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bird/nest/proto.c

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/*
* BIRD -- Protocols
*
* (c) 1998--1999 Martin Mares <mj@ucw.cz>
*
* Can be freely distributed and used under the terms of the GNU GPL.
*/
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#define LOCAL_DEBUG
#include <string.h>
#include "nest/bird.h"
#include "nest/protocol.h"
#include "lib/resource.h"
#include "lib/lists.h"
#include "lib/event.h"
#include "conf/conf.h"
#include "nest/route.h"
#include "nest/iface.h"
static pool *proto_pool;
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list protocol_list;
list proto_list;
static list inactive_proto_list;
static list initial_proto_list;
static char *p_states[] = { "DOWN", "START", "UP", "STOP" };
static char *c_states[] = { "HUNGRY", "FEEDING", "HAPPY", "FLUSHING" };
static void
proto_relink(struct proto *p)
{
rem_node(&p->n);
add_tail(p->core_state == FS_HAPPY ? &proto_list : &inactive_proto_list, &p->n);
}
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void *
proto_new(struct proto_config *c, unsigned size)
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{
struct protocol *pr = c->proto;
pool *r = rp_new(proto_pool, c->name);
struct proto *p = mb_alloc(r, size);
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p->cf = c;
p->debug = c->debug;
p->name = c->name;
p->preference = c->preference;
p->disabled = c->disabled;
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p->proto = pr;
p->pool = r;
p->attn = ev_new(r);
p->attn->data = p;
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return p;
}
void *
proto_config_new(struct protocol *pr, unsigned size)
{
struct proto_config *c = cfg_allocz(size);
add_tail(&new_config->protos, &c->n);
c->global = new_config;
c->proto = pr;
c->debug = pr->debug;
c->name = pr->name;
return c;
}
void
protos_preconfig(struct config *c)
{
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struct protocol *p;
init_list(&proto_list);
init_list(&inactive_proto_list);
init_list(&initial_proto_list);
debug("Protocol preconfig:");
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WALK_LIST(p, protocol_list)
{
debug(" %s", p->name);
if (p->preconfig)
p->preconfig(p, c);
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}
debug("\n");
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}
void
protos_postconfig(struct config *c)
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{
struct proto_config *x;
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struct protocol *p;
debug("Protocol postconfig:");
WALK_LIST(x, c->protos)
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{
debug(" %s", x->name);
p = x->proto;
if (p->postconfig)
p->postconfig(x);
}
debug("\n");
}
void
protos_commit(struct config *c)
{
struct proto_config *x;
struct protocol *p;
struct proto *q;
debug("Protocol commit:");
WALK_LIST(x, c->protos)
{
debug(" %s", x->name);
p = x->proto;
q = p->init(x);
q->proto_state = PS_DOWN;
q->core_state = FS_HUNGRY;
add_tail(&initial_proto_list, &q->n);
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}
debug("\n");
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}
static void
proto_rethink_goal(struct proto *p)
{
struct protocol *q = p->proto;
if (p->core_state == p->core_goal)
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return;
if (p->core_goal == FS_HAPPY) /* Going up */
{
if (p->core_state == FS_HUNGRY && p->proto_state == PS_DOWN)
{
DBG("Kicking %s up\n", p->name);
proto_notify_state(p, (q->start ? q->start(p) : PS_UP));
}
}
else /* Going down */
{
if (p->proto_state == PS_START || p->proto_state == PS_UP)
{
DBG("Kicking %s down\n", p->name);
proto_notify_state(p, (q->shutdown ? q->shutdown(p) : PS_DOWN));
}
}
}
static void
proto_set_goal(struct proto *p, unsigned goal)
{
if (p->disabled)
goal = FS_HUNGRY;
p->core_goal = goal;
proto_rethink_goal(p);
}
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void
protos_start(void)
{
struct proto *p, *n;
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debug("Protocol start\n");
WALK_LIST_DELSAFE(p, n, initial_proto_list)
proto_set_goal(p, FS_HAPPY);
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}
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void
protos_dump_all(void)
{
struct proto *p;
debug("Protocols:\n");
WALK_LIST(p, proto_list)
{
debug(" protocol %s: state %s/%s\n", p->name, p_states[p->proto_state], c_states[p->core_state]);
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if (p->disabled)
debug("\tDISABLED\n");
else if (p->proto->dump)
p->proto->dump(p);
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}
WALK_LIST(p, inactive_proto_list)
debug(" inactive %s: state %s/%s\n", p->name, p_states[p->proto_state], c_states[p->core_state]);
WALK_LIST(p, initial_proto_list)
debug(" initial %s\n", p->name);
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}
void
protos_build(void)
{
init_list(&protocol_list);
add_tail(&protocol_list, &proto_device.n);
#ifdef CONFIG_RIP
add_tail(&protocol_list, &proto_rip.n);
#endif
#ifdef CONFIG_STATIC
add_tail(&protocol_list, &proto_static.n);
#endif
proto_pool = rp_new(&root_pool, "Protocols");
}
static void
proto_fell_down(struct proto *p)
{
DBG("Protocol %s down\n", p->name);
proto_rethink_goal(p);
}
static void
proto_feed(void *P)
{
struct proto *p = P;
DBG("Feeding protocol %s\n", p->name);
if_feed_baby(p);
rt_feed_baby(p);
p->core_state = FS_HAPPY;
proto_relink(p);
DBG("Protocol %s up and running\n", p->name);
}
static void
proto_flush(void *P)
{
struct proto *p = P;
DBG("Flushing protocol %s\n", p->name);
bug("Protocol flushing not supported yet!"); /* FIXME */
}
void
proto_notify_state(struct proto *p, unsigned ps)
{
unsigned ops = p->proto_state;
unsigned cs = p->core_state;
DBG("%s reporting state transition %s/%s -> */%s\n", p->name, c_states[cs], p_states[ops], p_states[ps]);
if (ops == ps)
return;
switch (ps)
{
case PS_DOWN:
if (cs == FS_HUNGRY) /* Shutdown finished */
proto_fell_down(p);
else if (cs == FS_FLUSHING) /* Still flushing... */
;
else /* Need to start flushing */
goto schedule_flush;
break;
case PS_START:
ASSERT(ops == PS_DOWN);
ASSERT(cs == FS_HUNGRY);
break;
case PS_UP:
ASSERT(ops == PS_DOWN || ops == PS_START);
ASSERT(cs == FS_HUNGRY);
DBG("%s: Scheduling meal\n", p->name);
cs = FS_FEEDING;
p->attn->hook = proto_feed;
ev_schedule(p->attn);
break;
case PS_STOP:
if (cs == FS_FEEDING || cs == FS_HAPPY)
{
schedule_flush:
DBG("%s: Scheduling flush\n", p->name);
cs = FS_FLUSHING;
p->attn->hook = proto_flush;
ev_schedule(p->attn);
}
default:
error:
bug("Invalid state transition for %s from %s/%s to */%s", p->name, c_states[cs], p_states[ops], p_states[ps]);
}
p->proto_state = ps;
p->core_state = cs;
proto_relink(p);
}