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[NET]: Supporting UDP-Lite (RFC 3828) in Linux
This is a revision of the previously submitted patch, which alters the way files are organized and compiled in the following manner: * UDP and UDP-Lite now use separate object files * source file dependencies resolved via header files net/ipv{4,6}/udp_impl.h * order of inclusion files in udp.c/udplite.c adapted accordingly [NET/IPv4]: Support for the UDP-Lite protocol (RFC 3828) This patch adds support for UDP-Lite to the IPv4 stack, provided as an extension to the existing UDPv4 code: * generic routines are all located in net/ipv4/udp.c * UDP-Lite specific routines are in net/ipv4/udplite.c * MIB/statistics support in /proc/net/snmp and /proc/net/udplite * shared API with extensions for partial checksum coverage [NET/IPv6]: Extension for UDP-Lite over IPv6 It extends the existing UDPv6 code base with support for UDP-Lite in the same manner as per UDPv4. In particular, * UDPv6 generic and shared code is in net/ipv6/udp.c * UDP-Litev6 specific extensions are in net/ipv6/udplite.c * MIB/statistics support in /proc/net/snmp6 and /proc/net/udplite6 * support for IPV6_ADDRFORM * aligned the coding style of protocol initialisation with af_inet6.c * made the error handling in udpv6_queue_rcv_skb consistent; to return `-1' on error on all error cases * consolidation of shared code [NET]: UDP-Lite Documentation and basic XFRM/Netfilter support The UDP-Lite patch further provides * API documentation for UDP-Lite * basic xfrm support * basic netfilter support for IPv4 and IPv6 (LOG target) Signed-off-by: Gerrit Renker <gerrit@erg.abdn.ac.uk> Signed-off-by: David S. Miller <davem@davemloft.net>
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28 changed files with 1443 additions and 404 deletions
149
include/net/udplite.h
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149
include/net/udplite.h
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/*
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* Definitions for the UDP-Lite (RFC 3828) code.
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*/
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#ifndef _UDPLITE_H
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#define _UDPLITE_H
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/* UDP-Lite socket options */
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#define UDPLITE_SEND_CSCOV 10 /* sender partial coverage (as sent) */
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#define UDPLITE_RECV_CSCOV 11 /* receiver partial coverage (threshold ) */
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extern struct proto udplite_prot;
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extern struct hlist_head udplite_hash[UDP_HTABLE_SIZE];
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/* UDP-Lite does not have a standardized MIB yet, so we inherit from UDP */
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DECLARE_SNMP_STAT(struct udp_mib, udplite_statistics);
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/*
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* Checksum computation is all in software, hence simpler getfrag.
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*/
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static __inline__ int udplite_getfrag(void *from, char *to, int offset,
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int len, int odd, struct sk_buff *skb)
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{
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return memcpy_fromiovecend(to, (struct iovec *) from, offset, len);
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}
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/* Designate sk as UDP-Lite socket */
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static inline int udplite_sk_init(struct sock *sk)
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{
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udp_sk(sk)->pcflag = UDPLITE_BIT;
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return 0;
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}
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/*
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* Checksumming routines
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*/
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static inline int udplite_checksum_init(struct sk_buff *skb, struct udphdr *uh)
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{
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u16 cscov;
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/* In UDPv4 a zero checksum means that the transmitter generated no
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* checksum. UDP-Lite (like IPv6) mandates checksums, hence packets
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* with a zero checksum field are illegal. */
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if (uh->check == 0) {
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LIMIT_NETDEBUG(KERN_DEBUG "UDPLITE: zeroed checksum field\n");
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return 1;
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}
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UDP_SKB_CB(skb)->partial_cov = 0;
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cscov = ntohs(uh->len);
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if (cscov == 0) /* Indicates that full coverage is required. */
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cscov = skb->len;
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else if (cscov < 8 || cscov > skb->len) {
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/*
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* Coverage length violates RFC 3828: log and discard silently.
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*/
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LIMIT_NETDEBUG(KERN_DEBUG "UDPLITE: bad csum coverage %d/%d\n",
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cscov, skb->len);
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return 1;
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} else if (cscov < skb->len)
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UDP_SKB_CB(skb)->partial_cov = 1;
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UDP_SKB_CB(skb)->cscov = cscov;
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/*
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* There is no known NIC manufacturer supporting UDP-Lite yet,
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* hence ip_summed is always (re-)set to CHECKSUM_NONE.
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*/
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skb->ip_summed = CHECKSUM_NONE;
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return 0;
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}
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static __inline__ int udplite4_csum_init(struct sk_buff *skb, struct udphdr *uh)
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{
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int rc = udplite_checksum_init(skb, uh);
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if (!rc)
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skb->csum = csum_tcpudp_nofold(skb->nh.iph->saddr,
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skb->nh.iph->daddr,
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skb->len, IPPROTO_UDPLITE, 0);
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return rc;
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}
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static __inline__ int udplite6_csum_init(struct sk_buff *skb, struct udphdr *uh)
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{
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int rc = udplite_checksum_init(skb, uh);
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if (!rc)
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skb->csum = ~csum_ipv6_magic(&skb->nh.ipv6h->saddr,
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&skb->nh.ipv6h->daddr,
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skb->len, IPPROTO_UDPLITE, 0);
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return rc;
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}
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static inline int udplite_sender_cscov(struct udp_sock *up, struct udphdr *uh)
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{
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int cscov = up->len;
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/*
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* Sender has set `partial coverage' option on UDP-Lite socket
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*/
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if (up->pcflag & UDPLITE_SEND_CC) {
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if (up->pcslen < up->len) {
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/* up->pcslen == 0 means that full coverage is required,
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* partial coverage only if 0 < up->pcslen < up->len */
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if (0 < up->pcslen) {
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cscov = up->pcslen;
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}
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uh->len = htons(up->pcslen);
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}
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/*
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* NOTE: Causes for the error case `up->pcslen > up->len':
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* (i) Application error (will not be penalized).
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* (ii) Payload too big for send buffer: data is split
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* into several packets, each with its own header.
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* In this case (e.g. last segment), coverage may
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* exceed packet length.
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* Since packets with coverage length > packet length are
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* illegal, we fall back to the defaults here.
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*/
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}
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return cscov;
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}
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static inline u32 udplite_csum_outgoing(struct sock *sk, struct sk_buff *skb)
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{
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u32 csum = 0;
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int off, len, cscov = udplite_sender_cscov(udp_sk(sk), skb->h.uh);
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skb->ip_summed = CHECKSUM_NONE; /* no HW support for checksumming */
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skb_queue_walk(&sk->sk_write_queue, skb) {
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off = skb->h.raw - skb->data;
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len = skb->len - off;
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csum = skb_checksum(skb, off, (cscov > len)? len : cscov, csum);
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if ((cscov -= len) <= 0)
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break;
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}
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return csum;
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}
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extern void udplite4_register(void);
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extern int udplite_get_port(struct sock *sk, unsigned short snum,
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int (*scmp)(const struct sock *, const struct sock *));
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#endif /* _UDPLITE_H */
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