local_object.c 11.6 KB
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/* Local endpoint object management
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 *
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 * Copyright (C) 2016 Red Hat, Inc. All Rights Reserved.
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 * Written by David Howells (dhowells@redhat.com)
 *
 * This program is free software; you can redistribute it and/or
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 * modify it under the terms of the GNU General Public Licence
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 * as published by the Free Software Foundation; either version
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 * 2 of the Licence, or (at your option) any later version.
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 */

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#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt

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#include <linux/module.h>
#include <linux/net.h>
#include <linux/skbuff.h>
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#include <linux/slab.h>
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#include <linux/udp.h>
#include <linux/ip.h>
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#include <linux/hashtable.h>
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#include <net/sock.h>
#include <net/af_rxrpc.h>
#include "ar-internal.h"

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static void rxrpc_local_processor(struct work_struct *);
static void rxrpc_local_rcu(struct rcu_head *);
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/*
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 * Compare a local to an address.  Return -ve, 0 or +ve to indicate less than,
 * same or greater than.
 *
 * We explicitly don't compare the RxRPC service ID as we want to reject
 * conflicting uses by differing services.  Further, we don't want to share
 * addresses with different options (IPv6), so we don't compare those bits
 * either.
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 */
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static long rxrpc_local_cmp_key(const struct rxrpc_local *local,
				const struct sockaddr_rxrpc *srx)
{
	long diff;

	diff = ((local->srx.transport_type - srx->transport_type) ?:
		(local->srx.transport_len - srx->transport_len) ?:
		(local->srx.transport.family - srx->transport.family));
	if (diff != 0)
		return diff;

	switch (srx->transport.family) {
	case AF_INET:
		/* If the choice of UDP port is left up to the transport, then
		 * the endpoint record doesn't match.
		 */
		return ((u16 __force)local->srx.transport.sin.sin_port -
			(u16 __force)srx->transport.sin.sin_port) ?:
			memcmp(&local->srx.transport.sin.sin_addr,
			       &srx->transport.sin.sin_addr,
			       sizeof(struct in_addr));
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#ifdef CONFIG_AF_RXRPC_IPV6
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	case AF_INET6:
		/* If the choice of UDP6 port is left up to the transport, then
		 * the endpoint record doesn't match.
		 */
		return ((u16 __force)local->srx.transport.sin6.sin6_port -
			(u16 __force)srx->transport.sin6.sin6_port) ?:
			memcmp(&local->srx.transport.sin6.sin6_addr,
			       &srx->transport.sin6.sin6_addr,
			       sizeof(struct in6_addr));
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#endif
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	default:
		BUG();
	}
}

/*
 * Allocate a new local endpoint.
 */
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static struct rxrpc_local *rxrpc_alloc_local(struct rxrpc_net *rxnet,
					     const struct sockaddr_rxrpc *srx)
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{
	struct rxrpc_local *local;

	local = kzalloc(sizeof(struct rxrpc_local), GFP_KERNEL);
	if (local) {
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		atomic_set(&local->usage, 1);
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		local->rxnet = rxnet;
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		INIT_LIST_HEAD(&local->link);
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		INIT_WORK(&local->processor, rxrpc_local_processor);
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		init_rwsem(&local->defrag_sem);
		skb_queue_head_init(&local->reject_queue);
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		skb_queue_head_init(&local->event_queue);
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		local->client_conns = RB_ROOT;
		spin_lock_init(&local->client_conns_lock);
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		spin_lock_init(&local->lock);
		rwlock_init(&local->services_lock);
		local->debug_id = atomic_inc_return(&rxrpc_debug_id);
		memcpy(&local->srx, srx, sizeof(*srx));
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		local->srx.srx_service = 0;
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		trace_rxrpc_local(local, rxrpc_local_new, 1, NULL);
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	}

	_leave(" = %p", local);
	return local;
}

/*
 * create the local socket
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 * - must be called with rxrpc_local_mutex locked
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 */
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static int rxrpc_open_socket(struct rxrpc_local *local, struct net *net)
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{
	struct sock *sock;
	int ret, opt;

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	_enter("%p{%d,%d}",
	       local, local->srx.transport_type, local->srx.transport.family);
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	/* create a socket to represent the local endpoint */
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	ret = sock_create_kern(net, local->srx.transport.family,
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			       local->srx.transport_type, 0, &local->socket);
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	if (ret < 0) {
		_leave(" = %d [socket]", ret);
		return ret;
	}

	/* if a local address was supplied then bind it */
	if (local->srx.transport_len > sizeof(sa_family_t)) {
		_debug("bind");
		ret = kernel_bind(local->socket,
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				  (struct sockaddr *)&local->srx.transport,
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				  local->srx.transport_len);
		if (ret < 0) {
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			_debug("bind failed %d", ret);
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			goto error;
		}
	}

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	switch (local->srx.transport.family) {
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	case AF_INET6:
		/* we want to receive ICMPv6 errors */
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		opt = 1;
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		ret = kernel_setsockopt(local->socket, SOL_IPV6, IPV6_RECVERR,
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					(char *) &opt, sizeof(opt));
		if (ret < 0) {
			_debug("setsockopt failed");
			goto error;
		}
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		/* we want to set the don't fragment bit */
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		opt = IPV6_PMTUDISC_DO;
		ret = kernel_setsockopt(local->socket, SOL_IPV6, IPV6_MTU_DISCOVER,
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					(char *) &opt, sizeof(opt));
		if (ret < 0) {
			_debug("setsockopt failed");
			goto error;
		}

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		/* Fall through and set IPv4 options too otherwise we don't get
		 * errors from IPv4 packets sent through the IPv6 socket.
		 */

	case AF_INET:
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		/* we want to receive ICMP errors */
		opt = 1;
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		ret = kernel_setsockopt(local->socket, SOL_IP, IP_RECVERR,
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					(char *) &opt, sizeof(opt));
		if (ret < 0) {
			_debug("setsockopt failed");
			goto error;
		}

		/* we want to set the don't fragment bit */
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		opt = IP_PMTUDISC_DO;
		ret = kernel_setsockopt(local->socket, SOL_IP, IP_MTU_DISCOVER,
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					(char *) &opt, sizeof(opt));
		if (ret < 0) {
			_debug("setsockopt failed");
			goto error;
		}
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		/* We want receive timestamps. */
		opt = 1;
		ret = kernel_setsockopt(local->socket, SOL_SOCKET, SO_TIMESTAMPNS,
					(char *)&opt, sizeof(opt));
		if (ret < 0) {
			_debug("setsockopt failed");
			goto error;
		}
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		break;

	default:
		BUG();
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	}

	/* set the socket up */
	sock = local->socket->sk;
	sock->sk_user_data	= local;
	sock->sk_data_ready	= rxrpc_data_ready;
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	sock->sk_error_report	= rxrpc_error_report;
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	_leave(" = 0");
	return 0;

error:
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	kernel_sock_shutdown(local->socket, SHUT_RDWR);
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	local->socket->sk->sk_user_data = NULL;
	sock_release(local->socket);
	local->socket = NULL;

	_leave(" = %d", ret);
	return ret;
}

/*
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 * Look up or create a new local endpoint using the specified local address.
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 */
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struct rxrpc_local *rxrpc_lookup_local(struct net *net,
				       const struct sockaddr_rxrpc *srx)
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{
	struct rxrpc_local *local;
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	struct rxrpc_net *rxnet = rxrpc_net(net);
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	struct list_head *cursor;
	const char *age;
	long diff;
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	int ret;

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	_enter("{%d,%d,%pISp}",
	       srx->transport_type, srx->transport.family, &srx->transport);
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	mutex_lock(&rxnet->local_mutex);
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	for (cursor = rxnet->local_endpoints.next;
	     cursor != &rxnet->local_endpoints;
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	     cursor = cursor->next) {
		local = list_entry(cursor, struct rxrpc_local, link);
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		diff = rxrpc_local_cmp_key(local, srx);
		if (diff < 0)
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			continue;
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		if (diff > 0)
			break;

		/* Services aren't allowed to share transport sockets, so
		 * reject that here.  It is possible that the object is dying -
		 * but it may also still have the local transport address that
		 * we want bound.
		 */
		if (srx->srx_service) {
			local = NULL;
			goto addr_in_use;
		}
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		/* Found a match.  We replace a dying object.  Attempting to
		 * bind the transport socket may still fail if we're attempting
		 * to use a local address that the dying object is still using.
		 */
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		if (!rxrpc_get_local_maybe(local)) {
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			cursor = cursor->next;
			list_del_init(&local->link);
			break;
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		}

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		age = "old";
		goto found;
	}
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	local = rxrpc_alloc_local(rxnet, srx);
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	if (!local)
		goto nomem;
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	ret = rxrpc_open_socket(local, net);
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	if (ret < 0)
		goto sock_error;

	list_add_tail(&local->link, cursor);
	age = "new";
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found:
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	mutex_unlock(&rxnet->local_mutex);
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	_net("LOCAL %s %d {%pISp}",
	     age, local->debug_id, &local->srx.transport);
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	_leave(" = %p", local);
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	return local;

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nomem:
	ret = -ENOMEM;
sock_error:
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	mutex_unlock(&rxnet->local_mutex);
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	kfree(local);
	_leave(" = %d", ret);
	return ERR_PTR(ret);
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addr_in_use:
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	mutex_unlock(&rxnet->local_mutex);
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	_leave(" = -EADDRINUSE");
	return ERR_PTR(-EADDRINUSE);
}
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/*
 * Get a ref on a local endpoint.
 */
struct rxrpc_local *rxrpc_get_local(struct rxrpc_local *local)
{
	const void *here = __builtin_return_address(0);
	int n;

	n = atomic_inc_return(&local->usage);
	trace_rxrpc_local(local, rxrpc_local_got, n, here);
	return local;
}

/*
 * Get a ref on a local endpoint unless its usage has already reached 0.
 */
struct rxrpc_local *rxrpc_get_local_maybe(struct rxrpc_local *local)
{
	const void *here = __builtin_return_address(0);

	if (local) {
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		int n = atomic_fetch_add_unless(&local->usage, 1, 0);
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		if (n > 0)
			trace_rxrpc_local(local, rxrpc_local_got, n + 1, here);
		else
			local = NULL;
	}
	return local;
}

/*
 * Queue a local endpoint.
 */
void rxrpc_queue_local(struct rxrpc_local *local)
{
	const void *here = __builtin_return_address(0);

	if (rxrpc_queue_work(&local->processor))
		trace_rxrpc_local(local, rxrpc_local_queued,
				  atomic_read(&local->usage), here);
}

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/*
 * A local endpoint reached its end of life.
 */
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static void __rxrpc_put_local(struct rxrpc_local *local)
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{
	_enter("%d", local->debug_id);
	rxrpc_queue_work(&local->processor);
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}

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/*
 * Drop a ref on a local endpoint.
 */
void rxrpc_put_local(struct rxrpc_local *local)
{
	const void *here = __builtin_return_address(0);
	int n;

	if (local) {
		n = atomic_dec_return(&local->usage);
		trace_rxrpc_local(local, rxrpc_local_put, n, here);

		if (n == 0)
			__rxrpc_put_local(local);
	}
}

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/*
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 * Destroy a local endpoint's socket and then hand the record to RCU to dispose
 * of.
 *
 * Closing the socket cannot be done from bottom half context or RCU callback
 * context because it might sleep.
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 */
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static void rxrpc_local_destroyer(struct rxrpc_local *local)
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{
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	struct socket *socket = local->socket;
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	struct rxrpc_net *rxnet = local->rxnet;
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	_enter("%d", local->debug_id);
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	/* We can get a race between an incoming call packet queueing the
	 * processor again and the work processor starting the destruction
	 * process which will shut down the UDP socket.
	 */
	if (local->dead) {
		_leave(" [already dead]");
		return;
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	}
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	local->dead = true;

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	mutex_lock(&rxnet->local_mutex);
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	list_del_init(&local->link);
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	mutex_unlock(&rxnet->local_mutex);
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	ASSERT(RB_EMPTY_ROOT(&local->client_conns));
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	ASSERT(!local->service);
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	if (socket) {
		local->socket = NULL;
		kernel_sock_shutdown(socket, SHUT_RDWR);
		socket->sk->sk_user_data = NULL;
		sock_release(socket);
	}

	/* At this point, there should be no more packets coming in to the
	 * local endpoint.
	 */
	rxrpc_purge_queue(&local->reject_queue);
	rxrpc_purge_queue(&local->event_queue);

	_debug("rcu local %d", local->debug_id);
	call_rcu(&local->rcu, rxrpc_local_rcu);
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}

/*
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 * Process events on an endpoint
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 */
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static void rxrpc_local_processor(struct work_struct *work)
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{
	struct rxrpc_local *local =
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		container_of(work, struct rxrpc_local, processor);
	bool again;
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	trace_rxrpc_local(local, rxrpc_local_processing,
			  atomic_read(&local->usage), NULL);
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	do {
		again = false;
		if (atomic_read(&local->usage) == 0)
			return rxrpc_local_destroyer(local);
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		if (!skb_queue_empty(&local->reject_queue)) {
			rxrpc_reject_packets(local);
			again = true;
		}
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		if (!skb_queue_empty(&local->event_queue)) {
			rxrpc_process_local_events(local);
			again = true;
		}
	} while (again);
}
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/*
 * Destroy a local endpoint after the RCU grace period expires.
 */
static void rxrpc_local_rcu(struct rcu_head *rcu)
{
	struct rxrpc_local *local = container_of(rcu, struct rxrpc_local, rcu);
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	_enter("%d", local->debug_id);
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	ASSERT(!work_pending(&local->processor));
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	_net("DESTROY LOCAL %d", local->debug_id);
	kfree(local);
	_leave("");
}

/*
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 * Verify the local endpoint list is empty by this point.
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 */
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void rxrpc_destroy_all_locals(struct rxrpc_net *rxnet)
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{
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	struct rxrpc_local *local;
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	_enter("");

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	flush_workqueue(rxrpc_workqueue);
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	if (!list_empty(&rxnet->local_endpoints)) {
		mutex_lock(&rxnet->local_mutex);
		list_for_each_entry(local, &rxnet->local_endpoints, link) {
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			pr_err("AF_RXRPC: Leaked local %p {%d}\n",
			       local, atomic_read(&local->usage));
		}
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		mutex_unlock(&rxnet->local_mutex);
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		BUG();
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	}
}