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Thomas Gleixner2874c5f2019-05-27 08:55:01 +02001// SPDX-License-Identifier: GPL-2.0-or-later
Robert Olsson19baf832005-06-21 12:43:18 -07002/*
Robert Olsson19baf832005-06-21 12:43:18 -07003 *
4 * Robert Olsson <robert.olsson@its.uu.se> Uppsala Universitet
5 * & Swedish University of Agricultural Sciences.
6 *
YOSHIFUJI Hideakie905a9e2007-02-09 23:24:47 +09007 * Jens Laas <jens.laas@data.slu.se> Swedish University of
Robert Olsson19baf832005-06-21 12:43:18 -07008 * Agricultural Sciences.
YOSHIFUJI Hideakie905a9e2007-02-09 23:24:47 +09009 *
Robert Olsson19baf832005-06-21 12:43:18 -070010 * Hans Liss <hans.liss@its.uu.se> Uppsala Universitet
11 *
Lucas De Marchi25985ed2011-03-30 22:57:33 -030012 * This work is based on the LPC-trie which is originally described in:
YOSHIFUJI Hideakie905a9e2007-02-09 23:24:47 +090013 *
Robert Olsson19baf832005-06-21 12:43:18 -070014 * An experimental study of compression methods for dynamic tries
15 * Stefan Nilsson and Matti Tikkanen. Algorithmica, 33(1):19-33, 2002.
Justin P. Mattock631dd1a2010-10-18 11:03:14 +020016 * http://www.csc.kth.se/~snilsson/software/dyntrie2/
Robert Olsson19baf832005-06-21 12:43:18 -070017 *
Robert Olsson19baf832005-06-21 12:43:18 -070018 * IP-address lookup using LC-tries. Stefan Nilsson and Gunnar Karlsson
19 * IEEE Journal on Selected Areas in Communications, 17(6):1083-1092, June 1999
20 *
Robert Olsson19baf832005-06-21 12:43:18 -070021 * Code from fib_hash has been reused which includes the following header:
22 *
Robert Olsson19baf832005-06-21 12:43:18 -070023 * INET An implementation of the TCP/IP protocol suite for the LINUX
24 * operating system. INET is implemented using the BSD Socket
25 * interface as the means of communication with the user level.
26 *
27 * IPv4 FIB: lookup engine and maintenance routines.
28 *
Robert Olsson19baf832005-06-21 12:43:18 -070029 * Authors: Alexey Kuznetsov, <kuznet@ms2.inr.ac.ru>
30 *
Robert Olssonfd966252005-12-22 11:25:10 -080031 * Substantial contributions to this work comes from:
32 *
33 * David S. Miller, <davem@davemloft.net>
34 * Stephen Hemminger <shemminger@osdl.org>
35 * Paul E. McKenney <paulmck@us.ibm.com>
36 * Patrick McHardy <kaber@trash.net>
Robert Olsson19baf832005-06-21 12:43:18 -070037 */
38
Jens Låås80b71b82009-08-28 23:57:15 -070039#define VERSION "0.409"
Robert Olsson19baf832005-06-21 12:43:18 -070040
Alexey Dobriyan08009a72018-02-24 21:20:33 +030041#include <linux/cache.h>
Linus Torvalds7c0f6ba2016-12-24 11:46:01 -080042#include <linux/uaccess.h>
Jiri Slaby1977f032007-10-18 23:40:25 -070043#include <linux/bitops.h>
Robert Olsson19baf832005-06-21 12:43:18 -070044#include <linux/types.h>
45#include <linux/kernel.h>
Robert Olsson19baf832005-06-21 12:43:18 -070046#include <linux/mm.h>
47#include <linux/string.h>
48#include <linux/socket.h>
49#include <linux/sockios.h>
50#include <linux/errno.h>
51#include <linux/in.h>
52#include <linux/inet.h>
Stephen Hemmingercd8787a2006-01-03 14:38:34 -080053#include <linux/inetdevice.h>
Robert Olsson19baf832005-06-21 12:43:18 -070054#include <linux/netdevice.h>
55#include <linux/if_arp.h>
56#include <linux/proc_fs.h>
Robert Olsson2373ce12005-08-25 13:01:29 -070057#include <linux/rcupdate.h>
Robert Olsson19baf832005-06-21 12:43:18 -070058#include <linux/skbuff.h>
59#include <linux/netlink.h>
60#include <linux/init.h>
61#include <linux/list.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090062#include <linux/slab.h>
Paul Gortmakerbc3b2d72011-07-15 11:47:34 -040063#include <linux/export.h>
David S. Millerffa915d2015-05-27 00:19:03 -040064#include <linux/vmalloc.h>
Jiri Pirkob90eb752016-09-26 12:52:29 +020065#include <linux/notifier.h>
Eric W. Biederman457c4cb2007-09-12 12:01:34 +020066#include <net/net_namespace.h>
Robert Olsson19baf832005-06-21 12:43:18 -070067#include <net/ip.h>
68#include <net/protocol.h>
69#include <net/route.h>
70#include <net/tcp.h>
71#include <net/sock.h>
72#include <net/ip_fib.h>
Ido Schimmel04b1d4e2017-08-03 13:28:11 +020073#include <net/fib_notifier.h>
David Ahernf6d3c192015-08-28 08:42:09 -070074#include <trace/events/fib.h>
Robert Olsson19baf832005-06-21 12:43:18 -070075#include "fib_lookup.h"
76
Jiri Pirko7c550da2019-10-03 11:49:27 +020077static int call_fib_entry_notifier(struct notifier_block *nb,
Ido Schimmelc3852ef2016-12-03 16:45:07 +010078 enum fib_event_type event_type, u32 dst,
Jiri Pirkob7a59552019-10-03 11:49:30 +020079 int dst_len, struct fib_alias *fa,
80 struct netlink_ext_ack *extack)
Ido Schimmelc3852ef2016-12-03 16:45:07 +010081{
82 struct fib_entry_notifier_info info = {
Jiri Pirkob7a59552019-10-03 11:49:30 +020083 .info.extack = extack,
Ido Schimmelc3852ef2016-12-03 16:45:07 +010084 .dst = dst,
85 .dst_len = dst_len,
David Ahern6eba87c2017-10-18 11:39:13 -070086 .fi = fa->fa_info,
87 .tos = fa->fa_tos,
88 .type = fa->fa_type,
89 .tb_id = fa->tb_id,
Ido Schimmelc3852ef2016-12-03 16:45:07 +010090 };
Jiri Pirko7c550da2019-10-03 11:49:27 +020091 return call_fib4_notifier(nb, event_type, &info.info);
Ido Schimmelc3852ef2016-12-03 16:45:07 +010092}
93
Jiri Pirkob90eb752016-09-26 12:52:29 +020094static int call_fib_entry_notifiers(struct net *net,
95 enum fib_event_type event_type, u32 dst,
David Ahern6c31e5a2017-10-27 17:37:13 -070096 int dst_len, struct fib_alias *fa,
97 struct netlink_ext_ack *extack)
Jiri Pirkob90eb752016-09-26 12:52:29 +020098{
99 struct fib_entry_notifier_info info = {
David Ahern6c31e5a2017-10-27 17:37:13 -0700100 .info.extack = extack,
Jiri Pirkob90eb752016-09-26 12:52:29 +0200101 .dst = dst,
102 .dst_len = dst_len,
David Ahern6eba87c2017-10-18 11:39:13 -0700103 .fi = fa->fa_info,
104 .tos = fa->fa_tos,
105 .type = fa->fa_type,
106 .tb_id = fa->tb_id,
Jiri Pirkob90eb752016-09-26 12:52:29 +0200107 };
Ido Schimmel04b1d4e2017-08-03 13:28:11 +0200108 return call_fib4_notifiers(net, event_type, &info.info);
Jiri Pirkob90eb752016-09-26 12:52:29 +0200109}
110
Robert Olsson06ef9212006-03-20 21:35:01 -0800111#define MAX_STAT_DEPTH 32
Robert Olsson19baf832005-06-21 12:43:18 -0700112
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800113#define KEYLENGTH (8*sizeof(t_key))
114#define KEY_MAX ((t_key)~0)
Robert Olsson19baf832005-06-21 12:43:18 -0700115
Robert Olsson19baf832005-06-21 12:43:18 -0700116typedef unsigned int t_key;
117
Alexander Duyck88bae712015-03-06 09:54:52 -0800118#define IS_TRIE(n) ((n)->pos >= KEYLENGTH)
119#define IS_TNODE(n) ((n)->bits)
120#define IS_LEAF(n) (!(n)->bits)
Robert Olsson2373ce12005-08-25 13:01:29 -0700121
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800122struct key_vector {
Alexander Duyck41b489f2015-03-04 15:02:33 -0800123 t_key key;
124 unsigned char pos; /* 2log(KEYLENGTH) bits needed */
125 unsigned char bits; /* 2log(KEYLENGTH) bits needed */
126 unsigned char slen;
Alexander Duyckadaf9812014-12-31 10:55:47 -0800127 union {
Alexander Duyck41b489f2015-03-04 15:02:33 -0800128 /* This list pointer if valid if (pos | bits) == 0 (LEAF) */
Alexander Duyck79e5ad22015-02-25 15:31:51 -0800129 struct hlist_head leaf;
Alexander Duyck41b489f2015-03-04 15:02:33 -0800130 /* This array is valid if (pos | bits) > 0 (TNODE) */
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800131 struct key_vector __rcu *tnode[0];
Alexander Duyckadaf9812014-12-31 10:55:47 -0800132 };
Robert Olsson19baf832005-06-21 12:43:18 -0700133};
134
Alexander Duyckdc35dbe2015-03-06 09:54:27 -0800135struct tnode {
Alexander Duyck56ca2ad2015-03-06 09:54:33 -0800136 struct rcu_head rcu;
Alexander Duyck6e22d172015-03-06 09:54:39 -0800137 t_key empty_children; /* KEYLENGTH bits needed */
138 t_key full_children; /* KEYLENGTH bits needed */
Alexander Duyckf23e59f2015-03-06 09:54:46 -0800139 struct key_vector __rcu *parent;
Alexander Duyckdc35dbe2015-03-06 09:54:27 -0800140 struct key_vector kv[1];
Alexander Duyck56ca2ad2015-03-06 09:54:33 -0800141#define tn_bits kv[0].bits
Alexander Duyckdc35dbe2015-03-06 09:54:27 -0800142};
143
144#define TNODE_SIZE(n) offsetof(struct tnode, kv[0].tnode[n])
Alexander Duyck41b489f2015-03-04 15:02:33 -0800145#define LEAF_SIZE TNODE_SIZE(1)
146
Robert Olsson19baf832005-06-21 12:43:18 -0700147#ifdef CONFIG_IP_FIB_TRIE_STATS
148struct trie_use_stats {
149 unsigned int gets;
150 unsigned int backtrack;
151 unsigned int semantic_match_passed;
152 unsigned int semantic_match_miss;
153 unsigned int null_node_hit;
Robert Olsson2f368952005-07-05 15:02:40 -0700154 unsigned int resize_node_skipped;
Robert Olsson19baf832005-06-21 12:43:18 -0700155};
156#endif
157
158struct trie_stat {
159 unsigned int totdepth;
160 unsigned int maxdepth;
161 unsigned int tnodes;
162 unsigned int leaves;
163 unsigned int nullpointers;
Stephen Hemminger93672292008-01-22 21:54:05 -0800164 unsigned int prefixes;
Robert Olsson06ef9212006-03-20 21:35:01 -0800165 unsigned int nodesizes[MAX_STAT_DEPTH];
Stephen Hemmingerc877efb2005-07-19 14:01:51 -0700166};
Robert Olsson19baf832005-06-21 12:43:18 -0700167
168struct trie {
Alexander Duyck88bae712015-03-06 09:54:52 -0800169 struct key_vector kv[1];
Robert Olsson19baf832005-06-21 12:43:18 -0700170#ifdef CONFIG_IP_FIB_TRIE_STATS
Alexander Duyck8274a972014-12-31 10:55:29 -0800171 struct trie_use_stats __percpu *stats;
Robert Olsson19baf832005-06-21 12:43:18 -0700172#endif
Robert Olsson19baf832005-06-21 12:43:18 -0700173};
174
Alexander Duyck88bae712015-03-06 09:54:52 -0800175static struct key_vector *resize(struct trie *t, struct key_vector *tn);
David Ahern9ab948a2019-03-20 09:18:59 -0700176static unsigned int tnode_free_size;
Jarek Poplawskic3059472009-07-14 08:33:08 +0000177
178/*
David Ahern9ab948a2019-03-20 09:18:59 -0700179 * synchronize_rcu after call_rcu for outstanding dirty memory; it should be
180 * especially useful before resizing the root node with PREEMPT_NONE configs;
181 * the value was obtained experimentally, aiming to avoid visible slowdown.
Jarek Poplawskic3059472009-07-14 08:33:08 +0000182 */
David Ahern9ab948a2019-03-20 09:18:59 -0700183unsigned int sysctl_fib_sync_mem = 512 * 1024;
184unsigned int sysctl_fib_sync_mem_min = 64 * 1024;
185unsigned int sysctl_fib_sync_mem_max = 64 * 1024 * 1024;
Robert Olsson19baf832005-06-21 12:43:18 -0700186
Alexey Dobriyan08009a72018-02-24 21:20:33 +0300187static struct kmem_cache *fn_alias_kmem __ro_after_init;
188static struct kmem_cache *trie_leaf_kmem __ro_after_init;
Robert Olsson19baf832005-06-21 12:43:18 -0700189
Alexander Duyck56ca2ad2015-03-06 09:54:33 -0800190static inline struct tnode *tn_info(struct key_vector *kv)
191{
192 return container_of(kv, struct tnode, kv[0]);
193}
194
Alexander Duyck64c9b6f2014-12-31 10:55:35 -0800195/* caller must hold RTNL */
Alexander Duyckf23e59f2015-03-06 09:54:46 -0800196#define node_parent(tn) rtnl_dereference(tn_info(tn)->parent)
Alexander Duyck754baf8d2015-03-06 09:54:14 -0800197#define get_child(tn, i) rtnl_dereference((tn)->tnode[i])
Eric Dumazet0a5c0472011-03-31 01:51:35 -0700198
Alexander Duyck64c9b6f2014-12-31 10:55:35 -0800199/* caller must hold RCU read lock or RTNL */
Alexander Duyckf23e59f2015-03-06 09:54:46 -0800200#define node_parent_rcu(tn) rcu_dereference_rtnl(tn_info(tn)->parent)
Alexander Duyck754baf8d2015-03-06 09:54:14 -0800201#define get_child_rcu(tn, i) rcu_dereference_rtnl((tn)->tnode[i])
Eric Dumazet0a5c0472011-03-31 01:51:35 -0700202
Alexander Duyck64c9b6f2014-12-31 10:55:35 -0800203/* wrapper for rcu_assign_pointer */
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800204static inline void node_set_parent(struct key_vector *n, struct key_vector *tp)
Stephen Hemminger06801912007-08-10 15:22:13 -0700205{
Alexander Duyckadaf9812014-12-31 10:55:47 -0800206 if (n)
Alexander Duyckf23e59f2015-03-06 09:54:46 -0800207 rcu_assign_pointer(tn_info(n)->parent, tp);
Alexander Duyck64c9b6f2014-12-31 10:55:35 -0800208}
209
Alexander Duyckf23e59f2015-03-06 09:54:46 -0800210#define NODE_INIT_PARENT(n, p) RCU_INIT_POINTER(tn_info(n)->parent, p)
Alexander Duyck64c9b6f2014-12-31 10:55:35 -0800211
212/* This provides us with the number of children in this node, in the case of a
213 * leaf this will return 0 meaning none of the children are accessible.
214 */
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800215static inline unsigned long child_length(const struct key_vector *tn)
Alexander Duyck64c9b6f2014-12-31 10:55:35 -0800216{
217 return (1ul << tn->bits) & ~(1ul);
Stephen Hemminger06801912007-08-10 15:22:13 -0700218}
Robert Olsson2373ce12005-08-25 13:01:29 -0700219
Alexander Duyck88bae712015-03-06 09:54:52 -0800220#define get_cindex(key, kv) (((key) ^ (kv)->key) >> (kv)->pos)
221
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800222static inline unsigned long get_index(t_key key, struct key_vector *kv)
223{
224 unsigned long index = key ^ kv->key;
225
Alexander Duyck88bae712015-03-06 09:54:52 -0800226 if ((BITS_PER_LONG <= KEYLENGTH) && (KEYLENGTH == kv->pos))
227 return 0;
228
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800229 return index >> kv->pos;
230}
231
Alexander Duycke9b44012014-12-31 10:56:12 -0800232/* To understand this stuff, an understanding of keys and all their bits is
233 * necessary. Every node in the trie has a key associated with it, but not
234 * all of the bits in that key are significant.
235 *
236 * Consider a node 'n' and its parent 'tp'.
237 *
238 * If n is a leaf, every bit in its key is significant. Its presence is
239 * necessitated by path compression, since during a tree traversal (when
240 * searching for a leaf - unless we are doing an insertion) we will completely
241 * ignore all skipped bits we encounter. Thus we need to verify, at the end of
242 * a potentially successful search, that we have indeed been walking the
243 * correct key path.
244 *
245 * Note that we can never "miss" the correct key in the tree if present by
246 * following the wrong path. Path compression ensures that segments of the key
247 * that are the same for all keys with a given prefix are skipped, but the
248 * skipped part *is* identical for each node in the subtrie below the skipped
249 * bit! trie_insert() in this implementation takes care of that.
250 *
251 * if n is an internal node - a 'tnode' here, the various parts of its key
252 * have many different meanings.
253 *
254 * Example:
255 * _________________________________________________________________
256 * | i | i | i | i | i | i | i | N | N | N | S | S | S | S | S | C |
257 * -----------------------------------------------------------------
258 * 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16
259 *
260 * _________________________________________________________________
261 * | C | C | C | u | u | u | u | u | u | u | u | u | u | u | u | u |
262 * -----------------------------------------------------------------
263 * 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0
264 *
265 * tp->pos = 22
266 * tp->bits = 3
267 * n->pos = 13
268 * n->bits = 4
269 *
270 * First, let's just ignore the bits that come before the parent tp, that is
271 * the bits from (tp->pos + tp->bits) to 31. They are *known* but at this
272 * point we do not use them for anything.
273 *
274 * The bits from (tp->pos) to (tp->pos + tp->bits - 1) - "N", above - are the
275 * index into the parent's child array. That is, they will be used to find
276 * 'n' among tp's children.
277 *
Xunlei Pang98a384e2016-08-18 12:33:28 +0800278 * The bits from (n->pos + n->bits) to (tp->pos - 1) - "S" - are skipped bits
Alexander Duycke9b44012014-12-31 10:56:12 -0800279 * for the node n.
280 *
281 * All the bits we have seen so far are significant to the node n. The rest
282 * of the bits are really not needed or indeed known in n->key.
283 *
284 * The bits from (n->pos) to (n->pos + n->bits - 1) - "C" - are the index into
285 * n's child array, and will of course be different for each child.
286 *
Xunlei Pang98a384e2016-08-18 12:33:28 +0800287 * The rest of the bits, from 0 to (n->pos -1) - "u" - are completely unknown
Alexander Duycke9b44012014-12-31 10:56:12 -0800288 * at this point.
289 */
Robert Olsson19baf832005-06-21 12:43:18 -0700290
Denis V. Lunevf5026fa2007-12-13 09:47:57 -0800291static const int halve_threshold = 25;
292static const int inflate_threshold = 50;
Jarek Poplawski345aa032009-07-07 19:39:16 -0700293static const int halve_threshold_root = 15;
Jens Låås80b71b82009-08-28 23:57:15 -0700294static const int inflate_threshold_root = 30;
Robert Olsson2373ce12005-08-25 13:01:29 -0700295
296static void __alias_free_mem(struct rcu_head *head)
297{
298 struct fib_alias *fa = container_of(head, struct fib_alias, rcu);
299 kmem_cache_free(fn_alias_kmem, fa);
300}
301
302static inline void alias_free_mem_rcu(struct fib_alias *fa)
303{
304 call_rcu(&fa->rcu, __alias_free_mem);
305}
306
Alexander Duyck37fd30f2014-12-31 10:55:41 -0800307#define TNODE_KMALLOC_MAX \
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800308 ilog2((PAGE_SIZE - TNODE_SIZE(0)) / sizeof(struct key_vector *))
Alexander Duyck1de3d872015-03-04 15:04:46 -0800309#define TNODE_VMALLOC_MAX \
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800310 ilog2((SIZE_MAX - TNODE_SIZE(0)) / sizeof(struct key_vector *))
Alexander Duyck37fd30f2014-12-31 10:55:41 -0800311
312static void __node_free_rcu(struct rcu_head *head)
Robert Olsson2373ce12005-08-25 13:01:29 -0700313{
Alexander Duyck56ca2ad2015-03-06 09:54:33 -0800314 struct tnode *n = container_of(head, struct tnode, rcu);
Alexander Duyck37fd30f2014-12-31 10:55:41 -0800315
Alexander Duyck56ca2ad2015-03-06 09:54:33 -0800316 if (!n->tn_bits)
Alexander Duyck37fd30f2014-12-31 10:55:41 -0800317 kmem_cache_free(trie_leaf_kmem, n);
Alexander Duyck37fd30f2014-12-31 10:55:41 -0800318 else
Tetsuo Handa1d5cfdb2016-01-22 15:11:02 -0800319 kvfree(n);
Robert Olsson2373ce12005-08-25 13:01:29 -0700320}
321
Alexander Duyck56ca2ad2015-03-06 09:54:33 -0800322#define node_free(n) call_rcu(&tn_info(n)->rcu, __node_free_rcu)
Stephen Hemminger387a5482008-04-10 03:47:34 -0700323
Alexander Duyckdc35dbe2015-03-06 09:54:27 -0800324static struct tnode *tnode_alloc(int bits)
Robert Olsson2373ce12005-08-25 13:01:29 -0700325{
Alexander Duyck1de3d872015-03-04 15:04:46 -0800326 size_t size;
327
328 /* verify bits is within bounds */
329 if (bits > TNODE_VMALLOC_MAX)
330 return NULL;
331
332 /* determine size and verify it is non-zero and didn't overflow */
333 size = TNODE_SIZE(1ul << bits);
334
Robert Olsson2373ce12005-08-25 13:01:29 -0700335 if (size <= PAGE_SIZE)
Eric Dumazet8d9654442008-01-13 22:31:44 -0800336 return kzalloc(size, GFP_KERNEL);
Stephen Hemminger15be75c2008-04-10 02:56:38 -0700337 else
Eric Dumazet7a1c8e52010-11-20 07:46:35 +0000338 return vzalloc(size);
Stephen Hemminger15be75c2008-04-10 02:56:38 -0700339}
Robert Olsson2373ce12005-08-25 13:01:29 -0700340
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800341static inline void empty_child_inc(struct key_vector *n)
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800342{
Matthias Kaehlcke25cec752019-06-18 14:14:40 -0700343 tn_info(n)->empty_children++;
344
345 if (!tn_info(n)->empty_children)
346 tn_info(n)->full_children++;
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800347}
348
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800349static inline void empty_child_dec(struct key_vector *n)
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800350{
Matthias Kaehlcke25cec752019-06-18 14:14:40 -0700351 if (!tn_info(n)->empty_children)
352 tn_info(n)->full_children--;
353
354 tn_info(n)->empty_children--;
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800355}
356
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800357static struct key_vector *leaf_new(t_key key, struct fib_alias *fa)
Robert Olsson19baf832005-06-21 12:43:18 -0700358{
Firo Yangf38b24c2015-06-08 11:54:51 +0800359 struct key_vector *l;
360 struct tnode *kv;
Alexander Duyck64c9b6f2014-12-31 10:55:35 -0800361
Firo Yangf38b24c2015-06-08 11:54:51 +0800362 kv = kmem_cache_alloc(trie_leaf_kmem, GFP_KERNEL);
Alexander Duyckdc35dbe2015-03-06 09:54:27 -0800363 if (!kv)
364 return NULL;
365
366 /* initialize key vector */
Firo Yangf38b24c2015-06-08 11:54:51 +0800367 l = kv->kv;
Alexander Duyckdc35dbe2015-03-06 09:54:27 -0800368 l->key = key;
369 l->pos = 0;
370 l->bits = 0;
371 l->slen = fa->fa_slen;
372
373 /* link leaf to fib alias */
374 INIT_HLIST_HEAD(&l->leaf);
375 hlist_add_head(&fa->fa_list, &l->leaf);
376
Robert Olsson19baf832005-06-21 12:43:18 -0700377 return l;
378}
379
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800380static struct key_vector *tnode_new(t_key key, int pos, int bits)
Robert Olsson19baf832005-06-21 12:43:18 -0700381{
Alexander Duyck64c9b6f2014-12-31 10:55:35 -0800382 unsigned int shift = pos + bits;
Firo Yangf38b24c2015-06-08 11:54:51 +0800383 struct key_vector *tn;
384 struct tnode *tnode;
Alexander Duyck64c9b6f2014-12-31 10:55:35 -0800385
386 /* verify bits and pos their msb bits clear and values are valid */
387 BUG_ON(!bits || (shift > KEYLENGTH));
Robert Olsson19baf832005-06-21 12:43:18 -0700388
Firo Yangf38b24c2015-06-08 11:54:51 +0800389 tnode = tnode_alloc(bits);
Alexander Duyckdc35dbe2015-03-06 09:54:27 -0800390 if (!tnode)
391 return NULL;
392
Firo Yangf38b24c2015-06-08 11:54:51 +0800393 pr_debug("AT %p s=%zu %zu\n", tnode, TNODE_SIZE(0),
394 sizeof(struct key_vector *) << bits);
395
Alexander Duyckdc35dbe2015-03-06 09:54:27 -0800396 if (bits == KEYLENGTH)
Alexander Duyck6e22d172015-03-06 09:54:39 -0800397 tnode->full_children = 1;
Alexander Duyckdc35dbe2015-03-06 09:54:27 -0800398 else
Alexander Duyck6e22d172015-03-06 09:54:39 -0800399 tnode->empty_children = 1ul << bits;
Alexander Duyckdc35dbe2015-03-06 09:54:27 -0800400
Firo Yangf38b24c2015-06-08 11:54:51 +0800401 tn = tnode->kv;
Alexander Duyckdc35dbe2015-03-06 09:54:27 -0800402 tn->key = (shift < KEYLENGTH) ? (key >> shift) << shift : 0;
403 tn->pos = pos;
404 tn->bits = bits;
405 tn->slen = pos;
406
Robert Olsson19baf832005-06-21 12:43:18 -0700407 return tn;
408}
409
Alexander Duycke9b44012014-12-31 10:56:12 -0800410/* Check whether a tnode 'n' is "full", i.e. it is an internal node
Robert Olsson19baf832005-06-21 12:43:18 -0700411 * and no bits are skipped. See discussion in dyntree paper p. 6
412 */
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800413static inline int tnode_full(struct key_vector *tn, struct key_vector *n)
Robert Olsson19baf832005-06-21 12:43:18 -0700414{
Alexander Duycke9b44012014-12-31 10:56:12 -0800415 return n && ((n->pos + n->bits) == tn->pos) && IS_TNODE(n);
Robert Olsson19baf832005-06-21 12:43:18 -0700416}
417
Alexander Duyckff181ed2014-12-31 10:56:43 -0800418/* Add a child at position i overwriting the old value.
419 * Update the value of full_children and empty_children.
420 */
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800421static void put_child(struct key_vector *tn, unsigned long i,
422 struct key_vector *n)
Robert Olsson19baf832005-06-21 12:43:18 -0700423{
Alexander Duyck754baf8d2015-03-06 09:54:14 -0800424 struct key_vector *chi = get_child(tn, i);
Alexander Duyckff181ed2014-12-31 10:56:43 -0800425 int isfull, wasfull;
Robert Olsson19baf832005-06-21 12:43:18 -0700426
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800427 BUG_ON(i >= child_length(tn));
Stephen Hemminger0c7770c2005-08-23 21:59:41 -0700428
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800429 /* update emptyChildren, overflow into fullChildren */
Ian Morris00db4122015-04-03 09:17:27 +0100430 if (!n && chi)
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800431 empty_child_inc(tn);
Ian Morris00db4122015-04-03 09:17:27 +0100432 if (n && !chi)
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800433 empty_child_dec(tn);
Stephen Hemmingerc877efb2005-07-19 14:01:51 -0700434
Robert Olsson19baf832005-06-21 12:43:18 -0700435 /* update fullChildren */
Alexander Duyckff181ed2014-12-31 10:56:43 -0800436 wasfull = tnode_full(tn, chi);
Robert Olsson19baf832005-06-21 12:43:18 -0700437 isfull = tnode_full(tn, n);
Alexander Duyckff181ed2014-12-31 10:56:43 -0800438
Stephen Hemmingerc877efb2005-07-19 14:01:51 -0700439 if (wasfull && !isfull)
Alexander Duyck6e22d172015-03-06 09:54:39 -0800440 tn_info(tn)->full_children--;
Stephen Hemmingerc877efb2005-07-19 14:01:51 -0700441 else if (!wasfull && isfull)
Alexander Duyck6e22d172015-03-06 09:54:39 -0800442 tn_info(tn)->full_children++;
Olof Johansson91b9a272005-08-09 20:24:39 -0700443
Alexander Duyck5405afd2014-12-31 10:57:08 -0800444 if (n && (tn->slen < n->slen))
445 tn->slen = n->slen;
446
Alexander Duyck41b489f2015-03-04 15:02:33 -0800447 rcu_assign_pointer(tn->tnode[i], n);
Robert Olsson19baf832005-06-21 12:43:18 -0700448}
449
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800450static void update_children(struct key_vector *tn)
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800451{
452 unsigned long i;
453
454 /* update all of the child parent pointers */
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800455 for (i = child_length(tn); i;) {
Alexander Duyck754baf8d2015-03-06 09:54:14 -0800456 struct key_vector *inode = get_child(tn, --i);
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800457
458 if (!inode)
459 continue;
460
461 /* Either update the children of a tnode that
462 * already belongs to us or update the child
463 * to point to ourselves.
464 */
465 if (node_parent(inode) == tn)
466 update_children(inode);
467 else
468 node_set_parent(inode, tn);
469 }
470}
471
Alexander Duyck88bae712015-03-06 09:54:52 -0800472static inline void put_child_root(struct key_vector *tp, t_key key,
473 struct key_vector *n)
Alexander Duyck836a0122014-12-31 10:56:06 -0800474{
Alexander Duyck88bae712015-03-06 09:54:52 -0800475 if (IS_TRIE(tp))
476 rcu_assign_pointer(tp->tnode[0], n);
Alexander Duyck836a0122014-12-31 10:56:06 -0800477 else
Alexander Duyck88bae712015-03-06 09:54:52 -0800478 put_child(tp, get_index(key, tp), n);
Alexander Duyck836a0122014-12-31 10:56:06 -0800479}
480
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800481static inline void tnode_free_init(struct key_vector *tn)
Eric Dumazet0a5c0472011-03-31 01:51:35 -0700482{
Alexander Duyck56ca2ad2015-03-06 09:54:33 -0800483 tn_info(tn)->rcu.next = NULL;
Alexander Duyckfc86a932014-12-31 10:56:49 -0800484}
Eric Dumazet0a5c0472011-03-31 01:51:35 -0700485
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800486static inline void tnode_free_append(struct key_vector *tn,
487 struct key_vector *n)
Alexander Duyckfc86a932014-12-31 10:56:49 -0800488{
Alexander Duyck56ca2ad2015-03-06 09:54:33 -0800489 tn_info(n)->rcu.next = tn_info(tn)->rcu.next;
490 tn_info(tn)->rcu.next = &tn_info(n)->rcu;
Alexander Duyckfc86a932014-12-31 10:56:49 -0800491}
492
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800493static void tnode_free(struct key_vector *tn)
Alexander Duyckfc86a932014-12-31 10:56:49 -0800494{
Alexander Duyck56ca2ad2015-03-06 09:54:33 -0800495 struct callback_head *head = &tn_info(tn)->rcu;
Alexander Duyckfc86a932014-12-31 10:56:49 -0800496
497 while (head) {
498 head = head->next;
Alexander Duyck41b489f2015-03-04 15:02:33 -0800499 tnode_free_size += TNODE_SIZE(1ul << tn->bits);
Alexander Duyckfc86a932014-12-31 10:56:49 -0800500 node_free(tn);
501
Alexander Duyck56ca2ad2015-03-06 09:54:33 -0800502 tn = container_of(head, struct tnode, rcu)->kv;
Eric Dumazet0a5c0472011-03-31 01:51:35 -0700503 }
Alexander Duyckfc86a932014-12-31 10:56:49 -0800504
David Ahern9ab948a2019-03-20 09:18:59 -0700505 if (tnode_free_size >= sysctl_fib_sync_mem) {
Alexander Duyckfc86a932014-12-31 10:56:49 -0800506 tnode_free_size = 0;
507 synchronize_rcu();
508 }
Eric Dumazet0a5c0472011-03-31 01:51:35 -0700509}
510
Alexander Duyck88bae712015-03-06 09:54:52 -0800511static struct key_vector *replace(struct trie *t,
512 struct key_vector *oldtnode,
513 struct key_vector *tn)
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800514{
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800515 struct key_vector *tp = node_parent(oldtnode);
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800516 unsigned long i;
517
518 /* setup the parent pointer out of and back into this node */
519 NODE_INIT_PARENT(tn, tp);
Alexander Duyck88bae712015-03-06 09:54:52 -0800520 put_child_root(tp, tn->key, tn);
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800521
522 /* update all of the child parent pointers */
523 update_children(tn);
524
525 /* all pointers should be clean so we are done */
526 tnode_free(oldtnode);
527
528 /* resize children now that oldtnode is freed */
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800529 for (i = child_length(tn); i;) {
Alexander Duyck754baf8d2015-03-06 09:54:14 -0800530 struct key_vector *inode = get_child(tn, --i);
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800531
532 /* resize child node */
533 if (tnode_full(tn, inode))
Alexander Duyck88bae712015-03-06 09:54:52 -0800534 tn = resize(t, inode);
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800535 }
Alexander Duyck8d8e8102015-03-06 09:54:02 -0800536
Alexander Duyck88bae712015-03-06 09:54:52 -0800537 return tp;
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800538}
539
Alexander Duyck88bae712015-03-06 09:54:52 -0800540static struct key_vector *inflate(struct trie *t,
541 struct key_vector *oldtnode)
Robert Olsson19baf832005-06-21 12:43:18 -0700542{
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800543 struct key_vector *tn;
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800544 unsigned long i;
Alexander Duycke9b44012014-12-31 10:56:12 -0800545 t_key m;
Robert Olsson19baf832005-06-21 12:43:18 -0700546
Stephen Hemminger0c7770c2005-08-23 21:59:41 -0700547 pr_debug("In inflate\n");
Robert Olsson19baf832005-06-21 12:43:18 -0700548
Alexander Duycke9b44012014-12-31 10:56:12 -0800549 tn = tnode_new(oldtnode->key, oldtnode->pos - 1, oldtnode->bits + 1);
Stephen Hemminger0c7770c2005-08-23 21:59:41 -0700550 if (!tn)
Alexander Duyck8d8e8102015-03-06 09:54:02 -0800551 goto notnode;
Robert Olsson2f368952005-07-05 15:02:40 -0700552
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800553 /* prepare oldtnode to be freed */
554 tnode_free_init(oldtnode);
555
Alexander Duyck12c081a2014-12-31 10:56:55 -0800556 /* Assemble all of the pointers in our cluster, in this case that
557 * represents all of the pointers out of our allocated nodes that
558 * point to existing tnodes and the links between our allocated
559 * nodes.
Robert Olsson2f368952005-07-05 15:02:40 -0700560 */
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800561 for (i = child_length(oldtnode), m = 1u << tn->pos; i;) {
Alexander Duyck754baf8d2015-03-06 09:54:14 -0800562 struct key_vector *inode = get_child(oldtnode, --i);
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800563 struct key_vector *node0, *node1;
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800564 unsigned long j, k;
Stephen Hemmingerc877efb2005-07-19 14:01:51 -0700565
Robert Olsson19baf832005-06-21 12:43:18 -0700566 /* An empty child */
Ian Morris51456b22015-04-03 09:17:26 +0100567 if (!inode)
Robert Olsson19baf832005-06-21 12:43:18 -0700568 continue;
569
570 /* A leaf or an internal node with skipped bits */
Alexander Duyckadaf9812014-12-31 10:55:47 -0800571 if (!tnode_full(oldtnode, inode)) {
Alexander Duycke9b44012014-12-31 10:56:12 -0800572 put_child(tn, get_index(inode->key, tn), inode);
Robert Olsson19baf832005-06-21 12:43:18 -0700573 continue;
574 }
575
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800576 /* drop the node in the old tnode free list */
577 tnode_free_append(oldtnode, inode);
578
Robert Olsson19baf832005-06-21 12:43:18 -0700579 /* An internal node with two children */
Robert Olsson19baf832005-06-21 12:43:18 -0700580 if (inode->bits == 1) {
Alexander Duyck754baf8d2015-03-06 09:54:14 -0800581 put_child(tn, 2 * i + 1, get_child(inode, 1));
582 put_child(tn, 2 * i, get_child(inode, 0));
Olof Johansson91b9a272005-08-09 20:24:39 -0700583 continue;
Robert Olsson19baf832005-06-21 12:43:18 -0700584 }
585
Olof Johansson91b9a272005-08-09 20:24:39 -0700586 /* We will replace this node 'inode' with two new
Alexander Duyck12c081a2014-12-31 10:56:55 -0800587 * ones, 'node0' and 'node1', each with half of the
Olof Johansson91b9a272005-08-09 20:24:39 -0700588 * original children. The two new nodes will have
589 * a position one bit further down the key and this
590 * means that the "significant" part of their keys
591 * (see the discussion near the top of this file)
592 * will differ by one bit, which will be "0" in
Alexander Duyck12c081a2014-12-31 10:56:55 -0800593 * node0's key and "1" in node1's key. Since we are
Olof Johansson91b9a272005-08-09 20:24:39 -0700594 * moving the key position by one step, the bit that
595 * we are moving away from - the bit at position
Alexander Duyck12c081a2014-12-31 10:56:55 -0800596 * (tn->pos) - is the one that will differ between
597 * node0 and node1. So... we synthesize that bit in the
598 * two new keys.
Olof Johansson91b9a272005-08-09 20:24:39 -0700599 */
Alexander Duyck12c081a2014-12-31 10:56:55 -0800600 node1 = tnode_new(inode->key | m, inode->pos, inode->bits - 1);
601 if (!node1)
602 goto nomem;
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800603 node0 = tnode_new(inode->key, inode->pos, inode->bits - 1);
Robert Olsson19baf832005-06-21 12:43:18 -0700604
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800605 tnode_free_append(tn, node1);
Alexander Duyck12c081a2014-12-31 10:56:55 -0800606 if (!node0)
607 goto nomem;
608 tnode_free_append(tn, node0);
Robert Olsson19baf832005-06-21 12:43:18 -0700609
Alexander Duyck12c081a2014-12-31 10:56:55 -0800610 /* populate child pointers in new nodes */
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800611 for (k = child_length(inode), j = k / 2; j;) {
Alexander Duyck754baf8d2015-03-06 09:54:14 -0800612 put_child(node1, --j, get_child(inode, --k));
613 put_child(node0, j, get_child(inode, j));
614 put_child(node1, --j, get_child(inode, --k));
615 put_child(node0, j, get_child(inode, j));
Robert Olsson19baf832005-06-21 12:43:18 -0700616 }
Alexander Duyckff181ed2014-12-31 10:56:43 -0800617
Alexander Duyck12c081a2014-12-31 10:56:55 -0800618 /* link new nodes to parent */
619 NODE_INIT_PARENT(node1, tn);
620 NODE_INIT_PARENT(node0, tn);
Olof Johansson91b9a272005-08-09 20:24:39 -0700621
Alexander Duyck12c081a2014-12-31 10:56:55 -0800622 /* link parent to nodes */
623 put_child(tn, 2 * i + 1, node1);
624 put_child(tn, 2 * i, node0);
Robert Olsson19baf832005-06-21 12:43:18 -0700625 }
Alexander Duyckff181ed2014-12-31 10:56:43 -0800626
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800627 /* setup the parent pointers into and out of this node */
Alexander Duyck8d8e8102015-03-06 09:54:02 -0800628 return replace(t, oldtnode, tn);
Robert Olsson2f80b3c2005-08-09 20:25:06 -0700629nomem:
Alexander Duyckfc86a932014-12-31 10:56:49 -0800630 /* all pointers should be clean so we are done */
631 tnode_free(tn);
Alexander Duyck8d8e8102015-03-06 09:54:02 -0800632notnode:
633 return NULL;
Robert Olsson19baf832005-06-21 12:43:18 -0700634}
635
Alexander Duyck88bae712015-03-06 09:54:52 -0800636static struct key_vector *halve(struct trie *t,
637 struct key_vector *oldtnode)
Robert Olsson19baf832005-06-21 12:43:18 -0700638{
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800639 struct key_vector *tn;
Alexander Duyck12c081a2014-12-31 10:56:55 -0800640 unsigned long i;
Robert Olsson19baf832005-06-21 12:43:18 -0700641
Stephen Hemminger0c7770c2005-08-23 21:59:41 -0700642 pr_debug("In halve\n");
Stephen Hemmingerc877efb2005-07-19 14:01:51 -0700643
Alexander Duycke9b44012014-12-31 10:56:12 -0800644 tn = tnode_new(oldtnode->key, oldtnode->pos + 1, oldtnode->bits - 1);
Robert Olsson2f80b3c2005-08-09 20:25:06 -0700645 if (!tn)
Alexander Duyck8d8e8102015-03-06 09:54:02 -0800646 goto notnode;
Robert Olsson2f368952005-07-05 15:02:40 -0700647
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800648 /* prepare oldtnode to be freed */
649 tnode_free_init(oldtnode);
650
Alexander Duyck12c081a2014-12-31 10:56:55 -0800651 /* Assemble all of the pointers in our cluster, in this case that
652 * represents all of the pointers out of our allocated nodes that
653 * point to existing tnodes and the links between our allocated
654 * nodes.
Robert Olsson2f368952005-07-05 15:02:40 -0700655 */
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800656 for (i = child_length(oldtnode); i;) {
Alexander Duyck754baf8d2015-03-06 09:54:14 -0800657 struct key_vector *node1 = get_child(oldtnode, --i);
658 struct key_vector *node0 = get_child(oldtnode, --i);
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800659 struct key_vector *inode;
Robert Olsson2f368952005-07-05 15:02:40 -0700660
Alexander Duyck12c081a2014-12-31 10:56:55 -0800661 /* At least one of the children is empty */
662 if (!node1 || !node0) {
663 put_child(tn, i / 2, node1 ? : node0);
664 continue;
Robert Olsson2f368952005-07-05 15:02:40 -0700665 }
Robert Olsson2f368952005-07-05 15:02:40 -0700666
Alexander Duyck12c081a2014-12-31 10:56:55 -0800667 /* Two nonempty children */
668 inode = tnode_new(node0->key, oldtnode->pos, 1);
Alexander Duyck8d8e8102015-03-06 09:54:02 -0800669 if (!inode)
670 goto nomem;
Alexander Duyck12c081a2014-12-31 10:56:55 -0800671 tnode_free_append(tn, inode);
672
673 /* initialize pointers out of node */
674 put_child(inode, 1, node1);
675 put_child(inode, 0, node0);
676 NODE_INIT_PARENT(inode, tn);
677
678 /* link parent to node */
679 put_child(tn, i / 2, inode);
Robert Olsson2f368952005-07-05 15:02:40 -0700680 }
Robert Olsson19baf832005-06-21 12:43:18 -0700681
Alexander Duyck69fa57b2015-01-22 15:51:14 -0800682 /* setup the parent pointers into and out of this node */
Alexander Duyck8d8e8102015-03-06 09:54:02 -0800683 return replace(t, oldtnode, tn);
684nomem:
685 /* all pointers should be clean so we are done */
686 tnode_free(tn);
687notnode:
688 return NULL;
Robert Olsson19baf832005-06-21 12:43:18 -0700689}
690
Alexander Duyck88bae712015-03-06 09:54:52 -0800691static struct key_vector *collapse(struct trie *t,
692 struct key_vector *oldtnode)
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800693{
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800694 struct key_vector *n, *tp;
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800695 unsigned long i;
696
697 /* scan the tnode looking for that one child that might still exist */
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800698 for (n = NULL, i = child_length(oldtnode); !n && i;)
Alexander Duyck754baf8d2015-03-06 09:54:14 -0800699 n = get_child(oldtnode, --i);
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800700
701 /* compress one level */
702 tp = node_parent(oldtnode);
Alexander Duyck88bae712015-03-06 09:54:52 -0800703 put_child_root(tp, oldtnode->key, n);
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800704 node_set_parent(n, tp);
705
706 /* drop dead node */
707 node_free(oldtnode);
Alexander Duyck88bae712015-03-06 09:54:52 -0800708
709 return tp;
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800710}
711
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800712static unsigned char update_suffix(struct key_vector *tn)
Alexander Duyck5405afd2014-12-31 10:57:08 -0800713{
714 unsigned char slen = tn->pos;
715 unsigned long stride, i;
Alexander Duycka52ca622016-12-01 07:27:57 -0500716 unsigned char slen_max;
717
718 /* only vector 0 can have a suffix length greater than or equal to
719 * tn->pos + tn->bits, the second highest node will have a suffix
720 * length at most of tn->pos + tn->bits - 1
721 */
722 slen_max = min_t(unsigned char, tn->pos + tn->bits - 1, tn->slen);
Alexander Duyck5405afd2014-12-31 10:57:08 -0800723
724 /* search though the list of children looking for nodes that might
725 * have a suffix greater than the one we currently have. This is
726 * why we start with a stride of 2 since a stride of 1 would
727 * represent the nodes with suffix length equal to tn->pos
728 */
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800729 for (i = 0, stride = 0x2ul ; i < child_length(tn); i += stride) {
Alexander Duyck754baf8d2015-03-06 09:54:14 -0800730 struct key_vector *n = get_child(tn, i);
Alexander Duyck5405afd2014-12-31 10:57:08 -0800731
732 if (!n || (n->slen <= slen))
733 continue;
734
735 /* update stride and slen based on new value */
736 stride <<= (n->slen - slen);
737 slen = n->slen;
738 i &= ~(stride - 1);
739
Alexander Duycka52ca622016-12-01 07:27:57 -0500740 /* stop searching if we have hit the maximum possible value */
741 if (slen >= slen_max)
Alexander Duyck5405afd2014-12-31 10:57:08 -0800742 break;
743 }
744
745 tn->slen = slen;
746
747 return slen;
748}
749
Alexander Duyckf05a4812014-12-31 10:56:37 -0800750/* From "Implementing a dynamic compressed trie" by Stefan Nilsson of
751 * the Helsinki University of Technology and Matti Tikkanen of Nokia
752 * Telecommunications, page 6:
753 * "A node is doubled if the ratio of non-empty children to all
754 * children in the *doubled* node is at least 'high'."
755 *
756 * 'high' in this instance is the variable 'inflate_threshold'. It
757 * is expressed as a percentage, so we multiply it with
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800758 * child_length() and instead of multiplying by 2 (since the
Alexander Duyckf05a4812014-12-31 10:56:37 -0800759 * child array will be doubled by inflate()) and multiplying
760 * the left-hand side by 100 (to handle the percentage thing) we
761 * multiply the left-hand side by 50.
762 *
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800763 * The left-hand side may look a bit weird: child_length(tn)
Alexander Duyckf05a4812014-12-31 10:56:37 -0800764 * - tn->empty_children is of course the number of non-null children
765 * in the current node. tn->full_children is the number of "full"
766 * children, that is non-null tnodes with a skip value of 0.
767 * All of those will be doubled in the resulting inflated tnode, so
768 * we just count them one extra time here.
769 *
770 * A clearer way to write this would be:
771 *
772 * to_be_doubled = tn->full_children;
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800773 * not_to_be_doubled = child_length(tn) - tn->empty_children -
Alexander Duyckf05a4812014-12-31 10:56:37 -0800774 * tn->full_children;
775 *
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800776 * new_child_length = child_length(tn) * 2;
Alexander Duyckf05a4812014-12-31 10:56:37 -0800777 *
778 * new_fill_factor = 100 * (not_to_be_doubled + 2*to_be_doubled) /
779 * new_child_length;
780 * if (new_fill_factor >= inflate_threshold)
781 *
782 * ...and so on, tho it would mess up the while () loop.
783 *
784 * anyway,
785 * 100 * (not_to_be_doubled + 2*to_be_doubled) / new_child_length >=
786 * inflate_threshold
787 *
788 * avoid a division:
789 * 100 * (not_to_be_doubled + 2*to_be_doubled) >=
790 * inflate_threshold * new_child_length
791 *
792 * expand not_to_be_doubled and to_be_doubled, and shorten:
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800793 * 100 * (child_length(tn) - tn->empty_children +
Alexander Duyckf05a4812014-12-31 10:56:37 -0800794 * tn->full_children) >= inflate_threshold * new_child_length
795 *
796 * expand new_child_length:
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800797 * 100 * (child_length(tn) - tn->empty_children +
Alexander Duyckf05a4812014-12-31 10:56:37 -0800798 * tn->full_children) >=
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800799 * inflate_threshold * child_length(tn) * 2
Alexander Duyckf05a4812014-12-31 10:56:37 -0800800 *
801 * shorten again:
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800802 * 50 * (tn->full_children + child_length(tn) -
Alexander Duyckf05a4812014-12-31 10:56:37 -0800803 * tn->empty_children) >= inflate_threshold *
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800804 * child_length(tn)
Alexander Duyckf05a4812014-12-31 10:56:37 -0800805 *
806 */
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800807static inline bool should_inflate(struct key_vector *tp, struct key_vector *tn)
Alexander Duyckf05a4812014-12-31 10:56:37 -0800808{
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800809 unsigned long used = child_length(tn);
Alexander Duyckf05a4812014-12-31 10:56:37 -0800810 unsigned long threshold = used;
811
812 /* Keep root node larger */
Alexander Duyck88bae712015-03-06 09:54:52 -0800813 threshold *= IS_TRIE(tp) ? inflate_threshold_root : inflate_threshold;
Alexander Duyck6e22d172015-03-06 09:54:39 -0800814 used -= tn_info(tn)->empty_children;
815 used += tn_info(tn)->full_children;
Alexander Duyckf05a4812014-12-31 10:56:37 -0800816
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800817 /* if bits == KEYLENGTH then pos = 0, and will fail below */
818
819 return (used > 1) && tn->pos && ((50 * used) >= threshold);
Alexander Duyckf05a4812014-12-31 10:56:37 -0800820}
821
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800822static inline bool should_halve(struct key_vector *tp, struct key_vector *tn)
Alexander Duyckf05a4812014-12-31 10:56:37 -0800823{
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800824 unsigned long used = child_length(tn);
Alexander Duyckf05a4812014-12-31 10:56:37 -0800825 unsigned long threshold = used;
826
827 /* Keep root node larger */
Alexander Duyck88bae712015-03-06 09:54:52 -0800828 threshold *= IS_TRIE(tp) ? halve_threshold_root : halve_threshold;
Alexander Duyck6e22d172015-03-06 09:54:39 -0800829 used -= tn_info(tn)->empty_children;
Alexander Duyckf05a4812014-12-31 10:56:37 -0800830
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800831 /* if bits == KEYLENGTH then used = 100% on wrap, and will fail below */
832
833 return (used > 1) && (tn->bits > 1) && ((100 * used) < threshold);
834}
835
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800836static inline bool should_collapse(struct key_vector *tn)
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800837{
Alexander Duyck2e1ac882015-03-06 09:54:21 -0800838 unsigned long used = child_length(tn);
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800839
Alexander Duyck6e22d172015-03-06 09:54:39 -0800840 used -= tn_info(tn)->empty_children;
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800841
842 /* account for bits == KEYLENGTH case */
Alexander Duyck6e22d172015-03-06 09:54:39 -0800843 if ((tn->bits == KEYLENGTH) && tn_info(tn)->full_children)
Alexander Duyck95f60ea2015-01-22 15:51:26 -0800844 used -= KEY_MAX;
845
846 /* One child or none, time to drop us from the trie */
847 return used < 2;
Alexander Duyckf05a4812014-12-31 10:56:37 -0800848}
849
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800850#define MAX_WORK 10
Alexander Duyck88bae712015-03-06 09:54:52 -0800851static struct key_vector *resize(struct trie *t, struct key_vector *tn)
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800852{
Alexander Duyck8d8e8102015-03-06 09:54:02 -0800853#ifdef CONFIG_IP_FIB_TRIE_STATS
854 struct trie_use_stats __percpu *stats = t->stats;
855#endif
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800856 struct key_vector *tp = node_parent(tn);
Alexander Duyck88bae712015-03-06 09:54:52 -0800857 unsigned long cindex = get_index(tn->key, tp);
Alexander Duycka80e89d2015-01-22 15:51:20 -0800858 int max_work = MAX_WORK;
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800859
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800860 pr_debug("In tnode_resize %p inflate_threshold=%d threshold=%d\n",
861 tn, inflate_threshold, halve_threshold);
862
Alexander Duyckff181ed2014-12-31 10:56:43 -0800863 /* track the tnode via the pointer from the parent instead of
864 * doing it ourselves. This way we can let RCU fully do its
865 * thing without us interfering
866 */
Alexander Duyck88bae712015-03-06 09:54:52 -0800867 BUG_ON(tn != get_child(tp, cindex));
Alexander Duyckff181ed2014-12-31 10:56:43 -0800868
Alexander Duyckf05a4812014-12-31 10:56:37 -0800869 /* Double as long as the resulting node has a number of
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800870 * nonempty nodes that are above the threshold.
871 */
Alexander Duyckb6f15f82015-03-23 11:51:53 -0700872 while (should_inflate(tp, tn) && max_work) {
Alexander Duyck88bae712015-03-06 09:54:52 -0800873 tp = inflate(t, tn);
874 if (!tp) {
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800875#ifdef CONFIG_IP_FIB_TRIE_STATS
Alexander Duyck8d8e8102015-03-06 09:54:02 -0800876 this_cpu_inc(stats->resize_node_skipped);
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800877#endif
878 break;
879 }
Alexander Duyckff181ed2014-12-31 10:56:43 -0800880
Alexander Duyckb6f15f82015-03-23 11:51:53 -0700881 max_work--;
Alexander Duyck88bae712015-03-06 09:54:52 -0800882 tn = get_child(tp, cindex);
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800883 }
884
Alexander Duyckb6f15f82015-03-23 11:51:53 -0700885 /* update parent in case inflate failed */
886 tp = node_parent(tn);
887
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800888 /* Return if at least one inflate is run */
889 if (max_work != MAX_WORK)
Alexander Duyckb6f15f82015-03-23 11:51:53 -0700890 return tp;
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800891
Alexander Duyckf05a4812014-12-31 10:56:37 -0800892 /* Halve as long as the number of empty children in this
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800893 * node is above threshold.
894 */
Alexander Duyckb6f15f82015-03-23 11:51:53 -0700895 while (should_halve(tp, tn) && max_work) {
Alexander Duyck88bae712015-03-06 09:54:52 -0800896 tp = halve(t, tn);
897 if (!tp) {
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800898#ifdef CONFIG_IP_FIB_TRIE_STATS
Alexander Duyck8d8e8102015-03-06 09:54:02 -0800899 this_cpu_inc(stats->resize_node_skipped);
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800900#endif
901 break;
902 }
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800903
Alexander Duyckb6f15f82015-03-23 11:51:53 -0700904 max_work--;
Alexander Duyck88bae712015-03-06 09:54:52 -0800905 tn = get_child(tp, cindex);
Alexander Duyckff181ed2014-12-31 10:56:43 -0800906 }
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800907
908 /* Only one child remains */
Alexander Duyck88bae712015-03-06 09:54:52 -0800909 if (should_collapse(tn))
910 return collapse(t, tn);
911
Alexander Duyckb6f15f82015-03-23 11:51:53 -0700912 /* update parent in case halve failed */
Alexander Duycka52ca622016-12-01 07:27:57 -0500913 return node_parent(tn);
Alexander Duyckcf3637b2014-12-31 10:56:31 -0800914}
915
Alexander Duyck1a239172016-12-01 07:27:52 -0500916static void node_pull_suffix(struct key_vector *tn, unsigned char slen)
Robert Olsson19baf832005-06-21 12:43:18 -0700917{
Alexander Duyck1a239172016-12-01 07:27:52 -0500918 unsigned char node_slen = tn->slen;
919
920 while ((node_slen > tn->pos) && (node_slen > slen)) {
921 slen = update_suffix(tn);
922 if (node_slen == slen)
Alexander Duyck5405afd2014-12-31 10:57:08 -0800923 break;
Alexander Duyck1a239172016-12-01 07:27:52 -0500924
925 tn = node_parent(tn);
926 node_slen = tn->slen;
Alexander Duyck5405afd2014-12-31 10:57:08 -0800927 }
928}
929
Alexander Duyck1a239172016-12-01 07:27:52 -0500930static void node_push_suffix(struct key_vector *tn, unsigned char slen)
Alexander Duyck5405afd2014-12-31 10:57:08 -0800931{
Alexander Duyck1a239172016-12-01 07:27:52 -0500932 while (tn->slen < slen) {
933 tn->slen = slen;
Alexander Duyck5405afd2014-12-31 10:57:08 -0800934 tn = node_parent(tn);
935 }
936}
937
Robert Olsson2373ce12005-08-25 13:01:29 -0700938/* rcu_read_lock needs to be hold by caller from readside */
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800939static struct key_vector *fib_find_node(struct trie *t,
940 struct key_vector **tp, u32 key)
Robert Olsson19baf832005-06-21 12:43:18 -0700941{
Alexander Duyck88bae712015-03-06 09:54:52 -0800942 struct key_vector *pn, *n = t->kv;
943 unsigned long index = 0;
Robert Olsson19baf832005-06-21 12:43:18 -0700944
Alexander Duyck88bae712015-03-06 09:54:52 -0800945 do {
946 pn = n;
947 n = get_child_rcu(n, index);
948
949 if (!n)
950 break;
951
952 index = get_cindex(key, n);
Alexander Duyck939afb02014-12-31 10:56:00 -0800953
954 /* This bit of code is a bit tricky but it combines multiple
955 * checks into a single check. The prefix consists of the
956 * prefix plus zeros for the bits in the cindex. The index
957 * is the difference between the key and this value. From
958 * this we can actually derive several pieces of data.
Alexander Duyckd4a975e2015-03-04 15:01:59 -0800959 * if (index >= (1ul << bits))
Alexander Duyck939afb02014-12-31 10:56:00 -0800960 * we have a mismatch in skip bits and failed
Alexander Duyckb3832112015-01-22 15:51:08 -0800961 * else
962 * we know the value is cindex
Alexander Duyckd4a975e2015-03-04 15:01:59 -0800963 *
964 * This check is safe even if bits == KEYLENGTH due to the
965 * fact that we can only allocate a node with 32 bits if a
966 * long is greater than 32 bits.
Alexander Duyck939afb02014-12-31 10:56:00 -0800967 */
Alexander Duyckd4a975e2015-03-04 15:01:59 -0800968 if (index >= (1ul << n->bits)) {
969 n = NULL;
970 break;
971 }
Alexander Duyck939afb02014-12-31 10:56:00 -0800972
Alexander Duyck88bae712015-03-06 09:54:52 -0800973 /* keep searching until we find a perfect match leaf or NULL */
974 } while (IS_TNODE(n));
Robert Olsson19baf832005-06-21 12:43:18 -0700975
Alexander Duyck35c6eda2015-03-06 09:54:08 -0800976 *tp = pn;
Alexander Duyckd4a975e2015-03-04 15:01:59 -0800977
Alexander Duyck939afb02014-12-31 10:56:00 -0800978 return n;
Robert Olsson19baf832005-06-21 12:43:18 -0700979}
980
Alexander Duyck02525362015-01-22 15:51:39 -0800981/* Return the first fib alias matching TOS with
982 * priority less than or equal to PRIO.
Ido Schimmelb5fc0432019-12-14 17:53:08 +0200983 * If 'find_first' is set, return the first matching
984 * fib alias, regardless of TOS and priority.
Alexander Duyck02525362015-01-22 15:51:39 -0800985 */
Alexander Duyck79e5ad22015-02-25 15:31:51 -0800986static struct fib_alias *fib_find_alias(struct hlist_head *fah, u8 slen,
Ido Schimmelb5fc0432019-12-14 17:53:08 +0200987 u8 tos, u32 prio, u32 tb_id,
988 bool find_first)
Alexander Duyck02525362015-01-22 15:51:39 -0800989{
990 struct fib_alias *fa;
991
992 if (!fah)
993 return NULL;
994
Alexander Duyck56315f92015-02-25 15:31:31 -0800995 hlist_for_each_entry(fa, fah, fa_list) {
Alexander Duyck79e5ad22015-02-25 15:31:51 -0800996 if (fa->fa_slen < slen)
997 continue;
998 if (fa->fa_slen != slen)
999 break;
Alexander Duyck0b65bd92015-03-12 14:46:29 -07001000 if (fa->tb_id > tb_id)
1001 continue;
1002 if (fa->tb_id != tb_id)
1003 break;
Ido Schimmelb5fc0432019-12-14 17:53:08 +02001004 if (find_first)
1005 return fa;
Alexander Duyck02525362015-01-22 15:51:39 -08001006 if (fa->fa_tos > tos)
1007 continue;
1008 if (fa->fa_info->fib_priority >= prio || fa->fa_tos < tos)
1009 return fa;
1010 }
1011
1012 return NULL;
1013}
1014
Alexander Duyck35c6eda2015-03-06 09:54:08 -08001015static void trie_rebalance(struct trie *t, struct key_vector *tn)
Robert Olsson19baf832005-06-21 12:43:18 -07001016{
Alexander Duyck88bae712015-03-06 09:54:52 -08001017 while (!IS_TRIE(tn))
1018 tn = resize(t, tn);
Robert Olsson19baf832005-06-21 12:43:18 -07001019}
1020
Alexander Duyck35c6eda2015-03-06 09:54:08 -08001021static int fib_insert_node(struct trie *t, struct key_vector *tp,
Alexander Duyckd5d64872015-03-04 15:02:18 -08001022 struct fib_alias *new, t_key key)
Robert Olsson19baf832005-06-21 12:43:18 -07001023{
Alexander Duyck35c6eda2015-03-06 09:54:08 -08001024 struct key_vector *n, *l;
Alexander Duyck836a0122014-12-31 10:56:06 -08001025
Alexander Duyckd5d64872015-03-04 15:02:18 -08001026 l = leaf_new(key, new);
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001027 if (!l)
Alexander Duyck8d8e8102015-03-06 09:54:02 -08001028 goto noleaf;
Alexander Duyckd5d64872015-03-04 15:02:18 -08001029
1030 /* retrieve child from parent node */
Alexander Duyck88bae712015-03-06 09:54:52 -08001031 n = get_child(tp, get_index(key, tp));
Alexander Duyck836a0122014-12-31 10:56:06 -08001032
1033 /* Case 2: n is a LEAF or a TNODE and the key doesn't match.
1034 *
1035 * Add a new tnode here
1036 * first tnode need some special handling
1037 * leaves us in position for handling as case 3
1038 */
1039 if (n) {
Alexander Duyck35c6eda2015-03-06 09:54:08 -08001040 struct key_vector *tn;
Alexander Duyck836a0122014-12-31 10:56:06 -08001041
Alexander Duycke9b44012014-12-31 10:56:12 -08001042 tn = tnode_new(key, __fls(key ^ n->key), 1);
Alexander Duyck8d8e8102015-03-06 09:54:02 -08001043 if (!tn)
1044 goto notnode;
Olof Johansson91b9a272005-08-09 20:24:39 -07001045
Alexander Duyck836a0122014-12-31 10:56:06 -08001046 /* initialize routes out of node */
1047 NODE_INIT_PARENT(tn, tp);
1048 put_child(tn, get_index(key, tn) ^ 1, n);
Robert Olsson19baf832005-06-21 12:43:18 -07001049
Alexander Duyck836a0122014-12-31 10:56:06 -08001050 /* start adding routes into the node */
Alexander Duyck88bae712015-03-06 09:54:52 -08001051 put_child_root(tp, key, tn);
Alexander Duyck836a0122014-12-31 10:56:06 -08001052 node_set_parent(n, tn);
Robert Olsson19baf832005-06-21 12:43:18 -07001053
Alexander Duyck836a0122014-12-31 10:56:06 -08001054 /* parent now has a NULL spot where the leaf can go */
Alexander Duycke962f302014-12-10 21:49:22 -08001055 tp = tn;
Robert Olsson19baf832005-06-21 12:43:18 -07001056 }
Olof Johansson91b9a272005-08-09 20:24:39 -07001057
Alexander Duyck836a0122014-12-31 10:56:06 -08001058 /* Case 3: n is NULL, and will just insert a new leaf */
Alexander Duycka52ca622016-12-01 07:27:57 -05001059 node_push_suffix(tp, new->fa_slen);
Alexander Duyckd5d64872015-03-04 15:02:18 -08001060 NODE_INIT_PARENT(l, tp);
Alexander Duyck88bae712015-03-06 09:54:52 -08001061 put_child_root(tp, key, l);
Alexander Duyckd5d64872015-03-04 15:02:18 -08001062 trie_rebalance(t, tp);
Olof Johansson91b9a272005-08-09 20:24:39 -07001063
Alexander Duyckd5d64872015-03-04 15:02:18 -08001064 return 0;
Alexander Duyck8d8e8102015-03-06 09:54:02 -08001065notnode:
1066 node_free(l);
1067noleaf:
1068 return -ENOMEM;
Robert Olsson19baf832005-06-21 12:43:18 -07001069}
1070
Alexander Duyck35c6eda2015-03-06 09:54:08 -08001071static int fib_insert_alias(struct trie *t, struct key_vector *tp,
1072 struct key_vector *l, struct fib_alias *new,
Alexander Duyckd5d64872015-03-04 15:02:18 -08001073 struct fib_alias *fa, t_key key)
1074{
1075 if (!l)
1076 return fib_insert_node(t, tp, new, key);
1077
1078 if (fa) {
1079 hlist_add_before_rcu(&new->fa_list, &fa->fa_list);
1080 } else {
1081 struct fib_alias *last;
1082
1083 hlist_for_each_entry(last, &l->leaf, fa_list) {
1084 if (new->fa_slen < last->fa_slen)
1085 break;
Alexander Duyck0b65bd92015-03-12 14:46:29 -07001086 if ((new->fa_slen == last->fa_slen) &&
1087 (new->tb_id > last->tb_id))
1088 break;
Alexander Duyckd5d64872015-03-04 15:02:18 -08001089 fa = last;
1090 }
1091
1092 if (fa)
1093 hlist_add_behind_rcu(&new->fa_list, &fa->fa_list);
1094 else
1095 hlist_add_head_rcu(&new->fa_list, &l->leaf);
1096 }
1097
1098 /* if we added to the tail node then we need to update slen */
1099 if (l->slen < new->fa_slen) {
1100 l->slen = new->fa_slen;
Alexander Duyck1a239172016-12-01 07:27:52 -05001101 node_push_suffix(tp, new->fa_slen);
Alexander Duyckd5d64872015-03-04 15:02:18 -08001102 }
1103
1104 return 0;
1105}
1106
David Ahern78055992017-05-27 16:19:26 -06001107static bool fib_valid_key_len(u32 key, u8 plen, struct netlink_ext_ack *extack)
David Ahernba277e82017-05-27 16:19:25 -06001108{
David Ahern78055992017-05-27 16:19:26 -06001109 if (plen > KEYLENGTH) {
1110 NL_SET_ERR_MSG(extack, "Invalid prefix length");
David Ahernba277e82017-05-27 16:19:25 -06001111 return false;
David Ahern78055992017-05-27 16:19:26 -06001112 }
David Ahernba277e82017-05-27 16:19:25 -06001113
David Ahern78055992017-05-27 16:19:26 -06001114 if ((plen < KEYLENGTH) && (key << plen)) {
1115 NL_SET_ERR_MSG(extack,
1116 "Invalid prefix for given prefix length");
David Ahernba277e82017-05-27 16:19:25 -06001117 return false;
David Ahern78055992017-05-27 16:19:26 -06001118 }
David Ahernba277e82017-05-27 16:19:25 -06001119
1120 return true;
1121}
1122
Ido Schimmela6c76c12019-12-14 17:53:07 +02001123static void fib_remove_alias(struct trie *t, struct key_vector *tp,
1124 struct key_vector *l, struct fib_alias *old);
1125
Alexander Duyckd5d64872015-03-04 15:02:18 -08001126/* Caller must hold RTNL. */
Jiri Pirkob90eb752016-09-26 12:52:29 +02001127int fib_table_insert(struct net *net, struct fib_table *tb,
David Ahern6d8422a12017-05-21 10:12:02 -06001128 struct fib_config *cfg, struct netlink_ext_ack *extack)
Robert Olsson19baf832005-06-21 12:43:18 -07001129{
Alexander Duyckd4a975e2015-03-04 15:01:59 -08001130 struct trie *t = (struct trie *)tb->tb_data;
Robert Olsson19baf832005-06-21 12:43:18 -07001131 struct fib_alias *fa, *new_fa;
Alexander Duyck35c6eda2015-03-06 09:54:08 -08001132 struct key_vector *l, *tp;
Guillaume Naultb93e1fa2016-09-07 17:20:46 +02001133 u16 nlflags = NLM_F_EXCL;
Robert Olsson19baf832005-06-21 12:43:18 -07001134 struct fib_info *fi;
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001135 u8 plen = cfg->fc_dst_len;
1136 u8 slen = KEYLENGTH - plen;
Thomas Graf4e902c52006-08-17 18:14:52 -07001137 u8 tos = cfg->fc_tos;
Alexander Duyckd4a975e2015-03-04 15:01:59 -08001138 u32 key;
Robert Olsson19baf832005-06-21 12:43:18 -07001139 int err;
Robert Olsson19baf832005-06-21 12:43:18 -07001140
Thomas Graf4e902c52006-08-17 18:14:52 -07001141 key = ntohl(cfg->fc_dst);
Robert Olsson19baf832005-06-21 12:43:18 -07001142
David Ahern78055992017-05-27 16:19:26 -06001143 if (!fib_valid_key_len(key, plen, extack))
Robert Olsson19baf832005-06-21 12:43:18 -07001144 return -EINVAL;
1145
David Ahernba277e82017-05-27 16:19:25 -06001146 pr_debug("Insert table=%u %08x/%d\n", tb->tb_id, key, plen);
1147
David Ahern6d8422a12017-05-21 10:12:02 -06001148 fi = fib_create_info(cfg, extack);
Thomas Graf4e902c52006-08-17 18:14:52 -07001149 if (IS_ERR(fi)) {
1150 err = PTR_ERR(fi);
Robert Olsson19baf832005-06-21 12:43:18 -07001151 goto err;
Thomas Graf4e902c52006-08-17 18:14:52 -07001152 }
Robert Olsson19baf832005-06-21 12:43:18 -07001153
Alexander Duyckd4a975e2015-03-04 15:01:59 -08001154 l = fib_find_node(t, &tp, key);
Alexander Duyck0b65bd92015-03-12 14:46:29 -07001155 fa = l ? fib_find_alias(&l->leaf, slen, tos, fi->fib_priority,
Ido Schimmelb5fc0432019-12-14 17:53:08 +02001156 tb->tb_id, false) : NULL;
Robert Olsson19baf832005-06-21 12:43:18 -07001157
1158 /* Now fa, if non-NULL, points to the first fib alias
1159 * with the same keys [prefix,tos,priority], if such key already
1160 * exists or to the node before which we will insert new one.
1161 *
1162 * If fa is NULL, we will need to allocate a new one and
Alexander Duyck56315f92015-02-25 15:31:31 -08001163 * insert to the tail of the section matching the suffix length
1164 * of the new alias.
Robert Olsson19baf832005-06-21 12:43:18 -07001165 */
1166
Julian Anastasov936f6f82008-01-28 21:18:06 -08001167 if (fa && fa->fa_tos == tos &&
1168 fa->fa_info->fib_priority == fi->fib_priority) {
1169 struct fib_alias *fa_first, *fa_match;
Robert Olsson19baf832005-06-21 12:43:18 -07001170
1171 err = -EEXIST;
Thomas Graf4e902c52006-08-17 18:14:52 -07001172 if (cfg->fc_nlflags & NLM_F_EXCL)
Robert Olsson19baf832005-06-21 12:43:18 -07001173 goto out;
1174
Guillaume Naultb93e1fa2016-09-07 17:20:46 +02001175 nlflags &= ~NLM_F_EXCL;
1176
Julian Anastasov936f6f82008-01-28 21:18:06 -08001177 /* We have 2 goals:
1178 * 1. Find exact match for type, scope, fib_info to avoid
1179 * duplicate routes
1180 * 2. Find next 'fa' (or head), NLM_F_APPEND inserts before it
1181 */
1182 fa_match = NULL;
1183 fa_first = fa;
Alexander Duyck56315f92015-02-25 15:31:31 -08001184 hlist_for_each_entry_from(fa, fa_list) {
Alexander Duyck0b65bd92015-03-12 14:46:29 -07001185 if ((fa->fa_slen != slen) ||
1186 (fa->tb_id != tb->tb_id) ||
1187 (fa->fa_tos != tos))
Julian Anastasov936f6f82008-01-28 21:18:06 -08001188 break;
1189 if (fa->fa_info->fib_priority != fi->fib_priority)
1190 break;
1191 if (fa->fa_type == cfg->fc_type &&
Julian Anastasov936f6f82008-01-28 21:18:06 -08001192 fa->fa_info == fi) {
1193 fa_match = fa;
1194 break;
1195 }
1196 }
1197
Thomas Graf4e902c52006-08-17 18:14:52 -07001198 if (cfg->fc_nlflags & NLM_F_REPLACE) {
Robert Olsson19baf832005-06-21 12:43:18 -07001199 struct fib_info *fi_drop;
1200 u8 state;
1201
Guillaume Naultb93e1fa2016-09-07 17:20:46 +02001202 nlflags |= NLM_F_REPLACE;
Julian Anastasov936f6f82008-01-28 21:18:06 -08001203 fa = fa_first;
1204 if (fa_match) {
1205 if (fa == fa_match)
1206 err = 0;
Joonwoo Park67250332008-01-18 03:45:18 -08001207 goto out;
Julian Anastasov936f6f82008-01-28 21:18:06 -08001208 }
Robert Olsson2373ce12005-08-25 13:01:29 -07001209 err = -ENOBUFS;
Christoph Lametere94b1762006-12-06 20:33:17 -08001210 new_fa = kmem_cache_alloc(fn_alias_kmem, GFP_KERNEL);
Ian Morris51456b22015-04-03 09:17:26 +01001211 if (!new_fa)
Robert Olsson2373ce12005-08-25 13:01:29 -07001212 goto out;
Robert Olsson19baf832005-06-21 12:43:18 -07001213
1214 fi_drop = fa->fa_info;
Robert Olsson2373ce12005-08-25 13:01:29 -07001215 new_fa->fa_tos = fa->fa_tos;
1216 new_fa->fa_info = fi;
Thomas Graf4e902c52006-08-17 18:14:52 -07001217 new_fa->fa_type = cfg->fc_type;
Robert Olsson19baf832005-06-21 12:43:18 -07001218 state = fa->fa_state;
Julian Anastasov936f6f82008-01-28 21:18:06 -08001219 new_fa->fa_state = state & ~FA_S_ACCESSED;
Alexander Duyck9b6ebad2015-02-25 15:31:44 -08001220 new_fa->fa_slen = fa->fa_slen;
Michal Kubečekd4e64c22015-05-22 13:40:09 +02001221 new_fa->tb_id = tb->tb_id;
Julian Anastasov2392deb2015-07-22 10:43:23 +03001222 new_fa->fa_default = -1;
Robert Olsson19baf832005-06-21 12:43:18 -07001223
Ido Schimmel6324d0f2020-01-14 13:23:09 +02001224 hlist_replace_rcu(&fa->fa_list, &new_fa->fa_list);
1225
Ido Schimmelee3936d2019-12-14 17:53:09 +02001226 if (fib_find_alias(&l->leaf, fa->fa_slen, 0, 0,
Ido Schimmel6324d0f2020-01-14 13:23:09 +02001227 tb->tb_id, true) == new_fa) {
Ido Schimmelee3936d2019-12-14 17:53:09 +02001228 enum fib_event_type fib_event;
1229
Ido Schimmel446f7392019-12-14 17:53:15 +02001230 fib_event = FIB_EVENT_ENTRY_REPLACE;
Ido Schimmelee3936d2019-12-14 17:53:09 +02001231 err = call_fib_entry_notifiers(net, fib_event,
1232 key, plen,
1233 new_fa, extack);
Ido Schimmel6324d0f2020-01-14 13:23:09 +02001234 if (err) {
1235 hlist_replace_rcu(&new_fa->fa_list,
1236 &fa->fa_list);
Ido Schimmelee3936d2019-12-14 17:53:09 +02001237 goto out_free_new_fa;
Ido Schimmel6324d0f2020-01-14 13:23:09 +02001238 }
Ido Schimmelee3936d2019-12-14 17:53:09 +02001239 }
David Ahernc1d7ee62018-03-27 18:21:58 -07001240
Ido Schimmel5b7d6162017-02-09 10:28:40 +01001241 rtmsg_fib(RTM_NEWROUTE, htonl(key), new_fa, plen,
1242 tb->tb_id, &cfg->fc_nlinfo, nlflags);
1243
Robert Olsson2373ce12005-08-25 13:01:29 -07001244 alias_free_mem_rcu(fa);
Robert Olsson19baf832005-06-21 12:43:18 -07001245
1246 fib_release_info(fi_drop);
1247 if (state & FA_S_ACCESSED)
Nicolas Dichtel4ccfe6d2012-09-07 00:45:29 +00001248 rt_cache_flush(cfg->fc_nlinfo.nl_net);
Jiri Pirkob90eb752016-09-26 12:52:29 +02001249
Olof Johansson91b9a272005-08-09 20:24:39 -07001250 goto succeeded;
Robert Olsson19baf832005-06-21 12:43:18 -07001251 }
1252 /* Error if we find a perfect match which
1253 * uses the same scope, type, and nexthop
1254 * information.
1255 */
Julian Anastasov936f6f82008-01-28 21:18:06 -08001256 if (fa_match)
1257 goto out;
Stephen Hemmingera07f5f52008-01-22 21:53:36 -08001258
Ido Schimmel446f7392019-12-14 17:53:15 +02001259 if (cfg->fc_nlflags & NLM_F_APPEND)
Guillaume Naultb93e1fa2016-09-07 17:20:46 +02001260 nlflags |= NLM_F_APPEND;
Ido Schimmel446f7392019-12-14 17:53:15 +02001261 else
Julian Anastasov936f6f82008-01-28 21:18:06 -08001262 fa = fa_first;
Robert Olsson19baf832005-06-21 12:43:18 -07001263 }
1264 err = -ENOENT;
Thomas Graf4e902c52006-08-17 18:14:52 -07001265 if (!(cfg->fc_nlflags & NLM_F_CREATE))
Robert Olsson19baf832005-06-21 12:43:18 -07001266 goto out;
1267
Guillaume Naultb93e1fa2016-09-07 17:20:46 +02001268 nlflags |= NLM_F_CREATE;
Robert Olsson19baf832005-06-21 12:43:18 -07001269 err = -ENOBUFS;
Christoph Lametere94b1762006-12-06 20:33:17 -08001270 new_fa = kmem_cache_alloc(fn_alias_kmem, GFP_KERNEL);
Ian Morris51456b22015-04-03 09:17:26 +01001271 if (!new_fa)
Robert Olsson19baf832005-06-21 12:43:18 -07001272 goto out;
1273
1274 new_fa->fa_info = fi;
1275 new_fa->fa_tos = tos;
Thomas Graf4e902c52006-08-17 18:14:52 -07001276 new_fa->fa_type = cfg->fc_type;
Robert Olsson19baf832005-06-21 12:43:18 -07001277 new_fa->fa_state = 0;
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001278 new_fa->fa_slen = slen;
Alexander Duyck0ddcf432015-03-06 13:47:00 -08001279 new_fa->tb_id = tb->tb_id;
Julian Anastasov2392deb2015-07-22 10:43:23 +03001280 new_fa->fa_default = -1;
Robert Olsson19baf832005-06-21 12:43:18 -07001281
Alexander Duyck9b6ebad2015-02-25 15:31:44 -08001282 /* Insert new entry to the list. */
Alexander Duyckd5d64872015-03-04 15:02:18 -08001283 err = fib_insert_alias(t, tp, l, new_fa, fa, key);
1284 if (err)
Ido Schimmela6c76c12019-12-14 17:53:07 +02001285 goto out_free_new_fa;
1286
1287 /* The alias was already inserted, so the node must exist. */
1288 l = l ? l : fib_find_node(t, &tp, key);
1289 if (WARN_ON_ONCE(!l))
1290 goto out_free_new_fa;
1291
Ido Schimmela8674f72019-12-14 17:53:10 +02001292 if (fib_find_alias(&l->leaf, new_fa->fa_slen, 0, 0, tb->tb_id, true) ==
1293 new_fa) {
1294 enum fib_event_type fib_event;
1295
Ido Schimmel446f7392019-12-14 17:53:15 +02001296 fib_event = FIB_EVENT_ENTRY_REPLACE;
Ido Schimmela8674f72019-12-14 17:53:10 +02001297 err = call_fib_entry_notifiers(net, fib_event, key, plen,
1298 new_fa, extack);
1299 if (err)
1300 goto out_remove_new_fa;
1301 }
Robert Olsson19baf832005-06-21 12:43:18 -07001302
David S. Miller21d8c492011-04-14 14:49:37 -07001303 if (!plen)
1304 tb->tb_num_default++;
1305
Nicolas Dichtel4ccfe6d2012-09-07 00:45:29 +00001306 rt_cache_flush(cfg->fc_nlinfo.nl_net);
Alexander Duyck0ddcf432015-03-06 13:47:00 -08001307 rtmsg_fib(RTM_NEWROUTE, htonl(key), new_fa, plen, new_fa->tb_id,
Roopa Prabhua2bb6d72015-06-17 11:07:01 -07001308 &cfg->fc_nlinfo, nlflags);
Robert Olsson19baf832005-06-21 12:43:18 -07001309succeeded:
1310 return 0;
Robert Olssonf835e472005-06-28 15:00:39 -07001311
Ido Schimmela6c76c12019-12-14 17:53:07 +02001312out_remove_new_fa:
1313 fib_remove_alias(t, tp, l, new_fa);
Robert Olssonf835e472005-06-28 15:00:39 -07001314out_free_new_fa:
1315 kmem_cache_free(fn_alias_kmem, new_fa);
Robert Olsson19baf832005-06-21 12:43:18 -07001316out:
1317 fib_release_info(fi);
Olof Johansson91b9a272005-08-09 20:24:39 -07001318err:
Robert Olsson19baf832005-06-21 12:43:18 -07001319 return err;
1320}
1321
Alexander Duyck35c6eda2015-03-06 09:54:08 -08001322static inline t_key prefix_mismatch(t_key key, struct key_vector *n)
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001323{
1324 t_key prefix = n->key;
1325
1326 return (key ^ prefix) & (prefix | -prefix);
1327}
1328
Alexander Duyck345e9b52014-12-31 10:56:24 -08001329/* should be called with rcu_read_lock */
David S. Miller22bd5b92011-03-11 19:54:08 -05001330int fib_table_lookup(struct fib_table *tb, const struct flowi4 *flp,
Eric Dumazetebc0ffa2010-10-05 10:41:36 +00001331 struct fib_result *res, int fib_flags)
Robert Olsson19baf832005-06-21 12:43:18 -07001332{
Alexander Duyck0ddcf432015-03-06 13:47:00 -08001333 struct trie *t = (struct trie *) tb->tb_data;
Alexander Duyck8274a972014-12-31 10:55:29 -08001334#ifdef CONFIG_IP_FIB_TRIE_STATS
1335 struct trie_use_stats __percpu *stats = t->stats;
1336#endif
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001337 const t_key key = ntohl(flp->daddr);
Alexander Duyck35c6eda2015-03-06 09:54:08 -08001338 struct key_vector *n, *pn;
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001339 struct fib_alias *fa;
Alexander Duyck71e8b672015-03-04 15:04:03 -08001340 unsigned long index;
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001341 t_key cindex;
Robert Olsson19baf832005-06-21 12:43:18 -07001342
Alexander Duyck88bae712015-03-06 09:54:52 -08001343 pn = t->kv;
1344 cindex = 0;
1345
1346 n = get_child_rcu(pn, cindex);
David Ahern9f323972018-05-23 17:08:47 -07001347 if (!n) {
1348 trace_fib_table_lookup(tb->tb_id, flp, NULL, -EAGAIN);
Alexander Duyck345e9b52014-12-31 10:56:24 -08001349 return -EAGAIN;
David Ahern9f323972018-05-23 17:08:47 -07001350 }
Robert Olsson19baf832005-06-21 12:43:18 -07001351
1352#ifdef CONFIG_IP_FIB_TRIE_STATS
Alexander Duyck8274a972014-12-31 10:55:29 -08001353 this_cpu_inc(stats->gets);
Robert Olsson19baf832005-06-21 12:43:18 -07001354#endif
1355
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001356 /* Step 1: Travel to the longest prefix match in the trie */
1357 for (;;) {
Alexander Duyck88bae712015-03-06 09:54:52 -08001358 index = get_cindex(key, n);
Robert Olsson19baf832005-06-21 12:43:18 -07001359
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001360 /* This bit of code is a bit tricky but it combines multiple
1361 * checks into a single check. The prefix consists of the
1362 * prefix plus zeros for the "bits" in the prefix. The index
1363 * is the difference between the key and this value. From
1364 * this we can actually derive several pieces of data.
Alexander Duyck71e8b672015-03-04 15:04:03 -08001365 * if (index >= (1ul << bits))
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001366 * we have a mismatch in skip bits and failed
Alexander Duyckb3832112015-01-22 15:51:08 -08001367 * else
1368 * we know the value is cindex
Alexander Duyck71e8b672015-03-04 15:04:03 -08001369 *
1370 * This check is safe even if bits == KEYLENGTH due to the
1371 * fact that we can only allocate a node with 32 bits if a
1372 * long is greater than 32 bits.
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001373 */
Alexander Duyck71e8b672015-03-04 15:04:03 -08001374 if (index >= (1ul << n->bits))
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001375 break;
Robert Olsson19baf832005-06-21 12:43:18 -07001376
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001377 /* we have found a leaf. Prefixes have already been compared */
1378 if (IS_LEAF(n))
Stephen Hemmingera07f5f52008-01-22 21:53:36 -08001379 goto found;
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001380
1381 /* only record pn and cindex if we are going to be chopping
1382 * bits later. Otherwise we are just wasting cycles.
1383 */
Alexander Duyck5405afd2014-12-31 10:57:08 -08001384 if (n->slen > n->pos) {
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001385 pn = n;
1386 cindex = index;
Olof Johansson91b9a272005-08-09 20:24:39 -07001387 }
1388
Alexander Duyck754baf8d2015-03-06 09:54:14 -08001389 n = get_child_rcu(n, index);
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001390 if (unlikely(!n))
Robert Olsson19baf832005-06-21 12:43:18 -07001391 goto backtrace;
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001392 }
1393
1394 /* Step 2: Sort out leaves and begin backtracing for longest prefix */
1395 for (;;) {
1396 /* record the pointer where our next node pointer is stored */
Alexander Duyck35c6eda2015-03-06 09:54:08 -08001397 struct key_vector __rcu **cptr = n->tnode;
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001398
1399 /* This test verifies that none of the bits that differ
1400 * between the key and the prefix exist in the region of
1401 * the lsb and higher in the prefix.
1402 */
Alexander Duyck5405afd2014-12-31 10:57:08 -08001403 if (unlikely(prefix_mismatch(key, n)) || (n->slen == n->pos))
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001404 goto backtrace;
1405
1406 /* exit out and process leaf */
1407 if (unlikely(IS_LEAF(n)))
1408 break;
1409
1410 /* Don't bother recording parent info. Since we are in
1411 * prefix match mode we will have to come back to wherever
1412 * we started this traversal anyway
1413 */
1414
1415 while ((n = rcu_dereference(*cptr)) == NULL) {
1416backtrace:
1417#ifdef CONFIG_IP_FIB_TRIE_STATS
1418 if (!n)
1419 this_cpu_inc(stats->null_node_hit);
1420#endif
1421 /* If we are at cindex 0 there are no more bits for
1422 * us to strip at this level so we must ascend back
1423 * up one level to see if there are any more bits to
1424 * be stripped there.
1425 */
1426 while (!cindex) {
1427 t_key pkey = pn->key;
1428
Alexander Duyck88bae712015-03-06 09:54:52 -08001429 /* If we don't have a parent then there is
1430 * nothing for us to do as we do not have any
1431 * further nodes to parse.
1432 */
David Ahern9f323972018-05-23 17:08:47 -07001433 if (IS_TRIE(pn)) {
1434 trace_fib_table_lookup(tb->tb_id, flp,
1435 NULL, -EAGAIN);
Alexander Duyck345e9b52014-12-31 10:56:24 -08001436 return -EAGAIN;
David Ahern9f323972018-05-23 17:08:47 -07001437 }
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001438#ifdef CONFIG_IP_FIB_TRIE_STATS
1439 this_cpu_inc(stats->backtrack);
1440#endif
1441 /* Get Child's index */
Alexander Duyck88bae712015-03-06 09:54:52 -08001442 pn = node_parent_rcu(pn);
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001443 cindex = get_index(pkey, pn);
1444 }
1445
1446 /* strip the least significant bit from the cindex */
1447 cindex &= cindex - 1;
1448
1449 /* grab pointer for next child node */
Alexander Duyck41b489f2015-03-04 15:02:33 -08001450 cptr = &pn->tnode[cindex];
Stephen Hemmingerc877efb2005-07-19 14:01:51 -07001451 }
Robert Olsson19baf832005-06-21 12:43:18 -07001452 }
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001453
Robert Olsson19baf832005-06-21 12:43:18 -07001454found:
Alexander Duyck71e8b672015-03-04 15:04:03 -08001455 /* this line carries forward the xor from earlier in the function */
1456 index = key ^ n->key;
1457
Alexander Duyck9f9e6362014-12-31 10:55:54 -08001458 /* Step 3: Process the leaf, if that fails fall back to backtracing */
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001459 hlist_for_each_entry_rcu(fa, &n->leaf, fa_list) {
1460 struct fib_info *fi = fa->fa_info;
1461 int nhsel, err;
Alexander Duyck345e9b52014-12-31 10:56:24 -08001462
Alexander Duycka5829f52016-01-28 13:42:24 -08001463 if ((BITS_PER_LONG > KEYLENGTH) || (fa->fa_slen < KEYLENGTH)) {
1464 if (index >= (1ul << fa->fa_slen))
1465 continue;
1466 }
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001467 if (fa->fa_tos && fa->fa_tos != flp->flowi4_tos)
1468 continue;
1469 if (fi->fib_dead)
1470 continue;
1471 if (fa->fa_info->fib_scope < flp->flowi4_scope)
1472 continue;
1473 fib_alias_accessed(fa);
1474 err = fib_props[fa->fa_type].error;
1475 if (unlikely(err < 0)) {
David Ahern4c7e8082019-06-03 20:19:51 -07001476out_reject:
Alexander Duyck345e9b52014-12-31 10:56:24 -08001477#ifdef CONFIG_IP_FIB_TRIE_STATS
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001478 this_cpu_inc(stats->semantic_match_passed);
Alexander Duyck345e9b52014-12-31 10:56:24 -08001479#endif
David Ahern9f323972018-05-23 17:08:47 -07001480 trace_fib_table_lookup(tb->tb_id, flp, NULL, err);
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001481 return err;
1482 }
1483 if (fi->fib_flags & RTNH_F_DEAD)
1484 continue;
David Ahern4c7e8082019-06-03 20:19:51 -07001485
1486 if (unlikely(fi->nh && nexthop_is_blackhole(fi->nh))) {
1487 err = fib_props[RTN_BLACKHOLE].error;
1488 goto out_reject;
1489 }
1490
David Ahern5481d732019-06-03 20:19:49 -07001491 for (nhsel = 0; nhsel < fib_info_num_path(fi); nhsel++) {
David Aherneba618a2019-04-02 14:11:55 -07001492 struct fib_nh_common *nhc = fib_info_nhc(fi, nhsel);
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001493
David Aherneba618a2019-04-02 14:11:55 -07001494 if (nhc->nhc_flags & RTNH_F_DEAD)
Alexander Duyck345e9b52014-12-31 10:56:24 -08001495 continue;
David Aherneba618a2019-04-02 14:11:55 -07001496 if (ip_ignore_linkdown(nhc->nhc_dev) &&
1497 nhc->nhc_flags & RTNH_F_LINKDOWN &&
Andy Gospodarek0eeb0752015-06-23 13:45:37 -04001498 !(fib_flags & FIB_LOOKUP_IGNORE_LINKSTATE))
1499 continue;
David Ahern58189ca2015-09-15 15:10:50 -07001500 if (!(flp->flowi4_flags & FLOWI_FLAG_SKIP_NH_OIF)) {
David Ahern613d09b2015-08-13 14:59:02 -06001501 if (flp->flowi4_oif &&
David Aherneba618a2019-04-02 14:11:55 -07001502 flp->flowi4_oif != nhc->nhc_oif)
David Ahern613d09b2015-08-13 14:59:02 -06001503 continue;
1504 }
Alexander Duyck345e9b52014-12-31 10:56:24 -08001505
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001506 if (!(fib_flags & FIB_LOOKUP_NOREF))
Reshetova, Elena0029c0d2017-07-04 09:35:02 +03001507 refcount_inc(&fi->fib_clntref);
Alexander Duyck345e9b52014-12-31 10:56:24 -08001508
David Ahern6ffd9032017-05-25 10:42:37 -07001509 res->prefix = htonl(n->key);
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001510 res->prefixlen = KEYLENGTH - fa->fa_slen;
1511 res->nh_sel = nhsel;
David Aherneba618a2019-04-02 14:11:55 -07001512 res->nhc = nhc;
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001513 res->type = fa->fa_type;
1514 res->scope = fi->fib_scope;
1515 res->fi = fi;
1516 res->table = tb;
1517 res->fa_head = &n->leaf;
Alexander Duyck345e9b52014-12-31 10:56:24 -08001518#ifdef CONFIG_IP_FIB_TRIE_STATS
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001519 this_cpu_inc(stats->semantic_match_passed);
Alexander Duyck345e9b52014-12-31 10:56:24 -08001520#endif
David Aherneba618a2019-04-02 14:11:55 -07001521 trace_fib_table_lookup(tb->tb_id, flp, nhc, err);
David Ahernf6d3c192015-08-28 08:42:09 -07001522
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001523 return err;
Alexander Duyck345e9b52014-12-31 10:56:24 -08001524 }
Alexander Duyck345e9b52014-12-31 10:56:24 -08001525 }
Alexander Duyck9b6ebad2015-02-25 15:31:44 -08001526#ifdef CONFIG_IP_FIB_TRIE_STATS
1527 this_cpu_inc(stats->semantic_match_miss);
1528#endif
Alexander Duyck345e9b52014-12-31 10:56:24 -08001529 goto backtrace;
Robert Olsson19baf832005-06-21 12:43:18 -07001530}
Florian Westphal6fc01432011-08-25 13:46:12 +02001531EXPORT_SYMBOL_GPL(fib_table_lookup);
Robert Olsson19baf832005-06-21 12:43:18 -07001532
Alexander Duyck35c6eda2015-03-06 09:54:08 -08001533static void fib_remove_alias(struct trie *t, struct key_vector *tp,
1534 struct key_vector *l, struct fib_alias *old)
Alexander Duyckd5d64872015-03-04 15:02:18 -08001535{
1536 /* record the location of the previous list_info entry */
1537 struct hlist_node **pprev = old->fa_list.pprev;
1538 struct fib_alias *fa = hlist_entry(pprev, typeof(*fa), fa_list.next);
1539
1540 /* remove the fib_alias from the list */
1541 hlist_del_rcu(&old->fa_list);
1542
1543 /* if we emptied the list this leaf will be freed and we can sort
1544 * out parent suffix lengths as a part of trie_rebalance
1545 */
1546 if (hlist_empty(&l->leaf)) {
Alexander Duycka52ca622016-12-01 07:27:57 -05001547 if (tp->slen == l->slen)
1548 node_pull_suffix(tp, tp->pos);
Alexander Duyck88bae712015-03-06 09:54:52 -08001549 put_child_root(tp, l->key, NULL);
Alexander Duyckd5d64872015-03-04 15:02:18 -08001550 node_free(l);
1551 trie_rebalance(t, tp);
1552 return;
1553 }
1554
1555 /* only access fa if it is pointing at the last valid hlist_node */
1556 if (*pprev)
1557 return;
1558
1559 /* update the trie with the latest suffix length */
1560 l->slen = fa->fa_slen;
Alexander Duyck1a239172016-12-01 07:27:52 -05001561 node_pull_suffix(tp, fa->fa_slen);
Alexander Duyckd5d64872015-03-04 15:02:18 -08001562}
1563
Ido Schimmelf613b6e2019-12-14 17:53:11 +02001564static void fib_notify_alias_delete(struct net *net, u32 key,
1565 struct hlist_head *fah,
1566 struct fib_alias *fa_to_delete,
1567 struct netlink_ext_ack *extack)
1568{
1569 struct fib_alias *fa_next, *fa_to_notify;
1570 u32 tb_id = fa_to_delete->tb_id;
1571 u8 slen = fa_to_delete->fa_slen;
1572 enum fib_event_type fib_event;
1573
1574 /* Do not notify if we do not care about the route. */
1575 if (fib_find_alias(fah, slen, 0, 0, tb_id, true) != fa_to_delete)
1576 return;
1577
1578 /* Determine if the route should be replaced by the next route in the
1579 * list.
1580 */
1581 fa_next = hlist_entry_safe(fa_to_delete->fa_list.next,
1582 struct fib_alias, fa_list);
1583 if (fa_next && fa_next->fa_slen == slen && fa_next->tb_id == tb_id) {
Ido Schimmel446f7392019-12-14 17:53:15 +02001584 fib_event = FIB_EVENT_ENTRY_REPLACE;
Ido Schimmelf613b6e2019-12-14 17:53:11 +02001585 fa_to_notify = fa_next;
1586 } else {
Ido Schimmel446f7392019-12-14 17:53:15 +02001587 fib_event = FIB_EVENT_ENTRY_DEL;
Ido Schimmelf613b6e2019-12-14 17:53:11 +02001588 fa_to_notify = fa_to_delete;
1589 }
1590 call_fib_entry_notifiers(net, fib_event, key, KEYLENGTH - slen,
1591 fa_to_notify, extack);
1592}
1593
Alexander Duyckd5d64872015-03-04 15:02:18 -08001594/* Caller must hold RTNL. */
Jiri Pirkob90eb752016-09-26 12:52:29 +02001595int fib_table_delete(struct net *net, struct fib_table *tb,
David Ahern78055992017-05-27 16:19:26 -06001596 struct fib_config *cfg, struct netlink_ext_ack *extack)
Robert Olsson19baf832005-06-21 12:43:18 -07001597{
1598 struct trie *t = (struct trie *) tb->tb_data;
Robert Olsson19baf832005-06-21 12:43:18 -07001599 struct fib_alias *fa, *fa_to_delete;
Alexander Duyck35c6eda2015-03-06 09:54:08 -08001600 struct key_vector *l, *tp;
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001601 u8 plen = cfg->fc_dst_len;
Alexander Duyck79e5ad22015-02-25 15:31:51 -08001602 u8 slen = KEYLENGTH - plen;
Alexander Duyckd4a975e2015-03-04 15:01:59 -08001603 u8 tos = cfg->fc_tos;
1604 u32 key;
Olof Johansson91b9a272005-08-09 20:24:39 -07001605
Thomas Graf4e902c52006-08-17 18:14:52 -07001606 key = ntohl(cfg->fc_dst);
Robert Olsson19baf832005-06-21 12:43:18 -07001607
David Ahern78055992017-05-27 16:19:26 -06001608 if (!fib_valid_key_len(key, plen, extack))
Robert Olsson19baf832005-06-21 12:43:18 -07001609 return -EINVAL;
1610
Alexander Duyckd4a975e2015-03-04 15:01:59 -08001611 l = fib_find_node(t, &tp, key);
Stephen Hemmingerc877efb2005-07-19 14:01:51 -07001612 if (!l)
Robert Olsson19baf832005-06-21 12:43:18 -07001613 return -ESRCH;
1614
Ido Schimmelb5fc0432019-12-14 17:53:08 +02001615 fa = fib_find_alias(&l->leaf, slen, tos, 0, tb->tb_id, false);
Robert Olsson19baf832005-06-21 12:43:18 -07001616 if (!fa)
1617 return -ESRCH;
1618
Stephen Hemminger0c7770c2005-08-23 21:59:41 -07001619 pr_debug("Deleting %08x/%d tos=%d t=%p\n", key, plen, tos, t);
Robert Olsson19baf832005-06-21 12:43:18 -07001620
1621 fa_to_delete = NULL;
Alexander Duyck56315f92015-02-25 15:31:31 -08001622 hlist_for_each_entry_from(fa, fa_list) {
Robert Olsson19baf832005-06-21 12:43:18 -07001623 struct fib_info *fi = fa->fa_info;
1624
Alexander Duyck0b65bd92015-03-12 14:46:29 -07001625 if ((fa->fa_slen != slen) ||
1626 (fa->tb_id != tb->tb_id) ||
1627 (fa->fa_tos != tos))
Robert Olsson19baf832005-06-21 12:43:18 -07001628 break;
1629
Thomas Graf4e902c52006-08-17 18:14:52 -07001630 if ((!cfg->fc_type || fa->fa_type == cfg->fc_type) &&
1631 (cfg->fc_scope == RT_SCOPE_NOWHERE ||
David S. Miller37e826c2011-03-24 18:06:47 -07001632 fa->fa_info->fib_scope == cfg->fc_scope) &&
Julian Anastasov74cb3c12011-03-19 12:13:46 +00001633 (!cfg->fc_prefsrc ||
1634 fi->fib_prefsrc == cfg->fc_prefsrc) &&
Thomas Graf4e902c52006-08-17 18:14:52 -07001635 (!cfg->fc_protocol ||
1636 fi->fib_protocol == cfg->fc_protocol) &&
Xin Long5f9ae3d2017-08-23 10:07:26 +08001637 fib_nh_match(cfg, fi, extack) == 0 &&
1638 fib_metrics_match(cfg, fi)) {
Robert Olsson19baf832005-06-21 12:43:18 -07001639 fa_to_delete = fa;
1640 break;
1641 }
1642 }
1643
Olof Johansson91b9a272005-08-09 20:24:39 -07001644 if (!fa_to_delete)
1645 return -ESRCH;
Robert Olsson19baf832005-06-21 12:43:18 -07001646
Ido Schimmelf613b6e2019-12-14 17:53:11 +02001647 fib_notify_alias_delete(net, key, &l->leaf, fa_to_delete, extack);
Alexander Duyckd5d64872015-03-04 15:02:18 -08001648 rtmsg_fib(RTM_DELROUTE, htonl(key), fa_to_delete, plen, tb->tb_id,
Milan Kocianb8f55832007-05-23 14:55:06 -07001649 &cfg->fc_nlinfo, 0);
Robert Olsson19baf832005-06-21 12:43:18 -07001650
David S. Miller21d8c492011-04-14 14:49:37 -07001651 if (!plen)
1652 tb->tb_num_default--;
1653
Alexander Duyckd5d64872015-03-04 15:02:18 -08001654 fib_remove_alias(t, tp, l, fa_to_delete);
Alexander Duyck7289e6d2015-03-04 14:58:19 -08001655
Alexander Duyckd5d64872015-03-04 15:02:18 -08001656 if (fa_to_delete->fa_state & FA_S_ACCESSED)
Nicolas Dichtel4ccfe6d2012-09-07 00:45:29 +00001657 rt_cache_flush(cfg->fc_nlinfo.nl_net);
Olof Johansson91b9a272005-08-09 20:24:39 -07001658
Alexander Duyckd5d64872015-03-04 15:02:18 -08001659 fib_release_info(fa_to_delete->fa_info);
1660 alias_free_mem_rcu(fa_to_delete);
Olof Johansson91b9a272005-08-09 20:24:39 -07001661 return 0;
Robert Olsson19baf832005-06-21 12:43:18 -07001662}
1663
Alexander Duyck8be33e92015-03-04 14:59:19 -08001664/* Scan for the next leaf starting at the provided key value */
Alexander Duyck35c6eda2015-03-06 09:54:08 -08001665static struct key_vector *leaf_walk_rcu(struct key_vector **tn, t_key key)
Robert Olsson19baf832005-06-21 12:43:18 -07001666{
Alexander Duyck35c6eda2015-03-06 09:54:08 -08001667 struct key_vector *pn, *n = *tn;
Alexander Duyck8be33e92015-03-04 14:59:19 -08001668 unsigned long cindex;
Robert Olsson19baf832005-06-21 12:43:18 -07001669
Alexander Duyck8be33e92015-03-04 14:59:19 -08001670 /* this loop is meant to try and find the key in the trie */
Alexander Duyck88bae712015-03-06 09:54:52 -08001671 do {
1672 /* record parent and next child index */
1673 pn = n;
Alexander Duyckc2229fe2015-10-27 15:06:45 -07001674 cindex = (key > pn->key) ? get_index(key, pn) : 0;
Alexander Duyck88bae712015-03-06 09:54:52 -08001675
1676 if (cindex >> pn->bits)
1677 break;
1678
1679 /* descend into the next child */
1680 n = get_child_rcu(pn, cindex++);
1681 if (!n)
1682 break;
Stephen Hemminger82cfbb02008-01-22 21:55:32 -08001683
Alexander Duyck8be33e92015-03-04 14:59:19 -08001684 /* guarantee forward progress on the keys */
1685 if (IS_LEAF(n) && (n->key >= key))
1686 goto found;
Alexander Duyck88bae712015-03-06 09:54:52 -08001687 } while (IS_TNODE(n));
Alexander Duyck8be33e92015-03-04 14:59:19 -08001688
1689 /* this loop will search for the next leaf with a greater key */
Alexander Duyck88bae712015-03-06 09:54:52 -08001690 while (!IS_TRIE(pn)) {
Alexander Duyck8be33e92015-03-04 14:59:19 -08001691 /* if we exhausted the parent node we will need to climb */
1692 if (cindex >= (1ul << pn->bits)) {
1693 t_key pkey = pn->key;
1694
1695 pn = node_parent_rcu(pn);
Alexander Duyck8be33e92015-03-04 14:59:19 -08001696 cindex = get_index(pkey, pn) + 1;
1697 continue;
Robert Olsson19baf832005-06-21 12:43:18 -07001698 }
Stephen Hemminger82cfbb02008-01-22 21:55:32 -08001699
Alexander Duyck8be33e92015-03-04 14:59:19 -08001700 /* grab the next available node */
Alexander Duyck754baf8d2015-03-06 09:54:14 -08001701 n = get_child_rcu(pn, cindex++);
Alexander Duyck8be33e92015-03-04 14:59:19 -08001702 if (!n)
1703 continue;
Stephen Hemminger82cfbb02008-01-22 21:55:32 -08001704
Alexander Duyck8be33e92015-03-04 14:59:19 -08001705 /* no need to compare keys since we bumped the index */
1706 if (IS_LEAF(n))
1707 goto found;
1708
1709 /* Rescan start scanning in new node */
1710 pn = n;
1711 cindex = 0;
1712 }
1713
1714 *tn = pn;
Stephen Hemminger82cfbb02008-01-22 21:55:32 -08001715 return NULL; /* Root of trie */
Alexander Duyck8be33e92015-03-04 14:59:19 -08001716found:
1717 /* if we are at the limit for keys just return NULL for the tnode */
Alexander Duyck88bae712015-03-06 09:54:52 -08001718 *tn = pn;
Alexander Duyck8be33e92015-03-04 14:59:19 -08001719 return n;
Stephen Hemminger82cfbb02008-01-22 21:55:32 -08001720}
1721
Alexander Duyck0ddcf432015-03-06 13:47:00 -08001722static void fib_trie_free(struct fib_table *tb)
1723{
1724 struct trie *t = (struct trie *)tb->tb_data;
1725 struct key_vector *pn = t->kv;
1726 unsigned long cindex = 1;
1727 struct hlist_node *tmp;
1728 struct fib_alias *fa;
1729
1730 /* walk trie in reverse order and free everything */
1731 for (;;) {
1732 struct key_vector *n;
1733
1734 if (!(cindex--)) {
1735 t_key pkey = pn->key;
1736
1737 if (IS_TRIE(pn))
1738 break;
1739
1740 n = pn;
1741 pn = node_parent(pn);
1742
1743 /* drop emptied tnode */
1744 put_child_root(pn, n->key, NULL);
1745 node_free(n);
1746
1747 cindex = get_index(pkey, pn);
1748
1749 continue;
1750 }
1751
1752 /* grab the next available node */
1753 n = get_child(pn, cindex);
1754 if (!n)
1755 continue;
1756
1757 if (IS_TNODE(n)) {
1758 /* record pn and cindex for leaf walking */
1759 pn = n;
1760 cindex = 1ul << n->bits;
1761
1762 continue;
1763 }
1764
1765 hlist_for_each_entry_safe(fa, tmp, &n->leaf, fa_list) {
1766 hlist_del_rcu(&fa->fa_list);
1767 alias_free_mem_rcu(fa);
1768 }
1769
1770 put_child_root(pn, n->key, NULL);
1771 node_free(n);
1772 }
1773
1774#ifdef CONFIG_IP_FIB_TRIE_STATS
1775 free_percpu(t->stats);
1776#endif
1777 kfree(tb);
1778}
1779
1780struct fib_table *fib_trie_unmerge(struct fib_table *oldtb)
1781{
1782 struct trie *ot = (struct trie *)oldtb->tb_data;
1783 struct key_vector *l, *tp = ot->kv;
1784 struct fib_table *local_tb;
1785 struct fib_alias *fa;
1786 struct trie *lt;
1787 t_key key = 0;
1788
1789 if (oldtb->tb_data == oldtb->__data)
1790 return oldtb;
1791
1792 local_tb = fib_trie_table(RT_TABLE_LOCAL, NULL);
1793 if (!local_tb)
1794 return NULL;
1795
1796 lt = (struct trie *)local_tb->tb_data;
1797
1798 while ((l = leaf_walk_rcu(&tp, key)) != NULL) {
1799 struct key_vector *local_l = NULL, *local_tp;
1800
1801 hlist_for_each_entry_rcu(fa, &l->leaf, fa_list) {
1802 struct fib_alias *new_fa;
1803
1804 if (local_tb->tb_id != fa->tb_id)
1805 continue;
1806
1807 /* clone fa for new local table */
1808 new_fa = kmem_cache_alloc(fn_alias_kmem, GFP_KERNEL);
1809 if (!new_fa)
1810 goto out;
1811
1812 memcpy(new_fa, fa, sizeof(*fa));
1813
1814 /* insert clone into table */
1815 if (!local_l)
1816 local_l = fib_find_node(lt, &local_tp, l->key);
1817
1818 if (fib_insert_alias(lt, local_tp, local_l, new_fa,
Alexander Duyck3114cdf2016-11-15 05:46:12 -05001819 NULL, l->key)) {
1820 kmem_cache_free(fn_alias_kmem, new_fa);
Alexander Duyck0ddcf432015-03-06 13:47:00 -08001821 goto out;
Alexander Duyck3114cdf2016-11-15 05:46:12 -05001822 }
Alexander Duyck0ddcf432015-03-06 13:47:00 -08001823 }
1824
1825 /* stop loop if key wrapped back to 0 */
1826 key = l->key + 1;
1827 if (key < l->key)
1828 break;
1829 }
1830
1831 return local_tb;
1832out:
1833 fib_trie_free(local_tb);
1834
1835 return NULL;
1836}
1837
Alexander Duyck3b709332016-11-15 05:46:06 -05001838/* Caller must hold RTNL */
1839void fib_table_flush_external(struct fib_table *tb)
1840{
1841 struct trie *t = (struct trie *)tb->tb_data;
1842 struct key_vector *pn = t->kv;
1843 unsigned long cindex = 1;
1844 struct hlist_node *tmp;
1845 struct fib_alias *fa;
1846
1847 /* walk trie in reverse order */
1848 for (;;) {
1849 unsigned char slen = 0;
1850 struct key_vector *n;
1851
1852 if (!(cindex--)) {
1853 t_key pkey = pn->key;
1854
1855 /* cannot resize the trie vector */
1856 if (IS_TRIE(pn))
1857 break;
1858
Alexander Duycka52ca622016-12-01 07:27:57 -05001859 /* update the suffix to address pulled leaves */
1860 if (pn->slen > pn->pos)
1861 update_suffix(pn);
1862
Alexander Duyck3b709332016-11-15 05:46:06 -05001863 /* resize completed node */
1864 pn = resize(t, pn);
1865 cindex = get_index(pkey, pn);
1866
1867 continue;
1868 }
1869
1870 /* grab the next available node */
1871 n = get_child(pn, cindex);
1872 if (!n)
1873 continue;
1874
1875 if (IS_TNODE(n)) {
1876 /* record pn and cindex for leaf walking */
1877 pn = n;
1878 cindex = 1ul << n->bits;
1879
1880 continue;
1881 }
1882
1883 hlist_for_each_entry_safe(fa, tmp, &n->leaf, fa_list) {
1884 /* if alias was cloned to local then we just
1885 * need to remove the local copy from main
1886 */
1887 if (tb->tb_id != fa->tb_id) {
1888 hlist_del_rcu(&fa->fa_list);
1889 alias_free_mem_rcu(fa);
1890 continue;
1891 }
1892
1893 /* record local slen */
1894 slen = fa->fa_slen;
1895 }
1896
1897 /* update leaf slen */
1898 n->slen = slen;
1899
1900 if (hlist_empty(&n->leaf)) {
1901 put_child_root(pn, n->key, NULL);
1902 node_free(n);
1903 }
1904 }
1905}
1906
Alexander Duyck8be33e92015-03-04 14:59:19 -08001907/* Caller must hold RTNL. */
Ido Schimmelf97f4dd2019-01-09 09:57:39 +00001908int fib_table_flush(struct net *net, struct fib_table *tb, bool flush_all)
Robert Olsson19baf832005-06-21 12:43:18 -07001909{
Alexander Duyck7289e6d2015-03-04 14:58:19 -08001910 struct trie *t = (struct trie *)tb->tb_data;
Alexander Duyck88bae712015-03-06 09:54:52 -08001911 struct key_vector *pn = t->kv;
1912 unsigned long cindex = 1;
Alexander Duyck7289e6d2015-03-04 14:58:19 -08001913 struct hlist_node *tmp;
1914 struct fib_alias *fa;
Stephen Hemminger82cfbb02008-01-22 21:55:32 -08001915 int found = 0;
Robert Olsson19baf832005-06-21 12:43:18 -07001916
Alexander Duyck88bae712015-03-06 09:54:52 -08001917 /* walk trie in reverse order */
1918 for (;;) {
1919 unsigned char slen = 0;
1920 struct key_vector *n;
Robert Olsson19baf832005-06-21 12:43:18 -07001921
Alexander Duyck88bae712015-03-06 09:54:52 -08001922 if (!(cindex--)) {
1923 t_key pkey = pn->key;
Alexander Duyck7289e6d2015-03-04 14:58:19 -08001924
Alexander Duyck88bae712015-03-06 09:54:52 -08001925 /* cannot resize the trie vector */
1926 if (IS_TRIE(pn))
1927 break;
Alexander Duyck7289e6d2015-03-04 14:58:19 -08001928
Alexander Duycka52ca622016-12-01 07:27:57 -05001929 /* update the suffix to address pulled leaves */
1930 if (pn->slen > pn->pos)
1931 update_suffix(pn);
1932
Alexander Duyck88bae712015-03-06 09:54:52 -08001933 /* resize completed node */
1934 pn = resize(t, pn);
1935 cindex = get_index(pkey, pn);
Alexander Duyck7289e6d2015-03-04 14:58:19 -08001936
Alexander Duyck88bae712015-03-06 09:54:52 -08001937 continue;
1938 }
Alexander Duyck7289e6d2015-03-04 14:58:19 -08001939
Alexander Duyck88bae712015-03-06 09:54:52 -08001940 /* grab the next available node */
1941 n = get_child(pn, cindex);
1942 if (!n)
1943 continue;
Alexander Duyck7289e6d2015-03-04 14:58:19 -08001944
Alexander Duyck88bae712015-03-06 09:54:52 -08001945 if (IS_TNODE(n)) {
1946 /* record pn and cindex for leaf walking */
1947 pn = n;
1948 cindex = 1ul << n->bits;
1949
1950 continue;
1951 }
1952
1953 hlist_for_each_entry_safe(fa, tmp, &n->leaf, fa_list) {
1954 struct fib_info *fi = fa->fa_info;
1955
Ido Schimmelf97f4dd2019-01-09 09:57:39 +00001956 if (!fi || tb->tb_id != fa->tb_id ||
1957 (!(fi->fib_flags & RTNH_F_DEAD) &&
1958 !fib_props[fa->fa_type].error)) {
1959 slen = fa->fa_slen;
1960 continue;
1961 }
1962
1963 /* Do not flush error routes if network namespace is
1964 * not being dismantled
1965 */
1966 if (!flush_all && fib_props[fa->fa_type].error) {
Alexander Duyck88bae712015-03-06 09:54:52 -08001967 slen = fa->fa_slen;
1968 continue;
Alexander Duyck7289e6d2015-03-04 14:58:19 -08001969 }
1970
Ido Schimmel525bc342019-12-14 17:53:12 +02001971 fib_notify_alias_delete(net, n->key, &n->leaf, fa,
1972 NULL);
Alexander Duyck7289e6d2015-03-04 14:58:19 -08001973 hlist_del_rcu(&fa->fa_list);
1974 fib_release_info(fa->fa_info);
1975 alias_free_mem_rcu(fa);
1976 found++;
Alexander Duyck64c62722015-01-22 15:51:45 -08001977 }
1978
Alexander Duyck88bae712015-03-06 09:54:52 -08001979 /* update leaf slen */
1980 n->slen = slen;
1981
1982 if (hlist_empty(&n->leaf)) {
1983 put_child_root(pn, n->key, NULL);
1984 node_free(n);
Alexander Duyck88bae712015-03-06 09:54:52 -08001985 }
Robert Olsson19baf832005-06-21 12:43:18 -07001986 }
1987
Stephen Hemminger0c7770c2005-08-23 21:59:41 -07001988 pr_debug("trie_flush found=%d\n", found);
Robert Olsson19baf832005-06-21 12:43:18 -07001989 return found;
1990}
1991
David Ahern1bff1a02019-05-22 12:04:42 -07001992/* derived from fib_trie_free */
1993static void __fib_info_notify_update(struct net *net, struct fib_table *tb,
1994 struct nl_info *info)
1995{
1996 struct trie *t = (struct trie *)tb->tb_data;
1997 struct key_vector *pn = t->kv;
1998 unsigned long cindex = 1;
1999 struct fib_alias *fa;
2000
2001 for (;;) {
2002 struct key_vector *n;
2003
2004 if (!(cindex--)) {
2005 t_key pkey = pn->key;
2006
2007 if (IS_TRIE(pn))
2008 break;
2009
David Ahern1bff1a02019-05-22 12:04:42 -07002010 pn = node_parent(pn);
2011 cindex = get_index(pkey, pn);
2012 continue;
2013 }
2014
2015 /* grab the next available node */
2016 n = get_child(pn, cindex);
2017 if (!n)
2018 continue;
2019
2020 if (IS_TNODE(n)) {
2021 /* record pn and cindex for leaf walking */
2022 pn = n;
2023 cindex = 1ul << n->bits;
2024
2025 continue;
2026 }
2027
2028 hlist_for_each_entry(fa, &n->leaf, fa_list) {
2029 struct fib_info *fi = fa->fa_info;
2030
2031 if (!fi || !fi->nh_updated || fa->tb_id != tb->tb_id)
2032 continue;
2033
2034 rtmsg_fib(RTM_NEWROUTE, htonl(n->key), fa,
2035 KEYLENGTH - fa->fa_slen, tb->tb_id,
2036 info, NLM_F_REPLACE);
2037
2038 /* call_fib_entry_notifiers will be removed when
2039 * in-kernel notifier is implemented and supported
2040 * for nexthop objects
2041 */
2042 call_fib_entry_notifiers(net, FIB_EVENT_ENTRY_REPLACE,
2043 n->key,
2044 KEYLENGTH - fa->fa_slen, fa,
2045 NULL);
2046 }
2047 }
2048}
2049
2050void fib_info_notify_update(struct net *net, struct nl_info *info)
2051{
2052 unsigned int h;
2053
2054 for (h = 0; h < FIB_TABLE_HASHSZ; h++) {
2055 struct hlist_head *head = &net->ipv4.fib_table_hash[h];
2056 struct fib_table *tb;
2057
2058 hlist_for_each_entry_rcu(tb, head, tb_hlist)
2059 __fib_info_notify_update(net, tb, info);
2060 }
2061}
2062
Jiri Pirko55c894f2019-10-03 11:49:28 +02002063static int fib_leaf_notify(struct key_vector *l, struct fib_table *tb,
Jiri Pirkob7a59552019-10-03 11:49:30 +02002064 struct notifier_block *nb,
2065 struct netlink_ext_ack *extack)
Ido Schimmelc3852ef2016-12-03 16:45:07 +01002066{
2067 struct fib_alias *fa;
Ido Schimmel20d15652019-12-14 17:53:13 +02002068 int last_slen = -1;
Jiri Pirko55c894f2019-10-03 11:49:28 +02002069 int err;
Ido Schimmelc3852ef2016-12-03 16:45:07 +01002070
2071 hlist_for_each_entry_rcu(fa, &l->leaf, fa_list) {
2072 struct fib_info *fi = fa->fa_info;
2073
2074 if (!fi)
2075 continue;
2076
2077 /* local and main table can share the same trie,
2078 * so don't notify twice for the same entry.
2079 */
2080 if (tb->tb_id != fa->tb_id)
2081 continue;
2082
Ido Schimmel20d15652019-12-14 17:53:13 +02002083 if (fa->fa_slen == last_slen)
2084 continue;
2085
2086 last_slen = fa->fa_slen;
Ido Schimmel446f7392019-12-14 17:53:15 +02002087 err = call_fib_entry_notifier(nb, FIB_EVENT_ENTRY_REPLACE,
Ido Schimmel20d15652019-12-14 17:53:13 +02002088 l->key, KEYLENGTH - fa->fa_slen,
2089 fa, extack);
2090 if (err)
2091 return err;
Ido Schimmelc3852ef2016-12-03 16:45:07 +01002092 }
Jiri Pirko55c894f2019-10-03 11:49:28 +02002093 return 0;
Ido Schimmelc3852ef2016-12-03 16:45:07 +01002094}
2095
Jiri Pirkob7a59552019-10-03 11:49:30 +02002096static int fib_table_notify(struct fib_table *tb, struct notifier_block *nb,
2097 struct netlink_ext_ack *extack)
Ido Schimmelc3852ef2016-12-03 16:45:07 +01002098{
2099 struct trie *t = (struct trie *)tb->tb_data;
2100 struct key_vector *l, *tp = t->kv;
2101 t_key key = 0;
Jiri Pirko55c894f2019-10-03 11:49:28 +02002102 int err;
Ido Schimmelc3852ef2016-12-03 16:45:07 +01002103
2104 while ((l = leaf_walk_rcu(&tp, key)) != NULL) {
Jiri Pirkob7a59552019-10-03 11:49:30 +02002105 err = fib_leaf_notify(l, tb, nb, extack);
Jiri Pirko55c894f2019-10-03 11:49:28 +02002106 if (err)
2107 return err;
Ido Schimmelc3852ef2016-12-03 16:45:07 +01002108
2109 key = l->key + 1;
2110 /* stop in case of wrap around */
2111 if (key < l->key)
2112 break;
2113 }
Jiri Pirko55c894f2019-10-03 11:49:28 +02002114 return 0;
Ido Schimmelc3852ef2016-12-03 16:45:07 +01002115}
2116
Jiri Pirkob7a59552019-10-03 11:49:30 +02002117int fib_notify(struct net *net, struct notifier_block *nb,
2118 struct netlink_ext_ack *extack)
Ido Schimmelc3852ef2016-12-03 16:45:07 +01002119{
2120 unsigned int h;
Jiri Pirko55c894f2019-10-03 11:49:28 +02002121 int err;
Ido Schimmelc3852ef2016-12-03 16:45:07 +01002122
2123 for (h = 0; h < FIB_TABLE_HASHSZ; h++) {
2124 struct hlist_head *head = &net->ipv4.fib_table_hash[h];
2125 struct fib_table *tb;
2126
Jiri Pirko55c894f2019-10-03 11:49:28 +02002127 hlist_for_each_entry_rcu(tb, head, tb_hlist) {
Jiri Pirkob7a59552019-10-03 11:49:30 +02002128 err = fib_table_notify(tb, nb, extack);
Jiri Pirko55c894f2019-10-03 11:49:28 +02002129 if (err)
2130 return err;
2131 }
Ido Schimmelc3852ef2016-12-03 16:45:07 +01002132 }
Jiri Pirko55c894f2019-10-03 11:49:28 +02002133 return 0;
Ido Schimmelc3852ef2016-12-03 16:45:07 +01002134}
2135
Alexander Duycka7e53532015-03-04 15:02:44 -08002136static void __trie_free_rcu(struct rcu_head *head)
Pavel Emelyanov4aa2c462010-10-28 02:00:43 +00002137{
Alexander Duycka7e53532015-03-04 15:02:44 -08002138 struct fib_table *tb = container_of(head, struct fib_table, rcu);
Alexander Duyck8274a972014-12-31 10:55:29 -08002139#ifdef CONFIG_IP_FIB_TRIE_STATS
2140 struct trie *t = (struct trie *)tb->tb_data;
2141
Alexander Duyck0ddcf432015-03-06 13:47:00 -08002142 if (tb->tb_data == tb->__data)
2143 free_percpu(t->stats);
Alexander Duyck8274a972014-12-31 10:55:29 -08002144#endif /* CONFIG_IP_FIB_TRIE_STATS */
Pavel Emelyanov4aa2c462010-10-28 02:00:43 +00002145 kfree(tb);
2146}
2147
Alexander Duycka7e53532015-03-04 15:02:44 -08002148void fib_free_table(struct fib_table *tb)
2149{
2150 call_rcu(&tb->rcu, __trie_free_rcu);
2151}
2152
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002153static int fn_trie_dump_leaf(struct key_vector *l, struct fib_table *tb,
David Ahern18a80212018-10-15 18:56:43 -07002154 struct sk_buff *skb, struct netlink_callback *cb,
2155 struct fib_dump_filter *filter)
Robert Olsson19baf832005-06-21 12:43:18 -07002156{
David Ahern18a80212018-10-15 18:56:43 -07002157 unsigned int flags = NLM_F_MULTI;
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002158 __be32 xkey = htonl(l->key);
Stefano Brivioee289062019-06-21 17:45:23 +02002159 int i, s_i, i_fa, s_fa, err;
Robert Olsson19baf832005-06-21 12:43:18 -07002160 struct fib_alias *fa;
Robert Olsson19baf832005-06-21 12:43:18 -07002161
Stefano Brivioee289062019-06-21 17:45:23 +02002162 if (filter->filter_set ||
2163 !filter->dump_exceptions || !filter->dump_routes)
David Ahern18a80212018-10-15 18:56:43 -07002164 flags |= NLM_F_DUMP_FILTERED;
2165
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002166 s_i = cb->args[4];
Stefano Brivioee289062019-06-21 17:45:23 +02002167 s_fa = cb->args[5];
Robert Olsson19baf832005-06-21 12:43:18 -07002168 i = 0;
2169
Robert Olsson2373ce12005-08-25 13:01:29 -07002170 /* rcu_read_lock is hold by caller */
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002171 hlist_for_each_entry_rcu(fa, &l->leaf, fa_list) {
Stefano Brivioee289062019-06-21 17:45:23 +02002172 struct fib_info *fi = fa->fa_info;
David Ahernf6c57752017-05-15 23:19:17 -07002173
David Ahern18a80212018-10-15 18:56:43 -07002174 if (i < s_i)
2175 goto next;
Robert Olsson19baf832005-06-21 12:43:18 -07002176
Stefano Brivioee289062019-06-21 17:45:23 +02002177 i_fa = 0;
2178
David Ahern18a80212018-10-15 18:56:43 -07002179 if (tb->tb_id != fa->tb_id)
2180 goto next;
2181
2182 if (filter->filter_set) {
2183 if (filter->rt_type && fa->fa_type != filter->rt_type)
2184 goto next;
2185
2186 if ((filter->protocol &&
Stefano Brivioee289062019-06-21 17:45:23 +02002187 fi->fib_protocol != filter->protocol))
David Ahern18a80212018-10-15 18:56:43 -07002188 goto next;
2189
2190 if (filter->dev &&
Stefano Brivioee289062019-06-21 17:45:23 +02002191 !fib_info_nh_uses_dev(fi, filter->dev))
David Ahern18a80212018-10-15 18:56:43 -07002192 goto next;
Alexander Duyck0ddcf432015-03-06 13:47:00 -08002193 }
2194
Stefano Brivio885b8b42019-06-29 19:55:08 +02002195 if (filter->dump_routes) {
2196 if (!s_fa) {
2197 err = fib_dump_info(skb,
2198 NETLINK_CB(cb->skb).portid,
2199 cb->nlh->nlmsg_seq,
2200 RTM_NEWROUTE,
2201 tb->tb_id, fa->fa_type,
2202 xkey,
2203 KEYLENGTH - fa->fa_slen,
2204 fa->fa_tos, fi, flags);
2205 if (err < 0)
2206 goto stop;
2207 }
2208
Stefano Brivioee289062019-06-21 17:45:23 +02002209 i_fa++;
Robert Olsson19baf832005-06-21 12:43:18 -07002210 }
Stefano Brivioee289062019-06-21 17:45:23 +02002211
2212 if (filter->dump_exceptions) {
2213 err = fib_dump_info_fnhe(skb, cb, tb->tb_id, fi,
John Fastabende93fb3e2019-08-23 17:11:38 -07002214 &i_fa, s_fa, flags);
Stefano Brivioee289062019-06-21 17:45:23 +02002215 if (err < 0)
2216 goto stop;
2217 }
2218
David Ahern18a80212018-10-15 18:56:43 -07002219next:
Stephen Hemmingera88ee222008-01-22 21:56:11 -08002220 i++;
Robert Olsson19baf832005-06-21 12:43:18 -07002221 }
Stephen Hemmingera88ee222008-01-22 21:56:11 -08002222
Stephen Hemminger71d67e62008-01-31 16:45:47 -08002223 cb->args[4] = i;
Robert Olsson19baf832005-06-21 12:43:18 -07002224 return skb->len;
Stefano Brivioee289062019-06-21 17:45:23 +02002225
2226stop:
2227 cb->args[4] = i;
2228 cb->args[5] = i_fa;
2229 return err;
Robert Olsson19baf832005-06-21 12:43:18 -07002230}
2231
Alexander Duycka7e53532015-03-04 15:02:44 -08002232/* rcu_read_lock needs to be hold by caller from readside */
Stephen Hemminger16c6cf82009-09-20 10:35:36 +00002233int fib_table_dump(struct fib_table *tb, struct sk_buff *skb,
David Ahern18a80212018-10-15 18:56:43 -07002234 struct netlink_callback *cb, struct fib_dump_filter *filter)
Robert Olsson19baf832005-06-21 12:43:18 -07002235{
Alexander Duyck8be33e92015-03-04 14:59:19 -08002236 struct trie *t = (struct trie *)tb->tb_data;
Alexander Duyck88bae712015-03-06 09:54:52 -08002237 struct key_vector *l, *tp = t->kv;
Stephen Hemmingerd5ce8a02008-01-22 21:57:22 -08002238 /* Dump starting at last key.
2239 * Note: 0.0.0.0/0 (ie default) is first key.
2240 */
Alexander Duyck8be33e92015-03-04 14:59:19 -08002241 int count = cb->args[2];
2242 t_key key = cb->args[3];
Stephen Hemmingera88ee222008-01-22 21:56:11 -08002243
Alexander Duyck8be33e92015-03-04 14:59:19 -08002244 while ((l = leaf_walk_rcu(&tp, key)) != NULL) {
David Ahernf6c57752017-05-15 23:19:17 -07002245 int err;
2246
David Ahern18a80212018-10-15 18:56:43 -07002247 err = fn_trie_dump_leaf(l, tb, skb, cb, filter);
David Ahernf6c57752017-05-15 23:19:17 -07002248 if (err < 0) {
Alexander Duyck8be33e92015-03-04 14:59:19 -08002249 cb->args[3] = key;
2250 cb->args[2] = count;
David Ahernf6c57752017-05-15 23:19:17 -07002251 return err;
Robert Olsson19baf832005-06-21 12:43:18 -07002252 }
Stephen Hemmingerd5ce8a02008-01-22 21:57:22 -08002253
Stephen Hemminger71d67e62008-01-31 16:45:47 -08002254 ++count;
Alexander Duyck8be33e92015-03-04 14:59:19 -08002255 key = l->key + 1;
2256
Stephen Hemminger71d67e62008-01-31 16:45:47 -08002257 memset(&cb->args[4], 0,
2258 sizeof(cb->args) - 4*sizeof(cb->args[0]));
Alexander Duyck8be33e92015-03-04 14:59:19 -08002259
2260 /* stop loop if key wrapped back to 0 */
2261 if (key < l->key)
2262 break;
Robert Olsson19baf832005-06-21 12:43:18 -07002263 }
Alexander Duyck8be33e92015-03-04 14:59:19 -08002264
Alexander Duyck8be33e92015-03-04 14:59:19 -08002265 cb->args[3] = key;
2266 cb->args[2] = count;
2267
Robert Olsson19baf832005-06-21 12:43:18 -07002268 return skb->len;
Robert Olsson19baf832005-06-21 12:43:18 -07002269}
2270
David S. Miller5348ba82011-02-01 15:30:56 -08002271void __init fib_trie_init(void)
Stephen Hemminger7f9b8052008-01-14 23:14:20 -08002272{
Stephen Hemmingera07f5f52008-01-22 21:53:36 -08002273 fn_alias_kmem = kmem_cache_create("ip_fib_alias",
2274 sizeof(struct fib_alias),
Stephen Hemmingerbc3c8c12008-01-22 21:51:50 -08002275 0, SLAB_PANIC, NULL);
2276
2277 trie_leaf_kmem = kmem_cache_create("ip_fib_trie",
Alexander Duyck41b489f2015-03-04 15:02:33 -08002278 LEAF_SIZE,
Stephen Hemmingerbc3c8c12008-01-22 21:51:50 -08002279 0, SLAB_PANIC, NULL);
Stephen Hemminger7f9b8052008-01-14 23:14:20 -08002280}
Robert Olsson19baf832005-06-21 12:43:18 -07002281
Alexander Duyck0ddcf432015-03-06 13:47:00 -08002282struct fib_table *fib_trie_table(u32 id, struct fib_table *alias)
Robert Olsson19baf832005-06-21 12:43:18 -07002283{
2284 struct fib_table *tb;
2285 struct trie *t;
Alexander Duyck0ddcf432015-03-06 13:47:00 -08002286 size_t sz = sizeof(*tb);
Robert Olsson19baf832005-06-21 12:43:18 -07002287
Alexander Duyck0ddcf432015-03-06 13:47:00 -08002288 if (!alias)
2289 sz += sizeof(struct trie);
2290
2291 tb = kzalloc(sz, GFP_KERNEL);
Ian Morris51456b22015-04-03 09:17:26 +01002292 if (!tb)
Robert Olsson19baf832005-06-21 12:43:18 -07002293 return NULL;
2294
2295 tb->tb_id = id;
David S. Miller21d8c492011-04-14 14:49:37 -07002296 tb->tb_num_default = 0;
Alexander Duyck0ddcf432015-03-06 13:47:00 -08002297 tb->tb_data = (alias ? alias->__data : tb->__data);
2298
2299 if (alias)
2300 return tb;
Robert Olsson19baf832005-06-21 12:43:18 -07002301
2302 t = (struct trie *) tb->tb_data;
Alexander Duyck88bae712015-03-06 09:54:52 -08002303 t->kv[0].pos = KEYLENGTH;
2304 t->kv[0].slen = KEYLENGTH;
Alexander Duyck8274a972014-12-31 10:55:29 -08002305#ifdef CONFIG_IP_FIB_TRIE_STATS
2306 t->stats = alloc_percpu(struct trie_use_stats);
2307 if (!t->stats) {
2308 kfree(tb);
2309 tb = NULL;
2310 }
2311#endif
Robert Olsson19baf832005-06-21 12:43:18 -07002312
Robert Olsson19baf832005-06-21 12:43:18 -07002313 return tb;
2314}
2315
Robert Olsson19baf832005-06-21 12:43:18 -07002316#ifdef CONFIG_PROC_FS
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002317/* Depth first Trie walk iterator */
2318struct fib_trie_iter {
Denis V. Lunev1c340b22008-01-10 03:27:17 -08002319 struct seq_net_private p;
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002320 struct fib_table *tb;
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002321 struct key_vector *tnode;
Eric Dumazeta034ee32010-09-09 23:32:28 +00002322 unsigned int index;
2323 unsigned int depth;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002324};
Robert Olsson19baf832005-06-21 12:43:18 -07002325
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002326static struct key_vector *fib_trie_get_next(struct fib_trie_iter *iter)
Robert Olsson19baf832005-06-21 12:43:18 -07002327{
Alexander Duyck98293e82014-12-31 10:56:18 -08002328 unsigned long cindex = iter->index;
Alexander Duyck88bae712015-03-06 09:54:52 -08002329 struct key_vector *pn = iter->tnode;
2330 t_key pkey;
Eric W. Biederman6640e692007-01-24 14:42:04 -08002331
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002332 pr_debug("get_next iter={node=%p index=%d depth=%d}\n",
2333 iter->tnode, iter->index, iter->depth);
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002334
Alexander Duyck88bae712015-03-06 09:54:52 -08002335 while (!IS_TRIE(pn)) {
2336 while (cindex < child_length(pn)) {
2337 struct key_vector *n = get_child_rcu(pn, cindex++);
2338
2339 if (!n)
2340 continue;
2341
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002342 if (IS_LEAF(n)) {
Alexander Duyck88bae712015-03-06 09:54:52 -08002343 iter->tnode = pn;
2344 iter->index = cindex;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002345 } else {
2346 /* push down one level */
Alexander Duyckadaf9812014-12-31 10:55:47 -08002347 iter->tnode = n;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002348 iter->index = 0;
2349 ++iter->depth;
2350 }
Alexander Duyck88bae712015-03-06 09:54:52 -08002351
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002352 return n;
2353 }
2354
Alexander Duyck88bae712015-03-06 09:54:52 -08002355 /* Current node exhausted, pop back up */
2356 pkey = pn->key;
2357 pn = node_parent_rcu(pn);
2358 cindex = get_index(pkey, pn) + 1;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002359 --iter->depth;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002360 }
2361
Alexander Duyck88bae712015-03-06 09:54:52 -08002362 /* record root node so further searches know we are done */
2363 iter->tnode = pn;
2364 iter->index = 0;
2365
Robert Olsson19baf832005-06-21 12:43:18 -07002366 return NULL;
2367}
2368
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002369static struct key_vector *fib_trie_get_first(struct fib_trie_iter *iter,
2370 struct trie *t)
Robert Olsson19baf832005-06-21 12:43:18 -07002371{
Firo Yangf38b24c2015-06-08 11:54:51 +08002372 struct key_vector *n, *pn;
Robert Olsson5ddf0eb2006-03-20 21:34:12 -08002373
Stephen Hemminger132adf52007-03-08 20:44:43 -08002374 if (!t)
Robert Olsson5ddf0eb2006-03-20 21:34:12 -08002375 return NULL;
2376
Firo Yangf38b24c2015-06-08 11:54:51 +08002377 pn = t->kv;
Alexander Duyck88bae712015-03-06 09:54:52 -08002378 n = rcu_dereference(pn->tnode[0]);
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002379 if (!n)
Robert Olsson5ddf0eb2006-03-20 21:34:12 -08002380 return NULL;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002381
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002382 if (IS_TNODE(n)) {
Alexander Duyckadaf9812014-12-31 10:55:47 -08002383 iter->tnode = n;
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002384 iter->index = 0;
2385 iter->depth = 1;
2386 } else {
Alexander Duyck88bae712015-03-06 09:54:52 -08002387 iter->tnode = pn;
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002388 iter->index = 0;
2389 iter->depth = 0;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002390 }
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002391
2392 return n;
Robert Olsson19baf832005-06-21 12:43:18 -07002393}
2394
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002395static void trie_collect_stats(struct trie *t, struct trie_stat *s)
Robert Olsson19baf832005-06-21 12:43:18 -07002396{
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002397 struct key_vector *n;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002398 struct fib_trie_iter iter;
Robert Olsson19baf832005-06-21 12:43:18 -07002399
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002400 memset(s, 0, sizeof(*s));
Robert Olsson19baf832005-06-21 12:43:18 -07002401
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002402 rcu_read_lock();
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002403 for (n = fib_trie_get_first(&iter, t); n; n = fib_trie_get_next(&iter)) {
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002404 if (IS_LEAF(n)) {
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002405 struct fib_alias *fa;
Stephen Hemminger93672292008-01-22 21:54:05 -08002406
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002407 s->leaves++;
2408 s->totdepth += iter.depth;
2409 if (iter.depth > s->maxdepth)
2410 s->maxdepth = iter.depth;
Stephen Hemminger93672292008-01-22 21:54:05 -08002411
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002412 hlist_for_each_entry_rcu(fa, &n->leaf, fa_list)
Stephen Hemminger93672292008-01-22 21:54:05 -08002413 ++s->prefixes;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002414 } else {
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002415 s->tnodes++;
Alexander Duyckadaf9812014-12-31 10:55:47 -08002416 if (n->bits < MAX_STAT_DEPTH)
2417 s->nodesizes[n->bits]++;
Alexander Duyck6e22d172015-03-06 09:54:39 -08002418 s->nullpointers += tn_info(n)->empty_children;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002419 }
2420 }
2421 rcu_read_unlock();
Robert Olsson19baf832005-06-21 12:43:18 -07002422}
2423
Stephen Hemmingerc877efb2005-07-19 14:01:51 -07002424/*
Robert Olsson19baf832005-06-21 12:43:18 -07002425 * This outputs /proc/net/fib_triestats
Robert Olsson19baf832005-06-21 12:43:18 -07002426 */
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002427static void trie_show_stats(struct seq_file *seq, struct trie_stat *stat)
Robert Olsson19baf832005-06-21 12:43:18 -07002428{
Eric Dumazeta034ee32010-09-09 23:32:28 +00002429 unsigned int i, max, pointers, bytes, avdepth;
Robert Olsson19baf832005-06-21 12:43:18 -07002430
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002431 if (stat->leaves)
2432 avdepth = stat->totdepth*100 / stat->leaves;
2433 else
2434 avdepth = 0;
Robert Olsson19baf832005-06-21 12:43:18 -07002435
Stephen Hemmingera07f5f52008-01-22 21:53:36 -08002436 seq_printf(seq, "\tAver depth: %u.%02d\n",
2437 avdepth / 100, avdepth % 100);
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002438 seq_printf(seq, "\tMax depth: %u\n", stat->maxdepth);
Robert Olsson19baf832005-06-21 12:43:18 -07002439
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002440 seq_printf(seq, "\tLeaves: %u\n", stat->leaves);
Alexander Duyck41b489f2015-03-04 15:02:33 -08002441 bytes = LEAF_SIZE * stat->leaves;
Stephen Hemminger93672292008-01-22 21:54:05 -08002442
2443 seq_printf(seq, "\tPrefixes: %u\n", stat->prefixes);
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002444 bytes += sizeof(struct fib_alias) * stat->prefixes;
Stephen Hemminger93672292008-01-22 21:54:05 -08002445
Stephen Hemminger187b5182008-01-12 20:55:55 -08002446 seq_printf(seq, "\tInternal nodes: %u\n\t", stat->tnodes);
Alexander Duyck41b489f2015-03-04 15:02:33 -08002447 bytes += TNODE_SIZE(0) * stat->tnodes;
Robert Olsson19baf832005-06-21 12:43:18 -07002448
Robert Olsson06ef9212006-03-20 21:35:01 -08002449 max = MAX_STAT_DEPTH;
2450 while (max > 0 && stat->nodesizes[max-1] == 0)
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002451 max--;
Robert Olsson19baf832005-06-21 12:43:18 -07002452
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002453 pointers = 0;
Jerry Snitselaarf585a992013-07-22 12:01:58 -07002454 for (i = 1; i < max; i++)
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002455 if (stat->nodesizes[i] != 0) {
Stephen Hemminger187b5182008-01-12 20:55:55 -08002456 seq_printf(seq, " %u: %u", i, stat->nodesizes[i]);
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002457 pointers += (1<<i) * stat->nodesizes[i];
2458 }
2459 seq_putc(seq, '\n');
Stephen Hemminger187b5182008-01-12 20:55:55 -08002460 seq_printf(seq, "\tPointers: %u\n", pointers);
Robert Olsson19baf832005-06-21 12:43:18 -07002461
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002462 bytes += sizeof(struct key_vector *) * pointers;
Stephen Hemminger187b5182008-01-12 20:55:55 -08002463 seq_printf(seq, "Null ptrs: %u\n", stat->nullpointers);
2464 seq_printf(seq, "Total size: %u kB\n", (bytes + 1023) / 1024);
Stephen Hemminger66a2f7f2008-01-12 21:23:17 -08002465}
Robert Olsson19baf832005-06-21 12:43:18 -07002466
2467#ifdef CONFIG_IP_FIB_TRIE_STATS
Stephen Hemminger66a2f7f2008-01-12 21:23:17 -08002468static void trie_show_usage(struct seq_file *seq,
Alexander Duyck8274a972014-12-31 10:55:29 -08002469 const struct trie_use_stats __percpu *stats)
Stephen Hemminger66a2f7f2008-01-12 21:23:17 -08002470{
Alexander Duyck8274a972014-12-31 10:55:29 -08002471 struct trie_use_stats s = { 0 };
2472 int cpu;
2473
2474 /* loop through all of the CPUs and gather up the stats */
2475 for_each_possible_cpu(cpu) {
2476 const struct trie_use_stats *pcpu = per_cpu_ptr(stats, cpu);
2477
2478 s.gets += pcpu->gets;
2479 s.backtrack += pcpu->backtrack;
2480 s.semantic_match_passed += pcpu->semantic_match_passed;
2481 s.semantic_match_miss += pcpu->semantic_match_miss;
2482 s.null_node_hit += pcpu->null_node_hit;
2483 s.resize_node_skipped += pcpu->resize_node_skipped;
2484 }
2485
Stephen Hemminger66a2f7f2008-01-12 21:23:17 -08002486 seq_printf(seq, "\nCounters:\n---------\n");
Alexander Duyck8274a972014-12-31 10:55:29 -08002487 seq_printf(seq, "gets = %u\n", s.gets);
2488 seq_printf(seq, "backtracks = %u\n", s.backtrack);
Stephen Hemmingera07f5f52008-01-22 21:53:36 -08002489 seq_printf(seq, "semantic match passed = %u\n",
Alexander Duyck8274a972014-12-31 10:55:29 -08002490 s.semantic_match_passed);
2491 seq_printf(seq, "semantic match miss = %u\n", s.semantic_match_miss);
2492 seq_printf(seq, "null node hit= %u\n", s.null_node_hit);
2493 seq_printf(seq, "skipped node resize = %u\n\n", s.resize_node_skipped);
Robert Olsson19baf832005-06-21 12:43:18 -07002494}
Stephen Hemminger66a2f7f2008-01-12 21:23:17 -08002495#endif /* CONFIG_IP_FIB_TRIE_STATS */
2496
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002497static void fib_table_print(struct seq_file *seq, struct fib_table *tb)
Stephen Hemmingerd717a9a2008-01-14 23:11:54 -08002498{
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002499 if (tb->tb_id == RT_TABLE_LOCAL)
2500 seq_puts(seq, "Local:\n");
2501 else if (tb->tb_id == RT_TABLE_MAIN)
2502 seq_puts(seq, "Main:\n");
2503 else
2504 seq_printf(seq, "Id %d:\n", tb->tb_id);
Stephen Hemmingerd717a9a2008-01-14 23:11:54 -08002505}
Robert Olsson19baf832005-06-21 12:43:18 -07002506
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002507
Robert Olsson19baf832005-06-21 12:43:18 -07002508static int fib_triestat_seq_show(struct seq_file *seq, void *v)
2509{
Denis V. Lunev1c340b22008-01-10 03:27:17 -08002510 struct net *net = (struct net *)seq->private;
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002511 unsigned int h;
Eric W. Biederman877a9bf2007-12-07 00:47:47 -08002512
Stephen Hemmingerd717a9a2008-01-14 23:11:54 -08002513 seq_printf(seq,
Stephen Hemmingera07f5f52008-01-22 21:53:36 -08002514 "Basic info: size of leaf:"
Alexey Dobriyan5b5e0922017-02-27 14:30:02 -08002515 " %zd bytes, size of tnode: %zd bytes.\n",
Alexander Duyck41b489f2015-03-04 15:02:33 -08002516 LEAF_SIZE, TNODE_SIZE(0));
Olof Johansson91b9a272005-08-09 20:24:39 -07002517
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002518 for (h = 0; h < FIB_TABLE_HASHSZ; h++) {
2519 struct hlist_head *head = &net->ipv4.fib_table_hash[h];
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002520 struct fib_table *tb;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002521
Sasha Levinb67bfe02013-02-27 17:06:00 -08002522 hlist_for_each_entry_rcu(tb, head, tb_hlist) {
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002523 struct trie *t = (struct trie *) tb->tb_data;
2524 struct trie_stat stat;
2525
2526 if (!t)
2527 continue;
2528
2529 fib_table_print(seq, tb);
2530
2531 trie_collect_stats(t, &stat);
2532 trie_show_stats(seq, &stat);
2533#ifdef CONFIG_IP_FIB_TRIE_STATS
Alexander Duyck8274a972014-12-31 10:55:29 -08002534 trie_show_usage(seq, t->stats);
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002535#endif
2536 }
2537 }
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002538
Robert Olsson19baf832005-06-21 12:43:18 -07002539 return 0;
2540}
2541
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002542static struct key_vector *fib_trie_get_idx(struct seq_file *seq, loff_t pos)
Robert Olsson19baf832005-06-21 12:43:18 -07002543{
YOSHIFUJI Hideaki12188542008-03-26 02:36:06 +09002544 struct fib_trie_iter *iter = seq->private;
2545 struct net *net = seq_file_net(seq);
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002546 loff_t idx = 0;
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002547 unsigned int h;
Robert Olsson19baf832005-06-21 12:43:18 -07002548
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002549 for (h = 0; h < FIB_TABLE_HASHSZ; h++) {
2550 struct hlist_head *head = &net->ipv4.fib_table_hash[h];
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002551 struct fib_table *tb;
2552
Sasha Levinb67bfe02013-02-27 17:06:00 -08002553 hlist_for_each_entry_rcu(tb, head, tb_hlist) {
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002554 struct key_vector *n;
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002555
2556 for (n = fib_trie_get_first(iter,
2557 (struct trie *) tb->tb_data);
2558 n; n = fib_trie_get_next(iter))
2559 if (pos == idx++) {
2560 iter->tb = tb;
2561 return n;
2562 }
2563 }
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002564 }
Robert Olsson19baf832005-06-21 12:43:18 -07002565
Robert Olsson19baf832005-06-21 12:43:18 -07002566 return NULL;
2567}
2568
2569static void *fib_trie_seq_start(struct seq_file *seq, loff_t *pos)
Stephen Hemmingerc95aaf92008-01-12 21:25:02 -08002570 __acquires(RCU)
Robert Olsson19baf832005-06-21 12:43:18 -07002571{
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002572 rcu_read_lock();
YOSHIFUJI Hideaki12188542008-03-26 02:36:06 +09002573 return fib_trie_get_idx(seq, *pos);
Robert Olsson19baf832005-06-21 12:43:18 -07002574}
2575
2576static void *fib_trie_seq_next(struct seq_file *seq, void *v, loff_t *pos)
2577{
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002578 struct fib_trie_iter *iter = seq->private;
YOSHIFUJI Hideaki12188542008-03-26 02:36:06 +09002579 struct net *net = seq_file_net(seq);
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002580 struct fib_table *tb = iter->tb;
2581 struct hlist_node *tb_node;
2582 unsigned int h;
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002583 struct key_vector *n;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002584
Robert Olsson19baf832005-06-21 12:43:18 -07002585 ++*pos;
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002586 /* next node in same table */
2587 n = fib_trie_get_next(iter);
2588 if (n)
2589 return n;
Olof Johansson91b9a272005-08-09 20:24:39 -07002590
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002591 /* walk rest of this hash chain */
2592 h = tb->tb_id & (FIB_TABLE_HASHSZ - 1);
Eric Dumazet0a5c0472011-03-31 01:51:35 -07002593 while ((tb_node = rcu_dereference(hlist_next_rcu(&tb->tb_hlist)))) {
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002594 tb = hlist_entry(tb_node, struct fib_table, tb_hlist);
2595 n = fib_trie_get_first(iter, (struct trie *) tb->tb_data);
2596 if (n)
2597 goto found;
2598 }
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002599
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002600 /* new hash chain */
2601 while (++h < FIB_TABLE_HASHSZ) {
2602 struct hlist_head *head = &net->ipv4.fib_table_hash[h];
Sasha Levinb67bfe02013-02-27 17:06:00 -08002603 hlist_for_each_entry_rcu(tb, head, tb_hlist) {
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002604 n = fib_trie_get_first(iter, (struct trie *) tb->tb_data);
2605 if (n)
2606 goto found;
2607 }
2608 }
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002609 return NULL;
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002610
2611found:
2612 iter->tb = tb;
2613 return n;
Robert Olsson19baf832005-06-21 12:43:18 -07002614}
2615
2616static void fib_trie_seq_stop(struct seq_file *seq, void *v)
Stephen Hemmingerc95aaf92008-01-12 21:25:02 -08002617 __releases(RCU)
Robert Olsson19baf832005-06-21 12:43:18 -07002618{
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002619 rcu_read_unlock();
Robert Olsson19baf832005-06-21 12:43:18 -07002620}
2621
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002622static void seq_indent(struct seq_file *seq, int n)
2623{
Eric Dumazeta034ee32010-09-09 23:32:28 +00002624 while (n-- > 0)
2625 seq_puts(seq, " ");
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002626}
Robert Olsson19baf832005-06-21 12:43:18 -07002627
Eric Dumazet28d36e32008-01-14 23:09:56 -08002628static inline const char *rtn_scope(char *buf, size_t len, enum rt_scope_t s)
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002629{
Stephen Hemminger132adf52007-03-08 20:44:43 -08002630 switch (s) {
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002631 case RT_SCOPE_UNIVERSE: return "universe";
2632 case RT_SCOPE_SITE: return "site";
2633 case RT_SCOPE_LINK: return "link";
2634 case RT_SCOPE_HOST: return "host";
2635 case RT_SCOPE_NOWHERE: return "nowhere";
2636 default:
Eric Dumazet28d36e32008-01-14 23:09:56 -08002637 snprintf(buf, len, "scope=%d", s);
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002638 return buf;
2639 }
2640}
2641
Jan Engelhardt36cbd3d2009-08-05 10:42:58 -07002642static const char *const rtn_type_names[__RTN_MAX] = {
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002643 [RTN_UNSPEC] = "UNSPEC",
2644 [RTN_UNICAST] = "UNICAST",
2645 [RTN_LOCAL] = "LOCAL",
2646 [RTN_BROADCAST] = "BROADCAST",
2647 [RTN_ANYCAST] = "ANYCAST",
2648 [RTN_MULTICAST] = "MULTICAST",
2649 [RTN_BLACKHOLE] = "BLACKHOLE",
2650 [RTN_UNREACHABLE] = "UNREACHABLE",
2651 [RTN_PROHIBIT] = "PROHIBIT",
2652 [RTN_THROW] = "THROW",
2653 [RTN_NAT] = "NAT",
2654 [RTN_XRESOLVE] = "XRESOLVE",
2655};
2656
Eric Dumazeta034ee32010-09-09 23:32:28 +00002657static inline const char *rtn_type(char *buf, size_t len, unsigned int t)
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002658{
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002659 if (t < __RTN_MAX && rtn_type_names[t])
2660 return rtn_type_names[t];
Eric Dumazet28d36e32008-01-14 23:09:56 -08002661 snprintf(buf, len, "type %u", t);
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002662 return buf;
2663}
2664
2665/* Pretty print the trie */
Robert Olsson19baf832005-06-21 12:43:18 -07002666static int fib_trie_seq_show(struct seq_file *seq, void *v)
2667{
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002668 const struct fib_trie_iter *iter = seq->private;
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002669 struct key_vector *n = v;
Robert Olsson19baf832005-06-21 12:43:18 -07002670
Alexander Duyck88bae712015-03-06 09:54:52 -08002671 if (IS_TRIE(node_parent_rcu(n)))
Stephen Hemminger3d3b2d22008-03-23 22:43:56 -07002672 fib_table_print(seq, iter->tb);
Robert Olsson095b8502007-01-26 19:06:01 -08002673
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002674 if (IS_TNODE(n)) {
Alexander Duyckadaf9812014-12-31 10:55:47 -08002675 __be32 prf = htonl(n->key);
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002676
Alexander Duycke9b44012014-12-31 10:56:12 -08002677 seq_indent(seq, iter->depth-1);
2678 seq_printf(seq, " +-- %pI4/%zu %u %u %u\n",
2679 &prf, KEYLENGTH - n->pos - n->bits, n->bits,
Alexander Duyck6e22d172015-03-06 09:54:39 -08002680 tn_info(n)->full_children,
2681 tn_info(n)->empty_children);
Olof Johansson91b9a272005-08-09 20:24:39 -07002682 } else {
Alexander Duyckadaf9812014-12-31 10:55:47 -08002683 __be32 val = htonl(n->key);
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002684 struct fib_alias *fa;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002685
2686 seq_indent(seq, iter->depth);
Harvey Harrison673d57e2008-10-31 00:53:57 -07002687 seq_printf(seq, " |-- %pI4\n", &val);
Eric Dumazet28d36e32008-01-14 23:09:56 -08002688
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002689 hlist_for_each_entry_rcu(fa, &n->leaf, fa_list) {
2690 char buf1[32], buf2[32];
Eric Dumazet28d36e32008-01-14 23:09:56 -08002691
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002692 seq_indent(seq, iter->depth + 1);
2693 seq_printf(seq, " /%zu %s %s",
2694 KEYLENGTH - fa->fa_slen,
2695 rtn_scope(buf1, sizeof(buf1),
2696 fa->fa_info->fib_scope),
2697 rtn_type(buf2, sizeof(buf2),
2698 fa->fa_type));
2699 if (fa->fa_tos)
2700 seq_printf(seq, " tos=%d", fa->fa_tos);
2701 seq_putc(seq, '\n');
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002702 }
Robert Olsson19baf832005-06-21 12:43:18 -07002703 }
2704
2705 return 0;
2706}
2707
Stephen Hemmingerf6908082007-03-12 14:34:29 -07002708static const struct seq_operations fib_trie_seq_ops = {
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002709 .start = fib_trie_seq_start,
2710 .next = fib_trie_seq_next,
2711 .stop = fib_trie_seq_stop,
2712 .show = fib_trie_seq_show,
Robert Olsson19baf832005-06-21 12:43:18 -07002713};
2714
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002715struct fib_route_iter {
2716 struct seq_net_private p;
Alexander Duyck8be33e92015-03-04 14:59:19 -08002717 struct fib_table *main_tb;
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002718 struct key_vector *tnode;
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002719 loff_t pos;
2720 t_key key;
2721};
2722
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002723static struct key_vector *fib_route_get_idx(struct fib_route_iter *iter,
2724 loff_t pos)
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002725{
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002726 struct key_vector *l, **tp = &iter->tnode;
Alexander Duyck8be33e92015-03-04 14:59:19 -08002727 t_key key;
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002728
Alexander Duyckfd0285a2016-11-04 15:11:57 -04002729 /* use cached location of previously found key */
Alexander Duyck8be33e92015-03-04 14:59:19 -08002730 if (iter->pos > 0 && pos >= iter->pos) {
Alexander Duyck8be33e92015-03-04 14:59:19 -08002731 key = iter->key;
2732 } else {
Alexander Duyckfd0285a2016-11-04 15:11:57 -04002733 iter->pos = 1;
Alexander Duyck8be33e92015-03-04 14:59:19 -08002734 key = 0;
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002735 }
2736
Alexander Duyckfd0285a2016-11-04 15:11:57 -04002737 pos -= iter->pos;
2738
2739 while ((l = leaf_walk_rcu(tp, key)) && (pos-- > 0)) {
Alexander Duyck8be33e92015-03-04 14:59:19 -08002740 key = l->key + 1;
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002741 iter->pos++;
Alexander Duyck8be33e92015-03-04 14:59:19 -08002742 l = NULL;
2743
2744 /* handle unlikely case of a key wrap */
2745 if (!key)
2746 break;
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002747 }
2748
2749 if (l)
Alexander Duyckfd0285a2016-11-04 15:11:57 -04002750 iter->key = l->key; /* remember it */
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002751 else
2752 iter->pos = 0; /* forget it */
2753
2754 return l;
2755}
2756
2757static void *fib_route_seq_start(struct seq_file *seq, loff_t *pos)
2758 __acquires(RCU)
2759{
2760 struct fib_route_iter *iter = seq->private;
2761 struct fib_table *tb;
Alexander Duyck8be33e92015-03-04 14:59:19 -08002762 struct trie *t;
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002763
2764 rcu_read_lock();
Alexander Duyck8be33e92015-03-04 14:59:19 -08002765
YOSHIFUJI Hideaki12188542008-03-26 02:36:06 +09002766 tb = fib_get_table(seq_file_net(seq), RT_TABLE_MAIN);
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002767 if (!tb)
2768 return NULL;
2769
Alexander Duyck8be33e92015-03-04 14:59:19 -08002770 iter->main_tb = tb;
David Forster94d9f1c2016-08-03 15:13:01 +01002771 t = (struct trie *)tb->tb_data;
2772 iter->tnode = t->kv;
Alexander Duyck8be33e92015-03-04 14:59:19 -08002773
2774 if (*pos != 0)
2775 return fib_route_get_idx(iter, *pos);
2776
Alexander Duyck8be33e92015-03-04 14:59:19 -08002777 iter->pos = 0;
Alexander Duyckfd0285a2016-11-04 15:11:57 -04002778 iter->key = KEY_MAX;
Alexander Duyck8be33e92015-03-04 14:59:19 -08002779
2780 return SEQ_START_TOKEN;
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002781}
2782
2783static void *fib_route_seq_next(struct seq_file *seq, void *v, loff_t *pos)
2784{
2785 struct fib_route_iter *iter = seq->private;
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002786 struct key_vector *l = NULL;
Alexander Duyckfd0285a2016-11-04 15:11:57 -04002787 t_key key = iter->key + 1;
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002788
2789 ++*pos;
Alexander Duyck8be33e92015-03-04 14:59:19 -08002790
2791 /* only allow key of 0 for start of sequence */
2792 if ((v == SEQ_START_TOKEN) || key)
2793 l = leaf_walk_rcu(&iter->tnode, key);
2794
2795 if (l) {
Alexander Duyckfd0285a2016-11-04 15:11:57 -04002796 iter->key = l->key;
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002797 iter->pos++;
Alexander Duyck8be33e92015-03-04 14:59:19 -08002798 } else {
2799 iter->pos = 0;
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002800 }
2801
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002802 return l;
2803}
2804
2805static void fib_route_seq_stop(struct seq_file *seq, void *v)
2806 __releases(RCU)
2807{
2808 rcu_read_unlock();
2809}
2810
David Ahern5481d732019-06-03 20:19:49 -07002811static unsigned int fib_flag_trans(int type, __be32 mask, struct fib_info *fi)
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002812{
Eric Dumazeta034ee32010-09-09 23:32:28 +00002813 unsigned int flags = 0;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002814
Eric Dumazeta034ee32010-09-09 23:32:28 +00002815 if (type == RTN_UNREACHABLE || type == RTN_PROHIBIT)
2816 flags = RTF_REJECT;
David Ahern5481d732019-06-03 20:19:49 -07002817 if (fi) {
David Aherndcb1ecb2019-06-03 20:19:50 -07002818 const struct fib_nh_common *nhc = fib_info_nhc(fi, 0);
David Ahern5481d732019-06-03 20:19:49 -07002819
David Aherndcb1ecb2019-06-03 20:19:50 -07002820 if (nhc->nhc_gw.ipv4)
David Ahern5481d732019-06-03 20:19:49 -07002821 flags |= RTF_GATEWAY;
2822 }
Al Viro32ab5f82006-09-26 22:21:45 -07002823 if (mask == htonl(0xFFFFFFFF))
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002824 flags |= RTF_HOST;
2825 flags |= RTF_UP;
2826 return flags;
2827}
2828
2829/*
2830 * This outputs /proc/net/route.
2831 * The format of the file is not supposed to be changed
Eric Dumazeta034ee32010-09-09 23:32:28 +00002832 * and needs to be same as fib_hash output to avoid breaking
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002833 * legacy utilities
2834 */
2835static int fib_route_seq_show(struct seq_file *seq, void *v)
2836{
Alexander Duyck654eff42015-03-11 16:36:08 -07002837 struct fib_route_iter *iter = seq->private;
2838 struct fib_table *tb = iter->main_tb;
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002839 struct fib_alias *fa;
Alexander Duyck35c6eda2015-03-06 09:54:08 -08002840 struct key_vector *l = v;
Alexander Duyck9b6ebad2015-02-25 15:31:44 -08002841 __be32 prefix;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002842
2843 if (v == SEQ_START_TOKEN) {
2844 seq_printf(seq, "%-127s\n", "Iface\tDestination\tGateway "
2845 "\tFlags\tRefCnt\tUse\tMetric\tMask\t\tMTU"
2846 "\tWindow\tIRTT");
2847 return 0;
2848 }
2849
Alexander Duyck9b6ebad2015-02-25 15:31:44 -08002850 prefix = htonl(l->key);
2851
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002852 hlist_for_each_entry_rcu(fa, &l->leaf, fa_list) {
David Ahern5481d732019-06-03 20:19:49 -07002853 struct fib_info *fi = fa->fa_info;
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002854 __be32 mask = inet_make_mask(KEYLENGTH - fa->fa_slen);
2855 unsigned int flags = fib_flag_trans(fa->fa_type, mask, fi);
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002856
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002857 if ((fa->fa_type == RTN_BROADCAST) ||
2858 (fa->fa_type == RTN_MULTICAST))
2859 continue;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002860
Alexander Duyck654eff42015-03-11 16:36:08 -07002861 if (fa->tb_id != tb->tb_id)
2862 continue;
2863
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002864 seq_setwidth(seq, 127);
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002865
David Ahern5481d732019-06-03 20:19:49 -07002866 if (fi) {
David Aherndcb1ecb2019-06-03 20:19:50 -07002867 struct fib_nh_common *nhc = fib_info_nhc(fi, 0);
2868 __be32 gw = 0;
2869
2870 if (nhc->nhc_gw_family == AF_INET)
2871 gw = nhc->nhc_gw.ipv4;
David Ahern5481d732019-06-03 20:19:49 -07002872
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002873 seq_printf(seq,
2874 "%s\t%08X\t%08X\t%04X\t%d\t%u\t"
2875 "%d\t%08X\t%d\t%u\t%u",
David Aherndcb1ecb2019-06-03 20:19:50 -07002876 nhc->nhc_dev ? nhc->nhc_dev->name : "*",
2877 prefix, gw, flags, 0, 0,
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002878 fi->fib_priority,
2879 mask,
2880 (fi->fib_advmss ?
2881 fi->fib_advmss + 40 : 0),
2882 fi->fib_window,
2883 fi->fib_rtt >> 3);
David Ahern5481d732019-06-03 20:19:49 -07002884 } else {
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002885 seq_printf(seq,
2886 "*\t%08X\t%08X\t%04X\t%d\t%u\t"
2887 "%d\t%08X\t%d\t%u\t%u",
2888 prefix, 0, flags, 0, 0, 0,
2889 mask, 0, 0, 0);
David Ahern5481d732019-06-03 20:19:49 -07002890 }
Alexander Duyck79e5ad22015-02-25 15:31:51 -08002891 seq_pad(seq, '\n');
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002892 }
2893
2894 return 0;
2895}
2896
Stephen Hemmingerf6908082007-03-12 14:34:29 -07002897static const struct seq_operations fib_route_seq_ops = {
Stephen Hemminger8315f5d2008-02-11 21:14:39 -08002898 .start = fib_route_seq_start,
2899 .next = fib_route_seq_next,
2900 .stop = fib_route_seq_stop,
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002901 .show = fib_route_seq_show,
2902};
2903
Denis V. Lunev61a02652008-01-10 03:21:09 -08002904int __net_init fib_proc_init(struct net *net)
Robert Olsson19baf832005-06-21 12:43:18 -07002905{
Christoph Hellwigc3506372018-04-10 19:42:55 +02002906 if (!proc_create_net("fib_trie", 0444, net->proc_net, &fib_trie_seq_ops,
2907 sizeof(struct fib_trie_iter)))
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002908 goto out1;
2909
Christoph Hellwig3617d942018-04-13 20:38:35 +02002910 if (!proc_create_net_single("fib_triestat", 0444, net->proc_net,
2911 fib_triestat_seq_show, NULL))
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002912 goto out2;
2913
Christoph Hellwigc3506372018-04-10 19:42:55 +02002914 if (!proc_create_net("route", 0444, net->proc_net, &fib_route_seq_ops,
2915 sizeof(struct fib_route_iter)))
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002916 goto out3;
2917
Robert Olsson19baf832005-06-21 12:43:18 -07002918 return 0;
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002919
2920out3:
Gao fengece31ff2013-02-18 01:34:56 +00002921 remove_proc_entry("fib_triestat", net->proc_net);
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002922out2:
Gao fengece31ff2013-02-18 01:34:56 +00002923 remove_proc_entry("fib_trie", net->proc_net);
Stephen Hemmingercb7b5932005-09-09 13:35:42 -07002924out1:
2925 return -ENOMEM;
Robert Olsson19baf832005-06-21 12:43:18 -07002926}
2927
Denis V. Lunev61a02652008-01-10 03:21:09 -08002928void __net_exit fib_proc_exit(struct net *net)
Robert Olsson19baf832005-06-21 12:43:18 -07002929{
Gao fengece31ff2013-02-18 01:34:56 +00002930 remove_proc_entry("fib_trie", net->proc_net);
2931 remove_proc_entry("fib_triestat", net->proc_net);
2932 remove_proc_entry("route", net->proc_net);
Robert Olsson19baf832005-06-21 12:43:18 -07002933}
2934
2935#endif /* CONFIG_PROC_FS */