202 lines
5.3 KiB
C
202 lines
5.3 KiB
C
/*
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* BIRD Internet Routing Daemon -- Dynamic data structures
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*
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* (c) 1999 Pavel Machek <pavel@ucw.cz>
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* (c) 2018--2019 Maria Matejka <mq@jmq.cz>
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*
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* Can be freely distributed and used under the terms of the GNU GPL.
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*/
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#ifndef _BIRD_FILTER_DATA_H_
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#define _BIRD_FILTER_DATA_H_
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#include "nest/bird.h"
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/* Type numbers must be in 0..0xff range */
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#define T_MASK 0xff
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/* Internal types */
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enum f_type {
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/* Nothing. Simply nothing. */
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T_VOID = 0,
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/* User visible types, which fit in int */
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T_INT = 0x10,
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T_BOOL = 0x11,
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T_PAIR = 0x12, /* Notice that pair is stored as integer: first << 16 | second */
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T_QUAD = 0x13,
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/* Put enumerational types in 0x30..0x3f range */
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T_ENUM_LO = 0x30,
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T_ENUM_HI = 0x3f,
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T_ENUM_RTS = 0x30,
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T_ENUM_BGP_ORIGIN = 0x31,
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T_ENUM_SCOPE = 0x32,
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T_ENUM_RTC = 0x33,
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T_ENUM_RTD = 0x34,
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T_ENUM_ROA = 0x35,
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T_ENUM_NETTYPE = 0x36,
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T_ENUM_RA_PREFERENCE = 0x37,
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/* new enums go here */
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T_ENUM_EMPTY = 0x3f, /* Special hack for atomic_aggr */
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#define T_ENUM T_ENUM_LO ... T_ENUM_HI
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/* Bigger ones */
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T_IP = 0x20,
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T_NET = 0x21,
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T_STRING = 0x22,
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T_PATH_MASK = 0x23, /* mask for BGP path */
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T_PATH = 0x24, /* BGP path */
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T_CLIST = 0x25, /* Community list */
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T_EC = 0x26, /* Extended community value, u64 */
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T_ECLIST = 0x27, /* Extended community list */
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T_LC = 0x28, /* Large community value, lcomm */
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T_LCLIST = 0x29, /* Large community list */
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T_RD = 0x2a, /* Route distinguisher for VPN addresses */
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T_PATH_MASK_ITEM = 0x2b, /* Path mask item for path mask constructors */
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T_SET = 0x80,
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T_PREFIX_SET = 0x81,
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} PACKED;
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/* Filter value; size of this affects filter memory consumption */
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struct f_val {
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enum f_type type; /* T_* */
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union {
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uint i;
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u64 ec;
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lcomm lc;
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ip_addr ip;
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const net_addr *net;
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char *s;
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const struct f_tree *t;
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const struct f_trie *ti;
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const struct adata *ad;
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const struct f_path_mask *path_mask;
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struct f_path_mask_item pmi;
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} val;
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};
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/* Dynamic attribute definition (eattrs) */
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struct f_dynamic_attr {
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u8 type; /* EA type (EAF_*) */
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u8 bit; /* For bitfield accessors */
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enum f_type f_type; /* Filter type */
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uint ea_code; /* EA code */
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};
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enum f_sa_code {
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SA_FROM = 1,
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SA_GW,
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SA_NET,
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SA_PROTO,
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SA_SOURCE,
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SA_SCOPE,
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SA_DEST,
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SA_IFNAME,
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SA_IFINDEX,
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} PACKED;
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/* Static attribute definition (members of struct rta) */
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struct f_static_attr {
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enum f_type f_type; /* Filter type */
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enum f_sa_code sa_code; /* Static attribute id */
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int readonly:1; /* Don't allow writing */
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};
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/* Filter l-value type */
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enum f_lval_type {
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F_LVAL_VARIABLE,
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F_LVAL_PREFERENCE,
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F_LVAL_SA,
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F_LVAL_EA,
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};
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/* Filter l-value */
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struct f_lval {
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enum f_lval_type type;
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union {
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const struct symbol *sym;
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struct f_dynamic_attr da;
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struct f_static_attr sa;
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};
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};
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/* IP prefix range structure */
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struct f_prefix {
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net_addr net; /* The matching prefix must match this net */
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u8 lo, hi; /* And its length must fit between lo and hi */
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};
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struct f_tree {
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struct f_tree *left, *right;
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struct f_val from, to;
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void *data;
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};
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struct f_trie_node
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{
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ip_addr addr, mask, accept;
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uint plen;
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struct f_trie_node *c[2];
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};
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struct f_trie
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{
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linpool *lp;
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int zero;
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uint node_size;
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struct f_trie_node root[0]; /* Root trie node follows */
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};
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struct f_tree *f_new_tree(void);
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struct f_tree *build_tree(struct f_tree *);
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const struct f_tree *find_tree(const struct f_tree *t, const struct f_val *val);
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int same_tree(const struct f_tree *t0, const struct f_tree *t2);
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void tree_format(const struct f_tree *t, buffer *buf);
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struct f_trie *f_new_trie(linpool *lp, uint node_size);
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void *trie_add_prefix(struct f_trie *t, const net_addr *n, uint l, uint h);
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int trie_match_net(const struct f_trie *t, const net_addr *n);
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int trie_same(const struct f_trie *t1, const struct f_trie *t2);
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void trie_format(const struct f_trie *t, buffer *buf);
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#define F_CMP_ERROR 999
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int val_same(const struct f_val *v1, const struct f_val *v2);
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int val_compare(const struct f_val *v1, const struct f_val *v2);
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void val_format(const struct f_val *v, buffer *buf);
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const char *val_dump(const struct f_val *v);
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static inline int val_is_ip4(const struct f_val *v)
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{ return (v->type == T_IP) && ipa_is_ip4(v->val.ip); }
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int val_in_range(const struct f_val *v1, const struct f_val *v2);
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int clist_set_type(const struct f_tree *set, struct f_val *v);
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static inline int eclist_set_type(const struct f_tree *set)
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{ return set->from.type == T_EC; }
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static inline int lclist_set_type(const struct f_tree *set)
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{ return set->from.type == T_LC; }
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const struct adata *clist_filter(struct linpool *pool, const struct adata *list, const struct f_val *set, int pos);
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const struct adata *eclist_filter(struct linpool *pool, const struct adata *list, const struct f_val *set, int pos);
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const struct adata *lclist_filter(struct linpool *pool, const struct adata *list, const struct f_val *set, int pos);
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/* Special undef value for paths and clists */
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static inline int
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undef_value(struct f_val v)
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{
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return ((v.type == T_PATH) || (v.type == T_CLIST) ||
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(v.type == T_ECLIST) || (v.type == T_LCLIST)) &&
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(v.val.ad == &null_adata);
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}
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extern const struct f_val f_const_empty_path, f_const_empty_clist, f_const_empty_eclist, f_const_empty_lclist;
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enum filter_return f_eval(const struct f_line *expr, struct linpool *tmp_pool, struct f_val *pres);
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#endif
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