mirror of
https://github.com/openvswitch/ovs
synced 2025-08-22 09:58:01 +00:00
Signed-off-by: Justin Pettit <jpettit@nicira.com> Acked-by: Jesse Gross <jesse@nicira.com>
191 lines
8.2 KiB
C
191 lines
8.2 KiB
C
/*
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* Copyright (c) 2009, 2010, 2011 Nicira Networks.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef CLASSIFIER_H
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#define CLASSIFIER_H 1
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/* Flow classifier.
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*
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* A classifier is a "struct classifier",
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* a hash map from a set of wildcards to a "struct cls_table",
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* a hash map from fixed field values to "struct cls_rule",
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* which can contain a list of otherwise identical rules
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* with lower priorities.
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*/
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#include "flow.h"
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#include "hmap.h"
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#include "list.h"
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#include "openflow/nicira-ext.h"
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#include "openflow/openflow.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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/* A flow classifier. */
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struct classifier {
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int n_rules; /* Total number of rules. */
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struct hmap tables; /* Contains "struct cls_table"s. */
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};
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/* A set of rules that all have the same fields wildcarded. */
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struct cls_table {
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struct hmap_node hmap_node; /* Within struct classifier 'tables' hmap. */
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struct hmap rules; /* Contains "struct cls_rule"s. */
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struct flow_wildcards wc; /* Wildcards for fields. */
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int n_table_rules; /* Number of rules, including duplicates. */
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};
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/* Returns true if 'table' is a "catch-all" table that will match every
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* packet (if there is no higher-priority match). */
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static inline bool
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cls_table_is_catchall(const struct cls_table *table)
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{
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/* A catch-all table can only have one rule, so use hmap_count() as a cheap
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* check to rule out other kinds of match before doing the full check with
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* flow_wildcards_is_catchall(). */
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return (hmap_count(&table->rules) == 1
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&& flow_wildcards_is_catchall(&table->wc));
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}
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/* A flow classification rule.
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*
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* Use one of the cls_rule_*() functions to initialize a cls_rule.
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*
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* The cls_rule_*() functions below maintain the following important
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* invariant that the classifier depends on:
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*
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* - If a bit or a field is wildcarded in 'wc', then the corresponding bit or
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* field in 'flow' is set to all-0-bits. (The
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* cls_rule_zero_wildcarded_fields() function can be used to restore this
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* invariant after adding wildcards.)
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*/
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struct cls_rule {
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struct hmap_node hmap_node; /* Within struct cls_table 'rules'. */
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struct list list; /* List of identical, lower-priority rules. */
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struct flow flow; /* All field values. */
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struct flow_wildcards wc; /* Wildcards for fields. */
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unsigned int priority; /* Larger numbers are higher priorities. */
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};
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void cls_rule_init(const struct flow *, const struct flow_wildcards *,
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unsigned int priority, struct cls_rule *);
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void cls_rule_init_exact(const struct flow *, unsigned int priority,
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struct cls_rule *);
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void cls_rule_init_catchall(struct cls_rule *, unsigned int priority);
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void cls_rule_zero_wildcarded_fields(struct cls_rule *);
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void cls_rule_set_reg(struct cls_rule *, unsigned int reg_idx, uint32_t value);
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void cls_rule_set_reg_masked(struct cls_rule *, unsigned int reg_idx,
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uint32_t value, uint32_t mask);
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void cls_rule_set_tun_id(struct cls_rule *, ovs_be64 tun_id);
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void cls_rule_set_tun_id_masked(struct cls_rule *,
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ovs_be64 tun_id, ovs_be64 mask);
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void cls_rule_set_in_port(struct cls_rule *, uint16_t odp_port);
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void cls_rule_set_dl_type(struct cls_rule *, ovs_be16);
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void cls_rule_set_dl_src(struct cls_rule *, const uint8_t[6]);
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void cls_rule_set_dl_dst(struct cls_rule *, const uint8_t[6]);
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void cls_rule_set_dl_dst_masked(struct cls_rule *, const uint8_t dl_dst[6],
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const uint8_t mask[6]);
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void cls_rule_set_dl_tci(struct cls_rule *, ovs_be16 tci);
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void cls_rule_set_dl_tci_masked(struct cls_rule *,
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ovs_be16 tci, ovs_be16 mask);
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void cls_rule_set_any_vid(struct cls_rule *);
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void cls_rule_set_dl_vlan(struct cls_rule *, ovs_be16);
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void cls_rule_set_any_pcp(struct cls_rule *);
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void cls_rule_set_dl_vlan_pcp(struct cls_rule *, uint8_t);
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void cls_rule_set_tp_src(struct cls_rule *, ovs_be16);
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void cls_rule_set_tp_dst(struct cls_rule *, ovs_be16);
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void cls_rule_set_nw_proto(struct cls_rule *, uint8_t);
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void cls_rule_set_nw_src(struct cls_rule *, ovs_be32);
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bool cls_rule_set_nw_src_masked(struct cls_rule *, ovs_be32 ip, ovs_be32 mask);
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void cls_rule_set_nw_dst(struct cls_rule *, ovs_be32);
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bool cls_rule_set_nw_dst_masked(struct cls_rule *, ovs_be32 ip, ovs_be32 mask);
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void cls_rule_set_nw_tos(struct cls_rule *, uint8_t);
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void cls_rule_set_frag(struct cls_rule *, uint8_t frag);
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void cls_rule_set_frag_masked(struct cls_rule *, uint8_t frag, uint8_t mask);
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void cls_rule_set_icmp_type(struct cls_rule *, uint8_t);
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void cls_rule_set_icmp_code(struct cls_rule *, uint8_t);
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void cls_rule_set_arp_sha(struct cls_rule *, const uint8_t[6]);
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void cls_rule_set_arp_tha(struct cls_rule *, const uint8_t[6]);
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void cls_rule_set_ipv6_src(struct cls_rule *, const struct in6_addr *);
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bool cls_rule_set_ipv6_src_masked(struct cls_rule *, const struct in6_addr *,
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const struct in6_addr *);
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void cls_rule_set_ipv6_dst(struct cls_rule *, const struct in6_addr *);
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bool cls_rule_set_ipv6_dst_masked(struct cls_rule *, const struct in6_addr *,
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const struct in6_addr *);
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void cls_rule_set_ipv6_label(struct cls_rule *, ovs_be32);
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void cls_rule_set_nd_target(struct cls_rule *, const struct in6_addr *);
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bool cls_rule_equal(const struct cls_rule *, const struct cls_rule *);
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uint32_t cls_rule_hash(const struct cls_rule *, uint32_t basis);
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void cls_rule_format(const struct cls_rule *, struct ds *);
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char *cls_rule_to_string(const struct cls_rule *);
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void cls_rule_print(const struct cls_rule *);
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void classifier_init(struct classifier *);
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void classifier_destroy(struct classifier *);
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bool classifier_is_empty(const struct classifier *);
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int classifier_count(const struct classifier *);
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void classifier_insert(struct classifier *, struct cls_rule *);
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struct cls_rule *classifier_replace(struct classifier *, struct cls_rule *);
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void classifier_remove(struct classifier *, struct cls_rule *);
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struct cls_rule *classifier_lookup(const struct classifier *,
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const struct flow *);
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bool classifier_rule_overlaps(const struct classifier *,
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const struct cls_rule *);
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typedef void cls_cb_func(struct cls_rule *, void *aux);
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struct cls_rule *classifier_find_rule_exactly(const struct classifier *,
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const struct cls_rule *);
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/* Iteration. */
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struct cls_cursor {
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const struct classifier *cls;
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const struct cls_table *table;
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const struct cls_rule *target;
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};
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void cls_cursor_init(struct cls_cursor *, const struct classifier *,
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const struct cls_rule *match);
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struct cls_rule *cls_cursor_first(struct cls_cursor *);
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struct cls_rule *cls_cursor_next(struct cls_cursor *, struct cls_rule *);
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#define CLS_CURSOR_FOR_EACH(RULE, MEMBER, CURSOR) \
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for (ASSIGN_CONTAINER(RULE, cls_cursor_first(CURSOR), MEMBER); \
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&(RULE)->MEMBER != NULL; \
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ASSIGN_CONTAINER(RULE, cls_cursor_next(CURSOR, &(RULE)->MEMBER), \
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MEMBER))
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#define CLS_CURSOR_FOR_EACH_SAFE(RULE, NEXT, MEMBER, CURSOR) \
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for (ASSIGN_CONTAINER(RULE, cls_cursor_first(CURSOR), MEMBER); \
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(&(RULE)->MEMBER != NULL \
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? ASSIGN_CONTAINER(NEXT, cls_cursor_next(CURSOR, &(RULE)->MEMBER), \
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MEMBER) \
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: 0); \
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(RULE) = (NEXT))
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#ifdef __cplusplus
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}
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#endif
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#endif /* classifier.h */
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