2 * Copyright 2000, International Business Machines Corporation and others.
5 * This software has been released under the terms of the IBM Public
6 * License. For details, see the LICENSE file in the top-level source
7 * directory or online at http://www.openafs.org/dl/license10.html
11 * rx_knet.c - RX kernel send, receive and timer routines.
13 * Linux implementation.
15 #include <afsconfig.h>
16 #include "afs/param.h"
19 #include <linux/version.h>
20 #include "rx/rx_kcommon.h"
22 #include "rx_atomic.h"
23 #include "rx_globals.h"
26 #include "rx_packet.h"
27 #include "rx_internal.h"
28 #include <asm/uaccess.h>
30 #include <linux/errqueue.h>
31 #include <linux/icmp.h>
34 #include "osi_compat.h"
37 * open and bind RX socket
40 rxk_NewSocketHost(afs_uint32 ahost, short aport)
43 struct sockaddr_in myaddr;
46 int pmtu = IP_PMTUDISC_WANT;
48 int pmtu = IP_PMTUDISC_DONT;
51 /* We need a better test for this. if you need it back, tell us
54 #ifdef LINUX_KERNEL_SOCK_CREATE_V
55 code = sock_create(AF_INET, SOCK_DGRAM, IPPROTO_UDP, &sockp, 0);
57 code = sock_create(AF_INET, SOCK_DGRAM, IPPROTO_UDP, &sockp);
63 myaddr.sin_family = AF_INET;
64 myaddr.sin_addr.s_addr = ahost;
65 myaddr.sin_port = aport;
67 sockp->ops->bind(sockp, (struct sockaddr *)&myaddr, sizeof(myaddr));
70 printk("sock_release(rx_socket) FIXME\n");
74 kernel_setsockopt(sockp, SOL_IP, IP_MTU_DISCOVER, (char *)&pmtu,
79 kernel_setsockopt(sockp, SOL_IP, IP_RECVERR, (char *)&recverr,
83 return (osi_socket *)sockp;
87 rxk_NewSocket(short aport)
89 return rxk_NewSocketHost(htonl(INADDR_ANY), aport);
92 /* free socket allocated by osi_NetSocket */
94 rxk_FreeSocket(struct socket *asocket)
96 AFS_STATCNT(osi_FreeSocket);
100 #ifdef AFS_RXERRQ_ENV
102 osi_HandleSocketError(osi_socket so, char *cmsgbuf, size_t cmsgbuf_len)
105 struct cmsghdr *cmsg;
106 struct sock_extended_err *err;
107 struct sockaddr_in addr;
108 struct sockaddr *offender;
110 struct socket *sop = (struct socket *)so;
112 msg.msg_name = &addr;
113 msg.msg_namelen = sizeof(addr);
114 msg.msg_control = cmsgbuf;
115 msg.msg_controllen = cmsgbuf_len;
118 code = kernel_recvmsg(sop, &msg, NULL, 0, 0,
119 MSG_ERRQUEUE|MSG_DONTWAIT|MSG_TRUNC);
121 if (code < 0 || !(msg.msg_flags & MSG_ERRQUEUE))
124 /* kernel_recvmsg changes msg_control to point at the _end_ of the buffer,
125 * and msg_controllen is set to the number of bytes remaining */
126 msg.msg_controllen = ((char*)msg.msg_control - (char*)cmsgbuf);
127 msg.msg_control = cmsgbuf;
129 for (cmsg = CMSG_FIRSTHDR(&msg); cmsg && CMSG_OK(&msg, cmsg);
130 cmsg = CMSG_NXTHDR(&msg, cmsg)) {
131 if (cmsg->cmsg_level == SOL_IP && cmsg->cmsg_type == IP_RECVERR)
137 err = CMSG_DATA(cmsg);
138 offender = SO_EE_OFFENDER(err);
140 if (offender->sa_family != AF_INET)
143 memcpy(&addr, offender, sizeof(addr));
145 rxi_ProcessNetError(err, addr.sin_addr.s_addr, addr.sin_port);
151 do_handlesocketerror(osi_socket so)
157 cmsgbuf = rxi_Alloc(cmsgbuf_len);
162 while (osi_HandleSocketError(so, cmsgbuf, cmsgbuf_len))
165 rxi_Free(cmsgbuf, cmsgbuf_len);
176 osi_NetSend(osi_socket sop, struct sockaddr_in *to, struct iovec *iovec,
177 int iovcnt, afs_int32 size, int istack)
184 msg.msg_namelen = sizeof(*to);
185 msg.msg_control = NULL;
186 msg.msg_controllen = 0;
189 code = kernel_sendmsg(sop, &msg, (struct kvec *) iovec, iovcnt, size);
191 #ifdef AFS_RXERRQ_ENV
193 do_handlesocketerror(sop);
197 return (code < 0) ? code : 0;
202 * OS dependent part of kernel RX listener thread.
205 * so socket to receive on, typically rx_socket
206 * from pointer to a sockaddr_in.
207 * iov array of iovecs to fill in.
208 * iovcnt how many iovecs there are.
209 * lengthp IN/OUT in: total space available in iovecs. out: size of read.
213 * error code (such as EINTER) if not
216 * Note that the maximum number of iovecs is 2 + RX_MAXWVECS. This is
217 * so we have a little space to look for packets larger than
220 int rxk_lastSocketError;
221 int rxk_nSocketErrors;
223 osi_NetReceive(osi_socket so, struct sockaddr_in *from, struct iovec *iov,
224 int iovcnt, int *lengthp)
228 struct iovec tmpvec[RX_MAXWVECS + 2];
229 struct socket *sop = (struct socket *)so;
231 if (iovcnt > RX_MAXWVECS + 2) {
232 osi_Panic("Too many (%d) iovecs passed to osi_NetReceive\n", iovcnt);
235 memcpy(tmpvec, iov, iovcnt * sizeof(struct iovec));
237 msg.msg_iov = tmpvec;
238 msg.msg_iovlen = iovcnt;
239 msg.msg_control = NULL;
240 msg.msg_controllen = 0;
243 code = kernel_recvmsg(sop, &msg, (struct kvec *)tmpvec, iovcnt,
248 /* Clear the error before using the socket again.
249 * Oh joy, Linux has hidden header files as well. It appears we can
250 * simply call again and have it clear itself via sock_error().
252 flush_signals(current); /* We don't want no stinkin' signals. */
253 rxk_lastSocketError = code;
256 #ifdef AFS_RXERRQ_ENV
257 do_handlesocketerror(so);
268 osi_StopListener(void)
270 extern struct task_struct *rxk_ListenerTask;
272 while (rxk_ListenerTask) {
273 if (rxk_ListenerTask) {
274 flush_signals(rxk_ListenerTask);
275 force_sig(SIGKILL, rxk_ListenerTask);
277 if (!rxk_ListenerTask)
279 afs_osi_Sleep(&rxk_ListenerTask);
281 sock_release(rx_socket);