl *htbl;
    574       1.8   rmind 
    575      1.13   rmind 		ent = table_hash_lookup(t, addr, alen, &htbl);
    576      1.12   rmind 		if (__predict_true(ent != NULL)) {
    577  1.22.4.2   skrll 			LIST_REMOVE(ent, te_listent);
    578      1.15   rmind 			t->t_nitems--;
    579       1.1   rmind 		}
    580       1.1   rmind 		break;
    581      1.13   rmind 	}
    582      1.13   rmind 	case NPF_TABLE_TREE: {
    583  1.22.4.2   skrll 		ent = lpm_lookup(t->t_lpm, addr, alen);
    584      1.12   rmind 		if (__predict_true(ent != NULL)) {
    585  1.22.4.2   skrll 			LIST_REMOVE(ent, te_listent);
    586  1.22.4.2   skrll 			lpm_remove(t->t_lpm, &ent->te_addr,
    587  1.22.4.2   skrll 			    ent->te_alen, ent->te_preflen);
    588      1.15   rmind 			t->t_nitems--;
    589       1.1   rmind 		}
    590       1.1   rmind 		break;
    591      1.13   rmind 	}
    592      1.21   rmind 	case NPF_TABLE_CDB:
    593      1.21   rmind 		error = EINVAL;
    594      1.21   rmind 		break;
    595       1.1   rmind 	default:
    596       1.1   rmind 		KASSERT(false);
    597      1.13   rmind 		ent = NULL;
    598       1.1   rmind 	}
    599      1.15   rmind 	rw_exit(&t->t_lock);
    600       1.1   rmind 
    601      1.21   rmind 	if (ent) {
    602      1.21   rmind 		pool_cache_put(tblent_cache, ent);
    603       1.1   rmind 	}
    604      1.21   rmind 	return error;
    605       1.1   rmind }
    606       1.1   rmind 
    607       1.1   rmind /*
    608      1.13   rmind  * npf_table_lookup: find the table according to ID, lookup and match
    609      1.13   rmind  * the contents with the specified IP address.
    610       1.1   rmind  */
    611       1.1   rmind int
    612      1.19   rmind npf_table_lookup(npf_table_t *t, const int alen, const npf_addr_t *addr)
    613       1.1   rmind {
    614      1.13   rmind 	const u_int aidx = NPF_ADDRLEN2TREE(alen);
    615      1.21   rmind 	struct npf_hashl *htbl;
    616      1.21   rmind 	const void *data;
    617      1.21   rmind 	size_t dlen;
    618      1.21   rmind 	bool found;
    619       1.1   rmind 
    620      1.13   rmind 	if (__predict_false(aidx > 1)) {
    621      1.13   rmind 		return EINVAL;
    622      1.13   rmind 	}
    623      1.13   rmind 
    624       1.1   rmind 	switch (t->t_type) {
    625      1.21   rmind 	case NPF_TABLE_HASH:
    626      1.21   rmind 		rw_enter(&t->t_lock, RW_READER);
    627      1.21   rmind 		found = table_hash_lookup(t, addr, alen, &htbl) != NULL;
    628      1.21   rmind 		rw_exit(&t->t_lock);
    629       1.1   rmind 		break;
    630      1.21   rmind 	case NPF_TABLE_TREE:
    631      1.21   rmind 		rw_enter(&t->t_lock, RW_READER);
    632  1.22.4.2   skrll 		found = lpm_lookup(t->t_lpm, addr, alen) != NULL;
    633      1.21   rmind 		rw_exit(&t->t_lock);
    634      1.21   rmind 		break;
    635      1.21   rmind 	case NPF_TABLE_CDB:
    636      1.21   rmind 		if (cdbr_find(t->t_cdb, addr, alen, &data, &dlen) == 0) {
    637  1.22.4.2   skrll 			found = dlen == (u_int)alen &&
    638  1.22.4.2   skrll 			    memcmp(addr, data, dlen) == 0;
    639      1.21   rmind 		} else {
    640      1.21   rmind 			found = false;
    641      1.21   rmind 		}
    642       1.1   rmind 		break;
    643       1.1   rmind 	default:
    644       1.1   rmind 		KASSERT(false);
    645      1.21   rmind 		found = false;
    646       1.1   rmind 	}
    647       1.1   rmind 
    648      1.21   rmind 	return found ? 0 : ENOENT;
    649       1.1   rmind }
    650      1.15   rmind 
    651      1.15   rmind static int
    652      1.21   rmind table_ent_copyout(const npf_addr_t *addr, const int alen, npf_netmask_t mask,
    653      1.15   rmind     void *ubuf, size_t len, size_t *off)
    654      1.15   rmind {
    655      1.15   rmind 	void *ubufp = (uint8_t *)ubuf + *off;
    656      1.15   rmind 	npf_ioctl_ent_t uent;
    657      1.15   rmind 
    658      1.15   rmind 	if ((*off += sizeof(npf_ioctl_ent_t)) > len) {
    659      1.15   rmind 		return ENOMEM;
    660      1.15   rmind 	}
    661      1.21   rmind 	uent.alen = alen;
    662      1.21   rmind 	memcpy(&uent.addr, addr, sizeof(npf_addr_t));
    663      1.15   rmind 	uent.mask = mask;
    664      1.15   rmind 
    665      1.15   rmind 	return copyout(&uent, ubufp, sizeof(npf_ioctl_ent_t));
    666      1.15   rmind }
    667      1.15   rmind 
    668      1.15   rmind static int
    669      1.21   rmind table_hash_list(const npf_table_t *t, void *ubuf, size_t len)
    670      1.21   rmind {
    671      1.21   rmind 	size_t off = 0;
    672      1.21   rmind 	int error = 0;
    673      1.21   rmind 
    674      1.21   rmind 	for (unsigned n = 0; n <= t->t_hashmask; n++) {
    675      1.21   rmind 		npf_tblent_t *ent;
    676      1.21   rmind 
    677  1.22.4.2   skrll 		LIST_FOREACH(ent, &t->t_hashl[n], te_listent) {
    678      1.21   rmind 			error = table_ent_copyout(&ent->te_addr,
    679      1.21   rmind 			    ent->te_alen, 0, ubuf, len, &off);
    680      1.21   rmind 			if (error)
    681      1.21   rmind 				break;
    682      1.21   rmind 		}
    683      1.21   rmind 	}
    684      1.21   rmind 	return error;
    685      1.21   rmind }
    686      1.21   rmind 
    687      1.21   rmind static int
    688  1.22.4.2   skrll table_tree_list(const npf_table_t *t, void *ubuf, size_t len)
    689      1.15   rmind {
    690  1.22.4.2   skrll 	npf_tblent_t *ent;
    691  1.22.4.2   skrll 	size_t off = 0;
    692      1.15   rmind 	int error = 0;
    693      1.15   rmind 
    694  1.22.4.2   skrll 	LIST_FOREACH(ent, &t->t_list, te_listent) {
    695  1.22.4.2   skrll 		error = table_ent_copyout(&ent->te_addr,
    696  1.22.4.2   skrll 		    ent->te_alen, 0, ubuf, len, &off);
    697      1.21   rmind 		if (error)
    698      1.21   rmind 			break;
    699      1.21   rmind 	}
    700      1.21   rmind 	return error;
    701      1.21   rmind }
    702      1.21   rmind 
    703      1.21   rmind static int
    704      1.21   rmind table_cdb_list(npf_table_t *t, void *ubuf, size_t len)
    705      1.21   rmind {
    706      1.21   rmind 	size_t off = 0, dlen;
    707      1.21   rmind 	const void *data;
    708      1.21   rmind 	int error = 0;
    709      1.21   rmind 
    710      1.21   rmind 	for (size_t i = 0; i < t->t_nitems; i++) {
    711      1.21   rmind 		if (cdbr_get(t->t_cdb, i, &data, &dlen) != 0) {
    712      1.21   rmind 			return EINVAL;
    713      1.21   rmind 		}
    714      1.21   rmind 		error = table_ent_copyout(data, dlen, 0, ubuf, len, &off);
    715      1.15   rmind 		if (error)
    716      1.15   rmind 			break;
    717      1.15   rmind 	}
    718      1.15   rmind 	return error;
    719      1.15   rmind }
    720      1.15   rmind 
    721      1.15   rmind /*
    722      1.15   rmind  * npf_table_list: copy a list of all table entries into a userspace buffer.
    723      1.15   rmind  */
    724      1.15   rmind int
    725      1.19   rmind npf_table_list(npf_table_t *t, void *ubuf, size_t len)
    726      1.15   rmind {
    727      1.15   rmind 	int error = 0;
    728      1.15   rmind 
    729      1.15   rmind 	rw_enter(&t->t_lock, RW_READER);
    730      1.15   rmind 	switch (t->t_type) {
    731      1.15   rmind 	case NPF_TABLE_HASH:
    732      1.21   rmind 		error = table_hash_list(t, ubuf, len);
    733      1.15   rmind 		break;
    734      1.15   rmind 	case NPF_TABLE_TREE:
    735  1.22.4.2   skrll 		error = table_tree_list(t, ubuf, len);
    736      1.16   rmind 		break;
    737      1.21   rmind 	case NPF_TABLE_CDB:
    738      1.21   rmind 		error = table_cdb_list(t, ubuf, len);
    739      1.21   rmind 		break;
    740      1.15   rmind 	default:
    741      1.15   rmind 		KASSERT(false);
    742      1.15   rmind 	}
    743      1.15   rmind 	rw_exit(&t->t_lock);
    744      1.15   rmind 
    745      1.15   rmind 	return error;
    746      1.15   rmind }
    747      1.18   rmind 
    748      1.18   rmind /*
    749      1.18   rmind  * npf_table_flush: remove all table entries.
    750      1.18   rmind  */
    751      1.18   rmind int
    752      1.19   rmind npf_table_flush(npf_table_t *t)
    753      1.18   rmind {
    754      1.21   rmind 	int error = 0;
    755      1.21   rmind 
    756      1.18   rmind 	rw_enter(&t->t_lock, RW_WRITER);
    757      1.18   rmind 	switch (t->t_type) {
    758      1.18   rmind 	case NPF_TABLE_HASH:
    759  1.22.4.2   skrll 		table_hash_flush(t);
    760      1.18   rmind 		t->t_nitems = 0;
    761      1.18   rmind 		break;
    762      1.18   rmind 	case NPF_TABLE_TREE:
    763  1.22.4.2   skrll 		table_tree_flush(t);
    764      1.18   rmind 		t->t_nitems = 0;
    765      1.18   rmind 		break;
    766      1.21   rmind 	case NPF_TABLE_CDB:
    767      1.21   rmind 		error = EINVAL;
    768      1.21   rmind 		break;
    769      1.18   rmind 	default:
    770      1.18   rmind 		KASSERT(false);
    771      1.18   rmind 	}
    772      1.18   rmind 	rw_exit(&t->t_lock);
    773      1.21   rmind 	return error;
    774      1.18   rmind }
    775