xref: /openbmc/linux/net/openvswitch/flow_table.c (revision fea07a487c6dd422dc8837237c9d2bc7c33119af)
1c9422999SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
2e6445719SPravin B Shelar /*
39b996e54SPravin B Shelar  * Copyright (c) 2007-2014 Nicira, Inc.
4e6445719SPravin B Shelar  */
5e6445719SPravin B Shelar 
6e6445719SPravin B Shelar #include "flow.h"
7e6445719SPravin B Shelar #include "datapath.h"
834ae932aSThomas Graf #include "flow_netlink.h"
9e6445719SPravin B Shelar #include <linux/uaccess.h>
10e6445719SPravin B Shelar #include <linux/netdevice.h>
11e6445719SPravin B Shelar #include <linux/etherdevice.h>
12e6445719SPravin B Shelar #include <linux/if_ether.h>
13e6445719SPravin B Shelar #include <linux/if_vlan.h>
14e6445719SPravin B Shelar #include <net/llc_pdu.h>
15e6445719SPravin B Shelar #include <linux/kernel.h>
1687545899SDaniel Borkmann #include <linux/jhash.h>
17e6445719SPravin B Shelar #include <linux/jiffies.h>
18e6445719SPravin B Shelar #include <linux/llc.h>
19e6445719SPravin B Shelar #include <linux/module.h>
20e6445719SPravin B Shelar #include <linux/in.h>
21e6445719SPravin B Shelar #include <linux/rcupdate.h>
22db74a333SThadeu Lima de Souza Cascardo #include <linux/cpumask.h>
23e6445719SPravin B Shelar #include <linux/if_arp.h>
24e6445719SPravin B Shelar #include <linux/ip.h>
25e6445719SPravin B Shelar #include <linux/ipv6.h>
26e6445719SPravin B Shelar #include <linux/sctp.h>
27e6445719SPravin B Shelar #include <linux/tcp.h>
28e6445719SPravin B Shelar #include <linux/udp.h>
29e6445719SPravin B Shelar #include <linux/icmp.h>
30e6445719SPravin B Shelar #include <linux/icmpv6.h>
31e6445719SPravin B Shelar #include <linux/rculist.h>
32eac87c41SEelco Chaudron #include <linux/sort.h>
33e6445719SPravin B Shelar #include <net/ip.h>
34e6445719SPravin B Shelar #include <net/ipv6.h>
35e6445719SPravin B Shelar #include <net/ndisc.h>
36e6445719SPravin B Shelar 
37b637e498SPravin B Shelar #define TBL_MIN_BUCKETS		1024
384bc63b1bSTonghao Zhang #define MASK_ARRAY_SIZE_MIN	16
39b637e498SPravin B Shelar #define REHASH_INTERVAL		(10 * 60 * HZ)
40b637e498SPravin B Shelar 
419bf24f59SEelco Chaudron #define MC_DEFAULT_HASH_ENTRIES	256
4204b7d136STonghao Zhang #define MC_HASH_SHIFT		8
4304b7d136STonghao Zhang #define MC_HASH_SEGS		((sizeof(uint32_t) * 8) / MC_HASH_SHIFT)
4404b7d136STonghao Zhang 
45e6445719SPravin B Shelar static struct kmem_cache *flow_cache;
4663e7959cSJarno Rajahalme struct kmem_cache *flow_stats_cache __read_mostly;
47e6445719SPravin B Shelar 
48e6445719SPravin B Shelar static u16 range_n_bytes(const struct sw_flow_key_range *range)
49e6445719SPravin B Shelar {
50e6445719SPravin B Shelar 	return range->end - range->start;
51e6445719SPravin B Shelar }
52e6445719SPravin B Shelar 
53e6445719SPravin B Shelar void ovs_flow_mask_key(struct sw_flow_key *dst, const struct sw_flow_key *src,
54ae5f2fb1SJesse Gross 		       bool full, const struct sw_flow_mask *mask)
55e6445719SPravin B Shelar {
56ae5f2fb1SJesse Gross 	int start = full ? 0 : mask->range.start;
57ae5f2fb1SJesse Gross 	int len = full ? sizeof *dst : range_n_bytes(&mask->range);
58ae5f2fb1SJesse Gross 	const long *m = (const long *)((const u8 *)&mask->key + start);
59ae5f2fb1SJesse Gross 	const long *s = (const long *)((const u8 *)src + start);
60ae5f2fb1SJesse Gross 	long *d = (long *)((u8 *)dst + start);
61e6445719SPravin B Shelar 	int i;
62e6445719SPravin B Shelar 
63ae5f2fb1SJesse Gross 	/* If 'full' is true then all of 'dst' is fully initialized. Otherwise,
64ae5f2fb1SJesse Gross 	 * if 'full' is false the memory outside of the 'mask->range' is left
65ae5f2fb1SJesse Gross 	 * uninitialized. This can be used as an optimization when further
66ae5f2fb1SJesse Gross 	 * operations on 'dst' only use contents within 'mask->range'.
67e6445719SPravin B Shelar 	 */
68ae5f2fb1SJesse Gross 	for (i = 0; i < len; i += sizeof(long))
69e6445719SPravin B Shelar 		*d++ = *s++ & *m++;
70e6445719SPravin B Shelar }
71e6445719SPravin B Shelar 
7223dabf88SJarno Rajahalme struct sw_flow *ovs_flow_alloc(void)
73e6445719SPravin B Shelar {
74e6445719SPravin B Shelar 	struct sw_flow *flow;
75aef833c5SPablo Neira Ayuso 	struct sw_flow_stats *stats;
76e6445719SPravin B Shelar 
77db74a333SThadeu Lima de Souza Cascardo 	flow = kmem_cache_zalloc(flow_cache, GFP_KERNEL);
78e6445719SPravin B Shelar 	if (!flow)
79e6445719SPravin B Shelar 		return ERR_PTR(-ENOMEM);
80e6445719SPravin B Shelar 
81db74a333SThadeu Lima de Souza Cascardo 	flow->stats_last_writer = -1;
82e6445719SPravin B Shelar 
8363e7959cSJarno Rajahalme 	/* Initialize the default stat node. */
8463e7959cSJarno Rajahalme 	stats = kmem_cache_alloc_node(flow_stats_cache,
85598c12d0SKonstantin Khlebnikov 				      GFP_KERNEL | __GFP_ZERO,
86598c12d0SKonstantin Khlebnikov 				      node_online(0) ? 0 : NUMA_NO_NODE);
8763e7959cSJarno Rajahalme 	if (!stats)
88e298e505SPravin B Shelar 		goto err;
89e298e505SPravin B Shelar 
9063e7959cSJarno Rajahalme 	spin_lock_init(&stats->lock);
91e298e505SPravin B Shelar 
9263e7959cSJarno Rajahalme 	RCU_INIT_POINTER(flow->stats[0], stats);
9363e7959cSJarno Rajahalme 
94c4b2bf6bSTonghao Zhang 	cpumask_set_cpu(0, &flow->cpu_used_mask);
95c4b2bf6bSTonghao Zhang 
96e6445719SPravin B Shelar 	return flow;
97e298e505SPravin B Shelar err:
98ece37c87SWei Yongjun 	kmem_cache_free(flow_cache, flow);
99e298e505SPravin B Shelar 	return ERR_PTR(-ENOMEM);
100e6445719SPravin B Shelar }
101e6445719SPravin B Shelar 
10212eb18f7SThomas Graf int ovs_flow_tbl_count(const struct flow_table *table)
103b637e498SPravin B Shelar {
104b637e498SPravin B Shelar 	return table->count;
105b637e498SPravin B Shelar }
106b637e498SPravin B Shelar 
107e6445719SPravin B Shelar static void flow_free(struct sw_flow *flow)
108e6445719SPravin B Shelar {
109db74a333SThadeu Lima de Souza Cascardo 	int cpu;
11063e7959cSJarno Rajahalme 
11174ed7ab9SJoe Stringer 	if (ovs_identifier_is_key(&flow->id))
11274ed7ab9SJoe Stringer 		kfree(flow->id.unmasked_key);
11334ae932aSThomas Graf 	if (flow->sf_acts)
114cf3266adSTonghao Zhang 		ovs_nla_free_flow_actions((struct sw_flow_actions __force *)
115cf3266adSTonghao Zhang 					  flow->sf_acts);
116db74a333SThadeu Lima de Souza Cascardo 	/* We open code this to make sure cpu 0 is always considered */
117cf3266adSTonghao Zhang 	for (cpu = 0; cpu < nr_cpu_ids;
118cf3266adSTonghao Zhang 	     cpu = cpumask_next(cpu, &flow->cpu_used_mask)) {
119db74a333SThadeu Lima de Souza Cascardo 		if (flow->stats[cpu])
12063e7959cSJarno Rajahalme 			kmem_cache_free(flow_stats_cache,
121aef833c5SPablo Neira Ayuso 					(struct sw_flow_stats __force *)flow->stats[cpu]);
122cf3266adSTonghao Zhang 	}
123cf3266adSTonghao Zhang 
124e6445719SPravin B Shelar 	kmem_cache_free(flow_cache, flow);
125e6445719SPravin B Shelar }
126e6445719SPravin B Shelar 
127e6445719SPravin B Shelar static void rcu_free_flow_callback(struct rcu_head *rcu)
128e6445719SPravin B Shelar {
129e6445719SPravin B Shelar 	struct sw_flow *flow = container_of(rcu, struct sw_flow, rcu);
130e6445719SPravin B Shelar 
131e6445719SPravin B Shelar 	flow_free(flow);
132e6445719SPravin B Shelar }
133e6445719SPravin B Shelar 
134e80857ccSAndy Zhou void ovs_flow_free(struct sw_flow *flow, bool deferred)
135618ed0c8SPravin B Shelar {
136e80857ccSAndy Zhou 	if (!flow)
137618ed0c8SPravin B Shelar 		return;
138618ed0c8SPravin B Shelar 
139e6445719SPravin B Shelar 	if (deferred)
140e6445719SPravin B Shelar 		call_rcu(&flow->rcu, rcu_free_flow_callback);
141e6445719SPravin B Shelar 	else
142e6445719SPravin B Shelar 		flow_free(flow);
143e6445719SPravin B Shelar }
144e6445719SPravin B Shelar 
145b637e498SPravin B Shelar static void __table_instance_destroy(struct table_instance *ti)
146e6445719SPravin B Shelar {
147ee9c5e67SKent Overstreet 	kvfree(ti->buckets);
148b637e498SPravin B Shelar 	kfree(ti);
149e6445719SPravin B Shelar }
150e6445719SPravin B Shelar 
151b637e498SPravin B Shelar static struct table_instance *table_instance_alloc(int new_size)
152e6445719SPravin B Shelar {
153b637e498SPravin B Shelar 	struct table_instance *ti = kmalloc(sizeof(*ti), GFP_KERNEL);
154ee9c5e67SKent Overstreet 	int i;
155e6445719SPravin B Shelar 
156b637e498SPravin B Shelar 	if (!ti)
157e6445719SPravin B Shelar 		return NULL;
158e6445719SPravin B Shelar 
159ee9c5e67SKent Overstreet 	ti->buckets = kvmalloc_array(new_size, sizeof(struct hlist_head),
160ee9c5e67SKent Overstreet 				     GFP_KERNEL);
161b637e498SPravin B Shelar 	if (!ti->buckets) {
162b637e498SPravin B Shelar 		kfree(ti);
163e6445719SPravin B Shelar 		return NULL;
164e6445719SPravin B Shelar 	}
165ee9c5e67SKent Overstreet 
166ee9c5e67SKent Overstreet 	for (i = 0; i < new_size; i++)
167ee9c5e67SKent Overstreet 		INIT_HLIST_HEAD(&ti->buckets[i]);
168ee9c5e67SKent Overstreet 
169b637e498SPravin B Shelar 	ti->n_buckets = new_size;
170b637e498SPravin B Shelar 	ti->node_ver = 0;
171b637e498SPravin B Shelar 	get_random_bytes(&ti->hash_seed, sizeof(u32));
172b637e498SPravin B Shelar 
173b637e498SPravin B Shelar 	return ti;
174b637e498SPravin B Shelar }
175b637e498SPravin B Shelar 
176eac87c41SEelco Chaudron static void __mask_array_destroy(struct mask_array *ma)
177eac87c41SEelco Chaudron {
178f981fc3dSEelco Chaudron 	free_percpu(ma->masks_usage_stats);
179eac87c41SEelco Chaudron 	kfree(ma);
180eac87c41SEelco Chaudron }
181eac87c41SEelco Chaudron 
182eac87c41SEelco Chaudron static void mask_array_rcu_cb(struct rcu_head *rcu)
183eac87c41SEelco Chaudron {
184eac87c41SEelco Chaudron 	struct mask_array *ma = container_of(rcu, struct mask_array, rcu);
185eac87c41SEelco Chaudron 
186eac87c41SEelco Chaudron 	__mask_array_destroy(ma);
187eac87c41SEelco Chaudron }
188eac87c41SEelco Chaudron 
189eac87c41SEelco Chaudron static void tbl_mask_array_reset_counters(struct mask_array *ma)
190eac87c41SEelco Chaudron {
191eac87c41SEelco Chaudron 	int i, cpu;
192eac87c41SEelco Chaudron 
193eac87c41SEelco Chaudron 	/* As the per CPU counters are not atomic we can not go ahead and
194eac87c41SEelco Chaudron 	 * reset them from another CPU. To be able to still have an approximate
195eac87c41SEelco Chaudron 	 * zero based counter we store the value at reset, and subtract it
196eac87c41SEelco Chaudron 	 * later when processing.
197eac87c41SEelco Chaudron 	 */
198eac87c41SEelco Chaudron 	for (i = 0; i < ma->max; i++) {
199eac87c41SEelco Chaudron 		ma->masks_usage_zero_cntr[i] = 0;
200eac87c41SEelco Chaudron 
201eac87c41SEelco Chaudron 		for_each_possible_cpu(cpu) {
202f981fc3dSEelco Chaudron 			struct mask_array_stats *stats;
203eac87c41SEelco Chaudron 			unsigned int start;
204eac87c41SEelco Chaudron 			u64 counter;
205eac87c41SEelco Chaudron 
206f981fc3dSEelco Chaudron 			stats = per_cpu_ptr(ma->masks_usage_stats, cpu);
207eac87c41SEelco Chaudron 			do {
208f981fc3dSEelco Chaudron 				start = u64_stats_fetch_begin_irq(&stats->syncp);
209f981fc3dSEelco Chaudron 				counter = stats->usage_cntrs[i];
210f981fc3dSEelco Chaudron 			} while (u64_stats_fetch_retry_irq(&stats->syncp, start));
211eac87c41SEelco Chaudron 
212eac87c41SEelco Chaudron 			ma->masks_usage_zero_cntr[i] += counter;
213eac87c41SEelco Chaudron 		}
214eac87c41SEelco Chaudron 	}
215eac87c41SEelco Chaudron }
216eac87c41SEelco Chaudron 
2174bc63b1bSTonghao Zhang static struct mask_array *tbl_mask_array_alloc(int size)
2184bc63b1bSTonghao Zhang {
2194bc63b1bSTonghao Zhang 	struct mask_array *new;
2204bc63b1bSTonghao Zhang 
2214bc63b1bSTonghao Zhang 	size = max(MASK_ARRAY_SIZE_MIN, size);
2224bc63b1bSTonghao Zhang 	new = kzalloc(sizeof(struct mask_array) +
223eac87c41SEelco Chaudron 		      sizeof(struct sw_flow_mask *) * size +
224eac87c41SEelco Chaudron 		      sizeof(u64) * size, GFP_KERNEL);
2254bc63b1bSTonghao Zhang 	if (!new)
2264bc63b1bSTonghao Zhang 		return NULL;
2274bc63b1bSTonghao Zhang 
228eac87c41SEelco Chaudron 	new->masks_usage_zero_cntr = (u64 *)((u8 *)new +
229eac87c41SEelco Chaudron 					     sizeof(struct mask_array) +
230eac87c41SEelco Chaudron 					     sizeof(struct sw_flow_mask *) *
231eac87c41SEelco Chaudron 					     size);
232eac87c41SEelco Chaudron 
233f981fc3dSEelco Chaudron 	new->masks_usage_stats = __alloc_percpu(sizeof(struct mask_array_stats) +
234f981fc3dSEelco Chaudron 						sizeof(u64) * size,
235eac87c41SEelco Chaudron 						__alignof__(u64));
236f981fc3dSEelco Chaudron 	if (!new->masks_usage_stats) {
237eac87c41SEelco Chaudron 		kfree(new);
238eac87c41SEelco Chaudron 		return NULL;
239eac87c41SEelco Chaudron 	}
240eac87c41SEelco Chaudron 
2414bc63b1bSTonghao Zhang 	new->count = 0;
2424bc63b1bSTonghao Zhang 	new->max = size;
2434bc63b1bSTonghao Zhang 
2444bc63b1bSTonghao Zhang 	return new;
2454bc63b1bSTonghao Zhang }
2464bc63b1bSTonghao Zhang 
2474bc63b1bSTonghao Zhang static int tbl_mask_array_realloc(struct flow_table *tbl, int size)
2484bc63b1bSTonghao Zhang {
2494bc63b1bSTonghao Zhang 	struct mask_array *old;
2504bc63b1bSTonghao Zhang 	struct mask_array *new;
2514bc63b1bSTonghao Zhang 
2524bc63b1bSTonghao Zhang 	new = tbl_mask_array_alloc(size);
2534bc63b1bSTonghao Zhang 	if (!new)
2544bc63b1bSTonghao Zhang 		return -ENOMEM;
2554bc63b1bSTonghao Zhang 
2564bc63b1bSTonghao Zhang 	old = ovsl_dereference(tbl->mask_array);
2574bc63b1bSTonghao Zhang 	if (old) {
2584bc63b1bSTonghao Zhang 		int i;
2594bc63b1bSTonghao Zhang 
2604bc63b1bSTonghao Zhang 		for (i = 0; i < old->max; i++) {
2614bc63b1bSTonghao Zhang 			if (ovsl_dereference(old->masks[i]))
2624bc63b1bSTonghao Zhang 				new->masks[new->count++] = old->masks[i];
2634bc63b1bSTonghao Zhang 		}
264eac87c41SEelco Chaudron 		call_rcu(&old->rcu, mask_array_rcu_cb);
2654bc63b1bSTonghao Zhang 	}
2664bc63b1bSTonghao Zhang 
2674bc63b1bSTonghao Zhang 	rcu_assign_pointer(tbl->mask_array, new);
2684bc63b1bSTonghao Zhang 
2694bc63b1bSTonghao Zhang 	return 0;
2704bc63b1bSTonghao Zhang }
2714bc63b1bSTonghao Zhang 
27250b0e61bSTonghao Zhang static int tbl_mask_array_add_mask(struct flow_table *tbl,
27350b0e61bSTonghao Zhang 				   struct sw_flow_mask *new)
27450b0e61bSTonghao Zhang {
27550b0e61bSTonghao Zhang 	struct mask_array *ma = ovsl_dereference(tbl->mask_array);
27650b0e61bSTonghao Zhang 	int err, ma_count = READ_ONCE(ma->count);
27750b0e61bSTonghao Zhang 
27850b0e61bSTonghao Zhang 	if (ma_count >= ma->max) {
27950b0e61bSTonghao Zhang 		err = tbl_mask_array_realloc(tbl, ma->max +
28050b0e61bSTonghao Zhang 						  MASK_ARRAY_SIZE_MIN);
28150b0e61bSTonghao Zhang 		if (err)
28250b0e61bSTonghao Zhang 			return err;
28350b0e61bSTonghao Zhang 
28450b0e61bSTonghao Zhang 		ma = ovsl_dereference(tbl->mask_array);
285eac87c41SEelco Chaudron 	} else {
286eac87c41SEelco Chaudron 		/* On every add or delete we need to reset the counters so
287eac87c41SEelco Chaudron 		 * every new mask gets a fair chance of being prioritized.
288eac87c41SEelco Chaudron 		 */
289eac87c41SEelco Chaudron 		tbl_mask_array_reset_counters(ma);
29050b0e61bSTonghao Zhang 	}
29150b0e61bSTonghao Zhang 
29250b0e61bSTonghao Zhang 	BUG_ON(ovsl_dereference(ma->masks[ma_count]));
29350b0e61bSTonghao Zhang 
29450b0e61bSTonghao Zhang 	rcu_assign_pointer(ma->masks[ma_count], new);
29550b0e61bSTonghao Zhang 	WRITE_ONCE(ma->count, ma_count + 1);
29650b0e61bSTonghao Zhang 
29750b0e61bSTonghao Zhang 	return 0;
29850b0e61bSTonghao Zhang }
29950b0e61bSTonghao Zhang 
30050b0e61bSTonghao Zhang static void tbl_mask_array_del_mask(struct flow_table *tbl,
30150b0e61bSTonghao Zhang 				    struct sw_flow_mask *mask)
30250b0e61bSTonghao Zhang {
30350b0e61bSTonghao Zhang 	struct mask_array *ma = ovsl_dereference(tbl->mask_array);
30450b0e61bSTonghao Zhang 	int i, ma_count = READ_ONCE(ma->count);
30550b0e61bSTonghao Zhang 
30650b0e61bSTonghao Zhang 	/* Remove the deleted mask pointers from the array */
30750b0e61bSTonghao Zhang 	for (i = 0; i < ma_count; i++) {
30850b0e61bSTonghao Zhang 		if (mask == ovsl_dereference(ma->masks[i]))
30950b0e61bSTonghao Zhang 			goto found;
31050b0e61bSTonghao Zhang 	}
31150b0e61bSTonghao Zhang 
31250b0e61bSTonghao Zhang 	BUG();
31350b0e61bSTonghao Zhang 	return;
31450b0e61bSTonghao Zhang 
31550b0e61bSTonghao Zhang found:
31650b0e61bSTonghao Zhang 	WRITE_ONCE(ma->count, ma_count - 1);
31750b0e61bSTonghao Zhang 
31850b0e61bSTonghao Zhang 	rcu_assign_pointer(ma->masks[i], ma->masks[ma_count - 1]);
31950b0e61bSTonghao Zhang 	RCU_INIT_POINTER(ma->masks[ma_count - 1], NULL);
32050b0e61bSTonghao Zhang 
32150b0e61bSTonghao Zhang 	kfree_rcu(mask, rcu);
32250b0e61bSTonghao Zhang 
32350b0e61bSTonghao Zhang 	/* Shrink the mask array if necessary. */
32450b0e61bSTonghao Zhang 	if (ma->max >= (MASK_ARRAY_SIZE_MIN * 2) &&
32550b0e61bSTonghao Zhang 	    ma_count <= (ma->max / 3))
32650b0e61bSTonghao Zhang 		tbl_mask_array_realloc(tbl, ma->max / 2);
327eac87c41SEelco Chaudron 	else
328eac87c41SEelco Chaudron 		tbl_mask_array_reset_counters(ma);
329eac87c41SEelco Chaudron 
33050b0e61bSTonghao Zhang }
33150b0e61bSTonghao Zhang 
33250b0e61bSTonghao Zhang /* Remove 'mask' from the mask list, if it is not needed any more. */
33350b0e61bSTonghao Zhang static void flow_mask_remove(struct flow_table *tbl, struct sw_flow_mask *mask)
33450b0e61bSTonghao Zhang {
33550b0e61bSTonghao Zhang 	if (mask) {
33650b0e61bSTonghao Zhang 		/* ovs-lock is required to protect mask-refcount and
33750b0e61bSTonghao Zhang 		 * mask list.
33850b0e61bSTonghao Zhang 		 */
33950b0e61bSTonghao Zhang 		ASSERT_OVSL();
34050b0e61bSTonghao Zhang 		BUG_ON(!mask->ref_count);
34150b0e61bSTonghao Zhang 		mask->ref_count--;
34250b0e61bSTonghao Zhang 
34350b0e61bSTonghao Zhang 		if (!mask->ref_count)
34450b0e61bSTonghao Zhang 			tbl_mask_array_del_mask(tbl, mask);
34550b0e61bSTonghao Zhang 	}
34650b0e61bSTonghao Zhang }
34750b0e61bSTonghao Zhang 
3489bf24f59SEelco Chaudron static void __mask_cache_destroy(struct mask_cache *mc)
3499bf24f59SEelco Chaudron {
3509bf24f59SEelco Chaudron 	free_percpu(mc->mask_cache);
3519bf24f59SEelco Chaudron 	kfree(mc);
3529bf24f59SEelco Chaudron }
3539bf24f59SEelco Chaudron 
3549bf24f59SEelco Chaudron static void mask_cache_rcu_cb(struct rcu_head *rcu)
3559bf24f59SEelco Chaudron {
3569bf24f59SEelco Chaudron 	struct mask_cache *mc = container_of(rcu, struct mask_cache, rcu);
3579bf24f59SEelco Chaudron 
3589bf24f59SEelco Chaudron 	__mask_cache_destroy(mc);
3599bf24f59SEelco Chaudron }
3609bf24f59SEelco Chaudron 
3619bf24f59SEelco Chaudron static struct mask_cache *tbl_mask_cache_alloc(u32 size)
3629bf24f59SEelco Chaudron {
3639bf24f59SEelco Chaudron 	struct mask_cache_entry __percpu *cache = NULL;
3649bf24f59SEelco Chaudron 	struct mask_cache *new;
3659bf24f59SEelco Chaudron 
3669bf24f59SEelco Chaudron 	/* Only allow size to be 0, or a power of 2, and does not exceed
3679bf24f59SEelco Chaudron 	 * percpu allocation size.
3689bf24f59SEelco Chaudron 	 */
3699bf24f59SEelco Chaudron 	if ((!is_power_of_2(size) && size != 0) ||
3709bf24f59SEelco Chaudron 	    (size * sizeof(struct mask_cache_entry)) > PCPU_MIN_UNIT_SIZE)
3719bf24f59SEelco Chaudron 		return NULL;
3729bf24f59SEelco Chaudron 
3739bf24f59SEelco Chaudron 	new = kzalloc(sizeof(*new), GFP_KERNEL);
3749bf24f59SEelco Chaudron 	if (!new)
3759bf24f59SEelco Chaudron 		return NULL;
3769bf24f59SEelco Chaudron 
3779bf24f59SEelco Chaudron 	new->cache_size = size;
3789bf24f59SEelco Chaudron 	if (new->cache_size > 0) {
3799bf24f59SEelco Chaudron 		cache = __alloc_percpu(array_size(sizeof(struct mask_cache_entry),
3809bf24f59SEelco Chaudron 						  new->cache_size),
3819bf24f59SEelco Chaudron 				       __alignof__(struct mask_cache_entry));
3829bf24f59SEelco Chaudron 		if (!cache) {
3839bf24f59SEelco Chaudron 			kfree(new);
3849bf24f59SEelco Chaudron 			return NULL;
3859bf24f59SEelco Chaudron 		}
3869bf24f59SEelco Chaudron 	}
3879bf24f59SEelco Chaudron 
3889bf24f59SEelco Chaudron 	new->mask_cache = cache;
3899bf24f59SEelco Chaudron 	return new;
3909bf24f59SEelco Chaudron }
3919bf24f59SEelco Chaudron int ovs_flow_tbl_masks_cache_resize(struct flow_table *table, u32 size)
3929bf24f59SEelco Chaudron {
393*fea07a48SEelco Chaudron 	struct mask_cache *mc = rcu_dereference_ovsl(table->mask_cache);
3949bf24f59SEelco Chaudron 	struct mask_cache *new;
3959bf24f59SEelco Chaudron 
3969bf24f59SEelco Chaudron 	if (size == mc->cache_size)
3979bf24f59SEelco Chaudron 		return 0;
3989bf24f59SEelco Chaudron 
3999bf24f59SEelco Chaudron 	if ((!is_power_of_2(size) && size != 0) ||
4009bf24f59SEelco Chaudron 	    (size * sizeof(struct mask_cache_entry)) > PCPU_MIN_UNIT_SIZE)
4019bf24f59SEelco Chaudron 		return -EINVAL;
4029bf24f59SEelco Chaudron 
4039bf24f59SEelco Chaudron 	new = tbl_mask_cache_alloc(size);
4049bf24f59SEelco Chaudron 	if (!new)
4059bf24f59SEelco Chaudron 		return -ENOMEM;
4069bf24f59SEelco Chaudron 
4079bf24f59SEelco Chaudron 	rcu_assign_pointer(table->mask_cache, new);
4089bf24f59SEelco Chaudron 	call_rcu(&mc->rcu, mask_cache_rcu_cb);
4099bf24f59SEelco Chaudron 
4109bf24f59SEelco Chaudron 	return 0;
4119bf24f59SEelco Chaudron }
4129bf24f59SEelco Chaudron 
413b637e498SPravin B Shelar int ovs_flow_tbl_init(struct flow_table *table)
414b637e498SPravin B Shelar {
41574ed7ab9SJoe Stringer 	struct table_instance *ti, *ufid_ti;
4169bf24f59SEelco Chaudron 	struct mask_cache *mc;
4174bc63b1bSTonghao Zhang 	struct mask_array *ma;
418b637e498SPravin B Shelar 
4199bf24f59SEelco Chaudron 	mc = tbl_mask_cache_alloc(MC_DEFAULT_HASH_ENTRIES);
4209bf24f59SEelco Chaudron 	if (!mc)
421b637e498SPravin B Shelar 		return -ENOMEM;
422b637e498SPravin B Shelar 
4234bc63b1bSTonghao Zhang 	ma = tbl_mask_array_alloc(MASK_ARRAY_SIZE_MIN);
4244bc63b1bSTonghao Zhang 	if (!ma)
4254bc63b1bSTonghao Zhang 		goto free_mask_cache;
4264bc63b1bSTonghao Zhang 
42704b7d136STonghao Zhang 	ti = table_instance_alloc(TBL_MIN_BUCKETS);
42804b7d136STonghao Zhang 	if (!ti)
4294bc63b1bSTonghao Zhang 		goto free_mask_array;
43004b7d136STonghao Zhang 
43174ed7ab9SJoe Stringer 	ufid_ti = table_instance_alloc(TBL_MIN_BUCKETS);
43274ed7ab9SJoe Stringer 	if (!ufid_ti)
43374ed7ab9SJoe Stringer 		goto free_ti;
43474ed7ab9SJoe Stringer 
435b637e498SPravin B Shelar 	rcu_assign_pointer(table->ti, ti);
43674ed7ab9SJoe Stringer 	rcu_assign_pointer(table->ufid_ti, ufid_ti);
4374bc63b1bSTonghao Zhang 	rcu_assign_pointer(table->mask_array, ma);
4389bf24f59SEelco Chaudron 	rcu_assign_pointer(table->mask_cache, mc);
439b637e498SPravin B Shelar 	table->last_rehash = jiffies;
440e6445719SPravin B Shelar 	table->count = 0;
44174ed7ab9SJoe Stringer 	table->ufid_count = 0;
442b637e498SPravin B Shelar 	return 0;
44374ed7ab9SJoe Stringer 
44474ed7ab9SJoe Stringer free_ti:
44574ed7ab9SJoe Stringer 	__table_instance_destroy(ti);
4464bc63b1bSTonghao Zhang free_mask_array:
447eac87c41SEelco Chaudron 	__mask_array_destroy(ma);
44804b7d136STonghao Zhang free_mask_cache:
4499bf24f59SEelco Chaudron 	__mask_cache_destroy(mc);
45074ed7ab9SJoe Stringer 	return -ENOMEM;
451e6445719SPravin B Shelar }
452e6445719SPravin B Shelar 
453e6445719SPravin B Shelar static void flow_tbl_destroy_rcu_cb(struct rcu_head *rcu)
454e6445719SPravin B Shelar {
455cf3266adSTonghao Zhang 	struct table_instance *ti;
456e6445719SPravin B Shelar 
457cf3266adSTonghao Zhang 	ti = container_of(rcu, struct table_instance, rcu);
458b637e498SPravin B Shelar 	__table_instance_destroy(ti);
459b637e498SPravin B Shelar }
460b637e498SPravin B Shelar 
46150b0e61bSTonghao Zhang static void table_instance_flow_free(struct flow_table *table,
46250b0e61bSTonghao Zhang 				     struct table_instance *ti,
46350b0e61bSTonghao Zhang 				     struct table_instance *ufid_ti,
464df68d64eSTonghao Zhang 				     struct sw_flow *flow)
46550b0e61bSTonghao Zhang {
46650b0e61bSTonghao Zhang 	hlist_del_rcu(&flow->flow_table.node[ti->node_ver]);
46750b0e61bSTonghao Zhang 	table->count--;
46850b0e61bSTonghao Zhang 
46950b0e61bSTonghao Zhang 	if (ovs_identifier_is_ufid(&flow->id)) {
47050b0e61bSTonghao Zhang 		hlist_del_rcu(&flow->ufid_table.node[ufid_ti->node_ver]);
47150b0e61bSTonghao Zhang 		table->ufid_count--;
47250b0e61bSTonghao Zhang 	}
47350b0e61bSTonghao Zhang 
47450b0e61bSTonghao Zhang 	flow_mask_remove(table, flow->mask);
47550b0e61bSTonghao Zhang }
47650b0e61bSTonghao Zhang 
4771f3a090bSTonghao Zhang /* Must be called with OVS mutex held. */
4781f3a090bSTonghao Zhang void table_instance_flow_flush(struct flow_table *table,
47950b0e61bSTonghao Zhang 			       struct table_instance *ti,
4801f3a090bSTonghao Zhang 			       struct table_instance *ufid_ti)
481b637e498SPravin B Shelar {
482e80857ccSAndy Zhou 	int i;
483e80857ccSAndy Zhou 
484e80857ccSAndy Zhou 	for (i = 0; i < ti->n_buckets; i++) {
485ee9c5e67SKent Overstreet 		struct hlist_head *head = &ti->buckets[i];
486e80857ccSAndy Zhou 		struct hlist_node *n;
487cf3266adSTonghao Zhang 		struct sw_flow *flow;
488e80857ccSAndy Zhou 
48950b0e61bSTonghao Zhang 		hlist_for_each_entry_safe(flow, n, head,
49050b0e61bSTonghao Zhang 					  flow_table.node[ti->node_ver]) {
49150b0e61bSTonghao Zhang 
49250b0e61bSTonghao Zhang 			table_instance_flow_free(table, ti, ufid_ti,
493df68d64eSTonghao Zhang 						 flow);
4941f3a090bSTonghao Zhang 			ovs_flow_free(flow, true);
4951f3a090bSTonghao Zhang 		}
496e80857ccSAndy Zhou 	}
497df68d64eSTonghao Zhang 
498df68d64eSTonghao Zhang 	if (WARN_ON(table->count != 0 ||
499df68d64eSTonghao Zhang 		    table->ufid_count != 0)) {
500df68d64eSTonghao Zhang 		table->count = 0;
501df68d64eSTonghao Zhang 		table->ufid_count = 0;
502df68d64eSTonghao Zhang 	}
503e80857ccSAndy Zhou }
504e80857ccSAndy Zhou 
5051f3a090bSTonghao Zhang static void table_instance_destroy(struct table_instance *ti,
5061f3a090bSTonghao Zhang 				   struct table_instance *ufid_ti)
5071f3a090bSTonghao Zhang {
508b637e498SPravin B Shelar 	call_rcu(&ti->rcu, flow_tbl_destroy_rcu_cb);
50974ed7ab9SJoe Stringer 	call_rcu(&ufid_ti->rcu, flow_tbl_destroy_rcu_cb);
510e6445719SPravin B Shelar }
511e6445719SPravin B Shelar 
5129b996e54SPravin B Shelar /* No need for locking this function is called from RCU callback or
5139b996e54SPravin B Shelar  * error path.
5149b996e54SPravin B Shelar  */
5159b996e54SPravin B Shelar void ovs_flow_tbl_destroy(struct flow_table *table)
516e6445719SPravin B Shelar {
5179b996e54SPravin B Shelar 	struct table_instance *ti = rcu_dereference_raw(table->ti);
51874ed7ab9SJoe Stringer 	struct table_instance *ufid_ti = rcu_dereference_raw(table->ufid_ti);
5195845589eSTonghao Zhang 	struct mask_cache *mc = rcu_dereference_raw(table->mask_cache);
5205845589eSTonghao Zhang 	struct mask_array *ma = rcu_dereference_raw(table->mask_array);
521e6445719SPravin B Shelar 
5229bf24f59SEelco Chaudron 	call_rcu(&mc->rcu, mask_cache_rcu_cb);
5239bf24f59SEelco Chaudron 	call_rcu(&ma->rcu, mask_array_rcu_cb);
5241f3a090bSTonghao Zhang 	table_instance_destroy(ti, ufid_ti);
525e6445719SPravin B Shelar }
526e6445719SPravin B Shelar 
527b637e498SPravin B Shelar struct sw_flow *ovs_flow_tbl_dump_next(struct table_instance *ti,
528e6445719SPravin B Shelar 				       u32 *bucket, u32 *last)
529e6445719SPravin B Shelar {
530e6445719SPravin B Shelar 	struct sw_flow *flow;
531e6445719SPravin B Shelar 	struct hlist_head *head;
532e6445719SPravin B Shelar 	int ver;
533e6445719SPravin B Shelar 	int i;
534e6445719SPravin B Shelar 
535b637e498SPravin B Shelar 	ver = ti->node_ver;
536b637e498SPravin B Shelar 	while (*bucket < ti->n_buckets) {
537e6445719SPravin B Shelar 		i = 0;
538ee9c5e67SKent Overstreet 		head = &ti->buckets[*bucket];
53974ed7ab9SJoe Stringer 		hlist_for_each_entry_rcu(flow, head, flow_table.node[ver]) {
540e6445719SPravin B Shelar 			if (i < *last) {
541e6445719SPravin B Shelar 				i++;
542e6445719SPravin B Shelar 				continue;
543e6445719SPravin B Shelar 			}
544e6445719SPravin B Shelar 			*last = i + 1;
545e6445719SPravin B Shelar 			return flow;
546e6445719SPravin B Shelar 		}
547e6445719SPravin B Shelar 		(*bucket)++;
548e6445719SPravin B Shelar 		*last = 0;
549e6445719SPravin B Shelar 	}
550e6445719SPravin B Shelar 
551e6445719SPravin B Shelar 	return NULL;
552e6445719SPravin B Shelar }
553e6445719SPravin B Shelar 
554b637e498SPravin B Shelar static struct hlist_head *find_bucket(struct table_instance *ti, u32 hash)
555e6445719SPravin B Shelar {
556b637e498SPravin B Shelar 	hash = jhash_1word(hash, ti->hash_seed);
557ee9c5e67SKent Overstreet 	return &ti->buckets[hash & (ti->n_buckets - 1)];
558e6445719SPravin B Shelar }
559e6445719SPravin B Shelar 
56074ed7ab9SJoe Stringer static void table_instance_insert(struct table_instance *ti,
56174ed7ab9SJoe Stringer 				  struct sw_flow *flow)
562e6445719SPravin B Shelar {
563e6445719SPravin B Shelar 	struct hlist_head *head;
564e6445719SPravin B Shelar 
56574ed7ab9SJoe Stringer 	head = find_bucket(ti, flow->flow_table.hash);
56674ed7ab9SJoe Stringer 	hlist_add_head_rcu(&flow->flow_table.node[ti->node_ver], head);
56774ed7ab9SJoe Stringer }
56874ed7ab9SJoe Stringer 
56974ed7ab9SJoe Stringer static void ufid_table_instance_insert(struct table_instance *ti,
57074ed7ab9SJoe Stringer 				       struct sw_flow *flow)
57174ed7ab9SJoe Stringer {
57274ed7ab9SJoe Stringer 	struct hlist_head *head;
57374ed7ab9SJoe Stringer 
57474ed7ab9SJoe Stringer 	head = find_bucket(ti, flow->ufid_table.hash);
57574ed7ab9SJoe Stringer 	hlist_add_head_rcu(&flow->ufid_table.node[ti->node_ver], head);
576e6445719SPravin B Shelar }
577e6445719SPravin B Shelar 
578b637e498SPravin B Shelar static void flow_table_copy_flows(struct table_instance *old,
57974ed7ab9SJoe Stringer 				  struct table_instance *new, bool ufid)
580e6445719SPravin B Shelar {
581e6445719SPravin B Shelar 	int old_ver;
582e6445719SPravin B Shelar 	int i;
583e6445719SPravin B Shelar 
584e6445719SPravin B Shelar 	old_ver = old->node_ver;
585e6445719SPravin B Shelar 	new->node_ver = !old_ver;
586e6445719SPravin B Shelar 
587e6445719SPravin B Shelar 	/* Insert in new table. */
588e6445719SPravin B Shelar 	for (i = 0; i < old->n_buckets; i++) {
589e6445719SPravin B Shelar 		struct sw_flow *flow;
590ee9c5e67SKent Overstreet 		struct hlist_head *head = &old->buckets[i];
591e6445719SPravin B Shelar 
59274ed7ab9SJoe Stringer 		if (ufid)
59364948427STonghao Zhang 			hlist_for_each_entry_rcu(flow, head,
59464948427STonghao Zhang 						 ufid_table.node[old_ver],
59564948427STonghao Zhang 						 lockdep_ovsl_is_held())
59674ed7ab9SJoe Stringer 				ufid_table_instance_insert(new, flow);
59774ed7ab9SJoe Stringer 		else
59864948427STonghao Zhang 			hlist_for_each_entry_rcu(flow, head,
59964948427STonghao Zhang 						 flow_table.node[old_ver],
60064948427STonghao Zhang 						 lockdep_ovsl_is_held())
601b637e498SPravin B Shelar 				table_instance_insert(new, flow);
602e6445719SPravin B Shelar 	}
603e6445719SPravin B Shelar }
604e6445719SPravin B Shelar 
605b637e498SPravin B Shelar static struct table_instance *table_instance_rehash(struct table_instance *ti,
60674ed7ab9SJoe Stringer 						    int n_buckets, bool ufid)
607e6445719SPravin B Shelar {
608b637e498SPravin B Shelar 	struct table_instance *new_ti;
609e6445719SPravin B Shelar 
610b637e498SPravin B Shelar 	new_ti = table_instance_alloc(n_buckets);
611b637e498SPravin B Shelar 	if (!new_ti)
612618ed0c8SPravin B Shelar 		return NULL;
613e6445719SPravin B Shelar 
61474ed7ab9SJoe Stringer 	flow_table_copy_flows(ti, new_ti, ufid);
615e6445719SPravin B Shelar 
616b637e498SPravin B Shelar 	return new_ti;
617e6445719SPravin B Shelar }
618e6445719SPravin B Shelar 
619b637e498SPravin B Shelar int ovs_flow_tbl_flush(struct flow_table *flow_table)
620e6445719SPravin B Shelar {
62174ed7ab9SJoe Stringer 	struct table_instance *old_ti, *new_ti;
62274ed7ab9SJoe Stringer 	struct table_instance *old_ufid_ti, *new_ufid_ti;
623e6445719SPravin B Shelar 
624b637e498SPravin B Shelar 	new_ti = table_instance_alloc(TBL_MIN_BUCKETS);
625b637e498SPravin B Shelar 	if (!new_ti)
626b637e498SPravin B Shelar 		return -ENOMEM;
62774ed7ab9SJoe Stringer 	new_ufid_ti = table_instance_alloc(TBL_MIN_BUCKETS);
62874ed7ab9SJoe Stringer 	if (!new_ufid_ti)
62974ed7ab9SJoe Stringer 		goto err_free_ti;
63074ed7ab9SJoe Stringer 
63174ed7ab9SJoe Stringer 	old_ti = ovsl_dereference(flow_table->ti);
63274ed7ab9SJoe Stringer 	old_ufid_ti = ovsl_dereference(flow_table->ufid_ti);
633b637e498SPravin B Shelar 
634b637e498SPravin B Shelar 	rcu_assign_pointer(flow_table->ti, new_ti);
63574ed7ab9SJoe Stringer 	rcu_assign_pointer(flow_table->ufid_ti, new_ufid_ti);
636b637e498SPravin B Shelar 	flow_table->last_rehash = jiffies;
637b637e498SPravin B Shelar 
6381f3a090bSTonghao Zhang 	table_instance_flow_flush(flow_table, old_ti, old_ufid_ti);
6391f3a090bSTonghao Zhang 	table_instance_destroy(old_ti, old_ufid_ti);
640b637e498SPravin B Shelar 	return 0;
64174ed7ab9SJoe Stringer 
64274ed7ab9SJoe Stringer err_free_ti:
64374ed7ab9SJoe Stringer 	__table_instance_destroy(new_ti);
64474ed7ab9SJoe Stringer 	return -ENOMEM;
645e6445719SPravin B Shelar }
646e6445719SPravin B Shelar 
647272c2cf8SJoe Stringer static u32 flow_hash(const struct sw_flow_key *key,
648272c2cf8SJoe Stringer 		     const struct sw_flow_key_range *range)
649e6445719SPravin B Shelar {
650515b65a4STonghao Zhang 	const u32 *hash_key = (const u32 *)((const u8 *)key + range->start);
651e6445719SPravin B Shelar 
652e6445719SPravin B Shelar 	/* Make sure number of hash bytes are multiple of u32. */
653515b65a4STonghao Zhang 	int hash_u32s = range_n_bytes(range) >> 2;
654e6445719SPravin B Shelar 
65587545899SDaniel Borkmann 	return jhash2(hash_key, hash_u32s, 0);
656e6445719SPravin B Shelar }
657e6445719SPravin B Shelar 
658e6445719SPravin B Shelar static int flow_key_start(const struct sw_flow_key *key)
659e6445719SPravin B Shelar {
66000a93babSJiri Benc 	if (key->tun_proto)
661e6445719SPravin B Shelar 		return 0;
662e6445719SPravin B Shelar 	else
663e6445719SPravin B Shelar 		return rounddown(offsetof(struct sw_flow_key, phy),
664e6445719SPravin B Shelar 				 sizeof(long));
665e6445719SPravin B Shelar }
666e6445719SPravin B Shelar 
667e6445719SPravin B Shelar static bool cmp_key(const struct sw_flow_key *key1,
668e6445719SPravin B Shelar 		    const struct sw_flow_key *key2,
669e6445719SPravin B Shelar 		    int key_start, int key_end)
670e6445719SPravin B Shelar {
6717085130bSDaniele Di Proietto 	const long *cp1 = (const long *)((const u8 *)key1 + key_start);
6727085130bSDaniele Di Proietto 	const long *cp2 = (const long *)((const u8 *)key2 + key_start);
673e6445719SPravin B Shelar 	long diffs = 0;
674e6445719SPravin B Shelar 	int i;
675e6445719SPravin B Shelar 
676e6445719SPravin B Shelar 	for (i = key_start; i < key_end; i += sizeof(long))
677e6445719SPravin B Shelar 		diffs |= *cp1++ ^ *cp2++;
678e6445719SPravin B Shelar 
679e6445719SPravin B Shelar 	return diffs == 0;
680e6445719SPravin B Shelar }
681e6445719SPravin B Shelar 
682e6445719SPravin B Shelar static bool flow_cmp_masked_key(const struct sw_flow *flow,
683e6445719SPravin B Shelar 				const struct sw_flow_key *key,
684272c2cf8SJoe Stringer 				const struct sw_flow_key_range *range)
685e6445719SPravin B Shelar {
686272c2cf8SJoe Stringer 	return cmp_key(&flow->key, key, range->start, range->end);
687e6445719SPravin B Shelar }
688e6445719SPravin B Shelar 
68974ed7ab9SJoe Stringer static bool ovs_flow_cmp_unmasked_key(const struct sw_flow *flow,
69012eb18f7SThomas Graf 				      const struct sw_flow_match *match)
691e6445719SPravin B Shelar {
692e6445719SPravin B Shelar 	struct sw_flow_key *key = match->key;
693e6445719SPravin B Shelar 	int key_start = flow_key_start(key);
694e6445719SPravin B Shelar 	int key_end = match->range.end;
695e6445719SPravin B Shelar 
69674ed7ab9SJoe Stringer 	BUG_ON(ovs_identifier_is_ufid(&flow->id));
69774ed7ab9SJoe Stringer 	return cmp_key(flow->id.unmasked_key, key, key_start, key_end);
698e6445719SPravin B Shelar }
699e6445719SPravin B Shelar 
700b637e498SPravin B Shelar static struct sw_flow *masked_flow_lookup(struct table_instance *ti,
701e6445719SPravin B Shelar 					  const struct sw_flow_key *unmasked,
70204b7d136STonghao Zhang 					  const struct sw_flow_mask *mask,
70304b7d136STonghao Zhang 					  u32 *n_mask_hit)
704e6445719SPravin B Shelar {
705e6445719SPravin B Shelar 	struct sw_flow *flow;
706e6445719SPravin B Shelar 	struct hlist_head *head;
707e6445719SPravin B Shelar 	u32 hash;
708e6445719SPravin B Shelar 	struct sw_flow_key masked_key;
709e6445719SPravin B Shelar 
710ae5f2fb1SJesse Gross 	ovs_flow_mask_key(&masked_key, unmasked, false, mask);
711272c2cf8SJoe Stringer 	hash = flow_hash(&masked_key, &mask->range);
712b637e498SPravin B Shelar 	head = find_bucket(ti, hash);
71304b7d136STonghao Zhang 	(*n_mask_hit)++;
71404b7d136STonghao Zhang 
715a2cfb96cSMadhuparna Bhowmik 	hlist_for_each_entry_rcu(flow, head, flow_table.node[ti->node_ver],
716a2cfb96cSMadhuparna Bhowmik 				 lockdep_ovsl_is_held()) {
71774ed7ab9SJoe Stringer 		if (flow->mask == mask && flow->flow_table.hash == hash &&
718272c2cf8SJoe Stringer 		    flow_cmp_masked_key(flow, &masked_key, &mask->range))
719e6445719SPravin B Shelar 			return flow;
720e6445719SPravin B Shelar 	}
721e6445719SPravin B Shelar 	return NULL;
722e6445719SPravin B Shelar }
723e6445719SPravin B Shelar 
724a7f35e78STonghao Zhang /* Flow lookup does full lookup on flow table. It starts with
725a7f35e78STonghao Zhang  * mask from index passed in *index.
726f981fc3dSEelco Chaudron  * This function MUST be called with BH disabled due to the use
727f981fc3dSEelco Chaudron  * of CPU specific variables.
728a7f35e78STonghao Zhang  */
72904b7d136STonghao Zhang static struct sw_flow *flow_lookup(struct flow_table *tbl,
73004b7d136STonghao Zhang 				   struct table_instance *ti,
7314bc63b1bSTonghao Zhang 				   struct mask_array *ma,
7321bd7116fSAndy Zhou 				   const struct sw_flow_key *key,
7334bc63b1bSTonghao Zhang 				   u32 *n_mask_hit,
7349d2f627bSEelco Chaudron 				   u32 *n_cache_hit,
7354bc63b1bSTonghao Zhang 				   u32 *index)
736e6445719SPravin B Shelar {
737f981fc3dSEelco Chaudron 	struct mask_array_stats *stats = this_cpu_ptr(ma->masks_usage_stats);
738b637e498SPravin B Shelar 	struct sw_flow *flow;
73957f7d7b9STonghao Zhang 	struct sw_flow_mask *mask;
7404bc63b1bSTonghao Zhang 	int i;
741e6445719SPravin B Shelar 
7420a3e0137STonghao Zhang 	if (likely(*index < ma->max)) {
743a7f35e78STonghao Zhang 		mask = rcu_dereference_ovsl(ma->masks[*index]);
744a7f35e78STonghao Zhang 		if (mask) {
745a7f35e78STonghao Zhang 			flow = masked_flow_lookup(ti, key, mask, n_mask_hit);
746eac87c41SEelco Chaudron 			if (flow) {
747f981fc3dSEelco Chaudron 				u64_stats_update_begin(&stats->syncp);
748f981fc3dSEelco Chaudron 				stats->usage_cntrs[*index]++;
749f981fc3dSEelco Chaudron 				u64_stats_update_end(&stats->syncp);
7509d2f627bSEelco Chaudron 				(*n_cache_hit)++;
751a7f35e78STonghao Zhang 				return flow;
752a7f35e78STonghao Zhang 			}
753a7f35e78STonghao Zhang 		}
754eac87c41SEelco Chaudron 	}
755a7f35e78STonghao Zhang 
7564bc63b1bSTonghao Zhang 	for (i = 0; i < ma->max; i++)  {
757a7f35e78STonghao Zhang 
758a7f35e78STonghao Zhang 		if (i == *index)
759a7f35e78STonghao Zhang 			continue;
7604bc63b1bSTonghao Zhang 
7614bc63b1bSTonghao Zhang 		mask = rcu_dereference_ovsl(ma->masks[i]);
7620a3e0137STonghao Zhang 		if (unlikely(!mask))
76357f7d7b9STonghao Zhang 			break;
764a7f35e78STonghao Zhang 
76504b7d136STonghao Zhang 		flow = masked_flow_lookup(ti, key, mask, n_mask_hit);
7664bc63b1bSTonghao Zhang 		if (flow) { /* Found */
7674bc63b1bSTonghao Zhang 			*index = i;
768f981fc3dSEelco Chaudron 			u64_stats_update_begin(&stats->syncp);
769f981fc3dSEelco Chaudron 			stats->usage_cntrs[*index]++;
770f981fc3dSEelco Chaudron 			u64_stats_update_end(&stats->syncp);
771b637e498SPravin B Shelar 			return flow;
772b637e498SPravin B Shelar 		}
7734bc63b1bSTonghao Zhang 	}
7744bc63b1bSTonghao Zhang 
775b637e498SPravin B Shelar 	return NULL;
776e6445719SPravin B Shelar }
777e6445719SPravin B Shelar 
77804b7d136STonghao Zhang /*
77904b7d136STonghao Zhang  * mask_cache maps flow to probable mask. This cache is not tightly
78004b7d136STonghao Zhang  * coupled cache, It means updates to  mask list can result in inconsistent
78104b7d136STonghao Zhang  * cache entry in mask cache.
78204b7d136STonghao Zhang  * This is per cpu cache and is divided in MC_HASH_SEGS segments.
78304b7d136STonghao Zhang  * In case of a hash collision the entry is hashed in next segment.
78404b7d136STonghao Zhang  * */
78504b7d136STonghao Zhang struct sw_flow *ovs_flow_tbl_lookup_stats(struct flow_table *tbl,
78604b7d136STonghao Zhang 					  const struct sw_flow_key *key,
78704b7d136STonghao Zhang 					  u32 skb_hash,
7889d2f627bSEelco Chaudron 					  u32 *n_mask_hit,
7899d2f627bSEelco Chaudron 					  u32 *n_cache_hit)
79004b7d136STonghao Zhang {
7919bf24f59SEelco Chaudron 	struct mask_cache *mc = rcu_dereference(tbl->mask_cache);
792a7f35e78STonghao Zhang 	struct mask_array *ma = rcu_dereference(tbl->mask_array);
793a7f35e78STonghao Zhang 	struct table_instance *ti = rcu_dereference(tbl->ti);
794a7f35e78STonghao Zhang 	struct mask_cache_entry *entries, *ce;
79504b7d136STonghao Zhang 	struct sw_flow *flow;
796a7f35e78STonghao Zhang 	u32 hash;
79704b7d136STonghao Zhang 	int seg;
79804b7d136STonghao Zhang 
79904b7d136STonghao Zhang 	*n_mask_hit = 0;
8009d2f627bSEelco Chaudron 	*n_cache_hit = 0;
8019bf24f59SEelco Chaudron 	if (unlikely(!skb_hash || mc->cache_size == 0)) {
802a7f35e78STonghao Zhang 		u32 mask_index = 0;
8039d2f627bSEelco Chaudron 		u32 cache = 0;
8044bc63b1bSTonghao Zhang 
8059d2f627bSEelco Chaudron 		return flow_lookup(tbl, ti, ma, key, n_mask_hit, &cache,
8069d2f627bSEelco Chaudron 				   &mask_index);
8074bc63b1bSTonghao Zhang 	}
80804b7d136STonghao Zhang 
809a7f35e78STonghao Zhang 	/* Pre and post recirulation flows usually have the same skb_hash
810a7f35e78STonghao Zhang 	 * value. To avoid hash collisions, rehash the 'skb_hash' with
811a7f35e78STonghao Zhang 	 * 'recirc_id'.  */
812a7f35e78STonghao Zhang 	if (key->recirc_id)
813a7f35e78STonghao Zhang 		skb_hash = jhash_1word(skb_hash, key->recirc_id);
814a7f35e78STonghao Zhang 
815a7f35e78STonghao Zhang 	ce = NULL;
816a7f35e78STonghao Zhang 	hash = skb_hash;
8179bf24f59SEelco Chaudron 	entries = this_cpu_ptr(mc->mask_cache);
81804b7d136STonghao Zhang 
819a7f35e78STonghao Zhang 	/* Find the cache entry 'ce' to operate on. */
82004b7d136STonghao Zhang 	for (seg = 0; seg < MC_HASH_SEGS; seg++) {
8219bf24f59SEelco Chaudron 		int index = hash & (mc->cache_size - 1);
822a7f35e78STonghao Zhang 		struct mask_cache_entry *e;
82304b7d136STonghao Zhang 
824a7f35e78STonghao Zhang 		e = &entries[index];
825a7f35e78STonghao Zhang 		if (e->skb_hash == skb_hash) {
826a7f35e78STonghao Zhang 			flow = flow_lookup(tbl, ti, ma, key, n_mask_hit,
8279d2f627bSEelco Chaudron 					   n_cache_hit, &e->mask_index);
828a7f35e78STonghao Zhang 			if (!flow)
829a7f35e78STonghao Zhang 				e->skb_hash = 0;
83004b7d136STonghao Zhang 			return flow;
83104b7d136STonghao Zhang 		}
83204b7d136STonghao Zhang 
833a7f35e78STonghao Zhang 		if (!ce || e->skb_hash < ce->skb_hash)
834a7f35e78STonghao Zhang 			ce = e;  /* A better replacement cache candidate. */
83504b7d136STonghao Zhang 
83604b7d136STonghao Zhang 		hash >>= MC_HASH_SHIFT;
83704b7d136STonghao Zhang 	}
83804b7d136STonghao Zhang 
839a7f35e78STonghao Zhang 	/* Cache miss, do full lookup. */
8409d2f627bSEelco Chaudron 	flow = flow_lookup(tbl, ti, ma, key, n_mask_hit, n_cache_hit,
8419d2f627bSEelco Chaudron 			   &ce->mask_index);
8424bc63b1bSTonghao Zhang 	if (flow)
843a7f35e78STonghao Zhang 		ce->skb_hash = skb_hash;
84404b7d136STonghao Zhang 
8459d2f627bSEelco Chaudron 	*n_cache_hit = 0;
84604b7d136STonghao Zhang 	return flow;
84704b7d136STonghao Zhang }
84804b7d136STonghao Zhang 
8495bb50632SAndy Zhou struct sw_flow *ovs_flow_tbl_lookup(struct flow_table *tbl,
8505bb50632SAndy Zhou 				    const struct sw_flow_key *key)
8515bb50632SAndy Zhou {
85204b7d136STonghao Zhang 	struct table_instance *ti = rcu_dereference_ovsl(tbl->ti);
8534bc63b1bSTonghao Zhang 	struct mask_array *ma = rcu_dereference_ovsl(tbl->mask_array);
8544bc63b1bSTonghao Zhang 	u32 __always_unused n_mask_hit;
8559d2f627bSEelco Chaudron 	u32 __always_unused n_cache_hit;
856f981fc3dSEelco Chaudron 	struct sw_flow *flow;
857a7f35e78STonghao Zhang 	u32 index = 0;
8584bc63b1bSTonghao Zhang 
859f981fc3dSEelco Chaudron 	/* This function gets called trough the netlink interface and therefore
860f981fc3dSEelco Chaudron 	 * is preemptible. However, flow_lookup() function needs to be called
861f981fc3dSEelco Chaudron 	 * with BH disabled due to CPU specific variables.
862f981fc3dSEelco Chaudron 	 */
863f981fc3dSEelco Chaudron 	local_bh_disable();
864f981fc3dSEelco Chaudron 	flow = flow_lookup(tbl, ti, ma, key, &n_mask_hit, &n_cache_hit, &index);
865f981fc3dSEelco Chaudron 	local_bh_enable();
866f981fc3dSEelco Chaudron 	return flow;
8675bb50632SAndy Zhou }
8685bb50632SAndy Zhou 
8694a46b24eSAlex Wang struct sw_flow *ovs_flow_tbl_lookup_exact(struct flow_table *tbl,
87012eb18f7SThomas Graf 					  const struct sw_flow_match *match)
8714a46b24eSAlex Wang {
8724bc63b1bSTonghao Zhang 	struct mask_array *ma = ovsl_dereference(tbl->mask_array);
8734bc63b1bSTonghao Zhang 	int i;
8744a46b24eSAlex Wang 
8754a46b24eSAlex Wang 	/* Always called under ovs-mutex. */
8764bc63b1bSTonghao Zhang 	for (i = 0; i < ma->max; i++) {
8774bc63b1bSTonghao Zhang 		struct table_instance *ti = rcu_dereference_ovsl(tbl->ti);
8784bc63b1bSTonghao Zhang 		u32 __always_unused n_mask_hit;
8794bc63b1bSTonghao Zhang 		struct sw_flow_mask *mask;
8804bc63b1bSTonghao Zhang 		struct sw_flow *flow;
8814bc63b1bSTonghao Zhang 
8824bc63b1bSTonghao Zhang 		mask = ovsl_dereference(ma->masks[i]);
8834bc63b1bSTonghao Zhang 		if (!mask)
8844bc63b1bSTonghao Zhang 			continue;
8854bc63b1bSTonghao Zhang 
88604b7d136STonghao Zhang 		flow = masked_flow_lookup(ti, match->key, mask, &n_mask_hit);
88774ed7ab9SJoe Stringer 		if (flow && ovs_identifier_is_key(&flow->id) &&
8884bc63b1bSTonghao Zhang 		    ovs_flow_cmp_unmasked_key(flow, match)) {
88974ed7ab9SJoe Stringer 			return flow;
89074ed7ab9SJoe Stringer 		}
8914bc63b1bSTonghao Zhang 	}
8924bc63b1bSTonghao Zhang 
89374ed7ab9SJoe Stringer 	return NULL;
89474ed7ab9SJoe Stringer }
89574ed7ab9SJoe Stringer 
89674ed7ab9SJoe Stringer static u32 ufid_hash(const struct sw_flow_id *sfid)
89774ed7ab9SJoe Stringer {
89874ed7ab9SJoe Stringer 	return jhash(sfid->ufid, sfid->ufid_len, 0);
89974ed7ab9SJoe Stringer }
90074ed7ab9SJoe Stringer 
90174ed7ab9SJoe Stringer static bool ovs_flow_cmp_ufid(const struct sw_flow *flow,
90274ed7ab9SJoe Stringer 			      const struct sw_flow_id *sfid)
90374ed7ab9SJoe Stringer {
90474ed7ab9SJoe Stringer 	if (flow->id.ufid_len != sfid->ufid_len)
90574ed7ab9SJoe Stringer 		return false;
90674ed7ab9SJoe Stringer 
90774ed7ab9SJoe Stringer 	return !memcmp(flow->id.ufid, sfid->ufid, sfid->ufid_len);
90874ed7ab9SJoe Stringer }
90974ed7ab9SJoe Stringer 
910cf3266adSTonghao Zhang bool ovs_flow_cmp(const struct sw_flow *flow,
911cf3266adSTonghao Zhang 		  const struct sw_flow_match *match)
91274ed7ab9SJoe Stringer {
91374ed7ab9SJoe Stringer 	if (ovs_identifier_is_ufid(&flow->id))
91474ed7ab9SJoe Stringer 		return flow_cmp_masked_key(flow, match->key, &match->range);
91574ed7ab9SJoe Stringer 
91674ed7ab9SJoe Stringer 	return ovs_flow_cmp_unmasked_key(flow, match);
91774ed7ab9SJoe Stringer }
91874ed7ab9SJoe Stringer 
91974ed7ab9SJoe Stringer struct sw_flow *ovs_flow_tbl_lookup_ufid(struct flow_table *tbl,
92074ed7ab9SJoe Stringer 					 const struct sw_flow_id *ufid)
92174ed7ab9SJoe Stringer {
92274ed7ab9SJoe Stringer 	struct table_instance *ti = rcu_dereference_ovsl(tbl->ufid_ti);
92374ed7ab9SJoe Stringer 	struct sw_flow *flow;
92474ed7ab9SJoe Stringer 	struct hlist_head *head;
92574ed7ab9SJoe Stringer 	u32 hash;
92674ed7ab9SJoe Stringer 
92774ed7ab9SJoe Stringer 	hash = ufid_hash(ufid);
92874ed7ab9SJoe Stringer 	head = find_bucket(ti, hash);
929a2cfb96cSMadhuparna Bhowmik 	hlist_for_each_entry_rcu(flow, head, ufid_table.node[ti->node_ver],
930a2cfb96cSMadhuparna Bhowmik 				 lockdep_ovsl_is_held()) {
93174ed7ab9SJoe Stringer 		if (flow->ufid_table.hash == hash &&
93274ed7ab9SJoe Stringer 		    ovs_flow_cmp_ufid(flow, ufid))
9334a46b24eSAlex Wang 			return flow;
9344a46b24eSAlex Wang 	}
9354a46b24eSAlex Wang 	return NULL;
9364a46b24eSAlex Wang }
9374a46b24eSAlex Wang 
9381bd7116fSAndy Zhou int ovs_flow_tbl_num_masks(const struct flow_table *table)
9391bd7116fSAndy Zhou {
9404bc63b1bSTonghao Zhang 	struct mask_array *ma = rcu_dereference_ovsl(table->mask_array);
94157f7d7b9STonghao Zhang 	return READ_ONCE(ma->count);
9421bd7116fSAndy Zhou }
9431bd7116fSAndy Zhou 
9449bf24f59SEelco Chaudron u32 ovs_flow_tbl_masks_cache_size(const struct flow_table *table)
9459bf24f59SEelco Chaudron {
9465845589eSTonghao Zhang 	struct mask_cache *mc = rcu_dereference_ovsl(table->mask_cache);
9479bf24f59SEelco Chaudron 
9489bf24f59SEelco Chaudron 	return READ_ONCE(mc->cache_size);
9499bf24f59SEelco Chaudron }
9509bf24f59SEelco Chaudron 
95174ed7ab9SJoe Stringer static struct table_instance *table_instance_expand(struct table_instance *ti,
95274ed7ab9SJoe Stringer 						    bool ufid)
953b637e498SPravin B Shelar {
95474ed7ab9SJoe Stringer 	return table_instance_rehash(ti, ti->n_buckets * 2, ufid);
955e6445719SPravin B Shelar }
956e6445719SPravin B Shelar 
95756c19868SJarno Rajahalme /* Must be called with OVS mutex held. */
958e6445719SPravin B Shelar void ovs_flow_tbl_remove(struct flow_table *table, struct sw_flow *flow)
959e6445719SPravin B Shelar {
960b637e498SPravin B Shelar 	struct table_instance *ti = ovsl_dereference(table->ti);
96174ed7ab9SJoe Stringer 	struct table_instance *ufid_ti = ovsl_dereference(table->ufid_ti);
962b637e498SPravin B Shelar 
963e6445719SPravin B Shelar 	BUG_ON(table->count == 0);
964df68d64eSTonghao Zhang 	table_instance_flow_free(table, ti, ufid_ti, flow);
965e6445719SPravin B Shelar }
966e6445719SPravin B Shelar 
967618ed0c8SPravin B Shelar static struct sw_flow_mask *mask_alloc(void)
968e6445719SPravin B Shelar {
969e6445719SPravin B Shelar 	struct sw_flow_mask *mask;
970e6445719SPravin B Shelar 
971e6445719SPravin B Shelar 	mask = kmalloc(sizeof(*mask), GFP_KERNEL);
972e6445719SPravin B Shelar 	if (mask)
973e80857ccSAndy Zhou 		mask->ref_count = 1;
974e6445719SPravin B Shelar 
975e6445719SPravin B Shelar 	return mask;
976e6445719SPravin B Shelar }
977e6445719SPravin B Shelar 
978e6445719SPravin B Shelar static bool mask_equal(const struct sw_flow_mask *a,
979e6445719SPravin B Shelar 		       const struct sw_flow_mask *b)
980e6445719SPravin B Shelar {
9817085130bSDaniele Di Proietto 	const u8 *a_ = (const u8 *)&a->key + a->range.start;
9827085130bSDaniele Di Proietto 	const u8 *b_ = (const u8 *)&b->key + b->range.start;
983e6445719SPravin B Shelar 
984e6445719SPravin B Shelar 	return  (a->range.end == b->range.end)
985e6445719SPravin B Shelar 		&& (a->range.start == b->range.start)
986e6445719SPravin B Shelar 		&& (memcmp(a_, b_, range_n_bytes(&a->range)) == 0);
987e6445719SPravin B Shelar }
988e6445719SPravin B Shelar 
989618ed0c8SPravin B Shelar static struct sw_flow_mask *flow_mask_find(const struct flow_table *tbl,
990e6445719SPravin B Shelar 					   const struct sw_flow_mask *mask)
991e6445719SPravin B Shelar {
9924bc63b1bSTonghao Zhang 	struct mask_array *ma;
9934bc63b1bSTonghao Zhang 	int i;
994e6445719SPravin B Shelar 
9954bc63b1bSTonghao Zhang 	ma = ovsl_dereference(tbl->mask_array);
9964bc63b1bSTonghao Zhang 	for (i = 0; i < ma->max; i++) {
9974bc63b1bSTonghao Zhang 		struct sw_flow_mask *t;
9984bc63b1bSTonghao Zhang 		t = ovsl_dereference(ma->masks[i]);
9994bc63b1bSTonghao Zhang 
10004bc63b1bSTonghao Zhang 		if (t && mask_equal(mask, t))
10014bc63b1bSTonghao Zhang 			return t;
1002e6445719SPravin B Shelar 	}
1003e6445719SPravin B Shelar 
1004e6445719SPravin B Shelar 	return NULL;
1005e6445719SPravin B Shelar }
1006e6445719SPravin B Shelar 
1007d1211908SBen Pfaff /* Add 'mask' into the mask list, if it is not already there. */
1008618ed0c8SPravin B Shelar static int flow_mask_insert(struct flow_table *tbl, struct sw_flow *flow,
100912eb18f7SThomas Graf 			    const struct sw_flow_mask *new)
1010e6445719SPravin B Shelar {
1011618ed0c8SPravin B Shelar 	struct sw_flow_mask *mask;
10124bc63b1bSTonghao Zhang 
1013618ed0c8SPravin B Shelar 	mask = flow_mask_find(tbl, new);
1014618ed0c8SPravin B Shelar 	if (!mask) {
1015618ed0c8SPravin B Shelar 		/* Allocate a new mask if none exsits. */
1016618ed0c8SPravin B Shelar 		mask = mask_alloc();
1017618ed0c8SPravin B Shelar 		if (!mask)
1018618ed0c8SPravin B Shelar 			return -ENOMEM;
1019618ed0c8SPravin B Shelar 		mask->key = new->key;
1020618ed0c8SPravin B Shelar 		mask->range = new->range;
10214bc63b1bSTonghao Zhang 
10224bc63b1bSTonghao Zhang 		/* Add mask to mask-list. */
102357f7d7b9STonghao Zhang 		if (tbl_mask_array_add_mask(tbl, mask)) {
10244bc63b1bSTonghao Zhang 			kfree(mask);
102557f7d7b9STonghao Zhang 			return -ENOMEM;
10264bc63b1bSTonghao Zhang 		}
1027e80857ccSAndy Zhou 	} else {
1028e80857ccSAndy Zhou 		BUG_ON(!mask->ref_count);
1029e80857ccSAndy Zhou 		mask->ref_count++;
1030e6445719SPravin B Shelar 	}
1031e6445719SPravin B Shelar 
1032618ed0c8SPravin B Shelar 	flow->mask = mask;
1033618ed0c8SPravin B Shelar 	return 0;
1034618ed0c8SPravin B Shelar }
1035618ed0c8SPravin B Shelar 
103656c19868SJarno Rajahalme /* Must be called with OVS mutex held. */
1037d29ab6f8SJoe Stringer static void flow_key_insert(struct flow_table *table, struct sw_flow *flow)
1038618ed0c8SPravin B Shelar {
1039618ed0c8SPravin B Shelar 	struct table_instance *new_ti = NULL;
1040618ed0c8SPravin B Shelar 	struct table_instance *ti;
1041618ed0c8SPravin B Shelar 
104274ed7ab9SJoe Stringer 	flow->flow_table.hash = flow_hash(&flow->key, &flow->mask->range);
1043618ed0c8SPravin B Shelar 	ti = ovsl_dereference(table->ti);
1044618ed0c8SPravin B Shelar 	table_instance_insert(ti, flow);
1045618ed0c8SPravin B Shelar 	table->count++;
1046618ed0c8SPravin B Shelar 
1047618ed0c8SPravin B Shelar 	/* Expand table, if necessary, to make room. */
1048618ed0c8SPravin B Shelar 	if (table->count > ti->n_buckets)
104974ed7ab9SJoe Stringer 		new_ti = table_instance_expand(ti, false);
1050618ed0c8SPravin B Shelar 	else if (time_after(jiffies, table->last_rehash + REHASH_INTERVAL))
105174ed7ab9SJoe Stringer 		new_ti = table_instance_rehash(ti, ti->n_buckets, false);
1052618ed0c8SPravin B Shelar 
1053618ed0c8SPravin B Shelar 	if (new_ti) {
1054618ed0c8SPravin B Shelar 		rcu_assign_pointer(table->ti, new_ti);
105574ed7ab9SJoe Stringer 		call_rcu(&ti->rcu, flow_tbl_destroy_rcu_cb);
1056618ed0c8SPravin B Shelar 		table->last_rehash = jiffies;
1057618ed0c8SPravin B Shelar 	}
1058d29ab6f8SJoe Stringer }
1059d29ab6f8SJoe Stringer 
1060d29ab6f8SJoe Stringer /* Must be called with OVS mutex held. */
106174ed7ab9SJoe Stringer static void flow_ufid_insert(struct flow_table *table, struct sw_flow *flow)
106274ed7ab9SJoe Stringer {
106374ed7ab9SJoe Stringer 	struct table_instance *ti;
106474ed7ab9SJoe Stringer 
106574ed7ab9SJoe Stringer 	flow->ufid_table.hash = ufid_hash(&flow->id);
106674ed7ab9SJoe Stringer 	ti = ovsl_dereference(table->ufid_ti);
106774ed7ab9SJoe Stringer 	ufid_table_instance_insert(ti, flow);
106874ed7ab9SJoe Stringer 	table->ufid_count++;
106974ed7ab9SJoe Stringer 
107074ed7ab9SJoe Stringer 	/* Expand table, if necessary, to make room. */
107174ed7ab9SJoe Stringer 	if (table->ufid_count > ti->n_buckets) {
107274ed7ab9SJoe Stringer 		struct table_instance *new_ti;
107374ed7ab9SJoe Stringer 
107474ed7ab9SJoe Stringer 		new_ti = table_instance_expand(ti, true);
107574ed7ab9SJoe Stringer 		if (new_ti) {
107674ed7ab9SJoe Stringer 			rcu_assign_pointer(table->ufid_ti, new_ti);
107774ed7ab9SJoe Stringer 			call_rcu(&ti->rcu, flow_tbl_destroy_rcu_cb);
107874ed7ab9SJoe Stringer 		}
107974ed7ab9SJoe Stringer 	}
108074ed7ab9SJoe Stringer }
108174ed7ab9SJoe Stringer 
108274ed7ab9SJoe Stringer /* Must be called with OVS mutex held. */
1083d29ab6f8SJoe Stringer int ovs_flow_tbl_insert(struct flow_table *table, struct sw_flow *flow,
1084d29ab6f8SJoe Stringer 			const struct sw_flow_mask *mask)
1085d29ab6f8SJoe Stringer {
1086d29ab6f8SJoe Stringer 	int err;
1087d29ab6f8SJoe Stringer 
1088d29ab6f8SJoe Stringer 	err = flow_mask_insert(table, flow, mask);
1089d29ab6f8SJoe Stringer 	if (err)
1090d29ab6f8SJoe Stringer 		return err;
1091d29ab6f8SJoe Stringer 	flow_key_insert(table, flow);
109274ed7ab9SJoe Stringer 	if (ovs_identifier_is_ufid(&flow->id))
109374ed7ab9SJoe Stringer 		flow_ufid_insert(table, flow);
1094d29ab6f8SJoe Stringer 
1095618ed0c8SPravin B Shelar 	return 0;
1096618ed0c8SPravin B Shelar }
1097618ed0c8SPravin B Shelar 
1098eac87c41SEelco Chaudron static int compare_mask_and_count(const void *a, const void *b)
1099eac87c41SEelco Chaudron {
1100eac87c41SEelco Chaudron 	const struct mask_count *mc_a = a;
1101eac87c41SEelco Chaudron 	const struct mask_count *mc_b = b;
1102eac87c41SEelco Chaudron 
1103eac87c41SEelco Chaudron 	return (s64)mc_b->counter - (s64)mc_a->counter;
1104eac87c41SEelco Chaudron }
1105eac87c41SEelco Chaudron 
1106eac87c41SEelco Chaudron /* Must be called with OVS mutex held. */
1107eac87c41SEelco Chaudron void ovs_flow_masks_rebalance(struct flow_table *table)
1108eac87c41SEelco Chaudron {
1109eac87c41SEelco Chaudron 	struct mask_array *ma = rcu_dereference_ovsl(table->mask_array);
1110eac87c41SEelco Chaudron 	struct mask_count *masks_and_count;
1111eac87c41SEelco Chaudron 	struct mask_array *new;
1112eac87c41SEelco Chaudron 	int masks_entries = 0;
1113eac87c41SEelco Chaudron 	int i;
1114eac87c41SEelco Chaudron 
1115eac87c41SEelco Chaudron 	/* Build array of all current entries with use counters. */
1116eac87c41SEelco Chaudron 	masks_and_count = kmalloc_array(ma->max, sizeof(*masks_and_count),
1117eac87c41SEelco Chaudron 					GFP_KERNEL);
1118eac87c41SEelco Chaudron 	if (!masks_and_count)
1119eac87c41SEelco Chaudron 		return;
1120eac87c41SEelco Chaudron 
1121eac87c41SEelco Chaudron 	for (i = 0; i < ma->max; i++) {
1122eac87c41SEelco Chaudron 		struct sw_flow_mask *mask;
1123eac87c41SEelco Chaudron 		int cpu;
1124eac87c41SEelco Chaudron 
1125eac87c41SEelco Chaudron 		mask = rcu_dereference_ovsl(ma->masks[i]);
1126eac87c41SEelco Chaudron 		if (unlikely(!mask))
1127eac87c41SEelco Chaudron 			break;
1128eac87c41SEelco Chaudron 
1129eac87c41SEelco Chaudron 		masks_and_count[i].index = i;
1130eac87c41SEelco Chaudron 		masks_and_count[i].counter = 0;
1131eac87c41SEelco Chaudron 
1132eac87c41SEelco Chaudron 		for_each_possible_cpu(cpu) {
1133f981fc3dSEelco Chaudron 			struct mask_array_stats *stats;
1134f981fc3dSEelco Chaudron 			unsigned int start;
1135eac87c41SEelco Chaudron 			u64 counter;
1136eac87c41SEelco Chaudron 
1137f981fc3dSEelco Chaudron 			stats = per_cpu_ptr(ma->masks_usage_stats, cpu);
1138eac87c41SEelco Chaudron 			do {
1139f981fc3dSEelco Chaudron 				start = u64_stats_fetch_begin_irq(&stats->syncp);
1140f981fc3dSEelco Chaudron 				counter = stats->usage_cntrs[i];
1141f981fc3dSEelco Chaudron 			} while (u64_stats_fetch_retry_irq(&stats->syncp,
1142f981fc3dSEelco Chaudron 							   start));
1143eac87c41SEelco Chaudron 
1144eac87c41SEelco Chaudron 			masks_and_count[i].counter += counter;
1145eac87c41SEelco Chaudron 		}
1146eac87c41SEelco Chaudron 
1147eac87c41SEelco Chaudron 		/* Subtract the zero count value. */
1148eac87c41SEelco Chaudron 		masks_and_count[i].counter -= ma->masks_usage_zero_cntr[i];
1149eac87c41SEelco Chaudron 
1150eac87c41SEelco Chaudron 		/* Rather than calling tbl_mask_array_reset_counters()
1151eac87c41SEelco Chaudron 		 * below when no change is needed, do it inline here.
1152eac87c41SEelco Chaudron 		 */
1153eac87c41SEelco Chaudron 		ma->masks_usage_zero_cntr[i] += masks_and_count[i].counter;
1154eac87c41SEelco Chaudron 	}
1155eac87c41SEelco Chaudron 
1156eac87c41SEelco Chaudron 	if (i == 0)
1157eac87c41SEelco Chaudron 		goto free_mask_entries;
1158eac87c41SEelco Chaudron 
1159eac87c41SEelco Chaudron 	/* Sort the entries */
1160eac87c41SEelco Chaudron 	masks_entries = i;
1161eac87c41SEelco Chaudron 	sort(masks_and_count, masks_entries, sizeof(*masks_and_count),
1162eac87c41SEelco Chaudron 	     compare_mask_and_count, NULL);
1163eac87c41SEelco Chaudron 
1164eac87c41SEelco Chaudron 	/* If the order is the same, nothing to do... */
1165eac87c41SEelco Chaudron 	for (i = 0; i < masks_entries; i++) {
1166eac87c41SEelco Chaudron 		if (i != masks_and_count[i].index)
1167eac87c41SEelco Chaudron 			break;
1168eac87c41SEelco Chaudron 	}
1169eac87c41SEelco Chaudron 	if (i == masks_entries)
1170eac87c41SEelco Chaudron 		goto free_mask_entries;
1171eac87c41SEelco Chaudron 
1172eac87c41SEelco Chaudron 	/* Rebuilt the new list in order of usage. */
1173eac87c41SEelco Chaudron 	new = tbl_mask_array_alloc(ma->max);
1174eac87c41SEelco Chaudron 	if (!new)
1175eac87c41SEelco Chaudron 		goto free_mask_entries;
1176eac87c41SEelco Chaudron 
1177eac87c41SEelco Chaudron 	for (i = 0; i < masks_entries; i++) {
1178eac87c41SEelco Chaudron 		int index = masks_and_count[i].index;
1179eac87c41SEelco Chaudron 
11809bf24f59SEelco Chaudron 		if (ovsl_dereference(ma->masks[index]))
11819bf24f59SEelco Chaudron 			new->masks[new->count++] = ma->masks[index];
1182eac87c41SEelco Chaudron 	}
1183eac87c41SEelco Chaudron 
1184eac87c41SEelco Chaudron 	rcu_assign_pointer(table->mask_array, new);
1185eac87c41SEelco Chaudron 	call_rcu(&ma->rcu, mask_array_rcu_cb);
1186eac87c41SEelco Chaudron 
1187eac87c41SEelco Chaudron free_mask_entries:
1188eac87c41SEelco Chaudron 	kfree(masks_and_count);
1189eac87c41SEelco Chaudron }
1190eac87c41SEelco Chaudron 
1191e6445719SPravin B Shelar /* Initializes the flow module.
1192e6445719SPravin B Shelar  * Returns zero if successful or a negative error code. */
1193e6445719SPravin B Shelar int ovs_flow_init(void)
1194e6445719SPravin B Shelar {
1195e6445719SPravin B Shelar 	BUILD_BUG_ON(__alignof__(struct sw_flow_key) % __alignof__(long));
1196e6445719SPravin B Shelar 	BUILD_BUG_ON(sizeof(struct sw_flow_key) % sizeof(long));
1197e6445719SPravin B Shelar 
119863e7959cSJarno Rajahalme 	flow_cache = kmem_cache_create("sw_flow", sizeof(struct sw_flow)
1199db74a333SThadeu Lima de Souza Cascardo 				       + (nr_cpu_ids
1200aef833c5SPablo Neira Ayuso 					  * sizeof(struct sw_flow_stats *)),
120163e7959cSJarno Rajahalme 				       0, 0, NULL);
1202e6445719SPravin B Shelar 	if (flow_cache == NULL)
1203e6445719SPravin B Shelar 		return -ENOMEM;
1204e6445719SPravin B Shelar 
120563e7959cSJarno Rajahalme 	flow_stats_cache
1206aef833c5SPablo Neira Ayuso 		= kmem_cache_create("sw_flow_stats", sizeof(struct sw_flow_stats),
120763e7959cSJarno Rajahalme 				    0, SLAB_HWCACHE_ALIGN, NULL);
120863e7959cSJarno Rajahalme 	if (flow_stats_cache == NULL) {
120963e7959cSJarno Rajahalme 		kmem_cache_destroy(flow_cache);
121063e7959cSJarno Rajahalme 		flow_cache = NULL;
121163e7959cSJarno Rajahalme 		return -ENOMEM;
121263e7959cSJarno Rajahalme 	}
121363e7959cSJarno Rajahalme 
1214e6445719SPravin B Shelar 	return 0;
1215e6445719SPravin B Shelar }
1216e6445719SPravin B Shelar 
1217e6445719SPravin B Shelar /* Uninitializes the flow module. */
1218e6445719SPravin B Shelar void ovs_flow_exit(void)
1219e6445719SPravin B Shelar {
122063e7959cSJarno Rajahalme 	kmem_cache_destroy(flow_stats_cache);
1221e6445719SPravin B Shelar 	kmem_cache_destroy(flow_cache);
1222e6445719SPravin B Shelar }
1223