ar-internal.h 38.9 KB
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/* AF_RXRPC internal definitions
 *
 * Copyright (C) 2007 Red Hat, Inc. All Rights Reserved.
 * Written by David Howells (dhowells@redhat.com)
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License
 * as published by the Free Software Foundation; either version
 * 2 of the License, or (at your option) any later version.
 */

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#include <linux/atomic.h>
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#include <linux/seqlock.h>
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#include <net/net_namespace.h>
#include <net/netns/generic.h>
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#include <net/sock.h>
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#include <net/af_rxrpc.h>
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#include "protocol.h"
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#if 0
#define CHECK_SLAB_OKAY(X)				     \
	BUG_ON(atomic_read((X)) >> (sizeof(atomic_t) - 2) == \
	       (POISON_FREE << 8 | POISON_FREE))
#else
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#define CHECK_SLAB_OKAY(X) do {} while (0)
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#endif

#define FCRYPT_BSIZE 8
struct rxrpc_crypt {
	union {
		u8	x[FCRYPT_BSIZE];
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		__be32	n[2];
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	};
} __attribute__((aligned(8)));

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#define rxrpc_queue_work(WS)	queue_work(rxrpc_workqueue, (WS))
#define rxrpc_queue_delayed_work(WS,D)	\
	queue_delayed_work(rxrpc_workqueue, (WS), (D))

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struct rxrpc_connection;

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/*
 * Mark applied to socket buffers.
 */
enum rxrpc_skb_mark {
	RXRPC_SKB_MARK_DATA,		/* data message */
	RXRPC_SKB_MARK_FINAL_ACK,	/* final ACK received message */
	RXRPC_SKB_MARK_BUSY,		/* server busy message */
	RXRPC_SKB_MARK_REMOTE_ABORT,	/* remote abort message */
	RXRPC_SKB_MARK_LOCAL_ABORT,	/* local abort message */
	RXRPC_SKB_MARK_NET_ERROR,	/* network error message */
	RXRPC_SKB_MARK_LOCAL_ERROR,	/* local error message */
	RXRPC_SKB_MARK_NEW_CALL,	/* local error message */
};

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/*
 * sk_state for RxRPC sockets
 */
enum {
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	RXRPC_UNBOUND = 0,
	RXRPC_CLIENT_UNBOUND,		/* Unbound socket used as client */
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	RXRPC_CLIENT_BOUND,		/* client local address bound */
	RXRPC_SERVER_BOUND,		/* server local address bound */
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	RXRPC_SERVER_BOUND2,		/* second server local address bound */
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	RXRPC_SERVER_LISTENING,		/* server listening for connections */
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	RXRPC_SERVER_LISTEN_DISABLED,	/* server listening disabled */
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	RXRPC_CLOSE,			/* socket is being closed */
};

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/*
 * Per-network namespace data.
 */
struct rxrpc_net {
	struct proc_dir_entry	*proc_net;	/* Subdir in /proc/net */
	u32			epoch;		/* Local epoch for detecting local-end reset */
	struct list_head	calls;		/* List of calls active in this namespace */
	rwlock_t		call_lock;	/* Lock for ->calls */

	struct list_head	conn_proc_list;	/* List of conns in this namespace for proc */
	struct list_head	service_conns;	/* Service conns in this namespace */
	rwlock_t		conn_lock;	/* Lock for ->conn_proc_list, ->service_conns */
	struct delayed_work	service_conn_reaper;

	unsigned int		nr_client_conns;
	unsigned int		nr_active_client_conns;
	bool			kill_all_client_conns;
	spinlock_t		client_conn_cache_lock; /* Lock for ->*_client_conns */
	spinlock_t		client_conn_discard_lock; /* Prevent multiple discarders */
	struct list_head	waiting_client_conns;
	struct list_head	active_client_conns;
	struct list_head	idle_client_conns;
	struct delayed_work	client_conn_reaper;

	struct list_head	local_endpoints;
	struct mutex		local_mutex;	/* Lock for ->local_endpoints */

	spinlock_t		peer_hash_lock;	/* Lock for ->peer_hash */
	DECLARE_HASHTABLE	(peer_hash, 10);
};

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/*
 * Service backlog preallocation.
 *
 * This contains circular buffers of preallocated peers, connections and calls
 * for incoming service calls and their head and tail pointers.  This allows
 * calls to be set up in the data_ready handler, thereby avoiding the need to
 * shuffle packets around so much.
 */
struct rxrpc_backlog {
	unsigned short		peer_backlog_head;
	unsigned short		peer_backlog_tail;
	unsigned short		conn_backlog_head;
	unsigned short		conn_backlog_tail;
	unsigned short		call_backlog_head;
	unsigned short		call_backlog_tail;
#define RXRPC_BACKLOG_MAX	32
	struct rxrpc_peer	*peer_backlog[RXRPC_BACKLOG_MAX];
	struct rxrpc_connection	*conn_backlog[RXRPC_BACKLOG_MAX];
	struct rxrpc_call	*call_backlog[RXRPC_BACKLOG_MAX];
};

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/*
 * RxRPC socket definition
 */
struct rxrpc_sock {
	/* WARNING: sk has to be the first member */
	struct sock		sk;
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	rxrpc_notify_new_call_t	notify_new_call; /* Func to notify of new call */
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	rxrpc_discard_new_call_t discard_new_call; /* Func to discard a new call */
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	struct rxrpc_local	*local;		/* local endpoint */
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	struct rxrpc_backlog	*backlog;	/* Preallocation for services */
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	spinlock_t		incoming_lock;	/* Incoming call vs service shutdown lock */
	struct list_head	sock_calls;	/* List of calls owned by this socket */
	struct list_head	to_be_accepted;	/* calls awaiting acceptance */
	struct list_head	recvmsg_q;	/* Calls awaiting recvmsg's attention  */
	rwlock_t		recvmsg_lock;	/* Lock for recvmsg_q */
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	struct key		*key;		/* security for this socket */
	struct key		*securities;	/* list of server security descriptors */
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	struct rb_root		calls;		/* User ID -> call mapping */
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	unsigned long		flags;
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#define RXRPC_SOCK_CONNECTED		0	/* connect_srx is set */
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	rwlock_t		call_lock;	/* lock for calls */
	u32			min_sec_level;	/* minimum security level */
#define RXRPC_SECURITY_MAX	RXRPC_SECURITY_ENCRYPT
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	bool			exclusive;	/* Exclusive connection for a client socket */
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	u16			second_service;	/* Additional service bound to the endpoint */
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	struct {
		/* Service upgrade information */
		u16		from;		/* Service ID to upgrade (if not 0) */
		u16		to;		/* service ID to upgrade to */
	} service_upgrade;
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	sa_family_t		family;		/* Protocol family created with */
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	struct sockaddr_rxrpc	srx;		/* Primary Service/local addresses */
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	struct sockaddr_rxrpc	connect_srx;	/* Default client address from connect() */
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};

#define rxrpc_sk(__sk) container_of((__sk), struct rxrpc_sock, sk)

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/*
 * CPU-byteorder normalised Rx packet header.
 */
struct rxrpc_host_header {
	u32		epoch;		/* client boot timestamp */
	u32		cid;		/* connection and channel ID */
	u32		callNumber;	/* call ID (0 for connection-level packets) */
	u32		seq;		/* sequence number of pkt in call stream */
	u32		serial;		/* serial number of pkt sent to network */
	u8		type;		/* packet type */
	u8		flags;		/* packet flags */
	u8		userStatus;	/* app-layer defined status */
	u8		securityIndex;	/* security protocol ID */
	union {
		u16	_rsvd;		/* reserved */
		u16	cksum;		/* kerberos security checksum */
	};
	u16		serviceId;	/* service ID */
} __packed;

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/*
 * RxRPC socket buffer private variables
 * - max 48 bytes (struct sk_buff::cb)
 */
struct rxrpc_skb_priv {
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	union {
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		u8		nr_jumbo;	/* Number of jumbo subpackets */
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	};
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	union {
		int		remain;		/* amount of space remaining for next write */
	};

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	struct rxrpc_host_header hdr;		/* RxRPC packet header from this packet */
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};

#define rxrpc_skb(__skb) ((struct rxrpc_skb_priv *) &(__skb)->cb)

/*
 * RxRPC security module interface
 */
struct rxrpc_security {
	const char		*name;		/* name of this service */
	u8			security_index;	/* security type provided */

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	/* Initialise a security service */
	int (*init)(void);

	/* Clean up a security service */
	void (*exit)(void);

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	/* initialise a connection's security */
	int (*init_connection_security)(struct rxrpc_connection *);

	/* prime a connection's packet security */
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	int (*prime_packet_security)(struct rxrpc_connection *);
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	/* impose security on a packet */
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	int (*secure_packet)(struct rxrpc_call *,
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			     struct sk_buff *,
			     size_t,
			     void *);

	/* verify the security on a received packet */
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	int (*verify_packet)(struct rxrpc_call *, struct sk_buff *,
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			     unsigned int, unsigned int, rxrpc_seq_t, u16);

	/* Locate the data in a received packet that has been verified. */
	void (*locate_data)(struct rxrpc_call *, struct sk_buff *,
			    unsigned int *, unsigned int *);
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	/* issue a challenge */
	int (*issue_challenge)(struct rxrpc_connection *);

	/* respond to a challenge */
	int (*respond_to_challenge)(struct rxrpc_connection *,
				    struct sk_buff *,
				    u32 *);

	/* verify a response */
	int (*verify_response)(struct rxrpc_connection *,
			       struct sk_buff *,
			       u32 *);

	/* clear connection security */
	void (*clear)(struct rxrpc_connection *);
};

/*
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 * RxRPC local transport endpoint description
 * - owned by a single AF_RXRPC socket
 * - pointed to by transport socket struct sk_user_data
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 */
struct rxrpc_local {
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	struct rcu_head		rcu;
	atomic_t		usage;
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	struct rxrpc_net	*rxnet;		/* The network ns in which this resides */
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	struct list_head	link;
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	struct socket		*socket;	/* my UDP socket */
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	struct work_struct	processor;
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	struct rxrpc_sock __rcu	*service;	/* Service(s) listening on this endpoint */
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	struct rw_semaphore	defrag_sem;	/* control re-enablement of IP DF bit */
	struct sk_buff_head	reject_queue;	/* packets awaiting rejection */
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	struct sk_buff_head	event_queue;	/* endpoint event packets awaiting processing */
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	struct rb_root		client_conns;	/* Client connections by socket params */
	spinlock_t		client_conns_lock; /* Lock for client_conns */
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	spinlock_t		lock;		/* access lock */
	rwlock_t		services_lock;	/* lock for services list */
	int			debug_id;	/* debug ID for printks */
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	bool			dead;
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	struct sockaddr_rxrpc	srx;		/* local address */
};

/*
 * RxRPC remote transport endpoint definition
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 * - matched by local endpoint, remote port, address and protocol type
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 */
struct rxrpc_peer {
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	struct rcu_head		rcu;		/* This must be first */
	atomic_t		usage;
	unsigned long		hash_key;
	struct hlist_node	hash_link;
	struct rxrpc_local	*local;
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	struct hlist_head	error_targets;	/* targets for net error distribution */
	struct work_struct	error_distributor;
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	struct rb_root		service_conns;	/* Service connections */
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	seqlock_t		service_conn_lock;
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	spinlock_t		lock;		/* access lock */
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	unsigned int		if_mtu;		/* interface MTU for this peer */
	unsigned int		mtu;		/* network MTU for this peer */
	unsigned int		maxdata;	/* data size (MTU - hdrsize) */
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	unsigned short		hdrsize;	/* header size (IP + UDP + RxRPC) */
	int			debug_id;	/* debug ID for printks */
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	int			error_report;	/* Net (+0) or local (+1000000) to distribute */
#define RXRPC_LOCAL_ERROR_OFFSET 1000000
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	struct sockaddr_rxrpc	srx;		/* remote address */

	/* calculated RTT cache */
#define RXRPC_RTT_CACHE_SIZE 32
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	ktime_t			rtt_last_req;	/* Time of last RTT request */
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	u64			rtt;		/* Current RTT estimate (in nS) */
	u64			rtt_sum;	/* Sum of cache contents */
	u64			rtt_cache[RXRPC_RTT_CACHE_SIZE]; /* Determined RTT cache */
	u8			rtt_cursor;	/* next entry at which to insert */
	u8			rtt_usage;	/* amount of cache actually used */
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	u8			cong_cwnd;	/* Congestion window size */
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};

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/*
 * Keys for matching a connection.
 */
struct rxrpc_conn_proto {
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	union {
		struct {
			u32	epoch;		/* epoch of this connection */
			u32	cid;		/* connection ID */
		};
		u64		index_key;
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	};
};

struct rxrpc_conn_parameters {
	struct rxrpc_local	*local;		/* Representation of local endpoint */
	struct rxrpc_peer	*peer;		/* Remote endpoint */
	struct key		*key;		/* Security details */
	bool			exclusive;	/* T if conn is exclusive */
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	bool			upgrade;	/* T if service ID can be upgraded */
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	u16			service_id;	/* Service ID for this connection */
	u32			security_level;	/* Security level selected */
};

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/*
 * Bits in the connection flags.
 */
enum rxrpc_conn_flag {
	RXRPC_CONN_HAS_IDR,		/* Has a client conn ID assigned */
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	RXRPC_CONN_IN_SERVICE_CONNS,	/* Conn is in peer->service_conns */
	RXRPC_CONN_IN_CLIENT_CONNS,	/* Conn is in local->client_conns */
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	RXRPC_CONN_EXPOSED,		/* Conn has extra ref for exposure */
	RXRPC_CONN_DONT_REUSE,		/* Don't reuse this connection */
	RXRPC_CONN_COUNTED,		/* Counted by rxrpc_nr_client_conns */
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	RXRPC_CONN_PROBING_FOR_UPGRADE,	/* Probing for service upgrade */
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	RXRPC_CONN_FINAL_ACK_0,		/* Need final ACK for channel 0 */
	RXRPC_CONN_FINAL_ACK_1,		/* Need final ACK for channel 1 */
	RXRPC_CONN_FINAL_ACK_2,		/* Need final ACK for channel 2 */
	RXRPC_CONN_FINAL_ACK_3,		/* Need final ACK for channel 3 */
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};

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#define RXRPC_CONN_FINAL_ACK_MASK ((1UL << RXRPC_CONN_FINAL_ACK_0) |	\
				   (1UL << RXRPC_CONN_FINAL_ACK_1) |	\
				   (1UL << RXRPC_CONN_FINAL_ACK_2) |	\
				   (1UL << RXRPC_CONN_FINAL_ACK_3))

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/*
 * Events that can be raised upon a connection.
 */
enum rxrpc_conn_event {
	RXRPC_CONN_EV_CHALLENGE,	/* Send challenge packet */
};

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/*
 * The connection cache state.
 */
enum rxrpc_conn_cache_state {
	RXRPC_CONN_CLIENT_INACTIVE,	/* Conn is not yet listed */
	RXRPC_CONN_CLIENT_WAITING,	/* Conn is on wait list, waiting for capacity */
	RXRPC_CONN_CLIENT_ACTIVE,	/* Conn is on active list, doing calls */
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	RXRPC_CONN_CLIENT_UPGRADE,	/* Conn is on active list, probing for upgrade */
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	RXRPC_CONN_CLIENT_CULLED,	/* Conn is culled and delisted, doing calls */
	RXRPC_CONN_CLIENT_IDLE,		/* Conn is on idle list, doing mostly nothing */
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	RXRPC_CONN__NR_CACHE_STATES
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};

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/*
 * The connection protocol state.
 */
enum rxrpc_conn_proto_state {
	RXRPC_CONN_UNUSED,		/* Connection not yet attempted */
	RXRPC_CONN_CLIENT,		/* Client connection */
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	RXRPC_CONN_SERVICE_PREALLOC,	/* Service connection preallocation */
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	RXRPC_CONN_SERVICE_UNSECURED,	/* Service unsecured connection */
	RXRPC_CONN_SERVICE_CHALLENGING,	/* Service challenging for security */
	RXRPC_CONN_SERVICE,		/* Service secured connection */
	RXRPC_CONN_REMOTELY_ABORTED,	/* Conn aborted by peer */
	RXRPC_CONN_LOCALLY_ABORTED,	/* Conn aborted locally */
	RXRPC_CONN__NR_STATES
};

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/*
 * RxRPC connection definition
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 * - matched by { local, peer, epoch, conn_id, direction }
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 * - each connection can only handle four simultaneous calls
 */
struct rxrpc_connection {
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	struct rxrpc_conn_proto	proto;
	struct rxrpc_conn_parameters params;

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	atomic_t		usage;
	struct rcu_head		rcu;
	struct list_head	cache_link;
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	spinlock_t		channel_lock;
	unsigned char		active_chans;	/* Mask of active channels */
#define RXRPC_ACTIVE_CHANS_MASK	((1 << RXRPC_MAXCALLS) - 1)
	struct list_head	waiting_calls;	/* Calls waiting for channels */
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	struct rxrpc_channel {
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		unsigned long		final_ack_at;	/* Time at which to issue final ACK */
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		struct rxrpc_call __rcu	*call;		/* Active call */
		u32			call_id;	/* ID of current call */
		u32			call_counter;	/* Call ID counter */
		u32			last_call;	/* ID of last call */
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		u8			last_type;	/* Type of last packet */
		union {
			u32		last_seq;
			u32		last_abort;
		};
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	} channels[RXRPC_MAXCALLS];
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	struct timer_list	timer;		/* Conn event timer */
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	struct work_struct	processor;	/* connection event processor */
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	union {
		struct rb_node	client_node;	/* Node in local->client_conns */
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		struct rb_node	service_node;	/* Node in peer->service_conns */
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	};
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	struct list_head	proc_link;	/* link in procfs list */
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	struct list_head	link;		/* link in master connection list */
	struct sk_buff_head	rx_queue;	/* received conn-level packets */
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	const struct rxrpc_security *security;	/* applied security module */
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	struct key		*server_key;	/* security for this service */
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	struct crypto_skcipher	*cipher;	/* encryption handle */
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	struct rxrpc_crypt	csum_iv;	/* packet checksum base */
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	unsigned long		flags;
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	unsigned long		events;
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	unsigned long		idle_timestamp;	/* Time at which last became idle */
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	spinlock_t		state_lock;	/* state-change lock */
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	enum rxrpc_conn_cache_state cache_state;
	enum rxrpc_conn_proto_state state;	/* current state of connection */
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	u32			local_abort;	/* local abort code */
	u32			remote_abort;	/* remote abort code */
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	int			debug_id;	/* debug ID for printks */
	atomic_t		serial;		/* packet serial number counter */
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	unsigned int		hi_serial;	/* highest serial number received */
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	u32			security_nonce;	/* response re-use preventer */
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	u16			service_id;	/* Service ID, possibly upgraded */
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	u8			size_align;	/* data size alignment (for security) */
	u8			security_size;	/* security header size */
	u8			security_ix;	/* security type */
	u8			out_clientflag;	/* RXRPC_CLIENT_INITIATED if we are client */
};

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/*
 * Flags in call->flags.
 */
enum rxrpc_call_flag {
	RXRPC_CALL_RELEASED,		/* call has been released - no more message to userspace */
	RXRPC_CALL_HAS_USERID,		/* has a user ID attached */
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	RXRPC_CALL_IS_SERVICE,		/* Call is service call */
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	RXRPC_CALL_EXPOSED,		/* The call was exposed to the world */
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	RXRPC_CALL_RX_LAST,		/* Received the last packet (at rxtx_top) */
	RXRPC_CALL_TX_LAST,		/* Last packet in Tx buffer (at rxtx_top) */
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	RXRPC_CALL_TX_LASTQ,		/* Last packet has been queued */
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	RXRPC_CALL_SEND_PING,		/* A ping will need to be sent */
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	RXRPC_CALL_PINGING,		/* Ping in process */
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	RXRPC_CALL_RETRANS_TIMEOUT,	/* Retransmission due to timeout occurred */
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};

/*
 * Events that can be raised on a call.
 */
enum rxrpc_call_event {
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	RXRPC_CALL_EV_ACK,		/* need to generate ACK */
	RXRPC_CALL_EV_ABORT,		/* need to generate abort */
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	RXRPC_CALL_EV_TIMER,		/* Timer expired */
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	RXRPC_CALL_EV_RESEND,		/* Tx resend required */
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	RXRPC_CALL_EV_PING,		/* Ping send required */
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};

/*
 * The states that a call can be in.
 */
enum rxrpc_call_state {
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	RXRPC_CALL_UNINITIALISED,
	RXRPC_CALL_CLIENT_AWAIT_CONN,	/* - client waiting for connection to become available */
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	RXRPC_CALL_CLIENT_SEND_REQUEST,	/* - client sending request phase */
	RXRPC_CALL_CLIENT_AWAIT_REPLY,	/* - client awaiting reply */
	RXRPC_CALL_CLIENT_RECV_REPLY,	/* - client receiving reply phase */
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	RXRPC_CALL_SERVER_PREALLOC,	/* - service preallocation */
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	RXRPC_CALL_SERVER_SECURING,	/* - server securing request connection */
	RXRPC_CALL_SERVER_ACCEPTING,	/* - server accepting request */
	RXRPC_CALL_SERVER_RECV_REQUEST,	/* - server receiving request */
	RXRPC_CALL_SERVER_ACK_REQUEST,	/* - server pending ACK of request */
	RXRPC_CALL_SERVER_SEND_REPLY,	/* - server sending reply */
	RXRPC_CALL_SERVER_AWAIT_ACK,	/* - server awaiting final ACK */
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	RXRPC_CALL_COMPLETE,		/* - call complete */
	NR__RXRPC_CALL_STATES
};

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/*
 * Call Tx congestion management modes.
 */
enum rxrpc_congest_mode {
	RXRPC_CALL_SLOW_START,
	RXRPC_CALL_CONGEST_AVOIDANCE,
	RXRPC_CALL_PACKET_LOSS,
	RXRPC_CALL_FAST_RETRANSMIT,
	NR__RXRPC_CONGEST_MODES
};

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/*
 * RxRPC call definition
 * - matched by { connection, call_id }
 */
struct rxrpc_call {
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	struct rcu_head		rcu;
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	struct rxrpc_connection	*conn;		/* connection carrying call */
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	struct rxrpc_peer	*peer;		/* Peer record for remote address */
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	struct rxrpc_sock __rcu	*socket;	/* socket responsible */
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	struct mutex		user_mutex;	/* User access mutex */
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	ktime_t			ack_at;		/* When deferred ACK needs to happen */
	ktime_t			resend_at;	/* When next resend needs to happen */
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	ktime_t			ping_at;	/* When next to send a ping */
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	ktime_t			expire_at;	/* When the call times out */
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	struct timer_list	timer;		/* Combined event timer */
	struct work_struct	processor;	/* Event processor */
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	rxrpc_notify_rx_t	notify_rx;	/* kernel service Rx notification function */
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	struct list_head	link;		/* link in master call list */
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	struct list_head	chan_wait_link;	/* Link in conn->waiting_calls */
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	struct hlist_node	error_link;	/* link in error distribution list */
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	struct list_head	accept_link;	/* Link in rx->acceptq */
	struct list_head	recvmsg_link;	/* Link in rx->recvmsg_q */
	struct list_head	sock_link;	/* Link in rx->sock_calls */
	struct rb_node		sock_node;	/* Node in rx->calls */
531
	struct sk_buff		*tx_pending;	/* Tx socket buffer being filled */
532
	wait_queue_head_t	waitq;		/* Wait queue for channel or Tx */
533
	s64			tx_total_len;	/* Total length left to be transmitted (or -1) */
534
	__be32			crypto_buf[2];	/* Temporary packet crypto buffer */
535 536 537 538
	unsigned long		user_call_ID;	/* user-defined call ID */
	unsigned long		flags;
	unsigned long		events;
	spinlock_t		lock;
539
	spinlock_t		notify_lock;	/* Kernel notification lock */
540
	rwlock_t		state_lock;	/* lock for state transition */
541 542
	u32			abort_code;	/* Local/remote abort code */
	int			error;		/* Local error incurred */
543 544
	enum rxrpc_call_state	state;		/* current state of call */
	enum rxrpc_call_completion completion;	/* Call completion condition */
545
	atomic_t		usage;
546
	u16			service_id;	/* service ID */
547
	u8			security_ix;	/* Security type */
548 549 550
	u32			call_id;	/* call ID on connection  */
	u32			cid;		/* connection ID plus channel index */
	int			debug_id;	/* debug ID for printks */
551 552
	unsigned short		rx_pkt_offset;	/* Current recvmsg packet offset */
	unsigned short		rx_pkt_len;	/* Current recvmsg packet len */
553

554 555 556 557 558 559 560 561 562 563 564
	/* Rx/Tx circular buffer, depending on phase.
	 *
	 * In the Rx phase, packets are annotated with 0 or the number of the
	 * segment of a jumbo packet each buffer refers to.  There can be up to
	 * 47 segments in a maximum-size UDP packet.
	 *
	 * In the Tx phase, packets are annotated with which buffers have been
	 * acked.
	 */
#define RXRPC_RXTX_BUFF_SIZE	64
#define RXRPC_RXTX_BUFF_MASK	(RXRPC_RXTX_BUFF_SIZE - 1)
565
#define RXRPC_INIT_RX_WINDOW_SIZE 32
566 567 568 569 570 571
	struct sk_buff		**rxtx_buffer;
	u8			*rxtx_annotations;
#define RXRPC_TX_ANNO_ACK	0
#define RXRPC_TX_ANNO_UNACK	1
#define RXRPC_TX_ANNO_NAK	2
#define RXRPC_TX_ANNO_RETRANS	3
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#define RXRPC_TX_ANNO_MASK	0x03
573 574 575
#define RXRPC_TX_ANNO_LAST	0x04
#define RXRPC_TX_ANNO_RESENT	0x08

576 577 578 579 580 581 582
#define RXRPC_RX_ANNO_JUMBO	0x3f		/* Jumbo subpacket number + 1 if not zero */
#define RXRPC_RX_ANNO_JLAST	0x40		/* Set if last element of a jumbo packet */
#define RXRPC_RX_ANNO_VERIFIED	0x80		/* Set if verified and decrypted */
	rxrpc_seq_t		tx_hard_ack;	/* Dead slot in buffer; the first transmitted but
						 * not hard-ACK'd packet follows this.
						 */
	rxrpc_seq_t		tx_top;		/* Highest Tx slot allocated. */
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	/* TCP-style slow-start congestion control [RFC5681].  Since the SMSS
	 * is fixed, we keep these numbers in terms of segments (ie. DATA
	 * packets) rather than bytes.
	 */
#define RXRPC_TX_SMSS		RXRPC_JUMBO_DATALEN
	u8			cong_cwnd;	/* Congestion window size */
	u8			cong_extra;	/* Extra to send for congestion management */
	u8			cong_ssthresh;	/* Slow-start threshold */
	enum rxrpc_congest_mode	cong_mode:8;	/* Congestion management mode */
	u8			cong_dup_acks;	/* Count of ACKs showing missing packets */
	u8			cong_cumul_acks; /* Cumulative ACK count */
	ktime_t			cong_tstamp;	/* Last time cwnd was changed */

597 598
	rxrpc_seq_t		rx_hard_ack;	/* Dead slot in buffer; the first received but not
						 * consumed packet follows this.
599
						 */
600 601 602 603
	rxrpc_seq_t		rx_top;		/* Highest Rx slot allocated. */
	rxrpc_seq_t		rx_expect_next;	/* Expected next packet sequence number */
	u8			rx_winsize;	/* Size of Rx window */
	u8			tx_winsize;	/* Maximum size of Tx window */
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	bool			tx_phase;	/* T if transmission phase, F if receive phase */
605
	u8			nr_jumbo_bad;	/* Number of jumbo dups/exceeds-windows */
606 607

	/* receive-phase ACK management */
608
	u8			ackr_reason;	/* reason to ACK */
609
	u16			ackr_skew;	/* skew on packet being ACK'd */
610
	rxrpc_serial_t		ackr_serial;	/* serial of packet being ACK'd */
611
	rxrpc_seq_t		ackr_prev_seq;	/* previous sequence number received */
612 613
	rxrpc_seq_t		ackr_consumed;	/* Highest packet shown consumed */
	rxrpc_seq_t		ackr_seen;	/* Highest packet shown seen */
614 615 616 617

	/* ping management */
	rxrpc_serial_t		ping_serial;	/* Last ping sent */
	ktime_t			ping_time;	/* Time last ping sent */
618

619
	/* transmission-phase ACK management */
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	ktime_t			acks_latest_ts;	/* Timestamp of latest ACK received */
621
	rxrpc_serial_t		acks_latest;	/* serial number of latest ACK received */
622 623 624 625
	rxrpc_seq_t		acks_lowest_nak; /* Lowest NACK in the buffer (or ==tx_hard_ack) */
};

/*
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 * Summary of a new ACK and the changes it made to the Tx buffer packet states.
627 628 629 630 631 632 633 634 635
 */
struct rxrpc_ack_summary {
	u8			ack_reason;
	u8			nr_acks;		/* Number of ACKs in packet */
	u8			nr_nacks;		/* Number of NACKs in packet */
	u8			nr_new_acks;		/* Number of new ACKs in packet */
	u8			nr_new_nacks;		/* Number of new NACKs in packet */
	u8			nr_rot_new_acks;	/* Number of rotated new ACKs */
	bool			new_low_nack;		/* T if new low NACK found */
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	bool			retrans_timeo;		/* T if reTx due to timeout happened */
	u8			flight_size;		/* Number of unreceived transmissions */
	/* Place to stash values for tracing */
	enum rxrpc_congest_mode	mode:8;
	u8			cwnd;
	u8			ssthresh;
	u8			dup_acks;
	u8			cumulative_acks;
644 645
};

646 647
#include <trace/events/rxrpc.h>

648
/*
649
 * af_rxrpc.c
650
 */
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extern atomic_t rxrpc_n_tx_skbs, rxrpc_n_rx_skbs;
652 653
extern atomic_t rxrpc_debug_id;
extern struct workqueue_struct *rxrpc_workqueue;
654 655

/*
656
 * call_accept.c
657
 */
658 659
int rxrpc_service_prealloc(struct rxrpc_sock *, gfp_t);
void rxrpc_discard_prealloc(struct rxrpc_sock *);
660 661 662
struct rxrpc_call *rxrpc_new_incoming_call(struct rxrpc_local *,
					   struct rxrpc_connection *,
					   struct sk_buff *);
663
void rxrpc_accept_incoming_calls(struct rxrpc_local *);
664 665
struct rxrpc_call *rxrpc_accept_call(struct rxrpc_sock *, unsigned long,
				     rxrpc_notify_rx_t);
666
int rxrpc_reject_call(struct rxrpc_sock *);
667 668

/*
669
 * call_event.c
670
 */
671
void __rxrpc_set_timer(struct rxrpc_call *, enum rxrpc_timer_trace, ktime_t);
672
void rxrpc_set_timer(struct rxrpc_call *, enum rxrpc_timer_trace, ktime_t);
673 674
void rxrpc_propose_ACK(struct rxrpc_call *, u8, u16, u32, bool, bool,
		       enum rxrpc_propose_ack_trace);
675
void rxrpc_process_call(struct work_struct *);
676 677

/*
678
 * call_object.c
679
 */
680 681
extern const char *const rxrpc_call_states[];
extern const char *const rxrpc_call_completions[];
682
extern unsigned int rxrpc_max_call_lifetime;
683 684
extern struct kmem_cache *rxrpc_call_jar;

685
struct rxrpc_call *rxrpc_find_call_by_user_ID(struct rxrpc_sock *, unsigned long);
686
struct rxrpc_call *rxrpc_alloc_call(struct rxrpc_sock *, gfp_t);
687
struct rxrpc_call *rxrpc_new_client_call(struct rxrpc_sock *,
688
					 struct rxrpc_conn_parameters *,
689
					 struct sockaddr_rxrpc *,
690
					 unsigned long, s64, gfp_t);
691 692 693 694 695
int rxrpc_retry_client_call(struct rxrpc_sock *,
			    struct rxrpc_call *,
			    struct rxrpc_conn_parameters *,
			    struct sockaddr_rxrpc *,
			    gfp_t);
696 697
void rxrpc_incoming_call(struct rxrpc_sock *, struct rxrpc_call *,
			 struct sk_buff *);
698
void rxrpc_release_call(struct rxrpc_sock *, struct rxrpc_call *);
699
int rxrpc_prepare_call_for_retry(struct rxrpc_sock *, struct rxrpc_call *);
700
void rxrpc_release_calls_on_socket(struct rxrpc_sock *);
701 702
bool __rxrpc_queue_call(struct rxrpc_call *);
bool rxrpc_queue_call(struct rxrpc_call *);
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void rxrpc_see_call(struct rxrpc_call *);
704 705
void rxrpc_get_call(struct rxrpc_call *, enum rxrpc_call_trace);
void rxrpc_put_call(struct rxrpc_call *, enum rxrpc_call_trace);
706
void rxrpc_cleanup_call(struct rxrpc_call *);
707
void rxrpc_destroy_all_calls(struct rxrpc_net *);
708

709 710 711 712 713 714 715 716 717 718
static inline bool rxrpc_is_service_call(const struct rxrpc_call *call)
{
	return test_bit(RXRPC_CALL_IS_SERVICE, &call->flags);
}

static inline bool rxrpc_is_client_call(const struct rxrpc_call *call)
{
	return !rxrpc_is_service_call(call);
}

719 720 721 722 723 724 725 726 727 728 729 730 731
/*
 * Transition a call to the complete state.
 */
static inline bool __rxrpc_set_call_completion(struct rxrpc_call *call,
					       enum rxrpc_call_completion compl,
					       u32 abort_code,
					       int error)
{
	if (call->state < RXRPC_CALL_COMPLETE) {
		call->abort_code = abort_code;
		call->error = error;
		call->completion = compl,
		call->state = RXRPC_CALL_COMPLETE;
732
		wake_up(&call->waitq);
733 734 735 736 737 738 739 740 741 742
		return true;
	}
	return false;
}

static inline bool rxrpc_set_call_completion(struct rxrpc_call *call,
					     enum rxrpc_call_completion compl,
					     u32 abort_code,
					     int error)
{
743
	bool ret;
744 745 746 747 748 749 750 751 752 753

	write_lock_bh(&call->state_lock);
	ret = __rxrpc_set_call_completion(call, compl, abort_code, error);
	write_unlock_bh(&call->state_lock);
	return ret;
}

/*
 * Record that a call successfully completed.
 */
754
static inline bool __rxrpc_call_completed(struct rxrpc_call *call)
755
{
756
	return __rxrpc_set_call_completion(call, RXRPC_CALL_SUCCEEDED, 0, 0);
757 758
}

759
static inline bool rxrpc_call_completed(struct rxrpc_call *call)
760
{
761 762
	bool ret;

763
	write_lock_bh(&call->state_lock);
764
	ret = __rxrpc_call_completed(call);
765
	write_unlock_bh(&call->state_lock);
766
	return ret;
767 768 769 770 771
}

/*
 * Record that a call is locally aborted.
 */
772 773
static inline bool __rxrpc_abort_call(const char *why, struct rxrpc_call *call,
				      rxrpc_seq_t seq,
774 775
				      u32 abort_code, int error)
{
776 777
	trace_rxrpc_abort(why, call->cid, call->call_id, seq,
			  abort_code, error);
778 779
	return __rxrpc_set_call_completion(call, RXRPC_CALL_LOCALLY_ABORTED,
					   abort_code, error);
780 781
}

782 783
static inline bool rxrpc_abort_call(const char *why, struct rxrpc_call *call,
				    rxrpc_seq_t seq, u32 abort_code, int error)
784 785 786 787
{
	bool ret;

	write_lock_bh(&call->state_lock);
788
	ret = __rxrpc_abort_call(why, call, seq, abort_code, error);
789 790 791 792
	write_unlock_bh(&call->state_lock);
	return ret;
}

793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811
/*
 * Abort a call due to a protocol error.
 */
static inline bool __rxrpc_abort_eproto(struct rxrpc_call *call,
					struct sk_buff *skb,
					const char *eproto_why,
					const char *why,
					u32 abort_code)
{
	struct rxrpc_skb_priv *sp = rxrpc_skb(skb);

	trace_rxrpc_rx_eproto(call, sp->hdr.serial, eproto_why);
	return rxrpc_abort_call(why, call, sp->hdr.seq, abort_code, -EPROTO);
}

#define rxrpc_abort_eproto(call, skb, eproto_why, abort_why, abort_code) \
	__rxrpc_abort_eproto((call), (skb), tracepoint_string(eproto_why), \
			     (abort_why), (abort_code))

812 813 814
/*
 * conn_client.c
 */
815 816 817 818
extern unsigned int rxrpc_max_client_connections;
extern unsigned int rxrpc_reap_client_connections;
extern unsigned int rxrpc_conn_idle_client_expiry;
extern unsigned int rxrpc_conn_idle_client_fast_expiry;
819 820
extern struct idr rxrpc_client_conn_ids;

821
void rxrpc_destroy_client_conn_ids(void);
822 823
int rxrpc_connect_call(struct rxrpc_call *, struct rxrpc_conn_parameters *,
		       struct sockaddr_rxrpc *, gfp_t);
824 825 826
void rxrpc_expose_client_call(struct rxrpc_call *);
void rxrpc_disconnect_client_call(struct rxrpc_call *);
void rxrpc_put_client_conn(struct rxrpc_connection *);
827 828
void rxrpc_discard_expired_client_conns(struct work_struct *);
void rxrpc_destroy_all_client_connections(struct rxrpc_net *);
829

830
/*
831 832 833 834 835 836
 * conn_event.c
 */
void rxrpc_process_connection(struct work_struct *);

/*
 * conn_object.c
837
 */
838
extern unsigned int rxrpc_connection_expiry;
839

840
struct rxrpc_connection *rxrpc_alloc_connection(gfp_t);
841 842
struct rxrpc_connection *rxrpc_find_connection_rcu(struct rxrpc_local *,
						   struct sk_buff *);
843
void __rxrpc_disconnect_call(struct rxrpc_connection *, struct rxrpc_call *);
844
void rxrpc_disconnect_call(struct rxrpc_call *);
845
void rxrpc_kill_connection(struct rxrpc_connection *);
846 847 848 849 850
bool rxrpc_queue_conn(struct rxrpc_connection *);
void rxrpc_see_connection(struct rxrpc_connection *);
void rxrpc_get_connection(struct rxrpc_connection *);
struct rxrpc_connection *rxrpc_get_connection_maybe(struct rxrpc_connection *);
void rxrpc_put_service_conn(struct rxrpc_connection *);
851 852
void rxrpc_service_connection_reaper(struct work_struct *);
void rxrpc_destroy_all_connections(struct rxrpc_net *);
853

854 855 856 857 858 859 860
static inline bool rxrpc_conn_is_client(const struct rxrpc_connection *conn)
{
	return conn->out_clientflag;
}

static inline bool rxrpc_conn_is_service(const struct rxrpc_connection *conn)
{
861
	return !rxrpc_conn_is_client(conn);
862 863
}

864 865
static inline void rxrpc_put_connection(struct rxrpc_connection *conn)
{
866 867 868
	if (!conn)
		return;

869 870 871 872
	if (rxrpc_conn_is_client(conn))
		rxrpc_put_client_conn(conn);
	else
		rxrpc_put_service_conn(conn);
873 874
}

875 876 877 878 879 880
static inline void rxrpc_reduce_conn_timer(struct rxrpc_connection *conn,
					   unsigned long expire_at)
{
	timer_reduce(&conn->timer, expire_at);
}

881 882 883
/*
 * conn_service.c
 */
884 885
struct rxrpc_connection *rxrpc_find_service_conn_rcu(struct rxrpc_peer *,
						     struct sk_buff *);
886
struct rxrpc_connection *rxrpc_prealloc_service_connection(struct rxrpc_net *, gfp_t);
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887 888
void rxrpc_new_incoming_connection(struct rxrpc_sock *,
				   struct rxrpc_connection *, struct sk_buff *);
889
void rxrpc_unpublish_service_conn(struct rxrpc_connection *);
890

891
/*
892
 * input.c
893
 */
894
void rxrpc_data_ready(struct sock *);
895 896

/*
897
 * insecure.c
898
 */
899
extern const struct rxrpc_security rxrpc_no_security;
900 901

/*
902
 * key.c
903
 */
904 905 906 907 908
extern struct key_type key_type_rxrpc;
extern struct key_type key_type_rxrpc_s;

int rxrpc_request_key(struct rxrpc_sock *, char __user *, int);
int rxrpc_server_keyring(struct rxrpc_sock *, char __user *, int);
909
int rxrpc_get_server_data_key(struct rxrpc_connection *, const void *, time64_t,
910
			      u32);
911

912 913 914
/*
 * local_event.c
 */
915
extern void rxrpc_process_local_events(struct rxrpc_local *);
916

917
/*
918
 * local_object.c
919
 */
920
struct rxrpc_local *rxrpc_lookup_local(struct net *, const struct sockaddr_rxrpc *);
921
void __rxrpc_put_local(struct rxrpc_local *);
922
void rxrpc_destroy_all_locals(struct rxrpc_net *);
923

924 925 926 927 928 929 930 931 932 933 934 935 936
static inline void rxrpc_get_local(struct rxrpc_local *local)
{
	atomic_inc(&local->usage);
}

static inline
struct rxrpc_local *rxrpc_get_local_maybe(struct rxrpc_local *local)
{
	return atomic_inc_not_zero(&local->usage) ? local : NULL;
}

static inline void rxrpc_put_local(struct rxrpc_local *local)
{
937
	if (local && atomic_dec_and_test(&local->usage))
938 939 940
		__rxrpc_put_local(local);
}

941 942 943 944 945
static inline void rxrpc_queue_local(struct rxrpc_local *local)
{
	rxrpc_queue_work(&local->processor);
}

946
/*
947
 * misc.c
948
 */
949 950 951 952 953 954 955
extern unsigned int rxrpc_max_backlog __read_mostly;
extern unsigned int rxrpc_requested_ack_delay;
extern unsigned int rxrpc_soft_ack_delay;
extern unsigned int rxrpc_idle_ack_delay;
extern unsigned int rxrpc_rx_window_size;
extern unsigned int rxrpc_rx_mtu;
extern unsigned int rxrpc_rx_jumbo_max;
956
extern unsigned int rxrpc_resend_timeout;
957

958 959
extern const s8 rxrpc_ack_priority[];

960 961 962 963 964 965 966 967 968 969 970
/*
 * net_ns.c
 */
extern unsigned int rxrpc_net_id;
extern struct pernet_operations rxrpc_net_ops;

static inline struct rxrpc_net *rxrpc_net(struct net *net)
{
	return net_generic(net, rxrpc_net_id);
}

971
/*
972
 * output.c
973
 */
974
int rxrpc_send_ack_packet(struct rxrpc_call *, bool);
975
int rxrpc_send_abort_packet(struct rxrpc_call *);
976
int rxrpc_send_data_packet(struct rxrpc_call *, struct sk_buff *, bool);
977
void rxrpc_reject_packets(struct rxrpc_local *);
978 979

/*
980
 * peer_event.c
981
 */
982
void rxrpc_error_report(struct sock *);
983
void rxrpc_peer_error_distributor(struct work_struct *);
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void rxrpc_peer_add_rtt(struct rxrpc_call *, enum rxrpc_rtt_rx_trace,
			rxrpc_serial_t, rxrpc_serial_t, ktime_t, ktime_t);
986 987 988

/*
 * peer_object.c
989
 */
990 991 992 993 994
struct rxrpc_peer *rxrpc_lookup_peer_rcu(struct rxrpc_local *,
					 const struct sockaddr_rxrpc *);
struct rxrpc_peer *rxrpc_lookup_peer(struct rxrpc_local *,
				     struct sockaddr_rxrpc *, gfp_t);
struct rxrpc_peer *rxrpc_alloc_peer(struct rxrpc_local *, gfp_t);
995 996
struct rxrpc_peer *rxrpc_lookup_incoming_peer(struct rxrpc_local *,
					      struct rxrpc_peer *);
997

998
static inline struct rxrpc_peer *rxrpc_get_peer(struct rxrpc_peer *peer)
999 1000
{
	atomic_inc(&peer->usage);
1001
	return peer;
1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012
}

static inline
struct rxrpc_peer *rxrpc_get_peer_maybe(struct rxrpc_peer *peer)
{
	return atomic_inc_not_zero(&peer->usage) ? peer : NULL;
}

extern void __rxrpc_put_peer(struct rxrpc_peer *peer);
static inline void rxrpc_put_peer(struct rxrpc_peer *peer)
{
1013
	if (peer && atomic_dec_and_test(&peer->usage))
1014 1015
		__rxrpc_put_peer(peer);
}
1016 1017

/*
1018
 * proc.c
1019
 */
1020 1021
extern const struct file_operations rxrpc_call_seq_fops;
extern const struct file_operations rxrpc_connection_seq_fops;
1022 1023

/*
1024
 * recvmsg.c
1025
 */
1026
void rxrpc_notify_socket(struct rxrpc_call *);
1027
int rxrpc_recvmsg(struct socket *, struct msghdr *, size_t, int);
1028 1029

/*
1030 1031 1032 1033 1034 1035 1036 1037
 * rxkad.c
 */
#ifdef CONFIG_RXKAD
extern const struct rxrpc_security rxkad;
#endif

/*
 * security.c
1038
 */
1039 1040
int __init rxrpc_init_security(void);
void rxrpc_exit_security(void);
1041 1042
int rxrpc_init_client_conn_security(struct rxrpc_connection *);
int rxrpc_init_server_conn_security(struct rxrpc_connection *);
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1043

1044 1045 1046 1047
/*
 * sendmsg.c
 */
int rxrpc_do_sendmsg(struct rxrpc_sock *, struct msghdr *, size_t);
1048 1049

/*
1050
 * skbuff.c
1051
 */
1052
void rxrpc_kernel_data_consumed(struct rxrpc_call *, struct sk_buff *);
1053
void rxrpc_packet_destructor(struct sk_buff *);
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1054 1055 1056 1057 1058
void rxrpc_new_skb(struct sk_buff *, enum rxrpc_skb_trace);
void rxrpc_see_skb(struct sk_buff *, enum rxrpc_skb_trace);
void rxrpc_get_skb(struct sk_buff *, enum rxrpc_skb_trace);
void rxrpc_free_skb(struct sk_buff *, enum rxrpc_skb_trace);
void rxrpc_lose_skb(struct sk_buff *, enum rxrpc_skb_trace);
1059
void rxrpc_purge_queue(struct sk_buff_head *);
1060

1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071
/*
 * sysctl.c
 */
#ifdef CONFIG_SYSCTL
extern int __init rxrpc_sysctl_init(void);
extern void rxrpc_sysctl_exit(void);
#else
static inline int __init rxrpc_sysctl_init(void) { return 0; }
static inline void rxrpc_sysctl_exit(void) {}
#endif

1072 1073 1074
/*
 * utils.c
 */
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1075 1076
int rxrpc_extract_addr_from_skb(struct rxrpc_local *, struct sockaddr_rxrpc *,
				struct sk_buff *);
1077

1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094
static inline bool before(u32 seq1, u32 seq2)
{
        return (s32)(seq1 - seq2) < 0;
}
static inline bool before_eq(u32 seq1, u32 seq2)
{
        return (s32)(seq1 - seq2) <= 0;
}
static inline bool after(u32 seq1, u32 seq2)
{
        return (s32)(seq1 - seq2) > 0;
}
static inline bool after_eq(u32 seq1, u32 seq2)
{
        return (s32)(seq1 - seq2) >= 0;
}

1095 1096 1097
/*
 * debug tracing
 */
1098
extern unsigned int rxrpc_debug;
1099 1100

#define dbgprintk(FMT,...) \
1101
	printk("[%-6.6s] "FMT"\n", current->comm ,##__VA_ARGS__)
1102

1103 1104
#define kenter(FMT,...)	dbgprintk("==> %s("FMT")",__func__ ,##__VA_ARGS__)
#define kleave(FMT,...)	dbgprintk("<== %s()"FMT"",__func__ ,##__VA_ARGS__)
1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154
#define kdebug(FMT,...)	dbgprintk("    "FMT ,##__VA_ARGS__)
#define kproto(FMT,...)	dbgprintk("### "FMT ,##__VA_ARGS__)
#define knet(FMT,...)	dbgprintk("@@@ "FMT ,##__VA_ARGS__)


#if defined(__KDEBUG)
#define _enter(FMT,...)	kenter(FMT,##__VA_ARGS__)
#define _leave(FMT,...)	kleave(FMT,##__VA_ARGS__)
#define _debug(FMT,...)	kdebug(FMT,##__VA_ARGS__)
#define _proto(FMT,...)	kproto(FMT,##__VA_ARGS__)
#define _net(FMT,...)	knet(FMT,##__VA_ARGS__)

#elif defined(CONFIG_AF_RXRPC_DEBUG)
#define RXRPC_DEBUG_KENTER	0x01
#define RXRPC_DEBUG_KLEAVE	0x02
#define RXRPC_DEBUG_KDEBUG	0x04
#define RXRPC_DEBUG_KPROTO	0x08
#define RXRPC_DEBUG_KNET	0x10

#define _enter(FMT,...)					\
do {							\
	if (unlikely(rxrpc_debug & RXRPC_DEBUG_KENTER))	\
		kenter(FMT,##__VA_ARGS__);		\
} while (0)

#define _leave(FMT,...)					\
do {							\
	if (unlikely(rxrpc_debug & RXRPC_DEBUG_KLEAVE))	\
		kleave(FMT,##__VA_ARGS__);		\
} while (0)

#define _debug(FMT,...)					\
do {							\
	if (unlikely(rxrpc_debug & RXRPC_DEBUG_KDEBUG))	\
		kdebug(FMT,##__VA_ARGS__);		\
} while (0)

#define _proto(FMT,...)					\
do {							\
	if (unlikely(rxrpc_debug & RXRPC_DEBUG_KPROTO))	\
		kproto(FMT,##__VA_ARGS__);		\
} while (0)

#define _net(FMT,...)					\
do {							\
	if (unlikely(rxrpc_debug & RXRPC_DEBUG_KNET))	\
		knet(FMT,##__VA_ARGS__);		\
} while (0)

#else
1155 1156 1157 1158 1159
#define _enter(FMT,...)	no_printk("==> %s("FMT")",__func__ ,##__VA_ARGS__)
#define _leave(FMT,...)	no_printk("<== %s()"FMT"",__func__ ,##__VA_ARGS__)
#define _debug(FMT,...)	no_printk("    "FMT ,##__VA_ARGS__)
#define _proto(FMT,...)	no_printk("### "FMT ,##__VA_ARGS__)
#define _net(FMT,...)	no_printk("@@@ "FMT ,##__VA_ARGS__)
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#endif

/*
 * debug assertion checking
 */
#if 1 // defined(__KDEBUGALL)

#define ASSERT(X)						\
do {								\
	if (unlikely(!(X))) {					\
1170
		pr_err("Assertion failed\n");			\
1171 1172
		BUG();						\
	}							\
1173
} while (0)
1174 1175 1176

#define ASSERTCMP(X, OP, Y)						\
do {									\
1177 1178
	__typeof__(X) _x = (X);						\
	__typeof__(Y) _y = (__typeof__(X))(Y);				\
1179
	if (unlikely(!(_x OP _y))) {					\
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		pr_err("Assertion failed - %lu(0x%lx) %s %lu(0x%lx) is false\n", \
		       (unsigned long)_x, (unsigned long)_x, #OP,	\
		       (unsigned long)_y, (unsigned long)_y);		\
1183 1184
		BUG();							\
	}								\
1185
} while (0)
1186 1187 1188 1189

#define ASSERTIF(C, X)						\
do {								\
	if (unlikely((C) && !(X))) {				\
1190
		pr_err("Assertion failed\n");			\
1191 1192
		BUG();						\
	}							\
1193
} while (0)
1194 1195 1196

#define ASSERTIFCMP(C, X, OP, Y)					\
do {									\
1197 1198
	__typeof__(X) _x = (X);						\
	__typeof__(Y) _y = (__typeof__(X))(Y);				\
1199 1200
	if (unlikely((C) && !(_x OP _y))) {				\
		pr_err("Assertion failed - %lu(0x%lx) %s %lu(0x%lx) is false\n", \
1201 1202
		       (unsigned long)_x, (unsigned long)_x, #OP,	\
		       (unsigned long)_y, (unsigned long)_y);		\
1203 1204
		BUG();							\
	}								\
1205
} while (0)
1206 1207 1208 1209 1210

#else

#define ASSERT(X)				\
do {						\
1211
} while (0)
1212 1213 1214

#define ASSERTCMP(X, OP, Y)			\
do {						\
1215
} while (0)
1216 1217 1218

#define ASSERTIF(C, X)				\
do {						\
1219
} while (0)
1220 1221 1222

#define ASSERTIFCMP(C, X, OP, Y)		\
do {						\
1223
} while (0)
1224 1225

#endif /* __KDEBUGALL */