xprtsock.c 51.1 KB
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/*
 * linux/net/sunrpc/xprtsock.c
 *
 * Client-side transport implementation for sockets.
 *
 * TCP callback races fixes (C) 1998 Red Hat Software <alan@redhat.com>
 * TCP send fixes (C) 1998 Red Hat Software <alan@redhat.com>
 * TCP NFS related read + write fixes
 *  (C) 1999 Dave Airlie, University of Limerick, Ireland <airlied@linux.ie>
 *
 * Rewrite of larges part of the code in order to stabilize TCP stuff.
 * Fix behaviour when socket buffer is full.
 *  (C) 1999 Trond Myklebust <trond.myklebust@fys.uio.no>
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 *
 * IP socket transport implementation, (C) 2005 Chuck Lever <cel@netapp.com>
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 *
 * IPv6 support contributed by Gilles Quillard, Bull Open Source, 2005.
 *   <gilles.quillard@bull.net>
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 */

#include <linux/types.h>
#include <linux/slab.h>
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#include <linux/module.h>
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#include <linux/capability.h>
#include <linux/pagemap.h>
#include <linux/errno.h>
#include <linux/socket.h>
#include <linux/in.h>
#include <linux/net.h>
#include <linux/mm.h>
#include <linux/udp.h>
#include <linux/tcp.h>
#include <linux/sunrpc/clnt.h>
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#include <linux/sunrpc/sched.h>
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#include <linux/file.h>

#include <net/sock.h>
#include <net/checksum.h>
#include <net/udp.h>
#include <net/tcp.h>

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/*
 * xprtsock tunables
 */
unsigned int xprt_udp_slot_table_entries = RPC_DEF_SLOT_TABLE;
unsigned int xprt_tcp_slot_table_entries = RPC_DEF_SLOT_TABLE;

unsigned int xprt_min_resvport = RPC_DEF_MIN_RESVPORT;
unsigned int xprt_max_resvport = RPC_DEF_MAX_RESVPORT;

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/*
 * We can register our own files under /proc/sys/sunrpc by
 * calling register_sysctl_table() again.  The files in that
 * directory become the union of all files registered there.
 *
 * We simply need to make sure that we don't collide with
 * someone else's file names!
 */

#ifdef RPC_DEBUG

static unsigned int min_slot_table_size = RPC_MIN_SLOT_TABLE;
static unsigned int max_slot_table_size = RPC_MAX_SLOT_TABLE;
static unsigned int xprt_min_resvport_limit = RPC_MIN_RESVPORT;
static unsigned int xprt_max_resvport_limit = RPC_MAX_RESVPORT;

static struct ctl_table_header *sunrpc_table_header;

/*
 * FIXME: changing the UDP slot table size should also resize the UDP
 *        socket buffers for existing UDP transports
 */
static ctl_table xs_tunables_table[] = {
	{
		.ctl_name	= CTL_SLOTTABLE_UDP,
		.procname	= "udp_slot_table_entries",
		.data		= &xprt_udp_slot_table_entries,
		.maxlen		= sizeof(unsigned int),
		.mode		= 0644,
		.proc_handler	= &proc_dointvec_minmax,
		.strategy	= &sysctl_intvec,
		.extra1		= &min_slot_table_size,
		.extra2		= &max_slot_table_size
	},
	{
		.ctl_name	= CTL_SLOTTABLE_TCP,
		.procname	= "tcp_slot_table_entries",
		.data		= &xprt_tcp_slot_table_entries,
		.maxlen		= sizeof(unsigned int),
		.mode		= 0644,
		.proc_handler	= &proc_dointvec_minmax,
		.strategy	= &sysctl_intvec,
		.extra1		= &min_slot_table_size,
		.extra2		= &max_slot_table_size
	},
	{
		.ctl_name	= CTL_MIN_RESVPORT,
		.procname	= "min_resvport",
		.data		= &xprt_min_resvport,
		.maxlen		= sizeof(unsigned int),
		.mode		= 0644,
		.proc_handler	= &proc_dointvec_minmax,
		.strategy	= &sysctl_intvec,
		.extra1		= &xprt_min_resvport_limit,
		.extra2		= &xprt_max_resvport_limit
	},
	{
		.ctl_name	= CTL_MAX_RESVPORT,
		.procname	= "max_resvport",
		.data		= &xprt_max_resvport,
		.maxlen		= sizeof(unsigned int),
		.mode		= 0644,
		.proc_handler	= &proc_dointvec_minmax,
		.strategy	= &sysctl_intvec,
		.extra1		= &xprt_min_resvport_limit,
		.extra2		= &xprt_max_resvport_limit
	},
	{
		.ctl_name = 0,
	},
};

static ctl_table sunrpc_table[] = {
	{
		.ctl_name	= CTL_SUNRPC,
		.procname	= "sunrpc",
		.mode		= 0555,
		.child		= xs_tunables_table
	},
	{
		.ctl_name = 0,
	},
};

#endif

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/*
 * How many times to try sending a request on a socket before waiting
 * for the socket buffer to clear.
 */
#define XS_SENDMSG_RETRY	(10U)

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/*
 * Time out for an RPC UDP socket connect.  UDP socket connects are
 * synchronous, but we set a timeout anyway in case of resource
 * exhaustion on the local host.
 */
#define XS_UDP_CONN_TO		(5U * HZ)

/*
 * Wait duration for an RPC TCP connection to be established.  Solaris
 * NFS over TCP uses 60 seconds, for example, which is in line with how
 * long a server takes to reboot.
 */
#define XS_TCP_CONN_TO		(60U * HZ)

/*
 * Wait duration for a reply from the RPC portmapper.
 */
#define XS_BIND_TO		(60U * HZ)

/*
 * Delay if a UDP socket connect error occurs.  This is most likely some
 * kind of resource problem on the local host.
 */
#define XS_UDP_REEST_TO		(2U * HZ)

/*
 * The reestablish timeout allows clients to delay for a bit before attempting
 * to reconnect to a server that just dropped our connection.
 *
 * We implement an exponential backoff when trying to reestablish a TCP
 * transport connection with the server.  Some servers like to drop a TCP
 * connection when they are overworked, so we start with a short timeout and
 * increase over time if the server is down or not responding.
 */
#define XS_TCP_INIT_REEST_TO	(3U * HZ)
#define XS_TCP_MAX_REEST_TO	(5U * 60 * HZ)

/*
 * TCP idle timeout; client drops the transport socket if it is idle
 * for this long.  Note that we also timeout UDP sockets to prevent
 * holding port numbers when there is no RPC traffic.
 */
#define XS_IDLE_DISC_TO		(5U * 60 * HZ)

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#ifdef RPC_DEBUG
# undef  RPC_DEBUG_DATA
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# define RPCDBG_FACILITY	RPCDBG_TRANS
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#endif

#ifdef RPC_DEBUG_DATA
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static void xs_pktdump(char *msg, u32 *packet, unsigned int count)
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{
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	u8 *buf = (u8 *) packet;
	int j;
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	dprintk("RPC:       %s\n", msg);
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	for (j = 0; j < count && j < 128; j += 4) {
		if (!(j & 31)) {
			if (j)
				dprintk("\n");
			dprintk("0x%04x ", j);
		}
		dprintk("%02x%02x%02x%02x ",
			buf[j], buf[j+1], buf[j+2], buf[j+3]);
	}
	dprintk("\n");
}
#else
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static inline void xs_pktdump(char *msg, u32 *packet, unsigned int count)
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{
	/* NOP */
}
#endif

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struct sock_xprt {
	struct rpc_xprt		xprt;
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	/*
	 * Network layer
	 */
	struct socket *		sock;
	struct sock *		inet;
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	/*
	 * State of TCP reply receive
	 */
	__be32			tcp_fraghdr,
				tcp_xid;

	u32			tcp_offset,
				tcp_reclen;

	unsigned long		tcp_copied,
				tcp_flags;
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	/*
	 * Connection of transports
	 */
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	struct delayed_work	connect_worker;
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	struct sockaddr_storage	addr;
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	unsigned short		port;
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	/*
	 * UDP socket buffer size parameters
	 */
	size_t			rcvsize,
				sndsize;
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	/*
	 * Saved socket callback addresses
	 */
	void			(*old_data_ready)(struct sock *, int);
	void			(*old_state_change)(struct sock *);
	void			(*old_write_space)(struct sock *);
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};

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/*
 * TCP receive state flags
 */
#define TCP_RCV_LAST_FRAG	(1UL << 0)
#define TCP_RCV_COPY_FRAGHDR	(1UL << 1)
#define TCP_RCV_COPY_XID	(1UL << 2)
#define TCP_RCV_COPY_DATA	(1UL << 3)

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static inline struct sockaddr *xs_addr(struct rpc_xprt *xprt)
{
	return (struct sockaddr *) &xprt->addr;
}

static inline struct sockaddr_in *xs_addr_in(struct rpc_xprt *xprt)
{
	return (struct sockaddr_in *) &xprt->addr;
}

static inline struct sockaddr_in6 *xs_addr_in6(struct rpc_xprt *xprt)
{
	return (struct sockaddr_in6 *) &xprt->addr;
}

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static void xs_format_ipv4_peer_addresses(struct rpc_xprt *xprt)
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{
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	struct sockaddr_in *addr = xs_addr_in(xprt);
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	char *buf;

	buf = kzalloc(20, GFP_KERNEL);
	if (buf) {
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		snprintf(buf, 20, NIPQUAD_FMT,
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				NIPQUAD(addr->sin_addr.s_addr));
	}
	xprt->address_strings[RPC_DISPLAY_ADDR] = buf;

	buf = kzalloc(8, GFP_KERNEL);
	if (buf) {
		snprintf(buf, 8, "%u",
				ntohs(addr->sin_port));
	}
	xprt->address_strings[RPC_DISPLAY_PORT] = buf;

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	buf = kzalloc(8, GFP_KERNEL);
	if (buf) {
		if (xprt->prot == IPPROTO_UDP)
			snprintf(buf, 8, "udp");
		else
			snprintf(buf, 8, "tcp");
	}
	xprt->address_strings[RPC_DISPLAY_PROTO] = buf;
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	buf = kzalloc(48, GFP_KERNEL);
	if (buf) {
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		snprintf(buf, 48, "addr="NIPQUAD_FMT" port=%u proto=%s",
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			NIPQUAD(addr->sin_addr.s_addr),
			ntohs(addr->sin_port),
			xprt->prot == IPPROTO_UDP ? "udp" : "tcp");
	}
	xprt->address_strings[RPC_DISPLAY_ALL] = buf;
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	buf = kzalloc(10, GFP_KERNEL);
	if (buf) {
		snprintf(buf, 10, "%02x%02x%02x%02x",
				NIPQUAD(addr->sin_addr.s_addr));
	}
	xprt->address_strings[RPC_DISPLAY_HEX_ADDR] = buf;

	buf = kzalloc(8, GFP_KERNEL);
	if (buf) {
		snprintf(buf, 8, "%4hx",
				ntohs(addr->sin_port));
	}
	xprt->address_strings[RPC_DISPLAY_HEX_PORT] = buf;
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	buf = kzalloc(30, GFP_KERNEL);
	if (buf) {
		snprintf(buf, 30, NIPQUAD_FMT".%u.%u",
				NIPQUAD(addr->sin_addr.s_addr),
				ntohs(addr->sin_port) >> 8,
				ntohs(addr->sin_port) & 0xff);
	}
	xprt->address_strings[RPC_DISPLAY_UNIVERSAL_ADDR] = buf;
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	xprt->address_strings[RPC_DISPLAY_NETID] =
		kstrdup(xprt->prot == IPPROTO_UDP ?
			RPCBIND_NETID_UDP : RPCBIND_NETID_TCP, GFP_KERNEL);
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}

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static void xs_format_ipv6_peer_addresses(struct rpc_xprt *xprt)
{
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	struct sockaddr_in6 *addr = xs_addr_in6(xprt);
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	char *buf;

	buf = kzalloc(40, GFP_KERNEL);
	if (buf) {
		snprintf(buf, 40, NIP6_FMT,
				NIP6(addr->sin6_addr));
	}
	xprt->address_strings[RPC_DISPLAY_ADDR] = buf;

	buf = kzalloc(8, GFP_KERNEL);
	if (buf) {
		snprintf(buf, 8, "%u",
				ntohs(addr->sin6_port));
	}
	xprt->address_strings[RPC_DISPLAY_PORT] = buf;

	buf = kzalloc(8, GFP_KERNEL);
	if (buf) {
		if (xprt->prot == IPPROTO_UDP)
			snprintf(buf, 8, "udp");
		else
			snprintf(buf, 8, "tcp");
	}
	xprt->address_strings[RPC_DISPLAY_PROTO] = buf;

	buf = kzalloc(64, GFP_KERNEL);
	if (buf) {
		snprintf(buf, 64, "addr="NIP6_FMT" port=%u proto=%s",
				NIP6(addr->sin6_addr),
				ntohs(addr->sin6_port),
				xprt->prot == IPPROTO_UDP ? "udp" : "tcp");
	}
	xprt->address_strings[RPC_DISPLAY_ALL] = buf;

	buf = kzalloc(36, GFP_KERNEL);
	if (buf) {
		snprintf(buf, 36, NIP6_SEQFMT,
				NIP6(addr->sin6_addr));
	}
	xprt->address_strings[RPC_DISPLAY_HEX_ADDR] = buf;

	buf = kzalloc(8, GFP_KERNEL);
	if (buf) {
		snprintf(buf, 8, "%4hx",
				ntohs(addr->sin6_port));
	}
	xprt->address_strings[RPC_DISPLAY_HEX_PORT] = buf;
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	buf = kzalloc(50, GFP_KERNEL);
	if (buf) {
		snprintf(buf, 50, NIP6_FMT".%u.%u",
				NIP6(addr->sin6_addr),
				ntohs(addr->sin6_port) >> 8,
				ntohs(addr->sin6_port) & 0xff);
	}
	xprt->address_strings[RPC_DISPLAY_UNIVERSAL_ADDR] = buf;
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	xprt->address_strings[RPC_DISPLAY_NETID] =
		kstrdup(xprt->prot == IPPROTO_UDP ?
			RPCBIND_NETID_UDP6 : RPCBIND_NETID_TCP6, GFP_KERNEL);
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}

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static void xs_free_peer_addresses(struct rpc_xprt *xprt)
{
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	int i;

	for (i = 0; i < RPC_DISPLAY_MAX; i++)
		kfree(xprt->address_strings[i]);
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}

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#define XS_SENDMSG_FLAGS	(MSG_DONTWAIT | MSG_NOSIGNAL)

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static int xs_send_kvec(struct socket *sock, struct sockaddr *addr, int addrlen, struct kvec *vec, unsigned int base, int more)
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{
	struct msghdr msg = {
		.msg_name	= addr,
		.msg_namelen	= addrlen,
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		.msg_flags	= XS_SENDMSG_FLAGS | (more ? MSG_MORE : 0),
	};
	struct kvec iov = {
		.iov_base	= vec->iov_base + base,
		.iov_len	= vec->iov_len - base,
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	};

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	if (iov.iov_len != 0)
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		return kernel_sendmsg(sock, &msg, &iov, 1, iov.iov_len);
	return kernel_sendmsg(sock, &msg, NULL, 0, 0);
}

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static int xs_send_pagedata(struct socket *sock, struct xdr_buf *xdr, unsigned int base, int more)
440
{
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	struct page **ppage;
	unsigned int remainder;
	int err, sent = 0;

	remainder = xdr->page_len - base;
	base += xdr->page_base;
	ppage = xdr->pages + (base >> PAGE_SHIFT);
	base &= ~PAGE_MASK;
	for(;;) {
		unsigned int len = min_t(unsigned int, PAGE_SIZE - base, remainder);
		int flags = XS_SENDMSG_FLAGS;
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		remainder -= len;
		if (remainder != 0 || more)
			flags |= MSG_MORE;
		err = sock->ops->sendpage(sock, *ppage, base, len, flags);
		if (remainder == 0 || err != len)
			break;
		sent += err;
		ppage++;
		base = 0;
	}
	if (sent == 0)
		return err;
	if (err > 0)
		sent += err;
	return sent;
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}

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/**
 * xs_sendpages - write pages directly to a socket
 * @sock: socket to send on
 * @addr: UDP only -- address of destination
 * @addrlen: UDP only -- length of destination address
 * @xdr: buffer containing this request
 * @base: starting position in the buffer
 *
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 */
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static int xs_sendpages(struct socket *sock, struct sockaddr *addr, int addrlen, struct xdr_buf *xdr, unsigned int base)
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{
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	unsigned int remainder = xdr->len - base;
	int err, sent = 0;
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	if (unlikely(!sock))
		return -ENOTCONN;

	clear_bit(SOCK_ASYNC_NOSPACE, &sock->flags);
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	if (base != 0) {
		addr = NULL;
		addrlen = 0;
	}
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	if (base < xdr->head[0].iov_len || addr != NULL) {
		unsigned int len = xdr->head[0].iov_len - base;
		remainder -= len;
		err = xs_send_kvec(sock, addr, addrlen, &xdr->head[0], base, remainder != 0);
		if (remainder == 0 || err != len)
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			goto out;
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		sent += err;
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		base = 0;
	} else
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		base -= xdr->head[0].iov_len;
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	if (base < xdr->page_len) {
		unsigned int len = xdr->page_len - base;
		remainder -= len;
		err = xs_send_pagedata(sock, xdr, base, remainder != 0);
		if (remainder == 0 || err != len)
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			goto out;
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		sent += err;
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		base = 0;
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	} else
		base -= xdr->page_len;

	if (base >= xdr->tail[0].iov_len)
		return sent;
	err = xs_send_kvec(sock, NULL, 0, &xdr->tail[0], base, 0);
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out:
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	if (sent == 0)
		return err;
	if (err > 0)
		sent += err;
	return sent;
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}

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/**
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 * xs_nospace - place task on wait queue if transmit was incomplete
 * @task: task to put to sleep
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 *
530
 */
531
static void xs_nospace(struct rpc_task *task)
532
{
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	struct rpc_rqst *req = task->tk_rqstp;
	struct rpc_xprt *xprt = req->rq_xprt;
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	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
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	dprintk("RPC: %5u xmit incomplete (%u left of %u)\n",
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			task->tk_pid, req->rq_slen - req->rq_bytes_sent,
			req->rq_slen);

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	if (test_bit(SOCK_ASYNC_NOSPACE, &transport->sock->flags)) {
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		/* Protect against races with write_space */
		spin_lock_bh(&xprt->transport_lock);

		/* Don't race with disconnect */
		if (!xprt_connected(xprt))
			task->tk_status = -ENOTCONN;
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		else if (test_bit(SOCK_NOSPACE, &transport->sock->flags))
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			xprt_wait_for_buffer_space(task);

		spin_unlock_bh(&xprt->transport_lock);
	} else
		/* Keep holding the socket if it is blocked */
		rpc_delay(task, HZ>>4);
}

/**
 * xs_udp_send_request - write an RPC request to a UDP socket
 * @task: address of RPC task that manages the state of an RPC request
 *
 * Return values:
 *        0:	The request has been sent
 *   EAGAIN:	The socket was blocked, please call again later to
 *		complete the request
 * ENOTCONN:	Caller needs to invoke connect logic then call again
 *    other:	Some other error occured, the request was not sent
 */
static int xs_udp_send_request(struct rpc_task *task)
{
	struct rpc_rqst *req = task->tk_rqstp;
	struct rpc_xprt *xprt = req->rq_xprt;
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	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
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	struct xdr_buf *xdr = &req->rq_snd_buf;
	int status;
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576
	xs_pktdump("packet data:",
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				req->rq_svec->iov_base,
				req->rq_svec->iov_len);

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	req->rq_xtime = jiffies;
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	status = xs_sendpages(transport->sock,
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			      xs_addr(xprt),
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			      xprt->addrlen, xdr,
			      req->rq_bytes_sent);
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	dprintk("RPC:       xs_udp_send_request(%u) = %d\n",
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			xdr->len - req->rq_bytes_sent, status);
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	if (likely(status >= (int) req->rq_slen))
		return 0;
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	/* Still some bytes left; set up for a retry later. */
	if (status > 0)
		status = -EAGAIN;
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	switch (status) {
	case -ENETUNREACH:
	case -EPIPE:
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	case -ECONNREFUSED:
		/* When the server has died, an ICMP port unreachable message
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		 * prompts ECONNREFUSED. */
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		break;
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	case -EAGAIN:
		xs_nospace(task);
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		break;
	default:
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		dprintk("RPC:       sendmsg returned unrecognized error %d\n",
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			-status);
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		break;
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	}
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	return status;
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}

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static inline void xs_encode_tcp_record_marker(struct xdr_buf *buf)
{
	u32 reclen = buf->len - sizeof(rpc_fraghdr);
	rpc_fraghdr *base = buf->head[0].iov_base;
	*base = htonl(RPC_LAST_STREAM_FRAGMENT | reclen);
}

622
/**
623
 * xs_tcp_send_request - write an RPC request to a TCP socket
624 625 626
 * @task: address of RPC task that manages the state of an RPC request
 *
 * Return values:
627 628 629 630 631
 *        0:	The request has been sent
 *   EAGAIN:	The socket was blocked, please call again later to
 *		complete the request
 * ENOTCONN:	Caller needs to invoke connect logic then call again
 *    other:	Some other error occured, the request was not sent
632 633
 *
 * XXX: In the case of soft timeouts, should we eventually give up
634
 *	if sendmsg is not able to make progress?
635
 */
636
static int xs_tcp_send_request(struct rpc_task *task)
637 638 639
{
	struct rpc_rqst *req = task->tk_rqstp;
	struct rpc_xprt *xprt = req->rq_xprt;
640
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
641
	struct xdr_buf *xdr = &req->rq_snd_buf;
642 643
	int status;
	unsigned int retry = 0;
644

645
	xs_encode_tcp_record_marker(&req->rq_snd_buf);
646

647 648 649
	xs_pktdump("packet data:",
				req->rq_svec->iov_base,
				req->rq_svec->iov_len);
650 651 652

	/* Continue transmitting the packet/record. We must be careful
	 * to cope with writespace callbacks arriving _after_ we have
653
	 * called sendmsg(). */
654 655
	while (1) {
		req->rq_xtime = jiffies;
656 657
		status = xs_sendpages(transport->sock,
					NULL, 0, xdr, req->rq_bytes_sent);
658

659
		dprintk("RPC:       xs_tcp_send_request(%u) = %d\n",
660
				xdr->len - req->rq_bytes_sent, status);
661

662
		if (unlikely(status < 0))
663 664
			break;

665 666 667
		/* If we've sent the entire packet, immediately
		 * reset the count of bytes sent. */
		req->rq_bytes_sent += status;
668
		task->tk_bytes_sent += status;
669 670 671 672
		if (likely(req->rq_bytes_sent >= req->rq_slen)) {
			req->rq_bytes_sent = 0;
			return 0;
		}
673 674

		status = -EAGAIN;
675
		if (retry++ > XS_SENDMSG_RETRY)
676 677 678
			break;
	}

679 680 681 682 683 684 685 686 687 688 689
	switch (status) {
	case -EAGAIN:
		xs_nospace(task);
		break;
	case -ECONNREFUSED:
	case -ECONNRESET:
	case -ENOTCONN:
	case -EPIPE:
		status = -ENOTCONN;
		break;
	default:
690
		dprintk("RPC:       sendmsg returned unrecognized error %d\n",
691
			-status);
692
		xprt_disconnect(xprt);
693
		break;
694
	}
695

696 697 698
	return status;
}

699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725
/**
 * xs_tcp_release_xprt - clean up after a tcp transmission
 * @xprt: transport
 * @task: rpc task
 *
 * This cleans up if an error causes us to abort the transmission of a request.
 * In this case, the socket may need to be reset in order to avoid confusing
 * the server.
 */
static void xs_tcp_release_xprt(struct rpc_xprt *xprt, struct rpc_task *task)
{
	struct rpc_rqst *req;

	if (task != xprt->snd_task)
		return;
	if (task == NULL)
		goto out_release;
	req = task->tk_rqstp;
	if (req->rq_bytes_sent == 0)
		goto out_release;
	if (req->rq_bytes_sent == req->rq_snd_buf.len)
		goto out_release;
	set_bit(XPRT_CLOSE_WAIT, &task->tk_xprt->state);
out_release:
	xprt_release_xprt(xprt, task);
}

726 727 728 729
/**
 * xs_close - close a socket
 * @xprt: transport
 *
730 731
 * This is used when all requests are complete; ie, no DRC state remains
 * on the server we want to save.
732
 */
733
static void xs_close(struct rpc_xprt *xprt)
734
{
735 736 737
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
	struct socket *sock = transport->sock;
	struct sock *sk = transport->inet;
738 739

	if (!sk)
740
		goto clear_close_wait;
741

742
	dprintk("RPC:       xs_close xprt %p\n", xprt);
743

744
	write_lock_bh(&sk->sk_callback_lock);
745 746
	transport->inet = NULL;
	transport->sock = NULL;
747

748
	sk->sk_user_data = NULL;
749 750 751
	sk->sk_data_ready = transport->old_data_ready;
	sk->sk_state_change = transport->old_state_change;
	sk->sk_write_space = transport->old_write_space;
752 753
	write_unlock_bh(&sk->sk_callback_lock);

754
	sk->sk_no_check = 0;
755 756

	sock_release(sock);
757 758 759 760
clear_close_wait:
	smp_mb__before_clear_bit();
	clear_bit(XPRT_CLOSE_WAIT, &xprt->state);
	smp_mb__after_clear_bit();
761 762
}

763 764 765 766 767 768
/**
 * xs_destroy - prepare to shutdown a transport
 * @xprt: doomed transport
 *
 */
static void xs_destroy(struct rpc_xprt *xprt)
769
{
770 771
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);

772
	dprintk("RPC:       xs_destroy xprt %p\n", xprt);
773

774
	cancel_rearming_delayed_work(&transport->connect_worker);
775 776

	xprt_disconnect(xprt);
777
	xs_close(xprt);
778
	xs_free_peer_addresses(xprt);
779
	kfree(xprt->slot);
780
	kfree(xprt);
781
	module_put(THIS_MODULE);
782 783
}

784 785 786 787 788 789 790 791 792 793
static inline struct rpc_xprt *xprt_from_sock(struct sock *sk)
{
	return (struct rpc_xprt *) sk->sk_user_data;
}

/**
 * xs_udp_data_ready - "data ready" callback for UDP sockets
 * @sk: socket with data to read
 * @len: how much data to read
 *
794
 */
795
static void xs_udp_data_ready(struct sock *sk, int len)
796
{
797 798
	struct rpc_task *task;
	struct rpc_xprt *xprt;
799
	struct rpc_rqst *rovr;
800
	struct sk_buff *skb;
801
	int err, repsize, copied;
802 803
	u32 _xid;
	__be32 *xp;
804 805

	read_lock(&sk->sk_callback_lock);
806
	dprintk("RPC:       xs_udp_data_ready...\n");
807
	if (!(xprt = xprt_from_sock(sk)))
808 809 810 811 812 813 814 815 816 817
		goto out;

	if ((skb = skb_recv_datagram(sk, 0, 1, &err)) == NULL)
		goto out;

	if (xprt->shutdown)
		goto dropit;

	repsize = skb->len - sizeof(struct udphdr);
	if (repsize < 4) {
818
		dprintk("RPC:       impossible RPC reply size %d!\n", repsize);
819 820 821 822 823 824 825 826 827 828
		goto dropit;
	}

	/* Copy the XID from the skb... */
	xp = skb_header_pointer(skb, sizeof(struct udphdr),
				sizeof(_xid), &_xid);
	if (xp == NULL)
		goto dropit;

	/* Look up and lock the request corresponding to the given XID */
C
Chuck Lever 已提交
829
	spin_lock(&xprt->transport_lock);
830 831 832 833 834 835 836 837 838 839 840 841 842 843 844
	rovr = xprt_lookup_rqst(xprt, *xp);
	if (!rovr)
		goto out_unlock;
	task = rovr->rq_task;

	if ((copied = rovr->rq_private_buf.buflen) > repsize)
		copied = repsize;

	/* Suck it into the iovec, verify checksum if not done by hw. */
	if (csum_partial_copy_to_xdr(&rovr->rq_private_buf, skb))
		goto out_unlock;

	/* Something worked... */
	dst_confirm(skb->dst);

845 846 847
	xprt_adjust_cwnd(task, copied);
	xprt_update_rtt(task);
	xprt_complete_rqst(task, copied);
848 849

 out_unlock:
C
Chuck Lever 已提交
850
	spin_unlock(&xprt->transport_lock);
851 852 853 854 855 856
 dropit:
	skb_free_datagram(sk, skb);
 out:
	read_unlock(&sk->sk_callback_lock);
}

857
static inline void xs_tcp_read_fraghdr(struct rpc_xprt *xprt, struct xdr_skb_reader *desc)
858
{
859
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
860 861 862
	size_t len, used;
	char *p;

863 864
	p = ((char *) &transport->tcp_fraghdr) + transport->tcp_offset;
	len = sizeof(transport->tcp_fraghdr) - transport->tcp_offset;
865
	used = xdr_skb_read_bits(desc, p, len);
866
	transport->tcp_offset += used;
867 868
	if (used != len)
		return;
869

870 871
	transport->tcp_reclen = ntohl(transport->tcp_fraghdr);
	if (transport->tcp_reclen & RPC_LAST_STREAM_FRAGMENT)
872
		transport->tcp_flags |= TCP_RCV_LAST_FRAG;
873
	else
874
		transport->tcp_flags &= ~TCP_RCV_LAST_FRAG;
875
	transport->tcp_reclen &= RPC_FRAGMENT_SIZE_MASK;
876

877
	transport->tcp_flags &= ~TCP_RCV_COPY_FRAGHDR;
878
	transport->tcp_offset = 0;
879

880
	/* Sanity check of the record length */
881
	if (unlikely(transport->tcp_reclen < 4)) {
882
		dprintk("RPC:       invalid TCP record fragment length\n");
883
		xprt_disconnect(xprt);
884
		return;
885
	}
886
	dprintk("RPC:       reading TCP record fragment of length %d\n",
887
			transport->tcp_reclen);
888 889
}

890
static void xs_tcp_check_fraghdr(struct sock_xprt *transport)
891
{
892
	if (transport->tcp_offset == transport->tcp_reclen) {
893
		transport->tcp_flags |= TCP_RCV_COPY_FRAGHDR;
894
		transport->tcp_offset = 0;
895 896 897
		if (transport->tcp_flags & TCP_RCV_LAST_FRAG) {
			transport->tcp_flags &= ~TCP_RCV_COPY_DATA;
			transport->tcp_flags |= TCP_RCV_COPY_XID;
898
			transport->tcp_copied = 0;
899 900 901 902
		}
	}
}

903
static inline void xs_tcp_read_xid(struct sock_xprt *transport, struct xdr_skb_reader *desc)
904 905 906 907
{
	size_t len, used;
	char *p;

908
	len = sizeof(transport->tcp_xid) - transport->tcp_offset;
909
	dprintk("RPC:       reading XID (%Zu bytes)\n", len);
910
	p = ((char *) &transport->tcp_xid) + transport->tcp_offset;
911
	used = xdr_skb_read_bits(desc, p, len);
912
	transport->tcp_offset += used;
913 914
	if (used != len)
		return;
915 916
	transport->tcp_flags &= ~TCP_RCV_COPY_XID;
	transport->tcp_flags |= TCP_RCV_COPY_DATA;
917
	transport->tcp_copied = 4;
918
	dprintk("RPC:       reading reply for XID %08x\n",
919 920
			ntohl(transport->tcp_xid));
	xs_tcp_check_fraghdr(transport);
921 922
}

923
static inline void xs_tcp_read_request(struct rpc_xprt *xprt, struct xdr_skb_reader *desc)
924
{
925
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
926 927 928 929 930 931
	struct rpc_rqst *req;
	struct xdr_buf *rcvbuf;
	size_t len;
	ssize_t r;

	/* Find and lock the request corresponding to this xid */
C
Chuck Lever 已提交
932
	spin_lock(&xprt->transport_lock);
933
	req = xprt_lookup_rqst(xprt, transport->tcp_xid);
934
	if (!req) {
935
		transport->tcp_flags &= ~TCP_RCV_COPY_DATA;
936
		dprintk("RPC:       XID %08x request not found!\n",
937
				ntohl(transport->tcp_xid));
C
Chuck Lever 已提交
938
		spin_unlock(&xprt->transport_lock);
939 940 941 942 943
		return;
	}

	rcvbuf = &req->rq_private_buf;
	len = desc->count;
944
	if (len > transport->tcp_reclen - transport->tcp_offset) {
945
		struct xdr_skb_reader my_desc;
946

947
		len = transport->tcp_reclen - transport->tcp_offset;
948 949
		memcpy(&my_desc, desc, sizeof(my_desc));
		my_desc.count = len;
950
		r = xdr_partial_copy_from_skb(rcvbuf, transport->tcp_copied,
951
					  &my_desc, xdr_skb_read_bits);
952 953 954
		desc->count -= r;
		desc->offset += r;
	} else
955
		r = xdr_partial_copy_from_skb(rcvbuf, transport->tcp_copied,
956
					  desc, xdr_skb_read_bits);
957 958

	if (r > 0) {
959 960
		transport->tcp_copied += r;
		transport->tcp_offset += r;
961 962 963 964 965
	}
	if (r != len) {
		/* Error when copying to the receive buffer,
		 * usually because we weren't able to allocate
		 * additional buffer pages. All we can do now
966
		 * is turn off TCP_RCV_COPY_DATA, so the request
967 968 969 970 971
		 * will not receive any additional updates,
		 * and time out.
		 * Any remaining data from this record will
		 * be discarded.
		 */
972
		transport->tcp_flags &= ~TCP_RCV_COPY_DATA;
973
		dprintk("RPC:       XID %08x truncated request\n",
974
				ntohl(transport->tcp_xid));
975 976 977 978
		dprintk("RPC:       xprt = %p, tcp_copied = %lu, "
				"tcp_offset = %u, tcp_reclen = %u\n",
				xprt, transport->tcp_copied,
				transport->tcp_offset, transport->tcp_reclen);
979 980 981
		goto out;
	}

982
	dprintk("RPC:       XID %08x read %Zd bytes\n",
983
			ntohl(transport->tcp_xid), r);
984 985 986
	dprintk("RPC:       xprt = %p, tcp_copied = %lu, tcp_offset = %u, "
			"tcp_reclen = %u\n", xprt, transport->tcp_copied,
			transport->tcp_offset, transport->tcp_reclen);
987 988

	if (transport->tcp_copied == req->rq_private_buf.buflen)
989
		transport->tcp_flags &= ~TCP_RCV_COPY_DATA;
990
	else if (transport->tcp_offset == transport->tcp_reclen) {
991 992
		if (transport->tcp_flags & TCP_RCV_LAST_FRAG)
			transport->tcp_flags &= ~TCP_RCV_COPY_DATA;
993 994 995
	}

out:
996
	if (!(transport->tcp_flags & TCP_RCV_COPY_DATA))
997
		xprt_complete_rqst(req->rq_task, transport->tcp_copied);
C
Chuck Lever 已提交
998
	spin_unlock(&xprt->transport_lock);
999
	xs_tcp_check_fraghdr(transport);
1000 1001
}

1002
static inline void xs_tcp_read_discard(struct sock_xprt *transport, struct xdr_skb_reader *desc)
1003 1004 1005
{
	size_t len;

1006
	len = transport->tcp_reclen - transport->tcp_offset;
1007 1008 1009 1010
	if (len > desc->count)
		len = desc->count;
	desc->count -= len;
	desc->offset += len;
1011
	transport->tcp_offset += len;
1012
	dprintk("RPC:       discarded %Zu bytes\n", len);
1013
	xs_tcp_check_fraghdr(transport);
1014 1015
}

1016
static int xs_tcp_data_recv(read_descriptor_t *rd_desc, struct sk_buff *skb, unsigned int offset, size_t len)
1017 1018
{
	struct rpc_xprt *xprt = rd_desc->arg.data;
1019
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
1020
	struct xdr_skb_reader desc = {
1021 1022 1023
		.skb	= skb,
		.offset	= offset,
		.count	= len,
1024
	};
1025

1026
	dprintk("RPC:       xs_tcp_data_recv started\n");
1027 1028 1029
	do {
		/* Read in a new fragment marker if necessary */
		/* Can we ever really expect to get completely empty fragments? */
1030
		if (transport->tcp_flags & TCP_RCV_COPY_FRAGHDR) {
1031
			xs_tcp_read_fraghdr(xprt, &desc);
1032 1033 1034
			continue;
		}
		/* Read in the xid if necessary */
1035
		if (transport->tcp_flags & TCP_RCV_COPY_XID) {
1036
			xs_tcp_read_xid(transport, &desc);
1037 1038 1039
			continue;
		}
		/* Read in the request data */
1040
		if (transport->tcp_flags & TCP_RCV_COPY_DATA) {
1041
			xs_tcp_read_request(xprt, &desc);
1042 1043 1044
			continue;
		}
		/* Skip over any trailing bytes on short reads */
1045
		xs_tcp_read_discard(transport, &desc);
1046
	} while (desc.count);
1047
	dprintk("RPC:       xs_tcp_data_recv done\n");
1048 1049 1050
	return len - desc.count;
}

1051 1052 1053 1054 1055 1056 1057
/**
 * xs_tcp_data_ready - "data ready" callback for TCP sockets
 * @sk: socket with data to read
 * @bytes: how much data to read
 *
 */
static void xs_tcp_data_ready(struct sock *sk, int bytes)
1058 1059 1060 1061
{
	struct rpc_xprt *xprt;
	read_descriptor_t rd_desc;

1062 1063
	dprintk("RPC:       xs_tcp_data_ready...\n");

1064
	read_lock(&sk->sk_callback_lock);
1065
	if (!(xprt = xprt_from_sock(sk)))
1066 1067 1068 1069
		goto out;
	if (xprt->shutdown)
		goto out;

1070
	/* We use rd_desc to pass struct xprt to xs_tcp_data_recv */
1071 1072
	rd_desc.arg.data = xprt;
	rd_desc.count = 65536;
1073
	tcp_read_sock(sk, &rd_desc, xs_tcp_data_recv);
1074 1075 1076 1077
out:
	read_unlock(&sk->sk_callback_lock);
}

1078 1079 1080 1081 1082 1083
/**
 * xs_tcp_state_change - callback to handle TCP socket state changes
 * @sk: socket whose state has changed
 *
 */
static void xs_tcp_state_change(struct sock *sk)
1084
{
1085
	struct rpc_xprt *xprt;
1086 1087 1088 1089

	read_lock(&sk->sk_callback_lock);
	if (!(xprt = xprt_from_sock(sk)))
		goto out;
1090 1091 1092 1093 1094
	dprintk("RPC:       xs_tcp_state_change client %p...\n", xprt);
	dprintk("RPC:       state %x conn %d dead %d zapped %d\n",
			sk->sk_state, xprt_connected(xprt),
			sock_flag(sk, SOCK_DEAD),
			sock_flag(sk, SOCK_ZAPPED));
1095 1096 1097

	switch (sk->sk_state) {
	case TCP_ESTABLISHED:
C
Chuck Lever 已提交
1098
		spin_lock_bh(&xprt->transport_lock);
1099
		if (!xprt_test_and_set_connected(xprt)) {
1100 1101 1102
			struct sock_xprt *transport = container_of(xprt,
					struct sock_xprt, xprt);

1103
			/* Reset TCP record info */
1104 1105 1106
			transport->tcp_offset = 0;
			transport->tcp_reclen = 0;
			transport->tcp_copied = 0;
1107 1108
			transport->tcp_flags =
				TCP_RCV_COPY_FRAGHDR | TCP_RCV_COPY_XID;
1109

1110
			xprt->reestablish_timeout = XS_TCP_INIT_REEST_TO;
1111
			xprt_wake_pending_tasks(xprt, 0);
1112
		}
C
Chuck Lever 已提交
1113
		spin_unlock_bh(&xprt->transport_lock);
1114 1115 1116 1117
		break;
	case TCP_SYN_SENT:
	case TCP_SYN_RECV:
		break;
1118 1119 1120 1121
	case TCP_CLOSE_WAIT:
		/* Try to schedule an autoclose RPC calls */
		set_bit(XPRT_CLOSE_WAIT, &xprt->state);
		if (test_and_set_bit(XPRT_LOCKED, &xprt->state) == 0)
1122
			queue_work(rpciod_workqueue, &xprt->task_cleanup);
1123 1124 1125 1126 1127 1128 1129
	default:
		xprt_disconnect(xprt);
	}
 out:
	read_unlock(&sk->sk_callback_lock);
}

1130
/**
1131 1132
 * xs_udp_write_space - callback invoked when socket buffer space
 *                             becomes available
1133 1134
 * @sk: socket whose state has changed
 *
1135 1136
 * Called when more output buffer space is available for this socket.
 * We try not to wake our writers until they can make "significant"
1137
 * progress, otherwise we'll waste resources thrashing kernel_sendmsg
1138 1139
 * with a bunch of small requests.
 */
1140
static void xs_udp_write_space(struct sock *sk)
1141 1142 1143
{
	read_lock(&sk->sk_callback_lock);

1144 1145 1146 1147 1148 1149
	/* from net/core/sock.c:sock_def_write_space */
	if (sock_writeable(sk)) {
		struct socket *sock;
		struct rpc_xprt *xprt;

		if (unlikely(!(sock = sk->sk_socket)))
1150
			goto out;
1151 1152 1153
		if (unlikely(!(xprt = xprt_from_sock(sk))))
			goto out;
		if (unlikely(!test_and_clear_bit(SOCK_NOSPACE, &sock->flags)))
1154
			goto out;
1155 1156

		xprt_write_space(xprt);
1157 1158
	}

1159 1160 1161
 out:
	read_unlock(&sk->sk_callback_lock);
}
1162

1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192
/**
 * xs_tcp_write_space - callback invoked when socket buffer space
 *                             becomes available
 * @sk: socket whose state has changed
 *
 * Called when more output buffer space is available for this socket.
 * We try not to wake our writers until they can make "significant"
 * progress, otherwise we'll waste resources thrashing kernel_sendmsg
 * with a bunch of small requests.
 */
static void xs_tcp_write_space(struct sock *sk)
{
	read_lock(&sk->sk_callback_lock);

	/* from net/core/stream.c:sk_stream_write_space */
	if (sk_stream_wspace(sk) >= sk_stream_min_wspace(sk)) {
		struct socket *sock;
		struct rpc_xprt *xprt;

		if (unlikely(!(sock = sk->sk_socket)))
			goto out;
		if (unlikely(!(xprt = xprt_from_sock(sk))))
			goto out;
		if (unlikely(!test_and_clear_bit(SOCK_NOSPACE, &sock->flags)))
			goto out;

		xprt_write_space(xprt);
	}

 out:
1193 1194 1195
	read_unlock(&sk->sk_callback_lock);
}

1196
static void xs_udp_do_set_buffer_size(struct rpc_xprt *xprt)
1197
{
1198 1199
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
	struct sock *sk = transport->inet;
1200

1201
	if (transport->rcvsize) {
1202
		sk->sk_userlocks |= SOCK_RCVBUF_LOCK;
1203
		sk->sk_rcvbuf = transport->rcvsize * xprt->max_reqs * 2;
1204
	}
1205
	if (transport->sndsize) {
1206
		sk->sk_userlocks |= SOCK_SNDBUF_LOCK;
1207
		sk->sk_sndbuf = transport->sndsize * xprt->max_reqs * 2;
1208 1209 1210 1211
		sk->sk_write_space(sk);
	}
}

1212
/**
1213
 * xs_udp_set_buffer_size - set send and receive limits
1214
 * @xprt: generic transport
1215 1216
 * @sndsize: requested size of send buffer, in bytes
 * @rcvsize: requested size of receive buffer, in bytes
1217
 *
1218
 * Set socket send and receive buffer size limits.
1219
 */
1220
static void xs_udp_set_buffer_size(struct rpc_xprt *xprt, size_t sndsize, size_t rcvsize)
1221
{
1222 1223 1224
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);

	transport->sndsize = 0;
1225
	if (sndsize)
1226 1227
		transport->sndsize = sndsize + 1024;
	transport->rcvsize = 0;
1228
	if (rcvsize)
1229
		transport->rcvsize = rcvsize + 1024;
1230 1231

	xs_udp_do_set_buffer_size(xprt);
1232 1233
}

1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244
/**
 * xs_udp_timer - called when a retransmit timeout occurs on a UDP transport
 * @task: task that timed out
 *
 * Adjust the congestion window after a retransmit timeout has occurred.
 */
static void xs_udp_timer(struct rpc_task *task)
{
	xprt_adjust_cwnd(task, -ETIMEDOUT);
}

1245 1246 1247 1248 1249 1250 1251
static unsigned short xs_get_random_port(void)
{
	unsigned short range = xprt_max_resvport - xprt_min_resvport;
	unsigned short rand = (unsigned short) net_random() % range;
	return rand + xprt_min_resvport;
}

1252 1253 1254 1255 1256 1257 1258 1259
/**
 * xs_set_port - reset the port number in the remote endpoint address
 * @xprt: generic transport
 * @port: new port number
 *
 */
static void xs_set_port(struct rpc_xprt *xprt, unsigned short port)
{
1260
	struct sockaddr *addr = xs_addr(xprt);
1261

1262
	dprintk("RPC:       setting port for xprt %p to %u\n", xprt, port);
1263

1264 1265 1266 1267 1268 1269 1270 1271 1272 1273
	switch (addr->sa_family) {
	case AF_INET:
		((struct sockaddr_in *)addr)->sin_port = htons(port);
		break;
	case AF_INET6:
		((struct sockaddr_in6 *)addr)->sin6_port = htons(port);
		break;
	default:
		BUG();
	}
1274 1275
}

1276
static int xs_bind4(struct sock_xprt *transport, struct socket *sock)
1277 1278 1279 1280
{
	struct sockaddr_in myaddr = {
		.sin_family = AF_INET,
	};
1281
	struct sockaddr_in *sa;
1282
	int err;
1283
	unsigned short port = transport->port;
1284

1285 1286 1287 1288
	if (!transport->xprt.resvport)
		port = 0;
	sa = (struct sockaddr_in *)&transport->addr;
	myaddr.sin_addr = sa->sin_addr;
1289 1290
	do {
		myaddr.sin_port = htons(port);
1291
		err = kernel_bind(sock, (struct sockaddr *) &myaddr,
1292
						sizeof(myaddr));
1293 1294
		if (!transport->xprt.resvport)
			break;
1295
		if (err == 0) {
1296
			transport->port = port;
1297
			break;
1298
		}
1299 1300 1301 1302
		if (port <= xprt_min_resvport)
			port = xprt_max_resvport;
		else
			port--;
1303
	} while (err == -EADDRINUSE && port != transport->port);
1304 1305 1306
	dprintk("RPC:       %s "NIPQUAD_FMT":%u: %s (%d)\n",
			__FUNCTION__, NIPQUAD(myaddr.sin_addr),
			port, err ? "failed" : "ok", err);
1307 1308 1309
	return err;
}

1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342
static int xs_bind6(struct sock_xprt *transport, struct socket *sock)
{
	struct sockaddr_in6 myaddr = {
		.sin6_family = AF_INET6,
	};
	struct sockaddr_in6 *sa;
	int err;
	unsigned short port = transport->port;

	if (!transport->xprt.resvport)
		port = 0;
	sa = (struct sockaddr_in6 *)&transport->addr;
	myaddr.sin6_addr = sa->sin6_addr;
	do {
		myaddr.sin6_port = htons(port);
		err = kernel_bind(sock, (struct sockaddr *) &myaddr,
						sizeof(myaddr));
		if (!transport->xprt.resvport)
			break;
		if (err == 0) {
			transport->port = port;
			break;
		}
		if (port <= xprt_min_resvport)
			port = xprt_max_resvport;
		else
			port--;
	} while (err == -EADDRINUSE && port != transport->port);
	dprintk("RPC:       xs_bind6 "NIP6_FMT":%u: %s (%d)\n",
		NIP6(myaddr.sin6_addr), port, err ? "failed" : "ok", err);
	return err;
}

1343 1344 1345 1346
#ifdef CONFIG_DEBUG_LOCK_ALLOC
static struct lock_class_key xs_key[2];
static struct lock_class_key xs_slock_key[2];

1347
static inline void xs_reclassify_socket4(struct socket *sock)
1348 1349
{
	struct sock *sk = sock->sk;
1350

1351
	BUG_ON(sk->sk_lock.owner != NULL);
1352 1353 1354
	sock_lock_init_class_and_name(sk, "slock-AF_INET-RPC",
		&xs_slock_key[0], "sk_lock-AF_INET-RPC", &xs_key[0]);
}
1355

1356 1357 1358
static inline void xs_reclassify_socket6(struct socket *sock)
{
	struct sock *sk = sock->sk;
1359

1360 1361 1362
	BUG_ON(sk->sk_lock.owner != NULL);
	sock_lock_init_class_and_name(sk, "slock-AF_INET6-RPC",
		&xs_slock_key[1], "sk_lock-AF_INET6-RPC", &xs_key[1]);
1363 1364
}
#else
1365 1366 1367 1368 1369
static inline void xs_reclassify_socket4(struct socket *sock)
{
}

static inline void xs_reclassify_socket6(struct socket *sock)
1370 1371 1372 1373
{
}
#endif

1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402
static void xs_udp_finish_connecting(struct rpc_xprt *xprt, struct socket *sock)
{
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);

	if (!transport->inet) {
		struct sock *sk = sock->sk;

		write_lock_bh(&sk->sk_callback_lock);

		sk->sk_user_data = xprt;
		transport->old_data_ready = sk->sk_data_ready;
		transport->old_state_change = sk->sk_state_change;
		transport->old_write_space = sk->sk_write_space;
		sk->sk_data_ready = xs_udp_data_ready;
		sk->sk_write_space = xs_udp_write_space;
		sk->sk_no_check = UDP_CSUM_NORCV;
		sk->sk_allocation = GFP_ATOMIC;

		xprt_set_connected(xprt);

		/* Reset to new socket */
		transport->sock = sock;
		transport->inet = sk;

		write_unlock_bh(&sk->sk_callback_lock);
	}
	xs_udp_do_set_buffer_size(xprt);
}

1403
/**
C
Chuck Lever 已提交
1404
 * xs_udp_connect_worker4 - set up a UDP socket
1405
 * @work: RPC transport to connect
1406 1407 1408
 *
 * Invoked by a work queue tasklet.
 */
C
Chuck Lever 已提交
1409
static void xs_udp_connect_worker4(struct work_struct *work)
1410
{
1411 1412
	struct sock_xprt *transport =
		container_of(work, struct sock_xprt, connect_worker.work);
1413
	struct rpc_xprt *xprt = &transport->xprt;
1414
	struct socket *sock = transport->sock;
1415
	int err, status = -EIO;
1416

1417
	if (xprt->shutdown || !xprt_bound(xprt))
1418
		goto out;
1419

1420 1421
	/* Start by resetting any existing state */
	xs_close(xprt);
1422

1423
	if ((err = sock_create_kern(PF_INET, SOCK_DGRAM, IPPROTO_UDP, &sock)) < 0) {
1424
		dprintk("RPC:       can't create UDP transport socket (%d).\n", -err);
1425 1426
		goto out;
	}
1427
	xs_reclassify_socket4(sock);
1428

1429
	if (xs_bind4(transport, sock)) {
1430 1431 1432
		sock_release(sock);
		goto out;
	}
1433

1434
	dprintk("RPC:       worker connecting xprt %p to address: %s\n",
1435
			xprt, xprt->address_strings[RPC_DISPLAY_ALL]);
1436

1437
	xs_udp_finish_connecting(xprt, sock);
1438 1439 1440 1441
	status = 0;
out:
	xprt_wake_pending_tasks(xprt, status);
	xprt_clear_connecting(xprt);
1442 1443
}

1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467
/**
 * xs_udp_connect_worker6 - set up a UDP socket
 * @work: RPC transport to connect
 *
 * Invoked by a work queue tasklet.
 */
static void xs_udp_connect_worker6(struct work_struct *work)
{
	struct sock_xprt *transport =
		container_of(work, struct sock_xprt, connect_worker.work);
	struct rpc_xprt *xprt = &transport->xprt;
	struct socket *sock = transport->sock;
	int err, status = -EIO;

	if (xprt->shutdown || !xprt_bound(xprt))
		goto out;

	/* Start by resetting any existing state */
	xs_close(xprt);

	if ((err = sock_create_kern(PF_INET6, SOCK_DGRAM, IPPROTO_UDP, &sock)) < 0) {
		dprintk("RPC:       can't create UDP transport socket (%d).\n", -err);
		goto out;
	}
1468
	xs_reclassify_socket6(sock);
1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484

	if (xs_bind6(transport, sock) < 0) {
		sock_release(sock);
		goto out;
	}

	dprintk("RPC:       worker connecting xprt %p to address: %s\n",
			xprt, xprt->address_strings[RPC_DISPLAY_ALL]);

	xs_udp_finish_connecting(xprt, sock);
	status = 0;
out:
	xprt_wake_pending_tasks(xprt, status);
	xprt_clear_connecting(xprt);
}

1485 1486 1487 1488 1489 1490 1491
/*
 * We need to preserve the port number so the reply cache on the server can
 * find our cached RPC replies when we get around to reconnecting.
 */
static void xs_tcp_reuse_connection(struct rpc_xprt *xprt)
{
	int result;
1492
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
1493 1494
	struct sockaddr any;

1495
	dprintk("RPC:       disconnecting xprt %p to reuse port\n", xprt);
1496 1497 1498 1499 1500 1501 1502

	/*
	 * Disconnect the transport socket by doing a connect operation
	 * with AF_UNSPEC.  This should return immediately...
	 */
	memset(&any, 0, sizeof(any));
	any.sa_family = AF_UNSPEC;
1503
	result = kernel_connect(transport->sock, &any, sizeof(any), 0);
1504
	if (result)
1505
		dprintk("RPC:       AF_UNSPEC connect return code %d\n",
1506 1507 1508
				result);
}

1509
static int xs_tcp_finish_connecting(struct rpc_xprt *xprt, struct socket *sock)
1510
{
1511
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
1512

1513
	if (!transport->inet) {
1514 1515 1516 1517 1518
		struct sock *sk = sock->sk;

		write_lock_bh(&sk->sk_callback_lock);

		sk->sk_user_data = xprt;
1519 1520 1521
		transport->old_data_ready = sk->sk_data_ready;
		transport->old_state_change = sk->sk_state_change;
		transport->old_write_space = sk->sk_write_space;
1522 1523 1524
		sk->sk_data_ready = xs_tcp_data_ready;
		sk->sk_state_change = xs_tcp_state_change;
		sk->sk_write_space = xs_tcp_write_space;
1525
		sk->sk_allocation = GFP_ATOMIC;
1526 1527 1528 1529 1530 1531

		/* socket options */
		sk->sk_userlocks |= SOCK_BINDPORT_LOCK;
		sock_reset_flag(sk, SOCK_LINGER);
		tcp_sk(sk)->linger2 = 0;
		tcp_sk(sk)->nonagle |= TCP_NAGLE_OFF;
1532 1533 1534 1535

		xprt_clear_connected(xprt);

		/* Reset to new socket */
1536 1537
		transport->sock = sock;
		transport->inet = sk;
1538 1539 1540 1541 1542

		write_unlock_bh(&sk->sk_callback_lock);
	}

	/* Tell the socket layer to start connecting... */
1543 1544
	xprt->stat.connect_count++;
	xprt->stat.connect_start = jiffies;
1545
	return kernel_connect(sock, xs_addr(xprt), xprt->addrlen, O_NONBLOCK);
1546 1547 1548
}

/**
C
Chuck Lever 已提交
1549
 * xs_tcp_connect_worker4 - connect a TCP socket to a remote endpoint
1550 1551 1552 1553
 * @work: RPC transport to connect
 *
 * Invoked by a work queue tasklet.
 */
C
Chuck Lever 已提交
1554
static void xs_tcp_connect_worker4(struct work_struct *work)
1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570
{
	struct sock_xprt *transport =
		container_of(work, struct sock_xprt, connect_worker.work);
	struct rpc_xprt *xprt = &transport->xprt;
	struct socket *sock = transport->sock;
	int err, status = -EIO;

	if (xprt->shutdown || !xprt_bound(xprt))
		goto out;

	if (!sock) {
		/* start from scratch */
		if ((err = sock_create_kern(PF_INET, SOCK_STREAM, IPPROTO_TCP, &sock)) < 0) {
			dprintk("RPC:       can't create TCP transport socket (%d).\n", -err);
			goto out;
		}
1571
		xs_reclassify_socket4(sock);
1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584

		if (xs_bind4(transport, sock) < 0) {
			sock_release(sock);
			goto out;
		}
	} else
		/* "close" the socket, preserving the local port */
		xs_tcp_reuse_connection(xprt);

	dprintk("RPC:       worker connecting xprt %p to address: %s\n",
			xprt, xprt->address_strings[RPC_DISPLAY_ALL]);

	status = xs_tcp_finish_connecting(xprt, sock);
1585 1586 1587
	dprintk("RPC:       %p connect status %d connected %d sock state %d\n",
			xprt, -status, xprt_connected(xprt),
			sock->sk->sk_state);
1588 1589 1590 1591 1592
	if (status < 0) {
		switch (status) {
			case -EINPROGRESS:
			case -EALREADY:
				goto out_clear;
1593 1594 1595 1596 1597 1598 1599 1600
			case -ECONNREFUSED:
			case -ECONNRESET:
				/* retry with existing socket, after a delay */
				break;
			default:
				/* get rid of existing socket, and retry */
				xs_close(xprt);
				break;
1601 1602 1603
		}
	}
out:
1604
	xprt_wake_pending_tasks(xprt, status);
1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631
out_clear:
	xprt_clear_connecting(xprt);
}

/**
 * xs_tcp_connect_worker6 - connect a TCP socket to a remote endpoint
 * @work: RPC transport to connect
 *
 * Invoked by a work queue tasklet.
 */
static void xs_tcp_connect_worker6(struct work_struct *work)
{
	struct sock_xprt *transport =
		container_of(work, struct sock_xprt, connect_worker.work);
	struct rpc_xprt *xprt = &transport->xprt;
	struct socket *sock = transport->sock;
	int err, status = -EIO;

	if (xprt->shutdown || !xprt_bound(xprt))
		goto out;

	if (!sock) {
		/* start from scratch */
		if ((err = sock_create_kern(PF_INET6, SOCK_STREAM, IPPROTO_TCP, &sock)) < 0) {
			dprintk("RPC:       can't create TCP transport socket (%d).\n", -err);
			goto out;
		}
1632
		xs_reclassify_socket6(sock);
1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664

		if (xs_bind6(transport, sock) < 0) {
			sock_release(sock);
			goto out;
		}
	} else
		/* "close" the socket, preserving the local port */
		xs_tcp_reuse_connection(xprt);

	dprintk("RPC:       worker connecting xprt %p to address: %s\n",
			xprt, xprt->address_strings[RPC_DISPLAY_ALL]);

	status = xs_tcp_finish_connecting(xprt, sock);
	dprintk("RPC:       %p connect status %d connected %d sock state %d\n",
			xprt, -status, xprt_connected(xprt), sock->sk->sk_state);
	if (status < 0) {
		switch (status) {
			case -EINPROGRESS:
			case -EALREADY:
				goto out_clear;
			case -ECONNREFUSED:
			case -ECONNRESET:
				/* retry with existing socket, after a delay */
				break;
			default:
				/* get rid of existing socket, and retry */
				xs_close(xprt);
				break;
		}
	}
out:
	xprt_wake_pending_tasks(xprt, status);
1665
out_clear:
1666
	xprt_clear_connecting(xprt);
1667 1668
}

1669 1670 1671 1672 1673
/**
 * xs_connect - connect a socket to a remote endpoint
 * @task: address of RPC task that manages state of connect request
 *
 * TCP: If the remote end dropped the connection, delay reconnecting.
1674 1675 1676 1677 1678 1679 1680
 *
 * UDP socket connects are synchronous, but we use a work queue anyway
 * to guarantee that even unprivileged user processes can set up a
 * socket on a privileged port.
 *
 * If a UDP socket connect fails, the delay behavior here prevents
 * retry floods (hard mounts).
1681 1682
 */
static void xs_connect(struct rpc_task *task)
1683 1684
{
	struct rpc_xprt *xprt = task->tk_xprt;
1685
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
1686

1687 1688 1689
	if (xprt_test_and_set_connecting(xprt))
		return;

1690
	if (transport->sock != NULL) {
1691 1692
		dprintk("RPC:       xs_connect delayed xprt %p for %lu "
				"seconds\n",
1693
				xprt, xprt->reestablish_timeout / HZ);
1694 1695 1696
		queue_delayed_work(rpciod_workqueue,
				   &transport->connect_worker,
				   xprt->reestablish_timeout);
1697 1698 1699
		xprt->reestablish_timeout <<= 1;
		if (xprt->reestablish_timeout > XS_TCP_MAX_REEST_TO)
			xprt->reestablish_timeout = XS_TCP_MAX_REEST_TO;
1700
	} else {
1701
		dprintk("RPC:       xs_connect scheduled xprt %p\n", xprt);
1702 1703
		queue_delayed_work(rpciod_workqueue,
				   &transport->connect_worker, 0);
1704 1705 1706
	}
}

1707 1708 1709 1710 1711 1712 1713 1714
/**
 * xs_udp_print_stats - display UDP socket-specifc stats
 * @xprt: rpc_xprt struct containing statistics
 * @seq: output file
 *
 */
static void xs_udp_print_stats(struct rpc_xprt *xprt, struct seq_file *seq)
{
1715 1716
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);

1717
	seq_printf(seq, "\txprt:\tudp %u %lu %lu %lu %lu %Lu %Lu\n",
1718
			transport->port,
1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734
			xprt->stat.bind_count,
			xprt->stat.sends,
			xprt->stat.recvs,
			xprt->stat.bad_xids,
			xprt->stat.req_u,
			xprt->stat.bklog_u);
}

/**
 * xs_tcp_print_stats - display TCP socket-specifc stats
 * @xprt: rpc_xprt struct containing statistics
 * @seq: output file
 *
 */
static void xs_tcp_print_stats(struct rpc_xprt *xprt, struct seq_file *seq)
{
1735
	struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
1736 1737 1738 1739 1740 1741
	long idle_time = 0;

	if (xprt_connected(xprt))
		idle_time = (long)(jiffies - xprt->last_used) / HZ;

	seq_printf(seq, "\txprt:\ttcp %u %lu %lu %lu %ld %lu %lu %lu %Lu %Lu\n",
1742
			transport->port,
1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753
			xprt->stat.bind_count,
			xprt->stat.connect_count,
			xprt->stat.connect_time,
			idle_time,
			xprt->stat.sends,
			xprt->stat.recvs,
			xprt->stat.bad_xids,
			xprt->stat.req_u,
			xprt->stat.bklog_u);
}

1754
static struct rpc_xprt_ops xs_udp_ops = {
1755
	.set_buffer_size	= xs_udp_set_buffer_size,
1756
	.reserve_xprt		= xprt_reserve_xprt_cong,
1757
	.release_xprt		= xprt_release_xprt_cong,
1758
	.rpcbind		= rpcb_getport_async,
1759
	.set_port		= xs_set_port,
1760
	.connect		= xs_connect,
1761 1762
	.buf_alloc		= rpc_malloc,
	.buf_free		= rpc_free,
1763
	.send_request		= xs_udp_send_request,
1764
	.set_retrans_timeout	= xprt_set_retrans_timeout_rtt,
1765
	.timer			= xs_udp_timer,
1766
	.release_request	= xprt_release_rqst_cong,
1767 1768
	.close			= xs_close,
	.destroy		= xs_destroy,
1769
	.print_stats		= xs_udp_print_stats,
1770 1771 1772
};

static struct rpc_xprt_ops xs_tcp_ops = {
1773
	.reserve_xprt		= xprt_reserve_xprt,
1774
	.release_xprt		= xs_tcp_release_xprt,
1775
	.rpcbind		= rpcb_getport_async,
1776
	.set_port		= xs_set_port,
1777
	.connect		= xs_connect,
1778 1779
	.buf_alloc		= rpc_malloc,
	.buf_free		= rpc_free,
1780
	.send_request		= xs_tcp_send_request,
1781
	.set_retrans_timeout	= xprt_set_retrans_timeout_def,
1782 1783
	.close			= xs_close,
	.destroy		= xs_destroy,
1784
	.print_stats		= xs_tcp_print_stats,
1785 1786
};

1787
static struct rpc_xprt *xs_setup_xprt(struct xprt_create *args,
1788
				      unsigned int slot_table_size)
1789 1790
{
	struct rpc_xprt *xprt;
1791
	struct sock_xprt *new;
1792

1793
	if (args->addrlen > sizeof(xprt->addr)) {
1794
		dprintk("RPC:       xs_setup_xprt: address too large\n");
1795 1796 1797
		return ERR_PTR(-EBADF);
	}

1798 1799
	new = kzalloc(sizeof(*new), GFP_KERNEL);
	if (new == NULL) {
1800 1801
		dprintk("RPC:       xs_setup_xprt: couldn't allocate "
				"rpc_xprt\n");
1802 1803
		return ERR_PTR(-ENOMEM);
	}
1804
	xprt = &new->xprt;
1805 1806 1807 1808 1809

	xprt->max_reqs = slot_table_size;
	xprt->slot = kcalloc(xprt->max_reqs, sizeof(struct rpc_rqst), GFP_KERNEL);
	if (xprt->slot == NULL) {
		kfree(xprt);
1810 1811
		dprintk("RPC:       xs_setup_xprt: couldn't allocate slot "
				"table\n");
1812 1813 1814
		return ERR_PTR(-ENOMEM);
	}

1815 1816
	memcpy(&xprt->addr, args->dstaddr, args->addrlen);
	xprt->addrlen = args->addrlen;
1817 1818
	if (args->srcaddr)
		memcpy(&new->addr, args->srcaddr, args->addrlen);
1819
	new->port = xs_get_random_port();
1820 1821 1822 1823

	return xprt;
}

1824 1825
/**
 * xs_setup_udp - Set up transport to use a UDP socket
1826
 * @args: rpc transport creation arguments
1827 1828
 *
 */
1829
struct rpc_xprt *xs_setup_udp(struct xprt_create *args)
1830
{
1831
	struct sockaddr *addr = args->dstaddr;
1832
	struct rpc_xprt *xprt;
1833
	struct sock_xprt *transport;
1834

1835
	xprt = xs_setup_xprt(args, xprt_udp_slot_table_entries);
1836 1837
	if (IS_ERR(xprt))
		return xprt;
1838
	transport = container_of(xprt, struct sock_xprt, xprt);
1839

1840
	xprt->prot = IPPROTO_UDP;
1841
	xprt->tsh_size = 0;
1842 1843 1844
	/* XXX: header size can vary due to auth type, IPv6, etc. */
	xprt->max_payload = (1U << 16) - (MAX_HEADER << 3);

1845 1846 1847 1848
	xprt->bind_timeout = XS_BIND_TO;
	xprt->connect_timeout = XS_UDP_CONN_TO;
	xprt->reestablish_timeout = XS_UDP_REEST_TO;
	xprt->idle_timeout = XS_IDLE_DISC_TO;
1849

1850
	xprt->ops = &xs_udp_ops;
1851

1852 1853
	if (args->timeout)
		xprt->timeout = *args->timeout;
1854
	else
1855
		xprt_set_timeout(&xprt->timeout, 5, 5 * HZ);
1856

1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878
	switch (addr->sa_family) {
	case AF_INET:
		if (((struct sockaddr_in *)addr)->sin_port != htons(0))
			xprt_set_bound(xprt);

		INIT_DELAYED_WORK(&transport->connect_worker,
					xs_udp_connect_worker4);
		xs_format_ipv4_peer_addresses(xprt);
		break;
	case AF_INET6:
		if (((struct sockaddr_in6 *)addr)->sin6_port != htons(0))
			xprt_set_bound(xprt);

		INIT_DELAYED_WORK(&transport->connect_worker,
					xs_udp_connect_worker6);
		xs_format_ipv6_peer_addresses(xprt);
		break;
	default:
		kfree(xprt);
		return ERR_PTR(-EAFNOSUPPORT);
	}

1879
	dprintk("RPC:       set up transport to address %s\n",
1880
			xprt->address_strings[RPC_DISPLAY_ALL]);
1881

1882 1883 1884 1885 1886 1887
	if (try_module_get(THIS_MODULE))
		return xprt;

	kfree(xprt->slot);
	kfree(xprt);
	return ERR_PTR(-EINVAL);
1888 1889
}

1890 1891
/**
 * xs_setup_tcp - Set up transport to use a TCP socket
1892
 * @args: rpc transport creation arguments
1893 1894
 *
 */
1895
struct rpc_xprt *xs_setup_tcp(struct xprt_create *args)
1896
{
1897
	struct sockaddr *addr = args->dstaddr;
1898
	struct rpc_xprt *xprt;
1899
	struct sock_xprt *transport;
1900

1901
	xprt = xs_setup_xprt(args, xprt_tcp_slot_table_entries);
1902 1903
	if (IS_ERR(xprt))
		return xprt;
1904
	transport = container_of(xprt, struct sock_xprt, xprt);
1905

1906
	xprt->prot = IPPROTO_TCP;
1907 1908
	xprt->tsh_size = sizeof(rpc_fraghdr) / sizeof(u32);
	xprt->max_payload = RPC_MAX_FRAGMENT_SIZE;
1909

1910 1911 1912 1913
	xprt->bind_timeout = XS_BIND_TO;
	xprt->connect_timeout = XS_TCP_CONN_TO;
	xprt->reestablish_timeout = XS_TCP_INIT_REEST_TO;
	xprt->idle_timeout = XS_IDLE_DISC_TO;
1914

1915
	xprt->ops = &xs_tcp_ops;
1916

1917 1918
	if (args->timeout)
		xprt->timeout = *args->timeout;
1919
	else
1920
		xprt_set_timeout(&xprt->timeout, 2, 60 * HZ);
1921

1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941
	switch (addr->sa_family) {
	case AF_INET:
		if (((struct sockaddr_in *)addr)->sin_port != htons(0))
			xprt_set_bound(xprt);

		INIT_DELAYED_WORK(&transport->connect_worker, xs_tcp_connect_worker4);
		xs_format_ipv4_peer_addresses(xprt);
		break;
	case AF_INET6:
		if (((struct sockaddr_in6 *)addr)->sin6_port != htons(0))
			xprt_set_bound(xprt);

		INIT_DELAYED_WORK(&transport->connect_worker, xs_tcp_connect_worker6);
		xs_format_ipv6_peer_addresses(xprt);
		break;
	default:
		kfree(xprt);
		return ERR_PTR(-EAFNOSUPPORT);
	}

1942
	dprintk("RPC:       set up transport to address %s\n",
1943
			xprt->address_strings[RPC_DISPLAY_ALL]);
1944

1945 1946 1947 1948 1949 1950
	if (try_module_get(THIS_MODULE))
		return xprt;

	kfree(xprt->slot);
	kfree(xprt);
	return ERR_PTR(-EINVAL);
1951
}
1952

1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968 1969 1970
static struct xprt_class	xs_udp_transport = {
	.list		= LIST_HEAD_INIT(xs_udp_transport.list),
	.name		= "udp",
	.owner		= THIS_MODULE,
	.family		= AF_INET,
	.protocol	= IPPROTO_UDP,
	.setup		= xs_setup_udp,
};

static struct xprt_class	xs_tcp_transport = {
	.list		= LIST_HEAD_INIT(xs_tcp_transport.list),
	.name		= "tcp",
	.owner		= THIS_MODULE,
	.family		= AF_INET,
	.protocol	= IPPROTO_TCP,
	.setup		= xs_setup_tcp,
};

1971
/**
1972
 * init_socket_xprt - set up xprtsock's sysctls, register with RPC client
1973 1974 1975 1976
 *
 */
int init_socket_xprt(void)
{
1977
#ifdef RPC_DEBUG
1978
	if (!sunrpc_table_header)
1979
		sunrpc_table_header = register_sysctl_table(sunrpc_table);
1980 1981
#endif

1982 1983 1984
	xprt_register_transport(&xs_udp_transport);
	xprt_register_transport(&xs_tcp_transport);

1985 1986 1987 1988
	return 0;
}

/**
1989
 * cleanup_socket_xprt - remove xprtsock's sysctls, unregister
1990 1991 1992 1993
 *
 */
void cleanup_socket_xprt(void)
{
1994 1995 1996 1997 1998 1999
#ifdef RPC_DEBUG
	if (sunrpc_table_header) {
		unregister_sysctl_table(sunrpc_table_header);
		sunrpc_table_header = NULL;
	}
#endif
2000 2001 2002

	xprt_unregister_transport(&xs_udp_transport);
	xprt_unregister_transport(&xs_tcp_transport);
2003
}