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Simplifies val_in_range().
Also fixes missing type check for element ~ set.
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@ -220,39 +220,6 @@ fprefix_get_bounds(struct f_prefix *px, int *l, int *h)
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}
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}
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/*
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* val_simple_in_range - check if @v1 ~ @v2 for everything except sets
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*/
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static int
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val_simple_in_range(struct f_val v1, struct f_val v2)
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{
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if ((v1.type == T_PATH) && (v2.type == T_PATH_MASK))
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return as_path_match(v1.val.ad, v2.val.path_mask);
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if ((v1.type == T_INT) && (v2.type == T_PATH))
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return as_path_is_member(v2.val.ad, v1.val.i);
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if (((v1.type == T_PAIR) || (v1.type == T_QUAD)) && (v2.type == T_CLIST))
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return int_set_contains(v2.val.ad, v1.val.i);
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#ifndef IPV6
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/* IP->Quad implicit conversion */
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if ((v1.type == T_IP) && (v2.type == T_CLIST))
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return int_set_contains(v2.val.ad, ipa_to_u32(v1.val.px.ip));
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#endif
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if ((v1.type == T_EC) && (v2.type == T_ECLIST))
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return ec_set_contains(v2.val.ad, v1.val.ec);
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if ((v1.type == T_STRING) && (v2.type == T_STRING))
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return patmatch(v2.val.s, v1.val.s);
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if ((v1.type == T_IP) && (v2.type == T_PREFIX))
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return ipa_in_net(v1.val.px.ip, v2.val.px.ip, v2.val.px.len);
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if ((v1.type == T_PREFIX) && (v2.type == T_PREFIX))
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return net_in_net(v1.val.px.ip, v1.val.px.len, v2.val.px.ip, v2.val.px.len);
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return CMP_ERROR;
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}
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static int
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clist_set_type(struct f_tree *set, struct f_val *v)
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{
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@ -396,47 +363,57 @@ eclist_filter(struct linpool *pool, struct adata *list, struct f_val set, int po
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* @v1: element
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* @v2: set
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*
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* Checks if @v1 is element (|~| operator) of @v2. Sets are internally represented as balanced trees, see
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* |tree.c| module (this is not limited to sets, but for non-set cases, val_simple_in_range() is called early).
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* Checks if @v1 is element (|~| operator) of @v2.
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*/
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static int
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val_in_range(struct f_val v1, struct f_val v2)
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{
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int res;
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if ((v1.type == T_PATH) && (v2.type == T_PATH_MASK))
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return as_path_match(v1.val.ad, v2.val.path_mask);
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res = val_simple_in_range(v1, v2);
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if ((v1.type == T_INT) && (v2.type == T_PATH))
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return as_path_is_member(v2.val.ad, v1.val.i);
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if (res != CMP_ERROR)
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return res;
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if (((v1.type == T_PAIR) || (v1.type == T_QUAD)) && (v2.type == T_CLIST))
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return int_set_contains(v2.val.ad, v1.val.i);
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#ifndef IPV6
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/* IP->Quad implicit conversion */
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if ((v1.type == T_IP) && (v2.type == T_CLIST))
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return int_set_contains(v2.val.ad, ipa_to_u32(v1.val.px.ip));
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#endif
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if ((v1.type == T_EC) && (v2.type == T_ECLIST))
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return ec_set_contains(v2.val.ad, v1.val.ec);
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if ((v1.type == T_STRING) && (v2.type == T_STRING))
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return patmatch(v2.val.s, v1.val.s);
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if ((v1.type == T_IP) && (v2.type == T_PREFIX))
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return ipa_in_net(v1.val.px.ip, v2.val.px.ip, v2.val.px.len);
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if ((v1.type == T_PREFIX) && (v2.type == T_PREFIX))
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return net_in_net(v1.val.px.ip, v1.val.px.len, v2.val.px.ip, v2.val.px.len);
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if ((v1.type == T_PREFIX) && (v2.type == T_PREFIX_SET))
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return trie_match_fprefix(v2.val.ti, &v1.val.px);
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if ((v1.type == T_CLIST) && (v2.type == T_SET))
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if (v2.type != T_SET)
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return CMP_ERROR;
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/* With integrated Quad<->IP implicit conversion */
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if ((v1.type == v2.val.t->from.type) ||
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((IP_VERSION == 4) && (v1.type == T_QUAD) && (v2.val.t->from.type == T_IP)))
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return !!find_tree(v2.val.t, v1);
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if (v1.type == T_CLIST)
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return clist_match_set(v1.val.ad, v2.val.t);
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if ((v1.type == T_ECLIST) && (v2.type == T_SET))
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if (v1.type == T_ECLIST)
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return eclist_match_set(v1.val.ad, v2.val.t);
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if ((v1.type == T_PATH) && (v2.type == T_SET))
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if (v1.type == T_PATH)
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return as_path_match_set(v1.val.ad, v2.val.t);
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if (v2.type == T_SET)
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switch (v1.type) {
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case T_ENUM:
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case T_INT:
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case T_PAIR:
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case T_QUAD:
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case T_IP:
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case T_EC:
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{
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struct f_tree *n;
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n = find_tree(v2.val.t, v1);
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if (!n)
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return 0;
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return !! (val_simple_in_range(v1, n->from)); /* We turn CMP_ERROR into compared ok, and that's fine */
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}
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}
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return CMP_ERROR;
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}
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@ -34,6 +34,12 @@
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#define NULL ((void *) 0)
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#endif
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#ifndef IPV6
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#define IP_VERSION 4
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#else
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#define IP_VERSION 6
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#endif
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/* Macros for gcc attributes */
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#define NORET __attribute__((noreturn))
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