1999-01-16 00:49:17 +08:00
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/*
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* Filters: utility functions
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*
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* Copyright 1998 Pavel Machek <pavel@ucw.cz>
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2017-10-19 18:39:44 +08:00
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* 2017 Jan Maria Matejka <mq@ucw.cz>
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1999-01-16 00:49:17 +08:00
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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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#include "nest/bird.h"
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#include "conf/conf.h"
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#include "filter/filter.h"
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2018-11-22 03:37:11 +08:00
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#include "lib/idm.h"
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#include "nest/protocol.h"
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#include "nest/route.h"
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1999-01-16 00:49:17 +08:00
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2000-04-20 18:25:51 +08:00
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#define P(a,b) ((a<<8) | b)
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1999-03-09 04:30:06 +08:00
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struct f_inst *
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2017-10-19 18:39:44 +08:00
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f_new_inst(enum f_instruction_code fi_code)
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1999-03-03 03:49:28 +08:00
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{
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1999-03-09 04:30:06 +08:00
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struct f_inst * ret;
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2017-10-19 18:39:44 +08:00
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ret = cfg_allocz(sizeof(struct f_inst));
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ret->fi_code = fi_code;
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2012-07-19 01:29:33 +08:00
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ret->lineno = ifs->lino;
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1999-03-03 03:49:28 +08:00
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return ret;
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}
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2000-03-01 19:32:23 +08:00
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struct f_inst *
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2017-10-19 18:39:44 +08:00
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f_new_inst_da(enum f_instruction_code fi_code, struct f_dynamic_attr da)
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2000-03-01 19:32:23 +08:00
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{
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2017-10-19 18:39:44 +08:00
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struct f_inst *ret = f_new_inst(fi_code);
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2018-03-13 23:51:04 +08:00
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ret->aux = (da.f_type << 8) | da.type;
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2018-12-20 21:55:40 +08:00
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ret->a[1].i = da.ea_code;
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2017-10-19 18:39:44 +08:00
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return ret;
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}
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struct f_inst *
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f_new_inst_sa(enum f_instruction_code fi_code, struct f_static_attr sa)
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{
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struct f_inst *ret = f_new_inst(fi_code);
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ret->aux = sa.f_type;
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2018-12-20 21:55:40 +08:00
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ret->a[1].i = sa.sa_code;
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ret->a[0].i = sa.readonly;
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2017-10-19 18:39:44 +08:00
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return ret;
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2000-03-01 19:32:23 +08:00
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}
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2000-04-20 18:25:51 +08:00
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/*
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* Generate set_dynamic( operation( get_dynamic(), argument ) )
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*/
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struct f_inst *
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2017-10-19 18:39:44 +08:00
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f_generate_complex(int operation, int operation_aux, struct f_dynamic_attr da, struct f_inst *argument)
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2000-04-20 18:25:51 +08:00
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{
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2017-10-19 18:39:44 +08:00
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struct f_inst *set_dyn = f_new_inst_da(FI_EA_SET, da),
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*oper = f_new_inst(operation),
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*get_dyn = f_new_inst_da(FI_EA_GET, da);
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2000-04-20 18:25:51 +08:00
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oper->aux = operation_aux;
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2018-12-20 21:55:40 +08:00
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oper->a[0].p = get_dyn;
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oper->a[1].p = argument;
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2017-10-19 18:39:44 +08:00
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2018-12-20 21:55:40 +08:00
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set_dyn->a[0].p = oper;
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2000-04-20 18:25:51 +08:00
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return set_dyn;
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}
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2012-03-19 00:32:30 +08:00
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struct f_inst *
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2016-01-20 22:38:37 +08:00
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f_generate_roa_check(struct rtable_config *table, struct f_inst *prefix, struct f_inst *asn)
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2012-03-19 00:32:30 +08:00
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{
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2018-12-20 23:07:59 +08:00
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struct f_inst *ret = f_new_inst(FI_ROA_CHECK);
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ret->arg1 = prefix;
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ret->arg2 = asn;
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2012-03-19 00:32:30 +08:00
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/* prefix == NULL <-> asn == NULL */
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2016-01-20 22:38:37 +08:00
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if (table->addr_type != NET_ROA4 && table->addr_type != NET_ROA6)
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cf_error("%s is not a ROA table", table->name);
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2018-12-20 23:07:59 +08:00
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ret->arg3 = table;
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2012-03-19 00:32:30 +08:00
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2018-12-20 23:07:59 +08:00
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return ret;
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2012-03-19 00:32:30 +08:00
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}
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2018-04-30 18:49:22 +08:00
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static const char * const f_instruction_name_str[] = {
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#define F(c,a,b) \
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[c] = #c,
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FI__LIST
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#undef F
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};
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const char *
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f_instruction_name(enum f_instruction_code fi)
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{
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if (fi < FI__MAX)
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return f_instruction_name_str[fi];
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else
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bug("Got unknown instruction code: %d", fi);
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}
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1999-04-06 04:10:31 +08:00
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char *
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filter_name(struct filter *filter)
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{
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if (!filter)
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return "ACCEPT";
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else if (filter == FILTER_REJECT)
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return "REJECT";
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2012-03-15 19:50:49 +08:00
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else if (!filter->name)
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return "(unnamed)";
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1999-04-06 04:10:31 +08:00
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else
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return filter->name;
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}
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2018-11-22 03:37:11 +08:00
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#define CA_KEY(n) n->name, n->fda.type
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#define CA_NEXT(n) n->next
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#define CA_EQ(na,ta,nb,tb) (!strcmp(na,nb) && (ta == tb))
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#define CA_FN(n,t) (mem_hash(n, strlen(n)) ^ (t*0xaae99453U))
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#define CA_ORDER 8 /* Fixed */
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struct ca_storage {
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struct ca_storage *next;
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struct f_dynamic_attr fda;
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u32 uc;
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char name[0];
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};
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HASH(struct ca_storage) ca_hash;
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static struct idm ca_idm;
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static struct ca_storage **ca_storage;
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static uint ca_storage_max;
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static void
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ca_free(resource *r)
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{
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struct custom_attribute *ca = (void *) r;
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struct ca_storage *cas = HASH_FIND(ca_hash, CA, ca->name, ca->fda->type);
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ASSERT(cas);
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ca->name = NULL;
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ca->fda = NULL;
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if (!--cas->uc) {
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uint id = EA_CUSTOM_ID(cas->fda.ea_code);
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idm_free(&ca_idm, id);
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HASH_REMOVE(ca_hash, CA, cas);
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ca_storage[id] = NULL;
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mb_free(cas);
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}
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}
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static void
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ca_dump(resource *r)
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{
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struct custom_attribute *ca = (void *) r;
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debug("name \"%s\" id 0x%04x ea_type 0x%02x f_type 0x%02x\n",
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ca->name, ca->fda->ea_code, ca->fda->type, ca->fda->f_type);
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}
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static struct resclass ca_class = {
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.name = "Custom attribute",
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.size = sizeof(struct custom_attribute),
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.free = ca_free,
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.dump = ca_dump,
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.lookup = NULL,
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.memsize = NULL,
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};
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struct custom_attribute *
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ca_lookup(pool *p, const char *name, int f_type)
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{
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int ea_type;
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switch (f_type) {
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case T_INT:
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ea_type = EAF_TYPE_INT;
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break;
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case T_IP:
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ea_type = EAF_TYPE_IP_ADDRESS;
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break;
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case T_QUAD:
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ea_type = EAF_TYPE_ROUTER_ID;
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break;
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case T_PATH:
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ea_type = EAF_TYPE_AS_PATH;
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break;
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case T_CLIST:
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ea_type = EAF_TYPE_INT_SET;
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break;
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case T_ECLIST:
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ea_type = EAF_TYPE_EC_SET;
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break;
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case T_LCLIST:
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ea_type = EAF_TYPE_LC_SET;
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break;
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default:
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cf_error("Custom route attribute of unsupported type");
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}
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static int inited = 0;
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if (!inited) {
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idm_init(&ca_idm, &root_pool, 8);
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HASH_INIT(ca_hash, &root_pool, CA_ORDER);
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ca_storage_max = 256;
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ca_storage = mb_allocz(&root_pool, sizeof(struct ca_storage *) * ca_storage_max);
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inited++;
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}
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struct ca_storage *cas = HASH_FIND(ca_hash, CA, name, ea_type);
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if (cas) {
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cas->uc++;
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} else {
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uint id = idm_alloc(&ca_idm);
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if (id >= EA_CUSTOM_BIT)
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cf_error("Too many custom attributes.");
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if (id >= ca_storage_max) {
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ca_storage_max *= 2;
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ca_storage = mb_realloc(ca_storage, sizeof(struct ca_storage *) * ca_storage_max * 2);
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}
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cas = mb_allocz(&root_pool, sizeof(struct ca_storage) + strlen(name) + 1);
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cas->fda = f_new_dynamic_attr(ea_type, f_type, EA_CUSTOM(id));
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cas->uc = 1;
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strcpy(cas->name, name);
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ca_storage[id] = cas;
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HASH_INSERT(ca_hash, CA, cas);
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}
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struct custom_attribute *ca = ralloc(p, &ca_class);
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ca->fda = &(cas->fda);
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ca->name = cas->name;
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return ca;
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}
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const char *
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ea_custom_name(uint ea)
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{
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uint id = EA_CUSTOM_ID(ea);
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if (id >= ca_storage_max)
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return NULL;
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if (!ca_storage[id])
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return NULL;
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return ca_storage[id]->name;
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}
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